#include "config.h"
#include <stdio.h>
#include "dwarf_incl.h"
#include "dwarf_alloc.h"
#include "dwarf_error.h"
#include "dwarf_util.h"
#include "dwarf_arange.h"
#include "dwarf_global.h"
#include "dwarfstring.h"
static void
free_aranges_chain(Dwarf_Debug dbg, Dwarf_Chain head)
{
Dwarf_Chain cur = head;
Dwarf_Chain next = 0;
if(!head) {
return;
}
next = head->ch_next;
for( ;cur; cur = next) {
void *item = cur->ch_item;
int type = cur->ch_itemtype;
next = cur->ch_next;
if (item && type) {
dwarf_dealloc(dbg,item,type);
cur->ch_item = 0;
dwarf_dealloc(dbg,cur,DW_DLA_CHAIN);
}
}
}
static int
dwarf_get_aranges_list(Dwarf_Debug dbg,
Dwarf_Chain * chain_out,
Dwarf_Signed * chain_count_out,
Dwarf_Error * error)
{
Dwarf_Small *arange_ptr = 0;
Dwarf_Small *arange_ptr_start = 0;
Dwarf_Small *header_ptr = 0;
Dwarf_Unsigned version = 0;
Dwarf_Off info_offset = 0;
Dwarf_Small address_size = 0;
Dwarf_Small segment_size = 0;
Dwarf_Signed arange_count = 0;
Dwarf_Arange arange = 0;
Dwarf_Unsigned section_size = 0;
Dwarf_Byte_Ptr arange_end_section = 0;
Dwarf_Chain curr_chain = NULL;
Dwarf_Chain prev_chain = NULL;
Dwarf_Chain head_chain = NULL;
if (!dbg->de_debug_aranges.dss_size) {
return DW_DLV_NO_ENTRY;
}
arange_ptr = dbg->de_debug_aranges.dss_data;
arange_ptr_start = arange_ptr;
section_size = dbg->de_debug_aranges.dss_size;
arange_end_section = arange_ptr + section_size;
do {
Dwarf_Unsigned area_length = 0;
Dwarf_Small remainder = 0;
Dwarf_Unsigned range_entry_size = 0;
int local_length_size;
int local_extension_size = 0;
Dwarf_Small *end_this_arange = 0;
int res = 0;
header_ptr = arange_ptr;
if (header_ptr >= arange_end_section) {
free_aranges_chain(dbg,head_chain);
_dwarf_error(dbg, error,DW_DLE_ARANGES_HEADER_ERROR);
return DW_DLV_ERROR;
}
res = _dwarf_read_area_length_ck_wrapper(dbg,&area_length,
&arange_ptr,&local_length_size,&local_extension_size,
section_size,arange_end_section,error);
if (res != DW_DLV_OK) {
free_aranges_chain(dbg,head_chain);
return res;
}
if (area_length > dbg->de_debug_aranges.dss_size) {
free_aranges_chain(dbg,head_chain);
_dwarf_error(dbg, error,DW_DLE_ARANGES_HEADER_ERROR);
return DW_DLV_ERROR;
}
if ((area_length + local_length_size + local_extension_size) >
dbg->de_debug_aranges.dss_size) {
free_aranges_chain(dbg,head_chain);
_dwarf_error(dbg, error, DW_DLE_ARANGES_HEADER_ERROR);
return DW_DLV_ERROR;
}
end_this_arange = arange_ptr + area_length;
if (end_this_arange > arange_end_section) {
free_aranges_chain(dbg,head_chain);
_dwarf_error(dbg, error,DW_DLE_ARANGES_HEADER_ERROR);
return DW_DLV_ERROR;
}
if (!area_length) {
continue;
}
res = _dwarf_read_unaligned_ck_wrapper(dbg,&version,
arange_ptr,DWARF_HALF_SIZE,end_this_arange,error);
if (res != DW_DLV_OK) {
