08005d8c <IMFS_Set_handlers>: #define MAXSYMLINK 5 int IMFS_Set_handlers( rtems_filesystem_location_info_t *loc ) {
8005d8c: 37 9c ff f0 addi sp,sp,-16 8005d90: 5b 8b 00 10 sw (sp+16),r11 8005d94: 5b 8c 00 0c sw (sp+12),r12 8005d98: 5b 8d 00 08 sw (sp+8),r13 8005d9c: 5b 9d 00 04 sw (sp+4),ra 8005da0: b8 20 58 00 mv r11,r1
IMFS_jnode_t *node = loc->node_access; IMFS_fs_info_t *fs_info; fs_info = loc->mt_entry->fs_info; switch( node->type ) {
8005da4: 28 21 00 00 lw r1,(r1+0)
) { IMFS_jnode_t *node = loc->node_access; IMFS_fs_info_t *fs_info; fs_info = loc->mt_entry->fs_info;
8005da8: 29 62 00 10 lw r2,(r11+16)
switch( node->type ) {
8005dac: 28 21 00 4c lw r1,(r1+76)
) { IMFS_jnode_t *node = loc->node_access; IMFS_fs_info_t *fs_info; fs_info = loc->mt_entry->fs_info;
8005db0: 28 4c 00 34 lw r12,(r2+52)
switch( node->type ) {
8005db4: 34 02 00 06 mvi r2,6 8005db8: 34 21 ff ff addi r1,r1,-1
8005dbc: 54 22 00 16 bgu r1,r2,8005e14 <IMFS_Set_handlers+0x88> <== NEVER TAKEN
8005dc0: 78 0d 08 01 mvhi r13,0x801 8005dc4: 34 02 00 02 mvi r2,2 8005dc8: fb ff e9 0a calli 80001f0 <__ashlsi3> 8005dcc: 39 ad a4 cc ori r13,r13,0xa4cc 8005dd0: b5 a1 08 00 add r1,r13,r1 8005dd4: 28 21 00 00 lw r1,(r1+0) 8005dd8: c0 20 00 00 b r1
case IMFS_DIRECTORY: loc->handlers = fs_info->directory_handlers;
8005ddc: 29 8c 00 08 lw r12,(r12+8) 8005de0: e0 00 00 08 bi 8005e00 <IMFS_Set_handlers+0x74>
break; case IMFS_DEVICE: loc->handlers = &IMFS_device_handlers;
8005de4: 78 01 08 01 mvhi r1,0x801 8005de8: 38 21 a5 a0 ori r1,r1,0xa5a0 8005dec: e0 00 00 09 bi 8005e10 <IMFS_Set_handlers+0x84>
break; case IMFS_SYM_LINK: case IMFS_HARD_LINK: loc->handlers = &IMFS_link_handlers;
8005df0: 78 01 08 01 mvhi r1,0x801 8005df4: 38 21 a5 d8 ori r1,r1,0xa5d8 8005df8: e0 00 00 06 bi 8005e10 <IMFS_Set_handlers+0x84>
break; case IMFS_LINEAR_FILE: loc->handlers = fs_info->memfile_handlers;
8005dfc: 29 8c 00 04 lw r12,(r12+4) 8005e00: 59 6c 00 08 sw (r11+8),r12
break;
8005e04: e0 00 00 04 bi 8005e14 <IMFS_Set_handlers+0x88>
case IMFS_MEMORY_FILE: loc->handlers = fs_info->memfile_handlers; break; case IMFS_FIFO: loc->handlers = &IMFS_fifo_handlers;
8005e08: 78 01 08 01 mvhi r1,0x801 8005e0c: 38 21 a4 e8 ori r1,r1,0xa4e8 8005e10: 59 61 00 08 sw (r11+8),r1
break; } return 0; }
8005e14: 34 01 00 00 mvi r1,0 8005e18: 2b 9d 00 04 lw ra,(sp+4) 8005e1c: 2b 8b 00 10 lw r11,(sp+16) 8005e20: 2b 8c 00 0c lw r12,(sp+12) 8005e24: 2b 8d 00 08 lw r13,(sp+8) 8005e28: 37 9c 00 10 addi sp,sp,16 8005e2c: c3 a0 00 00 ret
08009c7c <IMFS_allocate_node>: IMFS_jnode_t *IMFS_allocate_node( IMFS_jnode_types_t type, const char *name, mode_t mode ) {
8009c7c: 37 9c ff e0 addi sp,sp,-32 8009c80: 5b 8b 00 18 sw (sp+24),r11 8009c84: 5b 8c 00 14 sw (sp+20),r12 8009c88: 5b 8d 00 10 sw (sp+16),r13 8009c8c: 5b 8e 00 0c sw (sp+12),r14 8009c90: 5b 8f 00 08 sw (sp+8),r15 8009c94: 5b 9d 00 04 sw (sp+4),ra 8009c98: b8 20 70 00 mv r14,r1 8009c9c: b8 40 78 00 mv r15,r2
struct timeval tv; /* * Allocate an IMFS jnode */ node = calloc( 1, sizeof( IMFS_jnode_t ) );
8009ca0: 34 01 00 01 mvi r1,1 8009ca4: 34 02 00 68 mvi r2,104
IMFS_jnode_t *IMFS_allocate_node( IMFS_jnode_types_t type, const char *name, mode_t mode ) {
8009ca8: b8 60 68 00 mv r13,r3
/* * Allocate an IMFS jnode */ node = calloc( 1, sizeof( IMFS_jnode_t ) ); if ( !node )
8009cac: 34 0c 00 00 mvi r12,0
struct timeval tv; /* * Allocate an IMFS jnode */ node = calloc( 1, sizeof( IMFS_jnode_t ) );
8009cb0: fb ff f4 8d calli 8006ee4 <calloc> 8009cb4: b8 20 58 00 mv r11,r1
if ( !node )
8009cb8: 44 2c 00 12 be r1,r12,8009d00 <IMFS_allocate_node+0x84> <== NEVER TAKEN
return NULL; /* * Fill in the basic information */ node->st_nlink = 1;
8009cbc: 34 04 00 01 mvi r4,1
node->type = type; strncpy( node->name, name, IMFS_NAME_MAX );
8009cc0: b9 e0 10 00 mv r2,r15 8009cc4: 34 03 00 20 mvi r3,32 8009cc8: 34 21 00 0c addi r1,r1,12
return NULL; /* * Fill in the basic information */ node->st_nlink = 1;
8009ccc: 0d 64 00 34 sh (r11+52),r4
node->type = type;
8009cd0: 59 6e 00 4c sw (r11+76),r14
strncpy( node->name, name, IMFS_NAME_MAX );
8009cd4: f8 00 09 8a calli 800c2fc <strncpy>
#endif /* * Now set all the times. */ gettimeofday( &tv, 0 );
8009cd8: b9 80 10 00 mv r2,r12 8009cdc: 37 81 00 1c addi r1,sp,28
strncpy( node->name, name, IMFS_NAME_MAX ); /* * Fill in the mode and permission information for the jnode structure. */ node->st_mode = mode;
8009ce0: 59 6d 00 30 sw (r11+48),r13
#if defined(RTEMS_POSIX_API) node->st_uid = geteuid(); node->st_gid = getegid(); #else node->st_uid = 0;
8009ce4: 0d 6c 00 3c sh (r11+60),r12
node->st_gid = 0;
8009ce8: 0d 6c 00 3e sh (r11+62),r12
#endif /* * Now set all the times. */ gettimeofday( &tv, 0 );
8009cec: fb ff f5 4b calli 8007218 <gettimeofday>
node->stat_atime = (time_t) tv.tv_sec;
8009cf0: 2b 81 00 1c lw r1,(sp+28)
node->stat_mtime = (time_t) tv.tv_sec; node->stat_ctime = (time_t) tv.tv_sec;
8009cf4: 59 61 00 48 sw (r11+72),r1
/* * Now set all the times. */ gettimeofday( &tv, 0 ); node->stat_atime = (time_t) tv.tv_sec;
8009cf8: 59 61 00 40 sw (r11+64),r1
node->stat_mtime = (time_t) tv.tv_sec;
8009cfc: 59 61 00 44 sw (r11+68),r1
node->stat_ctime = (time_t) tv.tv_sec; return node; }
8009d00: b9 60 08 00 mv r1,r11 8009d04: 2b 9d 00 04 lw ra,(sp+4) 8009d08: 2b 8b 00 18 lw r11,(sp+24) 8009d0c: 2b 8c 00 14 lw r12,(sp+20) 8009d10: 2b 8d 00 10 lw r13,(sp+16) 8009d14: 2b 8e 00 0c lw r14,(sp+12) 8009d18: 2b 8f 00 08 lw r15,(sp+8) 8009d1c: 37 9c 00 20 addi sp,sp,32 8009d20: c3 a0 00 00 ret
08009d68 <IMFS_create_node>: IMFS_jnode_types_t type, const char *name, mode_t mode, const IMFS_types_union *info ) {
8009d68: 37 9c ff ec addi sp,sp,-20 8009d6c: 5b 8b 00 14 sw (sp+20),r11 8009d70: 5b 8c 00 10 sw (sp+16),r12 8009d74: 5b 8d 00 0c sw (sp+12),r13 8009d78: 5b 8e 00 08 sw (sp+8),r14 8009d7c: 5b 9d 00 04 sw (sp+4),ra 8009d80: b8 40 70 00 mv r14,r2 8009d84: b8 20 60 00 mv r12,r1 8009d88: b8 60 10 00 mv r2,r3 8009d8c: b8 a0 68 00 mv r13,r5
IMFS_fs_info_t *fs_info; /* * MUST have a parent node to call this routine. */ if ( parent_loc == NULL )
8009d90: b8 20 58 00 mv r11,r1
8009d94: 44 20 00 42 be r1,r0,8009e9c <IMFS_create_node+0x134> <== NEVER TAKEN
return NULL; /* * Allocate filesystem node and fill in basic information */ node = IMFS_allocate_node( type, name, mode & ~rtems_filesystem_umask );
8009d98: 78 05 08 01 mvhi r5,0x801 8009d9c: 38 a5 c1 10 ori r5,r5,0xc110 8009da0: 28 a3 00 00 lw r3,(r5+0) 8009da4: b9 c0 08 00 mv r1,r14 8009da8: 28 63 00 2c lw r3,(r3+44) 8009dac: a4 60 18 00 not r3,r3 8009db0: a0 83 18 00 and r3,r4,r3 8009db4: fb ff ff b2 calli 8009c7c <IMFS_allocate_node> 8009db8: b8 20 58 00 mv r11,r1
if ( !node )
8009dbc: 44 20 00 38 be r1,r0,8009e9c <IMFS_create_node+0x134> <== NEVER TAKEN
return NULL; /* * Set the type specific information */ switch (type) {
8009dc0: 35 c1 ff ff addi r1,r14,-1 8009dc4: 34 02 00 06 mvi r2,6
8009dc8: 54 22 00 22 bgu r1,r2,8009e50 <IMFS_create_node+0xe8> <== NEVER TAKEN
8009dcc: 78 0e 08 01 mvhi r14,0x801 8009dd0: 34 02 00 02 mvi r2,2 8009dd4: fb ff d9 07 calli 80001f0 <__ashlsi3> 8009dd8: 39 ce a8 30 ori r14,r14,0xa830 8009ddc: b5 c1 08 00 add r1,r14,r1 8009de0: 28 21 00 00 lw r1,(r1+0) 8009de4: c0 20 00 00 b r1
*/ RTEMS_INLINE_ROUTINE void _Chain_Initialize_empty( Chain_Control *the_chain ) { the_chain->first = _Chain_Tail(the_chain);
8009de8: 35 62 00 54 addi r2,r11,84
the_chain->permanent_null = NULL; the_chain->last = _Chain_Head(the_chain);
8009dec: 35 61 00 50 addi r1,r11,80
*/ RTEMS_INLINE_ROUTINE void _Chain_Initialize_empty( Chain_Control *the_chain ) { the_chain->first = _Chain_Tail(the_chain);
8009df0: 59 62 00 50 sw (r11+80),r2
the_chain->permanent_null = NULL;
8009df4: 34 02 00 00 mvi r2,0 8009df8: 59 62 00 54 sw (r11+84),r2
the_chain->last = _Chain_Head(the_chain);
8009dfc: 59 61 00 58 sw (r11+88),r1 8009e00: e0 00 00 1c bi 8009e70 <IMFS_create_node+0x108>
node->info.sym_link.name = info->sym_link.name; break; case IMFS_DEVICE: node->info.device.major = info->device.major; node->info.device.minor = info->device.minor;
8009e04: 29 a1 00 04 lw r1,(r13+4) 8009e08: 59 61 00 54 sw (r11+84),r1
case IMFS_SYM_LINK: node->info.sym_link.name = info->sym_link.name; break; case IMFS_DEVICE: node->info.device.major = info->device.major;
8009e0c: 29 ad 00 00 lw r13,(r13+0) 8009e10: 59 6d 00 50 sw (r11+80),r13
node->info.device.minor = info->device.minor; break;
8009e14: e0 00 00 17 bi 8009e70 <IMFS_create_node+0x108>
case IMFS_LINEAR_FILE: node->info.linearfile.size = 0;
8009e18: 34 01 00 00 mvi r1,0 <== NOT EXECUTED
node->info.linearfile.direct = 0;
8009e1c: 59 61 00 58 sw (r11+88),r1 <== NOT EXECUTED
node->info.device.major = info->device.major; node->info.device.minor = info->device.minor; break; case IMFS_LINEAR_FILE: node->info.linearfile.size = 0;
8009e20: 59 61 00 50 sw (r11+80),r1 <== NOT EXECUTED 8009e24: 59 61 00 54 sw (r11+84),r1 <== NOT EXECUTED
node->info.linearfile.direct = 0; case IMFS_MEMORY_FILE: node->info.file.size = 0;
8009e28: 34 02 00 00 mvi r2,0
node->info.file.indirect = 0; node->info.file.doubly_indirect = 0; node->info.file.triply_indirect = 0;
8009e2c: 59 62 00 60 sw (r11+96),r2
case IMFS_LINEAR_FILE: node->info.linearfile.size = 0; node->info.linearfile.direct = 0; case IMFS_MEMORY_FILE: node->info.file.size = 0;
8009e30: 59 62 00 50 sw (r11+80),r2 8009e34: 59 62 00 54 sw (r11+84),r2
node->info.file.indirect = 0;
8009e38: 59 62 00 58 sw (r11+88),r2
node->info.file.doubly_indirect = 0;
8009e3c: 59 62 00 5c sw (r11+92),r2
node->info.file.triply_indirect = 0; break;
8009e40: e0 00 00 0c bi 8009e70 <IMFS_create_node+0x108>
case IMFS_FIFO: node->info.fifo.pipe = NULL;
8009e44: 34 01 00 00 mvi r1,0 8009e48: 59 61 00 50 sw (r11+80),r1
break;
8009e4c: e0 00 00 09 bi 8009e70 <IMFS_create_node+0x108>
default: assert(0);
8009e50: 78 01 08 01 mvhi r1,0x801 <== NOT EXECUTED 8009e54: 78 03 08 01 mvhi r3,0x801 <== NOT EXECUTED 8009e58: 78 04 08 01 mvhi r4,0x801 <== NOT EXECUTED 8009e5c: 38 21 a7 e0 ori r1,r1,0xa7e0 <== NOT EXECUTED 8009e60: 38 63 a8 4c ori r3,r3,0xa84c <== NOT EXECUTED 8009e64: 38 84 a8 2c ori r4,r4,0xa82c <== NOT EXECUTED 8009e68: 34 02 00 5c mvi r2,92 <== NOT EXECUTED 8009e6c: fb ff f4 0b calli 8006e98 <__assert_func> <== NOT EXECUTED
/* * This node MUST have a parent, so put it in that directory list. */ parent = parent_loc->node_access; fs_info = parent_loc->mt_entry->fs_info;
8009e70: 29 83 00 10 lw r3,(r12+16)
} /* * This node MUST have a parent, so put it in that directory list. */ parent = parent_loc->node_access;
8009e74: 29 81 00 00 lw r1,(r12+0)
RTEMS_INLINE_ROUTINE void rtems_chain_append( rtems_chain_control *the_chain, rtems_chain_node *the_node ) { _Chain_Append( the_chain, the_node );
8009e78: b9 60 10 00 mv r2,r11
fs_info = parent_loc->mt_entry->fs_info;
8009e7c: 28 63 00 34 lw r3,(r3+52)
node->Parent = parent;
8009e80: 59 61 00 08 sw (r11+8),r1 8009e84: 34 21 00 50 addi r1,r1,80
node->st_ino = ++fs_info->ino_count;
8009e88: 28 64 00 00 lw r4,(r3+0) 8009e8c: 34 84 00 01 addi r4,r4,1 8009e90: 58 64 00 00 sw (r3+0),r4 8009e94: 59 64 00 38 sw (r11+56),r4 8009e98: fb ff e2 f3 calli 8002a64 <_Chain_Append>
rtems_chain_append( &parent->info.directory.Entries, &node->Node ); return node; }
8009e9c: b9 60 08 00 mv r1,r11 8009ea0: 2b 9d 00 04 lw ra,(sp+4) 8009ea4: 2b 8b 00 14 lw r11,(sp+20) 8009ea8: 2b 8c 00 10 lw r12,(sp+16) 8009eac: 2b 8d 00 0c lw r13,(sp+12) 8009eb0: 2b 8e 00 08 lw r14,(sp+8) 8009eb4: 37 9c 00 14 addi sp,sp,20 8009eb8: c3 a0 00 00 ret
08009d24 <IMFS_create_root_node>: IMFS_jnode_t *IMFS_create_root_node(void) {
8009d24: 37 9c ff fc addi sp,sp,-4 8009d28: 5b 9d 00 04 sw (sp+4),ra
IMFS_jnode_t *node; /* * Allocate filesystem node and fill in basic information */ node = IMFS_allocate_node( IMFS_DIRECTORY, "", (S_IFDIR | 0755) );
8009d2c: 78 02 08 01 mvhi r2,0x801 8009d30: 38 42 a2 c8 ori r2,r2,0xa2c8 8009d34: 34 01 00 01 mvi r1,1 8009d38: 34 03 41 ed mvi r3,16877 8009d3c: fb ff ff d0 calli 8009c7c <IMFS_allocate_node>
if ( !node )
8009d40: 44 20 00 07 be r1,r0,8009d5c <IMFS_create_root_node+0x38> <== NEVER TAKEN
*/ RTEMS_INLINE_ROUTINE void _Chain_Initialize_empty( Chain_Control *the_chain ) { the_chain->first = _Chain_Tail(the_chain);
8009d44: 34 23 00 54 addi r3,r1,84
the_chain->permanent_null = NULL; the_chain->last = _Chain_Head(the_chain);
8009d48: 34 22 00 50 addi r2,r1,80
*/ RTEMS_INLINE_ROUTINE void _Chain_Initialize_empty( Chain_Control *the_chain ) { the_chain->first = _Chain_Tail(the_chain);
8009d4c: 58 23 00 50 sw (r1+80),r3
the_chain->permanent_null = NULL;
8009d50: 34 03 00 00 mvi r3,0 8009d54: 58 23 00 54 sw (r1+84),r3
the_chain->last = _Chain_Head(the_chain);
8009d58: 58 22 00 58 sw (r1+88),r2
* NOTE: Root node is always a directory. */ rtems_chain_initialize_empty(&node->info.directory.Entries); return node; }
8009d5c: 2b 9d 00 04 lw ra,(sp+4) 8009d60: 37 9c 00 04 addi sp,sp,4 8009d64: c3 a0 00 00 ret
08002ccc <IMFS_dump_directory>: void IMFS_dump_directory( IMFS_jnode_t *the_directory, int level ) {
8002ccc: 37 9c ff dc addi sp,sp,-36 8002cd0: 5b 8b 00 24 sw (sp+36),r11 8002cd4: 5b 8c 00 20 sw (sp+32),r12 8002cd8: 5b 8d 00 1c sw (sp+28),r13 8002cdc: 5b 8e 00 18 sw (sp+24),r14 8002ce0: 5b 8f 00 14 sw (sp+20),r15 8002ce4: 5b 90 00 10 sw (sp+16),r16 8002ce8: 5b 91 00 0c sw (sp+12),r17 8002cec: 5b 92 00 08 sw (sp+8),r18 8002cf0: 5b 9d 00 04 sw (sp+4),ra 8002cf4: b8 40 68 00 mv r13,r2
rtems_chain_node *the_node; rtems_chain_control *the_chain; IMFS_jnode_t *the_jnode; int i; assert( the_directory );
8002cf8: 5c 20 00 09 bne r1,r0,8002d1c <IMFS_dump_directory+0x50> <== ALWAYS TAKEN
8002cfc: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8002d00: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 8002d04: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 8002d08: 38 21 39 88 ori r1,r1,0x3988 <== NOT EXECUTED 8002d0c: 38 63 3b 4c ori r3,r3,0x3b4c <== NOT EXECUTED 8002d10: 38 84 3a 4c ori r4,r4,0x3a4c <== NOT EXECUTED 8002d14: 34 02 00 84 mvi r2,132 <== NOT EXECUTED 8002d18: e0 00 00 09 bi 8002d3c <IMFS_dump_directory+0x70> <== NOT EXECUTED
assert( level >= 0 );
8002d1c: 4c 40 00 09 bge r2,r0,8002d40 <IMFS_dump_directory+0x74> <== ALWAYS TAKEN
8002d20: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8002d24: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 8002d28: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 8002d2c: 38 21 39 88 ori r1,r1,0x3988 <== NOT EXECUTED 8002d30: 38 63 3b 4c ori r3,r3,0x3b4c <== NOT EXECUTED 8002d34: 38 84 3a 5c ori r4,r4,0x3a5c <== NOT EXECUTED 8002d38: 34 02 00 86 mvi r2,134 <== NOT EXECUTED 8002d3c: f8 00 02 25 calli 80035d0 <__assert_func> <== NOT EXECUTED
assert( the_directory->type == IMFS_DIRECTORY );
8002d40: 28 22 00 4c lw r2,(r1+76) 8002d44: 34 03 00 01 mvi r3,1
8002d48: 44 43 00 09 be r2,r3,8002d6c <IMFS_dump_directory+0xa0> <== ALWAYS TAKEN
8002d4c: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8002d50: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 8002d54: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 8002d58: 38 21 39 88 ori r1,r1,0x3988 <== NOT EXECUTED 8002d5c: 38 63 3b 4c ori r3,r3,0x3b4c <== NOT EXECUTED 8002d60: 38 84 3a 68 ori r4,r4,0x3a68 <== NOT EXECUTED 8002d64: 34 02 00 88 mvi r2,136 <== NOT EXECUTED 8002d68: e3 ff ff f5 bi 8002d3c <IMFS_dump_directory+0x70> <== NOT EXECUTED
the_node = the_node->next ) { the_jnode = (IMFS_jnode_t *) the_node; for ( i=0 ; i<=level ; i++ ) fprintf(stdout, "...." );
8002d6c: 78 0c 08 02 mvhi r12,0x802
*/ RTEMS_INLINE_ROUTINE Chain_Node *_Chain_Tail( Chain_Control *the_chain ) { return (Chain_Node *) &the_chain->permanent_null;
8002d70: 34 32 00 54 addi r18,r1,84 8002d74: 39 8c 61 90 ori r12,r12,0x6190
IMFS_print_jnode( the_jnode ); if ( the_jnode->type == IMFS_DIRECTORY )
8002d78: b8 40 88 00 mv r17,r2
assert( the_directory->type == IMFS_DIRECTORY ); the_chain = &the_directory->info.directory.Entries; for ( the_node = the_chain->first;
8002d7c: 28 2b 00 50 lw r11,(r1+80)
the_node = the_node->next ) { the_jnode = (IMFS_jnode_t *) the_node; for ( i=0 ; i<=level ; i++ ) fprintf(stdout, "...." );
8002d80: 78 10 08 02 mvhi r16,0x802
IMFS_print_jnode( the_jnode ); if ( the_jnode->type == IMFS_DIRECTORY ) IMFS_dump_directory( the_jnode, level + 1 );
8002d84: 35 af 00 01 addi r15,r13,1
assert( the_directory->type == IMFS_DIRECTORY ); the_chain = &the_directory->info.directory.Entries; for ( the_node = the_chain->first;
8002d88: e0 00 00 11 bi 8002dcc <IMFS_dump_directory+0x100>
!rtems_chain_is_tail( the_chain, the_node ); the_node = the_node->next ) { the_jnode = (IMFS_jnode_t *) the_node;
8002d8c: 34 0e 00 00 mvi r14,0
for ( i=0 ; i<=level ; i++ ) fprintf(stdout, "...." );
8002d90: 29 82 00 00 lw r2,(r12+0) 8002d94: ba 00 08 00 mv r1,r16
!rtems_chain_is_tail( the_chain, the_node ); the_node = the_node->next ) { the_jnode = (IMFS_jnode_t *) the_node; for ( i=0 ; i<=level ; i++ )
8002d98: 35 ce 00 01 addi r14,r14,1
fprintf(stdout, "...." );
8002d9c: 28 42 00 08 lw r2,(r2+8) 8002da0: 38 21 3a 90 ori r1,r1,0x3a90 8002da4: f8 00 36 51 calli 80106e8 <fputs>
!rtems_chain_is_tail( the_chain, the_node ); the_node = the_node->next ) { the_jnode = (IMFS_jnode_t *) the_node; for ( i=0 ; i<=level ; i++ ) 8002da8: 4d ae ff fa bge r13,r14,8002d90 <IMFS_dump_directory+0xc4> fprintf(stdout, "...." ); IMFS_print_jnode( the_jnode );
8002dac: b9 60 08 00 mv r1,r11 8002db0: fb ff ff 4f calli 8002aec <IMFS_print_jnode>
if ( the_jnode->type == IMFS_DIRECTORY )
8002db4: 29 61 00 4c lw r1,(r11+76)
8002db8: 5c 31 00 04 bne r1,r17,8002dc8 <IMFS_dump_directory+0xfc> IMFS_dump_directory( the_jnode, level + 1 );
8002dbc: b9 60 08 00 mv r1,r11 8002dc0: b9 e0 10 00 mv r2,r15 8002dc4: fb ff ff c2 calli 8002ccc <IMFS_dump_directory>
the_chain = &the_directory->info.directory.Entries; for ( the_node = the_chain->first; !rtems_chain_is_tail( the_chain, the_node ); the_node = the_node->next ) {
8002dc8: 29 6b 00 00 lw r11,(r11+0)
assert( the_directory->type == IMFS_DIRECTORY ); the_chain = &the_directory->info.directory.Entries; for ( the_node = the_chain->first; 8002dcc: 5d 72 ff f0 bne r11,r18,8002d8c <IMFS_dump_directory+0xc0> fprintf(stdout, "...." ); IMFS_print_jnode( the_jnode ); if ( the_jnode->type == IMFS_DIRECTORY ) IMFS_dump_directory( the_jnode, level + 1 ); } }
8002dd0: 2b 9d 00 04 lw ra,(sp+4) 8002dd4: 2b 8b 00 24 lw r11,(sp+36) 8002dd8: 2b 8c 00 20 lw r12,(sp+32) 8002ddc: 2b 8d 00 1c lw r13,(sp+28) 8002de0: 2b 8e 00 18 lw r14,(sp+24) 8002de4: 2b 8f 00 14 lw r15,(sp+20) 8002de8: 2b 90 00 10 lw r16,(sp+16) 8002dec: 2b 91 00 0c lw r17,(sp+12) 8002df0: 2b 92 00 08 lw r18,(sp+8) 8002df4: 37 9c 00 24 addi sp,sp,36 8002df8: c3 a0 00 00 ret
08006000 <IMFS_eval_path>: const char *pathname, /* IN */ int pathnamelen, /* IN */ int flags, /* IN */ rtems_filesystem_location_info_t *pathloc /* IN/OUT */ ) {
8006000: 37 9c ff 80 addi sp,sp,-128 8006004: 5b 8b 00 44 sw (sp+68),r11 8006008: 5b 8c 00 40 sw (sp+64),r12 800600c: 5b 8d 00 3c sw (sp+60),r13 8006010: 5b 8e 00 38 sw (sp+56),r14 8006014: 5b 8f 00 34 sw (sp+52),r15 8006018: 5b 90 00 30 sw (sp+48),r16 800601c: 5b 91 00 2c sw (sp+44),r17 8006020: 5b 92 00 28 sw (sp+40),r18 8006024: 5b 93 00 24 sw (sp+36),r19 8006028: 5b 94 00 20 sw (sp+32),r20 800602c: 5b 95 00 1c sw (sp+28),r21 8006030: 5b 96 00 18 sw (sp+24),r22 8006034: 5b 97 00 14 sw (sp+20),r23 8006038: 5b 98 00 10 sw (sp+16),r24 800603c: 5b 99 00 0c sw (sp+12),r25 8006040: 5b 9b 00 08 sw (sp+8),fp 8006044: 5b 9d 00 04 sw (sp+4),ra
/* * This was filled in by the caller and is valid in the * mount table. */ node = pathloc->node_access;
8006048: 34 0d 00 01 mvi r13,1
case IMFS_UP_DIR: /* * Am I at the root of all filesystems? (chroot'ed?) */ if ( pathloc->node_access == rtems_filesystem_root.node_access )
800604c: 78 13 08 01 mvhi r19,0x801
const char *pathname, /* IN */ int pathnamelen, /* IN */ int flags, /* IN */ rtems_filesystem_location_info_t *pathloc /* IN/OUT */ ) {
8006050: b8 80 58 00 mv r11,r4 8006054: b8 20 88 00 mv r17,r1 8006058: b8 40 70 00 mv r14,r2 800605c: b8 60 80 00 mv r16,r3
case IMFS_UP_DIR: /* * Am I at the root of all filesystems? (chroot'ed?) */ if ( pathloc->node_access == rtems_filesystem_root.node_access )
8006060: 3a 73 c1 10 ori r19,r19,0xc110
/* * This was filled in by the caller and is valid in the * mount table. */ node = pathloc->node_access;
8006064: 28 8c 00 00 lw r12,(r4+0) 8006068: 34 0f 00 00 mvi r15,0
* Evaluate all tokens until we are done or an error occurs. */ while( (type != IMFS_NO_MORE_PATH) && (type != IMFS_INVALID_TOKEN) ) { type = IMFS_get_token( &pathname[i], pathnamelen, token, &len );
800606c: 37 96 00 48 addi r22,sp,72
/* * I cannot move out of this directory without execute permission. */ if ( type != IMFS_NO_MORE_PATH ) if ( node->type == IMFS_DIRECTORY )
8006070: b9 a0 a8 00 mv r21,r13
/* * If all of the flags are set we have permission * to do this. */ if ( ( flags_to_test & jnode->st_mode) == flags_to_test )
8006074: 34 1b 00 40 mvi fp,64
if ( !IMFS_evaluate_permission( pathloc, RTEMS_LIBIO_PERMS_SEARCH ) ) rtems_set_errno_and_return_minus_one( EACCES ); node = pathloc->node_access; switch( type ) {
8006078: 34 19 00 03 mvi r25,3
node = pathloc->node_access; if ( !node ) rtems_set_errno_and_return_minus_one( ENOTDIR ); } else if ( node->type == IMFS_SYM_LINK ) {
800607c: 34 14 00 04 mvi r20,4
result = IMFS_evaluate_sym_link( pathloc, 0 ); node = pathloc->node_access; if ( result == -1 )
8006080: 34 18 ff ff mvi r24,-1
if ( !IMFS_evaluate_permission( pathloc, RTEMS_LIBIO_PERMS_SEARCH ) ) rtems_set_errno_and_return_minus_one( EACCES ); node = pathloc->node_access; switch( type ) {
8006084: 34 17 00 02 mvi r23,2
/* * Evaluate all tokens until we are done or an error occurs. */ while( (type != IMFS_NO_MORE_PATH) && (type != IMFS_INVALID_TOKEN) ) {
8006088: e0 00 00 58 bi 80061e8 <IMFS_eval_path+0x1e8>
type = IMFS_get_token( &pathname[i], pathnamelen, token, &len );
800608c: 37 84 00 80 addi r4,sp,128 8006090: b6 2f 08 00 add r1,r17,r15 8006094: b9 c0 10 00 mv r2,r14 8006098: ba c0 18 00 mv r3,r22 800609c: f8 00 02 60 calli 8006a1c <IMFS_get_token>
pathnamelen -= len; i += len; if ( !pathloc->node_access )
80060a0: 29 64 00 00 lw r4,(r11+0)
* Evaluate all tokens until we are done or an error occurs. */ while( (type != IMFS_NO_MORE_PATH) && (type != IMFS_INVALID_TOKEN) ) { type = IMFS_get_token( &pathname[i], pathnamelen, token, &len );
80060a4: b8 20 68 00 mv r13,r1
pathnamelen -= len;
80060a8: 2b 92 00 80 lw r18,(sp+128)
i += len; if ( !pathloc->node_access )
80060ac: 44 80 00 47 be r4,r0,80061c8 <IMFS_eval_path+0x1c8> <== NEVER TAKEN
rtems_set_errno_and_return_minus_one( ENOENT ); /* * I cannot move out of this directory without execute permission. */ if ( type != IMFS_NO_MORE_PATH ) 80060b0: 44 20 00 06 be r1,r0,80060c8 <IMFS_eval_path+0xc8> if ( node->type == IMFS_DIRECTORY )
80060b4: 29 81 00 4c lw r1,(r12+76)
80060b8: 5c 35 00 04 bne r1,r21,80060c8 <IMFS_eval_path+0xc8> /* * If all of the flags are set we have permission * to do this. */ if ( ( flags_to_test & jnode->st_mode) == flags_to_test )
80060bc: 28 81 00 30 lw r1,(r4+48) 80060c0: 20 21 00 40 andi r1,r1,0x40
80060c4: 5c 3b 00 84 bne r1,fp,80062d4 <IMFS_eval_path+0x2d4> <== NEVER TAKEN
*/ while( (type != IMFS_NO_MORE_PATH) && (type != IMFS_INVALID_TOKEN) ) { type = IMFS_get_token( &pathname[i], pathnamelen, token, &len ); pathnamelen -= len;
80060c8: c9 d2 70 00 sub r14,r14,r18
i += len;
80060cc: b5 f2 78 00 add r15,r15,r18
if ( type != IMFS_NO_MORE_PATH ) if ( node->type == IMFS_DIRECTORY ) if ( !IMFS_evaluate_permission( pathloc, RTEMS_LIBIO_PERMS_SEARCH ) ) rtems_set_errno_and_return_minus_one( EACCES ); node = pathloc->node_access;
80060d0: b8 80 60 00 mv r12,r4
switch( type ) { 80060d4: 45 b9 00 1e be r13,r25,800614c <IMFS_eval_path+0x14c> 80060d8: 45 b4 00 41 be r13,r20,80061dc <IMFS_eval_path+0x1dc> 80060dc: 5d b7 00 43 bne r13,r23,80061e8 <IMFS_eval_path+0x1e8> case IMFS_UP_DIR: /* * Am I at the root of all filesystems? (chroot'ed?) */ if ( pathloc->node_access == rtems_filesystem_root.node_access )
80060e0: 2a 61 00 00 lw r1,(r19+0) 80060e4: 28 21 00 18 lw r1,(r1+24)
80060e8: 44 81 00 40 be r4,r1,80061e8 <IMFS_eval_path+0x1e8> <== NEVER TAKEN
/* * Am I at the root of this mounted filesystem? */ if (pathloc->node_access == pathloc->mt_entry->mt_fs_root.node_access) {
80060ec: 29 65 00 10 lw r5,(r11+16)
/* * Am I at the root of this mounted filesystem? */ if (pathloc->node_access ==
80060f0: 28 a1 00 1c lw r1,(r5+28)
80060f4: 5c 81 00 11 bne r4,r1,8006138 <IMFS_eval_path+0x138> */ if ( pathloc->node_access == rtems_filesystem_root.node_access ) { break; /* Throw out the .. in this case */ } else { newloc = pathloc->mt_entry->mt_point_node;
80060f8: 37 8c 00 6c addi r12,sp,108 80060fc: 34 a2 00 08 addi r2,r5,8 8006100: 34 03 00 14 mvi r3,20 8006104: b9 80 08 00 mv r1,r12 8006108: f8 00 16 28 calli 800b9a8 <memcpy>
*pathloc = newloc;
800610c: b9 80 10 00 mv r2,r12 8006110: 34 03 00 14 mvi r3,20 8006114: b9 60 08 00 mv r1,r11 8006118: f8 00 16 24 calli 800b9a8 <memcpy>
return (*pathloc->ops->evalpath_h)(&(pathname[i-len]),
800611c: 29 62 00 0c lw r2,(r11+12) 8006120: c9 f2 08 00 sub r1,r15,r18 8006124: b6 21 08 00 add r1,r17,r1 8006128: 28 45 00 00 lw r5,(r2+0) 800612c: ba 00 18 00 mv r3,r16 8006130: b6 4e 10 00 add r2,r18,r14 8006134: e0 00 00 46 bi 800624c <IMFS_eval_path+0x24c>
pathnamelen+len, flags,pathloc); } } else { if ( !node->Parent )
8006138: 28 8c 00 08 lw r12,(r4+8)
800613c: 5d 80 00 26 bne r12,r0,80061d4 <IMFS_eval_path+0x1d4> rtems_set_errno_and_return_minus_one( ENOENT );
8006140: f8 00 13 74 calli 800af10 <__errno> 8006144: 58 2d 00 00 sw (r1+0),r13 8006148: e0 00 00 66 bi 80062e0 <IMFS_eval_path+0x2e0>
case IMFS_NAME: /* * If we are at a link follow it. */ if ( node->type == IMFS_HARD_LINK ) {
800614c: 28 81 00 4c lw r1,(r4+76)
8006150: 5c 2d 00 07 bne r1,r13,800616c <IMFS_eval_path+0x16c> IMFS_evaluate_hard_link( pathloc, 0 );
8006154: b9 60 08 00 mv r1,r11 8006158: 34 02 00 00 mvi r2,0 800615c: fb ff ff 44 calli 8005e6c <IMFS_evaluate_hard_link>
node = pathloc->node_access;
8006160: 29 6c 00 00 lw r12,(r11+0)
if ( !node )
8006164: 5d 80 00 0a bne r12,r0,800618c <IMFS_eval_path+0x18c> <== ALWAYS TAKEN
8006168: e0 00 00 0b bi 8006194 <IMFS_eval_path+0x194> <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( ENOTDIR ); } else if ( node->type == IMFS_SYM_LINK ) { 800616c: 5c 34 00 08 bne r1,r20,800618c <IMFS_eval_path+0x18c> result = IMFS_evaluate_sym_link( pathloc, 0 );
8006170: b9 60 08 00 mv r1,r11 8006174: 34 02 00 00 mvi r2,0 8006178: fb ff ff 5f calli 8005ef4 <IMFS_evaluate_sym_link> 800617c: b8 20 60 00 mv r12,r1
node = pathloc->node_access;
8006180: 29 61 00 00 lw r1,(r11+0)
if ( result == -1 )
8006184: 45 98 00 40 be r12,r24,8006284 <IMFS_eval_path+0x284> <== NEVER TAKEN
} else if ( node->type == IMFS_SYM_LINK ) { result = IMFS_evaluate_sym_link( pathloc, 0 ); node = pathloc->node_access;
8006188: b8 20 60 00 mv r12,r1
/* * Only a directory can be decended into. */ if ( node->type != IMFS_DIRECTORY )
800618c: 29 81 00 4c lw r1,(r12+76)
8006190: 44 35 00 04 be r1,r21,80061a0 <IMFS_eval_path+0x1a0> rtems_set_errno_and_return_minus_one( ENOTDIR );
8006194: f8 00 13 5f calli 800af10 <__errno> 8006198: 34 02 00 14 mvi r2,20 800619c: e0 00 00 50 bi 80062dc <IMFS_eval_path+0x2dc>
/* * If we are at a node that is a mount point. Set loc to the * new fs root node and let them finish evaluating the path. */ if ( node->info.directory.mt_fs != NULL ) {
80061a0: 29 92 00 5c lw r18,(r12+92)
80061a4: 46 40 00 04 be r18,r0,80061b4 <IMFS_eval_path+0x1b4> newloc = node->info.directory.mt_fs->mt_fs_root;
80061a8: 37 8c 00 6c addi r12,sp,108 80061ac: 36 42 00 1c addi r2,r18,28 80061b0: e0 00 00 19 bi 8006214 <IMFS_eval_path+0x214>
/* * Otherwise find the token name in the present location. */ node = IMFS_find_match_in_dir( node, token );
80061b4: b9 80 08 00 mv r1,r12 80061b8: ba c0 10 00 mv r2,r22 80061bc: f8 00 01 ea calli 8006964 <IMFS_find_match_in_dir> 80061c0: b8 20 60 00 mv r12,r1
if ( !node ) 80061c4: 5c 32 00 04 bne r1,r18,80061d4 <IMFS_eval_path+0x1d4> rtems_set_errno_and_return_minus_one( ENOENT );
80061c8: f8 00 13 52 calli 800af10 <__errno> 80061cc: 34 02 00 02 mvi r2,2 80061d0: e0 00 00 43 bi 80062dc <IMFS_eval_path+0x2dc>
/* * Set the node access to the point we have found. */ pathloc->node_access = node;
80061d4: 59 6c 00 00 sw (r11+0),r12 80061d8: e0 00 00 04 bi 80061e8 <IMFS_eval_path+0x1e8>
case IMFS_NO_MORE_PATH: case IMFS_CURRENT_DIR: break; case IMFS_INVALID_TOKEN: rtems_set_errno_and_return_minus_one( ENAMETOOLONG );
80061dc: f8 00 13 4d calli 800af10 <__errno> 80061e0: 34 02 00 5b mvi r2,91 80061e4: e0 00 00 3e bi 80062dc <IMFS_eval_path+0x2dc>
/* * Evaluate all tokens until we are done or an error occurs. */ while( (type != IMFS_NO_MORE_PATH) && (type != IMFS_INVALID_TOKEN) ) {
80061e8: 7d a1 00 00 cmpnei r1,r13,0 80061ec: 7d ad 00 04 cmpnei r13,r13,4 80061f0: a1 a1 68 00 and r13,r13,r1
80061f4: 5d a0 ff a6 bne r13,r0,800608c <IMFS_eval_path+0x8c> * new fs root node and let let the mounted filesystem set the handlers. * * NOTE: The behavior of stat() on a mount point appears to be questionable. */ if ( node->type == IMFS_DIRECTORY ) {
80061f8: 29 82 00 4c lw r2,(r12+76) 80061fc: 34 01 00 01 mvi r1,1
8006200: 5c 41 00 17 bne r2,r1,800625c <IMFS_eval_path+0x25c> if ( node->info.directory.mt_fs != NULL ) {
8006204: 29 83 00 5c lw r3,(r12+92)
8006208: 44 60 00 15 be r3,r0,800625c <IMFS_eval_path+0x25c> newloc = node->info.directory.mt_fs->mt_fs_root;
800620c: 37 8c 00 6c addi r12,sp,108 8006210: 34 62 00 1c addi r2,r3,28 8006214: 34 03 00 14 mvi r3,20 8006218: b9 80 08 00 mv r1,r12 800621c: f8 00 15 e3 calli 800b9a8 <memcpy>
*pathloc = newloc;
8006220: b9 80 10 00 mv r2,r12 8006224: 34 03 00 14 mvi r3,20 8006228: b9 60 08 00 mv r1,r11 800622c: f8 00 15 df calli 800b9a8 <memcpy>
return (*pathloc->ops->evalpath_h)( &pathname[i-len],
8006230: 29 61 00 0c lw r1,(r11+12) 8006234: 2b 82 00 80 lw r2,(sp+128) 8006238: ba 00 18 00 mv r3,r16 800623c: 28 25 00 00 lw r5,(r1+0) 8006240: c9 e2 08 00 sub r1,r15,r2 8006244: b6 21 08 00 add r1,r17,r1 8006248: b5 c2 10 00 add r2,r14,r2 800624c: b9 60 20 00 mv r4,r11 8006250: d8 a0 00 00 call r5 8006254: b8 20 60 00 mv r12,r1 8006258: e0 00 00 0b bi 8006284 <IMFS_eval_path+0x284>
flags, pathloc ); } else { result = IMFS_Set_handlers( pathloc ); } } else { result = IMFS_Set_handlers( pathloc );
800625c: b9 60 08 00 mv r1,r11 8006260: fb ff fe cb calli 8005d8c <IMFS_Set_handlers>
/* * If all of the flags are set we have permission * to do this. */ if ( ( flags_to_test & jnode->st_mode) == flags_to_test )
8006264: 34 02 00 06 mvi r2,6
flags, pathloc ); } else { result = IMFS_Set_handlers( pathloc ); } } else { result = IMFS_Set_handlers( pathloc );
8006268: b8 20 60 00 mv r12,r1
/* * If all of the flags are set we have permission * to do this. */ if ( ( flags_to_test & jnode->st_mode) == flags_to_test )
800626c: ba 00 08 00 mv r1,r16 8006270: fb ff e7 e0 calli 80001f0 <__ashlsi3>
if ( !rtems_libio_is_valid_perms( flags ) ) { assert( 0 ); rtems_set_errno_and_return_minus_one( EIO ); } jnode = node->node_access;
8006274: 29 62 00 00 lw r2,(r11+0) 8006278: 28 42 00 30 lw r2,(r2+48) 800627c: a0 22 10 00 and r2,r1,r2
8006280: 5c 41 00 15 bne r2,r1,80062d4 <IMFS_eval_path+0x2d4> if ( !IMFS_evaluate_permission( pathloc, flags ) ) rtems_set_errno_and_return_minus_one( EACCES ); return result; }
8006284: b9 80 08 00 mv r1,r12 8006288: 2b 9d 00 04 lw ra,(sp+4) 800628c: 2b 8b 00 44 lw r11,(sp+68) 8006290: 2b 8c 00 40 lw r12,(sp+64) 8006294: 2b 8d 00 3c lw r13,(sp+60) 8006298: 2b 8e 00 38 lw r14,(sp+56) 800629c: 2b 8f 00 34 lw r15,(sp+52) 80062a0: 2b 90 00 30 lw r16,(sp+48) 80062a4: 2b 91 00 2c lw r17,(sp+44) 80062a8: 2b 92 00 28 lw r18,(sp+40) 80062ac: 2b 93 00 24 lw r19,(sp+36) 80062b0: 2b 94 00 20 lw r20,(sp+32) 80062b4: 2b 95 00 1c lw r21,(sp+28) 80062b8: 2b 96 00 18 lw r22,(sp+24) 80062bc: 2b 97 00 14 lw r23,(sp+20) 80062c0: 2b 98 00 10 lw r24,(sp+16) 80062c4: 2b 99 00 0c lw r25,(sp+12) 80062c8: 2b 9b 00 08 lw fp,(sp+8) 80062cc: 37 9c 00 80 addi sp,sp,128 80062d0: c3 a0 00 00 ret
/* * Verify we have the correct permissions for this node. */ if ( !IMFS_evaluate_permission( pathloc, flags ) ) rtems_set_errno_and_return_minus_one( EACCES );
80062d4: f8 00 13 0f calli 800af10 <__errno> 80062d8: 34 02 00 0d mvi r2,13 80062dc: 58 22 00 00 sw (r1+0),r2 80062e0: 34 0c ff ff mvi r12,-1 80062e4: e3 ff ff e8 bi 8006284 <IMFS_eval_path+0x284>
080063e4 <IMFS_evaluate_for_make>: int IMFS_evaluate_for_make( const char *path, /* IN */ rtems_filesystem_location_info_t *pathloc, /* IN/OUT */ const char **name /* OUT */ ) {
80063e4: 37 9c ff 80 addi sp,sp,-128 80063e8: 5b 8b 00 44 sw (sp+68),r11 80063ec: 5b 8c 00 40 sw (sp+64),r12 80063f0: 5b 8d 00 3c sw (sp+60),r13 80063f4: 5b 8e 00 38 sw (sp+56),r14 80063f8: 5b 8f 00 34 sw (sp+52),r15 80063fc: 5b 90 00 30 sw (sp+48),r16 8006400: 5b 91 00 2c sw (sp+44),r17 8006404: 5b 92 00 28 sw (sp+40),r18 8006408: 5b 93 00 24 sw (sp+36),r19 800640c: 5b 94 00 20 sw (sp+32),r20 8006410: 5b 95 00 1c sw (sp+28),r21 8006414: 5b 96 00 18 sw (sp+24),r22 8006418: 5b 97 00 14 sw (sp+20),r23 800641c: 5b 98 00 10 sw (sp+16),r24 8006420: 5b 99 00 0c sw (sp+12),r25 8006424: 5b 9b 00 08 sw (sp+8),fp 8006428: 5b 9d 00 04 sw (sp+4),ra
/* * If all of the flags are set we have permission * to do this. */ if ( ( flags_to_test & jnode->st_mode) == flags_to_test )
800642c: 34 1b 00 40 mvi fp,64
int IMFS_evaluate_for_make( const char *path, /* IN */ rtems_filesystem_location_info_t *pathloc, /* IN/OUT */ const char **name /* OUT */ ) {
8006430: b8 40 58 00 mv r11,r2
/* * This was filled in by the caller and is valid in the * mount table. */ node = pathloc->node_access;
8006434: 28 4c 00 00 lw r12,(r2+0)
case IMFS_UP_DIR: /* * Am I at the root of all filesystems? (chroot'ed?) */ if ( pathloc->node_access == rtems_filesystem_root.node_access )
8006438: 78 10 08 01 mvhi r16,0x801
int IMFS_evaluate_for_make( const char *path, /* IN */ rtems_filesystem_location_info_t *pathloc, /* IN/OUT */ const char **name /* OUT */ ) {
800643c: b8 60 88 00 mv r17,r3 8006440: b8 20 78 00 mv r15,r1
node = pathloc->node_access; /* * Get the path length. */ pathlen = strlen( path );
8006444: f8 00 17 83 calli 800c250 <strlen>
case IMFS_UP_DIR: /* * Am I at the root of all filesystems? (chroot'ed?) */ if ( pathloc->node_access == rtems_filesystem_root.node_access )
8006448: 3a 10 c1 10 ori r16,r16,0xc110
node = pathloc->node_access; /* * Get the path length. */ pathlen = strlen( path );
800644c: 34 0d 00 00 mvi r13,0
* Evaluate all tokens until we are done or an error occurs. */ while( !done ) { type = IMFS_get_token( &path[i], pathlen, token, &len );
8006450: 37 99 00 48 addi r25,sp,72
/* * I cannot move out of this directory without execute permission. */ if ( type != IMFS_NO_MORE_PATH ) if ( node->type == IMFS_DIRECTORY )
8006454: 34 18 00 01 mvi r24,1
if ( !IMFS_evaluate_permission( pathloc, RTEMS_LIBIO_PERMS_SEARCH ) ) rtems_set_errno_and_return_minus_one( EACCES ); node = pathloc->node_access; switch( type ) {
8006458: 34 17 00 02 mvi r23,2 800645c: 34 16 00 03 mvi r22,3
result = IMFS_evaluate_link( pathloc, 0 ); if ( result == -1 ) return -1; } else if ( node->type == IMFS_SYM_LINK ) {
8006460: 34 15 00 04 mvi r21,4
result = IMFS_evaluate_link( pathloc, 0 ); if ( result == -1 )
8006464: 34 14 ff ff mvi r20,-1
node = pathloc->node_access; /* * Get the path length. */ pathlen = strlen( path );
8006468: b8 20 98 00 mv r19,r1
* Evaluate all tokens until we are done or an error occurs. */ while( !done ) { type = IMFS_get_token( &path[i], pathlen, token, &len );
800646c: ba 60 10 00 mv r2,r19 8006470: 37 84 00 80 addi r4,sp,128 8006474: b5 ed 08 00 add r1,r15,r13 8006478: bb 20 18 00 mv r3,r25 800647c: f8 00 01 68 calli 8006a1c <IMFS_get_token>
pathlen -= len; i += len; if ( !pathloc->node_access )
8006480: 29 64 00 00 lw r4,(r11+0)
*/ while( !done ) { type = IMFS_get_token( &path[i], pathlen, token, &len ); pathlen -= len;
8006484: 2b 92 00 80 lw r18,(sp+128)
* Evaluate all tokens until we are done or an error occurs. */ while( !done ) { type = IMFS_get_token( &path[i], pathlen, token, &len );
8006488: b8 20 70 00 mv r14,r1
pathlen -= len;
800648c: ca 72 98 00 sub r19,r19,r18
i += len; if ( !pathloc->node_access )
8006490: 44 80 00 5e be r4,r0,8006608 <IMFS_evaluate_for_make+0x224><== NEVER TAKEN
/* * I cannot move out of this directory without execute permission. */ if ( type != IMFS_NO_MORE_PATH ) 8006494: 44 20 00 06 be r1,r0,80064ac <IMFS_evaluate_for_make+0xc8> if ( node->type == IMFS_DIRECTORY )
8006498: 29 81 00 4c lw r1,(r12+76)
800649c: 5c 38 00 04 bne r1,r24,80064ac <IMFS_evaluate_for_make+0xc8> /* * If all of the flags are set we have permission * to do this. */ if ( ( flags_to_test & jnode->st_mode) == flags_to_test )
80064a0: 28 81 00 30 lw r1,(r4+48) 80064a4: 20 21 00 40 andi r1,r1,0x40
80064a8: 5c 3b 00 80 bne r1,fp,80066a8 <IMFS_evaluate_for_make+0x2c4> while( !done ) { type = IMFS_get_token( &path[i], pathlen, token, &len ); pathlen -= len; i += len;
80064ac: b5 b2 68 00 add r13,r13,r18
if ( type != IMFS_NO_MORE_PATH ) if ( node->type == IMFS_DIRECTORY ) if ( !IMFS_evaluate_permission( pathloc, RTEMS_LIBIO_PERMS_SEARCH ) ) rtems_set_errno_and_return_minus_one( EACCES ); node = pathloc->node_access;
80064b0: b8 80 60 00 mv r12,r4
switch( type ) { 80064b4: 45 d7 00 07 be r14,r23,80064d0 <IMFS_evaluate_for_make+0xec> 80064b8: 55 d7 00 03 bgu r14,r23,80064c4 <IMFS_evaluate_for_make+0xe0> 80064bc: 5d c0 ff ec bne r14,r0,800646c <IMFS_evaluate_for_make+0x88>
80064c0: e0 00 00 44 bi 80065d0 <IMFS_evaluate_for_make+0x1ec>
80064c4: 45 d6 00 1d be r14,r22,8006538 <IMFS_evaluate_for_make+0x154>
80064c8: 5d d5 ff e9 bne r14,r21,800646c <IMFS_evaluate_for_make+0x88><== NEVER TAKEN
80064cc: e0 00 00 44 bi 80065dc <IMFS_evaluate_for_make+0x1f8>
case IMFS_UP_DIR: /* * Am I at the root of all filesystems? (chroot'ed?) */ if ( pathloc->node_access == rtems_filesystem_root.node_access )
80064d0: 2a 01 00 00 lw r1,(r16+0) 80064d4: 28 21 00 18 lw r1,(r1+24)
80064d8: 44 81 ff e5 be r4,r1,800646c <IMFS_evaluate_for_make+0x88> /* * Am I at the root of this mounted filesystem? */ if (pathloc->node_access == pathloc->mt_entry->mt_fs_root.node_access){
80064dc: 29 65 00 10 lw r5,(r11+16) 80064e0: 28 a1 00 1c lw r1,(r5+28)
80064e4: 5c 81 00 10 bne r4,r1,8006524 <IMFS_evaluate_for_make+0x140> if ( pathloc->node_access == rtems_filesystem_root.node_access ) { break; } else { newloc = pathloc->mt_entry->mt_point_node;
80064e8: 37 8c 00 6c addi r12,sp,108 80064ec: 34 a2 00 08 addi r2,r5,8 80064f0: 34 03 00 14 mvi r3,20 80064f4: b9 80 08 00 mv r1,r12 80064f8: f8 00 15 2c calli 800b9a8 <memcpy>
*pathloc = newloc;
80064fc: b9 80 10 00 mv r2,r12 8006500: b9 60 08 00 mv r1,r11 8006504: 34 03 00 14 mvi r3,20 8006508: f8 00 15 28 calli 800b9a8 <memcpy>
return (*pathloc->ops->evalformake_h)( &path[i-len], pathloc, name );
800650c: 29 62 00 0c lw r2,(r11+12) 8006510: c9 b2 68 00 sub r13,r13,r18 8006514: b5 ed 08 00 add r1,r15,r13 8006518: 28 44 00 04 lw r4,(r2+4) 800651c: b9 60 10 00 mv r2,r11 8006520: e0 00 00 22 bi 80065a8 <IMFS_evaluate_for_make+0x1c4>
} } else { if ( !node->Parent )
8006524: 28 8c 00 08 lw r12,(r4+8)
8006528: 5d 80 00 28 bne r12,r0,80065c8 <IMFS_evaluate_for_make+0x1e4> rtems_set_errno_and_return_minus_one( ENOENT );
800652c: f8 00 12 79 calli 800af10 <__errno> 8006530: 58 2e 00 00 sw (r1+0),r14 8006534: e0 00 00 60 bi 80066b4 <IMFS_evaluate_for_make+0x2d0>
pathloc->node_access = node; break; case IMFS_NAME: if ( node->type == IMFS_HARD_LINK ) {
8006538: 28 81 00 4c lw r1,(r4+76)
800653c: 44 36 00 02 be r1,r22,8006544 <IMFS_evaluate_for_make+0x160> result = IMFS_evaluate_link( pathloc, 0 ); if ( result == -1 ) return -1; } else if ( node->type == IMFS_SYM_LINK ) { 8006540: 5c 35 00 05 bne r1,r21,8006554 <IMFS_evaluate_for_make+0x170> result = IMFS_evaluate_link( pathloc, 0 );
8006544: b9 60 08 00 mv r1,r11 8006548: 34 02 00 00 mvi r2,0 800654c: fb ff ff 67 calli 80062e8 <IMFS_evaluate_link>
if ( result == -1 )
8006550: 44 34 00 43 be r1,r20,800665c <IMFS_evaluate_for_make+0x278><== NEVER TAKEN
return -1; } node = pathloc->node_access;
8006554: 29 64 00 00 lw r4,(r11+0)
if ( !node )
8006558: 44 80 00 3a be r4,r0,8006640 <IMFS_evaluate_for_make+0x25c><== NEVER TAKEN
/* * Only a directory can be decended into. */ if ( node->type != IMFS_DIRECTORY )
800655c: 28 81 00 4c lw r1,(r4+76)
8006560: 5c 38 00 38 bne r1,r24,8006640 <IMFS_evaluate_for_make+0x25c> /* * If we are at a node that is a mount point. Set loc to the * new fs root node and let them finish evaluating the path. */ if ( node->info.directory.mt_fs != NULL ) {
8006564: 28 8e 00 5c lw r14,(r4+92)
8006568: 45 c0 00 13 be r14,r0,80065b4 <IMFS_evaluate_for_make+0x1d0> newloc = node->info.directory.mt_fs->mt_fs_root;
800656c: 37 8c 00 6c addi r12,sp,108 8006570: 35 c2 00 1c addi r2,r14,28 8006574: 34 03 00 14 mvi r3,20 8006578: b9 80 08 00 mv r1,r12 800657c: f8 00 15 0b calli 800b9a8 <memcpy>
*pathloc = newloc;
8006580: b9 80 10 00 mv r2,r12 8006584: b9 60 08 00 mv r1,r11 8006588: 34 03 00 14 mvi r3,20 800658c: f8 00 15 07 calli 800b9a8 <memcpy>
return (*pathloc->ops->evalformake_h)( &path[i-len], pathloc, name );
8006590: 29 61 00 0c lw r1,(r11+12) 8006594: b9 60 10 00 mv r2,r11 8006598: 28 24 00 04 lw r4,(r1+4) 800659c: 2b 81 00 80 lw r1,(sp+128) 80065a0: c9 a1 68 00 sub r13,r13,r1 80065a4: b5 ed 08 00 add r1,r15,r13 80065a8: ba 20 18 00 mv r3,r17 80065ac: d8 80 00 00 call r4 80065b0: e0 00 00 2b bi 800665c <IMFS_evaluate_for_make+0x278>
/* * Otherwise find the token name in the present location. */ node = IMFS_find_match_in_dir( node, token );
80065b4: b8 80 08 00 mv r1,r4 80065b8: bb 20 10 00 mv r2,r25 80065bc: f8 00 00 ea calli 8006964 <IMFS_find_match_in_dir> 80065c0: b8 20 60 00 mv r12,r1
/* * If there is no node we have found the name of the node we * wish to create. */ if ( ! node ) 80065c4: 44 2e 00 09 be r1,r14,80065e8 <IMFS_evaluate_for_make+0x204> done = true; else pathloc->node_access = node;
80065c8: 59 6c 00 00 sw (r11+0),r12 80065cc: e3 ff ff a8 bi 800646c <IMFS_evaluate_for_make+0x88>
break; case IMFS_NO_MORE_PATH: rtems_set_errno_and_return_minus_one( EEXIST );
80065d0: f8 00 12 50 calli 800af10 <__errno> 80065d4: 34 02 00 11 mvi r2,17 80065d8: e0 00 00 36 bi 80066b0 <IMFS_evaluate_for_make+0x2cc>
break; case IMFS_INVALID_TOKEN: rtems_set_errno_and_return_minus_one( ENAMETOOLONG );
80065dc: f8 00 12 4d calli 800af10 <__errno> 80065e0: 34 02 00 5b mvi r2,91 80065e4: e0 00 00 33 bi 80066b0 <IMFS_evaluate_for_make+0x2cc>
case IMFS_CURRENT_DIR: break; } } *name = &path[ i - len ];
80065e8: 2b 82 00 80 lw r2,(sp+128) 80065ec: b5 ed 08 00 add r1,r15,r13 80065f0: c9 a2 68 00 sub r13,r13,r2 80065f4: b5 ed 78 00 add r15,r15,r13 80065f8: 5a 2f 00 00 sw (r17+0),r15
/* * We have evaluated the path as far as we can. * Verify there is not any invalid stuff at the end of the name. */ for( ; path[i] != '\0'; i++) {
80065fc: e0 00 00 06 bi 8006614 <IMFS_evaluate_for_make+0x230>
if ( !IMFS_is_separator( path[ i ] ) )
8006600: a0 64 18 00 and r3,r3,r4
8006604: 44 60 00 04 be r3,r0,8006614 <IMFS_evaluate_for_make+0x230> rtems_set_errno_and_return_minus_one( ENOENT );
8006608: f8 00 12 42 calli 800af10 <__errno> 800660c: 34 02 00 02 mvi r2,2 8006610: e0 00 00 28 bi 80066b0 <IMFS_evaluate_for_make+0x2cc>
/* * We have evaluated the path as far as we can. * Verify there is not any invalid stuff at the end of the name. */ for( ; path[i] != '\0'; i++) {
8006614: 40 22 00 00 lbu r2,(r1+0) 8006618: 34 21 00 01 addi r1,r1,1
if ( !IMFS_is_separator( path[ i ] ) )
800661c: 7c 44 00 2f cmpnei r4,r2,47 8006620: 7c 43 00 5c cmpnei r3,r2,92
/* * We have evaluated the path as far as we can. * Verify there is not any invalid stuff at the end of the name. */ for( ; path[i] != '\0'; i++) { 8006624: 5c 40 ff f7 bne r2,r0,8006600 <IMFS_evaluate_for_make+0x21c> /* * Verify we can execute and write to this directory. */ result = IMFS_Set_handlers( pathloc );
8006628: b9 60 08 00 mv r1,r11 800662c: fb ff fd d8 calli 8005d8c <IMFS_Set_handlers>
/* * The returned node must be a directory */ node = pathloc->node_access;
8006630: 29 62 00 00 lw r2,(r11+0)
if ( node->type != IMFS_DIRECTORY )
8006634: 34 03 00 01 mvi r3,1 8006638: 28 44 00 4c lw r4,(r2+76)
800663c: 44 83 00 04 be r4,r3,800664c <IMFS_evaluate_for_make+0x268><== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( ENOTDIR );
8006640: f8 00 12 34 calli 800af10 <__errno> 8006644: 34 02 00 14 mvi r2,20 8006648: e0 00 00 1a bi 80066b0 <IMFS_evaluate_for_make+0x2cc>
/* * If all of the flags are set we have permission * to do this. */ if ( ( flags_to_test & jnode->st_mode) == flags_to_test )
800664c: 28 43 00 30 lw r3,(r2+48) 8006650: 34 02 00 c0 mvi r2,192 8006654: 20 63 00 c0 andi r3,r3,0xc0
8006658: 5c 62 00 14 bne r3,r2,80066a8 <IMFS_evaluate_for_make+0x2c4> if ( !IMFS_evaluate_permission( pathloc, RTEMS_LIBIO_PERMS_WX ) ) rtems_set_errno_and_return_minus_one( EACCES ); return result; }
800665c: 2b 9d 00 04 lw ra,(sp+4) 8006660: 2b 8b 00 44 lw r11,(sp+68) 8006664: 2b 8c 00 40 lw r12,(sp+64) 8006668: 2b 8d 00 3c lw r13,(sp+60) 800666c: 2b 8e 00 38 lw r14,(sp+56) 8006670: 2b 8f 00 34 lw r15,(sp+52) 8006674: 2b 90 00 30 lw r16,(sp+48) 8006678: 2b 91 00 2c lw r17,(sp+44) 800667c: 2b 92 00 28 lw r18,(sp+40) 8006680: 2b 93 00 24 lw r19,(sp+36) 8006684: 2b 94 00 20 lw r20,(sp+32) 8006688: 2b 95 00 1c lw r21,(sp+28) 800668c: 2b 96 00 18 lw r22,(sp+24) 8006690: 2b 97 00 14 lw r23,(sp+20) 8006694: 2b 98 00 10 lw r24,(sp+16) 8006698: 2b 99 00 0c lw r25,(sp+12) 800669c: 2b 9b 00 08 lw fp,(sp+8) 80066a0: 37 9c 00 80 addi sp,sp,128 80066a4: c3 a0 00 00 ret
*/ if ( type != IMFS_NO_MORE_PATH ) if ( node->type == IMFS_DIRECTORY ) if ( !IMFS_evaluate_permission( pathloc, RTEMS_LIBIO_PERMS_SEARCH ) ) rtems_set_errno_and_return_minus_one( EACCES );
80066a8: f8 00 12 1a calli 800af10 <__errno> 80066ac: 34 02 00 0d mvi r2,13 80066b0: 58 22 00 00 sw (r1+0),r2 80066b4: 34 01 ff ff mvi r1,-1 80066b8: e3 ff ff e9 bi 800665c <IMFS_evaluate_for_make+0x278>
08005e6c <IMFS_evaluate_hard_link>: int IMFS_evaluate_hard_link( rtems_filesystem_location_info_t *node, /* IN/OUT */ int flags /* IN */ ) {
8005e6c: 37 9c ff f4 addi sp,sp,-12 8005e70: 5b 8b 00 0c sw (sp+12),r11 8005e74: 5b 8c 00 08 sw (sp+8),r12 8005e78: 5b 9d 00 04 sw (sp+4),ra
IMFS_jnode_t *jnode = node->node_access;
8005e7c: 28 23 00 00 lw r3,(r1+0)
int IMFS_evaluate_hard_link( rtems_filesystem_location_info_t *node, /* IN/OUT */ int flags /* IN */ ) {
8005e80: b8 40 60 00 mv r12,r2
/* * Check for things that should never happen. */ if ( jnode->type != IMFS_HARD_LINK )
8005e84: 34 02 00 03 mvi r2,3 8005e88: 28 64 00 4c lw r4,(r3+76)
int IMFS_evaluate_hard_link( rtems_filesystem_location_info_t *node, /* IN/OUT */ int flags /* IN */ ) {
8005e8c: b8 20 58 00 mv r11,r1
/* * Check for things that should never happen. */ if ( jnode->type != IMFS_HARD_LINK )
8005e90: 44 82 00 04 be r4,r2,8005ea0 <IMFS_evaluate_hard_link+0x34><== ALWAYS TAKEN
rtems_fatal_error_occurred (0xABCD0000);
8005e94: 78 01 ab cd mvhi r1,0xabcd <== NOT EXECUTED 8005e98: 38 21 00 00 ori r1,r1,0x0 <== NOT EXECUTED 8005e9c: fb ff f2 01 calli 80026a0 <rtems_fatal_error_occurred> <== NOT EXECUTED
/* * Set the hard link value and the handlers. */ node->node_access = jnode->info.hard_link.link_node;
8005ea0: 28 63 00 50 lw r3,(r3+80) 8005ea4: 58 23 00 00 sw (r1+0),r3
IMFS_Set_handlers( node );
8005ea8: fb ff ff b9 calli 8005d8c <IMFS_Set_handlers>
/* * If all of the flags are set we have permission * to do this. */ if ( ( flags_to_test & jnode->st_mode) == flags_to_test )
8005eac: 34 02 00 06 mvi r2,6 8005eb0: b9 80 08 00 mv r1,r12 8005eb4: fb ff e8 cf calli 80001f0 <__ashlsi3>
if ( !rtems_libio_is_valid_perms( flags ) ) { assert( 0 ); rtems_set_errno_and_return_minus_one( EIO ); } jnode = node->node_access;
8005eb8: 29 62 00 00 lw r2,(r11+0) 8005ebc: 28 42 00 30 lw r2,(r2+48) 8005ec0: a0 22 10 00 and r2,r1,r2
8005ec4: 5c 41 00 07 bne r2,r1,8005ee0 <IMFS_evaluate_hard_link+0x74><== NEVER TAKEN
8005ec8: 34 01 00 00 mvi r1,0
if ( !IMFS_evaluate_permission( node, flags ) ) rtems_set_errno_and_return_minus_one( EACCES ); return result; }
8005ecc: 2b 9d 00 04 lw ra,(sp+4) 8005ed0: 2b 8b 00 0c lw r11,(sp+12) 8005ed4: 2b 8c 00 08 lw r12,(sp+8) 8005ed8: 37 9c 00 0c addi sp,sp,12 8005edc: c3 a0 00 00 ret
/* * Verify we have the correct permissions for this node. */ if ( !IMFS_evaluate_permission( node, flags ) ) rtems_set_errno_and_return_minus_one( EACCES );
8005ee0: f8 00 14 0c calli 800af10 <__errno> <== NOT EXECUTED 8005ee4: 34 02 00 0d mvi r2,13 <== NOT EXECUTED 8005ee8: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 8005eec: 34 01 ff ff mvi r1,-1 <== NOT EXECUTED 8005ef0: e3 ff ff f7 bi 8005ecc <IMFS_evaluate_hard_link+0x60> <== NOT EXECUTED
08005e30 <IMFS_evaluate_permission>: int IMFS_evaluate_permission( rtems_filesystem_location_info_t *node, int flags ) {
8005e30: 37 9c ff f8 addi sp,sp,-8 <== NOT EXECUTED 8005e34: 5b 8b 00 08 sw (sp+8),r11 <== NOT EXECUTED 8005e38: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED 8005e3c: b8 20 58 00 mv r11,r1 <== NOT EXECUTED
/* * If all of the flags are set we have permission * to do this. */ if ( ( flags_to_test & jnode->st_mode) == flags_to_test )
8005e40: b8 40 08 00 mv r1,r2 <== NOT EXECUTED 8005e44: 34 02 00 06 mvi r2,6 <== NOT EXECUTED 8005e48: fb ff e8 ea calli 80001f0 <__ashlsi3> <== NOT EXECUTED 8005e4c: 29 62 00 00 lw r2,(r11+0) <== NOT EXECUTED 8005e50: 28 42 00 30 lw r2,(r2+48) <== NOT EXECUTED 8005e54: a0 22 10 00 and r2,r1,r2 <== NOT EXECUTED
return 1; return 0; }
8005e58: e4 41 08 00 cmpe r1,r2,r1 <== NOT EXECUTED 8005e5c: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8005e60: 2b 8b 00 08 lw r11,(sp+8) <== NOT EXECUTED 8005e64: 37 9c 00 08 addi sp,sp,8 <== NOT EXECUTED 8005e68: c3 a0 00 00 ret <== NOT EXECUTED
08005ef4 <IMFS_evaluate_sym_link>: int IMFS_evaluate_sym_link( rtems_filesystem_location_info_t *node, /* IN/OUT */ int flags /* IN */ ) {
8005ef4: 37 9c ff f0 addi sp,sp,-16 8005ef8: 5b 8b 00 10 sw (sp+16),r11 8005efc: 5b 8c 00 0c sw (sp+12),r12 8005f00: 5b 8d 00 08 sw (sp+8),r13 8005f04: 5b 9d 00 04 sw (sp+4),ra
IMFS_jnode_t *jnode = node->node_access;
8005f08: 28 2c 00 00 lw r12,(r1+0)
int IMFS_evaluate_sym_link( rtems_filesystem_location_info_t *node, /* IN/OUT */ int flags /* IN */ ) {
8005f0c: b8 40 68 00 mv r13,r2 8005f10: b8 20 58 00 mv r11,r1
/* * Check for things that should never happen. */ if ( jnode->type != IMFS_SYM_LINK )
8005f14: 29 82 00 4c lw r2,(r12+76) 8005f18: 34 01 00 04 mvi r1,4
8005f1c: 44 41 00 04 be r2,r1,8005f2c <IMFS_evaluate_sym_link+0x38> <== ALWAYS TAKEN
rtems_fatal_error_occurred (0xABCD0000);
8005f20: 78 01 ab cd mvhi r1,0xabcd <== NOT EXECUTED 8005f24: 38 21 00 00 ori r1,r1,0x0 <== NOT EXECUTED 8005f28: e0 00 00 05 bi 8005f3c <IMFS_evaluate_sym_link+0x48> <== NOT EXECUTED
if ( !jnode->Parent )
8005f2c: 29 81 00 08 lw r1,(r12+8)
8005f30: 5c 20 00 04 bne r1,r0,8005f40 <IMFS_evaluate_sym_link+0x4c><== ALWAYS TAKEN
rtems_fatal_error_occurred( 0xBAD00000 );
8005f34: 78 01 ba d0 mvhi r1,0xbad0 <== NOT EXECUTED 8005f38: 38 21 00 00 ori r1,r1,0x0 <== NOT EXECUTED 8005f3c: fb ff f1 d9 calli 80026a0 <rtems_fatal_error_occurred> <== NOT EXECUTED
/* * Move the node_access to either the symbolic links parent or * root depending on the symbolic links path. */ node->node_access = jnode->Parent;
8005f40: 59 61 00 00 sw (r11+0),r1
rtems_filesystem_get_sym_start_loc(
8005f44: 29 81 00 50 lw r1,(r12+80) 8005f48: 40 25 00 00 lbu r5,(r1+0) 8005f4c: 64 a4 00 5c cmpei r4,r5,92 8005f50: 64 a1 00 2f cmpei r1,r5,47 8005f54: b8 81 20 00 or r4,r4,r1
8005f58: 5c 80 00 03 bne r4,r0,8005f64 <IMFS_evaluate_sym_link+0x70>
8005f5c: b8 80 08 00 mv r1,r4
8005f60: 5c a4 00 09 bne r5,r4,8005f84 <IMFS_evaluate_sym_link+0x90><== ALWAYS TAKEN
8005f64: 78 04 08 01 mvhi r4,0x801 8005f68: 38 84 c1 10 ori r4,r4,0xc110 8005f6c: 28 82 00 00 lw r2,(r4+0) 8005f70: b9 60 08 00 mv r1,r11 8005f74: 34 03 00 14 mvi r3,20 8005f78: 34 42 00 18 addi r2,r2,24 8005f7c: f8 00 16 8b calli 800b9a8 <memcpy> 8005f80: 34 01 00 01 mvi r1,1
* Use eval path to evaluate the path of the symbolic link. */ result = IMFS_eval_path( &jnode->info.sym_link.name[i], strlen( &jnode->info.sym_link.name[i] ),
8005f84: 29 8c 00 50 lw r12,(r12+80) 8005f88: b5 81 60 00 add r12,r12,r1 8005f8c: b9 80 08 00 mv r1,r12 8005f90: f8 00 18 b0 calli 800c250 <strlen> 8005f94: b8 20 10 00 mv r2,r1
/* * Use eval path to evaluate the path of the symbolic link. */ result = IMFS_eval_path(
8005f98: b9 a0 18 00 mv r3,r13 8005f9c: b9 60 20 00 mv r4,r11 8005fa0: b9 80 08 00 mv r1,r12 8005fa4: f8 00 00 17 calli 8006000 <IMFS_eval_path> 8005fa8: b8 20 60 00 mv r12,r1
strlen( &jnode->info.sym_link.name[i] ), flags, node ); IMFS_Set_handlers( node );
8005fac: b9 60 08 00 mv r1,r11 8005fb0: fb ff ff 77 calli 8005d8c <IMFS_Set_handlers>
/* * If all of the flags are set we have permission * to do this. */ if ( ( flags_to_test & jnode->st_mode) == flags_to_test )
8005fb4: 34 02 00 06 mvi r2,6 8005fb8: b9 a0 08 00 mv r1,r13 8005fbc: fb ff e8 8d calli 80001f0 <__ashlsi3>
if ( !rtems_libio_is_valid_perms( flags ) ) { assert( 0 ); rtems_set_errno_and_return_minus_one( EIO ); } jnode = node->node_access;
8005fc0: 29 62 00 00 lw r2,(r11+0) 8005fc4: 28 42 00 30 lw r2,(r2+48) 8005fc8: a0 22 10 00 and r2,r1,r2
8005fcc: 5c 41 00 08 bne r2,r1,8005fec <IMFS_evaluate_sym_link+0xf8><== NEVER TAKEN
if ( !IMFS_evaluate_permission( node, flags ) ) rtems_set_errno_and_return_minus_one( EACCES ); return result; }
8005fd0: b9 80 08 00 mv r1,r12 8005fd4: 2b 9d 00 04 lw ra,(sp+4) 8005fd8: 2b 8b 00 10 lw r11,(sp+16) 8005fdc: 2b 8c 00 0c lw r12,(sp+12) 8005fe0: 2b 8d 00 08 lw r13,(sp+8) 8005fe4: 37 9c 00 10 addi sp,sp,16 8005fe8: c3 a0 00 00 ret
/* * Verify we have the correct permissions for this node. */ if ( !IMFS_evaluate_permission( node, flags ) ) rtems_set_errno_and_return_minus_one( EACCES );
8005fec: f8 00 13 c9 calli 800af10 <__errno> <== NOT EXECUTED 8005ff0: 34 02 00 0d mvi r2,13 <== NOT EXECUTED 8005ff4: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 8005ff8: 34 0c ff ff mvi r12,-1 <== NOT EXECUTED 8005ffc: e3 ff ff f5 bi 8005fd0 <IMFS_evaluate_sym_link+0xdc> <== NOT EXECUTED
0800688c <IMFS_fifo_close>: } int IMFS_fifo_close( rtems_libio_t *iop ) {
800688c: 37 9c ff f0 addi sp,sp,-16 <== NOT EXECUTED 8006890: 5b 8b 00 10 sw (sp+16),r11 <== NOT EXECUTED 8006894: 5b 8c 00 0c sw (sp+12),r12 <== NOT EXECUTED 8006898: 5b 8d 00 08 sw (sp+8),r13 <== NOT EXECUTED 800689c: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
IMFS_jnode_t *jnode = iop->file_info;
80068a0: 28 2d 00 3c lw r13,(r1+60) <== NOT EXECUTED
int err = pipe_release(&JNODE2PIPE(jnode), iop);
80068a4: b8 20 10 00 mv r2,r1 <== NOT EXECUTED
} int IMFS_fifo_close( rtems_libio_t *iop ) {
80068a8: b8 20 60 00 mv r12,r1 <== NOT EXECUTED
IMFS_jnode_t *jnode = iop->file_info; int err = pipe_release(&JNODE2PIPE(jnode), iop);
80068ac: 35 a1 00 50 addi r1,r13,80 <== NOT EXECUTED 80068b0: f8 00 0b d1 calli 80097f4 <pipe_release> <== NOT EXECUTED 80068b4: b8 20 58 00 mv r11,r1 <== NOT EXECUTED
if (! err) {
80068b8: 5c 20 00 0d bne r1,r0,80068ec <IMFS_fifo_close+0x60> <== NOT EXECUTED
iop->flags &= ~LIBIO_FLAGS_OPEN;
80068bc: 29 83 00 18 lw r3,(r12+24) <== NOT EXECUTED 80068c0: 34 02 fe ff mvi r2,-257 <== NOT EXECUTED
/* Free jnode if file is already unlinked and no one opens it */ if (! rtems_libio_is_file_open(jnode) && jnode->st_nlink < 1)
80068c4: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED
IMFS_jnode_t *jnode = iop->file_info; int err = pipe_release(&JNODE2PIPE(jnode), iop); if (! err) { iop->flags &= ~LIBIO_FLAGS_OPEN;
80068c8: a0 62 10 00 and r2,r3,r2 <== NOT EXECUTED 80068cc: 59 82 00 18 sw (r12+24),r2 <== NOT EXECUTED
/* Free jnode if file is already unlinked and no one opens it */ if (! rtems_libio_is_file_open(jnode) && jnode->st_nlink < 1)
80068d0: f8 00 02 ae calli 8007388 <rtems_libio_is_file_open> <== NOT EXECUTED 80068d4: 5c 2b 00 0b bne r1,r11,8006900 <IMFS_fifo_close+0x74> <== NOT EXECUTED 80068d8: 2d a1 00 34 lhu r1,(r13+52) <== NOT EXECUTED 80068dc: 5c 20 00 09 bne r1,r0,8006900 <IMFS_fifo_close+0x74> <== NOT EXECUTED
free(jnode);
80068e0: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 80068e4: f8 00 01 d8 calli 8007044 <free> <== NOT EXECUTED 80068e8: e0 00 00 06 bi 8006900 <IMFS_fifo_close+0x74> <== NOT EXECUTED
} IMFS_FIFO_RETURN(err);
80068ec: 4c 20 00 05 bge r1,r0,8006900 <IMFS_fifo_close+0x74> <== NOT EXECUTED 80068f0: c8 0b 58 00 sub r11,r0,r11 <== NOT EXECUTED 80068f4: f8 00 11 87 calli 800af10 <__errno> <== NOT EXECUTED 80068f8: 58 2b 00 00 sw (r1+0),r11 <== NOT EXECUTED 80068fc: 34 0b ff ff mvi r11,-1 <== NOT EXECUTED
}
8006900: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8006904: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8006908: 2b 8b 00 10 lw r11,(sp+16) <== NOT EXECUTED 800690c: 2b 8c 00 0c lw r12,(sp+12) <== NOT EXECUTED 8006910: 2b 8d 00 08 lw r13,(sp+8) <== NOT EXECUTED 8006914: 37 9c 00 10 addi sp,sp,16 <== NOT EXECUTED 8006918: c3 a0 00 00 ret <== NOT EXECUTED
08006728 <IMFS_fifo_ioctl>: int IMFS_fifo_ioctl( rtems_libio_t *iop, uint32_t command, void *buffer ) {
8006728: 37 9c ff f8 addi sp,sp,-8 <== NOT EXECUTED 800672c: 5b 8b 00 08 sw (sp+8),r11 <== NOT EXECUTED 8006730: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
int err; if (command == FIONBIO) {
8006734: 78 04 80 04 mvhi r4,0x8004 <== NOT EXECUTED 8006738: 38 84 66 7e ori r4,r4,0x667e <== NOT EXECUTED 800673c: 5c 44 00 0e bne r2,r4,8006774 <IMFS_fifo_ioctl+0x4c> <== NOT EXECUTED
if (buffer == NULL)
8006740: 34 0b ff f2 mvi r11,-14 <== NOT EXECUTED 8006744: 44 60 00 12 be r3,r0,800678c <IMFS_fifo_ioctl+0x64> <== NOT EXECUTED
err = -EFAULT; else { if (*(int *)buffer)
8006748: 28 6b 00 00 lw r11,(r3+0) <== NOT EXECUTED 800674c: 28 22 00 18 lw r2,(r1+24) <== NOT EXECUTED 8006750: 45 60 00 05 be r11,r0,8006764 <IMFS_fifo_ioctl+0x3c> <== NOT EXECUTED
iop->flags |= LIBIO_FLAGS_NO_DELAY;
8006754: 38 42 00 01 ori r2,r2,0x1 <== NOT EXECUTED 8006758: 58 22 00 18 sw (r1+24),r2 <== NOT EXECUTED 800675c: 34 0b 00 00 mvi r11,0 <== NOT EXECUTED 8006760: e0 00 00 0f bi 800679c <IMFS_fifo_ioctl+0x74> <== NOT EXECUTED
else iop->flags &= ~LIBIO_FLAGS_NO_DELAY;
8006764: 34 03 ff fe mvi r3,-2 <== NOT EXECUTED 8006768: a0 43 10 00 and r2,r2,r3 <== NOT EXECUTED 800676c: 58 22 00 18 sw (r1+24),r2 <== NOT EXECUTED 8006770: e0 00 00 0b bi 800679c <IMFS_fifo_ioctl+0x74> <== NOT EXECUTED
return 0; } } else err = pipe_ioctl(LIBIO2PIPE(iop), command, buffer, iop);
8006774: 28 25 00 3c lw r5,(r1+60) <== NOT EXECUTED 8006778: b8 20 20 00 mv r4,r1 <== NOT EXECUTED 800677c: 28 a1 00 50 lw r1,(r5+80) <== NOT EXECUTED 8006780: f8 00 0b 0d calli 80093b4 <pipe_ioctl> <== NOT EXECUTED 8006784: b8 20 58 00 mv r11,r1 <== NOT EXECUTED
IMFS_FIFO_RETURN(err);
8006788: 4c 20 00 05 bge r1,r0,800679c <IMFS_fifo_ioctl+0x74> <== NOT EXECUTED 800678c: c8 0b 58 00 sub r11,r0,r11 <== NOT EXECUTED 8006790: f8 00 11 e0 calli 800af10 <__errno> <== NOT EXECUTED 8006794: 58 2b 00 00 sw (r1+0),r11 <== NOT EXECUTED 8006798: 34 0b ff ff mvi r11,-1 <== NOT EXECUTED
}
800679c: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 80067a0: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 80067a4: 2b 8b 00 08 lw r11,(sp+8) <== NOT EXECUTED 80067a8: 37 9c 00 08 addi sp,sp,8 <== NOT EXECUTED 80067ac: c3 a0 00 00 ret <== NOT EXECUTED
080066bc <IMFS_fifo_lseek>: rtems_off64_t IMFS_fifo_lseek( rtems_libio_t *iop, rtems_off64_t offset, int whence ) {
80066bc: 37 9c ff f8 addi sp,sp,-8 <== NOT EXECUTED 80066c0: 5b 8b 00 08 sw (sp+8),r11 <== NOT EXECUTED 80066c4: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED 80066c8: b8 20 28 00 mv r5,r1 <== NOT EXECUTED
off_t err = pipe_lseek(LIBIO2PIPE(iop), offset, whence, iop);
80066cc: 28 21 00 3c lw r1,(r1+60) <== NOT EXECUTED 80066d0: b8 60 10 00 mv r2,r3 <== NOT EXECUTED 80066d4: b8 80 18 00 mv r3,r4 <== NOT EXECUTED 80066d8: 28 21 00 50 lw r1,(r1+80) <== NOT EXECUTED 80066dc: b8 a0 20 00 mv r4,r5 <== NOT EXECUTED 80066e0: f8 00 0b 18 calli 8009340 <pipe_lseek> <== NOT EXECUTED 80066e4: b8 20 58 00 mv r11,r1 <== NOT EXECUTED
IMFS_FIFO_RETURN(err);
80066e8: 4c 20 00 07 bge r1,r0,8006704 <IMFS_fifo_lseek+0x48> <== NOT EXECUTED 80066ec: f8 00 12 09 calli 800af10 <__errno> <== NOT EXECUTED 80066f0: c8 0b 58 00 sub r11,r0,r11 <== NOT EXECUTED 80066f4: 34 03 ff ff mvi r3,-1 <== NOT EXECUTED 80066f8: 58 2b 00 00 sw (r1+0),r11 <== NOT EXECUTED 80066fc: b8 60 58 00 mv r11,r3 <== NOT EXECUTED 8006700: e0 00 00 04 bi 8006710 <IMFS_fifo_lseek+0x54> <== NOT EXECUTED 8006704: 34 02 00 1f mvi r2,31 <== NOT EXECUTED 8006708: fb ff e7 0a calli 8000330 <__ashrsi3> <== NOT EXECUTED 800670c: b8 20 18 00 mv r3,r1 <== NOT EXECUTED
}
8006710: b8 60 08 00 mv r1,r3 <== NOT EXECUTED 8006714: b9 60 10 00 mv r2,r11 <== NOT EXECUTED 8006718: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 800671c: 2b 8b 00 08 lw r11,(sp+8) <== NOT EXECUTED 8006720: 37 9c 00 08 addi sp,sp,8 <== NOT EXECUTED 8006724: c3 a0 00 00 ret <== NOT EXECUTED
0800691c <IMFS_fifo_open>: rtems_libio_t *iop, const char *pathname, uint32_t flag, uint32_t mode ) {
800691c: 37 9c ff f8 addi sp,sp,-8 8006920: 5b 8b 00 08 sw (sp+8),r11 8006924: 5b 9d 00 04 sw (sp+4),ra 8006928: b8 20 10 00 mv r2,r1
IMFS_jnode_t *jnode = iop->file_info; int err = fifo_open(&JNODE2PIPE(jnode), iop);
800692c: 28 21 00 3c lw r1,(r1+60) 8006930: 34 21 00 50 addi r1,r1,80 8006934: f8 00 0b f8 calli 8009914 <fifo_open> 8006938: b8 20 58 00 mv r11,r1
IMFS_FIFO_RETURN(err);
800693c: 4c 20 00 05 bge r1,r0,8006950 <IMFS_fifo_open+0x34> <== NEVER TAKEN
8006940: c8 0b 58 00 sub r11,r0,r11 8006944: f8 00 11 73 calli 800af10 <__errno> 8006948: 58 2b 00 00 sw (r1+0),r11 800694c: 34 0b ff ff mvi r11,-1
}
8006950: b9 60 08 00 mv r1,r11 8006954: 2b 9d 00 04 lw ra,(sp+4) 8006958: 2b 8b 00 08 lw r11,(sp+8) 800695c: 37 9c 00 08 addi sp,sp,8 8006960: c3 a0 00 00 ret
08006820 <IMFS_fifo_read>: ssize_t IMFS_fifo_read( rtems_libio_t *iop, void *buffer, size_t count ) {
8006820: 37 9c ff ec addi sp,sp,-20 <== NOT EXECUTED 8006824: 5b 8b 00 0c sw (sp+12),r11 <== NOT EXECUTED 8006828: 5b 8c 00 08 sw (sp+8),r12 <== NOT EXECUTED 800682c: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
IMFS_jnode_t *jnode = iop->file_info;
8006830: 28 2c 00 3c lw r12,(r1+60) <== NOT EXECUTED
int err = pipe_read(JNODE2PIPE(jnode), buffer, count, iop);
8006834: b8 20 20 00 mv r4,r1 <== NOT EXECUTED 8006838: 29 81 00 50 lw r1,(r12+80) <== NOT EXECUTED 800683c: f8 00 0b 73 calli 8009608 <pipe_read> <== NOT EXECUTED 8006840: b8 20 58 00 mv r11,r1 <== NOT EXECUTED
if (err > 0)
8006844: 4c 01 00 07 bge r0,r1,8006860 <IMFS_fifo_read+0x40> <== NOT EXECUTED
IMFS_update_atime(jnode);
8006848: 37 81 00 10 addi r1,sp,16 <== NOT EXECUTED 800684c: 34 02 00 00 mvi r2,0 <== NOT EXECUTED 8006850: f8 00 02 72 calli 8007218 <gettimeofday> <== NOT EXECUTED 8006854: 2b 81 00 10 lw r1,(sp+16) <== NOT EXECUTED 8006858: 59 81 00 40 sw (r12+64),r1 <== NOT EXECUTED 800685c: e0 00 00 06 bi 8006874 <IMFS_fifo_read+0x54> <== NOT EXECUTED
IMFS_FIFO_RETURN(err);
8006860: 44 20 00 05 be r1,r0,8006874 <IMFS_fifo_read+0x54> <== NOT EXECUTED 8006864: c8 0b 58 00 sub r11,r0,r11 <== NOT EXECUTED 8006868: f8 00 11 aa calli 800af10 <__errno> <== NOT EXECUTED 800686c: 58 2b 00 00 sw (r1+0),r11 <== NOT EXECUTED 8006870: 34 0b ff ff mvi r11,-1 <== NOT EXECUTED
}
8006874: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8006878: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 800687c: 2b 8b 00 0c lw r11,(sp+12) <== NOT EXECUTED 8006880: 2b 8c 00 08 lw r12,(sp+8) <== NOT EXECUTED 8006884: 37 9c 00 14 addi sp,sp,20 <== NOT EXECUTED 8006888: c3 a0 00 00 ret <== NOT EXECUTED
080067b0 <IMFS_fifo_write>: ssize_t IMFS_fifo_write( rtems_libio_t *iop, const void *buffer, size_t count ) {
80067b0: 37 9c ff ec addi sp,sp,-20 <== NOT EXECUTED 80067b4: 5b 8b 00 0c sw (sp+12),r11 <== NOT EXECUTED 80067b8: 5b 8c 00 08 sw (sp+8),r12 <== NOT EXECUTED 80067bc: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
IMFS_jnode_t *jnode = iop->file_info;
80067c0: 28 2c 00 3c lw r12,(r1+60) <== NOT EXECUTED
int err = pipe_write(JNODE2PIPE(jnode), buffer, count, iop);
80067c4: b8 20 20 00 mv r4,r1 <== NOT EXECUTED 80067c8: 29 81 00 50 lw r1,(r12+80) <== NOT EXECUTED 80067cc: f8 00 0b 1a calli 8009434 <pipe_write> <== NOT EXECUTED 80067d0: b8 20 58 00 mv r11,r1 <== NOT EXECUTED
if (err > 0) {
80067d4: 4c 01 00 08 bge r0,r1,80067f4 <IMFS_fifo_write+0x44> <== NOT EXECUTED
IMFS_mtime_ctime_update(jnode);
80067d8: 37 81 00 10 addi r1,sp,16 <== NOT EXECUTED 80067dc: 34 02 00 00 mvi r2,0 <== NOT EXECUTED 80067e0: f8 00 02 8e calli 8007218 <gettimeofday> <== NOT EXECUTED 80067e4: 2b 81 00 10 lw r1,(sp+16) <== NOT EXECUTED 80067e8: 59 81 00 48 sw (r12+72),r1 <== NOT EXECUTED 80067ec: 59 81 00 44 sw (r12+68),r1 <== NOT EXECUTED 80067f0: e0 00 00 06 bi 8006808 <IMFS_fifo_write+0x58> <== NOT EXECUTED
} IMFS_FIFO_RETURN(err);
80067f4: 44 20 00 05 be r1,r0,8006808 <IMFS_fifo_write+0x58> <== NOT EXECUTED 80067f8: c8 0b 58 00 sub r11,r0,r11 <== NOT EXECUTED 80067fc: f8 00 11 c5 calli 800af10 <__errno> <== NOT EXECUTED 8006800: 58 2b 00 00 sw (r1+0),r11 <== NOT EXECUTED 8006804: 34 0b ff ff mvi r11,-1 <== NOT EXECUTED
}
8006808: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 800680c: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8006810: 2b 8b 00 0c lw r11,(sp+12) <== NOT EXECUTED 8006814: 2b 8c 00 08 lw r12,(sp+8) <== NOT EXECUTED 8006818: 37 9c 00 14 addi sp,sp,20 <== NOT EXECUTED 800681c: c3 a0 00 00 ret <== NOT EXECUTED
08006964 <IMFS_find_match_in_dir>: IMFS_jnode_t *IMFS_find_match_in_dir( IMFS_jnode_t *directory, char *name ) {
8006964: 37 9c ff f0 addi sp,sp,-16 8006968: 5b 8b 00 10 sw (sp+16),r11 800696c: 5b 8c 00 0c sw (sp+12),r12 8006970: 5b 8d 00 08 sw (sp+8),r13 8006974: 5b 9d 00 04 sw (sp+4),ra 8006978: b8 20 58 00 mv r11,r1 800697c: b8 40 60 00 mv r12,r2
/* * Check for fatal errors. A NULL directory show a problem in the * the IMFS code. */ assert( directory );
8006980: 5c 20 00 09 bne r1,r0,80069a4 <IMFS_find_match_in_dir+0x40><== ALWAYS TAKEN
8006984: 78 01 08 01 mvhi r1,0x801 <== NOT EXECUTED 8006988: 78 03 08 01 mvhi r3,0x801 <== NOT EXECUTED 800698c: 78 04 08 01 mvhi r4,0x801 <== NOT EXECUTED 8006990: 38 21 a5 20 ori r1,r1,0xa520 <== NOT EXECUTED 8006994: 38 63 a5 80 ori r3,r3,0xa580 <== NOT EXECUTED 8006998: 38 84 a5 6c ori r4,r4,0xa56c <== NOT EXECUTED 800699c: 34 02 00 2a mvi r2,42 <== NOT EXECUTED 80069a0: f8 00 01 3e calli 8006e98 <__assert_func> <== NOT EXECUTED
if ( !name )
80069a4: 44 40 00 16 be r2,r0,80069fc <IMFS_find_match_in_dir+0x98> <== NEVER TAKEN
/* * Check for "." and ".." */ if ( !strcmp( name, dotname ) )
80069a8: 78 02 08 01 mvhi r2,0x801 80069ac: 38 42 a5 78 ori r2,r2,0xa578 80069b0: b9 80 08 00 mv r1,r12 80069b4: f8 00 15 d7 calli 800c110 <strcmp>
80069b8: 44 20 00 12 be r1,r0,8006a00 <IMFS_find_match_in_dir+0x9c> <== NEVER TAKEN
return directory; if ( !strcmp( name, dotdotname ) )
80069bc: 78 02 08 01 mvhi r2,0x801 80069c0: 38 42 a5 7c ori r2,r2,0xa57c 80069c4: b9 80 08 00 mv r1,r12 80069c8: f8 00 15 d2 calli 800c110 <strcmp>
80069cc: 5c 20 00 03 bne r1,r0,80069d8 <IMFS_find_match_in_dir+0x74><== ALWAYS TAKEN
return directory->Parent;
80069d0: 29 6b 00 08 lw r11,(r11+8) <== NOT EXECUTED 80069d4: e0 00 00 0b bi 8006a00 <IMFS_find_match_in_dir+0x9c> <== NOT EXECUTED
*/ RTEMS_INLINE_ROUTINE Chain_Node *_Chain_Tail( Chain_Control *the_chain ) { return (Chain_Node *) &the_chain->permanent_null;
80069d8: 35 6d 00 54 addi r13,r11,84
the_chain = &directory->info.directory.Entries; for ( the_node = the_chain->first;
80069dc: 29 6b 00 50 lw r11,(r11+80) 80069e0: e0 00 00 06 bi 80069f8 <IMFS_find_match_in_dir+0x94>
!rtems_chain_is_tail( the_chain, the_node ); the_node = the_node->next ) { the_jnode = (IMFS_jnode_t *) the_node; if ( !strcmp( name, the_jnode->name ) )
80069e4: b9 80 08 00 mv r1,r12 80069e8: 35 62 00 0c addi r2,r11,12 80069ec: f8 00 15 c9 calli 800c110 <strcmp>
80069f0: 44 20 00 04 be r1,r0,8006a00 <IMFS_find_match_in_dir+0x9c> the_chain = &directory->info.directory.Entries; for ( the_node = the_chain->first; !rtems_chain_is_tail( the_chain, the_node ); the_node = the_node->next ) {
80069f4: 29 6b 00 00 lw r11,(r11+0)
if ( !strcmp( name, dotdotname ) ) return directory->Parent; the_chain = &directory->info.directory.Entries; for ( the_node = the_chain->first; 80069f8: 5d 6d ff fb bne r11,r13,80069e4 <IMFS_find_match_in_dir+0x80>
80069fc: 34 0b 00 00 mvi r11,0
if ( !strcmp( name, the_jnode->name ) ) return the_jnode; } return 0; }
8006a00: b9 60 08 00 mv r1,r11 8006a04: 2b 9d 00 04 lw ra,(sp+4) 8006a08: 2b 8b 00 10 lw r11,(sp+16) 8006a0c: 2b 8c 00 0c lw r12,(sp+12) 8006a10: 2b 8d 00 08 lw r13,(sp+8) 8006a14: 37 9c 00 10 addi sp,sp,16 8006a18: c3 a0 00 00 ret
0800c8b4 <IMFS_fsunmount>: ((IMFS_jnode_t *)( rtems_chain_head( jnode_get_control( jnode ) )->next)) int IMFS_fsunmount( rtems_filesystem_mount_table_entry_t *temp_mt_entry ) {
800c8b4: 37 9c ff d8 addi sp,sp,-40 800c8b8: 5b 8b 00 14 sw (sp+20),r11 800c8bc: 5b 8c 00 10 sw (sp+16),r12 800c8c0: 5b 8d 00 0c sw (sp+12),r13 800c8c4: 5b 8e 00 08 sw (sp+8),r14 800c8c8: 5b 9d 00 04 sw (sp+4),ra 800c8cc: b8 20 68 00 mv r13,r1
* Traverse tree that starts at the mt_fs_root and deallocate memory * associated memory space */ jnode = (IMFS_jnode_t *)temp_mt_entry->mt_fs_root.node_access; loc = temp_mt_entry->mt_fs_root;
800c8d0: 37 8c 00 18 addi r12,sp,24 800c8d4: 35 a2 00 1c addi r2,r13,28 800c8d8: b9 80 08 00 mv r1,r12 800c8dc: 34 03 00 14 mvi r3,20
/* * Traverse tree that starts at the mt_fs_root and deallocate memory * associated memory space */ jnode = (IMFS_jnode_t *)temp_mt_entry->mt_fs_root.node_access;
800c8e0: 29 ab 00 1c lw r11,(r13+28)
loc = temp_mt_entry->mt_fs_root;
800c8e4: f8 00 15 aa calli 8011f8c <memcpy>
/* * Set this to null to indicate that it is being unmounted. */ temp_mt_entry->mt_fs_root.node_access = NULL;
800c8e8: 34 01 00 00 mvi r1,0 800c8ec: 59 a1 00 1c sw (r13+28),r1
do { next = jnode->Parent; loc.node_access = (void *)jnode; IMFS_Set_handlers( &loc ); if ( jnode->type != IMFS_DIRECTORY ) {
800c8f0: 34 0d 00 01 mvi r13,1
temp_mt_entry->mt_fs_root.node_access = NULL; do { next = jnode->Parent; loc.node_access = (void *)jnode; IMFS_Set_handlers( &loc );
800c8f4: b9 80 08 00 mv r1,r12
temp_mt_entry->mt_fs_root.node_access = NULL; do { next = jnode->Parent; loc.node_access = (void *)jnode;
800c8f8: 5b 8b 00 18 sw (sp+24),r11
*/ temp_mt_entry->mt_fs_root.node_access = NULL; do { next = jnode->Parent;
800c8fc: 29 6e 00 08 lw r14,(r11+8)
loc.node_access = (void *)jnode; IMFS_Set_handlers( &loc );
800c900: fb ff fc f5 calli 800bcd4 <IMFS_Set_handlers>
if ( jnode->type != IMFS_DIRECTORY ) {
800c904: 29 62 00 4c lw r2,(r11+76)
*/ RTEMS_INLINE_ROUTINE Chain_Node *_Chain_Tail( Chain_Control *the_chain ) { return (Chain_Node *) &the_chain->permanent_null;
800c908: 35 61 00 54 addi r1,r11,84
800c90c: 5c 4d 00 03 bne r2,r13,800c918 <IMFS_fsunmount+0x64>
800c910: 29 62 00 50 lw r2,(r11+80)
800c914: 5c 41 00 06 bne r2,r1,800c92c <IMFS_fsunmount+0x78> result = IMFS_unlink( NULL, &loc ); if (result != 0) return -1; jnode = next; } else if ( jnode_has_no_children( jnode ) ) { result = IMFS_unlink( NULL, &loc );
800c918: 34 01 00 00 mvi r1,0 800c91c: b9 80 10 00 mv r2,r12 800c920: fb ff d6 65 calli 80022b4 <IMFS_unlink>
if (result != 0)
800c924: 5c 20 00 0b bne r1,r0,800c950 <IMFS_fsunmount+0x9c> <== NEVER TAKEN
800c928: b9 c0 58 00 mv r11,r14
return -1; jnode = next; } if ( jnode != NULL ) { 800c92c: 45 60 00 0b be r11,r0,800c958 <IMFS_fsunmount+0xa4> if ( jnode->type == IMFS_DIRECTORY ) {
800c930: 29 61 00 4c lw r1,(r11+76)
800c934: 5c 2d ff f0 bne r1,r13,800c8f4 <IMFS_fsunmount+0x40> <== NEVER TAKEN
800c938: 29 61 00 50 lw r1,(r11+80) 800c93c: 35 62 00 54 addi r2,r11,84
800c940: 44 22 ff ed be r1,r2,800c8f4 <IMFS_fsunmount+0x40> if ( jnode_has_children( jnode ) ) jnode = jnode_get_first_child( jnode );
800c944: b8 20 58 00 mv r11,r1
} } } while (jnode != NULL);
800c948: 5c 20 ff eb bne r1,r0,800c8f4 <IMFS_fsunmount+0x40> <== ALWAYS TAKEN
800c94c: e0 00 00 03 bi 800c958 <IMFS_fsunmount+0xa4> <== NOT EXECUTED 800c950: 34 01 ff ff mvi r1,-1 <== NOT EXECUTED 800c954: e0 00 00 02 bi 800c95c <IMFS_fsunmount+0xa8> <== NOT EXECUTED
800c958: 34 01 00 00 mvi r1,0
return 0; }
800c95c: 2b 9d 00 04 lw ra,(sp+4) 800c960: 2b 8b 00 14 lw r11,(sp+20) 800c964: 2b 8c 00 10 lw r12,(sp+16) 800c968: 2b 8d 00 0c lw r13,(sp+12) 800c96c: 2b 8e 00 08 lw r14,(sp+8) 800c970: 37 9c 00 28 addi sp,sp,40 800c974: c3 a0 00 00 ret
08006a1c <IMFS_get_token>: const char *path, int pathlen, char *token, int *token_len ) {
8006a1c: 37 9c ff f4 addi sp,sp,-12 8006a20: 5b 8b 00 0c sw (sp+12),r11 8006a24: 5b 8c 00 08 sw (sp+8),r12 8006a28: 5b 9d 00 04 sw (sp+4),ra
register char c; /* * Copy a name into token. (Remember NULL is a token.) */ c = path[i];
8006a2c: 34 05 00 00 mvi r5,0
const char *path, int pathlen, char *token, int *token_len ) {
8006a30: b8 60 60 00 mv r12,r3
register char c; /* * Copy a name into token. (Remember NULL is a token.) */ c = path[i];
8006a34: 40 26 00 00 lbu r6,(r1+0)
while ( (!IMFS_is_separator(c)) && (i < pathlen) && (i <= IMFS_NAME_MAX) ) { token[i] = c; if ( i == IMFS_NAME_MAX )
8006a38: 34 03 00 20 mvi r3,32
/* * Copy a name into token. (Remember NULL is a token.) */ c = path[i]; while ( (!IMFS_is_separator(c)) && (i < pathlen) && (i <= IMFS_NAME_MAX) ) {
8006a3c: e0 00 00 08 bi 8006a5c <IMFS_get_token+0x40>
token[i] = c;
8006a40: 31 06 00 00 sb (r8+0),r6
if ( i == IMFS_NAME_MAX ) 8006a44: 5c a3 00 03 bne r5,r3,8006a50 <IMFS_get_token+0x34>
8006a48: 34 0b 00 04 mvi r11,4 8006a4c: e0 00 00 2d bi 8006b00 <IMFS_get_token+0xe4>
return IMFS_INVALID_TOKEN; if ( !IMFS_is_valid_name_char(c) ) type = IMFS_INVALID_TOKEN; c = path [++i];
8006a50: 34 a5 00 01 addi r5,r5,1 8006a54: b4 25 30 00 add r6,r1,r5 8006a58: 40 c6 00 00 lbu r6,(r6+0)
/* * Copy a name into token. (Remember NULL is a token.) */ c = path[i]; while ( (!IMFS_is_separator(c)) && (i < pathlen) && (i <= IMFS_NAME_MAX) ) {
8006a5c: 7c cb 00 5c cmpnei r11,r6,92 8006a60: 7c c9 00 2f cmpnei r9,r6,47 8006a64: e8 45 50 00 cmpg r10,r2,r5 8006a68: 7c c7 00 00 cmpnei r7,r6,0 8006a6c: a1 69 48 00 and r9,r11,r9
token[i] = c;
8006a70: b5 85 40 00 add r8,r12,r5
/* * Copy a name into token. (Remember NULL is a token.) */ c = path[i]; while ( (!IMFS_is_separator(c)) && (i < pathlen) && (i <= IMFS_NAME_MAX) ) {
8006a74: a1 47 38 00 and r7,r10,r7
8006a78: 45 20 00 02 be r9,r0,8006a80 <IMFS_get_token+0x64> 8006a7c: 5c e0 ff f1 bne r7,r0,8006a40 <IMFS_get_token+0x24> /* * Copy a seperator into token. */ if ( i == 0 ) { 8006a80: 5c a0 00 0a bne r5,r0,8006aa8 <IMFS_get_token+0x8c> token[i] = c; if ( (token[i] != '\0') && pathlen ) {
8006a84: 7c c1 00 00 cmpnei r1,r6,0 8006a88: 7c 42 00 00 cmpnei r2,r2,0
/* * Copy a seperator into token. */ if ( i == 0 ) { token[i] = c;
8006a8c: 31 86 00 00 sb (r12+0),r6
if ( (token[i] != '\0') && pathlen ) {
8006a90: a0 22 10 00 and r2,r1,r2 8006a94: b8 a0 58 00 mv r11,r5
8006a98: 44 45 00 0a be r2,r5,8006ac0 <IMFS_get_token+0xa4>
8006a9c: 34 05 00 01 mvi r5,1 8006aa0: b8 a0 58 00 mv r11,r5 8006aa4: e0 00 00 07 bi 8006ac0 <IMFS_get_token+0xa4>
i++; type = IMFS_CURRENT_DIR; } else { type = IMFS_NO_MORE_PATH; } } else if (token[ i-1 ] != '\0') {
8006aa8: b5 85 08 00 add r1,r12,r5 8006aac: 40 22 ff ff lbu r2,(r1+-1) 8006ab0: 34 0b 00 03 mvi r11,3
8006ab4: 44 40 00 03 be r2,r0,8006ac0 <IMFS_get_token+0xa4> <== NEVER TAKEN
token[i] = '\0';
8006ab8: 34 02 00 00 mvi r2,0 8006abc: 30 22 00 00 sb (r1+0),r2
/* * Set token_len to the number of characters copied. */ *token_len = i;
8006ac0: 58 85 00 00 sw (r4+0),r5
/* * If we copied something that was not a seperator see if * it was a special name. */ if ( type == IMFS_NAME ) {
8006ac4: 34 01 00 03 mvi r1,3
8006ac8: 5d 61 00 0e bne r11,r1,8006b00 <IMFS_get_token+0xe4> if ( strcmp( token, "..") == 0 )
8006acc: 78 02 08 01 mvhi r2,0x801 8006ad0: 38 42 a5 98 ori r2,r2,0xa598 8006ad4: b9 80 08 00 mv r1,r12 8006ad8: f8 00 15 8e calli 800c110 <strcmp>
8006adc: 5c 20 00 03 bne r1,r0,8006ae8 <IMFS_get_token+0xcc>
8006ae0: 34 0b 00 02 mvi r11,2 8006ae4: e0 00 00 07 bi 8006b00 <IMFS_get_token+0xe4>
type = IMFS_UP_DIR; else if ( strcmp( token, "." ) == 0 )
8006ae8: 78 02 08 01 mvhi r2,0x801 8006aec: b9 80 08 00 mv r1,r12 8006af0: 38 42 a5 9c ori r2,r2,0xa59c 8006af4: f8 00 15 87 calli 800c110 <strcmp>
8006af8: 5c 20 00 02 bne r1,r0,8006b00 <IMFS_get_token+0xe4>
8006afc: 34 0b 00 01 mvi r11,1
type = IMFS_CURRENT_DIR; } return type; }
8006b00: b9 60 08 00 mv r1,r11 8006b04: 2b 9d 00 04 lw ra,(sp+4) 8006b08: 2b 8b 00 0c lw r11,(sp+12) 8006b0c: 2b 8c 00 08 lw r12,(sp+8) 8006b10: 37 9c 00 0c addi sp,sp,12 8006b14: c3 a0 00 00 ret
08006b18 <IMFS_initialize_support>: rtems_filesystem_mount_table_entry_t *temp_mt_entry, const rtems_filesystem_operations_table *op_table, const rtems_filesystem_file_handlers_r *memfile_handlers, const rtems_filesystem_file_handlers_r *directory_handlers ) {
8006b18: 37 9c ff ec addi sp,sp,-20 8006b1c: 5b 8b 00 14 sw (sp+20),r11 8006b20: 5b 8c 00 10 sw (sp+16),r12 8006b24: 5b 8d 00 0c sw (sp+12),r13 8006b28: 5b 8e 00 08 sw (sp+8),r14 8006b2c: 5b 9d 00 04 sw (sp+4),ra
IMFS_jnode_t *jnode; /* * determine/check value for imfs_memfile_bytes_per_block */ IMFS_determine_bytes_per_block(&imfs_memfile_bytes_per_block,
8006b30: 78 05 08 01 mvhi r5,0x801 8006b34: 38 a5 c0 14 ori r5,r5,0xc014 8006b38: 28 a6 00 00 lw r6,(r5+0)
rtems_filesystem_mount_table_entry_t *temp_mt_entry, const rtems_filesystem_operations_table *op_table, const rtems_filesystem_file_handlers_r *memfile_handlers, const rtems_filesystem_file_handlers_r *directory_handlers ) {
8006b3c: b8 20 58 00 mv r11,r1 8006b40: b8 40 70 00 mv r14,r2 8006b44: b8 60 68 00 mv r13,r3 8006b48: b8 80 60 00 mv r12,r4
IMFS_jnode_t *jnode; /* * determine/check value for imfs_memfile_bytes_per_block */ IMFS_determine_bytes_per_block(&imfs_memfile_bytes_per_block,
8006b4c: 34 05 00 00 mvi r5,0 8006b50: 34 01 00 10 mvi r1,16
int bit_mask; /* * check, whether requested bytes per block is valid */ for (bit_mask = 16; !is_valid && (bit_mask <= 512); bit_mask <<= 1) {
8006b54: 34 02 00 06 mvi r2,6 8006b58: 34 a5 00 01 addi r5,r5,1
8006b5c: 44 26 00 04 be r1,r6,8006b6c <IMFS_initialize_support+0x54>
8006b60: b4 21 08 00 add r1,r1,r1
8006b64: 5c a2 ff fd bne r5,r2,8006b58 <IMFS_initialize_support+0x40><== ALWAYS TAKEN
8006b68: 34 01 00 80 mvi r1,128 <== NOT EXECUTED
if (bit_mask == requested_bytes_per_block) { is_valid = true; } } *dest_bytes_per_block = ((is_valid)
8006b6c: 78 05 08 01 mvhi r5,0x801 8006b70: 38 a5 c6 24 ori r5,r5,0xc624 8006b74: 58 a1 00 00 sw (r5+0),r1
/* * Create the root node * * NOTE: UNIX root is 755 and owned by root/root (0/0). */ temp_mt_entry->mt_fs_root.node_access = IMFS_create_root_node();
8006b78: f8 00 0c 6b calli 8009d24 <IMFS_create_root_node>
temp_mt_entry->mt_fs_root.handlers = directory_handlers; temp_mt_entry->mt_fs_root.ops = op_table; temp_mt_entry->pathconf_limits_and_options = IMFS_LIMITS_AND_OPTIONS;
8006b7c: 78 02 08 01 mvhi r2,0x801
/* * Create the root node * * NOTE: UNIX root is 755 and owned by root/root (0/0). */ temp_mt_entry->mt_fs_root.node_access = IMFS_create_root_node();
8006b80: 59 61 00 1c sw (r11+28),r1
temp_mt_entry->mt_fs_root.handlers = directory_handlers; temp_mt_entry->mt_fs_root.ops = op_table; temp_mt_entry->pathconf_limits_and_options = IMFS_LIMITS_AND_OPTIONS;
8006b84: 38 42 a7 b0 ori r2,r2,0xa7b0 8006b88: 34 03 00 30 mvi r3,48
* * NOTE: UNIX root is 755 and owned by root/root (0/0). */ temp_mt_entry->mt_fs_root.node_access = IMFS_create_root_node(); temp_mt_entry->mt_fs_root.handlers = directory_handlers; temp_mt_entry->mt_fs_root.ops = op_table;
8006b8c: 59 6e 00 28 sw (r11+40),r14
* Create the root node * * NOTE: UNIX root is 755 and owned by root/root (0/0). */ temp_mt_entry->mt_fs_root.node_access = IMFS_create_root_node(); temp_mt_entry->mt_fs_root.handlers = directory_handlers;
8006b90: 59 6c 00 24 sw (r11+36),r12
temp_mt_entry->mt_fs_root.ops = op_table; temp_mt_entry->pathconf_limits_and_options = IMFS_LIMITS_AND_OPTIONS;
8006b94: 35 61 00 38 addi r1,r11,56 8006b98: f8 00 13 84 calli 800b9a8 <memcpy>
/* * Create custom file system data. */ fs_info = calloc( 1, sizeof( IMFS_fs_info_t ) );
8006b9c: 34 02 00 0c mvi r2,12 8006ba0: 34 01 00 01 mvi r1,1 8006ba4: f8 00 00 d0 calli 8006ee4 <calloc> 8006ba8: b8 20 10 00 mv r2,r1 8006bac: 29 61 00 1c lw r1,(r11+28)
if ( !fs_info ) {
8006bb0: 5c 40 00 07 bne r2,r0,8006bcc <IMFS_initialize_support+0xb4><== ALWAYS TAKEN
free(temp_mt_entry->mt_fs_root.node_access);
8006bb4: f8 00 01 24 calli 8007044 <free> <== NOT EXECUTED
rtems_set_errno_and_return_minus_one(ENOMEM);
8006bb8: f8 00 10 d6 calli 800af10 <__errno> <== NOT EXECUTED 8006bbc: 34 02 00 0c mvi r2,12 <== NOT EXECUTED 8006bc0: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 8006bc4: 34 01 ff ff mvi r1,-1 <== NOT EXECUTED 8006bc8: e0 00 00 09 bi 8006bec <IMFS_initialize_support+0xd4> <== NOT EXECUTED
/* * Set st_ino for the root to 1. */ fs_info->ino_count = 1;
8006bcc: 34 04 00 01 mvi r4,1 8006bd0: 58 44 00 00 sw (r2+0),r4
fs_info->memfile_handlers = memfile_handlers; fs_info->directory_handlers = directory_handlers; jnode = temp_mt_entry->mt_fs_root.node_access; jnode->st_ino = fs_info->ino_count;
8006bd4: 58 24 00 38 sw (r1+56),r4
fs_info = calloc( 1, sizeof( IMFS_fs_info_t ) ); if ( !fs_info ) { free(temp_mt_entry->mt_fs_root.node_access); rtems_set_errno_and_return_minus_one(ENOMEM); } temp_mt_entry->fs_info = fs_info;
8006bd8: 59 62 00 34 sw (r11+52),r2
* Set st_ino for the root to 1. */ fs_info->ino_count = 1; fs_info->memfile_handlers = memfile_handlers; fs_info->directory_handlers = directory_handlers;
8006bdc: 58 4c 00 08 sw (r2+8),r12
/* * Set st_ino for the root to 1. */ fs_info->ino_count = 1; fs_info->memfile_handlers = memfile_handlers;
8006be0: 58 4d 00 04 sw (r2+4),r13
jnode = temp_mt_entry->mt_fs_root.node_access; jnode->st_ino = fs_info->ino_count; /* Initialize POSIX FIFO/pipe module */ rtems_pipe_initialize();
8006be4: f8 00 09 d9 calli 8009348 <rtems_pipe_initialize> 8006be8: 34 01 00 00 mvi r1,0
return 0; }
8006bec: 2b 9d 00 04 lw ra,(sp+4) 8006bf0: 2b 8b 00 14 lw r11,(sp+20) 8006bf4: 2b 8c 00 10 lw r12,(sp+16) 8006bf8: 2b 8d 00 0c lw r13,(sp+12) 8006bfc: 2b 8e 00 08 lw r14,(sp+8) 8006c00: 37 9c 00 14 addi sp,sp,20 8006c04: c3 a0 00 00 ret
08001f2c <IMFS_link>: int IMFS_link( rtems_filesystem_location_info_t *to_loc, /* IN */ rtems_filesystem_location_info_t *parent_loc, /* IN */ const char *token /* IN */ ) {
8001f2c: 37 9c ff a8 addi sp,sp,-88 8001f30: 5b 8b 00 10 sw (sp+16),r11 8001f34: 5b 8c 00 0c sw (sp+12),r12 8001f38: 5b 8d 00 08 sw (sp+8),r13 8001f3c: 5b 9d 00 04 sw (sp+4),ra
int i; /* * Verify this node can be linked to. */ info.hard_link.link_node = to_loc->node_access;
8001f40: 28 24 00 00 lw r4,(r1+0)
int IMFS_link( rtems_filesystem_location_info_t *to_loc, /* IN */ rtems_filesystem_location_info_t *parent_loc, /* IN */ const char *token /* IN */ ) {
8001f44: b8 40 68 00 mv r13,r2
/* * Verify this node can be linked to. */ info.hard_link.link_node = to_loc->node_access; if ( info.hard_link.link_node->st_nlink >= LINK_MAX )
8001f48: 34 02 00 07 mvi r2,7
int i; /* * Verify this node can be linked to. */ info.hard_link.link_node = to_loc->node_access;
8001f4c: 5b 84 00 38 sw (sp+56),r4
if ( info.hard_link.link_node->st_nlink >= LINK_MAX )
8001f50: 2c 81 00 34 lhu r1,(r4+52)
int IMFS_link( rtems_filesystem_location_info_t *to_loc, /* IN */ rtems_filesystem_location_info_t *parent_loc, /* IN */ const char *token /* IN */ ) {
8001f54: b8 60 60 00 mv r12,r3
/* * Verify this node can be linked to. */ info.hard_link.link_node = to_loc->node_access; if ( info.hard_link.link_node->st_nlink >= LINK_MAX ) 8001f58: 50 41 00 04 bgeu r2,r1,8001f68 <IMFS_link+0x3c> rtems_set_errno_and_return_minus_one( EMLINK );
8001f5c: f8 00 3d 66 calli 80114f4 <__errno> 8001f60: 34 02 00 1f mvi r2,31 8001f64: e0 00 00 12 bi 8001fac <IMFS_link+0x80>
/* * Remove any separators at the end of the string. */ IMFS_get_token( token, strlen( token ), new_name, &i );
8001f68: b8 60 08 00 mv r1,r3 8001f6c: f8 00 42 13 calli 80127b8 <strlen> 8001f70: 37 8b 00 14 addi r11,sp,20 8001f74: b8 20 10 00 mv r2,r1 8001f78: b9 60 18 00 mv r3,r11 8001f7c: 37 84 00 58 addi r4,sp,88 8001f80: b9 80 08 00 mv r1,r12 8001f84: f8 00 2a ab calli 800ca30 <IMFS_get_token>
* was ONLY passed a NULL when we created the root node. We * added a new IMFS_create_root_node() so this path no longer * existed. The result was simpler code which should not have * this path. */ new_node = IMFS_create_node(
8001f88: b9 a0 08 00 mv r1,r13 8001f8c: b9 60 18 00 mv r3,r11 8001f90: 34 02 00 03 mvi r2,3 8001f94: 38 04 a1 ff mvu r4,0xa1ff 8001f98: 37 85 00 38 addi r5,sp,56 8001f9c: f8 00 26 f9 calli 800bb80 <IMFS_create_node>
new_name, ( S_IFLNK | ( S_IRWXU | S_IRWXG | S_IRWXO )), &info ); if ( !new_node )
8001fa0: 5c 20 00 06 bne r1,r0,8001fb8 <IMFS_link+0x8c> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( ENOMEM );
8001fa4: f8 00 3d 54 calli 80114f4 <__errno> <== NOT EXECUTED 8001fa8: 34 02 00 0c mvi r2,12 <== NOT EXECUTED
8001fac: 58 22 00 00 sw (r1+0),r2 8001fb0: 34 01 ff ff mvi r1,-1 8001fb4: e0 00 00 0c bi 8001fe4 <IMFS_link+0xb8>
/* * Increment the link count of the node being pointed to. */ info.hard_link.link_node->st_nlink++;
8001fb8: 2b 83 00 38 lw r3,(sp+56)
IMFS_update_ctime( info.hard_link.link_node );
8001fbc: 34 02 00 00 mvi r2,0 8001fc0: 37 81 00 50 addi r1,sp,80
rtems_set_errno_and_return_minus_one( ENOMEM ); /* * Increment the link count of the node being pointed to. */ info.hard_link.link_node->st_nlink++;
8001fc4: 2c 64 00 34 lhu r4,(r3+52) 8001fc8: 34 84 00 01 addi r4,r4,1 8001fcc: 0c 64 00 34 sh (r3+52),r4
IMFS_update_ctime( info.hard_link.link_node );
8001fd0: f8 00 02 9c calli 8002a40 <gettimeofday> 8001fd4: 2b 82 00 38 lw r2,(sp+56) 8001fd8: 2b 83 00 50 lw r3,(sp+80) 8001fdc: 34 01 00 00 mvi r1,0 8001fe0: 58 43 00 48 sw (r2+72),r3
return 0; }
8001fe4: 2b 9d 00 04 lw ra,(sp+4) 8001fe8: 2b 8b 00 10 lw r11,(sp+16) 8001fec: 2b 8c 00 0c lw r12,(sp+12) 8001ff0: 2b 8d 00 08 lw r13,(sp+8) 8001ff4: 37 9c 00 58 addi sp,sp,88 8001ff8: c3 a0 00 00 ret
0800fcd0 <IMFS_memfile_addblock>: MEMFILE_STATIC int IMFS_memfile_addblock( IMFS_jnode_t *the_jnode, unsigned int block ) {
800fcd0: 37 9c ff f4 addi sp,sp,-12 800fcd4: 5b 8b 00 0c sw (sp+12),r11 800fcd8: 5b 8c 00 08 sw (sp+8),r12 800fcdc: 5b 9d 00 04 sw (sp+4),ra
block_p memory; block_p *block_entry_ptr; assert( the_jnode );
800fce0: 5c 20 00 09 bne r1,r0,800fd04 <IMFS_memfile_addblock+0x34> <== ALWAYS TAKEN
800fce4: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 800fce8: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 800fcec: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 800fcf0: 38 21 1b 60 ori r1,r1,0x1b60 <== NOT EXECUTED 800fcf4: 38 63 1d 10 ori r3,r3,0x1d10 <== NOT EXECUTED 800fcf8: 38 84 1b a8 ori r4,r4,0x1ba8 <== NOT EXECUTED 800fcfc: 34 02 01 69 mvi r2,361 <== NOT EXECUTED 800fd00: e0 00 00 0b bi 800fd2c <IMFS_memfile_addblock+0x5c> <== NOT EXECUTED
if ( !the_jnode ) rtems_set_errno_and_return_minus_one( EIO ); assert( the_jnode->type == IMFS_MEMORY_FILE );
800fd04: 28 24 00 4c lw r4,(r1+76) 800fd08: 34 03 00 05 mvi r3,5
800fd0c: 44 83 00 09 be r4,r3,800fd30 <IMFS_memfile_addblock+0x60> <== ALWAYS TAKEN
800fd10: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 800fd14: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 800fd18: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 800fd1c: 38 21 1b 60 ori r1,r1,0x1b60 <== NOT EXECUTED 800fd20: 38 63 1d 10 ori r3,r3,0x1d10 <== NOT EXECUTED 800fd24: 38 84 1b b4 ori r4,r4,0x1bb4 <== NOT EXECUTED 800fd28: 34 02 01 6d mvi r2,365 <== NOT EXECUTED 800fd2c: fb ff f3 e6 calli 800ccc4 <__assert_func> <== NOT EXECUTED
if ( the_jnode->type != IMFS_MEMORY_FILE ) rtems_set_errno_and_return_minus_one( EIO ); block_entry_ptr = IMFS_memfile_get_block_pointer( the_jnode, block, 1 );
800fd30: 34 03 00 01 mvi r3,1 800fd34: fb ff fe 45 calli 800f648 <IMFS_memfile_get_block_pointer>
if ( *block_entry_ptr )
800fd38: 28 2b 00 00 lw r11,(r1+0) 800fd3c: 34 02 00 00 mvi r2,0
assert( the_jnode->type == IMFS_MEMORY_FILE ); if ( the_jnode->type != IMFS_MEMORY_FILE ) rtems_set_errno_and_return_minus_one( EIO ); block_entry_ptr = IMFS_memfile_get_block_pointer( the_jnode, block, 1 );
800fd40: b8 20 60 00 mv r12,r1
if ( *block_entry_ptr ) 800fd44: 5d 62 00 06 bne r11,r2,800fd5c <IMFS_memfile_addblock+0x8c> #if 0 fprintf(stdout, "%d %p", block, block_entry_ptr ); fflush(stdout); #endif memory = memfile_alloc_block();
800fd48: fb ff fe 30 calli 800f608 <memfile_alloc_block>
if ( !memory )
800fd4c: 34 02 00 01 mvi r2,1
800fd50: 44 2b 00 03 be r1,r11,800fd5c <IMFS_memfile_addblock+0x8c> <== NEVER TAKEN
return 1; *block_entry_ptr = memory;
800fd54: 59 81 00 00 sw (r12+0),r1 800fd58: b9 60 10 00 mv r2,r11
return 0; }
800fd5c: b8 40 08 00 mv r1,r2 800fd60: 2b 9d 00 04 lw ra,(sp+4) 800fd64: 2b 8b 00 0c lw r11,(sp+12) 800fd68: 2b 8c 00 08 lw r12,(sp+8) 800fd6c: 37 9c 00 0c addi sp,sp,12 800fd70: c3 a0 00 00 ret
0800fd74 <IMFS_memfile_extend>: MEMFILE_STATIC int IMFS_memfile_extend( IMFS_jnode_t *the_jnode, off_t new_length ) {
800fd74: 37 9c ff e0 addi sp,sp,-32 800fd78: 5b 8b 00 20 sw (sp+32),r11 800fd7c: 5b 8c 00 1c sw (sp+28),r12 800fd80: 5b 8d 00 18 sw (sp+24),r13 800fd84: 5b 8e 00 14 sw (sp+20),r14 800fd88: 5b 8f 00 10 sw (sp+16),r15 800fd8c: 5b 90 00 0c sw (sp+12),r16 800fd90: 5b 91 00 08 sw (sp+8),r17 800fd94: 5b 9d 00 04 sw (sp+4),ra 800fd98: b8 20 58 00 mv r11,r1 800fd9c: b8 40 68 00 mv r13,r2
/* * Perform internal consistency checks */ assert( the_jnode );
800fda0: 5c 20 00 09 bne r1,r0,800fdc4 <IMFS_memfile_extend+0x50> <== ALWAYS TAKEN
800fda4: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 800fda8: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 800fdac: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 800fdb0: 38 21 1b 60 ori r1,r1,0x1b60 <== NOT EXECUTED 800fdb4: 38 63 1d 28 ori r3,r3,0x1d28 <== NOT EXECUTED 800fdb8: 38 84 1b a8 ori r4,r4,0x1ba8 <== NOT EXECUTED 800fdbc: 34 02 01 31 mvi r2,305 <== NOT EXECUTED 800fdc0: e0 00 00 0b bi 800fdec <IMFS_memfile_extend+0x78> <== NOT EXECUTED
if ( !the_jnode ) rtems_set_errno_and_return_minus_one( EIO ); assert( the_jnode->type == IMFS_MEMORY_FILE );
800fdc4: 28 22 00 4c lw r2,(r1+76) 800fdc8: 34 01 00 05 mvi r1,5
800fdcc: 44 41 00 09 be r2,r1,800fdf0 <IMFS_memfile_extend+0x7c> <== ALWAYS TAKEN
800fdd0: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 800fdd4: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 800fdd8: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 800fddc: 38 21 1b 60 ori r1,r1,0x1b60 <== NOT EXECUTED 800fde0: 38 63 1d 28 ori r3,r3,0x1d28 <== NOT EXECUTED 800fde4: 38 84 1b b4 ori r4,r4,0x1bb4 <== NOT EXECUTED 800fde8: 34 02 01 35 mvi r2,309 <== NOT EXECUTED 800fdec: fb ff f3 b6 calli 800ccc4 <__assert_func> <== NOT EXECUTED
if ( the_jnode->type != IMFS_MEMORY_FILE ) rtems_set_errno_and_return_minus_one( EIO ); if ( new_length >= IMFS_MEMFILE_MAXIMUM_SIZE )
800fdf0: 78 01 08 02 mvhi r1,0x802 800fdf4: 38 21 36 4c ori r1,r1,0x364c 800fdf8: 28 2c 00 00 lw r12,(r1+0) 800fdfc: 34 02 00 02 mvi r2,2 800fe00: b9 80 08 00 mv r1,r12 800fe04: fb ff c3 9a calli 8000c6c <__lshrsi3> 800fe08: b8 20 10 00 mv r2,r1 800fe0c: b8 20 70 00 mv r14,r1 800fe10: 34 21 00 01 addi r1,r1,1 800fe14: f8 00 41 79 calli 80203f8 <__mulsi3> 800fe18: b9 c0 10 00 mv r2,r14 800fe1c: 34 21 00 01 addi r1,r1,1 800fe20: f8 00 41 76 calli 80203f8 <__mulsi3> 800fe24: 34 21 ff ff addi r1,r1,-1 800fe28: b9 80 10 00 mv r2,r12 800fe2c: f8 00 41 73 calli 80203f8 <__mulsi3>
800fe30: 54 2d 00 04 bgu r1,r13,800fe40 <IMFS_memfile_extend+0xcc> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( EINVAL );
800fe34: f8 00 05 b0 calli 80114f4 <__errno> <== NOT EXECUTED 800fe38: 34 02 00 16 mvi r2,22 <== NOT EXECUTED 800fe3c: e0 00 00 26 bi 800fed4 <IMFS_memfile_extend+0x160> <== NOT EXECUTED
if ( new_length <= the_jnode->info.file.size )
800fe40: b9 a0 08 00 mv r1,r13 800fe44: 34 02 00 1f mvi r2,31 800fe48: fb ff c3 b1 calli 8000d0c <__ashrsi3> 800fe4c: 29 6f 00 50 lw r15,(r11+80) 800fe50: b8 20 70 00 mv r14,r1 800fe54: 29 70 00 54 lw r16,(r11+84)
800fe58: 48 2f 00 04 bg r1,r15,800fe68 <IMFS_memfile_extend+0xf4> <== NEVER TAKEN 800fe5c: 5c 2f 00 25 bne r1,r15,800fef0 <IMFS_memfile_extend+0x17c> <== NEVER TAKEN
800fe60: 55 b0 00 02 bgu r13,r16,800fe68 <IMFS_memfile_extend+0xf4>
800fe64: e0 00 00 23 bi 800fef0 <IMFS_memfile_extend+0x17c>
/* * Calculate the number of range of blocks to allocate */ new_blocks = new_length / IMFS_MEMFILE_BYTES_PER_BLOCK;
800fe68: b9 80 10 00 mv r2,r12 800fe6c: b9 a0 08 00 mv r1,r13 800fe70: f8 00 41 82 calli 8020478 <__divsi3>
old_blocks = the_jnode->info.file.size / IMFS_MEMFILE_BYTES_PER_BLOCK;
800fe74: 34 02 00 1f mvi r2,31
/* * Calculate the number of range of blocks to allocate */ new_blocks = new_length / IMFS_MEMFILE_BYTES_PER_BLOCK;
800fe78: b8 20 88 00 mv r17,r1
old_blocks = the_jnode->info.file.size / IMFS_MEMFILE_BYTES_PER_BLOCK;
800fe7c: b9 80 08 00 mv r1,r12 800fe80: fb ff c3 a3 calli 8000d0c <__ashrsi3> 800fe84: b8 20 18 00 mv r3,r1 800fe88: b9 80 20 00 mv r4,r12 800fe8c: b9 e0 08 00 mv r1,r15 800fe90: ba 00 10 00 mv r2,r16 800fe94: f8 00 2c 28 calli 801af34 <__divdi3> 800fe98: b8 40 78 00 mv r15,r2 800fe9c: b8 40 60 00 mv r12,r2
/* * Now allocate each of those blocks. */ for ( block=old_blocks ; block<=new_blocks ; block++ ) {
800fea0: e0 00 00 11 bi 800fee4 <IMFS_memfile_extend+0x170>
if ( IMFS_memfile_addblock( the_jnode, block ) ) {
800fea4: b9 60 08 00 mv r1,r11 800fea8: b9 80 10 00 mv r2,r12 800feac: fb ff ff 89 calli 800fcd0 <IMFS_memfile_addblock>
800feb0: 44 20 00 0c be r1,r0,800fee0 <IMFS_memfile_extend+0x16c> <== ALWAYS TAKEN
800feb4: e0 00 00 05 bi 800fec8 <IMFS_memfile_extend+0x154> <== NOT EXECUTED
for ( ; block>=old_blocks ; block-- ) { IMFS_memfile_remove_block( the_jnode, block );
800feb8: b9 80 10 00 mv r2,r12 <== NOT EXECUTED 800febc: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 800fec0: fb ff fe bd calli 800f9b4 <IMFS_memfile_remove_block> <== NOT EXECUTED
* Now allocate each of those blocks. */ for ( block=old_blocks ; block<=new_blocks ; block++ ) { if ( IMFS_memfile_addblock( the_jnode, block ) ) { for ( ; block>=old_blocks ; block-- ) {
800fec4: 35 8c ff ff addi r12,r12,-1 <== NOT EXECUTED 800fec8: 51 8f ff fc bgeu r12,r15,800feb8 <IMFS_memfile_extend+0x144><== NOT EXECUTED
IMFS_memfile_remove_block( the_jnode, block ); } rtems_set_errno_and_return_minus_one( ENOSPC );
800fecc: f8 00 05 8a calli 80114f4 <__errno> <== NOT EXECUTED 800fed0: 34 02 00 1c mvi r2,28 <== NOT EXECUTED 800fed4: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 800fed8: 34 01 ff ff mvi r1,-1 <== NOT EXECUTED 800fedc: e0 00 00 06 bi 800fef4 <IMFS_memfile_extend+0x180> <== NOT EXECUTED
/* * Now allocate each of those blocks. */ for ( block=old_blocks ; block<=new_blocks ; block++ ) {
800fee0: 35 8c 00 01 addi r12,r12,1
800fee4: 52 2c ff f0 bgeu r17,r12,800fea4 <IMFS_memfile_extend+0x130> /* * Set the new length of the file. */ the_jnode->info.file.size = new_length;
800fee8: 59 6d 00 54 sw (r11+84),r13 800feec: 59 6e 00 50 sw (r11+80),r14 800fef0: 34 01 00 00 mvi r1,0
return 0; }
800fef4: 2b 9d 00 04 lw ra,(sp+4) 800fef8: 2b 8b 00 20 lw r11,(sp+32) 800fefc: 2b 8c 00 1c lw r12,(sp+28) 800ff00: 2b 8d 00 18 lw r13,(sp+24) 800ff04: 2b 8e 00 14 lw r14,(sp+20) 800ff08: 2b 8f 00 10 lw r15,(sp+16) 800ff0c: 2b 90 00 0c lw r16,(sp+12) 800ff10: 2b 91 00 08 lw r17,(sp+8) 800ff14: 37 9c 00 20 addi sp,sp,32 800ff18: c3 a0 00 00 ret
0800f648 <IMFS_memfile_get_block_pointer>: #endif IMFS_jnode_t *the_jnode, unsigned int block, int malloc_it ) {
800f648: 37 9c ff e4 addi sp,sp,-28 800f64c: 5b 8b 00 1c sw (sp+28),r11 800f650: 5b 8c 00 18 sw (sp+24),r12 800f654: 5b 8d 00 14 sw (sp+20),r13 800f658: 5b 8e 00 10 sw (sp+16),r14 800f65c: 5b 8f 00 0c sw (sp+12),r15 800f660: 5b 90 00 08 sw (sp+8),r16 800f664: 5b 9d 00 04 sw (sp+4),ra 800f668: b8 20 60 00 mv r12,r1 800f66c: b8 40 68 00 mv r13,r2 800f670: b8 60 70 00 mv r14,r3
/* * Perform internal consistency checks */ assert( the_jnode );
800f674: 5c 20 00 09 bne r1,r0,800f698 <IMFS_memfile_get_block_pointer+0x50><== ALWAYS TAKEN
800f678: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 800f67c: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 800f680: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 800f684: 38 21 1b 60 ori r1,r1,0x1b60 <== NOT EXECUTED 800f688: 38 63 1c 78 ori r3,r3,0x1c78 <== NOT EXECUTED 800f68c: 38 84 1b a8 ori r4,r4,0x1ba8 <== NOT EXECUTED 800f690: 34 02 03 88 mvi r2,904 <== NOT EXECUTED 800f694: e0 00 00 0b bi 800f6c0 <IMFS_memfile_get_block_pointer+0x78><== NOT EXECUTED
if ( !the_jnode ) return NULL; assert( the_jnode->type == IMFS_MEMORY_FILE );
800f698: 28 22 00 4c lw r2,(r1+76) 800f69c: 34 01 00 05 mvi r1,5
800f6a0: 44 41 00 09 be r2,r1,800f6c4 <IMFS_memfile_get_block_pointer+0x7c><== ALWAYS TAKEN
800f6a4: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 800f6a8: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 800f6ac: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 800f6b0: 38 21 1b 60 ori r1,r1,0x1b60 <== NOT EXECUTED 800f6b4: 38 63 1c 78 ori r3,r3,0x1c78 <== NOT EXECUTED 800f6b8: 38 84 1b b4 ori r4,r4,0x1bb4 <== NOT EXECUTED 800f6bc: 34 02 03 8c mvi r2,908 <== NOT EXECUTED 800f6c0: fb ff f5 81 calli 800ccc4 <__assert_func> <== NOT EXECUTED
/* * Is the block number in the simple indirect portion? */ if ( my_block <= LAST_INDIRECT ) {
800f6c4: 78 01 08 02 mvhi r1,0x802 800f6c8: 38 21 36 4c ori r1,r1,0x364c 800f6cc: 28 21 00 00 lw r1,(r1+0) 800f6d0: 34 02 00 02 mvi r2,2 800f6d4: fb ff c5 66 calli 8000c6c <__lshrsi3> 800f6d8: b8 20 58 00 mv r11,r1 800f6dc: 34 21 ff ff addi r1,r1,-1
800f6e0: 55 a1 00 0f bgu r13,r1,800f71c <IMFS_memfile_get_block_pointer+0xd4><== NEVER TAKEN
#if 0 fprintf(stdout, "(s %d) ", block ); fflush(stdout); #endif p = info->indirect;
800f6e4: 29 8b 00 58 lw r11,(r12+88)
if ( malloc_it ) { 800f6e8: 45 c0 00 0a be r14,r0,800f710 <IMFS_memfile_get_block_pointer+0xc8> if ( !p ) { 800f6ec: 5d 60 00 04 bne r11,r0,800f6fc <IMFS_memfile_get_block_pointer+0xb4> p = memfile_alloc_block();
800f6f0: fb ff ff c6 calli 800f608 <memfile_alloc_block>
if ( !p )
800f6f4: 44 2b 00 7d be r1,r11,800f8e8 <IMFS_memfile_get_block_pointer+0x2a0><== NEVER TAKEN
return 0; info->indirect = p;
800f6f8: 59 81 00 58 sw (r12+88),r1
} return &info->indirect[ my_block ];
800f6fc: 34 02 00 02 mvi r2,2 800f700: b9 a0 08 00 mv r1,r13 800f704: fb ff c5 32 calli 8000bcc <__ashlsi3> 800f708: 29 82 00 58 lw r2,(r12+88) 800f70c: e0 00 00 75 bi 800f8e0 <IMFS_memfile_get_block_pointer+0x298>
} if ( !p ) return 0; return &info->indirect[ my_block ];
800f710: b9 a0 08 00 mv r1,r13
info->indirect = p; } return &info->indirect[ my_block ]; } if ( !p )
800f714: 5d 6e 00 60 bne r11,r14,800f894 <IMFS_memfile_get_block_pointer+0x24c><== ALWAYS TAKEN
800f718: e0 00 00 74 bi 800f8e8 <IMFS_memfile_get_block_pointer+0x2a0><== NOT EXECUTED
/* * Is the block number in the doubly indirect portion? */ if ( my_block <= LAST_DOUBLY_INDIRECT ) {
800f71c: 35 61 00 01 addi r1,r11,1 <== NOT EXECUTED 800f720: b9 60 10 00 mv r2,r11 <== NOT EXECUTED 800f724: f8 00 43 35 calli 80203f8 <__mulsi3> <== NOT EXECUTED 800f728: b8 20 78 00 mv r15,r1 <== NOT EXECUTED 800f72c: 34 21 ff ff addi r1,r1,-1 <== NOT EXECUTED 800f730: 55 a1 00 28 bgu r13,r1,800f7d0 <IMFS_memfile_get_block_pointer+0x188><== NOT EXECUTED
#if 0 fprintf(stdout, "(d %d) ", block ); fflush(stdout); #endif my_block -= FIRST_DOUBLY_INDIRECT;
800f734: c9 ab 68 00 sub r13,r13,r11 <== NOT EXECUTED
singly = my_block % IMFS_MEMFILE_BLOCK_SLOTS;
800f738: b9 60 10 00 mv r2,r11 <== NOT EXECUTED 800f73c: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 800f740: f8 00 43 bd calli 8020634 <__umodsi3> <== NOT EXECUTED
doubly = my_block / IMFS_MEMFILE_BLOCK_SLOTS;
800f744: b9 60 10 00 mv r2,r11 <== NOT EXECUTED
fflush(stdout); #endif my_block -= FIRST_DOUBLY_INDIRECT; singly = my_block % IMFS_MEMFILE_BLOCK_SLOTS;
800f748: b8 20 78 00 mv r15,r1 <== NOT EXECUTED
doubly = my_block / IMFS_MEMFILE_BLOCK_SLOTS;
800f74c: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 800f750: f8 00 43 a9 calli 80205f4 <__udivsi3> <== NOT EXECUTED 800f754: b8 20 68 00 mv r13,r1 <== NOT EXECUTED
p = info->doubly_indirect;
800f758: 29 8b 00 5c lw r11,(r12+92) <== NOT EXECUTED
if ( malloc_it ) {
800f75c: 45 c0 00 15 be r14,r0,800f7b0 <IMFS_memfile_get_block_pointer+0x168><== NOT EXECUTED
if ( !p ) {
800f760: 5d 60 00 05 bne r11,r0,800f774 <IMFS_memfile_get_block_pointer+0x12c><== NOT EXECUTED
p = memfile_alloc_block();
800f764: fb ff ff a9 calli 800f608 <memfile_alloc_block> <== NOT EXECUTED 800f768: b8 20 58 00 mv r11,r1 <== NOT EXECUTED
if ( !p )
800f76c: 44 20 00 5f be r1,r0,800f8e8 <IMFS_memfile_get_block_pointer+0x2a0><== NOT EXECUTED
return 0; info->doubly_indirect = p;
800f770: 59 81 00 5c sw (r12+92),r1 <== NOT EXECUTED
} p1 = (block_p *)p[ doubly ];
800f774: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 800f778: 34 02 00 02 mvi r2,2 <== NOT EXECUTED 800f77c: fb ff c5 14 calli 8000bcc <__ashlsi3> <== NOT EXECUTED 800f780: b5 61 58 00 add r11,r11,r1 <== NOT EXECUTED 800f784: 29 6c 00 00 lw r12,(r11+0) <== NOT EXECUTED
if ( !p1 ) {
800f788: 5d 80 00 05 bne r12,r0,800f79c <IMFS_memfile_get_block_pointer+0x154><== NOT EXECUTED
p1 = memfile_alloc_block();
800f78c: fb ff ff 9f calli 800f608 <memfile_alloc_block> <== NOT EXECUTED 800f790: b8 20 60 00 mv r12,r1 <== NOT EXECUTED
if ( !p1 )
800f794: 44 20 00 55 be r1,r0,800f8e8 <IMFS_memfile_get_block_pointer+0x2a0><== NOT EXECUTED
return 0; p[ doubly ] = (block_p) p1;
800f798: 59 61 00 00 sw (r11+0),r1 <== NOT EXECUTED
} return (block_p *)&p1[ singly ];
800f79c: b9 e0 08 00 mv r1,r15 <== NOT EXECUTED 800f7a0: 34 02 00 02 mvi r2,2 <== NOT EXECUTED 800f7a4: fb ff c5 0a calli 8000bcc <__ashlsi3> <== NOT EXECUTED 800f7a8: b5 81 08 00 add r1,r12,r1 <== NOT EXECUTED 800f7ac: e0 00 00 50 bi 800f8ec <IMFS_memfile_get_block_pointer+0x2a4><== NOT EXECUTED
} if ( !p )
800f7b0: 45 6e 00 4e be r11,r14,800f8e8 <IMFS_memfile_get_block_pointer+0x2a0><== NOT EXECUTED
return 0; p = (block_p *)p[ doubly ];
800f7b4: 34 02 00 02 mvi r2,2 <== NOT EXECUTED 800f7b8: fb ff c5 05 calli 8000bcc <__ashlsi3> <== NOT EXECUTED 800f7bc: b5 61 08 00 add r1,r11,r1 <== NOT EXECUTED 800f7c0: 28 2b 00 00 lw r11,(r1+0) <== NOT EXECUTED
#if 0 fprintf(stdout, "(d %d %d %d %d %p %p) ", block, my_block, doubly, singly, p, &p[singly] ); fflush(stdout); #endif return (block_p *)&p[ singly ];
800f7c4: b9 e0 08 00 mv r1,r15 <== NOT EXECUTED
if ( !p ) return 0; p = (block_p *)p[ doubly ]; if ( !p )
800f7c8: 5d 60 00 33 bne r11,r0,800f894 <IMFS_memfile_get_block_pointer+0x24c><== NOT EXECUTED 800f7cc: e0 00 00 47 bi 800f8e8 <IMFS_memfile_get_block_pointer+0x2a0><== NOT EXECUTED
#endif /* * Is the block number in the triply indirect portion? */ if ( my_block <= LAST_TRIPLY_INDIRECT ) {
800f7d0: 35 e1 00 01 addi r1,r15,1 <== NOT EXECUTED 800f7d4: b9 60 10 00 mv r2,r11 <== NOT EXECUTED 800f7d8: f8 00 43 08 calli 80203f8 <__mulsi3> <== NOT EXECUTED 800f7dc: 34 21 ff ff addi r1,r1,-1 <== NOT EXECUTED 800f7e0: 55 a1 00 42 bgu r13,r1,800f8e8 <IMFS_memfile_get_block_pointer+0x2a0><== NOT EXECUTED
my_block -= FIRST_TRIPLY_INDIRECT;
800f7e4: c9 af 68 00 sub r13,r13,r15 <== NOT EXECUTED
singly = my_block % IMFS_MEMFILE_BLOCK_SLOTS;
800f7e8: b9 60 10 00 mv r2,r11 <== NOT EXECUTED 800f7ec: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 800f7f0: f8 00 43 91 calli 8020634 <__umodsi3> <== NOT EXECUTED
doubly = my_block / IMFS_MEMFILE_BLOCK_SLOTS;
800f7f4: b9 60 10 00 mv r2,r11 <== NOT EXECUTED
*/ if ( my_block <= LAST_TRIPLY_INDIRECT ) { my_block -= FIRST_TRIPLY_INDIRECT; singly = my_block % IMFS_MEMFILE_BLOCK_SLOTS;
800f7f8: b8 20 80 00 mv r16,r1 <== NOT EXECUTED
doubly = my_block / IMFS_MEMFILE_BLOCK_SLOTS;
800f7fc: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 800f800: f8 00 43 7d calli 80205f4 <__udivsi3> <== NOT EXECUTED
triply = doubly / IMFS_MEMFILE_BLOCK_SLOTS;
800f804: b9 60 10 00 mv r2,r11 <== NOT EXECUTED
if ( my_block <= LAST_TRIPLY_INDIRECT ) { my_block -= FIRST_TRIPLY_INDIRECT; singly = my_block % IMFS_MEMFILE_BLOCK_SLOTS; doubly = my_block / IMFS_MEMFILE_BLOCK_SLOTS;
800f808: b8 20 68 00 mv r13,r1 <== NOT EXECUTED
triply = doubly / IMFS_MEMFILE_BLOCK_SLOTS;
800f80c: f8 00 43 7a calli 80205f4 <__udivsi3> <== NOT EXECUTED
doubly %= IMFS_MEMFILE_BLOCK_SLOTS;
800f810: b9 60 10 00 mv r2,r11 <== NOT EXECUTED
if ( my_block <= LAST_TRIPLY_INDIRECT ) { my_block -= FIRST_TRIPLY_INDIRECT; singly = my_block % IMFS_MEMFILE_BLOCK_SLOTS; doubly = my_block / IMFS_MEMFILE_BLOCK_SLOTS; triply = doubly / IMFS_MEMFILE_BLOCK_SLOTS;
800f814: b8 20 78 00 mv r15,r1 <== NOT EXECUTED
doubly %= IMFS_MEMFILE_BLOCK_SLOTS;
800f818: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 800f81c: f8 00 43 86 calli 8020634 <__umodsi3> <== NOT EXECUTED 800f820: b8 20 68 00 mv r13,r1 <== NOT EXECUTED
p = info->triply_indirect;
800f824: 29 8b 00 60 lw r11,(r12+96) <== NOT EXECUTED
if ( malloc_it ) {
800f828: 45 c0 00 1f be r14,r0,800f8a4 <IMFS_memfile_get_block_pointer+0x25c><== NOT EXECUTED
if ( !p ) {
800f82c: 5d 60 00 05 bne r11,r0,800f840 <IMFS_memfile_get_block_pointer+0x1f8><== NOT EXECUTED
p = memfile_alloc_block();
800f830: fb ff ff 76 calli 800f608 <memfile_alloc_block> <== NOT EXECUTED 800f834: b8 20 58 00 mv r11,r1 <== NOT EXECUTED
if ( !p )
800f838: 44 20 00 2c be r1,r0,800f8e8 <IMFS_memfile_get_block_pointer+0x2a0><== NOT EXECUTED
return 0; info->triply_indirect = p;
800f83c: 59 81 00 60 sw (r12+96),r1 <== NOT EXECUTED
} p1 = (block_p *) p[ triply ];
800f840: b9 e0 08 00 mv r1,r15 <== NOT EXECUTED 800f844: 34 02 00 02 mvi r2,2 <== NOT EXECUTED 800f848: fb ff c4 e1 calli 8000bcc <__ashlsi3> <== NOT EXECUTED 800f84c: b5 61 58 00 add r11,r11,r1 <== NOT EXECUTED 800f850: 29 6c 00 00 lw r12,(r11+0) <== NOT EXECUTED
if ( !p1 ) {
800f854: 5d 80 00 05 bne r12,r0,800f868 <IMFS_memfile_get_block_pointer+0x220><== NOT EXECUTED
p1 = memfile_alloc_block();
800f858: fb ff ff 6c calli 800f608 <memfile_alloc_block> <== NOT EXECUTED 800f85c: b8 20 60 00 mv r12,r1 <== NOT EXECUTED
if ( !p1 )
800f860: 44 20 00 22 be r1,r0,800f8e8 <IMFS_memfile_get_block_pointer+0x2a0><== NOT EXECUTED
return 0; p[ triply ] = (block_p) p1;
800f864: 59 61 00 00 sw (r11+0),r1 <== NOT EXECUTED
} p2 = (block_p *)p1[ doubly ];
800f868: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 800f86c: 34 02 00 02 mvi r2,2 <== NOT EXECUTED 800f870: fb ff c4 d7 calli 8000bcc <__ashlsi3> <== NOT EXECUTED 800f874: b5 81 60 00 add r12,r12,r1 <== NOT EXECUTED 800f878: 29 8b 00 00 lw r11,(r12+0) <== NOT EXECUTED
if ( !p2 ) {
800f87c: 5d 60 00 05 bne r11,r0,800f890 <IMFS_memfile_get_block_pointer+0x248><== NOT EXECUTED
p2 = memfile_alloc_block();
800f880: fb ff ff 62 calli 800f608 <memfile_alloc_block> <== NOT EXECUTED 800f884: b8 20 58 00 mv r11,r1 <== NOT EXECUTED
if ( !p2 )
800f888: 44 20 00 18 be r1,r0,800f8e8 <IMFS_memfile_get_block_pointer+0x2a0><== NOT EXECUTED
return 0; p1[ doubly ] = (block_p) p2;
800f88c: 59 81 00 00 sw (r12+0),r1 <== NOT EXECUTED
} return (block_p *)&p2[ singly ];
800f890: ba 00 08 00 mv r1,r16 <== NOT EXECUTED
800f894: 34 02 00 02 mvi r2,2 800f898: fb ff c4 cd calli 8000bcc <__ashlsi3> 800f89c: b5 61 08 00 add r1,r11,r1 800f8a0: e0 00 00 13 bi 800f8ec <IMFS_memfile_get_block_pointer+0x2a4>
} if ( !p )
800f8a4: 45 6e 00 11 be r11,r14,800f8e8 <IMFS_memfile_get_block_pointer+0x2a0><== NOT EXECUTED
#if 0 fprintf(stdout, "(t %d %d %d %d %d) ", block, my_block, triply, doubly, singly ); fflush(stdout); #endif p1 = (block_p *) p[ triply ];
800f8a8: b9 e0 08 00 mv r1,r15 <== NOT EXECUTED 800f8ac: 34 02 00 02 mvi r2,2 <== NOT EXECUTED 800f8b0: fb ff c4 c7 calli 8000bcc <__ashlsi3> <== NOT EXECUTED 800f8b4: b5 61 08 00 add r1,r11,r1 <== NOT EXECUTED 800f8b8: 28 2b 00 00 lw r11,(r1+0) <== NOT EXECUTED
if ( !p1 )
800f8bc: 45 60 00 0b be r11,r0,800f8e8 <IMFS_memfile_get_block_pointer+0x2a0><== NOT EXECUTED
p2 = (block_p *)p1[ doubly ]; if ( !p ) return 0; return (block_p *)&p2[ singly ];
800f8c0: 34 02 00 02 mvi r2,2 <== NOT EXECUTED 800f8c4: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 800f8c8: fb ff c4 c1 calli 8000bcc <__ashlsi3> <== NOT EXECUTED 800f8cc: b5 61 58 00 add r11,r11,r1 <== NOT EXECUTED 800f8d0: 34 02 00 02 mvi r2,2 <== NOT EXECUTED 800f8d4: ba 00 08 00 mv r1,r16 <== NOT EXECUTED 800f8d8: fb ff c4 bd calli 8000bcc <__ashlsi3> <== NOT EXECUTED 800f8dc: 29 62 00 00 lw r2,(r11+0) <== NOT EXECUTED
800f8e0: b4 41 08 00 add r1,r2,r1 800f8e4: e0 00 00 02 bi 800f8ec <IMFS_memfile_get_block_pointer+0x2a4>
800f8e8: 34 01 00 00 mvi r1,0 <== NOT EXECUTED
/* * This means the requested block number is out of range. */ return 0; }
800f8ec: 2b 9d 00 04 lw ra,(sp+4) 800f8f0: 2b 8b 00 1c lw r11,(sp+28) 800f8f4: 2b 8c 00 18 lw r12,(sp+24) 800f8f8: 2b 8d 00 14 lw r13,(sp+20) 800f8fc: 2b 8e 00 10 lw r14,(sp+16) 800f900: 2b 8f 00 0c lw r15,(sp+12) 800f904: 2b 90 00 08 lw r16,(sp+8) 800f908: 37 9c 00 1c addi sp,sp,28 800f90c: c3 a0 00 00 ret
08010400 <IMFS_memfile_read>: IMFS_jnode_t *the_jnode, off_t start, unsigned char *destination, unsigned int length ) {
8010400: 37 9c ff d4 addi sp,sp,-44 8010404: 5b 8b 00 24 sw (sp+36),r11 8010408: 5b 8c 00 20 sw (sp+32),r12 801040c: 5b 8d 00 1c sw (sp+28),r13 8010410: 5b 8e 00 18 sw (sp+24),r14 8010414: 5b 8f 00 14 sw (sp+20),r15 8010418: 5b 90 00 10 sw (sp+16),r16 801041c: 5b 91 00 0c sw (sp+12),r17 8010420: 5b 92 00 08 sw (sp+8),r18 8010424: 5b 9d 00 04 sw (sp+4),ra 8010428: b8 20 60 00 mv r12,r1 801042c: b8 40 68 00 mv r13,r2 8010430: b8 60 80 00 mv r16,r3 8010434: b8 80 58 00 mv r11,r4
/* * Perform internal consistency checks */ assert( the_jnode );
8010438: 5c 20 00 09 bne r1,r0,801045c <IMFS_memfile_read+0x5c> <== ALWAYS TAKEN
801043c: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8010440: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 8010444: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 8010448: 38 21 1b 60 ori r1,r1,0x1b60 <== NOT EXECUTED 801044c: 38 63 1c ac ori r3,r3,0x1cac <== NOT EXECUTED 8010450: 38 84 1b a8 ori r4,r4,0x1ba8 <== NOT EXECUTED 8010454: 34 02 02 4c mvi r2,588 <== NOT EXECUTED 8010458: e0 00 00 0c bi 8010488 <IMFS_memfile_read+0x88> <== NOT EXECUTED
if ( !the_jnode ) rtems_set_errno_and_return_minus_one( EIO ); assert( the_jnode->type == IMFS_MEMORY_FILE ||
801045c: 28 21 00 4c lw r1,(r1+76) 8010460: 34 03 00 01 mvi r3,1 8010464: 34 22 ff fb addi r2,r1,-5
8010468: 50 62 00 09 bgeu r3,r2,801048c <IMFS_memfile_read+0x8c> <== ALWAYS TAKEN
801046c: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8010470: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 8010474: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 8010478: 38 21 1b 60 ori r1,r1,0x1b60 <== NOT EXECUTED 801047c: 38 63 1c ac ori r3,r3,0x1cac <== NOT EXECUTED 8010480: 38 84 1c 24 ori r4,r4,0x1c24 <== NOT EXECUTED 8010484: 34 02 02 51 mvi r2,593 <== NOT EXECUTED 8010488: fb ff f2 0f calli 800ccc4 <__assert_func> <== NOT EXECUTED
/* * Error checks on arguments */ assert( dest );
801048c: 5e 00 00 09 bne r16,r0,80104b0 <IMFS_memfile_read+0xb0> <== ALWAYS TAKEN
8010490: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8010494: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 8010498: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 801049c: 38 21 1b 60 ori r1,r1,0x1b60 <== NOT EXECUTED 80104a0: 38 63 1c ac ori r3,r3,0x1cac <== NOT EXECUTED 80104a4: 38 84 1c 70 ori r4,r4,0x1c70 <== NOT EXECUTED 80104a8: 34 02 02 5a mvi r2,602 <== NOT EXECUTED 80104ac: e3 ff ff f7 bi 8010488 <IMFS_memfile_read+0x88> <== NOT EXECUTED
/* * If there is nothing to read, then quick exit. */ my_length = length; if ( !my_length )
80104b0: 5c 80 00 06 bne r4,r0,80104c8 <IMFS_memfile_read+0xc8> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( EINVAL );
80104b4: f8 00 04 10 calli 80114f4 <__errno> <== NOT EXECUTED 80104b8: 34 02 00 16 mvi r2,22 <== NOT EXECUTED 80104bc: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 80104c0: 34 01 ff ff mvi r1,-1 <== NOT EXECUTED 80104c4: e0 00 00 88 bi 80106e4 <IMFS_memfile_read+0x2e4> <== NOT EXECUTED
/* * Linear files (as created from a tar file are easier to handle * than block files). */ if (the_jnode->type == IMFS_LINEAR_FILE) {
80104c8: 34 02 00 06 mvi r2,6 80104cc: 29 8e 00 50 lw r14,(r12+80) 80104d0: 29 8f 00 54 lw r15,(r12+84)
80104d4: 5c 22 00 19 bne r1,r2,8010538 <IMFS_memfile_read+0x138> <== ALWAYS TAKEN
unsigned char *file_ptr; file_ptr = (unsigned char *)the_jnode->info.linearfile.direct; if (my_length > (the_jnode->info.linearfile.size - start))
80104d8: 34 02 00 1f mvi r2,31 <== NOT EXECUTED 80104dc: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 80104e0: fb ff c2 0b calli 8000d0c <__ashrsi3> <== NOT EXECUTED 80104e4: c9 ed 18 00 sub r3,r15,r13 <== NOT EXECUTED 80104e8: f4 6f 10 00 cmpgu r2,r3,r15 <== NOT EXECUTED 80104ec: c9 c1 08 00 sub r1,r14,r1 <== NOT EXECUTED 80104f0: c8 22 70 00 sub r14,r1,r2 <== NOT EXECUTED
* than block files). */ if (the_jnode->type == IMFS_LINEAR_FILE) { unsigned char *file_ptr; file_ptr = (unsigned char *)the_jnode->info.linearfile.direct;
80104f4: 29 82 00 58 lw r2,(r12+88) <== NOT EXECUTED
if (my_length > (the_jnode->info.linearfile.size - start))
80104f8: 48 0e 00 04 bg r0,r14,8010508 <IMFS_memfile_read+0x108> <== NOT EXECUTED 80104fc: 5c 0e 00 04 bne r0,r14,801050c <IMFS_memfile_read+0x10c> <== NOT EXECUTED 8010500: 55 63 00 02 bgu r11,r3,8010508 <IMFS_memfile_read+0x108> <== NOT EXECUTED 8010504: e0 00 00 02 bi 801050c <IMFS_memfile_read+0x10c> <== NOT EXECUTED
my_length = the_jnode->info.linearfile.size - start;
8010508: c9 ed 58 00 sub r11,r15,r13 <== NOT EXECUTED
memcpy(dest, &file_ptr[start], my_length);
801050c: b4 4d 10 00 add r2,r2,r13 <== NOT EXECUTED 8010510: b9 60 18 00 mv r3,r11 <== NOT EXECUTED 8010514: ba 00 08 00 mv r1,r16 <== NOT EXECUTED 8010518: f8 00 06 9d calli 8011f8c <memcpy> <== NOT EXECUTED
IMFS_update_atime( the_jnode );
801051c: 37 81 00 28 addi r1,sp,40 <== NOT EXECUTED 8010520: 34 02 00 00 mvi r2,0 <== NOT EXECUTED 8010524: fb ff c9 47 calli 8002a40 <gettimeofday> <== NOT EXECUTED 8010528: 2b 81 00 28 lw r1,(sp+40) <== NOT EXECUTED 801052c: 59 81 00 40 sw (r12+64),r1 <== NOT EXECUTED
return my_length;
8010530: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8010534: e0 00 00 6c bi 80106e4 <IMFS_memfile_read+0x2e4> <== NOT EXECUTED
* If the last byte we are supposed to read is past the end of this * in memory file, then shorten the length to read. */ last_byte = start + length; if ( last_byte > the_jnode->info.file.size )
8010538: b4 8d 08 00 add r1,r4,r13
801053c: 48 0e 00 04 bg r0,r14,801054c <IMFS_memfile_read+0x14c> <== NEVER TAKEN 8010540: 5c 0e 00 04 bne r0,r14,8010550 <IMFS_memfile_read+0x150> <== NEVER TAKEN
8010544: 54 2f 00 02 bgu r1,r15,801054c <IMFS_memfile_read+0x14c>
8010548: e0 00 00 02 bi 8010550 <IMFS_memfile_read+0x150>
my_length = the_jnode->info.file.size - start;
801054c: c9 ed 58 00 sub r11,r15,r13
/* * Phase 1: possibly the last part of one block */ start_offset = start % IMFS_MEMFILE_BYTES_PER_BLOCK;
8010550: 78 01 08 02 mvhi r1,0x802 8010554: 38 21 36 4c ori r1,r1,0x364c 8010558: 28 32 00 00 lw r18,(r1+0) 801055c: b9 a0 08 00 mv r1,r13
block = start / IMFS_MEMFILE_BYTES_PER_BLOCK; if ( start_offset ) {
8010560: ba 00 78 00 mv r15,r16
/* * Phase 1: possibly the last part of one block */ start_offset = start % IMFS_MEMFILE_BYTES_PER_BLOCK;
8010564: ba 40 10 00 mv r2,r18 8010568: f8 00 3f f7 calli 8020544 <__modsi3> 801056c: b8 20 88 00 mv r17,r1
block = start / IMFS_MEMFILE_BYTES_PER_BLOCK;
8010570: ba 40 10 00 mv r2,r18 8010574: b9 a0 08 00 mv r1,r13 8010578: f8 00 3f c0 calli 8020478 <__divsi3> 801057c: b8 20 68 00 mv r13,r1
if ( start_offset ) {
8010580: ba 20 70 00 mv r14,r17
8010584: 46 20 00 1a be r17,r0,80105ec <IMFS_memfile_read+0x1ec> to_copy = IMFS_MEMFILE_BYTES_PER_BLOCK - start_offset; if ( to_copy > my_length ) to_copy = my_length; block_ptr = IMFS_memfile_get_block_pointer( the_jnode, block, 0 );
8010588: b9 80 08 00 mv r1,r12 801058c: b9 a0 10 00 mv r2,r13 8010590: 34 03 00 00 mvi r3,0 8010594: fb ff fc 2d calli 800f648 <IMFS_memfile_get_block_pointer>
assert( block_ptr );
8010598: 5c 20 00 09 bne r1,r0,80105bc <IMFS_memfile_read+0x1bc> <== ALWAYS TAKEN
801059c: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 80105a0: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 80105a4: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 80105a8: 38 21 1b 60 ori r1,r1,0x1b60 <== NOT EXECUTED 80105ac: 38 63 1c ac ori r3,r3,0x1cac <== NOT EXECUTED 80105b0: 38 84 1b e4 ori r4,r4,0x1be4 <== NOT EXECUTED 80105b4: 34 02 02 96 mvi r2,662 <== NOT EXECUTED 80105b8: e3 ff ff b4 bi 8010488 <IMFS_memfile_read+0x88> <== NOT EXECUTED
*/ start_offset = start % IMFS_MEMFILE_BYTES_PER_BLOCK; block = start / IMFS_MEMFILE_BYTES_PER_BLOCK; if ( start_offset ) { to_copy = IMFS_MEMFILE_BYTES_PER_BLOCK - start_offset;
80105bc: ca 51 90 00 sub r18,r18,r17 80105c0: b9 60 70 00 mv r14,r11
80105c4: 52 4b 00 02 bgeu r18,r11,80105cc <IMFS_memfile_read+0x1cc>
80105c8: ba 40 70 00 mv r14,r18
to_copy = my_length; block_ptr = IMFS_memfile_get_block_pointer( the_jnode, block, 0 ); assert( block_ptr ); if ( !block_ptr ) return copied; memcpy( dest, &(*block_ptr)[ start_offset ], to_copy );
80105cc: 28 22 00 00 lw r2,(r1+0) 80105d0: b9 c0 18 00 mv r3,r14 80105d4: ba 00 08 00 mv r1,r16 80105d8: b4 51 10 00 add r2,r2,r17 80105dc: f8 00 06 6c calli 8011f8c <memcpy>
dest += to_copy;
80105e0: b6 0e 78 00 add r15,r16,r14
block++;
80105e4: 35 ad 00 01 addi r13,r13,1
my_length -= to_copy;
80105e8: c9 6e 58 00 sub r11,r11,r14
/* * Phase 2: all of zero of more blocks */ to_copy = IMFS_MEMFILE_BYTES_PER_BLOCK;
80105ec: 78 01 08 02 mvhi r1,0x802 80105f0: 38 21 36 4c ori r1,r1,0x364c
while ( my_length >= IMFS_MEMFILE_BYTES_PER_BLOCK ) {
80105f4: b8 20 88 00 mv r17,r1
/* * Phase 2: all of zero of more blocks */ to_copy = IMFS_MEMFILE_BYTES_PER_BLOCK;
80105f8: 28 30 00 00 lw r16,(r1+0)
while ( my_length >= IMFS_MEMFILE_BYTES_PER_BLOCK ) {
80105fc: e0 00 00 16 bi 8010654 <IMFS_memfile_read+0x254>
block_ptr = IMFS_memfile_get_block_pointer( the_jnode, block, 0 );
8010600: b9 80 08 00 mv r1,r12 8010604: b9 a0 10 00 mv r2,r13 8010608: 34 03 00 00 mvi r3,0 801060c: fb ff fc 0f calli 800f648 <IMFS_memfile_get_block_pointer>
assert( block_ptr );
8010610: 5c 20 00 09 bne r1,r0,8010634 <IMFS_memfile_read+0x234> <== ALWAYS TAKEN
8010614: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8010618: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 801061c: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 8010620: 38 21 1b 60 ori r1,r1,0x1b60 <== NOT EXECUTED 8010624: 38 63 1c ac ori r3,r3,0x1cac <== NOT EXECUTED 8010628: 38 84 1b e4 ori r4,r4,0x1be4 <== NOT EXECUTED 801062c: 34 02 02 a7 mvi r2,679 <== NOT EXECUTED 8010630: e3 ff ff 96 bi 8010488 <IMFS_memfile_read+0x88> <== NOT EXECUTED
if ( !block_ptr ) return copied; memcpy( dest, &(*block_ptr)[ 0 ], to_copy );
8010634: 28 22 00 00 lw r2,(r1+0) 8010638: ba 00 18 00 mv r3,r16 801063c: b9 e0 08 00 mv r1,r15 8010640: f8 00 06 53 calli 8011f8c <memcpy>
dest += to_copy;
8010644: b5 f0 78 00 add r15,r15,r16
block++;
8010648: 35 ad 00 01 addi r13,r13,1
my_length -= to_copy;
801064c: c9 70 58 00 sub r11,r11,r16
copied += to_copy;
8010650: b5 d0 70 00 add r14,r14,r16
/* * Phase 2: all of zero of more blocks */ to_copy = IMFS_MEMFILE_BYTES_PER_BLOCK; while ( my_length >= IMFS_MEMFILE_BYTES_PER_BLOCK ) {
8010654: 2a 21 00 00 lw r1,(r17+0)
8010658: 51 61 ff ea bgeu r11,r1,8010600 <IMFS_memfile_read+0x200> /* * Phase 3: possibly the first part of one block */ assert( my_length < IMFS_MEMFILE_BYTES_PER_BLOCK );
801065c: 54 2b 00 09 bgu r1,r11,8010680 <IMFS_memfile_read+0x280> <== ALWAYS TAKEN
8010660: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8010664: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 8010668: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 801066c: 38 21 1b 60 ori r1,r1,0x1b60 <== NOT EXECUTED 8010670: 38 63 1c ac ori r3,r3,0x1cac <== NOT EXECUTED 8010674: 38 84 1b f8 ori r4,r4,0x1bf8 <== NOT EXECUTED 8010678: 34 02 02 b5 mvi r2,693 <== NOT EXECUTED 801067c: e3 ff ff 83 bi 8010488 <IMFS_memfile_read+0x88> <== NOT EXECUTED
if ( my_length ) { 8010680: 45 60 00 13 be r11,r0,80106cc <IMFS_memfile_read+0x2cc> block_ptr = IMFS_memfile_get_block_pointer( the_jnode, block, 0 );
8010684: b9 a0 10 00 mv r2,r13 8010688: b9 80 08 00 mv r1,r12 801068c: 34 03 00 00 mvi r3,0 8010690: fb ff fb ee calli 800f648 <IMFS_memfile_get_block_pointer>
assert( block_ptr );
8010694: 5c 20 00 09 bne r1,r0,80106b8 <IMFS_memfile_read+0x2b8> <== ALWAYS TAKEN
8010698: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 801069c: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 80106a0: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 80106a4: 38 21 1b 60 ori r1,r1,0x1b60 <== NOT EXECUTED 80106a8: 38 63 1c ac ori r3,r3,0x1cac <== NOT EXECUTED 80106ac: 38 84 1b e4 ori r4,r4,0x1be4 <== NOT EXECUTED 80106b0: 34 02 02 b9 mvi r2,697 <== NOT EXECUTED 80106b4: e3 ff ff 75 bi 8010488 <IMFS_memfile_read+0x88> <== NOT EXECUTED
if ( !block_ptr ) return copied; memcpy( dest, &(*block_ptr)[ 0 ], my_length );
80106b8: 28 22 00 00 lw r2,(r1+0) 80106bc: b9 60 18 00 mv r3,r11 80106c0: b9 e0 08 00 mv r1,r15 80106c4: f8 00 06 32 calli 8011f8c <memcpy>
copied += my_length;
80106c8: b5 6e 70 00 add r14,r11,r14
} IMFS_update_atime( the_jnode );
80106cc: 37 81 00 28 addi r1,sp,40 80106d0: 34 02 00 00 mvi r2,0 80106d4: fb ff c8 db calli 8002a40 <gettimeofday> 80106d8: 2b 81 00 28 lw r1,(sp+40) 80106dc: 59 81 00 40 sw (r12+64),r1
return copied;
80106e0: b9 c0 08 00 mv r1,r14
}
80106e4: 2b 9d 00 04 lw ra,(sp+4) 80106e8: 2b 8b 00 24 lw r11,(sp+36) 80106ec: 2b 8c 00 20 lw r12,(sp+32) 80106f0: 2b 8d 00 1c lw r13,(sp+28) 80106f4: 2b 8e 00 18 lw r14,(sp+24) 80106f8: 2b 8f 00 14 lw r15,(sp+20) 80106fc: 2b 90 00 10 lw r16,(sp+16) 8010700: 2b 91 00 0c lw r17,(sp+12) 8010704: 2b 92 00 08 lw r18,(sp+8) 8010708: 37 9c 00 2c addi sp,sp,44 801070c: c3 a0 00 00 ret
0800fa0c <IMFS_memfile_remove>: */ int IMFS_memfile_remove( IMFS_jnode_t *the_jnode ) {
800fa0c: 37 9c ff e0 addi sp,sp,-32 800fa10: 5b 8b 00 20 sw (sp+32),r11 800fa14: 5b 8c 00 1c sw (sp+28),r12 800fa18: 5b 8d 00 18 sw (sp+24),r13 800fa1c: 5b 8e 00 14 sw (sp+20),r14 800fa20: 5b 8f 00 10 sw (sp+16),r15 800fa24: 5b 90 00 0c sw (sp+12),r16 800fa28: 5b 91 00 08 sw (sp+8),r17 800fa2c: 5b 9d 00 04 sw (sp+4),ra 800fa30: b8 20 58 00 mv r11,r1
/* * Perform internal consistency checks */ assert( the_jnode );
800fa34: 5c 20 00 09 bne r1,r0,800fa58 <IMFS_memfile_remove+0x4c> <== ALWAYS TAKEN
800fa38: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 800fa3c: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 800fa40: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 800fa44: 38 21 1b 60 ori r1,r1,0x1b60 <== NOT EXECUTED 800fa48: 38 63 1c c0 ori r3,r3,0x1cc0 <== NOT EXECUTED 800fa4c: 38 84 1b a8 ori r4,r4,0x1ba8 <== NOT EXECUTED 800fa50: 34 02 01 ee mvi r2,494 <== NOT EXECUTED 800fa54: e0 00 00 0b bi 800fa80 <IMFS_memfile_remove+0x74> <== NOT EXECUTED
if ( !the_jnode ) rtems_set_errno_and_return_minus_one( EIO ); assert( the_jnode->type == IMFS_MEMORY_FILE );
800fa58: 28 22 00 4c lw r2,(r1+76) 800fa5c: 34 01 00 05 mvi r1,5
800fa60: 44 41 00 09 be r2,r1,800fa84 <IMFS_memfile_remove+0x78> <== ALWAYS TAKEN
800fa64: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 800fa68: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 800fa6c: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 800fa70: 38 21 1b 60 ori r1,r1,0x1b60 <== NOT EXECUTED 800fa74: 38 63 1c c0 ori r3,r3,0x1cc0 <== NOT EXECUTED 800fa78: 38 84 1b b4 ori r4,r4,0x1bb4 <== NOT EXECUTED 800fa7c: 34 02 01 f2 mvi r2,498 <== NOT EXECUTED 800fa80: fb ff f4 91 calli 800ccc4 <__assert_func> <== NOT EXECUTED
/* * Eventually this could be set smarter at each call to * memfile_free_blocks_in_table to greatly speed this up. */ to_free = IMFS_MEMFILE_BLOCK_SLOTS;
800fa84: 78 01 08 02 mvhi r1,0x802 800fa88: 38 21 36 4c ori r1,r1,0x364c 800fa8c: 28 21 00 00 lw r1,(r1+0) 800fa90: 34 02 00 02 mvi r2,2 800fa94: fb ff c4 76 calli 8000c6c <__lshrsi3> 800fa98: b8 20 60 00 mv r12,r1
* + indirect * + doubly indirect * + triply indirect */ info = &the_jnode->info.file;
800fa9c: 29 61 00 58 lw r1,(r11+88)
800faa0: 44 20 00 04 be r1,r0,800fab0 <IMFS_memfile_remove+0xa4> if ( info->indirect ) { memfile_free_blocks_in_table( &info->indirect, to_free );
800faa4: 35 61 00 58 addi r1,r11,88 800faa8: b9 80 10 00 mv r2,r12 800faac: fb ff ff 99 calli 800f910 <memfile_free_blocks_in_table>
* + indirect * + doubly indirect * + triply indirect */ info = &the_jnode->info.file;
800fab0: 29 61 00 5c lw r1,(r11+92)
800fab4: 44 20 00 15 be r1,r0,800fb08 <IMFS_memfile_remove+0xfc> <== ALWAYS TAKEN
800fab8: 34 0d 00 00 mvi r13,0 <== NOT EXECUTED
memfile_free_blocks_in_table( &info->indirect, to_free ); } if ( info->doubly_indirect ) { for ( i=0 ; i<IMFS_MEMFILE_BLOCK_SLOTS ; i++ ) {
800fabc: 78 0f 08 02 mvhi r15,0x802 <== NOT EXECUTED 800fac0: 39 ef 36 4c ori r15,r15,0x364c <== NOT EXECUTED
* + indirect * + doubly indirect * + triply indirect */ info = &the_jnode->info.file;
800fac4: b9 a0 70 00 mv r14,r13 <== NOT EXECUTED 800fac8: e0 00 00 09 bi 800faec <IMFS_memfile_remove+0xe0> <== NOT EXECUTED
} if ( info->doubly_indirect ) { for ( i=0 ; i<IMFS_MEMFILE_BLOCK_SLOTS ; i++ ) { if ( info->doubly_indirect[i] ) {
800facc: 29 61 00 5c lw r1,(r11+92) <== NOT EXECUTED 800fad0: b4 2d 08 00 add r1,r1,r13 <== NOT EXECUTED 800fad4: 28 22 00 00 lw r2,(r1+0) <== NOT EXECUTED 800fad8: 44 40 00 03 be r2,r0,800fae4 <IMFS_memfile_remove+0xd8> <== NOT EXECUTED
memfile_free_blocks_in_table(
800fadc: b9 80 10 00 mv r2,r12 <== NOT EXECUTED 800fae0: fb ff ff 8c calli 800f910 <memfile_free_blocks_in_table> <== NOT EXECUTED
memfile_free_blocks_in_table( &info->indirect, to_free ); } if ( info->doubly_indirect ) { for ( i=0 ; i<IMFS_MEMFILE_BLOCK_SLOTS ; i++ ) {
800fae4: 35 ce 00 01 addi r14,r14,1 <== NOT EXECUTED 800fae8: 35 ad 00 04 addi r13,r13,4 <== NOT EXECUTED 800faec: 29 e1 00 00 lw r1,(r15+0) <== NOT EXECUTED 800faf0: 34 02 00 02 mvi r2,2 <== NOT EXECUTED 800faf4: fb ff c4 5e calli 8000c6c <__lshrsi3> <== NOT EXECUTED 800faf8: 54 2e ff f5 bgu r1,r14,800facc <IMFS_memfile_remove+0xc0> <== NOT EXECUTED
if ( info->doubly_indirect[i] ) { memfile_free_blocks_in_table( (block_p **)&info->doubly_indirect[i], to_free ); } } memfile_free_blocks_in_table( &info->doubly_indirect, to_free );
800fafc: 35 61 00 5c addi r1,r11,92 <== NOT EXECUTED 800fb00: b9 80 10 00 mv r2,r12 <== NOT EXECUTED 800fb04: fb ff ff 83 calli 800f910 <memfile_free_blocks_in_table> <== NOT EXECUTED
* + indirect * + doubly indirect * + triply indirect */ info = &the_jnode->info.file;
800fb08: 29 61 00 60 lw r1,(r11+96)
800fb0c: 44 20 00 24 be r1,r0,800fb9c <IMFS_memfile_remove+0x190> <== ALWAYS TAKEN
800fb10: 34 0d 00 00 mvi r13,0 <== NOT EXECUTED
memfile_free_blocks_in_table( &info->doubly_indirect, to_free ); } if ( info->triply_indirect ) { for ( i=0 ; i<IMFS_MEMFILE_BLOCK_SLOTS ; i++ ) {
800fb14: 78 0f 08 02 mvhi r15,0x802 <== NOT EXECUTED 800fb18: 39 ef 36 4c ori r15,r15,0x364c <== NOT EXECUTED
* + indirect * + doubly indirect * + triply indirect */ info = &the_jnode->info.file;
800fb1c: b9 a0 80 00 mv r16,r13 <== NOT EXECUTED 800fb20: e0 00 00 18 bi 800fb80 <IMFS_memfile_remove+0x174> <== NOT EXECUTED
} if ( info->triply_indirect ) { for ( i=0 ; i<IMFS_MEMFILE_BLOCK_SLOTS ; i++ ) { p = (block_p *) info->triply_indirect[i];
800fb24: 29 61 00 60 lw r1,(r11+96) <== NOT EXECUTED 800fb28: b4 2d 08 00 add r1,r1,r13 <== NOT EXECUTED 800fb2c: 28 2e 00 00 lw r14,(r1+0) <== NOT EXECUTED
if ( !p ) /* ensure we have a valid pointer */
800fb30: 45 c0 00 18 be r14,r0,800fb90 <IMFS_memfile_remove+0x184> <== NOT EXECUTED 800fb34: 34 11 00 00 mvi r17,0 <== NOT EXECUTED 800fb38: e0 00 00 08 bi 800fb58 <IMFS_memfile_remove+0x14c> <== NOT EXECUTED
break; for ( j=0 ; j<IMFS_MEMFILE_BLOCK_SLOTS ; j++ ) { if ( p[j] ) {
800fb3c: 29 c1 00 00 lw r1,(r14+0) <== NOT EXECUTED 800fb40: 44 20 00 04 be r1,r0,800fb50 <IMFS_memfile_remove+0x144> <== NOT EXECUTED
memfile_free_blocks_in_table( (block_p **)&p[j], to_free);
800fb44: b9 c0 08 00 mv r1,r14 <== NOT EXECUTED 800fb48: b9 80 10 00 mv r2,r12 <== NOT EXECUTED 800fb4c: fb ff ff 71 calli 800f910 <memfile_free_blocks_in_table> <== NOT EXECUTED
if ( info->triply_indirect ) { for ( i=0 ; i<IMFS_MEMFILE_BLOCK_SLOTS ; i++ ) { p = (block_p *) info->triply_indirect[i]; if ( !p ) /* ensure we have a valid pointer */ break; for ( j=0 ; j<IMFS_MEMFILE_BLOCK_SLOTS ; j++ ) {
800fb50: 36 31 00 01 addi r17,r17,1 <== NOT EXECUTED 800fb54: 35 ce 00 04 addi r14,r14,4 <== NOT EXECUTED 800fb58: 29 e1 00 00 lw r1,(r15+0) <== NOT EXECUTED 800fb5c: 34 02 00 02 mvi r2,2 <== NOT EXECUTED 800fb60: fb ff c4 43 calli 8000c6c <__lshrsi3> <== NOT EXECUTED 800fb64: 54 31 ff f6 bgu r1,r17,800fb3c <IMFS_memfile_remove+0x130> <== NOT EXECUTED
if ( p[j] ) { memfile_free_blocks_in_table( (block_p **)&p[j], to_free); } } memfile_free_blocks_in_table(
800fb68: 29 61 00 60 lw r1,(r11+96) <== NOT EXECUTED 800fb6c: b9 80 10 00 mv r2,r12 <== NOT EXECUTED
memfile_free_blocks_in_table( &info->doubly_indirect, to_free ); } if ( info->triply_indirect ) { for ( i=0 ; i<IMFS_MEMFILE_BLOCK_SLOTS ; i++ ) {
800fb70: 36 10 00 01 addi r16,r16,1 <== NOT EXECUTED
for ( j=0 ; j<IMFS_MEMFILE_BLOCK_SLOTS ; j++ ) { if ( p[j] ) { memfile_free_blocks_in_table( (block_p **)&p[j], to_free); } } memfile_free_blocks_in_table(
800fb74: b4 2d 08 00 add r1,r1,r13 <== NOT EXECUTED 800fb78: fb ff ff 66 calli 800f910 <memfile_free_blocks_in_table> <== NOT EXECUTED
memfile_free_blocks_in_table( &info->doubly_indirect, to_free ); } if ( info->triply_indirect ) { for ( i=0 ; i<IMFS_MEMFILE_BLOCK_SLOTS ; i++ ) {
800fb7c: 35 ad 00 04 addi r13,r13,4 <== NOT EXECUTED 800fb80: 29 e1 00 00 lw r1,(r15+0) <== NOT EXECUTED 800fb84: 34 02 00 02 mvi r2,2 <== NOT EXECUTED 800fb88: fb ff c4 39 calli 8000c6c <__lshrsi3> <== NOT EXECUTED 800fb8c: 54 30 ff e6 bgu r1,r16,800fb24 <IMFS_memfile_remove+0x118> <== NOT EXECUTED
} } memfile_free_blocks_in_table( (block_p **)&info->triply_indirect[i], to_free ); } memfile_free_blocks_in_table(
800fb90: 35 61 00 60 addi r1,r11,96 <== NOT EXECUTED 800fb94: b9 80 10 00 mv r2,r12 <== NOT EXECUTED 800fb98: fb ff ff 5e calli 800f910 <memfile_free_blocks_in_table> <== NOT EXECUTED
(block_p **)&info->triply_indirect, to_free ); } return 0; }
800fb9c: 34 01 00 00 mvi r1,0 800fba0: 2b 9d 00 04 lw ra,(sp+4) 800fba4: 2b 8b 00 20 lw r11,(sp+32) 800fba8: 2b 8c 00 1c lw r12,(sp+28) 800fbac: 2b 8d 00 18 lw r13,(sp+24) 800fbb0: 2b 8e 00 14 lw r14,(sp+20) 800fbb4: 2b 8f 00 10 lw r15,(sp+16) 800fbb8: 2b 90 00 0c lw r16,(sp+12) 800fbbc: 2b 91 00 08 lw r17,(sp+8) 800fbc0: 37 9c 00 20 addi sp,sp,32 800fbc4: c3 a0 00 00 ret
0800f9b4 <IMFS_memfile_remove_block>: MEMFILE_STATIC int IMFS_memfile_remove_block( IMFS_jnode_t *the_jnode, unsigned int block ) {
800f9b4: 37 9c ff fc addi sp,sp,-4 <== NOT EXECUTED 800f9b8: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
block_p *block_ptr; block_p ptr; block_ptr = IMFS_memfile_get_block_pointer( the_jnode, block, 0 );
800f9bc: 34 03 00 00 mvi r3,0 <== NOT EXECUTED 800f9c0: fb ff ff 22 calli 800f648 <IMFS_memfile_get_block_pointer> <== NOT EXECUTED
assert( block_ptr );
800f9c4: 5c 20 00 09 bne r1,r0,800f9e8 <IMFS_memfile_remove_block+0x34><== NOT EXECUTED 800f9c8: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 800f9cc: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 800f9d0: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 800f9d4: 38 21 1b 60 ori r1,r1,0x1b60 <== NOT EXECUTED 800f9d8: 38 63 1c f4 ori r3,r3,0x1cf4 <== NOT EXECUTED 800f9dc: 38 84 1b e4 ori r4,r4,0x1be4 <== NOT EXECUTED 800f9e0: 34 02 01 96 mvi r2,406 <== NOT EXECUTED 800f9e4: fb ff f4 b8 calli 800ccc4 <__assert_func> <== NOT EXECUTED
if ( block_ptr ) { ptr = *block_ptr;
800f9e8: 28 22 00 00 lw r2,(r1+0) <== NOT EXECUTED
*block_ptr = 0;
800f9ec: 34 03 00 00 mvi r3,0 <== NOT EXECUTED 800f9f0: 58 23 00 00 sw (r1+0),r3 <== NOT EXECUTED
memfile_free_block( ptr );
800f9f4: b8 40 08 00 mv r1,r2 <== NOT EXECUTED 800f9f8: fb ff fe f9 calli 800f5dc <memfile_free_block> <== NOT EXECUTED
} return 1; }
800f9fc: 34 01 00 01 mvi r1,1 <== NOT EXECUTED 800fa00: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 800fa04: 37 9c 00 04 addi sp,sp,4 <== NOT EXECUTED 800fa08: c3 a0 00 00 ret <== NOT EXECUTED
08010034 <IMFS_memfile_write>: IMFS_jnode_t *the_jnode, off_t start, const unsigned char *source, unsigned int length ) {
8010034: 37 9c ff d0 addi sp,sp,-48 8010038: 5b 8b 00 28 sw (sp+40),r11 801003c: 5b 8c 00 24 sw (sp+36),r12 8010040: 5b 8d 00 20 sw (sp+32),r13 8010044: 5b 8e 00 1c sw (sp+28),r14 8010048: 5b 8f 00 18 sw (sp+24),r15 801004c: 5b 90 00 14 sw (sp+20),r16 8010050: 5b 91 00 10 sw (sp+16),r17 8010054: 5b 92 00 0c sw (sp+12),r18 8010058: 5b 93 00 08 sw (sp+8),r19 801005c: 5b 9d 00 04 sw (sp+4),ra 8010060: b8 20 58 00 mv r11,r1 8010064: b8 40 60 00 mv r12,r2 8010068: b8 60 88 00 mv r17,r3 801006c: b8 80 78 00 mv r15,r4
/* * Perform internal consistency checks */ assert( the_jnode );
8010070: 5c 20 00 09 bne r1,r0,8010094 <IMFS_memfile_write+0x60> <== ALWAYS TAKEN
8010074: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8010078: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 801007c: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 8010080: 38 21 1b 60 ori r1,r1,0x1b60 <== NOT EXECUTED 8010084: 38 63 1c 98 ori r3,r3,0x1c98 <== NOT EXECUTED 8010088: 38 84 1b a8 ori r4,r4,0x1ba8 <== NOT EXECUTED 801008c: 34 02 02 e3 mvi r2,739 <== NOT EXECUTED 8010090: e0 00 00 0b bi 80100bc <IMFS_memfile_write+0x88> <== NOT EXECUTED
if ( !the_jnode ) rtems_set_errno_and_return_minus_one( EIO ); assert( the_jnode->type == IMFS_MEMORY_FILE );
8010094: 28 22 00 4c lw r2,(r1+76) 8010098: 34 01 00 05 mvi r1,5
801009c: 44 41 00 09 be r2,r1,80100c0 <IMFS_memfile_write+0x8c> <== ALWAYS TAKEN
80100a0: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 80100a4: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 80100a8: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 80100ac: 38 21 1b 60 ori r1,r1,0x1b60 <== NOT EXECUTED 80100b0: 38 63 1c 98 ori r3,r3,0x1c98 <== NOT EXECUTED 80100b4: 38 84 1b b4 ori r4,r4,0x1bb4 <== NOT EXECUTED 80100b8: 34 02 02 e7 mvi r2,743 <== NOT EXECUTED 80100bc: fb ff f3 02 calli 800ccc4 <__assert_func> <== NOT EXECUTED
/* * Error check arguments */ assert( source );
80100c0: 5c 60 00 09 bne r3,r0,80100e4 <IMFS_memfile_write+0xb0> <== ALWAYS TAKEN
80100c4: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 80100c8: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 80100cc: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 80100d0: 38 21 1b 60 ori r1,r1,0x1b60 <== NOT EXECUTED 80100d4: 38 63 1c 98 ori r3,r3,0x1c98 <== NOT EXECUTED 80100d8: 38 84 1b f0 ori r4,r4,0x1bf0 <== NOT EXECUTED 80100dc: 34 02 02 ef mvi r2,751 <== NOT EXECUTED 80100e0: e3 ff ff f7 bi 80100bc <IMFS_memfile_write+0x88> <== NOT EXECUTED
/* * If there is nothing to write, then quick exit. */ my_length = length; if ( !my_length )
80100e4: 5c 80 00 04 bne r4,r0,80100f4 <IMFS_memfile_write+0xc0> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( EINVAL );
80100e8: f8 00 05 03 calli 80114f4 <__errno> <== NOT EXECUTED 80100ec: 34 02 00 16 mvi r2,22 <== NOT EXECUTED 80100f0: e0 00 00 0d bi 8010124 <IMFS_memfile_write+0xf0> <== NOT EXECUTED
* If the last byte we are supposed to write is past the end of this * in memory file, then extend the length. */ last_byte = start + length; if ( last_byte > the_jnode->info.file.size ) {
80100f4: 29 61 00 50 lw r1,(r11+80)
/* * If the last byte we are supposed to write is past the end of this * in memory file, then extend the length. */ last_byte = start + length;
80100f8: b4 8c 10 00 add r2,r4,r12
if ( last_byte > the_jnode->info.file.size ) {
80100fc: 48 01 00 05 bg r0,r1,8010110 <IMFS_memfile_write+0xdc> <== NEVER TAKEN 8010100: 5c 20 00 0c bne r1,r0,8010130 <IMFS_memfile_write+0xfc> <== NEVER TAKEN
8010104: 29 61 00 54 lw r1,(r11+84)
8010108: 54 41 00 02 bgu r2,r1,8010110 <IMFS_memfile_write+0xdc> <== ALWAYS TAKEN
801010c: e0 00 00 09 bi 8010130 <IMFS_memfile_write+0xfc> <== NOT EXECUTED
status = IMFS_memfile_extend( the_jnode, last_byte );
8010110: b9 60 08 00 mv r1,r11 8010114: fb ff ff 18 calli 800fd74 <IMFS_memfile_extend>
if ( status )
8010118: 44 20 00 06 be r1,r0,8010130 <IMFS_memfile_write+0xfc> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( ENOSPC );
801011c: f8 00 04 f6 calli 80114f4 <__errno> <== NOT EXECUTED 8010120: 34 02 00 1c mvi r2,28 <== NOT EXECUTED 8010124: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 8010128: 34 0c ff ff mvi r12,-1 <== NOT EXECUTED 801012c: e0 00 00 66 bi 80102c4 <IMFS_memfile_write+0x290> <== NOT EXECUTED
/* * Phase 1: possibly the last part of one block */ start_offset = start % IMFS_MEMFILE_BYTES_PER_BLOCK;
8010130: 78 01 08 02 mvhi r1,0x802 8010134: 38 21 36 4c ori r1,r1,0x364c 8010138: 28 33 00 00 lw r19,(r1+0) 801013c: b9 80 08 00 mv r1,r12
block = start / IMFS_MEMFILE_BYTES_PER_BLOCK; if ( start_offset ) {
8010140: ba 20 80 00 mv r16,r17
/* * Phase 1: possibly the last part of one block */ start_offset = start % IMFS_MEMFILE_BYTES_PER_BLOCK;
8010144: ba 60 10 00 mv r2,r19 8010148: f8 00 40 ff calli 8020544 <__modsi3> 801014c: b8 20 90 00 mv r18,r1
block = start / IMFS_MEMFILE_BYTES_PER_BLOCK;
8010150: ba 60 10 00 mv r2,r19 8010154: b9 80 08 00 mv r1,r12 8010158: f8 00 40 c8 calli 8020478 <__divsi3> 801015c: b8 20 70 00 mv r14,r1
if ( start_offset ) {
8010160: b9 e0 68 00 mv r13,r15 8010164: ba 40 60 00 mv r12,r18
8010168: 46 40 00 19 be r18,r0,80101cc <IMFS_memfile_write+0x198> to_copy = IMFS_MEMFILE_BYTES_PER_BLOCK - start_offset; if ( to_copy > my_length ) to_copy = my_length; block_ptr = IMFS_memfile_get_block_pointer( the_jnode, block, 0 );
801016c: b9 60 08 00 mv r1,r11 8010170: b9 c0 10 00 mv r2,r14 8010174: 34 03 00 00 mvi r3,0 8010178: fb ff fd 34 calli 800f648 <IMFS_memfile_get_block_pointer>
assert( block_ptr );
801017c: 5c 20 00 09 bne r1,r0,80101a0 <IMFS_memfile_write+0x16c> <== ALWAYS TAKEN
8010180: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8010184: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 8010188: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 801018c: 38 21 1b 60 ori r1,r1,0x1b60 <== NOT EXECUTED 8010190: 38 63 1c 98 ori r3,r3,0x1c98 <== NOT EXECUTED 8010194: 38 84 1b e4 ori r4,r4,0x1be4 <== NOT EXECUTED 8010198: 34 02 03 1c mvi r2,796 <== NOT EXECUTED 801019c: e3 ff ff c8 bi 80100bc <IMFS_memfile_write+0x88> <== NOT EXECUTED
*/ start_offset = start % IMFS_MEMFILE_BYTES_PER_BLOCK; block = start / IMFS_MEMFILE_BYTES_PER_BLOCK; if ( start_offset ) { to_copy = IMFS_MEMFILE_BYTES_PER_BLOCK - start_offset;
80101a0: ca 72 60 00 sub r12,r19,r18
80101a4: 51 ec 00 02 bgeu r15,r12,80101ac <IMFS_memfile_write+0x178>
80101a8: b9 e0 60 00 mv r12,r15
if ( !block_ptr ) return copied; #if 0 fprintf(stdout, "write %d at %d in %d: %*s\n", to_copy, start_offset, block, to_copy, src ); #endif memcpy( &(*block_ptr)[ start_offset ], src, to_copy );
80101ac: 28 21 00 00 lw r1,(r1+0) 80101b0: ba 20 10 00 mv r2,r17 80101b4: b9 80 18 00 mv r3,r12 80101b8: b4 32 08 00 add r1,r1,r18 80101bc: f8 00 07 74 calli 8011f8c <memcpy>
src += to_copy;
80101c0: b6 2c 80 00 add r16,r17,r12
block++;
80101c4: 35 ce 00 01 addi r14,r14,1
my_length -= to_copy;
80101c8: c9 ec 68 00 sub r13,r15,r12
/* * Phase 2: all of zero of more blocks */ to_copy = IMFS_MEMFILE_BYTES_PER_BLOCK;
80101cc: 78 01 08 02 mvhi r1,0x802 80101d0: 38 21 36 4c ori r1,r1,0x364c
while ( my_length >= IMFS_MEMFILE_BYTES_PER_BLOCK ) {
80101d4: b8 20 88 00 mv r17,r1
/* * Phase 2: all of zero of more blocks */ to_copy = IMFS_MEMFILE_BYTES_PER_BLOCK;
80101d8: 28 2f 00 00 lw r15,(r1+0)
while ( my_length >= IMFS_MEMFILE_BYTES_PER_BLOCK ) {
80101dc: e0 00 00 16 bi 8010234 <IMFS_memfile_write+0x200>
block_ptr = IMFS_memfile_get_block_pointer( the_jnode, block, 0 );
80101e0: b9 60 08 00 mv r1,r11 80101e4: b9 c0 10 00 mv r2,r14 80101e8: 34 03 00 00 mvi r3,0 80101ec: fb ff fd 17 calli 800f648 <IMFS_memfile_get_block_pointer>
assert( block_ptr );
80101f0: 5c 20 00 09 bne r1,r0,8010214 <IMFS_memfile_write+0x1e0> <== ALWAYS TAKEN
80101f4: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 80101f8: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 80101fc: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 8010200: 38 21 1b 60 ori r1,r1,0x1b60 <== NOT EXECUTED 8010204: 38 63 1c 98 ori r3,r3,0x1c98 <== NOT EXECUTED 8010208: 38 84 1b e4 ori r4,r4,0x1be4 <== NOT EXECUTED 801020c: 34 02 03 30 mvi r2,816 <== NOT EXECUTED 8010210: e3 ff ff ab bi 80100bc <IMFS_memfile_write+0x88> <== NOT EXECUTED
if ( !block_ptr ) return copied; #if 0 fprintf(stdout, "write %d in %d: %*s\n", to_copy, block, to_copy, src ); #endif memcpy( &(*block_ptr)[ 0 ], src, to_copy );
8010214: 28 21 00 00 lw r1,(r1+0) 8010218: ba 00 10 00 mv r2,r16 801021c: b9 e0 18 00 mv r3,r15 8010220: f8 00 07 5b calli 8011f8c <memcpy>
src += to_copy;
8010224: b6 0f 80 00 add r16,r16,r15
block++;
8010228: 35 ce 00 01 addi r14,r14,1
my_length -= to_copy;
801022c: c9 af 68 00 sub r13,r13,r15
* * This routine writes the specified data buffer into the in memory * file pointed to by the_jnode. The file is extended as needed. */ MEMFILE_STATIC ssize_t IMFS_memfile_write(
8010230: b5 8f 60 00 add r12,r12,r15
/* * Phase 2: all of zero of more blocks */ to_copy = IMFS_MEMFILE_BYTES_PER_BLOCK; while ( my_length >= IMFS_MEMFILE_BYTES_PER_BLOCK ) {
8010234: 2a 21 00 00 lw r1,(r17+0)
8010238: 51 a1 ff ea bgeu r13,r1,80101e0 <IMFS_memfile_write+0x1ac> /* * Phase 3: possibly the first part of one block */ assert( my_length < IMFS_MEMFILE_BYTES_PER_BLOCK );
801023c: 54 2d 00 09 bgu r1,r13,8010260 <IMFS_memfile_write+0x22c> <== ALWAYS TAKEN
8010240: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8010244: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 8010248: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 801024c: 38 21 1b 60 ori r1,r1,0x1b60 <== NOT EXECUTED 8010250: 38 63 1c 98 ori r3,r3,0x1c98 <== NOT EXECUTED 8010254: 38 84 1b f8 ori r4,r4,0x1bf8 <== NOT EXECUTED 8010258: 34 02 03 41 mvi r2,833 <== NOT EXECUTED 801025c: e3 ff ff 98 bi 80100bc <IMFS_memfile_write+0x88> <== NOT EXECUTED
to_copy = my_length; if ( my_length ) { 8010260: 45 a0 00 13 be r13,r0,80102ac <IMFS_memfile_write+0x278> block_ptr = IMFS_memfile_get_block_pointer( the_jnode, block, 0 );
8010264: b9 c0 10 00 mv r2,r14 8010268: b9 60 08 00 mv r1,r11 801026c: 34 03 00 00 mvi r3,0 8010270: fb ff fc f6 calli 800f648 <IMFS_memfile_get_block_pointer>
assert( block_ptr );
8010274: 5c 20 00 09 bne r1,r0,8010298 <IMFS_memfile_write+0x264> <== ALWAYS TAKEN
8010278: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 801027c: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 8010280: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 8010284: 38 21 1b 60 ori r1,r1,0x1b60 <== NOT EXECUTED 8010288: 38 63 1c 98 ori r3,r3,0x1c98 <== NOT EXECUTED 801028c: 38 84 1b e4 ori r4,r4,0x1be4 <== NOT EXECUTED 8010290: 34 02 03 46 mvi r2,838 <== NOT EXECUTED 8010294: e3 ff ff 8a bi 80100bc <IMFS_memfile_write+0x88> <== NOT EXECUTED
if ( !block_ptr ) return copied; #if 0 fprintf(stdout, "write %d in %d: %*s\n", to_copy, block, to_copy, src ); #endif memcpy( &(*block_ptr)[ 0 ], src, my_length );
8010298: 28 21 00 00 lw r1,(r1+0) 801029c: ba 00 10 00 mv r2,r16 80102a0: b9 a0 18 00 mv r3,r13 80102a4: f8 00 07 3a calli 8011f8c <memcpy>
my_length = 0; copied += to_copy;
80102a8: b5 8d 60 00 add r12,r12,r13
} IMFS_mtime_ctime_update( the_jnode );
80102ac: 37 81 00 2c addi r1,sp,44 80102b0: 34 02 00 00 mvi r2,0 80102b4: fb ff c9 e3 calli 8002a40 <gettimeofday> 80102b8: 2b 81 00 2c lw r1,(sp+44) 80102bc: 59 61 00 48 sw (r11+72),r1 80102c0: 59 61 00 44 sw (r11+68),r1
return copied; }
80102c4: b9 80 08 00 mv r1,r12 80102c8: 2b 9d 00 04 lw ra,(sp+4) 80102cc: 2b 8b 00 28 lw r11,(sp+40) 80102d0: 2b 8c 00 24 lw r12,(sp+36) 80102d4: 2b 8d 00 20 lw r13,(sp+32) 80102d8: 2b 8e 00 1c lw r14,(sp+28) 80102dc: 2b 8f 00 18 lw r15,(sp+24) 80102e0: 2b 90 00 14 lw r16,(sp+20) 80102e4: 2b 91 00 10 lw r17,(sp+16) 80102e8: 2b 92 00 0c lw r18,(sp+12) 80102ec: 2b 93 00 08 lw r19,(sp+8) 80102f0: 37 9c 00 30 addi sp,sp,48 80102f4: c3 a0 00 00 ret
08006c08 <IMFS_mknod>: const char *token, /* IN */ mode_t mode, /* IN */ dev_t dev, /* IN */ rtems_filesystem_location_info_t *pathloc /* IN/OUT */ ) {
8006c08: 37 9c ff a8 addi sp,sp,-88 8006c0c: 5b 8b 00 18 sw (sp+24),r11 8006c10: 5b 8c 00 14 sw (sp+20),r12 8006c14: 5b 8d 00 10 sw (sp+16),r13 8006c18: 5b 8e 00 0c sw (sp+12),r14 8006c1c: 5b 8f 00 08 sw (sp+8),r15 8006c20: 5b 9d 00 04 sw (sp+4),ra 8006c24: b8 40 58 00 mv r11,r2 8006c28: b8 20 78 00 mv r15,r1 8006c2c: b8 60 70 00 mv r14,r3 8006c30: b8 80 68 00 mv r13,r4 8006c34: b8 a0 60 00 mv r12,r5
IMFS_jnode_t *new_node; int result; char new_name[ IMFS_NAME_MAX + 1 ]; IMFS_types_union info; IMFS_get_token( token, strlen( token ), new_name, &result );
8006c38: f8 00 15 86 calli 800c250 <strlen> 8006c3c: b8 20 10 00 mv r2,r1 8006c40: 37 83 00 1c addi r3,sp,28 8006c44: b9 e0 08 00 mv r1,r15 8006c48: 37 84 00 58 addi r4,sp,88 8006c4c: fb ff ff 74 calli 8006a1c <IMFS_get_token>
/* * Figure out what type of IMFS node this is. */ if ( S_ISDIR(mode) )
8006c50: 21 66 f0 00 andi r6,r11,0xf000 8006c54: 34 01 40 00 mvi r1,16384
8006c58: 44 c1 00 12 be r6,r1,8006ca0 <IMFS_mknod+0x98> type = IMFS_DIRECTORY; else if ( S_ISREG(mode) )
8006c5c: 38 01 80 00 mvu r1,0x8000 8006c60: 34 02 00 05 mvi r2,5
8006c64: 44 c1 00 10 be r6,r1,8006ca4 <IMFS_mknod+0x9c> type = IMFS_MEMORY_FILE; else if ( S_ISBLK(mode) || S_ISCHR(mode) ) {
8006c68: 64 c2 20 00 cmpei r2,r6,8192 8006c6c: 64 c1 60 00 cmpei r1,r6,24576 8006c70: b8 41 08 00 or r1,r2,r1
8006c74: 44 20 00 05 be r1,r0,8006c88 <IMFS_mknod+0x80> type = IMFS_DEVICE; rtems_filesystem_split_dev_t( dev, info.device.major, info.device.minor );
8006c78: 5b 8e 00 40 sw (sp+64),r14 8006c7c: 5b 8d 00 44 sw (sp+68),r13 8006c80: 34 02 00 02 mvi r2,2 8006c84: e0 00 00 08 bi 8006ca4 <IMFS_mknod+0x9c>
} else if (S_ISFIFO(mode))
8006c88: 34 01 10 00 mvi r1,4096 8006c8c: 34 02 00 07 mvi r2,7
8006c90: 44 c1 00 05 be r6,r1,8006ca4 <IMFS_mknod+0x9c> <== ALWAYS TAKEN
type = IMFS_FIFO; else { rtems_set_errno_and_return_minus_one( EINVAL );
8006c94: f8 00 10 9f calli 800af10 <__errno> <== NOT EXECUTED 8006c98: 34 02 00 16 mvi r2,22 <== NOT EXECUTED 8006c9c: e0 00 00 0b bi 8006cc8 <IMFS_mknod+0xc0> <== NOT EXECUTED
8006ca0: 34 02 00 01 mvi r2,1
* was ONLY passed a NULL when we created the root node. We * added a new IMFS_create_root_node() so this path no longer * existed. The result was simpler code which should not have * this path. */ new_node = IMFS_create_node(
8006ca4: b9 80 08 00 mv r1,r12 8006ca8: b9 60 20 00 mv r4,r11 8006cac: 37 83 00 1c addi r3,sp,28 8006cb0: 37 85 00 40 addi r5,sp,64 8006cb4: f8 00 0c 2d calli 8009d68 <IMFS_create_node>
new_name, mode, &info ); if ( !new_node )
8006cb8: 34 02 00 00 mvi r2,0
8006cbc: 5c 22 00 05 bne r1,r2,8006cd0 <IMFS_mknod+0xc8> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( ENOMEM );
8006cc0: f8 00 10 94 calli 800af10 <__errno> <== NOT EXECUTED 8006cc4: 34 02 00 0c mvi r2,12 <== NOT EXECUTED 8006cc8: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 8006ccc: 34 02 ff ff mvi r2,-1 <== NOT EXECUTED
return 0; }
8006cd0: b8 40 08 00 mv r1,r2 8006cd4: 2b 9d 00 04 lw ra,(sp+4) 8006cd8: 2b 8b 00 18 lw r11,(sp+24) 8006cdc: 2b 8c 00 14 lw r12,(sp+20) 8006ce0: 2b 8d 00 10 lw r13,(sp+16) 8006ce4: 2b 8e 00 0c lw r14,(sp+12) 8006ce8: 2b 8f 00 08 lw r15,(sp+8) 8006cec: 37 9c 00 58 addi sp,sp,88 8006cf0: c3 a0 00 00 ret
080020e8 <IMFS_mount>: #include <rtems/seterr.h> int IMFS_mount( rtems_filesystem_mount_table_entry_t *mt_entry ) {
80020e8: 37 9c ff fc addi sp,sp,-4 80020ec: 5b 9d 00 04 sw (sp+4),ra
IMFS_jnode_t *node; node = mt_entry->mt_point_node.node_access;
80020f0: 28 22 00 08 lw r2,(r1+8)
/* * Is the node that we are mounting onto a directory node ? */ if ( node->type != IMFS_DIRECTORY )
80020f4: 34 03 00 01 mvi r3,1 80020f8: 28 44 00 4c lw r4,(r2+76)
80020fc: 44 83 00 06 be r4,r3,8002114 <IMFS_mount+0x2c> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( ENOTDIR );
8002100: f8 00 3c fd calli 80114f4 <__errno> <== NOT EXECUTED 8002104: 34 02 00 14 mvi r2,20 <== NOT EXECUTED 8002108: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 800210c: 34 01 ff ff mvi r1,-1 <== NOT EXECUTED 8002110: e0 00 00 03 bi 800211c <IMFS_mount+0x34> <== NOT EXECUTED
/* * Set mt_fs pointer to point to the mount table entry for * the mounted file system. */ node->info.directory.mt_fs = mt_entry;
8002114: 58 41 00 5c sw (r2+92),r1 8002118: 34 01 00 00 mvi r1,0
return 0; }
800211c: 2b 9d 00 04 lw ra,(sp+4) 8002120: 37 9c 00 04 addi sp,sp,4 8002124: c3 a0 00 00 ret
08002aec <IMFS_print_jnode>: */ void IMFS_print_jnode( IMFS_jnode_t *the_jnode ) {
8002aec: 37 9c ff f0 addi sp,sp,-16 8002af0: 5b 8b 00 10 sw (sp+16),r11 8002af4: 5b 8c 00 0c sw (sp+12),r12 8002af8: 5b 8d 00 08 sw (sp+8),r13 8002afc: 5b 9d 00 04 sw (sp+4),ra 8002b00: b8 20 58 00 mv r11,r1
assert( the_jnode );
8002b04: 5c 20 00 09 bne r1,r0,8002b28 <IMFS_print_jnode+0x3c> <== ALWAYS TAKEN
8002b08: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8002b0c: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 8002b10: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 8002b14: 38 21 39 88 ori r1,r1,0x3988 <== NOT EXECUTED 8002b18: 38 63 3b 60 ori r3,r3,0x3b60 <== NOT EXECUTED 8002b1c: 38 84 39 d4 ori r4,r4,0x39d4 <== NOT EXECUTED 8002b20: 34 02 00 38 mvi r2,56 <== NOT EXECUTED 8002b24: e0 00 00 39 bi 8002c08 <IMFS_print_jnode+0x11c> <== NOT EXECUTED
fprintf(stdout, "%s", the_jnode->name );
8002b28: 78 0c 08 02 mvhi r12,0x802 8002b2c: 39 8c 61 90 ori r12,r12,0x6190 8002b30: 29 82 00 00 lw r2,(r12+0) 8002b34: 34 21 00 0c addi r1,r1,12 8002b38: 28 42 00 08 lw r2,(r2+8) 8002b3c: f8 00 36 eb calli 80106e8 <fputs>
switch( the_jnode->type ) {
8002b40: 29 63 00 4c lw r3,(r11+76) 8002b44: 34 02 00 06 mvi r2,6 8002b48: 34 61 ff ff addi r1,r3,-1
8002b4c: 54 22 00 4a bgu r1,r2,8002c74 <IMFS_print_jnode+0x188> <== NEVER TAKEN
