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5bd4f169 1/* PowerPC64-specific support for 64-bit ELF.
b3adc24a 2 Copyright (C) 1999-2020 Free Software Foundation, Inc.
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3 Written by Linus Nordberg, Swox AB <info@swox.com>,
4 based on elf32-ppc.c by Ian Lance Taylor.
32ca9640 5 Largely rewritten by Alan Modra.
5bd4f169 6
ae9a127f 7 This file is part of BFD, the Binary File Descriptor library.
5bd4f169 8
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9 This program is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
cd123cb7 11 the Free Software Foundation; either version 3 of the License, or
ae9a127f 12 (at your option) any later version.
5bd4f169 13
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14 This program is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 GNU General Public License for more details.
5bd4f169 18
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19 You should have received a copy of the GNU General Public License along
20 with this program; if not, write to the Free Software Foundation, Inc.,
3e110533 21 51 Franklin Street - Fifth Floor, Boston, MA 02110-1301, USA. */
5bd4f169 22
cd123cb7 23
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24/* The 64-bit PowerPC ELF ABI may be found at
25 http://www.linuxbase.org/spec/ELF/ppc64/PPC-elf64abi.txt, and
26 http://www.linuxbase.org/spec/ELF/ppc64/spec/book1.html */
5bd4f169 27
3db64b00 28#include "sysdep.h"
183e98be 29#include <stdarg.h>
5bd4f169 30#include "bfd.h"
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31#include "bfdlink.h"
32#include "libbfd.h"
33#include "elf-bfd.h"
04c9666a 34#include "elf/ppc64.h"
5d1634d7 35#include "elf64-ppc.h"
58d180e8 36#include "dwarf2.h"
5bd4f169 37
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38/* All users of this file have bfd_octets_per_byte (abfd, sec) == 1. */
39#define OCTETS_PER_BYTE(ABFD, SEC) 1
40
805fc799 41static bfd_reloc_status_type ppc64_elf_ha_reloc
4ce794b7 42 (bfd *, arelent *, asymbol *, void *, asection *, bfd *, char **);
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43static bfd_reloc_status_type ppc64_elf_branch_reloc
44 (bfd *, arelent *, asymbol *, void *, asection *, bfd *, char **);
805fc799 45static bfd_reloc_status_type ppc64_elf_brtaken_reloc
4ce794b7 46 (bfd *, arelent *, asymbol *, void *, asection *, bfd *, char **);
805fc799 47static bfd_reloc_status_type ppc64_elf_sectoff_reloc
4ce794b7 48 (bfd *, arelent *, asymbol *, void *, asection *, bfd *, char **);
805fc799 49static bfd_reloc_status_type ppc64_elf_sectoff_ha_reloc
4ce794b7 50 (bfd *, arelent *, asymbol *, void *, asection *, bfd *, char **);
805fc799 51static bfd_reloc_status_type ppc64_elf_toc_reloc
4ce794b7 52 (bfd *, arelent *, asymbol *, void *, asection *, bfd *, char **);
805fc799 53static bfd_reloc_status_type ppc64_elf_toc_ha_reloc
4ce794b7 54 (bfd *, arelent *, asymbol *, void *, asection *, bfd *, char **);
805fc799 55static bfd_reloc_status_type ppc64_elf_toc64_reloc
4ce794b7 56 (bfd *, arelent *, asymbol *, void *, asection *, bfd *, char **);
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57static bfd_reloc_status_type ppc64_elf_prefix_reloc
58 (bfd *, arelent *, asymbol *, void *, asection *, bfd *, char **);
805fc799 59static bfd_reloc_status_type ppc64_elf_unhandled_reloc
4ce794b7 60 (bfd *, arelent *, asymbol *, void *, asection *, bfd *, char **);
2441e016 61static bfd_vma opd_entry_value
aef36ac1 62 (asection *, bfd_vma, asection **, bfd_vma *, bfd_boolean);
5bd4f169 63
6d00b590 64#define TARGET_LITTLE_SYM powerpc_elf64_le_vec
ad8e1ba5 65#define TARGET_LITTLE_NAME "elf64-powerpcle"
6d00b590 66#define TARGET_BIG_SYM powerpc_elf64_vec
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67#define TARGET_BIG_NAME "elf64-powerpc"
68#define ELF_ARCH bfd_arch_powerpc
ae95ffa6 69#define ELF_TARGET_ID PPC64_ELF_DATA
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70#define ELF_MACHINE_CODE EM_PPC64
71#define ELF_MAXPAGESIZE 0x10000
702d1671
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72#define ELF_COMMONPAGESIZE 0x1000
73#define ELF_RELROPAGESIZE ELF_MAXPAGESIZE
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74#define elf_info_to_howto ppc64_elf_info_to_howto
75
76#define elf_backend_want_got_sym 0
77#define elf_backend_want_plt_sym 0
78#define elf_backend_plt_alignment 3
79#define elf_backend_plt_not_loaded 1
ad8e1ba5 80#define elf_backend_got_header_size 8
5474d94f 81#define elf_backend_want_dynrelro 1
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82#define elf_backend_can_gc_sections 1
83#define elf_backend_can_refcount 1
84#define elf_backend_rela_normal 1
64f52338 85#define elf_backend_dtrel_excludes_plt 1
6bfdb61b 86#define elf_backend_default_execstack 0
ad8e1ba5 87
e717da7e 88#define bfd_elf64_mkobject ppc64_elf_mkobject
ad8e1ba5 89#define bfd_elf64_bfd_reloc_type_lookup ppc64_elf_reloc_type_lookup
aa374f67 90#define bfd_elf64_bfd_reloc_name_lookup ppc64_elf_reloc_name_lookup
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91#define bfd_elf64_bfd_merge_private_bfd_data ppc64_elf_merge_private_bfd_data
92#define bfd_elf64_bfd_print_private_bfd_data ppc64_elf_print_private_bfd_data
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93#define bfd_elf64_new_section_hook ppc64_elf_new_section_hook
94#define bfd_elf64_bfd_link_hash_table_create ppc64_elf_link_hash_table_create
90e3cdf2 95#define bfd_elf64_get_synthetic_symtab ppc64_elf_get_synthetic_symtab
aa374f67 96#define bfd_elf64_bfd_link_just_syms ppc64_elf_link_just_syms
8c5b4e52 97#define bfd_elf64_bfd_gc_sections ppc64_elf_gc_sections
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98
99#define elf_backend_object_p ppc64_elf_object_p
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100#define elf_backend_grok_prstatus ppc64_elf_grok_prstatus
101#define elf_backend_grok_psinfo ppc64_elf_grok_psinfo
183e98be 102#define elf_backend_write_core_note ppc64_elf_write_core_note
9d19e4fd 103#define elf_backend_create_dynamic_sections _bfd_elf_create_dynamic_sections
ad8e1ba5 104#define elf_backend_copy_indirect_symbol ppc64_elf_copy_indirect_symbol
555cd476 105#define elf_backend_add_symbol_hook ppc64_elf_add_symbol_hook
f6c7c3e8 106#define elf_backend_check_directives ppc64_elf_before_check_relocs
e5034e59 107#define elf_backend_notice_as_needed ppc64_elf_notice_as_needed
8387904d 108#define elf_backend_archive_symbol_lookup ppc64_elf_archive_symbol_lookup
ad8e1ba5 109#define elf_backend_check_relocs ppc64_elf_check_relocs
c0e331c7 110#define elf_backend_relocs_compatible _bfd_elf_relocs_compatible
74f0fb50 111#define elf_backend_gc_keep ppc64_elf_gc_keep
64d03ab5 112#define elf_backend_gc_mark_dynamic_ref ppc64_elf_gc_mark_dynamic_ref
ad8e1ba5 113#define elf_backend_gc_mark_hook ppc64_elf_gc_mark_hook
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114#define elf_backend_adjust_dynamic_symbol ppc64_elf_adjust_dynamic_symbol
115#define elf_backend_hide_symbol ppc64_elf_hide_symbol
9f296da3 116#define elf_backend_maybe_function_sym ppc64_elf_maybe_function_sym
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117#define elf_backend_always_size_sections ppc64_elf_func_desc_adjust
118#define elf_backend_size_dynamic_sections ppc64_elf_size_dynamic_sections
a345bc8d 119#define elf_backend_hash_symbol ppc64_elf_hash_symbol
74541ad4 120#define elf_backend_init_index_section _bfd_elf_init_2_index_sections
60124e18 121#define elf_backend_action_discarded ppc64_elf_action_discarded
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122#define elf_backend_relocate_section ppc64_elf_relocate_section
123#define elf_backend_finish_dynamic_symbol ppc64_elf_finish_dynamic_symbol
124#define elf_backend_reloc_type_class ppc64_elf_reloc_type_class
125#define elf_backend_finish_dynamic_sections ppc64_elf_finish_dynamic_sections
754021d0 126#define elf_backend_link_output_symbol_hook ppc64_elf_output_symbol_hook
29ef7005 127#define elf_backend_special_sections ppc64_elf_special_sections
bf577467 128#define elf_backend_section_flags ppc64_elf_section_flags
6911b7dc 129#define elf_backend_merge_symbol_attribute ppc64_elf_merge_symbol_attribute
8c5b4e52 130#define elf_backend_merge_symbol ppc64_elf_merge_symbol
bce964aa 131#define elf_backend_get_reloc_section bfd_get_section_by_name
ad8e1ba5 132
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133/* The name of the dynamic interpreter. This is put in the .interp
134 section. */
135#define ELF_DYNAMIC_INTERPRETER "/usr/lib/ld.so.1"
136
137/* The size in bytes of an entry in the procedure linkage table. */
b9e5796b 138#define PLT_ENTRY_SIZE(htab) (htab->opd_abi ? 24 : 8)
2d7ad24e 139#define LOCAL_PLT_ENTRY_SIZE(htab) (htab->opd_abi ? 16 : 8)
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140
141/* The initial size of the plt reserved for the dynamic linker. */
b9e5796b 142#define PLT_INITIAL_ENTRY_SIZE(htab) (htab->opd_abi ? 24 : 16)
5bd4f169 143
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144/* Offsets to some stack save slots. */
145#define STK_LR 16
146#define STK_TOC(htab) (htab->opd_abi ? 40 : 24)
eb8d7fda 147/* This one is dodgy. ELFv2 does not have a linker word, so use the
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148 CR save slot. Used only by optimised __tls_get_addr call stub,
149 relying on __tls_get_addr_opt not saving CR.. */
150#define STK_LINKER(htab) (htab->opd_abi ? 32 : 8)
151
5bd4f169 152/* TOC base pointers offset from start of TOC. */
411e1bfb 153#define TOC_BASE_OFF 0x8000
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154/* TOC base alignment. */
155#define TOC_BASE_ALIGN 256
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156
157/* Offset of tp and dtp pointers from start of TLS block. */
158#define TP_OFFSET 0x7000
159#define DTP_OFFSET 0x8000
5bd4f169 160
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161/* .plt call stub instructions. The normal stub is like this, but
162 sometimes the .plt entry crosses a 64k boundary and we need to
71a39c98 163 insert an addi to adjust r11. */
a078d95a 164#define STD_R2_0R1 0xf8410000 /* std %r2,0+40(%r1) */
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165#define ADDIS_R11_R2 0x3d620000 /* addis %r11,%r2,xxx@ha */
166#define LD_R12_0R11 0xe98b0000 /* ld %r12,xxx+0@l(%r11) */
167#define MTCTR_R12 0x7d8903a6 /* mtctr %r12 */
168#define LD_R2_0R11 0xe84b0000 /* ld %r2,xxx+8@l(%r11) */
169#define LD_R11_0R11 0xe96b0000 /* ld %r11,xxx+16@l(%r11) */
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170#define BCTR 0x4e800420 /* bctr */
171
07d6d2b8 172#define ADDI_R11_R11 0x396b0000 /* addi %r11,%r11,off@l */
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173#define ADDI_R12_R11 0x398b0000 /* addi %r12,%r11,off@l */
174#define ADDI_R12_R12 0x398c0000 /* addi %r12,%r12,off@l */
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175#define ADDIS_R2_R2 0x3c420000 /* addis %r2,%r2,off@ha */
176#define ADDI_R2_R2 0x38420000 /* addi %r2,%r2,off@l */
177
178#define XOR_R2_R12_R12 0x7d826278 /* xor %r2,%r12,%r12 */
179#define ADD_R11_R11_R2 0x7d6b1214 /* add %r11,%r11,%r2 */
180#define XOR_R11_R12_R12 0x7d8b6278 /* xor %r11,%r12,%r12 */
181#define ADD_R2_R2_R11 0x7c425a14 /* add %r2,%r2,%r11 */
182#define CMPLDI_R2_0 0x28220000 /* cmpldi %r2,0 */
183#define BNECTR 0x4ca20420 /* bnectr+ */
184#define BNECTR_P4 0x4ce20420 /* bnectr+ */
794e51c0 185
71a39c98 186#define LD_R12_0R2 0xe9820000 /* ld %r12,xxx+0(%r2) */
ac2df442 187#define LD_R11_0R2 0xe9620000 /* ld %r11,xxx+0(%r2) */
07d6d2b8 188#define LD_R2_0R2 0xe8420000 /* ld %r2,xxx+0(%r2) */
ac2df442 189
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190#define LD_R2_0R1 0xe8410000 /* ld %r2,0(%r1) */
191#define LD_R2_0R12 0xe84c0000 /* ld %r2,0(%r12) */
192#define ADD_R2_R2_R12 0x7c426214 /* add %r2,%r2,%r12 */
ad8e1ba5 193
04bdff6a 194#define LI_R11_0 0x39600000 /* li %r11,0 */
07d6d2b8 195#define LIS_R2 0x3c400000 /* lis %r2,xxx@ha */
04bdff6a 196#define LIS_R11 0x3d600000 /* lis %r11,xxx@ha */
05d0e962 197#define LIS_R12 0x3d800000 /* lis %r12,xxx@ha */
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198#define ADDIS_R2_R12 0x3c4c0000 /* addis %r2,%r12,xxx@ha */
199#define ADDIS_R12_R2 0x3d820000 /* addis %r12,%r2,xxx@ha */
05d0e962 200#define ADDIS_R12_R11 0x3d8b0000 /* addis %r12,%r11,xxx@ha */
a345bc8d 201#define ADDIS_R12_R12 0x3d8c0000 /* addis %r12,%r12,xxx@ha */
05d0e962 202#define ORIS_R12_R12_0 0x658c0000 /* oris %r12,%r12,xxx@hi */
04bdff6a 203#define ORI_R11_R11_0 0x616b0000 /* ori %r11,%r11,xxx@l */
05d0e962 204#define ORI_R12_R12_0 0x618c0000 /* ori %r12,%r12,xxx@l */
07d6d2b8 205#define LD_R12_0R12 0xe98c0000 /* ld %r12,xxx@l(%r12) */
04bdff6a 206#define SLDI_R11_R11_34 0x796b1746 /* sldi %r11,%r11,34 */
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207#define SLDI_R12_R12_32 0x799c07c6 /* sldi %r12,%r12,32 */
208#define LDX_R12_R11_R12 0x7d8b602a /* ldx %r12,%r11,%r12 */
209#define ADD_R12_R11_R12 0x7d8b6214 /* add %r12,%r11,%r12 */
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210#define PADDI_R12_PC 0x0610000039800000ULL
211#define PLD_R12_PC 0x04100000e5800000ULL
5663e321 212#define PNOP 0x0700000000000000ULL
a345bc8d 213
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214/* __glink_PLTresolve stub instructions. We enter with the index in R0. */
215#define GLINK_PLTRESOLVE_SIZE(htab) \
407aa07c 216 (8u + (htab->opd_abi ? 11 * 4 : 14 * 4))
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217 /* 0: */
218 /* .quad plt0-1f */
219 /* __glink: */
220#define MFLR_R12 0x7d8802a6 /* mflr %12 */
221#define BCL_20_31 0x429f0005 /* bcl 20,31,1f */
222 /* 1: */
223#define MFLR_R11 0x7d6802a6 /* mflr %11 */
71a39c98 224 /* ld %2,(0b-1b)(%11) */
ee4bf8d2 225#define MTLR_R12 0x7d8803a6 /* mtlr %12 */
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226#define ADD_R11_R2_R11 0x7d625a14 /* add %11,%2,%11 */
227 /* ld %12,0(%11) */
228 /* ld %2,8(%11) */
229 /* mtctr %12 */
230 /* ld %11,16(%11) */
ee4bf8d2 231 /* bctr */
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232#define MFLR_R0 0x7c0802a6 /* mflr %r0 */
233#define MTLR_R0 0x7c0803a6 /* mtlr %r0 */
234#define SUB_R12_R12_R11 0x7d8b6050 /* subf %r12,%r11,%r12 */
235#define ADDI_R0_R12 0x380c0000 /* addi %r0,%r12,0 */
236#define SRDI_R0_R0_2 0x7800f082 /* rldicl %r0,%r0,62,2 */
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237
238/* Pad with this. */
239#define NOP 0x60000000
240
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241/* Some other nops. */
242#define CROR_151515 0x4def7b82
243#define CROR_313131 0x4ffffb82
244
cedb70c5 245/* .glink entries for the first 32k functions are two instructions. */
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246#define LI_R0_0 0x38000000 /* li %r0,0 */
247#define B_DOT 0x48000000 /* b . */
248
249/* After that, we need two instructions to load the index, followed by
250 a branch. */
251#define LIS_R0_0 0x3c000000 /* lis %r0,0 */
10ed1bba 252#define ORI_R0_R0_0 0x60000000 /* ori %r0,%r0,0 */
41bd81ab 253
deb0e272
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254/* Instructions used by the save and restore reg functions. */
255#define STD_R0_0R1 0xf8010000 /* std %r0,0(%r1) */
256#define STD_R0_0R12 0xf80c0000 /* std %r0,0(%r12) */
257#define LD_R0_0R1 0xe8010000 /* ld %r0,0(%r1) */
258#define LD_R0_0R12 0xe80c0000 /* ld %r0,0(%r12) */
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259#define STFD_FR0_0R1 0xd8010000 /* stfd %fr0,0(%r1) */
260#define LFD_FR0_0R1 0xc8010000 /* lfd %fr0,0(%r1) */
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261#define LI_R12_0 0x39800000 /* li %r12,0 */
262#define STVX_VR0_R12_R0 0x7c0c01ce /* stvx %v0,%r12,%r0 */
263#define LVX_VR0_R12_R0 0x7c0c00ce /* lvx %v0,%r12,%r0 */
264#define MTLR_R0 0x7c0803a6 /* mtlr %r0 */
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265#define BLR 0x4e800020 /* blr */
266
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267/* Since .opd is an array of descriptors and each entry will end up
268 with identical R_PPC64_RELATIVE relocs, there is really no need to
269 propagate .opd relocs; The dynamic linker should be taught to
1e2f5b6e 270 relocate .opd without reloc entries. */
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271#ifndef NO_OPD_RELOCS
272#define NO_OPD_RELOCS 0
273#endif
810d4e75 274
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275#ifndef ARRAY_SIZE
276#define ARRAY_SIZE(a) (sizeof (a) / sizeof ((a)[0]))
277#endif
278
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279static inline int
280abiversion (bfd *abfd)
281{
282 return elf_elfheader (abfd)->e_flags & EF_PPC64_ABI;
283}
284
285static inline void
286set_abiversion (bfd *abfd, int ver)
287{
288 elf_elfheader (abfd)->e_flags &= ~EF_PPC64_ABI;
289 elf_elfheader (abfd)->e_flags |= ver & EF_PPC64_ABI;
290}
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291\f
292/* Relocation HOWTO's. */
46807bf4
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293/* Like other ELF RELA targets that don't apply multiple
294 field-altering relocations to the same localation, src_mask is
295 always zero and pcrel_offset is the same as pc_relative.
296 PowerPC can always use a zero bitpos, even when the field is not at
297 the LSB. For example, a REL24 could use rightshift=2, bisize=24
298 and bitpos=2 which matches the ABI description, or as we do here,
299 rightshift=0, bitsize=26 and bitpos=0. */
300#define HOW(type, size, bitsize, mask, rightshift, pc_relative, \
301 complain, special_func) \
302 HOWTO (type, rightshift, size, bitsize, pc_relative, 0, \
303 complain_overflow_ ## complain, special_func, \
304 #type, FALSE, 0, mask, pc_relative)
305
04c9666a 306static reloc_howto_type *ppc64_elf_howto_table[(int) R_PPC64_max];
5bd4f169 307
f3185997
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308static reloc_howto_type ppc64_elf_howto_raw[] =
309{
5bd4f169 310 /* This reloc does nothing. */
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311 HOW (R_PPC64_NONE, 3, 0, 0, 0, FALSE, dont,
312 bfd_elf_generic_reloc),
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313
314 /* A standard 32 bit relocation. */
46807bf4
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315 HOW (R_PPC64_ADDR32, 2, 32, 0xffffffff, 0, FALSE, bitfield,
316 bfd_elf_generic_reloc),
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317
318 /* An absolute 26 bit branch; the lower two bits must be zero.
319 FIXME: we don't check that, we just clear them. */
46807bf4
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320 HOW (R_PPC64_ADDR24, 2, 26, 0x03fffffc, 0, FALSE, bitfield,
321 bfd_elf_generic_reloc),
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322
323 /* A standard 16 bit relocation. */
46807bf4
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324 HOW (R_PPC64_ADDR16, 1, 16, 0xffff, 0, FALSE, bitfield,
325 bfd_elf_generic_reloc),
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326
327 /* A 16 bit relocation without overflow. */
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328 HOW (R_PPC64_ADDR16_LO, 1, 16, 0xffff, 0, FALSE, dont,
329 bfd_elf_generic_reloc),
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330
331 /* Bits 16-31 of an address. */
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332 HOW (R_PPC64_ADDR16_HI, 1, 16, 0xffff, 16, FALSE, signed,
333 bfd_elf_generic_reloc),
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334
335 /* Bits 16-31 of an address, plus 1 if the contents of the low 16
336 bits, treated as a signed number, is negative. */
46807bf4
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337 HOW (R_PPC64_ADDR16_HA, 1, 16, 0xffff, 16, FALSE, signed,
338 ppc64_elf_ha_reloc),
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339
340 /* An absolute 16 bit branch; the lower two bits must be zero.
341 FIXME: we don't check that, we just clear them. */
46807bf4
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342 HOW (R_PPC64_ADDR14, 2, 16, 0x0000fffc, 0, FALSE, signed,
343 ppc64_elf_branch_reloc),
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344
345 /* An absolute 16 bit branch, for which bit 10 should be set to
346 indicate that the branch is expected to be taken. The lower two
347 bits must be zero. */
46807bf4
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348 HOW (R_PPC64_ADDR14_BRTAKEN, 2, 16, 0x0000fffc, 0, FALSE, signed,
349 ppc64_elf_brtaken_reloc),
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350
351 /* An absolute 16 bit branch, for which bit 10 should be set to
352 indicate that the branch is not expected to be taken. The lower
353 two bits must be zero. */
46807bf4
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354 HOW (R_PPC64_ADDR14_BRNTAKEN, 2, 16, 0x0000fffc, 0, FALSE, signed,
355 ppc64_elf_brtaken_reloc),
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AM
356
357 /* A relative 26 bit branch; the lower two bits must be zero. */
46807bf4
AM
358 HOW (R_PPC64_REL24, 2, 26, 0x03fffffc, 0, TRUE, signed,
359 ppc64_elf_branch_reloc),
5bd4f169 360
05d0e962 361 /* A variant of R_PPC64_REL24, used when r2 is not the toc pointer. */
46807bf4
AM
362 HOW (R_PPC64_REL24_NOTOC, 2, 26, 0x03fffffc, 0, TRUE, signed,
363 ppc64_elf_branch_reloc),
05d0e962 364
5bd4f169 365 /* A relative 16 bit branch; the lower two bits must be zero. */
46807bf4
AM
366 HOW (R_PPC64_REL14, 2, 16, 0x0000fffc, 0, TRUE, signed,
367 ppc64_elf_branch_reloc),
5bd4f169
AM
368
369 /* A relative 16 bit branch. Bit 10 should be set to indicate that
370 the branch is expected to be taken. The lower two bits must be
371 zero. */
46807bf4
AM
372 HOW (R_PPC64_REL14_BRTAKEN, 2, 16, 0x0000fffc, 0, TRUE, signed,
373 ppc64_elf_brtaken_reloc),
5bd4f169
AM
374
375 /* A relative 16 bit branch. Bit 10 should be set to indicate that
376 the branch is not expected to be taken. The lower two bits must
377 be zero. */
46807bf4
AM
378 HOW (R_PPC64_REL14_BRNTAKEN, 2, 16, 0x0000fffc, 0, TRUE, signed,
379 ppc64_elf_brtaken_reloc),
5bd4f169
AM
380
381 /* Like R_PPC64_ADDR16, but referring to the GOT table entry for the
382 symbol. */
46807bf4
AM
383 HOW (R_PPC64_GOT16, 1, 16, 0xffff, 0, FALSE, signed,
384 ppc64_elf_unhandled_reloc),
5bd4f169
AM
385
386 /* Like R_PPC64_ADDR16_LO, but referring to the GOT table entry for
387 the symbol. */
46807bf4
AM
388 HOW (R_PPC64_GOT16_LO, 1, 16, 0xffff, 0, FALSE, dont,
389 ppc64_elf_unhandled_reloc),
5bd4f169
AM
390
391 /* Like R_PPC64_ADDR16_HI, but referring to the GOT table entry for
392 the symbol. */
46807bf4
AM
393 HOW (R_PPC64_GOT16_HI, 1, 16, 0xffff, 16, FALSE, signed,
394 ppc64_elf_unhandled_reloc),
5bd4f169
AM
395
396 /* Like R_PPC64_ADDR16_HA, but referring to the GOT table entry for
397 the symbol. */
46807bf4
AM
398 HOW (R_PPC64_GOT16_HA, 1, 16, 0xffff, 16, FALSE, signed,
399 ppc64_elf_unhandled_reloc),
5bd4f169
AM
400
401 /* This is used only by the dynamic linker. The symbol should exist
402 both in the object being run and in some shared library. The
403 dynamic linker copies the data addressed by the symbol from the
404 shared library into the object, because the object being
405 run has to have the data at some particular address. */
46807bf4
AM
406 HOW (R_PPC64_COPY, 0, 0, 0, 0, FALSE, dont,
407 ppc64_elf_unhandled_reloc),
5bd4f169
AM
408
409 /* Like R_PPC64_ADDR64, but used when setting global offset table
410 entries. */
46807bf4
AM
411 HOW (R_PPC64_GLOB_DAT, 4, 64, 0xffffffffffffffffULL, 0, FALSE, dont,
412 ppc64_elf_unhandled_reloc),
5bd4f169
AM
413
414 /* Created by the link editor. Marks a procedure linkage table
415 entry for a symbol. */
46807bf4
AM
416 HOW (R_PPC64_JMP_SLOT, 0, 0, 0, 0, FALSE, dont,
417 ppc64_elf_unhandled_reloc),
5bd4f169
AM
418
419 /* Used only by the dynamic linker. When the object is run, this
420 doubleword64 is set to the load address of the object, plus the
421 addend. */
46807bf4
AM
422 HOW (R_PPC64_RELATIVE, 4, 64, 0xffffffffffffffffULL, 0, FALSE, dont,
423 bfd_elf_generic_reloc),
5bd4f169
AM
424
425 /* Like R_PPC64_ADDR32, but may be unaligned. */
46807bf4
AM
426 HOW (R_PPC64_UADDR32, 2, 32, 0xffffffff, 0, FALSE, bitfield,
427 bfd_elf_generic_reloc),
5bd4f169
AM
428
429 /* Like R_PPC64_ADDR16, but may be unaligned. */
46807bf4
AM
430 HOW (R_PPC64_UADDR16, 1, 16, 0xffff, 0, FALSE, bitfield,
431 bfd_elf_generic_reloc),
5bd4f169
AM
432
433 /* 32-bit PC relative. */
46807bf4
AM
434 HOW (R_PPC64_REL32, 2, 32, 0xffffffff, 0, TRUE, signed,
435 bfd_elf_generic_reloc),
5bd4f169 436
10ed1bba 437 /* 32-bit relocation to the symbol's procedure linkage table. */
46807bf4
AM
438 HOW (R_PPC64_PLT32, 2, 32, 0xffffffff, 0, FALSE, bitfield,
439 ppc64_elf_unhandled_reloc),
5bd4f169
AM
440
441 /* 32-bit PC relative relocation to the symbol's procedure linkage table.
442 FIXME: R_PPC64_PLTREL32 not supported. */
46807bf4
AM
443 HOW (R_PPC64_PLTREL32, 2, 32, 0xffffffff, 0, TRUE, signed,
444 ppc64_elf_unhandled_reloc),
5bd4f169
AM
445
446 /* Like R_PPC64_ADDR16_LO, but referring to the PLT table entry for
447 the symbol. */
46807bf4
AM
448 HOW (R_PPC64_PLT16_LO, 1, 16, 0xffff, 0, FALSE, dont,
449 ppc64_elf_unhandled_reloc),
5bd4f169
AM
450
451 /* Like R_PPC64_ADDR16_HI, but referring to the PLT table entry for
452 the symbol. */
46807bf4
AM
453 HOW (R_PPC64_PLT16_HI, 1, 16, 0xffff, 16, FALSE, signed,
454 ppc64_elf_unhandled_reloc),
5bd4f169
AM
455
456 /* Like R_PPC64_ADDR16_HA, but referring to the PLT table entry for
457 the symbol. */
46807bf4
AM
458 HOW (R_PPC64_PLT16_HA, 1, 16, 0xffff, 16, FALSE, signed,
459 ppc64_elf_unhandled_reloc),
5bd4f169 460
c061c2d8 461 /* 16-bit section relative relocation. */
46807bf4
AM
462 HOW (R_PPC64_SECTOFF, 1, 16, 0xffff, 0, FALSE, signed,
463 ppc64_elf_sectoff_reloc),
5bd4f169 464
c061c2d8 465 /* Like R_PPC64_SECTOFF, but no overflow warning. */
46807bf4
AM
466 HOW (R_PPC64_SECTOFF_LO, 1, 16, 0xffff, 0, FALSE, dont,
467 ppc64_elf_sectoff_reloc),
5bd4f169
AM
468
469 /* 16-bit upper half section relative relocation. */
46807bf4
AM
470 HOW (R_PPC64_SECTOFF_HI, 1, 16, 0xffff, 16, FALSE, signed,
471 ppc64_elf_sectoff_reloc),
5bd4f169
AM
472
473 /* 16-bit upper half adjusted section relative relocation. */
46807bf4
AM
474 HOW (R_PPC64_SECTOFF_HA, 1, 16, 0xffff, 16, FALSE, signed,
475 ppc64_elf_sectoff_ha_reloc),
5bd4f169 476
04c9666a 477 /* Like R_PPC64_REL24 without touching the two least significant bits. */
46807bf4
AM
478 HOW (R_PPC64_REL30, 2, 30, 0xfffffffc, 2, TRUE, dont,
479 bfd_elf_generic_reloc),
5bd4f169
AM
480
481 /* Relocs in the 64-bit PowerPC ELF ABI, not in the 32-bit ABI. */
482
483 /* A standard 64-bit relocation. */
46807bf4
AM
484 HOW (R_PPC64_ADDR64, 4, 64, 0xffffffffffffffffULL, 0, FALSE, dont,
485 bfd_elf_generic_reloc),
5bd4f169
AM
486
487 /* The bits 32-47 of an address. */
46807bf4
AM
488 HOW (R_PPC64_ADDR16_HIGHER, 1, 16, 0xffff, 32, FALSE, dont,
489 bfd_elf_generic_reloc),
5bd4f169
AM
490
491 /* The bits 32-47 of an address, plus 1 if the contents of the low
492 16 bits, treated as a signed number, is negative. */
46807bf4
AM
493 HOW (R_PPC64_ADDR16_HIGHERA, 1, 16, 0xffff, 32, FALSE, dont,
494 ppc64_elf_ha_reloc),
5bd4f169
AM
495
496 /* The bits 48-63 of an address. */
46807bf4
AM
497 HOW (R_PPC64_ADDR16_HIGHEST, 1, 16, 0xffff, 48, FALSE, dont,
498 bfd_elf_generic_reloc),
5bd4f169
AM
499
500 /* The bits 48-63 of an address, plus 1 if the contents of the low
501 16 bits, treated as a signed number, is negative. */
46807bf4
AM
502 HOW (R_PPC64_ADDR16_HIGHESTA, 1, 16, 0xffff, 48, FALSE, dont,
503 ppc64_elf_ha_reloc),
5bd4f169
AM
504
505 /* Like ADDR64, but may be unaligned. */
46807bf4
AM
506 HOW (R_PPC64_UADDR64, 4, 64, 0xffffffffffffffffULL, 0, FALSE, dont,
507 bfd_elf_generic_reloc),
5bd4f169
AM
508
509 /* 64-bit relative relocation. */
46807bf4
AM
510 HOW (R_PPC64_REL64, 4, 64, 0xffffffffffffffffULL, 0, TRUE, dont,
511 bfd_elf_generic_reloc),
5bd4f169 512
cedb70c5 513 /* 64-bit relocation to the symbol's procedure linkage table. */
46807bf4
AM
514 HOW (R_PPC64_PLT64, 4, 64, 0xffffffffffffffffULL, 0, FALSE, dont,
515 ppc64_elf_unhandled_reloc),
5bd4f169
AM
516
517 /* 64-bit PC relative relocation to the symbol's procedure linkage
518 table. */
519 /* FIXME: R_PPC64_PLTREL64 not supported. */
46807bf4
AM
520 HOW (R_PPC64_PLTREL64, 4, 64, 0xffffffffffffffffULL, 0, TRUE, dont,
521 ppc64_elf_unhandled_reloc),
5bd4f169
AM
522
523 /* 16 bit TOC-relative relocation. */
5bd4f169 524 /* R_PPC64_TOC16 47 half16* S + A - .TOC. */
46807bf4
AM
525 HOW (R_PPC64_TOC16, 1, 16, 0xffff, 0, FALSE, signed,
526 ppc64_elf_toc_reloc),
5bd4f169
AM
527
528 /* 16 bit TOC-relative relocation without overflow. */
5bd4f169 529 /* R_PPC64_TOC16_LO 48 half16 #lo (S + A - .TOC.) */
46807bf4
AM
530 HOW (R_PPC64_TOC16_LO, 1, 16, 0xffff, 0, FALSE, dont,
531 ppc64_elf_toc_reloc),
5bd4f169
AM
532
533 /* 16 bit TOC-relative relocation, high 16 bits. */
5bd4f169 534 /* R_PPC64_TOC16_HI 49 half16 #hi (S + A - .TOC.) */
46807bf4
AM
535 HOW (R_PPC64_TOC16_HI, 1, 16, 0xffff, 16, FALSE, signed,
536 ppc64_elf_toc_reloc),
5bd4f169
AM
537
538 /* 16 bit TOC-relative relocation, high 16 bits, plus 1 if the
539 contents of the low 16 bits, treated as a signed number, is
540 negative. */
5bd4f169 541 /* R_PPC64_TOC16_HA 50 half16 #ha (S + A - .TOC.) */
46807bf4
AM
542 HOW (R_PPC64_TOC16_HA, 1, 16, 0xffff, 16, FALSE, signed,
543 ppc64_elf_toc_ha_reloc),
5bd4f169
AM
544
545 /* 64-bit relocation; insert value of TOC base (.TOC.). */
5bd4f169 546 /* R_PPC64_TOC 51 doubleword64 .TOC. */
46807bf4
AM
547 HOW (R_PPC64_TOC, 4, 64, 0xffffffffffffffffULL, 0, FALSE, dont,
548 ppc64_elf_toc64_reloc),
5bd4f169
AM
549
550 /* Like R_PPC64_GOT16, but also informs the link editor that the
551 value to relocate may (!) refer to a PLT entry which the link
552 editor (a) may replace with the symbol value. If the link editor
553 is unable to fully resolve the symbol, it may (b) create a PLT
554 entry and store the address to the new PLT entry in the GOT.
555 This permits lazy resolution of function symbols at run time.
556 The link editor may also skip all of this and just (c) emit a
557 R_PPC64_GLOB_DAT to tie the symbol to the GOT entry. */
558 /* FIXME: R_PPC64_PLTGOT16 not implemented. */
46807bf4
AM
559 HOW (R_PPC64_PLTGOT16, 1, 16, 0xffff, 0, FALSE,signed,
560 ppc64_elf_unhandled_reloc),
411e1bfb
AM
561
562 /* Like R_PPC64_PLTGOT16, but without overflow. */
563 /* FIXME: R_PPC64_PLTGOT16_LO not implemented. */
46807bf4
AM
564 HOW (R_PPC64_PLTGOT16_LO, 1, 16, 0xffff, 0, FALSE, dont,
565 ppc64_elf_unhandled_reloc),
411e1bfb
AM
566
567 /* Like R_PPC64_PLT_GOT16, but using bits 16-31 of the address. */
568 /* FIXME: R_PPC64_PLTGOT16_HI not implemented. */
46807bf4
AM
569 HOW (R_PPC64_PLTGOT16_HI, 1, 16, 0xffff, 16, FALSE, signed,
570 ppc64_elf_unhandled_reloc),
411e1bfb
AM
571
572 /* Like R_PPC64_PLT_GOT16, but using bits 16-31 of the address, plus
573 1 if the contents of the low 16 bits, treated as a signed number,
574 is negative. */
575 /* FIXME: R_PPC64_PLTGOT16_HA not implemented. */
46807bf4
AM
576 HOW (R_PPC64_PLTGOT16_HA, 1, 16, 0xffff, 16, FALSE, signed,
577 ppc64_elf_unhandled_reloc),
411e1bfb
AM
578
579 /* Like R_PPC64_ADDR16, but for instructions with a DS field. */
46807bf4
AM
580 HOW (R_PPC64_ADDR16_DS, 1, 16, 0xfffc, 0, FALSE, signed,
581 bfd_elf_generic_reloc),
411e1bfb
AM
582
583 /* Like R_PPC64_ADDR16_LO, but for instructions with a DS field. */
46807bf4
AM
584 HOW (R_PPC64_ADDR16_LO_DS, 1, 16, 0xfffc, 0, FALSE, dont,
585 bfd_elf_generic_reloc),
411e1bfb
AM
586
587 /* Like R_PPC64_GOT16, but for instructions with a DS field. */
46807bf4
AM
588 HOW (R_PPC64_GOT16_DS, 1, 16, 0xfffc, 0, FALSE, signed,
589 ppc64_elf_unhandled_reloc),
411e1bfb
AM
590
591 /* Like R_PPC64_GOT16_LO, but for instructions with a DS field. */
46807bf4
AM
592 HOW (R_PPC64_GOT16_LO_DS, 1, 16, 0xfffc, 0, FALSE, dont,
593 ppc64_elf_unhandled_reloc),
411e1bfb
AM
594
595 /* Like R_PPC64_PLT16_LO, but for instructions with a DS field. */
46807bf4
AM
596 HOW (R_PPC64_PLT16_LO_DS, 1, 16, 0xfffc, 0, FALSE, dont,
597 ppc64_elf_unhandled_reloc),
411e1bfb
AM
598
599 /* Like R_PPC64_SECTOFF, but for instructions with a DS field. */
46807bf4
AM
600 HOW (R_PPC64_SECTOFF_DS, 1, 16, 0xfffc, 0, FALSE, signed,
601 ppc64_elf_sectoff_reloc),
411e1bfb
AM
602
603 /* Like R_PPC64_SECTOFF_LO, but for instructions with a DS field. */
46807bf4
AM
604 HOW (R_PPC64_SECTOFF_LO_DS, 1, 16, 0xfffc, 0, FALSE, dont,
605 ppc64_elf_sectoff_reloc),
411e1bfb
AM
606
607 /* Like R_PPC64_TOC16, but for instructions with a DS field. */
46807bf4
AM
608 HOW (R_PPC64_TOC16_DS, 1, 16, 0xfffc, 0, FALSE, signed,
609 ppc64_elf_toc_reloc),
411e1bfb
AM
610
611 /* Like R_PPC64_TOC16_LO, but for instructions with a DS field. */
46807bf4
AM
612 HOW (R_PPC64_TOC16_LO_DS, 1, 16, 0xfffc, 0, FALSE, dont,
613 ppc64_elf_toc_reloc),
411e1bfb
AM
614
615 /* Like R_PPC64_PLTGOT16, but for instructions with a DS field. */
616 /* FIXME: R_PPC64_PLTGOT16_DS not implemented. */
46807bf4
AM
617 HOW (R_PPC64_PLTGOT16_DS, 1, 16, 0xfffc, 0, FALSE, signed,
618 ppc64_elf_unhandled_reloc),
411e1bfb
AM
619
620 /* Like R_PPC64_PLTGOT16_LO, but for instructions with a DS field. */
621 /* FIXME: R_PPC64_PLTGOT16_LO not implemented. */
46807bf4
AM
622 HOW (R_PPC64_PLTGOT16_LO_DS, 1, 16, 0xfffc, 0, FALSE, dont,
623 ppc64_elf_unhandled_reloc),
411e1bfb 624
727fc41e 625 /* Marker relocs for TLS. */
46807bf4
AM
626 HOW (R_PPC64_TLS, 2, 32, 0, 0, FALSE, dont,
627 bfd_elf_generic_reloc),
628
629 HOW (R_PPC64_TLSGD, 2, 32, 0, 0, FALSE, dont,
630 bfd_elf_generic_reloc),
631
632 HOW (R_PPC64_TLSLD, 2, 32, 0, 0, FALSE, dont,
633 bfd_elf_generic_reloc),
727fc41e 634
23cedd1d
AM
635 /* Marker reloc for optimizing r2 save in prologue rather than on
636 each plt call stub. */
46807bf4
AM
637 HOW (R_PPC64_TOCSAVE, 2, 32, 0, 0, FALSE, dont,
638 bfd_elf_generic_reloc),
3b421ab3 639
23cedd1d 640 /* Marker relocs on inline plt call instructions. */
46807bf4
AM
641 HOW (R_PPC64_PLTSEQ, 2, 32, 0, 0, FALSE, dont,
642 bfd_elf_generic_reloc),
643
644 HOW (R_PPC64_PLTCALL, 2, 32, 0, 0, FALSE, dont,
645 bfd_elf_generic_reloc),
23cedd1d 646
411e1bfb
AM
647 /* Computes the load module index of the load module that contains the
648 definition of its TLS sym. */
46807bf4
AM
649 HOW (R_PPC64_DTPMOD64, 4, 64, 0xffffffffffffffffULL, 0, FALSE, dont,
650 ppc64_elf_unhandled_reloc),
411e1bfb
AM
651
652 /* Computes a dtv-relative displacement, the difference between the value
653 of sym+add and the base address of the thread-local storage block that
654 contains the definition of sym, minus 0x8000. */
46807bf4
AM
655 HOW (R_PPC64_DTPREL64, 4, 64, 0xffffffffffffffffULL, 0, FALSE, dont,
656 ppc64_elf_unhandled_reloc),
411e1bfb
AM
657
658 /* A 16 bit dtprel reloc. */
46807bf4
AM
659 HOW (R_PPC64_DTPREL16, 1, 16, 0xffff, 0, FALSE, signed,
660 ppc64_elf_unhandled_reloc),
411e1bfb
AM
661
662 /* Like DTPREL16, but no overflow. */
46807bf4
AM
663 HOW (R_PPC64_DTPREL16_LO, 1, 16, 0xffff, 0, FALSE, dont,
664 ppc64_elf_unhandled_reloc),
411e1bfb
AM
665
666 /* Like DTPREL16_LO, but next higher group of 16 bits. */
46807bf4
AM
667 HOW (R_PPC64_DTPREL16_HI, 1, 16, 0xffff, 16, FALSE, signed,
668 ppc64_elf_unhandled_reloc),
411e1bfb
AM
669
670 /* Like DTPREL16_HI, but adjust for low 16 bits. */
46807bf4
AM
671 HOW (R_PPC64_DTPREL16_HA, 1, 16, 0xffff, 16, FALSE, signed,
672 ppc64_elf_unhandled_reloc),
411e1bfb
AM
673
674 /* Like DTPREL16_HI, but next higher group of 16 bits. */
46807bf4
AM
675 HOW (R_PPC64_DTPREL16_HIGHER, 1, 16, 0xffff, 32, FALSE, dont,
676 ppc64_elf_unhandled_reloc),
411e1bfb
AM
677
678 /* Like DTPREL16_HIGHER, but adjust for low 16 bits. */
46807bf4
AM
679 HOW (R_PPC64_DTPREL16_HIGHERA, 1, 16, 0xffff, 32, FALSE, dont,
680 ppc64_elf_unhandled_reloc),
411e1bfb
AM
681
682 /* Like DTPREL16_HIGHER, but next higher group of 16 bits. */
46807bf4
AM
683 HOW (R_PPC64_DTPREL16_HIGHEST, 1, 16, 0xffff, 48, FALSE, dont,
684 ppc64_elf_unhandled_reloc),
411e1bfb
AM
685
686 /* Like DTPREL16_HIGHEST, but adjust for low 16 bits. */
46807bf4
AM
687 HOW (R_PPC64_DTPREL16_HIGHESTA, 1, 16, 0xffff, 48, FALSE, dont,
688 ppc64_elf_unhandled_reloc),
411e1bfb
AM
689
690 /* Like DTPREL16, but for insns with a DS field. */
46807bf4
AM
691 HOW (R_PPC64_DTPREL16_DS, 1, 16, 0xfffc, 0, FALSE, signed,
692 ppc64_elf_unhandled_reloc),
411e1bfb
AM
693
694 /* Like DTPREL16_DS, but no overflow. */
46807bf4
AM
695 HOW (R_PPC64_DTPREL16_LO_DS, 1, 16, 0xfffc, 0, FALSE, dont,
696 ppc64_elf_unhandled_reloc),
411e1bfb
AM
697
698 /* Computes a tp-relative displacement, the difference between the value of
699 sym+add and the value of the thread pointer (r13). */
46807bf4
AM
700 HOW (R_PPC64_TPREL64, 4, 64, 0xffffffffffffffffULL, 0, FALSE, dont,
701 ppc64_elf_unhandled_reloc),
411e1bfb
AM
702
703 /* A 16 bit tprel reloc. */
46807bf4
AM
704 HOW (R_PPC64_TPREL16, 1, 16, 0xffff, 0, FALSE, signed,
705 ppc64_elf_unhandled_reloc),
411e1bfb
AM
706
707 /* Like TPREL16, but no overflow. */
46807bf4
AM
708 HOW (R_PPC64_TPREL16_LO, 1, 16, 0xffff, 0, FALSE, dont,
709 ppc64_elf_unhandled_reloc),
411e1bfb
AM
710
711 /* Like TPREL16_LO, but next higher group of 16 bits. */
46807bf4
AM
712 HOW (R_PPC64_TPREL16_HI, 1, 16, 0xffff, 16, FALSE, signed,
713 ppc64_elf_unhandled_reloc),
411e1bfb
AM
714
715 /* Like TPREL16_HI, but adjust for low 16 bits. */
46807bf4
AM
716 HOW (R_PPC64_TPREL16_HA, 1, 16, 0xffff, 16, FALSE, signed,
717 ppc64_elf_unhandled_reloc),
411e1bfb
AM
718
719 /* Like TPREL16_HI, but next higher group of 16 bits. */
46807bf4
AM
720 HOW (R_PPC64_TPREL16_HIGHER, 1, 16, 0xffff, 32, FALSE, dont,
721 ppc64_elf_unhandled_reloc),
411e1bfb
AM
722
723 /* Like TPREL16_HIGHER, but adjust for low 16 bits. */
46807bf4
AM
724 HOW (R_PPC64_TPREL16_HIGHERA, 1, 16, 0xffff, 32, FALSE, dont,
725 ppc64_elf_unhandled_reloc),
411e1bfb
AM
726
727 /* Like TPREL16_HIGHER, but next higher group of 16 bits. */
46807bf4
AM
728 HOW (R_PPC64_TPREL16_HIGHEST, 1, 16, 0xffff, 48, FALSE, dont,
729 ppc64_elf_unhandled_reloc),
411e1bfb
AM
730
731 /* Like TPREL16_HIGHEST, but adjust for low 16 bits. */
46807bf4
AM
732 HOW (R_PPC64_TPREL16_HIGHESTA, 1, 16, 0xffff, 48, FALSE, dont,
733 ppc64_elf_unhandled_reloc),
411e1bfb
AM
734
735 /* Like TPREL16, but for insns with a DS field. */
46807bf4
AM
736 HOW (R_PPC64_TPREL16_DS, 1, 16, 0xfffc, 0, FALSE, signed,
737 ppc64_elf_unhandled_reloc),
411e1bfb
AM
738
739 /* Like TPREL16_DS, but no overflow. */
46807bf4
AM
740 HOW (R_PPC64_TPREL16_LO_DS, 1, 16, 0xfffc, 0, FALSE, dont,
741 ppc64_elf_unhandled_reloc),
411e1bfb
AM
742
743 /* Allocates two contiguous entries in the GOT to hold a tls_index structure,
744 with values (sym+add)@dtpmod and (sym+add)@dtprel, and computes the offset
745 to the first entry relative to the TOC base (r2). */
46807bf4
AM
746 HOW (R_PPC64_GOT_TLSGD16, 1, 16, 0xffff, 0, FALSE, signed,
747 ppc64_elf_unhandled_reloc),
5bd4f169 748
411e1bfb 749 /* Like GOT_TLSGD16, but no overflow. */
46807bf4
AM
750 HOW (R_PPC64_GOT_TLSGD16_LO, 1, 16, 0xffff, 0, FALSE, dont,
751 ppc64_elf_unhandled_reloc),
5bd4f169 752
411e1bfb 753 /* Like GOT_TLSGD16_LO, but next higher group of 16 bits. */
46807bf4
AM
754 HOW (R_PPC64_GOT_TLSGD16_HI, 1, 16, 0xffff, 16, FALSE, signed,
755 ppc64_elf_unhandled_reloc),
5bd4f169 756
411e1bfb 757 /* Like GOT_TLSGD16_HI, but adjust for low 16 bits. */
46807bf4
AM
758 HOW (R_PPC64_GOT_TLSGD16_HA, 1, 16, 0xffff, 16, FALSE, signed,
759 ppc64_elf_unhandled_reloc),
5bd4f169 760
411e1bfb
AM
761 /* Allocates two contiguous entries in the GOT to hold a tls_index structure,
762 with values (sym+add)@dtpmod and zero, and computes the offset to the
763 first entry relative to the TOC base (r2). */
46807bf4
AM
764 HOW (R_PPC64_GOT_TLSLD16, 1, 16, 0xffff, 0, FALSE, signed,
765 ppc64_elf_unhandled_reloc),
5bd4f169 766
411e1bfb 767 /* Like GOT_TLSLD16, but no overflow. */
46807bf4
AM
768 HOW (R_PPC64_GOT_TLSLD16_LO, 1, 16, 0xffff, 0, FALSE, dont,
769 ppc64_elf_unhandled_reloc),
5bd4f169 770
411e1bfb 771 /* Like GOT_TLSLD16_LO, but next higher group of 16 bits. */
46807bf4
AM
772 HOW (R_PPC64_GOT_TLSLD16_HI, 1, 16, 0xffff, 16, FALSE, signed,
773 ppc64_elf_unhandled_reloc),
5bd4f169 774
411e1bfb 775 /* Like GOT_TLSLD16_HI, but adjust for low 16 bits. */
46807bf4
AM
776 HOW (R_PPC64_GOT_TLSLD16_HA, 1, 16, 0xffff, 16, FALSE, signed,
777 ppc64_elf_unhandled_reloc),
5bd4f169 778
411e1bfb
AM
779 /* Allocates an entry in the GOT with value (sym+add)@dtprel, and computes
780 the offset to the entry relative to the TOC base (r2). */
46807bf4
AM
781 HOW (R_PPC64_GOT_DTPREL16_DS, 1, 16, 0xfffc, 0, FALSE, signed,
782 ppc64_elf_unhandled_reloc),
5bd4f169 783
411e1bfb 784 /* Like GOT_DTPREL16_DS, but no overflow. */
46807bf4
AM
785 HOW (R_PPC64_GOT_DTPREL16_LO_DS, 1, 16, 0xfffc, 0, FALSE, dont,
786 ppc64_elf_unhandled_reloc),
5bd4f169 787
411e1bfb 788 /* Like GOT_DTPREL16_LO_DS, but next higher group of 16 bits. */
46807bf4
AM
789 HOW (R_PPC64_GOT_DTPREL16_HI, 1, 16, 0xffff, 16, FALSE, signed,
790 ppc64_elf_unhandled_reloc),
5bd4f169 791
411e1bfb 792 /* Like GOT_DTPREL16_HI, but adjust for low 16 bits. */
46807bf4
AM
793 HOW (R_PPC64_GOT_DTPREL16_HA, 1, 16, 0xffff, 16, FALSE, signed,
794 ppc64_elf_unhandled_reloc),
411e1bfb
AM
795
796 /* Allocates an entry in the GOT with value (sym+add)@tprel, and computes the
797 offset to the entry relative to the TOC base (r2). */
46807bf4
AM
798 HOW (R_PPC64_GOT_TPREL16_DS, 1, 16, 0xfffc, 0, FALSE, signed,
799 ppc64_elf_unhandled_reloc),
5bd4f169 800
411e1bfb 801 /* Like GOT_TPREL16_DS, but no overflow. */
46807bf4
AM
802 HOW (R_PPC64_GOT_TPREL16_LO_DS, 1, 16, 0xfffc, 0, FALSE, dont,
803 ppc64_elf_unhandled_reloc),
5bd4f169 804
411e1bfb 805 /* Like GOT_TPREL16_LO_DS, but next higher group of 16 bits. */
46807bf4
AM
806 HOW (R_PPC64_GOT_TPREL16_HI, 1, 16, 0xffff, 16, FALSE, signed,
807 ppc64_elf_unhandled_reloc),
5bd4f169 808
411e1bfb 809 /* Like GOT_TPREL16_HI, but adjust for low 16 bits. */
46807bf4
AM
810 HOW (R_PPC64_GOT_TPREL16_HA, 1, 16, 0xffff, 16, FALSE, signed,
811 ppc64_elf_unhandled_reloc),
812
813 HOW (R_PPC64_JMP_IREL, 0, 0, 0, 0, FALSE, dont,
814 ppc64_elf_unhandled_reloc),
815
816 HOW (R_PPC64_IRELATIVE, 4, 64, 0xffffffffffffffffULL, 0, FALSE, dont,
817 bfd_elf_generic_reloc),
e054468f 818
25f23106 819 /* A 16 bit relative relocation. */
46807bf4
AM
820 HOW (R_PPC64_REL16, 1, 16, 0xffff, 0, TRUE, signed,
821 bfd_elf_generic_reloc),
25f23106
AM
822
823 /* A 16 bit relative relocation without overflow. */
46807bf4
AM
824 HOW (R_PPC64_REL16_LO, 1, 16, 0xffff, 0, TRUE, dont,
825 bfd_elf_generic_reloc),
25f23106
AM
826
827 /* The high order 16 bits of a relative address. */
46807bf4
AM
828 HOW (R_PPC64_REL16_HI, 1, 16, 0xffff, 16, TRUE, signed,
829 bfd_elf_generic_reloc),
25f23106
AM
830
831 /* The high order 16 bits of a relative address, plus 1 if the contents of
832 the low 16 bits, treated as a signed number, is negative. */
46807bf4
AM
833 HOW (R_PPC64_REL16_HA, 1, 16, 0xffff, 16, TRUE, signed,
834 ppc64_elf_ha_reloc),
25f23106 835
4a969973
AM
836 HOW (R_PPC64_REL16_HIGH, 1, 16, 0xffff, 16, TRUE, dont,
837 bfd_elf_generic_reloc),
838
839 HOW (R_PPC64_REL16_HIGHA, 1, 16, 0xffff, 16, TRUE, dont,
840 ppc64_elf_ha_reloc),
841
842 HOW (R_PPC64_REL16_HIGHER, 1, 16, 0xffff, 32, TRUE, dont,
843 bfd_elf_generic_reloc),
844
845 HOW (R_PPC64_REL16_HIGHERA, 1, 16, 0xffff, 32, TRUE, dont,
846 ppc64_elf_ha_reloc),
847
848 HOW (R_PPC64_REL16_HIGHEST, 1, 16, 0xffff, 48, TRUE, dont,
849 bfd_elf_generic_reloc),
850
851 HOW (R_PPC64_REL16_HIGHESTA, 1, 16, 0xffff, 48, TRUE, dont,
852 ppc64_elf_ha_reloc),
853
a680de9a 854 /* Like R_PPC64_REL16_HA but for split field in addpcis. */
46807bf4
AM
855 HOW (R_PPC64_REL16DX_HA, 2, 16, 0x1fffc1, 16, TRUE, signed,
856 ppc64_elf_ha_reloc),
a680de9a 857
7ba71655 858 /* A split-field reloc for addpcis, non-relative (gas internal use only). */
46807bf4
AM
859 HOW (R_PPC64_16DX_HA, 2, 16, 0x1fffc1, 16, FALSE, signed,
860 ppc64_elf_ha_reloc),
7ba71655 861
f9c6b907 862 /* Like R_PPC64_ADDR16_HI, but no overflow. */
46807bf4
AM
863 HOW (R_PPC64_ADDR16_HIGH, 1, 16, 0xffff, 16, FALSE, dont,
864 bfd_elf_generic_reloc),
f9c6b907
AM
865
866 /* Like R_PPC64_ADDR16_HA, but no overflow. */
46807bf4
AM
867 HOW (R_PPC64_ADDR16_HIGHA, 1, 16, 0xffff, 16, FALSE, dont,
868 ppc64_elf_ha_reloc),
f9c6b907
AM
869
870 /* Like R_PPC64_DTPREL16_HI, but no overflow. */
46807bf4
AM
871 HOW (R_PPC64_DTPREL16_HIGH, 1, 16, 0xffff, 16, FALSE, dont,
872 ppc64_elf_unhandled_reloc),
f9c6b907
AM
873
874 /* Like R_PPC64_DTPREL16_HA, but no overflow. */
46807bf4
AM
875 HOW (R_PPC64_DTPREL16_HIGHA, 1, 16, 0xffff, 16, FALSE, dont,
876 ppc64_elf_unhandled_reloc),
f9c6b907
AM
877
878 /* Like R_PPC64_TPREL16_HI, but no overflow. */
46807bf4
AM
879 HOW (R_PPC64_TPREL16_HIGH, 1, 16, 0xffff, 16, FALSE, dont,
880 ppc64_elf_unhandled_reloc),
f9c6b907
AM
881
882 /* Like R_PPC64_TPREL16_HA, but no overflow. */
46807bf4
AM
883 HOW (R_PPC64_TPREL16_HIGHA, 1, 16, 0xffff, 16, FALSE, dont,
884 ppc64_elf_unhandled_reloc),
f9c6b907 885
006589cf 886 /* Marker reloc on ELFv2 large-model function entry. */
46807bf4
AM
887 HOW (R_PPC64_ENTRY, 2, 32, 0, 0, FALSE, dont,
888 bfd_elf_generic_reloc),
006589cf 889
45965137 890 /* Like ADDR64, but use local entry point of function. */
46807bf4
AM
891 HOW (R_PPC64_ADDR64_LOCAL, 4, 64, 0xffffffffffffffffULL, 0, FALSE, dont,
892 bfd_elf_generic_reloc),
45965137 893
5663e321
AM
894 HOW (R_PPC64_PLTSEQ_NOTOC, 2, 32, 0, 0, FALSE, dont,
895 bfd_elf_generic_reloc),
896
897 HOW (R_PPC64_PLTCALL_NOTOC, 2, 32, 0, 0, FALSE, dont,
898 bfd_elf_generic_reloc),
899
900 HOW (R_PPC64_PCREL_OPT, 2, 32, 0, 0, FALSE, dont,
901 bfd_elf_generic_reloc),
902
903 HOW (R_PPC64_D34, 4, 34, 0x3ffff0000ffffULL, 0, FALSE, signed,
904 ppc64_elf_prefix_reloc),
905
906 HOW (R_PPC64_D34_LO, 4, 34, 0x3ffff0000ffffULL, 0, FALSE, dont,
907 ppc64_elf_prefix_reloc),
908
909 HOW (R_PPC64_D34_HI30, 4, 34, 0x3ffff0000ffffULL, 34, FALSE, dont,
910 ppc64_elf_prefix_reloc),
911
912 HOW (R_PPC64_D34_HA30, 4, 34, 0x3ffff0000ffffULL, 34, FALSE, dont,
913 ppc64_elf_prefix_reloc),
914
915 HOW (R_PPC64_PCREL34, 4, 34, 0x3ffff0000ffffULL, 0, TRUE, signed,
916 ppc64_elf_prefix_reloc),
917
918 HOW (R_PPC64_GOT_PCREL34, 4, 34, 0x3ffff0000ffffULL, 0, TRUE, signed,
919 ppc64_elf_unhandled_reloc),
920
921 HOW (R_PPC64_PLT_PCREL34, 4, 34, 0x3ffff0000ffffULL, 0, TRUE, signed,
922 ppc64_elf_unhandled_reloc),
923
924 HOW (R_PPC64_PLT_PCREL34_NOTOC, 4, 34, 0x3ffff0000ffffULL, 0, TRUE, signed,
925 ppc64_elf_unhandled_reloc),
926
c213164a
AM
927 HOW (R_PPC64_TPREL34, 4, 34, 0x3ffff0000ffffULL, 0, FALSE, signed,
928 ppc64_elf_unhandled_reloc),
929
930 HOW (R_PPC64_DTPREL34, 4, 34, 0x3ffff0000ffffULL, 0, FALSE, signed,
931 ppc64_elf_unhandled_reloc),
932
933 HOW (R_PPC64_GOT_TLSGD34, 4, 34, 0x3ffff0000ffffULL, 0, TRUE, signed,
934 ppc64_elf_unhandled_reloc),
935
936 HOW (R_PPC64_GOT_TLSLD34, 4, 34, 0x3ffff0000ffffULL, 0, TRUE, signed,
937 ppc64_elf_unhandled_reloc),
938
939 HOW (R_PPC64_GOT_TPREL34, 4, 34, 0x3ffff0000ffffULL, 0, TRUE, signed,
940 ppc64_elf_unhandled_reloc),
941
942 HOW (R_PPC64_GOT_DTPREL34, 4, 34, 0x3ffff0000ffffULL, 0, TRUE, signed,
943 ppc64_elf_unhandled_reloc),
944
5663e321
AM
945 HOW (R_PPC64_ADDR16_HIGHER34, 1, 16, 0xffff, 34, FALSE, dont,
946 bfd_elf_generic_reloc),
947
948 HOW (R_PPC64_ADDR16_HIGHERA34, 1, 16, 0xffff, 34, FALSE, dont,
949 ppc64_elf_ha_reloc),
950
951 HOW (R_PPC64_ADDR16_HIGHEST34, 1, 16, 0xffff, 50, FALSE, dont,
952 bfd_elf_generic_reloc),
953
954 HOW (R_PPC64_ADDR16_HIGHESTA34, 1, 16, 0xffff, 50, FALSE, dont,
955 ppc64_elf_ha_reloc),
956
957 HOW (R_PPC64_REL16_HIGHER34, 1, 16, 0xffff, 34, TRUE, dont,
958 bfd_elf_generic_reloc),
959
960 HOW (R_PPC64_REL16_HIGHERA34, 1, 16, 0xffff, 34, TRUE, dont,
961 ppc64_elf_ha_reloc),
962
963 HOW (R_PPC64_REL16_HIGHEST34, 1, 16, 0xffff, 50, TRUE, dont,
964 bfd_elf_generic_reloc),
965
966 HOW (R_PPC64_REL16_HIGHESTA34, 1, 16, 0xffff, 50, TRUE, dont,
967 ppc64_elf_ha_reloc),
968
969 HOW (R_PPC64_D28, 4, 28, 0xfff0000ffffULL, 0, FALSE, signed,
970 ppc64_elf_prefix_reloc),
971
972 HOW (R_PPC64_PCREL28, 4, 28, 0xfff0000ffffULL, 0, TRUE, signed,
973 ppc64_elf_prefix_reloc),
974
5bd4f169 975 /* GNU extension to record C++ vtable hierarchy. */
46807bf4
AM
976 HOW (R_PPC64_GNU_VTINHERIT, 0, 0, 0, 0, FALSE, dont,
977 NULL),
5bd4f169
AM
978
979 /* GNU extension to record C++ vtable member usage. */
46807bf4
AM
980 HOW (R_PPC64_GNU_VTENTRY, 0, 0, 0, 0, FALSE, dont,
981 NULL),
5bd4f169
AM
982};
983
984\f
985/* Initialize the ppc64_elf_howto_table, so that linear accesses can
986 be done. */
987
988static void
4ce794b7 989ppc_howto_init (void)
5bd4f169
AM
990{
991 unsigned int i, type;
992
a4b6fadd 993 for (i = 0; i < ARRAY_SIZE (ppc64_elf_howto_raw); i++)
5bd4f169
AM
994 {
995 type = ppc64_elf_howto_raw[i].type;
a4b6fadd 996 BFD_ASSERT (type < ARRAY_SIZE (ppc64_elf_howto_table));
5bd4f169
AM
997 ppc64_elf_howto_table[type] = &ppc64_elf_howto_raw[i];
998 }
999}
1000
1001static reloc_howto_type *
f3185997 1002ppc64_elf_reloc_type_lookup (bfd *abfd,
4ce794b7 1003 bfd_reloc_code_real_type code)
5bd4f169 1004{
411e1bfb 1005 enum elf_ppc64_reloc_type r = R_PPC64_NONE;
5bd4f169
AM
1006
1007 if (!ppc64_elf_howto_table[R_PPC64_ADDR32])
1008 /* Initialize howto table if needed. */
1009 ppc_howto_init ();
1010
4ce794b7 1011 switch (code)
5bd4f169
AM
1012 {
1013 default:
f3185997 1014 /* xgettext:c-format */
2cdcc330
AM
1015 _bfd_error_handler (_("%pB: unsupported relocation type %#x"), abfd,
1016 (int) code);
f3185997 1017 bfd_set_error (bfd_error_bad_value);
4ce794b7 1018 return NULL;
5bd4f169 1019
411e1bfb
AM
1020 case BFD_RELOC_NONE: r = R_PPC64_NONE;
1021 break;
1022 case BFD_RELOC_32: r = R_PPC64_ADDR32;
1023 break;
1024 case BFD_RELOC_PPC_BA26: r = R_PPC64_ADDR24;
1025 break;
1026 case BFD_RELOC_16: r = R_PPC64_ADDR16;
1027 break;
1028 case BFD_RELOC_LO16: r = R_PPC64_ADDR16_LO;
1029 break;
1030 case BFD_RELOC_HI16: r = R_PPC64_ADDR16_HI;
1031 break;
f9c6b907
AM
1032 case BFD_RELOC_PPC64_ADDR16_HIGH: r = R_PPC64_ADDR16_HIGH;
1033 break;
411e1bfb 1034 case BFD_RELOC_HI16_S: r = R_PPC64_ADDR16_HA;
5bd4f169 1035 break;
f9c6b907
AM
1036 case BFD_RELOC_PPC64_ADDR16_HIGHA: r = R_PPC64_ADDR16_HIGHA;
1037 break;
411e1bfb 1038 case BFD_RELOC_PPC_BA16: r = R_PPC64_ADDR14;
5bd4f169 1039 break;
411e1bfb 1040 case BFD_RELOC_PPC_BA16_BRTAKEN: r = R_PPC64_ADDR14_BRTAKEN;
5bd4f169 1041 break;
411e1bfb 1042 case BFD_RELOC_PPC_BA16_BRNTAKEN: r = R_PPC64_ADDR14_BRNTAKEN;
5bd4f169 1043 break;
411e1bfb 1044 case BFD_RELOC_PPC_B26: r = R_PPC64_REL24;
5bd4f169 1045 break;
05d0e962
AM
1046 case BFD_RELOC_PPC64_REL24_NOTOC: r = R_PPC64_REL24_NOTOC;
1047 break;
411e1bfb 1048 case BFD_RELOC_PPC_B16: r = R_PPC64_REL14;
5bd4f169 1049 break;
411e1bfb 1050 case BFD_RELOC_PPC_B16_BRTAKEN: r = R_PPC64_REL14_BRTAKEN;
5bd4f169 1051 break;
411e1bfb 1052 case BFD_RELOC_PPC_B16_BRNTAKEN: r = R_PPC64_REL14_BRNTAKEN;
5bd4f169 1053 break;
411e1bfb 1054 case BFD_RELOC_16_GOTOFF: r = R_PPC64_GOT16;
5bd4f169 1055 break;
411e1bfb 1056 case BFD_RELOC_LO16_GOTOFF: r = R_PPC64_GOT16_LO;
5bd4f169 1057 break;
411e1bfb 1058 case BFD_RELOC_HI16_GOTOFF: r = R_PPC64_GOT16_HI;
5bd4f169 1059 break;
411e1bfb 1060 case BFD_RELOC_HI16_S_GOTOFF: r = R_PPC64_GOT16_HA;
5bd4f169 1061 break;
411e1bfb 1062 case BFD_RELOC_PPC_COPY: r = R_PPC64_COPY;
5bd4f169 1063 break;
411e1bfb 1064 case BFD_RELOC_PPC_GLOB_DAT: r = R_PPC64_GLOB_DAT;
5bd4f169 1065 break;
411e1bfb 1066 case BFD_RELOC_32_PCREL: r = R_PPC64_REL32;
5bd4f169 1067 break;
411e1bfb 1068 case BFD_RELOC_32_PLTOFF: r = R_PPC64_PLT32;
5bd4f169 1069 break;
411e1bfb 1070 case BFD_RELOC_32_PLT_PCREL: r = R_PPC64_PLTREL32;
5bd4f169 1071 break;
411e1bfb 1072 case BFD_RELOC_LO16_PLTOFF: r = R_PPC64_PLT16_LO;
5bd4f169 1073 break;
411e1bfb 1074 case BFD_RELOC_HI16_PLTOFF: r = R_PPC64_PLT16_HI;
5bd4f169 1075 break;
411e1bfb 1076 case BFD_RELOC_HI16_S_PLTOFF: r = R_PPC64_PLT16_HA;
5bd4f169 1077 break;
411e1bfb 1078 case BFD_RELOC_16_BASEREL: r = R_PPC64_SECTOFF;
5bd4f169 1079 break;
411e1bfb 1080 case BFD_RELOC_LO16_BASEREL: r = R_PPC64_SECTOFF_LO;
5bd4f169 1081 break;
411e1bfb 1082 case BFD_RELOC_HI16_BASEREL: r = R_PPC64_SECTOFF_HI;
5bd4f169 1083 break;
411e1bfb 1084 case BFD_RELOC_HI16_S_BASEREL: r = R_PPC64_SECTOFF_HA;
5bd4f169 1085 break;
411e1bfb 1086 case BFD_RELOC_CTOR: r = R_PPC64_ADDR64;
5bd4f169 1087 break;
411e1bfb 1088 case BFD_RELOC_64: r = R_PPC64_ADDR64;
5bd4f169 1089 break;
411e1bfb 1090 case BFD_RELOC_PPC64_HIGHER: r = R_PPC64_ADDR16_HIGHER;
5bd4f169 1091 break;
411e1bfb 1092 case BFD_RELOC_PPC64_HIGHER_S: r = R_PPC64_ADDR16_HIGHERA;
5bd4f169 1093 break;
411e1bfb 1094 case BFD_RELOC_PPC64_HIGHEST: r = R_PPC64_ADDR16_HIGHEST;
5bd4f169 1095 break;
411e1bfb 1096 case BFD_RELOC_PPC64_HIGHEST_S: r = R_PPC64_ADDR16_HIGHESTA;
5bd4f169 1097 break;
411e1bfb 1098 case BFD_RELOC_64_PCREL: r = R_PPC64_REL64;
5bd4f169 1099 break;
411e1bfb 1100 case BFD_RELOC_64_PLTOFF: r = R_PPC64_PLT64;
5bd4f169 1101 break;
411e1bfb 1102 case BFD_RELOC_64_PLT_PCREL: r = R_PPC64_PLTREL64;
5bd4f169 1103 break;
411e1bfb 1104 case BFD_RELOC_PPC_TOC16: r = R_PPC64_TOC16;
5bd4f169 1105 break;
411e1bfb 1106 case BFD_RELOC_PPC64_TOC16_LO: r = R_PPC64_TOC16_LO;
5bd4f169 1107 break;
411e1bfb 1108 case BFD_RELOC_PPC64_TOC16_HI: r = R_PPC64_TOC16_HI;
5bd4f169 1109 break;
411e1bfb 1110 case BFD_RELOC_PPC64_TOC16_HA: r = R_PPC64_TOC16_HA;
5bd4f169 1111 break;
411e1bfb 1112 case BFD_RELOC_PPC64_TOC: r = R_PPC64_TOC;
5bd4f169 1113 break;
411e1bfb 1114 case BFD_RELOC_PPC64_PLTGOT16: r = R_PPC64_PLTGOT16;
5bd4f169 1115 break;
411e1bfb 1116 case BFD_RELOC_PPC64_PLTGOT16_LO: r = R_PPC64_PLTGOT16_LO;
5bd4f169 1117 break;
411e1bfb 1118 case BFD_RELOC_PPC64_PLTGOT16_HI: r = R_PPC64_PLTGOT16_HI;
5bd4f169 1119 break;
411e1bfb 1120 case BFD_RELOC_PPC64_PLTGOT16_HA: r = R_PPC64_PLTGOT16_HA;
5bd4f169 1121 break;
411e1bfb 1122 case BFD_RELOC_PPC64_ADDR16_DS: r = R_PPC64_ADDR16_DS;
5bd4f169 1123 break;
411e1bfb 1124 case BFD_RELOC_PPC64_ADDR16_LO_DS: r = R_PPC64_ADDR16_LO_DS;
5bd4f169 1125 break;
411e1bfb 1126 case BFD_RELOC_PPC64_GOT16_DS: r = R_PPC64_GOT16_DS;
5bd4f169 1127 break;
411e1bfb 1128 case BFD_RELOC_PPC64_GOT16_LO_DS: r = R_PPC64_GOT16_LO_DS;
5bd4f169 1129 break;
411e1bfb 1130 case BFD_RELOC_PPC64_PLT16_LO_DS: r = R_PPC64_PLT16_LO_DS;
5bd4f169 1131 break;
411e1bfb 1132 case BFD_RELOC_PPC64_SECTOFF_DS: r = R_PPC64_SECTOFF_DS;
5bd4f169 1133 break;
411e1bfb 1134 case BFD_RELOC_PPC64_SECTOFF_LO_DS: r = R_PPC64_SECTOFF_LO_DS;
5bd4f169 1135 break;
411e1bfb 1136 case BFD_RELOC_PPC64_TOC16_DS: r = R_PPC64_TOC16_DS;
5bd4f169 1137 break;
411e1bfb 1138 case BFD_RELOC_PPC64_TOC16_LO_DS: r = R_PPC64_TOC16_LO_DS;
5bd4f169 1139 break;
411e1bfb 1140 case BFD_RELOC_PPC64_PLTGOT16_DS: r = R_PPC64_PLTGOT16_DS;
5bd4f169 1141 break;
411e1bfb 1142 case BFD_RELOC_PPC64_PLTGOT16_LO_DS: r = R_PPC64_PLTGOT16_LO_DS;
5bd4f169 1143 break;
c213164a 1144 case BFD_RELOC_PPC64_TLS_PCREL:
411e1bfb 1145 case BFD_RELOC_PPC_TLS: r = R_PPC64_TLS;
5bd4f169 1146 break;
727fc41e
AM
1147 case BFD_RELOC_PPC_TLSGD: r = R_PPC64_TLSGD;
1148 break;
1149 case BFD_RELOC_PPC_TLSLD: r = R_PPC64_TLSLD;
1150 break;
411e1bfb 1151 case BFD_RELOC_PPC_DTPMOD: r = R_PPC64_DTPMOD64;
5bd4f169 1152 break;
411e1bfb 1153 case BFD_RELOC_PPC_TPREL16: r = R_PPC64_TPREL16;
5bd4f169 1154 break;
411e1bfb 1155 case BFD_RELOC_PPC_TPREL16_LO: r = R_PPC64_TPREL16_LO;
5bd4f169 1156 break;
411e1bfb 1157 case BFD_RELOC_PPC_TPREL16_HI: r = R_PPC64_TPREL16_HI;
5bd4f169 1158 break;
f9c6b907
AM
1159 case BFD_RELOC_PPC64_TPREL16_HIGH: r = R_PPC64_TPREL16_HIGH;
1160 break;
411e1bfb 1161 case BFD_RELOC_PPC_TPREL16_HA: r = R_PPC64_TPREL16_HA;
5bd4f169 1162 break;
f9c6b907
AM
1163 case BFD_RELOC_PPC64_TPREL16_HIGHA: r = R_PPC64_TPREL16_HIGHA;
1164 break;
411e1bfb 1165 case BFD_RELOC_PPC_TPREL: r = R_PPC64_TPREL64;
5bd4f169 1166 break;
411e1bfb
AM
1167 case BFD_RELOC_PPC_DTPREL16: r = R_PPC64_DTPREL16;
1168 break;
1169 case BFD_RELOC_PPC_DTPREL16_LO: r = R_PPC64_DTPREL16_LO;
1170 break;
1171 case BFD_RELOC_PPC_DTPREL16_HI: r = R_PPC64_DTPREL16_HI;
1172 break;
f9c6b907
AM
1173 case BFD_RELOC_PPC64_DTPREL16_HIGH: r = R_PPC64_DTPREL16_HIGH;
1174 break;
411e1bfb
AM
1175 case BFD_RELOC_PPC_DTPREL16_HA: r = R_PPC64_DTPREL16_HA;
1176 break;
f9c6b907
AM
1177 case BFD_RELOC_PPC64_DTPREL16_HIGHA: r = R_PPC64_DTPREL16_HIGHA;
1178 break;
411e1bfb
AM
1179 case BFD_RELOC_PPC_DTPREL: r = R_PPC64_DTPREL64;
1180 break;
1181 case BFD_RELOC_PPC_GOT_TLSGD16: r = R_PPC64_GOT_TLSGD16;
1182 break;
1183 case BFD_RELOC_PPC_GOT_TLSGD16_LO: r = R_PPC64_GOT_TLSGD16_LO;
1184 break;
1185 case BFD_RELOC_PPC_GOT_TLSGD16_HI: r = R_PPC64_GOT_TLSGD16_HI;
1186 break;
1187 case BFD_RELOC_PPC_GOT_TLSGD16_HA: r = R_PPC64_GOT_TLSGD16_HA;
1188 break;
1189 case BFD_RELOC_PPC_GOT_TLSLD16: r = R_PPC64_GOT_TLSLD16;
1190 break;
1191 case BFD_RELOC_PPC_GOT_TLSLD16_LO: r = R_PPC64_GOT_TLSLD16_LO;
1192 break;
1193 case BFD_RELOC_PPC_GOT_TLSLD16_HI: r = R_PPC64_GOT_TLSLD16_HI;
1194 break;
1195 case BFD_RELOC_PPC_GOT_TLSLD16_HA: r = R_PPC64_GOT_TLSLD16_HA;
1196 break;
1197 case BFD_RELOC_PPC_GOT_TPREL16: r = R_PPC64_GOT_TPREL16_DS;
1198 break;
1199 case BFD_RELOC_PPC_GOT_TPREL16_LO: r = R_PPC64_GOT_TPREL16_LO_DS;
1200 break;
1201 case BFD_RELOC_PPC_GOT_TPREL16_HI: r = R_PPC64_GOT_TPREL16_HI;
1202 break;
1203 case BFD_RELOC_PPC_GOT_TPREL16_HA: r = R_PPC64_GOT_TPREL16_HA;
1204 break;
1205 case BFD_RELOC_PPC_GOT_DTPREL16: r = R_PPC64_GOT_DTPREL16_DS;
1206 break;
1207 case BFD_RELOC_PPC_GOT_DTPREL16_LO: r = R_PPC64_GOT_DTPREL16_LO_DS;
1208 break;
1209 case BFD_RELOC_PPC_GOT_DTPREL16_HI: r = R_PPC64_GOT_DTPREL16_HI;
1210 break;
1211 case BFD_RELOC_PPC_GOT_DTPREL16_HA: r = R_PPC64_GOT_DTPREL16_HA;
1212 break;
1213 case BFD_RELOC_PPC64_TPREL16_DS: r = R_PPC64_TPREL16_DS;
1214 break;
1215 case BFD_RELOC_PPC64_TPREL16_LO_DS: r = R_PPC64_TPREL16_LO_DS;
1216 break;
1217 case BFD_RELOC_PPC64_TPREL16_HIGHER: r = R_PPC64_TPREL16_HIGHER;
1218 break;
1219 case BFD_RELOC_PPC64_TPREL16_HIGHERA: r = R_PPC64_TPREL16_HIGHERA;
1220 break;
1221 case BFD_RELOC_PPC64_TPREL16_HIGHEST: r = R_PPC64_TPREL16_HIGHEST;
1222 break;
1223 case BFD_RELOC_PPC64_TPREL16_HIGHESTA: r = R_PPC64_TPREL16_HIGHESTA;
1224 break;
1225 case BFD_RELOC_PPC64_DTPREL16_DS: r = R_PPC64_DTPREL16_DS;
1226 break;
1227 case BFD_RELOC_PPC64_DTPREL16_LO_DS: r = R_PPC64_DTPREL16_LO_DS;
1228 break;
1229 case BFD_RELOC_PPC64_DTPREL16_HIGHER: r = R_PPC64_DTPREL16_HIGHER;
1230 break;
1231 case BFD_RELOC_PPC64_DTPREL16_HIGHERA: r = R_PPC64_DTPREL16_HIGHERA;
1232 break;
1233 case BFD_RELOC_PPC64_DTPREL16_HIGHEST: r = R_PPC64_DTPREL16_HIGHEST;
1234 break;
1235 case BFD_RELOC_PPC64_DTPREL16_HIGHESTA: r = R_PPC64_DTPREL16_HIGHESTA;
1236 break;
25f23106
AM
1237 case BFD_RELOC_16_PCREL: r = R_PPC64_REL16;
1238 break;
1239 case BFD_RELOC_LO16_PCREL: r = R_PPC64_REL16_LO;
1240 break;
1241 case BFD_RELOC_HI16_PCREL: r = R_PPC64_REL16_HI;
1242 break;
1243 case BFD_RELOC_HI16_S_PCREL: r = R_PPC64_REL16_HA;
1244 break;
4a969973
AM
1245 case BFD_RELOC_PPC64_REL16_HIGH: r = R_PPC64_REL16_HIGH;
1246 break;
1247 case BFD_RELOC_PPC64_REL16_HIGHA: r = R_PPC64_REL16_HIGHA;
1248 break;
1249 case BFD_RELOC_PPC64_REL16_HIGHER: r = R_PPC64_REL16_HIGHER;
1250 break;
1251 case BFD_RELOC_PPC64_REL16_HIGHERA: r = R_PPC64_REL16_HIGHERA;
1252 break;
1253 case BFD_RELOC_PPC64_REL16_HIGHEST: r = R_PPC64_REL16_HIGHEST;
1254 break;
1255 case BFD_RELOC_PPC64_REL16_HIGHESTA: r = R_PPC64_REL16_HIGHESTA;
1256 break;
7ba71655
AM
1257 case BFD_RELOC_PPC_16DX_HA: r = R_PPC64_16DX_HA;
1258 break;
a680de9a
PB
1259 case BFD_RELOC_PPC_REL16DX_HA: r = R_PPC64_REL16DX_HA;
1260 break;
006589cf
AM
1261 case BFD_RELOC_PPC64_ENTRY: r = R_PPC64_ENTRY;
1262 break;
45965137
AM
1263 case BFD_RELOC_PPC64_ADDR64_LOCAL: r = R_PPC64_ADDR64_LOCAL;
1264 break;
5663e321
AM
1265 case BFD_RELOC_PPC64_D34: r = R_PPC64_D34;
1266 break;
1267 case BFD_RELOC_PPC64_D34_LO: r = R_PPC64_D34_LO;
1268 break;
1269 case BFD_RELOC_PPC64_D34_HI30: r = R_PPC64_D34_HI30;
1270 break;
1271 case BFD_RELOC_PPC64_D34_HA30: r = R_PPC64_D34_HA30;
1272 break;
1273 case BFD_RELOC_PPC64_PCREL34: r = R_PPC64_PCREL34;
1274 break;
1275 case BFD_RELOC_PPC64_GOT_PCREL34: r = R_PPC64_GOT_PCREL34;
1276 break;
1277 case BFD_RELOC_PPC64_PLT_PCREL34: r = R_PPC64_PLT_PCREL34;
1278 break;
c213164a
AM
1279 case BFD_RELOC_PPC64_TPREL34: r = R_PPC64_TPREL34;
1280 break;
1281 case BFD_RELOC_PPC64_DTPREL34: r = R_PPC64_DTPREL34;
1282 break;
1283 case BFD_RELOC_PPC64_GOT_TLSGD34: r = R_PPC64_GOT_TLSGD34;
1284 break;
1285 case BFD_RELOC_PPC64_GOT_TLSLD34: r = R_PPC64_GOT_TLSLD34;
1286 break;
1287 case BFD_RELOC_PPC64_GOT_TPREL34: r = R_PPC64_GOT_TPREL34;
1288 break;
1289 case BFD_RELOC_PPC64_GOT_DTPREL34: r = R_PPC64_GOT_DTPREL34;
1290 break;
5663e321
AM
1291 case BFD_RELOC_PPC64_ADDR16_HIGHER34: r = R_PPC64_ADDR16_HIGHER34;
1292 break;
1293 case BFD_RELOC_PPC64_ADDR16_HIGHERA34: r = R_PPC64_ADDR16_HIGHERA34;
1294 break;
1295 case BFD_RELOC_PPC64_ADDR16_HIGHEST34: r = R_PPC64_ADDR16_HIGHEST34;
1296 break;
1297 case BFD_RELOC_PPC64_ADDR16_HIGHESTA34: r = R_PPC64_ADDR16_HIGHESTA34;
1298 break;
1299 case BFD_RELOC_PPC64_REL16_HIGHER34: r = R_PPC64_REL16_HIGHER34;
1300 break;
1301 case BFD_RELOC_PPC64_REL16_HIGHERA34: r = R_PPC64_REL16_HIGHERA34;
1302 break;
1303 case BFD_RELOC_PPC64_REL16_HIGHEST34: r = R_PPC64_REL16_HIGHEST34;
1304 break;
1305 case BFD_RELOC_PPC64_REL16_HIGHESTA34: r = R_PPC64_REL16_HIGHESTA34;
1306 break;
1307 case BFD_RELOC_PPC64_D28: r = R_PPC64_D28;
1308 break;
1309 case BFD_RELOC_PPC64_PCREL28: r = R_PPC64_PCREL28;
1310 break;
411e1bfb
AM
1311 case BFD_RELOC_VTABLE_INHERIT: r = R_PPC64_GNU_VTINHERIT;
1312 break;
1313 case BFD_RELOC_VTABLE_ENTRY: r = R_PPC64_GNU_VTENTRY;
5bd4f169
AM
1314 break;
1315 }
1316
4ce794b7 1317 return ppc64_elf_howto_table[r];
5bd4f169
AM
1318};
1319
157090f7
AM
1320static reloc_howto_type *
1321ppc64_elf_reloc_name_lookup (bfd *abfd ATTRIBUTE_UNUSED,
1322 const char *r_name)
1323{
1324 unsigned int i;
1325
a4b6fadd 1326 for (i = 0; i < ARRAY_SIZE (ppc64_elf_howto_raw); i++)
157090f7
AM
1327 if (ppc64_elf_howto_raw[i].name != NULL
1328 && strcasecmp (ppc64_elf_howto_raw[i].name, r_name) == 0)
1329 return &ppc64_elf_howto_raw[i];
1330
1331 return NULL;
1332}
1333
5bd4f169
AM
1334/* Set the howto pointer for a PowerPC ELF reloc. */
1335
f3185997 1336static bfd_boolean
4aef7643 1337ppc64_elf_info_to_howto (bfd *abfd, arelent *cache_ptr,
4ce794b7 1338 Elf_Internal_Rela *dst)
5bd4f169 1339{
65f38f15
AM
1340 unsigned int type;
1341
ef60b7ff 1342 /* Initialize howto table if needed. */
5bd4f169 1343 if (!ppc64_elf_howto_table[R_PPC64_ADDR32])
5bd4f169
AM
1344 ppc_howto_init ();
1345
65f38f15 1346 type = ELF64_R_TYPE (dst->r_info);
a4b6fadd 1347 if (type >= ARRAY_SIZE (ppc64_elf_howto_table))
d0fb9a8d 1348 {
695344c0 1349 /* xgettext:c-format */
0aa13fee 1350 _bfd_error_handler (_("%pB: unsupported relocation type %#x"),
cf97bcb0 1351 abfd, type);
f3185997
NC
1352 bfd_set_error (bfd_error_bad_value);
1353 return FALSE;
d0fb9a8d 1354 }
65f38f15 1355 cache_ptr->howto = ppc64_elf_howto_table[type];
f3185997
NC
1356 if (cache_ptr->howto == NULL || cache_ptr->howto->name == NULL)
1357 {
1358 /* xgettext:c-format */
1359 _bfd_error_handler (_("%pB: unsupported relocation type %#x"),
1360 abfd, type);
1361 bfd_set_error (bfd_error_bad_value);
1362 return FALSE;
1363 }
2cdcc330 1364
f3185997 1365 return TRUE;
5bd4f169
AM
1366}
1367
04c9666a 1368/* Handle the R_PPC64_ADDR16_HA and similar relocs. */
5bd4f169
AM
1369
1370static bfd_reloc_status_type
4ce794b7
AM
1371ppc64_elf_ha_reloc (bfd *abfd, arelent *reloc_entry, asymbol *symbol,
1372 void *data, asection *input_section,
1373 bfd *output_bfd, char **error_message)
5bd4f169 1374{
a680de9a
PB
1375 enum elf_ppc64_reloc_type r_type;
1376 long insn;
1377 bfd_size_type octets;
3de43e7b 1378 bfd_vma value;
a680de9a 1379
805fc799
AM
1380 /* If this is a relocatable link (output_bfd test tells us), just
1381 call the generic function. Any adjustment will be done at final
1382 link time. */
1383 if (output_bfd != NULL)
cedb70c5 1384 return bfd_elf_generic_reloc (abfd, reloc_entry, symbol, data,
805fc799
AM
1385 input_section, output_bfd, error_message);
1386
5663e321
AM
1387 /* Adjust the addend for sign extension of the low 16 (or 34) bits.
1388 We won't actually be using the low bits, so trashing them
805fc799 1389 doesn't matter. */
a680de9a 1390 r_type = reloc_entry->howto->type;
5663e321
AM
1391 if (r_type == R_PPC64_ADDR16_HIGHERA34
1392 || r_type == R_PPC64_ADDR16_HIGHESTA34
1393 || r_type == R_PPC64_REL16_HIGHERA34
1394 || r_type == R_PPC64_REL16_HIGHESTA34)
1395 reloc_entry->addend += 1ULL << 33;
1396 else
1397 reloc_entry->addend += 1U << 15;
a680de9a
PB
1398 if (r_type != R_PPC64_REL16DX_HA)
1399 return bfd_reloc_continue;
1400
1401 value = 0;
1402 if (!bfd_is_com_section (symbol->section))
1403 value = symbol->value;
1404 value += (reloc_entry->addend
1405 + symbol->section->output_offset
1406 + symbol->section->output_section->vma);
1407 value -= (reloc_entry->address
1408 + input_section->output_offset
1409 + input_section->output_section->vma);
3de43e7b 1410 value = (bfd_signed_vma) value >> 16;
a680de9a 1411
bb294208 1412 octets = reloc_entry->address * OCTETS_PER_BYTE (abfd, input_section);
a680de9a
PB
1413 insn = bfd_get_32 (abfd, (bfd_byte *) data + octets);
1414 insn &= ~0x1fffc1;
3de43e7b 1415 insn |= (value & 0xffc1) | ((value & 0x3e) << 15);
a680de9a 1416 bfd_put_32 (abfd, insn, (bfd_byte *) data + octets);
3de43e7b 1417 if (value + 0x8000 > 0xffff)
a680de9a
PB
1418 return bfd_reloc_overflow;
1419 return bfd_reloc_ok;
805fc799 1420}
5bd4f169 1421
2441e016
AM
1422static bfd_reloc_status_type
1423ppc64_elf_branch_reloc (bfd *abfd, arelent *reloc_entry, asymbol *symbol,
1424 void *data, asection *input_section,
1425 bfd *output_bfd, char **error_message)
1426{
1427 if (output_bfd != NULL)
1428 return bfd_elf_generic_reloc (abfd, reloc_entry, symbol, data,
1429 input_section, output_bfd, error_message);
1430
699733f6
AM
1431 if (strcmp (symbol->section->name, ".opd") == 0
1432 && (symbol->section->owner->flags & DYNAMIC) == 0)
2441e016
AM
1433 {
1434 bfd_vma dest = opd_entry_value (symbol->section,
1435 symbol->value + reloc_entry->addend,
aef36ac1 1436 NULL, NULL, FALSE);
2441e016
AM
1437 if (dest != (bfd_vma) -1)
1438 reloc_entry->addend = dest - (symbol->value
1439 + symbol->section->output_section->vma
1440 + symbol->section->output_offset);
1441 }
810d4e75
AM
1442 else
1443 {
1444 elf_symbol_type *elfsym = (elf_symbol_type *) symbol;
1445
1446 if (symbol->section->owner != abfd
9f284bf9 1447 && symbol->section->owner != NULL
810d4e75
AM
1448 && abiversion (symbol->section->owner) >= 2)
1449 {
1450 unsigned int i;
1451
1452 for (i = 0; i < symbol->section->owner->symcount; ++i)
1453 {
1454 asymbol *symdef = symbol->section->owner->outsymbols[i];
1455
1456 if (strcmp (symdef->name, symbol->name) == 0)
1457 {
1458 elfsym = (elf_symbol_type *) symdef;
1459 break;
1460 }
1461 }
1462 }
1463 reloc_entry->addend
1464 += PPC64_LOCAL_ENTRY_OFFSET (elfsym->internal_elf_sym.st_other);
1465 }
2441e016
AM
1466 return bfd_reloc_continue;
1467}
1468
805fc799 1469static bfd_reloc_status_type
4ce794b7
AM
1470ppc64_elf_brtaken_reloc (bfd *abfd, arelent *reloc_entry, asymbol *symbol,
1471 void *data, asection *input_section,
1472 bfd *output_bfd, char **error_message)
805fc799
AM
1473{
1474 long insn;
04c9666a 1475 enum elf_ppc64_reloc_type r_type;
805fc799 1476 bfd_size_type octets;
794e51c0
AM
1477 /* Assume 'at' branch hints. */
1478 bfd_boolean is_isa_v2 = TRUE;
805fc799
AM
1479
1480 /* If this is a relocatable link (output_bfd test tells us), just
1481 call the generic function. Any adjustment will be done at final
1482 link time. */
5bd4f169 1483 if (output_bfd != NULL)
cedb70c5 1484 return bfd_elf_generic_reloc (abfd, reloc_entry, symbol, data,
805fc799
AM
1485 input_section, output_bfd, error_message);
1486
bb294208 1487 octets = reloc_entry->address * OCTETS_PER_BYTE (abfd, input_section);
805fc799
AM
1488 insn = bfd_get_32 (abfd, (bfd_byte *) data + octets);
1489 insn &= ~(0x01 << 21);
4ce794b7 1490 r_type = reloc_entry->howto->type;
805fc799
AM
1491 if (r_type == R_PPC64_ADDR14_BRTAKEN
1492 || r_type == R_PPC64_REL14_BRTAKEN)
cedb70c5 1493 insn |= 0x01 << 21; /* 'y' or 't' bit, lowest bit of BO field. */
805fc799 1494
794e51c0 1495 if (is_isa_v2)
5bd4f169 1496 {
805fc799
AM
1497 /* Set 'a' bit. This is 0b00010 in BO field for branch
1498 on CR(BI) insns (BO == 001at or 011at), and 0b01000
1499 for branch on CTR insns (BO == 1a00t or 1a01t). */
1500 if ((insn & (0x14 << 21)) == (0x04 << 21))
1501 insn |= 0x02 << 21;
1502 else if ((insn & (0x14 << 21)) == (0x10 << 21))
1503 insn |= 0x08 << 21;
1504 else
2441e016 1505 goto out;
5bd4f169 1506 }
805fc799
AM
1507 else
1508 {
1509 bfd_vma target = 0;
1510 bfd_vma from;
5bd4f169 1511
805fc799
AM
1512 if (!bfd_is_com_section (symbol->section))
1513 target = symbol->value;
1514 target += symbol->section->output_section->vma;
1515 target += symbol->section->output_offset;
1516 target += reloc_entry->addend;
5bd4f169 1517
805fc799
AM
1518 from = (reloc_entry->address
1519 + input_section->output_offset
1520 + input_section->output_section->vma);
5bd4f169 1521
805fc799
AM
1522 /* Invert 'y' bit if not the default. */
1523 if ((bfd_signed_vma) (target - from) < 0)
1524 insn ^= 0x01 << 21;
1525 }
4ce794b7 1526 bfd_put_32 (abfd, insn, (bfd_byte *) data + octets);
2441e016
AM
1527 out:
1528 return ppc64_elf_branch_reloc (abfd, reloc_entry, symbol, data,
1529 input_section, output_bfd, error_message);
805fc799 1530}
5bd4f169 1531
805fc799 1532static bfd_reloc_status_type
4ce794b7
AM
1533ppc64_elf_sectoff_reloc (bfd *abfd, arelent *reloc_entry, asymbol *symbol,
1534 void *data, asection *input_section,
1535 bfd *output_bfd, char **error_message)
805fc799
AM
1536{
1537 /* If this is a relocatable link (output_bfd test tells us), just
1538 call the generic function. Any adjustment will be done at final
1539 link time. */
1540 if (output_bfd != NULL)
cedb70c5 1541 return bfd_elf_generic_reloc (abfd, reloc_entry, symbol, data,
805fc799 1542 input_section, output_bfd, error_message);
5bd4f169 1543
805fc799
AM
1544 /* Subtract the symbol section base address. */
1545 reloc_entry->addend -= symbol->section->output_section->vma;
5bd4f169
AM
1546 return bfd_reloc_continue;
1547}
1548
805fc799 1549static bfd_reloc_status_type
4ce794b7
AM
1550ppc64_elf_sectoff_ha_reloc (bfd *abfd, arelent *reloc_entry, asymbol *symbol,
1551 void *data, asection *input_section,
1552 bfd *output_bfd, char **error_message)
805fc799
AM
1553{
1554 /* If this is a relocatable link (output_bfd test tells us), just
1555 call the generic function. Any adjustment will be done at final
1556 link time. */
1557 if (output_bfd != NULL)
cedb70c5 1558 return bfd_elf_generic_reloc (abfd, reloc_entry, symbol, data,
805fc799
AM
1559 input_section, output_bfd, error_message);
1560
1561 /* Subtract the symbol section base address. */
1562 reloc_entry->addend -= symbol->section->output_section->vma;
1563
1564 /* Adjust the addend for sign extension of the low 16 bits. */
1565 reloc_entry->addend += 0x8000;
1566 return bfd_reloc_continue;
1567}
1568
1569static bfd_reloc_status_type
4ce794b7
AM
1570ppc64_elf_toc_reloc (bfd *abfd, arelent *reloc_entry, asymbol *symbol,
1571 void *data, asection *input_section,
1572 bfd *output_bfd, char **error_message)
805fc799
AM
1573{
1574 bfd_vma TOCstart;
1575
1576 /* If this is a relocatable link (output_bfd test tells us), just
1577 call the generic function. Any adjustment will be done at final
1578 link time. */
1579 if (output_bfd != NULL)
cedb70c5 1580 return bfd_elf_generic_reloc (abfd, reloc_entry, symbol, data,
805fc799
AM
1581 input_section, output_bfd, error_message);
1582
1583 TOCstart = _bfd_get_gp_value (input_section->output_section->owner);
1584 if (TOCstart == 0)
1c865ab2 1585 TOCstart = ppc64_elf_set_toc (NULL, input_section->output_section->owner);
805fc799
AM
1586
1587 /* Subtract the TOC base address. */
1588 reloc_entry->addend -= TOCstart + TOC_BASE_OFF;
1589 return bfd_reloc_continue;
1590}
1591
1592static bfd_reloc_status_type
4ce794b7
AM
1593ppc64_elf_toc_ha_reloc (bfd *abfd, arelent *reloc_entry, asymbol *symbol,
1594 void *data, asection *input_section,
1595 bfd *output_bfd, char **error_message)
805fc799
AM
1596{
1597 bfd_vma TOCstart;
1598
1599 /* If this is a relocatable link (output_bfd test tells us), just
1600 call the generic function. Any adjustment will be done at final
1601 link time. */
1602 if (output_bfd != NULL)
cedb70c5 1603 return bfd_elf_generic_reloc (abfd, reloc_entry, symbol, data,
805fc799
AM
1604 input_section, output_bfd, error_message);
1605
1606 TOCstart = _bfd_get_gp_value (input_section->output_section->owner);
1607 if (TOCstart == 0)
1c865ab2 1608 TOCstart = ppc64_elf_set_toc (NULL, input_section->output_section->owner);
805fc799
AM
1609
1610 /* Subtract the TOC base address. */
1611 reloc_entry->addend -= TOCstart + TOC_BASE_OFF;
1612
1613 /* Adjust the addend for sign extension of the low 16 bits. */
1614 reloc_entry->addend += 0x8000;
1615 return bfd_reloc_continue;
1616}
1617
1618static bfd_reloc_status_type
4ce794b7
AM
1619ppc64_elf_toc64_reloc (bfd *abfd, arelent *reloc_entry, asymbol *symbol,
1620 void *data, asection *input_section,
1621 bfd *output_bfd, char **error_message)
805fc799
AM
1622{
1623 bfd_vma TOCstart;
1624 bfd_size_type octets;
1625
1626 /* If this is a relocatable link (output_bfd test tells us), just
1627 call the generic function. Any adjustment will be done at final
1628 link time. */
1629 if (output_bfd != NULL)
cedb70c5 1630 return bfd_elf_generic_reloc (abfd, reloc_entry, symbol, data,
805fc799
AM
1631 input_section, output_bfd, error_message);
1632
1633 TOCstart = _bfd_get_gp_value (input_section->output_section->owner);
1634 if (TOCstart == 0)
1c865ab2 1635 TOCstart = ppc64_elf_set_toc (NULL, input_section->output_section->owner);
805fc799 1636
bb294208 1637 octets = reloc_entry->address * OCTETS_PER_BYTE (abfd, input_section);
805fc799
AM
1638 bfd_put_64 (abfd, TOCstart + TOC_BASE_OFF, (bfd_byte *) data + octets);
1639 return bfd_reloc_ok;
1640}
1641
5663e321
AM
1642static bfd_reloc_status_type
1643ppc64_elf_prefix_reloc (bfd *abfd, arelent *reloc_entry, asymbol *symbol,
1644 void *data, asection *input_section,
1645 bfd *output_bfd, char **error_message)
1646{
1647 uint64_t insn;
1648 bfd_vma targ;
1649
1650 if (output_bfd != NULL)
1651 return bfd_elf_generic_reloc (abfd, reloc_entry, symbol, data,
1652 input_section, output_bfd, error_message);
1653
1654 insn = bfd_get_32 (abfd, (bfd_byte *) data + reloc_entry->address);
1655 insn <<= 32;
1656 insn |= bfd_get_32 (abfd, (bfd_byte *) data + reloc_entry->address + 4);
1657
1658 targ = (symbol->section->output_section->vma
1659 + symbol->section->output_offset
1660 + reloc_entry->addend);
1661 if (!bfd_is_com_section (symbol->section))
1662 targ += symbol->value;
1663 if (reloc_entry->howto->type == R_PPC64_D34_HA30)
1664 targ += 1ULL << 33;
1665 if (reloc_entry->howto->pc_relative)
1666 {
1667 bfd_vma from = (reloc_entry->address
1668 + input_section->output_offset
1669 + input_section->output_section->vma);
1670 targ -=from;
1671 }
1672 targ >>= reloc_entry->howto->rightshift;
1673 insn &= ~reloc_entry->howto->dst_mask;
1674 insn |= ((targ << 16) | (targ & 0xffff)) & reloc_entry->howto->dst_mask;
1675 bfd_put_32 (abfd, insn >> 32, (bfd_byte *) data + reloc_entry->address);
1676 bfd_put_32 (abfd, insn, (bfd_byte *) data + reloc_entry->address + 4);
1677 if (reloc_entry->howto->complain_on_overflow == complain_overflow_signed
1678 && (targ + (1ULL << (reloc_entry->howto->bitsize - 1))
1679 >= 1ULL << reloc_entry->howto->bitsize))
1680 return bfd_reloc_overflow;
1681 return bfd_reloc_ok;
1682}
1683
805fc799 1684static bfd_reloc_status_type
4ce794b7
AM
1685ppc64_elf_unhandled_reloc (bfd *abfd, arelent *reloc_entry, asymbol *symbol,
1686 void *data, asection *input_section,
1687 bfd *output_bfd, char **error_message)
805fc799
AM
1688{
1689 /* If this is a relocatable link (output_bfd test tells us), just
1690 call the generic function. Any adjustment will be done at final
1691 link time. */
1692 if (output_bfd != NULL)
cedb70c5 1693 return bfd_elf_generic_reloc (abfd, reloc_entry, symbol, data,
805fc799
AM
1694 input_section, output_bfd, error_message);
1695
1696 if (error_message != NULL)
1697 {
1698 static char buf[60];
1699 sprintf (buf, "generic linker can't handle %s",
1700 reloc_entry->howto->name);
1701 *error_message = buf;
1702 }
1703 return bfd_reloc_dangerous;
1704}
1705
927be08e
AM
1706/* Track GOT entries needed for a given symbol. We might need more
1707 than one got entry per symbol. */
1708struct got_entry
1709{
1710 struct got_entry *next;
1711
1712 /* The symbol addend that we'll be placing in the GOT. */
1713 bfd_vma addend;
1714
1715 /* Unlike other ELF targets, we use separate GOT entries for the same
1716 symbol referenced from different input files. This is to support
1717 automatic multiple TOC/GOT sections, where the TOC base can vary
1718 from one input file to another. After partitioning into TOC groups
1719 we merge entries within the group.
