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https://github.com/AsahiLinux/u-boot
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tools: relocate-rela: Fix ELF decoding on big-endian hosts
The new ELF decoding logic assumed that the target binary has the same endianness as the host, which broke building ARM64 firmware binaries on big-endian machines. This commit fixes the ELF64 decoding to be host-endianness-neutral, and applies the same changes to the ELF32 decoding. It does not fix the microblaze-specific dynamic symbol decoding. It also corrects the functions used for byte swapping in rela_elf64() and rela_elf32(). The result is the same, but semantically the code is converting bytes read from a foreign-endianness file to host byte order. Fixes:4c9e2d6434
("tools: relocate-rela: Read rela start/end directly from ELF") Fixes:a1405d9cfe
("tools: relocate-rela: Check that relocation works only for EM_AARCH64") Signed-off-by: Samuel Holland <samuel@sholland.org> Link: https://lore.kernel.org/r/20220715064026.54551-1-samuel@sholland.org Signed-off-by: Michal Simek <michal.simek@amd.com>
This commit is contained in:
parent
71f0773148
commit
5e0e1a86d3
1 changed files with 68 additions and 57 deletions
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@ -60,7 +60,9 @@ static int decode_elf64(FILE *felf, char **argv)
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{
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size_t size;
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Elf64_Ehdr header;
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uint64_t section_header_base, section_header_size, sh_offset, sh_size;
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uint64_t section_header_base, section_header_size;
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uint64_t sh_addr, sh_offset, sh_size;
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Elf64_Half sh_index, sh_num;
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Elf64_Shdr *sh_table; /* Elf symbol table */
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int ret, i, machine;
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char *sh_str;
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@ -76,7 +78,7 @@ static int decode_elf64(FILE *felf, char **argv)
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return 25;
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}
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machine = header.e_machine;
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machine = le16_to_cpu(header.e_machine);
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debug("Machine\t%d\n", machine);
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if (machine != EM_AARCH64) {
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@ -84,9 +86,10 @@ static int decode_elf64(FILE *felf, char **argv)
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return 30;
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}
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text_base = header.e_entry;
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section_header_base = header.e_shoff;
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section_header_size = header.e_shentsize * header.e_shnum;
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text_base = le64_to_cpu(header.e_entry);
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section_header_base = le64_to_cpu(header.e_shoff);
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section_header_size = le16_to_cpu(header.e_shentsize) *
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le16_to_cpu(header.e_shnum);
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sh_table = malloc(section_header_size);
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if (!sh_table) {
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@ -114,9 +117,9 @@ static int decode_elf64(FILE *felf, char **argv)
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return 27;
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}
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sh_size = sh_table[header.e_shstrndx].sh_size;
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debug("e_shstrndx\t0x%08x\n", header.e_shstrndx);
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debug("sh_size\t\t0x%08lx\n", sh_size);
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sh_index = le16_to_cpu(header.e_shstrndx);
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sh_size = le64_to_cpu(sh_table[sh_index].sh_size);
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debug("e_shstrndx %x, sh_size %lx\n", sh_index, sh_size);
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sh_str = malloc(sh_size);
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if (!sh_str) {
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@ -130,9 +133,8 @@ static int decode_elf64(FILE *felf, char **argv)
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* Specifies the byte offset from the beginning of the file
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* to the first byte in the section.
