corrected version
[deliverable/binutils-gdb.git] / bfd / elf64-ppc.c
CommitLineData
5bd4f169 1/* PowerPC64-specific support for 64-bit ELF.
b2a8e766
AM
2 Copyright 1999, 2000, 2001, 2002, 2003, 2004
3 Free Software Foundation, Inc.
5bd4f169
AM
4 Written by Linus Nordberg, Swox AB <info@swox.com>,
5 based on elf32-ppc.c by Ian Lance Taylor.
d37c89e5 6 Largely rewritten by Alan Modra <amodra@bigpond.net.au>
5bd4f169 7
ae9a127f 8 This file is part of BFD, the Binary File Descriptor library.
5bd4f169 9
ae9a127f
NC
10 This program is free software; you can redistribute it and/or modify
11 it under the terms of the GNU General Public License as published by
12 the Free Software Foundation; either version 2 of the License, or
13 (at your option) any later version.
5bd4f169 14
ae9a127f
NC
15 This program is distributed in the hope that it will be useful,
16 but WITHOUT ANY WARRANTY; without even the implied warranty of
17 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 GNU General Public License for more details.
5bd4f169 19
4ce794b7
AM
20 You should have received a copy of the GNU General Public License along
21 with this program; if not, write to the Free Software Foundation, Inc.,
22 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. */
5bd4f169 23
4ce794b7
AM
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
AM
27
28#include "bfd.h"
29#include "sysdep.h"
30#include "bfdlink.h"
31#include "libbfd.h"
32#include "elf-bfd.h"
04c9666a 33#include "elf/ppc64.h"
5d1634d7 34#include "elf64-ppc.h"
5bd4f169 35
805fc799 36static bfd_reloc_status_type ppc64_elf_ha_reloc
4ce794b7 37 (bfd *, arelent *, asymbol *, void *, asection *, bfd *, char **);
2441e016
AM
38static bfd_reloc_status_type ppc64_elf_branch_reloc
39 (bfd *, arelent *, asymbol *, void *, asection *, bfd *, char **);
805fc799 40static bfd_reloc_status_type ppc64_elf_brtaken_reloc
4ce794b7 41 (bfd *, arelent *, asymbol *, void *, asection *, bfd *, char **);
805fc799 42static bfd_reloc_status_type ppc64_elf_sectoff_reloc
4ce794b7 43 (bfd *, arelent *, asymbol *, void *, asection *, bfd *, char **);
805fc799 44static bfd_reloc_status_type ppc64_elf_sectoff_ha_reloc
4ce794b7 45 (bfd *, arelent *, asymbol *, void *, asection *, bfd *, char **);
805fc799 46static bfd_reloc_status_type ppc64_elf_toc_reloc
4ce794b7 47 (bfd *, arelent *, asymbol *, void *, asection *, bfd *, char **);
805fc799 48static bfd_reloc_status_type ppc64_elf_toc_ha_reloc
4ce794b7 49 (bfd *, arelent *, asymbol *, void *, asection *, bfd *, char **);
805fc799 50static bfd_reloc_status_type ppc64_elf_toc64_reloc
4ce794b7 51 (bfd *, arelent *, asymbol *, void *, asection *, bfd *, char **);
805fc799 52static bfd_reloc_status_type ppc64_elf_unhandled_reloc
4ce794b7 53 (bfd *, arelent *, asymbol *, void *, asection *, bfd *, char **);
2441e016
AM
54static bfd_vma opd_entry_value
55 (asection *, bfd_vma, asection **, bfd_vma *);
5bd4f169 56
ad8e1ba5
AM
57#define TARGET_LITTLE_SYM bfd_elf64_powerpcle_vec
58#define TARGET_LITTLE_NAME "elf64-powerpcle"
59#define TARGET_BIG_SYM bfd_elf64_powerpc_vec
60#define TARGET_BIG_NAME "elf64-powerpc"
61#define ELF_ARCH bfd_arch_powerpc
62#define ELF_MACHINE_CODE EM_PPC64
63#define ELF_MAXPAGESIZE 0x10000
64#define elf_info_to_howto ppc64_elf_info_to_howto
65
66#define elf_backend_want_got_sym 0
67#define elf_backend_want_plt_sym 0
68#define elf_backend_plt_alignment 3
69#define elf_backend_plt_not_loaded 1
70#define elf_backend_got_symbol_offset 0
71#define elf_backend_got_header_size 8
ad8e1ba5
AM
72#define elf_backend_can_gc_sections 1
73#define elf_backend_can_refcount 1
74#define elf_backend_rela_normal 1
75
e717da7e 76#define bfd_elf64_mkobject ppc64_elf_mkobject
ad8e1ba5
AM