8002b50: 34 02 00 02 mvi r2,2 8002b54: 78 0d 08 02 mvhi r13,0x802 8002b58: fb ff fd bf calli 8002254 <__ashlsi3> 8002b5c: 39 ad 3b 30 ori r13,r13,0x3b30 8002b60: b5 a1 08 00 add r1,r13,r1 8002b64: 28 22 00 00 lw r2,(r1+0) 8002b68: c0 40 00 00 b r2
case IMFS_DIRECTORY: fprintf(stdout, "/" );
8002b6c: 29 82 00 00 lw r2,(r12+0) 8002b70: 34 01 00 2f mvi r1,47 8002b74: 28 42 00 08 lw r2,(r2+8) 8002b78: f8 00 36 86 calli 8010590 <fputc>
break;
8002b7c: e0 00 00 4b bi 8002ca8 <IMFS_print_jnode+0x1bc>
case IMFS_DEVICE: fprintf(stdout, " (device %" PRId32 ", %" PRId32 ")",
8002b80: 29 81 00 00 lw r1,(r12+0) 8002b84: 78 02 08 02 mvhi r2,0x802 8002b88: 29 64 00 54 lw r4,(r11+84) 8002b8c: 29 63 00 50 lw r3,(r11+80) 8002b90: 28 21 00 08 lw r1,(r1+8) 8002b94: 38 42 39 e0 ori r2,r2,0x39e0 8002b98: e0 00 00 07 bi 8002bb4 <IMFS_print_jnode+0xc8>
the_jnode->info.device.major, the_jnode->info.device.minor ); break; case IMFS_LINEAR_FILE: fprintf(stdout, " (file %" PRId32 " %p)",
8002b9c: 29 81 00 00 lw r1,(r12+0) <== NOT EXECUTED 8002ba0: 29 64 00 58 lw r4,(r11+88) <== NOT EXECUTED 8002ba4: 29 63 00 54 lw r3,(r11+84) <== NOT EXECUTED 8002ba8: 28 21 00 08 lw r1,(r1+8) <== NOT EXECUTED 8002bac: 78 02 08 02 mvhi r2,0x802 <== NOT EXECUTED 8002bb0: 38 42 39 f4 ori r2,r2,0x39f4 <== NOT EXECUTED
8002bb4: f8 00 36 56 calli 801050c <fprintf>
(uint32_t)the_jnode->info.linearfile.size, the_jnode->info.linearfile.direct ); break;
8002bb8: e0 00 00 3c bi 8002ca8 <IMFS_print_jnode+0x1bc>
the_jnode->info.file.indirect, the_jnode->info.file.doubly_indirect, the_jnode->info.file.triply_indirect ); #else fprintf(stdout, " (file %" PRId32 ")",
8002bbc: 29 81 00 00 lw r1,(r12+0) 8002bc0: 29 63 00 54 lw r3,(r11+84) 8002bc4: 78 02 08 02 mvhi r2,0x802 8002bc8: 28 21 00 08 lw r1,(r1+8) 8002bcc: 38 42 3a 04 ori r2,r2,0x3a04 8002bd0: f8 00 36 4f calli 801050c <fprintf>
(uint32_t)the_jnode->info.file.size ); #endif break;
8002bd4: e0 00 00 35 bi 8002ca8 <IMFS_print_jnode+0x1bc>
case IMFS_HARD_LINK: fprintf(stdout, " links not printed\n" );
8002bd8: 29 82 00 00 lw r2,(r12+0) <== NOT EXECUTED 8002bdc: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8002be0: 38 21 3a 10 ori r1,r1,0x3a10 <== NOT EXECUTED 8002be4: 28 42 00 08 lw r2,(r2+8) <== NOT EXECUTED 8002be8: f8 00 36 c0 calli 80106e8 <fputs> <== NOT EXECUTED
assert(0);
8002bec: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8002bf0: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 8002bf4: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 8002bf8: 38 21 39 88 ori r1,r1,0x3988 <== NOT EXECUTED 8002bfc: 38 63 3b 60 ori r3,r3,0x3b60 <== NOT EXECUTED 8002c00: 38 84 3a 24 ori r4,r4,0x3a24 <== NOT EXECUTED 8002c04: 34 02 00 5d mvi r2,93 <== NOT EXECUTED 8002c08: f8 00 02 72 calli 80035d0 <__assert_func> <== NOT EXECUTED
break; case IMFS_SYM_LINK: fprintf(stdout, " links not printed\n" );
8002c0c: 29 82 00 00 lw r2,(r12+0) <== NOT EXECUTED 8002c10: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8002c14: 38 21 3a 10 ori r1,r1,0x3a10 <== NOT EXECUTED 8002c18: 28 42 00 08 lw r2,(r2+8) <== NOT EXECUTED 8002c1c: f8 00 36 b3 calli 80106e8 <fputs> <== NOT EXECUTED
assert(0);
8002c20: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8002c24: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 8002c28: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 8002c2c: 38 21 39 88 ori r1,r1,0x3988 <== NOT EXECUTED 8002c30: 38 63 3b 60 ori r3,r3,0x3b60 <== NOT EXECUTED 8002c34: 38 84 3a 24 ori r4,r4,0x3a24 <== NOT EXECUTED 8002c38: 34 02 00 62 mvi r2,98 <== NOT EXECUTED 8002c3c: e3 ff ff f3 bi 8002c08 <IMFS_print_jnode+0x11c> <== NOT EXECUTED
break; case IMFS_FIFO: fprintf(stdout, " FIFO not printed\n" );
8002c40: 29 82 00 00 lw r2,(r12+0) <== NOT EXECUTED 8002c44: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8002c48: 38 21 3a 28 ori r1,r1,0x3a28 <== NOT EXECUTED 8002c4c: 28 42 00 08 lw r2,(r2+8) <== NOT EXECUTED 8002c50: f8 00 36 a6 calli 80106e8 <fputs> <== NOT EXECUTED
assert(0);
8002c54: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8002c58: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 8002c5c: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 8002c60: 38 21 39 88 ori r1,r1,0x3988 <== NOT EXECUTED 8002c64: 38 63 3b 60 ori r3,r3,0x3b60 <== NOT EXECUTED 8002c68: 38 84 3a 24 ori r4,r4,0x3a24 <== NOT EXECUTED 8002c6c: 34 02 00 67 mvi r2,103 <== NOT EXECUTED 8002c70: e3 ff ff e6 bi 8002c08 <IMFS_print_jnode+0x11c> <== NOT EXECUTED
break; default: fprintf(stdout, " bad type %d\n", the_jnode->type );
8002c74: 29 81 00 00 lw r1,(r12+0) <== NOT EXECUTED 8002c78: 78 02 08 02 mvhi r2,0x802 <== NOT EXECUTED 8002c7c: 38 42 3a 3c ori r2,r2,0x3a3c <== NOT EXECUTED 8002c80: 28 21 00 08 lw r1,(r1+8) <== NOT EXECUTED 8002c84: f8 00 36 22 calli 801050c <fprintf> <== NOT EXECUTED
assert(0);
8002c88: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8002c8c: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 8002c90: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 8002c94: 38 21 39 88 ori r1,r1,0x3988 <== NOT EXECUTED 8002c98: 38 63 3b 60 ori r3,r3,0x3b60 <== NOT EXECUTED 8002c9c: 38 84 3a 24 ori r4,r4,0x3a24 <== NOT EXECUTED 8002ca0: 34 02 00 6c mvi r2,108 <== NOT EXECUTED 8002ca4: e3 ff ff d9 bi 8002c08 <IMFS_print_jnode+0x11c> <== NOT EXECUTED
break; } puts("");
8002ca8: 78 01 08 02 mvhi r1,0x802 8002cac: 38 21 33 f4 ori r1,r1,0x33f4 8002cb0: f8 00 3e 3d calli 80125a4 <puts>
}
8002cb4: 2b 9d 00 04 lw ra,(sp+4) 8002cb8: 2b 8b 00 10 lw r11,(sp+16) 8002cbc: 2b 8c 00 0c lw r12,(sp+12) 8002cc0: 2b 8d 00 08 lw r13,(sp+8) 8002cc4: 37 9c 00 10 addi sp,sp,16 8002cc8: c3 a0 00 00 ret
08002134 <IMFS_readlink>: int IMFS_readlink( rtems_filesystem_location_info_t *loc, char *buf, /* OUT */ size_t bufsize ) {
8002134: 37 9c ff fc addi sp,sp,-4 8002138: 5b 9d 00 04 sw (sp+4),ra
IMFS_jnode_t *node; int i; node = loc->node_access;
800213c: 28 24 00 00 lw r4,(r1+0)
if ( node->type != IMFS_SYM_LINK )
8002140: 34 05 00 04 mvi r5,4 8002144: 34 01 00 00 mvi r1,0 8002148: 28 86 00 4c lw r6,(r4+76)
800214c: 44 c5 00 08 be r6,r5,800216c <IMFS_readlink+0x38> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( EINVAL );
8002150: f8 00 3c e9 calli 80114f4 <__errno> <== NOT EXECUTED 8002154: 34 02 00 16 mvi r2,22 <== NOT EXECUTED 8002158: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 800215c: 34 01 ff ff mvi r1,-1 <== NOT EXECUTED 8002160: e0 00 00 09 bi 8002184 <IMFS_readlink+0x50> <== NOT EXECUTED
for( i=0; ((i<bufsize) && (node->info.sym_link.name[i] != '\0')); i++ ) buf[i] = node->info.sym_link.name[i];
8002164: 30 c5 00 00 sb (r6+0),r5
node = loc->node_access; if ( node->type != IMFS_SYM_LINK ) rtems_set_errno_and_return_minus_one( EINVAL ); for( i=0; ((i<bufsize) && (node->info.sym_link.name[i] != '\0')); i++ )
8002168: 34 21 00 01 addi r1,r1,1
buf[i] = node->info.sym_link.name[i];
800216c: b4 41 30 00 add r6,r2,r1
node = loc->node_access; if ( node->type != IMFS_SYM_LINK ) rtems_set_errno_and_return_minus_one( EINVAL ); for( i=0; ((i<bufsize) && (node->info.sym_link.name[i] != '\0')); i++ ) 8002170: 50 23 00 05 bgeu r1,r3,8002184 <IMFS_readlink+0x50>
8002174: 28 85 00 50 lw r5,(r4+80) 8002178: b4 a1 28 00 add r5,r5,r1 800217c: 40 a5 00 00 lbu r5,(r5+0)
8002180: 5c a0 ff f9 bne r5,r0,8002164 <IMFS_readlink+0x30> buf[i] = node->info.sym_link.name[i]; return i; }
8002184: 2b 9d 00 04 lw ra,(sp+4) 8002188: 37 9c 00 04 addi sp,sp,4 800218c: c3 a0 00 00 ret
08002190 <IMFS_rename>: rtems_filesystem_location_info_t *old_parent_loc, /* IN */ rtems_filesystem_location_info_t *old_loc, /* IN */ rtems_filesystem_location_info_t *new_parent_loc, /* IN */ const char *new_name /* IN */ ) {
8002190: 37 9c ff ec addi sp,sp,-20 <== NOT EXECUTED 8002194: 5b 8b 00 0c sw (sp+12),r11 <== NOT EXECUTED 8002198: 5b 8c 00 08 sw (sp+8),r12 <== NOT EXECUTED 800219c: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
IMFS_jnode_t *the_jnode; IMFS_jnode_t *new_parent; the_jnode = old_loc->node_access;
80021a0: 28 4b 00 00 lw r11,(r2+0) <== NOT EXECUTED
rtems_filesystem_location_info_t *old_parent_loc, /* IN */ rtems_filesystem_location_info_t *old_loc, /* IN */ rtems_filesystem_location_info_t *new_parent_loc, /* IN */ const char *new_name /* IN */ ) {
80021a4: b8 60 60 00 mv r12,r3 <== NOT EXECUTED
IMFS_jnode_t *the_jnode; IMFS_jnode_t *new_parent; the_jnode = old_loc->node_access; strncpy( the_jnode->name, new_name, IMFS_NAME_MAX );
80021a8: b8 80 10 00 mv r2,r4 <== NOT EXECUTED 80021ac: 35 61 00 0c addi r1,r11,12 <== NOT EXECUTED 80021b0: 34 03 00 20 mvi r3,32 <== NOT EXECUTED 80021b4: f8 00 41 ac calli 8012864 <strncpy> <== NOT EXECUTED
if ( the_jnode->Parent != NULL )
80021b8: 29 61 00 08 lw r1,(r11+8) <== NOT EXECUTED 80021bc: 44 20 00 03 be r1,r0,80021c8 <IMFS_rename+0x38> <== NOT EXECUTED
*/ RTEMS_INLINE_ROUTINE void rtems_chain_extract( rtems_chain_node *the_node ) { _Chain_Extract( the_node );
80021c0: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 80021c4: f8 00 0a d2 calli 8004d0c <_Chain_Extract> <== NOT EXECUTED
rtems_chain_extract( (rtems_chain_node *) the_jnode ); new_parent = new_parent_loc->node_access;
80021c8: 29 83 00 00 lw r3,(r12+0) <== NOT EXECUTED
RTEMS_INLINE_ROUTINE void rtems_chain_append( rtems_chain_control *the_chain, rtems_chain_node *the_node ) { _Chain_Append( the_chain, the_node );
80021cc: b9 60 10 00 mv r2,r11 <== NOT EXECUTED 80021d0: 34 61 00 50 addi r1,r3,80 <== NOT EXECUTED
the_jnode->Parent = new_parent;
80021d4: 59 63 00 08 sw (r11+8),r3 <== NOT EXECUTED 80021d8: f8 00 0a c1 calli 8004cdc <_Chain_Append> <== NOT EXECUTED
rtems_chain_append( &new_parent->info.directory.Entries, &the_jnode->Node ); /* * Update the time. */ IMFS_update_ctime( the_jnode );
80021dc: 37 81 00 10 addi r1,sp,16 <== NOT EXECUTED 80021e0: 34 02 00 00 mvi r2,0 <== NOT EXECUTED 80021e4: f8 00 02 17 calli 8002a40 <gettimeofday> <== NOT EXECUTED 80021e8: 2b 81 00 10 lw r1,(sp+16) <== NOT EXECUTED 80021ec: 59 61 00 48 sw (r11+72),r1 <== NOT EXECUTED
return 0; }
80021f0: 34 01 00 00 mvi r1,0 <== NOT EXECUTED 80021f4: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 80021f8: 2b 8b 00 0c lw r11,(sp+12) <== NOT EXECUTED 80021fc: 2b 8c 00 08 lw r12,(sp+8) <== NOT EXECUTED 8002200: 37 9c 00 14 addi sp,sp,20 <== NOT EXECUTED 8002204: c3 a0 00 00 ret <== NOT EXECUTED
08006d00 <IMFS_rmnod>: int IMFS_rmnod( rtems_filesystem_location_info_t *parent_pathloc, /* IN */ rtems_filesystem_location_info_t *pathloc /* IN */ ) {
8006d00: 37 9c ff ec addi sp,sp,-20 8006d04: 5b 8b 00 0c sw (sp+12),r11 8006d08: 5b 8c 00 08 sw (sp+8),r12 8006d0c: 5b 9d 00 04 sw (sp+4),ra
IMFS_jnode_t *the_jnode; the_jnode = (IMFS_jnode_t *) pathloc->node_access;
8006d10: 28 4b 00 00 lw r11,(r2+0)
int IMFS_rmnod( rtems_filesystem_location_info_t *parent_pathloc, /* IN */ rtems_filesystem_location_info_t *pathloc /* IN */ ) {
8006d14: b8 40 60 00 mv r12,r2
/* * Take the node out of the parent's chain that contains this node */ if ( the_jnode->Parent != NULL ) {
8006d18: 29 61 00 08 lw r1,(r11+8)
8006d1c: 44 20 00 05 be r1,r0,8006d30 <IMFS_rmnod+0x30> <== NEVER TAKEN
*/ RTEMS_INLINE_ROUTINE void rtems_chain_extract( rtems_chain_node *the_node ) { _Chain_Extract( the_node );
8006d20: b9 60 08 00 mv r1,r11 8006d24: f8 00 04 d0 calli 8008064 <_Chain_Extract>
rtems_chain_extract( (rtems_chain_node *) the_jnode ); the_jnode->Parent = NULL;
8006d28: 34 01 00 00 mvi r1,0 8006d2c: 59 61 00 08 sw (r11+8),r1
/* * Decrement the link counter and see if we can free the space. */ the_jnode->st_nlink--;
8006d30: 2d 63 00 34 lhu r3,(r11+52)
IMFS_update_ctime( the_jnode );
8006d34: 34 02 00 00 mvi r2,0 8006d38: 37 81 00 10 addi r1,sp,16
/* * Decrement the link counter and see if we can free the space. */ the_jnode->st_nlink--;
8006d3c: 34 63 ff ff addi r3,r3,-1 8006d40: 0d 63 00 34 sh (r11+52),r3
IMFS_update_ctime( the_jnode );
8006d44: f8 00 01 35 calli 8007218 <gettimeofday> 8006d48: 2b 81 00 10 lw r1,(sp+16) 8006d4c: 59 61 00 48 sw (r11+72),r1
/* * The file cannot be open and the link must be less than 1 to free. */ if ( !rtems_libio_is_file_open( the_jnode ) && (the_jnode->st_nlink < 1) ) {
8006d50: b9 60 08 00 mv r1,r11 8006d54: f8 00 01 8d calli 8007388 <rtems_libio_is_file_open>
8006d58: 5c 20 00 12 bne r1,r0,8006da0 <IMFS_rmnod+0xa0> <== NEVER TAKEN
8006d5c: 2d 63 00 34 lhu r3,(r11+52)
8006d60: 5c 61 00 10 bne r3,r1,8006da0 <IMFS_rmnod+0xa0> <== NEVER TAKEN
/* * Is rtems_filesystem_current this node? */ if ( rtems_filesystem_current.node_access == pathloc->node_access )
8006d64: 78 01 08 01 mvhi r1,0x801 8006d68: 38 21 c1 10 ori r1,r1,0xc110 8006d6c: 28 21 00 00 lw r1,(r1+0) 8006d70: 29 82 00 00 lw r2,(r12+0) 8006d74: 28 24 00 04 lw r4,(r1+4)
8006d78: 5c 82 00 02 bne r4,r2,8006d80 <IMFS_rmnod+0x80> <== ALWAYS TAKEN
rtems_filesystem_current.node_access = NULL;
8006d7c: 58 23 00 04 sw (r1+4),r3 <== NOT EXECUTED
/* * Free memory associated with a memory file. */ if ( the_jnode->type == IMFS_SYM_LINK ) {
8006d80: 29 62 00 4c lw r2,(r11+76) 8006d84: 34 01 00 04 mvi r1,4
8006d88: 5c 41 00 04 bne r2,r1,8006d98 <IMFS_rmnod+0x98> if ( the_jnode->info.sym_link.name )
8006d8c: 29 61 00 50 lw r1,(r11+80)
8006d90: 44 20 00 02 be r1,r0,8006d98 <IMFS_rmnod+0x98> <== NEVER TAKEN
free( (void*) the_jnode->info.sym_link.name );
8006d94: f8 00 00 ac calli 8007044 <free>
} free( the_jnode );
8006d98: b9 60 08 00 mv r1,r11 8006d9c: f8 00 00 aa calli 8007044 <free>
} return 0; }
8006da0: 34 01 00 00 mvi r1,0 8006da4: 2b 9d 00 04 lw ra,(sp+4) 8006da8: 2b 8b 00 0c lw r11,(sp+12) 8006dac: 2b 8c 00 08 lw r12,(sp+8) 8006db0: 37 9c 00 14 addi sp,sp,20 8006db4: c3 a0 00 00 ret
08006db8 <IMFS_stat>: int IMFS_stat( rtems_filesystem_location_info_t *loc, struct stat *buf ) {
8006db8: 37 9c ff f0 addi sp,sp,-16 8006dbc: 5b 8b 00 10 sw (sp+16),r11 8006dc0: 5b 8c 00 0c sw (sp+12),r12 8006dc4: 5b 8d 00 08 sw (sp+8),r13 8006dc8: 5b 9d 00 04 sw (sp+4),ra
IMFS_jnode_t *the_jnode; IMFS_device_t *io; the_jnode = loc->node_access;
8006dcc: 28 2c 00 00 lw r12,(r1+0)
int IMFS_stat( rtems_filesystem_location_info_t *loc, struct stat *buf ) {
8006dd0: b8 40 58 00 mv r11,r2
IMFS_device_t *io; the_jnode = loc->node_access; switch ( the_jnode->type ) {
8006dd4: 34 02 00 05 mvi r2,5 8006dd8: 29 81 00 4c lw r1,(r12+76) 8006ddc: 34 21 ff fe addi r1,r1,-2
8006de0: 54 22 00 12 bgu r1,r2,8006e28 <IMFS_stat+0x70> <== NEVER TAKEN
8006de4: 78 0d 08 01 mvhi r13,0x801 8006de8: 34 02 00 02 mvi r2,2 8006dec: fb ff e5 01 calli 80001f0 <__ashlsi3> 8006df0: 39 ad a6 10 ori r13,r13,0xa610 8006df4: b5 a1 08 00 add r1,r13,r1 8006df8: 28 21 00 00 lw r1,(r1+0) 8006dfc: c0 20 00 00 b r1
case IMFS_DEVICE: io = &the_jnode->info.device; buf->st_rdev = rtems_filesystem_make_dev_t( io->major, io->minor );
8006e00: 29 81 00 54 lw r1,(r12+84) 8006e04: 29 82 00 50 lw r2,(r12+80) 8006e08: 59 61 00 1c sw (r11+28),r1 8006e0c: 59 62 00 18 sw (r11+24),r2
break;
8006e10: e0 00 00 0b bi 8006e3c <IMFS_stat+0x84>
case IMFS_LINEAR_FILE: case IMFS_MEMORY_FILE: buf->st_size = the_jnode->info.file.size;
8006e14: 29 81 00 54 lw r1,(r12+84) 8006e18: e0 00 00 02 bi 8006e20 <IMFS_stat+0x68>
case IMFS_SYM_LINK: buf->st_size = 0; break; case IMFS_FIFO: buf->st_size = 0;
8006e1c: 34 01 00 00 mvi r1,0 <== NOT EXECUTED
8006e20: 59 61 00 20 sw (r11+32),r1
break;
8006e24: e0 00 00 06 bi 8006e3c <IMFS_stat+0x84>
default: rtems_set_errno_and_return_minus_one( ENOTSUP );
8006e28: f8 00 10 3a calli 800af10 <__errno> <== NOT EXECUTED 8006e2c: 34 02 00 86 mvi r2,134 <== NOT EXECUTED 8006e30: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 8006e34: 34 01 ff ff mvi r1,-1 <== NOT EXECUTED 8006e38: e0 00 00 12 bi 8006e80 <IMFS_stat+0xc8> <== NOT EXECUTED
break; } buf->st_mode = the_jnode->st_mode; buf->st_nlink = the_jnode->st_nlink; buf->st_ino = the_jnode->st_ino;
8006e3c: 29 82 00 38 lw r2,(r12+56)
rtems_set_errno_and_return_minus_one( ENOTSUP ); break; } buf->st_mode = the_jnode->st_mode; buf->st_nlink = the_jnode->st_nlink;
8006e40: 2d 81 00 34 lhu r1,(r12+52)
buf->st_ino = the_jnode->st_ino;
8006e44: 59 62 00 08 sw (r11+8),r2
default: rtems_set_errno_and_return_minus_one( ENOTSUP ); break; } buf->st_mode = the_jnode->st_mode;
8006e48: 29 82 00 30 lw r2,(r12+48)
buf->st_nlink = the_jnode->st_nlink;
8006e4c: 0d 61 00 10 sh (r11+16),r1
buf->st_ino = the_jnode->st_ino; buf->st_uid = the_jnode->st_uid; buf->st_gid = the_jnode->st_gid; buf->st_atime = the_jnode->stat_atime;
8006e50: 29 81 00 40 lw r1,(r12+64)
default: rtems_set_errno_and_return_minus_one( ENOTSUP ); break; } buf->st_mode = the_jnode->st_mode;
8006e54: 59 62 00 0c sw (r11+12),r2
buf->st_nlink = the_jnode->st_nlink; buf->st_ino = the_jnode->st_ino; buf->st_uid = the_jnode->st_uid;
8006e58: 2d 82 00 3c lhu r2,(r12+60)
buf->st_gid = the_jnode->st_gid; buf->st_atime = the_jnode->stat_atime;
8006e5c: 59 61 00 24 sw (r11+36),r1
buf->st_mtime = the_jnode->stat_mtime; buf->st_ctime = the_jnode->stat_ctime;
8006e60: 34 01 00 00 mvi r1,0
} buf->st_mode = the_jnode->st_mode; buf->st_nlink = the_jnode->st_nlink; buf->st_ino = the_jnode->st_ino; buf->st_uid = the_jnode->st_uid;
8006e64: 0d 62 00 12 sh (r11+18),r2
buf->st_gid = the_jnode->st_gid; buf->st_atime = the_jnode->stat_atime; buf->st_mtime = the_jnode->stat_mtime;
8006e68: 29 82 00 44 lw r2,(r12+68) 8006e6c: 59 62 00 2c sw (r11+44),r2
buf->st_mode = the_jnode->st_mode; buf->st_nlink = the_jnode->st_nlink; buf->st_ino = the_jnode->st_ino; buf->st_uid = the_jnode->st_uid; buf->st_gid = the_jnode->st_gid;
8006e70: 2d 82 00 3e lhu r2,(r12+62)
buf->st_atime = the_jnode->stat_atime; buf->st_mtime = the_jnode->stat_mtime; buf->st_ctime = the_jnode->stat_ctime;
8006e74: 29 8c 00 48 lw r12,(r12+72)
buf->st_mode = the_jnode->st_mode; buf->st_nlink = the_jnode->st_nlink; buf->st_ino = the_jnode->st_ino; buf->st_uid = the_jnode->st_uid; buf->st_gid = the_jnode->st_gid;
8006e78: 0d 62 00 14 sh (r11+20),r2
buf->st_atime = the_jnode->stat_atime; buf->st_mtime = the_jnode->stat_mtime; buf->st_ctime = the_jnode->stat_ctime;
8006e7c: 59 6c 00 34 sw (r11+52),r12
return 0; }
8006e80: 2b 9d 00 04 lw ra,(sp+4) 8006e84: 2b 8b 00 10 lw r11,(sp+16) 8006e88: 2b 8c 00 0c lw r12,(sp+12) 8006e8c: 2b 8d 00 08 lw r13,(sp+8) 8006e90: 37 9c 00 10 addi sp,sp,16 8006e94: c3 a0 00 00 ret
08002208 <IMFS_symlink>: int IMFS_symlink( rtems_filesystem_location_info_t *parent_loc, const char *link_name, const char *node_name ) {
8002208: 37 9c ff ac addi sp,sp,-84 800220c: 5b 8b 00 14 sw (sp+20),r11 8002210: 5b 8c 00 10 sw (sp+16),r12 8002214: 5b 8d 00 0c sw (sp+12),r13 8002218: 5b 8e 00 08 sw (sp+8),r14 800221c: 5b 9d 00 04 sw (sp+4),ra 8002220: b8 20 68 00 mv r13,r1
int i; /* * Remove any separators at the end of the string. */ IMFS_get_token( node_name, strlen( node_name ), new_name, &i );
8002224: b8 60 08 00 mv r1,r3
int IMFS_symlink( rtems_filesystem_location_info_t *parent_loc, const char *link_name, const char *node_name ) {
8002228: b8 60 60 00 mv r12,r3 800222c: b8 40 70 00 mv r14,r2
int i; /* * Remove any separators at the end of the string. */ IMFS_get_token( node_name, strlen( node_name ), new_name, &i );
8002230: 37 8b 00 18 addi r11,sp,24 8002234: f8 00 41 61 calli 80127b8 <strlen> 8002238: b8 20 10 00 mv r2,r1 800223c: b9 60 18 00 mv r3,r11 8002240: 37 84 00 54 addi r4,sp,84 8002244: b9 80 08 00 mv r1,r12 8002248: f8 00 29 fa calli 800ca30 <IMFS_get_token>
/* * Duplicate link name */ info.sym_link.name = strdup(link_name);
800224c: b9 c0 08 00 mv r1,r14 8002250: f8 00 41 37 calli 801272c <strdup> 8002254: 5b 81 00 3c sw (sp+60),r1
if (info.sym_link.name == NULL) {
8002258: 44 20 00 0b be r1,r0,8002284 <IMFS_symlink+0x7c> <== NEVER TAKEN
* was ONLY passed a NULL when we created the root node. We * added a new IMFS_create_root_node() so this path no longer * existed. The result was simpler code which should not have * this path. */ new_node = IMFS_create_node(
800225c: 34 02 00 04 mvi r2,4 8002260: b9 a0 08 00 mv r1,r13 8002264: b9 60 18 00 mv r3,r11 8002268: 38 04 a1 ff mvu r4,0xa1ff 800226c: 37 85 00 3c addi r5,sp,60 8002270: f8 00 26 44 calli 800bb80 <IMFS_create_node>
new_name, ( S_IFLNK | ( S_IRWXU | S_IRWXG | S_IRWXO )), &info ); if (new_node == NULL) {
8002274: 34 02 00 00 mvi r2,0
8002278: 5c 22 00 07 bne r1,r2,8002294 <IMFS_symlink+0x8c> <== ALWAYS TAKEN
free(info.sym_link.name);
800227c: 2b 81 00 3c lw r1,(sp+60) <== NOT EXECUTED 8002280: f8 00 01 c2 calli 8002988 <free> <== NOT EXECUTED
rtems_set_errno_and_return_minus_one(ENOMEM);
8002284: f8 00 3c 9c calli 80114f4 <__errno> <== NOT EXECUTED 8002288: 34 02 00 0c mvi r2,12 <== NOT EXECUTED 800228c: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 8002290: 34 02 ff ff mvi r2,-1 <== NOT EXECUTED
} return 0; }
8002294: b8 40 08 00 mv r1,r2 8002298: 2b 9d 00 04 lw ra,(sp+4) 800229c: 2b 8b 00 14 lw r11,(sp+20) 80022a0: 2b 8c 00 10 lw r12,(sp+16) 80022a4: 2b 8d 00 0c lw r13,(sp+12) 80022a8: 2b 8e 00 08 lw r14,(sp+8) 80022ac: 37 9c 00 54 addi sp,sp,84 80022b0: c3 a0 00 00 ret
080022b4 <IMFS_unlink>: int IMFS_unlink( rtems_filesystem_location_info_t *parentloc, /* IN */ rtems_filesystem_location_info_t *loc /* IN */ ) {
80022b4: 37 9c ff cc addi sp,sp,-52 80022b8: 5b 8b 00 18 sw (sp+24),r11 80022bc: 5b 8c 00 14 sw (sp+20),r12 80022c0: 5b 8d 00 10 sw (sp+16),r13 80022c4: 5b 8e 00 0c sw (sp+12),r14 80022c8: 5b 8f 00 08 sw (sp+8),r15 80022cc: 5b 9d 00 04 sw (sp+4),ra
IMFS_jnode_t *node; rtems_filesystem_location_info_t the_link; int result = 0; node = loc->node_access;
80022d0: 28 4b 00 00 lw r11,(r2+0)
int IMFS_unlink( rtems_filesystem_location_info_t *parentloc, /* IN */ rtems_filesystem_location_info_t *loc /* IN */ ) {
80022d4: b8 20 70 00 mv r14,r1
/* * If this is the last last pointer to the node * free the node. */ if ( node->type == IMFS_HARD_LINK ) {
80022d8: 34 01 00 03 mvi r1,3 80022dc: 29 63 00 4c lw r3,(r11+76)
int IMFS_unlink( rtems_filesystem_location_info_t *parentloc, /* IN */ rtems_filesystem_location_info_t *loc /* IN */ ) {
80022e0: b8 40 60 00 mv r12,r2
/* * If this is the last last pointer to the node * free the node. */ if ( node->type == IMFS_HARD_LINK ) { 80022e4: 5c 61 00 23 bne r3,r1,8002370 <IMFS_unlink+0xbc> if ( !node->info.hard_link.link_node )
80022e8: 29 6f 00 50 lw r15,(r11+80)
80022ec: 5d e0 00 06 bne r15,r0,8002304 <IMFS_unlink+0x50> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( EINVAL );
80022f0: f8 00 3c 81 calli 80114f4 <__errno> <== NOT EXECUTED 80022f4: 34 02 00 16 mvi r2,22 <== NOT EXECUTED 80022f8: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 80022fc: 34 03 ff ff mvi r3,-1 <== NOT EXECUTED 8002300: e0 00 00 22 bi 8002388 <IMFS_unlink+0xd4> <== NOT EXECUTED
the_link = *loc;
8002304: 37 8d 00 1c addi r13,sp,28 8002308: 34 03 00 14 mvi r3,20 800230c: b9 a0 08 00 mv r1,r13 8002310: f8 00 3f 1f calli 8011f8c <memcpy>
the_link.node_access = node->info.hard_link.link_node; IMFS_Set_handlers( &the_link );
8002314: b9 a0 08 00 mv r1,r13
if ( !node->info.hard_link.link_node ) rtems_set_errno_and_return_minus_one( EINVAL ); the_link = *loc; the_link.node_access = node->info.hard_link.link_node;
8002318: 5b 8f 00 1c sw (sp+28),r15
IMFS_Set_handlers( &the_link );
800231c: f8 00 26 6e calli 800bcd4 <IMFS_Set_handlers>
/* * If removing the last hard link to a node, then we need * to remove the node that is a link and the node itself. */ if ( node->info.hard_link.link_node->st_nlink == 1)
8002320: 29 61 00 50 lw r1,(r11+80) 8002324: 34 03 00 01 mvi r3,1 8002328: 2c 22 00 34 lhu r2,(r1+52)
800232c: 5c 43 00 09 bne r2,r3,8002350 <IMFS_unlink+0x9c> { result = (*the_link.handlers->rmnod_h)( parentloc, &the_link );
8002330: 2b 83 00 24 lw r3,(sp+36) 8002334: b9 a0 10 00 mv r2,r13 8002338: b9 c0 08 00 mv r1,r14 800233c: 28 63 00 34 lw r3,(r3+52) 8002340: d8 60 00 00 call r3
if ( result != 0 )
8002344: 34 03 ff ff mvi r3,-1
8002348: 44 20 00 0a be r1,r0,8002370 <IMFS_unlink+0xbc>
800234c: e0 00 00 0f bi 8002388 <IMFS_unlink+0xd4>
return -1; } else { node->info.hard_link.link_node->st_nlink --;
8002350: 34 42 ff ff addi r2,r2,-1 8002354: 0c 22 00 34 sh (r1+52),r2
IMFS_update_ctime( node->info.hard_link.link_node );
8002358: 34 02 00 00 mvi r2,0 800235c: 37 81 00 30 addi r1,sp,48 8002360: f8 00 01 b8 calli 8002a40 <gettimeofday> 8002364: 29 61 00 50 lw r1,(r11+80) 8002368: 2b 82 00 30 lw r2,(sp+48) 800236c: 58 22 00 48 sw (r1+72),r2
/* * Now actually free the node we were asked to free. */ result = (*loc->handlers->rmnod_h)( parentloc, loc );
8002370: 29 83 00 08 lw r3,(r12+8) 8002374: b9 c0 08 00 mv r1,r14 8002378: b9 80 10 00 mv r2,r12 800237c: 28 63 00 34 lw r3,(r3+52) 8002380: d8 60 00 00 call r3 8002384: b8 20 18 00 mv r3,r1
return result; }
8002388: b8 60 08 00 mv r1,r3 800238c: 2b 9d 00 04 lw ra,(sp+4) 8002390: 2b 8b 00 18 lw r11,(sp+24) 8002394: 2b 8c 00 14 lw r12,(sp+20) 8002398: 2b 8d 00 10 lw r13,(sp+16) 800239c: 2b 8e 00 0c lw r14,(sp+12) 80023a0: 2b 8f 00 08 lw r15,(sp+8) 80023a4: 37 9c 00 34 addi sp,sp,52 80023a8: c3 a0 00 00 ret
080023ac <IMFS_unmount>: #include <rtems/seterr.h> int IMFS_unmount( rtems_filesystem_mount_table_entry_t *mt_entry ) {
80023ac: 37 9c ff fc addi sp,sp,-4 80023b0: 5b 9d 00 04 sw (sp+4),ra
IMFS_jnode_t *node; node = mt_entry->mt_point_node.node_access;
80023b4: 28 22 00 08 lw r2,(r1+8)
/* * Is the node that we are mounting onto a directory node ? */ if ( node->type != IMFS_DIRECTORY )
80023b8: 34 01 00 01 mvi r1,1 80023bc: 28 43 00 4c lw r3,(r2+76)
80023c0: 44 61 00 04 be r3,r1,80023d0 <IMFS_unmount+0x24> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( ENOTDIR );
80023c4: f8 00 3c 4c calli 80114f4 <__errno> <== NOT EXECUTED 80023c8: 34 02 00 14 mvi r2,20 <== NOT EXECUTED 80023cc: e0 00 00 06 bi 80023e4 <IMFS_unmount+0x38> <== NOT EXECUTED
/* * Did the node indicate that there was a directory mounted here? */ if ( node->info.directory.mt_fs == NULL )
80023d0: 28 43 00 5c lw r3,(r2+92) 80023d4: 34 01 00 00 mvi r1,0
80023d8: 5c 61 00 06 bne r3,r1,80023f0 <IMFS_unmount+0x44> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( EINVAL ); /* XXX */
80023dc: f8 00 3c 46 calli 80114f4 <__errno> <== NOT EXECUTED 80023e0: 34 02 00 16 mvi r2,22 <== NOT EXECUTED 80023e4: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 80023e8: 34 01 ff ff mvi r1,-1 <== NOT EXECUTED 80023ec: e0 00 00 02 bi 80023f4 <IMFS_unmount+0x48> <== NOT EXECUTED
/* * Set the mt_fs pointer to indicate that there is no longer * a file system mounted to this point. */ node->info.directory.mt_fs = NULL;
80023f0: 58 41 00 5c sw (r2+92),r1
return 0; }
80023f4: 2b 9d 00 04 lw ra,(sp+4) 80023f8: 37 9c 00 04 addi sp,sp,4 80023fc: c3 a0 00 00 ret
08000fdc <RTEMS_Malloc_Initialize>: void RTEMS_Malloc_Initialize( void *heap_begin, uintptr_t heap_size, size_t sbrk_amount ) {
8000fdc: 37 9c ff f0 addi sp,sp,-16 8000fe0: 5b 8b 00 10 sw (sp+16),r11 8000fe4: 5b 8c 00 0c sw (sp+12),r12 8000fe8: 5b 8d 00 08 sw (sp+8),r13 8000fec: 5b 9d 00 04 sw (sp+4),ra
#endif /* * If configured, initialize the statistics support */ if ( rtems_malloc_statistics_helpers != NULL ) {
8000ff0: 78 04 08 01 mvhi r4,0x801 8000ff4: 38 84 c6 10 ori r4,r4,0xc610 8000ff8: 28 84 00 00 lw r4,(r4+0)
void RTEMS_Malloc_Initialize( void *heap_begin, uintptr_t heap_size, size_t sbrk_amount ) {
8000ffc: b8 20 58 00 mv r11,r1 8001000: b8 40 60 00 mv r12,r2 8001004: b8 60 68 00 mv r13,r3
#endif /* * If configured, initialize the statistics support */ if ( rtems_malloc_statistics_helpers != NULL ) {
8001008: 44 80 00 03 be r4,r0,8001014 <RTEMS_Malloc_Initialize+0x38><== ALWAYS TAKEN
(*rtems_malloc_statistics_helpers->initialize)();
800100c: 28 81 00 00 lw r1,(r4+0) <== NOT EXECUTED 8001010: d8 20 00 00 call r1 <== NOT EXECUTED
} /* * Initialize the garbage collection list to start with nothing on it. */ malloc_deferred_frees_initialize();
8001014: f8 00 19 7f calli 8007610 <malloc_deferred_frees_initialize>
/* * Initialize the optional sbrk support for extending the heap */ if ( rtems_malloc_sbrk_helpers != NULL ) {
8001018: 78 01 08 01 mvhi r1,0x801 800101c: 38 21 c6 14 ori r1,r1,0xc614 8001020: 28 21 00 00 lw r1,(r1+0)
8001024: 44 20 00 08 be r1,r0,8001044 <RTEMS_Malloc_Initialize+0x68><== ALWAYS TAKEN
void *new_heap_begin = (*rtems_malloc_sbrk_helpers->initialize)(
8001028: 28 24 00 00 lw r4,(r1+0) <== NOT EXECUTED 800102c: b9 a0 10 00 mv r2,r13 <== NOT EXECUTED 8001030: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8001034: d8 80 00 00 call r4 <== NOT EXECUTED
heap_begin, sbrk_amount ); heap_size -= (uintptr_t) new_heap_begin - (uintptr_t) heap_begin;
8001038: b5 6c 60 00 add r12,r11,r12 <== NOT EXECUTED 800103c: c9 81 60 00 sub r12,r12,r1 <== NOT EXECUTED 8001040: b8 20 58 00 mv r11,r1 <== NOT EXECUTED
* of the time under UNIX because zero'ing memory when it is first * given to a process eliminates the chance of a process seeing data * left over from another process. This would be a security violation. */ if (
8001044: 78 01 08 01 mvhi r1,0x801 8001048: 38 21 c6 0d ori r1,r1,0xc60d 800104c: 40 22 00 00 lbu r2,(r1+0)
8001050: 5c 40 00 08 bne r2,r0,8001070 <RTEMS_Malloc_Initialize+0x94> !rtems_unified_work_area && rtems_configuration_get_do_zero_of_workspace()
8001054: 78 01 08 01 mvhi r1,0x801 8001058: 38 21 c0 c4 ori r1,r1,0xc0c4 800105c: 40 21 00 28 lbu r1,(r1+40)
8001060: 44 22 00 04 be r1,r2,8001070 <RTEMS_Malloc_Initialize+0x94> ) { memset( heap_begin, 0, heap_size );
8001064: b9 60 08 00 mv r1,r11 8001068: b9 80 18 00 mv r3,r12 800106c: f8 00 2a ad calli 800bb20 <memset>
* Unfortunately we cannot use assert if this fails because if this * has failed we do not have a heap and if we do not have a heap * STDIO cannot work because there will be no buffers. */ if ( !rtems_unified_work_area ) {
8001070: 78 01 08 01 mvhi r1,0x801 8001074: 38 21 c6 0d ori r1,r1,0xc60d 8001078: 40 2d 00 00 lbu r13,(r1+0)
800107c: 5d a0 00 0b bne r13,r0,80010a8 <RTEMS_Malloc_Initialize+0xcc> void *area_begin, uintptr_t area_size, uintptr_t page_size ) { return _Heap_Initialize( heap, area_begin, area_size, page_size );
8001080: 78 01 08 01 mvhi r1,0x801 8001084: 38 21 c0 1c ori r1,r1,0xc01c 8001088: 28 21 00 00 lw r1,(r1+0) 800108c: b9 60 10 00 mv r2,r11 8001090: b9 80 18 00 mv r3,r12 8001094: 34 04 00 08 mvi r4,8 8001098: f8 00 07 a5 calli 8002f2c <_Heap_Initialize>
RTEMS_Malloc_Heap, heap_begin, heap_size, CPU_HEAP_ALIGNMENT ); if ( status == 0 ) {
800109c: 5c 2d 00 03 bne r1,r13,80010a8 <RTEMS_Malloc_Initialize+0xcc><== ALWAYS TAKEN
rtems_fatal_error_occurred( RTEMS_NO_MEMORY );
80010a0: 34 01 00 1a mvi r1,26 <== NOT EXECUTED 80010a4: f8 00 05 7f calli 80026a0 <rtems_fatal_error_occurred> <== NOT EXECUTED
} } MSBUMP( space_available, _Protected_heap_Get_size(RTEMS_Malloc_Heap) );
80010a8: 78 01 08 01 mvhi r1,0x801 80010ac: 38 21 c0 1c ori r1,r1,0xc01c 80010b0: 78 0b 08 01 mvhi r11,0x801 80010b4: 39 6b c6 a8 ori r11,r11,0xc6a8 80010b8: 28 21 00 00 lw r1,(r1+0) 80010bc: 29 6c 00 00 lw r12,(r11+0) 80010c0: f8 00 0b 03 calli 8003ccc <_Protected_heap_Get_size> 80010c4: b4 2c 08 00 add r1,r1,r12 80010c8: 59 61 00 00 sw (r11+0),r1
printk( "\n" ); rtems_print_buffer( (heap_begin + heap_size) - 48, 48 ); rtems_fatal_error_occurred( RTEMS_NO_MEMORY ); } #endif }
80010cc: 2b 9d 00 04 lw ra,(sp+4) 80010d0: 2b 8b 00 10 lw r11,(sp+16) 80010d4: 2b 8c 00 0c lw r12,(sp+12) 80010d8: 2b 8d 00 08 lw r13,(sp+8) 80010dc: 37 9c 00 10 addi sp,sp,16 80010e0: c3 a0 00 00 ret
0800410c <Stack_check_Dump_threads_usage>: static rtems_printk_plugin_t print_handler; void Stack_check_Dump_threads_usage( Thread_Control *the_thread ) {
800410c: 37 9c ff d8 addi sp,sp,-40 <== NOT EXECUTED 8004110: 5b 8b 00 20 sw (sp+32),r11 <== NOT EXECUTED 8004114: 5b 8c 00 1c sw (sp+28),r12 <== NOT EXECUTED 8004118: 5b 8d 00 18 sw (sp+24),r13 <== NOT EXECUTED 800411c: 5b 8e 00 14 sw (sp+20),r14 <== NOT EXECUTED 8004120: 5b 8f 00 10 sw (sp+16),r15 <== NOT EXECUTED 8004124: 5b 90 00 0c sw (sp+12),r16 <== NOT EXECUTED 8004128: 5b 91 00 08 sw (sp+8),r17 <== NOT EXECUTED 800412c: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED 8004130: b8 20 58 00 mv r11,r1 <== NOT EXECUTED
void *high_water_mark; void *current; Stack_Control *stack; char name[5]; if ( !the_thread )
8004134: 44 20 00 4f be r1,r0,8004270 <Stack_check_Dump_threads_usage+0x164><== NOT EXECUTED
return; if ( !print_handler )
8004138: 78 01 08 06 mvhi r1,0x806 <== NOT EXECUTED 800413c: 38 21 c4 b0 ori r1,r1,0xc4b0 <== NOT EXECUTED 8004140: 28 2e 00 00 lw r14,(r1+0) <== NOT EXECUTED 8004144: 45 c0 00 4b be r14,r0,8004270 <Stack_check_Dump_threads_usage+0x164><== NOT EXECUTED
/* * Obtain interrupt stack information */ if (the_thread == (Thread_Control *) -1) {
8004148: 34 01 ff ff mvi r1,-1 <== NOT EXECUTED 800414c: 5d 61 00 08 bne r11,r1,800416c <Stack_check_Dump_threads_usage+0x60><== NOT EXECUTED
if (Stack_check_Interrupt_stack.area) {
8004150: 78 0c 08 06 mvhi r12,0x806 <== NOT EXECUTED 8004154: 39 8c ee 88 ori r12,r12,0xee88 <== NOT EXECUTED 8004158: 29 81 00 04 lw r1,(r12+4) <== NOT EXECUTED 800415c: 34 0b 00 00 mvi r11,0 <== NOT EXECUTED 8004160: b9 60 80 00 mv r16,r11 <== NOT EXECUTED 8004164: 5c 2b 00 04 bne r1,r11,8004174 <Stack_check_Dump_threads_usage+0x68><== NOT EXECUTED 8004168: e0 00 00 42 bi 8004270 <Stack_check_Dump_threads_usage+0x164><== NOT EXECUTED
} else return; } else { stack = &the_thread->Start.Initial_stack; current = (void *)_CPU_Context_Get_SP( &the_thread->Registers );
800416c: 29 70 01 10 lw r16,(r11+272) <== NOT EXECUTED
current = 0; } else return; } else { stack = &the_thread->Start.Initial_stack;
8004170: 35 6c 00 c0 addi r12,r11,192 <== NOT EXECUTED
current = (void *)_CPU_Context_Get_SP( &the_thread->Registers ); } low = Stack_check_usable_stack_start(stack);
8004174: 29 8f 00 04 lw r15,(r12+4) <== NOT EXECUTED
size = Stack_check_usable_stack_size(stack);
8004178: 29 8d 00 00 lw r13,(r12+0) <== NOT EXECUTED
} else { stack = &the_thread->Start.Initial_stack; current = (void *)_CPU_Context_Get_SP( &the_thread->Registers ); } low = Stack_check_usable_stack_start(stack);
800417c: 35 ef 00 10 addi r15,r15,16 <== NOT EXECUTED
size = Stack_check_usable_stack_size(stack);
8004180: 35 ad ff f0 addi r13,r13,-16 <== NOT EXECUTED
high_water_mark = Stack_check_find_high_water_mark(low, size);
8004184: b9 e0 08 00 mv r1,r15 <== NOT EXECUTED 8004188: b9 a0 10 00 mv r2,r13 <== NOT EXECUTED 800418c: fb ff ff c8 calli 80040ac <Stack_check_find_high_water_mark><== NOT EXECUTED
if ( high_water_mark ) used = Stack_check_Calculate_used( low, size, high_water_mark );
8004190: b5 ed 78 00 add r15,r15,r13 <== NOT EXECUTED 8004194: c9 e1 78 00 sub r15,r15,r1 <== NOT EXECUTED
low = Stack_check_usable_stack_start(stack); size = Stack_check_usable_stack_size(stack); high_water_mark = Stack_check_find_high_water_mark(low, size); if ( high_water_mark )
8004198: 5c 20 00 02 bne r1,r0,80041a0 <Stack_check_Dump_threads_usage+0x94><== NOT EXECUTED 800419c: b8 20 78 00 mv r15,r1 <== NOT EXECUTED 80041a0: 78 04 08 06 mvhi r4,0x806 <== NOT EXECUTED 80041a4: 38 84 c4 ac ori r4,r4,0xc4ac <== NOT EXECUTED
used = Stack_check_Calculate_used( low, size, high_water_mark ); else used = 0; if ( the_thread ) {
80041a8: 45 60 00 0e be r11,r0,80041e0 <Stack_check_Dump_threads_usage+0xd4><== NOT EXECUTED
(*print_handler)(
80041ac: 29 6b 00 08 lw r11,(r11+8) <== NOT EXECUTED 80041b0: 28 91 00 00 lw r17,(r4+0) <== NOT EXECUTED 80041b4: 37 83 00 24 addi r3,sp,36 <== NOT EXECUTED 80041b8: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 80041bc: 34 02 00 05 mvi r2,5 <== NOT EXECUTED 80041c0: f8 00 10 a6 calli 8008458 <rtems_object_get_name> <== NOT EXECUTED 80041c4: 78 02 08 06 mvhi r2,0x806 <== NOT EXECUTED 80041c8: b8 20 20 00 mv r4,r1 <== NOT EXECUTED 80041cc: 38 42 04 d0 ori r2,r2,0x4d0 <== NOT EXECUTED 80041d0: ba 20 08 00 mv r1,r17 <== NOT EXECUTED 80041d4: b9 60 18 00 mv r3,r11 <== NOT EXECUTED 80041d8: d9 c0 00 00 call r14 <== NOT EXECUTED 80041dc: e0 00 00 06 bi 80041f4 <Stack_check_Dump_threads_usage+0xe8><== NOT EXECUTED
"0x%08" PRIx32 " %4s", the_thread->Object.id, rtems_object_get_name( the_thread->Object.id, sizeof(name), name ) ); } else { (*print_handler)( print_context, "0x%08" PRIx32 " INTR", ~0 );
80041e0: 28 81 00 00 lw r1,(r4+0) <== NOT EXECUTED 80041e4: 78 02 08 06 mvhi r2,0x806 <== NOT EXECUTED 80041e8: 38 42 04 e0 ori r2,r2,0x4e0 <== NOT EXECUTED 80041ec: 34 03 ff ff mvi r3,-1 <== NOT EXECUTED 80041f0: d9 c0 00 00 call r14 <== NOT EXECUTED
} (*print_handler)(
80041f4: 29 84 00 00 lw r4,(r12+0) <== NOT EXECUTED 80041f8: 29 83 00 04 lw r3,(r12+4) <== NOT EXECUTED 80041fc: 78 0b 08 06 mvhi r11,0x806 <== NOT EXECUTED 8004200: 78 0c 08 06 mvhi r12,0x806 <== NOT EXECUTED 8004204: 39 6b c4 b0 ori r11,r11,0xc4b0 <== NOT EXECUTED 8004208: 39 8c c4 ac ori r12,r12,0xc4ac <== NOT EXECUTED 800420c: 29 67 00 00 lw r7,(r11+0) <== NOT EXECUTED 8004210: 29 81 00 00 lw r1,(r12+0) <== NOT EXECUTED 8004214: 34 84 ff ff addi r4,r4,-1 <== NOT EXECUTED 8004218: 78 02 08 06 mvhi r2,0x806 <== NOT EXECUTED 800421c: 38 42 04 f0 ori r2,r2,0x4f0 <== NOT EXECUTED 8004220: b4 64 20 00 add r4,r3,r4 <== NOT EXECUTED 8004224: ba 00 28 00 mv r5,r16 <== NOT EXECUTED 8004228: b9 a0 30 00 mv r6,r13 <== NOT EXECUTED 800422c: d8 e0 00 00 call r7 <== NOT EXECUTED
stack->area + stack->size - 1, current, size ); if (Stack_check_Initialized == 0) {
8004230: 78 02 08 06 mvhi r2,0x806 <== NOT EXECUTED 8004234: 38 42 c4 a8 ori r2,r2,0xc4a8 <== NOT EXECUTED 8004238: 28 41 00 00 lw r1,(r2+0) <== NOT EXECUTED 800423c: 5c 20 00 07 bne r1,r0,8004258 <Stack_check_Dump_threads_usage+0x14c><== NOT EXECUTED
(*print_handler)( print_context, "Unavailable\n" );
8004240: 29 63 00 00 lw r3,(r11+0) <== NOT EXECUTED 8004244: 29 81 00 00 lw r1,(r12+0) <== NOT EXECUTED 8004248: 78 02 08 06 mvhi r2,0x806 <== NOT EXECUTED 800424c: 38 42 05 10 ori r2,r2,0x510 <== NOT EXECUTED 8004250: d8 60 00 00 call r3 <== NOT EXECUTED 8004254: e0 00 00 07 bi 8004270 <Stack_check_Dump_threads_usage+0x164><== NOT EXECUTED
} else { (*print_handler)( print_context, "%8" PRId32 "\n", used );
8004258: 29 64 00 00 lw r4,(r11+0) <== NOT EXECUTED 800425c: 29 81 00 00 lw r1,(r12+0) <== NOT EXECUTED 8004260: 78 02 08 06 mvhi r2,0x806 <== NOT EXECUTED 8004264: 38 42 05 20 ori r2,r2,0x520 <== NOT EXECUTED 8004268: b9 e0 18 00 mv r3,r15 <== NOT EXECUTED 800426c: d8 80 00 00 call r4 <== NOT EXECUTED
} }
8004270: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8004274: 2b 8b 00 20 lw r11,(sp+32) <== NOT EXECUTED 8004278: 2b 8c 00 1c lw r12,(sp+28) <== NOT EXECUTED 800427c: 2b 8d 00 18 lw r13,(sp+24) <== NOT EXECUTED 8004280: 2b 8e 00 14 lw r14,(sp+20) <== NOT EXECUTED 8004284: 2b 8f 00 10 lw r15,(sp+16) <== NOT EXECUTED 8004288: 2b 90 00 0c lw r16,(sp+12) <== NOT EXECUTED 800428c: 2b 91 00 08 lw r17,(sp+8) <== NOT EXECUTED 8004290: 37 9c 00 28 addi sp,sp,40 <== NOT EXECUTED 8004294: c3 a0 00 00 ret <== NOT EXECUTED
08004520 <Stack_check_Initialize>: /* * Stack_check_Initialize */ void Stack_check_Initialize( void ) {
8004520: 37 9c ff ec addi sp,sp,-20 8004524: 5b 8b 00 14 sw (sp+20),r11 8004528: 5b 8c 00 10 sw (sp+16),r12 800452c: 5b 8d 00 0c sw (sp+12),r13 8004530: 5b 8e 00 08 sw (sp+8),r14 8004534: 5b 9d 00 04 sw (sp+4),ra
static uint32_t pattern[ 4 ] = { 0xFEEDF00D, 0x0BAD0D06, /* FEED FOOD to BAD DOG */ 0xDEADF00D, 0x600D0D06 /* DEAD FOOD but GOOD DOG */ }; if (Stack_check_Initialized)
8004538: 78 01 08 06 mvhi r1,0x806 800453c: 38 21 c4 a8 ori r1,r1,0xc4a8 8004540: 28 2c 00 00 lw r12,(r1+0)
8004544: 5d 80 00 24 bne r12,r0,80045d4 <Stack_check_Initialize+0xb4>
8004548: 78 0b 08 06 mvhi r11,0x806
/* * Dope the pattern and fill areas */ p = Stack_check_Pattern.pattern; for ( i = 0; i < PATTERN_SIZE_WORDS; i++ ) { p[i] = pattern[ i%4 ];
800454c: 78 0d 08 06 mvhi r13,0x806
static uint32_t pattern[ 4 ] = { 0xFEEDF00D, 0x0BAD0D06, /* FEED FOOD to BAD DOG */ 0xDEADF00D, 0x600D0D06 /* DEAD FOOD but GOOD DOG */ }; if (Stack_check_Initialized)
8004550: 39 6b ee 78 ori r11,r11,0xee78
/* * Dope the pattern and fill areas */ p = Stack_check_Pattern.pattern; for ( i = 0; i < PATTERN_SIZE_WORDS; i++ ) { p[i] = pattern[ i%4 ];
8004554: 39 ad 06 68 ori r13,r13,0x668
/* * Dope the pattern and fill areas */ p = Stack_check_Pattern.pattern; for ( i = 0; i < PATTERN_SIZE_WORDS; i++ ) {
8004558: 34 0e 00 04 mvi r14,4
p[i] = pattern[ i%4 ];
800455c: 21 81 00 03 andi r1,r12,0x3 8004560: 34 02 00 02 mvi r2,2 8004564: fb ff f2 f5 calli 8001138 <__ashlsi3> 8004568: b5 a1 08 00 add r1,r13,r1 800456c: 28 21 00 00 lw r1,(r1+0)
/* * Dope the pattern and fill areas */ p = Stack_check_Pattern.pattern; for ( i = 0; i < PATTERN_SIZE_WORDS; i++ ) {
8004570: 35 8c 00 01 addi r12,r12,1
p[i] = pattern[ i%4 ];
8004574: 59 61 00 00 sw (r11+0),r1
/* * Dope the pattern and fill areas */ p = Stack_check_Pattern.pattern; for ( i = 0; i < PATTERN_SIZE_WORDS; i++ ) {
8004578: 35 6b 00 04 addi r11,r11,4
800457c: 5d 8e ff f8 bne r12,r14,800455c <Stack_check_Initialize+0x3c> /* * If appropriate, setup the interrupt stack for high water testing * also. */ #if (CPU_ALLOCATE_INTERRUPT_STACK == TRUE) if (_CPU_Interrupt_stack_low && _CPU_Interrupt_stack_high) {
8004580: 78 01 08 06 mvhi r1,0x806 8004584: 38 21 f0 34 ori r1,r1,0xf034 8004588: 28 24 00 00 lw r4,(r1+0)
800458c: 44 80 00 0e be r4,r0,80045c4 <Stack_check_Initialize+0xa4> <== NEVER TAKEN
8004590: 78 01 08 06 mvhi r1,0x806 8004594: 38 21 ef b8 ori r1,r1,0xefb8 8004598: 28 26 00 00 lw r6,(r1+0)
800459c: 44 c0 00 0a be r6,r0,80045c4 <Stack_check_Initialize+0xa4> <== NEVER TAKEN
Stack_check_Interrupt_stack.area = _CPU_Interrupt_stack_low;
80045a0: 78 05 08 06 mvhi r5,0x806
Stack_check_Interrupt_stack.size = (char *) _CPU_Interrupt_stack_high -
80045a4: c8 c4 30 00 sub r6,r6,r4
* If appropriate, setup the interrupt stack for high water testing * also. */ #if (CPU_ALLOCATE_INTERRUPT_STACK == TRUE) if (_CPU_Interrupt_stack_low && _CPU_Interrupt_stack_high) { Stack_check_Interrupt_stack.area = _CPU_Interrupt_stack_low;
80045a8: 38 a5 ee 88 ori r5,r5,0xee88
Stack_check_Interrupt_stack.size = (char *) _CPU_Interrupt_stack_high - (char *) _CPU_Interrupt_stack_low; Stack_check_Dope_stack(&Stack_check_Interrupt_stack);
80045ac: b8 80 08 00 mv r1,r4 80045b0: b8 c0 18 00 mv r3,r6 80045b4: 34 02 00 a5 mvi r2,165
* also. */ #if (CPU_ALLOCATE_INTERRUPT_STACK == TRUE) if (_CPU_Interrupt_stack_low && _CPU_Interrupt_stack_high) { Stack_check_Interrupt_stack.area = _CPU_Interrupt_stack_low; Stack_check_Interrupt_stack.size = (char *) _CPU_Interrupt_stack_high -
80045b8: 58 a6 00 00 sw (r5+0),r6
* If appropriate, setup the interrupt stack for high water testing * also. */ #if (CPU_ALLOCATE_INTERRUPT_STACK == TRUE) if (_CPU_Interrupt_stack_low && _CPU_Interrupt_stack_high) { Stack_check_Interrupt_stack.area = _CPU_Interrupt_stack_low;
80045bc: 58 a4 00 04 sw (r5+4),r4
Stack_check_Interrupt_stack.size = (char *) _CPU_Interrupt_stack_high - (char *) _CPU_Interrupt_stack_low; Stack_check_Dope_stack(&Stack_check_Interrupt_stack);
80045c0: f8 01 08 41 calli 80466c4 <memset>
} #endif Stack_check_Initialized = 1;
80045c4: 78 01 08 06 mvhi r1,0x806 80045c8: 38 21 c4 a8 ori r1,r1,0xc4a8 80045cc: 34 02 00 01 mvi r2,1 80045d0: 58 22 00 00 sw (r1+0),r2
}
80045d4: 2b 9d 00 04 lw ra,(sp+4) 80045d8: 2b 8b 00 14 lw r11,(sp+20) 80045dc: 2b 8c 00 10 lw r12,(sp+16) 80045e0: 2b 8d 00 0c lw r13,(sp+12) 80045e4: 2b 8e 00 08 lw r14,(sp+8) 80045e8: 37 9c 00 14 addi sp,sp,20 80045ec: c3 a0 00 00 ret
080040ac <Stack_check_find_high_water_mark>: */ void *Stack_check_find_high_water_mark( const void *s, size_t n ) {
80040ac: 37 9c ff f8 addi sp,sp,-8 <== NOT EXECUTED 80040b0: 5b 8b 00 08 sw (sp+8),r11 <== NOT EXECUTED 80040b4: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
/* * start at lower memory and find first word that does not * match pattern */ base += PATTERN_SIZE_WORDS;
80040b8: 34 2b 00 10 addi r11,r1,16 <== NOT EXECUTED
for (ebase = base + length; base < ebase; base++)
80040bc: b8 40 08 00 mv r1,r2 <== NOT EXECUTED 80040c0: 34 02 00 02 mvi r2,2 <== NOT EXECUTED 80040c4: fb ff f4 45 calli 80011d8 <__lshrsi3> <== NOT EXECUTED 80040c8: 34 02 00 02 mvi r2,2 <== NOT EXECUTED 80040cc: fb ff f4 1b calli 8001138 <__ashlsi3> <== NOT EXECUTED
if (*base != U32_PATTERN)
80040d0: 78 02 a5 a5 mvhi r2,0xa5a5 <== NOT EXECUTED
* start at lower memory and find first word that does not * match pattern */ base += PATTERN_SIZE_WORDS; for (ebase = base + length; base < ebase; base++)
80040d4: b5 61 08 00 add r1,r11,r1 <== NOT EXECUTED
if (*base != U32_PATTERN)
80040d8: 38 42 a5 a5 ori r2,r2,0xa5a5 <== NOT EXECUTED
* start at lower memory and find first word that does not * match pattern */ base += PATTERN_SIZE_WORDS; for (ebase = base + length; base < ebase; base++)
80040dc: e0 00 00 06 bi 80040f4 <Stack_check_find_high_water_mark+0x48><== NOT EXECUTED
if (*base != U32_PATTERN)
80040e0: 29 63 00 00 lw r3,(r11+0) <== NOT EXECUTED 80040e4: 44 62 00 03 be r3,r2,80040f0 <Stack_check_find_high_water_mark+0x44><== NOT EXECUTED
return (void *) base;
80040e8: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 80040ec: e0 00 00 04 bi 80040fc <Stack_check_find_high_water_mark+0x50><== NOT EXECUTED
* start at lower memory and find first word that does not * match pattern */ base += PATTERN_SIZE_WORDS; for (ebase = base + length; base < ebase; base++)
80040f0: 35 6b 00 04 addi r11,r11,4 <== NOT EXECUTED 80040f4: 54 2b ff fb bgu r1,r11,80040e0 <Stack_check_find_high_water_mark+0x34><== NOT EXECUTED 80040f8: 34 01 00 00 mvi r1,0 <== NOT EXECUTED
if (*base != U32_PATTERN) return (void *) base; #endif return (void *)0; }
80040fc: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8004100: 2b 8b 00 08 lw r11,(sp+8) <== NOT EXECUTED 8004104: 37 9c 00 08 addi sp,sp,8 <== NOT EXECUTED 8004108: c3 a0 00 00 ret <== NOT EXECUTED
0800434c <Stack_check_report_blown_task>: * * NOTE: The system is in a questionable state... we may not get * the following message out. */ void Stack_check_report_blown_task(Thread_Control *running, bool pattern_ok) {
800434c: 37 9c ff d0 addi sp,sp,-48 8004350: 5b 8b 00 10 sw (sp+16),r11 8004354: 5b 8c 00 0c sw (sp+12),r12 8004358: 5b 8d 00 08 sw (sp+8),r13 800435c: 5b 9d 00 04 sw (sp+4),ra 8004360: b8 20 58 00 mv r11,r1
Stack_Control *stack = &running->Start.Initial_stack; void *pattern_area = Stack_check_Get_pattern_area(stack); char name [32]; printk("BLOWN STACK!!!\n");
8004364: 78 01 08 06 mvhi r1,0x806 8004368: 38 21 05 8c ori r1,r1,0x58c
* * NOTE: The system is in a questionable state... we may not get * the following message out. */ void Stack_check_report_blown_task(Thread_Control *running, bool pattern_ok) {
800436c: 20 4d 00 ff andi r13,r2,0xff
Stack_Control *stack = &running->Start.Initial_stack; void *pattern_area = Stack_check_Get_pattern_area(stack);
8004370: 29 6c 00 c4 lw r12,(r11+196)
char name [32]; printk("BLOWN STACK!!!\n");
8004374: f8 00 0c cf calli 80076b0 <printk>
printk("task control block: 0x%08" PRIxPTR "\n", running);
8004378: 78 01 08 06 mvhi r1,0x806 800437c: 38 21 05 9c ori r1,r1,0x59c 8004380: b9 60 10 00 mv r2,r11 8004384: f8 00 0c cb calli 80076b0 <printk>
printk("task ID: 0x%08lx\n", (unsigned long) running->Object.id);
8004388: 29 62 00 08 lw r2,(r11+8) 800438c: 78 01 08 06 mvhi r1,0x806 8004390: 38 21 05 bc ori r1,r1,0x5bc 8004394: f8 00 0c c7 calli 80076b0 <printk>
printk(
8004398: 29 62 00 0c lw r2,(r11+12) 800439c: 78 01 08 06 mvhi r1,0x806 80043a0: 38 21 05 d0 ori r1,r1,0x5d0 80043a4: f8 00 0c c3 calli 80076b0 <printk>
"task name: 0x%08" PRIx32 "\n", running->Object.name.name_u32 ); printk(
80043a8: 29 61 00 08 lw r1,(r11+8) 80043ac: 37 83 00 14 addi r3,sp,20 80043b0: 34 02 00 20 mvi r2,32 80043b4: f8 00 10 29 calli 8008458 <rtems_object_get_name> 80043b8: b8 20 10 00 mv r2,r1 80043bc: 78 01 08 06 mvhi r1,0x806 80043c0: 38 21 05 e4 ori r1,r1,0x5e4 80043c4: f8 00 0c bb calli 80076b0 <printk>
"task name string: %s\n", rtems_object_get_name(running->Object.id, sizeof(name), name) ); printk(
80043c8: 29 62 00 c0 lw r2,(r11+192) 80043cc: 29 63 00 c4 lw r3,(r11+196) 80043d0: 78 01 08 06 mvhi r1,0x806 80043d4: 38 21 05 fc ori r1,r1,0x5fc 80043d8: b4 62 20 00 add r4,r3,r2 80043dc: f8 00 0c b5 calli 80076b0 <printk>
"task stack area (%lu Bytes): 0x%08" PRIxPTR " .. 0x%08" PRIxPTR "\n", (unsigned long) stack->size, stack->area, ((char *) stack->area + stack->size) ); if (!pattern_ok) {
80043e0: 5d a0 00 07 bne r13,r0,80043fc <Stack_check_report_blown_task+0xb0><== NEVER TAKEN
printk(
80043e4: 78 01 08 06 mvhi r1,0x806 80043e8: 38 21 06 30 ori r1,r1,0x630 80043ec: 35 84 00 18 addi r4,r12,24 80043f0: 34 02 00 10 mvi r2,16 80043f4: 35 83 00 08 addi r3,r12,8 80043f8: f8 00 0c ae calli 80076b0 <printk>
rtems_configuration_get_user_multiprocessing_table()->node ); } #endif rtems_fatal_error_occurred(0x81);
80043fc: 34 01 00 81 mvi r1,129 8004400: f8 00 12 8b calli 8008e2c <rtems_fatal_error_occurred>
08014e74 <_CORE_message_queue_Broadcast>: Objects_Id id __attribute__((unused)), CORE_message_queue_API_mp_support_callout api_message_queue_mp_support __attribute__((unused)), #endif uint32_t *count ) {
8014e74: 37 9c ff e4 addi sp,sp,-28 8014e78: 5b 8b 00 1c sw (sp+28),r11 8014e7c: 5b 8c 00 18 sw (sp+24),r12 8014e80: 5b 8d 00 14 sw (sp+20),r13 8014e84: 5b 8e 00 10 sw (sp+16),r14 8014e88: 5b 8f 00 0c sw (sp+12),r15 8014e8c: 5b 90 00 08 sw (sp+8),r16 8014e90: 5b 9d 00 04 sw (sp+4),ra 8014e94: b8 20 58 00 mv r11,r1
Thread_Control *the_thread; uint32_t number_broadcasted; Thread_Wait_information *waitp; if ( size > the_message_queue->maximum_message_size ) {
8014e98: 28 21 00 4c lw r1,(r1+76)
Objects_Id id __attribute__((unused)), CORE_message_queue_API_mp_support_callout api_message_queue_mp_support __attribute__((unused)), #endif uint32_t *count ) {
8014e9c: b8 60 70 00 mv r14,r3 8014ea0: b8 40 80 00 mv r16,r2 8014ea4: b8 c0 78 00 mv r15,r6
Thread_Control *the_thread; uint32_t number_broadcasted; Thread_Wait_information *waitp; if ( size > the_message_queue->maximum_message_size ) {
8014ea8: 50 23 00 03 bgeu r1,r3,8014eb4 <_CORE_message_queue_Broadcast+0x40><== ALWAYS TAKEN
8014eac: 34 01 00 01 mvi r1,1 <== NOT EXECUTED 8014eb0: e0 00 00 13 bi 8014efc <_CORE_message_queue_Broadcast+0x88><== NOT EXECUTED
* NOTE: This check is critical because threads can block on * send and receive and this ensures that we are broadcasting * the message to threads waiting to receive -- not to send. */ if ( the_message_queue->number_of_pending_messages != 0 ) {
8014eb4: 29 63 00 48 lw r3,(r11+72) 8014eb8: 34 01 00 00 mvi r1,0
* There must be no pending messages if there is a thread waiting to * receive a message. */ number_broadcasted = 0; while ((the_thread = _Thread_queue_Dequeue(&the_message_queue->Wait_queue))) {
8014ebc: b8 60 68 00 mv r13,r3
* NOTE: This check is critical because threads can block on * send and receive and this ensures that we are broadcasting * the message to threads waiting to receive -- not to send. */ if ( the_message_queue->number_of_pending_messages != 0 ) { 8014ec0: 44 61 00 08 be r3,r1,8014ee0 <_CORE_message_queue_Broadcast+0x6c> *count = 0;
8014ec4: 58 c1 00 00 sw (r6+0),r1
return CORE_MESSAGE_QUEUE_STATUS_SUCCESSFUL;
8014ec8: e0 00 00 0d bi 8014efc <_CORE_message_queue_Broadcast+0x88>
const void *source, void *destination, size_t size ) { memcpy(destination, source, size);
8014ecc: 29 81 00 2c lw r1,(r12+44)
*/ number_broadcasted = 0; while ((the_thread = _Thread_queue_Dequeue(&the_message_queue->Wait_queue))) { waitp = &the_thread->Wait; number_broadcasted += 1;
8014ed0: 35 ad 00 01 addi r13,r13,1 8014ed4: f8 00 26 93 calli 801e920 <memcpy>
buffer, waitp->return_argument_second.mutable_object, size ); *(size_t *) the_thread->Wait.return_argument = size;
8014ed8: 29 81 00 28 lw r1,(r12+40) 8014edc: 58 2e 00 00 sw (r1+0),r14
* There must be no pending messages if there is a thread waiting to * receive a message. */ number_broadcasted = 0; while ((the_thread = _Thread_queue_Dequeue(&the_message_queue->Wait_queue))) {
8014ee0: b9 60 08 00 mv r1,r11 8014ee4: f8 00 0b d3 calli 8017e30 <_Thread_queue_Dequeue> 8014ee8: b8 20 60 00 mv r12,r1 8014eec: ba 00 10 00 mv r2,r16 8014ef0: b9 c0 18 00 mv r3,r14
/* * There must be no pending messages if there is a thread waiting to * receive a message. */ number_broadcasted = 0; while ((the_thread = 8014ef4: 5c 20 ff f6 bne r1,r0,8014ecc <_CORE_message_queue_Broadcast+0x58> if ( !_Objects_Is_local_id( the_thread->Object.id ) ) (*api_message_queue_mp_support) ( the_thread, id ); #endif } *count = number_broadcasted;
8014ef8: 59 ed 00 00 sw (r15+0),r13
return CORE_MESSAGE_QUEUE_STATUS_SUCCESSFUL; }
8014efc: 2b 9d 00 04 lw ra,(sp+4) 8014f00: 2b 8b 00 1c lw r11,(sp+28) 8014f04: 2b 8c 00 18 lw r12,(sp+24) 8014f08: 2b 8d 00 14 lw r13,(sp+20) 8014f0c: 2b 8e 00 10 lw r14,(sp+16) 8014f10: 2b 8f 00 0c lw r15,(sp+12) 8014f14: 2b 90 00 08 lw r16,(sp+8) 8014f18: 37 9c 00 1c addi sp,sp,28 8014f1c: c3 a0 00 00 ret
0800d6b4 <_CORE_message_queue_Initialize>: CORE_message_queue_Control *the_message_queue, CORE_message_queue_Attributes *the_message_queue_attributes, uint32_t maximum_pending_messages, size_t maximum_message_size ) {
800d6b4: 37 9c ff e8 addi sp,sp,-24 800d6b8: 5b 8b 00 18 sw (sp+24),r11 800d6bc: 5b 8c 00 14 sw (sp+20),r12 800d6c0: 5b 8d 00 10 sw (sp+16),r13 800d6c4: 5b 8e 00 0c sw (sp+12),r14 800d6c8: 5b 8f 00 08 sw (sp+8),r15 800d6cc: 5b 9d 00 04 sw (sp+4),ra 800d6d0: b8 20 58 00 mv r11,r1
size_t message_buffering_required; size_t allocated_message_size; the_message_queue->maximum_pending_messages = maximum_pending_messages; the_message_queue->number_of_pending_messages = 0;
800d6d4: 34 01 00 00 mvi r1,0 800d6d8: 59 61 00 48 sw (r11+72),r1
) { size_t message_buffering_required; size_t allocated_message_size; the_message_queue->maximum_pending_messages = maximum_pending_messages;
800d6dc: 59 63 00 44 sw (r11+68),r3
the_message_queue->number_of_pending_messages = 0; the_message_queue->maximum_message_size = maximum_message_size;
800d6e0: 59 64 00 4c sw (r11+76),r4
/* * Round size up to multiple of a pointer for chain init and * check for overflow on adding overhead to each message. */ allocated_message_size = maximum_message_size; if (allocated_message_size & (sizeof(uint32_t) - 1)) {
800d6e4: 20 81 00 03 andi r1,r4,0x3
CORE_message_queue_Control *the_message_queue, CORE_message_queue_Attributes *the_message_queue_attributes, uint32_t maximum_pending_messages, size_t maximum_message_size ) {
800d6e8: b8 60 68 00 mv r13,r3 800d6ec: b8 40 78 00 mv r15,r2
/* * Round size up to multiple of a pointer for chain init and * check for overflow on adding overhead to each message. */ allocated_message_size = maximum_message_size; if (allocated_message_size & (sizeof(uint32_t) - 1)) {
800d6f0: b8 80 60 00 mv r12,r4
800d6f4: 44 20 00 05 be r1,r0,800d708 <_CORE_message_queue_Initialize+0x54> allocated_message_size += sizeof(uint32_t);
800d6f8: 34 8c 00 04 addi r12,r4,4
allocated_message_size &= ~(sizeof(uint32_t) - 1);
800d6fc: 34 01 ff fc mvi r1,-4 800d700: a1 81 60 00 and r12,r12,r1
} if (allocated_message_size < maximum_message_size)
800d704: 54 8c 00 1c bgu r4,r12,800d774 <_CORE_message_queue_Initialize+0xc0><== NEVER TAKEN
/* * Calculate how much total memory is required for message buffering and * check for overflow on the multiplication. */ message_buffering_required = (size_t) maximum_pending_messages * (allocated_message_size + sizeof(CORE_message_queue_Buffer_control));
800d708: 35 8e 00 10 addi r14,r12,16
/* * Calculate how much total memory is required for message buffering and * check for overflow on the multiplication. */ message_buffering_required = (size_t) maximum_pending_messages *
800d70c: b9 c0 08 00 mv r1,r14 800d710: b9 a0 10 00 mv r2,r13 800d714: f8 00 64 bc calli 8026a04 <__mulsi3>
(allocated_message_size + sizeof(CORE_message_queue_Buffer_control)); if (message_buffering_required < allocated_message_size)
800d718: 55 81 00 17 bgu r12,r1,800d774 <_CORE_message_queue_Initialize+0xc0><== NEVER TAKEN
return false; /* * Attempt to allocate the message memory */ the_message_queue->message_buffers = (CORE_message_queue_Buffer *)
800d71c: f8 00 0d 98 calli 8010d7c <_Workspace_Allocate> 800d720: 59 61 00 5c sw (r11+92),r1
_Workspace_Allocate( message_buffering_required ); if (the_message_queue->message_buffers == 0) 800d724: 44 20 00 14 be r1,r0,800d774 <_CORE_message_queue_Initialize+0xc0> /* * Initialize the pool of inactive messages, pending messages, * and set of waiting threads. */ _Chain_Initialize (
800d728: b8 20 10 00 mv r2,r1 800d72c: b9 a0 18 00 mv r3,r13 800d730: b9 c0 20 00 mv r4,r14 800d734: 35 61 00 60 addi r1,r11,96 800d738: f8 00 15 fe calli 8012f30 <_Chain_Initialize>
allocated_message_size + sizeof( CORE_message_queue_Buffer_control ) ); _Chain_Initialize_empty( &the_message_queue->Pending_messages ); _Thread_queue_Initialize(
800d73c: 29 e2 00 00 lw r2,(r15+0)
*/ RTEMS_INLINE_ROUTINE void _Chain_Initialize_empty( Chain_Control *the_chain ) { the_chain->first = _Chain_Tail(the_chain);
800d740: 35 63 00 54 addi r3,r11,84
the_chain->permanent_null = NULL; the_chain->last = _Chain_Head(the_chain);
800d744: 35 61 00 50 addi r1,r11,80
*/ RTEMS_INLINE_ROUTINE void _Chain_Initialize_empty( Chain_Control *the_chain ) { the_chain->first = _Chain_Tail(the_chain);
800d748: 59 63 00 50 sw (r11+80),r3 800d74c: 64 42 00 01 cmpei r2,r2,1
the_chain->permanent_null = NULL;
800d750: 34 03 00 00 mvi r3,0 800d754: 59 63 00 54 sw (r11+84),r3
the_chain->last = _Chain_Head(the_chain);
800d758: 59 61 00 58 sw (r11+88),r1 800d75c: 34 03 00 80 mvi r3,128 800d760: b9 60 08 00 mv r1,r11 800d764: 34 04 00 06 mvi r4,6 800d768: f8 00 0a 1d calli 800ffdc <_Thread_queue_Initialize> 800d76c: 34 01 00 01 mvi r1,1
THREAD_QUEUE_DISCIPLINE_PRIORITY : THREAD_QUEUE_DISCIPLINE_FIFO, STATES_WAITING_FOR_MESSAGE, CORE_MESSAGE_QUEUE_STATUS_TIMEOUT ); return true;
800d770: e0 00 00 02 bi 800d778 <_CORE_message_queue_Initialize+0xc4> 800d774: 34 01 00 00 mvi r1,0
}
800d778: 2b 9d 00 04 lw ra,(sp+4) 800d77c: 2b 8b 00 18 lw r11,(sp+24) 800d780: 2b 8c 00 14 lw r12,(sp+20) 800d784: 2b 8d 00 10 lw r13,(sp+16) 800d788: 2b 8e 00 0c lw r14,(sp+12) 800d78c: 2b 8f 00 08 lw r15,(sp+8) 800d790: 37 9c 00 18 addi sp,sp,24 800d794: c3 a0 00 00 ret
0800d798 <_CORE_message_queue_Seize>: void *buffer, size_t *size_p, bool wait, Watchdog_Interval timeout ) {
800d798: 37 9c ff f4 addi sp,sp,-12 800d79c: 5b 8b 00 0c sw (sp+12),r11 800d7a0: 5b 8c 00 08 sw (sp+8),r12 800d7a4: 5b 9d 00 04 sw (sp+4),ra
ISR_Level level; CORE_message_queue_Buffer_control *the_message; Thread_Control *executing; executing = _Thread_Executing;
800d7a8: 78 07 08 02 mvhi r7,0x802 800d7ac: 38 e7 aa 78 ori r7,r7,0xaa78 800d7b0: 28 e7 00 00 lw r7,(r7+0)
void *buffer, size_t *size_p, bool wait, Watchdog_Interval timeout ) {
800d7b4: b8 20 58 00 mv r11,r1
ISR_Level level; CORE_message_queue_Buffer_control *the_message; Thread_Control *executing; executing = _Thread_Executing; executing->Wait.return_code = CORE_MESSAGE_QUEUE_STATUS_SUCCESSFUL;
800d7b8: 34 01 00 00 mvi r1,0 800d7bc: 58 e1 00 34 sw (r7+52),r1
void *buffer, size_t *size_p, bool wait, Watchdog_Interval timeout ) {
800d7c0: 20 a5 00 ff andi r5,r5,0xff 800d7c4: b8 60 08 00 mv r1,r3
CORE_message_queue_Buffer_control *the_message; Thread_Control *executing; executing = _Thread_Executing; executing->Wait.return_code = CORE_MESSAGE_QUEUE_STATUS_SUCCESSFUL; _ISR_Disable( level );
800d7c8: 90 00 40 00 rcsr r8,IE 800d7cc: 34 03 ff fe mvi r3,-2 800d7d0: a1 03 18 00 and r3,r8,r3 800d7d4: d0 03 00 00 wcsr IE,r3
*/ RTEMS_INLINE_ROUTINE bool _Chain_Is_empty( Chain_Control *the_chain ) { return (the_chain->first == _Chain_Tail(the_chain));
800d7d8: 29 6c 00 50 lw r12,(r11+80)
*/ RTEMS_INLINE_ROUTINE Chain_Node *_Chain_Tail( Chain_Control *the_chain ) { return (Chain_Node *) &the_chain->permanent_null;
800d7dc: 35 63 00 54 addi r3,r11,84
800d7e0: 5d 83 00 03 bne r12,r3,800d7ec <_CORE_message_queue_Seize+0x54>
800d7e4: 34 0c 00 00 mvi r12,0 800d7e8: e0 00 00 17 bi 800d844 <_CORE_message_queue_Seize+0xac>
{ Chain_Node *return_node; Chain_Node *new_first; return_node = the_chain->first; new_first = return_node->next;
800d7ec: 29 83 00 00 lw r3,(r12+0)
the_chain->first = new_first; new_first->previous = _Chain_Head(the_chain);
800d7f0: 35 69 00 50 addi r9,r11,80
Chain_Node *return_node; Chain_Node *new_first; return_node = the_chain->first; new_first = return_node->next; the_chain->first = new_first;
800d7f4: 59 63 00 50 sw (r11+80),r3
new_first->previous = _Chain_Head(the_chain);
800d7f8: 58 69 00 04 sw (r3+4),r9
the_message = _CORE_message_queue_Get_pending_message( the_message_queue ); if ( the_message != NULL ) {
800d7fc: 45 80 00 12 be r12,r0,800d844 <_CORE_message_queue_Seize+0xac><== NEVER TAKEN
the_message_queue->number_of_pending_messages -= 1;
800d800: 29 62 00 48 lw r2,(r11+72) 800d804: 34 42 ff ff addi r2,r2,-1 800d808: 59 62 00 48 sw (r11+72),r2
_ISR_Enable( level );
800d80c: d0 08 00 00 wcsr IE,r8
*size_p = the_message->Contents.size; _Thread_Executing->Wait.count =
800d810: 78 02 08 02 mvhi r2,0x802 800d814: 38 42 aa 78 ori r2,r2,0xaa78 800d818: 28 42 00 00 lw r2,(r2+0)
the_message = _CORE_message_queue_Get_pending_message( the_message_queue ); if ( the_message != NULL ) { the_message_queue->number_of_pending_messages -= 1; _ISR_Enable( level ); *size_p = the_message->Contents.size;
800d81c: 29 83 00 08 lw r3,(r12+8)
_Thread_Executing->Wait.count =
800d820: 34 05 00 00 mvi r5,0 800d824: 58 45 00 24 sw (r2+36),r5
the_message = _CORE_message_queue_Get_pending_message( the_message_queue ); if ( the_message != NULL ) { the_message_queue->number_of_pending_messages -= 1; _ISR_Enable( level ); *size_p = the_message->Contents.size;
800d828: 58 83 00 00 sw (r4+0),r3
const void *source, void *destination, size_t size ) { memcpy(destination, source, size);
800d82c: 35 82 00 0c addi r2,r12,12 800d830: f8 00 22 45 calli 8016144 <memcpy>
RTEMS_INLINE_ROUTINE void _CORE_message_queue_Free_message_buffer ( CORE_message_queue_Control *the_message_queue, CORE_message_queue_Buffer_control *the_message ) { _Chain_Append( &the_message_queue->Inactive_messages, &the_message->Node );
800d834: 35 61 00 60 addi r1,r11,96 800d838: b9 80 10 00 mv r2,r12 800d83c: fb ff ff 6e calli 800d5f4 <_Chain_Append>
/* * There is not an API with blocking sends enabled. * So return immediately. */ _CORE_message_queue_Free_message_buffer(the_message_queue, the_message); return;
800d840: e0 00 00 12 bi 800d888 <_CORE_message_queue_Seize+0xf0>
return; } #endif } if ( !wait ) { 800d844: 5c ac 00 05 bne r5,r12,800d858 <_CORE_message_queue_Seize+0xc0> _ISR_Enable( level );
800d848: d0 08 00 00 wcsr IE,r8
executing->Wait.return_code = CORE_MESSAGE_QUEUE_STATUS_UNSATISFIED_NOWAIT;
800d84c: 34 01 00 04 mvi r1,4 800d850: 58 e1 00 34 sw (r7+52),r1
return;
800d854: e0 00 00 0d bi 800d888 <_CORE_message_queue_Seize+0xf0>
RTEMS_INLINE_ROUTINE void _Thread_queue_Enter_critical_section ( Thread_queue_Control *the_thread_queue ) { the_thread_queue->sync_state = THREAD_BLOCKING_OPERATION_NOTHING_HAPPENED;
800d858: 34 03 00 01 mvi r3,1 800d85c: 59 63 00 30 sw (r11+48),r3
_Thread_queue_Enter_critical_section( &the_message_queue->Wait_queue ); executing->Wait.queue = &the_message_queue->Wait_queue; executing->Wait.id = id; executing->Wait.return_argument_second.mutable_object = buffer; executing->Wait.return_argument = size_p;
800d860: 58 e4 00 28 sw (r7+40),r4
return; } _Thread_queue_Enter_critical_section( &the_message_queue->Wait_queue ); executing->Wait.queue = &the_message_queue->Wait_queue; executing->Wait.id = id;
800d864: 58 e2 00 20 sw (r7+32),r2
executing->Wait.return_argument_second.mutable_object = buffer;
800d868: 58 e1 00 2c sw (r7+44),r1
executing->Wait.return_code = CORE_MESSAGE_QUEUE_STATUS_UNSATISFIED_NOWAIT; return; } _Thread_queue_Enter_critical_section( &the_message_queue->Wait_queue ); executing->Wait.queue = &the_message_queue->Wait_queue;
800d86c: 58 eb 00 44 sw (r7+68),r11
executing->Wait.id = id; executing->Wait.return_argument_second.mutable_object = buffer; executing->Wait.return_argument = size_p; /* Wait.count will be filled in with the message priority */ _ISR_Enable( level );
800d870: d0 08 00 00 wcsr IE,r8
_Thread_queue_Enqueue( &the_message_queue->Wait_queue, timeout );
800d874: 78 03 08 01 mvhi r3,0x801 800d878: b9 60 08 00 mv r1,r11 800d87c: b8 c0 10 00 mv r2,r6 800d880: 38 63 00 bc ori r3,r3,0xbc 800d884: f8 00 09 0e calli 800fcbc <_Thread_queue_Enqueue_with_handler>
}
800d888: 2b 9d 00 04 lw ra,(sp+4) 800d88c: 2b 8b 00 0c lw r11,(sp+12) 800d890: 2b 8c 00 08 lw r12,(sp+8) 800d894: 37 9c 00 0c addi sp,sp,12 800d898: c3 a0 00 00 ret
08002bec <_CORE_mutex_Seize>: Objects_Id _id, bool _wait, Watchdog_Interval _timeout, ISR_Level _level ) {
8002bec: 37 9c ff e8 addi sp,sp,-24 8002bf0: 5b 8b 00 14 sw (sp+20),r11 8002bf4: 5b 8c 00 10 sw (sp+16),r12 8002bf8: 5b 8d 00 0c sw (sp+12),r13 8002bfc: 5b 8e 00 08 sw (sp+8),r14 8002c00: 5b 9d 00 04 sw (sp+4),ra
_CORE_mutex_Seize_body( _the_mutex, _id, _wait, _timeout, _level );
8002c04: 78 06 08 01 mvhi r6,0x801 8002c08: 38 c6 c8 24 ori r6,r6,0xc824 8002c0c: 28 c6 00 00 lw r6,(r6+0)
Objects_Id _id, bool _wait, Watchdog_Interval _timeout, ISR_Level _level ) {
8002c10: 5b 85 00 18 sw (sp+24),r5 8002c14: b8 20 58 00 mv r11,r1 8002c18: b8 40 70 00 mv r14,r2 8002c1c: b8 80 68 00 mv r13,r4 8002c20: 20 6c 00 ff andi r12,r3,0xff
_CORE_mutex_Seize_body( _the_mutex, _id, _wait, _timeout, _level ); 8002c24: 44 c0 00 0b be r6,r0,8002c50 <_CORE_mutex_Seize+0x64>
8002c28: 45 80 00 0a be r12,r0,8002c50 <_CORE_mutex_Seize+0x64> <== NEVER TAKEN
8002c2c: 78 01 08 01 mvhi r1,0x801 8002c30: 38 21 c9 c0 ori r1,r1,0xc9c0 8002c34: 28 21 00 00 lw r1,(r1+0) 8002c38: 34 02 00 01 mvi r2,1
8002c3c: 50 41 00 05 bgeu r2,r1,8002c50 <_CORE_mutex_Seize+0x64>
8002c40: 34 01 00 00 mvi r1,0 8002c44: b8 20 10 00 mv r2,r1 8002c48: 34 03 00 13 mvi r3,19 8002c4c: f8 00 01 d4 calli 800339c <_Internal_error_Occurred> 8002c50: b9 60 08 00 mv r1,r11 8002c54: 37 82 00 18 addi r2,sp,24 8002c58: f8 00 15 30 calli 8008118 <_CORE_mutex_Seize_interrupt_trylock>
8002c5c: 44 20 00 19 be r1,r0,8002cc0 <_CORE_mutex_Seize+0xd4>
8002c60: 78 01 08 01 mvhi r1,0x801 8002c64: 38 21 c8 e0 ori r1,r1,0xc8e0
8002c68: 5d 80 00 07 bne r12,r0,8002c84 <_CORE_mutex_Seize+0x98>
8002c6c: 2b 82 00 18 lw r2,(sp+24) 8002c70: d0 02 00 00 wcsr IE,r2 8002c74: 28 21 00 00 lw r1,(r1+0) 8002c78: 34 02 00 01 mvi r2,1 8002c7c: 58 22 00 34 sw (r1+52),r2 8002c80: e0 00 00 10 bi 8002cc0 <_CORE_mutex_Seize+0xd4> 8002c84: 28 23 00 00 lw r3,(r1+0) 8002c88: 78 01 08 01 mvhi r1,0x801 8002c8c: 38 21 c8 24 ori r1,r1,0xc824 8002c90: 58 6e 00 20 sw (r3+32),r14 8002c94: 28 22 00 00 lw r2,(r1+0)
RTEMS_INLINE_ROUTINE void _Thread_queue_Enter_critical_section ( Thread_queue_Control *the_thread_queue ) { the_thread_queue->sync_state = THREAD_BLOCKING_OPERATION_NOTHING_HAPPENED;
8002c98: 34 04 00 01 mvi r4,1 8002c9c: 59 64 00 30 sw (r11+48),r4 8002ca0: b4 44 10 00 add r2,r2,r4 8002ca4: 58 22 00 00 sw (r1+0),r2 8002ca8: 58 6b 00 44 sw (r3+68),r11 8002cac: 2b 81 00 18 lw r1,(sp+24) 8002cb0: d0 01 00 00 wcsr IE,r1 8002cb4: b9 60 08 00 mv r1,r11 8002cb8: b9 a0 10 00 mv r2,r13 8002cbc: fb ff ff ab calli 8002b68 <_CORE_mutex_Seize_interrupt_blocking>
}
8002cc0: 2b 9d 00 04 lw ra,(sp+4) 8002cc4: 2b 8b 00 14 lw r11,(sp+20) 8002cc8: 2b 8c 00 10 lw r12,(sp+16) 8002ccc: 2b 8d 00 0c lw r13,(sp+12) 8002cd0: 2b 8e 00 08 lw r14,(sp+8) 8002cd4: 37 9c 00 18 addi sp,sp,24 8002cd8: c3 a0 00 00 ret
08008118 <_CORE_mutex_Seize_interrupt_trylock>: #if defined(__RTEMS_DO_NOT_INLINE_CORE_MUTEX_SEIZE__) int _CORE_mutex_Seize_interrupt_trylock( CORE_mutex_Control *the_mutex, ISR_Level *level_p ) {
8008118: 37 9c ff fc addi sp,sp,-4 800811c: 5b 9d 00 04 sw (sp+4),ra
{ Thread_Control *executing; /* disabled when you get here */ executing = _Thread_Executing;
8008120: 78 03 08 01 mvhi r3,0x801 8008124: 38 63 c8 e0 ori r3,r3,0xc8e0 8008128: 28 63 00 00 lw r3,(r3+0)
executing->Wait.return_code = CORE_MUTEX_STATUS_SUCCESSFUL;
800812c: 34 04 00 00 mvi r4,0 8008130: 58 64 00 34 sw (r3+52),r4
if ( !_CORE_mutex_Is_locked( the_mutex ) ) {
8008134: 28 25 00 50 lw r5,(r1+80)
8008138: 44 a4 00 34 be r5,r4,8008208 <_CORE_mutex_Seize_interrupt_trylock+0xf0> the_mutex->lock = CORE_MUTEX_LOCKED;
800813c: 58 24 00 50 sw (r1+80),r4
the_mutex->holder = executing; the_mutex->holder_id = executing->Object.id;
8008140: 28 65 00 08 lw r5,(r3+8)
*/ RTEMS_INLINE_ROUTINE bool _CORE_mutex_Is_inherit_priority( CORE_mutex_Attributes *the_attribute ) { return the_attribute->discipline == CORE_MUTEX_DISCIPLINES_PRIORITY_INHERIT;
8008144: 28 24 00 48 lw r4,(r1+72)
executing = _Thread_Executing; executing->Wait.return_code = CORE_MUTEX_STATUS_SUCCESSFUL; if ( !_CORE_mutex_Is_locked( the_mutex ) ) { the_mutex->lock = CORE_MUTEX_LOCKED; the_mutex->holder = executing;
8008148: 58 23 00 5c sw (r1+92),r3
the_mutex->holder_id = executing->Object.id;
800814c: 58 25 00 60 sw (r1+96),r5
the_mutex->nest_count = 1;
8008150: 34 05 00 01 mvi r5,1 8008154: 58 25 00 54 sw (r1+84),r5
if ( _CORE_mutex_Is_inherit_priority( &the_mutex->Attributes ) ||
8008158: 34 05 00 02 mvi r5,2
800815c: 44 85 00 03 be r4,r5,8008168 <_CORE_mutex_Seize_interrupt_trylock+0x50>
8008160: 34 05 00 03 mvi r5,3
8008164: 5c 85 00 06 bne r4,r5,800817c <_CORE_mutex_Seize_interrupt_trylock+0x64> _Chain_Prepend_unprotected( &executing->lock_mutex, &the_mutex->queue.lock_queue ); the_mutex->queue.priority_before = executing->current_priority; #endif executing->resource_count++;
8008168: 28 65 00 1c lw r5,(r3+28) 800816c: 34 a5 00 01 addi r5,r5,1 8008170: 58 65 00 1c sw (r3+28),r5
} if ( !_CORE_mutex_Is_priority_ceiling( &the_mutex->Attributes ) ) {
8008174: 34 05 00 03 mvi r5,3
8008178: 44 85 00 04 be r4,r5,8008188 <_CORE_mutex_Seize_interrupt_trylock+0x70> _ISR_Enable( *level_p );
800817c: 28 41 00 00 lw r1,(r2+0) 8008180: d0 01 00 00 wcsr IE,r1 8008184: e0 00 00 2d bi 8008238 <_CORE_mutex_Seize_interrupt_trylock+0x120>
*/ { Priority_Control ceiling; Priority_Control current; ceiling = the_mutex->Attributes.priority_ceiling;
8008188: 28 25 00 4c lw r5,(r1+76)
current = executing->current_priority;
800818c: 28 64 00 14 lw r4,(r3+20)
if ( current == ceiling ) { 8008190: 5c 85 00 04 bne r4,r5,80081a0 <_CORE_mutex_Seize_interrupt_trylock+0x88> _ISR_Enable( *level_p );
8008194: 28 41 00 00 lw r1,(r2+0) 8008198: d0 01 00 00 wcsr IE,r1 800819c: e0 00 00 27 bi 8008238 <_CORE_mutex_Seize_interrupt_trylock+0x120>
return 0; } if ( current > ceiling ) { 80081a0: 50 a4 00 0e bgeu r5,r4,80081d8 <_CORE_mutex_Seize_interrupt_trylock+0xc0> rtems_fatal_error_occurred( 99 ); } } #endif _Thread_Dispatch_disable_level += 1;
80081a4: 78 03 08 01 mvhi r3,0x801 80081a8: 38 63 c8 24 ori r3,r3,0xc824 80081ac: 28 64 00 00 lw r4,(r3+0) 80081b0: 34 84 00 01 addi r4,r4,1 80081b4: 58 64 00 00 sw (r3+0),r4
_Thread_Disable_dispatch(); _ISR_Enable( *level_p );
80081b8: 28 42 00 00 lw r2,(r2+0) 80081bc: d0 02 00 00 wcsr IE,r2
_Thread_Change_priority(
80081c0: 28 22 00 4c lw r2,(r1+76) 80081c4: 28 21 00 5c lw r1,(r1+92) 80081c8: 34 03 00 00 mvi r3,0 80081cc: fb ff ee c2 calli 8003cd4 <_Thread_Change_priority>
the_mutex->holder, the_mutex->Attributes.priority_ceiling, false ); _Thread_Enable_dispatch();
80081d0: fb ff f0 32 calli 8004298 <_Thread_Enable_dispatch> 80081d4: e0 00 00 19 bi 8008238 <_CORE_mutex_Seize_interrupt_trylock+0x120>
return 0; } /* if ( current < ceiling ) */ { executing->Wait.return_code = CORE_MUTEX_STATUS_CEILING_VIOLATED;
80081d8: 34 04 00 06 mvi r4,6 80081dc: 58 64 00 34 sw (r3+52),r4
the_mutex->lock = CORE_MUTEX_UNLOCKED; the_mutex->nest_count = 0; /* undo locking above */
80081e0: 34 04 00 00 mvi r4,0 80081e4: 58 24 00 54 sw (r1+84),r4
_Thread_Enable_dispatch(); return 0; } /* if ( current < ceiling ) */ { executing->Wait.return_code = CORE_MUTEX_STATUS_CEILING_VIOLATED; the_mutex->lock = CORE_MUTEX_UNLOCKED;
80081e8: 34 04 00 01 mvi r4,1 80081ec: 58 24 00 50 sw (r1+80),r4
the_mutex->nest_count = 0; /* undo locking above */ executing->resource_count--; /* undo locking above */
80081f0: 28 61 00 1c lw r1,(r3+28) 80081f4: 34 21 ff ff addi r1,r1,-1 80081f8: 58 61 00 1c sw (r3+28),r1
_ISR_Enable( *level_p );
80081fc: 28 41 00 00 lw r1,(r2+0) 8008200: d0 01 00 00 wcsr IE,r1 8008204: e0 00 00 0d bi 8008238 <_CORE_mutex_Seize_interrupt_trylock+0x120>
/* * At this point, we know the mutex was not available. If this thread * is the thread that has locked the mutex, let's see if we are allowed * to nest access. */ if ( _Thread_Is_executing( the_mutex->holder ) ) {
8008208: 28 24 00 5c lw r4,(r1+92)
800820c: 5c 83 00 12 bne r4,r3,8008254 <_CORE_mutex_Seize_interrupt_trylock+0x13c> switch ( the_mutex->Attributes.lock_nesting_behavior ) {
8008210: 28 23 00 40 lw r3,(r1+64)
8008214: 44 60 00 04 be r3,r0,8008224 <_CORE_mutex_Seize_interrupt_trylock+0x10c>
8008218: 34 01 00 01 mvi r1,1
800821c: 5c 61 00 0e bne r3,r1,8008254 <_CORE_mutex_Seize_interrupt_trylock+0x13c><== ALWAYS TAKEN
8008220: e0 00 00 08 bi 8008240 <_CORE_mutex_Seize_interrupt_trylock+0x128><== NOT EXECUTED
case CORE_MUTEX_NESTING_ACQUIRES: the_mutex->nest_count++;
8008224: 28 23 00 54 lw r3,(r1+84) 8008228: 34 63 00 01 addi r3,r3,1 800822c: 58 23 00 54 sw (r1+84),r3
_ISR_Enable( *level_p );
8008230: 28 41 00 00 lw r1,(r2+0) 8008234: d0 01 00 00 wcsr IE,r1 8008238: 34 01 00 00 mvi r1,0 800823c: e0 00 00 07 bi 8008258 <_CORE_mutex_Seize_interrupt_trylock+0x140>
return 0; case CORE_MUTEX_NESTING_IS_ERROR: executing->Wait.return_code = CORE_MUTEX_STATUS_NESTING_NOT_ALLOWED;
8008240: 34 01 00 02 mvi r1,2 <== NOT EXECUTED 8008244: 58 81 00 34 sw (r4+52),r1 <== NOT EXECUTED
_ISR_Enable( *level_p );
8008248: 28 41 00 00 lw r1,(r2+0) <== NOT EXECUTED 800824c: d0 01 00 00 wcsr IE,r1 <== NOT EXECUTED 8008250: e3 ff ff fa bi 8008238 <_CORE_mutex_Seize_interrupt_trylock+0x120><== NOT EXECUTED
8008254: 34 01 00 01 mvi r1,1
return _CORE_mutex_Seize_interrupt_trylock_body( the_mutex, level_p ); }
8008258: 2b 9d 00 04 lw ra,(sp+4) 800825c: 37 9c 00 04 addi sp,sp,4 8008260: c3 a0 00 00 ret
0800827c <_CORE_semaphore_Surrender>: CORE_semaphore_Status _CORE_semaphore_Surrender( CORE_semaphore_Control *the_semaphore, Objects_Id id, CORE_semaphore_API_mp_support_callout api_semaphore_mp_support ) {
800827c: 37 9c ff f8 addi sp,sp,-8 8008280: 5b 8b 00 08 sw (sp+8),r11 8008284: 5b 9d 00 04 sw (sp+4),ra 8008288: b8 20 58 00 mv r11,r1
ISR_Level level; CORE_semaphore_Status status; status = CORE_SEMAPHORE_STATUS_SUCCESSFUL; if ( (the_thread = _Thread_queue_Dequeue(&the_semaphore->Wait_queue)) ) {
800828c: fb ff f1 12 calli 80046d4 <_Thread_queue_Dequeue> 8008290: 34 02 00 00 mvi r2,0
8008294: 5c 22 00 0e bne r1,r2,80082cc <_CORE_semaphore_Surrender+0x50> if ( !_Objects_Is_local_id( the_thread->Object.id ) ) (*api_semaphore_mp_support) ( the_thread, id ); #endif } else { _ISR_Disable( level );
8008298: 90 00 08 00 rcsr r1,IE 800829c: 34 02 ff fe mvi r2,-2 80082a0: a0 22 10 00 and r2,r1,r2 80082a4: d0 02 00 00 wcsr IE,r2
if ( the_semaphore->count < the_semaphore->Attributes.maximum_count )
80082a8: 29 62 00 48 lw r2,(r11+72) 80082ac: 29 63 00 40 lw r3,(r11+64)
80082b0: 54 62 00 03 bgu r3,r2,80082bc <_CORE_semaphore_Surrender+0x40><== ALWAYS TAKEN
80082b4: 34 02 00 04 mvi r2,4 <== NOT EXECUTED 80082b8: e0 00 00 04 bi 80082c8 <_CORE_semaphore_Surrender+0x4c> <== NOT EXECUTED
the_semaphore->count += 1;
80082bc: 34 42 00 01 addi r2,r2,1 80082c0: 59 62 00 48 sw (r11+72),r2 80082c4: 34 02 00 00 mvi r2,0
else status = CORE_SEMAPHORE_MAXIMUM_COUNT_EXCEEDED; _ISR_Enable( level );
80082c8: d0 01 00 00 wcsr IE,r1
} return status; }
80082cc: b8 40 08 00 mv r1,r2 80082d0: 2b 9d 00 04 lw ra,(sp+4) 80082d4: 2b 8b 00 08 lw r11,(sp+8) 80082d8: 37 9c 00 08 addi sp,sp,8 80082dc: c3 a0 00 00 ret
0800d670 <_Event_Seize>: rtems_event_set event_in, rtems_option option_set, rtems_interval ticks, rtems_event_set *event_out ) {
800d670: 37 9c ff f8 addi sp,sp,-8 800d674: 5b 8b 00 08 sw (sp+8),r11 800d678: 5b 9d 00 04 sw (sp+4),ra
rtems_event_set pending_events; ISR_Level level; RTEMS_API_Control *api; Thread_blocking_operation_States sync_state; executing = _Thread_Executing;
800d67c: 78 05 08 02 mvhi r5,0x802 800d680: 38 a5 39 70 ori r5,r5,0x3970 800d684: 28 ab 00 00 lw r11,(r5+0)
executing->Wait.return_code = RTEMS_SUCCESSFUL;
800d688: 34 05 00 00 mvi r5,0 800d68c: 59 65 00 34 sw (r11+52),r5
api = executing->API_Extensions[ THREAD_API_RTEMS ];
800d690: 29 67 01 24 lw r7,(r11+292)
_ISR_Disable( level );
800d694: 90 00 30 00 rcsr r6,IE 800d698: 34 05 ff fe mvi r5,-2 800d69c: a0 c5 28 00 and r5,r6,r5 800d6a0: d0 05 00 00 wcsr IE,r5
pending_events = api->pending_events;
800d6a4: 28 e8 00 00 lw r8,(r7+0)
RTEMS_INLINE_ROUTINE rtems_event_set _Event_sets_Get( rtems_event_set the_event_set, rtems_event_set the_event_condition ) { return ( the_event_set & the_event_condition );
800d6a8: a0 28 28 00 and r5,r1,r8
seized_events = _Event_sets_Get( pending_events, event_in ); if ( !_Event_sets_Is_empty( seized_events ) && 800d6ac: 44 a0 00 09 be r5,r0,800d6d0 <_Event_Seize+0x60> 800d6b0: 44 a1 00 03 be r5,r1,800d6bc <_Event_Seize+0x4c>
800d6b4: 20 49 00 02 andi r9,r2,0x2
800d6b8: 45 20 00 06 be r9,r0,800d6d0 <_Event_Seize+0x60> <== NEVER TAKEN
(seized_events == event_in || _Options_Is_any( option_set )) ) { api->pending_events =
800d6bc: a4 a0 08 00 not r1,r5 800d6c0: a0 28 40 00 and r8,r1,r8 800d6c4: 58 e8 00 00 sw (r7+0),r8
_Event_sets_Clear( pending_events, seized_events ); _ISR_Enable( level );
800d6c8: d0 06 00 00 wcsr IE,r6 800d6cc: e0 00 00 06 bi 800d6e4 <_Event_Seize+0x74>
*event_out = seized_events; return; } if ( _Options_Is_no_wait( option_set ) ) {
800d6d0: 20 47 00 01 andi r7,r2,0x1
800d6d4: 44 e0 00 06 be r7,r0,800d6ec <_Event_Seize+0x7c> _ISR_Enable( level );
800d6d8: d0 06 00 00 wcsr IE,r6
executing->Wait.return_code = RTEMS_UNSATISFIED;
800d6dc: 34 01 00 0d mvi r1,13 800d6e0: 59 61 00 34 sw (r11+52),r1
*event_out = seized_events;
800d6e4: 58 85 00 00 sw (r4+0),r5
return;
800d6e8: e0 00 00 29 bi 800d78c <_Event_Seize+0x11c>
*/ executing->Wait.option = (uint32_t) option_set; executing->Wait.count = (uint32_t) event_in; executing->Wait.return_argument = event_out; _Event_Sync_state = THREAD_BLOCKING_OPERATION_NOTHING_HAPPENED;
800d6ec: 78 05 08 02 mvhi r5,0x802 800d6f0: 38 a5 3b b0 ori r5,r5,0x3bb0 800d6f4: 34 07 00 01 mvi r7,1 800d6f8: 58 a7 00 00 sw (r5+0),r7
* set properly when we are marked as in the event critical section. * * NOTE: Since interrupts are disabled, this isn't that much of an * issue but better safe than sorry. */ executing->Wait.option = (uint32_t) option_set;
800d6fc: 59 62 00 30 sw (r11+48),r2
executing->Wait.count = (uint32_t) event_in;
800d700: 59 61 00 24 sw (r11+36),r1
executing->Wait.return_argument = event_out;
800d704: 59 64 00 28 sw (r11+40),r4
_Event_Sync_state = THREAD_BLOCKING_OPERATION_NOTHING_HAPPENED; _ISR_Enable( level );
800d708: d0 06 00 00 wcsr IE,r6
if ( ticks ) {
800d70c: 34 04 00 00 mvi r4,0
800d710: 44 64 00 0d be r3,r4,800d744 <_Event_Seize+0xd4> _Watchdog_Initialize(
800d714: 29 65 00 08 lw r5,(r11+8)
Objects_Id id, void *user_data ) { the_watchdog->state = WATCHDOG_INACTIVE; the_watchdog->routine = routine;
800d718: 78 02 08 00 mvhi r2,0x800 800d71c: 38 42 d9 58 ori r2,r2,0xd958
) { the_watchdog->initial = units; _Watchdog_Insert( &_Watchdog_Ticks_chain, the_watchdog );
800d720: 78 01 08 02 mvhi r1,0x802
Objects_Id id, void *user_data ) { the_watchdog->state = WATCHDOG_INACTIVE; the_watchdog->routine = routine;
800d724: 59 62 00 64 sw (r11+100),r2
the_watchdog->id = id;
800d728: 59 65 00 68 sw (r11+104),r5
the_watchdog->user_data = user_data;
800d72c: 59 64 00 6c sw (r11+108),r4
Watchdog_Control *the_watchdog, Watchdog_Interval units ) { the_watchdog->initial = units;
800d730: 59 63 00 54 sw (r11+84),r3
Watchdog_Service_routine_entry routine, Objects_Id id, void *user_data ) { the_watchdog->state = WATCHDOG_INACTIVE;
800d734: 59 64 00 50 sw (r11+80),r4
) { the_watchdog->initial = units; _Watchdog_Insert( &_Watchdog_Ticks_chain, the_watchdog );
800d738: 38 21 39 90 ori r1,r1,0x3990 800d73c: 35 62 00 48 addi r2,r11,72 800d740: fb ff e8 91 calli 8007984 <_Watchdog_Insert>
NULL ); _Watchdog_Insert_ticks( &executing->Timer, ticks ); } _Thread_Set_state( executing, STATES_WAITING_FOR_EVENT );
800d744: b9 60 08 00 mv r1,r11 800d748: 34 02 01 00 mvi r2,256 800d74c: fb ff e6 9d calli 80071c0 <_Thread_Set_state>
_ISR_Disable( level );
800d750: 90 00 18 00 rcsr r3,IE 800d754: 34 01 ff fe mvi r1,-2 800d758: a0 61 08 00 and r1,r3,r1 800d75c: d0 01 00 00 wcsr IE,r1
sync_state = _Event_Sync_state;
800d760: 78 02 08 02 mvhi r2,0x802 800d764: 38 42 3b b0 ori r2,r2,0x3bb0 800d768: 28 41 00 00 lw r1,(r2+0)
_Event_Sync_state = THREAD_BLOCKING_OPERATION_SYNCHRONIZED;
800d76c: 34 04 00 00 mvi r4,0 800d770: 58 44 00 00 sw (r2+0),r4
if ( sync_state == THREAD_BLOCKING_OPERATION_NOTHING_HAPPENED ) {
800d774: 34 02 00 01 mvi r2,1
800d778: 5c 22 00 03 bne r1,r2,800d784 <_Event_Seize+0x114> _ISR_Enable( level );
800d77c: d0 03 00 00 wcsr IE,r3
return;
800d780: e0 00 00 03 bi 800d78c <_Event_Seize+0x11c>
* An interrupt completed the thread's blocking request. * The blocking thread was satisfied by an ISR or timed out. * * WARNING! Returning with interrupts disabled! */ _Thread_blocking_operation_Cancel( sync_state, executing, level );
800d784: b9 60 10 00 mv r2,r11 800d788: f8 00 05 b5 calli 800ee5c <_Thread_blocking_operation_Cancel>
}
800d78c: 2b 9d 00 04 lw ra,(sp+4) 800d790: 2b 8b 00 08 lw r11,(sp+8) 800d794: 37 9c 00 08 addi sp,sp,8 800d798: c3 a0 00 00 ret
0800d804 <_Event_Surrender>: */ void _Event_Surrender( Thread_Control *the_thread ) {
800d804: 37 9c ff f8 addi sp,sp,-8 800d808: 5b 8b 00 08 sw (sp+8),r11 800d80c: 5b 9d 00 04 sw (sp+4),ra
rtems_event_set event_condition; rtems_event_set seized_events; rtems_option option_set; RTEMS_API_Control *api; api = the_thread->API_Extensions[ THREAD_API_RTEMS ];
800d810: 28 24 01 24 lw r4,(r1+292)
option_set = (rtems_option) the_thread->Wait.option;
800d814: 28 28 00 30 lw r8,(r1+48)
*/ void _Event_Surrender( Thread_Control *the_thread ) {
800d818: b8 20 58 00 mv r11,r1
api = the_thread->API_Extensions[ THREAD_API_RTEMS ]; option_set = (rtems_option) the_thread->Wait.option; _ISR_Disable( level );
800d81c: 90 00 08 00 rcsr r1,IE 800d820: 34 07 ff fe mvi r7,-2 800d824: a0 27 38 00 and r7,r1,r7 800d828: d0 07 00 00 wcsr IE,r7
pending_events = api->pending_events;
800d82c: 28 85 00 00 lw r5,(r4+0)
event_condition = (rtems_event_set) the_thread->Wait.count;
800d830: 29 66 00 24 lw r6,(r11+36)
RTEMS_INLINE_ROUTINE rtems_event_set _Event_sets_Get( rtems_event_set the_event_set, rtems_event_set the_event_condition ) { return ( the_event_set & the_event_condition );
800d834: a0 c5 10 00 and r2,r6,r5
seized_events = _Event_sets_Get( pending_events, event_condition ); /* * No events were seized in this operation */ if ( _Event_sets_Is_empty( seized_events ) ) { 800d838: 5c 40 00 03 bne r2,r0,800d844 <_Event_Surrender+0x40> _ISR_Enable( level );
800d83c: d0 01 00 00 wcsr IE,r1
return;
800d840: e0 00 00 42 bi 800d948 <_Event_Surrender+0x144>
/* * If we are in an ISR and sending to the current thread, then * we have a critical section issue to deal with. */ if ( _ISR_Is_in_progress() &&
800d844: 78 03 08 02 mvhi r3,0x802 800d848: 38 63 39 4c ori r3,r3,0x394c 800d84c: 28 63 00 00 lw r3,(r3+0)
800d850: 44 60 00 1d be r3,r0,800d8c4 <_Event_Surrender+0xc0>
800d854: 78 03 08 02 mvhi r3,0x802 800d858: 38 63 39 70 ori r3,r3,0x3970 800d85c: 28 63 00 00 lw r3,(r3+0)
800d860: 5d 63 00 19 bne r11,r3,800d8c4 <_Event_Surrender+0xc0> _Thread_Is_executing( the_thread ) && ((_Event_Sync_state == THREAD_BLOCKING_OPERATION_TIMEOUT) ||
800d864: 78 03 08 02 mvhi r3,0x802 800d868: 38 63 3b b0 ori r3,r3,0x3bb0 800d86c: 28 6a 00 00 lw r10,(r3+0)
/* * If we are in an ISR and sending to the current thread, then * we have a critical section issue to deal with. */ if ( _ISR_Is_in_progress() &&
800d870: 34 09 00 02 mvi r9,2
800d874: 45 49 00 04 be r10,r9,800d884 <_Event_Surrender+0x80> <== NEVER TAKEN
_Thread_Is_executing( the_thread ) && ((_Event_Sync_state == THREAD_BLOCKING_OPERATION_TIMEOUT) || (_Event_Sync_state == THREAD_BLOCKING_OPERATION_NOTHING_HAPPENED)) ) {
800d878: 28 69 00 00 lw r9,(r3+0)
/* * If we are in an ISR and sending to the current thread, then * we have a critical section issue to deal with. */ if ( _ISR_Is_in_progress() &&
800d87c: 34 03 00 01 mvi r3,1
800d880: 5d 23 00 11 bne r9,r3,800d8c4 <_Event_Surrender+0xc0> <== NEVER TAKEN
_Thread_Is_executing( the_thread ) && ((_Event_Sync_state == THREAD_BLOCKING_OPERATION_TIMEOUT) || (_Event_Sync_state == THREAD_BLOCKING_OPERATION_NOTHING_HAPPENED)) ) { if ( seized_events == event_condition || _Options_Is_any(option_set) ) {
800d884: 44 46 00 03 be r2,r6,800d890 <_Event_Surrender+0x8c> <== ALWAYS TAKEN
800d888: 21 08 00 02 andi r8,r8,0x2 <== NOT EXECUTED 800d88c: 45 00 00 0c be r8,r0,800d8bc <_Event_Surrender+0xb8> <== NOT EXECUTED
api->pending_events = _Event_sets_Clear( pending_events,seized_events );
800d890: a4 40 18 00 not r3,r2 800d894: a0 65 28 00 and r5,r3,r5
the_thread->Wait.count = 0; *(rtems_event_set *)the_thread->Wait.return_argument = seized_events;
800d898: 29 66 00 28 lw r6,(r11+40)
if ( _ISR_Is_in_progress() && _Thread_Is_executing( the_thread ) && ((_Event_Sync_state == THREAD_BLOCKING_OPERATION_TIMEOUT) || (_Event_Sync_state == THREAD_BLOCKING_OPERATION_NOTHING_HAPPENED)) ) { if ( seized_events == event_condition || _Options_Is_any(option_set) ) { api->pending_events = _Event_sets_Clear( pending_events,seized_events );
800d89c: 58 85 00 00 sw (r4+0),r5
the_thread->Wait.count = 0;
800d8a0: 34 04 00 00 mvi r4,0
*(rtems_event_set *)the_thread->Wait.return_argument = seized_events; _Event_Sync_state = THREAD_BLOCKING_OPERATION_SATISFIED;
800d8a4: 78 03 08 02 mvhi r3,0x802
_Thread_Is_executing( the_thread ) && ((_Event_Sync_state == THREAD_BLOCKING_OPERATION_TIMEOUT) || (_Event_Sync_state == THREAD_BLOCKING_OPERATION_NOTHING_HAPPENED)) ) { if ( seized_events == event_condition || _Options_Is_any(option_set) ) { api->pending_events = _Event_sets_Clear( pending_events,seized_events ); the_thread->Wait.count = 0;
800d8a8: 59 64 00 24 sw (r11+36),r4
*(rtems_event_set *)the_thread->Wait.return_argument = seized_events; _Event_Sync_state = THREAD_BLOCKING_OPERATION_SATISFIED;
800d8ac: 38 63 3b b0 ori r3,r3,0x3bb0
((_Event_Sync_state == THREAD_BLOCKING_OPERATION_TIMEOUT) || (_Event_Sync_state == THREAD_BLOCKING_OPERATION_NOTHING_HAPPENED)) ) { if ( seized_events == event_condition || _Options_Is_any(option_set) ) { api->pending_events = _Event_sets_Clear( pending_events,seized_events ); the_thread->Wait.count = 0; *(rtems_event_set *)the_thread->Wait.return_argument = seized_events;
800d8b0: 58 c2 00 00 sw (r6+0),r2
_Event_Sync_state = THREAD_BLOCKING_OPERATION_SATISFIED;
800d8b4: 34 02 00 03 mvi r2,3 800d8b8: 58 62 00 00 sw (r3+0),r2
} _ISR_Enable( level );
800d8bc: d0 01 00 00 wcsr IE,r1
return;
800d8c0: e0 00 00 22 bi 800d948 <_Event_Surrender+0x144>
} /* * Otherwise, this is a normal send to another thread */ if ( _States_Is_waiting_for_event( the_thread->current_state ) ) {
800d8c4: 29 63 00 10 lw r3,(r11+16) 800d8c8: 20 63 01 00 andi r3,r3,0x100
800d8cc: 44 60 00 1e be r3,r0,800d944 <_Event_Surrender+0x140> <== NEVER TAKEN
if ( seized_events == event_condition || _Options_Is_any( option_set ) ) { 800d8d0: 44 46 00 03 be r2,r6,800d8dc <_Event_Surrender+0xd8>
800d8d4: 21 08 00 02 andi r8,r8,0x2
800d8d8: 45 00 00 1b be r8,r0,800d944 <_Event_Surrender+0x140> <== NEVER TAKEN
api->pending_events = _Event_sets_Clear( pending_events, seized_events );
800d8dc: a4 40 18 00 not r3,r2 800d8e0: a0 65 28 00 and r5,r3,r5
the_thread->Wait.count = 0; *(rtems_event_set *)the_thread->Wait.return_argument = seized_events;
800d8e4: 29 66 00 28 lw r6,(r11+40)
/* * Otherwise, this is a normal send to another thread */ if ( _States_Is_waiting_for_event( the_thread->current_state ) ) { if ( seized_events == event_condition || _Options_Is_any( option_set ) ) { api->pending_events = _Event_sets_Clear( pending_events, seized_events );
800d8e8: 58 85 00 00 sw (r4+0),r5
the_thread->Wait.count = 0;
800d8ec: 34 03 00 00 mvi r3,0 800d8f0: 59 63 00 24 sw (r11+36),r3
*(rtems_event_set *)the_thread->Wait.return_argument = seized_events;
800d8f4: 58 c2 00 00 sw (r6+0),r2
_ISR_Flash( level );
800d8f8: d0 01 00 00 wcsr IE,r1 800d8fc: d0 07 00 00 wcsr IE,r7
if ( !_Watchdog_Is_active( &the_thread->Timer ) ) {
800d900: 29 63 00 50 lw r3,(r11+80) 800d904: 34 02 00 02 mvi r2,2
800d908: 44 62 00 05 be r3,r2,800d91c <_Event_Surrender+0x118> _ISR_Enable( level );
800d90c: d0 01 00 00 wcsr IE,r1
RTEMS_INLINE_ROUTINE void _Thread_Unblock ( Thread_Control *the_thread ) { _Thread_Clear_state( the_thread, STATES_BLOCKED );
800d910: 78 02 10 03 mvhi r2,0x1003 800d914: b9 60 08 00 mv r1,r11 800d918: e0 00 00 08 bi 800d938 <_Event_Surrender+0x134>
RTEMS_INLINE_ROUTINE void _Watchdog_Deactivate( Watchdog_Control *the_watchdog ) { the_watchdog->state = WATCHDOG_REMOVE_IT;
800d91c: 34 02 00 03 mvi r2,3 800d920: 59 62 00 50 sw (r11+80),r2
_Thread_Unblock( the_thread ); } else { _Watchdog_Deactivate( &the_thread->Timer ); _ISR_Enable( level );
800d924: d0 01 00 00 wcsr IE,r1
(void) _Watchdog_Remove( &the_thread->Timer );
800d928: 35 61 00 48 addi r1,r11,72 800d92c: fb ff e8 75 calli 8007b00 <_Watchdog_Remove> 800d930: b9 60 08 00 mv r1,r11 800d934: 78 02 10 03 mvhi r2,0x1003 800d938: 38 42 ff f8 ori r2,r2,0xfff8 800d93c: f8 00 05 60 calli 800eebc <_Thread_Clear_state> 800d940: e0 00 00 02 bi 800d948 <_Event_Surrender+0x144>
_Thread_Unblock( the_thread ); } return; } } _ISR_Enable( level );
800d944: d0 01 00 00 wcsr IE,r1
}
800d948: 2b 9d 00 04 lw ra,(sp+4) 800d94c: 2b 8b 00 08 lw r11,(sp+8) 800d950: 37 9c 00 08 addi sp,sp,8 800d954: c3 a0 00 00 ret
0800d958 <_Event_Timeout>: void _Event_Timeout( Objects_Id id, void *ignored ) {
800d958: 37 9c ff f8 addi sp,sp,-8 800d95c: 5b 9d 00 04 sw (sp+4),ra
Thread_Control *the_thread; Objects_Locations location; ISR_Level level; the_thread = _Thread_Get( id, &location );
800d960: 37 82 00 08 addi r2,sp,8 800d964: fb ff e3 7b calli 8006750 <_Thread_Get>
switch ( location ) {
800d968: 2b 82 00 08 lw r2,(sp+8)
800d96c: 5c 40 00 1d bne r2,r0,800d9e0 <_Event_Timeout+0x88> <== NEVER TAKEN
* * If it is not satisfied, then it is "nothing happened" and * this is the "timeout" transition. After a request is satisfied, * a timeout is not allowed to occur. */ _ISR_Disable( level );
800d970: 90 00 18 00 rcsr r3,IE 800d974: 34 02 ff fe mvi r2,-2 800d978: a0 62 10 00 and r2,r3,r2 800d97c: d0 02 00 00 wcsr IE,r2
return; } #endif the_thread->Wait.count = 0; if ( _Thread_Is_executing( the_thread ) ) {
800d980: 78 02 08 02 mvhi r2,0x802 800d984: 38 42 39 70 ori r2,r2,0x3970 800d988: 28 42 00 00 lw r2,(r2+0)
_ISR_Enable( level ); return; } #endif the_thread->Wait.count = 0;
800d98c: 34 04 00 00 mvi r4,0 800d990: 58 24 00 24 sw (r1+36),r4
if ( _Thread_Is_executing( the_thread ) ) {
800d994: 5c 22 00 08 bne r1,r2,800d9b4 <_Event_Timeout+0x5c> <== ALWAYS TAKEN
if ( _Event_Sync_state == THREAD_BLOCKING_OPERATION_NOTHING_HAPPENED )
800d998: 78 02 08 02 mvhi r2,0x802 <== NOT EXECUTED 800d99c: 38 42 3b b0 ori r2,r2,0x3bb0 <== NOT EXECUTED 800d9a0: 28 45 00 00 lw r5,(r2+0) <== NOT EXECUTED 800d9a4: 34 04 00 01 mvi r4,1 <== NOT EXECUTED 800d9a8: 5c a4 00 03 bne r5,r4,800d9b4 <_Event_Timeout+0x5c> <== NOT EXECUTED
_Event_Sync_state = THREAD_BLOCKING_OPERATION_TIMEOUT;
800d9ac: 34 04 00 02 mvi r4,2 <== NOT EXECUTED 800d9b0: 58 44 00 00 sw (r2+0),r4 <== NOT EXECUTED
} the_thread->Wait.return_code = RTEMS_TIMEOUT;
800d9b4: 34 02 00 06 mvi r2,6 800d9b8: 58 22 00 34 sw (r1+52),r2
_ISR_Enable( level );
800d9bc: d0 03 00 00 wcsr IE,r3 800d9c0: 78 02 10 03 mvhi r2,0x1003 800d9c4: 38 42 ff f8 ori r2,r2,0xfff8 800d9c8: f8 00 05 3d calli 800eebc <_Thread_Clear_state>
*/ RTEMS_INLINE_ROUTINE void _Thread_Unnest_dispatch( void ) { RTEMS_COMPILER_MEMORY_BARRIER(); _Thread_Dispatch_disable_level -= 1;
800d9cc: 78 01 08 02 mvhi r1,0x802 800d9d0: 38 21 38 b4 ori r1,r1,0x38b4 800d9d4: 28 22 00 00 lw r2,(r1+0) 800d9d8: 34 42 ff ff addi r2,r2,-1 800d9dc: 58 22 00 00 sw (r1+0),r2
case OBJECTS_REMOTE: /* impossible */ #endif case OBJECTS_ERROR: break; } }
800d9e0: 2b 9d 00 04 lw ra,(sp+4) 800d9e4: 37 9c 00 08 addi sp,sp,8 800d9e8: c3 a0 00 00 ret
08008410 <_Heap_Allocate_aligned_with_boundary>: Heap_Control *heap, uintptr_t alloc_size, uintptr_t alignment, uintptr_t boundary ) {
8008410: 37 9c ff b4 addi sp,sp,-76 8008414: 5b 8b 00 44 sw (sp+68),r11 8008418: 5b 8c 00 40 sw (sp+64),r12 800841c: 5b 8d 00 3c sw (sp+60),r13 8008420: 5b 8e 00 38 sw (sp+56),r14 8008424: 5b 8f 00 34 sw (sp+52),r15 8008428: 5b 90 00 30 sw (sp+48),r16 800842c: 5b 91 00 2c sw (sp+44),r17 8008430: 5b 92 00 28 sw (sp+40),r18 8008434: 5b 93 00 24 sw (sp+36),r19 8008438: 5b 94 00 20 sw (sp+32),r20 800843c: 5b 95 00 1c sw (sp+28),r21 8008440: 5b 96 00 18 sw (sp+24),r22 8008444: 5b 97 00 14 sw (sp+20),r23 8008448: 5b 98 00 10 sw (sp+16),r24 800844c: 5b 99 00 0c sw (sp+12),r25 8008450: 5b 9b 00 08 sw (sp+8),fp 8008454: 5b 9d 00 04 sw (sp+4),ra
Heap_Statistics *const stats = &heap->stats; Heap_Block *const free_list_tail = _Heap_Free_list_tail( heap ); Heap_Block *block = _Heap_Free_list_first( heap ); uintptr_t const block_size_floor = alloc_size + HEAP_BLOCK_HEADER_SIZE - HEAP_BLOCK_SIZE_OFFSET;
8008458: 34 55 00 04 addi r21,r2,4
Heap_Control *heap, uintptr_t alloc_size, uintptr_t alignment, uintptr_t boundary ) {
800845c: b8 40 68 00 mv r13,r2 8008460: b8 20 60 00 mv r12,r1 8008464: b8 60 78 00 mv r15,r3 8008468: b8 80 90 00 mv r18,r4
return &heap->free_list; } RTEMS_INLINE_ROUTINE Heap_Block *_Heap_Free_list_first( Heap_Control *heap ) { return _Heap_Free_list_head(heap)->next;
800846c: 28 2e 00 08 lw r14,(r1+8)
Heap_Statistics *const stats = &heap->stats; Heap_Block *const free_list_tail = _Heap_Free_list_tail( heap ); Heap_Block *block = _Heap_Free_list_first( heap ); uintptr_t const block_size_floor = alloc_size + HEAP_BLOCK_HEADER_SIZE - HEAP_BLOCK_SIZE_OFFSET; uintptr_t const page_size = heap->page_size;
8008470: 28 33 00 10 lw r19,(r1+16)
uintptr_t alloc_begin = 0; uint32_t search_count = 0; if ( block_size_floor < alloc_size ) { 8008474: 54 55 00 59 bgu r2,r21,80085d8 <_Heap_Allocate_aligned_with_boundary+0x1c8> /* Integer overflow occured */ return NULL; } if ( boundary != 0 ) { 8008478: 44 80 00 04 be r4,r0,8008488 <_Heap_Allocate_aligned_with_boundary+0x78> if ( boundary < alloc_size ) { 800847c: 54 44 00 57 bgu r2,r4,80085d8 <_Heap_Allocate_aligned_with_boundary+0x1c8> return NULL; } if ( alignment == 0 ) { 8008480: 5c 60 00 02 bne r3,r0,8008488 <_Heap_Allocate_aligned_with_boundary+0x78>
8008484: ba 60 78 00 mv r15,r19
uintptr_t const alloc_begin_floor = _Heap_Alloc_area_of_block( block ); uintptr_t const alloc_begin_ceiling = block_end - min_block_size + HEAP_BLOCK_HEADER_SIZE + page_size - 1; uintptr_t alloc_end = block_end + HEAP_BLOCK_SIZE_OFFSET; uintptr_t alloc_begin = alloc_end - alloc_size;
8008488: 34 01 00 04 mvi r1,4 800848c: c8 2d 08 00 sub r1,r1,r13 8008490: 5b 81 00 4c sw (sp+76),r1
if ( boundary != 0 ) { if ( boundary < alloc_size ) { return NULL; } if ( alignment == 0 ) {
8008494: 34 11 00 00 mvi r17,0
uintptr_t const page_size = heap->page_size; uintptr_t const min_block_size = heap->min_block_size; uintptr_t const block_begin = (uintptr_t) block; uintptr_t const block_size = _Heap_Block_size( block ); uintptr_t const block_end = block_begin + block_size;
8008498: 34 1b ff fe mvi fp,-2
uintptr_t const alloc_begin_floor = _Heap_Alloc_area_of_block( block ); uintptr_t const alloc_begin_ceiling = block_end - min_block_size + HEAP_BLOCK_HEADER_SIZE + page_size - 1;
800849c: 36 79 00 07 addi r25,r19,7
/* Ensure that the we have a valid new block at the beginning */ if ( alloc_begin >= alloc_begin_floor ) { uintptr_t const alloc_block_begin = (uintptr_t) _Heap_Block_of_alloc_area( alloc_begin, page_size ); uintptr_t const free_size = alloc_block_begin - block_begin;
80084a0: 34 18 ff f8 mvi r24,-8 80084a4: e0 00 00 3d bi 8008598 <_Heap_Allocate_aligned_with_boundary+0x188>
/* * The HEAP_PREV_BLOCK_USED flag is always set in the block size_and_flag * field. Thus the value is about one unit larger than the real block * size. The greater than operator takes this into account. */ if ( block->size_and_flag > block_size_floor ) {
80084a8: 29 d0 00 04 lw r16,(r14+4)
while ( block != free_list_tail ) { _HAssert( _Heap_Is_prev_used( block ) ); /* Statistics */ ++search_count;
80084ac: 36 31 00 01 addi r17,r17,1
/* * The HEAP_PREV_BLOCK_USED flag is always set in the block size_and_flag * field. Thus the value is about one unit larger than the real block * size. The greater than operator takes this into account. */ if ( block->size_and_flag > block_size_floor ) { 80084b0: 52 b0 00 39 bgeu r21,r16,8008594 <_Heap_Allocate_aligned_with_boundary+0x184>
80084b4: 35 d4 00 08 addi r20,r14,8
RTEMS_INLINE_ROUTINE uintptr_t _Heap_Alloc_area_of_block( const Heap_Block *block ) { return (uintptr_t) block + HEAP_BLOCK_HEADER_SIZE;
80084b8: ba 80 58 00 mv r11,r20
if ( alignment == 0 ) { 80084bc: 45 e0 00 35 be r15,r0,8008590 <_Heap_Allocate_aligned_with_boundary+0x180> uintptr_t const alloc_begin_floor = _Heap_Alloc_area_of_block( block ); uintptr_t const alloc_begin_ceiling = block_end - min_block_size + HEAP_BLOCK_HEADER_SIZE + page_size - 1; uintptr_t alloc_end = block_end + HEAP_BLOCK_SIZE_OFFSET; uintptr_t alloc_begin = alloc_end - alloc_size;
80084c0: 2b 81 00 4c lw r1,(sp+76)
uintptr_t const page_size = heap->page_size; uintptr_t const min_block_size = heap->min_block_size; uintptr_t const block_begin = (uintptr_t) block; uintptr_t const block_size = _Heap_Block_size( block ); uintptr_t const block_end = block_begin + block_size;
80084c4: a2 1b 80 00 and r16,r16,fp
uintptr_t alignment, uintptr_t boundary ) { uintptr_t const page_size = heap->page_size; uintptr_t const min_block_size = heap->min_block_size;
80084c8: 29 96 00 14 lw r22,(r12+20)
uintptr_t const block_begin = (uintptr_t) block; uintptr_t const block_size = _Heap_Block_size( block ); uintptr_t const block_end = block_begin + block_size;
80084cc: b5 d0 80 00 add r16,r14,r16
uintptr_t const alloc_begin_floor = _Heap_Alloc_area_of_block( block ); uintptr_t const alloc_begin_ceiling = block_end - min_block_size + HEAP_BLOCK_HEADER_SIZE + page_size - 1; uintptr_t alloc_end = block_end + HEAP_BLOCK_SIZE_OFFSET; uintptr_t alloc_begin = alloc_end - alloc_size;
80084d0: b4 30 58 00 add r11,r1,r16
uintptr_t const block_size = _Heap_Block_size( block ); uintptr_t const block_end = block_begin + block_size; uintptr_t const alloc_begin_floor = _Heap_Alloc_area_of_block( block ); uintptr_t const alloc_begin_ceiling = block_end - min_block_size + HEAP_BLOCK_HEADER_SIZE + page_size - 1;
80084d4: cb 36 18 00 sub r3,r25,r22
RTEMS_INLINE_ROUTINE uintptr_t _Heap_Align_down( uintptr_t value, uintptr_t alignment ) { return value - (value % alignment);
80084d8: b9 60 08 00 mv r1,r11 80084dc: b9 e0 10 00 mv r2,r15 80084e0: b4 70 80 00 add r16,r3,r16 80084e4: f8 00 42 ff calli 80190e0 <__umodsi3> 80084e8: c9 61 58 00 sub r11,r11,r1
uintptr_t alloc_begin = alloc_end - alloc_size; alloc_begin = _Heap_Align_down( alloc_begin, alignment ); /* Ensure that the we have a valid new block at the end */ if ( alloc_begin > alloc_begin_ceiling ) { 80084ec: 52 0b 00 05 bgeu r16,r11,8008500 <_Heap_Allocate_aligned_with_boundary+0xf0>
80084f0: ba 00 08 00 mv r1,r16 80084f4: b9 e0 10 00 mv r2,r15 80084f8: f8 00 42 fa calli 80190e0 <__umodsi3> 80084fc: ca 01 58 00 sub r11,r16,r1
} alloc_end = alloc_begin + alloc_size; /* Ensure boundary constaint */ if ( boundary != 0 ) { 8008500: 46 40 00 19 be r18,r0,8008564 <_Heap_Allocate_aligned_with_boundary+0x154> /* Ensure that the we have a valid new block at the end */ if ( alloc_begin > alloc_begin_ceiling ) { alloc_begin = _Heap_Align_down( alloc_begin_ceiling, alignment ); } alloc_end = alloc_begin + alloc_size;
8008504: b5 6d 80 00 add r16,r11,r13 8008508: ba 00 08 00 mv r1,r16 800850c: ba 40 10 00 mv r2,r18 8008510: f8 00 42 f4 calli 80190e0 <__umodsi3> 8008514: ca 01 18 00 sub r3,r16,r1
/* Ensure boundary constaint */ if ( boundary != 0 ) { uintptr_t const boundary_floor = alloc_begin_floor + alloc_size;
8008518: b6 8d 20 00 add r4,r20,r13 800851c: e0 00 00 0b bi 8008548 <_Heap_Allocate_aligned_with_boundary+0x138>
uintptr_t boundary_line = _Heap_Align_down( alloc_end, boundary ); while ( alloc_begin < boundary_line && boundary_line < alloc_end ) { if ( boundary_line < boundary_floor ) { 8008520: 54 83 00 1d bgu r4,r3,8008594 <_Heap_Allocate_aligned_with_boundary+0x184>
8008524: 5b 84 00 48 sw (sp+72),r4 8008528: f8 00 42 ee calli 80190e0 <__umodsi3> 800852c: ca e1 58 00 sub r11,r23,r1
return 0; } alloc_begin = boundary_line - alloc_size; alloc_begin = _Heap_Align_down( alloc_begin, alignment ); alloc_end = alloc_begin + alloc_size;
8008530: b5 6d 80 00 add r16,r11,r13 8008534: ba 00 08 00 mv r1,r16 8008538: ba 40 10 00 mv r2,r18 800853c: f8 00 42 e9 calli 80190e0 <__umodsi3> 8008540: 2b 84 00 48 lw r4,(sp+72) 8008544: ca 01 18 00 sub r3,r16,r1
/* Ensure boundary constaint */ if ( boundary != 0 ) { uintptr_t const boundary_floor = alloc_begin_floor + alloc_size; uintptr_t boundary_line = _Heap_Align_down( alloc_end, boundary ); while ( alloc_begin < boundary_line && boundary_line < alloc_end ) {
8008548: f6 03 80 00 cmpgu r16,r16,r3 800854c: f4 6b 28 00 cmpgu r5,r3,r11
if ( boundary_line < boundary_floor ) { return 0; } alloc_begin = boundary_line - alloc_size;
8008550: c8 6d b8 00 sub r23,r3,r13
/* Ensure boundary constaint */ if ( boundary != 0 ) { uintptr_t const boundary_floor = alloc_begin_floor + alloc_size; uintptr_t boundary_line = _Heap_Align_down( alloc_end, boundary ); while ( alloc_begin < boundary_line && boundary_line < alloc_end ) {
8008554: a2 05 80 00 and r16,r16,r5 8008558: b9 e0 10 00 mv r2,r15 800855c: ba e0 08 00 mv r1,r23
8008560: 5e 00 ff f0 bne r16,r0,8008520 <_Heap_Allocate_aligned_with_boundary+0x110> boundary_line = _Heap_Align_down( alloc_end, boundary ); } } /* Ensure that the we have a valid new block at the beginning */ if ( alloc_begin >= alloc_begin_floor ) { 8008564: 56 8b 00 0c bgu r20,r11,8008594 <_Heap_Allocate_aligned_with_boundary+0x184> uintptr_t const alloc_block_begin = (uintptr_t) _Heap_Block_of_alloc_area( alloc_begin, page_size ); uintptr_t const free_size = alloc_block_begin - block_begin;
8008568: cb 0e 80 00 sub r16,r24,r14 800856c: b9 60 08 00 mv r1,r11 8008570: ba 60 10 00 mv r2,r19 8008574: b6 0b 80 00 add r16,r16,r11 8008578: f8 00 42 da calli 80190e0 <__umodsi3> 800857c: ca 01 08 00 sub r1,r16,r1
if ( free_size >= min_block_size || free_size == 0 ) {
8008580: f0 36 b0 00 cmpgeu r22,r1,r22 8008584: 64 21 00 00 cmpei r1,r1,0 8008588: b8 36 08 00 or r1,r1,r22
800858c: 44 20 00 02 be r1,r0,8008594 <_Heap_Allocate_aligned_with_boundary+0x184> boundary ); } } if ( alloc_begin != 0 ) {
8008590: 5d 60 00 05 bne r11,r0,80085a4 <_Heap_Allocate_aligned_with_boundary+0x194><== ALWAYS TAKEN
break; } block = block->next;
8008594: 29 ce 00 08 lw r14,(r14+8)
if ( alignment == 0 ) { alignment = page_size; } } while ( block != free_list_tail ) { 8008598: 5d cc ff c4 bne r14,r12,80084a8 <_Heap_Allocate_aligned_with_boundary+0x98>
800859c: 34 0b 00 00 mvi r11,0 80085a0: e0 00 00 09 bi 80085c4 <_Heap_Allocate_aligned_with_boundary+0x1b4>
block = block->next; } if ( alloc_begin != 0 ) { /* Statistics */ stats->searches += search_count;
80085a4: 29 81 00 4c lw r1,(r12+76)
block = _Heap_Block_allocate( heap, block, alloc_begin, alloc_size );
80085a8: b9 c0 10 00 mv r2,r14 80085ac: b9 a0 20 00 mv r4,r13
block = block->next; } if ( alloc_begin != 0 ) { /* Statistics */ stats->searches += search_count;
80085b0: b4 31 08 00 add r1,r1,r17 80085b4: 59 81 00 4c sw (r12+76),r1
block = _Heap_Block_allocate( heap, block, alloc_begin, alloc_size );
80085b8: b9 60 18 00 mv r3,r11 80085bc: b9 80 08 00 mv r1,r12 80085c0: fb ff eb 15 calli 8003214 <_Heap_Block_allocate>
uintptr_t alloc_size, uintptr_t alignment, uintptr_t boundary ) { Heap_Statistics *const stats = &heap->stats;
80085c4: 29 81 00 44 lw r1,(r12+68)
80085c8: 50 31 00 02 bgeu r1,r17,80085d0 <_Heap_Allocate_aligned_with_boundary+0x1c0> ); } /* Statistics */ if ( stats->max_search < search_count ) { stats->max_search = search_count;
80085cc: 59 91 00 44 sw (r12+68),r17
} return (void *) alloc_begin;
80085d0: b9 60 08 00 mv r1,r11 80085d4: e0 00 00 02 bi 80085dc <_Heap_Allocate_aligned_with_boundary+0x1cc> 80085d8: 34 01 00 00 mvi r1,0
}
80085dc: 2b 9d 00 04 lw ra,(sp+4) 80085e0: 2b 8b 00 44 lw r11,(sp+68) 80085e4: 2b 8c 00 40 lw r12,(sp+64) 80085e8: 2b 8d 00 3c lw r13,(sp+60) 80085ec: 2b 8e 00 38 lw r14,(sp+56) 80085f0: 2b 8f 00 34 lw r15,(sp+52) 80085f4: 2b 90 00 30 lw r16,(sp+48) 80085f8: 2b 91 00 2c lw r17,(sp+44) 80085fc: 2b 92 00 28 lw r18,(sp+40) 8008600: 2b 93 00 24 lw r19,(sp+36) 8008604: 2b 94 00 20 lw r20,(sp+32) 8008608: 2b 95 00 1c lw r21,(sp+28) 800860c: 2b 96 00 18 lw r22,(sp+24) 8008610: 2b 97 00 14 lw r23,(sp+20) 8008614: 2b 98 00 10 lw r24,(sp+16) 8008618: 2b 99 00 0c lw r25,(sp+12) 800861c: 2b 9b 00 08 lw fp,(sp+8) 8008620: 37 9c 00 4c addi sp,sp,76 8008624: c3 a0 00 00 ret
0800e374 <_Heap_Extend>: Heap_Control *heap, void *area_begin_ptr, uintptr_t area_size, uintptr_t *amount_extended ) {
800e374: 37 9c ff e8 addi sp,sp,-24 800e378: 5b 8b 00 18 sw (sp+24),r11 800e37c: 5b 8c 00 14 sw (sp+20),r12 800e380: 5b 8d 00 10 sw (sp+16),r13 800e384: 5b 8e 00 0c sw (sp+12),r14 800e388: 5b 8f 00 08 sw (sp+8),r15 800e38c: 5b 9d 00 04 sw (sp+4),ra
Heap_Statistics *const stats = &heap->stats; uintptr_t const area_begin = (uintptr_t) area_begin_ptr; uintptr_t const heap_area_begin = heap->area_begin;
800e390: 28 2d 00 18 lw r13,(r1+24)
uintptr_t const heap_area_end = heap->area_end;
800e394: 28 25 00 1c lw r5,(r1+28)
Heap_Control *heap, void *area_begin_ptr, uintptr_t area_size, uintptr_t *amount_extended ) {
800e398: b8 20 58 00 mv r11,r1
Heap_Statistics *const stats = &heap->stats; uintptr_t const area_begin = (uintptr_t) area_begin_ptr; uintptr_t const heap_area_begin = heap->area_begin;
800e39c: f0 4d 68 00 cmpgeu r13,r2,r13
* 5. non-contiguous higher address (NOT SUPPORTED) * * As noted, this code only supports (4). */ if ( area_begin >= heap_area_begin && area_begin < heap_area_end ) {
800e3a0: f4 a2 08 00 cmpgu r1,r5,r2
Heap_Control *heap, void *area_begin_ptr, uintptr_t area_size, uintptr_t *amount_extended ) {
800e3a4: b8 80 78 00 mv r15,r4
Heap_Statistics *const stats = &heap->stats; uintptr_t const area_begin = (uintptr_t) area_begin_ptr; uintptr_t const heap_area_begin = heap->area_begin;
800e3a8: a0 2d 68 00 and r13,r1,r13
uintptr_t const heap_area_end = heap->area_end; uintptr_t const new_heap_area_end = heap_area_end + area_size; uintptr_t extend_size = 0; Heap_Block *const last_block = heap->last_block;
800e3ac: 29 6c 00 24 lw r12,(r11+36)
uintptr_t *amount_extended ) { Heap_Statistics *const stats = &heap->stats; uintptr_t const area_begin = (uintptr_t) area_begin_ptr; uintptr_t const heap_area_begin = heap->area_begin;
800e3b0: 34 01 00 01 mvi r1,1
800e3b4: 5d a0 00 26 bne r13,r0,800e44c <_Heap_Extend+0xd8> * As noted, this code only supports (4). */ if ( area_begin >= heap_area_begin && area_begin < heap_area_end ) { return HEAP_EXTEND_ERROR; /* case 3 */ } else if ( area_begin != heap_area_end ) {
800e3b8: 34 01 00 02 mvi r1,2
800e3bc: 5c 45 00 24 bne r2,r5,800e44c <_Heap_Extend+0xd8> { Heap_Statistics *const stats = &heap->stats; uintptr_t const area_begin = (uintptr_t) area_begin_ptr; uintptr_t const heap_area_begin = heap->area_begin; uintptr_t const heap_area_end = heap->area_end; uintptr_t const new_heap_area_end = heap_area_end + area_size;
800e3c0: b4 62 18 00 add r3,r3,r2
* block and free it. */ heap->area_end = new_heap_area_end; extend_size = new_heap_area_end
800e3c4: c8 6c 70 00 sub r14,r3,r12
RTEMS_INLINE_ROUTINE uintptr_t _Heap_Align_down( uintptr_t value, uintptr_t alignment ) { return value - (value % alignment);
800e3c8: 29 62 00 10 lw r2,(r11+16) 800e3cc: 35 ce ff f8 addi r14,r14,-8
* Currently only case 4 should make it to this point. * The basic trick is to make the extend area look like a used * block and free it. */ heap->area_end = new_heap_area_end;
800e3d0: 59 63 00 1c sw (r11+28),r3 800e3d4: b9 c0 08 00 mv r1,r14 800e3d8: fb ff d7 e8 calli 8004378 <__umodsi3> 800e3dc: c9 c1 08 00 sub r1,r14,r1
extend_size = new_heap_area_end - (uintptr_t) last_block - HEAP_BLOCK_HEADER_SIZE; extend_size = _Heap_Align_down( extend_size, heap->page_size ); *amount_extended = extend_size;
800e3e0: 59 e1 00 00 sw (r15+0),r1
if( extend_size >= heap->min_block_size ) {
800e3e4: 29 62 00 14 lw r2,(r11+20)
800e3e8: 50 22 00 02 bgeu r1,r2,800e3f0 <_Heap_Extend+0x7c> <== ALWAYS TAKEN
800e3ec: e0 00 00 17 bi 800e448 <_Heap_Extend+0xd4> <== NOT EXECUTED
uintptr_t size ) { uintptr_t flag = block->size_and_flag & HEAP_PREV_BLOCK_USED; block->size_and_flag = size | flag;
800e3f0: 29 84 00 04 lw r4,(r12+4)
Heap_Block *const new_last_block = _Heap_Block_at( last_block, extend_size ); _Heap_Block_set_size( last_block, extend_size ); new_last_block->size_and_flag =
800e3f4: 29 63 00 20 lw r3,(r11+32)
RTEMS_INLINE_ROUTINE Heap_Block *_Heap_Block_at( const Heap_Block *block, uintptr_t offset ) { return (Heap_Block *) ((uintptr_t) block + offset);
800e3f8: b4 2c 10 00 add r2,r1,r12
uintptr_t size ) { uintptr_t flag = block->size_and_flag & HEAP_PREV_BLOCK_USED; block->size_and_flag = size | flag;
800e3fc: 20 84 00 01 andi r4,r4,0x1 800e400: b8 24 20 00 or r4,r1,r4 800e404: c8 62 18 00 sub r3,r3,r2 800e408: 59 84 00 04 sw (r12+4),r4 800e40c: 38 63 00 01 ori r3,r3,0x1 800e410: 58 43 00 04 sw (r2+4),r3
| HEAP_PREV_BLOCK_USED; heap->last_block = new_last_block; /* Statistics */ stats->size += extend_size;
800e414: 29 65 00 2c lw r5,(r11+44)
++stats->used_blocks;
800e418: 29 64 00 40 lw r4,(r11+64)
--stats->frees; /* Do not count subsequent call as actual free() */
800e41c: 29 63 00 50 lw r3,(r11+80)
| HEAP_PREV_BLOCK_USED; heap->last_block = new_last_block; /* Statistics */ stats->size += extend_size;
800e420: b4 a1 08 00 add r1,r5,r1
++stats->used_blocks;
800e424: 34 84 00 01 addi r4,r4,1
--stats->frees; /* Do not count subsequent call as actual free() */
800e428: 34 63 ff ff addi r3,r3,-1
new_last_block->size_and_flag = ((uintptr_t) heap->first_block - (uintptr_t) new_last_block) | HEAP_PREV_BLOCK_USED; heap->last_block = new_last_block;
800e42c: 59 62 00 24 sw (r11+36),r2
/* Statistics */ stats->size += extend_size;
800e430: 59 61 00 2c sw (r11+44),r1
++stats->used_blocks;
800e434: 59 64 00 40 sw (r11+64),r4
--stats->frees; /* Do not count subsequent call as actual free() */
800e438: 59 63 00 50 sw (r11+80),r3
_Heap_Free( heap, (void *) _Heap_Alloc_area_of_block( last_block ));
800e43c: b9 60 08 00 mv r1,r11 800e440: 35 82 00 08 addi r2,r12,8 800e444: fb ff e7 bb calli 8008330 <_Heap_Free> 800e448: b9 a0 08 00 mv r1,r13
} return HEAP_EXTEND_SUCCESSFUL; }
800e44c: 2b 9d 00 04 lw ra,(sp+4) 800e450: 2b 8b 00 18 lw r11,(sp+24) 800e454: 2b 8c 00 14 lw r12,(sp+20) 800e458: 2b 8d 00 10 lw r13,(sp+16) 800e45c: 2b 8e 00 0c lw r14,(sp+12) 800e460: 2b 8f 00 08 lw r15,(sp+8) 800e464: 37 9c 00 18 addi sp,sp,24 800e468: c3 a0 00 00 ret
08008628 <_Heap_Free>: #include <rtems/system.h> #include <rtems/score/sysstate.h> #include <rtems/score/heap.h> bool _Heap_Free( Heap_Control *heap, void *alloc_begin_ptr ) {
8008628: 37 9c ff f4 addi sp,sp,-12 800862c: 5b 8b 00 0c sw (sp+12),r11 8008630: 5b 8c 00 08 sw (sp+8),r12 8008634: 5b 9d 00 04 sw (sp+4),ra 8008638: b8 40 18 00 mv r3,r2
RTEMS_INLINE_ROUTINE Heap_Block *_Heap_Block_of_alloc_area( uintptr_t alloc_begin, uintptr_t page_size ) { return (Heap_Block *) (_Heap_Align_down( alloc_begin, page_size )
800863c: 28 22 00 10 lw r2,(r1+16) 8008640: b8 20 58 00 mv r11,r1 8008644: b8 60 08 00 mv r1,r3 8008648: 34 6c ff f8 addi r12,r3,-8 800864c: f8 00 42 a5 calli 80190e0 <__umodsi3>
const Heap_Control *heap, const Heap_Block *block ) { return (uintptr_t) block >= (uintptr_t) heap->first_block && (uintptr_t) block <= (uintptr_t) heap->last_block;
8008650: 29 66 00 20 lw r6,(r11+32)
RTEMS_INLINE_ROUTINE Heap_Block *_Heap_Block_of_alloc_area( uintptr_t alloc_begin, uintptr_t page_size ) { return (Heap_Block *) (_Heap_Align_down( alloc_begin, page_size )
8008654: c9 81 08 00 sub r1,r12,r1
RTEMS_INLINE_ROUTINE bool _Heap_Is_block_in_heap( const Heap_Control *heap, const Heap_Block *block ) { return (uintptr_t) block >= (uintptr_t) heap->first_block 8008658: 50 26 00 03 bgeu r1,r6,8008664 <_Heap_Free+0x3c>
800865c: 34 02 00 00 mvi r2,0 8008660: e0 00 00 03 bi 800866c <_Heap_Free+0x44> 8008664: 29 62 00 24 lw r2,(r11+36) 8008668: f0 41 10 00 cmpgeu r2,r2,r1
Heap_Block *next_block = NULL; uintptr_t block_size = 0; uintptr_t next_block_size = 0; bool next_is_free = false; if ( !_Heap_Is_block_in_heap( heap, block ) ) { 800866c: 44 40 00 66 be r2,r0,8008804 <_Heap_Free+0x1dc> - HEAP_BLOCK_HEADER_SIZE); } RTEMS_INLINE_ROUTINE uintptr_t _Heap_Block_size( const Heap_Block *block ) { return block->size_and_flag & ~HEAP_PREV_BLOCK_USED;
8008670: 28 25 00 04 lw r5,(r1+4) 8008674: 34 02 ff fe mvi r2,-2 8008678: a0 a2 10 00 and r2,r5,r2
RTEMS_INLINE_ROUTINE Heap_Block *_Heap_Block_at( const Heap_Block *block, uintptr_t offset ) { return (Heap_Block *) ((uintptr_t) block + offset);
800867c: b4 22 18 00 add r3,r1,r2
RTEMS_INLINE_ROUTINE bool _Heap_Is_block_in_heap( const Heap_Control *heap, const Heap_Block *block ) { return (uintptr_t) block >= (uintptr_t) heap->first_block
8008680: 50 66 00 03 bgeu r3,r6,800868c <_Heap_Free+0x64> <== ALWAYS TAKEN
8008684: 34 04 00 00 mvi r4,0 <== NOT EXECUTED 8008688: e0 00 00 03 bi 8008694 <_Heap_Free+0x6c> <== NOT EXECUTED
800868c: 29 64 00 24 lw r4,(r11+36) 8008690: f0 83 20 00 cmpgeu r4,r4,r3
} block_size = _Heap_Block_size( block ); next_block = _Heap_Block_at( block, block_size ); if ( !_Heap_Is_block_in_heap( heap, next_block ) ) {
8008694: 44 80 00 5c be r4,r0,8008804 <_Heap_Free+0x1dc> <== NEVER TAKEN
block->size_and_flag = size | flag; } RTEMS_INLINE_ROUTINE bool _Heap_Is_prev_used( const Heap_Block *block ) { return block->size_and_flag & HEAP_PREV_BLOCK_USED;
8008698: 28 64 00 04 lw r4,(r3+4)
_HAssert( false ); return false; } if ( !_Heap_Is_prev_used( next_block ) ) {
800869c: 20 87 00 01 andi r7,r4,0x1
80086a0: 44 e0 00 59 be r7,r0,8008804 <_Heap_Free+0x1dc> <== NEVER TAKEN
return false; } next_block_size = _Heap_Block_size( next_block ); next_is_free = next_block != heap->last_block && !_Heap_Is_prev_used( _Heap_Block_at( next_block, next_block_size ));
80086a4: 29 68 00 24 lw r8,(r11+36)
- HEAP_BLOCK_HEADER_SIZE); } RTEMS_INLINE_ROUTINE uintptr_t _Heap_Block_size( const Heap_Block *block ) { return block->size_and_flag & ~HEAP_PREV_BLOCK_USED;
80086a8: 34 07 ff fe mvi r7,-2 80086ac: a0 87 20 00 and r4,r4,r7
_HAssert( false ); return false; } next_block_size = _Heap_Block_size( next_block ); next_is_free = next_block != heap->last_block
80086b0: 34 07 00 00 mvi r7,0
80086b4: 45 03 00 05 be r8,r3,80086c8 <_Heap_Free+0xa0>
80086b8: b4 64 38 00 add r7,r3,r4 80086bc: 28 e7 00 04 lw r7,(r7+4) 80086c0: 20 e7 00 01 andi r7,r7,0x1 80086c4: 18 e7 00 01 xori r7,r7,0x1
&& !_Heap_Is_prev_used( _Heap_Block_at( next_block, next_block_size )); if ( !_Heap_Is_prev_used( block ) ) {
80086c8: 20 a5 00 01 andi r5,r5,0x1
_HAssert( false ); return false; } next_block_size = _Heap_Block_size( next_block ); next_is_free = next_block != heap->last_block
80086cc: 20 e7 00 ff andi r7,r7,0xff
&& !_Heap_Is_prev_used( _Heap_Block_at( next_block, next_block_size )); if ( !_Heap_Is_prev_used( block ) ) { 80086d0: 5c a0 00 23 bne r5,r0,800875c <_Heap_Free+0x134> uintptr_t const prev_size = block->prev_size;
80086d4: 28 25 00 00 lw r5,(r1+0)
RTEMS_INLINE_ROUTINE Heap_Block *_Heap_Block_at( const Heap_Block *block, uintptr_t offset ) { return (Heap_Block *) ((uintptr_t) block + offset);
80086d8: c8 25 08 00 sub r1,r1,r5
RTEMS_INLINE_ROUTINE bool _Heap_Is_block_in_heap( const Heap_Control *heap, const Heap_Block *block ) { return (uintptr_t) block >= (uintptr_t) heap->first_block
80086dc: f0 26 30 00 cmpgeu r6,r1,r6 80086e0: f1 01 40 00 cmpgeu r8,r8,r1 80086e4: c8 06 30 00 sub r6,r0,r6
Heap_Block * const prev_block = _Heap_Block_at( block, -prev_size ); if ( !_Heap_Is_block_in_heap( heap, prev_block ) ) {
80086e8: a1 06 40 00 and r8,r8,r6
80086ec: 45 00 00 46 be r8,r0,8008804 <_Heap_Free+0x1dc> <== NEVER TAKEN
return( false ); } /* As we always coalesce free blocks, the block that preceedes prev_block must have been used. */ if ( !_Heap_Is_prev_used ( prev_block) ) {
80086f0: 28 26 00 04 lw r6,(r1+4) 80086f4: 20 c6 00 01 andi r6,r6,0x1
80086f8: 44 c0 00 43 be r6,r0,8008804 <_Heap_Free+0x1dc> <== NEVER TAKEN
_HAssert( false ); return( false ); } if ( next_is_free ) { /* coalesce both */ 80086fc: 44 e0 00 0f be r7,r0,8008738 <_Heap_Free+0x110> uintptr_t const size = block_size + prev_size + next_block_size; _Heap_Free_list_remove( next_block ); stats->free_blocks -= 1;
8008700: 29 68 00 38 lw r8,(r11+56)
} RTEMS_INLINE_ROUTINE void _Heap_Free_list_remove( Heap_Block *block ) { Heap_Block *next = block->next; Heap_Block *prev = block->prev;
8008704: 28 66 00 0c lw r6,(r3+12)
return _Heap_Free_list_tail(heap)->prev; } RTEMS_INLINE_ROUTINE void _Heap_Free_list_remove( Heap_Block *block ) { Heap_Block *next = block->next;
8008708: 28 67 00 08 lw r7,(r3+8)
_HAssert( false ); return( false ); } if ( next_is_free ) { /* coalesce both */ uintptr_t const size = block_size + prev_size + next_block_size;
800870c: b4 44 20 00 add r4,r2,r4 8008710: b4 85 28 00 add r5,r4,r5
_Heap_Free_list_remove( next_block ); stats->free_blocks -= 1;
8008714: 35 03 ff ff addi r3,r8,-1 8008718: 59 63 00 38 sw (r11+56),r3
prev_block->size_and_flag = size | HEAP_PREV_BLOCK_USED; next_block = _Heap_Block_at( prev_block, size ); _HAssert(!_Heap_Is_prev_used( next_block)); next_block->prev_size = size;
800871c: b4 25 20 00 add r4,r1,r5
if ( next_is_free ) { /* coalesce both */ uintptr_t const size = block_size + prev_size + next_block_size; _Heap_Free_list_remove( next_block ); stats->free_blocks -= 1; prev_block->size_and_flag = size | HEAP_PREV_BLOCK_USED;
8008720: 38 a3 00 01 ori r3,r5,0x1
Heap_Block *prev = block->prev; prev->next = next; next->prev = prev;
8008724: 58 e6 00 0c sw (r7+12),r6
next_block = _Heap_Block_at( prev_block, size ); _HAssert(!_Heap_Is_prev_used( next_block)); next_block->prev_size = size;
8008728: 58 85 00 00 sw (r4+0),r5
if ( next_is_free ) { /* coalesce both */ uintptr_t const size = block_size + prev_size + next_block_size; _Heap_Free_list_remove( next_block ); stats->free_blocks -= 1; prev_block->size_and_flag = size | HEAP_PREV_BLOCK_USED;
800872c: 58 23 00 04 sw (r1+4),r3
RTEMS_INLINE_ROUTINE void _Heap_Free_list_remove( Heap_Block *block ) { Heap_Block *next = block->next; Heap_Block *prev = block->prev; prev->next = next;
8008730: 58 c7 00 08 sw (r6+8),r7 8008734: e0 00 00 29 bi 80087d8 <_Heap_Free+0x1b0>
next_block = _Heap_Block_at( prev_block, size ); _HAssert(!_Heap_Is_prev_used( next_block)); next_block->prev_size = size; } else { /* coalesce prev */ uintptr_t const size = block_size + prev_size;
8008738: b4 45 28 00 add r5,r2,r5
prev_block->size_and_flag = size | HEAP_PREV_BLOCK_USED;
800873c: 38 a4 00 01 ori r4,r5,0x1 8008740: 58 24 00 04 sw (r1+4),r4
next_block->size_and_flag &= ~HEAP_PREV_BLOCK_USED;
8008744: 28 64 00 04 lw r4,(r3+4) 8008748: 34 01 ff fe mvi r1,-2
next_block->prev_size = size;
800874c: 58 65 00 00 sw (r3+0),r5
_HAssert(!_Heap_Is_prev_used( next_block)); next_block->prev_size = size; } else { /* coalesce prev */ uintptr_t const size = block_size + prev_size; prev_block->size_and_flag = size | HEAP_PREV_BLOCK_USED; next_block->size_and_flag &= ~HEAP_PREV_BLOCK_USED;
8008750: a0 81 08 00 and r1,r4,r1 8008754: 58 61 00 04 sw (r3+4),r1 8008758: e0 00 00 20 bi 80087d8 <_Heap_Free+0x1b0>
next_block->prev_size = size; } } else if ( next_is_free ) { /* coalesce next */ 800875c: 44 e0 00 0d be r7,r0,8008790 <_Heap_Free+0x168> Heap_Block *old_block, Heap_Block *new_block ) { Heap_Block *next = old_block->next; Heap_Block *prev = old_block->prev;
8008760: 28 65 00 0c lw r5,(r3+12)
RTEMS_INLINE_ROUTINE void _Heap_Free_list_replace( Heap_Block *old_block, Heap_Block *new_block ) { Heap_Block *next = old_block->next;
8008764: 28 66 00 08 lw r6,(r3+8)
uintptr_t const size = block_size + next_block_size;
8008768: b4 82 18 00 add r3,r4,r2
Heap_Block *prev = old_block->prev; new_block->next = next; new_block->prev = prev;
800876c: 58 25 00 0c sw (r1+12),r5
) { Heap_Block *next = old_block->next; Heap_Block *prev = old_block->prev; new_block->next = next;
8008770: 58 26 00 08 sw (r1+8),r6
_Heap_Free_list_replace( next_block, block ); block->size_and_flag = size | HEAP_PREV_BLOCK_USED; next_block = _Heap_Block_at( block, size ); next_block->prev_size = size;
8008774: b4 23 38 00 add r7,r1,r3
next_block->prev_size = size; } } else if ( next_is_free ) { /* coalesce next */ uintptr_t const size = block_size + next_block_size; _Heap_Free_list_replace( next_block, block ); block->size_and_flag = size | HEAP_PREV_BLOCK_USED;
8008778: 38 64 00 01 ori r4,r3,0x1
next_block = _Heap_Block_at( block, size ); next_block->prev_size = size;
800877c: 58 e3 00 00 sw (r7+0),r3
new_block->prev = prev; next->prev = new_block;
8008780: 58 c1 00 0c sw (r6+12),r1
prev->next = new_block;
8008784: 58 a1 00 08 sw (r5+8),r1
next_block->prev_size = size; } } else if ( next_is_free ) { /* coalesce next */ uintptr_t const size = block_size + next_block_size; _Heap_Free_list_replace( next_block, block ); block->size_and_flag = size | HEAP_PREV_BLOCK_USED;
8008788: 58 24 00 04 sw (r1+4),r4 800878c: e0 00 00 13 bi 80087d8 <_Heap_Free+0x1b0>
next_block->prev_size = size; } else { /* no coalesce */ /* Add 'block' to the head of the free blocks list as it tends to produce less fragmentation than adding to the tail. */ _Heap_Free_list_insert_after( _Heap_Free_list_head( heap), block ); block->size_and_flag = block_size | HEAP_PREV_BLOCK_USED;
8008790: 38 44 00 01 ori r4,r2,0x1 8008794: 58 24 00 04 sw (r1+4),r4
next_block->size_and_flag &= ~HEAP_PREV_BLOCK_USED;
8008798: 28 65 00 04 lw r5,(r3+4) 800879c: 34 04 ff fe mvi r4,-2
next_block->prev_size = block_size;
80087a0: 58 62 00 00 sw (r3+0),r2
} else { /* no coalesce */ /* Add 'block' to the head of the free blocks list as it tends to produce less fragmentation than adding to the tail. */ _Heap_Free_list_insert_after( _Heap_Free_list_head( heap), block ); block->size_and_flag = block_size | HEAP_PREV_BLOCK_USED; next_block->size_and_flag &= ~HEAP_PREV_BLOCK_USED;
80087a4: a0 a4 20 00 and r4,r5,r4 80087a8: 58 64 00 04 sw (r3+4),r4
next_block->prev_size = block_size; /* Statistics */ ++stats->free_blocks;
80087ac: 29 63 00 38 lw r3,(r11+56)
RTEMS_INLINE_ROUTINE void _Heap_Free_list_insert_after( Heap_Block *block_before, Heap_Block *new_block ) { Heap_Block *next = block_before->next;
80087b0: 29 64 00 08 lw r4,(r11+8)
#include <rtems/score/sysstate.h> #include <rtems/score/heap.h> bool _Heap_Free( Heap_Control *heap, void *alloc_begin_ptr ) { Heap_Statistics *const stats = &heap->stats;
80087b4: 29 65 00 3c lw r5,(r11+60)
new_block->next = next; new_block->prev = block_before;
80087b8: 58 2b 00 0c sw (r1+12),r11
Heap_Block *new_block ) { Heap_Block *next = block_before->next; new_block->next = next;
80087bc: 58 24 00 08 sw (r1+8),r4
block->size_and_flag = block_size | HEAP_PREV_BLOCK_USED; next_block->size_and_flag &= ~HEAP_PREV_BLOCK_USED; next_block->prev_size = block_size; /* Statistics */ ++stats->free_blocks;
80087c0: 34 63 00 01 addi r3,r3,1
new_block->prev = block_before; block_before->next = new_block; next->prev = new_block;
80087c4: 58 81 00 0c sw (r4+12),r1
{ Heap_Block *next = block_before->next; new_block->next = next; new_block->prev = block_before; block_before->next = new_block;
80087c8: 59 61 00 08 sw (r11+8),r1 80087cc: 59 63 00 38 sw (r11+56),r3
#include <rtems/score/sysstate.h> #include <rtems/score/heap.h> bool _Heap_Free( Heap_Control *heap, void *alloc_begin_ptr ) { Heap_Statistics *const stats = &heap->stats; 80087d0: 50 a3 00 02 bgeu r5,r3,80087d8 <_Heap_Free+0x1b0> next_block->prev_size = block_size; /* Statistics */ ++stats->free_blocks; if ( stats->max_free_blocks < stats->free_blocks ) { stats->max_free_blocks = stats->free_blocks;
80087d4: 59 63 00 3c sw (r11+60),r3
} } /* Statistics */ --stats->used_blocks;
80087d8: 29 63 00 40 lw r3,(r11+64)
++stats->frees;
80087dc: 29 61 00 50 lw r1,(r11+80)
stats->free_size += block_size;
80087e0: 29 64 00 30 lw r4,(r11+48)
stats->max_free_blocks = stats->free_blocks; } } /* Statistics */ --stats->used_blocks;
80087e4: 34 63 ff ff addi r3,r3,-1
++stats->frees;
80087e8: 34 21 00 01 addi r1,r1,1
stats->free_size += block_size;
80087ec: b4 82 10 00 add r2,r4,r2
} } /* Statistics */ --stats->used_blocks; ++stats->frees;
80087f0: 59 61 00 50 sw (r11+80),r1
stats->free_size += block_size;
80087f4: 59 62 00 30 sw (r11+48),r2
stats->max_free_blocks = stats->free_blocks; } } /* Statistics */ --stats->used_blocks;
80087f8: 59 63 00 40 sw (r11+64),r3
++stats->frees; stats->free_size += block_size;
80087fc: 34 01 00 01 mvi r1,1
return( true );
8008800: e0 00 00 02 bi 8008808 <_Heap_Free+0x1e0> 8008804: 34 01 00 00 mvi r1,0
}
8008808: 2b 9d 00 04 lw ra,(sp+4) 800880c: 2b 8b 00 0c lw r11,(sp+12) 8008810: 2b 8c 00 08 lw r12,(sp+8) 8008814: 37 9c 00 0c addi sp,sp,12 8008818: c3 a0 00 00 ret
08019c7c <_Heap_Size_of_alloc_area>: bool _Heap_Size_of_alloc_area( Heap_Control *heap, void *alloc_begin_ptr, uintptr_t *alloc_size ) {
8019c7c: 37 9c ff f0 addi sp,sp,-16 8019c80: 5b 8b 00 10 sw (sp+16),r11 8019c84: 5b 8c 00 0c sw (sp+12),r12 8019c88: 5b 8d 00 08 sw (sp+8),r13 8019c8c: 5b 9d 00 04 sw (sp+4),ra 8019c90: b8 40 60 00 mv r12,r2
RTEMS_INLINE_ROUTINE Heap_Block *_Heap_Block_of_alloc_area( uintptr_t alloc_begin, uintptr_t page_size ) { return (Heap_Block *) (_Heap_Align_down( alloc_begin, page_size )
8019c94: 28 22 00 10 lw r2,(r1+16) 8019c98: b8 20 58 00 mv r11,r1 8019c9c: b9 80 08 00 mv r1,r12 8019ca0: b8 60 68 00 mv r13,r3 8019ca4: fb ff fd 0f calli 80190e0 <__umodsi3>
const Heap_Control *heap, const Heap_Block *block ) { return (uintptr_t) block >= (uintptr_t) heap->first_block && (uintptr_t) block <= (uintptr_t) heap->last_block;
8019ca8: 29 62 00 20 lw r2,(r11+32)
RTEMS_INLINE_ROUTINE Heap_Block *_Heap_Block_of_alloc_area( uintptr_t alloc_begin, uintptr_t page_size ) { return (Heap_Block *) (_Heap_Align_down( alloc_begin, page_size )
8019cac: 35 84 ff f8 addi r4,r12,-8 8019cb0: c8 81 20 00 sub r4,r4,r1
RTEMS_INLINE_ROUTINE bool _Heap_Is_block_in_heap( const Heap_Control *heap, const Heap_Block *block ) { return (uintptr_t) block >= (uintptr_t) heap->first_block 8019cb4: 50 82 00 03 bgeu r4,r2,8019cc0 <_Heap_Size_of_alloc_area+0x44>
8019cb8: 34 01 00 00 mvi r1,0 8019cbc: e0 00 00 03 bi 8019cc8 <_Heap_Size_of_alloc_area+0x4c> 8019cc0: 29 61 00 24 lw r1,(r11+36) 8019cc4: f0 24 08 00 cmpgeu r1,r1,r4
uintptr_t const alloc_begin = (uintptr_t) alloc_begin_ptr; Heap_Block *block = _Heap_Block_of_alloc_area( alloc_begin, page_size ); Heap_Block *next_block = NULL; uintptr_t block_size = 0; if ( !_Heap_Is_block_in_heap( heap, block ) ) { 8019cc8: 44 20 00 13 be r1,r0,8019d14 <_Heap_Size_of_alloc_area+0x98> RTEMS_INLINE_ROUTINE Heap_Block *_Heap_Block_at( const Heap_Block *block, uintptr_t offset ) { return (Heap_Block *) ((uintptr_t) block + offset);
8019ccc: 28 83 00 04 lw r3,(r4+4) 8019cd0: 34 01 ff fe mvi r1,-2 8019cd4: a0 61 08 00 and r1,r3,r1 8019cd8: b4 81 20 00 add r4,r4,r1
RTEMS_INLINE_ROUTINE bool _Heap_Is_block_in_heap( const Heap_Control *heap, const Heap_Block *block ) { return (uintptr_t) block >= (uintptr_t) heap->first_block
8019cdc: 50 82 00 03 bgeu r4,r2,8019ce8 <_Heap_Size_of_alloc_area+0x6c><== ALWAYS TAKEN
8019ce0: 34 01 00 00 mvi r1,0 <== NOT EXECUTED 8019ce4: e0 00 00 03 bi 8019cf0 <_Heap_Size_of_alloc_area+0x74> <== NOT EXECUTED
8019ce8: 29 61 00 24 lw r1,(r11+36) 8019cec: f0 24 08 00 cmpgeu r1,r1,r4
} block_size = _Heap_Block_size( block ); next_block = _Heap_Block_at( block, block_size ); if (
8019cf0: 44 20 00 09 be r1,r0,8019d14 <_Heap_Size_of_alloc_area+0x98><== NEVER TAKEN
8019cf4: 28 81 00 04 lw r1,(r4+4) 8019cf8: 20 21 00 01 andi r1,r1,0x1
8019cfc: 44 20 00 06 be r1,r0,8019d14 <_Heap_Size_of_alloc_area+0x98><== NEVER TAKEN
|| !_Heap_Is_prev_used( next_block ) ) { return false; } *alloc_size = (uintptr_t) next_block + HEAP_BLOCK_SIZE_OFFSET - alloc_begin;
8019d00: c8 8c 20 00 sub r4,r4,r12 8019d04: 34 84 00 04 addi r4,r4,4 8019d08: 59 a4 00 00 sw (r13+0),r4 8019d0c: 34 01 00 01 mvi r1,1
return true;
8019d10: e0 00 00 02 bi 8019d18 <_Heap_Size_of_alloc_area+0x9c> 8019d14: 34 01 00 00 mvi r1,0
}
8019d18: 2b 9d 00 04 lw ra,(sp+4) 8019d1c: 2b 8b 00 10 lw r11,(sp+16) 8019d20: 2b 8c 00 0c lw r12,(sp+12) 8019d24: 2b 8d 00 08 lw r13,(sp+8) 8019d28: 37 9c 00 10 addi sp,sp,16 8019d2c: c3 a0 00 00 ret
08003bec <_Heap_Walk>: bool _Heap_Walk( Heap_Control *heap, int source, bool dump ) {
8003bec: 37 9c ff ac addi sp,sp,-84 8003bf0: 5b 8b 00 50 sw (sp+80),r11 8003bf4: 5b 8c 00 4c sw (sp+76),r12 8003bf8: 5b 8d 00 48 sw (sp+72),r13 8003bfc: 5b 8e 00 44 sw (sp+68),r14 8003c00: 5b 8f 00 40 sw (sp+64),r15 8003c04: 5b 90 00 3c sw (sp+60),r16 8003c08: 5b 91 00 38 sw (sp+56),r17 8003c0c: 5b 92 00 34 sw (sp+52),r18 8003c10: 5b 93 00 30 sw (sp+48),r19 8003c14: 5b 94 00 2c sw (sp+44),r20 8003c18: 5b 95 00 28 sw (sp+40),r21 8003c1c: 5b 96 00 24 sw (sp+36),r22 8003c20: 5b 97 00 20 sw (sp+32),r23 8003c24: 5b 98 00 1c sw (sp+28),r24 8003c28: 5b 99 00 18 sw (sp+24),r25 8003c2c: 5b 9b 00 14 sw (sp+20),fp 8003c30: 5b 9d 00 10 sw (sp+16),ra 8003c34: 20 63 00 ff andi r3,r3,0xff 8003c38: b8 20 68 00 mv r13,r1 8003c3c: b8 40 70 00 mv r14,r2
uintptr_t const page_size = heap->page_size;
8003c40: 28 2f 00 10 lw r15,(r1+16)
uintptr_t const min_block_size = heap->min_block_size;
8003c44: 28 33 00 14 lw r19,(r1+20)
Heap_Block *const last_block = heap->last_block;
8003c48: 28 32 00 24 lw r18,(r1+36)
Heap_Block *block = heap->first_block;
8003c4c: 28 2b 00 20 lw r11,(r1+32)
Heap_Walk_printer printer = dump ? _Heap_Walk_print : _Heap_Walk_print_nothing; 8003c50: 5c 60 00 04 bne r3,r0,8003c60 <_Heap_Walk+0x74>
8003c54: 78 0c 08 00 mvhi r12,0x800 8003c58: 39 8c 3b c8 ori r12,r12,0x3bc8 8003c5c: e0 00 00 03 bi 8003c68 <_Heap_Walk+0x7c> 8003c60: 78 0c 08 00 mvhi r12,0x800 8003c64: 39 8c 41 18 ori r12,r12,0x4118
if ( !_System_state_Is_up( _System_state_Get() ) ) {
8003c68: 78 02 08 01 mvhi r2,0x801 8003c6c: 38 42 ea 08 ori r2,r2,0xea08 8003c70: 28 42 00 00 lw r2,(r2+0) 8003c74: 34 01 00 03 mvi r1,3
8003c78: 5c 41 01 0c bne r2,r1,80040a8 <_Heap_Walk+0x4bc> <== NEVER TAKEN
Heap_Block *const first_free_block = _Heap_Free_list_first( heap ); Heap_Block *const last_free_block = _Heap_Free_list_last( heap ); Heap_Block *const first_block = heap->first_block; Heap_Block *const last_block = heap->last_block; (*printer)(
8003c7c: 29 a1 00 08 lw r1,(r13+8) 8003c80: 29 a6 00 18 lw r6,(r13+24) 8003c84: 29 a7 00 1c lw r7,(r13+28) 8003c88: 5b 81 00 08 sw (sp+8),r1 8003c8c: 29 a1 00 0c lw r1,(r13+12) 8003c90: 78 03 08 01 mvhi r3,0x801 8003c94: 5b 92 00 04 sw (sp+4),r18 8003c98: 5b 81 00 0c sw (sp+12),r1 8003c9c: 38 63 b4 f4 ori r3,r3,0xb4f4 8003ca0: b9 c0 08 00 mv r1,r14 8003ca4: 34 02 00 00 mvi r2,0 8003ca8: b9 e0 20 00 mv r4,r15 8003cac: ba 60 28 00 mv r5,r19 8003cb0: b9 60 40 00 mv r8,r11 8003cb4: d9 80 00 00 call r12
heap->area_begin, heap->area_end, first_block, last_block, first_free_block, last_free_block ); if ( page_size == 0 ) { 8003cb8: 5d e0 00 05 bne r15,r0,8003ccc <_Heap_Walk+0xe0> (*printer)( source, true, "page size is zero\n" );
8003cbc: 78 03 08 01 mvhi r3,0x801 8003cc0: b9 c0 08 00 mv r1,r14 8003cc4: 38 63 b5 88 ori r3,r3,0xb588 8003cc8: e0 00 00 3b bi 8003db4 <_Heap_Walk+0x1c8>
return false; } if ( !_Addresses_Is_aligned( (void *) page_size ) ) {
8003ccc: 21 f0 00 07 andi r16,r15,0x7
8003cd0: 46 00 00 06 be r16,r0,8003ce8 <_Heap_Walk+0xfc> (*printer)(
8003cd4: 78 03 08 01 mvhi r3,0x801 8003cd8: b9 c0 08 00 mv r1,r14 8003cdc: 38 63 b5 9c ori r3,r3,0xb59c 8003ce0: b9 e0 20 00 mv r4,r15 8003ce4: e0 00 01 09 bi 8004108 <_Heap_Walk+0x51c>
); return false; } if ( !_Heap_Is_aligned( min_block_size, page_size ) ) {
8003ce8: ba 60 08 00 mv r1,r19 8003cec: b9 e0 10 00 mv r2,r15 8003cf0: fb ff f3 f4 calli 8000cc0 <__umodsi3> 8003cf4: b8 20 88 00 mv r17,r1
8003cf8: 44 30 00 08 be r1,r16,8003d18 <_Heap_Walk+0x12c> (*printer)(
8003cfc: 78 03 08 01 mvhi r3,0x801 8003d00: b9 c0 08 00 mv r1,r14 8003d04: 38 63 b5 bc ori r3,r3,0xb5bc 8003d08: ba 60 20 00 mv r4,r19 8003d0c: 34 02 00 01 mvi r2,1 8003d10: d9 80 00 00 call r12 8003d14: e0 00 00 5a bi 8003e7c <_Heap_Walk+0x290>
); return false; } if (
8003d18: 35 61 00 08 addi r1,r11,8 8003d1c: b9 e0 10 00 mv r2,r15 8003d20: fb ff f3 e8 calli 8000cc0 <__umodsi3> 8003d24: b8 20 80 00 mv r16,r1
8003d28: 44 31 00 08 be r1,r17,8003d48 <_Heap_Walk+0x15c> !_Heap_Is_aligned( _Heap_Alloc_area_of_block( first_block ), page_size ) ) { (*printer)(
8003d2c: 78 03 08 01 mvhi r3,0x801 8003d30: b9 c0 08 00 mv r1,r14 8003d34: 38 63 b5 e0 ori r3,r3,0xb5e0 8003d38: b9 60 20 00 mv r4,r11 8003d3c: 34 02 00 01 mvi r2,1 8003d40: d9 80 00 00 call r12 8003d44: e0 00 00 92 bi 8003f8c <_Heap_Walk+0x3a0>
); return false; } if ( !_Heap_Is_prev_used( first_block ) ) {
8003d48: 29 71 00 04 lw r17,(r11+4) 8003d4c: 22 31 00 01 andi r17,r17,0x1
8003d50: 5e 21 00 07 bne r17,r1,8003d6c <_Heap_Walk+0x180> (*printer)(
8003d54: 78 03 08 01 mvhi r3,0x801 8003d58: b9 c0 08 00 mv r1,r14 8003d5c: 38 63 b6 14 ori r3,r3,0xb614 8003d60: 34 02 00 01 mvi r2,1 8003d64: d9 80 00 00 call r12 8003d68: e0 00 00 89 bi 8003f8c <_Heap_Walk+0x3a0>
); return false; } if ( first_block->prev_size != page_size ) {
8003d6c: 29 79 00 00 lw r25,(r11+0)
8003d70: 47 2f 00 07 be r25,r15,8003d8c <_Heap_Walk+0x1a0> (*printer)(
8003d74: 78 03 08 01 mvhi r3,0x801 8003d78: b9 c0 08 00 mv r1,r14 8003d7c: 38 63 b6 44 ori r3,r3,0xb644 8003d80: bb 20 20 00 mv r4,r25 8003d84: b9 e0 28 00 mv r5,r15 8003d88: e0 00 00 3b bi 8003e74 <_Heap_Walk+0x288>
); return false; } if ( _Heap_Is_free( last_block ) ) {
8003d8c: 2a 41 00 04 lw r1,(r18+4) 8003d90: 34 02 ff fe mvi r2,-2 8003d94: a0 22 08 00 and r1,r1,r2 8003d98: b6 41 08 00 add r1,r18,r1 8003d9c: 28 2f 00 04 lw r15,(r1+4) 8003da0: 21 ef 00 01 andi r15,r15,0x1
8003da4: 5d f0 00 07 bne r15,r16,8003dc0 <_Heap_Walk+0x1d4> (*printer)(
8003da8: 78 03 08 01 mvhi r3,0x801 8003dac: b9 c0 08 00 mv r1,r14 8003db0: 38 63 b6 70 ori r3,r3,0xb670 8003db4: 34 02 00 01 mvi r2,1 8003db8: d9 80 00 00 call r12 8003dbc: e0 00 00 a5 bi 8004050 <_Heap_Walk+0x464>
return &heap->free_list; } RTEMS_INLINE_ROUTINE Heap_Block *_Heap_Free_list_first( Heap_Control *heap ) { return _Heap_Free_list_head(heap)->next;
8003dc0: 29 a4 00 08 lw r4,(r13+8)
); return false; } if ( _Heap_Is_used( free_block ) ) {
8003dc4: b8 40 a8 00 mv r21,r2
int source, Heap_Walk_printer printer, Heap_Control *heap ) { uintptr_t const page_size = heap->page_size;
8003dc8: 29 b4 00 10 lw r20,(r13+16) 8003dcc: b9 a0 88 00 mv r17,r13 8003dd0: b8 80 b0 00 mv r22,r4 8003dd4: e0 00 00 2e bi 8003e8c <_Heap_Walk+0x2a0>
RTEMS_INLINE_ROUTINE bool _Heap_Is_block_in_heap( const Heap_Control *heap, const Heap_Block *block ) { return (uintptr_t) block >= (uintptr_t) heap->first_block
8003dd8: 29 a1 00 20 lw r1,(r13+32) 8003ddc: 34 0f 00 00 mvi r15,0
8003de0: 52 c1 00 02 bgeu r22,r1,8003de8 <_Heap_Walk+0x1fc>
8003de4: e0 00 00 03 bi 8003df0 <_Heap_Walk+0x204> 8003de8: 29 af 00 24 lw r15,(r13+36) 8003dec: f1 f6 78 00 cmpgeu r15,r15,r22
); return false; } if (
8003df0: 36 c1 00 08 addi r1,r22,8 8003df4: ba 80 10 00 mv r2,r20
const Heap_Block *const first_free_block = _Heap_Free_list_first( heap ); const Heap_Block *prev_block = free_list_tail; const Heap_Block *free_block = first_free_block; while ( free_block != free_list_tail ) { if ( !_Heap_Is_block_in_heap( heap, free_block ) ) { 8003df8: 5d e0 00 06 bne r15,r0,8003e10 <_Heap_Walk+0x224> (*printer)(
8003dfc: 78 03 08 01 mvhi r3,0x801 8003e00: ba c0 20 00 mv r4,r22 8003e04: b9 c0 08 00 mv r1,r14 8003e08: 38 63 b6 88 ori r3,r3,0xb688 8003e0c: e0 00 00 8f bi 8004048 <_Heap_Walk+0x45c>
); return false; } if (
8003e10: fb ff f3 ac calli 8000cc0 <__umodsi3>
8003e14: 44 20 00 06 be r1,r0,8003e2c <_Heap_Walk+0x240> !_Heap_Is_aligned( _Heap_Alloc_area_of_block( free_block ), page_size ) ) { (*printer)(
8003e18: 78 03 08 01 mvhi r3,0x801 8003e1c: ba c0 20 00 mv r4,r22 8003e20: b9 c0 08 00 mv r1,r14 8003e24: 38 63 b6 a8 ori r3,r3,0xb6a8 8003e28: e0 00 00 b8 bi 8004108 <_Heap_Walk+0x51c>
); return false; } if ( _Heap_Is_used( free_block ) ) {
8003e2c: 2a c3 00 04 lw r3,(r22+4) 8003e30: a0 75 18 00 and r3,r3,r21 8003e34: b6 c3 18 00 add r3,r22,r3 8003e38: 28 70 00 04 lw r16,(r3+4) 8003e3c: 22 10 00 01 andi r16,r16,0x1
8003e40: 46 01 00 07 be r16,r1,8003e5c <_Heap_Walk+0x270> (*printer)(
8003e44: 78 03 08 01 mvhi r3,0x801 8003e48: b8 20 78 00 mv r15,r1 8003e4c: ba c0 20 00 mv r4,r22 8003e50: b9 c0 08 00 mv r1,r14 8003e54: 38 63 b6 d8 ori r3,r3,0xb6d8 8003e58: e0 00 00 7c bi 8004048 <_Heap_Walk+0x45c>
); return false; } if ( free_block->prev != prev_block ) {
8003e5c: 2a c5 00 0c lw r5,(r22+12)
8003e60: 44 b1 00 09 be r5,r17,8003e84 <_Heap_Walk+0x298> (*printer)(
8003e64: 78 03 08 01 mvhi r3,0x801 8003e68: ba c0 20 00 mv r4,r22 8003e6c: b9 c0 08 00 mv r1,r14 8003e70: 38 63 b6 f4 ori r3,r3,0xb6f4 8003e74: 34 02 00 01 mvi r2,1 8003e78: d9 80 00 00 call r12 8003e7c: ba 00 08 00 mv r1,r16 8003e80: e0 00 00 8b bi 80040ac <_Heap_Walk+0x4c0>
return false; } prev_block = free_block; free_block = free_block->next;
8003e84: ba c0 88 00 mv r17,r22 8003e88: 2a d6 00 08 lw r22,(r22+8)
const Heap_Block *const free_list_tail = _Heap_Free_list_tail( heap ); const Heap_Block *const first_free_block = _Heap_Free_list_first( heap ); const Heap_Block *prev_block = free_list_tail; const Heap_Block *free_block = first_free_block; while ( free_block != free_list_tail ) { 8003e8c: 5e cd ff d3 bne r22,r13,8003dd8 <_Heap_Walk+0x1ec>
8003e90: e0 00 00 7a bi 8004078 <_Heap_Walk+0x48c>
- HEAP_BLOCK_HEADER_SIZE); } RTEMS_INLINE_ROUTINE uintptr_t _Heap_Block_size( const Heap_Block *block ) { return block->size_and_flag & ~HEAP_PREV_BLOCK_USED;
8003e94: 29 6f 00 04 lw r15,(r11+4)
uintptr_t const block_size = _Heap_Block_size( block ); bool const prev_used = _Heap_Is_prev_used( block ); Heap_Block *const next_block = _Heap_Block_at( block, block_size ); uintptr_t const next_block_begin = (uintptr_t) next_block; if ( prev_used ) {
8003e98: 21 e2 00 01 andi r2,r15,0x1 8003e9c: a1 fb 78 00 and r15,r15,fp
RTEMS_INLINE_ROUTINE Heap_Block *_Heap_Block_at( const Heap_Block *block, uintptr_t offset ) { return (Heap_Block *) ((uintptr_t) block + offset);
8003ea0: b5 6f 80 00 add r16,r11,r15
8003ea4: 44 40 00 09 be r2,r0,8003ec8 <_Heap_Walk+0x2dc> (*printer)(
8003ea8: 78 03 08 01 mvhi r3,0x801 8003eac: b9 c0 08 00 mv r1,r14 8003eb0: 34 02 00 00 mvi r2,0 8003eb4: 38 63 b7 28 ori r3,r3,0xb728 8003eb8: b9 60 20 00 mv r4,r11 8003ebc: b9 e0 28 00 mv r5,r15 8003ec0: d9 80 00 00 call r12 8003ec4: e0 00 00 08 bi 8003ee4 <_Heap_Walk+0x2f8>
"block 0x%08x: size %u\n", block, block_size ); } else { (*printer)(
8003ec8: 29 66 00 00 lw r6,(r11+0) 8003ecc: 78 03 08 01 mvhi r3,0x801 8003ed0: b9 c0 08 00 mv r1,r14 8003ed4: 38 63 b7 40 ori r3,r3,0xb740 8003ed8: b9 60 20 00 mv r4,r11 8003edc: b9 e0 28 00 mv r5,r15 8003ee0: d9 80 00 00 call r12
RTEMS_INLINE_ROUTINE bool _Heap_Is_block_in_heap( const Heap_Control *heap, const Heap_Block *block ) { return (uintptr_t) block >= (uintptr_t) heap->first_block
8003ee4: 29 a1 00 20 lw r1,(r13+32)
8003ee8: 52 01 00 03 bgeu r16,r1,8003ef4 <_Heap_Walk+0x308> <== ALWAYS TAKEN
8003eec: 34 11 00 00 mvi r17,0 <== NOT EXECUTED 8003ef0: e0 00 00 03 bi 8003efc <_Heap_Walk+0x310> <== NOT EXECUTED
8003ef4: 29 b1 00 24 lw r17,(r13+36) 8003ef8: f2 30 88 00 cmpgeu r17,r17,r16
block_size, block->prev_size ); } if ( !_Heap_Is_block_in_heap( heap, next_block ) ) { 8003efc: 5e 20 00 05 bne r17,r0,8003f10 <_Heap_Walk+0x324> (*printer)(
8003f00: 78 03 08 01 mvhi r3,0x801 8003f04: b9 c0 08 00 mv r1,r14 8003f08: 38 63 b7 68 ori r3,r3,0xb768 8003f0c: e0 00 00 1c bi 8003f7c <_Heap_Walk+0x390>
); return false; } if ( !_Heap_Is_aligned( block_size, page_size ) ) {
8003f10: b9 e0 08 00 mv r1,r15 8003f14: bb 20 10 00 mv r2,r25 8003f18: fb ff f3 6a calli 8000cc0 <__umodsi3> 8003f1c: b8 20 88 00 mv r17,r1
8003f20: 44 20 00 09 be r1,r0,8003f44 <_Heap_Walk+0x358> (*printer)(
8003f24: 78 03 08 01 mvhi r3,0x801 8003f28: b9 c0 08 00 mv r1,r14 8003f2c: 38 63 b7 98 ori r3,r3,0xb798 8003f30: b9 60 20 00 mv r4,r11 8003f34: b9 e0 28 00 mv r5,r15 8003f38: 34 02 00 01 mvi r2,1 8003f3c: d9 80 00 00 call r12 8003f40: e0 00 00 74 bi 8004110 <_Heap_Walk+0x524>
); return false; } if ( block_size < min_block_size ) { 8003f44: 51 f3 00 0a bgeu r15,r19,8003f6c <_Heap_Walk+0x380> (*printer)(
8003f48: 78 03 08 01 mvhi r3,0x801 8003f4c: b9 c0 08 00 mv r1,r14 8003f50: 38 63 b7 c8 ori r3,r3,0xb7c8 8003f54: b9 60 20 00 mv r4,r11 8003f58: b9 e0 28 00 mv r5,r15 8003f5c: ba 60 30 00 mv r6,r19 8003f60: 34 02 00 01 mvi r2,1 8003f64: d9 80 00 00 call r12 8003f68: e0 00 00 09 bi 8003f8c <_Heap_Walk+0x3a0>
); return false; } if ( next_block_begin <= block_begin ) { 8003f6c: 56 0b 00 0a bgu r16,r11,8003f94 <_Heap_Walk+0x3a8> (*printer)(
8003f70: 78 03 08 01 mvhi r3,0x801 8003f74: b9 c0 08 00 mv r1,r14 8003f78: 38 63 b7 f4 ori r3,r3,0xb7f4 8003f7c: b9 60 20 00 mv r4,r11 8003f80: ba 00 28 00 mv r5,r16 8003f84: 34 02 00 01 mvi r2,1 8003f88: d9 80 00 00 call r12 8003f8c: ba 20 08 00 mv r1,r17
"block 0x%08x: next block 0x%08x is not a successor\n", block, next_block ); return false;
8003f90: e0 00 00 47 bi 80040ac <_Heap_Walk+0x4c0>
} if ( !_Heap_Is_prev_used( next_block ) ) {
8003f94: 2a 03 00 04 lw r3,(r16+4) 8003f98: 20 63 00 01 andi r3,r3,0x1
8003f9c: 5c 60 00 35 bne r3,r0,8004070 <_Heap_Walk+0x484> block->size_and_flag = size | flag; } RTEMS_INLINE_ROUTINE bool _Heap_Is_prev_used( const Heap_Block *block ) { return block->size_and_flag & HEAP_PREV_BLOCK_USED;
8003fa0: 29 6f 00 04 lw r15,(r11+4)
Heap_Block *const last_free_block = _Heap_Free_list_last( heap ); bool const prev_used = _Heap_Is_prev_used( block ); uintptr_t const block_size = _Heap_Block_size( block ); Heap_Block *const next_block = _Heap_Block_at( block, block_size ); (*printer)(
8003fa4: 29 65 00 0c lw r5,(r11+12)
return &heap->free_list; } RTEMS_INLINE_ROUTINE Heap_Block *_Heap_Free_list_first( Heap_Control *heap ) { return _Heap_Free_list_head(heap)->next;
8003fa8: 29 a1 00 08 lw r1,(r13+8)
- HEAP_BLOCK_HEADER_SIZE); } RTEMS_INLINE_ROUTINE uintptr_t _Heap_Block_size( const Heap_Block *block ) { return block->size_and_flag & ~HEAP_PREV_BLOCK_USED;
8003fac: a1 fb 88 00 and r17,r15,fp
return _Heap_Free_list_head(heap)->next; } RTEMS_INLINE_ROUTINE Heap_Block *_Heap_Free_list_last( Heap_Control *heap ) { return _Heap_Free_list_tail(heap)->prev;
8003fb0: 29 a3 00 0c lw r3,(r13+12)
RTEMS_INLINE_ROUTINE Heap_Block *_Heap_Block_at( const Heap_Block *block, uintptr_t offset ) { return (Heap_Block *) ((uintptr_t) block + offset);
8003fb4: b5 71 50 00 add r10,r11,r17
return &heap->free_list; } RTEMS_INLINE_ROUTINE Heap_Block *_Heap_Free_list_first( Heap_Control *heap ) { return _Heap_Free_list_head(heap)->next;
8003fb8: ba a0 30 00 mv r6,r21
8003fbc: 44 a1 00 04 be r5,r1,8003fcc <_Heap_Walk+0x3e0> "block 0x%08x: prev 0x%08x%s, next 0x%08x%s\n", block, block->prev, block->prev == first_free_block ? " (= first)" : (block->prev == free_list_head ? " (= head)" : ""),
8003fc0: ba 80 30 00 mv r6,r20
8003fc4: 5c ad 00 02 bne r5,r13,8003fcc <_Heap_Walk+0x3e0>
8003fc8: ba c0 30 00 mv r6,r22
Heap_Block *const last_free_block = _Heap_Free_list_last( heap ); bool const prev_used = _Heap_Is_prev_used( block ); uintptr_t const block_size = _Heap_Block_size( block ); Heap_Block *const next_block = _Heap_Block_at( block, block_size ); (*printer)(
8003fcc: 29 67 00 08 lw r7,(r11+8) 8003fd0: ba e0 40 00 mv r8,r23
8003fd4: 44 e3 00 04 be r7,r3,8003fe4 <_Heap_Walk+0x3f8> " (= first)" : (block->prev == free_list_head ? " (= head)" : ""), block->next, block->next == last_free_block ? " (= last)" : (block->next == free_list_tail ? " (= tail)" : "")
8003fd8: ba 80 40 00 mv r8,r20
8003fdc: 5c ed 00 02 bne r7,r13,8003fe4 <_Heap_Walk+0x3f8>
8003fe0: bb 00 40 00 mv r8,r24
Heap_Block *const last_free_block = _Heap_Free_list_last( heap ); bool const prev_used = _Heap_Is_prev_used( block ); uintptr_t const block_size = _Heap_Block_size( block ); Heap_Block *const next_block = _Heap_Block_at( block, block_size ); (*printer)(
8003fe4: 78 03 08 01 mvhi r3,0x801 8003fe8: 5b 8a 00 54 sw (sp+84),r10 8003fec: b9 c0 08 00 mv r1,r14 8003ff0: 34 02 00 00 mvi r2,0 8003ff4: 38 63 b8 58 ori r3,r3,0xb858 8003ff8: b9 60 20 00 mv r4,r11 8003ffc: d9 80 00 00 call r12
block->next == last_free_block ? " (= last)" : (block->next == free_list_tail ? " (= tail)" : "") ); if ( block_size != next_block->prev_size ) {
8004000: 2b 8a 00 54 lw r10,(sp+84) 8004004: 29 46 00 00 lw r6,(r10+0)
8004008: 46 26 00 0a be r17,r6,8004030 <_Heap_Walk+0x444> (*printer)(
800400c: 78 03 08 01 mvhi r3,0x801 8004010: b9 c0 08 00 mv r1,r14 8004014: 38 63 b8 84 ori r3,r3,0xb884 8004018: b9 60 20 00 mv r4,r11 800401c: ba 20 28 00 mv r5,r17 8004020: b9 40 38 00 mv r7,r10 8004024: 34 02 00 01 mvi r2,1 8004028: d9 80 00 00 call r12 800402c: e0 00 00 39 bi 8004110 <_Heap_Walk+0x524>
); return false; } if ( !prev_used ) {
8004030: 21 ef 00 01 andi r15,r15,0x1
8004034: 5d e0 00 09 bne r15,r0,8004058 <_Heap_Walk+0x46c> (*printer)(
8004038: 78 03 08 01 mvhi r3,0x801 800403c: b9 c0 08 00 mv r1,r14 8004040: 38 63 b8 c0 ori r3,r3,0xb8c0 8004044: b9 60 20 00 mv r4,r11 8004048: 34 02 00 01 mvi r2,1 800404c: d9 80 00 00 call r12 8004050: b9 e0 08 00 mv r1,r15 8004054: e0 00 00 16 bi 80040ac <_Heap_Walk+0x4c0> 8004058: 29 a3 00 08 lw r3,(r13+8) 800405c: e0 00 00 03 bi 8004068 <_Heap_Walk+0x47c>
{ const Heap_Block *const free_list_tail = _Heap_Free_list_tail( heap ); const Heap_Block *free_block = _Heap_Free_list_first( heap ); while ( free_block != free_list_tail ) { if ( free_block == block ) { 8004060: 44 6b 00 04 be r3,r11,8004070 <_Heap_Walk+0x484> return true; } free_block = free_block->next;
8004064: 28 63 00 08 lw r3,(r3+8)
) { const Heap_Block *const free_list_tail = _Heap_Free_list_tail( heap ); const Heap_Block *free_block = _Heap_Free_list_first( heap ); while ( free_block != free_list_tail ) { 8004068: 5c 6d ff fe bne r3,r13,8004060 <_Heap_Walk+0x474>
800406c: e0 00 00 23 bi 80040f8 <_Heap_Walk+0x50c> 8004070: ba 00 58 00 mv r11,r16 8004074: e0 00 00 0c bi 80040a4 <_Heap_Walk+0x4b8>
" (= first)" : (block->prev == free_list_head ? " (= head)" : ""), block->next, block->next == last_free_block ? " (= last)" : (block->next == free_list_tail ? " (= tail)" : "")
8004078: 78 18 08 01 mvhi r24,0x801 800407c: 78 14 08 01 mvhi r20,0x801
Heap_Block *const last_free_block = _Heap_Free_list_last( heap ); bool const prev_used = _Heap_Is_prev_used( block ); uintptr_t const block_size = _Heap_Block_size( block ); Heap_Block *const next_block = _Heap_Block_at( block, block_size ); (*printer)(
8004080: 78 17 08 01 mvhi r23,0x801
"block 0x%08x: prev 0x%08x%s, next 0x%08x%s\n", block, block->prev, block->prev == first_free_block ? " (= first)" : (block->prev == free_list_head ? " (= head)" : ""),
8004084: 78 16 08 01 mvhi r22,0x801 8004088: 78 15 08 01 mvhi r21,0x801
block->next, block->next == last_free_block ? " (= last)" : (block->next == free_list_tail ? " (= tail)" : "")
800408c: 3b 18 b8 4c ori r24,r24,0xb84c 8004090: 3a 94 b8 bc ori r20,r20,0xb8bc
Heap_Block *const last_free_block = _Heap_Free_list_last( heap ); bool const prev_used = _Heap_Is_prev_used( block ); uintptr_t const block_size = _Heap_Block_size( block ); Heap_Block *const next_block = _Heap_Block_at( block, block_size ); (*printer)(
8004094: 3a f7 b8 40 ori r23,r23,0xb840
"block 0x%08x: prev 0x%08x%s, next 0x%08x%s\n", block, block->prev, block->prev == first_free_block ? " (= first)" : (block->prev == free_list_head ? " (= head)" : ""),
8004098: 3a d6 b8 34 ori r22,r22,0xb834 800409c: 3a b5 b8 28 ori r21,r21,0xb828
- HEAP_BLOCK_HEADER_SIZE); } RTEMS_INLINE_ROUTINE uintptr_t _Heap_Block_size( const Heap_Block *block ) { return block->size_and_flag & ~HEAP_PREV_BLOCK_USED;
80040a0: 34 1b ff fe mvi fp,-2
if ( !_Heap_Walk_check_control( source, printer, heap ) ) { return false; } while ( block != last_block ) { 80040a4: 5d 72 ff 7c bne r11,r18,8003e94 <_Heap_Walk+0x2a8>
80040a8: 34 01 00 01 mvi r1,1
block = next_block; } return true; }
80040ac: 2b 9d 00 10 lw ra,(sp+16) 80040b0: 2b 8b 00 50 lw r11,(sp+80) 80040b4: 2b 8c 00 4c lw r12,(sp+76) 80040b8: 2b 8d 00 48 lw r13,(sp+72) 80040bc: 2b 8e 00 44 lw r14,(sp+68) 80040c0: 2b 8f 00 40 lw r15,(sp+64) 80040c4: 2b 90 00 3c lw r16,(sp+60) 80040c8: 2b 91 00 38 lw r17,(sp+56) 80040cc: 2b 92 00 34 lw r18,(sp+52) 80040d0: 2b 93 00 30 lw r19,(sp+48) 80040d4: 2b 94 00 2c lw r20,(sp+44) 80040d8: 2b 95 00 28 lw r21,(sp+40) 80040dc: 2b 96 00 24 lw r22,(sp+36) 80040e0: 2b 97 00 20 lw r23,(sp+32) 80040e4: 2b 98 00 1c lw r24,(sp+28) 80040e8: 2b 99 00 18 lw r25,(sp+24) 80040ec: 2b 9b 00 14 lw fp,(sp+20) 80040f0: 37 9c 00 54 addi sp,sp,84 80040f4: c3 a0 00 00 ret
return false; } if ( !_Heap_Walk_is_in_free_list( heap, block ) ) { (*printer)(
80040f8: 78 03 08 01 mvhi r3,0x801 80040fc: b9 c0 08 00 mv r1,r14 8004100: 38 63 b8 f0 ori r3,r3,0xb8f0 8004104: b9 60 20 00 mv r4,r11 8004108: 34 02 00 01 mvi r2,1 800410c: d9 80 00 00 call r12 8004110: 34 01 00 00 mvi r1,0 8004114: e3 ff ff e6 bi 80040ac <_Heap_Walk+0x4c0>
08002708 <_IO_Manager_initialization>: * workspace. * */ void _IO_Manager_initialization(void) {
8002708: 37 9c ff e8 addi sp,sp,-24 800270c: 5b 8b 00 18 sw (sp+24),r11 8002710: 5b 8c 00 14 sw (sp+20),r12 8002714: 5b 8d 00 10 sw (sp+16),r13 8002718: 5b 8e 00 0c sw (sp+12),r14 800271c: 5b 8f 00 08 sw (sp+8),r15 8002720: 5b 9d 00 04 sw (sp+4),ra
uint32_t index; rtems_driver_address_table *driver_table; uint32_t drivers_in_table; uint32_t number_of_drivers; driver_table = Configuration.Device_driver_table;
8002724: 78 01 08 01 mvhi r1,0x801 8002728: 38 21 c0 c4 ori r1,r1,0xc0c4
drivers_in_table = Configuration.number_of_device_drivers; number_of_drivers = Configuration.maximum_drivers;
800272c: 28 2b 00 2c lw r11,(r1+44)
rtems_driver_address_table *driver_table; uint32_t drivers_in_table; uint32_t number_of_drivers; driver_table = Configuration.Device_driver_table; drivers_in_table = Configuration.number_of_device_drivers;
8002730: 28 2d 00 30 lw r13,(r1+48)
uint32_t index; rtems_driver_address_table *driver_table; uint32_t drivers_in_table; uint32_t number_of_drivers; driver_table = Configuration.Device_driver_table;
8002734: 28 2f 00 34 lw r15,(r1+52)