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*/
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sh_offset = sh_table[header.e_shstrndx].sh_offset;
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debug("sh_offset\t0x%08x\n", header.e_shnum);
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sh_offset = le64_to_cpu(sh_table[sh_index].sh_offset);
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sh_num = le16_to_cpu(header.e_shnum);
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ret = fseek(felf, sh_offset, SEEK_SET);
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if (ret) {
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@ -153,18 +155,22 @@ static int decode_elf64(FILE *felf, char **argv)
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return 30;
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}
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for (i = 0; i < header.e_shnum; i++) {
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/* fprintf(stderr, "%s\n", sh_str + sh_table[i].sh_name); Debug only */
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if (!strcmp(".rela.dyn", (sh_str + sh_table[i].sh_name))) {
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for (i = 0; i < sh_num; i++) {
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char *sh_name = sh_str + le32_to_cpu(sh_table[i].sh_name);
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debug("%s\n", sh_name);
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sh_addr = le64_to_cpu(sh_table[i].sh_addr);
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sh_offset = le64_to_cpu(sh_table[i].sh_offset);
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sh_size = le64_to_cpu(sh_table[i].sh_size);
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if (!strcmp(".rela.dyn", sh_name)) {
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debug("Found section\t\".rela_dyn\"\n");
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debug(" at addr\t0x%08x\n",
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(unsigned int)sh_table[i].sh_addr);
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debug(" at offset\t0x%08x\n",
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(unsigned int)sh_table[i].sh_offset);
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debug(" of size\t0x%08x\n",
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(unsigned int)sh_table[i].sh_size);
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rela_start = sh_table[i].sh_addr;
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rela_end = rela_start + sh_table[i].sh_size;
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debug(" at addr\t0x%08x\n", sh_addr);
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debug(" at offset\t0x%08x\n", sh_offset);
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debug(" of size\t0x%08x\n", sh_size);
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rela_start = sh_addr;
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rela_end = rela_start + sh_size;
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break;
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}
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}
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@ -188,7 +194,9 @@ static int decode_elf32(FILE *felf, char **argv)
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{
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size_t size;
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Elf32_Ehdr header;
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uint64_t section_header_base, section_header_size, sh_offset, sh_size;
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uint64_t section_header_base, section_header_size;
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uint32_t sh_addr, sh_offset, sh_size;
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Elf32_Half sh_index, sh_num;
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Elf32_Shdr *sh_table; /* Elf symbol table */
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int ret, i, machine;
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char *sh_str;
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@ -204,7 +212,7 @@ static int decode_elf32(FILE *felf, char **argv)
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return 25;
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}
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machine = header.e_machine;
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machine = le16_to_cpu(header.e_machine);
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debug("Machine %d\n", machine);
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if (machine != EM_MICROBLAZE) {
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@ -212,14 +220,10 @@ static int decode_elf32(FILE *felf, char **argv)
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return 30;
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}
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text_base = header.e_entry;
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section_header_base = header.e_shoff;
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debug("Section header base %x\n", section_header_base);
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section_header_size = header.e_shentsize * header.e_shnum;
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debug("Section header size %d\n", section_header_size);
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text_base = le32_to_cpu(header.e_entry);
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section_header_base = le32_to_cpu(header.e_shoff);
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section_header_size = le16_to_cpu(header.e_shentsize) *
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le16_to_cpu(header.e_shnum);
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sh_table = malloc(section_header_size);
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if (!sh_table) {
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@ -247,8 +251,9 @@ static int decode_elf32(FILE *felf, char **argv)
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return 27;
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}
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sh_size = sh_table[header.e_shstrndx].sh_size;
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debug("e_shstrndx %x, sh_size %lx\n", header.e_shstrndx, sh_size);
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sh_index = le16_to_cpu(header.e_shstrndx);
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sh_size = le32_to_cpu(sh_table[sh_index].sh_size);
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debug("e_shstrndx %x, sh_size %lx\n", sh_index, sh_size);
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sh_str = malloc(sh_size);
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if (!sh_str) {
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@ -262,9 +267,8 @@ static int decode_elf32(FILE *felf, char **argv)
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* Specifies the byte offset from the beginning of the file
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* to the first byte in the section.