free_aranges_chain(dbg,head_chain);
return res;
}
arange_ptr += DWARF_HALF_SIZE;
if (arange_ptr >= end_this_arange) {
free_aranges_chain(dbg,head_chain);
_dwarf_error(dbg, error, DW_DLE_ARANGES_HEADER_ERROR);
return DW_DLV_ERROR;
}
if (version != DW_ARANGES_VERSION2) {
free_aranges_chain(dbg,head_chain);
_dwarf_error(dbg, error, DW_DLE_VERSION_STAMP_ERROR);
return (DW_DLV_ERROR);
}
res = _dwarf_read_unaligned_ck_wrapper(dbg,&info_offset,
arange_ptr,local_length_size,end_this_arange,error);
if (res != DW_DLV_OK) {
free_aranges_chain(dbg,head_chain);
return res;
}
arange_ptr += local_length_size;
if (arange_ptr >= end_this_arange) {
free_aranges_chain(dbg,head_chain);
_dwarf_error(dbg, error, DW_DLE_ARANGES_HEADER_ERROR);
return DW_DLV_ERROR;
}
if (info_offset >= dbg->de_debug_info.dss_size) {
FIX_UP_OFFSET_IRIX_BUG(dbg, info_offset,
"arange info offset.a");
if (info_offset >= dbg->de_debug_info.dss_size) {
free_aranges_chain(dbg,head_chain);
_dwarf_error(dbg, error, DW_DLE_ARANGE_OFFSET_BAD);
return (DW_DLV_ERROR);
}
}
address_size = *(Dwarf_Small *) arange_ptr;
if (address_size > sizeof(Dwarf_Addr)) {
free_aranges_chain(dbg,head_chain);
_dwarf_error(dbg, error, DW_DLE_ADDRESS_SIZE_ERROR);
return DW_DLV_ERROR;
}
if (address_size == 0) {
free_aranges_chain(dbg,head_chain);
_dwarf_error(dbg, error, DW_DLE_ADDRESS_SIZE_ZERO);
return DW_DLV_ERROR;
}
arange_ptr = arange_ptr + sizeof(Dwarf_Small);
if (arange_ptr >= end_this_arange) {
free_aranges_chain(dbg,head_chain);
_dwarf_error(dbg, error, DW_DLE_ARANGE_OFFSET_BAD);
return DW_DLV_ERROR;
}
segment_size = *(Dwarf_Small *) arange_ptr;
if (segment_size > sizeof(Dwarf_Addr)) {
free_aranges_chain(dbg,head_chain);
_dwarf_error(dbg, error, DW_DLE_SEGMENT_SIZE_BAD);
return (DW_DLV_ERROR);
}
arange_ptr = arange_ptr + sizeof(Dwarf_Small);
if (arange_ptr > end_this_arange) {
free_aranges_chain(dbg,head_chain);
_dwarf_error(dbg, error, DW_DLE_ARANGE_OFFSET_BAD);
return (DW_DLV_ERROR);
}
range_entry_size = 2*address_size + segment_size;
remainder = (Dwarf_Unsigned) (arange_ptr - header_ptr) %
(range_entry_size);
if (remainder != 0) {
arange_ptr = arange_ptr + (2 * address_size) - remainder;
}
do {
Dwarf_Addr range_address = 0;
Dwarf_Unsigned segment_selector = 0;
Dwarf_Unsigned range_length = 0;
if (segment_size) {
res = _dwarf_read_unaligned_ck_wrapper(dbg,
&segment_selector,
arange_ptr,segment_size,end_this_arange,error);
if (res != DW_DLV_OK) {
free_aranges_chain(dbg,head_chain);
return res;
}
arange_ptr += address_size;
}
res = _dwarf_read_unaligned_ck_wrapper(dbg,&range_address,
arange_ptr,address_size,end_this_arange,error);
if (res != DW_DLV_OK) {
free_aranges_chain(dbg,head_chain);
return res;
}
arange_ptr += address_size;
res = _dwarf_read_unaligned_ck_wrapper(dbg,&range_length,