/* * If the user claims there are less drivers than are actually in * the table, then let's just go with the table's count. */ if ( number_of_drivers <= drivers_in_table ) 8002738: 51 ab 00 02 bgeu r13,r11,8002740 <_IO_Manager_initialization+0x38> /* * If the maximum number of driver is the same as the number in the * table, then we do not have to copy the driver table. They can't * register any dynamically. */ if ( number_of_drivers == drivers_in_table ) {
800273c: 5d 6d 00 08 bne r11,r13,800275c <_IO_Manager_initialization+0x54><== ALWAYS TAKEN
_IO_Driver_address_table = driver_table;
8002740: 78 02 08 01 mvhi r2,0x801
_IO_Number_of_drivers = number_of_drivers;
8002744: 78 01 08 01 mvhi r1,0x801
* If the maximum number of driver is the same as the number in the * table, then we do not have to copy the driver table. They can't * register any dynamically. */ if ( number_of_drivers == drivers_in_table ) { _IO_Driver_address_table = driver_table;
8002748: 38 42 ca 68 ori r2,r2,0xca68
_IO_Number_of_drivers = number_of_drivers;
800274c: 38 21 ca 64 ori r1,r1,0xca64
* If the maximum number of driver is the same as the number in the * table, then we do not have to copy the driver table. They can't * register any dynamically. */ if ( number_of_drivers == drivers_in_table ) { _IO_Driver_address_table = driver_table;
8002750: 58 4f 00 00 sw (r2+0),r15
_IO_Number_of_drivers = number_of_drivers;
8002754: 58 2d 00 00 sw (r1+0),r13
return;
8002758: e0 00 00 1b bi 80027c4 <_IO_Manager_initialization+0xbc>
* have to allocate a new driver table and copy theirs to it. */ _IO_Driver_address_table = (rtems_driver_address_table *) _Workspace_Allocate_or_fatal_error( sizeof( rtems_driver_address_table ) * ( number_of_drivers )
800275c: b5 6b 08 00 add r1,r11,r11 8002760: 34 02 00 03 mvi r2,3 8002764: b4 2b 08 00 add r1,r1,r11 8002768: fb ff f6 a2 calli 80001f0 <__ashlsi3> 800276c: b8 20 60 00 mv r12,r1
/* * The application requested extra slots in the driver table, so we * have to allocate a new driver table and copy theirs to it. */ _IO_Driver_address_table = (rtems_driver_address_table *)
8002770: f8 00 0c 56 calli 80058c8 <_Workspace_Allocate_or_fatal_error> 8002774: 78 04 08 01 mvhi r4,0x801
_Workspace_Allocate_or_fatal_error( sizeof( rtems_driver_address_table ) * ( number_of_drivers ) ); _IO_Number_of_drivers = number_of_drivers;
8002778: 78 05 08 01 mvhi r5,0x801
/* * The application requested extra slots in the driver table, so we * have to allocate a new driver table and copy theirs to it. */ _IO_Driver_address_table = (rtems_driver_address_table *)
800277c: 38 84 ca 68 ori r4,r4,0xca68
_Workspace_Allocate_or_fatal_error( sizeof( rtems_driver_address_table ) * ( number_of_drivers ) ); _IO_Number_of_drivers = number_of_drivers;
8002780: 38 a5 ca 64 ori r5,r5,0xca64
memset(
8002784: 34 02 00 00 mvi r2,0 8002788: b9 80 18 00 mv r3,r12
_IO_Driver_address_table = (rtems_driver_address_table *) _Workspace_Allocate_or_fatal_error( sizeof( rtems_driver_address_table ) * ( number_of_drivers ) ); _IO_Number_of_drivers = number_of_drivers;
800278c: 58 ab 00 00 sw (r5+0),r11
_IO_Driver_address_table, 0, sizeof( rtems_driver_address_table ) * ( number_of_drivers ) ); for ( index = 0 ; index < drivers_in_table ; index++ ) _IO_Driver_address_table[index] = driver_table[index];
8002790: b8 40 60 00 mv r12,r2
/* * The application requested extra slots in the driver table, so we * have to allocate a new driver table and copy theirs to it. */ _IO_Driver_address_table = (rtems_driver_address_table *)
8002794: 58 81 00 00 sw (r4+0),r1 8002798: b8 20 70 00 mv r14,r1
_IO_Driver_address_table, 0, sizeof( rtems_driver_address_table ) * ( number_of_drivers ) ); for ( index = 0 ; index < drivers_in_table ; index++ ) _IO_Driver_address_table[index] = driver_table[index];
800279c: b9 80 58 00 mv r11,r12
_Workspace_Allocate_or_fatal_error( sizeof( rtems_driver_address_table ) * ( number_of_drivers ) ); _IO_Number_of_drivers = number_of_drivers; memset(
80027a0: f8 00 24 e0 calli 800bb20 <memset>
_IO_Driver_address_table, 0, sizeof( rtems_driver_address_table ) * ( number_of_drivers ) ); for ( index = 0 ; index < drivers_in_table ; index++ )
80027a4: e0 00 00 04 bi 80027b4 <_IO_Manager_initialization+0xac>
_IO_Driver_address_table[index] = driver_table[index];
80027a8: f8 00 24 80 calli 800b9a8 <memcpy>
memset( _IO_Driver_address_table, 0, sizeof( rtems_driver_address_table ) * ( number_of_drivers ) ); for ( index = 0 ; index < drivers_in_table ; index++ )
80027ac: 35 6b 00 01 addi r11,r11,1 80027b0: 35 8c 00 18 addi r12,r12,24
_IO_Driver_address_table[index] = driver_table[index];
80027b4: b5 cc 08 00 add r1,r14,r12 80027b8: b5 ec 10 00 add r2,r15,r12 80027bc: 34 03 00 18 mvi r3,24
memset( _IO_Driver_address_table, 0, sizeof( rtems_driver_address_table ) * ( number_of_drivers ) ); for ( index = 0 ; index < drivers_in_table ; index++ ) 80027c0: 55 ab ff fa bgu r13,r11,80027a8 <_IO_Manager_initialization+0xa0> _IO_Driver_address_table[index] = driver_table[index]; number_of_drivers = drivers_in_table; }
80027c4: 2b 9d 00 04 lw ra,(sp+4) 80027c8: 2b 8b 00 18 lw r11,(sp+24) 80027cc: 2b 8c 00 14 lw r12,(sp+20) 80027d0: 2b 8d 00 10 lw r13,(sp+16) 80027d4: 2b 8e 00 0c lw r14,(sp+12) 80027d8: 2b 8f 00 08 lw r15,(sp+8) 80027dc: 37 9c 00 18 addi sp,sp,24 80027e0: c3 a0 00 00 ret
080033d8 <_ISR_Handler_initialization>: * * Output parameters: NONE */ void _ISR_Handler_initialization( void ) {
80033d8: 37 9c ff f4 addi sp,sp,-12 80033dc: 5b 8b 00 0c sw (sp+12),r11 80033e0: 5b 8c 00 08 sw (sp+8),r12 80033e4: 5b 9d 00 04 sw (sp+4),ra
_ISR_Signals_to_thread_executing = false;
80033e8: 78 03 08 01 mvhi r3,0x801
_ISR_Nest_level = 0;
80033ec: 78 02 08 01 mvhi r2,0x801
* Output parameters: NONE */ void _ISR_Handler_initialization( void ) { _ISR_Signals_to_thread_executing = false;
80033f0: 34 04 00 00 mvi r4,0 80033f4: 38 63 c9 78 ori r3,r3,0xc978
_ISR_Nest_level = 0;
80033f8: 38 42 c8 bc ori r2,r2,0xc8bc
* Output parameters: NONE */ void _ISR_Handler_initialization( void ) { _ISR_Signals_to_thread_executing = false;
80033fc: 30 64 00 00 sb (r3+0),r4
_ISR_Nest_level = 0;
8003400: 58 44 00 00 sw (r2+0),r4
#if (CPU_SIMPLE_VECTORED_INTERRUPTS == TRUE) _ISR_Vector_table = _Workspace_Allocate_or_fatal_error(
8003404: 34 01 00 80 mvi r1,128
void _ISR_Handler_initialization( void ) { _ISR_Signals_to_thread_executing = false; _ISR_Nest_level = 0;
8003408: b8 80 60 00 mv r12,r4
#if (CPU_SIMPLE_VECTORED_INTERRUPTS == TRUE) _ISR_Vector_table = _Workspace_Allocate_or_fatal_error(
800340c: f8 00 09 2f calli 80058c8 <_Workspace_Allocate_or_fatal_error>
_CPU_Initialize_vectors(); #if ( CPU_ALLOCATE_INTERRUPT_STACK == TRUE ) if ( !_Stack_Is_enough(Configuration.interrupt_stack_size) )
8003410: 78 0b 08 01 mvhi r11,0x801 8003414: 78 02 08 01 mvhi r2,0x801 8003418: 38 42 c0 bc ori r2,r2,0xc0bc 800341c: 39 6b c0 c4 ori r11,r11,0xc0c4 8003420: 28 44 00 00 lw r4,(r2+0) 8003424: 29 63 00 1c lw r3,(r11+28)
_ISR_Signals_to_thread_executing = false; _ISR_Nest_level = 0; #if (CPU_SIMPLE_VECTORED_INTERRUPTS == TRUE) _ISR_Vector_table = _Workspace_Allocate_or_fatal_error(
8003428: 78 02 08 01 mvhi r2,0x801 800342c: 38 42 c8 a0 ori r2,r2,0xc8a0 8003430: 58 41 00 00 sw (r2+0),r1
_CPU_Initialize_vectors(); #if ( CPU_ALLOCATE_INTERRUPT_STACK == TRUE ) if ( !_Stack_Is_enough(Configuration.interrupt_stack_size) )
8003434: 50 64 00 05 bgeu r3,r4,8003448 <_ISR_Handler_initialization+0x70><== ALWAYS TAKEN
_Internal_error_Occurred(
8003438: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 800343c: 34 02 00 01 mvi r2,1 <== NOT EXECUTED 8003440: 34 03 00 05 mvi r3,5 <== NOT EXECUTED 8003444: fb ff ff d6 calli 800339c <_Internal_error_Occurred> <== NOT EXECUTED
INTERNAL_ERROR_CORE, true, INTERNAL_ERROR_INTERRUPT_STACK_TOO_SMALL ); _CPU_Interrupt_stack_low = _Workspace_Allocate_or_fatal_error(
8003448: b8 60 08 00 mv r1,r3 800344c: f8 00 09 1f calli 80058c8 <_Workspace_Allocate_or_fatal_error>
Configuration.interrupt_stack_size ); _CPU_Interrupt_stack_high = _Addresses_Add_offset(
8003450: 29 64 00 1c lw r4,(r11+28)
INTERNAL_ERROR_CORE, true, INTERNAL_ERROR_INTERRUPT_STACK_TOO_SMALL ); _CPU_Interrupt_stack_low = _Workspace_Allocate_or_fatal_error(
8003454: 78 02 08 01 mvhi r2,0x801
Configuration.interrupt_stack_size ); _CPU_Interrupt_stack_high = _Addresses_Add_offset(
8003458: 78 03 08 01 mvhi r3,0x801 800345c: b4 24 20 00 add r4,r1,r4
INTERNAL_ERROR_CORE, true, INTERNAL_ERROR_INTERRUPT_STACK_TOO_SMALL ); _CPU_Interrupt_stack_low = _Workspace_Allocate_or_fatal_error(
8003460: 38 42 c8 34 ori r2,r2,0xc834
Configuration.interrupt_stack_size ); _CPU_Interrupt_stack_high = _Addresses_Add_offset(
8003464: 38 63 c7 b8 ori r3,r3,0xc7b8 8003468: 58 64 00 00 sw (r3+0),r4
INTERNAL_ERROR_CORE, true, INTERNAL_ERROR_INTERRUPT_STACK_TOO_SMALL ); _CPU_Interrupt_stack_low = _Workspace_Allocate_or_fatal_error(
800346c: 58 41 00 00 sw (r2+0),r1
#if ( CPU_HAS_HARDWARE_INTERRUPT_STACK == TRUE ) _CPU_Install_interrupt_stack(); #endif }
8003470: 2b 9d 00 04 lw ra,(sp+4) 8003474: 2b 8b 00 0c lw r11,(sp+12) 8003478: 2b 8c 00 08 lw r12,(sp+8) 800347c: 37 9c 00 0c addi sp,sp,12 8003480: c3 a0 00 00 ret
08003484 <_Objects_Allocate>: */ Objects_Control *_Objects_Allocate( Objects_Information *information ) {
8003484: 37 9c ff ec addi sp,sp,-20 8003488: 5b 8b 00 14 sw (sp+20),r11 800348c: 5b 8c 00 10 sw (sp+16),r12 8003490: 5b 8d 00 0c sw (sp+12),r13 8003494: 5b 8e 00 08 sw (sp+8),r14 8003498: 5b 9d 00 04 sw (sp+4),ra 800349c: b8 20 58 00 mv r11,r1
* If the application is using the optional manager stubs and * still attempts to create the object, the information block * should be all zeroed out because it is in the BSS. So let's * check that code for this manager is even present. */ if ( information->size == 0 )
80034a0: 28 21 00 18 lw r1,(r1+24) 80034a4: b8 20 60 00 mv r12,r1
80034a8: 44 20 00 20 be r1,r0,8003528 <_Objects_Allocate+0xa4> <== NEVER TAKEN
/* * OK. The manager should be initialized and configured to have objects. * With any luck, it is safe to attempt to allocate an object. */ the_object = (Objects_Control *) _Chain_Get( &information->Inactive );
80034ac: 35 6d 00 20 addi r13,r11,32 80034b0: b9 a0 08 00 mv r1,r13 80034b4: f8 00 12 f6 calli 800808c <_Chain_Get> 80034b8: b8 20 60 00 mv r12,r1
if ( information->auto_extend ) {
80034bc: 41 61 00 12 lbu r1,(r11+18)
/* * OK. The manager should be initialized and configured to have objects. * With any luck, it is safe to attempt to allocate an object. */ the_object = (Objects_Control *) _Chain_Get( &information->Inactive );
80034c0: b9 80 70 00 mv r14,r12
if ( information->auto_extend ) { 80034c4: 44 20 00 19 be r1,r0,8003528 <_Objects_Allocate+0xa4> /* * If the list is empty then we are out of objects and need to * extend information base. */ if ( !the_object ) { 80034c8: 5d 80 00 07 bne r12,r0,80034e4 <_Objects_Allocate+0x60> _Objects_Extend_information( information );
80034cc: b9 60 08 00 mv r1,r11 80034d0: f8 00 00 1e calli 8003548 <_Objects_Extend_information>
the_object = (Objects_Control *) _Chain_Get( &information->Inactive );
80034d4: b9 a0 08 00 mv r1,r13 80034d8: f8 00 12 ed calli 800808c <_Chain_Get> 80034dc: b8 20 60 00 mv r12,r1
} if ( the_object ) { 80034e0: 44 2e 00 12 be r1,r14,8003528 <_Objects_Allocate+0xa4> uint32_t block; block = (uint32_t) _Objects_Get_index( the_object->id ) -
80034e4: 29 83 00 08 lw r3,(r12+8) 80034e8: 29 61 00 08 lw r1,(r11+8)
_Objects_Get_index( information->minimum_id ); block /= information->allocation_size; information->inactive_per_block[ block ]--;
80034ec: 2d 62 00 14 lhu r2,(r11+20)
} if ( the_object ) { uint32_t block; block = (uint32_t) _Objects_Get_index( the_object->id ) -
80034f0: 20 63 ff ff andi r3,r3,0xffff 80034f4: 20 21 ff ff andi r1,r1,0xffff
_Objects_Get_index( information->minimum_id ); block /= information->allocation_size; information->inactive_per_block[ block ]--;
80034f8: c8 61 08 00 sub r1,r3,r1 80034fc: f8 00 56 e9 calli 80190a0 <__udivsi3> 8003500: 34 02 00 02 mvi r2,2 8003504: fb ff f3 3b calli 80001f0 <__ashlsi3> 8003508: 29 62 00 30 lw r2,(r11+48)
information->inactive--;
800350c: 2d 63 00 2c lhu r3,(r11+44)
block = (uint32_t) _Objects_Get_index( the_object->id ) - _Objects_Get_index( information->minimum_id ); block /= information->allocation_size; information->inactive_per_block[ block ]--;
8003510: b4 41 08 00 add r1,r2,r1 8003514: 28 22 00 00 lw r2,(r1+0)
information->inactive--;
8003518: 34 63 ff ff addi r3,r3,-1 800351c: 0d 63 00 2c sh (r11+44),r3
block = (uint32_t) _Objects_Get_index( the_object->id ) - _Objects_Get_index( information->minimum_id ); block /= information->allocation_size; information->inactive_per_block[ block ]--;
8003520: 34 42 ff ff addi r2,r2,-1 8003524: 58 22 00 00 sw (r1+0),r2
information->inactive--; } } return the_object; }
8003528: b9 80 08 00 mv r1,r12 800352c: 2b 9d 00 04 lw ra,(sp+4) 8003530: 2b 8b 00 14 lw r11,(sp+20) 8003534: 2b 8c 00 10 lw r12,(sp+16) 8003538: 2b 8d 00 0c lw r13,(sp+12) 800353c: 2b 8e 00 08 lw r14,(sp+8) 8003540: 37 9c 00 14 addi sp,sp,20 8003544: c3 a0 00 00 ret
08003548 <_Objects_Extend_information>: */ void _Objects_Extend_information( Objects_Information *information ) {
8003548: 37 9c ff c4 addi sp,sp,-60 800354c: 5b 8b 00 30 sw (sp+48),r11 8003550: 5b 8c 00 2c sw (sp+44),r12 8003554: 5b 8d 00 28 sw (sp+40),r13 8003558: 5b 8e 00 24 sw (sp+36),r14 800355c: 5b 8f 00 20 sw (sp+32),r15 8003560: 5b 90 00 1c sw (sp+28),r16 8003564: 5b 91 00 18 sw (sp+24),r17 8003568: 5b 92 00 14 sw (sp+20),r18 800356c: 5b 93 00 10 sw (sp+16),r19 8003570: 5b 94 00 0c sw (sp+12),r20 8003574: 5b 95 00 08 sw (sp+8),r21 8003578: 5b 9d 00 04 sw (sp+4),ra
/* * Search for a free block of indexes. The block variable ends up set * to block_count + 1 if the table needs to be extended. */ minimum_index = _Objects_Get_index( information->minimum_id );
800357c: 28 2e 00 08 lw r14,(r1+8)
index_base = minimum_index; block = 0; /* if ( information->maximum < minimum_index ) */ if ( information->object_blocks == NULL )
8003580: 28 2f 00 34 lw r15,(r1+52)
*/ void _Objects_Extend_information( Objects_Information *information ) {
8003584: b8 20 58 00 mv r11,r1
/* * Search for a free block of indexes. The block variable ends up set * to block_count + 1 if the table needs to be extended. */ minimum_index = _Objects_Get_index( information->minimum_id );
8003588: 21 ce ff ff andi r14,r14,0xffff
index_base = minimum_index; block = 0; /* if ( information->maximum < minimum_index ) */ if ( information->object_blocks == NULL )
800358c: b9 e0 68 00 mv r13,r15 8003590: b9 c0 60 00 mv r12,r14 8003594: b9 e0 88 00 mv r17,r15
8003598: 45 e0 00 0f be r15,r0,80035d4 <_Objects_Extend_information+0x8c> block_count = 0; else { block_count = information->maximum / information->allocation_size;
800359c: 2c 30 00 14 lhu r16,(r1+20) 80035a0: 2c 21 00 10 lhu r1,(r1+16) 80035a4: 34 0d 00 00 mvi r13,0 80035a8: ba 00 10 00 mv r2,r16 80035ac: f8 00 56 bd calli 80190a0 <__udivsi3> 80035b0: 20 31 ff ff andi r17,r1,0xffff 80035b4: b9 e0 08 00 mv r1,r15
for ( ; block < block_count; block++ ) {
80035b8: e0 00 00 06 bi 80035d0 <_Objects_Extend_information+0x88>
if ( information->object_blocks[ block ] == NULL )
80035bc: 28 22 00 00 lw r2,(r1+0) 80035c0: 34 21 00 04 addi r1,r1,4
80035c4: 44 40 00 04 be r2,r0,80035d4 <_Objects_Extend_information+0x8c>
80035c8: b5 90 60 00 add r12,r12,r16
if ( information->object_blocks == NULL ) block_count = 0; else { block_count = information->maximum / information->allocation_size; for ( ; block < block_count; block++ ) {
80035cc: 35 ad 00 01 addi r13,r13,1
80035d0: 56 2d ff fb bgu r17,r13,80035bc <_Objects_Extend_information+0x74> else index_base += information->allocation_size; } } maximum = (uint32_t) information->maximum + information->allocation_size;
80035d4: 2d 61 00 14 lhu r1,(r11+20) 80035d8: 2d 74 00 10 lhu r20,(r11+16)
/* * We need to limit the number of objects to the maximum number * representable in the index portion of the object Id. In the * case of 16-bit Ids, this is only 256 object instances. */ if ( maximum > OBJECTS_ID_FINAL_INDEX ) {
80035dc: 38 02 ff ff mvu r2,0xffff
else index_base += information->allocation_size; } } maximum = (uint32_t) information->maximum + information->allocation_size;
80035e0: b4 34 a0 00 add r20,r1,r20
/* * We need to limit the number of objects to the maximum number * representable in the index portion of the object Id. In the * case of 16-bit Ids, this is only 256 object instances. */ if ( maximum > OBJECTS_ID_FINAL_INDEX ) {
80035e4: 56 82 00 97 bgu r20,r2,8003840 <_Objects_Extend_information+0x2f8><== NEVER TAKEN
/* * Allocate the name table, and the objects and if it fails either return or * generate a fatal error depending on auto-extending being active. */ block_size = information->allocation_size * information->size;
80035e8: 29 62 00 18 lw r2,(r11+24) 80035ec: f8 00 56 2e calli 8018ea4 <__mulsi3>
if ( information->auto_extend ) {
80035f0: 41 62 00 12 lbu r2,(r11+18)
80035f4: 44 40 00 05 be r2,r0,8003608 <_Objects_Extend_information+0xc0> new_object_block = _Workspace_Allocate( block_size );
80035f8: f8 00 08 c3 calli 8005904 <_Workspace_Allocate> 80035fc: b8 20 78 00 mv r15,r1
if ( !new_object_block ) 8003600: 5c 20 00 04 bne r1,r0,8003610 <_Objects_Extend_information+0xc8>
8003604: e0 00 00 8f bi 8003840 <_Objects_Extend_information+0x2f8>
return; } else { new_object_block = _Workspace_Allocate_or_fatal_error( block_size );
8003608: f8 00 08 b0 calli 80058c8 <_Workspace_Allocate_or_fatal_error> 800360c: b8 20 78 00 mv r15,r1
} /* * If the index_base is the maximum we need to grow the tables. */ if (index_base >= information->maximum ) {
8003610: 2d 61 00 10 lhu r1,(r11+16)
8003614: 54 2c 00 60 bgu r1,r12,8003794 <_Objects_Extend_information+0x24c> */ /* * Up the block count and maximum */ block_count++;
8003618: 36 32 00 01 addi r18,r17,1
* Allocate the tables and break it up. */ block_size = block_count * (sizeof(void *) + sizeof(uint32_t) + sizeof(Objects_Name *)) + ((maximum + minimum_index) * sizeof(Objects_Control *)); object_blocks = (void**) _Workspace_Allocate( block_size );
800361c: b6 52 08 00 add r1,r18,r18 8003620: b6 8e 10 00 add r2,r20,r14 8003624: b4 32 08 00 add r1,r1,r18 8003628: b4 41 08 00 add r1,r2,r1 800362c: 34 02 00 02 mvi r2,2 8003630: fb ff f2 f0 calli 80001f0 <__ashlsi3> 8003634: f8 00 08 b4 calli 8005904 <_Workspace_Allocate> 8003638: b8 20 80 00 mv r16,r1
if ( !object_blocks ) { 800363c: 5c 20 00 04 bne r1,r0,800364c <_Objects_Extend_information+0x104> _Workspace_Free( new_object_block );
8003640: b9 e0 08 00 mv r1,r15 8003644: f8 00 08 bb calli 8005930 <_Workspace_Free>
return;
8003648: e0 00 00 7e bi 8003840 <_Objects_Extend_information+0x2f8>
} /* * Break the block into the various sections. */ inactive_per_block = (uint32_t *) _Addresses_Add_offset(
800364c: ba 40 08 00 mv r1,r18 8003650: 34 02 00 02 mvi r2,2 8003654: fb ff f2 e7 calli 80001f0 <__ashlsi3>
* Take the block count down. Saves all the (block_count - 1) * in the copies. */ block_count--; if ( information->maximum > minimum_index ) {
8003658: 2d 62 00 10 lhu r2,(r11+16)
RTEMS_INLINE_ROUTINE void *_Addresses_Add_offset ( const void *base, uintptr_t offset ) { return (void *)((uintptr_t)base + offset);
800365c: b6 01 98 00 add r19,r16,r1 8003660: b6 61 90 00 add r18,r19,r1
8003664: 54 4e 00 05 bgu r2,r14,8003678 <_Objects_Extend_information+0x130>
8003668: 34 01 00 00 mvi r1,0 800366c: ba 40 10 00 mv r2,r18
/* * Deal with the special case of the 0 to minimum_index */ for ( index = 0; index < minimum_index; index++ ) { local_table[ index ] = NULL;
8003670: b8 20 18 00 mv r3,r1 8003674: e0 00 00 19 bi 80036d8 <_Objects_Extend_information+0x190>
* separate parts as size of each block has changed. */ memcpy( object_blocks, information->object_blocks, block_count * sizeof(void*) );
8003678: ba 20 08 00 mv r1,r17 800367c: 34 02 00 02 mvi r2,2 8003680: fb ff f2 dc calli 80001f0 <__ashlsi3>
/* * Copy each section of the table over. This has to be performed as * separate parts as size of each block has changed. */ memcpy( object_blocks,
8003684: 29 62 00 34 lw r2,(r11+52)
information->object_blocks, block_count * sizeof(void*) );
8003688: b8 20 a8 00 mv r21,r1
/* * Copy each section of the table over. This has to be performed as * separate parts as size of each block has changed. */ memcpy( object_blocks,
800368c: ba a0 18 00 mv r3,r21 8003690: ba 00 08 00 mv r1,r16 8003694: f8 00 20 c5 calli 800b9a8 <memcpy>
information->object_blocks, block_count * sizeof(void*) ); memcpy( inactive_per_block,
8003698: 29 62 00 30 lw r2,(r11+48) 800369c: ba a0 18 00 mv r3,r21 80036a0: ba 60 08 00 mv r1,r19 80036a4: f8 00 20 c1 calli 800b9a8 <memcpy>
information->inactive_per_block, block_count * sizeof(uint32_t) ); memcpy( local_table,
80036a8: 2d 61 00 10 lhu r1,(r11+16) 80036ac: 34 02 00 02 mvi r2,2 80036b0: b5 c1 08 00 add r1,r14,r1 80036b4: fb ff f2 cf calli 80001f0 <__ashlsi3> 80036b8: 29 62 00 1c lw r2,(r11+28) 80036bc: b8 20 18 00 mv r3,r1 80036c0: ba 40 08 00 mv r1,r18 80036c4: f8 00 20 b9 calli 800b9a8 <memcpy> 80036c8: e0 00 00 05 bi 80036dc <_Objects_Extend_information+0x194>
/* * Deal with the special case of the 0 to minimum_index */ for ( index = 0; index < minimum_index; index++ ) { local_table[ index ] = NULL;
80036cc: 58 43 00 00 sw (r2+0),r3
} else { /* * Deal with the special case of the 0 to minimum_index */ for ( index = 0; index < minimum_index; index++ ) {
80036d0: 34 21 00 01 addi r1,r1,1 80036d4: 34 42 00 04 addi r2,r2,4
80036d8: 55 c1 ff fd bgu r14,r1,80036cc <_Objects_Extend_information+0x184> } /* * Initialise the new entries in the table. */ object_blocks[block_count] = NULL;
80036dc: ba 20 08 00 mv r1,r17 80036e0: 34 02 00 02 mvi r2,2 80036e4: fb ff f2 c3 calli 80001f0 <__ashlsi3>
inactive_per_block[block_count] = 0;
80036e8: b6 61 10 00 add r2,r19,r1
} /* * Initialise the new entries in the table. */ object_blocks[block_count] = NULL;
80036ec: 34 0e 00 00 mvi r14,0 80036f0: b6 01 08 00 add r1,r16,r1
inactive_per_block[block_count] = 0; for ( index=index_base ; index < ( information->allocation_size + index_base );
80036f4: 2d 71 00 14 lhu r17,(r11+20)
} /* * Initialise the new entries in the table. */ object_blocks[block_count] = NULL;
80036f8: 58 2e 00 00 sw (r1+0),r14
inactive_per_block[block_count] = 0;
80036fc: 58 4e 00 00 sw (r2+0),r14
for ( index=index_base ; index < ( information->allocation_size + index_base );
8003700: b9 80 08 00 mv r1,r12 8003704: 34 02 00 02 mvi r2,2 8003708: fb ff f2 ba calli 80001f0 <__ashlsi3> 800370c: b5 91 88 00 add r17,r12,r17 8003710: b6 41 08 00 add r1,r18,r1 8003714: b9 80 10 00 mv r2,r12
* Initialise the new entries in the table. */ object_blocks[block_count] = NULL; inactive_per_block[block_count] = 0; for ( index=index_base ;
8003718: e0 00 00 04 bi 8003728 <_Objects_Extend_information+0x1e0>
index < ( information->allocation_size + index_base ); index++ ) { local_table[ index ] = NULL;
800371c: 58 2e 00 00 sw (r1+0),r14
object_blocks[block_count] = NULL; inactive_per_block[block_count] = 0; for ( index=index_base ; index < ( information->allocation_size + index_base ); index++ ) {
8003720: 34 42 00 01 addi r2,r2,1 8003724: 34 21 00 04 addi r1,r1,4
* Initialise the new entries in the table. */ object_blocks[block_count] = NULL; inactive_per_block[block_count] = 0; for ( index=index_base ; 8003728: 56 22 ff fd bgu r17,r2,800371c <_Objects_Extend_information+0x1d4> index < ( information->allocation_size + index_base ); index++ ) { local_table[ index ] = NULL; } _ISR_Disable( level );
800372c: 90 00 88 00 rcsr r17,IE 8003730: 34 01 ff fe mvi r1,-2 8003734: a2 21 08 00 and r1,r17,r1 8003738: d0 01 00 00 wcsr IE,r1
information->object_blocks = object_blocks; information->inactive_per_block = inactive_per_block; information->local_table = local_table; information->maximum = (Objects_Maximum) maximum; information->maximum_id = _Objects_Build_id(
800373c: 29 61 00 00 lw r1,(r11+0)
old_tables = information->object_blocks; information->object_blocks = object_blocks; information->inactive_per_block = inactive_per_block; information->local_table = local_table; information->maximum = (Objects_Maximum) maximum;
8003740: 22 94 ff ff andi r20,r20,0xffff 8003744: 0d 74 00 10 sh (r11+16),r20
_ISR_Disable( level ); old_tables = information->object_blocks; information->object_blocks = object_blocks; information->inactive_per_block = inactive_per_block;
8003748: 59 73 00 30 sw (r11+48),r19
information->local_table = local_table;
800374c: 59 72 00 1c sw (r11+28),r18
local_table[ index ] = NULL; } _ISR_Disable( level ); old_tables = information->object_blocks;
8003750: 29 6e 00 34 lw r14,(r11+52)
information->object_blocks = object_blocks; information->inactive_per_block = inactive_per_block; information->local_table = local_table; information->maximum = (Objects_Maximum) maximum; information->maximum_id = _Objects_Build_id(
8003754: 34 02 00 18 mvi r2,24
_ISR_Disable( level ); old_tables = information->object_blocks; information->object_blocks = object_blocks;
8003758: 59 70 00 34 sw (r11+52),r16
information->inactive_per_block = inactive_per_block; information->local_table = local_table; information->maximum = (Objects_Maximum) maximum; information->maximum_id = _Objects_Build_id(
800375c: fb ff f2 a5 calli 80001f0 <__ashlsi3> 8003760: 78 02 00 01 mvhi r2,0x1 8003764: 38 42 00 00 ori r2,r2,0x0 8003768: b8 22 80 00 or r16,r1,r2 800376c: 2d 61 00 04 lhu r1,(r11+4) 8003770: 34 02 00 1b mvi r2,27 8003774: fb ff f2 9f calli 80001f0 <__ashlsi3> 8003778: ba 01 08 00 or r1,r16,r1 800377c: b8 34 a0 00 or r20,r1,r20 8003780: 59 74 00 0c sw (r11+12),r20
information->the_class, _Objects_Local_node, information->maximum ); _ISR_Enable( level );
8003784: d0 11 00 00 wcsr IE,r17
if ( old_tables ) 8003788: 45 c0 00 03 be r14,r0,8003794 <_Objects_Extend_information+0x24c> _Workspace_Free( old_tables );
800378c: b9 c0 08 00 mv r1,r14 8003790: f8 00 08 68 calli 8005930 <_Workspace_Free>
} /* * Assign the new object block to the object block table. */ information->object_blocks[ block ] = new_object_block;
8003794: b9 a0 08 00 mv r1,r13 8003798: 34 02 00 02 mvi r2,2 800379c: fb ff f2 95 calli 80001f0 <__ashlsi3> 80037a0: b8 20 80 00 mv r16,r1 80037a4: 29 61 00 34 lw r1,(r11+52)
/* * Initialize objects .. add to a local chain first. */ _Chain_Initialize(
80037a8: 2d 63 00 14 lhu r3,(r11+20) 80037ac: 29 64 00 18 lw r4,(r11+24)
} /* * Assign the new object block to the object block table. */ information->object_blocks[ block ] = new_object_block;
80037b0: b4 30 08 00 add r1,r1,r16
/* * Initialize objects .. add to a local chain first. */ _Chain_Initialize(
80037b4: 37 8e 00 34 addi r14,sp,52
} /* * Assign the new object block to the object block table. */ information->object_blocks[ block ] = new_object_block;
80037b8: 58 2f 00 00 sw (r1+0),r15
/* * Initialize objects .. add to a local chain first. */ _Chain_Initialize(
80037bc: b9 e0 10 00 mv r2,r15 80037c0: b9 c0 08 00 mv r1,r14
*/ index = index_base; while ((the_object = (Objects_Control *) _Chain_Get( &Inactive )) != NULL ) { the_object->id = _Objects_Build_id(
80037c4: 78 0d 00 01 mvhi r13,0x1
information->object_blocks[ block ] = new_object_block; /* * Initialize objects .. add to a local chain first. */ _Chain_Initialize(
80037c8: f8 00 12 40 calli 80080c8 <_Chain_Initialize>
/* * Move from the local chain, initialise, then append to the inactive chain */ index = index_base; while ((the_object = (Objects_Control *) _Chain_Get( &Inactive )) != NULL ) {
80037cc: b9 c0 88 00 mv r17,r14
the_object->id = _Objects_Build_id(
80037d0: 39 ad 00 00 ori r13,r13,0x0
information->the_class, _Objects_Local_node, index ); _Chain_Append( &information->Inactive, &the_object->Node );
80037d4: 35 6f 00 20 addi r15,r11,32
/* * Move from the local chain, initialise, then append to the inactive chain */ index = index_base; while ((the_object = (Objects_Control *) _Chain_Get( &Inactive )) != NULL ) {
80037d8: e0 00 00 0e bi 8003810 <_Objects_Extend_information+0x2c8>
the_object->id = _Objects_Build_id(
80037dc: 29 61 00 00 lw r1,(r11+0) 80037e0: fb ff f2 84 calli 80001f0 <__ashlsi3> 80037e4: b8 2d 90 00 or r18,r1,r13 80037e8: 2d 61 00 04 lhu r1,(r11+4) 80037ec: 34 02 00 1b mvi r2,27 80037f0: fb ff f2 80 calli 80001f0 <__ashlsi3> 80037f4: ba 41 10 00 or r2,r18,r1 80037f8: b8 4c 10 00 or r2,r2,r12 80037fc: 59 c2 00 08 sw (r14+8),r2
information->the_class, _Objects_Local_node, index ); _Chain_Append( &information->Inactive, &the_object->Node );
8003800: b9 e0 08 00 mv r1,r15 8003804: b9 c0 10 00 mv r2,r14 8003808: fb ff fc 97 calli 8002a64 <_Chain_Append>
index++;
800380c: 35 8c 00 01 addi r12,r12,1
/* * Move from the local chain, initialise, then append to the inactive chain */ index = index_base; while ((the_object = (Objects_Control *) _Chain_Get( &Inactive )) != NULL ) {
8003810: ba 20 08 00 mv r1,r17 8003814: f8 00 12 1e calli 800808c <_Chain_Get> 8003818: b8 20 70 00 mv r14,r1
the_object->id = _Objects_Build_id(
800381c: 34 02 00 18 mvi r2,24
/* * Move from the local chain, initialise, then append to the inactive chain */ index = index_base; while ((the_object = (Objects_Control *) _Chain_Get( &Inactive )) != NULL ) { 8003820: 5c 20 ff ef bne r1,r0,80037dc <_Objects_Extend_information+0x294> _Chain_Append( &information->Inactive, &the_object->Node ); index++; } information->inactive_per_block[ block ] = information->allocation_size;
8003824: 2d 62 00 14 lhu r2,(r11+20)
information->inactive =
8003828: 2d 61 00 2c lhu r1,(r11+44)
_Chain_Append( &information->Inactive, &the_object->Node ); index++; } information->inactive_per_block[ block ] = information->allocation_size;
800382c: 29 63 00 30 lw r3,(r11+48)
information->inactive =
8003830: b4 41 08 00 add r1,r2,r1
_Chain_Append( &information->Inactive, &the_object->Node ); index++; } information->inactive_per_block[ block ] = information->allocation_size;
8003834: b4 70 80 00 add r16,r3,r16
information->inactive =
8003838: 0d 61 00 2c sh (r11+44),r1
_Chain_Append( &information->Inactive, &the_object->Node ); index++; } information->inactive_per_block[ block ] = information->allocation_size;
800383c: 5a 02 00 00 sw (r16+0),r2
information->inactive = (Objects_Maximum)(information->inactive + information->allocation_size); }
8003840: 2b 9d 00 04 lw ra,(sp+4) 8003844: 2b 8b 00 30 lw r11,(sp+48) 8003848: 2b 8c 00 2c lw r12,(sp+44) 800384c: 2b 8d 00 28 lw r13,(sp+40) 8003850: 2b 8e 00 24 lw r14,(sp+36) 8003854: 2b 8f 00 20 lw r15,(sp+32) 8003858: 2b 90 00 1c lw r16,(sp+28) 800385c: 2b 91 00 18 lw r17,(sp+24) 8003860: 2b 92 00 14 lw r18,(sp+20) 8003864: 2b 93 00 10 lw r19,(sp+16) 8003868: 2b 94 00 0c lw r20,(sp+12) 800386c: 2b 95 00 08 lw r21,(sp+8) 8003870: 37 9c 00 3c addi sp,sp,60 8003874: c3 a0 00 00 ret
08003970 <_Objects_Get_information>: Objects_Information *_Objects_Get_information( Objects_APIs the_api, uint32_t the_class ) {
8003970: 37 9c ff f4 addi sp,sp,-12 8003974: 5b 8b 00 0c sw (sp+12),r11 8003978: 5b 8c 00 08 sw (sp+8),r12 800397c: 5b 9d 00 04 sw (sp+4),ra 8003980: b8 40 58 00 mv r11,r2 8003984: b8 20 60 00 mv r12,r1
Objects_Information *info; int the_class_api_maximum; if ( !the_class ) 8003988: 44 40 00 14 be r2,r0,80039d8 <_Objects_Get_information+0x68> /* * This call implicitly validates the_api so we do not call * _Objects_Is_api_valid above here. */ the_class_api_maximum = _Objects_API_maximum_class( the_api );
800398c: f8 00 13 a4 calli 800881c <_Objects_API_maximum_class>
if ( the_class_api_maximum == 0 ) 8003990: 44 20 00 12 be r1,r0,80039d8 <_Objects_Get_information+0x68> return NULL; if ( the_class > (uint32_t) the_class_api_maximum ) 8003994: 55 61 00 11 bgu r11,r1,80039d8 <_Objects_Get_information+0x68> return NULL; if ( !_Objects_Information_table[ the_api ] )
8003998: b9 80 08 00 mv r1,r12 800399c: 34 02 00 02 mvi r2,2 80039a0: 78 0c 08 01 mvhi r12,0x801 80039a4: 39 8c c7 bc ori r12,r12,0xc7bc 80039a8: fb ff f2 12 calli 80001f0 <__ashlsi3> 80039ac: b5 81 08 00 add r1,r12,r1 80039b0: 28 2c 00 00 lw r12,(r1+0)
80039b4: 45 80 00 09 be r12,r0,80039d8 <_Objects_Get_information+0x68><== NEVER TAKEN
return NULL; info = _Objects_Information_table[ the_api ][ the_class ];
80039b8: b9 60 08 00 mv r1,r11 80039bc: 34 02 00 02 mvi r2,2 80039c0: fb ff f2 0c calli 80001f0 <__ashlsi3> 80039c4: b5 81 08 00 add r1,r12,r1 80039c8: 28 21 00 00 lw r1,(r1+0)
if ( !info )
80039cc: 44 20 00 04 be r1,r0,80039dc <_Objects_Get_information+0x6c><== NEVER TAKEN
* In a multprocessing configuration, we may access remote objects. * Thus we may have 0 local instances and still have a valid object * pointer. */ #if !defined(RTEMS_MULTIPROCESSING) if ( info->maximum == 0 )
80039d0: 2c 22 00 10 lhu r2,(r1+16)
80039d4: 5c 40 00 02 bne r2,r0,80039dc <_Objects_Get_information+0x6c>
80039d8: 34 01 00 00 mvi r1,0
return NULL; #endif return info; }
80039dc: 2b 9d 00 04 lw ra,(sp+4) 80039e0: 2b 8b 00 0c lw r11,(sp+12) 80039e4: 2b 8c 00 08 lw r12,(sp+8) 80039e8: 37 9c 00 0c addi sp,sp,12 80039ec: c3 a0 00 00 ret
08016da8 <_Objects_Get_no_protection>: Objects_Control *_Objects_Get_no_protection( Objects_Information *information, Objects_Id id, Objects_Locations *location ) {
8016da8: 37 9c ff f4 addi sp,sp,-12 8016dac: 5b 8b 00 0c sw (sp+12),r11 8016db0: 5b 8c 00 08 sw (sp+8),r12 8016db4: 5b 9d 00 04 sw (sp+4),ra 8016db8: b8 20 20 00 mv r4,r1
/* * You can't just extract the index portion or you can get tricked * by a value between 1 and maximum. */ index = id - information->minimum_id + 1;
8016dbc: 28 21 00 08 lw r1,(r1+8)
if ( information->maximum >= index ) {
8016dc0: 2c 85 00 10 lhu r5,(r4+16)
Objects_Control *_Objects_Get_no_protection( Objects_Information *information, Objects_Id id, Objects_Locations *location ) {
8016dc4: b8 60 58 00 mv r11,r3
/* * You can't just extract the index portion or you can get tricked * by a value between 1 and maximum. */ index = id - information->minimum_id + 1;
8016dc8: c8 41 08 00 sub r1,r2,r1 8016dcc: 34 21 00 01 addi r1,r1,1
if ( information->maximum >= index ) { 8016dd0: 54 25 00 0a bgu r1,r5,8016df8 <_Objects_Get_no_protection+0x50> if ( (the_object = information->local_table[ index ]) != NULL ) {
8016dd4: 28 8c 00 1c lw r12,(r4+28) 8016dd8: 34 02 00 02 mvi r2,2 8016ddc: fb ff dc 2f calli 800de98 <__ashlsi3> 8016de0: b5 81 08 00 add r1,r12,r1 8016de4: 28 21 00 00 lw r1,(r1+0)
8016de8: 44 20 00 04 be r1,r0,8016df8 <_Objects_Get_no_protection+0x50><== NEVER TAKEN
*location = OBJECTS_LOCAL;
8016dec: 34 02 00 00 mvi r2,0 8016df0: 59 62 00 00 sw (r11+0),r2
return the_object;
8016df4: e0 00 00 04 bi 8016e04 <_Objects_Get_no_protection+0x5c>
/* * This isn't supported or required yet for Global objects so * if it isn't local, we don't find it. */ *location = OBJECTS_ERROR;
8016df8: 34 01 00 01 mvi r1,1 8016dfc: 59 61 00 00 sw (r11+0),r1 8016e00: 34 01 00 00 mvi r1,0
return NULL; }
8016e04: 2b 9d 00 04 lw ra,(sp+4) 8016e08: 2b 8b 00 0c lw r11,(sp+12) 8016e0c: 2b 8c 00 08 lw r12,(sp+8) 8016e10: 37 9c 00 0c addi sp,sp,12 8016e14: c3 a0 00 00 ret
08009620 <_Objects_Id_to_name>: */ Objects_Name_or_id_lookup_errors _Objects_Id_to_name ( Objects_Id id, Objects_Name *name ) {
8009620: 37 9c ff ec addi sp,sp,-20 8009624: 5b 8b 00 10 sw (sp+16),r11 8009628: 5b 8c 00 0c sw (sp+12),r12 800962c: 5b 8d 00 08 sw (sp+8),r13 8009630: 5b 9d 00 04 sw (sp+4),ra 8009634: b8 40 68 00 mv r13,r2
/* * Caller is trusted for name != NULL. */ tmpId = (id == OBJECTS_ID_OF_SELF) ? _Thread_Executing->Object.id : id;
8009638: b8 20 58 00 mv r11,r1
800963c: 5c 20 00 05 bne r1,r0,8009650 <_Objects_Id_to_name+0x30>
8009640: 78 01 08 02 mvhi r1,0x802 8009644: 38 21 e2 00 ori r1,r1,0xe200 8009648: 28 21 00 00 lw r1,(r1+0) 800964c: 28 2b 00 08 lw r11,(r1+8)
*/ RTEMS_INLINE_ROUTINE Objects_APIs _Objects_Get_API( Objects_Id id ) { return (Objects_APIs) ((id >> OBJECTS_API_START_BIT) & OBJECTS_API_VALID_BITS);
8009650: 34 02 00 18 mvi r2,24 8009654: b9 60 08 00 mv r1,r11 8009658: fb ff dc 58 calli 80007b8 <__lshrsi3> 800965c: 20 21 00 07 andi r1,r1,0x7
*/ RTEMS_INLINE_ROUTINE bool _Objects_Is_api_valid( uint32_t the_api ) { if ( !the_api || the_api > OBJECTS_APIS_LAST )
8009660: 34 23 ff ff addi r3,r1,-1 8009664: 34 02 00 03 mvi r2,3
8009668: 54 62 00 13 bgu r3,r2,80096b4 <_Objects_Id_to_name+0x94>
800966c: e0 00 00 19 bi 80096d0 <_Objects_Id_to_name+0xb0>
if ( !_Objects_Information_table[ the_api ] ) return OBJECTS_INVALID_ID; the_class = _Objects_Get_class( tmpId ); information = _Objects_Information_table[ the_api ][ the_class ];
8009670: 34 02 00 1b mvi r2,27 8009674: b9 60 08 00 mv r1,r11 8009678: fb ff dc 50 calli 80007b8 <__lshrsi3> 800967c: 34 02 00 02 mvi r2,2 8009680: fb ff dc 26 calli 8000718 <__ashlsi3> 8009684: b5 81 08 00 add r1,r12,r1 8009688: 28 21 00 00 lw r1,(r1+0)
if ( !information )
800968c: 44 20 00 0a be r1,r0,80096b4 <_Objects_Id_to_name+0x94> <== NEVER TAKEN
#if defined(RTEMS_SCORE_OBJECT_ENABLE_STRING_NAMES) if ( information->is_string ) return OBJECTS_INVALID_ID; #endif the_object = _Objects_Get( information, tmpId, &ignored_location );
8009690: b9 60 10 00 mv r2,r11 8009694: 37 83 00 14 addi r3,sp,20 8009698: fb ff ff bb calli 8009584 <_Objects_Get>
if ( !the_object ) 800969c: 44 20 00 06 be r1,r0,80096b4 <_Objects_Id_to_name+0x94> return OBJECTS_INVALID_ID; *name = the_object->name;
80096a0: 28 21 00 0c lw r1,(r1+12) 80096a4: 59 a1 00 00 sw (r13+0),r1
_Thread_Enable_dispatch();
80096a8: f8 00 02 cb calli 800a1d4 <_Thread_Enable_dispatch> 80096ac: 34 01 00 00 mvi r1,0
return OBJECTS_NAME_OR_ID_LOOKUP_SUCCESSFUL;
80096b0: e0 00 00 02 bi 80096b8 <_Objects_Id_to_name+0x98> 80096b4: 34 01 00 03 mvi r1,3
}
80096b8: 2b 9d 00 04 lw ra,(sp+4) 80096bc: 2b 8b 00 10 lw r11,(sp+16) 80096c0: 2b 8c 00 0c lw r12,(sp+12) 80096c4: 2b 8d 00 08 lw r13,(sp+8) 80096c8: 37 9c 00 14 addi sp,sp,20 80096cc: c3 a0 00 00 ret
the_api = _Objects_Get_API( tmpId ); if ( !_Objects_Is_api_valid( the_api ) ) return OBJECTS_INVALID_ID; if ( !_Objects_Information_table[ the_api ] )
80096d0: 78 0c 08 02 mvhi r12,0x802 80096d4: 34 02 00 02 mvi r2,2 80096d8: 39 8c e0 dc ori r12,r12,0xe0dc 80096dc: fb ff dc 0f calli 8000718 <__ashlsi3> 80096e0: b5 81 08 00 add r1,r12,r1 80096e4: 28 2c 00 00 lw r12,(r1+0)
80096e8: 5d 80 ff e2 bne r12,r0,8009670 <_Objects_Id_to_name+0x50>
80096ec: e3 ff ff f2 bi 80096b4 <_Objects_Id_to_name+0x94>
080039f0 <_Objects_Initialize_information>: , bool supports_global, Objects_Thread_queue_Extract_callout extract #endif ) {
80039f0: 37 9c ff e4 addi sp,sp,-28 80039f4: 5b 8b 00 1c sw (sp+28),r11 80039f8: 5b 8c 00 18 sw (sp+24),r12 80039fc: 5b 8d 00 14 sw (sp+20),r13 8003a00: 5b 8e 00 10 sw (sp+16),r14 8003a04: 5b 8f 00 0c sw (sp+12),r15 8003a08: 5b 90 00 08 sw (sp+8),r16 8003a0c: 5b 9d 00 04 sw (sp+4),ra
#endif information->the_api = the_api; information->the_class = the_class; information->size = size; information->local_table = 0;
8003a10: 34 06 00 00 mvi r6,0
, bool supports_global, Objects_Thread_queue_Extract_callout extract #endif ) {
8003a14: b8 20 58 00 mv r11,r1 8003a18: 20 a5 ff ff andi r5,r5,0xffff 8003a1c: b8 40 78 00 mv r15,r2
uint32_t index; #endif information->the_api = the_api; information->the_class = the_class; information->size = size;
8003a20: 58 25 00 18 sw (r1+24),r5
/* * Set the maximum value to 0. It will be updated when objects are * added to the inactive set from _Objects_Extend_information() */ information->maximum = 0;
8003a24: 0c 26 00 10 sh (r1+16),r6
#if defined(RTEMS_MULTIPROCESSING) uint32_t index; #endif information->the_api = the_api; information->the_class = the_class;
8003a28: 0d 63 00 04 sh (r11+4),r3
information->size = size; information->local_table = 0;
8003a2c: 58 26 00 1c sw (r1+28),r6
information->inactive_per_block = 0;
8003a30: 58 26 00 30 sw (r1+48),r6
information->object_blocks = 0;
8003a34: 58 26 00 34 sw (r1+52),r6
information->inactive = 0;
8003a38: 0c 26 00 2c sh (r1+44),r6
uint32_t maximum_per_allocation; #if defined(RTEMS_MULTIPROCESSING) uint32_t index; #endif information->the_api = the_api;
8003a3c: 59 62 00 00 sw (r11+0),r2
information->maximum = 0; /* * Register this Object Class in the Object Information Table. */ _Objects_Information_table[ the_api ][ the_class ] = information;
8003a40: 78 10 08 01 mvhi r16,0x801 8003a44: 34 02 00 02 mvi r2,2 8003a48: b9 e0 08 00 mv r1,r15
, bool supports_global, Objects_Thread_queue_Extract_callout extract #endif ) {
8003a4c: b8 60 70 00 mv r14,r3 8003a50: b8 80 60 00 mv r12,r4 8003a54: b8 e0 68 00 mv r13,r7
information->maximum = 0; /* * Register this Object Class in the Object Information Table. */ _Objects_Information_table[ the_api ][ the_class ] = information;
8003a58: 3a 10 c7 bc ori r16,r16,0xc7bc 8003a5c: fb ff f1 e5 calli 80001f0 <__ashlsi3> 8003a60: b6 01 08 00 add r1,r16,r1 8003a64: 28 30 00 00 lw r16,(r1+0) 8003a68: 34 02 00 02 mvi r2,2 8003a6c: b9 c0 08 00 mv r1,r14 8003a70: fb ff f1 e0 calli 80001f0 <__ashlsi3> 8003a74: b6 01 08 00 add r1,r16,r1 8003a78: 58 2b 00 00 sw (r1+0),r11
/* * Are we operating in limited or unlimited (e.g. auto-extend) mode. */ information->auto_extend = (maximum & OBJECTS_UNLIMITED_OBJECTS) ? true : false;
8003a7c: 34 02 00 1f mvi r2,31 8003a80: b9 80 08 00 mv r1,r12 8003a84: fb ff f2 03 calli 8000290 <__lshrsi3> 8003a88: 20 23 00 ff andi r3,r1,0xff
maximum_per_allocation = maximum & ~OBJECTS_UNLIMITED_OBJECTS;
8003a8c: 78 02 7f ff mvhi r2,0x7fff 8003a90: 38 42 ff ff ori r2,r2,0xffff
_Objects_Information_table[ the_api ][ the_class ] = information; /* * Are we operating in limited or unlimited (e.g. auto-extend) mode. */ information->auto_extend =
8003a94: 31 63 00 12 sb (r11+18),r3
(maximum & OBJECTS_UNLIMITED_OBJECTS) ? true : false; maximum_per_allocation = maximum & ~OBJECTS_UNLIMITED_OBJECTS;
8003a98: a1 82 60 00 and r12,r12,r2
/* * Unlimited and maximum of zero is illogical. */ if ( information->auto_extend && maximum_per_allocation == 0) { 8003a9c: 44 60 00 06 be r3,r0,8003ab4 <_Objects_Initialize_information+0xc4> 8003aa0: 5d 80 00 05 bne r12,r0,8003ab4 <_Objects_Initialize_information+0xc4> _Internal_error_Occurred(
8003aa4: b9 80 08 00 mv r1,r12 8003aa8: 34 02 00 01 mvi r2,1 8003aac: 34 03 00 14 mvi r3,20 8003ab0: fb ff fe 3b calli 800339c <_Internal_error_Occurred>
information->allocation_size = maximum_per_allocation; /* * Provide a null local table entry for the case of any empty table. */ information->local_table = &null_local_table;
8003ab4: 78 01 08 01 mvhi r1,0x801 8003ab8: 38 21 c6 20 ori r1,r1,0xc620 8003abc: 59 61 00 1c sw (r11+28),r1
/* * Calculate minimum and maximum Id's */ minimum_index = (maximum_per_allocation == 0) ? 0 : 1; information->minimum_id =
8003ac0: 34 02 00 18 mvi r2,24 8003ac4: b9 e0 08 00 mv r1,r15
} /* * The allocation unit is the maximum value */ information->allocation_size = maximum_per_allocation;
8003ac8: 0d 6c 00 14 sh (r11+20),r12
/* * Calculate minimum and maximum Id's */ minimum_index = (maximum_per_allocation == 0) ? 0 : 1; information->minimum_id =
8003acc: fb ff f1 c9 calli 80001f0 <__ashlsi3> 8003ad0: 78 02 00 01 mvhi r2,0x1 8003ad4: 38 42 00 00 ori r2,r2,0x0 8003ad8: b8 22 78 00 or r15,r1,r2 8003adc: 34 02 00 1b mvi r2,27 8003ae0: b9 c0 08 00 mv r1,r14 8003ae4: fb ff f1 c3 calli 80001f0 <__ashlsi3> 8003ae8: 7d 83 00 00 cmpnei r3,r12,0 8003aec: b9 e1 08 00 or r1,r15,r1 8003af0: b8 23 08 00 or r1,r1,r3 8003af4: 59 61 00 08 sw (r11+8),r1
/* * Calculate the maximum name length */ name_length = maximum_name_length; if ( name_length & (OBJECTS_NAME_ALIGNMENT-1) )
8003af8: 21 a2 00 03 andi r2,r13,0x3 8003afc: b9 a0 08 00 mv r1,r13
8003b00: 44 40 00 04 be r2,r0,8003b10 <_Objects_Initialize_information+0x120><== ALWAYS TAKEN
name_length = (name_length + OBJECTS_NAME_ALIGNMENT) &
8003b04: 35 ad 00 04 addi r13,r13,4 <== NOT EXECUTED 8003b08: 34 01 ff fc mvi r1,-4 <== NOT EXECUTED 8003b0c: a1 a1 08 00 and r1,r13,r1 <== NOT EXECUTED
*/ RTEMS_INLINE_ROUTINE void _Chain_Initialize_empty( Chain_Control *the_chain ) { the_chain->first = _Chain_Tail(the_chain);
8003b10: 35 63 00 24 addi r3,r11,36
the_chain->permanent_null = NULL; the_chain->last = _Chain_Head(the_chain);
8003b14: 35 62 00 20 addi r2,r11,32
~(OBJECTS_NAME_ALIGNMENT-1); information->name_length = name_length;
8003b18: 0d 61 00 38 sh (r11+56),r1
RTEMS_INLINE_ROUTINE void _Chain_Initialize_empty( Chain_Control *the_chain ) { the_chain->first = _Chain_Tail(the_chain); the_chain->permanent_null = NULL;
8003b1c: 34 01 00 00 mvi r1,0
*/ RTEMS_INLINE_ROUTINE void _Chain_Initialize_empty( Chain_Control *the_chain ) { the_chain->first = _Chain_Tail(the_chain);
8003b20: 59 63 00 20 sw (r11+32),r3
the_chain->permanent_null = NULL;
8003b24: 59 61 00 24 sw (r11+36),r1
the_chain->last = _Chain_Head(the_chain);
8003b28: 59 62 00 28 sw (r11+40),r2
_Chain_Initialize_empty( &information->Inactive ); /* * Initialize objects .. if there are any */ if ( maximum_per_allocation ) { 8003b2c: 45 81 00 03 be r12,r1,8003b38 <_Objects_Initialize_information+0x148> /* * Always have the maximum size available so the current performance * figures are create are met. If the user moves past the maximum * number then a performance hit is taken. */ _Objects_Extend_information( information );
8003b30: b9 60 08 00 mv r1,r11 8003b34: fb ff fe 85 calli 8003548 <_Objects_Extend_information>
_Chain_Initialize_empty( &information->global_table[ index ] ); } else information->global_table = NULL; #endif }
8003b38: 2b 9d 00 04 lw ra,(sp+4) 8003b3c: 2b 8b 00 1c lw r11,(sp+28) 8003b40: 2b 8c 00 18 lw r12,(sp+24) 8003b44: 2b 8d 00 14 lw r13,(sp+20) 8003b48: 2b 8e 00 10 lw r14,(sp+16) 8003b4c: 2b 8f 00 0c lw r15,(sp+12) 8003b50: 2b 90 00 08 lw r16,(sp+8) 8003b54: 37 9c 00 1c addi sp,sp,28 8003b58: c3 a0 00 00 ret
08007d84 <_RTEMS_tasks_Post_switch_extension>: */ void _RTEMS_tasks_Post_switch_extension( Thread_Control *executing ) {
8007d84: 37 9c ff f0 addi sp,sp,-16 8007d88: 5b 8b 00 0c sw (sp+12),r11 8007d8c: 5b 8c 00 08 sw (sp+8),r12 8007d90: 5b 9d 00 04 sw (sp+4),ra
RTEMS_API_Control *api; ASR_Information *asr; rtems_signal_set signal_set; Modes_Control prev_mode; api = executing->API_Extensions[ THREAD_API_RTEMS ];
8007d94: 28 2b 01 24 lw r11,(r1+292)
if ( !api )
8007d98: 45 60 00 1b be r11,r0,8007e04 <_RTEMS_tasks_Post_switch_extension+0x80><== NEVER TAKEN
* Signal Processing */ asr = &api->Signal; _ISR_Disable( level );
8007d9c: 90 00 08 00 rcsr r1,IE 8007da0: 34 02 ff fe mvi r2,-2 8007da4: a0 22 10 00 and r2,r1,r2 8007da8: d0 02 00 00 wcsr IE,r2
signal_set = asr->signals_posted; asr->signals_posted = 0;
8007dac: 34 02 00 00 mvi r2,0
*/ asr = &api->Signal; _ISR_Disable( level ); signal_set = asr->signals_posted;
8007db0: 29 6c 00 14 lw r12,(r11+20)
asr->signals_posted = 0;
8007db4: 59 62 00 14 sw (r11+20),r2
_ISR_Enable( level );
8007db8: d0 01 00 00 wcsr IE,r1
if ( !signal_set ) /* similar to _ASR_Are_signals_pending( asr ) */
8007dbc: 45 80 00 12 be r12,r0,8007e04 <_RTEMS_tasks_Post_switch_extension+0x80><== NEVER TAKEN
return; asr->nest_level += 1;
8007dc0: 29 63 00 1c lw r3,(r11+28)
rtems_task_mode( asr->mode_set, RTEMS_ALL_MODE_MASKS, &prev_mode );
8007dc4: 29 61 00 10 lw r1,(r11+16) 8007dc8: 38 02 ff ff mvu r2,0xffff
if ( !signal_set ) /* similar to _ASR_Are_signals_pending( asr ) */ return; asr->nest_level += 1;
8007dcc: 34 63 00 01 addi r3,r3,1 8007dd0: 59 63 00 1c sw (r11+28),r3
rtems_task_mode( asr->mode_set, RTEMS_ALL_MODE_MASKS, &prev_mode );
8007dd4: 37 83 00 10 addi r3,sp,16 8007dd8: f8 00 09 36 calli 800a2b0 <rtems_task_mode>
(*asr->handler)( signal_set );
8007ddc: 29 62 00 0c lw r2,(r11+12) 8007de0: b9 80 08 00 mv r1,r12 8007de4: d8 40 00 00 call r2
asr->nest_level -= 1;
8007de8: 29 63 00 1c lw r3,(r11+28)
rtems_task_mode( prev_mode, RTEMS_ALL_MODE_MASKS, &prev_mode );
8007dec: 2b 81 00 10 lw r1,(sp+16) 8007df0: 38 02 ff ff mvu r2,0xffff
asr->nest_level += 1; rtems_task_mode( asr->mode_set, RTEMS_ALL_MODE_MASKS, &prev_mode ); (*asr->handler)( signal_set ); asr->nest_level -= 1;
8007df4: 34 63 ff ff addi r3,r3,-1 8007df8: 59 63 00 1c sw (r11+28),r3
rtems_task_mode( prev_mode, RTEMS_ALL_MODE_MASKS, &prev_mode );
8007dfc: 37 83 00 10 addi r3,sp,16 8007e00: f8 00 09 2c calli 800a2b0 <rtems_task_mode>
}
8007e04: 2b 9d 00 04 lw ra,(sp+4) 8007e08: 2b 8b 00 0c lw r11,(sp+12) 8007e0c: 2b 8c 00 08 lw r12,(sp+8) 8007e10: 37 9c 00 10 addi sp,sp,16 8007e14: c3 a0 00 00 ret
0803c80c <_Rate_monotonic_Timeout>: void _Rate_monotonic_Timeout( Objects_Id id, void *ignored ) {
803c80c: 37 9c ff f4 addi sp,sp,-12 803c810: 5b 8b 00 08 sw (sp+8),r11 803c814: 5b 9d 00 04 sw (sp+4),ra 803c818: b8 20 10 00 mv r2,r1 803c81c: 78 01 08 06 mvhi r1,0x806 803c820: 38 21 f4 9c ori r1,r1,0xf49c 803c824: 37 83 00 0c addi r3,sp,12 803c828: fb ff 37 6d calli 800a5dc <_Objects_Get>
/* * When we get here, the Timer is already off the chain so we do not * have to worry about that -- hence no _Watchdog_Remove(). */ the_period = _Rate_monotonic_Get( id, &location ); switch ( location ) {
803c82c: 2b 82 00 0c lw r2,(sp+12) 803c830: b8 20 58 00 mv r11,r1
803c834: 5c 40 00 21 bne r2,r0,803c8b8 <_Rate_monotonic_Timeout+0xac><== NEVER TAKEN
case OBJECTS_LOCAL: the_thread = the_period->owner;
803c838: 28 21 00 40 lw r1,(r1+64)
if ( _States_Is_waiting_for_period( the_thread->current_state ) &&
803c83c: 28 23 00 10 lw r3,(r1+16) 803c840: 20 63 40 00 andi r3,r3,0x4000
803c844: 44 62 00 08 be r3,r2,803c864 <_Rate_monotonic_Timeout+0x58> the_thread->Wait.id == the_period->Object.id ) {
803c848: 28 23 00 20 lw r3,(r1+32) 803c84c: 29 62 00 08 lw r2,(r11+8)
803c850: 5c 62 00 05 bne r3,r2,803c864 <_Rate_monotonic_Timeout+0x58> RTEMS_INLINE_ROUTINE void _Thread_Unblock ( Thread_Control *the_thread ) { _Thread_Clear_state( the_thread, STATES_BLOCKED );
803c854: 78 02 10 03 mvhi r2,0x1003 803c858: 38 42 ff f8 ori r2,r2,0xfff8 803c85c: fb ff ba 40 calli 802b15c <_Thread_Clear_state> 803c860: e0 00 00 06 bi 803c878 <_Rate_monotonic_Timeout+0x6c>
_Thread_Unblock( the_thread ); _Rate_monotonic_Initiate_statistics( the_period ); _Watchdog_Insert_ticks( &the_period->Timer, the_period->next_length ); } else if ( the_period->state == RATE_MONOTONIC_OWNER_IS_BLOCKING ) {
803c864: 29 62 00 38 lw r2,(r11+56) 803c868: 34 01 00 01 mvi r1,1
803c86c: 5c 41 00 0c bne r2,r1,803c89c <_Rate_monotonic_Timeout+0x90><== ALWAYS TAKEN
the_period->state = RATE_MONOTONIC_EXPIRED_WHILE_BLOCKING;
803c870: 34 01 00 03 mvi r1,3 <== NOT EXECUTED 803c874: 59 61 00 38 sw (r11+56),r1 <== NOT EXECUTED
_Rate_monotonic_Initiate_statistics( the_period );
803c878: b9 60 08 00 mv r1,r11 803c87c: fb ff fe cd calli 803c3b0 <_Rate_monotonic_Initiate_statistics>
Watchdog_Control *the_watchdog, Watchdog_Interval units ) { the_watchdog->initial = units;
803c880: 29 61 00 3c lw r1,(r11+60)
_Watchdog_Insert( &_Watchdog_Ticks_chain, the_watchdog );
803c884: 35 62 00 10 addi r2,r11,16
Watchdog_Control *the_watchdog, Watchdog_Interval units ) { the_watchdog->initial = units;
803c888: 59 61 00 1c sw (r11+28),r1
_Watchdog_Insert( &_Watchdog_Ticks_chain, the_watchdog );
803c88c: 78 01 08 06 mvhi r1,0x806 803c890: 38 21 f1 00 ori r1,r1,0xf100 803c894: fb ff 3e dc calli 800c404 <_Watchdog_Insert> 803c898: e0 00 00 03 bi 803c8a4 <_Rate_monotonic_Timeout+0x98>
_Watchdog_Insert_ticks( &the_period->Timer, the_period->next_length ); } else the_period->state = RATE_MONOTONIC_EXPIRED;
803c89c: 34 01 00 04 mvi r1,4 803c8a0: 59 61 00 38 sw (r11+56),r1
*/ RTEMS_INLINE_ROUTINE void _Thread_Unnest_dispatch( void ) { RTEMS_COMPILER_MEMORY_BARRIER(); _Thread_Dispatch_disable_level -= 1;
803c8a4: 78 01 08 06 mvhi r1,0x806 803c8a8: 38 21 f0 24 ori r1,r1,0xf024 803c8ac: 28 22 00 00 lw r2,(r1+0) 803c8b0: 34 42 ff ff addi r2,r2,-1 803c8b4: 58 22 00 00 sw (r1+0),r2
case OBJECTS_REMOTE: /* impossible */ #endif case OBJECTS_ERROR: break; } }
803c8b8: 2b 9d 00 04 lw ra,(sp+4) 803c8bc: 2b 8b 00 08 lw r11,(sp+8) 803c8c0: 37 9c 00 0c addi sp,sp,12 803c8c4: c3 a0 00 00 ret
0803c528 <_Rate_monotonic_Update_statistics>: } void _Rate_monotonic_Update_statistics( Rate_monotonic_Control *the_period ) {
803c528: 37 9c ff e4 addi sp,sp,-28 803c52c: 5b 8b 00 0c sw (sp+12),r11 803c530: 5b 8c 00 08 sw (sp+8),r12 803c534: 5b 9d 00 04 sw (sp+4),ra 803c538: b8 20 58 00 mv r11,r1
/* * Update the counts. */ stats = &the_period->Statistics; stats->count++;
803c53c: 28 21 00 54 lw r1,(r1+84)
if ( the_period->state == RATE_MONOTONIC_EXPIRED )
803c540: 29 62 00 38 lw r2,(r11+56)
/* * Update the counts. */ stats = &the_period->Statistics; stats->count++;
803c544: 34 21 00 01 addi r1,r1,1 803c548: 59 61 00 54 sw (r11+84),r1
if ( the_period->state == RATE_MONOTONIC_EXPIRED )
803c54c: 34 01 00 04 mvi r1,4
803c550: 5c 41 00 04 bne r2,r1,803c560 <_Rate_monotonic_Update_statistics+0x38> stats->missed_count++;
803c554: 29 61 00 58 lw r1,(r11+88) 803c558: 34 21 00 01 addi r1,r1,1 803c55c: 59 61 00 58 sw (r11+88),r1
/* * Grab status for time statistics. */ valid_status = _Rate_monotonic_Get_status( the_period, &since_last_period, &executed );
803c560: 37 8c 00 18 addi r12,sp,24 803c564: b9 60 08 00 mv r1,r11 803c568: 37 82 00 10 addi r2,sp,16 803c56c: b9 80 18 00 mv r3,r12 803c570: fb ff ff b5 calli 803c444 <_Rate_monotonic_Get_status>
if (!valid_status)
803c574: 44 20 00 28 be r1,r0,803c614 <_Rate_monotonic_Update_statistics+0xec><== NEVER TAKEN
/* * Update CPU time */ #ifndef __RTEMS_USE_TICKS_FOR_STATISTICS__ _Timestamp_Add_to( &stats->total_cpu_time, &executed );
803c578: b9 80 10 00 mv r2,r12 803c57c: 35 61 00 6c addi r1,r11,108 803c580: fb ff 3e 87 calli 800bf9c <_Timespec_Add_to>
if ( _Timestamp_Less_than( &executed, &stats->min_cpu_time ) )
803c584: b9 80 08 00 mv r1,r12 803c588: 35 62 00 5c addi r2,r11,92 803c58c: f8 00 02 d1 calli 803d0d0 <_Timespec_Less_than>
803c590: 44 20 00 05 be r1,r0,803c5a4 <_Rate_monotonic_Update_statistics+0x7c> stats->min_cpu_time = executed;
803c594: 2b 81 00 18 lw r1,(sp+24) 803c598: 59 61 00 5c sw (r11+92),r1 803c59c: 2b 81 00 1c lw r1,(sp+28) 803c5a0: 59 61 00 60 sw (r11+96),r1
if ( _Timestamp_Greater_than( &executed, &stats->max_cpu_time ) )
803c5a4: 37 81 00 18 addi r1,sp,24 803c5a8: 35 62 00 64 addi r2,r11,100 803c5ac: f8 00 02 bd calli 803d0a0 <_Timespec_Greater_than>
803c5b0: 44 20 00 05 be r1,r0,803c5c4 <_Rate_monotonic_Update_statistics+0x9c> stats->max_cpu_time = executed;
803c5b4: 2b 81 00 18 lw r1,(sp+24) 803c5b8: 59 61 00 64 sw (r11+100),r1 803c5bc: 2b 81 00 1c lw r1,(sp+28) 803c5c0: 59 61 00 68 sw (r11+104),r1
/* * Update Wall time */ #ifndef __RTEMS_USE_TICKS_FOR_STATISTICS__ _Timestamp_Add_to( &stats->total_wall_time, &since_last_period );
803c5c4: 37 8c 00 10 addi r12,sp,16 803c5c8: b9 80 10 00 mv r2,r12 803c5cc: 35 61 00 84 addi r1,r11,132 803c5d0: fb ff 3e 73 calli 800bf9c <_Timespec_Add_to>
if ( _Timestamp_Less_than( &since_last_period, &stats->min_wall_time ) )
803c5d4: b9 80 08 00 mv r1,r12 803c5d8: 35 62 00 74 addi r2,r11,116 803c5dc: f8 00 02 bd calli 803d0d0 <_Timespec_Less_than>
803c5e0: 44 20 00 05 be r1,r0,803c5f4 <_Rate_monotonic_Update_statistics+0xcc> stats->min_wall_time = since_last_period;
803c5e4: 2b 81 00 10 lw r1,(sp+16) 803c5e8: 59 61 00 74 sw (r11+116),r1 803c5ec: 2b 81 00 14 lw r1,(sp+20) 803c5f0: 59 61 00 78 sw (r11+120),r1
if ( _Timestamp_Greater_than( &since_last_period, &stats->max_wall_time ) )
803c5f4: 37 81 00 10 addi r1,sp,16 803c5f8: 35 62 00 7c addi r2,r11,124 803c5fc: f8 00 02 a9 calli 803d0a0 <_Timespec_Greater_than>
803c600: 44 20 00 05 be r1,r0,803c614 <_Rate_monotonic_Update_statistics+0xec> stats->max_wall_time = since_last_period;
803c604: 2b 81 00 14 lw r1,(sp+20) 803c608: 59 61 00 80 sw (r11+128),r1 803c60c: 2b 81 00 10 lw r1,(sp+16) 803c610: 59 61 00 7c sw (r11+124),r1
stats->min_wall_time = since_last_period; if ( since_last_period > stats->max_wall_time ) stats->max_wall_time = since_last_period; #endif }
803c614: 2b 9d 00 04 lw ra,(sp+4) 803c618: 2b 8b 00 0c lw r11,(sp+12) 803c61c: 2b 8c 00 08 lw r12,(sp+8) 803c620: 37 9c 00 1c addi sp,sp,28 803c624: c3 a0 00 00 ret
080082e0 <_TOD_Get>: */ void _TOD_Get( struct timespec *time ) {
80082e0: 37 9c ff e4 addi sp,sp,-28 80082e4: 5b 8b 00 0c sw (sp+12),r11 80082e8: 5b 8c 00 08 sw (sp+8),r12 80082ec: 5b 9d 00 04 sw (sp+4),ra 80082f0: b8 20 58 00 mv r11,r1
/* assume time checked for NULL by caller */ /* _TOD_Now is the native current time */ nanoseconds = 0; _ISR_Disable( level );
80082f4: 90 00 60 00 rcsr r12,IE 80082f8: 34 01 ff fe mvi r1,-2 80082fc: a1 81 08 00 and r1,r12,r1 8008300: d0 01 00 00 wcsr IE,r1
now = _TOD_Now;
8008304: 78 02 08 01 mvhi r2,0x801 8008308: 38 42 c8 b4 ori r2,r2,0xc8b4
if ( _Watchdog_Nanoseconds_since_tick_handler )
800830c: 78 03 08 01 mvhi r3,0x801
/* assume time checked for NULL by caller */ /* _TOD_Now is the native current time */ nanoseconds = 0; _ISR_Disable( level ); now = _TOD_Now;
8008310: 28 41 00 04 lw r1,(r2+4)
if ( _Watchdog_Nanoseconds_since_tick_handler )
8008314: 38 63 c9 c4 ori r3,r3,0xc9c4
/* assume time checked for NULL by caller */ /* _TOD_Now is the native current time */ nanoseconds = 0; _ISR_Disable( level ); now = _TOD_Now;
8008318: 28 42 00 00 lw r2,(r2+0)
if ( _Watchdog_Nanoseconds_since_tick_handler )
800831c: 28 63 00 00 lw r3,(r3+0)
/* assume time checked for NULL by caller */ /* _TOD_Now is the native current time */ nanoseconds = 0; _ISR_Disable( level ); now = _TOD_Now;
8008320: 5b 81 00 14 sw (sp+20),r1 8008324: 5b 82 00 10 sw (sp+16),r2
if ( _Watchdog_Nanoseconds_since_tick_handler )
8008328: b8 60 20 00 mv r4,r3
800832c: 44 60 00 03 be r3,r0,8008338 <_TOD_Get+0x58> <== ALWAYS TAKEN
nanoseconds = (*_Watchdog_Nanoseconds_since_tick_handler)();
8008330: d8 60 00 00 call r3 <== NOT EXECUTED 8008334: b8 20 20 00 mv r4,r1 <== NOT EXECUTED
_ISR_Enable( level );
8008338: d0 0c 00 00 wcsr IE,r12
_Timestamp_Set( &offset, 0, nanoseconds );
800833c: 34 03 00 00 mvi r3,0
_Timestamp_Add_to( &now, &offset );
8008340: 37 81 00 10 addi r1,sp,16 8008344: 37 82 00 18 addi r2,sp,24
now = _TOD_Now; if ( _Watchdog_Nanoseconds_since_tick_handler ) nanoseconds = (*_Watchdog_Nanoseconds_since_tick_handler)(); _ISR_Enable( level ); _Timestamp_Set( &offset, 0, nanoseconds );
8008348: 5b 83 00 18 sw (sp+24),r3 800834c: 5b 84 00 1c sw (sp+28),r4
_Timestamp_Add_to( &now, &offset );
8008350: fb ff f3 86 calli 8005168 <_Timespec_Add_to>
_Timestamp_To_timespec( &now, time );
8008354: 2b 81 00 14 lw r1,(sp+20) 8008358: 59 61 00 04 sw (r11+4),r1 800835c: 2b 81 00 10 lw r1,(sp+16) 8008360: 59 61 00 00 sw (r11+0),r1
}
8008364: 2b 9d 00 04 lw ra,(sp+4) 8008368: 2b 8b 00 0c lw r11,(sp+12) 800836c: 2b 8c 00 08 lw r12,(sp+8) 8008370: 37 9c 00 1c addi sp,sp,28 8008374: c3 a0 00 00 ret
08008378 <_TOD_Get_uptime>: */ void _TOD_Get_uptime( Timestamp_Control *uptime ) {
8008378: 37 9c ff e4 addi sp,sp,-28 800837c: 5b 8b 00 0c sw (sp+12),r11 8008380: 5b 8c 00 08 sw (sp+8),r12 8008384: 5b 9d 00 04 sw (sp+4),ra 8008388: b8 20 58 00 mv r11,r1
/* assume time checked for NULL by caller */ /* _TOD_Uptime is in native timestamp format */ nanoseconds = 0; _ISR_Disable( level );
800838c: 90 00 60 00 rcsr r12,IE 8008390: 34 01 ff fe mvi r1,-2 8008394: a1 81 08 00 and r1,r12,r1 8008398: d0 01 00 00 wcsr IE,r1
up = _TOD_Uptime;
800839c: 78 02 08 01 mvhi r2,0x801 80083a0: 38 42 c8 a4 ori r2,r2,0xc8a4
if ( _Watchdog_Nanoseconds_since_tick_handler )
80083a4: 78 03 08 01 mvhi r3,0x801
/* assume time checked for NULL by caller */ /* _TOD_Uptime is in native timestamp format */ nanoseconds = 0; _ISR_Disable( level ); up = _TOD_Uptime;
80083a8: 28 41 00 04 lw r1,(r2+4)
if ( _Watchdog_Nanoseconds_since_tick_handler )
80083ac: 38 63 c9 c4 ori r3,r3,0xc9c4
/* assume time checked for NULL by caller */ /* _TOD_Uptime is in native timestamp format */ nanoseconds = 0; _ISR_Disable( level ); up = _TOD_Uptime;
80083b0: 28 42 00 00 lw r2,(r2+0)
if ( _Watchdog_Nanoseconds_since_tick_handler )
80083b4: 28 63 00 00 lw r3,(r3+0)
/* assume time checked for NULL by caller */ /* _TOD_Uptime is in native timestamp format */ nanoseconds = 0; _ISR_Disable( level ); up = _TOD_Uptime;
80083b8: 5b 81 00 14 sw (sp+20),r1 80083bc: 5b 82 00 10 sw (sp+16),r2
if ( _Watchdog_Nanoseconds_since_tick_handler )
80083c0: b8 60 20 00 mv r4,r3
80083c4: 44 60 00 03 be r3,r0,80083d0 <_TOD_Get_uptime+0x58> <== ALWAYS TAKEN
nanoseconds = (*_Watchdog_Nanoseconds_since_tick_handler)();
80083c8: d8 60 00 00 call r3 <== NOT EXECUTED 80083cc: b8 20 20 00 mv r4,r1 <== NOT EXECUTED
_ISR_Enable( level );
80083d0: d0 0c 00 00 wcsr IE,r12
_Timestamp_Set( &offset, 0, nanoseconds );
80083d4: 34 03 00 00 mvi r3,0
_Timestamp_Add_to( &up, &offset );
80083d8: 37 81 00 10 addi r1,sp,16 80083dc: 37 82 00 18 addi r2,sp,24
up = _TOD_Uptime; if ( _Watchdog_Nanoseconds_since_tick_handler ) nanoseconds = (*_Watchdog_Nanoseconds_since_tick_handler)(); _ISR_Enable( level ); _Timestamp_Set( &offset, 0, nanoseconds );
80083e0: 5b 83 00 18 sw (sp+24),r3 80083e4: 5b 84 00 1c sw (sp+28),r4
_Timestamp_Add_to( &up, &offset );
80083e8: fb ff f3 60 calli 8005168 <_Timespec_Add_to>
*uptime = up;
80083ec: 2b 81 00 14 lw r1,(sp+20) 80083f0: 59 61 00 04 sw (r11+4),r1 80083f4: 2b 81 00 10 lw r1,(sp+16) 80083f8: 59 61 00 00 sw (r11+0),r1
}
80083fc: 2b 9d 00 04 lw ra,(sp+4) 8008400: 2b 8b 00 0c lw r11,(sp+12) 8008404: 2b 8c 00 08 lw r12,(sp+8) 8008408: 37 9c 00 1c addi sp,sp,28 800840c: c3 a0 00 00 ret
0800380c <_TOD_Validate>: */ bool _TOD_Validate( const rtems_time_of_day *the_tod ) {
800380c: 37 9c ff f4 addi sp,sp,-12 8003810: 5b 8b 00 0c sw (sp+12),r11 8003814: 5b 8c 00 08 sw (sp+8),r12 8003818: 5b 9d 00 04 sw (sp+4),ra
uint32_t days_in_month; uint32_t ticks_per_second; ticks_per_second = TOD_MICROSECONDS_PER_SECOND / rtems_configuration_get_microseconds_per_tick();
800381c: 78 02 08 02 mvhi r2,0x802 8003820: 38 42 20 c4 ori r2,r2,0x20c4
*/ bool _TOD_Validate( const rtems_time_of_day *the_tod ) {
8003824: b8 20 58 00 mv r11,r1
uint32_t days_in_month; uint32_t ticks_per_second; ticks_per_second = TOD_MICROSECONDS_PER_SECOND / rtems_configuration_get_microseconds_per_tick();
8003828: 28 42 00 0c lw r2,(r2+12)
if ((!the_tod) ||
800382c: 44 20 00 22 be r1,r0,80038b4 <_TOD_Validate+0xa8> <== NEVER TAKEN
(the_tod->ticks >= ticks_per_second) ||
8003830: 78 01 00 0f mvhi r1,0xf 8003834: 38 21 42 40 ori r1,r1,0x4240 8003838: f8 00 6a 31 calli 801e0fc <__udivsi3> 800383c: 29 62 00 18 lw r2,(r11+24)
8003840: 50 41 00 1d bgeu r2,r1,80038b4 <_TOD_Validate+0xa8> (the_tod->second >= TOD_SECONDS_PER_MINUTE) ||
8003844: 29 62 00 14 lw r2,(r11+20) 8003848: 34 01 00 3b mvi r1,59
800384c: 54 41 00 1a bgu r2,r1,80038b4 <_TOD_Validate+0xa8> (the_tod->minute >= TOD_MINUTES_PER_HOUR) ||
8003850: 29 62 00 10 lw r2,(r11+16)
8003854: 54 41 00 18 bgu r2,r1,80038b4 <_TOD_Validate+0xa8> (the_tod->hour >= TOD_HOURS_PER_DAY) ||
8003858: 29 62 00 0c lw r2,(r11+12) 800385c: 34 01 00 17 mvi r1,23
8003860: 54 41 00 15 bgu r2,r1,80038b4 <_TOD_Validate+0xa8> (the_tod->month == 0) ||
8003864: 29 61 00 04 lw r1,(r11+4)
uint32_t days_in_month; uint32_t ticks_per_second; ticks_per_second = TOD_MICROSECONDS_PER_SECOND / rtems_configuration_get_microseconds_per_tick(); if ((!the_tod) ||
8003868: 44 20 00 13 be r1,r0,80038b4 <_TOD_Validate+0xa8> <== NEVER TAKEN
800386c: 34 02 00 0c mvi r2,12
8003870: 54 22 00 11 bgu r1,r2,80038b4 <_TOD_Validate+0xa8> (the_tod->second >= TOD_SECONDS_PER_MINUTE) || (the_tod->minute >= TOD_MINUTES_PER_HOUR) || (the_tod->hour >= TOD_HOURS_PER_DAY) || (the_tod->month == 0) || (the_tod->month > TOD_MONTHS_PER_YEAR) || (the_tod->year < TOD_BASE_YEAR) ||
8003874: 29 62 00 00 lw r2,(r11+0)
uint32_t days_in_month; uint32_t ticks_per_second; ticks_per_second = TOD_MICROSECONDS_PER_SECOND / rtems_configuration_get_microseconds_per_tick(); if ((!the_tod) ||
8003878: 34 03 07 c3 mvi r3,1987
800387c: 50 62 00 0e bgeu r3,r2,80038b4 <_TOD_Validate+0xa8> (the_tod->minute >= TOD_MINUTES_PER_HOUR) || (the_tod->hour >= TOD_HOURS_PER_DAY) || (the_tod->month == 0) || (the_tod->month > TOD_MONTHS_PER_YEAR) || (the_tod->year < TOD_BASE_YEAR) || (the_tod->day == 0) )
8003880: 29 6c 00 08 lw r12,(r11+8)
uint32_t days_in_month; uint32_t ticks_per_second; ticks_per_second = TOD_MICROSECONDS_PER_SECOND / rtems_configuration_get_microseconds_per_tick(); if ((!the_tod) ||
8003884: 45 80 00 0c be r12,r0,80038b4 <_TOD_Validate+0xa8> <== NEVER TAKEN
8003888: 78 0b 08 01 mvhi r11,0x801
(the_tod->month > TOD_MONTHS_PER_YEAR) || (the_tod->year < TOD_BASE_YEAR) || (the_tod->day == 0) ) return false; if ( (the_tod->year % 4) == 0 )
800388c: 20 42 00 03 andi r2,r2,0x3 8003890: 39 6b fb f0 ori r11,r11,0xfbf0
8003894: 5c 40 00 02 bne r2,r0,800389c <_TOD_Validate+0x90> days_in_month = _TOD_Days_per_month[ 1 ][ the_tod->month ];
8003898: 34 21 00 0d addi r1,r1,13
else days_in_month = _TOD_Days_per_month[ 0 ][ the_tod->month ];
800389c: 34 02 00 02 mvi r2,2 80038a0: fb ff f6 62 calli 8001228 <__ashlsi3> 80038a4: b5 61 08 00 add r1,r11,r1 80038a8: 28 21 00 00 lw r1,(r1+0)
* false - if the the_tod is invalid * * NOTE: This routine only works for leap-years through 2099. */ bool _TOD_Validate(
80038ac: f0 2c 08 00 cmpgeu r1,r1,r12 80038b0: e0 00 00 02 bi 80038b8 <_TOD_Validate+0xac> 80038b4: 34 01 00 00 mvi r1,0
if ( the_tod->day > days_in_month ) return false; return true; }
80038b8: 2b 9d 00 04 lw ra,(sp+4) 80038bc: 2b 8b 00 0c lw r11,(sp+12) 80038c0: 2b 8c 00 08 lw r12,(sp+8) 80038c4: 37 9c 00 0c addi sp,sp,12 80038c8: c3 a0 00 00 ret
08003cd4 <_Thread_Change_priority>: void _Thread_Change_priority( Thread_Control *the_thread, Priority_Control new_priority, bool prepend_it ) {
8003cd4: 37 9c ff ec addi sp,sp,-20 8003cd8: 5b 8b 00 14 sw (sp+20),r11 8003cdc: 5b 8c 00 10 sw (sp+16),r12 8003ce0: 5b 8d 00 0c sw (sp+12),r13 8003ce4: 5b 8e 00 08 sw (sp+8),r14 8003ce8: 5b 9d 00 04 sw (sp+4),ra 8003cec: b8 20 58 00 mv r11,r1
*/ /* * Save original state */ original_state = the_thread->current_state;
8003cf0: 28 2e 00 10 lw r14,(r1+16)
void _Thread_Change_priority( Thread_Control *the_thread, Priority_Control new_priority, bool prepend_it ) {
8003cf4: b8 40 60 00 mv r12,r2 8003cf8: 20 6d 00 ff andi r13,r3,0xff
/* * Set a transient state for the thread so it is pulled off the Ready chains. * This will prevent it from being scheduled no matter what happens in an * ISR. */ _Thread_Set_transient( the_thread );
8003cfc: f8 00 04 84 calli 8004f0c <_Thread_Set_transient>
/* * Do not bother recomputing all the priority related information if * we are not REALLY changing priority. */ if ( the_thread->current_priority != new_priority )
8003d00: 29 61 00 14 lw r1,(r11+20)
8003d04: 44 2c 00 04 be r1,r12,8003d14 <_Thread_Change_priority+0x40> _Thread_Set_priority( the_thread, new_priority );
8003d08: b9 80 10 00 mv r2,r12 8003d0c: b9 60 08 00 mv r1,r11 8003d10: f8 00 03 dc calli 8004c80 <_Thread_Set_priority>
_ISR_Disable( level );
8003d14: 90 00 60 00 rcsr r12,IE 8003d18: 34 05 ff fe mvi r5,-2 8003d1c: a1 85 28 00 and r5,r12,r5 8003d20: d0 05 00 00 wcsr IE,r5
/* * If the thread has more than STATES_TRANSIENT set, then it is blocked, * If it is blocked on a thread queue, then we need to requeue it. */ state = the_thread->current_state;
8003d24: 29 64 00 10 lw r4,(r11+16)
if ( state != STATES_TRANSIENT ) {
8003d28: 34 01 00 04 mvi r1,4 8003d2c: 21 c2 00 04 andi r2,r14,0x4
8003d30: 44 81 00 0e be r4,r1,8003d68 <_Thread_Change_priority+0x94> /* Only clear the transient state if it wasn't set already */ if ( ! _States_Is_transient( original_state ) )
8003d34: 5c 40 00 04 bne r2,r0,8003d44 <_Thread_Change_priority+0x70><== NEVER TAKEN
the_thread->current_state = _States_Clear( STATES_TRANSIENT, state );
8003d38: 34 01 ff fb mvi r1,-5 8003d3c: a0 81 08 00 and r1,r4,r1 8003d40: 59 61 00 10 sw (r11+16),r1
_ISR_Enable( level );
8003d44: d0 0c 00 00 wcsr IE,r12
if ( _States_Is_waiting_on_thread_queue( state ) ) {
8003d48: 78 01 00 03 mvhi r1,0x3 8003d4c: 38 21 be e0 ori r1,r1,0xbee0 8003d50: a0 81 08 00 and r1,r4,r1
8003d54: 44 20 00 5f be r1,r0,8003ed0 <_Thread_Change_priority+0x1fc> _Thread_queue_Requeue( the_thread->Wait.queue, the_thread );
8003d58: 29 61 00 44 lw r1,(r11+68) 8003d5c: b9 60 10 00 mv r2,r11 8003d60: f8 00 03 95 calli 8004bb4 <_Thread_queue_Requeue> 8003d64: e0 00 00 5b bi 8003ed0 <_Thread_Change_priority+0x1fc>
} return; } /* Only clear the transient state if it wasn't set already */ if ( ! _States_Is_transient( original_state ) ) {
8003d68: 5c 40 00 1c bne r2,r0,8003dd8 <_Thread_Change_priority+0x104><== NEVER TAKEN
RTEMS_INLINE_ROUTINE void _Priority_Add_to_bit_map ( Priority_Information *the_priority_map ) { *the_priority_map->minor |= the_priority_map->ready_minor;
8003d6c: 29 61 00 90 lw r1,(r11+144) 8003d70: 2d 63 00 96 lhu r3,(r11+150)
_Priority_Major_bit_map |= the_priority_map->ready_major;
8003d74: 78 04 08 01 mvhi r4,0x801
RTEMS_INLINE_ROUTINE void _Priority_Add_to_bit_map ( Priority_Information *the_priority_map ) { *the_priority_map->minor |= the_priority_map->ready_minor;
8003d78: 2c 26 00 00 lhu r6,(r1+0)
_Priority_Major_bit_map |= the_priority_map->ready_major;
8003d7c: 38 84 c8 d4 ori r4,r4,0xc8d4
* Interrupts are STILL disabled. * We now know the thread will be in the READY state when we remove * the TRANSIENT state. So we have to place it on the appropriate * Ready Queue with interrupts off. */ the_thread->current_state = _States_Clear( STATES_TRANSIENT, state );
8003d80: 59 62 00 10 sw (r11+16),r2
RTEMS_INLINE_ROUTINE void _Priority_Add_to_bit_map ( Priority_Information *the_priority_map ) { *the_priority_map->minor |= the_priority_map->ready_minor;
8003d84: b8 c3 18 00 or r3,r6,r3 8003d88: 0c 23 00 00 sh (r1+0),r3
_Priority_Major_bit_map |= the_priority_map->ready_major;
8003d8c: 2c 83 00 00 lhu r3,(r4+0) 8003d90: 2d 66 00 94 lhu r6,(r11+148) 8003d94: 29 61 00 8c lw r1,(r11+140) 8003d98: b8 c3 18 00 or r3,r6,r3 8003d9c: 20 63 ff ff andi r3,r3,0xffff 8003da0: 0c 83 00 00 sh (r4+0),r3
_Priority_Add_to_bit_map( &the_thread->Priority_map ); if ( prepend_it ) 8003da4: 45 a2 00 07 be r13,r2,8003dc0 <_Thread_Change_priority+0xec> ) { Chain_Node *before_node; the_node->previous = after_node; before_node = after_node->next;
8003da8: 28 22 00 00 lw r2,(r1+0)
Chain_Node *the_node ) { Chain_Node *before_node; the_node->previous = after_node;
8003dac: 59 61 00 04 sw (r11+4),r1
before_node = after_node->next; after_node->next = the_node;
8003db0: 58 2b 00 00 sw (r1+0),r11
the_node->next = before_node; before_node->previous = the_node;
8003db4: 58 4b 00 04 sw (r2+4),r11
Chain_Node *before_node; the_node->previous = after_node; before_node = after_node->next; after_node->next = the_node; the_node->next = before_node;
8003db8: 59 62 00 00 sw (r11+0),r2 8003dbc: e0 00 00 07 bi 8003dd8 <_Thread_Change_priority+0x104>
Chain_Node *the_node ) { Chain_Node *old_last_node; the_node->next = _Chain_Tail(the_chain);
8003dc0: 34 22 00 04 addi r2,r1,4 8003dc4: 59 62 00 00 sw (r11+0),r2
old_last_node = the_chain->last;
8003dc8: 28 22 00 08 lw r2,(r1+8)
the_chain->last = the_node;
8003dcc: 58 2b 00 08 sw (r1+8),r11
old_last_node->next = the_node; the_node->previous = old_last_node;
8003dd0: 59 62 00 04 sw (r11+4),r2
Chain_Node *old_last_node; the_node->next = _Chain_Tail(the_chain); old_last_node = the_chain->last; the_chain->last = the_node; old_last_node->next = the_node;
8003dd4: 58 4b 00 00 sw (r2+0),r11
_Chain_Prepend_unprotected( the_thread->ready, &the_thread->Object.Node ); else _Chain_Append_unprotected( the_thread->ready, &the_thread->Object.Node ); } _ISR_Flash( level );
8003dd8: d0 0c 00 00 wcsr IE,r12 8003ddc: d0 05 00 00 wcsr IE,r5
RTEMS_INLINE_ROUTINE Priority_Control _Priority_Get_highest( void ) { Priority_Bit_map_control minor; Priority_Bit_map_control major; _Bitfield_Find_first_bit( _Priority_Major_bit_map, major );
8003de0: 78 01 08 01 mvhi r1,0x801 8003de4: 38 21 c8 d4 ori r1,r1,0xc8d4 8003de8: 2c 21 00 00 lhu r1,(r1+0)
*/ RTEMS_INLINE_ROUTINE void _Thread_Calculate_heir( void ) { _Thread_Heir = (Thread_Control *) _Thread_Ready_chain[ _Priority_Get_highest() ].first;
8003dec: 78 02 08 01 mvhi r2,0x801 8003df0: 38 42 c7 b0 ori r2,r2,0xc7b0 8003df4: 78 0b 08 01 mvhi r11,0x801 8003df8: 28 4e 00 00 lw r14,(r2+0) 8003dfc: 20 21 ff ff andi r1,r1,0xffff 8003e00: 34 02 00 ff mvi r2,255 8003e04: 39 6b a3 14 ori r11,r11,0xa314
8003e08: 54 22 00 05 bgu r1,r2,8003e1c <_Thread_Change_priority+0x148>
8003e0c: b5 61 58 00 add r11,r11,r1 8003e10: 41 6d 00 00 lbu r13,(r11+0) 8003e14: 35 ad 00 08 addi r13,r13,8 8003e18: e0 00 00 05 bi 8003e2c <_Thread_Change_priority+0x158> 8003e1c: 34 02 00 08 mvi r2,8 8003e20: fb ff f1 1c calli 8000290 <__lshrsi3> 8003e24: b5 61 58 00 add r11,r11,r1 8003e28: 41 6d 00 00 lbu r13,(r11+0)
_Bitfield_Find_first_bit( _Priority_Bit_map[major], minor );
8003e2c: 78 02 08 01 mvhi r2,0x801 8003e30: b5 ad 08 00 add r1,r13,r13 8003e34: 38 42 c9 50 ori r2,r2,0xc950 8003e38: b4 41 10 00 add r2,r2,r1 8003e3c: 2c 41 00 00 lhu r1,(r2+0) 8003e40: 78 0b 08 01 mvhi r11,0x801 8003e44: 34 02 00 ff mvi r2,255 8003e48: 39 6b a3 14 ori r11,r11,0xa314
8003e4c: 54 22 00 05 bgu r1,r2,8003e60 <_Thread_Change_priority+0x18c>
8003e50: b5 61 58 00 add r11,r11,r1 8003e54: 41 6b 00 00 lbu r11,(r11+0) 8003e58: 35 6b 00 08 addi r11,r11,8 8003e5c: e0 00 00 05 bi 8003e70 <_Thread_Change_priority+0x19c> 8003e60: 34 02 00 08 mvi r2,8 8003e64: fb ff f1 0b calli 8000290 <__lshrsi3> 8003e68: b5 61 58 00 add r11,r11,r1 8003e6c: 41 6b 00 00 lbu r11,(r11+0)
* ready thread. */ RTEMS_INLINE_ROUTINE void _Thread_Calculate_heir( void ) { _Thread_Heir = (Thread_Control *)
8003e70: 34 02 00 04 mvi r2,4 8003e74: b9 a0 08 00 mv r1,r13 8003e78: fb ff f0 de calli 80001f0 <__ashlsi3> 8003e7c: b5 61 08 00 add r1,r11,r1 8003e80: b4 21 10 00 add r2,r1,r1 8003e84: b4 41 08 00 add r1,r2,r1 8003e88: 34 02 00 02 mvi r2,2 8003e8c: fb ff f0 d9 calli 80001f0 <__ashlsi3> 8003e90: b5 c1 08 00 add r1,r14,r1
* is also the heir thread, and false otherwise. */ RTEMS_INLINE_ROUTINE bool _Thread_Is_executing_also_the_heir( void ) { return ( _Thread_Executing == _Thread_Heir );
8003e94: 78 02 08 01 mvhi r2,0x801
* ready thread. */ RTEMS_INLINE_ROUTINE void _Thread_Calculate_heir( void ) { _Thread_Heir = (Thread_Control *)
8003e98: 28 23 00 00 lw r3,(r1+0)
* is also the heir thread, and false otherwise. */ RTEMS_INLINE_ROUTINE bool _Thread_Is_executing_also_the_heir( void ) { return ( _Thread_Executing == _Thread_Heir );
8003e9c: 38 42 c8 e0 ori r2,r2,0xc8e0
* ready thread. */ RTEMS_INLINE_ROUTINE void _Thread_Calculate_heir( void ) { _Thread_Heir = (Thread_Control *)
8003ea0: 78 01 08 01 mvhi r1,0x801
* is also the heir thread, and false otherwise. */ RTEMS_INLINE_ROUTINE bool _Thread_Is_executing_also_the_heir( void ) { return ( _Thread_Executing == _Thread_Heir );
8003ea4: 28 42 00 00 lw r2,(r2+0)
* ready thread. */ RTEMS_INLINE_ROUTINE void _Thread_Calculate_heir( void ) { _Thread_Heir = (Thread_Control *)
8003ea8: 38 21 c8 b0 ori r1,r1,0xc8b0 8003eac: 58 23 00 00 sw (r1+0),r3
* We altered the set of thread priorities. So let's figure out * who is the heir and if we need to switch to them. */ _Thread_Calculate_heir(); if ( !_Thread_Is_executing_also_the_heir() && 8003eb0: 44 43 00 07 be r2,r3,8003ecc <_Thread_Change_priority+0x1f8> _Thread_Executing->is_preemptible )
8003eb4: 40 41 00 75 lbu r1,(r2+117)
8003eb8: 44 20 00 05 be r1,r0,8003ecc <_Thread_Change_priority+0x1f8> _Context_Switch_necessary = true;
8003ebc: 78 01 08 01 mvhi r1,0x801 8003ec0: 38 21 c8 f0 ori r1,r1,0xc8f0 8003ec4: 34 02 00 01 mvi r2,1 8003ec8: 30 22 00 00 sb (r1+0),r2
_ISR_Enable( level );
8003ecc: d0 0c 00 00 wcsr IE,r12
}
8003ed0: 2b 9d 00 04 lw ra,(sp+4) 8003ed4: 2b 8b 00 14 lw r11,(sp+20) 8003ed8: 2b 8c 00 10 lw r12,(sp+16) 8003edc: 2b 8d 00 0c lw r13,(sp+12) 8003ee0: 2b 8e 00 08 lw r14,(sp+8) 8003ee4: 37 9c 00 14 addi sp,sp,20 8003ee8: c3 a0 00 00 ret
08008b38 <_Thread_Clear_state>: ) { ISR_Level level; States_Control current_state; _ISR_Disable( level );
8008b38: 90 00 18 00 rcsr r3,IE 8008b3c: 34 05 ff fe mvi r5,-2 8008b40: a0 65 28 00 and r5,r3,r5 8008b44: d0 05 00 00 wcsr IE,r5
current_state = the_thread->current_state;
8008b48: 28 24 00 10 lw r4,(r1+16)
if ( current_state & state ) {
8008b4c: a0 44 30 00 and r6,r2,r4
8008b50: 44 c0 00 2b be r6,r0,8008bfc <_Thread_Clear_state+0xc4> RTEMS_INLINE_ROUTINE States_Control _States_Clear ( States_Control states_to_clear, States_Control current_state ) { return (current_state & ~states_to_clear);
8008b54: a4 40 10 00 not r2,r2 8008b58: a0 44 10 00 and r2,r2,r4
current_state =
8008b5c: 58 22 00 10 sw (r1+16),r2
the_thread->current_state = _States_Clear( state, current_state ); if ( _States_Is_ready( current_state ) ) { 8008b60: 5c 40 00 27 bne r2,r0,8008bfc <_Thread_Clear_state+0xc4> RTEMS_INLINE_ROUTINE void _Priority_Add_to_bit_map ( Priority_Information *the_priority_map ) { *the_priority_map->minor |= the_priority_map->ready_minor;
8008b64: 28 26 00 90 lw r6,(r1+144) 8008b68: 2c 27 00 96 lhu r7,(r1+150)
_Priority_Add_to_bit_map( &the_thread->Priority_map ); _Chain_Append_unprotected(the_thread->ready, &the_thread->Object.Node);
8008b6c: 28 24 00 8c lw r4,(r1+140) 8008b70: 2c c8 00 00 lhu r8,(r6+0)
_Priority_Major_bit_map |= the_priority_map->ready_major;
8008b74: 78 02 08 01 mvhi r2,0x801 8008b78: 38 42 c8 d4 ori r2,r2,0xc8d4
RTEMS_INLINE_ROUTINE void _Priority_Add_to_bit_map ( Priority_Information *the_priority_map ) { *the_priority_map->minor |= the_priority_map->ready_minor;
8008b7c: b9 07 38 00 or r7,r8,r7 8008b80: 0c c7 00 00 sh (r6+0),r7
_Priority_Major_bit_map |= the_priority_map->ready_major;
8008b84: 2c 47 00 00 lhu r7,(r2+0) 8008b88: 2c 28 00 94 lhu r8,(r1+148)
Chain_Node *the_node ) { Chain_Node *old_last_node; the_node->next = _Chain_Tail(the_chain);
8008b8c: 34 86 00 04 addi r6,r4,4 8008b90: 58 26 00 00 sw (r1+0),r6
old_last_node = the_chain->last;
8008b94: 28 86 00 08 lw r6,(r4+8) 8008b98: b9 07 38 00 or r7,r8,r7
the_chain->last = the_node;
8008b9c: 58 81 00 08 sw (r4+8),r1 8008ba0: 20 e4 ff ff andi r4,r7,0xffff 8008ba4: 0c 44 00 00 sh (r2+0),r4
old_last_node->next = the_node; the_node->previous = old_last_node;
8008ba8: 58 26 00 04 sw (r1+4),r6
Chain_Node *old_last_node; the_node->next = _Chain_Tail(the_chain); old_last_node = the_chain->last; the_chain->last = the_node; old_last_node->next = the_node;
8008bac: 58 c1 00 00 sw (r6+0),r1
_ISR_Flash( level );
8008bb0: d0 03 00 00 wcsr IE,r3 8008bb4: d0 05 00 00 wcsr IE,r5
* a context switch. * Pseudo-ISR case: * Even if the thread isn't preemptible, if the new heir is * a pseudo-ISR system task, we need to do a context switch. */ if ( the_thread->current_priority < _Thread_Heir->current_priority ) {
8008bb8: 78 02 08 01 mvhi r2,0x801 8008bbc: 38 42 c8 b0 ori r2,r2,0xc8b0 8008bc0: 28 44 00 00 lw r4,(r2+0) 8008bc4: 28 25 00 14 lw r5,(r1+20) 8008bc8: 28 84 00 14 lw r4,(r4+20)
8008bcc: 50 a4 00 0c bgeu r5,r4,8008bfc <_Thread_Clear_state+0xc4> _Thread_Heir = the_thread; if ( _Thread_Executing->is_preemptible ||
8008bd0: 78 04 08 01 mvhi r4,0x801 8008bd4: 38 84 c8 e0 ori r4,r4,0xc8e0 8008bd8: 28 84 00 00 lw r4,(r4+0)
* Pseudo-ISR case: * Even if the thread isn't preemptible, if the new heir is * a pseudo-ISR system task, we need to do a context switch. */ if ( the_thread->current_priority < _Thread_Heir->current_priority ) { _Thread_Heir = the_thread;
8008bdc: 58 41 00 00 sw (r2+0),r1
if ( _Thread_Executing->is_preemptible ||
8008be0: 40 81 00 75 lbu r1,(r4+117)
8008be4: 5c 20 00 02 bne r1,r0,8008bec <_Thread_Clear_state+0xb4>
8008be8: 5c a1 00 05 bne r5,r1,8008bfc <_Thread_Clear_state+0xc4> <== ALWAYS TAKEN
the_thread->current_priority == 0 ) _Context_Switch_necessary = true;
8008bec: 78 01 08 01 mvhi r1,0x801 8008bf0: 38 21 c8 f0 ori r1,r1,0xc8f0 8008bf4: 34 02 00 01 mvi r2,1 8008bf8: 30 22 00 00 sb (r1+0),r2
} } } _ISR_Enable( level );
8008bfc: d0 03 00 00 wcsr IE,r3
}
8008c00: c3 a0 00 00 ret
0800ba54 <_Thread_Delay_ended>: void _Thread_Delay_ended( Objects_Id id, void *ignored __attribute__((unused)) ) {
800ba54: 37 9c ff f8 addi sp,sp,-8 800ba58: 5b 9d 00 04 sw (sp+4),ra
Thread_Control *the_thread; Objects_Locations location; the_thread = _Thread_Get( id, &location );
800ba5c: 37 82 00 08 addi r2,sp,8 800ba60: f8 00 00 a2 calli 800bce8 <_Thread_Get>
switch ( location ) {
800ba64: 2b 82 00 08 lw r2,(sp+8)
800ba68: 5c 40 00 09 bne r2,r0,800ba8c <_Thread_Delay_ended+0x38> <== NEVER TAKEN
#if defined(RTEMS_MULTIPROCESSING) case OBJECTS_REMOTE: /* impossible */ #endif break; case OBJECTS_LOCAL: _Thread_Clear_state(
800ba6c: 78 02 10 00 mvhi r2,0x1000 800ba70: 38 42 00 18 ori r2,r2,0x18 800ba74: fb ff ff 4e calli 800b7ac <_Thread_Clear_state> 800ba78: 78 01 08 02 mvhi r1,0x802 800ba7c: 38 21 99 b4 ori r1,r1,0x99b4 800ba80: 28 22 00 00 lw r2,(r1+0) 800ba84: 34 42 ff ff addi r2,r2,-1 800ba88: 58 22 00 00 sw (r1+0),r2
| STATES_INTERRUPTIBLE_BY_SIGNAL ); _Thread_Unnest_dispatch(); break; } }
800ba8c: 2b 9d 00 04 lw ra,(sp+4) 800ba90: 37 9c 00 08 addi sp,sp,8 800ba94: c3 a0 00 00 ret
080040c8 <_Thread_Dispatch>: * dispatch thread * no dispatch thread */ void _Thread_Dispatch( void ) {
80040c8: 37 9c ff b0 addi sp,sp,-80 80040cc: 5b 8b 00 40 sw (sp+64),r11 80040d0: 5b 8c 00 3c sw (sp+60),r12 80040d4: 5b 8d 00 38 sw (sp+56),r13 80040d8: 5b 8e 00 34 sw (sp+52),r14 80040dc: 5b 8f 00 30 sw (sp+48),r15 80040e0: 5b 90 00 2c sw (sp+44),r16 80040e4: 5b 91 00 28 sw (sp+40),r17 80040e8: 5b 92 00 24 sw (sp+36),r18 80040ec: 5b 93 00 20 sw (sp+32),r19 80040f0: 5b 94 00 1c sw (sp+28),r20 80040f4: 5b 95 00 18 sw (sp+24),r21 80040f8: 5b 96 00 14 sw (sp+20),r22 80040fc: 5b 97 00 10 sw (sp+16),r23 8004100: 5b 98 00 0c sw (sp+12),r24 8004104: 5b 99 00 08 sw (sp+8),r25 8004108: 5b 9d 00 04 sw (sp+4),ra
Thread_Control *executing; Thread_Control *heir; ISR_Level level; executing = _Thread_Executing;
800410c: 78 01 08 01 mvhi r1,0x801 8004110: 38 21 c8 e0 ori r1,r1,0xc8e0 8004114: 28 2b 00 00 lw r11,(r1+0)
_ISR_Disable( level );
8004118: 90 00 20 00 rcsr r4,IE 800411c: 34 01 ff fe mvi r1,-2 8004120: a0 81 08 00 and r1,r4,r1 8004124: d0 01 00 00 wcsr IE,r1
#ifndef __RTEMS_USE_TICKS_FOR_STATISTICS__ { Timestamp_Control uptime, ran; _TOD_Get_uptime( &uptime ); _Timestamp_Subtract(
8004128: 78 14 08 01 mvhi r20,0x801
Thread_Control *heir; ISR_Level level; executing = _Thread_Executing; _ISR_Disable( level ); while ( _Context_Switch_necessary == true ) {
800412c: 78 0f 08 01 mvhi r15,0x801 8004130: 78 0d 08 01 mvhi r13,0x801
heir = _Thread_Heir;
8004134: 78 12 08 01 mvhi r18,0x801
_Thread_Dispatch_disable_level = 1; _Context_Switch_necessary = false; _Thread_Executing = heir;
8004138: 78 0e 08 01 mvhi r14,0x801
#if __RTEMS_ADA__ executing->rtems_ada_self = rtems_ada_self; rtems_ada_self = heir->rtems_ada_self; #endif if ( heir->budget_algorithm == THREAD_CPU_BUDGET_ALGORITHM_RESET_TIMESLICE ) heir->cpu_time_budget = _Thread_Ticks_per_timeslice;
800413c: 78 11 08 01 mvhi r17,0x801
#endif /* * Switch libc's task specific data. */ if ( _Thread_libc_reent ) {
8004140: 78 10 08 01 mvhi r16,0x801
&_Thread_Time_of_last_context_switch, &uptime, &ran ); _Timestamp_Add_to( &executing->cpu_time_used, &ran ); _Thread_Time_of_last_context_switch = uptime;
8004144: ba 80 98 00 mv r19,r20
Thread_Control *heir; ISR_Level level; executing = _Thread_Executing; _ISR_Disable( level ); while ( _Context_Switch_necessary == true ) {
8004148: 39 ef c8 f0 ori r15,r15,0xc8f0 800414c: 39 ad c8 24 ori r13,r13,0xc824
heir = _Thread_Heir;
8004150: 3a 52 c8 b0 ori r18,r18,0xc8b0
_Thread_Dispatch_disable_level = 1; _Context_Switch_necessary = false; _Thread_Executing = heir;
8004154: 39 ce c8 e0 ori r14,r14,0xc8e0
#if __RTEMS_ADA__ executing->rtems_ada_self = rtems_ada_self; rtems_ada_self = heir->rtems_ada_self; #endif if ( heir->budget_algorithm == THREAD_CPU_BUDGET_ALGORITHM_RESET_TIMESLICE ) heir->cpu_time_budget = _Thread_Ticks_per_timeslice;
8004158: 3a 31 c7 b4 ori r17,r17,0xc7b4
#endif /* * Switch libc's task specific data. */ if ( _Thread_libc_reent ) {
800415c: 3a 10 c8 ac ori r16,r16,0xc8ac
Thread_Control *heir; ISR_Level level; executing = _Thread_Executing; _ISR_Disable( level ); while ( _Context_Switch_necessary == true ) {
8004160: 34 19 00 00 mvi r25,0
heir = _Thread_Heir; _Thread_Dispatch_disable_level = 1;
8004164: 34 17 00 01 mvi r23,1
_ISR_Enable( level ); #ifndef __RTEMS_USE_TICKS_FOR_STATISTICS__ { Timestamp_Control uptime, ran; _TOD_Get_uptime( &uptime );
8004168: 37 96 00 4c addi r22,sp,76
_Timestamp_Subtract(
800416c: 37 95 00 44 addi r21,sp,68
&_Thread_Time_of_last_context_switch, &uptime, &ran ); _Timestamp_Add_to( &executing->cpu_time_used, &ran ); _Thread_Time_of_last_context_switch = uptime;
8004170: 3a 73 c8 e8 ori r19,r19,0xc8e8
#endif #endif executing = _Thread_Executing; _ISR_Disable( level );
8004174: 34 18 ff fe mvi r24,-2
Thread_Control *heir; ISR_Level level; executing = _Thread_Executing; _ISR_Disable( level ); while ( _Context_Switch_necessary == true ) {
8004178: e0 00 00 28 bi 8004218 <_Thread_Dispatch+0x150>
heir = _Thread_Heir;
800417c: 2a 4c 00 00 lw r12,(r18+0)
_Thread_Dispatch_disable_level = 1;
8004180: 59 b7 00 00 sw (r13+0),r23
_Context_Switch_necessary = false;
8004184: 31 f9 00 00 sb (r15+0),r25
_Thread_Executing = heir; #if __RTEMS_ADA__ executing->rtems_ada_self = rtems_ada_self; rtems_ada_self = heir->rtems_ada_self; #endif if ( heir->budget_algorithm == THREAD_CPU_BUDGET_ALGORITHM_RESET_TIMESLICE )
8004188: 29 81 00 7c lw r1,(r12+124)
_ISR_Disable( level ); while ( _Context_Switch_necessary == true ) { heir = _Thread_Heir; _Thread_Dispatch_disable_level = 1; _Context_Switch_necessary = false; _Thread_Executing = heir;
800418c: 59 cc 00 00 sw (r14+0),r12
#if __RTEMS_ADA__ executing->rtems_ada_self = rtems_ada_self; rtems_ada_self = heir->rtems_ada_self; #endif if ( heir->budget_algorithm == THREAD_CPU_BUDGET_ALGORITHM_RESET_TIMESLICE ) 8004190: 5c 37 00 03 bne r1,r23,800419c <_Thread_Dispatch+0xd4> heir->cpu_time_budget = _Thread_Ticks_per_timeslice;
8004194: 2a 21 00 00 lw r1,(r17+0) 8004198: 59 81 00 78 sw (r12+120),r1
_ISR_Enable( level );
800419c: d0 04 00 00 wcsr IE,r4
#ifndef __RTEMS_USE_TICKS_FOR_STATISTICS__ { Timestamp_Control uptime, ran; _TOD_Get_uptime( &uptime );
80041a0: ba c0 08 00 mv r1,r22 80041a4: f8 00 10 75 calli 8008378 <_TOD_Get_uptime>
_Timestamp_Subtract(
80041a8: ba 80 08 00 mv r1,r20 80041ac: ba a0 18 00 mv r3,r21 80041b0: 38 21 c8 e8 ori r1,r1,0xc8e8 80041b4: ba c0 10 00 mv r2,r22 80041b8: f8 00 04 02 calli 80051c0 <_Timespec_Subtract>
&_Thread_Time_of_last_context_switch, &uptime, &ran ); _Timestamp_Add_to( &executing->cpu_time_used, &ran );
80041bc: ba a0 10 00 mv r2,r21 80041c0: 35 61 00 84 addi r1,r11,132 80041c4: f8 00 03 e9 calli 8005168 <_Timespec_Add_to>
_Thread_Time_of_last_context_switch = uptime;
80041c8: 2b 83 00 4c lw r3,(sp+76)
#endif /* * Switch libc's task specific data. */ if ( _Thread_libc_reent ) {
80041cc: 2a 04 00 00 lw r4,(r16+0)
executing->libc_reent = *_Thread_libc_reent; *_Thread_libc_reent = heir->libc_reent; } _User_extensions_Thread_switch( executing, heir );
80041d0: b9 60 08 00 mv r1,r11
&_Thread_Time_of_last_context_switch, &uptime, &ran ); _Timestamp_Add_to( &executing->cpu_time_used, &ran ); _Thread_Time_of_last_context_switch = uptime;
80041d4: 5a 63 00 00 sw (r19+0),r3 80041d8: 2b 83 00 50 lw r3,(sp+80)
if ( _Thread_libc_reent ) { executing->libc_reent = *_Thread_libc_reent; *_Thread_libc_reent = heir->libc_reent; } _User_extensions_Thread_switch( executing, heir );
80041dc: b9 80 10 00 mv r2,r12
&_Thread_Time_of_last_context_switch, &uptime, &ran ); _Timestamp_Add_to( &executing->cpu_time_used, &ran ); _Thread_Time_of_last_context_switch = uptime;
80041e0: 5a 63 00 04 sw (r19+4),r3
#endif /* * Switch libc's task specific data. */ if ( _Thread_libc_reent ) {
80041e4: 44 80 00 05 be r4,r0,80041f8 <_Thread_Dispatch+0x130> <== NEVER TAKEN
executing->libc_reent = *_Thread_libc_reent;
80041e8: 28 83 00 00 lw r3,(r4+0) 80041ec: 59 63 01 20 sw (r11+288),r3
*_Thread_libc_reent = heir->libc_reent;
80041f0: 29 83 01 20 lw r3,(r12+288) 80041f4: 58 83 00 00 sw (r4+0),r3
} _User_extensions_Thread_switch( executing, heir );
80041f8: f8 00 04 dc calli 8005568 <_User_extensions_Thread_switch>
if ( executing->fp_context != NULL ) _Context_Save_fp( &executing->fp_context ); #endif #endif _Context_Switch( &executing->Registers, &heir->Registers );
80041fc: 35 61 00 cc addi r1,r11,204 8004200: 35 82 00 cc addi r2,r12,204 8004204: f8 00 05 f1 calli 80059c8 <_CPU_Context_switch>
if ( executing->fp_context != NULL ) _Context_Restore_fp( &executing->fp_context ); #endif #endif executing = _Thread_Executing;
8004208: 29 cb 00 00 lw r11,(r14+0)
_ISR_Disable( level );
800420c: 90 00 20 00 rcsr r4,IE 8004210: a0 98 08 00 and r1,r4,r24 8004214: d0 01 00 00 wcsr IE,r1
Thread_Control *heir; ISR_Level level; executing = _Thread_Executing; _ISR_Disable( level ); while ( _Context_Switch_necessary == true ) {
8004218: 41 e5 00 00 lbu r5,(r15+0) 800421c: 20 a5 00 ff andi r5,r5,0xff
8004220: 5c a0 ff d7 bne r5,r0,800417c <_Thread_Dispatch+0xb4> executing = _Thread_Executing; _ISR_Disable( level ); } _Thread_Dispatch_disable_level = 0;
8004224: 59 a5 00 00 sw (r13+0),r5
_ISR_Enable( level );
8004228: d0 04 00 00 wcsr IE,r4
if ( _Thread_Do_post_task_switch_extension ||
800422c: 78 01 08 01 mvhi r1,0x801 8004230: 38 21 c8 c4 ori r1,r1,0xc8c4 8004234: 28 21 00 00 lw r1,(r1+0)
8004238: 5c 20 00 03 bne r1,r0,8004244 <_Thread_Dispatch+0x17c> <== NEVER TAKEN
executing->do_post_task_switch_extension ) {
800423c: 41 62 00 74 lbu r2,(r11+116)
8004240: 44 41 00 04 be r2,r1,8004250 <_Thread_Dispatch+0x188> executing->do_post_task_switch_extension = false;
8004244: 34 01 00 00 mvi r1,0 8004248: 31 61 00 74 sb (r11+116),r1
_API_extensions_Run_postswitch();
800424c: fb ff f9 95 calli 80028a0 <_API_extensions_Run_postswitch>
} }
8004250: 2b 9d 00 04 lw ra,(sp+4) 8004254: 2b 8b 00 40 lw r11,(sp+64) 8004258: 2b 8c 00 3c lw r12,(sp+60) 800425c: 2b 8d 00 38 lw r13,(sp+56) 8004260: 2b 8e 00 34 lw r14,(sp+52) 8004264: 2b 8f 00 30 lw r15,(sp+48) 8004268: 2b 90 00 2c lw r16,(sp+44) 800426c: 2b 91 00 28 lw r17,(sp+40) 8004270: 2b 92 00 24 lw r18,(sp+36) 8004274: 2b 93 00 20 lw r19,(sp+32) 8004278: 2b 94 00 1c lw r20,(sp+28) 800427c: 2b 95 00 18 lw r21,(sp+24) 8004280: 2b 96 00 14 lw r22,(sp+20) 8004284: 2b 97 00 10 lw r23,(sp+16) 8004288: 2b 98 00 0c lw r24,(sp+12) 800428c: 2b 99 00 08 lw r25,(sp+8) 8004290: 37 9c 00 50 addi sp,sp,80 8004294: c3 a0 00 00 ret
0800a850 <_Thread_Evaluate_mode>: bool _Thread_Evaluate_mode( void ) { Thread_Control *executing; executing = _Thread_Executing;
800a850: 78 01 08 01 mvhi r1,0x801 800a854: 38 21 c8 e0 ori r1,r1,0xc8e0 800a858: 28 21 00 00 lw r1,(r1+0)
if ( !_States_Is_ready( executing->current_state ) ||
800a85c: 28 22 00 10 lw r2,(r1+16)
800a860: 5c 40 00 07 bne r2,r0,800a87c <_Thread_Evaluate_mode+0x2c> <== NEVER TAKEN
800a864: 78 02 08 01 mvhi r2,0x801 800a868: 38 42 c8 b0 ori r2,r2,0xc8b0 800a86c: 28 42 00 00 lw r2,(r2+0)
800a870: 44 22 00 09 be r1,r2,800a894 <_Thread_Evaluate_mode+0x44> ( !_Thread_Is_heir( executing ) && executing->is_preemptible ) ) {
800a874: 40 21 00 75 lbu r1,(r1+117)
800a878: 44 20 00 07 be r1,r0,800a894 <_Thread_Evaluate_mode+0x44> <== NEVER TAKEN
_Context_Switch_necessary = true;
800a87c: 78 01 08 01 mvhi r1,0x801 800a880: 38 21 c8 f0 ori r1,r1,0xc8f0 800a884: 34 02 00 01 mvi r2,1 800a888: 30 22 00 00 sb (r1+0),r2 800a88c: b8 40 08 00 mv r1,r2
return true;
800a890: c3 a0 00 00 ret 800a894: 34 01 00 00 mvi r1,0
} return false; }
800a898: c3 a0 00 00 ret
0800a89c <_Thread_Handler>: * * Output parameters: NONE */ void _Thread_Handler( void ) {
800a89c: 37 9c ff f4 addi sp,sp,-12 800a8a0: 5b 8b 00 0c sw (sp+12),r11 800a8a4: 5b 8c 00 08 sw (sp+8),r12 800a8a8: 5b 9d 00 04 sw (sp+4),ra
#if defined(EXECUTE_GLOBAL_CONSTRUCTORS) static char doneConstructors; char doneCons; #endif executing = _Thread_Executing;
800a8ac: 78 01 08 01 mvhi r1,0x801 800a8b0: 38 21 c8 e0 ori r1,r1,0xc8e0 800a8b4: 28 2b 00 00 lw r11,(r1+0)
/* * have to put level into a register for those cpu's that use * inline asm here */ level = executing->Start.isr_level;
800a8b8: 29 61 00 b8 lw r1,(r11+184)
_ISR_Set_level(level);
800a8bc: 64 21 00 00 cmpei r1,r1,0 800a8c0: d0 01 00 00 wcsr IE,r1
#if defined(EXECUTE_GLOBAL_CONSTRUCTORS) doneCons = doneConstructors;
800a8c4: 78 02 08 01 mvhi r2,0x801 800a8c8: 38 42 c6 2c ori r2,r2,0xc62c 800a8cc: 40 4c 00 00 lbu r12,(r2+0)
doneConstructors = 1;
800a8d0: 34 03 00 01 mvi r3,1
/* * Take care that 'begin' extensions get to complete before * 'switch' extensions can run. This means must keep dispatch * disabled until all 'begin' extensions complete. */ _User_extensions_Thread_begin( executing );
800a8d4: b9 60 08 00 mv r1,r11
level = executing->Start.isr_level; _ISR_Set_level(level); #if defined(EXECUTE_GLOBAL_CONSTRUCTORS) doneCons = doneConstructors; doneConstructors = 1;
800a8d8: 30 43 00 00 sb (r2+0),r3
/* * Take care that 'begin' extensions get to complete before * 'switch' extensions can run. This means must keep dispatch * disabled until all 'begin' extensions complete. */ _User_extensions_Thread_begin( executing );
800a8dc: fb ff ea 80 calli 80052dc <_User_extensions_Thread_begin>
/* * At this point, the dispatch disable level BETTER be 1. */ _Thread_Enable_dispatch();
800a8e0: fb ff e6 6e calli 8004298 <_Thread_Enable_dispatch>
/* * _init could be a weak symbol and we SHOULD test it but it isn't * in any configuration I know of and it generates a warning on every * RTEMS target configuration. --joel (12 May 2007) */ if (!doneCons) /* && (volatile void *)_init) */ { 800a8e4: 5d 80 00 02 bne r12,r0,800a8ec <_Thread_Handler+0x50> INIT_NAME ();
800a8e8: fb ff d5 c6 calli 8000000 <RamBase>
} #endif if ( executing->Start.prototype == THREAD_START_NUMERIC ) {
800a8ec: 29 61 00 a0 lw r1,(r11+160)
800a8f0: 5c 20 00 05 bne r1,r0,800a904 <_Thread_Handler+0x68> <== NEVER TAKEN
executing->Wait.return_argument = (*(Thread_Entry_numeric) executing->Start.entry_point)(
800a8f4: 29 62 00 9c lw r2,(r11+156) 800a8f8: 29 61 00 a8 lw r1,(r11+168) 800a8fc: d8 40 00 00 call r2
INIT_NAME (); } #endif if ( executing->Start.prototype == THREAD_START_NUMERIC ) { executing->Wait.return_argument =
800a900: 59 61 00 28 sw (r11+40),r1
* was placed in return_argument. This assumed that if it returned * anything (which is not supporting in all APIs), then it would be * able to fit in a (void *). */ _User_extensions_Thread_exitted( executing );
800a904: b9 60 08 00 mv r1,r11 800a908: fb ff ea 8c calli 8005338 <_User_extensions_Thread_exitted>
_Internal_error_Occurred(
800a90c: 34 01 00 00 mvi r1,0 800a910: 34 02 00 01 mvi r2,1 800a914: 34 03 00 06 mvi r3,6 800a918: fb ff e2 a1 calli 800339c <_Internal_error_Occurred>
080045b0 <_Thread_Handler_initialization>: * * Output parameters: NONE */ void _Thread_Handler_initialization(void) {
80045b0: 37 9c ff f0 addi sp,sp,-16 80045b4: 5b 8b 00 10 sw (sp+16),r11 80045b8: 5b 8c 00 0c sw (sp+12),r12 80045bc: 5b 8d 00 08 sw (sp+8),r13 80045c0: 5b 9d 00 04 sw (sp+4),ra
uint32_t maximum_extensions; #if defined(RTEMS_MULTIPROCESSING) uint32_t maximum_proxies; #endif ticks_per_timeslice = Configuration.ticks_per_timeslice;
80045c4: 78 01 08 01 mvhi r1,0x801 80045c8: 38 21 c0 c4 ori r1,r1,0xc0c4
#endif /* * BOTH stacks hooks must be set or both must be NULL. * Do not allow mixture. */ if ( !( (!Configuration.stack_allocate_hook)
80045cc: 28 22 00 20 lw r2,(r1+32) 80045d0: 28 29 00 24 lw r9,(r1+36)
uint32_t maximum_extensions; #if defined(RTEMS_MULTIPROCESSING) uint32_t maximum_proxies; #endif ticks_per_timeslice = Configuration.ticks_per_timeslice;
80045d4: 28 2a 00 10 lw r10,(r1+16)
#endif /* * BOTH stacks hooks must be set or both must be NULL. * Do not allow mixture. */ if ( !( (!Configuration.stack_allocate_hook)
80045d8: 64 42 00 00 cmpei r2,r2,0 80045dc: 65 29 00 00 cmpei r9,r9,0
#if defined(RTEMS_MULTIPROCESSING) uint32_t maximum_proxies; #endif ticks_per_timeslice = Configuration.ticks_per_timeslice; maximum_extensions = Configuration.maximum_extensions;
80045e0: 28 2d 00 08 lw r13,(r1+8)
#endif /* * BOTH stacks hooks must be set or both must be NULL. * Do not allow mixture. */ if ( !( (!Configuration.stack_allocate_hook)
80045e4: 99 22 48 00 xor r9,r9,r2 80045e8: b9 20 58 00 mv r11,r9
80045ec: 45 20 00 05 be r9,r0,8004600 <_Thread_Handler_initialization+0x50><== ALWAYS TAKEN
== (!Configuration.stack_free_hook) ) ) _Internal_error_Occurred(
80045f0: 34 01 00 00 mvi r1,0 <== NOT EXECUTED 80045f4: 34 02 00 01 mvi r2,1 <== NOT EXECUTED 80045f8: 34 03 00 0f mvi r3,15 <== NOT EXECUTED 80045fc: fb ff fb 68 calli 800339c <_Internal_error_Occurred> <== NOT EXECUTED
_Thread_Maximum_extensions = maximum_extensions; _Thread_Ticks_per_timeslice = ticks_per_timeslice; _Thread_Ready_chain = (Chain_Control *) _Workspace_Allocate_or_fatal_error(
8004600: 78 0c 08 01 mvhi r12,0x801 8004604: 39 8c c0 c0 ori r12,r12,0xc0c0 8004608: 41 81 00 00 lbu r1,(r12+0)
INTERNAL_ERROR_CORE, true, INTERNAL_ERROR_BAD_STACK_HOOK ); _Context_Switch_necessary = false;
800460c: 78 08 08 01 mvhi r8,0x801
_Thread_Executing = NULL;
8004610: 78 05 08 01 mvhi r5,0x801
_Thread_Maximum_extensions = maximum_extensions; _Thread_Ticks_per_timeslice = ticks_per_timeslice; _Thread_Ready_chain = (Chain_Control *) _Workspace_Allocate_or_fatal_error(
8004614: 34 21 00 01 addi r1,r1,1
INTERNAL_ERROR_BAD_STACK_HOOK ); _Context_Switch_necessary = false; _Thread_Executing = NULL; _Thread_Heir = NULL;
8004618: 78 04 08 01 mvhi r4,0x801
#if ( CPU_HARDWARE_FP == TRUE ) || ( CPU_SOFTWARE_FP == TRUE ) _Thread_Allocated_fp = NULL; #endif _Thread_Do_post_task_switch_extension = 0;
800461c: 78 03 08 01 mvhi r3,0x801
_Thread_Maximum_extensions = maximum_extensions;
8004620: 78 07 08 01 mvhi r7,0x801
_Thread_Ticks_per_timeslice = ticks_per_timeslice;
8004624: 78 06 08 01 mvhi r6,0x801
_Thread_Heir = NULL; #if ( CPU_HARDWARE_FP == TRUE ) || ( CPU_SOFTWARE_FP == TRUE ) _Thread_Allocated_fp = NULL; #endif _Thread_Do_post_task_switch_extension = 0;
8004628: 38 63 c8 c4 ori r3,r3,0xc8c4
_Thread_Maximum_extensions = maximum_extensions; _Thread_Ticks_per_timeslice = ticks_per_timeslice;
800462c: 38 c6 c7 b4 ori r6,r6,0xc7b4
INTERNAL_ERROR_CORE, true, INTERNAL_ERROR_BAD_STACK_HOOK ); _Context_Switch_necessary = false;
8004630: 39 08 c8 f0 ori r8,r8,0xc8f0
_Thread_Executing = NULL;
8004634: 38 a5 c8 e0 ori r5,r5,0xc8e0
_Thread_Heir = NULL;
8004638: 38 84 c8 b0 ori r4,r4,0xc8b0
_Thread_Allocated_fp = NULL; #endif _Thread_Do_post_task_switch_extension = 0; _Thread_Maximum_extensions = maximum_extensions;
800463c: 38 e7 c8 c0 ori r7,r7,0xc8c0
_Thread_Ticks_per_timeslice = ticks_per_timeslice; _Thread_Ready_chain = (Chain_Control *) _Workspace_Allocate_or_fatal_error(
8004640: b4 21 10 00 add r2,r1,r1
_Thread_Do_post_task_switch_extension = 0; _Thread_Maximum_extensions = maximum_extensions; _Thread_Ticks_per_timeslice = ticks_per_timeslice;
8004644: 58 ca 00 00 sw (r6+0),r10
_Thread_Heir = NULL; #if ( CPU_HARDWARE_FP == TRUE ) || ( CPU_SOFTWARE_FP == TRUE ) _Thread_Allocated_fp = NULL; #endif _Thread_Do_post_task_switch_extension = 0;
8004648: 58 69 00 00 sw (r3+0),r9
_Thread_Maximum_extensions = maximum_extensions; _Thread_Ticks_per_timeslice = ticks_per_timeslice; _Thread_Ready_chain = (Chain_Control *) _Workspace_Allocate_or_fatal_error(
800464c: b4 41 08 00 add r1,r2,r1
INTERNAL_ERROR_CORE, true, INTERNAL_ERROR_BAD_STACK_HOOK ); _Context_Switch_necessary = false;
8004650: 31 09 00 00 sb (r8+0),r9
_Thread_Maximum_extensions = maximum_extensions; _Thread_Ticks_per_timeslice = ticks_per_timeslice; _Thread_Ready_chain = (Chain_Control *) _Workspace_Allocate_or_fatal_error(
8004654: 34 02 00 02 mvi r2,2
_Thread_Allocated_fp = NULL; #endif _Thread_Do_post_task_switch_extension = 0; _Thread_Maximum_extensions = maximum_extensions;
8004658: 58 ed 00 00 sw (r7+0),r13
true, INTERNAL_ERROR_BAD_STACK_HOOK ); _Context_Switch_necessary = false; _Thread_Executing = NULL;
800465c: 58 a9 00 00 sw (r5+0),r9
_Thread_Heir = NULL;
8004660: 58 89 00 00 sw (r4+0),r9
_Thread_Maximum_extensions = maximum_extensions; _Thread_Ticks_per_timeslice = ticks_per_timeslice; _Thread_Ready_chain = (Chain_Control *) _Workspace_Allocate_or_fatal_error(
8004664: fb ff ee e3 calli 80001f0 <__ashlsi3> 8004668: f8 00 04 98 calli 80058c8 <_Workspace_Allocate_or_fatal_error> 800466c: 78 02 08 01 mvhi r2,0x801
(PRIORITY_MAXIMUM + 1) * sizeof(Chain_Control) ); for ( index=0; index <= PRIORITY_MAXIMUM ; index++ )
8004670: 41 83 00 00 lbu r3,(r12+0)
_Thread_Maximum_extensions = maximum_extensions; _Thread_Ticks_per_timeslice = ticks_per_timeslice; _Thread_Ready_chain = (Chain_Control *) _Workspace_Allocate_or_fatal_error(
8004674: 38 42 c7 b0 ori r2,r2,0xc7b0 8004678: 58 41 00 00 sw (r2+0),r1
RTEMS_INLINE_ROUTINE void _Chain_Initialize_empty( Chain_Control *the_chain ) { the_chain->first = _Chain_Tail(the_chain); the_chain->permanent_null = NULL;
800467c: b9 60 30 00 mv r6,r11
*/ RTEMS_INLINE_ROUTINE void _Chain_Initialize_empty( Chain_Control *the_chain ) { the_chain->first = _Chain_Tail(the_chain);
8004680: 34 22 00 04 addi r2,r1,4 8004684: 58 22 00 00 sw (r1+0),r2
the_chain->permanent_null = NULL;
8004688: 58 26 00 04 sw (r1+4),r6
the_chain->last = _Chain_Head(the_chain);
800468c: 58 21 00 08 sw (r1+8),r1
(PRIORITY_MAXIMUM + 1) * sizeof(Chain_Control) ); for ( index=0; index <= PRIORITY_MAXIMUM ; index++ )
8004690: 35 6b 00 01 addi r11,r11,1 8004694: 34 21 00 0c addi r1,r1,12
8004698: 50 6b ff fa bgeu r3,r11,8004680 <_Thread_Handler_initialization+0xd0> /* * Initialize this class of objects. */ _Objects_Initialize_information(
800469c: 34 02 00 01 mvi r2,1 80046a0: 78 01 08 01 mvhi r1,0x801 80046a4: 38 21 c9 80 ori r1,r1,0xc980 80046a8: b8 40 18 00 mv r3,r2 80046ac: b8 40 20 00 mv r4,r2 80046b0: 34 05 01 38 mvi r5,312 80046b4: 34 07 00 08 mvi r7,8 80046b8: fb ff fc ce calli 80039f0 <_Objects_Initialize_information>
false, /* true if this is a global object class */ NULL /* Proxy extraction support callout */ #endif ); }
80046bc: 2b 9d 00 04 lw ra,(sp+4) 80046c0: 2b 8b 00 10 lw r11,(sp+16) 80046c4: 2b 8c 00 0c lw r12,(sp+12) 80046c8: 2b 8d 00 08 lw r13,(sp+8) 80046cc: 37 9c 00 10 addi sp,sp,16 80046d0: c3 a0 00 00 ret
080090a8 <_Thread_Reset_timeslice>: { ISR_Level level; Thread_Control *executing; Chain_Control *ready; executing = _Thread_Executing;
80090a8: 78 01 08 01 mvhi r1,0x801 80090ac: 38 21 c8 e0 ori r1,r1,0xc8e0 80090b0: 28 21 00 00 lw r1,(r1+0)
ready = executing->ready;
80090b4: 28 22 00 8c lw r2,(r1+140)
_ISR_Disable( level );
80090b8: 90 00 20 00 rcsr r4,IE 80090bc: 34 03 ff fe mvi r3,-2 80090c0: a0 83 18 00 and r3,r4,r3 80090c4: d0 03 00 00 wcsr IE,r3
if ( _Chain_Has_only_one_node( ready ) ) {
80090c8: 28 46 00 00 lw r6,(r2+0) 80090cc: 28 45 00 08 lw r5,(r2+8)
80090d0: 5c c5 00 03 bne r6,r5,80090dc <_Thread_Reset_timeslice+0x34> _ISR_Enable( level );
80090d4: d0 04 00 00 wcsr IE,r4
return;
80090d8: c3 a0 00 00 ret
) { Chain_Node *next; Chain_Node *previous; next = the_node->next;
80090dc: 28 25 00 00 lw r5,(r1+0)
previous = the_node->previous;
80090e0: 28 26 00 04 lw r6,(r1+4)
Chain_Node *the_node ) { Chain_Node *old_last_node; the_node->next = _Chain_Tail(the_chain);
80090e4: 34 47 00 04 addi r7,r2,4
Chain_Node *previous; next = the_node->next; previous = the_node->previous; next->previous = previous; previous->next = next;
80090e8: 58 c5 00 00 sw (r6+0),r5
Chain_Node *the_node ) { Chain_Node *old_last_node; the_node->next = _Chain_Tail(the_chain);
80090ec: 58 27 00 00 sw (r1+0),r7
Chain_Node *next; Chain_Node *previous; next = the_node->next; previous = the_node->previous; next->previous = previous;
80090f0: 58 a6 00 04 sw (r5+4),r6
) { Chain_Node *old_last_node; the_node->next = _Chain_Tail(the_chain); old_last_node = the_chain->last;
80090f4: 28 45 00 08 lw r5,(r2+8)
the_chain->last = the_node;
80090f8: 58 41 00 08 sw (r2+8),r1
old_last_node->next = the_node; the_node->previous = old_last_node;
80090fc: 58 25 00 04 sw (r1+4),r5
Chain_Node *old_last_node; the_node->next = _Chain_Tail(the_chain); old_last_node = the_chain->last; the_chain->last = the_node; old_last_node->next = the_node;
8009100: 58 a1 00 00 sw (r5+0),r1
} _Chain_Extract_unprotected( &executing->Object.Node ); _Chain_Append_unprotected( ready, &executing->Object.Node ); _ISR_Flash( level );
8009104: d0 04 00 00 wcsr IE,r4 8009108: d0 03 00 00 wcsr IE,r3
if ( _Thread_Is_heir( executing ) )
800910c: 78 03 08 01 mvhi r3,0x801 8009110: 38 63 c8 b0 ori r3,r3,0xc8b0 8009114: 28 65 00 00 lw r5,(r3+0)
8009118: 5c 25 00 03 bne r1,r5,8009124 <_Thread_Reset_timeslice+0x7c><== NEVER TAKEN
_Thread_Heir = (Thread_Control *) ready->first;
800911c: 28 42 00 00 lw r2,(r2+0) 8009120: 58 62 00 00 sw (r3+0),r2
_Context_Switch_necessary = true;
8009124: 78 01 08 01 mvhi r1,0x801 8009128: 38 21 c8 f0 ori r1,r1,0xc8f0 800912c: 34 02 00 01 mvi r2,1 8009130: 30 22 00 00 sb (r1+0),r2
_ISR_Enable( level );
8009134: d0 04 00 00 wcsr IE,r4 8009138: c3 a0 00 00 ret
08005c6c <_Thread_Restart>: bool _Thread_Restart( Thread_Control *the_thread, void *pointer_argument, Thread_Entry_numeric_type numeric_argument ) {
8005c6c: 37 9c ff f0 addi sp,sp,-16 8005c70: 5b 8b 00 08 sw (sp+8),r11 8005c74: 5b 9d 00 04 sw (sp+4),ra
if ( !_States_Is_dormant( the_thread->current_state ) ) {
8005c78: 28 25 00 10 lw r5,(r1+16) 8005c7c: 34 04 00 00 mvi r4,0
bool _Thread_Restart( Thread_Control *the_thread, void *pointer_argument, Thread_Entry_numeric_type numeric_argument ) {
8005c80: b8 20 58 00 mv r11,r1
if ( !_States_Is_dormant( the_thread->current_state ) ) {
8005c84: 20 a5 00 01 andi r5,r5,0x1
8005c88: 5c a4 00 16 bne r5,r4,8005ce0 <_Thread_Restart+0x74> _Thread_Set_transient( the_thread );
8005c8c: 5b 82 00 10 sw (sp+16),r2 8005c90: 5b 83 00 0c sw (sp+12),r3 8005c94: f8 00 00 bb calli 8005f80 <_Thread_Set_transient>
_Thread_Reset( the_thread, pointer_argument, numeric_argument );
8005c98: 2b 82 00 10 lw r2,(sp+16) 8005c9c: 2b 83 00 0c lw r3,(sp+12) 8005ca0: b9 60 08 00 mv r1,r11 8005ca4: f8 00 11 8a calli 800a2cc <_Thread_Reset>
_Thread_Load_environment( the_thread );
8005ca8: b9 60 08 00 mv r1,r11 8005cac: f8 00 10 5f calli 8009e28 <_Thread_Load_environment>
_Thread_Ready( the_thread );
8005cb0: b9 60 08 00 mv r1,r11 8005cb4: f8 00 11 22 calli 800a13c <_Thread_Ready>
_User_extensions_Thread_restart( the_thread );
8005cb8: b9 60 08 00 mv r1,r11 8005cbc: f8 00 02 52 calli 8006604 <_User_extensions_Thread_restart>
if ( _Thread_Is_executing ( the_thread ) )
8005cc0: 78 01 08 02 mvhi r1,0x802 8005cc4: 38 21 09 40 ori r1,r1,0x940 8005cc8: 28 21 00 00 lw r1,(r1+0) 8005ccc: 34 04 00 01 mvi r4,1
8005cd0: 5d 61 00 04 bne r11,r1,8005ce0 <_Thread_Restart+0x74> #if ( CPU_HARDWARE_FP == TRUE ) || ( CPU_SOFTWARE_FP == TRUE ) if ( _Thread_Executing->fp_context != NULL ) _Context_Restore_fp( &_Thread_Executing->fp_context ); #endif _CPU_Context_Restart_self( &_Thread_Executing->Registers );
8005cd4: 35 61 00 cc addi r1,r11,204 8005cd8: f8 00 03 d0 calli 8006c18 <_CPU_Context_restore>
8005cdc: 34 04 00 01 mvi r4,1 <== NOT EXECUTED
return true; } return false; }
8005ce0: b8 80 08 00 mv r1,r4 8005ce4: 2b 9d 00 04 lw ra,(sp+4) 8005ce8: 2b 8b 00 08 lw r11,(sp+8) 8005cec: 37 9c 00 10 addi sp,sp,16 8005cf0: c3 a0 00 00 ret
0800a068 <_Thread_Resume>: { ISR_Level level; States_Control current_state; _ISR_Disable( level );
800a068: 90 00 18 00 rcsr r3,IE 800a06c: 34 05 ff fe mvi r5,-2 800a070: a0 65 28 00 and r5,r3,r5 800a074: d0 05 00 00 wcsr IE,r5
_ISR_Enable( level ); return; } #endif current_state = the_thread->current_state;
800a078: 28 22 00 10 lw r2,(r1+16)
if ( current_state & STATES_SUSPENDED ) {
800a07c: 20 44 00 02 andi r4,r2,0x2
800a080: 44 80 00 2b be r4,r0,800a12c <_Thread_Resume+0xc4> <== NEVER TAKEN
800a084: 34 04 ff fd mvi r4,-3 800a088: a0 44 10 00 and r2,r2,r4
current_state =
800a08c: 58 22 00 10 sw (r1+16),r2
the_thread->current_state = _States_Clear(STATES_SUSPENDED, current_state); if ( _States_Is_ready( current_state ) ) { 800a090: 5c 40 00 27 bne r2,r0,800a12c <_Thread_Resume+0xc4> RTEMS_INLINE_ROUTINE void _Priority_Add_to_bit_map ( Priority_Information *the_priority_map ) { *the_priority_map->minor |= the_priority_map->ready_minor;
800a094: 28 26 00 90 lw r6,(r1+144) 800a098: 2c 27 00 96 lhu r7,(r1+150)
_Priority_Add_to_bit_map( &the_thread->Priority_map ); _Chain_Append_unprotected(the_thread->ready, &the_thread->Object.Node);
800a09c: 28 24 00 8c lw r4,(r1+140) 800a0a0: 2c c8 00 00 lhu r8,(r6+0)
_Priority_Major_bit_map |= the_priority_map->ready_major;
800a0a4: 78 02 08 02 mvhi r2,0x802 800a0a8: 38 42 39 b4 ori r2,r2,0x39b4
RTEMS_INLINE_ROUTINE void _Priority_Add_to_bit_map ( Priority_Information *the_priority_map ) { *the_priority_map->minor |= the_priority_map->ready_minor;
800a0ac: b9 07 38 00 or r7,r8,r7 800a0b0: 0c c7 00 00 sh (r6+0),r7
_Priority_Major_bit_map |= the_priority_map->ready_major;
800a0b4: 2c 47 00 00 lhu r7,(r2+0) 800a0b8: 2c 28 00 94 lhu r8,(r1+148)
Chain_Node *the_node ) { Chain_Node *old_last_node; the_node->next = _Chain_Tail(the_chain);
800a0bc: 34 86 00 04 addi r6,r4,4 800a0c0: 58 26 00 00 sw (r1+0),r6
old_last_node = the_chain->last;
800a0c4: 28 86 00 08 lw r6,(r4+8) 800a0c8: b9 07 38 00 or r7,r8,r7
the_chain->last = the_node;
800a0cc: 58 81 00 08 sw (r4+8),r1 800a0d0: 20 e4 ff ff andi r4,r7,0xffff 800a0d4: 0c 44 00 00 sh (r2+0),r4
old_last_node->next = the_node; the_node->previous = old_last_node;
800a0d8: 58 26 00 04 sw (r1+4),r6
Chain_Node *old_last_node; the_node->next = _Chain_Tail(the_chain); old_last_node = the_chain->last; the_chain->last = the_node; old_last_node->next = the_node;
800a0dc: 58 c1 00 00 sw (r6+0),r1
_ISR_Flash( level );
800a0e0: d0 03 00 00 wcsr IE,r3 800a0e4: d0 05 00 00 wcsr IE,r5
if ( the_thread->current_priority < _Thread_Heir->current_priority ) {
800a0e8: 78 02 08 02 mvhi r2,0x802 800a0ec: 38 42 39 90 ori r2,r2,0x3990 800a0f0: 28 44 00 00 lw r4,(r2+0) 800a0f4: 28 25 00 14 lw r5,(r1+20) 800a0f8: 28 84 00 14 lw r4,(r4+20)
800a0fc: 50 a4 00 0c bgeu r5,r4,800a12c <_Thread_Resume+0xc4> _Thread_Heir = the_thread; if ( _Thread_Executing->is_preemptible ||
800a100: 78 04 08 02 mvhi r4,0x802 800a104: 38 84 39 c0 ori r4,r4,0x39c0 800a108: 28 84 00 00 lw r4,(r4+0)
_Chain_Append_unprotected(the_thread->ready, &the_thread->Object.Node); _ISR_Flash( level ); if ( the_thread->current_priority < _Thread_Heir->current_priority ) { _Thread_Heir = the_thread;
800a10c: 58 41 00 00 sw (r2+0),r1
if ( _Thread_Executing->is_preemptible ||
800a110: 40 81 00 75 lbu r1,(r4+117)
800a114: 5c 20 00 02 bne r1,r0,800a11c <_Thread_Resume+0xb4>
800a118: 5c a1 00 05 bne r5,r1,800a12c <_Thread_Resume+0xc4> <== ALWAYS TAKEN
the_thread->current_priority == 0 ) _Context_Switch_necessary = true;
800a11c: 78 01 08 02 mvhi r1,0x802 800a120: 38 21 39 d0 ori r1,r1,0x39d0 800a124: 34 02 00 01 mvi r2,1 800a128: 30 22 00 00 sb (r1+0),r2
} } } _ISR_Enable( level );
800a12c: d0 03 00 00 wcsr IE,r3
}
800a130: c3 a0 00 00 ret
0800cbc8 <_Thread_Yield_processor>: { ISR_Level level; Thread_Control *executing; Chain_Control *ready; executing = _Thread_Executing;
800cbc8: 78 01 08 02 mvhi r1,0x802 800cbcc: 38 21 9a 70 ori r1,r1,0x9a70 800cbd0: 28 21 00 00 lw r1,(r1+0)
ready = executing->ready;
800cbd4: 28 22 00 8c lw r2,(r1+140)
_ISR_Disable( level );
800cbd8: 90 00 20 00 rcsr r4,IE 800cbdc: 34 05 ff fe mvi r5,-2 800cbe0: a0 85 28 00 and r5,r4,r5 800cbe4: d0 05 00 00 wcsr IE,r5
if ( !_Chain_Has_only_one_node( ready ) ) {
800cbe8: 28 47 00 00 lw r7,(r2+0) 800cbec: 28 46 00 08 lw r6,(r2+8) 800cbf0: 78 03 08 02 mvhi r3,0x802 800cbf4: 38 63 9a 40 ori r3,r3,0x9a40
800cbf8: 44 e6 00 12 be r7,r6,800cc40 <_Thread_Yield_processor+0x78> ) { Chain_Node *next; Chain_Node *previous; next = the_node->next;
800cbfc: 28 26 00 00 lw r6,(r1+0)
previous = the_node->previous;
800cc00: 28 27 00 04 lw r7,(r1+4)
Chain_Node *the_node ) { Chain_Node *old_last_node; the_node->next = _Chain_Tail(the_chain);
800cc04: 34 48 00 04 addi r8,r2,4
Chain_Node *previous; next = the_node->next; previous = the_node->previous; next->previous = previous; previous->next = next;
800cc08: 58 e6 00 00 sw (r7+0),r6
Chain_Node *the_node ) { Chain_Node *old_last_node; the_node->next = _Chain_Tail(the_chain);
800cc0c: 58 28 00 00 sw (r1+0),r8
Chain_Node *next; Chain_Node *previous; next = the_node->next; previous = the_node->previous; next->previous = previous;
800cc10: 58 c7 00 04 sw (r6+4),r7
) { Chain_Node *old_last_node; the_node->next = _Chain_Tail(the_chain); old_last_node = the_chain->last;
800cc14: 28 46 00 08 lw r6,(r2+8)
the_chain->last = the_node;
800cc18: 58 41 00 08 sw (r2+8),r1
old_last_node->next = the_node; the_node->previous = old_last_node;
800cc1c: 58 26 00 04 sw (r1+4),r6
Chain_Node *old_last_node; the_node->next = _Chain_Tail(the_chain); old_last_node = the_chain->last; the_chain->last = the_node; old_last_node->next = the_node;
800cc20: 58 c1 00 00 sw (r6+0),r1
_Chain_Extract_unprotected( &executing->Object.Node ); _Chain_Append_unprotected( ready, &executing->Object.Node ); _ISR_Flash( level );
800cc24: d0 04 00 00 wcsr IE,r4 800cc28: d0 05 00 00 wcsr IE,r5
if ( _Thread_Is_heir( executing ) )
800cc2c: 28 65 00 00 lw r5,(r3+0)
800cc30: 5c 25 00 06 bne r1,r5,800cc48 <_Thread_Yield_processor+0x80><== NEVER TAKEN
_Thread_Heir = (Thread_Control *) ready->first;
800cc34: 28 42 00 00 lw r2,(r2+0) 800cc38: 58 62 00 00 sw (r3+0),r2 800cc3c: e0 00 00 03 bi 800cc48 <_Thread_Yield_processor+0x80>
_Context_Switch_necessary = true; } else if ( !_Thread_Is_heir( executing ) )
800cc40: 28 62 00 00 lw r2,(r3+0)
800cc44: 44 22 00 05 be r1,r2,800cc58 <_Thread_Yield_processor+0x90><== ALWAYS TAKEN
_Context_Switch_necessary = true;
800cc48: 78 01 08 02 mvhi r1,0x802 800cc4c: 38 21 9a 80 ori r1,r1,0x9a80 800cc50: 34 02 00 01 mvi r2,1 800cc54: 30 22 00 00 sb (r1+0),r2
_ISR_Enable( level );
800cc58: d0 04 00 00 wcsr IE,r4
}
800cc5c: c3 a0 00 00 ret
08004954 <_Thread_queue_Enqueue_priority>: Thread_blocking_operation_States _Thread_queue_Enqueue_priority ( Thread_queue_Control *the_thread_queue, Thread_Control *the_thread, ISR_Level *level_p ) {
8004954: 37 9c ff ec addi sp,sp,-20 8004958: 5b 8b 00 14 sw (sp+20),r11 800495c: 5b 8c 00 10 sw (sp+16),r12 8004960: 5b 8d 00 0c sw (sp+12),r13 8004964: 5b 8e 00 08 sw (sp+8),r14 8004968: 5b 9d 00 04 sw (sp+4),ra
Priority_Control priority; States_Control block_state; _Chain_Initialize_empty( &the_thread->Wait.Block2n ); priority = the_thread->current_priority;
800496c: 28 4d 00 14 lw r13,(r2+20)
Thread_blocking_operation_States _Thread_queue_Enqueue_priority ( Thread_queue_Control *the_thread_queue, Thread_Control *the_thread, ISR_Level *level_p ) {
8004970: b8 40 58 00 mv r11,r2
*/ RTEMS_INLINE_ROUTINE void _Chain_Initialize_empty( Chain_Control *the_chain ) { the_chain->first = _Chain_Tail(the_chain);
8004974: 34 44 00 3c addi r4,r2,60 8004978: 59 64 00 38 sw (r11+56),r4
the_chain->permanent_null = NULL; the_chain->last = _Chain_Head(the_chain);
800497c: 34 42 00 38 addi r2,r2,56
RTEMS_INLINE_ROUTINE void _Chain_Initialize_empty( Chain_Control *the_chain ) { the_chain->first = _Chain_Tail(the_chain); the_chain->permanent_null = NULL;
8004980: 34 04 00 00 mvi r4,0 8004984: b8 20 60 00 mv r12,r1 8004988: 59 64 00 3c sw (r11+60),r4
the_chain->last = _Chain_Head(the_chain);
800498c: 59 62 00 40 sw (r11+64),r2
_Chain_Initialize_empty( &the_thread->Wait.Block2n ); priority = the_thread->current_priority; header_index = _Thread_queue_Header_number( priority ); header = &the_thread_queue->Queues.Priority[ header_index ];
8004990: b9 a0 08 00 mv r1,r13 8004994: 34 02 00 06 mvi r2,6
Thread_blocking_operation_States _Thread_queue_Enqueue_priority ( Thread_queue_Control *the_thread_queue, Thread_Control *the_thread, ISR_Level *level_p ) {
8004998: b8 60 70 00 mv r14,r3
_Chain_Initialize_empty( &the_thread->Wait.Block2n ); priority = the_thread->current_priority; header_index = _Thread_queue_Header_number( priority ); header = &the_thread_queue->Queues.Priority[ header_index ];
800499c: fb ff ee 3d calli 8000290 <__lshrsi3> 80049a0: b4 21 10 00 add r2,r1,r1 80049a4: b4 41 08 00 add r1,r2,r1 80049a8: 34 02 00 02 mvi r2,2 80049ac: fb ff ee 11 calli 80001f0 <__ashlsi3>
block_state = the_thread_queue->state; if ( _Thread_queue_Is_reverse_search( priority ) )
80049b0: 21 a2 00 20 andi r2,r13,0x20
_Chain_Initialize_empty( &the_thread->Wait.Block2n ); priority = the_thread->current_priority; header_index = _Thread_queue_Header_number( priority ); header = &the_thread_queue->Queues.Priority[ header_index ];
80049b4: b5 81 08 00 add r1,r12,r1
block_state = the_thread_queue->state;
80049b8: 29 87 00 38 lw r7,(r12+56)
if ( _Thread_queue_Is_reverse_search( priority ) ) 80049bc: 5c 40 00 23 bne r2,r0,8004a48 <_Thread_queue_Enqueue_priority+0xf4> */ RTEMS_INLINE_ROUTINE Chain_Node *_Chain_Tail( Chain_Control *the_chain ) { return (Chain_Node *) &the_chain->permanent_null;
80049c0: 34 28 00 04 addi r8,r1,4
goto restart_reverse_search; restart_forward_search: search_priority = PRIORITY_MINIMUM - 1; _ISR_Disable( level );
80049c4: 34 03 ff fe mvi r3,-2 80049c8: 90 00 20 00 rcsr r4,IE 80049cc: a0 83 30 00 and r6,r4,r3 80049d0: d0 06 00 00 wcsr IE,r6
search_thread = (Thread_Control *) header->first;
80049d4: 34 05 ff ff mvi r5,-1 80049d8: 28 22 00 00 lw r2,(r1+0)
while ( !_Chain_Is_tail( header, (Chain_Node *)search_thread ) ) {
80049dc: e0 00 00 0b bi 8004a08 <_Thread_queue_Enqueue_priority+0xb4>
search_priority = search_thread->current_priority;
80049e0: 28 45 00 14 lw r5,(r2+20)
if ( priority <= search_priority ) 80049e4: 50 ad 00 0a bgeu r5,r13,8004a0c <_Thread_queue_Enqueue_priority+0xb8> break; search_priority = search_thread->current_priority; if ( priority <= search_priority ) break; #endif _ISR_Flash( level );
80049e8: d0 04 00 00 wcsr IE,r4 80049ec: d0 06 00 00 wcsr IE,r6
if ( !_States_Are_set( search_thread->current_state, block_state) ) {
80049f0: 28 49 00 10 lw r9,(r2+16) 80049f4: a0 e9 48 00 and r9,r7,r9
80049f8: 5d 20 00 03 bne r9,r0,8004a04 <_Thread_queue_Enqueue_priority+0xb0><== ALWAYS TAKEN
_ISR_Enable( level );
80049fc: d0 04 00 00 wcsr IE,r4 <== NOT EXECUTED
goto restart_forward_search;
8004a00: e3 ff ff f2 bi 80049c8 <_Thread_queue_Enqueue_priority+0x74><== NOT EXECUTED
} search_thread = (Thread_Control *)search_thread->Object.Node.next;
8004a04: 28 42 00 00 lw r2,(r2+0)
restart_forward_search: search_priority = PRIORITY_MINIMUM - 1; _ISR_Disable( level ); search_thread = (Thread_Control *) header->first; while ( !_Chain_Is_tail( header, (Chain_Node *)search_thread ) ) { 8004a08: 5c 48 ff f6 bne r2,r8,80049e0 <_Thread_queue_Enqueue_priority+0x8c> } search_thread = (Thread_Control *)search_thread->Object.Node.next; } if ( the_thread_queue->sync_state !=
8004a0c: 29 83 00 30 lw r3,(r12+48) 8004a10: 34 01 00 01 mvi r1,1
the_node->previous = previous_node; previous_node->next = the_node; search_node->previous = the_node; the_thread->Wait.queue = the_thread_queue; _ISR_Enable( level ); return THREAD_BLOCKING_OPERATION_NOTHING_HAPPENED;
8004a14: b8 80 38 00 mv r7,r4
} search_thread = (Thread_Control *)search_thread->Object.Node.next; } if ( the_thread_queue->sync_state !=
8004a18: 5c 61 00 3b bne r3,r1,8004b04 <_Thread_queue_Enqueue_priority+0x1b0><== NEVER TAKEN
THREAD_BLOCKING_OPERATION_NOTHING_HAPPENED ) goto synchronize; the_thread_queue->sync_state = THREAD_BLOCKING_OPERATION_SYNCHRONIZED;
8004a1c: 34 01 00 00 mvi r1,0 8004a20: 59 81 00 30 sw (r12+48),r1
if ( priority == search_priority ) 8004a24: 45 a5 00 2f be r13,r5,8004ae0 <_Thread_queue_Enqueue_priority+0x18c> goto equal_priority; search_node = (Chain_Node *) search_thread; previous_node = search_node->previous;
8004a28: 28 41 00 04 lw r1,(r2+4)
the_node = (Chain_Node *) the_thread; the_node->next = search_node;
8004a2c: 59 62 00 00 sw (r11+0),r2
the_node->previous = previous_node; previous_node->next = the_node; search_node->previous = the_node; the_thread->Wait.queue = the_thread_queue;
8004a30: 59 6c 00 44 sw (r11+68),r12
search_node = (Chain_Node *) search_thread; previous_node = search_node->previous; the_node = (Chain_Node *) the_thread; the_node->next = search_node; the_node->previous = previous_node;
8004a34: 59 61 00 04 sw (r11+4),r1
previous_node->next = the_node;
8004a38: 58 2b 00 00 sw (r1+0),r11
search_node->previous = the_node;
8004a3c: 58 4b 00 04 sw (r2+4),r11
the_thread->Wait.queue = the_thread_queue; _ISR_Enable( level );
8004a40: d0 04 00 00 wcsr IE,r4 8004a44: e0 00 00 25 bi 8004ad8 <_Thread_queue_Enqueue_priority+0x184>
return THREAD_BLOCKING_OPERATION_NOTHING_HAPPENED; restart_reverse_search: search_priority = PRIORITY_MAXIMUM + 1;
8004a48: 78 04 08 01 mvhi r4,0x801 8004a4c: 38 84 c0 c0 ori r4,r4,0xc0c0
_ISR_Disable( level );
8004a50: 34 03 ff fe mvi r3,-2
the_thread->Wait.queue = the_thread_queue; _ISR_Enable( level ); return THREAD_BLOCKING_OPERATION_NOTHING_HAPPENED; restart_reverse_search: search_priority = PRIORITY_MAXIMUM + 1;
8004a54: 40 86 00 00 lbu r6,(r4+0) 8004a58: 34 c6 00 01 addi r6,r6,1
_ISR_Disable( level );
8004a5c: 90 00 28 00 rcsr r5,IE 8004a60: a0 a3 40 00 and r8,r5,r3 8004a64: d0 08 00 00 wcsr IE,r8
search_thread = (Thread_Control *) header->last;
8004a68: 28 22 00 08 lw r2,(r1+8)
while ( !_Chain_Is_head( header, (Chain_Node *)search_thread ) ) {
8004a6c: e0 00 00 0b bi 8004a98 <_Thread_queue_Enqueue_priority+0x144>
search_priority = search_thread->current_priority;
8004a70: 28 46 00 14 lw r6,(r2+20)
if ( priority >= search_priority ) 8004a74: 51 a6 00 0a bgeu r13,r6,8004a9c <_Thread_queue_Enqueue_priority+0x148> break; search_priority = search_thread->current_priority; if ( priority >= search_priority ) break; #endif _ISR_Flash( level );
8004a78: d0 05 00 00 wcsr IE,r5 8004a7c: d0 08 00 00 wcsr IE,r8
if ( !_States_Are_set( search_thread->current_state, block_state) ) {
8004a80: 28 49 00 10 lw r9,(r2+16) 8004a84: a0 e9 48 00 and r9,r7,r9
8004a88: 5d 20 00 03 bne r9,r0,8004a94 <_Thread_queue_Enqueue_priority+0x140><== ALWAYS TAKEN
_ISR_Enable( level );
8004a8c: d0 05 00 00 wcsr IE,r5 <== NOT EXECUTED
goto restart_reverse_search;
8004a90: e3 ff ff f1 bi 8004a54 <_Thread_queue_Enqueue_priority+0x100><== NOT EXECUTED
} search_thread = (Thread_Control *)
8004a94: 28 42 00 04 lw r2,(r2+4)
restart_reverse_search: search_priority = PRIORITY_MAXIMUM + 1; _ISR_Disable( level ); search_thread = (Thread_Control *) header->last; while ( !_Chain_Is_head( header, (Chain_Node *)search_thread ) ) { 8004a98: 5c 41 ff f6 bne r2,r1,8004a70 <_Thread_queue_Enqueue_priority+0x11c> } search_thread = (Thread_Control *) search_thread->Object.Node.previous; } if ( the_thread_queue->sync_state !=
8004a9c: 29 83 00 30 lw r3,(r12+48) 8004aa0: 34 01 00 01 mvi r1,1 8004aa4: b8 a0 38 00 mv r7,r5
8004aa8: 5c 61 00 17 bne r3,r1,8004b04 <_Thread_queue_Enqueue_priority+0x1b0><== NEVER TAKEN
THREAD_BLOCKING_OPERATION_NOTHING_HAPPENED ) goto synchronize; the_thread_queue->sync_state = THREAD_BLOCKING_OPERATION_SYNCHRONIZED;
8004aac: 34 01 00 00 mvi r1,0 8004ab0: 59 81 00 30 sw (r12+48),r1
if ( priority == search_priority )
8004ab4: b8 a0 20 00 mv r4,r5
8004ab8: 45 a6 00 0a be r13,r6,8004ae0 <_Thread_queue_Enqueue_priority+0x18c> goto equal_priority; search_node = (Chain_Node *) search_thread; next_node = search_node->next;
8004abc: 28 41 00 00 lw r1,(r2+0)
the_node = (Chain_Node *) the_thread; the_node->next = next_node; the_node->previous = search_node;
8004ac0: 59 62 00 04 sw (r11+4),r2
search_node->next = the_node; next_node->previous = the_node; the_thread->Wait.queue = the_thread_queue;
8004ac4: 59 6c 00 44 sw (r11+68),r12
search_node = (Chain_Node *) search_thread; next_node = search_node->next; the_node = (Chain_Node *) the_thread; the_node->next = next_node;
8004ac8: 59 61 00 00 sw (r11+0),r1
the_node->previous = search_node; search_node->next = the_node;
8004acc: 58 4b 00 00 sw (r2+0),r11
next_node->previous = the_node;
8004ad0: 58 2b 00 04 sw (r1+4),r11
the_thread->Wait.queue = the_thread_queue; _ISR_Enable( level );
8004ad4: d0 05 00 00 wcsr IE,r5 8004ad8: 34 01 00 01 mvi r1,1
return THREAD_BLOCKING_OPERATION_NOTHING_HAPPENED;
8004adc: e0 00 00 0c bi 8004b0c <_Thread_queue_Enqueue_priority+0x1b8> 8004ae0: 34 42 00 3c addi r2,r2,60
equal_priority: /* add at end of priority group */ search_node = _Chain_Tail( &search_thread->Wait.Block2n ); previous_node = search_node->previous;
8004ae4: 28 41 00 04 lw r1,(r2+4)
the_node = (Chain_Node *) the_thread; the_node->next = search_node;
8004ae8: 59 62 00 00 sw (r11+0),r2
the_node->previous = previous_node; previous_node->next = the_node; search_node->previous = the_node; the_thread->Wait.queue = the_thread_queue;
8004aec: 59 6c 00 44 sw (r11+68),r12
search_node = _Chain_Tail( &search_thread->Wait.Block2n ); previous_node = search_node->previous; the_node = (Chain_Node *) the_thread; the_node->next = search_node; the_node->previous = previous_node;
8004af0: 59 61 00 04 sw (r11+4),r1
previous_node->next = the_node;
8004af4: 58 2b 00 00 sw (r1+0),r11
search_node->previous = the_node;
8004af8: 58 4b 00 04 sw (r2+4),r11
the_thread->Wait.queue = the_thread_queue; _ISR_Enable( level );
8004afc: d0 04 00 00 wcsr IE,r4 8004b00: e3 ff ff f6 bi 8004ad8 <_Thread_queue_Enqueue_priority+0x184>
* the mutex by an ISR or timed out. * * WARNING! Returning with interrupts disabled! */ *level_p = level; return the_thread_queue->sync_state;
8004b04: 29 81 00 30 lw r1,(r12+48) <== NOT EXECUTED
* For example, the blocking thread could have been given * the mutex by an ISR or timed out. * * WARNING! Returning with interrupts disabled! */ *level_p = level;
8004b08: 59 c7 00 00 sw (r14+0),r7 <== NOT EXECUTED
return the_thread_queue->sync_state; }
8004b0c: 2b 9d 00 04 lw ra,(sp+4) 8004b10: 2b 8b 00 14 lw r11,(sp+20) 8004b14: 2b 8c 00 10 lw r12,(sp+16) 8004b18: 2b 8d 00 0c lw r13,(sp+12) 8004b1c: 2b 8e 00 08 lw r14,(sp+8) 8004b20: 37 9c 00 14 addi sp,sp,20 8004b24: c3 a0 00 00 ret
08008eb8 <_Thread_queue_Process_timeout>: #include <rtems/score/tqdata.h> void _Thread_queue_Process_timeout( Thread_Control *the_thread ) {
8008eb8: 37 9c ff fc addi sp,sp,-4 8008ebc: 5b 9d 00 04 sw (sp+4),ra 8008ec0: b8 20 10 00 mv r2,r1
Thread_queue_Control *the_thread_queue = the_thread->Wait.queue;
8008ec4: 28 21 00 44 lw r1,(r1+68)
* If it is not satisfied, then it is "nothing happened" and * this is the "timeout" transition. After a request is satisfied, * a timeout is not allowed to occur. */ if ( the_thread_queue->sync_state != THREAD_BLOCKING_OPERATION_SYNCHRONIZED &&
8008ec8: 28 24 00 30 lw r4,(r1+48)
8008ecc: 44 80 00 0c be r4,r0,8008efc <_Thread_queue_Process_timeout+0x44>
8008ed0: 78 03 08 01 mvhi r3,0x801 8008ed4: 38 63 c8 e0 ori r3,r3,0xc8e0 8008ed8: 28 63 00 00 lw r3,(r3+0)
8008edc: 5c 43 00 08 bne r2,r3,8008efc <_Thread_queue_Process_timeout+0x44><== NEVER TAKEN
_Thread_Is_executing( the_thread ) ) { if ( the_thread_queue->sync_state != THREAD_BLOCKING_OPERATION_SATISFIED ) {
8008ee0: 34 03 00 03 mvi r3,3
8008ee4: 44 83 00 0a be r4,r3,8008f0c <_Thread_queue_Process_timeout+0x54> the_thread->Wait.return_code = the_thread->Wait.queue->timeout_status; the_thread_queue->sync_state = THREAD_BLOCKING_OPERATION_TIMEOUT;
8008ee8: 34 03 00 02 mvi r3,2 8008eec: 58 23 00 30 sw (r1+48),r3
*/ if ( the_thread_queue->sync_state != THREAD_BLOCKING_OPERATION_SYNCHRONIZED && _Thread_Is_executing( the_thread ) ) { if ( the_thread_queue->sync_state != THREAD_BLOCKING_OPERATION_SATISFIED ) { the_thread->Wait.return_code = the_thread->Wait.queue->timeout_status;
8008ef0: 28 21 00 3c lw r1,(r1+60) 8008ef4: 58 41 00 34 sw (r2+52),r1 8008ef8: e0 00 00 05 bi 8008f0c <_Thread_queue_Process_timeout+0x54>
the_thread_queue->sync_state = THREAD_BLOCKING_OPERATION_TIMEOUT; } } else { the_thread->Wait.return_code = the_thread->Wait.queue->timeout_status;
8008efc: 28 21 00 3c lw r1,(r1+60) 8008f00: 58 41 00 34 sw (r2+52),r1
_Thread_queue_Extract( the_thread->Wait.queue, the_thread );
8008f04: 28 41 00 44 lw r1,(r2+68) 8008f08: fb ff ff 93 calli 8008d54 <_Thread_queue_Extract>
} }
8008f0c: 2b 9d 00 04 lw ra,(sp+4) 8008f10: 37 9c 00 04 addi sp,sp,4 8008f14: c3 a0 00 00 ret
08004bb4 <_Thread_queue_Requeue>: void _Thread_queue_Requeue( Thread_queue_Control *the_thread_queue, Thread_Control *the_thread ) {
8004bb4: 37 9c ff ec addi sp,sp,-20 8004bb8: 5b 8b 00 10 sw (sp+16),r11 8004bbc: 5b 8c 00 0c sw (sp+12),r12 8004bc0: 5b 8d 00 08 sw (sp+8),r13 8004bc4: 5b 9d 00 04 sw (sp+4),ra 8004bc8: b8 20 58 00 mv r11,r1 8004bcc: b8 40 60 00 mv r12,r2
/* * Just in case the thread really wasn't blocked on a thread queue * when we get here. */ if ( !the_thread_queue )
8004bd0: 44 20 00 17 be r1,r0,8004c2c <_Thread_queue_Requeue+0x78> <== NEVER TAKEN
/* * If queueing by FIFO, there is nothing to do. This only applies to * priority blocking discipline. */ if ( the_thread_queue->discipline == THREAD_QUEUE_DISCIPLINE_PRIORITY ) {
8004bd4: 28 22 00 34 lw r2,(r1+52) 8004bd8: 34 01 00 01 mvi r1,1
8004bdc: 5c 41 00 14 bne r2,r1,8004c2c <_Thread_queue_Requeue+0x78> <== NEVER TAKEN
Thread_queue_Control *tq = the_thread_queue; ISR_Level level; ISR_Level level_ignored; _ISR_Disable( level );
8004be0: 90 00 68 00 rcsr r13,IE 8004be4: 34 01 ff fe mvi r1,-2 8004be8: a1 a1 08 00 and r1,r13,r1 8004bec: d0 01 00 00 wcsr IE,r1
if ( _States_Is_waiting_on_thread_queue( the_thread->current_state ) ) {
8004bf0: 29 82 00 10 lw r2,(r12+16) 8004bf4: 78 01 00 03 mvhi r1,0x3 8004bf8: 38 21 be e0 ori r1,r1,0xbee0 8004bfc: a0 41 08 00 and r1,r2,r1
8004c00: 44 20 00 0a be r1,r0,8004c28 <_Thread_queue_Requeue+0x74> <== NEVER TAKEN
8004c04: 34 03 00 01 mvi r3,1 8004c08: 59 63 00 30 sw (r11+48),r3
_Thread_queue_Enter_critical_section( tq ); _Thread_queue_Extract_priority_helper( tq, the_thread, true );
8004c0c: b9 60 08 00 mv r1,r11 8004c10: b9 80 10 00 mv r2,r12 8004c14: f8 00 10 5c calli 8008d84 <_Thread_queue_Extract_priority_helper>
(void) _Thread_queue_Enqueue_priority( tq, the_thread, &level_ignored );
8004c18: b9 60 08 00 mv r1,r11 8004c1c: b9 80 10 00 mv r2,r12 8004c20: 37 83 00 14 addi r3,sp,20 8004c24: fb ff ff 4c calli 8004954 <_Thread_queue_Enqueue_priority>
} _ISR_Enable( level );
8004c28: d0 0d 00 00 wcsr IE,r13
} }
8004c2c: 2b 9d 00 04 lw ra,(sp+4) 8004c30: 2b 8b 00 10 lw r11,(sp+16) 8004c34: 2b 8c 00 0c lw r12,(sp+12) 8004c38: 2b 8d 00 08 lw r13,(sp+8) 8004c3c: 37 9c 00 14 addi sp,sp,20 8004c40: c3 a0 00 00 ret
08004c44 <_Thread_queue_Timeout>: void _Thread_queue_Timeout( Objects_Id id, void *ignored __attribute__((unused)) ) {
8004c44: 37 9c ff f8 addi sp,sp,-8 8004c48: 5b 9d 00 04 sw (sp+4),ra
Thread_Control *the_thread; Objects_Locations location; the_thread = _Thread_Get( id, &location );
8004c4c: 37 82 00 08 addi r2,sp,8 8004c50: fb ff fd 9f calli 80042cc <_Thread_Get>
switch ( location ) {
8004c54: 2b 82 00 08 lw r2,(sp+8)
8004c58: 5c 40 00 07 bne r2,r0,8004c74 <_Thread_queue_Timeout+0x30> <== NEVER TAKEN
#if defined(RTEMS_MULTIPROCESSING) case OBJECTS_REMOTE: /* impossible */ #endif break; case OBJECTS_LOCAL: _Thread_queue_Process_timeout( the_thread );
8004c5c: f8 00 10 97 calli 8008eb8 <_Thread_queue_Process_timeout>
*/ RTEMS_INLINE_ROUTINE void _Thread_Unnest_dispatch( void ) { RTEMS_COMPILER_MEMORY_BARRIER(); _Thread_Dispatch_disable_level -= 1;
8004c60: 78 01 08 01 mvhi r1,0x801 8004c64: 38 21 c8 24 ori r1,r1,0xc824 8004c68: 28 22 00 00 lw r2,(r1+0) 8004c6c: 34 42 ff ff addi r2,r2,-1 8004c70: 58 22 00 00 sw (r1+0),r2
_Thread_Unnest_dispatch(); break; } }
8004c74: 2b 9d 00 04 lw ra,(sp+4) 8004c78: 37 9c 00 08 addi sp,sp,8 8004c7c: c3 a0 00 00 ret
08014140 <_Timer_server_Body>: * @a arg points to the corresponding timer server control block. */ static rtems_task _Timer_server_Body( rtems_task_argument arg ) {
8014140: 37 9c ff a4 addi sp,sp,-92 8014144: 5b 8b 00 44 sw (sp+68),r11 8014148: 5b 8c 00 40 sw (sp+64),r12 801414c: 5b 8d 00 3c sw (sp+60),r13 8014150: 5b 8e 00 38 sw (sp+56),r14 8014154: 5b 8f 00 34 sw (sp+52),r15 8014158: 5b 90 00 30 sw (sp+48),r16 801415c: 5b 91 00 2c sw (sp+44),r17 8014160: 5b 92 00 28 sw (sp+40),r18 8014164: 5b 93 00 24 sw (sp+36),r19 8014168: 5b 94 00 20 sw (sp+32),r20 801416c: 5b 95 00 1c sw (sp+28),r21 8014170: 5b 96 00 18 sw (sp+24),r22 8014174: 5b 97 00 14 sw (sp+20),r23 8014178: 5b 98 00 10 sw (sp+16),r24 801417c: 5b 99 00 0c sw (sp+12),r25 8014180: 5b 9b 00 08 sw (sp+8),fp 8014184: 5b 9d 00 04 sw (sp+4),ra
static void _Timer_server_Process_interval_watchdogs( Timer_server_Watchdogs *watchdogs, Chain_Control *fire_chain ) { Watchdog_Interval snapshot = _Watchdog_Ticks_since_boot;
8014188: 78 11 08 03 mvhi r17,0x803
* @a arg points to the corresponding timer server control block. */ static rtems_task _Timer_server_Body( rtems_task_argument arg ) {
801418c: b8 20 58 00 mv r11,r1 8014190: 37 82 00 54 addi r2,sp,84
RTEMS_INLINE_ROUTINE void _Chain_Initialize_empty( Chain_Control *the_chain ) { the_chain->first = _Chain_Tail(the_chain); the_chain->permanent_null = NULL;
8014194: 34 01 00 00 mvi r1,0
*/ RTEMS_INLINE_ROUTINE Chain_Node *_Chain_Tail( Chain_Control *the_chain ) { return (Chain_Node *) &the_chain->permanent_null;
8014198: 37 96 00 58 addi r22,sp,88 801419c: 37 8e 00 48 addi r14,sp,72 80141a0: 37 92 00 4c addi r18,sp,76
static void _Timer_server_Process_tod_watchdogs( Timer_server_Watchdogs *watchdogs, Chain_Control *fire_chain ) { Watchdog_Interval snapshot = (Watchdog_Interval) _TOD_Seconds_since_epoch();
80141a4: 78 10 08 03 mvhi r16,0x803 80141a8: 78 0d 08 03 mvhi r13,0x803
*/ RTEMS_INLINE_ROUTINE void _Chain_Initialize_empty( Chain_Control *the_chain ) { the_chain->first = _Chain_Tail(the_chain);
80141ac: 5b 96 00 54 sw (sp+84),r22
the_chain->permanent_null = NULL;
80141b0: 5b 81 00 58 sw (sp+88),r1
the_chain->last = _Chain_Head(the_chain);
80141b4: 5b 82 00 5c sw (sp+92),r2
*/ RTEMS_INLINE_ROUTINE void _Chain_Initialize_empty( Chain_Control *the_chain ) { the_chain->first = _Chain_Tail(the_chain);
80141b8: 5b 92 00 48 sw (sp+72),r18
the_chain->permanent_null = NULL;
80141bc: 5b 81 00 4c sw (sp+76),r1
the_chain->last = _Chain_Head(the_chain);
80141c0: 5b 8e 00 50 sw (sp+80),r14
static void _Timer_server_Process_interval_watchdogs( Timer_server_Watchdogs *watchdogs, Chain_Control *fire_chain ) { Watchdog_Interval snapshot = _Watchdog_Ticks_since_boot;
80141c4: 3a 31 dd 7c ori r17,r17,0xdd7c
static void _Timer_server_Process_tod_watchdogs( Timer_server_Watchdogs *watchdogs, Chain_Control *fire_chain ) { Watchdog_Interval snapshot = (Watchdog_Interval) _TOD_Seconds_since_epoch();
80141c8: 3a 10 dc bc ori r16,r16,0xdcbc
*/ _Timer_server_Process_insertions( ts ); _ISR_Disable( level ); if ( _Chain_Is_empty( insert_chain ) ) { ts->insert_chain = NULL;
80141cc: b8 20 a8 00 mv r21,r1 80141d0: 39 ad dc 2c ori r13,r13,0xdc2c
*/ Watchdog_Interval delta = snapshot - watchdogs->last_snapshot; watchdogs->last_snapshot = snapshot; _Watchdog_Adjust_to_chain( &watchdogs->Chain, delta, fire_chain );
80141d4: 35 74 00 30 addi r20,r11,48
/* * This path is for normal forward movement and cases where the * TOD has been set forward. */ delta = snapshot - last_snapshot; _Watchdog_Adjust_to_chain( &watchdogs->Chain, delta, fire_chain );
80141d8: 35 6f 00 68 addi r15,r11,104
static void _Timer_server_Stop_interval_system_watchdog( Timer_server_Control *ts ) { _Watchdog_Remove( &ts->Interval_watchdogs.System_watchdog );
80141dc: 35 7b 00 08 addi fp,r11,8
static void _Timer_server_Stop_tod_system_watchdog( Timer_server_Control *ts ) { _Watchdog_Remove( &ts->TOD_watchdogs.System_watchdog );
80141e0: 35 79 00 40 addi r25,r11,64
/* * The current TOD is before the last TOD which indicates that * TOD has been set backwards. */ delta = last_snapshot - snapshot; _Watchdog_Adjust( &watchdogs->Chain, WATCHDOG_BACKWARD, delta );
80141e4: 34 18 00 01 mvi r24,1
Timer_Control *timer ) { if ( timer->the_class == TIMER_INTERVAL_ON_TASK ) { _Watchdog_Insert( &ts->Interval_watchdogs.Chain, &timer->Ticker ); } else if ( timer->the_class == TIMER_TIME_OF_DAY_ON_TASK ) {
80141e8: 34 17 00 03 mvi r23,3
* of zero it will be processed in the next iteration of the timer server * body loop. */ _Timer_server_Process_insertions( ts ); _ISR_Disable( level );
80141ec: 34 13 ff fe mvi r19,-2
{ /* * Afterwards all timer inserts are directed to this chain and the interval * and TOD chains will be no more modified by other parties. */ ts->insert_chain = insert_chain;
80141f0: 37 81 00 54 addi r1,sp,84 80141f4: 59 61 00 78 sw (r11+120),r1
static void _Timer_server_Process_interval_watchdogs( Timer_server_Watchdogs *watchdogs, Chain_Control *fire_chain ) { Watchdog_Interval snapshot = _Watchdog_Ticks_since_boot;
80141f8: 2a 22 00 00 lw r2,(r17+0)
/* * We assume adequate unsigned arithmetic here. */ Watchdog_Interval delta = snapshot - watchdogs->last_snapshot;
80141fc: 29 63 00 3c lw r3,(r11+60)
watchdogs->last_snapshot = snapshot; _Watchdog_Adjust_to_chain( &watchdogs->Chain, delta, fire_chain );
8014200: ba 80 08 00 mv r1,r20
/* * We assume adequate unsigned arithmetic here. */ Watchdog_Interval delta = snapshot - watchdogs->last_snapshot; watchdogs->last_snapshot = snapshot;
8014204: 59 62 00 3c sw (r11+60),r2
_Watchdog_Adjust_to_chain( &watchdogs->Chain, delta, fire_chain );
8014208: c8 43 10 00 sub r2,r2,r3 801420c: b9 c0 18 00 mv r3,r14 8014210: f8 00 14 36 calli 80192e8 <_Watchdog_Adjust_to_chain>
Timer_server_Watchdogs *watchdogs, Chain_Control *fire_chain ) { Watchdog_Interval snapshot = (Watchdog_Interval) _TOD_Seconds_since_epoch(); Watchdog_Interval last_snapshot = watchdogs->last_snapshot;
8014214: 29 62 00 74 lw r2,(r11+116)
static void _Timer_server_Process_tod_watchdogs( Timer_server_Watchdogs *watchdogs, Chain_Control *fire_chain ) { Watchdog_Interval snapshot = (Watchdog_Interval) _TOD_Seconds_since_epoch();
8014218: 2a 0c 00 00 lw r12,(r16+0)
/* * Process the seconds chain. Start by checking that the Time * of Day (TOD) has not been set backwards. If it has then * we want to adjust the watchdogs->Chain to indicate this. */ if ( snapshot > last_snapshot ) { 801421c: 50 4c 00 06 bgeu r2,r12,8014234 <_Timer_server_Body+0xf4> /* * This path is for normal forward movement and cases where the * TOD has been set forward. */ delta = snapshot - last_snapshot; _Watchdog_Adjust_to_chain( &watchdogs->Chain, delta, fire_chain );
8014220: c9 82 10 00 sub r2,r12,r2 8014224: b9 e0 08 00 mv r1,r15 8014228: b9 c0 18 00 mv r3,r14 801422c: f8 00 14 2f calli 80192e8 <_Watchdog_Adjust_to_chain> 8014230: e0 00 00 06 bi 8014248 <_Timer_server_Body+0x108>
} else if ( snapshot < last_snapshot ) { 8014234: 51 82 00 05 bgeu r12,r2,8014248 <_Timer_server_Body+0x108> /* * The current TOD is before the last TOD which indicates that * TOD has been set backwards. */ delta = last_snapshot - snapshot; _Watchdog_Adjust( &watchdogs->Chain, WATCHDOG_BACKWARD, delta );
8014238: c8 4c 18 00 sub r3,r2,r12 801423c: b9 e0 08 00 mv r1,r15 8014240: 34 02 00 01 mvi r2,1 8014244: f8 00 13 f1 calli 8019208 <_Watchdog_Adjust>
} watchdogs->last_snapshot = snapshot;
8014248: 59 6c 00 74 sw (r11+116),r12
} static void _Timer_server_Process_insertions( Timer_server_Control *ts ) { while ( true ) { Timer_Control *timer = (Timer_Control *) _Chain_Get( ts->insert_chain );
801424c: 29 61 00 78 lw r1,(r11+120) 8014250: f8 00 02 ec calli 8014e00 <_Chain_Get>
if ( timer == NULL ) {
8014254: 44 20 00 0b be r1,r0,8014280 <_Timer_server_Body+0x140> <== ALWAYS TAKEN
static void _Timer_server_Insert_timer( Timer_server_Control *ts, Timer_Control *timer ) { if ( timer->the_class == TIMER_INTERVAL_ON_TASK ) {
8014258: 28 23 00 38 lw r3,(r1+56) <== NOT EXECUTED 801425c: 5c 78 00 04 bne r3,r24,801426c <_Timer_server_Body+0x12c> <== NOT EXECUTED
_Watchdog_Insert( &ts->Interval_watchdogs.Chain, &timer->Ticker );
8014260: 34 22 00 10 addi r2,r1,16 <== NOT EXECUTED 8014264: ba 80 08 00 mv r1,r20 <== NOT EXECUTED 8014268: e0 00 00 04 bi 8014278 <_Timer_server_Body+0x138> <== NOT EXECUTED
} else if ( timer->the_class == TIMER_TIME_OF_DAY_ON_TASK ) {
801426c: 5c 77 ff f8 bne r3,r23,801424c <_Timer_server_Body+0x10c> <== NOT EXECUTED
_Watchdog_Insert( &ts->TOD_watchdogs.Chain, &timer->Ticker );
8014270: 34 22 00 10 addi r2,r1,16 <== NOT EXECUTED 8014274: b9 e0 08 00 mv r1,r15 <== NOT EXECUTED 8014278: f8 00 14 47 calli 8019394 <_Watchdog_Insert> <== NOT EXECUTED 801427c: e3 ff ff f4 bi 801424c <_Timer_server_Body+0x10c> <== NOT EXECUTED
* of zero it will be processed in the next iteration of the timer server * body loop. */ _Timer_server_Process_insertions( ts ); _ISR_Disable( level );
8014280: 90 00 10 00 rcsr r2,IE 8014284: a0 53 08 00 and r1,r2,r19 8014288: d0 01 00 00 wcsr IE,r1
if ( _Chain_Is_empty( insert_chain ) ) {
801428c: 2b 81 00 54 lw r1,(sp+84)
8014290: 5c 36 00 06 bne r1,r22,80142a8 <_Timer_server_Body+0x168> <== NEVER TAKEN
ts->insert_chain = NULL;
8014294: 59 75 00 78 sw (r11+120),r21
_ISR_Enable( level );
8014298: d0 02 00 00 wcsr IE,r2
_Chain_Initialize_empty( &fire_chain ); while ( true ) { _Timer_server_Get_watchdogs_that_fire_now( ts, &insert_chain, &fire_chain ); if ( !_Chain_Is_empty( &fire_chain ) ) {
801429c: 2b 81 00 48 lw r1,(sp+72)
80142a0: 5c 32 00 04 bne r1,r18,80142b0 <_Timer_server_Body+0x170>
80142a4: e0 00 00 17 bi 8014300 <_Timer_server_Body+0x1c0>
ts->insert_chain = NULL; _ISR_Enable( level ); break; } else { _ISR_Enable( level );
80142a8: d0 02 00 00 wcsr IE,r2 <== NOT EXECUTED 80142ac: e3 ff ff d3 bi 80141f8 <_Timer_server_Body+0xb8> <== NOT EXECUTED
/* * It is essential that interrupts are disable here since an interrupt * service routine may remove a watchdog from the chain. */ _ISR_Disable( level );
80142b0: 90 00 10 00 rcsr r2,IE 80142b4: a0 53 08 00 and r1,r2,r19 80142b8: d0 01 00 00 wcsr IE,r1
*/ RTEMS_INLINE_ROUTINE bool _Chain_Is_empty( Chain_Control *the_chain ) { return (the_chain->first == _Chain_Tail(the_chain));
80142bc: 2b 84 00 48 lw r4,(sp+72)
*/ RTEMS_INLINE_ROUTINE Chain_Node *_Chain_Get_unprotected( Chain_Control *the_chain ) { if ( !_Chain_Is_empty(the_chain)) 80142c0: 5c 92 00 03 bne r4,r18,80142cc <_Timer_server_Body+0x18c>
80142c4: 34 04 00 00 mvi r4,0 80142c8: e0 00 00 04 bi 80142d8 <_Timer_server_Body+0x198>
{ Chain_Node *return_node; Chain_Node *new_first; return_node = the_chain->first; new_first = return_node->next;
80142cc: 28 83 00 00 lw r3,(r4+0)
the_chain->first = new_first;
80142d0: 5b 83 00 48 sw (sp+72),r3
new_first->previous = _Chain_Head(the_chain);
80142d4: 58 6e 00 04 sw (r3+4),r14
watchdog = (Watchdog_Control *) _Chain_Get_unprotected( &fire_chain ); if ( watchdog != NULL ) { 80142d8: 44 80 00 08 be r4,r0,80142f8 <_Timer_server_Body+0x1b8> watchdog->state = WATCHDOG_INACTIVE;
80142dc: 58 95 00 08 sw (r4+8),r21
_ISR_Enable( level );
80142e0: d0 02 00 00 wcsr IE,r2
/* * The timer server may block here and wait for resources or time. * The system watchdogs are inactive and will remain inactive since * the active flag of the timer server is true. */ (*watchdog->routine)( watchdog->id, watchdog->user_data );
80142e4: 28 82 00 24 lw r2,(r4+36) 80142e8: 28 83 00 1c lw r3,(r4+28) 80142ec: 28 81 00 20 lw r1,(r4+32) 80142f0: d8 60 00 00 call r3
}
80142f4: e3 ff ff ef bi 80142b0 <_Timer_server_Body+0x170>
watchdog = (Watchdog_Control *) _Chain_Get_unprotected( &fire_chain ); if ( watchdog != NULL ) { watchdog->state = WATCHDOG_INACTIVE; _ISR_Enable( level ); } else { _ISR_Enable( level );
80142f8: d0 02 00 00 wcsr IE,r2 80142fc: e3 ff ff bd bi 80141f0 <_Timer_server_Body+0xb0>
* the active flag of the timer server is true. */ (*watchdog->routine)( watchdog->id, watchdog->user_data ); } } else { ts->active = false;
8014300: 34 01 00 00 mvi r1,0 8014304: 31 61 00 7c sb (r11+124),r1 8014308: 29 a1 00 00 lw r1,(r13+0) 801430c: 34 21 00 01 addi r1,r1,1 8014310: 59 a1 00 00 sw (r13+0),r1
/* * Block until there is something to do. */ _Thread_Disable_dispatch(); _Thread_Set_state( ts->thread, STATES_DELAYING );
8014314: 29 61 00 00 lw r1,(r11+0) 8014318: 34 02 00 08 mvi r2,8 801431c: f8 00 10 c3 calli 8018628 <_Thread_Set_state>
_Timer_server_Reset_interval_system_watchdog( ts );
8014320: b9 60 08 00 mv r1,r11 8014324: fb ff ff 4d calli 8014058 <_Timer_server_Reset_interval_system_watchdog>
_Timer_server_Reset_tod_system_watchdog( ts );
8014328: b9 60 08 00 mv r1,r11 801432c: fb ff ff 68 calli 80140cc <_Timer_server_Reset_tod_system_watchdog>
_Thread_Enable_dispatch();
8014330: f8 00 0d 9e calli 80179a8 <_Thread_Enable_dispatch>
ts->active = true;
8014334: 34 01 00 01 mvi r1,1 8014338: 31 61 00 7c sb (r11+124),r1
static void _Timer_server_Stop_interval_system_watchdog( Timer_server_Control *ts ) { _Watchdog_Remove( &ts->Interval_watchdogs.System_watchdog );
801433c: bb 60 08 00 mv r1,fp 8014340: f8 00 14 74 calli 8019510 <_Watchdog_Remove>
static void _Timer_server_Stop_tod_system_watchdog( Timer_server_Control *ts ) { _Watchdog_Remove( &ts->TOD_watchdogs.System_watchdog );
8014344: bb 20 08 00 mv r1,r25 8014348: f8 00 14 72 calli 8019510 <_Watchdog_Remove> 801434c: e3 ff ff a9 bi 80141f0 <_Timer_server_Body+0xb0>
08014350 <_Timer_server_Schedule_operation_method>: static void _Timer_server_Schedule_operation_method( Timer_server_Control *ts, Timer_Control *timer ) {
8014350: 37 9c ff f8 addi sp,sp,-8 8014354: 5b 8b 00 08 sw (sp+8),r11 8014358: 5b 9d 00 04 sw (sp+4),ra 801435c: b8 20 58 00 mv r11,r1
if ( ts->insert_chain == NULL ) {
8014360: 28 21 00 78 lw r1,(r1+120)
static void _Timer_server_Schedule_operation_method( Timer_server_Control *ts, Timer_Control *timer ) {
8014364: b8 40 20 00 mv r4,r2
if ( ts->insert_chain == NULL ) {
8014368: 5c 20 00 47 bne r1,r0,8014484 <_Timer_server_Schedule_operation_method+0x134><== NEVER TAKEN
801436c: 78 01 08 03 mvhi r1,0x803 8014370: 38 21 dc 2c ori r1,r1,0xdc2c 8014374: 28 22 00 00 lw r2,(r1+0) 8014378: 34 42 00 01 addi r2,r2,1 801437c: 58 22 00 00 sw (r1+0),r2
* being inserted. This could result in an integer overflow. */ _Thread_Disable_dispatch(); if ( timer->the_class == TIMER_INTERVAL_ON_TASK ) {
8014380: 28 81 00 38 lw r1,(r4+56) 8014384: 34 02 00 01 mvi r2,1
8014388: 5c 22 00 1d bne r1,r2,80143fc <_Timer_server_Schedule_operation_method+0xac> /* * We have to advance the last known ticks value of the server and update * the watchdog chain accordingly. */ _ISR_Disable( level );
801438c: 90 00 18 00 rcsr r3,IE 8014390: 34 01 ff fe mvi r1,-2 8014394: a0 61 08 00 and r1,r3,r1 8014398: d0 01 00 00 wcsr IE,r1
snapshot = _Watchdog_Ticks_since_boot;
801439c: 78 02 08 03 mvhi r2,0x803 80143a0: 38 42 dd 7c ori r2,r2,0xdd7c
*/ RTEMS_INLINE_ROUTINE bool _Chain_Is_empty( Chain_Control *the_chain ) { return (the_chain->first == _Chain_Tail(the_chain));
80143a4: 29 61 00 30 lw r1,(r11+48) 80143a8: 28 45 00 00 lw r5,(r2+0)
last_snapshot = ts->Interval_watchdogs.last_snapshot;
80143ac: 29 62 00 3c lw r2,(r11+60)
*/ RTEMS_INLINE_ROUTINE Chain_Node *_Chain_Tail( Chain_Control *the_chain ) { return (Chain_Node *) &the_chain->permanent_null;
80143b0: 35 66 00 34 addi r6,r11,52
80143b4: 44 26 00 08 be r1,r6,80143d4 <_Timer_server_Schedule_operation_method+0x84> /* * We assume adequate unsigned arithmetic here. */ delta = snapshot - last_snapshot; delta_interval = first_watchdog->delta_interval;
80143b8: 28 27 00 10 lw r7,(r1+16)
first_watchdog = _Watchdog_First( &ts->Interval_watchdogs.Chain ); /* * We assume adequate unsigned arithmetic here. */ delta = snapshot - last_snapshot;
80143bc: c8 a2 10 00 sub r2,r5,r2
delta_interval = first_watchdog->delta_interval; if (delta_interval > delta) {
80143c0: f4 e2 30 00 cmpgu r6,r7,r2
delta_interval -= delta;
80143c4: c8 e2 10 00 sub r2,r7,r2
* We assume adequate unsigned arithmetic here. */ delta = snapshot - last_snapshot; delta_interval = first_watchdog->delta_interval; if (delta_interval > delta) {
80143c8: c8 06 30 00 sub r6,r0,r6 80143cc: a0 46 10 00 and r2,r2,r6
delta_interval -= delta; } else { delta_interval = 0; } first_watchdog->delta_interval = delta_interval;
80143d0: 58 22 00 10 sw (r1+16),r2
} ts->Interval_watchdogs.last_snapshot = snapshot;
80143d4: 59 65 00 3c sw (r11+60),r5
_ISR_Enable( level );
80143d8: d0 03 00 00 wcsr IE,r3
_Watchdog_Insert( &ts->Interval_watchdogs.Chain, &timer->Ticker );
80143dc: 35 61 00 30 addi r1,r11,48 80143e0: 34 82 00 10 addi r2,r4,16 80143e4: f8 00 13 ec calli 8019394 <_Watchdog_Insert>
if ( !ts->active ) {
80143e8: 41 61 00 7c lbu r1,(r11+124)
80143ec: 5c 20 00 24 bne r1,r0,801447c <_Timer_server_Schedule_operation_method+0x12c> _Timer_server_Reset_interval_system_watchdog( ts );
80143f0: b9 60 08 00 mv r1,r11 80143f4: fb ff ff 19 calli 8014058 <_Timer_server_Reset_interval_system_watchdog> 80143f8: e0 00 00 21 bi 801447c <_Timer_server_Schedule_operation_method+0x12c>
} } else if ( timer->the_class == TIMER_TIME_OF_DAY_ON_TASK ) {
80143fc: 34 02 00 03 mvi r2,3
8014400: 5c 22 00 1f bne r1,r2,801447c <_Timer_server_Schedule_operation_method+0x12c> /* * We have to advance the last known seconds value of the server and update * the watchdog chain accordingly. */ _ISR_Disable( level );
8014404: 90 00 38 00 rcsr r7,IE 8014408: 34 01 ff fe mvi r1,-2 801440c: a0 e1 08 00 and r1,r7,r1 8014410: d0 01 00 00 wcsr IE,r1
*/ RTEMS_INLINE_ROUTINE bool _Chain_Is_empty( Chain_Control *the_chain ) { return (the_chain->first == _Chain_Tail(the_chain));
8014414: 29 62 00 68 lw r2,(r11+104)
snapshot = (Watchdog_Interval) _TOD_Seconds_since_epoch();
8014418: 78 01 08 03 mvhi r1,0x803
last_snapshot = ts->TOD_watchdogs.last_snapshot;
801441c: 29 66 00 74 lw r6,(r11+116)
/* * We have to advance the last known seconds value of the server and update * the watchdog chain accordingly. */ _ISR_Disable( level ); snapshot = (Watchdog_Interval) _TOD_Seconds_since_epoch();
8014420: 38 21 dc bc ori r1,r1,0xdcbc
*/ RTEMS_INLINE_ROUTINE Chain_Node *_Chain_Tail( Chain_Control *the_chain ) { return (Chain_Node *) &the_chain->permanent_null;
8014424: 35 63 00 6c addi r3,r11,108 8014428: 28 21 00 00 lw r1,(r1+0)
801442c: 44 43 00 0b be r2,r3,8014458 <_Timer_server_Schedule_operation_method+0x108> last_snapshot = ts->TOD_watchdogs.last_snapshot; if ( !_Chain_Is_empty( &ts->TOD_watchdogs.Chain ) ) { first_watchdog = _Watchdog_First( &ts->TOD_watchdogs.Chain ); delta_interval = first_watchdog->delta_interval;
8014430: 28 45 00 10 lw r5,(r2+16)
} } else { /* * Someone put us in the past. */ delta = last_snapshot - snapshot;
8014434: b4 a6 18 00 add r3,r5,r6
delta_interval += delta;
8014438: c8 61 18 00 sub r3,r3,r1
snapshot = (Watchdog_Interval) _TOD_Seconds_since_epoch(); last_snapshot = ts->TOD_watchdogs.last_snapshot; if ( !_Chain_Is_empty( &ts->TOD_watchdogs.Chain ) ) { first_watchdog = _Watchdog_First( &ts->TOD_watchdogs.Chain ); delta_interval = first_watchdog->delta_interval; if ( snapshot > last_snapshot ) { 801443c: 50 c1 00 06 bgeu r6,r1,8014454 <_Timer_server_Schedule_operation_method+0x104> /* * We advanced in time. */ delta = snapshot - last_snapshot;
8014440: c8 26 18 00 sub r3,r1,r6
if (delta_interval > delta) {
8014444: f4 a3 30 00 cmpgu r6,r5,r3
delta_interval -= delta;
8014448: c8 a3 18 00 sub r3,r5,r3