77#define bfd_elf64_bfd_reloc_type_lookup ppc64_elf_reloc_type_lookup
78#define bfd_elf64_bfd_merge_private_bfd_data ppc64_elf_merge_private_bfd_data
79#define bfd_elf64_new_section_hook ppc64_elf_new_section_hook
80#define bfd_elf64_bfd_link_hash_table_create ppc64_elf_link_hash_table_create
81#define bfd_elf64_bfd_link_hash_table_free ppc64_elf_link_hash_table_free
90e3cdf2 82#define bfd_elf64_get_synthetic_symtab ppc64_elf_get_synthetic_symtab
ad8e1ba5
AM
83
84#define elf_backend_object_p ppc64_elf_object_p
d37c89e5
AM
85#define elf_backend_grok_prstatus ppc64_elf_grok_prstatus
86#define elf_backend_grok_psinfo ppc64_elf_grok_psinfo
ad8e1ba5
AM
87#define elf_backend_create_dynamic_sections ppc64_elf_create_dynamic_sections
88#define elf_backend_copy_indirect_symbol ppc64_elf_copy_indirect_symbol
555cd476 89#define elf_backend_add_symbol_hook ppc64_elf_add_symbol_hook
8387904d
AM
90#define elf_backend_check_directives ppc64_elf_check_directives
91#define elf_backend_archive_symbol_lookup ppc64_elf_archive_symbol_lookup
ad8e1ba5
AM
92#define elf_backend_check_relocs ppc64_elf_check_relocs
93#define elf_backend_gc_mark_hook ppc64_elf_gc_mark_hook
94#define elf_backend_gc_sweep_hook ppc64_elf_gc_sweep_hook
95#define elf_backend_adjust_dynamic_symbol ppc64_elf_adjust_dynamic_symbol
96#define elf_backend_hide_symbol ppc64_elf_hide_symbol
97#define elf_backend_always_size_sections ppc64_elf_func_desc_adjust
98#define elf_backend_size_dynamic_sections ppc64_elf_size_dynamic_sections
99#define elf_backend_relocate_section ppc64_elf_relocate_section
100#define elf_backend_finish_dynamic_symbol ppc64_elf_finish_dynamic_symbol
101#define elf_backend_reloc_type_class ppc64_elf_reloc_type_class
102#define elf_backend_finish_dynamic_sections ppc64_elf_finish_dynamic_sections
754021d0 103#define elf_backend_link_output_symbol_hook ppc64_elf_output_symbol_hook
2f89ff8d 104#define elf_backend_special_sections ppc64_elf_special_sections
ad8e1ba5 105
5bd4f169
AM
106/* The name of the dynamic interpreter. This is put in the .interp
107 section. */
108#define ELF_DYNAMIC_INTERPRETER "/usr/lib/ld.so.1"
109
110/* The size in bytes of an entry in the procedure linkage table. */
111#define PLT_ENTRY_SIZE 24
112
113/* The initial size of the plt reserved for the dynamic linker. */
5d1634d7 114#define PLT_INITIAL_ENTRY_SIZE PLT_ENTRY_SIZE
5bd4f169
AM
115
116/* TOC base pointers offset from start of TOC. */
411e1bfb
AM
117#define TOC_BASE_OFF 0x8000
118
119/* Offset of tp and dtp pointers from start of TLS block. */
120#define TP_OFFSET 0x7000
121#define DTP_OFFSET 0x8000
5bd4f169 122
ad8e1ba5
AM
123/* .plt call stub instructions. The normal stub is like this, but
124 sometimes the .plt entry crosses a 64k boundary and we need to
125 insert an addis to adjust r12. */
126#define PLT_CALL_STUB_SIZE (7*4)
5d1634d7
AM
127#define ADDIS_R12_R2 0x3d820000 /* addis %r12,%r2,xxx@ha */
128#define STD_R2_40R1 0xf8410028 /* std %r2,40(%r1) */
129#define LD_R11_0R12 0xe96c0000 /* ld %r11,xxx+0@l(%r12) */
130#define LD_R2_0R12 0xe84c0000 /* ld %r2,xxx+8@l(%r12) */
131#define MTCTR_R11 0x7d6903a6 /* mtctr %r11 */
132 /* ld %r11,xxx+16@l(%r12) */
133#define BCTR 0x4e800420 /* bctr */
134
5d1634d7 135
ad8e1ba5
AM
136#define ADDIS_R2_R2 0x3c420000 /* addis %r2,%r2,off@ha */
137#define ADDI_R2_R2 0x38420000 /* addi %r2,%r2,off@l */
138
139#define LD_R2_40R1 0xe8410028 /* ld %r2,40(%r1) */
140
141/* glink call stub instructions. We enter with the index in R0, and the
142 address of glink entry in CTR. From that, we can calculate PLT0. */
143#define GLINK_CALL_STUB_SIZE (16*4)
144#define MFCTR_R12 0x7d8902a6 /* mfctr %r12 */
145#define SLDI_R11_R0_3 0x780b1f24 /* sldi %r11,%r0,3 */