arange_ptr,address_size,end_this_arange,error);
if (res != DW_DLV_OK) {
free_aranges_chain(dbg,head_chain);
return res;
}
arange_ptr += address_size;
{
arange = (Dwarf_Arange)
_dwarf_get_alloc(dbg, DW_DLA_ARANGE, 1);
if (arange == NULL) {
free_aranges_chain(dbg,head_chain);
_dwarf_error(dbg, error, DW_DLE_ALLOC_FAIL);
return (DW_DLV_ERROR);
}
arange->ar_segment_selector = segment_selector;
arange->ar_segment_selector_size = segment_size;
arange->ar_address = range_address;
arange->ar_length = range_length;
arange->ar_info_offset = info_offset;
arange->ar_dbg = dbg;
arange_count++;
curr_chain = (Dwarf_Chain)
_dwarf_get_alloc(dbg, DW_DLA_CHAIN, 1);
if (curr_chain == NULL) {
free_aranges_chain(dbg,head_chain);
_dwarf_error(dbg, error, DW_DLE_ALLOC_FAIL);
return (DW_DLV_ERROR);
}
curr_chain->ch_item = arange;
curr_chain->ch_itemtype = DW_DLA_ARANGE;
if (head_chain == NULL)
head_chain = prev_chain = curr_chain;
else {
prev_chain->ch_next = curr_chain;
prev_chain = curr_chain;
}
}
} while (end_this_arange >= (arange_ptr + range_entry_size));
if (end_this_arange < arange_ptr) {
Dwarf_Unsigned pad_count = arange_ptr - end_this_arange;
Dwarf_Unsigned offset = arange_ptr - arange_ptr_start;
dwarfstring aramsg;
dwarfstring_constructor(&aramsg);
dwarfstring_append_printf_u(&aramsg,
"DW_DLE_ARANGE_LENGTH_BAD."
" 0x%" DW_PR_XZEROS DW_PR_DUx,
pad_count);
dwarfstring_append_printf_u(&aramsg,
" pad bytes at offset 0x%" DW_PR_XZEROS DW_PR_DUx
" in .debug_aranges",
offset);
dwarf_insert_harmless_error(dbg,
dwarfstring_string(&aramsg));
dwarfstring_destructor(&aramsg);
}
arange_ptr = end_this_arange;
} while (arange_ptr < arange_end_section);
if (arange_ptr != arange_end_section) {
free_aranges_chain(dbg,head_chain);
_dwarf_error(dbg, error, DW_DLE_ARANGE_DECODE_ERROR);
return (DW_DLV_ERROR);
}
*chain_out = head_chain;
*chain_count_out = arange_count;
return DW_DLV_OK;
}
int
dwarf_get_aranges(Dwarf_Debug dbg,
Dwarf_Arange ** aranges,
Dwarf_Signed * returned_count, Dwarf_Error * error)
{
Dwarf_Signed arange_count = 0;
Dwarf_Arange *arange_block = 0;
Dwarf_Chain curr_chain = NULL;
Dwarf_Chain prev_chain = NULL;
Dwarf_Chain head_chain = NULL;
Dwarf_Signed i = 0;
int res = DW_DLV_ERROR;
if (dbg == NULL) {
_dwarf_error(NULL, error, DW_DLE_DBG_NULL);
return (DW_DLV_ERROR);
}
res = _dwarf_load_section(dbg, &dbg->de_debug_aranges, error);
if (res != DW_DLV_OK) {
return res;
}
res = _dwarf_load_debug_info(dbg, error);
if (res != DW_DLV_OK) {
return res;
}
res = dwarf_get_aranges_list(dbg,&head_chain,&arange_count,error);
if (res != DW_DLV_OK) {
free_aranges_chain(dbg,head_chain);
return res;
}
arange_block = (Dwarf_Arange *)
_dwarf_get_alloc(dbg, DW_DLA_LIST, arange_count);
if (arange_block == NULL) {