if ( snapshot > last_snapshot ) { /* * We advanced in time. */ delta = snapshot - last_snapshot; if (delta_interval > delta) {
801444c: c8 06 28 00 sub r5,r0,r6 8014450: a0 65 18 00 and r3,r3,r5
* Someone put us in the past. */ delta = last_snapshot - snapshot; delta_interval += delta; } first_watchdog->delta_interval = delta_interval;
8014454: 58 43 00 10 sw (r2+16),r3
} ts->TOD_watchdogs.last_snapshot = snapshot;
8014458: 59 61 00 74 sw (r11+116),r1
_ISR_Enable( level );
801445c: d0 07 00 00 wcsr IE,r7
_Watchdog_Insert( &ts->TOD_watchdogs.Chain, &timer->Ticker );
8014460: 35 61 00 68 addi r1,r11,104 8014464: 34 82 00 10 addi r2,r4,16 8014468: f8 00 13 cb calli 8019394 <_Watchdog_Insert>
if ( !ts->active ) {
801446c: 41 61 00 7c lbu r1,(r11+124)
8014470: 5c 20 00 03 bne r1,r0,801447c <_Timer_server_Schedule_operation_method+0x12c> _Timer_server_Reset_tod_system_watchdog( ts );
8014474: b9 60 08 00 mv r1,r11 8014478: fb ff ff 15 calli 80140cc <_Timer_server_Reset_tod_system_watchdog>
} } _Thread_Enable_dispatch();
801447c: f8 00 0d 4b calli 80179a8 <_Thread_Enable_dispatch> 8014480: e0 00 00 03 bi 801448c <_Timer_server_Schedule_operation_method+0x13c>
* server is not preemptible, so we must be in interrupt context here. No * thread dispatch will happen until the timer server finishes its * critical section. We have to use the protected chain methods because * we may be interrupted by a higher priority interrupt. */ _Chain_Append( ts->insert_chain, &timer->Object.Node );
8014484: 29 61 00 78 lw r1,(r11+120) <== NOT EXECUTED 8014488: f8 00 02 52 calli 8014dd0 <_Chain_Append> <== NOT EXECUTED
} }
801448c: 2b 9d 00 04 lw ra,(sp+4) 8014490: 2b 8b 00 08 lw r11,(sp+8) 8014494: 37 9c 00 08 addi sp,sp,8 8014498: c3 a0 00 00 ret
0803d0a0 <_Timespec_Greater_than>: bool _Timespec_Greater_than( const struct timespec *lhs, const struct timespec *rhs ) { if ( lhs->tv_sec > rhs->tv_sec )
803d0a0: 28 24 00 00 lw r4,(r1+0) 803d0a4: 28 43 00 00 lw r3,(r2+0)
803d0a8: 4c 64 00 03 bge r3,r4,803d0b4 <_Timespec_Greater_than+0x14>
803d0ac: 34 01 00 01 mvi r1,1 803d0b0: c3 a0 00 00 ret
return true; if ( lhs->tv_sec < rhs->tv_sec )
803d0b4: 4c 83 00 03 bge r4,r3,803d0c0 <_Timespec_Greater_than+0x20><== ALWAYS TAKEN
803d0b8: 34 01 00 00 mvi r1,0 <== NOT EXECUTED 803d0bc: c3 a0 00 00 ret <== NOT EXECUTED
#include <rtems/system.h> #include <rtems/score/timespec.h> #include <rtems/score/tod.h> bool _Timespec_Greater_than(
803d0c0: 28 23 00 04 lw r3,(r1+4) 803d0c4: 28 41 00 04 lw r1,(r2+4) 803d0c8: e8 61 08 00 cmpg r1,r3,r1
/* ASSERT: lhs->tv_sec == rhs->tv_sec */ if ( lhs->tv_nsec > rhs->tv_nsec ) return true; return false; }
803d0cc: c3 a0 00 00 ret
080078c4 <_Watchdog_Adjust>: void _Watchdog_Adjust( Chain_Control *header, Watchdog_Adjust_directions direction, Watchdog_Interval units ) {
80078c4: 37 9c ff e4 addi sp,sp,-28 80078c8: 5b 8b 00 1c sw (sp+28),r11 80078cc: 5b 8c 00 18 sw (sp+24),r12 80078d0: 5b 8d 00 14 sw (sp+20),r13 80078d4: 5b 8e 00 10 sw (sp+16),r14 80078d8: 5b 8f 00 0c sw (sp+12),r15 80078dc: 5b 90 00 08 sw (sp+8),r16 80078e0: 5b 9d 00 04 sw (sp+4),ra 80078e4: b8 20 60 00 mv r12,r1 80078e8: b8 40 20 00 mv r4,r2 80078ec: b8 60 58 00 mv r11,r3
ISR_Level level; _ISR_Disable( level );
80078f0: 90 00 10 00 rcsr r2,IE 80078f4: 34 01 ff fe mvi r1,-2 80078f8: a0 41 08 00 and r1,r2,r1 80078fc: d0 01 00 00 wcsr IE,r1
*/ RTEMS_INLINE_ROUTINE bool _Chain_Is_empty( Chain_Control *the_chain ) { return (the_chain->first == _Chain_Tail(the_chain));
8007900: 29 81 00 00 lw r1,(r12+0)
*/ RTEMS_INLINE_ROUTINE Chain_Node *_Chain_Tail( Chain_Control *the_chain ) { return (Chain_Node *) &the_chain->permanent_null;
8007904: 35 8e 00 04 addi r14,r12,4
* hence the compiler must not assume *header to remain * unmodified across that call. * * Till Straumann, 7/2003 */ if ( !_Chain_Is_empty( header ) ) { 8007908: 44 2e 00 1d be r1,r14,800797c <_Watchdog_Adjust+0xb8> switch ( direction ) { 800790c: 44 80 00 04 be r4,r0,800791c <_Watchdog_Adjust+0x58>
8007910: 34 03 00 01 mvi r3,1
8007914: 5c 83 00 1a bne r4,r3,800797c <_Watchdog_Adjust+0xb8> <== NEVER TAKEN
8007918: e0 00 00 04 bi 8007928 <_Watchdog_Adjust+0x64>
if ( units < _Watchdog_First( header )->delta_interval ) { _Watchdog_First( header )->delta_interval -= units; break; } else { units -= _Watchdog_First( header )->delta_interval; _Watchdog_First( header )->delta_interval = 1;
800791c: 34 10 00 01 mvi r16,1
_ISR_Enable( level ); _Watchdog_Tickle( header ); _ISR_Disable( level );
8007920: 34 0f ff fe mvi r15,-2 8007924: e0 00 00 15 bi 8007978 <_Watchdog_Adjust+0xb4>
* Till Straumann, 7/2003 */ if ( !_Chain_Is_empty( header ) ) { switch ( direction ) { case WATCHDOG_BACKWARD: _Watchdog_First( header )->delta_interval += units;
8007928: 28 23 00 10 lw r3,(r1+16) 800792c: b4 6b 58 00 add r11,r3,r11 8007930: e0 00 00 05 bi 8007944 <_Watchdog_Adjust+0x80>
RTEMS_INLINE_ROUTINE Watchdog_Control *_Watchdog_First( Chain_Control *header ) { return ( (Watchdog_Control *) header->first );
8007934: 29 81 00 00 lw r1,(r12+0)
break; case WATCHDOG_FORWARD: while ( units ) { if ( units < _Watchdog_First( header )->delta_interval ) {
8007938: 28 2d 00 10 lw r13,(r1+16)
800793c: 51 6d 00 04 bgeu r11,r13,800794c <_Watchdog_Adjust+0x88> _Watchdog_First( header )->delta_interval -= units;
8007940: c9 ab 58 00 sub r11,r13,r11 8007944: 58 2b 00 10 sw (r1+16),r11
break;
8007948: e0 00 00 0d bi 800797c <_Watchdog_Adjust+0xb8>
} else { units -= _Watchdog_First( header )->delta_interval; _Watchdog_First( header )->delta_interval = 1;
800794c: 58 30 00 10 sw (r1+16),r16
_ISR_Enable( level );
8007950: d0 02 00 00 wcsr IE,r2
_Watchdog_Tickle( header );
8007954: b9 80 08 00 mv r1,r12 8007958: f8 00 00 9e calli 8007bd0 <_Watchdog_Tickle>
_ISR_Disable( level );
800795c: 90 00 08 00 rcsr r1,IE 8007960: a0 2f 10 00 and r2,r1,r15 8007964: d0 02 00 00 wcsr IE,r2
if ( _Chain_Is_empty( header ) )
8007968: 29 83 00 00 lw r3,(r12+0)
while ( units ) { if ( units < _Watchdog_First( header )->delta_interval ) { _Watchdog_First( header )->delta_interval -= units; break; } else { units -= _Watchdog_First( header )->delta_interval;
800796c: c9 6d 58 00 sub r11,r11,r13 8007970: b8 20 10 00 mv r2,r1
_Watchdog_Tickle( header ); _ISR_Disable( level ); if ( _Chain_Is_empty( header ) ) 8007974: 44 6e 00 02 be r3,r14,800797c <_Watchdog_Adjust+0xb8> switch ( direction ) { case WATCHDOG_BACKWARD: _Watchdog_First( header )->delta_interval += units; break; case WATCHDOG_FORWARD: while ( units ) {
8007978: 5d 60 ff ef bne r11,r0,8007934 <_Watchdog_Adjust+0x70> <== ALWAYS TAKEN
} break; } } _ISR_Enable( level );
800797c: d0 02 00 00 wcsr IE,r2
}
8007980: 2b 9d 00 04 lw ra,(sp+4) 8007984: 2b 8b 00 1c lw r11,(sp+28) 8007988: 2b 8c 00 18 lw r12,(sp+24) 800798c: 2b 8d 00 14 lw r13,(sp+20) 8007990: 2b 8e 00 10 lw r14,(sp+16) 8007994: 2b 8f 00 0c lw r15,(sp+12) 8007998: 2b 90 00 08 lw r16,(sp+8) 800799c: 37 9c 00 1c addi sp,sp,28 80079a0: c3 a0 00 00 ret
0800574c <_Watchdog_Remove>: { ISR_Level level; Watchdog_States previous_state; Watchdog_Control *next_watchdog; _ISR_Disable( level );
800574c: 90 00 20 00 rcsr r4,IE 8005750: 34 02 ff fe mvi r2,-2 8005754: a0 82 10 00 and r2,r4,r2 8005758: d0 02 00 00 wcsr IE,r2
previous_state = the_watchdog->state;
800575c: 28 22 00 08 lw r2,(r1+8)
switch ( previous_state ) {
8005760: 34 03 00 01 mvi r3,1
8005764: 44 43 00 05 be r2,r3,8005778 <_Watchdog_Remove+0x2c> <== NEVER TAKEN
8005768: 44 40 00 1e be r2,r0,80057e0 <_Watchdog_Remove+0x94>
800576c: 34 03 00 03 mvi r3,3
8005770: 54 43 00 1c bgu r2,r3,80057e0 <_Watchdog_Remove+0x94> <== NEVER TAKEN
8005774: e0 00 00 04 bi 8005784 <_Watchdog_Remove+0x38>
/* * It is not actually on the chain so just change the state and * the Insert operation we interrupted will be aborted. */ the_watchdog->state = WATCHDOG_INACTIVE;
8005778: 34 03 00 00 mvi r3,0 800577c: 58 23 00 08 sw (r1+8),r3
break;
8005780: e0 00 00 18 bi 80057e0 <_Watchdog_Remove+0x94>
RTEMS_INLINE_ROUTINE Watchdog_Control *_Watchdog_Next( Watchdog_Control *the_watchdog ) { return ( (Watchdog_Control *) the_watchdog->Node.next );
8005784: 28 23 00 00 lw r3,(r1+0)
case WATCHDOG_ACTIVE: case WATCHDOG_REMOVE_IT: the_watchdog->state = WATCHDOG_INACTIVE;
8005788: 34 05 00 00 mvi r5,0 800578c: 58 25 00 08 sw (r1+8),r5
next_watchdog = _Watchdog_Next( the_watchdog ); if ( _Watchdog_Next(next_watchdog) )
8005790: 28 65 00 00 lw r5,(r3+0)
8005794: 44 a0 00 05 be r5,r0,80057a8 <_Watchdog_Remove+0x5c> next_watchdog->delta_interval += the_watchdog->delta_interval;
8005798: 28 66 00 10 lw r6,(r3+16) 800579c: 28 25 00 10 lw r5,(r1+16) 80057a0: b4 c5 28 00 add r5,r6,r5 80057a4: 58 65 00 10 sw (r3+16),r5
if ( _Watchdog_Sync_count )
80057a8: 78 03 08 01 mvhi r3,0x801 80057ac: 38 63 c9 70 ori r3,r3,0xc970 80057b0: 28 63 00 00 lw r3,(r3+0)
80057b4: 44 60 00 07 be r3,r0,80057d0 <_Watchdog_Remove+0x84> _Watchdog_Sync_level = _ISR_Nest_level;
80057b8: 78 03 08 01 mvhi r3,0x801 80057bc: 38 63 c8 bc ori r3,r3,0xc8bc 80057c0: 28 65 00 00 lw r5,(r3+0) 80057c4: 78 03 08 01 mvhi r3,0x801 80057c8: 38 63 c8 dc ori r3,r3,0xc8dc 80057cc: 58 65 00 00 sw (r3+0),r5
) { Chain_Node *next; Chain_Node *previous; next = the_node->next;
80057d0: 28 23 00 00 lw r3,(r1+0)
previous = the_node->previous;
80057d4: 28 25 00 04 lw r5,(r1+4)
next->previous = previous; previous->next = next;
80057d8: 58 a3 00 00 sw (r5+0),r3
Chain_Node *next; Chain_Node *previous; next = the_node->next; previous = the_node->previous; next->previous = previous;
80057dc: 58 65 00 04 sw (r3+4),r5
_Chain_Extract_unprotected( &the_watchdog->Node ); break; } the_watchdog->stop_time = _Watchdog_Ticks_since_boot;
80057e0: 78 03 08 01 mvhi r3,0x801 80057e4: 38 63 c9 74 ori r3,r3,0xc974 80057e8: 28 63 00 00 lw r3,(r3+0) 80057ec: 58 23 00 18 sw (r1+24),r3
_ISR_Enable( level );
80057f0: d0 04 00 00 wcsr IE,r4
return( previous_state ); }
80057f4: b8 40 08 00 mv r1,r2 80057f8: c3 a0 00 00 ret
080075b4 <_Watchdog_Report_chain>: void _Watchdog_Report_chain( const char *name, Chain_Control *header ) {
80075b4: 37 9c ff ec addi sp,sp,-20 80075b8: 5b 8b 00 14 sw (sp+20),r11 80075bc: 5b 8c 00 10 sw (sp+16),r12 80075c0: 5b 8d 00 0c sw (sp+12),r13 80075c4: 5b 8e 00 08 sw (sp+8),r14 80075c8: 5b 9d 00 04 sw (sp+4),ra 80075cc: b8 20 70 00 mv r14,r1 80075d0: b8 40 60 00 mv r12,r2
ISR_Level level; Chain_Node *node; _ISR_Disable( level );
80075d4: 90 00 68 00 rcsr r13,IE 80075d8: 34 01 ff fe mvi r1,-2 80075dc: a1 a1 08 00 and r1,r13,r1 80075e0: d0 01 00 00 wcsr IE,r1
printk( "Watchdog Chain: %s %p\n", name, header );
80075e4: 78 01 08 01 mvhi r1,0x801 80075e8: b9 80 18 00 mv r3,r12 80075ec: 38 21 f8 48 ori r1,r1,0xf848 80075f0: b9 c0 10 00 mv r2,r14 80075f4: fb ff ed 2a calli 8002a9c <printk>
*/ RTEMS_INLINE_ROUTINE bool _Chain_Is_empty( Chain_Control *the_chain ) { return (the_chain->first == _Chain_Tail(the_chain));
80075f8: 29 8b 00 00 lw r11,(r12+0)
*/ RTEMS_INLINE_ROUTINE Chain_Node *_Chain_Tail( Chain_Control *the_chain ) { return (Chain_Node *) &the_chain->permanent_null;
80075fc: 35 8c 00 04 addi r12,r12,4
if ( !_Chain_Is_empty( header ) ) { 8007600: 45 6c 00 0b be r11,r12,800762c <_Watchdog_Report_chain+0x78> node != _Chain_Tail(header) ; node = node->next ) { Watchdog_Control *watch = (Watchdog_Control *) node; _Watchdog_Report( NULL, watch );
8007604: b9 60 10 00 mv r2,r11 8007608: 34 01 00 00 mvi r1,0 800760c: f8 00 00 13 calli 8007658 <_Watchdog_Report>
_ISR_Disable( level ); printk( "Watchdog Chain: %s %p\n", name, header ); if ( !_Chain_Is_empty( header ) ) { for ( node = header->first ; node != _Chain_Tail(header) ; node = node->next )
8007610: 29 6b 00 00 lw r11,(r11+0)
Chain_Node *node; _ISR_Disable( level ); printk( "Watchdog Chain: %s %p\n", name, header ); if ( !_Chain_Is_empty( header ) ) { for ( node = header->first ;
8007614: 5d 6c ff fc bne r11,r12,8007604 <_Watchdog_Report_chain+0x50><== NEVER TAKEN
{ Watchdog_Control *watch = (Watchdog_Control *) node; _Watchdog_Report( NULL, watch ); } printk( "== end of %s \n", name );
8007618: 78 01 08 01 mvhi r1,0x801 800761c: 38 21 f8 60 ori r1,r1,0xf860 8007620: b9 c0 10 00 mv r2,r14 8007624: fb ff ed 1e calli 8002a9c <printk> 8007628: e0 00 00 04 bi 8007638 <_Watchdog_Report_chain+0x84>
} else { printk( "Chain is empty\n" );
800762c: 78 01 08 01 mvhi r1,0x801 8007630: 38 21 f8 70 ori r1,r1,0xf870 8007634: fb ff ed 1a calli 8002a9c <printk>
} _ISR_Enable( level );
8007638: d0 0d 00 00 wcsr IE,r13
}
800763c: 2b 9d 00 04 lw ra,(sp+4) 8007640: 2b 8b 00 14 lw r11,(sp+20) 8007644: 2b 8c 00 10 lw r12,(sp+16) 8007648: 2b 8d 00 0c lw r13,(sp+12) 800764c: 2b 8e 00 08 lw r14,(sp+8) 8007650: 37 9c 00 14 addi sp,sp,20 8007654: c3 a0 00 00 ret
080057fc <_Watchdog_Tickle>: */ void _Watchdog_Tickle( Chain_Control *header ) {
80057fc: 37 9c ff e4 addi sp,sp,-28 8005800: 5b 8b 00 1c sw (sp+28),r11 8005804: 5b 8c 00 18 sw (sp+24),r12 8005808: 5b 8d 00 14 sw (sp+20),r13 800580c: 5b 8e 00 10 sw (sp+16),r14 8005810: 5b 8f 00 0c sw (sp+12),r15 8005814: 5b 90 00 08 sw (sp+8),r16 8005818: 5b 9d 00 04 sw (sp+4),ra 800581c: b8 20 60 00 mv r12,r1
* See the comment in watchdoginsert.c and watchdogadjust.c * about why it's safe not to declare header a pointer to * volatile data - till, 2003/7 */ _ISR_Disable( level );
8005820: 90 00 08 00 rcsr r1,IE 8005824: 34 02 ff fe mvi r2,-2 8005828: a0 22 10 00 and r2,r1,r2 800582c: d0 02 00 00 wcsr IE,r2
*/ RTEMS_INLINE_ROUTINE bool _Chain_Is_empty( Chain_Control *the_chain ) { return (the_chain->first == _Chain_Tail(the_chain));
8005830: 29 8b 00 00 lw r11,(r12+0)
*/ RTEMS_INLINE_ROUTINE Chain_Node *_Chain_Tail( Chain_Control *the_chain ) { return (Chain_Node *) &the_chain->permanent_null;
8005834: 35 8e 00 04 addi r14,r12,4
if ( _Chain_Is_empty( header ) ) 8005838: 45 6e 00 1a be r11,r14,80058a0 <_Watchdog_Tickle+0xa4> * to be inserted has already had its delta_interval adjusted to 0, and * so is added to the head of the chain with a delta_interval of 0. * * Steven Johnson - 12/2005 (gcc-3.2.3 -O3 on powerpc) */ if (the_watchdog->delta_interval != 0) {
800583c: 29 62 00 10 lw r2,(r11+16)
8005840: 44 40 00 04 be r2,r0,8005850 <_Watchdog_Tickle+0x54> the_watchdog->delta_interval--;
8005844: 34 42 ff ff addi r2,r2,-1 8005848: 59 62 00 10 sw (r11+16),r2
if ( the_watchdog->delta_interval != 0 ) 800584c: 5c 40 00 15 bne r2,r0,80058a0 <_Watchdog_Tickle+0xa4>
8005850: b8 20 68 00 mv r13,r1
do { watchdog_state = _Watchdog_Remove( the_watchdog ); _ISR_Enable( level ); switch( watchdog_state ) {
8005854: 34 10 00 02 mvi r16,2
case WATCHDOG_REMOVE_IT: break; } _ISR_Disable( level );
8005858: 34 0f ff fe mvi r15,-2
if ( the_watchdog->delta_interval != 0 ) goto leave; } do { watchdog_state = _Watchdog_Remove( the_watchdog );
800585c: b9 60 08 00 mv r1,r11 8005860: fb ff ff bb calli 800574c <_Watchdog_Remove>
_ISR_Enable( level );
8005864: d0 0d 00 00 wcsr IE,r13
switch( watchdog_state ) {
8005868: 5c 30 00 05 bne r1,r16,800587c <_Watchdog_Tickle+0x80> <== NEVER TAKEN
case WATCHDOG_ACTIVE: (*the_watchdog->routine)(
800586c: 29 62 00 24 lw r2,(r11+36) 8005870: 29 63 00 1c lw r3,(r11+28) 8005874: 29 61 00 20 lw r1,(r11+32) 8005878: d8 60 00 00 call r3
case WATCHDOG_REMOVE_IT: break; } _ISR_Disable( level );
800587c: 90 00 08 00 rcsr r1,IE 8005880: a0 2f 10 00 and r2,r1,r15 8005884: d0 02 00 00 wcsr IE,r2
RTEMS_INLINE_ROUTINE Watchdog_Control *_Watchdog_First( Chain_Control *header ) { return ( (Watchdog_Control *) header->first );
8005888: 29 82 00 00 lw r2,(r12+0) 800588c: b8 20 68 00 mv r13,r1 8005890: b8 40 58 00 mv r11,r2
the_watchdog = _Watchdog_First( header ); } while ( !_Chain_Is_empty( header ) && (the_watchdog->delta_interval == 0) ); 8005894: 44 4e 00 03 be r2,r14,80058a0 <_Watchdog_Tickle+0xa4>
8005898: 28 42 00 10 lw r2,(r2+16)
800589c: 44 40 ff f0 be r2,r0,800585c <_Watchdog_Tickle+0x60> leave: _ISR_Enable(level);
80058a0: d0 01 00 00 wcsr IE,r1
}
80058a4: 2b 9d 00 04 lw ra,(sp+4) 80058a8: 2b 8b 00 1c lw r11,(sp+28) 80058ac: 2b 8c 00 18 lw r12,(sp+24) 80058b0: 2b 8d 00 14 lw r13,(sp+20) 80058b4: 2b 8e 00 10 lw r14,(sp+16) 80058b8: 2b 8f 00 0c lw r15,(sp+12) 80058bc: 2b 90 00 08 lw r16,(sp+8) 80058c0: 37 9c 00 1c addi sp,sp,28 80058c4: c3 a0 00 00 ret
080058c8 <_Workspace_Allocate_or_fatal_error>: * _Workspace_Allocate_or_fatal_error */ void *_Workspace_Allocate_or_fatal_error( size_t size ) {
80058c8: 37 9c ff fc addi sp,sp,-4 80058cc: 5b 9d 00 04 sw (sp+4),ra
* @brief See _Heap_Allocate_aligned_with_boundary() with alignment and * boundary equals zero. */ RTEMS_INLINE_ROUTINE void *_Heap_Allocate( Heap_Control *heap, uintptr_t size ) { return _Heap_Allocate_aligned_with_boundary( heap, size, 0, 0 );
80058d0: 34 03 00 00 mvi r3,0 80058d4: b8 20 10 00 mv r2,r1 80058d8: 78 01 08 01 mvhi r1,0x801 80058dc: 38 21 c8 48 ori r1,r1,0xc848 80058e0: b8 60 20 00 mv r4,r3 80058e4: f8 00 0a cb calli 8008410 <_Heap_Allocate_aligned_with_boundary>
__builtin_return_address( 1 ), memory ); #endif if ( memory == NULL )
80058e8: 5c 20 00 04 bne r1,r0,80058f8 <_Workspace_Allocate_or_fatal_error+0x30><== ALWAYS TAKEN
_Internal_error_Occurred(
80058ec: 34 02 00 01 mvi r2,1 <== NOT EXECUTED 80058f0: 34 03 00 04 mvi r3,4 <== NOT EXECUTED 80058f4: fb ff f6 aa calli 800339c <_Internal_error_Occurred> <== NOT EXECUTED
true, INTERNAL_ERROR_WORKSPACE_ALLOCATION ); return memory; }
80058f8: 2b 9d 00 04 lw ra,(sp+4) 80058fc: 37 9c 00 04 addi sp,sp,4 8005900: c3 a0 00 00 ret
08024f24 <__kill>: #endif int __kill( pid_t pid, int sig ) { return 0; }
8024f24: 34 01 00 00 mvi r1,0 <== NOT EXECUTED 8024f28: c3 a0 00 00 ret <== NOT EXECUTED
08019618 <_exit>: /* * If the toolset uses init/fini sections, then we need to * run the global destructors now. */ #if defined(__USE_INIT_FINI__) FINI_SYMBOL();
8019618: 37 9c ff f8 addi sp,sp,-8 801961c: 5b 9d 00 04 sw (sp+4),ra 8019620: 5b 81 00 08 sw (sp+8),r1 8019624: f8 00 02 7b calli 801a010 <__start_set_sysctl_set>
* We need to do the exit processing on the global reentrancy structure. * This has already been done on the per task reentrancy structure * associated with this task. */ libc_wrapup();
8019628: fb ff ff d9 calli 801958c <libc_wrapup>
rtems_shutdown_executive(status);
801962c: 2b 81 00 08 lw r1,(sp+8) 8019630: f8 00 00 61 calli 80197b4 <rtems_shutdown_executive>
8019634: e0 00 00 00 bi 8019634 <_exit+0x1c> <== NOT EXECUTED
0803bf48 <_fcntl_r>: struct _reent *ptr __attribute__((unused)), int fd, int cmd, int arg ) {
803bf48: 37 9c ff fc addi sp,sp,-4 <== NOT EXECUTED 803bf4c: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
return fcntl( fd, cmd, arg );
803bf50: b8 40 08 00 mv r1,r2 <== NOT EXECUTED 803bf54: b8 60 10 00 mv r2,r3 <== NOT EXECUTED 803bf58: b8 80 18 00 mv r3,r4 <== NOT EXECUTED 803bf5c: fb ff ff 69 calli 803bd00 <fcntl> <== NOT EXECUTED
}
803bf60: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 803bf64: 37 9c 00 04 addi sp,sp,4 <== NOT EXECUTED 803bf68: c3 a0 00 00 ret <== NOT EXECUTED
08024ef0 <_getpid_r>: pid_t _getpid_r( struct _reent *ptr __attribute__((unused)) ) { return getpid(); }
8024ef0: 34 01 00 01 mvi r1,1 <== NOT EXECUTED 8024ef4: c3 a0 00 00 ret <== NOT EXECUTED
08007290 <_gettimeofday>: int _gettimeofday( struct timeval *tp, struct timezone *tzp ) {
8007290: 37 9c ff fc addi sp,sp,-4 <== NOT EXECUTED 8007294: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
return gettimeofday( tp, tzp );
8007298: fb ff ff e0 calli 8007218 <gettimeofday> <== NOT EXECUTED
}
800729c: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 80072a0: 37 9c 00 04 addi sp,sp,4 <== NOT EXECUTED 80072a4: c3 a0 00 00 ret <== NOT EXECUTED
08024f1c <_kill_r>: #include <reent.h> int _kill_r( struct _reent *ptr, pid_t pid, int sig ) { return 0; }
8024f1c: 34 01 00 00 mvi r1,0 <== NOT EXECUTED 8024f20: c3 a0 00 00 ret <== NOT EXECUTED
08027ad0 <_link_r>: int _link_r( struct _reent *ptr __attribute__((unused)), const char *existing, const char *new ) {
8027ad0: 37 9c ff fc addi sp,sp,-4 <== NOT EXECUTED 8027ad4: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
return link( existing, new );
8027ad8: b8 40 08 00 mv r1,r2 <== NOT EXECUTED 8027adc: b8 60 10 00 mv r2,r3 <== NOT EXECUTED 8027ae0: fb ff ff 7e calli 80278d8 <link> <== NOT EXECUTED
}
8027ae4: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8027ae8: 37 9c 00 04 addi sp,sp,4 <== NOT EXECUTED 8027aec: c3 a0 00 00 ret <== NOT EXECUTED
08027d8c <_lstat_r>: int _STAT_R_NAME( struct _reent *ptr __attribute__((unused)), const char *path, struct stat *buf ) {
8027d8c: 37 9c ff fc addi sp,sp,-4 <== NOT EXECUTED 8027d90: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
return _STAT_NAME( path, buf );
8027d94: b8 40 08 00 mv r1,r2 <== NOT EXECUTED 8027d98: b8 60 10 00 mv r2,r3 <== NOT EXECUTED 8027d9c: fb ff ff c2 calli 8027ca4 <lstat> <== NOT EXECUTED
}
8027da0: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8027da4: 37 9c 00 04 addi sp,sp,4 <== NOT EXECUTED 8027da8: c3 a0 00 00 ret <== NOT EXECUTED
08019770 <_realloc_r>: void *_realloc_r( struct _reent *ignored __attribute__((unused)), void *ptr, size_t size ) {
8019770: 37 9c ff fc addi sp,sp,-4 <== NOT EXECUTED 8019774: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
return realloc( ptr, size );
8019778: b8 40 08 00 mv r1,r2 <== NOT EXECUTED 801977c: b8 60 10 00 mv r2,r3 <== NOT EXECUTED 8019780: f8 00 00 1b calli 80197ec <realloc> <== NOT EXECUTED
}
8019784: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8019788: 37 9c 00 04 addi sp,sp,4 <== NOT EXECUTED 801978c: c3 a0 00 00 ret <== NOT EXECUTED
0805f1a8 <_rename_r>: int _rename_r( struct _reent *ptr __attribute__((unused)), const char *old, const char *new ) {
805f1a8: 37 9c ff a4 addi sp,sp,-92 <== NOT EXECUTED 805f1ac: 5b 8b 00 1c sw (sp+28),r11 <== NOT EXECUTED 805f1b0: 5b 8c 00 18 sw (sp+24),r12 <== NOT EXECUTED 805f1b4: 5b 8d 00 14 sw (sp+20),r13 <== NOT EXECUTED 805f1b8: 5b 8e 00 10 sw (sp+16),r14 <== NOT EXECUTED 805f1bc: 5b 8f 00 0c sw (sp+12),r15 <== NOT EXECUTED 805f1c0: 5b 90 00 08 sw (sp+8),r16 <== NOT EXECUTED 805f1c4: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
/* * Get the parent node of the old path to be renamed. Find the parent path. */ old_parent_pathlen = rtems_filesystem_dirname ( old );
805f1c8: b8 40 08 00 mv r1,r2 <== NOT EXECUTED
int _rename_r( struct _reent *ptr __attribute__((unused)), const char *old, const char *new ) {
805f1cc: b8 40 70 00 mv r14,r2 <== NOT EXECUTED 805f1d0: b8 60 78 00 mv r15,r3 <== NOT EXECUTED
/* * Get the parent node of the old path to be renamed. Find the parent path. */ old_parent_pathlen = rtems_filesystem_dirname ( old );
805f1d4: fb fe 9b c2 calli 80060dc <rtems_filesystem_dirname> <== NOT EXECUTED 805f1d8: b8 20 68 00 mv r13,r1 <== NOT EXECUTED
if ( old_parent_pathlen == 0 )
805f1dc: 5c 20 00 19 bne r1,r0,805f240 <_rename_r+0x98> <== NOT EXECUTED
rtems_filesystem_get_start_loc( old, &i, &old_parent_loc );
805f1e0: 41 c2 00 00 lbu r2,(r14+0) <== NOT EXECUTED 805f1e4: 64 43 00 5c cmpei r3,r2,92 <== NOT EXECUTED 805f1e8: 64 41 00 2f cmpei r1,r2,47 <== NOT EXECUTED 805f1ec: b8 61 08 00 or r1,r3,r1 <== NOT EXECUTED 805f1f0: 5c 2d 00 02 bne r1,r13,805f1f8 <_rename_r+0x50> <== NOT EXECUTED 805f1f4: 5c 40 00 0a bne r2,r0,805f21c <_rename_r+0x74> <== NOT EXECUTED 805f1f8: 78 02 08 06 mvhi r2,0x806 <== NOT EXECUTED 805f1fc: 38 42 b2 f0 ori r2,r2,0xb2f0 <== NOT EXECUTED 805f200: 28 42 00 00 lw r2,(r2+0) <== NOT EXECUTED 805f204: 37 81 00 34 addi r1,sp,52 <== NOT EXECUTED 805f208: 34 03 00 14 mvi r3,20 <== NOT EXECUTED 805f20c: 34 42 00 18 addi r2,r2,24 <== NOT EXECUTED 805f210: fb ff 9c 63 calli 804639c <memcpy> <== NOT EXECUTED 805f214: 34 0b 00 00 mvi r11,0 <== NOT EXECUTED 805f218: e0 00 00 13 bi 805f264 <_rename_r+0xbc> <== NOT EXECUTED 805f21c: 78 02 08 06 mvhi r2,0x806 <== NOT EXECUTED 805f220: 38 42 b2 f0 ori r2,r2,0xb2f0 <== NOT EXECUTED 805f224: 28 42 00 00 lw r2,(r2+0) <== NOT EXECUTED 805f228: 37 81 00 34 addi r1,sp,52 <== NOT EXECUTED 805f22c: 34 03 00 14 mvi r3,20 <== NOT EXECUTED 805f230: 34 42 00 04 addi r2,r2,4 <== NOT EXECUTED 805f234: fb ff 9c 5a calli 804639c <memcpy> <== NOT EXECUTED 805f238: b9 a0 58 00 mv r11,r13 <== NOT EXECUTED 805f23c: e0 00 00 0a bi 805f264 <_rename_r+0xbc> <== NOT EXECUTED
else { result = rtems_filesystem_evaluate_path( old, old_parent_pathlen,
805f240: b9 c0 08 00 mv r1,r14 <== NOT EXECUTED 805f244: b9 a0 10 00 mv r2,r13 <== NOT EXECUTED 805f248: 34 03 00 02 mvi r3,2 <== NOT EXECUTED 805f24c: 37 84 00 34 addi r4,sp,52 <== NOT EXECUTED 805f250: 34 05 00 00 mvi r5,0 <== NOT EXECUTED 805f254: fb fe 9b f0 calli 8006214 <rtems_filesystem_evaluate_path> <== NOT EXECUTED
RTEMS_LIBIO_PERMS_WRITE, &old_parent_loc, false ); if ( result != 0 )
805f258: 34 0b 00 01 mvi r11,1 <== NOT EXECUTED 805f25c: 34 0c ff ff mvi r12,-1 <== NOT EXECUTED 805f260: 5c 20 00 a6 bne r1,r0,805f4f8 <_rename_r+0x350> <== NOT EXECUTED
/* * Start from the parent to find the node that should be under it. */ old_loc = old_parent_loc;
805f264: 37 90 00 48 addi r16,sp,72 <== NOT EXECUTED 805f268: 37 8c 00 34 addi r12,sp,52 <== NOT EXECUTED 805f26c: 34 03 00 14 mvi r3,20 <== NOT EXECUTED 805f270: b9 80 10 00 mv r2,r12 <== NOT EXECUTED 805f274: ba 00 08 00 mv r1,r16 <== NOT EXECUTED 805f278: fb ff 9c 49 calli 804639c <memcpy> <== NOT EXECUTED
name = old + old_parent_pathlen;
805f27c: b5 cd 68 00 add r13,r14,r13 <== NOT EXECUTED
name += rtems_filesystem_prefix_separators( name, strlen( name ) );
805f280: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED
/* * Start from the parent to find the node that should be under it. */ old_loc = old_parent_loc; name = old + old_parent_pathlen;
805f284: 5b 8d 00 5c sw (sp+92),r13 <== NOT EXECUTED
name += rtems_filesystem_prefix_separators( name, strlen( name ) );
805f288: fb ff ab 8d calli 804a0bc <strlen> <== NOT EXECUTED 805f28c: b8 20 10 00 mv r2,r1 <== NOT EXECUTED 805f290: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 805f294: fb fe 9b 83 calli 80060a0 <rtems_filesystem_prefix_separators><== NOT EXECUTED 805f298: b5 a1 68 00 add r13,r13,r1 <== NOT EXECUTED
result = rtems_filesystem_evaluate_relative_path( name , strlen( name ),
805f29c: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED
* Start from the parent to find the node that should be under it. */ old_loc = old_parent_loc; name = old + old_parent_pathlen; name += rtems_filesystem_prefix_separators( name, strlen( name ) );
805f2a0: 5b 8d 00 5c sw (sp+92),r13 <== NOT EXECUTED
result = rtems_filesystem_evaluate_relative_path( name , strlen( name ),
805f2a4: fb ff ab 86 calli 804a0bc <strlen> <== NOT EXECUTED 805f2a8: 34 03 00 00 mvi r3,0 <== NOT EXECUTED 805f2ac: b8 20 10 00 mv r2,r1 <== NOT EXECUTED 805f2b0: ba 00 20 00 mv r4,r16 <== NOT EXECUTED 805f2b4: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 805f2b8: b8 60 28 00 mv r5,r3 <== NOT EXECUTED 805f2bc: fb fe 9b 9c calli 800612c <rtems_filesystem_evaluate_relative_path><== NOT EXECUTED 805f2c0: b8 20 68 00 mv r13,r1 <== NOT EXECUTED
0, &old_loc, false ); if ( result != 0 ) {
805f2c4: 44 20 00 0b be r1,r0,805f2f0 <_rename_r+0x148> <== NOT EXECUTED
if ( free_old_parentloc )
805f2c8: 45 60 00 07 be r11,r0,805f2e4 <_rename_r+0x13c> <== NOT EXECUTED
rtems_filesystem_freenode( &old_parent_loc );
805f2cc: 2b 81 00 40 lw r1,(sp+64) <== NOT EXECUTED 805f2d0: 44 20 00 05 be r1,r0,805f2e4 <_rename_r+0x13c> <== NOT EXECUTED 805f2d4: 28 23 00 1c lw r3,(r1+28) <== NOT EXECUTED 805f2d8: 44 60 00 03 be r3,r0,805f2e4 <_rename_r+0x13c> <== NOT EXECUTED 805f2dc: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 805f2e0: d8 60 00 00 call r3 <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( result );
805f2e4: fb ff 8d 8c calli 8042914 <__errno> <== NOT EXECUTED 805f2e8: 58 2d 00 00 sw (r1+0),r13 <== NOT EXECUTED 805f2ec: e0 00 00 2a bi 805f394 <_rename_r+0x1ec> <== NOT EXECUTED
/* * Get the parent of the new node we are renaming to. */ rtems_filesystem_get_start_loc( new, &i, &new_parent_loc );
805f2f0: 41 e2 00 00 lbu r2,(r15+0) <== NOT EXECUTED 805f2f4: 64 4c 00 5c cmpei r12,r2,92 <== NOT EXECUTED 805f2f8: 64 41 00 2f cmpei r1,r2,47 <== NOT EXECUTED 805f2fc: b9 81 60 00 or r12,r12,r1 <== NOT EXECUTED 805f300: 5d 8d 00 02 bne r12,r13,805f308 <_rename_r+0x160> <== NOT EXECUTED 805f304: 5c 4c 00 0a bne r2,r12,805f32c <_rename_r+0x184> <== NOT EXECUTED 805f308: 78 02 08 06 mvhi r2,0x806 <== NOT EXECUTED 805f30c: 38 42 b2 f0 ori r2,r2,0xb2f0 <== NOT EXECUTED 805f310: 28 42 00 00 lw r2,(r2+0) <== NOT EXECUTED 805f314: 37 81 00 20 addi r1,sp,32 <== NOT EXECUTED 805f318: 34 03 00 14 mvi r3,20 <== NOT EXECUTED 805f31c: 34 42 00 18 addi r2,r2,24 <== NOT EXECUTED 805f320: fb ff 9c 1f calli 804639c <memcpy> <== NOT EXECUTED 805f324: 34 0c 00 01 mvi r12,1 <== NOT EXECUTED 805f328: e0 00 00 08 bi 805f348 <_rename_r+0x1a0> <== NOT EXECUTED 805f32c: 78 02 08 06 mvhi r2,0x806 <== NOT EXECUTED 805f330: 38 42 b2 f0 ori r2,r2,0xb2f0 <== NOT EXECUTED 805f334: 28 42 00 00 lw r2,(r2+0) <== NOT EXECUTED 805f338: 37 81 00 20 addi r1,sp,32 <== NOT EXECUTED 805f33c: 34 03 00 14 mvi r3,20 <== NOT EXECUTED 805f340: 34 42 00 04 addi r2,r2,4 <== NOT EXECUTED 805f344: fb ff 9c 16 calli 804639c <memcpy> <== NOT EXECUTED
if ( !new_parent_loc.ops->evalformake_h ) {
805f348: 2b 81 00 2c lw r1,(sp+44) <== NOT EXECUTED 805f34c: 28 24 00 04 lw r4,(r1+4) <== NOT EXECUTED 805f350: 5c 80 00 13 bne r4,r0,805f39c <_rename_r+0x1f4> <== NOT EXECUTED
if ( free_old_parentloc )
805f354: 45 64 00 07 be r11,r4,805f370 <_rename_r+0x1c8> <== NOT EXECUTED
rtems_filesystem_freenode( &old_parent_loc );
805f358: 2b 81 00 40 lw r1,(sp+64) <== NOT EXECUTED 805f35c: 44 20 00 05 be r1,r0,805f370 <_rename_r+0x1c8> <== NOT EXECUTED 805f360: 28 22 00 1c lw r2,(r1+28) <== NOT EXECUTED 805f364: 44 40 00 03 be r2,r0,805f370 <_rename_r+0x1c8> <== NOT EXECUTED 805f368: 37 81 00 34 addi r1,sp,52 <== NOT EXECUTED 805f36c: d8 40 00 00 call r2 <== NOT EXECUTED
rtems_filesystem_freenode( &old_loc );
805f370: 2b 81 00 54 lw r1,(sp+84) <== NOT EXECUTED 805f374: 44 20 00 05 be r1,r0,805f388 <_rename_r+0x1e0> <== NOT EXECUTED 805f378: 28 22 00 1c lw r2,(r1+28) <== NOT EXECUTED 805f37c: 44 40 00 03 be r2,r0,805f388 <_rename_r+0x1e0> <== NOT EXECUTED 805f380: 37 81 00 48 addi r1,sp,72 <== NOT EXECUTED 805f384: d8 40 00 00 call r2 <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( ENOTSUP );
805f388: fb ff 8d 63 calli 8042914 <__errno> <== NOT EXECUTED 805f38c: 34 02 00 86 mvi r2,134 <== NOT EXECUTED 805f390: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 805f394: 34 0c ff ff mvi r12,-1 <== NOT EXECUTED 805f398: e0 00 00 58 bi 805f4f8 <_rename_r+0x350> <== NOT EXECUTED
} result = (*new_parent_loc.ops->evalformake_h)( &new[i], &new_parent_loc, &name );
805f39c: 37 8d 00 20 addi r13,sp,32 <== NOT EXECUTED 805f3a0: b5 ec 08 00 add r1,r15,r12 <== NOT EXECUTED 805f3a4: b9 a0 10 00 mv r2,r13 <== NOT EXECUTED 805f3a8: 37 83 00 5c addi r3,sp,92 <== NOT EXECUTED 805f3ac: d8 80 00 00 call r4 <== NOT EXECUTED 805f3b0: b8 20 60 00 mv r12,r1 <== NOT EXECUTED
if ( result != 0 ) {
805f3b4: 44 20 00 17 be r1,r0,805f410 <_rename_r+0x268> <== NOT EXECUTED
rtems_filesystem_freenode( &new_parent_loc );
805f3b8: 2b 81 00 2c lw r1,(sp+44) <== NOT EXECUTED 805f3bc: 44 20 00 05 be r1,r0,805f3d0 <_rename_r+0x228> <== NOT EXECUTED 805f3c0: 28 22 00 1c lw r2,(r1+28) <== NOT EXECUTED 805f3c4: 44 40 00 03 be r2,r0,805f3d0 <_rename_r+0x228> <== NOT EXECUTED 805f3c8: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 805f3cc: d8 40 00 00 call r2 <== NOT EXECUTED
if ( free_old_parentloc )
805f3d0: 45 60 00 07 be r11,r0,805f3ec <_rename_r+0x244> <== NOT EXECUTED
rtems_filesystem_freenode( &old_parent_loc );
805f3d4: 2b 81 00 40 lw r1,(sp+64) <== NOT EXECUTED 805f3d8: 44 20 00 05 be r1,r0,805f3ec <_rename_r+0x244> <== NOT EXECUTED 805f3dc: 28 22 00 1c lw r2,(r1+28) <== NOT EXECUTED 805f3e0: 44 40 00 03 be r2,r0,805f3ec <_rename_r+0x244> <== NOT EXECUTED 805f3e4: 37 81 00 34 addi r1,sp,52 <== NOT EXECUTED 805f3e8: d8 40 00 00 call r2 <== NOT EXECUTED
rtems_filesystem_freenode( &old_loc );
805f3ec: 2b 81 00 54 lw r1,(sp+84) <== NOT EXECUTED 805f3f0: 44 20 00 05 be r1,r0,805f404 <_rename_r+0x25c> <== NOT EXECUTED 805f3f4: 28 22 00 1c lw r2,(r1+28) <== NOT EXECUTED 805f3f8: 44 40 00 03 be r2,r0,805f404 <_rename_r+0x25c> <== NOT EXECUTED 805f3fc: 37 81 00 48 addi r1,sp,72 <== NOT EXECUTED 805f400: d8 40 00 00 call r2 <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( result );
805f404: fb ff 8d 44 calli 8042914 <__errno> <== NOT EXECUTED 805f408: 58 2c 00 00 sw (r1+0),r12 <== NOT EXECUTED 805f40c: e3 ff ff e2 bi 805f394 <_rename_r+0x1ec> <== NOT EXECUTED
/* * Check to see if the caller is trying to rename across file system * boundaries. */ if ( old_parent_loc.mt_entry != new_parent_loc.mt_entry ) {
805f410: 2b 81 00 30 lw r1,(sp+48) <== NOT EXECUTED 805f414: 2b 83 00 44 lw r3,(sp+68) <== NOT EXECUTED 805f418: 2b 82 00 2c lw r2,(sp+44) <== NOT EXECUTED 805f41c: 44 61 00 16 be r3,r1,805f474 <_rename_r+0x2cc> <== NOT EXECUTED
rtems_filesystem_freenode( &new_parent_loc );
805f420: 44 40 00 05 be r2,r0,805f434 <_rename_r+0x28c> <== NOT EXECUTED 805f424: 28 42 00 1c lw r2,(r2+28) <== NOT EXECUTED 805f428: 44 40 00 03 be r2,r0,805f434 <_rename_r+0x28c> <== NOT EXECUTED 805f42c: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 805f430: d8 40 00 00 call r2 <== NOT EXECUTED
if ( free_old_parentloc )
805f434: 45 60 00 07 be r11,r0,805f450 <_rename_r+0x2a8> <== NOT EXECUTED
rtems_filesystem_freenode( &old_parent_loc );
805f438: 2b 81 00 40 lw r1,(sp+64) <== NOT EXECUTED 805f43c: 44 20 00 05 be r1,r0,805f450 <_rename_r+0x2a8> <== NOT EXECUTED 805f440: 28 22 00 1c lw r2,(r1+28) <== NOT EXECUTED 805f444: 44 40 00 03 be r2,r0,805f450 <_rename_r+0x2a8> <== NOT EXECUTED 805f448: 37 81 00 34 addi r1,sp,52 <== NOT EXECUTED 805f44c: d8 40 00 00 call r2 <== NOT EXECUTED
rtems_filesystem_freenode( &old_loc );
805f450: 2b 81 00 54 lw r1,(sp+84) <== NOT EXECUTED 805f454: 44 20 00 05 be r1,r0,805f468 <_rename_r+0x2c0> <== NOT EXECUTED 805f458: 28 22 00 1c lw r2,(r1+28) <== NOT EXECUTED 805f45c: 44 40 00 03 be r2,r0,805f468 <_rename_r+0x2c0> <== NOT EXECUTED 805f460: 37 81 00 48 addi r1,sp,72 <== NOT EXECUTED 805f464: d8 40 00 00 call r2 <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( EXDEV );
805f468: fb ff 8d 2b calli 8042914 <__errno> <== NOT EXECUTED 805f46c: 34 02 00 12 mvi r2,18 <== NOT EXECUTED 805f470: e3 ff ff c8 bi 805f390 <_rename_r+0x1e8> <== NOT EXECUTED
} if ( !new_parent_loc.ops->rename_h ) {
805f474: 28 45 00 40 lw r5,(r2+64) <== NOT EXECUTED 805f478: 5c a0 00 07 bne r5,r0,805f494 <_rename_r+0x2ec> <== NOT EXECUTED
rtems_filesystem_freenode( &new_parent_loc );
805f47c: 28 42 00 1c lw r2,(r2+28) <== NOT EXECUTED 805f480: 44 45 00 03 be r2,r5,805f48c <_rename_r+0x2e4> <== NOT EXECUTED 805f484: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 805f488: d8 40 00 00 call r2 <== NOT EXECUTED
if ( free_old_parentloc )
805f48c: 45 60 ff b9 be r11,r0,805f370 <_rename_r+0x1c8> <== NOT EXECUTED 805f490: e3 ff ff b2 bi 805f358 <_rename_r+0x1b0> <== NOT EXECUTED
rtems_filesystem_freenode( &old_parent_loc ); rtems_filesystem_freenode( &old_loc ); rtems_set_errno_and_return_minus_one( ENOTSUP ); } result = (*new_parent_loc.ops->rename_h)( &old_parent_loc, &old_loc, &new_parent_loc, name );
805f494: 2b 84 00 5c lw r4,(sp+92) <== NOT EXECUTED 805f498: 37 81 00 34 addi r1,sp,52 <== NOT EXECUTED 805f49c: 37 82 00 48 addi r2,sp,72 <== NOT EXECUTED 805f4a0: b9 a0 18 00 mv r3,r13 <== NOT EXECUTED 805f4a4: d8 a0 00 00 call r5 <== NOT EXECUTED 805f4a8: b8 20 60 00 mv r12,r1 <== NOT EXECUTED
rtems_filesystem_freenode( &new_parent_loc );
805f4ac: 2b 81 00 2c lw r1,(sp+44) <== NOT EXECUTED 805f4b0: 44 20 00 05 be r1,r0,805f4c4 <_rename_r+0x31c> <== NOT EXECUTED 805f4b4: 28 22 00 1c lw r2,(r1+28) <== NOT EXECUTED 805f4b8: 44 40 00 03 be r2,r0,805f4c4 <_rename_r+0x31c> <== NOT EXECUTED 805f4bc: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 805f4c0: d8 40 00 00 call r2 <== NOT EXECUTED
if ( free_old_parentloc )
805f4c4: 45 60 00 07 be r11,r0,805f4e0 <_rename_r+0x338> <== NOT EXECUTED
rtems_filesystem_freenode( &old_parent_loc );
805f4c8: 2b 81 00 40 lw r1,(sp+64) <== NOT EXECUTED 805f4cc: 44 20 00 05 be r1,r0,805f4e0 <_rename_r+0x338> <== NOT EXECUTED 805f4d0: 28 22 00 1c lw r2,(r1+28) <== NOT EXECUTED 805f4d4: 44 40 00 03 be r2,r0,805f4e0 <_rename_r+0x338> <== NOT EXECUTED 805f4d8: 37 81 00 34 addi r1,sp,52 <== NOT EXECUTED 805f4dc: d8 40 00 00 call r2 <== NOT EXECUTED
rtems_filesystem_freenode( &old_loc );
805f4e0: 2b 81 00 54 lw r1,(sp+84) <== NOT EXECUTED 805f4e4: 44 20 00 05 be r1,r0,805f4f8 <_rename_r+0x350> <== NOT EXECUTED 805f4e8: 28 22 00 1c lw r2,(r1+28) <== NOT EXECUTED 805f4ec: 44 40 00 03 be r2,r0,805f4f8 <_rename_r+0x350> <== NOT EXECUTED 805f4f0: 37 81 00 48 addi r1,sp,72 <== NOT EXECUTED 805f4f4: d8 40 00 00 call r2 <== NOT EXECUTED
return result; }
805f4f8: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 805f4fc: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 805f500: 2b 8b 00 1c lw r11,(sp+28) <== NOT EXECUTED 805f504: 2b 8c 00 18 lw r12,(sp+24) <== NOT EXECUTED 805f508: 2b 8d 00 14 lw r13,(sp+20) <== NOT EXECUTED 805f50c: 2b 8e 00 10 lw r14,(sp+16) <== NOT EXECUTED 805f510: 2b 8f 00 0c lw r15,(sp+12) <== NOT EXECUTED 805f514: 2b 90 00 08 lw r16,(sp+8) <== NOT EXECUTED 805f518: 37 9c 00 5c addi sp,sp,92 <== NOT EXECUTED 805f51c: c3 a0 00 00 ret <== NOT EXECUTED
08007a9c <_stat_r>: int _STAT_R_NAME( struct _reent *ptr __attribute__((unused)), const char *path, struct stat *buf ) {
8007a9c: 37 9c ff fc addi sp,sp,-4 <== NOT EXECUTED 8007aa0: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
return _STAT_NAME( path, buf );
8007aa4: b8 40 08 00 mv r1,r2 <== NOT EXECUTED 8007aa8: b8 60 10 00 mv r2,r3 <== NOT EXECUTED 8007aac: fb ff ff c2 calli 80079b4 <stat> <== NOT EXECUTED
}
8007ab0: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8007ab4: 37 9c 00 04 addi sp,sp,4 <== NOT EXECUTED 8007ab8: c3 a0 00 00 ret <== NOT EXECUTED
0800ae28 <_unlink_r>: int _unlink_r( struct _reent *ptr __attribute__((unused)), const char *path ) {
800ae28: 37 9c ff fc addi sp,sp,-4 <== NOT EXECUTED 800ae2c: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
return unlink( path );
800ae30: b8 40 08 00 mv r1,r2 <== NOT EXECUTED 800ae34: fb ff ff 6d calli 800abe8 <unlink> <== NOT EXECUTED
}
800ae38: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 800ae3c: 37 9c 00 04 addi sp,sp,4 <== NOT EXECUTED 800ae40: c3 a0 00 00 ret <== NOT EXECUTED
08006ee4 <calloc>: ) { register char *cptr; size_t length; MSBUMP(calloc_calls, 1);
8006ee4: 37 9c ff f4 addi sp,sp,-12 8006ee8: 5b 8b 00 0c sw (sp+12),r11 8006eec: 5b 8c 00 08 sw (sp+8),r12 8006ef0: 5b 9d 00 04 sw (sp+4),ra 8006ef4: 78 03 08 01 mvhi r3,0x801 8006ef8: 38 63 c6 a8 ori r3,r3,0xc6a8 8006efc: 28 65 00 14 lw r5,(r3+20) 8006f00: b8 20 20 00 mv r4,r1
length = nelem * elsize;
8006f04: b8 40 08 00 mv r1,r2
) { register char *cptr; size_t length; MSBUMP(calloc_calls, 1);
8006f08: 34 a5 00 01 addi r5,r5,1
length = nelem * elsize;
8006f0c: b8 80 10 00 mv r2,r4
) { register char *cptr; size_t length; MSBUMP(calloc_calls, 1);
8006f10: 58 65 00 14 sw (r3+20),r5
length = nelem * elsize;
8006f14: f8 00 47 e4 calli 8018ea4 <__mulsi3> 8006f18: b8 20 60 00 mv r12,r1
cptr = malloc( length );
8006f1c: f8 00 01 dc calli 800768c <malloc> 8006f20: b8 20 58 00 mv r11,r1
if ( cptr )
8006f24: 44 20 00 04 be r1,r0,8006f34 <calloc+0x50> <== NEVER TAKEN
memset( cptr, '\0', length );
8006f28: b9 80 18 00 mv r3,r12 8006f2c: 34 02 00 00 mvi r2,0 8006f30: f8 00 12 fc calli 800bb20 <memset>
MSBUMP(malloc_calls, (uint32_t) -1); /* subtract off the malloc */
8006f34: 78 02 08 01 mvhi r2,0x801 8006f38: 38 42 c6 a8 ori r2,r2,0xc6a8 8006f3c: 28 43 00 04 lw r3,(r2+4)
return cptr; }
8006f40: b9 60 08 00 mv r1,r11
length = nelem * elsize; cptr = malloc( length ); if ( cptr ) memset( cptr, '\0', length ); MSBUMP(malloc_calls, (uint32_t) -1); /* subtract off the malloc */
8006f44: 34 63 ff ff addi r3,r3,-1 8006f48: 58 43 00 04 sw (r2+4),r3
return cptr; }
8006f4c: 2b 9d 00 04 lw ra,(sp+4) 8006f50: 2b 8b 00 0c lw r11,(sp+12) 8006f54: 2b 8c 00 08 lw r12,(sp+8) 8006f58: 37 9c 00 0c addi sp,sp,12 8006f5c: c3 a0 00 00 ret
08026238 <chdir>: #include <rtems/seterr.h> int chdir( const char *pathname ) {
8026238: 37 9c ff e0 addi sp,sp,-32 802623c: 5b 8b 00 0c sw (sp+12),r11 8026240: 5b 8c 00 08 sw (sp+8),r12 8026244: 5b 9d 00 04 sw (sp+4),ra 8026248: b8 20 60 00 mv r12,r1
rtems_filesystem_location_info_t loc; int result; if ( !pathname ) 802624c: 5c 20 00 04 bne r1,r0,802625c <chdir+0x24> rtems_set_errno_and_return_minus_one( EFAULT );
8026250: f8 00 71 b1 calli 8042914 <__errno> 8026254: 34 02 00 0e mvi r2,14 8026258: e0 00 00 14 bi 80262a8 <chdir+0x70>
/* * Get the node where we wish to go. */ result = rtems_filesystem_evaluate_path( pathname, strlen( pathname ), RTEMS_LIBIO_PERMS_SEARCH, &loc, true );
802625c: f8 00 8f 98 calli 804a0bc <strlen>
rtems_set_errno_and_return_minus_one( EFAULT ); /* * Get the node where we wish to go. */ result = rtems_filesystem_evaluate_path(
8026260: 34 03 00 01 mvi r3,1 8026264: 37 8b 00 10 addi r11,sp,16
pathname, strlen( pathname ), RTEMS_LIBIO_PERMS_SEARCH, &loc, true );
8026268: b8 20 10 00 mv r2,r1
rtems_set_errno_and_return_minus_one( EFAULT ); /* * Get the node where we wish to go. */ result = rtems_filesystem_evaluate_path(
802626c: b9 60 20 00 mv r4,r11 8026270: b9 80 08 00 mv r1,r12 8026274: b8 60 28 00 mv r5,r3 8026278: fb ff 7f e7 calli 8006214 <rtems_filesystem_evaluate_path>
pathname, strlen( pathname ), RTEMS_LIBIO_PERMS_SEARCH, &loc, true ); if ( result != 0 )
802627c: 34 02 ff ff mvi r2,-1
8026280: 5c 20 00 2b bne r1,r0,802632c <chdir+0xf4> return -1; /* * Verify you can change directory into this node. */ if ( !loc.ops->node_type_h ) {
8026284: 2b 83 00 1c lw r3,(sp+28) 8026288: 28 62 00 10 lw r2,(r3+16)
802628c: 5c 41 00 0a bne r2,r1,80262b4 <chdir+0x7c> <== ALWAYS TAKEN
rtems_filesystem_freenode( &loc );
8026290: 28 63 00 1c lw r3,(r3+28) <== NOT EXECUTED 8026294: 44 62 00 03 be r3,r2,80262a0 <chdir+0x68> <== NOT EXECUTED 8026298: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 802629c: d8 60 00 00 call r3 <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( ENOTSUP );
80262a0: f8 00 71 9d calli 8042914 <__errno> <== NOT EXECUTED 80262a4: 34 02 00 86 mvi r2,134 <== NOT EXECUTED
80262a8: 58 22 00 00 sw (r1+0),r2 80262ac: 34 02 ff ff mvi r2,-1 80262b0: e0 00 00 1f bi 802632c <chdir+0xf4>
} if ( (*loc.ops->node_type_h)( &loc ) != RTEMS_FILESYSTEM_DIRECTORY ) {
80262b4: b9 60 08 00 mv r1,r11 80262b8: d8 40 00 00 call r2 80262bc: 34 02 00 01 mvi r2,1
80262c0: 44 22 00 0a be r1,r2,80262e8 <chdir+0xb0> rtems_filesystem_freenode( &loc );
80262c4: 2b 81 00 1c lw r1,(sp+28)
80262c8: 44 20 00 05 be r1,r0,80262dc <chdir+0xa4> <== NEVER TAKEN
80262cc: 28 22 00 1c lw r2,(r1+28)
80262d0: 44 40 00 03 be r2,r0,80262dc <chdir+0xa4> <== NEVER TAKEN
80262d4: b9 60 08 00 mv r1,r11 80262d8: d8 40 00 00 call r2
rtems_set_errno_and_return_minus_one( ENOTDIR );
80262dc: f8 00 71 8e calli 8042914 <__errno> 80262e0: 34 02 00 14 mvi r2,20 80262e4: e3 ff ff f1 bi 80262a8 <chdir+0x70>
} rtems_filesystem_freenode( &rtems_filesystem_current );
80262e8: 78 01 08 06 mvhi r1,0x806 80262ec: 38 21 b2 f0 ori r1,r1,0xb2f0 80262f0: 28 21 00 00 lw r1,(r1+0) 80262f4: 28 22 00 10 lw r2,(r1+16)
80262f8: 44 40 00 05 be r2,r0,802630c <chdir+0xd4> <== NEVER TAKEN
80262fc: 28 42 00 1c lw r2,(r2+28)
8026300: 44 40 00 03 be r2,r0,802630c <chdir+0xd4> <== NEVER TAKEN
8026304: 34 21 00 04 addi r1,r1,4 8026308: d8 40 00 00 call r2
rtems_filesystem_current = loc;
802630c: 78 01 08 06 mvhi r1,0x806 8026310: 38 21 b2 f0 ori r1,r1,0xb2f0 8026314: 28 21 00 00 lw r1,(r1+0) 8026318: 37 82 00 10 addi r2,sp,16 802631c: 34 03 00 14 mvi r3,20 8026320: 34 21 00 04 addi r1,r1,4 8026324: f8 00 80 1e calli 804639c <memcpy> 8026328: 34 02 00 00 mvi r2,0
return 0; }
802632c: b8 40 08 00 mv r1,r2 8026330: 2b 9d 00 04 lw ra,(sp+4) 8026334: 2b 8b 00 0c lw r11,(sp+12) 8026338: 2b 8c 00 08 lw r12,(sp+8) 802633c: 37 9c 00 20 addi sp,sp,32 8026340: c3 a0 00 00 ret
08005ed4 <chmod>: int chmod( const char *path, mode_t mode ) {
8005ed4: 37 9c ff dc addi sp,sp,-36 8005ed8: 5b 8b 00 10 sw (sp+16),r11 8005edc: 5b 8c 00 0c sw (sp+12),r12 8005ee0: 5b 8d 00 08 sw (sp+8),r13 8005ee4: 5b 9d 00 04 sw (sp+4),ra 8005ee8: b8 20 60 00 mv r12,r1 8005eec: b8 40 68 00 mv r13,r2
int status; rtems_filesystem_location_info_t loc; int result; status = rtems_filesystem_evaluate_path( path, strlen( path ), 0, &loc, true );
8005ef0: 37 8b 00 14 addi r11,sp,20 8005ef4: f8 01 10 72 calli 804a0bc <strlen> 8005ef8: b8 20 10 00 mv r2,r1 8005efc: 34 03 00 00 mvi r3,0 8005f00: b9 80 08 00 mv r1,r12 8005f04: b9 60 20 00 mv r4,r11 8005f08: 34 05 00 01 mvi r5,1 8005f0c: f8 00 00 c2 calli 8006214 <rtems_filesystem_evaluate_path>
if ( status != 0 )
8005f10: 34 0c ff ff mvi r12,-1
8005f14: 5c 20 00 23 bne r1,r0,8005fa0 <chmod+0xcc> return -1; if ( !loc.handlers ){
8005f18: 2b 83 00 1c lw r3,(sp+28)
8005f1c: 5c 61 00 0a bne r3,r1,8005f44 <chmod+0x70> <== ALWAYS TAKEN
rtems_filesystem_freenode( &loc );
8005f20: 2b 81 00 20 lw r1,(sp+32) <== NOT EXECUTED 8005f24: 44 23 00 05 be r1,r3,8005f38 <chmod+0x64> <== NOT EXECUTED 8005f28: 28 22 00 1c lw r2,(r1+28) <== NOT EXECUTED 8005f2c: 44 43 00 03 be r2,r3,8005f38 <chmod+0x64> <== NOT EXECUTED 8005f30: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8005f34: d8 40 00 00 call r2 <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( EBADF );
8005f38: f8 00 f2 77 calli 8042914 <__errno> <== NOT EXECUTED 8005f3c: 34 02 00 09 mvi r2,9 <== NOT EXECUTED 8005f40: e0 00 00 0b bi 8005f6c <chmod+0x98> <== NOT EXECUTED
} if ( !loc.handlers->fchmod_h ){
8005f44: 28 63 00 1c lw r3,(r3+28)
8005f48: 5c 60 00 0c bne r3,r0,8005f78 <chmod+0xa4> <== ALWAYS TAKEN
rtems_filesystem_freenode( &loc );
8005f4c: 2b 81 00 20 lw r1,(sp+32) <== NOT EXECUTED 8005f50: 44 23 00 05 be r1,r3,8005f64 <chmod+0x90> <== NOT EXECUTED 8005f54: 28 22 00 1c lw r2,(r1+28) <== NOT EXECUTED 8005f58: 44 40 00 03 be r2,r0,8005f64 <chmod+0x90> <== NOT EXECUTED 8005f5c: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8005f60: d8 40 00 00 call r2 <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( ENOTSUP );
8005f64: f8 00 f2 6c calli 8042914 <__errno> <== NOT EXECUTED 8005f68: 34 02 00 86 mvi r2,134 <== NOT EXECUTED 8005f6c: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 8005f70: 34 0c ff ff mvi r12,-1 <== NOT EXECUTED 8005f74: e0 00 00 0b bi 8005fa0 <chmod+0xcc> <== NOT EXECUTED
} result = (*loc.handlers->fchmod_h)( &loc, mode );
8005f78: b9 a0 10 00 mv r2,r13 8005f7c: b9 60 08 00 mv r1,r11 8005f80: d8 60 00 00 call r3 8005f84: b8 20 60 00 mv r12,r1
rtems_filesystem_freenode( &loc );
8005f88: 2b 81 00 20 lw r1,(sp+32)
8005f8c: 44 20 00 05 be r1,r0,8005fa0 <chmod+0xcc> <== NEVER TAKEN
8005f90: 28 22 00 1c lw r2,(r1+28)
8005f94: 44 40 00 03 be r2,r0,8005fa0 <chmod+0xcc> <== NEVER TAKEN
8005f98: b9 60 08 00 mv r1,r11 8005f9c: d8 40 00 00 call r2
return result; }
8005fa0: b9 80 08 00 mv r1,r12 8005fa4: 2b 9d 00 04 lw ra,(sp+4) 8005fa8: 2b 8b 00 10 lw r11,(sp+16) 8005fac: 2b 8c 00 0c lw r12,(sp+12) 8005fb0: 2b 8d 00 08 lw r13,(sp+8) 8005fb4: 37 9c 00 24 addi sp,sp,36 8005fb8: c3 a0 00 00 ret
08026344 <chown>: int chown( const char *path, uid_t owner, gid_t group ) {
8026344: 37 9c ff d8 addi sp,sp,-40 8026348: 5b 8b 00 14 sw (sp+20),r11 802634c: 5b 8c 00 10 sw (sp+16),r12 8026350: 5b 8d 00 0c sw (sp+12),r13 8026354: 5b 8e 00 08 sw (sp+8),r14 8026358: 5b 9d 00 04 sw (sp+4),ra 802635c: b8 20 60 00 mv r12,r1 8026360: 20 4e ff ff andi r14,r2,0xffff 8026364: 20 6d ff ff andi r13,r3,0xffff
rtems_filesystem_location_info_t loc; int result; if ( rtems_filesystem_evaluate_path( path, strlen( path ), 0x00, &loc, true ) )
8026368: 37 8b 00 18 addi r11,sp,24 802636c: f8 00 8f 54 calli 804a0bc <strlen> 8026370: b8 20 10 00 mv r2,r1 8026374: 34 03 00 00 mvi r3,0 8026378: b9 80 08 00 mv r1,r12 802637c: b9 60 20 00 mv r4,r11 8026380: 34 05 00 01 mvi r5,1 8026384: fb ff 7f a4 calli 8006214 <rtems_filesystem_evaluate_path> 8026388: 34 0c ff ff mvi r12,-1
802638c: 5c 20 00 18 bne r1,r0,80263ec <chown+0xa8> return -1; if ( !loc.ops->chown_h ) {
8026390: 2b 85 00 24 lw r5,(sp+36) 8026394: 28 a4 00 18 lw r4,(r5+24)
8026398: 5c 81 00 0a bne r4,r1,80263c0 <chown+0x7c> <== ALWAYS TAKEN
rtems_filesystem_freenode( &loc );
802639c: 28 a2 00 1c lw r2,(r5+28) <== NOT EXECUTED 80263a0: 44 44 00 03 be r2,r4,80263ac <chown+0x68> <== NOT EXECUTED 80263a4: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 80263a8: d8 40 00 00 call r2 <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( ENOTSUP );
80263ac: f8 00 71 5a calli 8042914 <__errno> <== NOT EXECUTED 80263b0: 34 02 00 86 mvi r2,134 <== NOT EXECUTED 80263b4: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 80263b8: 34 0c ff ff mvi r12,-1 <== NOT EXECUTED 80263bc: e0 00 00 0c bi 80263ec <chown+0xa8> <== NOT EXECUTED
} result = (*loc.ops->chown_h)( &loc, owner, group );
80263c0: b9 c0 10 00 mv r2,r14 80263c4: b9 a0 18 00 mv r3,r13 80263c8: b9 60 08 00 mv r1,r11 80263cc: d8 80 00 00 call r4 80263d0: b8 20 60 00 mv r12,r1
rtems_filesystem_freenode( &loc );
80263d4: 2b 81 00 24 lw r1,(sp+36)
80263d8: 44 20 00 05 be r1,r0,80263ec <chown+0xa8> <== NEVER TAKEN
80263dc: 28 22 00 1c lw r2,(r1+28)
80263e0: 44 40 00 03 be r2,r0,80263ec <chown+0xa8> <== NEVER TAKEN
80263e4: b9 60 08 00 mv r1,r11 80263e8: d8 40 00 00 call r2
return result; }
80263ec: b9 80 08 00 mv r1,r12 80263f0: 2b 9d 00 04 lw ra,(sp+4) 80263f4: 2b 8b 00 14 lw r11,(sp+20) 80263f8: 2b 8c 00 10 lw r12,(sp+16) 80263fc: 2b 8d 00 0c lw r13,(sp+12) 8026400: 2b 8e 00 08 lw r14,(sp+8) 8026404: 37 9c 00 28 addi sp,sp,40 8026408: c3 a0 00 00 ret
0802640c <chroot>: #include <rtems/seterr.h> int chroot( const char *pathname ) {
802640c: 37 9c ff dc addi sp,sp,-36 8026410: 5b 8b 00 10 sw (sp+16),r11 8026414: 5b 8c 00 0c sw (sp+12),r12 8026418: 5b 8d 00 08 sw (sp+8),r13 802641c: 5b 9d 00 04 sw (sp+4),ra
int result; rtems_filesystem_location_info_t loc; /* an automatic call to new private env the first time */ if (rtems_current_user_env == &rtems_global_user_env) {
8026420: 78 0b 08 06 mvhi r11,0x806 8026424: 39 6b b2 f0 ori r11,r11,0xb2f0 8026428: 29 6c 00 00 lw r12,(r11+0) 802642c: 78 02 08 06 mvhi r2,0x806 8026430: 38 42 ee e4 ori r2,r2,0xeee4
#include <rtems/seterr.h> int chroot( const char *pathname ) {
8026434: b8 20 68 00 mv r13,r1
int result; rtems_filesystem_location_info_t loc; /* an automatic call to new private env the first time */ if (rtems_current_user_env == &rtems_global_user_env) {
8026438: 5d 82 00 08 bne r12,r2,8026458 <chroot+0x4c> <== NEVER TAKEN
rtems_libio_set_private_env(); /* try to set a new private env*/
802643c: f8 00 07 6a calli 80281e4 <rtems_libio_set_private_env>
if (rtems_current_user_env == &rtems_global_user_env) /* not ok */
8026440: 29 61 00 00 lw r1,(r11+0)
8026444: 5c 2c 00 05 bne r1,r12,8026458 <chroot+0x4c> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( ENOTSUP );
8026448: f8 00 71 33 calli 8042914 <__errno> <== NOT EXECUTED 802644c: 34 02 00 86 mvi r2,134 <== NOT EXECUTED 8026450: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 8026454: e0 00 00 0a bi 802647c <chroot+0x70> <== NOT EXECUTED
} result = chdir(pathname);
8026458: b9 a0 08 00 mv r1,r13 802645c: fb ff ff 77 calli 8026238 <chdir> 8026460: b8 20 58 00 mv r11,r1
if (result) {
8026464: 44 20 00 08 be r1,r0,8026484 <chroot+0x78> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( errno );
8026468: f8 00 71 2b calli 8042914 <__errno> <== NOT EXECUTED 802646c: b8 20 58 00 mv r11,r1 <== NOT EXECUTED 8026470: f8 00 71 29 calli 8042914 <__errno> <== NOT EXECUTED 8026474: 28 21 00 00 lw r1,(r1+0) <== NOT EXECUTED 8026478: 59 61 00 00 sw (r11+0),r1 <== NOT EXECUTED 802647c: 34 01 ff ff mvi r1,-1 <== NOT EXECUTED 8026480: e0 00 00 1b bi 80264ec <chroot+0xe0> <== NOT EXECUTED
} /* clone the new root location */ if (rtems_filesystem_evaluate_path(".", 1, 0, &loc, 0)) {
8026484: 78 01 08 06 mvhi r1,0x806 8026488: 34 02 00 01 mvi r2,1 802648c: 38 21 12 34 ori r1,r1,0x1234 8026490: b9 60 18 00 mv r3,r11 8026494: 37 84 00 14 addi r4,sp,20 8026498: b9 60 28 00 mv r5,r11 802649c: fb ff 7f 5e calli 8006214 <rtems_filesystem_evaluate_path> 80264a0: b8 20 10 00 mv r2,r1
80264a4: 5c 2b ff f1 bne r1,r11,8026468 <chroot+0x5c> <== NEVER TAKEN
/* our cwd has changed, though - but there is no easy way of return :-( */ rtems_set_errno_and_return_minus_one( errno ); } rtems_filesystem_freenode(&rtems_filesystem_root);
80264a8: 78 01 08 06 mvhi r1,0x806 80264ac: 38 21 b2 f0 ori r1,r1,0xb2f0 80264b0: 28 21 00 00 lw r1,(r1+0) 80264b4: 28 23 00 24 lw r3,(r1+36)
80264b8: 44 62 00 05 be r3,r2,80264cc <chroot+0xc0> <== NEVER TAKEN
80264bc: 28 63 00 1c lw r3,(r3+28)
80264c0: 44 62 00 03 be r3,r2,80264cc <chroot+0xc0> <== NEVER TAKEN
80264c4: 34 21 00 18 addi r1,r1,24 80264c8: d8 60 00 00 call r3
rtems_filesystem_root = loc;
80264cc: 78 01 08 06 mvhi r1,0x806 80264d0: 38 21 b2 f0 ori r1,r1,0xb2f0 80264d4: 28 21 00 00 lw r1,(r1+0) 80264d8: 37 82 00 14 addi r2,sp,20 80264dc: 34 03 00 14 mvi r3,20 80264e0: 34 21 00 18 addi r1,r1,24 80264e4: f8 00 7f ae calli 804639c <memcpy> 80264e8: 34 01 00 00 mvi r1,0
return 0; }
80264ec: 2b 9d 00 04 lw ra,(sp+4) 80264f0: 2b 8b 00 10 lw r11,(sp+16) 80264f4: 2b 8c 00 0c lw r12,(sp+12) 80264f8: 2b 8d 00 08 lw r13,(sp+8) 80264fc: 37 9c 00 24 addi sp,sp,36 8026500: c3 a0 00 00 ret
08006f60 <close>: #include <rtems/libio_.h> int close( int fd ) {
8006f60: 37 9c ff f0 addi sp,sp,-16 8006f64: 5b 8b 00 10 sw (sp+16),r11 8006f68: 5b 8c 00 0c sw (sp+12),r12 8006f6c: 5b 8d 00 08 sw (sp+8),r13 8006f70: 5b 9d 00 04 sw (sp+4),ra
rtems_libio_t *iop; rtems_status_code rc; rtems_libio_check_fd(fd);
8006f74: 78 02 08 01 mvhi r2,0x801 8006f78: 38 42 c0 10 ori r2,r2,0xc010 8006f7c: 28 42 00 00 lw r2,(r2+0)
8006f80: 54 41 00 02 bgu r2,r1,8006f88 <close+0x28>
8006f84: e0 00 00 0e bi 8006fbc <close+0x5c>
iop = rtems_libio_iop(fd);
8006f88: 34 02 00 03 mvi r2,3 8006f8c: fb ff e4 99 calli 80001f0 <__ashlsi3> 8006f90: 78 0c 08 01 mvhi r12,0x801 8006f94: 39 8c c6 9c ori r12,r12,0xc69c 8006f98: 34 02 00 03 mvi r2,3 8006f9c: b8 20 68 00 mv r13,r1 8006fa0: fb ff e4 94 calli 80001f0 <__ashlsi3> 8006fa4: 29 8b 00 00 lw r11,(r12+0) 8006fa8: b5 a1 08 00 add r1,r13,r1 8006fac: b5 61 58 00 add r11,r11,r1
rtems_libio_check_is_open(iop);
8006fb0: 29 61 00 18 lw r1,(r11+24) 8006fb4: 20 21 01 00 andi r1,r1,0x100
8006fb8: 5c 20 00 06 bne r1,r0,8006fd0 <close+0x70>
8006fbc: f8 00 0f d5 calli 800af10 <__errno> 8006fc0: 34 02 00 09 mvi r2,9 8006fc4: 58 22 00 00 sw (r1+0),r2 8006fc8: 34 01 ff ff mvi r1,-1 8006fcc: e0 00 00 11 bi 8007010 <close+0xb0>
rc = RTEMS_SUCCESSFUL; if ( iop->handlers->close_h )
8006fd0: 29 61 00 40 lw r1,(r11+64) 8006fd4: 28 22 00 04 lw r2,(r1+4) 8006fd8: b8 40 60 00 mv r12,r2
8006fdc: 44 40 00 04 be r2,r0,8006fec <close+0x8c> <== NEVER TAKEN
rc = (*iop->handlers->close_h)( iop );
8006fe0: b9 60 08 00 mv r1,r11 8006fe4: d8 40 00 00 call r2 8006fe8: b8 20 60 00 mv r12,r1
rtems_filesystem_freenode( &iop->pathinfo );
8006fec: 29 61 00 28 lw r1,(r11+40)
8006ff0: 44 20 00 05 be r1,r0,8007004 <close+0xa4> <== NEVER TAKEN
8006ff4: 28 22 00 1c lw r2,(r1+28)
8006ff8: 44 40 00 03 be r2,r0,8007004 <close+0xa4>
8006ffc: 35 61 00 1c addi r1,r11,28 8007000: d8 40 00 00 call r2
rtems_libio_free( iop );
8007004: b9 60 08 00 mv r1,r11 8007008: f8 00 01 1c calli 8007478 <rtems_libio_free>
return rc;
800700c: b9 80 08 00 mv r1,r12
}
8007010: 2b 9d 00 04 lw ra,(sp+4) 8007014: 2b 8b 00 10 lw r11,(sp+16) 8007018: 2b 8c 00 0c lw r12,(sp+12) 800701c: 2b 8d 00 08 lw r13,(sp+8) 8007020: 37 9c 00 10 addi sp,sp,16 8007024: c3 a0 00 00 ret
08004afc <devFS_close>: #include "devfs.h" int devFS_close( rtems_libio_t *iop ) {
8004afc: 37 9c ff f0 addi sp,sp,-16 8004b00: 5b 9d 00 04 sw (sp+4),ra
rtems_libio_open_close_args_t args; rtems_status_code status; rtems_device_name_t *np; np = (rtems_device_name_t *)iop->file_info;
8004b04: 28 23 00 3c lw r3,(r1+60)
#include "devfs.h" int devFS_close( rtems_libio_t *iop ) {
8004b08: b8 20 20 00 mv r4,r1
rtems_device_name_t *np; np = (rtems_device_name_t *)iop->file_info; args.iop = iop; args.flags = 0;
8004b0c: 34 01 00 00 mvi r1,0
args.mode = 0;
8004b10: 5b 81 00 10 sw (sp+16),r1
rtems_device_name_t *np; np = (rtems_device_name_t *)iop->file_info; args.iop = iop; args.flags = 0;
8004b14: 5b 81 00 0c sw (sp+12),r1
args.mode = 0; status = rtems_io_close(
8004b18: 28 62 00 0c lw r2,(r3+12) 8004b1c: 28 61 00 08 lw r1,(r3+8) 8004b20: 37 83 00 08 addi r3,sp,8
rtems_status_code status; rtems_device_name_t *np; np = (rtems_device_name_t *)iop->file_info; args.iop = iop;
8004b24: 5b 84 00 08 sw (sp+8),r4
args.flags = 0; args.mode = 0; status = rtems_io_close(
8004b28: f8 00 04 dd calli 8005e9c <rtems_io_close>
np->major, np->minor, (void *) &args ); if ( status ) {
8004b2c: b8 20 10 00 mv r2,r1
8004b30: 44 20 00 03 be r1,r0,8004b3c <devFS_close+0x40> <== ALWAYS TAKEN
return rtems_deviceio_errno(status);
8004b34: f8 00 00 48 calli 8004c54 <rtems_deviceio_errno> <== NOT EXECUTED 8004b38: b8 20 10 00 mv r2,r1 <== NOT EXECUTED
} return 0; }
8004b3c: b8 40 08 00 mv r1,r2 8004b40: 2b 9d 00 04 lw ra,(sp+4) 8004b44: 37 9c 00 10 addi sp,sp,16 8004b48: c3 a0 00 00 ret
08004b58 <devFS_evaluate_path>: const char *pathname, int pathnamelen, int flags, rtems_filesystem_location_info_t *pathloc ) {
8004b58: 37 9c ff e0 addi sp,sp,-32 8004b5c: 5b 8b 00 20 sw (sp+32),r11 8004b60: 5b 8c 00 1c sw (sp+28),r12 8004b64: 5b 8d 00 18 sw (sp+24),r13 8004b68: 5b 8e 00 14 sw (sp+20),r14 8004b6c: 5b 8f 00 10 sw (sp+16),r15 8004b70: 5b 90 00 0c sw (sp+12),r16 8004b74: 5b 91 00 08 sw (sp+8),r17 8004b78: 5b 9d 00 04 sw (sp+4),ra
assert( 0 ); rtems_set_errno_and_return_minus_one( EIO ); } /* get the device name table */ device_name_table = (rtems_device_name_t *)pathloc->node_access;
8004b7c: 28 8c 00 00 lw r12,(r4+0)
const char *pathname, int pathnamelen, int flags, rtems_filesystem_location_info_t *pathloc ) {
8004b80: b8 80 58 00 mv r11,r4 8004b84: b8 20 88 00 mv r17,r1 8004b88: b8 40 80 00 mv r16,r2
rtems_set_errno_and_return_minus_one( EIO ); } /* get the device name table */ device_name_table = (rtems_device_name_t *)pathloc->node_access; if (!device_name_table)
8004b8c: 45 80 00 05 be r12,r0,8004ba0 <devFS_evaluate_path+0x48> <== NEVER TAKEN
rtems_set_errno_and_return_minus_one( EFAULT ); for (i = 0; i < rtems_device_table_size; i++) {
8004b90: 78 0d 08 00 mvhi r13,0x800 8004b94: 39 ad c0 14 ori r13,r13,0xc014
rtems_set_errno_and_return_minus_one( EIO ); } /* get the device name table */ device_name_table = (rtems_device_name_t *)pathloc->node_access; if (!device_name_table)
8004b98: 34 0e 00 00 mvi r14,0 8004b9c: e0 00 00 1c bi 8004c0c <devFS_evaluate_path+0xb4>
rtems_set_errno_and_return_minus_one( EFAULT );
8004ba0: f8 00 0e 06 calli 80083b8 <__errno> <== NOT EXECUTED 8004ba4: 34 02 00 0e mvi r2,14 <== NOT EXECUTED 8004ba8: e0 00 00 1f bi 8004c24 <devFS_evaluate_path+0xcc> <== NOT EXECUTED
for (i = 0; i < rtems_device_table_size; i++) { if (!device_name_table[i].device_name)
8004bac: 29 8f 00 00 lw r15,(r12+0)
/* get the device name table */ device_name_table = (rtems_device_name_t *)pathloc->node_access; if (!device_name_table) rtems_set_errno_and_return_minus_one( EFAULT ); for (i = 0; i < rtems_device_table_size; i++) {
8004bb0: 35 ce 00 01 addi r14,r14,1
if (!device_name_table[i].device_name) continue; if (strncmp(pathname, device_name_table[i].device_name, pathnamelen) != 0)
8004bb4: b9 e0 10 00 mv r2,r15
device_name_table = (rtems_device_name_t *)pathloc->node_access; if (!device_name_table) rtems_set_errno_and_return_minus_one( EFAULT ); for (i = 0; i < rtems_device_table_size; i++) { if (!device_name_table[i].device_name) 8004bb8: 45 e0 00 14 be r15,r0,8004c08 <devFS_evaluate_path+0xb0> continue; if (strncmp(pathname, device_name_table[i].device_name, pathnamelen) != 0)
8004bbc: f8 00 12 94 calli 800960c <strncmp>
continue; if (device_name_table[i].device_name[pathnamelen] != '\0')
8004bc0: b5 f0 78 00 add r15,r15,r16
for (i = 0; i < rtems_device_table_size; i++) { if (!device_name_table[i].device_name) continue; if (strncmp(pathname, device_name_table[i].device_name, pathnamelen) != 0)
8004bc4: 5c 20 00 11 bne r1,r0,8004c08 <devFS_evaluate_path+0xb0> <== NEVER TAKEN
continue; if (device_name_table[i].device_name[pathnamelen] != '\0')
8004bc8: 41 e5 00 00 lbu r5,(r15+0)
8004bcc: 5c a1 00 0f bne r5,r1,8004c08 <devFS_evaluate_path+0xb0> <== NEVER TAKEN
/* find the device, set proper values */ pathloc->node_access = (void *)&device_name_table[i]; pathloc->handlers = &devFS_file_handlers; pathloc->ops = &devFS_ops; pathloc->mt_entry = rtems_filesystem_root.mt_entry;
8004bd0: 78 02 08 00 mvhi r2,0x800 8004bd4: 38 42 c1 7c ori r2,r2,0xc17c 8004bd8: 28 41 00 00 lw r1,(r2+0)
if (device_name_table[i].device_name[pathnamelen] != '\0') continue; /* find the device, set proper values */ pathloc->node_access = (void *)&device_name_table[i]; pathloc->handlers = &devFS_file_handlers;
8004bdc: 78 03 08 00 mvhi r3,0x800
pathloc->ops = &devFS_ops;
8004be0: 78 02 08 00 mvhi r2,0x800
pathloc->mt_entry = rtems_filesystem_root.mt_entry;
8004be4: 28 21 00 28 lw r1,(r1+40)
if (device_name_table[i].device_name[pathnamelen] != '\0') continue; /* find the device, set proper values */ pathloc->node_access = (void *)&device_name_table[i]; pathloc->handlers = &devFS_file_handlers;
8004be8: 38 63 c1 44 ori r3,r3,0xc144
pathloc->ops = &devFS_ops;
8004bec: 38 42 c0 fc ori r2,r2,0xc0fc
pathloc->mt_entry = rtems_filesystem_root.mt_entry;
8004bf0: 59 61 00 10 sw (r11+16),r1
if (device_name_table[i].device_name[pathnamelen] != '\0') continue; /* find the device, set proper values */ pathloc->node_access = (void *)&device_name_table[i];
8004bf4: 59 6c 00 00 sw (r11+0),r12
pathloc->handlers = &devFS_file_handlers;
8004bf8: 59 63 00 08 sw (r11+8),r3
pathloc->ops = &devFS_ops;
8004bfc: 59 62 00 0c sw (r11+12),r2
pathloc->mt_entry = rtems_filesystem_root.mt_entry;
8004c00: b8 a0 08 00 mv r1,r5
return 0;
8004c04: e0 00 00 0a bi 8004c2c <devFS_evaluate_path+0xd4>
/* get the device name table */ device_name_table = (rtems_device_name_t *)pathloc->node_access; if (!device_name_table) rtems_set_errno_and_return_minus_one( EFAULT ); for (i = 0; i < rtems_device_table_size; i++) {
8004c08: 35 8c 00 14 addi r12,r12,20 8004c0c: 29 a2 00 00 lw r2,(r13+0)
if (!device_name_table[i].device_name) continue; if (strncmp(pathname, device_name_table[i].device_name, pathnamelen) != 0)
8004c10: ba 20 08 00 mv r1,r17 8004c14: ba 00 18 00 mv r3,r16
/* get the device name table */ device_name_table = (rtems_device_name_t *)pathloc->node_access; if (!device_name_table) rtems_set_errno_and_return_minus_one( EFAULT ); for (i = 0; i < rtems_device_table_size; i++) { 8004c18: 54 4e ff e5 bgu r2,r14,8004bac <devFS_evaluate_path+0x54> pathloc->mt_entry = rtems_filesystem_root.mt_entry; return 0; } /* no such file or directory */ rtems_set_errno_and_return_minus_one( ENOENT );
8004c1c: f8 00 0d e7 calli 80083b8 <__errno> 8004c20: 34 02 00 02 mvi r2,2 8004c24: 58 22 00 00 sw (r1+0),r2 8004c28: 34 01 ff ff mvi r1,-1
}
8004c2c: 2b 9d 00 04 lw ra,(sp+4) 8004c30: 2b 8b 00 20 lw r11,(sp+32) 8004c34: 2b 8c 00 1c lw r12,(sp+28) 8004c38: 2b 8d 00 18 lw r13,(sp+24) 8004c3c: 2b 8e 00 14 lw r14,(sp+20) 8004c40: 2b 8f 00 10 lw r15,(sp+16) 8004c44: 2b 90 00 0c lw r16,(sp+12) 8004c48: 2b 91 00 08 lw r17,(sp+8) 8004c4c: 37 9c 00 20 addi sp,sp,32 8004c50: c3 a0 00 00 ret
080007e8 <devFS_initialize>: int devFS_initialize( rtems_filesystem_mount_table_entry_t *temp_mt_entry ) {
80007e8: 37 9c ff f0 addi sp,sp,-16 80007ec: 5b 8b 00 10 sw (sp+16),r11 80007f0: 5b 8c 00 0c sw (sp+12),r12 80007f4: 5b 8d 00 08 sw (sp+8),r13 80007f8: 5b 9d 00 04 sw (sp+4),ra
rtems_device_name_t *device_name_table; /* allocate device only filesystem name table */ device_name_table = (rtems_device_name_t *)_Workspace_Allocate(
80007fc: 78 0b 08 00 mvhi r11,0x800 8000800: 39 6b c0 14 ori r11,r11,0xc014
int devFS_initialize( rtems_filesystem_mount_table_entry_t *temp_mt_entry ) {
8000804: b8 20 60 00 mv r12,r1
rtems_device_name_t *device_name_table; /* allocate device only filesystem name table */ device_name_table = (rtems_device_name_t *)_Workspace_Allocate(
8000808: 29 61 00 00 lw r1,(r11+0) 800080c: 34 02 00 02 mvi r2,2 8000810: fb ff fe 52 calli 8000158 <__ashlsi3> 8000814: 34 02 00 02 mvi r2,2 8000818: b8 20 68 00 mv r13,r1 800081c: fb ff fe 4f calli 8000158 <__ashlsi3> 8000820: b5 a1 08 00 add r1,r13,r1 8000824: f8 00 0f 9f calli 80046a0 <_Workspace_Allocate> 8000828: b8 20 68 00 mv r13,r1
sizeof( rtems_device_name_t ) * ( rtems_device_table_size ) ); /* no memory for device filesystem */ if (!device_name_table)
800082c: 5c 20 00 06 bne r1,r0,8000844 <devFS_initialize+0x5c> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( ENOMEM );
8000830: f8 00 1e e2 calli 80083b8 <__errno> <== NOT EXECUTED 8000834: 34 02 00 0c mvi r2,12 <== NOT EXECUTED 8000838: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 800083c: 34 01 ff ff mvi r1,-1 <== NOT EXECUTED 8000840: e0 00 00 13 bi 800088c <devFS_initialize+0xa4> <== NOT EXECUTED
memset(
8000844: 29 61 00 00 lw r1,(r11+0) 8000848: 34 02 00 02 mvi r2,2 800084c: fb ff fe 43 calli 8000158 <__ashlsi3> 8000850: 34 02 00 02 mvi r2,2 8000854: b8 20 58 00 mv r11,r1 8000858: fb ff fe 40 calli 8000158 <__ashlsi3> 800085c: b5 61 18 00 add r3,r11,r1 8000860: 34 02 00 00 mvi r2,0 8000864: b9 a0 08 00 mv r1,r13 8000868: f8 00 21 b7 calli 8008f44 <memset>
device_name_table, 0, sizeof( rtems_device_name_t ) * ( rtems_device_table_size ) ); /* set file handlers */ temp_mt_entry->mt_fs_root.handlers = &devFS_file_handlers;
800086c: 78 03 08 00 mvhi r3,0x800
temp_mt_entry->mt_fs_root.ops = &devFS_ops;
8000870: 78 02 08 00 mvhi r2,0x800
device_name_table, 0, sizeof( rtems_device_name_t ) * ( rtems_device_table_size ) ); /* set file handlers */ temp_mt_entry->mt_fs_root.handlers = &devFS_file_handlers;
8000874: 38 63 c1 44 ori r3,r3,0xc144
temp_mt_entry->mt_fs_root.ops = &devFS_ops;
8000878: 38 42 c0 fc ori r2,r2,0xc0fc
/* Set the node_access to device name table */ temp_mt_entry->mt_fs_root.node_access = (void *)device_name_table;
800087c: 59 8d 00 1c sw (r12+28),r13
device_name_table, 0, sizeof( rtems_device_name_t ) * ( rtems_device_table_size ) ); /* set file handlers */ temp_mt_entry->mt_fs_root.handlers = &devFS_file_handlers;
8000880: 59 83 00 24 sw (r12+36),r3
temp_mt_entry->mt_fs_root.ops = &devFS_ops;
8000884: 59 82 00 28 sw (r12+40),r2
/* Set the node_access to device name table */ temp_mt_entry->mt_fs_root.node_access = (void *)device_name_table;
8000888: 34 01 00 00 mvi r1,0
return 0; }
800088c: 2b 9d 00 04 lw ra,(sp+4) 8000890: 2b 8b 00 10 lw r11,(sp+16) 8000894: 2b 8c 00 0c lw r12,(sp+12) 8000898: 2b 8d 00 08 lw r13,(sp+8) 800089c: 37 9c 00 10 addi sp,sp,16 80008a0: c3 a0 00 00 ret
08000a40 <devFS_ioctl>: int devFS_ioctl( rtems_libio_t *iop, uint32_t command, void *buffer ) {
8000a40: 37 9c ff ec addi sp,sp,-20 8000a44: 5b 9d 00 04 sw (sp+4),ra 8000a48: b8 20 20 00 mv r4,r1
rtems_libio_ioctl_args_t args; rtems_status_code status; rtems_device_name_t *np; np = (rtems_device_name_t *)iop->file_info;
8000a4c: 28 21 00 3c lw r1,(r1+60)
args.iop = iop; args.command = command;
8000a50: 5b 82 00 0c sw (sp+12),r2
args.buffer = buffer;
8000a54: 5b 83 00 10 sw (sp+16),r3
status = rtems_io_control(
8000a58: 28 22 00 0c lw r2,(r1+12) 8000a5c: 28 21 00 08 lw r1,(r1+8) 8000a60: 37 83 00 08 addi r3,sp,8
rtems_status_code status; rtems_device_name_t *np; np = (rtems_device_name_t *)iop->file_info; args.iop = iop;
8000a64: 5b 84 00 08 sw (sp+8),r4
args.command = command; args.buffer = buffer; status = rtems_io_control(
8000a68: f8 00 06 b5 calli 800253c <rtems_io_control>
np->major, np->minor, (void *) &args ); if ( status )
8000a6c: 44 20 00 03 be r1,r0,8000a78 <devFS_ioctl+0x38> <== ALWAYS TAKEN
return rtems_deviceio_errno(status);
8000a70: f8 00 10 79 calli 8004c54 <rtems_deviceio_errno> <== NOT EXECUTED 8000a74: e0 00 00 02 bi 8000a7c <devFS_ioctl+0x3c> <== NOT EXECUTED
return args.ioctl_return;
8000a78: 2b 81 00 14 lw r1,(sp+20)
}
8000a7c: 2b 9d 00 04 lw ra,(sp+4) 8000a80: 37 9c 00 14 addi sp,sp,20 8000a84: c3 a0 00 00 ret
080008a4 <devFS_mknod>: const char *path, mode_t mode, dev_t dev, rtems_filesystem_location_info_t *pathloc ) {
80008a4: 37 9c ff d8 addi sp,sp,-40 80008a8: 5b 8b 00 28 sw (sp+40),r11 80008ac: 5b 8c 00 24 sw (sp+36),r12 80008b0: 5b 8d 00 20 sw (sp+32),r13 80008b4: 5b 8e 00 1c sw (sp+28),r14 80008b8: 5b 8f 00 18 sw (sp+24),r15 80008bc: 5b 90 00 14 sw (sp+20),r16 80008c0: 5b 91 00 10 sw (sp+16),r17 80008c4: 5b 92 00 0c sw (sp+12),r18 80008c8: 5b 93 00 08 sw (sp+8),r19 80008cc: 5b 9d 00 04 sw (sp+4),ra
* condition and do not create the '/dev' and the 'path' * actually passed in is 'dev', not '/dev'. Just return 0 to * indicate we are OK. */ if ((path[0] == 'd') && (path[1] == 'e') &&
80008d0: 40 26 00 00 lbu r6,(r1+0)
const char *path, mode_t mode, dev_t dev, rtems_filesystem_location_info_t *pathloc ) {
80008d4: b8 20 58 00 mv r11,r1
* condition and do not create the '/dev' and the 'path' * actually passed in is 'dev', not '/dev'. Just return 0 to * indicate we are OK. */ if ((path[0] == 'd') && (path[1] == 'e') &&
80008d8: 34 01 00 64 mvi r1,100
const char *path, mode_t mode, dev_t dev, rtems_filesystem_location_info_t *pathloc ) {
80008dc: b8 40 88 00 mv r17,r2 80008e0: b8 60 98 00 mv r19,r3 80008e4: b8 80 90 00 mv r18,r4
* condition and do not create the '/dev' and the 'path' * actually passed in is 'dev', not '/dev'. Just return 0 to * indicate we are OK. */ if ((path[0] == 'd') && (path[1] == 'e') &&
80008e8: 5c c1 00 0a bne r6,r1,8000910 <devFS_mknod+0x6c> <== NEVER TAKEN
80008ec: 41 62 00 01 lbu r2,(r11+1) 80008f0: 34 01 00 65 mvi r1,101
80008f4: 5c 41 00 07 bne r2,r1,8000910 <devFS_mknod+0x6c> <== NEVER TAKEN
(path[2] == 'v') && (path[3] == '\0'))
80008f8: 41 62 00 02 lbu r2,(r11+2) 80008fc: 34 01 00 76 mvi r1,118
8000900: 5c 41 00 04 bne r2,r1,8000910 <devFS_mknod+0x6c> <== NEVER TAKEN
8000904: 41 62 00 03 lbu r2,(r11+3) 8000908: b8 40 08 00 mv r1,r2
800090c: 44 40 00 3f be r2,r0,8000a08 <devFS_mknod+0x164> return 0; /* must be a character device or a block device */ if (!S_ISBLK(mode) && !S_ISCHR(mode))
8000910: 22 21 f0 00 andi r1,r17,0xf000 8000914: 7c 22 60 00 cmpnei r2,r1,24576 8000918: 7c 2f 20 00 cmpnei r15,r1,8192 800091c: a1 e2 78 00 and r15,r15,r2
8000920: 45 e0 00 04 be r15,r0,8000930 <devFS_mknod+0x8c> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( EINVAL );
8000924: f8 00 1e a5 calli 80083b8 <__errno> <== NOT EXECUTED 8000928: 34 02 00 16 mvi r2,22 <== NOT EXECUTED 800092c: e0 00 00 0a bi 8000954 <devFS_mknod+0xb0> <== NOT EXECUTED
else rtems_filesystem_split_dev_t(dev, major, minor); /* Find an empty slot in device name table */ device_name_table = (rtems_device_name_t *)pathloc->node_access;
8000930: 28 b0 00 00 lw r16,(r5+0)
if (!device_name_table)
8000934: 46 0f 00 06 be r16,r15,800094c <devFS_mknod+0xa8> <== NEVER TAKEN
rtems_set_errno_and_return_minus_one( EFAULT ); for (slot = -1, i = 0; i < rtems_device_table_size; i++){
8000938: 78 0e 08 00 mvhi r14,0x800 800093c: 39 ce c0 14 ori r14,r14,0xc014
else rtems_filesystem_split_dev_t(dev, major, minor); /* Find an empty slot in device name table */ device_name_table = (rtems_device_name_t *)pathloc->node_access; if (!device_name_table)
8000940: ba 00 60 00 mv r12,r16 8000944: 34 0d ff ff mvi r13,-1 8000948: e0 00 00 11 bi 800098c <devFS_mknod+0xe8>
rtems_set_errno_and_return_minus_one( EFAULT );
800094c: f8 00 1e 9b calli 80083b8 <__errno> <== NOT EXECUTED 8000950: 34 02 00 0e mvi r2,14 <== NOT EXECUTED 8000954: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 8000958: 34 01 ff ff mvi r1,-1 <== NOT EXECUTED 800095c: e0 00 00 2b bi 8000a08 <devFS_mknod+0x164> <== NOT EXECUTED
for (slot = -1, i = 0; i < rtems_device_table_size; i++){ if (device_name_table[i].device_name == NULL)
8000960: 29 85 00 00 lw r5,(r12+0)
/* Find an empty slot in device name table */ device_name_table = (rtems_device_name_t *)pathloc->node_access; if (!device_name_table) rtems_set_errno_and_return_minus_one( EFAULT ); for (slot = -1, i = 0; i < rtems_device_table_size; i++){
8000964: 35 8c 00 14 addi r12,r12,20
if (device_name_table[i].device_name == NULL) slot = i; else if (strcmp(path, device_name_table[i].device_name) == 0)
8000968: b8 a0 10 00 mv r2,r5
device_name_table = (rtems_device_name_t *)pathloc->node_access; if (!device_name_table) rtems_set_errno_and_return_minus_one( EFAULT ); for (slot = -1, i = 0; i < rtems_device_table_size; i++){ if (device_name_table[i].device_name == NULL)
800096c: 44 a0 00 06 be r5,r0,8000984 <devFS_mknod+0xe0> <== ALWAYS TAKEN
slot = i; else if (strcmp(path, device_name_table[i].device_name) == 0)
8000970: f8 00 22 ac calli 8009420 <strcmp> <== NOT EXECUTED 8000974: 5c 20 00 05 bne r1,r0,8000988 <devFS_mknod+0xe4> <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( EEXIST );
8000978: f8 00 1e 90 calli 80083b8 <__errno> <== NOT EXECUTED 800097c: 34 02 00 11 mvi r2,17 <== NOT EXECUTED 8000980: e3 ff ff f5 bi 8000954 <devFS_mknod+0xb0> <== NOT EXECUTED
8000984: b9 e0 68 00 mv r13,r15
/* Find an empty slot in device name table */ device_name_table = (rtems_device_name_t *)pathloc->node_access; if (!device_name_table) rtems_set_errno_and_return_minus_one( EFAULT ); for (slot = -1, i = 0; i < rtems_device_table_size; i++){
8000988: 35 ef 00 01 addi r15,r15,1 800098c: 29 c2 00 00 lw r2,(r14+0)
if (device_name_table[i].device_name == NULL) slot = i; else if (strcmp(path, device_name_table[i].device_name) == 0)
8000990: b9 60 08 00 mv r1,r11
/* Find an empty slot in device name table */ device_name_table = (rtems_device_name_t *)pathloc->node_access; if (!device_name_table) rtems_set_errno_and_return_minus_one( EFAULT ); for (slot = -1, i = 0; i < rtems_device_table_size; i++){ 8000994: 54 4f ff f3 bgu r2,r15,8000960 <devFS_mknod+0xbc> else if (strcmp(path, device_name_table[i].device_name) == 0) rtems_set_errno_and_return_minus_one( EEXIST ); } if (slot == -1)
8000998: 34 01 ff ff mvi r1,-1
800099c: 5d a1 00 06 bne r13,r1,80009b4 <devFS_mknod+0x110> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( ENOMEM );
80009a0: f8 00 1e 86 calli 80083b8 <__errno> <== NOT EXECUTED 80009a4: 34 02 00 0c mvi r2,12 <== NOT EXECUTED 80009a8: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 80009ac: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 80009b0: e0 00 00 16 bi 8000a08 <devFS_mknod+0x164> <== NOT EXECUTED
_ISR_Disable(level);
80009b4: 90 00 70 00 rcsr r14,IE 80009b8: 34 01 ff fe mvi r1,-2 80009bc: a1 c1 08 00 and r1,r14,r1 80009c0: d0 01 00 00 wcsr IE,r1
device_name_table[slot].device_name = (char *)path;
80009c4: 34 02 00 02 mvi r2,2 80009c8: b9 a0 08 00 mv r1,r13 80009cc: fb ff fd e3 calli 8000158 <__ashlsi3> 80009d0: 34 02 00 02 mvi r2,2 80009d4: b8 20 60 00 mv r12,r1 80009d8: fb ff fd e0 calli 8000158 <__ashlsi3> 80009dc: b5 81 08 00 add r1,r12,r1 80009e0: b6 01 60 00 add r12,r16,r1 80009e4: 59 8b 00 00 sw (r12+0),r11
device_name_table[slot].device_name_length = strlen(path);
80009e8: b9 60 08 00 mv r1,r11 80009ec: f8 00 22 dd calli 8009560 <strlen> 80009f0: 59 81 00 04 sw (r12+4),r1
device_name_table[slot].major = major; device_name_table[slot].minor = minor; device_name_table[slot].mode = mode;
80009f4: 59 91 00 10 sw (r12+16),r17
rtems_set_errno_and_return_minus_one( ENOMEM ); _ISR_Disable(level); device_name_table[slot].device_name = (char *)path; device_name_table[slot].device_name_length = strlen(path); device_name_table[slot].major = major;
80009f8: 59 93 00 08 sw (r12+8),r19
device_name_table[slot].minor = minor;
80009fc: 59 92 00 0c sw (r12+12),r18
device_name_table[slot].mode = mode; _ISR_Enable(level);
8000a00: d0 0e 00 00 wcsr IE,r14 8000a04: 34 01 00 00 mvi r1,0
return 0; }
8000a08: 2b 9d 00 04 lw ra,(sp+4) 8000a0c: 2b 8b 00 28 lw r11,(sp+40) 8000a10: 2b 8c 00 24 lw r12,(sp+36) 8000a14: 2b 8d 00 20 lw r13,(sp+32) 8000a18: 2b 8e 00 1c lw r14,(sp+28) 8000a1c: 2b 8f 00 18 lw r15,(sp+24) 8000a20: 2b 90 00 14 lw r16,(sp+20) 8000a24: 2b 91 00 10 lw r17,(sp+16) 8000a28: 2b 92 00 0c lw r18,(sp+12) 8000a2c: 2b 93 00 08 lw r19,(sp+8) 8000a30: 37 9c 00 28 addi sp,sp,40 8000a34: c3 a0 00 00 ret
08000a88 <devFS_open>: rtems_libio_t *iop, const char *pathname, uint32_t flag, uint32_t mode ) {
8000a88: 37 9c ff f0 addi sp,sp,-16 8000a8c: 5b 9d 00 04 sw (sp+4),ra 8000a90: b8 20 28 00 mv r5,r1
rtems_device_name_t *np; np = (rtems_device_name_t *)iop->file_info; args.iop = iop; args.flags = iop->flags;
8000a94: 28 21 00 18 lw r1,(r1+24)
args.mode = mode;
8000a98: 5b 84 00 10 sw (sp+16),r4
status = rtems_io_open(
8000a9c: 37 83 00 08 addi r3,sp,8
rtems_device_name_t *np; np = (rtems_device_name_t *)iop->file_info; args.iop = iop; args.flags = iop->flags;
8000aa0: 5b 81 00 0c sw (sp+12),r1
{ rtems_libio_open_close_args_t args; rtems_status_code status; rtems_device_name_t *np; np = (rtems_device_name_t *)iop->file_info;
8000aa4: 28 a1 00 3c lw r1,(r5+60)
args.iop = iop;
8000aa8: 5b 85 00 08 sw (sp+8),r5
args.flags = iop->flags; args.mode = mode; status = rtems_io_open(
8000aac: 28 22 00 0c lw r2,(r1+12) 8000ab0: 28 21 00 08 lw r1,(r1+8) 8000ab4: f8 00 07 12 calli 80026fc <rtems_io_open>
np->major, np->minor, (void *) &args ); if ( status )
8000ab8: b8 20 10 00 mv r2,r1
8000abc: 44 20 00 03 be r1,r0,8000ac8 <devFS_open+0x40> <== ALWAYS TAKEN
return rtems_deviceio_errno(status);
8000ac0: f8 00 10 65 calli 8004c54 <rtems_deviceio_errno> <== NOT EXECUTED 8000ac4: b8 20 10 00 mv r2,r1 <== NOT EXECUTED
return 0; }
8000ac8: b8 40 08 00 mv r1,r2 8000acc: 2b 9d 00 04 lw ra,(sp+4) 8000ad0: 37 9c 00 10 addi sp,sp,16 8000ad4: c3 a0 00 00 ret
08000ad8 <devFS_read>: ssize_t devFS_read( rtems_libio_t *iop, void *buffer, size_t count ) {
8000ad8: 37 9c ff dc addi sp,sp,-36 <== NOT EXECUTED 8000adc: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED 8000ae0: b8 20 20 00 mv r4,r1 <== NOT EXECUTED
args.iop = iop; args.offset = iop->offset; args.buffer = buffer; args.count = count; args.flags = iop->flags;
8000ae4: 28 21 00 18 lw r1,(r1+24) <== NOT EXECUTED 8000ae8: 5b 81 00 20 sw (sp+32),r1 <== NOT EXECUTED
rtems_device_name_t *np; np = (rtems_device_name_t *)iop->file_info; args.iop = iop; args.offset = iop->offset;
8000aec: 28 81 00 14 lw r1,(r4+20) <== NOT EXECUTED 8000af0: 5b 81 00 14 sw (sp+20),r1 <== NOT EXECUTED 8000af4: 28 81 00 10 lw r1,(r4+16) <== NOT EXECUTED
args.buffer = buffer; args.count = count;
8000af8: 5b 83 00 1c sw (sp+28),r3 <== NOT EXECUTED
args.flags = iop->flags; args.bytes_moved = 0;
8000afc: 34 03 00 00 mvi r3,0 <== NOT EXECUTED
rtems_device_name_t *np; np = (rtems_device_name_t *)iop->file_info; args.iop = iop; args.offset = iop->offset;
8000b00: 5b 81 00 10 sw (sp+16),r1 <== NOT EXECUTED
{ rtems_libio_rw_args_t args; rtems_status_code status; rtems_device_name_t *np; np = (rtems_device_name_t *)iop->file_info;
8000b04: 28 81 00 3c lw r1,(r4+60) <== NOT EXECUTED
args.iop = iop; args.offset = iop->offset; args.buffer = buffer; args.count = count; args.flags = iop->flags; args.bytes_moved = 0;
8000b08: 5b 83 00 24 sw (sp+36),r3 <== NOT EXECUTED
np = (rtems_device_name_t *)iop->file_info; args.iop = iop; args.offset = iop->offset; args.buffer = buffer;
8000b0c: 5b 82 00 18 sw (sp+24),r2 <== NOT EXECUTED
args.count = count; args.flags = iop->flags; args.bytes_moved = 0; status = rtems_io_read(
8000b10: 28 22 00 0c lw r2,(r1+12) <== NOT EXECUTED 8000b14: 28 21 00 08 lw r1,(r1+8) <== NOT EXECUTED 8000b18: 37 83 00 08 addi r3,sp,8 <== NOT EXECUTED
rtems_status_code status; rtems_device_name_t *np; np = (rtems_device_name_t *)iop->file_info; args.iop = iop;
8000b1c: 5b 84 00 08 sw (sp+8),r4 <== NOT EXECUTED
args.buffer = buffer; args.count = count; args.flags = iop->flags; args.bytes_moved = 0; status = rtems_io_read(
8000b20: f8 00 07 1c calli 8002790 <rtems_io_read> <== NOT EXECUTED
np->major, np->minor, (void *) &args ); if ( status )
8000b24: 44 20 00 03 be r1,r0,8000b30 <devFS_read+0x58> <== NOT EXECUTED
return rtems_deviceio_errno(status);
8000b28: f8 00 10 4b calli 8004c54 <rtems_deviceio_errno> <== NOT EXECUTED 8000b2c: e0 00 00 02 bi 8000b34 <devFS_read+0x5c> <== NOT EXECUTED
return (ssize_t) args.bytes_moved;
8000b30: 2b 81 00 24 lw r1,(sp+36) <== NOT EXECUTED
}
8000b34: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8000b38: 37 9c 00 24 addi sp,sp,36 <== NOT EXECUTED 8000b3c: c3 a0 00 00 ret <== NOT EXECUTED
08000b40 <devFS_stat>: int devFS_stat( rtems_filesystem_location_info_t *loc, struct stat *buf ) {
8000b40: 37 9c ff fc addi sp,sp,-4 8000b44: 5b 9d 00 04 sw (sp+4),ra
rtems_device_name_t *the_dev; the_dev = (rtems_device_name_t *)loc->node_access;
8000b48: 28 21 00 00 lw r1,(r1+0)
if (!the_dev)
8000b4c: 5c 20 00 06 bne r1,r0,8000b64 <devFS_stat+0x24> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( EFAULT );
8000b50: f8 00 1e 1a calli 80083b8 <__errno> <== NOT EXECUTED 8000b54: 34 02 00 0e mvi r2,14 <== NOT EXECUTED 8000b58: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 8000b5c: 34 01 ff ff mvi r1,-1 <== NOT EXECUTED 8000b60: e0 00 00 08 bi 8000b80 <devFS_stat+0x40> <== NOT EXECUTED
buf->st_rdev = rtems_filesystem_make_dev_t( the_dev->major, the_dev->minor );
8000b64: 28 23 00 0c lw r3,(r1+12)
buf->st_mode = the_dev->mode;
8000b68: 28 24 00 10 lw r4,(r1+16)
the_dev = (rtems_device_name_t *)loc->node_access; if (!the_dev) rtems_set_errno_and_return_minus_one( EFAULT ); buf->st_rdev = rtems_filesystem_make_dev_t( the_dev->major, the_dev->minor );
8000b6c: 28 21 00 08 lw r1,(r1+8) 8000b70: 58 43 00 1c sw (r2+28),r3
buf->st_mode = the_dev->mode;
8000b74: 58 44 00 0c sw (r2+12),r4
the_dev = (rtems_device_name_t *)loc->node_access; if (!the_dev) rtems_set_errno_and_return_minus_one( EFAULT ); buf->st_rdev = rtems_filesystem_make_dev_t( the_dev->major, the_dev->minor );
8000b78: 58 41 00 18 sw (r2+24),r1
buf->st_mode = the_dev->mode;
8000b7c: 34 01 00 00 mvi r1,0
return 0; }
8000b80: 2b 9d 00 04 lw ra,(sp+4) 8000b84: 37 9c 00 04 addi sp,sp,4 8000b88: c3 a0 00 00 ret
08000b8c <devFS_write>: ssize_t devFS_write( rtems_libio_t *iop, const void *buffer, size_t count ) {
8000b8c: 37 9c ff dc addi sp,sp,-36 8000b90: 5b 9d 00 04 sw (sp+4),ra 8000b94: b8 20 20 00 mv r4,r1
args.iop = iop; args.offset = iop->offset; args.buffer = (void *) buffer; args.count = count; args.flags = iop->flags;
8000b98: 28 21 00 18 lw r1,(r1+24) 8000b9c: 5b 81 00 20 sw (sp+32),r1
rtems_device_name_t *np; np = (rtems_device_name_t *)iop->file_info; args.iop = iop; args.offset = iop->offset;
8000ba0: 28 81 00 14 lw r1,(r4+20) 8000ba4: 5b 81 00 14 sw (sp+20),r1 8000ba8: 28 81 00 10 lw r1,(r4+16)
args.buffer = (void *) buffer; args.count = count;
8000bac: 5b 83 00 1c sw (sp+28),r3
args.flags = iop->flags; args.bytes_moved = 0;
8000bb0: 34 03 00 00 mvi r3,0
rtems_device_name_t *np; np = (rtems_device_name_t *)iop->file_info; args.iop = iop; args.offset = iop->offset;
8000bb4: 5b 81 00 10 sw (sp+16),r1
{ rtems_libio_rw_args_t args; rtems_status_code status; rtems_device_name_t *np; np = (rtems_device_name_t *)iop->file_info;
8000bb8: 28 81 00 3c lw r1,(r4+60)
args.iop = iop; args.offset = iop->offset; args.buffer = (void *) buffer; args.count = count; args.flags = iop->flags; args.bytes_moved = 0;
8000bbc: 5b 83 00 24 sw (sp+36),r3
np = (rtems_device_name_t *)iop->file_info; args.iop = iop; args.offset = iop->offset; args.buffer = (void *) buffer;
8000bc0: 5b 82 00 18 sw (sp+24),r2
args.count = count; args.flags = iop->flags; args.bytes_moved = 0; status = rtems_io_write(
8000bc4: 28 22 00 0c lw r2,(r1+12) 8000bc8: 28 21 00 08 lw r1,(r1+8) 8000bcc: 37 83 00 08 addi r3,sp,8
rtems_status_code status; rtems_device_name_t *np; np = (rtems_device_name_t *)iop->file_info; args.iop = iop;
8000bd0: 5b 84 00 08 sw (sp+8),r4
args.buffer = (void *) buffer; args.count = count; args.flags = iop->flags; args.bytes_moved = 0; status = rtems_io_write(
8000bd4: f8 00 07 14 calli 8002824 <rtems_io_write>
np->major, np->minor, (void *) &args ); if ( status )
8000bd8: 44 20 00 03 be r1,r0,8000be4 <devFS_write+0x58> <== ALWAYS TAKEN
return rtems_deviceio_errno(status);
8000bdc: f8 00 10 1e calli 8004c54 <rtems_deviceio_errno> <== NOT EXECUTED 8000be0: e0 00 00 02 bi 8000be8 <devFS_write+0x5c> <== NOT EXECUTED
return (ssize_t) args.bytes_moved;
8000be4: 2b 81 00 24 lw r1,(sp+36)
}
8000be8: 2b 9d 00 04 lw ra,(sp+4) 8000bec: 37 9c 00 24 addi sp,sp,36 8000bf0: c3 a0 00 00 ret
080092a8 <device_close>: */ int device_close( rtems_libio_t *iop ) {
80092a8: 37 9c ff f0 addi sp,sp,-16 80092ac: 5b 9d 00 04 sw (sp+4),ra
rtems_libio_open_close_args_t args; rtems_status_code status; IMFS_jnode_t *the_jnode; the_jnode = iop->file_info;
80092b0: 28 23 00 3c lw r3,(r1+60)
args.iop = iop; args.flags = 0;
80092b4: 34 02 00 00 mvi r2,0
rtems_status_code status; IMFS_jnode_t *the_jnode; the_jnode = iop->file_info; args.iop = iop;
80092b8: 5b 81 00 08 sw (sp+8),r1
args.flags = 0; args.mode = 0;
80092bc: 5b 82 00 10 sw (sp+16),r2
IMFS_jnode_t *the_jnode; the_jnode = iop->file_info; args.iop = iop; args.flags = 0;
80092c0: 5b 82 00 0c sw (sp+12),r2
args.mode = 0; status = rtems_io_close(
80092c4: 28 62 00 54 lw r2,(r3+84) 80092c8: 28 61 00 50 lw r1,(r3+80) 80092cc: 37 83 00 08 addi r3,sp,8 80092d0: f8 00 04 61 calli 800a454 <rtems_io_close>
the_jnode->info.device.major, the_jnode->info.device.minor, (void *) &args ); if ( status ) {
80092d4: b8 20 10 00 mv r2,r1
80092d8: 44 20 00 03 be r1,r0,80092e4 <device_close+0x3c> <== ALWAYS TAKEN
return rtems_deviceio_errno(status);
80092dc: f8 00 06 20 calli 800ab5c <rtems_deviceio_errno> <== NOT EXECUTED 80092e0: b8 20 10 00 mv r2,r1 <== NOT EXECUTED
} return 0; }
80092e4: b8 40 08 00 mv r1,r2 80092e8: 2b 9d 00 04 lw ra,(sp+4) 80092ec: 37 9c 00 10 addi sp,sp,16 80092f0: c3 a0 00 00 ret
0800919c <device_ioctl>: int device_ioctl( rtems_libio_t *iop, uint32_t command, void *buffer ) {
800919c: 37 9c ff ec addi sp,sp,-20 80091a0: 5b 9d 00 04 sw (sp+4),ra
args.iop = iop; args.command = command; args.buffer = buffer; the_jnode = iop->file_info;
80091a4: 28 24 00 3c lw r4,(r1+60)
rtems_libio_ioctl_args_t args; rtems_status_code status; IMFS_jnode_t *the_jnode; args.iop = iop; args.command = command;
80091a8: 5b 82 00 0c sw (sp+12),r2
args.buffer = buffer;
80091ac: 5b 83 00 10 sw (sp+16),r3
{ rtems_libio_ioctl_args_t args; rtems_status_code status; IMFS_jnode_t *the_jnode; args.iop = iop;
80091b0: 5b 81 00 08 sw (sp+8),r1
args.command = command; args.buffer = buffer; the_jnode = iop->file_info; status = rtems_io_control(
80091b4: 28 82 00 54 lw r2,(r4+84) 80091b8: 28 81 00 50 lw r1,(r4+80) 80091bc: 37 83 00 08 addi r3,sp,8 80091c0: f8 00 04 ca calli 800a4e8 <rtems_io_control>
the_jnode->info.device.major, the_jnode->info.device.minor, (void *) &args ); if ( status )
80091c4: 44 20 00 03 be r1,r0,80091d0 <device_ioctl+0x34> <== ALWAYS TAKEN
return rtems_deviceio_errno(status);
80091c8: f8 00 06 65 calli 800ab5c <rtems_deviceio_errno> <== NOT EXECUTED 80091cc: e0 00 00 02 bi 80091d4 <device_ioctl+0x38> <== NOT EXECUTED
return args.ioctl_return;
80091d0: 2b 81 00 14 lw r1,(sp+20)
}
80091d4: 2b 9d 00 04 lw ra,(sp+4) 80091d8: 37 9c 00 14 addi sp,sp,20 80091dc: c3 a0 00 00 ret
080092f4 <device_open>: rtems_libio_t *iop, const char *pathname, uint32_t flag, uint32_t mode ) {
80092f4: 37 9c ff f0 addi sp,sp,-16 80092f8: 5b 9d 00 04 sw (sp+4),ra
IMFS_jnode_t *the_jnode; the_jnode = iop->file_info; args.iop = iop; args.flags = iop->flags;
80092fc: 28 22 00 18 lw r2,(r1+24)
{ rtems_libio_open_close_args_t args; rtems_status_code status; IMFS_jnode_t *the_jnode; the_jnode = iop->file_info;
8009300: 28 23 00 3c lw r3,(r1+60)
args.iop = iop; args.flags = iop->flags; args.mode = mode;
8009304: 5b 84 00 10 sw (sp+16),r4
IMFS_jnode_t *the_jnode; the_jnode = iop->file_info; args.iop = iop; args.flags = iop->flags;
8009308: 5b 82 00 0c sw (sp+12),r2
rtems_status_code status; IMFS_jnode_t *the_jnode; the_jnode = iop->file_info; args.iop = iop;
800930c: 5b 81 00 08 sw (sp+8),r1
args.flags = iop->flags; args.mode = mode; status = rtems_io_open(
8009310: 28 62 00 54 lw r2,(r3+84) 8009314: 28 61 00 50 lw r1,(r3+80) 8009318: 37 83 00 08 addi r3,sp,8 800931c: f8 00 04 98 calli 800a57c <rtems_io_open>
the_jnode->info.device.major, the_jnode->info.device.minor, (void *) &args ); if ( status )
8009320: b8 20 10 00 mv r2,r1
8009324: 44 20 00 03 be r1,r0,8009330 <device_open+0x3c> <== ALWAYS TAKEN
return rtems_deviceio_errno(status);
8009328: f8 00 06 0d calli 800ab5c <rtems_deviceio_errno> <== NOT EXECUTED 800932c: b8 20 10 00 mv r2,r1 <== NOT EXECUTED
return 0; }
8009330: b8 40 08 00 mv r1,r2 8009334: 2b 9d 00 04 lw ra,(sp+4) 8009338: 37 9c 00 10 addi sp,sp,16 800933c: c3 a0 00 00 ret
08009244 <device_read>: ssize_t device_read( rtems_libio_t *iop, void *buffer, size_t count ) {
8009244: 37 9c ff dc addi sp,sp,-36 <== NOT EXECUTED 8009248: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
args.iop = iop; args.offset = iop->offset; args.buffer = buffer; args.count = count; args.flags = iop->flags;
800924c: 28 24 00 18 lw r4,(r1+24) <== NOT EXECUTED 8009250: 5b 84 00 20 sw (sp+32),r4 <== NOT EXECUTED
IMFS_jnode_t *the_jnode; the_jnode = iop->file_info; args.iop = iop; args.offset = iop->offset;
8009254: 28 24 00 14 lw r4,(r1+20) <== NOT EXECUTED 8009258: 5b 84 00 14 sw (sp+20),r4 <== NOT EXECUTED 800925c: 28 24 00 10 lw r4,(r1+16) <== NOT EXECUTED
args.buffer = buffer;
8009260: 5b 82 00 18 sw (sp+24),r2 <== NOT EXECUTED
args.count = count; args.flags = iop->flags; args.bytes_moved = 0;
8009264: 34 02 00 00 mvi r2,0 <== NOT EXECUTED
IMFS_jnode_t *the_jnode; the_jnode = iop->file_info; args.iop = iop; args.offset = iop->offset;
8009268: 5b 84 00 10 sw (sp+16),r4 <== NOT EXECUTED
{ rtems_libio_rw_args_t args; rtems_status_code status; IMFS_jnode_t *the_jnode; the_jnode = iop->file_info;
800926c: 28 24 00 3c lw r4,(r1+60) <== NOT EXECUTED
args.iop = iop; args.offset = iop->offset; args.buffer = buffer; args.count = count;
8009270: 5b 83 00 1c sw (sp+28),r3 <== NOT EXECUTED
args.flags = iop->flags; args.bytes_moved = 0;
8009274: 5b 82 00 24 sw (sp+36),r2 <== NOT EXECUTED
rtems_status_code status; IMFS_jnode_t *the_jnode; the_jnode = iop->file_info; args.iop = iop;
8009278: 5b 81 00 08 sw (sp+8),r1 <== NOT EXECUTED
args.buffer = buffer; args.count = count; args.flags = iop->flags; args.bytes_moved = 0; status = rtems_io_read(
800927c: 28 82 00 54 lw r2,(r4+84) <== NOT EXECUTED 8009280: 28 81 00 50 lw r1,(r4+80) <== NOT EXECUTED 8009284: 37 83 00 08 addi r3,sp,8 <== NOT EXECUTED 8009288: f8 00 04 e2 calli 800a610 <rtems_io_read> <== NOT EXECUTED
the_jnode->info.device.major, the_jnode->info.device.minor, (void *) &args ); if ( status )
800928c: 44 20 00 03 be r1,r0,8009298 <device_read+0x54> <== NOT EXECUTED
return rtems_deviceio_errno(status);
8009290: f8 00 06 33 calli 800ab5c <rtems_deviceio_errno> <== NOT EXECUTED 8009294: e0 00 00 02 bi 800929c <device_read+0x58> <== NOT EXECUTED
return (ssize_t) args.bytes_moved;
8009298: 2b 81 00 24 lw r1,(sp+36) <== NOT EXECUTED
}
800929c: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 80092a0: 37 9c 00 24 addi sp,sp,36 <== NOT EXECUTED 80092a4: c3 a0 00 00 ret <== NOT EXECUTED
080091e0 <device_write>: ssize_t device_write( rtems_libio_t *iop, const void *buffer, size_t count ) {
80091e0: 37 9c ff dc addi sp,sp,-36 80091e4: 5b 9d 00 04 sw (sp+4),ra
args.iop = iop; args.offset = iop->offset; args.buffer = (void *) buffer; args.count = count; args.flags = iop->flags;
80091e8: 28 24 00 18 lw r4,(r1+24) 80091ec: 5b 84 00 20 sw (sp+32),r4
IMFS_jnode_t *the_jnode; the_jnode = iop->file_info; args.iop = iop; args.offset = iop->offset;
80091f0: 28 24 00 14 lw r4,(r1+20) 80091f4: 5b 84 00 14 sw (sp+20),r4 80091f8: 28 24 00 10 lw r4,(r1+16)
args.buffer = (void *) buffer;
80091fc: 5b 82 00 18 sw (sp+24),r2
args.count = count; args.flags = iop->flags; args.bytes_moved = 0;
8009200: 34 02 00 00 mvi r2,0
IMFS_jnode_t *the_jnode; the_jnode = iop->file_info; args.iop = iop; args.offset = iop->offset;
8009204: 5b 84 00 10 sw (sp+16),r4
{ rtems_libio_rw_args_t args; rtems_status_code status; IMFS_jnode_t *the_jnode; the_jnode = iop->file_info;
8009208: 28 24 00 3c lw r4,(r1+60)
args.iop = iop; args.offset = iop->offset; args.buffer = (void *) buffer; args.count = count;
800920c: 5b 83 00 1c sw (sp+28),r3
args.flags = iop->flags; args.bytes_moved = 0;
8009210: 5b 82 00 24 sw (sp+36),r2
rtems_status_code status; IMFS_jnode_t *the_jnode; the_jnode = iop->file_info; args.iop = iop;
8009214: 5b 81 00 08 sw (sp+8),r1
args.buffer = (void *) buffer; args.count = count; args.flags = iop->flags; args.bytes_moved = 0; status = rtems_io_write(
8009218: 28 82 00 54 lw r2,(r4+84) 800921c: 28 81 00 50 lw r1,(r4+80) 8009220: 37 83 00 08 addi r3,sp,8 8009224: f8 00 05 20 calli 800a6a4 <rtems_io_write>
the_jnode->info.device.major, the_jnode->info.device.minor, (void *) &args ); if ( status )
8009228: 44 20 00 03 be r1,r0,8009234 <device_write+0x54> <== ALWAYS TAKEN
return rtems_deviceio_errno(status);
800922c: f8 00 06 4c calli 800ab5c <rtems_deviceio_errno> <== NOT EXECUTED 8009230: e0 00 00 02 bi 8009238 <device_write+0x58> <== NOT EXECUTED
return (ssize_t) args.bytes_moved;
8009234: 2b 81 00 24 lw r1,(sp+36)
}
8009238: 2b 9d 00 04 lw ra,(sp+4) 800923c: 37 9c 00 24 addi sp,sp,36 8009240: c3 a0 00 00 ret
080047c0 <drainOutput>: /* * Drain output queue */ static void drainOutput (struct rtems_termios_tty *tty) {
80047c0: 37 9c ff f0 addi sp,sp,-16 80047c4: 5b 8b 00 10 sw (sp+16),r11 80047c8: 5b 8c 00 0c sw (sp+12),r12 80047cc: 5b 8d 00 08 sw (sp+8),r13 80047d0: 5b 9d 00 04 sw (sp+4),ra 80047d4: b8 20 58 00 mv r11,r1
rtems_interrupt_level level; rtems_status_code sc; if (tty->device.outputUsesInterrupts != TERMIOS_POLLED) {
80047d8: 28 21 00 b4 lw r1,(r1+180)
80047dc: 44 20 00 17 be r1,r0,8004838 <drainOutput+0x78> <== ALWAYS TAKEN
rtems_interrupt_disable (level);
80047e0: 90 00 08 00 rcsr r1,IE <== NOT EXECUTED 80047e4: 34 02 ff fe mvi r2,-2 <== NOT EXECUTED 80047e8: a0 22 10 00 and r2,r1,r2 <== NOT EXECUTED 80047ec: d0 02 00 00 wcsr IE,r2 <== NOT EXECUTED
while (tty->rawOutBuf.Tail != tty->rawOutBuf.Head) { tty->rawOutBufState = rob_wait;
80047f0: 34 0d 00 02 mvi r13,2 <== NOT EXECUTED
sc = rtems_semaphore_obtain (tty->rawOutBuf.Semaphore, RTEMS_WAIT, RTEMS_NO_TIMEOUT); if (sc != RTEMS_SUCCESSFUL) rtems_fatal_error_occurred (sc); rtems_interrupt_disable (level);
80047f4: 34 0c ff fe mvi r12,-2 <== NOT EXECUTED
rtems_interrupt_level level; rtems_status_code sc; if (tty->device.outputUsesInterrupts != TERMIOS_POLLED) { rtems_interrupt_disable (level); while (tty->rawOutBuf.Tail != tty->rawOutBuf.Head) {
80047f8: e0 00 00 0c bi 8004828 <drainOutput+0x68> <== NOT EXECUTED
tty->rawOutBufState = rob_wait;
80047fc: 59 6d 00 94 sw (r11+148),r13 <== NOT EXECUTED
rtems_interrupt_enable (level);
8004800: d0 01 00 00 wcsr IE,r1 <== NOT EXECUTED
sc = rtems_semaphore_obtain (tty->rawOutBuf.Semaphore,
8004804: 29 61 00 8c lw r1,(r11+140) <== NOT EXECUTED 8004808: 34 02 00 00 mvi r2,0 <== NOT EXECUTED 800480c: b8 40 18 00 mv r3,r2 <== NOT EXECUTED 8004810: f8 00 06 81 calli 8006214 <rtems_semaphore_obtain> <== NOT EXECUTED
RTEMS_WAIT, RTEMS_NO_TIMEOUT); if (sc != RTEMS_SUCCESSFUL)
8004814: 44 20 00 02 be r1,r0,800481c <drainOutput+0x5c> <== NOT EXECUTED
rtems_fatal_error_occurred (sc);
8004818: f8 00 08 77 calli 80069f4 <rtems_fatal_error_occurred> <== NOT EXECUTED
rtems_interrupt_disable (level);
800481c: 90 00 08 00 rcsr r1,IE <== NOT EXECUTED 8004820: a0 2c 10 00 and r2,r1,r12 <== NOT EXECUTED 8004824: d0 02 00 00 wcsr IE,r2 <== NOT EXECUTED
rtems_interrupt_level level; rtems_status_code sc; if (tty->device.outputUsesInterrupts != TERMIOS_POLLED) { rtems_interrupt_disable (level); while (tty->rawOutBuf.Tail != tty->rawOutBuf.Head) {
8004828: 29 63 00 84 lw r3,(r11+132) <== NOT EXECUTED 800482c: 29 62 00 80 lw r2,(r11+128) <== NOT EXECUTED 8004830: 5c 62 ff f3 bne r3,r2,80047fc <drainOutput+0x3c> <== NOT EXECUTED
RTEMS_NO_TIMEOUT); if (sc != RTEMS_SUCCESSFUL) rtems_fatal_error_occurred (sc); rtems_interrupt_disable (level); } rtems_interrupt_enable (level);
8004834: d0 01 00 00 wcsr IE,r1 <== NOT EXECUTED
} }
8004838: 2b 9d 00 04 lw ra,(sp+4) 800483c: 2b 8b 00 10 lw r11,(sp+16) 8004840: 2b 8c 00 0c lw r12,(sp+12) 8004844: 2b 8d 00 08 lw r13,(sp+8) 8004848: 37 9c 00 10 addi sp,sp,16 800484c: c3 a0 00 00 ret
08001db0 <dup2>: int dup2( int fildes, int fildes2 ) {
8001db0: 37 9c ff a4 addi sp,sp,-92 8001db4: 5b 8b 00 14 sw (sp+20),r11 8001db8: 5b 8c 00 10 sw (sp+16),r12 8001dbc: 5b 8d 00 0c sw (sp+12),r13 8001dc0: 5b 8e 00 08 sw (sp+8),r14 8001dc4: 5b 9d 00 04 sw (sp+4),ra
/* * If fildes is not valid, then fildes2 should not be closed. */ status = fstat( fildes, &buf );
8001dc8: 37 8d 00 18 addi r13,sp,24
int dup2( int fildes, int fildes2 ) {
8001dcc: b8 40 58 00 mv r11,r2
/* * If fildes is not valid, then fildes2 should not be closed. */ status = fstat( fildes, &buf );
8001dd0: b9 a0 10 00 mv r2,r13
if ( status == -1 )
8001dd4: 34 0c ff ff mvi r12,-1
int dup2( int fildes, int fildes2 ) {
8001dd8: b8 20 70 00 mv r14,r1
/* * If fildes is not valid, then fildes2 should not be closed. */ status = fstat( fildes, &buf );
8001ddc: f8 00 01 f4 calli 80025ac <fstat>
if ( status == -1 )
8001de0: 44 2c 00 0a be r1,r12,8001e08 <dup2+0x58> <== NEVER TAKEN
/* * If fildes2 is not valid, then we should not do anything either. */ status = fstat( fildes2, &buf );
8001de4: b9 a0 10 00 mv r2,r13 8001de8: b9 60 08 00 mv r1,r11 8001dec: f8 00 01 f0 calli 80025ac <fstat>
if ( status == -1 )
8001df0: 44 2c 00 06 be r1,r12,8001e08 <dup2+0x58> <== ALWAYS TAKEN
/* * This fcntl handles everything else. */ return fcntl( fildes, F_DUPFD, fildes2 );
8001df4: b9 c0 08 00 mv r1,r14 <== NOT EXECUTED 8001df8: b9 60 18 00 mv r3,r11 <== NOT EXECUTED 8001dfc: 34 02 00 00 mvi r2,0 <== NOT EXECUTED 8001e00: f8 00 00 ac calli 80020b0 <fcntl> <== NOT EXECUTED 8001e04: e0 00 00 02 bi 8001e0c <dup2+0x5c> <== NOT EXECUTED
8001e08: 34 01 ff ff mvi r1,-1
}
8001e0c: 2b 9d 00 04 lw ra,(sp+4) 8001e10: 2b 8b 00 14 lw r11,(sp+20) 8001e14: 2b 8c 00 10 lw r12,(sp+16) 8001e18: 2b 8d 00 0c lw r13,(sp+12) 8001e1c: 2b 8e 00 08 lw r14,(sp+8) 8001e20: 37 9c 00 5c addi sp,sp,92 8001e24: c3 a0 00 00 ret
080041e0 <echo>: /* * Echo a typed character */ static void echo (unsigned char c, struct rtems_termios_tty *tty) {
80041e0: 37 9c ff f0 addi sp,sp,-16 <== NOT EXECUTED 80041e4: 5b 8b 00 0c sw (sp+12),r11 <== NOT EXECUTED 80041e8: 5b 8c 00 08 sw (sp+8),r12 <== NOT EXECUTED 80041ec: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED 80041f0: b8 40 58 00 mv r11,r2 <== NOT EXECUTED
if ((tty->termios.c_lflag & ECHOCTL) && iscntrl(c) && (c != '\t') && (c != '\n')) {
80041f4: 28 42 00 3c lw r2,(r2+60) <== NOT EXECUTED
/* * Echo a typed character */ static void echo (unsigned char c, struct rtems_termios_tty *tty) {
80041f8: 20 2c 00 ff andi r12,r1,0xff <== NOT EXECUTED
if ((tty->termios.c_lflag & ECHOCTL) && iscntrl(c) && (c != '\t') && (c != '\n')) {
80041fc: 20 41 02 00 andi r1,r2,0x200 <== NOT EXECUTED 8004200: 44 20 00 19 be r1,r0,8004264 <echo+0x84> <== NOT EXECUTED 8004204: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8004208: 38 21 32 c8 ori r1,r1,0x32c8 <== NOT EXECUTED 800420c: 28 21 00 00 lw r1,(r1+0) <== NOT EXECUTED 8004210: 34 02 00 05 mvi r2,5 <== NOT EXECUTED 8004214: b4 2c 08 00 add r1,r1,r12 <== NOT EXECUTED 8004218: 40 21 00 01 lbu r1,(r1+1) <== NOT EXECUTED 800421c: fb ff f4 9f calli 8001498 <__lshrsi3> <== NOT EXECUTED 8004220: 7d 82 00 09 cmpnei r2,r12,9 <== NOT EXECUTED 8004224: a0 22 08 00 and r1,r1,r2 <== NOT EXECUTED 8004228: 44 20 00 0f be r1,r0,8004264 <echo+0x84> <== NOT EXECUTED 800422c: 34 01 00 0a mvi r1,10 <== NOT EXECUTED 8004230: 45 81 00 0d be r12,r1,8004264 <echo+0x84> <== NOT EXECUTED
char echobuf[2]; echobuf[0] = '^';
8004234: 34 04 00 5e mvi r4,94 <== NOT EXECUTED
echobuf[1] = c ^ 0x40; rtems_termios_puts (echobuf, 2, tty);
8004238: 37 81 00 10 addi r1,sp,16 <== NOT EXECUTED
{ if ((tty->termios.c_lflag & ECHOCTL) && iscntrl(c) && (c != '\t') && (c != '\n')) { char echobuf[2]; echobuf[0] = '^'; echobuf[1] = c ^ 0x40;
800423c: 19 8c 00 40 xori r12,r12,0x40 <== NOT EXECUTED
rtems_termios_puts (echobuf, 2, tty);
8004240: 34 02 00 02 mvi r2,2 <== NOT EXECUTED 8004244: b9 60 18 00 mv r3,r11 <== NOT EXECUTED
echo (unsigned char c, struct rtems_termios_tty *tty) { if ((tty->termios.c_lflag & ECHOCTL) && iscntrl(c) && (c != '\t') && (c != '\n')) { char echobuf[2]; echobuf[0] = '^';
8004248: 33 84 00 10 sb (sp+16),r4 <== NOT EXECUTED
echobuf[1] = c ^ 0x40;
800424c: 33 8c 00 11 sb (sp+17),r12 <== NOT EXECUTED
rtems_termios_puts (echobuf, 2, tty);
8004250: fb ff ff 2e calli 8003f08 <rtems_termios_puts> <== NOT EXECUTED
tty->column += 2;
8004254: 29 61 00 28 lw r1,(r11+40) <== NOT EXECUTED 8004258: 34 21 00 02 addi r1,r1,2 <== NOT EXECUTED 800425c: 59 61 00 28 sw (r11+40),r1 <== NOT EXECUTED
* Echo a typed character */ static void echo (unsigned char c, struct rtems_termios_tty *tty) { if ((tty->termios.c_lflag & ECHOCTL) && iscntrl(c) && (c != '\t') && (c != '\n')) {
8004260: e0 00 00 04 bi 8004270 <echo+0x90> <== NOT EXECUTED
echobuf[1] = c ^ 0x40; rtems_termios_puts (echobuf, 2, tty); tty->column += 2; } else { oproc (c, tty);
8004264: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 8004268: b9 60 10 00 mv r2,r11 <== NOT EXECUTED 800426c: fb ff ff 7d calli 8004060 <oproc> <== NOT EXECUTED
} }
8004270: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8004274: 2b 8b 00 0c lw r11,(sp+12) <== NOT EXECUTED 8004278: 2b 8c 00 08 lw r12,(sp+8) <== NOT EXECUTED 800427c: 37 9c 00 10 addi sp,sp,16 <== NOT EXECUTED 8004280: c3 a0 00 00 ret <== NOT EXECUTED
08026c7c <endgrent>: fclose(group_fp); group_fp = fopen("/etc/group", "r"); } void endgrent(void) {
8026c7c: 37 9c ff fc addi sp,sp,-4 <== NOT EXECUTED 8026c80: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
if (group_fp != NULL)
8026c84: 78 01 08 06 mvhi r1,0x806 <== NOT EXECUTED 8026c88: 38 21 ec a0 ori r1,r1,0xeca0 <== NOT EXECUTED 8026c8c: 28 21 00 00 lw r1,(r1+0) <== NOT EXECUTED 8026c90: 44 20 00 02 be r1,r0,8026c98 <endgrent+0x1c> <== NOT EXECUTED
fclose(group_fp);
8026c94: f8 00 6f 82 calli 8042a9c <fclose> <== NOT EXECUTED
}
8026c98: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8026c9c: 37 9c 00 04 addi sp,sp,4 <== NOT EXECUTED 8026ca0: c3 a0 00 00 ret <== NOT EXECUTED
08026ca4 <endpwent>: fclose(passwd_fp); passwd_fp = fopen("/etc/passwd", "r"); } void endpwent(void) {
8026ca4: 37 9c ff fc addi sp,sp,-4 <== NOT EXECUTED 8026ca8: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
if (passwd_fp != NULL)
8026cac: 78 01 08 06 mvhi r1,0x806 <== NOT EXECUTED 8026cb0: 38 21 eb b8 ori r1,r1,0xebb8 <== NOT EXECUTED 8026cb4: 28 21 00 00 lw r1,(r1+0) <== NOT EXECUTED 8026cb8: 44 20 00 02 be r1,r0,8026cc0 <endpwent+0x1c> <== NOT EXECUTED
fclose(passwd_fp);
8026cbc: f8 00 6f 78 calli 8042a9c <fclose> <== NOT EXECUTED
}
8026cc0: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8026cc4: 37 9c 00 04 addi sp,sp,4 <== NOT EXECUTED 8026cc8: c3 a0 00 00 ret <== NOT EXECUTED
08004284 <erase>: * FIXME: Needs support for WERASE and ECHOPRT. * FIXME: Some of the tests should check for IEXTEN, too. */ static void erase (struct rtems_termios_tty *tty, int lineFlag) {
8004284: 37 9c ff e0 addi sp,sp,-32 <== NOT EXECUTED 8004288: 5b 8b 00 20 sw (sp+32),r11 <== NOT EXECUTED 800428c: 5b 8c 00 1c sw (sp+28),r12 <== NOT EXECUTED 8004290: 5b 8d 00 18 sw (sp+24),r13 <== NOT EXECUTED 8004294: 5b 8e 00 14 sw (sp+20),r14 <== NOT EXECUTED 8004298: 5b 8f 00 10 sw (sp+16),r15 <== NOT EXECUTED 800429c: 5b 90 00 0c sw (sp+12),r16 <== NOT EXECUTED 80042a0: 5b 91 00 08 sw (sp+8),r17 <== NOT EXECUTED 80042a4: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED 80042a8: b8 20 58 00 mv r11,r1 <== NOT EXECUTED
if (tty->ccount == 0)
80042ac: 28 21 00 20 lw r1,(r1+32) <== NOT EXECUTED
* FIXME: Needs support for WERASE and ECHOPRT. * FIXME: Some of the tests should check for IEXTEN, too. */ static void erase (struct rtems_termios_tty *tty, int lineFlag) {
80042b0: b8 40 70 00 mv r14,r2 <== NOT EXECUTED
if (tty->ccount == 0)
80042b4: 44 20 00 6f be r1,r0,8004470 <erase+0x1ec> <== NOT EXECUTED
return; if (lineFlag) {
80042b8: 44 40 00 67 be r2,r0,8004454 <erase+0x1d0> <== NOT EXECUTED
if (!(tty->termios.c_lflag & ECHO)) {
80042bc: 29 6c 00 3c lw r12,(r11+60) <== NOT EXECUTED 80042c0: 21 81 00 08 andi r1,r12,0x8 <== NOT EXECUTED 80042c4: 5c 20 00 03 bne r1,r0,80042d0 <erase+0x4c> <== NOT EXECUTED
tty->ccount = 0;
80042c8: 59 61 00 20 sw (r11+32),r1 <== NOT EXECUTED
return;
80042cc: e0 00 00 69 bi 8004470 <erase+0x1ec> <== NOT EXECUTED
} if (!(tty->termios.c_lflag & ECHOE)) {
80042d0: 21 8c 00 10 andi r12,r12,0x10 <== NOT EXECUTED 80042d4: 5d 80 00 60 bne r12,r0,8004454 <erase+0x1d0> <== NOT EXECUTED
tty->ccount = 0; echo (tty->termios.c_cc[VKILL], tty);
80042d8: 41 61 00 44 lbu r1,(r11+68) <== NOT EXECUTED
if (!(tty->termios.c_lflag & ECHO)) { tty->ccount = 0; return; } if (!(tty->termios.c_lflag & ECHOE)) { tty->ccount = 0;
80042dc: 59 6c 00 20 sw (r11+32),r12 <== NOT EXECUTED
echo (tty->termios.c_cc[VKILL], tty);
80042e0: b9 60 10 00 mv r2,r11 <== NOT EXECUTED 80042e4: fb ff ff bf calli 80041e0 <echo> <== NOT EXECUTED
if (tty->termios.c_lflag & ECHOK)
80042e8: 29 61 00 3c lw r1,(r11+60) <== NOT EXECUTED 80042ec: 20 21 00 20 andi r1,r1,0x20 <== NOT EXECUTED 80042f0: 44 2c 00 60 be r1,r12,8004470 <erase+0x1ec> <== NOT EXECUTED
echo ('\n', tty);
80042f4: b9 60 10 00 mv r2,r11 <== NOT EXECUTED 80042f8: 34 01 00 0a mvi r1,10 <== NOT EXECUTED 80042fc: e0 00 00 0e bi 8004334 <erase+0xb0> <== NOT EXECUTED
return; } } while (tty->ccount) { unsigned char c = tty->cbuf[--tty->ccount];
8004300: 29 64 00 1c lw r4,(r11+28) <== NOT EXECUTED
if (tty->termios.c_lflag & ECHO) {
8004304: 29 61 00 3c lw r1,(r11+60) <== NOT EXECUTED
echo ('\n', tty); return; } } while (tty->ccount) { unsigned char c = tty->cbuf[--tty->ccount];
8004308: 34 63 ff ff addi r3,r3,-1 <== NOT EXECUTED 800430c: 59 63 00 20 sw (r11+32),r3 <== NOT EXECUTED 8004310: b4 83 20 00 add r4,r4,r3 <== NOT EXECUTED
if (tty->termios.c_lflag & ECHO) {
8004314: 20 22 00 08 andi r2,r1,0x8 <== NOT EXECUTED
echo ('\n', tty); return; } } while (tty->ccount) { unsigned char c = tty->cbuf[--tty->ccount];
8004318: 40 8c 00 00 lbu r12,(r4+0) <== NOT EXECUTED
if (tty->termios.c_lflag & ECHO) {
800431c: 44 40 00 4c be r2,r0,800444c <erase+0x1c8> <== NOT EXECUTED
if (!lineFlag && !(tty->termios.c_lflag & ECHOE)) {
8004320: 5d c0 00 07 bne r14,r0,800433c <erase+0xb8> <== NOT EXECUTED 8004324: 20 22 00 10 andi r2,r1,0x10 <== NOT EXECUTED 8004328: 5c 4e 00 05 bne r2,r14,800433c <erase+0xb8> <== NOT EXECUTED
echo (tty->termios.c_cc[VERASE], tty);
800432c: 41 61 00 43 lbu r1,(r11+67) <== NOT EXECUTED 8004330: b9 60 10 00 mv r2,r11 <== NOT EXECUTED 8004334: fb ff ff ab calli 80041e0 <echo> <== NOT EXECUTED 8004338: e0 00 00 4e bi 8004470 <erase+0x1ec> <== NOT EXECUTED
} else if (c == '\t') {
800433c: 5d 90 00 22 bne r12,r16,80043c4 <erase+0x140> <== NOT EXECUTED
c = tty->cbuf[i++]; if (c == '\t') { col = (col | 7) + 1; } else if (iscntrl (c)) { if (tty->termios.c_lflag & ECHOCTL)
8004340: 20 21 02 00 andi r1,r1,0x200 <== NOT EXECUTED
if (tty->termios.c_lflag & ECHO) { if (!lineFlag && !(tty->termios.c_lflag & ECHOE)) { echo (tty->termios.c_cc[VERASE], tty); } else if (c == '\t') { int col = tty->read_start_column;
8004344: 29 6c 00 2c lw r12,(r11+44) <== NOT EXECUTED
while (i != tty->ccount) { c = tty->cbuf[i++]; if (c == '\t') { col = (col | 7) + 1; } else if (iscntrl (c)) {
8004348: 29 a5 00 00 lw r5,(r13+0) <== NOT EXECUTED 800434c: 34 02 00 00 mvi r2,0 <== NOT EXECUTED
int i = 0; /* * Find the character before the tab */ while (i != tty->ccount) {
8004350: e0 00 00 10 bi 8004390 <erase+0x10c> <== NOT EXECUTED
c = tty->cbuf[i++];
8004354: 29 64 00 1c lw r4,(r11+28) <== NOT EXECUTED 8004358: b4 82 20 00 add r4,r4,r2 <== NOT EXECUTED 800435c: 40 84 00 00 lbu r4,(r4+0) <== NOT EXECUTED
if (c == '\t') { col = (col | 7) + 1; } else if (iscntrl (c)) {
8004360: b4 a4 30 00 add r6,r5,r4 <== NOT EXECUTED
/* * Find the character before the tab */ while (i != tty->ccount) { c = tty->cbuf[i++]; if (c == '\t') {
8004364: 5c 90 00 03 bne r4,r16,8004370 <erase+0xec> <== NOT EXECUTED
col = (col | 7) + 1;
8004368: 39 8c 00 07 ori r12,r12,0x7 <== NOT EXECUTED 800436c: e0 00 00 07 bi 8004388 <erase+0x104> <== NOT EXECUTED
} else if (iscntrl (c)) {
8004370: 40 c4 00 01 lbu r4,(r6+1) <== NOT EXECUTED 8004374: 20 84 00 20 andi r4,r4,0x20 <== NOT EXECUTED 8004378: 44 80 00 04 be r4,r0,8004388 <erase+0x104> <== NOT EXECUTED
if (tty->termios.c_lflag & ECHOCTL)
800437c: 44 20 00 04 be r1,r0,800438c <erase+0x108> <== NOT EXECUTED
col += 2;
8004380: 35 8c 00 02 addi r12,r12,2 <== NOT EXECUTED 8004384: e0 00 00 02 bi 800438c <erase+0x108> <== NOT EXECUTED
} else { col++;
8004388: 35 8c 00 01 addi r12,r12,1 <== NOT EXECUTED
/* * Find the character before the tab */ while (i != tty->ccount) { c = tty->cbuf[i++];
800438c: 34 42 00 01 addi r2,r2,1 <== NOT EXECUTED
int i = 0; /* * Find the character before the tab */ while (i != tty->ccount) {
8004390: 5c 43 ff f1 bne r2,r3,8004354 <erase+0xd0> <== NOT EXECUTED 8004394: e0 00 00 05 bi 80043a8 <erase+0x124> <== NOT EXECUTED
/* * Back up over the tab */ while (tty->column > col) { rtems_termios_puts ("\b", 1, tty);
8004398: fb ff fe dc calli 8003f08 <rtems_termios_puts> <== NOT EXECUTED
tty->column--;
800439c: 29 61 00 28 lw r1,(r11+40) <== NOT EXECUTED 80043a0: 34 21 ff ff addi r1,r1,-1 <== NOT EXECUTED 80043a4: 59 61 00 28 sw (r11+40),r1 <== NOT EXECUTED
} /* * Back up over the tab */ while (tty->column > col) {
80043a8: 29 64 00 28 lw r4,(r11+40) <== NOT EXECUTED
rtems_termios_puts ("\b", 1, tty);
80043ac: ba 20 08 00 mv r1,r17 <== NOT EXECUTED 80043b0: 38 21 13 e4 ori r1,r1,0x13e4 <== NOT EXECUTED 80043b4: 34 02 00 01 mvi r2,1 <== NOT EXECUTED 80043b8: b9 60 18 00 mv r3,r11 <== NOT EXECUTED
} /* * Back up over the tab */ while (tty->column > col) {
80043bc: 48 8c ff f7 bg r4,r12,8004398 <erase+0x114> <== NOT EXECUTED 80043c0: e0 00 00 23 bi 800444c <erase+0x1c8> <== NOT EXECUTED
rtems_termios_puts ("\b", 1, tty); tty->column--; } } else { if (iscntrl (c) && (tty->termios.c_lflag & ECHOCTL)) {
80043c4: 29 a2 00 00 lw r2,(r13+0) <== NOT EXECUTED 80043c8: 35 8c 00 01 addi r12,r12,1 <== NOT EXECUTED 80043cc: b4 4c 10 00 add r2,r2,r12 <== NOT EXECUTED 80043d0: 40 42 00 00 lbu r2,(r2+0) <== NOT EXECUTED 80043d4: 20 42 00 20 andi r2,r2,0x20 <== NOT EXECUTED 80043d8: 44 40 00 0c be r2,r0,8004408 <erase+0x184> <== NOT EXECUTED 80043dc: 20 21 02 00 andi r1,r1,0x200 <== NOT EXECUTED 80043e0: 44 20 00 0a be r1,r0,8004408 <erase+0x184> <== NOT EXECUTED
rtems_termios_puts ("\b \b", 3, tty);
80043e4: b9 e0 08 00 mv r1,r15 <== NOT EXECUTED 80043e8: 38 21 13 e8 ori r1,r1,0x13e8 <== NOT EXECUTED 80043ec: 34 02 00 03 mvi r2,3 <== NOT EXECUTED 80043f0: b9 60 18 00 mv r3,r11 <== NOT EXECUTED 80043f4: fb ff fe c5 calli 8003f08 <rtems_termios_puts> <== NOT EXECUTED
if (tty->column)
80043f8: 29 61 00 28 lw r1,(r11+40) <== NOT EXECUTED 80043fc: 44 20 00 03 be r1,r0,8004408 <erase+0x184> <== NOT EXECUTED
tty->column--;
8004400: 34 21 ff ff addi r1,r1,-1 <== NOT EXECUTED 8004404: 59 61 00 28 sw (r11+40),r1 <== NOT EXECUTED
} if (!iscntrl (c) || (tty->termios.c_lflag & ECHOCTL)) {
8004408: 29 a1 00 00 lw r1,(r13+0) <== NOT EXECUTED 800440c: b4 2c 60 00 add r12,r1,r12 <== NOT EXECUTED 8004410: 41 81 00 00 lbu r1,(r12+0) <== NOT EXECUTED 8004414: 20 21 00 20 andi r1,r1,0x20 <== NOT EXECUTED 8004418: 44 20 00 04 be r1,r0,8004428 <erase+0x1a4> <== NOT EXECUTED 800441c: 29 61 00 3c lw r1,(r11+60) <== NOT EXECUTED 8004420: 20 21 02 00 andi r1,r1,0x200 <== NOT EXECUTED 8004424: 44 20 00 0a be r1,r0,800444c <erase+0x1c8> <== NOT EXECUTED
rtems_termios_puts ("\b \b", 3, tty);
8004428: b9 e0 08 00 mv r1,r15 <== NOT EXECUTED 800442c: 38 21 13 e8 ori r1,r1,0x13e8 <== NOT EXECUTED 8004430: 34 02 00 03 mvi r2,3 <== NOT EXECUTED 8004434: b9 60 18 00 mv r3,r11 <== NOT EXECUTED 8004438: fb ff fe b4 calli 8003f08 <rtems_termios_puts> <== NOT EXECUTED
if (tty->column)
800443c: 29 61 00 28 lw r1,(r11+40) <== NOT EXECUTED 8004440: 44 20 00 03 be r1,r0,800444c <erase+0x1c8> <== NOT EXECUTED
tty->column--;
8004444: 34 21 ff ff addi r1,r1,-1 <== NOT EXECUTED 8004448: 59 61 00 28 sw (r11+40),r1 <== NOT EXECUTED
} } } if (!lineFlag)
800444c: 5d c0 00 07 bne r14,r0,8004468 <erase+0x1e4> <== NOT EXECUTED 8004450: e0 00 00 08 bi 8004470 <erase+0x1ec> <== NOT EXECUTED 8004454: 78 0d 08 02 mvhi r13,0x802 <== NOT EXECUTED 8004458: 39 ad 32 c8 ori r13,r13,0x32c8 <== NOT EXECUTED
if (tty->termios.c_lflag & ECHO) { if (!lineFlag && !(tty->termios.c_lflag & ECHOE)) { echo (tty->termios.c_cc[VERASE], tty); } else if (c == '\t') {
800445c: 34 10 00 09 mvi r16,9 <== NOT EXECUTED
rtems_termios_puts ("\b \b", 3, tty); if (tty->column) tty->column--; } if (!iscntrl (c) || (tty->termios.c_lflag & ECHOCTL)) { rtems_termios_puts ("\b \b", 3, tty);
8004460: 78 0f 08 02 mvhi r15,0x802 <== NOT EXECUTED
/* * Back up over the tab */ while (tty->column > col) { rtems_termios_puts ("\b", 1, tty);
8004464: 78 11 08 02 mvhi r17,0x802 <== NOT EXECUTED
if (tty->termios.c_lflag & ECHOK) echo ('\n', tty); return; } } while (tty->ccount) {
8004468: 29 63 00 20 lw r3,(r11+32) <== NOT EXECUTED 800446c: 5c 60 ff a5 bne r3,r0,8004300 <erase+0x7c> <== NOT EXECUTED
} } if (!lineFlag) break; } }
8004470: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8004474: 2b 8b 00 20 lw r11,(sp+32) <== NOT EXECUTED 8004478: 2b 8c 00 1c lw r12,(sp+28) <== NOT EXECUTED 800447c: 2b 8d 00 18 lw r13,(sp+24) <== NOT EXECUTED 8004480: 2b 8e 00 14 lw r14,(sp+20) <== NOT EXECUTED 8004484: 2b 8f 00 10 lw r15,(sp+16) <== NOT EXECUTED 8004488: 2b 90 00 0c lw r16,(sp+12) <== NOT EXECUTED 800448c: 2b 91 00 08 lw r17,(sp+8) <== NOT EXECUTED 8004490: 37 9c 00 20 addi sp,sp,32 <== NOT EXECUTED 8004494: c3 a0 00 00 ret <== NOT EXECUTED
0803bb70 <fchdir>: #include <rtems/seterr.h> int fchdir( int fd ) {
803bb70: 37 9c ff c0 addi sp,sp,-64 <== NOT EXECUTED 803bb74: 5b 8b 00 18 sw (sp+24),r11 <== NOT EXECUTED 803bb78: 5b 8c 00 14 sw (sp+20),r12 <== NOT EXECUTED 803bb7c: 5b 8d 00 10 sw (sp+16),r13 <== NOT EXECUTED 803bb80: 5b 8e 00 0c sw (sp+12),r14 <== NOT EXECUTED 803bb84: 5b 8f 00 08 sw (sp+8),r15 <== NOT EXECUTED 803bb88: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
rtems_libio_t *iop; rtems_filesystem_location_info_t loc, saved; rtems_libio_check_fd( fd );
803bb8c: 78 02 08 06 mvhi r2,0x806 <== NOT EXECUTED 803bb90: 38 42 b0 10 ori r2,r2,0xb010 <== NOT EXECUTED 803bb94: 28 42 00 00 lw r2,(r2+0) <== NOT EXECUTED 803bb98: 54 41 00 02 bgu r2,r1,803bba0 <fchdir+0x30> <== NOT EXECUTED 803bb9c: e0 00 00 0e bi 803bbd4 <fchdir+0x64> <== NOT EXECUTED
iop = rtems_libio_iop( fd );
803bba0: 34 02 00 03 mvi r2,3 <== NOT EXECUTED 803bba4: fb ff 15 65 calli 8001138 <__ashlsi3> <== NOT EXECUTED 803bba8: 34 02 00 03 mvi r2,3 <== NOT EXECUTED 803bbac: 78 0b 08 06 mvhi r11,0x806 <== NOT EXECUTED 803bbb0: b8 20 60 00 mv r12,r1 <== NOT EXECUTED 803bbb4: 39 6b ee 90 ori r11,r11,0xee90 <== NOT EXECUTED 803bbb8: fb ff 15 60 calli 8001138 <__ashlsi3> <== NOT EXECUTED 803bbbc: 29 62 00 00 lw r2,(r11+0) <== NOT EXECUTED 803bbc0: b5 81 08 00 add r1,r12,r1 <== NOT EXECUTED 803bbc4: b4 41 10 00 add r2,r2,r1 <== NOT EXECUTED
rtems_libio_check_is_open(iop);
803bbc8: 28 41 00 18 lw r1,(r2+24) <== NOT EXECUTED 803bbcc: 20 23 01 00 andi r3,r1,0x100 <== NOT EXECUTED 803bbd0: 5c 60 00 04 bne r3,r0,803bbe0 <fchdir+0x70> <== NOT EXECUTED 803bbd4: f8 00 1b 50 calli 8042914 <__errno> <== NOT EXECUTED 803bbd8: 34 02 00 09 mvi r2,9 <== NOT EXECUTED 803bbdc: e0 00 00 15 bi 803bc30 <fchdir+0xc0> <== NOT EXECUTED
/* * Now process the fchmod(). */ rtems_libio_check_permissions( iop, LIBIO_FLAGS_READ );
803bbe0: 20 21 00 02 andi r1,r1,0x2 <== NOT EXECUTED 803bbe4: 5c 20 00 04 bne r1,r0,803bbf4 <fchdir+0x84> <== NOT EXECUTED 803bbe8: f8 00 1b 4b calli 8042914 <__errno> <== NOT EXECUTED 803bbec: 34 02 00 16 mvi r2,22 <== NOT EXECUTED 803bbf0: e0 00 00 10 bi 803bc30 <fchdir+0xc0> <== NOT EXECUTED
/* * Verify you can change directory into this node. */ if ( !iop->pathinfo.ops ) {
803bbf4: 28 41 00 28 lw r1,(r2+40) <== NOT EXECUTED 803bbf8: 44 20 00 03 be r1,r0,803bc04 <fchdir+0x94> <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( ENOTSUP ); } if ( !iop->pathinfo.ops->node_type_h ) {
803bbfc: 28 23 00 10 lw r3,(r1+16) <== NOT EXECUTED 803bc00: 5c 60 00 04 bne r3,r0,803bc10 <fchdir+0xa0> <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( ENOTSUP );
803bc04: f8 00 1b 44 calli 8042914 <__errno> <== NOT EXECUTED 803bc08: 34 02 00 86 mvi r2,134 <== NOT EXECUTED 803bc0c: e0 00 00 09 bi 803bc30 <fchdir+0xc0> <== NOT EXECUTED
} if ( (*iop->pathinfo.ops->node_type_h)( &iop->pathinfo ) !=
803bc10: 34 4e 00 1c addi r14,r2,28 <== NOT EXECUTED 803bc14: b9 c0 08 00 mv r1,r14 <== NOT EXECUTED 803bc18: d8 60 00 00 call r3 <== NOT EXECUTED 803bc1c: b8 20 68 00 mv r13,r1 <== NOT EXECUTED 803bc20: 34 01 00 01 mvi r1,1 <== NOT EXECUTED 803bc24: 45 a1 00 05 be r13,r1,803bc38 <fchdir+0xc8> <== NOT EXECUTED
RTEMS_FILESYSTEM_DIRECTORY ) { rtems_set_errno_and_return_minus_one( ENOTDIR );
803bc28: f8 00 1b 3b calli 8042914 <__errno> <== NOT EXECUTED 803bc2c: 34 02 00 14 mvi r2,20 <== NOT EXECUTED 803bc30: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 803bc34: e0 00 00 1b bi 803bca0 <fchdir+0x130> <== NOT EXECUTED
* but note the race condition. Threads who * share their rtems_filesystem_current better * be synchronized! */ saved = rtems_filesystem_current;
803bc38: 78 0b 08 06 mvhi r11,0x806 <== NOT EXECUTED 803bc3c: 39 6b b2 f0 ori r11,r11,0xb2f0 <== NOT EXECUTED 803bc40: 29 6f 00 00 lw r15,(r11+0) <== NOT EXECUTED 803bc44: 37 8c 00 1c addi r12,sp,28 <== NOT EXECUTED 803bc48: 34 03 00 14 mvi r3,20 <== NOT EXECUTED 803bc4c: 35 ef 00 04 addi r15,r15,4 <== NOT EXECUTED 803bc50: b9 e0 10 00 mv r2,r15 <== NOT EXECUTED 803bc54: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 803bc58: f8 00 29 d1 calli 804639c <memcpy> <== NOT EXECUTED
rtems_filesystem_current = iop->pathinfo;
803bc5c: b9 c0 10 00 mv r2,r14 <== NOT EXECUTED 803bc60: 34 03 00 14 mvi r3,20 <== NOT EXECUTED 803bc64: b9 e0 08 00 mv r1,r15 <== NOT EXECUTED 803bc68: f8 00 29 cd calli 804639c <memcpy> <== NOT EXECUTED
/* clone the current node */ if (rtems_filesystem_evaluate_path(".", 1, 0, &loc, 0)) {
803bc6c: 34 03 00 00 mvi r3,0 <== NOT EXECUTED 803bc70: 78 01 08 06 mvhi r1,0x806 <== NOT EXECUTED 803bc74: 38 21 12 34 ori r1,r1,0x1234 <== NOT EXECUTED 803bc78: b9 a0 10 00 mv r2,r13 <== NOT EXECUTED 803bc7c: 37 84 00 30 addi r4,sp,48 <== NOT EXECUTED 803bc80: b8 60 28 00 mv r5,r3 <== NOT EXECUTED 803bc84: fb ff 29 64 calli 8006214 <rtems_filesystem_evaluate_path> <== NOT EXECUTED 803bc88: 44 20 00 08 be r1,r0,803bca8 <fchdir+0x138> <== NOT EXECUTED
/* cloning failed; restore original and bail out */ rtems_filesystem_current = saved;
803bc8c: 29 61 00 00 lw r1,(r11+0) <== NOT EXECUTED 803bc90: b9 80 10 00 mv r2,r12 <== NOT EXECUTED 803bc94: 34 03 00 14 mvi r3,20 <== NOT EXECUTED 803bc98: 34 21 00 04 addi r1,r1,4 <== NOT EXECUTED 803bc9c: f8 00 29 c0 calli 804639c <memcpy> <== NOT EXECUTED 803bca0: 34 01 ff ff mvi r1,-1 <== NOT EXECUTED
return -1;
803bca4: e0 00 00 0f bi 803bce0 <fchdir+0x170> <== NOT EXECUTED
} /* release the old one */ rtems_filesystem_freenode( &saved );
803bca8: 2b 82 00 28 lw r2,(sp+40) <== NOT EXECUTED 803bcac: 44 41 00 05 be r2,r1,803bcc0 <fchdir+0x150> <== NOT EXECUTED 803bcb0: 28 42 00 1c lw r2,(r2+28) <== NOT EXECUTED 803bcb4: 44 40 00 03 be r2,r0,803bcc0 <fchdir+0x150> <== NOT EXECUTED 803bcb8: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 803bcbc: d8 40 00 00 call r2 <== NOT EXECUTED
rtems_filesystem_current = loc;
803bcc0: 78 01 08 06 mvhi r1,0x806 <== NOT EXECUTED 803bcc4: 38 21 b2 f0 ori r1,r1,0xb2f0 <== NOT EXECUTED 803bcc8: 28 21 00 00 lw r1,(r1+0) <== NOT EXECUTED 803bccc: 37 82 00 30 addi r2,sp,48 <== NOT EXECUTED 803bcd0: 34 03 00 14 mvi r3,20 <== NOT EXECUTED 803bcd4: 34 21 00 04 addi r1,r1,4 <== NOT EXECUTED 803bcd8: f8 00 29 b1 calli 804639c <memcpy> <== NOT EXECUTED 803bcdc: 34 01 00 00 mvi r1,0 <== NOT EXECUTED
return 0; }
803bce0: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 803bce4: 2b 8b 00 18 lw r11,(sp+24) <== NOT EXECUTED 803bce8: 2b 8c 00 14 lw r12,(sp+20) <== NOT EXECUTED 803bcec: 2b 8d 00 10 lw r13,(sp+16) <== NOT EXECUTED 803bcf0: 2b 8e 00 0c lw r14,(sp+12) <== NOT EXECUTED 803bcf4: 2b 8f 00 08 lw r15,(sp+8) <== NOT EXECUTED 803bcf8: 37 9c 00 40 addi sp,sp,64 <== NOT EXECUTED 803bcfc: c3 a0 00 00 ret <== NOT EXECUTED
080267b8 <fchmod>: int fchmod( int fd, mode_t mode ) {
80267b8: 37 9c ff f0 addi sp,sp,-16 <== NOT EXECUTED 80267bc: 5b 8b 00 10 sw (sp+16),r11 <== NOT EXECUTED 80267c0: 5b 8c 00 0c sw (sp+12),r12 <== NOT EXECUTED 80267c4: 5b 8d 00 08 sw (sp+8),r13 <== NOT EXECUTED 80267c8: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
rtems_libio_t *iop; rtems_libio_check_fd( fd );
80267cc: 78 03 08 06 mvhi r3,0x806 <== NOT EXECUTED 80267d0: 38 63 b0 10 ori r3,r3,0xb010 <== NOT EXECUTED 80267d4: 28 63 00 00 lw r3,(r3+0) <== NOT EXECUTED
int fchmod( int fd, mode_t mode ) {
80267d8: b8 40 60 00 mv r12,r2 <== NOT EXECUTED
rtems_libio_t *iop; rtems_libio_check_fd( fd );
80267dc: 54 61 00 02 bgu r3,r1,80267e4 <fchmod+0x2c> <== NOT EXECUTED 80267e0: e0 00 00 0e bi 8026818 <fchmod+0x60> <== NOT EXECUTED
iop = rtems_libio_iop( fd );
80267e4: 34 02 00 03 mvi r2,3 <== NOT EXECUTED 80267e8: fb ff 6a 54 calli 8001138 <__ashlsi3> <== NOT EXECUTED 80267ec: 34 02 00 03 mvi r2,3 <== NOT EXECUTED 80267f0: 78 0b 08 06 mvhi r11,0x806 <== NOT EXECUTED 80267f4: b8 20 68 00 mv r13,r1 <== NOT EXECUTED 80267f8: 39 6b ee 90 ori r11,r11,0xee90 <== NOT EXECUTED 80267fc: fb ff 6a 4f calli 8001138 <__ashlsi3> <== NOT EXECUTED 8026800: 29 62 00 00 lw r2,(r11+0) <== NOT EXECUTED 8026804: b5 a1 08 00 add r1,r13,r1 <== NOT EXECUTED 8026808: b4 41 08 00 add r1,r2,r1 <== NOT EXECUTED
rtems_libio_check_is_open(iop);
802680c: 28 23 00 18 lw r3,(r1+24) <== NOT EXECUTED 8026810: 20 62 01 00 andi r2,r3,0x100 <== NOT EXECUTED 8026814: 5c 40 00 04 bne r2,r0,8026824 <fchmod+0x6c> <== NOT EXECUTED 8026818: f8 00 70 3f calli 8042914 <__errno> <== NOT EXECUTED 802681c: 34 02 00 09 mvi r2,9 <== NOT EXECUTED 8026820: e0 00 00 0b bi 802684c <fchmod+0x94> <== NOT EXECUTED
/* * Now process the fchmod(). */ rtems_libio_check_permissions( iop, LIBIO_FLAGS_WRITE );
8026824: 20 63 00 04 andi r3,r3,0x4 <== NOT EXECUTED 8026828: 5c 60 00 04 bne r3,r0,8026838 <fchmod+0x80> <== NOT EXECUTED 802682c: f8 00 70 3a calli 8042914 <__errno> <== NOT EXECUTED 8026830: 34 02 00 16 mvi r2,22 <== NOT EXECUTED 8026834: e0 00 00 06 bi 802684c <fchmod+0x94> <== NOT EXECUTED
if ( !iop->handlers->fchmod_h )
8026838: 28 22 00 40 lw r2,(r1+64) <== NOT EXECUTED 802683c: 28 42 00 1c lw r2,(r2+28) <== NOT EXECUTED 8026840: 5c 40 00 06 bne r2,r0,8026858 <fchmod+0xa0> <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( ENOTSUP );
8026844: f8 00 70 34 calli 8042914 <__errno> <== NOT EXECUTED 8026848: 34 02 00 86 mvi r2,134 <== NOT EXECUTED 802684c: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 8026850: 34 01 ff ff mvi r1,-1 <== NOT EXECUTED 8026854: e0 00 00 06 bi 802686c <fchmod+0xb4> <== NOT EXECUTED
return (*iop->pathinfo.handlers->fchmod_h)( &iop->pathinfo, mode );
8026858: 28 23 00 24 lw r3,(r1+36) <== NOT EXECUTED 802685c: b9 80 10 00 mv r2,r12 <== NOT EXECUTED 8026860: 34 21 00 1c addi r1,r1,28 <== NOT EXECUTED 8026864: 28 63 00 1c lw r3,(r3+28) <== NOT EXECUTED 8026868: d8 60 00 00 call r3 <== NOT EXECUTED
}
802686c: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8026870: 2b 8b 00 10 lw r11,(sp+16) <== NOT EXECUTED 8026874: 2b 8c 00 0c lw r12,(sp+12) <== NOT EXECUTED 8026878: 2b 8d 00 08 lw r13,(sp+8) <== NOT EXECUTED 802687c: 37 9c 00 10 addi sp,sp,16 <== NOT EXECUTED 8026880: c3 a0 00 00 ret <== NOT EXECUTED
08026884 <fchown>: int fchown( int fd, uid_t owner, gid_t group ) {
8026884: 37 9c ff ec addi sp,sp,-20 <== NOT EXECUTED 8026888: 5b 8b 00 14 sw (sp+20),r11 <== NOT EXECUTED 802688c: 5b 8c 00 10 sw (sp+16),r12 <== NOT EXECUTED 8026890: 5b 8d 00 0c sw (sp+12),r13 <== NOT EXECUTED 8026894: 5b 8e 00 08 sw (sp+8),r14 <== NOT EXECUTED 8026898: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
rtems_libio_t *iop; rtems_libio_check_fd( fd );
802689c: 78 04 08 06 mvhi r4,0x806 <== NOT EXECUTED 80268a0: 38 84 b0 10 ori r4,r4,0xb010 <== NOT EXECUTED 80268a4: 28 84 00 00 lw r4,(r4+0) <== NOT EXECUTED
int fchown( int fd, uid_t owner, gid_t group ) {
80268a8: 20 4d ff ff andi r13,r2,0xffff <== NOT EXECUTED 80268ac: 20 6c ff ff andi r12,r3,0xffff <== NOT EXECUTED
rtems_libio_t *iop; rtems_libio_check_fd( fd );
80268b0: 54 81 00 02 bgu r4,r1,80268b8 <fchown+0x34> <== NOT EXECUTED 80268b4: e0 00 00 0e bi 80268ec <fchown+0x68> <== NOT EXECUTED
iop = rtems_libio_iop( fd );
80268b8: 34 02 00 03 mvi r2,3 <== NOT EXECUTED 80268bc: fb ff 6a 1f calli 8001138 <__ashlsi3> <== NOT EXECUTED 80268c0: 34 02 00 03 mvi r2,3 <== NOT EXECUTED 80268c4: 78 0b 08 06 mvhi r11,0x806 <== NOT EXECUTED 80268c8: b8 20 70 00 mv r14,r1 <== NOT EXECUTED 80268cc: 39 6b ee 90 ori r11,r11,0xee90 <== NOT EXECUTED 80268d0: fb ff 6a 1a calli 8001138 <__ashlsi3> <== NOT EXECUTED 80268d4: 29 62 00 00 lw r2,(r11+0) <== NOT EXECUTED 80268d8: b5 c1 08 00 add r1,r14,r1 <== NOT EXECUTED 80268dc: b4 41 08 00 add r1,r2,r1 <== NOT EXECUTED
rtems_libio_check_is_open(iop);
80268e0: 28 24 00 18 lw r4,(r1+24) <== NOT EXECUTED 80268e4: 20 82 01 00 andi r2,r4,0x100 <== NOT EXECUTED 80268e8: 5c 40 00 04 bne r2,r0,80268f8 <fchown+0x74> <== NOT EXECUTED 80268ec: f8 00 70 0a calli 8042914 <__errno> <== NOT EXECUTED 80268f0: 34 02 00 09 mvi r2,9 <== NOT EXECUTED 80268f4: e0 00 00 0b bi 8026920 <fchown+0x9c> <== NOT EXECUTED
rtems_libio_check_permissions( iop, LIBIO_FLAGS_WRITE );
80268f8: 20 84 00 04 andi r4,r4,0x4 <== NOT EXECUTED 80268fc: 5c 80 00 04 bne r4,r0,802690c <fchown+0x88> <== NOT EXECUTED 8026900: f8 00 70 05 calli 8042914 <__errno> <== NOT EXECUTED 8026904: 34 02 00 16 mvi r2,22 <== NOT EXECUTED 8026908: e0 00 00 06 bi 8026920 <fchown+0x9c> <== NOT EXECUTED
if ( !iop->pathinfo.ops->chown_h )
802690c: 28 22 00 28 lw r2,(r1+40) <== NOT EXECUTED 8026910: 28 44 00 18 lw r4,(r2+24) <== NOT EXECUTED 8026914: 5c 80 00 06 bne r4,r0,802692c <fchown+0xa8> <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( ENOTSUP );
8026918: f8 00 6f ff calli 8042914 <__errno> <== NOT EXECUTED 802691c: 34 02 00 86 mvi r2,134 <== NOT EXECUTED 8026920: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 8026924: 34 01 ff ff mvi r1,-1 <== NOT EXECUTED 8026928: e0 00 00 05 bi 802693c <fchown+0xb8> <== NOT EXECUTED
return (*iop->pathinfo.ops->chown_h)( &iop->pathinfo, owner, group );
802692c: 34 21 00 1c addi r1,r1,28 <== NOT EXECUTED 8026930: b9 a0 10 00 mv r2,r13 <== NOT EXECUTED 8026934: b9 80 18 00 mv r3,r12 <== NOT EXECUTED 8026938: d8 80 00 00 call r4 <== NOT EXECUTED
}
802693c: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8026940: 2b 8b 00 14 lw r11,(sp+20) <== NOT EXECUTED 8026944: 2b 8c 00 10 lw r12,(sp+16) <== NOT EXECUTED 8026948: 2b 8d 00 0c lw r13,(sp+12) <== NOT EXECUTED 802694c: 2b 8e 00 08 lw r14,(sp+8) <== NOT EXECUTED 8026950: 37 9c 00 14 addi sp,sp,20 <== NOT EXECUTED 8026954: c3 a0 00 00 ret <== NOT EXECUTED
0803bd00 <fcntl>: int fcntl( int fd, int cmd, ... ) {
803bd00: 37 9c ff c4 addi sp,sp,-60 803bd04: 5b 8b 00 20 sw (sp+32),r11 803bd08: 5b 8c 00 1c sw (sp+28),r12 803bd0c: 5b 8d 00 18 sw (sp+24),r13 803bd10: 5b 8e 00 14 sw (sp+20),r14 803bd14: 5b 8f 00 10 sw (sp+16),r15 803bd18: 5b 90 00 0c sw (sp+12),r16 803bd1c: 5b 91 00 08 sw (sp+8),r17 803bd20: 5b 9d 00 04 sw (sp+4),ra
int fd2; int flags; int mask; int ret = 0; rtems_libio_check_fd( fd );
803bd24: 78 09 08 06 mvhi r9,0x806 803bd28: 39 29 b0 10 ori r9,r9,0xb010 803bd2c: 29 2d 00 00 lw r13,(r9+0)
int fcntl( int fd, int cmd, ... ) {
803bd30: 5b 83 00 28 sw (sp+40),r3 803bd34: 5b 84 00 2c sw (sp+44),r4 803bd38: 5b 85 00 30 sw (sp+48),r5 803bd3c: 5b 86 00 34 sw (sp+52),r6 803bd40: 5b 87 00 38 sw (sp+56),r7 803bd44: 5b 88 00 3c sw (sp+60),r8 803bd48: 5b 82 00 24 sw (sp+36),r2 803bd4c: b8 40 78 00 mv r15,r2
#include <sys/types.h> #include <sys/stat.h> /* sigh. for the mode bits for open/creat */ extern int open _PARAMS ((const char *, int, ...)); extern int creat _PARAMS ((const char *, mode_t)); extern int fcntl _PARAMS ((int, int, ...));
803bd50: 37 8b 00 28 addi r11,sp,40
int fd2; int flags; int mask; int ret = 0; rtems_libio_check_fd( fd );
803bd54: 55 a1 00 02 bgu r13,r1,803bd5c <fcntl+0x5c> <== ALWAYS TAKEN
803bd58: e0 00 00 0e bi 803bd90 <fcntl+0x90> <== NOT EXECUTED
iop = rtems_libio_iop( fd );
803bd5c: 78 03 08 06 mvhi r3,0x806 803bd60: 38 63 ee 90 ori r3,r3,0xee90 803bd64: 34 02 00 03 mvi r2,3 803bd68: 28 71 00 00 lw r17,(r3+0) 803bd6c: fb ff 14 f3 calli 8001138 <__ashlsi3> 803bd70: 34 02 00 03 mvi r2,3 803bd74: b8 20 60 00 mv r12,r1 803bd78: fb ff 14 f0 calli 8001138 <__ashlsi3> 803bd7c: b5 81 08 00 add r1,r12,r1 803bd80: b6 21 60 00 add r12,r17,r1
rtems_libio_check_is_open(iop);
803bd84: 29 8e 00 18 lw r14,(r12+24) 803bd88: 21 c1 01 00 andi r1,r14,0x100
803bd8c: 5c 20 00 04 bne r1,r0,803bd9c <fcntl+0x9c> <== ALWAYS TAKEN
803bd90: f8 00 1a e1 calli 8042914 <__errno> <== NOT EXECUTED 803bd94: 34 02 00 09 mvi r2,9 <== NOT EXECUTED 803bd98: e0 00 00 54 bi 803bee8 <fcntl+0x1e8> <== NOT EXECUTED
/* * This switch should contain all the cases from POSIX. */ switch ( cmd ) {
803bd9c: 34 01 00 09 mvi r1,9
803bda0: 55 e1 00 50 bgu r15,r1,803bee0 <fcntl+0x1e0>
803bda4: 78 10 08 06 mvhi r16,0x806 803bda8: b9 e0 08 00 mv r1,r15 803bdac: 34 02 00 02 mvi r2,2 803bdb0: fb ff 14 e2 calli 8001138 <__ashlsi3> 803bdb4: 3a 10 86 cc ori r16,r16,0x86cc 803bdb8: b6 01 08 00 add r1,r16,r1 803bdbc: 28 21 00 00 lw r1,(r1+0) 803bdc0: c0 20 00 00 b r1
case F_DUPFD: /* dup */ fd2 = va_arg( ap, int );
803bdc4: 29 6e 00 00 lw r14,(r11+0)
if ( fd2 )
803bdc8: 45 c0 00 0d be r14,r0,803bdfc <fcntl+0xfc> <== ALWAYS TAKEN
diop = rtems_libio_iop( fd2 );
803bdcc: 55 ae 00 03 bgu r13,r14,803bdd8 <fcntl+0xd8> <== NOT EXECUTED 803bdd0: 34 0d 00 00 mvi r13,0 <== NOT EXECUTED 803bdd4: e0 00 00 0e bi 803be0c <fcntl+0x10c> <== NOT EXECUTED 803bdd8: 34 02 00 03 mvi r2,3 <== NOT EXECUTED 803bddc: b9 c0 08 00 mv r1,r14 <== NOT EXECUTED 803bde0: fb ff 14 d6 calli 8001138 <__ashlsi3> <== NOT EXECUTED 803bde4: 34 02 00 03 mvi r2,3 <== NOT EXECUTED 803bde8: b8 20 68 00 mv r13,r1 <== NOT EXECUTED 803bdec: fb ff 14 d3 calli 8001138 <__ashlsi3> <== NOT EXECUTED 803bdf0: b5 a1 08 00 add r1,r13,r1 <== NOT EXECUTED 803bdf4: b6 21 68 00 add r13,r17,r1 <== NOT EXECUTED 803bdf8: e0 00 00 05 bi 803be0c <fcntl+0x10c> <== NOT EXECUTED
else { /* allocate a file control block */ diop = rtems_libio_allocate();
803bdfc: fb ff 2a 5a calli 8006764 <rtems_libio_allocate> 803be00: b8 20 68 00 mv r13,r1
if ( diop == 0 ) {
803be04: 34 0b ff ff mvi r11,-1
803be08: 44 2e 00 45 be r1,r14,803bf1c <fcntl+0x21c> <== NEVER TAKEN
ret = -1; break; } } diop->handlers = iop->handlers;
803be0c: 29 81 00 40 lw r1,(r12+64)
diop->file_info = iop->file_info; diop->flags = iop->flags; diop->pathinfo = iop->pathinfo;
803be10: 34 03 00 14 mvi r3,20 803be14: 35 82 00 1c addi r2,r12,28
ret = -1; break; } } diop->handlers = iop->handlers;
803be18: 59 a1 00 40 sw (r13+64),r1
diop->file_info = iop->file_info;
803be1c: 29 81 00 3c lw r1,(r12+60) 803be20: 59 a1 00 3c sw (r13+60),r1
diop->flags = iop->flags;
803be24: 29 81 00 18 lw r1,(r12+24) 803be28: 59 a1 00 18 sw (r13+24),r1
diop->pathinfo = iop->pathinfo;
803be2c: 35 a1 00 1c addi r1,r13,28 803be30: f8 00 29 5b calli 804639c <memcpy>
ret = (int) (diop - rtems_libio_iops);
803be34: 78 01 08 06 mvhi r1,0x806 803be38: 38 21 ee 90 ori r1,r1,0xee90 803be3c: 28 21 00 00 lw r1,(r1+0) 803be40: 34 02 00 03 mvi r2,3 803be44: c9 a1 08 00 sub r1,r13,r1 803be48: fb ff 15 0c calli 8001278 <__ashrsi3> 803be4c: 78 02 38 e3 mvhi r2,0x38e3 803be50: 38 42 8e 39 ori r2,r2,0x8e39 803be54: fb ff 1d d2 calli 800359c <__mulsi3> 803be58: e0 00 00 12 bi 803bea0 <fcntl+0x1a0>
break; case F_GETFD: /* get f_flags */ ret = ((iop->flags & LIBIO_FLAGS_CLOSE_ON_EXEC) != 0);
803be5c: b9 c0 08 00 mv r1,r14 803be60: 34 02 00 0b mvi r2,11 803be64: fb ff 14 dd calli 80011d8 <__lshrsi3> 803be68: 20 2b 00 01 andi r11,r1,0x1 803be6c: e0 00 00 21 bi 803bef0 <fcntl+0x1f0>
* if a new process is exec()'ed. Since RTEMS does not support * processes, then we can ignore this one except to make * F_GETFD work. */ if ( va_arg( ap, int ) )
803be70: 29 6b 00 00 lw r11,(r11+0)
803be74: 45 60 00 05 be r11,r0,803be88 <fcntl+0x188> <== NEVER TAKEN
iop->flags |= LIBIO_FLAGS_CLOSE_ON_EXEC;
803be78: 39 ce 08 00 ori r14,r14,0x800 803be7c: 59 8e 00 18 sw (r12+24),r14 803be80: 34 0b 00 00 mvi r11,0 803be84: e0 00 00 1b bi 803bef0 <fcntl+0x1f0>
else iop->flags &= ~LIBIO_FLAGS_CLOSE_ON_EXEC;
803be88: 34 01 f7 ff mvi r1,-2049 <== NOT EXECUTED 803be8c: a1 c1 70 00 and r14,r14,r1 <== NOT EXECUTED 803be90: 59 8e 00 18 sw (r12+24),r14 <== NOT EXECUTED 803be94: e0 00 00 17 bi 803bef0 <fcntl+0x1f0> <== NOT EXECUTED
break; case F_GETFL: /* more flags (cloexec) */ ret = rtems_libio_to_fcntl_flags( iop->flags );
803be98: b9 c0 08 00 mv r1,r14 803be9c: fb ff 29 b0 calli 800655c <rtems_libio_to_fcntl_flags> 803bea0: b8 20 58 00 mv r11,r1
/* * If we got this far successfully, then we give the optional * filesystem specific handler a chance to process this. */ if (ret >= 0) {
803bea4: 48 01 00 1e bg r0,r1,803bf1c <fcntl+0x21c> <== NEVER TAKEN
803bea8: e0 00 00 12 bi 803bef0 <fcntl+0x1f0>
case F_GETFL: /* more flags (cloexec) */ ret = rtems_libio_to_fcntl_flags( iop->flags ); break; case F_SETFL: flags = rtems_libio_fcntl_flags( va_arg( ap, int ) );
803beac: 29 61 00 00 lw r1,(r11+0)
/* * XXX If we are turning on append, should we seek to the end? */ iop->flags = (iop->flags & ~mask) | (flags & mask);
803beb0: 34 0b 00 00 mvi r11,0
case F_GETFL: /* more flags (cloexec) */ ret = rtems_libio_to_fcntl_flags( iop->flags ); break; case F_SETFL: flags = rtems_libio_fcntl_flags( va_arg( ap, int ) );
803beb4: fb ff 2a 5d calli 8006828 <rtems_libio_fcntl_flags>
/* * XXX If we are turning on append, should we seek to the end? */ iop->flags = (iop->flags & ~mask) | (flags & mask);
803beb8: 29 83 00 18 lw r3,(r12+24) 803bebc: 34 02 fd fe mvi r2,-514 803bec0: 20 21 02 01 andi r1,r1,0x201 803bec4: a0 62 10 00 and r2,r3,r2 803bec8: b8 22 08 00 or r1,r1,r2 803becc: 59 81 00 18 sw (r12+24),r1 803bed0: e0 00 00 08 bi 803bef0 <fcntl+0x1f0>
errno = ENOTSUP; ret = -1; break; case F_GETOWN: /* for sockets. */ errno = ENOTSUP;
803bed4: f8 00 1a 90 calli 8042914 <__errno> 803bed8: 34 02 00 86 mvi r2,134 803bedc: e0 00 00 03 bi 803bee8 <fcntl+0x1e8>
ret = -1; break; default: errno = EINVAL;
803bee0: f8 00 1a 8d calli 8042914 <__errno> 803bee4: 34 02 00 16 mvi r2,22 803bee8: 58 22 00 00 sw (r1+0),r2 803beec: e0 00 00 0b bi 803bf18 <fcntl+0x218>
* If we got this far successfully, then we give the optional * filesystem specific handler a chance to process this. */ if (ret >= 0) { if (iop->handlers->fcntl_h) {
803bef0: 29 81 00 40 lw r1,(r12+64) 803bef4: 28 23 00 30 lw r3,(r1+48)
803bef8: 44 60 00 09 be r3,r0,803bf1c <fcntl+0x21c> <== NEVER TAKEN
int err = (*iop->handlers->fcntl_h)( cmd, iop );
803befc: b9 80 10 00 mv r2,r12 803bf00: b9 e0 08 00 mv r1,r15 803bf04: d8 60 00 00 call r3 803bf08: b8 20 60 00 mv r12,r1
if (err) {
803bf0c: 44 20 00 04 be r1,r0,803bf1c <fcntl+0x21c> <== ALWAYS TAKEN
errno = err;
803bf10: f8 00 1a 81 calli 8042914 <__errno> <== NOT EXECUTED 803bf14: 58 2c 00 00 sw (r1+0),r12 <== NOT EXECUTED
803bf18: 34 0b ff ff mvi r11,-1
va_list ap; va_start( ap, cmd ); ret = vfcntl(fd,cmd,ap); va_end(ap); return ret; }
803bf1c: b9 60 08 00 mv r1,r11 803bf20: 2b 9d 00 04 lw ra,(sp+4) 803bf24: 2b 8b 00 20 lw r11,(sp+32) 803bf28: 2b 8c 00 1c lw r12,(sp+28) 803bf2c: 2b 8d 00 18 lw r13,(sp+24) 803bf30: 2b 8e 00 14 lw r14,(sp+20) 803bf34: 2b 8f 00 10 lw r15,(sp+16) 803bf38: 2b 90 00 0c lw r16,(sp+12) 803bf3c: 2b 91 00 08 lw r17,(sp+8) 803bf40: 37 9c 00 3c addi sp,sp,60 803bf44: c3 a0 00 00 ret
0800231c <fdatasync>: #include <rtems/seterr.h> int fdatasync( int fd ) {
800231c: 37 9c ff f4 addi sp,sp,-12 8002320: 5b 8b 00 0c sw (sp+12),r11 8002324: 5b 8c 00 08 sw (sp+8),r12 8002328: 5b 9d 00 04 sw (sp+4),ra
rtems_libio_t *iop; rtems_libio_check_fd( fd );
800232c: 78 02 08 02 mvhi r2,0x802 8002330: 38 42 00 10 ori r2,r2,0x10 8002334: 28 42 00 00 lw r2,(r2+0)
8002338: 54 41 00 02 bgu r2,r1,8002340 <fdatasync+0x24>
800233c: e0 00 00 0e bi 8002374 <fdatasync+0x58>
iop = rtems_libio_iop( fd );
8002340: 34 02 00 03 mvi r2,3 8002344: fb ff fa 10 calli 8000b84 <__ashlsi3> 8002348: 34 02 00 03 mvi r2,3 800234c: 78 0b 08 02 mvhi r11,0x802 8002350: b8 20 60 00 mv r12,r1 8002354: 39 6b 06 a4 ori r11,r11,0x6a4 8002358: fb ff fa 0b calli 8000b84 <__ashlsi3> 800235c: 29 62 00 00 lw r2,(r11+0) 8002360: b5 81 08 00 add r1,r12,r1 8002364: b4 41 08 00 add r1,r2,r1
rtems_libio_check_is_open(iop);
8002368: 28 22 00 18 lw r2,(r1+24) 800236c: 20 43 01 00 andi r3,r2,0x100
8002370: 5c 60 00 04 bne r3,r0,8002380 <fdatasync+0x64> <== ALWAYS TAKEN
8002374: f8 00 2d f7 calli 800db50 <__errno> 8002378: 34 02 00 09 mvi r2,9 800237c: e0 00 00 0b bi 80023a8 <fdatasync+0x8c>
rtems_libio_check_permissions( iop, LIBIO_FLAGS_WRITE );
8002380: 20 42 00 04 andi r2,r2,0x4
8002384: 5c 40 00 04 bne r2,r0,8002394 <fdatasync+0x78>
8002388: f8 00 2d f2 calli 800db50 <__errno> 800238c: 34 02 00 16 mvi r2,22 8002390: e0 00 00 06 bi 80023a8 <fdatasync+0x8c>
/* * Now process the fdatasync(). */ if ( !iop->handlers->fdatasync_h )
8002394: 28 22 00 40 lw r2,(r1+64) 8002398: 28 42 00 2c lw r2,(r2+44)
800239c: 5c 40 00 06 bne r2,r0,80023b4 <fdatasync+0x98> rtems_set_errno_and_return_minus_one( ENOTSUP );
80023a0: f8 00 2d ec calli 800db50 <__errno> 80023a4: 34 02 00 86 mvi r2,134 80023a8: 58 22 00 00 sw (r1+0),r2 80023ac: 34 01 ff ff mvi r1,-1 80023b0: e0 00 00 02 bi 80023b8 <fdatasync+0x9c>
return (*iop->handlers->fdatasync_h)( iop );
80023b4: d8 40 00 00 call r2
}
80023b8: 2b 9d 00 04 lw ra,(sp+4) 80023bc: 2b 8b 00 0c lw r11,(sp+12) 80023c0: 2b 8c 00 08 lw r12,(sp+8) 80023c4: 37 9c 00 0c addi sp,sp,12 80023c8: c3 a0 00 00 ret
08009914 <fifo_open>: */ int fifo_open( pipe_control_t **pipep, rtems_libio_t *iop ) {
8009914: 37 9c ff dc addi sp,sp,-36 8009918: 5b 8b 00 20 sw (sp+32),r11 800991c: 5b 8c 00 1c sw (sp+28),r12 8009920: 5b 8d 00 18 sw (sp+24),r13 8009924: 5b 8e 00 14 sw (sp+20),r14 8009928: 5b 8f 00 10 sw (sp+16),r15 800992c: 5b 90 00 0c sw (sp+12),r16 8009930: 5b 91 00 08 sw (sp+8),r17 8009934: 5b 9d 00 04 sw (sp+4),ra
) { pipe_control_t *pipe; int err = 0; if (rtems_semaphore_obtain(rtems_pipe_semaphore,
8009938: 78 03 08 01 mvhi r3,0x801 800993c: 38 63 c6 28 ori r3,r3,0xc628
*/ int fifo_open( pipe_control_t **pipep, rtems_libio_t *iop ) {
8009940: b8 20 70 00 mv r14,r1
) { pipe_control_t *pipe; int err = 0; if (rtems_semaphore_obtain(rtems_pipe_semaphore,
8009944: 28 61 00 00 lw r1,(r3+0)
*/ int fifo_open( pipe_control_t **pipep, rtems_libio_t *iop ) {
8009948: b8 40 78 00 mv r15,r2
) { pipe_control_t *pipe; int err = 0; if (rtems_semaphore_obtain(rtems_pipe_semaphore,
800994c: 34 02 00 00 mvi r2,0 8009950: b8 40 18 00 mv r3,r2 8009954: fb ff f8 47 calli 8007a70 <rtems_semaphore_obtain> 8009958: b8 20 80 00 mv r16,r1 800995c: 34 0c ff fc mvi r12,-4
8009960: 5c 20 00 bc bne r1,r0,8009c50 <fifo_open+0x33c> <== ALWAYS TAKEN
RTEMS_WAIT, RTEMS_NO_TIMEOUT) != RTEMS_SUCCESSFUL) return -EINTR; pipe = *pipep;
8009964: 29 cb 00 00 lw r11,(r14+0) <== NOT EXECUTED
if (pipe == NULL) {
8009968: 5d 61 00 42 bne r11,r1,8009a70 <fifo_open+0x15c> <== NOT EXECUTED
{ static char c = 'a'; pipe_control_t *pipe; int err = -ENOMEM; pipe = malloc(sizeof(pipe_control_t));
800996c: 34 01 00 34 mvi r1,52 <== NOT EXECUTED 8009970: fb ff f7 47 calli 800768c <malloc> <== NOT EXECUTED 8009974: b8 20 68 00 mv r13,r1 <== NOT EXECUTED 8009978: b8 20 58 00 mv r11,r1 <== NOT EXECUTED
if (pipe == NULL)
800997c: 34 0c ff f4 mvi r12,-12 <== NOT EXECUTED 8009980: 44 20 00 4a be r1,r0,8009aa8 <fifo_open+0x194> <== NOT EXECUTED
return err; memset(pipe, 0, sizeof(pipe_control_t));
8009984: ba 00 10 00 mv r2,r16 <== NOT EXECUTED 8009988: 34 03 00 34 mvi r3,52 <== NOT EXECUTED 800998c: f8 00 08 65 calli 800bb20 <memset> <== NOT EXECUTED
pipe->Size = PIPE_BUF;
8009990: 34 02 02 00 mvi r2,512 <== NOT EXECUTED
pipe->Buffer = malloc(pipe->Size);
8009994: b8 40 08 00 mv r1,r2 <== NOT EXECUTED
pipe = malloc(sizeof(pipe_control_t)); if (pipe == NULL) return err; memset(pipe, 0, sizeof(pipe_control_t)); pipe->Size = PIPE_BUF;
8009998: 59 a2 00 04 sw (r13+4),r2 <== NOT EXECUTED
pipe->Buffer = malloc(pipe->Size);
800999c: fb ff f7 3c calli 800768c <malloc> <== NOT EXECUTED 80099a0: 59 a1 00 00 sw (r13+0),r1 <== NOT EXECUTED
if (! pipe->Buffer)
80099a4: 44 20 00 30 be r1,r0,8009a64 <fifo_open+0x150> <== NOT EXECUTED
goto err_buf; err = -EINTR; if (rtems_barrier_create(
80099a8: 78 0c 08 01 mvhi r12,0x801 <== NOT EXECUTED 80099ac: 39 8c c1 58 ori r12,r12,0xc158 <== NOT EXECUTED 80099b0: 41 83 00 00 lbu r3,(r12+0) <== NOT EXECUTED 80099b4: 78 01 50 49 mvhi r1,0x5049 <== NOT EXECUTED 80099b8: 38 21 72 00 ori r1,r1,0x7200 <== NOT EXECUTED 80099bc: ba 00 10 00 mv r2,r16 <== NOT EXECUTED 80099c0: b8 61 08 00 or r1,r3,r1 <== NOT EXECUTED 80099c4: 35 a4 00 2c addi r4,r13,44 <== NOT EXECUTED 80099c8: ba 00 18 00 mv r3,r16 <== NOT EXECUTED 80099cc: f8 00 01 99 calli 800a030 <rtems_barrier_create> <== NOT EXECUTED 80099d0: b8 20 80 00 mv r16,r1 <== NOT EXECUTED 80099d4: 5c 20 00 21 bne r1,r0,8009a58 <fifo_open+0x144> <== NOT EXECUTED
rtems_build_name ('P', 'I', 'r', c), RTEMS_BARRIER_MANUAL_RELEASE, 0, &pipe->readBarrier) != RTEMS_SUCCESSFUL) goto err_rbar; if (rtems_barrier_create(
80099d8: 41 82 00 00 lbu r2,(r12+0) <== NOT EXECUTED 80099dc: 78 01 50 49 mvhi r1,0x5049 <== NOT EXECUTED 80099e0: 38 21 77 00 ori r1,r1,0x7700 <== NOT EXECUTED 80099e4: b8 41 08 00 or r1,r2,r1 <== NOT EXECUTED 80099e8: ba 00 18 00 mv r3,r16 <== NOT EXECUTED 80099ec: ba 00 10 00 mv r2,r16 <== NOT EXECUTED 80099f0: 35 a4 00 30 addi r4,r13,48 <== NOT EXECUTED 80099f4: f8 00 01 8f calli 800a030 <rtems_barrier_create> <== NOT EXECUTED 80099f8: b8 20 88 00 mv r17,r1 <== NOT EXECUTED 80099fc: 5c 30 00 15 bne r1,r16,8009a50 <fifo_open+0x13c> <== NOT EXECUTED
rtems_build_name ('P', 'I', 'w', c), RTEMS_BARRIER_MANUAL_RELEASE, 0, &pipe->writeBarrier) != RTEMS_SUCCESSFUL) goto err_wbar; if (rtems_semaphore_create(
8009a00: 41 81 00 00 lbu r1,(r12+0) <== NOT EXECUTED 8009a04: 78 02 50 49 mvhi r2,0x5049 <== NOT EXECUTED 8009a08: 38 42 73 00 ori r2,r2,0x7300 <== NOT EXECUTED 8009a0c: b8 22 08 00 or r1,r1,r2 <== NOT EXECUTED 8009a10: 34 03 00 10 mvi r3,16 <== NOT EXECUTED 8009a14: 34 02 00 01 mvi r2,1 <== NOT EXECUTED 8009a18: ba 20 20 00 mv r4,r17 <== NOT EXECUTED 8009a1c: 35 a5 00 28 addi r5,r13,40 <== NOT EXECUTED 8009a20: fb ff e1 4c calli 8001f50 <rtems_semaphore_create> <== NOT EXECUTED 8009a24: 5c 31 00 09 bne r1,r17,8009a48 <fifo_open+0x134> <== NOT EXECUTED
#ifdef RTEMS_POSIX_API pipe_interruptible(pipe); #endif *pipep = pipe; if (c ++ == 'z')
8009a28: 41 81 00 00 lbu r1,(r12+0) <== NOT EXECUTED 8009a2c: 34 22 00 01 addi r2,r1,1 <== NOT EXECUTED 8009a30: 31 82 00 00 sb (r12+0),r2 <== NOT EXECUTED 8009a34: 34 02 00 7a mvi r2,122 <== NOT EXECUTED 8009a38: 5c 22 00 0e bne r1,r2,8009a70 <fifo_open+0x15c> <== NOT EXECUTED
c = 'a';
8009a3c: 34 01 00 61 mvi r1,97 <== NOT EXECUTED 8009a40: 31 81 00 00 sb (r12+0),r1 <== NOT EXECUTED 8009a44: e0 00 00 0b bi 8009a70 <fifo_open+0x15c> <== NOT EXECUTED
return 0; err_sem: rtems_barrier_delete(pipe->writeBarrier);
8009a48: 29 a1 00 30 lw r1,(r13+48) <== NOT EXECUTED 8009a4c: f8 00 01 b6 calli 800a124 <rtems_barrier_delete> <== NOT EXECUTED
err_wbar: rtems_barrier_delete(pipe->readBarrier);
8009a50: 29 a1 00 2c lw r1,(r13+44) <== NOT EXECUTED 8009a54: f8 00 01 b4 calli 800a124 <rtems_barrier_delete> <== NOT EXECUTED
err_rbar: free(pipe->Buffer);
8009a58: 29 a1 00 00 lw r1,(r13+0) <== NOT EXECUTED 8009a5c: 34 0c ff fc mvi r12,-4 <== NOT EXECUTED 8009a60: fb ff f5 79 calli 8007044 <free> <== NOT EXECUTED
err_buf: free(pipe);
8009a64: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 8009a68: fb ff f5 77 calli 8007044 <free> <== NOT EXECUTED 8009a6c: e0 00 00 0f bi 8009aa8 <fifo_open+0x194> <== NOT EXECUTED
err = pipe_alloc(&pipe); if (err) goto out; } if (! PIPE_LOCK(pipe))
8009a70: 29 61 00 28 lw r1,(r11+40) <== NOT EXECUTED 8009a74: 34 02 00 00 mvi r2,0 <== NOT EXECUTED 8009a78: b8 40 18 00 mv r3,r2 <== NOT EXECUTED 8009a7c: fb ff f7 fd calli 8007a70 <rtems_semaphore_obtain> <== NOT EXECUTED 8009a80: b8 20 60 00 mv r12,r1 <== NOT EXECUTED 8009a84: 44 20 00 02 be r1,r0,8009a8c <fifo_open+0x178> <== NOT EXECUTED 8009a88: 34 0c ff fc mvi r12,-4 <== NOT EXECUTED
err = -EINTR; if (*pipep == NULL) {
8009a8c: 29 c1 00 00 lw r1,(r14+0) <== NOT EXECUTED 8009a90: 5c 20 00 06 bne r1,r0,8009aa8 <fifo_open+0x194> <== NOT EXECUTED
if (err)
8009a94: 45 81 00 04 be r12,r1,8009aa4 <fifo_open+0x190> <== NOT EXECUTED
pipe_free(pipe);
8009a98: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8009a9c: fb ff ff 44 calli 80097ac <pipe_free> <== NOT EXECUTED 8009aa0: e0 00 00 02 bi 8009aa8 <fifo_open+0x194> <== NOT EXECUTED
else *pipep = pipe;
8009aa4: 59 cb 00 00 sw (r14+0),r11 <== NOT EXECUTED
} out: rtems_semaphore_release(rtems_pipe_semaphore);
8009aa8: 78 01 08 01 mvhi r1,0x801 <== NOT EXECUTED 8009aac: 38 21 c6 28 ori r1,r1,0xc628 <== NOT EXECUTED 8009ab0: 28 21 00 00 lw r1,(r1+0) <== NOT EXECUTED 8009ab4: fb ff f8 3f calli 8007bb0 <rtems_semaphore_release> <== NOT EXECUTED
pipe_control_t *pipe; uint prevCounter; int err; err = pipe_new(pipep); if (err)
8009ab8: 5d 80 00 66 bne r12,r0,8009c50 <fifo_open+0x33c> <== NOT EXECUTED
return err; pipe = *pipep; switch (LIBIO_ACCMODE(iop)) {
8009abc: 29 e2 00 18 lw r2,(r15+24) <== NOT EXECUTED 8009ac0: 34 03 00 04 mvi r3,4 <== NOT EXECUTED
int err; err = pipe_new(pipep); if (err) return err; pipe = *pipep;
8009ac4: 29 cb 00 00 lw r11,(r14+0) <== NOT EXECUTED
switch (LIBIO_ACCMODE(iop)) {
8009ac8: 20 41 00 06 andi r1,r2,0x6 <== NOT EXECUTED 8009acc: 44 23 00 24 be r1,r3,8009b5c <fifo_open+0x248> <== NOT EXECUTED 8009ad0: 34 02 00 06 mvi r2,6 <== NOT EXECUTED 8009ad4: 44 22 00 44 be r1,r2,8009be4 <fifo_open+0x2d0> <== NOT EXECUTED 8009ad8: 34 02 00 02 mvi r2,2 <== NOT EXECUTED 8009adc: 5c 22 00 56 bne r1,r2,8009c34 <fifo_open+0x320> <== NOT EXECUTED
case LIBIO_FLAGS_READ: pipe->readerCounter ++;
8009ae0: 29 63 00 20 lw r3,(r11+32) <== NOT EXECUTED
if (pipe->Readers ++ == 0)
8009ae4: 29 61 00 10 lw r1,(r11+16) <== NOT EXECUTED
return err; pipe = *pipep; switch (LIBIO_ACCMODE(iop)) { case LIBIO_FLAGS_READ: pipe->readerCounter ++;
8009ae8: 34 63 00 01 addi r3,r3,1 <== NOT EXECUTED
if (pipe->Readers ++ == 0)
8009aec: 34 22 00 01 addi r2,r1,1 <== NOT EXECUTED
return err; pipe = *pipep; switch (LIBIO_ACCMODE(iop)) { case LIBIO_FLAGS_READ: pipe->readerCounter ++;
8009af0: 59 63 00 20 sw (r11+32),r3 <== NOT EXECUTED
if (pipe->Readers ++ == 0)
8009af4: 59 62 00 10 sw (r11+16),r2 <== NOT EXECUTED 8009af8: 5c 20 00 04 bne r1,r0,8009b08 <fifo_open+0x1f4> <== NOT EXECUTED
PIPE_WAKEUPWRITERS(pipe);
8009afc: 29 61 00 30 lw r1,(r11+48) <== NOT EXECUTED 8009b00: 37 82 00 24 addi r2,sp,36 <== NOT EXECUTED 8009b04: f8 00 01 a8 calli 800a1a4 <rtems_barrier_release> <== NOT EXECUTED
if (pipe->Writers == 0) {
8009b08: 29 61 00 14 lw r1,(r11+20) <== NOT EXECUTED 8009b0c: 5c 20 00 4a bne r1,r0,8009c34 <fifo_open+0x320> <== NOT EXECUTED
/* Not an error */ if (LIBIO_NODELAY(iop))
8009b10: 29 e2 00 18 lw r2,(r15+24) <== NOT EXECUTED 8009b14: 20 42 00 01 andi r2,r2,0x1 <== NOT EXECUTED 8009b18: 5c 41 00 47 bne r2,r1,8009c34 <fifo_open+0x320> <== NOT EXECUTED
break; prevCounter = pipe->writerCounter;
8009b1c: 29 70 00 24 lw r16,(r11+36) <== NOT EXECUTED
err = -EINTR; /* Wait until a writer opens the pipe */ do { PIPE_UNLOCK(pipe);
8009b20: 29 61 00 28 lw r1,(r11+40) <== NOT EXECUTED 8009b24: fb ff f8 23 calli 8007bb0 <rtems_semaphore_release> <== NOT EXECUTED
if (! PIPE_READWAIT(pipe))
8009b28: 29 61 00 2c lw r1,(r11+44) <== NOT EXECUTED 8009b2c: 34 02 00 00 mvi r2,0 <== NOT EXECUTED 8009b30: f8 00 01 bc calli 800a220 <rtems_barrier_wait> <== NOT EXECUTED 8009b34: b8 20 68 00 mv r13,r1 <== NOT EXECUTED
goto out_error; if (! PIPE_LOCK(pipe))
8009b38: b8 20 10 00 mv r2,r1 <== NOT EXECUTED 8009b3c: b8 20 18 00 mv r3,r1 <== NOT EXECUTED
prevCounter = pipe->writerCounter; err = -EINTR; /* Wait until a writer opens the pipe */ do { PIPE_UNLOCK(pipe); if (! PIPE_READWAIT(pipe))
8009b40: 5c 20 00 40 bne r1,r0,8009c40 <fifo_open+0x32c> <== NOT EXECUTED
goto out_error; if (! PIPE_LOCK(pipe))
8009b44: 29 61 00 28 lw r1,(r11+40) <== NOT EXECUTED 8009b48: fb ff f7 ca calli 8007a70 <rtems_semaphore_obtain> <== NOT EXECUTED 8009b4c: 5c 2d 00 3d bne r1,r13,8009c40 <fifo_open+0x32c> <== NOT EXECUTED
goto out_error; } while (prevCounter == pipe->writerCounter);
8009b50: 29 61 00 24 lw r1,(r11+36) <== NOT EXECUTED 8009b54: 46 01 ff f3 be r16,r1,8009b20 <fifo_open+0x20c> <== NOT EXECUTED 8009b58: e0 00 00 37 bi 8009c34 <fifo_open+0x320> <== NOT EXECUTED
} break; case LIBIO_FLAGS_WRITE: if (pipe->Readers == 0 && LIBIO_NODELAY(iop)) {
8009b5c: 29 61 00 10 lw r1,(r11+16) <== NOT EXECUTED 8009b60: 5c 20 00 05 bne r1,r0,8009b74 <fifo_open+0x260> <== NOT EXECUTED 8009b64: 20 42 00 01 andi r2,r2,0x1 <== NOT EXECUTED 8009b68: 44 40 00 03 be r2,r0,8009b74 <fifo_open+0x260> <== NOT EXECUTED 8009b6c: 34 0c ff fa mvi r12,-6 <== NOT EXECUTED 8009b70: e0 00 00 35 bi 8009c44 <fifo_open+0x330> <== NOT EXECUTED
err = -ENXIO; goto out_error; } pipe->writerCounter ++;
8009b74: 29 63 00 24 lw r3,(r11+36) <== NOT EXECUTED
if (pipe->Writers ++ == 0)
8009b78: 29 61 00 14 lw r1,(r11+20) <== NOT EXECUTED
if (pipe->Readers == 0 && LIBIO_NODELAY(iop)) { err = -ENXIO; goto out_error; } pipe->writerCounter ++;
8009b7c: 34 63 00 01 addi r3,r3,1 <== NOT EXECUTED
if (pipe->Writers ++ == 0)
8009b80: 34 22 00 01 addi r2,r1,1 <== NOT EXECUTED
if (pipe->Readers == 0 && LIBIO_NODELAY(iop)) { err = -ENXIO; goto out_error; } pipe->writerCounter ++;
8009b84: 59 63 00 24 sw (r11+36),r3 <== NOT EXECUTED
if (pipe->Writers ++ == 0)
8009b88: 59 62 00 14 sw (r11+20),r2 <== NOT EXECUTED 8009b8c: 5c 20 00 04 bne r1,r0,8009b9c <fifo_open+0x288> <== NOT EXECUTED
PIPE_WAKEUPREADERS(pipe);
8009b90: 29 61 00 2c lw r1,(r11+44) <== NOT EXECUTED 8009b94: 37 82 00 24 addi r2,sp,36 <== NOT EXECUTED 8009b98: f8 00 01 83 calli 800a1a4 <rtems_barrier_release> <== NOT EXECUTED