146#define ADDIC_R2_R0_32K 0x34408000 /* addic. %r2,%r0,-32768 */
147#define SUB_R12_R12_R11 0x7d8b6050 /* sub %r12,%r12,%r11 */
148#define SRADI_R2_R2_63 0x7c42fe76 /* sradi %r2,%r2,63 */
149#define SLDI_R11_R0_2 0x780b1764 /* sldi %r11,%r0,2 */
150#define AND_R2_R2_R11 0x7c425838 /* and %r2,%r2,%r11 */
151 /* sub %r12,%r12,%r11 */
152#define ADD_R12_R12_R2 0x7d8c1214 /* add %r12,%r12,%r2 */
153#define ADDIS_R12_R12 0x3d8c0000 /* addis %r12,%r12,xxx@ha */
154 /* ld %r11,xxx@l(%r12) */
155#define ADDI_R12_R12 0x398c0000 /* addi %r12,%r12,xxx@l */
156 /* ld %r2,8(%r12) */
157 /* mtctr %r11 */
158 /* ld %r11,16(%r12) */
159 /* bctr */
5d1634d7
AM
160
161/* Pad with this. */
162#define NOP 0x60000000
163
721956f4
AM
164/* Some other nops. */
165#define CROR_151515 0x4def7b82
166#define CROR_313131 0x4ffffb82
167
cedb70c5 168/* .glink entries for the first 32k functions are two instructions. */
5d1634d7
AM
169#define LI_R0_0 0x38000000 /* li %r0,0 */
170#define B_DOT 0x48000000 /* b . */
171
172/* After that, we need two instructions to load the index, followed by
173 a branch. */
174#define LIS_R0_0 0x3c000000 /* lis %r0,0 */
10ed1bba 175#define ORI_R0_R0_0 0x60000000 /* ori %r0,%r0,0 */
41bd81ab 176
deb0e272
AM
177/* Instructions used by the save and restore reg functions. */
178#define STD_R0_0R1 0xf8010000 /* std %r0,0(%r1) */
179#define STD_R0_0R12 0xf80c0000 /* std %r0,0(%r12) */
180#define LD_R0_0R1 0xe8010000 /* ld %r0,0(%r1) */
181#define LD_R0_0R12 0xe80c0000 /* ld %r0,0(%r12) */
82bd7b59
AM
182#define STFD_FR0_0R1 0xd8010000 /* stfd %fr0,0(%r1) */
183#define LFD_FR0_0R1 0xc8010000 /* lfd %fr0,0(%r1) */
deb0e272
AM
184#define LI_R12_0 0x39800000 /* li %r12,0 */
185#define STVX_VR0_R12_R0 0x7c0c01ce /* stvx %v0,%r12,%r0 */
186#define LVX_VR0_R12_R0 0x7c0c00ce /* lvx %v0,%r12,%r0 */
187#define MTLR_R0 0x7c0803a6 /* mtlr %r0 */
82bd7b59
AM
188#define BLR 0x4e800020 /* blr */
189
41bd81ab
AM
190/* Since .opd is an array of descriptors and each entry will end up
191 with identical R_PPC64_RELATIVE relocs, there is really no need to
192 propagate .opd relocs; The dynamic linker should be taught to
1e2f5b6e 193 relocate .opd without reloc entries. */
41bd81ab
AM
194#ifndef NO_OPD_RELOCS
195#define NO_OPD_RELOCS 0
196#endif
5bd4f169 197\f
f5e87a1d 198#define ONES(n) (((bfd_vma) 1 << ((n) - 1) << 1) - 1)
b34976b6 199
5bd4f169 200/* Relocation HOWTO's. */
04c9666a 201static reloc_howto_type *ppc64_elf_howto_table[(int) R_PPC64_max];
5bd4f169
AM
202
203static reloc_howto_type ppc64_elf_howto_raw[] = {
204 /* This reloc does nothing. */
205 HOWTO (R_PPC64_NONE, /* type */
206 0, /* rightshift */
411e1bfb
AM
207 2, /* size (0 = byte, 1 = short, 2 = long) */
208 32, /* bitsize */
b34976b6 209 FALSE, /* pc_relative */
5bd4f169 210 0, /* bitpos */
f5e87a1d 211 complain_overflow_dont, /* complain_on_overflow */
5bd4f169
AM
212 bfd_elf_generic_reloc, /* special_function */
213 "R_PPC64_NONE", /* name */
b34976b6 214 FALSE, /* partial_inplace */
d006db6c 215 0, /* src_mask */
5bd4f169 216 0, /* dst_mask */
b34976b6 217 FALSE), /* pcrel_offset */
5bd4f169
AM
218
219 /* A standard 32 bit relocation. */
220 HOWTO (R_PPC64_ADDR32, /* type */
221 0, /* rightshift */
222 2, /* size (0 = byte, 1 = short, 2 = long) */
223 32, /* bitsize */
b34976b6 224 FALSE, /* pc_relative */
5bd4f169
AM
225 0, /* bitpos */
226 complain_overflow_bitfield, /* complain_on_overflow */
227 bfd_elf_generic_reloc, /* special_function */
228 "R_PPC64_ADDR32", /* name */
b34976b6 229 FALSE, /* partial_inplace */
5bd4f169
AM
230 0, /* src_mask */
231 0xffffffff, /* dst_mask */
b34976b6 232 FALSE), /* pcrel_offset */
5bd4f169
AM
233
234 /* An absolute 26 bit branch; the lower two bits must be zero.