_dwarf_error(dbg, error, DW_DLE_ALLOC_FAIL);
free_aranges_chain(dbg,head_chain);
return DW_DLV_ERROR;
}
curr_chain = head_chain;
for (i = 0; i < arange_count; i++) {
*(arange_block + i) = curr_chain->ch_item;
curr_chain->ch_item = 0;
prev_chain = curr_chain;
curr_chain = curr_chain->ch_next;
dwarf_dealloc(dbg, prev_chain, DW_DLA_CHAIN);
}
*aranges = arange_block;
*returned_count = (arange_count);
return DW_DLV_OK;
}
int
_dwarf_get_aranges_addr_offsets(Dwarf_Debug dbg,
Dwarf_Addr ** addrs,
Dwarf_Off ** offsets,
Dwarf_Signed * count,
Dwarf_Error * error)
{
Dwarf_Signed i = 0;
Dwarf_Chain curr_chain = NULL;
Dwarf_Chain prev_chain = NULL;
Dwarf_Chain head_chain = NULL;
Dwarf_Signed arange_count = 0;
Dwarf_Addr *arange_addrs = 0;
Dwarf_Off *arange_offsets = 0;
int res = DW_DLV_ERROR;
if (error != NULL)
*error = NULL;
if (dbg == NULL) {
_dwarf_error(NULL, error, DW_DLE_DBG_NULL);
return (DW_DLV_ERROR);
}
res = _dwarf_load_section(dbg, &dbg->de_debug_aranges,error);
if (res != DW_DLV_OK) {
return res;
}
res = _dwarf_load_debug_info(dbg, error);
if (res != DW_DLV_OK) {
return res;
}
res = dwarf_get_aranges_list(dbg,&head_chain,&arange_count,error);
if (res != DW_DLV_OK) {
return res;
}
arange_addrs = (Dwarf_Addr *)
_dwarf_get_alloc(dbg, DW_DLA_ADDR, arange_count);
if (arange_addrs == NULL) {
_dwarf_error(dbg, error, DW_DLE_ALLOC_FAIL);
return (DW_DLV_ERROR);
}
arange_offsets = (Dwarf_Off *)
_dwarf_get_alloc(dbg, DW_DLA_ADDR, arange_count);
if (arange_offsets == NULL) {
_dwarf_error(dbg, error, DW_DLE_ALLOC_FAIL);
return (DW_DLV_ERROR);
}
curr_chain = head_chain;
for (i = 0; i < arange_count; i++) {
Dwarf_Arange ar = curr_chain->ch_item;
int itemtype = curr_chain->ch_itemtype;
curr_chain->ch_item = 0;
arange_addrs[i] = ar->ar_address;
arange_offsets[i] = ar->ar_info_offset;
prev_chain = curr_chain;
curr_chain = curr_chain->ch_next;
if (ar && itemtype) {
dwarf_dealloc(dbg, ar, itemtype);
}
dwarf_dealloc(dbg, prev_chain, DW_DLA_CHAIN);
}
*count = arange_count;
*offsets = arange_offsets;
*addrs = arange_addrs;
return (DW_DLV_OK);
}
int
dwarf_get_arange(Dwarf_Arange * aranges,
Dwarf_Unsigned arange_count,
Dwarf_Addr address,
Dwarf_Arange * returned_arange, Dwarf_Error * error)
{
Dwarf_Arange curr_arange = 0;
Dwarf_Unsigned i = 0;
if (aranges == NULL) {
_dwarf_error(NULL, error, DW_DLE_ARANGES_NULL);
return (DW_DLV_ERROR);
}
for (i = 0; i < arange_count; i++) {
curr_arange = *(aranges + i);
if (address >= curr_arange->ar_address &&
address <
curr_arange->ar_address + curr_arange->ar_length) {
*returned_arange = curr_arange;
return (DW_DLV_OK);
}
}
return (DW_DLV_NO_ENTRY);
}
int
dwarf_get_cu_die_offset(Dwarf_Arange arange,
Dwarf_Off * returned_offset,
Dwarf_Error * error)
{
Dwarf_Debug dbg = 0;