if (pipe->Readers == 0) {
8009b9c: 29 61 00 10 lw r1,(r11+16) <== NOT EXECUTED 8009ba0: 5c 20 00 25 bne r1,r0,8009c34 <fifo_open+0x320> <== NOT EXECUTED
prevCounter = pipe->readerCounter;
8009ba4: 29 70 00 20 lw r16,(r11+32) <== NOT EXECUTED
err = -EINTR; do { PIPE_UNLOCK(pipe);
8009ba8: 29 61 00 28 lw r1,(r11+40) <== NOT EXECUTED 8009bac: fb ff f8 01 calli 8007bb0 <rtems_semaphore_release> <== NOT EXECUTED
if (! PIPE_WRITEWAIT(pipe))
8009bb0: 29 61 00 30 lw r1,(r11+48) <== NOT EXECUTED 8009bb4: 34 02 00 00 mvi r2,0 <== NOT EXECUTED 8009bb8: f8 00 01 9a calli 800a220 <rtems_barrier_wait> <== NOT EXECUTED 8009bbc: b8 20 68 00 mv r13,r1 <== NOT EXECUTED
goto out_error; if (! PIPE_LOCK(pipe))
8009bc0: b8 20 10 00 mv r2,r1 <== NOT EXECUTED 8009bc4: b8 20 18 00 mv r3,r1 <== NOT EXECUTED
if (pipe->Readers == 0) { prevCounter = pipe->readerCounter; err = -EINTR; do { PIPE_UNLOCK(pipe); if (! PIPE_WRITEWAIT(pipe))
8009bc8: 5c 20 00 1e bne r1,r0,8009c40 <fifo_open+0x32c> <== NOT EXECUTED
goto out_error; if (! PIPE_LOCK(pipe))
8009bcc: 29 61 00 28 lw r1,(r11+40) <== NOT EXECUTED 8009bd0: fb ff f7 a8 calli 8007a70 <rtems_semaphore_obtain> <== NOT EXECUTED 8009bd4: 5c 2d 00 1b bne r1,r13,8009c40 <fifo_open+0x32c> <== NOT EXECUTED
goto out_error; } while (prevCounter == pipe->readerCounter);
8009bd8: 29 61 00 20 lw r1,(r11+32) <== NOT EXECUTED 8009bdc: 46 01 ff f3 be r16,r1,8009ba8 <fifo_open+0x294> <== NOT EXECUTED 8009be0: e0 00 00 15 bi 8009c34 <fifo_open+0x320> <== NOT EXECUTED
} break; case LIBIO_FLAGS_READ_WRITE: pipe->readerCounter ++;
8009be4: 29 63 00 20 lw r3,(r11+32) <== NOT EXECUTED
if (pipe->Readers ++ == 0)
8009be8: 29 61 00 10 lw r1,(r11+16) <== NOT EXECUTED
} while (prevCounter == pipe->readerCounter); } break; case LIBIO_FLAGS_READ_WRITE: pipe->readerCounter ++;
8009bec: 34 63 00 01 addi r3,r3,1 <== NOT EXECUTED
if (pipe->Readers ++ == 0)
8009bf0: 34 22 00 01 addi r2,r1,1 <== NOT EXECUTED
} while (prevCounter == pipe->readerCounter); } break; case LIBIO_FLAGS_READ_WRITE: pipe->readerCounter ++;
8009bf4: 59 63 00 20 sw (r11+32),r3 <== NOT EXECUTED
if (pipe->Readers ++ == 0)
8009bf8: 59 62 00 10 sw (r11+16),r2 <== NOT EXECUTED 8009bfc: 5c 20 00 04 bne r1,r0,8009c0c <fifo_open+0x2f8> <== NOT EXECUTED
PIPE_WAKEUPWRITERS(pipe);
8009c00: 29 61 00 30 lw r1,(r11+48) <== NOT EXECUTED 8009c04: 37 82 00 24 addi r2,sp,36 <== NOT EXECUTED 8009c08: f8 00 01 67 calli 800a1a4 <rtems_barrier_release> <== NOT EXECUTED
pipe->writerCounter ++;
8009c0c: 29 63 00 24 lw r3,(r11+36) <== NOT EXECUTED
if (pipe->Writers ++ == 0)
8009c10: 29 61 00 14 lw r1,(r11+20) <== NOT EXECUTED
case LIBIO_FLAGS_READ_WRITE: pipe->readerCounter ++; if (pipe->Readers ++ == 0) PIPE_WAKEUPWRITERS(pipe); pipe->writerCounter ++;
8009c14: 34 63 00 01 addi r3,r3,1 <== NOT EXECUTED
if (pipe->Writers ++ == 0)
8009c18: 34 22 00 01 addi r2,r1,1 <== NOT EXECUTED
case LIBIO_FLAGS_READ_WRITE: pipe->readerCounter ++; if (pipe->Readers ++ == 0) PIPE_WAKEUPWRITERS(pipe); pipe->writerCounter ++;
8009c1c: 59 63 00 24 sw (r11+36),r3 <== NOT EXECUTED
if (pipe->Writers ++ == 0)
8009c20: 59 62 00 14 sw (r11+20),r2 <== NOT EXECUTED 8009c24: 5c 20 00 04 bne r1,r0,8009c34 <fifo_open+0x320> <== NOT EXECUTED
PIPE_WAKEUPREADERS(pipe);
8009c28: 29 61 00 2c lw r1,(r11+44) <== NOT EXECUTED 8009c2c: 37 82 00 24 addi r2,sp,36 <== NOT EXECUTED 8009c30: f8 00 01 5d calli 800a1a4 <rtems_barrier_release> <== NOT EXECUTED
break; } PIPE_UNLOCK(pipe);
8009c34: 29 61 00 28 lw r1,(r11+40) <== NOT EXECUTED 8009c38: fb ff f7 de calli 8007bb0 <rtems_semaphore_release> <== NOT EXECUTED
return 0;
8009c3c: e0 00 00 05 bi 8009c50 <fifo_open+0x33c> <== NOT EXECUTED 8009c40: 34 0c ff fc mvi r12,-4 <== NOT EXECUTED
out_error: pipe_release(pipep, iop);
8009c44: b9 c0 08 00 mv r1,r14 <== NOT EXECUTED 8009c48: b9 e0 10 00 mv r2,r15 <== NOT EXECUTED 8009c4c: fb ff fe ea calli 80097f4 <pipe_release> <== NOT EXECUTED
return err; }
8009c50: b9 80 08 00 mv r1,r12 8009c54: 2b 9d 00 04 lw ra,(sp+4) 8009c58: 2b 8b 00 20 lw r11,(sp+32) 8009c5c: 2b 8c 00 1c lw r12,(sp+28) 8009c60: 2b 8d 00 18 lw r13,(sp+24) 8009c64: 2b 8e 00 14 lw r14,(sp+20) 8009c68: 2b 8f 00 10 lw r15,(sp+16) 8009c6c: 2b 90 00 0c lw r16,(sp+12) 8009c70: 2b 91 00 08 lw r17,(sp+8) 8009c74: 37 9c 00 24 addi sp,sp,36 8009c78: c3 a0 00 00 ret
08028a24 <file_systems_below_this_mountpoint>: /* * Search the mount table for any mount entries referencing this * mount entry. */ for ( the_node = rtems_filesystem_mount_table_control.first;
8028a24: 78 01 08 06 mvhi r1,0x806 <== NOT EXECUTED 8028a28: 38 21 ee d8 ori r1,r1,0xeed8 <== NOT EXECUTED 8028a2c: 34 23 00 04 addi r3,r1,4 <== NOT EXECUTED 8028a30: e0 00 00 06 bi 8028a48 <file_systems_below_this_mountpoint+0x24><== NOT EXECUTED
!rtems_chain_is_tail( &rtems_filesystem_mount_table_control, the_node ); the_node = the_node->next ) { the_mount_entry = ( rtems_filesystem_mount_table_entry_t * )the_node; if (the_mount_entry->mt_point_node.mt_entry == fs_root_loc->mt_entry ) {
8028a34: 28 25 00 18 lw r5,(r1+24) <== NOT EXECUTED 8028a38: 28 44 00 10 lw r4,(r2+16) <== NOT EXECUTED 8028a3c: 5c a4 00 03 bne r5,r4,8028a48 <file_systems_below_this_mountpoint+0x24><== NOT EXECUTED 8028a40: 34 01 00 01 mvi r1,1 <== NOT EXECUTED 8028a44: c3 a0 00 00 ret <== NOT EXECUTED
* mount entry. */ for ( the_node = rtems_filesystem_mount_table_control.first; !rtems_chain_is_tail( &rtems_filesystem_mount_table_control, the_node ); the_node = the_node->next ) {
8028a48: 28 21 00 00 lw r1,(r1+0) <== NOT EXECUTED 8028a4c: 5c 23 ff fa bne r1,r3,8028a34 <file_systems_below_this_mountpoint+0x10><== NOT EXECUTED 8028a50: 34 01 00 00 mvi r1,0 <== NOT EXECUTED
return true; } } return false; }
8028a54: c3 a0 00 00 ret <== NOT EXECUTED
080023cc <fpathconf>: long fpathconf( int fd, int name ) {
80023cc: 37 9c ff f0 addi sp,sp,-16 80023d0: 5b 8b 00 10 sw (sp+16),r11 80023d4: 5b 8c 00 0c sw (sp+12),r12 80023d8: 5b 8d 00 08 sw (sp+8),r13 80023dc: 5b 9d 00 04 sw (sp+4),ra
long return_value; rtems_libio_t *iop; rtems_filesystem_limits_and_options_t *the_limits; rtems_libio_check_fd(fd);
80023e0: 78 03 08 02 mvhi r3,0x802 80023e4: 38 63 00 10 ori r3,r3,0x10 80023e8: 28 63 00 00 lw r3,(r3+0)
long fpathconf( int fd, int name ) {
80023ec: b8 40 60 00 mv r12,r2
long return_value; rtems_libio_t *iop; rtems_filesystem_limits_and_options_t *the_limits; rtems_libio_check_fd(fd); 80023f0: 54 61 00 02 bgu r3,r1,80023f8 <fpathconf+0x2c>
80023f4: e0 00 00 0e bi 800242c <fpathconf+0x60>
iop = rtems_libio_iop(fd);
80023f8: 34 02 00 03 mvi r2,3 80023fc: fb ff f9 e2 calli 8000b84 <__ashlsi3> 8002400: 34 02 00 03 mvi r2,3 8002404: 78 0b 08 02 mvhi r11,0x802 8002408: b8 20 68 00 mv r13,r1 800240c: 39 6b 06 a4 ori r11,r11,0x6a4 8002410: fb ff f9 dd calli 8000b84 <__ashlsi3> 8002414: 29 62 00 00 lw r2,(r11+0) 8002418: b5 a1 08 00 add r1,r13,r1 800241c: b4 41 08 00 add r1,r2,r1
rtems_libio_check_is_open(iop);
8002420: 28 22 00 18 lw r2,(r1+24) 8002424: 20 43 01 00 andi r3,r2,0x100
8002428: 5c 60 00 04 bne r3,r0,8002438 <fpathconf+0x6c> <== ALWAYS TAKEN
800242c: f8 00 2d c9 calli 800db50 <__errno> 8002430: 34 02 00 09 mvi r2,9 8002434: e0 00 00 28 bi 80024d4 <fpathconf+0x108>
rtems_libio_check_permissions(iop, LIBIO_FLAGS_READ);
8002438: 20 42 00 02 andi r2,r2,0x2
800243c: 44 40 00 24 be r2,r0,80024cc <fpathconf+0x100> <== NEVER TAKEN
/* * Now process the information request. */ the_limits = &iop->pathinfo.mt_entry->pathconf_limits_and_options;
8002440: 28 2b 00 2c lw r11,(r1+44)
switch ( name ) {
8002444: 34 01 00 0b mvi r1,11
8002448: 55 81 00 21 bgu r12,r1,80024cc <fpathconf+0x100>
800244c: b9 80 08 00 mv r1,r12 8002450: 34 02 00 02 mvi r2,2 8002454: 78 0c 08 01 mvhi r12,0x801 8002458: fb ff f9 cb calli 8000b84 <__ashlsi3> 800245c: 39 8c e4 3c ori r12,r12,0xe43c 8002460: b5 81 08 00 add r1,r12,r1 8002464: 28 21 00 00 lw r1,(r1+0) 8002468: c0 20 00 00 b r1
case _PC_LINK_MAX: return_value = the_limits->link_max;
800246c: 29 61 00 38 lw r1,(r11+56)
break;
8002470: e0 00 00 1b bi 80024dc <fpathconf+0x110>
case _PC_MAX_CANON: return_value = the_limits->max_canon;
8002474: 29 61 00 3c lw r1,(r11+60)
break;
8002478: e0 00 00 19 bi 80024dc <fpathconf+0x110>
case _PC_MAX_INPUT: return_value = the_limits->max_input;
800247c: 29 61 00 40 lw r1,(r11+64)
break;
8002480: e0 00 00 17 bi 80024dc <fpathconf+0x110>
case _PC_NAME_MAX: return_value = the_limits->name_max;
8002484: 29 61 00 44 lw r1,(r11+68)
break;
8002488: e0 00 00 15 bi 80024dc <fpathconf+0x110>
case _PC_PATH_MAX: return_value = the_limits->path_max;
800248c: 29 61 00 48 lw r1,(r11+72)
break;
8002490: e0 00 00 13 bi 80024dc <fpathconf+0x110>
case _PC_PIPE_BUF: return_value = the_limits->pipe_buf;
8002494: 29 61 00 4c lw r1,(r11+76)
break;
8002498: e0 00 00 11 bi 80024dc <fpathconf+0x110>
case _PC_CHOWN_RESTRICTED: return_value = the_limits->posix_chown_restrictions;
800249c: 29 61 00 54 lw r1,(r11+84)
break;
80024a0: e0 00 00 0f bi 80024dc <fpathconf+0x110>
case _PC_NO_TRUNC: return_value = the_limits->posix_no_trunc;
80024a4: 29 61 00 58 lw r1,(r11+88)
break;
80024a8: e0 00 00 0d bi 80024dc <fpathconf+0x110>
case _PC_VDISABLE: return_value = the_limits->posix_vdisable;
80024ac: 29 61 00 64 lw r1,(r11+100)
break;
80024b0: e0 00 00 0b bi 80024dc <fpathconf+0x110>
case _PC_ASYNC_IO: return_value = the_limits->posix_async_io;
80024b4: 29 61 00 50 lw r1,(r11+80)
break;
80024b8: e0 00 00 09 bi 80024dc <fpathconf+0x110>
case _PC_PRIO_IO: return_value = the_limits->posix_prio_io;
80024bc: 29 61 00 5c lw r1,(r11+92)
break;
80024c0: e0 00 00 07 bi 80024dc <fpathconf+0x110>
case _PC_SYNC_IO: return_value = the_limits->posix_sync_io;
80024c4: 29 61 00 60 lw r1,(r11+96)
break;
80024c8: e0 00 00 05 bi 80024dc <fpathconf+0x110>
default: rtems_set_errno_and_return_minus_one( EINVAL );
80024cc: f8 00 2d a1 calli 800db50 <__errno> 80024d0: 34 02 00 16 mvi r2,22 80024d4: 58 22 00 00 sw (r1+0),r2 80024d8: 34 01 ff ff mvi r1,-1
break; } return return_value; }
80024dc: 2b 9d 00 04 lw ra,(sp+4) 80024e0: 2b 8b 00 10 lw r11,(sp+16) 80024e4: 2b 8c 00 0c lw r12,(sp+12) 80024e8: 2b 8d 00 08 lw r13,(sp+8) 80024ec: 37 9c 00 10 addi sp,sp,16 80024f0: c3 a0 00 00 ret
08007044 <free>: void free( void *ptr ) { MSBUMP(free_calls, 1);
8007044: 37 9c ff f4 addi sp,sp,-12 8007048: 5b 8b 00 0c sw (sp+12),r11 800704c: 5b 8c 00 08 sw (sp+8),r12 8007050: 5b 9d 00 04 sw (sp+4),ra 8007054: 78 02 08 01 mvhi r2,0x801 8007058: 38 42 c6 a8 ori r2,r2,0xc6a8 800705c: 28 43 00 0c lw r3,(r2+12) 8007060: b8 20 58 00 mv r11,r1 8007064: 34 61 00 01 addi r1,r3,1 8007068: 58 41 00 0c sw (r2+12),r1
if ( !ptr ) 800706c: 45 60 00 1f be r11,r0,80070e8 <free+0xa4> /* * Do not attempt to free memory if in a critical section or ISR. */ if ( _System_state_Is_up(_System_state_Get()) &&
8007070: 78 01 08 01 mvhi r1,0x801 8007074: 38 21 c9 c0 ori r1,r1,0xc9c0 8007078: 28 22 00 00 lw r2,(r1+0) 800707c: 34 01 00 03 mvi r1,3
8007080: 5c 41 00 06 bne r2,r1,8007098 <free+0x54> <== NEVER TAKEN
8007084: f8 00 01 59 calli 80075e8 <malloc_is_system_state_OK>
8007088: 5c 20 00 04 bne r1,r0,8007098 <free+0x54> <== ALWAYS TAKEN
!malloc_is_system_state_OK() ) { malloc_deferred_free(ptr);
800708c: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8007090: f8 00 01 68 calli 8007630 <malloc_deferred_free> <== NOT EXECUTED
return;
8007094: e0 00 00 15 bi 80070e8 <free+0xa4> <== NOT EXECUTED
#endif /* * If configured, update the statistics */ if ( rtems_malloc_statistics_helpers )
8007098: 78 01 08 01 mvhi r1,0x801 800709c: 38 21 c6 10 ori r1,r1,0xc610 80070a0: 28 21 00 00 lw r1,(r1+0)
80070a4: 44 20 00 04 be r1,r0,80070b4 <free+0x70> <== ALWAYS TAKEN
(*rtems_malloc_statistics_helpers->at_free)(ptr);
80070a8: 28 22 00 08 lw r2,(r1+8) <== NOT EXECUTED 80070ac: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 80070b0: d8 40 00 00 call r2 <== NOT EXECUTED
if ( !_Protected_heap_Free( RTEMS_Malloc_Heap, ptr ) ) {
80070b4: 78 0c 08 01 mvhi r12,0x801 80070b8: 39 8c c0 1c ori r12,r12,0xc01c 80070bc: 29 81 00 00 lw r1,(r12+0) 80070c0: b9 60 10 00 mv r2,r11 80070c4: f8 00 06 6f calli 8008a80 <_Protected_heap_Free>
80070c8: 5c 20 00 08 bne r1,r0,80070e8 <free+0xa4> <== ALWAYS TAKEN
printk( "Program heap: free of bad pointer %p -- range %p - %p \n", ptr, RTEMS_Malloc_Heap->area_begin,
80070cc: 29 82 00 00 lw r2,(r12+0) <== NOT EXECUTED
*/ if ( rtems_malloc_statistics_helpers ) (*rtems_malloc_statistics_helpers->at_free)(ptr); if ( !_Protected_heap_Free( RTEMS_Malloc_Heap, ptr ) ) { printk( "Program heap: free of bad pointer %p -- range %p - %p \n",
80070d0: 78 01 08 01 mvhi r1,0x801 <== NOT EXECUTED 80070d4: 38 21 a6 68 ori r1,r1,0xa668 <== NOT EXECUTED 80070d8: 28 44 00 1c lw r4,(r2+28) <== NOT EXECUTED 80070dc: 28 43 00 18 lw r3,(r2+24) <== NOT EXECUTED 80070e0: b9 60 10 00 mv r2,r11 <== NOT EXECUTED 80070e4: fb ff ea 96 calli 8001b3c <printk> <== NOT EXECUTED
RTEMS_Malloc_Heap->area_begin, RTEMS_Malloc_Heap->area_end ); } }
80070e8: 2b 9d 00 04 lw ra,(sp+4) 80070ec: 2b 8b 00 0c lw r11,(sp+12) 80070f0: 2b 8c 00 08 lw r12,(sp+8) 80070f4: 37 9c 00 0c addi sp,sp,12 80070f8: c3 a0 00 00 ret
080280b8 <free_user_env>: * NOTE: this must be called with * thread dispatching disabled! */ static void free_user_env(void *venv) {
80280b8: 37 9c ff f8 addi sp,sp,-8 <== NOT EXECUTED 80280bc: 5b 8b 00 08 sw (sp+8),r11 <== NOT EXECUTED 80280c0: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
rtems_user_env_t *env = (rtems_user_env_t*) venv ; if (env != &rtems_global_user_env
80280c4: 78 02 08 06 mvhi r2,0x806 <== NOT EXECUTED 80280c8: 38 42 ee e4 ori r2,r2,0xeee4 <== NOT EXECUTED
* NOTE: this must be called with * thread dispatching disabled! */ static void free_user_env(void *venv) {
80280cc: b8 20 58 00 mv r11,r1 <== NOT EXECUTED
rtems_user_env_t *env = (rtems_user_env_t*) venv ; if (env != &rtems_global_user_env
80280d0: 44 22 00 0f be r1,r2,802810c <free_user_env+0x54> <== NOT EXECUTED
#ifdef HAVE_USERENV_REFCNT && --env->refcnt <= 0 #endif ) { rtems_filesystem_freenode( &env->current_directory);
80280d4: 28 21 00 10 lw r1,(r1+16) <== NOT EXECUTED 80280d8: 44 20 00 05 be r1,r0,80280ec <free_user_env+0x34> <== NOT EXECUTED 80280dc: 28 22 00 1c lw r2,(r1+28) <== NOT EXECUTED 80280e0: 44 40 00 03 be r2,r0,80280ec <free_user_env+0x34> <== NOT EXECUTED 80280e4: 35 61 00 04 addi r1,r11,4 <== NOT EXECUTED 80280e8: d8 40 00 00 call r2 <== NOT EXECUTED
rtems_filesystem_freenode( &env->root_directory);
80280ec: 29 61 00 24 lw r1,(r11+36) <== NOT EXECUTED 80280f0: 44 20 00 05 be r1,r0,8028104 <free_user_env+0x4c> <== NOT EXECUTED 80280f4: 28 22 00 1c lw r2,(r1+28) <== NOT EXECUTED 80280f8: 44 40 00 03 be r2,r0,8028104 <free_user_env+0x4c> <== NOT EXECUTED 80280fc: 35 61 00 18 addi r1,r11,24 <== NOT EXECUTED 8028100: d8 40 00 00 call r2 <== NOT EXECUTED
free(env);
8028104: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8028108: fb ff 78 80 calli 8006308 <free> <== NOT EXECUTED
} }
802810c: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8028110: 2b 8b 00 08 lw r11,(sp+8) <== NOT EXECUTED 8028114: 37 9c 00 08 addi sp,sp,8 <== NOT EXECUTED 8028118: c3 a0 00 00 ret <== NOT EXECUTED
080192a0 <fstat>: int fstat( int fd, struct stat *sbuf ) {
80192a0: 37 9c ff ec addi sp,sp,-20 80192a4: 5b 8b 00 14 sw (sp+20),r11 80192a8: 5b 8c 00 10 sw (sp+16),r12 80192ac: 5b 8d 00 0c sw (sp+12),r13 80192b0: 5b 8e 00 08 sw (sp+8),r14 80192b4: 5b 9d 00 04 sw (sp+4),ra 80192b8: b8 40 60 00 mv r12,r2
/* * Check to see if we were passed a valid pointer. */ if ( !sbuf ) 80192bc: 5c 40 00 04 bne r2,r0,80192cc <fstat+0x2c> rtems_set_errno_and_return_minus_one( EFAULT );
80192c0: fb ff c7 14 calli 800af10 <__errno> 80192c4: 34 02 00 0e mvi r2,14 80192c8: e0 00 00 14 bi 8019318 <fstat+0x78>
/* * Now process the stat() request. */ iop = rtems_libio_iop( fd );
80192cc: 78 02 08 01 mvhi r2,0x801 80192d0: 38 42 c0 10 ori r2,r2,0xc010 80192d4: 28 42 00 00 lw r2,(r2+0)
80192d8: 50 22 00 0e bgeu r1,r2,8019310 <fstat+0x70>
80192dc: 34 02 00 03 mvi r2,3 80192e0: fb ff 9b c4 calli 80001f0 <__ashlsi3> 80192e4: 78 0d 08 01 mvhi r13,0x801 80192e8: 39 ad c6 9c ori r13,r13,0xc69c 80192ec: 34 02 00 03 mvi r2,3 80192f0: b8 20 70 00 mv r14,r1 80192f4: fb ff 9b bf calli 80001f0 <__ashlsi3> 80192f8: 29 ab 00 00 lw r11,(r13+0) 80192fc: b5 c1 08 00 add r1,r14,r1 8019300: b5 61 58 00 add r11,r11,r1
rtems_libio_check_fd( fd ); rtems_libio_check_is_open(iop);
8019304: 29 61 00 18 lw r1,(r11+24) 8019308: 20 21 01 00 andi r1,r1,0x100
801930c: 5c 20 00 06 bne r1,r0,8019324 <fstat+0x84> <== ALWAYS TAKEN
/* * Now process the stat() request. */ iop = rtems_libio_iop( fd ); rtems_libio_check_fd( fd );
8019310: fb ff c7 00 calli 800af10 <__errno> 8019314: 34 02 00 09 mvi r2,9 8019318: 58 22 00 00 sw (r1+0),r2 801931c: 34 01 ff ff mvi r1,-1 8019320: e0 00 00 11 bi 8019364 <fstat+0xc4>
rtems_libio_check_is_open(iop); if ( !iop->handlers )
8019324: 29 61 00 40 lw r1,(r11+64)
8019328: 44 20 ff fa be r1,r0,8019310 <fstat+0x70> <== NEVER TAKEN
rtems_set_errno_and_return_minus_one( EBADF ); if ( !iop->handlers->fstat_h )
801932c: 28 21 00 18 lw r1,(r1+24)
8019330: 5c 20 00 04 bne r1,r0,8019340 <fstat+0xa0> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( ENOTSUP );
8019334: fb ff c6 f7 calli 800af10 <__errno> <== NOT EXECUTED 8019338: 34 02 00 86 mvi r2,134 <== NOT EXECUTED 801933c: e3 ff ff f7 bi 8019318 <fstat+0x78> <== NOT EXECUTED
/* * Zero out the stat structure so the various support * versions of stat don't have to. */ memset( sbuf, 0, sizeof(struct stat) );
8019340: 34 02 00 00 mvi r2,0 8019344: 34 03 00 48 mvi r3,72 8019348: b9 80 08 00 mv r1,r12 801934c: fb ff c9 f5 calli 800bb20 <memset>
return (*iop->handlers->fstat_h)( &iop->pathinfo, sbuf );
8019350: 29 63 00 40 lw r3,(r11+64) 8019354: 35 61 00 1c addi r1,r11,28 8019358: b9 80 10 00 mv r2,r12 801935c: 28 63 00 18 lw r3,(r3+24) 8019360: d8 60 00 00 call r3
}
8019364: 2b 9d 00 04 lw ra,(sp+4) 8019368: 2b 8b 00 14 lw r11,(sp+20) 801936c: 2b 8c 00 10 lw r12,(sp+16) 8019370: 2b 8d 00 0c lw r13,(sp+12) 8019374: 2b 8e 00 08 lw r14,(sp+8) 8019378: 37 9c 00 14 addi sp,sp,20 801937c: c3 a0 00 00 ret
08026a58 <fsync>: #include <rtems/seterr.h> int fsync( int fd ) {
8026a58: 37 9c ff f4 addi sp,sp,-12 8026a5c: 5b 8b 00 0c sw (sp+12),r11 8026a60: 5b 8c 00 08 sw (sp+8),r12 8026a64: 5b 9d 00 04 sw (sp+4),ra
rtems_libio_t *iop; rtems_libio_check_fd( fd );
8026a68: 78 02 08 06 mvhi r2,0x806 8026a6c: 38 42 b0 10 ori r2,r2,0xb010 8026a70: 28 42 00 00 lw r2,(r2+0)
8026a74: 54 41 00 02 bgu r2,r1,8026a7c <fsync+0x24> <== ALWAYS TAKEN
8026a78: e0 00 00 15 bi 8026acc <fsync+0x74> <== NOT EXECUTED
iop = rtems_libio_iop( fd );
8026a7c: 34 02 00 03 mvi r2,3 8026a80: fb ff 69 ae calli 8001138 <__ashlsi3> 8026a84: 34 02 00 03 mvi r2,3 8026a88: 78 0b 08 06 mvhi r11,0x806 8026a8c: b8 20 60 00 mv r12,r1 8026a90: 39 6b ee 90 ori r11,r11,0xee90 8026a94: fb ff 69 a9 calli 8001138 <__ashlsi3> 8026a98: 29 62 00 00 lw r2,(r11+0) 8026a9c: b5 81 08 00 add r1,r12,r1 8026aa0: b4 41 08 00 add r1,r2,r1
rtems_libio_check_is_open(iop);
8026aa4: 28 22 00 18 lw r2,(r1+24) 8026aa8: 20 43 01 00 andi r3,r2,0x100
8026aac: 44 60 00 08 be r3,r0,8026acc <fsync+0x74> <== NEVER TAKEN
rtems_libio_check_permissions( iop, LIBIO_FLAGS_WRITE );
8026ab0: 20 42 00 04 andi r2,r2,0x4
8026ab4: 5c 40 00 04 bne r2,r0,8026ac4 <fsync+0x6c>
8026ab8: f8 00 6f 97 calli 8042914 <__errno> 8026abc: 34 02 00 16 mvi r2,22 8026ac0: e0 00 00 0a bi 8026ae8 <fsync+0x90>
/* * Now process the fsync(). */ if ( !iop->handlers )
8026ac4: 28 22 00 40 lw r2,(r1+64)
8026ac8: 5c 40 00 04 bne r2,r0,8026ad8 <fsync+0x80> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( EBADF );
8026acc: f8 00 6f 92 calli 8042914 <__errno> <== NOT EXECUTED 8026ad0: 34 02 00 09 mvi r2,9 <== NOT EXECUTED 8026ad4: e0 00 00 05 bi 8026ae8 <fsync+0x90> <== NOT EXECUTED
if ( !iop->handlers->fsync_h )
8026ad8: 28 42 00 28 lw r2,(r2+40)
8026adc: 5c 40 00 06 bne r2,r0,8026af4 <fsync+0x9c> rtems_set_errno_and_return_minus_one( ENOTSUP );
8026ae0: f8 00 6f 8d calli 8042914 <__errno> 8026ae4: 34 02 00 86 mvi r2,134 8026ae8: 58 22 00 00 sw (r1+0),r2 8026aec: 34 01 ff ff mvi r1,-1 8026af0: e0 00 00 02 bi 8026af8 <fsync+0xa0>
return (*iop->handlers->fsync_h)( iop );
8026af4: d8 40 00 00 call r2
}
8026af8: 2b 9d 00 04 lw ra,(sp+4) 8026afc: 2b 8b 00 0c lw r11,(sp+12) 8026b00: 2b 8c 00 08 lw r12,(sp+8) 8026b04: 37 9c 00 0c addi sp,sp,12 8026b08: c3 a0 00 00 ret
080070fc <ftruncate>: int ftruncate( int fd, off_t length ) {
80070fc: 37 9c ff d8 addi sp,sp,-40 8007100: 5b 8b 00 14 sw (sp+20),r11 8007104: 5b 8c 00 10 sw (sp+16),r12 8007108: 5b 8d 00 0c sw (sp+12),r13 800710c: 5b 8e 00 08 sw (sp+8),r14 8007110: 5b 9d 00 04 sw (sp+4),ra
rtems_libio_t *iop; rtems_filesystem_location_info_t loc; rtems_libio_check_fd( fd );
8007114: 78 03 08 01 mvhi r3,0x801 8007118: 38 63 c0 10 ori r3,r3,0xc010 800711c: 28 63 00 00 lw r3,(r3+0)
int ftruncate( int fd, off_t length ) {
8007120: b8 40 68 00 mv r13,r2
rtems_libio_t *iop; rtems_filesystem_location_info_t loc; rtems_libio_check_fd( fd );
8007124: 54 61 00 02 bgu r3,r1,800712c <ftruncate+0x30> <== ALWAYS TAKEN
8007128: e0 00 00 0e bi 8007160 <ftruncate+0x64> <== NOT EXECUTED
iop = rtems_libio_iop( fd );
800712c: 34 02 00 03 mvi r2,3 8007130: fb ff e4 30 calli 80001f0 <__ashlsi3> 8007134: 78 0c 08 01 mvhi r12,0x801 8007138: 39 8c c6 9c ori r12,r12,0xc69c 800713c: 34 02 00 03 mvi r2,3 8007140: b8 20 70 00 mv r14,r1 8007144: fb ff e4 2b calli 80001f0 <__ashlsi3> 8007148: 29 8b 00 00 lw r11,(r12+0) 800714c: b5 c1 08 00 add r1,r14,r1 8007150: b5 61 58 00 add r11,r11,r1
rtems_libio_check_is_open(iop);
8007154: 29 61 00 18 lw r1,(r11+24) 8007158: 20 21 01 00 andi r1,r1,0x100
800715c: 5c 20 00 04 bne r1,r0,800716c <ftruncate+0x70> <== ALWAYS TAKEN
8007160: f8 00 0f 6c calli 800af10 <__errno> <== NOT EXECUTED 8007164: 34 02 00 09 mvi r2,9 <== NOT EXECUTED 8007168: e0 00 00 1b bi 80071d4 <ftruncate+0xd8> <== NOT EXECUTED
/* * Make sure we are not working on a directory */ loc = iop->pathinfo;
800716c: 37 8c 00 18 addi r12,sp,24 8007170: b9 80 08 00 mv r1,r12 8007174: 35 62 00 1c addi r2,r11,28 8007178: 34 03 00 14 mvi r3,20 800717c: f8 00 12 0b calli 800b9a8 <memcpy>
if ( !loc.ops->node_type_h )
8007180: 2b 81 00 24 lw r1,(sp+36) 8007184: 28 24 00 10 lw r4,(r1+16)
8007188: 44 80 00 11 be r4,r0,80071cc <ftruncate+0xd0> <== NEVER TAKEN
rtems_set_errno_and_return_minus_one( ENOTSUP ); if ( (*loc.ops->node_type_h)( &loc ) == RTEMS_FILESYSTEM_DIRECTORY )
800718c: b9 80 08 00 mv r1,r12 8007190: d8 80 00 00 call r4 8007194: 34 02 00 01 mvi r2,1
8007198: 5c 22 00 04 bne r1,r2,80071a8 <ftruncate+0xac> rtems_set_errno_and_return_minus_one( EISDIR );
800719c: f8 00 0f 5d calli 800af10 <__errno> 80071a0: 34 02 00 15 mvi r2,21 80071a4: e0 00 00 0c bi 80071d4 <ftruncate+0xd8>
rtems_libio_check_permissions( iop, LIBIO_FLAGS_WRITE );
80071a8: 29 61 00 18 lw r1,(r11+24) 80071ac: 20 21 00 04 andi r1,r1,0x4
80071b0: 5c 20 00 04 bne r1,r0,80071c0 <ftruncate+0xc4> <== ALWAYS TAKEN
80071b4: f8 00 0f 57 calli 800af10 <__errno> <== NOT EXECUTED 80071b8: 34 02 00 16 mvi r2,22 <== NOT EXECUTED 80071bc: e0 00 00 06 bi 80071d4 <ftruncate+0xd8> <== NOT EXECUTED
if ( !iop->handlers->ftruncate_h )
80071c0: 29 61 00 40 lw r1,(r11+64) 80071c4: 28 2c 00 20 lw r12,(r1+32)
80071c8: 5d 80 00 06 bne r12,r0,80071e0 <ftruncate+0xe4> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( ENOTSUP );
80071cc: f8 00 0f 51 calli 800af10 <__errno> <== NOT EXECUTED 80071d0: 34 02 00 86 mvi r2,134 <== NOT EXECUTED
80071d4: 58 22 00 00 sw (r1+0),r2 80071d8: 34 01 ff ff mvi r1,-1 80071dc: e0 00 00 08 bi 80071fc <ftruncate+0x100>
return (*iop->handlers->ftruncate_h)( iop, length );
80071e0: 34 02 00 1f mvi r2,31 80071e4: b9 a0 08 00 mv r1,r13 80071e8: fb ff e4 52 calli 8000330 <__ashrsi3> 80071ec: b8 20 10 00 mv r2,r1 80071f0: b9 a0 18 00 mv r3,r13 80071f4: b9 60 08 00 mv r1,r11 80071f8: d9 80 00 00 call r12
}
80071fc: 2b 9d 00 04 lw ra,(sp+4) 8007200: 2b 8b 00 14 lw r11,(sp+20) 8007204: 2b 8c 00 10 lw r12,(sp+16) 8007208: 2b 8d 00 0c lw r13,(sp+12) 800720c: 2b 8e 00 08 lw r14,(sp+8) 8007210: 37 9c 00 28 addi sp,sp,40 8007214: c3 a0 00 00 ret
0805f034 <getdents>: int getdents( int dd_fd, char *dd_buf, int dd_len ) {
805f034: 37 9c ff d4 addi sp,sp,-44 805f038: 5b 8b 00 18 sw (sp+24),r11 805f03c: 5b 8c 00 14 sw (sp+20),r12 805f040: 5b 8d 00 10 sw (sp+16),r13 805f044: 5b 8e 00 0c sw (sp+12),r14 805f048: 5b 8f 00 08 sw (sp+8),r15 805f04c: 5b 9d 00 04 sw (sp+4),ra
/* * Get the file control block structure associated with the file descriptor */ iop = rtems_libio_iop( dd_fd );
805f050: 78 04 08 06 mvhi r4,0x806 805f054: 38 84 b0 10 ori r4,r4,0xb010 805f058: 28 84 00 00 lw r4,(r4+0)
int getdents( int dd_fd, char *dd_buf, int dd_len ) {
805f05c: b8 40 78 00 mv r15,r2 805f060: b8 60 70 00 mv r14,r3
/* * Get the file control block structure associated with the file descriptor */ iop = rtems_libio_iop( dd_fd );
805f064: 54 81 00 03 bgu r4,r1,805f070 <getdents+0x3c> <== ALWAYS TAKEN
805f068: 34 0b 00 00 mvi r11,0 <== NOT EXECUTED 805f06c: e0 00 00 0b bi 805f098 <getdents+0x64> <== NOT EXECUTED
805f070: 34 02 00 03 mvi r2,3 805f074: fb fe 88 31 calli 8001138 <__ashlsi3> 805f078: 78 0c 08 06 mvhi r12,0x806 805f07c: 39 8c ee 90 ori r12,r12,0xee90 805f080: 34 02 00 03 mvi r2,3 805f084: b8 20 68 00 mv r13,r1 805f088: fb fe 88 2c calli 8001138 <__ashlsi3> 805f08c: 29 8b 00 00 lw r11,(r12+0) 805f090: b5 a1 08 00 add r1,r13,r1 805f094: b5 61 58 00 add r11,r11,r1
/* * Make sure we are working on a directory */ loc = iop->pathinfo;
805f098: 37 8d 00 1c addi r13,sp,28 805f09c: 34 0c 00 14 mvi r12,20 805f0a0: b9 a0 08 00 mv r1,r13 805f0a4: 35 62 00 1c addi r2,r11,28 805f0a8: b9 80 18 00 mv r3,r12 805f0ac: fb ff 9c bc calli 804639c <memcpy>
if ( !loc.ops->node_type_h )
805f0b0: 2b 81 00 28 lw r1,(sp+40) 805f0b4: 28 24 00 10 lw r4,(r1+16)
805f0b8: 44 80 00 0c be r4,r0,805f0e8 <getdents+0xb4> <== NEVER TAKEN
rtems_set_errno_and_return_minus_one( ENOTSUP ); if ( (*loc.ops->node_type_h)( &loc ) != RTEMS_FILESYSTEM_DIRECTORY )
805f0bc: b9 a0 08 00 mv r1,r13 805f0c0: d8 80 00 00 call r4 805f0c4: 34 02 00 01 mvi r2,1
805f0c8: 44 22 00 05 be r1,r2,805f0dc <getdents+0xa8> rtems_set_errno_and_return_minus_one( ENOTDIR );
805f0cc: fb ff 8e 12 calli 8042914 <__errno> 805f0d0: 58 2c 00 00 sw (r1+0),r12 805f0d4: 34 01 ff ff mvi r1,-1 805f0d8: e0 00 00 0c bi 805f108 <getdents+0xd4>
/* * Return the number of bytes that were actually transfered as a result * of the read attempt. */ if ( !iop->handlers->read_h )
805f0dc: 29 61 00 40 lw r1,(r11+64) 805f0e0: 28 24 00 08 lw r4,(r1+8)
805f0e4: 5c 80 00 05 bne r4,r0,805f0f8 <getdents+0xc4> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( ENOTSUP );
805f0e8: fb ff 8e 0b calli 8042914 <__errno> <== NOT EXECUTED 805f0ec: 34 02 00 86 mvi r2,134 <== NOT EXECUTED 805f0f0: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 805f0f4: e3 ff ff f8 bi 805f0d4 <getdents+0xa0> <== NOT EXECUTED
return (*iop->handlers->read_h)( iop, dd_buf, dd_len );
805f0f8: b9 60 08 00 mv r1,r11 805f0fc: b9 e0 10 00 mv r2,r15 805f100: b9 c0 18 00 mv r3,r14 805f104: d8 80 00 00 call r4
}
805f108: 2b 9d 00 04 lw ra,(sp+4) 805f10c: 2b 8b 00 18 lw r11,(sp+24) 805f110: 2b 8c 00 14 lw r12,(sp+20) 805f114: 2b 8d 00 10 lw r13,(sp+16) 805f118: 2b 8e 00 0c lw r14,(sp+12) 805f11c: 2b 8f 00 08 lw r15,(sp+8) 805f120: 37 9c 00 2c addi sp,sp,44 805f124: c3 a0 00 00 ret
08026c50 <getgid>: * 4.2.1 Get Real User, Effective User, Ral Group, and Effective Group IDs, * P1003.1b-1993, p. 84 */ gid_t getgid( void ) {
8026c50: 78 01 08 06 mvhi r1,0x806 <== NOT EXECUTED 8026c54: 38 21 b2 f0 ori r1,r1,0xb2f0 <== NOT EXECUTED 8026c58: 28 21 00 00 lw r1,(r1+0) <== NOT EXECUTED
return _POSIX_types_Gid; }
8026c5c: 2c 21 00 34 lhu r1,(r1+52) <== NOT EXECUTED 8026c60: c3 a0 00 00 ret <== NOT EXECUTED
080273dc <getgr_r>: struct group *grp, char *buffer, size_t bufsize, struct group **result ) {
80273dc: 37 9c ff e0 addi sp,sp,-32 80273e0: 5b 8b 00 20 sw (sp+32),r11 80273e4: 5b 8c 00 1c sw (sp+28),r12 80273e8: 5b 8d 00 18 sw (sp+24),r13 80273ec: 5b 8e 00 14 sw (sp+20),r14 80273f0: 5b 8f 00 10 sw (sp+16),r15 80273f4: 5b 90 00 0c sw (sp+12),r16 80273f8: 5b 91 00 08 sw (sp+8),r17 80273fc: 5b 9d 00 04 sw (sp+4),ra 8027400: b8 20 68 00 mv r13,r1 8027404: b8 40 88 00 mv r17,r2 8027408: b8 60 58 00 mv r11,r3 802740c: b8 80 80 00 mv r16,r4 8027410: b8 a0 78 00 mv r15,r5 8027414: b8 c0 70 00 mv r14,r6
FILE *fp; int match; init_etc_passwd_group();
8027418: fb ff ff a3 calli 80272a4 <init_etc_passwd_group>
if ((fp = fopen("/etc/group", "r")) == NULL) {
802741c: 78 01 08 05 mvhi r1,0x805 8027420: 78 02 08 06 mvhi r2,0x806 8027424: 38 21 fe 24 ori r1,r1,0xfe24 8027428: 38 42 78 2c ori r2,r2,0x782c 802742c: f8 00 70 41 calli 8043530 <fopen> 8027430: b8 20 60 00 mv r12,r1
8027434: 5c 20 00 05 bne r1,r0,8027448 <getgr_r+0x6c> <== ALWAYS TAKEN
errno = EINVAL;
8027438: f8 00 6d 37 calli 8042914 <__errno> <== NOT EXECUTED 802743c: 34 02 00 16 mvi r2,22 <== NOT EXECUTED 8027440: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 8027444: e0 00 00 0d bi 8027478 <getgr_r+0x9c> <== NOT EXECUTED
return -1; } for(;;) { if (!scangr(fp, grp, buffer, bufsize)) {
8027448: b9 60 10 00 mv r2,r11 802744c: ba 00 18 00 mv r3,r16 8027450: b9 e0 20 00 mv r4,r15 8027454: b9 80 08 00 mv r1,r12 8027458: fb ff fe c1 calli 8026f5c <scangr>
errno = EINVAL; fclose(fp); return -1; } if (name) { match = (strcmp(grp->gr_name, name) == 0);
802745c: b9 a0 10 00 mv r2,r13
if ((fp = fopen("/etc/group", "r")) == NULL) { errno = EINVAL; return -1; } for(;;) { if (!scangr(fp, grp, buffer, bufsize)) {
8027460: 5c 20 00 08 bne r1,r0,8027480 <getgr_r+0xa4> <== ALWAYS TAKEN
errno = EINVAL;
8027464: f8 00 6d 2c calli 8042914 <__errno> <== NOT EXECUTED 8027468: 34 02 00 16 mvi r2,22 <== NOT EXECUTED 802746c: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED
fclose(fp);
8027470: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 8027474: f8 00 6d 8a calli 8042a9c <fclose> <== NOT EXECUTED 8027478: 34 01 ff ff mvi r1,-1 <== NOT EXECUTED
return -1;
802747c: e0 00 00 0d bi 80274b0 <getgr_r+0xd4> <== NOT EXECUTED
} if (name) {
8027480: 45 a0 00 05 be r13,r0,8027494 <getgr_r+0xb8> <== NEVER TAKEN
match = (strcmp(grp->gr_name, name) == 0);
8027484: 29 61 00 00 lw r1,(r11+0) 8027488: f8 00 89 91 calli 8049acc <strcmp> 802748c: 64 27 00 00 cmpei r7,r1,0 8027490: e0 00 00 03 bi 802749c <getgr_r+0xc0>
} else { match = (grp->gr_gid == gid);
8027494: 2d 67 00 08 lhu r7,(r11+8) <== NOT EXECUTED 8027498: e4 f1 38 00 cmpe r7,r7,r17 <== NOT EXECUTED
} if (match) {
802749c: 44 e0 ff eb be r7,r0,8027448 <getgr_r+0x6c> <== NEVER TAKEN
fclose(fp);
80274a0: b9 80 08 00 mv r1,r12 80274a4: f8 00 6d 7e calli 8042a9c <fclose>
*result = grp;
80274a8: 34 01 00 00 mvi r1,0 80274ac: 59 cb 00 00 sw (r14+0),r11
} } fclose(fp); errno = EINVAL; return -1; }
80274b0: 2b 9d 00 04 lw ra,(sp+4) 80274b4: 2b 8b 00 20 lw r11,(sp+32) 80274b8: 2b 8c 00 1c lw r12,(sp+28) 80274bc: 2b 8d 00 18 lw r13,(sp+24) 80274c0: 2b 8e 00 14 lw r14,(sp+20) 80274c4: 2b 8f 00 10 lw r15,(sp+16) 80274c8: 2b 90 00 0c lw r16,(sp+12) 80274cc: 2b 91 00 08 lw r17,(sp+8) 80274d0: 37 9c 00 20 addi sp,sp,32 80274d4: c3 a0 00 00 ret
080270dc <getgrent>: return NULL; return p; } struct group *getgrent(void) {
80270dc: 37 9c ff fc addi sp,sp,-4 <== NOT EXECUTED 80270e0: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
if (group_fp == NULL)
80270e4: 78 01 08 06 mvhi r1,0x806 <== NOT EXECUTED 80270e8: 38 21 ec a0 ori r1,r1,0xeca0 <== NOT EXECUTED 80270ec: 28 21 00 00 lw r1,(r1+0) <== NOT EXECUTED 80270f0: 44 20 00 0b be r1,r0,802711c <getgrent+0x40> <== NOT EXECUTED
return NULL; if (!scangr(group_fp, &grent, grbuf, sizeof grbuf))
80270f4: 78 02 08 06 mvhi r2,0x806 <== NOT EXECUTED 80270f8: 78 03 08 06 mvhi r3,0x806 <== NOT EXECUTED 80270fc: 38 42 ed 6c ori r2,r2,0xed6c <== NOT EXECUTED 8027100: 38 63 ec a4 ori r3,r3,0xeca4 <== NOT EXECUTED 8027104: 34 04 00 c8 mvi r4,200 <== NOT EXECUTED 8027108: fb ff ff 95 calli 8026f5c <scangr> <== NOT EXECUTED 802710c: 44 20 00 04 be r1,r0,802711c <getgrent+0x40> <== NOT EXECUTED 8027110: 78 01 08 06 mvhi r1,0x806 <== NOT EXECUTED 8027114: 38 21 ed 6c ori r1,r1,0xed6c <== NOT EXECUTED 8027118: e0 00 00 02 bi 8027120 <getgrent+0x44> <== NOT EXECUTED 802711c: 34 01 00 00 mvi r1,0 <== NOT EXECUTED
return NULL; return &grent; }
8027120: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8027124: 37 9c 00 04 addi sp,sp,4 <== NOT EXECUTED 8027128: c3 a0 00 00 ret <== NOT EXECUTED
08027514 <getgrgid>: struct group *getgrgid( gid_t gid ) {
8027514: 37 9c ff f8 addi sp,sp,-8 <== NOT EXECUTED 8027518: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
struct group *p; if(getgrgid_r(gid, &grent, grbuf, sizeof grbuf, &p))
802751c: 78 02 08 06 mvhi r2,0x806 <== NOT EXECUTED 8027520: 78 03 08 06 mvhi r3,0x806 <== NOT EXECUTED 8027524: 38 42 ed 6c ori r2,r2,0xed6c <== NOT EXECUTED 8027528: 20 21 ff ff andi r1,r1,0xffff <== NOT EXECUTED 802752c: 38 63 ec a4 ori r3,r3,0xeca4 <== NOT EXECUTED 8027530: 34 04 00 c8 mvi r4,200 <== NOT EXECUTED 8027534: 37 85 00 08 addi r5,sp,8 <== NOT EXECUTED 8027538: fb ff ff e8 calli 80274d8 <getgrgid_r> <== NOT EXECUTED 802753c: 34 02 00 00 mvi r2,0 <== NOT EXECUTED 8027540: 5c 22 00 02 bne r1,r2,8027548 <getgrgid+0x34> <== NOT EXECUTED
return NULL; return p;
8027544: 2b 82 00 08 lw r2,(sp+8) <== NOT EXECUTED
}
8027548: b8 40 08 00 mv r1,r2 <== NOT EXECUTED 802754c: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8027550: 37 9c 00 08 addi sp,sp,8 <== NOT EXECUTED 8027554: c3 a0 00 00 ret <== NOT EXECUTED
080274d8 <getgrgid_r>: struct group *grp, char *buffer, size_t bufsize, struct group **result ) {
80274d8: 37 9c ff fc addi sp,sp,-4 <== NOT EXECUTED 80274dc: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED 80274e0: b8 40 48 00 mv r9,r2 <== NOT EXECUTED 80274e4: b8 60 40 00 mv r8,r3 <== NOT EXECUTED 80274e8: b8 80 38 00 mv r7,r4 <== NOT EXECUTED 80274ec: b8 a0 30 00 mv r6,r5 <== NOT EXECUTED 80274f0: 20 22 ff ff andi r2,r1,0xffff <== NOT EXECUTED
return getgr_r(NULL, gid, grp, buffer, bufsize, result);
80274f4: b9 20 18 00 mv r3,r9 <== NOT EXECUTED 80274f8: b9 00 20 00 mv r4,r8 <== NOT EXECUTED 80274fc: b8 e0 28 00 mv r5,r7 <== NOT EXECUTED 8027500: 34 01 00 00 mvi r1,0 <== NOT EXECUTED 8027504: fb ff ff b6 calli 80273dc <getgr_r> <== NOT EXECUTED
}
8027508: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 802750c: 37 9c 00 04 addi sp,sp,4 <== NOT EXECUTED 8027510: c3 a0 00 00 ret <== NOT EXECUTED
0802758c <getgrnam>: struct group *getgrnam( const char *name ) {
802758c: 37 9c ff f8 addi sp,sp,-8 8027590: 5b 9d 00 04 sw (sp+4),ra
struct group *p; if(getgrnam_r(name, &grent, grbuf, sizeof grbuf, &p))
8027594: 78 02 08 06 mvhi r2,0x806 8027598: 78 03 08 06 mvhi r3,0x806 802759c: 38 42 ed 6c ori r2,r2,0xed6c 80275a0: 38 63 ec a4 ori r3,r3,0xeca4 80275a4: 34 04 00 c8 mvi r4,200 80275a8: 37 85 00 08 addi r5,sp,8 80275ac: fb ff ff eb calli 8027558 <getgrnam_r> 80275b0: 34 02 00 00 mvi r2,0
80275b4: 5c 22 00 02 bne r1,r2,80275bc <getgrnam+0x30> <== NEVER TAKEN
return NULL; return p;
80275b8: 2b 82 00 08 lw r2,(sp+8)
}
80275bc: b8 40 08 00 mv r1,r2 80275c0: 2b 9d 00 04 lw ra,(sp+4) 80275c4: 37 9c 00 08 addi sp,sp,8 80275c8: c3 a0 00 00 ret
08024ee8 <getpid>: */ pid_t getpid( void ) { return _Objects_Local_node; }
8024ee8: 34 01 00 01 mvi r1,1 <== NOT EXECUTED 8024eec: c3 a0 00 00 ret <== NOT EXECUTED
08027618 <getpw_r>: struct passwd *pwd, char *buffer, size_t bufsize, struct passwd **result ) {
8027618: 37 9c ff e0 addi sp,sp,-32 802761c: 5b 8b 00 20 sw (sp+32),r11 8027620: 5b 8c 00 1c sw (sp+28),r12 8027624: 5b 8d 00 18 sw (sp+24),r13 8027628: 5b 8e 00 14 sw (sp+20),r14 802762c: 5b 8f 00 10 sw (sp+16),r15 8027630: 5b 90 00 0c sw (sp+12),r16 8027634: 5b 91 00 08 sw (sp+8),r17 8027638: 5b 9d 00 04 sw (sp+4),ra 802763c: b8 20 68 00 mv r13,r1 8027640: b8 40 88 00 mv r17,r2 8027644: b8 60 58 00 mv r11,r3 8027648: b8 80 80 00 mv r16,r4 802764c: b8 a0 78 00 mv r15,r5 8027650: b8 c0 70 00 mv r14,r6
FILE *fp; int match; init_etc_passwd_group();
8027654: fb ff ff 14 calli 80272a4 <init_etc_passwd_group>
if ((fp = fopen("/etc/passwd", "r")) == NULL) {
8027658: 78 01 08 05 mvhi r1,0x805 802765c: 78 02 08 06 mvhi r2,0x806 8027660: 38 21 fd 74 ori r1,r1,0xfd74 8027664: 38 42 78 2c ori r2,r2,0x782c 8027668: f8 00 6f b2 calli 8043530 <fopen> 802766c: b8 20 60 00 mv r12,r1
8027670: 5c 20 00 05 bne r1,r0,8027684 <getpw_r+0x6c> <== ALWAYS TAKEN
errno = EINVAL;
8027674: f8 00 6c a8 calli 8042914 <__errno> <== NOT EXECUTED 8027678: 34 02 00 16 mvi r2,22 <== NOT EXECUTED 802767c: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 8027680: e0 00 00 0d bi 80276b4 <getpw_r+0x9c> <== NOT EXECUTED
return -1; } for(;;) { if (!scanpw(fp, pwd, buffer, bufsize)) {
8027684: b9 60 10 00 mv r2,r11 8027688: ba 00 18 00 mv r3,r16 802768c: b9 e0 20 00 mv r4,r15 8027690: b9 80 08 00 mv r1,r12 8027694: fb ff fe a6 calli 802712c <scanpw>
errno = EINVAL; fclose(fp); return -1; } if (name) { match = (strcmp(pwd->pw_name, name) == 0);
8027698: b9 a0 10 00 mv r2,r13
if ((fp = fopen("/etc/passwd", "r")) == NULL) { errno = EINVAL; return -1; } for(;;) { if (!scanpw(fp, pwd, buffer, bufsize)) {
802769c: 5c 20 00 08 bne r1,r0,80276bc <getpw_r+0xa4> <== ALWAYS TAKEN
errno = EINVAL;
80276a0: f8 00 6c 9d calli 8042914 <__errno> <== NOT EXECUTED 80276a4: 34 02 00 16 mvi r2,22 <== NOT EXECUTED 80276a8: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED
fclose(fp);
80276ac: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 80276b0: f8 00 6c fb calli 8042a9c <fclose> <== NOT EXECUTED 80276b4: 34 01 ff ff mvi r1,-1 <== NOT EXECUTED
return -1;
80276b8: e0 00 00 0d bi 80276ec <getpw_r+0xd4> <== NOT EXECUTED
} if (name) {
80276bc: 45 a0 00 05 be r13,r0,80276d0 <getpw_r+0xb8> <== NEVER TAKEN
match = (strcmp(pwd->pw_name, name) == 0);
80276c0: 29 61 00 00 lw r1,(r11+0) 80276c4: f8 00 89 02 calli 8049acc <strcmp> 80276c8: 64 27 00 00 cmpei r7,r1,0 80276cc: e0 00 00 03 bi 80276d8 <getpw_r+0xc0>
} else { match = (pwd->pw_uid == uid);
80276d0: 2d 67 00 08 lhu r7,(r11+8) <== NOT EXECUTED 80276d4: e4 f1 38 00 cmpe r7,r7,r17 <== NOT EXECUTED
} if (match) { 80276d8: 44 e0 ff eb be r7,r0,8027684 <getpw_r+0x6c> fclose(fp);
80276dc: b9 80 08 00 mv r1,r12 80276e0: f8 00 6c ef calli 8042a9c <fclose>
*result = pwd;
80276e4: 34 01 00 00 mvi r1,0 80276e8: 59 cb 00 00 sw (r14+0),r11
} } fclose(fp); errno = EINVAL; return -1; }
80276ec: 2b 9d 00 04 lw ra,(sp+4) 80276f0: 2b 8b 00 20 lw r11,(sp+32) 80276f4: 2b 8c 00 1c lw r12,(sp+28) 80276f8: 2b 8d 00 18 lw r13,(sp+24) 80276fc: 2b 8e 00 14 lw r14,(sp+20) 8027700: 2b 8f 00 10 lw r15,(sp+16) 8027704: 2b 90 00 0c lw r16,(sp+12) 8027708: 2b 91 00 08 lw r17,(sp+8) 802770c: 37 9c 00 20 addi sp,sp,32 8027710: c3 a0 00 00 ret
08027254 <getpwent>: return NULL; return p; } struct passwd *getpwent(void) {
8027254: 37 9c ff fc addi sp,sp,-4 <== NOT EXECUTED 8027258: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
if (passwd_fp == NULL)
802725c: 78 01 08 06 mvhi r1,0x806 <== NOT EXECUTED 8027260: 38 21 eb b8 ori r1,r1,0xebb8 <== NOT EXECUTED 8027264: 28 21 00 00 lw r1,(r1+0) <== NOT EXECUTED 8027268: 44 20 00 0b be r1,r0,8027294 <getpwent+0x40> <== NOT EXECUTED
return NULL; if (!scanpw(passwd_fp, &pwent, pwbuf, sizeof pwbuf))
802726c: 78 02 08 06 mvhi r2,0x806 <== NOT EXECUTED 8027270: 78 03 08 06 mvhi r3,0x806 <== NOT EXECUTED 8027274: 38 42 ec 84 ori r2,r2,0xec84 <== NOT EXECUTED 8027278: 38 63 eb bc ori r3,r3,0xebbc <== NOT EXECUTED 802727c: 34 04 00 c8 mvi r4,200 <== NOT EXECUTED 8027280: fb ff ff ab calli 802712c <scanpw> <== NOT EXECUTED 8027284: 44 20 00 04 be r1,r0,8027294 <getpwent+0x40> <== NOT EXECUTED 8027288: 78 01 08 06 mvhi r1,0x806 <== NOT EXECUTED 802728c: 38 21 ec 84 ori r1,r1,0xec84 <== NOT EXECUTED 8027290: e0 00 00 02 bi 8027298 <getpwent+0x44> <== NOT EXECUTED 8027294: 34 01 00 00 mvi r1,0 <== NOT EXECUTED
return NULL; return &pwent; }
8027298: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 802729c: 37 9c 00 04 addi sp,sp,4 <== NOT EXECUTED 80272a0: c3 a0 00 00 ret <== NOT EXECUTED
080277c8 <getpwnam>: struct passwd *getpwnam( const char *name ) {
80277c8: 37 9c ff f8 addi sp,sp,-8 80277cc: 5b 9d 00 04 sw (sp+4),ra
struct passwd *p; if(getpwnam_r(name, &pwent, pwbuf, sizeof pwbuf, &p))
80277d0: 78 02 08 06 mvhi r2,0x806 80277d4: 78 03 08 06 mvhi r3,0x806 80277d8: 38 42 ec 84 ori r2,r2,0xec84 80277dc: 38 63 eb bc ori r3,r3,0xebbc 80277e0: 34 04 00 c8 mvi r4,200 80277e4: 37 85 00 08 addi r5,sp,8 80277e8: fb ff ff eb calli 8027794 <getpwnam_r> 80277ec: 34 02 00 00 mvi r2,0
80277f0: 5c 22 00 02 bne r1,r2,80277f8 <getpwnam+0x30> <== NEVER TAKEN
return NULL; return p;
80277f4: 2b 82 00 08 lw r2,(sp+8)
}
80277f8: b8 40 08 00 mv r1,r2 80277fc: 2b 9d 00 04 lw ra,(sp+4) 8027800: 37 9c 00 08 addi sp,sp,8 8027804: c3 a0 00 00 ret
08027750 <getpwuid>: struct passwd *getpwuid( uid_t uid ) {
8027750: 37 9c ff f8 addi sp,sp,-8 <== NOT EXECUTED 8027754: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
struct passwd *p; if(getpwuid_r(uid, &pwent, pwbuf, sizeof pwbuf, &p))
8027758: 78 02 08 06 mvhi r2,0x806 <== NOT EXECUTED 802775c: 78 03 08 06 mvhi r3,0x806 <== NOT EXECUTED 8027760: 38 42 ec 84 ori r2,r2,0xec84 <== NOT EXECUTED 8027764: 20 21 ff ff andi r1,r1,0xffff <== NOT EXECUTED 8027768: 38 63 eb bc ori r3,r3,0xebbc <== NOT EXECUTED 802776c: 34 04 00 c8 mvi r4,200 <== NOT EXECUTED 8027770: 37 85 00 08 addi r5,sp,8 <== NOT EXECUTED 8027774: fb ff ff e8 calli 8027714 <getpwuid_r> <== NOT EXECUTED 8027778: 34 02 00 00 mvi r2,0 <== NOT EXECUTED 802777c: 5c 22 00 02 bne r1,r2,8027784 <getpwuid+0x34> <== NOT EXECUTED
return NULL; return p;
8027780: 2b 82 00 08 lw r2,(sp+8) <== NOT EXECUTED
}
8027784: b8 40 08 00 mv r1,r2 <== NOT EXECUTED 8027788: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 802778c: 37 9c 00 08 addi sp,sp,8 <== NOT EXECUTED 8027790: c3 a0 00 00 ret <== NOT EXECUTED
08027714 <getpwuid_r>: struct passwd *pwd, char *buffer, size_t bufsize, struct passwd **result ) {
8027714: 37 9c ff fc addi sp,sp,-4 <== NOT EXECUTED 8027718: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED 802771c: b8 40 48 00 mv r9,r2 <== NOT EXECUTED 8027720: b8 60 40 00 mv r8,r3 <== NOT EXECUTED 8027724: b8 80 38 00 mv r7,r4 <== NOT EXECUTED 8027728: b8 a0 30 00 mv r6,r5 <== NOT EXECUTED 802772c: 20 22 ff ff andi r2,r1,0xffff <== NOT EXECUTED
return getpw_r(NULL, uid, pwd, buffer, bufsize, result);
8027730: b9 20 18 00 mv r3,r9 <== NOT EXECUTED 8027734: b9 00 20 00 mv r4,r8 <== NOT EXECUTED 8027738: b8 e0 28 00 mv r5,r7 <== NOT EXECUTED 802773c: 34 01 00 00 mvi r1,0 <== NOT EXECUTED 8027740: fb ff ff b6 calli 8027618 <getpw_r> <== NOT EXECUTED
}
8027744: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8027748: 37 9c 00 04 addi sp,sp,4 <== NOT EXECUTED 802774c: c3 a0 00 00 ret <== NOT EXECUTED
08007218 <gettimeofday>: */ int gettimeofday( struct timeval *tp, void * __tz __attribute__((unused)) ) {
8007218: 37 9c ff ec addi sp,sp,-20 800721c: 5b 8b 00 0c sw (sp+12),r11 8007220: 5b 8c 00 08 sw (sp+8),r12 8007224: 5b 9d 00 04 sw (sp+4),ra 8007228: b8 20 58 00 mv r11,r1
/* struct timezone* tzp = (struct timezone*) __tz; */ if ( !tp ) {
800722c: 5c 20 00 06 bne r1,r0,8007244 <gettimeofday+0x2c> <== ALWAYS TAKEN
errno = EFAULT;
8007230: f8 00 0f 38 calli 800af10 <__errno> <== NOT EXECUTED 8007234: 34 02 00 0e mvi r2,14 <== NOT EXECUTED 8007238: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 800723c: 34 01 ff ff mvi r1,-1 <== NOT EXECUTED
return -1;
8007240: e0 00 00 0f bi 800727c <gettimeofday+0x64> <== NOT EXECUTED
{ ISR_Level level; struct timespec now; suseconds_t useconds; _ISR_Disable(level);
8007244: 90 00 60 00 rcsr r12,IE 8007248: 34 01 ff fe mvi r1,-2 800724c: a1 81 08 00 and r1,r12,r1 8007250: d0 01 00 00 wcsr IE,r1
_TOD_Get( &now );
8007254: 37 81 00 10 addi r1,sp,16 8007258: f8 00 04 22 calli 80082e0 <_TOD_Get>
_ISR_Enable(level);
800725c: d0 0c 00 00 wcsr IE,r12
useconds = (suseconds_t)now.tv_nsec; useconds /= (suseconds_t)TOD_NANOSECONDS_PER_MICROSECOND; time->tv_sec = now.tv_sec;
8007260: 2b 82 00 10 lw r2,(sp+16)
_ISR_Disable(level); _TOD_Get( &now ); _ISR_Enable(level); useconds = (suseconds_t)now.tv_nsec;
8007264: 2b 81 00 14 lw r1,(sp+20)
useconds /= (suseconds_t)TOD_NANOSECONDS_PER_MICROSECOND; time->tv_sec = now.tv_sec;
8007268: 59 62 00 00 sw (r11+0),r2
time->tv_usec = useconds;
800726c: 34 02 03 e8 mvi r2,1000 8007270: f8 00 47 2d calli 8018f24 <__divsi3> 8007274: 59 61 00 04 sw (r11+4),r1 8007278: 34 01 00 00 mvi r1,0
* with Eric Norum, this is how GNU/Linux, Solaris, and MacOS X * do it. This puts us in good company. */ return 0; }
800727c: 2b 9d 00 04 lw ra,(sp+4) 8007280: 2b 8b 00 0c lw r11,(sp+12) 8007284: 2b 8c 00 08 lw r12,(sp+8) 8007288: 37 9c 00 14 addi sp,sp,20 800728c: c3 a0 00 00 ret
08006470 <getuid>: * 4.2.1 Get Real User, Effective User, Ral Group, and Effective Group IDs, * P1003.1b-1993, p. 84 */ uid_t getuid( void ) {
8006470: 78 01 08 06 mvhi r1,0x806 <== NOT EXECUTED 8006474: 38 21 b2 f0 ori r1,r1,0xb2f0 <== NOT EXECUTED 8006478: 28 21 00 00 lw r1,(r1+0) <== NOT EXECUTED
return _POSIX_types_Uid; }
800647c: 2c 21 00 32 lhu r1,(r1+50) <== NOT EXECUTED 8006480: c3 a0 00 00 ret <== NOT EXECUTED
08010a98 <imfs_dir_open>: ) { IMFS_jnode_t *the_jnode; /* Is the node a directory ? */ the_jnode = (IMFS_jnode_t *) iop->file_info;
8010a98: 28 23 00 3c lw r3,(r1+60)
rtems_libio_t *iop, const char *pathname, uint32_t flag, uint32_t mode ) {
8010a9c: b8 20 10 00 mv r2,r1
IMFS_jnode_t *the_jnode; /* Is the node a directory ? */ the_jnode = (IMFS_jnode_t *) iop->file_info;
8010aa0: 34 01 ff ff mvi r1,-1 8010aa4: 28 64 00 4c lw r4,(r3+76) 8010aa8: 34 03 00 01 mvi r3,1
8010aac: 5c 83 00 04 bne r4,r3,8010abc <imfs_dir_open+0x24> <== NEVER TAKEN
if ( the_jnode->type != IMFS_DIRECTORY ) return -1; /* It wasn't a directory --> return error */ iop->offset = 0;
8010ab0: 34 01 00 00 mvi r1,0 8010ab4: 58 41 00 14 sw (r2+20),r1 8010ab8: 58 41 00 10 sw (r2+16),r1
return 0; }
8010abc: c3 a0 00 00 ret
08010bc0 <imfs_dir_rmnod>: int imfs_dir_rmnod( rtems_filesystem_location_info_t *parent_pathloc, /* IN */ rtems_filesystem_location_info_t *pathloc /* IN */ ) {
8010bc0: 37 9c ff e8 addi sp,sp,-24 8010bc4: 5b 8b 00 10 sw (sp+16),r11 8010bc8: 5b 8c 00 0c sw (sp+12),r12 8010bcc: 5b 8d 00 08 sw (sp+8),r13 8010bd0: 5b 9d 00 04 sw (sp+4),ra
IMFS_jnode_t *the_jnode; the_jnode = (IMFS_jnode_t *) pathloc->node_access;
8010bd4: 28 4b 00 00 lw r11,(r2+0)
int imfs_dir_rmnod( rtems_filesystem_location_info_t *parent_pathloc, /* IN */ rtems_filesystem_location_info_t *pathloc /* IN */ ) {
8010bd8: b8 40 60 00 mv r12,r2 8010bdc: 29 62 00 50 lw r2,(r11+80) 8010be0: 35 61 00 54 addi r1,r11,84
8010be4: 44 41 00 04 be r2,r1,8010bf4 <imfs_dir_rmnod+0x34> /* * You cannot remove a node that still has children */ if ( ! rtems_chain_is_empty( &the_jnode->info.directory.Entries ) ) rtems_set_errno_and_return_minus_one( ENOTEMPTY );
8010be8: f8 00 02 43 calli 80114f4 <__errno> 8010bec: 34 02 00 5a mvi r2,90 8010bf0: e0 00 00 08 bi 8010c10 <imfs_dir_rmnod+0x50>
/* * You cannot remove the file system root node. */ if ( pathloc->mt_entry->mt_fs_root.node_access == pathloc->node_access )
8010bf4: 29 81 00 10 lw r1,(r12+16) 8010bf8: 28 21 00 1c lw r1,(r1+28)
8010bfc: 44 2b 00 03 be r1,r11,8010c08 <imfs_dir_rmnod+0x48> /* * You cannot remove a mountpoint. */ if ( the_jnode->info.directory.mt_fs != NULL )
8010c00: 29 6d 00 5c lw r13,(r11+92)
8010c04: 45 a0 00 06 be r13,r0,8010c1c <imfs_dir_rmnod+0x5c> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( EBUSY );
8010c08: f8 00 02 3b calli 80114f4 <__errno> 8010c0c: 34 02 00 10 mvi r2,16 8010c10: 58 22 00 00 sw (r1+0),r2 8010c14: 34 01 ff ff mvi r1,-1 8010c18: e0 00 00 1d bi 8010c8c <imfs_dir_rmnod+0xcc>
/* * Take the node out of the parent's chain that contains this node */ if ( the_jnode->Parent != NULL ) {
8010c1c: 29 61 00 08 lw r1,(r11+8)
8010c20: 44 2d 00 04 be r1,r13,8010c30 <imfs_dir_rmnod+0x70>
8010c24: b9 60 08 00 mv r1,r11 8010c28: fb ff d0 39 calli 8004d0c <_Chain_Extract>
rtems_chain_extract( (rtems_chain_node *) the_jnode ); the_jnode->Parent = NULL;
8010c2c: 59 6d 00 08 sw (r11+8),r13
/* * Decrement the link counter and see if we can free the space. */ the_jnode->st_nlink--;
8010c30: 2d 63 00 34 lhu r3,(r11+52)
IMFS_update_ctime( the_jnode );
8010c34: 34 02 00 00 mvi r2,0 8010c38: 37 81 00 14 addi r1,sp,20
/* * Decrement the link counter and see if we can free the space. */ the_jnode->st_nlink--;
8010c3c: 34 63 ff ff addi r3,r3,-1 8010c40: 0d 63 00 34 sh (r11+52),r3
IMFS_update_ctime( the_jnode );
8010c44: fb ff c7 7f calli 8002a40 <gettimeofday> 8010c48: 2b 81 00 14 lw r1,(sp+20) 8010c4c: 59 61 00 48 sw (r11+72),r1
/* * The file cannot be open and the link must be less than 1 to free. */ if ( !rtems_libio_is_file_open( the_jnode ) && (the_jnode->st_nlink < 1) ) {
8010c50: b9 60 08 00 mv r1,r11 8010c54: fb ff f0 df calli 800cfd0 <rtems_libio_is_file_open>
8010c58: 5c 20 00 0c bne r1,r0,8010c88 <imfs_dir_rmnod+0xc8>
8010c5c: 2d 62 00 34 lhu r2,(r11+52)
8010c60: 5c 41 00 0a bne r2,r1,8010c88 <imfs_dir_rmnod+0xc8> /* * Is the rtems_filesystem_current is this node? */ if ( rtems_filesystem_current.node_access == pathloc->node_access )
8010c64: 78 01 08 02 mvhi r1,0x802 8010c68: 38 21 30 f8 ori r1,r1,0x30f8 8010c6c: 28 21 00 00 lw r1,(r1+0) 8010c70: 29 83 00 00 lw r3,(r12+0) 8010c74: 28 24 00 04 lw r4,(r1+4)
8010c78: 5c 83 00 02 bne r4,r3,8010c80 <imfs_dir_rmnod+0xc0> <== ALWAYS TAKEN
rtems_filesystem_current.node_access = NULL;
8010c7c: 58 22 00 04 sw (r1+4),r2 <== NOT EXECUTED
/* * Free memory associated with a memory file. */ free( the_jnode );
8010c80: b9 60 08 00 mv r1,r11 8010c84: fb ff c7 41 calli 8002988 <free> 8010c88: 34 01 00 00 mvi r1,0
} return 0; }
8010c8c: 2b 9d 00 04 lw ra,(sp+4) 8010c90: 2b 8b 00 10 lw r11,(sp+16) 8010c94: 2b 8c 00 0c lw r12,(sp+12) 8010c98: 2b 8d 00 08 lw r13,(sp+8) 8010c9c: 37 9c 00 18 addi sp,sp,24 8010ca0: c3 a0 00 00 ret
080272a4 <init_etc_passwd_group>: /* * Initialize useable but dummy databases */ void init_etc_passwd_group(void) {
80272a4: 37 9c ff f4 addi sp,sp,-12 80272a8: 5b 8b 00 0c sw (sp+12),r11 80272ac: 5b 8c 00 08 sw (sp+8),r12 80272b0: 5b 9d 00 04 sw (sp+4),ra
FILE *fp; static char etc_passwd_initted = 0; if (etc_passwd_initted)
80272b4: 78 03 08 06 mvhi r3,0x806 80272b8: 38 63 eb b4 ori r3,r3,0xebb4 80272bc: 40 6b 00 00 lbu r11,(r3+0)
80272c0: 5d 60 00 2f bne r11,r0,802737c <init_etc_passwd_group+0xd8> return; etc_passwd_initted = 1;
80272c4: 34 04 00 01 mvi r4,1
mkdir("/etc", 0777);
80272c8: 78 01 08 05 mvhi r1,0x805 80272cc: 34 02 01 ff mvi r2,511
FILE *fp; static char etc_passwd_initted = 0; if (etc_passwd_initted) return; etc_passwd_initted = 1;
80272d0: 30 64 00 00 sb (r3+0),r4
mkdir("/etc", 0777);
80272d4: 38 21 fc f4 ori r1,r1,0xfcf4 80272d8: fb ff 7e 60 calli 8006c58 <mkdir>
/* * Initialize /etc/passwd */ if ((fp = fopen("/etc/passwd", "r")) != NULL) {
80272dc: 78 01 08 05 mvhi r1,0x805 80272e0: 78 02 08 06 mvhi r2,0x806 80272e4: 38 21 fd 74 ori r1,r1,0xfd74 80272e8: 38 42 78 2c ori r2,r2,0x782c 80272ec: f8 00 70 91 calli 8043530 <fopen> 80272f0: b8 20 60 00 mv r12,r1
80272f4: 5c 2b 00 0d bne r1,r11,8027328 <init_etc_passwd_group+0x84><== NEVER TAKEN
fclose(fp); } else if ((fp = fopen("/etc/passwd", "w")) != NULL) {
80272f8: 78 01 08 05 mvhi r1,0x805 80272fc: 78 02 08 06 mvhi r2,0x806 8027300: 38 21 fd 74 ori r1,r1,0xfd74 8027304: 38 42 0f 28 ori r2,r2,0xf28 8027308: f8 00 70 8a calli 8043530 <fopen> 802730c: b8 20 58 00 mv r11,r1
8027310: 44 2c 00 07 be r1,r12,802732c <init_etc_passwd_group+0x88> <== NEVER TAKEN
fprintf(fp, "root:*:0:0:root::/:/bin/sh\n"
8027314: 78 01 08 06 mvhi r1,0x806 8027318: 38 21 4c e4 ori r1,r1,0x4ce4 802731c: b9 60 10 00 mv r2,r11 8027320: f8 00 71 07 calli 804373c <fputs>
"rtems:*:1:1:RTEMS Application::/:/bin/sh\n" "tty:!:2:2:tty owner::/:/bin/false\n" ); fclose(fp);
8027324: b9 60 08 00 mv r1,r11 8027328: f8 00 6d dd calli 8042a9c <fclose>
} /* * Initialize /etc/group */ if ((fp = fopen("/etc/group", "r")) != NULL) {
802732c: 78 01 08 05 mvhi r1,0x805 8027330: 78 02 08 06 mvhi r2,0x806 8027334: 38 21 fe 24 ori r1,r1,0xfe24 8027338: 38 42 78 2c ori r2,r2,0x782c 802733c: f8 00 70 7d calli 8043530 <fopen> 8027340: b8 20 60 00 mv r12,r1
8027344: 5c 20 00 0d bne r1,r0,8027378 <init_etc_passwd_group+0xd4> <== NEVER TAKEN
fclose(fp); } else if ((fp = fopen("/etc/group", "w")) != NULL) {
8027348: 78 01 08 05 mvhi r1,0x805 802734c: 78 02 08 06 mvhi r2,0x806 8027350: 38 21 fe 24 ori r1,r1,0xfe24 8027354: 38 42 0f 28 ori r2,r2,0xf28 8027358: f8 00 70 76 calli 8043530 <fopen> 802735c: b8 20 58 00 mv r11,r1
8027360: 44 2c 00 07 be r1,r12,802737c <init_etc_passwd_group+0xd8> <== NEVER TAKEN
fprintf( fp, "root:x:0:root\n"
8027364: 78 01 08 06 mvhi r1,0x806 8027368: 38 21 4d 4c ori r1,r1,0x4d4c 802736c: b9 60 10 00 mv r2,r11 8027370: f8 00 70 f3 calli 804373c <fputs>
"rtems:x:1:rtems\n" "tty:x:2:tty\n" ); fclose(fp);
8027374: b9 60 08 00 mv r1,r11 8027378: f8 00 6d c9 calli 8042a9c <fclose>
} }
802737c: 2b 9d 00 04 lw ra,(sp+4) 8027380: 2b 8b 00 0c lw r11,(sp+12) 8027384: 2b 8c 00 08 lw r12,(sp+8) 8027388: 37 9c 00 0c addi sp,sp,12 802738c: c3 a0 00 00 ret
08005558 <ioctl>: int ioctl( int fd, ioctl_command_t command, ... ) {
8005558: 37 9c ff d4 addi sp,sp,-44 800555c: 5b 8b 00 10 sw (sp+16),r11 8005560: 5b 8c 00 0c sw (sp+12),r12 8005564: 5b 8d 00 08 sw (sp+8),r13 8005568: 5b 9d 00 04 sw (sp+4),ra
va_list ap; rtems_status_code rc; rtems_libio_t *iop; void *buffer; rtems_libio_check_fd( fd );
800556c: 78 09 08 02 mvhi r9,0x802 8005570: 39 29 30 10 ori r9,r9,0x3010 8005574: 29 29 00 00 lw r9,(r9+0)
int ioctl( int fd, ioctl_command_t command, ... ) {
8005578: 5b 83 00 18 sw (sp+24),r3 800557c: 5b 84 00 1c sw (sp+28),r4 8005580: 5b 85 00 20 sw (sp+32),r5 8005584: 5b 86 00 24 sw (sp+36),r6 8005588: 5b 87 00 28 sw (sp+40),r7 800558c: 5b 88 00 2c sw (sp+44),r8 8005590: 5b 82 00 14 sw (sp+20),r2 8005594: b8 40 60 00 mv r12,r2
va_list ap; rtems_status_code rc; rtems_libio_t *iop; void *buffer; rtems_libio_check_fd( fd ); 8005598: 55 21 00 02 bgu r9,r1,80055a0 <ioctl+0x48>
800559c: e0 00 00 11 bi 80055e0 <ioctl+0x88>
iop = rtems_libio_iop( fd );
80055a0: 34 02 00 03 mvi r2,3 80055a4: fb ff ed 91 calli 8000be8 <__ashlsi3> 80055a8: 34 02 00 03 mvi r2,3 80055ac: 78 0b 08 02 mvhi r11,0x802 80055b0: b8 20 68 00 mv r13,r1 80055b4: 39 6b 37 78 ori r11,r11,0x3778 80055b8: fb ff ed 8c calli 8000be8 <__ashlsi3> 80055bc: 29 62 00 00 lw r2,(r11+0) 80055c0: b5 a1 08 00 add r1,r13,r1 80055c4: b4 41 08 00 add r1,r2,r1
rtems_libio_check_is_open(iop);
80055c8: 28 22 00 18 lw r2,(r1+24) 80055cc: 20 42 01 00 andi r2,r2,0x100
80055d0: 44 40 00 04 be r2,r0,80055e0 <ioctl+0x88> <== NEVER TAKEN
/* * Now process the ioctl(). */ if ( !iop->handlers )
80055d4: 28 24 00 40 lw r4,(r1+64)
iop = rtems_libio_iop( fd ); rtems_libio_check_is_open(iop); va_start(ap, command); buffer = va_arg(ap, void *);
80055d8: 2b 83 00 18 lw r3,(sp+24)
/* * Now process the ioctl(). */ if ( !iop->handlers )
80055dc: 5c 80 00 04 bne r4,r0,80055ec <ioctl+0x94> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( EBADF );
80055e0: f8 00 30 fe calli 80119d8 <__errno> 80055e4: 34 02 00 09 mvi r2,9 80055e8: e0 00 00 05 bi 80055fc <ioctl+0xa4>
if ( !iop->handlers->ioctl_h )
80055ec: 28 84 00 10 lw r4,(r4+16)
80055f0: 5c 80 00 06 bne r4,r0,8005608 <ioctl+0xb0> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( ENOTSUP );
80055f4: f8 00 30 f9 calli 80119d8 <__errno> <== NOT EXECUTED 80055f8: 34 02 00 86 mvi r2,134 <== NOT EXECUTED
80055fc: 58 22 00 00 sw (r1+0),r2 8005600: 34 01 ff ff mvi r1,-1 8005604: e0 00 00 03 bi 8005610 <ioctl+0xb8>
rc = (*iop->handlers->ioctl_h)( iop, command, buffer );
8005608: b9 80 10 00 mv r2,r12 800560c: d8 80 00 00 call r4
return rc; }
8005610: 2b 9d 00 04 lw ra,(sp+4) 8005614: 2b 8b 00 10 lw r11,(sp+16) 8005618: 2b 8c 00 0c lw r12,(sp+12) 800561c: 2b 8d 00 08 lw r13,(sp+8) 8005620: 37 9c 00 2c addi sp,sp,44 8005624: c3 a0 00 00 ret
08004498 <iproc>: /* * Process a single input character */ static int iproc (unsigned char c, struct rtems_termios_tty *tty) {
8004498: 37 9c ff f4 addi sp,sp,-12 <== NOT EXECUTED 800449c: 5b 8b 00 0c sw (sp+12),r11 <== NOT EXECUTED 80044a0: 5b 8c 00 08 sw (sp+8),r12 <== NOT EXECUTED 80044a4: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED 80044a8: b8 40 58 00 mv r11,r2 <== NOT EXECUTED
if (tty->termios.c_iflag & ISTRIP)
80044ac: 28 42 00 30 lw r2,(r2+48) <== NOT EXECUTED
/* * Process a single input character */ static int iproc (unsigned char c, struct rtems_termios_tty *tty) {
80044b0: 20 2c 00 ff andi r12,r1,0xff <== NOT EXECUTED
if (tty->termios.c_iflag & ISTRIP)
80044b4: 20 41 00 20 andi r1,r2,0x20 <== NOT EXECUTED 80044b8: 44 20 00 02 be r1,r0,80044c0 <iproc+0x28> <== NOT EXECUTED
c &= 0x7f;
80044bc: 21 8c 00 7f andi r12,r12,0x7f <== NOT EXECUTED
if (tty->termios.c_iflag & IUCLC)
80044c0: 20 41 02 00 andi r1,r2,0x200 <== NOT EXECUTED 80044c4: 44 20 00 0c be r1,r0,80044f4 <iproc+0x5c> <== NOT EXECUTED
c = tolower (c);
80044c8: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 80044cc: 38 21 32 c8 ori r1,r1,0x32c8 <== NOT EXECUTED 80044d0: 28 23 00 00 lw r3,(r1+0) <== NOT EXECUTED 80044d4: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 80044d8: b4 6c 60 00 add r12,r3,r12 <== NOT EXECUTED 80044dc: 41 84 00 01 lbu r4,(r12+1) <== NOT EXECUTED 80044e0: 34 03 00 01 mvi r3,1 <== NOT EXECUTED 80044e4: 20 84 00 03 andi r4,r4,0x3 <== NOT EXECUTED 80044e8: 5c 83 00 02 bne r4,r3,80044f0 <iproc+0x58> <== NOT EXECUTED 80044ec: 34 21 00 20 addi r1,r1,32 <== NOT EXECUTED 80044f0: 20 2c 00 ff andi r12,r1,0xff <== NOT EXECUTED
if (c == '\r') {
80044f4: 34 01 00 0d mvi r1,13 <== NOT EXECUTED 80044f8: 5d 81 00 07 bne r12,r1,8004514 <iproc+0x7c> <== NOT EXECUTED
if (tty->termios.c_iflag & IGNCR)
80044fc: 20 41 00 80 andi r1,r2,0x80 <== NOT EXECUTED 8004500: 5c 20 00 4f bne r1,r0,800463c <iproc+0x1a4> <== NOT EXECUTED
return 0; if (tty->termios.c_iflag & ICRNL)
8004504: 20 42 01 00 andi r2,r2,0x100 <== NOT EXECUTED 8004508: 44 41 00 0a be r2,r1,8004530 <iproc+0x98> <== NOT EXECUTED 800450c: 34 0c 00 0a mvi r12,10 <== NOT EXECUTED 8004510: e0 00 00 08 bi 8004530 <iproc+0x98> <== NOT EXECUTED
c = '\n'; } else if ((c == '\n') && (tty->termios.c_iflag & INLCR)) {
8004514: 34 03 00 0a mvi r3,10 <== NOT EXECUTED 8004518: 5d 83 00 05 bne r12,r3,800452c <iproc+0x94> <== NOT EXECUTED 800451c: 20 42 00 40 andi r2,r2,0x40 <== NOT EXECUTED 8004520: 44 40 00 04 be r2,r0,8004530 <iproc+0x98> <== NOT EXECUTED 8004524: b8 20 60 00 mv r12,r1 <== NOT EXECUTED 8004528: e0 00 00 02 bi 8004530 <iproc+0x98> <== NOT EXECUTED
c = '\r'; } if ((c != '\0') && (tty->termios.c_lflag & ICANON)) {
800452c: 45 80 00 30 be r12,r0,80045ec <iproc+0x154> <== NOT EXECUTED 8004530: 29 62 00 3c lw r2,(r11+60) <== NOT EXECUTED 8004534: 20 41 00 02 andi r1,r2,0x2 <== NOT EXECUTED 8004538: 44 20 00 2d be r1,r0,80045ec <iproc+0x154> <== NOT EXECUTED
if (c == tty->termios.c_cc[VERASE]) {
800453c: 41 61 00 43 lbu r1,(r11+67) <== NOT EXECUTED 8004540: 5c 2c 00 04 bne r1,r12,8004550 <iproc+0xb8> <== NOT EXECUTED
erase (tty, 0);
8004544: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8004548: 34 02 00 00 mvi r2,0 <== NOT EXECUTED 800454c: e0 00 00 05 bi 8004560 <iproc+0xc8> <== NOT EXECUTED
return 0; } else if (c == tty->termios.c_cc[VKILL]) {
8004550: 41 61 00 44 lbu r1,(r11+68) <== NOT EXECUTED 8004554: 5c 2c 00 05 bne r1,r12,8004568 <iproc+0xd0> <== NOT EXECUTED
erase (tty, 1);
8004558: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 800455c: 34 02 00 01 mvi r2,1 <== NOT EXECUTED 8004560: fb ff ff 49 calli 8004284 <erase> <== NOT EXECUTED 8004564: e0 00 00 36 bi 800463c <iproc+0x1a4> <== NOT EXECUTED
return 0; } else if (c == tty->termios.c_cc[VEOF]) {
8004568: 41 63 00 45 lbu r3,(r11+69) <== NOT EXECUTED 800456c: 34 01 00 01 mvi r1,1 <== NOT EXECUTED 8004570: 44 6c 00 34 be r3,r12,8004640 <iproc+0x1a8> <== NOT EXECUTED
return 1; } else if (c == '\n') {
8004574: 34 01 00 0a mvi r1,10 <== NOT EXECUTED 8004578: 5d 81 00 0f bne r12,r1,80045b4 <iproc+0x11c> <== NOT EXECUTED
if (tty->termios.c_lflag & (ECHO | ECHONL))
800457c: 20 42 00 48 andi r2,r2,0x48 <== NOT EXECUTED 8004580: 44 40 00 04 be r2,r0,8004590 <iproc+0xf8> <== NOT EXECUTED
echo (c, tty);
8004584: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 8004588: b9 60 10 00 mv r2,r11 <== NOT EXECUTED 800458c: fb ff ff 15 calli 80041e0 <echo> <== NOT EXECUTED
tty->cbuf[tty->ccount++] = c;
8004590: 29 62 00 20 lw r2,(r11+32) <== NOT EXECUTED 8004594: 29 64 00 1c lw r4,(r11+28) <== NOT EXECUTED 8004598: 34 03 00 0a mvi r3,10 <== NOT EXECUTED 800459c: 34 41 00 01 addi r1,r2,1 <== NOT EXECUTED 80045a0: b4 82 10 00 add r2,r4,r2 <== NOT EXECUTED 80045a4: 30 43 00 00 sb (r2+0),r3 <== NOT EXECUTED 80045a8: 59 61 00 20 sw (r11+32),r1 <== NOT EXECUTED 80045ac: 34 01 00 01 mvi r1,1 <== NOT EXECUTED
return 1;
80045b0: e0 00 00 24 bi 8004640 <iproc+0x1a8> <== NOT EXECUTED
} else if ((c == tty->termios.c_cc[VEOL])
80045b4: 41 61 00 4c lbu r1,(r11+76) <== NOT EXECUTED 80045b8: 44 2c 00 03 be r1,r12,80045c4 <iproc+0x12c> <== NOT EXECUTED
|| (c == tty->termios.c_cc[VEOL2])) {
80045bc: 41 61 00 51 lbu r1,(r11+81) <== NOT EXECUTED 80045c0: 5c 2c 00 0b bne r1,r12,80045ec <iproc+0x154> <== NOT EXECUTED
if (tty->termios.c_lflag & ECHO)
80045c4: 20 42 00 08 andi r2,r2,0x8 <== NOT EXECUTED 80045c8: 44 40 00 04 be r2,r0,80045d8 <iproc+0x140> <== NOT EXECUTED
echo (c, tty);
80045cc: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 80045d0: b9 60 10 00 mv r2,r11 <== NOT EXECUTED 80045d4: fb ff ff 03 calli 80041e0 <echo> <== NOT EXECUTED
tty->cbuf[tty->ccount++] = c;
80045d8: 29 63 00 20 lw r3,(r11+32) <== NOT EXECUTED 80045dc: 34 01 00 01 mvi r1,1 <== NOT EXECUTED 80045e0: 29 64 00 1c lw r4,(r11+28) <== NOT EXECUTED 80045e4: b4 61 10 00 add r2,r3,r1 <== NOT EXECUTED 80045e8: e0 00 00 11 bi 800462c <iproc+0x194> <== NOT EXECUTED
} /* * FIXME: Should do IMAXBEL handling somehow */ if (tty->ccount < (CBUFSIZE-1)) {
80045ec: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 80045f0: 38 21 32 34 ori r1,r1,0x3234 <== NOT EXECUTED 80045f4: 28 21 00 00 lw r1,(r1+0) <== NOT EXECUTED 80045f8: 29 62 00 20 lw r2,(r11+32) <== NOT EXECUTED 80045fc: 34 21 ff ff addi r1,r1,-1 <== NOT EXECUTED 8004600: 4c 41 00 0f bge r2,r1,800463c <iproc+0x1a4> <== NOT EXECUTED
if (tty->termios.c_lflag & ECHO)
8004604: 29 61 00 3c lw r1,(r11+60) <== NOT EXECUTED 8004608: 20 21 00 08 andi r1,r1,0x8 <== NOT EXECUTED 800460c: 44 20 00 04 be r1,r0,800461c <iproc+0x184> <== NOT EXECUTED
echo (c, tty);
8004610: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 8004614: b9 60 10 00 mv r2,r11 <== NOT EXECUTED 8004618: fb ff fe f2 calli 80041e0 <echo> <== NOT EXECUTED
tty->cbuf[tty->ccount++] = c;
800461c: 29 63 00 20 lw r3,(r11+32) <== NOT EXECUTED 8004620: 29 64 00 1c lw r4,(r11+28) <== NOT EXECUTED 8004624: 34 01 00 00 mvi r1,0 <== NOT EXECUTED 8004628: 34 62 00 01 addi r2,r3,1 <== NOT EXECUTED 800462c: b4 83 18 00 add r3,r4,r3 <== NOT EXECUTED 8004630: 30 6c 00 00 sb (r3+0),r12 <== NOT EXECUTED 8004634: 59 62 00 20 sw (r11+32),r2 <== NOT EXECUTED 8004638: e0 00 00 02 bi 8004640 <iproc+0x1a8> <== NOT EXECUTED 800463c: 34 01 00 00 mvi r1,0 <== NOT EXECUTED
} return 0; }
8004640: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8004644: 2b 8b 00 0c lw r11,(sp+12) <== NOT EXECUTED 8004648: 2b 8c 00 08 lw r12,(sp+8) <== NOT EXECUTED 800464c: 37 9c 00 0c addi sp,sp,12 <== NOT EXECUTED 8004650: c3 a0 00 00 ret <== NOT EXECUTED
08024f14 <kill>: #if !defined(RTEMS_POSIX_API) int kill( pid_t pid, int sig ) { return 0; }
8024f14: 34 01 00 00 mvi r1,0 <== NOT EXECUTED 8024f18: c3 a0 00 00 ret <== NOT EXECUTED
080278d8 <link>: int link( const char *existing, const char *new ) {
80278d8: 37 9c ff c4 addi sp,sp,-60 80278dc: 5b 8b 00 10 sw (sp+16),r11 80278e0: 5b 8c 00 0c sw (sp+12),r12 80278e4: 5b 8d 00 08 sw (sp+8),r13 80278e8: 5b 9d 00 04 sw (sp+4),ra 80278ec: b8 20 58 00 mv r11,r1 80278f0: b8 40 60 00 mv r12,r2
/* * Get the node we are linking to. */ result = rtems_filesystem_evaluate_path( existing, strlen( existing ),
80278f4: f8 00 89 f2 calli 804a0bc <strlen> 80278f8: b8 20 10 00 mv r2,r1 80278fc: 34 03 00 00 mvi r3,0 8027900: b9 60 08 00 mv r1,r11 8027904: 37 84 00 28 addi r4,sp,40 8027908: 34 05 00 01 mvi r5,1 802790c: fb ff 7a 42 calli 8006214 <rtems_filesystem_evaluate_path>
0, &existing_loc, true ); if ( result != 0 )
8027910: 34 0b ff ff mvi r11,-1
8027914: 5c 20 00 68 bne r1,r0,8027ab4 <link+0x1dc> /* * Get the parent of the node we are creating. */ rtems_filesystem_get_start_loc( new, &i, &parent_loc );
8027918: 41 83 00 00 lbu r3,(r12+0) 802791c: 64 6b 00 5c cmpei r11,r3,92 8027920: 64 62 00 2f cmpei r2,r3,47 8027924: b9 62 58 00 or r11,r11,r2
8027928: 5d 61 00 02 bne r11,r1,8027930 <link+0x58>
802792c: 5c 6b 00 0a bne r3,r11,8027954 <link+0x7c> <== ALWAYS TAKEN
8027930: 78 03 08 06 mvhi r3,0x806 8027934: 38 63 b2 f0 ori r3,r3,0xb2f0 8027938: 28 62 00 00 lw r2,(r3+0) 802793c: 37 81 00 14 addi r1,sp,20 8027940: 34 03 00 14 mvi r3,20 8027944: 34 42 00 18 addi r2,r2,24 8027948: f8 00 7a 95 calli 804639c <memcpy> 802794c: 34 0b 00 01 mvi r11,1 8027950: e0 00 00 08 bi 8027970 <link+0x98> 8027954: 78 03 08 06 mvhi r3,0x806 8027958: 38 63 b2 f0 ori r3,r3,0xb2f0 802795c: 28 62 00 00 lw r2,(r3+0) 8027960: 37 81 00 14 addi r1,sp,20 8027964: 34 03 00 14 mvi r3,20 8027968: 34 42 00 04 addi r2,r2,4 802796c: f8 00 7a 8c calli 804639c <memcpy>
if ( !parent_loc.ops->evalformake_h ) {
8027970: 2b 81 00 20 lw r1,(sp+32) 8027974: 28 24 00 04 lw r4,(r1+4)
8027978: 5c 80 00 07 bne r4,r0,8027994 <link+0xbc> <== ALWAYS TAKEN
rtems_filesystem_freenode( &existing_loc );
802797c: 2b 81 00 34 lw r1,(sp+52) <== NOT EXECUTED 8027980: 44 24 00 37 be r1,r4,8027a5c <link+0x184> <== NOT EXECUTED 8027984: 28 22 00 1c lw r2,(r1+28) <== NOT EXECUTED 8027988: 37 81 00 28 addi r1,sp,40 <== NOT EXECUTED 802798c: 5c 40 00 33 bne r2,r0,8027a58 <link+0x180> <== NOT EXECUTED 8027990: e0 00 00 33 bi 8027a5c <link+0x184> <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( ENOTSUP ); } result = (*parent_loc.ops->evalformake_h)( &new[i], &parent_loc, &name_start );
8027994: 37 8d 00 14 addi r13,sp,20 8027998: b5 8b 08 00 add r1,r12,r11 802799c: b9 a0 10 00 mv r2,r13 80279a0: 37 83 00 3c addi r3,sp,60 80279a4: d8 80 00 00 call r4 80279a8: b8 20 58 00 mv r11,r1
if ( result != 0 ) { 80279ac: 44 20 00 0b be r1,r0,80279d8 <link+0x100> rtems_filesystem_freenode( &existing_loc );
80279b0: 2b 81 00 34 lw r1,(sp+52)
80279b4: 44 20 00 05 be r1,r0,80279c8 <link+0xf0> <== NEVER TAKEN
80279b8: 28 22 00 1c lw r2,(r1+28)
80279bc: 44 40 00 03 be r2,r0,80279c8 <link+0xf0> <== NEVER TAKEN
80279c0: 37 81 00 28 addi r1,sp,40 80279c4: d8 40 00 00 call r2
rtems_set_errno_and_return_minus_one( result );
80279c8: f8 00 6b d3 calli 8042914 <__errno> 80279cc: 58 2b 00 00 sw (r1+0),r11 80279d0: 34 0b ff ff mvi r11,-1 80279d4: e0 00 00 38 bi 8027ab4 <link+0x1dc>
/* * Check to see if the caller is trying to link across file system * boundaries. */ if ( parent_loc.mt_entry != existing_loc.mt_entry ) {
80279d8: 2b 81 00 38 lw r1,(sp+56) 80279dc: 2b 82 00 24 lw r2,(sp+36)
80279e0: 44 41 00 10 be r2,r1,8027a20 <link+0x148> rtems_filesystem_freenode( &existing_loc );
80279e4: 2b 81 00 34 lw r1,(sp+52)
80279e8: 44 20 00 05 be r1,r0,80279fc <link+0x124> <== NEVER TAKEN
80279ec: 28 22 00 1c lw r2,(r1+28)
80279f0: 44 40 00 03 be r2,r0,80279fc <link+0x124> <== NEVER TAKEN
80279f4: 37 81 00 28 addi r1,sp,40 80279f8: d8 40 00 00 call r2
rtems_filesystem_freenode( &parent_loc );
80279fc: 2b 81 00 20 lw r1,(sp+32)
8027a00: 44 20 00 05 be r1,r0,8027a14 <link+0x13c> <== NEVER TAKEN
8027a04: 28 22 00 1c lw r2,(r1+28)
8027a08: 44 40 00 03 be r2,r0,8027a14 <link+0x13c> <== NEVER TAKEN
8027a0c: 37 81 00 14 addi r1,sp,20 8027a10: d8 40 00 00 call r2
rtems_set_errno_and_return_minus_one( EXDEV );
8027a14: f8 00 6b c0 calli 8042914 <__errno> 8027a18: 34 02 00 12 mvi r2,18 8027a1c: e0 00 00 12 bi 8027a64 <link+0x18c>
} if ( !parent_loc.ops->link_h ) {
8027a20: 2b 81 00 20 lw r1,(sp+32) 8027a24: 28 24 00 08 lw r4,(r1+8)
8027a28: 5c 80 00 11 bne r4,r0,8027a6c <link+0x194> <== ALWAYS TAKEN
rtems_filesystem_freenode( &existing_loc );
8027a2c: 2b 81 00 34 lw r1,(sp+52) <== NOT EXECUTED 8027a30: 44 24 00 05 be r1,r4,8027a44 <link+0x16c> <== NOT EXECUTED 8027a34: 28 22 00 1c lw r2,(r1+28) <== NOT EXECUTED 8027a38: 44 44 00 03 be r2,r4,8027a44 <link+0x16c> <== NOT EXECUTED 8027a3c: 37 81 00 28 addi r1,sp,40 <== NOT EXECUTED 8027a40: d8 40 00 00 call r2 <== NOT EXECUTED
rtems_filesystem_freenode( &parent_loc );
8027a44: 2b 81 00 20 lw r1,(sp+32) <== NOT EXECUTED 8027a48: 44 20 00 05 be r1,r0,8027a5c <link+0x184> <== NOT EXECUTED 8027a4c: 28 22 00 1c lw r2,(r1+28) <== NOT EXECUTED 8027a50: 44 40 00 03 be r2,r0,8027a5c <link+0x184> <== NOT EXECUTED 8027a54: 37 81 00 14 addi r1,sp,20 <== NOT EXECUTED 8027a58: d8 40 00 00 call r2 <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( ENOTSUP );
8027a5c: f8 00 6b ae calli 8042914 <__errno> <== NOT EXECUTED 8027a60: 34 02 00 86 mvi r2,134 <== NOT EXECUTED
8027a64: 58 22 00 00 sw (r1+0),r2 8027a68: e3 ff ff da bi 80279d0 <link+0xf8>
} result = (*parent_loc.ops->link_h)( &existing_loc, &parent_loc, name_start );
8027a6c: 2b 83 00 3c lw r3,(sp+60) 8027a70: 37 8c 00 28 addi r12,sp,40 8027a74: b9 a0 10 00 mv r2,r13 8027a78: b9 80 08 00 mv r1,r12 8027a7c: d8 80 00 00 call r4 8027a80: b8 20 58 00 mv r11,r1
rtems_filesystem_freenode( &existing_loc );
8027a84: 2b 81 00 34 lw r1,(sp+52)
8027a88: 44 20 00 05 be r1,r0,8027a9c <link+0x1c4> <== NEVER TAKEN
8027a8c: 28 22 00 1c lw r2,(r1+28)
8027a90: 44 40 00 03 be r2,r0,8027a9c <link+0x1c4> <== NEVER TAKEN
8027a94: b9 80 08 00 mv r1,r12 8027a98: d8 40 00 00 call r2
rtems_filesystem_freenode( &parent_loc );
8027a9c: 2b 81 00 20 lw r1,(sp+32)
8027aa0: 44 20 00 05 be r1,r0,8027ab4 <link+0x1dc> <== NEVER TAKEN
8027aa4: 28 22 00 1c lw r2,(r1+28)
8027aa8: 44 40 00 03 be r2,r0,8027ab4 <link+0x1dc> <== NEVER TAKEN
8027aac: 37 81 00 14 addi r1,sp,20 8027ab0: d8 40 00 00 call r2
return result; }
8027ab4: b9 60 08 00 mv r1,r11 8027ab8: 2b 9d 00 04 lw ra,(sp+4) 8027abc: 2b 8b 00 10 lw r11,(sp+16) 8027ac0: 2b 8c 00 0c lw r12,(sp+12) 8027ac4: 2b 8d 00 08 lw r13,(sp+8) 8027ac8: 37 9c 00 3c addi sp,sp,60 8027acc: c3 a0 00 00 ret
080193bc <lseek>: off_t lseek( int fd, off_t offset, int whence ) {
80193bc: 37 9c ff e8 addi sp,sp,-24 80193c0: 5b 8b 00 18 sw (sp+24),r11 80193c4: 5b 8c 00 14 sw (sp+20),r12 80193c8: 5b 8d 00 10 sw (sp+16),r13 80193cc: 5b 8e 00 0c sw (sp+12),r14 80193d0: 5b 8f 00 08 sw (sp+8),r15 80193d4: 5b 9d 00 04 sw (sp+4),ra
rtems_libio_t *iop; off_t old_offset; off_t status; rtems_libio_check_fd( fd );
80193d8: 78 04 08 01 mvhi r4,0x801 80193dc: 38 84 c0 10 ori r4,r4,0xc010 80193e0: 28 84 00 00 lw r4,(r4+0)
off_t lseek( int fd, off_t offset, int whence ) {
80193e4: b8 40 60 00 mv r12,r2 80193e8: b8 60 68 00 mv r13,r3
rtems_libio_t *iop; off_t old_offset; off_t status; rtems_libio_check_fd( fd );
80193ec: 54 81 00 02 bgu r4,r1,80193f4 <lseek+0x38> <== ALWAYS TAKEN
80193f0: e0 00 00 0e bi 8019428 <lseek+0x6c> <== NOT EXECUTED
iop = rtems_libio_iop( fd );
80193f4: 34 02 00 03 mvi r2,3 80193f8: fb ff 9b 7e calli 80001f0 <__ashlsi3> 80193fc: 78 0e 08 01 mvhi r14,0x801 8019400: 39 ce c6 9c ori r14,r14,0xc69c 8019404: 34 02 00 03 mvi r2,3 8019408: b8 20 78 00 mv r15,r1 801940c: fb ff 9b 79 calli 80001f0 <__ashlsi3> 8019410: 29 cb 00 00 lw r11,(r14+0) 8019414: b5 e1 08 00 add r1,r15,r1 8019418: b5 61 58 00 add r11,r11,r1
rtems_libio_check_is_open(iop);
801941c: 29 61 00 18 lw r1,(r11+24) 8019420: 20 21 01 00 andi r1,r1,0x100
8019424: 5c 20 00 04 bne r1,r0,8019434 <lseek+0x78> <== ALWAYS TAKEN
8019428: fb ff c6 ba calli 800af10 <__errno> <== NOT EXECUTED 801942c: 34 02 00 09 mvi r2,9 <== NOT EXECUTED 8019430: e0 00 00 29 bi 80194d4 <lseek+0x118> <== NOT EXECUTED
/* * Check as many errors as possible before touching iop->offset. */ if ( !iop->handlers->lseek_h )
8019434: 29 61 00 40 lw r1,(r11+64) 8019438: 28 21 00 14 lw r1,(r1+20)
801943c: 5c 20 00 04 bne r1,r0,801944c <lseek+0x90> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( ENOTSUP );
8019440: fb ff c6 b4 calli 800af10 <__errno> <== NOT EXECUTED 8019444: 34 02 00 86 mvi r2,134 <== NOT EXECUTED 8019448: e0 00 00 23 bi 80194d4 <lseek+0x118> <== NOT EXECUTED
/* * Now process the lseek(). */ old_offset = iop->offset; switch ( whence ) {
801944c: 34 01 00 01 mvi r1,1
/* * Now process the lseek(). */ old_offset = iop->offset;
8019450: 29 6f 00 10 lw r15,(r11+16) 8019454: 29 6e 00 14 lw r14,(r11+20)
switch ( whence ) { 8019458: 45 a1 00 0a be r13,r1,8019480 <lseek+0xc4>
801945c: 34 01 00 02 mvi r1,2
8019460: 45 a1 00 0f be r13,r1,801949c <lseek+0xe0> 8019464: 5d a0 00 1a bne r13,r0,80194cc <lseek+0x110> case SEEK_SET: iop->offset = offset;
8019468: b9 80 08 00 mv r1,r12 801946c: 34 02 00 1f mvi r2,31 8019470: fb ff 9b b0 calli 8000330 <__ashrsi3> 8019474: 59 61 00 10 sw (r11+16),r1 8019478: 59 6c 00 14 sw (r11+20),r12
break;
801947c: e0 00 00 19 bi 80194e0 <lseek+0x124>
case SEEK_CUR: iop->offset += offset;
8019480: 34 02 00 1f mvi r2,31 8019484: b9 80 08 00 mv r1,r12 8019488: fb ff 9b aa calli 8000330 <__ashrsi3> 801948c: b5 8e 10 00 add r2,r12,r14 8019490: f5 82 18 00 cmpgu r3,r12,r2 8019494: b4 2f 08 00 add r1,r1,r15 8019498: e0 00 00 09 bi 80194bc <lseek+0x100>
break; case SEEK_END: iop->offset = iop->size + offset;
801949c: 34 02 00 1f mvi r2,31 80194a0: b9 80 08 00 mv r1,r12 80194a4: fb ff 9b a3 calli 8000330 <__ashrsi3> 80194a8: 29 62 00 0c lw r2,(r11+12) 80194ac: 29 64 00 08 lw r4,(r11+8) 80194b0: b5 82 10 00 add r2,r12,r2 80194b4: f5 82 18 00 cmpgu r3,r12,r2 80194b8: b4 24 08 00 add r1,r1,r4 80194bc: b4 61 08 00 add r1,r3,r1 80194c0: 59 61 00 10 sw (r11+16),r1 80194c4: 59 62 00 14 sw (r11+20),r2
break;
80194c8: e0 00 00 06 bi 80194e0 <lseek+0x124>
default: rtems_set_errno_and_return_minus_one( EINVAL );
80194cc: fb ff c6 91 calli 800af10 <__errno> 80194d0: 34 02 00 16 mvi r2,22 80194d4: 58 22 00 00 sw (r1+0),r2 80194d8: 34 0c ff ff mvi r12,-1 80194dc: e0 00 00 13 bi 8019528 <lseek+0x16c>
/* * At this time, handlers assume iop->offset has the desired * new offset. */ status = (*iop->handlers->lseek_h)( iop, offset, whence );
80194e0: 29 6f 00 40 lw r15,(r11+64) 80194e4: 34 02 00 1f mvi r2,31 80194e8: b9 80 08 00 mv r1,r12 80194ec: fb ff 9b 91 calli 8000330 <__ashrsi3> 80194f0: 29 e5 00 14 lw r5,(r15+20) 80194f4: b8 20 10 00 mv r2,r1 80194f8: b9 80 18 00 mv r3,r12 80194fc: b9 a0 20 00 mv r4,r13 8019500: b9 60 08 00 mv r1,r11 8019504: d8 a0 00 00 call r5
if ( status == (off_t) -1 )
8019508: 34 01 ff ff mvi r1,-1
/* * At this time, handlers assume iop->offset has the desired * new offset. */ status = (*iop->handlers->lseek_h)( iop, offset, whence );
801950c: b8 40 60 00 mv r12,r2
if ( status == (off_t) -1 ) 8019510: 5c 41 00 06 bne r2,r1,8019528 <lseek+0x16c> iop->offset = old_offset;
8019514: b9 c0 08 00 mv r1,r14 8019518: 34 02 00 1f mvi r2,31 801951c: fb ff 9b 85 calli 8000330 <__ashrsi3> 8019520: 59 61 00 10 sw (r11+16),r1 8019524: 59 6e 00 14 sw (r11+20),r14
/* * So if the operation failed, we have to restore iop->offset. */ return status; }
8019528: b9 80 08 00 mv r1,r12 801952c: 2b 9d 00 04 lw ra,(sp+4) 8019530: 2b 8b 00 18 lw r11,(sp+24) 8019534: 2b 8c 00 14 lw r12,(sp+20) 8019538: 2b 8d 00 10 lw r13,(sp+16) 801953c: 2b 8e 00 0c lw r14,(sp+12) 8019540: 2b 8f 00 08 lw r15,(sp+8) 8019544: 37 9c 00 18 addi sp,sp,24 8019548: c3 a0 00 00 ret
08027ca4 <lstat>: int _STAT_NAME( const char *path, struct stat *buf ) {
8027ca4: 37 9c ff dc addi sp,sp,-36 <== NOT EXECUTED 8027ca8: 5b 8b 00 10 sw (sp+16),r11 <== NOT EXECUTED 8027cac: 5b 8c 00 0c sw (sp+12),r12 <== NOT EXECUTED 8027cb0: 5b 8d 00 08 sw (sp+8),r13 <== NOT EXECUTED 8027cb4: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED 8027cb8: b8 40 68 00 mv r13,r2 <== NOT EXECUTED 8027cbc: b8 20 58 00 mv r11,r1 <== NOT EXECUTED
/* * Check to see if we were passed a valid pointer. */ if ( !buf )
8027cc0: 5c 40 00 04 bne r2,r0,8027cd0 <lstat+0x2c> <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( EFAULT );
8027cc4: f8 00 6b 14 calli 8042914 <__errno> <== NOT EXECUTED 8027cc8: 34 02 00 0e mvi r2,14 <== NOT EXECUTED 8027ccc: e0 00 00 16 bi 8027d24 <lstat+0x80> <== NOT EXECUTED
status = rtems_filesystem_evaluate_path( path, strlen( path ),
8027cd0: f8 00 88 fb calli 804a0bc <strlen> <== NOT EXECUTED 8027cd4: 34 03 00 00 mvi r3,0 <== NOT EXECUTED 8027cd8: 37 8c 00 14 addi r12,sp,20 <== NOT EXECUTED 8027cdc: b8 20 10 00 mv r2,r1 <== NOT EXECUTED 8027ce0: b9 80 20 00 mv r4,r12 <== NOT EXECUTED 8027ce4: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8027ce8: b8 60 28 00 mv r5,r3 <== NOT EXECUTED 8027cec: fb ff 79 4a calli 8006214 <rtems_filesystem_evaluate_path> <== NOT EXECUTED
0, &loc, _STAT_FOLLOW_LINKS ); if ( status != 0 )
8027cf0: 34 0b ff ff mvi r11,-1 <== NOT EXECUTED 8027cf4: 5c 20 00 1f bne r1,r0,8027d70 <lstat+0xcc> <== NOT EXECUTED
return -1; if ( !loc.handlers->fstat_h ){
8027cf8: 2b 82 00 1c lw r2,(sp+28) <== NOT EXECUTED 8027cfc: 28 42 00 18 lw r2,(r2+24) <== NOT EXECUTED 8027d00: 5c 41 00 0c bne r2,r1,8027d30 <lstat+0x8c> <== NOT EXECUTED
rtems_filesystem_freenode( &loc );
8027d04: 2b 81 00 20 lw r1,(sp+32) <== NOT EXECUTED 8027d08: 44 22 00 05 be r1,r2,8027d1c <lstat+0x78> <== NOT EXECUTED 8027d0c: 28 23 00 1c lw r3,(r1+28) <== NOT EXECUTED 8027d10: 44 62 00 03 be r3,r2,8027d1c <lstat+0x78> <== NOT EXECUTED 8027d14: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 8027d18: d8 60 00 00 call r3 <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( ENOTSUP );
8027d1c: f8 00 6a fe calli 8042914 <__errno> <== NOT EXECUTED 8027d20: 34 02 00 86 mvi r2,134 <== NOT EXECUTED 8027d24: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 8027d28: 34 0b ff ff mvi r11,-1 <== NOT EXECUTED 8027d2c: e0 00 00 11 bi 8027d70 <lstat+0xcc> <== NOT EXECUTED
/* * Zero out the stat structure so the various support * versions of stat don't have to. */ memset( buf, 0, sizeof(struct stat) );
8027d30: b8 20 10 00 mv r2,r1 <== NOT EXECUTED 8027d34: 34 03 00 48 mvi r3,72 <== NOT EXECUTED 8027d38: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 8027d3c: f8 00 7a 62 calli 80466c4 <memset> <== NOT EXECUTED
status = (*loc.handlers->fstat_h)( &loc, buf );
8027d40: 2b 83 00 1c lw r3,(sp+28) <== NOT EXECUTED 8027d44: b9 a0 10 00 mv r2,r13 <== NOT EXECUTED 8027d48: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 8027d4c: 28 63 00 18 lw r3,(r3+24) <== NOT EXECUTED 8027d50: d8 60 00 00 call r3 <== NOT EXECUTED 8027d54: b8 20 58 00 mv r11,r1 <== NOT EXECUTED
rtems_filesystem_freenode( &loc );
8027d58: 2b 81 00 20 lw r1,(sp+32) <== NOT EXECUTED 8027d5c: 44 20 00 05 be r1,r0,8027d70 <lstat+0xcc> <== NOT EXECUTED 8027d60: 28 22 00 1c lw r2,(r1+28) <== NOT EXECUTED 8027d64: 44 40 00 03 be r2,r0,8027d70 <lstat+0xcc> <== NOT EXECUTED 8027d68: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 8027d6c: d8 40 00 00 call r2 <== NOT EXECUTED
return status; }
8027d70: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8027d74: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8027d78: 2b 8b 00 10 lw r11,(sp+16) <== NOT EXECUTED 8027d7c: 2b 8c 00 0c lw r12,(sp+12) <== NOT EXECUTED 8027d80: 2b 8d 00 08 lw r13,(sp+8) <== NOT EXECUTED 8027d84: 37 9c 00 24 addi sp,sp,36 <== NOT EXECUTED 8027d88: c3 a0 00 00 ret <== NOT EXECUTED
0800768c <malloc>: size_t size ) { void *return_this; MSBUMP(malloc_calls, 1);
800768c: 37 9c ff f0 addi sp,sp,-16 8007690: 5b 8b 00 10 sw (sp+16),r11 8007694: 5b 8c 00 0c sw (sp+12),r12 8007698: 5b 8d 00 08 sw (sp+8),r13 800769c: 5b 9d 00 04 sw (sp+4),ra 80076a0: 78 03 08 01 mvhi r3,0x801 80076a4: 38 63 c6 a8 ori r3,r3,0xc6a8 80076a8: 28 62 00 04 lw r2,(r3+4) 80076ac: b8 20 68 00 mv r13,r1 80076b0: 34 41 00 01 addi r1,r2,1 80076b4: 58 61 00 04 sw (r3+4),r1
/* * If some free's have been deferred, then do them now. */ malloc_deferred_frees_process();
80076b8: fb ff ff e7 calli 8007654 <malloc_deferred_frees_process>
/* * Validate the parameters */ if ( !size )
80076bc: 45 a0 00 30 be r13,r0,800777c <malloc+0xf0> <== NEVER TAKEN
return (void *) 0; /* * Do not attempt to allocate memory if not in correct system state. */ if ( _System_state_Is_up(_System_state_Get()) &&
80076c0: 78 01 08 01 mvhi r1,0x801 80076c4: 38 21 c9 c0 ori r1,r1,0xc9c0 80076c8: 28 22 00 00 lw r2,(r1+0) 80076cc: 34 01 00 03 mvi r1,3
80076d0: 5c 41 00 03 bne r2,r1,80076dc <malloc+0x50>
80076d4: fb ff ff c5 calli 80075e8 <malloc_is_system_state_OK>
80076d8: 44 20 00 29 be r1,r0,800777c <malloc+0xf0> <== NEVER TAKEN
RTEMS_INLINE_ROUTINE void *_Protected_heap_Allocate( Heap_Control *heap, uintptr_t size ) { return _Protected_heap_Allocate_aligned_with_boundary( heap, size, 0, 0 );
80076dc: 78 01 08 01 mvhi r1,0x801 80076e0: 38 21 c0 1c ori r1,r1,0xc01c 80076e4: 28 21 00 00 lw r1,(r1+0) 80076e8: 34 03 00 00 mvi r3,0 80076ec: b9 a0 10 00 mv r2,r13 80076f0: b8 60 20 00 mv r4,r3 80076f4: f8 00 04 c9 calli 8008a18 <_Protected_heap_Allocate_aligned_with_boundary> 80076f8: b8 20 58 00 mv r11,r1
if ( !return_this ) { if (rtems_malloc_sbrk_helpers) return_this = (*rtems_malloc_sbrk_helpers->extend)( size ); if ( !return_this ) { errno = ENOMEM; return (void *) 0;
80076fc: b8 20 60 00 mv r12,r1
* If this fails then return a NULL pointer. */ return_this = _Protected_heap_Allocate( RTEMS_Malloc_Heap, size ); if ( !return_this ) { 8007700: 5c 20 00 0e bne r1,r0,8007738 <malloc+0xac> if (rtems_malloc_sbrk_helpers)
8007704: 78 01 08 01 mvhi r1,0x801 8007708: 38 21 c6 14 ori r1,r1,0xc614 800770c: 28 21 00 00 lw r1,(r1+0)
8007710: 44 2b 00 06 be r1,r11,8007728 <malloc+0x9c> <== ALWAYS TAKEN
return_this = (*rtems_malloc_sbrk_helpers->extend)( size );
8007714: 28 22 00 04 lw r2,(r1+4) <== NOT EXECUTED 8007718: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 800771c: d8 40 00 00 call r2 <== NOT EXECUTED 8007720: b8 20 60 00 mv r12,r1 <== NOT EXECUTED
if ( !return_this ) {
8007724: 5c 20 00 05 bne r1,r0,8007738 <malloc+0xac> <== NOT EXECUTED
errno = ENOMEM;
8007728: f8 00 0d fa calli 800af10 <__errno> 800772c: 34 02 00 0c mvi r2,12 8007730: 58 22 00 00 sw (r1+0),r2
return (void *) 0;
8007734: e0 00 00 13 bi 8007780 <malloc+0xf4>
} /* * If the user wants us to dirty the allocated memory, then do it. */ if ( rtems_malloc_dirty_helper )
8007738: 78 01 08 01 mvhi r1,0x801 800773c: 38 21 c6 18 ori r1,r1,0xc618 8007740: 28 21 00 00 lw r1,(r1+0)
8007744: 44 20 00 05 be r1,r0,8007758 <malloc+0xcc> <== ALWAYS TAKEN
(*rtems_malloc_dirty_helper)( return_this, size );
8007748: 28 23 00 00 lw r3,(r1+0) <== NOT EXECUTED 800774c: b9 a0 10 00 mv r2,r13 <== NOT EXECUTED 8007750: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 8007754: d8 60 00 00 call r3 <== NOT EXECUTED
/* * If configured, update the statistics */ if ( rtems_malloc_statistics_helpers )
8007758: 78 01 08 01 mvhi r1,0x801 800775c: 38 21 c6 10 ori r1,r1,0xc610 8007760: 28 21 00 00 lw r1,(r1+0) 8007764: b9 80 58 00 mv r11,r12
8007768: 44 20 00 06 be r1,r0,8007780 <malloc+0xf4> <== ALWAYS TAKEN
(*rtems_malloc_statistics_helpers->at_malloc)(return_this);
800776c: 28 22 00 04 lw r2,(r1+4) <== NOT EXECUTED 8007770: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 8007774: d8 40 00 00 call r2 <== NOT EXECUTED 8007778: e0 00 00 02 bi 8007780 <malloc+0xf4> <== NOT EXECUTED 800777c: 34 0b 00 00 mvi r11,0 <== NOT EXECUTED
if (rtems_malloc_boundary_helpers) (*rtems_malloc_boundary_helpers->at_malloc)(return_this, size); #endif return return_this; }
8007780: b9 60 08 00 mv r1,r11 8007784: 2b 9d 00 04 lw ra,(sp+4) 8007788: 2b 8b 00 10 lw r11,(sp+16) 800778c: 2b 8c 00 0c lw r12,(sp+12) 8007790: 2b 8d 00 08 lw r13,(sp+8) 8007794: 37 9c 00 10 addi sp,sp,16 8007798: c3 a0 00 00 ret
08007630 <malloc_deferred_free>: } void malloc_deferred_free( void *pointer ) {
8007630: 37 9c ff fc addi sp,sp,-4 <== NOT EXECUTED 8007634: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED 8007638: b8 20 10 00 mv r2,r1 <== NOT EXECUTED 800763c: 78 01 08 01 mvhi r1,0x801 <== NOT EXECUTED 8007640: 38 21 ca 18 ori r1,r1,0xca18 <== NOT EXECUTED 8007644: fb ff ed 08 calli 8002a64 <_Chain_Append> <== NOT EXECUTED
rtems_chain_append(&RTEMS_Malloc_GC_list, (rtems_chain_node *)pointer); }
8007648: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 800764c: 37 9c 00 04 addi sp,sp,4 <== NOT EXECUTED 8007650: c3 a0 00 00 ret <== NOT EXECUTED
08007654 <malloc_deferred_frees_process>: { rtems_chain_initialize_empty(&RTEMS_Malloc_GC_list); } void malloc_deferred_frees_process(void) {
8007654: 37 9c ff f8 addi sp,sp,-8 8007658: 5b 8b 00 08 sw (sp+8),r11 800765c: 5b 9d 00 04 sw (sp+4),ra
*/ RTEMS_INLINE_ROUTINE rtems_chain_node *rtems_chain_get( rtems_chain_control *the_chain ) { return _Chain_Get( the_chain );
8007660: 78 0b 08 01 mvhi r11,0x801
rtems_chain_node *to_be_freed; /* * If some free's have been deferred, then do them now. */ while ((to_be_freed = rtems_chain_get(&RTEMS_Malloc_GC_list)) != NULL)
8007664: e0 00 00 02 bi 800766c <malloc_deferred_frees_process+0x18>
free(to_be_freed);
8007668: fb ff fe 77 calli 8007044 <free> <== NOT EXECUTED
800766c: b9 60 08 00 mv r1,r11 8007670: 38 21 ca 18 ori r1,r1,0xca18 8007674: f8 00 02 86 calli 800808c <_Chain_Get>
rtems_chain_node *to_be_freed; /* * If some free's have been deferred, then do them now. */ while ((to_be_freed = rtems_chain_get(&RTEMS_Malloc_GC_list)) != NULL)
8007678: 5c 20 ff fc bne r1,r0,8007668 <malloc_deferred_frees_process+0x14><== NEVER TAKEN
free(to_be_freed); }
800767c: 2b 9d 00 04 lw ra,(sp+4) 8007680: 2b 8b 00 08 lw r11,(sp+8) 8007684: 37 9c 00 08 addi sp,sp,8 8007688: c3 a0 00 00 ret
080075e8 <malloc_is_system_state_OK>: rtems_chain_control RTEMS_Malloc_GC_list; bool malloc_is_system_state_OK(void) { if ( _Thread_Dispatch_disable_level > 0 )
80075e8: 78 01 08 01 mvhi r1,0x801 80075ec: 38 21 c8 24 ori r1,r1,0xc824 80075f0: 28 22 00 00 lw r2,(r1+0) 80075f4: 34 01 00 00 mvi r1,0
80075f8: 5c 41 00 05 bne r2,r1,800760c <malloc_is_system_state_OK+0x24><== NEVER TAKEN
return false; if ( _ISR_Nest_level > 0 )
80075fc: 78 01 08 01 mvhi r1,0x801 8007600: 38 21 c8 bc ori r1,r1,0xc8bc 8007604: 28 21 00 00 lw r1,(r1+0)
#include "malloc_p.h" rtems_chain_control RTEMS_Malloc_GC_list; bool malloc_is_system_state_OK(void)
8007608: 64 21 00 00 cmpei r1,r1,0
if ( _ISR_Nest_level > 0 ) return false; return true; }
800760c: c3 a0 00 00 ret
0800f608 <memfile_alloc_block>: */ int memfile_blocks_allocated = 0; void *memfile_alloc_block(void) {
800f608: 37 9c ff fc addi sp,sp,-4 800f60c: 5b 9d 00 04 sw (sp+4),ra
void *memory; memory = (void *)calloc(1, IMFS_MEMFILE_BYTES_PER_BLOCK);
800f610: 78 01 08 02 mvhi r1,0x802 800f614: 38 21 36 4c ori r1,r1,0x364c 800f618: 28 22 00 00 lw r2,(r1+0) 800f61c: 34 01 00 01 mvi r1,1 800f620: fb ff cc 21 calli 80026a4 <calloc>
if ( memory )
800f624: 44 20 00 06 be r1,r0,800f63c <memfile_alloc_block+0x34> <== NEVER TAKEN
memfile_blocks_allocated++;
800f628: 78 02 08 02 mvhi r2,0x802 800f62c: 38 42 36 ec ori r2,r2,0x36ec 800f630: 28 43 00 00 lw r3,(r2+0) 800f634: 34 63 00 01 addi r3,r3,1 800f638: 58 43 00 00 sw (r2+0),r3
return memory; }
800f63c: 2b 9d 00 04 lw ra,(sp+4) 800f640: 37 9c 00 04 addi sp,sp,4 800f644: c3 a0 00 00 ret
0800fbc8 <memfile_check_rmnod>: return memfile_check_rmnod( the_jnode ); } int memfile_check_rmnod( IMFS_jnode_t *the_jnode ){
800fbc8: 37 9c ff f8 addi sp,sp,-8 800fbcc: 5b 8b 00 08 sw (sp+8),r11 800fbd0: 5b 9d 00 04 sw (sp+4),ra 800fbd4: b8 20 58 00 mv r11,r1
/* * The file cannot be open and the link must be less than 1 to free. */ if ( !rtems_libio_is_file_open( the_jnode ) && (the_jnode->st_nlink < 1) ) {
800fbd8: fb ff f4 fe calli 800cfd0 <rtems_libio_is_file_open>
800fbdc: 5c 20 00 10 bne r1,r0,800fc1c <memfile_check_rmnod+0x54>
800fbe0: 2d 62 00 34 lhu r2,(r11+52)
800fbe4: 5c 41 00 0e bne r2,r1,800fc1c <memfile_check_rmnod+0x54> <== NEVER TAKEN
/* * Is the rtems_filesystem_current is this node? */ if ( rtems_filesystem_current.node_access == the_jnode )
800fbe8: 78 01 08 02 mvhi r1,0x802 800fbec: 38 21 30 f8 ori r1,r1,0x30f8 800fbf0: 28 21 00 00 lw r1,(r1+0) 800fbf4: 28 23 00 04 lw r3,(r1+4)
800fbf8: 5c 6b 00 02 bne r3,r11,800fc00 <memfile_check_rmnod+0x38> <== ALWAYS TAKEN
rtems_filesystem_current.node_access = NULL;
800fbfc: 58 22 00 04 sw (r1+4),r2 <== NOT EXECUTED
/* * Free memory associated with a memory file. */ if (the_jnode->type != IMFS_LINEAR_FILE)
800fc00: 29 62 00 4c lw r2,(r11+76) 800fc04: 34 01 00 06 mvi r1,6
800fc08: 44 41 00 03 be r2,r1,800fc14 <memfile_check_rmnod+0x4c> <== NEVER TAKEN
IMFS_memfile_remove( the_jnode );
800fc0c: b9 60 08 00 mv r1,r11 800fc10: fb ff ff 7f calli 800fa0c <IMFS_memfile_remove>
free( the_jnode );
800fc14: b9 60 08 00 mv r1,r11 800fc18: fb ff cb 5c calli 8002988 <free>
} return 0; }
800fc1c: 34 01 00 00 mvi r1,0 800fc20: 2b 9d 00 04 lw ra,(sp+4) 800fc24: 2b 8b 00 08 lw r11,(sp+8) 800fc28: 37 9c 00 08 addi sp,sp,8 800fc2c: c3 a0 00 00 ret
0800f910 <memfile_free_blocks_in_table>: void memfile_free_blocks_in_table( block_p **block_table, int entries ) {
800f910: 37 9c ff e8 addi sp,sp,-24 800f914: 5b 8b 00 18 sw (sp+24),r11 800f918: 5b 8c 00 14 sw (sp+20),r12 800f91c: 5b 8d 00 10 sw (sp+16),r13 800f920: 5b 8e 00 0c sw (sp+12),r14 800f924: 5b 8f 00 08 sw (sp+8),r15 800f928: 5b 9d 00 04 sw (sp+4),ra 800f92c: b8 20 58 00 mv r11,r1 800f930: b8 40 78 00 mv r15,r2
/* * Perform internal consistency checks */ assert( block_table );
800f934: 5c 20 00 09 bne r1,r0,800f958 <memfile_free_blocks_in_table+0x48><== ALWAYS TAKEN
800f938: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 800f93c: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 800f940: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 800f944: 38 21 1b 60 ori r1,r1,0x1b60 <== NOT EXECUTED 800f948: 38 63 1c d4 ori r3,r3,0x1cd4 <== NOT EXECUTED 800f94c: 38 84 1b d8 ori r4,r4,0x1bd8 <== NOT EXECUTED 800f950: 34 02 01 b3 mvi r2,435 <== NOT EXECUTED 800f954: fb ff f4 dc calli 800ccc4 <__assert_func> <== NOT EXECUTED
800f958: 34 0c 00 00 mvi r12,0 800f95c: 28 2d 00 00 lw r13,(r1+0)
*/ b = *block_table; for ( i=0 ; i<entries ; i++ ) { if ( b[i] ) {
800f960: b9 80 70 00 mv r14,r12
* Now go through all the slots in the table and free the memory. */ b = *block_table; for ( i=0 ; i<entries ; i++ ) {
800f964: e0 00 00 07 bi 800f980 <memfile_free_blocks_in_table+0x70>
if ( b[i] ) {
800f968: 29 a1 00 00 lw r1,(r13+0)
800f96c: 44 20 00 03 be r1,r0,800f978 <memfile_free_blocks_in_table+0x68> memfile_free_block( b[i] );
800f970: fb ff ff 1b calli 800f5dc <memfile_free_block>
b[i] = 0;
800f974: 59 ae 00 00 sw (r13+0),r14
* Now go through all the slots in the table and free the memory. */ b = *block_table; for ( i=0 ; i<entries ; i++ ) {
800f978: 35 8c 00 01 addi r12,r12,1 800f97c: 35 ad 00 04 addi r13,r13,4
800f980: 49 ec ff fa bg r15,r12,800f968 <memfile_free_blocks_in_table+0x58> /* * Now that all the blocks in the block table are free, we can * free the block table itself. */ memfile_free_block( *block_table );
800f984: 29 61 00 00 lw r1,(r11+0) 800f988: fb ff ff 15 calli 800f5dc <memfile_free_block>
*block_table = 0;
800f98c: 34 01 00 00 mvi r1,0 800f990: 59 61 00 00 sw (r11+0),r1
}
800f994: 2b 9d 00 04 lw ra,(sp+4) 800f998: 2b 8b 00 18 lw r11,(sp+24) 800f99c: 2b 8c 00 14 lw r12,(sp+20) 800f9a0: 2b 8d 00 10 lw r13,(sp+16) 800f9a4: 2b 8e 00 0c lw r14,(sp+12) 800f9a8: 2b 8f 00 08 lw r15,(sp+8) 800f9ac: 37 9c 00 18 addi sp,sp,24 800f9b0: c3 a0 00 00 ret
0800ff1c <memfile_ftruncate>: int memfile_ftruncate( rtems_libio_t *iop, rtems_off64_t length ) {
800ff1c: 37 9c ff f0 addi sp,sp,-16 800ff20: 5b 8b 00 08 sw (sp+8),r11 800ff24: 5b 9d 00 04 sw (sp+4),ra
IMFS_jnode_t *the_jnode; the_jnode = iop->file_info;
800ff28: 28 2b 00 3c lw r11,(r1+60)
* POSIX 1003.1b does not specify what happens if you truncate a file * and the new length is greater than the current size. We treat this * as an extend operation. */ if ( length > the_jnode->info.file.size )
800ff2c: 29 64 00 50 lw r4,(r11+80)
800ff30: 48 44 00 05 bg r2,r4,800ff44 <memfile_ftruncate+0x28> <== NEVER TAKEN 800ff34: 5c 82 00 08 bne r4,r2,800ff54 <memfile_ftruncate+0x38> <== NEVER TAKEN
800ff38: 29 64 00 54 lw r4,(r11+84)
800ff3c: 54 64 00 02 bgu r3,r4,800ff44 <memfile_ftruncate+0x28> <== NEVER TAKEN
800ff40: e0 00 00 05 bi 800ff54 <memfile_ftruncate+0x38>
return IMFS_memfile_extend( the_jnode, length );
800ff44: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 800ff48: b8 60 10 00 mv r2,r3 <== NOT EXECUTED 800ff4c: fb ff ff 8a calli 800fd74 <IMFS_memfile_extend> <== NOT EXECUTED 800ff50: e0 00 00 0b bi 800ff7c <memfile_ftruncate+0x60> <== NOT EXECUTED
* The in-memory files do not currently reclaim memory until the file is * deleted. So we leave the previously allocated blocks in place for * future use and just set the length. */ the_jnode->info.file.size = length;
800ff54: 59 62 00 50 sw (r11+80),r2 800ff58: 59 63 00 54 sw (r11+84),r3
iop->size = the_jnode->info.file.size;
800ff5c: 58 22 00 08 sw (r1+8),r2 800ff60: 58 23 00 0c sw (r1+12),r3
IMFS_update_atime( the_jnode );
800ff64: 34 02 00 00 mvi r2,0 800ff68: 37 81 00 0c addi r1,sp,12 800ff6c: fb ff ca b5 calli 8002a40 <gettimeofday> 800ff70: 2b 81 00 0c lw r1,(sp+12) 800ff74: 59 61 00 40 sw (r11+64),r1 800ff78: 34 01 00 00 mvi r1,0
return 0; }
800ff7c: 2b 9d 00 04 lw ra,(sp+4) 800ff80: 2b 8b 00 08 lw r11,(sp+8) 800ff84: 37 9c 00 10 addi sp,sp,16 800ff88: c3 a0 00 00 ret
0800ff8c <memfile_lseek>: rtems_off64_t memfile_lseek( rtems_libio_t *iop, rtems_off64_t offset, int whence ) {
800ff8c: 37 9c ff f4 addi sp,sp,-12 800ff90: 5b 8b 00 0c sw (sp+12),r11 800ff94: 5b 8c 00 08 sw (sp+8),r12 800ff98: 5b 9d 00 04 sw (sp+4),ra
IMFS_jnode_t *the_jnode; the_jnode = iop->file_info;
800ff9c: 28 2c 00 3c lw r12,(r1+60)
rtems_off64_t memfile_lseek( rtems_libio_t *iop, rtems_off64_t offset, int whence ) {
800ffa0: b8 20 58 00 mv r11,r1
IMFS_jnode_t *the_jnode; the_jnode = iop->file_info; if (the_jnode->type == IMFS_LINEAR_FILE) {
800ffa4: 34 01 00 06 mvi r1,6 800ffa8: 29 82 00 4c lw r2,(r12+76)
800ffac: 5c 41 00 0c bne r2,r1,800ffdc <memfile_lseek+0x50> <== ALWAYS TAKEN
if (iop->offset > the_jnode->info.linearfile.size)
800ffb0: 29 81 00 50 lw r1,(r12+80) <== NOT EXECUTED 800ffb4: 29 63 00 10 lw r3,(r11+16) <== NOT EXECUTED 800ffb8: 29 82 00 54 lw r2,(r12+84) <== NOT EXECUTED 800ffbc: 48 61 00 05 bg r3,r1,800ffd0 <memfile_lseek+0x44> <== NOT EXECUTED 800ffc0: 5c 61 00 15 bne r3,r1,8010014 <memfile_lseek+0x88> <== NOT EXECUTED 800ffc4: 29 63 00 14 lw r3,(r11+20) <== NOT EXECUTED 800ffc8: 54 62 00 02 bgu r3,r2,800ffd0 <memfile_lseek+0x44> <== NOT EXECUTED 800ffcc: e0 00 00 12 bi 8010014 <memfile_lseek+0x88> <== NOT EXECUTED
iop->offset = the_jnode->info.linearfile.size;
800ffd0: 59 61 00 10 sw (r11+16),r1 <== NOT EXECUTED 800ffd4: 59 62 00 14 sw (r11+20),r2 <== NOT EXECUTED 800ffd8: e0 00 00 0f bi 8010014 <memfile_lseek+0x88> <== NOT EXECUTED
} else { /* Must be a block file (IMFS_MEMORY_FILE). */ if (IMFS_memfile_extend( the_jnode, iop->offset ))
800ffdc: 29 62 00 14 lw r2,(r11+20) 800ffe0: b9 80 08 00 mv r1,r12 800ffe4: fb ff ff 64 calli 800fd74 <IMFS_memfile_extend>
800ffe8: 44 20 00 07 be r1,r0,8010004 <memfile_lseek+0x78> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( ENOSPC );
800ffec: f8 00 05 42 calli 80114f4 <__errno> <== NOT EXECUTED 800fff0: 34 02 00 1c mvi r2,28 <== NOT EXECUTED 800fff4: 34 03 ff ff mvi r3,-1 <== NOT EXECUTED 800fff8: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 800fffc: b8 60 10 00 mv r2,r3 <== NOT EXECUTED 8010000: e0 00 00 07 bi 801001c <memfile_lseek+0x90> <== NOT EXECUTED
iop->size = the_jnode->info.file.size;
8010004: 29 81 00 50 lw r1,(r12+80) 8010008: 59 61 00 08 sw (r11+8),r1 801000c: 29 8c 00 54 lw r12,(r12+84) 8010010: 59 6c 00 0c sw (r11+12),r12
} return iop->offset;
8010014: 29 62 00 14 lw r2,(r11+20) 8010018: 29 63 00 10 lw r3,(r11+16)
}
801001c: b8 60 08 00 mv r1,r3 8010020: 2b 9d 00 04 lw ra,(sp+4) 8010024: 2b 8b 00 0c lw r11,(sp+12) 8010028: 2b 8c 00 08 lw r12,(sp+8) 801002c: 37 9c 00 0c addi sp,sp,12 8010030: c3 a0 00 00 ret
0801034c <memfile_open>: rtems_libio_t *iop, const char *pathname, uint32_t flag, uint32_t mode ) {
801034c: 37 9c ff f4 addi sp,sp,-12 8010350: 5b 8b 00 0c sw (sp+12),r11 8010354: 5b 8c 00 08 sw (sp+8),r12 8010358: 5b 9d 00 04 sw (sp+4),ra 801035c: b8 20 60 00 mv r12,r1
the_jnode = iop->file_info; /* * Perform 'copy on write' for linear files */ if ((iop->flags & (LIBIO_FLAGS_WRITE | LIBIO_FLAGS_APPEND))
8010360: 28 21 00 18 lw r1,(r1+24) 8010364: 34 02 00 00 mvi r2,0
uint32_t mode ) { IMFS_jnode_t *the_jnode; the_jnode = iop->file_info;
8010368: 29 8b 00 3c lw r11,(r12+60)
/* * Perform 'copy on write' for linear files */ if ((iop->flags & (LIBIO_FLAGS_WRITE | LIBIO_FLAGS_APPEND))
801036c: 20 21 02 04 andi r1,r1,0x204
8010370: 44 22 00 13 be r1,r2,80103bc <memfile_open+0x70> && (the_jnode->type == IMFS_LINEAR_FILE)) {
8010374: 29 63 00 4c lw r3,(r11+76) 8010378: 34 01 00 06 mvi r1,6
801037c: 5c 61 00 10 bne r3,r1,80103bc <memfile_open+0x70> <== ALWAYS TAKEN
uint32_t count = the_jnode->info.linearfile.size;
8010380: 29 64 00 54 lw r4,(r11+84) <== NOT EXECUTED
const unsigned char *buffer = the_jnode->info.linearfile.direct; the_jnode->type = IMFS_MEMORY_FILE;
8010384: 34 01 00 05 mvi r1,5 <== NOT EXECUTED
* Perform 'copy on write' for linear files */ if ((iop->flags & (LIBIO_FLAGS_WRITE | LIBIO_FLAGS_APPEND)) && (the_jnode->type == IMFS_LINEAR_FILE)) { uint32_t count = the_jnode->info.linearfile.size; const unsigned char *buffer = the_jnode->info.linearfile.direct;
8010388: 29 63 00 58 lw r3,(r11+88) <== NOT EXECUTED
the_jnode->type = IMFS_MEMORY_FILE;
801038c: 59 61 00 4c sw (r11+76),r1 <== NOT EXECUTED
the_jnode->info.file.size = 0;
8010390: 59 62 00 50 sw (r11+80),r2 <== NOT EXECUTED 8010394: 59 62 00 54 sw (r11+84),r2 <== NOT EXECUTED
the_jnode->info.file.indirect = 0; the_jnode->info.file.doubly_indirect = 0;
8010398: 59 62 00 5c sw (r11+92),r2 <== NOT EXECUTED
the_jnode->info.file.triply_indirect = 0;
801039c: 59 62 00 60 sw (r11+96),r2 <== NOT EXECUTED
uint32_t count = the_jnode->info.linearfile.size; const unsigned char *buffer = the_jnode->info.linearfile.direct; the_jnode->type = IMFS_MEMORY_FILE; the_jnode->info.file.size = 0; the_jnode->info.file.indirect = 0;
80103a0: 59 62 00 58 sw (r11+88),r2 <== NOT EXECUTED
the_jnode->info.file.doubly_indirect = 0; the_jnode->info.file.triply_indirect = 0; if ((count != 0)
80103a4: 44 82 00 06 be r4,r2,80103bc <memfile_open+0x70> <== NOT EXECUTED
&& (IMFS_memfile_write(the_jnode, 0, buffer, count) == -1))
80103a8: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 80103ac: fb ff ff 22 calli 8010034 <IMFS_memfile_write> <== NOT EXECUTED 80103b0: b8 20 10 00 mv r2,r1 <== NOT EXECUTED
the_jnode->type = IMFS_MEMORY_FILE; the_jnode->info.file.size = 0; the_jnode->info.file.indirect = 0; the_jnode->info.file.doubly_indirect = 0; the_jnode->info.file.triply_indirect = 0; if ((count != 0)
80103b4: 34 03 ff ff mvi r3,-1 <== NOT EXECUTED 80103b8: 44 43 00 0d be r2,r3,80103ec <memfile_open+0xa0> <== NOT EXECUTED
&& (IMFS_memfile_write(the_jnode, 0, buffer, count) == -1)) return -1; } if (iop->flags & LIBIO_FLAGS_APPEND)
80103bc: 29 81 00 18 lw r1,(r12+24) 80103c0: 20 21 02 00 andi r1,r1,0x200
80103c4: 44 20 00 05 be r1,r0,80103d8 <memfile_open+0x8c> iop->offset = the_jnode->info.file.size;
80103c8: 29 61 00 50 lw r1,(r11+80) 80103cc: 59 81 00 10 sw (r12+16),r1 80103d0: 29 61 00 54 lw r1,(r11+84) 80103d4: 59 81 00 14 sw (r12+20),r1
iop->size = the_jnode->info.file.size;
80103d8: 29 61 00 50 lw r1,(r11+80) 80103dc: 59 81 00 08 sw (r12+8),r1 80103e0: 29 6b 00 54 lw r11,(r11+84) 80103e4: 34 01 00 00 mvi r1,0 80103e8: 59 8b 00 0c sw (r12+12),r11
return 0; }
80103ec: 2b 9d 00 04 lw ra,(sp+4) 80103f0: 2b 8b 00 0c lw r11,(sp+12) 80103f4: 2b 8c 00 08 lw r12,(sp+8) 80103f8: 37 9c 00 0c addi sp,sp,12 80103fc: c3 a0 00 00 ret
0800fc30 <memfile_rmnod>: int memfile_rmnod( rtems_filesystem_location_info_t *parent_pathloc, /* IN */ rtems_filesystem_location_info_t *pathloc /* IN */ ) {
800fc30: 37 9c ff f0 addi sp,sp,-16 800fc34: 5b 8b 00 08 sw (sp+8),r11 800fc38: 5b 9d 00 04 sw (sp+4),ra
IMFS_jnode_t *the_jnode; the_jnode = (IMFS_jnode_t *) pathloc->node_access;
800fc3c: 28 4b 00 00 lw r11,(r2+0)
/* * Take the node out of the parent's chain that contains this node */ if ( the_jnode->Parent != NULL ) {
800fc40: 29 61 00 08 lw r1,(r11+8)
800fc44: 44 20 00 05 be r1,r0,800fc58 <memfile_rmnod+0x28> <== NEVER TAKEN
800fc48: b9 60 08 00 mv r1,r11 800fc4c: fb ff d4 30 calli 8004d0c <_Chain_Extract>
rtems_chain_extract( (rtems_chain_node *) the_jnode ); the_jnode->Parent = NULL;
800fc50: 34 01 00 00 mvi r1,0 800fc54: 59 61 00 08 sw (r11+8),r1
/* * Decrement the link counter and see if we can free the space. */ the_jnode->st_nlink--;
800fc58: 2d 63 00 34 lhu r3,(r11+52)
IMFS_update_ctime( the_jnode );
800fc5c: 34 02 00 00 mvi r2,0 800fc60: 37 81 00 0c addi r1,sp,12
/* * Decrement the link counter and see if we can free the space. */ the_jnode->st_nlink--;
800fc64: 34 63 ff ff addi r3,r3,-1 800fc68: 0d 63 00 34 sh (r11+52),r3
IMFS_update_ctime( the_jnode );
800fc6c: fb ff cb 75 calli 8002a40 <gettimeofday> 800fc70: 2b 81 00 0c lw r1,(sp+12) 800fc74: 59 61 00 48 sw (r11+72),r1
return memfile_check_rmnod( the_jnode );
800fc78: b9 60 08 00 mv r1,r11 800fc7c: fb ff ff d3 calli 800fbc8 <memfile_check_rmnod>
}
800fc80: 2b 9d 00 04 lw ra,(sp+4) 800fc84: 2b 8b 00 08 lw r11,(sp+8) 800fc88: 37 9c 00 10 addi sp,sp,16 800fc8c: c3 a0 00 00 ret
08001108 <mknod>: int mknod( const char *pathname, mode_t mode, dev_t dev ) {
8001108: 37 9c ff cc addi sp,sp,-52 800110c: 5b 8b 00 1c sw (sp+28),r11 8001110: 5b 8c 00 18 sw (sp+24),r12 8001114: 5b 8d 00 14 sw (sp+20),r13 8001118: 5b 8e 00 10 sw (sp+16),r14 800111c: 5b 8f 00 0c sw (sp+12),r15 8001120: 5b 90 00 08 sw (sp+8),r16 8001124: 5b 9d 00 04 sw (sp+4),ra 8001128: b8 40 68 00 mv r13,r2
rtems_filesystem_location_info_t temp_loc; int i; const char *name_start; int result; if ( !(mode & (S_IFREG|S_IFCHR|S_IFBLK|S_IFIFO) ) )
800112c: 20 42 f0 00 andi r2,r2,0xf000
int mknod( const char *pathname, mode_t mode, dev_t dev ) {
8001130: b8 20 70 00 mv r14,r1 8001134: b8 60 80 00 mv r16,r3 8001138: b8 80 78 00 mv r15,r4
rtems_filesystem_location_info_t temp_loc; int i; const char *name_start; int result; if ( !(mode & (S_IFREG|S_IFCHR|S_IFBLK|S_IFIFO) ) )
800113c: 5c 40 00 04 bne r2,r0,800114c <mknod+0x44> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( EINVAL );
8001140: f8 00 27 74 calli 800af10 <__errno> <== NOT EXECUTED 8001144: 34 02 00 16 mvi r2,22 <== NOT EXECUTED 8001148: e0 00 00 1c bi 80011b8 <mknod+0xb0> <== NOT EXECUTED
rtems_filesystem_get_start_loc( pathname, &i, &temp_loc );
800114c: 40 25 00 00 lbu r5,(r1+0) 8001150: 64 ab 00 5c cmpei r11,r5,92 8001154: 64 a1 00 2f cmpei r1,r5,47 8001158: b9 61 58 00 or r11,r11,r1
800115c: 5d 60 00 02 bne r11,r0,8001164 <mknod+0x5c>
8001160: 5c ab 00 0a bne r5,r11,8001188 <mknod+0x80> <== ALWAYS TAKEN
8001164: 78 05 08 01 mvhi r5,0x801 8001168: 38 a5 c1 10 ori r5,r5,0xc110 800116c: 28 a2 00 00 lw r2,(r5+0) 8001170: 37 81 00 20 addi r1,sp,32 8001174: 34 03 00 14 mvi r3,20 8001178: 34 42 00 18 addi r2,r2,24 800117c: f8 00 2a 0b calli 800b9a8 <memcpy> 8001180: 34 0b 00 01 mvi r11,1 8001184: e0 00 00 08 bi 80011a4 <mknod+0x9c> 8001188: 78 05 08 01 mvhi r5,0x801 800118c: 38 a5 c1 10 ori r5,r5,0xc110 8001190: 28 a2 00 00 lw r2,(r5+0) 8001194: 37 81 00 20 addi r1,sp,32 8001198: 34 03 00 14 mvi r3,20 800119c: 34 42 00 04 addi r2,r2,4 80011a0: f8 00 2a 02 calli 800b9a8 <memcpy>
if ( !temp_loc.ops->evalformake_h ) {
80011a4: 2b 81 00 2c lw r1,(sp+44) 80011a8: 28 25 00 04 lw r5,(r1+4)
80011ac: 5c a0 00 06 bne r5,r0,80011c4 <mknod+0xbc> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( ENOTSUP );
80011b0: f8 00 27 58 calli 800af10 <__errno> <== NOT EXECUTED 80011b4: 34 02 00 86 mvi r2,134 <== NOT EXECUTED 80011b8: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 80011bc: 34 0b ff ff mvi r11,-1 <== NOT EXECUTED 80011c0: e0 00 00 1d bi 8001234 <mknod+0x12c> <== NOT EXECUTED
} result = (*temp_loc.ops->evalformake_h)(
80011c4: 37 8c 00 20 addi r12,sp,32 80011c8: b5 cb 08 00 add r1,r14,r11 80011cc: b9 80 10 00 mv r2,r12 80011d0: 37 83 00 34 addi r3,sp,52 80011d4: d8 a0 00 00 call r5
&pathname[i], &temp_loc, &name_start ); if ( result != 0 )
80011d8: 34 0b ff ff mvi r11,-1
80011dc: 5c 20 00 16 bne r1,r0,8001234 <mknod+0x12c> return -1; if ( !temp_loc.ops->mknod_h ) {
80011e0: 2b 82 00 2c lw r2,(sp+44) 80011e4: 28 46 00 14 lw r6,(r2+20)
80011e8: 5c c1 00 06 bne r6,r1,8001200 <mknod+0xf8> <== ALWAYS TAKEN
rtems_filesystem_freenode( &temp_loc );
80011ec: 28 42 00 1c lw r2,(r2+28) <== NOT EXECUTED 80011f0: 44 46 ff f0 be r2,r6,80011b0 <mknod+0xa8> <== NOT EXECUTED 80011f4: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 80011f8: d8 40 00 00 call r2 <== NOT EXECUTED 80011fc: e3 ff ff ed bi 80011b0 <mknod+0xa8> <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( ENOTSUP ); } result = (*temp_loc.ops->mknod_h)( name_start, mode, dev, &temp_loc );
8001200: 2b 81 00 34 lw r1,(sp+52) 8001204: b9 a0 10 00 mv r2,r13 8001208: ba 00 18 00 mv r3,r16 800120c: b9 e0 20 00 mv r4,r15 8001210: b9 80 28 00 mv r5,r12 8001214: d8 c0 00 00 call r6 8001218: b8 20 58 00 mv r11,r1
rtems_filesystem_freenode( &temp_loc );
800121c: 2b 81 00 2c lw r1,(sp+44)
8001220: 44 20 00 05 be r1,r0,8001234 <mknod+0x12c> <== NEVER TAKEN
8001224: 28 22 00 1c lw r2,(r1+28)
8001228: 44 40 00 03 be r2,r0,8001234 <mknod+0x12c>
800122c: b9 80 08 00 mv r1,r12 8001230: d8 40 00 00 call r2
return result; }
8001234: b9 60 08 00 mv r1,r11 8001238: 2b 9d 00 04 lw ra,(sp+4) 800123c: 2b 8b 00 1c lw r11,(sp+28) 8001240: 2b 8c 00 18 lw r12,(sp+24) 8001244: 2b 8d 00 14 lw r13,(sp+20) 8001248: 2b 8e 00 10 lw r14,(sp+16) 800124c: 2b 8f 00 0c lw r15,(sp+12) 8001250: 2b 90 00 08 lw r16,(sp+8) 8001254: 37 9c 00 34 addi sp,sp,52 8001258: c3 a0 00 00 ret
0800127c <mount>: const rtems_filesystem_operations_table *fs_ops, rtems_filesystem_options_t options, const char *device, const char *mount_point ) {
800127c: 37 9c ff c8 addi sp,sp,-56 8001280: 5b 8b 00 24 sw (sp+36),r11 8001284: 5b 8c 00 20 sw (sp+32),r12 8001288: 5b 8d 00 1c sw (sp+28),r13 800128c: 5b 8e 00 18 sw (sp+24),r14 8001290: 5b 8f 00 14 sw (sp+20),r15 8001294: 5b 90 00 10 sw (sp+16),r16 8001298: 5b 91 00 0c sw (sp+12),r17 800129c: 5b 92 00 08 sw (sp+8),r18 80012a0: 5b 9d 00 04 sw (sp+4),ra 80012a4: b8 40 80 00 mv r16,r2 80012a8: b8 20 78 00 mv r15,r1 80012ac: b8 60 90 00 mv r18,r3 80012b0: b8 80 70 00 mv r14,r4 80012b4: b8 a0 68 00 mv r13,r5
/* * Is there a file system operations table? */ if ( fs_ops == NULL ) { 80012b8: 44 40 00 03 be r2,r0,80012c4 <mount+0x48> /* * Are the file system options valid? */ if ( options != RTEMS_FILESYSTEM_READ_ONLY &&
80012bc: 34 01 00 01 mvi r1,1
80012c0: 50 23 00 04 bgeu r1,r3,80012d0 <mount+0x54> options != RTEMS_FILESYSTEM_READ_WRITE ) { errno = EINVAL;
80012c4: f8 00 27 13 calli 800af10 <__errno> 80012c8: 34 02 00 16 mvi r2,22 80012cc: e0 00 00 13 bi 8001318 <mount+0x9c>
return -1; } /* Do they support being mounted at all ? */ if ( !fs_ops->fsmount_me_h ) {
80012d0: 28 4c 00 24 lw r12,(r2+36)
80012d4: 5d 80 00 06 bne r12,r0,80012ec <mount+0x70> <== ALWAYS TAKEN
errno = ENOTSUP;
80012d8: f8 00 27 0e calli 800af10 <__errno> <== NOT EXECUTED 80012dc: 34 02 00 86 mvi r2,134 <== NOT EXECUTED 80012e0: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 80012e4: b9 80 88 00 mv r17,r12 <== NOT EXECUTED
goto cleanup_and_bail;
80012e8: e0 00 00 67 bi 8001484 <mount+0x208> <== NOT EXECUTED
/* * Allocate a mount table entry */ size = sizeof(rtems_filesystem_mount_table_entry_t); if ( device )
80012ec: 34 01 00 6c mvi r1,108
80012f0: 44 80 00 04 be r4,r0,8001300 <mount+0x84> <== ALWAYS TAKEN
size += strlen( device ) + 1;
80012f4: b8 80 08 00 mv r1,r4 <== NOT EXECUTED 80012f8: f8 00 2b d6 calli 800c250 <strlen> <== NOT EXECUTED 80012fc: 34 21 00 6d addi r1,r1,109 <== NOT EXECUTED
temp_mt_entry = malloc( size );
8001300: f8 00 18 e3 calli 800768c <malloc> 8001304: b8 20 58 00 mv r11,r1 8001308: b8 20 88 00 mv r17,r1
if ( !temp_mt_entry ) {
800130c: 5c 20 00 05 bne r1,r0,8001320 <mount+0xa4> <== ALWAYS TAKEN
errno = ENOMEM;
8001310: f8 00 27 00 calli 800af10 <__errno> <== NOT EXECUTED 8001314: 34 02 00 0c mvi r2,12 <== NOT EXECUTED
8001318: 58 22 00 00 sw (r1+0),r2 800131c: e0 00 00 63 bi 80014a8 <mount+0x22c>
return -1; } temp_mt_entry->mt_fs_root.mt_entry = temp_mt_entry; temp_mt_entry->options = options;
8001320: 58 32 00 30 sw (r1+48),r18
if ( !temp_mt_entry ) { errno = ENOMEM; return -1; } temp_mt_entry->mt_fs_root.mt_entry = temp_mt_entry;
8001324: 59 61 00 2c sw (r11+44),r1
temp_mt_entry->options = options; if ( device ) {
8001328: 45 c0 00 07 be r14,r0,8001344 <mount+0xc8> <== ALWAYS TAKEN
temp_mt_entry->dev = (char *)temp_mt_entry + sizeof( rtems_filesystem_mount_table_entry_t );
800132c: 34 23 00 6c addi r3,r1,108 <== NOT EXECUTED
strcpy( temp_mt_entry->dev, device );
8001330: b8 60 08 00 mv r1,r3 <== NOT EXECUTED 8001334: b9 c0 10 00 mv r2,r14 <== NOT EXECUTED
} temp_mt_entry->mt_fs_root.mt_entry = temp_mt_entry; temp_mt_entry->options = options; if ( device ) { temp_mt_entry->dev =
8001338: 59 63 00 68 sw (r11+104),r3 <== NOT EXECUTED
(char *)temp_mt_entry + sizeof( rtems_filesystem_mount_table_entry_t ); strcpy( temp_mt_entry->dev, device );
800133c: f8 00 2b a3 calli 800c1c8 <strcpy> <== NOT EXECUTED 8001340: e0 00 00 02 bi 8001348 <mount+0xcc> <== NOT EXECUTED
} else temp_mt_entry->dev = 0;
8001344: 58 2e 00 68 sw (r1+104),r14
/* * The mount_point should be a directory with read/write/execute * permissions in the existing tree. */ if ( mount_point ) { 8001348: 45 a0 00 32 be r13,r0,8001410 <mount+0x194> if ( rtems_filesystem_evaluate_path( mount_point, strlen( mount_point ), RTEMS_LIBIO_PERMS_RWX, &loc, true ) == -1 )
800134c: b9 a0 08 00 mv r1,r13 8001350: f8 00 2b c0 calli 800c250 <strlen>
* permissions in the existing tree. */ if ( mount_point ) { if ( rtems_filesystem_evaluate_path(
8001354: 37 8c 00 28 addi r12,sp,40 8001358: b8 20 10 00 mv r2,r1 800135c: 34 03 00 07 mvi r3,7 8001360: b9 a0 08 00 mv r1,r13 8001364: b9 80 20 00 mv r4,r12 8001368: 34 05 00 01 mvi r5,1 800136c: fb ff fe af calli 8000e28 <rtems_filesystem_evaluate_path> 8001370: 34 02 ff ff mvi r2,-1
8001374: 44 22 00 43 be r1,r2,8001480 <mount+0x204> <== NEVER TAKEN
/* * Test for node_type_h */ if (!loc.ops->node_type_h) {
8001378: 2b 81 00 34 lw r1,(sp+52) 800137c: 28 22 00 10 lw r2,(r1+16)
8001380: 5c 40 00 04 bne r2,r0,8001390 <mount+0x114> <== ALWAYS TAKEN
errno = ENOTSUP;
8001384: f8 00 26 e3 calli 800af10 <__errno> <== NOT EXECUTED 8001388: 34 02 00 86 mvi r2,134 <== NOT EXECUTED 800138c: e0 00 00 07 bi 80013a8 <mount+0x12c> <== NOT EXECUTED
/* * Test to see if it is a directory */ if ( loc.ops->node_type_h( &loc ) != RTEMS_FILESYSTEM_DIRECTORY ) {
8001390: b9 80 08 00 mv r1,r12 8001394: d8 40 00 00 call r2 8001398: 34 02 00 01 mvi r2,1
800139c: 44 22 00 05 be r1,r2,80013b0 <mount+0x134> errno = ENOTDIR;
80013a0: f8 00 26 dc calli 800af10 <__errno> 80013a4: 34 02 00 14 mvi r2,20 80013a8: 58 22 00 00 sw (r1+0),r2
goto cleanup_and_bail;
80013ac: e0 00 00 36 bi 8001484 <mount+0x208>
/* * For each mount table entry */ for ( the_node = rtems_filesystem_mount_table_control.first;
80013b0: 78 03 08 01 mvhi r3,0x801 80013b4: 38 63 c6 d8 ori r3,r3,0xc6d8
*/ RTEMS_INLINE_ROUTINE Chain_Node *_Chain_Tail( Chain_Control *the_chain ) { return (Chain_Node *) &the_chain->permanent_null;
80013b8: 34 62 00 04 addi r2,r3,4
!rtems_chain_is_tail( &rtems_filesystem_mount_table_control, the_node ); the_node = the_node->next ) { the_mount_entry = (rtems_filesystem_mount_table_entry_t *) the_node; if ( the_mount_entry->mt_fs_root.node_access == loc->node_access )
80013bc: 2b 81 00 28 lw r1,(sp+40)
/* * For each mount table entry */ for ( the_node = rtems_filesystem_mount_table_control.first;
80013c0: 28 63 00 00 lw r3,(r3+0) 80013c4: e0 00 00 04 bi 80013d4 <mount+0x158>
!rtems_chain_is_tail( &rtems_filesystem_mount_table_control, the_node ); the_node = the_node->next ) { the_mount_entry = (rtems_filesystem_mount_table_entry_t *) the_node; if ( the_mount_entry->mt_fs_root.node_access == loc->node_access )
80013c8: 28 64 00 1c lw r4,(r3+28)
80013cc: 44 81 00 04 be r4,r1,80013dc <mount+0x160> * For each mount table entry */ for ( the_node = rtems_filesystem_mount_table_control.first; !rtems_chain_is_tail( &rtems_filesystem_mount_table_control, the_node ); the_node = the_node->next ) {
80013d0: 28 63 00 00 lw r3,(r3+0)
80013d4: 5c 62 ff fd bne r3,r2,80013c8 <mount+0x14c>
80013d8: e0 00 00 41 bi 80014dc <mount+0x260>
/* * You can only mount one file system onto a single mount point. */ if ( Is_node_fs_root( &loc ) ){ errno = EBUSY;
80013dc: f8 00 26 cd calli 800af10 <__errno> 80013e0: 34 02 00 10 mvi r2,16 80013e4: e0 00 00 03 bi 80013f0 <mount+0x174>
* This link to the parent is only done when we are dealing with system * below the base file system */ if ( !loc.ops->mount_h ){ errno = ENOTSUP;
80013e8: f8 00 26 ca calli 800af10 <__errno> <== NOT EXECUTED 80013ec: 34 02 00 86 mvi r2,134 <== NOT EXECUTED
80013f0: 58 22 00 00 sw (r1+0),r2 80013f4: 37 8c 00 28 addi r12,sp,40
goto cleanup_and_bail;
80013f8: e0 00 00 23 bi 8001484 <mount+0x208>
} if ( loc.ops->mount_h( temp_mt_entry ) ) {
80013fc: b9 60 08 00 mv r1,r11 8001400: d8 40 00 00 call r2 8001404: 37 8c 00 28 addi r12,sp,40
8001408: 44 20 00 0a be r1,r0,8001430 <mount+0x1b4> <== ALWAYS TAKEN
800140c: e0 00 00 1e bi 8001484 <mount+0x208> <== NOT EXECUTED
* This is a mount of the base file system --> The * mt_point_node.node_access will be set to null to indicate that this * is the root of the entire file system. */ temp_mt_entry->mt_fs_root.node_access = NULL;
8001410: 59 6d 00 1c sw (r11+28),r13
temp_mt_entry->mt_fs_root.handlers = NULL;
8001414: 59 6d 00 24 sw (r11+36),r13
temp_mt_entry->mt_fs_root.ops = NULL;
8001418: 59 6d 00 28 sw (r11+40),r13
temp_mt_entry->mt_point_node.node_access = NULL;
800141c: 59 6d 00 08 sw (r11+8),r13
temp_mt_entry->mt_point_node.handlers = NULL;
8001420: 59 6d 00 10 sw (r11+16),r13
temp_mt_entry->mt_point_node.ops = NULL;
8001424: 59 6d 00 14 sw (r11+20),r13
temp_mt_entry->mt_point_node.mt_entry = NULL;
8001428: 59 6d 00 18 sw (r11+24),r13 800142c: b9 a0 60 00 mv r12,r13
} if ( fs_ops->fsmount_me_h( temp_mt_entry ) ) {
8001430: 2a 02 00 24 lw r2,(r16+36) 8001434: b9 60 08 00 mv r1,r11 8001438: d8 40 00 00 call r2 800143c: b8 20 68 00 mv r13,r1
8001440: 44 20 00 07 be r1,r0,800145c <mount+0x1e0> <== ALWAYS TAKEN
/* try to undo the mount operation */ if ( loc.ops->unmount_h ) {
8001444: 2b 81 00 34 lw r1,(sp+52) <== NOT EXECUTED 8001448: 28 22 00 28 lw r2,(r1+40) <== NOT EXECUTED 800144c: 44 40 00 0e be r2,r0,8001484 <mount+0x208> <== NOT EXECUTED
loc.ops->unmount_h( temp_mt_entry );
8001450: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8001454: d8 40 00 00 call r2 <== NOT EXECUTED 8001458: e0 00 00 0b bi 8001484 <mount+0x208> <== NOT EXECUTED
RTEMS_INLINE_ROUTINE void rtems_chain_append( rtems_chain_control *the_chain, rtems_chain_node *the_node ) { _Chain_Append( the_chain, the_node );
800145c: 78 01 08 01 mvhi r1,0x801 8001460: b9 60 10 00 mv r2,r11 8001464: 38 21 c6 d8 ori r1,r1,0xc6d8 8001468: f8 00 05 7f calli 8002a64 <_Chain_Append>
*/ rtems_chain_append( &rtems_filesystem_mount_table_control, &temp_mt_entry->Node ); if ( mt_entry )
800146c: b9 e0 10 00 mv r2,r15
8001470: 45 ed 00 0f be r15,r13,80014ac <mount+0x230> <== NEVER TAKEN
*mt_entry = temp_mt_entry;
8001474: 59 eb 00 00 sw (r15+0),r11 8001478: b9 a0 10 00 mv r2,r13 800147c: e0 00 00 0c bi 80014ac <mount+0x230>
8001480: 34 0c 00 00 mvi r12,0 <== NOT EXECUTED
return 0; cleanup_and_bail: free( temp_mt_entry );
8001484: ba 20 08 00 mv r1,r17 8001488: f8 00 16 ef calli 8007044 <free>
if ( loc_to_free )
800148c: 45 80 00 07 be r12,r0,80014a8 <mount+0x22c> <== NEVER TAKEN
rtems_filesystem_freenode( loc_to_free );
8001490: 29 81 00 0c lw r1,(r12+12)
8001494: 44 20 00 05 be r1,r0,80014a8 <mount+0x22c> <== NEVER TAKEN
8001498: 28 22 00 1c lw r2,(r1+28)
800149c: 44 40 00 03 be r2,r0,80014a8 <mount+0x22c> <== NEVER TAKEN
80014a0: b9 80 08 00 mv r1,r12 80014a4: d8 40 00 00 call r2 80014a8: 34 02 ff ff mvi r2,-1
return -1; }
80014ac: b8 40 08 00 mv r1,r2 80014b0: 2b 9d 00 04 lw ra,(sp+4) 80014b4: 2b 8b 00 24 lw r11,(sp+36) 80014b8: 2b 8c 00 20 lw r12,(sp+32) 80014bc: 2b 8d 00 1c lw r13,(sp+28) 80014c0: 2b 8e 00 18 lw r14,(sp+24) 80014c4: 2b 8f 00 14 lw r15,(sp+20) 80014c8: 2b 90 00 10 lw r16,(sp+16) 80014cc: 2b 91 00 0c lw r17,(sp+12) 80014d0: 2b 92 00 08 lw r18,(sp+8) 80014d4: 37 9c 00 38 addi sp,sp,56 80014d8: c3 a0 00 00 ret
* until the system is unmounted. It may be needed to correctly * traverse the tree. */ temp_mt_entry->mt_point_node.node_access = loc.node_access; temp_mt_entry->mt_point_node.handlers = loc.handlers;
80014dc: 2b 82 00 30 lw r2,(sp+48)
temp_mt_entry->mt_point_node.ops = loc.ops;
80014e0: 2b 83 00 34 lw r3,(sp+52)
* may have been allocated in loc should not be sent to freenode * until the system is unmounted. It may be needed to correctly * traverse the tree. */ temp_mt_entry->mt_point_node.node_access = loc.node_access;
80014e4: 59 61 00 08 sw (r11+8),r1
temp_mt_entry->mt_point_node.handlers = loc.handlers;
80014e8: 59 62 00 10 sw (r11+16),r2
temp_mt_entry->mt_point_node.ops = loc.ops; temp_mt_entry->mt_point_node.mt_entry = loc.mt_entry;
80014ec: 2b 82 00 38 lw r2,(sp+56)
* traverse the tree. */ temp_mt_entry->mt_point_node.node_access = loc.node_access; temp_mt_entry->mt_point_node.handlers = loc.handlers; temp_mt_entry->mt_point_node.ops = loc.ops;
80014f0: 59 63 00 14 sw (r11+20),r3
temp_mt_entry->mt_point_node.mt_entry = loc.mt_entry;
80014f4: 59 62 00 18 sw (r11+24),r2
/* * This link to the parent is only done when we are dealing with system * below the base file system */ if ( !loc.ops->mount_h ){
80014f8: 28 62 00 20 lw r2,(r3+32)
80014fc: 5c 40 ff c0 bne r2,r0,80013fc <mount+0x180> <== ALWAYS TAKEN
8001500: e3 ff ff ba bi 80013e8 <mount+0x16c> <== NOT EXECUTED
08001508 <newlib_delete_hook>: void newlib_delete_hook( rtems_tcb *current_task, rtems_tcb *deleted_task ) {
8001508: 37 9c ff f0 addi sp,sp,-16 800150c: 5b 8b 00 10 sw (sp+16),r11 8001510: 5b 8c 00 0c sw (sp+12),r12 8001514: 5b 8d 00 08 sw (sp+8),r13 8001518: 5b 9d 00 04 sw (sp+4),ra 800151c: b8 20 68 00 mv r13,r1 8001520: b8 40 60 00 mv r12,r2
/* * The reentrancy structure was allocated by newlib using malloc() */ if (current_task == deleted_task) { 8001524: 5c 22 00 05 bne r1,r2,8001538 <newlib_delete_hook+0x30> ptr = _REENT;
8001528: 78 02 08 01 mvhi r2,0x801 800152c: 38 42 c1 70 ori r2,r2,0xc170 8001530: 28 4b 00 00 lw r11,(r2+0) 8001534: e0 00 00 02 bi 800153c <newlib_delete_hook+0x34>
} else { ptr = deleted_task->libc_reent;
8001538: 28 4b 01 20 lw r11,(r2+288)
} if (ptr && ptr != _global_impure_ptr) {
800153c: 45 60 00 0b be r11,r0,8001568 <newlib_delete_hook+0x60> <== NEVER TAKEN
8001540: 78 02 08 01 mvhi r2,0x801 8001544: 38 42 a9 88 ori r2,r2,0xa988 8001548: 28 41 00 00 lw r1,(r2+0)
800154c: 45 61 00 07 be r11,r1,8001568 <newlib_delete_hook+0x60> _reclaim_reent(ptr); */ /* * Just in case there are some buffers lying around. */ _fwalk(ptr, newlib_free_buffers);
8001550: 78 02 08 00 mvhi r2,0x800 8001554: 38 42 15 98 ori r2,r2,0x1598 8001558: b9 60 08 00 mv r1,r11 800155c: f8 00 28 e1 calli 800b8e0 <_fwalk>
#if REENT_MALLOCED free(ptr); #else _Workspace_Free(ptr);
8001560: b9 60 08 00 mv r1,r11 8001564: f8 00 10 f3 calli 8005930 <_Workspace_Free>
#endif } deleted_task->libc_reent = NULL;
8001568: 34 02 00 00 mvi r2,0 800156c: 59 82 01 20 sw (r12+288),r2
/* * Require the switch back to another task to install its own */ if ( current_task == deleted_task ) { 8001570: 5d ac 00 04 bne r13,r12,8001580 <newlib_delete_hook+0x78> _REENT = 0;
8001574: 78 01 08 01 mvhi r1,0x801 8001578: 38 21 c1 70 ori r1,r1,0xc170 800157c: 58 22 00 00 sw (r1+0),r2
} }
8001580: 2b 9d 00 04 lw ra,(sp+4) 8001584: 2b 8b 00 10 lw r11,(sp+16) 8001588: 2b 8c 00 0c lw r12,(sp+12) 800158c: 2b 8d 00 08 lw r13,(sp+8) 8001590: 37 9c 00 10 addi sp,sp,16 8001594: c3 a0 00 00 ret
08001598 <newlib_free_buffers>: */ int newlib_free_buffers( FILE *fp ) {
8001598: 37 9c ff f4 addi sp,sp,-12 800159c: 5b 8b 00 0c sw (sp+12),r11 80015a0: 5b 8c 00 08 sw (sp+8),r12 80015a4: 5b 9d 00 04 sw (sp+4),ra 80015a8: b8 20 58 00 mv r11,r1
switch ( fileno(fp) ) {
80015ac: f8 00 27 7d calli 800b3a0 <fileno> 80015b0: 34 02 00 02 mvi r2,2
80015b4: 54 22 00 0d bgu r1,r2,80015e8 <newlib_free_buffers+0x50> <== NEVER TAKEN
case 0: case 1: case 2: if (fp->_flags & __SMBF) {
80015b8: 2d 61 00 0c lhu r1,(r11+12) 80015bc: 34 0c 00 00 mvi r12,0 80015c0: 20 21 00 80 andi r1,r1,0x80
80015c4: 44 2c 00 0b be r1,r12,80015f0 <newlib_free_buffers+0x58> <== ALWAYS TAKEN
free( fp->_bf._base );
80015c8: 29 61 00 10 lw r1,(r11+16) <== NOT EXECUTED 80015cc: f8 00 16 9e calli 8007044 <free> <== NOT EXECUTED
fp->_flags &= ~__SMBF;
80015d0: 2d 61 00 0c lhu r1,(r11+12) <== NOT EXECUTED
fp->_bf._base = fp->_p = (unsigned char *) NULL;
80015d4: 59 6c 00 10 sw (r11+16),r12 <== NOT EXECUTED 80015d8: 59 6c 00 00 sw (r11+0),r12 <== NOT EXECUTED
case 0: case 1: case 2: if (fp->_flags & __SMBF) { free( fp->_bf._base ); fp->_flags &= ~__SMBF;
80015dc: 20 21 ff 7f andi r1,r1,0xff7f <== NOT EXECUTED 80015e0: 0d 61 00 0c sh (r11+12),r1 <== NOT EXECUTED 80015e4: e0 00 00 03 bi 80015f0 <newlib_free_buffers+0x58> <== NOT EXECUTED
fp->_bf._base = fp->_p = (unsigned char *) NULL; } break; default: fclose(fp);
80015e8: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 80015ec: f8 00 26 ab calli 800b098 <fclose> <== NOT EXECUTED
} return 0; }
80015f0: 34 01 00 00 mvi r1,0 80015f4: 2b 9d 00 04 lw ra,(sp+4) 80015f8: 2b 8b 00 0c lw r11,(sp+12) 80015fc: 2b 8c 00 08 lw r12,(sp+8) 8001600: 37 9c 00 0c addi sp,sp,12 8001604: c3 a0 00 00 ret
080018e4 <null_initialize>: rtems_device_driver null_initialize( rtems_device_major_number major, rtems_device_minor_number minor __attribute__((unused)), void *pargp __attribute__((unused)) ) {
80018e4: 37 9c ff f4 addi sp,sp,-12 80018e8: 5b 8b 00 0c sw (sp+12),r11 80018ec: 5b 8c 00 08 sw (sp+8),r12 80018f0: 5b 9d 00 04 sw (sp+4),ra
rtems_device_driver status; if ( !initialized ) {
80018f4: 78 04 08 02 mvhi r4,0x802 80018f8: 38 84 16 a4 ori r4,r4,0x16a4 80018fc: 40 8b 00 00 lbu r11,(r4+0)
rtems_device_driver null_initialize( rtems_device_major_number major, rtems_device_minor_number minor __attribute__((unused)), void *pargp __attribute__((unused)) ) {
8001900: b8 20 60 00 mv r12,r1
rtems_device_driver status; if ( !initialized ) { 8001904: 5d 60 00 0d bne r11,r0,8001938 <null_initialize+0x54> initialized = 1; status = rtems_io_register_name(
8001908: 78 01 08 01 mvhi r1,0x801
) { rtems_device_driver status; if ( !initialized ) { initialized = 1;
800190c: 34 05 00 01 mvi r5,1
status = rtems_io_register_name(
8001910: 38 21 e2 fc ori r1,r1,0xe2fc 8001914: b9 80 10 00 mv r2,r12 8001918: b9 60 18 00 mv r3,r11
) { rtems_device_driver status; if ( !initialized ) { initialized = 1;
800191c: 30 85 00 00 sb (r4+0),r5
status = rtems_io_register_name(
8001920: f8 00 00 54 calli 8001a70 <rtems_io_register_name>
"/dev/null", major, (rtems_device_minor_number) 0 ); if (status != RTEMS_SUCCESSFUL)
8001924: 44 2b 00 02 be r1,r11,800192c <null_initialize+0x48> <== ALWAYS TAKEN
rtems_fatal_error_occurred(status);
8001928: f8 00 07 f1 calli 80038ec <rtems_fatal_error_occurred> <== NOT EXECUTED
NULL_major = major;
800192c: 78 03 08 02 mvhi r3,0x802 8001930: 38 63 17 48 ori r3,r3,0x1748 8001934: 58 6c 00 00 sw (r3+0),r12
} return RTEMS_SUCCESSFUL; }
8001938: 34 01 00 00 mvi r1,0 800193c: 2b 9d 00 04 lw ra,(sp+4) 8001940: 2b 8b 00 0c lw r11,(sp+12) 8001944: 2b 8c 00 08 lw r12,(sp+8) 8001948: 37 9c 00 0c addi sp,sp,12 800194c: c3 a0 00 00 ret
080018c8 <null_write>: void *pargp ) { rtems_libio_rw_args_t *rw_args = (rtems_libio_rw_args_t *) pargp; if ( rw_args )
80018c8: 44 60 00 03 be r3,r0,80018d4 <null_write+0xc> <== ALWAYS TAKEN
rw_args->bytes_moved = rw_args->count;
80018cc: 28 61 00 14 lw r1,(r3+20) <== NOT EXECUTED 80018d0: 58 61 00 1c sw (r3+28),r1 <== NOT EXECUTED
return NULL_SUCCESSFUL; }
80018d4: 34 01 00 00 mvi r1,0 80018d8: c3 a0 00 00 ret
08001858 <open>: int open( const char *pathname, int flags, ... ) {
8001858: 37 9c ff ac addi sp,sp,-84 800185c: 5b 8b 00 24 sw (sp+36),r11 8001860: 5b 8c 00 20 sw (sp+32),r12 8001864: 5b 8d 00 1c sw (sp+28),r13 8001868: 5b 8e 00 18 sw (sp+24),r14 800186c: 5b 8f 00 14 sw (sp+20),r15 8001870: 5b 90 00 10 sw (sp+16),r16 8001874: 5b 91 00 0c sw (sp+12),r17 8001878: 5b 92 00 08 sw (sp+8),r18 800187c: 5b 9d 00 04 sw (sp+4),ra
/* * Set the Evaluation flags */ eval_flags = 0; status = flags + 1;
8001880: 34 49 00 01 addi r9,r2,1
int open( const char *pathname, int flags, ... ) {
8001884: b8 40 70 00 mv r14,r2 8001888: 5b 82 00 3c sw (sp+60),r2 800188c: 5b 83 00 40 sw (sp+64),r3 8001890: 5b 84 00 44 sw (sp+68),r4 8001894: 5b 85 00 48 sw (sp+72),r5 8001898: 5b 86 00 4c sw (sp+76),r6 800189c: 5b 87 00 50 sw (sp+80),r7 80018a0: 5b 88 00 54 sw (sp+84),r8
* Set the Evaluation flags */ eval_flags = 0; status = flags + 1; if ( ( status & _FREAD ) == _FREAD )
80018a4: 21 22 00 01 andi r2,r9,0x1
int open( const char *pathname, int flags, ... ) {
80018a8: b8 20 78 00 mv r15,r1
* Set the Evaluation flags */ eval_flags = 0; status = flags + 1; if ( ( status & _FREAD ) == _FREAD )
80018ac: 34 0d 00 04 mvi r13,4
80018b0: 5c 40 00 02 bne r2,r0,80018b8 <open+0x60>
80018b4: b8 40 68 00 mv r13,r2
eval_flags |= RTEMS_LIBIO_PERMS_READ; if ( ( status & _FWRITE ) == _FWRITE )
80018b8: 21 29 00 02 andi r9,r9,0x2
80018bc: 45 20 00 02 be r9,r0,80018c4 <open+0x6c> eval_flags |= RTEMS_LIBIO_PERMS_WRITE;
80018c0: 39 ad 00 02 ori r13,r13,0x2
va_start(ap, flags); mode = va_arg( ap, int );
80018c4: 2b 92 00 40 lw r18,(sp+64)
* code does not require changes here since network file * descriptors are obtained using socket(), not open(). */ /* allocate a file control block */ iop = rtems_libio_allocate();
80018c8: f8 00 17 02 calli 80074d0 <rtems_libio_allocate> 80018cc: b8 20 58 00 mv r11,r1
if ( iop == 0 ) {
80018d0: 34 0c 00 17 mvi r12,23
80018d4: 44 20 00 76 be r1,r0,8001aac <open+0x254> /* * See if the file exists. */ status = rtems_filesystem_evaluate_path( pathname, strlen( pathname ), eval_flags, &loc, true );
80018d8: b9 e0 08 00 mv r1,r15 80018dc: f8 00 2a 5d calli 800c250 <strlen>
/* * See if the file exists. */ status = rtems_filesystem_evaluate_path(
80018e0: 37 91 00 28 addi r17,sp,40 80018e4: b8 20 10 00 mv r2,r1 80018e8: b9 a0 18 00 mv r3,r13 80018ec: b9 e0 08 00 mv r1,r15 80018f0: ba 20 20 00 mv r4,r17 80018f4: 34 05 00 01 mvi r5,1 80018f8: fb ff fd 4c calli 8000e28 <rtems_filesystem_evaluate_path>
pathname, strlen( pathname ), eval_flags, &loc, true ); if ( status == -1 ) {
80018fc: 34 02 ff ff mvi r2,-1
8001900: 5c 22 00 1f bne r1,r2,800197c <open+0x124> if ( errno != ENOENT ) {
8001904: f8 00 25 83 calli 800af10 <__errno> 8001908: 28 2c 00 00 lw r12,(r1+0) 800190c: 34 01 00 02 mvi r1,2
8001910: 5d 81 00 0b bne r12,r1,800193c <open+0xe4> rc = errno; goto done; } /* If the file does not exist and we are not trying to create it--> error */ if ( !(flags & O_CREAT) ) {
8001914: 21 c1 02 00 andi r1,r14,0x200 8001918: b8 20 68 00 mv r13,r1
800191c: 44 20 00 5a be r1,r0,8001a84 <open+0x22c> rc = ENOENT; goto done; } /* Create the node for the new regular file */ rc = mknod( pathname, S_IFREG | mode, 0LL );
8001920: 34 03 00 00 mvi r3,0 8001924: b9 e0 08 00 mv r1,r15 8001928: 3a 42 80 00 ori r2,r18,0x8000 800192c: b8 60 20 00 mv r4,r3 8001930: fb ff fd f6 calli 8001108 <mknod> 8001934: b8 20 80 00 mv r16,r1
if ( rc ) {
8001938: 44 20 00 05 be r1,r0,800194c <open+0xf4> <== ALWAYS TAKEN
rc = errno;
800193c: f8 00 25 75 calli 800af10 <__errno> 8001940: 28 2c 00 00 lw r12,(r1+0) 8001944: 34 0d 00 00 mvi r13,0
goto done;
8001948: e0 00 00 4e bi 8001a80 <open+0x228>
} /* Sanity check to see if the file name exists after the mknod() */ status = rtems_filesystem_evaluate_path( pathname, strlen( pathname ), 0x0, &loc, true );
800194c: b9 e0 08 00 mv r1,r15 8001950: f8 00 2a 40 calli 800c250 <strlen> 8001954: b8 20 10 00 mv r2,r1 8001958: ba 00 18 00 mv r3,r16 800195c: b9 e0 08 00 mv r1,r15 8001960: ba 20 20 00 mv r4,r17 8001964: 34 05 00 01 mvi r5,1 8001968: fb ff fd 30 calli 8000e28 <rtems_filesystem_evaluate_path>
if ( status != 0 ) { /* The file did not exist */
800196c: ba 00 68 00 mv r13,r16 8001970: 34 0c 00 0d mvi r12,13
8001974: 5c 30 00 44 bne r1,r16,8001a84 <open+0x22c> <== NEVER TAKEN
8001978: e0 00 00 06 bi 8001990 <open+0x138>
rc = EACCES; goto done; } } else if ((flags & (O_EXCL|O_CREAT)) == (O_EXCL|O_CREAT)) {
800197c: 21 c2 0a 00 andi r2,r14,0xa00 8001980: 34 01 0a 00 mvi r1,2560 8001984: ba 20 68 00 mv r13,r17 8001988: 34 0c 00 11 mvi r12,17
800198c: 44 41 00 3e be r2,r1,8001a84 <open+0x22c> /* * Fill in the file control block based on the loc structure * returned by successful path evaluation. */ iop->handlers = loc.handlers;
8001990: 2b 81 00 30 lw r1,(sp+48)
iop->file_info = loc.node_access; iop->flags |= rtems_libio_fcntl_flags( flags );
8001994: 29 6c 00 18 lw r12,(r11+24)
iop->pathinfo = loc;
8001998: 37 8d 00 28 addi r13,sp,40
/* * Fill in the file control block based on the loc structure * returned by successful path evaluation. */ iop->handlers = loc.handlers;
800199c: 59 61 00 40 sw (r11+64),r1
iop->file_info = loc.node_access;
80019a0: 2b 81 00 28 lw r1,(sp+40) 80019a4: 59 61 00 3c sw (r11+60),r1
iop->flags |= rtems_libio_fcntl_flags( flags );
80019a8: b9 c0 08 00 mv r1,r14 80019ac: f8 00 16 fa calli 8007594 <rtems_libio_fcntl_flags> 80019b0: b8 2c 08 00 or r1,r1,r12 80019b4: 59 61 00 18 sw (r11+24),r1
iop->pathinfo = loc;
80019b8: b9 a0 10 00 mv r2,r13 80019bc: 35 61 00 1c addi r1,r11,28 80019c0: 34 03 00 14 mvi r3,20 80019c4: f8 00 27 f9 calli 800b9a8 <memcpy>
if ( !iop->handlers || !iop->handlers->open_h ) {
80019c8: 29 61 00 40 lw r1,(r11+64)
80019cc: 44 20 00 50 be r1,r0,8001b0c <open+0x2b4> <== NEVER TAKEN
80019d0: 28 25 00 00 lw r5,(r1+0)
80019d4: 44 a0 00 4e be r5,r0,8001b0c <open+0x2b4> <== NEVER TAKEN
rc = ENOTSUP; goto done; } rc = (*iop->handlers->open_h)( iop, pathname, flags, mode );
80019d8: b9 e0 10 00 mv r2,r15 80019dc: ba 40 20 00 mv r4,r18 80019e0: b9 60 08 00 mv r1,r11 80019e4: b9 c0 18 00 mv r3,r14 80019e8: d8 a0 00 00 call r5 80019ec: b8 20 60 00 mv r12,r1
if ( rc ) { 80019f0: 44 20 00 04 be r1,r0,8001a00 <open+0x1a8> rc = errno;
80019f4: f8 00 25 47 calli 800af10 <__errno> 80019f8: 28 2c 00 00 lw r12,(r1+0)
goto done;
80019fc: e0 00 00 21 bi 8001a80 <open+0x228>
/* * Optionally truncate the file. */ if ( (flags & O_TRUNC) == O_TRUNC ) {
8001a00: 21 ce 04 00 andi r14,r14,0x400
8001a04: 45 c1 00 2e be r14,r1,8001abc <open+0x264> rc = ftruncate( iop - rtems_libio_iops, 0 );
8001a08: 78 01 08 01 mvhi r1,0x801 8001a0c: 38 21 c6 9c ori r1,r1,0xc69c 8001a10: 28 21 00 00 lw r1,(r1+0) 8001a14: 34 02 00 03 mvi r2,3 8001a18: c9 61 08 00 sub r1,r11,r1 8001a1c: fb ff fa 45 calli 8000330 <__ashrsi3> 8001a20: 78 02 38 e3 mvhi r2,0x38e3 8001a24: 38 42 8e 39 ori r2,r2,0x8e39 8001a28: f8 00 5d 1f calli 8018ea4 <__mulsi3> 8001a2c: b9 80 10 00 mv r2,r12 8001a30: f8 00 15 b3 calli 80070fc <ftruncate> 8001a34: b8 20 60 00 mv r12,r1
if ( rc ) {
8001a38: 44 20 00 21 be r1,r0,8001abc <open+0x264> <== ALWAYS TAKEN
if(errno) rc = errno;
8001a3c: f8 00 25 35 calli 800af10 <__errno> <== NOT EXECUTED 8001a40: 28 21 00 00 lw r1,(r1+0) <== NOT EXECUTED 8001a44: 44 20 00 03 be r1,r0,8001a50 <open+0x1f8> <== NOT EXECUTED 8001a48: f8 00 25 32 calli 800af10 <__errno> <== NOT EXECUTED 8001a4c: 28 2c 00 00 lw r12,(r1+0) <== NOT EXECUTED
close( iop - rtems_libio_iops );
8001a50: 78 01 08 01 mvhi r1,0x801 <== NOT EXECUTED 8001a54: 38 21 c6 9c ori r1,r1,0xc69c <== NOT EXECUTED 8001a58: 28 21 00 00 lw r1,(r1+0) <== NOT EXECUTED 8001a5c: 34 02 00 03 mvi r2,3 <== NOT EXECUTED 8001a60: c9 61 08 00 sub r1,r11,r1 <== NOT EXECUTED 8001a64: fb ff fa 33 calli 8000330 <__ashrsi3> <== NOT EXECUTED 8001a68: 78 02 38 e3 mvhi r2,0x38e3 <== NOT EXECUTED 8001a6c: 38 42 8e 39 ori r2,r2,0x8e39 <== NOT EXECUTED 8001a70: f8 00 5d 0d calli 8018ea4 <__mulsi3> <== NOT EXECUTED 8001a74: 34 0b 00 00 mvi r11,0 <== NOT EXECUTED 8001a78: f8 00 15 3a calli 8006f60 <close> <== NOT EXECUTED 8001a7c: b9 60 68 00 mv r13,r11 <== NOT EXECUTED
*/ done: va_end(ap); if ( rc ) {
8001a80: 45 80 00 0f be r12,r0,8001abc <open+0x264> <== NEVER TAKEN
if ( iop )
8001a84: 45 60 00 03 be r11,r0,8001a90 <open+0x238> <== NEVER TAKEN
rtems_libio_free( iop );
8001a88: b9 60 08 00 mv r1,r11 8001a8c: f8 00 16 7b calli 8007478 <rtems_libio_free>
if ( loc_to_free ) 8001a90: 45 a0 00 07 be r13,r0,8001aac <open+0x254> rtems_filesystem_freenode( loc_to_free );
8001a94: 29 a1 00 0c lw r1,(r13+12)
8001a98: 44 20 00 05 be r1,r0,8001aac <open+0x254> <== NEVER TAKEN
8001a9c: 28 22 00 1c lw r2,(r1+28)
8001aa0: 44 40 00 03 be r2,r0,8001aac <open+0x254> <== NEVER TAKEN
8001aa4: b9 a0 08 00 mv r1,r13 8001aa8: d8 40 00 00 call r2
rtems_set_errno_and_return_minus_one( rc );
8001aac: f8 00 25 19 calli 800af10 <__errno> 8001ab0: 58 2c 00 00 sw (r1+0),r12 8001ab4: 34 01 ff ff mvi r1,-1 8001ab8: e0 00 00 0a bi 8001ae0 <open+0x288>
} return iop - rtems_libio_iops;
8001abc: 78 01 08 01 mvhi r1,0x801 8001ac0: 38 21 c6 9c ori r1,r1,0xc69c 8001ac4: 28 21 00 00 lw r1,(r1+0) 8001ac8: 34 02 00 03 mvi r2,3 8001acc: c9 61 08 00 sub r1,r11,r1 8001ad0: fb ff fa 18 calli 8000330 <__ashrsi3> 8001ad4: 78 02 38 e3 mvhi r2,0x38e3 8001ad8: 38 42 8e 39 ori r2,r2,0x8e39 8001adc: f8 00 5c f2 calli 8018ea4 <__mulsi3>
}
8001ae0: 2b 9d 00 04 lw ra,(sp+4) 8001ae4: 2b 8b 00 24 lw r11,(sp+36) 8001ae8: 2b 8c 00 20 lw r12,(sp+32) 8001aec: 2b 8d 00 1c lw r13,(sp+28) 8001af0: 2b 8e 00 18 lw r14,(sp+24) 8001af4: 2b 8f 00 14 lw r15,(sp+20) 8001af8: 2b 90 00 10 lw r16,(sp+16) 8001afc: 2b 91 00 0c lw r17,(sp+12) 8001b00: 2b 92 00 08 lw r18,(sp+8) 8001b04: 37 9c 00 54 addi sp,sp,84 8001b08: c3 a0 00 00 ret
if ( loc_to_free ) rtems_filesystem_freenode( loc_to_free ); rtems_set_errno_and_return_minus_one( rc ); } return iop - rtems_libio_iops;
8001b0c: 37 8d 00 28 addi r13,sp,40 <== NOT EXECUTED 8001b10: 34 0c 00 86 mvi r12,134 <== NOT EXECUTED 8001b14: e3 ff ff dc bi 8001a84 <open+0x22c> <== NOT EXECUTED
080017d8 <open_dev_console>: /* * This is a replaceable stub which opens the console, if present. */ void open_dev_console(void) {
80017d8: 37 9c ff f8 addi sp,sp,-8 80017dc: 5b 8b 00 08 sw (sp+8),r11 80017e0: 5b 9d 00 04 sw (sp+4),ra
int stderr_fd; /* * Attempt to open /dev/console. */ if ((stdin_fd = open("/dev/console", O_RDONLY, 0)) == -1) {
80017e4: 34 02 00 00 mvi r2,0 80017e8: 78 01 08 01 mvhi r1,0x801 80017ec: 38 21 a2 e0 ori r1,r1,0xa2e0 80017f0: b8 40 18 00 mv r3,r2 80017f4: f8 00 00 19 calli 8001858 <open> 80017f8: 34 0b ff ff mvi r11,-1
80017fc: 44 2b 00 13 be r1,r11,8001848 <open_dev_console+0x70> /* * But if we find /dev/console once, we better find it twice more * or something is REALLY wrong. */ if ((stdout_fd = open("/dev/console", O_WRONLY, 0)) == -1)
8001800: 78 01 08 01 mvhi r1,0x801 8001804: 38 21 a2 e0 ori r1,r1,0xa2e0 8001808: 34 02 00 01 mvi r2,1 800180c: 34 03 00 00 mvi r3,0 8001810: f8 00 00 12 calli 8001858 <open>
8001814: 5c 2b 00 04 bne r1,r11,8001824 <open_dev_console+0x4c> <== ALWAYS TAKEN
rtems_fatal_error_occurred( 0x55544431 ); /* error STD1 */
8001818: 78 01 55 54 mvhi r1,0x5554 <== NOT EXECUTED 800181c: 38 21 44 31 ori r1,r1,0x4431 <== NOT EXECUTED 8001820: e0 00 00 09 bi 8001844 <open_dev_console+0x6c> <== NOT EXECUTED
if ((stderr_fd = open("/dev/console", O_WRONLY, 0)) == -1)
8001824: 78 01 08 01 mvhi r1,0x801 8001828: 38 21 a2 e0 ori r1,r1,0xa2e0 800182c: 34 02 00 01 mvi r2,1 8001830: 34 03 00 00 mvi r3,0 8001834: f8 00 00 09 calli 8001858 <open>
8001838: 5c 2b 00 04 bne r1,r11,8001848 <open_dev_console+0x70> <== ALWAYS TAKEN
rtems_fatal_error_occurred( 0x55544432 ); /* error STD2 */
800183c: 78 01 55 54 mvhi r1,0x5554 <== NOT EXECUTED 8001840: 38 21 44 32 ori r1,r1,0x4432 <== NOT EXECUTED 8001844: f8 00 03 97 calli 80026a0 <rtems_fatal_error_occurred> <== NOT EXECUTED
}
8001848: 2b 9d 00 04 lw ra,(sp+4) 800184c: 2b 8b 00 08 lw r11,(sp+8) 8001850: 37 9c 00 08 addi sp,sp,8 8001854: c3 a0 00 00 ret
08004060 <oproc>: /* * Handle output processing */ static void oproc (unsigned char c, struct rtems_termios_tty *tty) {
8004060: 37 9c ff f4 addi sp,sp,-12 <== NOT EXECUTED 8004064: 5b 8b 00 08 sw (sp+8),r11 <== NOT EXECUTED 8004068: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED 800406c: b8 40 58 00 mv r11,r2 <== NOT EXECUTED
int i; if (tty->termios.c_oflag & OPOST) {
8004070: 28 42 00 34 lw r2,(r2+52) <== NOT EXECUTED
/* * Handle output processing */ static void oproc (unsigned char c, struct rtems_termios_tty *tty) {
8004074: 33 81 00 0c sb (sp+12),r1 <== NOT EXECUTED
int i; if (tty->termios.c_oflag & OPOST) {
8004078: 20 41 00 01 andi r1,r2,0x1 <== NOT EXECUTED 800407c: 44 20 00 51 be r1,r0,80041c0 <oproc+0x160> <== NOT EXECUTED
switch (c) {
8004080: 43 81 00 0c lbu r1,(sp+12) <== NOT EXECUTED 8004084: 34 03 00 09 mvi r3,9 <== NOT EXECUTED 8004088: 44 23 00 23 be r1,r3,8004114 <oproc+0xb4> <== NOT EXECUTED 800408c: 54 23 00 04 bgu r1,r3,800409c <oproc+0x3c> <== NOT EXECUTED 8004090: 34 03 00 08 mvi r3,8 <== NOT EXECUTED 8004094: 5c 23 00 33 bne r1,r3,8004160 <oproc+0x100> <== NOT EXECUTED 8004098: e0 00 00 2e bi 8004150 <oproc+0xf0> <== NOT EXECUTED 800409c: 34 03 00 0a mvi r3,10 <== NOT EXECUTED 80040a0: 44 23 00 04 be r1,r3,80040b0 <oproc+0x50> <== NOT EXECUTED 80040a4: 34 03 00 0d mvi r3,13 <== NOT EXECUTED 80040a8: 5c 23 00 2e bne r1,r3,8004160 <oproc+0x100> <== NOT EXECUTED 80040ac: e0 00 00 0e bi 80040e4 <oproc+0x84> <== NOT EXECUTED
case '\n': if (tty->termios.c_oflag & ONLRET)
80040b0: 20 42 00 20 andi r2,r2,0x20 <== NOT EXECUTED 80040b4: 44 40 00 03 be r2,r0,80040c0 <oproc+0x60> <== NOT EXECUTED
tty->column = 0;
80040b8: 34 01 00 00 mvi r1,0 <== NOT EXECUTED 80040bc: 59 61 00 28 sw (r11+40),r1 <== NOT EXECUTED
if (tty->termios.c_oflag & ONLCR) {
80040c0: 29 61 00 34 lw r1,(r11+52) <== NOT EXECUTED 80040c4: 20 21 00 04 andi r1,r1,0x4 <== NOT EXECUTED 80040c8: 44 20 00 3e be r1,r0,80041c0 <oproc+0x160> <== NOT EXECUTED
rtems_termios_puts ("\r", 1, tty);
80040cc: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 80040d0: 38 21 13 d4 ori r1,r1,0x13d4 <== NOT EXECUTED 80040d4: 34 02 00 01 mvi r2,1 <== NOT EXECUTED 80040d8: b9 60 18 00 mv r3,r11 <== NOT EXECUTED 80040dc: fb ff ff 8b calli 8003f08 <rtems_termios_puts> <== NOT EXECUTED 80040e0: e0 00 00 0b bi 800410c <oproc+0xac> <== NOT EXECUTED
tty->column = 0; } break; case '\r': if ((tty->termios.c_oflag & ONOCR) && (tty->column == 0))
80040e4: 20 41 00 10 andi r1,r2,0x10 <== NOT EXECUTED 80040e8: 44 20 00 03 be r1,r0,80040f4 <oproc+0x94> <== NOT EXECUTED 80040ec: 29 61 00 28 lw r1,(r11+40) <== NOT EXECUTED 80040f0: 44 20 00 38 be r1,r0,80041d0 <oproc+0x170> <== NOT EXECUTED
return; if (tty->termios.c_oflag & OCRNL) {
80040f4: 20 41 00 08 andi r1,r2,0x8 <== NOT EXECUTED 80040f8: 44 20 00 31 be r1,r0,80041bc <oproc+0x15c> <== NOT EXECUTED
c = '\n';
80040fc: 34 01 00 0a mvi r1,10 <== NOT EXECUTED 8004100: 33 81 00 0c sb (sp+12),r1 <== NOT EXECUTED
if (tty->termios.c_oflag & ONLRET)
8004104: 20 42 00 20 andi r2,r2,0x20 <== NOT EXECUTED 8004108: 44 40 00 2e be r2,r0,80041c0 <oproc+0x160> <== NOT EXECUTED
tty->column = 0;
800410c: 34 01 00 00 mvi r1,0 <== NOT EXECUTED 8004110: e0 00 00 2b bi 80041bc <oproc+0x15c> <== NOT EXECUTED
} tty->column = 0; break; case '\t': i = 8 - (tty->column & 7);
8004114: 29 63 00 28 lw r3,(r11+40) <== NOT EXECUTED
if ((tty->termios.c_oflag & TABDLY) == XTABS) {
8004118: 20 44 18 00 andi r4,r2,0x1800 <== NOT EXECUTED
} tty->column = 0; break; case '\t': i = 8 - (tty->column & 7);
800411c: 34 02 00 08 mvi r2,8 <== NOT EXECUTED 8004120: 20 61 00 07 andi r1,r3,0x7 <== NOT EXECUTED 8004124: c8 41 10 00 sub r2,r2,r1 <== NOT EXECUTED
if ((tty->termios.c_oflag & TABDLY) == XTABS) {
8004128: 34 01 18 00 mvi r1,6144 <== NOT EXECUTED 800412c: b4 43 18 00 add r3,r2,r3 <== NOT EXECUTED 8004130: 5c 81 00 06 bne r4,r1,8004148 <oproc+0xe8> <== NOT EXECUTED
tty->column += i; rtems_termios_puts ( " ", i, tty);
8004134: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED
break; case '\t': i = 8 - (tty->column & 7); if ((tty->termios.c_oflag & TABDLY) == XTABS) { tty->column += i;
8004138: 59 63 00 28 sw (r11+40),r3 <== NOT EXECUTED
rtems_termios_puts ( " ", i, tty);
800413c: 38 21 13 d8 ori r1,r1,0x13d8 <== NOT EXECUTED 8004140: b9 60 18 00 mv r3,r11 <== NOT EXECUTED 8004144: e0 00 00 22 bi 80041cc <oproc+0x16c> <== NOT EXECUTED
return; } tty->column += i;
8004148: 59 63 00 28 sw (r11+40),r3 <== NOT EXECUTED
break;
800414c: e0 00 00 1d bi 80041c0 <oproc+0x160> <== NOT EXECUTED
case '\b': if (tty->column > 0)
8004150: 29 61 00 28 lw r1,(r11+40) <== NOT EXECUTED 8004154: 4c 01 00 1b bge r0,r1,80041c0 <oproc+0x160> <== NOT EXECUTED
tty->column--;
8004158: 34 21 ff ff addi r1,r1,-1 <== NOT EXECUTED 800415c: e0 00 00 18 bi 80041bc <oproc+0x15c> <== NOT EXECUTED
break; default: if (tty->termios.c_oflag & OLCUC)
8004160: 20 42 00 02 andi r2,r2,0x2 <== NOT EXECUTED 8004164: 44 40 00 0c be r2,r0,8004194 <oproc+0x134> <== NOT EXECUTED
c = toupper(c);
8004168: 78 02 08 02 mvhi r2,0x802 <== NOT EXECUTED 800416c: 38 42 32 c8 ori r2,r2,0x32c8 <== NOT EXECUTED 8004170: 28 43 00 00 lw r3,(r2+0) <== NOT EXECUTED 8004174: b8 20 10 00 mv r2,r1 <== NOT EXECUTED 8004178: b4 61 08 00 add r1,r3,r1 <== NOT EXECUTED 800417c: 40 23 00 01 lbu r3,(r1+1) <== NOT EXECUTED 8004180: 34 01 00 02 mvi r1,2 <== NOT EXECUTED 8004184: 20 63 00 03 andi r3,r3,0x3 <== NOT EXECUTED 8004188: 5c 61 00 02 bne r3,r1,8004190 <oproc+0x130> <== NOT EXECUTED 800418c: 34 42 ff e0 addi r2,r2,-32 <== NOT EXECUTED 8004190: 33 82 00 0c sb (sp+12),r2 <== NOT EXECUTED
if (!iscntrl(c))
8004194: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8004198: 38 21 32 c8 ori r1,r1,0x32c8 <== NOT EXECUTED 800419c: 28 22 00 00 lw r2,(r1+0) <== NOT EXECUTED 80041a0: 43 81 00 0c lbu r1,(sp+12) <== NOT EXECUTED 80041a4: b4 41 08 00 add r1,r2,r1 <== NOT EXECUTED 80041a8: 40 21 00 01 lbu r1,(r1+1) <== NOT EXECUTED 80041ac: 20 21 00 20 andi r1,r1,0x20 <== NOT EXECUTED 80041b0: 5c 20 00 04 bne r1,r0,80041c0 <oproc+0x160> <== NOT EXECUTED
tty->column++;
80041b4: 29 61 00 28 lw r1,(r11+40) <== NOT EXECUTED 80041b8: 34 21 00 01 addi r1,r1,1 <== NOT EXECUTED 80041bc: 59 61 00 28 sw (r11+40),r1 <== NOT EXECUTED
break; } } rtems_termios_puts (&c, 1, tty);
80041c0: b9 60 18 00 mv r3,r11 <== NOT EXECUTED 80041c4: 37 81 00 0c addi r1,sp,12 <== NOT EXECUTED 80041c8: 34 02 00 01 mvi r2,1 <== NOT EXECUTED 80041cc: fb ff ff 4f calli 8003f08 <rtems_termios_puts> <== NOT EXECUTED
}
80041d0: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 80041d4: 2b 8b 00 08 lw r11,(sp+8) <== NOT EXECUTED 80041d8: 37 9c 00 0c addi sp,sp,12 <== NOT EXECUTED 80041dc: c3 a0 00 00 ret <== NOT EXECUTED
0800a9b8 <pipe_create>: * Called by pipe() to create an anonymous pipe. */ int pipe_create( int filsdes[2] ) {
800a9b8: 37 9c ff cc addi sp,sp,-52 800a9bc: 5b 8b 00 10 sw (sp+16),r11 800a9c0: 5b 8c 00 0c sw (sp+12),r12 800a9c4: 5b 8d 00 08 sw (sp+8),r13 800a9c8: 5b 9d 00 04 sw (sp+4),ra 800a9cc: b8 20 68 00 mv r13,r1
rtems_filesystem_location_info_t loc; rtems_libio_t *iop; int err = 0; /* Create /tmp if not exists */ if (rtems_filesystem_evaluate_path("/tmp", 3, RTEMS_LIBIO_PERMS_RWX, &loc, TRUE)
800a9d0: 37 8b 00 14 addi r11,sp,20 800a9d4: 78 01 08 01 mvhi r1,0x801 800a9d8: 38 21 a8 6c ori r1,r1,0xa86c 800a9dc: 34 02 00 03 mvi r2,3 800a9e0: 34 03 00 07 mvi r3,7 800a9e4: b9 60 20 00 mv r4,r11 800a9e8: 34 05 00 01 mvi r5,1 800a9ec: fb ff d9 0f calli 8000e28 <rtems_filesystem_evaluate_path>
800a9f0: 44 20 00 0b be r1,r0,800aa1c <pipe_create+0x64> <== NEVER TAKEN
!= 0) { if (errno != ENOENT)
800a9f4: f8 00 01 47 calli 800af10 <__errno> 800a9f8: 28 22 00 00 lw r2,(r1+0) 800a9fc: 34 01 00 02 mvi r1,2
800aa00: 5c 41 00 50 bne r2,r1,800ab40 <pipe_create+0x188> <== NEVER TAKEN
return -1; if (mkdir("/tmp", S_IRWXU|S_IRWXG|S_IRWXO|S_ISVTX) != 0)
800aa04: 78 01 08 01 mvhi r1,0x801 800aa08: 38 21 a8 6c ori r1,r1,0xa86c 800aa0c: 34 02 03 ff mvi r2,1023 800aa10: fb ff d9 b5 calli 80010e4 <mkdir>
800aa14: 44 20 00 08 be r1,r0,800aa34 <pipe_create+0x7c> <== ALWAYS TAKEN
800aa18: e0 00 00 4a bi 800ab40 <pipe_create+0x188> <== NOT EXECUTED
return -1; } else rtems_filesystem_freenode(&loc);
800aa1c: 2b 82 00 20 lw r2,(sp+32) <== NOT EXECUTED 800aa20: 44 41 00 05 be r2,r1,800aa34 <pipe_create+0x7c> <== NOT EXECUTED 800aa24: 28 42 00 1c lw r2,(r2+28) <== NOT EXECUTED 800aa28: 44 40 00 03 be r2,r0,800aa34 <pipe_create+0x7c> <== NOT EXECUTED 800aa2c: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 800aa30: d8 40 00 00 call r2 <== NOT EXECUTED
/* /tmp/.fifoXXXX */ char fifopath[15]; memcpy(fifopath, "/tmp/.fifo", 10);
800aa34: 37 8b 00 28 addi r11,sp,40 800aa38: 78 02 08 01 mvhi r2,0x801 800aa3c: 38 42 a8 74 ori r2,r2,0xa874 800aa40: 34 03 00 0a mvi r3,10 800aa44: b9 60 08 00 mv r1,r11 800aa48: f8 00 03 d8 calli 800b9a8 <memcpy>
sprintf(fifopath + 10, "%04x", rtems_pipe_no ++);
800aa4c: 78 04 08 01 mvhi r4,0x801 800aa50: 38 84 c6 2e ori r4,r4,0xc62e 800aa54: 2c 81 00 00 lhu r1,(r4+0) 800aa58: 78 02 08 01 mvhi r2,0x801 800aa5c: 38 42 a8 80 ori r2,r2,0xa880 800aa60: 34 25 00 01 addi r5,r1,1 800aa64: b8 20 18 00 mv r3,r1 800aa68: 0c 85 00 00 sh (r4+0),r5 800aa6c: 37 81 00 32 addi r1,sp,50 800aa70: f8 00 04 ce calli 800bda8 <sprintf>
/* Try creating FIFO file until find an available file name */ while (mkfifo(fifopath, S_IRUSR|S_IWUSR) != 0) {
800aa74: b9 60 08 00 mv r1,r11 800aa78: 34 02 01 80 mvi r2,384 800aa7c: f8 00 00 52 calli 800abc4 <mkfifo> 800aa80: b8 20 60 00 mv r12,r1
800aa84: 44 20 00 03 be r1,r0,800aa90 <pipe_create+0xd8> <== ALWAYS TAKEN
if (errno != EEXIST){
800aa88: f8 00 01 22 calli 800af10 <__errno> <== NOT EXECUTED 800aa8c: e0 00 00 2d bi 800ab40 <pipe_create+0x188> <== NOT EXECUTED
return -1; sprintf(fifopath + 10, "%04x", rtems_pipe_no ++); } /* Non-blocking open to avoid waiting for writers */ filsdes[0] = open(fifopath, O_RDONLY | O_NONBLOCK);
800aa90: b9 60 08 00 mv r1,r11 800aa94: 34 02 40 00 mvi r2,16384 800aa98: fb ff db 70 calli 8001858 <open> 800aa9c: 59 a1 00 00 sw (r13+0),r1
if (filsdes[0] < 0) {
800aaa0: 4c 2c 00 05 bge r1,r12,800aab4 <pipe_create+0xfc> <== NEVER TAKEN
err = errno;
800aaa4: f8 00 01 1b calli 800af10 <__errno> 800aaa8: 28 2c 00 00 lw r12,(r1+0)
/* Delete file at errors, or else if pipe is successfully created the file node will be deleted after it is closed by all. */ unlink(fifopath);
800aaac: b9 60 08 00 mv r1,r11 800aab0: e0 00 00 21 bi 800ab34 <pipe_create+0x17c>
} else { /* Reset open file to blocking mode */ iop = rtems_libio_iop(filsdes[0]);
800aab4: 78 02 08 01 mvhi r2,0x801 <== NOT EXECUTED 800aab8: 38 42 c0 10 ori r2,r2,0xc010 <== NOT EXECUTED 800aabc: 28 42 00 00 lw r2,(r2+0) <== NOT EXECUTED 800aac0: 54 41 00 03 bgu r2,r1,800aacc <pipe_create+0x114> <== NOT EXECUTED 800aac4: b9 80 10 00 mv r2,r12 <== NOT EXECUTED 800aac8: e0 00 00 0b bi 800aaf4 <pipe_create+0x13c> <== NOT EXECUTED 800aacc: 34 02 00 03 mvi r2,3 <== NOT EXECUTED 800aad0: fb ff d5 c8 calli 80001f0 <__ashlsi3> <== NOT EXECUTED 800aad4: 34 02 00 03 mvi r2,3 <== NOT EXECUTED 800aad8: 78 0b 08 01 mvhi r11,0x801 <== NOT EXECUTED 800aadc: b8 20 60 00 mv r12,r1 <== NOT EXECUTED 800aae0: 39 6b c6 9c ori r11,r11,0xc69c <== NOT EXECUTED 800aae4: fb ff d5 c3 calli 80001f0 <__ashlsi3> <== NOT EXECUTED 800aae8: 29 62 00 00 lw r2,(r11+0) <== NOT EXECUTED 800aaec: b5 81 08 00 add r1,r12,r1 <== NOT EXECUTED 800aaf0: b4 41 10 00 add r2,r2,r1 <== NOT EXECUTED
iop->flags &= ~LIBIO_FLAGS_NO_DELAY;
800aaf4: 28 44 00 18 lw r4,(r2+24) <== NOT EXECUTED 800aaf8: 34 03 ff fe mvi r3,-2 <== NOT EXECUTED
filsdes[1] = open(fifopath, O_WRONLY);
800aafc: 37 81 00 28 addi r1,sp,40 <== NOT EXECUTED
unlink(fifopath); } else { /* Reset open file to blocking mode */ iop = rtems_libio_iop(filsdes[0]); iop->flags &= ~LIBIO_FLAGS_NO_DELAY;
800ab00: a0 83 18 00 and r3,r4,r3 <== NOT EXECUTED 800ab04: 58 43 00 18 sw (r2+24),r3 <== NOT EXECUTED
filsdes[1] = open(fifopath, O_WRONLY);
800ab08: 34 02 00 01 mvi r2,1 <== NOT EXECUTED 800ab0c: fb ff db 53 calli 8001858 <open> <== NOT EXECUTED 800ab10: 59 a1 00 04 sw (r13+4),r1 <== NOT EXECUTED
if (filsdes[1] < 0) {
800ab14: 48 01 00 03 bg r0,r1,800ab20 <pipe_create+0x168> <== NOT EXECUTED 800ab18: 34 0c 00 00 mvi r12,0 <== NOT EXECUTED 800ab1c: e0 00 00 05 bi 800ab30 <pipe_create+0x178> <== NOT EXECUTED
err = errno;
800ab20: f8 00 00 fc calli 800af10 <__errno> <== NOT EXECUTED 800ab24: 28 2c 00 00 lw r12,(r1+0) <== NOT EXECUTED
close(filsdes[0]);
800ab28: 29 a1 00 00 lw r1,(r13+0) <== NOT EXECUTED 800ab2c: fb ff f1 0d calli 8006f60 <close> <== NOT EXECUTED
} unlink(fifopath);
800ab30: 37 81 00 28 addi r1,sp,40 <== NOT EXECUTED
800ab34: f8 00 00 2d calli 800abe8 <unlink>
} rtems_set_errno_and_return_minus_one(err);
800ab38: f8 00 00 f6 calli 800af10 <__errno> 800ab3c: 58 2c 00 00 sw (r1+0),r12
}
800ab40: 34 01 ff ff mvi r1,-1 800ab44: 2b 9d 00 04 lw ra,(sp+4) 800ab48: 2b 8b 00 10 lw r11,(sp+16) 800ab4c: 2b 8c 00 0c lw r12,(sp+12) 800ab50: 2b 8d 00 08 lw r13,(sp+8) 800ab54: 37 9c 00 34 addi sp,sp,52 800ab58: c3 a0 00 00 ret
080097ac <pipe_free>: /* Called with rtems_pipe_semaphore held. */ static inline void pipe_free( pipe_control_t *pipe ) {
80097ac: 37 9c ff f8 addi sp,sp,-8 <== NOT EXECUTED 80097b0: 5b 8b 00 08 sw (sp+8),r11 <== NOT EXECUTED 80097b4: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED 80097b8: b8 20 58 00 mv r11,r1 <== NOT EXECUTED
rtems_barrier_delete(pipe->readBarrier);
80097bc: 28 21 00 2c lw r1,(r1+44) <== NOT EXECUTED 80097c0: f8 00 02 59 calli 800a124 <rtems_barrier_delete> <== NOT EXECUTED
rtems_barrier_delete(pipe->writeBarrier);
80097c4: 29 61 00 30 lw r1,(r11+48) <== NOT EXECUTED 80097c8: f8 00 02 57 calli 800a124 <rtems_barrier_delete> <== NOT EXECUTED
rtems_semaphore_delete(pipe->Semaphore);
80097cc: 29 61 00 28 lw r1,(r11+40) <== NOT EXECUTED 80097d0: fb ff f8 6c calli 8007980 <rtems_semaphore_delete> <== NOT EXECUTED
free(pipe->Buffer);
80097d4: 29 61 00 00 lw r1,(r11+0) <== NOT EXECUTED 80097d8: fb ff f6 1b calli 8007044 <free> <== NOT EXECUTED
free(pipe);
80097dc: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 80097e0: fb ff f6 19 calli 8007044 <free> <== NOT EXECUTED
}
80097e4: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 80097e8: 2b 8b 00 08 lw r11,(sp+8) <== NOT EXECUTED 80097ec: 37 9c 00 08 addi sp,sp,8 <== NOT EXECUTED 80097f0: c3 a0 00 00 ret <== NOT EXECUTED