235 FIXME: we don't check that, we just clear them. */
236 HOWTO (R_PPC64_ADDR24, /* type */
237 0, /* rightshift */
238 2, /* size (0 = byte, 1 = short, 2 = long) */
239 26, /* bitsize */
b34976b6 240 FALSE, /* pc_relative */
5bd4f169
AM
241 0, /* bitpos */
242 complain_overflow_bitfield, /* complain_on_overflow */
243 bfd_elf_generic_reloc, /* special_function */
244 "R_PPC64_ADDR24", /* name */
b34976b6 245 FALSE, /* partial_inplace */
d006db6c 246 0, /* src_mask */
f5e87a1d 247 0x03fffffc, /* dst_mask */
b34976b6 248 FALSE), /* pcrel_offset */
5bd4f169
AM
249
250 /* A standard 16 bit relocation. */
251 HOWTO (R_PPC64_ADDR16, /* type */
252 0, /* rightshift */
253 1, /* size (0 = byte, 1 = short, 2 = long) */
254 16, /* bitsize */
b34976b6 255 FALSE, /* pc_relative */
5bd4f169
AM
256 0, /* bitpos */
257 complain_overflow_bitfield, /* complain_on_overflow */
258 bfd_elf_generic_reloc, /* special_function */
259 "R_PPC64_ADDR16", /* name */
b34976b6 260 FALSE, /* partial_inplace */
5bd4f169
AM
261 0, /* src_mask */
262 0xffff, /* dst_mask */
b34976b6 263 FALSE), /* pcrel_offset */
5bd4f169
AM
264
265 /* A 16 bit relocation without overflow. */
266 HOWTO (R_PPC64_ADDR16_LO, /* type */
267 0, /* rightshift */
268 1, /* size (0 = byte, 1 = short, 2 = long) */
269 16, /* bitsize */
b34976b6 270 FALSE, /* pc_relative */
5bd4f169
AM
271 0, /* bitpos */
272 complain_overflow_dont,/* complain_on_overflow */
273 bfd_elf_generic_reloc, /* special_function */
274 "R_PPC64_ADDR16_LO", /* name */
b34976b6 275 FALSE, /* partial_inplace */
5bd4f169
AM
276 0, /* src_mask */
277 0xffff, /* dst_mask */
b34976b6 278 FALSE), /* pcrel_offset */
5bd4f169
AM
279
280 /* Bits 16-31 of an address. */
281 HOWTO (R_PPC64_ADDR16_HI, /* type */
282 16, /* rightshift */
283 1, /* size (0 = byte, 1 = short, 2 = long) */
284 16, /* bitsize */
b34976b6 285 FALSE, /* pc_relative */
5bd4f169
AM
286 0, /* bitpos */
287 complain_overflow_dont, /* complain_on_overflow */
288 bfd_elf_generic_reloc, /* special_function */
289 "R_PPC64_ADDR16_HI", /* name */
b34976b6 290 FALSE, /* partial_inplace */
5bd4f169
AM
291 0, /* src_mask */
292 0xffff, /* dst_mask */
b34976b6 293 FALSE), /* pcrel_offset */
5bd4f169
AM
294
295 /* Bits 16-31 of an address, plus 1 if the contents of the low 16
296 bits, treated as a signed number, is negative. */
297 HOWTO (R_PPC64_ADDR16_HA, /* type */
298 16, /* rightshift */
299 1, /* size (0 = byte, 1 = short, 2 = long) */
300 16, /* bitsize */
b34976b6 301 FALSE, /* pc_relative */
5bd4f169
AM
302 0, /* bitpos */
303 complain_overflow_dont, /* complain_on_overflow */
805fc799 304 ppc64_elf_ha_reloc, /* special_function */
5bd4f169 305 "R_PPC64_ADDR16_HA", /* name */
b34976b6 306 FALSE, /* partial_inplace */
5bd4f169
AM
307 0, /* src_mask */
308 0xffff, /* dst_mask */
b34976b6 309 FALSE), /* pcrel_offset */
5bd4f169
AM
310
311 /* An absolute 16 bit branch; the lower two bits must be zero.