1720
1721 Point to the BFD owning this GOT entry. */
1722 bfd *owner;
1723
1724 /* Zero for non-tls entries, or TLS_TLS and one of TLS_GD, TLS_LD,
1725 TLS_TPREL or TLS_DTPREL for tls entries. */
f961d9dd 1726 unsigned char tls_type;
927be08e
AM
1727
1728 /* Non-zero if got.ent points to real entry. */
f961d9dd 1729 unsigned char is_indirect;
927be08e
AM
1730
1731 /* Reference count until size_dynamic_sections, GOT offset thereafter. */
1732 union
2cdcc330
AM
1733 {
1734 bfd_signed_vma refcount;
1735 bfd_vma offset;
1736 struct got_entry *ent;
1737 } got;
927be08e
AM
1738};
1739
1740/* The same for PLT. */
1741struct plt_entry
1742{
1743 struct plt_entry *next;
1744
1745 bfd_vma addend;
1746
1747 union
2cdcc330
AM
1748 {
1749 bfd_signed_vma refcount;
1750 bfd_vma offset;
1751 } plt;
927be08e
AM
1752};
1753
e717da7e
AM
1754struct ppc64_elf_obj_tdata
1755{
1756 struct elf_obj_tdata elf;
1757
1758 /* Shortcuts to dynamic linker sections. */
1759 asection *got;
1760 asection *relgot;
1761
b3fac117
AM
1762 /* Used during garbage collection. We attach global symbols defined
1763 on removed .opd entries to this section so that the sym is removed. */
1764 asection *deleted_section;
81688140 1765
927be08e 1766 /* TLS local dynamic got entry handling. Support for multiple GOT
e717da7e 1767 sections means we potentially need one of these for each input bfd. */
927be08e 1768 struct got_entry tlsld_got;
8860955f 1769
2cdcc330
AM
1770 union
1771 {
729eabd5
AM
1772 /* A copy of relocs before they are modified for --emit-relocs. */
1773 Elf_Internal_Rela *relocs;
1774
1775 /* Section contents. */
1776 bfd_byte *contents;
1777 } opd;
d77c8a4b
AM
1778
1779 /* Nonzero if this bfd has small toc/got relocs, ie. that expect
1780 the reloc to be in the range -32768 to 32767. */
98528052
AM
1781 unsigned int has_small_toc_reloc : 1;
1782
560c8763
AM
1783 /* Set if toc/got ha relocs detected not using r2, or lo reloc
1784 instruction not one we handle. */
1785 unsigned int unexpected_toc_insn : 1;
066f4018 1786
903b777d
AM
1787 /* Set if PLT/GOT/TOC relocs that can be optimised are present in
1788 this file. */
1789 unsigned int has_optrel : 1;
e717da7e
AM
1790};
1791
1792#define ppc64_elf_tdata(bfd) \
1793 ((struct ppc64_elf_obj_tdata *) (bfd)->tdata.any)
1794
1795#define ppc64_tlsld_got(bfd) \
1796 (&ppc64_elf_tdata (bfd)->tlsld_got)
1797
0c8d6e5c
AM
1798#define is_ppc64_elf(bfd) \
1799 (bfd_get_flavour (bfd) == bfd_target_elf_flavour \
4dfe6ac6 1800 && elf_object_id (bfd) == PPC64_ELF_DATA)
0c8d6e5c 1801
e717da7e
AM
1802/* Override the generic function because we store some extras. */
1803
1804static bfd_boolean
1805ppc64_elf_mkobject (bfd *abfd)
1806{
0ffa91dd 1807 return bfd_elf_allocate_object (abfd, sizeof (struct ppc64_elf_obj_tdata),
4dfe6ac6 1808 PPC64_ELF_DATA);
e717da7e
AM
1809}
1810
feee612b 1811/* Fix bad default arch selected for a 64 bit input bfd when the
14b57c7c 1812 default is 32 bit. Also select arch based on apuinfo. */
feee612b 1813
b34976b6 1814static bfd_boolean
4ce794b7 1815ppc64_elf_object_p (bfd *abfd)
feee612b 1816{
14b57c7c
AM
1817 if (!abfd->arch_info->the_default)
1818 return TRUE;
1819
1820 if (abfd->arch_info->bits_per_word == 32)
feee612b
AM
1821 {
1822 Elf_Internal_Ehdr *i_ehdr = elf_elfheader (abfd);
1823
1824 if (i_ehdr->e_ident[EI_CLASS] == ELFCLASS64)
1825 {
1826 /* Relies on arch after 32 bit default being 64 bit default. */
1827 abfd->arch_info = abfd->arch_info->next;
1828 BFD_ASSERT (abfd->arch_info->bits_per_word == 64);
1829 }
1830 }
14b57c7c 1831 return _bfd_elf_ppc_set_arch (abfd);
feee612b
AM
1832}
1833
d37c89e5
AM
1834/* Support for core dump NOTE sections. */
1835
1836static bfd_boolean
1837ppc64_elf_grok_prstatus (bfd *abfd, Elf_Internal_Note *note)
1838{
eea6121a 1839 size_t offset, size;
d37c89e5
AM
1840
1841 if (note->descsz != 504)
1842 return FALSE;
1843
1844 /* pr_cursig */
228e534f 1845 elf_tdata (abfd)->core->signal = bfd_get_16 (abfd, note->descdata + 12);
d37c89e5
AM
1846
1847 /* pr_pid */
228e534f 1848 elf_tdata (abfd)->core->lwpid = bfd_get_32 (abfd, note->descdata + 32);
d37c89e5
AM
1849
1850 /* pr_reg */
1851 offset = 112;
eea6121a 1852 size = 384;
d37c89e5
AM
1853
1854 /* Make a ".reg/999" section. */
1855 return _bfd_elfcore_make_pseudosection (abfd, ".reg",
eea6121a 1856 size, note->descpos + offset);
d37c89e5
AM
1857}
1858
1859static bfd_boolean
1860ppc64_elf_grok_psinfo (bfd *abfd, Elf_Internal_Note *note)
1861{
1862 if (note->descsz != 136)
1863 return FALSE;
1864
228e534f 1865 elf_tdata (abfd)->core->pid
bc989cdc 1866 = bfd_get_32 (abfd, note->descdata + 24);
228e534f 1867 elf_tdata (abfd)->core->program
d37c89e5 1868 = _bfd_elfcore_strndup (abfd, note->descdata + 40, 16);
228e534f 1869 elf_tdata (abfd)->core->command
d37c89e5
AM
1870 = _bfd_elfcore_strndup (abfd, note->descdata + 56, 80);
1871
1872 return TRUE;
1873}
1874
183e98be
AM
1875static char *
1876ppc64_elf_write_core_note (bfd *abfd, char *buf, int *bufsiz, int note_type,
1877 ...)
1878{
1879 switch (note_type)
1880 {
1881 default:
1882 return NULL;
1883
1884 case NT_PRPSINFO:
1885 {
9ef6d1e3 1886 char data[136] ATTRIBUTE_NONSTRING;
183e98be
AM
1887 va_list ap;
1888
1889 va_start (ap, note_type);
75cd47ed 1890 memset (data, 0, sizeof (data));
183e98be 1891 strncpy (data + 40, va_arg (ap, const char *), 16);
be3e27bb 1892#if GCC_VERSION == 8000 || GCC_VERSION == 8001
95da9854 1893 DIAGNOSTIC_PUSH;
be3e27bb 1894 /* GCC 8.0 and 8.1 warn about 80 equals destination size with
95da9854
L
1895 -Wstringop-truncation:
1896 https://gcc.gnu.org/bugzilla/show_bug.cgi?id=85643
1897 */
95da9854
L
1898 DIAGNOSTIC_IGNORE_STRINGOP_TRUNCATION;
1899#endif
183e98be 1900 strncpy (data + 56, va_arg (ap, const char *), 80);
be3e27bb 1901#if GCC_VERSION == 8000 || GCC_VERSION == 8001
95da9854 1902 DIAGNOSTIC_POP;
fe75810f 1903#endif
183e98be
AM
1904 va_end (ap);
1905 return elfcore_write_note (abfd, buf, bufsiz,
1906 "CORE", note_type, data, sizeof (data));
1907 }
1908
1909 case NT_PRSTATUS:
1910 {
1911 char data[504];
1912 va_list ap;
1913 long pid;
1914 int cursig;
1915 const void *greg;
1916
1917 va_start (ap, note_type);
1918 memset (data, 0, 112);
1919 pid = va_arg (ap, long);
1920 bfd_put_32 (abfd, pid, data + 32);
1921 cursig = va_arg (ap, int);
1922 bfd_put_16 (abfd, cursig, data + 12);
1923 greg = va_arg (ap, const void *);
1924 memcpy (data + 112, greg, 384);
1925 memset (data + 496, 0, 8);
1926 va_end (ap);
1927 return elfcore_write_note (abfd, buf, bufsiz,
1928 "CORE", note_type, data, sizeof (data));
1929 }
1930 }
1931}
1932
5d35169e
AM
1933/* Add extra PPC sections. */
1934
2cdcc330 1935static const struct bfd_elf_special_section ppc64_elf_special_sections[] =
7f4d3958 1936{
07d6d2b8
AM
1937 { STRING_COMMA_LEN (".plt"), 0, SHT_NOBITS, 0 },
1938 { STRING_COMMA_LEN (".sbss"), -2, SHT_NOBITS, SHF_ALLOC + SHF_WRITE },
0112cd26 1939 { STRING_COMMA_LEN (".sdata"), -2, SHT_PROGBITS, SHF_ALLOC + SHF_WRITE },
07d6d2b8
AM
1940 { STRING_COMMA_LEN (".toc"), 0, SHT_PROGBITS, SHF_ALLOC + SHF_WRITE },
1941 { STRING_COMMA_LEN (".toc1"), 0, SHT_PROGBITS, SHF_ALLOC + SHF_WRITE },
0112cd26 1942 { STRING_COMMA_LEN (".tocbss"), 0, SHT_NOBITS, SHF_ALLOC + SHF_WRITE },
07d6d2b8 1943 { NULL, 0, 0, 0, 0 }
5d35169e
AM
1944};
1945
7c8fe5c4
AM
1946enum _ppc64_sec_type {
1947 sec_normal = 0,
1948 sec_opd = 1,
1949 sec_toc = 2
1950};
1951
f0abc2a1
AM
1952struct _ppc64_elf_section_data
1953{
1954 struct bfd_elf_section_data elf;
411e1bfb 1955
f0abc2a1
AM
1956 union
1957 {
51aecdc5
AM
1958 /* An array with one entry for each opd function descriptor,
1959 and some spares since opd entries may be either 16 or 24 bytes. */
1960#define OPD_NDX(OFF) ((OFF) >> 4)
74f0fb50
AM
1961 struct _opd_sec_data
1962 {
1963 /* Points to the function code section for local opd entries. */
1964 asection **func_sec;
1965
1966 /* After editing .opd, adjust references to opd local syms. */
1967 long *adjust;
1968 } opd;
7c8fe5c4 1969
3a71aa26
AM
1970 /* An array for toc sections, indexed by offset/8. */
1971 struct _toc_sec_data
1972 {
1973 /* Specifies the relocation symbol index used at a given toc offset. */
1974 unsigned *symndx;
1975
1976 /* And the relocation addend. */
1977 bfd_vma *add;
1978 } toc;
7c8fe5c4
AM
1979 } u;
1980
1981 enum _ppc64_sec_type sec_type:2;
411e1bfb 1982
7c8fe5c4
AM
1983 /* Flag set when small branches are detected. Used to
1984 select suitable defaults for the stub group size. */
1985 unsigned int has_14bit_branch:1;
3e04d765
AM
1986
1987 /* Flag set when PLTCALL relocs are detected. */
1988 unsigned int has_pltcall:1;
066f4018 1989
903b777d
AM
1990 /* Flag set when section has PLT/GOT/TOC relocations that can be
1991 optimised. */
1992 unsigned int has_optrel:1;
f0abc2a1
AM
1993};
1994
1995#define ppc64_elf_section_data(sec) \
411e1bfb 1996 ((struct _ppc64_elf_section_data *) elf_section_data (sec))
f0abc2a1
AM
1997
1998static bfd_boolean
4ce794b7 1999ppc64_elf_new_section_hook (bfd *abfd, asection *sec)
f0abc2a1 2000{
f592407e
AM
2001 if (!sec->used_by_bfd)
2002 {
2003 struct _ppc64_elf_section_data *sdata;
986f0783 2004 size_t amt = sizeof (*sdata);
f0abc2a1 2005
f592407e
AM
2006 sdata = bfd_zalloc (abfd, amt);
2007 if (sdata == NULL)
2008 return FALSE;
2009 sec->used_by_bfd = sdata;
2010 }
f0abc2a1
AM
2011
2012 return _bfd_elf_new_section_hook (abfd, sec);
2013}
4025353c 2014
bf577467
AM
2015static bfd_boolean
2016ppc64_elf_section_flags (const Elf_Internal_Shdr *hdr)
2017{
2018 const char *name = hdr->bfd_section->name;
2019
2020 if (strncmp (name, ".sbss", 5) == 0
2021 || strncmp (name, ".sdata", 6) == 0)
2022 hdr->bfd_section->flags |= SEC_SMALL_DATA;
2023
2024 return TRUE;
2025}
2026
74f0fb50 2027static struct _opd_sec_data *
4025353c
AM
2028get_opd_info (asection * sec)
2029{
2030 if (sec != NULL
2031 && ppc64_elf_section_data (sec) != NULL
7c8fe5c4 2032 && ppc64_elf_section_data (sec)->sec_type == sec_opd)
74f0fb50 2033 return &ppc64_elf_section_data (sec)->u.opd;
4025353c
AM
2034 return NULL;
2035}
90e3cdf2
JJ
2036\f
2037/* Parameters for the qsort hook. */
90e3cdf2 2038static bfd_boolean synthetic_relocatable;
cd285db5 2039static asection *synthetic_opd;
90e3cdf2 2040
699733f6 2041/* qsort comparison function for ppc64_elf_get_synthetic_symtab. */
90e3cdf2
JJ
2042
2043static int
2044compare_symbols (const void *ap, const void *bp)
2045{
2cdcc330
AM
2046 const asymbol *a = *(const asymbol **) ap;
2047 const asymbol *b = *(const asymbol **) bp;
90e3cdf2 2048
699733f6
AM
2049 /* Section symbols first. */
2050 if ((a->flags & BSF_SECTION_SYM) && !(b->flags & BSF_SECTION_SYM))
90e3cdf2 2051 return -1;
699733f6 2052 if (!(a->flags & BSF_SECTION_SYM) && (b->flags & BSF_SECTION_SYM))
90e3cdf2
JJ
2053 return 1;
2054
699733f6 2055 /* then .opd symbols. */
cd285db5
AM
2056 if (synthetic_opd != NULL)
2057 {
2058 if (strcmp (a->section->name, ".opd") == 0
2059 && strcmp (b->section->name, ".opd") != 0)
2060 return -1;
2061 if (strcmp (a->section->name, ".opd") != 0
2062 && strcmp (b->section->name, ".opd") == 0)
2063 return 1;
2064 }
90e3cdf2 2065
699733f6 2066 /* then other code symbols. */
2cdcc330
AM
2067 if (((a->section->flags & (SEC_CODE | SEC_ALLOC | SEC_THREAD_LOCAL))
2068 == (SEC_CODE | SEC_ALLOC))
2069 && ((b->section->flags & (SEC_CODE | SEC_ALLOC | SEC_THREAD_LOCAL))
2070 != (SEC_CODE | SEC_ALLOC)))
90e3cdf2
JJ
2071 return -1;
2072
2cdcc330
AM
2073 if (((a->section->flags & (SEC_CODE | SEC_ALLOC | SEC_THREAD_LOCAL))
2074 != (SEC_CODE | SEC_ALLOC))
2075 && ((b->section->flags & (SEC_CODE | SEC_ALLOC | SEC_THREAD_LOCAL))
2076 == (SEC_CODE | SEC_ALLOC)))
90e3cdf2
JJ
2077 return 1;
2078
2079 if (synthetic_relocatable)
2080 {
2081 if (a->section->id < b->section->id)
2082 return -1;
2083
2084 if (a->section->id > b->section->id)
2085 return 1;
2086 }
2087
2088 if (a->value + a->section->vma < b->value + b->section->vma)
2089 return -1;
2090
2091 if (a->value + a->section->vma > b->value + b->section->vma)
2092 return 1;
2093
4d35a0aa
AM
2094 /* For syms with the same value, prefer strong dynamic global function
2095 syms over other syms. */
2096 if ((a->flags & BSF_GLOBAL) != 0 && (b->flags & BSF_GLOBAL) == 0)
2097 return -1;
2098
2099 if ((a->flags & BSF_GLOBAL) == 0 && (b->flags & BSF_GLOBAL) != 0)
2100 return 1;
2101
2102 if ((a->flags & BSF_FUNCTION) != 0 && (b->flags & BSF_FUNCTION) == 0)
2103 return -1;
2104
2105 if ((a->flags & BSF_FUNCTION) == 0 && (b->flags & BSF_FUNCTION) != 0)
2106 return 1;
2107
2108 if ((a->flags & BSF_WEAK) == 0 && (b->flags & BSF_WEAK) != 0)
2109 return -1;
2110
2111 if ((a->flags & BSF_WEAK) != 0 && (b->flags & BSF_WEAK) == 0)
2112 return 1;
2113
2114 if ((a->flags & BSF_DYNAMIC) != 0 && (b->flags & BSF_DYNAMIC) == 0)
2115 return -1;
2116
2117 if ((a->flags & BSF_DYNAMIC) == 0 && (b->flags & BSF_DYNAMIC) != 0)
2118 return 1;
2119
dcea6a95
AM
2120 /* Finally, sort on where the symbol is in memory. The symbols will
2121 be in at most two malloc'd blocks, one for static syms, one for
2122 dynamic syms, and we distinguish the two blocks above by testing
2123 BSF_DYNAMIC. Since we are sorting the symbol pointers which were
2124 originally in the same order as the symbols (and we're not
2125 sorting the symbols themselves), this ensures a stable sort. */
2126 if (a < b)
2127 return -1;
2128 if (a > b)
2129 return 1;
2130 return 0;
90e3cdf2
JJ
2131}
2132
699733f6 2133/* Search SYMS for a symbol of the given VALUE. */
90e3cdf2 2134
699733f6 2135static asymbol *
9ad9b810
AM
2136sym_exists_at (asymbol **syms, size_t lo, size_t hi, unsigned int id,
2137 bfd_vma value)
90e3cdf2 2138{
9ad9b810 2139 size_t mid;
90e3cdf2 2140
7292b3ac 2141 if (id == (unsigned) -1)
699733f6
AM
2142 {
2143 while (lo < hi)
2144 {
2145 mid = (lo + hi) >> 1;
2146 if (syms[mid]->value + syms[mid]->section->vma < value)
2147 lo = mid + 1;
2148 else if (syms[mid]->value + syms[mid]->section->vma > value)
2149 hi = mid;
2150 else
2151 return syms[mid];
2152 }
2153 }
2154 else
2155 {
2156 while (lo < hi)
2157 {
2158 mid = (lo + hi) >> 1;
2159 if (syms[mid]->section->id < id)
2160 lo = mid + 1;
2161 else if (syms[mid]->section->id > id)
2162 hi = mid;
2163 else if (syms[mid]->value < value)
2164 lo = mid + 1;
2165 else if (syms[mid]->value > value)
2166 hi = mid;
2167 else
2168 return syms[mid];
2169 }
2170 }
2171 return NULL;
90e3cdf2
JJ
2172}
2173
468392fb
AM
2174static bfd_boolean
2175section_covers_vma (bfd *abfd ATTRIBUTE_UNUSED, asection *section, void *ptr)
2176{
2177 bfd_vma vma = *(bfd_vma *) ptr;
2178 return ((section->flags & SEC_ALLOC) != 0
2179 && section->vma <= vma
2180 && vma < section->vma + section->size);
2181}
2182
699733f6 2183/* Create synthetic symbols, effectively restoring "dot-symbol" function
c4b0b099
AM
2184 entry syms. Also generate @plt symbols for the glink branch table.
2185 Returns count of synthetic symbols in RET or -1 on error. */
90e3cdf2
JJ
2186
2187static long
a7535cf3
AM
2188ppc64_elf_get_synthetic_symtab (bfd *abfd,
2189 long static_count, asymbol **static_syms,
2190 long dyn_count, asymbol **dyn_syms,
c9727e01 2191 asymbol **ret)
90e3cdf2
JJ
2192{
2193 asymbol *s;
0ccf57bd 2194 size_t i, j, count;
90e3cdf2 2195 char *names;
0ccf57bd 2196 size_t symcount, codesecsym, codesecsymend, secsymend, opdsymend;
ee67d69a 2197 asection *opd = NULL;
90e3cdf2 2198 bfd_boolean relocatable = (abfd->flags & (EXEC_P | DYNAMIC)) == 0;
a7535cf3 2199 asymbol **syms;
ee67d69a 2200 int abi = abiversion (abfd);
90e3cdf2
JJ
2201
2202 *ret = NULL;
2203
ee67d69a
AM
2204 if (abi < 2)
2205 {
2206 opd = bfd_get_section_by_name (abfd, ".opd");
2207 if (opd == NULL && abi == 1)
2208 return 0;
2209 }
90e3cdf2 2210
a5259595
AM
2211 syms = NULL;
2212 codesecsym = 0;
2213 codesecsymend = 0;
2214 secsymend = 0;
2215 opdsymend = 0;
2216 symcount = 0;
2217 if (opd != NULL)
c9727e01 2218 {
a5259595
AM
2219 symcount = static_count;
2220 if (!relocatable)
2221 symcount += dyn_count;
2222 if (symcount == 0)
2223 return 0;
c9727e01 2224
a5259595
AM
2225 syms = bfd_malloc ((symcount + 1) * sizeof (*syms));
2226 if (syms == NULL)
2227 return -1;
90e3cdf2 2228
a5259595
AM
2229 if (!relocatable && static_count != 0 && dyn_count != 0)
2230 {
2231 /* Use both symbol tables. */
2232 memcpy (syms, static_syms, static_count * sizeof (*syms));
2233 memcpy (syms + static_count, dyn_syms,
2234 (dyn_count + 1) * sizeof (*syms));
2235 }
2236 else if (!relocatable && static_count == 0)
2237 memcpy (syms, dyn_syms, (symcount + 1) * sizeof (*syms));
2238 else
2239 memcpy (syms, static_syms, (symcount + 1) * sizeof (*syms));
90e3cdf2 2240
0ccf57bd
AM
2241 /* Trim uninteresting symbols. Interesting symbols are section,
2242 function, and notype symbols. */
2243 for (i = 0, j = 0; i < symcount; ++i)
2244 if ((syms[i]->flags & (BSF_FILE | BSF_OBJECT | BSF_THREAD_LOCAL
2245 | BSF_RELC | BSF_SRELC)) == 0)
2246 syms[j++] = syms[i];
2247 symcount = j;
2248
a5259595
AM
2249 synthetic_relocatable = relocatable;
2250 synthetic_opd = opd;
2251 qsort (syms, symcount, sizeof (*syms), compare_symbols);
90e3cdf2 2252
a5259595
AM
2253 if (!relocatable && symcount > 1)
2254 {
bfa5bd2a
PA
2255 /* Trim duplicate syms, since we may have merged the normal
2256 and dynamic symbols. Actually, we only care about syms
2257 that have different values, so trim any with the same
2258 value. Don't consider ifunc and ifunc resolver symbols
2259 duplicates however, because GDB wants to know whether a
2260 text symbol is an ifunc resolver. */
a5259595 2261 for (i = 1, j = 1; i < symcount; ++i)
bfa5bd2a
PA
2262 {
2263 const asymbol *s0 = syms[i - 1];
2264 const asymbol *s1 = syms[i];
2265
2266 if ((s0->value + s0->section->vma
2267 != s1->value + s1->section->vma)
2268 || ((s0->flags & BSF_GNU_INDIRECT_FUNCTION)
2269 != (s1->flags & BSF_GNU_INDIRECT_FUNCTION)))
2270 syms[j++] = syms[i];
2271 }
a5259595
AM
2272 symcount = j;
2273 }
699733f6 2274
a5259595
AM
2275 i = 0;
2276 /* Note that here and in compare_symbols we can't compare opd and
2277 sym->section directly. With separate debug info files, the
2278 symbols will be extracted from the debug file while abfd passed
2279 to this function is the real binary. */
0ccf57bd 2280 if (strcmp (syms[i]->section->name, ".opd") == 0)
a5259595
AM
2281 ++i;
2282 codesecsym = i;
2283
2284 for (; i < symcount; ++i)
2285 if (((syms[i]->section->flags & (SEC_CODE | SEC_ALLOC
2286 | SEC_THREAD_LOCAL))
2287 != (SEC_CODE | SEC_ALLOC))
2288 || (syms[i]->flags & BSF_SECTION_SYM) == 0)
2289 break;
2290 codesecsymend = i;
2291
2292 for (; i < symcount; ++i)
2293 if ((syms[i]->flags & BSF_SECTION_SYM) == 0)
2294 break;
2295 secsymend = i;
2296
2297 for (; i < symcount; ++i)
2298 if (strcmp (syms[i]->section->name, ".opd") != 0)
2299 break;
2300 opdsymend = i;
2301
2302 for (; i < symcount; ++i)
2cdcc330
AM
2303 if (((syms[i]->section->flags
2304 & (SEC_CODE | SEC_ALLOC | SEC_THREAD_LOCAL)))
a5259595
AM
2305 != (SEC_CODE | SEC_ALLOC))
2306 break;
2307 symcount = i;
2308 }
c9727e01 2309 count = 0;
90e3cdf2 2310
699733f6 2311 if (relocatable)
90e3cdf2 2312 {
699733f6
AM
2313 bfd_boolean (*slurp_relocs) (bfd *, asection *, asymbol **, bfd_boolean);
2314 arelent *r;
2315 size_t size;
0ccf57bd 2316 size_t relcount;
90e3cdf2 2317
468392fb
AM
2318 if (opdsymend == secsymend)
2319 goto done;
2320
699733f6 2321 slurp_relocs = get_elf_backend_data (abfd)->s->slurp_reloc_table;
90e3cdf2 2322 relcount = (opd->flags & SEC_RELOC) ? opd->reloc_count : 0;
7356fed5 2323 if (relcount == 0)
c9727e01 2324 goto done;
90e3cdf2 2325
7356fed5
AM
2326 if (!(*slurp_relocs) (abfd, opd, static_syms, FALSE))
2327 {
2328 count = -1;
2329 goto done;
2330 }
2331
699733f6 2332 size = 0;
595da8c5 2333 for (i = secsymend, r = opd->relocation; i < opdsymend; ++i)
699733f6
AM
2334 {
2335 asymbol *sym;
90e3cdf2 2336
595da8c5 2337 while (r < opd->relocation + relcount
699733f6
AM
2338 && r->address < syms[i]->value + opd->vma)
2339 ++r;
90e3cdf2 2340
595da8c5 2341 if (r == opd->relocation + relcount)
699733f6 2342 break;
90e3cdf2 2343
699733f6
AM
2344 if (r->address != syms[i]->value + opd->vma)
2345 continue;
90e3cdf2 2346
699733f6
AM
2347 if (r->howto->type != R_PPC64_ADDR64)
2348 continue;
90e3cdf2 2349
699733f6
AM
2350 sym = *r->sym_ptr_ptr;
2351 if (!sym_exists_at (syms, opdsymend, symcount,
2352 sym->section->id, sym->value + r->addend))
2353 {
2354 ++count;
2355 size += sizeof (asymbol);
2356 size += strlen (syms[i]->name) + 2;
2357 }
2358 }
90e3cdf2 2359
c4b0b099
AM
2360 if (size == 0)
2361 goto done;
699733f6
AM
2362 s = *ret = bfd_malloc (size);
2363 if (s == NULL)
2364 {
7356fed5 2365 count = -1;
c9727e01 2366 goto done;
699733f6 2367 }
90e3cdf2 2368
699733f6 2369 names = (char *) (s + count);
90e3cdf2 2370
595da8c5 2371 for (i = secsymend, r = opd->relocation; i < opdsymend; ++i)
90e3cdf2 2372 {
699733f6 2373 asymbol *sym;
90e3cdf2 2374
595da8c5 2375 while (r < opd->relocation + relcount
699733f6
AM
2376 && r->address < syms[i]->value + opd->vma)
2377 ++r;
90e3cdf2 2378
595da8c5 2379 if (r == opd->relocation + relcount)
699733f6
AM
2380 break;
2381
2382 if (r->address != syms[i]->value + opd->vma)
2383 continue;
2384
2385 if (r->howto->type != R_PPC64_ADDR64)
2386 continue;
90e3cdf2 2387
699733f6
AM
2388 sym = *r->sym_ptr_ptr;
2389 if (!sym_exists_at (syms, opdsymend, symcount,
2390 sym->section->id, sym->value + r->addend))
2391 {
2392 size_t len;
2393
2394 *s = *syms[i];
6ba2a415 2395 s->flags |= BSF_SYNTHETIC;
699733f6
AM
2396 s->section = sym->section;
2397 s->value = sym->value + r->addend;
2398 s->name = names;
2399 *names++ = '.';
2400 len = strlen (syms[i]->name);
2401 memcpy (names, syms[i]->name, len + 1);
2402 names += len + 1;
6f610d07
UW
2403 /* Have udata.p point back to the original symbol this
2404 synthetic symbol was derived from. */
2405 s->udata.p = syms[i];
699733f6
AM
2406 s++;
2407 }
2408 }
2409 }
2410 else
90e3cdf2 2411 {
468392fb 2412 bfd_boolean (*slurp_relocs) (bfd *, asection *, asymbol **, bfd_boolean);
ee67d69a 2413 bfd_byte *contents = NULL;
699733f6 2414 size_t size;
0ccf57bd 2415 size_t plt_count = 0;
468392fb
AM
2416 bfd_vma glink_vma = 0, resolv_vma = 0;
2417 asection *dynamic, *glink = NULL, *relplt = NULL;
2418 arelent *p;
90e3cdf2 2419
ee67d69a 2420 if (opd != NULL && !bfd_malloc_and_get_section (abfd, opd, &contents))
699733f6 2421 {
c4b0b099
AM
2422 free_contents_and_exit_err:
2423 count = -1;
ee67d69a 2424 free_contents_and_exit:
699733f6 2425 if (contents)
ee67d69a 2426 free (contents);
c9727e01 2427 goto done;
699733f6 2428 }
90e3cdf2 2429
699733f6
AM
2430 size = 0;
2431 for (i = secsymend; i < opdsymend; ++i)
2432 {
2433 bfd_vma ent;
90e3cdf2 2434
5ef11c02
AM
2435 /* Ignore bogus symbols. */
2436 if (syms[i]->value > opd->size - 8)
2437 continue;
2438
699733f6
AM
2439 ent = bfd_get_64 (abfd, contents + syms[i]->value);
2440 if (!sym_exists_at (syms, opdsymend, symcount, -1, ent))
2441 {
2442 ++count;
2443 size += sizeof (asymbol);
2444 size += strlen (syms[i]->name) + 2;
2445 }
2446 }
90e3cdf2 2447
468392fb 2448 /* Get start of .glink stubs from DT_PPC64_GLINK. */
066ee829
AM
2449 if (dyn_count != 0
2450 && (dynamic = bfd_get_section_by_name (abfd, ".dynamic")) != NULL)
468392fb
AM
2451 {
2452 bfd_byte *dynbuf, *extdyn, *extdynend;
2453 size_t extdynsize;
2454 void (*swap_dyn_in) (bfd *, const void *, Elf_Internal_Dyn *);
2455
2456 if (!bfd_malloc_and_get_section (abfd, dynamic, &dynbuf))
c4b0b099 2457 goto free_contents_and_exit_err;
468392fb
AM
2458
2459 extdynsize = get_elf_backend_data (abfd)->s->sizeof_dyn;
2460 swap_dyn_in = get_elf_backend_data (abfd)->s->swap_dyn_in;
2461
2462 extdyn = dynbuf;
2463 extdynend = extdyn + dynamic->size;
2464 for (; extdyn < extdynend; extdyn += extdynsize)
2465 {
2466 Elf_Internal_Dyn dyn;
2467 (*swap_dyn_in) (abfd, extdyn, &dyn);
2468
2469 if (dyn.d_tag == DT_NULL)
2470 break;
2471
2472 if (dyn.d_tag == DT_PPC64_GLINK)
2473 {
9e390558
AM
2474 /* The first glink stub starts at DT_PPC64_GLINK plus 32.
2475 See comment in ppc64_elf_finish_dynamic_sections. */
2476 glink_vma = dyn.d_un.d_val + 8 * 4;
468392fb
AM
2477 /* The .glink section usually does not survive the final
2478 link; search for the section (usually .text) where the
2479 glink stubs now reside. */
2480 glink = bfd_sections_find_if (abfd, section_covers_vma,
2481 &glink_vma);
2482 break;
2483 }
2484 }
2485
2486 free (dynbuf);
2487 }
2488
2489 if (glink != NULL)
2490 {
2491 /* Determine __glink trampoline by reading the relative branch
2492 from the first glink stub. */
2493 bfd_byte buf[4];
b9e5796b
AM
2494 unsigned int off = 0;
2495
2496 while (bfd_get_section_contents (abfd, glink, buf,
2497 glink_vma + off - glink->vma, 4))
468392fb
AM
2498 {
2499 unsigned int insn = bfd_get_32 (abfd, buf);
2500 insn ^= B_DOT;
2501 if ((insn & ~0x3fffffc) == 0)
b9e5796b 2502 {
2cdcc330
AM
2503 resolv_vma
2504 = glink_vma + off + (insn ^ 0x2000000) - 0x2000000;
b9e5796b
AM
2505 break;
2506 }
2507 off += 4;
2508 if (off > 4)
2509 break;
468392fb
AM
2510 }
2511
2512 if (resolv_vma)
2513 size += sizeof (asymbol) + sizeof ("__glink_PLTresolve");
468392fb 2514
066ee829
AM
2515 relplt = bfd_get_section_by_name (abfd, ".rela.plt");
2516 if (relplt != NULL)
2517 {
2518 slurp_relocs = get_elf_backend_data (abfd)->s->slurp_reloc_table;
2cdcc330 2519 if (!(*slurp_relocs) (abfd, relplt, dyn_syms, TRUE))
c4b0b099 2520 goto free_contents_and_exit_err;
68ffbac6 2521
066ee829
AM
2522 plt_count = relplt->size / sizeof (Elf64_External_Rela);
2523 size += plt_count * sizeof (asymbol);
468392fb 2524
066ee829
AM
2525 p = relplt->relocation;
2526 for (i = 0; i < plt_count; i++, p++)
e054468f
AM
2527 {
2528 size += strlen ((*p->sym_ptr_ptr)->name) + sizeof ("@plt");
2529 if (p->addend != 0)
2530 size += sizeof ("+0x") - 1 + 16;
2531 }
066ee829 2532 }
468392fb
AM
2533 }
2534
c4b0b099
AM
2535 if (size == 0)
2536 goto free_contents_and_exit;
699733f6
AM
2537 s = *ret = bfd_malloc (size);
2538 if (s == NULL)
c4b0b099 2539 goto free_contents_and_exit_err;
90e3cdf2 2540
468392fb 2541 names = (char *) (s + count + plt_count + (resolv_vma != 0));
90e3cdf2 2542
699733f6 2543 for (i = secsymend; i < opdsymend; ++i)
90e3cdf2 2544 {
699733f6 2545 bfd_vma ent;
90e3cdf2 2546
5ef11c02
AM
2547 if (syms[i]->value > opd->size - 8)
2548 continue;
2549
699733f6
AM
2550 ent = bfd_get_64 (abfd, contents + syms[i]->value);
2551 if (!sym_exists_at (syms, opdsymend, symcount, -1, ent))
90e3cdf2 2552 {
0ccf57bd 2553 size_t lo, hi;
699733f6 2554 size_t len;
c9727e01 2555 asection *sec = abfd->sections;
90e3cdf2 2556
699733f6
AM
2557 *s = *syms[i];
2558 lo = codesecsym;
2559 hi = codesecsymend;
2560 while (lo < hi)
2561 {
0ccf57bd 2562 size_t mid = (lo + hi) >> 1;
699733f6
AM
2563 if (syms[mid]->section->vma < ent)
2564 lo = mid + 1;
2565 else if (syms[mid]->section->vma > ent)
2566 hi = mid;
2567 else
c9727e01
AM
2568 {
2569 sec = syms[mid]->section;
2570 break;
2571 }
699733f6
AM
2572 }
2573
c9727e01 2574 if (lo >= hi && lo > codesecsym)
699733f6 2575 sec = syms[lo - 1]->section;
699733f6
AM
2576
2577 for (; sec != NULL; sec = sec->next)
2578 {
2579 if (sec->vma > ent)
2580 break;
63524580
JK
2581 /* SEC_LOAD may not be set if SEC is from a separate debug
2582 info file. */
2583 if ((sec->flags & SEC_ALLOC) == 0)
699733f6
AM
2584 break;
2585 if ((sec->flags & SEC_CODE) != 0)
2586 s->section = sec;
2587 }
6ba2a415 2588 s->flags |= BSF_SYNTHETIC;
699733f6
AM
2589 s->value = ent - s->section->vma;
2590 s->name = names;
2591 *names++ = '.';
2592 len = strlen (syms[i]->name);
2593 memcpy (names, syms[i]->name, len + 1);
2594 names += len + 1;
6f610d07
UW
2595 /* Have udata.p point back to the original symbol this
2596 synthetic symbol was derived from. */
2597 s->udata.p = syms[i];
699733f6 2598 s++;
90e3cdf2 2599 }
90e3cdf2 2600 }
699733f6 2601 free (contents);
468392fb
AM
2602
2603 if (glink != NULL && relplt != NULL)
2604 {
2605 if (resolv_vma)
2606 {
2607 /* Add a symbol for the main glink trampoline. */
86a4952b 2608 memset (s, 0, sizeof *s);
468392fb 2609 s->the_bfd = abfd;
6ba2a415 2610 s->flags = BSF_GLOBAL | BSF_SYNTHETIC;
468392fb
AM
2611 s->section = glink;
2612 s->value = resolv_vma - glink->vma;
2613 s->name = names;
2cdcc330
AM
2614 memcpy (names, "__glink_PLTresolve",
2615 sizeof ("__glink_PLTresolve"));
468392fb
AM
2616 names += sizeof ("__glink_PLTresolve");
2617 s++;
2618 count++;
2619 }
2620
2621 /* FIXME: It would be very much nicer to put sym@plt on the
2622 stub rather than on the glink branch table entry. The
2623 objdump disassembler would then use a sensible symbol
2624 name on plt calls. The difficulty in doing so is
2625 a) finding the stubs, and,
2626 b) matching stubs against plt entries, and,
2627 c) there can be multiple stubs for a given plt entry.
2628
2629 Solving (a) could be done by code scanning, but older
2630 ppc64 binaries used different stubs to current code.
2631 (b) is the tricky one since you need to known the toc
2632 pointer for at least one function that uses a pic stub to
2633 be able to calculate the plt address referenced.
2634 (c) means gdb would need to set multiple breakpoints (or
2635 find the glink branch itself) when setting breakpoints
2636 for pending shared library loads. */
2637 p = relplt->relocation;
2638 for (i = 0; i < plt_count; i++, p++)
2639 {
2640 size_t len;
2641
2642 *s = **p->sym_ptr_ptr;
2643 /* Undefined syms won't have BSF_LOCAL or BSF_GLOBAL set. Since
2644 we are defining a symbol, ensure one of them is set. */
2645 if ((s->flags & BSF_LOCAL) == 0)
2646 s->flags |= BSF_GLOBAL;
6ba2a415 2647 s->flags |= BSF_SYNTHETIC;
468392fb
AM
2648 s->section = glink;
2649 s->value = glink_vma - glink->vma;
2650 s->name = names;
2651 s->udata.p = NULL;
2652 len = strlen ((*p->sym_ptr_ptr)->name);
2653 memcpy (names, (*p->sym_ptr_ptr)->name, len);
2654 names += len;
e054468f
AM
2655 if (p->addend != 0)
2656 {
2657 memcpy (names, "+0x", sizeof ("+0x") - 1);
2658 names += sizeof ("+0x") - 1;
2659 bfd_sprintf_vma (abfd, names, p->addend);
2660 names += strlen (names);
2661 }
468392fb
AM
2662 memcpy (names, "@plt", sizeof ("@plt"));
2663 names += sizeof ("@plt");
2664 s++;
b9e5796b
AM
2665 if (abi < 2)
2666 {
2667 glink_vma += 8;
2668 if (i >= 0x8000)
2669 glink_vma += 4;
2670 }
2671 else
468392fb
AM
2672 glink_vma += 4;
2673 }
2674 count += plt_count;
2675 }
90e3cdf2
JJ
2676 }
2677
c9727e01 2678 done:
a7535cf3 2679 free (syms);
90e3cdf2
JJ
2680 return count;
2681}
5bd4f169 2682\f
65f38f15
AM
2683/* The following functions are specific to the ELF linker, while
2684 functions above are used generally. Those named ppc64_elf_* are
2685 called by the main ELF linker code. They appear in this file more
2686 or less in the order in which they are called. eg.
2687 ppc64_elf_check_relocs is called early in the link process,
2688 ppc64_elf_finish_dynamic_sections is one of the last functions
e86ce104
AM
2689 called.
2690
2691 PowerPC64-ELF uses a similar scheme to PowerPC64-XCOFF in that
2692 functions have both a function code symbol and a function descriptor
2693 symbol. A call to foo in a relocatable object file looks like:
2694
2695 . .text
2696 . x:
2697 . bl .foo
2698 . nop
2699
2700 The function definition in another object file might be:
2701
2702 . .section .opd
2703 . foo: .quad .foo
2704 . .quad .TOC.@tocbase
2705 . .quad 0
2706 .
2707 . .text
2708 . .foo: blr
2709
2710 When the linker resolves the call during a static link, the branch
2711 unsurprisingly just goes to .foo and the .opd information is unused.
2712 If the function definition is in a shared library, things are a little
2713 different: The call goes via a plt call stub, the opd information gets
2714 copied to the plt, and the linker patches the nop.
2715
2716 . x:
2717 . bl .foo_stub
2718 . ld 2,40(1)
2719 .
2720 .
2721 . .foo_stub:
71a39c98
AM
2722 . std 2,40(1) # in practice, the call stub
2723 . addis 11,2,Lfoo@toc@ha # is slightly optimized, but
2724 . addi 11,11,Lfoo@toc@l # this is the general idea
2725 . ld 12,0(11)
2726 . ld 2,8(11)
2727 . mtctr 12
2728 . ld 11,16(11)
e86ce104
AM
2729 . bctr
2730 .
2731 . .section .plt
2732 . Lfoo: reloc (R_PPC64_JMP_SLOT, foo)
2733
2734 The "reloc ()" notation is supposed to indicate that the linker emits
2735 an R_PPC64_JMP_SLOT reloc against foo. The dynamic linker does the opd
2736 copying.
2737
2738 What are the difficulties here? Well, firstly, the relocations
2739 examined by the linker in check_relocs are against the function code
2740 sym .foo, while the dynamic relocation in the plt is emitted against
2741 the function descriptor symbol, foo. Somewhere along the line, we need
2742 to carefully copy dynamic link information from one symbol to the other.
2743 Secondly, the generic part of the elf linker will make .foo a dynamic
2744 symbol as is normal for most other backends. We need foo dynamic
2745 instead, at least for an application final link. However, when
2746 creating a shared library containing foo, we need to have both symbols
2747 dynamic so that references to .foo are satisfied during the early
2748 stages of linking. Otherwise the linker might decide to pull in a
8387904d
AM
2749 definition from some other object, eg. a static library.
2750
2751 Update: As of August 2004, we support a new convention. Function
2752 calls may use the function descriptor symbol, ie. "bl foo". This
2753 behaves exactly as "bl .foo". */
65f38f15 2754
7c8bbca5
AM
2755/* Of those relocs that might be copied as dynamic relocs, this
2756 function selects those that must be copied when linking a shared
2757 library or PIE, even when the symbol is local. */
65f38f15 2758
1d483afe
AM
2759static int
2760must_be_dyn_reloc (struct bfd_link_info *info,
2761 enum elf_ppc64_reloc_type r_type)
2762{
2763 switch (r_type)
2764 {
2765 default:
7c8bbca5
AM
2766 /* Only relative relocs can be resolved when the object load
2767 address isn't fixed. DTPREL64 is excluded because the
2768 dynamic linker needs to differentiate global dynamic from
2769 local dynamic __tls_index pairs when PPC64_OPT_TLS is set. */
1d483afe
AM
2770 return 1;
2771
2772 case R_PPC64_REL32:
2773 case R_PPC64_REL64:
2774 case R_PPC64_REL30:
1bdd8fac
AM
2775 case R_PPC64_TOC16:
2776 case R_PPC64_TOC16_DS:
2777 case R_PPC64_TOC16_LO:
2778 case R_PPC64_TOC16_HI:
2779 case R_PPC64_TOC16_HA:
2780 case R_PPC64_TOC16_LO_DS:
1d483afe
AM
2781 return 0;
2782
2783 case R_PPC64_TPREL16:
2784 case R_PPC64_TPREL16_LO:
2785 case R_PPC64_TPREL16_HI:
2786 case R_PPC64_TPREL16_HA:
2787 case R_PPC64_TPREL16_DS:
2788 case R_PPC64_TPREL16_LO_DS:
f9c6b907
AM
2789 case R_PPC64_TPREL16_HIGH:
2790 case R_PPC64_TPREL16_HIGHA:
1d483afe
AM
2791 case R_PPC64_TPREL16_HIGHER:
2792 case R_PPC64_TPREL16_HIGHERA:
2793 case R_PPC64_TPREL16_HIGHEST:
2794 case R_PPC64_TPREL16_HIGHESTA:
2795 case R_PPC64_TPREL64:
c213164a 2796 case R_PPC64_TPREL34:
7c8bbca5
AM
2797 /* These relocations are relative but in a shared library the
2798 linker doesn't know the thread pointer base. */
2799 return bfd_link_dll (info);
1d483afe
AM
2800 }
2801}
65f38f15 2802
f4656909 2803/* If ELIMINATE_COPY_RELOCS is non-zero, the linker will try to avoid
e1c6cf61 2804 copying dynamic variables from a shared lib into an app's .dynbss
f4656909 2805 section, and instead use a dynamic relocation to point into the
e1c6cf61
AM
2806 shared lib. With code that gcc generates it is vital that this be
2807 enabled; In the PowerPC64 ELFv1 ABI the address of a function is
2808 actually the address of a function descriptor which resides in the
2809 .opd section. gcc uses the descriptor directly rather than going
2810 via the GOT as some other ABIs do, which means that initialized
2811 function pointers reference the descriptor. Thus, a function
2812 pointer initialized to the address of a function in a shared
2813 library will either require a .dynbss copy and a copy reloc, or a
2814 dynamic reloc. Using a .dynbss copy redefines the function
2815 descriptor symbol to point to the copy. This presents a problem as
2816 a PLT entry for that function is also initialized from the function
2817 descriptor symbol and the copy may not be initialized first. */
a23b6845 2818#define ELIMINATE_COPY_RELOCS 1
f4656909 2819
721956f4 2820/* Section name for stubs is the associated section name plus this
29942be8
NC
2821 string. */
2822#define STUB_SUFFIX ".stub"
721956f4
AM
2823
2824/* Linker stubs.
2825 ppc_stub_long_branch:
2826 Used when a 14 bit branch (or even a 24 bit branch) can't reach its
2827 destination, but a 24 bit branch in a stub section will reach.
2828 . b dest
2829
2830 ppc_stub_plt_branch:
2831 Similar to the above, but a 24 bit branch in the stub section won't
2832 reach its destination.
6df4c9c2
AM
2833 . addis %r12,%r2,xxx@toc@ha
2834 . ld %r12,xxx@toc@l(%r12)
71a39c98 2835 . mtctr %r12
721956f4
AM
2836 . bctr
2837
2838 ppc_stub_plt_call:
2c66dc6c
AM
2839 Used to call a function in a shared library. If it so happens that
2840 the plt entry referenced crosses a 64k boundary, then an extra
71a39c98 2841 "addi %r11,%r11,xxx@toc@l" will be inserted before the "mtctr".
05d0e962 2842 ppc_stub_plt_call_r2save starts with "std %r2,40(%r1)".
71a39c98
AM
2843 . addis %r11,%r2,xxx@toc@ha
2844 . ld %r12,xxx+0@toc@l(%r11)
2845 . mtctr %r12
2846 . ld %r2,xxx+8@toc@l(%r11)
2847 . ld %r11,xxx+16@toc@l(%r11)
721956f4 2848 . bctr
ad8e1ba5
AM
2849
2850 ppc_stub_long_branch and ppc_stub_plt_branch may also have additional
2851 code to adjust the value and save r2 to support multiple toc sections.
2852 A ppc_stub_long_branch with an r2 offset looks like:
2853 . std %r2,40(%r1)
2854 . addis %r2,%r2,off@ha
2855 . addi %r2,%r2,off@l
2856 . b dest
2857
2858 A ppc_stub_plt_branch with an r2 offset looks like:
2859 . std %r2,40(%r1)
6df4c9c2
AM
2860 . addis %r12,%r2,xxx@toc@ha
2861 . ld %r12,xxx@toc@l(%r12)
ad8e1ba5
AM
2862 . addis %r2,%r2,off@ha
2863 . addi %r2,%r2,off@l
71a39c98 2864 . mtctr %r12
ad8e1ba5 2865 . bctr
ac2df442 2866
05d0e962
AM
2867 All of the above stubs are shown as their ELFv1 variants. ELFv2
2868 variants exist too, simpler for plt calls since a new toc pointer
2869 and static chain are not loaded by the stub. In addition, ELFv2
2870 has some more complex stubs to handle calls marked with NOTOC
2871 relocs from functions where r2 is not a valid toc pointer. These
2872 come in two flavours, the ones shown below, and _both variants that
2873 start with "std %r2,24(%r1)" to save r2 in the unlikely event that
2874 one call is from a function where r2 is used as the toc pointer but
2875 needs a toc adjusting stub for small-model multi-toc, and another
2876 call is from a function where r2 is not valid.
2877 ppc_stub_long_branch_notoc:
2878 . mflr %r12
2879 . bcl 20,31,1f
2880 . 1:
2881 . mflr %r11
2882 . mtlr %r12
2cdcc330
AM
2883 . addis %r12,%r11,dest-1b@ha
2884 . addi %r12,%r12,dest-1b@l
05d0e962
AM
2885 . b dest
2886
2887 ppc_stub_plt_branch_notoc:
2888 . mflr %r12
2889 . bcl 20,31,1f
2890 . 1:
2891 . mflr %r11
2892 . mtlr %r12
2893 . lis %r12,xxx-1b@highest
f891966f 2894 . ori %r12,%r12,xxx-1b@higher
05d0e962 2895 . sldi %r12,%r12,32
f891966f 2896 . oris %r12,%r12,xxx-1b@high
05d0e962
AM
2897 . ori %r12,%r12,xxx-1b@l
2898 . add %r12,%r11,%r12
2899 . mtctr %r12
2900 . bctr
2901
2902 ppc_stub_plt_call_notoc:
2903 . mflr %r12
2904 . bcl 20,31,1f
2905 . 1:
2906 . mflr %r11
2907 . mtlr %r12
2908 . lis %r12,xxx-1b@highest
f891966f 2909 . ori %r12,%r12,xxx-1b@higher
05d0e962 2910 . sldi %r12,%r12,32
f891966f 2911 . oris %r12,%r12,xxx-1b@high
05d0e962
AM
2912 . ori %r12,%r12,xxx-1b@l
2913 . ldx %r12,%r11,%r12
2914 . mtctr %r12
2915 . bctr
2916
04bdff6a
AM
2917 There are also ELFv1 powerxx variants of these stubs.
2918 ppc_stub_long_branch_notoc:
d4b87b1e 2919 . pla %r12,dest@pcrel
04bdff6a
AM
2920 . b dest
2921 ppc_stub_plt_branch_notoc:
2922 . lis %r11,(dest-1f)@highesta34
2923 . ori %r11,%r11,(dest-1f)@highera34
2924 . sldi %r11,%r11,34
d4b87b1e 2925 . 1: pla %r12,dest@pcrel
04bdff6a
AM
2926 . add %r12,%r11,%r12
2927 . mtctr %r12
2928 . bctr
2929 ppc_stub_plt_call_notoc:
2930 . lis %r11,(xxx-1f)@highesta34
2931 . ori %r11,%r11,(xxx-1f)@highera34
2932 . sldi %r11,%r11,34
d4b87b1e 2933 . 1: pla %r12,xxx@pcrel
04bdff6a
AM
2934 . ldx %r12,%r11,%r12
2935 . mtctr %r12
2936 . bctr
2937
05d0e962
AM
2938 In cases where the high instructions would add zero, they are
2939 omitted and following instructions modified in some cases.
04bdff6a
AM
2940 For example, a powerxx ppc_stub_plt_call_notoc might simplify down
2941 to
2942 . pld %r12,xxx@pcrel
2943 . mtctr %r12
2944 . bctr
05d0e962
AM
2945
2946 For a given stub group (a set of sections all using the same toc
2947 pointer value) there will be just one stub type used for any
2948 particular function symbol. For example, if printf is called from
2949 code with the tocsave optimization (ie. r2 saved in function
2950 prologue) and therefore calls use a ppc_stub_plt_call linkage stub,
2951 and from other code without the tocsave optimization requiring a
2952 ppc_stub_plt_call_r2save linkage stub, a single stub of the latter
2953 type will be created. Calls with the tocsave optimization will
2954 enter this stub after the instruction saving r2. A similar
2955 situation exists when calls are marked with R_PPC64_REL24_NOTOC
2956 relocations. These require a ppc_stub_plt_call_notoc linkage stub
2957 to call an external function like printf. If other calls to printf
2958 require a ppc_stub_plt_call linkage stub then a single
2959 ppc_stub_plt_call_notoc linkage stub will be used for both types of
2960 call. If other calls to printf require a ppc_stub_plt_call_r2save
2961 linkage stub then a single ppc_stub_plt_call_both linkage stub will
2962 be created and calls not requiring r2 to be saved will enter the
2963 stub after the r2 save instruction. There is an analogous
2964 hierarchy of long branch and plt branch stubs for local call
2965 linkage. */
721956f4 2966
2cdcc330
AM
2967enum ppc_stub_type
2968{
721956f4
AM
2969 ppc_stub_none,
2970 ppc_stub_long_branch,
ad8e1ba5 2971 ppc_stub_long_branch_r2off,
05d0e962
AM
2972 ppc_stub_long_branch_notoc,
2973 ppc_stub_long_branch_both, /* r2off and notoc variants both needed. */
721956f4 2974 ppc_stub_plt_branch,
ad8e1ba5 2975 ppc_stub_plt_branch_r2off,
05d0e962
AM
2976 ppc_stub_plt_branch_notoc,
2977 ppc_stub_plt_branch_both,
794e51c0 2978 ppc_stub_plt_call,
7341d5e2 2979 ppc_stub_plt_call_r2save,
05d0e962
AM
2980 ppc_stub_plt_call_notoc,
2981 ppc_stub_plt_call_both,
a4b6fadd
AM
2982 ppc_stub_global_entry,
2983 ppc_stub_save_res
721956f4
AM
2984};
2985
6f20ed8a
AM
2986/* Information on stub grouping. */
2987struct map_stub
2988{
2989 /* The stub section. */
2990 asection *stub_sec;
2991 /* This is the section to which stubs in the group will be attached. */
2992 asection *link_sec;
a4b6fadd
AM
2993 /* Next group. */
2994 struct map_stub *next;
2995 /* Whether to emit a copy of register save/restore functions in this
2996 group. */
2997 int needs_save_res;
df136d64
AM
2998 /* Current offset within stubs after the insn restoring lr in a
2999 _notoc or _both stub using bcl for pc-relative addressing, or
3000 after the insn restoring lr in a __tls_get_addr_opt plt stub. */
3001 unsigned int lr_restore;
3002 /* Accumulated size of EH info emitted to describe return address
3003 if stubs modify lr. Does not include 17 byte FDE header. */
3004 unsigned int eh_size;
3005 /* Offset in glink_eh_frame to the start of EH info for this group. */
3006 unsigned int eh_base;
6f20ed8a
AM
3007};
3008
2cdcc330
AM
3009struct ppc_stub_hash_entry
3010{
721956f4
AM
3011 /* Base hash table entry structure. */
3012 struct bfd_hash_entry root;
3013
ad8e1ba5
AM
3014 enum ppc_stub_type stub_type;
3015
6f20ed8a
AM
3016 /* Group information. */
3017 struct map_stub *group;
721956f4
AM
3018
3019 /* Offset within stub_sec of the beginning of this stub. */
3020 bfd_vma stub_offset;
3021
3022 /* Given the symbol's value and its section we can determine its final
3023 value when building the stubs (so the stub knows where to jump. */
3024 bfd_vma target_value;
3025 asection *target_section;
3026
721956f4
AM
3027 /* The symbol table entry, if any, that this was derived from. */
3028 struct ppc_link_hash_entry *h;
e054468f 3029 struct plt_entry *plt_ent;
721956f4 3030
2d7ad24e
AM
3031 /* Symbol type. */
3032 unsigned char symtype;
3033
6911b7dc
AM
3034 /* Symbol st_other. */
3035 unsigned char other;
721956f4
AM
3036};
3037
2cdcc330
AM
3038struct ppc_branch_hash_entry
3039{
721956f4
AM
3040 /* Base hash table entry structure. */
3041 struct bfd_hash_entry root;
3042
c456f082 3043 /* Offset within branch lookup table. */
721956f4
AM
3044 unsigned int offset;
3045
3046 /* Generation marker. */
3047 unsigned int iter;
3048};
65f38f15 3049
19e08130
AM
3050/* Used to track dynamic relocations for local symbols. */
3051struct ppc_dyn_relocs
3052{
3053 struct ppc_dyn_relocs *next;
3054
3055 /* The input section of the reloc. */
3056 asection *sec;
3057
3058 /* Total number of relocs copied for the input section. */
3059 unsigned int count : 31;
3060
3061 /* Whether this entry is for STT_GNU_IFUNC symbols. */
3062 unsigned int ifunc : 1;
3063};
3064
65f38f15
AM
3065struct ppc_link_hash_entry
3066{
3067 struct elf_link_hash_entry elf;
3068
2cdcc330
AM
3069 union
3070 {
b3fac117
AM
3071 /* A pointer to the most recently used stub hash entry against this
3072 symbol. */
3073 struct ppc_stub_hash_entry *stub_cache;
3074
3075 /* A pointer to the next symbol starting with a '.' */
3076 struct ppc_link_hash_entry *next_dot_sym;
3077 } u;
721956f4 3078
65f38f15 3079 /* Track dynamic relocs copied for this symbol. */
6061a67d 3080 struct elf_dyn_relocs *dyn_relocs;
e86ce104 3081
721956f4 3082 /* Link between function code and descriptor symbols. */
34814b9f 3083 struct ppc_link_hash_entry *oh;
721956f4 3084
e86ce104
AM
3085 /* Flag function code and descriptor symbols. */
3086 unsigned int is_func:1;
3087 unsigned int is_func_descriptor:1;
908b32fc 3088 unsigned int fake:1;
411e1bfb 3089
c5614fa4
AM
3090 /* Whether global opd/toc sym has been adjusted or not.
3091 After ppc64_elf_edit_opd/ppc64_elf_edit_toc has run, this flag
3092 should be set for all globals defined in any opd/toc section. */
754021d0
AM
3093 unsigned int adjust_done:1;
3094
a4b6fadd
AM
3095 /* Set if this is an out-of-line register save/restore function,
3096 with non-standard calling convention. */
3097 unsigned int save_res:1;
3098
8b5f1ed8
AM
3099 /* Set if a duplicate symbol with non-zero localentry is detected,
3100 even when the duplicate symbol does not provide a definition. */
3101 unsigned int non_zero_localentry:1;
3102
411e1bfb 3103 /* Contexts in which symbol is used in the GOT (or TOC).
37da22e5
AM
3104 Bits are or'd into the mask as the corresponding relocs are
3105 encountered during check_relocs, with TLS_TLS being set when any
3106 of the other TLS bits are set. tls_optimize clears bits when
3107 optimizing to indicate the corresponding GOT entry type is not
3108 needed. If set, TLS_TLS is never cleared. tls_optimize may also
b00a0a86 3109 set TLS_GDIE when a GD reloc turns into an IE one.
37da22e5
AM
3110 These flags are also kept for local symbols. */
3111#define TLS_TLS 1 /* Any TLS reloc. */
3112#define TLS_GD 2 /* GD reloc. */
3113#define TLS_LD 4 /* LD reloc. */
3114#define TLS_TPREL 8 /* TPREL reloc, => IE. */
3115#define TLS_DTPREL 16 /* DTPREL reloc, => LD. */
3116#define TLS_MARK 32 /* __tls_get_addr call marked. */
b00a0a86 3117#define TLS_GDIE 64 /* GOT TPREL reloc resulting from GD->IE. */
46e9995a 3118#define TLS_EXPLICIT 256 /* TOC section TLS reloc, not stored. */
f961d9dd 3119 unsigned char tls_mask;
37da22e5
AM
3120
3121 /* The above field is also used to mark function symbols. In which
3122 case TLS_TLS will be 0. */
3123#define PLT_IFUNC 2 /* STT_GNU_IFUNC. */
2d7ad24e 3124#define PLT_KEEP 4 /* inline plt call requires plt entry. */
37da22e5 3125#define NON_GOT 256 /* local symbol plt, not stored. */
65f38f15
AM
3126};
3127
ed7007c1
AM
3128static inline struct ppc_link_hash_entry *
3129ppc_elf_hash_entry (struct elf_link_hash_entry *ent)
3130{
3131 return (struct ppc_link_hash_entry *) ent;
3132}
3133
65f38f15
AM
3134/* ppc64 ELF linker hash table. */
3135
3136struct ppc_link_hash_table
3137{
3138 struct elf_link_hash_table elf;
3139
721956f4
AM
3140 /* The stub hash table. */
3141 struct bfd_hash_table stub_hash_table;
3142
3143 /* Another hash table for plt_branch stubs. */
3144 struct bfd_hash_table branch_hash_table;
3145
3b421ab3
AM
3146 /* Hash table for function prologue tocsave. */
3147 htab_t tocsave_htab;
3148
e7d1c40c
AM
3149 /* Various options and other info passed from the linker. */
3150 struct ppc64_elf_params *params;
721956f4 3151
6f20ed8a
AM
3152 /* The size of sec_info below. */
3153 unsigned int sec_info_arr_size;
3154
3155 /* Per-section array of extra section info. Done this way rather
3156 than as part of ppc64_elf_section_data so we have the info for
3157 non-ppc64 sections. */
3158 struct
3159 {
3160 /* Along with elf_gp, specifies the TOC pointer used by this section. */
ad8e1ba5 3161 bfd_vma toc_off;
6f20ed8a
AM
3162
3163 union
3164 {
3165 /* The section group that this section belongs to. */
3166 struct map_stub *group;
3167 /* A temp section list pointer. */
3168 asection *list;
3169 } u;
3170 } *sec_info;
721956f4 3171
a4b6fadd
AM
3172 /* Linked list of groups. */
3173 struct map_stub *group;
3174
ad8e1ba5
AM
3175 /* Temp used when calculating TOC pointers. */
3176 bfd_vma toc_curr;
bf102f86
AM
3177 bfd *toc_bfd;
3178 asection *toc_first_sec;
ad8e1ba5 3179
b3fac117
AM
3180 /* Used when adding symbols. */
3181 struct ppc_link_hash_entry *dot_syms;
3182
33e44f2e 3183 /* Shortcuts to get to dynamic linker sections. */
4ce794b7 3184 asection *glink;
9e390558 3185 asection *global_entry;
82bd7b59 3186 asection *sfpr;
2d7ad24e
AM
3187 asection *pltlocal;
3188 asection *relpltlocal;
4ce794b7
AM
3189 asection *brlt;
3190 asection *relbrlt;
58d180e8 3191 asection *glink_eh_frame;
ec338859 3192
8387904d
AM
3193 /* Shortcut to .__tls_get_addr and __tls_get_addr. */
3194 struct ppc_link_hash_entry *tls_get_addr;
3195 struct ppc_link_hash_entry *tls_get_addr_fd;
9e7028aa
AM
3196 struct ppc_link_hash_entry *tga_desc;
3197 struct ppc_link_hash_entry *tga_desc_fd;
a804e476 3198 struct map_stub *tga_group;
411e1bfb 3199
927be08e
AM
3200 /* The size of reliplt used by got entry relocs. */
3201 bfd_size_type got_reli_size;
3202
9b5ecbd0 3203 /* Statistics. */
7341d5e2 3204 unsigned long stub_count[ppc_stub_global_entry];
9b5ecbd0 3205
ee75fd95
AM
3206 /* Number of stubs against global syms. */
3207 unsigned long stub_globals;
3208
ee67d69a
AM
3209 /* Set if we're linking code with function descriptors. */
3210 unsigned int opd_abi:1;
3211
4c52953f 3212 /* Support for multiple toc sections. */
33c0ec9d 3213 unsigned int do_multi_toc:1;
4c52953f 3214 unsigned int multi_toc_needed:1;
927be08e 3215 unsigned int second_toc_pass:1;
67f0cbdb 3216 unsigned int do_toc_opt:1;
4c52953f 3217
9a23f96e
AM
3218 /* Set if tls optimization is enabled. */
3219 unsigned int do_tls_opt:1;
3220
3e04d765
AM
3221 /* Set if inline plt calls should be converted to direct calls. */
3222 unsigned int can_convert_all_inline_plt:1;
3223
5d1634d7 3224 /* Set on error. */
99877b66 3225 unsigned int stub_error:1;
721956f4 3226
8c5b4e52
AM
3227 /* Whether func_desc_adjust needs to be run over symbols. */
3228 unsigned int need_func_desc_adj:1;
721956f4 3229
82e66161
AM
3230 /* Whether there exist local gnu indirect function resolvers,
3231 referenced by dynamic relocations. */
3232 unsigned int local_ifunc_resolver:1;
3233 unsigned int maybe_local_ifunc_resolver:1;
3234
f378ab09
AM
3235 /* Whether plt calls for ELFv2 localentry:0 funcs have been optimized. */
3236 unsigned int has_plt_localentry0:1;
3237
5663e321
AM
3238 /* Whether calls are made via the PLT from NOTOC functions. */
3239 unsigned int notoc_plt:1;
3240
04bdff6a
AM
3241 /* Whether to use powerxx instructions in linkage stubs. */
3242 unsigned int powerxx_stubs:1;
3243
721956f4
AM
3244 /* Incremented every time we size stubs. */
3245 unsigned int stub_iteration;
5d1634d7 3246
87d72d41
AM
3247 /* Small local sym cache. */
3248 struct sym_cache sym_cache;
65f38f15
AM
3249};
3250
4c52953f
AM
3251/* Rename some of the generic section flags to better document how they
3252 are used here. */
b0dddeec
AM
3253
3254/* Nonzero if this section has TLS related relocations. */
3255#define has_tls_reloc sec_flg0
3256
9737e8af
AM
3257/* Nonzero if this section has a call to __tls_get_addr lacking marker
3258 relocations. */
3259#define nomark_tls_get_addr sec_flg1
b0dddeec
AM
3260
3261/* Nonzero if this section has any toc or got relocs. */
3262#define has_toc_reloc sec_flg2
3263
3264/* Nonzero if this section has a call to another section that uses
3265 the toc or got. */
d77c8a4b 3266#define makes_toc_func_call sec_flg3
b0dddeec
AM
3267
3268/* Recursion protection when determining above flag. */
d77c8a4b 3269#define call_check_in_progress sec_flg4
70cc837d 3270#define call_check_done sec_flg5
4c52953f 3271
65f38f15
AM
3272/* Get the ppc64 ELF linker hash table from a link_info structure. */
3273
3274#define ppc_hash_table(p) \
4dfe6ac6
NC
3275 (elf_hash_table_id ((struct elf_link_hash_table *) ((p)->hash)) \
3276 == PPC64_ELF_DATA ? ((struct ppc_link_hash_table *) ((p)->hash)) : NULL)
65f38f15 3277
721956f4
AM
3278#define ppc_stub_hash_lookup(table, string, create, copy) \
3279 ((struct ppc_stub_hash_entry *) \
3280 bfd_hash_lookup ((table), (string), (create), (copy)))
3281
3282#define ppc_branch_hash_lookup(table, string, create, copy) \
3283 ((struct ppc_branch_hash_entry *) \
3284 bfd_hash_lookup ((table), (string), (create), (copy)))
3285
3286/* Create an entry in the stub hash table. */
3287
3288static struct bfd_hash_entry *
4ce794b7
AM
3289stub_hash_newfunc (struct bfd_hash_entry *entry,
3290 struct bfd_hash_table *table,
3291 const char *string)
721956f4
AM
3292{
3293 /* Allocate the structure if it has not already been allocated by a
3294 subclass. */
3295 if (entry == NULL)
3296 {
3297 entry = bfd_hash_allocate (table, sizeof (struct ppc_stub_hash_entry));
3298 if (entry == NULL)
3299 return entry;
3300 }
3301
3302 /* Call the allocation method of the superclass. */
3303 entry = bfd_hash_newfunc (entry, table, string);
3304 if (entry != NULL)
3305 {
3306 struct ppc_stub_hash_entry *eh;
3307
3308 /* Initialize the local fields. */
3309 eh = (struct ppc_stub_hash_entry *) entry;
ad8e1ba5 3310 eh->stub_type = ppc_stub_none;
6f20ed8a 3311 eh->group = NULL;
721956f4
AM
3312 eh->stub_offset = 0;
3313 eh->target_value = 0;
3314 eh->target_section = NULL;
721956f4 3315 eh->h = NULL;
6911b7dc 3316 eh->plt_ent = NULL;
6911b7dc 3317 eh->other = 0;
721956f4
AM
3318 }
3319
3320 return entry;
3321}
3322
3323/* Create an entry in the branch hash table. */
3324
3325static struct bfd_hash_entry *
4ce794b7
AM
3326branch_hash_newfunc (struct bfd_hash_entry *entry,
3327 struct bfd_hash_table *table,
3328 const char *string)
721956f4
AM
3329{
3330 /* Allocate the structure if it has not already been allocated by a
3331 subclass. */
3332 if (entry == NULL)
3333 {
3334 entry = bfd_hash_allocate (table, sizeof (struct ppc_branch_hash_entry));
3335 if (entry == NULL)
3336 return entry;
3337 }
3338
3339 /* Call the allocation method of the superclass. */
3340 entry = bfd_hash_newfunc (entry, table, string);
3341 if (entry != NULL)
3342 {
3343 struct ppc_branch_hash_entry *eh;
3344
3345 /* Initialize the local fields. */
3346 eh = (struct ppc_branch_hash_entry *) entry;
3347 eh->offset = 0;
3348 eh->iter = 0;
3349 }
3350
3351 return entry;
3352}
3353
65f38f15
AM
3354/* Create an entry in a ppc64 ELF linker hash table. */
3355
3356static struct bfd_hash_entry *
4ce794b7
AM
3357link_hash_newfunc (struct bfd_hash_entry *entry,
3358 struct bfd_hash_table *table,
3359 const char *string)
65f38f15
AM
3360{
3361 /* Allocate the structure if it has not already been allocated by a
3362 subclass. */
3363 if (entry == NULL)
3364 {
3365 entry = bfd_hash_allocate (table, sizeof (struct ppc_link_hash_entry));
3366 if (entry == NULL)
3367 return entry;
3368 }
3369
3370 /* Call the allocation method of the superclass. */
3371 entry = _bfd_elf_link_hash_newfunc (entry, table, string);
3372 if (entry != NULL)
3373 {
3374 struct ppc_link_hash_entry *eh = (struct ppc_link_hash_entry *) entry;
3375
b3fac117 3376 memset (&eh->u.stub_cache, 0,
908b32fc 3377 (sizeof (struct ppc_link_hash_entry)
b3fac117
AM
3378 - offsetof (struct ppc_link_hash_entry, u.stub_cache)));
3379
3380 /* When making function calls, old ABI code references function entry
3381 points (dot symbols), while new ABI code references the function
3382 descriptor symbol. We need to make any combination of reference and
3383 definition work together, without breaking archive linking.
3384
3385 For a defined function "foo" and an undefined call to "bar":
3386 An old object defines "foo" and ".foo", references ".bar" (possibly
3387 "bar" too).
3388 A new object defines "foo" and references "bar".
3389
3390 A new object thus has no problem with its undefined symbols being
3391 satisfied by definitions in an old object. On the other hand, the
3392 old object won't have ".bar" satisfied by a new object.
3393
3394 Keep a list of newly added dot-symbols. */
3395
3396 if (string[0] == '.')
3397 {
3398 struct ppc_link_hash_table *htab;
3399
3400 htab = (struct ppc_link_hash_table *) table;
3401 eh->u.next_dot_sym = htab->dot_syms;
3402 htab->dot_syms = eh;
3403 }
65f38f15
AM
3404 }
3405
3406 return entry;
3407}
3408
2cdcc330
AM
3409struct tocsave_entry
3410{
3b421ab3
AM
3411 asection *sec;
3412 bfd_vma offset;
3413};
3414
3415static hashval_t
3416tocsave_htab_hash (const void *p)
3417{
3418 const struct tocsave_entry *e = (const struct tocsave_entry *) p;
4aef7643 3419 return ((bfd_vma) (intptr_t) e->sec ^ e->offset) >> 3;
3b421ab3
AM
3420}
3421
3422static int
3423tocsave_htab_eq (const void *p1, const void *p2)
3424{
3425 const struct tocsave_entry *e1 = (const struct tocsave_entry *) p1;
3426 const struct tocsave_entry *e2 = (const struct tocsave_entry *) p2;
3427 return e1->sec == e2->sec && e1->offset == e2->offset;
3428}
3429
68faa637
AM
3430/* Destroy a ppc64 ELF linker hash table. */
3431
3432static void
d495ab0d 3433ppc64_elf_link_hash_table_free (bfd *obfd)
68faa637 3434{
d495ab0d 3435 struct ppc_link_hash_table *htab;
68faa637 3436
d495ab0d 3437 htab = (struct ppc_link_hash_table *) obfd->link.hash;
68faa637
AM
3438 if (htab->tocsave_htab)
3439 htab_delete (htab->tocsave_htab);
d495ab0d
AM
3440 bfd_hash_table_free (&htab->branch_hash_table);
3441 bfd_hash_table_free (&htab->stub_hash_table);
3442 _bfd_elf_link_hash_table_free (obfd);
68faa637
AM
3443}
3444
65f38f15
AM
3445/* Create a ppc64 ELF linker hash table. */
3446
3447static struct bfd_link_hash_table *
4ce794b7 3448ppc64_elf_link_hash_table_create (bfd *abfd)
65f38f15
AM
3449{
3450 struct ppc_link_hash_table *htab;
986f0783 3451 size_t amt = sizeof (struct ppc_link_hash_table);
65f38f15 3452
4ce794b7 3453 htab = bfd_zmalloc (amt);
65f38f15
AM
3454 if (htab == NULL)
3455 return NULL;
3456
66eb6687 3457 if (!_bfd_elf_link_hash_table_init (&htab->elf, abfd, link_hash_newfunc,
4dfe6ac6
NC
3458 sizeof (struct ppc_link_hash_entry),
3459 PPC64_ELF_DATA))
65f38f15 3460 {
e2d34d7d 3461 free (htab);
65f38f15
AM
3462 return NULL;
3463 }
3464
721956f4 3465 /* Init the stub hash table too. */
66eb6687
AM
3466 if (!bfd_hash_table_init (&htab->stub_hash_table, stub_hash_newfunc,
3467 sizeof (struct ppc_stub_hash_entry)))
2915c55b 3468 {
d495ab0d 3469 _bfd_elf_link_hash_table_free (abfd);
2915c55b
JK
3470 return NULL;
3471 }
721956f4
AM
3472
3473 /* And the branch hash table. */
66eb6687
AM
3474 if (!bfd_hash_table_init (&htab->branch_hash_table, branch_hash_newfunc,
3475 sizeof (struct ppc_branch_hash_entry)))
2915c55b
JK
3476 {
3477 bfd_hash_table_free (&htab->stub_hash_table);
d495ab0d 3478 _bfd_elf_link_hash_table_free (abfd);
2915c55b
JK
3479 return NULL;
3480 }
721956f4 3481
3b421ab3
AM
3482 htab->tocsave_htab = htab_try_create (1024,
3483 tocsave_htab_hash,
3484 tocsave_htab_eq,
3485 NULL);
3486 if (htab->tocsave_htab == NULL)
2915c55b 3487 {
d495ab0d 3488 ppc64_elf_link_hash_table_free (abfd);
2915c55b
JK
3489 return NULL;
3490 }
d495ab0d 3491 htab->elf.root.hash_table_free = ppc64_elf_link_hash_table_free;
3b421ab3 3492
3254fd24
AM
3493 /* Initializing two fields of the union is just cosmetic. We really
3494 only care about glist, but when compiled on a 32-bit host the
3495 bfd_vma fields are larger. Setting the bfd_vma to zero makes
3496 debugger inspection of these fields look nicer. */
a6aa5195
AM
3497 htab->elf.init_got_refcount.refcount = 0;
3498 htab->elf.init_got_refcount.glist = NULL;
3499 htab->elf.init_plt_refcount.refcount = 0;
3500 htab->elf.init_plt_refcount.glist = NULL;
3501 htab->elf.init_got_offset.offset = 0;
3502 htab->elf.init_got_offset.glist = NULL;
3503 htab->elf.init_plt_offset.offset = 0;
3504 htab->elf.init_plt_offset.glist = NULL;
3254fd24 3505
65f38f15
AM
3506 return &htab->elf.root;
3507}
3508
bfeb4a28
AM
3509/* Create sections for linker generated code. */
3510
3511static bfd_boolean
3512create_linkage_sections (bfd *dynobj, struct bfd_link_info *info)
3513{
3514 struct ppc_link_hash_table *htab;
3515 flagword flags;
3516
3517 htab = ppc_hash_table (info);
3518
bfeb4a28
AM
3519 flags = (SEC_ALLOC | SEC_LOAD | SEC_CODE | SEC_READONLY
3520 | SEC_HAS_CONTENTS | SEC_IN_MEMORY | SEC_LINKER_CREATED);
b32547cd
AM
3521 if (htab->params->save_restore_funcs)
3522 {
3523 /* Create .sfpr for code to save and restore fp regs. */
3524 htab->sfpr = bfd_make_section_anyway_with_flags (dynobj, ".sfpr",
3525 flags);
3526 if (htab->sfpr == NULL
fd361982 3527 || !bfd_set_section_alignment (htab->sfpr, 2))
b32547cd
AM
3528 return FALSE;
3529 }
3530
3531 if (bfd_link_relocatable (info))
3532 return TRUE;
bfeb4a28
AM
3533
3534 /* Create .glink for lazy dynamic linking support. */
3535 htab->glink = bfd_make_section_anyway_with_flags (dynobj, ".glink",
3536 flags);
3537 if (htab->glink == NULL
fd361982 3538 || !bfd_set_section_alignment (htab->glink, 3))
bfeb4a28
AM
3539 return FALSE;
3540
9e390558
AM
3541 /* The part of .glink used by global entry stubs, separate so that
3542 it can be aligned appropriately without affecting htab->glink. */
3543 htab->global_entry = bfd_make_section_anyway_with_flags (dynobj, ".glink",
3544 flags);
3545 if (htab->global_entry == NULL
fd361982 3546 || !bfd_set_section_alignment (htab->global_entry, 2))
9e390558
AM
3547 return FALSE;
3548
bfeb4a28
AM
3549 if (!info->no_ld_generated_unwind_info)
3550 {
3551 flags = (SEC_ALLOC | SEC_LOAD | SEC_READONLY | SEC_HAS_CONTENTS
3552 | SEC_IN_MEMORY | SEC_LINKER_CREATED);
3553 htab->glink_eh_frame = bfd_make_section_anyway_with_flags (dynobj,
3554 ".eh_frame",
3555 flags);
3556 if (htab->glink_eh_frame == NULL
fd361982 3557 || !bfd_set_section_alignment (htab->glink_eh_frame, 2))
bfeb4a28
AM
3558 return FALSE;
3559 }
3560
3561 flags = SEC_ALLOC | SEC_LINKER_CREATED;
33e44f2e
AM
3562 htab->elf.iplt = bfd_make_section_anyway_with_flags (dynobj, ".iplt", flags);
3563 if (htab->elf.iplt == NULL
fd361982 3564 || !bfd_set_section_alignment (htab->elf.iplt, 3))
bfeb4a28
AM
3565 return FALSE;
3566
3567 flags = (SEC_ALLOC | SEC_LOAD | SEC_READONLY
3568 | SEC_HAS_CONTENTS | SEC_IN_MEMORY | SEC_LINKER_CREATED);
33e44f2e
AM
3569 htab->elf.irelplt
3570 = bfd_make_section_anyway_with_flags (dynobj, ".rela.iplt", flags);
3571 if (htab->elf.irelplt == NULL
fd361982 3572 || !bfd_set_section_alignment (htab->elf.irelplt, 3))
bfeb4a28
AM
3573 return FALSE;
3574
3575 /* Create branch lookup table for plt_branch stubs. */
3576 flags = (SEC_ALLOC | SEC_LOAD
3577 | SEC_HAS_CONTENTS | SEC_IN_MEMORY | SEC_LINKER_CREATED);
3578 htab->brlt = bfd_make_section_anyway_with_flags (dynobj, ".branch_lt",
3579 flags);
3580 if (htab->brlt == NULL
fd361982 3581 || !bfd_set_section_alignment (htab->brlt, 3))
bfeb4a28
AM
3582 return FALSE;
3583
2d7ad24e
AM
3584 /* Local plt entries, put in .branch_lt but a separate section for
3585 convenience. */
3586 htab->pltlocal = bfd_make_section_anyway_with_flags (dynobj, ".branch_lt",
3587 flags);
3588 if (htab->pltlocal == NULL
fd361982 3589 || !bfd_set_section_alignment (htab->pltlocal, 3))
2d7ad24e
AM
3590 return FALSE;
3591
0e1862bb 3592 if (!bfd_link_pic (info))
bfeb4a28
AM
3593 return TRUE;
3594
3595 flags = (SEC_ALLOC | SEC_LOAD | SEC_READONLY
3596 | SEC_HAS_CONTENTS | SEC_IN_MEMORY | SEC_LINKER_CREATED);
2d7ad24e
AM
3597 htab->relbrlt
3598 = bfd_make_section_anyway_with_flags (dynobj, ".rela.branch_lt", flags);
bfeb4a28 3599 if (htab->relbrlt == NULL
fd361982 3600 || !bfd_set_section_alignment (htab->relbrlt, 3))
bfeb4a28
AM
3601 return FALSE;
3602
2d7ad24e
AM
3603 htab->relpltlocal
3604 = bfd_make_section_anyway_with_flags (dynobj, ".rela.branch_lt", flags);
3605 if (htab->relpltlocal == NULL
fd361982 3606 || !bfd_set_section_alignment (htab->relpltlocal, 3))
2d7ad24e
AM
3607 return FALSE;
3608
bfeb4a28
AM
3609 return TRUE;
3610}
3611
e717da7e
AM
3612/* Satisfy the ELF linker by filling in some fields in our fake bfd. */
3613
bfeb4a28 3614bfd_boolean
e7d1c40c
AM
3615ppc64_elf_init_stub_bfd (struct bfd_link_info *info,
3616 struct ppc64_elf_params *params)
e717da7e
AM
3617{
3618 struct ppc_link_hash_table *htab;
3619
e7d1c40c 3620 elf_elfheader (params->stub_bfd)->e_ident[EI_CLASS] = ELFCLASS64;
e717da7e
AM
3621
3622/* Always hook our dynamic sections into the first bfd, which is the
3623 linker created stub bfd. This ensures that the GOT header is at
3624 the start of the output TOC section. */
3625 htab = ppc_hash_table (info);
e7d1c40c
AM
3626 htab->elf.dynobj = params->stub_bfd;
3627 htab->params = params;
bfeb4a28 3628
bfeb4a28 3629 return create_linkage_sections (htab->elf.dynobj, info);
e717da7e
AM
3630}
3631
721956f4
AM
3632/* Build a name for an entry in the stub hash table. */
3633
3634static char *
4ce794b7
AM
3635ppc_stub_name (const asection *input_section,
3636 const asection *sym_sec,
3637 const struct ppc_link_hash_entry *h,
3638 const Elf_Internal_Rela *rel)
721956f4
AM
3639{
3640 char *stub_name;
bcaa2f82 3641 ssize_t len;
721956f4
AM
3642
3643 /* rel->r_addend is actually 64 bit, but who uses more than +/- 2^31
3644 offsets from a sym as a branch target? In fact, we could
3645 probably assume the addend is always zero. */
3646 BFD_ASSERT (((int) rel->r_addend & 0xffffffff) == rel->r_addend);
3647
3648 if (h)
3649 {
3650 len = 8 + 1 + strlen (h->elf.root.root.string) + 1 + 8 + 1;
3651 stub_name = bfd_malloc (len);
46de2a7c
AM
3652 if (stub_name == NULL)
3653 return stub_name;
3654
bcaa2f82
AM
3655 len = sprintf (stub_name, "%08x.%s+%x",
3656 input_section->id & 0xffffffff,
3657 h->elf.root.root.string,
3658 (int) rel->r_addend & 0xffffffff);
721956f4
AM
3659 }
3660 else
3661 {
ad8e1ba5 3662 len = 8 + 1 + 8 + 1 + 8 + 1 + 8 + 1;
721956f4 3663 stub_name = bfd_malloc (len);
46de2a7c
AM
3664 if (stub_name == NULL)
3665 return stub_name;
3666
bcaa2f82
AM
3667 len = sprintf (stub_name, "%08x.%x:%x+%x",
3668 input_section->id & 0xffffffff,
3669 sym_sec->id & 0xffffffff,
3670 (int) ELF64_R_SYM (rel->r_info) & 0xffffffff,
3671 (int) rel->r_addend & 0xffffffff);
721956f4 3672 }
bcaa2f82 3673 if (len > 2 && stub_name[len - 2] == '+' && stub_name[len - 1] == '0')
ee75fd95 3674 stub_name[len - 2] = 0;
721956f4
AM
3675 return stub_name;
3676}
3677
3678/* Look up an entry in the stub hash. Stub entries are cached because
3679 creating the stub name takes a bit of time. */
3680
3681static struct ppc_stub_hash_entry *
4ce794b7
AM
3682ppc_get_stub_entry (const asection *input_section,
3683 const asection *sym_sec,
039b3fef 3684 struct ppc_link_hash_entry *h,
4ce794b7
AM
3685 const Elf_Internal_Rela *rel,
3686 struct ppc_link_hash_table *htab)
721956f4
AM
3687{
3688 struct ppc_stub_hash_entry *stub_entry;
6f20ed8a 3689 struct map_stub *group;
721956f4
AM
3690
3691 /* If this input section is part of a group of sections sharing one
3692 stub section, then use the id of the first section in the group.
3693 Stub names need to include a section id, as there may well be
3694 more than one stub used to reach say, printf, and we need to
3695 distinguish between them. */
6f20ed8a 3696 group = htab->sec_info[input_section->id].u.group;
89d77b8a
AM
3697 if (group == NULL)
3698 return NULL;
721956f4 3699
b3fac117
AM
3700 if (h != NULL && h->u.stub_cache != NULL
3701 && h->u.stub_cache->h == h
6f20ed8a 3702 && h->u.stub_cache->group == group)
721956f4 3703 {
b3fac117 3704 stub_entry = h->u.stub_cache;
721956f4
AM
3705 }
3706 else
3707 {
3708 char *stub_name;
3709
6f20ed8a 3710 stub_name = ppc_stub_name (group->link_sec, sym_sec, h, rel);
721956f4
AM
3711 if (stub_name == NULL)
3712 return NULL;
3713
3714 stub_entry = ppc_stub_hash_lookup (&htab->stub_hash_table,
b34976b6 3715 stub_name, FALSE, FALSE);
721956f4 3716 if (h != NULL)
b3fac117 3717 h->u.stub_cache = stub_entry;
721956f4
AM
3718
3719 free (stub_name);
3720 }
3721
3722 return stub_entry;
3723}
3724
3725/* Add a new stub entry to the stub hash. Not all fields of the new
3726 stub entry are initialised. */
3727
3728static struct ppc_stub_hash_entry *
4ce794b7
AM
3729ppc_add_stub (const char *stub_name,
3730 asection *section,
25f53a85 3731 struct bfd_link_info *info)
721956f4 3732{
25f53a85 3733 struct ppc_link_hash_table *htab = ppc_hash_table (info);
6f20ed8a 3734 struct map_stub *group;
721956f4
AM
3735 asection *link_sec;
3736 asection *stub_sec;
3737 struct ppc_stub_hash_entry *stub_entry;
3738
6f20ed8a
AM
3739 group = htab->sec_info[section->id].u.group;
3740 link_sec = group->link_sec;
3741 stub_sec = group->stub_sec;
721956f4
AM
3742 if (stub_sec == NULL)
3743 {
6f20ed8a
AM
3744 size_t namelen;
3745 bfd_size_type len;
3746 char *s_name;
721956f4 3747
6f20ed8a
AM
3748 namelen = strlen (link_sec->name);
3749 len = namelen + sizeof (STUB_SUFFIX);
3750 s_name = bfd_alloc (htab->params->stub_bfd, len);
3751 if (s_name == NULL)
3752 return NULL;
721956f4 3753
6f20ed8a
AM
3754 memcpy (s_name, link_sec->name, namelen);
3755 memcpy (s_name + namelen, STUB_SUFFIX, sizeof (STUB_SUFFIX));
3756 stub_sec = (*htab->params->add_stub_section) (s_name, link_sec);
3757 if (stub_sec == NULL)
3758 return NULL;
3759 group->stub_sec = stub_sec;
721956f4
AM
3760 }
3761
3762 /* Enter this entry into the linker stub hash table. */
3763 stub_entry = ppc_stub_hash_lookup (&htab->stub_hash_table, stub_name,
b34976b6 3764 TRUE, FALSE);
721956f4
AM
3765 if (stub_entry == NULL)
3766 {
695344c0 3767 /* xgettext:c-format */
cf97bcb0
AM
3768 _bfd_error_handler (_("%pB: cannot create stub entry %s"),
3769 section->owner, stub_name);
721956f4
AM
3770 return NULL;
3771 }
3772
6f20ed8a 3773 stub_entry->group = group;
721956f4 3774 stub_entry->stub_offset = 0;
721956f4
AM
3775 return stub_entry;
3776}
3777
e717da7e
AM
3778/* Create .got and .rela.got sections in ABFD, and .got in dynobj if
3779 not already done. */
65f38f15 3780
b34976b6 3781static bfd_boolean
e717da7e 3782create_got_section (bfd *abfd, struct bfd_link_info *info)
65f38f15 3783{
e717da7e
AM
3784 asection *got, *relgot;
3785 flagword flags;
3786 struct ppc_link_hash_table *htab = ppc_hash_table (info);
65f38f15 3787
0c8d6e5c 3788 if (!is_ppc64_elf (abfd))
0ffa91dd 3789 return FALSE;
4dfe6ac6
NC
3790 if (htab == NULL)
3791 return FALSE;
0ffa91dd 3792
33e44f2e
AM
3793 if (!htab->elf.sgot
3794 && !_bfd_elf_create_got_section (htab->elf.dynobj, info))
3795 return FALSE;
e717da7e
AM
3796
3797 flags = (SEC_ALLOC | SEC_LOAD | SEC_HAS_CONTENTS | SEC_IN_MEMORY
3798 | SEC_LINKER_CREATED);
3799
c456f082 3800 got = bfd_make_section_anyway_with_flags (abfd, ".got", flags);
e717da7e 3801 if (!got
fd361982 3802 || !bfd_set_section_alignment (got, 3))
e717da7e 3803 return FALSE;
65f38f15 3804
c456f082
AM
3805 relgot = bfd_make_section_anyway_with_flags (abfd, ".rela.got",
3806 flags | SEC_READONLY);
e717da7e 3807 if (!relgot
fd361982 3808 || !bfd_set_section_alignment (relgot, 3))
b34976b6 3809 return FALSE;
e717da7e
AM
3810
3811 ppc64_elf_tdata (abfd)->got = got;
3812 ppc64_elf_tdata (abfd)->relgot = relgot;
b34976b6 3813 return TRUE;
65f38f15 3814}
5bd4f169 3815
b31867b6
AM
3816/* Follow indirect and warning symbol links. */
3817
3818static inline struct bfd_link_hash_entry *
3819follow_link (struct bfd_link_hash_entry *h)
3820{
3821 while (h->type == bfd_link_hash_indirect
3822 || h->type == bfd_link_hash_warning)
3823 h = h->u.i.link;
3824 return h;
3825}
3826
3827static inline struct elf_link_hash_entry *
3828elf_follow_link (struct elf_link_hash_entry *h)
3829{
3830 return (struct elf_link_hash_entry *) follow_link (&h->root);
3831}
3832
3833static inline struct ppc_link_hash_entry *
3834ppc_follow_link (struct ppc_link_hash_entry *h)
3835{
ed7007c1 3836 return ppc_elf_hash_entry (elf_follow_link (&h->elf));
b31867b6
AM
3837}
3838
40d16e0b
AM
3839/* Merge PLT info on FROM with that on TO. */
3840
3841static void
3842move_plt_plist (struct ppc_link_hash_entry *from,
3843 struct ppc_link_hash_entry *to)
3844{
3845 if (from->elf.plt.plist != NULL)
3846 {
3847 if (to->elf.plt.plist != NULL)
3848 {
3849 struct plt_entry **entp;
3850 struct plt_entry *ent;
3851
3852 for (entp = &from->elf.plt.plist; (ent = *entp) != NULL; )
3853 {
3854 struct plt_entry *dent;
3855
3856 for (dent = to->elf.plt.plist; dent != NULL; dent = dent->next)
3857 if (dent->addend == ent->addend)
3858 {
3859 dent->plt.refcount += ent->plt.refcount;
3860 *entp = ent->next;
3861 break;
3862 }
3863 if (dent == NULL)
3864 entp = &ent->next;
3865 }
3866 *entp = to->elf.plt.plist;
3867 }
3868
3869 to->elf.plt.plist = from->elf.plt.plist;
3870 from->elf.plt.plist = NULL;
3871 }
3872}
3873
65f38f15
AM
3874/* Copy the extra info we tack onto an elf_link_hash_entry. */
3875
3876static void
fcfa13d2
AM
3877ppc64_elf_copy_indirect_symbol (struct bfd_link_info *info,
3878 struct elf_link_hash_entry *dir,
3879 struct elf_link_hash_entry *ind)
65f38f15
AM
3880{
3881 struct ppc_link_hash_entry *edir, *eind;
3882
ed7007c1
AM
3883 edir = ppc_elf_hash_entry (dir);
3884 eind = ppc_elf_hash_entry (ind);
65f38f15 3885
c79d6685
AM
3886 edir->is_func |= eind->is_func;
3887 edir->is_func_descriptor |= eind->is_func_descriptor;
3888 edir->tls_mask |= eind->tls_mask;
3889 if (eind->oh != NULL)
3890 edir->oh = ppc_follow_link (eind->oh);
3891
474436e6 3892 if (edir->elf.versioned != versioned_hidden)
e81830c5
AM
3893 edir->elf.ref_dynamic |= eind->elf.ref_dynamic;
3894 edir->elf.ref_regular |= eind->elf.ref_regular;
3895 edir->elf.ref_regular_nonweak |= eind->elf.ref_regular_nonweak;
4a7e5234 3896 edir->elf.non_got_ref |= eind->elf.non_got_ref;
e81830c5
AM
3897 edir->elf.needs_plt |= eind->elf.needs_plt;
3898 edir->elf.pointer_equality_needed |= eind->elf.pointer_equality_needed;
c79d6685 3899
d311bc8b
AM
3900 /* If we were called to copy over info for a weak sym, don't copy
3901 dyn_relocs, plt/got info, or dynindx. We used to copy dyn_relocs
3902 in order to simplify readonly_dynrelocs and save a field in the
3903 symbol hash entry, but that means dyn_relocs can't be used in any
3904 tests about a specific symbol, or affect other symbol flags which
ab2477e1 3905 are then tested. */
d311bc8b 3906 if (eind->elf.root.type != bfd_link_hash_indirect)
ab2477e1 3907 return;
d311bc8b 3908
411e1bfb 3909 /* Copy over any dynamic relocs we may have on the indirect sym. */
bbd7ec4a 3910 if (eind->dyn_relocs != NULL)
65f38f15 3911 {
bbd7ec4a
AM
3912 if (edir->dyn_relocs != NULL)
3913 {
6061a67d
AM
3914 struct elf_dyn_relocs **pp;
3915 struct elf_dyn_relocs *p;
bbd7ec4a 3916
fcfa13d2 3917 /* Add reloc counts against the indirect sym to the direct sym
bbd7ec4a
AM
3918 list. Merge any entries against the same section. */
3919 for (pp = &eind->dyn_relocs; (p = *pp) != NULL; )
3920 {
6061a67d 3921 struct elf_dyn_relocs *q;
bbd7ec4a
AM
3922
3923 for (q = edir->dyn_relocs; q != NULL; q = q->next)
3924 if (q->sec == p->sec)
3925 {
3926 q->pc_count += p->pc_count;
3927 q->count += p->count;
3928 *pp = p->next;
3929 break;
3930 }
3931 if (q == NULL)
3932 pp = &p->next;
3933 }
3934 *pp = edir->dyn_relocs;
3935 }
3936
65f38f15
AM
3937 edir->dyn_relocs = eind->dyn_relocs;
3938 eind->dyn_relocs = NULL;
3939 }
65f38f15 3940
81848ca0
AM
3941 /* Copy over got entries that we may have already seen to the
3942 symbol which just became indirect. */
411e1bfb
AM
3943 if (eind->elf.got.glist != NULL)
3944 {
3945 if (edir->elf.got.glist != NULL)
3946 {
3947 struct got_entry **entp;
3948 struct got_entry *ent;
3949
3950 for (entp = &eind->elf.got.glist; (ent = *entp) != NULL; )
3951 {
3952 struct got_entry *dent;
3953
3954 for (dent = edir->elf.got.glist; dent != NULL; dent = dent->next)
3955 if (dent->addend == ent->addend
e717da7e 3956 && dent->owner == ent->owner
411e1bfb
AM
3957 && dent->tls_type == ent->tls_type)
3958 {
3959 dent->got.refcount += ent->got.refcount;
3960 *entp = ent->next;
3961 break;
3962 }
3963 if (dent == NULL)
3964 entp = &ent->next;
3965 }
3966 *entp = edir->elf.got.glist;
3967 }
3968
3969 edir->elf.got.glist = eind->elf.got.glist;
3970 eind->elf.got.glist = NULL;
3971 }
3972
3973 /* And plt entries. */
40d16e0b 3974 move_plt_plist (eind, edir);
411e1bfb 3975
fcfa13d2 3976 if (eind->elf.dynindx != -1)
411e1bfb 3977 {
fcfa13d2
AM
3978 if (edir->elf.dynindx != -1)
3979 _bfd_elf_strtab_delref (elf_hash_table (info)->dynstr,
3980 edir->elf.dynstr_index);
411e1bfb
AM
3981 edir->elf.dynindx = eind->elf.dynindx;
3982 edir->elf.dynstr_index = eind->elf.dynstr_index;
3983 eind->elf.dynindx = -1;
3984 eind->elf.dynstr_index = 0;
3985 }
411e1bfb
AM
3986}
3987
8387904d
AM
3988/* Find the function descriptor hash entry from the given function code
3989 hash entry FH. Link the entries via their OH fields. */
3990
3991static struct ppc_link_hash_entry *
b31867b6 3992lookup_fdh (struct ppc_link_hash_entry *fh, struct ppc_link_hash_table *htab)
8387904d
AM
3993{
3994 struct ppc_link_hash_entry *fdh = fh->oh;
3995
3996 if (fdh == NULL)
3997 {
3998 const char *fd_name = fh->elf.root.root.string + 1;
3999
ed7007c1
AM
4000 fdh = ppc_elf_hash_entry (elf_link_hash_lookup (&htab->elf, fd_name,
4001 FALSE, FALSE, FALSE));
b31867b6
AM
4002 if (fdh == NULL)
4003 return fdh;
4004
4005 fdh->is_func_descriptor = 1;
4006 fdh->oh = fh;
4007 fh->is_func = 1;
4008 fh->oh = fdh;
8387904d
AM
4009 }
4010
8c5b4e52
AM
4011 fdh = ppc_follow_link (fdh);
4012 fdh->is_func_descriptor = 1;
4013 fdh->oh = fh;
4014 return fdh;
8387904d
AM
4015}
4016
8c5b4e52 4017/* Make a fake function descriptor sym for the undefined code sym FH. */
bb700d78
AM
4018
4019static struct ppc_link_hash_entry *
4020make_fdh (struct bfd_link_info *info,
908b32fc 4021 struct ppc_link_hash_entry *fh)
bb700d78 4022{
8c5b4e52
AM
4023 bfd *abfd = fh->elf.root.u.undef.abfd;
4024 struct bfd_link_hash_entry *bh = NULL;
bb700d78 4025 struct ppc_link_hash_entry *fdh;
8c5b4e52
AM
4026 flagword flags = (fh->elf.root.type == bfd_link_hash_undefweak
4027 ? BSF_WEAK
4028 : BSF_GLOBAL);
4029
4030 if (!_bfd_generic_link_add_one_symbol (info, abfd,
4031 fh->elf.root.root.string + 1,
4032 flags, bfd_und_section_ptr, 0,
4033 NULL, FALSE, FALSE, &bh))
bb700d78
AM
4034 return NULL;
4035
4036 fdh = (struct ppc_link_hash_entry *) bh;
4037 fdh->elf.non_elf = 0;
908b32fc
AM
4038 fdh->fake = 1;
4039 fdh->is_func_descriptor = 1;
4040 fdh->oh = fh;
4041 fh->is_func = 1;
4042 fh->oh = fdh;
bb700d78
AM
4043 return fdh;
4044}
4045
8387904d
AM
4046/* Fix function descriptor symbols defined in .opd sections to be
4047 function type. */
555cd476
AM
4048
4049static bfd_boolean
c16153ae 4050ppc64_elf_add_symbol_hook (bfd *ibfd,
e054468f 4051 struct bfd_link_info *info,
555cd476 4052 Elf_Internal_Sym *isym,
6911b7dc 4053 const char **name,
555cd476
AM
4054 flagword *flags ATTRIBUTE_UNUSED,
4055 asection **sec,
b53dfeb2 4056 bfd_vma *value)
555cd476 4057{
b53dfeb2 4058 if (*sec != NULL
f1885d1e 4059 && strcmp ((*sec)->name, ".opd") == 0)
b53dfeb2
AM
4060 {
4061 asection *code_sec;
4062
4063 if (!(ELF_ST_TYPE (isym->st_info) == STT_GNU_IFUNC
4064 || ELF_ST_TYPE (isym->st_info) == STT_FUNC))
4065 isym->st_info = ELF_ST_INFO (ELF_ST_BIND (isym->st_info), STT_FUNC);
4066
4067 /* If the symbol is a function defined in .opd, and the function
4068 code is in a discarded group, let it appear to be undefined. */
0e1862bb 4069 if (!bfd_link_relocatable (info)
b53dfeb2
AM
4070 && (*sec)->reloc_count != 0
4071 && opd_entry_value (*sec, *value, &code_sec, NULL,
4072 FALSE) != (bfd_vma) -1
4073 && discarded_section (code_sec))
4074 {
4075 *sec = bfd_und_section_ptr;
4076 isym->st_shndx = SHN_UNDEF;
4077 }
4078 }
dbd1e97e
AM
4079 else if (*sec != NULL
4080 && strcmp ((*sec)->name, ".toc") == 0
4081 && ELF_ST_TYPE (isym->st_info) == STT_OBJECT)
4082 {
4083 struct ppc_link_hash_table *htab = ppc_hash_table (info);
4084 if (htab != NULL)
4085 htab->params->object_in_toc = 1;
4086 }
433817dd 4087
6911b7dc
AM
4088 if ((STO_PPC64_LOCAL_MASK & isym->st_other) != 0)
4089 {
4090 if (abiversion (ibfd) == 0)
4091 set_abiversion (ibfd, 2);
4092 else if (abiversion (ibfd) == 1)
4093 {
cf97bcb0
AM
4094 _bfd_error_handler (_("symbol '%s' has invalid st_other"
4095 " for ABI version 1"), *name);
6911b7dc
AM
4096 bfd_set_error (bfd_error_bad_value);
4097 return FALSE;
4098 }
4099 }
4100
555cd476
AM
4101 return TRUE;
4102}
4103
6911b7dc
AM
4104/* Merge non-visibility st_other attributes: local entry point. */
4105
4106static void
4107ppc64_elf_merge_symbol_attribute (struct elf_link_hash_entry *h,
4108 const Elf_Internal_Sym *isym,
4109 bfd_boolean definition,
4110 bfd_boolean dynamic)
4111{
f378ab09 4112 if (definition && (!dynamic || !h->def_regular))
6911b7dc
AM
4113 h->other = ((isym->st_other & ~ELF_ST_VISIBILITY (-1))
4114 | ELF_ST_VISIBILITY (h->other));
4115}
4116
8c5b4e52
AM
4117/* Hook called on merging a symbol. We use this to clear "fake" since
4118 we now have a real symbol. */
4119
4120static bfd_boolean
4121ppc64_elf_merge_symbol (struct elf_link_hash_entry *h,
8b5f1ed8 4122 const Elf_Internal_Sym *isym,
8c5b4e52
AM
4123 asection **psec ATTRIBUTE_UNUSED,
4124 bfd_boolean newdef ATTRIBUTE_UNUSED,
4125 bfd_boolean olddef ATTRIBUTE_UNUSED,
4126 bfd *oldbfd ATTRIBUTE_UNUSED,
4127 const asection *oldsec ATTRIBUTE_UNUSED)
4128{
ed7007c1 4129 ppc_elf_hash_entry (h)->fake = 0;
8b5f1ed8 4130 if ((STO_PPC64_LOCAL_MASK & isym->st_other) != 0)
ed7007c1 4131 ppc_elf_hash_entry (h)->non_zero_localentry = 1;
8c5b4e52
AM
4132 return TRUE;
4133}
4134
8387904d 4135/* This function makes an old ABI object reference to ".bar" cause the
908b32fc
AM
4136 inclusion of a new ABI object archive that defines "bar".