080093b4 <pipe_ioctl>: pipe_control_t *pipe, uint32_t cmd, void *buffer, rtems_libio_t *iop ) {
80093b4: 37 9c ff f0 addi sp,sp,-16 <== NOT EXECUTED 80093b8: 5b 8b 00 10 sw (sp+16),r11 <== NOT EXECUTED 80093bc: 5b 8c 00 0c sw (sp+12),r12 <== NOT EXECUTED 80093c0: 5b 8d 00 08 sw (sp+8),r13 <== NOT EXECUTED 80093c4: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
if (cmd == FIONREAD) {
80093c8: 78 05 40 04 mvhi r5,0x4004 <== NOT EXECUTED 80093cc: 38 a5 66 7f ori r5,r5,0x667f <== NOT EXECUTED
pipe_control_t *pipe, uint32_t cmd, void *buffer, rtems_libio_t *iop ) {
80093d0: b8 20 58 00 mv r11,r1 <== NOT EXECUTED 80093d4: b8 60 68 00 mv r13,r3 <== NOT EXECUTED
if (cmd == FIONREAD) {
80093d8: 34 04 ff ea mvi r4,-22 <== NOT EXECUTED 80093dc: 5c 45 00 0f bne r2,r5,8009418 <pipe_ioctl+0x64> <== NOT EXECUTED
if (buffer == NULL)
80093e0: 34 04 ff f2 mvi r4,-14 <== NOT EXECUTED 80093e4: 44 60 00 0d be r3,r0,8009418 <pipe_ioctl+0x64> <== NOT EXECUTED
return -EFAULT; if (! PIPE_LOCK(pipe))
80093e8: 28 21 00 28 lw r1,(r1+40) <== NOT EXECUTED 80093ec: 34 02 00 00 mvi r2,0 <== NOT EXECUTED 80093f0: b8 40 18 00 mv r3,r2 <== NOT EXECUTED 80093f4: fb ff f9 9f calli 8007a70 <rtems_semaphore_obtain> <== NOT EXECUTED 80093f8: b8 20 60 00 mv r12,r1 <== NOT EXECUTED 80093fc: 34 04 ff fc mvi r4,-4 <== NOT EXECUTED 8009400: 5c 20 00 06 bne r1,r0,8009418 <pipe_ioctl+0x64> <== NOT EXECUTED
return -EINTR; /* Return length of pipe */ *(uint *)buffer = pipe->Length;
8009404: 29 61 00 0c lw r1,(r11+12) <== NOT EXECUTED 8009408: 59 a1 00 00 sw (r13+0),r1 <== NOT EXECUTED
PIPE_UNLOCK(pipe);
800940c: 29 61 00 28 lw r1,(r11+40) <== NOT EXECUTED 8009410: fb ff f9 e8 calli 8007bb0 <rtems_semaphore_release> <== NOT EXECUTED 8009414: b9 80 20 00 mv r4,r12 <== NOT EXECUTED
return 0; } return -EINVAL; }
8009418: b8 80 08 00 mv r1,r4 <== NOT EXECUTED 800941c: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8009420: 2b 8b 00 10 lw r11,(sp+16) <== NOT EXECUTED 8009424: 2b 8c 00 0c lw r12,(sp+12) <== NOT EXECUTED 8009428: 2b 8d 00 08 lw r13,(sp+8) <== NOT EXECUTED 800942c: 37 9c 00 10 addi sp,sp,16 <== NOT EXECUTED 8009430: c3 a0 00 00 ret <== NOT EXECUTED
08009340 <pipe_lseek>: rtems_libio_t *iop ) { /* Seek on pipe is not supported */ return -ESPIPE; }
8009340: 34 01 ff e3 mvi r1,-29 <== NOT EXECUTED 8009344: c3 a0 00 00 ret <== NOT EXECUTED
08009608 <pipe_read>: pipe_control_t *pipe, void *buffer, size_t count, rtems_libio_t *iop ) {
8009608: 37 9c ff dc addi sp,sp,-36 <== NOT EXECUTED 800960c: 5b 8b 00 20 sw (sp+32),r11 <== NOT EXECUTED 8009610: 5b 8c 00 1c sw (sp+28),r12 <== NOT EXECUTED 8009614: 5b 8d 00 18 sw (sp+24),r13 <== NOT EXECUTED 8009618: 5b 8e 00 14 sw (sp+20),r14 <== NOT EXECUTED 800961c: 5b 8f 00 10 sw (sp+16),r15 <== NOT EXECUTED 8009620: 5b 90 00 0c sw (sp+12),r16 <== NOT EXECUTED 8009624: 5b 91 00 08 sw (sp+8),r17 <== NOT EXECUTED 8009628: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED 800962c: b8 20 58 00 mv r11,r1 <== NOT EXECUTED
int chunk, chunk1, read = 0, ret = 0; if (! PIPE_LOCK(pipe))
8009630: 28 21 00 28 lw r1,(r1+40) <== NOT EXECUTED
pipe_control_t *pipe, void *buffer, size_t count, rtems_libio_t *iop ) {
8009634: b8 40 88 00 mv r17,r2 <== NOT EXECUTED
int chunk, chunk1, read = 0, ret = 0; if (! PIPE_LOCK(pipe))
8009638: 34 02 00 00 mvi r2,0 <== NOT EXECUTED
pipe_control_t *pipe, void *buffer, size_t count, rtems_libio_t *iop ) {
800963c: b8 60 80 00 mv r16,r3 <== NOT EXECUTED
int chunk, chunk1, read = 0, ret = 0; if (! PIPE_LOCK(pipe))
8009640: b8 40 18 00 mv r3,r2 <== NOT EXECUTED
pipe_control_t *pipe, void *buffer, size_t count, rtems_libio_t *iop ) {
8009644: b8 80 78 00 mv r15,r4 <== NOT EXECUTED
int chunk, chunk1, read = 0, ret = 0; if (! PIPE_LOCK(pipe))
8009648: fb ff f9 0a calli 8007a70 <rtems_semaphore_obtain> <== NOT EXECUTED 800964c: b8 20 60 00 mv r12,r1 <== NOT EXECUTED 8009650: 44 20 00 46 be r1,r0,8009768 <pipe_read+0x160> <== NOT EXECUTED 8009654: 34 0c ff fc mvi r12,-4 <== NOT EXECUTED 8009658: e0 00 00 4a bi 8009780 <pipe_read+0x178> <== NOT EXECUTED
return -EINTR; while (read < count) { while (PIPE_EMPTY(pipe)) { /* Not an error */ if (pipe->Writers == 0)
800965c: 29 61 00 14 lw r1,(r11+20) <== NOT EXECUTED 8009660: 44 2d 00 43 be r1,r13,800976c <pipe_read+0x164> <== NOT EXECUTED
goto out_locked; if (LIBIO_NODELAY(iop)) {
8009664: 29 ee 00 18 lw r14,(r15+24) <== NOT EXECUTED 8009668: 21 ce 00 01 andi r14,r14,0x1 <== NOT EXECUTED 800966c: 45 c0 00 03 be r14,r0,8009678 <pipe_read+0x70> <== NOT EXECUTED 8009670: 34 0d ff f5 mvi r13,-11 <== NOT EXECUTED 8009674: e0 00 00 3f bi 8009770 <pipe_read+0x168> <== NOT EXECUTED
ret = -EAGAIN; goto out_locked; } /* Wait until pipe is no more empty or no writer exists */ pipe->waitingReaders ++;
8009678: 29 62 00 18 lw r2,(r11+24) <== NOT EXECUTED
PIPE_UNLOCK(pipe);
800967c: 29 61 00 28 lw r1,(r11+40) <== NOT EXECUTED
ret = -EAGAIN; goto out_locked; } /* Wait until pipe is no more empty or no writer exists */ pipe->waitingReaders ++;
8009680: 34 42 00 01 addi r2,r2,1 <== NOT EXECUTED 8009684: 59 62 00 18 sw (r11+24),r2 <== NOT EXECUTED
PIPE_UNLOCK(pipe);
8009688: fb ff f9 4a calli 8007bb0 <rtems_semaphore_release> <== NOT EXECUTED
if (! PIPE_READWAIT(pipe))
800968c: 29 61 00 2c lw r1,(r11+44) <== NOT EXECUTED 8009690: b9 c0 10 00 mv r2,r14 <== NOT EXECUTED 8009694: f8 00 02 e3 calli 800a220 <rtems_barrier_wait> <== NOT EXECUTED
ret = -EINTR; if (! PIPE_LOCK(pipe)) {
8009698: 34 02 00 00 mvi r2,0 <== NOT EXECUTED
} /* Wait until pipe is no more empty or no writer exists */ pipe->waitingReaders ++; PIPE_UNLOCK(pipe); if (! PIPE_READWAIT(pipe))
800969c: b8 20 68 00 mv r13,r1 <== NOT EXECUTED
ret = -EINTR; if (! PIPE_LOCK(pipe)) {
80096a0: b8 40 18 00 mv r3,r2 <== NOT EXECUTED
} /* Wait until pipe is no more empty or no writer exists */ pipe->waitingReaders ++; PIPE_UNLOCK(pipe); if (! PIPE_READWAIT(pipe))
80096a4: 44 2e 00 02 be r1,r14,80096ac <pipe_read+0xa4> <== NOT EXECUTED 80096a8: 34 0d ff fc mvi r13,-4 <== NOT EXECUTED
ret = -EINTR; if (! PIPE_LOCK(pipe)) {
80096ac: 29 61 00 28 lw r1,(r11+40) <== NOT EXECUTED 80096b0: fb ff f8 f0 calli 8007a70 <rtems_semaphore_obtain> <== NOT EXECUTED 80096b4: 44 20 00 03 be r1,r0,80096c0 <pipe_read+0xb8> <== NOT EXECUTED 80096b8: 34 0d ff fc mvi r13,-4 <== NOT EXECUTED 80096bc: e0 00 00 2f bi 8009778 <pipe_read+0x170> <== NOT EXECUTED
/* WARN waitingReaders not restored! */ ret = -EINTR; goto out_nolock; } pipe->waitingReaders --;
80096c0: 29 62 00 18 lw r2,(r11+24) <== NOT EXECUTED 80096c4: 34 42 ff ff addi r2,r2,-1 <== NOT EXECUTED 80096c8: 59 62 00 18 sw (r11+24),r2 <== NOT EXECUTED
if (ret != 0)
80096cc: 5d a1 00 29 bne r13,r1,8009770 <pipe_read+0x168> <== NOT EXECUTED
if (! PIPE_LOCK(pipe)) return -EINTR; while (read < count) { while (PIPE_EMPTY(pipe)) {
80096d0: 29 6d 00 0c lw r13,(r11+12) <== NOT EXECUTED 80096d4: 45 a0 ff e2 be r13,r0,800965c <pipe_read+0x54> <== NOT EXECUTED
if (ret != 0) goto out_locked; } /* Read chunk bytes */ chunk = MIN(count - read, pipe->Length);
80096d8: ca 0c 08 00 sub r1,r16,r12 <== NOT EXECUTED 80096dc: 50 2d 00 02 bgeu r1,r13,80096e4 <pipe_read+0xdc> <== NOT EXECUTED 80096e0: b8 20 68 00 mv r13,r1 <== NOT EXECUTED
chunk1 = pipe->Size - pipe->Start;
80096e4: 29 65 00 08 lw r5,(r11+8) <== NOT EXECUTED 80096e8: 29 6e 00 04 lw r14,(r11+4) <== NOT EXECUTED 80096ec: 29 66 00 00 lw r6,(r11+0) <== NOT EXECUTED 80096f0: b6 2c 08 00 add r1,r17,r12 <== NOT EXECUTED 80096f4: c9 c5 70 00 sub r14,r14,r5 <== NOT EXECUTED
if (chunk > chunk1) { memcpy(buffer + read, pipe->Buffer + pipe->Start, chunk1); memcpy(buffer + read + chunk1, pipe->Buffer, chunk - chunk1); } else memcpy(buffer + read, pipe->Buffer + pipe->Start, chunk);
80096f8: b4 c5 10 00 add r2,r6,r5 <== NOT EXECUTED 80096fc: b9 a0 18 00 mv r3,r13 <== NOT EXECUTED
} /* Read chunk bytes */ chunk = MIN(count - read, pipe->Length); chunk1 = pipe->Size - pipe->Start; if (chunk > chunk1) {
8009700: 4d cd 00 08 bge r14,r13,8009720 <pipe_read+0x118> <== NOT EXECUTED
memcpy(buffer + read, pipe->Buffer + pipe->Start, chunk1);
8009704: b4 c5 10 00 add r2,r6,r5 <== NOT EXECUTED 8009708: b9 c0 18 00 mv r3,r14 <== NOT EXECUTED 800970c: f8 00 08 a7 calli 800b9a8 <memcpy> <== NOT EXECUTED
memcpy(buffer + read + chunk1, pipe->Buffer, chunk - chunk1);
8009710: 29 62 00 00 lw r2,(r11+0) <== NOT EXECUTED 8009714: b5 8e 08 00 add r1,r12,r14 <== NOT EXECUTED 8009718: b6 21 08 00 add r1,r17,r1 <== NOT EXECUTED 800971c: c9 ae 18 00 sub r3,r13,r14 <== NOT EXECUTED
} else memcpy(buffer + read, pipe->Buffer + pipe->Start, chunk);
8009720: f8 00 08 a2 calli 800b9a8 <memcpy> <== NOT EXECUTED
pipe->Start += chunk;
8009724: 29 61 00 08 lw r1,(r11+8) <== NOT EXECUTED
pipe->Start %= pipe->Size;
8009728: 29 62 00 04 lw r2,(r11+4) <== NOT EXECUTED
memcpy(buffer + read + chunk1, pipe->Buffer, chunk - chunk1); } else memcpy(buffer + read, pipe->Buffer + pipe->Start, chunk); pipe->Start += chunk;
800972c: b5 a1 08 00 add r1,r13,r1 <== NOT EXECUTED 8009730: 59 61 00 08 sw (r11+8),r1 <== NOT EXECUTED
pipe->Start %= pipe->Size;
8009734: f8 00 3e 6b calli 80190e0 <__umodsi3> <== NOT EXECUTED
pipe->Length -= chunk;
8009738: 29 62 00 0c lw r2,(r11+12) <== NOT EXECUTED
} else memcpy(buffer + read, pipe->Buffer + pipe->Start, chunk); pipe->Start += chunk; pipe->Start %= pipe->Size;
800973c: 59 61 00 08 sw (r11+8),r1 <== NOT EXECUTED
pipe->Length -= chunk;
8009740: c8 4d 08 00 sub r1,r2,r13 <== NOT EXECUTED 8009744: 59 61 00 0c sw (r11+12),r1 <== NOT EXECUTED
/* For buffering optimization */ if (PIPE_EMPTY(pipe))
8009748: 5c 20 00 02 bne r1,r0,8009750 <pipe_read+0x148> <== NOT EXECUTED
pipe->Start = 0;
800974c: 59 61 00 08 sw (r11+8),r1 <== NOT EXECUTED
if (pipe->waitingWriters > 0)
8009750: 29 61 00 1c lw r1,(r11+28) <== NOT EXECUTED 8009754: 44 20 00 04 be r1,r0,8009764 <pipe_read+0x15c> <== NOT EXECUTED
PIPE_WAKEUPWRITERS(pipe);
8009758: 29 61 00 30 lw r1,(r11+48) <== NOT EXECUTED 800975c: 37 82 00 24 addi r2,sp,36 <== NOT EXECUTED 8009760: f8 00 02 91 calli 800a1a4 <rtems_barrier_release> <== NOT EXECUTED
read += chunk;
8009764: b5 8d 60 00 add r12,r12,r13 <== NOT EXECUTED
int chunk, chunk1, read = 0, ret = 0; if (! PIPE_LOCK(pipe)) return -EINTR; while (read < count) {
8009768: 56 0c ff da bgu r16,r12,80096d0 <pipe_read+0xc8> <== NOT EXECUTED 800976c: 34 0d 00 00 mvi r13,0 <== NOT EXECUTED
PIPE_WAKEUPWRITERS(pipe); read += chunk; } out_locked: PIPE_UNLOCK(pipe);
8009770: 29 61 00 28 lw r1,(r11+40) <== NOT EXECUTED 8009774: fb ff f9 0f calli 8007bb0 <rtems_semaphore_release> <== NOT EXECUTED
out_nolock: if (read > 0)
8009778: 49 80 00 02 bg r12,r0,8009780 <pipe_read+0x178> <== NOT EXECUTED 800977c: b9 a0 60 00 mv r12,r13 <== NOT EXECUTED
return read; return ret; }
8009780: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 8009784: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8009788: 2b 8b 00 20 lw r11,(sp+32) <== NOT EXECUTED 800978c: 2b 8c 00 1c lw r12,(sp+28) <== NOT EXECUTED 8009790: 2b 8d 00 18 lw r13,(sp+24) <== NOT EXECUTED 8009794: 2b 8e 00 14 lw r14,(sp+20) <== NOT EXECUTED 8009798: 2b 8f 00 10 lw r15,(sp+16) <== NOT EXECUTED 800979c: 2b 90 00 0c lw r16,(sp+12) <== NOT EXECUTED 80097a0: 2b 91 00 08 lw r17,(sp+8) <== NOT EXECUTED 80097a4: 37 9c 00 24 addi sp,sp,36 <== NOT EXECUTED 80097a8: c3 a0 00 00 ret <== NOT EXECUTED
080097f4 <pipe_release>: */ int pipe_release( pipe_control_t **pipep, rtems_libio_t *iop ) {
80097f4: 37 9c ff e8 addi sp,sp,-24 <== NOT EXECUTED 80097f8: 5b 8b 00 14 sw (sp+20),r11 <== NOT EXECUTED 80097fc: 5b 8c 00 10 sw (sp+16),r12 <== NOT EXECUTED 8009800: 5b 8d 00 0c sw (sp+12),r13 <== NOT EXECUTED 8009804: 5b 8e 00 08 sw (sp+8),r14 <== NOT EXECUTED 8009808: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
pipe_control_t *pipe = *pipep;
800980c: 28 2b 00 00 lw r11,(r1+0) <== NOT EXECUTED
*/ int pipe_release( pipe_control_t **pipep, rtems_libio_t *iop ) {
8009810: b8 20 68 00 mv r13,r1 <== NOT EXECUTED 8009814: b8 40 60 00 mv r12,r2 <== NOT EXECUTED
pipe_control_t *pipe = *pipep; uint32_t mode; rtems_status_code sc; sc = rtems_semaphore_obtain(pipe->Semaphore,
8009818: 29 61 00 28 lw r1,(r11+40) <== NOT EXECUTED 800981c: 34 02 00 00 mvi r2,0 <== NOT EXECUTED 8009820: b8 40 18 00 mv r3,r2 <== NOT EXECUTED 8009824: fb ff f8 93 calli 8007a70 <rtems_semaphore_obtain> <== NOT EXECUTED 8009828: b8 20 18 00 mv r3,r1 <== NOT EXECUTED
RTEMS_WAIT, RTEMS_NO_TIMEOUT); /* WARN pipe not released! */ if(sc != RTEMS_SUCCESSFUL)
800982c: 5c 20 00 15 bne r1,r0,8009880 <pipe_release+0x8c> <== NOT EXECUTED
rtems_fatal_error_occurred(sc); mode = LIBIO_ACCMODE(iop);
8009830: 29 8c 00 18 lw r12,(r12+24) <== NOT EXECUTED
if (mode & LIBIO_FLAGS_READ)
8009834: 21 81 00 02 andi r1,r12,0x2 <== NOT EXECUTED
RTEMS_WAIT, RTEMS_NO_TIMEOUT); /* WARN pipe not released! */ if(sc != RTEMS_SUCCESSFUL) rtems_fatal_error_occurred(sc); mode = LIBIO_ACCMODE(iop);
8009838: 21 8c 00 06 andi r12,r12,0x6 <== NOT EXECUTED
if (mode & LIBIO_FLAGS_READ)
800983c: 44 23 00 04 be r1,r3,800984c <pipe_release+0x58> <== NOT EXECUTED
pipe->Readers --;
8009840: 29 61 00 10 lw r1,(r11+16) <== NOT EXECUTED 8009844: 34 21 ff ff addi r1,r1,-1 <== NOT EXECUTED 8009848: 59 61 00 10 sw (r11+16),r1 <== NOT EXECUTED
if (mode & LIBIO_FLAGS_WRITE)
800984c: 21 81 00 04 andi r1,r12,0x4 <== NOT EXECUTED 8009850: 44 20 00 04 be r1,r0,8009860 <pipe_release+0x6c> <== NOT EXECUTED
pipe->Writers --;
8009854: 29 61 00 14 lw r1,(r11+20) <== NOT EXECUTED 8009858: 34 21 ff ff addi r1,r1,-1 <== NOT EXECUTED 800985c: 59 61 00 14 sw (r11+20),r1 <== NOT EXECUTED
sc = rtems_semaphore_obtain(rtems_pipe_semaphore,
8009860: 78 02 08 01 mvhi r2,0x801 <== NOT EXECUTED 8009864: 38 42 c6 28 ori r2,r2,0xc628 <== NOT EXECUTED 8009868: 28 41 00 00 lw r1,(r2+0) <== NOT EXECUTED 800986c: 34 02 00 00 mvi r2,0 <== NOT EXECUTED 8009870: b8 40 18 00 mv r3,r2 <== NOT EXECUTED 8009874: fb ff f8 7f calli 8007a70 <rtems_semaphore_obtain> <== NOT EXECUTED 8009878: b8 20 70 00 mv r14,r1 <== NOT EXECUTED
RTEMS_WAIT, RTEMS_NO_TIMEOUT); /* WARN pipe not freed and pipep not set to NULL! */ if(sc != RTEMS_SUCCESSFUL)
800987c: 44 20 00 02 be r1,r0,8009884 <pipe_release+0x90> <== NOT EXECUTED
rtems_fatal_error_occurred(sc);
8009880: fb ff e3 88 calli 80026a0 <rtems_fatal_error_occurred> <== NOT EXECUTED
PIPE_UNLOCK(pipe);
8009884: 29 61 00 28 lw r1,(r11+40) <== NOT EXECUTED 8009888: fb ff f8 ca calli 8007bb0 <rtems_semaphore_release> <== NOT EXECUTED
if (pipe->Readers == 0 && pipe->Writers == 0) {
800988c: 29 62 00 10 lw r2,(r11+16) <== NOT EXECUTED 8009890: 5c 4e 00 07 bne r2,r14,80098ac <pipe_release+0xb8> <== NOT EXECUTED 8009894: 29 6e 00 14 lw r14,(r11+20) <== NOT EXECUTED 8009898: 5d c2 00 05 bne r14,r2,80098ac <pipe_release+0xb8> <== NOT EXECUTED
#if 0 /* To delete an anonymous pipe file when all users closed it */ if (pipe->Anonymous) delfile = TRUE; #endif pipe_free(pipe);
800989c: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 80098a0: fb ff ff c3 calli 80097ac <pipe_free> <== NOT EXECUTED
*pipep = NULL;
80098a4: 59 ae 00 00 sw (r13+0),r14 <== NOT EXECUTED
if(sc != RTEMS_SUCCESSFUL) rtems_fatal_error_occurred(sc); PIPE_UNLOCK(pipe); if (pipe->Readers == 0 && pipe->Writers == 0) {
80098a8: e0 00 00 0f bi 80098e4 <pipe_release+0xf0> <== NOT EXECUTED
delfile = TRUE; #endif pipe_free(pipe); *pipep = NULL; } else if (pipe->Readers == 0 && mode != LIBIO_FLAGS_WRITE)
80098ac: 64 42 00 00 cmpei r2,r2,0 <== NOT EXECUTED 80098b0: 7d 81 00 04 cmpnei r1,r12,4 <== NOT EXECUTED 80098b4: a0 22 10 00 and r2,r1,r2 <== NOT EXECUTED 80098b8: 44 40 00 03 be r2,r0,80098c4 <pipe_release+0xd0> <== NOT EXECUTED
/* Notify waiting Writers that all their partners left */ PIPE_WAKEUPWRITERS(pipe);
80098bc: 29 61 00 30 lw r1,(r11+48) <== NOT EXECUTED 80098c0: e0 00 00 07 bi 80098dc <pipe_release+0xe8> <== NOT EXECUTED
else if (pipe->Writers == 0 && mode != LIBIO_FLAGS_READ)
80098c4: 29 61 00 14 lw r1,(r11+20) <== NOT EXECUTED 80098c8: 7d 8c 00 02 cmpnei r12,r12,2 <== NOT EXECUTED 80098cc: 64 21 00 00 cmpei r1,r1,0 <== NOT EXECUTED 80098d0: a1 81 60 00 and r12,r12,r1 <== NOT EXECUTED 80098d4: 45 82 00 04 be r12,r2,80098e4 <pipe_release+0xf0> <== NOT EXECUTED
PIPE_WAKEUPREADERS(pipe);
80098d8: 29 61 00 2c lw r1,(r11+44) <== NOT EXECUTED 80098dc: 37 82 00 18 addi r2,sp,24 <== NOT EXECUTED 80098e0: f8 00 02 31 calli 800a1a4 <rtems_barrier_release> <== NOT EXECUTED
rtems_semaphore_release(rtems_pipe_semaphore);
80098e4: 78 01 08 01 mvhi r1,0x801 <== NOT EXECUTED 80098e8: 38 21 c6 28 ori r1,r1,0xc628 <== NOT EXECUTED 80098ec: 28 21 00 00 lw r1,(r1+0) <== NOT EXECUTED 80098f0: fb ff f8 b0 calli 8007bb0 <rtems_semaphore_release> <== NOT EXECUTED
if(iop->pathinfo.ops->unlink_h(&iop->pathinfo)) return -errno; #endif return 0; }
80098f4: 34 01 00 00 mvi r1,0 <== NOT EXECUTED 80098f8: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 80098fc: 2b 8b 00 14 lw r11,(sp+20) <== NOT EXECUTED 8009900: 2b 8c 00 10 lw r12,(sp+16) <== NOT EXECUTED 8009904: 2b 8d 00 0c lw r13,(sp+12) <== NOT EXECUTED 8009908: 2b 8e 00 08 lw r14,(sp+8) <== NOT EXECUTED 800990c: 37 9c 00 18 addi sp,sp,24 <== NOT EXECUTED 8009910: c3 a0 00 00 ret <== NOT EXECUTED
08009434 <pipe_write>: pipe_control_t *pipe, const void *buffer, size_t count, rtems_libio_t *iop ) {
8009434: 37 9c ff d8 addi sp,sp,-40 <== NOT EXECUTED 8009438: 5b 8b 00 24 sw (sp+36),r11 <== NOT EXECUTED 800943c: 5b 8c 00 20 sw (sp+32),r12 <== NOT EXECUTED 8009440: 5b 8d 00 1c sw (sp+28),r13 <== NOT EXECUTED 8009444: 5b 8e 00 18 sw (sp+24),r14 <== NOT EXECUTED 8009448: 5b 8f 00 14 sw (sp+20),r15 <== NOT EXECUTED 800944c: 5b 90 00 10 sw (sp+16),r16 <== NOT EXECUTED 8009450: 5b 91 00 0c sw (sp+12),r17 <== NOT EXECUTED 8009454: 5b 92 00 08 sw (sp+8),r18 <== NOT EXECUTED 8009458: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED 800945c: b8 60 70 00 mv r14,r3 <== NOT EXECUTED 8009460: b8 20 58 00 mv r11,r1 <== NOT EXECUTED 8009464: b8 40 88 00 mv r17,r2 <== NOT EXECUTED 8009468: b8 80 90 00 mv r18,r4 <== NOT EXECUTED
int chunk, chunk1, written = 0, ret = 0; /* Write nothing */ if (count == 0)
800946c: b8 60 60 00 mv r12,r3 <== NOT EXECUTED 8009470: 44 60 00 5a be r3,r0,80095d8 <pipe_write+0x1a4> <== NOT EXECUTED
return 0; if (! PIPE_LOCK(pipe))
8009474: 28 21 00 28 lw r1,(r1+40) <== NOT EXECUTED 8009478: 34 02 00 00 mvi r2,0 <== NOT EXECUTED 800947c: b8 40 18 00 mv r3,r2 <== NOT EXECUTED 8009480: fb ff f9 7c calli 8007a70 <rtems_semaphore_obtain> <== NOT EXECUTED 8009484: 34 0c ff fc mvi r12,-4 <== NOT EXECUTED 8009488: 5c 20 00 54 bne r1,r0,80095d8 <pipe_write+0x1a4> <== NOT EXECUTED
return -EINTR; if (pipe->Readers == 0) {
800948c: 29 62 00 10 lw r2,(r11+16) <== NOT EXECUTED 8009490: 34 0d ff e0 mvi r13,-32 <== NOT EXECUTED 8009494: b8 40 60 00 mv r12,r2 <== NOT EXECUTED 8009498: 44 41 00 4c be r2,r1,80095c8 <pipe_write+0x194> <== NOT EXECUTED
ret = -EPIPE; goto out_locked; } /* Write of PIPE_BUF bytes or less shall not be interleaved */ chunk = count <= pipe->Size ? count : 1;
800949c: 29 61 00 04 lw r1,(r11+4) <== NOT EXECUTED 80094a0: b9 c0 80 00 mv r16,r14 <== NOT EXECUTED 80094a4: 50 2e 00 02 bgeu r1,r14,80094ac <pipe_write+0x78> <== NOT EXECUTED 80094a8: 34 10 00 01 mvi r16,1 <== NOT EXECUTED 80094ac: 34 0c 00 00 mvi r12,0 <== NOT EXECUTED 80094b0: e0 00 00 44 bi 80095c0 <pipe_write+0x18c> <== NOT EXECUTED
while (written < count) { while (PIPE_SPACE(pipe) < chunk) { if (LIBIO_NODELAY(iop)) {
80094b4: 2a 4f 00 18 lw r15,(r18+24) <== NOT EXECUTED 80094b8: 21 ef 00 01 andi r15,r15,0x1 <== NOT EXECUTED 80094bc: 45 e0 00 03 be r15,r0,80094c8 <pipe_write+0x94> <== NOT EXECUTED 80094c0: 34 0d ff f5 mvi r13,-11 <== NOT EXECUTED 80094c4: e0 00 00 41 bi 80095c8 <pipe_write+0x194> <== NOT EXECUTED
ret = -EAGAIN; goto out_locked; } /* Wait until there is chunk bytes space or no reader exists */ pipe->waitingWriters ++;
80094c8: 29 62 00 1c lw r2,(r11+28) <== NOT EXECUTED
PIPE_UNLOCK(pipe);
80094cc: 29 61 00 28 lw r1,(r11+40) <== NOT EXECUTED
ret = -EAGAIN; goto out_locked; } /* Wait until there is chunk bytes space or no reader exists */ pipe->waitingWriters ++;
80094d0: 34 42 00 01 addi r2,r2,1 <== NOT EXECUTED 80094d4: 59 62 00 1c sw (r11+28),r2 <== NOT EXECUTED
PIPE_UNLOCK(pipe);
80094d8: fb ff f9 b6 calli 8007bb0 <rtems_semaphore_release> <== NOT EXECUTED
if (! PIPE_WRITEWAIT(pipe))
80094dc: 29 61 00 30 lw r1,(r11+48) <== NOT EXECUTED 80094e0: b9 e0 10 00 mv r2,r15 <== NOT EXECUTED 80094e4: f8 00 03 4f calli 800a220 <rtems_barrier_wait> <== NOT EXECUTED
ret = -EINTR; if (! PIPE_LOCK(pipe)) {
80094e8: 34 02 00 00 mvi r2,0 <== NOT EXECUTED
} /* Wait until there is chunk bytes space or no reader exists */ pipe->waitingWriters ++; PIPE_UNLOCK(pipe); if (! PIPE_WRITEWAIT(pipe))
80094ec: b8 20 68 00 mv r13,r1 <== NOT EXECUTED
ret = -EINTR; if (! PIPE_LOCK(pipe)) {
80094f0: b8 40 18 00 mv r3,r2 <== NOT EXECUTED
} /* Wait until there is chunk bytes space or no reader exists */ pipe->waitingWriters ++; PIPE_UNLOCK(pipe); if (! PIPE_WRITEWAIT(pipe))
80094f4: 44 2f 00 02 be r1,r15,80094fc <pipe_write+0xc8> <== NOT EXECUTED 80094f8: 34 0d ff fc mvi r13,-4 <== NOT EXECUTED
ret = -EINTR; if (! PIPE_LOCK(pipe)) {
80094fc: 29 61 00 28 lw r1,(r11+40) <== NOT EXECUTED 8009500: fb ff f9 5c calli 8007a70 <rtems_semaphore_obtain> <== NOT EXECUTED 8009504: 44 20 00 03 be r1,r0,8009510 <pipe_write+0xdc> <== NOT EXECUTED 8009508: 34 0d ff fc mvi r13,-4 <== NOT EXECUTED 800950c: e0 00 00 31 bi 80095d0 <pipe_write+0x19c> <== NOT EXECUTED
/* WARN waitingWriters not restored! */ ret = -EINTR; goto out_nolock; } pipe->waitingWriters --;
8009510: 29 62 00 1c lw r2,(r11+28) <== NOT EXECUTED 8009514: 34 42 ff ff addi r2,r2,-1 <== NOT EXECUTED 8009518: 59 62 00 1c sw (r11+28),r2 <== NOT EXECUTED
if (ret != 0)
800951c: 5d a1 00 2b bne r13,r1,80095c8 <pipe_write+0x194> <== NOT EXECUTED
goto out_locked; if (pipe->Readers == 0) {
8009520: 29 61 00 10 lw r1,(r11+16) <== NOT EXECUTED 8009524: 5c 2d 00 03 bne r1,r13,8009530 <pipe_write+0xfc> <== NOT EXECUTED 8009528: 34 0d ff e0 mvi r13,-32 <== NOT EXECUTED 800952c: e0 00 00 27 bi 80095c8 <pipe_write+0x194> <== NOT EXECUTED
/* Write of PIPE_BUF bytes or less shall not be interleaved */ chunk = count <= pipe->Size ? count : 1; while (written < count) { while (PIPE_SPACE(pipe) < chunk) {
8009530: 29 6f 00 04 lw r15,(r11+4) <== NOT EXECUTED 8009534: 29 61 00 0c lw r1,(r11+12) <== NOT EXECUTED 8009538: c9 e1 68 00 sub r13,r15,r1 <== NOT EXECUTED 800953c: 56 0d ff de bgu r16,r13,80094b4 <pipe_write+0x80> <== NOT EXECUTED
ret = -EPIPE; goto out_locked; } } chunk = MIN(count - written, PIPE_SPACE(pipe));
8009540: c9 cc 10 00 sub r2,r14,r12 <== NOT EXECUTED 8009544: 50 4d 00 02 bgeu r2,r13,800954c <pipe_write+0x118> <== NOT EXECUTED 8009548: b8 40 68 00 mv r13,r2 <== NOT EXECUTED
chunk1 = pipe->Size - PIPE_WSTART(pipe);
800954c: 29 63 00 08 lw r3,(r11+8) <== NOT EXECUTED 8009550: b9 e0 10 00 mv r2,r15 <== NOT EXECUTED 8009554: b4 23 08 00 add r1,r1,r3 <== NOT EXECUTED 8009558: f8 00 3e e2 calli 80190e0 <__umodsi3> <== NOT EXECUTED 800955c: c9 e1 78 00 sub r15,r15,r1 <== NOT EXECUTED 8009560: 29 63 00 00 lw r3,(r11+0) <== NOT EXECUTED 8009564: b6 2c 10 00 add r2,r17,r12 <== NOT EXECUTED
if (chunk > chunk1) {
8009568: 4d ed 00 09 bge r15,r13,800958c <pipe_write+0x158> <== NOT EXECUTED
memcpy(pipe->Buffer + PIPE_WSTART(pipe), buffer + written, chunk1);
800956c: b4 61 08 00 add r1,r3,r1 <== NOT EXECUTED 8009570: b9 e0 18 00 mv r3,r15 <== NOT EXECUTED 8009574: f8 00 09 0d calli 800b9a8 <memcpy> <== NOT EXECUTED
memcpy(pipe->Buffer, buffer + written + chunk1, chunk - chunk1);
8009578: b5 ec 10 00 add r2,r15,r12 <== NOT EXECUTED 800957c: 29 61 00 00 lw r1,(r11+0) <== NOT EXECUTED 8009580: b6 22 10 00 add r2,r17,r2 <== NOT EXECUTED 8009584: c9 af 18 00 sub r3,r13,r15 <== NOT EXECUTED 8009588: e0 00 00 03 bi 8009594 <pipe_write+0x160> <== NOT EXECUTED
} else memcpy(pipe->Buffer + PIPE_WSTART(pipe), buffer + written, chunk);
800958c: b4 61 08 00 add r1,r3,r1 <== NOT EXECUTED 8009590: b9 a0 18 00 mv r3,r13 <== NOT EXECUTED 8009594: f8 00 09 05 calli 800b9a8 <memcpy> <== NOT EXECUTED
pipe->Length += chunk;
8009598: 29 61 00 0c lw r1,(r11+12) <== NOT EXECUTED
if (pipe->waitingReaders > 0)
800959c: 29 62 00 18 lw r2,(r11+24) <== NOT EXECUTED
memcpy(pipe->Buffer, buffer + written + chunk1, chunk - chunk1); } else memcpy(pipe->Buffer + PIPE_WSTART(pipe), buffer + written, chunk); pipe->Length += chunk;
80095a0: b4 2d 08 00 add r1,r1,r13 <== NOT EXECUTED 80095a4: 59 61 00 0c sw (r11+12),r1 <== NOT EXECUTED
if (pipe->waitingReaders > 0)
80095a8: 44 40 00 04 be r2,r0,80095b8 <pipe_write+0x184> <== NOT EXECUTED
PIPE_WAKEUPREADERS(pipe);
80095ac: 29 61 00 2c lw r1,(r11+44) <== NOT EXECUTED 80095b0: 37 82 00 28 addi r2,sp,40 <== NOT EXECUTED 80095b4: f8 00 02 fc calli 800a1a4 <rtems_barrier_release> <== NOT EXECUTED
written += chunk;
80095b8: b5 8d 60 00 add r12,r12,r13 <== NOT EXECUTED 80095bc: 34 10 00 01 mvi r16,1 <== NOT EXECUTED
} /* Write of PIPE_BUF bytes or less shall not be interleaved */ chunk = count <= pipe->Size ? count : 1; while (written < count) {
80095c0: 55 cc ff dc bgu r14,r12,8009530 <pipe_write+0xfc> <== NOT EXECUTED 80095c4: 34 0d 00 00 mvi r13,0 <== NOT EXECUTED
/* Write of more than PIPE_BUF bytes can be interleaved */ chunk = 1; } out_locked: PIPE_UNLOCK(pipe);
80095c8: 29 61 00 28 lw r1,(r11+40) <== NOT EXECUTED 80095cc: fb ff f9 79 calli 8007bb0 <rtems_semaphore_release> <== NOT EXECUTED
/* Signal SIGPIPE */ if (ret == -EPIPE) kill(getpid(), SIGPIPE); #endif if (written > 0)
80095d0: 49 80 00 02 bg r12,r0,80095d8 <pipe_write+0x1a4> <== NOT EXECUTED 80095d4: b9 a0 60 00 mv r12,r13 <== NOT EXECUTED
return written; return ret; }
80095d8: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 80095dc: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 80095e0: 2b 8b 00 24 lw r11,(sp+36) <== NOT EXECUTED 80095e4: 2b 8c 00 20 lw r12,(sp+32) <== NOT EXECUTED 80095e8: 2b 8d 00 1c lw r13,(sp+28) <== NOT EXECUTED 80095ec: 2b 8e 00 18 lw r14,(sp+24) <== NOT EXECUTED 80095f0: 2b 8f 00 14 lw r15,(sp+20) <== NOT EXECUTED 80095f4: 2b 90 00 10 lw r16,(sp+16) <== NOT EXECUTED 80095f8: 2b 91 00 0c lw r17,(sp+12) <== NOT EXECUTED 80095fc: 2b 92 00 08 lw r18,(sp+8) <== NOT EXECUTED 8009600: 37 9c 00 28 addi sp,sp,40 <== NOT EXECUTED 8009604: c3 a0 00 00 ret <== NOT EXECUTED
08019638 <read>: ssize_t read( int fd, void *buffer, size_t count ) {
8019638: 37 9c ff e8 addi sp,sp,-24 801963c: 5b 8b 00 14 sw (sp+20),r11 8019640: 5b 8c 00 10 sw (sp+16),r12 8019644: 5b 8d 00 0c sw (sp+12),r13 8019648: 5b 8e 00 08 sw (sp+8),r14 801964c: 5b 9d 00 04 sw (sp+4),ra
ssize_t rc; rtems_libio_t *iop; rtems_libio_check_fd( fd );
8019650: 78 04 08 01 mvhi r4,0x801 8019654: 38 84 c0 10 ori r4,r4,0xc010 8019658: 28 84 00 00 lw r4,(r4+0)
ssize_t read( int fd, void *buffer, size_t count ) {
801965c: b8 40 68 00 mv r13,r2
ssize_t rc; rtems_libio_t *iop; rtems_libio_check_fd( fd );
8019660: 54 81 00 02 bgu r4,r1,8019668 <read+0x30> <== ALWAYS TAKEN
8019664: e0 00 00 10 bi 80196a4 <read+0x6c> <== NOT EXECUTED
iop = rtems_libio_iop( fd );
8019668: 34 02 00 03 mvi r2,3 801966c: 5b 83 00 18 sw (sp+24),r3 8019670: 78 0b 08 01 mvhi r11,0x801 8019674: fb ff 9a df calli 80001f0 <__ashlsi3> 8019678: 34 02 00 03 mvi r2,3 801967c: 39 6b c6 9c ori r11,r11,0xc69c 8019680: b8 20 70 00 mv r14,r1 8019684: fb ff 9a db calli 80001f0 <__ashlsi3> 8019688: 29 6c 00 00 lw r12,(r11+0) 801968c: b5 c1 08 00 add r1,r14,r1
rtems_libio_check_is_open( iop );
8019690: 2b 83 00 18 lw r3,(sp+24)
{ ssize_t rc; rtems_libio_t *iop; rtems_libio_check_fd( fd ); iop = rtems_libio_iop( fd );
8019694: b5 81 60 00 add r12,r12,r1
rtems_libio_check_is_open( iop );
8019698: 29 81 00 18 lw r1,(r12+24) 801969c: 20 22 01 00 andi r2,r1,0x100
80196a0: 5c 40 00 04 bne r2,r0,80196b0 <read+0x78>
80196a4: fb ff c6 1b calli 800af10 <__errno> 80196a8: 34 02 00 09 mvi r2,9 80196ac: e0 00 00 0e bi 80196e4 <read+0xac>
rtems_libio_check_buffer( buffer );
80196b0: 45 a0 00 05 be r13,r0,80196c4 <read+0x8c> <== NEVER TAKEN
rtems_libio_check_count( count );
80196b4: b8 60 58 00 mv r11,r3
80196b8: 44 60 00 1d be r3,r0,801972c <read+0xf4> <== NEVER TAKEN
rtems_libio_check_permissions( iop, LIBIO_FLAGS_READ );
80196bc: 20 21 00 02 andi r1,r1,0x2
80196c0: 5c 20 00 04 bne r1,r0,80196d0 <read+0x98> <== ALWAYS TAKEN
80196c4: fb ff c6 13 calli 800af10 <__errno> <== NOT EXECUTED 80196c8: 34 02 00 16 mvi r2,22 <== NOT EXECUTED 80196cc: e0 00 00 06 bi 80196e4 <read+0xac> <== NOT EXECUTED
/* * Now process the read(). */ if ( !iop->handlers->read_h )
80196d0: 29 81 00 40 lw r1,(r12+64) 80196d4: 28 24 00 08 lw r4,(r1+8)
80196d8: 5c 80 00 06 bne r4,r0,80196f0 <read+0xb8> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( ENOTSUP );
80196dc: fb ff c6 0d calli 800af10 <__errno> <== NOT EXECUTED 80196e0: 34 02 00 86 mvi r2,134 <== NOT EXECUTED
80196e4: 58 22 00 00 sw (r1+0),r2 80196e8: 34 0b ff ff mvi r11,-1 80196ec: e0 00 00 10 bi 801972c <read+0xf4>
rc = (*iop->handlers->read_h)( iop, buffer, count );
80196f0: b9 a0 10 00 mv r2,r13 80196f4: b9 80 08 00 mv r1,r12 80196f8: d8 80 00 00 call r4 80196fc: b8 20 58 00 mv r11,r1
if ( rc > 0 ) 8019700: 4c 01 00 0b bge r0,r1,801972c <read+0xf4> iop->offset += rc;
8019704: 34 02 00 1f mvi r2,31 8019708: fb ff 9b 0a calli 8000330 <__ashrsi3> 801970c: 29 82 00 14 lw r2,(r12+20) 8019710: 29 84 00 10 lw r4,(r12+16) 8019714: b5 62 10 00 add r2,r11,r2 8019718: f5 62 18 00 cmpgu r3,r11,r2 801971c: b4 24 08 00 add r1,r1,r4 8019720: b4 61 08 00 add r1,r3,r1 8019724: 59 82 00 14 sw (r12+20),r2 8019728: 59 81 00 10 sw (r12+16),r1
return rc; }
801972c: b9 60 08 00 mv r1,r11 8019730: 2b 9d 00 04 lw ra,(sp+4) 8019734: 2b 8b 00 14 lw r11,(sp+20) 8019738: 2b 8c 00 10 lw r12,(sp+16) 801973c: 2b 8d 00 0c lw r13,(sp+12) 8019740: 2b 8e 00 08 lw r14,(sp+8) 8019744: 37 9c 00 18 addi sp,sp,24 8019748: c3 a0 00 00 ret
0802833c <readlink>: ssize_t readlink( const char *pathname, char *buf, size_t bufsize ) {
802833c: 37 9c ff d8 addi sp,sp,-40 8028340: 5b 8b 00 14 sw (sp+20),r11 8028344: 5b 8c 00 10 sw (sp+16),r12 8028348: 5b 8d 00 0c sw (sp+12),r13 802834c: 5b 8e 00 08 sw (sp+8),r14 8028350: 5b 9d 00 04 sw (sp+4),ra 8028354: b8 40 68 00 mv r13,r2 8028358: b8 60 70 00 mv r14,r3 802835c: b8 20 60 00 mv r12,r1
rtems_filesystem_location_info_t loc; int result; if (!buf)
8028360: 5c 40 00 04 bne r2,r0,8028370 <readlink+0x34> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( EFAULT );
8028364: f8 00 69 6c calli 8042914 <__errno> <== NOT EXECUTED 8028368: 34 02 00 0e mvi r2,14 <== NOT EXECUTED 802836c: e0 00 00 14 bi 80283bc <readlink+0x80> <== NOT EXECUTED
result = rtems_filesystem_evaluate_path( pathname, strlen( pathname ),
8028370: f8 00 87 53 calli 804a0bc <strlen> 8028374: 34 03 00 00 mvi r3,0 8028378: 37 8b 00 18 addi r11,sp,24 802837c: b8 20 10 00 mv r2,r1 8028380: b9 60 20 00 mv r4,r11 8028384: b9 80 08 00 mv r1,r12 8028388: b8 60 28 00 mv r5,r3 802838c: fb ff 77 a2 calli 8006214 <rtems_filesystem_evaluate_path>
0, &loc, false ); if ( result != 0 )
8028390: 34 0c ff ff mvi r12,-1
8028394: 5c 20 00 2a bne r1,r0,802843c <readlink+0x100> <== NEVER TAKEN
return -1; if ( !loc.ops->node_type_h ){
8028398: 2b 82 00 24 lw r2,(sp+36) 802839c: 28 44 00 10 lw r4,(r2+16)
80283a0: 5c 81 00 0a bne r4,r1,80283c8 <readlink+0x8c> <== ALWAYS TAKEN
rtems_filesystem_freenode( &loc );
80283a4: 28 42 00 1c lw r2,(r2+28) <== NOT EXECUTED 80283a8: 44 44 00 03 be r2,r4,80283b4 <readlink+0x78> <== NOT EXECUTED 80283ac: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 80283b0: d8 40 00 00 call r2 <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( ENOTSUP );
80283b4: f8 00 69 58 calli 8042914 <__errno> <== NOT EXECUTED 80283b8: 34 02 00 86 mvi r2,134 <== NOT EXECUTED
80283bc: 58 22 00 00 sw (r1+0),r2 80283c0: 34 0c ff ff mvi r12,-1 80283c4: e0 00 00 1e bi 802843c <readlink+0x100>
} if ( (*loc.ops->node_type_h)( &loc ) != RTEMS_FILESYSTEM_SYM_LINK ){
80283c8: b9 60 08 00 mv r1,r11 80283cc: d8 80 00 00 call r4 80283d0: 34 02 00 04 mvi r2,4 80283d4: 2b 84 00 24 lw r4,(sp+36)
80283d8: 44 22 00 09 be r1,r2,80283fc <readlink+0xc0> rtems_filesystem_freenode( &loc );
80283dc: 44 80 00 05 be r4,r0,80283f0 <readlink+0xb4> <== NEVER TAKEN
80283e0: 28 82 00 1c lw r2,(r4+28)
80283e4: 44 40 00 03 be r2,r0,80283f0 <readlink+0xb4> <== NEVER TAKEN
80283e8: b9 60 08 00 mv r1,r11 80283ec: d8 40 00 00 call r2
rtems_set_errno_and_return_minus_one( EINVAL );
80283f0: f8 00 69 49 calli 8042914 <__errno> 80283f4: 34 02 00 16 mvi r2,22 80283f8: e3 ff ff f1 bi 80283bc <readlink+0x80>
} if ( !loc.ops->readlink_h ){
80283fc: 28 85 00 3c lw r5,(r4+60)
8028400: 5c a0 00 04 bne r5,r0,8028410 <readlink+0xd4> <== ALWAYS TAKEN
rtems_filesystem_freenode( &loc );
8028404: 28 82 00 1c lw r2,(r4+28) <== NOT EXECUTED 8028408: 5c 45 ff e9 bne r2,r5,80283ac <readlink+0x70> <== NOT EXECUTED 802840c: e3 ff ff ea bi 80283b4 <readlink+0x78> <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( ENOTSUP ); } result = (*loc.ops->readlink_h)( &loc, buf, bufsize );
8028410: b9 a0 10 00 mv r2,r13 8028414: b9 c0 18 00 mv r3,r14 8028418: b9 60 08 00 mv r1,r11 802841c: d8 a0 00 00 call r5 8028420: b8 20 60 00 mv r12,r1
rtems_filesystem_freenode( &loc );
8028424: 2b 81 00 24 lw r1,(sp+36)
8028428: 44 20 00 05 be r1,r0,802843c <readlink+0x100> <== NEVER TAKEN
802842c: 28 22 00 1c lw r2,(r1+28)
8028430: 44 40 00 03 be r2,r0,802843c <readlink+0x100> <== NEVER TAKEN
8028434: b9 60 08 00 mv r1,r11 8028438: d8 40 00 00 call r2
return result; }
802843c: b9 80 08 00 mv r1,r12 8028440: 2b 9d 00 04 lw ra,(sp+4) 8028444: 2b 8b 00 14 lw r11,(sp+20) 8028448: 2b 8c 00 10 lw r12,(sp+16) 802844c: 2b 8d 00 0c lw r13,(sp+12) 8028450: 2b 8e 00 08 lw r14,(sp+8) 8028454: 37 9c 00 28 addi sp,sp,40 8028458: c3 a0 00 00 ret
08003310 <readv>: ssize_t readv( int fd, const struct iovec *iov, int iovcnt ) {
8003310: 37 9c ff e4 addi sp,sp,-28 8003314: 5b 8b 00 1c sw (sp+28),r11 8003318: 5b 8c 00 18 sw (sp+24),r12 800331c: 5b 8d 00 14 sw (sp+20),r13 8003320: 5b 8e 00 10 sw (sp+16),r14 8003324: 5b 8f 00 0c sw (sp+12),r15 8003328: 5b 90 00 08 sw (sp+8),r16 800332c: 5b 9d 00 04 sw (sp+4),ra
int v; int bytes; rtems_libio_t *iop; bool all_zeros; rtems_libio_check_fd( fd );
8003330: 78 04 08 02 mvhi r4,0x802 8003334: 38 84 00 10 ori r4,r4,0x10 8003338: 28 84 00 00 lw r4,(r4+0)
ssize_t readv( int fd, const struct iovec *iov, int iovcnt ) {
800333c: b8 40 68 00 mv r13,r2 8003340: b8 60 80 00 mv r16,r3
int v; int bytes; rtems_libio_t *iop; bool all_zeros; rtems_libio_check_fd( fd );
8003344: 54 81 00 02 bgu r4,r1,800334c <readv+0x3c> <== ALWAYS TAKEN
8003348: e0 00 00 0e bi 8003380 <readv+0x70> <== NOT EXECUTED
iop = rtems_libio_iop( fd );
800334c: 34 02 00 03 mvi r2,3 8003350: fb ff f6 d8 calli 8000eb0 <__ashlsi3> 8003354: 78 0b 08 02 mvhi r11,0x802 8003358: 34 02 00 03 mvi r2,3 800335c: 39 6b 0e 70 ori r11,r11,0xe70 8003360: b8 20 70 00 mv r14,r1 8003364: fb ff f6 d3 calli 8000eb0 <__ashlsi3> 8003368: 29 6c 00 00 lw r12,(r11+0) 800336c: b5 c1 08 00 add r1,r14,r1 8003370: b5 81 60 00 add r12,r12,r1
rtems_libio_check_is_open( iop );
8003374: 29 81 00 18 lw r1,(r12+24) 8003378: 20 22 01 00 andi r2,r1,0x100
800337c: 5c 40 00 04 bne r2,r0,800338c <readv+0x7c> <== ALWAYS TAKEN
8003380: f8 00 28 e1 calli 800d704 <__errno> <== NOT EXECUTED 8003384: 34 02 00 09 mvi r2,9 <== NOT EXECUTED 8003388: e0 00 00 1e bi 8003400 <readv+0xf0> <== NOT EXECUTED
rtems_libio_check_permissions( iop, LIBIO_FLAGS_READ );
800338c: 20 21 00 02 andi r1,r1,0x2
8003390: 44 20 00 1a be r1,r0,80033f8 <readv+0xe8> <== NEVER TAKEN
/* * Argument validation on IO vector */ if ( !iov ) 8003394: 45 a0 00 19 be r13,r0,80033f8 <readv+0xe8> rtems_set_errno_and_return_minus_one( EINVAL ); if ( iovcnt <= 0 ) 8003398: 4a 00 00 02 bg r16,r0,80033a0 <readv+0x90>
800339c: e0 00 00 17 bi 80033f8 <readv+0xe8>
rtems_set_errno_and_return_minus_one( EINVAL ); if ( iovcnt > IOV_MAX )
80033a0: 34 01 04 00 mvi r1,1024
80033a4: 4c 30 00 02 bge r1,r16,80033ac <readv+0x9c> <== ALWAYS TAKEN
80033a8: e0 00 00 14 bi 80033f8 <readv+0xe8> <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( EINVAL ); if ( !iop->handlers->read_h )
80033ac: 29 81 00 40 lw r1,(r12+64) 80033b0: 28 21 00 08 lw r1,(r1+8)
80033b4: 5c 20 00 04 bne r1,r0,80033c4 <readv+0xb4> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( ENOTSUP );
80033b8: f8 00 28 d3 calli 800d704 <__errno> <== NOT EXECUTED 80033bc: 34 02 00 86 mvi r2,134 <== NOT EXECUTED 80033c0: e0 00 00 10 bi 8003400 <readv+0xf0> <== NOT EXECUTED
80033c4: 34 02 00 00 mvi r2,0 80033c8: b9 a0 08 00 mv r1,r13 80033cc: 34 0f 00 01 mvi r15,1 80033d0: b8 40 18 00 mv r3,r2
all_zeros = true; for ( total=0, v=0 ; v < iovcnt ; v++ ) { ssize_t old; if ( !iov[v].iov_base )
80033d4: 28 24 00 00 lw r4,(r1+0)
* are obvious errors in the iovec. So this extra loop ensures * that we do not do anything if there is an argument error. */ all_zeros = true; for ( total=0, v=0 ; v < iovcnt ; v++ ) {
80033d8: 34 42 00 01 addi r2,r2,1
ssize_t old; if ( !iov[v].iov_base ) 80033dc: 44 80 00 07 be r4,r0,80033f8 <readv+0xe8> if ( iov[v].iov_len < 0 ) rtems_set_errno_and_return_minus_one( EINVAL ); /* check for wrap */ old = total; total += iov[v].iov_len;
80033e0: 28 24 00 04 lw r4,(r1+4)
* are obvious errors in the iovec. So this extra loop ensures * that we do not do anything if there is an argument error. */ all_zeros = true; for ( total=0, v=0 ; v < iovcnt ; v++ ) {
80033e4: 34 21 00 08 addi r1,r1,8
old = total; total += iov[v].iov_len; if ( total < old ) rtems_set_errno_and_return_minus_one( EINVAL ); if ( iov[v].iov_len )
80033e8: 64 85 00 00 cmpei r5,r4,0
if ( iov[v].iov_len < 0 ) rtems_set_errno_and_return_minus_one( EINVAL ); /* check for wrap */ old = total; total += iov[v].iov_len;
80033ec: b4 64 20 00 add r4,r3,r4
if ( total < old ) rtems_set_errno_and_return_minus_one( EINVAL ); if ( iov[v].iov_len )
80033f0: c8 05 28 00 sub r5,r0,r5
rtems_set_errno_and_return_minus_one( EINVAL ); /* check for wrap */ old = total; total += iov[v].iov_len; if ( total < old ) 80033f4: 4c 83 00 05 bge r4,r3,8003408 <readv+0xf8> rtems_set_errno_and_return_minus_one( EINVAL );
80033f8: f8 00 28 c3 calli 800d704 <__errno> 80033fc: 34 02 00 16 mvi r2,22 8003400: 58 22 00 00 sw (r1+0),r2 8003404: e0 00 00 13 bi 8003450 <readv+0x140>
if ( iov[v].iov_len )
8003408: a1 e5 78 00 and r15,r15,r5
* are obvious errors in the iovec. So this extra loop ensures * that we do not do anything if there is an argument error. */ all_zeros = true; for ( total=0, v=0 ; v < iovcnt ; v++ ) { 800340c: 4c 50 00 03 bge r2,r16,8003418 <readv+0x108>
8003410: b8 80 18 00 mv r3,r4 8003414: e3 ff ff f0 bi 80033d4 <readv+0xc4>
/* * A readv with all zeros logically has no effect. Even though * OpenGroup didn't address this case as they did with writev(), * we will handle it the same way for symmetry. */ if ( all_zeros == true ) {
8003418: b9 e0 58 00 mv r11,r15
800341c: 45 e0 00 03 be r15,r0,8003428 <readv+0x118>
8003420: 34 0b 00 00 mvi r11,0 8003424: e0 00 00 1c bi 8003494 <readv+0x184>
/* * Now process the readv(). */ for ( total=0, v=0 ; v < iovcnt ; v++ ) { bytes = (*iop->handlers->read_h)( iop, iov[v].iov_base, iov[v].iov_len );
8003428: 29 81 00 40 lw r1,(r12+64) 800342c: 29 a2 00 00 lw r2,(r13+0) 8003430: 29 a3 00 04 lw r3,(r13+4) 8003434: 28 24 00 08 lw r4,(r1+8) 8003438: b9 80 08 00 mv r1,r12
} /* * Now process the readv(). */ for ( total=0, v=0 ; v < iovcnt ; v++ ) {
800343c: 35 ef 00 01 addi r15,r15,1
bytes = (*iop->handlers->read_h)( iop, iov[v].iov_base, iov[v].iov_len );
8003440: d8 80 00 00 call r4 8003444: b8 20 70 00 mv r14,r1
if ( bytes < 0 ) return -1; if ( bytes > 0 ) { iop->offset += bytes;
8003448: 34 02 00 1f mvi r2,31
* Now process the readv(). */ for ( total=0, v=0 ; v < iovcnt ; v++ ) { bytes = (*iop->handlers->read_h)( iop, iov[v].iov_base, iov[v].iov_len ); if ( bytes < 0 )
800344c: 4c 20 00 03 bge r1,r0,8003458 <readv+0x148> <== ALWAYS TAKEN
8003450: 34 0b ff ff mvi r11,-1 8003454: e0 00 00 10 bi 8003494 <readv+0x184>
return -1; if ( bytes > 0 ) {
8003458: 44 20 00 0b be r1,r0,8003484 <readv+0x174> <== NEVER TAKEN
iop->offset += bytes;
800345c: fb ff f6 e5 calli 8000ff0 <__ashrsi3> 8003460: 29 82 00 14 lw r2,(r12+20) 8003464: 29 84 00 10 lw r4,(r12+16)
total += bytes;
8003468: b5 6e 58 00 add r11,r11,r14
if ( bytes < 0 ) return -1; if ( bytes > 0 ) { iop->offset += bytes;
800346c: b5 c2 10 00 add r2,r14,r2 8003470: f5 c2 18 00 cmpgu r3,r14,r2 8003474: b4 24 08 00 add r1,r1,r4 8003478: b4 61 08 00 add r1,r3,r1 800347c: 59 81 00 10 sw (r12+16),r1 8003480: 59 82 00 14 sw (r12+20),r2
total += bytes; } if (bytes != iov[ v ].iov_len)
8003484: 29 a1 00 04 lw r1,(r13+4)
} /* * Now process the readv(). */ for ( total=0, v=0 ; v < iovcnt ; v++ ) {
8003488: 35 ad 00 08 addi r13,r13,8
if ( bytes > 0 ) { iop->offset += bytes; total += bytes; } if (bytes != iov[ v ].iov_len)
800348c: 5d c1 00 02 bne r14,r1,8003494 <readv+0x184> <== NEVER TAKEN
} /* * Now process the readv(). */ for ( total=0, v=0 ; v < iovcnt ; v++ ) { 8003490: 4a 0f ff e6 bg r16,r15,8003428 <readv+0x118> if (bytes != iov[ v ].iov_len) break; } return total; }
8003494: b9 60 08 00 mv r1,r11 8003498: 2b 9d 00 04 lw ra,(sp+4) 800349c: 2b 8b 00 1c lw r11,(sp+28) 80034a0: 2b 8c 00 18 lw r12,(sp+24) 80034a4: 2b 8d 00 14 lw r13,(sp+20) 80034a8: 2b 8e 00 10 lw r14,(sp+16) 80034ac: 2b 8f 00 0c lw r15,(sp+12) 80034b0: 2b 90 00 08 lw r16,(sp+8) 80034b4: 37 9c 00 1c addi sp,sp,28 80034b8: c3 a0 00 00 ret
080197ec <realloc>: { uintptr_t old_size; char *new_area; uintptr_t resize; MSBUMP(realloc_calls, 1);
80197ec: 37 9c ff e8 addi sp,sp,-24 80197f0: 5b 8b 00 14 sw (sp+20),r11 80197f4: 5b 8c 00 10 sw (sp+16),r12 80197f8: 5b 8d 00 0c sw (sp+12),r13 80197fc: 5b 8e 00 08 sw (sp+8),r14 8019800: 5b 9d 00 04 sw (sp+4),ra 8019804: 78 03 08 01 mvhi r3,0x801 8019808: 38 63 c6 a8 ori r3,r3,0xc6a8 801980c: 28 65 00 10 lw r5,(r3+16)
/* * Do not attempt to allocate memory if in a critical section or ISR. */ if (_System_state_Is_up(_System_state_Get())) {
8019810: 78 04 08 01 mvhi r4,0x801 8019814: 38 84 c9 c0 ori r4,r4,0xc9c0 8019818: 28 84 00 00 lw r4,(r4+0)
{ uintptr_t old_size; char *new_area; uintptr_t resize; MSBUMP(realloc_calls, 1);
801981c: 34 a5 00 01 addi r5,r5,1 8019820: b8 20 58 00 mv r11,r1 8019824: 58 65 00 10 sw (r3+16),r5
/* * Do not attempt to allocate memory if in a critical section or ISR. */ if (_System_state_Is_up(_System_state_Get())) {
8019828: 34 01 00 03 mvi r1,3
{ uintptr_t old_size; char *new_area; uintptr_t resize; MSBUMP(realloc_calls, 1);
801982c: b8 40 60 00 mv r12,r2
/* * Do not attempt to allocate memory if in a critical section or ISR. */ if (_System_state_Is_up(_System_state_Get())) {
8019830: 5c 81 00 09 bne r4,r1,8019854 <realloc+0x68> <== NEVER TAKEN
if (_Thread_Dispatch_disable_level > 0)
8019834: 78 01 08 01 mvhi r1,0x801 8019838: 38 21 c8 24 ori r1,r1,0xc824 801983c: 28 22 00 00 lw r2,(r1+0)
8019840: 5c 40 00 36 bne r2,r0,8019918 <realloc+0x12c> <== NEVER TAKEN
return (void *) 0; if (_ISR_Nest_level > 0)
8019844: 78 01 08 01 mvhi r1,0x801 8019848: 38 21 c8 bc ori r1,r1,0xc8bc 801984c: 28 21 00 00 lw r1,(r1+0)
8019850: 5c 22 00 32 bne r1,r2,8019918 <realloc+0x12c> <== NEVER TAKEN
} /* * Continue with realloc(). */ if ( !ptr ) 8019854: 5d 60 00 05 bne r11,r0,8019868 <realloc+0x7c> return malloc( size );
8019858: b9 80 08 00 mv r1,r12 801985c: fb ff b7 8c calli 800768c <malloc> 8019860: b8 20 58 00 mv r11,r1 8019864: e0 00 00 2e bi 801991c <realloc+0x130>
if ( !size ) {
8019868: 5d 80 00 05 bne r12,r0,801987c <realloc+0x90> <== ALWAYS TAKEN
free( ptr );
801986c: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8019870: fb ff b5 f5 calli 8007044 <free> <== NOT EXECUTED 8019874: b9 80 58 00 mv r11,r12 <== NOT EXECUTED
return (void *) 0;
8019878: e0 00 00 29 bi 801991c <realloc+0x130> <== NOT EXECUTED
} if ( !_Protected_heap_Get_block_size(RTEMS_Malloc_Heap, ptr, &old_size) ) {
801987c: 78 0d 08 01 mvhi r13,0x801 8019880: 39 ad c0 1c ori r13,r13,0xc01c 8019884: 29 a1 00 00 lw r1,(r13+0) 8019888: b9 60 10 00 mv r2,r11 801988c: 37 83 00 18 addi r3,sp,24 8019890: f8 00 00 70 calli 8019a50 <_Protected_heap_Get_block_size> 8019894: b8 20 70 00 mv r14,r1
8019898: 5c 20 00 06 bne r1,r0,80198b0 <realloc+0xc4> errno = EINVAL;
801989c: fb ff c5 9d calli 800af10 <__errno> 80198a0: 34 02 00 16 mvi r2,22 80198a4: 58 22 00 00 sw (r1+0),r2 80198a8: b9 c0 58 00 mv r11,r14
return (void *) 0;
80198ac: e0 00 00 1c bi 801991c <realloc+0x130>
#if defined(RTEMS_MALLOC_BOUNDARY_HELPERS) if (rtems_malloc_boundary_helpers) resize += (*rtems_malloc_boundary_helpers->overhead)(); #endif if ( _Protected_heap_Resize_block( RTEMS_Malloc_Heap, ptr, resize ) ) {
80198b0: 29 a1 00 00 lw r1,(r13+0) 80198b4: b9 60 10 00 mv r2,r11 80198b8: b9 80 18 00 mv r3,r12 80198bc: f8 00 00 7d calli 8019ab0 <_Protected_heap_Resize_block> 80198c0: b8 20 70 00 mv r14,r1
80198c4: 5c 20 00 16 bne r1,r0,801991c <realloc+0x130> * There used to be a free on this error case but it is wrong to * free the memory per OpenGroup Single UNIX Specification V2 * and the C Standard. */ new_area = malloc( size );
80198c8: b9 80 08 00 mv r1,r12 80198cc: fb ff b7 70 calli 800768c <malloc>
MSBUMP(malloc_calls, (uint32_t) -1); /* subtract off the malloc */
80198d0: 78 02 08 01 mvhi r2,0x801 80198d4: 38 42 c6 a8 ori r2,r2,0xc6a8
* There used to be a free on this error case but it is wrong to * free the memory per OpenGroup Single UNIX Specification V2 * and the C Standard. */ new_area = malloc( size );
80198d8: b8 20 68 00 mv r13,r1
MSBUMP(malloc_calls, (uint32_t) -1); /* subtract off the malloc */
80198dc: 28 41 00 04 lw r1,(r2+4) 80198e0: 34 21 ff ff addi r1,r1,-1 80198e4: 58 41 00 04 sw (r2+4),r1
if ( !new_area ) { 80198e8: 45 ae 00 0c be r13,r14,8019918 <realloc+0x12c> return (void *) 0; } memcpy( new_area, ptr, (size < old_size) ? size : old_size );
80198ec: 2b 81 00 18 lw r1,(sp+24) 80198f0: b9 80 18 00 mv r3,r12
80198f4: 50 2c 00 02 bgeu r1,r12,80198fc <realloc+0x110> <== NEVER TAKEN
80198f8: b8 20 18 00 mv r3,r1 80198fc: b9 60 10 00 mv r2,r11 8019900: b9 a0 08 00 mv r1,r13 8019904: fb ff c8 29 calli 800b9a8 <memcpy>
free( ptr );
8019908: b9 60 08 00 mv r1,r11 801990c: fb ff b5 ce calli 8007044 <free> 8019910: b9 a0 58 00 mv r11,r13
return new_area;
8019914: e0 00 00 02 bi 801991c <realloc+0x130> 8019918: 34 0b 00 00 mvi r11,0
}
801991c: b9 60 08 00 mv r1,r11 8019920: 2b 9d 00 04 lw ra,(sp+4) 8019924: 2b 8b 00 14 lw r11,(sp+20) 8019928: 2b 8c 00 10 lw r12,(sp+16) 801992c: 2b 8d 00 0c lw r13,(sp+12) 8019930: 2b 8e 00 08 lw r14,(sp+8) 8019934: 37 9c 00 18 addi sp,sp,24 8019938: c3 a0 00 00 ret
0802845c <rmdir>: #include <rtems/seterr.h> int rmdir( const char *pathname ) {
802845c: 37 9c ff c0 addi sp,sp,-64 8028460: 5b 8b 00 18 sw (sp+24),r11 8028464: 5b 8c 00 14 sw (sp+20),r12 8028468: 5b 8d 00 10 sw (sp+16),r13 802846c: 5b 8e 00 0c sw (sp+12),r14 8028470: 5b 8f 00 08 sw (sp+8),r15 8028474: 5b 9d 00 04 sw (sp+4),ra 8028478: b8 20 78 00 mv r15,r1
/* * Get the parent node of the node we wish to remove. Find the parent path. */ parentpathlen = rtems_filesystem_dirname ( pathname );
802847c: fb ff 77 18 calli 80060dc <rtems_filesystem_dirname> 8028480: b8 20 68 00 mv r13,r1
if ( parentpathlen == 0 ) 8028484: 5c 20 00 19 bne r1,r0,80284e8 <rmdir+0x8c> rtems_filesystem_get_start_loc( pathname, &i, &parentloc );
8028488: 41 e1 00 00 lbu r1,(r15+0) 802848c: 64 23 00 5c cmpei r3,r1,92 8028490: 64 22 00 2f cmpei r2,r1,47 8028494: b8 62 10 00 or r2,r3,r2
8028498: 5c 4d 00 02 bne r2,r13,80284a0 <rmdir+0x44> <== ALWAYS TAKEN
802849c: 5c 20 00 0a bne r1,r0,80284c4 <rmdir+0x68> <== NOT EXECUTED
80284a0: 78 01 08 06 mvhi r1,0x806 80284a4: 38 21 b2 f0 ori r1,r1,0xb2f0 80284a8: 28 22 00 00 lw r2,(r1+0) 80284ac: 34 03 00 14 mvi r3,20 80284b0: 37 81 00 30 addi r1,sp,48 80284b4: 34 42 00 18 addi r2,r2,24 80284b8: f8 00 77 b9 calli 804639c <memcpy> 80284bc: 34 0c 00 00 mvi r12,0 80284c0: e0 00 00 12 bi 8028508 <rmdir+0xac>
80284c4: 78 01 08 06 mvhi r1,0x806 <== NOT EXECUTED 80284c8: 38 21 b2 f0 ori r1,r1,0xb2f0 <== NOT EXECUTED 80284cc: 28 22 00 00 lw r2,(r1+0) <== NOT EXECUTED 80284d0: 34 03 00 14 mvi r3,20 <== NOT EXECUTED 80284d4: 37 81 00 30 addi r1,sp,48 <== NOT EXECUTED 80284d8: 34 42 00 04 addi r2,r2,4 <== NOT EXECUTED 80284dc: f8 00 77 b0 calli 804639c <memcpy> <== NOT EXECUTED 80284e0: b9 a0 60 00 mv r12,r13 <== NOT EXECUTED 80284e4: e0 00 00 09 bi 8028508 <rmdir+0xac> <== NOT EXECUTED
else { result = rtems_filesystem_evaluate_path(pathname, parentpathlen,
80284e8: b9 e0 08 00 mv r1,r15 80284ec: b9 a0 10 00 mv r2,r13 80284f0: 34 03 00 02 mvi r3,2 80284f4: 37 84 00 30 addi r4,sp,48 80284f8: 34 05 00 00 mvi r5,0 80284fc: fb ff 77 46 calli 8006214 <rtems_filesystem_evaluate_path>
RTEMS_LIBIO_PERMS_WRITE, &parentloc, false ); if ( result != 0 )
8028500: 5c 20 00 60 bne r1,r0,8028680 <rmdir+0x224> <== NEVER TAKEN
8028504: 34 0c 00 01 mvi r12,1
/* * Start from the parent to find the node that should be under it. */ loc = parentloc;
8028508: 37 8b 00 1c addi r11,sp,28 802850c: 37 8e 00 30 addi r14,sp,48 8028510: 34 03 00 14 mvi r3,20 8028514: b9 c0 10 00 mv r2,r14 8028518: b9 60 08 00 mv r1,r11 802851c: f8 00 77 a0 calli 804639c <memcpy>
name = pathname + parentpathlen;
8028520: b5 ed 68 00 add r13,r15,r13
name += rtems_filesystem_prefix_separators( name, strlen( name ) );
8028524: b9 a0 08 00 mv r1,r13 8028528: f8 00 86 e5 calli 804a0bc <strlen> 802852c: b8 20 10 00 mv r2,r1 8028530: b9 a0 08 00 mv r1,r13 8028534: fb ff 76 db calli 80060a0 <rtems_filesystem_prefix_separators> 8028538: b5 a1 68 00 add r13,r13,r1
result = rtems_filesystem_evaluate_relative_path( name , strlen( name ),
802853c: b9 a0 08 00 mv r1,r13 8028540: f8 00 86 df calli 804a0bc <strlen> 8028544: 34 03 00 00 mvi r3,0 8028548: b8 20 10 00 mv r2,r1 802854c: b9 60 20 00 mv r4,r11 8028550: b9 a0 08 00 mv r1,r13 8028554: b8 60 28 00 mv r5,r3 8028558: fb ff 76 f5 calli 800612c <rtems_filesystem_evaluate_relative_path>
0, &loc, false ); if ( result != 0 ) { 802855c: 44 20 00 09 be r1,r0,8028580 <rmdir+0x124> if ( free_parentloc )
8028560: 45 80 00 48 be r12,r0,8028680 <rmdir+0x224> <== ALWAYS TAKEN
rtems_filesystem_freenode( &parentloc );
8028564: 2b 81 00 3c lw r1,(sp+60) <== NOT EXECUTED 8028568: 44 20 00 46 be r1,r0,8028680 <rmdir+0x224> <== NOT EXECUTED 802856c: 28 22 00 1c lw r2,(r1+28) <== NOT EXECUTED 8028570: 44 40 00 44 be r2,r0,8028680 <rmdir+0x224> <== NOT EXECUTED 8028574: b9 c0 08 00 mv r1,r14 <== NOT EXECUTED 8028578: d8 40 00 00 call r2 <== NOT EXECUTED 802857c: e0 00 00 41 bi 8028680 <rmdir+0x224> <== NOT EXECUTED
/* * Verify you can remove this node as a directory. */ if ( !loc.ops->node_type_h ){
8028580: 2b 82 00 28 lw r2,(sp+40) 8028584: 28 43 00 10 lw r3,(r2+16)
8028588: 5c 61 00 04 bne r3,r1,8028598 <rmdir+0x13c> <== ALWAYS TAKEN
rtems_filesystem_freenode( &loc );
802858c: 28 42 00 1c lw r2,(r2+28) <== NOT EXECUTED 8028590: 5c 43 00 1d bne r2,r3,8028604 <rmdir+0x1a8> <== NOT EXECUTED 8028594: e0 00 00 1e bi 802860c <rmdir+0x1b0> <== NOT EXECUTED
if ( free_parentloc ) rtems_filesystem_freenode( &parentloc ); rtems_set_errno_and_return_minus_one( ENOTSUP ); } if ( (*loc.ops->node_type_h)( &loc ) != RTEMS_FILESYSTEM_DIRECTORY ){
8028598: b9 60 08 00 mv r1,r11 802859c: d8 60 00 00 call r3 80285a0: 34 02 00 01 mvi r2,1
80285a4: 44 22 00 11 be r1,r2,80285e8 <rmdir+0x18c> rtems_filesystem_freenode( &loc );
80285a8: 2b 81 00 28 lw r1,(sp+40)
80285ac: 44 20 00 05 be r1,r0,80285c0 <rmdir+0x164> <== NEVER TAKEN
80285b0: 28 22 00 1c lw r2,(r1+28)
80285b4: 44 40 00 03 be r2,r0,80285c0 <rmdir+0x164> <== NEVER TAKEN
80285b8: b9 60 08 00 mv r1,r11 80285bc: d8 40 00 00 call r2
if ( free_parentloc )
80285c0: 45 80 00 07 be r12,r0,80285dc <rmdir+0x180> <== NEVER TAKEN
rtems_filesystem_freenode( &parentloc );
80285c4: 2b 81 00 3c lw r1,(sp+60)
80285c8: 44 20 00 05 be r1,r0,80285dc <rmdir+0x180> <== NEVER TAKEN
80285cc: 28 22 00 1c lw r2,(r1+28)
80285d0: 44 40 00 03 be r2,r0,80285dc <rmdir+0x180> <== NEVER TAKEN
80285d4: 37 81 00 30 addi r1,sp,48 80285d8: d8 40 00 00 call r2
rtems_set_errno_and_return_minus_one( ENOTDIR );
80285dc: f8 00 68 ce calli 8042914 <__errno> 80285e0: 34 02 00 14 mvi r2,20 80285e4: e0 00 00 13 bi 8028630 <rmdir+0x1d4>
/* * Use the filesystems rmnod to remove the node. */ if ( !loc.handlers->rmnod_h ){
80285e8: 2b 81 00 24 lw r1,(sp+36) 80285ec: 28 23 00 34 lw r3,(r1+52)
80285f0: 5c 60 00 12 bne r3,r0,8028638 <rmdir+0x1dc> <== ALWAYS TAKEN
rtems_filesystem_freenode( &loc );
80285f4: 2b 81 00 28 lw r1,(sp+40) <== NOT EXECUTED 80285f8: 44 23 00 05 be r1,r3,802860c <rmdir+0x1b0> <== NOT EXECUTED 80285fc: 28 22 00 1c lw r2,(r1+28) <== NOT EXECUTED 8028600: 44 40 00 03 be r2,r0,802860c <rmdir+0x1b0> <== NOT EXECUTED 8028604: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8028608: d8 40 00 00 call r2 <== NOT EXECUTED
if ( free_parentloc )
802860c: 45 80 00 07 be r12,r0,8028628 <rmdir+0x1cc> <== NOT EXECUTED
rtems_filesystem_freenode( &parentloc );
8028610: 2b 81 00 3c lw r1,(sp+60) <== NOT EXECUTED 8028614: 44 20 00 05 be r1,r0,8028628 <rmdir+0x1cc> <== NOT EXECUTED 8028618: 28 22 00 1c lw r2,(r1+28) <== NOT EXECUTED 802861c: 44 40 00 03 be r2,r0,8028628 <rmdir+0x1cc> <== NOT EXECUTED 8028620: 37 81 00 30 addi r1,sp,48 <== NOT EXECUTED 8028624: d8 40 00 00 call r2 <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( ENOTSUP );
8028628: f8 00 68 bb calli 8042914 <__errno> <== NOT EXECUTED 802862c: 34 02 00 86 mvi r2,134 <== NOT EXECUTED
8028630: 58 22 00 00 sw (r1+0),r2 8028634: e0 00 00 13 bi 8028680 <rmdir+0x224>
} result = (*loc.handlers->rmnod_h)( &parentloc, &loc );
8028638: b9 c0 08 00 mv r1,r14 802863c: b9 60 10 00 mv r2,r11 8028640: d8 60 00 00 call r3 8028644: b8 20 68 00 mv r13,r1
rtems_filesystem_freenode( &loc );
8028648: 2b 81 00 28 lw r1,(sp+40)
802864c: 44 20 00 05 be r1,r0,8028660 <rmdir+0x204> <== NEVER TAKEN
8028650: 28 22 00 1c lw r2,(r1+28)
8028654: 44 40 00 03 be r2,r0,8028660 <rmdir+0x204> <== NEVER TAKEN
8028658: b9 60 08 00 mv r1,r11 802865c: d8 40 00 00 call r2
if ( free_parentloc ) 8028660: 45 80 00 09 be r12,r0,8028684 <rmdir+0x228> rtems_filesystem_freenode( &parentloc );
8028664: 2b 81 00 3c lw r1,(sp+60)
8028668: 44 20 00 07 be r1,r0,8028684 <rmdir+0x228> <== NEVER TAKEN
802866c: 28 22 00 1c lw r2,(r1+28)
8028670: 44 40 00 05 be r2,r0,8028684 <rmdir+0x228> <== NEVER TAKEN
8028674: 37 81 00 30 addi r1,sp,48 8028678: d8 40 00 00 call r2 802867c: e0 00 00 02 bi 8028684 <rmdir+0x228> 8028680: 34 0d ff ff mvi r13,-1
return result; }
8028684: b9 a0 08 00 mv r1,r13 8028688: 2b 9d 00 04 lw ra,(sp+4) 802868c: 2b 8b 00 18 lw r11,(sp+24) 8028690: 2b 8c 00 14 lw r12,(sp+20) 8028694: 2b 8d 00 10 lw r13,(sp+16) 8028698: 2b 8e 00 0c lw r14,(sp+12) 802869c: 2b 8f 00 08 lw r15,(sp+8) 80286a0: 37 9c 00 40 addi sp,sp,64 80286a4: c3 a0 00 00 ret
08012a64 <rtems_assoc_name_bad>: uint32_t bad_value #else uint32_t bad_value __attribute((unused)) #endif ) {
8012a64: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED
sprintf(bad_buffer, "< %" PRId32 "[0x%" PRIx32 " ] >", bad_value, bad_value); #else static char bad_buffer[40] = "<assocnamebad.c: : BAD NAME>"; #endif return bad_buffer; }
8012a68: 38 21 91 ac ori r1,r1,0x91ac <== NOT EXECUTED 8012a6c: c3 a0 00 00 ret <== NOT EXECUTED
0800f450 <rtems_assoc_name_by_local>: const char *rtems_assoc_name_by_local( const rtems_assoc_t *ap, uint32_t local_value ) {
800f450: 37 9c ff f8 addi sp,sp,-8 800f454: 5b 8b 00 08 sw (sp+8),r11 800f458: 5b 9d 00 04 sw (sp+4),ra 800f45c: b8 40 58 00 mv r11,r2
const rtems_assoc_t *nap; nap = rtems_assoc_ptr_by_local(ap, local_value);
800f460: f8 00 00 0a calli 800f488 <rtems_assoc_ptr_by_local>
if (nap)
800f464: 44 20 00 03 be r1,r0,800f470 <rtems_assoc_name_by_local+0x20><== NEVER TAKEN
return nap->name;
800f468: 28 21 00 00 lw r1,(r1+0) 800f46c: e0 00 00 03 bi 800f478 <rtems_assoc_name_by_local+0x28>
return rtems_assoc_name_bad(local_value);
800f470: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 800f474: f8 00 0d 7c calli 8012a64 <rtems_assoc_name_bad> <== NOT EXECUTED
}
800f478: 2b 9d 00 04 lw ra,(sp+4) 800f47c: 2b 8b 00 08 lw r11,(sp+8) 800f480: 37 9c 00 08 addi sp,sp,8 800f484: c3 a0 00 00 ret
0800ae78 <rtems_assoc_ptr_by_local>: const rtems_assoc_t *rtems_assoc_ptr_by_local( const rtems_assoc_t *ap, uint32_t local_value ) {
800ae78: 37 9c ff f4 addi sp,sp,-12 800ae7c: 5b 8b 00 0c sw (sp+12),r11 800ae80: 5b 8c 00 08 sw (sp+8),r12 800ae84: 5b 9d 00 04 sw (sp+4),ra 800ae88: b8 20 58 00 mv r11,r1
const rtems_assoc_t *default_ap = 0; if (rtems_assoc_is_default(ap))
800ae8c: 28 21 00 00 lw r1,(r1+0)
const rtems_assoc_t *rtems_assoc_ptr_by_local( const rtems_assoc_t *ap, uint32_t local_value ) {
800ae90: b8 40 60 00 mv r12,r2
const rtems_assoc_t *default_ap = 0; if (rtems_assoc_is_default(ap))
800ae94: 44 20 00 07 be r1,r0,800aeb0 <rtems_assoc_ptr_by_local+0x38><== NEVER TAKEN
800ae98: 78 02 08 01 mvhi r2,0x801 800ae9c: 38 42 a8 60 ori r2,r2,0xa860 800aea0: f8 00 04 9c calli 800c110 <strcmp>
800aea4: 5c 20 00 03 bne r1,r0,800aeb0 <rtems_assoc_ptr_by_local+0x38><== ALWAYS TAKEN
default_ap = ap++;
800aea8: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 800aeac: e0 00 00 05 bi 800aec0 <rtems_assoc_ptr_by_local+0x48> <== NOT EXECUTED
800aeb0: 34 01 00 00 mvi r1,0 800aeb4: e0 00 00 04 bi 800aec4 <rtems_assoc_ptr_by_local+0x4c>
for ( ; ap->name; ap++) if (ap->local_value == local_value)
800aeb8: 29 62 00 04 lw r2,(r11+4)
800aebc: 44 4c 00 05 be r2,r12,800aed0 <rtems_assoc_ptr_by_local+0x58> const rtems_assoc_t *default_ap = 0; if (rtems_assoc_is_default(ap)) default_ap = ap++; for ( ; ap->name; ap++)
800aec0: 35 6b 00 0c addi r11,r11,12 800aec4: 29 62 00 00 lw r2,(r11+0)
800aec8: 5c 40 ff fc bne r2,r0,800aeb8 <rtems_assoc_ptr_by_local+0x40>
800aecc: b8 20 58 00 mv r11,r1
if (ap->local_value == local_value) return ap; return default_ap; }
800aed0: b9 60 08 00 mv r1,r11 800aed4: 2b 9d 00 04 lw ra,(sp+4) 800aed8: 2b 8b 00 0c lw r11,(sp+12) 800aedc: 2b 8c 00 08 lw r12,(sp+8) 800aee0: 37 9c 00 0c addi sp,sp,12 800aee4: c3 a0 00 00 ret
08009fc0 <rtems_assoc_ptr_by_remote>: const rtems_assoc_t *rtems_assoc_ptr_by_remote( const rtems_assoc_t *ap, uint32_t remote_value ) {
8009fc0: 37 9c ff f4 addi sp,sp,-12 8009fc4: 5b 8b 00 0c sw (sp+12),r11 8009fc8: 5b 8c 00 08 sw (sp+8),r12 8009fcc: 5b 9d 00 04 sw (sp+4),ra 8009fd0: b8 20 58 00 mv r11,r1
const rtems_assoc_t *default_ap = 0; if (rtems_assoc_is_default(ap))
8009fd4: 28 21 00 00 lw r1,(r1+0)
const rtems_assoc_t *rtems_assoc_ptr_by_remote( const rtems_assoc_t *ap, uint32_t remote_value ) {
8009fd8: b8 40 60 00 mv r12,r2
const rtems_assoc_t *default_ap = 0; if (rtems_assoc_is_default(ap))
8009fdc: 44 20 00 07 be r1,r0,8009ff8 <rtems_assoc_ptr_by_remote+0x38><== NEVER TAKEN
8009fe0: 78 02 08 01 mvhi r2,0x801 8009fe4: 38 42 a8 60 ori r2,r2,0xa860 8009fe8: f8 00 08 4a calli 800c110 <strcmp>
8009fec: 5c 20 00 03 bne r1,r0,8009ff8 <rtems_assoc_ptr_by_remote+0x38><== ALWAYS TAKEN
default_ap = ap++;
8009ff0: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8009ff4: e0 00 00 05 bi 800a008 <rtems_assoc_ptr_by_remote+0x48> <== NOT EXECUTED
8009ff8: 34 01 00 00 mvi r1,0 8009ffc: e0 00 00 04 bi 800a00c <rtems_assoc_ptr_by_remote+0x4c>
for ( ; ap->name; ap++) if (ap->remote_value == remote_value)
800a000: 29 62 00 08 lw r2,(r11+8)
800a004: 44 4c 00 05 be r2,r12,800a018 <rtems_assoc_ptr_by_remote+0x58> const rtems_assoc_t *default_ap = 0; if (rtems_assoc_is_default(ap)) default_ap = ap++; for ( ; ap->name; ap++)
800a008: 35 6b 00 0c addi r11,r11,12 800a00c: 29 62 00 00 lw r2,(r11+0)
800a010: 5c 40 ff fc bne r2,r0,800a000 <rtems_assoc_ptr_by_remote+0x40>
800a014: b8 20 58 00 mv r11,r1
if (ap->remote_value == remote_value) return ap; return default_ap; }
800a018: b9 60 08 00 mv r1,r11 800a01c: 2b 9d 00 04 lw ra,(sp+4) 800a020: 2b 8b 00 0c lw r11,(sp+12) 800a024: 2b 8c 00 08 lw r12,(sp+8) 800a028: 37 9c 00 0c addi sp,sp,12 800a02c: c3 a0 00 00 ret
0800ab9c <rtems_assoc_remote_by_local>: uint32_t rtems_assoc_remote_by_local( const rtems_assoc_t *ap, uint32_t local_value ) {
800ab9c: 37 9c ff fc addi sp,sp,-4 <== NOT EXECUTED 800aba0: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
const rtems_assoc_t *nap; nap = rtems_assoc_ptr_by_local(ap, local_value);
800aba4: f8 00 00 b5 calli 800ae78 <rtems_assoc_ptr_by_local> <== NOT EXECUTED
if (nap)
800aba8: b8 20 10 00 mv r2,r1 <== NOT EXECUTED 800abac: 44 20 00 02 be r1,r0,800abb4 <rtems_assoc_remote_by_local+0x18><== NOT EXECUTED
return nap->remote_value;
800abb0: 28 22 00 08 lw r2,(r1+8) <== NOT EXECUTED
return 0; }
800abb4: b8 40 08 00 mv r1,r2 <== NOT EXECUTED 800abb8: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 800abbc: 37 9c 00 04 addi sp,sp,4 <== NOT EXECUTED 800abc0: c3 a0 00 00 ret <== NOT EXECUTED
08000ea0 <rtems_bsp_cmdline_get_param>: const char *rtems_bsp_cmdline_get_param( const char *name, char *value, size_t length ) {
8000ea0: 37 9c ff f0 addi sp,sp,-16 8000ea4: 5b 8b 00 10 sw (sp+16),r11 8000ea8: 5b 8c 00 0c sw (sp+12),r12 8000eac: 5b 8d 00 08 sw (sp+8),r13 8000eb0: 5b 9d 00 04 sw (sp+4),ra
const char *p; if ( !name )
8000eb4: 34 0d 00 00 mvi r13,0
const char *rtems_bsp_cmdline_get_param( const char *name, char *value, size_t length ) {
8000eb8: b8 40 58 00 mv r11,r2 8000ebc: b8 60 60 00 mv r12,r3
const char *p; if ( !name ) 8000ec0: 44 2d 00 1d be r1,r13,8000f34 <rtems_bsp_cmdline_get_param+0x94> return NULL; if ( !value ) 8000ec4: 44 4d 00 1d be r2,r13,8000f38 <rtems_bsp_cmdline_get_param+0x98> return NULL; if ( !length ) 8000ec8: 44 6d 00 1b be r3,r13,8000f34 <rtems_bsp_cmdline_get_param+0x94> return NULL; value[0] = '\0';
8000ecc: 30 4d 00 00 sb (r2+0),r13
p = rtems_bsp_cmdline_get_param_raw( name );
8000ed0: f8 00 00 21 calli 8000f54 <rtems_bsp_cmdline_get_param_raw>
if ( !p ) 8000ed4: 44 2d 00 18 be r1,r13,8000f34 <rtems_bsp_cmdline_get_param+0x94>
8000ed8: b9 a0 20 00 mv r4,r13
int i; int quotes; const char *p = start; quotes=0; for (i=0 ; *p && i<length-1; ) {
8000edc: 35 8c ff ff addi r12,r12,-1
value[0] = '\0'; p = rtems_bsp_cmdline_get_param_raw( name ); if ( !p )
8000ee0: b9 60 28 00 mv r5,r11 8000ee4: b9 a0 10 00 mv r2,r13
int quotes; const char *p = start; quotes=0; for (i=0 ; *p && i<length-1; ) { if ( *p == '\"' ) {
8000ee8: 34 07 00 22 mvi r7,34
quotes++; } else if ( ((quotes % 2) == 0) && *p == ' ' )
8000eec: 34 03 00 20 mvi r3,32 8000ef0: e0 00 00 0b bi 8000f1c <rtems_bsp_cmdline_get_param+0x7c>
int quotes; const char *p = start; quotes=0; for (i=0 ; *p && i<length-1; ) { if ( *p == '\"' ) { 8000ef4: 5c c7 00 03 bne r6,r7,8000f00 <rtems_bsp_cmdline_get_param+0x60> quotes++;
8000ef8: 34 84 00 01 addi r4,r4,1 8000efc: e0 00 00 03 bi 8000f08 <rtems_bsp_cmdline_get_param+0x68>
} else if ( ((quotes % 2) == 0) && *p == ' ' ) 8000f00: 5d 00 00 02 bne r8,r0,8000f08 <rtems_bsp_cmdline_get_param+0x68> 8000f04: 44 c3 00 0d be r6,r3,8000f38 <rtems_bsp_cmdline_get_param+0x98> break; value[i++] = *p++; value[i] = '\0';
8000f08: 34 08 00 00 mvi r8,0
for (i=0 ; *p && i<length-1; ) { if ( *p == '\"' ) { quotes++; } else if ( ((quotes % 2) == 0) && *p == ' ' ) break; value[i++] = *p++;
8000f0c: 30 a6 00 00 sb (r5+0),r6
value[i] = '\0';
8000f10: 30 a8 00 01 sb (r5+1),r8
for (i=0 ; *p && i<length-1; ) { if ( *p == '\"' ) { quotes++; } else if ( ((quotes % 2) == 0) && *p == ' ' ) break; value[i++] = *p++;
8000f14: 34 42 00 01 addi r2,r2,1
value[i] = '\0';
8000f18: 34 a5 00 01 addi r5,r5,1
int i; int quotes; const char *p = start; quotes=0; for (i=0 ; *p && i<length-1; ) {
8000f1c: b4 22 30 00 add r6,r1,r2 8000f20: 40 c6 00 00 lbu r6,(r6+0)
if ( *p == '\"' ) { quotes++; } else if ( ((quotes % 2) == 0) && *p == ' ' )
8000f24: 20 88 00 01 andi r8,r4,0x1
int i; int quotes; const char *p = start; quotes=0; for (i=0 ; *p && i<length-1; ) { 8000f28: 44 c0 00 04 be r6,r0,8000f38 <rtems_bsp_cmdline_get_param+0x98>
8000f2c: 55 82 ff f2 bgu r12,r2,8000ef4 <rtems_bsp_cmdline_get_param+0x54><== ALWAYS TAKEN
8000f30: e0 00 00 02 bi 8000f38 <rtems_bsp_cmdline_get_param+0x98> <== NOT EXECUTED
8000f34: 34 0b 00 00 mvi r11,0
return NULL; copy_string( p, value, length ); return value; }
8000f38: b9 60 08 00 mv r1,r11 8000f3c: 2b 9d 00 04 lw ra,(sp+4) 8000f40: 2b 8b 00 10 lw r11,(sp+16) 8000f44: 2b 8c 00 0c lw r12,(sp+12) 8000f48: 2b 8d 00 08 lw r13,(sp+8) 8000f4c: 37 9c 00 10 addi sp,sp,16 8000f50: c3 a0 00 00 ret
08000f8c <rtems_bsp_cmdline_get_param_rhs>: const char *rtems_bsp_cmdline_get_param_rhs( const char *name, char *value, size_t length ) {
8000f8c: 37 9c ff f0 addi sp,sp,-16 8000f90: 5b 8b 00 10 sw (sp+16),r11 8000f94: 5b 8c 00 0c sw (sp+12),r12 8000f98: 5b 8d 00 08 sw (sp+8),r13 8000f9c: 5b 9d 00 04 sw (sp+4),ra 8000fa0: b8 20 68 00 mv r13,r1 8000fa4: b8 40 58 00 mv r11,r2
const char *p; const char *rhs; char *d; p = rtems_bsp_cmdline_get_param( name, value, length );
8000fa8: fb ff ff be calli 8000ea0 <rtems_bsp_cmdline_get_param> 8000fac: b8 20 60 00 mv r12,r1
if ( !p )
8000fb0: 44 20 00 1b be r1,r0,800101c <rtems_bsp_cmdline_get_param_rhs+0x90><== NEVER TAKEN
return NULL; rhs = &p[strlen(name)];
8000fb4: b9 a0 08 00 mv r1,r13 8000fb8: f8 00 2c 5c calli 800c128 <strlen> 8000fbc: b5 81 18 00 add r3,r12,r1
if ( *rhs != '=' )
8000fc0: 40 62 00 00 lbu r2,(r3+0) 8000fc4: 34 01 00 3d mvi r1,61
8000fc8: 5c 41 00 15 bne r2,r1,800101c <rtems_bsp_cmdline_get_param_rhs+0x90><== NEVER TAKEN
return NULL; rhs++; if ( *rhs == '\"' )
8000fcc: 40 62 00 01 lbu r2,(r3+1) 8000fd0: 34 01 00 22 mvi r1,34
rhs = &p[strlen(name)]; if ( *rhs != '=' ) return NULL; rhs++;
8000fd4: 34 64 00 01 addi r4,r3,1
if ( *rhs == '\"' ) 8000fd8: 5c 41 00 02 bne r2,r1,8000fe0 <rtems_bsp_cmdline_get_param_rhs+0x54> rhs++;
8000fdc: 34 64 00 02 addi r4,r3,2 8000fe0: b9 60 18 00 mv r3,r11 8000fe4: e0 00 00 03 bi 8000ff0 <rtems_bsp_cmdline_get_param_rhs+0x64>
for ( d=value ; *rhs ; ) *d++ = *rhs++;
8000fe8: 30 61 00 00 sb (r3+0),r1 8000fec: 34 63 00 01 addi r3,r3,1
return NULL; rhs++; if ( *rhs == '\"' ) rhs++; for ( d=value ; *rhs ; )
8000ff0: 40 81 00 00 lbu r1,(r4+0)
*d++ = *rhs++;
8000ff4: 34 84 00 01 addi r4,r4,1
return NULL; rhs++; if ( *rhs == '\"' ) rhs++; for ( d=value ; *rhs ; ) 8000ff8: 5c 20 ff fc bne r1,r0,8000fe8 <rtems_bsp_cmdline_get_param_rhs+0x5c> *d++ = *rhs++; if ( *(d-1) == '\"' )
8000ffc: 40 64 ff ff lbu r4,(r3+-1) 8001000: 34 02 00 22 mvi r2,34 8001004: 34 61 ff ff addi r1,r3,-1
8001008: 5c 82 00 02 bne r4,r2,8001010 <rtems_bsp_cmdline_get_param_rhs+0x84>
800100c: b8 20 18 00 mv r3,r1
d--; *d = '\0';
8001010: 34 01 00 00 mvi r1,0 8001014: 30 61 00 00 sb (r3+0),r1
return value;
8001018: e0 00 00 02 bi 8001020 <rtems_bsp_cmdline_get_param_rhs+0x94> 800101c: 34 0b 00 00 mvi r11,0
}
8001020: b9 60 08 00 mv r1,r11 8001024: 2b 9d 00 04 lw ra,(sp+4) 8001028: 2b 8b 00 10 lw r11,(sp+16) 800102c: 2b 8c 00 0c lw r12,(sp+12) 8001030: 2b 8d 00 08 lw r13,(sp+8) 8001034: 37 9c 00 10 addi sp,sp,16 8001038: c3 a0 00 00 ret
0800355c <rtems_clock_get_tod>: #include <rtems/score/watchdog.h> rtems_status_code rtems_clock_get_tod( rtems_time_of_day *time_buffer ) {
800355c: 37 9c ff c0 addi sp,sp,-64 8003560: 5b 8b 00 0c sw (sp+12),r11 8003564: 5b 8c 00 08 sw (sp+8),r12 8003568: 5b 9d 00 04 sw (sp+4),ra 800356c: b8 20 58 00 mv r11,r1
rtems_time_of_day *tmbuf = time_buffer; struct tm time; struct timeval now; if ( !time_buffer )
8003570: 34 01 00 09 mvi r1,9
8003574: 45 60 00 2b be r11,r0,8003620 <rtems_clock_get_tod+0xc4> <== NEVER TAKEN
return RTEMS_INVALID_ADDRESS; if ( !_TOD_Is_set )
8003578: 78 01 08 02 mvhi r1,0x802 800357c: 38 21 a6 30 ori r1,r1,0xa630 8003580: 40 22 00 00 lbu r2,(r1+0) 8003584: 34 01 00 0b mvi r1,11
8003588: 44 40 00 26 be r2,r0,8003620 <rtems_clock_get_tod+0xc4> <== NEVER TAKEN
{ ISR_Level level; struct timespec now; suseconds_t useconds; _ISR_Disable(level);
800358c: 90 00 60 00 rcsr r12,IE 8003590: 34 01 ff fe mvi r1,-2 8003594: a1 81 08 00 and r1,r12,r1 8003598: d0 01 00 00 wcsr IE,r1
_TOD_Get( &now );
800359c: 37 81 00 34 addi r1,sp,52 80035a0: f8 00 05 3a calli 8004a88 <_TOD_Get>
_ISR_Enable(level);
80035a4: d0 0c 00 00 wcsr IE,r12
useconds = (suseconds_t)now.tv_nsec; useconds /= (suseconds_t)TOD_NANOSECONDS_PER_MICROSECOND; time->tv_sec = now.tv_sec;
80035a8: 2b 81 00 34 lw r1,(sp+52)
time->tv_usec = useconds;
80035ac: 34 02 03 e8 mvi r2,1000
_ISR_Enable(level); useconds = (suseconds_t)now.tv_nsec; useconds /= (suseconds_t)TOD_NANOSECONDS_PER_MICROSECOND; time->tv_sec = now.tv_sec;
80035b0: 5b 81 00 3c sw (sp+60),r1
time->tv_usec = useconds;
80035b4: 2b 81 00 38 lw r1,(sp+56) 80035b8: f8 00 6a 72 calli 801df80 <__divsi3> 80035bc: 5b 81 00 40 sw (sp+64),r1
/* Obtain the current time */ _TOD_Get_timeval( &now ); /* Split it into a closer format */ gmtime_r( &now.tv_sec, &time );
80035c0: 37 82 00 10 addi r2,sp,16 80035c4: 37 81 00 3c addi r1,sp,60 80035c8: f8 00 29 23 calli 800da54 <gmtime_r>
/* Now adjust it to the RTEMS format */ tmbuf->year = time.tm_year + 1900; tmbuf->month = time.tm_mon + 1; tmbuf->day = time.tm_mday;
80035cc: 2b 81 00 1c lw r1,(sp+28)
/* Split it into a closer format */ gmtime_r( &now.tv_sec, &time ); /* Now adjust it to the RTEMS format */ tmbuf->year = time.tm_year + 1900;
80035d0: 2b 83 00 24 lw r3,(sp+36)
tmbuf->month = time.tm_mon + 1;
80035d4: 2b 82 00 20 lw r2,(sp+32)
tmbuf->day = time.tm_mday;
80035d8: 59 61 00 08 sw (r11+8),r1
tmbuf->hour = time.tm_hour;
80035dc: 2b 81 00 18 lw r1,(sp+24)
/* Split it into a closer format */ gmtime_r( &now.tv_sec, &time ); /* Now adjust it to the RTEMS format */ tmbuf->year = time.tm_year + 1900;
80035e0: 34 63 07 6c addi r3,r3,1900
tmbuf->month = time.tm_mon + 1;
80035e4: 34 42 00 01 addi r2,r2,1
tmbuf->day = time.tm_mday; tmbuf->hour = time.tm_hour;
80035e8: 59 61 00 0c sw (r11+12),r1
tmbuf->minute = time.tm_min;
80035ec: 2b 81 00 14 lw r1,(sp+20)
/* Split it into a closer format */ gmtime_r( &now.tv_sec, &time ); /* Now adjust it to the RTEMS format */ tmbuf->year = time.tm_year + 1900;
80035f0: 59 63 00 00 sw (r11+0),r3
tmbuf->month = time.tm_mon + 1;
80035f4: 59 62 00 04 sw (r11+4),r2
tmbuf->day = time.tm_mday; tmbuf->hour = time.tm_hour; tmbuf->minute = time.tm_min;
80035f8: 59 61 00 10 sw (r11+16),r1
tmbuf->second = time.tm_sec;
80035fc: 2b 81 00 10 lw r1,(sp+16) 8003600: 59 61 00 14 sw (r11+20),r1
tmbuf->ticks = now.tv_usec /
8003604: 78 01 08 02 mvhi r1,0x802 8003608: 38 21 20 c4 ori r1,r1,0x20c4 800360c: 28 22 00 0c lw r2,(r1+12) 8003610: 2b 81 00 40 lw r1,(sp+64) 8003614: f8 00 6a ba calli 801e0fc <__udivsi3> 8003618: 59 61 00 18 sw (r11+24),r1 800361c: 34 01 00 00 mvi r1,0
rtems_configuration_get_microseconds_per_tick(); return RTEMS_SUCCESSFUL; }
8003620: 2b 9d 00 04 lw ra,(sp+4) 8003624: 2b 8b 00 0c lw r11,(sp+12) 8003628: 2b 8c 00 08 lw r12,(sp+8) 800362c: 37 9c 00 40 addi sp,sp,64 8003630: c3 a0 00 00 ret
0801013c <rtems_clock_set_nanoseconds_extension>: * error code - if unsuccessful */ rtems_status_code rtems_clock_set_nanoseconds_extension( rtems_nanoseconds_extension_routine routine ) {
801013c: b8 20 18 00 mv r3,r1
if ( !routine )
8010140: 34 01 00 09 mvi r1,9
8010144: 44 60 00 05 be r3,r0,8010158 <rtems_clock_set_nanoseconds_extension+0x1c><== ALWAYS TAKEN
return RTEMS_INVALID_ADDRESS; _Watchdog_Nanoseconds_since_tick_handler = routine;
8010148: 78 02 08 03 mvhi r2,0x803 <== NOT EXECUTED 801014c: 38 42 dd cc ori r2,r2,0xddcc <== NOT EXECUTED 8010150: 58 43 00 00 sw (r2+0),r3 <== NOT EXECUTED 8010154: 34 01 00 00 mvi r1,0 <== NOT EXECUTED
return RTEMS_SUCCESSFUL; }
8010158: c3 a0 00 00 ret
08001a5c <rtems_cpu_usage_report_with_plugin>: void rtems_cpu_usage_report_with_plugin( void *context, rtems_printk_plugin_t print ) {
8001a5c: 37 9c ff 84 addi sp,sp,-124 8001a60: 5b 8b 00 44 sw (sp+68),r11 8001a64: 5b 8c 00 40 sw (sp+64),r12 8001a68: 5b 8d 00 3c sw (sp+60),r13 8001a6c: 5b 8e 00 38 sw (sp+56),r14 8001a70: 5b 8f 00 34 sw (sp+52),r15 8001a74: 5b 90 00 30 sw (sp+48),r16 8001a78: 5b 91 00 2c sw (sp+44),r17 8001a7c: 5b 92 00 28 sw (sp+40),r18 8001a80: 5b 93 00 24 sw (sp+36),r19 8001a84: 5b 94 00 20 sw (sp+32),r20 8001a88: 5b 95 00 1c sw (sp+28),r21 8001a8c: 5b 96 00 18 sw (sp+24),r22 8001a90: 5b 97 00 14 sw (sp+20),r23 8001a94: 5b 98 00 10 sw (sp+16),r24 8001a98: 5b 99 00 0c sw (sp+12),r25 8001a9c: 5b 9b 00 08 sw (sp+8),fp 8001aa0: 5b 9d 00 04 sw (sp+4),ra 8001aa4: b8 40 68 00 mv r13,r2 8001aa8: b8 20 70 00 mv r14,r1
Timestamp_Control uptime, total, ran; #else uint32_t total_units = 0; #endif if ( !print )
8001aac: 44 40 00 5e be r2,r0,8001c24 <rtems_cpu_usage_report_with_plugin+0x1c8><== NEVER TAKEN
* When not using nanosecond CPU usage resolution, we have to count * the number of "ticks" we gave credit for to give the user a rough * guideline as to what each number means proportionally. */ #ifndef __RTEMS_USE_TICKS_FOR_STATISTICS__ _TOD_Get_uptime( &uptime );
8001ab0: 37 91 00 70 addi r17,sp,112 8001ab4: ba 20 08 00 mv r1,r17 8001ab8: f8 00 0c 1a calli 8004b20 <_TOD_Get_uptime>
_Timestamp_Subtract( &CPU_usage_Uptime_at_last_reset, &uptime, &total );
8001abc: 37 97 00 68 addi r23,sp,104 8001ac0: 78 01 08 02 mvhi r1,0x802 8001ac4: 38 21 a8 50 ori r1,r1,0xa850 8001ac8: ba 20 10 00 mv r2,r17 8001acc: ba e0 18 00 mv r3,r23 8001ad0: f8 00 16 82 calli 80074d8 <_Timespec_Subtract>
} } } #endif (*print)(
8001ad4: 78 02 08 01 mvhi r2,0x801 8001ad8: b9 c0 08 00 mv r1,r14 8001adc: 78 0b 08 02 mvhi r11,0x802 8001ae0: 38 42 f4 58 ori r2,r2,0xf458
/* * If this is the currently executing thread, account for time * since the last context switch. */ ran = the_thread->cpu_time_used; if ( _Thread_Executing->Object.id == the_thread->Object.id ) {
8001ae4: 78 0f 08 02 mvhi r15,0x802
} } } #endif (*print)(
8001ae8: d9 a0 00 00 call r13 8001aec: 39 6b a5 b8 ori r11,r11,0xa5b8
/* * If this is the currently executing thread, account for time * since the last context switch. */ ran = the_thread->cpu_time_used; if ( _Thread_Executing->Object.id == the_thread->Object.id ) {
8001af0: 39 ef a6 d8 ori r15,r15,0xa6d8
the_thread = (Thread_Control *)information->local_table[ i ]; if ( !the_thread ) continue; rtems_object_get_name( the_thread->Object.id, sizeof(name), name );
8001af4: 37 96 00 48 addi r22,sp,72
_Timestamp_Subtract( &_Thread_Time_of_last_context_switch, &uptime, &used ); _Timestamp_Add_to( &ran, &used ); }; _Timestamp_Divide( &ran, &total, &ival, &fval );
8001af8: 37 95 00 60 addi r21,sp,96 8001afc: 37 9b 00 78 addi fp,sp,120
/* * Print the information */ (*print)( context,
8001b00: 78 19 08 01 mvhi r25,0x801
* since the last context switch. */ ran = the_thread->cpu_time_used; if ( _Thread_Executing->Object.id == the_thread->Object.id ) { Timestamp_Control used; _Timestamp_Subtract(
8001b04: 37 94 00 58 addi r20,sp,88 8001b08: 78 18 08 02 mvhi r24,0x802
); for ( api_index = 1 ; api_index <= OBJECTS_APIS_LAST ; api_index++ ) { if ( !_Objects_Information_table[ api_index ] )
8001b0c: 29 61 00 00 lw r1,(r11+0)
8001b10: 44 20 00 38 be r1,r0,8001bf0 <rtems_cpu_usage_report_with_plugin+0x194> continue; information = _Objects_Information_table[ api_index ][ 1 ];
8001b14: 28 30 00 04 lw r16,(r1+4)
if ( information ) {
8001b18: 34 13 00 04 mvi r19,4 8001b1c: 34 12 00 01 mvi r18,1
8001b20: 5e 00 00 30 bne r16,r0,8001be0 <rtems_cpu_usage_report_with_plugin+0x184><== ALWAYS TAKEN
8001b24: e0 00 00 33 bi 8001bf0 <rtems_cpu_usage_report_with_plugin+0x194><== NOT EXECUTED
for ( i=1 ; i <= information->maximum ; i++ ) { the_thread = (Thread_Control *)information->local_table[ i ];
8001b28: 2a 01 00 1c lw r1,(r16+28)
api_index++ ) { if ( !_Objects_Information_table[ api_index ] ) continue; information = _Objects_Information_table[ api_index ][ 1 ]; if ( information ) { for ( i=1 ; i <= information->maximum ; i++ ) {
8001b2c: 36 52 00 01 addi r18,r18,1
the_thread = (Thread_Control *)information->local_table[ i ];
8001b30: b4 33 08 00 add r1,r1,r19 8001b34: 28 2c 00 00 lw r12,(r1+0)
api_index++ ) { if ( !_Objects_Information_table[ api_index ] ) continue; information = _Objects_Information_table[ api_index ][ 1 ]; if ( information ) { for ( i=1 ; i <= information->maximum ; i++ ) {
8001b38: 36 73 00 04 addi r19,r19,4
the_thread = (Thread_Control *)information->local_table[ i ]; if ( !the_thread )
8001b3c: 45 80 00 29 be r12,r0,8001be0 <rtems_cpu_usage_report_with_plugin+0x184><== NEVER TAKEN
continue; rtems_object_get_name( the_thread->Object.id, sizeof(name), name );
8001b40: 29 81 00 08 lw r1,(r12+8) 8001b44: f8 00 07 74 calli 8003914 <rtems_object_get_name>
(*print)(
8001b48: 29 83 00 08 lw r3,(r12+8) 8001b4c: 78 02 08 01 mvhi r2,0x801 8001b50: 38 42 f5 cc ori r2,r2,0xf5cc 8001b54: b9 c0 08 00 mv r1,r14 8001b58: ba c0 20 00 mv r4,r22 8001b5c: d9 a0 00 00 call r13
#ifndef __RTEMS_USE_TICKS_FOR_STATISTICS__ /* * If this is the currently executing thread, account for time * since the last context switch. */ ran = the_thread->cpu_time_used;
8001b60: 29 81 00 84 lw r1,(r12+132) 8001b64: 5b 81 00 60 sw (sp+96),r1 8001b68: 29 82 00 88 lw r2,(r12+136)
if ( _Thread_Executing->Object.id == the_thread->Object.id ) {
8001b6c: 29 e1 00 00 lw r1,(r15+0)
#ifndef __RTEMS_USE_TICKS_FOR_STATISTICS__ /* * If this is the currently executing thread, account for time * since the last context switch. */ ran = the_thread->cpu_time_used;
8001b70: 5b 82 00 64 sw (sp+100),r2
if ( _Thread_Executing->Object.id == the_thread->Object.id ) {
8001b74: 28 22 00 08 lw r2,(r1+8) 8001b78: 29 81 00 08 lw r1,(r12+8)
8001b7c: 5c 41 00 09 bne r2,r1,8001ba0 <rtems_cpu_usage_report_with_plugin+0x144> Timestamp_Control used; _Timestamp_Subtract(
8001b80: bb 00 08 00 mv r1,r24 8001b84: 38 21 a6 e0 ori r1,r1,0xa6e0 8001b88: ba 20 10 00 mv r2,r17 8001b8c: ba 80 18 00 mv r3,r20 8001b90: f8 00 16 52 calli 80074d8 <_Timespec_Subtract>
&_Thread_Time_of_last_context_switch, &uptime, &used ); _Timestamp_Add_to( &ran, &used );
8001b94: ba a0 08 00 mv r1,r21 8001b98: ba 80 10 00 mv r2,r20 8001b9c: f8 00 15 e3 calli 8007328 <_Timespec_Add_to>
}; _Timestamp_Divide( &ran, &total, &ival, &fval );
8001ba0: 37 83 00 7c addi r3,sp,124 8001ba4: bb 60 20 00 mv r4,fp 8001ba8: ba a0 08 00 mv r1,r21 8001bac: ba e0 10 00 mv r2,r23 8001bb0: f8 00 15 f4 calli 8007380 <_Timespec_Divide>
/* * Print the information */ (*print)( context,
8001bb4: 2b 81 00 64 lw r1,(sp+100) 8001bb8: 34 02 03 e8 mvi r2,1000 8001bbc: f8 00 71 50 calli 801e0fc <__udivsi3> 8001bc0: 2b 85 00 7c lw r5,(sp+124) 8001bc4: 2b 86 00 78 lw r6,(sp+120) 8001bc8: 2b 83 00 60 lw r3,(sp+96) 8001bcc: bb 20 10 00 mv r2,r25 8001bd0: b8 20 20 00 mv r4,r1 8001bd4: 38 42 f5 e0 ori r2,r2,0xf5e0 8001bd8: b9 c0 08 00 mv r1,r14 8001bdc: d9 a0 00 00 call r13
api_index++ ) { if ( !_Objects_Information_table[ api_index ] ) continue; information = _Objects_Information_table[ api_index ][ 1 ]; if ( information ) { for ( i=1 ; i <= information->maximum ; i++ ) {
8001be0: 2e 01 00 10 lhu r1,(r16+16)
the_thread = (Thread_Control *)information->local_table[ i ]; if ( !the_thread ) continue; rtems_object_get_name( the_thread->Object.id, sizeof(name), name );
8001be4: 34 02 00 0d mvi r2,13 8001be8: ba c0 18 00 mv r3,r22
api_index++ ) { if ( !_Objects_Information_table[ api_index ] ) continue; information = _Objects_Information_table[ api_index ][ 1 ]; if ( information ) { for ( i=1 ; i <= information->maximum ; i++ ) { 8001bec: 50 32 ff cf bgeu r1,r18,8001b28 <rtems_cpu_usage_report_with_plugin+0xcc> " ID | NAME | TICKS | PERCENT\n" #endif "------------+----------------------------------------+---------------+---------\n" ); for ( api_index = 1 ;
8001bf0: 78 01 08 02 mvhi r1,0x802
api_index++ ) { if ( !_Objects_Information_table[ api_index ] ) continue; information = _Objects_Information_table[ api_index ][ 1 ]; if ( information ) { for ( i=1 ; i <= information->maximum ; i++ ) {
8001bf4: 35 6b 00 04 addi r11,r11,4
" ID | NAME | TICKS | PERCENT\n" #endif "------------+----------------------------------------+---------------+---------\n" ); for ( api_index = 1 ;
8001bf8: 38 21 a5 c8 ori r1,r1,0xa5c8
8001bfc: 5d 61 ff c4 bne r11,r1,8001b0c <rtems_cpu_usage_report_with_plugin+0xb0> } } } #ifndef __RTEMS_USE_TICKS_FOR_STATISTICS__ (*print)(
8001c00: 2b 81 00 6c lw r1,(sp+108) 8001c04: 34 02 03 e8 mvi r2,1000 8001c08: f8 00 71 3d calli 801e0fc <__udivsi3> 8001c0c: 2b 83 00 68 lw r3,(sp+104) 8001c10: 78 02 08 01 mvhi r2,0x801 8001c14: b8 20 20 00 mv r4,r1 8001c18: 38 42 f5 f8 ori r2,r2,0xf5f8 8001c1c: b9 c0 08 00 mv r1,r14 8001c20: d9 a0 00 00 call r13
"-------------------------------------------------------------------------------\n", _Watchdog_Ticks_since_boot - CPU_usage_Ticks_at_last_reset, total_units ); #endif }
8001c24: 2b 9d 00 04 lw ra,(sp+4) 8001c28: 2b 8b 00 44 lw r11,(sp+68) 8001c2c: 2b 8c 00 40 lw r12,(sp+64) 8001c30: 2b 8d 00 3c lw r13,(sp+60) 8001c34: 2b 8e 00 38 lw r14,(sp+56) 8001c38: 2b 8f 00 34 lw r15,(sp+52) 8001c3c: 2b 90 00 30 lw r16,(sp+48) 8001c40: 2b 91 00 2c lw r17,(sp+44) 8001c44: 2b 92 00 28 lw r18,(sp+40) 8001c48: 2b 93 00 24 lw r19,(sp+36) 8001c4c: 2b 94 00 20 lw r20,(sp+32) 8001c50: 2b 95 00 1c lw r21,(sp+28) 8001c54: 2b 96 00 18 lw r22,(sp+24) 8001c58: 2b 97 00 14 lw r23,(sp+20) 8001c5c: 2b 98 00 10 lw r24,(sp+16) 8001c60: 2b 99 00 0c lw r25,(sp+12) 8001c64: 2b 9b 00 08 lw fp,(sp+8) 8001c68: 37 9c 00 7c addi sp,sp,124 8001c6c: c3 a0 00 00 ret
0800ab5c <rtems_deviceio_errno>: { 0, 0, 0 }, }; int rtems_deviceio_errno(rtems_status_code code) {
800ab5c: 37 9c ff f8 addi sp,sp,-8 <== NOT EXECUTED 800ab60: 5b 8b 00 08 sw (sp+8),r11 <== NOT EXECUTED 800ab64: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED 800ab68: b8 20 10 00 mv r2,r1 <== NOT EXECUTED
int rc; if ((rc = rtems_assoc_remote_by_local(errno_assoc, (uint32_t ) code)))
800ab6c: 78 01 08 01 mvhi r1,0x801 <== NOT EXECUTED 800ab70: 38 21 a9 04 ori r1,r1,0xa904 <== NOT EXECUTED 800ab74: f8 00 00 0a calli 800ab9c <rtems_assoc_remote_by_local> <== NOT EXECUTED 800ab78: b8 20 58 00 mv r11,r1 <== NOT EXECUTED 800ab7c: 44 20 00 03 be r1,r0,800ab88 <rtems_deviceio_errno+0x2c> <== NOT EXECUTED
{ errno = rc;
800ab80: f8 00 00 e4 calli 800af10 <__errno> <== NOT EXECUTED 800ab84: 58 2b 00 00 sw (r1+0),r11 <== NOT EXECUTED
return -1; } return -1; }
800ab88: 34 01 ff ff mvi r1,-1 <== NOT EXECUTED 800ab8c: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 800ab90: 2b 8b 00 08 lw r11,(sp+8) <== NOT EXECUTED 800ab94: 37 9c 00 08 addi sp,sp,8 <== NOT EXECUTED 800ab98: c3 a0 00 00 ret <== NOT EXECUTED
08006c9c <rtems_error>: int rtems_error( rtems_error_code_t error_flag, const char *printf_format, ... ) {
8006c9c: 37 9c ff e0 addi sp,sp,-32 <== NOT EXECUTED 8006ca0: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED 8006ca4: 5b 83 00 0c sw (sp+12),r3 <== NOT EXECUTED
va_list arglist; int chars_written; va_start(arglist, printf_format); chars_written = rtems_verror(error_flag, printf_format, arglist);
8006ca8: 37 83 00 0c addi r3,sp,12 <== NOT EXECUTED
int rtems_error( rtems_error_code_t error_flag, const char *printf_format, ... ) {
8006cac: 5b 84 00 10 sw (sp+16),r4 <== NOT EXECUTED 8006cb0: 5b 85 00 14 sw (sp+20),r5 <== NOT EXECUTED 8006cb4: 5b 86 00 18 sw (sp+24),r6 <== NOT EXECUTED 8006cb8: 5b 87 00 1c sw (sp+28),r7 <== NOT EXECUTED 8006cbc: 5b 88 00 20 sw (sp+32),r8 <== NOT EXECUTED 8006cc0: 5b 82 00 08 sw (sp+8),r2 <== NOT EXECUTED
va_list arglist; int chars_written; va_start(arglist, printf_format); chars_written = rtems_verror(error_flag, printf_format, arglist);
8006cc4: fb ff ff 60 calli 8006a44 <rtems_verror> <== NOT EXECUTED
va_end(arglist); return chars_written; }
8006cc8: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8006ccc: 37 9c 00 20 addi sp,sp,32 <== NOT EXECUTED 8006cd0: c3 a0 00 00 ret <== NOT EXECUTED
08000cf0 <rtems_filesystem_dirname>: } int rtems_filesystem_dirname( const char *pathname ) {
8000cf0: 37 9c ff f8 addi sp,sp,-8 8000cf4: 5b 8b 00 08 sw (sp+8),r11 8000cf8: 5b 9d 00 04 sw (sp+4),ra 8000cfc: b8 20 58 00 mv r11,r1
int len = strlen( pathname );
8000d00: f8 00 2d 54 calli 800c250 <strlen> 8000d04: b5 61 10 00 add r2,r11,r1
while ( len ) {
8000d08: e0 00 00 09 bi 8000d2c <rtems_filesystem_dirname+0x3c>
len--; if ( rtems_filesystem_is_separator( pathname[len] ) )
8000d0c: 40 43 ff ff lbu r3,(r2+-1)
) { int len = strlen( pathname ); while ( len ) { len--;
8000d10: 34 21 ff ff addi r1,r1,-1
if ( rtems_filesystem_is_separator( pathname[len] ) )
8000d14: 34 42 ff ff addi r2,r2,-1 8000d18: 64 65 00 5c cmpei r5,r3,92 8000d1c: 64 64 00 2f cmpei r4,r3,47 8000d20: b8 a4 20 00 or r4,r5,r4
8000d24: 5c 80 00 03 bne r4,r0,8000d30 <rtems_filesystem_dirname+0x40>
8000d28: 44 64 00 02 be r3,r4,8000d30 <rtems_filesystem_dirname+0x40><== NEVER TAKEN
const char *pathname ) { int len = strlen( pathname ); while ( len ) { 8000d2c: 5c 20 ff f8 bne r1,r0,8000d0c <rtems_filesystem_dirname+0x1c> if ( rtems_filesystem_is_separator( pathname[len] ) ) break; } return len; }
8000d30: 2b 9d 00 04 lw ra,(sp+4) 8000d34: 2b 8b 00 08 lw r11,(sp+8) 8000d38: 37 9c 00 08 addi sp,sp,8 8000d3c: c3 a0 00 00 ret
08000e28 <rtems_filesystem_evaluate_path>: int pathnamelen, int flags, rtems_filesystem_location_info_t *pathloc, int follow_link ) {
8000e28: 37 9c ff e4 addi sp,sp,-28 8000e2c: 5b 8b 00 1c sw (sp+28),r11 8000e30: 5b 8c 00 18 sw (sp+24),r12 8000e34: 5b 8d 00 14 sw (sp+20),r13 8000e38: 5b 8e 00 10 sw (sp+16),r14 8000e3c: 5b 8f 00 0c sw (sp+12),r15 8000e40: 5b 90 00 08 sw (sp+8),r16 8000e44: 5b 9d 00 04 sw (sp+4),ra 8000e48: b8 20 60 00 mv r12,r1 8000e4c: b8 40 80 00 mv r16,r2 8000e50: b8 60 78 00 mv r15,r3 8000e54: b8 80 58 00 mv r11,r4 8000e58: b8 a0 70 00 mv r14,r5
/* * Verify Input parameters. */ if ( !pathname )
8000e5c: 5c 20 00 04 bne r1,r0,8000e6c <rtems_filesystem_evaluate_path+0x44><== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( EFAULT );
8000e60: f8 00 28 2c calli 800af10 <__errno> <== NOT EXECUTED 8000e64: 34 02 00 0e mvi r2,14 <== NOT EXECUTED 8000e68: e0 00 00 04 bi 8000e78 <rtems_filesystem_evaluate_path+0x50><== NOT EXECUTED
if ( !pathloc )
8000e6c: 5c 80 00 06 bne r4,r0,8000e84 <rtems_filesystem_evaluate_path+0x5c><== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( EIO ); /* should never happen */
8000e70: f8 00 28 28 calli 800af10 <__errno> <== NOT EXECUTED 8000e74: 34 02 00 05 mvi r2,5 <== NOT EXECUTED 8000e78: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 8000e7c: 34 01 ff ff mvi r1,-1 <== NOT EXECUTED 8000e80: e0 00 00 1e bi 8000ef8 <rtems_filesystem_evaluate_path+0xd0><== NOT EXECUTED
/* * Evaluate the path using the optable evalpath. */ rtems_filesystem_get_start_loc( pathname, &i, pathloc );
8000e84: 40 21 00 00 lbu r1,(r1+0) 8000e88: 64 2d 00 5c cmpei r13,r1,92 8000e8c: 64 22 00 2f cmpei r2,r1,47 8000e90: b9 a2 68 00 or r13,r13,r2
8000e94: 5d a0 00 02 bne r13,r0,8000e9c <rtems_filesystem_evaluate_path+0x74>
8000e98: 5c 2d 00 0a bne r1,r13,8000ec0 <rtems_filesystem_evaluate_path+0x98><== ALWAYS TAKEN
8000e9c: 78 01 08 01 mvhi r1,0x801 8000ea0: 38 21 c1 10 ori r1,r1,0xc110 8000ea4: 28 24 00 00 lw r4,(r1+0) 8000ea8: 34 03 00 14 mvi r3,20 8000eac: b9 60 08 00 mv r1,r11 8000eb0: 34 82 00 18 addi r2,r4,24 8000eb4: f8 00 2a bd calli 800b9a8 <memcpy> 8000eb8: 34 04 00 01 mvi r4,1 8000ebc: e0 00 00 09 bi 8000ee0 <rtems_filesystem_evaluate_path+0xb8> 8000ec0: 78 01 08 01 mvhi r1,0x801 8000ec4: 38 21 c1 10 ori r1,r1,0xc110 8000ec8: 28 24 00 00 lw r4,(r1+0) 8000ecc: 34 03 00 14 mvi r3,20 8000ed0: b9 60 08 00 mv r1,r11 8000ed4: 34 82 00 04 addi r2,r4,4 8000ed8: f8 00 2a b4 calli 800b9a8 <memcpy> 8000edc: b9 a0 20 00 mv r4,r13
/* * We evaluation the path relative to the start location we get got. */ return rtems_filesystem_evaluate_relative_path( &pathname[i],
8000ee0: ca 04 10 00 sub r2,r16,r4 8000ee4: b5 84 08 00 add r1,r12,r4 8000ee8: b9 e0 18 00 mv r3,r15 8000eec: b9 60 20 00 mv r4,r11 8000ef0: b9 c0 28 00 mv r5,r14 8000ef4: fb ff ff 93 calli 8000d40 <rtems_filesystem_evaluate_relative_path>
pathnamelen - i, flags, pathloc, follow_link ); }
8000ef8: 2b 9d 00 04 lw ra,(sp+4) 8000efc: 2b 8b 00 1c lw r11,(sp+28) 8000f00: 2b 8c 00 18 lw r12,(sp+24) 8000f04: 2b 8d 00 14 lw r13,(sp+20) 8000f08: 2b 8e 00 10 lw r14,(sp+16) 8000f0c: 2b 8f 00 0c lw r15,(sp+12) 8000f10: 2b 90 00 08 lw r16,(sp+8) 8000f14: 37 9c 00 1c addi sp,sp,28 8000f18: c3 a0 00 00 ret
08000d40 <rtems_filesystem_evaluate_relative_path>: int pathnamelen, int flags, rtems_filesystem_location_info_t *pathloc, int follow_link ) {
8000d40: 37 9c ff f0 addi sp,sp,-16 8000d44: 5b 8b 00 10 sw (sp+16),r11 8000d48: 5b 8c 00 0c sw (sp+12),r12 8000d4c: 5b 8d 00 08 sw (sp+8),r13 8000d50: 5b 9d 00 04 sw (sp+4),ra 8000d54: b8 a0 68 00 mv r13,r5 8000d58: b8 60 60 00 mv r12,r3 8000d5c: b8 80 58 00 mv r11,r4
/* * Verify Input parameters. */ if ( !pathname )
8000d60: 5c 20 00 04 bne r1,r0,8000d70 <rtems_filesystem_evaluate_relative_path+0x30><== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( EFAULT );
8000d64: f8 00 28 6b calli 800af10 <__errno> <== NOT EXECUTED 8000d68: 34 02 00 0e mvi r2,14 <== NOT EXECUTED 8000d6c: e0 00 00 04 bi 8000d7c <rtems_filesystem_evaluate_relative_path+0x3c><== NOT EXECUTED
if ( !pathloc )
8000d70: 5c 80 00 06 bne r4,r0,8000d88 <rtems_filesystem_evaluate_relative_path+0x48><== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( EIO ); /* should never happen */
8000d74: f8 00 28 67 calli 800af10 <__errno> <== NOT EXECUTED 8000d78: 34 02 00 05 mvi r2,5 <== NOT EXECUTED 8000d7c: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 8000d80: 34 06 ff ff mvi r6,-1 <== NOT EXECUTED 8000d84: e0 00 00 22 bi 8000e0c <rtems_filesystem_evaluate_relative_path+0xcc><== NOT EXECUTED
if ( !pathloc->ops->evalpath_h )
8000d88: 28 85 00 0c lw r5,(r4+12) 8000d8c: 28 a6 00 00 lw r6,(r5+0)
8000d90: 44 c0 00 18 be r6,r0,8000df0 <rtems_filesystem_evaluate_relative_path+0xb0><== NEVER TAKEN
rtems_set_errno_and_return_minus_one( ENOTSUP ); result = (*pathloc->ops->evalpath_h)( pathname, pathnamelen, flags, pathloc );
8000d94: d8 c0 00 00 call r6 8000d98: b8 20 30 00 mv r6,r1
/* * Get the Node type and determine if you need to follow the link or * not. */ if ( (result == 0) && follow_link ) {
8000d9c: 7d a5 00 00 cmpnei r5,r13,0 8000da0: 64 21 00 00 cmpei r1,r1,0 8000da4: a0 25 28 00 and r5,r1,r5
8000da8: 44 a0 00 19 be r5,r0,8000e0c <rtems_filesystem_evaluate_relative_path+0xcc> if ( !pathloc->ops->node_type_h ){
8000dac: 29 61 00 0c lw r1,(r11+12) 8000db0: 28 24 00 10 lw r4,(r1+16)
8000db4: 44 80 00 0b be r4,r0,8000de0 <rtems_filesystem_evaluate_relative_path+0xa0><== NEVER TAKEN
rtems_filesystem_freenode( pathloc ); rtems_set_errno_and_return_minus_one( ENOTSUP ); } type = (*pathloc->ops->node_type_h)( pathloc );
8000db8: b9 60 08 00 mv r1,r11 8000dbc: d8 80 00 00 call r4
if ( ( type == RTEMS_FILESYSTEM_HARD_LINK ) ||
8000dc0: 34 21 ff fd addi r1,r1,-3 8000dc4: 34 02 00 01 mvi r2,1
8000dc8: 50 41 00 03 bgeu r2,r1,8000dd4 <rtems_filesystem_evaluate_relative_path+0x94>
8000dcc: 34 06 00 00 mvi r6,0 8000dd0: e0 00 00 0f bi 8000e0c <rtems_filesystem_evaluate_relative_path+0xcc>
( type == RTEMS_FILESYSTEM_SYM_LINK ) ) { if ( !pathloc->ops->eval_link_h ){
8000dd4: 29 61 00 0c lw r1,(r11+12) 8000dd8: 28 24 00 34 lw r4,(r1+52)
8000ddc: 5c 80 00 08 bne r4,r0,8000dfc <rtems_filesystem_evaluate_relative_path+0xbc><== ALWAYS TAKEN
rtems_filesystem_freenode( pathloc );
8000de0: 28 22 00 1c lw r2,(r1+28) <== NOT EXECUTED 8000de4: 44 44 00 03 be r2,r4,8000df0 <rtems_filesystem_evaluate_relative_path+0xb0><== NOT EXECUTED 8000de8: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8000dec: d8 40 00 00 call r2 <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( ENOTSUP );
8000df0: f8 00 28 48 calli 800af10 <__errno> <== NOT EXECUTED 8000df4: 34 02 00 86 mvi r2,134 <== NOT EXECUTED 8000df8: e3 ff ff e1 bi 8000d7c <rtems_filesystem_evaluate_relative_path+0x3c><== NOT EXECUTED
* pathloc will be passed up (and eventually released). * Hence, the (valid) originial node that we submit to * eval_link_h() should be released by the handler. */ result = (*pathloc->ops->eval_link_h)( pathloc, flags );
8000dfc: b9 60 08 00 mv r1,r11 8000e00: b9 80 10 00 mv r2,r12 8000e04: d8 80 00 00 call r4 8000e08: b8 20 30 00 mv r6,r1
} } return result; }
8000e0c: b8 c0 08 00 mv r1,r6 8000e10: 2b 9d 00 04 lw ra,(sp+4) 8000e14: 2b 8b 00 10 lw r11,(sp+16) 8000e18: 2b 8c 00 0c lw r12,(sp+12) 8000e1c: 2b 8d 00 08 lw r13,(sp+8) 8000e20: 37 9c 00 10 addi sp,sp,16 8000e24: c3 a0 00 00 ret
08000b78 <rtems_filesystem_initialize>: * configuration is a single instantiation of the IMFS or miniIMFS with * a single "/dev" directory in it. */ void rtems_filesystem_initialize( void ) {
8000b78: 37 9c ff d8 addi sp,sp,-40 8000b7c: 5b 8b 00 10 sw (sp+16),r11 8000b80: 5b 8c 00 0c sw (sp+12),r12 8000b84: 5b 8d 00 08 sw (sp+8),r13 8000b88: 5b 9d 00 04 sw (sp+4),ra
/* * Set the default umask to "022". */ rtems_filesystem_umask = 022;
8000b8c: 78 0b 08 01 mvhi r11,0x801 8000b90: 39 6b c1 10 ori r11,r11,0xc110 8000b94: 29 62 00 00 lw r2,(r11+0) 8000b98: 34 01 00 12 mvi r1,18
/* * mount the first filesystem. */ if ( rtems_filesystem_mount_table_size == 0 )
8000b9c: 34 0d 00 00 mvi r13,0
/* * Set the default umask to "022". */ rtems_filesystem_umask = 022;
8000ba0: 58 41 00 2c sw (r2+44),r1
init_fs_mount_table();
8000ba4: f8 00 01 ae calli 800125c <init_fs_mount_table>
/* * mount the first filesystem. */ if ( rtems_filesystem_mount_table_size == 0 )
8000ba8: 78 01 08 01 mvhi r1,0x801 8000bac: 38 21 a0 94 ori r1,r1,0xa094 8000bb0: 28 21 00 00 lw r1,(r1+0)
8000bb4: 5c 2d 00 04 bne r1,r13,8000bc4 <rtems_filesystem_initialize+0x4c><== ALWAYS TAKEN
rtems_fatal_error_occurred( 0xABCD0001 );
8000bb8: 78 01 ab cd mvhi r1,0xabcd <== NOT EXECUTED 8000bbc: 38 21 00 01 ori r1,r1,0x1 <== NOT EXECUTED 8000bc0: e0 00 00 0e bi 8000bf8 <rtems_filesystem_initialize+0x80> <== NOT EXECUTED
mt = &rtems_filesystem_mount_table[0];
8000bc4: 78 01 08 01 mvhi r1,0x801 8000bc8: 38 21 c0 18 ori r1,r1,0xc018 8000bcc: 28 24 00 00 lw r4,(r1+0)
status = mount(
8000bd0: 37 81 00 28 addi r1,sp,40 8000bd4: 28 82 00 00 lw r2,(r4+0) 8000bd8: 28 85 00 0c lw r5,(r4+12) 8000bdc: 28 83 00 04 lw r3,(r4+4) 8000be0: 28 84 00 08 lw r4,(r4+8) 8000be4: f8 00 01 a6 calli 800127c <mount>
&entry, mt->fs_ops, mt->fsoptions, mt->device, mt->mount_point ); if ( status == -1 )
8000be8: 34 02 ff ff mvi r2,-1
8000bec: 5c 22 00 04 bne r1,r2,8000bfc <rtems_filesystem_initialize+0x84><== ALWAYS TAKEN
rtems_fatal_error_occurred( 0xABCD0002 );
8000bf0: 78 01 ab cd mvhi r1,0xabcd <== NOT EXECUTED 8000bf4: 38 21 00 02 ori r1,r1,0x2 <== NOT EXECUTED 8000bf8: f8 00 06 aa calli 80026a0 <rtems_fatal_error_occurred> <== NOT EXECUTED
rtems_filesystem_link_counts = 0;
8000bfc: 29 61 00 00 lw r1,(r11+0)
* set_private_env() - but then: that's * gonna hit performance. * * Till Straumann, 10/25/2002 */ rtems_filesystem_root = entry->mt_fs_root;
8000c00: 2b 82 00 28 lw r2,(sp+40) 8000c04: 34 03 00 14 mvi r3,20
&entry, mt->fs_ops, mt->fsoptions, mt->device, mt->mount_point ); if ( status == -1 ) rtems_fatal_error_occurred( 0xABCD0002 ); rtems_filesystem_link_counts = 0;
8000c08: 0c 2d 00 30 sh (r1+48),r13
* set_private_env() - but then: that's * gonna hit performance. * * Till Straumann, 10/25/2002 */ rtems_filesystem_root = entry->mt_fs_root;
8000c0c: 34 42 00 1c addi r2,r2,28 8000c10: 34 21 00 18 addi r1,r1,24 8000c14: f8 00 2b 65 calli 800b9a8 <memcpy>
/* Clone the root pathloc */ rtems_filesystem_evaluate_path("/", 1, 0, &loc, 0);
8000c18: 37 8c 00 14 addi r12,sp,20 8000c1c: 78 01 08 01 mvhi r1,0x801 8000c20: b9 80 20 00 mv r4,r12 8000c24: b9 a0 28 00 mv r5,r13 8000c28: 34 02 00 01 mvi r2,1 8000c2c: b9 a0 18 00 mv r3,r13 8000c30: 38 21 a2 f0 ori r1,r1,0xa2f0 8000c34: f8 00 00 7d calli 8000e28 <rtems_filesystem_evaluate_path>
rtems_filesystem_root = loc;
8000c38: 29 61 00 00 lw r1,(r11+0) 8000c3c: b9 80 10 00 mv r2,r12 8000c40: 34 03 00 14 mvi r3,20 8000c44: 34 21 00 18 addi r1,r1,24 8000c48: f8 00 2b 58 calli 800b9a8 <memcpy>
/* One more clone for the current node */ rtems_filesystem_evaluate_path("/", 1, 0, &loc, 0);
8000c4c: 78 01 08 01 mvhi r1,0x801 8000c50: b9 a0 18 00 mv r3,r13 8000c54: b9 a0 28 00 mv r5,r13 8000c58: 34 02 00 01 mvi r2,1 8000c5c: b9 80 20 00 mv r4,r12 8000c60: 38 21 a2 f0 ori r1,r1,0xa2f0 8000c64: f8 00 00 71 calli 8000e28 <rtems_filesystem_evaluate_path>
rtems_filesystem_current = loc;
8000c68: 29 61 00 00 lw r1,(r11+0) 8000c6c: b9 80 10 00 mv r2,r12 8000c70: 34 03 00 14 mvi r3,20 8000c74: 34 21 00 04 addi r1,r1,4 8000c78: f8 00 2b 4c calli 800b9a8 <memcpy>
* * NOTE: UNIX root is 755 and owned by root/root (0/0). It is actually * created that way by the IMFS. */ status = mkdir( "/dev", 0777);
8000c7c: 78 01 08 01 mvhi r1,0x801 8000c80: 38 21 a2 f4 ori r1,r1,0xa2f4 8000c84: 34 02 01 ff mvi r2,511 8000c88: f8 00 01 17 calli 80010e4 <mkdir>
if ( status != 0 )
8000c8c: 44 20 00 04 be r1,r0,8000c9c <rtems_filesystem_initialize+0x124><== ALWAYS TAKEN
rtems_fatal_error_occurred( 0xABCD0003 );
8000c90: 78 01 ab cd mvhi r1,0xabcd <== NOT EXECUTED 8000c94: 38 21 00 03 ori r1,r1,0x3 <== NOT EXECUTED 8000c98: e3 ff ff d8 bi 8000bf8 <rtems_filesystem_initialize+0x80> <== NOT EXECUTED
* it will be mounted onto is created. Moreover, if it is going to * use a device, then it is REALLY unfair to attempt this * before device drivers are initialized. So we return via a base * filesystem image and nothing auto-mounted at this point. */ }
8000c9c: 2b 9d 00 04 lw ra,(sp+4) 8000ca0: 2b 8b 00 10 lw r11,(sp+16) 8000ca4: 2b 8c 00 0c lw r12,(sp+12) 8000ca8: 2b 8d 00 08 lw r13,(sp+8) 8000cac: 37 9c 00 28 addi sp,sp,40 8000cb0: c3 a0 00 00 ret
08028a14 <rtems_filesystem_nodes_equal>: ); bool rtems_filesystem_nodes_equal( const rtems_filesystem_location_info_t *loc1, const rtems_filesystem_location_info_t *loc2 ){
8028a14: 28 23 00 00 lw r3,(r1+0) <== NOT EXECUTED 8028a18: 28 41 00 00 lw r1,(r2+0) <== NOT EXECUTED
return ( loc1->node_access == loc2->node_access ); }
8028a1c: e4 61 08 00 cmpe r1,r3,r1 <== NOT EXECUTED 8028a20: c3 a0 00 00 ret <== NOT EXECUTED
08000cb4 <rtems_filesystem_prefix_separators>: int rtems_filesystem_prefix_separators( const char *pathname, int pathnamelen ) {
8000cb4: b8 20 20 00 mv r4,r1 8000cb8: 34 01 00 00 mvi r1,0
/* * Eat any separators at start of the path. */ int stripped = 0; while ( *pathname && pathnamelen && rtems_filesystem_is_separator( *pathname ) )
8000cbc: e0 00 00 02 bi 8000cc4 <rtems_filesystem_prefix_separators+0x10>
{ pathname++; pathnamelen--; stripped++;
8000cc0: 34 21 00 01 addi r1,r1,1
{ /* * Eat any separators at start of the path. */ int stripped = 0; while ( *pathname && pathnamelen && rtems_filesystem_is_separator( *pathname ) )
8000cc4: b4 81 18 00 add r3,r4,r1 8000cc8: 40 63 00 00 lbu r3,(r3+0) 8000ccc: fc 41 38 00 cmpne r7,r2,r1 8000cd0: 7c 65 00 00 cmpnei r5,r3,0 8000cd4: 64 66 00 2f cmpei r6,r3,47 8000cd8: 64 63 00 5c cmpei r3,r3,92 8000cdc: a0 e5 28 00 and r5,r7,r5 8000ce0: b8 66 18 00 or r3,r3,r6
8000ce4: 44 a0 00 02 be r5,r0,8000cec <rtems_filesystem_prefix_separators+0x38><== NEVER TAKEN
8000ce8: 5c 60 ff f6 bne r3,r0,8000cc0 <rtems_filesystem_prefix_separators+0xc> pathname++; pathnamelen--; stripped++; } return stripped; }
8000cec: c3 a0 00 00 ret
08000a24 <rtems_io_lookup_name>: rtems_status_code rtems_io_lookup_name( const char *name, rtems_driver_name_t *device_info ) {
8000a24: 37 9c ff d0 addi sp,sp,-48 <== NOT EXECUTED 8000a28: 5b 8b 00 1c sw (sp+28),r11 <== NOT EXECUTED 8000a2c: 5b 8c 00 18 sw (sp+24),r12 <== NOT EXECUTED 8000a30: 5b 8d 00 14 sw (sp+20),r13 <== NOT EXECUTED 8000a34: 5b 8e 00 10 sw (sp+16),r14 <== NOT EXECUTED 8000a38: 5b 8f 00 0c sw (sp+12),r15 <== NOT EXECUTED 8000a3c: 5b 90 00 08 sw (sp+8),r16 <== NOT EXECUTED 8000a40: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED 8000a44: b8 40 68 00 mv r13,r2 <== NOT EXECUTED 8000a48: b8 20 78 00 mv r15,r1 <== NOT EXECUTED
IMFS_jnode_t *the_jnode; rtems_filesystem_location_info_t loc; int result; rtems_filesystem_node_types_t node_type; result = rtems_filesystem_evaluate_path( name, strlen( name ), 0x00, &loc, true );
8000a4c: 37 8b 00 20 addi r11,sp,32 <== NOT EXECUTED 8000a50: f8 00 2e 00 calli 800c250 <strlen> <== NOT EXECUTED 8000a54: b8 20 10 00 mv r2,r1 <== NOT EXECUTED 8000a58: 34 03 00 00 mvi r3,0 <== NOT EXECUTED 8000a5c: b9 e0 08 00 mv r1,r15 <== NOT EXECUTED 8000a60: b9 60 20 00 mv r4,r11 <== NOT EXECUTED 8000a64: 34 05 00 01 mvi r5,1 <== NOT EXECUTED 8000a68: f8 00 00 f0 calli 8000e28 <rtems_filesystem_evaluate_path> <== NOT EXECUTED
the_jnode = loc.node_access; if ( !loc.ops->node_type_h ) {
8000a6c: 2b 83 00 2c lw r3,(sp+44) <== NOT EXECUTED
IMFS_jnode_t *the_jnode; rtems_filesystem_location_info_t loc; int result; rtems_filesystem_node_types_t node_type; result = rtems_filesystem_evaluate_path( name, strlen( name ), 0x00, &loc, true );
8000a70: b8 20 70 00 mv r14,r1 <== NOT EXECUTED
the_jnode = loc.node_access;
8000a74: 2b 90 00 20 lw r16,(sp+32) <== NOT EXECUTED
if ( !loc.ops->node_type_h ) {
8000a78: 28 62 00 10 lw r2,(r3+16) <== NOT EXECUTED 8000a7c: 5c 40 00 0a bne r2,r0,8000aa4 <rtems_io_lookup_name+0x80> <== NOT EXECUTED
rtems_filesystem_freenode( &loc );
8000a80: 28 63 00 1c lw r3,(r3+28) <== NOT EXECUTED 8000a84: 44 62 00 03 be r3,r2,8000a90 <rtems_io_lookup_name+0x6c> <== NOT EXECUTED 8000a88: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8000a8c: d8 60 00 00 call r3 <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( ENOTSUP );
8000a90: f8 00 29 20 calli 800af10 <__errno> <== NOT EXECUTED 8000a94: 34 02 00 86 mvi r2,134 <== NOT EXECUTED 8000a98: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 8000a9c: 34 01 ff ff mvi r1,-1 <== NOT EXECUTED 8000aa0: e0 00 00 20 bi 8000b20 <rtems_io_lookup_name+0xfc> <== NOT EXECUTED
} node_type = (*loc.ops->node_type_h)( &loc );
8000aa4: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8000aa8: d8 40 00 00 call r2 <== NOT EXECUTED
if ( (result != 0) || node_type != RTEMS_FILESYSTEM_DEVICE ) {
8000aac: 7c 22 00 02 cmpnei r2,r1,2 <== NOT EXECUTED 8000ab0: 7d ce 00 00 cmpnei r14,r14,0 <== NOT EXECUTED 8000ab4: 2b 8c 00 2c lw r12,(sp+44) <== NOT EXECUTED 8000ab8: b8 4e 70 00 or r14,r2,r14 <== NOT EXECUTED 8000abc: 45 c0 00 07 be r14,r0,8000ad8 <rtems_io_lookup_name+0xb4> <== NOT EXECUTED
rtems_filesystem_freenode( &loc );
8000ac0: 45 80 00 15 be r12,r0,8000b14 <rtems_io_lookup_name+0xf0> <== NOT EXECUTED 8000ac4: 29 82 00 1c lw r2,(r12+28) <== NOT EXECUTED 8000ac8: 44 40 00 13 be r2,r0,8000b14 <rtems_io_lookup_name+0xf0> <== NOT EXECUTED 8000acc: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8000ad0: d8 40 00 00 call r2 <== NOT EXECUTED 8000ad4: e0 00 00 10 bi 8000b14 <rtems_io_lookup_name+0xf0> <== NOT EXECUTED
return RTEMS_UNSATISFIED; } device_info->device_name = (char *) name;
8000ad8: 59 af 00 00 sw (r13+0),r15 <== NOT EXECUTED
device_info->device_name_length = strlen( name );
8000adc: b9 e0 08 00 mv r1,r15 <== NOT EXECUTED 8000ae0: f8 00 2d dc calli 800c250 <strlen> <== NOT EXECUTED 8000ae4: 59 a1 00 04 sw (r13+4),r1 <== NOT EXECUTED
device_info->major = the_jnode->info.device.major;
8000ae8: 2a 01 00 50 lw r1,(r16+80) <== NOT EXECUTED 8000aec: 59 a1 00 08 sw (r13+8),r1 <== NOT EXECUTED
device_info->minor = the_jnode->info.device.minor;
8000af0: 2a 10 00 54 lw r16,(r16+84) <== NOT EXECUTED 8000af4: 59 b0 00 0c sw (r13+12),r16 <== NOT EXECUTED
rtems_filesystem_freenode( &loc );
8000af8: 45 8e 00 09 be r12,r14,8000b1c <rtems_io_lookup_name+0xf8> <== NOT EXECUTED 8000afc: 29 82 00 1c lw r2,(r12+28) <== NOT EXECUTED 8000b00: 44 40 00 07 be r2,r0,8000b1c <rtems_io_lookup_name+0xf8> <== NOT EXECUTED 8000b04: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8000b08: d8 40 00 00 call r2 <== NOT EXECUTED 8000b0c: b9 c0 08 00 mv r1,r14 <== NOT EXECUTED 8000b10: e0 00 00 04 bi 8000b20 <rtems_io_lookup_name+0xfc> <== NOT EXECUTED 8000b14: 34 01 00 0d mvi r1,13 <== NOT EXECUTED 8000b18: e0 00 00 02 bi 8000b20 <rtems_io_lookup_name+0xfc> <== NOT EXECUTED 8000b1c: 34 01 00 00 mvi r1,0 <== NOT EXECUTED
return RTEMS_SUCCESSFUL; }
8000b20: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8000b24: 2b 8b 00 1c lw r11,(sp+28) <== NOT EXECUTED 8000b28: 2b 8c 00 18 lw r12,(sp+24) <== NOT EXECUTED 8000b2c: 2b 8d 00 14 lw r13,(sp+20) <== NOT EXECUTED 8000b30: 2b 8e 00 10 lw r14,(sp+16) <== NOT EXECUTED 8000b34: 2b 8f 00 0c lw r15,(sp+12) <== NOT EXECUTED 8000b38: 2b 90 00 08 lw r16,(sp+8) <== NOT EXECUTED 8000b3c: 37 9c 00 30 addi sp,sp,48 <== NOT EXECUTED 8000b40: c3 a0 00 00 ret <== NOT EXECUTED
08005284 <rtems_iterate_over_all_threads>: #include <rtems/system.h> #include <rtems/score/thread.h> void rtems_iterate_over_all_threads(rtems_per_thread_routine routine) {
8005284: 37 9c ff e4 addi sp,sp,-28 8005288: 5b 8b 00 1c sw (sp+28),r11 800528c: 5b 8c 00 18 sw (sp+24),r12 8005290: 5b 8d 00 14 sw (sp+20),r13 8005294: 5b 8e 00 10 sw (sp+16),r14 8005298: 5b 8f 00 0c sw (sp+12),r15 800529c: 5b 90 00 08 sw (sp+8),r16 80052a0: 5b 9d 00 04 sw (sp+4),ra 80052a4: b8 20 78 00 mv r15,r1
uint32_t i; uint32_t api_index; Thread_Control *the_thread; Objects_Information *information; if ( !routine )
80052a8: 44 20 00 17 be r1,r0,8005304 <rtems_iterate_over_all_threads+0x80><== NEVER TAKEN
80052ac: 78 0b 08 02 mvhi r11,0x802 80052b0: 39 6b a5 b8 ori r11,r11,0xa5b8
#endif #include <rtems/system.h> #include <rtems/score/thread.h> void rtems_iterate_over_all_threads(rtems_per_thread_routine routine)
80052b4: 35 70 00 10 addi r16,r11,16
if ( !routine ) return; for ( api_index = 1 ; api_index <= OBJECTS_APIS_LAST ; api_index++ ) { if ( !_Objects_Information_table[ api_index ] )
80052b8: 29 61 00 00 lw r1,(r11+0)
80052bc: 44 20 00 10 be r1,r0,80052fc <rtems_iterate_over_all_threads+0x78> continue; information = _Objects_Information_table[ api_index ][ 1 ];
80052c0: 28 2c 00 04 lw r12,(r1+4)
if ( !information )
80052c4: 34 0e 00 04 mvi r14,4 80052c8: 34 0d 00 01 mvi r13,1
80052cc: 5d 80 00 0a bne r12,r0,80052f4 <rtems_iterate_over_all_threads+0x70>
80052d0: e0 00 00 0b bi 80052fc <rtems_iterate_over_all_threads+0x78>
continue; for ( i=1 ; i <= information->maximum ; i++ ) { the_thread = (Thread_Control *)information->local_table[ i ];
80052d4: 29 81 00 1c lw r1,(r12+28)
information = _Objects_Information_table[ api_index ][ 1 ]; if ( !information ) continue; for ( i=1 ; i <= information->maximum ; i++ ) {
80052d8: 35 ad 00 01 addi r13,r13,1
the_thread = (Thread_Control *)information->local_table[ i ];
80052dc: b4 2e 08 00 add r1,r1,r14 80052e0: 28 22 00 00 lw r2,(r1+0)
information = _Objects_Information_table[ api_index ][ 1 ]; if ( !information ) continue; for ( i=1 ; i <= information->maximum ; i++ ) {
80052e4: 35 ce 00 04 addi r14,r14,4
the_thread = (Thread_Control *)information->local_table[ i ]; if ( !the_thread ) continue; (*routine)(the_thread);
80052e8: b8 40 08 00 mv r1,r2
continue; for ( i=1 ; i <= information->maximum ; i++ ) { the_thread = (Thread_Control *)information->local_table[ i ]; if ( !the_thread )
80052ec: 44 40 00 02 be r2,r0,80052f4 <rtems_iterate_over_all_threads+0x70><== NEVER TAKEN
continue; (*routine)(the_thread);
80052f0: d9 e0 00 00 call r15
information = _Objects_Information_table[ api_index ][ 1 ]; if ( !information ) continue; for ( i=1 ; i <= information->maximum ; i++ ) {
80052f4: 2d 81 00 10 lhu r1,(r12+16)
80052f8: 50 2d ff f7 bgeu r1,r13,80052d4 <rtems_iterate_over_all_threads+0x50>
80052fc: 35 6b 00 04 addi r11,r11,4
Objects_Information *information; if ( !routine ) return; for ( api_index = 1 ; api_index <= OBJECTS_APIS_LAST ; api_index++ ) { 8005300: 5d 70 ff ee bne r11,r16,80052b8 <rtems_iterate_over_all_threads+0x34> (*routine)(the_thread); } } }
8005304: 2b 9d 00 04 lw ra,(sp+4) 8005308: 2b 8b 00 1c lw r11,(sp+28) 800530c: 2b 8c 00 18 lw r12,(sp+24) 8005310: 2b 8d 00 14 lw r13,(sp+20) 8005314: 2b 8e 00 10 lw r14,(sp+16) 8005318: 2b 8f 00 0c lw r15,(sp+12) 800531c: 2b 90 00 08 lw r16,(sp+8) 8005320: 37 9c 00 1c addi sp,sp,28 8005324: c3 a0 00 00 ret
080074d0 <rtems_libio_allocate>: * This routine searches the IOP Table for an unused entry. If it * finds one, it returns it. Otherwise, it returns NULL. */ rtems_libio_t *rtems_libio_allocate( void ) {
80074d0: 37 9c ff ec addi sp,sp,-20 80074d4: 5b 8b 00 10 sw (sp+16),r11 80074d8: 5b 8c 00 0c sw (sp+12),r12 80074dc: 5b 8d 00 08 sw (sp+8),r13 80074e0: 5b 9d 00 04 sw (sp+4),ra
rtems_status_code rc; rtems_id sema; rtems_libio_lock(); if (rtems_libio_iop_freelist) {
80074e4: 78 0c 08 01 mvhi r12,0x801 80074e8: 39 8c c6 a0 ori r12,r12,0xc6a0
{ rtems_libio_t *iop, *next; rtems_status_code rc; rtems_id sema; rtems_libio_lock();
80074ec: fb ff ff 93 calli 8007338 <rtems_libio_lock>
if (rtems_libio_iop_freelist) {
80074f0: 29 81 00 00 lw r1,(r12+0)
80074f4: 44 20 00 1f be r1,r0,8007570 <rtems_libio_allocate+0xa0> rc = rtems_semaphore_create(
80074f8: 78 02 08 01 mvhi r2,0x801 80074fc: 38 42 c6 9c ori r2,r2,0xc69c 8007500: 28 43 00 00 lw r3,(r2+0) 8007504: 34 02 00 03 mvi r2,3 8007508: c8 23 08 00 sub r1,r1,r3 800750c: fb ff e3 89 calli 8000330 <__ashrsi3> 8007510: 78 02 38 e3 mvhi r2,0x38e3 8007514: 38 42 8e 39 ori r2,r2,0x8e39 8007518: f8 00 46 63 calli 8018ea4 <__mulsi3> 800751c: 78 02 4c 42 mvhi r2,0x4c42 8007520: 38 42 49 00 ori r2,r2,0x4900 8007524: b8 22 08 00 or r1,r1,r2 8007528: 34 03 00 54 mvi r3,84 800752c: 34 02 00 01 mvi r2,1 8007530: 34 04 00 00 mvi r4,0 8007534: 37 85 00 14 addi r5,sp,20 8007538: fb ff ea 86 calli 8001f50 <rtems_semaphore_create>
1, RTEMS_BINARY_SEMAPHORE | RTEMS_INHERIT_PRIORITY | RTEMS_PRIORITY, 0, &sema ); if (rc != RTEMS_SUCCESSFUL)
800753c: 5c 20 00 0d bne r1,r0,8007570 <rtems_libio_allocate+0xa0> <== NEVER TAKEN
goto failed; iop = rtems_libio_iop_freelist;
8007540: 29 8b 00 00 lw r11,(r12+0)
next = iop->data1; (void) memset( iop, 0, sizeof(rtems_libio_t) );
8007544: b8 20 10 00 mv r2,r1 8007548: 34 03 00 48 mvi r3,72 800754c: b9 60 08 00 mv r1,r11
&sema ); if (rc != RTEMS_SUCCESSFUL) goto failed; iop = rtems_libio_iop_freelist; next = iop->data1;
8007550: 29 6d 00 38 lw r13,(r11+56)
(void) memset( iop, 0, sizeof(rtems_libio_t) );
8007554: f8 00 11 73 calli 800bb20 <memset>
iop->flags = LIBIO_FLAGS_OPEN;
8007558: 34 01 01 00 mvi r1,256 800755c: 59 61 00 18 sw (r11+24),r1
iop->sem = sema;
8007560: 2b 81 00 14 lw r1,(sp+20)
rtems_libio_iop_freelist = next;
8007564: 59 8d 00 00 sw (r12+0),r13
goto failed; iop = rtems_libio_iop_freelist; next = iop->data1; (void) memset( iop, 0, sizeof(rtems_libio_t) ); iop->flags = LIBIO_FLAGS_OPEN; iop->sem = sema;
8007568: 59 61 00 30 sw (r11+48),r1
rtems_libio_iop_freelist = next; goto done;
800756c: e0 00 00 02 bi 8007574 <rtems_libio_allocate+0xa4> 8007570: 34 0b 00 00 mvi r11,0
failed: iop = 0; done: rtems_libio_unlock();
8007574: fb ff ff 7c calli 8007364 <rtems_libio_unlock>
return iop; }
8007578: b9 60 08 00 mv r1,r11 800757c: 2b 9d 00 04 lw ra,(sp+4) 8007580: 2b 8b 00 10 lw r11,(sp+16) 8007584: 2b 8c 00 0c lw r12,(sp+12) 8007588: 2b 8d 00 08 lw r13,(sp+8) 800758c: 37 9c 00 14 addi sp,sp,20 8007590: c3 a0 00 00 ret
08007478 <rtems_libio_free>: */ void rtems_libio_free( rtems_libio_t *iop ) {
8007478: 37 9c ff f8 addi sp,sp,-8 800747c: 5b 8b 00 08 sw (sp+8),r11 8007480: 5b 9d 00 04 sw (sp+4),ra 8007484: b8 20 58 00 mv r11,r1
rtems_libio_lock();
8007488: fb ff ff ac calli 8007338 <rtems_libio_lock>
if (iop->sem)
800748c: 29 61 00 30 lw r1,(r11+48)
8007490: 44 20 00 02 be r1,r0,8007498 <rtems_libio_free+0x20> <== NEVER TAKEN
rtems_semaphore_delete(iop->sem);
8007494: f8 00 01 3b calli 8007980 <rtems_semaphore_delete>
iop->flags &= ~LIBIO_FLAGS_OPEN; iop->data1 = rtems_libio_iop_freelist;
8007498: 78 01 08 01 mvhi r1,0x801 800749c: 38 21 c6 a0 ori r1,r1,0xc6a0 80074a0: 28 22 00 00 lw r2,(r1+0)
rtems_libio_lock(); if (iop->sem) rtems_semaphore_delete(iop->sem); iop->flags &= ~LIBIO_FLAGS_OPEN;
80074a4: 29 63 00 18 lw r3,(r11+24)
iop->data1 = rtems_libio_iop_freelist; rtems_libio_iop_freelist = iop;
80074a8: 58 2b 00 00 sw (r1+0),r11
if (iop->sem) rtems_semaphore_delete(iop->sem); iop->flags &= ~LIBIO_FLAGS_OPEN; iop->data1 = rtems_libio_iop_freelist;
80074ac: 59 62 00 38 sw (r11+56),r2
rtems_libio_lock(); if (iop->sem) rtems_semaphore_delete(iop->sem); iop->flags &= ~LIBIO_FLAGS_OPEN;
80074b0: 34 02 fe ff mvi r2,-257 80074b4: a0 62 10 00 and r2,r3,r2 80074b8: 59 62 00 18 sw (r11+24),r2
iop->data1 = rtems_libio_iop_freelist; rtems_libio_iop_freelist = iop; rtems_libio_unlock();
80074bc: fb ff ff aa calli 8007364 <rtems_libio_unlock>
}
80074c0: 2b 9d 00 04 lw ra,(sp+4) 80074c4: 2b 8b 00 08 lw r11,(sp+8) 80074c8: 37 9c 00 08 addi sp,sp,8 80074cc: c3 a0 00 00 ret
08000f1c <rtems_libio_init>: * * Called by BSP startup code to initialize the libio subsystem. */ void rtems_libio_init( void ) {
8000f1c: 37 9c ff f8 addi sp,sp,-8 8000f20: 5b 8b 00 08 sw (sp+8),r11 8000f24: 5b 9d 00 04 sw (sp+4),ra
rtems_status_code rc; uint32_t i; rtems_libio_t *iop; if (rtems_libio_number_iops > 0)
8000f28: 78 0b 08 01 mvhi r11,0x801 8000f2c: 39 6b c0 10 ori r11,r11,0xc010 8000f30: 29 61 00 00 lw r1,(r11+0)
8000f34: 44 20 00 16 be r1,r0,8000f8c <rtems_libio_init+0x70> <== NEVER TAKEN
{ rtems_libio_iops = (rtems_libio_t *) calloc(rtems_libio_number_iops,
8000f38: 34 02 00 48 mvi r2,72 8000f3c: f8 00 17 ea calli 8006ee4 <calloc> 8000f40: 78 02 08 01 mvhi r2,0x801 8000f44: 38 42 c6 9c ori r2,r2,0xc69c 8000f48: 58 41 00 00 sw (r2+0),r1
sizeof(rtems_libio_t)); if (rtems_libio_iops == NULL)
8000f4c: 5c 20 00 03 bne r1,r0,8000f58 <rtems_libio_init+0x3c> <== ALWAYS TAKEN
rtems_fatal_error_occurred(RTEMS_NO_MEMORY);
8000f50: 34 01 00 1a mvi r1,26 <== NOT EXECUTED 8000f54: e0 00 00 18 bi 8000fb4 <rtems_libio_init+0x98> <== NOT EXECUTED
iop = rtems_libio_iop_freelist = rtems_libio_iops;
8000f58: 78 02 08 01 mvhi r2,0x801 8000f5c: 38 42 c6 a0 ori r2,r2,0xc6a0 8000f60: 58 41 00 00 sw (r2+0),r1
for (i = 0 ; (i + 1) < rtems_libio_number_iops ; i++, iop++)
8000f64: 29 64 00 00 lw r4,(r11+0) 8000f68: 34 02 00 00 mvi r2,0 8000f6c: e0 00 00 02 bi 8000f74 <rtems_libio_init+0x58>
iop->data1 = iop + 1;
8000f70: 58 21 ff f0 sw (r1+-16),r1
sizeof(rtems_libio_t)); if (rtems_libio_iops == NULL) rtems_fatal_error_occurred(RTEMS_NO_MEMORY); iop = rtems_libio_iop_freelist = rtems_libio_iops; for (i = 0 ; (i + 1) < rtems_libio_number_iops ; i++, iop++)
8000f74: 34 42 00 01 addi r2,r2,1
iop->data1 = iop + 1;
8000f78: b8 20 18 00 mv r3,r1
sizeof(rtems_libio_t)); if (rtems_libio_iops == NULL) rtems_fatal_error_occurred(RTEMS_NO_MEMORY); iop = rtems_libio_iop_freelist = rtems_libio_iops; for (i = 0 ; (i + 1) < rtems_libio_number_iops ; i++, iop++)
8000f7c: 34 21 00 48 addi r1,r1,72
8000f80: 54 82 ff fc bgu r4,r2,8000f70 <rtems_libio_init+0x54> iop->data1 = iop + 1; iop->data1 = NULL;
8000f84: 34 01 00 00 mvi r1,0 8000f88: 58 61 00 38 sw (r3+56),r1
/* * Create the binary semaphore used to provide mutual exclusion * on the IOP Table. */ rc = rtems_semaphore_create(
8000f8c: 78 01 4c 42 mvhi r1,0x4c42 8000f90: 78 05 08 01 mvhi r5,0x801 8000f94: 34 03 00 54 mvi r3,84 8000f98: 38 21 49 4f ori r1,r1,0x494f 8000f9c: 38 a5 c6 a4 ori r5,r5,0xc6a4 8000fa0: 34 02 00 01 mvi r2,1 8000fa4: 34 04 00 00 mvi r4,0 8000fa8: f8 00 03 ea calli 8001f50 <rtems_semaphore_create> 8000fac: b8 20 18 00 mv r3,r1
1, RTEMS_BINARY_SEMAPHORE | RTEMS_INHERIT_PRIORITY | RTEMS_PRIORITY, RTEMS_NO_PRIORITY, &rtems_libio_semaphore ); if ( rc != RTEMS_SUCCESSFUL )
8000fb0: 44 20 00 02 be r1,r0,8000fb8 <rtems_libio_init+0x9c> <== ALWAYS TAKEN
rtems_fatal_error_occurred( rc );
8000fb4: f8 00 05 bb calli 80026a0 <rtems_fatal_error_occurred> <== NOT EXECUTED
/* * Initialize the base file system infrastructure. */ if (rtems_fs_init_helper)
8000fb8: 78 02 08 01 mvhi r2,0x801 8000fbc: 38 42 c0 0c ori r2,r2,0xc00c 8000fc0: 28 41 00 00 lw r1,(r2+0)
8000fc4: 44 23 00 02 be r1,r3,8000fcc <rtems_libio_init+0xb0> <== NEVER TAKEN
(* rtems_fs_init_helper)();
8000fc8: d8 20 00 00 call r1
}
8000fcc: 2b 9d 00 04 lw ra,(sp+4) 8000fd0: 2b 8b 00 08 lw r11,(sp+8) 8000fd4: 37 9c 00 08 addi sp,sp,8 8000fd8: c3 a0 00 00 ret
080281e4 <rtems_libio_set_private_env>: rtems_filesystem_freenode( &env->root_directory); free(env); } } rtems_status_code rtems_libio_set_private_env(void) {
80281e4: 37 9c ff d4 addi sp,sp,-44 80281e8: 5b 8b 00 14 sw (sp+20),r11 80281ec: 5b 8c 00 10 sw (sp+16),r12 80281f0: 5b 8d 00 0c sw (sp+12),r13 80281f4: 5b 8e 00 08 sw (sp+8),r14 80281f8: 5b 9d 00 04 sw (sp+4),ra
rtems_status_code sc; rtems_id task_id; rtems_filesystem_location_info_t loc; sc=rtems_task_ident(RTEMS_SELF,0,&task_id);
80281fc: 34 01 00 00 mvi r1,0 8028200: b8 20 10 00 mv r2,r1 8028204: 37 83 00 2c addi r3,sp,44 8028208: f8 00 06 cb calli 8029d34 <rtems_task_ident> 802820c: b8 20 60 00 mv r12,r1
if (sc != RTEMS_SUCCESSFUL) return sc;
8028210: 5c 20 00 43 bne r1,r0,802831c <rtems_libio_set_private_env+0x138><== NEVER TAKEN
/* Only for the first time a malloc is necesary */ if (rtems_current_user_env==&rtems_global_user_env) {
8028214: 78 0b 08 06 mvhi r11,0x806 8028218: 39 6b b2 f0 ori r11,r11,0xb2f0 802821c: 29 62 00 00 lw r2,(r11+0) 8028220: 78 01 08 06 mvhi r1,0x806 8028224: 38 21 ee e4 ori r1,r1,0xeee4
8028228: 5c 41 00 13 bne r2,r1,8028274 <rtems_libio_set_private_env+0x90> rtems_user_env_t *tmp = malloc(sizeof(rtems_user_env_t));
802822c: 34 01 00 48 mvi r1,72 8028230: fb ff 7a 09 calli 8006a54 <malloc> 8028234: b8 20 68 00 mv r13,r1
if (!tmp)
8028238: 5c 20 00 03 bne r1,r0,8028244 <rtems_libio_set_private_env+0x60><== ALWAYS TAKEN
802823c: 34 0c 00 1a mvi r12,26 <== NOT EXECUTED 8028240: e0 00 00 37 bi 802831c <rtems_libio_set_private_env+0x138> <== NOT EXECUTED
#ifdef HAVE_USERENV_REFCNT tmp->refcnt = 1; #endif sc = rtems_task_variable_add(RTEMS_SELF,(void*)&rtems_current_user_env,(void(*)(void *))free_user_envœ0
8028244: 78 03 08 02 mvhi r3,0x802 8028248: 38 63 80 b8 ori r3,r3,0x80b8 802824c: b9 80 08 00 mv r1,r12 8028250: b9 60 10 00 mv r2,r11 8028254: f8 00 07 df calli 802a1d0 <rtems_task_variable_add> 8028258: b8 20 70 00 mv r14,r1
if (sc != RTEMS_SUCCESSFUL) {
802825c: 44 20 00 05 be r1,r0,8028270 <rtems_libio_set_private_env+0x8c><== ALWAYS TAKEN
/* don't use free_user_env because the pathlocs are * not initialized yet */ free(tmp);
8028260: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 8028264: fb ff 78 29 calli 8006308 <free> <== NOT EXECUTED 8028268: b9 c0 60 00 mv r12,r14 <== NOT EXECUTED
return sc;
802826c: e0 00 00 2c bi 802831c <rtems_libio_set_private_env+0x138> <== NOT EXECUTED
} rtems_current_user_env = tmp;
8028270: 59 6d 00 00 sw (r11+0),r13
}; *rtems_current_user_env = rtems_global_user_env; /* get the global values*/
8028274: 78 0b 08 06 mvhi r11,0x806 8028278: 39 6b b2 f0 ori r11,r11,0xb2f0 802827c: 29 6d 00 00 lw r13,(r11+0) 8028280: 78 02 08 06 mvhi r2,0x806 8028284: 38 42 ee e4 ori r2,r2,0xeee4 8028288: 34 03 00 48 mvi r3,72 802828c: b9 a0 08 00 mv r1,r13 8028290: f8 00 78 43 calli 804639c <memcpy>
rtems_current_user_env->task_id=task_id; /* mark the local values*/ /* get a clean root */ rtems_filesystem_root = THE_ROOT_FS_LOC;
8028294: 78 01 08 06 mvhi r1,0x806 8028298: 38 21 ee d8 ori r1,r1,0xeed8 802829c: 28 22 00 00 lw r2,(r1+0)
} rtems_current_user_env = tmp; }; *rtems_current_user_env = rtems_global_user_env; /* get the global values*/ rtems_current_user_env->task_id=task_id; /* mark the local values*/
80282a0: 2b 81 00 2c lw r1,(sp+44)
/* get a clean root */ rtems_filesystem_root = THE_ROOT_FS_LOC;
80282a4: 34 03 00 14 mvi r3,20 80282a8: 34 42 00 1c addi r2,r2,28
} rtems_current_user_env = tmp; }; *rtems_current_user_env = rtems_global_user_env; /* get the global values*/ rtems_current_user_env->task_id=task_id; /* mark the local values*/
80282ac: 59 a1 00 00 sw (r13+0),r1
/* get a clean root */ rtems_filesystem_root = THE_ROOT_FS_LOC;
80282b0: 35 a1 00 18 addi r1,r13,24 80282b4: f8 00 78 3a calli 804639c <memcpy>
* code we must _not_ free the original locs because * what we are trying to do here is forking off * clones. */ rtems_filesystem_evaluate_path("/", 1, 0, &loc, 0);
80282b8: 37 8d 00 18 addi r13,sp,24 80282bc: 34 03 00 00 mvi r3,0 80282c0: 78 01 08 06 mvhi r1,0x806 80282c4: b8 60 28 00 mv r5,r3 80282c8: b9 a0 20 00 mv r4,r13 80282cc: 34 02 00 01 mvi r2,1 80282d0: 38 21 a1 18 ori r1,r1,0xa118 80282d4: fb ff 77 d0 calli 8006214 <rtems_filesystem_evaluate_path>
rtems_filesystem_root = loc;
80282d8: 29 61 00 00 lw r1,(r11+0) 80282dc: b9 a0 10 00 mv r2,r13 80282e0: 34 03 00 14 mvi r3,20 80282e4: 34 21 00 18 addi r1,r1,24 80282e8: f8 00 78 2d calli 804639c <memcpy>
rtems_filesystem_evaluate_path("/", 1, 0, &loc, 0);
80282ec: 34 03 00 00 mvi r3,0 80282f0: 78 01 08 06 mvhi r1,0x806 80282f4: 34 02 00 01 mvi r2,1 80282f8: b8 60 28 00 mv r5,r3 80282fc: 38 21 a1 18 ori r1,r1,0xa118 8028300: b9 a0 20 00 mv r4,r13 8028304: fb ff 77 c4 calli 8006214 <rtems_filesystem_evaluate_path>
rtems_filesystem_current = loc;
8028308: 29 61 00 00 lw r1,(r11+0) 802830c: b9 a0 10 00 mv r2,r13 8028310: 34 03 00 14 mvi r3,20 8028314: 34 21 00 04 addi r1,r1,4 8028318: f8 00 78 21 calli 804639c <memcpy>
return RTEMS_SUCCESSFUL; }
802831c: b9 80 08 00 mv r1,r12 8028320: 2b 9d 00 04 lw ra,(sp+4) 8028324: 2b 8b 00 14 lw r11,(sp+20) 8028328: 2b 8c 00 10 lw r12,(sp+16) 802832c: 2b 8d 00 0c lw r13,(sp+12) 8028330: 2b 8e 00 08 lw r14,(sp+8) 8028334: 37 9c 00 2c addi sp,sp,44 8028338: c3 a0 00 00 ret
0802811c <rtems_libio_share_private_env>: * b) mutex access to rtems_filesystem_current, rtems_filesytem_root * while changing any of those (chdir(), chroot()). */ #ifndef HAVE_USERENV_REFCNT rtems_status_code rtems_libio_share_private_env(rtems_id task_id) {
802811c: 37 9c ff ec addi sp,sp,-20 <== NOT EXECUTED 8028120: 5b 8b 00 0c sw (sp+12),r11 <== NOT EXECUTED 8028124: 5b 8c 00 08 sw (sp+8),r12 <== NOT EXECUTED 8028128: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED 802812c: b8 20 60 00 mv r12,r1 <== NOT EXECUTED
rtems_status_code sc; rtems_user_env_t * shared_user_env; rtems_id current_task_id; sc=rtems_task_ident(RTEMS_SELF,0,¤t_task_id);
8028130: 34 01 00 00 mvi r1,0 <== NOT EXECUTED 8028134: 37 83 00 10 addi r3,sp,16 <== NOT EXECUTED 8028138: b8 20 10 00 mv r2,r1 <== NOT EXECUTED 802813c: f8 00 06 fe calli 8029d34 <rtems_task_ident> <== NOT EXECUTED 8028140: b8 20 18 00 mv r3,r1 <== NOT EXECUTED
if (sc != RTEMS_SUCCESSFUL) return sc;
8028144: 5c 20 00 22 bne r1,r0,80281cc <rtems_libio_share_private_env+0xb0><== NOT EXECUTED
if (rtems_current_user_env->task_id==current_task_id) {
8028148: 78 02 08 06 mvhi r2,0x806 <== NOT EXECUTED 802814c: 38 42 b2 f0 ori r2,r2,0xb2f0 <== NOT EXECUTED 8028150: 28 4b 00 00 lw r11,(r2+0) <== NOT EXECUTED 8028154: 2b 83 00 10 lw r3,(sp+16) <== NOT EXECUTED 8028158: 29 64 00 00 lw r4,(r11+0) <== NOT EXECUTED 802815c: 5c 83 00 06 bne r4,r3,8028174 <rtems_libio_share_private_env+0x58><== NOT EXECUTED
/* kill the current user env & task_var*/ rtems_user_env_t *tmp = rtems_current_user_env; sc = rtems_task_variable_delete(RTEMS_SELF,(void*)&rtems_current_user_env);
8028160: f8 00 08 4c calli 802a290 <rtems_task_variable_delete> <== NOT EXECUTED 8028164: b8 20 18 00 mv r3,r1 <== NOT EXECUTED
if (sc != RTEMS_SUCCESSFUL) return sc;
8028168: 5c 20 00 19 bne r1,r0,80281cc <rtems_libio_share_private_env+0xb0><== NOT EXECUTED
free_user_env(tmp);
802816c: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8028170: fb ff ff d2 calli 80280b8 <free_user_env> <== NOT EXECUTED
}; /* AT THIS POINT, rtems_current_user_env is DANGLING */ sc = rtems_task_variable_get(task_id,(void*)&rtems_current_user_env,
8028174: 78 0b 08 06 mvhi r11,0x806 <== NOT EXECUTED 8028178: 39 6b b2 f0 ori r11,r11,0xb2f0 <== NOT EXECUTED 802817c: 37 83 00 14 addi r3,sp,20 <== NOT EXECUTED 8028180: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 8028184: b9 60 10 00 mv r2,r11 <== NOT EXECUTED 8028188: f8 00 08 65 calli 802a31c <rtems_task_variable_get> <== NOT EXECUTED 802818c: b8 20 18 00 mv r3,r1 <== NOT EXECUTED
(void*)&shared_user_env ); if (sc != RTEMS_SUCCESSFUL)
8028190: 5c 20 00 0a bne r1,r0,80281b8 <rtems_libio_share_private_env+0x9c><== NOT EXECUTED
goto bailout; sc = rtems_task_variable_add(RTEMS_SELF,(void*)&rtems_current_user_env,free_user_env);
8028194: 78 03 08 02 mvhi r3,0x802 <== NOT EXECUTED 8028198: 38 63 80 b8 ori r3,r3,0x80b8 <== NOT EXECUTED 802819c: b9 60 10 00 mv r2,r11 <== NOT EXECUTED 80281a0: f8 00 08 0c calli 802a1d0 <rtems_task_variable_add> <== NOT EXECUTED 80281a4: b8 20 18 00 mv r3,r1 <== NOT EXECUTED
if (sc != RTEMS_SUCCESSFUL)
80281a8: 5c 20 00 04 bne r1,r0,80281b8 <rtems_libio_share_private_env+0x9c><== NOT EXECUTED
goto bailout; /* the current_user_env is the same pointer that remote env */ rtems_current_user_env = shared_user_env;
80281ac: 2b 81 00 14 lw r1,(sp+20) <== NOT EXECUTED 80281b0: 59 61 00 00 sw (r11+0),r1 <== NOT EXECUTED
/* increase the reference count */ #ifdef HAVE_USERENV_REFCNT rtems_current_user_env->refcnt++; #endif return RTEMS_SUCCESSFUL;
80281b4: e0 00 00 06 bi 80281cc <rtems_libio_share_private_env+0xb0><== NOT EXECUTED
bailout: /* fallback to the global env */ rtems_current_user_env = &rtems_global_user_env;
80281b8: 78 01 08 06 mvhi r1,0x806 <== NOT EXECUTED 80281bc: 78 02 08 06 mvhi r2,0x806 <== NOT EXECUTED 80281c0: 38 21 b2 f0 ori r1,r1,0xb2f0 <== NOT EXECUTED 80281c4: 38 42 ee e4 ori r2,r2,0xeee4 <== NOT EXECUTED 80281c8: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED
return sc; }
80281cc: b8 60 08 00 mv r1,r3 <== NOT EXECUTED 80281d0: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 80281d4: 2b 8b 00 0c lw r11,(sp+12) <== NOT EXECUTED 80281d8: 2b 8c 00 08 lw r12,(sp+8) <== NOT EXECUTED 80281dc: 37 9c 00 14 addi sp,sp,20 <== NOT EXECUTED 80281e0: c3 a0 00 00 ret <== NOT EXECUTED
080072c8 <rtems_libio_to_fcntl_flags>: */ uint32_t rtems_libio_to_fcntl_flags( uint32_t flags ) {
80072c8: 37 9c ff f8 addi sp,sp,-8 80072cc: 5b 8b 00 08 sw (sp+8),r11 80072d0: 5b 9d 00 04 sw (sp+4),ra
uint32_t fcntl_flags = 0; if ( (flags & LIBIO_FLAGS_READ_WRITE) == LIBIO_FLAGS_READ_WRITE ) {
80072d4: 34 03 00 06 mvi r3,6 80072d8: 20 24 00 06 andi r4,r1,0x6
*/ uint32_t rtems_libio_to_fcntl_flags( uint32_t flags ) {
80072dc: b8 20 58 00 mv r11,r1
uint32_t fcntl_flags = 0; if ( (flags & LIBIO_FLAGS_READ_WRITE) == LIBIO_FLAGS_READ_WRITE ) {
80072e0: 34 02 00 02 mvi r2,2
80072e4: 44 83 00 07 be r4,r3,8007300 <rtems_libio_to_fcntl_flags+0x38><== NEVER TAKEN
fcntl_flags |= O_RDWR; } else if ( (flags & LIBIO_FLAGS_READ) == LIBIO_FLAGS_READ) {
80072e8: a0 22 18 00 and r3,r1,r2 80072ec: 34 02 00 00 mvi r2,0
80072f0: 5c 62 00 04 bne r3,r2,8007300 <rtems_libio_to_fcntl_flags+0x38><== ALWAYS TAKEN
80072f4: 34 02 00 02 mvi r2,2 <== NOT EXECUTED 80072f8: fb ff e3 e6 calli 8000290 <__lshrsi3> <== NOT EXECUTED 80072fc: 20 22 00 01 andi r2,r1,0x1 <== NOT EXECUTED
fcntl_flags |= O_RDONLY; } else if ( (flags & LIBIO_FLAGS_WRITE) == LIBIO_FLAGS_WRITE) { fcntl_flags |= O_WRONLY; } if ( (flags & LIBIO_FLAGS_NO_DELAY) == LIBIO_FLAGS_NO_DELAY ) {
8007300: 21 61 00 01 andi r1,r11,0x1
8007304: 44 20 00 02 be r1,r0,800730c <rtems_libio_to_fcntl_flags+0x44> fcntl_flags |= O_NONBLOCK;
8007308: 38 42 40 00 ori r2,r2,0x4000
} if ( (flags & LIBIO_FLAGS_APPEND) == LIBIO_FLAGS_APPEND ) {
800730c: 21 61 02 00 andi r1,r11,0x200
8007310: 44 20 00 02 be r1,r0,8007318 <rtems_libio_to_fcntl_flags+0x50> fcntl_flags |= O_APPEND;
8007314: 38 42 00 08 ori r2,r2,0x8
} if ( (flags & LIBIO_FLAGS_CREATE) == LIBIO_FLAGS_CREATE ) {
8007318: 21 6b 04 00 andi r11,r11,0x400
800731c: 45 60 00 02 be r11,r0,8007324 <rtems_libio_to_fcntl_flags+0x5c> fcntl_flags |= O_CREAT;
8007320: 38 42 02 00 ori r2,r2,0x200
} return fcntl_flags; }
8007324: b8 40 08 00 mv r1,r2 8007328: 2b 9d 00 04 lw ra,(sp+4) 800732c: 2b 8b 00 08 lw r11,(sp+8) 8007330: 37 9c 00 08 addi sp,sp,8 8007334: c3 a0 00 00 ret
08006b64 <rtems_malloc_statistics_at_free>: * size and thus we skip updating the statistics. */ static void rtems_malloc_statistics_at_free( void *pointer ) {
8006b64: 37 9c ff f8 addi sp,sp,-8 <== NOT EXECUTED 8006b68: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
uintptr_t size; if (_Protected_heap_Get_block_size(RTEMS_Malloc_Heap, pointer, &size) ) {
8006b6c: 78 03 08 06 mvhi r3,0x806 <== NOT EXECUTED 8006b70: 38 63 b0 1c ori r3,r3,0xb01c <== NOT EXECUTED
* size and thus we skip updating the statistics. */ static void rtems_malloc_statistics_at_free( void *pointer ) {
8006b74: b8 20 10 00 mv r2,r1 <== NOT EXECUTED
uintptr_t size; if (_Protected_heap_Get_block_size(RTEMS_Malloc_Heap, pointer, &size) ) {
8006b78: 28 61 00 00 lw r1,(r3+0) <== NOT EXECUTED 8006b7c: 37 83 00 08 addi r3,sp,8 <== NOT EXECUTED 8006b80: f8 00 0f 88 calli 800a9a0 <_Protected_heap_Get_block_size> <== NOT EXECUTED 8006b84: 44 20 00 0b be r1,r0,8006bb0 <rtems_malloc_statistics_at_free+0x4c><== NOT EXECUTED
MSBUMP(lifetime_freed, size);
8006b88: 78 01 08 06 mvhi r1,0x806 <== NOT EXECUTED 8006b8c: 38 21 ee a8 ori r1,r1,0xeea8 <== NOT EXECUTED 8006b90: 2b 83 00 08 lw r3,(sp+8) <== NOT EXECUTED 8006b94: 28 22 00 2c lw r2,(r1+44) <== NOT EXECUTED 8006b98: 28 24 00 28 lw r4,(r1+40) <== NOT EXECUTED 8006b9c: b4 62 10 00 add r2,r3,r2 <== NOT EXECUTED 8006ba0: f4 62 18 00 cmpgu r3,r3,r2 <== NOT EXECUTED 8006ba4: 58 22 00 2c sw (r1+44),r2 <== NOT EXECUTED 8006ba8: b4 64 10 00 add r2,r3,r4 <== NOT EXECUTED 8006bac: 58 22 00 28 sw (r1+40),r2 <== NOT EXECUTED
} }
8006bb0: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8006bb4: 37 9c 00 08 addi sp,sp,8 <== NOT EXECUTED 8006bb8: c3 a0 00 00 ret <== NOT EXECUTED
08006bbc <rtems_malloc_statistics_at_malloc>: } static void rtems_malloc_statistics_at_malloc( void *pointer ) {
8006bbc: 37 9c ff f8 addi sp,sp,-8 <== NOT EXECUTED 8006bc0: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED 8006bc4: b8 20 10 00 mv r2,r1 <== NOT EXECUTED
uintptr_t actual_size = 0; uint32_t current_depth; rtems_malloc_statistics_t *s = &rtems_malloc_statistics; if ( !pointer )
8006bc8: 44 20 00 17 be r1,r0,8006c24 <rtems_malloc_statistics_at_malloc+0x68><== NOT EXECUTED
return; _Protected_heap_Get_block_size(RTEMS_Malloc_Heap, pointer, &actual_size);
8006bcc: 78 03 08 06 mvhi r3,0x806 <== NOT EXECUTED 8006bd0: 38 63 b0 1c ori r3,r3,0xb01c <== NOT EXECUTED 8006bd4: 28 61 00 00 lw r1,(r3+0) <== NOT EXECUTED
static void rtems_malloc_statistics_at_malloc( void *pointer ) { uintptr_t actual_size = 0;
8006bd8: 34 04 00 00 mvi r4,0 <== NOT EXECUTED
rtems_malloc_statistics_t *s = &rtems_malloc_statistics; if ( !pointer ) return; _Protected_heap_Get_block_size(RTEMS_Malloc_Heap, pointer, &actual_size);
8006bdc: 37 83 00 08 addi r3,sp,8 <== NOT EXECUTED
static void rtems_malloc_statistics_at_malloc( void *pointer ) { uintptr_t actual_size = 0;
8006be0: 5b 84 00 08 sw (sp+8),r4 <== NOT EXECUTED
rtems_malloc_statistics_t *s = &rtems_malloc_statistics; if ( !pointer ) return; _Protected_heap_Get_block_size(RTEMS_Malloc_Heap, pointer, &actual_size);
8006be4: f8 00 0f 6f calli 800a9a0 <_Protected_heap_Get_block_size> <== NOT EXECUTED
MSBUMP(lifetime_allocated, actual_size);
8006be8: 78 01 08 06 mvhi r1,0x806 <== NOT EXECUTED 8006bec: 38 21 ee a8 ori r1,r1,0xeea8 <== NOT EXECUTED 8006bf0: 2b 84 00 08 lw r4,(sp+8) <== NOT EXECUTED 8006bf4: 28 22 00 24 lw r2,(r1+36) <== NOT EXECUTED 8006bf8: 28 26 00 20 lw r6,(r1+32) <== NOT EXECUTED
current_depth = (uint32_t) (s->lifetime_allocated - s->lifetime_freed);
8006bfc: 28 23 00 2c lw r3,(r1+44) <== NOT EXECUTED
if ( !pointer ) return; _Protected_heap_Get_block_size(RTEMS_Malloc_Heap, pointer, &actual_size); MSBUMP(lifetime_allocated, actual_size);
8006c00: b4 82 10 00 add r2,r4,r2 <== NOT EXECUTED 8006c04: f4 82 20 00 cmpgu r4,r4,r2 <== NOT EXECUTED
current_depth = (uint32_t) (s->lifetime_allocated - s->lifetime_freed); if (current_depth > s->max_depth)
8006c08: 28 25 00 18 lw r5,(r1+24) <== NOT EXECUTED
if ( !pointer ) return; _Protected_heap_Get_block_size(RTEMS_Malloc_Heap, pointer, &actual_size); MSBUMP(lifetime_allocated, actual_size);
8006c0c: b4 86 20 00 add r4,r4,r6 <== NOT EXECUTED 8006c10: 58 24 00 20 sw (r1+32),r4 <== NOT EXECUTED
current_depth = (uint32_t) (s->lifetime_allocated - s->lifetime_freed);
8006c14: c8 43 18 00 sub r3,r2,r3 <== NOT EXECUTED
if ( !pointer ) return; _Protected_heap_Get_block_size(RTEMS_Malloc_Heap, pointer, &actual_size); MSBUMP(lifetime_allocated, actual_size);
8006c18: 58 22 00 24 sw (r1+36),r2 <== NOT EXECUTED
current_depth = (uint32_t) (s->lifetime_allocated - s->lifetime_freed); if (current_depth > s->max_depth)
8006c1c: 50 a3 00 02 bgeu r5,r3,8006c24 <rtems_malloc_statistics_at_malloc+0x68><== NOT EXECUTED
s->max_depth = current_depth;
8006c20: 58 23 00 18 sw (r1+24),r3 <== NOT EXECUTED
}
8006c24: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8006c28: 37 9c 00 08 addi sp,sp,8 <== NOT EXECUTED 8006c2c: c3 a0 00 00 ret <== NOT EXECUTED
08006c30 <rtems_malloc_statistics_initialize>: #include <sys/reent.h> #include <stdlib.h> static void rtems_malloc_statistics_initialize( void ) {
8006c30: 37 9c ff fc addi sp,sp,-4 <== NOT EXECUTED 8006c34: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
/* * Zero all the statistics */ (void) memset(&rtems_malloc_statistics, 0, sizeof(rtems_malloc_statistics));
8006c38: 78 01 08 06 mvhi r1,0x806 <== NOT EXECUTED 8006c3c: 34 02 00 00 mvi r2,0 <== NOT EXECUTED 8006c40: 34 03 00 30 mvi r3,48 <== NOT EXECUTED 8006c44: 38 21 ee a8 ori r1,r1,0xeea8 <== NOT EXECUTED 8006c48: f8 00 fe 9f calli 80466c4 <memset> <== NOT EXECUTED
}
8006c4c: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8006c50: 37 9c 00 04 addi sp,sp,4 <== NOT EXECUTED 8006c54: c3 a0 00 00 ret <== NOT EXECUTED
0800d230 <rtems_memalign>: int rtems_memalign( void **pointer, size_t alignment, size_t size ) {
800d230: 37 9c ff f0 addi sp,sp,-16 800d234: 5b 8b 00 10 sw (sp+16),r11 800d238: 5b 8c 00 0c sw (sp+12),r12 800d23c: 5b 8d 00 08 sw (sp+8),r13 800d240: 5b 9d 00 04 sw (sp+4),ra 800d244: b8 20 58 00 mv r11,r1 800d248: b8 40 60 00 mv r12,r2 800d24c: b8 60 68 00 mv r13,r3
void *return_this; /* * Parameter error checks */ if ( !pointer ) 800d250: 44 20 00 1f be r1,r0,800d2cc <rtems_memalign+0x9c> *pointer = NULL; /* * Do not attempt to allocate memory if not in correct system state. */ if ( _System_state_Is_up(_System_state_Get()) &&
800d254: 78 01 08 02 mvhi r1,0x802 800d258: 38 21 3a 50 ori r1,r1,0x3a50 800d25c: 28 22 00 00 lw r2,(r1+0)
* Parameter error checks */ if ( !pointer ) return EINVAL; *pointer = NULL;
800d260: 34 01 00 00 mvi r1,0 800d264: 59 61 00 00 sw (r11+0),r1
/* * Do not attempt to allocate memory if not in correct system state. */ if ( _System_state_Is_up(_System_state_Get()) &&
800d268: 34 01 00 03 mvi r1,3
800d26c: 5c 41 00 03 bne r2,r1,800d278 <rtems_memalign+0x48> <== NEVER TAKEN
800d270: fb ff d6 50 calli 8002bb0 <malloc_is_system_state_OK>
800d274: 44 20 00 16 be r1,r0,800d2cc <rtems_memalign+0x9c> <== NEVER TAKEN
/* * * If some free's have been deferred, then do them now. */ malloc_deferred_frees_process();
800d278: fb ff d6 69 calli 8002c1c <malloc_deferred_frees_process>
uintptr_t size, uintptr_t alignment ) { return _Protected_heap_Allocate_aligned_with_boundary( heap, size, alignment, 0 );
800d27c: 78 01 08 02 mvhi r1,0x802 800d280: 38 21 30 1c ori r1,r1,0x301c 800d284: 28 21 00 00 lw r1,(r1+0) 800d288: b9 a0 10 00 mv r2,r13 800d28c: b9 80 18 00 mv r3,r12 800d290: 34 04 00 00 mvi r4,0 800d294: fb ff e3 83 calli 80060a0 <_Protected_heap_Allocate_aligned_with_boundary> 800d298: b8 20 60 00 mv r12,r1
return_this = _Protected_heap_Allocate_aligned( RTEMS_Malloc_Heap, size, alignment ); if ( !return_this )
800d29c: 34 02 00 0c mvi r2,12
800d2a0: 44 20 00 0c be r1,r0,800d2d0 <rtems_memalign+0xa0> return ENOMEM; /* * If configured, update the more involved statistics */ if ( rtems_malloc_statistics_helpers )
800d2a4: 78 02 08 02 mvhi r2,0x802 800d2a8: 38 42 36 30 ori r2,r2,0x3630 800d2ac: 28 41 00 00 lw r1,(r2+0)
800d2b0: 44 20 00 04 be r1,r0,800d2c0 <rtems_memalign+0x90> <== ALWAYS TAKEN
(*rtems_malloc_statistics_helpers->at_malloc)(pointer);
800d2b4: 28 22 00 04 lw r2,(r1+4) <== NOT EXECUTED 800d2b8: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 800d2bc: d8 40 00 00 call r2 <== NOT EXECUTED
*/ if (rtems_malloc_boundary_helpers) (*rtems_malloc_boundary_helpers->at_malloc)(return_this, size); #endif *pointer = return_this;
800d2c0: 59 6c 00 00 sw (r11+0),r12 800d2c4: 34 02 00 00 mvi r2,0
return 0;
800d2c8: e0 00 00 02 bi 800d2d0 <rtems_memalign+0xa0> 800d2cc: 34 02 00 16 mvi r2,22
}
800d2d0: b8 40 08 00 mv r1,r2 800d2d4: 2b 9d 00 04 lw ra,(sp+4) 800d2d8: 2b 8b 00 10 lw r11,(sp+16) 800d2dc: 2b 8c 00 0c lw r12,(sp+12) 800d2e0: 2b 8d 00 08 lw r13,(sp+8) 800d2e4: 37 9c 00 10 addi sp,sp,16 800d2e8: c3 a0 00 00 ret
08006c50 <rtems_panic>: void rtems_panic( const char *printf_format, ... ) {
8006c50: 37 9c ff dc addi sp,sp,-36 <== NOT EXECUTED 8006c54: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED 8006c58: b8 20 48 00 mv r9,r1 <== NOT EXECUTED 8006c5c: 5b 81 00 08 sw (sp+8),r1 <== NOT EXECUTED
va_list arglist; va_start(arglist, printf_format); (void) rtems_verror(RTEMS_ERROR_PANIC, printf_format, arglist);
8006c60: 78 01 20 00 mvhi r1,0x2000 <== NOT EXECUTED
void rtems_panic( const char *printf_format, ... ) {
8006c64: 5b 82 00 0c sw (sp+12),r2 <== NOT EXECUTED 8006c68: 5b 83 00 10 sw (sp+16),r3 <== NOT EXECUTED
va_list arglist; va_start(arglist, printf_format); (void) rtems_verror(RTEMS_ERROR_PANIC, printf_format, arglist);
8006c6c: b9 20 10 00 mv r2,r9 <== NOT EXECUTED 8006c70: 37 83 00 0c addi r3,sp,12 <== NOT EXECUTED 8006c74: 38 21 00 00 ori r1,r1,0x0 <== NOT EXECUTED
void rtems_panic( const char *printf_format, ... ) {
8006c78: 5b 84 00 14 sw (sp+20),r4 <== NOT EXECUTED 8006c7c: 5b 85 00 18 sw (sp+24),r5 <== NOT EXECUTED 8006c80: 5b 86 00 1c sw (sp+28),r6 <== NOT EXECUTED 8006c84: 5b 87 00 20 sw (sp+32),r7 <== NOT EXECUTED 8006c88: 5b 88 00 24 sw (sp+36),r8 <== NOT EXECUTED
va_list arglist; va_start(arglist, printf_format); (void) rtems_verror(RTEMS_ERROR_PANIC, printf_format, arglist);
8006c8c: fb ff ff 6e calli 8006a44 <rtems_verror> <== NOT EXECUTED
va_end(arglist); }
8006c90: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8006c94: 37 9c 00 24 addi sp,sp,36 <== NOT EXECUTED 8006c98: c3 a0 00 00 ret <== NOT EXECUTED
08011088 <rtems_partition_create>: uint32_t length, uint32_t buffer_size, rtems_attribute attribute_set, rtems_id *id ) {
8011088: 37 9c ff dc addi sp,sp,-36 801108c: 5b 8b 00 24 sw (sp+36),r11 8011090: 5b 8c 00 20 sw (sp+32),r12 8011094: 5b 8d 00 1c sw (sp+28),r13 8011098: 5b 8e 00 18 sw (sp+24),r14 801109c: 5b 8f 00 14 sw (sp+20),r15 80110a0: 5b 90 00 10 sw (sp+16),r16 80110a4: 5b 91 00 0c sw (sp+12),r17 80110a8: 5b 92 00 08 sw (sp+8),r18 80110ac: 5b 9d 00 04 sw (sp+4),ra
register Partition_Control *the_partition; if ( !rtems_is_name_valid( name ) )
80110b0: 34 07 00 03 mvi r7,3
uint32_t length, uint32_t buffer_size, rtems_attribute attribute_set, rtems_id *id ) {
80110b4: b8 20 88 00 mv r17,r1 80110b8: b8 40 70 00 mv r14,r2 80110bc: b8 60 78 00 mv r15,r3 80110c0: b8 80 60 00 mv r12,r4 80110c4: b8 a0 90 00 mv r18,r5 80110c8: b8 c0 80 00 mv r16,r6
register Partition_Control *the_partition; if ( !rtems_is_name_valid( name ) ) 80110cc: 44 20 00 38 be r1,r0,80111ac <rtems_partition_create+0x124> return RTEMS_INVALID_NAME; if ( !starting_address ) 80110d0: 44 40 00 34 be r2,r0,80111a0 <rtems_partition_create+0x118> return RTEMS_INVALID_ADDRESS; if ( !id )
80110d4: 44 c0 00 33 be r6,r0,80111a0 <rtems_partition_create+0x118><== NEVER TAKEN
return RTEMS_INVALID_ADDRESS; if ( length == 0 || buffer_size == 0 || length < buffer_size ||
80110d8: 64 82 00 00 cmpei r2,r4,0 80110dc: 64 61 00 00 cmpei r1,r3,0 80110e0: b8 41 08 00 or r1,r2,r1
80110e4: 5c 20 00 31 bne r1,r0,80111a8 <rtems_partition_create+0x120> 80110e8: 54 83 00 30 bgu r4,r3,80111a8 <rtems_partition_create+0x120>
80110ec: 20 81 00 07 andi r1,r4,0x7
80110f0: 5c 20 00 2e bne r1,r0,80111a8 <rtems_partition_create+0x120> !_Partition_Is_buffer_size_aligned( buffer_size ) ) return RTEMS_INVALID_SIZE; if ( !_Addresses_Is_aligned( starting_address ) )
80110f4: 21 cd 00 07 andi r13,r14,0x7
80110f8: 5d a1 00 2a bne r13,r1,80111a0 <rtems_partition_create+0x118>
80110fc: 78 02 08 03 mvhi r2,0x803 8011100: 38 42 dc 2c ori r2,r2,0xdc2c 8011104: 28 41 00 00 lw r1,(r2+0) 8011108: 34 21 00 01 addi r1,r1,1 801110c: 58 41 00 00 sw (r2+0),r1
* This function allocates a partition control block from * the inactive chain of free partition control blocks. */ RTEMS_INLINE_ROUTINE Partition_Control *_Partition_Allocate ( void ) { return (Partition_Control *) _Objects_Allocate( &_Partition_Information );
8011110: 78 01 08 03 mvhi r1,0x803 8011114: 38 21 da 74 ori r1,r1,0xda74 8011118: f8 00 15 86 calli 8016730 <_Objects_Allocate> 801111c: b8 20 58 00 mv r11,r1
_Thread_Disable_dispatch(); /* prevents deletion */ the_partition = _Partition_Allocate(); if ( !the_partition ) { 8011120: 5c 2d 00 04 bne r1,r13,8011130 <rtems_partition_create+0xa8> _Thread_Enable_dispatch();
8011124: f8 00 1a 21 calli 80179a8 <_Thread_Enable_dispatch> 8011128: 34 07 00 05 mvi r7,5
return RTEMS_TOO_MANY;
801112c: e0 00 00 20 bi 80111ac <rtems_partition_create+0x124>
_Thread_Enable_dispatch(); return RTEMS_TOO_MANY; } #endif the_partition->starting_address = starting_address;
8011130: 58 2e 00 10 sw (r1+16),r14
the_partition->length = length;
8011134: 58 2f 00 14 sw (r1+20),r15
the_partition->buffer_size = buffer_size;
8011138: 58 2c 00 18 sw (r1+24),r12
the_partition->attribute_set = attribute_set; the_partition->number_of_used_blocks = 0; _Chain_Initialize( &the_partition->Memory, starting_address,
801113c: b9 80 10 00 mv r2,r12
#endif the_partition->starting_address = starting_address; the_partition->length = length; the_partition->buffer_size = buffer_size; the_partition->attribute_set = attribute_set;
8011140: 58 32 00 1c sw (r1+28),r18
the_partition->number_of_used_blocks = 0;
8011144: 58 2d 00 20 sw (r1+32),r13
_Chain_Initialize( &the_partition->Memory, starting_address,
8011148: b9 e0 08 00 mv r1,r15 801114c: f8 00 77 73 calli 802ef18 <__udivsi3> 8011150: 35 6f 00 24 addi r15,r11,36 8011154: b8 20 18 00 mv r3,r1 8011158: b9 80 20 00 mv r4,r12 801115c: b9 c0 10 00 mv r2,r14 8011160: b9 e0 08 00 mv r1,r15 8011164: f8 00 0f 36 calli 8014e3c <_Chain_Initialize> 8011168: 78 02 08 03 mvhi r2,0x803 801116c: 29 6c 00 08 lw r12,(r11+8) 8011170: 38 42 da 74 ori r2,r2,0xda74 8011174: 28 4e 00 1c lw r14,(r2+28) 8011178: 21 81 ff ff andi r1,r12,0xffff 801117c: 34 02 00 02 mvi r2,2 8011180: fb ff f3 46 calli 800de98 <__ashlsi3> 8011184: b5 c1 08 00 add r1,r14,r1
information, _Objects_Get_index( the_object->id ), the_object ); the_object->name = name;
8011188: 59 71 00 0c sw (r11+12),r17
&_Partition_Information, &the_partition->Object, (Objects_Name) name ); *id = the_partition->Object.id;
801118c: 5a 0c 00 00 sw (r16+0),r12
#if defined(RTEMS_DEBUG) if ( index > information->maximum ) return; #endif information->local_table[ index ] = the_object;
8011190: 58 2b 00 00 sw (r1+0),r11
name, 0 /* Not used */ ); #endif _Thread_Enable_dispatch();
8011194: f8 00 1a 05 calli 80179a8 <_Thread_Enable_dispatch> 8011198: b9 a0 38 00 mv r7,r13
return RTEMS_SUCCESSFUL;
801119c: e0 00 00 04 bi 80111ac <rtems_partition_create+0x124> 80111a0: 34 07 00 09 mvi r7,9 80111a4: e0 00 00 02 bi 80111ac <rtems_partition_create+0x124> 80111a8: 34 07 00 08 mvi r7,8
}
80111ac: b8 e0 08 00 mv r1,r7 80111b0: 2b 9d 00 04 lw ra,(sp+4) 80111b4: 2b 8b 00 24 lw r11,(sp+36) 80111b8: 2b 8c 00 20 lw r12,(sp+32) 80111bc: 2b 8d 00 1c lw r13,(sp+28) 80111c0: 2b 8e 00 18 lw r14,(sp+24) 80111c4: 2b 8f 00 14 lw r15,(sp+20) 80111c8: 2b 90 00 10 lw r16,(sp+16) 80111cc: 2b 91 00 0c lw r17,(sp+12) 80111d0: 2b 92 00 08 lw r18,(sp+8) 80111d4: 37 9c 00 24 addi sp,sp,36 80111d8: c3 a0 00 00 ret
08009348 <rtems_pipe_initialize>: /* * Initialization of FIFO/pipe module. */ void rtems_pipe_initialize (void) {
8009348: 37 9c ff f8 addi sp,sp,-8 800934c: 5b 8b 00 08 sw (sp+8),r11 8009350: 5b 9d 00 04 sw (sp+4),ra
if (!rtems_pipe_configured)
8009354: 78 01 08 01 mvhi r1,0x801 8009358: 38 21 c6 0c ori r1,r1,0xc60c 800935c: 40 21 00 00 lbu r1,(r1+0)
8009360: 44 20 00 11 be r1,r0,80093a4 <rtems_pipe_initialize+0x5c> <== ALWAYS TAKEN
return; if (rtems_pipe_semaphore)
8009364: 78 05 08 01 mvhi r5,0x801 <== NOT EXECUTED 8009368: 38 a5 c6 28 ori r5,r5,0xc628 <== NOT EXECUTED 800936c: 28 ab 00 00 lw r11,(r5+0) <== NOT EXECUTED 8009370: 5d 60 00 0d bne r11,r0,80093a4 <rtems_pipe_initialize+0x5c><== NOT EXECUTED
return; rtems_status_code sc; sc = rtems_semaphore_create(
8009374: 78 01 50 49 mvhi r1,0x5049 <== NOT EXECUTED 8009378: 38 21 50 45 ori r1,r1,0x5045 <== NOT EXECUTED 800937c: 34 02 00 01 mvi r2,1 <== NOT EXECUTED 8009380: 34 03 00 54 mvi r3,84 <== NOT EXECUTED 8009384: b9 60 20 00 mv r4,r11 <== NOT EXECUTED 8009388: fb ff e2 f2 calli 8001f50 <rtems_semaphore_create> <== NOT EXECUTED
rtems_build_name ('P', 'I', 'P', 'E'), 1, RTEMS_BINARY_SEMAPHORE | RTEMS_INHERIT_PRIORITY | RTEMS_PRIORITY, RTEMS_NO_PRIORITY, &rtems_pipe_semaphore); if (sc != RTEMS_SUCCESSFUL)
800938c: 44 2b 00 02 be r1,r11,8009394 <rtems_pipe_initialize+0x4c> <== NOT EXECUTED
rtems_fatal_error_occurred (sc);
8009390: fb ff e4 c4 calli 80026a0 <rtems_fatal_error_occurred> <== NOT EXECUTED
rtems_interval now; now = rtems_clock_get_ticks_since_boot();
8009394: f8 00 03 c3 calli 800a2a0 <rtems_clock_get_ticks_since_boot><== NOT EXECUTED
rtems_pipe_no = now;
8009398: 78 02 08 01 mvhi r2,0x801 <== NOT EXECUTED 800939c: 38 42 c6 2e ori r2,r2,0xc62e <== NOT EXECUTED 80093a0: 0c 41 00 00 sh (r2+0),r1 <== NOT EXECUTED
}
80093a4: 2b 9d 00 04 lw ra,(sp+4) 80093a8: 2b 8b 00 08 lw r11,(sp+8) 80093ac: 37 9c 00 08 addi sp,sp,8 80093b0: c3 a0 00 00 ret
0803c628 <rtems_rate_monotonic_period>: rtems_status_code rtems_rate_monotonic_period( rtems_id id, rtems_interval length ) {
803c628: 37 9c ff e8 addi sp,sp,-24 803c62c: 5b 8b 00 14 sw (sp+20),r11 803c630: 5b 8c 00 10 sw (sp+16),r12 803c634: 5b 8d 00 0c sw (sp+12),r13 803c638: 5b 8e 00 08 sw (sp+8),r14 803c63c: 5b 9d 00 04 sw (sp+4),ra 803c640: b8 20 70 00 mv r14,r1 803c644: 78 01 08 06 mvhi r1,0x806 803c648: b8 40 60 00 mv r12,r2 803c64c: 38 21 f4 9c ori r1,r1,0xf49c 803c650: b9 c0 10 00 mv r2,r14 803c654: 37 83 00 18 addi r3,sp,24 803c658: fb ff 37 e1 calli 800a5dc <_Objects_Get> 803c65c: b8 20 58 00 mv r11,r1
rtems_rate_monotonic_period_states local_state; ISR_Level level; the_period = _Rate_monotonic_Get( id, &location ); switch ( location ) {
803c660: 2b 81 00 18 lw r1,(sp+24)
803c664: 5c 20 00 61 bne r1,r0,803c7e8 <rtems_rate_monotonic_period+0x1c0> case OBJECTS_LOCAL: if ( !_Thread_Is_executing( the_period->owner ) ) {
803c668: 78 03 08 06 mvhi r3,0x806 803c66c: 38 63 f0 e0 ori r3,r3,0xf0e0 803c670: 28 61 00 00 lw r1,(r3+0) 803c674: 29 62 00 40 lw r2,(r11+64)
803c678: 44 41 00 04 be r2,r1,803c688 <rtems_rate_monotonic_period+0x60> _Thread_Enable_dispatch();
803c67c: fb ff 3a 83 calli 800b088 <_Thread_Enable_dispatch> 803c680: 34 0b 00 17 mvi r11,23
return RTEMS_NOT_OWNER_OF_RESOURCE;
803c684: e0 00 00 5a bi 803c7ec <rtems_rate_monotonic_period+0x1c4>
} if ( length == RTEMS_PERIOD_STATUS ) { 803c688: 5d 80 00 0d bne r12,r0,803c6bc <rtems_rate_monotonic_period+0x94> switch ( the_period->state ) {
803c68c: 29 61 00 38 lw r1,(r11+56) 803c690: 34 02 00 04 mvi r2,4
803c694: 50 41 00 03 bgeu r2,r1,803c6a0 <rtems_rate_monotonic_period+0x78><== ALWAYS TAKEN
803c698: b9 80 58 00 mv r11,r12 <== NOT EXECUTED 803c69c: e0 00 00 51 bi 803c7e0 <rtems_rate_monotonic_period+0x1b8> <== NOT EXECUTED
803c6a0: 78 0b 08 06 mvhi r11,0x806 803c6a4: 34 02 00 02 mvi r2,2 803c6a8: 39 6b 86 f4 ori r11,r11,0x86f4 803c6ac: fb ff 12 a3 calli 8001138 <__ashlsi3> 803c6b0: b5 61 08 00 add r1,r11,r1 803c6b4: 28 2b 00 00 lw r11,(r1+0) 803c6b8: e0 00 00 4a bi 803c7e0 <rtems_rate_monotonic_period+0x1b8>
} _Thread_Enable_dispatch(); return( return_value ); } _ISR_Disable( level );
803c6bc: 90 00 68 00 rcsr r13,IE 803c6c0: 34 01 ff fe mvi r1,-2 803c6c4: a1 a1 08 00 and r1,r13,r1 803c6c8: d0 01 00 00 wcsr IE,r1
switch ( the_period->state ) {
803c6cc: 29 63 00 38 lw r3,(r11+56) 803c6d0: 34 01 00 02 mvi r1,2
803c6d4: 44 61 00 18 be r3,r1,803c734 <rtems_rate_monotonic_period+0x10c>
803c6d8: 34 01 00 04 mvi r1,4
803c6dc: 44 61 00 35 be r3,r1,803c7b0 <rtems_rate_monotonic_period+0x188>
803c6e0: 5c 60 00 42 bne r3,r0,803c7e8 <rtems_rate_monotonic_period+0x1c0><== NEVER TAKEN
case RATE_MONOTONIC_INACTIVE: { _ISR_Enable( level );
803c6e4: d0 0d 00 00 wcsr IE,r13
/* * Baseline statistics information for the beginning of a period. */ _Rate_monotonic_Initiate_statistics( the_period );
803c6e8: b9 60 08 00 mv r1,r11 803c6ec: fb ff ff 31 calli 803c3b0 <_Rate_monotonic_Initiate_statistics>
Objects_Id id, void *user_data ) { the_watchdog->state = WATCHDOG_INACTIVE; the_watchdog->routine = routine;
803c6f0: 78 03 08 03 mvhi r3,0x803
Watchdog_Service_routine_entry routine, Objects_Id id, void *user_data ) { the_watchdog->state = WATCHDOG_INACTIVE;
803c6f4: 34 0d 00 00 mvi r13,0
the_watchdog->routine = routine;
803c6f8: 38 63 c8 0c ori r3,r3,0xc80c
the_period->state = RATE_MONOTONIC_ACTIVE;
803c6fc: 34 02 00 02 mvi r2,2
) { the_watchdog->initial = units; _Watchdog_Insert( &_Watchdog_Ticks_chain, the_watchdog );
803c700: 78 01 08 06 mvhi r1,0x806 803c704: 59 62 00 38 sw (r11+56),r2
Objects_Id id, void *user_data ) { the_watchdog->state = WATCHDOG_INACTIVE; the_watchdog->routine = routine;
803c708: 59 63 00 2c sw (r11+44),r3
the_watchdog->id = id;
803c70c: 59 6e 00 30 sw (r11+48),r14
Watchdog_Control *the_watchdog, Watchdog_Interval units ) { the_watchdog->initial = units;
803c710: 59 6c 00 1c sw (r11+28),r12
_Watchdog_Insert( &_Watchdog_Ticks_chain, the_watchdog );
803c714: 35 62 00 10 addi r2,r11,16
Watchdog_Service_routine_entry routine, Objects_Id id, void *user_data ) { the_watchdog->state = WATCHDOG_INACTIVE;
803c718: 59 6d 00 18 sw (r11+24),r13
the_watchdog->routine = routine; the_watchdog->id = id; the_watchdog->user_data = user_data;
803c71c: 59 6d 00 34 sw (r11+52),r13
_Rate_monotonic_Timeout, id, NULL ); the_period->next_length = length;
803c720: 59 6c 00 3c sw (r11+60),r12
) { the_watchdog->initial = units; _Watchdog_Insert( &_Watchdog_Ticks_chain, the_watchdog );
803c724: 38 21 f1 00 ori r1,r1,0xf100 803c728: fb ff 3f 37 calli 800c404 <_Watchdog_Insert>
_Watchdog_Insert_ticks( &the_period->Timer, length ); _Thread_Enable_dispatch();
803c72c: b9 a0 58 00 mv r11,r13 803c730: e0 00 00 2c bi 803c7e0 <rtems_rate_monotonic_period+0x1b8>
case RATE_MONOTONIC_ACTIVE: /* * Update statistics from the concluding period. */ _Rate_monotonic_Update_statistics( the_period );
803c734: b9 60 08 00 mv r1,r11 803c738: fb ff ff 7c calli 803c528 <_Rate_monotonic_Update_statistics>
/* * This tells the _Rate_monotonic_Timeout that this task is * in the process of blocking on the period and that we * may be changing the length of the next period. */ the_period->state = RATE_MONOTONIC_OWNER_IS_BLOCKING;
803c73c: 34 01 00 01 mvi r1,1
the_period->next_length = length;
803c740: 59 6c 00 3c sw (r11+60),r12