312 FIXME: we don't check that, we just clear them. */
313 HOWTO (R_PPC64_ADDR14, /* type */
314 0, /* rightshift */
315 2, /* size (0 = byte, 1 = short, 2 = long) */
316 16, /* bitsize */
b34976b6 317 FALSE, /* pc_relative */
5bd4f169
AM
318 0, /* bitpos */
319 complain_overflow_bitfield, /* complain_on_overflow */
2441e016 320 ppc64_elf_branch_reloc, /* special_function */
5bd4f169 321 "R_PPC64_ADDR14", /* name */
b34976b6 322 FALSE, /* partial_inplace */
d006db6c 323 0, /* src_mask */
f5e87a1d 324 0x0000fffc, /* dst_mask */
b34976b6 325 FALSE), /* pcrel_offset */
5bd4f169
AM
326
327 /* An absolute 16 bit branch, for which bit 10 should be set to
328 indicate that the branch is expected to be taken. The lower two
329 bits must be zero. */
330 HOWTO (R_PPC64_ADDR14_BRTAKEN, /* type */
331 0, /* rightshift */
332 2, /* size (0 = byte, 1 = short, 2 = long) */
333 16, /* bitsize */
b34976b6 334 FALSE, /* pc_relative */
5bd4f169
AM
335 0, /* bitpos */
336 complain_overflow_bitfield, /* complain_on_overflow */
805fc799 337 ppc64_elf_brtaken_reloc, /* special_function */
5bd4f169 338 "R_PPC64_ADDR14_BRTAKEN",/* name */
b34976b6 339 FALSE, /* partial_inplace */
d006db6c 340 0, /* src_mask */
f5e87a1d 341 0x0000fffc, /* dst_mask */
b34976b6 342 FALSE), /* pcrel_offset */
5bd4f169
AM
343
344 /* An absolute 16 bit branch, for which bit 10 should be set to
345 indicate that the branch is not expected to be taken. The lower
346 two bits must be zero. */
347 HOWTO (R_PPC64_ADDR14_BRNTAKEN, /* type */
348 0, /* rightshift */
349 2, /* size (0 = byte, 1 = short, 2 = long) */
350 16, /* bitsize */
b34976b6 351 FALSE, /* pc_relative */
5bd4f169
AM
352 0, /* bitpos */
353 complain_overflow_bitfield, /* complain_on_overflow */
805fc799 354 ppc64_elf_brtaken_reloc, /* special_function */
5bd4f169 355 "R_PPC64_ADDR14_BRNTAKEN",/* name */
b34976b6 356 FALSE, /* partial_inplace */
d006db6c 357 0, /* src_mask */
f5e87a1d 358 0x0000fffc, /* dst_mask */
b34976b6 359 FALSE), /* pcrel_offset */
5bd4f169
AM
360
361 /* A relative 26 bit branch; the lower two bits must be zero. */
362 HOWTO (R_PPC64_REL24, /* type */
363 0, /* rightshift */
364 2, /* size (0 = byte, 1 = short, 2 = long) */
365 26, /* bitsize */
b34976b6 366 TRUE, /* pc_relative */
5bd4f169
AM
367 0, /* bitpos */
368 complain_overflow_signed, /* complain_on_overflow */
2441e016 369 ppc64_elf_branch_reloc, /* special_function */
5bd4f169 370 "R_PPC64_REL24", /* name */
b34976b6 371 FALSE, /* partial_inplace */
d006db6c 372 0, /* src_mask */
f5e87a1d 373 0x03fffffc, /* dst_mask */
b34976b6 374 TRUE), /* pcrel_offset */
5bd4f169
AM
375
376 /* A relative 16 bit branch; the lower two bits must be zero. */
377 HOWTO (R_PPC64_REL14, /* type */
378 0, /* rightshift */
379 2, /* size (0 = byte, 1 = short, 2 = long) */
380 16, /* bitsize */
b34976b6 381 TRUE, /* pc_relative */
5bd4f169
AM
382 0, /* bitpos */
383 complain_overflow_signed, /* complain_on_overflow */
2441e016 384 ppc64_elf_branch_reloc, /* special_function */
5bd4f169 385 "R_PPC64_REL14", /* name */
b34976b6 386 FALSE, /* partial_inplace */
d006db6c 387 0, /* src_mask */
f5e87a1d 388 0x0000fffc, /* dst_mask */
b34976b6 389 TRUE), /* pcrel_offset */
5bd4f169
AM
390
391 /* A relative 16 bit branch. Bit 10 should be set to indicate that
392 the branch is expected to be taken. The lower two bits must be
393 zero. */
394 HOWTO (R_PPC64_REL14_BRTAKEN, /* type */
395 0, /* rightshift */
396 2, /* size (0 = byte, 1 = short, 2 = long) */
397 16, /* bitsize */
b34976b6 398 TRUE, /* pc_relative */
5bd4f169
AM
399 0, /* bitpos */
400 complain_overflow_signed, /* complain_on_overflow */
805fc799 401 ppc64_elf_brtaken_reloc, /* special_function */
5bd4f169 402 "R_PPC64_REL14_BRTAKEN", /* name */
b34976b6 403 FALSE, /* partial_inplace */
d006db6c 404 0, /* src_mask */
f5e87a1d 405 0x0000fffc, /* dst_mask */
b34976b6 406 TRUE), /* pcrel_offset */
5bd4f169
AM
407
408 /* A relative 16 bit branch. Bit 10 should be set to indicate that
409 the branch is not expected to be taken. The lower two bits must
410 be zero. */