4137 NAME is a symbol defined in an archive. Return a symbol in the hash
4138 table that might be satisfied by the archive symbols. */
8387904d
AM
4139
4140static struct elf_link_hash_entry *
4141ppc64_elf_archive_symbol_lookup (bfd *abfd,
4142 struct bfd_link_info *info,
4143 const char *name)
4144{
4145 struct elf_link_hash_entry *h;
4146 char *dot_name;
4147 size_t len;
4148
4149 h = _bfd_elf_archive_symbol_lookup (abfd, info, name);
908b32fc
AM
4150 if (h != NULL
4151 /* Don't return this sym if it is a fake function descriptor
4152 created by add_symbol_adjust. */
ed7007c1 4153 && !ppc_elf_hash_entry (h)->fake)
8387904d
AM
4154 return h;
4155
4156 if (name[0] == '.')
4157 return h;
4158
4159 len = strlen (name);
4160 dot_name = bfd_alloc (abfd, len + 2);
4161 if (dot_name == NULL)
e99955cd 4162 return (struct elf_link_hash_entry *) -1;
8387904d
AM
4163 dot_name[0] = '.';
4164 memcpy (dot_name + 1, name, len + 1);
4165 h = _bfd_elf_archive_symbol_lookup (abfd, info, dot_name);
4166 bfd_release (abfd, dot_name);
a804e476
AM
4167 if (h != NULL)
4168 return h;
4169
4170 if (strcmp (name, "__tls_get_addr_opt") == 0)
4171 h = _bfd_elf_archive_symbol_lookup (abfd, info, "__tls_get_addr_desc");
8387904d
AM
4172 return h;
4173}
4174
4175/* This function satisfies all old ABI object references to ".bar" if a
99877b66
AM
4176 new ABI object defines "bar". Well, at least, undefined dot symbols
4177 are made weak. This stops later archive searches from including an
4178 object if we already have a function descriptor definition. It also
35b0ce59
AM
4179 prevents the linker complaining about undefined symbols.
4180 We also check and correct mismatched symbol visibility here. The
4181 most restrictive visibility of the function descriptor and the
4182 function entry symbol is used. */
8387904d
AM
4183
4184static bfd_boolean
b3fac117 4185add_symbol_adjust (struct ppc_link_hash_entry *eh, struct bfd_link_info *info)
8387904d 4186{
8387904d
AM
4187 struct ppc_link_hash_table *htab;
4188 struct ppc_link_hash_entry *fdh;
4189
b3fac117
AM
4190 if (eh->elf.root.type == bfd_link_hash_warning)
4191 eh = (struct ppc_link_hash_entry *) eh->elf.root.u.i.link;
8387904d 4192
8400d40d
AM
4193 if (eh->elf.root.type == bfd_link_hash_indirect)
4194 return TRUE;
4195
b3fac117
AM
4196 if (eh->elf.root.root.string[0] != '.')
4197 abort ();
8387904d 4198
b3fac117 4199 htab = ppc_hash_table (info);
4dfe6ac6
NC
4200 if (htab == NULL)
4201 return FALSE;
4202
b31867b6 4203 fdh = lookup_fdh (eh, htab);
8c5b4e52
AM
4204 if (fdh == NULL
4205 && !bfd_link_relocatable (info)
4206 && (eh->elf.root.type == bfd_link_hash_undefined
4207 || eh->elf.root.type == bfd_link_hash_undefweak)
4208 && eh->elf.ref_regular)
4209 {
4210 /* Make an undefined function descriptor sym, in order to
4211 pull in an --as-needed shared lib. Archives are handled
4212 elsewhere. */
4213 fdh = make_fdh (info, eh);
4214 if (fdh == NULL)
4215 return FALSE;
bb700d78 4216 }
8c5b4e52
AM
4217
4218 if (fdh != NULL)
8387904d 4219 {
35b0ce59
AM
4220 unsigned entry_vis = ELF_ST_VISIBILITY (eh->elf.other) - 1;
4221 unsigned descr_vis = ELF_ST_VISIBILITY (fdh->elf.other) - 1;
8c5b4e52
AM
4222
4223 /* Make both descriptor and entry symbol have the most
4224 constraining visibility of either symbol. */
35b0ce59
AM
4225 if (entry_vis < descr_vis)
4226 fdh->elf.other += entry_vis - descr_vis;
4227 else if (entry_vis > descr_vis)
4228 eh->elf.other += descr_vis - entry_vis;
4229
8c5b4e52
AM
4230 /* Propagate reference flags from entry symbol to function
4231 descriptor symbol. */
bc4e12de 4232 fdh->elf.root.non_ir_ref_regular |= eh->elf.root.non_ir_ref_regular;
4070765b 4233 fdh->elf.root.non_ir_ref_dynamic |= eh->elf.root.non_ir_ref_dynamic;
8c5b4e52
AM
4234 fdh->elf.ref_regular |= eh->elf.ref_regular;
4235 fdh->elf.ref_regular_nonweak |= eh->elf.ref_regular_nonweak;
4236
4237 if (!fdh->elf.forced_local
4238 && fdh->elf.dynindx == -1
4239 && fdh->elf.versioned != versioned_hidden
4240 && (bfd_link_dll (info)
4241 || fdh->elf.def_dynamic
4242 || fdh->elf.ref_dynamic)
4243 && (eh->elf.ref_regular
4244 || eh->elf.def_regular))
4245 {
2cdcc330 4246 if (!bfd_elf_link_record_dynamic_symbol (info, &fdh->elf))
8c5b4e52 4247 return FALSE;
35b0ce59 4248 }
8387904d 4249 }
99877b66 4250
8387904d
AM
4251 return TRUE;
4252}
4253
f6c7c3e8
AM
4254/* Set up opd section info and abiversion for IBFD, and process list
4255 of dot-symbols we made in link_hash_newfunc. */
b3fac117 4256
8387904d 4257static bfd_boolean
f6c7c3e8 4258ppc64_elf_before_check_relocs (bfd *ibfd, struct bfd_link_info *info)
8387904d 4259{
99877b66 4260 struct ppc_link_hash_table *htab;
b3fac117 4261 struct ppc_link_hash_entry **p, *eh;
459609d6 4262 asection *opd = bfd_get_section_by_name (ibfd, ".opd");
433817dd 4263
459609d6 4264 if (opd != NULL && opd->size != 0)
b3fac117 4265 {
b9399fcf
AM
4266 BFD_ASSERT (ppc64_elf_section_data (opd)->sec_type == sec_normal);
4267 ppc64_elf_section_data (opd)->sec_type = sec_opd;
4268
459609d6
AM
4269 if (abiversion (ibfd) == 0)
4270 set_abiversion (ibfd, 1);
8a2058b5 4271 else if (abiversion (ibfd) >= 2)
f6c7c3e8 4272 {
695344c0 4273 /* xgettext:c-format */
cf97bcb0
AM
4274 _bfd_error_handler (_("%pB .opd not allowed in ABI version %d"),
4275 ibfd, abiversion (ibfd));
459609d6
AM
4276 bfd_set_error (bfd_error_bad_value);
4277 return FALSE;
f6c7c3e8 4278 }
b9399fcf 4279 }
f6c7c3e8 4280
b9399fcf
AM
4281 if (is_ppc64_elf (info->output_bfd))
4282 {
4283 /* For input files without an explicit abiversion in e_flags
4284 we should have flagged any with symbol st_other bits set
4285 as ELFv1 and above flagged those with .opd as ELFv2.
4286 Set the output abiversion if not yet set, and for any input
4287 still ambiguous, take its abiversion from the output.
4288 Differences in ABI are reported later. */
4289 if (abiversion (info->output_bfd) == 0)
4290 set_abiversion (info->output_bfd, abiversion (ibfd));
4291 else if (abiversion (ibfd) == 0)
4292 set_abiversion (ibfd, abiversion (info->output_bfd));
b3fac117
AM
4293 }
4294
459609d6
AM
4295 htab = ppc_hash_table (info);
4296 if (htab == NULL)
b9399fcf 4297 return TRUE;
459609d6 4298
b9399fcf
AM
4299 if (opd != NULL && opd->size != 0
4300 && (ibfd->flags & DYNAMIC) == 0
4301 && (opd->flags & SEC_RELOC) != 0
4302 && opd->reloc_count != 0
4303 && !bfd_is_abs_section (opd->output_section)
4304 && info->gc_sections)
4305 {
4306 /* Garbage collection needs some extra help with .opd sections.
4307 We don't want to necessarily keep everything referenced by
4308 relocs in .opd, as that would keep all functions. Instead,
4309 if we reference an .opd symbol (a function descriptor), we
4310 want to keep the function code symbol's section. This is
4311 easy for global symbols, but for local syms we need to keep
4312 information about the associated function section. */
4313 bfd_size_type amt;
4314 asection **opd_sym_map;
4315 Elf_Internal_Shdr *symtab_hdr;
4316 Elf_Internal_Rela *relocs, *rel_end, *rel;
4317
4318 amt = OPD_NDX (opd->size) * sizeof (*opd_sym_map);
4319 opd_sym_map = bfd_zalloc (ibfd, amt);
4320 if (opd_sym_map == NULL)
4321 return FALSE;
4322 ppc64_elf_section_data (opd)->u.opd.func_sec = opd_sym_map;
4323 relocs = _bfd_elf_link_read_relocs (ibfd, opd, NULL, NULL,
4324 info->keep_memory);
4325 if (relocs == NULL)
4326 return FALSE;
4327 symtab_hdr = &elf_symtab_hdr (ibfd);
4328 rel_end = relocs + opd->reloc_count - 1;
4329 for (rel = relocs; rel < rel_end; rel++)
4330 {
4331 enum elf_ppc64_reloc_type r_type = ELF64_R_TYPE (rel->r_info);
4332 unsigned long r_symndx = ELF64_R_SYM (rel->r_info);
4333
4334 if (r_type == R_PPC64_ADDR64
4335 && ELF64_R_TYPE ((rel + 1)->r_info) == R_PPC64_TOC
4336 && r_symndx < symtab_hdr->sh_info)
4337 {
4338 Elf_Internal_Sym *isym;
4339 asection *s;
4340
4341 isym = bfd_sym_from_r_symndx (&htab->sym_cache, ibfd, r_symndx);
4342 if (isym == NULL)
4343 {
4344 if (elf_section_data (opd)->relocs != relocs)
4345 free (relocs);
4346 return FALSE;
4347 }
4348
4349 s = bfd_section_from_elf_index (ibfd, isym->st_shndx);
4350 if (s != NULL && s != opd)
4351 opd_sym_map[OPD_NDX (rel->r_offset)] = s;
4352 }
4353 }
4354 if (elf_section_data (opd)->relocs != relocs)
4355 free (relocs);
4356 }
459609d6
AM
4357
4358 p = &htab->dot_syms;
4359 while ((eh = *p) != NULL)
4360 {
4361 *p = NULL;
4362 if (&eh->elf == htab->elf.hgot)
4363 ;
4364 else if (htab->elf.hgot == NULL
4365 && strcmp (eh->elf.root.root.string, ".TOC.") == 0)
4366 htab->elf.hgot = &eh->elf;
8c5b4e52
AM
4367 else if (abiversion (ibfd) <= 1)
4368 {
4369 htab->need_func_desc_adj = 1;
4370 if (!add_symbol_adjust (eh, info))
4371 return FALSE;
4372 }
459609d6
AM
4373 p = &eh->u.next_dot_sym;
4374 }
b3fac117 4375 return TRUE;
8387904d
AM
4376}
4377
97fed1c9
JJ
4378/* Undo hash table changes when an --as-needed input file is determined
4379 not to be needed. */
4380
4381static bfd_boolean
e5034e59
AM
4382ppc64_elf_notice_as_needed (bfd *ibfd,
4383 struct bfd_link_info *info,
4384 enum notice_asneeded_action act)
97fed1c9 4385{
e5034e59
AM
4386 if (act == notice_not_needed)
4387 {
4388 struct ppc_link_hash_table *htab = ppc_hash_table (info);
4dfe6ac6 4389
e5034e59
AM
4390 if (htab == NULL)
4391 return FALSE;
4dfe6ac6 4392
e5034e59
AM
4393 htab->dot_syms = NULL;
4394 }
4395 return _bfd_elf_notice_as_needed (ibfd, info, act);
97fed1c9
JJ
4396}
4397
aa374f67
AM
4398/* If --just-symbols against a final linked binary, then assume we need
4399 toc adjusting stubs when calling functions defined there. */
4400
4401static void
4402ppc64_elf_link_just_syms (asection *sec, struct bfd_link_info *info)
4403{
4404 if ((sec->flags & SEC_CODE) != 0
4405 && (sec->owner->flags & (EXEC_P | DYNAMIC)) != 0
4406 && is_ppc64_elf (sec->owner))
4407 {
2c3f079f
AM
4408 if (abiversion (sec->owner) >= 2
4409 || bfd_get_section_by_name (sec->owner, ".opd") != NULL)
aa374f67
AM
4410 sec->has_toc_reloc = 1;
4411 }
4412 _bfd_elf_link_just_syms (sec, info);
4413}
4414
e054468f 4415static struct plt_entry **
4ce794b7
AM
4416update_local_sym_info (bfd *abfd, Elf_Internal_Shdr *symtab_hdr,
4417 unsigned long r_symndx, bfd_vma r_addend, int tls_type)
411e1bfb
AM
4418{
4419 struct got_entry **local_got_ents = elf_local_got_ents (abfd);
e054468f 4420 struct plt_entry **local_plt;
f961d9dd 4421 unsigned char *local_got_tls_masks;
411e1bfb
AM
4422
4423 if (local_got_ents == NULL)
4424 {
4425 bfd_size_type size = symtab_hdr->sh_info;
4426
e054468f
AM
4427 size *= (sizeof (*local_got_ents)
4428 + sizeof (*local_plt)
4429 + sizeof (*local_got_tls_masks));
4ce794b7 4430 local_got_ents = bfd_zalloc (abfd, size);
411e1bfb 4431 if (local_got_ents == NULL)
e054468f 4432 return NULL;
411e1bfb
AM
4433 elf_local_got_ents (abfd) = local_got_ents;
4434 }
4435
37da22e5 4436 if ((tls_type & (NON_GOT | TLS_EXPLICIT)) == 0)
411e1bfb
AM
4437 {
4438 struct got_entry *ent;
4439
4440 for (ent = local_got_ents[r_symndx]; ent != NULL; ent = ent->next)
e717da7e
AM
4441 if (ent->addend == r_addend
4442 && ent->owner == abfd
4443 && ent->tls_type == tls_type)
411e1bfb
AM
4444 break;
4445 if (ent == NULL)
4446 {
986f0783 4447 size_t amt = sizeof (*ent);
4ce794b7 4448 ent = bfd_alloc (abfd, amt);
411e1bfb
AM
4449 if (ent == NULL)
4450 return FALSE;
4451 ent->next = local_got_ents[r_symndx];
4452 ent->addend = r_addend;
e717da7e 4453 ent->owner = abfd;
411e1bfb 4454 ent->tls_type = tls_type;
927be08e 4455 ent->is_indirect = FALSE;
411e1bfb
AM
4456 ent->got.refcount = 0;
4457 local_got_ents[r_symndx] = ent;
4458 }
4459 ent->got.refcount += 1;
4460 }
4461
e054468f 4462 local_plt = (struct plt_entry **) (local_got_ents + symtab_hdr->sh_info);
f961d9dd 4463 local_got_tls_masks = (unsigned char *) (local_plt + symtab_hdr->sh_info);
37da22e5 4464 local_got_tls_masks[r_symndx] |= tls_type & 0xff;
e054468f
AM
4465
4466 return local_plt + r_symndx;
65f38f15
AM
4467}
4468
411e1bfb 4469static bfd_boolean
e054468f 4470update_plt_info (bfd *abfd, struct plt_entry **plist, bfd_vma addend)
1e2f5b6e 4471{
411e1bfb 4472 struct plt_entry *ent;
1e2f5b6e 4473
e054468f 4474 for (ent = *plist; ent != NULL; ent = ent->next)
411e1bfb
AM
4475 if (ent->addend == addend)
4476 break;
4477 if (ent == NULL)
1e2f5b6e 4478 {
986f0783 4479 size_t amt = sizeof (*ent);
4ce794b7 4480 ent = bfd_alloc (abfd, amt);
411e1bfb
AM
4481 if (ent == NULL)
4482 return FALSE;
e054468f 4483 ent->next = *plist;
411e1bfb
AM
4484 ent->addend = addend;
4485 ent->plt.refcount = 0;
e054468f 4486 *plist = ent;
1e2f5b6e 4487 }
411e1bfb 4488 ent->plt.refcount += 1;
b34976b6 4489 return TRUE;
1e2f5b6e
AM
4490}
4491
e054468f
AM
4492static bfd_boolean
4493is_branch_reloc (enum elf_ppc64_reloc_type r_type)
4494{
4495 return (r_type == R_PPC64_REL24
05d0e962 4496 || r_type == R_PPC64_REL24_NOTOC
e054468f
AM
4497 || r_type == R_PPC64_REL14
4498 || r_type == R_PPC64_REL14_BRTAKEN
4499 || r_type == R_PPC64_REL14_BRNTAKEN
4500 || r_type == R_PPC64_ADDR24
4501 || r_type == R_PPC64_ADDR14
4502 || r_type == R_PPC64_ADDR14_BRTAKEN
23cedd1d 4503 || r_type == R_PPC64_ADDR14_BRNTAKEN
5663e321
AM
4504 || r_type == R_PPC64_PLTCALL
4505 || r_type == R_PPC64_PLTCALL_NOTOC);
23cedd1d
AM
4506}
4507
4508/* Relocs on inline plt call sequence insns prior to the call. */
4509
4510static bfd_boolean
4511is_plt_seq_reloc (enum elf_ppc64_reloc_type r_type)
4512{
4513 return (r_type == R_PPC64_PLT16_HA
4514 || r_type == R_PPC64_PLT16_HI
4515 || r_type == R_PPC64_PLT16_LO
4516 || r_type == R_PPC64_PLT16_LO_DS
5663e321
AM
4517 || r_type == R_PPC64_PLT_PCREL34
4518 || r_type == R_PPC64_PLT_PCREL34_NOTOC
4519 || r_type == R_PPC64_PLTSEQ
4520 || r_type == R_PPC64_PLTSEQ_NOTOC);
e054468f
AM
4521}
4522
5bd4f169 4523/* Look through the relocs for a section during the first phase, and
65f38f15 4524 calculate needed space in the global offset table, procedure
5d1634d7 4525 linkage table, and dynamic reloc sections. */
5bd4f169 4526
b34976b6 4527static bfd_boolean
4ce794b7
AM
4528ppc64_elf_check_relocs (bfd *abfd, struct bfd_link_info *info,
4529 asection *sec, const Elf_Internal_Rela *relocs)
5bd4f169 4530{
65f38f15 4531 struct ppc_link_hash_table *htab;
5bd4f169 4532 Elf_Internal_Shdr *symtab_hdr;
c7e2358a 4533 struct elf_link_hash_entry **sym_hashes;
5bd4f169
AM
4534 const Elf_Internal_Rela *rel;
4535 const Elf_Internal_Rela *rel_end;
5bd4f169 4536 asection *sreloc;
3a71aa26 4537 struct elf_link_hash_entry *tga, *dottga;
b9399fcf 4538 bfd_boolean is_opd;
5bd4f169 4539
0e1862bb 4540 if (bfd_link_relocatable (info))
b34976b6 4541 return TRUE;
5bd4f169 4542
680a3378
AM
4543 /* Don't do anything special with non-loaded, non-alloced sections.
4544 In particular, any relocs in such sections should not affect GOT
4545 and PLT reference counting (ie. we don't allow them to create GOT
4546 or PLT entries), there's no possibility or desire to optimize TLS
4547 relocs, and there's not much point in propagating relocs to shared
4548 libs that the dynamic linker won't relocate. */
4549 if ((sec->flags & SEC_ALLOC) == 0)
4550 return TRUE;
4551
0c8d6e5c 4552 BFD_ASSERT (is_ppc64_elf (abfd));
0ffa91dd 4553
65f38f15 4554 htab = ppc_hash_table (info);
4dfe6ac6
NC
4555 if (htab == NULL)
4556 return FALSE;
4557
3a71aa26
AM
4558 tga = elf_link_hash_lookup (&htab->elf, "__tls_get_addr",
4559 FALSE, FALSE, TRUE);
4560 dottga = elf_link_hash_lookup (&htab->elf, ".__tls_get_addr",
4561 FALSE, FALSE, TRUE);
0ffa91dd 4562 symtab_hdr = &elf_symtab_hdr (abfd);
5bd4f169 4563 sym_hashes = elf_sym_hashes (abfd);
5bd4f169 4564 sreloc = NULL;
b9399fcf 4565 is_opd = ppc64_elf_section_data (sec)->sec_type == sec_opd;
5bd4f169
AM
4566 rel_end = relocs + sec->reloc_count;
4567 for (rel = relocs; rel < rel_end; rel++)
4568 {
4569 unsigned long r_symndx;
4570 struct elf_link_hash_entry *h;
04c9666a 4571 enum elf_ppc64_reloc_type r_type;
727fc41e 4572 int tls_type;
7c8fe5c4 4573 struct _ppc64_elf_section_data *ppc64_sec;
cbf95972 4574 struct plt_entry **ifunc, **plt_list;
5bd4f169
AM
4575
4576 r_symndx = ELF64_R_SYM (rel->r_info);
4577 if (r_symndx < symtab_hdr->sh_info)
4578 h = NULL;
4579 else
973a3492
L
4580 {
4581 h = sym_hashes[r_symndx - symtab_hdr->sh_info];
b31867b6 4582 h = elf_follow_link (h);
1c865ab2
AM
4583
4584 if (h == htab->elf.hgot)
4585 sec->has_toc_reloc = 1;
973a3492 4586 }
5bd4f169 4587
5663e321
AM
4588 r_type = ELF64_R_TYPE (rel->r_info);
4589 switch (r_type)
4590 {
04bdff6a
AM
4591 case R_PPC64_D34:
4592 case R_PPC64_D34_LO:
4593 case R_PPC64_D34_HI30:
4594 case R_PPC64_D34_HA30:
4595 case R_PPC64_D28:
c213164a
AM
4596 case R_PPC64_TPREL34:
4597 case R_PPC64_DTPREL34:
04bdff6a 4598 case R_PPC64_PCREL34:
5663e321 4599 case R_PPC64_GOT_PCREL34:
c213164a
AM
4600 case R_PPC64_GOT_TLSGD34:
4601 case R_PPC64_GOT_TLSLD34:
4602 case R_PPC64_GOT_TPREL34:
4603 case R_PPC64_GOT_DTPREL34:
5663e321
AM
4604 case R_PPC64_PLT_PCREL34:
4605 case R_PPC64_PLT_PCREL34_NOTOC:
04bdff6a
AM
4606 case R_PPC64_PCREL28:
4607 htab->powerxx_stubs = 1;
133a1f60
AM
4608 break;
4609 default:
5663e321
AM
4610 break;
4611 }
903b777d
AM
4612
4613 switch (r_type)
4614 {
4615 case R_PPC64_PLT16_HA:
4616 case R_PPC64_GOT_TLSLD16_HA:
4617 case R_PPC64_GOT_TLSGD16_HA:
4618 case R_PPC64_GOT_TPREL16_HA:
4619 case R_PPC64_GOT_DTPREL16_HA:
4620 case R_PPC64_GOT16_HA:
4621 case R_PPC64_TOC16_HA:
4622 case R_PPC64_PLT16_LO:
4623 case R_PPC64_PLT16_LO_DS:
4624 case R_PPC64_GOT_TLSLD16_LO:
4625 case R_PPC64_GOT_TLSGD16_LO:
4626 case R_PPC64_GOT_TPREL16_LO_DS:
4627 case R_PPC64_GOT_DTPREL16_LO_DS:
4628 case R_PPC64_GOT16_LO:
4629 case R_PPC64_GOT16_LO_DS:
4630 case R_PPC64_TOC16_LO:
4631 case R_PPC64_TOC16_LO_DS:
4632 case R_PPC64_GOT_PCREL34:
4633 ppc64_elf_tdata (abfd)->has_optrel = 1;
4634 ppc64_elf_section_data (sec)->has_optrel = 1;
4635 break;
4636 default:
4637 break;
4638 }
4639
f749f26e 4640 ifunc = NULL;
25f23106
AM
4641 if (h != NULL)
4642 {
4643 if (h->type == STT_GNU_IFUNC)
4644 {
4645 h->needs_plt = 1;
4646 ifunc = &h->plt.plist;
4647 }
4648 }
4649 else
4650 {
4651 Elf_Internal_Sym *isym = bfd_sym_from_r_symndx (&htab->sym_cache,
4652 abfd, r_symndx);
4653 if (isym == NULL)
4654 return FALSE;
4655
4656 if (ELF_ST_TYPE (isym->st_info) == STT_GNU_IFUNC)
4657 {
4658 ifunc = update_local_sym_info (abfd, symtab_hdr, r_symndx,
133a1f60 4659 rel->r_addend,
37da22e5 4660 NON_GOT | PLT_IFUNC);
25f23106
AM
4661 if (ifunc == NULL)
4662 return FALSE;
4663 }
4664 }
727fc41e 4665
f749f26e 4666 tls_type = 0;
a33d1f77 4667 switch (r_type)
5bd4f169 4668 {
727fc41e
AM
4669 case R_PPC64_TLSGD:
4670 case R_PPC64_TLSLD:
4671 /* These special tls relocs tie a call to __tls_get_addr with
4672 its parameter symbol. */
37da22e5 4673 if (h != NULL)
ed7007c1 4674 ppc_elf_hash_entry (h)->tls_mask |= TLS_TLS | TLS_MARK;
37da22e5
AM
4675 else
4676 if (!update_local_sym_info (abfd, symtab_hdr, r_symndx,
133a1f60 4677 rel->r_addend,
37da22e5
AM
4678 NON_GOT | TLS_TLS | TLS_MARK))
4679 return FALSE;
4680 sec->has_tls_reloc = 1;
727fc41e
AM
4681 break;
4682
411e1bfb
AM
4683 case R_PPC64_GOT_TLSLD16:
4684 case R_PPC64_GOT_TLSLD16_LO:
4685 case R_PPC64_GOT_TLSLD16_HI:
4686 case R_PPC64_GOT_TLSLD16_HA:
c213164a 4687 case R_PPC64_GOT_TLSLD34:
951fd09b 4688 tls_type = TLS_TLS | TLS_LD;
411e1bfb
AM
4689 goto dogottls;
4690
4691 case R_PPC64_GOT_TLSGD16:
4692 case R_PPC64_GOT_TLSGD16_LO:
4693 case R_PPC64_GOT_TLSGD16_HI:
4694 case R_PPC64_GOT_TLSGD16_HA:
c213164a 4695 case R_PPC64_GOT_TLSGD34:
951fd09b 4696 tls_type = TLS_TLS | TLS_GD;
411e1bfb
AM
4697 goto dogottls;
4698
4699 case R_PPC64_GOT_TPREL16_DS:
4700 case R_PPC64_GOT_TPREL16_LO_DS:
4701 case R_PPC64_GOT_TPREL16_HI:
4702 case R_PPC64_GOT_TPREL16_HA:
c213164a 4703 case R_PPC64_GOT_TPREL34:
7c8bbca5 4704 if (bfd_link_dll (info))
411e1bfb
AM
4705 info->flags |= DF_STATIC_TLS;
4706 tls_type = TLS_TLS | TLS_TPREL;
4707 goto dogottls;
4708
4709 case R_PPC64_GOT_DTPREL16_DS:
4710 case R_PPC64_GOT_DTPREL16_LO_DS:
4711 case R_PPC64_GOT_DTPREL16_HI:
4712 case R_PPC64_GOT_DTPREL16_HA:
c213164a 4713 case R_PPC64_GOT_DTPREL34:
411e1bfb
AM
4714 tls_type = TLS_TLS | TLS_DTPREL;
4715 dogottls:
4716 sec->has_tls_reloc = 1;
066f4018 4717 goto dogot;
411e1bfb 4718
903b777d
AM
4719 case R_PPC64_GOT16:
4720 case R_PPC64_GOT16_LO:
4721 case R_PPC64_GOT16_HI:
65f38f15 4722 case R_PPC64_GOT16_HA:
903b777d 4723 case R_PPC64_GOT16_DS:
066f4018 4724 case R_PPC64_GOT16_LO_DS:
4a421c53 4725 case R_PPC64_GOT_PCREL34:
066f4018 4726 dogot:
65f38f15 4727 /* This symbol requires a global offset table entry. */
4c52953f 4728 sec->has_toc_reloc = 1;
33c0ec9d
AM
4729 if (r_type == R_PPC64_GOT_TLSLD16
4730 || r_type == R_PPC64_GOT_TLSGD16
4731 || r_type == R_PPC64_GOT_TPREL16_DS
4732 || r_type == R_PPC64_GOT_DTPREL16_DS
4733 || r_type == R_PPC64_GOT16
4734 || r_type == R_PPC64_GOT16_DS)
4735 {
4736 htab->do_multi_toc = 1;
d77c8a4b 4737 ppc64_elf_tdata (abfd)->has_small_toc_reloc = 1;
33c0ec9d
AM
4738 }
4739
e717da7e
AM
4740 if (ppc64_elf_tdata (abfd)->got == NULL
4741 && !create_got_section (abfd, info))
b34976b6 4742 return FALSE;
5bd4f169
AM
4743
4744 if (h != NULL)
4745 {
411e1bfb
AM
4746 struct ppc_link_hash_entry *eh;
4747 struct got_entry *ent;
65f38f15 4748
ed7007c1 4749 eh = ppc_elf_hash_entry (h);
411e1bfb 4750 for (ent = eh->elf.got.glist; ent != NULL; ent = ent->next)
133a1f60 4751 if (ent->addend == rel->r_addend
e717da7e 4752 && ent->owner == abfd
411e1bfb
AM
4753 && ent->tls_type == tls_type)
4754 break;
4755 if (ent == NULL)
5bd4f169 4756 {
986f0783 4757 size_t amt = sizeof (*ent);
4ce794b7 4758 ent = bfd_alloc (abfd, amt);
411e1bfb 4759 if (ent == NULL)
b34976b6 4760 return FALSE;
411e1bfb 4761 ent->next = eh->elf.got.glist;
133a1f60 4762 ent->addend = rel->r_addend;
e717da7e 4763 ent->owner = abfd;
411e1bfb 4764 ent->tls_type = tls_type;
927be08e 4765 ent->is_indirect = FALSE;
411e1bfb
AM
4766 ent->got.refcount = 0;
4767 eh->elf.got.glist = ent;
5bd4f169 4768 }
411e1bfb 4769 ent->got.refcount += 1;
e7b938ca 4770 eh->tls_mask |= tls_type;
5bd4f169 4771 }
411e1bfb
AM
4772 else
4773 /* This is a global offset table entry for a local symbol. */
4774 if (!update_local_sym_info (abfd, symtab_hdr, r_symndx,
133a1f60 4775 rel->r_addend, tls_type))
411e1bfb 4776 return FALSE;
a345bc8d
AM
4777
4778 /* We may also need a plt entry if the symbol turns out to be
4779 an ifunc. */
0e1862bb 4780 if (h != NULL && !bfd_link_pic (info) && abiversion (abfd) != 1)
a345bc8d 4781 {
133a1f60 4782 if (!update_plt_info (abfd, &h->plt.plist, rel->r_addend))
a345bc8d
AM
4783 return FALSE;
4784 }
5bd4f169
AM
4785 break;
4786
5bd4f169 4787 case R_PPC64_PLT16_HA:
65f38f15
AM
4788 case R_PPC64_PLT16_HI:
4789 case R_PPC64_PLT16_LO:
08be3224 4790 case R_PPC64_PLT16_LO_DS:
5663e321
AM
4791 case R_PPC64_PLT_PCREL34:
4792 case R_PPC64_PLT_PCREL34_NOTOC:
65f38f15
AM
4793 case R_PPC64_PLT32:
4794 case R_PPC64_PLT64:
cbf95972
AM
4795 /* This symbol requires a procedure linkage table entry. */
4796 plt_list = ifunc;
4797 if (h != NULL)
e054468f 4798 {
e054468f
AM
4799 h->needs_plt = 1;
4800 if (h->root.root.string[0] == '.'
4801 && h->root.root.string[1] != '\0')
ed7007c1
AM
4802 ppc_elf_hash_entry (h)->is_func = 1;
4803 ppc_elf_hash_entry (h)->tls_mask |= PLT_KEEP;
cbf95972
AM
4804 plt_list = &h->plt.plist;
4805 }
4806 if (plt_list == NULL)
2d7ad24e 4807 plt_list = update_local_sym_info (abfd, symtab_hdr, r_symndx,
133a1f60 4808 rel->r_addend,
2d7ad24e 4809 NON_GOT | PLT_KEEP);
133a1f60 4810 if (!update_plt_info (abfd, plt_list, rel->r_addend))
cbf95972 4811 return FALSE;
5bd4f169
AM
4812 break;
4813
4814 /* The following relocations don't need to propagate the
4815 relocation if linking a shared object since they are
4816 section relative. */
4817 case R_PPC64_SECTOFF:
4818 case R_PPC64_SECTOFF_LO:
4819 case R_PPC64_SECTOFF_HI:
4820 case R_PPC64_SECTOFF_HA:
4821 case R_PPC64_SECTOFF_DS:
4822 case R_PPC64_SECTOFF_LO_DS:
411e1bfb
AM
4823 case R_PPC64_DTPREL16:
4824 case R_PPC64_DTPREL16_LO:
4825 case R_PPC64_DTPREL16_HI:
4826 case R_PPC64_DTPREL16_HA:
4827 case R_PPC64_DTPREL16_DS:
4828 case R_PPC64_DTPREL16_LO_DS:
f9c6b907
AM
4829 case R_PPC64_DTPREL16_HIGH:
4830 case R_PPC64_DTPREL16_HIGHA:
411e1bfb
AM
4831 case R_PPC64_DTPREL16_HIGHER:
4832 case R_PPC64_DTPREL16_HIGHERA:
4833 case R_PPC64_DTPREL16_HIGHEST:
4834 case R_PPC64_DTPREL16_HIGHESTA:
5bd4f169
AM
4835 break;
4836
ad8e1ba5 4837 /* Nor do these. */
25f23106
AM
4838 case R_PPC64_REL16:
4839 case R_PPC64_REL16_LO:
4840 case R_PPC64_REL16_HI:
4841 case R_PPC64_REL16_HA:
4a969973
AM
4842 case R_PPC64_REL16_HIGH:
4843 case R_PPC64_REL16_HIGHA:
4844 case R_PPC64_REL16_HIGHER:
4845 case R_PPC64_REL16_HIGHERA:
4846 case R_PPC64_REL16_HIGHEST:
4847 case R_PPC64_REL16_HIGHESTA:
5663e321
AM
4848 case R_PPC64_REL16_HIGHER34:
4849 case R_PPC64_REL16_HIGHERA34:
4850 case R_PPC64_REL16_HIGHEST34:
4851 case R_PPC64_REL16_HIGHESTA34:
a680de9a 4852 case R_PPC64_REL16DX_HA:
25f23106
AM
4853 break;
4854
45965137
AM
4855 /* Not supported as a dynamic relocation. */
4856 case R_PPC64_ADDR64_LOCAL:
0e1862bb 4857 if (bfd_link_pic (info))
45965137
AM
4858 {
4859 if (!ppc64_elf_howto_table[R_PPC64_ADDR32])
4860 ppc_howto_init ();
695344c0 4861 /* xgettext:c-format */
174d0a74 4862 info->callbacks->einfo (_("%H: %s reloc unsupported "
cf97bcb0 4863 "in shared libraries and PIEs\n"),
45965137
AM
4864 abfd, sec, rel->r_offset,
4865 ppc64_elf_howto_table[r_type]->name);
4866 bfd_set_error (bfd_error_bad_value);
4867 return FALSE;
4868 }
4869 break;
4870
ad8e1ba5 4871 case R_PPC64_TOC16:
33c0ec9d
AM
4872 case R_PPC64_TOC16_DS:
4873 htab->do_multi_toc = 1;
d77c8a4b 4874 ppc64_elf_tdata (abfd)->has_small_toc_reloc = 1;
1a0670f3 4875 /* Fall through. */
ad8e1ba5
AM
4876 case R_PPC64_TOC16_LO:
4877 case R_PPC64_TOC16_HI:
4878 case R_PPC64_TOC16_HA:
ad8e1ba5 4879 case R_PPC64_TOC16_LO_DS:
4c52953f 4880 sec->has_toc_reloc = 1;
ec73ddcd 4881 if (h != NULL && bfd_link_executable (info))
1bdd8fac
AM
4882 {
4883 /* We may need a copy reloc. */
4884 h->non_got_ref = 1;
4885 /* Strongly prefer a copy reloc over a dynamic reloc.
4886 glibc ld.so as of 2019-08 will error out if one of
4887 these relocations is emitted. */
4888 h->needs_copy = 1;
4889 goto dodyn;
4890 }
ad8e1ba5
AM
4891 break;
4892
006589cf
AM
4893 /* Marker reloc. */
4894 case R_PPC64_ENTRY:
4895 break;
4896
5bd4f169
AM
4897 /* This relocation describes the C++ object vtable hierarchy.
4898 Reconstruct it for later use during GC. */
4899 case R_PPC64_GNU_VTINHERIT:
c152c796 4900 if (!bfd_elf_gc_record_vtinherit (abfd, sec, h, rel->r_offset))
b34976b6 4901 return FALSE;
5bd4f169
AM
4902 break;
4903
4904 /* This relocation describes which C++ vtable entries are actually
4905 used. Record for later use during GC. */
4906 case R_PPC64_GNU_VTENTRY:
a0ea3a14 4907 if (!bfd_elf_gc_record_vtentry (abfd, sec, h, rel->r_addend))
b34976b6 4908 return FALSE;
5bd4f169
AM
4909 break;
4910
721956f4
AM
4911 case R_PPC64_REL14:
4912 case R_PPC64_REL14_BRTAKEN:
4913 case R_PPC64_REL14_BRNTAKEN:
220c76dd
AM
4914 {
4915 asection *dest = NULL;
4916
4917 /* Heuristic: If jumping outside our section, chances are
4918 we are going to need a stub. */
4919 if (h != NULL)
4920 {
4921 /* If the sym is weak it may be overridden later, so
4922 don't assume we know where a weak sym lives. */
4923 if (h->root.type == bfd_link_hash_defined)
4924 dest = h->root.u.def.section;
4925 }
4926 else
87d72d41
AM
4927 {
4928 Elf_Internal_Sym *isym;
4929
4930 isym = bfd_sym_from_r_symndx (&htab->sym_cache,
4931 abfd, r_symndx);
4932 if (isym == NULL)
4933 return FALSE;
4934
4935 dest = bfd_section_from_elf_index (abfd, isym->st_shndx);
4936 }
4937
220c76dd 4938 if (dest != sec)
7c8fe5c4 4939 ppc64_elf_section_data (sec)->has_14bit_branch = 1;
220c76dd 4940 }
3e04d765
AM
4941 goto rel24;
4942
4943 case R_PPC64_PLTCALL:
5663e321 4944 case R_PPC64_PLTCALL_NOTOC:
3e04d765 4945 ppc64_elf_section_data (sec)->has_pltcall = 1;
721956f4
AM
4946 /* Fall through. */
4947
5d1634d7 4948 case R_PPC64_REL24:
05d0e962 4949 case R_PPC64_REL24_NOTOC:
3e04d765 4950 rel24:
cbf95972
AM
4951 plt_list = ifunc;
4952 if (h != NULL)
5d1634d7 4953 {
e054468f
AM
4954 h->needs_plt = 1;
4955 if (h->root.root.string[0] == '.'
4956 && h->root.root.string[1] != '\0')
ed7007c1 4957 ppc_elf_hash_entry (h)->is_func = 1;
cbf95972 4958
3a71aa26 4959 if (h == tga || h == dottga)
cbf95972
AM
4960 {
4961 sec->has_tls_reloc = 1;
4962 if (rel != relocs
4963 && (ELF64_R_TYPE (rel[-1].r_info) == R_PPC64_TLSGD
4964 || ELF64_R_TYPE (rel[-1].r_info) == R_PPC64_TLSLD))
4965 /* We have a new-style __tls_get_addr call with
4966 a marker reloc. */
4967 ;
4968 else
4969 /* Mark this section as having an old-style call. */
9737e8af 4970 sec->nomark_tls_get_addr = 1;
cbf95972
AM
4971 }
4972 plt_list = &h->plt.plist;
411e1bfb 4973 }
cbf95972
AM
4974
4975 /* We may need a .plt entry if the function this reloc
4976 refers to is in a shared lib. */
4977 if (plt_list
133a1f60 4978 && !update_plt_info (abfd, plt_list, rel->r_addend))
cbf95972 4979 return FALSE;
411e1bfb
AM
4980 break;
4981
cbf95972
AM
4982 case R_PPC64_ADDR14:
4983 case R_PPC64_ADDR14_BRNTAKEN:
4984 case R_PPC64_ADDR14_BRTAKEN:
4985 case R_PPC64_ADDR24:
4986 goto dodyn;
4987
411e1bfb
AM
4988 case R_PPC64_TPREL64:
4989 tls_type = TLS_EXPLICIT | TLS_TLS | TLS_TPREL;
7c8bbca5 4990 if (bfd_link_dll (info))
411e1bfb
AM
4991 info->flags |= DF_STATIC_TLS;
4992 goto dotlstoc;
4993
4994 case R_PPC64_DTPMOD64:
4995 if (rel + 1 < rel_end
4996 && rel[1].r_info == ELF64_R_INFO (r_symndx, R_PPC64_DTPREL64)
4997 && rel[1].r_offset == rel->r_offset + 8)
951fd09b 4998 tls_type = TLS_EXPLICIT | TLS_TLS | TLS_GD;
411e1bfb 4999 else
951fd09b 5000 tls_type = TLS_EXPLICIT | TLS_TLS | TLS_LD;
411e1bfb
AM
5001 goto dotlstoc;
5002
5003 case R_PPC64_DTPREL64:
5004 tls_type = TLS_EXPLICIT | TLS_TLS | TLS_DTPREL;
5005 if (rel != relocs
5006 && rel[-1].r_info == ELF64_R_INFO (r_symndx, R_PPC64_DTPMOD64)
5007 && rel[-1].r_offset == rel->r_offset - 8)
5008 /* This is the second reloc of a dtpmod, dtprel pair.
5009 Don't mark with TLS_DTPREL. */
5010 goto dodyn;
5011
5012 dotlstoc:
5013 sec->has_tls_reloc = 1;
5014 if (h != NULL)
ed7007c1 5015 ppc_elf_hash_entry (h)->tls_mask |= tls_type & 0xff;
411e1bfb
AM
5016 else
5017 if (!update_local_sym_info (abfd, symtab_hdr, r_symndx,
133a1f60 5018 rel->r_addend, tls_type))
411e1bfb
AM
5019 return FALSE;
5020
7c8fe5c4
AM
5021 ppc64_sec = ppc64_elf_section_data (sec);
5022 if (ppc64_sec->sec_type != sec_toc)
411e1bfb 5023 {
3a71aa26
AM
5024 bfd_size_type amt;
5025
e7b938ca 5026 /* One extra to simplify get_tls_mask. */
3a71aa26
AM
5027 amt = sec->size * sizeof (unsigned) / 8 + sizeof (unsigned);
5028 ppc64_sec->u.toc.symndx = bfd_zalloc (abfd, amt);
5029 if (ppc64_sec->u.toc.symndx == NULL)
5030 return FALSE;
5031 amt = sec->size * sizeof (bfd_vma) / 8;
5032 ppc64_sec->u.toc.add = bfd_zalloc (abfd, amt);
5033 if (ppc64_sec->u.toc.add == NULL)
411e1bfb 5034 return FALSE;
7c8fe5c4
AM
5035 BFD_ASSERT (ppc64_sec->sec_type == sec_normal);
5036 ppc64_sec->sec_type = sec_toc;
411e1bfb
AM
5037 }
5038 BFD_ASSERT (rel->r_offset % 8 == 0);
3a71aa26 5039 ppc64_sec->u.toc.symndx[rel->r_offset / 8] = r_symndx;
133a1f60 5040 ppc64_sec->u.toc.add[rel->r_offset / 8] = rel->r_addend;
951fd09b
AM
5041
5042 /* Mark the second slot of a GD or LD entry.
5043 -1 to indicate GD and -2 to indicate LD. */
5044 if (tls_type == (TLS_EXPLICIT | TLS_TLS | TLS_GD))
3a71aa26 5045 ppc64_sec->u.toc.symndx[rel->r_offset / 8 + 1] = -1;
951fd09b 5046 else if (tls_type == (TLS_EXPLICIT | TLS_TLS | TLS_LD))
3a71aa26 5047 ppc64_sec->u.toc.symndx[rel->r_offset / 8 + 1] = -2;
411e1bfb
AM
5048 goto dodyn;
5049
5050 case R_PPC64_TPREL16:
5051 case R_PPC64_TPREL16_LO:
5052 case R_PPC64_TPREL16_HI:
5053 case R_PPC64_TPREL16_HA:
5054 case R_PPC64_TPREL16_DS:
5055 case R_PPC64_TPREL16_LO_DS:
f9c6b907
AM
5056 case R_PPC64_TPREL16_HIGH:
5057 case R_PPC64_TPREL16_HIGHA:
411e1bfb
AM
5058 case R_PPC64_TPREL16_HIGHER:
5059 case R_PPC64_TPREL16_HIGHERA:
5060 case R_PPC64_TPREL16_HIGHEST:
5061 case R_PPC64_TPREL16_HIGHESTA:
c213164a 5062 case R_PPC64_TPREL34:
7c8bbca5
AM
5063 if (bfd_link_dll (info))
5064 info->flags |= DF_STATIC_TLS;
5065 goto dodyn;
5d1634d7 5066
e86ce104 5067 case R_PPC64_ADDR64:
b9399fcf 5068 if (is_opd
1e2f5b6e 5069 && rel + 1 < rel_end
4ce794b7 5070 && ELF64_R_TYPE ((rel + 1)->r_info) == R_PPC64_TOC)
1e2f5b6e 5071 {
8387904d 5072 if (h != NULL)
ed7007c1 5073 ppc_elf_hash_entry (h)->is_func = 1;
1e2f5b6e 5074 }
e86ce104
AM
5075 /* Fall through. */
5076
65f38f15
AM
5077 case R_PPC64_ADDR16:
5078 case R_PPC64_ADDR16_DS:
5079 case R_PPC64_ADDR16_HA:
5080 case R_PPC64_ADDR16_HI:
f9c6b907
AM
5081 case R_PPC64_ADDR16_HIGH:
5082 case R_PPC64_ADDR16_HIGHA:
65f38f15
AM
5083 case R_PPC64_ADDR16_HIGHER:
5084 case R_PPC64_ADDR16_HIGHERA:
5085 case R_PPC64_ADDR16_HIGHEST:
5086 case R_PPC64_ADDR16_HIGHESTA:
5087 case R_PPC64_ADDR16_LO:
5088 case R_PPC64_ADDR16_LO_DS:
5663e321
AM
5089 case R_PPC64_D34:
5090 case R_PPC64_D34_LO:
5091 case R_PPC64_D34_HI30:
5092 case R_PPC64_D34_HA30:
5093 case R_PPC64_ADDR16_HIGHER34:
5094 case R_PPC64_ADDR16_HIGHERA34:
5095 case R_PPC64_ADDR16_HIGHEST34:
5096 case R_PPC64_ADDR16_HIGHESTA34:
5097 case R_PPC64_D28:
0e1862bb 5098 if (h != NULL && !bfd_link_pic (info) && abiversion (abfd) != 1
a345bc8d
AM
5099 && rel->r_addend == 0)
5100 {
5101 /* We may need a .plt entry if this reloc refers to a
5102 function in a shared lib. */
5663e321 5103 if (!update_plt_info (abfd, &h->plt.plist, 0))
a345bc8d
AM
5104 return FALSE;
5105 h->pointer_equality_needed = 1;
5106 }
5107 /* Fall through. */
5108
5109 case R_PPC64_REL30:
5110 case R_PPC64_REL32:
5111 case R_PPC64_REL64:
65f38f15 5112 case R_PPC64_ADDR32:
65f38f15
AM
5113 case R_PPC64_UADDR16:
5114 case R_PPC64_UADDR32:
5115 case R_PPC64_UADDR64:
5bd4f169 5116 case R_PPC64_TOC:
ec73ddcd 5117 if (h != NULL && bfd_link_executable (info))
81848ca0 5118 /* We may need a copy reloc. */
f5385ebf 5119 h->non_got_ref = 1;
81848ca0 5120
41bd81ab 5121 /* Don't propagate .opd relocs. */
b9399fcf 5122 if (NO_OPD_RELOCS && is_opd)
e86ce104 5123 break;
e86ce104 5124
65f38f15
AM
5125 /* If we are creating a shared library, and this is a reloc
5126 against a global symbol, or a non PC relative reloc
5127 against a local symbol, then we need to copy the reloc
5128 into the shared library. However, if we are linking with
5129 -Bsymbolic, we do not need to copy a reloc against a
5130 global symbol which is defined in an object we are
5131 including in the link (i.e., DEF_REGULAR is set). At
5132 this point we have not seen all the input files, so it is
5133 possible that DEF_REGULAR is not set now but will be set
5134 later (it is never cleared). In case of a weak definition,
5135 DEF_REGULAR may be cleared later by a strong definition in
5136 a shared library. We account for that possibility below by
f4656909 5137 storing information in the dyn_relocs field of the hash
65f38f15
AM
5138 table entry. A similar situation occurs when creating
5139 shared libraries and symbol visibility changes render the
5140 symbol local.
5141
5142 If on the other hand, we are creating an executable, we
5143 may need to keep relocations for symbols satisfied by a
5144 dynamic library if we manage to avoid copy relocs for the
5145 symbol. */
411e1bfb 5146 dodyn:
ec73ddcd
AM
5147 if ((h != NULL
5148 && (h->root.type == bfd_link_hash_defweak
5149 || !h->def_regular))
5150 || (h != NULL
5151 && !bfd_link_executable (info)
5152 && !SYMBOLIC_BIND (info, h))
5153 || (bfd_link_pic (info)
5154 && must_be_dyn_reloc (info, r_type))
0e1862bb 5155 || (!bfd_link_pic (info)
25f23106 5156 && ifunc != NULL))
5bd4f169 5157 {
65f38f15
AM
5158 /* We must copy these reloc types into the output file.
5159 Create a reloc section in dynobj and make room for
5160 this reloc. */
5bd4f169
AM
5161 if (sreloc == NULL)
5162 {
83bac4b0
NC
5163 sreloc = _bfd_elf_make_dynamic_reloc_section
5164 (sec, htab->elf.dynobj, 3, abfd, /*rela?*/ TRUE);
65f38f15 5165
5bd4f169 5166 if (sreloc == NULL)
83bac4b0 5167 return FALSE;
5bd4f169
AM
5168 }
5169
65f38f15
AM
5170 /* If this is a global symbol, we count the number of
5171 relocations we need for this symbol. */
5172 if (h != NULL)
5173 {
19e08130
AM
5174 struct elf_dyn_relocs *p;
5175 struct elf_dyn_relocs **head;
5176
ed7007c1 5177 head = &ppc_elf_hash_entry (h)->dyn_relocs;
19e08130
AM
5178 p = *head;
5179 if (p == NULL || p->sec != sec)
5180 {
5181 p = bfd_alloc (htab->elf.dynobj, sizeof *p);
5182 if (p == NULL)
5183 return FALSE;
5184 p->next = *head;
5185 *head = p;
5186 p->sec = sec;
5187 p->count = 0;
5188 p->pc_count = 0;
5189 }
5190 p->count += 1;
5191 if (!must_be_dyn_reloc (info, r_type))
5192 p->pc_count += 1;
65f38f15
AM
5193 }
5194 else
5195 {
ec338859
AM
5196 /* Track dynamic relocs needed for local syms too.
5197 We really need local syms available to do this
5198 easily. Oh well. */
19e08130
AM
5199 struct ppc_dyn_relocs *p;
5200 struct ppc_dyn_relocs **head;
5201 bfd_boolean is_ifunc;
ec338859 5202 asection *s;
6edfbbad 5203 void *vpp;
87d72d41 5204 Elf_Internal_Sym *isym;
6edfbbad 5205
87d72d41
AM
5206 isym = bfd_sym_from_r_symndx (&htab->sym_cache,
5207 abfd, r_symndx);
5208 if (isym == NULL)
b34976b6 5209 return FALSE;
ec338859 5210
87d72d41
AM
5211 s = bfd_section_from_elf_index (abfd, isym->st_shndx);
5212 if (s == NULL)
5213 s = sec;
5214
6edfbbad 5215 vpp = &elf_section_data (s)->local_dynrel;
19e08130
AM
5216 head = (struct ppc_dyn_relocs **) vpp;
5217 is_ifunc = ELF_ST_TYPE (isym->st_info) == STT_GNU_IFUNC;
5218 p = *head;
5219 if (p != NULL && p->sec == sec && p->ifunc != is_ifunc)
5220 p = p->next;
5221 if (p == NULL || p->sec != sec || p->ifunc != is_ifunc)
5222 {
5223 p = bfd_alloc (htab->elf.dynobj, sizeof *p);
5224 if (p == NULL)
5225 return FALSE;
5226 p->next = *head;
5227 *head = p;
5228 p->sec = sec;
5229 p->ifunc = is_ifunc;
5230 p->count = 0;
5231 }
5232 p->count += 1;
ec338859 5233 }
65f38f15 5234 }
5bd4f169 5235 break;
65f38f15
AM
5236
5237 default:
96e0dda4 5238 break;
5bd4f169
AM
5239 }
5240 }
5241
b34976b6 5242 return TRUE;
5bd4f169
AM
5243}
5244
ee67d69a
AM
5245/* Merge backend specific data from an object file to the output
5246 object file when linking. */
5247
5248static bfd_boolean
50e03d47 5249ppc64_elf_merge_private_bfd_data (bfd *ibfd, struct bfd_link_info *info)
ee67d69a 5250{
50e03d47 5251 bfd *obfd = info->output_bfd;
ee67d69a
AM
5252 unsigned long iflags, oflags;
5253
5254 if ((ibfd->flags & BFD_LINKER_CREATED) != 0)
5255 return TRUE;
5256
5257 if (!is_ppc64_elf (ibfd) || !is_ppc64_elf (obfd))
5258 return TRUE;
5259
50e03d47 5260 if (!_bfd_generic_verify_endian_match (ibfd, info))
ee67d69a
AM
5261 return FALSE;
5262
5263 iflags = elf_elfheader (ibfd)->e_flags;
5264 oflags = elf_elfheader (obfd)->e_flags;
5265
f6c7c3e8 5266 if (iflags & ~EF_PPC64_ABI)
ee67d69a 5267 {
4eca0228 5268 _bfd_error_handler
695344c0 5269 /* xgettext:c-format */
871b3ab2 5270 (_("%pB uses unknown e_flags 0x%lx"), ibfd, iflags);
ee67d69a
AM
5271 bfd_set_error (bfd_error_bad_value);
5272 return FALSE;
5273 }
f6c7c3e8 5274 else if (iflags != oflags && iflags != 0)
ee67d69a 5275 {
4eca0228 5276 _bfd_error_handler
695344c0 5277 /* xgettext:c-format */
871b3ab2 5278 (_("%pB: ABI version %ld is not compatible with ABI version %ld output"),
ee67d69a
AM
5279 ibfd, iflags, oflags);
5280 bfd_set_error (bfd_error_bad_value);
5281 return FALSE;
5282 }
5283
4a91d0ba
AM
5284 if (!_bfd_elf_ppc_merge_fp_attributes (ibfd, info))
5285 return FALSE;
005d79fd 5286
ee67d69a 5287 /* Merge Tag_compatibility attributes and any common GNU ones. */
8d2c8c3d 5288 return _bfd_elf_merge_object_attributes (ibfd, info);
ee67d69a
AM
5289}
5290
5291static bfd_boolean
5292ppc64_elf_print_private_bfd_data (bfd *abfd, void *ptr)
5293{
5294 /* Print normal ELF private data. */
5295 _bfd_elf_print_private_bfd_data (abfd, ptr);
5296
5297 if (elf_elfheader (abfd)->e_flags != 0)
5298 {
5299 FILE *file = ptr;
5300
ee67d69a
AM
5301 fprintf (file, _("private flags = 0x%lx:"),
5302 elf_elfheader (abfd)->e_flags);
5303
5304 if ((elf_elfheader (abfd)->e_flags & EF_PPC64_ABI) != 0)
5305 fprintf (file, _(" [abiv%ld]"),
5306 elf_elfheader (abfd)->e_flags & EF_PPC64_ABI);
5307 fputc ('\n', file);
5308 }
5309
5310 return TRUE;
5311}
5312
8387904d 5313/* OFFSET in OPD_SEC specifies a function descriptor. Return the address
b53dfeb2
AM
5314 of the code entry point, and its section, which must be in the same
5315 object as OPD_SEC. Returns (bfd_vma) -1 on error. */
8387904d
AM
5316
5317static bfd_vma
5318opd_entry_value (asection *opd_sec,
5319 bfd_vma offset,
5320 asection **code_sec,
aef36ac1
AM
5321 bfd_vma *code_off,
5322 bfd_boolean in_code_sec)
8387904d
AM
5323{
5324 bfd *opd_bfd = opd_sec->owner;
8860955f 5325 Elf_Internal_Rela *relocs;
8387904d 5326 Elf_Internal_Rela *lo, *hi, *look;
645ea6a9 5327 bfd_vma val;
8387904d 5328
9f296da3
AM
5329 /* No relocs implies we are linking a --just-symbols object, or looking
5330 at a final linked executable with addr2line or somesuch. */
4b85d634
AM
5331 if (opd_sec->reloc_count == 0)
5332 {
729eabd5 5333 bfd_byte *contents = ppc64_elf_tdata (opd_bfd)->opd.contents;
3b36f7e6 5334
729eabd5
AM
5335 if (contents == NULL)
5336 {
5337 if (!bfd_malloc_and_get_section (opd_bfd, opd_sec, &contents))
5338 return (bfd_vma) -1;
5339 ppc64_elf_tdata (opd_bfd)->opd.contents = contents;
5340 }
ee1e4ede 5341
dbb3fbbb 5342 /* PR 17512: file: 64b9dfbb. */
451dfd38 5343 if (offset + 7 >= opd_sec->size || offset + 7 < offset)
dbb3fbbb
NC
5344 return (bfd_vma) -1;
5345
729eabd5 5346 val = bfd_get_64 (opd_bfd, contents + offset);
aef36ac1
AM
5347 if (code_sec != NULL)
5348 {
5349 asection *sec, *likely = NULL;
ee1e4ede 5350
aef36ac1 5351 if (in_code_sec)
4b85d634 5352 {
aef36ac1
AM
5353 sec = *code_sec;
5354 if (sec->vma <= val
5355 && val < sec->vma + sec->size)
5356 likely = sec;
5357 else
5358 val = -1;
5359 }
5360 else
5361 for (sec = opd_bfd->sections; sec != NULL; sec = sec->next)
5362 if (sec->vma <= val
5363 && (sec->flags & SEC_LOAD) != 0
5364 && (sec->flags & SEC_ALLOC) != 0)
5365 likely = sec;
5366 if (likely != NULL)
5367 {
5368 *code_sec = likely;
5369 if (code_off != NULL)
5370 *code_off = val - likely->vma;
4b85d634
AM
5371 }
5372 }
aef36ac1 5373 return val;
4b85d634
AM
5374 }
5375
0c8d6e5c 5376 BFD_ASSERT (is_ppc64_elf (opd_bfd));
0ffa91dd 5377
729eabd5 5378 relocs = ppc64_elf_tdata (opd_bfd)->opd.relocs;
8860955f
AM
5379 if (relocs == NULL)
5380 relocs = _bfd_elf_link_read_relocs (opd_bfd, opd_sec, NULL, NULL, TRUE);
877a8638
NC
5381 /* PR 17512: file: df8e1fd6. */
5382 if (relocs == NULL)
5383 return (bfd_vma) -1;
645ea6a9 5384
8387904d 5385 /* Go find the opd reloc at the sym address. */
8860955f 5386 lo = relocs;
8387904d 5387 hi = lo + opd_sec->reloc_count - 1; /* ignore last reloc */
645ea6a9 5388 val = (bfd_vma) -1;
8387904d
AM
5389 while (lo < hi)
5390 {
5391 look = lo + (hi - lo) / 2;
5392 if (look->r_offset < offset)
5393 lo = look + 1;
5394 else if (look->r_offset > offset)
5395 hi = look;
5396 else
5397 {
0ffa91dd
NC
5398 Elf_Internal_Shdr *symtab_hdr = &elf_symtab_hdr (opd_bfd);
5399
8387904d
AM
5400 if (ELF64_R_TYPE (look->r_info) == R_PPC64_ADDR64
5401 && ELF64_R_TYPE ((look + 1)->r_info) == R_PPC64_TOC)
5402 {
5403 unsigned long symndx = ELF64_R_SYM (look->r_info);
b53dfeb2 5404 asection *sec = NULL;
8387904d 5405
b53dfeb2
AM
5406 if (symndx >= symtab_hdr->sh_info
5407 && elf_sym_hashes (opd_bfd) != NULL)
8387904d
AM
5408 {
5409 struct elf_link_hash_entry **sym_hashes;
5410 struct elf_link_hash_entry *rh;
5411
5412 sym_hashes = elf_sym_hashes (opd_bfd);
5413 rh = sym_hashes[symndx - symtab_hdr->sh_info];
128205bb
AM
5414 if (rh != NULL)
5415 {
5416 rh = elf_follow_link (rh);
bb854a36
AM
5417 if (rh->root.type != bfd_link_hash_defined
5418 && rh->root.type != bfd_link_hash_defweak)
5419 break;
5420 if (rh->root.u.def.section->owner == opd_bfd)
b53dfeb2 5421 {
bb854a36
AM
5422 val = rh->root.u.def.value;
5423 sec = rh->root.u.def.section;
b53dfeb2
AM
5424 }
5425 }
5426 }
5427
5428 if (sec == NULL)
5429 {
5430 Elf_Internal_Sym *sym;
5431
5432 if (symndx < symtab_hdr->sh_info)
5433 {
5434 sym = (Elf_Internal_Sym *) symtab_hdr->contents;
5435 if (sym == NULL)
5436 {
5437 size_t symcnt = symtab_hdr->sh_info;
5438 sym = bfd_elf_get_elf_syms (opd_bfd, symtab_hdr,
5439 symcnt, 0,
5440 NULL, NULL, NULL);
5441 if (sym == NULL)
5442 break;
5443 symtab_hdr->contents = (bfd_byte *) sym;
5444 }
5445 sym += symndx;
128205bb
AM
5446 }
5447 else
5448 {
b53dfeb2
AM
5449 sym = bfd_elf_get_elf_syms (opd_bfd, symtab_hdr,
5450 1, symndx,
5451 NULL, NULL, NULL);
128205bb
AM
5452 if (sym == NULL)
5453 break;
128205bb 5454 }
b53dfeb2
AM
5455 sec = bfd_section_from_elf_index (opd_bfd, sym->st_shndx);
5456 if (sec == NULL)
5457 break;
5458 BFD_ASSERT ((sec->flags & SEC_MERGE) == 0);
5459 val = sym->st_value;
8387904d 5460 }
b53dfeb2 5461
8387904d
AM
5462 val += look->r_addend;
5463 if (code_off != NULL)
5464 *code_off = val;
5465 if (code_sec != NULL)
aef36ac1
AM
5466 {
5467 if (in_code_sec && *code_sec != sec)
5468 return -1;
5469 else
5470 *code_sec = sec;
5471 }
b53dfeb2 5472 if (sec->output_section != NULL)
8387904d 5473 val += sec->output_section->vma + sec->output_offset;
8387904d
AM
5474 }
5475 break;
5476 }
5477 }
645ea6a9 5478
645ea6a9 5479 return val;
8387904d
AM
5480}
5481
aef36ac1
AM
5482/* If the ELF symbol SYM might be a function in SEC, return the
5483 function size and set *CODE_OFF to the function's entry point,
5484 otherwise return zero. */
9f296da3 5485
aef36ac1
AM
5486static bfd_size_type
5487ppc64_elf_maybe_function_sym (const asymbol *sym, asection *sec,
5488 bfd_vma *code_off)
9f296da3 5489{
aef36ac1
AM
5490 bfd_size_type size;
5491
5492 if ((sym->flags & (BSF_SECTION_SYM | BSF_FILE | BSF_OBJECT
5493 | BSF_THREAD_LOCAL | BSF_RELC | BSF_SRELC)) != 0)
5494 return 0;
5495
5496 size = 0;
5497 if (!(sym->flags & BSF_SYNTHETIC))
5498 size = ((elf_symbol_type *) sym)->internal_elf_sym.st_size;
5499
5500 if (strcmp (sym->section->name, ".opd") == 0)
9f296da3 5501 {
b07bca4e
AM
5502 struct _opd_sec_data *opd = get_opd_info (sym->section);
5503 bfd_vma symval = sym->value;
5504
5505 if (opd != NULL
5506 && opd->adjust != NULL
5507 && elf_section_data (sym->section)->relocs != NULL)
5508 {
5509 /* opd_entry_value will use cached relocs that have been
5510 adjusted, but with raw symbols. That means both local
5511 and global symbols need adjusting. */
5512 long adjust = opd->adjust[OPD_NDX (symval)];
5513 if (adjust == -1)
5514 return 0;
5515 symval += adjust;
5516 }
5517
5518 if (opd_entry_value (sym->section, symval,
aef36ac1
AM
5519 &sec, code_off, TRUE) == (bfd_vma) -1)
5520 return 0;
5521 /* An old ABI binary with dot-syms has a size of 24 on the .opd
5522 symbol. This size has nothing to do with the code size of the
5523 function, which is what we're supposed to return, but the
5524 code size isn't available without looking up the dot-sym.
5525 However, doing that would be a waste of time particularly
5526 since elf_find_function will look at the dot-sym anyway.
5527 Now, elf_find_function will keep the largest size of any
5528 function sym found at the code address of interest, so return
5529 1 here to avoid it incorrectly caching a larger function size
5530 for a small function. This does mean we return the wrong
5531 size for a new-ABI function of size 24, but all that does is
5532 disable caching for such functions. */
5533 if (size == 24)
5534 size = 1;
9f296da3 5535 }
aef36ac1
AM
5536 else
5537 {
5538 if (sym->section != sec)
5539 return 0;
5540 *code_off = sym->value;
5541 }
5542 if (size == 0)
5543 size = 1;
5544 return size;
9f296da3
AM
5545}
5546
f378ab09
AM
5547/* Return true if symbol is a strong function defined in an ELFv2
5548 object with st_other localentry bits of zero, ie. its local entry
5549 point coincides with its global entry point. */
5550
5551static bfd_boolean
5552is_elfv2_localentry0 (struct elf_link_hash_entry *h)
5553{
5554 return (h != NULL
5555 && h->type == STT_FUNC
5556 && h->root.type == bfd_link_hash_defined
5557 && (STO_PPC64_LOCAL_MASK & h->other) == 0
ed7007c1 5558 && !ppc_elf_hash_entry (h)->non_zero_localentry
f378ab09
AM
5559 && is_ppc64_elf (h->root.u.def.section->owner)
5560 && abiversion (h->root.u.def.section->owner) >= 2);
5561}
5562
854b41e7
AM
5563/* Return true if symbol is defined in a regular object file. */
5564
5565static bfd_boolean
5566is_static_defined (struct elf_link_hash_entry *h)
5567{
5568 return ((h->root.type == bfd_link_hash_defined
5569 || h->root.type == bfd_link_hash_defweak)
5570 && h->root.u.def.section != NULL
5571 && h->root.u.def.section->output_section != NULL);
5572}
5573
b31867b6
AM
5574/* If FDH is a function descriptor symbol, return the associated code
5575 entry symbol if it is defined. Return NULL otherwise. */
5576
5577static struct ppc_link_hash_entry *
5578defined_code_entry (struct ppc_link_hash_entry *fdh)
5579{
5580 if (fdh->is_func_descriptor)
5581 {
5582 struct ppc_link_hash_entry *fh = ppc_follow_link (fdh->oh);
5583 if (fh->elf.root.type == bfd_link_hash_defined
5584 || fh->elf.root.type == bfd_link_hash_defweak)
5585 return fh;
5586 }
5587 return NULL;
5588}
5589
5590/* If FH is a function code entry symbol, return the associated
5591 function descriptor symbol if it is defined. Return NULL otherwise. */
5592
5593static struct ppc_link_hash_entry *
5594defined_func_desc (struct ppc_link_hash_entry *fh)
5595{
5596 if (fh->oh != NULL
5597 && fh->oh->is_func_descriptor)
5598 {
5599 struct ppc_link_hash_entry *fdh = ppc_follow_link (fh->oh);
5600 if (fdh->elf.root.type == bfd_link_hash_defined
5601 || fdh->elf.root.type == bfd_link_hash_defweak)
5602 return fdh;
5603 }
5604 return NULL;
5605}
5606
ed7007c1
AM
5607/* Given H is a symbol that satisfies is_static_defined, return the
5608 value in the output file. */
5609
5610static bfd_vma
5611defined_sym_val (struct elf_link_hash_entry *h)
5612{
5613 return (h->root.u.def.section->output_section->vma
5614 + h->root.u.def.section->output_offset
5615 + h->root.u.def.value);
5616}
5617
5618/* Return true if H matches __tls_get_addr or one of its variants. */
5619
5620static bfd_boolean
5621is_tls_get_addr (struct elf_link_hash_entry *h,
5622 struct ppc_link_hash_table *htab)
5623{
9e7028aa
AM
5624 return (h == &htab->tls_get_addr_fd->elf || h == &htab->tga_desc_fd->elf
5625 || h == &htab->tls_get_addr->elf || h == &htab->tga_desc->elf);
ed7007c1
AM
5626}
5627
8c5b4e52
AM
5628static bfd_boolean func_desc_adjust (struct elf_link_hash_entry *, void *);
5629
5630/* Garbage collect sections, after first dealing with dot-symbols. */
5631
5632static bfd_boolean
5633ppc64_elf_gc_sections (bfd *abfd, struct bfd_link_info *info)
5634{
5635 struct ppc_link_hash_table *htab = ppc_hash_table (info);
5636
5637 if (htab != NULL && htab->need_func_desc_adj)
5638 {
5639 elf_link_hash_traverse (&htab->elf, func_desc_adjust, info);
5640 htab->need_func_desc_adj = 0;
5641 }
5642 return bfd_elf_gc_sections (abfd, info);
5643}
5644
74f0fb50
AM
5645/* Mark all our entry sym sections, both opd and code section. */
5646
5647static void
5648ppc64_elf_gc_keep (struct bfd_link_info *info)
5649{
5650 struct ppc_link_hash_table *htab = ppc_hash_table (info);
5651 struct bfd_sym_chain *sym;
5652
4dfe6ac6
NC
5653 if (htab == NULL)
5654 return;
5655
74f0fb50
AM
5656 for (sym = info->gc_sym_list; sym != NULL; sym = sym->next)
5657 {
b31867b6 5658 struct ppc_link_hash_entry *eh, *fh;
74f0fb50
AM
5659 asection *sec;
5660
ed7007c1
AM
5661 eh = ppc_elf_hash_entry (elf_link_hash_lookup (&htab->elf, sym->name,
5662 FALSE, FALSE, TRUE));
74f0fb50
AM
5663 if (eh == NULL)
5664 continue;
5665 if (eh->elf.root.type != bfd_link_hash_defined
5666 && eh->elf.root.type != bfd_link_hash_defweak)
5667 continue;
5668
b31867b6
AM
5669 fh = defined_code_entry (eh);
5670 if (fh != NULL)
74f0fb50 5671 {
b31867b6 5672 sec = fh->elf.root.u.def.section;
74f0fb50
AM
5673 sec->flags |= SEC_KEEP;
5674 }
5675 else if (get_opd_info (eh->elf.root.u.def.section) != NULL
5676 && opd_entry_value (eh->elf.root.u.def.section,
5677 eh->elf.root.u.def.value,
aef36ac1 5678 &sec, NULL, FALSE) != (bfd_vma) -1)
74f0fb50
AM
5679 sec->flags |= SEC_KEEP;
5680
5681 sec = eh->elf.root.u.def.section;
5682 sec->flags |= SEC_KEEP;
5683 }
5684}
5685
64d03ab5
AM
5686/* Mark sections containing dynamically referenced symbols. When
5687 building shared libraries, we must assume that any visible symbol is
5688 referenced. */
5689
5690static bfd_boolean
5691ppc64_elf_gc_mark_dynamic_ref (struct elf_link_hash_entry *h, void *inf)
5692{
5693 struct bfd_link_info *info = (struct bfd_link_info *) inf;
ed7007c1 5694 struct ppc_link_hash_entry *eh = ppc_elf_hash_entry (h);
b31867b6 5695 struct ppc_link_hash_entry *fdh;
b407645f 5696 struct bfd_elf_dynamic_list *d = info->dynamic_list;
64d03ab5 5697
64d03ab5 5698 /* Dynamic linking info is on the func descriptor sym. */
b31867b6
AM
5699 fdh = defined_func_desc (eh);
5700 if (fdh != NULL)
5701 eh = fdh;
64d03ab5
AM
5702
5703 if ((eh->elf.root.type == bfd_link_hash_defined
5704 || eh->elf.root.type == bfd_link_hash_defweak)
87e79a65 5705 && ((eh->elf.ref_dynamic && !eh->elf.forced_local)
1c9177d9 5706 || ((eh->elf.def_regular || ELF_COMMON_DEF_P (&eh->elf))
64d03ab5 5707 && ELF_ST_VISIBILITY (eh->elf.other) != STV_INTERNAL
4c58e0d8 5708 && ELF_ST_VISIBILITY (eh->elf.other) != STV_HIDDEN
0e1862bb 5709 && (!bfd_link_executable (info)
e278ae05 5710 || info->gc_keep_exported
b407645f
AM
5711 || info->export_dynamic
5712 || (eh->elf.dynamic
5713 && d != NULL
2cdcc330
AM
5714 && (*d->match) (&d->head, NULL,
5715 eh->elf.root.root.string)))
e278ae05 5716 && (eh->elf.versioned >= versioned
4c58e0d8
AM
5717 || !bfd_hide_sym_by_version (info->version_info,
5718 eh->elf.root.root.string)))))
64d03ab5
AM
5719 {
5720 asection *code_sec;
b31867b6 5721 struct ppc_link_hash_entry *fh;
64d03ab5
AM
5722
5723 eh->elf.root.u.def.section->flags |= SEC_KEEP;
5724
5725 /* Function descriptor syms cause the associated
5726 function code sym section to be marked. */
b31867b6
AM
5727 fh = defined_code_entry (eh);
5728 if (fh != NULL)
5729 {
5730 code_sec = fh->elf.root.u.def.section;
5731 code_sec->flags |= SEC_KEEP;
5732 }
64d03ab5
AM
5733 else if (get_opd_info (eh->elf.root.u.def.section) != NULL
5734 && opd_entry_value (eh->elf.root.u.def.section,
5735 eh->elf.root.u.def.value,
aef36ac1 5736 &code_sec, NULL, FALSE) != (bfd_vma) -1)
64d03ab5
AM
5737 code_sec->flags |= SEC_KEEP;
5738 }
5739
5740 return TRUE;
5741}
5742
5bd4f169
AM
5743/* Return the section that should be marked against GC for a given
5744 relocation. */
5745
5746static asection *
4ce794b7 5747ppc64_elf_gc_mark_hook (asection *sec,
fb34365b 5748 struct bfd_link_info *info,
4ce794b7
AM
5749 Elf_Internal_Rela *rel,
5750 struct elf_link_hash_entry *h,
5751 Elf_Internal_Sym *sym)
5bd4f169 5752{
ccfa59ea
AM
5753 asection *rsec;
5754
ccfa59ea
AM
5755 /* Syms return NULL if we're marking .opd, so we avoid marking all
5756 function sections, as all functions are referenced in .opd. */
5757 rsec = NULL;
5758 if (get_opd_info (sec) != NULL)
5759 return rsec;
1e2f5b6e 5760
5bd4f169
AM
5761 if (h != NULL)
5762 {
04c9666a 5763 enum elf_ppc64_reloc_type r_type;
b31867b6 5764 struct ppc_link_hash_entry *eh, *fh, *fdh;
a33d1f77 5765
4ce794b7 5766 r_type = ELF64_R_TYPE (rel->r_info);
a33d1f77 5767 switch (r_type)
5bd4f169
AM
5768 {
5769 case R_PPC64_GNU_VTINHERIT:
5770 case R_PPC64_GNU_VTENTRY:
5771 break;
5772
5773 default:
5774 switch (h->root.type)
5775 {
5776 case bfd_link_hash_defined:
5777 case bfd_link_hash_defweak:
ed7007c1 5778 eh = ppc_elf_hash_entry (h);
b31867b6
AM
5779 fdh = defined_func_desc (eh);
5780 if (fdh != NULL)
8c5b4e52
AM
5781 {
5782 /* -mcall-aixdesc code references the dot-symbol on
5783 a call reloc. Mark the function descriptor too
5784 against garbage collection. */
5785 fdh->elf.mark = 1;
60d67dc8
AM
5786 if (fdh->elf.is_weakalias)
5787 weakdef (&fdh->elf)->mark = 1;
8c5b4e52
AM
5788 eh = fdh;
5789 }
1e2f5b6e
AM
5790
5791 /* Function descriptor syms cause the associated
5792 function code sym section to be marked. */
b31867b6
AM
5793 fh = defined_code_entry (eh);
5794 if (fh != NULL)
ccfa59ea
AM
5795 {
5796 /* They also mark their opd section. */
74f0fb50 5797 eh->elf.root.u.def.section->gc_mark = 1;
ccfa59ea 5798
b31867b6 5799 rsec = fh->elf.root.u.def.section;
ccfa59ea 5800 }
8387904d
AM
5801 else if (get_opd_info (eh->elf.root.u.def.section) != NULL
5802 && opd_entry_value (eh->elf.root.u.def.section,
5803 eh->elf.root.u.def.value,
aef36ac1 5804 &rsec, NULL, FALSE) != (bfd_vma) -1)
74f0fb50 5805 eh->elf.root.u.def.section->gc_mark = 1;
ccfa59ea 5806 else
1e2f5b6e
AM
5807 rsec = h->root.u.def.section;
5808 break;
5bd4f169
AM
5809
5810 case bfd_link_hash_common:
1e2f5b6e
AM
5811 rsec = h->root.u.c.p->section;
5812 break;
5bd4f169
AM
5813
5814 default:
fb34365b 5815 return _bfd_elf_gc_mark_hook (sec, info, rel, h, sym);
5bd4f169
AM
5816 }
5817 }
5818 }
5819 else
5820 {
74f0fb50 5821 struct _opd_sec_data *opd;
1e2f5b6e
AM
5822
5823 rsec = bfd_section_from_elf_index (sec->owner, sym->st_shndx);
74f0fb50
AM
5824 opd = get_opd_info (rsec);
5825 if (opd != NULL && opd->func_sec != NULL)
ccfa59ea 5826 {
74f0fb50 5827 rsec->gc_mark = 1;
ccfa59ea 5828
51aecdc5 5829 rsec = opd->func_sec[OPD_NDX (sym->st_value + rel->r_addend)];
ccfa59ea 5830 }
5bd4f169
AM
5831 }
5832
1e2f5b6e 5833 return rsec;
5bd4f169
AM
5834}
5835
deb0e272
AM
5836/* The maximum size of .sfpr. */
5837#define SFPR_MAX (218*4)
5838
5839struct sfpr_def_parms
5840{
699733f6
AM
5841 const char name[12];
5842 unsigned char lo, hi;
2cdcc330
AM
5843 bfd_byte *(*write_ent) (bfd *, bfd_byte *, int);
5844 bfd_byte *(*write_tail) (bfd *, bfd_byte *, int);
deb0e272
AM
5845};
5846
a4b6fadd
AM
5847/* Auto-generate _save*, _rest* functions in .sfpr.
5848 If STUB_SEC is non-null, define alias symbols in STUB_SEC
5849 instead. */
deb0e272 5850
4dfe6ac6 5851static bfd_boolean
a4b6fadd
AM
5852sfpr_define (struct bfd_link_info *info,
5853 const struct sfpr_def_parms *parm,
5854 asection *stub_sec)
deb0e272
AM
5855{
5856 struct ppc_link_hash_table *htab = ppc_hash_table (info);
5857 unsigned int i;
5858 size_t len = strlen (parm->name);
5859 bfd_boolean writing = FALSE;
699733f6 5860 char sym[16];
deb0e272 5861
4dfe6ac6
NC
5862 if (htab == NULL)
5863 return FALSE;
5864
deb0e272
AM
5865 memcpy (sym, parm->name, len);
5866 sym[len + 2] = 0;
5867
5868 for (i = parm->lo; i <= parm->hi; i++)
5869 {
a4b6fadd 5870 struct ppc_link_hash_entry *h;
deb0e272
AM
5871
5872 sym[len + 0] = i / 10 + '0';
5873 sym[len + 1] = i % 10 + '0';
ed7007c1
AM
5874 h = ppc_elf_hash_entry (elf_link_hash_lookup (&htab->elf, sym,
5875 writing, TRUE, TRUE));
a4b6fadd 5876 if (stub_sec != NULL)
deb0e272 5877 {
a4b6fadd
AM
5878 if (h != NULL
5879 && h->elf.root.type == bfd_link_hash_defined
5880 && h->elf.root.u.def.section == htab->sfpr)
5881 {
5882 struct elf_link_hash_entry *s;
5883 char buf[32];
5884 sprintf (buf, "%08x.%s", stub_sec->id & 0xffffffff, sym);
5885 s = elf_link_hash_lookup (&htab->elf, buf, TRUE, TRUE, FALSE);
5886 if (s == NULL)
5887 return FALSE;
779f2ae7 5888 if (s->root.type == bfd_link_hash_new)
a4b6fadd
AM
5889 {
5890 s->root.type = bfd_link_hash_defined;
5891 s->root.u.def.section = stub_sec;
7dda8d3c 5892 s->root.u.def.value = (stub_sec->size - htab->sfpr->size
a4b6fadd
AM
5893 + h->elf.root.u.def.value);
5894 s->ref_regular = 1;
5895 s->def_regular = 1;
5896 s->ref_regular_nonweak = 1;
5897 s->forced_local = 1;
5898 s->non_elf = 0;
5899 s->root.linker_def = 1;
5900 }
5901 }
5902 continue;
5903 }
5904 if (h != NULL)
5905 {
5906 h->save_res = 1;
5907 if (!h->elf.def_regular)
deb0e272 5908 {
a4b6fadd
AM
5909 h->elf.root.type = bfd_link_hash_defined;
5910 h->elf.root.u.def.section = htab->sfpr;
5911 h->elf.root.u.def.value = htab->sfpr->size;
5912 h->elf.type = STT_FUNC;
5913 h->elf.def_regular = 1;
b32547cd 5914 h->elf.non_elf = 0;
a4b6fadd
AM
5915 _bfd_elf_link_hash_hide_symbol (info, &h->elf, TRUE);
5916 writing = TRUE;
deb0e272 5917 if (htab->sfpr->contents == NULL)
a4b6fadd 5918 {
2cdcc330
AM
5919 htab->sfpr->contents
5920 = bfd_alloc (htab->elf.dynobj, SFPR_MAX);
a4b6fadd
AM
5921 if (htab->sfpr->contents == NULL)
5922 return FALSE;
5923 }
deb0e272
AM
5924 }
5925 }
5926 if (writing)
5927 {
5928 bfd_byte *p = htab->sfpr->contents + htab->sfpr->size;
5929 if (i != parm->hi)
5930 p = (*parm->write_ent) (htab->elf.dynobj, p, i);
5931 else
5932 p = (*parm->write_tail) (htab->elf.dynobj, p, i);
5933 htab->sfpr->size = p - htab->sfpr->contents;
5934 }
5935 }
5936
5937 return TRUE;
5938}
5939
5940static bfd_byte *
5941savegpr0 (bfd *abfd, bfd_byte *p, int r)
5942{
5943 bfd_put_32 (abfd, STD_R0_0R1 + (r << 21) + (1 << 16) - (32 - r) * 8, p);
5944 return p + 4;
5945}
5946
5947static bfd_byte *
5948savegpr0_tail (bfd *abfd, bfd_byte *p, int r)
5949{
5950 p = savegpr0 (abfd, p, r);
a078d95a 5951 bfd_put_32 (abfd, STD_R0_0R1 + STK_LR, p);
deb0e272
AM
5952 p = p + 4;
5953 bfd_put_32 (abfd, BLR, p);
5954 return p + 4;
5955}
5956
5957static bfd_byte *
5958restgpr0 (bfd *abfd, bfd_byte *p, int r)
5959{
5960 bfd_put_32 (abfd, LD_R0_0R1 + (r << 21) + (1 << 16) - (32 - r) * 8, p);
5961 return p + 4;
5962}
5963
5964static bfd_byte *
5965restgpr0_tail (bfd *abfd, bfd_byte *p, int r)
5966{
a078d95a 5967 bfd_put_32 (abfd, LD_R0_0R1 + STK_LR, p);
deb0e272
AM
5968 p = p + 4;
5969 p = restgpr0 (abfd, p, r);
5970 bfd_put_32 (abfd, MTLR_R0, p);
5971 p = p + 4;
5972 if (r == 29)
5973 {
5974 p = restgpr0 (abfd, p, 30);
5975 p = restgpr0 (abfd, p, 31);
5976 }
5977 bfd_put_32 (abfd, BLR, p);
5978 return p + 4;
5979}
5980
5981static bfd_byte *
5982savegpr1 (bfd *abfd, bfd_byte *p, int r)
5983{
5984 bfd_put_32 (abfd, STD_R0_0R12 + (r << 21) + (1 << 16) - (32 - r) * 8, p);
5985 return p + 4;
5986}
5987
5988static bfd_byte *
5989savegpr1_tail (bfd *abfd, bfd_byte *p, int r)
5990{
5991 p = savegpr1 (abfd, p, r);
5992 bfd_put_32 (abfd, BLR, p);
5993 return p + 4;
5994}
5995
5996static bfd_byte *
5997restgpr1 (bfd *abfd, bfd_byte *p, int r)
5998{
5999 bfd_put_32 (abfd, LD_R0_0R12 + (r << 21) + (1 << 16) - (32 - r) * 8, p);
6000 return p + 4;
6001}
6002
6003static bfd_byte *
6004restgpr1_tail (bfd *abfd, bfd_byte *p, int r)
6005{
6006 p = restgpr1 (abfd, p, r);
6007 bfd_put_32 (abfd, BLR, p);
6008 return p + 4;
6009}
6010
6011static bfd_byte *
6012savefpr (bfd *abfd, bfd_byte *p, int r)
6013{
6014 bfd_put_32 (abfd, STFD_FR0_0R1 + (r << 21) + (1 << 16) - (32 - r) * 8, p);
6015 return p + 4;
6016}
6017
6018static bfd_byte *
6019savefpr0_tail (bfd *abfd, bfd_byte *p, int r)
6020{
6021 p = savefpr (abfd, p, r);
a078d95a 6022 bfd_put_32 (abfd, STD_R0_0R1 + STK_LR, p);
deb0e272
AM
6023 p = p + 4;
6024 bfd_put_32 (abfd, BLR, p);
6025 return p + 4;
6026}
6027
6028static bfd_byte *
6029restfpr (bfd *abfd, bfd_byte *p, int r)
6030{
6031 bfd_put_32 (abfd, LFD_FR0_0R1 + (r << 21) + (1 << 16) - (32 - r) * 8, p);
6032 return p + 4;
6033}
6034
6035static bfd_byte *
6036restfpr0_tail (bfd *abfd, bfd_byte *p, int r)
6037{
a078d95a 6038 bfd_put_32 (abfd, LD_R0_0R1 + STK_LR, p);
deb0e272
AM
6039 p = p + 4;
6040 p = restfpr (abfd, p, r);
6041 bfd_put_32 (abfd, MTLR_R0, p);
6042 p = p + 4;
6043 if (r == 29)
6044 {
6045 p = restfpr (abfd, p, 30);
6046 p = restfpr (abfd, p, 31);
6047 }
6048 bfd_put_32 (abfd, BLR, p);
6049 return p + 4;
6050}
6051
6052static bfd_byte *
6053savefpr1_tail (bfd *abfd, bfd_byte *p, int r)
6054{
6055 p = savefpr (abfd, p, r);
6056 bfd_put_32 (abfd, BLR, p);
6057 return p + 4;
6058}
6059
6060static bfd_byte *
6061restfpr1_tail (bfd *abfd, bfd_byte *p, int r)
6062{
6063 p = restfpr (abfd, p, r);
6064 bfd_put_32 (abfd, BLR, p);
6065 return p + 4;
6066}
6067
6068static bfd_byte *
6069savevr (bfd *abfd, bfd_byte *p, int r)
6070{
6071 bfd_put_32 (abfd, LI_R12_0 + (1 << 16) - (32 - r) * 16, p);
6072 p = p + 4;
6073 bfd_put_32 (abfd, STVX_VR0_R12_R0 + (r << 21), p);
6074 return p + 4;
6075}
6076
6077static bfd_byte *
6078savevr_tail (bfd *abfd, bfd_byte *p, int r)
6079{
6080 p = savevr (abfd, p, r);
6081 bfd_put_32 (abfd, BLR, p);
6082 return p + 4;
6083}
6084
6085static bfd_byte *
6086restvr (bfd *abfd, bfd_byte *p, int r)
6087{
6088 bfd_put_32 (abfd, LI_R12_0 + (1 << 16) - (32 - r) * 16, p);
6089 p = p + 4;
6090 bfd_put_32 (abfd, LVX_VR0_R12_R0 + (r << 21), p);
6091 return p + 4;
6092}
6093
6094static bfd_byte *
6095restvr_tail (bfd *abfd, bfd_byte *p, int r)
6096{
6097 p = restvr (abfd, p, r);
6098 bfd_put_32 (abfd, BLR, p);
6099 return p + 4;
6100}
6101
9e7028aa
AM
6102#define STDU_R1_0R1 0xf8210001
6103#define ADDI_R1_R1 0x38210000
6104
6105/* Emit prologue of wrapper preserving regs around a call to
6106 __tls_get_addr_opt. */
6107
6108static bfd_byte *
6109tls_get_addr_prologue (bfd *obfd, bfd_byte *p, struct ppc_link_hash_table *htab)
6110{
6111 unsigned int i;
6112
6113 bfd_put_32 (obfd, MFLR_R0, p);
6114 p += 4;
6115 bfd_put_32 (obfd, STD_R0_0R1 + 16, p);
6116 p += 4;
6117
6118 if (htab->opd_abi)
6119 {
6120 for (i = 4; i < 12; i++)
6121 {
6122 bfd_put_32 (obfd,
6123 STD_R0_0R1 | i << 21 | (-(13 - i) * 8 & 0xffff), p);
6124 p += 4;
6125 }
6126 bfd_put_32 (obfd, STDU_R1_0R1 | (-128 & 0xffff), p);
6127 p += 4;
6128 }
6129 else
6130 {
6131 for (i = 4; i < 12; i++)
6132 {
6133 bfd_put_32 (obfd,
6134 STD_R0_0R1 | i << 21 | (-(12 - i) * 8 & 0xffff), p);
6135 p += 4;
6136 }
6137 bfd_put_32 (obfd, STDU_R1_0R1 | (-96 & 0xffff), p);
6138 p += 4;
6139 }
6140 return p;
6141}
6142
6143/* Emit epilogue of wrapper preserving regs around a call to
6144 __tls_get_addr_opt. */
6145
6146static bfd_byte *
6147tls_get_addr_epilogue (bfd *obfd, bfd_byte *p, struct ppc_link_hash_table *htab)
6148{
6149 unsigned int i;
6150
6151 if (htab->opd_abi)
6152 {
6153 for (i = 4; i < 12; i++)
6154 {
6155 bfd_put_32 (obfd, LD_R0_0R1 | i << 21 | (128 - (13 - i) * 8), p);
6156 p += 4;
6157 }
6158 bfd_put_32 (obfd, ADDI_R1_R1 | 128, p);
6159 p += 4;
6160 }
6161 else
6162 {
6163 for (i = 4; i < 12; i++)
6164 {
6165 bfd_put_32 (obfd, LD_R0_0R1 | i << 21 | (96 - (12 - i) * 8), p);
6166 p += 4;
6167 }
6168 bfd_put_32 (obfd, ADDI_R1_R1 | 96, p);
6169 p += 4;
6170 }
6171 bfd_put_32 (obfd, LD_R0_0R1 | 16, p);
6172 p += 4;
6173 bfd_put_32 (obfd, MTLR_R0, p);
6174 p += 4;
6175 bfd_put_32 (obfd, BLR, p);
6176 p += 4;
6177 return p;
6178}
6179
e86ce104
AM
6180/* Called via elf_link_hash_traverse to transfer dynamic linking
6181 information on function code symbol entries to their corresponding
6182 function descriptor symbol entries. */
deb0e272 6183
b34976b6 6184static bfd_boolean
4ce794b7 6185func_desc_adjust (struct elf_link_hash_entry *h, void *inf)
5bd4f169 6186{
e86ce104 6187 struct bfd_link_info *info;
65f38f15 6188 struct ppc_link_hash_table *htab;
50bc7936
AM
6189 struct ppc_link_hash_entry *fh;
6190 struct ppc_link_hash_entry *fdh;
6191 bfd_boolean force_local;
5bd4f169 6192
ed7007c1 6193 fh = ppc_elf_hash_entry (h);
50bc7936 6194 if (fh->elf.root.type == bfd_link_hash_indirect)
b34976b6 6195 return TRUE;
e86ce104 6196
8c5b4e52
AM
6197 if (!fh->is_func)
6198 return TRUE;
6199
6200 if (fh->elf.root.root.string[0] != '.'
6201 || fh->elf.root.root.string[1] == '\0')
6202 return TRUE;
6203
4ce794b7 6204 info = inf;
65f38f15 6205 htab = ppc_hash_table (info);
4dfe6ac6
NC
6206 if (htab == NULL)
6207 return FALSE;
5bd4f169 6208
8c5b4e52
AM
6209 /* Find the corresponding function descriptor symbol. */
6210 fdh = lookup_fdh (fh, htab);
6211
c09bdfe5
AM
6212 /* Resolve undefined references to dot-symbols as the value
6213 in the function descriptor, if we have one in a regular object.