/* * This tells the _Rate_monotonic_Timeout that this task is * in the process of blocking on the period and that we * may be changing the length of the next period. */ the_period->state = RATE_MONOTONIC_OWNER_IS_BLOCKING;
803c744: 59 61 00 38 sw (r11+56),r1
the_period->next_length = length; _ISR_Enable( level );
803c748: d0 0d 00 00 wcsr IE,r13
_Thread_Executing->Wait.id = the_period->Object.id;
803c74c: 78 01 08 06 mvhi r1,0x806 803c750: 38 21 f0 e0 ori r1,r1,0xf0e0 803c754: 28 21 00 00 lw r1,(r1+0) 803c758: 29 63 00 08 lw r3,(r11+8)
_Thread_Set_state( _Thread_Executing, STATES_WAITING_FOR_PERIOD );
803c75c: 34 02 40 00 mvi r2,16384
the_period->state = RATE_MONOTONIC_OWNER_IS_BLOCKING; the_period->next_length = length; _ISR_Enable( level ); _Thread_Executing->Wait.id = the_period->Object.id;
803c760: 58 23 00 20 sw (r1+32),r3
_Thread_Set_state( _Thread_Executing, STATES_WAITING_FOR_PERIOD );
803c764: fb ff 3d 01 calli 800bb68 <_Thread_Set_state>
/* * Did the watchdog timer expire while we were actually blocking * on it? */ _ISR_Disable( level );
803c768: 90 00 08 00 rcsr r1,IE 803c76c: 34 02 ff fe mvi r2,-2 803c770: a0 22 10 00 and r2,r1,r2 803c774: d0 02 00 00 wcsr IE,r2
local_state = the_period->state; the_period->state = RATE_MONOTONIC_ACTIVE;
803c778: 34 03 00 02 mvi r3,2
/* * Did the watchdog timer expire while we were actually blocking * on it? */ _ISR_Disable( level ); local_state = the_period->state;
803c77c: 29 62 00 38 lw r2,(r11+56)
the_period->state = RATE_MONOTONIC_ACTIVE;
803c780: 59 63 00 38 sw (r11+56),r3
_ISR_Enable( level );
803c784: d0 01 00 00 wcsr IE,r1
/* * If it did, then we want to unblock ourself and continue as * if nothing happen. The period was reset in the timeout routine. */ if ( local_state == RATE_MONOTONIC_EXPIRED_WHILE_BLOCKING )
803c788: 34 01 00 03 mvi r1,3
803c78c: 5c 41 00 06 bne r2,r1,803c7a4 <rtems_rate_monotonic_period+0x17c><== ALWAYS TAKEN
_Thread_Clear_state( _Thread_Executing, STATES_WAITING_FOR_PERIOD );
803c790: 78 01 08 06 mvhi r1,0x806 <== NOT EXECUTED 803c794: 38 21 f0 e0 ori r1,r1,0xf0e0 <== NOT EXECUTED 803c798: 28 21 00 00 lw r1,(r1+0) <== NOT EXECUTED 803c79c: 34 02 40 00 mvi r2,16384 <== NOT EXECUTED 803c7a0: fb ff ba 6f calli 802b15c <_Thread_Clear_state> <== NOT EXECUTED
_Thread_Enable_dispatch();
803c7a4: fb ff 3a 39 calli 800b088 <_Thread_Enable_dispatch> 803c7a8: 34 0b 00 00 mvi r11,0
return RTEMS_SUCCESSFUL;
803c7ac: e0 00 00 10 bi 803c7ec <rtems_rate_monotonic_period+0x1c4>
case RATE_MONOTONIC_EXPIRED: /* * Update statistics from the concluding period */ _Rate_monotonic_Update_statistics( the_period );
803c7b0: b9 60 08 00 mv r1,r11 803c7b4: fb ff ff 5d calli 803c528 <_Rate_monotonic_Update_statistics>
_ISR_Enable( level );
803c7b8: d0 0d 00 00 wcsr IE,r13
the_period->state = RATE_MONOTONIC_ACTIVE;
803c7bc: 34 02 00 02 mvi r2,2 803c7c0: 78 01 08 06 mvhi r1,0x806 803c7c4: 59 62 00 38 sw (r11+56),r2
Watchdog_Control *the_watchdog, Watchdog_Interval units ) { the_watchdog->initial = units;
803c7c8: 59 6c 00 1c sw (r11+28),r12
_Watchdog_Insert( &_Watchdog_Ticks_chain, the_watchdog );
803c7cc: 35 62 00 10 addi r2,r11,16
the_period->next_length = length;
803c7d0: 59 6c 00 3c sw (r11+60),r12 803c7d4: 38 21 f1 00 ori r1,r1,0xf100 803c7d8: fb ff 3f 0b calli 800c404 <_Watchdog_Insert>
_Watchdog_Insert_ticks( &the_period->Timer, length ); _Thread_Enable_dispatch();
803c7dc: 34 0b 00 06 mvi r11,6 803c7e0: fb ff 3a 2a calli 800b088 <_Thread_Enable_dispatch>
return RTEMS_TIMEOUT;
803c7e4: e0 00 00 02 bi 803c7ec <rtems_rate_monotonic_period+0x1c4> 803c7e8: 34 0b 00 04 mvi r11,4
case OBJECTS_ERROR: break; } return RTEMS_INVALID_ID; }
803c7ec: b9 60 08 00 mv r1,r11 803c7f0: 2b 9d 00 04 lw ra,(sp+4) 803c7f4: 2b 8b 00 14 lw r11,(sp+20) 803c7f8: 2b 8c 00 10 lw r12,(sp+16) 803c7fc: 2b 8d 00 0c lw r13,(sp+12) 803c800: 2b 8e 00 08 lw r14,(sp+8) 803c804: 37 9c 00 18 addi sp,sp,24 803c808: c3 a0 00 00 ret
08029890 <rtems_rate_monotonic_report_statistics_with_plugin>: */ void rtems_rate_monotonic_report_statistics_with_plugin( void *context, rtems_printk_plugin_t print ) {
8029890: 37 9c ff 5c addi sp,sp,-164 8029894: 5b 8b 00 44 sw (sp+68),r11 8029898: 5b 8c 00 40 sw (sp+64),r12 802989c: 5b 8d 00 3c sw (sp+60),r13 80298a0: 5b 8e 00 38 sw (sp+56),r14 80298a4: 5b 8f 00 34 sw (sp+52),r15 80298a8: 5b 90 00 30 sw (sp+48),r16 80298ac: 5b 91 00 2c sw (sp+44),r17 80298b0: 5b 92 00 28 sw (sp+40),r18 80298b4: 5b 93 00 24 sw (sp+36),r19 80298b8: 5b 94 00 20 sw (sp+32),r20 80298bc: 5b 95 00 1c sw (sp+28),r21 80298c0: 5b 96 00 18 sw (sp+24),r22 80298c4: 5b 97 00 14 sw (sp+20),r23 80298c8: 5b 98 00 10 sw (sp+16),r24 80298cc: 5b 99 00 0c sw (sp+12),r25 80298d0: 5b 9b 00 08 sw (sp+8),fp 80298d4: 5b 9d 00 04 sw (sp+4),ra 80298d8: b8 40 58 00 mv r11,r2 80298dc: b8 20 60 00 mv r12,r1
rtems_id id; rtems_rate_monotonic_period_statistics the_stats; rtems_rate_monotonic_period_status the_status; char name[5]; if ( !print )
80298e0: 44 40 00 73 be r2,r0,8029aac <rtems_rate_monotonic_report_statistics_with_plugin+0x21c><== NEVER TAKEN
return; (*print)( context, "Period information by period\n" );
80298e4: 78 02 08 06 mvhi r2,0x806 80298e8: 38 42 4e d4 ori r2,r2,0x4ed4 80298ec: d9 60 00 00 call r11
#ifndef __RTEMS_USE_TICKS_FOR_STATISTICS__ (*print)( context, "--- CPU times are in seconds ---\n" );
80298f0: 78 02 08 06 mvhi r2,0x806 80298f4: 38 42 4e f4 ori r2,r2,0x4ef4 80298f8: b9 80 08 00 mv r1,r12 80298fc: d9 60 00 00 call r11
(*print)( context, "--- Wall times are in seconds ---\n" );
8029900: 78 02 08 06 mvhi r2,0x806 8029904: 38 42 4f 18 ori r2,r2,0x4f18 8029908: b9 80 08 00 mv r1,r12 802990c: d9 60 00 00 call r11
Be sure to test the various cases. (*print)( context,"\ 1234567890123456789012345678901234567890123456789012345678901234567890123456789\ \n"); */ (*print)( context, " ID OWNER COUNT MISSED "
8029910: 78 02 08 06 mvhi r2,0x806 8029914: 38 42 4f 3c ori r2,r2,0x4f3c 8029918: b9 80 08 00 mv r1,r12 802991c: d9 60 00 00 call r11
#ifndef __RTEMS_USE_TICKS_FOR_STATISTICS__ " " #endif " WALL TIME\n" ); (*print)( context, " "
8029920: 78 02 08 06 mvhi r2,0x806 8029924: b9 80 08 00 mv r1,r12 8029928: 38 42 4f 88 ori r2,r2,0x4f88 802992c: d9 60 00 00 call r11
/* * Cycle through all possible ids and try to report on each one. If it * is a period that is inactive, we just get an error back. No big deal. */ for ( id=_Rate_monotonic_Information.minimum_id ;
8029930: 78 01 08 06 mvhi r1,0x806 8029934: 38 21 f4 9c ori r1,r1,0xf49c 8029938: b8 20 80 00 mv r16,r1 802993c: 28 2d 00 08 lw r13,(r1+8)
id <= _Rate_monotonic_Information.maximum_id ; id++ ) { status = rtems_rate_monotonic_get_statistics( id, &the_stats );
8029940: 37 99 00 48 addi r25,sp,72
if ( status != RTEMS_SUCCESSFUL ) continue; /* If the above passed, so should this but check it anyway */ status = rtems_rate_monotonic_get_status( id, &the_status );
8029944: 37 98 00 80 addi r24,sp,128
#if defined(RTEMS_DEBUG) if ( status != RTEMS_SUCCESSFUL ) continue; #endif rtems_object_get_name( the_status.owner, sizeof(name), name );
8029948: 37 8f 00 a0 addi r15,sp,160
/* * Print part of report line that is not dependent on granularity */ (*print)( context,
802994c: 78 17 08 06 mvhi r23,0x806
struct timespec cpu_average; struct timespec *min_cpu = &the_stats.min_cpu_time; struct timespec *max_cpu = &the_stats.max_cpu_time; struct timespec *total_cpu = &the_stats.total_cpu_time; _Timespec_Divide_by_integer( total_cpu, the_stats.count, &cpu_average );
8029950: 37 96 00 60 addi r22,sp,96 8029954: 37 8e 00 98 addi r14,sp,152
(*print)( context,
8029958: 78 15 08 06 mvhi r21,0x806
struct timespec wall_average; struct timespec *min_wall = &the_stats.min_wall_time; struct timespec *max_wall = &the_stats.max_wall_time; struct timespec *total_wall = &the_stats.total_wall_time; _Timespec_Divide_by_integer(total_wall, the_stats.count, &wall_average);
802995c: 37 94 00 78 addi r20,sp,120
(*print)( context,
8029960: 78 13 08 06 mvhi r19,0x806
/* * If the count is zero, don't print statistics */ if (the_stats.count == 0) { (*print)( context, "\n" );
8029964: 78 12 08 06 mvhi r18,0x806
/* * Cycle through all possible ids and try to report on each one. If it * is a period that is inactive, we just get an error back. No big deal. */ for ( id=_Rate_monotonic_Information.minimum_id ;
8029968: e0 00 00 4d bi 8029a9c <rtems_rate_monotonic_report_statistics_with_plugin+0x20c>
id <= _Rate_monotonic_Information.maximum_id ; id++ ) { status = rtems_rate_monotonic_get_statistics( id, &the_stats );
802996c: f8 00 4a 2f calli 803c228 <rtems_rate_monotonic_get_statistics> 8029970: b8 20 88 00 mv r17,r1
if ( status != RTEMS_SUCCESSFUL ) 8029974: 5c 20 00 49 bne r1,r0,8029a98 <rtems_rate_monotonic_report_statistics_with_plugin+0x208> continue; /* If the above passed, so should this but check it anyway */ status = rtems_rate_monotonic_get_status( id, &the_status );
8029978: bb 00 10 00 mv r2,r24 802997c: b9 a0 08 00 mv r1,r13 8029980: f8 00 4a 5d calli 803c2f4 <rtems_rate_monotonic_get_status>
#if defined(RTEMS_DEBUG) if ( status != RTEMS_SUCCESSFUL ) continue; #endif rtems_object_get_name( the_status.owner, sizeof(name), name );
8029984: 2b 81 00 80 lw r1,(sp+128) 8029988: b9 e0 18 00 mv r3,r15 802998c: 34 02 00 05 mvi r2,5 8029990: fb ff 7a b2 calli 8008458 <rtems_object_get_name>
/* * Print part of report line that is not dependent on granularity */ (*print)( context,
8029994: 2b 85 00 48 lw r5,(sp+72) 8029998: 2b 86 00 4c lw r6,(sp+76) 802999c: ba e0 10 00 mv r2,r23 80299a0: b9 a0 18 00 mv r3,r13 80299a4: 38 42 4f d4 ori r2,r2,0x4fd4 80299a8: b9 80 08 00 mv r1,r12 80299ac: b9 e0 20 00 mv r4,r15 80299b0: d9 60 00 00 call r11
); /* * If the count is zero, don't print statistics */ if (the_stats.count == 0) {
80299b4: 2b 85 00 48 lw r5,(sp+72)
(*print)( context, "\n" );
80299b8: ba 40 10 00 mv r2,r18
struct timespec cpu_average; struct timespec *min_cpu = &the_stats.min_cpu_time; struct timespec *max_cpu = &the_stats.max_cpu_time; struct timespec *total_cpu = &the_stats.total_cpu_time; _Timespec_Divide_by_integer( total_cpu, the_stats.count, &cpu_average );
80299bc: b9 c0 18 00 mv r3,r14 80299c0: ba c0 08 00 mv r1,r22
/* * If the count is zero, don't print statistics */ if (the_stats.count == 0) { (*print)( context, "\n" );
80299c4: 38 42 66 80 ori r2,r2,0x6680
); /* * If the count is zero, don't print statistics */ if (the_stats.count == 0) { 80299c8: 5c b1 00 04 bne r5,r17,80299d8 <rtems_rate_monotonic_report_statistics_with_plugin+0x148> (*print)( context, "\n" );
80299cc: b9 80 08 00 mv r1,r12 80299d0: d9 60 00 00 call r11
continue;
80299d4: e0 00 00 31 bi 8029a98 <rtems_rate_monotonic_report_statistics_with_plugin+0x208>
struct timespec cpu_average; struct timespec *min_cpu = &the_stats.min_cpu_time; struct timespec *max_cpu = &the_stats.max_cpu_time; struct timespec *total_cpu = &the_stats.total_cpu_time; _Timespec_Divide_by_integer( total_cpu, the_stats.count, &cpu_average );
80299d8: b8 a0 10 00 mv r2,r5 80299dc: f8 00 07 9a calli 802b844 <_Timespec_Divide_by_integer>
(*print)( context,
80299e0: 2b 81 00 54 lw r1,(sp+84) 80299e4: 34 02 03 e8 mvi r2,1000 80299e8: f8 00 d5 25 calli 805ee7c <__divsi3> 80299ec: b8 20 d8 00 mv fp,r1 80299f0: 2b 81 00 5c lw r1,(sp+92) 80299f4: 34 02 03 e8 mvi r2,1000 80299f8: f8 00 d5 21 calli 805ee7c <__divsi3> 80299fc: b8 20 88 00 mv r17,r1 8029a00: 2b 81 00 9c lw r1,(sp+156) 8029a04: 34 02 03 e8 mvi r2,1000 8029a08: f8 00 d5 1d calli 805ee7c <__divsi3> 8029a0c: 2b 85 00 58 lw r5,(sp+88) 8029a10: 2b 87 00 98 lw r7,(sp+152) 8029a14: 2b 83 00 50 lw r3,(sp+80) 8029a18: ba a0 10 00 mv r2,r21 8029a1c: b8 20 40 00 mv r8,r1 8029a20: bb 60 20 00 mv r4,fp 8029a24: ba 20 30 00 mv r6,r17 8029a28: 38 42 4f ec ori r2,r2,0x4fec 8029a2c: b9 80 08 00 mv r1,r12 8029a30: d9 60 00 00 call r11
struct timespec wall_average; struct timespec *min_wall = &the_stats.min_wall_time; struct timespec *max_wall = &the_stats.max_wall_time; struct timespec *total_wall = &the_stats.total_wall_time; _Timespec_Divide_by_integer(total_wall, the_stats.count, &wall_average);
8029a34: 2b 82 00 48 lw r2,(sp+72) 8029a38: b9 c0 18 00 mv r3,r14 8029a3c: ba 80 08 00 mv r1,r20 8029a40: f8 00 07 81 calli 802b844 <_Timespec_Divide_by_integer>
(*print)( context,
8029a44: 2b 81 00 6c lw r1,(sp+108) 8029a48: 34 02 03 e8 mvi r2,1000 8029a4c: f8 00 d5 0c calli 805ee7c <__divsi3> 8029a50: b8 20 d8 00 mv fp,r1 8029a54: 2b 81 00 74 lw r1,(sp+116) 8029a58: 34 02 03 e8 mvi r2,1000 8029a5c: f8 00 d5 08 calli 805ee7c <__divsi3> 8029a60: b8 20 88 00 mv r17,r1 8029a64: 2b 81 00 9c lw r1,(sp+156) 8029a68: 34 02 03 e8 mvi r2,1000 8029a6c: f8 00 d5 04 calli 805ee7c <__divsi3> 8029a70: 2b 83 00 68 lw r3,(sp+104) 8029a74: 2b 85 00 70 lw r5,(sp+112) 8029a78: 2b 87 00 98 lw r7,(sp+152) 8029a7c: ba 60 10 00 mv r2,r19 8029a80: b8 20 40 00 mv r8,r1 8029a84: bb 60 20 00 mv r4,fp 8029a88: b9 80 08 00 mv r1,r12 8029a8c: ba 20 30 00 mv r6,r17 8029a90: 38 42 50 0c ori r2,r2,0x500c 8029a94: d9 60 00 00 call r11
* Cycle through all possible ids and try to report on each one. If it * is a period that is inactive, we just get an error back. No big deal. */ for ( id=_Rate_monotonic_Information.minimum_id ; id <= _Rate_monotonic_Information.maximum_id ; id++ ) {
8029a98: 35 ad 00 01 addi r13,r13,1
/* * Cycle through all possible ids and try to report on each one. If it * is a period that is inactive, we just get an error back. No big deal. */ for ( id=_Rate_monotonic_Information.minimum_id ;
8029a9c: 2a 03 00 0c lw r3,(r16+12)
id <= _Rate_monotonic_Information.maximum_id ; id++ ) { status = rtems_rate_monotonic_get_statistics( id, &the_stats );
8029aa0: b9 a0 08 00 mv r1,r13 8029aa4: bb 20 10 00 mv r2,r25
/* * Cycle through all possible ids and try to report on each one. If it * is a period that is inactive, we just get an error back. No big deal. */ for ( id=_Rate_monotonic_Information.minimum_id ; 8029aa8: 50 6d ff b1 bgeu r3,r13,802996c <rtems_rate_monotonic_report_statistics_with_plugin+0xdc> the_stats.min_wall_time, the_stats.max_wall_time, ival_wall, fval_wall ); #endif } } }
8029aac: 2b 9d 00 04 lw ra,(sp+4) 8029ab0: 2b 8b 00 44 lw r11,(sp+68) 8029ab4: 2b 8c 00 40 lw r12,(sp+64) 8029ab8: 2b 8d 00 3c lw r13,(sp+60) 8029abc: 2b 8e 00 38 lw r14,(sp+56) 8029ac0: 2b 8f 00 34 lw r15,(sp+52) 8029ac4: 2b 90 00 30 lw r16,(sp+48) 8029ac8: 2b 91 00 2c lw r17,(sp+44) 8029acc: 2b 92 00 28 lw r18,(sp+40) 8029ad0: 2b 93 00 24 lw r19,(sp+36) 8029ad4: 2b 94 00 20 lw r20,(sp+32) 8029ad8: 2b 95 00 1c lw r21,(sp+28) 8029adc: 2b 96 00 18 lw r22,(sp+24) 8029ae0: 2b 97 00 14 lw r23,(sp+20) 8029ae4: 2b 98 00 10 lw r24,(sp+16) 8029ae8: 2b 99 00 0c lw r25,(sp+12) 8029aec: 2b 9b 00 08 lw fp,(sp+8) 8029af0: 37 9c 00 a4 addi sp,sp,164 8029af4: c3 a0 00 00 ret
08012b50 <rtems_signal_send>: rtems_status_code rtems_signal_send( rtems_id id, rtems_signal_set signal_set ) {
8012b50: 37 9c ff f4 addi sp,sp,-12 8012b54: 5b 8b 00 08 sw (sp+8),r11 8012b58: 5b 9d 00 04 sw (sp+4),ra
register Thread_Control *the_thread; Objects_Locations location; RTEMS_API_Control *api; ASR_Information *asr; if ( !signal_set )
8012b5c: 34 03 00 0a mvi r3,10
rtems_status_code rtems_signal_send( rtems_id id, rtems_signal_set signal_set ) {
8012b60: b8 40 58 00 mv r11,r2
register Thread_Control *the_thread; Objects_Locations location; RTEMS_API_Control *api; ASR_Information *asr; if ( !signal_set ) 8012b64: 44 40 00 2e be r2,r0,8012c1c <rtems_signal_send+0xcc> return RTEMS_INVALID_NUMBER; the_thread = _Thread_Get( id, &location );
8012b68: 37 82 00 0c addi r2,sp,12 8012b6c: f8 00 13 af calli 8017a28 <_Thread_Get>
switch ( location ) {
8012b70: 2b 82 00 0c lw r2,(sp+12) 8012b74: 34 03 00 04 mvi r3,4
8012b78: 5c 40 00 29 bne r2,r0,8012c1c <rtems_signal_send+0xcc> case OBJECTS_LOCAL: api = the_thread->API_Extensions[ THREAD_API_RTEMS ];
8012b7c: 28 23 01 24 lw r3,(r1+292)
asr = &api->Signal;
8012b80: 28 64 00 0c lw r4,(r3+12)
8012b84: 44 82 00 24 be r4,r2,8012c14 <rtems_signal_send+0xc4> if ( ! _ASR_Is_null_handler( asr->handler ) ) { if ( asr->is_enabled ) {
8012b88: 40 62 00 08 lbu r2,(r3+8)
8012b8c: 44 40 00 17 be r2,r0,8012be8 <rtems_signal_send+0x98> rtems_signal_set *signal_set ) { ISR_Level _level; _ISR_Disable( _level );
8012b90: 90 00 10 00 rcsr r2,IE 8012b94: 34 04 ff fe mvi r4,-2 8012b98: a0 44 20 00 and r4,r2,r4 8012b9c: d0 04 00 00 wcsr IE,r4
*signal_set |= signals;
8012ba0: 28 64 00 14 lw r4,(r3+20) 8012ba4: b8 8b 58 00 or r11,r4,r11 8012ba8: 58 6b 00 14 sw (r3+20),r11
_ISR_Enable( _level );
8012bac: d0 02 00 00 wcsr IE,r2
_ASR_Post_signals( signal_set, &asr->signals_posted ); the_thread->do_post_task_switch_extension = true; if ( _ISR_Is_in_progress() && _Thread_Is_executing( the_thread ) )
8012bb0: 78 02 08 03 mvhi r2,0x803 8012bb4: 38 42 dc c4 ori r2,r2,0xdcc4 8012bb8: 28 42 00 00 lw r2,(r2+0)
if ( ! _ASR_Is_null_handler( asr->handler ) ) { if ( asr->is_enabled ) { _ASR_Post_signals( signal_set, &asr->signals_posted ); the_thread->do_post_task_switch_extension = true;
8012bbc: 34 03 00 01 mvi r3,1 8012bc0: 30 23 00 74 sb (r1+116),r3
if ( _ISR_Is_in_progress() && _Thread_Is_executing( the_thread ) ) 8012bc4: 44 40 00 11 be r2,r0,8012c08 <rtems_signal_send+0xb8>
8012bc8: 78 02 08 03 mvhi r2,0x803 8012bcc: 38 42 dc e8 ori r2,r2,0xdce8 8012bd0: 28 42 00 00 lw r2,(r2+0)
8012bd4: 5c 22 00 0d bne r1,r2,8012c08 <rtems_signal_send+0xb8> <== NEVER TAKEN
_ISR_Signals_to_thread_executing = true;
8012bd8: 78 01 08 03 mvhi r1,0x803 8012bdc: 38 21 dd 80 ori r1,r1,0xdd80 8012be0: 30 23 00 00 sb (r1+0),r3 8012be4: e0 00 00 09 bi 8012c08 <rtems_signal_send+0xb8>
rtems_signal_set *signal_set ) { ISR_Level _level; _ISR_Disable( _level );
8012be8: 90 00 08 00 rcsr r1,IE 8012bec: 34 02 ff fe mvi r2,-2 8012bf0: a0 22 10 00 and r2,r1,r2 8012bf4: d0 02 00 00 wcsr IE,r2
*signal_set |= signals;
8012bf8: 28 62 00 18 lw r2,(r3+24) 8012bfc: b8 4b 58 00 or r11,r2,r11 8012c00: 58 6b 00 18 sw (r3+24),r11
_ISR_Enable( _level );
8012c04: d0 01 00 00 wcsr IE,r1
} else { _ASR_Post_signals( signal_set, &asr->signals_pending ); } _Thread_Enable_dispatch();
8012c08: f8 00 13 68 calli 80179a8 <_Thread_Enable_dispatch> 8012c0c: 34 03 00 00 mvi r3,0
return RTEMS_SUCCESSFUL;
8012c10: e0 00 00 03 bi 8012c1c <rtems_signal_send+0xcc>
} _Thread_Enable_dispatch();
8012c14: f8 00 13 65 calli 80179a8 <_Thread_Enable_dispatch> 8012c18: 34 03 00 0b mvi r3,11
case OBJECTS_ERROR: break; } return RTEMS_INVALID_ID; }
8012c1c: b8 60 08 00 mv r1,r3 8012c20: 2b 9d 00 04 lw ra,(sp+4) 8012c24: 2b 8b 00 08 lw r11,(sp+8) 8012c28: 37 9c 00 0c addi sp,sp,12 8012c2c: c3 a0 00 00 ret
08004078 <rtems_stack_checker_begin_extension>: * rtems_stack_checker_Begin_extension */ void rtems_stack_checker_begin_extension( Thread_Control *the_thread ) {
8004078: 37 9c ff fc addi sp,sp,-4 800407c: 5b 9d 00 04 sw (sp+4),ra
Stack_check_Control *the_pattern; if ( the_thread->Object.id == 0 ) /* skip system tasks */
8004080: 28 22 00 08 lw r2,(r1+8)
8004084: 44 40 00 07 be r2,r0,80040a0 <rtems_stack_checker_begin_extension+0x28><== NEVER TAKEN
return; the_pattern = Stack_check_Get_pattern_area(&the_thread->Start.Initial_stack); *the_pattern = Stack_check_Pattern;
8004088: 28 21 00 c4 lw r1,(r1+196) 800408c: 78 02 08 06 mvhi r2,0x806 8004090: 38 42 ee 78 ori r2,r2,0xee78 8004094: 34 21 00 08 addi r1,r1,8 8004098: 34 03 00 10 mvi r3,16 800409c: f8 01 08 c0 calli 804639c <memcpy>
}
80040a0: 2b 9d 00 04 lw ra,(sp+4) 80040a4: 37 9c 00 04 addi sp,sp,4 80040a8: c3 a0 00 00 ret
080045f0 <rtems_stack_checker_create_extension>: */ bool rtems_stack_checker_create_extension( Thread_Control *running __attribute__((unused)), Thread_Control *the_thread ) {
80045f0: 37 9c ff f8 addi sp,sp,-8 80045f4: 5b 8b 00 08 sw (sp+8),r11 80045f8: 5b 9d 00 04 sw (sp+4),ra 80045fc: b8 40 58 00 mv r11,r2
Stack_check_Initialize();
8004600: fb ff ff c8 calli 8004520 <Stack_check_Initialize>
if (the_thread)
8004604: 45 60 00 05 be r11,r0,8004618 <rtems_stack_checker_create_extension+0x28><== NEVER TAKEN
Stack_check_Dope_stack(&the_thread->Start.Initial_stack);
8004608: 29 63 00 c0 lw r3,(r11+192) 800460c: 29 61 00 c4 lw r1,(r11+196) 8004610: 34 02 00 a5 mvi r2,165 8004614: f8 01 08 2c calli 80466c4 <memset>
return true; }
8004618: 34 01 00 01 mvi r1,1 800461c: 2b 9d 00 04 lw ra,(sp+4) 8004620: 2b 8b 00 08 lw r11,(sp+8) 8004624: 37 9c 00 08 addi sp,sp,8 8004628: c3 a0 00 00 ret
08004404 <rtems_stack_checker_is_blown>: /* * Check if blown */ bool rtems_stack_checker_is_blown( void ) {
8004404: 37 9c ff f4 addi sp,sp,-12 8004408: 5b 9b 00 08 sw (sp+8),fp 800440c: 34 1b 00 0c mvi fp,12 8004410: b7 7c d8 00 add fp,fp,sp 8004414: 5b 8b 00 0c sw (sp+12),r11 8004418: 5b 9d 00 04 sw (sp+4),ra
Stack_Control *the_stack = &_Thread_Executing->Start.Initial_stack;
800441c: 78 01 08 06 mvhi r1,0x806 8004420: 38 21 f0 e0 ori r1,r1,0xf0e0 8004424: 28 22 00 00 lw r2,(r1+0)
) { #if defined(__GNUC__) void *sp = __builtin_frame_address(0); if ( sp < the_stack->area ) {
8004428: 28 41 00 c4 lw r1,(r2+196)
800442c: 53 61 00 03 bgeu fp,r1,8004438 <rtems_stack_checker_is_blown+0x34><== ALWAYS TAKEN
8004430: 34 0b 00 00 mvi r11,0 <== NOT EXECUTED 8004434: e0 00 00 04 bi 8004444 <rtems_stack_checker_is_blown+0x40> <== NOT EXECUTED
} /* * Check if blown */ bool rtems_stack_checker_is_blown( void )
8004438: 28 4b 00 c0 lw r11,(r2+192) 800443c: b4 2b 58 00 add r11,r1,r11 8004440: f1 7b 58 00 cmpgeu r11,r11,fp
/* * The stack checker must be initialized before the pattern is there * to check. */ if ( Stack_check_Initialized ) {
8004444: 78 02 08 06 mvhi r2,0x806 8004448: 38 42 c4 a8 ori r2,r2,0xc4a8 800444c: 28 43 00 00 lw r3,(r2+0) 8004450: 34 02 00 01 mvi r2,1
8004454: 44 60 00 07 be r3,r0,8004470 <rtems_stack_checker_is_blown+0x6c><== NEVER TAKEN
pattern_ok = (!memcmp(
8004458: 78 02 08 06 mvhi r2,0x806 800445c: 38 42 ee 78 ori r2,r2,0xee78 8004460: 34 21 00 08 addi r1,r1,8 8004464: 34 03 00 10 mvi r3,16 8004468: f8 01 07 ad calli 804631c <memcmp> 800446c: 64 22 00 00 cmpei r2,r1,0
} /* * The Stack Pointer and the Pattern Area are OK so return false. */ if ( sp_ok && pattern_ok )
8004470: 45 60 00 03 be r11,r0,800447c <rtems_stack_checker_is_blown+0x78><== NEVER TAKEN
8004474: 34 01 00 00 mvi r1,0
8004478: 5c 41 00 06 bne r2,r1,8004490 <rtems_stack_checker_is_blown+0x8c><== ALWAYS TAKEN
return false; /* * Let's report as much as we can. */ Stack_check_report_blown_task( _Thread_Executing, pattern_ok );
800447c: 78 01 08 06 mvhi r1,0x806 <== NOT EXECUTED 8004480: 38 21 f0 e0 ori r1,r1,0xf0e0 <== NOT EXECUTED 8004484: 28 21 00 00 lw r1,(r1+0) <== NOT EXECUTED 8004488: fb ff ff b1 calli 800434c <Stack_check_report_blown_task> <== NOT EXECUTED 800448c: 34 01 00 01 mvi r1,1 <== NOT EXECUTED
return true; }
8004490: 2b 9d 00 04 lw ra,(sp+4) 8004494: 2b 8b 00 0c lw r11,(sp+12) 8004498: 2b 9b 00 08 lw fp,(sp+8) 800449c: 37 9c 00 0c addi sp,sp,12 80044a0: c3 a0 00 00 ret
08004328 <rtems_stack_checker_report_usage>: void rtems_stack_checker_report_usage( void ) {
8004328: 37 9c ff fc addi sp,sp,-4 <== NOT EXECUTED 800432c: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
rtems_stack_checker_report_usage_with_plugin( NULL, printk_plugin );
8004330: 78 02 08 00 mvhi r2,0x800 <== NOT EXECUTED 8004334: 38 42 76 ec ori r2,r2,0x76ec <== NOT EXECUTED 8004338: 34 01 00 00 mvi r1,0 <== NOT EXECUTED 800433c: fb ff ff d7 calli 8004298 <rtems_stack_checker_report_usage_with_plugin><== NOT EXECUTED
}
8004340: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8004344: 37 9c 00 04 addi sp,sp,4 <== NOT EXECUTED 8004348: c3 a0 00 00 ret <== NOT EXECUTED
08004298 <rtems_stack_checker_report_usage_with_plugin>: void rtems_stack_checker_report_usage_with_plugin( void *context, rtems_printk_plugin_t print ) {
8004298: 37 9c ff ec addi sp,sp,-20 <== NOT EXECUTED 800429c: 5b 8b 00 14 sw (sp+20),r11 <== NOT EXECUTED 80042a0: 5b 8c 00 10 sw (sp+16),r12 <== NOT EXECUTED 80042a4: 5b 8d 00 0c sw (sp+12),r13 <== NOT EXECUTED 80042a8: 5b 8e 00 08 sw (sp+8),r14 <== NOT EXECUTED 80042ac: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
print_context = context;
80042b0: 78 0b 08 06 mvhi r11,0x806 <== NOT EXECUTED
print_handler = print;
80042b4: 78 0c 08 06 mvhi r12,0x806 <== NOT EXECUTED
void rtems_stack_checker_report_usage_with_plugin( void *context, rtems_printk_plugin_t print ) {
80042b8: b8 40 68 00 mv r13,r2 <== NOT EXECUTED
print_context = context;
80042bc: 39 6b c4 ac ori r11,r11,0xc4ac <== NOT EXECUTED
print_handler = print;
80042c0: 39 8c c4 b0 ori r12,r12,0xc4b0 <== NOT EXECUTED
(*print)( context, "Stack usage by thread\n");
80042c4: 78 02 08 06 mvhi r2,0x806 <== NOT EXECUTED 80042c8: 38 42 05 28 ori r2,r2,0x528 <== NOT EXECUTED
void rtems_stack_checker_report_usage_with_plugin( void *context, rtems_printk_plugin_t print ) { print_context = context;
80042cc: 59 61 00 00 sw (r11+0),r1 <== NOT EXECUTED
print_handler = print;
80042d0: 59 8d 00 00 sw (r12+0),r13 <== NOT EXECUTED
void rtems_stack_checker_report_usage_with_plugin( void *context, rtems_printk_plugin_t print ) {
80042d4: b8 20 70 00 mv r14,r1 <== NOT EXECUTED
print_context = context; print_handler = print; (*print)( context, "Stack usage by thread\n");
80042d8: d9 a0 00 00 call r13 <== NOT EXECUTED
(*print)( context,
80042dc: 78 02 08 06 mvhi r2,0x806 <== NOT EXECUTED 80042e0: 38 42 05 40 ori r2,r2,0x540 <== NOT EXECUTED 80042e4: b9 c0 08 00 mv r1,r14 <== NOT EXECUTED 80042e8: d9 a0 00 00 call r13 <== NOT EXECUTED
" ID NAME LOW HIGH CURRENT AVAILABLE USED\n" ); /* iterate over all threads and dump the usage */ rtems_iterate_over_all_threads( Stack_check_Dump_threads_usage );
80042ec: 78 01 08 00 mvhi r1,0x800 <== NOT EXECUTED 80042f0: 38 21 41 0c ori r1,r1,0x410c <== NOT EXECUTED 80042f4: f8 00 16 ab calli 8009da0 <rtems_iterate_over_all_threads> <== NOT EXECUTED
/* dump interrupt stack info if any */ Stack_check_Dump_threads_usage((Thread_Control *) -1);
80042f8: 34 01 ff ff mvi r1,-1 <== NOT EXECUTED 80042fc: fb ff ff 84 calli 800410c <Stack_check_Dump_threads_usage> <== NOT EXECUTED
print_context = NULL;
8004300: 34 01 00 00 mvi r1,0 <== NOT EXECUTED
print_handler = NULL;
8004304: 59 81 00 00 sw (r12+0),r1 <== NOT EXECUTED
rtems_iterate_over_all_threads( Stack_check_Dump_threads_usage ); /* dump interrupt stack info if any */ Stack_check_Dump_threads_usage((Thread_Control *) -1); print_context = NULL;
8004308: 59 61 00 00 sw (r11+0),r1 <== NOT EXECUTED
print_handler = NULL; }
800430c: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8004310: 2b 8b 00 14 lw r11,(sp+20) <== NOT EXECUTED 8004314: 2b 8c 00 10 lw r12,(sp+16) <== NOT EXECUTED 8004318: 2b 8d 00 0c lw r13,(sp+12) <== NOT EXECUTED 800431c: 2b 8e 00 08 lw r14,(sp+8) <== NOT EXECUTED 8004320: 37 9c 00 14 addi sp,sp,20 <== NOT EXECUTED 8004324: c3 a0 00 00 ret <== NOT EXECUTED
080044a4 <rtems_stack_checker_switch_extension>: */ void rtems_stack_checker_switch_extension( Thread_Control *running __attribute__((unused)), Thread_Control *heir __attribute__((unused)) ) {
80044a4: 37 9c ff f0 addi sp,sp,-16 80044a8: 5b 9b 00 08 sw (sp+8),fp 80044ac: 34 1b 00 10 mvi fp,16 80044b0: b7 7c d8 00 add fp,fp,sp 80044b4: 5b 8b 00 10 sw (sp+16),r11 80044b8: 5b 8c 00 0c sw (sp+12),r12 80044bc: 5b 9d 00 04 sw (sp+4),ra 80044c0: b8 20 58 00 mv r11,r1
Stack_Control *the_stack = &running->Start.Initial_stack; void *pattern; bool sp_ok; bool pattern_ok = true; pattern = (void *) Stack_check_Get_pattern_area(the_stack)->pattern;
80044c4: 28 21 00 c4 lw r1,(r1+196)
) { #if defined(__GNUC__) void *sp = __builtin_frame_address(0); if ( sp < the_stack->area ) {
80044c8: 53 61 00 03 bgeu fp,r1,80044d4 <rtems_stack_checker_switch_extension+0x30><== ALWAYS TAKEN
80044cc: 34 0c 00 00 mvi r12,0 <== NOT EXECUTED 80044d0: e0 00 00 04 bi 80044e0 <rtems_stack_checker_switch_extension+0x3c><== NOT EXECUTED
} /* * rtems_stack_checker_switch_extension */ void rtems_stack_checker_switch_extension(
80044d4: 29 6c 00 c0 lw r12,(r11+192) 80044d8: b4 2c 60 00 add r12,r1,r12 80044dc: f1 9b 60 00 cmpgeu r12,r12,fp
/* * Check for an out of bounds stack pointer or an overwrite */ sp_ok = Stack_check_Frame_pointer_in_range( the_stack ); pattern_ok = (!memcmp( pattern,
80044e0: 78 02 08 06 mvhi r2,0x806 80044e4: 38 42 ee 78 ori r2,r2,0xee78 80044e8: 34 21 00 08 addi r1,r1,8 80044ec: 34 03 00 10 mvi r3,16 80044f0: f8 01 07 8b calli 804631c <memcmp> 80044f4: 64 22 00 00 cmpei r2,r1,0
(void *) Stack_check_Pattern.pattern, PATTERN_SIZE_BYTES)); if ( !sp_ok || !pattern_ok ) {
80044f8: 45 80 00 02 be r12,r0,8004500 <rtems_stack_checker_switch_extension+0x5c><== NEVER TAKEN
80044fc: 5c 40 00 03 bne r2,r0,8004508 <rtems_stack_checker_switch_extension+0x64> Stack_check_report_blown_task( running, pattern_ok );
8004500: b9 60 08 00 mv r1,r11 8004504: fb ff ff 92 calli 800434c <Stack_check_report_blown_task>
} }
8004508: 2b 9d 00 04 lw ra,(sp+4) 800450c: 2b 8b 00 10 lw r11,(sp+16) 8004510: 2b 8c 00 0c lw r12,(sp+12) 8004514: 2b 9b 00 08 lw fp,(sp+8) 8004518: 37 9c 00 10 addi sp,sp,16 800451c: c3 a0 00 00 ret
08007da4 <rtems_string_to_double>: #if defined(STRING_TO_INTEGER) && !defined(STRING_TO_POINTER) , int base #endif ) {
8007da4: 37 9c ff e4 addi sp,sp,-28 8007da8: 5b 8b 00 18 sw (sp+24),r11 8007dac: 5b 8c 00 14 sw (sp+20),r12 8007db0: 5b 8d 00 10 sw (sp+16),r13 8007db4: 5b 8e 00 0c sw (sp+12),r14 8007db8: 5b 8f 00 08 sw (sp+8),r15 8007dbc: 5b 9d 00 04 sw (sp+4),ra
STRING_TO_INPUT_TYPE result; char *end; if ( !n )
8007dc0: 34 0c 00 00 mvi r12,0
#if defined(STRING_TO_INTEGER) && !defined(STRING_TO_POINTER) , int base #endif ) {
8007dc4: b8 40 58 00 mv r11,r2 8007dc8: b8 20 70 00 mv r14,r1 8007dcc: b8 60 78 00 mv r15,r3
STRING_TO_INPUT_TYPE result; char *end; if ( !n )
8007dd0: 34 04 00 09 mvi r4,9
8007dd4: 44 4c 00 20 be r2,r12,8007e54 <rtems_string_to_double+0xb0> return RTEMS_INVALID_ADDRESS; errno = 0;
8007dd8: f8 00 10 15 calli 800be2c <__errno> 8007ddc: 58 2c 00 00 sw (r1+0),r12
*n = 0;
8007de0: 59 6c 00 04 sw (r11+4),r12 8007de4: 59 6c 00 00 sw (r11+0),r12
#ifdef STRING_TO_FLOAT result = STRING_TO_METHOD( s, &end );
8007de8: b9 c0 08 00 mv r1,r14 8007dec: 37 82 00 1c addi r2,sp,28 8007df0: f8 00 1c 33 calli 800eebc <strtod> 8007df4: b8 20 60 00 mv r12,r1 8007df8: b8 40 68 00 mv r13,r2
#elif defined(STRING_TO_INTEGER) result = STRING_TO_METHOD( s, &end, base ); #endif /* If the user wants the end pointer back, then return it. */ if ( endptr ) 8007dfc: 45 e0 00 03 be r15,r0,8007e08 <rtems_string_to_double+0x64> *endptr = end;
8007e00: 2b 81 00 1c lw r1,(sp+28) 8007e04: 59 e1 00 00 sw (r15+0),r1
/* nothing was converted */ if ( end == s )
8007e08: 2b 81 00 1c lw r1,(sp+28) 8007e0c: 34 04 00 0b mvi r4,11
8007e10: 44 2e 00 11 be r1,r14,8007e54 <rtems_string_to_double+0xb0> return RTEMS_INVALID_NUMBER; #endif #ifdef STRING_TO_MAX /* there was an overflow */ if ( (result == STRING_TO_MAX) && (errno == ERANGE))
8007e14: 78 03 7f ef mvhi r3,0x7fef 8007e18: 38 63 ff ff ori r3,r3,0xffff 8007e1c: b9 80 08 00 mv r1,r12 8007e20: b9 a0 10 00 mv r2,r13 8007e24: 34 04 ff ff mvi r4,-1 8007e28: f8 00 4a 21 calli 801a6ac <__gedf2>
8007e2c: 48 20 00 02 bg r1,r0,8007e34 <rtems_string_to_double+0x90>
8007e30: e0 00 00 06 bi 8007e48 <rtems_string_to_double+0xa4> 8007e34: f8 00 0f fe calli 800be2c <__errno> 8007e38: 28 22 00 00 lw r2,(r1+0) 8007e3c: 34 01 00 22 mvi r1,34 8007e40: 34 04 00 0a mvi r4,10
8007e44: 44 41 00 04 be r2,r1,8007e54 <rtems_string_to_double+0xb0> <== ALWAYS TAKEN
#endif #if defined(STRING_TO_POINTER) *n = (STRING_TO_TYPE) (uintptr_t)result; #else *n = (STRING_TO_TYPE) result;
8007e48: 59 6d 00 04 sw (r11+4),r13 8007e4c: 59 6c 00 00 sw (r11+0),r12 8007e50: 34 04 00 00 mvi r4,0
#endif return RTEMS_SUCCESSFUL; }
8007e54: b8 80 08 00 mv r1,r4 8007e58: 2b 9d 00 04 lw ra,(sp+4) 8007e5c: 2b 8b 00 18 lw r11,(sp+24) 8007e60: 2b 8c 00 14 lw r12,(sp+20) 8007e64: 2b 8d 00 10 lw r13,(sp+16) 8007e68: 2b 8e 00 0c lw r14,(sp+12) 8007e6c: 2b 8f 00 08 lw r15,(sp+8) 8007e70: 37 9c 00 1c addi sp,sp,28 8007e74: c3 a0 00 00 ret
08007e78 <rtems_string_to_float>: #if defined(STRING_TO_INTEGER) && !defined(STRING_TO_POINTER) , int base #endif ) {
8007e78: 37 9c ff e8 addi sp,sp,-24 8007e7c: 5b 8b 00 14 sw (sp+20),r11 8007e80: 5b 8c 00 10 sw (sp+16),r12 8007e84: 5b 8d 00 0c sw (sp+12),r13 8007e88: 5b 8e 00 08 sw (sp+8),r14 8007e8c: 5b 9d 00 04 sw (sp+4),ra
STRING_TO_INPUT_TYPE result; char *end; if ( !n )
8007e90: 34 0c 00 00 mvi r12,0
#if defined(STRING_TO_INTEGER) && !defined(STRING_TO_POINTER) , int base #endif ) {
8007e94: b8 40 58 00 mv r11,r2 8007e98: b8 20 68 00 mv r13,r1 8007e9c: b8 60 70 00 mv r14,r3
STRING_TO_INPUT_TYPE result; char *end; if ( !n )
8007ea0: 34 04 00 09 mvi r4,9
8007ea4: 44 4c 00 1b be r2,r12,8007f10 <rtems_string_to_float+0x98> return RTEMS_INVALID_ADDRESS; errno = 0;
8007ea8: f8 00 0f e1 calli 800be2c <__errno> 8007eac: 58 2c 00 00 sw (r1+0),r12
*n = 0;
8007eb0: 59 6c 00 00 sw (r11+0),r12
#ifdef STRING_TO_FLOAT result = STRING_TO_METHOD( s, &end );
8007eb4: b9 a0 08 00 mv r1,r13 8007eb8: 37 82 00 18 addi r2,sp,24 8007ebc: f8 00 1b e3 calli 800ee48 <strtof> 8007ec0: b8 20 60 00 mv r12,r1
#elif defined(STRING_TO_INTEGER) result = STRING_TO_METHOD( s, &end, base ); #endif /* If the user wants the end pointer back, then return it. */ if ( endptr ) 8007ec4: 45 c0 00 03 be r14,r0,8007ed0 <rtems_string_to_float+0x58> *endptr = end;
8007ec8: 2b 81 00 18 lw r1,(sp+24) 8007ecc: 59 c1 00 00 sw (r14+0),r1
/* nothing was converted */ if ( end == s )
8007ed0: 2b 81 00 18 lw r1,(sp+24) 8007ed4: 34 04 00 0b mvi r4,11
8007ed8: 44 2d 00 0e be r1,r13,8007f10 <rtems_string_to_float+0x98> return RTEMS_INVALID_NUMBER; #endif #ifdef STRING_TO_MAX /* there was an overflow */ if ( (result == STRING_TO_MAX) && (errno == ERANGE))
8007edc: 78 02 7f 7f mvhi r2,0x7f7f 8007ee0: 38 42 ff ff ori r2,r2,0xffff 8007ee4: b9 80 08 00 mv r1,r12 8007ee8: f8 00 43 c3 calli 8018df4 <__gesf2>
8007eec: 48 20 00 02 bg r1,r0,8007ef4 <rtems_string_to_float+0x7c>
8007ef0: e0 00 00 06 bi 8007f08 <rtems_string_to_float+0x90> 8007ef4: f8 00 0f ce calli 800be2c <__errno> 8007ef8: 28 22 00 00 lw r2,(r1+0) 8007efc: 34 01 00 22 mvi r1,34 8007f00: 34 04 00 0a mvi r4,10
8007f04: 44 41 00 03 be r2,r1,8007f10 <rtems_string_to_float+0x98> <== ALWAYS TAKEN
#endif #if defined(STRING_TO_POINTER) *n = (STRING_TO_TYPE) (uintptr_t)result; #else *n = (STRING_TO_TYPE) result;
8007f08: 59 6c 00 00 sw (r11+0),r12 8007f0c: 34 04 00 00 mvi r4,0
#endif return RTEMS_SUCCESSFUL; }
8007f10: b8 80 08 00 mv r1,r4 8007f14: 2b 9d 00 04 lw ra,(sp+4) 8007f18: 2b 8b 00 14 lw r11,(sp+20) 8007f1c: 2b 8c 00 10 lw r12,(sp+16) 8007f20: 2b 8d 00 0c lw r13,(sp+12) 8007f24: 2b 8e 00 08 lw r14,(sp+8) 8007f28: 37 9c 00 18 addi sp,sp,24 8007f2c: c3 a0 00 00 ret
0801b830 <rtems_string_to_int>: #if defined(STRING_TO_INTEGER) && !defined(STRING_TO_POINTER) , int base #endif ) {
801b830: 37 9c ff e4 addi sp,sp,-28 801b834: 5b 8b 00 18 sw (sp+24),r11 801b838: 5b 8c 00 14 sw (sp+20),r12 801b83c: 5b 8d 00 10 sw (sp+16),r13 801b840: 5b 8e 00 0c sw (sp+12),r14 801b844: 5b 8f 00 08 sw (sp+8),r15 801b848: 5b 9d 00 04 sw (sp+4),ra
STRING_TO_INPUT_TYPE result; char *end; if ( !n )
801b84c: 34 0c 00 00 mvi r12,0
#if defined(STRING_TO_INTEGER) && !defined(STRING_TO_POINTER) , int base #endif ) {
801b850: b8 40 58 00 mv r11,r2 801b854: b8 20 68 00 mv r13,r1 801b858: b8 60 70 00 mv r14,r3 801b85c: b8 80 78 00 mv r15,r4
STRING_TO_INPUT_TYPE result; char *end; if ( !n )
801b860: 34 05 00 09 mvi r5,9
801b864: 44 4c 00 19 be r2,r12,801b8c8 <rtems_string_to_int+0x98> return RTEMS_INVALID_ADDRESS; errno = 0;
801b868: f8 00 9c 2b calli 8042914 <__errno> 801b86c: 58 2c 00 00 sw (r1+0),r12
*n = 0;
801b870: 59 6c 00 00 sw (r11+0),r12
#ifdef STRING_TO_FLOAT result = STRING_TO_METHOD( s, &end ); #elif defined(STRING_TO_POINTER) result = STRING_TO_METHOD( s, &end, 16 ); #elif defined(STRING_TO_INTEGER) result = STRING_TO_METHOD( s, &end, base );
801b874: b9 e0 18 00 mv r3,r15 801b878: b9 a0 08 00 mv r1,r13 801b87c: 37 82 00 1c addi r2,sp,28 801b880: f8 00 bd d1 calli 804afc4 <strtol> 801b884: b8 20 60 00 mv r12,r1
#endif /* If the user wants the end pointer back, then return it. */ if ( endptr ) 801b888: 45 c0 00 03 be r14,r0,801b894 <rtems_string_to_int+0x64> *endptr = end;
801b88c: 2b 81 00 1c lw r1,(sp+28) 801b890: 59 c1 00 00 sw (r14+0),r1
/* nothing was converted */ if ( end == s )
801b894: 2b 81 00 1c lw r1,(sp+28) 801b898: 34 05 00 0b mvi r5,11
801b89c: 44 2d 00 0b be r1,r13,801b8c8 <rtems_string_to_int+0x98> return RTEMS_INVALID_NUMBER; #endif #ifdef STRING_TO_MAX /* there was an overflow */ if ( (result == STRING_TO_MAX) && (errno == ERANGE))
801b8a0: 78 02 7f ff mvhi r2,0x7fff 801b8a4: 38 42 ff ff ori r2,r2,0xffff
801b8a8: 5d 82 00 06 bne r12,r2,801b8c0 <rtems_string_to_int+0x90>
801b8ac: f8 00 9c 1a calli 8042914 <__errno> 801b8b0: 28 22 00 00 lw r2,(r1+0) 801b8b4: 34 01 00 22 mvi r1,34 801b8b8: 34 05 00 0a mvi r5,10
801b8bc: 44 41 00 03 be r2,r1,801b8c8 <rtems_string_to_int+0x98> <== ALWAYS TAKEN
#endif #if defined(STRING_TO_POINTER) *n = (STRING_TO_TYPE) (uintptr_t)result; #else *n = (STRING_TO_TYPE) result;
801b8c0: 59 6c 00 00 sw (r11+0),r12 801b8c4: 34 05 00 00 mvi r5,0
#endif return RTEMS_SUCCESSFUL; }
801b8c8: b8 a0 08 00 mv r1,r5 801b8cc: 2b 9d 00 04 lw ra,(sp+4) 801b8d0: 2b 8b 00 18 lw r11,(sp+24) 801b8d4: 2b 8c 00 14 lw r12,(sp+20) 801b8d8: 2b 8d 00 10 lw r13,(sp+16) 801b8dc: 2b 8e 00 0c lw r14,(sp+12) 801b8e0: 2b 8f 00 08 lw r15,(sp+8) 801b8e4: 37 9c 00 1c addi sp,sp,28 801b8e8: c3 a0 00 00 ret
080080cc <rtems_string_to_long>: #if defined(STRING_TO_INTEGER) && !defined(STRING_TO_POINTER) , int base #endif ) {
80080cc: 37 9c ff e4 addi sp,sp,-28 80080d0: 5b 8b 00 18 sw (sp+24),r11 80080d4: 5b 8c 00 14 sw (sp+20),r12 80080d8: 5b 8d 00 10 sw (sp+16),r13 80080dc: 5b 8e 00 0c sw (sp+12),r14 80080e0: 5b 8f 00 08 sw (sp+8),r15 80080e4: 5b 9d 00 04 sw (sp+4),ra
STRING_TO_INPUT_TYPE result; char *end; if ( !n )
80080e8: 34 0c 00 00 mvi r12,0
#if defined(STRING_TO_INTEGER) && !defined(STRING_TO_POINTER) , int base #endif ) {
80080ec: b8 40 58 00 mv r11,r2 80080f0: b8 20 68 00 mv r13,r1 80080f4: b8 60 70 00 mv r14,r3 80080f8: b8 80 78 00 mv r15,r4
STRING_TO_INPUT_TYPE result; char *end; if ( !n )
80080fc: 34 05 00 09 mvi r5,9
8008100: 44 4c 00 1c be r2,r12,8008170 <rtems_string_to_long+0xa4> return RTEMS_INVALID_ADDRESS; errno = 0;
8008104: f8 00 0f 4a calli 800be2c <__errno> 8008108: 58 2c 00 00 sw (r1+0),r12
*n = 0;
800810c: 59 6c 00 00 sw (r11+0),r12
#ifdef STRING_TO_FLOAT result = STRING_TO_METHOD( s, &end ); #elif defined(STRING_TO_POINTER) result = STRING_TO_METHOD( s, &end, 16 ); #elif defined(STRING_TO_INTEGER) result = STRING_TO_METHOD( s, &end, base );
8008110: b9 e0 18 00 mv r3,r15 8008114: b9 a0 08 00 mv r1,r13 8008118: 37 82 00 1c addi r2,sp,28 800811c: f8 00 1c 0b calli 800f148 <strtol> 8008120: b8 20 60 00 mv r12,r1
#endif /* If the user wants the end pointer back, then return it. */ if ( endptr ) 8008124: 45 c0 00 03 be r14,r0,8008130 <rtems_string_to_long+0x64> *endptr = end;
8008128: 2b 81 00 1c lw r1,(sp+28) 800812c: 59 c1 00 00 sw (r14+0),r1
/* nothing was converted */ if ( end == s )
8008130: 2b 81 00 1c lw r1,(sp+28) 8008134: 34 05 00 0b mvi r5,11
8008138: 44 2d 00 0e be r1,r13,8008170 <rtems_string_to_long+0xa4> return RTEMS_INVALID_NUMBER; #endif #ifdef STRING_TO_MAX /* there was an overflow */ if ( (result == STRING_TO_MAX) && (errno == ERANGE))
800813c: 78 01 7f ff mvhi r1,0x7fff 8008140: 38 21 ff ff ori r1,r1,0xffff
8008144: 45 81 00 04 be r12,r1,8008154 <rtems_string_to_long+0x88> return RTEMS_INVALID_NUMBER; #endif #ifdef STRING_TO_MIN /* there was an underflow */ if ( (result == STRING_TO_MIN) && (errno == ERANGE))
8008148: 78 01 80 00 mvhi r1,0x8000 800814c: 38 21 00 00 ori r1,r1,0x0
8008150: 5d 81 00 06 bne r12,r1,8008168 <rtems_string_to_long+0x9c>
8008154: f8 00 0f 36 calli 800be2c <__errno> 8008158: 28 22 00 00 lw r2,(r1+0) 800815c: 34 01 00 22 mvi r1,34
#if defined(STRING_TO_POINTER) *n = (STRING_TO_TYPE) (uintptr_t)result; #else *n = (STRING_TO_TYPE) result; #endif return RTEMS_SUCCESSFUL;
8008160: 34 05 00 0a mvi r5,10
return RTEMS_INVALID_NUMBER; #endif #ifdef STRING_TO_MIN /* there was an underflow */ if ( (result == STRING_TO_MIN) && (errno == ERANGE))
8008164: 44 41 00 03 be r2,r1,8008170 <rtems_string_to_long+0xa4> <== ALWAYS TAKEN
#endif #if defined(STRING_TO_POINTER) *n = (STRING_TO_TYPE) (uintptr_t)result; #else *n = (STRING_TO_TYPE) result;
8008168: 59 6c 00 00 sw (r11+0),r12 800816c: 34 05 00 00 mvi r5,0
#endif return RTEMS_SUCCESSFUL; }
8008170: b8 a0 08 00 mv r1,r5 8008174: 2b 9d 00 04 lw ra,(sp+4) 8008178: 2b 8b 00 18 lw r11,(sp+24) 800817c: 2b 8c 00 14 lw r12,(sp+20) 8008180: 2b 8d 00 10 lw r13,(sp+16) 8008184: 2b 8e 00 0c lw r14,(sp+12) 8008188: 2b 8f 00 08 lw r15,(sp+8) 800818c: 37 9c 00 1c addi sp,sp,28 8008190: c3 a0 00 00 ret
08007fec <rtems_string_to_long_long>: #if defined(STRING_TO_INTEGER) && !defined(STRING_TO_POINTER) , int base #endif ) {
8007fec: 37 9c ff e4 addi sp,sp,-28 8007ff0: 5b 8b 00 18 sw (sp+24),r11 8007ff4: 5b 8c 00 14 sw (sp+20),r12 8007ff8: 5b 8d 00 10 sw (sp+16),r13 8007ffc: 5b 8e 00 0c sw (sp+12),r14 8008000: 5b 8f 00 08 sw (sp+8),r15 8008004: 5b 9d 00 04 sw (sp+4),ra
STRING_TO_INPUT_TYPE result; char *end; if ( !n )
8008008: 34 0c 00 00 mvi r12,0
#if defined(STRING_TO_INTEGER) && !defined(STRING_TO_POINTER) , int base #endif ) {
800800c: b8 40 58 00 mv r11,r2 8008010: b8 20 70 00 mv r14,r1 8008014: b8 60 78 00 mv r15,r3 8008018: b8 80 68 00 mv r13,r4
STRING_TO_INPUT_TYPE result; char *end; if ( !n )
800801c: 34 05 00 09 mvi r5,9
8008020: 44 4c 00 22 be r2,r12,80080a8 <rtems_string_to_long_long+0xbc> return RTEMS_INVALID_ADDRESS; errno = 0;
8008024: f8 00 0f 82 calli 800be2c <__errno> 8008028: 58 2c 00 00 sw (r1+0),r12
*n = 0;
800802c: 59 6c 00 04 sw (r11+4),r12 8008030: 59 6c 00 00 sw (r11+0),r12
#ifdef STRING_TO_FLOAT result = STRING_TO_METHOD( s, &end ); #elif defined(STRING_TO_POINTER) result = STRING_TO_METHOD( s, &end, 16 ); #elif defined(STRING_TO_INTEGER) result = STRING_TO_METHOD( s, &end, base );
8008034: b9 a0 18 00 mv r3,r13 8008038: b9 c0 08 00 mv r1,r14 800803c: 37 82 00 1c addi r2,sp,28 8008040: f8 00 1c 50 calli 800f180 <strtoll> 8008044: b8 20 60 00 mv r12,r1 8008048: b8 40 68 00 mv r13,r2
#endif /* If the user wants the end pointer back, then return it. */ if ( endptr ) 800804c: 45 e0 00 03 be r15,r0,8008058 <rtems_string_to_long_long+0x6c> *endptr = end;
8008050: 2b 81 00 1c lw r1,(sp+28) 8008054: 59 e1 00 00 sw (r15+0),r1
/* nothing was converted */ if ( end == s )
8008058: 2b 81 00 1c lw r1,(sp+28) 800805c: 34 05 00 0b mvi r5,11
8008060: 44 2e 00 12 be r1,r14,80080a8 <rtems_string_to_long_long+0xbc> return RTEMS_INVALID_NUMBER; #endif #ifdef STRING_TO_MAX /* there was an overflow */ if ( (result == STRING_TO_MAX) && (errno == ERANGE))
8008064: 78 01 7f ff mvhi r1,0x7fff 8008068: 38 21 ff ff ori r1,r1,0xffff
800806c: 5d 81 00 03 bne r12,r1,8008078 <rtems_string_to_long_long+0x8c>
8008070: 34 01 ff ff mvi r1,-1
8008074: 45 a1 00 05 be r13,r1,8008088 <rtems_string_to_long_long+0x9c><== ALWAYS TAKEN
return RTEMS_INVALID_NUMBER; #endif #ifdef STRING_TO_MIN /* there was an underflow */ if ( (result == STRING_TO_MIN) && (errno == ERANGE))
8008078: 78 01 80 00 mvhi r1,0x8000 800807c: 38 21 00 00 ori r1,r1,0x0
8008080: 5d 81 00 07 bne r12,r1,800809c <rtems_string_to_long_long+0xb0>
8008084: 5d a0 00 06 bne r13,r0,800809c <rtems_string_to_long_long+0xb0><== NEVER TAKEN
8008088: f8 00 0f 69 calli 800be2c <__errno> 800808c: 28 22 00 00 lw r2,(r1+0) 8008090: 34 01 00 22 mvi r1,34
#if defined(STRING_TO_POINTER) *n = (STRING_TO_TYPE) (uintptr_t)result; #else *n = (STRING_TO_TYPE) result; #endif return RTEMS_SUCCESSFUL;
8008094: 34 05 00 0a mvi r5,10
return RTEMS_INVALID_NUMBER; #endif #ifdef STRING_TO_MIN /* there was an underflow */ if ( (result == STRING_TO_MIN) && (errno == ERANGE))
8008098: 44 41 00 04 be r2,r1,80080a8 <rtems_string_to_long_long+0xbc><== ALWAYS TAKEN
#endif #if defined(STRING_TO_POINTER) *n = (STRING_TO_TYPE) (uintptr_t)result; #else *n = (STRING_TO_TYPE) result;
800809c: 59 6d 00 04 sw (r11+4),r13 80080a0: 59 6c 00 00 sw (r11+0),r12 80080a4: 34 05 00 00 mvi r5,0
#endif return RTEMS_SUCCESSFUL; }
80080a8: b8 a0 08 00 mv r1,r5 80080ac: 2b 9d 00 04 lw ra,(sp+4) 80080b0: 2b 8b 00 18 lw r11,(sp+24) 80080b4: 2b 8c 00 14 lw r12,(sp+20) 80080b8: 2b 8d 00 10 lw r13,(sp+16) 80080bc: 2b 8e 00 0c lw r14,(sp+12) 80080c0: 2b 8f 00 08 lw r15,(sp+8) 80080c4: 37 9c 00 1c addi sp,sp,28 80080c8: c3 a0 00 00 ret
0801b8ec <rtems_string_to_pointer>: #if defined(STRING_TO_INTEGER) && !defined(STRING_TO_POINTER) , int base #endif ) {
801b8ec: 37 9c ff e8 addi sp,sp,-24 801b8f0: 5b 8b 00 14 sw (sp+20),r11 801b8f4: 5b 8c 00 10 sw (sp+16),r12 801b8f8: 5b 8d 00 0c sw (sp+12),r13 801b8fc: 5b 8e 00 08 sw (sp+8),r14 801b900: 5b 9d 00 04 sw (sp+4),ra
STRING_TO_INPUT_TYPE result; char *end; if ( !n )
801b904: 34 0c 00 00 mvi r12,0
#if defined(STRING_TO_INTEGER) && !defined(STRING_TO_POINTER) , int base #endif ) {
801b908: b8 40 58 00 mv r11,r2 801b90c: b8 20 68 00 mv r13,r1 801b910: b8 60 70 00 mv r14,r3
STRING_TO_INPUT_TYPE result; char *end; if ( !n )
801b914: 34 04 00 09 mvi r4,9
801b918: 44 4c 00 18 be r2,r12,801b978 <rtems_string_to_pointer+0x8c> return RTEMS_INVALID_ADDRESS; errno = 0;
801b91c: f8 00 9b fe calli 8042914 <__errno> 801b920: 58 2c 00 00 sw (r1+0),r12
*n = 0;
801b924: 59 6c 00 00 sw (r11+0),r12
#ifdef STRING_TO_FLOAT result = STRING_TO_METHOD( s, &end ); #elif defined(STRING_TO_POINTER) result = STRING_TO_METHOD( s, &end, 16 );
801b928: b9 a0 08 00 mv r1,r13 801b92c: 37 82 00 18 addi r2,sp,24 801b930: 34 03 00 10 mvi r3,16 801b934: f8 00 bf 12 calli 804b57c <strtoul> 801b938: b8 20 60 00 mv r12,r1
#elif defined(STRING_TO_INTEGER) result = STRING_TO_METHOD( s, &end, base ); #endif /* If the user wants the end pointer back, then return it. */ if ( endptr ) 801b93c: 45 c0 00 03 be r14,r0,801b948 <rtems_string_to_pointer+0x5c> *endptr = end;
801b940: 2b 81 00 18 lw r1,(sp+24) 801b944: 59 c1 00 00 sw (r14+0),r1
/* nothing was converted */ if ( end == s )
801b948: 2b 81 00 18 lw r1,(sp+24) 801b94c: 34 04 00 0b mvi r4,11
801b950: 44 2d 00 0a be r1,r13,801b978 <rtems_string_to_pointer+0x8c> return RTEMS_INVALID_NUMBER; #endif #ifdef STRING_TO_MAX /* there was an overflow */ if ( (result == STRING_TO_MAX) && (errno == ERANGE))
801b954: 34 01 ff ff mvi r1,-1
801b958: 5d 81 00 06 bne r12,r1,801b970 <rtems_string_to_pointer+0x84><== ALWAYS TAKEN
801b95c: f8 00 9b ee calli 8042914 <__errno> <== NOT EXECUTED 801b960: 28 22 00 00 lw r2,(r1+0) <== NOT EXECUTED 801b964: 34 01 00 22 mvi r1,34 <== NOT EXECUTED 801b968: 34 04 00 0a mvi r4,10 <== NOT EXECUTED 801b96c: 44 41 00 03 be r2,r1,801b978 <rtems_string_to_pointer+0x8c><== NOT EXECUTED
if ( (result == STRING_TO_MIN) && (errno == ERANGE)) return RTEMS_INVALID_NUMBER; #endif #if defined(STRING_TO_POINTER) *n = (STRING_TO_TYPE) (uintptr_t)result;
801b970: 59 6c 00 00 sw (r11+0),r12 801b974: 34 04 00 00 mvi r4,0
#else *n = (STRING_TO_TYPE) result; #endif return RTEMS_SUCCESSFUL; }
801b978: b8 80 08 00 mv r1,r4 801b97c: 2b 9d 00 04 lw ra,(sp+4) 801b980: 2b 8b 00 14 lw r11,(sp+20) 801b984: 2b 8c 00 10 lw r12,(sp+16) 801b988: 2b 8d 00 0c lw r13,(sp+12) 801b98c: 2b 8e 00 08 lw r14,(sp+8) 801b990: 37 9c 00 18 addi sp,sp,24 801b994: c3 a0 00 00 ret
080082dc <rtems_string_to_unsigned_int>: #if defined(STRING_TO_INTEGER) && !defined(STRING_TO_POINTER) , int base #endif ) {
80082dc: 37 9c ff e4 addi sp,sp,-28 80082e0: 5b 8b 00 18 sw (sp+24),r11 80082e4: 5b 8c 00 14 sw (sp+20),r12 80082e8: 5b 8d 00 10 sw (sp+16),r13 80082ec: 5b 8e 00 0c sw (sp+12),r14 80082f0: 5b 8f 00 08 sw (sp+8),r15 80082f4: 5b 9d 00 04 sw (sp+4),ra
STRING_TO_INPUT_TYPE result; char *end; if ( !n )
80082f8: 34 0c 00 00 mvi r12,0
#if defined(STRING_TO_INTEGER) && !defined(STRING_TO_POINTER) , int base #endif ) {
80082fc: b8 40 58 00 mv r11,r2 8008300: b8 20 68 00 mv r13,r1 8008304: b8 60 70 00 mv r14,r3 8008308: b8 80 78 00 mv r15,r4
STRING_TO_INPUT_TYPE result; char *end; if ( !n )
800830c: 34 05 00 09 mvi r5,9
8008310: 44 4c 00 18 be r2,r12,8008370 <rtems_string_to_unsigned_int+0x94> return RTEMS_INVALID_ADDRESS; errno = 0;
8008314: f8 00 0e c6 calli 800be2c <__errno> 8008318: 58 2c 00 00 sw (r1+0),r12
*n = 0;
800831c: 59 6c 00 00 sw (r11+0),r12
#ifdef STRING_TO_FLOAT result = STRING_TO_METHOD( s, &end ); #elif defined(STRING_TO_POINTER) result = STRING_TO_METHOD( s, &end, 16 ); #elif defined(STRING_TO_INTEGER) result = STRING_TO_METHOD( s, &end, base );
8008320: b9 e0 18 00 mv r3,r15 8008324: b9 a0 08 00 mv r1,r13 8008328: 37 82 00 1c addi r2,sp,28 800832c: f8 00 1c f5 calli 800f700 <strtoul> 8008330: b8 20 60 00 mv r12,r1
#endif /* If the user wants the end pointer back, then return it. */ if ( endptr ) 8008334: 45 c0 00 03 be r14,r0,8008340 <rtems_string_to_unsigned_int+0x64> *endptr = end;
8008338: 2b 81 00 1c lw r1,(sp+28) 800833c: 59 c1 00 00 sw (r14+0),r1
/* nothing was converted */ if ( end == s )
8008340: 2b 81 00 1c lw r1,(sp+28) 8008344: 34 05 00 0b mvi r5,11
8008348: 44 2d 00 0a be r1,r13,8008370 <rtems_string_to_unsigned_int+0x94> return RTEMS_INVALID_NUMBER; #endif #ifdef STRING_TO_MAX /* there was an overflow */ if ( (result == STRING_TO_MAX) && (errno == ERANGE))
800834c: 34 01 ff ff mvi r1,-1
8008350: 5d 81 00 06 bne r12,r1,8008368 <rtems_string_to_unsigned_int+0x8c>
8008354: f8 00 0e b6 calli 800be2c <__errno> 8008358: 28 22 00 00 lw r2,(r1+0) 800835c: 34 01 00 22 mvi r1,34 8008360: 34 05 00 0a mvi r5,10
8008364: 44 41 00 03 be r2,r1,8008370 <rtems_string_to_unsigned_int+0x94><== ALWAYS TAKEN
#endif #if defined(STRING_TO_POINTER) *n = (STRING_TO_TYPE) (uintptr_t)result; #else *n = (STRING_TO_TYPE) result;
8008368: 59 6c 00 00 sw (r11+0),r12 800836c: 34 05 00 00 mvi r5,0
#endif return RTEMS_SUCCESSFUL; }
8008370: b8 a0 08 00 mv r1,r5 8008374: 2b 9d 00 04 lw ra,(sp+4) 8008378: 2b 8b 00 18 lw r11,(sp+24) 800837c: 2b 8c 00 14 lw r12,(sp+20) 8008380: 2b 8d 00 10 lw r13,(sp+16) 8008384: 2b 8e 00 0c lw r14,(sp+12) 8008388: 2b 8f 00 08 lw r15,(sp+8) 800838c: 37 9c 00 1c addi sp,sp,28 8008390: c3 a0 00 00 ret
0801ba34 <rtems_string_to_unsigned_long>: #if defined(STRING_TO_INTEGER) && !defined(STRING_TO_POINTER) , int base #endif ) {
801ba34: 37 9c ff e4 addi sp,sp,-28 801ba38: 5b 8b 00 18 sw (sp+24),r11 801ba3c: 5b 8c 00 14 sw (sp+20),r12 801ba40: 5b 8d 00 10 sw (sp+16),r13 801ba44: 5b 8e 00 0c sw (sp+12),r14 801ba48: 5b 8f 00 08 sw (sp+8),r15 801ba4c: 5b 9d 00 04 sw (sp+4),ra
STRING_TO_INPUT_TYPE result; char *end; if ( !n )
801ba50: 34 0c 00 00 mvi r12,0
#if defined(STRING_TO_INTEGER) && !defined(STRING_TO_POINTER) , int base #endif ) {
801ba54: b8 40 58 00 mv r11,r2 801ba58: b8 20 68 00 mv r13,r1 801ba5c: b8 60 70 00 mv r14,r3 801ba60: b8 80 78 00 mv r15,r4
STRING_TO_INPUT_TYPE result; char *end; if ( !n )
801ba64: 34 05 00 09 mvi r5,9
801ba68: 44 4c 00 18 be r2,r12,801bac8 <rtems_string_to_unsigned_long+0x94> return RTEMS_INVALID_ADDRESS; errno = 0;
801ba6c: f8 00 9b aa calli 8042914 <__errno> 801ba70: 58 2c 00 00 sw (r1+0),r12
*n = 0;
801ba74: 59 6c 00 00 sw (r11+0),r12
#ifdef STRING_TO_FLOAT result = STRING_TO_METHOD( s, &end ); #elif defined(STRING_TO_POINTER) result = STRING_TO_METHOD( s, &end, 16 ); #elif defined(STRING_TO_INTEGER) result = STRING_TO_METHOD( s, &end, base );
801ba78: b9 e0 18 00 mv r3,r15 801ba7c: b9 a0 08 00 mv r1,r13 801ba80: 37 82 00 1c addi r2,sp,28 801ba84: f8 00 be be calli 804b57c <strtoul> 801ba88: b8 20 60 00 mv r12,r1
#endif /* If the user wants the end pointer back, then return it. */ if ( endptr ) 801ba8c: 45 c0 00 03 be r14,r0,801ba98 <rtems_string_to_unsigned_long+0x64> *endptr = end;
801ba90: 2b 81 00 1c lw r1,(sp+28) 801ba94: 59 c1 00 00 sw (r14+0),r1
/* nothing was converted */ if ( end == s )
801ba98: 2b 81 00 1c lw r1,(sp+28) 801ba9c: 34 05 00 0b mvi r5,11
801baa0: 44 2d 00 0a be r1,r13,801bac8 <rtems_string_to_unsigned_long+0x94> return RTEMS_INVALID_NUMBER; #endif #ifdef STRING_TO_MAX /* there was an overflow */ if ( (result == STRING_TO_MAX) && (errno == ERANGE))
801baa4: 34 01 ff ff mvi r1,-1
801baa8: 5d 81 00 06 bne r12,r1,801bac0 <rtems_string_to_unsigned_long+0x8c>
801baac: f8 00 9b 9a calli 8042914 <__errno> 801bab0: 28 22 00 00 lw r2,(r1+0) 801bab4: 34 01 00 22 mvi r1,34 801bab8: 34 05 00 0a mvi r5,10
801babc: 44 41 00 03 be r2,r1,801bac8 <rtems_string_to_unsigned_long+0x94><== ALWAYS TAKEN
#endif #if defined(STRING_TO_POINTER) *n = (STRING_TO_TYPE) (uintptr_t)result; #else *n = (STRING_TO_TYPE) result;
801bac0: 59 6c 00 00 sw (r11+0),r12 801bac4: 34 05 00 00 mvi r5,0
#endif return RTEMS_SUCCESSFUL; }
801bac8: b8 a0 08 00 mv r1,r5 801bacc: 2b 9d 00 04 lw ra,(sp+4) 801bad0: 2b 8b 00 18 lw r11,(sp+24) 801bad4: 2b 8c 00 14 lw r12,(sp+20) 801bad8: 2b 8d 00 10 lw r13,(sp+16) 801badc: 2b 8e 00 0c lw r14,(sp+12) 801bae0: 2b 8f 00 08 lw r15,(sp+8) 801bae4: 37 9c 00 1c addi sp,sp,28 801bae8: c3 a0 00 00 ret
08008394 <rtems_string_to_unsigned_long_long>: #if defined(STRING_TO_INTEGER) && !defined(STRING_TO_POINTER) , int base #endif ) {
8008394: 37 9c ff e4 addi sp,sp,-28 8008398: 5b 8b 00 18 sw (sp+24),r11 800839c: 5b 8c 00 14 sw (sp+20),r12 80083a0: 5b 8d 00 10 sw (sp+16),r13 80083a4: 5b 8e 00 0c sw (sp+12),r14 80083a8: 5b 8f 00 08 sw (sp+8),r15 80083ac: 5b 9d 00 04 sw (sp+4),ra
STRING_TO_INPUT_TYPE result; char *end; if ( !n )
80083b0: 34 0c 00 00 mvi r12,0
#if defined(STRING_TO_INTEGER) && !defined(STRING_TO_POINTER) , int base #endif ) {
80083b4: b8 40 58 00 mv r11,r2 80083b8: b8 20 70 00 mv r14,r1 80083bc: b8 60 78 00 mv r15,r3 80083c0: b8 80 68 00 mv r13,r4
STRING_TO_INPUT_TYPE result; char *end; if ( !n )
80083c4: 34 05 00 09 mvi r5,9
80083c8: 44 4c 00 1c be r2,r12,8008438 <rtems_string_to_unsigned_long_long+0xa4> return RTEMS_INVALID_ADDRESS; errno = 0;
80083cc: f8 00 0e 98 calli 800be2c <__errno> 80083d0: 58 2c 00 00 sw (r1+0),r12
*n = 0;
80083d4: 59 6c 00 04 sw (r11+4),r12 80083d8: 59 6c 00 00 sw (r11+0),r12
#ifdef STRING_TO_FLOAT result = STRING_TO_METHOD( s, &end ); #elif defined(STRING_TO_POINTER) result = STRING_TO_METHOD( s, &end, 16 ); #elif defined(STRING_TO_INTEGER) result = STRING_TO_METHOD( s, &end, base );
80083dc: b9 a0 18 00 mv r3,r13 80083e0: b9 c0 08 00 mv r1,r14 80083e4: 37 82 00 1c addi r2,sp,28 80083e8: f8 00 1c d4 calli 800f738 <strtoull> 80083ec: b8 20 60 00 mv r12,r1 80083f0: b8 40 68 00 mv r13,r2
#endif /* If the user wants the end pointer back, then return it. */ if ( endptr ) 80083f4: 45 e0 00 03 be r15,r0,8008400 <rtems_string_to_unsigned_long_long+0x6c> *endptr = end;
80083f8: 2b 81 00 1c lw r1,(sp+28) 80083fc: 59 e1 00 00 sw (r15+0),r1
/* nothing was converted */ if ( end == s )
8008400: 2b 81 00 1c lw r1,(sp+28) 8008404: 34 05 00 0b mvi r5,11
8008408: 44 2e 00 0c be r1,r14,8008438 <rtems_string_to_unsigned_long_long+0xa4> return RTEMS_INVALID_NUMBER; #endif #ifdef STRING_TO_MAX /* there was an overflow */ if ( (result == STRING_TO_MAX) && (errno == ERANGE))
800840c: 34 01 ff ff mvi r1,-1
8008410: 5d 81 00 07 bne r12,r1,800842c <rtems_string_to_unsigned_long_long+0x98>
8008414: 5d ac 00 06 bne r13,r12,800842c <rtems_string_to_unsigned_long_long+0x98><== NEVER TAKEN
8008418: f8 00 0e 85 calli 800be2c <__errno> 800841c: 28 22 00 00 lw r2,(r1+0) 8008420: 34 01 00 22 mvi r1,34 8008424: 34 05 00 0a mvi r5,10
8008428: 44 41 00 04 be r2,r1,8008438 <rtems_string_to_unsigned_long_long+0xa4><== ALWAYS TAKEN
#endif #if defined(STRING_TO_POINTER) *n = (STRING_TO_TYPE) (uintptr_t)result; #else *n = (STRING_TO_TYPE) result;
800842c: 59 6d 00 04 sw (r11+4),r13 8008430: 59 6c 00 00 sw (r11+0),r12 8008434: 34 05 00 00 mvi r5,0
#endif return RTEMS_SUCCESSFUL; }
8008438: b8 a0 08 00 mv r1,r5 800843c: 2b 9d 00 04 lw ra,(sp+4) 8008440: 2b 8b 00 18 lw r11,(sp+24) 8008444: 2b 8c 00 14 lw r12,(sp+20) 8008448: 2b 8d 00 10 lw r13,(sp+16) 800844c: 2b 8e 00 0c lw r14,(sp+12) 8008450: 2b 8f 00 08 lw r15,(sp+8) 8008454: 37 9c 00 1c addi sp,sp,28 8008458: c3 a0 00 00 ret
0800a2b0 <rtems_task_mode>: rtems_status_code rtems_task_mode( rtems_mode mode_set, rtems_mode mask, rtems_mode *previous_mode_set ) {
800a2b0: 37 9c ff e0 addi sp,sp,-32 800a2b4: 5b 8b 00 20 sw (sp+32),r11 800a2b8: 5b 8c 00 1c sw (sp+28),r12 800a2bc: 5b 8d 00 18 sw (sp+24),r13 800a2c0: 5b 8e 00 14 sw (sp+20),r14 800a2c4: 5b 8f 00 10 sw (sp+16),r15 800a2c8: 5b 90 00 0c sw (sp+12),r16 800a2cc: 5b 91 00 08 sw (sp+8),r17 800a2d0: 5b 9d 00 04 sw (sp+4),ra
ASR_Information *asr; bool is_asr_enabled = false; bool needs_asr_dispatching = false; rtems_mode old_mode; if ( !previous_mode_set )
800a2d4: 34 04 00 09 mvi r4,9
rtems_status_code rtems_task_mode( rtems_mode mode_set, rtems_mode mask, rtems_mode *previous_mode_set ) {
800a2d8: b8 60 80 00 mv r16,r3 800a2dc: b8 20 68 00 mv r13,r1 800a2e0: b8 40 70 00 mv r14,r2
ASR_Information *asr; bool is_asr_enabled = false; bool needs_asr_dispatching = false; rtems_mode old_mode; if ( !previous_mode_set ) 800a2e4: 44 60 00 51 be r3,r0,800a428 <rtems_task_mode+0x178> return RTEMS_INVALID_ADDRESS; executing = _Thread_Executing;
800a2e8: 78 01 08 01 mvhi r1,0x801 800a2ec: 38 21 c8 e0 ori r1,r1,0xc8e0 800a2f0: 28 2b 00 00 lw r11,(r1+0)
api = executing->API_Extensions[ THREAD_API_RTEMS ]; asr = &api->Signal; old_mode = (executing->is_preemptible) ? RTEMS_PREEMPT : RTEMS_NO_PREEMPT;
800a2f4: 34 0f 00 00 mvi r15,0 800a2f8: 41 61 00 75 lbu r1,(r11+117)
if ( !previous_mode_set ) return RTEMS_INVALID_ADDRESS; executing = _Thread_Executing; api = executing->API_Extensions[ THREAD_API_RTEMS ];
800a2fc: 29 6c 01 24 lw r12,(r11+292)
asr = &api->Signal; old_mode = (executing->is_preemptible) ? RTEMS_PREEMPT : RTEMS_NO_PREEMPT; 800a300: 5c 2f 00 02 bne r1,r15,800a308 <rtems_task_mode+0x58>
800a304: 34 0f 01 00 mvi r15,256
if ( executing->budget_algorithm == THREAD_CPU_BUDGET_ALGORITHM_NONE )
800a308: 29 61 00 7c lw r1,(r11+124)
800a30c: 44 20 00 02 be r1,r0,800a314 <rtems_task_mode+0x64> old_mode |= RTEMS_NO_TIMESLICE; else old_mode |= RTEMS_TIMESLICE;
800a310: 39 ef 02 00 ori r15,r15,0x200
if ( !previous_mode_set ) return RTEMS_INVALID_ADDRESS; executing = _Thread_Executing; api = executing->API_Extensions[ THREAD_API_RTEMS ]; asr = &api->Signal;
800a314: 41 81 00 08 lbu r1,(r12+8) 800a318: 34 11 00 00 mvi r17,0
800a31c: 5c 31 00 02 bne r1,r17,800a324 <rtems_task_mode+0x74>
800a320: 34 11 04 00 mvi r17,1024
old_mode |= RTEMS_NO_TIMESLICE; else old_mode |= RTEMS_TIMESLICE; old_mode |= (asr->is_enabled) ? RTEMS_ASR : RTEMS_NO_ASR; old_mode |= _ISR_Get_level();
800a324: fb ff ee 0e calli 8005b5c <_CPU_ISR_Get_level>
if ( executing->budget_algorithm == THREAD_CPU_BUDGET_ALGORITHM_NONE ) old_mode |= RTEMS_NO_TIMESLICE; else old_mode |= RTEMS_TIMESLICE; old_mode |= (asr->is_enabled) ? RTEMS_ASR : RTEMS_NO_ASR;
800a328: ba 21 88 00 or r17,r17,r1
old_mode |= _ISR_Get_level(); *previous_mode_set = old_mode;
800a32c: ba 2f 88 00 or r17,r17,r15 800a330: 5a 11 00 00 sw (r16+0),r17
/* * These are generic thread scheduling characteristics. */ if ( mask & RTEMS_PREEMPT_MASK )
800a334: 21 c1 01 00 andi r1,r14,0x100
800a338: 44 20 00 07 be r1,r0,800a354 <rtems_task_mode+0xa4> executing->is_preemptible = _Modes_Is_preempt(mode_set) ? true : false;
800a33c: b9 a0 08 00 mv r1,r13 800a340: 34 02 00 08 mvi r2,8 800a344: fb ff d7 d3 calli 8000290 <__lshrsi3> 800a348: 18 21 00 01 xori r1,r1,0x1 800a34c: 20 21 00 01 andi r1,r1,0x1 800a350: 31 61 00 75 sb (r11+117),r1
if ( mask & RTEMS_TIMESLICE_MASK ) {
800a354: 21 c1 02 00 andi r1,r14,0x200
800a358: 44 20 00 0b be r1,r0,800a384 <rtems_task_mode+0xd4> if ( _Modes_Is_timeslice(mode_set) ) {
800a35c: 21 a1 02 00 andi r1,r13,0x200
800a360: 44 20 00 08 be r1,r0,800a380 <rtems_task_mode+0xd0> executing->budget_algorithm = THREAD_CPU_BUDGET_ALGORITHM_RESET_TIMESLICE; executing->cpu_time_budget = _Thread_Ticks_per_timeslice;
800a364: 78 01 08 01 mvhi r1,0x801 800a368: 38 21 c7 b4 ori r1,r1,0xc7b4 800a36c: 28 21 00 00 lw r1,(r1+0)
if ( mask & RTEMS_PREEMPT_MASK ) executing->is_preemptible = _Modes_Is_preempt(mode_set) ? true : false; if ( mask & RTEMS_TIMESLICE_MASK ) { if ( _Modes_Is_timeslice(mode_set) ) { executing->budget_algorithm = THREAD_CPU_BUDGET_ALGORITHM_RESET_TIMESLICE;
800a370: 34 02 00 01 mvi r2,1 800a374: 59 62 00 7c sw (r11+124),r2
executing->cpu_time_budget = _Thread_Ticks_per_timeslice;
800a378: 59 61 00 78 sw (r11+120),r1 800a37c: e0 00 00 02 bi 800a384 <rtems_task_mode+0xd4>
} else executing->budget_algorithm = THREAD_CPU_BUDGET_ALGORITHM_NONE;
800a380: 59 61 00 7c sw (r11+124),r1
/* * Set the new interrupt level */ if ( mask & RTEMS_INTERRUPT_MASK )
800a384: 21 c1 00 01 andi r1,r14,0x1
800a388: 44 20 00 04 be r1,r0,800a398 <rtems_task_mode+0xe8> */ RTEMS_INLINE_ROUTINE void _Modes_Set_interrupt_level ( Modes_Control mode_set ) { _ISR_Set_level( _Modes_Get_interrupt_level( mode_set ) );
800a38c: 19 a1 00 01 xori r1,r13,0x1 800a390: 20 21 00 01 andi r1,r1,0x1 800a394: d0 01 00 00 wcsr IE,r1
*/ is_asr_enabled = false; needs_asr_dispatching = false; if ( mask & RTEMS_ASR_MASK ) {
800a398: 21 ce 04 00 andi r14,r14,0x400
800a39c: 45 c0 00 18 be r14,r0,800a3fc <rtems_task_mode+0x14c> * Output: * *previous_mode_set - previous mode set * always return RTEMS_SUCCESSFUL; */ rtems_status_code rtems_task_mode(
800a3a0: 34 02 00 0a mvi r2,10 800a3a4: b9 a0 08 00 mv r1,r13 800a3a8: fb ff d7 ba calli 8000290 <__lshrsi3>
if ( !previous_mode_set ) return RTEMS_INVALID_ADDRESS; executing = _Thread_Executing; api = executing->API_Extensions[ THREAD_API_RTEMS ]; asr = &api->Signal;
800a3ac: 41 82 00 08 lbu r2,(r12+8)
* Output: * *previous_mode_set - previous mode set * always return RTEMS_SUCCESSFUL; */ rtems_status_code rtems_task_mode(
800a3b0: 18 21 00 01 xori r1,r1,0x1 800a3b4: 20 21 00 01 andi r1,r1,0x1
if ( !previous_mode_set ) return RTEMS_INVALID_ADDRESS; executing = _Thread_Executing; api = executing->API_Extensions[ THREAD_API_RTEMS ]; asr = &api->Signal; 800a3b8: 44 41 00 11 be r2,r1,800a3fc <rtems_task_mode+0x14c> needs_asr_dispatching = false; if ( mask & RTEMS_ASR_MASK ) { is_asr_enabled = _Modes_Is_asr_disabled( mode_set ) ? false : true; if ( is_asr_enabled != asr->is_enabled ) { asr->is_enabled = is_asr_enabled;
800a3bc: 31 81 00 08 sb (r12+8),r1
) { rtems_signal_set _signals; ISR_Level _level; _ISR_Disable( _level );
800a3c0: 90 00 08 00 rcsr r1,IE 800a3c4: 34 02 ff fe mvi r2,-2 800a3c8: a0 22 10 00 and r2,r1,r2 800a3cc: d0 02 00 00 wcsr IE,r2
_signals = information->signals_pending;
800a3d0: 29 82 00 18 lw r2,(r12+24)
information->signals_pending = information->signals_posted;
800a3d4: 29 83 00 14 lw r3,(r12+20)
information->signals_posted = _signals;
800a3d8: 59 82 00 14 sw (r12+20),r2
rtems_signal_set _signals; ISR_Level _level; _ISR_Disable( _level ); _signals = information->signals_pending; information->signals_pending = information->signals_posted;
800a3dc: 59 83 00 18 sw (r12+24),r3
information->signals_posted = _signals; _ISR_Enable( _level );
800a3e0: d0 01 00 00 wcsr IE,r1
if ( !previous_mode_set ) return RTEMS_INVALID_ADDRESS; executing = _Thread_Executing; api = executing->API_Extensions[ THREAD_API_RTEMS ]; asr = &api->Signal;
800a3e4: 29 81 00 14 lw r1,(r12+20)
800a3e8: 44 20 00 05 be r1,r0,800a3fc <rtems_task_mode+0x14c> if ( is_asr_enabled != asr->is_enabled ) { asr->is_enabled = is_asr_enabled; _ASR_Swap_signals( asr ); if ( _ASR_Are_signals_pending( asr ) ) { needs_asr_dispatching = true; executing->do_post_task_switch_extension = true;
800a3ec: 34 01 00 01 mvi r1,1 800a3f0: 31 61 00 74 sb (r11+116),r1 800a3f4: b8 20 58 00 mv r11,r1 800a3f8: e0 00 00 02 bi 800a400 <rtems_task_mode+0x150> 800a3fc: 34 0b 00 00 mvi r11,0
} } } if ( _System_state_Is_up( _System_state_Get() ) )
800a400: 78 01 08 01 mvhi r1,0x801 800a404: 38 21 c9 c0 ori r1,r1,0xc9c0 800a408: 28 22 00 00 lw r2,(r1+0) 800a40c: 34 01 00 03 mvi r1,3
800a410: 5c 41 00 05 bne r2,r1,800a424 <rtems_task_mode+0x174> <== NEVER TAKEN
if ( _Thread_Evaluate_mode() || needs_asr_dispatching )
800a414: f8 00 01 0f calli 800a850 <_Thread_Evaluate_mode>
800a418: 5c 20 00 02 bne r1,r0,800a420 <rtems_task_mode+0x170> 800a41c: 45 61 00 02 be r11,r1,800a424 <rtems_task_mode+0x174> _Thread_Dispatch();
800a420: fb ff e7 2a calli 80040c8 <_Thread_Dispatch> 800a424: 34 04 00 00 mvi r4,0
return RTEMS_SUCCESSFUL; }
800a428: b8 80 08 00 mv r1,r4 800a42c: 2b 9d 00 04 lw ra,(sp+4) 800a430: 2b 8b 00 20 lw r11,(sp+32) 800a434: 2b 8c 00 1c lw r12,(sp+28) 800a438: 2b 8d 00 18 lw r13,(sp+24) 800a43c: 2b 8e 00 14 lw r14,(sp+20) 800a440: 2b 8f 00 10 lw r15,(sp+16) 800a444: 2b 90 00 0c lw r16,(sp+12) 800a448: 2b 91 00 08 lw r17,(sp+8) 800a44c: 37 9c 00 20 addi sp,sp,32 800a450: c3 a0 00 00 ret
08008674 <rtems_task_set_priority>: rtems_status_code rtems_task_set_priority( rtems_id id, rtems_task_priority new_priority, rtems_task_priority *old_priority ) {
8008674: 37 9c ff f0 addi sp,sp,-16 8008678: 5b 8b 00 0c sw (sp+12),r11 800867c: 5b 8c 00 08 sw (sp+8),r12 8008680: 5b 9d 00 04 sw (sp+4),ra 8008684: b8 40 58 00 mv r11,r2 8008688: b8 60 60 00 mv r12,r3
register Thread_Control *the_thread; Objects_Locations location; if ( new_priority != RTEMS_CURRENT_PRIORITY && 800868c: 44 40 00 07 be r2,r0,80086a8 <rtems_task_set_priority+0x34>
8008690: 78 02 08 02 mvhi r2,0x802 8008694: 38 42 40 c0 ori r2,r2,0x40c0 8008698: 40 42 00 00 lbu r2,(r2+0)
800869c: 50 4b 00 03 bgeu r2,r11,80086a8 <rtems_task_set_priority+0x34>
80086a0: 34 02 00 13 mvi r2,19 80086a4: e0 00 00 15 bi 80086f8 <rtems_task_set_priority+0x84>
!_RTEMS_tasks_Priority_is_valid( new_priority ) ) return RTEMS_INVALID_PRIORITY; if ( !old_priority )
80086a8: 34 02 00 09 mvi r2,9
80086ac: 45 80 00 13 be r12,r0,80086f8 <rtems_task_set_priority+0x84> return RTEMS_INVALID_ADDRESS; the_thread = _Thread_Get( id, &location );
80086b0: 37 82 00 10 addi r2,sp,16 80086b4: f8 00 09 8d calli 800ace8 <_Thread_Get>
switch ( location ) {
80086b8: 2b 84 00 10 lw r4,(sp+16) 80086bc: 34 02 00 04 mvi r2,4
80086c0: 5c 80 00 0e bne r4,r0,80086f8 <rtems_task_set_priority+0x84> case OBJECTS_LOCAL: /* XXX need helper to "convert" from core priority */ *old_priority = the_thread->current_priority;
80086c4: 28 22 00 14 lw r2,(r1+20) 80086c8: 59 82 00 00 sw (r12+0),r2
if ( new_priority != RTEMS_CURRENT_PRIORITY ) { 80086cc: 45 64 00 09 be r11,r4,80086f0 <rtems_task_set_priority+0x7c> the_thread->real_priority = new_priority; if ( the_thread->resource_count == 0 ||
80086d0: 28 22 00 1c lw r2,(r1+28)
case OBJECTS_LOCAL: /* XXX need helper to "convert" from core priority */ *old_priority = the_thread->current_priority; if ( new_priority != RTEMS_CURRENT_PRIORITY ) { the_thread->real_priority = new_priority;
80086d4: 58 2b 00 18 sw (r1+24),r11
if ( the_thread->resource_count == 0 || 80086d8: 44 40 00 03 be r2,r0,80086e4 <rtems_task_set_priority+0x70> the_thread->current_priority > new_priority )
80086dc: 28 22 00 14 lw r2,(r1+20)
80086e0: 51 62 00 04 bgeu r11,r2,80086f0 <rtems_task_set_priority+0x7c><== ALWAYS TAKEN
_Thread_Change_priority( the_thread, new_priority, false );
80086e4: b9 60 10 00 mv r2,r11 80086e8: 34 03 00 00 mvi r3,0 80086ec: f8 00 07 bb calli 800a5d8 <_Thread_Change_priority>
} _Thread_Enable_dispatch();
80086f0: f8 00 09 5e calli 800ac68 <_Thread_Enable_dispatch> 80086f4: 34 02 00 00 mvi r2,0
case OBJECTS_ERROR: break; } return RTEMS_INVALID_ID; }
80086f8: b8 40 08 00 mv r1,r2 80086fc: 2b 9d 00 04 lw ra,(sp+4) 8008700: 2b 8b 00 0c lw r11,(sp+12) 8008704: 2b 8c 00 08 lw r12,(sp+8) 8008708: 37 9c 00 10 addi sp,sp,16 800870c: c3 a0 00 00 ret
08003574 <rtems_termios_baud_to_index>: rtems_termios_baud_t termios_baud ) { int baud_index; switch (termios_baud) {
8003574: 34 03 00 09 mvi r3,9
#include <rtems/termiostypes.h> int rtems_termios_baud_to_index( rtems_termios_baud_t termios_baud ) {
8003578: b8 20 10 00 mv r2,r1
int baud_index; switch (termios_baud) {
800357c: 44 23 00 38 be r1,r3,800365c <rtems_termios_baud_to_index+0xe8><== NEVER TAKEN 8003580: 48 23 00 18 bg r1,r3,80035e0 <rtems_termios_baud_to_index+0x6c><== NEVER TAKEN
8003584: 34 03 00 04 mvi r3,4
8003588: 44 23 00 35 be r1,r3,800365c <rtems_termios_baud_to_index+0xe8><== NEVER TAKEN 800358c: 48 23 00 0b bg r1,r3,80035b8 <rtems_termios_baud_to_index+0x44><== NEVER TAKEN
8003590: 34 02 00 01 mvi r2,1
8003594: 44 22 00 32 be r1,r2,800365c <rtems_termios_baud_to_index+0xe8><== NEVER TAKEN 8003598: 48 22 00 03 bg r1,r2,80035a4 <rtems_termios_baud_to_index+0x30><== NEVER TAKEN
800359c: 5c 20 00 2f bne r1,r0,8003658 <rtems_termios_baud_to_index+0xe4><== ALWAYS TAKEN
80035a0: c3 a0 00 00 ret <== NOT EXECUTED 80035a4: 34 02 00 02 mvi r2,2 <== NOT EXECUTED 80035a8: 44 22 00 2d be r1,r2,800365c <rtems_termios_baud_to_index+0xe8><== NOT EXECUTED 80035ac: 34 02 00 03 mvi r2,3 <== NOT EXECUTED 80035b0: 5c 22 00 2a bne r1,r2,8003658 <rtems_termios_baud_to_index+0xe4><== NOT EXECUTED 80035b4: c3 a0 00 00 ret <== NOT EXECUTED 80035b8: 34 03 00 06 mvi r3,6 <== NOT EXECUTED 80035bc: 44 23 00 28 be r1,r3,800365c <rtems_termios_baud_to_index+0xe8><== NOT EXECUTED
case B0: baud_index = 0; break; case B50: baud_index = 1; break; case B75: baud_index = 2; break; case B110: baud_index = 3; break; case B134: baud_index = 4; break;
80035c0: 34 01 00 05 mvi r1,5 <== NOT EXECUTED
rtems_termios_baud_t termios_baud ) { int baud_index; switch (termios_baud) {
80035c4: 48 62 00 26 bg r3,r2,800365c <rtems_termios_baud_to_index+0xe8><== NOT EXECUTED
case B50: baud_index = 1; break; case B75: baud_index = 2; break; case B110: baud_index = 3; break; case B134: baud_index = 4; break; case B150: baud_index = 5; break; case B200: baud_index = 6; break;
80035c8: b8 40 08 00 mv r1,r2 <== NOT EXECUTED
rtems_termios_baud_t termios_baud ) { int baud_index; switch (termios_baud) {
80035cc: 34 02 00 07 mvi r2,7 <== NOT EXECUTED 80035d0: 44 22 00 23 be r1,r2,800365c <rtems_termios_baud_to_index+0xe8><== NOT EXECUTED 80035d4: 34 02 00 08 mvi r2,8 <== NOT EXECUTED 80035d8: 5c 22 00 20 bne r1,r2,8003658 <rtems_termios_baud_to_index+0xe4><== NOT EXECUTED 80035dc: c3 a0 00 00 ret <== NOT EXECUTED 80035e0: 34 03 00 0e mvi r3,14 <== NOT EXECUTED 80035e4: 44 23 00 1e be r1,r3,800365c <rtems_termios_baud_to_index+0xe8><== NOT EXECUTED 80035e8: 48 23 00 0b bg r1,r3,8003614 <rtems_termios_baud_to_index+0xa0><== NOT EXECUTED 80035ec: 34 03 00 0b mvi r3,11 <== NOT EXECUTED 80035f0: 44 23 00 1b be r1,r3,800365c <rtems_termios_baud_to_index+0xe8><== NOT EXECUTED
case B134: baud_index = 4; break; case B150: baud_index = 5; break; case B200: baud_index = 6; break; case B300: baud_index = 7; break; case B600: baud_index = 8; break; case B1200: baud_index = 9; break;
80035f4: 34 01 00 0a mvi r1,10 <== NOT EXECUTED
rtems_termios_baud_t termios_baud ) { int baud_index; switch (termios_baud) {
80035f8: 48 62 00 19 bg r3,r2,800365c <rtems_termios_baud_to_index+0xe8><== NOT EXECUTED
case B200: baud_index = 6; break; case B300: baud_index = 7; break; case B600: baud_index = 8; break; case B1200: baud_index = 9; break; case B1800: baud_index = 10; break; case B2400: baud_index = 11; break;
80035fc: b8 40 08 00 mv r1,r2 <== NOT EXECUTED
rtems_termios_baud_t termios_baud ) { int baud_index; switch (termios_baud) {
8003600: 34 02 00 0c mvi r2,12 <== NOT EXECUTED 8003604: 44 22 00 16 be r1,r2,800365c <rtems_termios_baud_to_index+0xe8><== NOT EXECUTED 8003608: 34 02 00 0d mvi r2,13 <== NOT EXECUTED 800360c: 5c 22 00 13 bne r1,r2,8003658 <rtems_termios_baud_to_index+0xe4><== NOT EXECUTED 8003610: c3 a0 00 00 ret <== NOT EXECUTED 8003614: 34 03 10 02 mvi r3,4098 <== NOT EXECUTED
case B2400: baud_index = 11; break; case B4800: baud_index = 12; break; case B9600: baud_index = 13; break; case B19200: baud_index = 14; break; case B38400: baud_index = 15; break; case B57600: baud_index = 16; break;
8003618: 34 01 00 11 mvi r1,17 <== NOT EXECUTED
rtems_termios_baud_t termios_baud ) { int baud_index; switch (termios_baud) {
800361c: 44 43 00 10 be r2,r3,800365c <rtems_termios_baud_to_index+0xe8><== NOT EXECUTED 8003620: 48 43 00 08 bg r2,r3,8003640 <rtems_termios_baud_to_index+0xcc><== NOT EXECUTED 8003624: 34 03 00 0f mvi r3,15 <== NOT EXECUTED
case B1200: baud_index = 9; break; case B1800: baud_index = 10; break; case B2400: baud_index = 11; break; case B4800: baud_index = 12; break; case B9600: baud_index = 13; break; case B19200: baud_index = 14; break;
8003628: b8 40 08 00 mv r1,r2 <== NOT EXECUTED
rtems_termios_baud_t termios_baud ) { int baud_index; switch (termios_baud) {
800362c: 44 43 00 0c be r2,r3,800365c <rtems_termios_baud_to_index+0xe8><== NOT EXECUTED 8003630: 34 03 10 01 mvi r3,4097 <== NOT EXECUTED
case B1800: baud_index = 10; break; case B2400: baud_index = 11; break; case B4800: baud_index = 12; break; case B9600: baud_index = 13; break; case B19200: baud_index = 14; break; case B38400: baud_index = 15; break;
8003634: 34 01 00 10 mvi r1,16 <== NOT EXECUTED
rtems_termios_baud_t termios_baud ) { int baud_index; switch (termios_baud) {
8003638: 5c 43 00 08 bne r2,r3,8003658 <rtems_termios_baud_to_index+0xe4><== NOT EXECUTED 800363c: c3 a0 00 00 ret <== NOT EXECUTED 8003640: 34 03 10 03 mvi r3,4099 <== NOT EXECUTED
case B4800: baud_index = 12; break; case B9600: baud_index = 13; break; case B19200: baud_index = 14; break; case B38400: baud_index = 15; break; case B57600: baud_index = 16; break; case B115200: baud_index = 17; break;
8003644: 34 01 00 12 mvi r1,18 <== NOT EXECUTED
rtems_termios_baud_t termios_baud ) { int baud_index; switch (termios_baud) {
8003648: 44 43 00 05 be r2,r3,800365c <rtems_termios_baud_to_index+0xe8><== NOT EXECUTED 800364c: 34 03 10 04 mvi r3,4100 <== NOT EXECUTED
case B9600: baud_index = 13; break; case B19200: baud_index = 14; break; case B38400: baud_index = 15; break; case B57600: baud_index = 16; break; case B115200: baud_index = 17; break; case B230400: baud_index = 18; break;
8003650: 34 01 00 13 mvi r1,19 <== NOT EXECUTED
rtems_termios_baud_t termios_baud ) { int baud_index; switch (termios_baud) {
8003654: 44 43 00 02 be r2,r3,800365c <rtems_termios_baud_to_index+0xe8><== NOT EXECUTED
case B19200: baud_index = 14; break; case B38400: baud_index = 15; break; case B57600: baud_index = 16; break; case B115200: baud_index = 17; break; case B230400: baud_index = 18; break; case B460800: baud_index = 19; break;
8003658: 34 01 ff ff mvi r1,-1
default: baud_index = -1; break; } return baud_index; }
800365c: c3 a0 00 00 ret
08003660 <rtems_termios_baud_to_number>: #include <rtems/termiostypes.h> int32_t rtems_termios_baud_to_number( int termios_baud ) {
8003660: b8 20 10 00 mv r2,r1
int32_t baud; switch (termios_baud) {
8003664: 34 03 00 09 mvi r3,9
case B110: baud = 110; break; case B134: baud = 134; break; case B150: baud = 150; break; case B200: baud = 200; break; case B300: baud = 300; break; case B600: baud = 600; break;
8003668: 34 01 04 b0 mvi r1,1200
int termios_baud ) { int32_t baud; switch (termios_baud) { 800366c: 44 43 00 49 be r2,r3,8003790 <rtems_termios_baud_to_number+0x130> 8003670: 48 43 00 1f bg r2,r3,80036ec <rtems_termios_baud_to_number+0x8c>
8003674: 34 03 00 04 mvi r3,4
case B0: baud = 0; break; case B50: baud = 50; break; case B75: baud = 75; break; case B110: baud = 110; break;
8003678: 34 01 00 86 mvi r1,134
int termios_baud ) { int32_t baud; switch (termios_baud) { 800367c: 44 43 00 45 be r2,r3,8003790 <rtems_termios_baud_to_number+0x130> 8003680: 48 43 00 0f bg r2,r3,80036bc <rtems_termios_baud_to_number+0x5c>
8003684: 34 03 00 01 mvi r3,1 8003688: 34 01 00 32 mvi r1,50
800368c: 44 43 00 41 be r2,r3,8003790 <rtems_termios_baud_to_number+0x130> 8003690: 48 43 00 04 bg r2,r3,80036a0 <rtems_termios_baud_to_number+0x40>
8003694: b8 40 08 00 mv r1,r2
8003698: 5c 40 00 3d bne r2,r0,800378c <rtems_termios_baud_to_number+0x12c>
800369c: c3 a0 00 00 ret 80036a0: 34 03 00 02 mvi r3,2 80036a4: 34 01 00 4b mvi r1,75
80036a8: 44 43 00 3a be r2,r3,8003790 <rtems_termios_baud_to_number+0x130>
80036ac: 34 03 00 03 mvi r3,3
case B0: baud = 0; break; case B50: baud = 50; break; case B75: baud = 75; break;
80036b0: 34 01 00 6e mvi r1,110
int termios_baud ) { int32_t baud; switch (termios_baud) {
80036b4: 5c 43 00 36 bne r2,r3,800378c <rtems_termios_baud_to_number+0x12c><== NEVER TAKEN
80036b8: c3 a0 00 00 ret 80036bc: 34 03 00 06 mvi r3,6
case B0: baud = 0; break; case B50: baud = 50; break; case B75: baud = 75; break; case B110: baud = 110; break; case B134: baud = 134; break; case B150: baud = 150; break;
80036c0: 34 01 00 c8 mvi r1,200
int termios_baud ) { int32_t baud; switch (termios_baud) { 80036c4: 44 43 00 33 be r2,r3,8003790 <rtems_termios_baud_to_number+0x130> case B0: baud = 0; break; case B50: baud = 50; break; case B75: baud = 75; break; case B110: baud = 110; break; case B134: baud = 134; break;
80036c8: 34 01 00 96 mvi r1,150
int termios_baud ) { int32_t baud; switch (termios_baud) { 80036cc: 48 62 00 31 bg r3,r2,8003790 <rtems_termios_baud_to_number+0x130>
80036d0: 34 03 00 07 mvi r3,7
case B50: baud = 50; break; case B75: baud = 75; break; case B110: baud = 110; break; case B134: baud = 134; break; case B150: baud = 150; break; case B200: baud = 200; break;
80036d4: 34 01 01 2c mvi r1,300
int termios_baud ) { int32_t baud; switch (termios_baud) { 80036d8: 44 43 00 2e be r2,r3,8003790 <rtems_termios_baud_to_number+0x130>
80036dc: 34 03 00 08 mvi r3,8
case B75: baud = 75; break; case B110: baud = 110; break; case B134: baud = 134; break; case B150: baud = 150; break; case B200: baud = 200; break; case B300: baud = 300; break;
80036e0: 34 01 02 58 mvi r1,600
int termios_baud ) { int32_t baud; switch (termios_baud) {
80036e4: 5c 43 00 2a bne r2,r3,800378c <rtems_termios_baud_to_number+0x12c><== NEVER TAKEN
80036e8: c3 a0 00 00 ret 80036ec: 34 03 00 0e mvi r3,14
case B600: baud = 600; break; case B1200: baud = 1200; break; case B1800: baud = 1800; break; case B2400: baud = 2400; break; case B4800: baud = 4800; break; case B9600: baud = 9600; break;
80036f0: 34 01 4b 00 mvi r1,19200
int termios_baud ) { int32_t baud; switch (termios_baud) { 80036f4: 44 43 00 27 be r2,r3,8003790 <rtems_termios_baud_to_number+0x130> 80036f8: 48 43 00 0d bg r2,r3,800372c <rtems_termios_baud_to_number+0xcc>
80036fc: 34 03 00 0b mvi r3,11
case B150: baud = 150; break; case B200: baud = 200; break; case B300: baud = 300; break; case B600: baud = 600; break; case B1200: baud = 1200; break; case B1800: baud = 1800; break;
8003700: 34 01 09 60 mvi r1,2400
int termios_baud ) { int32_t baud; switch (termios_baud) { 8003704: 44 43 00 23 be r2,r3,8003790 <rtems_termios_baud_to_number+0x130> case B134: baud = 134; break; case B150: baud = 150; break; case B200: baud = 200; break; case B300: baud = 300; break; case B600: baud = 600; break; case B1200: baud = 1200; break;
8003708: 34 01 07 08 mvi r1,1800
int termios_baud ) { int32_t baud; switch (termios_baud) { 800370c: 48 62 00 21 bg r3,r2,8003790 <rtems_termios_baud_to_number+0x130>
8003710: 34 03 00 0c mvi r3,12
case B200: baud = 200; break; case B300: baud = 300; break; case B600: baud = 600; break; case B1200: baud = 1200; break; case B1800: baud = 1800; break; case B2400: baud = 2400; break;
8003714: 34 01 12 c0 mvi r1,4800
int termios_baud ) { int32_t baud; switch (termios_baud) { 8003718: 44 43 00 1e be r2,r3,8003790 <rtems_termios_baud_to_number+0x130>
800371c: 34 03 00 0d mvi r3,13
case B300: baud = 300; break; case B600: baud = 600; break; case B1200: baud = 1200; break; case B1800: baud = 1800; break; case B2400: baud = 2400; break; case B4800: baud = 4800; break;
8003720: 34 01 25 80 mvi r1,9600
int termios_baud ) { int32_t baud; switch (termios_baud) {
8003724: 5c 43 00 1a bne r2,r3,800378c <rtems_termios_baud_to_number+0x12c><== NEVER TAKEN
8003728: c3 a0 00 00 ret 800372c: 34 01 10 02 mvi r1,4098
8003730: 44 41 00 0e be r2,r1,8003768 <rtems_termios_baud_to_number+0x108> 8003734: 48 41 00 08 bg r2,r1,8003754 <rtems_termios_baud_to_number+0xf4>
8003738: 34 03 00 0f mvi r3,15
case B1200: baud = 1200; break; case B1800: baud = 1800; break; case B2400: baud = 2400; break; case B4800: baud = 4800; break; case B9600: baud = 9600; break; case B19200: baud = 19200; break;
800373c: 38 01 96 00 mvu r1,0x9600
int termios_baud ) { int32_t baud; switch (termios_baud) { 8003740: 44 43 00 14 be r2,r3,8003790 <rtems_termios_baud_to_number+0x130>
8003744: 34 03 10 01 mvi r3,4097
case B1800: baud = 1800; break; case B2400: baud = 2400; break; case B4800: baud = 4800; break; case B9600: baud = 9600; break; case B19200: baud = 19200; break; case B38400: baud = 38400; break;
8003748: 38 01 e1 00 mvu r1,0xe100
int termios_baud ) { int32_t baud; switch (termios_baud) {
800374c: 5c 43 00 10 bne r2,r3,800378c <rtems_termios_baud_to_number+0x12c><== NEVER TAKEN
8003750: c3 a0 00 00 ret 8003754: 34 01 10 03 mvi r1,4099
8003758: 44 41 00 07 be r2,r1,8003774 <rtems_termios_baud_to_number+0x114>
800375c: 34 01 10 04 mvi r1,4100
8003760: 5c 41 00 0b bne r2,r1,800378c <rtems_termios_baud_to_number+0x12c><== NEVER TAKEN
8003764: e0 00 00 07 bi 8003780 <rtems_termios_baud_to_number+0x120>
case B2400: baud = 2400; break; case B4800: baud = 4800; break; case B9600: baud = 9600; break; case B19200: baud = 19200; break; case B38400: baud = 38400; break; case B57600: baud = 57600; break;
8003768: 78 01 00 01 mvhi r1,0x1 800376c: 38 21 c2 00 ori r1,r1,0xc200
case B115200: baud = 115200; break;
8003770: c3 a0 00 00 ret 8003774: 78 01 00 03 mvhi r1,0x3 8003778: 38 21 84 00 ori r1,r1,0x8400
case B230400: baud = 230400; break;
800377c: c3 a0 00 00 ret 8003780: 78 01 00 07 mvhi r1,0x7 8003784: 38 21 08 00 ori r1,r1,0x800
case B460800: baud = 460800; break;
8003788: c3 a0 00 00 ret 800378c: 34 01 ff ff mvi r1,-1
default: baud = -1; break; } return baud; }
8003790: c3 a0 00 00 ret
08003904 <rtems_termios_bufsize>: int cbufsize, int raw_input, int raw_output ) { rtems_termios_cbufsize = cbufsize;
8003904: 78 06 08 02 mvhi r6,0x802 <== NOT EXECUTED
rtems_termios_raw_input_size = raw_input;
8003908: 78 05 08 02 mvhi r5,0x802 <== NOT EXECUTED
rtems_termios_raw_output_size = raw_output;
800390c: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED
int cbufsize, int raw_input, int raw_output ) { rtems_termios_cbufsize = cbufsize;
8003910: 38 c6 32 34 ori r6,r6,0x3234 <== NOT EXECUTED
rtems_termios_raw_input_size = raw_input;
8003914: 38 a5 32 38 ori r5,r5,0x3238 <== NOT EXECUTED
rtems_termios_raw_output_size = raw_output;
8003918: 38 84 32 3c ori r4,r4,0x323c <== NOT EXECUTED
int cbufsize, int raw_input, int raw_output ) { rtems_termios_cbufsize = cbufsize;
800391c: 58 c1 00 00 sw (r6+0),r1 <== NOT EXECUTED
rtems_termios_raw_input_size = raw_input;
8003920: 58 a2 00 00 sw (r5+0),r2 <== NOT EXECUTED
rtems_termios_raw_output_size = raw_output;
8003924: 58 83 00 00 sw (r4+0),r3 <== NOT EXECUTED
return RTEMS_SUCCESSFUL; }
8003928: 34 01 00 00 mvi r1,0 <== NOT EXECUTED 800392c: c3 a0 00 00 ret <== NOT EXECUTED
08004fac <rtems_termios_close>: } } rtems_status_code rtems_termios_close (void *arg) {
8004fac: 37 9c ff ec addi sp,sp,-20 8004fb0: 5b 8b 00 14 sw (sp+20),r11 8004fb4: 5b 8c 00 10 sw (sp+16),r12 8004fb8: 5b 8d 00 0c sw (sp+12),r13 8004fbc: 5b 8e 00 08 sw (sp+8),r14 8004fc0: 5b 9d 00 04 sw (sp+4),ra
rtems_libio_open_close_args_t *args = arg; struct rtems_termios_tty *tty = args->iop->data1; rtems_status_code sc; sc = rtems_semaphore_obtain (rtems_termios_ttyMutex, RTEMS_WAIT, RTEMS_NO_TIMEOUT);
8004fc4: 78 02 08 02 mvhi r2,0x802
} } rtems_status_code rtems_termios_close (void *arg) {
8004fc8: b8 20 70 00 mv r14,r1
rtems_libio_open_close_args_t *args = arg; struct rtems_termios_tty *tty = args->iop->data1; rtems_status_code sc; sc = rtems_semaphore_obtain (rtems_termios_ttyMutex, RTEMS_WAIT, RTEMS_NO_TIMEOUT);
8004fcc: 38 42 39 4c ori r2,r2,0x394c 8004fd0: 28 41 00 00 lw r1,(r2+0)
rtems_status_code rtems_termios_close (void *arg) { rtems_libio_open_close_args_t *args = arg; struct rtems_termios_tty *tty = args->iop->data1;
8004fd4: 29 c4 00 00 lw r4,(r14+0)
rtems_status_code sc; sc = rtems_semaphore_obtain (rtems_termios_ttyMutex, RTEMS_WAIT, RTEMS_NO_TIMEOUT);
8004fd8: 34 02 00 00 mvi r2,0 8004fdc: b8 40 18 00 mv r3,r2
rtems_status_code rtems_termios_close (void *arg) { rtems_libio_open_close_args_t *args = arg; struct rtems_termios_tty *tty = args->iop->data1;
8004fe0: 28 8b 00 38 lw r11,(r4+56)
rtems_status_code sc; sc = rtems_semaphore_obtain (rtems_termios_ttyMutex, RTEMS_WAIT, RTEMS_NO_TIMEOUT);
8004fe4: f8 00 04 8c calli 8006214 <rtems_semaphore_obtain>
if (sc != RTEMS_SUCCESSFUL)
8004fe8: 5c 20 00 23 bne r1,r0,8005074 <rtems_termios_close+0xc8> <== NEVER TAKEN
rtems_fatal_error_occurred (sc); if (--tty->refcount == 0) {
8004fec: 29 6d 00 08 lw r13,(r11+8) 8004ff0: 35 ad ff ff addi r13,r13,-1 8004ff4: 59 6d 00 08 sw (r11+8),r13
8004ff8: 5d a1 00 4f bne r13,r1,8005134 <rtems_termios_close+0x188> <== NEVER TAKEN
if (rtems_termios_linesw[tty->t_line].l_close != NULL) {
8004ffc: 29 61 00 cc lw r1,(r11+204) 8005000: 78 0c 08 02 mvhi r12,0x802 8005004: 34 02 00 05 mvi r2,5 8005008: 39 8c 37 7c ori r12,r12,0x377c 800500c: fb ff f0 fb calli 80013f8 <__ashlsi3> 8005010: b5 81 08 00 add r1,r12,r1 8005014: 28 2c 00 04 lw r12,(r1+4)
8005018: 45 8d 00 04 be r12,r13,8005028 <rtems_termios_close+0x7c> <== ALWAYS TAKEN
/* * call discipline-specific close */ sc = rtems_termios_linesw[tty->t_line].l_close(tty);
800501c: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8005020: d9 80 00 00 call r12 <== NOT EXECUTED 8005024: e0 00 00 08 bi 8005044 <rtems_termios_close+0x98> <== NOT EXECUTED
} else { /* * default: just flush output buffer */ sc = rtems_semaphore_obtain (tty->osem, RTEMS_WAIT, RTEMS_NO_TIMEOUT);
8005028: 29 61 00 18 lw r1,(r11+24) 800502c: b9 80 10 00 mv r2,r12 8005030: b9 80 18 00 mv r3,r12 8005034: f8 00 04 78 calli 8006214 <rtems_semaphore_obtain>
if (sc != RTEMS_SUCCESSFUL) {
8005038: 5d 81 00 0f bne r12,r1,8005074 <rtems_termios_close+0xc8> <== NEVER TAKEN
rtems_fatal_error_occurred (sc); } drainOutput (tty);
800503c: b9 60 08 00 mv r1,r11 8005040: fb ff fd e0 calli 80047c0 <drainOutput>
} if (tty->device.outputUsesInterrupts
8005044: 29 62 00 b4 lw r2,(r11+180) 8005048: 34 01 00 02 mvi r1,2
800504c: 5c 41 00 0b bne r2,r1,8005078 <rtems_termios_close+0xcc> <== ALWAYS TAKEN
== TERMIOS_TASK_DRIVEN) { /* * send "terminate" to I/O tasks */ sc = rtems_event_send(
8005050: 29 61 00 c4 lw r1,(r11+196) <== NOT EXECUTED 8005054: 34 02 00 01 mvi r2,1 <== NOT EXECUTED 8005058: f8 00 03 1b calli 8005cc4 <rtems_event_send> <== NOT EXECUTED 800505c: b8 20 60 00 mv r12,r1 <== NOT EXECUTED
tty->rxTaskId, TERMIOS_RX_TERMINATE_EVENT); if (sc != RTEMS_SUCCESSFUL)
8005060: 5c 20 00 05 bne r1,r0,8005074 <rtems_termios_close+0xc8> <== NOT EXECUTED
rtems_fatal_error_occurred (sc); sc = rtems_event_send(
8005064: 29 61 00 c8 lw r1,(r11+200) <== NOT EXECUTED 8005068: 34 02 00 01 mvi r2,1 <== NOT EXECUTED 800506c: f8 00 03 16 calli 8005cc4 <rtems_event_send> <== NOT EXECUTED
tty->txTaskId, TERMIOS_TX_TERMINATE_EVENT); if (sc != RTEMS_SUCCESSFUL)
8005070: 44 2c 00 02 be r1,r12,8005078 <rtems_termios_close+0xcc> <== NOT EXECUTED
rtems_fatal_error_occurred (sc);
8005074: f8 00 06 60 calli 80069f4 <rtems_fatal_error_occurred> <== NOT EXECUTED
} if (tty->device.lastClose)
8005078: 29 64 00 9c lw r4,(r11+156)
800507c: 44 80 00 05 be r4,r0,8005090 <rtems_termios_close+0xe4> <== ALWAYS TAKEN
(*tty->device.lastClose)(tty->major, tty->minor, arg);
8005080: 29 61 00 0c lw r1,(r11+12) <== NOT EXECUTED 8005084: 29 62 00 10 lw r2,(r11+16) <== NOT EXECUTED 8005088: b9 c0 18 00 mv r3,r14 <== NOT EXECUTED 800508c: d8 80 00 00 call r4 <== NOT EXECUTED
if (tty->forw == NULL) {
8005090: 29 61 00 00 lw r1,(r11+0) 8005094: 29 62 00 04 lw r2,(r11+4)
8005098: 5c 20 00 07 bne r1,r0,80050b4 <rtems_termios_close+0x108> <== NEVER TAKEN
rtems_termios_ttyTail = tty->back;
800509c: 78 03 08 02 mvhi r3,0x802 80050a0: 38 63 39 50 ori r3,r3,0x3950 80050a4: 58 62 00 00 sw (r3+0),r2
if ( rtems_termios_ttyTail != NULL ) {
80050a8: 44 41 00 04 be r2,r1,80050b8 <rtems_termios_close+0x10c> <== ALWAYS TAKEN
rtems_termios_ttyTail->forw = NULL;
80050ac: 58 41 00 00 sw (r2+0),r1 <== NOT EXECUTED 80050b0: e0 00 00 02 bi 80050b8 <rtems_termios_close+0x10c> <== NOT EXECUTED
} } else { tty->forw->back = tty->back;
80050b4: 58 22 00 04 sw (r1+4),r2 <== NOT EXECUTED
} if (tty->back == NULL) {
80050b8: 29 61 00 04 lw r1,(r11+4) 80050bc: 29 62 00 00 lw r2,(r11+0)
80050c0: 5c 20 00 07 bne r1,r0,80050dc <rtems_termios_close+0x130> <== NEVER TAKEN
rtems_termios_ttyHead = tty->forw;
80050c4: 78 03 08 02 mvhi r3,0x802 80050c8: 38 63 39 54 ori r3,r3,0x3954 80050cc: 58 62 00 00 sw (r3+0),r2
if ( rtems_termios_ttyHead != NULL ) {
80050d0: 44 41 00 04 be r2,r1,80050e0 <rtems_termios_close+0x134> <== ALWAYS TAKEN
rtems_termios_ttyHead->back = NULL;
80050d4: 58 41 00 04 sw (r2+4),r1 <== NOT EXECUTED 80050d8: e0 00 00 02 bi 80050e0 <rtems_termios_close+0x134> <== NOT EXECUTED
} } else { tty->back->forw = tty->forw;
80050dc: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED
} rtems_semaphore_delete (tty->isem);
80050e0: 29 61 00 14 lw r1,(r11+20) 80050e4: f8 00 04 20 calli 8006164 <rtems_semaphore_delete>
rtems_semaphore_delete (tty->osem);
80050e8: 29 61 00 18 lw r1,(r11+24) 80050ec: f8 00 04 1e calli 8006164 <rtems_semaphore_delete>
rtems_semaphore_delete (tty->rawOutBuf.Semaphore);
80050f0: 29 61 00 8c lw r1,(r11+140) 80050f4: f8 00 04 1c calli 8006164 <rtems_semaphore_delete>
if ((tty->device.pollRead == NULL) ||
80050f8: 29 61 00 a0 lw r1,(r11+160)
80050fc: 44 20 00 04 be r1,r0,800510c <rtems_termios_close+0x160> <== NEVER TAKEN
(tty->device.outputUsesInterrupts == TERMIOS_TASK_DRIVEN))
8005100: 29 62 00 b4 lw r2,(r11+180) 8005104: 34 01 00 02 mvi r1,2
8005108: 5c 41 00 03 bne r2,r1,8005114 <rtems_termios_close+0x168> <== ALWAYS TAKEN
rtems_semaphore_delete (tty->rawInBuf.Semaphore);
800510c: 29 61 00 68 lw r1,(r11+104) <== NOT EXECUTED 8005110: f8 00 04 15 calli 8006164 <rtems_semaphore_delete> <== NOT EXECUTED
free (tty->rawInBuf.theBuf);
8005114: 29 61 00 58 lw r1,(r11+88) 8005118: f8 00 1a 3e calli 800ba10 <free>
free (tty->rawOutBuf.theBuf);
800511c: 29 61 00 7c lw r1,(r11+124) 8005120: f8 00 1a 3c calli 800ba10 <free>
free (tty->cbuf);
8005124: 29 61 00 1c lw r1,(r11+28) 8005128: f8 00 1a 3a calli 800ba10 <free>
free (tty);
800512c: b9 60 08 00 mv r1,r11 8005130: f8 00 1a 38 calli 800ba10 <free>
} rtems_semaphore_release (rtems_termios_ttyMutex);
8005134: 78 01 08 02 mvhi r1,0x802 8005138: 38 21 39 4c ori r1,r1,0x394c 800513c: 28 21 00 00 lw r1,(r1+0) 8005140: f8 00 04 85 calli 8006354 <rtems_semaphore_release>
return RTEMS_SUCCESSFUL; }
8005144: 34 01 00 00 mvi r1,0 8005148: 2b 9d 00 04 lw ra,(sp+4) 800514c: 2b 8b 00 14 lw r11,(sp+20) 8005150: 2b 8c 00 10 lw r12,(sp+16) 8005154: 2b 8d 00 0c lw r13,(sp+12) 8005158: 2b 8e 00 08 lw r14,(sp+8) 800515c: 37 9c 00 14 addi sp,sp,20 8005160: c3 a0 00 00 ret
08003b60 <rtems_termios_dequeue_characters>: * for each transmitted character. * It returns number of characters left to transmit */ int rtems_termios_dequeue_characters (void *ttyp, int len) {
8003b60: 37 9c ff fc addi sp,sp,-4 <== NOT EXECUTED 8003b64: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
rtems_status_code sc; /* * sum up character count already sent */ tty->t_dqlen += len;
8003b68: 28 25 00 90 lw r5,(r1+144) <== NOT EXECUTED
if (tty->device.outputUsesInterrupts == TERMIOS_TASK_DRIVEN) {
8003b6c: 28 24 00 b4 lw r4,(r1+180) <== NOT EXECUTED
rtems_status_code sc; /* * sum up character count already sent */ tty->t_dqlen += len;
8003b70: b4 a2 10 00 add r2,r5,r2 <== NOT EXECUTED 8003b74: 58 22 00 90 sw (r1+144),r2 <== NOT EXECUTED
if (tty->device.outputUsesInterrupts == TERMIOS_TASK_DRIVEN) {
8003b78: 34 02 00 02 mvi r2,2 <== NOT EXECUTED 8003b7c: 5c 82 00 06 bne r4,r2,8003b94 <rtems_termios_dequeue_characters+0x34><== NOT EXECUTED
/* * send wake up to transmitter task */ sc = rtems_event_send(tty->txTaskId,
8003b80: 28 21 00 c8 lw r1,(r1+200) <== NOT EXECUTED 8003b84: b8 80 10 00 mv r2,r4 <== NOT EXECUTED 8003b88: f8 00 08 4f calli 8005cc4 <rtems_event_send> <== NOT EXECUTED
TERMIOS_TX_START_EVENT); if (sc != RTEMS_SUCCESSFUL)
8003b8c: 44 20 00 0d be r1,r0,8003bc0 <rtems_termios_dequeue_characters+0x60><== NOT EXECUTED
rtems_fatal_error_occurred (sc);
8003b90: f8 00 0b 99 calli 80069f4 <rtems_fatal_error_occurred> <== NOT EXECUTED
return 0; /* nothing to output in IRQ... */ } else if (tty->t_line == PPPDISC ) {
8003b94: 28 23 00 cc lw r3,(r1+204) <== NOT EXECUTED 8003b98: 34 02 00 05 mvi r2,5 <== NOT EXECUTED 8003b9c: 5c 62 00 07 bne r3,r2,8003bb8 <rtems_termios_dequeue_characters+0x58><== NOT EXECUTED
/* * call any line discipline start function */ if (rtems_termios_linesw[tty->t_line].l_start != NULL) {
8003ba0: 78 02 08 02 mvhi r2,0x802 <== NOT EXECUTED 8003ba4: 38 42 37 7c ori r2,r2,0x377c <== NOT EXECUTED 8003ba8: 28 42 00 b4 lw r2,(r2+180) <== NOT EXECUTED 8003bac: 44 40 00 05 be r2,r0,8003bc0 <rtems_termios_dequeue_characters+0x60><== NOT EXECUTED
rtems_termios_linesw[tty->t_line].l_start(tty);
8003bb0: d8 40 00 00 call r2 <== NOT EXECUTED 8003bb4: e0 00 00 03 bi 8003bc0 <rtems_termios_dequeue_characters+0x60><== NOT EXECUTED
} return 0; /* nothing to output in IRQ... */ } else { return rtems_termios_refill_transmitter(tty);
8003bb8: fb ff ff 66 calli 8003950 <rtems_termios_refill_transmitter><== NOT EXECUTED 8003bbc: e0 00 00 02 bi 8003bc4 <rtems_termios_dequeue_characters+0x64><== NOT EXECUTED 8003bc0: 34 01 00 00 mvi r1,0 <== NOT EXECUTED
} }
8003bc4: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8003bc8: 37 9c 00 04 addi sp,sp,4 <== NOT EXECUTED 8003bcc: c3 a0 00 00 ret <== NOT EXECUTED
08003bd0 <rtems_termios_enqueue_raw_characters>: * device receive interrupt handler. * Returns the number of characters dropped because of overflow. */ int rtems_termios_enqueue_raw_characters (void *ttyp, char *buf, int len) {
8003bd0: 37 9c ff b8 addi sp,sp,-72 <== NOT EXECUTED 8003bd4: 5b 8b 00 44 sw (sp+68),r11 <== NOT EXECUTED 8003bd8: 5b 8c 00 40 sw (sp+64),r12 <== NOT EXECUTED 8003bdc: 5b 8d 00 3c sw (sp+60),r13 <== NOT EXECUTED 8003be0: 5b 8e 00 38 sw (sp+56),r14 <== NOT EXECUTED 8003be4: 5b 8f 00 34 sw (sp+52),r15 <== NOT EXECUTED 8003be8: 5b 90 00 30 sw (sp+48),r16 <== NOT EXECUTED 8003bec: 5b 91 00 2c sw (sp+44),r17 <== NOT EXECUTED 8003bf0: 5b 92 00 28 sw (sp+40),r18 <== NOT EXECUTED 8003bf4: 5b 93 00 24 sw (sp+36),r19 <== NOT EXECUTED 8003bf8: 5b 94 00 20 sw (sp+32),r20 <== NOT EXECUTED 8003bfc: 5b 95 00 1c sw (sp+28),r21 <== NOT EXECUTED 8003c00: 5b 96 00 18 sw (sp+24),r22 <== NOT EXECUTED 8003c04: 5b 97 00 14 sw (sp+20),r23 <== NOT EXECUTED 8003c08: 5b 98 00 10 sw (sp+16),r24 <== NOT EXECUTED 8003c0c: 5b 99 00 0c sw (sp+12),r25 <== NOT EXECUTED 8003c10: 5b 9b 00 08 sw (sp+8),fp <== NOT EXECUTED 8003c14: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED 8003c18: b8 20 58 00 mv r11,r1 <== NOT EXECUTED
char c; int dropped = 0; bool flow_rcv = false; /* true, if flow control char received */ rtems_interrupt_level level; if (rtems_termios_linesw[tty->t_line].l_rint != NULL) {
8003c1c: 28 21 00 cc lw r1,(r1+204) <== NOT EXECUTED
* device receive interrupt handler. * Returns the number of characters dropped because of overflow. */ int rtems_termios_enqueue_raw_characters (void *ttyp, char *buf, int len) {
8003c20: b8 40 68 00 mv r13,r2 <== NOT EXECUTED
char c; int dropped = 0; bool flow_rcv = false; /* true, if flow control char received */ rtems_interrupt_level level; if (rtems_termios_linesw[tty->t_line].l_rint != NULL) {
8003c24: 78 0c 08 02 mvhi r12,0x802 <== NOT EXECUTED 8003c28: b4 21 08 00 add r1,r1,r1 <== NOT EXECUTED 8003c2c: 34 21 00 01 addi r1,r1,1 <== NOT EXECUTED 8003c30: 34 02 00 04 mvi r2,4 <== NOT EXECUTED 8003c34: 39 8c 37 7c ori r12,r12,0x377c <== NOT EXECUTED
* device receive interrupt handler. * Returns the number of characters dropped because of overflow. */ int rtems_termios_enqueue_raw_characters (void *ttyp, char *buf, int len) {
8003c38: b8 60 80 00 mv r16,r3 <== NOT EXECUTED
char c; int dropped = 0; bool flow_rcv = false; /* true, if flow control char received */ rtems_interrupt_level level; if (rtems_termios_linesw[tty->t_line].l_rint != NULL) {
8003c3c: fb ff f5 ef calli 80013f8 <__ashlsi3> <== NOT EXECUTED 8003c40: b5 81 08 00 add r1,r12,r1 <== NOT EXECUTED 8003c44: 28 2f 00 00 lw r15,(r1+0) <== NOT EXECUTED
while (len--) { c = *buf++; rtems_termios_linesw[tty->t_line].l_rint(c,tty);
8003c48: b9 80 70 00 mv r14,r12 <== NOT EXECUTED
/* * check to see if rcv wakeup callback was set */ if (( !tty->tty_rcvwakeup ) && ( tty->tty_rcv.sw_pfn != NULL )) { (*tty->tty_rcv.sw_pfn)(&tty->termios, tty->tty_rcv.sw_arg);
8003c4c: ba 00 60 00 mv r12,r16 <== NOT EXECUTED
char c; int dropped = 0; bool flow_rcv = false; /* true, if flow control char received */ rtems_interrupt_level level; if (rtems_termios_linesw[tty->t_line].l_rint != NULL) {
8003c50: 5d e0 00 19 bne r15,r0,8003cb4 <rtems_termios_enqueue_raw_characters+0xe4><== NOT EXECUTED
if ((tty->flow_ctrl & FL_OSTOP) || (tty->rawOutBufState == rob_idle)) { /* if tx is stopped due to XOFF or out of data */ /* call write function here */ tty->flow_ctrl |= FL_ISNTXOF; (*tty->device.write)(tty->minor,
8003c54: 35 61 00 4a addi r1,r11,74 <== NOT EXECUTED 8003c58: 5b 81 00 48 sw (sp+72),r1 <== NOT EXECUTED
/* * check to see if rcv wakeup callback was set */ if (( !tty->tty_rcvwakeup ) && ( tty->tty_rcv.sw_pfn != NULL )) { (*tty->tty_rcv.sw_pfn)(&tty->termios, tty->tty_rcv.sw_arg);
8003c5c: 35 7b 00 30 addi fp,r11,48 <== NOT EXECUTED 8003c60: b9 e0 60 00 mv r12,r15 <== NOT EXECUTED
flow_rcv = true; } } if (flow_rcv) { /* restart output according to FL_ORCVXOF flag */ if ((tty->flow_ctrl & (FL_ORCVXOF | FL_OSTOP)) == FL_OSTOP) {
8003c64: 34 19 00 20 mvi r25,32 <== NOT EXECUTED
/* disable interrupts */ rtems_interrupt_disable(level);
8003c68: 34 12 ff fe mvi r18,-2 <== NOT EXECUTED
tty->flow_ctrl &= ~FL_OSTOP;
8003c6c: 34 18 ff df mvi r24,-33 <== NOT EXECUTED
/* check for chars in output buffer (or rob_state?) */ if (tty->rawOutBufState != rob_idle) { /* if chars available, call write function... */ (*tty->device.write)(tty->minor,
8003c70: 34 17 00 01 mvi r23,1 <== NOT EXECUTED
% tty->rawInBuf.Size) > tty->highwater) && !(tty->flow_ctrl & FL_IREQXOF)) { /* incoming data stream should be stopped */ tty->flow_ctrl |= FL_IREQXOF; if ((tty->flow_ctrl & (FL_MDXOF | FL_ISNTXOF))
8003c74: 34 16 04 00 mvi r22,1024 <== NOT EXECUTED
(*tty->device.write)(tty->minor, (void *)&(tty->termios.c_cc[VSTOP]), 1); } } else if ((tty->flow_ctrl & (FL_MDRTS | FL_IRTSOFF))
8003c78: 34 15 01 00 mvi r21,256 <== NOT EXECUTED
flow_rcv = true; } else if (c == tty->termios.c_cc[VSTART]) { /* VSTART received */ /* restart output */ tty->flow_ctrl &= ~FL_ORCVXOF;
8003c7c: 34 14 ff ef mvi r20,-17 <== NOT EXECUTED 8003c80: e0 00 00 86 bi 8003e98 <rtems_termios_enqueue_raw_characters+0x2c8><== NOT EXECUTED
rtems_interrupt_level level; if (rtems_termios_linesw[tty->t_line].l_rint != NULL) { while (len--) { c = *buf++; rtems_termios_linesw[tty->t_line].l_rint(c,tty);
8003c84: 29 63 00 cc lw r3,(r11+204) <== NOT EXECUTED
bool flow_rcv = false; /* true, if flow control char received */ rtems_interrupt_level level; if (rtems_termios_linesw[tty->t_line].l_rint != NULL) { while (len--) { c = *buf++;
8003c88: 41 af 00 00 lbu r15,(r13+0) <== NOT EXECUTED
rtems_termios_linesw[tty->t_line].l_rint(c,tty);
8003c8c: 35 8c ff ff addi r12,r12,-1 <== NOT EXECUTED 8003c90: b4 63 18 00 add r3,r3,r3 <== NOT EXECUTED 8003c94: 34 61 00 01 addi r1,r3,1 <== NOT EXECUTED 8003c98: fb ff f5 d8 calli 80013f8 <__ashlsi3> <== NOT EXECUTED 8003c9c: b5 c1 10 00 add r2,r14,r1 <== NOT EXECUTED 8003ca0: 28 43 00 00 lw r3,(r2+0) <== NOT EXECUTED 8003ca4: b9 e0 08 00 mv r1,r15 <== NOT EXECUTED 8003ca8: b9 60 10 00 mv r2,r11 <== NOT EXECUTED 8003cac: d8 60 00 00 call r3 <== NOT EXECUTED
bool flow_rcv = false; /* true, if flow control char received */ rtems_interrupt_level level; if (rtems_termios_linesw[tty->t_line].l_rint != NULL) { while (len--) { c = *buf++;
8003cb0: 35 ad 00 01 addi r13,r13,1 <== NOT EXECUTED
rtems_termios_linesw[tty->t_line].l_rint(c,tty);
8003cb4: 34 02 00 04 mvi r2,4 <== NOT EXECUTED
int dropped = 0; bool flow_rcv = false; /* true, if flow control char received */ rtems_interrupt_level level; if (rtems_termios_linesw[tty->t_line].l_rint != NULL) { while (len--) {
8003cb8: 5d 80 ff f3 bne r12,r0,8003c84 <rtems_termios_enqueue_raw_characters+0xb4><== NOT EXECUTED
} /* * check to see if rcv wakeup callback was set */ if (( !tty->tty_rcvwakeup ) && ( tty->tty_rcv.sw_pfn != NULL )) {
8003cbc: 29 61 00 e4 lw r1,(r11+228) <== NOT EXECUTED 8003cc0: 5c 2c 00 7d bne r1,r12,8003eb4 <rtems_termios_enqueue_raw_characters+0x2e4><== NOT EXECUTED 8003cc4: 29 63 00 dc lw r3,(r11+220) <== NOT EXECUTED 8003cc8: 44 60 00 7b be r3,r0,8003eb4 <rtems_termios_enqueue_raw_characters+0x2e4><== NOT EXECUTED
(*tty->tty_rcv.sw_pfn)(&tty->termios, tty->tty_rcv.sw_arg);
8003ccc: 29 62 00 e0 lw r2,(r11+224) <== NOT EXECUTED 8003cd0: 35 61 00 30 addi r1,r11,48 <== NOT EXECUTED 8003cd4: d8 60 00 00 call r3 <== NOT EXECUTED
tty->tty_rcvwakeup = 1;
8003cd8: 34 01 00 01 mvi r1,1 <== NOT EXECUTED 8003cdc: 59 61 00 e4 sw (r11+228),r1 <== NOT EXECUTED 8003ce0: e0 00 00 76 bi 8003eb8 <rtems_termios_enqueue_raw_characters+0x2e8><== NOT EXECUTED
while (len--) { c = *buf++; /* FIXME: implement IXANY: any character restarts output */ /* if incoming XON/XOFF controls outgoing stream: */ if (tty->flow_ctrl & FL_MDXON) {
8003ce4: 29 61 00 b8 lw r1,(r11+184) <== NOT EXECUTED
} return 0; } while (len--) { c = *buf++;
8003ce8: 41 b1 00 00 lbu r17,(r13+0) <== NOT EXECUTED
/* FIXME: implement IXANY: any character restarts output */ /* if incoming XON/XOFF controls outgoing stream: */ if (tty->flow_ctrl & FL_MDXON) {
8003cec: 20 21 02 00 andi r1,r1,0x200 <== NOT EXECUTED 8003cf0: 44 20 00 11 be r1,r0,8003d34 <rtems_termios_enqueue_raw_characters+0x164><== NOT EXECUTED
/* if received char is V_STOP and V_START (both are equal value) */ if (c == tty->termios.c_cc[VSTOP]) {
8003cf4: 41 64 00 4a lbu r4,(r11+74) <== NOT EXECUTED 8003cf8: 41 63 00 49 lbu r3,(r11+73) <== NOT EXECUTED 8003cfc: 5c 91 00 0a bne r4,r17,8003d24 <rtems_termios_enqueue_raw_characters+0x154><== NOT EXECUTED
if (c == tty->termios.c_cc[VSTART]) {
8003d00: 5c 64 00 04 bne r3,r4,8003d10 <rtems_termios_enqueue_raw_characters+0x140><== NOT EXECUTED
/* received VSTOP and VSTART==VSTOP? */ /* then toggle "stop output" status */ tty->flow_ctrl = tty->flow_ctrl ^ FL_ORCVXOF;
8003d04: 29 61 00 b8 lw r1,(r11+184) <== NOT EXECUTED 8003d08: 18 21 00 10 xori r1,r1,0x10 <== NOT EXECUTED 8003d0c: e0 00 00 03 bi 8003d18 <rtems_termios_enqueue_raw_characters+0x148><== NOT EXECUTED
} else { /* VSTOP received (other code than VSTART) */ /* stop output */ tty->flow_ctrl |= FL_ORCVXOF;
8003d10: 29 61 00 b8 lw r1,(r11+184) <== NOT EXECUTED 8003d14: 38 21 00 10 ori r1,r1,0x10 <== NOT EXECUTED 8003d18: 59 61 00 b8 sw (r11+184),r1 <== NOT EXECUTED
} } } tty->rawInBufDropped += dropped; rtems_semaphore_release (tty->rawInBuf.Semaphore); return dropped;
8003d1c: 34 0f 00 01 mvi r15,1 <== NOT EXECUTED 8003d20: e0 00 00 06 bi 8003d38 <rtems_termios_enqueue_raw_characters+0x168><== NOT EXECUTED
/* stop output */ tty->flow_ctrl |= FL_ORCVXOF; } flow_rcv = true; } else if (c == tty->termios.c_cc[VSTART]) {
8003d24: 5c 71 00 04 bne r3,r17,8003d34 <rtems_termios_enqueue_raw_characters+0x164><== NOT EXECUTED
/* VSTART received */ /* restart output */ tty->flow_ctrl &= ~FL_ORCVXOF;
8003d28: 29 61 00 b8 lw r1,(r11+184) <== NOT EXECUTED 8003d2c: a0 34 08 00 and r1,r1,r20 <== NOT EXECUTED 8003d30: e3 ff ff fa bi 8003d18 <rtems_termios_enqueue_raw_characters+0x148><== NOT EXECUTED
flow_rcv = true; } } if (flow_rcv) {
8003d34: 45 e0 00 15 be r15,r0,8003d88 <rtems_termios_enqueue_raw_characters+0x1b8><== NOT EXECUTED
/* restart output according to FL_ORCVXOF flag */ if ((tty->flow_ctrl & (FL_ORCVXOF | FL_OSTOP)) == FL_OSTOP) {
8003d38: 29 61 00 b8 lw r1,(r11+184) <== NOT EXECUTED 8003d3c: 20 21 00 30 andi r1,r1,0x30 <== NOT EXECUTED 8003d40: 5c 39 00 54 bne r1,r25,8003e90 <rtems_termios_enqueue_raw_characters+0x2c0><== NOT EXECUTED
/* disable interrupts */ rtems_interrupt_disable(level);
8003d44: 90 00 70 00 rcsr r14,IE <== NOT EXECUTED 8003d48: a1 d2 08 00 and r1,r14,r18 <== NOT EXECUTED 8003d4c: d0 01 00 00 wcsr IE,r1 <== NOT EXECUTED
tty->flow_ctrl &= ~FL_OSTOP;
8003d50: 29 61 00 b8 lw r1,(r11+184) <== NOT EXECUTED
/* check for chars in output buffer (or rob_state?) */ if (tty->rawOutBufState != rob_idle) {
8003d54: 29 62 00 94 lw r2,(r11+148) <== NOT EXECUTED
if (flow_rcv) { /* restart output according to FL_ORCVXOF flag */ if ((tty->flow_ctrl & (FL_ORCVXOF | FL_OSTOP)) == FL_OSTOP) { /* disable interrupts */ rtems_interrupt_disable(level); tty->flow_ctrl &= ~FL_OSTOP;
8003d58: a0 38 08 00 and r1,r1,r24 <== NOT EXECUTED 8003d5c: 59 61 00 b8 sw (r11+184),r1 <== NOT EXECUTED
/* check for chars in output buffer (or rob_state?) */ if (tty->rawOutBufState != rob_idle) {
8003d60: 44 40 00 08 be r2,r0,8003d80 <rtems_termios_enqueue_raw_characters+0x1b0><== NOT EXECUTED
/* if chars available, call write function... */ (*tty->device.write)(tty->minor, &tty->rawOutBuf.theBuf[tty->rawOutBuf.Tail], 1);
8003d64: 29 63 00 84 lw r3,(r11+132) <== NOT EXECUTED
rtems_interrupt_disable(level); tty->flow_ctrl &= ~FL_OSTOP; /* check for chars in output buffer (or rob_state?) */ if (tty->rawOutBufState != rob_idle) { /* if chars available, call write function... */ (*tty->device.write)(tty->minor,
8003d68: 29 62 00 7c lw r2,(r11+124) <== NOT EXECUTED 8003d6c: 29 64 00 a4 lw r4,(r11+164) <== NOT EXECUTED 8003d70: 29 61 00 10 lw r1,(r11+16) <== NOT EXECUTED 8003d74: b4 43 10 00 add r2,r2,r3 <== NOT EXECUTED 8003d78: 34 03 00 01 mvi r3,1 <== NOT EXECUTED 8003d7c: d8 80 00 00 call r4 <== NOT EXECUTED
&tty->rawOutBuf.theBuf[tty->rawOutBuf.Tail], 1); } /* reenable interrupts */ rtems_interrupt_enable(level);
8003d80: d0 0e 00 00 wcsr IE,r14 <== NOT EXECUTED 8003d84: e0 00 00 43 bi 8003e90 <rtems_termios_enqueue_raw_characters+0x2c0><== NOT EXECUTED
} } else { newTail = (tty->rawInBuf.Tail + 1) % tty->rawInBuf.Size;
8003d88: 29 63 00 60 lw r3,(r11+96) <== NOT EXECUTED 8003d8c: 29 62 00 64 lw r2,(r11+100) <== NOT EXECUTED 8003d90: 34 61 00 01 addi r1,r3,1 <== NOT EXECUTED 8003d94: f8 00 6e 74 calli 801f764 <__umodsi3> <== NOT EXECUTED 8003d98: b8 20 70 00 mv r14,r1 <== NOT EXECUTED
/* if chars_in_buffer > highwater */ rtems_interrupt_disable(level);
8003d9c: 90 00 98 00 rcsr r19,IE <== NOT EXECUTED 8003da0: a2 72 08 00 and r1,r19,r18 <== NOT EXECUTED 8003da4: d0 01 00 00 wcsr IE,r1 <== NOT EXECUTED
if ((((newTail - tty->rawInBuf.Head + tty->rawInBuf.Size)
8003da8: 29 61 00 5c lw r1,(r11+92) <== NOT EXECUTED 8003dac: 29 63 00 64 lw r3,(r11+100) <== NOT EXECUTED 8003db0: 29 62 00 64 lw r2,(r11+100) <== NOT EXECUTED 8003db4: c8 61 18 00 sub r3,r3,r1 <== NOT EXECUTED 8003db8: b4 6e 08 00 add r1,r3,r14 <== NOT EXECUTED 8003dbc: f8 00 6e 6a calli 801f764 <__umodsi3> <== NOT EXECUTED
% tty->rawInBuf.Size) > tty->highwater) &&
8003dc0: 29 62 00 c0 lw r2,(r11+192) <== NOT EXECUTED 8003dc4: 50 41 00 22 bgeu r2,r1,8003e4c <rtems_termios_enqueue_raw_characters+0x27c><== NOT EXECUTED
!(tty->flow_ctrl & FL_IREQXOF)) {
8003dc8: 29 61 00 b8 lw r1,(r11+184) <== NOT EXECUTED
} else { newTail = (tty->rawInBuf.Tail + 1) % tty->rawInBuf.Size; /* if chars_in_buffer > highwater */ rtems_interrupt_disable(level); if ((((newTail - tty->rawInBuf.Head + tty->rawInBuf.Size)
8003dcc: 20 21 00 01 andi r1,r1,0x1 <== NOT EXECUTED 8003dd0: 5c 20 00 1f bne r1,r0,8003e4c <rtems_termios_enqueue_raw_characters+0x27c><== NOT EXECUTED
% tty->rawInBuf.Size) > tty->highwater) && !(tty->flow_ctrl & FL_IREQXOF)) { /* incoming data stream should be stopped */ tty->flow_ctrl |= FL_IREQXOF;
8003dd4: 29 61 00 b8 lw r1,(r11+184) <== NOT EXECUTED 8003dd8: 38 21 00 01 ori r1,r1,0x1 <== NOT EXECUTED 8003ddc: 59 61 00 b8 sw (r11+184),r1 <== NOT EXECUTED
if ((tty->flow_ctrl & (FL_MDXOF | FL_ISNTXOF))
8003de0: 29 61 00 b8 lw r1,(r11+184) <== NOT EXECUTED 8003de4: 20 21 04 02 andi r1,r1,0x402 <== NOT EXECUTED 8003de8: 5c 36 00 0f bne r1,r22,8003e24 <rtems_termios_enqueue_raw_characters+0x254><== NOT EXECUTED
== (FL_MDXOF ) ){ if ((tty->flow_ctrl & FL_OSTOP) ||
8003dec: 29 63 00 b8 lw r3,(r11+184) <== NOT EXECUTED 8003df0: 20 63 00 20 andi r3,r3,0x20 <== NOT EXECUTED 8003df4: 5c 60 00 03 bne r3,r0,8003e00 <rtems_termios_enqueue_raw_characters+0x230><== NOT EXECUTED
(tty->rawOutBufState == rob_idle)) {
8003df8: 29 61 00 94 lw r1,(r11+148) <== NOT EXECUTED 8003dfc: 5c 23 00 14 bne r1,r3,8003e4c <rtems_termios_enqueue_raw_characters+0x27c><== NOT EXECUTED
/* if tx is stopped due to XOFF or out of data */ /* call write function here */ tty->flow_ctrl |= FL_ISNTXOF;
8003e00: 29 62 00 b8 lw r2,(r11+184) <== NOT EXECUTED
(*tty->device.write)(tty->minor,
8003e04: 29 64 00 a4 lw r4,(r11+164) <== NOT EXECUTED 8003e08: 29 61 00 10 lw r1,(r11+16) <== NOT EXECUTED
== (FL_MDXOF ) ){ if ((tty->flow_ctrl & FL_OSTOP) || (tty->rawOutBufState == rob_idle)) { /* if tx is stopped due to XOFF or out of data */ /* call write function here */ tty->flow_ctrl |= FL_ISNTXOF;
8003e0c: 38 42 00 02 ori r2,r2,0x2 <== NOT EXECUTED 8003e10: 59 62 00 b8 sw (r11+184),r2 <== NOT EXECUTED
(*tty->device.write)(tty->minor,
8003e14: 2b 82 00 48 lw r2,(sp+72) <== NOT EXECUTED 8003e18: 34 03 00 01 mvi r3,1 <== NOT EXECUTED 8003e1c: d8 80 00 00 call r4 <== NOT EXECUTED 8003e20: e0 00 00 0b bi 8003e4c <rtems_termios_enqueue_raw_characters+0x27c><== NOT EXECUTED
(void *)&(tty->termios.c_cc[VSTOP]), 1); } } else if ((tty->flow_ctrl & (FL_MDRTS | FL_IRTSOFF))
8003e24: 29 61 00 b8 lw r1,(r11+184) <== NOT EXECUTED 8003e28: 20 21 01 04 andi r1,r1,0x104 <== NOT EXECUTED 8003e2c: 5c 35 00 08 bne r1,r21,8003e4c <rtems_termios_enqueue_raw_characters+0x27c><== NOT EXECUTED
== (FL_MDRTS ) ) { tty->flow_ctrl |= FL_IRTSOFF;
8003e30: 29 61 00 b8 lw r1,(r11+184) <== NOT EXECUTED
/* deactivate RTS line */ if (tty->device.stopRemoteTx != NULL) {
8003e34: 29 63 00 ac lw r3,(r11+172) <== NOT EXECUTED
1); } } else if ((tty->flow_ctrl & (FL_MDRTS | FL_IRTSOFF)) == (FL_MDRTS ) ) { tty->flow_ctrl |= FL_IRTSOFF;
8003e38: 38 21 00 04 ori r1,r1,0x4 <== NOT EXECUTED 8003e3c: 59 61 00 b8 sw (r11+184),r1 <== NOT EXECUTED
/* deactivate RTS line */ if (tty->device.stopRemoteTx != NULL) {
8003e40: 44 60 00 03 be r3,r0,8003e4c <rtems_termios_enqueue_raw_characters+0x27c><== NOT EXECUTED
tty->device.stopRemoteTx(tty->minor);
8003e44: 29 61 00 10 lw r1,(r11+16) <== NOT EXECUTED 8003e48: d8 60 00 00 call r3 <== NOT EXECUTED
} } } /* reenable interrupts */ rtems_interrupt_enable(level);
8003e4c: d0 13 00 00 wcsr IE,r19 <== NOT EXECUTED
if (newTail == tty->rawInBuf.Head) {
8003e50: 29 61 00 5c lw r1,(r11+92) <== NOT EXECUTED 8003e54: 5d c1 00 03 bne r14,r1,8003e60 <rtems_termios_enqueue_raw_characters+0x290><== NOT EXECUTED
dropped++;
8003e58: 35 8c 00 01 addi r12,r12,1 <== NOT EXECUTED 8003e5c: e0 00 00 0d bi 8003e90 <rtems_termios_enqueue_raw_characters+0x2c0><== NOT EXECUTED
} else { tty->rawInBuf.theBuf[newTail] = c;
8003e60: 29 61 00 58 lw r1,(r11+88) <== NOT EXECUTED 8003e64: b4 2e 08 00 add r1,r1,r14 <== NOT EXECUTED 8003e68: 30 31 00 00 sb (r1+0),r17 <== NOT EXECUTED
tty->rawInBuf.Tail = newTail; /* * check to see if rcv wakeup callback was set */ if (( !tty->tty_rcvwakeup ) && ( tty->tty_rcv.sw_pfn != NULL )) {
8003e6c: 29 64 00 e4 lw r4,(r11+228) <== NOT EXECUTED
if (newTail == tty->rawInBuf.Head) { dropped++; } else { tty->rawInBuf.theBuf[newTail] = c; tty->rawInBuf.Tail = newTail;
8003e70: 59 6e 00 60 sw (r11+96),r14 <== NOT EXECUTED
/* * check to see if rcv wakeup callback was set */ if (( !tty->tty_rcvwakeup ) && ( tty->tty_rcv.sw_pfn != NULL )) {
8003e74: 5c 80 00 07 bne r4,r0,8003e90 <rtems_termios_enqueue_raw_characters+0x2c0><== NOT EXECUTED 8003e78: 29 63 00 dc lw r3,(r11+220) <== NOT EXECUTED 8003e7c: 44 64 00 05 be r3,r4,8003e90 <rtems_termios_enqueue_raw_characters+0x2c0><== NOT EXECUTED
(*tty->tty_rcv.sw_pfn)(&tty->termios, tty->tty_rcv.sw_arg);
8003e80: 29 62 00 e0 lw r2,(r11+224) <== NOT EXECUTED 8003e84: bb 60 08 00 mv r1,fp <== NOT EXECUTED 8003e88: d8 60 00 00 call r3 <== NOT EXECUTED
tty->tty_rcvwakeup = 1;
8003e8c: 59 77 00 e4 sw (r11+228),r23 <== NOT EXECUTED
} return 0; } while (len--) { c = *buf++;
8003e90: 35 ad 00 01 addi r13,r13,1 <== NOT EXECUTED 8003e94: 36 10 ff ff addi r16,r16,-1 <== NOT EXECUTED
tty->tty_rcvwakeup = 1; } return 0; } while (len--) {
8003e98: 5e 00 ff 93 bne r16,r0,8003ce4 <rtems_termios_enqueue_raw_characters+0x114><== NOT EXECUTED
tty->tty_rcvwakeup = 1; } } } } tty->rawInBufDropped += dropped;
8003e9c: 29 62 00 78 lw r2,(r11+120) <== NOT EXECUTED
rtems_semaphore_release (tty->rawInBuf.Semaphore);
8003ea0: 29 61 00 68 lw r1,(r11+104) <== NOT EXECUTED
tty->tty_rcvwakeup = 1; } } } } tty->rawInBufDropped += dropped;
8003ea4: b4 4c 10 00 add r2,r2,r12 <== NOT EXECUTED 8003ea8: 59 62 00 78 sw (r11+120),r2 <== NOT EXECUTED
rtems_semaphore_release (tty->rawInBuf.Semaphore);
8003eac: f8 00 09 2a calli 8006354 <rtems_semaphore_release> <== NOT EXECUTED
return dropped;
8003eb0: e0 00 00 02 bi 8003eb8 <rtems_termios_enqueue_raw_characters+0x2e8><== NOT EXECUTED 8003eb4: 34 0c 00 00 mvi r12,0 <== NOT EXECUTED
}
8003eb8: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 8003ebc: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8003ec0: 2b 8b 00 44 lw r11,(sp+68) <== NOT EXECUTED 8003ec4: 2b 8c 00 40 lw r12,(sp+64) <== NOT EXECUTED 8003ec8: 2b 8d 00 3c lw r13,(sp+60) <== NOT EXECUTED 8003ecc: 2b 8e 00 38 lw r14,(sp+56) <== NOT EXECUTED 8003ed0: 2b 8f 00 34 lw r15,(sp+52) <== NOT EXECUTED 8003ed4: 2b 90 00 30 lw r16,(sp+48) <== NOT EXECUTED 8003ed8: 2b 91 00 2c lw r17,(sp+44) <== NOT EXECUTED 8003edc: 2b 92 00 28 lw r18,(sp+40) <== NOT EXECUTED 8003ee0: 2b 93 00 24 lw r19,(sp+36) <== NOT EXECUTED 8003ee4: 2b 94 00 20 lw r20,(sp+32) <== NOT EXECUTED 8003ee8: 2b 95 00 1c lw r21,(sp+28) <== NOT EXECUTED 8003eec: 2b 96 00 18 lw r22,(sp+24) <== NOT EXECUTED 8003ef0: 2b 97 00 14 lw r23,(sp+20) <== NOT EXECUTED 8003ef4: 2b 98 00 10 lw r24,(sp+16) <== NOT EXECUTED 8003ef8: 2b 99 00 0c lw r25,(sp+12) <== NOT EXECUTED 8003efc: 2b 9b 00 08 lw fp,(sp+8) <== NOT EXECUTED 8003f00: 37 9c 00 48 addi sp,sp,72 <== NOT EXECUTED 8003f04: c3 a0 00 00 ret <== NOT EXECUTED
08003794 <rtems_termios_initialize>: struct rtems_termios_tty *rtems_termios_ttyTail; rtems_id rtems_termios_ttyMutex; void rtems_termios_initialize (void) {
8003794: 37 9c ff f8 addi sp,sp,-8 8003798: 5b 8b 00 08 sw (sp+8),r11 800379c: 5b 9d 00 04 sw (sp+4),ra
rtems_status_code sc; /* * Create the mutex semaphore for the tty list */ if (!rtems_termios_ttyMutex) {
80037a0: 78 05 08 02 mvhi r5,0x802 80037a4: 38 a5 39 4c ori r5,r5,0x394c 80037a8: 28 ab 00 00 lw r11,(r5+0)
80037ac: 5d 60 00 09 bne r11,r0,80037d0 <rtems_termios_initialize+0x3c><== NEVER TAKEN
sc = rtems_semaphore_create (
80037b0: 78 01 54 52 mvhi r1,0x5452 80037b4: 38 21 6d 69 ori r1,r1,0x6d69 80037b8: 34 02 00 01 mvi r2,1 80037bc: 34 03 00 54 mvi r3,84 80037c0: b9 60 20 00 mv r4,r11 80037c4: f8 00 09 e6 calli 8005f5c <rtems_semaphore_create>
rtems_build_name ('T', 'R', 'm', 'i'), 1, RTEMS_BINARY_SEMAPHORE | RTEMS_INHERIT_PRIORITY | RTEMS_PRIORITY, RTEMS_NO_PRIORITY, &rtems_termios_ttyMutex); if (sc != RTEMS_SUCCESSFUL)
80037c8: 44 2b 00 02 be r1,r11,80037d0 <rtems_termios_initialize+0x3c><== ALWAYS TAKEN
rtems_fatal_error_occurred (sc);
80037cc: f8 00 0c 8a calli 80069f4 <rtems_fatal_error_occurred> <== NOT EXECUTED
} }
80037d0: 2b 9d 00 04 lw ra,(sp+4) 80037d4: 2b 8b 00 08 lw r11,(sp+8) 80037d8: 37 9c 00 08 addi sp,sp,8 80037dc: c3 a0 00 00 ret
08004bc0 <rtems_termios_ioctl>: } } rtems_status_code rtems_termios_ioctl (void *arg) {
8004bc0: 37 9c ff e8 addi sp,sp,-24 8004bc4: 5b 8b 00 18 sw (sp+24),r11 8004bc8: 5b 8c 00 14 sw (sp+20),r12 8004bcc: 5b 8d 00 10 sw (sp+16),r13 8004bd0: 5b 8e 00 0c sw (sp+12),r14 8004bd4: 5b 8f 00 08 sw (sp+8),r15 8004bd8: 5b 9d 00 04 sw (sp+4),ra 8004bdc: b8 20 60 00 mv r12,r1
rtems_libio_ioctl_args_t *args = arg; struct rtems_termios_tty *tty = args->iop->data1;
8004be0: 28 21 00 00 lw r1,(r1+0)
struct ttywakeup *wakeup = (struct ttywakeup *)args->buffer; rtems_status_code sc; args->ioctl_return = 0;
8004be4: 34 02 00 00 mvi r2,0 8004be8: 59 82 00 0c sw (r12+12),r2
rtems_status_code rtems_termios_ioctl (void *arg) { rtems_libio_ioctl_args_t *args = arg; struct rtems_termios_tty *tty = args->iop->data1;
8004bec: 28 2b 00 38 lw r11,(r1+56)
struct ttywakeup *wakeup = (struct ttywakeup *)args->buffer; rtems_status_code sc; args->ioctl_return = 0; sc = rtems_semaphore_obtain (tty->osem, RTEMS_WAIT, RTEMS_NO_TIMEOUT);
8004bf0: b8 40 18 00 mv r3,r2
rtems_status_code rtems_termios_ioctl (void *arg) { rtems_libio_ioctl_args_t *args = arg; struct rtems_termios_tty *tty = args->iop->data1; struct ttywakeup *wakeup = (struct ttywakeup *)args->buffer;
8004bf4: 29 8e 00 08 lw r14,(r12+8)
rtems_status_code sc; args->ioctl_return = 0; sc = rtems_semaphore_obtain (tty->osem, RTEMS_WAIT, RTEMS_NO_TIMEOUT);
8004bf8: 29 61 00 18 lw r1,(r11+24) 8004bfc: f8 00 05 86 calli 8006214 <rtems_semaphore_obtain> 8004c00: b8 20 68 00 mv r13,r1
if (sc != RTEMS_SUCCESSFUL) {
8004c04: 5c 20 00 e0 bne r1,r0,8004f84 <rtems_termios_ioctl+0x3c4> <== NEVER TAKEN
args->ioctl_return = sc; return sc; } switch (args->command) {
8004c08: 29 82 00 04 lw r2,(r12+4) 8004c0c: 34 01 00 04 mvi r1,4
8004c10: 44 41 00 ab be r2,r1,8004ebc <rtems_termios_ioctl+0x2fc> <== NEVER TAKEN 8004c14: 54 41 00 07 bgu r2,r1,8004c30 <rtems_termios_ioctl+0x70> <== NEVER TAKEN
8004c18: 34 01 00 02 mvi r1,2
8004c1c: 44 41 00 24 be r2,r1,8004cac <rtems_termios_ioctl+0xec>
8004c20: 54 41 00 9f bgu r2,r1,8004e9c <rtems_termios_ioctl+0x2dc> <== NEVER TAKEN
8004c24: 34 01 00 01 mvi r1,1
8004c28: 5c 41 00 0f bne r2,r1,8004c64 <rtems_termios_ioctl+0xa4> <== NEVER TAKEN
8004c2c: e0 00 00 1b bi 8004c98 <rtems_termios_ioctl+0xd8>
8004c30: 78 01 40 04 mvhi r1,0x4004 <== NOT EXECUTED 8004c34: 38 21 66 7f ori r1,r1,0x667f <== NOT EXECUTED 8004c38: 44 41 00 c5 be r2,r1,8004f4c <rtems_termios_ioctl+0x38c> <== NOT EXECUTED 8004c3c: 54 41 00 04 bgu r2,r1,8004c4c <rtems_termios_ioctl+0x8c> <== NOT EXECUTED 8004c40: 34 01 00 05 mvi r1,5 <== NOT EXECUTED 8004c44: 5c 41 00 08 bne r2,r1,8004c64 <rtems_termios_ioctl+0xa4> <== NOT EXECUTED 8004c48: e0 00 00 98 bi 8004ea8 <rtems_termios_ioctl+0x2e8> <== NOT EXECUTED 8004c4c: 78 01 40 04 mvhi r1,0x4004 <== NOT EXECUTED 8004c50: 38 21 74 1a ori r1,r1,0x741a <== NOT EXECUTED 8004c54: 44 41 00 ba be r2,r1,8004f3c <rtems_termios_ioctl+0x37c> <== NOT EXECUTED 8004c58: 78 01 80 04 mvhi r1,0x8004 <== NOT EXECUTED 8004c5c: 38 21 74 1b ori r1,r1,0x741b <== NOT EXECUTED 8004c60: 44 41 00 9c be r2,r1,8004ed0 <rtems_termios_ioctl+0x310> <== NOT EXECUTED
default: if (rtems_termios_linesw[tty->t_line].l_ioctl != NULL) {
8004c64: 29 61 00 cc lw r1,(r11+204) <== NOT EXECUTED 8004c68: 78 0d 08 02 mvhi r13,0x802 <== NOT EXECUTED 8004c6c: 34 02 00 05 mvi r2,5 <== NOT EXECUTED 8004c70: 39 ad 37 7c ori r13,r13,0x377c <== NOT EXECUTED 8004c74: fb ff f1 e1 calli 80013f8 <__ashlsi3> <== NOT EXECUTED 8004c78: b5 a1 08 00 add r1,r13,r1 <== NOT EXECUTED 8004c7c: 28 23 00 18 lw r3,(r1+24) <== NOT EXECUTED 8004c80: 34 0d 00 0a mvi r13,10 <== NOT EXECUTED 8004c84: 44 60 00 be be r3,r0,8004f7c <rtems_termios_ioctl+0x3bc> <== NOT EXECUTED
sc = rtems_termios_linesw[tty->t_line].l_ioctl(tty,args);
8004c88: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8004c8c: b9 80 10 00 mv r2,r12 <== NOT EXECUTED 8004c90: d8 60 00 00 call r3 <== NOT EXECUTED 8004c94: e0 00 00 a8 bi 8004f34 <rtems_termios_ioctl+0x374> <== NOT EXECUTED
sc = RTEMS_INVALID_NUMBER; } break; case RTEMS_IO_GET_ATTRIBUTES: *(struct termios *)args->buffer = tty->termios;
8004c98: 29 81 00 08 lw r1,(r12+8) 8004c9c: 35 62 00 30 addi r2,r11,48 8004ca0: 34 03 00 24 mvi r3,36 8004ca4: f8 00 2b 3c calli 800f994 <memcpy>
break;
8004ca8: e0 00 00 b5 bi 8004f7c <rtems_termios_ioctl+0x3bc>
case RTEMS_IO_SET_ATTRIBUTES: tty->termios = *(struct termios *)args->buffer;
8004cac: 29 82 00 08 lw r2,(r12+8) 8004cb0: 35 61 00 30 addi r1,r11,48 8004cb4: 34 03 00 24 mvi r3,36 8004cb8: f8 00 2b 37 calli 800f994 <memcpy>
/* * check for flow control options to be switched off */ /* check for outgoing XON/XOFF flow control switched off */ if (( tty->flow_ctrl & FL_MDXON) &&
8004cbc: 29 61 00 b8 lw r1,(r11+184) 8004cc0: 20 21 02 00 andi r1,r1,0x200
8004cc4: 44 20 00 1d be r1,r0,8004d38 <rtems_termios_ioctl+0x178>
8004cc8: 29 61 00 30 lw r1,(r11+48) 8004ccc: 20 21 04 00 andi r1,r1,0x400
8004cd0: 5c 20 00 1a bne r1,r0,8004d38 <rtems_termios_ioctl+0x178> <== ALWAYS TAKEN
!(tty->termios.c_iflag & IXON)) { /* clear related flags in flow_ctrl */ tty->flow_ctrl &= ~(FL_MDXON | FL_ORCVXOF);
8004cd4: 29 62 00 b8 lw r2,(r11+184) <== NOT EXECUTED 8004cd8: 34 01 fd ef mvi r1,-529 <== NOT EXECUTED 8004cdc: a0 41 08 00 and r1,r2,r1 <== NOT EXECUTED 8004ce0: 59 61 00 b8 sw (r11+184),r1 <== NOT EXECUTED
/* has output been stopped due to received XOFF? */ if (tty->flow_ctrl & FL_OSTOP) {
8004ce4: 29 61 00 b8 lw r1,(r11+184) <== NOT EXECUTED 8004ce8: 20 21 00 20 andi r1,r1,0x20 <== NOT EXECUTED 8004cec: 44 20 00 13 be r1,r0,8004d38 <rtems_termios_ioctl+0x178> <== NOT EXECUTED
/* disable interrupts */ rtems_interrupt_disable(level);
8004cf0: 90 00 70 00 rcsr r14,IE <== NOT EXECUTED 8004cf4: 34 01 ff fe mvi r1,-2 <== NOT EXECUTED 8004cf8: a1 c1 08 00 and r1,r14,r1 <== NOT EXECUTED 8004cfc: d0 01 00 00 wcsr IE,r1 <== NOT EXECUTED
tty->flow_ctrl &= ~FL_OSTOP;
8004d00: 29 62 00 b8 lw r2,(r11+184) <== NOT EXECUTED 8004d04: 34 01 ff df mvi r1,-33 <== NOT EXECUTED
/* check for chars in output buffer (or rob_state?) */ if (tty->rawOutBufState != rob_idle) {
8004d08: 29 63 00 94 lw r3,(r11+148) <== NOT EXECUTED
/* has output been stopped due to received XOFF? */ if (tty->flow_ctrl & FL_OSTOP) { /* disable interrupts */ rtems_interrupt_disable(level); tty->flow_ctrl &= ~FL_OSTOP;
8004d0c: a0 41 08 00 and r1,r2,r1 <== NOT EXECUTED 8004d10: 59 61 00 b8 sw (r11+184),r1 <== NOT EXECUTED
/* check for chars in output buffer (or rob_state?) */ if (tty->rawOutBufState != rob_idle) {
8004d14: 44 60 00 08 be r3,r0,8004d34 <rtems_termios_ioctl+0x174> <== NOT EXECUTED
/* if chars available, call write function... */ (*tty->device.write)(tty->minor,
8004d18: 29 63 00 7c lw r3,(r11+124) <== NOT EXECUTED
&tty->rawOutBuf.theBuf[tty->rawOutBuf.Tail],1);
8004d1c: 29 62 00 84 lw r2,(r11+132) <== NOT EXECUTED
rtems_interrupt_disable(level); tty->flow_ctrl &= ~FL_OSTOP; /* check for chars in output buffer (or rob_state?) */ if (tty->rawOutBufState != rob_idle) { /* if chars available, call write function... */ (*tty->device.write)(tty->minor,
8004d20: 29 64 00 a4 lw r4,(r11+164) <== NOT EXECUTED 8004d24: 29 61 00 10 lw r1,(r11+16) <== NOT EXECUTED 8004d28: b4 62 10 00 add r2,r3,r2 <== NOT EXECUTED 8004d2c: 34 03 00 01 mvi r3,1 <== NOT EXECUTED 8004d30: d8 80 00 00 call r4 <== NOT EXECUTED
&tty->rawOutBuf.theBuf[tty->rawOutBuf.Tail],1); } /* reenable interrupts */ rtems_interrupt_enable(level);
8004d34: d0 0e 00 00 wcsr IE,r14 <== NOT EXECUTED
} } /* check for incoming XON/XOFF flow control switched off */ if (( tty->flow_ctrl & FL_MDXOF) &&
8004d38: 29 61 00 b8 lw r1,(r11+184) 8004d3c: 20 21 04 00 andi r1,r1,0x400
8004d40: 44 20 00 0c be r1,r0,8004d70 <rtems_termios_ioctl+0x1b0> <== ALWAYS TAKEN
8004d44: 29 61 00 30 lw r1,(r11+48) <== NOT EXECUTED 8004d48: 20 21 10 00 andi r1,r1,0x1000 <== NOT EXECUTED 8004d4c: 5c 20 00 09 bne r1,r0,8004d70 <rtems_termios_ioctl+0x1b0> <== NOT EXECUTED
!(tty->termios.c_iflag & IXOFF)) { /* clear related flags in flow_ctrl */ tty->flow_ctrl &= ~(FL_MDXOF);
8004d50: 29 62 00 b8 lw r2,(r11+184) <== NOT EXECUTED 8004d54: 34 01 fb ff mvi r1,-1025 <== NOT EXECUTED 8004d58: a0 41 08 00 and r1,r2,r1 <== NOT EXECUTED 8004d5c: 59 61 00 b8 sw (r11+184),r1 <== NOT EXECUTED
/* FIXME: what happens, if we had sent XOFF but not yet XON? */ tty->flow_ctrl &= ~(FL_ISNTXOF);
8004d60: 29 62 00 b8 lw r2,(r11+184) <== NOT EXECUTED 8004d64: 34 01 ff fd mvi r1,-3 <== NOT EXECUTED 8004d68: a0 41 08 00 and r1,r2,r1 <== NOT EXECUTED 8004d6c: 59 61 00 b8 sw (r11+184),r1 <== NOT EXECUTED
} /* check for incoming RTS/CTS flow control switched off */ if (( tty->flow_ctrl & FL_MDRTS) &&
8004d70: 29 61 00 b8 lw r1,(r11+184) 8004d74: 20 21 01 00 andi r1,r1,0x100
8004d78: 44 20 00 12 be r1,r0,8004dc0 <rtems_termios_ioctl+0x200> <== ALWAYS TAKEN
8004d7c: 29 61 00 38 lw r1,(r11+56) <== NOT EXECUTED 8004d80: 48 01 00 10 bg r0,r1,8004dc0 <rtems_termios_ioctl+0x200> <== NOT EXECUTED
!(tty->termios.c_cflag & CRTSCTS)) { /* clear related flags in flow_ctrl */ tty->flow_ctrl &= ~(FL_MDRTS);
8004d84: 29 62 00 b8 lw r2,(r11+184) <== NOT EXECUTED 8004d88: 34 01 fe ff mvi r1,-257 <== NOT EXECUTED 8004d8c: a0 41 08 00 and r1,r2,r1 <== NOT EXECUTED 8004d90: 59 61 00 b8 sw (r11+184),r1 <== NOT EXECUTED
/* restart remote Tx, if it was stopped */ if ((tty->flow_ctrl & FL_IRTSOFF) &&
8004d94: 29 61 00 b8 lw r1,(r11+184) <== NOT EXECUTED 8004d98: 20 21 00 04 andi r1,r1,0x4 <== NOT EXECUTED 8004d9c: 44 20 00 05 be r1,r0,8004db0 <rtems_termios_ioctl+0x1f0> <== NOT EXECUTED
(tty->device.startRemoteTx != NULL)) {
8004da0: 29 62 00 b0 lw r2,(r11+176) <== NOT EXECUTED
!(tty->termios.c_cflag & CRTSCTS)) { /* clear related flags in flow_ctrl */ tty->flow_ctrl &= ~(FL_MDRTS); /* restart remote Tx, if it was stopped */ if ((tty->flow_ctrl & FL_IRTSOFF) &&
8004da4: 44 40 00 03 be r2,r0,8004db0 <rtems_termios_ioctl+0x1f0> <== NOT EXECUTED
(tty->device.startRemoteTx != NULL)) { tty->device.startRemoteTx(tty->minor);
8004da8: 29 61 00 10 lw r1,(r11+16) <== NOT EXECUTED 8004dac: d8 40 00 00 call r2 <== NOT EXECUTED
} tty->flow_ctrl &= ~(FL_IRTSOFF);
8004db0: 29 62 00 b8 lw r2,(r11+184) <== NOT EXECUTED 8004db4: 34 01 ff fb mvi r1,-5 <== NOT EXECUTED 8004db8: a0 41 08 00 and r1,r2,r1 <== NOT EXECUTED 8004dbc: 59 61 00 b8 sw (r11+184),r1 <== NOT EXECUTED
/* * check for flow control options to be switched on */ /* check for incoming RTS/CTS flow control switched on */ if (tty->termios.c_cflag & CRTSCTS) {
8004dc0: 29 61 00 38 lw r1,(r11+56)
8004dc4: 4c 20 00 04 bge r1,r0,8004dd4 <rtems_termios_ioctl+0x214> <== ALWAYS TAKEN
tty->flow_ctrl |= FL_MDRTS;
8004dc8: 29 61 00 b8 lw r1,(r11+184) <== NOT EXECUTED 8004dcc: 38 21 01 00 ori r1,r1,0x100 <== NOT EXECUTED 8004dd0: 59 61 00 b8 sw (r11+184),r1 <== NOT EXECUTED
} /* check for incoming XON/XOF flow control switched on */ if (tty->termios.c_iflag & IXOFF) {
8004dd4: 29 61 00 30 lw r1,(r11+48) 8004dd8: 20 21 10 00 andi r1,r1,0x1000
8004ddc: 44 20 00 04 be r1,r0,8004dec <rtems_termios_ioctl+0x22c> <== ALWAYS TAKEN
tty->flow_ctrl |= FL_MDXOF;
8004de0: 29 61 00 b8 lw r1,(r11+184) <== NOT EXECUTED 8004de4: 38 21 04 00 ori r1,r1,0x400 <== NOT EXECUTED 8004de8: 59 61 00 b8 sw (r11+184),r1 <== NOT EXECUTED
} /* check for outgoing XON/XOF flow control switched on */ if (tty->termios.c_iflag & IXON) {
8004dec: 29 61 00 30 lw r1,(r11+48) 8004df0: 20 21 04 00 andi r1,r1,0x400
8004df4: 44 20 00 04 be r1,r0,8004e04 <rtems_termios_ioctl+0x244> <== NEVER TAKEN
tty->flow_ctrl |= FL_MDXON;
8004df8: 29 61 00 b8 lw r1,(r11+184) 8004dfc: 38 21 02 00 ori r1,r1,0x200 8004e00: 59 61 00 b8 sw (r11+184),r1
tty->termios = *(struct termios *)args->buffer; /* check for and process change in flow control options */ termios_set_flowctrl(tty); if (tty->termios.c_lflag & ICANON) {
8004e04: 29 6e 00 3c lw r14,(r11+60) 8004e08: 34 01 00 00 mvi r1,0 8004e0c: 21 ce 00 02 andi r14,r14,0x2
8004e10: 45 c1 00 05 be r14,r1,8004e24 <rtems_termios_ioctl+0x264> <== NEVER TAKEN
tty->rawInBufSemaphoreOptions = RTEMS_WAIT; tty->rawInBufSemaphoreTimeout = RTEMS_NO_TIMEOUT; tty->rawInBufSemaphoreFirstTimeout = RTEMS_NO_TIMEOUT;
8004e14: 59 61 00 74 sw (r11+116),r1
/* check for and process change in flow control options */ termios_set_flowctrl(tty); if (tty->termios.c_lflag & ICANON) { tty->rawInBufSemaphoreOptions = RTEMS_WAIT;
8004e18: 59 61 00 6c sw (r11+108),r1
tty->rawInBufSemaphoreTimeout = RTEMS_NO_TIMEOUT;
8004e1c: 59 61 00 70 sw (r11+112),r1 8004e20: e0 00 00 19 bi 8004e84 <rtems_termios_ioctl+0x2c4>
tty->rawInBufSemaphoreFirstTimeout = RTEMS_NO_TIMEOUT; } else { tty->vtimeTicks = tty->termios.c_cc[VTIME] * rtems_clock_get_ticks_per_second() / 10;
8004e24: 41 6f 00 46 lbu r15,(r11+70) <== NOT EXECUTED 8004e28: f8 00 03 1d calli 8005a9c <rtems_clock_get_ticks_per_second><== NOT EXECUTED
tty->rawInBufSemaphoreOptions = RTEMS_WAIT; tty->rawInBufSemaphoreTimeout = RTEMS_NO_TIMEOUT; tty->rawInBufSemaphoreFirstTimeout = RTEMS_NO_TIMEOUT; } else { tty->vtimeTicks = tty->termios.c_cc[VTIME] *
8004e2c: b9 e0 10 00 mv r2,r15 <== NOT EXECUTED 8004e30: f8 00 69 be calli 801f528 <__mulsi3> <== NOT EXECUTED 8004e34: 34 02 00 0a mvi r2,10 <== NOT EXECUTED 8004e38: f8 00 6a 3b calli 801f724 <__udivsi3> <== NOT EXECUTED
rtems_clock_get_ticks_per_second() / 10; if (tty->termios.c_cc[VTIME]) {
8004e3c: 41 62 00 46 lbu r2,(r11+70) <== NOT EXECUTED
tty->rawInBufSemaphoreOptions = RTEMS_WAIT; tty->rawInBufSemaphoreTimeout = RTEMS_NO_TIMEOUT; tty->rawInBufSemaphoreFirstTimeout = RTEMS_NO_TIMEOUT; } else { tty->vtimeTicks = tty->termios.c_cc[VTIME] *
8004e40: 59 61 00 54 sw (r11+84),r1 <== NOT EXECUTED 8004e44: 41 63 00 47 lbu r3,(r11+71) <== NOT EXECUTED
rtems_clock_get_ticks_per_second() / 10; if (tty->termios.c_cc[VTIME]) {
8004e48: 44 4e 00 08 be r2,r14,8004e68 <rtems_termios_ioctl+0x2a8> <== NOT EXECUTED
tty->rawInBufSemaphoreOptions = RTEMS_WAIT;
8004e4c: 59 6e 00 6c sw (r11+108),r14 <== NOT EXECUTED
tty->rawInBufSemaphoreTimeout = tty->vtimeTicks;
8004e50: 59 61 00 70 sw (r11+112),r1 <== NOT EXECUTED
if (tty->termios.c_cc[VMIN])
8004e54: 44 60 00 03 be r3,r0,8004e60 <rtems_termios_ioctl+0x2a0> <== NOT EXECUTED
tty->rawInBufSemaphoreFirstTimeout = RTEMS_NO_TIMEOUT;
8004e58: 59 6e 00 74 sw (r11+116),r14 <== NOT EXECUTED 8004e5c: e0 00 00 0a bi 8004e84 <rtems_termios_ioctl+0x2c4> <== NOT EXECUTED
else tty->rawInBufSemaphoreFirstTimeout = tty->vtimeTicks;
8004e60: 59 61 00 74 sw (r11+116),r1 <== NOT EXECUTED 8004e64: e0 00 00 08 bi 8004e84 <rtems_termios_ioctl+0x2c4> <== NOT EXECUTED
} else { if (tty->termios.c_cc[VMIN]) {
8004e68: 44 62 00 05 be r3,r2,8004e7c <rtems_termios_ioctl+0x2bc> <== NOT EXECUTED
tty->rawInBufSemaphoreOptions = RTEMS_WAIT; tty->rawInBufSemaphoreTimeout = RTEMS_NO_TIMEOUT; tty->rawInBufSemaphoreFirstTimeout = RTEMS_NO_TIMEOUT;
8004e6c: 59 62 00 74 sw (r11+116),r2 <== NOT EXECUTED
else tty->rawInBufSemaphoreFirstTimeout = tty->vtimeTicks; } else { if (tty->termios.c_cc[VMIN]) { tty->rawInBufSemaphoreOptions = RTEMS_WAIT;
8004e70: 59 62 00 6c sw (r11+108),r2 <== NOT EXECUTED
tty->rawInBufSemaphoreTimeout = RTEMS_NO_TIMEOUT;
8004e74: 59 62 00 70 sw (r11+112),r2 <== NOT EXECUTED 8004e78: e0 00 00 03 bi 8004e84 <rtems_termios_ioctl+0x2c4> <== NOT EXECUTED
tty->rawInBufSemaphoreFirstTimeout = RTEMS_NO_TIMEOUT; } else { tty->rawInBufSemaphoreOptions = RTEMS_NO_WAIT;
8004e7c: 34 01 00 01 mvi r1,1 <== NOT EXECUTED 8004e80: 59 61 00 6c sw (r11+108),r1 <== NOT EXECUTED
} } } if (tty->device.setAttributes)
8004e84: 29 63 00 a8 lw r3,(r11+168)
8004e88: 44 60 00 3d be r3,r0,8004f7c <rtems_termios_ioctl+0x3bc> <== NEVER TAKEN
(*tty->device.setAttributes)(tty->minor, &tty->termios);
8004e8c: 29 61 00 10 lw r1,(r11+16) 8004e90: 35 62 00 30 addi r2,r11,48 8004e94: d8 60 00 00 call r3 8004e98: e0 00 00 39 bi 8004f7c <rtems_termios_ioctl+0x3bc>
break; case RTEMS_IO_TCDRAIN: drainOutput (tty);
8004e9c: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8004ea0: fb ff fe 48 calli 80047c0 <drainOutput> <== NOT EXECUTED
break;
8004ea4: e0 00 00 36 bi 8004f7c <rtems_termios_ioctl+0x3bc> <== NOT EXECUTED
case RTEMS_IO_SNDWAKEUP: tty->tty_snd = *wakeup;
8004ea8: 29 c1 00 00 lw r1,(r14+0) <== NOT EXECUTED 8004eac: 59 61 00 d4 sw (r11+212),r1 <== NOT EXECUTED 8004eb0: 29 ce 00 04 lw r14,(r14+4) <== NOT EXECUTED 8004eb4: 59 6e 00 d8 sw (r11+216),r14 <== NOT EXECUTED
break;
8004eb8: e0 00 00 31 bi 8004f7c <rtems_termios_ioctl+0x3bc> <== NOT EXECUTED
case RTEMS_IO_RCVWAKEUP: tty->tty_rcv = *wakeup;
8004ebc: 29 c2 00 00 lw r2,(r14+0) <== NOT EXECUTED 8004ec0: 59 62 00 dc sw (r11+220),r2 <== NOT EXECUTED 8004ec4: 29 ce 00 04 lw r14,(r14+4) <== NOT EXECUTED 8004ec8: 59 6e 00 e0 sw (r11+224),r14 <== NOT EXECUTED
break;
8004ecc: e0 00 00 2c bi 8004f7c <rtems_termios_ioctl+0x3bc> <== NOT EXECUTED
#if 1 /* FIXME */ case TIOCSETD: /* * close old line discipline */ if (rtems_termios_linesw[tty->t_line].l_close != NULL) {
8004ed0: 29 61 00 cc lw r1,(r11+204) <== NOT EXECUTED 8004ed4: 34 02 00 05 mvi r2,5 <== NOT EXECUTED 8004ed8: 78 0e 08 02 mvhi r14,0x802 <== NOT EXECUTED 8004edc: fb ff f1 47 calli 80013f8 <__ashlsi3> <== NOT EXECUTED 8004ee0: 39 ce 37 7c ori r14,r14,0x377c <== NOT EXECUTED 8004ee4: b5 c1 08 00 add r1,r14,r1 <== NOT EXECUTED 8004ee8: 28 22 00 04 lw r2,(r1+4) <== NOT EXECUTED 8004eec: 44 40 00 04 be r2,r0,8004efc <rtems_termios_ioctl+0x33c> <== NOT EXECUTED
sc = rtems_termios_linesw[tty->t_line].l_close(tty);
8004ef0: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8004ef4: d8 40 00 00 call r2 <== NOT EXECUTED 8004ef8: b8 20 68 00 mv r13,r1 <== NOT EXECUTED
} tty->t_line=*(int*)(args->buffer);
8004efc: 29 81 00 08 lw r1,(r12+8) <== NOT EXECUTED
tty->t_sc = NULL; /* ensure that no more valid data */
8004f00: 34 02 00 00 mvi r2,0 <== NOT EXECUTED 8004f04: 59 62 00 d0 sw (r11+208),r2 <== NOT EXECUTED
* close old line discipline */ if (rtems_termios_linesw[tty->t_line].l_close != NULL) { sc = rtems_termios_linesw[tty->t_line].l_close(tty); } tty->t_line=*(int*)(args->buffer);
8004f08: 28 21 00 00 lw r1,(r1+0) <== NOT EXECUTED
tty->t_sc = NULL; /* ensure that no more valid data */ /* * open new line discipline */ if (rtems_termios_linesw[tty->t_line].l_open != NULL) {
8004f0c: 34 02 00 05 mvi r2,5 <== NOT EXECUTED 8004f10: 78 0e 08 02 mvhi r14,0x802 <== NOT EXECUTED
* close old line discipline */ if (rtems_termios_linesw[tty->t_line].l_close != NULL) { sc = rtems_termios_linesw[tty->t_line].l_close(tty); } tty->t_line=*(int*)(args->buffer);
8004f14: 59 61 00 cc sw (r11+204),r1 <== NOT EXECUTED
tty->t_sc = NULL; /* ensure that no more valid data */ /* * open new line discipline */ if (rtems_termios_linesw[tty->t_line].l_open != NULL) {
8004f18: fb ff f1 38 calli 80013f8 <__ashlsi3> <== NOT EXECUTED 8004f1c: 39 ce 37 7c ori r14,r14,0x377c <== NOT EXECUTED 8004f20: b5 c1 08 00 add r1,r14,r1 <== NOT EXECUTED 8004f24: 28 22 00 00 lw r2,(r1+0) <== NOT EXECUTED 8004f28: 44 40 00 15 be r2,r0,8004f7c <rtems_termios_ioctl+0x3bc> <== NOT EXECUTED
sc = rtems_termios_linesw[tty->t_line].l_open(tty);
8004f2c: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8004f30: d8 40 00 00 call r2 <== NOT EXECUTED 8004f34: b8 20 68 00 mv r13,r1 <== NOT EXECUTED 8004f38: e0 00 00 11 bi 8004f7c <rtems_termios_ioctl+0x3bc> <== NOT EXECUTED
} break; case TIOCGETD: *(int*)(args->buffer)=tty->t_line;
8004f3c: 29 81 00 08 lw r1,(r12+8) <== NOT EXECUTED 8004f40: 29 62 00 cc lw r2,(r11+204) <== NOT EXECUTED 8004f44: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED
break;
8004f48: e0 00 00 0d bi 8004f7c <rtems_termios_ioctl+0x3bc> <== NOT EXECUTED
#endif case FIONREAD: { int rawnc = tty->rawInBuf.Tail - tty->rawInBuf.Head;
8004f4c: 29 62 00 60 lw r2,(r11+96) <== NOT EXECUTED 8004f50: 29 61 00 5c lw r1,(r11+92) <== NOT EXECUTED 8004f54: c8 41 08 00 sub r1,r2,r1 <== NOT EXECUTED
if ( rawnc < 0 )
8004f58: 4c 20 00 03 bge r1,r0,8004f64 <rtems_termios_ioctl+0x3a4> <== NOT EXECUTED
rawnc += tty->rawInBuf.Size;
8004f5c: 29 62 00 64 lw r2,(r11+100) <== NOT EXECUTED 8004f60: b4 22 08 00 add r1,r1,r2 <== NOT EXECUTED
/* Half guess that this is the right operation */ *(int *)args->buffer = tty->ccount - tty->cindex + rawnc;
8004f64: 29 64 00 20 lw r4,(r11+32) <== NOT EXECUTED 8004f68: 29 62 00 24 lw r2,(r11+36) <== NOT EXECUTED 8004f6c: 29 83 00 08 lw r3,(r12+8) <== NOT EXECUTED 8004f70: c8 82 10 00 sub r2,r4,r2 <== NOT EXECUTED 8004f74: b4 41 08 00 add r1,r2,r1 <== NOT EXECUTED 8004f78: 58 61 00 00 sw (r3+0),r1 <== NOT EXECUTED
} break; } rtems_semaphore_release (tty->osem);
8004f7c: 29 61 00 18 lw r1,(r11+24) 8004f80: f8 00 04 f5 calli 8006354 <rtems_semaphore_release>
args->ioctl_return = sc; return sc; }
8004f84: b9 a0 08 00 mv r1,r13
*(int *)args->buffer = tty->ccount - tty->cindex + rawnc; } break; } rtems_semaphore_release (tty->osem); args->ioctl_return = sc;
8004f88: 59 8d 00 0c sw (r12+12),r13
return sc; }
8004f8c: 2b 9d 00 04 lw ra,(sp+4) 8004f90: 2b 8b 00 18 lw r11,(sp+24) 8004f94: 2b 8c 00 14 lw r12,(sp+20) 8004f98: 2b 8d 00 10 lw r13,(sp+16) 8004f9c: 2b 8e 00 0c lw r14,(sp+12) 8004fa0: 2b 8f 00 08 lw r15,(sp+8) 8004fa4: 37 9c 00 18 addi sp,sp,24 8004fa8: c3 a0 00 00 ret
08005164 <rtems_termios_open>: rtems_device_major_number major, rtems_device_minor_number minor, void *arg, const rtems_termios_callbacks *callbacks ) {
8005164: 37 9c ff d0 addi sp,sp,-48 8005168: 5b 8b 00 30 sw (sp+48),r11 800516c: 5b 8c 00 2c sw (sp+44),r12 8005170: 5b 8d 00 28 sw (sp+40),r13 8005174: 5b 8e 00 24 sw (sp+36),r14 8005178: 5b 8f 00 20 sw (sp+32),r15 800517c: 5b 90 00 1c sw (sp+28),r16 8005180: 5b 91 00 18 sw (sp+24),r17 8005184: 5b 92 00 14 sw (sp+20),r18 8005188: 5b 93 00 10 sw (sp+16),r19 800518c: 5b 94 00 0c sw (sp+12),r20 8005190: 5b 95 00 08 sw (sp+8),r21 8005194: 5b 9d 00 04 sw (sp+4),ra
struct rtems_termios_tty *tty; /* * See if the device has already been opened */ sc = rtems_semaphore_obtain (rtems_termios_ttyMutex,
8005198: 78 05 08 02 mvhi r5,0x802 800519c: 38 a5 39 4c ori r5,r5,0x394c
rtems_device_major_number major, rtems_device_minor_number minor, void *arg, const rtems_termios_callbacks *callbacks ) {
80051a0: b8 20 88 00 mv r17,r1
struct rtems_termios_tty *tty; /* * See if the device has already been opened */ sc = rtems_semaphore_obtain (rtems_termios_ttyMutex,
80051a4: 28 a1 00 00 lw r1,(r5+0)
rtems_device_major_number major, rtems_device_minor_number minor, void *arg, const rtems_termios_callbacks *callbacks ) {
80051a8: b8 40 90 00 mv r18,r2
struct rtems_termios_tty *tty; /* * See if the device has already been opened */ sc = rtems_semaphore_obtain (rtems_termios_ttyMutex,
80051ac: 34 02 00 00 mvi r2,0
rtems_device_major_number major, rtems_device_minor_number minor, void *arg, const rtems_termios_callbacks *callbacks ) {
80051b0: b8 60 98 00 mv r19,r3
struct rtems_termios_tty *tty; /* * See if the device has already been opened */ sc = rtems_semaphore_obtain (rtems_termios_ttyMutex,
80051b4: b8 40 18 00 mv r3,r2
rtems_device_major_number major, rtems_device_minor_number minor, void *arg, const rtems_termios_callbacks *callbacks ) {
80051b8: b8 80 a0 00 mv r20,r4
struct rtems_termios_tty *tty; /* * See if the device has already been opened */ sc = rtems_semaphore_obtain (rtems_termios_ttyMutex,
80051bc: f8 00 04 16 calli 8006214 <rtems_semaphore_obtain> 80051c0: b8 20 70 00 mv r14,r1
RTEMS_WAIT, RTEMS_NO_TIMEOUT); if (sc != RTEMS_SUCCESSFUL)
80051c4: 5c 20 00 f7 bne r1,r0,80055a0 <rtems_termios_open+0x43c> <== NEVER TAKEN
return sc; for (tty = rtems_termios_ttyHead ; tty != NULL ; tty = tty->forw) {
80051c8: 78 01 08 02 mvhi r1,0x802 80051cc: 38 21 39 54 ori r1,r1,0x3954 80051d0: 28 2b 00 00 lw r11,(r1+0) 80051d4: e0 00 00 06 bi 80051ec <rtems_termios_open+0x88>
if ((tty->major == major) && (tty->minor == minor))
80051d8: 29 61 00 0c lw r1,(r11+12) <== NOT EXECUTED 80051dc: 5c 31 00 03 bne r1,r17,80051e8 <rtems_termios_open+0x84> <== NOT EXECUTED 80051e0: 29 61 00 10 lw r1,(r11+16) <== NOT EXECUTED 80051e4: 44 32 00 ce be r1,r18,800551c <rtems_termios_open+0x3b8> <== NOT EXECUTED
*/ sc = rtems_semaphore_obtain (rtems_termios_ttyMutex, RTEMS_WAIT, RTEMS_NO_TIMEOUT); if (sc != RTEMS_SUCCESSFUL) return sc; for (tty = rtems_termios_ttyHead ; tty != NULL ; tty = tty->forw) {
80051e8: 29 6b 00 00 lw r11,(r11+0) <== NOT EXECUTED
80051ec: 34 0d 00 00 mvi r13,0
80051f0: 5d 6d ff fa bne r11,r13,80051d8 <rtems_termios_open+0x74> <== NEVER TAKEN
80051f4: e0 00 00 fa bi 80055dc <rtems_termios_open+0x478>
return RTEMS_NO_MEMORY; } /* * allocate raw input buffer */ tty->rawInBuf.Size = RAW_INPUT_BUFFER_SIZE;
80051f8: 78 01 08 02 mvhi r1,0x802 80051fc: 38 21 32 38 ori r1,r1,0x3238 8005200: 28 21 00 00 lw r1,(r1+0) 8005204: 59 61 00 64 sw (r11+100),r1
tty->rawInBuf.theBuf = malloc (tty->rawInBuf.Size);
8005208: 29 61 00 64 lw r1,(r11+100) 800520c: f8 00 1a ff calli 800be08 <malloc> 8005210: 59 61 00 58 sw (r11+88),r1
if (tty->rawInBuf.theBuf == NULL) {
8005214: 5c 20 00 08 bne r1,r0,8005234 <rtems_termios_open+0xd0> <== ALWAYS TAKEN
free(tty);
8005218: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 800521c: f8 00 19 fd calli 800ba10 <free> <== NOT EXECUTED
rtems_semaphore_release (rtems_termios_ttyMutex);
8005220: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8005224: 38 21 39 4c ori r1,r1,0x394c <== NOT EXECUTED 8005228: 28 21 00 00 lw r1,(r1+0) <== NOT EXECUTED 800522c: 34 0e 00 1a mvi r14,26 <== NOT EXECUTED 8005230: e0 00 00 db bi 800559c <rtems_termios_open+0x438> <== NOT EXECUTED
return RTEMS_NO_MEMORY; } /* * allocate raw output buffer */ tty->rawOutBuf.Size = RAW_OUTPUT_BUFFER_SIZE;
8005234: 78 01 08 02 mvhi r1,0x802 8005238: 38 21 32 3c ori r1,r1,0x323c 800523c: 28 21 00 00 lw r1,(r1+0) 8005240: 59 61 00 88 sw (r11+136),r1
tty->rawOutBuf.theBuf = malloc (tty->rawOutBuf.Size);
8005244: 29 61 00 88 lw r1,(r11+136) 8005248: f8 00 1a f0 calli 800be08 <malloc> 800524c: 59 61 00 7c sw (r11+124),r1
if (tty->rawOutBuf.theBuf == NULL) {
8005250: 5c 20 00 04 bne r1,r0,8005260 <rtems_termios_open+0xfc> <== ALWAYS TAKEN
free((void *)(tty->rawInBuf.theBuf));
8005254: 29 61 00 58 lw r1,(r11+88) <== NOT EXECUTED
free(tty); rtems_semaphore_release (rtems_termios_ttyMutex);
8005258: 34 0e 00 1a mvi r14,26 <== NOT EXECUTED 800525c: e0 00 00 0b bi 8005288 <rtems_termios_open+0x124> <== NOT EXECUTED
return RTEMS_NO_MEMORY; } /* * allocate cooked buffer */ tty->cbuf = malloc (CBUFSIZE);
8005260: 78 01 08 02 mvhi r1,0x802 8005264: 38 21 32 34 ori r1,r1,0x3234 8005268: 28 21 00 00 lw r1,(r1+0) 800526c: f8 00 1a e7 calli 800be08 <malloc> 8005270: 59 61 00 1c sw (r11+28),r1
if (tty->cbuf == NULL) {
8005274: 5c 20 00 09 bne r1,r0,8005298 <rtems_termios_open+0x134> <== ALWAYS TAKEN
free((void *)(tty->rawOutBuf.theBuf));
8005278: 29 61 00 7c lw r1,(r11+124) <== NOT EXECUTED
free((void *)(tty->rawInBuf.theBuf)); free(tty); rtems_semaphore_release (rtems_termios_ttyMutex);
800527c: 34 0e 00 1a mvi r14,26 <== NOT EXECUTED
/* * allocate cooked buffer */ tty->cbuf = malloc (CBUFSIZE); if (tty->cbuf == NULL) { free((void *)(tty->rawOutBuf.theBuf));
8005280: f8 00 19 e4 calli 800ba10 <free> <== NOT EXECUTED
free((void *)(tty->rawInBuf.theBuf));
8005284: 29 61 00 58 lw r1,(r11+88) <== NOT EXECUTED 8005288: f8 00 19 e2 calli 800ba10 <free> <== NOT EXECUTED
free(tty);
800528c: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8005290: f8 00 19 e0 calli 800ba10 <free> <== NOT EXECUTED 8005294: e0 00 00 bf bi 8005590 <rtems_termios_open+0x42c> <== NOT EXECUTED
tty->tty_rcvwakeup = 0; /* * link tty */ tty->forw = rtems_termios_ttyHead;
8005298: 78 01 08 02 mvhi r1,0x802 800529c: 38 21 39 54 ori r1,r1,0x3954 80052a0: 28 21 00 00 lw r1,(r1+0)
return RTEMS_NO_MEMORY; } /* * Initialize wakeup callbacks */ tty->tty_snd.sw_pfn = NULL;
80052a4: 59 6d 00 d4 sw (r11+212),r13
/* * link tty */ tty->forw = rtems_termios_ttyHead; tty->back = NULL;
80052a8: 59 6d 00 04 sw (r11+4),r13
} /* * Initialize wakeup callbacks */ tty->tty_snd.sw_pfn = NULL; tty->tty_snd.sw_arg = NULL;
80052ac: 59 6d 00 d8 sw (r11+216),r13
tty->tty_rcv.sw_pfn = NULL;
80052b0: 59 6d 00 dc sw (r11+220),r13
tty->tty_rcv.sw_arg = NULL;
80052b4: 59 6d 00 e0 sw (r11+224),r13
tty->tty_rcvwakeup = 0;
80052b8: 59 6d 00 e4 sw (r11+228),r13
/* * link tty */ tty->forw = rtems_termios_ttyHead;
80052bc: 59 61 00 00 sw (r11+0),r1
tty->back = NULL; if (rtems_termios_ttyHead != NULL)
80052c0: 44 20 00 02 be r1,r0,80052c8 <rtems_termios_open+0x164> <== ALWAYS TAKEN
rtems_termios_ttyHead->back = tty;
80052c4: 58 2b 00 04 sw (r1+4),r11 <== NOT EXECUTED
rtems_termios_ttyHead = tty; if (rtems_termios_ttyTail == NULL)
80052c8: 78 05 08 02 mvhi r5,0x802 80052cc: 38 a5 39 50 ori r5,r5,0x3950
*/ tty->forw = rtems_termios_ttyHead; tty->back = NULL; if (rtems_termios_ttyHead != NULL) rtems_termios_ttyHead->back = tty; rtems_termios_ttyHead = tty;
80052d0: 78 01 08 02 mvhi r1,0x802
if (rtems_termios_ttyTail == NULL)
80052d4: 28 a2 00 00 lw r2,(r5+0)
*/ tty->forw = rtems_termios_ttyHead; tty->back = NULL; if (rtems_termios_ttyHead != NULL) rtems_termios_ttyHead->back = tty; rtems_termios_ttyHead = tty;
80052d8: 38 21 39 54 ori r1,r1,0x3954 80052dc: 58 2c 00 00 sw (r1+0),r12
if (rtems_termios_ttyTail == NULL)
80052e0: 5c 40 00 02 bne r2,r0,80052e8 <rtems_termios_open+0x184> <== NEVER TAKEN
rtems_termios_ttyTail = tty;
80052e4: 58 ac 00 00 sw (r5+0),r12
tty->major = major; /* * Set up mutex semaphores */ sc = rtems_semaphore_create (
80052e8: 78 0d 08 02 mvhi r13,0x802
rtems_termios_ttyHead->back = tty; rtems_termios_ttyHead = tty; if (rtems_termios_ttyTail == NULL) rtems_termios_ttyTail = tty; tty->minor = minor;
80052ec: 59 92 00 10 sw (r12+16),r18
tty->major = major;
80052f0: 59 91 00 0c sw (r12+12),r17
/* * Set up mutex semaphores */ sc = rtems_semaphore_create (
80052f4: 39 ad 32 40 ori r13,r13,0x3240 80052f8: 41 a1 00 00 lbu r1,(r13+0) 80052fc: 78 05 54 52 mvhi r5,0x5452 8005300: 38 a5 69 00 ori r5,r5,0x6900 8005304: b8 25 08 00 or r1,r1,r5 8005308: 34 02 00 01 mvi r2,1 800530c: 34 03 00 54 mvi r3,84 8005310: 34 04 00 00 mvi r4,0 8005314: 35 85 00 14 addi r5,r12,20 8005318: f8 00 03 11 calli 8005f5c <rtems_semaphore_create> 800531c: b8 20 78 00 mv r15,r1
rtems_build_name ('T', 'R', 'i', c), 1, RTEMS_BINARY_SEMAPHORE | RTEMS_INHERIT_PRIORITY | RTEMS_PRIORITY, RTEMS_NO_PRIORITY, &tty->isem); if (sc != RTEMS_SUCCESSFUL)
8005320: 5c 20 00 9b bne r1,r0,800558c <rtems_termios_open+0x428> <== NEVER TAKEN
rtems_fatal_error_occurred (sc); sc = rtems_semaphore_create (
8005324: 41 a1 00 00 lbu r1,(r13+0) 8005328: 78 05 54 52 mvhi r5,0x5452 800532c: 38 a5 6f 00 ori r5,r5,0x6f00 8005330: b8 25 08 00 or r1,r1,r5 8005334: 34 02 00 01 mvi r2,1 8005338: 34 03 00 54 mvi r3,84 800533c: b9 e0 20 00 mv r4,r15 8005340: 35 85 00 18 addi r5,r12,24 8005344: f8 00 03 06 calli 8005f5c <rtems_semaphore_create> 8005348: b8 20 80 00 mv r16,r1
rtems_build_name ('T', 'R', 'o', c), 1, RTEMS_BINARY_SEMAPHORE | RTEMS_INHERIT_PRIORITY | RTEMS_PRIORITY, RTEMS_NO_PRIORITY, &tty->osem); if (sc != RTEMS_SUCCESSFUL)
800534c: 5c 2f 00 90 bne r1,r15,800558c <rtems_termios_open+0x428> <== NEVER TAKEN
rtems_fatal_error_occurred (sc); sc = rtems_semaphore_create (
8005350: 41 a1 00 00 lbu r1,(r13+0) 8005354: 78 05 54 52 mvhi r5,0x5452 8005358: 38 a5 78 00 ori r5,r5,0x7800 800535c: b8 25 08 00 or r1,r1,r5 8005360: ba 00 10 00 mv r2,r16 8005364: 34 03 00 20 mvi r3,32 8005368: ba 00 20 00 mv r4,r16 800536c: 35 85 00 8c addi r5,r12,140 8005370: f8 00 02 fb calli 8005f5c <rtems_semaphore_create> 8005374: b8 20 78 00 mv r15,r1
rtems_build_name ('T', 'R', 'x', c), 0, RTEMS_SIMPLE_BINARY_SEMAPHORE | RTEMS_FIFO, RTEMS_NO_PRIORITY, &tty->rawOutBuf.Semaphore); if (sc != RTEMS_SUCCESSFUL)
8005378: 5c 30 00 85 bne r1,r16,800558c <rtems_termios_open+0x428> <== NEVER TAKEN
rtems_fatal_error_occurred (sc); tty->rawOutBufState = rob_idle;
800537c: 59 81 00 94 sw (r12+148),r1
/* * Set callbacks */ tty->device = *callbacks;
8005380: ba 80 10 00 mv r2,r20 8005384: 35 81 00 98 addi r1,r12,152 8005388: 34 03 00 20 mvi r3,32 800538c: f8 00 29 82 calli 800f994 <memcpy>
/* * Create I/O tasks */ if (tty->device.outputUsesInterrupts == TERMIOS_TASK_DRIVEN) {
8005390: 29 82 00 b4 lw r2,(r12+180) 8005394: 34 01 00 02 mvi r1,2
8005398: 5c 41 00 18 bne r2,r1,80053f8 <rtems_termios_open+0x294> <== ALWAYS TAKEN
sc = rtems_task_create (
800539c: 41 a1 00 00 lbu r1,(r13+0) <== NOT EXECUTED 80053a0: 78 04 54 78 mvhi r4,0x5478 <== NOT EXECUTED 80053a4: 38 84 54 00 ori r4,r4,0x5400 <== NOT EXECUTED 80053a8: b8 24 08 00 or r1,r1,r4 <== NOT EXECUTED 80053ac: 34 02 00 0a mvi r2,10 <== NOT EXECUTED 80053b0: 34 03 04 00 mvi r3,1024 <== NOT EXECUTED 80053b4: 34 04 05 00 mvi r4,1280 <== NOT EXECUTED 80053b8: b9 e0 28 00 mv r5,r15 <== NOT EXECUTED 80053bc: 35 86 00 c8 addi r6,r12,200 <== NOT EXECUTED 80053c0: f8 00 04 22 calli 8006448 <rtems_task_create> <== NOT EXECUTED 80053c4: b8 20 80 00 mv r16,r1 <== NOT EXECUTED
TERMIOS_TXTASK_STACKSIZE, RTEMS_NO_PREEMPT | RTEMS_NO_TIMESLICE | RTEMS_NO_ASR, RTEMS_NO_FLOATING_POINT | RTEMS_LOCAL, &tty->txTaskId); if (sc != RTEMS_SUCCESSFUL)
80053c8: 5c 2f 00 71 bne r1,r15,800558c <rtems_termios_open+0x428> <== NOT EXECUTED
rtems_fatal_error_occurred (sc); sc = rtems_task_create (
80053cc: 41 a1 00 00 lbu r1,(r13+0) <== NOT EXECUTED 80053d0: 78 04 52 78 mvhi r4,0x5278 <== NOT EXECUTED 80053d4: 38 84 54 00 ori r4,r4,0x5400 <== NOT EXECUTED 80053d8: b8 24 08 00 or r1,r1,r4 <== NOT EXECUTED 80053dc: 34 02 00 09 mvi r2,9 <== NOT EXECUTED 80053e0: 34 03 04 00 mvi r3,1024 <== NOT EXECUTED 80053e4: 34 04 05 00 mvi r4,1280 <== NOT EXECUTED 80053e8: ba 00 28 00 mv r5,r16 <== NOT EXECUTED 80053ec: 35 86 00 c4 addi r6,r12,196 <== NOT EXECUTED 80053f0: f8 00 04 16 calli 8006448 <rtems_task_create> <== NOT EXECUTED
TERMIOS_RXTASK_STACKSIZE, RTEMS_NO_PREEMPT | RTEMS_NO_TIMESLICE | RTEMS_NO_ASR, RTEMS_NO_FLOATING_POINT | RTEMS_LOCAL, &tty->rxTaskId); if (sc != RTEMS_SUCCESSFUL)
80053f4: 5c 30 00 66 bne r1,r16,800558c <rtems_termios_open+0x428> <== NOT EXECUTED
rtems_fatal_error_occurred (sc); } if ((tty->device.pollRead == NULL) ||
80053f8: 29 81 00 a0 lw r1,(r12+160)
80053fc: 44 20 00 04 be r1,r0,800540c <rtems_termios_open+0x2a8> <== NEVER TAKEN
(tty->device.outputUsesInterrupts == TERMIOS_TASK_DRIVEN)){
8005400: 29 82 00 b4 lw r2,(r12+180) 8005404: 34 01 00 02 mvi r1,2
8005408: 5c 41 00 0d bne r2,r1,800543c <rtems_termios_open+0x2d8> <== ALWAYS TAKEN
sc = rtems_semaphore_create (
800540c: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8005410: 38 21 32 40 ori r1,r1,0x3240 <== NOT EXECUTED 8005414: 40 21 00 00 lbu r1,(r1+0) <== NOT EXECUTED 8005418: 78 04 54 52 mvhi r4,0x5452 <== NOT EXECUTED 800541c: 38 84 72 00 ori r4,r4,0x7200 <== NOT EXECUTED 8005420: 34 02 00 00 mvi r2,0 <== NOT EXECUTED 8005424: b8 24 08 00 or r1,r1,r4 <== NOT EXECUTED 8005428: 34 03 00 24 mvi r3,36 <== NOT EXECUTED 800542c: b8 40 20 00 mv r4,r2 <== NOT EXECUTED 8005430: 35 85 00 68 addi r5,r12,104 <== NOT EXECUTED 8005434: f8 00 02 ca calli 8005f5c <rtems_semaphore_create> <== NOT EXECUTED
rtems_build_name ('T', 'R', 'r', c), 0, RTEMS_SIMPLE_BINARY_SEMAPHORE | RTEMS_PRIORITY, RTEMS_NO_PRIORITY, &tty->rawInBuf.Semaphore); if (sc != RTEMS_SUCCESSFUL)