411 HOWTO (R_PPC64_REL14_BRNTAKEN, /* type */
412 0, /* rightshift */
413 2, /* size (0 = byte, 1 = short, 2 = long) */
414 16, /* bitsize */
b34976b6 415 TRUE, /* pc_relative */
5bd4f169
AM
416 0, /* bitpos */
417 complain_overflow_signed, /* complain_on_overflow */
805fc799 418 ppc64_elf_brtaken_reloc, /* special_function */
5bd4f169 419 "R_PPC64_REL14_BRNTAKEN",/* name */
b34976b6 420 FALSE, /* partial_inplace */
d006db6c 421 0, /* src_mask */
f5e87a1d 422 0x0000fffc, /* dst_mask */
b34976b6 423 TRUE), /* pcrel_offset */
5bd4f169
AM
424
425 /* Like R_PPC64_ADDR16, but referring to the GOT table entry for the
426 symbol. */
427 HOWTO (R_PPC64_GOT16, /* type */
428 0, /* rightshift */
429 1, /* size (0 = byte, 1 = short, 2 = long) */
430 16, /* bitsize */
b34976b6 431 FALSE, /* pc_relative */
5bd4f169
AM
432 0, /* bitpos */
433 complain_overflow_signed, /* complain_on_overflow */
805fc799 434 ppc64_elf_unhandled_reloc, /* special_function */
5bd4f169 435 "R_PPC64_GOT16", /* name */
b34976b6 436 FALSE, /* partial_inplace */
5bd4f169
AM
437 0, /* src_mask */
438 0xffff, /* dst_mask */
b34976b6 439 FALSE), /* pcrel_offset */
5bd4f169
AM
440
441 /* Like R_PPC64_ADDR16_LO, but referring to the GOT table entry for
442 the symbol. */
443 HOWTO (R_PPC64_GOT16_LO, /* type */
444 0, /* rightshift */
445 1, /* size (0 = byte, 1 = short, 2 = long) */
446 16, /* bitsize */
b34976b6 447 FALSE, /* pc_relative */
5bd4f169
AM
448 0, /* bitpos */
449 complain_overflow_dont, /* complain_on_overflow */
805fc799 450 ppc64_elf_unhandled_reloc, /* special_function */
5bd4f169 451 "R_PPC64_GOT16_LO", /* name */
b34976b6 452 FALSE, /* partial_inplace */
5bd4f169
AM
453 0, /* src_mask */
454 0xffff, /* dst_mask */
b34976b6 455 FALSE), /* pcrel_offset */
5bd4f169
AM
456
457 /* Like R_PPC64_ADDR16_HI, but referring to the GOT table entry for
458 the symbol. */
459 HOWTO (R_PPC64_GOT16_HI, /* type */
460 16, /* rightshift */
461 1, /* size (0 = byte, 1 = short, 2 = long) */
462 16, /* bitsize */
b34976b6 463 FALSE, /* pc_relative */
5bd4f169
AM
464 0, /* bitpos */
465 complain_overflow_dont,/* complain_on_overflow */
805fc799 466 ppc64_elf_unhandled_reloc, /* special_function */
5bd4f169 467 "R_PPC64_GOT16_HI", /* name */
b34976b6 468 FALSE, /* partial_inplace */
5bd4f169
AM
469 0, /* src_mask */
470 0xffff, /* dst_mask */
b34976b6 471 FALSE), /* pcrel_offset */
5bd4f169
AM
472
473 /* Like R_PPC64_ADDR16_HA, but referring to the GOT table entry for
474 the symbol. */
475 HOWTO (R_PPC64_GOT16_HA, /* type */
476 16, /* rightshift */
477 1, /* size (0 = byte, 1 = short, 2 = long) */
478 16, /* bitsize */
b34976b6 479 FALSE, /* pc_relative */
5bd4f169
AM
480 0, /* bitpos */
481 complain_overflow_dont,/* complain_on_overflow */
805fc799 482 ppc64_elf_unhandled_reloc, /* special_function */
5bd4f169 483 "R_PPC64_GOT16_HA", /* name */
b34976b6 484 FALSE, /* partial_inplace */
5bd4f169
AM
485 0, /* src_mask */
486 0xffff, /* dst_mask */
b34976b6 487 FALSE), /* pcrel_offset */
5bd4f169
AM
488
489 /* This is used only by the dynamic linker. The symbol should exist
490 both in the object being run and in some shared library. The
491 dynamic linker copies the data addressed by the symbol from the
492 shared library into the object, because the object being
493 run has to have the data at some particular address. */
494 HOWTO (R_PPC64_COPY, /* type */
495 0, /* rightshift */
f5e87a1d
AM
496 0, /* this one is variable size */
497 0, /* bitsize */
b34976b6 498 FALSE, /* pc_relative */
5bd4f169 499 0, /* bitpos */
f5e87a1d
AM
500 complain_overflow_dont, /* complain_on_overflow */
501 ppc64_elf_unhandled_reloc, /* special_function */
5bd4f169 502 "R_PPC64_COPY", /* name */
b34976b6 503 FALSE, /* partial_inplace */
5bd4f169
AM
504 0, /* src_mask */
505 0, /* dst_mask */
b34976b6 506 FALSE), /* pcrel_offset */
5bd4f169
AM
507
508 /* Like R_PPC64_ADDR64, but used when setting global offset table
509 entries. */
510 HOWTO (R_PPC64_GLOB_DAT, /* type */
511 0, /* rightshift */
512 4, /* size (0=byte, 1=short, 2=long, 4=64 bits) */
513 64, /* bitsize */
b34976b6 514 FALSE, /* pc_relative */