6214 This is to satisfy cases like ".quad .foo". Calls to functions
6215 in dynamic objects are handled elsewhere. */
8c5b4e52
AM
6216 if ((fh->elf.root.type == bfd_link_hash_undefined
6217 || fh->elf.root.type == bfd_link_hash_undefweak)
6218 && (fdh->elf.root.type == bfd_link_hash_defined
6219 || fdh->elf.root.type == bfd_link_hash_defweak)
b31867b6
AM
6220 && get_opd_info (fdh->elf.root.u.def.section) != NULL
6221 && opd_entry_value (fdh->elf.root.u.def.section,
6222 fdh->elf.root.u.def.value,
c09bdfe5 6223 &fh->elf.root.u.def.section,
aef36ac1 6224 &fh->elf.root.u.def.value, FALSE) != (bfd_vma) -1)
c09bdfe5 6225 {
b31867b6 6226 fh->elf.root.type = fdh->elf.root.type;
f5385ebf 6227 fh->elf.forced_local = 1;
b31867b6
AM
6228 fh->elf.def_regular = fdh->elf.def_regular;
6229 fh->elf.def_dynamic = fdh->elf.def_dynamic;
c09bdfe5
AM
6230 }
6231
8c5b4e52
AM
6232 if (!fh->elf.dynamic)
6233 {
6234 struct plt_entry *ent;
5bd4f169 6235
8c5b4e52
AM
6236 for (ent = fh->elf.plt.plist; ent != NULL; ent = ent->next)
6237 if (ent->plt.refcount > 0)
6238 break;
6239 if (ent == NULL)
6240 return TRUE;
6241 }
5bd4f169 6242
8c5b4e52 6243 /* Create a descriptor as undefined if necessary. */
50bc7936 6244 if (fdh == NULL
0e1862bb 6245 && !bfd_link_executable (info)
50bc7936
AM
6246 && (fh->elf.root.type == bfd_link_hash_undefined
6247 || fh->elf.root.type == bfd_link_hash_undefweak))
6248 {
908b32fc 6249 fdh = make_fdh (info, fh);
bb700d78
AM
6250 if (fdh == NULL)
6251 return FALSE;
50bc7936 6252 }
648cca2c 6253
8c5b4e52 6254 /* We can't support overriding of symbols on a fake descriptor. */
908b32fc
AM
6255 if (fdh != NULL
6256 && fdh->fake
8c5b4e52
AM
6257 && (fh->elf.root.type == bfd_link_hash_defined
6258 || fh->elf.root.type == bfd_link_hash_defweak))
6259 _bfd_elf_link_hash_hide_symbol (info, &fdh->elf, TRUE);
908b32fc 6260
8c5b4e52
AM
6261 /* Transfer dynamic linking information to the function descriptor. */
6262 if (fdh != NULL)
6263 {
f5385ebf
AM
6264 fdh->elf.ref_regular |= fh->elf.ref_regular;
6265 fdh->elf.ref_dynamic |= fh->elf.ref_dynamic;
6266 fdh->elf.ref_regular_nonweak |= fh->elf.ref_regular_nonweak;
6267 fdh->elf.non_got_ref |= fh->elf.non_got_ref;
8c5b4e52
AM
6268 fdh->elf.dynamic |= fh->elf.dynamic;
6269 fdh->elf.needs_plt |= (fh->elf.needs_plt
6270 || fh->elf.type == STT_FUNC
6271 || fh->elf.type == STT_GNU_IFUNC);
6272 move_plt_plist (fh, fdh);
6273
6274 if (!fdh->elf.forced_local
6275 && fh->elf.dynindx != -1)
6276 if (!bfd_elf_link_record_dynamic_symbol (info, &fdh->elf))
6277 return FALSE;
e86ce104
AM
6278 }
6279
50bc7936
AM
6280 /* Now that the info is on the function descriptor, clear the
6281 function code sym info. Any function code syms for which we
6282 don't have a definition in a regular file, we force local.
6283 This prevents a shared library from exporting syms that have
6284 been imported from another library. Function code syms that
6285 are really in the library we must leave global to prevent the
6286 linker dragging in a definition from a static library. */
93f3fa99
AM
6287 force_local = (!fh->elf.def_regular
6288 || fdh == NULL
6289 || !fdh->elf.def_regular
6290 || fdh->elf.forced_local);
50bc7936
AM
6291 _bfd_elf_link_hash_hide_symbol (info, &fh->elf, force_local);
6292
b34976b6 6293 return TRUE;
e86ce104 6294}
40b8271b 6295
a4b6fadd
AM
6296static const struct sfpr_def_parms save_res_funcs[] =
6297 {
6298 { "_savegpr0_", 14, 31, savegpr0, savegpr0_tail },
6299 { "_restgpr0_", 14, 29, restgpr0, restgpr0_tail },
6300 { "_restgpr0_", 30, 31, restgpr0, restgpr0_tail },
6301 { "_savegpr1_", 14, 31, savegpr1, savegpr1_tail },
6302 { "_restgpr1_", 14, 31, restgpr1, restgpr1_tail },
6303 { "_savefpr_", 14, 31, savefpr, savefpr0_tail },
6304 { "_restfpr_", 14, 29, restfpr, restfpr0_tail },
6305 { "_restfpr_", 30, 31, restfpr, restfpr0_tail },
6306 { "._savef", 14, 31, savefpr, savefpr1_tail },
6307 { "._restf", 14, 31, restfpr, restfpr1_tail },
6308 { "_savevr_", 20, 31, savevr, savevr_tail },
6309 { "_restvr_", 20, 31, restvr, restvr_tail }
6310 };
6311
e86ce104 6312/* Called near the start of bfd_elf_size_dynamic_sections. We use
82bd7b59
AM
6313 this hook to a) provide some gcc support functions, and b) transfer
6314 dynamic linking information gathered so far on function code symbol
6315 entries, to their corresponding function descriptor symbol entries. */
deb0e272 6316
b34976b6 6317static bfd_boolean
4ce794b7
AM
6318ppc64_elf_func_desc_adjust (bfd *obfd ATTRIBUTE_UNUSED,
6319 struct bfd_link_info *info)
e86ce104
AM
6320{
6321 struct ppc_link_hash_table *htab;
6322
6323 htab = ppc_hash_table (info);
4dfe6ac6
NC
6324 if (htab == NULL)
6325 return FALSE;
6326
b32547cd
AM
6327 /* Provide any missing _save* and _rest* functions. */
6328 if (htab->sfpr != NULL)
6329 {
6330 unsigned int i;
6331
6332 htab->sfpr->size = 0;
6333 for (i = 0; i < ARRAY_SIZE (save_res_funcs); i++)
6334 if (!sfpr_define (info, &save_res_funcs[i], NULL))
6335 return FALSE;
6336 if (htab->sfpr->size == 0)
6337 htab->sfpr->flags |= SEC_EXCLUDE;
6338 }
6339
6340 if (bfd_link_relocatable (info))
6341 return TRUE;
6342
6343 if (htab->elf.hgot != NULL)
dba6fa9b
AM
6344 {
6345 _bfd_elf_link_hash_hide_symbol (info, htab->elf.hgot, TRUE);
6346 /* Make .TOC. defined so as to prevent it being made dynamic.
6347 The wrong value here is fixed later in ppc64_elf_set_toc. */
43417696
AM
6348 if (!htab->elf.hgot->def_regular
6349 || htab->elf.hgot->root.type != bfd_link_hash_defined)
6350 {
6351 htab->elf.hgot->root.type = bfd_link_hash_defined;
6352 htab->elf.hgot->root.u.def.value = 0;
6353 htab->elf.hgot->root.u.def.section = bfd_abs_section_ptr;
6354 htab->elf.hgot->def_regular = 1;
6355 htab->elf.hgot->root.linker_def = 1;
6356 }
dba6fa9b 6357 htab->elf.hgot->type = STT_OBJECT;
2cdcc330
AM
6358 htab->elf.hgot->other
6359 = (htab->elf.hgot->other & ~ELF_ST_VISIBILITY (-1)) | STV_HIDDEN;
dba6fa9b 6360 }
c66bb0ee 6361
8c5b4e52
AM
6362 if (htab->need_func_desc_adj)
6363 {
6364 elf_link_hash_traverse (&htab->elf, func_desc_adjust, info);
6365 htab->need_func_desc_adj = 0;
6366 }
805fc799 6367
b34976b6 6368 return TRUE;
e86ce104
AM
6369}
6370
98bbb1b8 6371/* Find dynamic relocs for H that apply to read-only sections. */
a345bc8d 6372
98bbb1b8 6373static asection *
a345bc8d
AM
6374readonly_dynrelocs (struct elf_link_hash_entry *h)
6375{
ed7007c1 6376 struct ppc_link_hash_entry *eh = ppc_elf_hash_entry (h);
a345bc8d
AM
6377 struct elf_dyn_relocs *p;
6378
a345bc8d
AM
6379 for (p = eh->dyn_relocs; p != NULL; p = p->next)
6380 {
6381 asection *s = p->sec->output_section;
6382
6383 if (s != NULL && (s->flags & SEC_READONLY) != 0)
98bbb1b8 6384 return p->sec;
a345bc8d 6385 }
98bbb1b8 6386 return NULL;
a345bc8d
AM
6387}
6388
d311bc8b 6389/* Return true if we have dynamic relocs against H or any of its weak
ab2477e1
AM
6390 aliases, that apply to read-only sections. Cannot be used after
6391 size_dynamic_sections. */
d311bc8b
AM
6392
6393static bfd_boolean
6394alias_readonly_dynrelocs (struct elf_link_hash_entry *h)
6395{
ed7007c1 6396 struct ppc_link_hash_entry *eh = ppc_elf_hash_entry (h);
d311bc8b
AM
6397 do
6398 {
6399 if (readonly_dynrelocs (&eh->elf))
6400 return TRUE;
ed7007c1 6401 eh = ppc_elf_hash_entry (eh->elf.u.alias);
2cdcc330
AM
6402 }
6403 while (eh != NULL && &eh->elf != h);
d311bc8b
AM
6404
6405 return FALSE;
6406}
8a2058b5 6407
8a9e8e72
AM
6408/* Return whether EH has pc-relative dynamic relocs. */
6409
6410static bfd_boolean
6411pc_dynrelocs (struct ppc_link_hash_entry *eh)
6412{
6413 struct elf_dyn_relocs *p;
6414
6415 for (p = eh->dyn_relocs; p != NULL; p = p->next)
6416 if (p->pc_count != 0)
6417 return TRUE;
6418 return FALSE;
6419}
6420
8a2058b5
AM
6421/* Return true if a global entry stub will be created for H. Valid
6422 for ELFv2 before plt entries have been allocated. */
6423
6424static bfd_boolean
6425global_entry_stub (struct elf_link_hash_entry *h)
6426{
6427 struct plt_entry *pent;
6428
6429 if (!h->pointer_equality_needed
6430 || h->def_regular)
6431 return FALSE;
6432
6433 for (pent = h->plt.plist; pent != NULL; pent = pent->next)
6434 if (pent->plt.refcount > 0
6435 && pent->addend == 0)
6436 return TRUE;
6437
6438 return FALSE;
6439}
6440
e86ce104
AM
6441/* Adjust a symbol defined by a dynamic object and referenced by a
6442 regular object. The current definition is in some section of the
6443 dynamic object, but we're not including those sections. We have to
6444 change the definition to something the rest of the link can
6445 understand. */
6446
b34976b6 6447static bfd_boolean
4ce794b7
AM
6448ppc64_elf_adjust_dynamic_symbol (struct bfd_link_info *info,
6449 struct elf_link_hash_entry *h)
e86ce104
AM
6450{
6451 struct ppc_link_hash_table *htab;
5474d94f 6452 asection *s, *srel;
e86ce104
AM
6453
6454 htab = ppc_hash_table (info);
4dfe6ac6
NC
6455 if (htab == NULL)
6456 return FALSE;
e86ce104
AM
6457
6458 /* Deal with function syms. */
6459 if (h->type == STT_FUNC
e054468f 6460 || h->type == STT_GNU_IFUNC
f5385ebf 6461 || h->needs_plt)
e86ce104 6462 {
ed7007c1 6463 bfd_boolean local = (ppc_elf_hash_entry (h)->save_res
529fe20e
AM
6464 || SYMBOL_CALLS_LOCAL (info, h)
6465 || UNDEFWEAK_NO_DYNAMIC_RELOC (info, h));
6466 /* Discard dyn_relocs when non-pic if we've decided that a
6467 function symbol is local and not an ifunc. We keep dynamic
6468 relocs for ifuncs when local rather than always emitting a
6469 plt call stub for them and defining the symbol on the call
6470 stub. We can't do that for ELFv1 anyway (a function symbol
6471 is defined on a descriptor, not code) and it can be faster at
6472 run-time due to not needing to bounce through a stub. The
6473 dyn_relocs for ifuncs will be applied even in a static
6474 executable. */
6475 if (!bfd_link_pic (info)
6476 && h->type != STT_GNU_IFUNC
6477 && local)
ed7007c1 6478 ppc_elf_hash_entry (h)->dyn_relocs = NULL;
529fe20e 6479
e86ce104
AM
6480 /* Clear procedure linkage table information for any symbol that
6481 won't need a .plt entry. */
411e1bfb
AM
6482 struct plt_entry *ent;
6483 for (ent = h->plt.plist; ent != NULL; ent = ent->next)
6484 if (ent->plt.refcount > 0)
6485 break;
8387904d 6486 if (ent == NULL
2d7ad24e
AM
6487 || (h->type != STT_GNU_IFUNC
6488 && local
3e04d765 6489 && (htab->can_convert_all_inline_plt
ed7007c1 6490 || (ppc_elf_hash_entry (h)->tls_mask
3e04d765 6491 & (TLS_TLS | PLT_KEEP)) != PLT_KEEP)))
40b8271b 6492 {
411e1bfb 6493 h->plt.plist = NULL;
f5385ebf 6494 h->needs_plt = 0;
d1eca1e4 6495 h->pointer_equality_needed = 0;
40b8271b 6496 }
8a2058b5 6497 else if (abiversion (info->output_bfd) >= 2)
a345bc8d 6498 {
d1eca1e4
AM
6499 /* Taking a function's address in a read/write section
6500 doesn't require us to define the function symbol in the
6501 executable on a global entry stub. A dynamic reloc can
8a2058b5
AM
6502 be used instead. The reason we prefer a few more dynamic
6503 relocs is that calling via a global entry stub costs a
6504 few more instructions, and pointer_equality_needed causes
6505 extra work in ld.so when resolving these symbols. */
529fe20e 6506 if (global_entry_stub (h))
d1eca1e4 6507 {
ab2477e1 6508 if (!readonly_dynrelocs (h))
529fe20e
AM
6509 {
6510 h->pointer_equality_needed = 0;
04383fd1
AM
6511 /* If we haven't seen a branch reloc and the symbol
6512 isn't an ifunc then we don't need a plt entry. */
529fe20e
AM
6513 if (!h->needs_plt)
6514 h->plt.plist = NULL;
6515 }
6516 else if (!bfd_link_pic (info))
6517 /* We are going to be defining the function symbol on the
6518 plt stub, so no dyn_relocs needed when non-pic. */
ed7007c1 6519 ppc_elf_hash_entry (h)->dyn_relocs = NULL;
d1eca1e4
AM
6520 }
6521
3988aed5
AM
6522 /* ELFv2 function symbols can't have copy relocs. */
6523 return TRUE;
6524 }
6525 else if (!h->needs_plt
ab2477e1 6526 && !readonly_dynrelocs (h))
3988aed5 6527 {
04383fd1
AM
6528 /* If we haven't seen a branch reloc and the symbol isn't an
6529 ifunc then we don't need a plt entry. */
3988aed5
AM
6530 h->plt.plist = NULL;
6531 h->pointer_equality_needed = 0;
a345bc8d
AM
6532 return TRUE;
6533 }
5bd4f169 6534 }
bbd7ec4a 6535 else
411e1bfb 6536 h->plt.plist = NULL;
5bd4f169
AM
6537
6538 /* If this is a weak symbol, and there is a real definition, the
6539 processor independent code will have arranged for us to see the
6540 real definition first, and we can just use the same value. */
60d67dc8 6541 if (h->is_weakalias)
5bd4f169 6542 {
60d67dc8
AM
6543 struct elf_link_hash_entry *def = weakdef (h);
6544 BFD_ASSERT (def->root.type == bfd_link_hash_defined);
6545 h->root.u.def.section = def->root.u.def.section;
6546 h->root.u.def.value = def->root.u.def.value;
4a7e5234
AM
6547 if (def->root.u.def.section == htab->elf.sdynbss
6548 || def->root.u.def.section == htab->elf.sdynrelro)
ed7007c1 6549 ppc_elf_hash_entry (h)->dyn_relocs = NULL;
b34976b6 6550 return TRUE;
5bd4f169
AM
6551 }
6552
5bd4f169
AM
6553 /* If we are creating a shared library, we must presume that the
6554 only references to the symbol are via the global offset table.
6555 For such cases we need not do anything here; the relocations will
6556 be handled correctly by relocate_section. */
ec73ddcd 6557 if (!bfd_link_executable (info))
b34976b6 6558 return TRUE;
5bd4f169 6559
65f38f15
AM
6560 /* If there are no references to this symbol that do not use the
6561 GOT, we don't need to generate a copy reloc. */
f5385ebf 6562 if (!h->non_got_ref)
b34976b6 6563 return TRUE;
65f38f15 6564
b186458a 6565 /* Don't generate a copy reloc for symbols defined in the executable. */
d93d1c80 6566 if (!h->def_dynamic || !h->ref_regular || h->def_regular
b186458a 6567
d93d1c80
AM
6568 /* If -z nocopyreloc was given, don't generate them either. */
6569 || info->nocopyreloc
a127494f 6570
dce2246a 6571 /* If we don't find any dynamic relocs in read-only sections, then
d93d1c80 6572 we'll be keeping the dynamic relocs and avoiding the copy reloc. */
1bdd8fac
AM
6573 || (ELIMINATE_COPY_RELOCS
6574 && !h->needs_copy
6575 && !alias_readonly_dynrelocs (h))
65f38f15 6576
d93d1c80
AM
6577 /* Protected variables do not work with .dynbss. The copy in
6578 .dynbss won't be used by the shared library with the protected
6579 definition for the variable. Text relocations are preferable
6580 to an incorrect program. */
6581 || h->protected_def)
529fe20e 6582 return TRUE;
a127494f 6583
e1c6cf61
AM
6584 if (h->type == STT_FUNC
6585 || h->type == STT_GNU_IFUNC)
97b639ba 6586 {
e1c6cf61
AM
6587 /* .dynbss copies of function symbols only work if we have
6588 ELFv1 dot-symbols. ELFv1 compilers since 2004 default to not
6589 use dot-symbols and set the function symbol size to the text
6590 size of the function rather than the size of the descriptor.
6591 That's wrong for copying a descriptor. */
ed7007c1 6592 if (ppc_elf_hash_entry (h)->oh == NULL
e1c6cf61
AM
6593 || !(h->size == 24 || h->size == 16))
6594 return TRUE;
6595
6596 /* We should never get here, but unfortunately there are old
6597 versions of gcc (circa gcc-3.2) that improperly for the
6598 ELFv1 ABI put initialized function pointers, vtable refs and
6599 suchlike in read-only sections. Allow them to proceed, but
6600 warn that this might break at runtime. */
25f53a85 6601 info->callbacks->einfo
c1c8c1ef 6602 (_("%P: copy reloc against `%pT' requires lazy plt linking; "
25f53a85 6603 "avoid setting LD_BIND_NOW=1 or upgrade gcc\n"),
97b639ba
AM
6604 h->root.root.string);
6605 }
5d35169e
AM
6606
6607 /* This is a reference to a symbol defined by a dynamic object which
6608 is not a function. */
6609
5bd4f169
AM
6610 /* We must allocate the symbol in our .dynbss section, which will
6611 become part of the .bss section of the executable. There will be
6612 an entry for this symbol in the .dynsym section. The dynamic
6613 object will contain position independent code, so all references
6614 from the dynamic object to this symbol will go through the global
6615 offset table. The dynamic linker will use the .dynsym entry to
6616 determine the address it must put in the global offset table, so
6617 both the dynamic object and the regular object will refer to the
6618 same memory location for the variable. */
5474d94f
AM
6619 if ((h->root.u.def.section->flags & SEC_READONLY) != 0)
6620 {
6621 s = htab->elf.sdynrelro;
6622 srel = htab->elf.sreldynrelro;
6623 }
6624 else
6625 {
6626 s = htab->elf.sdynbss;
6627 srel = htab->elf.srelbss;
6628 }
1d7e9d18 6629 if ((h->root.u.def.section->flags & SEC_ALLOC) != 0 && h->size != 0)
5bd4f169 6630 {
4a7e5234
AM
6631 /* We must generate a R_PPC64_COPY reloc to tell the dynamic
6632 linker to copy the initial value out of the dynamic object
6633 and into the runtime process image. */
5474d94f 6634 srel->size += sizeof (Elf64_External_Rela);
f5385ebf 6635 h->needs_copy = 1;
5bd4f169
AM
6636 }
6637
529fe20e 6638 /* We no longer want dyn_relocs. */
ed7007c1 6639 ppc_elf_hash_entry (h)->dyn_relocs = NULL;
6cabe1ea 6640 return _bfd_elf_adjust_dynamic_copy (info, h, s);
5bd4f169
AM
6641}
6642
e86ce104
AM
6643/* If given a function descriptor symbol, hide both the function code
6644 sym and the descriptor. */
6645static void
4ce794b7
AM
6646ppc64_elf_hide_symbol (struct bfd_link_info *info,
6647 struct elf_link_hash_entry *h,
6648 bfd_boolean force_local)
e86ce104 6649{
34814b9f 6650 struct ppc_link_hash_entry *eh;
e86ce104
AM
6651 _bfd_elf_link_hash_hide_symbol (info, h, force_local);
6652
87469ba2
AM
6653 if (ppc_hash_table (info) == NULL)
6654 return;
6655
ed7007c1 6656 eh = ppc_elf_hash_entry (h);
34814b9f 6657 if (eh->is_func_descriptor)
e86ce104 6658 {
34814b9f 6659 struct ppc_link_hash_entry *fh = eh->oh;
e86ce104 6660
721956f4 6661 if (fh == NULL)
d1329ca3
AM
6662 {
6663 const char *p, *q;
b8ac2841 6664 struct elf_link_hash_table *htab = elf_hash_table (info);
d1329ca3
AM
6665 char save;
6666
6667 /* We aren't supposed to use alloca in BFD because on
6668 systems which do not have alloca the version in libiberty
6669 calls xmalloc, which might cause the program to crash
6670 when it runs out of memory. This function doesn't have a
6671 return status, so there's no way to gracefully return an
6672 error. So cheat. We know that string[-1] can be safely
34814b9f
AM
6673 accessed; It's either a string in an ELF string table,
6674 or allocated in an objalloc structure. */
d1329ca3 6675
34814b9f 6676 p = eh->elf.root.root.string - 1;
d1329ca3
AM
6677 save = *p;
6678 *(char *) p = '.';
ed7007c1
AM
6679 fh = ppc_elf_hash_entry (elf_link_hash_lookup (htab, p, FALSE,
6680 FALSE, FALSE));
d1329ca3
AM
6681 *(char *) p = save;
6682
6683 /* Unfortunately, if it so happens that the string we were
6684 looking for was allocated immediately before this string,
6685 then we overwrote the string terminator. That's the only
6686 reason the lookup should fail. */
6687 if (fh == NULL)
6688 {
34814b9f
AM
6689 q = eh->elf.root.root.string + strlen (eh->elf.root.root.string);
6690 while (q >= eh->elf.root.root.string && *q == *p)
d1329ca3 6691 --q, --p;
34814b9f 6692 if (q < eh->elf.root.root.string && *p == '.')
ed7007c1
AM
6693 fh = ppc_elf_hash_entry (elf_link_hash_lookup (htab, p, FALSE,
6694 FALSE, FALSE));
d1329ca3
AM
6695 }
6696 if (fh != NULL)
6697 {
34814b9f
AM
6698 eh->oh = fh;
6699 fh->oh = eh;
d1329ca3
AM
6700 }
6701 }
e86ce104 6702 if (fh != NULL)
34814b9f 6703 _bfd_elf_link_hash_hide_symbol (info, &fh->elf, force_local);
e86ce104
AM
6704 }
6705}
6706
411e1bfb 6707static bfd_boolean
8843416a
AM
6708get_sym_h (struct elf_link_hash_entry **hp,
6709 Elf_Internal_Sym **symp,
6710 asection **symsecp,
f961d9dd 6711 unsigned char **tls_maskp,
8843416a
AM
6712 Elf_Internal_Sym **locsymsp,
6713 unsigned long r_symndx,
6714 bfd *ibfd)
411e1bfb 6715{
0ffa91dd 6716 Elf_Internal_Shdr *symtab_hdr = &elf_symtab_hdr (ibfd);
411e1bfb
AM
6717
6718 if (r_symndx >= symtab_hdr->sh_info)
6719 {
6720 struct elf_link_hash_entry **sym_hashes = elf_sym_hashes (ibfd);
6721 struct elf_link_hash_entry *h;
6722
6723 h = sym_hashes[r_symndx - symtab_hdr->sh_info];
b31867b6 6724 h = elf_follow_link (h);
411e1bfb
AM
6725
6726 if (hp != NULL)
6727 *hp = h;
6728
6729 if (symp != NULL)
6730 *symp = NULL;
6731
6732 if (symsecp != NULL)
6733 {
6734 asection *symsec = NULL;
6735 if (h->root.type == bfd_link_hash_defined
6736 || h->root.type == bfd_link_hash_defweak)
6737 symsec = h->root.u.def.section;
6738 *symsecp = symsec;
6739 }
6740
e7b938ca 6741 if (tls_maskp != NULL)
ed7007c1 6742 *tls_maskp = &ppc_elf_hash_entry (h)->tls_mask;
411e1bfb
AM
6743 }
6744 else
6745 {
6746 Elf_Internal_Sym *sym;
6747 Elf_Internal_Sym *locsyms = *locsymsp;
6748
6749 if (locsyms == NULL)
6750 {
6751 locsyms = (Elf_Internal_Sym *) symtab_hdr->contents;
6752 if (locsyms == NULL)
6753 locsyms = bfd_elf_get_elf_syms (ibfd, symtab_hdr,
6754 symtab_hdr->sh_info,
6755 0, NULL, NULL, NULL);
6756 if (locsyms == NULL)
6757 return FALSE;
6758 *locsymsp = locsyms;
6759 }
6760 sym = locsyms + r_symndx;
6761
6762 if (hp != NULL)
6763 *hp = NULL;
6764
6765 if (symp != NULL)
6766 *symp = sym;
6767
6768 if (symsecp != NULL)
cb33740c 6769 *symsecp = bfd_section_from_elf_index (ibfd, sym->st_shndx);
411e1bfb 6770
e7b938ca 6771 if (tls_maskp != NULL)
411e1bfb
AM
6772 {
6773 struct got_entry **lgot_ents;
f961d9dd 6774 unsigned char *tls_mask;
411e1bfb 6775
e7b938ca 6776 tls_mask = NULL;
411e1bfb
AM
6777 lgot_ents = elf_local_got_ents (ibfd);
6778 if (lgot_ents != NULL)
6779 {
e054468f
AM
6780 struct plt_entry **local_plt = (struct plt_entry **)
6781 (lgot_ents + symtab_hdr->sh_info);
f961d9dd 6782 unsigned char *lgot_masks = (unsigned char *)
e054468f 6783 (local_plt + symtab_hdr->sh_info);
e7b938ca 6784 tls_mask = &lgot_masks[r_symndx];
411e1bfb 6785 }
e7b938ca 6786 *tls_maskp = tls_mask;
411e1bfb
AM
6787 }
6788 }
6789 return TRUE;
6790}
6791
e7b938ca 6792/* Returns TLS_MASKP for the given REL symbol. Function return is 0 on
951fd09b 6793 error, 2 on a toc GD type suitable for optimization, 3 on a toc LD
ad8e1ba5 6794 type suitable for optimization, and 1 otherwise. */
951fd09b
AM
6795
6796static int
f961d9dd 6797get_tls_mask (unsigned char **tls_maskp,
3a71aa26
AM
6798 unsigned long *toc_symndx,
6799 bfd_vma *toc_addend,
0d4792f7 6800 Elf_Internal_Sym **locsymsp,
3a71aa26
AM
6801 const Elf_Internal_Rela *rel,
6802 bfd *ibfd)
411e1bfb
AM
6803{
6804 unsigned long r_symndx;
0d4792f7 6805 int next_r;
411e1bfb
AM
6806 struct elf_link_hash_entry *h;
6807 Elf_Internal_Sym *sym;
6808 asection *sec;
6809 bfd_vma off;
6810
6811 r_symndx = ELF64_R_SYM (rel->r_info);
e7b938ca 6812 if (!get_sym_h (&h, &sym, &sec, tls_maskp, locsymsp, r_symndx, ibfd))
951fd09b 6813 return 0;
411e1bfb 6814
37da22e5
AM
6815 if ((*tls_maskp != NULL
6816 && (**tls_maskp & TLS_TLS) != 0
6817 && **tls_maskp != (TLS_TLS | TLS_MARK))
411e1bfb 6818 || sec == NULL
6bee8834 6819 || ppc64_elf_section_data (sec) == NULL
7c8fe5c4 6820 || ppc64_elf_section_data (sec)->sec_type != sec_toc)
951fd09b 6821 return 1;
411e1bfb
AM
6822
6823 /* Look inside a TOC section too. */
6824 if (h != NULL)
6825 {
6826 BFD_ASSERT (h->root.type == bfd_link_hash_defined);
6827 off = h->root.u.def.value;
6828 }
6829 else
6830 off = sym->st_value;
6831 off += rel->r_addend;
6832 BFD_ASSERT (off % 8 == 0);
3a71aa26
AM
6833 r_symndx = ppc64_elf_section_data (sec)->u.toc.symndx[off / 8];
6834 next_r = ppc64_elf_section_data (sec)->u.toc.symndx[off / 8 + 1];
0d4792f7
AM
6835 if (toc_symndx != NULL)
6836 *toc_symndx = r_symndx;
3a71aa26
AM
6837 if (toc_addend != NULL)
6838 *toc_addend = ppc64_elf_section_data (sec)->u.toc.add[off / 8];
6839 if (!get_sym_h (&h, &sym, &sec, tls_maskp, locsymsp, r_symndx, ibfd))
6840 return 0;
854b41e7 6841 if ((h == NULL || is_static_defined (h))
0d4792f7
AM
6842 && (next_r == -1 || next_r == -2))
6843 return 1 - next_r;
951fd09b 6844 return 1;
411e1bfb
AM
6845}
6846
3b421ab3
AM
6847/* Find (or create) an entry in the tocsave hash table. */
6848
6849static struct tocsave_entry *
6850tocsave_find (struct ppc_link_hash_table *htab,
6851 enum insert_option insert,
6852 Elf_Internal_Sym **local_syms,
6853 const Elf_Internal_Rela *irela,
6854 bfd *ibfd)
6855{
6856 unsigned long r_indx;
6857 struct elf_link_hash_entry *h;
6858 Elf_Internal_Sym *sym;
6859 struct tocsave_entry ent, *p;
6860 hashval_t hash;
6861 struct tocsave_entry **slot;
6862
6863 r_indx = ELF64_R_SYM (irela->r_info);
6864 if (!get_sym_h (&h, &sym, &ent.sec, NULL, local_syms, r_indx, ibfd))
6865 return NULL;
6866 if (ent.sec == NULL || ent.sec->output_section == NULL)
6867 {
4eca0228 6868 _bfd_error_handler
871b3ab2 6869 (_("%pB: undefined symbol on R_PPC64_TOCSAVE relocation"), ibfd);
3b421ab3
AM
6870 return NULL;
6871 }
6872
6873 if (h != NULL)
6874 ent.offset = h->root.u.def.value;
6875 else
6876 ent.offset = sym->st_value;
6877 ent.offset += irela->r_addend;
6878
6879 hash = tocsave_htab_hash (&ent);
6880 slot = ((struct tocsave_entry **)
6881 htab_find_slot_with_hash (htab->tocsave_htab, &ent, hash, insert));
6882 if (slot == NULL)
6883 return NULL;
6884
6885 if (*slot == NULL)
6886 {
6887 p = (struct tocsave_entry *) bfd_alloc (ibfd, sizeof (*p));
6888 if (p == NULL)
6889 return NULL;
6890 *p = ent;
6891 *slot = p;
6892 }
6893 return *slot;
6894}
6895
754021d0 6896/* Adjust all global syms defined in opd sections. In gcc generated
8387904d 6897 code for the old ABI, these will already have been done. */
754021d0
AM
6898
6899static bfd_boolean
6900adjust_opd_syms (struct elf_link_hash_entry *h, void *inf ATTRIBUTE_UNUSED)
6901{
6902 struct ppc_link_hash_entry *eh;
6903 asection *sym_sec;
74f0fb50 6904 struct _opd_sec_data *opd;
754021d0
AM
6905
6906 if (h->root.type == bfd_link_hash_indirect)
6907 return TRUE;
6908
754021d0
AM
6909 if (h->root.type != bfd_link_hash_defined
6910 && h->root.type != bfd_link_hash_defweak)
6911 return TRUE;
6912
ed7007c1 6913 eh = ppc_elf_hash_entry (h);
754021d0
AM
6914 if (eh->adjust_done)
6915 return TRUE;
6916
6917 sym_sec = eh->elf.root.u.def.section;
74f0fb50
AM
6918 opd = get_opd_info (sym_sec);
6919 if (opd != NULL && opd->adjust != NULL)
754021d0 6920 {
51aecdc5 6921 long adjust = opd->adjust[OPD_NDX (eh->elf.root.u.def.value)];
4025353c
AM
6922 if (adjust == -1)
6923 {
6924 /* This entry has been deleted. */
b3fac117 6925 asection *dsec = ppc64_elf_tdata (sym_sec->owner)->deleted_section;
81688140
AM
6926 if (dsec == NULL)
6927 {
6928 for (dsec = sym_sec->owner->sections; dsec; dsec = dsec->next)
dbaa2011 6929 if (discarded_section (dsec))
81688140 6930 {
b3fac117 6931 ppc64_elf_tdata (sym_sec->owner)->deleted_section = dsec;
81688140
AM
6932 break;
6933 }
6934 }
4025353c 6935 eh->elf.root.u.def.value = 0;
81688140 6936 eh->elf.root.u.def.section = dsec;
4025353c
AM
6937 }
6938 else
6939 eh->elf.root.u.def.value += adjust;
754021d0
AM
6940 eh->adjust_done = 1;
6941 }
6942 return TRUE;
6943}
6944
8c1d1bb8 6945/* Handles decrementing dynamic reloc counts for the reloc specified by
19e08130 6946 R_INFO in section SEC. If LOCAL_SYMS is NULL, then H and SYM
8c1d1bb8
AM
6947 have already been determined. */
6948
6949static bfd_boolean
6950dec_dynrel_count (bfd_vma r_info,
6951 asection *sec,
6952 struct bfd_link_info *info,
6953 Elf_Internal_Sym **local_syms,
6954 struct elf_link_hash_entry *h,
19e08130 6955 Elf_Internal_Sym *sym)
8c1d1bb8
AM
6956{
6957 enum elf_ppc64_reloc_type r_type;
19e08130 6958 asection *sym_sec = NULL;
8c1d1bb8
AM
6959
6960 /* Can this reloc be dynamic? This switch, and later tests here
6961 should be kept in sync with the code in check_relocs. */
6962 r_type = ELF64_R_TYPE (r_info);
6963 switch (r_type)
6964 {
6965 default:
6966 return TRUE;
6967
1bdd8fac
AM
6968 case R_PPC64_TOC16:
6969 case R_PPC64_TOC16_DS:
6970 case R_PPC64_TOC16_LO:
6971 case R_PPC64_TOC16_HI:
6972 case R_PPC64_TOC16_HA:
6973 case R_PPC64_TOC16_LO_DS:
6974 if (h == NULL)
6975 return TRUE;
6976 break;
6977
8c1d1bb8
AM
6978 case R_PPC64_TPREL16:
6979 case R_PPC64_TPREL16_LO:
6980 case R_PPC64_TPREL16_HI:
6981 case R_PPC64_TPREL16_HA:
6982 case R_PPC64_TPREL16_DS:
6983 case R_PPC64_TPREL16_LO_DS:
f9c6b907
AM
6984 case R_PPC64_TPREL16_HIGH:
6985 case R_PPC64_TPREL16_HIGHA:
8c1d1bb8
AM
6986 case R_PPC64_TPREL16_HIGHER:
6987 case R_PPC64_TPREL16_HIGHERA:
6988 case R_PPC64_TPREL16_HIGHEST:
6989 case R_PPC64_TPREL16_HIGHESTA:
8c1d1bb8 6990 case R_PPC64_TPREL64:
c213164a 6991 case R_PPC64_TPREL34:
8c1d1bb8
AM
6992 case R_PPC64_DTPMOD64:
6993 case R_PPC64_DTPREL64:
6994 case R_PPC64_ADDR64:
6995 case R_PPC64_REL30:
6996 case R_PPC64_REL32:
6997 case R_PPC64_REL64:
6998 case R_PPC64_ADDR14:
6999 case R_PPC64_ADDR14_BRNTAKEN:
7000 case R_PPC64_ADDR14_BRTAKEN:
7001 case R_PPC64_ADDR16:
7002 case R_PPC64_ADDR16_DS:
7003 case R_PPC64_ADDR16_HA:
7004 case R_PPC64_ADDR16_HI:
f9c6b907
AM
7005 case R_PPC64_ADDR16_HIGH:
7006 case R_PPC64_ADDR16_HIGHA:
8c1d1bb8
AM
7007 case R_PPC64_ADDR16_HIGHER:
7008 case R_PPC64_ADDR16_HIGHERA:
7009 case R_PPC64_ADDR16_HIGHEST:
7010 case R_PPC64_ADDR16_HIGHESTA:
7011 case R_PPC64_ADDR16_LO:
7012 case R_PPC64_ADDR16_LO_DS:
7013 case R_PPC64_ADDR24:
7014 case R_PPC64_ADDR32:
7015 case R_PPC64_UADDR16:
7016 case R_PPC64_UADDR32:
7017 case R_PPC64_UADDR64:
7018 case R_PPC64_TOC:
5663e321
AM
7019 case R_PPC64_D34:
7020 case R_PPC64_D34_LO:
7021 case R_PPC64_D34_HI30:
7022 case R_PPC64_D34_HA30:
7023 case R_PPC64_ADDR16_HIGHER34:
7024 case R_PPC64_ADDR16_HIGHERA34:
7025 case R_PPC64_ADDR16_HIGHEST34:
7026 case R_PPC64_ADDR16_HIGHESTA34:
7027 case R_PPC64_D28:
8c1d1bb8
AM
7028 break;
7029 }
7030
7031 if (local_syms != NULL)
7032 {
7033 unsigned long r_symndx;
8c1d1bb8
AM
7034 bfd *ibfd = sec->owner;
7035
7036 r_symndx = ELF64_R_SYM (r_info);
7037 if (!get_sym_h (&h, &sym, &sym_sec, NULL, local_syms, r_symndx, ibfd))
7038 return FALSE;
7039 }
7040
ec73ddcd
AM
7041 if ((h != NULL
7042 && (h->root.type == bfd_link_hash_defweak
7043 || !h->def_regular))
7044 || (h != NULL
7045 && !bfd_link_executable (info)
7046 && !SYMBOLIC_BIND (info, h))
7047 || (bfd_link_pic (info)
7048 && must_be_dyn_reloc (info, r_type))
7049 || (!bfd_link_pic (info)
7050 && (h != NULL
7051 ? h->type == STT_GNU_IFUNC
7052 : ELF_ST_TYPE (sym->st_info) == STT_GNU_IFUNC)))
8c1d1bb8
AM
7053 ;
7054 else
7055 return TRUE;
7056
7057 if (h != NULL)
6edfbbad 7058 {
19e08130
AM
7059 struct elf_dyn_relocs *p;
7060 struct elf_dyn_relocs **pp;
ed7007c1 7061 pp = &ppc_elf_hash_entry (h)->dyn_relocs;
19e08130
AM
7062
7063 /* elf_gc_sweep may have already removed all dyn relocs associated
7064 with local syms for a given section. Also, symbol flags are
7065 changed by elf_gc_sweep_symbol, confusing the test above. Don't
7066 report a dynreloc miscount. */
7067 if (*pp == NULL && info->gc_sections)
7068 return TRUE;
7069
7070 while ((p = *pp) != NULL)
60124e18 7071 {
19e08130
AM
7072 if (p->sec == sec)
7073 {
7074 if (!must_be_dyn_reloc (info, r_type))
7075 p->pc_count -= 1;
7076 p->count -= 1;
7077 if (p->count == 0)
7078 *pp = p->next;
7079 return TRUE;
7080 }
7081 pp = &p->next;
60124e18 7082 }
6edfbbad 7083 }
19e08130
AM
7084 else
7085 {
7086 struct ppc_dyn_relocs *p;
7087 struct ppc_dyn_relocs **pp;
7088 void *vpp;
7089 bfd_boolean is_ifunc;
8c1d1bb8 7090
19e08130
AM
7091 if (local_syms == NULL)
7092 sym_sec = bfd_section_from_elf_index (sec->owner, sym->st_shndx);
7093 if (sym_sec == NULL)
7094 sym_sec = sec;
c57da1a7 7095
19e08130
AM
7096 vpp = &elf_section_data (sym_sec)->local_dynrel;
7097 pp = (struct ppc_dyn_relocs **) vpp;
7098
7099 if (*pp == NULL && info->gc_sections)
7100 return TRUE;
7101
7102 is_ifunc = ELF_ST_TYPE (sym->st_info) == STT_GNU_IFUNC;
7103 while ((p = *pp) != NULL)
8c1d1bb8 7104 {
19e08130
AM
7105 if (p->sec == sec && p->ifunc == is_ifunc)
7106 {
7107 p->count -= 1;
7108 if (p->count == 0)
7109 *pp = p->next;
7110 return TRUE;
7111 }
7112 pp = &p->next;
8c1d1bb8 7113 }
8c1d1bb8
AM
7114 }
7115
695344c0 7116 /* xgettext:c-format */
cf97bcb0
AM
7117 _bfd_error_handler (_("dynreloc miscount for %pB, section %pA"),
7118 sec->owner, sec);
8c1d1bb8
AM
7119 bfd_set_error (bfd_error_bad_value);
7120 return FALSE;
7121}
7122
754021d0
AM
7123/* Remove unused Official Procedure Descriptor entries. Currently we
7124 only remove those associated with functions in discarded link-once
7125 sections, or weakly defined functions that have been overridden. It
7126 would be possible to remove many more entries for statically linked
7127 applications. */
7128
b34976b6 7129bfd_boolean
e7d1c40c 7130ppc64_elf_edit_opd (struct bfd_link_info *info)
1e2f5b6e
AM
7131{
7132 bfd *ibfd;
754021d0 7133 bfd_boolean some_edited = FALSE;
3f764659 7134 asection *need_pad = NULL;
e7d1c40c
AM
7135 struct ppc_link_hash_table *htab;
7136
7137 htab = ppc_hash_table (info);
7138 if (htab == NULL)
7139 return FALSE;
1e2f5b6e 7140
c72f2fb2 7141 for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
1e2f5b6e
AM
7142 {
7143 asection *sec;
7144 Elf_Internal_Rela *relstart, *rel, *relend;
7145 Elf_Internal_Shdr *symtab_hdr;
6cdc0ccc 7146 Elf_Internal_Sym *local_syms;
74f0fb50 7147 struct _opd_sec_data *opd;
51aecdc5 7148 bfd_boolean need_edit, add_aux_fields, broken;
3f764659 7149 bfd_size_type cnt_16b = 0;
1e2f5b6e 7150
854b41e7
AM
7151 if (!is_ppc64_elf (ibfd))
7152 continue;
7153
1e2f5b6e 7154 sec = bfd_get_section_by_name (ibfd, ".opd");
46de2a7c 7155 if (sec == NULL || sec->size == 0)
1e2f5b6e
AM
7156 continue;
7157
dbaa2011 7158 if (sec->sec_info_type == SEC_INFO_TYPE_JUST_SYMS)
4b85d634
AM
7159 continue;
7160
1e2f5b6e
AM
7161 if (sec->output_section == bfd_abs_section_ptr)
7162 continue;
7163
7164 /* Look through the section relocs. */
7165 if ((sec->flags & SEC_RELOC) == 0 || sec->reloc_count == 0)
7166 continue;
7167
6cdc0ccc 7168 local_syms = NULL;
0ffa91dd 7169 symtab_hdr = &elf_symtab_hdr (ibfd);
1e2f5b6e
AM
7170
7171 /* Read the relocations. */
4ce794b7 7172 relstart = _bfd_elf_link_read_relocs (ibfd, sec, NULL, NULL,
45d6a902 7173 info->keep_memory);
1e2f5b6e 7174 if (relstart == NULL)
b34976b6 7175 return FALSE;
1e2f5b6e
AM
7176
7177 /* First run through the relocs to check they are sane, and to
7178 determine whether we need to edit this opd section. */
b34976b6 7179 need_edit = FALSE;
51aecdc5 7180 broken = FALSE;
3f764659 7181 need_pad = sec;
1e2f5b6e 7182 relend = relstart + sec->reloc_count;
50bc7936 7183 for (rel = relstart; rel < relend; )
1e2f5b6e 7184 {
04c9666a 7185 enum elf_ppc64_reloc_type r_type;
1e2f5b6e
AM
7186 unsigned long r_symndx;
7187 asection *sym_sec;
7188 struct elf_link_hash_entry *h;
7189 Elf_Internal_Sym *sym;
51aecdc5 7190 bfd_vma offset;
1e2f5b6e 7191
51aecdc5 7192 /* .opd contains an array of 16 or 24 byte entries. We're
1e2f5b6e
AM
7193 only interested in the reloc pointing to a function entry
7194 point. */
51aecdc5
AM
7195 offset = rel->r_offset;
7196 if (rel + 1 == relend
7197 || rel[1].r_offset != offset + 8)
1e2f5b6e
AM
7198 {
7199 /* If someone messes with .opd alignment then after a
7200 "ld -r" we might have padding in the middle of .opd.
7201 Also, there's nothing to prevent someone putting
7202 something silly in .opd with the assembler. No .opd
b34976b6 7203 optimization for them! */
3f764659 7204 broken_opd:
4eca0228 7205 _bfd_error_handler
871b3ab2 7206 (_("%pB: .opd is not a regular array of opd entries"), ibfd);
51aecdc5 7207 broken = TRUE;
1e2f5b6e
AM
7208 break;
7209 }
7210
50bc7936
AM
7211 if ((r_type = ELF64_R_TYPE (rel->r_info)) != R_PPC64_ADDR64
7212 || (r_type = ELF64_R_TYPE ((rel + 1)->r_info)) != R_PPC64_TOC)
7213 {
4eca0228 7214 _bfd_error_handler
695344c0 7215 /* xgettext:c-format */
871b3ab2 7216 (_("%pB: unexpected reloc type %u in .opd section"),
d003868e 7217 ibfd, r_type);
51aecdc5 7218 broken = TRUE;
50bc7936
AM
7219 break;
7220 }
7221
1e2f5b6e 7222 r_symndx = ELF64_R_SYM (rel->r_info);
411e1bfb
AM
7223 if (!get_sym_h (&h, &sym, &sym_sec, NULL, &local_syms,
7224 r_symndx, ibfd))
50bc7936 7225 goto error_ret;
1e2f5b6e
AM
7226
7227 if (sym_sec == NULL || sym_sec->owner == NULL)
7228 {
411e1bfb
AM
7229 const char *sym_name;
7230 if (h != NULL)
7231 sym_name = h->root.root.string;
7232 else
26c61ae5
L
7233 sym_name = bfd_elf_sym_name (ibfd, symtab_hdr, sym,
7234 sym_sec);
411e1bfb 7235
4eca0228 7236 _bfd_error_handler
695344c0 7237 /* xgettext:c-format */
871b3ab2 7238 (_("%pB: undefined sym `%s' in .opd section"),
d003868e 7239 ibfd, sym_name);
51aecdc5 7240 broken = TRUE;
1e2f5b6e
AM
7241 break;
7242 }
7243
51020317
AM
7244 /* opd entries are always for functions defined in the
7245 current input bfd. If the symbol isn't defined in the
7246 input bfd, then we won't be using the function in this
7247 bfd; It must be defined in a linkonce section in another
7248 bfd, or is weak. It's also possible that we are
7249 discarding the function due to a linker script /DISCARD/,
7250 which we test for via the output_section. */
7251 if (sym_sec->owner != ibfd
7252 || sym_sec->output_section == bfd_abs_section_ptr)
b34976b6 7253 need_edit = TRUE;
1e2f5b6e 7254
50bc7936 7255 rel += 2;
51aecdc5
AM
7256 if (rel + 1 == relend
7257 || (rel + 2 < relend
7258 && ELF64_R_TYPE (rel[2].r_info) == R_PPC64_TOC))
7259 ++rel;
7260
7261 if (rel == relend)
3f764659
JJ
7262 {
7263 if (sec->size == offset + 24)
7264 {
7265 need_pad = NULL;
7266 break;
7267 }
51aecdc5 7268 if (sec->size == offset + 16)
3f764659
JJ
7269 {
7270 cnt_16b++;
7271 break;
7272 }
7273 goto broken_opd;
7274 }
3f764659
JJ
7275 else if (rel + 1 < relend
7276 && ELF64_R_TYPE (rel[0].r_info) == R_PPC64_ADDR64
7277 && ELF64_R_TYPE (rel[1].r_info) == R_PPC64_TOC)
7278 {
51aecdc5
AM
7279 if (rel[0].r_offset == offset + 16)
7280 cnt_16b++;
7281 else if (rel[0].r_offset != offset + 24)
7282 goto broken_opd;
3f764659
JJ
7283 }
7284 else
7285 goto broken_opd;
1e2f5b6e
AM
7286 }
7287
e7d1c40c 7288 add_aux_fields = htab->params->non_overlapping_opd && cnt_16b > 0;
3f764659 7289
51aecdc5 7290 if (!broken && (need_edit || add_aux_fields))
1e2f5b6e
AM
7291 {
7292 Elf_Internal_Rela *write_rel;
d4730f92 7293 Elf_Internal_Shdr *rel_hdr;
1e2f5b6e 7294 bfd_byte *rptr, *wptr;
983bddc8 7295 bfd_byte *new_contents;
74f0fb50
AM
7296 bfd_size_type amt;
7297
983bddc8 7298 new_contents = NULL;
51aecdc5 7299 amt = OPD_NDX (sec->size) * sizeof (long);
74f0fb50 7300 opd = &ppc64_elf_section_data (sec)->u.opd;
33c0ec9d 7301 opd->adjust = bfd_zalloc (sec->owner, amt);
74f0fb50
AM
7302 if (opd->adjust == NULL)
7303 return FALSE;
1e2f5b6e
AM
7304
7305 /* This seems a waste of time as input .opd sections are all
7306 zeros as generated by gcc, but I suppose there's no reason
7307 this will always be so. We might start putting something in
7308 the third word of .opd entries. */
7309 if ((sec->flags & SEC_IN_MEMORY) == 0)
7310 {
eea6121a
AM
7311 bfd_byte *loc;
7312 if (!bfd_malloc_and_get_section (ibfd, sec, &loc))
6cdc0ccc 7313 {
eea6121a
AM
7314 if (loc != NULL)
7315 free (loc);
50bc7936 7316 error_ret:
6cdc0ccc
AM
7317 if (local_syms != NULL
7318 && symtab_hdr->contents != (unsigned char *) local_syms)
7319 free (local_syms);
6cdc0ccc
AM
7320 if (elf_section_data (sec)->relocs != relstart)
7321 free (relstart);
b34976b6 7322 return FALSE;
6cdc0ccc 7323 }
1e2f5b6e
AM
7324 sec->contents = loc;
7325 sec->flags |= (SEC_IN_MEMORY | SEC_HAS_CONTENTS);
7326 }
7327
7328 elf_section_data (sec)->relocs = relstart;
7329
3f764659 7330 new_contents = sec->contents;
3f764659
JJ
7331 if (add_aux_fields)
7332 {
7333 new_contents = bfd_malloc (sec->size + cnt_16b * 8);
7334 if (new_contents == NULL)
7335 return FALSE;
51aecdc5 7336 need_pad = NULL;
3f764659 7337 }
b4f4e59f
AM
7338 wptr = new_contents;
7339 rptr = sec->contents;
1e2f5b6e 7340 write_rel = relstart;
51aecdc5 7341 for (rel = relstart; rel < relend; )
1e2f5b6e 7342 {
50bc7936
AM
7343 unsigned long r_symndx;
7344 asection *sym_sec;
7345 struct elf_link_hash_entry *h;
51aecdc5 7346 struct ppc_link_hash_entry *fdh = NULL;
50bc7936 7347 Elf_Internal_Sym *sym;
51aecdc5
AM
7348 long opd_ent_size;
7349 Elf_Internal_Rela *next_rel;
7350 bfd_boolean skip;
50bc7936
AM
7351
7352 r_symndx = ELF64_R_SYM (rel->r_info);
7353 if (!get_sym_h (&h, &sym, &sym_sec, NULL, &local_syms,
d37c89e5 7354 r_symndx, ibfd))
50bc7936
AM
7355 goto error_ret;
7356
51aecdc5
AM
7357 next_rel = rel + 2;
7358 if (next_rel + 1 == relend
7359 || (next_rel + 2 < relend
7360 && ELF64_R_TYPE (next_rel[2].r_info) == R_PPC64_TOC))
7361 ++next_rel;
7362
7363 /* See if the .opd entry is full 24 byte or
7364 16 byte (with fd_aux entry overlapped with next
7365 fd_func). */
7366 opd_ent_size = 24;
7367 if (next_rel == relend)
1e2f5b6e 7368 {
51aecdc5 7369 if (sec->size == rel->r_offset + 16)
3f764659 7370 opd_ent_size = 16;
51aecdc5
AM
7371 }
7372 else if (next_rel->r_offset == rel->r_offset + 16)
7373 opd_ent_size = 16;
3f764659 7374
51aecdc5
AM
7375 if (h != NULL
7376 && h->root.root.string[0] == '.')
7377 {
ed7007c1 7378 fdh = ppc_elf_hash_entry (h)->oh;
8c5b4e52
AM
7379 if (fdh != NULL)
7380 {
7381 fdh = ppc_follow_link (fdh);
7382 if (fdh->elf.root.type != bfd_link_hash_defined
7383 && fdh->elf.root.type != bfd_link_hash_defweak)
7384 fdh = NULL;
7385 }
51aecdc5 7386 }
1e2f5b6e 7387
51aecdc5
AM
7388 skip = (sym_sec->owner != ibfd
7389 || sym_sec->output_section == bfd_abs_section_ptr);
7390 if (skip)
7391 {
7392 if (fdh != NULL && sym_sec->owner == ibfd)
a4aa0fb7 7393 {
51aecdc5
AM
7394 /* Arrange for the function descriptor sym
7395 to be dropped. */
7396 fdh->elf.root.u.def.value = 0;
7397 fdh->elf.root.u.def.section = sym_sec;
a4aa0fb7 7398 }
51aecdc5 7399 opd->adjust[OPD_NDX (rel->r_offset)] = -1;
1e2f5b6e 7400
0e1862bb 7401 if (NO_OPD_RELOCS || bfd_link_relocatable (info))
51aecdc5
AM
7402 rel = next_rel;
7403 else
7404 while (1)
7405 {
7406 if (!dec_dynrel_count (rel->r_info, sec, info,
7407 NULL, h, sym))
7408 goto error_ret;
754021d0 7409
51aecdc5
AM
7410 if (++rel == next_rel)
7411 break;
1e2f5b6e 7412
51aecdc5
AM
7413 r_symndx = ELF64_R_SYM (rel->r_info);
7414 if (!get_sym_h (&h, &sym, &sym_sec, NULL, &local_syms,
7415 r_symndx, ibfd))
7416 goto error_ret;
7417 }
50bc7936
AM
7418 }
7419 else
1e2f5b6e 7420 {
51aecdc5
AM
7421 /* We'll be keeping this opd entry. */
7422 long adjust;
7423
7424 if (fdh != NULL)
7425 {
7426 /* Redefine the function descriptor symbol to
7427 this location in the opd section. It is
7428 necessary to update the value here rather
7429 than using an array of adjustments as we do
7430 for local symbols, because various places
7431 in the generic ELF code use the value
7432 stored in u.def.value. */
7433 fdh->elf.root.u.def.value = wptr - new_contents;
7434 fdh->adjust_done = 1;
7435 }
7436
7437 /* Local syms are a bit tricky. We could
7438 tweak them as they can be cached, but
7439 we'd need to look through the local syms
7440 for the function descriptor sym which we
7441 don't have at the moment. So keep an
7442 array of adjustments. */
7443 adjust = (wptr - new_contents) - (rptr - sec->contents);
7444 opd->adjust[OPD_NDX (rel->r_offset)] = adjust;
7445
7446 if (wptr != rptr)
7447 memcpy (wptr, rptr, opd_ent_size);
7448 wptr += opd_ent_size;
7449 if (add_aux_fields && opd_ent_size == 16)
7450 {
7451 memset (wptr, '\0', 8);
7452 wptr += 8;
7453 }
7454
50bc7936 7455 /* We need to adjust any reloc offsets to point to the
51aecdc5
AM
7456 new opd entries. */
7457 for ( ; rel != next_rel; ++rel)
7458 {
7459 rel->r_offset += adjust;
7460 if (write_rel != rel)
7461 memcpy (write_rel, rel, sizeof (*rel));
7462 ++write_rel;
7463 }
1e2f5b6e 7464 }
51aecdc5
AM
7465
7466 rptr += opd_ent_size;
1e2f5b6e
AM
7467 }
7468
3f764659 7469 sec->size = wptr - new_contents;
1e2f5b6e 7470 sec->reloc_count = write_rel - relstart;
3f764659
JJ
7471 if (add_aux_fields)
7472 {
7473 free (sec->contents);
7474 sec->contents = new_contents;
7475 }
7476
05bf9422 7477 /* Fudge the header size too, as this is used later in
cdcf6e38 7478 elf_bfd_final_link if we are emitting relocs. */
d4730f92
BS
7479 rel_hdr = _bfd_elf_single_rel_hdr (sec);
7480 rel_hdr->sh_size = sec->reloc_count * rel_hdr->sh_entsize;
754021d0 7481 some_edited = TRUE;
1e2f5b6e 7482 }
6cdc0ccc 7483 else if (elf_section_data (sec)->relocs != relstart)
1e2f5b6e 7484 free (relstart);
6cdc0ccc 7485
411e1bfb
AM
7486 if (local_syms != NULL
7487 && symtab_hdr->contents != (unsigned char *) local_syms)
7488 {
7489 if (!info->keep_memory)
7490 free (local_syms);
7491 else
7492 symtab_hdr->contents = (unsigned char *) local_syms;
7493 }
7494 }
7495
754021d0
AM
7496 if (some_edited)
7497 elf_link_hash_traverse (elf_hash_table (info), adjust_opd_syms, NULL);
7498
3f764659
JJ
7499 /* If we are doing a final link and the last .opd entry is just 16 byte
7500 long, add a 8 byte padding after it. */
0e1862bb 7501 if (need_pad != NULL && !bfd_link_relocatable (info))
3f764659
JJ
7502 {
7503 bfd_byte *p;
7504
7505 if ((need_pad->flags & SEC_IN_MEMORY) == 0)
7506 {
7507 BFD_ASSERT (need_pad->size > 0);
7508
7509 p = bfd_malloc (need_pad->size + 8);
7510 if (p == NULL)
7511 return FALSE;
699733f6 7512
2cdcc330
AM
7513 if (!bfd_get_section_contents (need_pad->owner, need_pad,
7514 p, 0, need_pad->size))
3f764659
JJ
7515 return FALSE;
7516
7517 need_pad->contents = p;
7518 need_pad->flags |= (SEC_IN_MEMORY | SEC_HAS_CONTENTS);
7519 }
7520 else
7521 {
7522 p = bfd_realloc (need_pad->contents, need_pad->size + 8);
7523 if (p == NULL)
7524 return FALSE;
7525
7526 need_pad->contents = p;
7527 }
7528
7529 memset (need_pad->contents + need_pad->size, 0, 8);
7530 need_pad->size += 8;
7531 }
7532
411e1bfb
AM
7533 return TRUE;
7534}
7535
3e04d765
AM
7536/* Analyze inline PLT call relocations to see whether calls to locally
7537 defined functions can be converted to direct calls. */
7538
7539bfd_boolean
7540ppc64_elf_inline_plt (struct bfd_link_info *info)
7541{
7542 struct ppc_link_hash_table *htab;
7543 bfd *ibfd;
7544 asection *sec;
7545 bfd_vma low_vma, high_vma, limit;
7546
7547 htab = ppc_hash_table (info);
7548 if (htab == NULL)
7549 return FALSE;
7550
7551 /* A bl insn can reach -0x2000000 to 0x1fffffc. The limit is
7552 reduced somewhat to cater for possible stubs that might be added
7553 between the call and its destination. */
7554 if (htab->params->group_size < 0)
7555 {
7556 limit = -htab->params->group_size;
7557 if (limit == 1)
7558 limit = 0x1e00000;
7559 }
7560 else
7561 {
7562 limit = htab->params->group_size;
7563 if (limit == 1)
7564 limit = 0x1c00000;
7565 }
7566
7567 low_vma = -1;
7568 high_vma = 0;
7569 for (sec = info->output_bfd->sections; sec != NULL; sec = sec->next)
7570 if ((sec->flags & (SEC_ALLOC | SEC_CODE)) == (SEC_ALLOC | SEC_CODE))
7571 {
7572 if (low_vma > sec->vma)
7573 low_vma = sec->vma;
7574 if (high_vma < sec->vma + sec->size)
7575 high_vma = sec->vma + sec->size;
7576 }
7577
7578 /* If a "bl" can reach anywhere in local code sections, then we can
7579 convert all inline PLT sequences to direct calls when the symbol
7580 is local. */
7581 if (high_vma - low_vma < limit)
7582 {
7583 htab->can_convert_all_inline_plt = 1;
7584 return TRUE;
7585 }
7586
7587 /* Otherwise, go looking through relocs for cases where a direct
7588 call won't reach. Mark the symbol on any such reloc to disable
7589 the optimization and keep the PLT entry as it seems likely that
7590 this will be better than creating trampolines. Note that this
7591 will disable the optimization for all inline PLT calls to a
7592 particular symbol, not just those that won't reach. The
7593 difficulty in doing a more precise optimization is that the
7594 linker needs to make a decision depending on whether a
7595 particular R_PPC64_PLTCALL insn can be turned into a direct
7596 call, for each of the R_PPC64_PLTSEQ and R_PPC64_PLT16* insns in
7597 the sequence, and there is nothing that ties those relocs
7598 together except their symbol. */
7599
7600 for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
7601 {
7602 Elf_Internal_Shdr *symtab_hdr;
7603 Elf_Internal_Sym *local_syms;
7604
7605 if (!is_ppc64_elf (ibfd))
7606 continue;
7607
7608 local_syms = NULL;
7609 symtab_hdr = &elf_symtab_hdr (ibfd);
7610
7611 for (sec = ibfd->sections; sec != NULL; sec = sec->next)
7612 if (ppc64_elf_section_data (sec)->has_pltcall
7613 && !bfd_is_abs_section (sec->output_section))
7614 {
7615 Elf_Internal_Rela *relstart, *rel, *relend;
7616
7617 /* Read the relocations. */
7618 relstart = _bfd_elf_link_read_relocs (ibfd, sec, NULL, NULL,
7619 info->keep_memory);
7620 if (relstart == NULL)
7621 return FALSE;
7622
7623 relend = relstart + sec->reloc_count;
435edf0b 7624 for (rel = relstart; rel < relend; rel++)
3e04d765
AM
7625 {
7626 enum elf_ppc64_reloc_type r_type;
7627 unsigned long r_symndx;
7628 asection *sym_sec;
7629 struct elf_link_hash_entry *h;
7630 Elf_Internal_Sym *sym;
7631 unsigned char *tls_maskp;
7632
7633 r_type = ELF64_R_TYPE (rel->r_info);
5663e321
AM
7634 if (r_type != R_PPC64_PLTCALL
7635 && r_type != R_PPC64_PLTCALL_NOTOC)
3e04d765
AM
7636 continue;
7637
7638 r_symndx = ELF64_R_SYM (rel->r_info);
7639 if (!get_sym_h (&h, &sym, &sym_sec, &tls_maskp, &local_syms,
7640 r_symndx, ibfd))
7641 {
7642 if (elf_section_data (sec)->relocs != relstart)
7643 free (relstart);
7644 if (local_syms != NULL
2cdcc330 7645 && symtab_hdr->contents != (bfd_byte *) local_syms)
3e04d765
AM
7646 free (local_syms);
7647 return FALSE;
7648 }
7649
7650 if (sym_sec != NULL && sym_sec->output_section != NULL)
7651 {
7652 bfd_vma from, to;
7653 if (h != NULL)
7654 to = h->root.u.def.value;
7655 else
7656 to = sym->st_value;
7657 to += (rel->r_addend
7658 + sym_sec->output_offset
7659 + sym_sec->output_section->vma);
7660 from = (rel->r_offset
7661 + sec->output_offset
7662 + sec->output_section->vma);
5663e321
AM
7663 if (to - from + limit < 2 * limit
7664 && !(r_type == R_PPC64_PLTCALL_NOTOC
7665 && (((h ? h->other : sym->st_other)
7666 & STO_PPC64_LOCAL_MASK)
4a4e7361 7667 > 1 << STO_PPC64_LOCAL_BIT)))
3e04d765
AM
7668 *tls_maskp &= ~PLT_KEEP;
7669 }
7670 }
7671 if (elf_section_data (sec)->relocs != relstart)
7672 free (relstart);
7673 }
7674
7675 if (local_syms != NULL
7676 && symtab_hdr->contents != (unsigned char *) local_syms)
7677 {
7678 if (!info->keep_memory)
7679 free (local_syms);
7680 else
7681 symtab_hdr->contents = (unsigned char *) local_syms;
7682 }
7683 }
7684
7685 return TRUE;
7686}
7687
e1918d23 7688/* Set htab->tls_get_addr and call the generic ELF tls_setup function. */
411e1bfb 7689
e1918d23 7690asection *
e7d1c40c 7691ppc64_elf_tls_setup (struct bfd_link_info *info)
411e1bfb 7692{
411e1bfb 7693 struct ppc_link_hash_table *htab;
9e7028aa 7694 struct elf_link_hash_entry *tga, *tga_fd, *desc, *desc_fd;
411e1bfb 7695
411e1bfb 7696 htab = ppc_hash_table (info);
4dfe6ac6
NC
7697 if (htab == NULL)
7698 return NULL;
7699
ee67d69a
AM
7700 if (abiversion (info->output_bfd) == 1)
7701 htab->opd_abi = 1;
7702
e7d1c40c 7703 if (htab->params->no_multi_toc)
33c0ec9d
AM
7704 htab->do_multi_toc = 0;
7705 else if (!htab->do_multi_toc)
e7d1c40c 7706 htab->params->no_multi_toc = 1;
33c0ec9d 7707
8b5f1ed8
AM
7708 /* Default to --no-plt-localentry, as this option can cause problems
7709 with symbol interposition. For example, glibc libpthread.so and
7710 libc.so duplicate many pthread symbols, with a fallback
7711 implementation in libc.so. In some cases the fallback does more
7712 work than the pthread implementation. __pthread_condattr_destroy
7713 is one such symbol: the libpthread.so implementation is
7714 localentry:0 while the libc.so implementation is localentry:8.
7715 An app that "cleverly" uses dlopen to only load necessary
7716 libraries at runtime may omit loading libpthread.so when not
7717 running multi-threaded, which then results in the libc.so
7718 fallback symbols being used and ld.so complaining. Now there
7719 are workarounds in ld (see non_zero_localentry) to detect the
7720 pthread situation, but that may not be the only case where
7721 --plt-localentry can cause trouble. */
f378ab09 7722 if (htab->params->plt_localentry0 < 0)
8b5f1ed8 7723 htab->params->plt_localentry0 = 0;
d44c746a
AM
7724 if (htab->params->plt_localentry0
7725 && elf_link_hash_lookup (&htab->elf, "GLIBC_2.26",
7726 FALSE, FALSE, FALSE) == NULL)
cf97bcb0
AM
7727 _bfd_error_handler
7728 (_("warning: --plt-localentry is especially dangerous without "
7729 "ld.so support to detect ABI violations"));
f378ab09 7730
9e7028aa
AM
7731 tga = elf_link_hash_lookup (&htab->elf, ".__tls_get_addr",
7732 FALSE, FALSE, TRUE);
7733 htab->tls_get_addr = ppc_elf_hash_entry (tga);
7734
a7f2871e 7735 /* Move dynamic linking info to the function descriptor sym. */
9e7028aa
AM
7736 if (tga != NULL)
7737 func_desc_adjust (tga, info);
7738 tga_fd = elf_link_hash_lookup (&htab->elf, "__tls_get_addr",
7739 FALSE, FALSE, TRUE);
7740 htab->tls_get_addr_fd = ppc_elf_hash_entry (tga_fd);
7741
7742 desc = elf_link_hash_lookup (&htab->elf, ".__tls_get_addr_desc",
7743 FALSE, FALSE, TRUE);
7744 htab->tga_desc = ppc_elf_hash_entry (desc);
7745 if (desc != NULL)
7746 func_desc_adjust (desc, info);
7747 desc_fd = elf_link_hash_lookup (&htab->elf, "__tls_get_addr_desc",
7748 FALSE, FALSE, TRUE);
7749 htab->tga_desc_fd = ppc_elf_hash_entry (desc_fd);
7750
7c9cf415 7751 if (htab->params->tls_get_addr_opt)
a7f2871e 7752 {
9e7028aa 7753 struct elf_link_hash_entry *opt, *opt_fd;
a7f2871e
AM
7754
7755 opt = elf_link_hash_lookup (&htab->elf, ".__tls_get_addr_opt",
7756 FALSE, FALSE, TRUE);
7757 if (opt != NULL)
7758 func_desc_adjust (opt, info);
7759 opt_fd = elf_link_hash_lookup (&htab->elf, "__tls_get_addr_opt",
7760 FALSE, FALSE, TRUE);
7761 if (opt_fd != NULL
7762 && (opt_fd->root.type == bfd_link_hash_defined
7763 || opt_fd->root.type == bfd_link_hash_defweak))
7764 {
7765 /* If glibc supports an optimized __tls_get_addr call stub,
7766 signalled by the presence of __tls_get_addr_opt, and we'll
7767 be calling __tls_get_addr via a plt call stub, then
7768 make __tls_get_addr point to __tls_get_addr_opt. */
9e7028aa
AM
7769 if (!(htab->elf.dynamic_sections_created
7770 && tga_fd != NULL
7771 && (tga_fd->type == STT_FUNC
7772 || tga_fd->needs_plt)
7773 && !(SYMBOL_CALLS_LOCAL (info, tga_fd)
7774 || UNDEFWEAK_NO_DYNAMIC_RELOC (info, tga_fd))))
7775 tga_fd = NULL;
7776 if (!(htab->elf.dynamic_sections_created
7777 && desc_fd != NULL
7778 && (desc_fd->type == STT_FUNC
7779 || desc_fd->needs_plt)
7780 && !(SYMBOL_CALLS_LOCAL (info, desc_fd)
7781 || UNDEFWEAK_NO_DYNAMIC_RELOC (info, desc_fd))))
7782 desc_fd = NULL;
7783
7784 if (tga_fd != NULL || desc_fd != NULL)
7785 {
7786 struct plt_entry *ent = NULL;
7787
7788 if (tga_fd != NULL)
7789 for (ent = tga_fd->plt.plist; ent != NULL; ent = ent->next)
7790 if (ent->plt.refcount > 0)
7791 break;
7792 if (ent == NULL && desc_fd != NULL)
7793 for (ent = desc_fd->plt.plist; ent != NULL; ent = ent->next)
7794 if (ent->plt.refcount > 0)
7795 break;
a7f2871e
AM
7796 if (ent != NULL)
7797 {
9e7028aa
AM
7798 if (tga_fd != NULL)
7799 {
7800 tga_fd->root.type = bfd_link_hash_indirect;
7801 tga_fd->root.u.i.link = &opt_fd->root;
7802 tga_fd->root.u.i.warning = NULL;
7803 ppc64_elf_copy_indirect_symbol (info, opt_fd, tga_fd);
7804 }
7805 if (desc_fd != NULL)
7806 {
7807 desc_fd->root.type = bfd_link_hash_indirect;
7808 desc_fd->root.u.i.link = &opt_fd->root;
7809 desc_fd->root.u.i.warning = NULL;
7810 ppc64_elf_copy_indirect_symbol (info, opt_fd, desc_fd);
7811 }
b531344c 7812 opt_fd->mark = 1;
a7f2871e
AM
7813 if (opt_fd->dynindx != -1)
7814 {
7815 /* Use __tls_get_addr_opt in dynamic relocations. */
7816 opt_fd->dynindx = -1;
7817 _bfd_elf_strtab_delref (elf_hash_table (info)->dynstr,
7818 opt_fd->dynstr_index);
7819 if (!bfd_elf_link_record_dynamic_symbol (info, opt_fd))
854b41e7 7820 return NULL;
a7f2871e 7821 }
9e7028aa 7822 if (tga_fd != NULL)
a7f2871e 7823 {
9e7028aa
AM
7824 htab->tls_get_addr_fd = ppc_elf_hash_entry (opt_fd);
7825 tga = &htab->tls_get_addr->elf;
7826 if (opt != NULL && tga != NULL)
7827 {
7828 tga->root.type = bfd_link_hash_indirect;
7829 tga->root.u.i.link = &opt->root;
7830 tga->root.u.i.warning = NULL;
7831 ppc64_elf_copy_indirect_symbol (info, opt, tga);
7832 opt->mark = 1;
7833 _bfd_elf_link_hash_hide_symbol (info, opt,
7834 tga->forced_local);
7835 htab->tls_get_addr = ppc_elf_hash_entry (opt);
7836 }
7837 htab->tls_get_addr_fd->oh = htab->tls_get_addr;
7838 htab->tls_get_addr_fd->is_func_descriptor = 1;
7839 if (htab->tls_get_addr != NULL)
7840 {
7841 htab->tls_get_addr->oh = htab->tls_get_addr_fd;
7842 htab->tls_get_addr->is_func = 1;
7843 }
a7f2871e 7844 }
9e7028aa 7845 if (desc_fd != NULL)
a7f2871e 7846 {
9e7028aa
AM
7847 htab->tga_desc_fd = ppc_elf_hash_entry (opt_fd);
7848 if (opt != NULL && desc != NULL)
7849 {
7850 desc->root.type = bfd_link_hash_indirect;
7851 desc->root.u.i.link = &opt->root;
7852 desc->root.u.i.warning = NULL;
7853 ppc64_elf_copy_indirect_symbol (info, opt, desc);
7854 opt->mark = 1;
7855 _bfd_elf_link_hash_hide_symbol (info, opt,
7856 desc->forced_local);
7857 htab->tga_desc = ppc_elf_hash_entry (opt);
7858 }
7859 htab->tga_desc_fd->oh = htab->tga_desc;
7860 htab->tga_desc_fd->is_func_descriptor = 1;
7861 if (htab->tga_desc != NULL)
7862 {
7863 htab->tga_desc->oh = htab->tga_desc_fd;
7864 htab->tga_desc->is_func = 1;
7865 }
a7f2871e
AM
7866 }
7867 }
7868 }
7869 }
7c9cf415
AM
7870 else if (htab->params->tls_get_addr_opt < 0)
7871 htab->params->tls_get_addr_opt = 0;
a7f2871e 7872 }
9e7028aa
AM
7873
7874 if (htab->tga_desc_fd != NULL
7875 && htab->params->tls_get_addr_opt
7876 && htab->params->no_tls_get_addr_regsave == -1)
7877 htab->params->no_tls_get_addr_regsave = 0;
7878
33c0ec9d 7879 return _bfd_elf_tls_setup (info->output_bfd, info);
3a71aa26 7880}
8387904d 7881
3a71aa26 7882/* Return TRUE iff REL is a branch reloc with a global symbol matching
9e7028aa 7883 any of HASH1, HASH2, HASH3, or HASH4. */
8387904d 7884
3a71aa26
AM
7885static bfd_boolean
7886branch_reloc_hash_match (const bfd *ibfd,
7887 const Elf_Internal_Rela *rel,
7888 const struct ppc_link_hash_entry *hash1,
9e7028aa
AM
7889 const struct ppc_link_hash_entry *hash2,
7890 const struct ppc_link_hash_entry *hash3,
7891 const struct ppc_link_hash_entry *hash4)
3a71aa26
AM
7892{
7893 Elf_Internal_Shdr *symtab_hdr = &elf_symtab_hdr (ibfd);
7894 enum elf_ppc64_reloc_type r_type = ELF64_R_TYPE (rel->r_info);
7895 unsigned int r_symndx = ELF64_R_SYM (rel->r_info);
7896
e054468f 7897 if (r_symndx >= symtab_hdr->sh_info && is_branch_reloc (r_type))
8387904d 7898 {
3a71aa26
AM
7899 struct elf_link_hash_entry **sym_hashes = elf_sym_hashes (ibfd);
7900 struct elf_link_hash_entry *h;
8387904d 7901
3a71aa26 7902 h = sym_hashes[r_symndx - symtab_hdr->sh_info];
b31867b6 7903 h = elf_follow_link (h);
9e7028aa
AM
7904 if (h == &hash1->elf || h == &hash2->elf
7905 || h == &hash3->elf || h == &hash4->elf)
3a71aa26 7906 return TRUE;
a48ebf4d 7907 }
3a71aa26 7908 return FALSE;
951fd09b 7909}
411e1bfb 7910
951fd09b
AM
7911/* Run through all the TLS relocs looking for optimization
7912 opportunities. The linker has been hacked (see ppc64elf.em) to do
7913 a preliminary section layout so that we know the TLS segment
7914 offsets. We can't optimize earlier because some optimizations need
7915 to know the tp offset, and we need to optimize before allocating
7916 dynamic relocations. */
7917
7918bfd_boolean
33c0ec9d 7919ppc64_elf_tls_optimize (struct bfd_link_info *info)
951fd09b
AM
7920{
7921 bfd *ibfd;
7922 asection *sec;
7923 struct ppc_link_hash_table *htab;
663a1470 7924 unsigned char *toc_ref;
102890f0 7925 int pass;
951fd09b 7926
3cbc1e5e 7927 if (!bfd_link_executable (info))
411e1bfb
AM
7928 return TRUE;
7929
951fd09b 7930 htab = ppc_hash_table (info);
4dfe6ac6
NC
7931 if (htab == NULL)
7932 return FALSE;
7933
663a1470
AM
7934 /* Make two passes over the relocs. On the first pass, mark toc
7935 entries involved with tls relocs, and check that tls relocs
7936 involved in setting up a tls_get_addr call are indeed followed by
7937 such a call. If they are not, we can't do any tls optimization.
7938 On the second pass twiddle tls_mask flags to notify
7939 relocate_section that optimization can be done, and adjust got
7940 and plt refcounts. */
7941 toc_ref = NULL;
7942 for (pass = 0; pass < 2; ++pass)
c72f2fb2 7943 for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
663a1470
AM
7944 {
7945 Elf_Internal_Sym *locsyms = NULL;
7946 asection *toc = bfd_get_section_by_name (ibfd, ".toc");
7947
102890f0
AM
7948 for (sec = ibfd->sections; sec != NULL; sec = sec->next)
7949 if (sec->has_tls_reloc && !bfd_is_abs_section (sec->output_section))
7950 {
7951 Elf_Internal_Rela *relstart, *rel, *relend;
663a1470 7952 bfd_boolean found_tls_get_addr_arg = 0;
411e1bfb 7953
102890f0
AM
7954 /* Read the relocations. */
7955 relstart = _bfd_elf_link_read_relocs (ibfd, sec, NULL, NULL,
7956 info->keep_memory);
7957 if (relstart == NULL)
2915c55b
JK
7958 {
7959 free (toc_ref);
7960 return FALSE;
7961 }
411e1bfb 7962
102890f0
AM
7963 relend = relstart + sec->reloc_count;
7964 for (rel = relstart; rel < relend; rel++)
7965 {
7966 enum elf_ppc64_reloc_type r_type;
7967 unsigned long r_symndx;
7968 struct elf_link_hash_entry *h;
7969 Elf_Internal_Sym *sym;
7970 asection *sym_sec;
f961d9dd 7971 unsigned char *tls_mask;
46e9995a 7972 unsigned int tls_set, tls_clear, tls_type = 0;
102890f0
AM
7973 bfd_vma value;
7974 bfd_boolean ok_tprel, is_local;
7975 long toc_ref_index = 0;
7976 int expecting_tls_get_addr = 0;
663a1470 7977 bfd_boolean ret = FALSE;
411e1bfb 7978
102890f0
AM
7979 r_symndx = ELF64_R_SYM (rel->r_info);
7980 if (!get_sym_h (&h, &sym, &sym_sec, &tls_mask, &locsyms,
7981 r_symndx, ibfd))
7982 {
7983 err_free_rel:
7984 if (elf_section_data (sec)->relocs != relstart)
7985 free (relstart);
7986 if (toc_ref != NULL)
7987 free (toc_ref);
7988 if (locsyms != NULL
0ffa91dd 7989 && (elf_symtab_hdr (ibfd).contents
102890f0
AM
7990 != (unsigned char *) locsyms))
7991 free (locsyms);
663a1470 7992 return ret;
102890f0 7993 }
411e1bfb 7994
102890f0
AM
7995 if (h != NULL)
7996 {
766bc656
AM
7997 if (h->root.type == bfd_link_hash_defined
7998 || h->root.type == bfd_link_hash_defweak)
7999 value = h->root.u.def.value;
8000 else if (h->root.type == bfd_link_hash_undefweak)
8001 value = 0;
8002 else
663a1470
AM
8003 {
8004 found_tls_get_addr_arg = 0;
8005 continue;
8006 }
102890f0
AM
8007 }
8008 else
8009 /* Symbols referenced by TLS relocs must be of type
8010 STT_TLS. So no need for .opd local sym adjust. */
8011 value = sym->st_value;
8012
8013 ok_tprel = FALSE;
f749f26e
AM
8014 is_local = SYMBOL_REFERENCES_LOCAL (info, h);
8015 if (is_local)
102890f0 8016 {
766bc656
AM
8017 if (h != NULL
8018 && h->root.type == bfd_link_hash_undefweak)
8019 ok_tprel = TRUE;
c27b8c2a
AM
8020 else if (sym_sec != NULL
8021 && sym_sec->output_section != NULL)
766bc656
AM
8022 {
8023 value += sym_sec->output_offset;
8024 value += sym_sec->output_section->vma;
0b147428 8025 value -= htab->elf.tls_sec->vma + TP_OFFSET;
c213164a
AM
8026 /* Note that even though the prefix insns
8027 allow a 1<<33 offset we use the same test
8028 as for addis;addi. There may be a mix of
8029 pcrel and non-pcrel code and the decision
8030 to optimise is per symbol, not per TLS
8031 sequence. */
0b147428 8032 ok_tprel = value + 0x80008000ULL < 1ULL << 32;
766bc656 8033 }
102890f0 8034 }
951fd09b 8035
102890f0 8036 r_type = ELF64_R_TYPE (rel->r_info);
663a1470
AM
8037 /* If this section has old-style __tls_get_addr calls
8038 without marker relocs, then check that each
8039 __tls_get_addr call reloc is preceded by a reloc
8040 that conceivably belongs to the __tls_get_addr arg
8041 setup insn. If we don't find matching arg setup
8042 relocs, don't do any tls optimization. */
8043 if (pass == 0
9737e8af 8044 && sec->nomark_tls_get_addr
663a1470 8045 && h != NULL
ed7007c1 8046 && is_tls_get_addr (h, htab)
663a1470
AM
8047 && !found_tls_get_addr_arg
8048 && is_branch_reloc (r_type))
8049 {
25f53a85 8050 info->callbacks->minfo (_("%H __tls_get_addr lost arg, "
663a1470
AM
8051 "TLS optimization disabled\n"),
8052 ibfd, sec, rel->r_offset);
8053 ret = TRUE;
8054 goto err_free_rel;
8055 }
8056
8057 found_tls_get_addr_arg = 0;
102890f0
AM
8058 switch (r_type)
8059 {
8060 case R_PPC64_GOT_TLSLD16:
8061 case R_PPC64_GOT_TLSLD16_LO:
c213164a 8062 case R_PPC64_GOT_TLSLD34:
102890f0 8063 expecting_tls_get_addr = 1;
663a1470 8064 found_tls_get_addr_arg = 1;
1a0670f3 8065 /* Fall through. */
102890f0
AM
8066
8067 case R_PPC64_GOT_TLSLD16_HI:
8068 case R_PPC64_GOT_TLSLD16_HA:
8069 /* These relocs should never be against a symbol
8070 defined in a shared lib. Leave them alone if
8071 that turns out to be the case. */
8072 if (!is_local)
8073 continue;
411e1bfb 8074
102890f0 8075 /* LD -> LE */
411e1bfb 8076 tls_set = 0;
102890f0
AM
8077 tls_clear = TLS_LD;
8078 tls_type = TLS_TLS | TLS_LD;
8079 break;
411e1bfb 8080
102890f0
AM
8081 case R_PPC64_GOT_TLSGD16:
8082 case R_PPC64_GOT_TLSGD16_LO:
c213164a 8083 case R_PPC64_GOT_TLSGD34:
102890f0 8084 expecting_tls_get_addr = 1;
663a1470 8085 found_tls_get_addr_arg = 1;
1a0670f3 8086 /* Fall through. */
102890f0
AM
8087
8088 case R_PPC64_GOT_TLSGD16_HI:
8089 case R_PPC64_GOT_TLSGD16_HA:
8090 if (ok_tprel)
8091 /* GD -> LE */
411e1bfb 8092 tls_set = 0;
102890f0
AM
8093 else
8094 /* GD -> IE */
b00a0a86 8095 tls_set = TLS_TLS | TLS_GDIE;
102890f0
AM
8096 tls_clear = TLS_GD;
8097 tls_type = TLS_TLS | TLS_GD;
8098 break;
8099
c213164a 8100 case R_PPC64_GOT_TPREL34:
102890f0
AM
8101 case R_PPC64_GOT_TPREL16_DS:
8102 case R_PPC64_GOT_TPREL16_LO_DS:
8103 case R_PPC64_GOT_TPREL16_HI:
8104 case R_PPC64_GOT_TPREL16_HA:
8105 if (ok_tprel)
8106 {
8107 /* IE -> LE */
8108 tls_set = 0;
8109 tls_clear = TLS_TPREL;
8110 tls_type = TLS_TLS | TLS_TPREL;
8111 break;
8112 }
411e1bfb
AM
8113 continue;
8114
727fc41e 8115 case R_PPC64_TLSLD:
7d04a20a
AM
8116 if (!is_local)
8117 continue;
8118 /* Fall through. */
8119 case R_PPC64_TLSGD:
23cedd1d
AM
8120 if (rel + 1 < relend
8121 && is_plt_seq_reloc (ELF64_R_TYPE (rel[1].r_info)))
8122 {
8123 if (pass != 0
2cdcc330 8124 && (ELF64_R_TYPE (rel[1].r_info)
5663e321
AM
8125 != R_PPC64_PLTSEQ)
8126 && (ELF64_R_TYPE (rel[1].r_info)
8127 != R_PPC64_PLTSEQ_NOTOC))
23cedd1d
AM
8128 {
8129 r_symndx = ELF64_R_SYM (rel[1].r_info);
8130 if (!get_sym_h (&h, NULL, NULL, NULL, &locsyms,
2cdcc330 8131 r_symndx, ibfd))
23cedd1d
AM
8132 goto err_free_rel;
8133 if (h != NULL)
8134 {
8135 struct plt_entry *ent = NULL;
8136
8137 for (ent = h->plt.plist;
8138 ent != NULL;
8139 ent = ent->next)
8140 if (ent->addend == rel[1].r_addend)
8141 break;
8142
8143 if (ent != NULL
8144 && ent->plt.refcount > 0)
8145 ent->plt.refcount -= 1;
8146 }
8147 }
8148 continue;
8149 }
663a1470 8150 found_tls_get_addr_arg = 1;
1a0670f3 8151 /* Fall through. */
663a1470
AM
8152
8153 case R_PPC64_TLS:
8154 case R_PPC64_TOC16:
8155 case R_PPC64_TOC16_LO:
102890f0
AM
8156 if (sym_sec == NULL || sym_sec != toc)
8157 continue;
8158
8159 /* Mark this toc entry as referenced by a TLS
8160 code sequence. We can do that now in the
8161 case of R_PPC64_TLS, and after checking for
8162 tls_get_addr for the TOC16 relocs. */
8163 if (toc_ref == NULL)
2cdcc330
AM
8164 toc_ref
8165 = bfd_zmalloc (toc->output_section->rawsize / 8);
663a1470
AM
8166 if (toc_ref == NULL)
8167 goto err_free_rel;
8168
102890f0
AM
8169 if (h != NULL)
8170 value = h->root.u.def.value;
8171 else
8172 value = sym->st_value;
8173 value += rel->r_addend;
73242275
AM
8174 if (value % 8 != 0)
8175 continue;
8176 BFD_ASSERT (value < toc->size
8177 && toc->output_offset % 8 == 0);
663a1470 8178 toc_ref_index = (value + toc->output_offset) / 8;
727fc41e
AM
8179 if (r_type == R_PPC64_TLS
8180 || r_type == R_PPC64_TLSGD
8181 || r_type == R_PPC64_TLSLD)
102890f0
AM
8182 {
8183 toc_ref[toc_ref_index] = 1;
8184 continue;
8185 }
8186
8187 if (pass != 0 && toc_ref[toc_ref_index] == 0)
8188 continue;
8189
8190 tls_set = 0;
8191 tls_clear = 0;
8192 expecting_tls_get_addr = 2;
8193 break;
8194
8195 case R_PPC64_TPREL64:
8196 if (pass == 0
8197 || sec != toc
8198 || toc_ref == NULL
663a1470 8199 || !toc_ref[(rel->r_offset + toc->output_offset) / 8])
102890f0
AM
8200 continue;
8201 if (ok_tprel)
8202 {
8203 /* IE -> LE */
8204 tls_set = TLS_EXPLICIT;
8205 tls_clear = TLS_TPREL;
8206 break;
8207 }
8208 continue;
8209
8210 case R_PPC64_DTPMOD64:
8211 if (pass == 0
8212 || sec != toc
8213 || toc_ref == NULL
663a1470 8214 || !toc_ref[(rel->r_offset + toc->output_offset) / 8])
102890f0
AM
8215 continue;
8216 if (rel + 1 < relend
8217 && (rel[1].r_info
8218 == ELF64_R_INFO (r_symndx, R_PPC64_DTPREL64))
8219 && rel[1].r_offset == rel->r_offset + 8)
8220 {
8221 if (ok_tprel)
8222 /* GD -> LE */
8223 tls_set = TLS_EXPLICIT | TLS_GD;
8224 else
8225 /* GD -> IE */
b00a0a86 8226 tls_set = TLS_EXPLICIT | TLS_GD | TLS_GDIE;
102890f0
AM
8227 tls_clear = TLS_GD;
8228 }
8229 else
8230 {
8231 if (!is_local)
8232 continue;
8233
8234 /* LD -> LE */
8235 tls_set = TLS_EXPLICIT;
8236 tls_clear = TLS_LD;
8237 }
8238 break;
8239
8240 default:
8241 continue;
8242 }
8243
8244 if (pass == 0)
8245 {
727fc41e 8246 if (!expecting_tls_get_addr
9737e8af 8247 || !sec->nomark_tls_get_addr)
102890f0
AM
8248 continue;
8249
3a71aa26
AM
8250 if (rel + 1 < relend
8251 && branch_reloc_hash_match (ibfd, rel + 1,
9e7028aa
AM
8252 htab->tls_get_addr_fd,
8253 htab->tga_desc_fd,
3a71aa26 8254 htab->tls_get_addr,
9e7028aa 8255 htab->tga_desc))
102890f0 8256 {
3a71aa26 8257 if (expecting_tls_get_addr == 2)
102890f0 8258 {
3a71aa26 8259 /* Check for toc tls entries. */
f961d9dd 8260 unsigned char *toc_tls;
3a71aa26
AM
8261 int retval;
8262
8263 retval = get_tls_mask (&toc_tls, NULL, NULL,
8264 &locsyms,
8265 rel, ibfd);
8266 if (retval == 0)
8267 goto err_free_rel;
663a1470
AM
8268 if (toc_tls != NULL)
8269 {
37da22e5
AM
8270 if ((*toc_tls & TLS_TLS) != 0
8271 && ((*toc_tls & (TLS_GD | TLS_LD)) != 0))
663a1470
AM
8272 found_tls_get_addr_arg = 1;
8273 if (retval > 1)
8274 toc_ref[toc_ref_index] = 1;
8275 }
102890f0 8276 }
3a71aa26 8277 continue;
102890f0
AM
8278 }
8279
102890f0
AM
8280 /* Uh oh, we didn't find the expected call. We
8281 could just mark this symbol to exclude it
8282 from tls optimization but it's safer to skip
663a1470 8283 the entire optimization. */
695344c0 8284 /* xgettext:c-format */
25f53a85 8285 info->callbacks->minfo (_("%H arg lost __tls_get_addr, "
663a1470
AM
8286 "TLS optimization disabled\n"),
8287 ibfd, sec, rel->r_offset);
8288 ret = TRUE;
8289 goto err_free_rel;
102890f0
AM
8290 }
8291
37da22e5
AM
8292 /* If we don't have old-style __tls_get_addr calls
8293 without TLSGD/TLSLD marker relocs, and we haven't
8294 found a new-style __tls_get_addr call with a
8295 marker for this symbol, then we either have a
8296 broken object file or an -mlongcall style
8297 indirect call to __tls_get_addr without a marker.
8298 Disable optimization in this case. */
8299 if ((tls_clear & (TLS_GD | TLS_LD)) != 0
8300 && (tls_set & TLS_EXPLICIT) == 0
9737e8af 8301 && !sec->nomark_tls_get_addr
37da22e5
AM
8302 && ((*tls_mask & (TLS_TLS | TLS_MARK))
8303 != (TLS_TLS | TLS_MARK)))
8304 continue;
8305
7d04a20a 8306 if (expecting_tls_get_addr == 1 + !sec->nomark_tls_get_addr)
102890f0 8307 {
23cedd1d
AM
8308 struct plt_entry *ent = NULL;
8309
9e7028aa
AM
8310 if (htab->tls_get_addr_fd != NULL)
8311 for (ent = htab->tls_get_addr_fd->elf.plt.plist;
8312 ent != NULL;
8313 ent = ent->next)
8314 if (ent->addend == 0)
8315 break;
8316
8317 if (ent == NULL && htab->tga_desc_fd != NULL)
8318 for (ent = htab->tga_desc_fd->elf.plt.plist;
8319 ent != NULL;
8320 ent = ent->next)
8321 if (ent->addend == 0)
8322 break;
8323
8324 if (ent == NULL && htab->tls_get_addr != NULL)
23cedd1d
AM
8325 for (ent = htab->tls_get_addr->elf.plt.plist;
8326 ent != NULL;
8327 ent = ent->next)
8328 if (ent->addend == 0)
102890f0 8329 break;
411e1bfb 8330
9e7028aa
AM
8331 if (ent == NULL && htab->tga_desc != NULL)
8332 for (ent = htab->tga_desc->elf.plt.plist;
23cedd1d
AM
8333 ent != NULL;
8334 ent = ent->next)
8335 if (ent->addend == 0)
102890f0 8336 break;
23cedd1d
AM
8337
8338 if (ent != NULL
8339 && ent->plt.refcount > 0)
8340 ent->plt.refcount -= 1;
102890f0 8341 }
411e1bfb 8342
102890f0 8343 if (tls_clear == 0)
30038c59
AM
8344 continue;
8345
102890f0
AM
8346 if ((tls_set & TLS_EXPLICIT) == 0)
8347 {
8348 struct got_entry *ent;
411e1bfb 8349
102890f0
AM
8350 /* Adjust got entry for this reloc. */
8351 if (h != NULL)
8352 ent = h->got.glist;
8353 else
8354 ent = elf_local_got_ents (ibfd)[r_symndx];
411e1bfb 8355
102890f0
AM
8356 for (; ent != NULL; ent = ent->next)
8357 if (ent->addend == rel->r_addend
8358 && ent->owner == ibfd
8359 && ent->tls_type == tls_type)
8360 break;
8361 if (ent == NULL)
8362 abort ();
411e1bfb 8363
102890f0
AM
8364 if (tls_set == 0)
8365 {
8366 /* We managed to get rid of a got entry. */
8367 if (ent->got.refcount > 0)
8368 ent->got.refcount -= 1;
8369 }
8370 }
8371 else
8372 {
8373 /* If we got rid of a DTPMOD/DTPREL reloc pair then
8374 we'll lose one or two dyn relocs. */
8375 if (!dec_dynrel_count (rel->r_info, sec, info,
19e08130 8376 NULL, h, sym))
102890f0 8377 return FALSE;
411e1bfb 8378
102890f0
AM
8379 if (tls_set == (TLS_EXPLICIT | TLS_GD))
8380 {
8381 if (!dec_dynrel_count ((rel + 1)->r_info, sec, info,
19e08130 8382 NULL, h, sym))
102890f0
AM
8383 return FALSE;
8384 }
8385 }
411e1bfb 8386
46e9995a 8387 *tls_mask |= tls_set & 0xff;
102890f0
AM
8388 *tls_mask &= ~tls_clear;
8389 }
8c1d1bb8 8390
102890f0
AM
8391 if (elf_section_data (sec)->relocs != relstart)
8392 free (relstart);
8393 }
411e1bfb 8394
663a1470
AM
8395 if (locsyms != NULL
8396 && (elf_symtab_hdr (ibfd).contents != (unsigned char *) locsyms))
8397 {
8398 if (!info->keep_memory)
8399 free (locsyms);
8400 else
8401 elf_symtab_hdr (ibfd).contents = (unsigned char *) locsyms;
8402 }
8403 }
411e1bfb 8404
663a1470
AM
8405 if (toc_ref != NULL)
8406 free (toc_ref);
9a23f96e 8407 htab->do_tls_opt = 1;
b34976b6 8408 return TRUE;
1e2f5b6e 8409}
b34976b6 8410
c5614fa4
AM
8411/* Called via elf_link_hash_traverse from ppc64_elf_edit_toc to adjust
8412 the values of any global symbols in a toc section that has been
8413 edited. Globals in toc sections should be a rarity, so this function
8414 sets a flag if any are found in toc sections other than the one just
de194d85 8415 edited, so that further hash table traversals can be avoided. */
c5614fa4
AM
8416
8417struct adjust_toc_info
8418{
8419 asection *toc;
8420 unsigned long *skip;
8421 bfd_boolean global_toc_syms;
8422};
8423
ba761f19
AM
8424enum toc_skip_enum { ref_from_discarded = 1, can_optimize = 2 };
8425
c5614fa4
AM
8426static bfd_boolean
8427adjust_toc_syms (struct elf_link_hash_entry *h, void *inf)
8428{
8429 struct ppc_link_hash_entry *eh;
8430 struct adjust_toc_info *toc_inf = (struct adjust_toc_info *) inf;
854b41e7 8431 unsigned long i;
c5614fa4 8432
c5614fa4
AM
8433 if (h->root.type != bfd_link_hash_defined
8434 && h->root.type != bfd_link_hash_defweak)
8435 return TRUE;
8436
ed7007c1 8437 eh = ppc_elf_hash_entry (h);
c5614fa4
AM
8438 if (eh->adjust_done)
8439 return TRUE;
8440
8441 if (eh->elf.root.u.def.section == toc_inf->toc)
8442 {
854b41e7
AM
8443 if (eh->elf.root.u.def.value > toc_inf->toc->rawsize)
8444 i = toc_inf->toc->rawsize >> 3;
c5614fa4 8445 else
854b41e7
AM
8446 i = eh->elf.root.u.def.value >> 3;
8447
ba761f19 8448 if ((toc_inf->skip[i] & (ref_from_discarded | can_optimize)) != 0)
c5614fa4 8449 {
4eca0228 8450 _bfd_error_handler
854b41e7
AM
8451 (_("%s defined on removed toc entry"), eh->elf.root.root.string);
8452 do
8453 ++i;
ba761f19 8454 while ((toc_inf->skip[i] & (ref_from_discarded | can_optimize)) != 0);
854b41e7 8455 eh->elf.root.u.def.value = (bfd_vma) i << 3;
c5614fa4 8456 }
854b41e7
AM
8457
8458 eh->elf.root.u.def.value -= toc_inf->skip[i];
c5614fa4
AM
8459 eh->adjust_done = 1;
8460 }
8461 else if (strcmp (eh->elf.root.u.def.section->name, ".toc") == 0)
8462 toc_inf->global_toc_syms = TRUE;
8463
8464 return TRUE;
8465}
8466
39eeab25
AM
8467/* Return TRUE iff INSN with a relocation of R_TYPE is one we expect
8468 on a _LO variety toc/got reloc. */
560c8763
AM
8469
8470static bfd_boolean
39eeab25 8471ok_lo_toc_insn (unsigned int insn, enum elf_ppc64_reloc_type r_type)
560c8763 8472{
2365f8d7
AM
8473 return ((insn & (0x3fu << 26)) == 12u << 26 /* addic */
8474 || (insn & (0x3fu << 26)) == 14u << 26 /* addi */
8475 || (insn & (0x3fu << 26)) == 32u << 26 /* lwz */
8476 || (insn & (0x3fu << 26)) == 34u << 26 /* lbz */
8477 || (insn & (0x3fu << 26)) == 36u << 26 /* stw */
8478 || (insn & (0x3fu << 26)) == 38u << 26 /* stb */
8479 || (insn & (0x3fu << 26)) == 40u << 26 /* lhz */
8480 || (insn & (0x3fu << 26)) == 42u << 26 /* lha */
8481 || (insn & (0x3fu << 26)) == 44u << 26 /* sth */
8482 || (insn & (0x3fu << 26)) == 46u << 26 /* lmw */
8483 || (insn & (0x3fu << 26)) == 47u << 26 /* stmw */
8484 || (insn & (0x3fu << 26)) == 48u << 26 /* lfs */
8485 || (insn & (0x3fu << 26)) == 50u << 26 /* lfd */
8486 || (insn & (0x3fu << 26)) == 52u << 26 /* stfs */
8487 || (insn & (0x3fu << 26)) == 54u << 26 /* stfd */
8488 || (insn & (0x3fu << 26)) == 56u << 26 /* lq,lfq */
8489 || ((insn & (0x3fu << 26)) == 57u << 26 /* lxsd,lxssp,lfdp */
39eeab25
AM
8490 /* Exclude lfqu by testing reloc. If relocs are ever
8491 defined for the reduced D field in psq_lu then those
8492 will need testing too. */
8493 && r_type != R_PPC64_TOC16_LO && r_type != R_PPC64_GOT16_LO)
2365f8d7 8494 || ((insn & (0x3fu << 26)) == 58u << 26 /* ld,lwa */
39eeab25 8495 && (insn & 1) == 0)
2365f8d7
AM
8496 || (insn & (0x3fu << 26)) == 60u << 26 /* stfq */
8497 || ((insn & (0x3fu << 26)) == 61u << 26 /* lxv,stx{v,sd,ssp},stfdp */
39eeab25
AM
8498 /* Exclude stfqu. psq_stu as above for psq_lu. */
8499 && r_type != R_PPC64_TOC16_LO && r_type != R_PPC64_GOT16_LO)
2365f8d7 8500 || ((insn & (0x3fu << 26)) == 62u << 26 /* std,stq */
39eeab25 8501 && (insn & 1) == 0));
560c8763
AM
8502}
8503
4a421c53
AM
8504/* PCREL_OPT in one instance flags to the linker that a pair of insns:
8505 pld ra,symbol@got@pcrel
dd9b12c2 8506 load/store rt,off(ra)
4a421c53 8507 or
d4b87b1e 8508 pla ra,symbol@pcrel
dd9b12c2 8509 load/store rt,off(ra)
4a421c53 8510 may be translated to
dd9b12c2 8511 pload/pstore rt,symbol+off@pcrel
4a421c53
AM
8512 nop.