8005438: 5c 20 00 55 bne r1,r0,800558c <rtems_termios_open+0x428> <== NOT EXECUTED
tty->termios.c_cc[VDISCARD] = '\017'; tty->termios.c_cc[VWERASE] = '\027'; tty->termios.c_cc[VLNEXT] = '\026'; /* start with no flow control, clear flow control flags */ tty->flow_ctrl = 0;
800543c: 34 01 00 00 mvi r1,0
} /* * Set default parameters */ tty->termios.c_iflag = BRKINT | ICRNL | IXON | IMAXBEL;
8005440: 34 15 25 02 mvi r21,9474
tty->termios.c_cc[VDISCARD] = '\017'; tty->termios.c_cc[VWERASE] = '\027'; tty->termios.c_cc[VLNEXT] = '\026'; /* start with no flow control, clear flow control flags */ tty->flow_ctrl = 0;
8005444: 59 81 00 b8 sw (r12+184),r1
} /* * Set default parameters */ tty->termios.c_iflag = BRKINT | ICRNL | IXON | IMAXBEL;
8005448: 59 95 00 30 sw (r12+48),r21
tty->termios.c_oflag = OPOST | ONLCR | XTABS;
800544c: 34 15 18 05 mvi r21,6149
/* start with no flow control, clear flow control flags */ tty->flow_ctrl = 0; /* * set low/highwater mark for XON/XOFF support */ tty->lowwater = tty->rawInBuf.Size * 1/2;
8005450: 29 81 00 64 lw r1,(r12+100)
/* * Set default parameters */ tty->termios.c_iflag = BRKINT | ICRNL | IXON | IMAXBEL; tty->termios.c_oflag = OPOST | ONLCR | XTABS;
8005454: 59 95 00 34 sw (r12+52),r21
tty->termios.c_cflag = B9600 | CS8 | CREAD | CLOCAL;
8005458: 34 15 08 bd mvi r21,2237
tty->termios.c_cc[VINTR] = '\003'; tty->termios.c_cc[VQUIT] = '\034'; tty->termios.c_cc[VERASE] = '\177'; tty->termios.c_cc[VKILL] = '\025'; tty->termios.c_cc[VEOF] = '\004'; tty->termios.c_cc[VEOL] = '\000';
800545c: 34 02 00 00 mvi r2,0
tty->termios.c_cc[VINTR] = '\003'; tty->termios.c_cc[VQUIT] = '\034'; tty->termios.c_cc[VERASE] = '\177'; tty->termios.c_cc[VKILL] = '\025'; tty->termios.c_cc[VEOF] = '\004';
8005460: 34 0a 00 04 mvi r10,4
tty->termios.c_cc[VEOL] = '\000'; tty->termios.c_cc[VEOL2] = '\000'; tty->termios.c_cc[VSTART] = '\021';
8005464: 34 09 00 11 mvi r9,17
tty->termios.c_cc[VSTOP] = '\023';
8005468: 34 08 00 13 mvi r8,19
tty->termios.c_cc[VSUSP] = '\032';
800546c: 34 07 00 1a mvi r7,26
tty->termios.c_cc[VREPRINT] = '\022';
8005470: 34 06 00 12 mvi r6,18
tty->termios.c_cc[VDISCARD] = '\017';
8005474: 34 05 00 0f mvi r5,15
tty->termios.c_cc[VWERASE] = '\027';
8005478: 34 04 00 17 mvi r4,23
tty->termios.c_cc[VLNEXT] = '\026';
800547c: 34 03 00 16 mvi r3,22
/* * Set default parameters */ tty->termios.c_iflag = BRKINT | ICRNL | IXON | IMAXBEL; tty->termios.c_oflag = OPOST | ONLCR | XTABS; tty->termios.c_cflag = B9600 | CS8 | CREAD | CLOCAL;
8005480: 59 95 00 38 sw (r12+56),r21
tty->termios.c_lflag = ISIG | ICANON | IEXTEN | ECHO | ECHOK | ECHOE | ECHOCTL; tty->termios.c_cc[VINTR] = '\003';
8005484: 34 14 00 03 mvi r20,3
tty->termios.c_cc[VQUIT] = '\034';
8005488: 34 10 00 1c mvi r16,28
tty->termios.c_cc[VERASE] = '\177';
800548c: 34 0f 00 7f mvi r15,127
tty->termios.c_cc[VKILL] = '\025';
8005490: 34 0d 00 15 mvi r13,21
* Set default parameters */ tty->termios.c_iflag = BRKINT | ICRNL | IXON | IMAXBEL; tty->termios.c_oflag = OPOST | ONLCR | XTABS; tty->termios.c_cflag = B9600 | CS8 | CREAD | CLOCAL; tty->termios.c_lflag = ISIG | ICANON | IEXTEN | ECHO | ECHOK | ECHOE | ECHOCTL;
8005494: 38 15 82 3b mvu r21,0x823b
tty->termios.c_cc[VINTR] = '\003'; tty->termios.c_cc[VQUIT] = '\034'; tty->termios.c_cc[VERASE] = '\177'; tty->termios.c_cc[VKILL] = '\025'; tty->termios.c_cc[VEOF] = '\004';
8005498: 31 8a 00 45 sb (r12+69),r10
tty->termios.c_cc[VEOL] = '\000'; tty->termios.c_cc[VEOL2] = '\000';
800549c: 31 82 00 51 sb (r12+81),r2
tty->termios.c_cc[VSTART] = '\021';
80054a0: 31 89 00 49 sb (r12+73),r9
tty->termios.c_cc[VSTOP] = '\023';
80054a4: 31 88 00 4a sb (r12+74),r8
tty->termios.c_cc[VSUSP] = '\032';
80054a8: 31 87 00 4b sb (r12+75),r7
tty->termios.c_cc[VREPRINT] = '\022';
80054ac: 31 86 00 4d sb (r12+77),r6
tty->termios.c_cc[VDISCARD] = '\017';
80054b0: 31 85 00 4e sb (r12+78),r5
tty->termios.c_cc[VWERASE] = '\027';
80054b4: 31 84 00 4f sb (r12+79),r4
tty->termios.c_cc[VLNEXT] = '\026';
80054b8: 31 83 00 50 sb (r12+80),r3
tty->termios.c_cc[VINTR] = '\003'; tty->termios.c_cc[VQUIT] = '\034'; tty->termios.c_cc[VERASE] = '\177'; tty->termios.c_cc[VKILL] = '\025'; tty->termios.c_cc[VEOF] = '\004'; tty->termios.c_cc[VEOL] = '\000';
80054bc: 31 82 00 4c sb (r12+76),r2
* Set default parameters */ tty->termios.c_iflag = BRKINT | ICRNL | IXON | IMAXBEL; tty->termios.c_oflag = OPOST | ONLCR | XTABS; tty->termios.c_cflag = B9600 | CS8 | CREAD | CLOCAL; tty->termios.c_lflag = ISIG | ICANON | IEXTEN | ECHO | ECHOK | ECHOE | ECHOCTL;
80054c0: 59 95 00 3c sw (r12+60),r21
/* start with no flow control, clear flow control flags */ tty->flow_ctrl = 0; /* * set low/highwater mark for XON/XOFF support */ tty->lowwater = tty->rawInBuf.Size * 1/2;
80054c4: 34 02 00 01 mvi r2,1
tty->termios.c_iflag = BRKINT | ICRNL | IXON | IMAXBEL; tty->termios.c_oflag = OPOST | ONLCR | XTABS; tty->termios.c_cflag = B9600 | CS8 | CREAD | CLOCAL; tty->termios.c_lflag = ISIG | ICANON | IEXTEN | ECHO | ECHOK | ECHOE | ECHOCTL; tty->termios.c_cc[VINTR] = '\003';
80054c8: 31 94 00 41 sb (r12+65),r20
tty->termios.c_cc[VQUIT] = '\034';
80054cc: 31 90 00 42 sb (r12+66),r16
tty->termios.c_cc[VERASE] = '\177';
80054d0: 31 8f 00 43 sb (r12+67),r15
tty->termios.c_cc[VKILL] = '\025';
80054d4: 31 8d 00 44 sb (r12+68),r13
/* start with no flow control, clear flow control flags */ tty->flow_ctrl = 0; /* * set low/highwater mark for XON/XOFF support */ tty->lowwater = tty->rawInBuf.Size * 1/2;
80054d8: fb ff ef f0 calli 8001498 <__lshrsi3>
tty->highwater = tty->rawInBuf.Size * 3/4;
80054dc: 29 84 00 64 lw r4,(r12+100)
/* start with no flow control, clear flow control flags */ tty->flow_ctrl = 0; /* * set low/highwater mark for XON/XOFF support */ tty->lowwater = tty->rawInBuf.Size * 1/2;
80054e0: 59 81 00 bc sw (r12+188),r1
tty->highwater = tty->rawInBuf.Size * 3/4;
80054e4: 34 02 00 02 mvi r2,2 80054e8: b4 84 08 00 add r1,r4,r4 80054ec: b4 24 08 00 add r1,r1,r4 80054f0: fb ff ef ea calli 8001498 <__lshrsi3>
/* * Bump name characer */ if (c++ == 'z')
80054f4: 78 04 08 02 mvhi r4,0x802
tty->flow_ctrl = 0; /* * set low/highwater mark for XON/XOFF support */ tty->lowwater = tty->rawInBuf.Size * 1/2; tty->highwater = tty->rawInBuf.Size * 3/4;
80054f8: 59 81 00 c0 sw (r12+192),r1
/* * Bump name characer */ if (c++ == 'z')
80054fc: 38 84 32 40 ori r4,r4,0x3240 8005500: 40 81 00 00 lbu r1,(r4+0) 8005504: 34 22 00 01 addi r2,r1,1 8005508: 30 82 00 00 sb (r4+0),r2 800550c: 34 02 00 7a mvi r2,122
8005510: 5c 22 00 03 bne r1,r2,800551c <rtems_termios_open+0x3b8> <== ALWAYS TAKEN
c = 'a';
8005514: 34 01 00 61 mvi r1,97 <== NOT EXECUTED 8005518: 30 81 00 00 sb (r4+0),r1 <== NOT EXECUTED
} args->iop->data1 = tty; if (!tty->refcount++) {
800551c: 29 62 00 08 lw r2,(r11+8)
*/ if (c++ == 'z') c = 'a'; } args->iop->data1 = tty;
8005520: 2a 63 00 00 lw r3,(r19+0)
if (!tty->refcount++) {
8005524: 34 41 00 01 addi r1,r2,1
*/ if (c++ == 'z') c = 'a'; } args->iop->data1 = tty;
8005528: 58 6b 00 38 sw (r3+56),r11
if (!tty->refcount++) {
800552c: 59 61 00 08 sw (r11+8),r1
8005530: 5c 40 00 18 bne r2,r0,8005590 <rtems_termios_open+0x42c> <== NEVER TAKEN
if (tty->device.firstOpen)
8005534: 29 64 00 98 lw r4,(r11+152)
8005538: 44 82 00 05 be r4,r2,800554c <rtems_termios_open+0x3e8> <== ALWAYS TAKEN
(*tty->device.firstOpen)(major, minor, arg);
800553c: ba 20 08 00 mv r1,r17 <== NOT EXECUTED 8005540: ba 40 10 00 mv r2,r18 <== NOT EXECUTED 8005544: ba 60 18 00 mv r3,r19 <== NOT EXECUTED 8005548: d8 80 00 00 call r4 <== NOT EXECUTED
/* * start I/O tasks, if needed */ if (tty->device.outputUsesInterrupts == TERMIOS_TASK_DRIVEN) {
800554c: 29 62 00 b4 lw r2,(r11+180) 8005550: 34 01 00 02 mvi r1,2
8005554: 5c 41 00 0f bne r2,r1,8005590 <rtems_termios_open+0x42c> <== ALWAYS TAKEN
sc = rtems_task_start(tty->rxTaskId,
8005558: 29 61 00 c4 lw r1,(r11+196) <== NOT EXECUTED 800555c: 78 02 08 00 mvhi r2,0x800 <== NOT EXECUTED 8005560: 38 42 56 84 ori r2,r2,0x5684 <== NOT EXECUTED 8005564: b9 60 18 00 mv r3,r11 <== NOT EXECUTED 8005568: f8 00 04 74 calli 8006738 <rtems_task_start> <== NOT EXECUTED 800556c: b8 20 60 00 mv r12,r1 <== NOT EXECUTED
rtems_termios_rxdaemon, (rtems_task_argument)tty); if (sc != RTEMS_SUCCESSFUL)
8005570: 5c 20 00 07 bne r1,r0,800558c <rtems_termios_open+0x428> <== NOT EXECUTED
rtems_fatal_error_occurred (sc); sc = rtems_task_start(tty->txTaskId,
8005574: 29 61 00 c8 lw r1,(r11+200) <== NOT EXECUTED 8005578: 78 02 08 00 mvhi r2,0x800 <== NOT EXECUTED 800557c: 38 42 55 f8 ori r2,r2,0x55f8 <== NOT EXECUTED 8005580: b9 60 18 00 mv r3,r11 <== NOT EXECUTED 8005584: f8 00 04 6d calli 8006738 <rtems_task_start> <== NOT EXECUTED
rtems_termios_txdaemon, (rtems_task_argument)tty); if (sc != RTEMS_SUCCESSFUL)
8005588: 44 2c 00 02 be r1,r12,8005590 <rtems_termios_open+0x42c> <== NOT EXECUTED
rtems_fatal_error_occurred (sc);
800558c: f8 00 05 1a calli 80069f4 <rtems_fatal_error_occurred> <== NOT EXECUTED
} } rtems_semaphore_release (rtems_termios_ttyMutex);
8005590: 78 01 08 02 mvhi r1,0x802 8005594: 38 21 39 4c ori r1,r1,0x394c 8005598: 28 21 00 00 lw r1,(r1+0) 800559c: f8 00 03 6e calli 8006354 <rtems_semaphore_release>
return RTEMS_SUCCESSFUL; }
80055a0: b9 c0 08 00 mv r1,r14 80055a4: 2b 9d 00 04 lw ra,(sp+4) 80055a8: 2b 8b 00 30 lw r11,(sp+48) 80055ac: 2b 8c 00 2c lw r12,(sp+44) 80055b0: 2b 8d 00 28 lw r13,(sp+40) 80055b4: 2b 8e 00 24 lw r14,(sp+36) 80055b8: 2b 8f 00 20 lw r15,(sp+32) 80055bc: 2b 90 00 1c lw r16,(sp+28) 80055c0: 2b 91 00 18 lw r17,(sp+24) 80055c4: 2b 92 00 14 lw r18,(sp+20) 80055c8: 2b 93 00 10 lw r19,(sp+16) 80055cc: 2b 94 00 0c lw r20,(sp+12) 80055d0: 2b 95 00 08 lw r21,(sp+8) 80055d4: 37 9c 00 30 addi sp,sp,48 80055d8: c3 a0 00 00 ret
static char c = 'a'; /* * Create a new device */ tty = calloc (1, sizeof (struct rtems_termios_tty));
80055dc: 34 01 00 01 mvi r1,1 80055e0: 34 02 00 e8 mvi r2,232 80055e4: f8 00 18 ec calli 800b994 <calloc> 80055e8: b8 20 58 00 mv r11,r1 80055ec: b8 20 60 00 mv r12,r1
if (tty == NULL) {
80055f0: 5c 20 ff 02 bne r1,r0,80051f8 <rtems_termios_open+0x94> <== ALWAYS TAKEN
80055f4: e3 ff ff 0b bi 8005220 <rtems_termios_open+0xbc> <== NOT EXECUTED
08003f08 <rtems_termios_puts>: * Send characters to device-specific code */ void rtems_termios_puts ( const void *_buf, int len, struct rtems_termios_tty *tty) {
8003f08: 37 9c ff dc addi sp,sp,-36 <== NOT EXECUTED 8003f0c: 5b 8b 00 24 sw (sp+36),r11 <== NOT EXECUTED 8003f10: 5b 8c 00 20 sw (sp+32),r12 <== NOT EXECUTED 8003f14: 5b 8d 00 1c sw (sp+28),r13 <== NOT EXECUTED 8003f18: 5b 8e 00 18 sw (sp+24),r14 <== NOT EXECUTED 8003f1c: 5b 8f 00 14 sw (sp+20),r15 <== NOT EXECUTED 8003f20: 5b 90 00 10 sw (sp+16),r16 <== NOT EXECUTED 8003f24: 5b 91 00 0c sw (sp+12),r17 <== NOT EXECUTED 8003f28: 5b 92 00 08 sw (sp+8),r18 <== NOT EXECUTED 8003f2c: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
const unsigned char *buf = _buf; unsigned int newHead; rtems_interrupt_level level; rtems_status_code sc; if (tty->device.outputUsesInterrupts == TERMIOS_POLLED) {
8003f30: 28 64 00 b4 lw r4,(r3+180) <== NOT EXECUTED
* Send characters to device-specific code */ void rtems_termios_puts ( const void *_buf, int len, struct rtems_termios_tty *tty) {
8003f34: b8 60 58 00 mv r11,r3 <== NOT EXECUTED 8003f38: b8 40 68 00 mv r13,r2 <== NOT EXECUTED 8003f3c: b8 20 18 00 mv r3,r1 <== NOT EXECUTED
const unsigned char *buf = _buf;
8003f40: b8 20 70 00 mv r14,r1 <== NOT EXECUTED
unsigned int newHead; rtems_interrupt_level level; rtems_status_code sc; if (tty->device.outputUsesInterrupts == TERMIOS_POLLED) {
8003f44: 5c 80 00 07 bne r4,r0,8003f60 <rtems_termios_puts+0x58> <== NOT EXECUTED
(*tty->device.write)(tty->minor, (void *)buf, len);
8003f48: 29 61 00 10 lw r1,(r11+16) <== NOT EXECUTED 8003f4c: 29 64 00 a4 lw r4,(r11+164) <== NOT EXECUTED 8003f50: b8 60 10 00 mv r2,r3 <== NOT EXECUTED 8003f54: b9 a0 18 00 mv r3,r13 <== NOT EXECUTED 8003f58: d8 80 00 00 call r4 <== NOT EXECUTED
return;
8003f5c: e0 00 00 36 bi 8004034 <rtems_termios_puts+0x12c> <== NOT EXECUTED
} newHead = tty->rawOutBuf.Head;
8003f60: 29 6c 00 80 lw r12,(r11+128) <== NOT EXECUTED
* * To minimize latency, the memcpy should be done * with interrupts enabled. */ newHead = (newHead + 1) % tty->rawOutBuf.Size; rtems_interrupt_disable (level);
8003f64: 34 10 ff fe mvi r16,-2 <== NOT EXECUTED
while (newHead == tty->rawOutBuf.Tail) { tty->rawOutBufState = rob_wait;
8003f68: 34 12 00 02 mvi r18,2 <== NOT EXECUTED
} else { /* remember that output has been stopped due to flow ctrl*/ tty->flow_ctrl |= FL_OSTOP; } tty->rawOutBufState = rob_busy;
8003f6c: 34 11 00 01 mvi r17,1 <== NOT EXECUTED
if (tty->device.outputUsesInterrupts == TERMIOS_POLLED) { (*tty->device.write)(tty->minor, (void *)buf, len); return; } newHead = tty->rawOutBuf.Head; while (len) {
8003f70: e0 00 00 30 bi 8004030 <rtems_termios_puts+0x128> <== NOT EXECUTED
* len -= ncopy * * To minimize latency, the memcpy should be done * with interrupts enabled. */ newHead = (newHead + 1) % tty->rawOutBuf.Size;
8003f74: 29 62 00 88 lw r2,(r11+136) <== NOT EXECUTED 8003f78: 35 81 00 01 addi r1,r12,1 <== NOT EXECUTED 8003f7c: f8 00 6d fa calli 801f764 <__umodsi3> <== NOT EXECUTED 8003f80: b8 20 60 00 mv r12,r1 <== NOT EXECUTED
rtems_interrupt_disable (level);
8003f84: 90 00 78 00 rcsr r15,IE <== NOT EXECUTED 8003f88: a1 f0 08 00 and r1,r15,r16 <== NOT EXECUTED 8003f8c: d0 01 00 00 wcsr IE,r1 <== NOT EXECUTED
while (newHead == tty->rawOutBuf.Tail) {
8003f90: e0 00 00 0c bi 8003fc0 <rtems_termios_puts+0xb8> <== NOT EXECUTED
tty->rawOutBufState = rob_wait;
8003f94: 59 72 00 94 sw (r11+148),r18 <== NOT EXECUTED
rtems_interrupt_enable (level);
8003f98: d0 0f 00 00 wcsr IE,r15 <== NOT EXECUTED
sc = rtems_semaphore_obtain (tty->rawOutBuf.Semaphore,
8003f9c: 29 61 00 8c lw r1,(r11+140) <== NOT EXECUTED 8003fa0: 34 02 00 00 mvi r2,0 <== NOT EXECUTED 8003fa4: b8 40 18 00 mv r3,r2 <== NOT EXECUTED 8003fa8: f8 00 08 9b calli 8006214 <rtems_semaphore_obtain> <== NOT EXECUTED
RTEMS_WAIT, RTEMS_NO_TIMEOUT); if (sc != RTEMS_SUCCESSFUL)
8003fac: 44 20 00 02 be r1,r0,8003fb4 <rtems_termios_puts+0xac> <== NOT EXECUTED
rtems_fatal_error_occurred (sc);
8003fb0: f8 00 0a 91 calli 80069f4 <rtems_fatal_error_occurred> <== NOT EXECUTED
rtems_interrupt_disable (level);
8003fb4: 90 00 78 00 rcsr r15,IE <== NOT EXECUTED 8003fb8: a1 f0 08 00 and r1,r15,r16 <== NOT EXECUTED 8003fbc: d0 01 00 00 wcsr IE,r1 <== NOT EXECUTED
* To minimize latency, the memcpy should be done * with interrupts enabled. */ newHead = (newHead + 1) % tty->rawOutBuf.Size; rtems_interrupt_disable (level); while (newHead == tty->rawOutBuf.Tail) {
8003fc0: 29 61 00 84 lw r1,(r11+132) <== NOT EXECUTED 8003fc4: 45 81 ff f4 be r12,r1,8003f94 <rtems_termios_puts+0x8c> <== NOT EXECUTED
RTEMS_NO_TIMEOUT); if (sc != RTEMS_SUCCESSFUL) rtems_fatal_error_occurred (sc); rtems_interrupt_disable (level); } tty->rawOutBuf.theBuf[tty->rawOutBuf.Head] = *buf++;
8003fc8: 29 61 00 80 lw r1,(r11+128) <== NOT EXECUTED 8003fcc: 29 62 00 7c lw r2,(r11+124) <== NOT EXECUTED 8003fd0: b4 41 08 00 add r1,r2,r1 <== NOT EXECUTED 8003fd4: 41 c2 00 00 lbu r2,(r14+0) <== NOT EXECUTED 8003fd8: 30 22 00 00 sb (r1+0),r2 <== NOT EXECUTED
tty->rawOutBuf.Head = newHead; if (tty->rawOutBufState == rob_idle) {
8003fdc: 29 61 00 94 lw r1,(r11+148) <== NOT EXECUTED
if (sc != RTEMS_SUCCESSFUL) rtems_fatal_error_occurred (sc); rtems_interrupt_disable (level); } tty->rawOutBuf.theBuf[tty->rawOutBuf.Head] = *buf++; tty->rawOutBuf.Head = newHead;
8003fe0: 59 6c 00 80 sw (r11+128),r12 <== NOT EXECUTED
if (tty->rawOutBufState == rob_idle) {
8003fe4: 5c 20 00 10 bne r1,r0,8004024 <rtems_termios_puts+0x11c> <== NOT EXECUTED
/* check, whether XOFF has been received */ if (!(tty->flow_ctrl & FL_ORCVXOF)) {
8003fe8: 29 62 00 b8 lw r2,(r11+184) <== NOT EXECUTED 8003fec: 20 42 00 10 andi r2,r2,0x10 <== NOT EXECUTED 8003ff0: 5c 41 00 09 bne r2,r1,8004014 <rtems_termios_puts+0x10c> <== NOT EXECUTED
(*tty->device.write)(tty->minor,
8003ff4: 29 63 00 7c lw r3,(r11+124) <== NOT EXECUTED
(char *)&tty->rawOutBuf.theBuf[tty->rawOutBuf.Tail],1);
8003ff8: 29 62 00 84 lw r2,(r11+132) <== NOT EXECUTED
tty->rawOutBuf.theBuf[tty->rawOutBuf.Head] = *buf++; tty->rawOutBuf.Head = newHead; if (tty->rawOutBufState == rob_idle) { /* check, whether XOFF has been received */ if (!(tty->flow_ctrl & FL_ORCVXOF)) { (*tty->device.write)(tty->minor,
8003ffc: 29 64 00 a4 lw r4,(r11+164) <== NOT EXECUTED 8004000: 29 61 00 10 lw r1,(r11+16) <== NOT EXECUTED 8004004: b4 62 10 00 add r2,r3,r2 <== NOT EXECUTED 8004008: 34 03 00 01 mvi r3,1 <== NOT EXECUTED 800400c: d8 80 00 00 call r4 <== NOT EXECUTED 8004010: e0 00 00 04 bi 8004020 <rtems_termios_puts+0x118> <== NOT EXECUTED
(char *)&tty->rawOutBuf.theBuf[tty->rawOutBuf.Tail],1); } else { /* remember that output has been stopped due to flow ctrl*/ tty->flow_ctrl |= FL_OSTOP;
8004014: 29 61 00 b8 lw r1,(r11+184) <== NOT EXECUTED 8004018: 38 21 00 20 ori r1,r1,0x20 <== NOT EXECUTED 800401c: 59 61 00 b8 sw (r11+184),r1 <== NOT EXECUTED
} tty->rawOutBufState = rob_busy;
8004020: 59 71 00 94 sw (r11+148),r17 <== NOT EXECUTED
RTEMS_NO_TIMEOUT); if (sc != RTEMS_SUCCESSFUL) rtems_fatal_error_occurred (sc); rtems_interrupt_disable (level); } tty->rawOutBuf.theBuf[tty->rawOutBuf.Head] = *buf++;
8004024: 35 ce 00 01 addi r14,r14,1 <== NOT EXECUTED
/* remember that output has been stopped due to flow ctrl*/ tty->flow_ctrl |= FL_OSTOP; } tty->rawOutBufState = rob_busy; } rtems_interrupt_enable (level);
8004028: d0 0f 00 00 wcsr IE,r15 <== NOT EXECUTED
len--;
800402c: 35 ad ff ff addi r13,r13,-1 <== NOT EXECUTED
if (tty->device.outputUsesInterrupts == TERMIOS_POLLED) { (*tty->device.write)(tty->minor, (void *)buf, len); return; } newHead = tty->rawOutBuf.Head; while (len) {
8004030: 5d a0 ff d1 bne r13,r0,8003f74 <rtems_termios_puts+0x6c> <== NOT EXECUTED
tty->rawOutBufState = rob_busy; } rtems_interrupt_enable (level); len--; } }
8004034: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8004038: 2b 8b 00 24 lw r11,(sp+36) <== NOT EXECUTED 800403c: 2b 8c 00 20 lw r12,(sp+32) <== NOT EXECUTED 8004040: 2b 8d 00 1c lw r13,(sp+28) <== NOT EXECUTED 8004044: 2b 8e 00 18 lw r14,(sp+24) <== NOT EXECUTED 8004048: 2b 8f 00 14 lw r15,(sp+20) <== NOT EXECUTED 800404c: 2b 90 00 10 lw r16,(sp+16) <== NOT EXECUTED 8004050: 2b 91 00 0c lw r17,(sp+12) <== NOT EXECUTED 8004054: 2b 92 00 08 lw r18,(sp+8) <== NOT EXECUTED 8004058: 37 9c 00 24 addi sp,sp,36 <== NOT EXECUTED 800405c: c3 a0 00 00 ret <== NOT EXECUTED
08004850 <rtems_termios_read>: return RTEMS_SUCCESSFUL; } rtems_status_code rtems_termios_read (void *arg) {
8004850: 37 9c ff cc addi sp,sp,-52 <== NOT EXECUTED 8004854: 5b 8b 00 34 sw (sp+52),r11 <== NOT EXECUTED 8004858: 5b 8c 00 30 sw (sp+48),r12 <== NOT EXECUTED 800485c: 5b 8d 00 2c sw (sp+44),r13 <== NOT EXECUTED 8004860: 5b 8e 00 28 sw (sp+40),r14 <== NOT EXECUTED 8004864: 5b 8f 00 24 sw (sp+36),r15 <== NOT EXECUTED 8004868: 5b 90 00 20 sw (sp+32),r16 <== NOT EXECUTED 800486c: 5b 91 00 1c sw (sp+28),r17 <== NOT EXECUTED 8004870: 5b 92 00 18 sw (sp+24),r18 <== NOT EXECUTED 8004874: 5b 93 00 14 sw (sp+20),r19 <== NOT EXECUTED 8004878: 5b 94 00 10 sw (sp+16),r20 <== NOT EXECUTED 800487c: 5b 95 00 0c sw (sp+12),r21 <== NOT EXECUTED 8004880: 5b 96 00 08 sw (sp+8),r22 <== NOT EXECUTED 8004884: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED 8004888: b8 20 60 00 mv r12,r1 <== NOT EXECUTED
rtems_libio_rw_args_t *args = arg; struct rtems_termios_tty *tty = args->iop->data1;
800488c: 28 21 00 00 lw r1,(r1+0) <== NOT EXECUTED
uint32_t count = args->count; char *buffer = args->buffer; rtems_status_code sc; sc = rtems_semaphore_obtain (tty->isem, RTEMS_WAIT, RTEMS_NO_TIMEOUT);
8004890: 34 02 00 00 mvi r2,0 <== NOT EXECUTED 8004894: b8 40 18 00 mv r3,r2 <== NOT EXECUTED
rtems_status_code rtems_termios_read (void *arg) { rtems_libio_rw_args_t *args = arg; struct rtems_termios_tty *tty = args->iop->data1;
8004898: 28 2b 00 38 lw r11,(r1+56) <== NOT EXECUTED
uint32_t count = args->count;
800489c: 29 8e 00 14 lw r14,(r12+20) <== NOT EXECUTED
char *buffer = args->buffer;
80048a0: 29 92 00 10 lw r18,(r12+16) <== NOT EXECUTED
rtems_status_code sc; sc = rtems_semaphore_obtain (tty->isem, RTEMS_WAIT, RTEMS_NO_TIMEOUT);
80048a4: 29 61 00 14 lw r1,(r11+20) <== NOT EXECUTED 80048a8: f8 00 06 5b calli 8006214 <rtems_semaphore_obtain> <== NOT EXECUTED 80048ac: b8 20 68 00 mv r13,r1 <== NOT EXECUTED
if (sc != RTEMS_SUCCESSFUL)
80048b0: 5c 20 00 b4 bne r1,r0,8004b80 <rtems_termios_read+0x330> <== NOT EXECUTED
return sc; if (rtems_termios_linesw[tty->t_line].l_read != NULL) {
80048b4: 29 61 00 cc lw r1,(r11+204) <== NOT EXECUTED 80048b8: 34 02 00 02 mvi r2,2 <== NOT EXECUTED 80048bc: 78 0f 08 02 mvhi r15,0x802 <== NOT EXECUTED 80048c0: fb ff f2 ce calli 80013f8 <__ashlsi3> <== NOT EXECUTED 80048c4: 34 21 00 01 addi r1,r1,1 <== NOT EXECUTED 80048c8: 34 02 00 03 mvi r2,3 <== NOT EXECUTED 80048cc: fb ff f2 cb calli 80013f8 <__ashlsi3> <== NOT EXECUTED 80048d0: 39 ef 37 7c ori r15,r15,0x377c <== NOT EXECUTED 80048d4: b5 e1 08 00 add r1,r15,r1 <== NOT EXECUTED 80048d8: 28 23 00 00 lw r3,(r1+0) <== NOT EXECUTED 80048dc: 44 6d 00 09 be r3,r13,8004900 <rtems_termios_read+0xb0> <== NOT EXECUTED
sc = rtems_termios_linesw[tty->t_line].l_read(tty,args);
80048e0: b9 80 10 00 mv r2,r12 <== NOT EXECUTED 80048e4: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 80048e8: d8 60 00 00 call r3 <== NOT EXECUTED
tty->tty_rcvwakeup = 0;
80048ec: 34 02 00 00 mvi r2,0 <== NOT EXECUTED
sc = rtems_semaphore_obtain (tty->isem, RTEMS_WAIT, RTEMS_NO_TIMEOUT); if (sc != RTEMS_SUCCESSFUL) return sc; if (rtems_termios_linesw[tty->t_line].l_read != NULL) { sc = rtems_termios_linesw[tty->t_line].l_read(tty,args);
80048f0: b8 20 68 00 mv r13,r1 <== NOT EXECUTED
tty->tty_rcvwakeup = 0;
80048f4: 59 62 00 e4 sw (r11+228),r2 <== NOT EXECUTED
rtems_semaphore_release (tty->isem);
80048f8: 29 61 00 14 lw r1,(r11+20) <== NOT EXECUTED 80048fc: e0 00 00 a0 bi 8004b7c <rtems_termios_read+0x32c> <== NOT EXECUTED
return sc; } if (tty->cindex == tty->ccount) {
8004900: 29 62 00 24 lw r2,(r11+36) <== NOT EXECUTED 8004904: 29 61 00 20 lw r1,(r11+32) <== NOT EXECUTED 8004908: 5c 41 00 92 bne r2,r1,8004b50 <rtems_termios_read+0x300> <== NOT EXECUTED
tty->cindex = tty->ccount = 0; tty->read_start_column = tty->column;
800490c: 29 62 00 28 lw r2,(r11+40) <== NOT EXECUTED
if (tty->device.pollRead != NULL
8004910: 29 61 00 a0 lw r1,(r11+160) <== NOT EXECUTED
tty->tty_rcvwakeup = 0; rtems_semaphore_release (tty->isem); return sc; } if (tty->cindex == tty->ccount) { tty->cindex = tty->ccount = 0;
8004914: 59 6d 00 20 sw (r11+32),r13 <== NOT EXECUTED
tty->read_start_column = tty->column;
8004918: 59 62 00 2c sw (r11+44),r2 <== NOT EXECUTED
tty->tty_rcvwakeup = 0; rtems_semaphore_release (tty->isem); return sc; } if (tty->cindex == tty->ccount) { tty->cindex = tty->ccount = 0;
800491c: 59 6d 00 24 sw (r11+36),r13 <== NOT EXECUTED
tty->read_start_column = tty->column; if (tty->device.pollRead != NULL
8004920: 44 20 00 32 be r1,r0,80049e8 <rtems_termios_read+0x198> <== NOT EXECUTED
&& tty->device.outputUsesInterrupts == TERMIOS_POLLED)
8004924: 29 61 00 b4 lw r1,(r11+180) <== NOT EXECUTED 8004928: 5c 20 00 30 bne r1,r0,80049e8 <rtems_termios_read+0x198> <== NOT EXECUTED
static rtems_status_code fillBufferPoll (struct rtems_termios_tty *tty) { int n; if (tty->termios.c_lflag & ICANON) {
800492c: 29 61 00 3c lw r1,(r11+60) <== NOT EXECUTED 8004930: 20 21 00 02 andi r1,r1,0x2 <== NOT EXECUTED 8004934: 44 20 00 0e be r1,r0,800496c <rtems_termios_read+0x11c> <== NOT EXECUTED
for (;;) { n = (*tty->device.pollRead)(tty->minor);
8004938: 29 62 00 a0 lw r2,(r11+160) <== NOT EXECUTED 800493c: 29 61 00 10 lw r1,(r11+16) <== NOT EXECUTED 8004940: d8 40 00 00 call r2 <== NOT EXECUTED 8004944: b8 20 18 00 mv r3,r1 <== NOT EXECUTED
if (n < 0) { rtems_task_wake_after (1); } else { if (siproc (n, tty))
8004948: b9 60 10 00 mv r2,r11 <== NOT EXECUTED 800494c: 20 21 00 ff andi r1,r1,0xff <== NOT EXECUTED
int n; if (tty->termios.c_lflag & ICANON) { for (;;) { n = (*tty->device.pollRead)(tty->minor); if (n < 0) {
8004950: 4c 60 00 04 bge r3,r0,8004960 <rtems_termios_read+0x110> <== NOT EXECUTED
rtems_task_wake_after (1);
8004954: 34 01 00 01 mvi r1,1 <== NOT EXECUTED 8004958: f8 00 07 98 calli 80067b8 <rtems_task_wake_after> <== NOT EXECUTED 800495c: e3 ff ff f7 bi 8004938 <rtems_termios_read+0xe8> <== NOT EXECUTED
} else { if (siproc (n, tty))
8004960: fb ff ff 3d calli 8004654 <siproc> <== NOT EXECUTED 8004964: 44 20 ff f5 be r1,r0,8004938 <rtems_termios_read+0xe8> <== NOT EXECUTED 8004968: e0 00 00 7a bi 8004b50 <rtems_termios_read+0x300> <== NOT EXECUTED
} } } else { rtems_interval then, now; then = rtems_clock_get_ticks_since_boot();
800496c: f8 00 04 57 calli 8005ac8 <rtems_clock_get_ticks_since_boot><== NOT EXECUTED 8004970: b8 20 78 00 mv r15,r1 <== NOT EXECUTED
for (;;) { n = (*tty->device.pollRead)(tty->minor);
8004974: 29 62 00 a0 lw r2,(r11+160) <== NOT EXECUTED 8004978: 29 61 00 10 lw r1,(r11+16) <== NOT EXECUTED 800497c: d8 40 00 00 call r2 <== NOT EXECUTED
if (n < 0) {
8004980: 4c 20 00 10 bge r1,r0,80049c0 <rtems_termios_read+0x170> <== NOT EXECUTED
if (tty->termios.c_cc[VMIN]) {
8004984: 41 61 00 47 lbu r1,(r11+71) <== NOT EXECUTED 8004988: 41 62 00 46 lbu r2,(r11+70) <== NOT EXECUTED 800498c: 44 20 00 05 be r1,r0,80049a0 <rtems_termios_read+0x150> <== NOT EXECUTED
if (tty->termios.c_cc[VTIME] && tty->ccount) {
8004990: 44 40 00 09 be r2,r0,80049b4 <rtems_termios_read+0x164> <== NOT EXECUTED 8004994: 29 61 00 20 lw r1,(r11+32) <== NOT EXECUTED 8004998: 44 20 00 07 be r1,r0,80049b4 <rtems_termios_read+0x164> <== NOT EXECUTED 800499c: e0 00 00 02 bi 80049a4 <rtems_termios_read+0x154> <== NOT EXECUTED
break; } } } else { if (!tty->termios.c_cc[VTIME])
80049a0: 44 41 00 6c be r2,r1,8004b50 <rtems_termios_read+0x300> <== NOT EXECUTED
break; now = rtems_clock_get_ticks_since_boot();
80049a4: f8 00 04 49 calli 8005ac8 <rtems_clock_get_ticks_since_boot><== NOT EXECUTED
if ((now - then) > tty->vtimeTicks) {
80049a8: 29 62 00 54 lw r2,(r11+84) <== NOT EXECUTED 80049ac: c8 2f 08 00 sub r1,r1,r15 <== NOT EXECUTED 80049b0: 54 22 00 68 bgu r1,r2,8004b50 <rtems_termios_read+0x300> <== NOT EXECUTED
break; } } rtems_task_wake_after (1);
80049b4: 34 01 00 01 mvi r1,1 <== NOT EXECUTED 80049b8: f8 00 07 80 calli 80067b8 <rtems_task_wake_after> <== NOT EXECUTED 80049bc: e3 ff ff ee bi 8004974 <rtems_termios_read+0x124> <== NOT EXECUTED
} else { siproc (n, tty);
80049c0: b9 60 10 00 mv r2,r11 <== NOT EXECUTED 80049c4: 20 21 00 ff andi r1,r1,0xff <== NOT EXECUTED 80049c8: fb ff ff 23 calli 8004654 <siproc> <== NOT EXECUTED
if (tty->ccount >= tty->termios.c_cc[VMIN])
80049cc: 41 61 00 47 lbu r1,(r11+71) <== NOT EXECUTED 80049d0: 29 62 00 20 lw r2,(r11+32) <== NOT EXECUTED 80049d4: 4c 41 00 5f bge r2,r1,8004b50 <rtems_termios_read+0x300> <== NOT EXECUTED
break; if (tty->termios.c_cc[VMIN] && tty->termios.c_cc[VTIME])
80049d8: 44 20 ff e7 be r1,r0,8004974 <rtems_termios_read+0x124> <== NOT EXECUTED 80049dc: 41 61 00 46 lbu r1,(r11+70) <== NOT EXECUTED 80049e0: 44 20 ff e5 be r1,r0,8004974 <rtems_termios_read+0x124> <== NOT EXECUTED 80049e4: e3 ff ff e2 bi 800496c <rtems_termios_read+0x11c> <== NOT EXECUTED
while ( wait ) { /* * Process characters read from raw queue */ while ((tty->rawInBuf.Head != tty->rawInBuf.Tail) &&
80049e8: 78 0f 08 02 mvhi r15,0x802 <== NOT EXECUTED 80049ec: 39 ef 32 34 ori r15,r15,0x3234 <== NOT EXECUTED
* Fill the input buffer from the raw input queue */ static rtems_status_code fillBufferQueue (struct rtems_termios_tty *tty) { rtems_interval timeout = tty->rawInBufSemaphoreFirstTimeout;
80049f0: 29 71 00 74 lw r17,(r11+116) <== NOT EXECUTED
if (((tty->flow_ctrl & (FL_MDXON | FL_ISNTXOF)) == (FL_MDXON | FL_ISNTXOF)) && ((tty->rawOutBufState == rob_idle) || (tty->flow_ctrl & FL_OSTOP))) { /* XON should be sent now... */ (*tty->device.write)(tty->minor,
80049f4: 35 76 00 49 addi r22,r11,73 <== NOT EXECUTED 80049f8: 34 10 00 01 mvi r16,1 <== NOT EXECUTED
c = tty->rawInBuf.theBuf[newHead]; tty->rawInBuf.Head = newHead; if(((tty->rawInBuf.Tail-newHead+tty->rawInBuf.Size) % tty->rawInBuf.Size) < tty->lowwater) { tty->flow_ctrl &= ~FL_IREQXOF;
80049fc: 34 15 ff fe mvi r21,-2 <== NOT EXECUTED
/* if tx stopped and XON should be sent... */ if (((tty->flow_ctrl & (FL_MDXON | FL_ISNTXOF))
8004a00: 34 14 02 02 mvi r20,514 <== NOT EXECUTED
(*tty->device.write)(tty->minor, (void *)&(tty->termios.c_cc[VSTART]), 1); } else if (tty->flow_ctrl & FL_MDRTS) { tty->flow_ctrl &= ~FL_IRTSOFF;
8004a04: 34 13 ff fb mvi r19,-5 <== NOT EXECUTED 8004a08: e0 00 00 3d bi 8004afc <rtems_termios_read+0x2ac> <== NOT EXECUTED
while ((tty->rawInBuf.Head != tty->rawInBuf.Tail) && (tty->ccount < (CBUFSIZE-1))) { unsigned char c; unsigned int newHead; newHead = (tty->rawInBuf.Head + 1) % tty->rawInBuf.Size;
8004a0c: 29 61 00 5c lw r1,(r11+92) <== NOT EXECUTED 8004a10: 29 62 00 64 lw r2,(r11+100) <== NOT EXECUTED 8004a14: 34 21 00 01 addi r1,r1,1 <== NOT EXECUTED 8004a18: f8 00 6b 53 calli 801f764 <__umodsi3> <== NOT EXECUTED 8004a1c: b8 20 18 00 mv r3,r1 <== NOT EXECUTED
c = tty->rawInBuf.theBuf[newHead];
8004a20: 29 61 00 58 lw r1,(r11+88) <== NOT EXECUTED 8004a24: b4 23 08 00 add r1,r1,r3 <== NOT EXECUTED 8004a28: 40 31 00 00 lbu r17,(r1+0) <== NOT EXECUTED
tty->rawInBuf.Head = newHead;
8004a2c: 59 63 00 5c sw (r11+92),r3 <== NOT EXECUTED
if(((tty->rawInBuf.Tail-newHead+tty->rawInBuf.Size)
8004a30: 29 61 00 60 lw r1,(r11+96) <== NOT EXECUTED 8004a34: 29 64 00 64 lw r4,(r11+100) <== NOT EXECUTED 8004a38: 29 62 00 64 lw r2,(r11+100) <== NOT EXECUTED 8004a3c: b4 81 08 00 add r1,r4,r1 <== NOT EXECUTED 8004a40: c8 23 08 00 sub r1,r1,r3 <== NOT EXECUTED 8004a44: f8 00 6b 48 calli 801f764 <__umodsi3> <== NOT EXECUTED 8004a48: 29 62 00 bc lw r2,(r11+188) <== NOT EXECUTED 8004a4c: 50 22 00 1c bgeu r1,r2,8004abc <rtems_termios_read+0x26c> <== NOT EXECUTED
% tty->rawInBuf.Size) < tty->lowwater) { tty->flow_ctrl &= ~FL_IREQXOF;
8004a50: 29 61 00 b8 lw r1,(r11+184) <== NOT EXECUTED 8004a54: a0 35 08 00 and r1,r1,r21 <== NOT EXECUTED 8004a58: 59 61 00 b8 sw (r11+184),r1 <== NOT EXECUTED
/* if tx stopped and XON should be sent... */ if (((tty->flow_ctrl & (FL_MDXON | FL_ISNTXOF))
8004a5c: 29 61 00 b8 lw r1,(r11+184) <== NOT EXECUTED 8004a60: 20 21 02 02 andi r1,r1,0x202 <== NOT EXECUTED 8004a64: 5c 34 00 0c bne r1,r20,8004a94 <rtems_termios_read+0x244> <== NOT EXECUTED 8004a68: 29 61 00 94 lw r1,(r11+148) <== NOT EXECUTED 8004a6c: 44 20 00 04 be r1,r0,8004a7c <rtems_termios_read+0x22c> <== NOT EXECUTED
== (FL_MDXON | FL_ISNTXOF)) && ((tty->rawOutBufState == rob_idle) || (tty->flow_ctrl & FL_OSTOP))) {
8004a70: 29 61 00 b8 lw r1,(r11+184) <== NOT EXECUTED
if(((tty->rawInBuf.Tail-newHead+tty->rawInBuf.Size) % tty->rawInBuf.Size) < tty->lowwater) { tty->flow_ctrl &= ~FL_IREQXOF; /* if tx stopped and XON should be sent... */ if (((tty->flow_ctrl & (FL_MDXON | FL_ISNTXOF))
8004a74: 20 21 00 20 andi r1,r1,0x20 <== NOT EXECUTED 8004a78: 44 20 00 07 be r1,r0,8004a94 <rtems_termios_read+0x244> <== NOT EXECUTED
== (FL_MDXON | FL_ISNTXOF)) && ((tty->rawOutBufState == rob_idle) || (tty->flow_ctrl & FL_OSTOP))) { /* XON should be sent now... */ (*tty->device.write)(tty->minor,
8004a7c: 29 64 00 a4 lw r4,(r11+164) <== NOT EXECUTED 8004a80: 29 61 00 10 lw r1,(r11+16) <== NOT EXECUTED 8004a84: ba c0 10 00 mv r2,r22 <== NOT EXECUTED 8004a88: 34 03 00 01 mvi r3,1 <== NOT EXECUTED 8004a8c: d8 80 00 00 call r4 <== NOT EXECUTED 8004a90: e0 00 00 0b bi 8004abc <rtems_termios_read+0x26c> <== NOT EXECUTED
(void *)&(tty->termios.c_cc[VSTART]), 1); } else if (tty->flow_ctrl & FL_MDRTS) {
8004a94: 29 61 00 b8 lw r1,(r11+184) <== NOT EXECUTED 8004a98: 20 21 01 00 andi r1,r1,0x100 <== NOT EXECUTED 8004a9c: 44 20 00 08 be r1,r0,8004abc <rtems_termios_read+0x26c> <== NOT EXECUTED
tty->flow_ctrl &= ~FL_IRTSOFF;
8004aa0: 29 61 00 b8 lw r1,(r11+184) <== NOT EXECUTED
/* activate RTS line */ if (tty->device.startRemoteTx != NULL) {
8004aa4: 29 63 00 b0 lw r3,(r11+176) <== NOT EXECUTED
(*tty->device.write)(tty->minor, (void *)&(tty->termios.c_cc[VSTART]), 1); } else if (tty->flow_ctrl & FL_MDRTS) { tty->flow_ctrl &= ~FL_IRTSOFF;
8004aa8: a0 33 08 00 and r1,r1,r19 <== NOT EXECUTED 8004aac: 59 61 00 b8 sw (r11+184),r1 <== NOT EXECUTED
/* activate RTS line */ if (tty->device.startRemoteTx != NULL) {
8004ab0: 44 60 00 03 be r3,r0,8004abc <rtems_termios_read+0x26c> <== NOT EXECUTED
tty->device.startRemoteTx(tty->minor);
8004ab4: 29 61 00 10 lw r1,(r11+16) <== NOT EXECUTED 8004ab8: d8 60 00 00 call r3 <== NOT EXECUTED
} } } /* continue processing new character */ if (tty->termios.c_lflag & ICANON) {
8004abc: 29 61 00 3c lw r1,(r11+60) <== NOT EXECUTED 8004ac0: 20 21 00 02 andi r1,r1,0x2 <== NOT EXECUTED 8004ac4: 44 20 00 06 be r1,r0,8004adc <rtems_termios_read+0x28c> <== NOT EXECUTED
if (siproc (c, tty))
8004ac8: ba 20 08 00 mv r1,r17 <== NOT EXECUTED 8004acc: b9 60 10 00 mv r2,r11 <== NOT EXECUTED 8004ad0: fb ff fe e1 calli 8004654 <siproc> <== NOT EXECUTED 8004ad4: 5c 20 00 08 bne r1,r0,8004af4 <rtems_termios_read+0x2a4> <== NOT EXECUTED 8004ad8: e0 00 00 08 bi 8004af8 <rtems_termios_read+0x2a8> <== NOT EXECUTED
wait = 0; } else { siproc (c, tty);
8004adc: b9 60 10 00 mv r2,r11 <== NOT EXECUTED 8004ae0: ba 20 08 00 mv r1,r17 <== NOT EXECUTED 8004ae4: fb ff fe dc calli 8004654 <siproc> <== NOT EXECUTED
if (tty->ccount >= tty->termios.c_cc[VMIN])
8004ae8: 41 61 00 47 lbu r1,(r11+71) <== NOT EXECUTED 8004aec: 29 62 00 20 lw r2,(r11+32) <== NOT EXECUTED 8004af0: 48 22 00 02 bg r1,r2,8004af8 <rtems_termios_read+0x2a8> <== NOT EXECUTED 8004af4: 34 10 00 00 mvi r16,0 <== NOT EXECUTED
wait = 0; } timeout = tty->rawInBufSemaphoreTimeout;
8004af8: 29 71 00 70 lw r17,(r11+112) <== NOT EXECUTED
while ( wait ) { /* * Process characters read from raw queue */ while ((tty->rawInBuf.Head != tty->rawInBuf.Tail) &&
8004afc: 29 62 00 5c lw r2,(r11+92) <== NOT EXECUTED 8004b00: 29 61 00 60 lw r1,(r11+96) <== NOT EXECUTED 8004b04: 44 41 00 05 be r2,r1,8004b18 <rtems_termios_read+0x2c8> <== NOT EXECUTED 8004b08: 29 e1 00 00 lw r1,(r15+0) <== NOT EXECUTED 8004b0c: 29 62 00 20 lw r2,(r11+32) <== NOT EXECUTED 8004b10: 34 21 ff ff addi r1,r1,-1 <== NOT EXECUTED 8004b14: 48 22 ff be bg r1,r2,8004a0c <rtems_termios_read+0x1bc> <== NOT EXECUTED
} /* * Wait for characters */ if ( wait ) {
8004b18: 46 00 00 0e be r16,r0,8004b50 <rtems_termios_read+0x300> <== NOT EXECUTED
sc = rtems_semaphore_obtain (tty->rawInBuf.Semaphore,
8004b1c: 29 61 00 68 lw r1,(r11+104) <== NOT EXECUTED 8004b20: 29 62 00 6c lw r2,(r11+108) <== NOT EXECUTED 8004b24: ba 20 18 00 mv r3,r17 <== NOT EXECUTED 8004b28: f8 00 05 bb calli 8006214 <rtems_semaphore_obtain> <== NOT EXECUTED
tty->rawInBufSemaphoreOptions, timeout); if (sc != RTEMS_SUCCESSFUL)
8004b2c: 44 20 ff f4 be r1,r0,8004afc <rtems_termios_read+0x2ac> <== NOT EXECUTED 8004b30: e0 00 00 08 bi 8004b50 <rtems_termios_read+0x300> <== NOT EXECUTED
sc = fillBufferQueue (tty); if (sc != RTEMS_SUCCESSFUL) tty->cindex = tty->ccount = 0; } while (count && (tty->cindex < tty->ccount)) { *buffer++ = tty->cbuf[tty->cindex++];
8004b34: 29 63 00 1c lw r3,(r11+28) <== NOT EXECUTED
count--;
8004b38: 35 ce ff ff addi r14,r14,-1 <== NOT EXECUTED
sc = fillBufferQueue (tty); if (sc != RTEMS_SUCCESSFUL) tty->cindex = tty->ccount = 0; } while (count && (tty->cindex < tty->ccount)) { *buffer++ = tty->cbuf[tty->cindex++];
8004b3c: b4 61 08 00 add r1,r3,r1 <== NOT EXECUTED 8004b40: 40 21 00 00 lbu r1,(r1+0) <== NOT EXECUTED 8004b44: 32 41 00 00 sb (r18+0),r1 <== NOT EXECUTED 8004b48: 59 62 00 24 sw (r11+36),r2 <== NOT EXECUTED 8004b4c: 36 52 00 01 addi r18,r18,1 <== NOT EXECUTED
else sc = fillBufferQueue (tty); if (sc != RTEMS_SUCCESSFUL) tty->cindex = tty->ccount = 0; } while (count && (tty->cindex < tty->ccount)) {
8004b50: 45 c0 00 05 be r14,r0,8004b64 <rtems_termios_read+0x314> <== NOT EXECUTED 8004b54: 29 61 00 24 lw r1,(r11+36) <== NOT EXECUTED 8004b58: 29 63 00 20 lw r3,(r11+32) <== NOT EXECUTED
*buffer++ = tty->cbuf[tty->cindex++];
8004b5c: 34 22 00 01 addi r2,r1,1 <== NOT EXECUTED
else sc = fillBufferQueue (tty); if (sc != RTEMS_SUCCESSFUL) tty->cindex = tty->ccount = 0; } while (count && (tty->cindex < tty->ccount)) {
8004b60: 48 61 ff f5 bg r3,r1,8004b34 <rtems_termios_read+0x2e4> <== NOT EXECUTED
*buffer++ = tty->cbuf[tty->cindex++]; count--; } args->bytes_moved = args->count - count;
8004b64: 29 82 00 14 lw r2,(r12+20) <== NOT EXECUTED
tty->tty_rcvwakeup = 0;
8004b68: 34 01 00 00 mvi r1,0 <== NOT EXECUTED 8004b6c: 59 61 00 e4 sw (r11+228),r1 <== NOT EXECUTED
} while (count && (tty->cindex < tty->ccount)) { *buffer++ = tty->cbuf[tty->cindex++]; count--; } args->bytes_moved = args->count - count;
8004b70: c8 4e 70 00 sub r14,r2,r14 <== NOT EXECUTED 8004b74: 59 8e 00 1c sw (r12+28),r14 <== NOT EXECUTED
tty->tty_rcvwakeup = 0; rtems_semaphore_release (tty->isem);
8004b78: 29 61 00 14 lw r1,(r11+20) <== NOT EXECUTED 8004b7c: f8 00 05 f6 calli 8006354 <rtems_semaphore_release> <== NOT EXECUTED
return sc; }
8004b80: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 8004b84: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8004b88: 2b 8b 00 34 lw r11,(sp+52) <== NOT EXECUTED 8004b8c: 2b 8c 00 30 lw r12,(sp+48) <== NOT EXECUTED 8004b90: 2b 8d 00 2c lw r13,(sp+44) <== NOT EXECUTED 8004b94: 2b 8e 00 28 lw r14,(sp+40) <== NOT EXECUTED 8004b98: 2b 8f 00 24 lw r15,(sp+36) <== NOT EXECUTED 8004b9c: 2b 90 00 20 lw r16,(sp+32) <== NOT EXECUTED 8004ba0: 2b 91 00 1c lw r17,(sp+28) <== NOT EXECUTED 8004ba4: 2b 92 00 18 lw r18,(sp+24) <== NOT EXECUTED 8004ba8: 2b 93 00 14 lw r19,(sp+20) <== NOT EXECUTED 8004bac: 2b 94 00 10 lw r20,(sp+16) <== NOT EXECUTED 8004bb0: 2b 95 00 0c lw r21,(sp+12) <== NOT EXECUTED 8004bb4: 2b 96 00 08 lw r22,(sp+8) <== NOT EXECUTED 8004bb8: 37 9c 00 34 addi sp,sp,52 <== NOT EXECUTED 8004bbc: c3 a0 00 00 ret <== NOT EXECUTED
08003950 <rtems_termios_refill_transmitter>: * in task-driven mode, this function is called in Tx task context * in interrupt-driven mode, this function is called in TxIRQ context */ int rtems_termios_refill_transmitter (struct rtems_termios_tty *tty) {
8003950: 37 9c ff f0 addi sp,sp,-16 <== NOT EXECUTED 8003954: 5b 8b 00 10 sw (sp+16),r11 <== NOT EXECUTED 8003958: 5b 8c 00 0c sw (sp+12),r12 <== NOT EXECUTED 800395c: 5b 8d 00 08 sw (sp+8),r13 <== NOT EXECUTED 8003960: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
int nToSend; rtems_interrupt_level level; int len; /* check for XOF/XON to send */ if ((tty->flow_ctrl & (FL_MDXOF | FL_IREQXOF | FL_ISNTXOF))
8003964: 28 22 00 b8 lw r2,(r1+184) <== NOT EXECUTED
* in task-driven mode, this function is called in Tx task context * in interrupt-driven mode, this function is called in TxIRQ context */ int rtems_termios_refill_transmitter (struct rtems_termios_tty *tty) {
8003968: b8 20 58 00 mv r11,r1 <== NOT EXECUTED
int nToSend; rtems_interrupt_level level; int len; /* check for XOF/XON to send */ if ((tty->flow_ctrl & (FL_MDXOF | FL_IREQXOF | FL_ISNTXOF))
800396c: 34 01 04 01 mvi r1,1025 <== NOT EXECUTED 8003970: 20 42 04 03 andi r2,r2,0x403 <== NOT EXECUTED 8003974: 5c 41 00 12 bne r2,r1,80039bc <rtems_termios_refill_transmitter+0x6c><== NOT EXECUTED
== (FL_MDXOF | FL_IREQXOF)) { /* XOFF should be sent now... */ (*tty->device.write)(tty->minor,
8003978: 29 64 00 a4 lw r4,(r11+164) <== NOT EXECUTED 800397c: 29 61 00 10 lw r1,(r11+16) <== NOT EXECUTED 8003980: 35 62 00 4a addi r2,r11,74 <== NOT EXECUTED 8003984: 34 03 00 01 mvi r3,1 <== NOT EXECUTED 8003988: d8 80 00 00 call r4 <== NOT EXECUTED
(void *)&(tty->termios.c_cc[VSTOP]), 1); rtems_interrupt_disable(level);
800398c: 90 00 08 00 rcsr r1,IE <== NOT EXECUTED 8003990: 34 02 ff fe mvi r2,-2 <== NOT EXECUTED 8003994: a0 22 10 00 and r2,r1,r2 <== NOT EXECUTED 8003998: d0 02 00 00 wcsr IE,r2 <== NOT EXECUTED
tty->t_dqlen--;
800399c: 29 62 00 90 lw r2,(r11+144) <== NOT EXECUTED
tty->flow_ctrl |= FL_ISNTXOF;
80039a0: 29 63 00 b8 lw r3,(r11+184) <== NOT EXECUTED
/* XOFF should be sent now... */ (*tty->device.write)(tty->minor, (void *)&(tty->termios.c_cc[VSTOP]), 1); rtems_interrupt_disable(level); tty->t_dqlen--;
80039a4: 34 42 ff ff addi r2,r2,-1 <== NOT EXECUTED
tty->flow_ctrl |= FL_ISNTXOF;
80039a8: 38 63 00 02 ori r3,r3,0x2 <== NOT EXECUTED 80039ac: 59 63 00 b8 sw (r11+184),r3 <== NOT EXECUTED
/* XOFF should be sent now... */ (*tty->device.write)(tty->minor, (void *)&(tty->termios.c_cc[VSTOP]), 1); rtems_interrupt_disable(level); tty->t_dqlen--;
80039b0: 59 62 00 90 sw (r11+144),r2 <== NOT EXECUTED
tty->flow_ctrl |= FL_ISNTXOF; rtems_interrupt_enable(level);
80039b4: d0 01 00 00 wcsr IE,r1 <== NOT EXECUTED 80039b8: e0 00 00 16 bi 8003a10 <rtems_termios_refill_transmitter+0xc0><== NOT EXECUTED
nToSend = 1; } else if ((tty->flow_ctrl & (FL_IREQXOF | FL_ISNTXOF))
80039bc: 29 62 00 b8 lw r2,(r11+184) <== NOT EXECUTED 80039c0: 34 01 00 02 mvi r1,2 <== NOT EXECUTED 80039c4: 20 42 00 03 andi r2,r2,0x3 <== NOT EXECUTED 80039c8: 5c 41 00 14 bne r2,r1,8003a18 <rtems_termios_refill_transmitter+0xc8><== NOT EXECUTED
* FIXME: this .write call will generate another * dequeue callback. This will advance the "Tail" in the data * buffer, although the corresponding data is not yet out! * Therefore the dequeue "length" should be reduced by 1 */ (*tty->device.write)(tty->minor,
80039cc: 29 64 00 a4 lw r4,(r11+164) <== NOT EXECUTED 80039d0: 29 61 00 10 lw r1,(r11+16) <== NOT EXECUTED 80039d4: 35 62 00 49 addi r2,r11,73 <== NOT EXECUTED 80039d8: 34 03 00 01 mvi r3,1 <== NOT EXECUTED 80039dc: d8 80 00 00 call r4 <== NOT EXECUTED
(void *)&(tty->termios.c_cc[VSTART]), 1); rtems_interrupt_disable(level);
80039e0: 90 00 08 00 rcsr r1,IE <== NOT EXECUTED 80039e4: 34 02 ff fe mvi r2,-2 <== NOT EXECUTED 80039e8: a0 22 10 00 and r2,r1,r2 <== NOT EXECUTED 80039ec: d0 02 00 00 wcsr IE,r2 <== NOT EXECUTED
tty->t_dqlen--;
80039f0: 29 62 00 90 lw r2,(r11+144) <== NOT EXECUTED
tty->flow_ctrl &= ~FL_ISNTXOF;
80039f4: 29 64 00 b8 lw r4,(r11+184) <== NOT EXECUTED 80039f8: 34 03 ff fd mvi r3,-3 <== NOT EXECUTED
*/ (*tty->device.write)(tty->minor, (void *)&(tty->termios.c_cc[VSTART]), 1); rtems_interrupt_disable(level); tty->t_dqlen--;
80039fc: 34 42 ff ff addi r2,r2,-1 <== NOT EXECUTED
tty->flow_ctrl &= ~FL_ISNTXOF;
8003a00: a0 83 18 00 and r3,r4,r3 <== NOT EXECUTED 8003a04: 59 63 00 b8 sw (r11+184),r3 <== NOT EXECUTED
*/ (*tty->device.write)(tty->minor, (void *)&(tty->termios.c_cc[VSTART]), 1); rtems_interrupt_disable(level); tty->t_dqlen--;
8003a08: 59 62 00 90 sw (r11+144),r2 <== NOT EXECUTED
tty->flow_ctrl &= ~FL_ISNTXOF; rtems_interrupt_enable(level);
8003a0c: d0 01 00 00 wcsr IE,r1 <== NOT EXECUTED 8003a10: 34 0c 00 01 mvi r12,1 <== NOT EXECUTED 8003a14: e0 00 00 4c bi 8003b44 <rtems_termios_refill_transmitter+0x1f4><== NOT EXECUTED
nToSend = 1; } else { if ( tty->rawOutBuf.Head == tty->rawOutBuf.Tail ) {
8003a18: 29 63 00 80 lw r3,(r11+128) <== NOT EXECUTED 8003a1c: 29 62 00 84 lw r2,(r11+132) <== NOT EXECUTED 8003a20: 5c 62 00 07 bne r3,r2,8003a3c <rtems_termios_refill_transmitter+0xec><== NOT EXECUTED
/* * buffer was empty */ if (tty->rawOutBufState == rob_wait) {
8003a24: 29 62 00 94 lw r2,(r11+148) <== NOT EXECUTED 8003a28: 34 0c 00 00 mvi r12,0 <== NOT EXECUTED 8003a2c: 5c 41 00 46 bne r2,r1,8003b44 <rtems_termios_refill_transmitter+0x1f4><== NOT EXECUTED
/* * this should never happen... */ rtems_semaphore_release (tty->rawOutBuf.Semaphore);
8003a30: 29 61 00 8c lw r1,(r11+140) <== NOT EXECUTED 8003a34: f8 00 0a 48 calli 8006354 <rtems_semaphore_release> <== NOT EXECUTED 8003a38: e0 00 00 43 bi 8003b44 <rtems_termios_refill_transmitter+0x1f4><== NOT EXECUTED
} return 0; } rtems_interrupt_disable(level);
8003a3c: 90 00 10 00 rcsr r2,IE <== NOT EXECUTED 8003a40: 34 01 ff fe mvi r1,-2 <== NOT EXECUTED 8003a44: a0 41 08 00 and r1,r2,r1 <== NOT EXECUTED 8003a48: d0 01 00 00 wcsr IE,r1 <== NOT EXECUTED
len = tty->t_dqlen; tty->t_dqlen = 0;
8003a4c: 34 01 00 00 mvi r1,0 <== NOT EXECUTED
} return 0; } rtems_interrupt_disable(level); len = tty->t_dqlen;
8003a50: 29 63 00 90 lw r3,(r11+144) <== NOT EXECUTED
tty->t_dqlen = 0;
8003a54: 59 61 00 90 sw (r11+144),r1 <== NOT EXECUTED
rtems_interrupt_enable(level);
8003a58: d0 02 00 00 wcsr IE,r2 <== NOT EXECUTED
newTail = (tty->rawOutBuf.Tail + len) % tty->rawOutBuf.Size;
8003a5c: 29 61 00 84 lw r1,(r11+132) <== NOT EXECUTED 8003a60: 29 62 00 88 lw r2,(r11+136) <== NOT EXECUTED 8003a64: b4 61 08 00 add r1,r3,r1 <== NOT EXECUTED 8003a68: f8 00 6f 3f calli 801f764 <__umodsi3> <== NOT EXECUTED
tty->rawOutBuf.Tail = newTail; if (tty->rawOutBufState == rob_wait) {
8003a6c: 29 62 00 94 lw r2,(r11+148) <== NOT EXECUTED
rtems_interrupt_disable(level); len = tty->t_dqlen; tty->t_dqlen = 0; rtems_interrupt_enable(level); newTail = (tty->rawOutBuf.Tail + len) % tty->rawOutBuf.Size;
8003a70: b8 20 68 00 mv r13,r1 <== NOT EXECUTED
tty->rawOutBuf.Tail = newTail;
8003a74: 59 61 00 84 sw (r11+132),r1 <== NOT EXECUTED
if (tty->rawOutBufState == rob_wait) {
8003a78: 34 01 00 02 mvi r1,2 <== NOT EXECUTED 8003a7c: 5c 41 00 03 bne r2,r1,8003a88 <rtems_termios_refill_transmitter+0x138><== NOT EXECUTED
/* * wake up any pending writer task */ rtems_semaphore_release (tty->rawOutBuf.Semaphore);
8003a80: 29 61 00 8c lw r1,(r11+140) <== NOT EXECUTED 8003a84: f8 00 0a 34 calli 8006354 <rtems_semaphore_release> <== NOT EXECUTED
} if (newTail == tty->rawOutBuf.Head) {
8003a88: 29 61 00 80 lw r1,(r11+128) <== NOT EXECUTED 8003a8c: 5d a1 00 0b bne r13,r1,8003ab8 <rtems_termios_refill_transmitter+0x168><== NOT EXECUTED
nToSend = 0; /* * check to see if snd wakeup callback was set */ if ( tty->tty_snd.sw_pfn != NULL) {
8003a90: 29 63 00 d4 lw r3,(r11+212) <== NOT EXECUTED
} if (newTail == tty->rawOutBuf.Head) { /* * Buffer has become empty */ tty->rawOutBufState = rob_idle;
8003a94: 34 04 00 00 mvi r4,0 <== NOT EXECUTED 8003a98: 59 64 00 94 sw (r11+148),r4 <== NOT EXECUTED
nToSend = 0; /* * check to see if snd wakeup callback was set */ if ( tty->tty_snd.sw_pfn != NULL) {
8003a9c: b8 60 60 00 mv r12,r3 <== NOT EXECUTED 8003aa0: 44 64 00 28 be r3,r4,8003b40 <rtems_termios_refill_transmitter+0x1f0><== NOT EXECUTED
(*tty->tty_snd.sw_pfn)(&tty->termios, tty->tty_snd.sw_arg);
8003aa4: 29 62 00 d8 lw r2,(r11+216) <== NOT EXECUTED 8003aa8: 35 61 00 30 addi r1,r11,48 <== NOT EXECUTED 8003aac: b8 80 60 00 mv r12,r4 <== NOT EXECUTED 8003ab0: d8 60 00 00 call r3 <== NOT EXECUTED 8003ab4: e0 00 00 23 bi 8003b40 <rtems_termios_refill_transmitter+0x1f0><== NOT EXECUTED
} } /* check, whether output should stop due to received XOFF */ else if ((tty->flow_ctrl & (FL_MDXON | FL_ORCVXOF))
8003ab8: 29 62 00 b8 lw r2,(r11+184) <== NOT EXECUTED 8003abc: 34 01 02 10 mvi r1,528 <== NOT EXECUTED 8003ac0: 20 42 02 10 andi r2,r2,0x210 <== NOT EXECUTED 8003ac4: 5c 41 00 0d bne r2,r1,8003af8 <rtems_termios_refill_transmitter+0x1a8><== NOT EXECUTED
== (FL_MDXON | FL_ORCVXOF)) { /* Buffer not empty, but output stops due to XOFF */ /* set flag, that output has been stopped */ rtems_interrupt_disable(level);
8003ac8: 90 00 08 00 rcsr r1,IE <== NOT EXECUTED 8003acc: 34 02 ff fe mvi r2,-2 <== NOT EXECUTED 8003ad0: a0 22 10 00 and r2,r1,r2 <== NOT EXECUTED 8003ad4: d0 02 00 00 wcsr IE,r2 <== NOT EXECUTED
tty->flow_ctrl |= FL_OSTOP;
8003ad8: 29 62 00 b8 lw r2,(r11+184) <== NOT EXECUTED
tty->rawOutBufState = rob_busy; /*apm*/
8003adc: 34 03 00 01 mvi r3,1 <== NOT EXECUTED 8003ae0: 59 63 00 94 sw (r11+148),r3 <== NOT EXECUTED
else if ((tty->flow_ctrl & (FL_MDXON | FL_ORCVXOF)) == (FL_MDXON | FL_ORCVXOF)) { /* Buffer not empty, but output stops due to XOFF */ /* set flag, that output has been stopped */ rtems_interrupt_disable(level); tty->flow_ctrl |= FL_OSTOP;
8003ae4: 38 42 00 20 ori r2,r2,0x20 <== NOT EXECUTED 8003ae8: 59 62 00 b8 sw (r11+184),r2 <== NOT EXECUTED
tty->rawOutBufState = rob_busy; /*apm*/ rtems_interrupt_enable(level);
8003aec: d0 01 00 00 wcsr IE,r1 <== NOT EXECUTED 8003af0: 34 0c 00 00 mvi r12,0 <== NOT EXECUTED 8003af4: e0 00 00 13 bi 8003b40 <rtems_termios_refill_transmitter+0x1f0><== NOT EXECUTED
} else { /* * Buffer not empty, start tranmitter */ if (newTail > tty->rawOutBuf.Head)
8003af8: 29 61 00 80 lw r1,(r11+128) <== NOT EXECUTED 8003afc: 50 2d 00 03 bgeu r1,r13,8003b08 <rtems_termios_refill_transmitter+0x1b8><== NOT EXECUTED
nToSend = tty->rawOutBuf.Size - newTail;
8003b00: 29 6c 00 88 lw r12,(r11+136) <== NOT EXECUTED 8003b04: e0 00 00 02 bi 8003b0c <rtems_termios_refill_transmitter+0x1bc><== NOT EXECUTED
else nToSend = tty->rawOutBuf.Head - newTail;
8003b08: 29 6c 00 80 lw r12,(r11+128) <== NOT EXECUTED
/* when flow control XON or XOF, don't send blocks of data */ /* to allow fast reaction on incoming flow ctrl and low latency*/ /* for outgoing flow control */ if (tty->flow_ctrl & (FL_MDXON | FL_MDXOF)) {
8003b0c: 29 61 00 b8 lw r1,(r11+184) <== NOT EXECUTED
* Buffer not empty, start tranmitter */ if (newTail > tty->rawOutBuf.Head) nToSend = tty->rawOutBuf.Size - newTail; else nToSend = tty->rawOutBuf.Head - newTail;
8003b10: c9 8d 60 00 sub r12,r12,r13 <== NOT EXECUTED
/* when flow control XON or XOF, don't send blocks of data */ /* to allow fast reaction on incoming flow ctrl and low latency*/ /* for outgoing flow control */ if (tty->flow_ctrl & (FL_MDXON | FL_MDXOF)) {
8003b14: 20 21 06 00 andi r1,r1,0x600 <== NOT EXECUTED 8003b18: 44 20 00 02 be r1,r0,8003b20 <rtems_termios_refill_transmitter+0x1d0><== NOT EXECUTED 8003b1c: 34 0c 00 01 mvi r12,1 <== NOT EXECUTED
nToSend = 1; } tty->rawOutBufState = rob_busy; /*apm*/ (*tty->device.write)(tty->minor,
8003b20: 29 62 00 7c lw r2,(r11+124) <== NOT EXECUTED 8003b24: 29 64 00 a4 lw r4,(r11+164) <== NOT EXECUTED 8003b28: 29 61 00 10 lw r1,(r11+16) <== NOT EXECUTED
/* to allow fast reaction on incoming flow ctrl and low latency*/ /* for outgoing flow control */ if (tty->flow_ctrl & (FL_MDXON | FL_MDXOF)) { nToSend = 1; } tty->rawOutBufState = rob_busy; /*apm*/
8003b2c: 34 03 00 01 mvi r3,1 <== NOT EXECUTED 8003b30: 59 63 00 94 sw (r11+148),r3 <== NOT EXECUTED
(*tty->device.write)(tty->minor,
8003b34: b4 4d 10 00 add r2,r2,r13 <== NOT EXECUTED 8003b38: b9 80 18 00 mv r3,r12 <== NOT EXECUTED 8003b3c: d8 80 00 00 call r4 <== NOT EXECUTED
&tty->rawOutBuf.theBuf[newTail], nToSend); } tty->rawOutBuf.Tail = newTail; /*apm*/
8003b40: 59 6d 00 84 sw (r11+132),r13 <== NOT EXECUTED
} return nToSend; }
8003b44: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 8003b48: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8003b4c: 2b 8b 00 10 lw r11,(sp+16) <== NOT EXECUTED 8003b50: 2b 8c 00 0c lw r12,(sp+12) <== NOT EXECUTED 8003b54: 2b 8d 00 08 lw r13,(sp+8) <== NOT EXECUTED 8003b58: 37 9c 00 10 addi sp,sp,16 <== NOT EXECUTED 8003b5c: c3 a0 00 00 ret <== NOT EXECUTED
08005684 <rtems_termios_rxdaemon>: /* * this task actually processes any receive events */ static rtems_task rtems_termios_rxdaemon(rtems_task_argument argument) {
8005684: 37 9c ff e0 addi sp,sp,-32 <== NOT EXECUTED 8005688: 5b 8b 00 18 sw (sp+24),r11 <== NOT EXECUTED 800568c: 5b 8c 00 14 sw (sp+20),r12 <== NOT EXECUTED 8005690: 5b 8d 00 10 sw (sp+16),r13 <== NOT EXECUTED 8005694: 5b 8e 00 0c sw (sp+12),r14 <== NOT EXECUTED 8005698: 5b 8f 00 08 sw (sp+8),r15 <== NOT EXECUTED 800569c: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
char c_buf; while (1) { /* * wait for rtems event */ rtems_event_receive((TERMIOS_RX_PROC_EVENT |
80056a0: 34 0c 00 00 mvi r12,0 <== NOT EXECUTED
/* * this task actually processes any receive events */ static rtems_task rtems_termios_rxdaemon(rtems_task_argument argument) {
80056a4: b8 20 58 00 mv r11,r1 <== NOT EXECUTED
char c_buf; while (1) { /* * wait for rtems event */ rtems_event_receive((TERMIOS_RX_PROC_EVENT |
80056a8: 37 8f 00 1c addi r15,sp,28 <== NOT EXECUTED
else { /* * do something */ c = tty->device.pollRead(tty->minor); if (c != EOF) {
80056ac: 34 0e ff ff mvi r14,-1 <== NOT EXECUTED
/* * pollRead did call enqueue on its own */ c_buf = c; rtems_termios_enqueue_raw_characters (
80056b0: 37 8d 00 23 addi r13,sp,35 <== NOT EXECUTED
char c_buf; while (1) { /* * wait for rtems event */ rtems_event_receive((TERMIOS_RX_PROC_EVENT |
80056b4: b9 e0 20 00 mv r4,r15 <== NOT EXECUTED 80056b8: 34 02 00 02 mvi r2,2 <== NOT EXECUTED 80056bc: 34 03 00 00 mvi r3,0 <== NOT EXECUTED 80056c0: 34 01 00 03 mvi r1,3 <== NOT EXECUTED 80056c4: f8 00 01 19 calli 8005b28 <rtems_event_receive> <== NOT EXECUTED
TERMIOS_RX_TERMINATE_EVENT), RTEMS_EVENT_ANY | RTEMS_WAIT, RTEMS_NO_TIMEOUT, &the_event); if ((the_event & TERMIOS_RX_TERMINATE_EVENT) != 0) {
80056c8: 2b 81 00 1c lw r1,(sp+28) <== NOT EXECUTED 80056cc: 20 21 00 01 andi r1,r1,0x1 <== NOT EXECUTED 80056d0: 44 20 00 05 be r1,r0,80056e4 <rtems_termios_rxdaemon+0x60> <== NOT EXECUTED
tty->rxTaskId = 0;
80056d4: 59 6c 00 c4 sw (r11+196),r12 <== NOT EXECUTED
rtems_task_delete(RTEMS_SELF);
80056d8: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 80056dc: f8 00 03 c4 calli 80065ec <rtems_task_delete> <== NOT EXECUTED 80056e0: e3 ff ff f5 bi 80056b4 <rtems_termios_rxdaemon+0x30> <== NOT EXECUTED
} else { /* * do something */ c = tty->device.pollRead(tty->minor);
80056e4: 29 62 00 a0 lw r2,(r11+160) <== NOT EXECUTED 80056e8: 29 61 00 10 lw r1,(r11+16) <== NOT EXECUTED 80056ec: d8 40 00 00 call r2 <== NOT EXECUTED 80056f0: b8 20 28 00 mv r5,r1 <== NOT EXECUTED
if (c != EOF) { /* * pollRead did call enqueue on its own */ c_buf = c; rtems_termios_enqueue_raw_characters (
80056f4: b9 a0 10 00 mv r2,r13 <== NOT EXECUTED 80056f8: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 80056fc: 34 03 00 01 mvi r3,1 <== NOT EXECUTED
else { /* * do something */ c = tty->device.pollRead(tty->minor); if (c != EOF) {
8005700: 44 ae ff ed be r5,r14,80056b4 <rtems_termios_rxdaemon+0x30><== NOT EXECUTED
/* * pollRead did call enqueue on its own */ c_buf = c;
8005704: 33 85 00 23 sb (sp+35),r5 <== NOT EXECUTED
rtems_termios_enqueue_raw_characters (
8005708: fb ff f9 32 calli 8003bd0 <rtems_termios_enqueue_raw_characters><== NOT EXECUTED 800570c: e3 ff ff ea bi 80056b4 <rtems_termios_rxdaemon+0x30> <== NOT EXECUTED
08003930 <rtems_termios_rxirq_occured>: * signal receive interrupt to rx daemon * NOTE: This routine runs in the context of the * device receive interrupt handler. */ void rtems_termios_rxirq_occured(struct rtems_termios_tty *tty) {
8003930: 37 9c ff fc addi sp,sp,-4 <== NOT EXECUTED 8003934: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
/* * send event to rx daemon task */ rtems_event_send(tty->rxTaskId,TERMIOS_RX_PROC_EVENT);
8003938: 28 21 00 c4 lw r1,(r1+196) <== NOT EXECUTED 800393c: 34 02 00 02 mvi r2,2 <== NOT EXECUTED 8003940: f8 00 08 e1 calli 8005cc4 <rtems_event_send> <== NOT EXECUTED
}
8003944: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8003948: 37 9c 00 04 addi sp,sp,4 <== NOT EXECUTED 800394c: c3 a0 00 00 ret <== NOT EXECUTED
080055f8 <rtems_termios_txdaemon>: /* * this task actually processes any transmit events */ static rtems_task rtems_termios_txdaemon(rtems_task_argument argument) {
80055f8: 37 9c ff e8 addi sp,sp,-24 <== NOT EXECUTED 80055fc: 5b 8b 00 14 sw (sp+20),r11 <== NOT EXECUTED 8005600: 5b 8c 00 10 sw (sp+16),r12 <== NOT EXECUTED 8005604: 5b 8d 00 0c sw (sp+12),r13 <== NOT EXECUTED 8005608: 5b 8e 00 08 sw (sp+8),r14 <== NOT EXECUTED 800560c: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
} else { /* * call any line discipline start function */ if (rtems_termios_linesw[tty->t_line].l_start != NULL) {
8005610: 78 0c 08 02 mvhi r12,0x802 <== NOT EXECUTED
/* * this task actually processes any transmit events */ static rtems_task rtems_termios_txdaemon(rtems_task_argument argument) {
8005614: b8 20 58 00 mv r11,r1 <== NOT EXECUTED
} else { /* * call any line discipline start function */ if (rtems_termios_linesw[tty->t_line].l_start != NULL) {
8005618: 39 8c 37 7c ori r12,r12,0x377c <== NOT EXECUTED
while (1) { /* * wait for rtems event */ rtems_event_receive((TERMIOS_TX_START_EVENT |
800561c: 34 0d 00 00 mvi r13,0 <== NOT EXECUTED 8005620: 34 02 00 02 mvi r2,2 <== NOT EXECUTED 8005624: 34 03 00 00 mvi r3,0 <== NOT EXECUTED 8005628: 37 84 00 18 addi r4,sp,24 <== NOT EXECUTED 800562c: 34 01 00 03 mvi r1,3 <== NOT EXECUTED 8005630: f8 00 01 3e calli 8005b28 <rtems_event_receive> <== NOT EXECUTED
TERMIOS_TX_TERMINATE_EVENT), RTEMS_EVENT_ANY | RTEMS_WAIT, RTEMS_NO_TIMEOUT, &the_event); if ((the_event & TERMIOS_TX_TERMINATE_EVENT) != 0) {
8005634: 2b 8e 00 18 lw r14,(sp+24) <== NOT EXECUTED
} else { /* * call any line discipline start function */ if (rtems_termios_linesw[tty->t_line].l_start != NULL) {
8005638: 34 02 00 04 mvi r2,4 <== NOT EXECUTED
rtems_event_receive((TERMIOS_TX_START_EVENT | TERMIOS_TX_TERMINATE_EVENT), RTEMS_EVENT_ANY | RTEMS_WAIT, RTEMS_NO_TIMEOUT, &the_event); if ((the_event & TERMIOS_TX_TERMINATE_EVENT) != 0) {
800563c: 21 ce 00 01 andi r14,r14,0x1 <== NOT EXECUTED 8005640: 45 c0 00 05 be r14,r0,8005654 <rtems_termios_txdaemon+0x5c><== NOT EXECUTED
tty->txTaskId = 0;
8005644: 59 6d 00 c8 sw (r11+200),r13 <== NOT EXECUTED
rtems_task_delete(RTEMS_SELF);
8005648: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 800564c: f8 00 03 e8 calli 80065ec <rtems_task_delete> <== NOT EXECUTED 8005650: e3 ff ff f4 bi 8005620 <rtems_termios_txdaemon+0x28> <== NOT EXECUTED
} else { /* * call any line discipline start function */ if (rtems_termios_linesw[tty->t_line].l_start != NULL) {
8005654: 29 61 00 cc lw r1,(r11+204) <== NOT EXECUTED 8005658: b4 21 08 00 add r1,r1,r1 <== NOT EXECUTED 800565c: 34 21 00 01 addi r1,r1,1 <== NOT EXECUTED 8005660: fb ff ef 66 calli 80013f8 <__ashlsi3> <== NOT EXECUTED 8005664: b5 81 08 00 add r1,r12,r1 <== NOT EXECUTED 8005668: 28 22 00 04 lw r2,(r1+4) <== NOT EXECUTED
rtems_termios_linesw[tty->t_line].l_start(tty);
800566c: b9 60 08 00 mv r1,r11 <== NOT EXECUTED
} else { /* * call any line discipline start function */ if (rtems_termios_linesw[tty->t_line].l_start != NULL) {
8005670: 44 4e 00 02 be r2,r14,8005678 <rtems_termios_txdaemon+0x80><== NOT EXECUTED
rtems_termios_linesw[tty->t_line].l_start(tty);
8005674: d8 40 00 00 call r2 <== NOT EXECUTED
} /* * try to push further characters to device */ rtems_termios_refill_transmitter(tty);
8005678: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 800567c: fb ff f8 b5 calli 8003950 <rtems_termios_refill_transmitter><== NOT EXECUTED 8005680: e3 ff ff e8 bi 8005620 <rtems_termios_txdaemon+0x28> <== NOT EXECUTED
080046c8 <rtems_termios_write>: rtems_termios_puts (&c, 1, tty); } rtems_status_code rtems_termios_write (void *arg) {
80046c8: 37 9c ff e8 addi sp,sp,-24 <== NOT EXECUTED 80046cc: 5b 8b 00 18 sw (sp+24),r11 <== NOT EXECUTED 80046d0: 5b 8c 00 14 sw (sp+20),r12 <== NOT EXECUTED 80046d4: 5b 8d 00 10 sw (sp+16),r13 <== NOT EXECUTED 80046d8: 5b 8e 00 0c sw (sp+12),r14 <== NOT EXECUTED 80046dc: 5b 8f 00 08 sw (sp+8),r15 <== NOT EXECUTED 80046e0: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED 80046e4: b8 20 60 00 mv r12,r1 <== NOT EXECUTED
rtems_libio_rw_args_t *args = arg; struct rtems_termios_tty *tty = args->iop->data1;
80046e8: 28 21 00 00 lw r1,(r1+0) <== NOT EXECUTED
rtems_status_code sc; sc = rtems_semaphore_obtain (tty->osem, RTEMS_WAIT, RTEMS_NO_TIMEOUT);
80046ec: 34 02 00 00 mvi r2,0 <== NOT EXECUTED 80046f0: b8 40 18 00 mv r3,r2 <== NOT EXECUTED
rtems_status_code rtems_termios_write (void *arg) { rtems_libio_rw_args_t *args = arg; struct rtems_termios_tty *tty = args->iop->data1;
80046f4: 28 2b 00 38 lw r11,(r1+56) <== NOT EXECUTED
rtems_status_code sc; sc = rtems_semaphore_obtain (tty->osem, RTEMS_WAIT, RTEMS_NO_TIMEOUT);
80046f8: 29 61 00 18 lw r1,(r11+24) <== NOT EXECUTED 80046fc: f8 00 06 c6 calli 8006214 <rtems_semaphore_obtain> <== NOT EXECUTED 8004700: b8 20 68 00 mv r13,r1 <== NOT EXECUTED
if (sc != RTEMS_SUCCESSFUL)
8004704: 5c 20 00 26 bne r1,r0,800479c <rtems_termios_write+0xd4> <== NOT EXECUTED
return sc; if (rtems_termios_linesw[tty->t_line].l_write != NULL) {
8004708: 29 61 00 cc lw r1,(r11+204) <== NOT EXECUTED 800470c: 34 02 00 02 mvi r2,2 <== NOT EXECUTED 8004710: 78 0e 08 02 mvhi r14,0x802 <== NOT EXECUTED 8004714: fb ff f3 39 calli 80013f8 <__ashlsi3> <== NOT EXECUTED 8004718: 34 21 00 01 addi r1,r1,1 <== NOT EXECUTED 800471c: 34 02 00 03 mvi r2,3 <== NOT EXECUTED 8004720: fb ff f3 36 calli 80013f8 <__ashlsi3> <== NOT EXECUTED 8004724: 39 ce 37 7c ori r14,r14,0x377c <== NOT EXECUTED 8004728: b5 c1 08 00 add r1,r14,r1 <== NOT EXECUTED 800472c: 28 23 00 04 lw r3,(r1+4) <== NOT EXECUTED 8004730: 44 6d 00 06 be r3,r13,8004748 <rtems_termios_write+0x80> <== NOT EXECUTED
sc = rtems_termios_linesw[tty->t_line].l_write(tty,args);
8004734: b9 80 10 00 mv r2,r12 <== NOT EXECUTED 8004738: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 800473c: d8 60 00 00 call r3 <== NOT EXECUTED 8004740: b8 20 68 00 mv r13,r1 <== NOT EXECUTED 8004744: e0 00 00 14 bi 8004794 <rtems_termios_write+0xcc> <== NOT EXECUTED
rtems_semaphore_release (tty->osem); return sc; } if (tty->termios.c_oflag & OPOST) {
8004748: 29 63 00 34 lw r3,(r11+52) <== NOT EXECUTED 800474c: 29 82 00 14 lw r2,(r12+20) <== NOT EXECUTED 8004750: 29 81 00 10 lw r1,(r12+16) <== NOT EXECUTED 8004754: 20 63 00 01 andi r3,r3,0x1 <== NOT EXECUTED
uint32_t count = args->count;
8004758: b8 40 78 00 mv r15,r2 <== NOT EXECUTED
char *buffer = args->buffer;
800475c: b8 20 70 00 mv r14,r1 <== NOT EXECUTED
if (rtems_termios_linesw[tty->t_line].l_write != NULL) { sc = rtems_termios_linesw[tty->t_line].l_write(tty,args); rtems_semaphore_release (tty->osem); return sc; } if (tty->termios.c_oflag & OPOST) {
8004760: 5c 60 00 06 bne r3,r0,8004778 <rtems_termios_write+0xb0> <== NOT EXECUTED 8004764: e0 00 00 08 bi 8004784 <rtems_termios_write+0xbc> <== NOT EXECUTED
uint32_t count = args->count; char *buffer = args->buffer; while (count--) oproc (*buffer++, tty);
8004768: 41 c1 00 00 lbu r1,(r14+0) <== NOT EXECUTED 800476c: 35 ef ff ff addi r15,r15,-1 <== NOT EXECUTED 8004770: 35 ce 00 01 addi r14,r14,1 <== NOT EXECUTED 8004774: fb ff fe 3b calli 8004060 <oproc> <== NOT EXECUTED 8004778: b9 60 10 00 mv r2,r11 <== NOT EXECUTED
return sc; } if (tty->termios.c_oflag & OPOST) { uint32_t count = args->count; char *buffer = args->buffer; while (count--)
800477c: 5d e0 ff fb bne r15,r0,8004768 <rtems_termios_write+0xa0> <== NOT EXECUTED 8004780: e0 00 00 03 bi 800478c <rtems_termios_write+0xc4> <== NOT EXECUTED
oproc (*buffer++, tty); args->bytes_moved = args->count; } else { rtems_termios_puts (args->buffer, args->count, tty);
8004784: b9 60 18 00 mv r3,r11 <== NOT EXECUTED 8004788: fb ff fd e0 calli 8003f08 <rtems_termios_puts> <== NOT EXECUTED
args->bytes_moved = args->count;
800478c: 29 81 00 14 lw r1,(r12+20) <== NOT EXECUTED 8004790: 59 81 00 1c sw (r12+28),r1 <== NOT EXECUTED
} rtems_semaphore_release (tty->osem);
8004794: 29 61 00 18 lw r1,(r11+24) <== NOT EXECUTED 8004798: f8 00 06 ef calli 8006354 <rtems_semaphore_release> <== NOT EXECUTED
return sc; }
800479c: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 80047a0: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 80047a4: 2b 8b 00 18 lw r11,(sp+24) <== NOT EXECUTED 80047a8: 2b 8c 00 14 lw r12,(sp+20) <== NOT EXECUTED 80047ac: 2b 8d 00 10 lw r13,(sp+16) <== NOT EXECUTED 80047b0: 2b 8e 00 0c lw r14,(sp+12) <== NOT EXECUTED 80047b4: 2b 8f 00 08 lw r15,(sp+8) <== NOT EXECUTED 80047b8: 37 9c 00 18 addi sp,sp,24 <== NOT EXECUTED 80047bc: c3 a0 00 00 ret <== NOT EXECUTED
08013728 <rtems_timer_cancel>: */ rtems_status_code rtems_timer_cancel( rtems_id id ) {
8013728: 37 9c ff f8 addi sp,sp,-8 801372c: 5b 9d 00 04 sw (sp+4),ra 8013730: b8 20 10 00 mv r2,r1
RTEMS_INLINE_ROUTINE Timer_Control *_Timer_Get ( Objects_Id id, Objects_Locations *location ) { return (Timer_Control *)
8013734: 78 01 08 03 mvhi r1,0x803 8013738: 37 83 00 08 addi r3,sp,8 801373c: 38 21 de 78 ori r1,r1,0xde78 8013740: f8 00 0d b6 calli 8016e18 <_Objects_Get>
Timer_Control *the_timer; Objects_Locations location; the_timer = _Timer_Get( id, &location ); switch ( location ) {
8013744: 2b 83 00 08 lw r3,(sp+8) 8013748: 34 02 00 04 mvi r2,4
801374c: 5c 60 00 07 bne r3,r0,8013768 <rtems_timer_cancel+0x40> case OBJECTS_LOCAL: if ( !_Timer_Is_dormant_class( the_timer->the_class ) )
8013750: 28 23 00 38 lw r3,(r1+56)
8013754: 44 62 00 03 be r3,r2,8013760 <rtems_timer_cancel+0x38> <== NEVER TAKEN
(void) _Watchdog_Remove( &the_timer->Ticker );
8013758: 34 21 00 10 addi r1,r1,16 801375c: f8 00 17 6d calli 8019510 <_Watchdog_Remove>
_Thread_Enable_dispatch();
8013760: f8 00 10 92 calli 80179a8 <_Thread_Enable_dispatch> 8013764: 34 02 00 00 mvi r2,0
case OBJECTS_ERROR: break; } return RTEMS_INVALID_ID; }
8013768: b8 40 08 00 mv r1,r2 801376c: 2b 9d 00 04 lw ra,(sp+4) 8013770: 37 9c 00 08 addi sp,sp,8 8013774: c3 a0 00 00 ret
08013d68 <rtems_timer_server_fire_when>: rtems_id id, rtems_time_of_day *wall_time, rtems_timer_service_routine_entry routine, void *user_data ) {
8013d68: 37 9c ff d8 addi sp,sp,-40 8013d6c: 5b 8b 00 24 sw (sp+36),r11 8013d70: 5b 8c 00 20 sw (sp+32),r12 8013d74: 5b 8d 00 1c sw (sp+28),r13 8013d78: 5b 8e 00 18 sw (sp+24),r14 8013d7c: 5b 8f 00 14 sw (sp+20),r15 8013d80: 5b 90 00 10 sw (sp+16),r16 8013d84: 5b 91 00 0c sw (sp+12),r17 8013d88: 5b 92 00 08 sw (sp+8),r18 8013d8c: 5b 9d 00 04 sw (sp+4),ra
Timer_Control *the_timer; Objects_Locations location; rtems_interval seconds; Timer_server_Control *timer_server = _Timer_server;
8013d90: 78 05 08 03 mvhi r5,0x803 8013d94: 38 a5 de b8 ori r5,r5,0xdeb8 8013d98: 28 ae 00 00 lw r14,(r5+0)
rtems_id id, rtems_time_of_day *wall_time, rtems_timer_service_routine_entry routine, void *user_data ) {
8013d9c: b8 20 88 00 mv r17,r1 8013da0: b8 40 58 00 mv r11,r2 8013da4: b8 60 78 00 mv r15,r3 8013da8: b8 80 90 00 mv r18,r4
Timer_Control *the_timer; Objects_Locations location; rtems_interval seconds; Timer_server_Control *timer_server = _Timer_server; if ( !timer_server )
8013dac: 34 05 00 0e mvi r5,14
8013db0: 45 c0 00 2e be r14,r0,8013e68 <rtems_timer_server_fire_when+0x100> return RTEMS_INCORRECT_STATE; if ( !_TOD_Is_set )
8013db4: 78 05 08 03 mvhi r5,0x803 8013db8: 38 a5 dc 40 ori r5,r5,0xdc40 8013dbc: 40 a1 00 00 lbu r1,(r5+0) 8013dc0: 34 05 00 0b mvi r5,11
8013dc4: 44 20 00 29 be r1,r0,8013e68 <rtems_timer_server_fire_when+0x100><== NEVER TAKEN
return RTEMS_NOT_DEFINED; if ( !routine )
8013dc8: 34 05 00 09 mvi r5,9
8013dcc: 44 60 00 27 be r3,r0,8013e68 <rtems_timer_server_fire_when+0x100> return RTEMS_INVALID_ADDRESS; if ( !_TOD_Validate( wall_time ) )
8013dd0: b8 40 08 00 mv r1,r2 8013dd4: fb ff f1 58 calli 8010334 <_TOD_Validate>
8013dd8: 44 20 00 23 be r1,r0,8013e64 <rtems_timer_server_fire_when+0xfc> return RTEMS_INVALID_CLOCK; seconds = _TOD_To_seconds( wall_time ); if ( seconds <= _TOD_Seconds_since_epoch() )
8013ddc: 78 0c 08 03 mvhi r12,0x803
return RTEMS_INVALID_ADDRESS; if ( !_TOD_Validate( wall_time ) ) return RTEMS_INVALID_CLOCK; seconds = _TOD_To_seconds( wall_time );
8013de0: b9 60 08 00 mv r1,r11 8013de4: fb ff f1 14 calli 8010234 <_TOD_To_seconds>
if ( seconds <= _TOD_Seconds_since_epoch() )
8013de8: 39 8c dc bc ori r12,r12,0xdcbc
return RTEMS_INVALID_ADDRESS; if ( !_TOD_Validate( wall_time ) ) return RTEMS_INVALID_CLOCK; seconds = _TOD_To_seconds( wall_time );
8013dec: b8 20 80 00 mv r16,r1
if ( seconds <= _TOD_Seconds_since_epoch() )
8013df0: 29 81 00 00 lw r1,(r12+0)
8013df4: 50 30 00 1c bgeu r1,r16,8013e64 <rtems_timer_server_fire_when+0xfc>
8013df8: 78 01 08 03 mvhi r1,0x803 8013dfc: 38 21 de 78 ori r1,r1,0xde78 8013e00: ba 20 10 00 mv r2,r17 8013e04: 37 83 00 28 addi r3,sp,40 8013e08: f8 00 0c 04 calli 8016e18 <_Objects_Get>
return RTEMS_INVALID_CLOCK; the_timer = _Timer_Get( id, &location ); switch ( location ) {
8013e0c: 2b 8d 00 28 lw r13,(sp+40) 8013e10: b8 20 58 00 mv r11,r1 8013e14: 34 05 00 04 mvi r5,4
8013e18: 5d a0 00 14 bne r13,r0,8013e68 <rtems_timer_server_fire_when+0x100> case OBJECTS_LOCAL: (void) _Watchdog_Remove( &the_timer->Ticker );
8013e1c: 34 21 00 10 addi r1,r1,16 8013e20: f8 00 15 bc calli 8019510 <_Watchdog_Remove>
void *user_data ) { the_watchdog->state = WATCHDOG_INACTIVE; the_watchdog->routine = routine; the_watchdog->id = id;
8013e24: 59 71 00 30 sw (r11+48),r17
the_timer->the_class = TIMER_TIME_OF_DAY_ON_TASK; _Watchdog_Initialize( &the_timer->Ticker, routine, id, user_data ); the_timer->Ticker.initial = seconds - _TOD_Seconds_since_epoch();
8013e28: 29 81 00 00 lw r1,(r12+0)
(*timer_server->schedule_operation)( timer_server, the_timer );
8013e2c: 29 c3 00 04 lw r3,(r14+4) 8013e30: b9 60 10 00 mv r2,r11
case OBJECTS_LOCAL: (void) _Watchdog_Remove( &the_timer->Ticker ); the_timer->the_class = TIMER_TIME_OF_DAY_ON_TASK; _Watchdog_Initialize( &the_timer->Ticker, routine, id, user_data ); the_timer->Ticker.initial = seconds - _TOD_Seconds_since_epoch();
8013e34: ca 01 80 00 sub r16,r16,r1
the_timer = _Timer_Get( id, &location ); switch ( location ) { case OBJECTS_LOCAL: (void) _Watchdog_Remove( &the_timer->Ticker ); the_timer->the_class = TIMER_TIME_OF_DAY_ON_TASK;
8013e38: 34 01 00 03 mvi r1,3 8013e3c: 59 61 00 38 sw (r11+56),r1
Objects_Id id, void *user_data ) { the_watchdog->state = WATCHDOG_INACTIVE; the_watchdog->routine = routine;
8013e40: 59 6f 00 2c sw (r11+44),r15
_Watchdog_Initialize( &the_timer->Ticker, routine, id, user_data ); the_timer->Ticker.initial = seconds - _TOD_Seconds_since_epoch(); (*timer_server->schedule_operation)( timer_server, the_timer );
8013e44: b9 c0 08 00 mv r1,r14
the_watchdog->id = id; the_watchdog->user_data = user_data;
8013e48: 59 72 00 34 sw (r11+52),r18
case OBJECTS_LOCAL: (void) _Watchdog_Remove( &the_timer->Ticker ); the_timer->the_class = TIMER_TIME_OF_DAY_ON_TASK; _Watchdog_Initialize( &the_timer->Ticker, routine, id, user_data ); the_timer->Ticker.initial = seconds - _TOD_Seconds_since_epoch();
8013e4c: 59 70 00 1c sw (r11+28),r16
Watchdog_Service_routine_entry routine, Objects_Id id, void *user_data ) { the_watchdog->state = WATCHDOG_INACTIVE;
8013e50: 59 6d 00 18 sw (r11+24),r13
(*timer_server->schedule_operation)( timer_server, the_timer );
8013e54: d8 60 00 00 call r3
_Thread_Enable_dispatch();
8013e58: f8 00 0e d4 calli 80179a8 <_Thread_Enable_dispatch> 8013e5c: b9 a0 28 00 mv r5,r13
return RTEMS_SUCCESSFUL;
8013e60: e0 00 00 02 bi 8013e68 <rtems_timer_server_fire_when+0x100> 8013e64: 34 05 00 14 mvi r5,20
case OBJECTS_ERROR: break; } return RTEMS_INVALID_ID; }
8013e68: b8 a0 08 00 mv r1,r5 8013e6c: 2b 9d 00 04 lw ra,(sp+4) 8013e70: 2b 8b 00 24 lw r11,(sp+36) 8013e74: 2b 8c 00 20 lw r12,(sp+32) 8013e78: 2b 8d 00 1c lw r13,(sp+28) 8013e7c: 2b 8e 00 18 lw r14,(sp+24) 8013e80: 2b 8f 00 14 lw r15,(sp+20) 8013e84: 2b 90 00 10 lw r16,(sp+16) 8013e88: 2b 91 00 0c lw r17,(sp+12) 8013e8c: 2b 92 00 08 lw r18,(sp+8) 8013e90: 37 9c 00 28 addi sp,sp,40 8013e94: c3 a0 00 00 ret
08006a44 <rtems_verror>: static int rtems_verror( rtems_error_code_t error_flag, const char *printf_format, va_list arglist ) {
8006a44: 37 9c ff e0 addi sp,sp,-32 <== NOT EXECUTED 8006a48: 5b 8b 00 20 sw (sp+32),r11 <== NOT EXECUTED 8006a4c: 5b 8c 00 1c sw (sp+28),r12 <== NOT EXECUTED 8006a50: 5b 8d 00 18 sw (sp+24),r13 <== NOT EXECUTED 8006a54: 5b 8e 00 14 sw (sp+20),r14 <== NOT EXECUTED 8006a58: 5b 8f 00 10 sw (sp+16),r15 <== NOT EXECUTED 8006a5c: 5b 90 00 0c sw (sp+12),r16 <== NOT EXECUTED 8006a60: 5b 91 00 08 sw (sp+8),r17 <== NOT EXECUTED 8006a64: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
int local_errno = 0; int chars_written = 0; rtems_status_code status; if (error_flag & RTEMS_ERROR_PANIC)
8006a68: 78 0f 20 00 mvhi r15,0x2000 <== NOT EXECUTED 8006a6c: 39 ef 00 00 ori r15,r15,0x0 <== NOT EXECUTED 8006a70: a0 2f 78 00 and r15,r1,r15 <== NOT EXECUTED
static int rtems_verror( rtems_error_code_t error_flag, const char *printf_format, va_list arglist ) {
8006a74: b8 20 70 00 mv r14,r1 <== NOT EXECUTED 8006a78: b8 40 88 00 mv r17,r2 <== NOT EXECUTED 8006a7c: b8 60 60 00 mv r12,r3 <== NOT EXECUTED
int local_errno = 0; int chars_written = 0; rtems_status_code status; if (error_flag & RTEMS_ERROR_PANIC)
8006a80: 45 e0 00 11 be r15,r0,8006ac4 <rtems_verror+0x80> <== NOT EXECUTED
{ if (rtems_panic_in_progress++)
8006a84: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 8006a88: 38 84 98 1c ori r4,r4,0x981c <== NOT EXECUTED 8006a8c: 28 81 00 00 lw r1,(r4+0) <== NOT EXECUTED 8006a90: 34 22 00 01 addi r2,r1,1 <== NOT EXECUTED 8006a94: 58 82 00 00 sw (r4+0),r2 <== NOT EXECUTED 8006a98: 44 20 00 06 be r1,r0,8006ab0 <rtems_verror+0x6c> <== NOT EXECUTED
rtems_fatal_error_occurred( 99 ); } } #endif _Thread_Dispatch_disable_level += 1;
8006a9c: 78 04 08 02 mvhi r4,0x802 <== NOT EXECUTED 8006aa0: 38 84 99 b4 ori r4,r4,0x99b4 <== NOT EXECUTED 8006aa4: 28 81 00 00 lw r1,(r4+0) <== NOT EXECUTED 8006aa8: 34 21 00 01 addi r1,r1,1 <== NOT EXECUTED 8006aac: 58 81 00 00 sw (r4+0),r1 <== NOT EXECUTED
_Thread_Disable_dispatch(); /* disable task switches */ /* don't aggravate things */ if (rtems_panic_in_progress > 2)
8006ab0: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8006ab4: 38 21 98 1c ori r1,r1,0x981c <== NOT EXECUTED 8006ab8: 28 22 00 00 lw r2,(r1+0) <== NOT EXECUTED 8006abc: 34 01 00 02 mvi r1,2 <== NOT EXECUTED 8006ac0: 48 41 00 59 bg r2,r1,8006c24 <rtems_verror+0x1e0> <== NOT EXECUTED
return 0; } (void) fflush(stdout); /* in case stdout/stderr same */
8006ac4: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8006ac8: 38 21 91 e8 ori r1,r1,0x91e8 <== NOT EXECUTED 8006acc: 28 21 00 00 lw r1,(r1+0) <== NOT EXECUTED 8006ad0: 28 21 00 08 lw r1,(r1+8) <== NOT EXECUTED 8006ad4: f8 00 32 53 calli 8013420 <fflush> <== NOT EXECUTED
status = error_flag & ~RTEMS_ERROR_MASK; if (error_flag & RTEMS_ERROR_ERRNO) /* include errno? */
8006ad8: 78 04 40 00 mvhi r4,0x4000 <== NOT EXECUTED 8006adc: 38 84 00 00 ori r4,r4,0x0 <== NOT EXECUTED
return 0; } (void) fflush(stdout); /* in case stdout/stderr same */ status = error_flag & ~RTEMS_ERROR_MASK;
8006ae0: 78 01 8f ff mvhi r1,0x8fff <== NOT EXECUTED 8006ae4: 38 21 ff ff ori r1,r1,0xffff <== NOT EXECUTED
if (error_flag & RTEMS_ERROR_ERRNO) /* include errno? */
8006ae8: a1 c4 20 00 and r4,r14,r4 <== NOT EXECUTED
return 0; } (void) fflush(stdout); /* in case stdout/stderr same */ status = error_flag & ~RTEMS_ERROR_MASK;
8006aec: a1 c1 80 00 and r16,r14,r1 <== NOT EXECUTED
if (error_flag & RTEMS_ERROR_ERRNO) /* include errno? */
8006af0: b8 80 58 00 mv r11,r4 <== NOT EXECUTED 8006af4: 44 80 00 03 be r4,r0,8006b00 <rtems_verror+0xbc> <== NOT EXECUTED
local_errno = errno;
8006af8: f8 00 31 3a calli 8012fe0 <__errno> <== NOT EXECUTED 8006afc: 28 2b 00 00 lw r11,(r1+0) <== NOT EXECUTED
#if defined(RTEMS_MULTIPROCESSING) if (_System_state_Is_multiprocessing) fprintf(stderr, "[%" PRIu32 "] ", _Configuration_MP_table->node); #endif chars_written += vfprintf(stderr, printf_format, arglist);
8006b00: 78 0d 08 02 mvhi r13,0x802 <== NOT EXECUTED 8006b04: 39 ad 91 e8 ori r13,r13,0x91e8 <== NOT EXECUTED 8006b08: 29 a1 00 00 lw r1,(r13+0) <== NOT EXECUTED 8006b0c: b9 80 18 00 mv r3,r12 <== NOT EXECUTED 8006b10: ba 20 10 00 mv r2,r17 <== NOT EXECUTED 8006b14: 28 21 00 0c lw r1,(r1+12) <== NOT EXECUTED 8006b18: f8 00 48 a9 calli 8018dbc <vfprintf> <== NOT EXECUTED 8006b1c: b8 20 60 00 mv r12,r1 <== NOT EXECUTED
if (status)
8006b20: 46 00 00 0b be r16,r0,8006b4c <rtems_verror+0x108> <== NOT EXECUTED
chars_written += fprintf(stderr, " (status: %s)", rtems_status_text(status));
8006b24: 29 a2 00 00 lw r2,(r13+0) <== NOT EXECUTED 8006b28: ba 00 08 00 mv r1,r16 <== NOT EXECUTED 8006b2c: 28 4d 00 0c lw r13,(r2+12) <== NOT EXECUTED 8006b30: fb ff ff bc calli 8006a20 <rtems_status_text> <== NOT EXECUTED 8006b34: 78 02 08 02 mvhi r2,0x802 <== NOT EXECUTED 8006b38: b8 20 18 00 mv r3,r1 <== NOT EXECUTED 8006b3c: 38 42 60 70 ori r2,r2,0x6070 <== NOT EXECUTED 8006b40: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 8006b44: f8 00 33 44 calli 8013854 <fprintf> <== NOT EXECUTED 8006b48: b5 81 60 00 add r12,r12,r1 <== NOT EXECUTED
if (local_errno)
8006b4c: 45 60 00 1a be r11,r0,8006bb4 <rtems_verror+0x170> <== NOT EXECUTED
{ if ((local_errno > 0) && *strerror(local_errno))
8006b50: 4c 0b 00 10 bge r0,r11,8006b90 <rtems_verror+0x14c> <== NOT EXECUTED 8006b54: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8006b58: f8 00 37 12 calli 80147a0 <strerror> <== NOT EXECUTED 8006b5c: 40 21 00 00 lbu r1,(r1+0) <== NOT EXECUTED 8006b60: 44 20 00 0c be r1,r0,8006b90 <rtems_verror+0x14c> <== NOT EXECUTED
chars_written += fprintf(stderr, " (errno: %s)", strerror(local_errno));
8006b64: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8006b68: 38 21 91 e8 ori r1,r1,0x91e8 <== NOT EXECUTED 8006b6c: 28 22 00 00 lw r2,(r1+0) <== NOT EXECUTED 8006b70: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8006b74: 28 4d 00 0c lw r13,(r2+12) <== NOT EXECUTED 8006b78: f8 00 37 0a calli 80147a0 <strerror> <== NOT EXECUTED 8006b7c: 78 02 08 02 mvhi r2,0x802 <== NOT EXECUTED 8006b80: b8 20 18 00 mv r3,r1 <== NOT EXECUTED 8006b84: 38 42 60 80 ori r2,r2,0x6080 <== NOT EXECUTED 8006b88: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 8006b8c: e0 00 00 08 bi 8006bac <rtems_verror+0x168> <== NOT EXECUTED
else chars_written += fprintf(stderr, " (unknown errno=%d)", local_errno);
8006b90: 78 01 08 02 mvhi r1,0x802 <== NOT EXECUTED 8006b94: 38 21 91 e8 ori r1,r1,0x91e8 <== NOT EXECUTED 8006b98: 28 21 00 00 lw r1,(r1+0) <== NOT EXECUTED 8006b9c: 78 02 08 02 mvhi r2,0x802 <== NOT EXECUTED 8006ba0: 38 42 60 90 ori r2,r2,0x6090 <== NOT EXECUTED 8006ba4: 28 21 00 0c lw r1,(r1+12) <== NOT EXECUTED 8006ba8: b9 60 18 00 mv r3,r11 <== NOT EXECUTED 8006bac: f8 00 33 2a calli 8013854 <fprintf> <== NOT EXECUTED 8006bb0: b5 81 60 00 add r12,r12,r1 <== NOT EXECUTED
} chars_written += fprintf(stderr, "\n");
8006bb4: 78 0d 08 02 mvhi r13,0x802 <== NOT EXECUTED 8006bb8: 39 ad 91 e8 ori r13,r13,0x91e8 <== NOT EXECUTED 8006bbc: 29 a1 00 00 lw r1,(r13+0) <== NOT EXECUTED 8006bc0: 78 02 08 02 mvhi r2,0x802 <== NOT EXECUTED 8006bc4: 38 42 58 b4 ori r2,r2,0x58b4 <== NOT EXECUTED 8006bc8: 28 21 00 0c lw r1,(r1+12) <== NOT EXECUTED 8006bcc: f8 00 33 22 calli 8013854 <fprintf> <== NOT EXECUTED 8006bd0: b8 20 80 00 mv r16,r1 <== NOT EXECUTED
(void) fflush(stderr);
8006bd4: 29 a1 00 00 lw r1,(r13+0) <== NOT EXECUTED 8006bd8: 28 21 00 0c lw r1,(r1+12) <== NOT EXECUTED 8006bdc: f8 00 32 11 calli 8013420 <fflush> <== NOT EXECUTED
if (error_flag & (RTEMS_ERROR_PANIC | RTEMS_ERROR_ABORT))
8006be0: 78 02 30 00 mvhi r2,0x3000 <== NOT EXECUTED 8006be4: 38 42 00 00 ori r2,r2,0x0 <== NOT EXECUTED 8006be8: a1 c2 70 00 and r14,r14,r2 <== NOT EXECUTED
chars_written += fprintf(stderr, " (errno: %s)", strerror(local_errno)); else chars_written += fprintf(stderr, " (unknown errno=%d)", local_errno); } chars_written += fprintf(stderr, "\n");
8006bec: b6 0c 08 00 add r1,r16,r12 <== NOT EXECUTED
(void) fflush(stderr); if (error_flag & (RTEMS_ERROR_PANIC | RTEMS_ERROR_ABORT))
8006bf0: 45 c0 00 0e be r14,r0,8006c28 <rtems_verror+0x1e4> <== NOT EXECUTED
{ if (error_flag & RTEMS_ERROR_PANIC)
8006bf4: 45 e0 00 07 be r15,r0,8006c10 <rtems_verror+0x1cc> <== NOT EXECUTED
{ rtems_error(0, "fatal error, exiting");
8006bf8: 78 02 08 02 mvhi r2,0x802 <== NOT EXECUTED 8006bfc: 38 42 60 a4 ori r2,r2,0x60a4 <== NOT EXECUTED 8006c00: 34 01 00 00 mvi r1,0 <== NOT EXECUTED 8006c04: f8 00 00 26 calli 8006c9c <rtems_error> <== NOT EXECUTED
_exit(local_errno);
8006c08: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8006c0c: f8 00 03 30 calli 80078cc <_exit> <== NOT EXECUTED
} else { rtems_error(0, "fatal error, aborting");
8006c10: 78 02 08 02 mvhi r2,0x802 <== NOT EXECUTED 8006c14: 38 42 60 bc ori r2,r2,0x60bc <== NOT EXECUTED 8006c18: b9 e0 08 00 mv r1,r15 <== NOT EXECUTED 8006c1c: f8 00 00 20 calli 8006c9c <rtems_error> <== NOT EXECUTED
abort();
8006c20: f8 00 30 e0 calli 8012fa0 <abort> <== NOT EXECUTED 8006c24: 34 01 00 00 mvi r1,0 <== NOT EXECUTED
} } return chars_written; }
8006c28: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8006c2c: 2b 8b 00 20 lw r11,(sp+32) <== NOT EXECUTED 8006c30: 2b 8c 00 1c lw r12,(sp+28) <== NOT EXECUTED 8006c34: 2b 8d 00 18 lw r13,(sp+24) <== NOT EXECUTED 8006c38: 2b 8e 00 14 lw r14,(sp+20) <== NOT EXECUTED 8006c3c: 2b 8f 00 10 lw r15,(sp+16) <== NOT EXECUTED 8006c40: 2b 90 00 0c lw r16,(sp+12) <== NOT EXECUTED 8006c44: 2b 91 00 08 lw r17,(sp+8) <== NOT EXECUTED 8006c48: 37 9c 00 20 addi sp,sp,32 <== NOT EXECUTED 8006c4c: c3 a0 00 00 ret <== NOT EXECUTED
08026ccc <scanInt>: /* * Extract an integer value from the database */ static int scanInt(FILE *fp, int *val) {
8026ccc: 37 9c ff d4 addi sp,sp,-44 8026cd0: 5b 8b 00 2c sw (sp+44),r11 8026cd4: 5b 8c 00 28 sw (sp+40),r12 8026cd8: 5b 8d 00 24 sw (sp+36),r13 8026cdc: 5b 8e 00 20 sw (sp+32),r14 8026ce0: 5b 8f 00 1c sw (sp+28),r15 8026ce4: 5b 90 00 18 sw (sp+24),r16 8026ce8: 5b 91 00 14 sw (sp+20),r17 8026cec: 5b 92 00 10 sw (sp+16),r18 8026cf0: 5b 93 00 0c sw (sp+12),r19 8026cf4: 5b 94 00 08 sw (sp+8),r20 8026cf8: 5b 9d 00 04 sw (sp+4),ra 8026cfc: 34 0d 00 00 mvi r13,0 8026d00: 78 0e 7f ff mvhi r14,0x7fff
unsigned int limit = INT_MAX; int sign = 0; int d; for (;;) { c = getc(fp);
8026d04: 78 11 08 06 mvhi r17,0x806
limit++; continue; } sign = 1; } if (!isdigit(c))
8026d08: 78 10 08 06 mvhi r16,0x806
/* * Extract an integer value from the database */ static int scanInt(FILE *fp, int *val) {
8026d0c: b8 20 58 00 mv r11,r1 8026d10: b8 40 90 00 mv r18,r2 8026d14: 39 ce ff ff ori r14,r14,0xffff
unsigned int limit = INT_MAX; int sign = 0; int d; for (;;) { c = getc(fp);
8026d18: 3a 31 ba c8 ori r17,r17,0xbac8
limit++; continue; } sign = 1; } if (!isdigit(c))
8026d1c: 3a 10 ba b8 ori r16,r16,0xbab8
/* * Extract an integer value from the database */ static int scanInt(FILE *fp, int *val) {
8026d20: b9 a0 60 00 mv r12,r13
int sign = 0; int d; for (;;) { c = getc(fp); if (c == ':')
8026d24: 34 14 00 3a mvi r20,58
break; if (sign == 0) { if (c == '-') {
8026d28: 34 13 00 2d mvi r19,45
unsigned int limit = INT_MAX; int sign = 0; int d; for (;;) { c = getc(fp);
8026d2c: 29 61 00 04 lw r1,(r11+4) 8026d30: 34 21 ff ff addi r1,r1,-1 8026d34: 59 61 00 04 sw (r11+4),r1
8026d38: 4c 20 00 06 bge r1,r0,8026d50 <scanInt+0x84> <== ALWAYS TAKEN
8026d3c: 2a 21 00 00 lw r1,(r17+0) <== NOT EXECUTED 8026d40: b9 60 10 00 mv r2,r11 <== NOT EXECUTED 8026d44: f8 00 87 35 calli 8048a18 <__srget_r> <== NOT EXECUTED 8026d48: b8 20 78 00 mv r15,r1 <== NOT EXECUTED 8026d4c: e0 00 00 05 bi 8026d60 <scanInt+0x94> <== NOT EXECUTED
8026d50: 29 62 00 00 lw r2,(r11+0) 8026d54: 34 41 00 01 addi r1,r2,1 8026d58: 40 4f 00 00 lbu r15,(r2+0) 8026d5c: 59 61 00 00 sw (r11+0),r1
if (c == ':') 8026d60: 45 f4 00 1d be r15,r20,8026dd4 <scanInt+0x108> break; if (sign == 0) {
8026d64: 5d a0 00 06 bne r13,r0,8026d7c <scanInt+0xb0> <== NEVER TAKEN
if (c == '-') { sign = -1; limit++; continue;
8026d68: 34 0d 00 01 mvi r13,1
for (;;) { c = getc(fp); if (c == ':') break; if (sign == 0) { if (c == '-') {
8026d6c: 5d f3 00 04 bne r15,r19,8026d7c <scanInt+0xb0> <== ALWAYS TAKEN
sign = -1; limit++;
8026d70: b5 cd 70 00 add r14,r14,r13 <== NOT EXECUTED 8026d74: 34 0d ff ff mvi r13,-1 <== NOT EXECUTED
continue;
8026d78: e3 ff ff ed bi 8026d2c <scanInt+0x60> <== NOT EXECUTED
} sign = 1; } if (!isdigit(c))
8026d7c: 2a 01 00 00 lw r1,(r16+0) 8026d80: b4 2f 08 00 add r1,r1,r15 8026d84: 40 21 00 01 lbu r1,(r1+1) 8026d88: 20 21 00 04 andi r1,r1,0x4
8026d8c: 44 20 00 19 be r1,r0,8026df0 <scanInt+0x124> <== NEVER TAKEN
return 0; d = c - '0'; if ((i > (limit / 10))
8026d90: b9 c0 08 00 mv r1,r14 8026d94: 34 02 00 0a mvi r2,10 8026d98: fb ff 72 21 calli 800361c <__udivsi3>
8026d9c: 55 81 00 15 bgu r12,r1,8026df0 <scanInt+0x124> <== NEVER TAKEN
} sign = 1; } if (!isdigit(c)) return 0; d = c - '0';
8026da0: 35 ef ff d0 addi r15,r15,-48
if ((i > (limit / 10))
8026da4: 5d 81 00 05 bne r12,r1,8026db8 <scanInt+0xec> <== ALWAYS TAKEN
8026da8: b9 c0 08 00 mv r1,r14 <== NOT EXECUTED 8026dac: 34 02 00 0a mvi r2,10 <== NOT EXECUTED 8026db0: fb ff 72 2b calli 800365c <__umodsi3> <== NOT EXECUTED 8026db4: 55 e1 00 0f bgu r15,r1,8026df0 <scanInt+0x124> <== NOT EXECUTED
|| ((i == (limit / 10)) && (d > (limit % 10)))) return 0; i = i * 10 + d;
8026db8: b5 8c 60 00 add r12,r12,r12 8026dbc: b9 80 08 00 mv r1,r12 8026dc0: 34 02 00 02 mvi r2,2 8026dc4: fb ff 68 dd calli 8001138 <__ashlsi3> 8026dc8: b5 81 60 00 add r12,r12,r1 8026dcc: b5 ec 60 00 add r12,r15,r12 8026dd0: e3 ff ff d7 bi 8026d2c <scanInt+0x60>
} if (sign == 0)
8026dd4: 45 a0 00 07 be r13,r0,8026df0 <scanInt+0x124> <== NEVER TAKEN
return 0; *val = i * sign;
8026dd8: b9 a0 08 00 mv r1,r13 8026ddc: b9 80 10 00 mv r2,r12 8026de0: fb ff 71 ef calli 800359c <__mulsi3> 8026de4: 5a 41 00 00 sw (r18+0),r1 8026de8: 34 01 00 01 mvi r1,1
return 1;
8026dec: e0 00 00 02 bi 8026df4 <scanInt+0x128>
8026df0: 34 01 00 00 mvi r1,0 <== NOT EXECUTED
}
8026df4: 2b 9d 00 04 lw ra,(sp+4) 8026df8: 2b 8b 00 2c lw r11,(sp+44) 8026dfc: 2b 8c 00 28 lw r12,(sp+40) 8026e00: 2b 8d 00 24 lw r13,(sp+36) 8026e04: 2b 8e 00 20 lw r14,(sp+32) 8026e08: 2b 8f 00 1c lw r15,(sp+28) 8026e0c: 2b 90 00 18 lw r16,(sp+24) 8026e10: 2b 91 00 14 lw r17,(sp+20) 8026e14: 2b 92 00 10 lw r18,(sp+16) 8026e18: 2b 93 00 0c lw r19,(sp+12) 8026e1c: 2b 94 00 08 lw r20,(sp+8) 8026e20: 37 9c 00 2c addi sp,sp,44 8026e24: c3 a0 00 00 ret
08026e28 <scanString>: /* * Extract a string value from the database */ static int scanString(FILE *fp, char **name, char **bufp, size_t *nleft, int nlFlag) {
8026e28: 37 9c ff d8 addi sp,sp,-40 8026e2c: 5b 8b 00 28 sw (sp+40),r11 8026e30: 5b 8c 00 24 sw (sp+36),r12 8026e34: 5b 8d 00 20 sw (sp+32),r13 8026e38: 5b 8e 00 1c sw (sp+28),r14 8026e3c: 5b 8f 00 18 sw (sp+24),r15 8026e40: 5b 90 00 14 sw (sp+20),r16 8026e44: 5b 91 00 10 sw (sp+16),r17 8026e48: 5b 92 00 0c sw (sp+12),r18 8026e4c: 5b 93 00 08 sw (sp+8),r19 8026e50: 5b 9d 00 04 sw (sp+4),ra 8026e54: b8 60 58 00 mv r11,r3
int c; *name = *bufp;
8026e58: 28 63 00 00 lw r3,(r3+0)
for (;;) { c = getc(fp);
8026e5c: 78 0e 08 06 mvhi r14,0x806
/* * Extract a string value from the database */ static int scanString(FILE *fp, char **name, char **bufp, size_t *nleft, int nlFlag) {
8026e60: b8 20 68 00 mv r13,r1
int c; *name = *bufp;
8026e64: 58 43 00 00 sw (r2+0),r3
/* * Extract a string value from the database */ static int scanString(FILE *fp, char **name, char **bufp, size_t *nleft, int nlFlag) {
8026e68: b8 80 60 00 mv r12,r4 8026e6c: b8 a0 78 00 mv r15,r5
int c; *name = *bufp; for (;;) { c = getc(fp);
8026e70: 39 ce ba c8 ori r14,r14,0xbac8
if (c == ':') {
8026e74: 34 13 00 3a mvi r19,58
if (nlFlag) return 0; break; } if (c == '\n') {
8026e78: 34 12 00 0a mvi r18,10
if (!nlFlag) return 0; break; } if (c == EOF)
8026e7c: 34 11 ff ff mvi r17,-1
return 0; if (*nleft < 2)
8026e80: 34 10 00 01 mvi r16,1
{ int c; *name = *bufp; for (;;) { c = getc(fp);
8026e84: 29 a1 00 04 lw r1,(r13+4) 8026e88: 34 21 ff ff addi r1,r1,-1 8026e8c: 59 a1 00 04 sw (r13+4),r1
8026e90: 4c 20 00 05 bge r1,r0,8026ea4 <scanString+0x7c>
8026e94: 29 c1 00 00 lw r1,(r14+0) 8026e98: b9 a0 10 00 mv r2,r13 8026e9c: f8 00 86 df calli 8048a18 <__srget_r> 8026ea0: e0 00 00 05 bi 8026eb4 <scanString+0x8c> 8026ea4: 29 a1 00 00 lw r1,(r13+0) 8026ea8: 34 22 00 01 addi r2,r1,1 8026eac: 40 21 00 00 lbu r1,(r1+0) 8026eb0: 59 a2 00 00 sw (r13+0),r2
if (c == ':') { 8026eb4: 5c 33 00 03 bne r1,r19,8026ec0 <scanString+0x98> if (nlFlag)
8026eb8: 45 e0 00 11 be r15,r0,8026efc <scanString+0xd4> <== ALWAYS TAKEN
8026ebc: e0 00 00 1b bi 8026f28 <scanString+0x100> <== NOT EXECUTED
return 0; break; } if (c == '\n') { 8026ec0: 5c 32 00 03 bne r1,r18,8026ecc <scanString+0xa4> if (!nlFlag)
8026ec4: 5d e0 00 0e bne r15,r0,8026efc <scanString+0xd4> <== ALWAYS TAKEN
8026ec8: e0 00 00 18 bi 8026f28 <scanString+0x100> <== NOT EXECUTED
return 0; break; } if (c == EOF)
8026ecc: 44 31 00 17 be r1,r17,8026f28 <scanString+0x100> <== NEVER TAKEN
return 0; if (*nleft < 2)
8026ed0: 29 82 00 00 lw r2,(r12+0)
8026ed4: 52 02 00 15 bgeu r16,r2,8026f28 <scanString+0x100> <== NEVER TAKEN
return 0; **bufp = c;
8026ed8: 29 62 00 00 lw r2,(r11+0) 8026edc: 30 41 00 00 sb (r2+0),r1
++(*bufp);
8026ee0: 29 62 00 00 lw r2,(r11+0)
--(*nleft);
8026ee4: 29 81 00 00 lw r1,(r12+0)
if (c == EOF) return 0; if (*nleft < 2) return 0; **bufp = c; ++(*bufp);
8026ee8: 34 42 00 01 addi r2,r2,1
--(*nleft);
8026eec: 34 21 ff ff addi r1,r1,-1
if (c == EOF) return 0; if (*nleft < 2) return 0; **bufp = c; ++(*bufp);
8026ef0: 59 62 00 00 sw (r11+0),r2
--(*nleft);
8026ef4: 59 81 00 00 sw (r12+0),r1
}
8026ef8: e3 ff ff e3 bi 8026e84 <scanString+0x5c>
**bufp = '\0';
8026efc: 29 63 00 00 lw r3,(r11+0) 8026f00: 34 02 00 00 mvi r2,0
++(*bufp); --(*nleft);
8026f04: 34 01 00 01 mvi r1,1
return 0; **bufp = c; ++(*bufp); --(*nleft); } **bufp = '\0';
8026f08: 30 62 00 00 sb (r3+0),r2
++(*bufp);
8026f0c: 29 63 00 00 lw r3,(r11+0)
--(*nleft);
8026f10: 29 82 00 00 lw r2,(r12+0)
**bufp = c; ++(*bufp); --(*nleft); } **bufp = '\0'; ++(*bufp);
8026f14: b4 61 18 00 add r3,r3,r1
--(*nleft);
8026f18: 34 42 ff ff addi r2,r2,-1
**bufp = c; ++(*bufp); --(*nleft); } **bufp = '\0'; ++(*bufp);
8026f1c: 59 63 00 00 sw (r11+0),r3
--(*nleft);
8026f20: 59 82 00 00 sw (r12+0),r2
return 1;
8026f24: e0 00 00 02 bi 8026f2c <scanString+0x104>
8026f28: 34 01 00 00 mvi r1,0 <== NOT EXECUTED
}
8026f2c: 2b 9d 00 04 lw ra,(sp+4) 8026f30: 2b 8b 00 28 lw r11,(sp+40) 8026f34: 2b 8c 00 24 lw r12,(sp+36) 8026f38: 2b 8d 00 20 lw r13,(sp+32) 8026f3c: 2b 8e 00 1c lw r14,(sp+28) 8026f40: 2b 8f 00 18 lw r15,(sp+24) 8026f44: 2b 90 00 14 lw r16,(sp+20) 8026f48: 2b 91 00 10 lw r17,(sp+16) 8026f4c: 2b 92 00 0c lw r18,(sp+12) 8026f50: 2b 93 00 08 lw r19,(sp+8) 8026f54: 37 9c 00 28 addi sp,sp,40 8026f58: c3 a0 00 00 ret
08026f5c <scangr>: FILE *fp, struct group *grp, char *buffer, size_t bufsize ) {
8026f5c: 37 9c ff d4 addi sp,sp,-44 8026f60: 5b 8b 00 1c sw (sp+28),r11 8026f64: 5b 8c 00 18 sw (sp+24),r12 8026f68: 5b 8d 00 14 sw (sp+20),r13 8026f6c: 5b 8e 00 10 sw (sp+16),r14 8026f70: 5b 8f 00 0c sw (sp+12),r15 8026f74: 5b 90 00 08 sw (sp+8),r16 8026f78: 5b 9d 00 04 sw (sp+4),ra
int grgid; char *grmem, *cp; int memcount; if (!scanString(fp, &grp->gr_name, &buffer, &bufsize, 0)
8026f7c: 37 8d 00 24 addi r13,sp,36 8026f80: 37 8c 00 20 addi r12,sp,32
FILE *fp, struct group *grp, char *buffer, size_t bufsize ) {
8026f84: 5b 83 00 24 sw (sp+36),r3 8026f88: 5b 84 00 20 sw (sp+32),r4
int grgid; char *grmem, *cp; int memcount; if (!scanString(fp, &grp->gr_name, &buffer, &bufsize, 0)
8026f8c: b9 a0 18 00 mv r3,r13 8026f90: b9 80 20 00 mv r4,r12 8026f94: 34 05 00 00 mvi r5,0
FILE *fp, struct group *grp, char *buffer, size_t bufsize ) {
8026f98: b8 20 70 00 mv r14,r1 8026f9c: b8 40 58 00 mv r11,r2
int grgid; char *grmem, *cp; int memcount; if (!scanString(fp, &grp->gr_name, &buffer, &bufsize, 0)
8026fa0: fb ff ff a2 calli 8026e28 <scanString>
8026fa4: 44 20 00 44 be r1,r0,80270b4 <scangr+0x158> <== NEVER TAKEN
|| !scanString(fp, &grp->gr_passwd, &buffer, &bufsize, 0)
8026fa8: b9 c0 08 00 mv r1,r14 8026fac: 35 62 00 04 addi r2,r11,4 8026fb0: b9 a0 18 00 mv r3,r13 8026fb4: b9 80 20 00 mv r4,r12 8026fb8: 34 05 00 00 mvi r5,0 8026fbc: fb ff ff 9b calli 8026e28 <scanString>
{ int grgid; char *grmem, *cp; int memcount; if (!scanString(fp, &grp->gr_name, &buffer, &bufsize, 0)
8026fc0: 44 20 00 3d be r1,r0,80270b4 <scangr+0x158> <== NEVER TAKEN
|| !scanString(fp, &grp->gr_passwd, &buffer, &bufsize, 0) || !scanInt(fp, &grgid)
8026fc4: b9 c0 08 00 mv r1,r14 8026fc8: 37 82 00 2c addi r2,sp,44 8026fcc: fb ff ff 40 calli 8026ccc <scanInt>
{ int grgid; char *grmem, *cp; int memcount; if (!scanString(fp, &grp->gr_name, &buffer, &bufsize, 0)
8026fd0: 44 20 00 39 be r1,r0,80270b4 <scangr+0x158> <== NEVER TAKEN
|| !scanString(fp, &grp->gr_passwd, &buffer, &bufsize, 0) || !scanInt(fp, &grgid) || !scanString(fp, &grmem, &buffer, &bufsize, 1))
8026fd4: b9 c0 08 00 mv r1,r14 8026fd8: b9 a0 18 00 mv r3,r13 8026fdc: b9 80 20 00 mv r4,r12 8026fe0: 37 82 00 28 addi r2,sp,40 8026fe4: 34 05 00 01 mvi r5,1 8026fe8: fb ff ff 90 calli 8026e28 <scanString>
{ int grgid; char *grmem, *cp; int memcount; if (!scanString(fp, &grp->gr_name, &buffer, &bufsize, 0)
8026fec: 44 20 00 32 be r1,r0,80270b4 <scangr+0x158> <== NEVER TAKEN
|| !scanString(fp, &grp->gr_passwd, &buffer, &bufsize, 0) || !scanInt(fp, &grgid) || !scanString(fp, &grmem, &buffer, &bufsize, 1)) return 0; grp->gr_gid = grgid;
8026ff0: 2f 82 00 2e lhu r2,(sp+46)
/* * Determine number of members */ for (cp = grmem, memcount = 1 ; *cp != 0 ; cp++) {
8026ff4: 2b 8d 00 28 lw r13,(sp+40) 8026ff8: 34 01 00 01 mvi r1,1
if (!scanString(fp, &grp->gr_name, &buffer, &bufsize, 0) || !scanString(fp, &grp->gr_passwd, &buffer, &bufsize, 0) || !scanInt(fp, &grgid) || !scanString(fp, &grmem, &buffer, &bufsize, 1)) return 0; grp->gr_gid = grgid;
8026ffc: 0d 62 00 08 sh (r11+8),r2
/* * Determine number of members */ for (cp = grmem, memcount = 1 ; *cp != 0 ; cp++) {
8027000: b9 a0 10 00 mv r2,r13 8027004: e0 00 00 02 bi 802700c <scangr+0xb0>
if(*cp == ',') memcount++;
8027008: b4 23 08 00 add r1,r1,r3
grp->gr_gid = grgid; /* * Determine number of members */ for (cp = grmem, memcount = 1 ; *cp != 0 ; cp++) {
802700c: 40 4c 00 00 lbu r12,(r2+0) 8027010: 34 42 00 01 addi r2,r2,1
if(*cp == ',') memcount++;
8027014: 65 83 00 2c cmpei r3,r12,44
grp->gr_gid = grgid; /* * Determine number of members */ for (cp = grmem, memcount = 1 ; *cp != 0 ; cp++) { 8027018: 5d 80 ff fc bne r12,r0,8027008 <scangr+0xac> } /* * Hack to produce (hopefully) a suitably-aligned array of pointers */ if (bufsize < (((memcount+1)*sizeof(char *)) + 15))
802701c: 34 02 00 02 mvi r2,2 8027020: 34 21 00 01 addi r1,r1,1 8027024: fb ff 68 45 calli 8001138 <__ashlsi3> 8027028: 2b 82 00 20 lw r2,(sp+32) 802702c: 34 21 00 0f addi r1,r1,15
8027030: 54 22 00 21 bgu r1,r2,80270b4 <scangr+0x158> <== NEVER TAKEN
return 0; grp->gr_mem = (char **)(((uintptr_t)buffer + 15) & ~15);
8027034: 2b 81 00 24 lw r1,(sp+36) 8027038: 34 02 ff f0 mvi r2,-16
/* * Fill in pointer array */ grp->gr_mem[0] = grmem; for (cp = grmem, memcount = 1 ; *cp != 0 ; cp++) {
802703c: b9 80 80 00 mv r16,r12
/* * Hack to produce (hopefully) a suitably-aligned array of pointers */ if (bufsize < (((memcount+1)*sizeof(char *)) + 15)) return 0; grp->gr_mem = (char **)(((uintptr_t)buffer + 15) & ~15);
8027040: 34 21 00 0f addi r1,r1,15 8027044: a0 22 08 00 and r1,r1,r2
/* * Fill in pointer array */ grp->gr_mem[0] = grmem;
8027048: 58 2d 00 00 sw (r1+0),r13 802704c: 2b 8c 00 28 lw r12,(sp+40) 8027050: 34 0d 00 01 mvi r13,1
/* * Hack to produce (hopefully) a suitably-aligned array of pointers */ if (bufsize < (((memcount+1)*sizeof(char *)) + 15)) return 0; grp->gr_mem = (char **)(((uintptr_t)buffer + 15) & ~15);
8027054: 59 61 00 0c sw (r11+12),r1
/* * Fill in pointer array */ grp->gr_mem[0] = grmem;
8027058: b5 8d 60 00 add r12,r12,r13
for (cp = grmem, memcount = 1 ; *cp != 0 ; cp++) { if(*cp == ',') {
802705c: 34 0f 00 2c mvi r15,44
/* * Fill in pointer array */ grp->gr_mem[0] = grmem; for (cp = grmem, memcount = 1 ; *cp != 0 ; cp++) {
8027060: e0 00 00 0b bi 802708c <scangr+0x130>
if(*cp == ',') {
8027064: 5d cf 00 09 bne r14,r15,8027088 <scangr+0x12c> <== ALWAYS TAKEN
*cp = '\0';
8027068: 31 90 ff ff sb (r12+-1),r16 <== NOT EXECUTED
grp->gr_mem[memcount++] = cp + 1;
802706c: 29 6e 00 0c lw r14,(r11+12) <== NOT EXECUTED 8027070: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 8027074: 34 02 00 02 mvi r2,2 <== NOT EXECUTED 8027078: fb ff 68 30 calli 8001138 <__ashlsi3> <== NOT EXECUTED 802707c: b5 c1 08 00 add r1,r14,r1 <== NOT EXECUTED 8027080: 58 2c 00 00 sw (r1+0),r12 <== NOT EXECUTED 8027084: 35 ad 00 01 addi r13,r13,1 <== NOT EXECUTED
8027088: 35 8c 00 01 addi r12,r12,1
/* * Fill in pointer array */ grp->gr_mem[0] = grmem; for (cp = grmem, memcount = 1 ; *cp != 0 ; cp++) {
802708c: 41 8e ff ff lbu r14,(r12+-1)
8027090: 5d c0 ff f5 bne r14,r0,8027064 <scangr+0x108> if(*cp == ',') { *cp = '\0'; grp->gr_mem[memcount++] = cp + 1; } } grp->gr_mem[memcount] = NULL;
8027094: 29 6b 00 0c lw r11,(r11+12) 8027098: b9 a0 08 00 mv r1,r13 802709c: 34 02 00 02 mvi r2,2 80270a0: fb ff 68 26 calli 8001138 <__ashlsi3> 80270a4: b5 61 08 00 add r1,r11,r1 80270a8: 58 2e 00 00 sw (r1+0),r14 80270ac: 34 01 00 01 mvi r1,1
return 1;
80270b0: e0 00 00 02 bi 80270b8 <scangr+0x15c>
80270b4: 34 01 00 00 mvi r1,0 <== NOT EXECUTED
}
80270b8: 2b 9d 00 04 lw ra,(sp+4) 80270bc: 2b 8b 00 1c lw r11,(sp+28) 80270c0: 2b 8c 00 18 lw r12,(sp+24) 80270c4: 2b 8d 00 14 lw r13,(sp+20) 80270c8: 2b 8e 00 10 lw r14,(sp+16) 80270cc: 2b 8f 00 0c lw r15,(sp+12) 80270d0: 2b 90 00 08 lw r16,(sp+8) 80270d4: 37 9c 00 2c addi sp,sp,44 80270d8: c3 a0 00 00 ret
0802712c <scanpw>: FILE *fp, struct passwd *pwd, char *buffer, size_t bufsize ) {
802712c: 37 9c ff dc addi sp,sp,-36 8027130: 5b 8b 00 14 sw (sp+20),r11 8027134: 5b 8c 00 10 sw (sp+16),r12 8027138: 5b 8d 00 0c sw (sp+12),r13 802713c: 5b 8e 00 08 sw (sp+8),r14 8027140: 5b 9d 00 04 sw (sp+4),ra
int pwuid, pwgid; if (!scanString(fp, &pwd->pw_name, &buffer, &bufsize, 0)
8027144: 37 8e 00 1c addi r14,sp,28 8027148: 37 8d 00 18 addi r13,sp,24
FILE *fp, struct passwd *pwd, char *buffer, size_t bufsize ) {
802714c: 5b 83 00 1c sw (sp+28),r3 8027150: 5b 84 00 18 sw (sp+24),r4
int pwuid, pwgid; if (!scanString(fp, &pwd->pw_name, &buffer, &bufsize, 0)
8027154: b9 c0 18 00 mv r3,r14 8027158: b9 a0 20 00 mv r4,r13 802715c: 34 05 00 00 mvi r5,0
FILE *fp, struct passwd *pwd, char *buffer, size_t bufsize ) {
8027160: b8 20 60 00 mv r12,r1 8027164: b8 40 58 00 mv r11,r2
int pwuid, pwgid; if (!scanString(fp, &pwd->pw_name, &buffer, &bufsize, 0)
8027168: fb ff ff 30 calli 8026e28 <scanString>
802716c: 44 20 00 32 be r1,r0,8027234 <scanpw+0x108> <== NEVER TAKEN
|| !scanString(fp, &pwd->pw_passwd, &buffer, &bufsize, 0)
8027170: b9 80 08 00 mv r1,r12 8027174: 35 62 00 04 addi r2,r11,4 8027178: b9 c0 18 00 mv r3,r14 802717c: b9 a0 20 00 mv r4,r13 8027180: 34 05 00 00 mvi r5,0 8027184: fb ff ff 29 calli 8026e28 <scanString>
size_t bufsize ) { int pwuid, pwgid; if (!scanString(fp, &pwd->pw_name, &buffer, &bufsize, 0)
8027188: 44 20 00 2b be r1,r0,8027234 <scanpw+0x108> <== NEVER TAKEN
|| !scanString(fp, &pwd->pw_passwd, &buffer, &bufsize, 0) || !scanInt(fp, &pwuid)
802718c: b9 80 08 00 mv r1,r12 8027190: 37 82 00 24 addi r2,sp,36 8027194: fb ff fe ce calli 8026ccc <scanInt>
size_t bufsize ) { int pwuid, pwgid; if (!scanString(fp, &pwd->pw_name, &buffer, &bufsize, 0)
8027198: 44 20 00 27 be r1,r0,8027234 <scanpw+0x108> <== NEVER TAKEN
|| !scanString(fp, &pwd->pw_passwd, &buffer, &bufsize, 0) || !scanInt(fp, &pwuid) || !scanInt(fp, &pwgid)
802719c: b9 80 08 00 mv r1,r12 80271a0: 37 82 00 20 addi r2,sp,32 80271a4: fb ff fe ca calli 8026ccc <scanInt>
size_t bufsize ) { int pwuid, pwgid; if (!scanString(fp, &pwd->pw_name, &buffer, &bufsize, 0)
80271a8: 44 20 00 23 be r1,r0,8027234 <scanpw+0x108> <== NEVER TAKEN
|| !scanString(fp, &pwd->pw_passwd, &buffer, &bufsize, 0) || !scanInt(fp, &pwuid) || !scanInt(fp, &pwgid) || !scanString(fp, &pwd->pw_comment, &buffer, &bufsize, 0)
80271ac: b9 80 08 00 mv r1,r12 80271b0: 35 62 00 0c addi r2,r11,12 80271b4: b9 c0 18 00 mv r3,r14 80271b8: b9 a0 20 00 mv r4,r13 80271bc: 34 05 00 00 mvi r5,0 80271c0: fb ff ff 1a calli 8026e28 <scanString>
size_t bufsize ) { int pwuid, pwgid; if (!scanString(fp, &pwd->pw_name, &buffer, &bufsize, 0)
80271c4: 44 20 00 1c be r1,r0,8027234 <scanpw+0x108> <== NEVER TAKEN
|| !scanString(fp, &pwd->pw_passwd, &buffer, &bufsize, 0) || !scanInt(fp, &pwuid) || !scanInt(fp, &pwgid) || !scanString(fp, &pwd->pw_comment, &buffer, &bufsize, 0) || !scanString(fp, &pwd->pw_gecos, &buffer, &bufsize, 0)
80271c8: b9 80 08 00 mv r1,r12 80271cc: 35 62 00 10 addi r2,r11,16 80271d0: b9 c0 18 00 mv r3,r14 80271d4: b9 a0 20 00 mv r4,r13 80271d8: 34 05 00 00 mvi r5,0 80271dc: fb ff ff 13 calli 8026e28 <scanString>
size_t bufsize ) { int pwuid, pwgid; if (!scanString(fp, &pwd->pw_name, &buffer, &bufsize, 0)
80271e0: 44 20 00 15 be r1,r0,8027234 <scanpw+0x108> <== NEVER TAKEN
|| !scanString(fp, &pwd->pw_passwd, &buffer, &bufsize, 0) || !scanInt(fp, &pwuid) || !scanInt(fp, &pwgid) || !scanString(fp, &pwd->pw_comment, &buffer, &bufsize, 0) || !scanString(fp, &pwd->pw_gecos, &buffer, &bufsize, 0) || !scanString(fp, &pwd->pw_dir, &buffer, &bufsize, 0)
80271e4: b9 80 08 00 mv r1,r12 80271e8: 35 62 00 14 addi r2,r11,20 80271ec: b9 c0 18 00 mv r3,r14 80271f0: b9 a0 20 00 mv r4,r13 80271f4: 34 05 00 00 mvi r5,0 80271f8: fb ff ff 0c calli 8026e28 <scanString>
size_t bufsize ) { int pwuid, pwgid; if (!scanString(fp, &pwd->pw_name, &buffer, &bufsize, 0)
80271fc: 44 20 00 0e be r1,r0,8027234 <scanpw+0x108> <== NEVER TAKEN
|| !scanInt(fp, &pwuid) || !scanInt(fp, &pwgid) || !scanString(fp, &pwd->pw_comment, &buffer, &bufsize, 0) || !scanString(fp, &pwd->pw_gecos, &buffer, &bufsize, 0) || !scanString(fp, &pwd->pw_dir, &buffer, &bufsize, 0) || !scanString(fp, &pwd->pw_shell, &buffer, &bufsize, 1))
8027200: b9 80 08 00 mv r1,r12 8027204: b9 c0 18 00 mv r3,r14 8027208: b9 a0 20 00 mv r4,r13 802720c: 35 62 00 18 addi r2,r11,24 8027210: 34 05 00 01 mvi r5,1 8027214: fb ff ff 05 calli 8026e28 <scanString>
size_t bufsize ) { int pwuid, pwgid; if (!scanString(fp, &pwd->pw_name, &buffer, &bufsize, 0)
8027218: 44 20 00 07 be r1,r0,8027234 <scanpw+0x108> <== NEVER TAKEN
|| !scanString(fp, &pwd->pw_comment, &buffer, &bufsize, 0) || !scanString(fp, &pwd->pw_gecos, &buffer, &bufsize, 0) || !scanString(fp, &pwd->pw_dir, &buffer, &bufsize, 0) || !scanString(fp, &pwd->pw_shell, &buffer, &bufsize, 1)) return 0; pwd->pw_uid = pwuid;
802721c: 2f 82 00 26 lhu r2,(sp+38)
pwd->pw_gid = pwgid;
8027220: 34 01 00 01 mvi r1,1
|| !scanString(fp, &pwd->pw_comment, &buffer, &bufsize, 0) || !scanString(fp, &pwd->pw_gecos, &buffer, &bufsize, 0) || !scanString(fp, &pwd->pw_dir, &buffer, &bufsize, 0) || !scanString(fp, &pwd->pw_shell, &buffer, &bufsize, 1)) return 0; pwd->pw_uid = pwuid;
8027224: 0d 62 00 08 sh (r11+8),r2
pwd->pw_gid = pwgid;
8027228: 2b 82 00 20 lw r2,(sp+32) 802722c: 0d 62 00 0a sh (r11+10),r2
return 1;
8027230: e0 00 00 02 bi 8027238 <scanpw+0x10c>
8027234: 34 01 00 00 mvi r1,0 <== NOT EXECUTED
}
8027238: 2b 9d 00 04 lw ra,(sp+4) 802723c: 2b 8b 00 14 lw r11,(sp+20) 8027240: 2b 8c 00 10 lw r12,(sp+16) 8027244: 2b 8d 00 0c lw r13,(sp+12) 8027248: 2b 8e 00 08 lw r14,(sp+8) 802724c: 37 9c 00 24 addi sp,sp,36 8027250: c3 a0 00 00 ret
08026c64 <setgid>: int setgid( gid_t gid ) { _POSIX_types_Gid = gid;
8026c64: 78 02 08 06 mvhi r2,0x806 <== NOT EXECUTED 8026c68: 38 42 b2 f0 ori r2,r2,0xb2f0 <== NOT EXECUTED 8026c6c: 28 42 00 00 lw r2,(r2+0) <== NOT EXECUTED 8026c70: 0c 41 00 34 sh (r2+52),r1 <== NOT EXECUTED
return 0; }
8026c74: 34 01 00 00 mvi r1,0 <== NOT EXECUTED 8026c78: c3 a0 00 00 ret <== NOT EXECUTED
08027390 <setgrent>: return NULL; return &grent; } void setgrent(void) {
8027390: 37 9c ff fc addi sp,sp,-4 <== NOT EXECUTED 8027394: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
init_etc_passwd_group();
8027398: fb ff ff c3 calli 80272a4 <init_etc_passwd_group> <== NOT EXECUTED
if (group_fp != NULL)
802739c: 78 01 08 06 mvhi r1,0x806 <== NOT EXECUTED 80273a0: 38 21 ec a0 ori r1,r1,0xeca0 <== NOT EXECUTED 80273a4: 28 21 00 00 lw r1,(r1+0) <== NOT EXECUTED 80273a8: 44 20 00 02 be r1,r0,80273b0 <setgrent+0x20> <== NOT EXECUTED
fclose(group_fp);
80273ac: f8 00 6d bc calli 8042a9c <fclose> <== NOT EXECUTED
group_fp = fopen("/etc/group", "r");
80273b0: 78 01 08 05 mvhi r1,0x805 <== NOT EXECUTED 80273b4: 78 02 08 06 mvhi r2,0x806 <== NOT EXECUTED 80273b8: 38 42 78 2c ori r2,r2,0x782c <== NOT EXECUTED 80273bc: 38 21 fe 24 ori r1,r1,0xfe24 <== NOT EXECUTED 80273c0: f8 00 70 5c calli 8043530 <fopen> <== NOT EXECUTED 80273c4: 78 02 08 06 mvhi r2,0x806 <== NOT EXECUTED 80273c8: 38 42 ec a0 ori r2,r2,0xeca0 <== NOT EXECUTED 80273cc: 58 41 00 00 sw (r2+0),r1 <== NOT EXECUTED
}
80273d0: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 80273d4: 37 9c 00 04 addi sp,sp,4 <== NOT EXECUTED 80273d8: c3 a0 00 00 ret <== NOT EXECUTED
080275cc <setpwent>: return NULL; return &pwent; } void setpwent(void) {
80275cc: 37 9c ff fc addi sp,sp,-4 <== NOT EXECUTED 80275d0: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
init_etc_passwd_group();
80275d4: fb ff ff 34 calli 80272a4 <init_etc_passwd_group> <== NOT EXECUTED
if (passwd_fp != NULL)
80275d8: 78 01 08 06 mvhi r1,0x806 <== NOT EXECUTED 80275dc: 38 21 eb b8 ori r1,r1,0xebb8 <== NOT EXECUTED 80275e0: 28 21 00 00 lw r1,(r1+0) <== NOT EXECUTED 80275e4: 44 20 00 02 be r1,r0,80275ec <setpwent+0x20> <== NOT EXECUTED
fclose(passwd_fp);
80275e8: f8 00 6d 2d calli 8042a9c <fclose> <== NOT EXECUTED
passwd_fp = fopen("/etc/passwd", "r");
80275ec: 78 01 08 05 mvhi r1,0x805 <== NOT EXECUTED 80275f0: 78 02 08 06 mvhi r2,0x806 <== NOT EXECUTED 80275f4: 38 42 78 2c ori r2,r2,0x782c <== NOT EXECUTED 80275f8: 38 21 fd 74 ori r1,r1,0xfd74 <== NOT EXECUTED 80275fc: f8 00 6f cd calli 8043530 <fopen> <== NOT EXECUTED 8027600: 78 02 08 06 mvhi r2,0x806 <== NOT EXECUTED 8027604: 38 42 eb b8 ori r2,r2,0xebb8 <== NOT EXECUTED 8027608: 58 41 00 00 sw (r2+0),r1 <== NOT EXECUTED
}
802760c: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8027610: 37 9c 00 04 addi sp,sp,4 <== NOT EXECUTED 8027614: c3 a0 00 00 ret <== NOT EXECUTED
08006484 <setuid>: int setuid( uid_t uid ) { _POSIX_types_Uid = uid;
8006484: 78 02 08 06 mvhi r2,0x806 <== NOT EXECUTED 8006488: 38 42 b2 f0 ori r2,r2,0xb2f0 <== NOT EXECUTED 800648c: 28 42 00 00 lw r2,(r2+0) <== NOT EXECUTED 8006490: 0c 41 00 32 sh (r2+50),r1 <== NOT EXECUTED
return 0; }
8006494: 34 01 00 00 mvi r1,0 <== NOT EXECUTED 8006498: c3 a0 00 00 ret <== NOT EXECUTED
08004654 <siproc>: /* * Process input character, with semaphore. */ static int siproc (unsigned char c, struct rtems_termios_tty *tty) {
8004654: 37 9c ff f4 addi sp,sp,-12 <== NOT EXECUTED 8004658: 5b 8b 00 0c sw (sp+12),r11 <== NOT EXECUTED 800465c: 5b 8c 00 08 sw (sp+8),r12 <== NOT EXECUTED 8004660: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED
int i; /* * Obtain output semaphore if character will be echoed */ if (tty->termios.c_lflag & (ECHO|ECHOE|ECHOK|ECHONL|ECHOPRT|ECHOCTL|ECHOKE)) {
8004664: 28 43 00 3c lw r3,(r2+60) <== NOT EXECUTED
/* * Process input character, with semaphore. */ static int siproc (unsigned char c, struct rtems_termios_tty *tty) {
8004668: 20 2c 00 ff andi r12,r1,0xff <== NOT EXECUTED 800466c: b8 40 58 00 mv r11,r2 <== NOT EXECUTED
int i; /* * Obtain output semaphore if character will be echoed */ if (tty->termios.c_lflag & (ECHO|ECHOE|ECHOK|ECHONL|ECHOPRT|ECHOCTL|ECHOKE)) {
8004670: 20 61 0e 78 andi r1,r3,0xe78 <== NOT EXECUTED 8004674: 44 20 00 0c be r1,r0,80046a4 <siproc+0x50> <== NOT EXECUTED
rtems_semaphore_obtain (tty->osem, RTEMS_WAIT, RTEMS_NO_TIMEOUT);
8004678: 28 41 00 18 lw r1,(r2+24) <== NOT EXECUTED 800467c: 34 02 00 00 mvi r2,0 <== NOT EXECUTED 8004680: b8 40 18 00 mv r3,r2 <== NOT EXECUTED 8004684: f8 00 06 e4 calli 8006214 <rtems_semaphore_obtain> <== NOT EXECUTED
i = iproc (c, tty);
8004688: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 800468c: b9 60 10 00 mv r2,r11 <== NOT EXECUTED 8004690: fb ff ff 82 calli 8004498 <iproc> <== NOT EXECUTED 8004694: b8 20 60 00 mv r12,r1 <== NOT EXECUTED
rtems_semaphore_release (tty->osem);
8004698: 29 61 00 18 lw r1,(r11+24) <== NOT EXECUTED 800469c: f8 00 07 2e calli 8006354 <rtems_semaphore_release> <== NOT EXECUTED 80046a0: e0 00 00 04 bi 80046b0 <siproc+0x5c> <== NOT EXECUTED
} else { i = iproc (c, tty);
80046a4: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 80046a8: fb ff ff 7c calli 8004498 <iproc> <== NOT EXECUTED 80046ac: b8 20 60 00 mv r12,r1 <== NOT EXECUTED
} return i; }
80046b0: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 80046b4: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 80046b8: 2b 8b 00 0c lw r11,(sp+12) <== NOT EXECUTED 80046bc: 2b 8c 00 08 lw r12,(sp+8) <== NOT EXECUTED 80046c0: 37 9c 00 0c addi sp,sp,12 <== NOT EXECUTED 80046c4: c3 a0 00 00 ret <== NOT EXECUTED
080079b4 <stat>: int _STAT_NAME( const char *path, struct stat *buf ) {
80079b4: 37 9c ff dc addi sp,sp,-36 80079b8: 5b 8b 00 10 sw (sp+16),r11 80079bc: 5b 8c 00 0c sw (sp+12),r12 80079c0: 5b 8d 00 08 sw (sp+8),r13 80079c4: 5b 9d 00 04 sw (sp+4),ra 80079c8: b8 40 68 00 mv r13,r2 80079cc: b8 20 58 00 mv r11,r1
/* * Check to see if we were passed a valid pointer. */ if ( !buf ) 80079d0: 5c 40 00 04 bne r2,r0,80079e0 <stat+0x2c> rtems_set_errno_and_return_minus_one( EFAULT );
80079d4: f8 00 eb d0 calli 8042914 <__errno> 80079d8: 34 02 00 0e mvi r2,14 80079dc: e0 00 00 16 bi 8007a34 <stat+0x80>
status = rtems_filesystem_evaluate_path( path, strlen( path ),
80079e0: f8 01 09 b7 calli 804a0bc <strlen> 80079e4: 37 8c 00 14 addi r12,sp,20 80079e8: b8 20 10 00 mv r2,r1 80079ec: 34 03 00 00 mvi r3,0 80079f0: b9 60 08 00 mv r1,r11 80079f4: b9 80 20 00 mv r4,r12 80079f8: 34 05 00 01 mvi r5,1 80079fc: fb ff fa 06 calli 8006214 <rtems_filesystem_evaluate_path>
0, &loc, _STAT_FOLLOW_LINKS ); if ( status != 0 )
8007a00: 34 0b ff ff mvi r11,-1
8007a04: 5c 20 00 1f bne r1,r0,8007a80 <stat+0xcc> return -1; if ( !loc.handlers->fstat_h ){
8007a08: 2b 82 00 1c lw r2,(sp+28) 8007a0c: 28 42 00 18 lw r2,(r2+24)
8007a10: 5c 41 00 0c bne r2,r1,8007a40 <stat+0x8c> <== ALWAYS TAKEN
rtems_filesystem_freenode( &loc );
8007a14: 2b 81 00 20 lw r1,(sp+32) <== NOT EXECUTED 8007a18: 44 22 00 05 be r1,r2,8007a2c <stat+0x78> <== NOT EXECUTED 8007a1c: 28 23 00 1c lw r3,(r1+28) <== NOT EXECUTED 8007a20: 44 62 00 03 be r3,r2,8007a2c <stat+0x78> <== NOT EXECUTED 8007a24: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 8007a28: d8 60 00 00 call r3 <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( ENOTSUP );
8007a2c: f8 00 eb ba calli 8042914 <__errno> <== NOT EXECUTED 8007a30: 34 02 00 86 mvi r2,134 <== NOT EXECUTED
8007a34: 58 22 00 00 sw (r1+0),r2 8007a38: 34 0b ff ff mvi r11,-1 8007a3c: e0 00 00 11 bi 8007a80 <stat+0xcc>
/* * Zero out the stat structure so the various support * versions of stat don't have to. */ memset( buf, 0, sizeof(struct stat) );
8007a40: b8 20 10 00 mv r2,r1 8007a44: 34 03 00 48 mvi r3,72 8007a48: b9 a0 08 00 mv r1,r13 8007a4c: f8 00 fb 1e calli 80466c4 <memset>
status = (*loc.handlers->fstat_h)( &loc, buf );
8007a50: 2b 83 00 1c lw r3,(sp+28) 8007a54: b9 a0 10 00 mv r2,r13 8007a58: b9 80 08 00 mv r1,r12 8007a5c: 28 63 00 18 lw r3,(r3+24) 8007a60: d8 60 00 00 call r3 8007a64: b8 20 58 00 mv r11,r1
rtems_filesystem_freenode( &loc );
8007a68: 2b 81 00 20 lw r1,(sp+32)
8007a6c: 44 20 00 05 be r1,r0,8007a80 <stat+0xcc> <== NEVER TAKEN
8007a70: 28 22 00 1c lw r2,(r1+28)
8007a74: 44 40 00 03 be r2,r0,8007a80 <stat+0xcc> <== NEVER TAKEN
8007a78: b9 80 08 00 mv r1,r12 8007a7c: d8 40 00 00 call r2
return status; }
8007a80: b9 60 08 00 mv r1,r11 8007a84: 2b 9d 00 04 lw ra,(sp+4) 8007a88: 2b 8b 00 10 lw r11,(sp+16) 8007a8c: 2b 8c 00 0c lw r12,(sp+12) 8007a90: 2b 8d 00 08 lw r13,(sp+8) 8007a94: 37 9c 00 24 addi sp,sp,36 8007a98: c3 a0 00 00 ret
08028764 <statvfs>: */ extern rtems_chain_control rtems_filesystem_mount_table_control; int statvfs (const char *path, struct statvfs *sb) {
8028764: 37 9c ff dc addi sp,sp,-36 <== NOT EXECUTED 8028768: 5b 8b 00 10 sw (sp+16),r11 <== NOT EXECUTED 802876c: 5b 8c 00 0c sw (sp+12),r12 <== NOT EXECUTED 8028770: 5b 8d 00 08 sw (sp+8),r13 <== NOT EXECUTED 8028774: 5b 9d 00 04 sw (sp+4),ra <== NOT EXECUTED 8028778: b8 20 58 00 mv r11,r1 <== NOT EXECUTED 802877c: b8 40 68 00 mv r13,r2 <== NOT EXECUTED
* The root node of the mounted filesytem. * The node for the directory that the fileystem is mounted on. * The mount entry that is being refered to. */ if ( rtems_filesystem_evaluate_path( path, strlen( path ), 0x0, &loc, true ) )
8028780: 37 8c 00 14 addi r12,sp,20 <== NOT EXECUTED 8028784: f8 00 86 4e calli 804a0bc <strlen> <== NOT EXECUTED 8028788: b8 20 10 00 mv r2,r1 <== NOT EXECUTED 802878c: 34 03 00 00 mvi r3,0 <== NOT EXECUTED 8028790: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8028794: b9 80 20 00 mv r4,r12 <== NOT EXECUTED 8028798: 34 05 00 01 mvi r5,1 <== NOT EXECUTED 802879c: fb ff 76 9e calli 8006214 <rtems_filesystem_evaluate_path> <== NOT EXECUTED 80287a0: b8 20 18 00 mv r3,r1 <== NOT EXECUTED 80287a4: 34 0b ff ff mvi r11,-1 <== NOT EXECUTED 80287a8: 5c 20 00 1a bne r1,r0,8028810 <statvfs+0xac> <== NOT EXECUTED
return -1; mt_entry = loc.mt_entry;
80287ac: 2b 8b 00 24 lw r11,(sp+36) <== NOT EXECUTED
fs_mount_root = &mt_entry->mt_fs_root;
80287b0: 29 61 00 28 lw r1,(r11+40) <== NOT EXECUTED 80287b4: 28 21 00 44 lw r1,(r1+68) <== NOT EXECUTED 80287b8: 5c 23 00 06 bne r1,r3,80287d0 <statvfs+0x6c> <== NOT EXECUTED
if ( !fs_mount_root->ops->statvfs_h ) rtems_set_errno_and_return_minus_one( ENOTSUP );
80287bc: f8 00 68 56 calli 8042914 <__errno> <== NOT EXECUTED 80287c0: 34 02 00 86 mvi r2,134 <== NOT EXECUTED 80287c4: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 80287c8: 34 0b ff ff mvi r11,-1 <== NOT EXECUTED 80287cc: e0 00 00 11 bi 8028810 <statvfs+0xac> <== NOT EXECUTED
memset (sb, 0, sizeof (struct statvfs));
80287d0: b8 60 10 00 mv r2,r3 <== NOT EXECUTED 80287d4: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 80287d8: 34 03 00 38 mvi r3,56 <== NOT EXECUTED 80287dc: f8 00 77 ba calli 80466c4 <memset> <== NOT EXECUTED
result = ( fs_mount_root->ops->statvfs_h )( fs_mount_root, sb );
80287e0: 29 63 00 28 lw r3,(r11+40) <== NOT EXECUTED 80287e4: 35 61 00 1c addi r1,r11,28 <== NOT EXECUTED 80287e8: b9 a0 10 00 mv r2,r13 <== NOT EXECUTED 80287ec: 28 63 00 44 lw r3,(r3+68) <== NOT EXECUTED 80287f0: d8 60 00 00 call r3 <== NOT EXECUTED 80287f4: b8 20 58 00 mv r11,r1 <== NOT EXECUTED
rtems_filesystem_freenode( &loc );
80287f8: 2b 81 00 20 lw r1,(sp+32) <== NOT EXECUTED 80287fc: 44 20 00 05 be r1,r0,8028810 <statvfs+0xac> <== NOT EXECUTED 8028800: 28 22 00 1c lw r2,(r1+28) <== NOT EXECUTED 8028804: 44 40 00 03 be r2,r0,8028810 <statvfs+0xac> <== NOT EXECUTED 8028808: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 802880c: d8 40 00 00 call r2 <== NOT EXECUTED
return result; }
8028810: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8028814: 2b 9d 00 04 lw ra,(sp+4) <== NOT EXECUTED 8028818: 2b 8b 00 10 lw r11,(sp+16) <== NOT EXECUTED 802881c: 2b 8c 00 0c lw r12,(sp+12) <== NOT EXECUTED 8028820: 2b 8d 00 08 lw r13,(sp+8) <== NOT EXECUTED 8028824: 37 9c 00 24 addi sp,sp,36 <== NOT EXECUTED 8028828: c3 a0 00 00 ret <== NOT EXECUTED
0802882c <symlink>: int symlink( const char *actualpath, const char *sympath ) {
802882c: 37 9c ff d4 addi sp,sp,-44 8028830: 5b 8b 00 14 sw (sp+20),r11 8028834: 5b 8c 00 10 sw (sp+16),r12 8028838: 5b 8d 00 0c sw (sp+12),r13 802883c: 5b 8e 00 08 sw (sp+8),r14 8028840: 5b 9d 00 04 sw (sp+4),ra
rtems_filesystem_location_info_t loc; int i; const char *name_start; int result; rtems_filesystem_get_start_loc( sympath, &i, &loc );
8028844: 40 43 00 00 lbu r3,(r2+0)
int symlink( const char *actualpath, const char *sympath ) {
8028848: b8 20 70 00 mv r14,r1 802884c: b8 40 68 00 mv r13,r2
rtems_filesystem_location_info_t loc; int i; const char *name_start; int result; rtems_filesystem_get_start_loc( sympath, &i, &loc );
8028850: 64 6b 00 5c cmpei r11,r3,92 8028854: 64 61 00 2f cmpei r1,r3,47 8028858: b9 61 58 00 or r11,r11,r1
802885c: 5d 60 00 02 bne r11,r0,8028864 <symlink+0x38>
8028860: 5c 6b 00 0a bne r3,r11,8028888 <symlink+0x5c> <== ALWAYS TAKEN
8028864: 78 03 08 06 mvhi r3,0x806 8028868: 38 63 b2 f0 ori r3,r3,0xb2f0 802886c: 28 64 00 00 lw r4,(r3+0) 8028870: 37 81 00 18 addi r1,sp,24 8028874: 34 03 00 14 mvi r3,20 8028878: 34 82 00 18 addi r2,r4,24 802887c: f8 00 76 c8 calli 804639c <memcpy> 8028880: 34 0b 00 01 mvi r11,1 8028884: e0 00 00 08 bi 80288a4 <symlink+0x78> 8028888: 78 03 08 06 mvhi r3,0x806 802888c: 38 63 b2 f0 ori r3,r3,0xb2f0 8028890: 28 64 00 00 lw r4,(r3+0) 8028894: 37 81 00 18 addi r1,sp,24 8028898: 34 03 00 14 mvi r3,20 802889c: 34 82 00 04 addi r2,r4,4 80288a0: f8 00 76 bf calli 804639c <memcpy>
if ( !loc.ops->evalformake_h ) {
80288a4: 2b 81 00 24 lw r1,(sp+36) 80288a8: 28 24 00 04 lw r4,(r1+4)
80288ac: 44 80 00 0f be r4,r0,80288e8 <symlink+0xbc> <== NEVER TAKEN
rtems_set_errno_and_return_minus_one( ENOTSUP ); } result = (*loc.ops->evalformake_h)( &sympath[i], &loc, &name_start );
80288b0: 37 8c 00 18 addi r12,sp,24 80288b4: b5 ab 08 00 add r1,r13,r11 80288b8: b9 80 10 00 mv r2,r12 80288bc: 37 83 00 2c addi r3,sp,44 80288c0: d8 80 00 00 call r4
if ( result != 0 )
80288c4: 34 0b ff ff mvi r11,-1
80288c8: 5c 20 00 18 bne r1,r0,8028928 <symlink+0xfc> return -1; if ( !loc.ops->symlink_h ) {
80288cc: 2b 83 00 24 lw r3,(sp+36) 80288d0: 28 64 00 38 lw r4,(r3+56)
80288d4: 5c 81 00 0a bne r4,r1,80288fc <symlink+0xd0> <== ALWAYS TAKEN
rtems_filesystem_freenode( &loc );
80288d8: 28 62 00 1c lw r2,(r3+28) <== NOT EXECUTED 80288dc: 44 44 00 03 be r2,r4,80288e8 <symlink+0xbc> <== NOT EXECUTED 80288e0: b9 80 08 00 mv r1,r12 <== NOT EXECUTED 80288e4: d8 40 00 00 call r2 <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( ENOTSUP );
80288e8: f8 00 68 0b calli 8042914 <__errno> <== NOT EXECUTED 80288ec: 34 02 00 86 mvi r2,134 <== NOT EXECUTED 80288f0: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 80288f4: 34 0b ff ff mvi r11,-1 <== NOT EXECUTED 80288f8: e0 00 00 0c bi 8028928 <symlink+0xfc> <== NOT EXECUTED
} result = (*loc.ops->symlink_h)( &loc, actualpath, name_start);
80288fc: 2b 83 00 2c lw r3,(sp+44) 8028900: b9 c0 10 00 mv r2,r14 8028904: b9 80 08 00 mv r1,r12 8028908: d8 80 00 00 call r4 802890c: b8 20 58 00 mv r11,r1
rtems_filesystem_freenode( &loc );
8028910: 2b 81 00 24 lw r1,(sp+36)
8028914: 44 20 00 05 be r1,r0,8028928 <symlink+0xfc> <== NEVER TAKEN
8028918: 28 22 00 1c lw r2,(r1+28)
802891c: 44 40 00 03 be r2,r0,8028928 <symlink+0xfc> <== NEVER TAKEN
8028920: b9 80 08 00 mv r1,r12 8028924: d8 40 00 00 call r2
return result; }
8028928: b9 60 08 00 mv r1,r11 802892c: 2b 9d 00 04 lw ra,(sp+4) 8028930: 2b 8b 00 14 lw r11,(sp+20) 8028934: 2b 8c 00 10 lw r12,(sp+16) 8028938: 2b 8d 00 0c lw r13,(sp+12) 802893c: 2b 8e 00 08 lw r14,(sp+8) 8028940: 37 9c 00 2c addi sp,sp,44 8028944: c3 a0 00 00 ret
08003c8c <sync_per_thread>: fdatasync(fn); } /* iterate over all FILE *'s for this thread */ static void sync_per_thread(Thread_Control *t) {
8003c8c: 37 9c ff f4 addi sp,sp,-12 8003c90: 5b 8b 00 0c sw (sp+12),r11 8003c94: 5b 8c 00 08 sw (sp+8),r12 8003c98: 5b 9d 00 04 sw (sp+4),ra
/* * The sync_wrapper() function will operate on the current thread's * reent structure so we will temporarily use that. */ this_reent = t->libc_reent;
8003c9c: 28 23 01 20 lw r3,(r1+288)
if ( this_reent ) {
8003ca0: 44 60 00 0c be r3,r0,8003cd0 <sync_per_thread+0x44> <== NEVER TAKEN
current_reent = _Thread_Executing->libc_reent;
8003ca4: 78 0b 08 02 mvhi r11,0x802 8003ca8: 39 6b 08 b8 ori r11,r11,0x8b8 8003cac: 29 64 00 00 lw r4,(r11+0)
_Thread_Executing->libc_reent = this_reent; _fwalk (t->libc_reent, sync_wrapper);
8003cb0: 78 02 08 00 mvhi r2,0x800 8003cb4: 38 42 3d 1c ori r2,r2,0x3d1c
* The sync_wrapper() function will operate on the current thread's * reent structure so we will temporarily use that. */ this_reent = t->libc_reent; if ( this_reent ) { current_reent = _Thread_Executing->libc_reent;
8003cb8: 28 8c 01 20 lw r12,(r4+288)
_Thread_Executing->libc_reent = this_reent;
8003cbc: 58 83 01 20 sw (r4+288),r3
_fwalk (t->libc_reent, sync_wrapper);
8003cc0: 28 21 01 20 lw r1,(r1+288) 8003cc4: f8 00 2b d9 calli 800ec28 <_fwalk>
_Thread_Executing->libc_reent = current_reent;
8003cc8: 29 61 00 00 lw r1,(r11+0) 8003ccc: 58 2c 01 20 sw (r1+288),r12
} }
8003cd0: 2b 9d 00 04 lw ra,(sp+4) 8003cd4: 2b 8b 00 0c lw r11,(sp+12) 8003cd8: 2b 8c 00 08 lw r12,(sp+8) 8003cdc: 37 9c 00 0c addi sp,sp,12 8003ce0: c3 a0 00 00 ret
0801075c <tcsetattr>: int tcsetattr( int fd, int opt, struct termios *tp ) {
801075c: 37 9c ff f4 addi sp,sp,-12 8010760: 5b 8b 00 0c sw (sp+12),r11 8010764: 5b 8c 00 08 sw (sp+8),r12 8010768: 5b 9d 00 04 sw (sp+4),ra 801076c: b8 60 58 00 mv r11,r3 8010770: b8 20 60 00 mv r12,r1
switch (opt) {
8010774: 44 40 00 0d be r2,r0,80107a8 <tcsetattr+0x4c> <== ALWAYS TAKEN
8010778: 34 03 00 01 mvi r3,1 <== NOT EXECUTED 801077c: 44 43 00 05 be r2,r3,8010790 <tcsetattr+0x34> <== NOT EXECUTED
default: rtems_set_errno_and_return_minus_one( ENOTSUP );
8010780: f8 00 12 44 calli 8015090 <__errno> <== NOT EXECUTED 8010784: 34 02 00 86 mvi r2,134 <== NOT EXECUTED 8010788: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 801078c: e0 00 00 05 bi 80107a0 <tcsetattr+0x44> <== NOT EXECUTED
case TCSADRAIN: if (ioctl( fd, RTEMS_IO_TCDRAIN, NULL ) < 0)
8010790: 34 02 00 03 mvi r2,3 <== NOT EXECUTED 8010794: 34 03 00 00 mvi r3,0 <== NOT EXECUTED 8010798: f8 00 0e 1c calli 8014008 <ioctl> <== NOT EXECUTED 801079c: 4c 20 00 03 bge r1,r0,80107a8 <tcsetattr+0x4c> <== NOT EXECUTED 80107a0: 34 01 ff ff mvi r1,-1 <== NOT EXECUTED 80107a4: e0 00 00 05 bi 80107b8 <tcsetattr+0x5c> <== NOT EXECUTED
return -1; /* * Fall through to.... */ case TCSANOW: return ioctl( fd, RTEMS_IO_SET_ATTRIBUTES, tp );
80107a8: b9 80 08 00 mv r1,r12 80107ac: b9 60 18 00 mv r3,r11 80107b0: 34 02 00 02 mvi r2,2 80107b4: f8 00 0e 15 calli 8014008 <ioctl>
} }
80107b8: 2b 9d 00 04 lw ra,(sp+4) 80107bc: 2b 8b 00 0c lw r11,(sp+12) 80107c0: 2b 8c 00 08 lw r12,(sp+8) 80107c4: 37 9c 00 0c addi sp,sp,12 80107c8: c3 a0 00 00 ret
0800abe8 <unlink>: #include <rtems/seterr.h> int unlink( const char *path ) {
800abe8: 37 9c ff c0 addi sp,sp,-64 800abec: 5b 8b 00 18 sw (sp+24),r11 800abf0: 5b 8c 00 14 sw (sp+20),r12 800abf4: 5b 8d 00 10 sw (sp+16),r13 800abf8: 5b 8e 00 0c sw (sp+12),r14 800abfc: 5b 8f 00 08 sw (sp+8),r15 800ac00: 5b 9d 00 04 sw (sp+4),ra 800ac04: b8 20 78 00 mv r15,r1
/* * Get the node to be unlinked. Find the parent path first. */ parentpathlen = rtems_filesystem_dirname ( path );
800ac08: fb ff d8 3a calli 8000cf0 <rtems_filesystem_dirname> 800ac0c: b8 20 68 00 mv r13,r1
if ( parentpathlen == 0 ) 800ac10: 5c 20 00 19 bne r1,r0,800ac74 <unlink+0x8c> rtems_filesystem_get_start_loc( path, &i, &parentloc );
800ac14: 41 e1 00 00 lbu r1,(r15+0) 800ac18: 64 23 00 5c cmpei r3,r1,92 800ac1c: 64 22 00 2f cmpei r2,r1,47 800ac20: b8 62 10 00 or r2,r3,r2
800ac24: 5c 4d 00 02 bne r2,r13,800ac2c <unlink+0x44>
800ac28: 5c 20 00 0a bne r1,r0,800ac50 <unlink+0x68> <== ALWAYS TAKEN
800ac2c: 78 01 08 01 mvhi r1,0x801 800ac30: 38 21 c1 10 ori r1,r1,0xc110 800ac34: 28 22 00 00 lw r2,(r1+0) 800ac38: 34 03 00 14 mvi r3,20 800ac3c: 37 81 00 30 addi r1,sp,48 800ac40: 34 42 00 18 addi r2,r2,24 800ac44: f8 00 03 59 calli 800b9a8 <memcpy> 800ac48: 34 0c 00 00 mvi r12,0 800ac4c: e0 00 00 12 bi 800ac94 <unlink+0xac> 800ac50: 78 01 08 01 mvhi r1,0x801 800ac54: 38 21 c1 10 ori r1,r1,0xc110 800ac58: 28 22 00 00 lw r2,(r1+0) 800ac5c: 34 03 00 14 mvi r3,20 800ac60: 37 81 00 30 addi r1,sp,48 800ac64: 34 42 00 04 addi r2,r2,4 800ac68: f8 00 03 50 calli 800b9a8 <memcpy> 800ac6c: b9 a0 60 00 mv r12,r13 800ac70: e0 00 00 09 bi 800ac94 <unlink+0xac>
else { result = rtems_filesystem_evaluate_path( path, parentpathlen,
800ac74: b9 e0 08 00 mv r1,r15 800ac78: b9 a0 10 00 mv r2,r13 800ac7c: 34 03 00 02 mvi r3,2 800ac80: 37 84 00 30 addi r4,sp,48 800ac84: 34 05 00 00 mvi r5,0 800ac88: fb ff d8 68 calli 8000e28 <rtems_filesystem_evaluate_path>
RTEMS_LIBIO_PERMS_WRITE, &parentloc, false ); if ( result != 0 )
800ac8c: 5c 20 00 5d bne r1,r0,800ae00 <unlink+0x218> <== NEVER TAKEN
800ac90: 34 0c 00 01 mvi r12,1
/* * Start from the parent to find the node that should be under it. */ loc = parentloc;
800ac94: 37 8b 00 1c addi r11,sp,28 800ac98: 37 8e 00 30 addi r14,sp,48 800ac9c: 34 03 00 14 mvi r3,20 800aca0: b9 c0 10 00 mv r2,r14 800aca4: b9 60 08 00 mv r1,r11 800aca8: f8 00 03 40 calli 800b9a8 <memcpy>
name = path + parentpathlen;
800acac: b5 ed 68 00 add r13,r15,r13
name += rtems_filesystem_prefix_separators( name, strlen( name ) );
800acb0: b9 a0 08 00 mv r1,r13 800acb4: f8 00 05 67 calli 800c250 <strlen> 800acb8: b8 20 10 00 mv r2,r1 800acbc: b9 a0 08 00 mv r1,r13 800acc0: fb ff d7 fd calli 8000cb4 <rtems_filesystem_prefix_separators> 800acc4: b5 a1 68 00 add r13,r13,r1
result = rtems_filesystem_evaluate_relative_path( name , strlen( name ),
800acc8: b9 a0 08 00 mv r1,r13 800accc: f8 00 05 61 calli 800c250 <strlen> 800acd0: 34 03 00 00 mvi r3,0 800acd4: b8 20 10 00 mv r2,r1 800acd8: b9 60 20 00 mv r4,r11 800acdc: b9 a0 08 00 mv r1,r13 800ace0: b8 60 28 00 mv r5,r3 800ace4: fb ff d8 17 calli 8000d40 <rtems_filesystem_evaluate_relative_path>
0, &loc, false ); if ( result != 0 ) { 800ace8: 44 20 00 09 be r1,r0,800ad0c <unlink+0x124> if ( free_parentloc )
800acec: 45 80 00 45 be r12,r0,800ae00 <unlink+0x218> <== NEVER TAKEN
rtems_filesystem_freenode( &parentloc );
800acf0: 2b 81 00 3c lw r1,(sp+60)
800acf4: 44 20 00 43 be r1,r0,800ae00 <unlink+0x218> <== NEVER TAKEN
800acf8: 28 22 00 1c lw r2,(r1+28)
800acfc: 44 40 00 41 be r2,r0,800ae00 <unlink+0x218> <== NEVER TAKEN
800ad00: b9 c0 08 00 mv r1,r14 800ad04: d8 40 00 00 call r2 800ad08: e0 00 00 3e bi 800ae00 <unlink+0x218>
return -1; } if ( !loc.ops->node_type_h ) {
800ad0c: 2b 82 00 28 lw r2,(sp+40) 800ad10: 28 43 00 10 lw r3,(r2+16)
800ad14: 5c 61 00 04 bne r3,r1,800ad24 <unlink+0x13c> <== ALWAYS TAKEN
rtems_filesystem_freenode( &loc );
800ad18: 28 42 00 1c lw r2,(r2+28) <== NOT EXECUTED 800ad1c: 5c 43 00 1a bne r2,r3,800ad84 <unlink+0x19c> <== NOT EXECUTED 800ad20: e0 00 00 1b bi 800ad8c <unlink+0x1a4> <== NOT EXECUTED
if ( free_parentloc ) rtems_filesystem_freenode( &parentloc ); rtems_set_errno_and_return_minus_one( ENOTSUP ); } if ( (*loc.ops->node_type_h)( &loc ) == RTEMS_FILESYSTEM_DIRECTORY ) {
800ad24: b9 60 08 00 mv r1,r11 800ad28: d8 60 00 00 call r3 800ad2c: 34 02 00 01 mvi r2,1 800ad30: 2b 83 00 28 lw r3,(sp+40)
800ad34: 5c 22 00 10 bne r1,r2,800ad74 <unlink+0x18c> rtems_filesystem_freenode( &loc );
800ad38: 44 60 00 05 be r3,r0,800ad4c <unlink+0x164> <== NEVER TAKEN
800ad3c: 28 62 00 1c lw r2,(r3+28)
800ad40: 44 40 00 03 be r2,r0,800ad4c <unlink+0x164> <== NEVER TAKEN
800ad44: b9 60 08 00 mv r1,r11 800ad48: d8 40 00 00 call r2
if ( free_parentloc )
800ad4c: 45 80 00 07 be r12,r0,800ad68 <unlink+0x180> <== ALWAYS TAKEN
rtems_filesystem_freenode( &parentloc );
800ad50: 2b 81 00 3c lw r1,(sp+60) <== NOT EXECUTED 800ad54: 44 20 00 05 be r1,r0,800ad68 <unlink+0x180> <== NOT EXECUTED 800ad58: 28 22 00 1c lw r2,(r1+28) <== NOT EXECUTED 800ad5c: 44 40 00 03 be r2,r0,800ad68 <unlink+0x180> <== NOT EXECUTED 800ad60: 37 81 00 30 addi r1,sp,48 <== NOT EXECUTED 800ad64: d8 40 00 00 call r2 <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( EISDIR );
800ad68: f8 00 00 6a calli 800af10 <__errno> 800ad6c: 34 02 00 15 mvi r2,21 800ad70: e0 00 00 10 bi 800adb0 <unlink+0x1c8>
} if ( !loc.ops->unlink_h ) {
800ad74: 28 64 00 0c lw r4,(r3+12)
800ad78: 5c 80 00 10 bne r4,r0,800adb8 <unlink+0x1d0> <== ALWAYS TAKEN
rtems_filesystem_freenode( &loc );
800ad7c: 28 62 00 1c lw r2,(r3+28) <== NOT EXECUTED 800ad80: 44 44 00 03 be r2,r4,800ad8c <unlink+0x1a4> <== NOT EXECUTED 800ad84: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 800ad88: d8 40 00 00 call r2 <== NOT EXECUTED
if ( free_parentloc )
800ad8c: 45 80 00 07 be r12,r0,800ada8 <unlink+0x1c0> <== NOT EXECUTED
rtems_filesystem_freenode( &parentloc );
800ad90: 2b 81 00 3c lw r1,(sp+60) <== NOT EXECUTED 800ad94: 44 20 00 05 be r1,r0,800ada8 <unlink+0x1c0> <== NOT EXECUTED 800ad98: 28 22 00 1c lw r2,(r1+28) <== NOT EXECUTED 800ad9c: 44 40 00 03 be r2,r0,800ada8 <unlink+0x1c0> <== NOT EXECUTED 800ada0: 37 81 00 30 addi r1,sp,48 <== NOT EXECUTED 800ada4: d8 40 00 00 call r2 <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( ENOTSUP );
800ada8: f8 00 00 5a calli 800af10 <__errno> <== NOT EXECUTED 800adac: 34 02 00 86 mvi r2,134 <== NOT EXECUTED
800adb0: 58 22 00 00 sw (r1+0),r2 800adb4: e0 00 00 13 bi 800ae00 <unlink+0x218>
} result = (*loc.ops->unlink_h)( &parentloc, &loc );
800adb8: b9 c0 08 00 mv r1,r14 800adbc: b9 60 10 00 mv r2,r11 800adc0: d8 80 00 00 call r4 800adc4: b8 20 68 00 mv r13,r1
rtems_filesystem_freenode( &loc );
800adc8: 2b 81 00 28 lw r1,(sp+40)
800adcc: 44 20 00 05 be r1,r0,800ade0 <unlink+0x1f8> <== NEVER TAKEN
800add0: 28 22 00 1c lw r2,(r1+28)
800add4: 44 40 00 03 be r2,r0,800ade0 <unlink+0x1f8> <== NEVER TAKEN
800add8: b9 60 08 00 mv r1,r11 800addc: d8 40 00 00 call r2
if ( free_parentloc ) 800ade0: 45 80 00 09 be r12,r0,800ae04 <unlink+0x21c> rtems_filesystem_freenode( &parentloc );
800ade4: 2b 81 00 3c lw r1,(sp+60)
800ade8: 44 20 00 07 be r1,r0,800ae04 <unlink+0x21c> <== NEVER TAKEN
800adec: 28 22 00 1c lw r2,(r1+28)
800adf0: 44 40 00 05 be r2,r0,800ae04 <unlink+0x21c> <== NEVER TAKEN
800adf4: 37 81 00 30 addi r1,sp,48 800adf8: d8 40 00 00 call r2 800adfc: e0 00 00 02 bi 800ae04 <unlink+0x21c> 800ae00: 34 0d ff ff mvi r13,-1
return result; }
800ae04: b9 a0 08 00 mv r1,r13 800ae08: 2b 9d 00 04 lw ra,(sp+4) 800ae0c: 2b 8b 00 18 lw r11,(sp+24) 800ae10: 2b 8c 00 14 lw r12,(sp+20) 800ae14: 2b 8d 00 10 lw r13,(sp+16) 800ae18: 2b 8e 00 0c lw r14,(sp+12) 800ae1c: 2b 8f 00 08 lw r15,(sp+8) 800ae20: 37 9c 00 40 addi sp,sp,64 800ae24: c3 a0 00 00 ret
08028a58 <unmount>: */ int unmount( const char *path ) {
8028a58: 37 9c ff dc addi sp,sp,-36 8028a5c: 5b 8b 00 10 sw (sp+16),r11 8028a60: 5b 8c 00 0c sw (sp+12),r12 8028a64: 5b 8d 00 08 sw (sp+8),r13 8028a68: 5b 9d 00 04 sw (sp+4),ra 8028a6c: b8 20 58 00 mv r11,r1
* The root node of the mounted filesytem. * The node for the directory that the fileystem is mounted on. * The mount entry that is being refered to. */ if ( rtems_filesystem_evaluate_path( path, strlen( path ), 0x0, &loc, true ) )
8028a70: 37 8c 00 14 addi r12,sp,20 8028a74: f8 00 85 92 calli 804a0bc <strlen> 8028a78: b8 20 10 00 mv r2,r1 8028a7c: 34 03 00 00 mvi r3,0 8028a80: b9 60 08 00 mv r1,r11 8028a84: b9 80 20 00 mv r4,r12 8028a88: 34 05 00 01 mvi r5,1 8028a8c: fb ff 75 e2 calli 8006214 <rtems_filesystem_evaluate_path>
8028a90: 5c 20 00 4e bne r1,r0,8028bc8 <unmount+0x170> return -1; mt_entry = loc.mt_entry;
8028a94: 2b 8b 00 24 lw r11,(sp+36)
fs_mount_loc = &mt_entry->mt_point_node; fs_root_loc = &mt_entry->mt_fs_root;
8028a98: 2b 81 00 14 lw r1,(sp+20) 8028a9c: 2b 82 00 20 lw r2,(sp+32) 8028aa0: 29 63 00 1c lw r3,(r11+28)
8028aa4: 44 61 00 09 be r3,r1,8028ac8 <unmount+0x70> /* * Verify this is the root node for the file system to be unmounted. */ if ( !rtems_filesystem_nodes_equal( fs_root_loc, &loc) ){ rtems_filesystem_freenode( &loc );
8028aa8: 44 40 00 05 be r2,r0,8028abc <unmount+0x64> <== NEVER TAKEN
8028aac: 28 42 00 1c lw r2,(r2+28)
8028ab0: 44 40 00 03 be r2,r0,8028abc <unmount+0x64> <== NEVER TAKEN
8028ab4: b9 80 08 00 mv r1,r12 8028ab8: d8 40 00 00 call r2
rtems_set_errno_and_return_minus_one( EACCES );
8028abc: f8 00 67 96 calli 8042914 <__errno> 8028ac0: 34 02 00 0d mvi r2,13 8028ac4: e0 00 00 20 bi 8028b44 <unmount+0xec>
/* * Free the loc node and just use the nodes from the mt_entry . */ rtems_filesystem_freenode( &loc );
8028ac8: 44 40 00 05 be r2,r0,8028adc <unmount+0x84> <== NEVER TAKEN
8028acc: 28 42 00 1c lw r2,(r2+28)
8028ad0: 44 40 00 03 be r2,r0,8028adc <unmount+0x84> <== NEVER TAKEN
8028ad4: b9 80 08 00 mv r1,r12 8028ad8: d8 40 00 00 call r2
if ( rtems_filesystem_evaluate_path( path, strlen( path ), 0x0, &loc, true ) ) return -1; mt_entry = loc.mt_entry; fs_mount_loc = &mt_entry->mt_point_node;
8028adc: 29 61 00 14 lw r1,(r11+20) 8028ae0: 28 21 00 28 lw r1,(r1+40)
8028ae4: 44 20 00 04 be r1,r0,8028af4 <unmount+0x9c> <== NEVER TAKEN
fs_root_loc = &mt_entry->mt_fs_root;
8028ae8: 29 61 00 28 lw r1,(r11+40) 8028aec: 28 21 00 2c lw r1,(r1+44)
8028af0: 5c 20 00 04 bne r1,r0,8028b00 <unmount+0xa8> <== ALWAYS TAKEN
if ( !fs_mount_loc->ops->unmount_h ) rtems_set_errno_and_return_minus_one( ENOTSUP ); if ( !fs_root_loc->ops->fsunmount_me_h ) rtems_set_errno_and_return_minus_one( ENOTSUP );
8028af4: f8 00 67 88 calli 8042914 <__errno> <== NOT EXECUTED 8028af8: 34 02 00 86 mvi r2,134 <== NOT EXECUTED 8028afc: e0 00 00 12 bi 8028b44 <unmount+0xec> <== NOT EXECUTED
* that made the current node thread based instead * of system based? I thought it was but it doesn't * look like it in this version. */ if ( rtems_filesystem_current.mt_entry == mt_entry )
8028b00: 78 01 08 06 mvhi r1,0x806 8028b04: 38 21 b2 f0 ori r1,r1,0xb2f0 8028b08: 28 21 00 00 lw r1,(r1+0) 8028b0c: 28 21 00 14 lw r1,(r1+20)
8028b10: 44 2b 00 0b be r1,r11,8028b3c <unmount+0xe4> /* * Search the mount table for any mount entries referencing this * mount entry. */ for ( the_node = rtems_filesystem_mount_table_control.first;
8028b14: 78 01 08 06 mvhi r1,0x806 8028b18: 38 21 ee d8 ori r1,r1,0xeed8 8028b1c: 34 22 00 04 addi r2,r1,4 8028b20: e0 00 00 04 bi 8028b30 <unmount+0xd8>
if ( rtems_filesystem_evaluate_path( path, strlen( path ), 0x0, &loc, true ) ) return -1; mt_entry = loc.mt_entry; fs_mount_loc = &mt_entry->mt_point_node; fs_root_loc = &mt_entry->mt_fs_root;
8028b24: 28 24 00 18 lw r4,(r1+24) 8028b28: 29 63 00 2c lw r3,(r11+44)
8028b2c: 44 83 00 04 be r4,r3,8028b3c <unmount+0xe4> * mount entry. */ for ( the_node = rtems_filesystem_mount_table_control.first; !rtems_chain_is_tail( &rtems_filesystem_mount_table_control, the_node ); the_node = the_node->next ) {
8028b30: 28 21 00 00 lw r1,(r1+0)
8028b34: 5c 22 ff fc bne r1,r2,8028b24 <unmount+0xcc>
8028b38: e0 00 00 2b bi 8028be4 <unmount+0x18c>
* descriptors that are currently active and reference nodes in the * file system that we are trying to unmount */ if ( rtems_libio_is_open_files_in_fs( mt_entry ) == 1 ) rtems_set_errno_and_return_minus_one( EBUSY );
8028b3c: f8 00 67 76 calli 8042914 <__errno> 8028b40: 34 02 00 10 mvi r2,16 8028b44: 58 22 00 00 sw (r1+0),r2 8028b48: e0 00 00 20 bi 8028bc8 <unmount+0x170>
* Allow the file system being unmounted on to do its cleanup. * If it fails it will set the errno to the approprate value * and the fileystem will not be modified. */ if (( fs_mount_loc->ops->unmount_h )( mt_entry ) != 0 )
8028b4c: 29 62 00 14 lw r2,(r11+20) 8028b50: b9 60 08 00 mv r1,r11 8028b54: 28 42 00 28 lw r2,(r2+40) 8028b58: d8 40 00 00 call r2 8028b5c: b8 20 68 00 mv r13,r1
8028b60: 5c 20 00 1a bne r1,r0,8028bc8 <unmount+0x170> <== NEVER TAKEN
* NOTE: Fatal error is called in a case which should never happen * This was response was questionable but the best we could * come up with. */ if ((fs_root_loc->ops->fsunmount_me_h )( mt_entry ) != 0){
8028b64: 29 62 00 28 lw r2,(r11+40) 8028b68: b9 60 08 00 mv r1,r11 8028b6c: 28 42 00 2c lw r2,(r2+44) 8028b70: d8 40 00 00 call r2 8028b74: b8 20 60 00 mv r12,r1
8028b78: 44 2d 00 08 be r1,r13,8028b98 <unmount+0x140> <== ALWAYS TAKEN
if (( fs_mount_loc->ops->mount_h )( mt_entry ) != 0 )
8028b7c: 29 62 00 14 lw r2,(r11+20) <== NOT EXECUTED 8028b80: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8028b84: 28 42 00 20 lw r2,(r2+32) <== NOT EXECUTED 8028b88: d8 40 00 00 call r2 <== NOT EXECUTED 8028b8c: 44 20 00 0f be r1,r0,8028bc8 <unmount+0x170> <== NOT EXECUTED
rtems_fatal_error_occurred( 0 );
8028b90: b9 a0 08 00 mv r1,r13 <== NOT EXECUTED 8028b94: fb ff 80 a6 calli 8008e2c <rtems_fatal_error_occurred> <== NOT EXECUTED
*/ RTEMS_INLINE_ROUTINE void rtems_chain_extract( rtems_chain_node *the_node ) { _Chain_Extract( the_node );
8028b98: b9 60 08 00 mv r1,r11 8028b9c: fb ff 81 a1 calli 8009220 <_Chain_Extract>
/* * Free the memory node that was allocated in mount * Free the memory associated with the extracted mount table entry. */ rtems_filesystem_freenode( fs_mount_loc );
8028ba0: 29 61 00 14 lw r1,(r11+20)
8028ba4: 44 2c 00 05 be r1,r12,8028bb8 <unmount+0x160> <== NEVER TAKEN
8028ba8: 28 22 00 1c lw r2,(r1+28)
8028bac: 44 4c 00 03 be r2,r12,8028bb8 <unmount+0x160> <== NEVER TAKEN
8028bb0: 35 61 00 08 addi r1,r11,8 8028bb4: d8 40 00 00 call r2
free( mt_entry );
8028bb8: b9 60 08 00 mv r1,r11 8028bbc: fb ff 75 d3 calli 8006308 <free> 8028bc0: 34 01 00 00 mvi r1,0
return 0;
8028bc4: e0 00 00 02 bi 8028bcc <unmount+0x174> 8028bc8: 34 01 ff ff mvi r1,-1
}
8028bcc: 2b 9d 00 04 lw ra,(sp+4) 8028bd0: 2b 8b 00 10 lw r11,(sp+16) 8028bd4: 2b 8c 00 0c lw r12,(sp+12) 8028bd8: 2b 8d 00 08 lw r13,(sp+8) 8028bdc: 37 9c 00 24 addi sp,sp,36 8028be0: c3 a0 00 00 ret
* Run the file descriptor table to determine if there are any file * descriptors that are currently active and reference nodes in the * file system that we are trying to unmount */ if ( rtems_libio_is_open_files_in_fs( mt_entry ) == 1 )
8028be4: b9 60 08 00 mv r1,r11 8028be8: fb ff 76 ab calli 8006694 <rtems_libio_is_open_files_in_fs> 8028bec: 34 02 00 01 mvi r2,1
8028bf0: 5c 22 ff d7 bne r1,r2,8028b4c <unmount+0xf4>
8028bf4: e3 ff ff d2 bi 8028b3c <unmount+0xe4>
08028bf8 <utime>: int utime( const char *path, const struct utimbuf *times ) {
8028bf8: 37 9c ff dc addi sp,sp,-36 8028bfc: 5b 8b 00 10 sw (sp+16),r11 8028c00: 5b 8c 00 0c sw (sp+12),r12 8028c04: 5b 8d 00 08 sw (sp+8),r13 8028c08: 5b 9d 00 04 sw (sp+4),ra 8028c0c: b8 20 60 00 mv r12,r1 8028c10: b8 40 68 00 mv r13,r2
rtems_filesystem_location_info_t temp_loc; int result; if ( rtems_filesystem_evaluate_path( path, strlen( path ), 0x00, &temp_loc, true ) )
8028c14: 37 8b 00 14 addi r11,sp,20 8028c18: f8 00 85 29 calli 804a0bc <strlen> 8028c1c: b8 20 10 00 mv r2,r1 8028c20: 34 03 00 00 mvi r3,0 8028c24: b9 80 08 00 mv r1,r12 8028c28: b9 60 20 00 mv r4,r11 8028c2c: 34 05 00 01 mvi r5,1 8028c30: fb ff 75 79 calli 8006214 <rtems_filesystem_evaluate_path> 8028c34: 34 0c ff ff mvi r12,-1
8028c38: 5c 20 00 18 bne r1,r0,8028c98 <utime+0xa0> return -1; if ( !temp_loc.ops->utime_h ){
8028c3c: 2b 82 00 20 lw r2,(sp+32) 8028c40: 28 44 00 30 lw r4,(r2+48)
8028c44: 5c 81 00 0a bne r4,r1,8028c6c <utime+0x74> <== ALWAYS TAKEN
rtems_filesystem_freenode( &temp_loc );
8028c48: 28 42 00 1c lw r2,(r2+28) <== NOT EXECUTED 8028c4c: 44 44 00 03 be r2,r4,8028c58 <utime+0x60> <== NOT EXECUTED 8028c50: b9 60 08 00 mv r1,r11 <== NOT EXECUTED 8028c54: d8 40 00 00 call r2 <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( ENOTSUP );
8028c58: f8 00 67 2f calli 8042914 <__errno> <== NOT EXECUTED 8028c5c: 34 02 00 86 mvi r2,134 <== NOT EXECUTED 8028c60: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 8028c64: 34 0c ff ff mvi r12,-1 <== NOT EXECUTED 8028c68: e0 00 00 0c bi 8028c98 <utime+0xa0> <== NOT EXECUTED
} result = (*temp_loc.ops->utime_h)( &temp_loc, times->actime, times->modtime );
8028c6c: 29 a3 00 04 lw r3,(r13+4) 8028c70: 29 a2 00 00 lw r2,(r13+0) 8028c74: b9 60 08 00 mv r1,r11 8028c78: d8 80 00 00 call r4 8028c7c: b8 20 60 00 mv r12,r1
rtems_filesystem_freenode( &temp_loc );
8028c80: 2b 81 00 20 lw r1,(sp+32)
8028c84: 44 20 00 05 be r1,r0,8028c98 <utime+0xa0> <== NEVER TAKEN
8028c88: 28 22 00 1c lw r2,(r1+28)
8028c8c: 44 40 00 03 be r2,r0,8028c98 <utime+0xa0> <== NEVER TAKEN
8028c90: b9 60 08 00 mv r1,r11 8028c94: d8 40 00 00 call r2
return result; }
8028c98: b9 80 08 00 mv r1,r12 8028c9c: 2b 9d 00 04 lw ra,(sp+4) 8028ca0: 2b 8b 00 10 lw r11,(sp+16) 8028ca4: 2b 8c 00 0c lw r12,(sp+12) 8028ca8: 2b 8d 00 08 lw r13,(sp+8) 8028cac: 37 9c 00 24 addi sp,sp,36 8028cb0: c3 a0 00 00 ret
0801993c <write>: ssize_t write( int fd, const void *buffer, size_t count ) {
801993c: 37 9c ff e8 addi sp,sp,-24 8019940: 5b 8b 00 14 sw (sp+20),r11 8019944: 5b 8c 00 10 sw (sp+16),r12 8019948: 5b 8d 00 0c sw (sp+12),r13 801994c: 5b 8e 00 08 sw (sp+8),r14 8019950: 5b 9d 00 04 sw (sp+4),ra
ssize_t rc; rtems_libio_t *iop; rtems_libio_check_fd( fd );
8019954: 78 04 08 01 mvhi r4,0x801 8019958: 38 84 c0 10 ori r4,r4,0xc010 801995c: 28 84 00 00 lw r4,(r4+0)
ssize_t write( int fd, const void *buffer, size_t count ) {
8019960: b8 40 68 00 mv r13,r2
ssize_t rc; rtems_libio_t *iop; rtems_libio_check_fd( fd );
8019964: 54 81 00 02 bgu r4,r1,801996c <write+0x30> <== ALWAYS TAKEN
8019968: e0 00 00 10 bi 80199a8 <write+0x6c> <== NOT EXECUTED
iop = rtems_libio_iop( fd );
801996c: 34 02 00 03 mvi r2,3 8019970: 5b 83 00 18 sw (sp+24),r3 8019974: 78 0b 08 01 mvhi r11,0x801 8019978: fb ff 9a 1e calli 80001f0 <__ashlsi3> 801997c: 34 02 00 03 mvi r2,3 8019980: 39 6b c6 9c ori r11,r11,0xc69c 8019984: b8 20 70 00 mv r14,r1 8019988: fb ff 9a 1a calli 80001f0 <__ashlsi3> 801998c: 29 6c 00 00 lw r12,(r11+0) 8019990: b5 c1 08 00 add r1,r14,r1
rtems_libio_check_is_open( iop );
8019994: 2b 83 00 18 lw r3,(sp+24)
{ ssize_t rc; rtems_libio_t *iop; rtems_libio_check_fd( fd ); iop = rtems_libio_iop( fd );
8019998: b5 81 60 00 add r12,r12,r1
rtems_libio_check_is_open( iop );
801999c: 29 81 00 18 lw r1,(r12+24) 80199a0: 20 22 01 00 andi r2,r1,0x100
80199a4: 5c 40 00 04 bne r2,r0,80199b4 <write+0x78> <== ALWAYS TAKEN
80199a8: fb ff c5 5a calli 800af10 <__errno> <== NOT EXECUTED 80199ac: 34 02 00 09 mvi r2,9 <== NOT EXECUTED 80199b0: e0 00 00 0e bi 80199e8 <write+0xac> <== NOT EXECUTED
rtems_libio_check_buffer( buffer );
80199b4: 45 a0 00 05 be r13,r0,80199c8 <write+0x8c> <== NEVER TAKEN
rtems_libio_check_count( count );
80199b8: b8 60 58 00 mv r11,r3
80199bc: 44 60 00 1d be r3,r0,8019a30 <write+0xf4> rtems_libio_check_permissions( iop, LIBIO_FLAGS_WRITE );
80199c0: 20 21 00 04 andi r1,r1,0x4
80199c4: 5c 20 00 04 bne r1,r0,80199d4 <write+0x98> <== ALWAYS TAKEN
80199c8: fb ff c5 52 calli 800af10 <__errno> <== NOT EXECUTED 80199cc: 34 02 00 16 mvi r2,22 <== NOT EXECUTED 80199d0: e0 00 00 06 bi 80199e8 <write+0xac> <== NOT EXECUTED
/* * Now process the write() request. */ if ( !iop->handlers->write_h )
80199d4: 29 81 00 40 lw r1,(r12+64) 80199d8: 28 24 00 0c lw r4,(r1+12)
80199dc: 5c 80 00 06 bne r4,r0,80199f4 <write+0xb8> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( ENOTSUP );
80199e0: fb ff c5 4c calli 800af10 <__errno> <== NOT EXECUTED 80199e4: 34 02 00 86 mvi r2,134 <== NOT EXECUTED 80199e8: 58 22 00 00 sw (r1+0),r2 <== NOT EXECUTED 80199ec: 34 0b ff ff mvi r11,-1 <== NOT EXECUTED 80199f0: e0 00 00 10 bi 8019a30 <write+0xf4> <== NOT EXECUTED
rc = (*iop->handlers->write_h)( iop, buffer, count );
80199f4: b9 a0 10 00 mv r2,r13 80199f8: b9 80 08 00 mv r1,r12 80199fc: d8 80 00 00 call r4 8019a00: b8 20 58 00 mv r11,r1
if ( rc > 0 )
8019a04: 4c 01 00 0b bge r0,r1,8019a30 <write+0xf4> <== NEVER TAKEN
iop->offset += rc;
8019a08: 34 02 00 1f mvi r2,31 8019a0c: fb ff 9a 49 calli 8000330 <__ashrsi3> 8019a10: 29 82 00 14 lw r2,(r12+20) 8019a14: 29 84 00 10 lw r4,(r12+16) 8019a18: b5 62 10 00 add r2,r11,r2 8019a1c: f5 62 18 00 cmpgu r3,r11,r2 8019a20: b4 24 08 00 add r1,r1,r4 8019a24: b4 61 08 00 add r1,r3,r1 8019a28: 59 82 00 14 sw (r12+20),r2 8019a2c: 59 81 00 10 sw (r12+16),r1
return rc; }
8019a30: b9 60 08 00 mv r1,r11 8019a34: 2b 9d 00 04 lw ra,(sp+4) 8019a38: 2b 8b 00 14 lw r11,(sp+20) 8019a3c: 2b 8c 00 10 lw r12,(sp+16) 8019a40: 2b 8d 00 0c lw r13,(sp+12) 8019a44: 2b 8e 00 08 lw r14,(sp+8) 8019a48: 37 9c 00 18 addi sp,sp,24 8019a4c: c3 a0 00 00 ret
08003a58 <writev>: ssize_t writev( int fd, const struct iovec *iov, int iovcnt ) {
8003a58: 37 9c ff e4 addi sp,sp,-28 8003a5c: 5b 8b 00 1c sw (sp+28),r11 8003a60: 5b 8c 00 18 sw (sp+24),r12 8003a64: 5b 8d 00 14 sw (sp+20),r13 8003a68: 5b 8e 00 10 sw (sp+16),r14 8003a6c: 5b 8f 00 0c sw (sp+12),r15 8003a70: 5b 90 00 08 sw (sp+8),r16 8003a74: 5b 9d 00 04 sw (sp+4),ra
int bytes; rtems_libio_t *iop; ssize_t old; bool all_zeros; rtems_libio_check_fd( fd );
8003a78: 78 04 08 02 mvhi r4,0x802 8003a7c: 38 84 00 10 ori r4,r4,0x10 8003a80: 28 84 00 00 lw r4,(r4+0)
ssize_t writev( int fd, const struct iovec *iov, int iovcnt ) {
8003a84: b8 40 68 00 mv r13,r2 8003a88: b8 60 80 00 mv r16,r3
int bytes; rtems_libio_t *iop; ssize_t old; bool all_zeros; rtems_libio_check_fd( fd );
8003a8c: 54 81 00 02 bgu r4,r1,8003a94 <writev+0x3c> <== ALWAYS TAKEN
8003a90: e0 00 00 0e bi 8003ac8 <writev+0x70> <== NOT EXECUTED
iop = rtems_libio_iop( fd );
8003a94: 34 02 00 03 mvi r2,3 8003a98: fb ff f5 06 calli 8000eb0 <__ashlsi3> 8003a9c: 78 0b 08 02 mvhi r11,0x802 8003aa0: 34 02 00 03 mvi r2,3 8003aa4: 39 6b 0e 70 ori r11,r11,0xe70 8003aa8: b8 20 70 00 mv r14,r1 8003aac: fb ff f5 01 calli 8000eb0 <__ashlsi3> 8003ab0: 29 6c 00 00 lw r12,(r11+0) 8003ab4: b5 c1 08 00 add r1,r14,r1 8003ab8: b5 81 60 00 add r12,r12,r1
rtems_libio_check_is_open( iop );
8003abc: 29 81 00 18 lw r1,(r12+24) 8003ac0: 20 22 01 00 andi r2,r1,0x100
8003ac4: 5c 40 00 04 bne r2,r0,8003ad4 <writev+0x7c>
8003ac8: f8 00 27 0f calli 800d704 <__errno> 8003acc: 34 02 00 09 mvi r2,9 8003ad0: e0 00 00 22 bi 8003b58 <writev+0x100>
rtems_libio_check_permissions( iop, LIBIO_FLAGS_WRITE );
8003ad4: 20 21 00 04 andi r1,r1,0x4
8003ad8: 44 20 00 1e be r1,r0,8003b50 <writev+0xf8> <== NEVER TAKEN
/* * Argument validation on IO vector */ if ( !iov ) 8003adc: 45 a0 00 1d be r13,r0,8003b50 <writev+0xf8> rtems_set_errno_and_return_minus_one( EINVAL ); if ( iovcnt <= 0 ) 8003ae0: 4a 00 00 02 bg r16,r0,8003ae8 <writev+0x90>
8003ae4: e0 00 00 1b bi 8003b50 <writev+0xf8>
rtems_set_errno_and_return_minus_one( EINVAL ); if ( iovcnt > IOV_MAX )
8003ae8: 34 01 04 00 mvi r1,1024
8003aec: 4c 30 00 02 bge r1,r16,8003af4 <writev+0x9c> <== ALWAYS TAKEN
8003af0: e0 00 00 18 bi 8003b50 <writev+0xf8> <== NOT EXECUTED
rtems_set_errno_and_return_minus_one( EINVAL ); if ( !iop->handlers->write_h )
8003af4: 29 81 00 40 lw r1,(r12+64) 8003af8: 28 21 00 0c lw r1,(r1+12)
8003afc: 5c 20 00 04 bne r1,r0,8003b0c <writev+0xb4> <== ALWAYS TAKEN
rtems_set_errno_and_return_minus_one( ENOTSUP );
8003b00: f8 00 27 01 calli 800d704 <__errno> <== NOT EXECUTED 8003b04: 34 02 00 86 mvi r2,134 <== NOT EXECUTED 8003b08: e0 00 00 14 bi 8003b58 <writev+0x100> <== NOT EXECUTED
8003b0c: 34 02 00 00 mvi r2,0 8003b10: b9 a0 08 00 mv r1,r13 8003b14: 34 0f 00 01 mvi r15,1 8003b18: b8 40 18 00 mv r3,r2
* entering the write loop. */ all_zeros = true; for ( old=0, total=0, v=0 ; v < iovcnt ; v++ ) { if ( !iov[v].iov_base )
8003b1c: 28 24 00 00 lw r4,(r1+0)
* this loop does that check as well and sets "all-zero" appropriately. * The variable "all_zero" is used as an early exit point before * entering the write loop. */ all_zeros = true; for ( old=0, total=0, v=0 ; v < iovcnt ; v++ ) {
8003b20: 34 42 00 01 addi r2,r2,1
if ( !iov[v].iov_base ) 8003b24: 44 80 00 0b be r4,r0,8003b50 <writev+0xf8> rtems_set_errno_and_return_minus_one( EINVAL ); if ( iov[v].iov_len < 0 ) rtems_set_errno_and_return_minus_one( EINVAL ); if ( iov[v].iov_len )
8003b28: 28 25 00 04 lw r5,(r1+4)
* this loop does that check as well and sets "all-zero" appropriately. * The variable "all_zero" is used as an early exit point before * entering the write loop. */ all_zeros = true; for ( old=0, total=0, v=0 ; v < iovcnt ; v++ ) {
8003b2c: 34 21 00 08 addi r1,r1,8
if ( iov[v].iov_len ) all_zeros = false; /* check for wrap */ old = total; total += iov[v].iov_len;
8003b30: b4 65 20 00 add r4,r3,r5
if ( total < old || total > SSIZE_MAX )
8003b34: e8 64 18 00 cmpg r3,r3,r4
rtems_set_errno_and_return_minus_one( EINVAL ); if ( iov[v].iov_len < 0 ) rtems_set_errno_and_return_minus_one( EINVAL ); if ( iov[v].iov_len )
8003b38: 64 a5 00 00 cmpei r5,r5,0
all_zeros = false; /* check for wrap */ old = total; total += iov[v].iov_len; if ( total < old || total > SSIZE_MAX )
8003b3c: 68 86 7f ff cmpgi r6,r4,32767
rtems_set_errno_and_return_minus_one( EINVAL ); if ( iov[v].iov_len < 0 ) rtems_set_errno_and_return_minus_one( EINVAL ); if ( iov[v].iov_len )
8003b40: c8 05 28 00 sub r5,r0,r5
all_zeros = false; /* check for wrap */ old = total; total += iov[v].iov_len; if ( total < old || total > SSIZE_MAX )
8003b44: b8 c3 18 00 or r3,r6,r3
rtems_set_errno_and_return_minus_one( EINVAL ); if ( iov[v].iov_len < 0 ) rtems_set_errno_and_return_minus_one( EINVAL ); if ( iov[v].iov_len )
8003b48: a1 e5 78 00 and r15,r15,r5
all_zeros = false; /* check for wrap */ old = total; total += iov[v].iov_len; if ( total < old || total > SSIZE_MAX ) 8003b4c: 44 60 00 05 be r3,r0,8003b60 <writev+0x108> rtems_set_errno_and_return_minus_one( EINVAL );
8003b50: f8 00 26 ed calli 800d704 <__errno> 8003b54: 34 02 00 16 mvi r2,22 8003b58: 58 22 00 00 sw (r1+0),r2 8003b5c: e0 00 00 13 bi 8003ba8 <writev+0x150>
* this loop does that check as well and sets "all-zero" appropriately. * The variable "all_zero" is used as an early exit point before * entering the write loop. */ all_zeros = true; for ( old=0, total=0, v=0 ; v < iovcnt ; v++ ) { 8003b60: 4c 50 00 03 bge r2,r16,8003b6c <writev+0x114>
8003b64: b8 80 18 00 mv r3,r4 8003b68: e3 ff ff ed bi 8003b1c <writev+0xc4>
} /* * A writev with all zeros is supposed to have no effect per OpenGroup. */ if ( all_zeros == true ) {
8003b6c: b9 e0 58 00 mv r11,r15
8003b70: 45 e0 00 03 be r15,r0,8003b7c <writev+0x124>
8003b74: b8 60 58 00 mv r11,r3 8003b78: e0 00 00 1d bi 8003bec <writev+0x194>
/* * Now process the writev(). */ for ( total=0, v=0 ; v < iovcnt ; v++ ) { /* all zero lengths has no effect */ if ( iov[v].iov_len == 0 )
8003b7c: 29 a3 00 04 lw r3,(r13+4)
} /* * Now process the writev(). */ for ( total=0, v=0 ; v < iovcnt ; v++ ) {
8003b80: 35 ef 00 01 addi r15,r15,1
/* all zero lengths has no effect */ if ( iov[v].iov_len == 0 )
8003b84: 44 60 00 18 be r3,r0,8003be4 <writev+0x18c> <== NEVER TAKEN
continue; bytes = (*iop->handlers->write_h)( iop, iov[v].iov_base, iov[v].iov_len );
8003b88: 29 81 00 40 lw r1,(r12+64) 8003b8c: 29 a2 00 00 lw r2,(r13+0) 8003b90: 28 24 00 0c lw r4,(r1+12) 8003b94: b9 80 08 00 mv r1,r12 8003b98: d8 80 00 00 call r4 8003b9c: b8 20 70 00 mv r14,r1
if ( bytes < 0 ) return -1; if ( bytes > 0 ) { iop->offset += bytes;
8003ba0: 34 02 00 1f mvi r2,31
if ( iov[v].iov_len == 0 ) continue; bytes = (*iop->handlers->write_h)( iop, iov[v].iov_base, iov[v].iov_len ); if ( bytes < 0 )
8003ba4: 4c 20 00 03 bge r1,r0,8003bb0 <writev+0x158> <== ALWAYS TAKEN
8003ba8: 34 0b ff ff mvi r11,-1 8003bac: e0 00 00 10 bi 8003bec <writev+0x194>
return -1; if ( bytes > 0 ) {
8003bb0: 44 20 00 0b be r1,r0,8003bdc <writev+0x184> <== NEVER TAKEN
iop->offset += bytes;
8003bb4: fb ff f5 0f calli 8000ff0 <__ashrsi3> 8003bb8: 29 82 00 14 lw r2,(r12+20) 8003bbc: 29 84 00 10 lw r4,(r12+16)
total += bytes;
8003bc0: b5 6e 58 00 add r11,r11,r14
if ( bytes < 0 ) return -1; if ( bytes > 0 ) { iop->offset += bytes;
8003bc4: b5 c2 10 00 add r2,r14,r2 8003bc8: f5 c2 18 00 cmpgu r3,r14,r2 8003bcc: b4 24 08 00 add r1,r1,r4 8003bd0: b4 61 08 00 add r1,r3,r1 8003bd4: 59 81 00 10 sw (r12+16),r1 8003bd8: 59 82 00 14 sw (r12+20),r2
total += bytes; } if (bytes != iov[ v ].iov_len)
8003bdc: 29 a1 00 04 lw r1,(r13+4)
8003be0: 5d c1 00 03 bne r14,r1,8003bec <writev+0x194> <== NEVER TAKEN
} /* * Now process the writev(). */ for ( total=0, v=0 ; v < iovcnt ; v++ ) {
8003be4: 35 ad 00 08 addi r13,r13,8
8003be8: 4a 0f ff e5 bg r16,r15,8003b7c <writev+0x124> if (bytes != iov[ v ].iov_len) break; } return total; }
8003bec: b9 60 08 00 mv r1,r11 8003bf0: 2b 9d 00 04 lw ra,(sp+4) 8003bf4: 2b 8b 00 1c lw r11,(sp+28) 8003bf8: 2b 8c 00 18 lw r12,(sp+24) 8003bfc: 2b 8d 00 14 lw r13,(sp+20) 8003c00: 2b 8e 00 10 lw r14,(sp+16) 8003c04: 2b 8f 00 0c lw r15,(sp+12) 8003c08: 2b 90 00 08 lw r16,(sp+8) 8003c0c: 37 9c 00 1c addi sp,sp,28 8003c10: c3 a0 00 00 ret