5bd4f169
AM
515 0, /* bitpos */
516 complain_overflow_dont, /* complain_on_overflow */
805fc799 517 ppc64_elf_unhandled_reloc, /* special_function */
5bd4f169 518 "R_PPC64_GLOB_DAT", /* name */
b34976b6 519 FALSE, /* partial_inplace */
5bd4f169 520 0, /* src_mask */
f5e87a1d 521 ONES (64), /* dst_mask */
b34976b6 522 FALSE), /* pcrel_offset */
5bd4f169
AM
523
524 /* Created by the link editor. Marks a procedure linkage table
525 entry for a symbol. */
526 HOWTO (R_PPC64_JMP_SLOT, /* type */
527 0, /* rightshift */
528 0, /* size (0 = byte, 1 = short, 2 = long) */
529 0, /* bitsize */
b34976b6 530 FALSE, /* pc_relative */
5bd4f169
AM
531 0, /* bitpos */
532 complain_overflow_dont, /* complain_on_overflow */
805fc799 533 ppc64_elf_unhandled_reloc, /* special_function */
5bd4f169 534 "R_PPC64_JMP_SLOT", /* name */
b34976b6 535 FALSE, /* partial_inplace */
5bd4f169
AM
536 0, /* src_mask */
537 0, /* dst_mask */
b34976b6 538 FALSE), /* pcrel_offset */
5bd4f169
AM
539
540 /* Used only by the dynamic linker. When the object is run, this
541 doubleword64 is set to the load address of the object, plus the
542 addend. */
543 HOWTO (R_PPC64_RELATIVE, /* type */
544 0, /* rightshift */
545 4, /* size (0=byte, 1=short, 2=long, 4=64 bits) */
546 64, /* bitsize */
b34976b6 547 FALSE, /* pc_relative */
5bd4f169
AM
548 0, /* bitpos */
549 complain_overflow_dont, /* complain_on_overflow */
550 bfd_elf_generic_reloc, /* special_function */
551 "R_PPC64_RELATIVE", /* name */
b34976b6 552 FALSE, /* partial_inplace */
5bd4f169 553 0, /* src_mask */
f5e87a1d 554 ONES (64), /* dst_mask */
b34976b6 555 FALSE), /* pcrel_offset */
5bd4f169
AM
556
557 /* Like R_PPC64_ADDR32, but may be unaligned. */
558 HOWTO (R_PPC64_UADDR32, /* type */
559 0, /* rightshift */
560 2, /* size (0 = byte, 1 = short, 2 = long) */
561 32, /* bitsize */
b34976b6 562 FALSE, /* pc_relative */
5bd4f169
AM
563 0, /* bitpos */
564 complain_overflow_bitfield, /* complain_on_overflow */
565 bfd_elf_generic_reloc, /* special_function */
566 "R_PPC64_UADDR32", /* name */
b34976b6 567 FALSE, /* partial_inplace */
5bd4f169
AM
568 0, /* src_mask */
569 0xffffffff, /* dst_mask */
b34976b6 570 FALSE), /* pcrel_offset */
5bd4f169
AM
571
572 /* Like R_PPC64_ADDR16, but may be unaligned. */
573 HOWTO (R_PPC64_UADDR16, /* type */
574 0, /* rightshift */
575 1, /* size (0 = byte, 1 = short, 2 = long) */
576 16, /* bitsize */
b34976b6 577 FALSE, /* pc_relative */
5bd4f169
AM
578 0, /* bitpos */
579 complain_overflow_bitfield, /* complain_on_overflow */
580 bfd_elf_generic_reloc, /* special_function */
581 "R_PPC64_UADDR16", /* name */
b34976b6 582 FALSE, /* partial_inplace */
5bd4f169
AM
583 0, /* src_mask */
584 0xffff, /* dst_mask */
b34976b6 585 FALSE), /* pcrel_offset */
5bd4f169
AM
586
587 /* 32-bit PC relative. */
588 HOWTO (R_PPC64_REL32, /* type */
589 0, /* rightshift */
590 2, /* size (0 = byte, 1 = short, 2 = long) */
591 32, /* bitsize */
b34976b6 592 TRUE, /* pc_relative */
5bd4f169 593 0, /* bitpos */
cedb70c5 594 /* FIXME: Verify. Was complain_overflow_bitfield. */
5bd4f169
AM
595 complain_overflow_signed, /* complain_on_overflow */
596 bfd_elf_generic_reloc, /* special_function */
597 "R_PPC64_REL32", /* name */
b34976b6 598 FALSE, /* partial_inplace */
5bd4f169
AM
599 0, /* src_mask */
600 0xffffffff, /* dst_mask */
b34976b6 601 TRUE), /* pcrel_offset */
5bd4f169 602
10ed1bba 603 /* 32-bit relocation to the symbol's procedure linkage table. */
5bd4f169
AM
604 HOWTO (R_PPC64_PLT32, /* type */
605 0, /* rightshift */
606 2, /* size (0 = byte, 1 = short, 2 = long) */
607 32, /* bitsize */
b34976b6 608 FALSE, /* pc_relative */
5bd4f169
AM
609 0, /* bitpos */
610 complain_overflow_bitfield, /* complain_on_overflow */
805fc799 611 ppc64_elf_unhandled_reloc, /* special_function */
5bd4f169 612 "R_PPC64_PLT32", /* name */
b34976b6 613 FALSE, /* partial_inplace */
5bd4f169 614 0, /* src_mask */
f5e87a1d 615 0xffffffff, /* dst_mask */
b34976b6 616 FALSE), /* pcrel_offset */
5bd4f169
AM
617
618 /* 32-bit PC relative relocation to the symbol's procedure linkage table.
