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(__elf_machine_runtime_setup): DT_PLTGOT has already been relocated. (__elf_machine_fixup_plt): Likewise. Minor cleanups.
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@ -163,8 +163,7 @@ __elf_machine_runtime_setup (struct link_map *map, int lazy, int profile)
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/* Fill in the PLT. Its initial contents are directed to a
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function earlier in the PLT which arranges for the dynamic
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linker to be called back. */
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Elf32_Word *plt = (Elf32_Word *) ((char *) map->l_addr
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+ map->l_info[DT_PLTGOT]->d_un.d_val);
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Elf32_Word *plt = (Elf32_Word *) map->l_info[DT_PLTGOT]->d_un.d_val;
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Elf32_Word num_plt_entries = (map->l_info[DT_PLTRELSZ]->d_un.d_val
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/ sizeof (Elf32_Rela));
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Elf32_Word rel_offset_words = PLT_DATA_START_WORDS (num_plt_entries);
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@ -231,11 +230,11 @@ __elf_machine_runtime_setup (struct link_map *map, int lazy, int profile)
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OPCODE_ADDIS (11, 11, (((Elf32_Word) (char*) (plt + rel_offset_words)
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+ 0x8000) >> 16));
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plt[PLT_LONGBRANCH_ENTRY_WORDS+1] =
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OPCODE_LWZ (11, (Elf32_Word) (char*) (plt+rel_offset_words), 11);
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OPCODE_LWZ (11, (Elf32_Word) (char*) (plt + rel_offset_words), 11);
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/* Call the procedure at that address. */
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plt[PLT_LONGBRANCH_ENTRY_WORDS+2] = OPCODE_MTCTR (11);
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plt[PLT_LONGBRANCH_ENTRY_WORDS+3] = OPCODE_BCTR ();
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plt[PLT_LONGBRANCH_ENTRY_WORDS + 2] = OPCODE_MTCTR (11);
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plt[PLT_LONGBRANCH_ENTRY_WORDS + 3] = OPCODE_BCTR ();
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/* Now, we've modified code (quite a lot of code, possibly). We
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@ -251,9 +250,9 @@ __elf_machine_runtime_setup (struct link_map *map, int lazy, int profile)
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PowerPC processors have line sizes of exactly 32 bytes. */
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size_modified = lazy ? rel_offset_words : PLT_INITIAL_ENTRY_WORDS;
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for (i = 0; i < size_modified; i+=8)
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for (i = 0; i < size_modified; i+= 8)
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PPC_DCBST (plt + i);
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PPC_DCBST (plt + size_modified-1);
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PPC_DCBST (plt + size_modified - 1);
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PPC_SYNC;
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PPC_ICBI (plt);
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PPC_ICBI (plt + size_modified-1);
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@ -277,8 +276,7 @@ __elf_machine_fixup_plt(struct link_map *map, const Elf32_Rela *reloc,
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Elf32_Word *plt;
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Elf32_Word index;
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plt = (Elf32_Word *)((char *)map->l_addr
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+ map->l_info[DT_PLTGOT]->d_un.d_val);
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plt = (Elf32_Word *) map->l_info[DT_PLTGOT]->d_un.d_val;
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index = (reloc_addr - plt - PLT_INITIAL_ENTRY_WORDS)/2;
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if (index >= PLT_DOUBLE_SIZE)
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{
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@ -351,20 +349,16 @@ __process_machine_rela (struct link_map *map,
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case R_PPC_ADDR24:
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if (finaladdr > 0x01fffffc && finaladdr < 0xfe000000)
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{
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_dl_signal_error(0, map->l_name,
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"R_PPC_ADDR24 relocation out of range");
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}
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_dl_signal_error (0, map->l_name,
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"R_PPC_ADDR24 relocation out of range");
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*reloc_addr = (*reloc_addr & 0xfc000003) | (finaladdr & 0x3fffffc);
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break;
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case R_PPC_ADDR16:
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case R_PPC_UADDR16:
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if (finaladdr > 0x7fff && finaladdr < 0x8000)
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{
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_dl_signal_error(0, map->l_name,
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"R_PPC_ADDR16 relocation out of range");
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}
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_dl_signal_error (0, map->l_name,
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"R_PPC_ADDR16 relocation out of range");
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*(Elf32_Half*) reloc_addr = finaladdr;
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break;
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@ -384,10 +378,8 @@ __process_machine_rela (struct link_map *map,
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case R_PPC_ADDR14_BRTAKEN:
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case R_PPC_ADDR14_BRNTAKEN:
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if (finaladdr > 0x7fff && finaladdr < 0x8000)
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{
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_dl_signal_error(0, map->l_name,
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"R_PPC_ADDR14 relocation out of range");
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}
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_dl_signal_error (0, map->l_name,
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"R_PPC_ADDR14 relocation out of range");
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*reloc_addr = (*reloc_addr & 0xffff0003) | (finaladdr & 0xfffc);
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if (rinfo != R_PPC_ADDR14)
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*reloc_addr = ((*reloc_addr & 0xffdfffff)
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@ -399,10 +391,8 @@ __process_machine_rela (struct link_map *map,
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{
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Elf32_Sword delta = finaladdr - (Elf32_Word) (char *) reloc_addr;
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if (delta << 6 >> 6 != delta)
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{
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_dl_signal_error(0, map->l_name,
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"R_PPC_REL24 relocation out of range");
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}
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_dl_signal_error (0, map->l_name,
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"R_PPC_REL24 relocation out of range");
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*reloc_addr = (*reloc_addr & 0xfc000003) | (delta & 0x3fffffc);
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}
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break;
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@ -432,7 +422,7 @@ __process_machine_rela (struct link_map *map,
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return;
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case R_PPC_JMP_SLOT:
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elf_machine_fixup_plt(map, reloc, reloc_addr, finaladdr);
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elf_machine_fixup_plt (map, reloc, reloc_addr, finaladdr);
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return;
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default:
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