8513 This function returns true if the optimization is possible, placing
dd9b12c2 8514 the prefix insn in *PINSN1, a NOP in *PINSN2 and the offset in *POFF.
4a421c53
AM
8515
8516 On entry to this function, the linker has already determined that
d4b87b1e 8517 the pld can be replaced with pla: *PINSN1 is that pla insn,
4a421c53
AM
8518 while *PINSN2 is the second instruction. */
8519
8520static bfd_boolean
dd9b12c2 8521xlate_pcrel_opt (uint64_t *pinsn1, uint64_t *pinsn2, bfd_signed_vma *poff)
4a421c53 8522{
77486630
AM
8523 uint64_t insn1 = *pinsn1;
8524 uint64_t insn2 = *pinsn2;
dd9b12c2 8525 bfd_signed_vma off;
4a421c53 8526
77486630
AM
8527 if ((insn2 & (63ULL << 58)) == 1ULL << 58)
8528 {
8529 /* Check that regs match. */
8530 if (((insn2 >> 16) & 31) != ((insn1 >> 21) & 31))
8531 return FALSE;
8532
8533 /* P8LS or PMLS form, non-pcrel. */
8534 if ((insn2 & (-1ULL << 50) & ~(1ULL << 56)) != (1ULL << 58))
8535 return FALSE;
8536
8537 *pinsn1 = (insn2 & ~(31 << 16) & ~0x3ffff0000ffffULL) | (1ULL << 52);
8538 *pinsn2 = PNOP;
8539 off = ((insn2 >> 16) & 0x3ffff0000ULL) | (insn2 & 0xffff);
8540 *poff = (off ^ 0x200000000ULL) - 0x200000000ULL;
8541 return TRUE;
8542 }
8543
8544 insn2 >>= 32;
8545
4a421c53 8546 /* Check that regs match. */
77486630 8547 if (((insn2 >> 16) & 31) != ((insn1 >> 21) & 31))
4a421c53
AM
8548 return FALSE;
8549
8550 switch ((insn2 >> 26) & 63)
8551 {
8552 default:
8553 return FALSE;
8554
8555 case 32: /* lwz */
8556 case 34: /* lbz */
8557 case 36: /* stw */
8558 case 38: /* stb */
8559 case 40: /* lhz */
8560 case 42: /* lha */
8561 case 44: /* sth */
8562 case 48: /* lfs */
8563 case 50: /* lfd */
8564 case 52: /* stfs */
8565 case 54: /* stfd */
8566 /* These are the PMLS cases, where we just need to tack a prefix
dd9b12c2 8567 on the insn. */
77486630 8568 insn1 = ((1ULL << 58) | (2ULL << 56) | (1ULL << 52)
4a421c53 8569 | (insn2 & ((63ULL << 26) | (31ULL << 21))));
dd9b12c2 8570 off = insn2 & 0xffff;
4a421c53
AM
8571 break;
8572
8573 case 58: /* lwa, ld */
dd9b12c2 8574 if ((insn2 & 1) != 0)
4a421c53 8575 return FALSE;
77486630 8576 insn1 = ((1ULL << 58) | (1ULL << 52)
4a421c53
AM
8577 | (insn2 & 2 ? 41ULL << 26 : 57ULL << 26)
8578 | (insn2 & (31ULL << 21)));
dd9b12c2 8579 off = insn2 & 0xfffc;
4a421c53
AM
8580 break;
8581
8582 case 57: /* lxsd, lxssp */
dd9b12c2 8583 if ((insn2 & 3) < 2)
4a421c53 8584 return FALSE;
77486630 8585 insn1 = ((1ULL << 58) | (1ULL << 52)
4a421c53
AM
8586 | ((40ULL | (insn2 & 3)) << 26)
8587 | (insn2 & (31ULL << 21)));
dd9b12c2 8588 off = insn2 & 0xfffc;
4a421c53
AM
8589 break;
8590
8591 case 61: /* stxsd, stxssp, lxv, stxv */
8592 if ((insn2 & 3) == 0)
8593 return FALSE;
8594 else if ((insn2 & 3) >= 2)
8595 {
77486630 8596 insn1 = ((1ULL << 58) | (1ULL << 52)
4a421c53
AM
8597 | ((44ULL | (insn2 & 3)) << 26)
8598 | (insn2 & (31ULL << 21)));
dd9b12c2 8599 off = insn2 & 0xfffc;
4a421c53
AM
8600 }
8601 else
8602 {
77486630 8603 insn1 = ((1ULL << 58) | (1ULL << 52)
4a421c53
AM
8604 | ((50ULL | (insn2 & 4) | ((insn2 & 8) >> 3)) << 26)
8605 | (insn2 & (31ULL << 21)));
dd9b12c2 8606 off = insn2 & 0xfff0;
4a421c53
AM
8607 }
8608 break;
8609
8610 case 56: /* lq */
77486630 8611 insn1 = ((1ULL << 58) | (1ULL << 52)
4a421c53 8612 | (insn2 & ((63ULL << 26) | (31ULL << 21))));
dd9b12c2 8613 off = insn2 & 0xffff;
4a421c53
AM
8614 break;
8615
8616 case 62: /* std, stq */
dd9b12c2 8617 if ((insn2 & 1) != 0)
4a421c53 8618 return FALSE;
77486630 8619 insn1 = ((1ULL << 58) | (1ULL << 52)
4a421c53
AM
8620 | ((insn2 & 2) == 0 ? 61ULL << 26 : 60ULL << 26)
8621 | (insn2 & (31ULL << 21)));
dd9b12c2 8622 off = insn2 & 0xfffc;
4a421c53
AM
8623 break;
8624 }
8625
77486630 8626 *pinsn1 = insn1;
4a421c53 8627 *pinsn2 = (uint64_t) NOP << 32;
dd9b12c2 8628 *poff = (off ^ 0x8000) - 0x8000;
4a421c53
AM
8629 return TRUE;
8630}
8631
c5614fa4
AM
8632/* Examine all relocs referencing .toc sections in order to remove
8633 unused .toc entries. */
8634
8635bfd_boolean
33c0ec9d 8636ppc64_elf_edit_toc (struct bfd_link_info *info)
c5614fa4
AM
8637{
8638 bfd *ibfd;
8639 struct adjust_toc_info toc_inf;
67f0cbdb 8640 struct ppc_link_hash_table *htab = ppc_hash_table (info);
c5614fa4 8641
67f0cbdb 8642 htab->do_toc_opt = 1;
c5614fa4 8643 toc_inf.global_toc_syms = TRUE;
c72f2fb2 8644 for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
c5614fa4
AM
8645 {
8646 asection *toc, *sec;
8647 Elf_Internal_Shdr *symtab_hdr;
8648 Elf_Internal_Sym *local_syms;
425b145b 8649 Elf_Internal_Rela *relstart, *rel, *toc_relocs;
c5614fa4
AM
8650 unsigned long *skip, *drop;
8651 unsigned char *used;
8652 unsigned char *keep, last, some_unused;
8653
854b41e7
AM
8654 if (!is_ppc64_elf (ibfd))
8655 continue;
8656
c5614fa4
AM
8657 toc = bfd_get_section_by_name (ibfd, ".toc");
8658 if (toc == NULL
92b7a70f 8659 || toc->size == 0
dbaa2011
AM
8660 || toc->sec_info_type == SEC_INFO_TYPE_JUST_SYMS
8661 || discarded_section (toc))
c5614fa4
AM
8662 continue;
8663
425b145b 8664 toc_relocs = NULL;
c5614fa4 8665 local_syms = NULL;
0ffa91dd 8666 symtab_hdr = &elf_symtab_hdr (ibfd);
c5614fa4
AM
8667
8668 /* Look at sections dropped from the final link. */
8669 skip = NULL;
8670 relstart = NULL;
8671 for (sec = ibfd->sections; sec != NULL; sec = sec->next)
8672 {
8673 if (sec->reloc_count == 0
dbaa2011 8674 || !discarded_section (sec)
c5614fa4
AM
8675 || get_opd_info (sec)
8676 || (sec->flags & SEC_ALLOC) == 0
8677 || (sec->flags & SEC_DEBUGGING) != 0)
8678 continue;
8679
8680 relstart = _bfd_elf_link_read_relocs (ibfd, sec, NULL, NULL, FALSE);
8681 if (relstart == NULL)
8682 goto error_ret;
8683
8684 /* Run through the relocs to see which toc entries might be
8685 unused. */
8686 for (rel = relstart; rel < relstart + sec->reloc_count; ++rel)
8687 {
8688 enum elf_ppc64_reloc_type r_type;
8689 unsigned long r_symndx;
8690 asection *sym_sec;
8691 struct elf_link_hash_entry *h;
8692 Elf_Internal_Sym *sym;
8693 bfd_vma val;
8694
8695 r_type = ELF64_R_TYPE (rel->r_info);
8696 switch (r_type)
8697 {
8698 default:
8699 continue;
8700
8701 case R_PPC64_TOC16:
8702 case R_PPC64_TOC16_LO:
8703 case R_PPC64_TOC16_HI:
8704 case R_PPC64_TOC16_HA:
8705 case R_PPC64_TOC16_DS:
8706 case R_PPC64_TOC16_LO_DS:
8707 break;
8708 }
8709
8710 r_symndx = ELF64_R_SYM (rel->r_info);
8711 if (!get_sym_h (&h, &sym, &sym_sec, NULL, &local_syms,
8712 r_symndx, ibfd))
8713 goto error_ret;
8714
8715 if (sym_sec != toc)
8716 continue;
8717
8718 if (h != NULL)
8719 val = h->root.u.def.value;
8720 else
8721 val = sym->st_value;
8722 val += rel->r_addend;
8723
8724 if (val >= toc->size)
8725 continue;
8726
8727 /* Anything in the toc ought to be aligned to 8 bytes.
8728 If not, don't mark as unused. */
8729 if (val & 7)
8730 continue;
8731
8732 if (skip == NULL)
8733 {
854b41e7 8734 skip = bfd_zmalloc (sizeof (*skip) * (toc->size + 15) / 8);
c5614fa4
AM
8735 if (skip == NULL)
8736 goto error_ret;
8737 }
8738
ba761f19 8739 skip[val >> 3] = ref_from_discarded;
c5614fa4
AM
8740 }
8741
8742 if (elf_section_data (sec)->relocs != relstart)
8743 free (relstart);
8744 }
8745
ba761f19
AM
8746 /* For largetoc loads of address constants, we can convert
8747 . addis rx,2,addr@got@ha
8748 . ld ry,addr@got@l(rx)
8749 to
8750 . addis rx,2,addr@toc@ha
8751 . addi ry,rx,addr@toc@l
8752 when addr is within 2G of the toc pointer. This then means
8753 that the word storing "addr" in the toc is no longer needed. */
68ffbac6 8754
ba761f19
AM
8755 if (!ppc64_elf_tdata (ibfd)->has_small_toc_reloc
8756 && toc->output_section->rawsize < (bfd_vma) 1 << 31
8757 && toc->reloc_count != 0)
8758 {
8759 /* Read toc relocs. */
425b145b
AM
8760 toc_relocs = _bfd_elf_link_read_relocs (ibfd, toc, NULL, NULL,
8761 info->keep_memory);
8762 if (toc_relocs == NULL)
ba761f19
AM
8763 goto error_ret;
8764
425b145b 8765 for (rel = toc_relocs; rel < toc_relocs + toc->reloc_count; ++rel)
ba761f19
AM
8766 {
8767 enum elf_ppc64_reloc_type r_type;
8768 unsigned long r_symndx;
8769 asection *sym_sec;
8770 struct elf_link_hash_entry *h;
8771 Elf_Internal_Sym *sym;
8772 bfd_vma val, addr;
8773
8774 r_type = ELF64_R_TYPE (rel->r_info);
8775 if (r_type != R_PPC64_ADDR64)
8776 continue;
8777
8778 r_symndx = ELF64_R_SYM (rel->r_info);
8779 if (!get_sym_h (&h, &sym, &sym_sec, NULL, &local_syms,
8780 r_symndx, ibfd))
8781 goto error_ret;
8782
425b145b 8783 if (sym_sec == NULL
c27b8c2a 8784 || sym_sec->output_section == NULL
dbaa2011 8785 || discarded_section (sym_sec))
425b145b
AM
8786 continue;
8787
afe397ea 8788 if (!SYMBOL_REFERENCES_LOCAL (info, h))
ba761f19
AM
8789 continue;
8790
8791 if (h != NULL)
bddc25c9
AM
8792 {
8793 if (h->type == STT_GNU_IFUNC)
8794 continue;
8795 val = h->root.u.def.value;
8796 }
ba761f19 8797 else
bddc25c9
AM
8798 {
8799 if (ELF_ST_TYPE (sym->st_info) == STT_GNU_IFUNC)
8800 continue;
8801 val = sym->st_value;
8802 }
ba761f19
AM
8803 val += rel->r_addend;
8804 val += sym_sec->output_section->vma + sym_sec->output_offset;
8805
8806 /* We don't yet know the exact toc pointer value, but we
8807 know it will be somewhere in the toc section. Don't
8808 optimize if the difference from any possible toc
8809 pointer is outside [ff..f80008000, 7fff7fff]. */
8810 addr = toc->output_section->vma + TOC_BASE_OFF;
8811 if (val - addr + (bfd_vma) 0x80008000 >= (bfd_vma) 1 << 32)
8812 continue;
8813
8814 addr = toc->output_section->vma + toc->output_section->rawsize;
8815 if (val - addr + (bfd_vma) 0x80008000 >= (bfd_vma) 1 << 32)
8816 continue;
8817
8818 if (skip == NULL)
8819 {
8820 skip = bfd_zmalloc (sizeof (*skip) * (toc->size + 15) / 8);
8821 if (skip == NULL)
8822 goto error_ret;
8823 }
8824
8825 skip[rel->r_offset >> 3]
425b145b 8826 |= can_optimize | ((rel - toc_relocs) << 2);
ba761f19 8827 }
ba761f19
AM
8828 }
8829
c5614fa4
AM
8830 if (skip == NULL)
8831 continue;
8832
8833 used = bfd_zmalloc (sizeof (*used) * (toc->size + 7) / 8);
8834 if (used == NULL)
8835 {
8836 error_ret:
8837 if (local_syms != NULL
8838 && symtab_hdr->contents != (unsigned char *) local_syms)
8839 free (local_syms);
8840 if (sec != NULL
8841 && relstart != NULL
8842 && elf_section_data (sec)->relocs != relstart)
8843 free (relstart);
425b145b
AM
8844 if (toc_relocs != NULL
8845 && elf_section_data (toc)->relocs != toc_relocs)
8846 free (toc_relocs);
c5614fa4
AM
8847 if (skip != NULL)
8848 free (skip);
8849 return FALSE;
8850 }
8851
30038c59
AM
8852 /* Now check all kept sections that might reference the toc.
8853 Check the toc itself last. */
8854 for (sec = (ibfd->sections == toc && toc->next ? toc->next
8855 : ibfd->sections);
c5614fa4 8856 sec != NULL;
c5614fa4 8857 sec = (sec == toc ? NULL
c5614fa4 8858 : sec->next == NULL ? toc
30038c59 8859 : sec->next == toc && toc->next ? toc->next
c5614fa4
AM
8860 : sec->next))
8861 {
8862 int repeat;
8863
8864 if (sec->reloc_count == 0
dbaa2011 8865 || discarded_section (sec)
c5614fa4
AM
8866 || get_opd_info (sec)
8867 || (sec->flags & SEC_ALLOC) == 0
8868 || (sec->flags & SEC_DEBUGGING) != 0)
8869 continue;
8870
854b41e7
AM
8871 relstart = _bfd_elf_link_read_relocs (ibfd, sec, NULL, NULL,
8872 info->keep_memory);
c5614fa4 8873 if (relstart == NULL)
2915c55b
JK
8874 {
8875 free (used);
8876 goto error_ret;
8877 }
c5614fa4
AM
8878
8879 /* Mark toc entries referenced as used. */
c5614fa4 8880 do
d4f1ee75
AM
8881 {
8882 repeat = 0;
8883 for (rel = relstart; rel < relstart + sec->reloc_count; ++rel)
8884 {
8885 enum elf_ppc64_reloc_type r_type;
8886 unsigned long r_symndx;
8887 asection *sym_sec;
8888 struct elf_link_hash_entry *h;
8889 Elf_Internal_Sym *sym;
8890 bfd_vma val;
98528052 8891
d4f1ee75 8892 r_type = ELF64_R_TYPE (rel->r_info);
d4f1ee75
AM
8893 switch (r_type)
8894 {
8895 case R_PPC64_TOC16:
8896 case R_PPC64_TOC16_LO:
8897 case R_PPC64_TOC16_HI:
8898 case R_PPC64_TOC16_HA:
8899 case R_PPC64_TOC16_DS:
8900 case R_PPC64_TOC16_LO_DS:
8901 /* In case we're taking addresses of toc entries. */
8902 case R_PPC64_ADDR64:
8903 break;
c5614fa4 8904
d4f1ee75
AM
8905 default:
8906 continue;
8907 }
c5614fa4 8908
d4f1ee75
AM
8909 r_symndx = ELF64_R_SYM (rel->r_info);
8910 if (!get_sym_h (&h, &sym, &sym_sec, NULL, &local_syms,
8911 r_symndx, ibfd))
8912 {
8913 free (used);
8914 goto error_ret;
8915 }
c5614fa4 8916
d4f1ee75
AM
8917 if (sym_sec != toc)
8918 continue;
c5614fa4 8919
d4f1ee75
AM
8920 if (h != NULL)
8921 val = h->root.u.def.value;
8922 else
8923 val = sym->st_value;
8924 val += rel->r_addend;
ba761f19 8925
d4f1ee75
AM
8926 if (val >= toc->size)
8927 continue;
ba761f19 8928
d4f1ee75
AM
8929 if ((skip[val >> 3] & can_optimize) != 0)
8930 {
8931 bfd_vma off;
8932 unsigned char opc;
8933
8934 switch (r_type)
8935 {
8936 case R_PPC64_TOC16_HA:
ba761f19 8937 break;
ba761f19 8938
d4f1ee75
AM
8939 case R_PPC64_TOC16_LO_DS:
8940 off = rel->r_offset;
8941 off += (bfd_big_endian (ibfd) ? -2 : 3);
8942 if (!bfd_get_section_contents (ibfd, sec, &opc,
8943 off, 1))
8944 {
8945 free (used);
8946 goto error_ret;
8947 }
8948 if ((opc & (0x3f << 2)) == (58u << 2))
8949 break;
1a0670f3 8950 /* Fall through. */
ba761f19 8951
d4f1ee75
AM
8952 default:
8953 /* Wrong sort of reloc, or not a ld. We may
8954 as well clear ref_from_discarded too. */
8955 skip[val >> 3] = 0;
8956 }
8957 }
8958
8959 if (sec != toc)
8960 used[val >> 3] = 1;
8961 /* For the toc section, we only mark as used if this
8962 entry itself isn't unused. */
8963 else if ((used[rel->r_offset >> 3]
8964 || !(skip[rel->r_offset >> 3] & ref_from_discarded))
8965 && !used[val >> 3])
8966 {
8967 /* Do all the relocs again, to catch reference
8968 chains. */
8969 repeat = 1;
8970 used[val >> 3] = 1;
8971 }
8972 }
8973 }
c5614fa4 8974 while (repeat);
854b41e7
AM
8975
8976 if (elf_section_data (sec)->relocs != relstart)
8977 free (relstart);
c5614fa4
AM
8978 }
8979
8980 /* Merge the used and skip arrays. Assume that TOC
8981 doublewords not appearing as either used or unused belong
de194d85 8982 to an entry more than one doubleword in size. */
c5614fa4
AM
8983 for (drop = skip, keep = used, last = 0, some_unused = 0;
8984 drop < skip + (toc->size + 7) / 8;
8985 ++drop, ++keep)
8986 {
8987 if (*keep)
8988 {
ba761f19
AM
8989 *drop &= ~ref_from_discarded;
8990 if ((*drop & can_optimize) != 0)
8991 some_unused = 1;
c5614fa4
AM
8992 last = 0;
8993 }
b140b010 8994 else if ((*drop & ref_from_discarded) != 0)
c5614fa4
AM
8995 {
8996 some_unused = 1;
ba761f19 8997 last = ref_from_discarded;
c5614fa4
AM
8998 }
8999 else
9000 *drop = last;
9001 }
9002
9003 free (used);
9004
9005 if (some_unused)
9006 {
9007 bfd_byte *contents, *src;
9008 unsigned long off;
d62b3684 9009 Elf_Internal_Sym *sym;
ba761f19 9010 bfd_boolean local_toc_syms = FALSE;
c5614fa4
AM
9011
9012 /* Shuffle the toc contents, and at the same time convert the
9013 skip array from booleans into offsets. */
9014 if (!bfd_malloc_and_get_section (ibfd, toc, &contents))
9015 goto error_ret;
9016
9017 elf_section_data (toc)->this_hdr.contents = contents;
9018
9019 for (src = contents, off = 0, drop = skip;
9020 src < contents + toc->size;
9021 src += 8, ++drop)
9022 {
ba761f19
AM
9023 if ((*drop & (can_optimize | ref_from_discarded)) != 0)
9024 off += 8;
c5614fa4
AM
9025 else if (off != 0)
9026 {
9027 *drop = off;
9028 memcpy (src - off, src, 8);
9029 }
9030 }
854b41e7 9031 *drop = off;
c5614fa4
AM
9032 toc->rawsize = toc->size;
9033 toc->size = src - contents - off;
9034
ba761f19
AM
9035 /* Adjust addends for relocs against the toc section sym,
9036 and optimize any accesses we can. */
c5614fa4
AM
9037 for (sec = ibfd->sections; sec != NULL; sec = sec->next)
9038 {
9039 if (sec->reloc_count == 0
dbaa2011 9040 || discarded_section (sec))
c5614fa4
AM
9041 continue;
9042
9043 relstart = _bfd_elf_link_read_relocs (ibfd, sec, NULL, NULL,
854b41e7 9044 info->keep_memory);
c5614fa4
AM
9045 if (relstart == NULL)
9046 goto error_ret;
9047
9048 for (rel = relstart; rel < relstart + sec->reloc_count; ++rel)
9049 {
9050 enum elf_ppc64_reloc_type r_type;
9051 unsigned long r_symndx;
9052 asection *sym_sec;
9053 struct elf_link_hash_entry *h;
854b41e7 9054 bfd_vma val;
c5614fa4
AM
9055
9056 r_type = ELF64_R_TYPE (rel->r_info);
9057 switch (r_type)
9058 {
9059 default:
9060 continue;
9061
9062 case R_PPC64_TOC16:
9063 case R_PPC64_TOC16_LO:
9064 case R_PPC64_TOC16_HI:
9065 case R_PPC64_TOC16_HA:
9066 case R_PPC64_TOC16_DS:
9067 case R_PPC64_TOC16_LO_DS:
9068 case R_PPC64_ADDR64:
9069 break;
9070 }
9071
9072 r_symndx = ELF64_R_SYM (rel->r_info);
9073 if (!get_sym_h (&h, &sym, &sym_sec, NULL, &local_syms,
9074 r_symndx, ibfd))
9075 goto error_ret;
9076
ba761f19 9077 if (sym_sec != toc)
c5614fa4
AM
9078 continue;
9079
ba761f19
AM
9080 if (h != NULL)
9081 val = h->root.u.def.value;
9082 else
9083 {
9084 val = sym->st_value;
9085 if (val != 0)
9086 local_toc_syms = TRUE;
9087 }
9088
9089 val += rel->r_addend;
854b41e7
AM
9090
9091 if (val > toc->rawsize)
9092 val = toc->rawsize;
ba761f19
AM
9093 else if ((skip[val >> 3] & ref_from_discarded) != 0)
9094 continue;
9095 else if ((skip[val >> 3] & can_optimize) != 0)
9096 {
9097 Elf_Internal_Rela *tocrel
425b145b 9098 = toc_relocs + (skip[val >> 3] >> 2);
ba761f19
AM
9099 unsigned long tsym = ELF64_R_SYM (tocrel->r_info);
9100
9101 switch (r_type)
9102 {
9103 case R_PPC64_TOC16_HA:
9104 rel->r_info = ELF64_R_INFO (tsym, R_PPC64_TOC16_HA);
9105 break;
9106
9107 case R_PPC64_TOC16_LO_DS:
9108 rel->r_info = ELF64_R_INFO (tsym, R_PPC64_LO_DS_OPT);
9109 break;
9110
9111 default:
28942f62
AM
9112 if (!ppc64_elf_howto_table[R_PPC64_ADDR32])
9113 ppc_howto_init ();
b140b010 9114 info->callbacks->einfo
695344c0 9115 /* xgettext:c-format */
174d0a74 9116 (_("%H: %s references "
b140b010
AM
9117 "optimized away TOC entry\n"),
9118 ibfd, sec, rel->r_offset,
9119 ppc64_elf_howto_table[r_type]->name);
9120 bfd_set_error (bfd_error_bad_value);
9121 goto error_ret;
ba761f19
AM
9122 }
9123 rel->r_addend = tocrel->r_addend;
9124 elf_section_data (sec)->relocs = relstart;
9125 continue;
9126 }
9127
9128 if (h != NULL || sym->st_value != 0)
9129 continue;
854b41e7
AM
9130
9131 rel->r_addend -= skip[val >> 3];
9132 elf_section_data (sec)->relocs = relstart;
c5614fa4 9133 }
854b41e7
AM
9134
9135 if (elf_section_data (sec)->relocs != relstart)
9136 free (relstart);
c5614fa4
AM
9137 }
9138
9139 /* We shouldn't have local or global symbols defined in the TOC,
9140 but handle them anyway. */
df22d223
AM
9141 if (local_syms != NULL)
9142 for (sym = local_syms;
9143 sym < local_syms + symtab_hdr->sh_info;
9144 ++sym)
9145 if (sym->st_value != 0
9146 && bfd_section_from_elf_index (ibfd, sym->st_shndx) == toc)
9147 {
9148 unsigned long i;
854b41e7 9149
df22d223
AM
9150 if (sym->st_value > toc->rawsize)
9151 i = toc->rawsize >> 3;
9152 else
9153 i = sym->st_value >> 3;
854b41e7 9154
df22d223
AM
9155 if ((skip[i] & (ref_from_discarded | can_optimize)) != 0)
9156 {
9157 if (local_toc_syms)
4eca0228 9158 _bfd_error_handler
df22d223
AM
9159 (_("%s defined on removed toc entry"),
9160 bfd_elf_sym_name (ibfd, symtab_hdr, sym, NULL));
9161 do
9162 ++i;
9163 while ((skip[i] & (ref_from_discarded | can_optimize)));
9164 sym->st_value = (bfd_vma) i << 3;
9165 }
d62b3684 9166
df22d223
AM
9167 sym->st_value -= skip[i];
9168 symtab_hdr->contents = (unsigned char *) local_syms;
9169 }
c5614fa4 9170
854b41e7 9171 /* Adjust any global syms defined in this toc input section. */
c5614fa4
AM
9172 if (toc_inf.global_toc_syms)
9173 {
9174 toc_inf.toc = toc;
9175 toc_inf.skip = skip;
9176 toc_inf.global_toc_syms = FALSE;
9177 elf_link_hash_traverse (elf_hash_table (info), adjust_toc_syms,
9178 &toc_inf);
9179 }
854b41e7
AM
9180
9181 if (toc->reloc_count != 0)
9182 {
d4730f92 9183 Elf_Internal_Shdr *rel_hdr;
854b41e7
AM
9184 Elf_Internal_Rela *wrel;
9185 bfd_size_type sz;
9186
854b41e7 9187 /* Remove unused toc relocs, and adjust those we keep. */
28be611c
AM
9188 if (toc_relocs == NULL)
9189 toc_relocs = _bfd_elf_link_read_relocs (ibfd, toc, NULL, NULL,
9190 info->keep_memory);
9191 if (toc_relocs == NULL)
9192 goto error_ret;
9193
425b145b
AM
9194 wrel = toc_relocs;
9195 for (rel = toc_relocs; rel < toc_relocs + toc->reloc_count; ++rel)
ba761f19
AM
9196 if ((skip[rel->r_offset >> 3]
9197 & (ref_from_discarded | can_optimize)) == 0)
854b41e7
AM
9198 {
9199 wrel->r_offset = rel->r_offset - skip[rel->r_offset >> 3];
9200 wrel->r_info = rel->r_info;
9201 wrel->r_addend = rel->r_addend;
9202 ++wrel;
9203 }
9204 else if (!dec_dynrel_count (rel->r_info, toc, info,
9205 &local_syms, NULL, NULL))
9206 goto error_ret;
9207
425b145b
AM
9208 elf_section_data (toc)->relocs = toc_relocs;
9209 toc->reloc_count = wrel - toc_relocs;
d4730f92
BS
9210 rel_hdr = _bfd_elf_single_rel_hdr (toc);
9211 sz = rel_hdr->sh_entsize;
9212 rel_hdr->sh_size = toc->reloc_count * sz;
854b41e7 9213 }
c5614fa4 9214 }
28be611c
AM
9215 else if (toc_relocs != NULL
9216 && elf_section_data (toc)->relocs != toc_relocs)
425b145b 9217 free (toc_relocs);
c5614fa4
AM
9218
9219 if (local_syms != NULL
9220 && symtab_hdr->contents != (unsigned char *) local_syms)
9221 {
9222 if (!info->keep_memory)
9223 free (local_syms);
9224 else
9225 symtab_hdr->contents = (unsigned char *) local_syms;
9226 }
9227 free (skip);
9228 }
9229
066f4018 9230 /* Look for cases where we can change an indirect GOT access to
4a421c53
AM
9231 a GOT relative or PC relative access, possibly reducing the
9232 number of GOT entries. */
066f4018
AM
9233 for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
9234 {
9235 asection *sec;
9236 Elf_Internal_Shdr *symtab_hdr;
9237 Elf_Internal_Sym *local_syms;
9238 Elf_Internal_Rela *relstart, *rel;
9239 bfd_vma got;
9240
9241 if (!is_ppc64_elf (ibfd))
9242 continue;
9243
903b777d 9244 if (!ppc64_elf_tdata (ibfd)->has_optrel)
066f4018
AM
9245 continue;
9246
9247 sec = ppc64_elf_tdata (ibfd)->got;
903b777d
AM
9248 got = 0;
9249 if (sec != NULL)
9250 got = sec->output_section->vma + sec->output_offset + 0x8000;
066f4018
AM
9251
9252 local_syms = NULL;
9253 symtab_hdr = &elf_symtab_hdr (ibfd);
9254
9255 for (sec = ibfd->sections; sec != NULL; sec = sec->next)
9256 {
9257 if (sec->reloc_count == 0
903b777d 9258 || !ppc64_elf_section_data (sec)->has_optrel
066f4018
AM
9259 || discarded_section (sec))
9260 continue;
9261
9262 relstart = _bfd_elf_link_read_relocs (ibfd, sec, NULL, NULL,
9263 info->keep_memory);
9264 if (relstart == NULL)
9265 {
9266 got_error_ret:
9267 if (local_syms != NULL
9268 && symtab_hdr->contents != (unsigned char *) local_syms)
9269 free (local_syms);
9270 if (sec != NULL
9271 && relstart != NULL
9272 && elf_section_data (sec)->relocs != relstart)
9273 free (relstart);
9274 return FALSE;
9275 }
9276
9277 for (rel = relstart; rel < relstart + sec->reloc_count; ++rel)
9278 {
9279 enum elf_ppc64_reloc_type r_type;
9280 unsigned long r_symndx;
9281 Elf_Internal_Sym *sym;
9282 asection *sym_sec;
9283 struct elf_link_hash_entry *h;
9284 struct got_entry *ent;
133a1f60 9285 bfd_vma val, pc;
4a421c53 9286 unsigned char buf[8];
066f4018 9287 unsigned int insn;
903b777d 9288 enum {no_check, check_lo, check_ha} insn_check;
066f4018
AM
9289
9290 r_type = ELF64_R_TYPE (rel->r_info);
903b777d
AM
9291 switch (r_type)
9292 {
9293 default:
9294 insn_check = no_check;
9295 break;
9296
9297 case R_PPC64_PLT16_HA:
9298 case R_PPC64_GOT_TLSLD16_HA:
9299 case R_PPC64_GOT_TLSGD16_HA:
9300 case R_PPC64_GOT_TPREL16_HA:
9301 case R_PPC64_GOT_DTPREL16_HA:
9302 case R_PPC64_GOT16_HA:
9303 case R_PPC64_TOC16_HA:
9304 insn_check = check_ha;
9305 break;
9306
9307 case R_PPC64_PLT16_LO:
9308 case R_PPC64_PLT16_LO_DS:
9309 case R_PPC64_GOT_TLSLD16_LO:
9310 case R_PPC64_GOT_TLSGD16_LO:
9311 case R_PPC64_GOT_TPREL16_LO_DS:
9312 case R_PPC64_GOT_DTPREL16_LO_DS:
9313 case R_PPC64_GOT16_LO:
9314 case R_PPC64_GOT16_LO_DS:
9315 case R_PPC64_TOC16_LO:
9316 case R_PPC64_TOC16_LO_DS:
9317 insn_check = check_lo;
9318 break;
9319 }
9320
9321 if (insn_check != no_check)
9322 {
9323 bfd_vma off = rel->r_offset & ~3;
9324
9325 if (!bfd_get_section_contents (ibfd, sec, buf, off, 4))
9326 goto got_error_ret;
9327
9328 insn = bfd_get_32 (ibfd, buf);
9329 if (insn_check == check_lo
9330 ? !ok_lo_toc_insn (insn, r_type)
2365f8d7 9331 : ((insn & ((0x3fu << 26) | 0x1f << 16))
903b777d
AM
9332 != ((15u << 26) | (2 << 16)) /* addis rt,2,imm */))
9333 {
9334 char str[12];
9335
9336 ppc64_elf_tdata (ibfd)->unexpected_toc_insn = 1;
9337 sprintf (str, "%#08x", insn);
9338 info->callbacks->einfo
9339 /* xgettext:c-format */
9340 (_("%H: got/toc optimization is not supported for"
9341 " %s instruction\n"),
9342 ibfd, sec, rel->r_offset & ~3, str);
9343 continue;
9344 }
9345 }
9346
066f4018
AM
9347 switch (r_type)
9348 {
bb22a418
AM
9349 /* Note that we don't delete GOT entries for
9350 R_PPC64_GOT16_DS since we'd need a lot more
9351 analysis. For starters, the preliminary layout is
9352 before the GOT, PLT, dynamic sections and stubs are
9353 laid out. Then we'd need to allow for changes in
9354 distance between sections caused by alignment. */
066f4018
AM
9355 default:
9356 continue;
9357
066f4018
AM
9358 case R_PPC64_GOT16_HA:
9359 case R_PPC64_GOT16_LO_DS:
4a421c53 9360 case R_PPC64_GOT_PCREL34:
066f4018
AM
9361 break;
9362 }
9363
9364 r_symndx = ELF64_R_SYM (rel->r_info);
9365 if (!get_sym_h (&h, &sym, &sym_sec, NULL, &local_syms,
9366 r_symndx, ibfd))
9367 goto got_error_ret;
9368
6d5554a6
AM
9369 if (sym_sec == NULL
9370 || sym_sec->output_section == NULL
9371 || discarded_section (sym_sec))
9372 continue;
9373
066f4018
AM
9374 if (!SYMBOL_REFERENCES_LOCAL (info, h))
9375 continue;
9376
9377 if (h != NULL)
9378 val = h->root.u.def.value;
9379 else
9380 val = sym->st_value;
133a1f60 9381 val += rel->r_addend;
066f4018
AM
9382 val += sym_sec->output_section->vma + sym_sec->output_offset;
9383
bb22a418
AM
9384/* Fudge factor to allow for the fact that the preliminary layout
9385 isn't exact. Reduce limits by this factor. */
9386#define LIMIT_ADJUST(LIMIT) ((LIMIT) - (LIMIT) / 16)
9387
066f4018
AM
9388 switch (r_type)
9389 {
9390 default:
9391 continue;
9392
066f4018 9393 case R_PPC64_GOT16_HA:
bb22a418
AM
9394 if (val - got + LIMIT_ADJUST (0x80008000ULL)
9395 >= LIMIT_ADJUST (0x100000000ULL))
066f4018
AM
9396 continue;
9397
9398 if (!bfd_get_section_contents (ibfd, sec, buf,
9399 rel->r_offset & ~3, 4))
9400 goto got_error_ret;
9401 insn = bfd_get_32 (ibfd, buf);
2365f8d7 9402 if (((insn & ((0x3fu << 26) | 0x1f << 16))
066f4018
AM
9403 != ((15u << 26) | (2 << 16)) /* addis rt,2,imm */))
9404 continue;
9405 break;
9406
9407 case R_PPC64_GOT16_LO_DS:
bb22a418
AM
9408 if (val - got + LIMIT_ADJUST (0x80008000ULL)
9409 >= LIMIT_ADJUST (0x100000000ULL))
066f4018
AM
9410 continue;
9411 if (!bfd_get_section_contents (ibfd, sec, buf,
9412 rel->r_offset & ~3, 4))
9413 goto got_error_ret;
9414 insn = bfd_get_32 (ibfd, buf);
2365f8d7 9415 if ((insn & (0x3fu << 26 | 0x3)) != 58u << 26 /* ld */)
066f4018
AM
9416 continue;
9417 break;
4a421c53
AM
9418
9419 case R_PPC64_GOT_PCREL34:
9420 pc = rel->r_offset;
9421 pc += sec->output_section->vma + sec->output_offset;
bb22a418
AM
9422 if (val - pc + LIMIT_ADJUST (1ULL << 33)
9423 >= LIMIT_ADJUST (1ULL << 34))
4a421c53
AM
9424 continue;
9425 if (!bfd_get_section_contents (ibfd, sec, buf,
9426 rel->r_offset & ~3, 8))
9427 goto got_error_ret;
9428 insn = bfd_get_32 (ibfd, buf);
9429 if ((insn & (-1u << 18)) != ((1u << 26) | (1u << 20)))
9430 continue;
9431 insn = bfd_get_32 (ibfd, buf + 4);
2365f8d7 9432 if ((insn & (0x3fu << 26)) != 57u << 26)
4a421c53
AM
9433 continue;
9434 break;
066f4018 9435 }
bb22a418 9436#undef LIMIT_ADJUST
066f4018
AM
9437
9438 if (h != NULL)
9439 ent = h->got.glist;
9440 else
9441 {
9442 struct got_entry **local_got_ents = elf_local_got_ents (ibfd);
9443 ent = local_got_ents[r_symndx];
9444 }
9445 for (; ent != NULL; ent = ent->next)
133a1f60 9446 if (ent->addend == rel->r_addend
066f4018
AM
9447 && ent->owner == ibfd
9448 && ent->tls_type == 0)
9449 break;
9450 BFD_ASSERT (ent && ent->got.refcount > 0);
9451 ent->got.refcount -= 1;
9452 }
9453
9454 if (elf_section_data (sec)->relocs != relstart)
9455 free (relstart);
9456 }
9457
9458 if (local_syms != NULL
9459 && symtab_hdr->contents != (unsigned char *) local_syms)
9460 {
9461 if (!info->keep_memory)
9462 free (local_syms);
9463 else
9464 symtab_hdr->contents = (unsigned char *) local_syms;
9465 }
9466 }
9467
c5614fa4
AM
9468 return TRUE;
9469}
9470
1bbe0902
AM
9471/* Return true iff input section I references the TOC using
9472 instructions limited to +/-32k offsets. */
9473
9474bfd_boolean
9475ppc64_elf_has_small_toc_reloc (asection *i)
9476{
9477 return (is_ppc64_elf (i->owner)
9478 && ppc64_elf_tdata (i->owner)->has_small_toc_reloc);
9479}
9480
927be08e
AM
9481/* Allocate space for one GOT entry. */
9482
9483static void
9484allocate_got (struct elf_link_hash_entry *h,
9485 struct bfd_link_info *info,
9486 struct got_entry *gent)
9487{
9488 struct ppc_link_hash_table *htab = ppc_hash_table (info);
ed7007c1 9489 struct ppc_link_hash_entry *eh = ppc_elf_hash_entry (h);
927be08e
AM
9490 int entsize = (gent->tls_type & eh->tls_mask & (TLS_GD | TLS_LD)
9491 ? 16 : 8);
9492 int rentsize = (gent->tls_type & eh->tls_mask & TLS_GD
9493 ? 2 : 1) * sizeof (Elf64_External_Rela);
9494 asection *got = ppc64_elf_tdata (gent->owner)->got;
9495
9496 gent->got.offset = got->size;
9497 got->size += entsize;
9498
19e08130 9499 if (h->type == STT_GNU_IFUNC)
927be08e 9500 {
33e44f2e 9501 htab->elf.irelplt->size += rentsize;
19e08130 9502 htab->got_reli_size += rentsize;
927be08e 9503 }
f15d0b54 9504 else if (((bfd_link_pic (info)
f749f26e 9505 && !(gent->tls_type != 0
f15d0b54
AM
9506 && bfd_link_executable (info)
9507 && SYMBOL_REFERENCES_LOCAL (info, h)))
f0158f44
AM
9508 || (htab->elf.dynamic_sections_created
9509 && h->dynindx != -1
9510 && !SYMBOL_REFERENCES_LOCAL (info, h)))
21d68fcd 9511 && !UNDEFWEAK_NO_DYNAMIC_RELOC (info, h))
927be08e 9512 {
19e08130 9513 asection *relgot = ppc64_elf_tdata (gent->owner)->relgot;
927be08e 9514 relgot->size += rentsize;
927be08e
AM
9515 }
9516}
9517
7865406b
AM
9518/* This function merges got entries in the same toc group. */
9519
9520static void
9521merge_got_entries (struct got_entry **pent)
9522{
9523 struct got_entry *ent, *ent2;
9524
9525 for (ent = *pent; ent != NULL; ent = ent->next)
9526 if (!ent->is_indirect)
9527 for (ent2 = ent->next; ent2 != NULL; ent2 = ent2->next)
9528 if (!ent2->is_indirect
9529 && ent2->addend == ent->addend
9530 && ent2->tls_type == ent->tls_type
9531 && elf_gp (ent2->owner) == elf_gp (ent->owner))
9532 {
9533 ent2->is_indirect = TRUE;
9534 ent2->got.ent = ent;
9535 }
9536}
9537
46434633 9538/* If H is undefined, make it dynamic if that makes sense. */
f0158f44
AM
9539
9540static bfd_boolean
46434633
AM
9541ensure_undef_dynamic (struct bfd_link_info *info,
9542 struct elf_link_hash_entry *h)
f0158f44
AM
9543{
9544 struct elf_link_hash_table *htab = elf_hash_table (info);
9545
9546 if (htab->dynamic_sections_created
46434633
AM
9547 && ((info->dynamic_undefined_weak != 0
9548 && h->root.type == bfd_link_hash_undefweak)
9549 || h->root.type == bfd_link_hash_undefined)
f0158f44
AM
9550 && h->dynindx == -1
9551 && !h->forced_local
9552 && ELF_ST_VISIBILITY (h->other) == STV_DEFAULT)
9553 return bfd_elf_link_record_dynamic_symbol (info, h);
9554 return TRUE;
9555}
9556
65f38f15
AM
9557/* Allocate space in .plt, .got and associated reloc sections for
9558 dynamic relocs. */
5bd4f169 9559
b34976b6 9560static bfd_boolean
4ce794b7 9561allocate_dynrelocs (struct elf_link_hash_entry *h, void *inf)
5bd4f169 9562{
65f38f15
AM
9563 struct bfd_link_info *info;
9564 struct ppc_link_hash_table *htab;
5bd4f169 9565 asection *s;
65f38f15 9566 struct ppc_link_hash_entry *eh;
0b8bcf0d 9567 struct got_entry **pgent, *gent;
5bd4f169 9568
e92d460e 9569 if (h->root.type == bfd_link_hash_indirect)
b34976b6 9570 return TRUE;
5bd4f169 9571
65f38f15
AM
9572 info = (struct bfd_link_info *) inf;
9573 htab = ppc_hash_table (info);
4dfe6ac6
NC
9574 if (htab == NULL)
9575 return FALSE;
5bd4f169 9576
ed7007c1 9577 eh = ppc_elf_hash_entry (h);
951fd09b
AM
9578 /* Run through the TLS GD got entries first if we're changing them
9579 to TPREL. */
b00a0a86 9580 if ((eh->tls_mask & (TLS_TLS | TLS_GDIE)) == (TLS_TLS | TLS_GDIE))
951fd09b
AM
9581 for (gent = h->got.glist; gent != NULL; gent = gent->next)
9582 if (gent->got.refcount > 0
9583 && (gent->tls_type & TLS_GD) != 0)
9584 {
9585 /* This was a GD entry that has been converted to TPREL. If
9586 there happens to be a TPREL entry we can use that one. */
9587 struct got_entry *ent;
9588 for (ent = h->got.glist; ent != NULL; ent = ent->next)
9589 if (ent->got.refcount > 0
9590 && (ent->tls_type & TLS_TPREL) != 0
e717da7e
AM
9591 && ent->addend == gent->addend
9592 && ent->owner == gent->owner)
951fd09b
AM
9593 {
9594 gent->got.refcount = 0;
9595 break;
9596 }
9597
9598 /* If not, then we'll be using our own TPREL entry. */
9599 if (gent->got.refcount != 0)
9600 gent->tls_type = TLS_TLS | TLS_TPREL;
9601 }
9602
7865406b
AM
9603 /* Remove any list entry that won't generate a word in the GOT before
9604 we call merge_got_entries. Otherwise we risk merging to empty
9605 entries. */
0b8bcf0d
AM
9606 pgent = &h->got.glist;
9607 while ((gent = *pgent) != NULL)
411e1bfb 9608 if (gent->got.refcount > 0)
7865406b
AM
9609 {
9610 if ((gent->tls_type & TLS_LD) != 0
f749f26e 9611 && SYMBOL_REFERENCES_LOCAL (info, h))
7865406b
AM
9612 {
9613 ppc64_tlsld_got (gent->owner)->got.refcount += 1;
9614 *pgent = gent->next;
9615 }
9616 else
9617 pgent = &gent->next;
9618 }
9619 else
9620 *pgent = gent->next;
9621
9622 if (!htab->do_multi_toc)
9623 merge_got_entries (&h->got.glist);
9624
9625 for (gent = h->got.glist; gent != NULL; gent = gent->next)
9626 if (!gent->is_indirect)
411e1bfb 9627 {
ec73ddcd
AM
9628 /* Ensure we catch all the cases where this symbol should
9629 be made dynamic. */
46434633 9630 if (!ensure_undef_dynamic (info, h))
f0158f44 9631 return FALSE;
65f38f15 9632
0c8d6e5c 9633 if (!is_ppc64_elf (gent->owner))
927be08e 9634 abort ();
0ffa91dd 9635
927be08e 9636 allocate_got (h, info, gent);
411e1bfb 9637 }
65f38f15 9638
954b63d4
AM
9639 /* If no dynamic sections we can't have dynamic relocs, except for
9640 IFUNCs which are handled even in static executables. */
8a2058b5
AM
9641 if (!htab->elf.dynamic_sections_created
9642 && h->type != STT_GNU_IFUNC)
9643 eh->dyn_relocs = NULL;
9644
529fe20e
AM
9645 /* Discard relocs on undefined symbols that must be local. */
9646 else if (h->root.type == bfd_link_hash_undefined
9647 && ELF_ST_VISIBILITY (h->other) != STV_DEFAULT)
9648 eh->dyn_relocs = NULL;
9649
954b63d4
AM
9650 /* Also discard relocs on undefined weak syms with non-default
9651 visibility, or when dynamic_undefined_weak says so. */
21d68fcd 9652 else if (UNDEFWEAK_NO_DYNAMIC_RELOC (info, h))
954b63d4
AM
9653 eh->dyn_relocs = NULL;
9654
8a2058b5 9655 if (eh->dyn_relocs != NULL)
65f38f15 9656 {
8a2058b5
AM
9657 struct elf_dyn_relocs *p, **pp;
9658
57e7d118
AM
9659 /* In the shared -Bsymbolic case, discard space allocated for
9660 dynamic pc-relative relocs against symbols which turn out to
9661 be defined in regular objects. For the normal shared case,
9662 discard space for relocs that have become local due to symbol
9663 visibility changes. */
57e7d118 9664 if (bfd_link_pic (info))
65f38f15 9665 {
57e7d118
AM
9666 /* Relocs that use pc_count are those that appear on a call
9667 insn, or certain REL relocs (see must_be_dyn_reloc) that
9668 can be generated via assembly. We want calls to
9669 protected symbols to resolve directly to the function
9670 rather than going via the plt. If people want function
9671 pointer comparisons to work as expected then they should
9672 avoid writing weird assembly. */
9673 if (SYMBOL_CALLS_LOCAL (info, h))
9674 {
57e7d118
AM
9675 for (pp = &eh->dyn_relocs; (p = *pp) != NULL; )
9676 {
9677 p->count -= p->pc_count;
9678 p->pc_count = 0;
9679 if (p->count == 0)
9680 *pp = p->next;
9681 else
9682 pp = &p->next;
9683 }
9684 }
65f38f15 9685
954b63d4 9686 if (eh->dyn_relocs != NULL)
5bd4f169 9687 {
ec73ddcd
AM
9688 /* Ensure we catch all the cases where this symbol
9689 should be made dynamic. */
46434633 9690 if (!ensure_undef_dynamic (info, h))
f0158f44 9691 return FALSE;
5bd4f169 9692 }
65f38f15 9693 }
ec73ddcd
AM
9694
9695 /* For a fixed position executable, discard space for
9696 relocs against symbols which are not dynamic. */
9697 else if (h->type != STT_GNU_IFUNC)
57e7d118 9698 {
529fe20e
AM
9699 if (h->dynamic_adjusted
9700 && !h->def_regular
9701 && !ELF_COMMON_DEF_P (h))
f0158f44 9702 {
ec73ddcd
AM
9703 /* Ensure we catch all the cases where this symbol
9704 should be made dynamic. */
46434633 9705 if (!ensure_undef_dynamic (info, h))
f0158f44 9706 return FALSE;
dfbb6ac9 9707
ec73ddcd 9708 /* But if that didn't work out, discard dynamic relocs. */
f0158f44
AM
9709 if (h->dynindx == -1)
9710 eh->dyn_relocs = NULL;
9711 }
9712 else
8a2058b5 9713 eh->dyn_relocs = NULL;
57e7d118
AM
9714 }
9715
9716 /* Finally, allocate space. */
9717 for (p = eh->dyn_relocs; p != NULL; p = p->next)
9718 {
9719 asection *sreloc = elf_section_data (p->sec)->sreloc;
9720 if (eh->elf.type == STT_GNU_IFUNC)
9721 sreloc = htab->elf.irelplt;
9722 sreloc->size += p->count * sizeof (Elf64_External_Rela);
dfbb6ac9 9723 }
65f38f15 9724 }
57e7d118 9725
2d7ad24e
AM
9726 /* We might need a PLT entry when the symbol
9727 a) is dynamic, or
9728 b) is an ifunc, or
9729 c) has plt16 relocs and has been processed by adjust_dynamic_symbol, or
9730 d) has plt16 relocs and we are linking statically. */
9731 if ((htab->elf.dynamic_sections_created && h->dynindx != -1)
9732 || h->type == STT_GNU_IFUNC
9733 || (h->needs_plt && h->dynamic_adjusted)
9734 || (h->needs_plt
9735 && h->def_regular
9736 && !htab->elf.dynamic_sections_created
3e04d765 9737 && !htab->can_convert_all_inline_plt
ed7007c1 9738 && (ppc_elf_hash_entry (h)->tls_mask
2d7ad24e 9739 & (TLS_TLS | PLT_KEEP)) == PLT_KEEP))
65f38f15 9740 {
57e7d118
AM
9741 struct plt_entry *pent;
9742 bfd_boolean doneone = FALSE;
9743 for (pent = h->plt.plist; pent != NULL; pent = pent->next)
9744 if (pent->plt.refcount > 0)
9745 {
9746 if (!htab->elf.dynamic_sections_created
9747 || h->dynindx == -1)
9748 {
2d7ad24e
AM
9749 if (h->type == STT_GNU_IFUNC)
9750 {
9751 s = htab->elf.iplt;
9752 pent->plt.offset = s->size;
9753 s->size += PLT_ENTRY_SIZE (htab);
9754 s = htab->elf.irelplt;
9755 }
9756 else
9757 {
9758 s = htab->pltlocal;
9759 pent->plt.offset = s->size;
9760 s->size += LOCAL_PLT_ENTRY_SIZE (htab);
9761 s = bfd_link_pic (info) ? htab->relpltlocal : NULL;
9762 }
57e7d118
AM
9763 }
9764 else
9765 {
9766 /* If this is the first .plt entry, make room for the special
9767 first entry. */
9768 s = htab->elf.splt;
9769 if (s->size == 0)
9770 s->size += PLT_INITIAL_ENTRY_SIZE (htab);
65f38f15 9771
57e7d118 9772 pent->plt.offset = s->size;
65f38f15 9773
57e7d118
AM
9774 /* Make room for this entry. */
9775 s->size += PLT_ENTRY_SIZE (htab);
65f38f15 9776
57e7d118
AM
9777 /* Make room for the .glink code. */
9778 s = htab->glink;
9779 if (s->size == 0)
9e390558 9780 s->size += GLINK_PLTRESOLVE_SIZE (htab);
57e7d118
AM
9781 if (htab->opd_abi)
9782 {
9783 /* We need bigger stubs past index 32767. */
9e390558 9784 if (s->size >= GLINK_PLTRESOLVE_SIZE (htab) + 32768*2*4)
57e7d118
AM
9785 s->size += 4;
9786 s->size += 2*4;
9787 }
9788 else
9789 s->size += 4;
65f38f15 9790
57e7d118
AM
9791 /* We also need to make an entry in the .rela.plt section. */
9792 s = htab->elf.srelplt;
9793 }
2d7ad24e
AM
9794 if (s != NULL)
9795 s->size += sizeof (Elf64_External_Rela);
57e7d118
AM
9796 doneone = TRUE;
9797 }
9798 else
9799 pent->plt.offset = (bfd_vma) -1;
9800 if (!doneone)
9801 {
9802 h->plt.plist = NULL;
9803 h->needs_plt = 0;
9804 }
65f38f15 9805 }
57e7d118 9806 else
65f38f15 9807 {
57e7d118
AM
9808 h->plt.plist = NULL;
9809 h->needs_plt = 0;
65f38f15
AM
9810 }
9811
b34976b6 9812 return TRUE;
65f38f15
AM
9813}
9814
9e390558
AM
9815#define PPC_LO(v) ((v) & 0xffff)
9816#define PPC_HI(v) (((v) >> 16) & 0xffff)
9817#define PPC_HA(v) PPC_HI ((v) + 0x8000)
04bdff6a
AM
9818#define D34(v) \
9819 ((((v) & 0x3ffff0000ULL) << 16) | (v & 0xffff))
9820#define HA34(v) ((v + (1ULL << 33)) >> 34)
9e390558 9821
a345bc8d
AM
9822/* Called via elf_link_hash_traverse from ppc64_elf_size_dynamic_sections
9823 to set up space for global entry stubs. These are put in glink,
9824 after the branch table. */
65f38f15 9825
b34976b6 9826static bfd_boolean
a345bc8d 9827size_global_entry_stubs (struct elf_link_hash_entry *h, void *inf)
65f38f15 9828{
a345bc8d
AM
9829 struct bfd_link_info *info;
9830 struct ppc_link_hash_table *htab;
9831 struct plt_entry *pent;
9e390558 9832 asection *s, *plt;
65f38f15 9833
a345bc8d
AM
9834 if (h->root.type == bfd_link_hash_indirect)
9835 return TRUE;
65f38f15 9836
a345bc8d
AM
9837 if (!h->pointer_equality_needed)
9838 return TRUE;
65f38f15 9839
a345bc8d
AM
9840 if (h->def_regular)
9841 return TRUE;
65f38f15 9842
a345bc8d
AM
9843 info = inf;
9844 htab = ppc_hash_table (info);
9845 if (htab == NULL)
9846 return FALSE;
9847
9e390558
AM
9848 s = htab->global_entry;
9849 plt = htab->elf.splt;
a345bc8d
AM
9850 for (pent = h->plt.plist; pent != NULL; pent = pent->next)
9851 if (pent->plt.offset != (bfd_vma) -1
9852 && pent->addend == 0)
9853 {
afe397ea
AM
9854 /* For ELFv2, if this symbol is not defined in a regular file
9855 and we are not generating a shared library or pie, then we
9856 need to define the symbol in the executable on a call stub.
9857 This is to avoid text relocations. */
9e390558
AM
9858 bfd_vma off, stub_align, stub_off, stub_size;
9859 unsigned int align_power;
9860
9861 stub_size = 16;
9862 stub_off = s->size;
9863 if (htab->params->plt_stub_align >= 0)
9864 align_power = htab->params->plt_stub_align;
9865 else
9866 align_power = -htab->params->plt_stub_align;
9867 /* Setting section alignment is delayed until we know it is
9868 non-empty. Otherwise the .text output section will be
9869 aligned at least to plt_stub_align even when no global
9870 entry stubs are needed. */
9871 if (s->alignment_power < align_power)
9872 s->alignment_power = align_power;
9873 stub_align = (bfd_vma) 1 << align_power;
9874 if (htab->params->plt_stub_align >= 0
9875 || ((((stub_off + stub_size - 1) & -stub_align)
9876 - (stub_off & -stub_align))
9877 > ((stub_size - 1) & -stub_align)))
9878 stub_off = (stub_off + stub_align - 1) & -stub_align;
9879 off = pent->plt.offset + plt->output_offset + plt->output_section->vma;
9880 off -= stub_off + s->output_offset + s->output_section->vma;
9881 /* Note that for --plt-stub-align negative we have a possible
9882 dependency between stub offset and size. Break that
9883 dependency by assuming the max stub size when calculating
9884 the stub offset. */
9885 if (PPC_HA (off) == 0)
9886 stub_size -= 4;
8a2058b5 9887 h->root.type = bfd_link_hash_defined;
afe397ea 9888 h->root.u.def.section = s;
9e390558
AM
9889 h->root.u.def.value = stub_off;
9890 s->size = stub_off + stub_size;
a345bc8d
AM
9891 break;
9892 }
9893 return TRUE;
9894}
9895
9896/* Set DF_TEXTREL if we find any dynamic relocs that apply to
9897 read-only sections. */
9898
9899static bfd_boolean
98bbb1b8 9900maybe_set_textrel (struct elf_link_hash_entry *h, void *inf)
a345bc8d 9901{
98bbb1b8
AM
9902 asection *sec;
9903
a345bc8d
AM
9904 if (h->root.type == bfd_link_hash_indirect)
9905 return TRUE;
9906
98bbb1b8
AM
9907 sec = readonly_dynrelocs (h);
9908 if (sec != NULL)
a345bc8d 9909 {
98bbb1b8
AM
9910 struct bfd_link_info *info = (struct bfd_link_info *) inf;
9911
9912 info->flags |= DF_TEXTREL;
2cdcc330
AM
9913 info->callbacks->minfo (_("%pB: dynamic relocation against `%pT'"
9914 " in read-only section `%pA'\n"),
9915 sec->owner, h->root.root.string, sec);
a345bc8d
AM
9916
9917 /* Not an error, just cut short the traversal. */
9918 return FALSE;
65f38f15 9919 }
b34976b6 9920 return TRUE;
65f38f15
AM
9921}
9922
9923/* Set the sizes of the dynamic sections. */
9924
b34976b6 9925static bfd_boolean
ee67d69a 9926ppc64_elf_size_dynamic_sections (bfd *output_bfd,
4ce794b7 9927 struct bfd_link_info *info)
65f38f15
AM
9928{
9929 struct ppc_link_hash_table *htab;
9930 bfd *dynobj;
9931 asection *s;
b34976b6 9932 bfd_boolean relocs;
65f38f15 9933 bfd *ibfd;
7865406b 9934 struct got_entry *first_tlsld;
65f38f15
AM
9935
9936 htab = ppc_hash_table (info);
4dfe6ac6
NC
9937 if (htab == NULL)
9938 return FALSE;
9939
65f38f15
AM
9940 dynobj = htab->elf.dynobj;
9941 if (dynobj == NULL)
9942 abort ();
9943
9944 if (htab->elf.dynamic_sections_created)
9945 {
9946 /* Set the contents of the .interp section to the interpreter. */
9b8b325a 9947 if (bfd_link_executable (info) && !info->nointerp)
65f38f15 9948 {
3d4d4302 9949 s = bfd_get_linker_section (dynobj, ".interp");
65f38f15
AM
9950 if (s == NULL)
9951 abort ();
eea6121a 9952 s->size = sizeof ELF_DYNAMIC_INTERPRETER;
65f38f15
AM
9953 s->contents = (unsigned char *) ELF_DYNAMIC_INTERPRETER;
9954 }
9955 }
9956
9957 /* Set up .got offsets for local syms, and space for local dynamic
9958 relocs. */
c72f2fb2 9959 for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
65f38f15 9960 {
411e1bfb
AM
9961 struct got_entry **lgot_ents;
9962 struct got_entry **end_lgot_ents;
e054468f
AM
9963 struct plt_entry **local_plt;
9964 struct plt_entry **end_local_plt;
f961d9dd 9965 unsigned char *lgot_masks;
65f38f15
AM
9966 bfd_size_type locsymcount;
9967 Elf_Internal_Shdr *symtab_hdr;
65f38f15 9968
0c8d6e5c 9969 if (!is_ppc64_elf (ibfd))
65f38f15
AM
9970 continue;
9971
9972 for (s = ibfd->sections; s != NULL; s = s->next)
9973 {
19e08130 9974 struct ppc_dyn_relocs *p;
65f38f15 9975
6edfbbad 9976 for (p = elf_section_data (s)->local_dynrel; p != NULL; p = p->next)
65f38f15 9977 {
ec338859
AM
9978 if (!bfd_is_abs_section (p->sec)
9979 && bfd_is_abs_section (p->sec->output_section))
9980 {
9981 /* Input section has been discarded, either because
9982 it is a copy of a linkonce section or due to
9983 linker script /DISCARD/, so we'll be discarding
9984 the relocs too. */
9985 }
248866a8 9986 else if (p->count != 0)
ec338859 9987 {
19e08130
AM
9988 asection *srel = elf_section_data (p->sec)->sreloc;
9989 if (p->ifunc)
33e44f2e 9990 srel = htab->elf.irelplt;
eea6121a 9991 srel->size += p->count * sizeof (Elf64_External_Rela);
248866a8
AM
9992 if ((p->sec->output_section->flags & SEC_READONLY) != 0)
9993 info->flags |= DF_TEXTREL;
ec338859 9994 }
65f38f15
AM
9995 }
9996 }
9997
411e1bfb
AM
9998 lgot_ents = elf_local_got_ents (ibfd);
9999 if (!lgot_ents)
65f38f15
AM
10000 continue;
10001
0ffa91dd 10002 symtab_hdr = &elf_symtab_hdr (ibfd);
65f38f15 10003 locsymcount = symtab_hdr->sh_info;
411e1bfb 10004 end_lgot_ents = lgot_ents + locsymcount;
e054468f
AM
10005 local_plt = (struct plt_entry **) end_lgot_ents;
10006 end_local_plt = local_plt + locsymcount;
f961d9dd 10007 lgot_masks = (unsigned char *) end_local_plt;
e717da7e 10008 s = ppc64_elf_tdata (ibfd)->got;
e7b938ca 10009 for (; lgot_ents < end_lgot_ents; ++lgot_ents, ++lgot_masks)
65f38f15 10010 {
0b8bcf0d 10011 struct got_entry **pent, *ent;
411e1bfb 10012
0b8bcf0d
AM
10013 pent = lgot_ents;
10014 while ((ent = *pent) != NULL)
411e1bfb
AM
10015 if (ent->got.refcount > 0)
10016 {
e7b938ca 10017 if ((ent->tls_type & *lgot_masks & TLS_LD) != 0)
411e1bfb 10018 {
927be08e 10019 ppc64_tlsld_got (ibfd)->got.refcount += 1;
0b8bcf0d 10020 *pent = ent->next;
411e1bfb
AM
10021 }
10022 else
10023 {
19e08130
AM
10024 unsigned int ent_size = 8;
10025 unsigned int rel_size = sizeof (Elf64_External_Rela);
10026
eea6121a 10027 ent->got.offset = s->size;
e7b938ca 10028 if ((ent->tls_type & *lgot_masks & TLS_GD) != 0)
927be08e 10029 {
19e08130
AM
10030 ent_size *= 2;
10031 rel_size *= 2;
10032 }
10033 s->size += ent_size;
37da22e5 10034 if ((*lgot_masks & (TLS_TLS | PLT_IFUNC)) == PLT_IFUNC)
19e08130 10035 {
33e44f2e 10036 htab->elf.irelplt->size += rel_size;
19e08130
AM
10037 htab->got_reli_size += rel_size;
10038 }
93370e8e
AM
10039 else if (bfd_link_pic (info)
10040 && !(ent->tls_type != 0
10041 && bfd_link_executable (info)))
19e08130
AM
10042 {
10043 asection *srel = ppc64_elf_tdata (ibfd)->relgot;
10044 srel->size += rel_size;
927be08e 10045 }
0b8bcf0d 10046 pent = &ent->next;
411e1bfb
AM
10047 }
10048 }
10049 else
0b8bcf0d 10050 *pent = ent->next;
65f38f15 10051 }
e054468f 10052
2d7ad24e
AM
10053 /* Allocate space for plt calls to local syms. */
10054 lgot_masks = (unsigned char *) end_local_plt;
10055 for (; local_plt < end_local_plt; ++local_plt, ++lgot_masks)
e054468f
AM
10056 {
10057 struct plt_entry *ent;
10058
10059 for (ent = *local_plt; ent != NULL; ent = ent->next)
10060 if (ent->plt.refcount > 0)
10061 {
2d7ad24e
AM
10062 if ((*lgot_masks & (TLS_TLS | PLT_IFUNC)) == PLT_IFUNC)
10063 {
10064 s = htab->elf.iplt;
10065 ent->plt.offset = s->size;
10066 s->size += PLT_ENTRY_SIZE (htab);
10067 htab->elf.irelplt->size += sizeof (Elf64_External_Rela);
10068 }
3e04d765
AM
10069 else if (htab->can_convert_all_inline_plt
10070 || (*lgot_masks & (TLS_TLS | PLT_KEEP)) != PLT_KEEP)
2d7ad24e
AM
10071 ent->plt.offset = (bfd_vma) -1;
10072 else
10073 {
10074 s = htab->pltlocal;
10075 ent->plt.offset = s->size;
10076 s->size += LOCAL_PLT_ENTRY_SIZE (htab);
10077 if (bfd_link_pic (info))
10078 htab->relpltlocal->size += sizeof (Elf64_External_Rela);
10079 }
e054468f
AM
10080 }
10081 else
10082 ent->plt.offset = (bfd_vma) -1;
10083 }
65f38f15
AM
10084 }
10085
10086 /* Allocate global sym .plt and .got entries, and space for global
10087 sym dynamic relocs. */
4ce794b7 10088 elf_link_hash_traverse (&htab->elf, allocate_dynrelocs, info);
a345bc8d 10089
0e1862bb 10090 if (!htab->opd_abi && !bfd_link_pic (info))
a345bc8d 10091 elf_link_hash_traverse (&htab->elf, size_global_entry_stubs, info);
65f38f15 10092
7865406b 10093 first_tlsld = NULL;
c72f2fb2 10094 for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
102890f0 10095 {
7865406b
AM
10096 struct got_entry *ent;
10097
0c8d6e5c 10098 if (!is_ppc64_elf (ibfd))
102890f0
AM
10099 continue;
10100
7865406b
AM
10101 ent = ppc64_tlsld_got (ibfd);
10102 if (ent->got.refcount > 0)
102890f0 10103 {
7865406b 10104 if (!htab->do_multi_toc && first_tlsld != NULL)
102890f0 10105 {
7865406b
AM
10106 ent->is_indirect = TRUE;
10107 ent->got.ent = first_tlsld;
10108 }
10109 else
10110 {
10111 if (first_tlsld == NULL)
10112 first_tlsld = ent;
10113 s = ppc64_elf_tdata (ibfd)->got;
10114 ent->got.offset = s->size;
10115 ent->owner = ibfd;
10116 s->size += 16;
f749f26e 10117 if (bfd_link_dll (info))
7865406b
AM
10118 {
10119 asection *srel = ppc64_elf_tdata (ibfd)->relgot;
10120 srel->size += sizeof (Elf64_External_Rela);
10121 }
102890f0
AM
10122 }
10123 }
10124 else
7865406b 10125 ent->got.offset = (bfd_vma) -1;
102890f0
AM
10126 }
10127
65f38f15
AM
10128 /* We now have determined the sizes of the various dynamic sections.
10129 Allocate memory for them. */
b34976b6 10130 relocs = FALSE;
65f38f15
AM
10131 for (s = dynobj->sections; s != NULL; s = s->next)
10132 {
10133 if ((s->flags & SEC_LINKER_CREATED) == 0)
10134 continue;
10135
4ce794b7 10136 if (s == htab->brlt || s == htab->relbrlt)
721956f4
AM
10137 /* These haven't been allocated yet; don't strip. */
10138 continue;
33e44f2e
AM
10139 else if (s == htab->elf.sgot
10140 || s == htab->elf.splt
10141 || s == htab->elf.iplt
2d7ad24e 10142 || s == htab->pltlocal
c456f082 10143 || s == htab->glink
9e390558 10144 || s == htab->global_entry
5474d94f
AM
10145 || s == htab->elf.sdynbss
10146 || s == htab->elf.sdynrelro)
65f38f15
AM
10147 {
10148 /* Strip this section if we don't need it; see the
10149 comment below. */
5bd4f169 10150 }
58d180e8
AM
10151 else if (s == htab->glink_eh_frame)
10152 {
10153 if (!bfd_is_abs_section (s->output_section))
10154 /* Not sized yet. */
10155 continue;
10156 }
70cc837d 10157 else if (CONST_STRNEQ (s->name, ".rela"))
5bd4f169 10158 {
c456f082 10159 if (s->size != 0)
5bd4f169 10160 {
33e44f2e 10161 if (s != htab->elf.srelplt)
b34976b6 10162 relocs = TRUE;
5bd4f169
AM
10163
10164 /* We use the reloc_count field as a counter if we need
10165 to copy relocs into the output file. */
10166 s->reloc_count = 0;
10167 }
10168 }
65f38f15 10169 else
5bd4f169
AM
10170 {
10171 /* It's not one of our sections, so don't allocate space. */
10172 continue;
10173 }
10174
eea6121a 10175 if (s->size == 0)
5bd4f169 10176 {
c456f082
AM
10177 /* If we don't need this section, strip it from the
10178 output file. This is mostly to handle .rela.bss and
10179 .rela.plt. We must create both sections in
10180 create_dynamic_sections, because they must be created
10181 before the linker maps input sections to output
10182 sections. The linker does that before
10183 adjust_dynamic_symbol is called, and it is that
10184 function which decides whether anything needs to go
10185 into these sections. */
8423293d 10186 s->flags |= SEC_EXCLUDE;
5bd4f169
AM
10187 continue;
10188 }
10189
06bcf541
AM
10190 if (bfd_is_abs_section (s->output_section))
10191 _bfd_error_handler (_("warning: discarding dynamic section %s"),
10192 s->name);
10193
c456f082 10194 if ((s->flags & SEC_HAS_CONTENTS) == 0)
5f333394
AM
10195 continue;
10196
65f38f15
AM
10197 /* Allocate memory for the section contents. We use bfd_zalloc
10198 here in case unused entries are not reclaimed before the
10199 section's contents are written out. This should not happen,
411e1bfb
AM
10200 but this way if it does we get a R_PPC64_NONE reloc in .rela
10201 sections instead of garbage.
10202 We also rely on the section contents being zero when writing
5474d94f 10203 the GOT and .dynrelro. */
eea6121a 10204 s->contents = bfd_zalloc (dynobj, s->size);
65f38f15 10205 if (s->contents == NULL)
b34976b6 10206 return FALSE;
5bd4f169
AM
10207 }
10208
c72f2fb2 10209 for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
e717da7e 10210 {
0c8d6e5c 10211 if (!is_ppc64_elf (ibfd))
7b53ace3
AM
10212 continue;
10213
e717da7e 10214 s = ppc64_elf_tdata (ibfd)->got;
33e44f2e 10215 if (s != NULL && s != htab->elf.sgot)
e717da7e 10216 {
eea6121a 10217 if (s->size == 0)
8423293d 10218 s->flags |= SEC_EXCLUDE;
e717da7e
AM
10219 else
10220 {
eea6121a 10221 s->contents = bfd_zalloc (ibfd, s->size);
e717da7e
AM
10222 if (s->contents == NULL)
10223 return FALSE;
10224 }
10225 }
10226 s = ppc64_elf_tdata (ibfd)->relgot;
10227 if (s != NULL)
10228 {
eea6121a 10229 if (s->size == 0)
8423293d 10230 s->flags |= SEC_EXCLUDE;
e717da7e
AM
10231 else
10232 {
eea6121a 10233 s->contents = bfd_zalloc (ibfd, s->size);
e717da7e
AM
10234 if (s->contents == NULL)
10235 return FALSE;
10236 relocs = TRUE;
10237 s->reloc_count = 0;
10238 }
10239 }
10240 }
10241
e86ce104 10242 if (htab->elf.dynamic_sections_created)
5bd4f169 10243 {
e8910a83
AM
10244 bfd_boolean tls_opt;
10245
5bd4f169
AM
10246 /* Add some entries to the .dynamic section. We fill in the
10247 values later, in ppc64_elf_finish_dynamic_sections, but we
10248 must add the entries now so that we get the correct size for
10249 the .dynamic section. The DT_DEBUG entry is filled in by the
10250 dynamic linker and used by the debugger. */
dc810e39 10251#define add_dynamic_entry(TAG, VAL) \
5a580b3a 10252 _bfd_elf_add_dynamic_entry (info, TAG, VAL)
dc810e39 10253
0e1862bb 10254 if (bfd_link_executable (info))
5bd4f169 10255 {
dc810e39 10256 if (!add_dynamic_entry (DT_DEBUG, 0))
b34976b6 10257 return FALSE;
5bd4f169
AM
10258 }
10259
33e44f2e 10260 if (htab->elf.splt != NULL && htab->elf.splt->size != 0)
5bd4f169 10261 {
dc810e39
AM
10262 if (!add_dynamic_entry (DT_PLTGOT, 0)
10263 || !add_dynamic_entry (DT_PLTRELSZ, 0)
10264 || !add_dynamic_entry (DT_PLTREL, DT_RELA)
5d1634d7
AM
10265 || !add_dynamic_entry (DT_JMPREL, 0)
10266 || !add_dynamic_entry (DT_PPC64_GLINK, 0))
b34976b6 10267 return FALSE;
5bd4f169
AM
10268 }
10269
ee67d69a 10270 if (NO_OPD_RELOCS && abiversion (output_bfd) <= 1)
19397422
AM
10271 {
10272 if (!add_dynamic_entry (DT_PPC64_OPD, 0)
10273 || !add_dynamic_entry (DT_PPC64_OPDSZ, 0))
b34976b6 10274 return FALSE;
19397422
AM
10275 }
10276
7c9cf415 10277 tls_opt = (htab->params->tls_get_addr_opt
9e7028aa
AM
10278 && ((htab->tls_get_addr_fd != NULL
10279 && htab->tls_get_addr_fd->elf.plt.plist != NULL)
10280 || (htab->tga_desc_fd != NULL
10281 && htab->tga_desc_fd->elf.plt.plist != NULL)));
e8910a83
AM
10282 if (tls_opt || !htab->opd_abi)
10283 {
10284 if (!add_dynamic_entry (DT_PPC64_OPT, tls_opt ? PPC64_OPT_TLS : 0))
10285 return FALSE;
10286 }
a7f2871e 10287
5bd4f169
AM
10288 if (relocs)
10289 {
dc810e39
AM
10290 if (!add_dynamic_entry (DT_RELA, 0)
10291 || !add_dynamic_entry (DT_RELASZ, 0)
10292 || !add_dynamic_entry (DT_RELAENT, sizeof (Elf64_External_Rela)))
b34976b6 10293 return FALSE;
5bd4f169 10294
65f38f15
AM
10295 /* If any dynamic relocs apply to a read-only section,
10296 then we need a DT_TEXTREL entry. */
248866a8 10297 if ((info->flags & DF_TEXTREL) == 0)
a345bc8d 10298 elf_link_hash_traverse (&htab->elf, maybe_set_textrel, info);
5bd4f169 10299
65f38f15 10300 if ((info->flags & DF_TEXTREL) != 0)
5bd4f169 10301 {
65f38f15 10302 if (!add_dynamic_entry (DT_TEXTREL, 0))
b34976b6 10303 return FALSE;
5bd4f169 10304 }
5bd4f169 10305 }
5bd4f169 10306 }
65f38f15 10307#undef add_dynamic_entry
5bd4f169 10308
b34976b6 10309 return TRUE;
5bd4f169
AM
10310}
10311
a345bc8d
AM
10312/* Return TRUE if symbol should be hashed in the `.gnu.hash' section. */
10313
10314static bfd_boolean
10315ppc64_elf_hash_symbol (struct elf_link_hash_entry *h)
10316{
10317 if (h->plt.plist != NULL
10318 && !h->def_regular
10319 && !h->pointer_equality_needed)
10320 return FALSE;
10321
10322 return _bfd_elf_hash_symbol (h);
10323}
10324
721956f4 10325/* Determine the type of stub needed, if any, for a call. */
5bd4f169 10326
4ce794b7
AM
10327static inline enum ppc_stub_type
10328ppc_type_of_stub (asection *input_sec,
10329 const Elf_Internal_Rela *rel,
10330 struct ppc_link_hash_entry **hash,
e054468f 10331 struct plt_entry **plt_ent,
6911b7dc
AM
10332 bfd_vma destination,
10333 unsigned long local_off)
5bd4f169 10334{
721956f4
AM
10335 struct ppc_link_hash_entry *h = *hash;
10336 bfd_vma location;
10337 bfd_vma branch_offset;
10338 bfd_vma max_branch_offset;
4ce794b7 10339 enum elf_ppc64_reloc_type r_type;
5bd4f169 10340
721956f4
AM
10341 if (h != NULL)
10342 {
e054468f 10343 struct plt_entry *ent;
7fe2b9a6 10344 struct ppc_link_hash_entry *fdh = h;
b31867b6
AM
10345 if (h->oh != NULL
10346 && h->oh->is_func_descriptor)
7b8f6675
AM
10347 {
10348 fdh = ppc_follow_link (h->oh);
10349 *hash = fdh;
10350 }
8387904d 10351
e054468f
AM
10352 for (ent = fdh->elf.plt.plist; ent != NULL; ent = ent->next)
10353 if (ent->addend == rel->r_addend
10354 && ent->plt.offset != (bfd_vma) -1)
10355 {
e054468f
AM
10356 *plt_ent = ent;
10357 return ppc_stub_plt_call;
10358 }
5bd4f169 10359
7fe2b9a6
AM
10360 /* Here, we know we don't have a plt entry. If we don't have a
10361 either a defined function descriptor or a defined entry symbol
10362 in a regular object file, then it is pointless trying to make
10363 any other type of stub. */
854b41e7
AM
10364 if (!is_static_defined (&fdh->elf)
10365 && !is_static_defined (&h->elf))
721956f4 10366 return ppc_stub_none;
5d1634d7 10367 }
e054468f
AM
10368 else if (elf_local_got_ents (input_sec->owner) != NULL)
10369 {
10370 Elf_Internal_Shdr *symtab_hdr = &elf_symtab_hdr (input_sec->owner);
10371 struct plt_entry **local_plt = (struct plt_entry **)
10372 elf_local_got_ents (input_sec->owner) + symtab_hdr->sh_info;
10373 unsigned long r_symndx = ELF64_R_SYM (rel->r_info);
10374
10375 if (local_plt[r_symndx] != NULL)
10376 {
10377 struct plt_entry *ent;
10378
10379 for (ent = local_plt[r_symndx]; ent != NULL; ent = ent->next)
10380 if (ent->addend == rel->r_addend
10381 && ent->plt.offset != (bfd_vma) -1)
10382 {
10383 *plt_ent = ent;
10384 return ppc_stub_plt_call;
10385 }
10386 }
10387 }
5d1634d7 10388
721956f4
AM
10389 /* Determine where the call point is. */
10390 location = (input_sec->output_offset
10391 + input_sec->output_section->vma
10392 + rel->r_offset);
5d1634d7 10393
721956f4
AM
10394 branch_offset = destination - location;
10395 r_type = ELF64_R_TYPE (rel->r_info);
5d1634d7 10396
721956f4
AM
10397 /* Determine if a long branch stub is needed. */
10398 max_branch_offset = 1 << 25;
23cedd1d
AM
10399 if (r_type == R_PPC64_REL14
10400 || r_type == R_PPC64_REL14_BRTAKEN
10401 || r_type == R_PPC64_REL14_BRNTAKEN)
721956f4 10402 max_branch_offset = 1 << 15;
5d1634d7 10403
6911b7dc 10404 if (branch_offset + max_branch_offset >= 2 * max_branch_offset - local_off)
721956f4
AM
10405 /* We need a stub. Figure out whether a long_branch or plt_branch
10406 is needed later. */
10407 return ppc_stub_long_branch;
5d1634d7 10408
721956f4 10409 return ppc_stub_none;
5d1634d7
AM
10410}
10411
f891966f
AM
10412/* Gets the address of a label (1:) in r11 and builds an offset in r12,
10413 then adds it to r11 (LOAD false) or loads r12 from r11+r12 (LOAD true).
10414 . mflr %r12
10415 . bcl 20,31,1f
10416 .1: mflr %r11
10417 . mtlr %r12
05d0e962 10418 . lis %r12,xxx-1b@highest
f891966f 10419 . ori %r12,%r12,xxx-1b@higher
05d0e962 10420 . sldi %r12,%r12,32
f891966f 10421 . oris %r12,%r12,xxx-1b@high
05d0e962 10422 . ori %r12,%r12,xxx-1b@l
f891966f 10423 . add/ldx %r12,%r11,%r12 */
05d0e962
AM
10424
10425static bfd_byte *
10426build_offset (bfd *abfd, bfd_byte *p, bfd_vma off, bfd_boolean load)
10427{
f891966f
AM
10428 bfd_put_32 (abfd, MFLR_R12, p);
10429 p += 4;
10430 bfd_put_32 (abfd, BCL_20_31, p);
10431 p += 4;
10432 bfd_put_32 (abfd, MFLR_R11, p);
10433 p += 4;
10434 bfd_put_32 (abfd, MTLR_R12, p);
10435 p += 4;
05d0e962
AM
10436 if (off + 0x8000 < 0x10000)
10437 {
10438 if (load)
10439 bfd_put_32 (abfd, LD_R12_0R11 + PPC_LO (off), p);
10440 else
10441 bfd_put_32 (abfd, ADDI_R12_R11 + PPC_LO (off), p);
10442 p += 4;
10443 }
10444 else if (off + 0x80008000ULL < 0x100000000ULL)
10445 {
10446 bfd_put_32 (abfd, ADDIS_R12_R11 + PPC_HA (off), p);
10447 p += 4;
10448 if (load)
10449 bfd_put_32 (abfd, LD_R12_0R12 + PPC_LO (off), p);
10450 else
10451 bfd_put_32 (abfd, ADDI_R12_R12 + PPC_LO (off), p);
10452 p += 4;
10453 }
10454 else
10455 {
10456 if (off + 0x800000000000ULL < 0x1000000000000ULL)
10457 {
10458 bfd_put_32 (abfd, LI_R12_0 + ((off >> 32) & 0xffff), p);
10459 p += 4;
10460 }
10461 else
10462 {
10463 bfd_put_32 (abfd, LIS_R12 + ((off >> 48) & 0xffff), p);
10464 p += 4;
10465 if (((off >> 32) & 0xffff) != 0)
10466 {
10467 bfd_put_32 (abfd, ORI_R12_R12_0 + ((off >> 32) & 0xffff), p);
10468 p += 4;
10469 }
10470 }
10471 if (((off >> 32) & 0xffffffffULL) != 0)
10472 {
10473 bfd_put_32 (abfd, SLDI_R12_R12_32, p);
10474 p += 4;
10475 }
10476 if (PPC_HI (off) != 0)
10477 {
10478 bfd_put_32 (abfd, ORIS_R12_R12_0 + PPC_HI (off), p);
10479 p += 4;
10480 }
10481 if (PPC_LO (off) != 0)
10482 {
10483 bfd_put_32 (abfd, ORI_R12_R12_0 + PPC_LO (off), p);
10484 p += 4;
10485 }
10486 if (load)
10487 bfd_put_32 (abfd, LDX_R12_R11_R12, p);
10488 else
10489 bfd_put_32 (abfd, ADD_R12_R11_R12, p);
10490 p += 4;
10491 }
10492 return p;
10493}
10494
10495static unsigned int
10496size_offset (bfd_vma off)
10497{
10498 unsigned int size;
10499 if (off + 0x8000 < 0x10000)
10500 size = 4;
10501 else if (off + 0x80008000ULL < 0x100000000ULL)
10502 size = 8;
10503 else
10504 {
10505 if (off + 0x800000000000ULL < 0x1000000000000ULL)
10506 size = 4;
10507 else
10508 {
10509 size = 4;
10510 if (((off >> 32) & 0xffff) != 0)
10511 size += 4;
10512 }
10513 if (((off >> 32) & 0xffffffffULL) != 0)
10514 size += 4;
10515 if (PPC_HI (off) != 0)
10516 size += 4;
10517 if (PPC_LO (off) != 0)
10518 size += 4;
10519 size += 4;
10520 }
f891966f 10521 return size + 16;
05d0e962
AM
10522}
10523
3d58e1fc
AM
10524static unsigned int
10525num_relocs_for_offset (bfd_vma off)
10526{
10527 unsigned int num_rel;
10528 if (off + 0x8000 < 0x10000)
10529 num_rel = 1;
10530 else if (off + 0x80008000ULL < 0x100000000ULL)
10531 num_rel = 2;
10532 else
10533 {
10534 num_rel = 1;
10535 if (off + 0x800000000000ULL >= 0x1000000000000ULL
10536 && ((off >> 32) & 0xffff) != 0)
10537 num_rel += 1;
10538 if (PPC_HI (off) != 0)
10539 num_rel += 1;
10540 if (PPC_LO (off) != 0)
10541 num_rel += 1;
10542 }
10543 return num_rel;
10544}
10545
10546static Elf_Internal_Rela *
10547emit_relocs_for_offset (struct bfd_link_info *info, Elf_Internal_Rela *r,
10548 bfd_vma roff, bfd_vma targ, bfd_vma off)
10549{
10550 bfd_vma relative_targ = targ - (roff - 8);
10551 if (bfd_big_endian (info->output_bfd))
10552 roff += 2;
10553 r->r_offset = roff;
10554 r->r_addend = relative_targ + roff;
10555 if (off + 0x8000 < 0x10000)
10556 r->r_info = ELF64_R_INFO (0, R_PPC64_REL16);
10557 else if (off + 0x80008000ULL < 0x100000000ULL)
10558 {
10559 r->r_info = ELF64_R_INFO (0, R_PPC64_REL16_HA);
10560 ++r;
10561 roff += 4;
10562 r->r_offset = roff;
10563 r->r_info = ELF64_R_INFO (0, R_PPC64_REL16_LO);
10564 r->r_addend = relative_targ + roff;
10565 }
10566 else
10567 {
10568 if (off + 0x800000000000ULL < 0x1000000000000ULL)
10569 r->r_info = ELF64_R_INFO (0, R_PPC64_REL16_HIGHER);
10570 else
10571 {
10572 r->r_info = ELF64_R_INFO (0, R_PPC64_REL16_HIGHEST);
10573 if (((off >> 32) & 0xffff) != 0)
10574 {
10575 ++r;
10576 roff += 4;
10577 r->r_offset = roff;
10578 r->r_info = ELF64_R_INFO (0, R_PPC64_REL16_HIGHER);
10579 r->r_addend = relative_targ + roff;
10580 }
10581 }
10582 if (((off >> 32) & 0xffffffffULL) != 0)
10583 roff += 4;
10584 if (PPC_HI (off) != 0)
10585 {
10586 ++r;
10587 roff += 4;
10588 r->r_offset = roff;
10589 r->r_info = ELF64_R_INFO (0, R_PPC64_REL16_HIGH);
10590 r->r_addend = relative_targ + roff;
10591 }
10592 if (PPC_LO (off) != 0)
10593 {
10594 ++r;
10595 roff += 4;
10596 r->r_offset = roff;
10597 r->r_info = ELF64_R_INFO (0, R_PPC64_REL16_LO);
10598 r->r_addend = relative_targ + roff;
10599 }
10600 }
10601 return r;
10602}
10603
04bdff6a
AM
10604static bfd_byte *
10605build_powerxx_offset (bfd *abfd, bfd_byte *p, bfd_vma off, int odd,
10606 bfd_boolean load)
10607{
10608 uint64_t insn;
10609 if (off - odd + (1ULL << 33) < 1ULL << 34)
10610 {
10611 off -= odd;
10612 if (odd)
10613 {
10614 bfd_put_32 (abfd, NOP, p);
10615 p += 4;
10616 }
10617 if (load)
10618 insn = PLD_R12_PC;
10619 else
10620 insn = PADDI_R12_PC;
10621 insn |= D34 (off);
10622 bfd_put_32 (abfd, insn >> 32, p);
10623 p += 4;
10624 bfd_put_32 (abfd, insn, p);
10625 }
10626 /* The minimum value for paddi is -0x200000000. The minimum value
10627 for li is -0x8000, which when shifted by 34 and added gives a
10628 minimum value of -0x2000200000000. The maximum value is
10629 0x1ffffffff+0x7fff<<34 which is 0x2000200000000-1. */
10630 else if (off - (8 - odd) + (0x20002ULL << 32) < 0x40004ULL << 32)
10631 {
10632 off -= 8 - odd;
10633 bfd_put_32 (abfd, LI_R11_0 | (HA34 (off) & 0xffff), p);
10634 p += 4;
10635 if (!odd)
10636 {
10637 bfd_put_32 (abfd, SLDI_R11_R11_34, p);
10638 p += 4;
10639 }
10640 insn = PADDI_R12_PC | D34 (off);
10641 bfd_put_32 (abfd, insn >> 32, p);
10642 p += 4;
10643 bfd_put_32 (abfd, insn, p);
10644 p += 4;
10645 if (odd)
10646 {
10647 bfd_put_32 (abfd, SLDI_R11_R11_34, p);
10648 p += 4;
10649 }
10650 if (load)
10651 bfd_put_32 (abfd, LDX_R12_R11_R12, p);
10652 else
10653 bfd_put_32 (abfd, ADD_R12_R11_R12, p);
10654 }
10655 else
10656 {
10657 off -= odd + 8;
10658 bfd_put_32 (abfd, LIS_R11 | ((HA34 (off) >> 16) & 0x3fff), p);
10659 p += 4;
10660 bfd_put_32 (abfd, ORI_R11_R11_0 | (HA34 (off) & 0xffff), p);
10661 p += 4;
10662 if (odd)
10663 {
10664 bfd_put_32 (abfd, SLDI_R11_R11_34, p);
10665 p += 4;
10666 }
10667 insn = PADDI_R12_PC | D34 (off);
10668 bfd_put_32 (abfd, insn >> 32, p);
10669 p += 4;
10670 bfd_put_32 (abfd, insn, p);
10671 p += 4;
10672 if (!odd)
10673 {
10674 bfd_put_32 (abfd, SLDI_R11_R11_34, p);
10675 p += 4;
10676 }
10677 if (load)
10678 bfd_put_32 (abfd, LDX_R12_R11_R12, p);
10679 else
10680 bfd_put_32 (abfd, ADD_R12_R11_R12, p);
10681 }
10682 p += 4;
10683 return p;
10684}
10685
10686static unsigned int
10687size_powerxx_offset (bfd_vma off, int odd)
10688{
10689 if (off - odd + (1ULL << 33) < 1ULL << 34)
10690 return odd + 8;
10691 else if (off - (8 - odd) + (0x20002ULL << 32) < 0x40004ULL << 32)
10692 return 20;
10693 else
10694 return 24;
10695}
10696
10697static unsigned int
10698num_relocs_for_powerxx_offset (bfd_vma off, int odd)
10699{
10700 if (off - odd + (1ULL << 33) < 1ULL << 34)
10701 return 1;
10702 else if (off - (8 - odd) + (0x20002ULL << 32) < 0x40004ULL << 32)
10703 return 2;
10704 else
10705 return 3;
10706}
10707
10708static Elf_Internal_Rela *
10709emit_relocs_for_powerxx_offset (struct bfd_link_info *info,
10710 Elf_Internal_Rela *r, bfd_vma roff,
10711 bfd_vma targ, bfd_vma off, int odd)
10712{
10713 if (off - odd + (1ULL << 33) < 1ULL << 34)
10714 roff += odd;
10715 else if (off - (8 - odd) + (0x20002ULL << 32) < 0x40004ULL << 32)
10716 {
10717 int d_offset = bfd_big_endian (info->output_bfd) ? 2 : 0;
10718 r->r_offset = roff + d_offset;
10719 r->r_addend = targ + 8 - odd - d_offset;
10720 r->r_info = ELF64_R_INFO (0, R_PPC64_REL16_HIGHERA34);
10721 ++r;
10722 roff += 8 - odd;
10723 }
10724 else
10725 {
10726 int d_offset = bfd_big_endian (info->output_bfd) ? 2 : 0;
10727 r->r_offset = roff + d_offset;
10728 r->r_addend = targ + 8 + odd - d_offset;
10729 r->r_info = ELF64_R_INFO (0, R_PPC64_REL16_HIGHESTA34);
10730 ++r;
10731 roff += 4;
10732 r->r_offset = roff + d_offset;
10733 r->r_addend = targ + 4 + odd - d_offset;
10734 r->r_info = ELF64_R_INFO (0, R_PPC64_REL16_HIGHERA34);
10735 ++r;
10736 roff += 4 + odd;
10737 }
10738 r->r_offset = roff;
10739 r->r_addend = targ;
10740 r->r_info = ELF64_R_INFO (0, R_PPC64_PCREL34);
10741 return r;
10742}
10743
df136d64
AM
10744/* Emit .eh_frame opcode to advance pc by DELTA. */
10745
10746static bfd_byte *
10747eh_advance (bfd *abfd, bfd_byte *eh, unsigned int delta)
10748{
10749 delta /= 4;
10750 if (delta < 64)
10751 *eh++ = DW_CFA_advance_loc + delta;
10752 else if (delta < 256)
10753 {
10754 *eh++ = DW_CFA_advance_loc1;
10755 *eh++ = delta;
10756 }
10757 else if (delta < 65536)
10758 {
10759 *eh++ = DW_CFA_advance_loc2;
10760 bfd_put_16 (abfd, delta, eh);
10761 eh += 2;
10762 }
10763 else
10764 {
10765 *eh++ = DW_CFA_advance_loc4;
10766 bfd_put_32 (abfd, delta, eh);
10767 eh += 4;
10768 }
10769 return eh;
10770}
10771
10772/* Size of required .eh_frame opcode to advance pc by DELTA. */
10773
10774static unsigned int
10775eh_advance_size (unsigned int delta)
10776{
10777 if (delta < 64 * 4)
10778 /* DW_CFA_advance_loc+[1..63]. */
10779 return 1;
10780 if (delta < 256 * 4)
10781 /* DW_CFA_advance_loc1, byte. */
10782 return 2;
10783 if (delta < 65536 * 4)
10784 /* DW_CFA_advance_loc2, 2 bytes. */
10785 return 3;
10786 /* DW_CFA_advance_loc4, 4 bytes. */
10787 return 5;
10788}
10789
794e51c0
AM
10790/* With power7 weakly ordered memory model, it is possible for ld.so
10791 to update a plt entry in one thread and have another thread see a
10792 stale zero toc entry. To avoid this we need some sort of acquire
10793 barrier in the call stub. One solution is to make the load of the
10794 toc word seem to appear to depend on the load of the function entry
10795 word. Another solution is to test for r2 being zero, and branch to
10796 the appropriate glink entry if so.
10797
10798 . fake dep barrier compare
71a39c98
AM
10799 . ld 12,xxx(2) ld 12,xxx(2)
10800 . mtctr 12 mtctr 12
10801 . xor 11,12,12 ld 2,xxx+8(2)
794e51c0
AM
10802 . add 2,2,11 cmpldi 2,0
10803 . ld 2,xxx+8(2) bnectr+
10804 . bctr b <glink_entry>
10805
10806 The solution involving the compare turns out to be faster, so
10807 that's what we use unless the branch won't reach. */
10808
10809#define ALWAYS_USE_FAKE_DEP 0
10810#define ALWAYS_EMIT_R2SAVE 0
5d1634d7 10811
794e51c0
AM
10812static inline unsigned int
10813plt_stub_size (struct ppc_link_hash_table *htab,
10814 struct ppc_stub_hash_entry *stub_entry,
10815 bfd_vma off)
10816{
05d0e962 10817 unsigned size;
b9e5796b 10818
05d0e962
AM
10819 if (stub_entry->stub_type >= ppc_stub_plt_call_notoc)
10820 {
04bdff6a
AM
10821 if (htab->powerxx_stubs)
10822 {
10823 bfd_vma start = (stub_entry->stub_offset
10824 + stub_entry->group->stub_sec->output_offset
10825 + stub_entry->group->stub_sec->output_section->vma);
10826 if (stub_entry->stub_type > ppc_stub_plt_call_notoc)
10827 start += 4;
10828 size = 8 + size_powerxx_offset (off, start & 4);
10829 }
10830 else
10831 size = 8 + size_offset (off - 8);
05d0e962
AM
10832 if (stub_entry->stub_type > ppc_stub_plt_call_notoc)
10833 size += 4;
10834 return size;
10835 }
10836
10837 size = 12;
b9e5796b
AM
10838 if (ALWAYS_EMIT_R2SAVE
10839 || stub_entry->stub_type == ppc_stub_plt_call_r2save)
10840 size += 4;
10841 if (PPC_HA (off) != 0)
794e51c0 10842 size += 4;
b9e5796b
AM
10843 if (htab->opd_abi)
10844 {
10845 size += 4;
e7d1c40c 10846 if (htab->params->plt_static_chain)
b9e5796b 10847 size += 4;
bd4d2eaa
AM
10848 if (htab->params->plt_thread_safe
10849 && htab->elf.dynamic_sections_created
10850 && stub_entry->h != NULL
10851 && stub_entry->h->elf.dynindx != -1)
b9e5796b 10852 size += 8;
e7d1c40c 10853 if (PPC_HA (off + 8 + 8 * htab->params->plt_static_chain) != PPC_HA (off))
b9e5796b
AM
10854 size += 4;
10855 }
794e51c0 10856 if (stub_entry->h != NULL
ed7007c1 10857 && is_tls_get_addr (&stub_entry->h->elf, htab)
7c9cf415 10858 && htab->params->tls_get_addr_opt)
f378ab09 10859 {
9e7028aa
AM
10860 if (htab->params->no_tls_get_addr_regsave)
10861 {
10862 size += 7 * 4;
10863 if (stub_entry->stub_type == ppc_stub_plt_call_r2save)
10864 size += 6 * 4;
10865 }
10866 else
10867 {
10868 size += 30 * 4;
10869 if (stub_entry->stub_type == ppc_stub_plt_call_r2save)
10870 size += 4;
10871 }
f378ab09 10872 }
794e51c0
AM
10873 return size;
10874}
10875
2420fff6
AM
10876/* Depending on the sign of plt_stub_align:
10877 If positive, return the padding to align to a 2**plt_stub_align
10878 boundary.