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*/
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sh_offset = sh_table[header.e_shstrndx].sh_offset;
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debug("sh_offset %x\n", header.e_shnum);
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sh_offset = le32_to_cpu(sh_table[sh_index].sh_offset);
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sh_num = le16_to_cpu(header.e_shnum);
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ret = fseek(felf, sh_offset, SEEK_SET);
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if (ret) {
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@ -277,7 +281,7 @@ static int decode_elf32(FILE *felf, char **argv)
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size = fread(sh_str, 1, sh_size, felf);
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if (size != sh_size) {
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fprintf(stderr, "%s: Can't read section: %lx/%lx\n",
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fprintf(stderr, "%s: Can't read section: %lx/%x\n",
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argv[0], size, sh_size);
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free(sh_str);
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free(sh_table);
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@ -285,22 +289,29 @@ static int decode_elf32(FILE *felf, char **argv)
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return 30;
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}
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for (i = 0; i < header.e_shnum; i++) {
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debug("%s\n", sh_str + sh_table[i].sh_name);
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if (!strcmp(".rela.dyn", (sh_str + sh_table[i].sh_name))) {
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for (i = 0; i < sh_num; i++) {
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char *sh_name = sh_str + le32_to_cpu(sh_table[i].sh_name);
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debug("%s\n", sh_name);
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sh_addr = le64_to_cpu(sh_table[i].sh_addr);
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sh_offset = le64_to_cpu(sh_table[i].sh_offset);
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sh_size = le64_to_cpu(sh_table[i].sh_size);
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if (!strcmp(".rela.dyn", sh_name)) {
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debug("Found section\t\".rela_dyn\"\n");
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debug(" at addr\t0x%08x\n", (unsigned int)sh_table[i].sh_addr);
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debug(" at offset\t0x%08x\n", (unsigned int)sh_table[i].sh_offset);
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debug(" of size\t0x%08x\n", (unsigned int)sh_table[i].sh_size);
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rela_start = sh_table[i].sh_addr;
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rela_end = rela_start + sh_table[i].sh_size;
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debug(" at addr\t0x%08x\n", sh_addr);
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debug(" at offset\t0x%08x\n", sh_offset);
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debug(" of size\t0x%08x\n", sh_size);
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rela_start = sh_addr;
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rela_end = rela_start + sh_size;
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}
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if (!strcmp(".dynsym", (sh_str + sh_table[i].sh_name))) {
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if (!strcmp(".dynsym", sh_name)) {
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debug("Found section\t\".dynsym\"\n");
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debug(" at addr\t0x%08x\n", (unsigned int)sh_table[i].sh_addr);
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debug(" at offset\t0x%08x\n", (unsigned int)sh_table[i].sh_offset);
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debug(" of size\t0x%08x\n", (unsigned int)sh_table[i].sh_size);
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dyn_start = sh_table[i].sh_addr;
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debug(" at addr\t0x%08x\n", sh_addr);
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debug(" at offset\t0x%08x\n", sh_offset);
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debug(" of size\t0x%08x\n", sh_size);
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dyn_start = sh_addr;
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}
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}
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@ -386,9 +397,9 @@ static int rela_elf64(char **argv, FILE *f)
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return 4;
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}
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swrela.r_offset = cpu_to_le64(rela.r_offset);
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swrela.r_info = cpu_to_le64(rela.r_info);
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swrela.r_addend = cpu_to_le64(rela.r_addend);
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swrela.r_offset = le64_to_cpu(rela.r_offset);
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swrela.r_info = le64_to_cpu(rela.r_info);
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swrela.r_addend = le64_to_cpu(rela.r_addend);
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if (!supported_rela(&swrela))
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continue;
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@ -487,9 +498,9 @@ static int rela_elf32(char **argv, FILE *f)
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PRIu32 " r_addend:\t%" PRIx32 "\n",
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rela.r_offset, rela.r_info, rela.r_addend);
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swrela.r_offset = cpu_to_le32(rela.r_offset);
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swrela.r_info = cpu_to_le32(rela.r_info);
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swrela.r_addend = cpu_to_le32(rela.r_addend);
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swrela.r_offset = le32_to_cpu(rela.r_offset);
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swrela.r_info = le32_to_cpu(rela.r_info);
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swrela.r_addend = le32_to_cpu(rela.r_addend);
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debug("SWRela:\toffset:\t%" PRIx32 " r_info:\t%"
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PRIu32 " r_addend:\t%" PRIx32 "\n",
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