Dwarf_Off offset = 0;
Dwarf_Unsigned headerlen = 0;
int cres = 0;
if (arange == NULL) {
_dwarf_error(NULL, error, DW_DLE_ARANGE_NULL);
return (DW_DLV_ERROR);
}
dbg = arange->ar_dbg;
offset = arange->ar_info_offset;
if (!dbg->de_debug_info.dss_data) {
int res = _dwarf_load_debug_info(dbg, error);
if (res != DW_DLV_OK) {
return res;
}
}
cres = _dwarf_length_of_cu_header(dbg, offset,
true, &headerlen,error);
if (cres != DW_DLV_OK) {
return cres;
}
*returned_offset = headerlen + offset;
return DW_DLV_OK;
}
int
dwarf_get_arange_cu_header_offset(Dwarf_Arange arange,
Dwarf_Off * cu_header_offset_returned,
Dwarf_Error * error)
{
Dwarf_Debug dbg = 0;
if (arange == NULL) {
_dwarf_error(NULL, error, DW_DLE_ARANGE_NULL);
return (DW_DLV_ERROR);
}
dbg = arange->ar_dbg;
if (!dbg->de_debug_info.dss_data) {
int res = _dwarf_load_debug_info(dbg, error);
if (res != DW_DLV_OK) {
return res;
}
}
*cu_header_offset_returned = arange->ar_info_offset;
return DW_DLV_OK;
}
int
dwarf_get_arange_info(Dwarf_Arange arange,
Dwarf_Addr * start,
Dwarf_Unsigned * length,
Dwarf_Off * cu_die_offset, Dwarf_Error * error)
{
if (arange == NULL) {
_dwarf_error(NULL, error, DW_DLE_ARANGE_NULL);
return (DW_DLV_ERROR);
}
if (start != NULL)
*start = arange->ar_address;
if (length != NULL)
*length = arange->ar_length;
if (cu_die_offset != NULL) {
Dwarf_Debug dbg = arange->ar_dbg;
Dwarf_Off headerlen = 0;
Dwarf_Off offset = arange->ar_info_offset;
int cres = 0;
if (!dbg->de_debug_info.dss_data) {
int res = _dwarf_load_debug_info(dbg, error);
if (res != DW_DLV_OK) {
return res;
}
}
cres = _dwarf_length_of_cu_header(dbg, offset,
true, &headerlen,error);
if (cres != DW_DLV_OK) {
return cres;
}
*cu_die_offset = headerlen + offset;
}
return (DW_DLV_OK);
}
int
dwarf_get_arange_info_b(Dwarf_Arange arange,
Dwarf_Unsigned* segment,
Dwarf_Unsigned* segment_entry_size,
Dwarf_Addr * start,
Dwarf_Unsigned* length,
Dwarf_Off * cu_die_offset,
Dwarf_Error * error)
{
if (arange == NULL) {
_dwarf_error(NULL, error, DW_DLE_ARANGE_NULL);
return DW_DLV_ERROR;
}
if (segment != NULL) {
*segment = arange->ar_segment_selector;
}
if (segment_entry_size != NULL) {
*segment_entry_size = arange->ar_segment_selector_size;
}
if (start != NULL)
*start = arange->ar_address;
if (length != NULL)
*length = arange->ar_length;
if (cu_die_offset != NULL) {
Dwarf_Debug dbg = arange->ar_dbg;
Dwarf_Off offset = arange->ar_info_offset;
Dwarf_Unsigned headerlen = 0;
int cres = 0;
if (!dbg->de_debug_info.dss_data) {
int res = _dwarf_load_debug_info(dbg, error);
if (res != DW_DLV_OK) {
return res;
}
}
cres = _dwarf_length_of_cu_header(dbg, offset,
true, &headerlen,error);
if (cres != DW_DLV_OK) {
return cres;
}
*cu_die_offset = offset + headerlen;
}
return (DW_DLV_OK);
}