10879 If negative, if this stub would cross fewer 2**plt_stub_align
10880 boundaries if we align, then return the padding needed to do so. */
10881
794e51c0
AM
10882static inline unsigned int
10883plt_stub_pad (struct ppc_link_hash_table *htab,
10884 struct ppc_stub_hash_entry *stub_entry,
10885 bfd_vma plt_off)
10886{
2420fff6 10887 int stub_align;
1aa42141 10888 unsigned stub_size;
6f20ed8a 10889 bfd_vma stub_off = stub_entry->group->stub_sec->size;
794e51c0 10890
2420fff6
AM
10891 if (htab->params->plt_stub_align >= 0)
10892 {
10893 stub_align = 1 << htab->params->plt_stub_align;
10894 if ((stub_off & (stub_align - 1)) != 0)
10895 return stub_align - (stub_off & (stub_align - 1));
10896 return 0;
10897 }
10898
10899 stub_align = 1 << -htab->params->plt_stub_align;
1aa42141 10900 stub_size = plt_stub_size (htab, stub_entry, plt_off);
794e51c0 10901 if (((stub_off + stub_size - 1) & -stub_align) - (stub_off & -stub_align)
e05fa0ba 10902 > ((stub_size - 1) & -stub_align))
794e51c0
AM
10903 return stub_align - (stub_off & (stub_align - 1));
10904 return 0;
10905}
10906
10907/* Build a .plt call stub. */
10908
10909static inline bfd_byte *
10910build_plt_stub (struct ppc_link_hash_table *htab,
10911 struct ppc_stub_hash_entry *stub_entry,
10912 bfd_byte *p, bfd_vma offset, Elf_Internal_Rela *r)
10913{
e7d1c40c 10914 bfd *obfd = htab->params->stub_bfd;
b9e5796b 10915 bfd_boolean plt_load_toc = htab->opd_abi;
e7d1c40c 10916 bfd_boolean plt_static_chain = htab->params->plt_static_chain;
bd4d2eaa
AM
10917 bfd_boolean plt_thread_safe = (htab->params->plt_thread_safe
10918 && htab->elf.dynamic_sections_created
10919 && stub_entry->h != NULL
10920 && stub_entry->h->elf.dynindx != -1);
794e51c0
AM
10921 bfd_boolean use_fake_dep = plt_thread_safe;
10922 bfd_vma cmp_branch_off = 0;
10923
10924 if (!ALWAYS_USE_FAKE_DEP
b9e5796b 10925 && plt_load_toc
794e51c0 10926 && plt_thread_safe
ed7007c1 10927 && !(is_tls_get_addr (&stub_entry->h->elf, htab)
7c9cf415 10928 && htab->params->tls_get_addr_opt))
794e51c0
AM
10929 {
10930 bfd_vma pltoff = stub_entry->plt_ent->plt.offset & ~1;
b9e5796b
AM
10931 bfd_vma pltindex = ((pltoff - PLT_INITIAL_ENTRY_SIZE (htab))
10932 / PLT_ENTRY_SIZE (htab));
9e390558 10933 bfd_vma glinkoff = GLINK_PLTRESOLVE_SIZE (htab) + pltindex * 8;
794e51c0
AM
10934 bfd_vma to, from;
10935
68d62958
AM
10936 if (pltindex > 32768)
10937 glinkoff += (pltindex - 32768) * 4;
794e51c0
AM
10938 to = (glinkoff
10939 + htab->glink->output_offset
10940 + htab->glink->output_section->vma);
6f20ed8a 10941 from = (p - stub_entry->group->stub_sec->contents
794e51c0
AM
10942 + 4 * (ALWAYS_EMIT_R2SAVE
10943 || stub_entry->stub_type == ppc_stub_plt_call_r2save)
10944 + 4 * (PPC_HA (offset) != 0)
10945 + 4 * (PPC_HA (offset + 8 + 8 * plt_static_chain)
10946 != PPC_HA (offset))
10947 + 4 * (plt_static_chain != 0)
10948 + 20
6f20ed8a
AM
10949 + stub_entry->group->stub_sec->output_offset
10950 + stub_entry->group->stub_sec->output_section->vma);
794e51c0
AM
10951 cmp_branch_off = to - from;
10952 use_fake_dep = cmp_branch_off + (1 << 25) >= (1 << 26);
10953 }
10954
ac2df442
AM
10955 if (PPC_HA (offset) != 0)
10956 {
176a0d42
AM
10957 if (r != NULL)
10958 {
794e51c0
AM
10959 if (ALWAYS_EMIT_R2SAVE
10960 || stub_entry->stub_type == ppc_stub_plt_call_r2save)
10961 r[0].r_offset += 4;
176a0d42 10962 r[0].r_info = ELF64_R_INFO (0, R_PPC64_TOC16_HA);
3b421ab3 10963 r[1].r_offset = r[0].r_offset + 4;
176a0d42
AM
10964 r[1].r_info = ELF64_R_INFO (0, R_PPC64_TOC16_LO_DS);
10965 r[1].r_addend = r[0].r_addend;
b9e5796b 10966 if (plt_load_toc)
176a0d42 10967 {
b9e5796b 10968 if (PPC_HA (offset + 8 + 8 * plt_static_chain) != PPC_HA (offset))
c7131b65 10969 {
b9e5796b
AM
10970 r[2].r_offset = r[1].r_offset + 4;
10971 r[2].r_info = ELF64_R_INFO (0, R_PPC64_TOC16_LO);
10972 r[2].r_addend = r[0].r_addend;
10973 }
10974 else
10975 {
10976 r[2].r_offset = r[1].r_offset + 8 + 8 * use_fake_dep;
10977 r[2].r_info = ELF64_R_INFO (0, R_PPC64_TOC16_LO_DS);
10978 r[2].r_addend = r[0].r_addend + 8;
10979 if (plt_static_chain)
10980 {
10981 r[3].r_offset = r[2].r_offset + 4;
10982 r[3].r_info = ELF64_R_INFO (0, R_PPC64_TOC16_LO_DS);
10983 r[3].r_addend = r[0].r_addend + 16;
10984 }
c7131b65 10985 }
176a0d42
AM
10986 }
10987 }
794e51c0
AM
10988 if (ALWAYS_EMIT_R2SAVE
10989 || stub_entry->stub_type == ppc_stub_plt_call_r2save)
a078d95a 10990 bfd_put_32 (obfd, STD_R2_0R1 + STK_TOC (htab), p), p += 4;
397998fc
AM
10991 if (plt_load_toc)
10992 {
10993 bfd_put_32 (obfd, ADDIS_R11_R2 | PPC_HA (offset), p), p += 4;
10994 bfd_put_32 (obfd, LD_R12_0R11 | PPC_LO (offset), p), p += 4;
10995 }
10996 else
10997 {
10998 bfd_put_32 (obfd, ADDIS_R12_R2 | PPC_HA (offset), p), p += 4;
10999 bfd_put_32 (obfd, LD_R12_0R12 | PPC_LO (offset), p), p += 4;
11000 }
b9e5796b
AM
11001 if (plt_load_toc
11002 && PPC_HA (offset + 8 + 8 * plt_static_chain) != PPC_HA (offset))
ac2df442 11003 {
71a39c98 11004 bfd_put_32 (obfd, ADDI_R11_R11 | PPC_LO (offset), p), p += 4;
ac2df442
AM
11005 offset = 0;
11006 }
71a39c98 11007 bfd_put_32 (obfd, MTCTR_R12, p), p += 4;
b9e5796b 11008 if (plt_load_toc)
794e51c0 11009 {
b9e5796b
AM
11010 if (use_fake_dep)
11011 {
11012 bfd_put_32 (obfd, XOR_R2_R12_R12, p), p += 4;
11013 bfd_put_32 (obfd, ADD_R11_R11_R2, p), p += 4;
11014 }
11015 bfd_put_32 (obfd, LD_R2_0R11 | PPC_LO (offset + 8), p), p += 4;
11016 if (plt_static_chain)
11017 bfd_put_32 (obfd, LD_R11_0R11 | PPC_LO (offset + 16), p), p += 4;
794e51c0 11018 }
ac2df442
AM
11019 }
11020 else
11021 {
176a0d42
AM
11022 if (r != NULL)
11023 {
794e51c0
AM
11024 if (ALWAYS_EMIT_R2SAVE
11025 || stub_entry->stub_type == ppc_stub_plt_call_r2save)
11026 r[0].r_offset += 4;
176a0d42 11027 r[0].r_info = ELF64_R_INFO (0, R_PPC64_TOC16_DS);
b9e5796b 11028 if (plt_load_toc)
176a0d42 11029 {
b9e5796b 11030 if (PPC_HA (offset + 8 + 8 * plt_static_chain) != PPC_HA (offset))
c7131b65 11031 {
b9e5796b
AM
11032 r[1].r_offset = r[0].r_offset + 4;
11033 r[1].r_info = ELF64_R_INFO (0, R_PPC64_TOC16);
11034 r[1].r_addend = r[0].r_addend;
11035 }
11036 else
11037 {
11038 r[1].r_offset = r[0].r_offset + 8 + 8 * use_fake_dep;
11039 r[1].r_info = ELF64_R_INFO (0, R_PPC64_TOC16_DS);
11040 r[1].r_addend = r[0].r_addend + 8 + 8 * plt_static_chain;
11041 if (plt_static_chain)
11042 {
11043 r[2].r_offset = r[1].r_offset + 4;
11044 r[2].r_info = ELF64_R_INFO (0, R_PPC64_TOC16_DS);
11045 r[2].r_addend = r[0].r_addend + 8;
11046 }
c7131b65 11047 }
176a0d42
AM
11048 }
11049 }
794e51c0
AM
11050 if (ALWAYS_EMIT_R2SAVE
11051 || stub_entry->stub_type == ppc_stub_plt_call_r2save)
a078d95a 11052 bfd_put_32 (obfd, STD_R2_0R1 + STK_TOC (htab), p), p += 4;
71a39c98 11053 bfd_put_32 (obfd, LD_R12_0R2 | PPC_LO (offset), p), p += 4;
b9e5796b
AM
11054 if (plt_load_toc
11055 && PPC_HA (offset + 8 + 8 * plt_static_chain) != PPC_HA (offset))
ac2df442
AM
11056 {
11057 bfd_put_32 (obfd, ADDI_R2_R2 | PPC_LO (offset), p), p += 4;
11058 offset = 0;
11059 }
71a39c98 11060 bfd_put_32 (obfd, MTCTR_R12, p), p += 4;
b9e5796b 11061 if (plt_load_toc)
794e51c0 11062 {
b9e5796b
AM
11063 if (use_fake_dep)
11064 {
11065 bfd_put_32 (obfd, XOR_R11_R12_R12, p), p += 4;
11066 bfd_put_32 (obfd, ADD_R2_R2_R11, p), p += 4;
11067 }
11068 if (plt_static_chain)
11069 bfd_put_32 (obfd, LD_R11_0R2 | PPC_LO (offset + 16), p), p += 4;
11070 bfd_put_32 (obfd, LD_R2_0R2 | PPC_LO (offset + 8), p), p += 4;
794e51c0 11071 }
ac2df442 11072 }
b9e5796b 11073 if (plt_load_toc && plt_thread_safe && !use_fake_dep)
794e51c0
AM
11074 {
11075 bfd_put_32 (obfd, CMPLDI_R2_0, p), p += 4;
11076 bfd_put_32 (obfd, BNECTR_P4, p), p += 4;
22aa0c7e 11077 bfd_put_32 (obfd, B_DOT | (cmp_branch_off & 0x3fffffc), p), p += 4;
794e51c0
AM
11078 }
11079 else
407aa07c 11080 bfd_put_32 (obfd, BCTR, p), p += 4;
5d1634d7
AM
11081 return p;
11082}
11083
a7f2871e
AM
11084/* Build a special .plt call stub for __tls_get_addr. */
11085
b9ca1af6 11086#define LD_R0_0R3 0xe8030000
a7f2871e
AM
11087#define LD_R12_0R3 0xe9830000
11088#define MR_R0_R3 0x7c601b78
b9ca1af6 11089#define CMPDI_R0_0 0x2c200000
a7f2871e
AM
11090#define ADD_R3_R12_R13 0x7c6c6a14
11091#define BEQLR 0x4d820020
11092#define MR_R3_R0 0x7c030378
a7f2871e 11093#define BCTRL 0x4e800421
a7f2871e
AM
11094
11095static inline bfd_byte *
794e51c0
AM
11096build_tls_get_addr_stub (struct ppc_link_hash_table *htab,
11097 struct ppc_stub_hash_entry *stub_entry,
11098 bfd_byte *p, bfd_vma offset, Elf_Internal_Rela *r)
a7f2871e 11099{
e7d1c40c 11100 bfd *obfd = htab->params->stub_bfd;
df136d64 11101 bfd_byte *loc = p;
9e7028aa 11102 unsigned int i;
794e51c0 11103
b9ca1af6 11104 bfd_put_32 (obfd, LD_R0_0R3 + 0, p), p += 4;
a7f2871e 11105 bfd_put_32 (obfd, LD_R12_0R3 + 8, p), p += 4;
b9ca1af6 11106 bfd_put_32 (obfd, CMPDI_R0_0, p), p += 4;
a7f2871e 11107 bfd_put_32 (obfd, MR_R0_R3, p), p += 4;
a7f2871e
AM
11108 bfd_put_32 (obfd, ADD_R3_R12_R13, p), p += 4;
11109 bfd_put_32 (obfd, BEQLR, p), p += 4;
11110 bfd_put_32 (obfd, MR_R3_R0, p), p += 4;
9e7028aa
AM
11111 if (htab->params->no_tls_get_addr_regsave)
11112 {
11113 if (r != NULL)
11114 r[0].r_offset += 7 * 4;
11115 if (stub_entry->stub_type != ppc_stub_plt_call_r2save)
11116 return build_plt_stub (htab, stub_entry, p, offset, r);
11117
11118 bfd_put_32 (obfd, MFLR_R0, p);
11119 p += 4;
11120 bfd_put_32 (obfd, STD_R0_0R1 + STK_LINKER (htab), p);
11121 p += 4;
11122
11123 if (r != NULL)
11124 r[0].r_offset += 2 * 4;
11125 p = build_plt_stub (htab, stub_entry, p, offset, r);
11126 bfd_put_32 (obfd, BCTRL, p - 4);
11127
11128 bfd_put_32 (obfd, LD_R2_0R1 + STK_TOC (htab), p);
11129 p += 4;
11130 bfd_put_32 (obfd, LD_R0_0R1 + STK_LINKER (htab), p);
11131 p += 4;
11132 bfd_put_32 (obfd, MTLR_R0, p);
11133 p += 4;
11134 bfd_put_32 (obfd, BLR, p);
11135 p += 4;
11136 }
11137 else
11138 {
11139 p = tls_get_addr_prologue (obfd, p, htab);
f378ab09 11140
9e7028aa
AM
11141 if (r != NULL)
11142 r[0].r_offset += 18 * 4;
a7f2871e 11143
9e7028aa
AM
11144 p = build_plt_stub (htab, stub_entry, p, offset, r);
11145 bfd_put_32 (obfd, BCTRL, p - 4);
11146
11147 if (stub_entry->stub_type == ppc_stub_plt_call_r2save)
11148 {
11149 bfd_put_32 (obfd, LD_R2_0R1 + STK_TOC (htab), p);
11150 p += 4;
11151 }
a7f2871e 11152
9e7028aa
AM
11153 p = tls_get_addr_epilogue (obfd, p, htab);
11154 }
a7f2871e 11155
df136d64
AM
11156 if (htab->glink_eh_frame != NULL
11157 && htab->glink_eh_frame->size != 0)
11158 {
11159 bfd_byte *base, *eh;
df136d64
AM
11160
11161 base = htab->glink_eh_frame->contents + stub_entry->group->eh_base + 17;
11162 eh = base + stub_entry->group->eh_size;
9e7028aa
AM
11163 if (htab->params->no_tls_get_addr_regsave)
11164 {
11165 unsigned int lr_used, delta;
11166 lr_used = stub_entry->stub_offset + (p - 20 - loc);
11167 delta = lr_used - stub_entry->group->lr_restore;
11168 stub_entry->group->lr_restore = lr_used + 16;
11169 eh = eh_advance (htab->elf.dynobj, eh, delta);
11170 *eh++ = DW_CFA_offset_extended_sf;
11171 *eh++ = 65;
11172 *eh++ = -(STK_LINKER (htab) / 8) & 0x7f;
11173 *eh++ = DW_CFA_advance_loc + 4;
11174 }
11175 else
11176 {
11177 unsigned int cfa_updt, delta;
11178 /* After the bctrl, lr has been modified so we need to emit
11179 .eh_frame info saying the return address is on the stack. In
11180 fact we must put the EH info at or before the call rather
11181 than after it, because the EH info for a call needs to be
11182 specified by that point.
11183 See libgcc/unwind-dw2.c execute_cfa_program.
11184 Any stack pointer update must be described immediately after
11185 the instruction making the change, and since the stdu occurs
11186 after saving regs we put all the reg saves and the cfa
11187 change there. */
11188 cfa_updt = stub_entry->stub_offset + 18 * 4;
11189 delta = cfa_updt - stub_entry->group->lr_restore;
11190 stub_entry->group->lr_restore
11191 = stub_entry->stub_offset + (p - loc) - 4;
11192 eh = eh_advance (htab->elf.dynobj, eh, delta);
11193 *eh++ = DW_CFA_def_cfa_offset;
11194 if (htab->opd_abi)
11195 {
11196 *eh++ = 128;
11197 *eh++ = 1;
11198 }
11199 else
11200 *eh++ = 96;
11201 *eh++ = DW_CFA_offset_extended_sf;
11202 *eh++ = 65;
11203 *eh++ = (-16 / 8) & 0x7f;
11204 for (i = 4; i < 12; i++)
11205 {
11206 *eh++ = DW_CFA_offset + i;
11207 *eh++ = (htab->opd_abi ? 13 : 12) - i;
11208 }
11209 *eh++ = (DW_CFA_advance_loc
11210 + (stub_entry->group->lr_restore - 8 - cfa_updt) / 4);
11211 *eh++ = DW_CFA_def_cfa_offset;
11212 *eh++ = 0;
11213 for (i = 4; i < 12; i++)
11214 *eh++ = DW_CFA_restore + i;
11215 *eh++ = DW_CFA_advance_loc + 2;
11216 }
df136d64
AM
11217 *eh++ = DW_CFA_restore_extended;
11218 *eh++ = 65;
11219 stub_entry->group->eh_size = eh - base;
11220 }
a7f2871e
AM
11221 return p;
11222}
11223
176a0d42
AM
11224static Elf_Internal_Rela *
11225get_relocs (asection *sec, int count)
11226{
11227 Elf_Internal_Rela *relocs;
11228 struct bfd_elf_section_data *elfsec_data;
11229
11230 elfsec_data = elf_section_data (sec);
11231 relocs = elfsec_data->relocs;
11232 if (relocs == NULL)
11233 {
11234 bfd_size_type relsize;
11235 relsize = sec->reloc_count * sizeof (*relocs);
11236 relocs = bfd_alloc (sec->owner, relsize);
11237 if (relocs == NULL)
11238 return NULL;
11239 elfsec_data->relocs = relocs;
d4730f92
BS
11240 elfsec_data->rela.hdr = bfd_zalloc (sec->owner,
11241 sizeof (Elf_Internal_Shdr));
11242 if (elfsec_data->rela.hdr == NULL)
11243 return NULL;
11244 elfsec_data->rela.hdr->sh_size = (sec->reloc_count
11245 * sizeof (Elf64_External_Rela));
11246 elfsec_data->rela.hdr->sh_entsize = sizeof (Elf64_External_Rela);
176a0d42
AM
11247 sec->reloc_count = 0;
11248 }
11249 relocs += sec->reloc_count;
11250 sec->reloc_count += count;
11251 return relocs;
11252}
11253
3d58e1fc
AM
11254/* Convert the relocs R[0] thru R[-NUM_REL+1], which are all no-symbol
11255 forms, to the equivalent relocs against the global symbol given by
11256 STUB_ENTRY->H. */
11257
11258static bfd_boolean
11259use_global_in_relocs (struct ppc_link_hash_table *htab,
11260 struct ppc_stub_hash_entry *stub_entry,
11261 Elf_Internal_Rela *r, unsigned int num_rel)
11262{
11263 struct elf_link_hash_entry **hashes;
11264 unsigned long symndx;
11265 struct ppc_link_hash_entry *h;
11266 bfd_vma symval;
11267
11268 /* Relocs are always against symbols in their own object file. Fake
11269 up global sym hashes for the stub bfd (which has no symbols). */
11270 hashes = elf_sym_hashes (htab->params->stub_bfd);
11271 if (hashes == NULL)
11272 {
11273 bfd_size_type hsize;
11274
11275 /* When called the first time, stub_globals will contain the
11276 total number of symbols seen during stub sizing. After
11277 allocating, stub_globals is used as an index to fill the
11278 hashes array. */
11279 hsize = (htab->stub_globals + 1) * sizeof (*hashes);
11280 hashes = bfd_zalloc (htab->params->stub_bfd, hsize);
11281 if (hashes == NULL)
11282 return FALSE;
11283 elf_sym_hashes (htab->params->stub_bfd) = hashes;
11284 htab->stub_globals = 1;
11285 }
11286 symndx = htab->stub_globals++;
11287 h = stub_entry->h;
11288 hashes[symndx] = &h->elf;
11289 if (h->oh != NULL && h->oh->is_func)
11290 h = ppc_follow_link (h->oh);
11291 BFD_ASSERT (h->elf.root.type == bfd_link_hash_defined
11292 || h->elf.root.type == bfd_link_hash_defweak);
ed7007c1 11293 symval = defined_sym_val (&h->elf);
3d58e1fc
AM
11294 while (num_rel-- != 0)
11295 {
11296 r->r_info = ELF64_R_INFO (symndx, ELF64_R_TYPE (r->r_info));
11297 if (h->elf.root.u.def.section != stub_entry->target_section)
11298 {
11299 /* H is an opd symbol. The addend must be zero, and the
11300 branch reloc is the only one we can convert. */
11301 r->r_addend = 0;
11302 break;
11303 }
11304 else
11305 r->r_addend -= symval;
11306 --r;
11307 }
11308 return TRUE;
11309}
11310
aa374f67 11311static bfd_vma
25f53a85 11312get_r2off (struct bfd_link_info *info,
aa374f67
AM
11313 struct ppc_stub_hash_entry *stub_entry)
11314{
25f53a85 11315 struct ppc_link_hash_table *htab = ppc_hash_table (info);
6f20ed8a 11316 bfd_vma r2off = htab->sec_info[stub_entry->target_section->id].toc_off;
aa374f67
AM
11317
11318 if (r2off == 0)
11319 {
11320 /* Support linking -R objects. Get the toc pointer from the
11321 opd entry. */
11322 char buf[8];
b9e5796b
AM
11323 if (!htab->opd_abi)
11324 return r2off;
aa374f67
AM
11325 asection *opd = stub_entry->h->elf.root.u.def.section;
11326 bfd_vma opd_off = stub_entry->h->elf.root.u.def.value;
11327
11328 if (strcmp (opd->name, ".opd") != 0
11329 || opd->reloc_count != 0)
11330 {
2cdcc330
AM
11331 info->callbacks->einfo
11332 (_("%P: cannot find opd entry toc for `%pT'\n"),
11333 stub_entry->h->elf.root.root.string);
aa374f67 11334 bfd_set_error (bfd_error_bad_value);
a7c49797 11335 return (bfd_vma) -1;
aa374f67
AM
11336 }
11337 if (!bfd_get_section_contents (opd->owner, opd, buf, opd_off + 8, 8))
a7c49797 11338 return (bfd_vma) -1;
aa374f67 11339 r2off = bfd_get_64 (opd->owner, buf);
25f53a85 11340 r2off -= elf_gp (info->output_bfd);
aa374f67 11341 }
6f20ed8a 11342 r2off -= htab->sec_info[stub_entry->group->link_sec->id].toc_off;
aa374f67
AM
11343 return r2off;
11344}
11345
b34976b6 11346static bfd_boolean
4ce794b7 11347ppc_build_one_stub (struct bfd_hash_entry *gen_entry, void *in_arg)
5d1634d7 11348{
721956f4
AM
11349 struct ppc_stub_hash_entry *stub_entry;
11350 struct ppc_branch_hash_entry *br_entry;
5d1634d7
AM
11351 struct bfd_link_info *info;
11352 struct ppc_link_hash_table *htab;
721956f4 11353 bfd_byte *loc;
3d58e1fc 11354 bfd_byte *p, *relp;
1aa42141 11355 bfd_vma targ, off;
176a0d42 11356 Elf_Internal_Rela *r;
e054468f 11357 asection *plt;
3d58e1fc 11358 int num_rel;
04bdff6a 11359 int odd;
5d1634d7 11360
721956f4
AM
11361 /* Massage our args to the form they really have. */
11362 stub_entry = (struct ppc_stub_hash_entry *) gen_entry;
4ce794b7 11363 info = in_arg;
5d1634d7 11364
5d1634d7 11365 htab = ppc_hash_table (info);
4dfe6ac6
NC
11366 if (htab == NULL)
11367 return FALSE;
5d1634d7 11368
1aa42141 11369 BFD_ASSERT (stub_entry->stub_offset >= stub_entry->group->stub_sec->size);
6f20ed8a 11370 loc = stub_entry->group->stub_sec->contents + stub_entry->stub_offset;
721956f4 11371
4ce794b7 11372 htab->stub_count[stub_entry->stub_type - 1] += 1;
721956f4 11373 switch (stub_entry->stub_type)
5d1634d7 11374 {
721956f4 11375 case ppc_stub_long_branch:
ad8e1ba5 11376 case ppc_stub_long_branch_r2off:
721956f4 11377 /* Branches are relative. This is where we are going to. */
1aa42141 11378 targ = (stub_entry->target_value
6911b7dc
AM
11379 + stub_entry->target_section->output_offset
11380 + stub_entry->target_section->output_section->vma);
1aa42141 11381 targ += PPC64_LOCAL_ENTRY_OFFSET (stub_entry->other);
5d1634d7 11382
721956f4 11383 /* And this is where we are coming from. */
1aa42141
AM
11384 off = (stub_entry->stub_offset
11385 + stub_entry->group->stub_sec->output_offset
11386 + stub_entry->group->stub_sec->output_section->vma);
11387 off = targ - off;
e86ce104 11388
9e390558 11389 p = loc;
ac2df442 11390 if (stub_entry->stub_type == ppc_stub_long_branch_r2off)
ad8e1ba5 11391 {
25f53a85 11392 bfd_vma r2off = get_r2off (info, stub_entry);
ad8e1ba5 11393
a7c49797 11394 if (r2off == (bfd_vma) -1)
aa374f67
AM
11395 {
11396 htab->stub_error = TRUE;
11397 return FALSE;
11398 }
9e390558
AM
11399 bfd_put_32 (htab->params->stub_bfd, STD_R2_0R1 + STK_TOC (htab), p);
11400 p += 4;
ac2df442
AM
11401 if (PPC_HA (r2off) != 0)
11402 {
e7d1c40c 11403 bfd_put_32 (htab->params->stub_bfd,
9e390558
AM
11404 ADDIS_R2_R2 | PPC_HA (r2off), p);
11405 p += 4;
a7c49797
AM
11406 }
11407 if (PPC_LO (r2off) != 0)
11408 {
11409 bfd_put_32 (htab->params->stub_bfd,
9e390558
AM
11410 ADDI_R2_R2 | PPC_LO (r2off), p);
11411 p += 4;
ac2df442 11412 }
9e390558 11413 off -= p - loc;
ad8e1ba5 11414 }
9e390558
AM
11415 bfd_put_32 (htab->params->stub_bfd, B_DOT | (off & 0x3fffffc), p);
11416 p += 4;
ad8e1ba5 11417
5c3dead3
AM
11418 if (off + (1 << 25) >= (bfd_vma) (1 << 26))
11419 {
cf97bcb0
AM
11420 _bfd_error_handler
11421 (_("long branch stub `%s' offset overflow"),
bc30df16 11422 stub_entry->root.string);
5c3dead3
AM
11423 htab->stub_error = TRUE;
11424 return FALSE;
11425 }
ee75fd95
AM
11426
11427 if (info->emitrelocations)
11428 {
6f20ed8a 11429 r = get_relocs (stub_entry->group->stub_sec, 1);
176a0d42
AM
11430 if (r == NULL)
11431 return FALSE;
9e390558 11432 r->r_offset = p - 4 - stub_entry->group->stub_sec->contents;
ee75fd95 11433 r->r_info = ELF64_R_INFO (0, R_PPC64_REL24);
1aa42141 11434 r->r_addend = targ;
3d58e1fc
AM
11435 if (stub_entry->h != NULL
11436 && !use_global_in_relocs (htab, stub_entry, r, 1))
11437 return FALSE;
ee75fd95 11438 }
721956f4 11439 break;
e86ce104 11440
721956f4 11441 case ppc_stub_plt_branch:
ad8e1ba5 11442 case ppc_stub_plt_branch_r2off:
721956f4
AM
11443 br_entry = ppc_branch_hash_lookup (&htab->branch_hash_table,
11444 stub_entry->root.string + 9,
b34976b6 11445 FALSE, FALSE);
721956f4
AM
11446 if (br_entry == NULL)
11447 {
cf97bcb0
AM
11448 _bfd_error_handler (_("can't find branch stub `%s'"),
11449 stub_entry->root.string);
b34976b6
AM
11450 htab->stub_error = TRUE;
11451 return FALSE;
721956f4
AM
11452 }
11453
1aa42141 11454 targ = (stub_entry->target_value
176a0d42
AM
11455 + stub_entry->target_section->output_offset
11456 + stub_entry->target_section->output_section->vma);
6911b7dc 11457 if (stub_entry->stub_type != ppc_stub_plt_branch_r2off)
1aa42141 11458 targ += PPC64_LOCAL_ENTRY_OFFSET (stub_entry->other);
721956f4 11459
1aa42141 11460 bfd_put_64 (htab->brlt->owner, targ,
4ce794b7 11461 htab->brlt->contents + br_entry->offset);
721956f4 11462
f94498ff 11463 if (br_entry->iter == htab->stub_iteration)
721956f4 11464 {
f94498ff 11465 br_entry->iter = 0;
84f5d08e 11466
f94498ff 11467 if (htab->relbrlt != NULL)
84f5d08e 11468 {
f94498ff
AM
11469 /* Create a reloc for the branch lookup table entry. */
11470 Elf_Internal_Rela rela;
11471 bfd_byte *rl;
11472
11473 rela.r_offset = (br_entry->offset
11474 + htab->brlt->output_offset
11475 + htab->brlt->output_section->vma);
11476 rela.r_info = ELF64_R_INFO (0, R_PPC64_RELATIVE);
1aa42141 11477 rela.r_addend = targ;
f94498ff
AM
11478
11479 rl = htab->relbrlt->contents;
11480 rl += (htab->relbrlt->reloc_count++
11481 * sizeof (Elf64_External_Rela));
11482 bfd_elf64_swap_reloca_out (htab->relbrlt->owner, &rela, rl);
11483 }
11484 else if (info->emitrelocations)
11485 {
176a0d42
AM
11486 r = get_relocs (htab->brlt, 1);
11487 if (r == NULL)
11488 return FALSE;
11489 /* brlt, being SEC_LINKER_CREATED does not go through the
11490 normal reloc processing. Symbols and offsets are not
11491 translated from input file to output file form, so
11492 set up the offset per the output file. */
f94498ff
AM
11493 r->r_offset = (br_entry->offset
11494 + htab->brlt->output_offset
11495 + htab->brlt->output_section->vma);
11496 r->r_info = ELF64_R_INFO (0, R_PPC64_RELATIVE);
1aa42141 11497 r->r_addend = targ;
84f5d08e 11498 }
84f5d08e 11499 }
721956f4 11500
1aa42141 11501 targ = (br_entry->offset
176a0d42
AM
11502 + htab->brlt->output_offset
11503 + htab->brlt->output_section->vma);
11504
1aa42141
AM
11505 off = (elf_gp (info->output_bfd)
11506 + htab->sec_info[stub_entry->group->link_sec->id].toc_off);
11507 off = targ - off;
721956f4 11508
ad8e1ba5 11509 if (off + 0x80008000 > 0xffffffff || (off & 7) != 0)
5d1634d7 11510 {
25f53a85 11511 info->callbacks->einfo
c1c8c1ef 11512 (_("%P: linkage table error against `%pT'\n"),
721956f4 11513 stub_entry->root.string);
5d1634d7 11514 bfd_set_error (bfd_error_bad_value);
b34976b6
AM
11515 htab->stub_error = TRUE;
11516 return FALSE;
5d1634d7 11517 }
41bd81ab 11518
176a0d42
AM
11519 if (info->emitrelocations)
11520 {
6f20ed8a 11521 r = get_relocs (stub_entry->group->stub_sec, 1 + (PPC_HA (off) != 0));
176a0d42
AM
11522 if (r == NULL)
11523 return FALSE;
6f20ed8a 11524 r[0].r_offset = loc - stub_entry->group->stub_sec->contents;
7cfbafbc
AM
11525 if (bfd_big_endian (info->output_bfd))
11526 r[0].r_offset += 2;
00f412ee 11527 if (stub_entry->stub_type == ppc_stub_plt_branch_r2off)
176a0d42
AM
11528 r[0].r_offset += 4;
11529 r[0].r_info = ELF64_R_INFO (0, R_PPC64_TOC16_DS);
1aa42141 11530 r[0].r_addend = targ;
176a0d42
AM
11531 if (PPC_HA (off) != 0)
11532 {
11533 r[0].r_info = ELF64_R_INFO (0, R_PPC64_TOC16_HA);
11534 r[1].r_offset = r[0].r_offset + 4;
11535 r[1].r_info = ELF64_R_INFO (0, R_PPC64_TOC16_LO_DS);
11536 r[1].r_addend = r[0].r_addend;
11537 }
11538 }
11539
9e390558 11540 p = loc;
00f412ee 11541 if (stub_entry->stub_type != ppc_stub_plt_branch_r2off)
ad8e1ba5 11542 {
176a0d42 11543 if (PPC_HA (off) != 0)
ac2df442 11544 {
e7d1c40c 11545 bfd_put_32 (htab->params->stub_bfd,
9e390558
AM
11546 ADDIS_R12_R2 | PPC_HA (off), p);
11547 p += 4;
e7d1c40c 11548 bfd_put_32 (htab->params->stub_bfd,
9e390558 11549 LD_R12_0R12 | PPC_LO (off), p);
ac2df442
AM
11550 }
11551 else
9e390558
AM
11552 bfd_put_32 (htab->params->stub_bfd,
11553 LD_R12_0R2 | PPC_LO (off), p);
ad8e1ba5
AM
11554 }
11555 else
11556 {
25f53a85 11557 bfd_vma r2off = get_r2off (info, stub_entry);
aa374f67 11558
a7c49797 11559 if (r2off == (bfd_vma) -1)
aa374f67
AM
11560 {
11561 htab->stub_error = TRUE;
11562 return FALSE;
11563 }
ad8e1ba5 11564
9e390558
AM
11565 bfd_put_32 (htab->params->stub_bfd, STD_R2_0R1 + STK_TOC (htab), p);
11566 p += 4;
176a0d42 11567 if (PPC_HA (off) != 0)
ac2df442 11568 {
e7d1c40c 11569 bfd_put_32 (htab->params->stub_bfd,
9e390558
AM
11570 ADDIS_R12_R2 | PPC_HA (off), p);
11571 p += 4;
e7d1c40c 11572 bfd_put_32 (htab->params->stub_bfd,
9e390558 11573 LD_R12_0R12 | PPC_LO (off), p);
ac2df442
AM
11574 }
11575 else
9e390558 11576 bfd_put_32 (htab->params->stub_bfd, LD_R12_0R2 | PPC_LO (off), p);
ac2df442
AM
11577
11578 if (PPC_HA (r2off) != 0)
11579 {
9e390558 11580 p += 4;
e7d1c40c 11581 bfd_put_32 (htab->params->stub_bfd,
9e390558 11582 ADDIS_R2_R2 | PPC_HA (r2off), p);
00f412ee
AM
11583 }
11584 if (PPC_LO (r2off) != 0)
11585 {
9e390558 11586 p += 4;
e7d1c40c 11587 bfd_put_32 (htab->params->stub_bfd,
9e390558 11588 ADDI_R2_R2 | PPC_LO (r2off), p);
ac2df442 11589 }
ad8e1ba5 11590 }
9e390558
AM
11591 p += 4;
11592 bfd_put_32 (htab->params->stub_bfd, MTCTR_R12, p);
11593 p += 4;
407aa07c
AM
11594 bfd_put_32 (htab->params->stub_bfd, BCTR, p);
11595 p += 4;
721956f4 11596 break;
5d1634d7 11597
05d0e962
AM
11598 case ppc_stub_long_branch_notoc:
11599 case ppc_stub_long_branch_both:
11600 case ppc_stub_plt_branch_notoc:
11601 case ppc_stub_plt_branch_both:
11602 case ppc_stub_plt_call_notoc:
11603 case ppc_stub_plt_call_both:
11604 p = loc;
f891966f 11605 off = (stub_entry->stub_offset
05d0e962
AM
11606 + stub_entry->group->stub_sec->output_offset
11607 + stub_entry->group->stub_sec->output_section->vma);
11608 if (stub_entry->stub_type == ppc_stub_long_branch_both
11609 || stub_entry->stub_type == ppc_stub_plt_branch_both
11610 || stub_entry->stub_type == ppc_stub_plt_call_both)
11611 {
11612 off += 4;
11613 bfd_put_32 (htab->params->stub_bfd, STD_R2_0R1 + STK_TOC (htab), p);
11614 p += 4;
11615 }
11616 if (stub_entry->stub_type >= ppc_stub_plt_call_notoc)
11617 {
11618 targ = stub_entry->plt_ent->plt.offset & ~1;
11619 if (targ >= (bfd_vma) -2)
11620 abort ();
11621
11622 plt = htab->elf.splt;
11623 if (!htab->elf.dynamic_sections_created
11624 || stub_entry->h == NULL
11625 || stub_entry->h->elf.dynindx == -1)
11626 {
11627 if (stub_entry->symtype == STT_GNU_IFUNC)
11628 plt = htab->elf.iplt;
11629 else
11630 plt = htab->pltlocal;
11631 }
11632 targ += plt->output_offset + plt->output_section->vma;
11633 }
11634 else
11635 targ = (stub_entry->target_value
11636 + stub_entry->target_section->output_offset
11637 + stub_entry->target_section->output_section->vma);
04bdff6a 11638 odd = off & 4;
05d0e962 11639 off = targ - off;
f891966f 11640
3d58e1fc
AM
11641 relp = p;
11642 num_rel = 0;
04bdff6a
AM
11643 if (htab->powerxx_stubs)
11644 {
11645 bfd_boolean load = stub_entry->stub_type >= ppc_stub_plt_call_notoc;
11646 p = build_powerxx_offset (htab->params->stub_bfd, p, off, odd, load);
11647 }
11648 else
11649 {
11650 /* The notoc stubs calculate their target (either a PLT entry or
11651 the global entry point of a function) relative to the PC
11652 returned by the "bcl" two instructions past the start of the
11653 sequence emitted by build_offset. The offset is therefore 8
11654 less than calculated from the start of the sequence. */
11655 off -= 8;
11656 p = build_offset (htab->params->stub_bfd, p, off,
11657 stub_entry->stub_type >= ppc_stub_plt_call_notoc);
11658 }
11659
f891966f 11660 if (stub_entry->stub_type <= ppc_stub_long_branch_both)
05d0e962 11661 {
f891966f 11662 bfd_vma from;
3d58e1fc 11663 num_rel = 1;
f891966f
AM
11664 from = (stub_entry->stub_offset
11665 + stub_entry->group->stub_sec->output_offset
11666 + stub_entry->group->stub_sec->output_section->vma
11667 + (p - loc));
05d0e962 11668 bfd_put_32 (htab->params->stub_bfd,
f891966f 11669 B_DOT | ((targ - from) & 0x3fffffc), p);
05d0e962
AM
11670 }
11671 else
11672 {
11673 bfd_put_32 (htab->params->stub_bfd, MTCTR_R12, p);
11674 p += 4;
11675 bfd_put_32 (htab->params->stub_bfd, BCTR, p);
11676 }
11677 p += 4;
df136d64 11678
3d58e1fc
AM
11679 if (info->emitrelocations)
11680 {
04bdff6a
AM
11681 bfd_vma roff = relp - stub_entry->group->stub_sec->contents;
11682 if (htab->powerxx_stubs)
11683 num_rel += num_relocs_for_powerxx_offset (off, odd);
11684 else
11685 {
11686 num_rel += num_relocs_for_offset (off);
11687 roff += 16;
11688 }
3d58e1fc
AM
11689 r = get_relocs (stub_entry->group->stub_sec, num_rel);
11690 if (r == NULL)
11691 return FALSE;
04bdff6a
AM
11692 if (htab->powerxx_stubs)
11693 r = emit_relocs_for_powerxx_offset (info, r, roff, targ, off, odd);
11694 else
11695 r = emit_relocs_for_offset (info, r, roff, targ, off);
3d58e1fc
AM
11696 if (stub_entry->stub_type == ppc_stub_long_branch_notoc
11697 || stub_entry->stub_type == ppc_stub_long_branch_both)
11698 {
11699 ++r;
11700 roff = p - 4 - stub_entry->group->stub_sec->contents;
11701 r->r_offset = roff;
11702 r->r_info = ELF64_R_INFO (0, R_PPC64_REL24);
11703 r->r_addend = targ;
11704 if (stub_entry->h != NULL
11705 && !use_global_in_relocs (htab, stub_entry, r, num_rel))
11706 return FALSE;
11707 }
11708 }
11709
04bdff6a
AM
11710 if (!htab->powerxx_stubs
11711 && htab->glink_eh_frame != NULL
11712 && htab->glink_eh_frame->size != 0)
df136d64
AM
11713 {
11714 bfd_byte *base, *eh;
11715 unsigned int lr_used, delta;
11716
11717 base = (htab->glink_eh_frame->contents
11718 + stub_entry->group->eh_base + 17);
11719 eh = base + stub_entry->group->eh_size;
11720 lr_used = stub_entry->stub_offset + 8;
11721 if (stub_entry->stub_type == ppc_stub_long_branch_both
11722 || stub_entry->stub_type == ppc_stub_plt_branch_both
11723 || stub_entry->stub_type == ppc_stub_plt_call_both)
11724 lr_used += 4;
11725 delta = lr_used - stub_entry->group->lr_restore;
11726 stub_entry->group->lr_restore = lr_used + 8;
11727 eh = eh_advance (htab->elf.dynobj, eh, delta);
11728 *eh++ = DW_CFA_register;
11729 *eh++ = 65;
11730 *eh++ = 12;
11731 *eh++ = DW_CFA_advance_loc + 2;
11732 *eh++ = DW_CFA_restore_extended;
11733 *eh++ = 65;
11734 stub_entry->group->eh_size = eh - base;
11735 }
05d0e962
AM
11736 break;
11737
721956f4 11738 case ppc_stub_plt_call:
794e51c0 11739 case ppc_stub_plt_call_r2save:
e054468f 11740 if (stub_entry->h != NULL
b31867b6
AM
11741 && stub_entry->h->is_func_descriptor
11742 && stub_entry->h->oh != NULL)
c862ae31 11743 {
b31867b6
AM
11744 struct ppc_link_hash_entry *fh = ppc_follow_link (stub_entry->h->oh);
11745
11746 /* If the old-ABI "dot-symbol" is undefined make it weak so
6f20ed8a 11747 we don't get a link error from RELOC_FOR_GLOBAL_SYMBOL. */
8c5b4e52
AM
11748 if (fh->elf.root.type == bfd_link_hash_undefined
11749 && (stub_entry->h->elf.root.type == bfd_link_hash_defined
11750 || stub_entry->h->elf.root.type == bfd_link_hash_defweak))
b31867b6 11751 fh->elf.root.type = bfd_link_hash_undefweak;
c862ae31
AM
11752 }
11753
721956f4 11754 /* Now build the stub. */
1aa42141
AM
11755 targ = stub_entry->plt_ent->plt.offset & ~1;
11756 if (targ >= (bfd_vma) -2)
721956f4
AM
11757 abort ();
11758
33e44f2e 11759 plt = htab->elf.splt;
25f23106
AM
11760 if (!htab->elf.dynamic_sections_created
11761 || stub_entry->h == NULL
11762 || stub_entry->h->elf.dynindx == -1)
2d7ad24e
AM
11763 {
11764 if (stub_entry->symtype == STT_GNU_IFUNC)
11765 plt = htab->elf.iplt;
11766 else
11767 plt = htab->pltlocal;
11768 }
1aa42141 11769 targ += plt->output_offset + plt->output_section->vma;
e054468f 11770
1aa42141
AM
11771 off = (elf_gp (info->output_bfd)
11772 + htab->sec_info[stub_entry->group->link_sec->id].toc_off);
11773 off = targ - off;
721956f4 11774
ad8e1ba5 11775 if (off + 0x80008000 > 0xffffffff || (off & 7) != 0)
721956f4 11776 {
25f53a85 11777 info->callbacks->einfo
695344c0 11778 /* xgettext:c-format */
c1c8c1ef 11779 (_("%P: linkage table error against `%pT'\n"),
e054468f
AM
11780 stub_entry->h != NULL
11781 ? stub_entry->h->elf.root.root.string
11782 : "<local sym>");
721956f4 11783 bfd_set_error (bfd_error_bad_value);
b34976b6
AM
11784 htab->stub_error = TRUE;
11785 return FALSE;
721956f4
AM
11786 }
11787
176a0d42
AM
11788 r = NULL;
11789 if (info->emitrelocations)
11790 {
6f20ed8a 11791 r = get_relocs (stub_entry->group->stub_sec,
3ba720c7
AM
11792 ((PPC_HA (off) != 0)
11793 + (htab->opd_abi
e7d1c40c 11794 ? 2 + (htab->params->plt_static_chain
3ba720c7
AM
11795 && PPC_HA (off + 16) == PPC_HA (off))
11796 : 1)));
176a0d42
AM
11797 if (r == NULL)
11798 return FALSE;
6f20ed8a 11799 r[0].r_offset = loc - stub_entry->group->stub_sec->contents;
7cfbafbc
AM
11800 if (bfd_big_endian (info->output_bfd))
11801 r[0].r_offset += 2;
1aa42141 11802 r[0].r_addend = targ;
176a0d42 11803 }
a7f2871e 11804 if (stub_entry->h != NULL
ed7007c1 11805 && is_tls_get_addr (&stub_entry->h->elf, htab)
7c9cf415 11806 && htab->params->tls_get_addr_opt)
794e51c0 11807 p = build_tls_get_addr_stub (htab, stub_entry, loc, off, r);
a7f2871e 11808 else
794e51c0 11809 p = build_plt_stub (htab, stub_entry, loc, off, r);
721956f4
AM
11810 break;
11811
a4b6fadd
AM
11812 case ppc_stub_save_res:
11813 return TRUE;
11814
721956f4
AM
11815 default:
11816 BFD_FAIL ();
b34976b6 11817 return FALSE;
721956f4
AM
11818 }
11819
1aa42141 11820 stub_entry->group->stub_sec->size = stub_entry->stub_offset + (p - loc);
97b639ba 11821
e7d1c40c 11822 if (htab->params->emit_stub_syms)
97b639ba
AM
11823 {
11824 struct elf_link_hash_entry *h;
ee75fd95
AM
11825 size_t len1, len2;
11826 char *name;
11827 const char *const stub_str[] = { "long_branch",
05d0e962
AM
11828 "long_branch",
11829 "long_branch",
3f6ff479
AM
11830 "long_branch",
11831 "plt_branch",
ee75fd95 11832 "plt_branch",
05d0e962
AM
11833 "plt_branch",
11834 "plt_branch",
11835 "plt_call",
11836 "plt_call",
794e51c0 11837 "plt_call",
ee75fd95
AM
11838 "plt_call" };
11839
11840 len1 = strlen (stub_str[stub_entry->stub_type - 1]);
11841 len2 = strlen (stub_entry->root.string);
11842 name = bfd_malloc (len1 + len2 + 2);
11843 if (name == NULL)
11844 return FALSE;
11845 memcpy (name, stub_entry->root.string, 9);
11846 memcpy (name + 9, stub_str[stub_entry->stub_type - 1], len1);
11847 memcpy (name + len1 + 9, stub_entry->root.string + 8, len2 - 8 + 1);
11848 h = elf_link_hash_lookup (&htab->elf, name, TRUE, FALSE, FALSE);
97b639ba
AM
11849 if (h == NULL)
11850 return FALSE;
11851 if (h->root.type == bfd_link_hash_new)
11852 {
11853 h->root.type = bfd_link_hash_defined;
6f20ed8a 11854 h->root.u.def.section = stub_entry->group->stub_sec;
97b639ba 11855 h->root.u.def.value = stub_entry->stub_offset;
f5385ebf
AM
11856 h->ref_regular = 1;
11857 h->def_regular = 1;
11858 h->ref_regular_nonweak = 1;
11859 h->forced_local = 1;
11860 h->non_elf = 0;
2ec55de3 11861 h->root.linker_def = 1;
97b639ba
AM
11862 }
11863 }
11864
b34976b6 11865 return TRUE;
721956f4
AM
11866}
11867
11868/* As above, but don't actually build the stub. Just bump offset so
11869 we know stub section sizes, and select plt_branch stubs where
11870 long_branch stubs won't do. */
11871
b34976b6 11872static bfd_boolean
4ce794b7 11873ppc_size_one_stub (struct bfd_hash_entry *gen_entry, void *in_arg)
721956f4
AM
11874{
11875 struct ppc_stub_hash_entry *stub_entry;
63bc6f6c 11876 struct bfd_link_info *info;
721956f4 11877 struct ppc_link_hash_table *htab;
f891966f
AM
11878 asection *plt;
11879 bfd_vma targ, off, r2off;
04bdff6a 11880 unsigned int size, extra, lr_used, delta, odd;
721956f4
AM
11881
11882 /* Massage our args to the form they really have. */
11883 stub_entry = (struct ppc_stub_hash_entry *) gen_entry;
63bc6f6c
AM
11884 info = in_arg;
11885
11886 htab = ppc_hash_table (info);
4dfe6ac6
NC
11887 if (htab == NULL)
11888 return FALSE;
721956f4 11889
1aa42141
AM
11890 /* Make a note of the offset within the stubs for this entry. */
11891 stub_entry->stub_offset = stub_entry->group->stub_sec->size;
11892
a4b6fadd
AM
11893 if (stub_entry->h != NULL
11894 && stub_entry->h->save_res
11895 && stub_entry->h->elf.root.type == bfd_link_hash_defined
11896 && stub_entry->h->elf.root.u.def.section == htab->sfpr)
11897 {
11898 /* Don't make stubs to out-of-line register save/restore
11899 functions. Instead, emit copies of the functions. */
11900 stub_entry->group->needs_save_res = 1;
11901 stub_entry->stub_type = ppc_stub_save_res;
11902 return TRUE;
11903 }
11904
f891966f 11905 switch (stub_entry->stub_type)
721956f4 11906 {
f891966f
AM
11907 case ppc_stub_plt_branch:
11908 case ppc_stub_plt_branch_r2off:
11909 /* Reset the stub type from the plt branch variant in case we now
11910 can reach with a shorter stub. */
11911 stub_entry->stub_type += ppc_stub_long_branch - ppc_stub_plt_branch;
11912 /* Fall through. */
11913 case ppc_stub_long_branch:
11914 case ppc_stub_long_branch_r2off:
1aa42141
AM
11915 targ = (stub_entry->target_value
11916 + stub_entry->target_section->output_offset
11917 + stub_entry->target_section->output_section->vma);
f891966f 11918 targ += PPC64_LOCAL_ENTRY_OFFSET (stub_entry->other);
1aa42141
AM
11919 off = (stub_entry->stub_offset
11920 + stub_entry->group->stub_sec->output_offset
11921 + stub_entry->group->stub_sec->output_section->vma);
721956f4 11922
ad8e1ba5 11923 size = 4;
f891966f 11924 r2off = 0;
ad8e1ba5
AM
11925 if (stub_entry->stub_type == ppc_stub_long_branch_r2off)
11926 {
25f53a85 11927 r2off = get_r2off (info, stub_entry);
a7c49797 11928 if (r2off == (bfd_vma) -1)
aa374f67
AM
11929 {
11930 htab->stub_error = TRUE;
11931 return FALSE;
11932 }
a7c49797 11933 size = 8;
ac2df442 11934 if (PPC_HA (r2off) != 0)
a7c49797
AM
11935 size += 4;
11936 if (PPC_LO (r2off) != 0)
11937 size += 4;
1aa42141 11938 off += size - 4;
ad8e1ba5 11939 }
1aa42141 11940 off = targ - off;
ad8e1ba5 11941
f891966f
AM
11942 /* If the branch offset is too big, use a ppc_stub_plt_branch.
11943 Do the same for -R objects without function descriptors. */
11944 if ((stub_entry->stub_type == ppc_stub_long_branch_r2off
11945 && r2off == 0
11946 && htab->sec_info[stub_entry->target_section->id].toc_off == 0)
11947 || off + (1 << 25) >= (bfd_vma) (1 << 26))
721956f4 11948 {
f891966f 11949 struct ppc_branch_hash_entry *br_entry;
df136d64 11950
f891966f
AM
11951 br_entry = ppc_branch_hash_lookup (&htab->branch_hash_table,
11952 stub_entry->root.string + 9,
11953 TRUE, FALSE);
11954 if (br_entry == NULL)
721956f4 11955 {
f891966f
AM
11956 _bfd_error_handler (_("can't build branch stub `%s'"),
11957 stub_entry->root.string);
11958 htab->stub_error = TRUE;
11959 return FALSE;
721956f4
AM
11960 }
11961
f891966f 11962 if (br_entry->iter != htab->stub_iteration)
721956f4 11963 {
f891966f
AM
11964 br_entry->iter = htab->stub_iteration;
11965 br_entry->offset = htab->brlt->size;
11966 htab->brlt->size += 8;
63bc6f6c 11967
f891966f
AM
11968 if (htab->relbrlt != NULL)
11969 htab->relbrlt->size += sizeof (Elf64_External_Rela);
11970 else if (info->emitrelocations)
84f5d08e 11971 {
f891966f
AM
11972 htab->brlt->reloc_count += 1;
11973 htab->brlt->flags |= SEC_RELOC;
05d0e962 11974 }
f891966f 11975 }
ac2df442 11976
f891966f
AM
11977 targ = (br_entry->offset
11978 + htab->brlt->output_offset
11979 + htab->brlt->output_section->vma);
11980 off = (elf_gp (info->output_bfd)
11981 + htab->sec_info[stub_entry->group->link_sec->id].toc_off);
11982 off = targ - off;
176a0d42 11983
f891966f
AM
11984 if (info->emitrelocations)
11985 {
11986 stub_entry->group->stub_sec->reloc_count
11987 += 1 + (PPC_HA (off) != 0);
11988 stub_entry->group->stub_sec->flags |= SEC_RELOC;
11989 }
05d0e962 11990
f891966f
AM
11991 stub_entry->stub_type += ppc_stub_plt_branch - ppc_stub_long_branch;
11992 if (stub_entry->stub_type != ppc_stub_plt_branch_r2off)
11993 {
11994 size = 12;
11995 if (PPC_HA (off) != 0)
11996 size = 16;
ac2df442 11997 }
f891966f 11998 else
ac2df442 11999 {
f891966f
AM
12000 size = 16;
12001 if (PPC_HA (off) != 0)
12002 size += 4;
12003
12004 if (PPC_HA (r2off) != 0)
12005 size += 4;
12006 if (PPC_LO (r2off) != 0)
12007 size += 4;
ac2df442 12008 }
721956f4 12009 }
f891966f
AM
12010 else if (info->emitrelocations)
12011 {
12012 stub_entry->group->stub_sec->reloc_count += 1;
12013 stub_entry->group->stub_sec->flags |= SEC_RELOC;
12014 }
12015 break;
12016
12017 case ppc_stub_plt_branch_notoc:
12018 case ppc_stub_plt_branch_both:
12019 stub_entry->stub_type += ppc_stub_long_branch - ppc_stub_plt_branch;
12020 /* Fall through. */
12021 case ppc_stub_long_branch_notoc:
12022 case ppc_stub_long_branch_both:
12023 off = (stub_entry->stub_offset
12024 + stub_entry->group->stub_sec->output_offset
12025 + stub_entry->group->stub_sec->output_section->vma);
12026 size = 0;
12027 if (stub_entry->stub_type == ppc_stub_long_branch_both)
12028 size = 4;
12029 off += size;
12030 targ = (stub_entry->target_value
12031 + stub_entry->target_section->output_offset
12032 + stub_entry->target_section->output_section->vma);
04bdff6a 12033 odd = off & 4;
f891966f
AM
12034 off = targ - off;
12035
3d58e1fc
AM
12036 if (info->emitrelocations)
12037 {
04bdff6a
AM
12038 unsigned int num_rel;
12039 if (htab->powerxx_stubs)
12040 num_rel = num_relocs_for_powerxx_offset (off, odd);
12041 else
12042 num_rel = num_relocs_for_offset (off - 8);
12043 stub_entry->group->stub_sec->reloc_count += num_rel;
3d58e1fc
AM
12044 stub_entry->group->stub_sec->flags |= SEC_RELOC;
12045 }
12046
04bdff6a
AM
12047 if (htab->powerxx_stubs)
12048 extra = size_powerxx_offset (off, odd);
12049 else
12050 extra = size_offset (off - 8);
f891966f
AM
12051 /* Include branch insn plus those in the offset sequence. */
12052 size += 4 + extra;
12053 /* The branch insn is at the end, or "extra" bytes along. So
12054 its offset will be "extra" bytes less that that already
12055 calculated. */
12056 off -= extra;
12057
04bdff6a
AM
12058 if (!htab->powerxx_stubs)
12059 {
12060 /* After the bcl, lr has been modified so we need to emit
12061 .eh_frame info saying the return address is in r12. */
12062 lr_used = stub_entry->stub_offset + 8;
12063 if (stub_entry->stub_type == ppc_stub_long_branch_both)
12064 lr_used += 4;
12065 /* The eh_frame info will consist of a DW_CFA_advance_loc or
12066 variant, DW_CFA_register, 65, 12, DW_CFA_advance_loc+2,
12067 DW_CFA_restore_extended 65. */
12068 delta = lr_used - stub_entry->group->lr_restore;
12069 stub_entry->group->eh_size += eh_advance_size (delta) + 6;
12070 stub_entry->group->lr_restore = lr_used + 8;
12071 }
f891966f
AM
12072
12073 /* If the branch can't reach, use a plt_branch. */
12074 if (off + (1 << 25) >= (bfd_vma) (1 << 26))
12075 {
12076 stub_entry->stub_type += (ppc_stub_plt_branch_notoc
12077 - ppc_stub_long_branch_notoc);
12078 size += 4;
12079 }
3d58e1fc
AM
12080 else if (info->emitrelocations)
12081 stub_entry->group->stub_sec->reloc_count +=1;
f891966f
AM
12082 break;
12083
12084 case ppc_stub_plt_call_notoc:
12085 case ppc_stub_plt_call_both:
12086 off = (stub_entry->stub_offset
12087 + stub_entry->group->stub_sec->output_offset
12088 + stub_entry->group->stub_sec->output_section->vma);
12089 if (stub_entry->stub_type == ppc_stub_plt_call_both)
12090 off += 4;
12091 targ = stub_entry->plt_ent->plt.offset & ~1;
12092 if (targ >= (bfd_vma) -2)
12093 abort ();
12094
12095 plt = htab->elf.splt;
12096 if (!htab->elf.dynamic_sections_created
12097 || stub_entry->h == NULL
12098 || stub_entry->h->elf.dynindx == -1)
12099 {
12100 if (stub_entry->symtype == STT_GNU_IFUNC)
12101 plt = htab->elf.iplt;
12102 else
12103 plt = htab->pltlocal;
12104 }
12105 targ += plt->output_offset + plt->output_section->vma;
04bdff6a 12106 odd = off & 4;
f891966f
AM
12107 off = targ - off;
12108
12109 if (htab->params->plt_stub_align != 0)
12110 {
12111 unsigned pad = plt_stub_pad (htab, stub_entry, off);
12112
12113 stub_entry->group->stub_sec->size += pad;
12114 stub_entry->stub_offset = stub_entry->group->stub_sec->size;
12115 off -= pad;
12116 }
12117
3d58e1fc
AM
12118 if (info->emitrelocations)
12119 {
04bdff6a
AM
12120 unsigned int num_rel;
12121 if (htab->powerxx_stubs)
12122 num_rel = num_relocs_for_powerxx_offset (off, odd);
12123 else
12124 num_rel = num_relocs_for_offset (off - 8);
12125 stub_entry->group->stub_sec->reloc_count += num_rel;
3d58e1fc
AM
12126 stub_entry->group->stub_sec->flags |= SEC_RELOC;
12127 }
12128
f891966f
AM
12129 size = plt_stub_size (htab, stub_entry, off);
12130
04bdff6a
AM
12131 if (!htab->powerxx_stubs)
12132 {
12133 /* After the bcl, lr has been modified so we need to emit
12134 .eh_frame info saying the return address is in r12. */
12135 lr_used = stub_entry->stub_offset + 8;
12136 if (stub_entry->stub_type == ppc_stub_plt_call_both)
12137 lr_used += 4;
12138 /* The eh_frame info will consist of a DW_CFA_advance_loc or
12139 variant, DW_CFA_register, 65, 12, DW_CFA_advance_loc+2,
12140 DW_CFA_restore_extended 65. */
12141 delta = lr_used - stub_entry->group->lr_restore;
12142 stub_entry->group->eh_size += eh_advance_size (delta) + 6;
12143 stub_entry->group->lr_restore = lr_used + 8;
12144 }
f891966f
AM
12145 break;
12146
12147 case ppc_stub_plt_call:
12148 case ppc_stub_plt_call_r2save:
12149 targ = stub_entry->plt_ent->plt.offset & ~(bfd_vma) 1;
12150 if (targ >= (bfd_vma) -2)
12151 abort ();
12152 plt = htab->elf.splt;
12153 if (!htab->elf.dynamic_sections_created
12154 || stub_entry->h == NULL
12155 || stub_entry->h->elf.dynindx == -1)
12156 {
12157 if (stub_entry->symtype == STT_GNU_IFUNC)
12158 plt = htab->elf.iplt;
12159 else
12160 plt = htab->pltlocal;
12161 }
12162 targ += plt->output_offset + plt->output_section->vma;
12163
12164 off = (elf_gp (info->output_bfd)
12165 + htab->sec_info[stub_entry->group->link_sec->id].toc_off);
12166 off = targ - off;
12167
12168 if (htab->params->plt_stub_align != 0)
12169 {
12170 unsigned pad = plt_stub_pad (htab, stub_entry, off);
12171
12172 stub_entry->group->stub_sec->size += pad;
12173 stub_entry->stub_offset = stub_entry->group->stub_sec->size;
12174 }
12175
12176 if (info->emitrelocations)
12177 {
12178 stub_entry->group->stub_sec->reloc_count
12179 += ((PPC_HA (off) != 0)
12180 + (htab->opd_abi
12181 ? 2 + (htab->params->plt_static_chain
12182 && PPC_HA (off + 16) == PPC_HA (off))
12183 : 1));
12184 stub_entry->group->stub_sec->flags |= SEC_RELOC;
12185 }
12186
12187 size = plt_stub_size (htab, stub_entry, off);
12188
12189 if (stub_entry->h != NULL
ed7007c1 12190 && is_tls_get_addr (&stub_entry->h->elf, htab)
f891966f
AM
12191 && htab->params->tls_get_addr_opt
12192 && stub_entry->stub_type == ppc_stub_plt_call_r2save)
12193 {
9e7028aa
AM
12194 if (htab->params->no_tls_get_addr_regsave)
12195 {
12196 lr_used = stub_entry->stub_offset + size - 20;
12197 /* The eh_frame info will consist of a DW_CFA_advance_loc
12198 or variant, DW_CFA_offset_externed_sf, 65, -stackoff,
12199 DW_CFA_advance_loc+4, DW_CFA_restore_extended, 65. */
12200 delta = lr_used - stub_entry->group->lr_restore;
12201 stub_entry->group->eh_size += eh_advance_size (delta) + 6;
12202 }
12203 else
12204 {
12205 /* Adjustments to r1 need to be described. */
12206 unsigned int cfa_updt = stub_entry->stub_offset + 18 * 4;
12207 delta = cfa_updt - stub_entry->group->lr_restore;
12208 stub_entry->group->eh_size += eh_advance_size (delta);
12209 stub_entry->group->eh_size += htab->opd_abi ? 36 : 35;
12210 }
f891966f
AM
12211 stub_entry->group->lr_restore = size - 4;
12212 }
12213 break;
12214
12215 default:
12216 BFD_FAIL ();
12217 return FALSE;
721956f4
AM
12218 }
12219
6f20ed8a 12220 stub_entry->group->stub_sec->size += size;
b34976b6 12221 return TRUE;
721956f4
AM
12222}
12223
12224/* Set up various things so that we can make a list of input sections
12225 for each output section included in the link. Returns -1 on error,
cedb70c5 12226 0 when no stubs will be needed, and 1 on success. */
721956f4
AM
12227
12228int
e7d1c40c 12229ppc64_elf_setup_section_lists (struct bfd_link_info *info)
721956f4 12230{
6f20ed8a 12231 unsigned int id;
986f0783 12232 size_t amt;
721956f4
AM
12233 struct ppc_link_hash_table *htab = ppc_hash_table (info);
12234
4dfe6ac6
NC
12235 if (htab == NULL)
12236 return -1;
4c52953f 12237
7cf7fcc8 12238 htab->sec_info_arr_size = _bfd_section_id;
6f20ed8a
AM
12239 amt = sizeof (*htab->sec_info) * (htab->sec_info_arr_size);
12240 htab->sec_info = bfd_zmalloc (amt);
12241 if (htab->sec_info == NULL)
721956f4
AM
12242 return -1;
12243
3d6f9012
AM
12244 /* Set toc_off for com, und, abs and ind sections. */
12245 for (id = 0; id < 3; id++)
6f20ed8a 12246 htab->sec_info[id].toc_off = TOC_BASE_OFF;
734b6cf9 12247
721956f4
AM
12248 return 1;
12249}
12250
927be08e
AM
12251/* Set up for first pass at multitoc partitioning. */
12252
12253void
12254ppc64_elf_start_multitoc_partition (struct bfd_link_info *info)
12255{
12256 struct ppc_link_hash_table *htab = ppc_hash_table (info);
12257
1c865ab2 12258 htab->toc_curr = ppc64_elf_set_toc (info, info->output_bfd);
927be08e
AM
12259 htab->toc_bfd = NULL;
12260 htab->toc_first_sec = NULL;
12261}
12262
e717da7e
AM
12263/* The linker repeatedly calls this function for each TOC input section
12264 and linker generated GOT section. Group input bfds such that the toc
927be08e 12265 within a group is less than 64k in size. */
ad8e1ba5 12266
927be08e 12267bfd_boolean
4ce794b7 12268ppc64_elf_next_toc_section (struct bfd_link_info *info, asection *isec)
ad8e1ba5
AM
12269{
12270 struct ppc_link_hash_table *htab = ppc_hash_table (info);
d77c8a4b 12271 bfd_vma addr, off, limit;
ad8e1ba5 12272
4dfe6ac6
NC
12273 if (htab == NULL)
12274 return FALSE;
12275
927be08e 12276 if (!htab->second_toc_pass)
4c52953f 12277 {
927be08e 12278 /* Keep track of the first .toc or .got section for this input bfd. */
a4fd3de5
AM
12279 bfd_boolean new_bfd = htab->toc_bfd != isec->owner;
12280
12281 if (new_bfd)
bf102f86
AM
12282 {
12283 htab->toc_bfd = isec->owner;
12284 htab->toc_first_sec = isec;
12285 }
927be08e 12286
bf102f86
AM
12287 addr = isec->output_offset + isec->output_section->vma;
12288 off = addr - htab->toc_curr;
d77c8a4b
AM
12289 limit = 0x80008000;
12290 if (ppc64_elf_tdata (isec->owner)->has_small_toc_reloc)
12291 limit = 0x10000;
12292 if (off + isec->size > limit)
bf102f86
AM
12293 {
12294 addr = (htab->toc_first_sec->output_offset
12295 + htab->toc_first_sec->output_section->vma);
12296 htab->toc_curr = addr;
a27e685f 12297 htab->toc_curr &= -TOC_BASE_ALIGN;
bf102f86 12298 }
99877b66 12299
927be08e
AM
12300 /* toc_curr is the base address of this toc group. Set elf_gp
12301 for the input section to be the offset relative to the
12302 output toc base plus 0x8000. Making the input elf_gp an
12303 offset allows us to move the toc as a whole without
12304 recalculating input elf_gp. */
06bcf541 12305 off = htab->toc_curr - elf_gp (info->output_bfd);
927be08e
AM
12306 off += TOC_BASE_OFF;
12307
12308 /* Die if someone uses a linker script that doesn't keep input
12309 file .toc and .got together. */
a4fd3de5
AM
12310 if (new_bfd
12311 && elf_gp (isec->owner) != 0
927be08e
AM
12312 && elf_gp (isec->owner) != off)
12313 return FALSE;
12314
12315 elf_gp (isec->owner) = off;
12316 return TRUE;
4c52953f 12317 }
927be08e
AM
12318
12319 /* During the second pass toc_first_sec points to the start of
12320 a toc group, and toc_curr is used to track the old elf_gp.
12321 We use toc_bfd to ensure we only look at each bfd once. */
12322 if (htab->toc_bfd == isec->owner)
12323 return TRUE;
12324 htab->toc_bfd = isec->owner;
12325
12326 if (htab->toc_first_sec == NULL
12327 || htab->toc_curr != elf_gp (isec->owner))
12328 {
12329 htab->toc_curr = elf_gp (isec->owner);
12330 htab->toc_first_sec = isec;
12331 }
12332 addr = (htab->toc_first_sec->output_offset
12333 + htab->toc_first_sec->output_section->vma);
06bcf541 12334 off = addr - elf_gp (info->output_bfd) + TOC_BASE_OFF;
927be08e
AM
12335 elf_gp (isec->owner) = off;
12336
12337 return TRUE;
ad8e1ba5
AM
12338}
12339
927be08e
AM
12340/* Called via elf_link_hash_traverse to merge GOT entries for global
12341 symbol H. */
12342
12343static bfd_boolean
12344merge_global_got (struct elf_link_hash_entry *h, void *inf ATTRIBUTE_UNUSED)
12345{
12346 if (h->root.type == bfd_link_hash_indirect)
12347 return TRUE;
12348
927be08e
AM
12349 merge_got_entries (&h->got.glist);
12350
12351 return TRUE;
12352}
12353
12354/* Called via elf_link_hash_traverse to allocate GOT entries for global
12355 symbol H. */
12356
12357static bfd_boolean
12358reallocate_got (struct elf_link_hash_entry *h, void *inf)
12359{
12360 struct got_entry *gent;
12361
12362 if (h->root.type == bfd_link_hash_indirect)
12363 return TRUE;
12364
927be08e
AM
12365 for (gent = h->got.glist; gent != NULL; gent = gent->next)
12366 if (!gent->is_indirect)
12367 allocate_got (h, (struct bfd_link_info *) inf, gent);
12368 return TRUE;
12369}
12370
12371/* Called on the first multitoc pass after the last call to
12372 ppc64_elf_next_toc_section. This function removes duplicate GOT
12373 entries. */
12374
12375bfd_boolean
12376ppc64_elf_layout_multitoc (struct bfd_link_info *info)
ad8e1ba5
AM
12377{
12378 struct ppc_link_hash_table *htab = ppc_hash_table (info);
927be08e
AM
12379 struct bfd *ibfd, *ibfd2;
12380 bfd_boolean done_something;
12381
12382 htab->multi_toc_needed = htab->toc_curr != elf_gp (info->output_bfd);
ad8e1ba5 12383
7865406b
AM
12384 if (!htab->do_multi_toc)
12385 return FALSE;
12386
d0fae19d 12387 /* Merge global sym got entries within a toc group. */
927be08e
AM
12388 elf_link_hash_traverse (&htab->elf, merge_global_got, info);
12389
12390 /* And tlsld_got. */
c72f2fb2 12391 for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
927be08e
AM
12392 {
12393 struct got_entry *ent, *ent2;
12394
12395 if (!is_ppc64_elf (ibfd))
12396 continue;
12397
12398 ent = ppc64_tlsld_got (ibfd);
12399 if (!ent->is_indirect
12400 && ent->got.offset != (bfd_vma) -1)
12401 {
c72f2fb2 12402 for (ibfd2 = ibfd->link.next; ibfd2 != NULL; ibfd2 = ibfd2->link.next)
927be08e
AM
12403 {
12404 if (!is_ppc64_elf (ibfd2))
12405 continue;
12406
12407 ent2 = ppc64_tlsld_got (ibfd2);
12408 if (!ent2->is_indirect
12409 && ent2->got.offset != (bfd_vma) -1
12410 && elf_gp (ibfd2) == elf_gp (ibfd))
12411 {
12412 ent2->is_indirect = TRUE;
12413 ent2->got.ent = ent;
12414 }
12415 }
12416 }
12417 }
12418
12419 /* Zap sizes of got sections. */
33e44f2e
AM
12420 htab->elf.irelplt->rawsize = htab->elf.irelplt->size;
12421 htab->elf.irelplt->size -= htab->got_reli_size;
927be08e
AM
12422 htab->got_reli_size = 0;
12423
c72f2fb2 12424 for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
927be08e
AM
12425 {
12426 asection *got, *relgot;
12427
12428 if (!is_ppc64_elf (ibfd))
12429 continue;
12430
12431 got = ppc64_elf_tdata (ibfd)->got;
12432 if (got != NULL)
12433 {
12434 got->rawsize = got->size;
12435 got->size = 0;
12436 relgot = ppc64_elf_tdata (ibfd)->relgot;
12437 relgot->rawsize = relgot->size;
12438 relgot->size = 0;
12439 }
12440 }
12441
12442 /* Now reallocate the got, local syms first. We don't need to
12443 allocate section contents again since we never increase size. */
c72f2fb2 12444 for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
927be08e
AM
12445 {
12446 struct got_entry **lgot_ents;
12447 struct got_entry **end_lgot_ents;
12448 struct plt_entry **local_plt;
12449 struct plt_entry **end_local_plt;
f961d9dd 12450 unsigned char *lgot_masks;
927be08e
AM
12451 bfd_size_type locsymcount;
12452 Elf_Internal_Shdr *symtab_hdr;
19e08130 12453 asection *s;
927be08e
AM
12454
12455 if (!is_ppc64_elf (ibfd))
12456 continue;
12457
12458 lgot_ents = elf_local_got_ents (ibfd);
12459 if (!lgot_ents)
12460 continue;
12461
12462 symtab_hdr = &elf_symtab_hdr (ibfd);
12463 locsymcount = symtab_hdr->sh_info;
12464 end_lgot_ents = lgot_ents + locsymcount;
12465 local_plt = (struct plt_entry **) end_lgot_ents;
12466 end_local_plt = local_plt + locsymcount;
f961d9dd 12467 lgot_masks = (unsigned char *) end_local_plt;
927be08e 12468 s = ppc64_elf_tdata (ibfd)->got;
927be08e
AM
12469 for (; lgot_ents < end_lgot_ents; ++lgot_ents, ++lgot_masks)
12470 {
12471 struct got_entry *ent;
12472
12473 for (ent = *lgot_ents; ent != NULL; ent = ent->next)
d0fae19d 12474 {
19e08130
AM
12475 unsigned int ent_size = 8;
12476 unsigned int rel_size = sizeof (Elf64_External_Rela);
12477
d0fae19d
AM
12478 ent->got.offset = s->size;
12479 if ((ent->tls_type & *lgot_masks & TLS_GD) != 0)
d0fae19d 12480 {
19e08130
AM
12481 ent_size *= 2;
12482 rel_size *= 2;
12483 }
12484 s->size += ent_size;
37da22e5 12485 if ((*lgot_masks & (TLS_TLS | PLT_IFUNC)) == PLT_IFUNC)
19e08130 12486 {
33e44f2e 12487 htab->elf.irelplt->size += rel_size;
19e08130
AM
12488 htab->got_reli_size += rel_size;
12489 }
6a3858a6 12490 else if (bfd_link_pic (info)
f749f26e 12491 && !(ent->tls_type != 0
6a3858a6 12492 && bfd_link_executable (info)))
19e08130
AM
12493 {
12494 asection *srel = ppc64_elf_tdata (ibfd)->relgot;
12495 srel->size += rel_size;
d0fae19d
AM
12496 }
12497 }
927be08e
AM
12498 }
12499 }
12500
12501 elf_link_hash_traverse (&htab->elf, reallocate_got, info);
12502
c72f2fb2 12503 for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
927be08e
AM
12504 {
12505 struct got_entry *ent;
12506
12507 if (!is_ppc64_elf (ibfd))
12508 continue;
12509
12510 ent = ppc64_tlsld_got (ibfd);
12511 if (!ent->is_indirect
12512 && ent->got.offset != (bfd_vma) -1)
12513 {
12514 asection *s = ppc64_elf_tdata (ibfd)->got;
12515 ent->got.offset = s->size;
12516 s->size += 16;
f749f26e 12517 if (bfd_link_dll (info))
927be08e
AM
12518 {
12519 asection *srel = ppc64_elf_tdata (ibfd)->relgot;
12520 srel->size += sizeof (Elf64_External_Rela);
12521 }
12522 }
12523 }
12524
33e44f2e 12525 done_something = htab->elf.irelplt->rawsize != htab->elf.irelplt->size;
927be08e 12526 if (!done_something)
c72f2fb2 12527 for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
927be08e
AM
12528 {
12529 asection *got;
12530
12531 if (!is_ppc64_elf (ibfd))
12532 continue;
12533
12534 got = ppc64_elf_tdata (ibfd)->got;
12535 if (got != NULL)
12536 {
12537 done_something = got->rawsize != got->size;
12538 if (done_something)
12539 break;
12540 }
12541 }
12542
12543 if (done_something)
e7d1c40c 12544 (*htab->params->layout_sections_again) ();
927be08e
AM
12545
12546 /* Set up for second pass over toc sections to recalculate elf_gp
12547 on input sections. */
12548 htab->toc_bfd = NULL;
12549 htab->toc_first_sec = NULL;
12550 htab->second_toc_pass = TRUE;
12551 return done_something;
12552}
12553
12554/* Called after second pass of multitoc partitioning. */
12555
12556void
12557ppc64_elf_finish_multitoc_partition (struct bfd_link_info *info)
12558{
12559 struct ppc_link_hash_table *htab = ppc_hash_table (info);
12560
12561 /* After the second pass, toc_curr tracks the TOC offset used
12562 for code sections below in ppc64_elf_next_input_section. */
3d6f9012 12563 htab->toc_curr = TOC_BASE_OFF;
ad8e1ba5
AM
12564}
12565
9b5ecbd0
AM
12566/* No toc references were found in ISEC. If the code in ISEC makes no
12567 calls, then there's no need to use toc adjusting stubs when branching
12568 into ISEC. Actually, indirect calls from ISEC are OK as they will
4c52953f
AM
12569 load r2. Returns -1 on error, 0 for no stub needed, 1 for stub
12570 needed, and 2 if a cyclical call-graph was found but no other reason
12571 for a stub was detected. If called from the top level, a return of
12572 2 means the same as a return of 0. */
9b5ecbd0
AM
12573
12574static int
4ce794b7 12575toc_adjusting_stub_needed (struct bfd_link_info *info, asection *isec)
9b5ecbd0 12576{
9b5ecbd0 12577 int ret;
70cc837d
AM
12578
12579 /* Mark this section as checked. */
12580 isec->call_check_done = 1;
9b5ecbd0 12581
772119ce
AM
12582 /* We know none of our code bearing sections will need toc stubs. */
12583 if ((isec->flags & SEC_LINKER_CREATED) != 0)
12584 return 0;
12585
eea6121a 12586 if (isec->size == 0)
082c50f8
AM
12587 return 0;
12588
4c52953f
AM
12589 if (isec->output_section == NULL)
12590 return 0;
12591
4c52953f 12592 ret = 0;
70cc837d 12593 if (isec->reloc_count != 0)
9b5ecbd0 12594 {
70cc837d
AM
12595 Elf_Internal_Rela *relstart, *rel;
12596 Elf_Internal_Sym *local_syms;
12597 struct ppc_link_hash_table *htab;
2917689a 12598
70cc837d
AM
12599 relstart = _bfd_elf_link_read_relocs (isec->owner, isec, NULL, NULL,
12600 info->keep_memory);
12601 if (relstart == NULL)
12602 return -1;
90aecf7a 12603
70cc837d
AM
12604 /* Look for branches to outside of this section. */
12605 local_syms = NULL;
12606 htab = ppc_hash_table (info);
12607 if (htab == NULL)
12608 return -1;
4c52953f 12609
70cc837d 12610 for (rel = relstart; rel < relstart + isec->reloc_count; ++rel)
4c52953f 12611 {
70cc837d
AM
12612 enum elf_ppc64_reloc_type r_type;
12613 unsigned long r_symndx;
12614 struct elf_link_hash_entry *h;
12615 struct ppc_link_hash_entry *eh;
12616 Elf_Internal_Sym *sym;
12617 asection *sym_sec;
12618 struct _opd_sec_data *opd;
12619 bfd_vma sym_value;
12620 bfd_vma dest;
12621
12622 r_type = ELF64_R_TYPE (rel->r_info);
12623 if (r_type != R_PPC64_REL24
05d0e962 12624 && r_type != R_PPC64_REL24_NOTOC
70cc837d
AM
12625 && r_type != R_PPC64_REL14
12626 && r_type != R_PPC64_REL14_BRTAKEN
23cedd1d 12627 && r_type != R_PPC64_REL14_BRNTAKEN
5663e321
AM
12628 && r_type != R_PPC64_PLTCALL
12629 && r_type != R_PPC64_PLTCALL_NOTOC)
70cc837d 12630 continue;
4c52953f 12631
70cc837d
AM
12632 r_symndx = ELF64_R_SYM (rel->r_info);
12633 if (!get_sym_h (&h, &sym, &sym_sec, NULL, &local_syms, r_symndx,
12634 isec->owner))
4c52953f 12635 {
70cc837d
AM
12636 ret = -1;
12637 break;
12638 }
4c52953f 12639
70cc837d
AM
12640 /* Calls to dynamic lib functions go through a plt call stub
12641 that uses r2. */
ed7007c1 12642 eh = ppc_elf_hash_entry (h);
70cc837d
AM
12643 if (eh != NULL
12644 && (eh->elf.plt.plist != NULL
12645 || (eh->oh != NULL
12646 && ppc_follow_link (eh->oh)->elf.plt.plist != NULL)))
12647 {
12648 ret = 1;
12649 break;
4c52953f
AM
12650 }
12651
70cc837d
AM
12652 if (sym_sec == NULL)
12653 /* Ignore other undefined symbols. */
4c52953f 12654 continue;
4c52953f 12655
70cc837d
AM
12656 /* Assume branches to other sections not included in the
12657 link need stubs too, to cover -R and absolute syms. */
12658 if (sym_sec->output_section == NULL)
12659 {
12660 ret = 1;
12661 break;
12662 }
4c52953f 12663
70cc837d
AM
12664 if (h == NULL)
12665 sym_value = sym->st_value;
12666 else
12667 {
12668 if (h->root.type != bfd_link_hash_defined
12669 && h->root.type != bfd_link_hash_defweak)
12670 abort ();
12671 sym_value = h->root.u.def.value;
12672 }
12673 sym_value += rel->r_addend;
4c52953f 12674
70cc837d
AM
12675 /* If this branch reloc uses an opd sym, find the code section. */
12676 opd = get_opd_info (sym_sec);
12677 if (opd != NULL)
12678 {
12679 if (h == NULL && opd->adjust != NULL)
12680 {
12681 long adjust;
4c52953f 12682
92a9c616 12683 adjust = opd->adjust[OPD_NDX (sym_value)];
70cc837d
AM
12684 if (adjust == -1)
12685 /* Assume deleted functions won't ever be called. */
12686 continue;
12687 sym_value += adjust;
12688 }
4c52953f 12689
aef36ac1
AM
12690 dest = opd_entry_value (sym_sec, sym_value,
12691 &sym_sec, NULL, FALSE);
70cc837d
AM
12692 if (dest == (bfd_vma) -1)
12693 continue;
12694 }
12695 else
12696 dest = (sym_value
12697 + sym_sec->output_offset
12698 + sym_sec->output_section->vma);
4c52953f 12699
70cc837d
AM
12700 /* Ignore branch to self. */
12701 if (sym_sec == isec)
12702 continue;
4c52953f 12703
70cc837d
AM
12704 /* If the called function uses the toc, we need a stub. */
12705 if (sym_sec->has_toc_reloc
12706 || sym_sec->makes_toc_func_call)
4c52953f 12707 {
70cc837d 12708 ret = 1;
4c52953f
AM
12709 break;
12710 }
70cc837d
AM
12711
12712 /* Assume any branch that needs a long branch stub might in fact
12713 need a plt_branch stub. A plt_branch stub uses r2. */
12714 else if (dest - (isec->output_offset
12715 + isec->output_section->vma
6911b7dc
AM
12716 + rel->r_offset) + (1 << 25)
12717 >= (2u << 25) - PPC64_LOCAL_ENTRY_OFFSET (h
12718 ? h->other
12719 : sym->st_other))
4c52953f 12720 {
70cc837d
AM
12721 ret = 1;
12722 break;
12723 }
12724
12725 /* If calling back to a section in the process of being
12726 tested, we can't say for sure that no toc adjusting stubs
12727 are needed, so don't return zero. */
12728 else if (sym_sec->call_check_in_progress)
12729 ret = 2;
12730
12731 /* Branches to another section that itself doesn't have any TOC
12732 references are OK. Recursively call ourselves to check. */
12733 else if (!sym_sec->call_check_done)
12734 {
12735 int recur;
12736
12737 /* Mark current section as indeterminate, so that other
12738 sections that call back to current won't be marked as
12739 known. */
12740 isec->call_check_in_progress = 1;
12741 recur = toc_adjusting_stub_needed (info, sym_sec);
12742 isec->call_check_in_progress = 0;
12743
4c52953f
AM
12744 if (recur != 0)
12745 {
70cc837d
AM
12746 ret = recur;
12747 if (recur != 2)
12748 break;
4c52953f
AM
12749 }
12750 }
4c52953f 12751 }
70cc837d
AM
12752
12753 if (local_syms != NULL
12754 && (elf_symtab_hdr (isec->owner).contents
12755 != (unsigned char *) local_syms))
12756 free (local_syms);
12757 if (elf_section_data (isec)->relocs != relstart)
12758 free (relstart);
9b5ecbd0
AM
12759 }
12760
70cc837d
AM
12761 if ((ret & 1) == 0
12762 && isec->map_head.s != NULL
12763 && (strcmp (isec->output_section->name, ".init") == 0
12764 || strcmp (isec->output_section->name, ".fini") == 0))
12765 {
12766 if (isec->map_head.s->has_toc_reloc
12767 || isec->map_head.s->makes_toc_func_call)
12768 ret = 1;
12769 else if (!isec->map_head.s->call_check_done)
12770 {
12771 int recur;
12772 isec->call_check_in_progress = 1;
12773 recur = toc_adjusting_stub_needed (info, isec->map_head.s);
12774 isec->call_check_in_progress = 0;
12775 if (recur != 0)
12776 ret = recur;
12777 }
12778 }
12779
12780 if (ret == 1)
12781 isec->makes_toc_func_call = 1;
4c52953f 12782
9b5ecbd0
AM
12783 return ret;
12784}
12785
721956f4
AM
12786/* The linker repeatedly calls this function for each input section,
12787 in the order that input sections are linked into output sections.
12788 Build lists of input sections to determine groupings between which
12789 we may insert linker stubs. */
12790
9b5ecbd0 12791bfd_boolean
4ce794b7 12792ppc64_elf_next_input_section (struct bfd_link_info *info, asection *isec)
721956f4
AM
12793{
12794 struct ppc_link_hash_table *htab = ppc_hash_table (info);
12795
4dfe6ac6
NC
12796 if (htab == NULL)
12797 return FALSE;
12798
734b6cf9 12799 if ((isec->output_section->flags & SEC_CODE) != 0
6f20ed8a 12800 && isec->output_section->id < htab->sec_info_arr_size)
721956f4 12801 {
3d6f9012
AM
12802 /* This happens to make the list in reverse order,
12803 which is what we want. */
6f20ed8a
AM
12804 htab->sec_info[isec->id].u.list
12805 = htab->sec_info[isec->output_section->id].u.list;
12806 htab->sec_info[isec->output_section->id].u.list = isec;
721956f4 12807 }
ad8e1ba5 12808
4c52953f 12809 if (htab->multi_toc_needed)
9b5ecbd0 12810 {
8b974ba3
AM
12811 /* Analyse sections that aren't already flagged as needing a
12812 valid toc pointer. Exclude .fixup for the linux kernel.
12813 .fixup contains branches, but only back to the function that
12814 hit an exception. */
12815 if (!(isec->has_toc_reloc
12816 || (isec->flags & SEC_CODE) == 0
12817 || strcmp (isec->name, ".fixup") == 0
12818 || isec->call_check_done))
12819 {
12820 if (toc_adjusting_stub_needed (info, isec) < 0)
6683a28d 12821 return FALSE;
8b974ba3
AM
12822 }
12823 /* Make all sections use the TOC assigned for this object file.
12824 This will be wrong for pasted sections; We fix that in
12825 check_pasted_section(). */
12826 if (elf_gp (isec->owner) != 0)
12827 htab->toc_curr = elf_gp (isec->owner);
12828 }
12829
6f20ed8a 12830 htab->sec_info[isec->id].toc_off = htab->toc_curr;
9b5ecbd0 12831 return TRUE;
721956f4
AM
12832}
12833
70cc837d
AM
12834/* Check that all .init and .fini sections use the same toc, if they
12835 have toc relocs. */
12836
12837static bfd_boolean
12838check_pasted_section (struct bfd_link_info *info, const char *name)
12839{
12840 asection *o = bfd_get_section_by_name (info->output_bfd, name);
12841
12842 if (o != NULL)
12843 {
12844 struct ppc_link_hash_table *htab = ppc_hash_table (info);
12845 bfd_vma toc_off = 0;
12846 asection *i;
12847
12848 for (i = o->map_head.s; i != NULL; i = i->map_head.s)
12849 if (i->has_toc_reloc)
12850 {
12851 if (toc_off == 0)
6f20ed8a
AM
12852 toc_off = htab->sec_info[i->id].toc_off;
12853 else if (toc_off != htab->sec_info[i->id].toc_off)
70cc837d
AM
12854 return FALSE;
12855 }
6683a28d
AM
12856
12857 if (toc_off == 0)
12858 for (i = o->map_head.s; i != NULL; i = i->map_head.s)
12859 if (i->makes_toc_func_call)
12860 {
6f20ed8a 12861 toc_off = htab->sec_info[i->id].toc_off;
6683a28d
AM
12862 break;
12863 }
12864
70cc837d
AM
12865 /* Make sure the whole pasted function uses the same toc offset. */
12866 if (toc_off != 0)
12867 for (i = o->map_head.s; i != NULL; i = i->map_head.s)
6f20ed8a 12868 htab->sec_info[i->id].toc_off = toc_off;
70cc837d
AM
12869 }
12870 return TRUE;
12871}
12872
12873bfd_boolean
12874ppc64_elf_check_init_fini (struct bfd_link_info *info)
12875{
12876 return (check_pasted_section (info, ".init")
12877 & check_pasted_section (info, ".fini"));
12878}
12879
721956f4
AM
12880/* See whether we can group stub sections together. Grouping stub
12881 sections may result in fewer stubs. More importantly, we need to
12882 put all .init* and .fini* stubs at the beginning of the .init or
12883 .fini output sections respectively, because glibc splits the
12884 _init and _fini functions into multiple parts. Putting a stub in
12885 the middle of a function is not a good idea. */
12886
6f20ed8a
AM
12887static bfd_boolean
12888group_sections (struct bfd_link_info *info,
4ce794b7
AM
12889 bfd_size_type stub_group_size,
12890 bfd_boolean stubs_always_before_branch)
721956f4 12891{
6f20ed8a
AM
12892 struct ppc_link_hash_table *htab;
12893 asection *osec;
7c8fe5c4
AM
12894 bfd_boolean suppress_size_errors;
12895
6f20ed8a
AM
12896 htab = ppc_hash_table (info);
12897 if (htab == NULL)
12898 return FALSE;
12899
7c8fe5c4 12900 suppress_size_errors = FALSE;
7c8fe5c4
AM
12901 if (stub_group_size == 1)
12902 {
12903 /* Default values. */
12904 if (stubs_always_before_branch)
09f92717 12905 stub_group_size = 0x1e00000;
7c8fe5c4 12906 else
09f92717 12907 stub_group_size = 0x1c00000;
7c8fe5c4
AM
12908 suppress_size_errors = TRUE;
12909 }
12910
6f20ed8a 12911 for (osec = info->output_bfd->sections; osec != NULL; osec = osec->next)
721956f4 12912 {
6f20ed8a
AM
12913 asection *tail;
12914
12915 if (osec->id >= htab->sec_info_arr_size)
12916 continue;
12917
12918 tail = htab->sec_info[osec->id].u.list;
734b6cf9 12919 while (tail != NULL)
721956f4 12920 {
734b6cf9
AM
12921 asection *curr;
12922 asection *prev;
12923 bfd_size_type total;
12924 bfd_boolean big_sec;
12925 bfd_vma curr_toc;
6f20ed8a 12926 struct map_stub *group;
09f92717 12927 bfd_size_type group_size;
734b6cf9
AM
12928
12929 curr = tail;
eea6121a 12930 total = tail->size;
09f92717
AM
12931 group_size = (ppc64_elf_section_data (tail) != NULL
12932 && ppc64_elf_section_data (tail)->has_14bit_branch
12933 ? stub_group_size >> 10 : stub_group_size);
12934
12935 big_sec = total > group_size;
7c8fe5c4 12936 if (big_sec && !suppress_size_errors)
695344c0 12937 /* xgettext:c-format */
871b3ab2 12938 _bfd_error_handler (_("%pB section %pA exceeds stub group size"),
4eca0228 12939 tail->owner, tail);
6f20ed8a 12940 curr_toc = htab->sec_info[tail->id].toc_off;
734b6cf9 12941
6f20ed8a 12942 while ((prev = htab->sec_info[curr->id].u.list) != NULL
734b6cf9 12943 && ((total += curr->output_offset - prev->output_offset)
6bee8834
AM
12944 < (ppc64_elf_section_data (prev) != NULL
12945 && ppc64_elf_section_data (prev)->has_14bit_branch
09f92717 12946 ? (group_size = stub_group_size >> 10) : group_size))
6f20ed8a 12947 && htab->sec_info[prev->id].toc_off == curr_toc)
734b6cf9
AM
12948 curr = prev;
12949
12950 /* OK, the size from the start of CURR to the end is less
09f92717 12951 than group_size and thus can be handled by one stub
734b6cf9 12952 section. (or the tail section is itself larger than
09f92717
AM
12953 group_size, in which case we may be toast.) We should
12954 really be keeping track of the total size of stubs added
12955 here, as stubs contribute to the final output section
12956 size. That's a little tricky, and this way will only
12957 break if stubs added make the total size more than 2^25,
12958 ie. for the default stub_group_size, if stubs total more
12959 than 2097152 bytes, or nearly 75000 plt call stubs. */
6f20ed8a
AM
12960 group = bfd_alloc (curr->owner, sizeof (*group));
12961 if (group == NULL)
12962 return FALSE;
12963 group->link_sec = curr;
12964 group->stub_sec = NULL;
a4b6fadd 12965 group->needs_save_res = 0;
df136d64
AM
12966 group->lr_restore = 0;
12967 group->eh_size = 0;
12968 group->eh_base = 0;
a4b6fadd
AM
12969 group->next = htab->group;
12970 htab->group = group;
734b6cf9 12971 do
721956f4 12972 {
6f20ed8a 12973 prev = htab->sec_info[tail->id].u.list;
734b6cf9 12974 /* Set up this stub group. */
6f20ed8a 12975 htab->sec_info[tail->id].u.group = group;
721956f4 12976 }
734b6cf9
AM
12977 while (tail != curr && (tail = prev) != NULL);
12978
09f92717 12979 /* But wait, there's more! Input sections up to group_size
734b6cf9
AM
12980 bytes before the stub section can be handled by it too.
12981 Don't do this if we have a really large section after the
12982 stubs, as adding more stubs increases the chance that
12983 branches may not reach into the stub section. */
12984 if (!stubs_always_before_branch && !big_sec)
12985 {
12986 total = 0;
12987 while (prev != NULL
12988 && ((total += tail->output_offset - prev->output_offset)
6bee8834
AM
12989 < (ppc64_elf_section_data (prev) != NULL
12990 && ppc64_elf_section_data (prev)->has_14bit_branch
2cdcc330
AM
12991 ? (group_size = stub_group_size >> 10)
12992 : group_size))
6f20ed8a 12993 && htab->sec_info[prev->id].toc_off == curr_toc)
734b6cf9
AM
12994 {
12995 tail = prev;
6f20ed8a
AM
12996 prev = htab->sec_info[tail->id].u.list;
12997 htab->sec_info[tail->id].u.group = group;
734b6cf9
AM
12998 }
12999 }
13000 tail = prev;
721956f4
AM
13001 }
13002 }
6f20ed8a 13003 return TRUE;
721956f4
AM
13004}
13005
58d180e8
AM
13006static const unsigned char glink_eh_frame_cie[] =
13007{
13008 0, 0, 0, 16, /* length. */
13009 0, 0, 0, 0, /* id. */
13010 1, /* CIE version. */
13011 'z', 'R', 0, /* Augmentation string. */
13012 4, /* Code alignment. */
13013 0x78, /* Data alignment. */
13014 65, /* RA reg. */
13015 1, /* Augmentation size. */
13016 DW_EH_PE_pcrel | DW_EH_PE_sdata4, /* FDE encoding. */
2e0ce1c8 13017 DW_CFA_def_cfa, 1, 0 /* def_cfa: r1 offset 0. */
58d180e8
AM
13018};
13019
d969d15f
AM
13020/* Stripping output sections is normally done before dynamic section
13021 symbols have been allocated. This function is called later, and
13022 handles cases like htab->brlt which is mapped to its own output
13023 section. */
13024
13025static void
13026maybe_strip_output (struct bfd_link_info *info, asection *isec)
13027{
13028 if (isec->size == 0
13029 && isec->output_section->size == 0
53d8967a 13030 && !(isec->output_section->flags & SEC_KEEP)
d969d15f
AM
13031 && !bfd_section_removed_from_list (info->output_bfd,
13032 isec->output_section)
13033 && elf_section_data (isec->output_section)->dynindx == 0)
13034 {
13035 isec->output_section->flags |= SEC_EXCLUDE;
13036 bfd_section_list_remove (info->output_bfd, isec->output_section);
13037 info->output_bfd->section_count--;
13038 }
13039}
13040
721956f4
AM
13041/* Determine and set the size of the stub section for a final link.
13042
13043 The basic idea here is to examine all the relocations looking for
13044 PC-relative calls to a target that is unreachable with a "bl"
13045 instruction. */
13046
b34976b6 13047bfd_boolean
e7d1c40c 13048ppc64_elf_size_stubs (struct bfd_link_info *info)
721956f4
AM
13049{
13050 bfd_size_type stub_group_size;
b34976b6 13051 bfd_boolean stubs_always_before_branch;
721956f4
AM
13052 struct ppc_link_hash_table *htab = ppc_hash_table (info);
13053
4dfe6ac6
NC
13054 if (htab == NULL)
13055 return FALSE;
13056
0e1862bb 13057 if (htab->params->plt_thread_safe == -1 && !bfd_link_executable (info))
e7d1c40c 13058 htab->params->plt_thread_safe = 1;
b9e5796b 13059 if (!htab->opd_abi)
e7d1c40c
AM
13060 htab->params->plt_thread_safe = 0;
13061 else if (htab->params->plt_thread_safe == -1)
794e51c0 13062 {
e2458743 13063 static const char *const thread_starter[] =
794e51c0
AM
13064 {
13065 "pthread_create",
13066 /* libstdc++ */
13067 "_ZNSt6thread15_M_start_threadESt10shared_ptrINS_10_Impl_baseEE",
13068 /* librt */
13069 "aio_init", "aio_read", "aio_write", "aio_fsync", "lio_listio",
13070 "mq_notify", "create_timer",
13071 /* libanl */
13072 "getaddrinfo_a",
13073 /* libgomp */
2300b5a1 13074 "GOMP_parallel",
794e51c0 13075 "GOMP_parallel_start",
2300b5a1 13076 "GOMP_parallel_loop_static",
794e51c0 13077 "GOMP_parallel_loop_static_start",
2300b5a1 13078 "GOMP_parallel_loop_dynamic",
794e51c0 13079 "GOMP_parallel_loop_dynamic_start",
2300b5a1 13080 "GOMP_parallel_loop_guided",
794e51c0 13081 "GOMP_parallel_loop_guided_start",
2300b5a1 13082 "GOMP_parallel_loop_runtime",
794e51c0 13083 "GOMP_parallel_loop_runtime_start",
2300b5a1 13084 "GOMP_parallel_sections",
68ffbac6 13085 "GOMP_parallel_sections_start",
f9dffbf0
AM
13086 /* libgo */
13087 "__go_go",
794e51c0
AM
13088 };
13089 unsigned i;
13090
a4b6fadd 13091 for (i = 0; i < ARRAY_SIZE (thread_starter); i++)
794e51c0
AM
13092 {
13093 struct elf_link_hash_entry *h;
13094 h = elf_link_hash_lookup (&htab->elf, thread_starter[i],
13095 FALSE, FALSE, TRUE);
e7d1c40c
AM
13096 htab->params->plt_thread_safe = h != NULL && h->ref_regular;
13097 if (htab->params->plt_thread_safe)
794e51c0
AM
13098 break;
13099 }
13100 }
e7d1c40c
AM
13101 stubs_always_before_branch = htab->params->group_size < 0;
13102 if (htab->params->group_size < 0)
13103 stub_group_size = -htab->params->group_size;
721956f4 13104 else
e7d1c40c 13105 stub_group_size = htab->params->group_size;
721956f4 13106
6f20ed8a
AM
13107 if (!group_sections (info, stub_group_size, stubs_always_before_branch))
13108 return FALSE;
721956f4 13109
a804e476
AM
13110 htab->tga_group = NULL;
13111 if (!htab->params->no_tls_get_addr_regsave
13112 && htab->tga_desc_fd != NULL
13113 && (htab->tga_desc_fd->elf.root.type == bfd_link_hash_undefined
13114 || htab->tga_desc_fd->elf.root.type == bfd_link_hash_undefweak)
13115 && htab->tls_get_addr_fd != NULL
13116 && is_static_defined (&htab->tls_get_addr_fd->elf))
13117 {
13118 asection *sym_sec, *code_sec, *stub_sec;
13119 bfd_vma sym_value;
13120 struct _opd_sec_data *opd;
13121
13122 sym_sec = htab->tls_get_addr_fd->elf.root.u.def.section;
13123 sym_value = defined_sym_val (&htab->tls_get_addr_fd->elf);
13124 code_sec = sym_sec;
13125 opd = get_opd_info (sym_sec);
13126 if (opd != NULL)
13127 opd_entry_value (sym_sec, sym_value, &code_sec, NULL, FALSE);
13128 htab->tga_group = htab->sec_info[code_sec->id].u.group;
13129 stub_sec = (*htab->params->add_stub_section) (".tga_desc.stub",
13130 htab->tga_group->link_sec);
13131 if (stub_sec == NULL)
13132 return FALSE;
13133 htab->tga_group->stub_sec = stub_sec;
13134
13135 htab->tga_desc_fd->elf.root.type = bfd_link_hash_defined;
13136 htab->tga_desc_fd->elf.root.u.def.section = stub_sec;
13137 htab->tga_desc_fd->elf.root.u.def.value = 0;
13138 htab->tga_desc_fd->elf.type = STT_FUNC;
13139 htab->tga_desc_fd->elf.def_regular = 1;
13140 htab->tga_desc_fd->elf.non_elf = 0;
13141 _bfd_elf_link_hash_hide_symbol (info, &htab->tga_desc_fd->elf, TRUE);
13142 }
13143
c9301e31
AM
13144#define STUB_SHRINK_ITER 20
13145 /* Loop until no stubs added. After iteration 20 of this loop we may
13146 exit on a stub section shrinking. This is to break out of a
13147 pathological case where adding stubs on one iteration decreases
13148 section gaps (perhaps due to alignment), which then requires
13149 fewer or smaller stubs on the next iteration. */
13150
721956f4
AM
13151 while (1)
13152 {
13153 bfd *input_bfd;
13154 unsigned int bfd_indx;
a4b6fadd 13155 struct map_stub *group;
721956f4
AM
13156
13157 htab->stub_iteration += 1;
721956f4
AM
13158
13159 for (input_bfd = info->input_bfds, bfd_indx = 0;
13160 input_bfd != NULL;
c72f2fb2 13161 input_bfd = input_bfd->link.next, bfd_indx++)
721956f4
AM
13162 {
13163 Elf_Internal_Shdr *symtab_hdr;
13164 asection *section;
6cdc0ccc 13165 Elf_Internal_Sym *local_syms = NULL;
721956f4 13166
0c8d6e5c 13167 if (!is_ppc64_elf (input_bfd))
67f93c31
AM
13168 continue;
13169
721956f4 13170 /* We'll need the symbol table in a second. */
0ffa91dd 13171 symtab_hdr = &elf_symtab_hdr (input_bfd);
721956f4
AM
13172 if (symtab_hdr->sh_info == 0)
13173 continue;
13174
721956f4
AM
13175 /* Walk over each section attached to the input bfd. */
13176 for (section = input_bfd->sections;
13177 section != NULL;
13178 section = section->next)
13179 {
721956f4 13180 Elf_Internal_Rela *internal_relocs, *irelaend, *irela;
721956f4
AM
13181
13182 /* If there aren't any relocs, then there's nothing more
13183 to do. */
13184 if ((section->flags & SEC_RELOC) == 0
12c0f757
AM
13185 || (section->flags & SEC_ALLOC) == 0
13186 || (section->flags & SEC_LOAD) == 0
13187 || (section->flags & SEC_CODE) == 0
721956f4
AM
13188 || section->reloc_count == 0)
13189 continue;
13190
13191 /* If this section is a link-once section that will be
13192 discarded, then don't create any stubs. */
13193 if (section->output_section == NULL
927be08e 13194 || section->output_section->owner != info->output_bfd)
721956f4
AM
13195 continue;
13196
1e2f5b6e
AM
13197 /* Get the relocs. */
13198 internal_relocs
4ce794b7 13199 = _bfd_elf_link_read_relocs (input_bfd, section, NULL, NULL,
45d6a902 13200 info->keep_memory);
721956f4 13201 if (internal_relocs == NULL)
1e2f5b6e 13202 goto error_ret_free_local;
721956f4
AM
13203
13204 /* Now examine each relocation. */
13205 irela = internal_relocs;
13206 irelaend = irela + section->reloc_count;
13207 for (; irela < irelaend; irela++)
13208 {
4ce794b7
AM
13209 enum elf_ppc64_reloc_type r_type;
13210 unsigned int r_indx;
721956f4
AM
13211 enum ppc_stub_type stub_type;
13212 struct ppc_stub_hash_entry *stub_entry;
8387904d 13213 asection *sym_sec, *code_sec;
e054468f 13214 bfd_vma sym_value, code_value;
721956f4 13215 bfd_vma destination;
6911b7dc 13216 unsigned long local_off;
8843416a 13217 bfd_boolean ok_dest;
721956f4 13218 struct ppc_link_hash_entry *hash;
8387904d 13219 struct ppc_link_hash_entry *fdh;
411e1bfb
AM
13220 struct elf_link_hash_entry *h;
13221 Elf_Internal_Sym *sym;
721956f4
AM
13222 char *stub_name;
13223 const asection *id_sec;
74f0fb50 13224 struct _opd_sec_data *opd;
e054468f 13225 struct plt_entry *plt_ent;
721956f4
AM
13226
13227 r_type = ELF64_R_TYPE (irela->r_info);
13228 r_indx = ELF64_R_SYM (irela->r_info);
13229
4ce794b7 13230 if (r_type >= R_PPC64_max)
721956f4
AM
13231 {
13232 bfd_set_error (bfd_error_bad_value);
6cdc0ccc 13233 goto error_ret_free_internal;
721956f4
AM
13234 }
13235
13236 /* Only look for stubs on branch instructions. */
4ce794b7 13237 if (r_type != R_PPC64_REL24
05d0e962 13238 && r_type != R_PPC64_REL24_NOTOC
4ce794b7
AM
13239 && r_type != R_PPC64_REL14
13240 && r_type != R_PPC64_REL14_BRTAKEN
13241 && r_type != R_PPC64_REL14_BRNTAKEN)
721956f4
AM
13242 continue;
13243
13244 /* Now determine the call target, its name, value,
13245 section. */
411e1bfb
AM
13246 if (!get_sym_h (&h, &sym, &sym_sec, NULL, &local_syms,
13247 r_indx, input_bfd))
13248 goto error_ret_free_internal;
ed7007c1 13249 hash = ppc_elf_hash_entry (h);
411e1bfb 13250
8843416a 13251 ok_dest = FALSE;
8387904d 13252 fdh = NULL;
7fe2b9a6 13253 sym_value = 0;
411e1bfb 13254 if (hash == NULL)
721956f4 13255 {
411e1bfb 13256 sym_value = sym->st_value;
c27b8c2a
AM
13257 if (sym_sec != NULL
13258 && sym_sec->output_section != NULL)
13259 ok_dest = TRUE;
721956f4 13260 }
7fe2b9a6
AM
13261 else if (hash->elf.root.type == bfd_link_hash_defined
13262 || hash->elf.root.type == bfd_link_hash_defweak)
13263 {
13264 sym_value = hash->elf.root.u.def.value;
13265 if (sym_sec->output_section != NULL)
13266 ok_dest = TRUE;
13267 }
13268 else if (hash->elf.root.type == bfd_link_hash_undefweak
13269 || hash->elf.root.type == bfd_link_hash_undefined)
721956f4 13270 {
99877b66 13271 /* Recognise an old ABI func code entry sym, and
7fe2b9a6
AM
13272 use the func descriptor sym instead if it is
13273 defined. */
ceb1f1ef 13274 if (hash->elf.root.root.string[0] == '.'
8c5b4e52 13275 && hash->oh != NULL)
8387904d 13276 {
8c5b4e52 13277 fdh = ppc_follow_link (hash->oh);
8387904d
AM
13278 if (fdh->elf.root.type == bfd_link_hash_defined
13279 || fdh->elf.root.type == bfd_link_hash_defweak)
13280 {
13281 sym_sec = fdh->elf.root.u.def.section;
13282 sym_value = fdh->elf.root.u.def.value;
13283 if (sym_sec->output_section != NULL)
13284 ok_dest = TRUE;
13285 }
99877b66
AM
13286 else
13287 fdh = NULL;
8387904d 13288 }
7fe2b9a6
AM
13289 }
13290 else
13291 {
13292 bfd_set_error (bfd_error_bad_value);
13293 goto error_ret_free_internal;
721956f4
AM
13294 }
13295
8843416a 13296 destination = 0;
6911b7dc 13297 local_off = 0;
8843416a
AM
13298 if (ok_dest)
13299 {
13300 sym_value += irela->r_addend;
13301 destination = (sym_value
13302 + sym_sec->output_offset
13303 + sym_sec->output_section->vma);
6911b7dc
AM
13304 local_off = PPC64_LOCAL_ENTRY_OFFSET (hash
13305 ? hash->elf.other
13306 : sym->st_other);
8843416a
AM
13307 }
13308
8387904d 13309 code_sec = sym_sec;
e054468f 13310 code_value = sym_value;
74f0fb50
AM
13311 opd = get_opd_info (sym_sec);
13312 if (opd != NULL)
8387904d
AM
13313 {
13314 bfd_vma dest;
13315
74f0fb50 13316 if (hash == NULL && opd->adjust != NULL)
8387904d 13317 {
51aecdc5 13318 long adjust = opd->adjust[OPD_NDX (sym_value)];
8387904d
AM
13319 if (adjust == -1)
13320 continue;
e054468f 13321 code_value += adjust;
8387904d
AM
13322 sym_value += adjust;
13323 }
13324 dest = opd_entry_value (sym_sec, sym_value,
aef36ac1 13325 &code_sec, &code_value, FALSE);
8387904d
AM
13326 if (dest != (bfd_vma) -1)
13327 {
13328 destination = dest;
13329 if (fdh != NULL)
13330 {
13331 /* Fixup old ABI sym to point at code
13332 entry. */
99877b66 13333 hash->elf.root.type = bfd_link_hash_defweak;
8387904d 13334 hash->elf.root.u.def.section = code_sec;
e054468f 13335 hash->elf.root.u.def.value = code_value;
8387904d
AM
13336 }
13337 }
13338 }
13339
721956f4 13340 /* Determine what (if any) linker stub is needed. */
e054468f 13341 plt_ent = NULL;
721956f4 13342 stub_type = ppc_type_of_stub (section, irela, &hash,
6911b7dc
AM
13343 &plt_ent, destination,
13344 local_off);
ad8e1ba5 13345
05d0e962
AM
13346 if (r_type == R_PPC64_REL24_NOTOC)
13347 {
13348 if (stub_type == ppc_stub_plt_call)
13349 stub_type = ppc_stub_plt_call_notoc;
13350 else if (stub_type == ppc_stub_long_branch
13351 || (code_sec != NULL
13352 && code_sec->output_section != NULL
13353 && (((hash ? hash->elf.other : sym->st_other)
13354 & STO_PPC64_LOCAL_MASK)
4a4e7361 13355 > 1 << STO_PPC64_LOCAL_BIT)))
05d0e962
AM
13356 stub_type = ppc_stub_long_branch_notoc;
13357 }
13358 else if (stub_type != ppc_stub_plt_call)
ad8e1ba5
AM
13359 {
13360 /* Check whether we need a TOC adjusting stub.
13361 Since the linker pastes together pieces from
13362 different object files when creating the
13363 _init and _fini functions, it may be that a
13364 call to what looks like a local sym is in
13365 fact a call needing a TOC adjustment. */
33cb30a1
AM
13366 if ((code_sec != NULL
13367 && code_sec->output_section != NULL
13368 && (htab->sec_info[code_sec->id].toc_off
13369 != htab->sec_info[section->id].toc_off)
13370 && (code_sec->has_toc_reloc
13371 || code_sec->makes_toc_func_call))
13372 || (((hash ? hash->elf.other : sym->st_other)
13373 & STO_PPC64_LOCAL_MASK)
13374 == 1 << STO_PPC64_LOCAL_BIT))
ad8e1ba5
AM
13375 stub_type = ppc_stub_long_branch_r2off;
13376 }
13377
721956f4
AM
13378 if (stub_type == ppc_stub_none)
13379 continue;
13380
411e1bfb
AM
13381 /* __tls_get_addr calls might be eliminated. */
13382 if (stub_type != ppc_stub_plt_call
05d0e962 13383 && stub_type != ppc_stub_plt_call_notoc
411e1bfb 13384 && hash != NULL
ed7007c1 13385 && is_tls_get_addr (&hash->elf, htab)
411e1bfb
AM
13386 && section->has_tls_reloc
13387 && irela != internal_relocs)
13388 {
13389 /* Get tls info. */
f961d9dd 13390 unsigned char *tls_mask;
411e1bfb 13391
3a71aa26 13392 if (!get_tls_mask (&tls_mask, NULL, NULL, &local_syms,
411e1bfb
AM
13393 irela - 1, input_bfd))
13394 goto error_ret_free_internal;
abc489c6
AM
13395 if ((*tls_mask & TLS_TLS) != 0
13396 && (*tls_mask & (TLS_GD | TLS_LD)) == 0)
411e1bfb
AM
13397 continue;
13398 }
13399
f378ab09 13400 if (stub_type == ppc_stub_plt_call)
794e51c0 13401 {
6e1816be
AM
13402 if (!htab->opd_abi
13403 && htab->params->plt_localentry0 != 0
13404 && is_elfv2_localentry0 (&hash->elf))
13405 htab->has_plt_localentry0 = 1;
13406 else if (irela + 1 < irelaend
13407 && irela[1].r_offset == irela->r_offset + 4
13408 && (ELF64_R_TYPE (irela[1].r_info)
13409 == R_PPC64_TOCSAVE))
f378ab09
AM
13410 {
13411 if (!tocsave_find (htab, INSERT,
13412 &local_syms, irela + 1, input_bfd))
13413 goto error_ret_free_internal;
13414 }
f378ab09
AM
13415 else
13416 stub_type = ppc_stub_plt_call_r2save;
794e51c0 13417 }
3b421ab3 13418
721956f4 13419 /* Support for grouping stub sections. */
6f20ed8a 13420 id_sec = htab->sec_info[section->id].u.group->link_sec;
721956f4
AM
13421
13422 /* Get the name of this stub. */
13423 stub_name = ppc_stub_name (id_sec, sym_sec, hash, irela);
13424 if (!stub_name)
13425 goto error_ret_free_internal;
13426
13427 stub_entry = ppc_stub_hash_lookup (&htab->stub_hash_table,
b34976b6 13428 stub_name, FALSE, FALSE);
721956f4
AM
13429 if (stub_entry != NULL)
13430 {
05d0e962
AM
13431 enum ppc_stub_type old_type;
13432 /* A stub has already been created, but it may
13433 not be the required type. We shouldn't be
13434 transitioning from plt_call to long_branch
13435 stubs or vice versa, but we might be
13436 upgrading from plt_call to plt_call_r2save or
13437 from long_branch to long_branch_r2off. */
721956f4 13438 free (stub_name);
05d0e962
AM
13439 old_type = stub_entry->stub_type;
13440 switch (old_type)
13441 {
13442 default:
13443 abort ();
13444
13445 case ppc_stub_save_res:
13446 continue;
13447
13448 case ppc_stub_plt_call:
13449 case ppc_stub_plt_call_r2save:
13450 case ppc_stub_plt_call_notoc:
13451 case ppc_stub_plt_call_both:
13452 if (stub_type == ppc_stub_plt_call)
13453 continue;
13454 else if (stub_type == ppc_stub_plt_call_r2save)
13455 {
13456 if (old_type == ppc_stub_plt_call_notoc)
13457 stub_type = ppc_stub_plt_call_both;
13458 }
13459 else if (stub_type == ppc_stub_plt_call_notoc)
13460 {
13461 if (old_type == ppc_stub_plt_call_r2save)
13462 stub_type = ppc_stub_plt_call_both;
13463 }
13464 else
13465 abort ();
13466 break;
13467
13468 case ppc_stub_plt_branch:
13469 case ppc_stub_plt_branch_r2off:
13470 case ppc_stub_plt_branch_notoc:
13471 case ppc_stub_plt_branch_both:
13472 old_type += (ppc_stub_long_branch
13473 - ppc_stub_plt_branch);
13474 /* Fall through. */
13475 case ppc_stub_long_branch:
13476 case ppc_stub_long_branch_r2off:
13477 case ppc_stub_long_branch_notoc:
13478 case ppc_stub_long_branch_both:
13479 if (stub_type == ppc_stub_long_branch)
13480 continue;
13481 else if (stub_type == ppc_stub_long_branch_r2off)
13482 {
13483 if (old_type == ppc_stub_long_branch_notoc)
13484 stub_type = ppc_stub_long_branch_both;
13485 }
13486 else if (stub_type == ppc_stub_long_branch_notoc)
13487 {
13488 if (old_type == ppc_stub_long_branch_r2off)
13489 stub_type = ppc_stub_long_branch_both;
13490 }
13491 else
13492 abort ();
13493 break;
13494 }
13495 if (old_type < stub_type)
794e51c0 13496 stub_entry->stub_type = stub_type;
721956f4
AM
13497 continue;
13498 }
13499
25f53a85 13500 stub_entry = ppc_add_stub (stub_name, section, info);
721956f4
AM
13501 if (stub_entry == NULL)
13502 {
13503 free (stub_name);
6cdc0ccc
AM
13504 error_ret_free_internal:
13505 if (elf_section_data (section)->relocs == NULL)
13506 free (internal_relocs);
13507 error_ret_free_local:
13508 if (local_syms != NULL
13509 && (symtab_hdr->contents
13510 != (unsigned char *) local_syms))
13511 free (local_syms);
b34976b6 13512 return FALSE;
721956f4
AM
13513 }
13514
ad8e1ba5 13515 stub_entry->stub_type = stub_type;
05d0e962
AM
13516 if (stub_type >= ppc_stub_plt_call
13517 && stub_type <= ppc_stub_plt_call_both)
e054468f 13518 {
05d0e962
AM
13519 stub_entry->target_value = sym_value;
13520 stub_entry->target_section = sym_sec;
e054468f
AM
13521 }
13522 else
13523 {
05d0e962
AM
13524 stub_entry->target_value = code_value;
13525 stub_entry->target_section = code_sec;
e054468f 13526 }
721956f4 13527 stub_entry->h = hash;
e054468f 13528 stub_entry->plt_ent = plt_ent;
2d7ad24e
AM
13529 stub_entry->symtype
13530 = hash ? hash->elf.type : ELF_ST_TYPE (sym->st_info);
6911b7dc 13531 stub_entry->other = hash ? hash->elf.other : sym->st_other;
ee75fd95 13532
3d58e1fc
AM
13533 if (hash != NULL
13534 && (hash->elf.root.type == bfd_link_hash_defined
13535 || hash->elf.root.type == bfd_link_hash_defweak))
ee75fd95 13536 htab->stub_globals += 1;
721956f4
AM
13537 }
13538
13539 /* We're done with the internal relocs, free them. */
6cdc0ccc 13540 if (elf_section_data (section)->relocs != internal_relocs)
1e2f5b6e 13541 free (internal_relocs);
721956f4 13542 }
6cdc0ccc
AM
13543
13544 if (local_syms != NULL
13545 && symtab_hdr->contents != (unsigned char *) local_syms)
13546 {
13547 if (!info->keep_memory)
13548 free (local_syms);
13549 else
13550 symtab_hdr->contents = (unsigned char *) local_syms;
13551 }
721956f4
AM
13552 }
13553
5c3dead3 13554 /* We may have added some stubs. Find out the new size of the
721956f4 13555 stub sections. */
d4aaa2a0 13556 for (group = htab->group; group != NULL; group = group->next)
df136d64
AM
13557 {
13558 group->lr_restore = 0;
13559 group->eh_size = 0;
13560 if (group->stub_sec != NULL)
13561 {
13562 asection *stub_sec = group->stub_sec;
13563
13564 if (htab->stub_iteration <= STUB_SHRINK_ITER
13565 || stub_sec->rawsize < stub_sec->size)
13566 /* Past STUB_SHRINK_ITER, rawsize is the max size seen. */
13567 stub_sec->rawsize = stub_sec->size;
13568 stub_sec->size = 0;
13569 stub_sec->reloc_count = 0;
13570 stub_sec->flags &= ~SEC_RELOC;
13571 }
13572 }
a804e476
AM
13573 if (htab->tga_group != NULL)
13574 {
13575 /* See emit_tga_desc and emit_tga_desc_eh_frame. */
13576 htab->tga_group->eh_size
13577 = 1 + 2 + (htab->opd_abi != 0) + 3 + 8 * 2 + 3 + 8 + 3;
13578 htab->tga_group->lr_restore = 23 * 4;
13579 htab->tga_group->stub_sec->size = 24 * 4;
13580 }
eea6121a 13581
ba21f564
AM
13582 if (htab->stub_iteration <= STUB_SHRINK_ITER
13583 || htab->brlt->rawsize < htab->brlt->size)
13584 htab->brlt->rawsize = htab->brlt->size;
eea6121a 13585 htab->brlt->size = 0;
84f5d08e
AM
13586 htab->brlt->reloc_count = 0;
13587 htab->brlt->flags &= ~SEC_RELOC;
ee75fd95 13588 if (htab->relbrlt != NULL)
eea6121a 13589 htab->relbrlt->size = 0;
721956f4 13590
63bc6f6c 13591 bfd_hash_traverse (&htab->stub_hash_table, ppc_size_one_stub, info);
721956f4 13592
a4b6fadd
AM
13593 for (group = htab->group; group != NULL; group = group->next)
13594 if (group->needs_save_res)
13595 group->stub_sec->size += htab->sfpr->size;
13596
176a0d42
AM
13597 if (info->emitrelocations
13598 && htab->glink != NULL && htab->glink->size != 0)
13599 {
13600 htab->glink->reloc_count = 1;
13601 htab->glink->flags |= SEC_RELOC;
13602 }
13603
58d180e8
AM
13604 if (htab->glink_eh_frame != NULL
13605 && !bfd_is_abs_section (htab->glink_eh_frame->output_section)
2d0d44d5 13606 && htab->glink_eh_frame->output_section->size > 8)
58d180e8 13607 {
2e0ce1c8 13608 size_t size = 0, align = 4;
58d180e8 13609
d4aaa2a0 13610 for (group = htab->group; group != NULL; group = group->next)
df136d64
AM
13611 if (group->eh_size != 0)
13612 size += (group->eh_size + 17 + align - 1) & -align;
58d180e8 13613 if (htab->glink != NULL && htab->glink->size != 0)
2e0ce1c8 13614 size += (24 + align - 1) & -align;
58d180e8 13615 if (size != 0)
2e0ce1c8
AM
13616 size += (sizeof (glink_eh_frame_cie) + align - 1) & -align;
13617 align = 1ul << htab->glink_eh_frame->output_section->alignment_power;
13618 size = (size + align - 1) & -align;
58d180e8
AM
13619 htab->glink_eh_frame->rawsize = htab->glink_eh_frame->size;
13620 htab->glink_eh_frame->size = size;
13621 }
13622
e7d1c40c 13623 if (htab->params->plt_stub_align != 0)
d4aaa2a0
AM
13624 for (group = htab->group; group != NULL; group = group->next)
13625 if (group->stub_sec != NULL)
691d2e9a
AM
13626 {
13627 int align = abs (htab->params->plt_stub_align);
13628 group->stub_sec->size
13629 = (group->stub_sec->size + (1 << align) - 1) & -(1 << align);
13630 }
d4aaa2a0
AM
13631
13632 for (group = htab->group; group != NULL; group = group->next)
13633 if (group->stub_sec != NULL
13634 && group->stub_sec->rawsize != group->stub_sec->size
c9301e31 13635 && (htab->stub_iteration <= STUB_SHRINK_ITER
d4aaa2a0 13636 || group->stub_sec->rawsize < group->stub_sec->size))
5c3dead3
AM
13637 break;
13638
d4aaa2a0 13639 if (group == NULL
ba21f564
AM
13640 && (htab->brlt->rawsize == htab->brlt->size
13641 || (htab->stub_iteration > STUB_SHRINK_ITER
13642 && htab->brlt->rawsize > htab->brlt->size))
58d180e8 13643 && (htab->glink_eh_frame == NULL
a804e476
AM
13644 || htab->glink_eh_frame->rawsize == htab->glink_eh_frame->size)
13645 && (htab->tga_group == NULL
13646 || htab->stub_iteration > 1))
5c3dead3
AM
13647 break;
13648
721956f4 13649 /* Ask the linker to do its stuff. */
e7d1c40c 13650 (*htab->params->layout_sections_again) ();
721956f4
AM
13651 }
13652
da44f4e5
AM
13653 if (htab->glink_eh_frame != NULL
13654 && htab->glink_eh_frame->size != 0)
13655 {
13656 bfd_vma val;
13657 bfd_byte *p, *last_fde;
13658 size_t last_fde_len, size, align, pad;
d4aaa2a0 13659 struct map_stub *group;
da44f4e5 13660
df136d64
AM
13661 /* It is necessary to at least have a rough outline of the
13662 linker generated CIEs and FDEs written before
13663 bfd_elf_discard_info is run, in order for these FDEs to be
13664 indexed in .eh_frame_hdr. */
da44f4e5
AM
13665 p = bfd_zalloc (htab->glink_eh_frame->owner, htab->glink_eh_frame->size);
13666 if (p == NULL)
13667 return FALSE;
13668 htab->glink_eh_frame->contents = p;
13669 last_fde = p;
2e0ce1c8 13670 align = 4;
da44f4e5
AM
13671
13672 memcpy (p, glink_eh_frame_cie, sizeof (glink_eh_frame_cie));
13673 /* CIE length (rewrite in case little-endian). */
2e0ce1c8 13674 last_fde_len = ((sizeof (glink_eh_frame_cie) + align - 1) & -align) - 4;
da44f4e5 13675 bfd_put_32 (htab->elf.dynobj, last_fde_len, p);
2e0ce1c8 13676 p += last_fde_len + 4;
da44f4e5 13677
d4aaa2a0 13678 for (group = htab->group; group != NULL; group = group->next)
df136d64 13679 if (group->eh_size != 0)
da44f4e5 13680 {
df136d64 13681 group->eh_base = p - htab->glink_eh_frame->contents;
da44f4e5 13682 last_fde = p;
df136d64 13683 last_fde_len = ((group->eh_size + 17 + align - 1) & -align) - 4;
da44f4e5 13684 /* FDE length. */
2e0ce1c8 13685 bfd_put_32 (htab->elf.dynobj, last_fde_len, p);
da44f4e5
AM
13686 p += 4;
13687 /* CIE pointer. */
13688 val = p - htab->glink_eh_frame->contents;
13689 bfd_put_32 (htab->elf.dynobj, val, p);
13690 p += 4;
13691 /* Offset to stub section, written later. */
13692 p += 4;
13693 /* stub section size. */
d4aaa2a0 13694 bfd_put_32 (htab->elf.dynobj, group->stub_sec->size, p);
da44f4e5
AM
13695 p += 4;
13696 /* Augmentation. */
13697 p += 1;
df136d64
AM
13698 /* Make sure we don't have all nops. This is enough for
13699 elf-eh-frame.c to detect the last non-nop opcode. */
13700 p[group->eh_size - 1] = DW_CFA_advance_loc + 1;
d4aaa2a0 13701 p = last_fde + last_fde_len + 4;
da44f4e5
AM
13702 }
13703 if (htab->glink != NULL && htab->glink->size != 0)
13704 {
13705 last_fde = p;
2e0ce1c8 13706 last_fde_len = ((24 + align - 1) & -align) - 4;
da44f4e5 13707 /* FDE length. */
2e0ce1c8 13708 bfd_put_32 (htab->elf.dynobj, last_fde_len, p);
da44f4e5
AM
13709 p += 4;
13710 /* CIE pointer. */
13711 val = p - htab->glink_eh_frame->contents;
13712 bfd_put_32 (htab->elf.dynobj, val, p);
13713 p += 4;
13714 /* Offset to .glink, written later. */
13715 p += 4;
13716 /* .glink size. */
13717 bfd_put_32 (htab->elf.dynobj, htab->glink->size - 8, p);
13718 p += 4;
13719 /* Augmentation. */
13720 p += 1;
13721
13722 *p++ = DW_CFA_advance_loc + 1;
13723 *p++ = DW_CFA_register;
13724 *p++ = 65;
9f08fa5c 13725 *p++ = htab->opd_abi ? 12 : 0;
15a3a14f 13726 *p++ = DW_CFA_advance_loc + (htab->opd_abi ? 5 : 7);
da44f4e5
AM
13727 *p++ = DW_CFA_restore_extended;
13728 *p++ = 65;
2e0ce1c8 13729 p += ((24 + align - 1) & -align) - 24;
da44f4e5
AM
13730 }
13731 /* Subsume any padding into the last FDE if user .eh_frame
13732 sections are aligned more than glink_eh_frame. Otherwise any
13733 zero padding will be seen as a terminator. */
2e0ce1c8 13734 align = 1ul << htab->glink_eh_frame->output_section->alignment_power;
da44f4e5 13735 size = p - htab->glink_eh_frame->contents;
2e0ce1c8 13736 pad = ((size + align - 1) & -align) - size;
da44f4e5
AM
13737 htab->glink_eh_frame->size = size + pad;
13738 bfd_put_32 (htab->elf.dynobj, last_fde_len + pad, last_fde);
13739 }
13740
d969d15f
AM
13741 maybe_strip_output (info, htab->brlt);
13742 if (htab->glink_eh_frame != NULL)
13743 maybe_strip_output (info, htab->glink_eh_frame);
721956f4 13744
b34976b6 13745 return TRUE;
721956f4
AM
13746}
13747
13748/* Called after we have determined section placement. If sections
805fc799 13749 move, we'll be called again. Provide a value for TOCstart. */
721956f4 13750
805fc799 13751bfd_vma
1c865ab2 13752ppc64_elf_set_toc (struct bfd_link_info *info, bfd *obfd)
721956f4 13753{
805fc799 13754 asection *s;
a27e685f 13755 bfd_vma TOCstart, adjust;
721956f4 13756
43417696
AM
13757 if (info != NULL)
13758 {
13759 struct elf_link_hash_entry *h;
13760 struct elf_link_hash_table *htab = elf_hash_table (info);
13761
13762 if (is_elf_hash_table (htab)
13763 && htab->hgot != NULL)
13764 h = htab->hgot;
13765 else
13766 {
13767 h = elf_link_hash_lookup (htab, ".TOC.", FALSE, FALSE, TRUE);
13768 if (is_elf_hash_table (htab))
13769 htab->hgot = h;
13770 }
13771 if (h != NULL
13772 && h->root.type == bfd_link_hash_defined
13773 && !h->root.linker_def
13774 && (!is_elf_hash_table (htab)
13775 || h->def_regular))
13776 {
ed7007c1 13777 TOCstart = defined_sym_val (h) - TOC_BASE_OFF;
43417696
AM
13778 _bfd_set_gp_value (obfd, TOCstart);
13779 return TOCstart;
13780 }
13781 }
13782
805fc799
AM
13783 /* The TOC consists of sections .got, .toc, .tocbss, .plt in that
13784 order. The TOC starts where the first of these sections starts. */
13785 s = bfd_get_section_by_name (obfd, ".got");
e054468f 13786 if (s == NULL || (s->flags & SEC_EXCLUDE) != 0)
805fc799 13787 s = bfd_get_section_by_name (obfd, ".toc");
e054468f 13788 if (s == NULL || (s->flags & SEC_EXCLUDE) != 0)
805fc799 13789 s = bfd_get_section_by_name (obfd, ".tocbss");
e054468f 13790 if (s == NULL || (s->flags & SEC_EXCLUDE) != 0)
805fc799 13791 s = bfd_get_section_by_name (obfd, ".plt");
e054468f 13792 if (s == NULL || (s->flags & SEC_EXCLUDE) != 0)
805fc799
AM
13793 {
13794 /* This may happen for
13795 o references to TOC base (SYM@toc / TOC[tc0]) without a
13796 .toc directive
13797 o bad linker script
13798 o --gc-sections and empty TOC sections
13799
13800 FIXME: Warn user? */
13801
13802 /* Look for a likely section. We probably won't even be
13803 using TOCstart. */
13804 for (s = obfd->sections; s != NULL; s = s->next)
e054468f
AM
13805 if ((s->flags & (SEC_ALLOC | SEC_SMALL_DATA | SEC_READONLY
13806 | SEC_EXCLUDE))
805fc799
AM
13807 == (SEC_ALLOC | SEC_SMALL_DATA))
13808 break;
721956f4 13809 if (s == NULL)
805fc799 13810 for (s = obfd->sections; s != NULL; s = s->next)
e054468f 13811 if ((s->flags & (SEC_ALLOC | SEC_SMALL_DATA | SEC_EXCLUDE))
805fc799
AM
13812 == (SEC_ALLOC | SEC_SMALL_DATA))
13813 break;
721956f4 13814 if (s == NULL)
805fc799 13815 for (s = obfd->sections; s != NULL; s = s->next)
e054468f
AM
13816 if ((s->flags & (SEC_ALLOC | SEC_READONLY | SEC_EXCLUDE))
13817 == SEC_ALLOC)
805fc799 13818 break;
721956f4 13819 if (s == NULL)
805fc799 13820 for (s = obfd->sections; s != NULL; s = s->next)
e054468f 13821 if ((s->flags & (SEC_ALLOC | SEC_EXCLUDE)) == SEC_ALLOC)
805fc799
AM
13822 break;
13823 }
721956f4 13824
805fc799
AM
13825 TOCstart = 0;
13826 if (s != NULL)
13827 TOCstart = s->output_section->vma + s->output_offset;
721956f4 13828
a27e685f
AM
13829 /* Force alignment. */
13830 adjust = TOCstart & (TOC_BASE_ALIGN - 1);
13831 TOCstart -= adjust;
1c865ab2
AM
13832 _bfd_set_gp_value (obfd, TOCstart);
13833
810d4e75 13834 if (info != NULL && s != NULL)
1c865ab2
AM
13835 {
13836 struct ppc_link_hash_table *htab = ppc_hash_table (info);
13837
810d4e75
AM
13838 if (htab != NULL)
13839 {
13840 if (htab->elf.hgot != NULL)
13841 {
a27e685f 13842 htab->elf.hgot->root.u.def.value = TOC_BASE_OFF - adjust;
810d4e75
AM
13843 htab->elf.hgot->root.u.def.section = s;
13844 }
13845 }
13846 else
1c865ab2 13847 {
810d4e75
AM
13848 struct bfd_link_hash_entry *bh = NULL;
13849 _bfd_generic_link_add_one_symbol (info, obfd, ".TOC.", BSF_GLOBAL,
a27e685f
AM
13850 s, TOC_BASE_OFF - adjust,
13851 NULL, FALSE, FALSE, &bh);
1c865ab2
AM
13852 }
13853 }
805fc799 13854 return TOCstart;
721956f4
AM
13855}
13856
a345bc8d 13857/* Called via elf_link_hash_traverse from ppc64_elf_build_stubs to
49c09209 13858 write out any global entry stubs, and PLT relocations. */
a345bc8d
AM
13859
13860static bfd_boolean
49c09209 13861build_global_entry_stubs_and_plt (struct elf_link_hash_entry *h, void *inf)
a345bc8d
AM
13862{
13863 struct bfd_link_info *info;
13864 struct ppc_link_hash_table *htab;
49c09209 13865 struct plt_entry *ent;
a345bc8d
AM
13866 asection *s;
13867
13868 if (h->root.type == bfd_link_hash_indirect)
13869 return TRUE;
13870
49c09209
AM
13871 info = inf;
13872 htab = ppc_hash_table (info);
13873 if (htab == NULL)
13874 return FALSE;
13875
13876 for (ent = h->plt.plist; ent != NULL; ent = ent->next)
13877 if (ent->plt.offset != (bfd_vma) -1)
13878 {
13879 /* This symbol has an entry in the procedure linkage
13880 table. Set it up. */
13881 Elf_Internal_Rela rela;
2d7ad24e 13882 asection *plt, *relplt;
49c09209
AM
13883 bfd_byte *loc;
13884
13885 if (!htab->elf.dynamic_sections_created
13886 || h->dynindx == -1)
13887 {
13888 if (!(h->def_regular
13889 && (h->root.type == bfd_link_hash_defined
13890 || h->root.type == bfd_link_hash_defweak)))
13891 continue;
2d7ad24e
AM
13892 if (h->type == STT_GNU_IFUNC)
13893 {
13894 plt = htab->elf.iplt;
13895 relplt = htab->elf.irelplt;
13896 htab->local_ifunc_resolver = 1;
13897 if (htab->opd_abi)
13898 rela.r_info = ELF64_R_INFO (0, R_PPC64_JMP_IREL);
13899 else
13900 rela.r_info = ELF64_R_INFO (0, R_PPC64_IRELATIVE);
13901 }
49c09209 13902 else
2d7ad24e
AM
13903 {
13904 plt = htab->pltlocal;
13905 if (bfd_link_pic (info))
13906 {
13907 relplt = htab->relpltlocal;
13908 if (htab->opd_abi)
13909 rela.r_info = ELF64_R_INFO (0, R_PPC64_JMP_SLOT);
13910 else
13911 rela.r_info = ELF64_R_INFO (0, R_PPC64_RELATIVE);
13912 }
13913 else
13914 relplt = NULL;
13915 }
ed7007c1 13916 rela.r_addend = defined_sym_val (h) + ent->addend;
2d7ad24e
AM
13917
13918 if (relplt == NULL)
13919 {
13920 loc = plt->contents + ent->plt.offset;
13921 bfd_put_64 (info->output_bfd, rela.r_addend, loc);
13922 if (htab->opd_abi)
13923 {
13924 bfd_vma toc = elf_gp (info->output_bfd);
13925 toc += htab->sec_info[h->root.u.def.section->id].toc_off;
13926 bfd_put_64 (info->output_bfd, toc, loc + 8);
13927 }
13928 }
13929 else
13930 {
13931 rela.r_offset = (plt->output_section->vma
13932 + plt->output_offset
13933 + ent->plt.offset);
13934 loc = relplt->contents + (relplt->reloc_count++
13935 * sizeof (Elf64_External_Rela));
13936 bfd_elf64_swap_reloca_out (info->output_bfd, &rela, loc);
13937 }
49c09209
AM
13938 }
13939 else
13940 {
13941 rela.r_offset = (htab->elf.splt->output_section->vma
13942 + htab->elf.splt->output_offset
13943 + ent->plt.offset);
13944 rela.r_info = ELF64_R_INFO (h->dynindx, R_PPC64_JMP_SLOT);
13945 rela.r_addend = ent->addend;
13946 loc = (htab->elf.srelplt->contents
13947 + ((ent->plt.offset - PLT_INITIAL_ENTRY_SIZE (htab))
13948 / PLT_ENTRY_SIZE (htab) * sizeof (Elf64_External_Rela)));
13949 if (h->type == STT_GNU_IFUNC && is_static_defined (h))
13950 htab->maybe_local_ifunc_resolver = 1;
2d7ad24e 13951 bfd_elf64_swap_reloca_out (info->output_bfd, &rela, loc);
49c09209 13952 }
49c09209
AM
13953 }
13954
a345bc8d
AM
13955 if (!h->pointer_equality_needed)
13956 return TRUE;
13957
13958 if (h->def_regular)
13959 return TRUE;
13960
9e390558 13961 s = htab->global_entry;
49c09209
AM
13962 if (s == NULL || s->size == 0)
13963 return TRUE;
13964
13965 for (ent = h->plt.plist; ent != NULL; ent = ent->next)
13966 if (ent->plt.offset != (bfd_vma) -1
13967 && ent->addend == 0)
a345bc8d
AM
13968 {
13969 bfd_byte *p;
13970 asection *plt;
13971 bfd_vma off;
13972
a345bc8d 13973 p = s->contents + h->root.u.def.value;
33e44f2e 13974 plt = htab->elf.splt;
a345bc8d
AM
13975 if (!htab->elf.dynamic_sections_created
13976 || h->dynindx == -1)
2d7ad24e
AM
13977 {
13978 if (h->type == STT_GNU_IFUNC)
13979 plt = htab->elf.iplt;
13980 else
13981 plt = htab->pltlocal;
13982 }
49c09209 13983 off = ent->plt.offset + plt->output_offset + plt->output_section->vma;
a345bc8d
AM
13984 off -= h->root.u.def.value + s->output_offset + s->output_section->vma;
13985
13986 if (off + 0x80008000 > 0xffffffff || (off & 3) != 0)
13987 {
13988 info->callbacks->einfo
c1c8c1ef 13989 (_("%P: linkage table error against `%pT'\n"),
a345bc8d
AM
13990 h->root.root.string);
13991 bfd_set_error (bfd_error_bad_value);
13992 htab->stub_error = TRUE;
13993 }
13994
7341d5e2
AM
13995 htab->stub_count[ppc_stub_global_entry - 1] += 1;
13996 if (htab->params->emit_stub_syms)
13997 {
13998 size_t len = strlen (h->root.root.string);
13999 char *name = bfd_malloc (sizeof "12345678.global_entry." + len);
14000
14001 if (name == NULL)
14002 return FALSE;
14003
14004 sprintf (name, "%08x.global_entry.%s", s->id, h->root.root.string);
14005 h = elf_link_hash_lookup (&htab->elf, name, TRUE, FALSE, FALSE);
14006 if (h == NULL)
14007 return FALSE;
14008 if (h->root.type == bfd_link_hash_new)
14009 {
14010 h->root.type = bfd_link_hash_defined;
14011 h->root.u.def.section = s;
14012 h->root.u.def.value = p - s->contents;
14013 h->ref_regular = 1;
14014 h->def_regular = 1;
14015 h->ref_regular_nonweak = 1;
14016 h->forced_local = 1;
14017 h->non_elf = 0;
2ec55de3 14018 h->root.linker_def = 1;
7341d5e2
AM
14019 }
14020 }
14021
a345bc8d
AM
14022 if (PPC_HA (off) != 0)
14023 {
14024 bfd_put_32 (s->owner, ADDIS_R12_R12 | PPC_HA (off), p);
14025 p += 4;
14026 }
14027 bfd_put_32 (s->owner, LD_R12_0R12 | PPC_LO (off), p);
14028 p += 4;
14029 bfd_put_32 (s->owner, MTCTR_R12, p);
14030 p += 4;
407aa07c 14031 bfd_put_32 (s->owner, BCTR, p);
a345bc8d
AM
14032 break;
14033 }
14034 return TRUE;
14035}
14036
49c09209
AM
14037/* Write PLT relocs for locals. */
14038
14039static bfd_boolean
14040write_plt_relocs_for_local_syms (struct bfd_link_info *info)
14041{
14042 struct ppc_link_hash_table *htab = ppc_hash_table (info);
14043 bfd *ibfd;
14044
14045 for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
14046 {
14047 struct got_entry **lgot_ents, **end_lgot_ents;
14048 struct plt_entry **local_plt, **lplt, **end_local_plt;
14049 Elf_Internal_Shdr *symtab_hdr;
14050 bfd_size_type locsymcount;
14051 Elf_Internal_Sym *local_syms = NULL;
14052 struct plt_entry *ent;
14053
14054 if (!is_ppc64_elf (ibfd))
14055 continue;
14056
14057 lgot_ents = elf_local_got_ents (ibfd);
14058 if (!lgot_ents)
14059 continue;
14060
14061 symtab_hdr = &elf_symtab_hdr (ibfd);
14062 locsymcount = symtab_hdr->sh_info;
14063 end_lgot_ents = lgot_ents + locsymcount;
14064 local_plt = (struct plt_entry **) end_lgot_ents;
14065 end_local_plt = local_plt + locsymcount;
14066 for (lplt = local_plt; lplt < end_local_plt; ++lplt)
14067 for (ent = *lplt; ent != NULL; ent = ent->next)
14068 if (ent->plt.offset != (bfd_vma) -1)
14069 {
14070 Elf_Internal_Sym *sym;
14071 asection *sym_sec;
14072 asection *plt, *relplt;
14073 bfd_byte *loc;
14074 bfd_vma val;
49c09209
AM
14075
14076 if (!get_sym_h (NULL, &sym, &sym_sec, NULL, &local_syms,
14077 lplt - local_plt, ibfd))
14078 {
14079 if (local_syms != NULL
14080 && symtab_hdr->contents != (unsigned char *) local_syms)
14081 free (local_syms);
14082 return FALSE;
14083 }
14084
14085 val = sym->st_value + ent->addend;
ba85c15d
AM
14086 if (ELF_ST_TYPE (sym->st_info) != STT_GNU_IFUNC)
14087 val += PPC64_LOCAL_ENTRY_OFFSET (sym->st_other);
49c09209
AM
14088 if (sym_sec != NULL && sym_sec->output_section != NULL)
14089 val += sym_sec->output_offset + sym_sec->output_section->vma;
14090
2d7ad24e
AM
14091 if (ELF_ST_TYPE (sym->st_info) == STT_GNU_IFUNC)
14092 {
14093 htab->local_ifunc_resolver = 1;
14094 plt = htab->elf.iplt;
14095 relplt = htab->elf.irelplt;
14096 }
14097 else
14098 {
14099 plt = htab->pltlocal;
14100 relplt = bfd_link_pic (info) ? htab->relpltlocal : NULL;
14101 }
49c09209 14102
2d7ad24e
AM
14103 if (relplt == NULL)
14104 {
14105 loc = plt->contents + ent->plt.offset;
14106 bfd_put_64 (info->output_bfd, val, loc);
14107 if (htab->opd_abi)
14108 {
14109 bfd_vma toc = elf_gp (ibfd);
14110 bfd_put_64 (info->output_bfd, toc, loc + 8);
14111 }
14112 }
49c09209 14113 else
2d7ad24e
AM
14114 {
14115 Elf_Internal_Rela rela;
14116 rela.r_offset = (ent->plt.offset
14117 + plt->output_offset
14118 + plt->output_section->vma);
14119 if (ELF_ST_TYPE (sym->st_info) == STT_GNU_IFUNC)
14120 {
14121 if (htab->opd_abi)
14122 rela.r_info = ELF64_R_INFO (0, R_PPC64_JMP_IREL);
14123 else
14124 rela.r_info = ELF64_R_INFO (0, R_PPC64_IRELATIVE);
14125 }
14126 else
14127 {
14128 if (htab->opd_abi)
14129 rela.r_info = ELF64_R_INFO (0, R_PPC64_JMP_SLOT);
14130 else
14131 rela.r_info = ELF64_R_INFO (0, R_PPC64_RELATIVE);
14132 }
14133 rela.r_addend = val;
14134 loc = relplt->contents + (relplt->reloc_count++
14135 * sizeof (Elf64_External_Rela));
14136 bfd_elf64_swap_reloca_out (info->output_bfd, &rela, loc);
14137 }
49c09209
AM
14138 }
14139
14140 if (local_syms != NULL
14141 && symtab_hdr->contents != (unsigned char *) local_syms)
14142 {
14143 if (!info->keep_memory)
14144 free (local_syms);
14145 else
14146 symtab_hdr->contents = (unsigned char *) local_syms;
14147 }
14148 }
14149 return TRUE;
14150}
14151
a804e476
AM
14152/* Emit the static wrapper function preserving registers around a
14153 __tls_get_addr_opt call. */
14154
14155static bfd_boolean
14156emit_tga_desc (struct ppc_link_hash_table *htab)
14157{
14158 asection *stub_sec = htab->tga_group->stub_sec;
14159 unsigned int cfa_updt = 11 * 4;
14160 bfd_byte *p;
14161 bfd_vma to, from, delta;
14162
14163 BFD_ASSERT (htab->tga_desc_fd->elf.root.type == bfd_link_hash_defined
14164 && htab->tga_desc_fd->elf.root.u.def.section == stub_sec
14165 && htab->tga_desc_fd->elf.root.u.def.value == 0);
14166 to = defined_sym_val (&htab->tls_get_addr_fd->elf);
14167 from = defined_sym_val (&htab->tga_desc_fd->elf) + cfa_updt;
14168 delta = to - from;
14169 if (delta + (1 << 25) >= 1 << 26)
14170 {
14171 _bfd_error_handler (_("__tls_get_addr call offset overflow"));
14172 htab->stub_error = TRUE;
14173 return FALSE;
14174 }
14175
14176 p = stub_sec->contents;
14177 p = tls_get_addr_prologue (htab->elf.dynobj, p, htab);
14178 bfd_put_32 (stub_sec->owner, B_DOT | 1 | (delta & 0x3fffffc), p);
14179 p += 4;
14180 p = tls_get_addr_epilogue (htab->elf.dynobj, p, htab);
14181 return stub_sec->size == (bfd_size_type) (p - stub_sec->contents);
14182}
14183
14184/* Emit eh_frame describing the static wrapper function. */
14185
14186static bfd_byte *
14187emit_tga_desc_eh_frame (struct ppc_link_hash_table *htab, bfd_byte *p)
14188{
14189 unsigned int cfa_updt = 11 * 4;
14190 unsigned int i;
14191
14192 *p++ = DW_CFA_advance_loc + cfa_updt / 4;
14193 *p++ = DW_CFA_def_cfa_offset;
14194 if (htab->opd_abi)
14195 {
14196 *p++ = 128;
14197 *p++ = 1;
14198 }
14199 else
14200 *p++ = 96;
14201 *p++ = DW_CFA_offset_extended_sf;
14202 *p++ = 65;
14203 *p++ = (-16 / 8) & 0x7f;
14204 for (i = 4; i < 12; i++)
14205 {
14206 *p++ = DW_CFA_offset + i;
14207 *p++ = (htab->opd_abi ? 13 : 12) - i;
14208 }
14209 *p++ = DW_CFA_advance_loc + 10;
14210 *p++ = DW_CFA_def_cfa_offset;
14211 *p++ = 0;
14212 for (i = 4; i < 12; i++)
14213 *p++ = DW_CFA_restore + i;
14214 *p++ = DW_CFA_advance_loc + 2;
14215 *p++ = DW_CFA_restore_extended;
14216 *p++ = 65;
14217 return p;
14218}
14219
721956f4
AM
14220/* Build all the stubs associated with the current output file.
14221 The stubs are kept in a hash table attached to the main linker
14222 hash table. This function is called via gldelf64ppc_finish. */
14223
b34976b6 14224bfd_boolean
e7d1c40c 14225ppc64_elf_build_stubs (struct bfd_link_info *info,
4ce794b7 14226 char **stats)
5d1634d7
AM
14227{
14228 struct ppc_link_hash_table *htab = ppc_hash_table (info);
a4b6fadd 14229 struct map_stub *group;
721956f4 14230 asection *stub_sec;
5d1634d7 14231 bfd_byte *p;
e717da7e 14232 int stub_sec_count = 0;
5d1634d7 14233
4dfe6ac6
NC
14234 if (htab == NULL)
14235 return FALSE;
14236
eea6121a 14237 /* Allocate memory to hold the linker stubs. */
d4aaa2a0 14238 for (group = htab->group; group != NULL; group = group->next)
df136d64
AM
14239 {
14240 group->eh_size = 0;
14241 group->lr_restore = 0;
14242 if ((stub_sec = group->stub_sec) != NULL
14243 && stub_sec->size != 0)
14244 {
14245 stub_sec->contents = bfd_zalloc (htab->params->stub_bfd,
14246 stub_sec->size);
14247 if (stub_sec->contents == NULL)
14248 return FALSE;
14249 stub_sec->size = 0;
14250 }
14251 }
5d1634d7 14252
23eb7e01 14253 if (htab->glink != NULL && htab->glink->size != 0)
5d1634d7 14254 {
9f951329 14255 unsigned int indx;
ad8e1ba5 14256 bfd_vma plt0;
9f951329 14257
721956f4 14258 /* Build the .glink plt call stub. */
e7d1c40c 14259 if (htab->params->emit_stub_syms)
97b639ba
AM
14260 {
14261 struct elf_link_hash_entry *h;
468392fb
AM
14262 h = elf_link_hash_lookup (&htab->elf, "__glink_PLTresolve",
14263 TRUE, FALSE, FALSE);
97b639ba
AM
14264 if (h == NULL)
14265 return FALSE;
14266 if (h->root.type == bfd_link_hash_new)
14267 {
14268 h->root.type = bfd_link_hash_defined;
14269 h->root.u.def.section = htab->glink;
ee4bf8d2 14270 h->root.u.def.value = 8;
f5385ebf
AM
14271 h->ref_regular = 1;
14272 h->def_regular = 1;
14273 h->ref_regular_nonweak = 1;
14274 h->forced_local = 1;
14275 h->non_elf = 0;
2ec55de3 14276 h->root.linker_def = 1;
97b639ba
AM
14277 }
14278 }
33e44f2e
AM
14279 plt0 = (htab->elf.splt->output_section->vma
14280 + htab->elf.splt->output_offset
14281 - 16);
176a0d42
AM
14282 if (info->emitrelocations)
14283 {
14284 Elf_Internal_Rela *r = get_relocs (htab->glink, 1);
14285 if (r == NULL)
14286 return FALSE;
14287 r->r_offset = (htab->glink->output_offset
14288 + htab->glink->output_section->vma);
14289 r->r_info = ELF64_R_INFO (0, R_PPC64_REL64);
14290 r->r_addend = plt0;
14291 }
4ce794b7 14292 p = htab->glink->contents;
176a0d42 14293 plt0 -= htab->glink->output_section->vma + htab->glink->output_offset;
ee4bf8d2
AM
14294 bfd_put_64 (htab->glink->owner, plt0, p);
14295 p += 8;
b9e5796b
AM
14296 if (htab->opd_abi)
14297 {
14298 bfd_put_32 (htab->glink->owner, MFLR_R12, p);
14299 p += 4;
14300 bfd_put_32 (htab->glink->owner, BCL_20_31, p);
14301 p += 4;
14302 bfd_put_32 (htab->glink->owner, MFLR_R11, p);
14303 p += 4;
14304 bfd_put_32 (htab->glink->owner, LD_R2_0R11 | (-16 & 0xfffc), p);
14305 p += 4;
14306 bfd_put_32 (htab->glink->owner, MTLR_R12, p);
14307 p += 4;
14308 bfd_put_32 (htab->glink->owner, ADD_R11_R2_R11, p);
14309 p += 4;
14310 bfd_put_32 (htab->glink->owner, LD_R12_0R11, p);
14311 p += 4;
14312 bfd_put_32 (htab->glink->owner, LD_R2_0R11 | 8, p);
14313 p += 4;
14314 bfd_put_32 (htab->glink->owner, MTCTR_R12, p);
14315 p += 4;
14316 bfd_put_32 (htab->glink->owner, LD_R11_0R11 | 16, p);
14317 p += 4;
14318 }
14319 else
14320 {
14321 bfd_put_32 (htab->glink->owner, MFLR_R0, p);
14322 p += 4;
14323 bfd_put_32 (htab->glink->owner, BCL_20_31, p);
14324 p += 4;
14325 bfd_put_32 (htab->glink->owner, MFLR_R11, p);
14326 p += 4;
f378ab09
AM
14327 bfd_put_32 (htab->glink->owner, STD_R2_0R1 + 24, p);
14328 p += 4;
b9e5796b
AM
14329 bfd_put_32 (htab->glink->owner, LD_R2_0R11 | (-16 & 0xfffc), p);
14330 p += 4;
14331 bfd_put_32 (htab->glink->owner, MTLR_R0, p);
14332 p += 4;
14333 bfd_put_32 (htab->glink->owner, SUB_R12_R12_R11, p);
14334 p += 4;
14335 bfd_put_32 (htab->glink->owner, ADD_R11_R2_R11, p);
14336 p += 4;
14337 bfd_put_32 (htab->glink->owner, ADDI_R0_R12 | (-48 & 0xffff), p);
14338 p += 4;
14339 bfd_put_32 (htab->glink->owner, LD_R12_0R11, p);
14340 p += 4;
14341 bfd_put_32 (htab->glink->owner, SRDI_R0_R0_2, p);
14342 p += 4;
14343 bfd_put_32 (htab->glink->owner, MTCTR_R12, p);
14344 p += 4;
14345 bfd_put_32 (htab->glink->owner, LD_R11_0R11 | 8, p);
14346 p += 4;
14347 }
407aa07c
AM
14348 bfd_put_32 (htab->glink->owner, BCTR, p);
14349 p += 4;
c75bc4f7 14350 BFD_ASSERT (p == htab->glink->contents + GLINK_PLTRESOLVE_SIZE (htab));
ad8e1ba5 14351
9f951329
AM
14352 /* Build the .glink lazy link call stubs. */
14353 indx = 0;
9e390558 14354 while (p < htab->glink->contents + htab->glink->size)
9f951329 14355 {
b9e5796b 14356 if (htab->opd_abi)
9f951329 14357 {
b9e5796b
AM
14358 if (indx < 0x8000)
14359 {
14360 bfd_put_32 (htab->glink->owner, LI_R0_0 | indx, p);
14361 p += 4;
14362 }
14363 else
14364 {
14365 bfd_put_32 (htab->glink->owner, LIS_R0_0 | PPC_HI (indx), p);
14366 p += 4;
14367 bfd_put_32 (htab->glink->owner, ORI_R0_R0_0 | PPC_LO (indx),
14368 p);
14369 p += 4;
14370 }
9f951329 14371 }
4ce794b7 14372 bfd_put_32 (htab->glink->owner,
ee4bf8d2 14373 B_DOT | ((htab->glink->contents - p + 8) & 0x3fffffc), p);
a16d5acb 14374 indx++;
9f951329
AM
14375 p += 4;
14376 }
5d1634d7 14377 }
5d1634d7 14378
a804e476
AM
14379 if (htab->tga_group != NULL)
14380 {
14381 htab->tga_group->lr_restore = 23 * 4;
14382 htab->tga_group->stub_sec->size = 24 * 4;
14383 if (!emit_tga_desc (htab))
14384 return FALSE;
14385 if (htab->glink_eh_frame != NULL
14386 && htab->glink_eh_frame->size != 0)
14387 {
14388 size_t align = 4;
14389
14390 p = htab->glink_eh_frame->contents;
14391 p += (sizeof (glink_eh_frame_cie) + align - 1) & -align;
14392 p += 17;
14393 htab->tga_group->eh_size = emit_tga_desc_eh_frame (htab, p) - p;
14394 }
14395 }
14396
49c09209
AM
14397 /* Build .glink global entry stubs, and PLT relocs for globals. */
14398 elf_link_hash_traverse (&htab->elf, build_global_entry_stubs_and_plt, info);
14399
14400 if (!write_plt_relocs_for_local_syms (info))
14401 return FALSE;
9e390558 14402
7341d5e2 14403 if (htab->brlt != NULL && htab->brlt->size != 0)
721956f4 14404 {
4ce794b7 14405 htab->brlt->contents = bfd_zalloc (htab->brlt->owner,
eea6121a 14406 htab->brlt->size);
4ce794b7 14407 if (htab->brlt->contents == NULL)
b34976b6 14408 return FALSE;
721956f4 14409 }
ee75fd95 14410 if (htab->relbrlt != NULL && htab->relbrlt->size != 0)
63bc6f6c
AM
14411 {
14412 htab->relbrlt->contents = bfd_zalloc (htab->relbrlt->owner,
eea6121a 14413 htab->relbrlt->size);
63bc6f6c
AM
14414 if (htab->relbrlt->contents == NULL)
14415 return FALSE;
14416 }
5d1634d7 14417
721956f4
AM
14418 /* Build the stubs as directed by the stub hash table. */
14419 bfd_hash_traverse (&htab->stub_hash_table, ppc_build_one_stub, info);
5d1634d7 14420
a4b6fadd
AM
14421 for (group = htab->group; group != NULL; group = group->next)
14422 if (group->needs_save_res)
7dda8d3c 14423 group->stub_sec->size += htab->sfpr->size;
a4b6fadd 14424
aa8a7074
AM
14425 if (htab->relbrlt != NULL)
14426 htab->relbrlt->reloc_count = 0;
14427
e7d1c40c 14428 if (htab->params->plt_stub_align != 0)
d4aaa2a0
AM
14429 for (group = htab->group; group != NULL; group = group->next)
14430 if ((stub_sec = group->stub_sec) != NULL)
691d2e9a
AM
14431 {
14432 int align = abs (htab->params->plt_stub_align);
14433 stub_sec->size = (stub_sec->size + (1 << align) - 1) & -(1 << align);
14434 }
794e51c0 14435
7dda8d3c
AM
14436 for (group = htab->group; group != NULL; group = group->next)
14437 if (group->needs_save_res)
14438 {
14439 stub_sec = group->stub_sec;
14440 memcpy (stub_sec->contents + stub_sec->size - htab->sfpr->size,
14441 htab->sfpr->contents, htab->sfpr->size);
14442 if (htab->params->emit_stub_syms)
14443 {
14444 unsigned int i;
14445
14446 for (i = 0; i < ARRAY_SIZE (save_res_funcs); i++)
14447 if (!sfpr_define (info, &save_res_funcs[i], stub_sec))
14448 return FALSE;
14449 }
14450 }
14451
df136d64
AM
14452 if (htab->glink_eh_frame != NULL
14453 && htab->glink_eh_frame->size != 0)
14454 {
14455 bfd_vma val;
14456 size_t align = 4;
14457
14458 p = htab->glink_eh_frame->contents;
14459 p += (sizeof (glink_eh_frame_cie) + align - 1) & -align;
14460
14461 for (group = htab->group; group != NULL; group = group->next)
14462 if (group->eh_size != 0)
14463 {
14464 /* Offset to stub section. */
14465 val = (group->stub_sec->output_section->vma
14466 + group->stub_sec->output_offset);
14467 val -= (htab->glink_eh_frame->output_section->vma
14468 + htab->glink_eh_frame->output_offset
14469 + (p + 8 - htab->glink_eh_frame->contents));
14470 if (val + 0x80000000 > 0xffffffff)
14471 {
14472 _bfd_error_handler
14473 (_("%s offset too large for .eh_frame sdata4 encoding"),
14474 group->stub_sec->name);
14475 return FALSE;
14476 }
14477 bfd_put_32 (htab->elf.dynobj, val, p + 8);
14478 p += (group->eh_size + 17 + 3) & -4;
14479 }
14480 if (htab->glink != NULL && htab->glink->size != 0)
14481 {
14482 /* Offset to .glink. */
14483 val = (htab->glink->output_section->vma
14484 + htab->glink->output_offset
14485 + 8);
14486 val -= (htab->glink_eh_frame->output_section->vma
14487 + htab->glink_eh_frame->output_offset
14488 + (p + 8 - htab->glink_eh_frame->contents));
14489 if (val + 0x80000000 > 0xffffffff)
14490 {
14491 _bfd_error_handler
14492 (_("%s offset too large for .eh_frame sdata4 encoding"),
14493 htab->glink->name);
14494 return FALSE;
14495 }
14496 bfd_put_32 (htab->elf.dynobj, val, p + 8);
14497 p += (24 + align - 1) & -align;
14498 }
14499 }
14500
d4aaa2a0
AM
14501 for (group = htab->group; group != NULL; group = group->next)
14502 if ((stub_sec = group->stub_sec) != NULL)
e717da7e
AM
14503 {
14504 stub_sec_count += 1;
c9301e31
AM
14505 if (stub_sec->rawsize != stub_sec->size
14506 && (htab->stub_iteration <= STUB_SHRINK_ITER
14507 || stub_sec->rawsize < stub_sec->size))
e717da7e
AM
14508 break;
14509 }
5d1634d7 14510
25516cc5 14511 if (group != NULL)
5d1634d7 14512 {
b34976b6 14513 htab->stub_error = TRUE;
cf97bcb0 14514 _bfd_error_handler (_("stubs don't match calculated size"));
5d1634d7 14515 }
721956f4 14516
d2a300cf
AM
14517 if (htab->stub_error)
14518 return FALSE;
14519
14520 if (stats != NULL)
14521 {
db84fff3 14522 size_t len;
d2a300cf
AM
14523 *stats = bfd_malloc (500);
14524 if (*stats == NULL)
14525 return FALSE;
14526
db84fff3
AM
14527 len = sprintf (*stats,
14528 ngettext ("linker stubs in %u group\n",
14529 "linker stubs in %u groups\n",
14530 stub_sec_count),
14531 stub_sec_count);
05d0e962
AM
14532 sprintf (*stats + len, _(" branch %lu\n"
14533 " branch toc adj %lu\n"
14534 " branch notoc %lu\n"
14535 " branch both %lu\n"
14536 " long branch %lu\n"
14537 " long toc adj %lu\n"
14538 " long notoc %lu\n"
14539 " long both %lu\n"
14540 " plt call %lu\n"
14541 " plt call save %lu\n"
14542 " plt call notoc %lu\n"
14543 " plt call both %lu\n"
14544 " global entry %lu"),
4ce794b7
AM
14545 htab->stub_count[ppc_stub_long_branch - 1],
14546 htab->stub_count[ppc_stub_long_branch_r2off - 1],
05d0e962
AM
14547 htab->stub_count[ppc_stub_long_branch_notoc - 1],
14548 htab->stub_count[ppc_stub_long_branch_both - 1],
4ce794b7
AM
14549 htab->stub_count[ppc_stub_plt_branch - 1],
14550 htab->stub_count[ppc_stub_plt_branch_r2off - 1],
05d0e962
AM
14551 htab->stub_count[ppc_stub_plt_branch_notoc - 1],
14552 htab->stub_count[ppc_stub_plt_branch_both - 1],
794e51c0 14553 htab->stub_count[ppc_stub_plt_call - 1],
7341d5e2 14554 htab->stub_count[ppc_stub_plt_call_r2save - 1],
05d0e962
AM
14555 htab->stub_count[ppc_stub_plt_call_notoc - 1],
14556 htab->stub_count[ppc_stub_plt_call_both - 1],
7341d5e2 14557 htab->stub_count[ppc_stub_global_entry - 1]);
d2a300cf
AM
14558 }
14559 return TRUE;
5bd4f169
AM
14560}
14561
60124e18
AM
14562/* What to do when ld finds relocations against symbols defined in
14563 discarded sections. */
14564
14565static unsigned int
14566ppc64_elf_action_discarded (asection *sec)
14567{
14568 if (strcmp (".opd", sec->name) == 0)
14569 return 0;
14570
14571 if (strcmp (".toc", sec->name) == 0)
14572 return 0;
14573
bce50a28
JJ
14574 if (strcmp (".toc1", sec->name) == 0)
14575 return 0;
14576
60124e18
AM
14577 return _bfd_elf_default_action_discarded (sec);
14578}
14579
e59a1001
AM
14580/* These are the dynamic relocations supported by glibc. */
14581
14582static bfd_boolean
14583ppc64_glibc_dynamic_reloc (enum elf_ppc64_reloc_type r_type)
14584{
14585 switch (r_type)
14586 {
14587 case R_PPC64_RELATIVE:
14588 case R_PPC64_NONE:
14589 case R_PPC64_ADDR64:
14590 case R_PPC64_GLOB_DAT:
14591 case R_PPC64_IRELATIVE:
14592 case R_PPC64_JMP_IREL:
14593 case R_PPC64_JMP_SLOT:
14594 case R_PPC64_DTPMOD64:
14595 case R_PPC64_DTPREL64:
14596 case R_PPC64_TPREL64:
14597 case R_PPC64_TPREL16_LO_DS:
14598 case R_PPC64_TPREL16_DS:
14599 case R_PPC64_TPREL16:
14600 case R_PPC64_TPREL16_LO:
14601 case R_PPC64_TPREL16_HI:
14602 case R_PPC64_TPREL16_HIGH:
14603 case R_PPC64_TPREL16_HA:
14604 case R_PPC64_TPREL16_HIGHA:
14605 case R_PPC64_TPREL16_HIGHER:
14606 case R_PPC64_TPREL16_HIGHEST:
14607 case R_PPC64_TPREL16_HIGHERA:
14608 case R_PPC64_TPREL16_HIGHESTA:
14609 case R_PPC64_ADDR16_LO_DS:
14610 case R_PPC64_ADDR16_LO:
14611 case R_PPC64_ADDR16_HI:
14612 case R_PPC64_ADDR16_HIGH:
14613 case R_PPC64_ADDR16_HA:
14614 case R_PPC64_ADDR16_HIGHA:
14615 case R_PPC64_REL30:
14616 case R_PPC64_COPY:
14617 case R_PPC64_UADDR64:
14618 case R_PPC64_UADDR32:
14619 case R_PPC64_ADDR32:
14620 case R_PPC64_ADDR24:
14621 case R_PPC64_ADDR16:
14622 case R_PPC64_UADDR16:
14623 case R_PPC64_ADDR16_DS:
14624 case R_PPC64_ADDR16_HIGHER:
14625 case R_PPC64_ADDR16_HIGHEST:
14626 case R_PPC64_ADDR16_HIGHERA:
14627 case R_PPC64_ADDR16_HIGHESTA:
14628 case R_PPC64_ADDR14:
14629 case R_PPC64_ADDR14_BRTAKEN:
14630 case R_PPC64_ADDR14_BRNTAKEN:
14631 case R_PPC64_REL32:
14632 case R_PPC64_REL64:
14633 return TRUE;
14634
14635 default:
14636 return FALSE;
14637 }
14638}
14639
5bd4f169
AM
14640/* The RELOCATE_SECTION function is called by the ELF backend linker
14641 to handle the relocations for a section.
14642
14643 The relocs are always passed as Rela structures; if the section
14644 actually uses Rel structures, the r_addend field will always be
14645 zero.
14646
14647 This function is responsible for adjust the section contents as
14648 necessary, and (if using Rela relocs and generating a
1049f94e 14649 relocatable output file) adjusting the reloc addend as
5bd4f169
AM
14650 necessary.
14651
14652 This function does not have to worry about setting the reloc
14653 address or the reloc symbol index.
14654
14655 LOCAL_SYMS is a pointer to the swapped in local symbols.
14656
14657 LOCAL_SECTIONS is an array giving the section in the input file
14658 corresponding to the st_shndx field of each local symbol.
14659
14660 The global hash table entry for the global symbols can be found
14661 via elf_sym_hashes (input_bfd).
14662
1049f94e 14663 When generating relocatable output, this function must handle
5bd4f169
AM
14664 STB_LOCAL/STT_SECTION symbols specially. The output symbol is
14665 going to be the section symbol corresponding to the output
14666 section, which means that the addend must be adjusted
14667 accordingly. */
14668
b34976b6 14669static bfd_boolean
4ce794b7
AM
14670ppc64_elf_relocate_section (bfd *output_bfd,
14671 struct bfd_link_info *info,
14672 bfd *input_bfd,
14673 asection *input_section,
14674 bfd_byte *contents,
14675 Elf_Internal_Rela *relocs,
14676 Elf_Internal_Sym *local_syms,
14677 asection **local_sections)
5bd4f169 14678{
65f38f15 14679 struct ppc_link_hash_table *htab;
5bd4f169
AM
14680 Elf_Internal_Shdr *symtab_hdr;
14681 struct elf_link_hash_entry **sym_hashes;
5bd4f169 14682 Elf_Internal_Rela *rel;
c316a17c 14683 Elf_Internal_Rela *wrel;
5bd4f169 14684 Elf_Internal_Rela *relend;
411e1bfb
AM
14685 Elf_Internal_Rela outrel;
14686 bfd_byte *loc;
411e1bfb 14687 struct got_entry **local_got_ents;
5bd4f169 14688 bfd_vma TOCstart;
b34976b6
AM
14689 bfd_boolean ret = TRUE;
14690 bfd_boolean is_opd;
794e51c0
AM
14691 /* Assume 'at' branch hints. */
14692 bfd_boolean is_isa_v2 = TRUE;
e59a1001 14693 bfd_boolean warned_dynamic = FALSE;
95f0d0d2 14694 bfd_vma d_offset = (bfd_big_endian (input_bfd) ? 2 : 0);
5bd4f169 14695
65f38f15 14696 /* Initialize howto table if needed. */
5bd4f169 14697 if (!ppc64_elf_howto_table[R_PPC64_ADDR32])
5bd4f169
AM
14698 ppc_howto_init ();
14699
65f38f15 14700 htab = ppc_hash_table (info);
4dfe6ac6
NC
14701 if (htab == NULL)
14702 return FALSE;
ee75fd95
AM
14703
14704 /* Don't relocate stub sections. */
e7d1c40c 14705 if (input_section->owner == htab->params->stub_bfd)
ee75fd95
AM
14706 return TRUE;
14707
7af5d5c4
AM
14708 if (!is_ppc64_elf (input_bfd))
14709 {
14710 bfd_set_error (bfd_error_wrong_format);
14711 return FALSE;
14712 }
0ffa91dd 14713
411e1bfb 14714 local_got_ents = elf_local_got_ents (input_bfd);
5bd4f169 14715 TOCstart = elf_gp (output_bfd);
0ffa91dd 14716 symtab_hdr = &elf_symtab_hdr (input_bfd);
5bd4f169 14717 sym_hashes = elf_sym_hashes (input_bfd);
7c8fe5c4 14718 is_opd = ppc64_elf_section_data (input_section)->sec_type == sec_opd;
65f38f15 14719
c316a17c 14720 rel = wrel = relocs;
5bd4f169 14721 relend = relocs + input_section->reloc_count;
c316a17c 14722 for (; rel < relend; wrel++, rel++)
5bd4f169 14723 {
04c9666a 14724 enum elf_ppc64_reloc_type r_type;
31c76678 14725 bfd_vma addend;
5bd4f169
AM
14726 bfd_reloc_status_type r;
14727 Elf_Internal_Sym *sym;
14728 asection *sec;
039b3fef
AM
14729 struct elf_link_hash_entry *h_elf;
14730 struct ppc_link_hash_entry *h;
14731 struct ppc_link_hash_entry *fdh;
5bd4f169 14732 const char *sym_name;
0d4792f7 14733 unsigned long r_symndx, toc_symndx;
3a71aa26 14734 bfd_vma toc_addend;
f961d9dd
AM
14735 unsigned char tls_mask, tls_gd, tls_type;
14736 unsigned char sym_type;
5bd4f169 14737 bfd_vma relocation;
23cedd1d 14738 bfd_boolean unresolved_reloc, save_unresolved_reloc;
b34976b6 14739 bfd_boolean warned;
bc30df16 14740 enum { DEST_NORMAL, DEST_OPD, DEST_STUB } reloc_dest;
67f0cbdb 14741 unsigned int insn;
e11840f9 14742 unsigned int mask;
721956f4
AM
14743 struct ppc_stub_hash_entry *stub_entry;
14744 bfd_vma max_br_offset;
14745 bfd_vma from;
c316a17c 14746 Elf_Internal_Rela orig_rel;
b80eed39
AM
14747 reloc_howto_type *howto;
14748 struct reloc_howto_struct alt_howto;
4a421c53
AM
14749 uint64_t pinsn;
14750 bfd_vma offset;
5bd4f169 14751
c316a17c
AM
14752 again:
14753 orig_rel = *rel;
14754
4ce794b7 14755 r_type = ELF64_R_TYPE (rel->r_info);
5bd4f169 14756 r_symndx = ELF64_R_SYM (rel->r_info);
ee87f2da
AM
14757
14758 /* For old style R_PPC64_TOC relocs with a zero symbol, use the
14759 symbol of the previous ADDR64 reloc. The symbol gives us the
14760 proper TOC base to use. */
14761 if (rel->r_info == ELF64_R_INFO (0, R_PPC64_TOC)
c316a17c
AM
14762 && wrel != relocs
14763 && ELF64_R_TYPE (wrel[-1].r_info) == R_PPC64_ADDR64
ee87f2da 14764 && is_opd)
c316a17c 14765 r_symndx = ELF64_R_SYM (wrel[-1].r_info);
ee87f2da 14766
4ce794b7
AM
14767 sym = NULL;
14768 sec = NULL;
039b3fef 14769 h_elf = NULL;
4ce794b7 14770 sym_name = NULL;
b34976b6
AM
14771 unresolved_reloc = FALSE;
14772 warned = FALSE;
65f38f15 14773
0b13192e 14774 if (r_symndx < symtab_hdr->sh_info)
5bd4f169
AM
14775 {
14776 /* It's a local symbol. */
74f0fb50 14777 struct _opd_sec_data *opd;
4025353c 14778
5bd4f169
AM
14779 sym = local_syms + r_symndx;
14780 sec = local_sections[r_symndx];
26c61ae5 14781 sym_name = bfd_elf_sym_name (input_bfd, symtab_hdr, sym, sec);
0d4792f7 14782 sym_type = ELF64_ST_TYPE (sym->st_info);
8517fae7 14783 relocation = _bfd_elf_rela_local_sym (output_bfd, sym, &sec, rel);
74f0fb50
AM
14784 opd = get_opd_info (sec);
14785 if (opd != NULL && opd->adjust != NULL)
1e2f5b6e 14786 {
51aecdc5
AM
14787 long adjust = opd->adjust[OPD_NDX (sym->st_value
14788 + rel->r_addend)];
4025353c
AM
14789 if (adjust == -1)
14790 relocation = 0;
14791 else
4cc603a5
AM
14792 {
14793 /* If this is a relocation against the opd section sym
14794 and we have edited .opd, adjust the reloc addend so
14795 that ld -r and ld --emit-relocs output is correct.
14796 If it is a reloc against some other .opd symbol,
14797 then the symbol value will be adjusted later. */
14798 if (ELF_ST_TYPE (sym->st_info) == STT_SECTION)
14799 rel->r_addend += adjust;
14800 else
14801 relocation += adjust;
14802 }
1e2f5b6e 14803 }
5bd4f169
AM
14804 }
14805 else
14806 {
62d887d4
L
14807 bfd_boolean ignored;
14808
b2a8e766
AM
14809 RELOC_FOR_GLOBAL_SYMBOL (info, input_bfd, input_section, rel,
14810 r_symndx, symtab_hdr, sym_hashes,
039b3fef 14811 h_elf, sec, relocation,
62d887d4 14812 unresolved_reloc, warned, ignored);
039b3fef
AM
14813 sym_name = h_elf->root.root.string;
14814 sym_type = h_elf->type;
b69fdb4e
AM
14815 if (sec != NULL
14816 && sec->owner == output_bfd
14817 && strcmp (sec->name, ".opd") == 0)
14818 {
14819 /* This is a symbol defined in a linker script. All
14820 such are defined in output sections, even those
14821 defined by simple assignment from a symbol defined in
14822 an input section. Transfer the symbol to an
14823 appropriate input .opd section, so that a branch to
14824 this symbol will be mapped to the location specified
14825 by the opd entry. */
14826 struct bfd_link_order *lo;
14827 for (lo = sec->map_head.link_order; lo != NULL; lo = lo->next)
14828 if (lo->type == bfd_indirect_link_order)
14829 {
14830 asection *isec = lo->u.indirect.section;
14831 if (h_elf->root.u.def.value >= isec->output_offset
14832 && h_elf->root.u.def.value < (isec->output_offset
14833 + isec->size))
14834 {
14835 h_elf->root.u.def.value -= isec->output_offset;
14836 h_elf->root.u.def.section = isec;
14837 sec = isec;
14838 break;
14839 }
14840 }
14841 }
5bd4f169 14842 }
ed7007c1 14843 h = ppc_elf_hash_entry (h_elf);
5bd4f169 14844
dbaa2011 14845 if (sec != NULL && discarded_section (sec))
c316a17c
AM
14846 {
14847 _bfd_clear_contents (ppc64_elf_howto_table[r_type],
14848 input_bfd, input_section,
0930cb30 14849 contents, rel->r_offset);
c316a17c
AM
14850 wrel->r_offset = rel->r_offset;
14851 wrel->r_info = 0;
14852 wrel->r_addend = 0;
14853
14854 /* For ld -r, remove relocations in debug sections against
dcd2b8a0 14855 symbols defined in discarded sections. Not done for
c316a17c
AM
14856 non-debug to preserve relocs in .eh_frame which the
14857 eh_frame editing code expects to be present. */
14858 if (bfd_link_relocatable (info)
14859 && (input_section->flags & SEC_DEBUGGING))
14860 wrel--;
14861
14862 continue;
14863 }
ab96bf03 14864
0e1862bb 14865 if (bfd_link_relocatable (info))
c316a17c 14866 goto copy_reloc;
ab96bf03 14867
f40da81b
AM
14868 if (h != NULL && &h->elf == htab->elf.hgot)
14869 {
6f20ed8a 14870 relocation = TOCstart + htab->sec_info[input_section->id].toc_off;
f40da81b
AM
14871 sec = bfd_abs_section_ptr;
14872 unresolved_reloc = FALSE;
14873 }
14874
951fd09b
AM
14875 /* TLS optimizations. Replace instruction sequences and relocs
14876 based on information we collected in tls_optimize. We edit
14877 RELOCS so that --emit-relocs will output something sensible
14878 for the final instruction stream. */
14879 tls_mask = 0;
14880 tls_gd = 0;
0d4792f7 14881 toc_symndx = 0;
727fc41e
AM
14882 if (h != NULL)
14883 tls_mask = h->tls_mask;
14884 else if (local_got_ents != NULL)
411e1bfb 14885 {
e054468f
AM
14886 struct plt_entry **local_plt = (struct plt_entry **)
14887 (local_got_ents + symtab_hdr->sh_info);
f961d9dd 14888 unsigned char *lgot_masks = (unsigned char *)
e054468f 14889 (local_plt + symtab_hdr->sh_info);
727fc41e
AM
14890 tls_mask = lgot_masks[r_symndx];
14891 }
37da22e5 14892 if (((tls_mask & TLS_TLS) == 0 || tls_mask == (TLS_TLS | TLS_MARK))
727fc41e
AM
14893 && (r_type == R_PPC64_TLS
14894 || r_type == R_PPC64_TLSGD
14895 || r_type == R_PPC64_TLSLD))
14896 {
14897 /* Check for toc tls entries. */
f961d9dd 14898 unsigned char *toc_tls;
0d4792f7 14899
727fc41e
AM
14900 if (!get_tls_mask (&toc_tls, &toc_symndx, &toc_addend,
14901 &local_syms, rel, input_bfd))
14902 return FALSE;
0d4792f7 14903
727fc41e
AM
14904 if (toc_tls)
14905 tls_mask = *toc_tls;
0d4792f7
AM
14906 }
14907
14908 /* Check that tls relocs are used with tls syms, and non-tls
14909 relocs are used with non-tls syms. */
cf35638d 14910 if (r_symndx != STN_UNDEF
0d4792f7
AM
14911 && r_type != R_PPC64_NONE
14912 && (h == NULL
039b3fef
AM
14913 || h->elf.root.type == bfd_link_hash_defined
14914 || h->elf.root.type == bfd_link_hash_defweak)
71c4e95a 14915 && IS_PPC64_TLS_RELOC (r_type) != (sym_type == STT_TLS))
0d4792f7 14916 {
37da22e5 14917 if ((tls_mask & TLS_TLS) != 0
727fc41e
AM
14918 && (r_type == R_PPC64_TLS
14919 || r_type == R_PPC64_TLSGD
14920 || r_type == R_PPC64_TLSLD))
0d4792f7
AM
14921 /* R_PPC64_TLS is OK against a symbol in the TOC. */
14922 ;
14923 else
25f53a85 14924 info->callbacks->einfo
1d483afe 14925 (!IS_PPC64_TLS_RELOC (r_type)
695344c0 14926 /* xgettext:c-format */
c1c8c1ef 14927 ? _("%H: %s used with TLS symbol `%pT'\n")
695344c0 14928 /* xgettext:c-format */
c1c8c1ef 14929 : _("%H: %s used with non-TLS symbol `%pT'\n"),
25f53a85 14930 input_bfd, input_section, rel->r_offset,
0d4792f7
AM
14931 ppc64_elf_howto_table[r_type]->name,
14932 sym_name);
411e1bfb
AM
14933 }
14934
14935 /* Ensure reloc mapping code below stays sane. */
14936 if (R_PPC64_TOC16_LO_DS != R_PPC64_TOC16_DS + 1
14937 || R_PPC64_TOC16_LO != R_PPC64_TOC16 + 1
14938 || (R_PPC64_GOT_TLSLD16 & 3) != (R_PPC64_GOT_TLSGD16 & 3)
14939 || (R_PPC64_GOT_TLSLD16_LO & 3) != (R_PPC64_GOT_TLSGD16_LO & 3)
14940 || (R_PPC64_GOT_TLSLD16_HI & 3) != (R_PPC64_GOT_TLSGD16_HI & 3)
14941 || (R_PPC64_GOT_TLSLD16_HA & 3) != (R_PPC64_GOT_TLSGD16_HA & 3)
14942 || (R_PPC64_GOT_TLSLD16 & 3) != (R_PPC64_GOT_TPREL16_DS & 3)
14943 || (R_PPC64_GOT_TLSLD16_LO & 3) != (R_PPC64_GOT_TPREL16_LO_DS & 3)
14944 || (R_PPC64_GOT_TLSLD16_HI & 3) != (R_PPC64_GOT_TPREL16_HI & 3)
14945 || (R_PPC64_GOT_TLSLD16_HA & 3) != (R_PPC64_GOT_TPREL16_HA & 3))
14946 abort ();
0d4792f7 14947
411e1bfb
AM
14948 switch (r_type)
14949 {
14950 default:
411e1bfb
AM
14951 break;
14952
ba761f19 14953 case R_PPC64_LO_DS_OPT:
95f0d0d2 14954 insn = bfd_get_32 (input_bfd, contents + rel->r_offset - d_offset);
2365f8d7 14955 if ((insn & (0x3fu << 26)) != 58u << 26)
ba761f19
AM
14956 abort ();
14957 insn += (14u << 26) - (58u << 26);
95f0d0d2 14958 bfd_put_32 (input_bfd, insn, contents + rel->r_offset - d_offset);
ba761f19
AM
14959 r_type = R_PPC64_TOC16_LO;
14960 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
14961 break;
14962
411e1bfb
AM
14963 case R_PPC64_TOC16:
14964 case R_PPC64_TOC16_LO:
14965 case R_PPC64_TOC16_DS:
14966 case R_PPC64_TOC16_LO_DS:
411e1bfb
AM
14967 {
14968 /* Check for toc tls entries. */
f961d9dd 14969 unsigned char *toc_tls;
951fd09b 14970 int retval;
411e1bfb 14971
3a71aa26
AM
14972 retval = get_tls_mask (&toc_tls, &toc_symndx, &toc_addend,
14973 &local_syms, rel, input_bfd);
951fd09b 14974 if (retval == 0)
411e1bfb
AM
14975 return FALSE;
14976
14977 if (toc_tls)
14978 {
951fd09b 14979 tls_mask = *toc_tls;
411e1bfb
AM
14980 if (r_type == R_PPC64_TOC16_DS
14981 || r_type == R_PPC64_TOC16_LO_DS)
81407a69 14982 {
37da22e5 14983 if ((tls_mask & TLS_TLS) != 0
81407a69
AM
14984 && (tls_mask & (TLS_DTPREL | TLS_TPREL)) == 0)
14985 goto toctprel;
14986 }
411e1bfb 14987 else
951fd09b
AM
14988 {
14989 /* If we found a GD reloc pair, then we might be
14990 doing a GD->IE transition. */
14991 if (retval == 2)
14992 {
b00a0a86 14993 tls_gd = TLS_GDIE;
37da22e5
AM
14994 if ((tls_mask & TLS_TLS) != 0
14995 && (tls_mask & TLS_GD) == 0)
102890f0 14996 goto tls_ldgd_opt;
951fd09b
AM
14997 }
14998 else if (retval == 3)
14999 {
37da22e5
AM
15000 if ((tls_mask & TLS_TLS) != 0
15001 && (tls_mask & TLS_LD) == 0)
102890f0 15002 goto tls_ldgd_opt;
951fd09b
AM
15003 }
15004 }
411e1bfb
AM
15005 }
15006 }
15007 break;
15008
9d6ded02
AM
15009 case R_PPC64_GOT_TPREL16_HI:
15010 case R_PPC64_GOT_TPREL16_HA:
37da22e5 15011 if ((tls_mask & TLS_TLS) != 0
9d6ded02
AM
15012 && (tls_mask & TLS_TPREL) == 0)
15013 {
15014 rel->r_offset -= d_offset;
95f0d0d2 15015 bfd_put_32 (input_bfd, NOP, contents + rel->r_offset);
9d6ded02
AM
15016 r_type = R_PPC64_NONE;
15017 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
15018 }
15019 break;
15020
411e1bfb
AM
15021 case R_PPC64_GOT_TPREL16_DS:
15022 case R_PPC64_GOT_TPREL16_LO_DS:
37da22e5 15023 if ((tls_mask & TLS_TLS) != 0
951fd09b 15024 && (tls_mask & TLS_TPREL) == 0)
411e1bfb 15025 {
81407a69 15026 toctprel:
95f0d0d2 15027 insn = bfd_get_32 (input_bfd,
c316a17c 15028 contents + rel->r_offset - d_offset);
411e1bfb
AM
15029 insn &= 31 << 21;
15030 insn |= 0x3c0d0000; /* addis 0,13,0 */
95f0d0d2 15031 bfd_put_32 (input_bfd, insn,
c316a17c 15032 contents + rel->r_offset - d_offset);
411e1bfb 15033 r_type = R_PPC64_TPREL16_HA;
0d4792f7
AM
15034 if (toc_symndx != 0)
15035 {
15036 rel->r_info = ELF64_R_INFO (toc_symndx, r_type);
3a71aa26 15037 rel->r_addend = toc_addend;
0d4792f7
AM
15038 /* We changed the symbol. Start over in order to
15039 get h, sym, sec etc. right. */
c316a17c 15040 goto again;
0d4792f7
AM
15041 }
15042 else
15043 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
411e1bfb
AM
15044 }
15045 break;
15046
c213164a
AM
15047 case R_PPC64_GOT_TPREL34:
15048 if ((tls_mask & TLS_TLS) != 0
15049 && (tls_mask & TLS_TPREL) == 0)
15050 {
15051 /* pld ra,sym@got@tprel@pcrel -> paddi ra,r13,sym@tprel */
15052 pinsn = bfd_get_32 (input_bfd, contents + rel->r_offset);
15053 pinsn <<= 32;
15054 pinsn |= bfd_get_32 (input_bfd, contents + rel->r_offset + 4);
15055 pinsn += ((2ULL << 56) + (-1ULL << 52)
15056 + (14ULL << 26) - (57ULL << 26) + (13ULL << 16));
15057 bfd_put_32 (input_bfd, pinsn >> 32,
15058 contents + rel->r_offset);
15059 bfd_put_32 (input_bfd, pinsn & 0xffffffff,
15060 contents + rel->r_offset + 4);
15061 r_type = R_PPC64_TPREL34;
15062 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
15063 }
15064 break;
15065
411e1bfb 15066 case R_PPC64_TLS:
37da22e5 15067 if ((tls_mask & TLS_TLS) != 0
951fd09b 15068 && (tls_mask & TLS_TPREL) == 0)
411e1bfb 15069 {
c213164a 15070 insn = bfd_get_32 (input_bfd, contents + (rel->r_offset & ~3));
2d0f3896
AM
15071 insn = _bfd_elf_ppc_at_tls_transform (insn, 13);
15072 if (insn == 0)
c213164a
AM
15073 break;
15074 if ((rel->r_offset & 3) == 0)
0d4792f7 15075 {
c213164a
AM
15076 bfd_put_32 (input_bfd, insn, contents + rel->r_offset);
15077 /* Was PPC64_TLS which sits on insn boundary, now
15078 PPC64_TPREL16_LO which is at low-order half-word. */
15079 rel->r_offset += d_offset;
15080 r_type = R_PPC64_TPREL16_LO;
15081 if (toc_symndx != 0)
15082 {
15083 rel->r_info = ELF64_R_INFO (toc_symndx, r_type);
15084 rel->r_addend = toc_addend;
15085 /* We changed the symbol. Start over in order to
15086 get h, sym, sec etc. right. */
15087 goto again;
15088 }
15089 else
15090 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
15091 }
15092 else if ((rel->r_offset & 3) == 1)
15093 {
15094 /* For pcrel IE to LE we already have the full
15095 offset and thus don't need an addi here. A nop
15096 or mr will do. */
2365f8d7 15097 if ((insn & (0x3fu << 26)) == 14 << 26)
c213164a
AM
15098 {
15099 /* Extract regs from addi rt,ra,si. */
15100 unsigned int rt = (insn >> 21) & 0x1f;
15101 unsigned int ra = (insn >> 16) & 0x1f;
15102 if (rt == ra)
15103 insn = NOP;
15104 else
15105 {
15106 /* Build or ra,rs,rb with rb==rs, ie. mr ra,rs. */
15107 insn = (rt << 16) | (ra << 21) | (ra << 11);
15108 insn |= (31u << 26) | (444u << 1);
15109 }
15110 }
15111 bfd_put_32 (input_bfd, insn, contents + rel->r_offset - 1);
0d4792f7 15112 }
411e1bfb
AM
15113 }
15114 break;
15115
411e1bfb
AM
15116 case R_PPC64_GOT_TLSGD16_HI:
15117 case R_PPC64_GOT_TLSGD16_HA:
b00a0a86 15118 tls_gd = TLS_GDIE;
37da22e5 15119 if ((tls_mask & TLS_TLS) != 0 && (tls_mask & TLS_GD) == 0)
951fd09b
AM
15120 goto tls_gdld_hi;
15121 break;
15122
411e1bfb
AM
15123 case R_PPC64_GOT_TLSLD16_HI:
15124 case R_PPC64_GOT_TLSLD16_HA:
37da22e5 15125 if ((tls_mask & TLS_TLS) != 0 && (tls_mask & TLS_LD) == 0)
411e1bfb 15126 {
951fd09b
AM
15127 tls_gdld_hi:
15128 if ((tls_mask & tls_gd) != 0)
15129 r_type = (((r_type - (R_PPC64_GOT_TLSGD16 & 3)) & 3)
15130 + R_PPC64_GOT_TPREL16_DS);
15131 else
411e1bfb 15132 {
4fe5ca5b 15133 rel->r_offset -= d_offset;
95f0d0d2 15134 bfd_put_32 (input_bfd, NOP, contents + rel->r_offset);
951fd09b 15135 r_type = R_PPC64_NONE;
411e1bfb 15136 }
951fd09b 15137 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
411e1bfb
AM
15138 }
15139 break;
15140
951fd09b
AM
15141 case R_PPC64_GOT_TLSGD16:
15142 case R_PPC64_GOT_TLSGD16_LO:
b00a0a86 15143 tls_gd = TLS_GDIE;
37da22e5 15144 if ((tls_mask & TLS_TLS) != 0 && (tls_mask & TLS_GD) == 0)
102890f0 15145 goto tls_ldgd_opt;
951fd09b 15146 break;
411e1bfb 15147
951fd09b
AM
15148 case R_PPC64_GOT_TLSLD16:
15149 case R_PPC64_GOT_TLSLD16_LO:
37da22e5 15150 if ((tls_mask & TLS_TLS) != 0 && (tls_mask & TLS_LD) == 0)
951fd09b 15151 {
b9f04fe0 15152 unsigned int insn1, insn2;
102890f0
AM
15153
15154 tls_ldgd_opt:
727fc41e
AM
15155 offset = (bfd_vma) -1;
15156 /* If not using the newer R_PPC64_TLSGD/LD to mark
15157 __tls_get_addr calls, we must trust that the call
15158 stays with its arg setup insns, ie. that the next
15159 reloc is the __tls_get_addr call associated with
15160 the current reloc. Edit both insns. */
9737e8af 15161 if (input_section->nomark_tls_get_addr
727fc41e
AM
15162 && rel + 1 < relend
15163 && branch_reloc_hash_match (input_bfd, rel + 1,
9e7028aa
AM
15164 htab->tls_get_addr_fd,
15165 htab->tga_desc_fd,
727fc41e 15166 htab->tls_get_addr,
9e7028aa 15167 htab->tga_desc))
727fc41e 15168 offset = rel[1].r_offset;
b86ac8e3
AM
15169 /* We read the low GOT_TLS (or TOC16) insn because we
15170 need to keep the destination reg. It may be
15171 something other than the usual r3, and moved to r3
15172 before the call by intervening code. */
95f0d0d2 15173 insn1 = bfd_get_32 (input_bfd,
b86ac8e3 15174 contents + rel->r_offset - d_offset);
102890f0 15175 if ((tls_mask & tls_gd) != 0)
411e1bfb 15176 {
102890f0 15177 /* IE */
b86ac8e3 15178 insn1 &= (0x1f << 21) | (0x1f << 16);
2365f8d7 15179 insn1 |= 58u << 26; /* ld */
102890f0 15180 insn2 = 0x7c636a14; /* add 3,3,13 */
727fc41e 15181 if (offset != (bfd_vma) -1)
f58d5a2d 15182 rel[1].r_info = ELF64_R_INFO (STN_UNDEF, R_PPC64_NONE);
46e9995a
AM
15183 if (r_type == R_PPC64_TOC16
15184 || r_type == R_PPC64_TOC16_LO)
102890f0 15185 r_type += R_PPC64_TOC16_DS - R_PPC64_TOC16;
46e9995a
AM
15186 else
15187 r_type = (((r_type - (R_PPC64_GOT_TLSGD16 & 1)) & 1)
15188 + R_PPC64_GOT_TPREL16_DS);
102890f0
AM
15189 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
15190 }
15191 else
15192 {
15193 /* LE */
b86ac8e3
AM
15194 insn1 &= 0x1f << 21;
15195 insn1 |= 0x3c0d0000; /* addis r,13,0 */
102890f0
AM
15196 insn2 = 0x38630000; /* addi 3,3,0 */
15197 if (tls_gd == 0)
951fd09b 15198 {
102890f0 15199 /* Was an LD reloc. */
71c4e95a 15200 r_symndx = STN_UNDEF;
102890f0 15201 rel->r_addend = htab->elf.tls_sec->vma + DTP_OFFSET;
951fd09b 15202 }
102890f0 15203 else if (toc_symndx != 0)
3a71aa26
AM
15204 {
15205 r_symndx = toc_symndx;
15206 rel->r_addend = toc_addend;
15207 }
102890f0
AM
15208 r_type = R_PPC64_TPREL16_HA;
15209 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
727fc41e
AM
15210 if (offset != (bfd_vma) -1)
15211 {
15212 rel[1].r_info = ELF64_R_INFO (r_symndx,
15213 R_PPC64_TPREL16_LO);
15214 rel[1].r_offset = offset + d_offset;
15215 rel[1].r_addend = rel->r_addend;
15216 }
102890f0 15217 }
95f0d0d2 15218 bfd_put_32 (input_bfd, insn1,
3a71aa26 15219 contents + rel->r_offset - d_offset);
727fc41e 15220 if (offset != (bfd_vma) -1)
c96e0573
AM
15221 {
15222 bfd_put_32 (input_bfd, insn2, contents + offset);
15223 if (offset + 8 <= input_section->size)
15224 {
15225 insn2 = bfd_get_32 (input_bfd, contents + offset + 4);
15226 if (insn2 == LD_R2_0R1 + STK_TOC (htab))
15227 bfd_put_32 (input_bfd, NOP, contents + offset + 4);
15228 }
15229 }
727fc41e
AM
15230 if ((tls_mask & tls_gd) == 0
15231 && (tls_gd == 0 || toc_symndx != 0))
15232 {
15233 /* We changed the symbol. Start over in order
15234 to get h, sym, sec etc. right. */
c316a17c 15235 goto again;
727fc41e
AM
15236 }
15237 }
15238 break;
15239
c213164a
AM
15240 case R_PPC64_GOT_TLSGD34:
15241 if ((tls_mask & TLS_TLS) != 0 && (tls_mask & TLS_GD) == 0)
15242 {
15243 pinsn = bfd_get_32 (input_bfd, contents + rel->r_offset);
15244 pinsn <<= 32;
15245 pinsn |= bfd_get_32 (input_bfd, contents + rel->r_offset + 4);
15246 if ((tls_mask & TLS_GDIE) != 0)
15247 {
15248 /* IE, pla -> pld */
15249 pinsn += (-2ULL << 56) + (57ULL << 26) - (14ULL << 26);
15250 r_type = R_PPC64_GOT_TPREL34;
15251 }
15252 else
15253 {
15254 /* LE, pla pcrel -> paddi r13 */
15255 pinsn += (-1ULL << 52) + (13ULL << 16);
15256 r_type = R_PPC64_TPREL34;
15257 }
15258 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
15259 bfd_put_32 (input_bfd, pinsn >> 32,
15260 contents + rel->r_offset);
15261 bfd_put_32 (input_bfd, pinsn & 0xffffffff,
15262 contents + rel->r_offset + 4);
15263 }
15264 break;
15265
15266 case R_PPC64_GOT_TLSLD34:
15267 if ((tls_mask & TLS_TLS) != 0 && (tls_mask & TLS_LD) == 0)
15268 {
15269 pinsn = bfd_get_32 (input_bfd, contents + rel->r_offset);
15270 pinsn <<= 32;
15271 pinsn |= bfd_get_32 (input_bfd, contents + rel->r_offset + 4);
15272 pinsn += (-1ULL << 52) + (13ULL << 16);
15273 bfd_put_32 (input_bfd, pinsn >> 32,
15274 contents + rel->r_offset);
15275 bfd_put_32 (input_bfd, pinsn & 0xffffffff,
15276 contents + rel->r_offset + 4);
15277 rel->r_addend = htab->elf.tls_sec->vma + DTP_OFFSET;
15278 r_symndx = STN_UNDEF;
15279 r_type = R_PPC64_TPREL34;
15280 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
15281 goto again;
15282 }
15283 break;
15284
727fc41e 15285 case R_PPC64_TLSGD:
37da22e5 15286 if ((tls_mask & TLS_TLS) != 0 && (tls_mask & TLS_GD) == 0
675e2809 15287 && rel + 1 < relend)
727fc41e 15288 {
b9f04fe0 15289 unsigned int insn2;
5663e321 15290 enum elf_ppc64_reloc_type r_type1 = ELF64_R_TYPE (rel[1].r_info);
727fc41e 15291
4a421c53 15292 offset = rel->r_offset;
5663e321 15293 if (is_plt_seq_reloc (r_type1))
23cedd1d
AM
15294 {
15295 bfd_put_32 (output_bfd, NOP, contents + offset);
5663e321
AM
15296 if (r_type1 == R_PPC64_PLT_PCREL34
15297 || r_type1 == R_PPC64_PLT_PCREL34_NOTOC)
15298 bfd_put_32 (output_bfd, NOP, contents + offset + 4);
23cedd1d
AM
15299 rel[1].r_info = ELF64_R_INFO (STN_UNDEF, R_PPC64_NONE);
15300 break;
15301 }
15302
15303 if (ELF64_R_TYPE (rel[1].r_info) == R_PPC64_PLTCALL)
15304 bfd_put_32 (output_bfd, NOP, contents + offset + 4);
15305
b00a0a86 15306 if ((tls_mask & TLS_GDIE) != 0)
727fc41e
AM
15307 {
15308 /* IE */
15309 r_type = R_PPC64_NONE;
15310 insn2 = 0x7c636a14; /* add 3,3,13 */
15311 }
15312 else
15313 {
15314 /* LE */
15315 if (toc_symndx != 0)
15316 {
15317 r_symndx = toc_symndx;
15318 rel->r_addend = toc_addend;
15319 }
c213164a
AM
15320 if (r_type1 == R_PPC64_REL24_NOTOC
15321 || r_type1 == R_PPC64_PLTCALL_NOTOC)
15322 {
15323 r_type = R_PPC64_NONE;
15324 insn2 = NOP;
15325 }
15326 else
15327 {
15328 rel->r_offset = offset + d_offset;
15329 r_type = R_PPC64_TPREL16_LO;
15330 insn2 = 0x38630000; /* addi 3,3,0 */
15331 }
727fc41e
AM
15332 }
15333 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
15334 /* Zap the reloc on the _tls_get_addr call too. */
15335 BFD_ASSERT (offset == rel[1].r_offset);
f58d5a2d 15336 rel[1].r_info = ELF64_R_INFO (STN_UNDEF, R_PPC64_NONE);
95f0d0d2 15337 bfd_put_32 (input_bfd, insn2, contents + offset);
c213164a
AM
15338 if ((tls_mask & TLS_GDIE) == 0
15339 && toc_symndx != 0
15340 && r_type != R_PPC64_NONE)
c316a17c 15341 goto again;
411e1bfb 15342 }
411e1bfb
AM
15343 break;
15344
727fc41e 15345 case R_PPC64_TLSLD:
37da22e5 15346 if ((tls_mask & TLS_TLS) != 0 && (tls_mask & TLS_LD) == 0
675e2809 15347 && rel + 1 < relend)
727fc41e 15348 {
b9f04fe0 15349 unsigned int insn2;
5663e321 15350 enum elf_ppc64_reloc_type r_type1 = ELF64_R_TYPE (rel[1].r_info);
727fc41e 15351
4a421c53 15352 offset = rel->r_offset;
5663e321 15353 if (is_plt_seq_reloc (r_type1))
23cedd1d
AM
15354 {
15355 bfd_put_32 (output_bfd, NOP, contents + offset);
5663e321
AM
15356 if (r_type1 == R_PPC64_PLT_PCREL34
15357 || r_type1 == R_PPC64_PLT_PCREL34_NOTOC)
15358 bfd_put_32 (output_bfd, NOP, contents + offset + 4);
23cedd1d
AM
15359 rel[1].r_info = ELF64_R_INFO (STN_UNDEF, R_PPC64_NONE);
15360 break;
15361 }
15362
15363 if (ELF64_R_TYPE (rel[1].r_info) == R_PPC64_PLTCALL)
15364 bfd_put_32 (output_bfd, NOP, contents + offset + 4);
15365
c213164a
AM
15366 if (r_type1 == R_PPC64_REL24_NOTOC
15367 || r_type1 == R_PPC64_PLTCALL_NOTOC)
15368 {
15369 r_type = R_PPC64_NONE;
15370 insn2 = NOP;
15371 }
15372 else
15373 {
15374 rel->r_offset = offset + d_offset;
15375 r_symndx = STN_UNDEF;
15376 r_type = R_PPC64_TPREL16_LO;
15377 rel->r_addend = htab->elf.tls_sec->vma + DTP_OFFSET;
15378 insn2 = 0x38630000; /* addi 3,3,0 */
15379 }
727fc41e 15380 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
727fc41e
AM
15381 /* Zap the reloc on the _tls_get_addr call too. */
15382 BFD_ASSERT (offset == rel[1].r_offset);
f58d5a2d 15383 rel[1].r_info = ELF64_R_INFO (STN_UNDEF, R_PPC64_NONE);
95f0d0d2 15384 bfd_put_32 (input_bfd, insn2, contents + offset);
c213164a
AM
15385 if (r_type != R_PPC64_NONE)
15386 goto again;
727fc41e
AM
15387 }
15388 break;
15389
411e1bfb 15390 case R_PPC64_DTPMOD64:
951fd09b
AM
15391 if (rel + 1 < relend
15392 && rel[1].r_info == ELF64_R_INFO (r_symndx, R_PPC64_DTPREL64)
15393 && rel[1].r_offset == rel->r_offset + 8)
411e1bfb 15394 {
951fd09b
AM
15395 if ((tls_mask & TLS_GD) == 0)
15396 {
15397 rel[1].r_info = ELF64_R_INFO (r_symndx, R_PPC64_NONE);
b00a0a86 15398 if ((tls_mask & TLS_GDIE) != 0)
951fd09b
AM
15399 r_type = R_PPC64_TPREL64;
15400 else
15401 {
4ce794b7 15402 bfd_put_64 (output_bfd, 1, contents + rel->r_offset);
951fd09b
AM
15403 r_type = R_PPC64_NONE;
15404 }
15405 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
15406 }
15407 }
15408 else
15409 {
15410 if ((tls_mask & TLS_LD) == 0)
411e1bfb 15411 {
4ce794b7 15412 bfd_put_64 (output_bfd, 1, contents + rel->r_offset);
411e1bfb 15413 r_type = R_PPC64_NONE;
951fd09b 15414 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
411e1bfb 15415 }
411e1bfb
AM
15416 }
15417 break;
15418
15419 case R_PPC64_TPREL64:
951fd09b 15420 if ((tls_mask & TLS_TPREL) == 0)
411e1bfb
AM
15421 {
15422 r_type = R_PPC64_NONE;
15423 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
15424 }
15425 break;
52a82034 15426
006589cf
AM
15427 case R_PPC64_ENTRY:
15428 relocation = TOCstart + htab->sec_info[input_section->id].toc_off;
15429 if (!bfd_link_pic (info)
15430 && !info->traditional_format
15431 && relocation + 0x80008000 <= 0xffffffff)
15432 {
15433 unsigned int insn1, insn2;
15434
15435 insn1 = bfd_get_32 (input_bfd, contents + rel->r_offset);
15436 insn2 = bfd_get_32 (input_bfd, contents + rel->r_offset + 4);
15437 if ((insn1 & ~0xfffc) == LD_R2_0R12
15438 && insn2 == ADD_R2_R2_R12)
15439 {
95f0d0d2 15440 bfd_put_32 (input_bfd,
006589cf
AM
15441 LIS_R2 + PPC_HA (relocation),
15442 contents + rel->r_offset);
95f0d0d2 15443 bfd_put_32 (input_bfd,
006589cf
AM
15444 ADDI_R2_R2 + PPC_LO (relocation),
15445 contents + rel->r_offset + 4);
15446 }
15447 }
15448 else
15449 {
15450 relocation -= (rel->r_offset
15451 + input_section->output_offset
15452 + input_section->output_section->vma);
15453 if (relocation + 0x80008000 <= 0xffffffff)
15454 {
15455 unsigned int insn1, insn2;
15456
15457 insn1 = bfd_get_32 (input_bfd, contents + rel->r_offset);
15458 insn2 = bfd_get_32 (input_bfd, contents + rel->r_offset + 4);
15459 if ((insn1 & ~0xfffc) == LD_R2_0R12
15460 && insn2 == ADD_R2_R2_R12)
15461 {
95f0d0d2 15462 bfd_put_32 (input_bfd,
006589cf
AM
15463 ADDIS_R2_R12 + PPC_HA (relocation),
15464 contents + rel->r_offset);
95f0d0d2 15465 bfd_put_32 (input_bfd,
006589cf
AM
15466 ADDI_R2_R2 + PPC_LO (relocation),
15467 contents + rel->r_offset + 4);
15468 }
15469 }
15470 }
15471 break;
15472
52a82034
AM
15473 case R_PPC64_REL16_HA:
15474 /* If we are generating a non-PIC executable, edit
15475 . 0: addis 2,12,.TOC.-0b@ha
15476 . addi 2,2,.TOC.-0b@l
15477 used by ELFv2 global entry points to set up r2, to
15478 . lis 2,.TOC.@ha
15479 . addi 2,2,.TOC.@l
15480 if .TOC. is in range. */
0e1862bb 15481 if (!bfd_link_pic (info)
810d4e75 15482 && !info->traditional_format
006589cf 15483 && !htab->opd_abi
4f038ee5 15484 && rel->r_addend == d_offset
52a82034
AM
15485 && h != NULL && &h->elf == htab->elf.hgot
15486 && rel + 1 < relend
15487 && rel[1].r_info == ELF64_R_INFO (r_symndx, R_PPC64_REL16_LO)
15488 && rel[1].r_offset == rel->r_offset + 4
15489 && rel[1].r_addend == rel->r_addend + 4
15490 && relocation + 0x80008000 <= 0xffffffff)
15491 {
15492 unsigned int insn1, insn2;
4a421c53 15493 offset = rel->r_offset - d_offset;
95f0d0d2
AM
15494 insn1 = bfd_get_32 (input_bfd, contents + offset);
15495 insn2 = bfd_get_32 (input_bfd, contents + offset + 4);
006589cf
AM
15496 if ((insn1 & 0xffff0000) == ADDIS_R2_R12
15497 && (insn2 & 0xffff0000) == ADDI_R2_R2)
52a82034
AM
15498 {
15499 r_type = R_PPC64_ADDR16_HA;
15500 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
15501 rel->r_addend -= d_offset;
15502 rel[1].r_info = ELF64_R_INFO (r_symndx, R_PPC64_ADDR16_LO);
15503 rel[1].r_addend -= d_offset + 4;
95f0d0d2 15504 bfd_put_32 (input_bfd, LIS_R2, contents + offset);
52a82034
AM
15505 }
15506 }
15507 break;
411e1bfb
AM
15508 }
15509
15510 /* Handle other relocations that tweak non-addend part of insn. */
86c76c7b 15511 insn = 0;
b25116a9
AM
15512 max_br_offset = 1 << 25;
15513 addend = rel->r_addend;
bc30df16 15514 reloc_dest = DEST_NORMAL;
65f38f15 15515 switch (r_type)
5bd4f169
AM
15516 {
15517 default:
65f38f15 15518 break;
5bd4f169 15519
3b421ab3
AM
15520 case R_PPC64_TOCSAVE:
15521 if (relocation + addend == (rel->r_offset
15522 + input_section->output_offset
15523 + input_section->output_section->vma)
15524 && tocsave_find (htab, NO_INSERT,
15525 &local_syms, rel, input_bfd))
15526 {
15527 insn = bfd_get_32 (input_bfd, contents + rel->r_offset);
15528 if (insn == NOP
15529 || insn == CROR_151515 || insn == CROR_313131)
a078d95a
AM
15530 bfd_put_32 (input_bfd,
15531 STD_R2_0R1 + STK_TOC (htab),
3b421ab3
AM
15532 contents + rel->r_offset);
15533 }
15534 break;
15535
65f38f15
AM
15536 /* Branch taken prediction relocations. */
15537 case R_PPC64_ADDR14_BRTAKEN:
15538 case R_PPC64_REL14_BRTAKEN:
cedb70c5 15539 insn = 0x01 << 21; /* 'y' or 't' bit, lowest bit of BO field. */
1a0670f3 15540 /* Fall through. */
65f38f15 15541
86c76c7b 15542 /* Branch not taken prediction relocations. */
65f38f15
AM
15543 case R_PPC64_ADDR14_BRNTAKEN:
15544 case R_PPC64_REL14_BRNTAKEN:
95f0d0d2 15545 insn |= bfd_get_32 (input_bfd,
411e1bfb 15546 contents + rel->r_offset) & ~(0x01 << 21);
1a0670f3 15547 /* Fall through. */
86c76c7b 15548
b25116a9
AM
15549 case R_PPC64_REL14:
15550 max_br_offset = 1 << 15;
1a0670f3 15551 /* Fall through. */
5bd4f169 15552
65f38f15 15553 case R_PPC64_REL24:
05d0e962 15554 case R_PPC64_REL24_NOTOC:
23cedd1d 15555 case R_PPC64_PLTCALL:
5663e321 15556 case R_PPC64_PLTCALL_NOTOC:
ad8e1ba5
AM
15557 /* Calls to functions with a different TOC, such as calls to
15558 shared objects, need to alter the TOC pointer. This is
15559 done using a linkage stub. A REL24 branching to these
15560 linkage stubs needs to be followed by a nop, as the nop
15561 will be replaced with an instruction to restore the TOC
15562 base pointer. */
8387904d 15563 fdh = h;
b31867b6
AM
15564 if (h != NULL
15565 && h->oh != NULL
15566 && h->oh->is_func_descriptor)
15567 fdh = ppc_follow_link (h->oh);
31c76678
DK
15568 stub_entry = ppc_get_stub_entry (input_section, sec, fdh, &orig_rel,
15569 htab);
5663e321
AM
15570 if ((r_type == R_PPC64_PLTCALL
15571 || r_type == R_PPC64_PLTCALL_NOTOC)
23cedd1d 15572 && stub_entry != NULL
05d0e962
AM
15573 && stub_entry->stub_type >= ppc_stub_plt_call
15574 && stub_entry->stub_type <= ppc_stub_plt_call_both)
23cedd1d
AM
15575 stub_entry = NULL;
15576
6abec6bc 15577 if (stub_entry != NULL
d0abeec8
AM
15578 && ((stub_entry->stub_type >= ppc_stub_plt_call
15579 && stub_entry->stub_type <= ppc_stub_plt_call_both)
ad8e1ba5 15580 || stub_entry->stub_type == ppc_stub_plt_branch_r2off
05d0e962
AM
15581 || stub_entry->stub_type == ppc_stub_plt_branch_both
15582 || stub_entry->stub_type == ppc_stub_long_branch_r2off
15583 || stub_entry->stub_type == ppc_stub_long_branch_both))
41bd81ab 15584 {
b25116a9 15585 bfd_boolean can_plt_call = FALSE;
721956f4 15586
6e1816be
AM
15587 if (stub_entry->stub_type == ppc_stub_plt_call
15588 && !htab->opd_abi
15589 && htab->params->plt_localentry0 != 0
15590 && is_elfv2_localentry0 (&h->elf))
15591 {
15592 /* The function doesn't use or change r2. */
15593 can_plt_call = TRUE;
15594 }
05d0e962
AM
15595 else if (r_type == R_PPC64_REL24_NOTOC)
15596 {
15597 /* NOTOC calls don't need to restore r2. */
15598 can_plt_call = TRUE;
15599 }
6e1816be 15600
f378ab09 15601 /* All of these stubs may modify r2, so there must be a
ba8ca3e7
AM
15602 branch and link followed by a nop. The nop is
15603 replaced by an insn to restore r2. */
6e1816be 15604 else if (rel->r_offset + 8 <= input_section->size)
41bd81ab 15605 {
ba8ca3e7
AM
15606 unsigned long br;
15607
15608 br = bfd_get_32 (input_bfd,
15609 contents + rel->r_offset);
15610 if ((br & 1) != 0)
41bd81ab 15611 {
ba8ca3e7
AM
15612 unsigned long nop;
15613
15614 nop = bfd_get_32 (input_bfd,
15615 contents + rel->r_offset + 4);
23cedd1d
AM
15616 if (nop == LD_R2_0R1 + STK_TOC (htab))
15617 can_plt_call = TRUE;
15618 else if (nop == NOP
15619 || nop == CROR_151515
15620 || nop == CROR_313131)
a7f2871e 15621 {
ba8ca3e7 15622 if (h != NULL
ed7007c1 15623 && is_tls_get_addr (&h->elf, htab)
7c9cf415 15624 && htab->params->tls_get_addr_opt)
ba8ca3e7
AM
15625 {
15626 /* Special stub used, leave nop alone. */
15627 }
15628 else
a078d95a
AM
15629 bfd_put_32 (input_bfd,
15630 LD_R2_0R1 + STK_TOC (htab),
ba8ca3e7
AM
15631 contents + rel->r_offset + 4);
15632 can_plt_call = TRUE;
a7f2871e 15633 }
41bd81ab 15634 }
5bd4f169 15635 }
721956f4 15636
ba8ca3e7 15637 if (!can_plt_call && h != NULL)
721956f4 15638 {
ba8ca3e7
AM
15639 const char *name = h->elf.root.root.string;
15640
15641 if (*name == '.')
15642 ++name;
15643
15644 if (strncmp (name, "__libc_start_main", 17) == 0
15645 && (name[17] == 0 || name[17] == '@'))
6ab189d5 15646 {
ba8ca3e7
AM
15647 /* Allow crt1 branch to go via a toc adjusting
15648 stub. Other calls that never return could do
15649 the same, if we could detect such. */
b25116a9 15650 can_plt_call = TRUE;
6ab189d5 15651 }
ba8ca3e7
AM
15652 }
15653
15654 if (!can_plt_call)
15655 {
15656 /* g++ as of 20130507 emits self-calls without a
15657 following nop. This is arguably wrong since we
15658 have conflicting information. On the one hand a
15659 global symbol and on the other a local call
15660 sequence, but don't error for this special case.
15661 It isn't possible to cheaply verify we have
15662 exactly such a call. Allow all calls to the same
15663 section. */
15664 asection *code_sec = sec;
15665
15666 if (get_opd_info (sec) != NULL)
ad8e1ba5 15667 {
ba8ca3e7
AM
15668 bfd_vma off = (relocation + addend
15669 - sec->output_section->vma
15670 - sec->output_offset);
bc30df16 15671
ba8ca3e7 15672 opd_entry_value (sec, off, &code_sec, NULL, FALSE);
ad8e1ba5 15673 }
ba8ca3e7
AM
15674 if (code_sec == input_section)
15675 can_plt_call = TRUE;
15676 }
15677
15678 if (!can_plt_call)
15679 {
05d0e962
AM
15680 if (stub_entry->stub_type >= ppc_stub_plt_call
15681 && stub_entry->stub_type <= ppc_stub_plt_call_both)
4805fc55 15682 info->callbacks->einfo
695344c0 15683 /* xgettext:c-format */
c1c8c1ef 15684 (_("%H: call to `%pT' lacks nop, can't restore toc; "
f53ad3cf 15685 "(plt call stub)\n"),
4805fc55
AM
15686 input_bfd, input_section, rel->r_offset, sym_name);
15687 else
15688 info->callbacks->einfo
695344c0 15689 /* xgettext:c-format */
c1c8c1ef 15690 (_("%H: call to `%pT' lacks nop, can't restore toc; "
f53ad3cf 15691 "(toc save/adjust stub)\n"),
4805fc55 15692 input_bfd, input_section, rel->r_offset, sym_name);
ba8ca3e7
AM
15693
15694 bfd_set_error (bfd_error_bad_value);
15695 ret = FALSE;
721956f4
AM
15696 }
15697
b25116a9 15698 if (can_plt_call
05d0e962
AM
15699 && stub_entry->stub_type >= ppc_stub_plt_call
15700 && stub_entry->stub_type <= ppc_stub_plt_call_both)
b25116a9
AM
15701 unresolved_reloc = FALSE;
15702 }
15703
6abec6bc
AM
15704 if ((stub_entry == NULL
15705 || stub_entry->stub_type == ppc_stub_long_branch
15706 || stub_entry->stub_type == ppc_stub_plt_branch)
8387904d
AM
15707 && get_opd_info (sec) != NULL)
15708 {
15709 /* The branch destination is the value of the opd entry. */
4cc603a5
AM
15710 bfd_vma off = (relocation + addend
15711 - sec->output_section->vma
15712 - sec->output_offset);
aef36ac1 15713 bfd_vma dest = opd_entry_value (sec, off, NULL, NULL, FALSE);
8387904d
AM
15714 if (dest != (bfd_vma) -1)
15715 {
15716 relocation = dest;
15717 addend = 0;
bc30df16 15718 reloc_dest = DEST_OPD;
8387904d
AM
15719 }
15720 }
15721
b25116a9
AM
15722 /* If the branch is out of reach we ought to have a long
15723 branch stub. */
15724 from = (rel->r_offset
15725 + input_section->output_offset
15726 + input_section->output_section->vma);
15727
6911b7dc
AM
15728 relocation += PPC64_LOCAL_ENTRY_OFFSET (fdh
15729 ? fdh->elf.other
15730 : sym->st_other);
15731
6abec6bc
AM
15732 if (stub_entry != NULL
15733 && (stub_entry->stub_type == ppc_stub_long_branch
15734 || stub_entry->stub_type == ppc_stub_plt_branch)
15735 && (r_type == R_PPC64_ADDR14_BRTAKEN
15736 || r_type == R_PPC64_ADDR14_BRNTAKEN
15737 || (relocation + addend - from + max_br_offset
15738 < 2 * max_br_offset)))
15739 /* Don't use the stub if this branch is in range. */
15740 stub_entry = NULL;
b25116a9 15741
05d0e962
AM
15742 if (stub_entry != NULL
15743 && (stub_entry->stub_type == ppc_stub_long_branch_notoc
15744 || stub_entry->stub_type == ppc_stub_long_branch_both
15745 || stub_entry->stub_type == ppc_stub_plt_branch_notoc
15746 || stub_entry->stub_type == ppc_stub_plt_branch_both)
15747 && (r_type != R_PPC64_REL24_NOTOC
15748 || ((fdh ? fdh->elf.other : sym->st_other)
4a4e7361 15749 & STO_PPC64_LOCAL_MASK) <= 1 << STO_PPC64_LOCAL_BIT)
05d0e962
AM
15750 && (relocation + addend - from + max_br_offset
15751 < 2 * max_br_offset))
15752 stub_entry = NULL;
15753
15754 if (stub_entry != NULL
15755 && (stub_entry->stub_type == ppc_stub_long_branch_r2off
15756 || stub_entry->stub_type == ppc_stub_long_branch_both
15757 || stub_entry->stub_type == ppc_stub_plt_branch_r2off
15758 || stub_entry->stub_type == ppc_stub_plt_branch_both)
15759 && r_type == R_PPC64_REL24_NOTOC
15760 && (relocation + addend - from + max_br_offset
15761 < 2 * max_br_offset))
15762 stub_entry = NULL;
15763
b25116a9
AM
15764 if (stub_entry != NULL)
15765 {
15766 /* Munge up the value and addend so that we call the stub
15767 rather than the procedure directly. */
a4b6fadd
AM
15768 asection *stub_sec = stub_entry->group->stub_sec;
15769
15770 if (stub_entry->stub_type == ppc_stub_save_res)
15771 relocation += (stub_sec->output_offset
15772 + stub_sec->output_section->vma
15773 + stub_sec->size - htab->sfpr->size
15774 - htab->sfpr->output_offset
15775 - htab->sfpr->output_section->vma);
15776 else
15777 relocation = (stub_entry->stub_offset
15778 + stub_sec->output_offset
15779 + stub_sec->output_section->vma);
b25116a9 15780 addend = 0;
bc30df16 15781 reloc_dest = DEST_STUB;
3b421ab3 15782
05d0e962
AM
15783 if (((stub_entry->stub_type == ppc_stub_plt_call
15784 && ALWAYS_EMIT_R2SAVE)
15785 || stub_entry->stub_type == ppc_stub_plt_call_r2save
15786 || stub_entry->stub_type == ppc_stub_plt_call_both)
e81b4c93 15787 && !(h != NULL
ed7007c1 15788 && is_tls_get_addr (&h->elf, htab)
e81b4c93 15789 && htab->params->tls_get_addr_opt)
3b421ab3
AM
15790 && rel + 1 < relend
15791 && rel[1].r_offset == rel->r_offset + 4
15792 && ELF64_R_TYPE (rel[1].r_info) == R_PPC64_TOCSAVE)
15793 relocation += 4;
05d0e962
AM
15794 else if ((stub_entry->stub_type == ppc_stub_long_branch_both
15795 || stub_entry->stub_type == ppc_stub_plt_branch_both
15796 || stub_entry->stub_type == ppc_stub_plt_call_both)
15797 && r_type == R_PPC64_REL24_NOTOC)
15798 relocation += 4;
5663e321
AM
15799
15800 if (r_type == R_PPC64_REL24_NOTOC
15801 && (stub_entry->stub_type == ppc_stub_plt_call_notoc
15802 || stub_entry->stub_type == ppc_stub_plt_call_both))
15803 htab->notoc_plt = 1;
b25116a9
AM
15804 }
15805
15806 if (insn != 0)
15807 {
794e51c0 15808 if (is_isa_v2)
721956f4 15809 {
b25116a9
AM
15810 /* Set 'a' bit. This is 0b00010 in BO field for branch
15811 on CR(BI) insns (BO == 001at or 011at), and 0b01000
15812 for branch on CTR insns (BO == 1a00t or 1a01t). */
15813 if ((insn & (0x14 << 21)) == (0x04 << 21))
15814 insn |= 0x02 << 21;
15815 else if ((insn & (0x14 << 21)) == (0x10 << 21))
15816 insn |= 0x08 << 21;
15817 else
15818 break;
15819 }
15820 else
15821 {
15822 /* Invert 'y' bit if not the default. */
4cc603a5 15823 if ((bfd_signed_vma) (relocation + addend - from) < 0)
b25116a9 15824 insn ^= 0x01 << 21;
721956f4 15825 }
b25116a9 15826
95f0d0d2 15827 bfd_put_32 (input_bfd, insn, contents + rel->r_offset);
5bd4f169 15828 }
e86ce104 15829
06da1e8e
AM
15830 /* NOP out calls to undefined weak functions.
15831 We can thus call a weak function without first
15832 checking whether the function is defined. */
b25116a9 15833 else if (h != NULL
039b3fef 15834 && h->elf.root.type == bfd_link_hash_undefweak
766bc656 15835 && h->elf.dynindx == -1
05d0e962
AM
15836 && (r_type == R_PPC64_REL24
15837 || r_type == R_PPC64_REL24_NOTOC)
b25116a9 15838 && relocation == 0
4cc603a5 15839 && addend == 0)
e86ce104 15840 {
95f0d0d2 15841 bfd_put_32 (input_bfd, NOP, contents + rel->r_offset);
c316a17c 15842 goto copy_reloc;
e86ce104 15843 }
65f38f15 15844 break;
066f4018
AM
15845
15846 case R_PPC64_GOT16_DS:
15847 from = TOCstart + htab->sec_info[input_section->id].toc_off;
15848 if (relocation + addend - from + 0x8000 < 0x10000
15849 && SYMBOL_REFERENCES_LOCAL (info, &h->elf))
15850 {
15851 insn = bfd_get_32 (input_bfd, contents + (rel->r_offset & ~3));
2365f8d7 15852 if ((insn & (0x3fu << 26 | 0x3)) == 58u << 26 /* ld */)
066f4018
AM
15853 {
15854 insn += (14u << 26) - (58u << 26);
15855 bfd_put_32 (input_bfd, insn, contents + (rel->r_offset & ~3));
15856 r_type = R_PPC64_TOC16;
15857 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
15858 }
15859 }
15860 break;
15861
15862 case R_PPC64_GOT16_LO_DS:
15863 case R_PPC64_GOT16_HA:
15864 from = TOCstart + htab->sec_info[input_section->id].toc_off;
15865 if (relocation + addend - from + 0x80008000ULL < 0x100000000ULL
15866 && SYMBOL_REFERENCES_LOCAL (info, &h->elf))
15867 {
15868 insn = bfd_get_32 (input_bfd, contents + (rel->r_offset & ~3));
2365f8d7 15869 if ((insn & (0x3fu << 26 | 0x3)) == 58u << 26 /* ld */)
066f4018
AM
15870 {
15871 insn += (14u << 26) - (58u << 26);
15872 bfd_put_32 (input_bfd, insn, contents + (rel->r_offset & ~3));
15873 r_type = R_PPC64_TOC16_LO;
15874 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
15875 }
2365f8d7 15876 else if ((insn & (0x3fu << 26)) == 15u << 26 /* addis */)
066f4018
AM
15877 {
15878 r_type = R_PPC64_TOC16_HA;
15879 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
15880 }
15881 }
15882 break;
4a421c53
AM
15883
15884 case R_PPC64_GOT_PCREL34:
15885 from = (rel->r_offset
15886 + input_section->output_section->vma
15887 + input_section->output_offset);
15888 if (relocation - from + (1ULL << 33) < 1ULL << 34
15889 && SYMBOL_REFERENCES_LOCAL (info, &h->elf))
15890 {
15891 offset = rel->r_offset;
15892 pinsn = bfd_get_32 (input_bfd, contents + offset);
15893 pinsn <<= 32;
15894 pinsn |= bfd_get_32 (input_bfd, contents + offset + 4);
15895 if ((pinsn & ((-1ULL << 50) | (63ULL << 26)))
15896 == ((1ULL << 58) | (1ULL << 52) | (57ULL << 26) /* pld */))
15897 {
15898 /* Replace with paddi. */
15899 pinsn += (2ULL << 56) + (14ULL << 26) - (57ULL << 26);
15900 r_type = R_PPC64_PCREL34;
15901 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
15902 bfd_put_32 (input_bfd, pinsn >> 32, contents + offset);
15903 bfd_put_32 (input_bfd, pinsn, contents + offset + 4);
15904 goto pcrelopt;
15905 }
15906 }
15907 break;
15908
15909 case R_PPC64_PCREL34:
15910 if (SYMBOL_REFERENCES_LOCAL (info, &h->elf))
15911 {
15912 offset = rel->r_offset;
15913 pinsn = bfd_get_32 (input_bfd, contents + offset);
15914 pinsn <<= 32;
15915 pinsn |= bfd_get_32 (input_bfd, contents + offset + 4);
15916 if ((pinsn & ((-1ULL << 50) | (63ULL << 26)))
15917 == ((1ULL << 58) | (2ULL << 56) | (1ULL << 52)
15918 | (14ULL << 26) /* paddi */))
15919 {
15920 pcrelopt:
15921 if (rel + 1 < relend
15922 && rel[1].r_offset == offset
15923 && rel[1].r_info == ELF64_R_INFO (0, R_PPC64_PCREL_OPT))
15924 {
15925 bfd_vma off2 = rel[1].r_addend;
15926 if (off2 == 0)
15927 /* zero means next insn. */
15928 off2 = 8;
15929 off2 += offset;
15930 if (off2 + 4 <= input_section->size)
15931 {
15932 uint64_t pinsn2;
dd9b12c2 15933 bfd_signed_vma addend_off;
4a421c53
AM
15934 pinsn2 = bfd_get_32 (input_bfd, contents + off2);
15935 pinsn2 <<= 32;
15936 if ((pinsn2 & (63ULL << 58)) == 1ULL << 58)
77486630
AM
15937 {
15938 if (off2 + 8 > input_section->size)
15939 break;
15940 pinsn2 |= bfd_get_32 (input_bfd,
15941 contents + off2 + 4);
15942 }
dd9b12c2 15943 if (xlate_pcrel_opt (&pinsn, &pinsn2, &addend_off))
4a421c53 15944 {
dd9b12c2
AM
15945 addend += addend_off;
15946 rel->r_addend = addend;
4a421c53
AM
15947 bfd_put_32 (input_bfd, pinsn >> 32,
15948 contents + offset);
15949 bfd_put_32 (input_bfd, pinsn,
15950 contents + offset + 4);
15951 bfd_put_32 (input_bfd, pinsn2 >> 32,
15952 contents + off2);
77486630
AM
15953 if ((pinsn2 & (63ULL << 58)) == 1ULL << 58)
15954 bfd_put_32 (input_bfd, pinsn2,
15955 contents + off2 + 4);
4a421c53
AM
15956 }
15957 }
15958 }
15959 }
15960 }
15961 break;
65f38f15 15962 }
5bd4f169 15963
411e1bfb 15964 tls_type = 0;
23cedd1d 15965 save_unresolved_reloc = unresolved_reloc;
65f38f15
AM
15966 switch (r_type)
15967 {
15968 default:
cf97bcb0
AM
15969 /* xgettext:c-format */
15970 _bfd_error_handler (_("%pB: %s unsupported"),
15971 input_bfd, ppc64_elf_howto_table[r_type]->name);
5bd4f169 15972
65f38f15 15973 bfd_set_error (bfd_error_bad_value);
b34976b6 15974 ret = FALSE;
c316a17c 15975 goto copy_reloc;
5bd4f169 15976
65f38f15 15977 case R_PPC64_NONE:
411e1bfb 15978 case R_PPC64_TLS:
727fc41e
AM
15979 case R_PPC64_TLSGD:
15980 case R_PPC64_TLSLD:
3b421ab3 15981 case R_PPC64_TOCSAVE:
04c9666a
AM
15982 case R_PPC64_GNU_VTINHERIT:
15983 case R_PPC64_GNU_VTENTRY:
006589cf 15984 case R_PPC64_ENTRY:
4a421c53 15985 case R_PPC64_PCREL_OPT:
c316a17c 15986 goto copy_reloc;
5bd4f169
AM
15987
15988 /* GOT16 relocations. Like an ADDR16 using the symbol's
15989 address in the GOT as relocation value instead of the
411e1bfb 15990 symbol's value itself. Also, create a GOT entry for the
5bd4f169 15991 symbol and put the symbol value there. */
411e1bfb
AM
15992 case R_PPC64_GOT_TLSGD16:
15993 case R_PPC64_GOT_TLSGD16_LO:
15994 case R_PPC64_GOT_TLSGD16_HI:
15995 case R_PPC64_GOT_TLSGD16_HA:
c213164a 15996 case R_PPC64_GOT_TLSGD34:
951fd09b 15997 tls_type = TLS_TLS | TLS_GD;
411e1bfb
AM
15998 goto dogot;
15999
16000 case R_PPC64_GOT_TLSLD16:
16001 case R_PPC64_GOT_TLSLD16_LO:
16002 case R_PPC64_GOT_TLSLD16_HI:
16003 case R_PPC64_GOT_TLSLD16_HA:
c213164a 16004 case R_PPC64_GOT_TLSLD34:
951fd09b 16005 tls_type = TLS_TLS | TLS_LD;
411e1bfb
AM
16006 goto dogot;
16007
16008 case R_PPC64_GOT_TPREL16_DS:
16009 case R_PPC64_GOT_TPREL16_LO_DS:
16010 case R_PPC64_GOT_TPREL16_HI:
16011 case R_PPC64_GOT_TPREL16_HA:
c213164a 16012 case R_PPC64_GOT_TPREL34:
411e1bfb
AM
16013 tls_type = TLS_TLS | TLS_TPREL;
16014 goto dogot;
16015
16016 case R_PPC64_GOT_DTPREL16_DS:
16017 case R_PPC64_GOT_DTPREL16_LO_DS:
16018 case R_PPC64_GOT_DTPREL16_HI:
16019 case R_PPC64_GOT_DTPREL16_HA:
c213164a 16020 case R_PPC64_GOT_DTPREL34:
411e1bfb
AM
16021 tls_type = TLS_TLS | TLS_DTPREL;
16022 goto dogot;
16023
65f38f15
AM
16024 case R_PPC64_GOT16:
16025 case R_PPC64_GOT16_LO:
16026 case R_PPC64_GOT16_HI:
16027 case R_PPC64_GOT16_HA:
16028 case R_PPC64_GOT16_DS:
16029 case R_PPC64_GOT16_LO_DS:
5663e321 16030 case R_PPC64_GOT_PCREL34:
411e1bfb 16031 dogot:
5bd4f169
AM
16032 {
16033 /* Relocation is to the entry for this symbol in the global
16034 offset table. */
e717da7e 16035 asection *got;
d881513a 16036 bfd_vma *offp;
5bd4f169 16037 bfd_vma off;
d881513a 16038 unsigned long indx = 0;
927be08e 16039 struct got_entry *ent;
65f38f15 16040
d881513a 16041 if (tls_type == (TLS_TLS | TLS_LD)
f749f26e 16042 && SYMBOL_REFERENCES_LOCAL (info, &h->elf))
927be08e 16043 ent = ppc64_tlsld_got (input_bfd);
411e1bfb 16044 else
5bd4f169 16045 {
d881513a
AM
16046 if (h != NULL)
16047 {
f0158f44
AM
16048 if (!htab->elf.dynamic_sections_created
16049 || h->elf.dynindx == -1
16050 || SYMBOL_REFERENCES_LOCAL (info, &h->elf)
21d68fcd 16051 || UNDEFWEAK_NO_DYNAMIC_RELOC (info, &h->elf))
d881513a
AM
16052 /* This is actually a static link, or it is a
16053 -Bsymbolic link and the symbol is defined
16054 locally, or the symbol was forced to be local
16055 because of a version file. */
16056 ;
16057 else
16058 {
039b3fef 16059 indx = h->elf.dynindx;
d881513a
AM
16060 unresolved_reloc = FALSE;
16061 }
039b3fef 16062 ent = h->elf.got.glist;
d881513a 16063 }
411e1bfb 16064 else
5bd4f169 16065 {
d881513a
AM
16066 if (local_got_ents == NULL)
16067 abort ();
16068 ent = local_got_ents[r_symndx];
5bd4f169 16069 }
d881513a
AM
16070
16071 for (; ent != NULL; ent = ent->next)
133a1f60 16072 if (ent->addend == orig_rel.r_addend
e717da7e 16073 && ent->owner == input_bfd
d881513a
AM
16074 && ent->tls_type == tls_type)
16075 break;
5bd4f169 16076 }
411e1bfb 16077
927be08e
AM
16078 if (ent == NULL)
16079 abort ();
16080 if (ent->is_indirect)
16081 ent = ent->got.ent;
16082 offp = &ent->got.offset;
16083 got = ppc64_elf_tdata (ent->owner)->got;
e717da7e
AM
16084 if (got == NULL)
16085 abort ();
16086
411e1bfb
AM
16087 /* The offset must always be a multiple of 8. We use the
16088 least significant bit to record whether we have already
16089 processed this entry. */
d881513a 16090 off = *offp;
411e1bfb
AM
16091 if ((off & 1) != 0)
16092 off &= ~1;
5bd4f169
AM
16093 else
16094 {
411e1bfb
AM
16095 /* Generate relocs for the dynamic linker, except in
16096 the case of TLSLD where we'll use one entry per
16097 module. */
25f23106
AM
16098 asection *relgot;
16099 bfd_boolean ifunc;
e717da7e 16100
d881513a 16101 *offp = off | 1;
25f23106
AM
16102 relgot = NULL;
16103 ifunc = (h != NULL
16104 ? h->elf.type == STT_GNU_IFUNC
16105 : ELF_ST_TYPE (sym->st_info) == STT_GNU_IFUNC);
19e08130 16106 if (ifunc)
82e66161
AM
16107 {
16108 relgot = htab->elf.irelplt;
16109 if (indx == 0)
16110 htab->local_ifunc_resolver = 1;
16111 else if (is_static_defined (&h->elf))
16112 htab->maybe_local_ifunc_resolver = 1;
16113 }
f0158f44
AM
16114 else if (indx != 0
16115 || (bfd_link_pic (info)
16116 && (h == NULL
f749f26e
AM
16117 || !UNDEFWEAK_NO_DYNAMIC_RELOC (info, &h->elf))
16118 && !(tls_type != 0
f15d0b54
AM
16119 && bfd_link_executable (info)
16120 && SYMBOL_REFERENCES_LOCAL (info, &h->elf))))
19e08130 16121 relgot = ppc64_elf_tdata (ent->owner)->relgot;
25f23106 16122 if (relgot != NULL)
5bd4f169 16123 {
e717da7e
AM
16124 outrel.r_offset = (got->output_section->vma
16125 + got->output_offset
411e1bfb 16126 + off);
133a1f60 16127 outrel.r_addend = orig_rel.r_addend;
d881513a 16128 if (tls_type & (TLS_LD | TLS_GD))
5bd4f169 16129 {
411e1bfb 16130 outrel.r_addend = 0;
e515b051 16131 outrel.r_info = ELF64_R_INFO (indx, R_PPC64_DTPMOD64);
d881513a
AM
16132 if (tls_type == (TLS_TLS | TLS_GD))
16133 {
e717da7e
AM
16134 loc = relgot->contents;
16135 loc += (relgot->reloc_count++
d881513a
AM
16136 * sizeof (Elf64_External_Rela));
16137 bfd_elf64_swap_reloca_out (output_bfd,
16138 &outrel, loc);
e515b051 16139 outrel.r_offset += 8;
133a1f60 16140 outrel.r_addend = orig_rel.r_addend;
d881513a
AM
16141 outrel.r_info
16142 = ELF64_R_INFO (indx, R_PPC64_DTPREL64);
d881513a 16143 }
411e1bfb 16144 }
951fd09b 16145 else if (tls_type == (TLS_TLS | TLS_DTPREL))
411e1bfb 16146 outrel.r_info = ELF64_R_INFO (indx, R_PPC64_DTPREL64);
951fd09b 16147 else if (tls_type == (TLS_TLS | TLS_TPREL))
411e1bfb 16148 outrel.r_info = ELF64_R_INFO (indx, R_PPC64_TPREL64);
25f23106
AM
16149 else if (indx != 0)
16150 outrel.r_info = ELF64_R_INFO (indx, R_PPC64_GLOB_DAT);
16151 else
81407a69 16152 {
25f23106
AM
16153 if (ifunc)
16154 outrel.r_info = ELF64_R_INFO (0, R_PPC64_IRELATIVE);
16155 else
16156 outrel.r_info = ELF64_R_INFO (0, R_PPC64_RELATIVE);
81407a69
AM
16157
16158 /* Write the .got section contents for the sake
16159 of prelink. */
e717da7e 16160 loc = got->contents + off;
23fbd6fa
JJ
16161 bfd_put_64 (output_bfd, outrel.r_addend + relocation,
16162 loc);
81407a69 16163 }
81407a69
AM
16164
16165 if (indx == 0 && tls_type != (TLS_TLS | TLS_LD))
e515b051
AM
16166 {
16167 outrel.r_addend += relocation;
16168 if (tls_type & (TLS_GD | TLS_DTPREL | TLS_TPREL))
989f9879
AM
16169 {
16170 if (htab->elf.tls_sec == NULL)
16171 outrel.r_addend = 0;
16172 else
16173 outrel.r_addend -= htab->elf.tls_sec->vma;
16174 }
e515b051 16175 }
e717da7e
AM
16176 loc = relgot->contents;
16177 loc += (relgot->reloc_count++
411e1bfb
AM
16178 * sizeof (Elf64_External_Rela));
16179 bfd_elf64_swap_reloca_out (output_bfd, &outrel, loc);
16180 }
16181
ad8e1ba5 16182 /* Init the .got section contents here if we're not
81407a69 16183 emitting a reloc. */
d881513a 16184 else
411e1bfb 16185 {
133a1f60 16186 relocation += orig_rel.r_addend;
f0158f44 16187 if (tls_type != 0)
411e1bfb 16188 {
989f9879
AM
16189 if (htab->elf.tls_sec == NULL)
16190 relocation = 0;
16191 else
16192 {
f0158f44
AM
16193 if (tls_type & TLS_LD)
16194 relocation = 0;
16195 else
16196 relocation -= htab->elf.tls_sec->vma + DTP_OFFSET;
676ee2b5 16197 if (tls_type & TLS_TPREL)
989f9879
AM
16198 relocation += DTP_OFFSET - TP_OFFSET;
16199 }
5bd4f169 16200
f0158f44 16201 if (tls_type & (TLS_GD | TLS_LD))
7b609f53
AM
16202 {
16203 bfd_put_64 (output_bfd, relocation,
e717da7e 16204 got->contents + off + 8);
676ee2b5 16205 relocation = 1;
7b609f53 16206 }
411e1bfb
AM
16207 }
16208 bfd_put_64 (output_bfd, relocation,
e717da7e 16209 got->contents + off);
5bd4f169
AM
16210 }
16211 }
16212
65f38f15
AM
16213 if (off >= (bfd_vma) -2)
16214 abort ();
16215
bf102f86 16216 relocation = got->output_section->vma + got->output_offset + off;
133a1f60 16217 addend = 0;
c213164a
AM
16218 if (!(r_type == R_PPC64_GOT_PCREL34
16219 || r_type == R_PPC64_GOT_TLSGD34
16220 || r_type == R_PPC64_GOT_TLSLD34
16221 || r_type == R_PPC64_GOT_TPREL34
16222 || r_type == R_PPC64_GOT_DTPREL34))
5663e321 16223 addend = -(TOCstart + htab->sec_info[input_section->id].toc_off);
5bd4f169 16224 }
65f38f15
AM
16225 break;
16226
16227 case R_PPC64_PLT16_HA:
16228 case R_PPC64_PLT16_HI:
16229 case R_PPC64_PLT16_LO:
08be3224 16230 case R_PPC64_PLT16_LO_DS:
5663e321
AM
16231 case R_PPC64_PLT_PCREL34:
16232 case R_PPC64_PLT_PCREL34_NOTOC:
65f38f15
AM
16233 case R_PPC64_PLT32:
16234 case R_PPC64_PLT64:
23cedd1d 16235 case R_PPC64_PLTSEQ:
5663e321 16236 case R_PPC64_PLTSEQ_NOTOC:
23cedd1d 16237 case R_PPC64_PLTCALL:
5663e321 16238 case R_PPC64_PLTCALL_NOTOC:
65f38f15
AM
16239 /* Relocation is to the entry for this symbol in the
16240 procedure linkage table. */
23cedd1d 16241 unresolved_reloc = TRUE;
cbf95972
AM
16242 {
16243 struct plt_entry **plt_list = NULL;
16244 if (h != NULL)
16245 plt_list = &h->elf.plt.plist;
16246 else if (local_got_ents != NULL)
16247 {
16248 struct plt_entry **local_plt = (struct plt_entry **)
16249 (local_got_ents + symtab_hdr->sh_info);
2d7ad24e 16250 plt_list = local_plt + r_symndx;
cbf95972
AM
16251 }
16252 if (plt_list)
16253 {
16254 struct plt_entry *ent;
65f38f15 16255
cbf95972
AM
16256 for (ent = *plt_list; ent != NULL; ent = ent->next)
16257 if (ent->plt.offset != (bfd_vma) -1
133a1f60 16258 && ent->addend == orig_rel.r_addend)
cbf95972
AM
16259 {
16260 asection *plt;
08be3224 16261 bfd_vma got;
cbf95972
AM
16262
16263 plt = htab->elf.splt;
16264 if (!htab->elf.dynamic_sections_created
16265 || h == NULL
16266 || h->elf.dynindx == -1)
2d7ad24e
AM
16267 {
16268 if (h != NULL
16269 ? h->elf.type == STT_GNU_IFUNC
16270 : ELF_ST_TYPE (sym->st_info) == STT_GNU_IFUNC)
16271 plt = htab->elf.iplt;
16272 else
16273 plt = htab->pltlocal;
16274 }
16275 relocation = (plt->output_section->vma
16276 + plt->output_offset
16277 + ent->plt.offset);
08be3224 16278 if (r_type == R_PPC64_PLT16_HA
2cdcc330
AM
16279 || r_type == R_PPC64_PLT16_HI
16280 || r_type == R_PPC64_PLT16_LO
16281 || r_type == R_PPC64_PLT16_LO_DS)
08be3224
AM
16282 {
16283 got = (elf_gp (output_bfd)
16284 + htab->sec_info[input_section->id].toc_off);
16285 relocation -= got;
16286 }
133a1f60 16287 addend = 0;
cbf95972
AM
16288 unresolved_reloc = FALSE;
16289 break;
16290 }
16291 }
16292 }
65f38f15 16293 break;
5bd4f169 16294
0b13192e
AM
16295 case R_PPC64_TOC:
16296 /* Relocation value is TOC base. */
16297 relocation = TOCstart;
cf35638d 16298 if (r_symndx == STN_UNDEF)
6f20ed8a 16299 relocation += htab->sec_info[input_section->id].toc_off;
8517fae7
AM
16300 else if (unresolved_reloc)
16301 ;
6f20ed8a
AM
16302 else if (sec != NULL && sec->id < htab->sec_info_arr_size)
16303 relocation += htab->sec_info[sec->id].toc_off;
0b13192e
AM
16304 else
16305 unresolved_reloc = TRUE;
ab96bf03 16306 goto dodyn;
0b13192e 16307
5bd4f169
AM
16308 /* TOC16 relocs. We want the offset relative to the TOC base,
16309 which is the address of the start of the TOC plus 0x8000.
16310 The TOC consists of sections .got, .toc, .tocbss, and .plt,
16311 in this order. */
65f38f15
AM
16312 case R_PPC64_TOC16:
16313 case R_PPC64_TOC16_LO:
16314 case R_PPC64_TOC16_HI:
16315 case R_PPC64_TOC16_DS:
16316 case R_PPC64_TOC16_LO_DS:
16317 case R_PPC64_TOC16_HA:
6f20ed8a 16318 addend -= TOCstart + htab->sec_info[input_section->id].toc_off;
1bdd8fac
AM
16319 if (h != NULL)
16320 goto dodyn;
5bd4f169
AM
16321 break;
16322
16323 /* Relocate against the beginning of the section. */
65f38f15
AM
16324 case R_PPC64_SECTOFF:
16325 case R_PPC64_SECTOFF_LO:
16326 case R_PPC64_SECTOFF_HI:
16327 case R_PPC64_SECTOFF_DS:
16328 case R_PPC64_SECTOFF_LO_DS:
16329 case R_PPC64_SECTOFF_HA:
4ce794b7 16330 if (sec != NULL)
65f38f15 16331 addend -= sec->output_section->vma;
5bd4f169
AM
16332 break;
16333
25f23106
AM
16334 case R_PPC64_REL16:
16335 case R_PPC64_REL16_LO:
16336 case R_PPC64_REL16_HI:
16337 case R_PPC64_REL16_HA:
4a969973
AM
16338 case R_PPC64_REL16_HIGH:
16339 case R_PPC64_REL16_HIGHA:
16340 case R_PPC64_REL16_HIGHER:
16341 case R_PPC64_REL16_HIGHERA:
16342 case R_PPC64_REL16_HIGHEST:
16343 case R_PPC64_REL16_HIGHESTA:
5663e321
AM
16344 case R_PPC64_REL16_HIGHER34:
16345 case R_PPC64_REL16_HIGHERA34:
16346 case R_PPC64_REL16_HIGHEST34:
16347 case R_PPC64_REL16_HIGHESTA34:
a680de9a 16348 case R_PPC64_REL16DX_HA:
721956f4
AM
16349 case R_PPC64_REL14:
16350 case R_PPC64_REL14_BRNTAKEN:
16351 case R_PPC64_REL14_BRTAKEN:
5d1634d7 16352 case R_PPC64_REL24:
05d0e962 16353 case R_PPC64_REL24_NOTOC:
5663e321
AM
16354 case R_PPC64_PCREL34:
16355 case R_PPC64_PCREL28:
5d1634d7
AM
16356 break;
16357
411e1bfb
AM
16358 case R_PPC64_TPREL16:
16359 case R_PPC64_TPREL16_LO:
16360 case R_PPC64_TPREL16_HI:
16361 case R_PPC64_TPREL16_HA:
16362 case R_PPC64_TPREL16_DS:
16363 case R_PPC64_TPREL16_LO_DS:
f9c6b907
AM
16364 case R_PPC64_TPREL16_HIGH:
16365 case R_PPC64_TPREL16_HIGHA:
411e1bfb
AM
16366 case R_PPC64_TPREL16_HIGHER:
16367 case R_PPC64_TPREL16_HIGHERA:
16368 case R_PPC64_TPREL16_HIGHEST:
16369 case R_PPC64_TPREL16_HIGHESTA:
c213164a 16370 case R_PPC64_TPREL34:
766bc656
AM
16371 if (h != NULL
16372 && h->elf.root.type == bfd_link_hash_undefweak
16373 && h->elf.dynindx == -1)
16374 {
16375 /* Make this relocation against an undefined weak symbol
16376 resolve to zero. This is really just a tweak, since
16377 code using weak externs ought to check that they are
16378 defined before using them. */
16379 bfd_byte *p = contents + rel->r_offset - d_offset;
16380
95f0d0d2 16381 insn = bfd_get_32 (input_bfd, p);
766bc656
AM
16382 insn = _bfd_elf_ppc_at_tprel_transform (insn, 13);
16383 if (insn != 0)
95f0d0d2 16384 bfd_put_32 (input_bfd, insn, p);
766bc656
AM
16385 break;
16386 }
989f9879
AM
16387 if (htab->elf.tls_sec != NULL)
16388 addend -= htab->elf.tls_sec->vma + TP_OFFSET;
7c8bbca5
AM
16389 /* The TPREL16 relocs shouldn't really be used in shared
16390 libs or with non-local symbols as that will result in
16391 DT_TEXTREL being set, but support them anyway. */
16392 goto dodyn;
411e1bfb
AM
16393
16394 case R_PPC64_DTPREL16:
16395 case R_PPC64_DTPREL16_LO:
16396 case R_PPC64_DTPREL16_HI:
16397 case R_PPC64_DTPREL16_HA:
16398 case R_PPC64_DTPREL16_DS:
16399 case R_PPC64_DTPREL16_LO_DS:
f9c6b907
AM
16400 case R_PPC64_DTPREL16_HIGH:
16401 case R_PPC64_DTPREL16_HIGHA:
411e1bfb
AM
16402 case R_PPC64_DTPREL16_HIGHER:
16403 case R_PPC64_DTPREL16_HIGHERA:
16404 case R_PPC64_DTPREL16_HIGHEST:
16405 case R_PPC64_DTPREL16_HIGHESTA:
c213164a 16406 case R_PPC64_DTPREL34:
989f9879
AM
16407 if (htab->elf.tls_sec != NULL)
16408 addend -= htab->elf.tls_sec->vma + DTP_OFFSET;
411e1bfb
AM
16409 break;
16410
45965137
AM
16411 case R_PPC64_ADDR64_LOCAL:
16412 addend += PPC64_LOCAL_ENTRY_OFFSET (h != NULL
16413 ? h->elf.other
16414 : sym->st_other);
16415 break;
16416
e515b051
AM
16417 case R_PPC64_DTPMOD64:
16418 relocation = 1;
16419 addend = 0;
16420 goto dodyn;
16421
411e1bfb 16422 case R_PPC64_TPREL64:
989f9879
AM
16423 if (htab->elf.tls_sec != NULL)
16424 addend -= htab->elf.tls_sec->vma + TP_OFFSET;
411e1bfb
AM
16425 goto dodyn;
16426
16427 case R_PPC64_DTPREL64:
989f9879
AM
16428 if (htab->elf.tls_sec != NULL)
16429 addend -= htab->elf.tls_sec->vma + DTP_OFFSET;
1a0670f3 16430 /* Fall through. */
411e1bfb 16431
65f38f15
AM
16432 /* Relocations that may need to be propagated if this is a
16433 dynamic object. */
04c9666a 16434 case R_PPC64_REL30:
65f38f15
AM
16435 case R_PPC64_REL32:
16436 case R_PPC64_REL64:
16437 case R_PPC64_ADDR14:
16438 case R_PPC64_ADDR14_BRNTAKEN:
16439 case R_PPC64_ADDR14_BRTAKEN:
16440 case R_PPC64_ADDR16:
16441 case R_PPC64_ADDR16_DS:
16442 case R_PPC64_ADDR16_HA:
16443 case R_PPC64_ADDR16_HI:
f9c6b907
AM
16444 case R_PPC64_ADDR16_HIGH:
16445 case R_PPC64_ADDR16_HIGHA:
65f38f15
AM
16446 case R_PPC64_ADDR16_HIGHER:
16447 case R_PPC64_ADDR16_HIGHERA:
16448 case R_PPC64_ADDR16_HIGHEST:
16449 case R_PPC64_ADDR16_HIGHESTA:
16450 case R_PPC64_ADDR16_LO:
16451 case R_PPC64_ADDR16_LO_DS:
5663e321
AM
16452 case R_PPC64_ADDR16_HIGHER34:
16453 case R_PPC64_ADDR16_HIGHERA34:
16454 case R_PPC64_ADDR16_HIGHEST34:
16455 case R_PPC64_ADDR16_HIGHESTA34:
65f38f15 16456 case R_PPC64_ADDR24:
65f38f15
AM
16457 case R_PPC64_ADDR32:
16458 case R_PPC64_ADDR64:
16459 case R_PPC64_UADDR16:
16460 case R_PPC64_UADDR32:
16461 case R_PPC64_UADDR64:
5663e321
AM
16462 case R_PPC64_D34:
16463 case R_PPC64_D34_LO:
16464 case R_PPC64_D34_HI30:
16465 case R_PPC64_D34_HA30:
16466 case R_PPC64_D28:
411e1bfb 16467 dodyn:
5d1634d7 16468 if ((input_section->flags & SEC_ALLOC) == 0)
ec338859
AM
16469 break;
16470
41bd81ab
AM
16471 if (NO_OPD_RELOCS && is_opd)
16472 break;
16473
8a9e8e72 16474 if (bfd_link_pic (info)
b1b07054
AM
16475 ? ((h == NULL
16476 || h->dyn_relocs != NULL)
16477 && ((h != NULL && pc_dynrelocs (h))
16478 || must_be_dyn_reloc (info, r_type)))
8a9e8e72
AM
16479 : (h != NULL
16480 ? h->dyn_relocs != NULL
d311bc8b 16481 : ELF_ST_TYPE (sym->st_info) == STT_GNU_IFUNC))
65f38f15 16482 {
b34976b6 16483 bfd_boolean skip, relocate;
65f38f15 16484 asection *sreloc;
1cf1f670 16485 bfd_vma out_off;
82e66161 16486 long indx = 0;
65f38f15
AM
16487
16488 /* When generating a dynamic object, these relocations
16489 are copied into the output file to be resolved at run
16490 time. */
16491
b34976b6
AM
16492 skip = FALSE;
16493 relocate = FALSE;
65f38f15 16494
1cf1f670
AM
16495 out_off = _bfd_elf_section_offset (output_bfd, info,
16496 input_section, rel->r_offset);
16497 if (out_off == (bfd_vma) -1)
b34976b6 16498 skip = TRUE;
1cf1f670 16499 else if (out_off == (bfd_vma) -2)
b34976b6 16500 skip = TRUE, relocate = TRUE;
1cf1f670
AM
16501 out_off += (input_section->output_section->vma
16502 + input_section->output_offset);
16503 outrel.r_offset = out_off;
411e1bfb 16504 outrel.r_addend = rel->r_addend;
65f38f15 16505
1cf1f670
AM
16506 /* Optimize unaligned reloc use. */
16507 if ((r_type == R_PPC64_ADDR64 && (out_off & 7) != 0)
16508 || (r_type == R_PPC64_UADDR64 && (out_off & 7) == 0))
16509 r_type ^= R_PPC64_ADDR64 ^ R_PPC64_UADDR64;
16510 else if ((r_type == R_PPC64_ADDR32 && (out_off & 3) != 0)
16511 || (r_type == R_PPC64_UADDR32 && (out_off & 3) == 0))
16512 r_type ^= R_PPC64_ADDR32 ^ R_PPC64_UADDR32;
16513 else if ((r_type == R_PPC64_ADDR16 && (out_off & 1) != 0)
16514 || (r_type == R_PPC64_UADDR16 && (out_off & 1) == 0))
16515 r_type ^= R_PPC64_ADDR16 ^ R_PPC64_UADDR16;
16516
65f38f15 16517 if (skip)
0bb2d96a 16518 memset (&outrel, 0, sizeof outrel);
afe397ea 16519 else if (!SYMBOL_REFERENCES_LOCAL (info, &h->elf)
0b13192e
AM
16520 && !is_opd
16521 && r_type != R_PPC64_TOC)
14acf4dc 16522 {
82e66161
AM
16523 indx = h->elf.dynindx;
16524 BFD_ASSERT (indx != -1);
16525 outrel.r_info = ELF64_R_INFO (indx, r_type);
14acf4dc 16526 }
65f38f15
AM
16527 else
16528 {
41bd81ab
AM
16529 /* This symbol is local, or marked to become local,
16530 or this is an opd section reloc which must point
16531 at a local function. */
65f38f15 16532 outrel.r_addend += relocation;
e86ce104 16533 if (r_type == R_PPC64_ADDR64 || r_type == R_PPC64_TOC)
65f38f15 16534 {
3fad3c7c 16535 if (is_opd && h != NULL)
afbe61cf
AM
16536 {
16537 /* Lie about opd entries. This case occurs
16538 when building shared libraries and we
16539 reference a function in another shared
3fad3c7c
AM
16540 lib. The same thing happens for a weak
16541 definition in an application that's
16542 overridden by a strong definition in a
16543 shared lib. (I believe this is a generic
16544 bug in binutils handling of weak syms.)
16545 In these cases we won't use the opd
1e2f5b6e 16546 entry in this lib. */
b34976b6 16547 unresolved_reloc = FALSE;
afbe61cf 16548 }
25f23106
AM
16549 if (!is_opd
16550 && r_type == R_PPC64_ADDR64
16551 && (h != NULL
16552 ? h->elf.type == STT_GNU_IFUNC
16553 : ELF_ST_TYPE (sym->st_info) == STT_GNU_IFUNC))
16554 outrel.r_info = ELF64_R_INFO (0, R_PPC64_IRELATIVE);
16555 else
16556 {
16557 outrel.r_info = ELF64_R_INFO (0, R_PPC64_RELATIVE);
81407a69 16558
25f23106
AM
16559 /* We need to relocate .opd contents for ld.so.
16560 Prelink also wants simple and consistent rules
16561 for relocs. This make all RELATIVE relocs have
16562 *r_offset equal to r_addend. */
16563 relocate = TRUE;
16564 }
65f38f15
AM
16565 }
16566 else
16567 {
25f23106
AM
16568 if (h != NULL
16569 ? h->elf.type == STT_GNU_IFUNC
16570 : ELF_ST_TYPE (sym->st_info) == STT_GNU_IFUNC)
16571 {
25f53a85 16572 info->callbacks->einfo
695344c0 16573 /* xgettext:c-format */
174d0a74 16574 (_("%H: %s for indirect "
c1c8c1ef 16575 "function `%pT' unsupported\n"),
25f53a85 16576 input_bfd, input_section, rel->r_offset,
25f23106
AM
16577 ppc64_elf_howto_table[r_type]->name,
16578 sym_name);
16579 ret = FALSE;
16580 }
cf35638d 16581 else if (r_symndx == STN_UNDEF || bfd_is_abs_section (sec))
65f38f15
AM
16582 ;
16583 else if (sec == NULL || sec->owner == NULL)
16584 {
16585 bfd_set_error (bfd_error_bad_value);
b34976b6 16586 return FALSE;
65f38f15
AM
16587 }
16588 else
16589 {
f26a3287 16590 asection *osec = sec->output_section;
65f38f15 16591
f26a3287
AM
16592 if ((osec->flags & SEC_THREAD_LOCAL) != 0)
16593 {
16594 /* TLS symbol values are relative to the
16595 TLS segment. Dynamic relocations for
16596 local TLS symbols therefore can't be
16597 reduced to a relocation against their
16598 section symbol because it holds the
16599 address of the section, not a value
16600 relative to the TLS segment. We could
16601 change the .tdata dynamic section symbol
16602 to be zero value but STN_UNDEF works
16603 and is used elsewhere, eg. for TPREL64
16604 GOT relocs against local TLS symbols. */
16605 osec = htab->elf.tls_sec;
16606 indx = 0;
16607 }
16608 else
74541ad4 16609 {
74541ad4 16610 indx = elf_section_data (osec)->dynindx;
f26a3287
AM
16611 if (indx == 0)
16612 {
16613 if ((osec->flags & SEC_READONLY) == 0
16614 && htab->elf.data_index_section != NULL)
16615 osec = htab->elf.data_index_section;
16616 else
16617 osec = htab->elf.text_index_section;
16618 indx = elf_section_data (osec)->dynindx;
16619 }
16620 BFD_ASSERT (indx != 0);
74541ad4 16621 }
74541ad4 16622
65f38f15
AM
16623 /* We are turning this relocation into one
16624 against a section symbol, so subtract out
16625 the output section's address but not the
16626 offset of the input section in the output
16627 section. */
16628 outrel.r_addend -= osec->vma;
16629 }
16630
16631 outrel.r_info = ELF64_R_INFO (indx, r_type);
16632 }
16633 }
16634
16635 sreloc = elf_section_data (input_section)->sreloc;
19e08130
AM
16636 if (h != NULL
16637 ? h->elf.type == STT_GNU_IFUNC
16638 : ELF_ST_TYPE (sym->st_info) == STT_GNU_IFUNC)
82e66161
AM
16639 {
16640 sreloc = htab->elf.irelplt;
16641 if (indx == 0)
16642 htab->local_ifunc_resolver = 1;
16643 else if (is_static_defined (&h->elf))
16644 htab->maybe_local_ifunc_resolver = 1;
16645 }
65f38f15
AM
16646 if (sreloc == NULL)
16647 abort ();
16648
dfbb6ac9
AM
16649 if (sreloc->reloc_count * sizeof (Elf64_External_Rela)
16650 >= sreloc->size)
16651 abort ();
947216bf
AM
16652 loc = sreloc->contents;
16653 loc += sreloc->reloc_count++ * sizeof (Elf64_External_Rela);
65f38f15
AM
16654 bfd_elf64_swap_reloca_out (output_bfd, &outrel, loc);
16655
e59a1001
AM
16656 if (!warned_dynamic
16657 && !ppc64_glibc_dynamic_reloc (ELF64_R_TYPE (outrel.r_info)))
16658 {
16659 info->callbacks->einfo
16660 /* xgettext:c-format */
16661 (_("%X%P: %pB: %s against %pT "
16662 "is not supported by glibc as a dynamic relocation\n"),
16663 input_bfd,
16664 ppc64_elf_howto_table[ELF64_R_TYPE (outrel.r_info)]->name,
16665 sym_name);
16666 warned_dynamic = TRUE;
16667 }
16668
65f38f15
AM
16669 /* If this reloc is against an external symbol, it will
16670 be computed at runtime, so there's no need to do
81407a69
AM
16671 anything now. However, for the sake of prelink ensure
16672 that the section contents are a known value. */
2cdcc330 16673 if (!relocate)
81407a69
AM
16674 {
16675 unresolved_reloc = FALSE;
16676 /* The value chosen here is quite arbitrary as ld.so
16677 ignores section contents except for the special
16678 case of .opd where the contents might be accessed
16679 before relocation. Choose zero, as that won't
16680 cause reloc overflow. */
16681 relocation = 0;
16682 addend = 0;
16683 /* Use *r_offset == r_addend for R_PPC64_ADDR64 relocs
16684 to improve backward compatibility with older
16685 versions of ld. */
16686 if (r_type == R_PPC64_ADDR64)
16687 addend = outrel.r_addend;
16688 /* Adjust pc_relative relocs to have zero in *r_offset. */
4ce794b7 16689 else if (ppc64_elf_howto_table[r_type]->pc_relative)
f0158f44 16690 addend = outrel.r_offset;
81407a69 16691 }
65f38f15 16692 }
5bd4f169
AM
16693 break;
16694
65f38f15
AM
16695 case R_PPC64_COPY:
16696 case R_PPC64_GLOB_DAT:
16697 case R_PPC64_JMP_SLOT:
25f23106 16698 case R_PPC64_JMP_IREL:
65f38f15
AM
16699 case R_PPC64_RELATIVE:
16700 /* We shouldn't ever see these dynamic relocs in relocatable
16701 files. */
ae9a127f 16702 /* Fall through. */
65f38f15
AM
16703
16704 case R_PPC64_PLTGOT16:
16705 case R_PPC64_PLTGOT16_DS:
16706 case R_PPC64_PLTGOT16_HA:
16707 case R_PPC64_PLTGOT16_HI:
16708 case R_PPC64_PLTGOT16_LO:
16709 case R_PPC64_PLTGOT16_LO_DS:
16710 case R_PPC64_PLTREL32:
16711 case R_PPC64_PLTREL64:
16712 /* These ones haven't been implemented yet. */
16713
25f53a85 16714 info->callbacks->einfo
695344c0 16715 /* xgettext:c-format */
c1c8c1ef 16716 (_("%P: %pB: %s is not supported for `%pT'\n"),
d003868e 16717 input_bfd,
4ce794b7 16718 ppc64_elf_howto_table[r_type]->name, sym_name);
5bd4f169
AM
16719
16720 bfd_set_error (bfd_error_invalid_operation);
b34976b6 16721 ret = FALSE;
c316a17c 16722 goto copy_reloc;
65f38f15 16723 }
5bd4f169 16724
67f0cbdb
AM
16725 /* Multi-instruction sequences that access the TOC can be
16726 optimized, eg. addis ra,r2,0; addi rb,ra,x;
07d6d2b8 16727 to nop; addi rb,r2,x; */
67f0cbdb
AM
16728 switch (r_type)
16729 {
16730 default:
16731 break;
16732
16733 case R_PPC64_GOT_TLSLD16_HI:
16734 case R_PPC64_GOT_TLSGD16_HI:
16735 case R_PPC64_GOT_TPREL16_HI:
16736 case R_PPC64_GOT_DTPREL16_HI:
16737 case R_PPC64_GOT16_HI:
16738 case R_PPC64_TOC16_HI:
16739 /* These relocs would only be useful if building up an
16740 offset to later add to r2, perhaps in an indexed
16741 addressing mode instruction. Don't try to optimize.
16742 Unfortunately, the possibility of someone building up an
16743 offset like this or even with the HA relocs, means that
16744 we need to check the high insn when optimizing the low
16745 insn. */
16746 break;
16747
5663e321
AM
16748 case R_PPC64_PLTCALL_NOTOC:
16749 if (!unresolved_reloc)
16750 htab->notoc_plt = 1;
16751 /* Fall through. */
23cedd1d
AM
16752 case R_PPC64_PLTCALL:
16753 if (unresolved_reloc)
16754 {
16755 /* No plt entry. Make this into a direct call. */
16756 bfd_byte *p = contents + rel->r_offset;
16757 insn = bfd_get_32 (input_bfd, p);
16758 insn &= 1;
16759 bfd_put_32 (input_bfd, B_DOT | insn, p);
5663e321
AM
16760 if (r_type == R_PPC64_PLTCALL)
16761 bfd_put_32 (input_bfd, NOP, p + 4);
23cedd1d
AM
16762 unresolved_reloc = save_unresolved_reloc;
16763 r_type = R_PPC64_REL24;
16764 }
16765 break;
16766
5663e321 16767 case R_PPC64_PLTSEQ_NOTOC:
23cedd1d
AM
16768 case R_PPC64_PLTSEQ:
16769 if (unresolved_reloc)
16770 {
16771 unresolved_reloc = FALSE;
16772 goto nop_it;
16773 }
16774 break;
16775
5663e321
AM
16776 case R_PPC64_PLT_PCREL34_NOTOC:
16777 if (!unresolved_reloc)
16778 htab->notoc_plt = 1;
16779 /* Fall through. */
16780 case R_PPC64_PLT_PCREL34:
16781 if (unresolved_reloc)
16782 {
16783 bfd_byte *p = contents + rel->r_offset;
16784 bfd_put_32 (input_bfd, PNOP >> 32, p);
16785 bfd_put_32 (input_bfd, PNOP, p + 4);
16786 unresolved_reloc = FALSE;
16787 goto copy_reloc;
16788 }
16789 break;
16790
23cedd1d
AM
16791 case R_PPC64_PLT16_HA:
16792 if (unresolved_reloc)
16793 {
16794 unresolved_reloc = FALSE;
16795 goto nop_it;
16796 }
16797 /* Fall through. */
67f0cbdb
AM
16798 case R_PPC64_GOT_TLSLD16_HA:
16799 case R_PPC64_GOT_TLSGD16_HA:
16800 case R_PPC64_GOT_TPREL16_HA:
16801 case R_PPC64_GOT_DTPREL16_HA:
16802 case R_PPC64_GOT16_HA:
16803 case R_PPC64_TOC16_HA:
98528052 16804 if (htab->do_toc_opt && relocation + addend + 0x8000 < 0x10000
560c8763 16805 && !ppc64_elf_tdata (input_bfd)->unexpected_toc_insn)
98528052 16806 {
23cedd1d
AM
16807 bfd_byte *p;
16808 nop_it:
16809 p = contents + (rel->r_offset & ~3);
98528052 16810 bfd_put_32 (input_bfd, NOP, p);
d830549d 16811 goto copy_reloc;
98528052 16812 }
67f0cbdb
AM
16813 break;
16814
23cedd1d
AM
16815 case R_PPC64_PLT16_LO:
16816 case R_PPC64_PLT16_LO_DS:
16817 if (unresolved_reloc)
16818 {
16819 unresolved_reloc = FALSE;
16820 goto nop_it;
16821 }
16822 /* Fall through. */
67f0cbdb
AM
16823 case R_PPC64_GOT_TLSLD16_LO:
16824 case R_PPC64_GOT_TLSGD16_LO:
16825 case R_PPC64_GOT_TPREL16_LO_DS:
16826 case R_PPC64_GOT_DTPREL16_LO_DS:
16827 case R_PPC64_GOT16_LO:
16828 case R_PPC64_GOT16_LO_DS:
16829 case R_PPC64_TOC16_LO:
16830 case R_PPC64_TOC16_LO_DS:
98528052 16831 if (htab->do_toc_opt && relocation + addend + 0x8000 < 0x10000
560c8763 16832 && !ppc64_elf_tdata (input_bfd)->unexpected_toc_insn)
67f0cbdb
AM
16833 {
16834 bfd_byte *p = contents + (rel->r_offset & ~3);
16835 insn = bfd_get_32 (input_bfd, p);
2365f8d7 16836 if ((insn & (0x3fu << 26)) == 12u << 26 /* addic */)
560c8763
AM
16837 {
16838 /* Transform addic to addi when we change reg. */
2365f8d7 16839 insn &= ~((0x3fu << 26) | (0x1f << 16));
560c8763
AM
16840 insn |= (14u << 26) | (2 << 16);
16841 }
16842 else
67f0cbdb 16843 {
98528052
AM
16844 insn &= ~(0x1f << 16);
16845 insn |= 2 << 16;
67f0cbdb 16846 }
560c8763 16847 bfd_put_32 (input_bfd, insn, p);
67f0cbdb
AM
16848 }
16849 break;
9a23f96e
AM
16850
16851 case R_PPC64_TPREL16_HA:
16852 if (htab->do_tls_opt && relocation + addend + 0x8000 < 0x10000)
16853 {
16854 bfd_byte *p = contents + (rel->r_offset & ~3);
16855 insn = bfd_get_32 (input_bfd, p);
2365f8d7 16856 if ((insn & ((0x3fu << 26) | 0x1f << 16))
9a23f96e
AM
16857 != ((15u << 26) | (13 << 16)) /* addis rt,13,imm */)
16858 /* xgettext:c-format */
16859 info->callbacks->minfo
16860 (_("%H: warning: %s unexpected insn %#x.\n"),
d830549d
AM
16861 input_bfd, input_section, rel->r_offset,
16862 ppc64_elf_howto_table[r_type]->name, insn);
9a23f96e 16863 else
d830549d
AM
16864 {
16865 bfd_put_32 (input_bfd, NOP, p);
16866 goto copy_reloc;
16867 }
9a23f96e
AM
16868 }
16869 break;
16870
16871 case R_PPC64_TPREL16_LO:
16872 case R_PPC64_TPREL16_LO_DS:
16873 if (htab->do_tls_opt && relocation + addend + 0x8000 < 0x10000)
16874 {
16875 bfd_byte *p = contents + (rel->r_offset & ~3);
16876 insn = bfd_get_32 (input_bfd, p);
16877 insn &= ~(0x1f << 16);
16878 insn |= 13 << 16;
16879 bfd_put_32 (input_bfd, insn, p);
16880 }
16881 break;
67f0cbdb
AM
16882 }
16883
65f38f15
AM
16884 /* Do any further special processing. */
16885 switch (r_type)
16886 {
16887 default:
16888 break;
16889
25f23106 16890 case R_PPC64_REL16_HA:
4a969973
AM
16891 case R_PPC64_REL16_HIGHA:
16892 case R_PPC64_REL16_HIGHERA:
16893 case R_PPC64_REL16_HIGHESTA:
a680de9a 16894 case R_PPC64_REL16DX_HA:
f9c6b907
AM
16895 case R_PPC64_ADDR16_HA:
16896 case R_PPC64_ADDR16_HIGHA:
65f38f15
AM
16897 case R_PPC64_ADDR16_HIGHERA:
16898 case R_PPC64_ADDR16_HIGHESTA:
65f38f15
AM
16899 case R_PPC64_TOC16_HA:
16900 case R_PPC64_SECTOFF_HA:
411e1bfb 16901 case R_PPC64_TPREL16_HA:
f9c6b907 16902 case R_PPC64_TPREL16_HIGHA:
411e1bfb 16903 case R_PPC64_TPREL16_HIGHERA:
411e1bfb 16904 case R_PPC64_TPREL16_HIGHESTA:
f9c6b907
AM
16905 case R_PPC64_DTPREL16_HA:
16906 case R_PPC64_DTPREL16_HIGHA:
411e1bfb 16907 case R_PPC64_DTPREL16_HIGHERA:
411e1bfb 16908 case R_PPC64_DTPREL16_HIGHESTA:
65f38f15
AM
16909 /* It's just possible that this symbol is a weak symbol
16910 that's not actually defined anywhere. In that case,
16911 'sec' would be NULL, and we should leave the symbol
16912 alone (it will be set to zero elsewhere in the link). */
5c5f6e17
AM
16913 if (sec == NULL)
16914 break;
1a0670f3 16915 /* Fall through. */
5c5f6e17
AM
16916
16917 case R_PPC64_GOT16_HA:
16918 case R_PPC64_PLTGOT16_HA:
16919 case R_PPC64_PLT16_HA:
16920 case R_PPC64_GOT_TLSGD16_HA:
16921 case R_PPC64_GOT_TLSLD16_HA:
16922 case R_PPC64_GOT_TPREL16_HA:
16923 case R_PPC64_GOT_DTPREL16_HA:
16924 /* Add 0x10000 if sign bit in 0:15 is set.
16925 Bits 0:15 are not used. */
16926 addend += 0x8000;
65f38f15
AM
16927 break;
16928
5663e321
AM
16929 case R_PPC64_D34_HA30:
16930 case R_PPC64_ADDR16_HIGHERA34:
16931 case R_PPC64_ADDR16_HIGHESTA34:
16932 case R_PPC64_REL16_HIGHERA34:
16933 case R_PPC64_REL16_HIGHESTA34:
16934 if (sec != NULL)
16935 addend += 1ULL << 33;
16936 break;
16937
65f38f15
AM
16938 case R_PPC64_ADDR16_DS:
16939 case R_PPC64_ADDR16_LO_DS:
16940 case R_PPC64_GOT16_DS:
16941 case R_PPC64_GOT16_LO_DS:
16942 case R_PPC64_PLT16_LO_DS:
16943 case R_PPC64_SECTOFF_DS:
16944 case R_PPC64_SECTOFF_LO_DS:
16945 case R_PPC64_TOC16_DS:
16946 case R_PPC64_TOC16_LO_DS:
16947 case R_PPC64_PLTGOT16_DS:
16948 case R_PPC64_PLTGOT16_LO_DS:
411e1bfb
AM
16949 case R_PPC64_GOT_TPREL16_DS:
16950 case R_PPC64_GOT_TPREL16_LO_DS:
16951 case R_PPC64_GOT_DTPREL16_DS:
16952 case R_PPC64_GOT_DTPREL16_LO_DS:
16953 case R_PPC64_TPREL16_DS:
16954 case R_PPC64_TPREL16_LO_DS:
16955 case R_PPC64_DTPREL16_DS:
16956 case R_PPC64_DTPREL16_LO_DS:
adadcc0c
AM
16957 insn = bfd_get_32 (input_bfd, contents + (rel->r_offset & ~3));
16958 mask = 3;
a680de9a
PB
16959 /* If this reloc is against an lq, lxv, or stxv insn, then
16960 the value must be a multiple of 16. This is somewhat of
16961 a hack, but the "correct" way to do this by defining _DQ
16962 forms of all the _DS relocs bloats all reloc switches in
16963 this file. It doesn't make much sense to use these
16964 relocs in data, so testing the insn should be safe. */
2365f8d7
AM
16965 if ((insn & (0x3fu << 26)) == (56u << 26)
16966 || ((insn & (0x3fu << 26)) == (61u << 26) && (insn & 3) == 1))
adadcc0c 16967 mask = 15;
a680de9a
PB
16968 relocation += addend;
16969 addend = insn & (mask ^ 3);
16970 if ((relocation & mask) != 0)
65f38f15 16971 {
a680de9a 16972 relocation ^= relocation & mask;
25f53a85 16973 info->callbacks->einfo
695344c0 16974 /* xgettext:c-format */
174d0a74 16975 (_("%H: error: %s not a multiple of %u\n"),
25f53a85 16976 input_bfd, input_section, rel->r_offset,
d830549d 16977 ppc64_elf_howto_table[r_type]->name,
adadcc0c 16978 mask + 1);
65f38f15 16979 bfd_set_error (bfd_error_bad_value);
b34976b6 16980 ret = FALSE;
c316a17c 16981 goto copy_reloc;
65f38f15
AM
16982 }
16983 break;
5bd4f169
AM
16984 }
16985
239e1f3a
AM
16986 /* Dynamic relocs are not propagated for SEC_DEBUGGING sections
16987 because such sections are not SEC_ALLOC and thus ld.so will
16988 not process them. */
d830549d 16989 howto = ppc64_elf_howto_table[(int) r_type];
65f38f15 16990 if (unresolved_reloc
239e1f3a 16991 && !((input_section->flags & SEC_DEBUGGING) != 0
1d5316ab
AM
16992 && h->elf.def_dynamic)
16993 && _bfd_elf_section_offset (output_bfd, info, input_section,
16994 rel->r_offset) != (bfd_vma) -1)
9c07fe7c 16995 {
25f53a85 16996 info->callbacks->einfo
695344c0 16997 /* xgettext:c-format */
c1c8c1ef 16998 (_("%H: unresolvable %s against `%pT'\n"),
25f53a85 16999 input_bfd, input_section, rel->r_offset,
b80eed39 17000 howto->name,
039b3fef 17001 h->elf.root.root.string);
b34976b6 17002 ret = FALSE;
9c07fe7c 17003 }
5bd4f169 17004
b80eed39
AM
17005 /* 16-bit fields in insns mostly have signed values, but a
17006 few insns have 16-bit unsigned values. Really, we should
17007 have different reloc types. */
17008 if (howto->complain_on_overflow != complain_overflow_dont
17009 && howto->dst_mask == 0xffff
17010 && (input_section->flags & SEC_CODE) != 0)
17011 {
17012 enum complain_overflow complain = complain_overflow_signed;
17013
17014 insn = bfd_get_32 (input_bfd, contents + (rel->r_offset & ~3));
2365f8d7 17015 if ((insn & (0x3fu << 26)) == 10u << 26 /* cmpli */)
a47622ac
AM
17016 complain = complain_overflow_bitfield;
17017 else if (howto->rightshift == 0
2365f8d7
AM
17018 ? ((insn & (0x3fu << 26)) == 28u << 26 /* andi */
17019 || (insn & (0x3fu << 26)) == 24u << 26 /* ori */
17020 || (insn & (0x3fu << 26)) == 26u << 26 /* xori */)
17021 : ((insn & (0x3fu << 26)) == 29u << 26 /* andis */
17022 || (insn & (0x3fu << 26)) == 25u << 26 /* oris */
17023 || (insn & (0x3fu << 26)) == 27u << 26 /* xoris */))
b80eed39
AM
17024 complain = complain_overflow_unsigned;
17025 if (howto->complain_on_overflow != complain)
17026 {
17027 alt_howto = *howto;
17028 alt_howto.complain_on_overflow = complain;
17029 howto = &alt_howto;
17030 }
17031 }
17032
5663e321 17033 switch (r_type)
a680de9a 17034 {
5663e321
AM
17035 /* Split field relocs aren't handled by _bfd_final_link_relocate. */
17036 case R_PPC64_D34:
17037 case R_PPC64_D34_LO:
17038 case R_PPC64_D34_HI30:
17039 case R_PPC64_D34_HA30:
17040 case R_PPC64_PCREL34:
17041 case R_PPC64_GOT_PCREL34:
c213164a
AM
17042 case R_PPC64_TPREL34:
17043 case R_PPC64_DTPREL34:
17044 case R_PPC64_GOT_TLSGD34:
17045 case R_PPC64_GOT_TLSLD34:
17046 case R_PPC64_GOT_TPREL34:
17047 case R_PPC64_GOT_DTPREL34:
5663e321
AM
17048 case R_PPC64_PLT_PCREL34:
17049 case R_PPC64_PLT_PCREL34_NOTOC:
17050 case R_PPC64_D28:
17051 case R_PPC64_PCREL28:
17052 if (rel->r_offset + 8 > input_section->size)
17053 r = bfd_reloc_outofrange;
17054 else
17055 {
5663e321
AM
17056 relocation += addend;
17057 if (howto->pc_relative)
17058 relocation -= (rel->r_offset
17059 + input_section->output_offset
17060 + input_section->output_section->vma);
17061 relocation >>= howto->rightshift;
17062
17063 pinsn = bfd_get_32 (input_bfd, contents + rel->r_offset);
17064 pinsn <<= 32;
17065 pinsn |= bfd_get_32 (input_bfd, contents + rel->r_offset + 4);
17066
17067 pinsn &= ~howto->dst_mask;
17068 pinsn |= (((relocation << 16) | (relocation & 0xffff))
17069 & howto->dst_mask);
17070 bfd_put_32 (input_bfd, pinsn >> 32, contents + rel->r_offset);
17071 bfd_put_32 (input_bfd, pinsn, contents + rel->r_offset + 4);
17072 r = bfd_reloc_ok;
17073 if (howto->complain_on_overflow == complain_overflow_signed
17074 && (relocation + (1ULL << (howto->bitsize - 1))
17075 >= 1ULL << howto->bitsize))
17076 r = bfd_reloc_overflow;
17077 }
17078 break;
17079
17080 case R_PPC64_REL16DX_HA:
a680de9a
PB
17081 if (rel->r_offset + 4 > input_section->size)
17082 r = bfd_reloc_outofrange;
17083 else
17084 {
17085 relocation += addend;
17086 relocation -= (rel->r_offset
17087 + input_section->output_offset
17088 + input_section->output_section->vma);
3de43e7b 17089 relocation = (bfd_signed_vma) relocation >> 16;
a680de9a
PB
17090 insn = bfd_get_32 (input_bfd, contents + rel->r_offset);
17091 insn &= ~0x1fffc1;
3de43e7b 17092 insn |= (relocation & 0xffc1) | ((relocation & 0x3e) << 15);
a680de9a
PB
17093 bfd_put_32 (input_bfd, insn, contents + rel->r_offset);
17094 r = bfd_reloc_ok;
3de43e7b 17095 if (relocation + 0x8000 > 0xffff)
a680de9a
PB
17096 r = bfd_reloc_overflow;
17097 }
5663e321
AM
17098 break;
17099
17100 default:
17101 r = _bfd_final_link_relocate (howto, input_bfd, input_section,
17102 contents, rel->r_offset,
17103 relocation, addend);
a680de9a 17104 }
5bd4f169 17105
ef60b7ff 17106 if (r != bfd_reloc_ok)
5bd4f169 17107 {
bc30df16 17108 char *more_info = NULL;
b80eed39 17109 const char *reloc_name = howto->name;
bc30df16
AM
17110
17111 if (reloc_dest != DEST_NORMAL)
17112 {
17113 more_info = bfd_malloc (strlen (reloc_name) + 8);
17114 if (more_info != NULL)
17115 {
17116 strcpy (more_info, reloc_name);
17117 strcat (more_info, (reloc_dest == DEST_OPD
17118 ? " (OPD)" : " (stub)"));
17119 reloc_name = more_info;
17120 }
17121 }
17122
cd27b276 17123 if (r == bfd_reloc_overflow)
5bd4f169 17124 {
8131c122
AM
17125 /* On code like "if (foo) foo();" don't report overflow
17126 on a branch to zero when foo is undefined. */
17127 if (!warned
17128 && (reloc_dest == DEST_STUB
17129 || !(h != NULL
17130 && (h->elf.root.type == bfd_link_hash_undefweak
17131 || h->elf.root.type == bfd_link_hash_undefined)
17132 && is_branch_reloc (r_type))))
1a72702b
AM
17133 info->callbacks->reloc_overflow (info, &h->elf.root,
17134 sym_name, reloc_name,
17135 orig_rel.r_addend,
17136 input_bfd, input_section,
17137 rel->r_offset);
ef60b7ff
AM
17138 }
17139 else
17140 {
25f53a85 17141 info->callbacks->einfo
695344c0 17142 /* xgettext:c-format */
c1c8c1ef 17143 (_("%H: %s against `%pT': error %d\n"),
25f53a85 17144 input_bfd, input_section, rel->r_offset,
bc30df16 17145 reloc_name, sym_name, (int) r);
b34976b6 17146 ret = FALSE;
ef60b7ff 17147 }
bc30df16
AM
17148 if (more_info != NULL)
17149 free (more_info);
5bd4f169 17150 }
c316a17c
AM
17151 copy_reloc:
17152 if (wrel != rel)
17153 *wrel = *rel;
17154 }
17155
17156 if (wrel != rel)
17157 {
17158 Elf_Internal_Shdr *rel_hdr;
17159 size_t deleted = rel - wrel;
17160
17161 rel_hdr = _bfd_elf_single_rel_hdr (input_section->output_section);
17162 rel_hdr->sh_size -= rel_hdr->sh_entsize * deleted;
17163 if (rel_hdr->sh_size == 0)
17164 {
17165 /* It is too late to remove an empty reloc section. Leave
17166 one NONE reloc.
17167 ??? What is wrong with an empty section??? */
17168 rel_hdr->sh_size = rel_hdr->sh_entsize;
17169 deleted -= 1;
17170 }
17171 rel_hdr = _bfd_elf_single_rel_hdr (input_section);
17172 rel_hdr->sh_size -= rel_hdr->sh_entsize * deleted;
17173 input_section->reloc_count -= deleted;
5bd4f169
AM
17174 }
17175
645ea6a9
AM
17176 /* If we're emitting relocations, then shortly after this function
17177 returns, reloc offsets and addends for this section will be
17178 adjusted. Worse, reloc symbol indices will be for the output
8860955f
AM
17179 file rather than the input. Save a copy of the relocs for
17180 opd_entry_value. */
0e1862bb 17181 if (is_opd && (info->emitrelocations || bfd_link_relocatable (info)))
8860955f
AM
17182 {
17183 bfd_size_type amt;
17184 amt = input_section->reloc_count * sizeof (Elf_Internal_Rela);
17185 rel = bfd_alloc (input_bfd, amt);
729eabd5
AM
17186 BFD_ASSERT (ppc64_elf_tdata (input_bfd)->opd.relocs == NULL);
17187 ppc64_elf_tdata (input_bfd)->opd.relocs = rel;
8860955f
AM
17188 if (rel == NULL)
17189 return FALSE;
17190 memcpy (rel, relocs, amt);
17191 }
5bd4f169
AM
17192 return ret;
17193}
17194
754021d0
AM
17195/* Adjust the value of any local symbols in opd sections. */
17196
6e0b88f1 17197static int
754021d0
AM
17198ppc64_elf_output_symbol_hook (struct bfd_link_info *info,
17199 const char *name ATTRIBUTE_UNUSED,
17200 Elf_Internal_Sym *elfsym,
17201 asection *input_sec,
17202 struct elf_link_hash_entry *h)
17203{
74f0fb50
AM
17204 struct _opd_sec_data *opd;
17205 long adjust;
754021d0
AM
17206 bfd_vma value;
17207
4025353c 17208 if (h != NULL)
6e0b88f1 17209 return 1;
4025353c 17210
74f0fb50
AM
17211 opd = get_opd_info (input_sec);
17212 if (opd == NULL || opd->adjust == NULL)
6e0b88f1 17213 return 1;
754021d0
AM
17214
17215 value = elfsym->st_value - input_sec->output_offset;
0e1862bb 17216 if (!bfd_link_relocatable (info))
754021d0
AM
17217 value -= input_sec->output_section->vma;
17218
51aecdc5 17219 adjust = opd->adjust[OPD_NDX (value)];
4025353c 17220 if (adjust == -1)
6e0b88f1
AM
17221 return 2;
17222
17223 elfsym->st_value += adjust;
17224 return 1;
754021d0
AM
17225}
17226
5bd4f169
AM
17227/* Finish up dynamic symbol handling. We set the contents of various
17228 dynamic sections here. */
17229
b34976b6 17230static bfd_boolean
4ce794b7
AM
17231ppc64_elf_finish_dynamic_symbol (bfd *output_bfd,
17232 struct bfd_link_info *info,
17233 struct elf_link_hash_entry *h,
4aef7643 17234 Elf_Internal_Sym *sym)
5bd4f169 17235{
65f38f15 17236 struct ppc_link_hash_table *htab;
8387904d 17237 struct plt_entry *ent;
5bd4f169 17238
65f38f15 17239 htab = ppc_hash_table (info);
4dfe6ac6
NC
17240 if (htab == NULL)
17241 return FALSE;
5bd4f169 17242
49c09209
AM
17243 if (!htab->opd_abi && !h->def_regular)
17244 for (ent = h->plt.plist; ent != NULL; ent = ent->next)
17245 if (ent->plt.offset != (bfd_vma) -1)
17246 {
17247 /* Mark the symbol as undefined, rather than as
17248 defined in glink. Leave the value if there were
17249 any relocations where pointer equality matters
17250 (this is a clue for the dynamic linker, to make
17251 function pointer comparisons work between an
17252 application and shared library), otherwise set it
17253 to zero. */
17254 sym->st_shndx = SHN_UNDEF;
17255 if (!h->pointer_equality_needed)
17256 sym->st_value = 0;
17257 else if (!h->ref_regular_nonweak)
17258 {
17259 /* This breaks function pointer comparisons, but
17260 that is better than breaking tests for a NULL
17261 function pointer. */
17262 sym->st_value = 0;
17263 }
17264 break;
17265 }
5bd4f169 17266
1bdd8fac
AM
17267 if (h->needs_copy
17268 && (h->root.type == bfd_link_hash_defined
17269 || h->root.type == bfd_link_hash_defweak)
17270 && (h->root.u.def.section == htab->elf.sdynbss
17271 || h->root.u.def.section == htab->elf.sdynrelro))
5bd4f169 17272 {
65f38f15 17273 /* This symbol needs a copy reloc. Set it up. */
49c09209 17274 Elf_Internal_Rela rela;
5474d94f 17275 asection *srel;
49c09209 17276 bfd_byte *loc;
5bd4f169 17277
1bdd8fac 17278 if (h->dynindx == -1)
65f38f15 17279 abort ();
5bd4f169 17280
ed7007c1 17281 rela.r_offset = defined_sym_val (h);
5bd4f169
AM
17282 rela.r_info = ELF64_R_INFO (h->dynindx, R_PPC64_COPY);
17283 rela.r_addend = 0;
afbf7e8e 17284 if (h->root.u.def.section == htab->elf.sdynrelro)
5474d94f
AM
17285 srel = htab->elf.sreldynrelro;
17286 else
17287 srel = htab->elf.srelbss;
17288 loc = srel->contents;
17289 loc += srel->reloc_count++ * sizeof (Elf64_External_Rela);
65f38f15 17290 bfd_elf64_swap_reloca_out (output_bfd, &rela, loc);
5bd4f169
AM
17291 }
17292
b34976b6 17293 return TRUE;
5bd4f169
AM
17294}
17295
65f38f15
AM
17296/* Used to decide how to sort relocs in an optimal manner for the
17297 dynamic linker, before writing them out. */
17298
17299static enum elf_reloc_type_class
7e612e98
AM
17300ppc64_elf_reloc_type_class (const struct bfd_link_info *info,
17301 const asection *rel_sec,
17302 const Elf_Internal_Rela *rela)
65f38f15 17303{
04c9666a 17304 enum elf_ppc64_reloc_type r_type;
7e612e98
AM
17305 struct ppc_link_hash_table *htab = ppc_hash_table (info);
17306
33e44f2e 17307 if (rel_sec == htab->elf.irelplt)
7e612e98 17308 return reloc_class_ifunc;
a33d1f77 17309
4ce794b7 17310 r_type = ELF64_R_TYPE (rela->r_info);
a33d1f77 17311 switch (r_type)
65f38f15
AM
17312 {
17313 case R_PPC64_RELATIVE:
17314 return reloc_class_relative;
17315 case R_PPC64_JMP_SLOT:
17316 return reloc_class_plt;
17317 case R_PPC64_COPY:
17318 return reloc_class_copy;
17319 default:
17320 return reloc_class_normal;
17321 }
17322}
17323
5bd4f169
AM
17324/* Finish up the dynamic sections. */
17325
b34976b6 17326static bfd_boolean
4ce794b7
AM
17327ppc64_elf_finish_dynamic_sections (bfd *output_bfd,
17328 struct bfd_link_info *info)
5bd4f169 17329{
65f38f15
AM
17330 struct ppc_link_hash_table *htab;
17331 bfd *dynobj;
5bd4f169 17332 asection *sdyn;
5bd4f169 17333
65f38f15 17334 htab = ppc_hash_table (info);
4dfe6ac6
NC
17335 if (htab == NULL)
17336 return FALSE;
17337
65f38f15 17338 dynobj = htab->elf.dynobj;
3d4d4302 17339 sdyn = bfd_get_linker_section (dynobj, ".dynamic");
5bd4f169 17340
65f38f15 17341 if (htab->elf.dynamic_sections_created)
5bd4f169 17342 {
5bd4f169
AM
17343 Elf64_External_Dyn *dyncon, *dynconend;
17344
33e44f2e 17345 if (sdyn == NULL || htab->elf.sgot == NULL)
65f38f15 17346 abort ();
5bd4f169
AM
17347
17348 dyncon = (Elf64_External_Dyn *) sdyn->contents;
eea6121a 17349 dynconend = (Elf64_External_Dyn *) (sdyn->contents + sdyn->size);
5bd4f169
AM
17350 for (; dyncon < dynconend; dyncon++)
17351 {
17352 Elf_Internal_Dyn dyn;
19397422 17353 asection *s;
5bd4f169
AM
17354
17355 bfd_elf64_swap_dyn_in (dynobj, dyncon, &dyn);
17356
17357 switch (dyn.d_tag)
17358 {
65f38f15
AM
17359 default:
17360 continue;
5bd4f169 17361
5d1634d7 17362 case DT_PPC64_GLINK:
4ce794b7 17363 s = htab->glink;
6348e046 17364 dyn.d_un.d_ptr = s->output_section->vma + s->output_offset;
ad8e1ba5
AM
17365 /* We stupidly defined DT_PPC64_GLINK to be the start
17366 of glink rather than the first entry point, which is
17367 what ld.so needs, and now have a bigger stub to
17368 support automatic multiple TOCs. */
9e390558 17369 dyn.d_un.d_ptr += GLINK_PLTRESOLVE_SIZE (htab) - 8 * 4;
5d1634d7
AM
17370 break;
17371
19397422
AM
17372 case DT_PPC64_OPD:
17373 s = bfd_get_section_by_name (output_bfd, ".opd");
6348e046
AM
17374 if (s == NULL)
17375 continue;
17376 dyn.d_un.d_ptr = s->vma;
19397422
AM
17377 break;
17378
e8910a83 17379 case DT_PPC64_OPT:
5663e321
AM
17380 if ((htab->do_multi_toc && htab->multi_toc_needed)
17381 || htab->notoc_plt)
e8910a83 17382 dyn.d_un.d_val |= PPC64_OPT_MULTI_TOC;
f378ab09
AM
17383 if (htab->has_plt_localentry0)
17384 dyn.d_un.d_val |= PPC64_OPT_LOCALENTRY;
e8910a83
AM
17385 break;
17386
19397422
AM
17387 case DT_PPC64_OPDSZ:
17388 s = bfd_get_section_by_name (output_bfd, ".opd");
6348e046
AM
17389 if (s == NULL)
17390 continue;
eea6121a 17391 dyn.d_un.d_val = s->size;
19397422
AM
17392 break;
17393
65f38f15 17394 case DT_PLTGOT:
33e44f2e 17395 s = htab->elf.splt;
6348e046 17396 dyn.d_un.d_ptr = s->output_section->vma + s->output_offset;
65f38f15
AM
17397 break;
17398
17399 case DT_JMPREL:
33e44f2e 17400 s = htab->elf.srelplt;
6348e046 17401 dyn.d_un.d_ptr = s->output_section->vma + s->output_offset;
65f38f15 17402 break;
5bd4f169 17403
65f38f15 17404 case DT_PLTRELSZ:
33e44f2e 17405 dyn.d_un.d_val = htab->elf.srelplt->size;
5d1634d7 17406 break;
82e66161
AM
17407
17408 case DT_TEXTREL:
17409 if (htab->local_ifunc_resolver)
17410 info->callbacks->einfo
17411 (_("%X%P: text relocations and GNU indirect "
17412 "functions will result in a segfault at runtime\n"));
17413 else if (htab->maybe_local_ifunc_resolver)
17414 info->callbacks->einfo
17415 (_("%P: warning: text relocations and GNU indirect "
17416 "functions may result in a segfault at runtime\n"));
17417 continue;
5bd4f169 17418 }
5bd4f169 17419
65f38f15 17420 bfd_elf64_swap_dyn_out (output_bfd, &dyn, dyncon);
5bd4f169 17421 }
5bd4f169
AM
17422 }
17423
6528b6eb
AM
17424 if (htab->elf.sgot != NULL && htab->elf.sgot->size != 0
17425 && htab->elf.sgot->output_section != bfd_abs_section_ptr)
5d1634d7
AM
17426 {
17427 /* Fill in the first entry in the global offset table.
17428 We use it to hold the link-time TOCbase. */
17429 bfd_put_64 (output_bfd,
60ee0d4a 17430 elf_gp (output_bfd) + TOC_BASE_OFF,
33e44f2e 17431 htab->elf.sgot->contents);
5d1634d7
AM
17432
17433 /* Set .got entry size. */
2cdcc330
AM
17434 elf_section_data (htab->elf.sgot->output_section)->this_hdr.sh_entsize
17435 = 8;
5d1634d7
AM
17436 }
17437
6528b6eb
AM
17438 if (htab->elf.splt != NULL && htab->elf.splt->size != 0
17439 && htab->elf.splt->output_section != bfd_abs_section_ptr)
5d1634d7
AM
17440 {
17441 /* Set .plt entry size. */
33e44f2e 17442 elf_section_data (htab->elf.splt->output_section)->this_hdr.sh_entsize
b9e5796b 17443 = PLT_ENTRY_SIZE (htab);
5d1634d7
AM
17444 }
17445
84f5d08e
AM
17446 /* brlt is SEC_LINKER_CREATED, so we need to write out relocs for
17447 brlt ourselves if emitrelocations. */
17448 if (htab->brlt != NULL
17449 && htab->brlt->reloc_count != 0
17450 && !_bfd_elf_link_output_relocs (output_bfd,
17451 htab->brlt,
d4730f92 17452 elf_section_data (htab->brlt)->rela.hdr,
84f5d08e
AM
17453 elf_section_data (htab->brlt)->relocs,
17454 NULL))
17455 return FALSE;
17456
176a0d42
AM
17457 if (htab->glink != NULL
17458 && htab->glink->reloc_count != 0
17459 && !_bfd_elf_link_output_relocs (output_bfd,
17460 htab->glink,
d4730f92 17461 elf_section_data (htab->glink)->rela.hdr,
176a0d42
AM
17462 elf_section_data (htab->glink)->relocs,
17463 NULL))
17464 return FALSE;
17465
da44f4e5 17466
df136d64
AM
17467 if (htab->glink_eh_frame != NULL
17468 && htab->glink_eh_frame->size != 0
17469 && htab->glink_eh_frame->sec_info_type == SEC_INFO_TYPE_EH_FRAME
17470 && !_bfd_elf_write_section_eh_frame (output_bfd, info,
17471 htab->glink_eh_frame,
17472 htab->glink_eh_frame->contents))
17473 return FALSE;
58d180e8 17474
e717da7e 17475 /* We need to handle writing out multiple GOT sections ourselves,
7b53ace3
AM
17476 since we didn't add them to DYNOBJ. We know dynobj is the first
17477 bfd. */
c72f2fb2 17478 while ((dynobj = dynobj->link.next) != NULL)
e717da7e
AM
17479 {
17480 asection *s;
7b53ace3 17481
0c8d6e5c 17482 if (!is_ppc64_elf (dynobj))
7b53ace3
AM
17483 continue;
17484
e717da7e
AM
17485 s = ppc64_elf_tdata (dynobj)->got;
17486 if (s != NULL
eea6121a 17487 && s->size != 0
e717da7e
AM
17488 && s->output_section != bfd_abs_section_ptr
17489 && !bfd_set_section_contents (output_bfd, s->output_section,
17490 s->contents, s->output_offset,
eea6121a 17491 s->size))
e717da7e
AM
17492 return FALSE;
17493 s = ppc64_elf_tdata (dynobj)->relgot;
17494 if (s != NULL
eea6121a 17495 && s->size != 0
e717da7e
AM
17496 && s->output_section != bfd_abs_section_ptr
17497 && !bfd_set_section_contents (output_bfd, s->output_section,
17498 s->contents, s->output_offset,
eea6121a 17499 s->size))
e717da7e
AM
17500 return FALSE;
17501 }
f6c52c13 17502
b34976b6 17503 return TRUE;
5bd4f169
AM
17504}
17505
5bd4f169 17506#include "elf64-target.h"
7b8e7dad
AM
17507
17508/* FreeBSD support */
17509
17510#undef TARGET_LITTLE_SYM
17511#undef TARGET_LITTLE_NAME
17512
17513#undef TARGET_BIG_SYM
6d00b590 17514#define TARGET_BIG_SYM powerpc_elf64_fbsd_vec
7b8e7dad
AM
17515#undef TARGET_BIG_NAME
17516#define TARGET_BIG_NAME "elf64-powerpc-freebsd"
17517
17518#undef ELF_OSABI
17519#define ELF_OSABI ELFOSABI_FREEBSD
17520
17521#undef elf64_bed
17522#define elf64_bed elf64_powerpc_fbsd_bed
17523
17524#include "elf64-target.h"