619 FIXME: R_PPC64_PLTREL32 not supported. */
620 HOWTO (R_PPC64_PLTREL32, /* type */
621 0, /* rightshift */
622 2, /* size (0 = byte, 1 = short, 2 = long) */
623 32, /* bitsize */
b34976b6 624 TRUE, /* pc_relative */
5bd4f169
AM
625 0, /* bitpos */
626 complain_overflow_signed, /* complain_on_overflow */
627 bfd_elf_generic_reloc, /* special_function */
628 "R_PPC64_PLTREL32", /* name */
b34976b6 629 FALSE, /* partial_inplace */
5bd4f169 630 0, /* src_mask */
f5e87a1d 631 0xffffffff, /* dst_mask */
b34976b6 632 TRUE), /* pcrel_offset */
5bd4f169
AM
633
634 /* Like R_PPC64_ADDR16_LO, but referring to the PLT table entry for
635 the symbol. */
636 HOWTO (R_PPC64_PLT16_LO, /* type */
637 0, /* rightshift */
638 1, /* size (0 = byte, 1 = short, 2 = long) */
639 16, /* bitsize */
b34976b6 640 FALSE, /* pc_relative */
5bd4f169
AM
641 0, /* bitpos */
642 complain_overflow_dont, /* complain_on_overflow */
805fc799 643 ppc64_elf_unhandled_reloc, /* special_function */
5bd4f169 644 "R_PPC64_PLT16_LO", /* name */
b34976b6 645 FALSE, /* partial_inplace */
5bd4f169
AM
646 0, /* src_mask */
647 0xffff, /* dst_mask */
b34976b6 648 FALSE), /* pcrel_offset */
5bd4f169
AM
649
650 /* Like R_PPC64_ADDR16_HI, but referring to the PLT table entry for
651 the symbol. */
652 HOWTO (R_PPC64_PLT16_HI, /* type */
653 16, /* rightshift */
654 1, /* size (0 = byte, 1 = short, 2 = long) */
655 16, /* bitsize */
b34976b6 656 FALSE, /* pc_relative */
5bd4f169
AM
657 0, /* bitpos */
658 complain_overflow_dont, /* complain_on_overflow */
805fc799 659 ppc64_elf_unhandled_reloc, /* special_function */
5bd4f169 660 "R_PPC64_PLT16_HI", /* name */
b34976b6 661 FALSE, /* partial_inplace */
5bd4f169
AM
662 0, /* src_mask */
663 0xffff, /* dst_mask */
b34976b6 664 FALSE), /* pcrel_offset */
5bd4f169
AM
665
666 /* Like R_PPC64_ADDR16_HA, but referring to the PLT table entry for
667 the symbol. */
668 HOWTO (R_PPC64_PLT16_HA, /* type */
669 16, /* rightshift */
670 1, /* size (0 = byte, 1 = short, 2 = long) */
671 16, /* bitsize */
b34976b6 672 FALSE, /* pc_relative */
5bd4f169
AM
673 0, /* bitpos */
674 complain_overflow_dont, /* complain_on_overflow */
805fc799 675 ppc64_elf_unhandled_reloc, /* special_function */
5bd4f169 676 "R_PPC64_PLT16_HA", /* name */
b34976b6 677 FALSE, /* partial_inplace */
5bd4f169
AM
678 0, /* src_mask */
679 0xffff, /* dst_mask */
b34976b6 680 FALSE), /* pcrel_offset */
5bd4f169 681
c061c2d8 682 /* 16-bit section relative relocation. */
5bd4f169
AM
683 HOWTO (R_PPC64_SECTOFF, /* type */
684 0, /* rightshift */
c061c2d8
AM
685 1, /* size (0 = byte, 1 = short, 2 = long) */
686 16, /* bitsize */
b34976b6 687 FALSE, /* pc_relative */
5bd4f169
AM
688 0, /* bitpos */
689 complain_overflow_bitfield, /* complain_on_overflow */
805fc799 690 ppc64_elf_sectoff_reloc, /* special_function */
5bd4f169 691 "R_PPC64_SECTOFF", /* name */
b34976b6 692 FALSE, /* partial_inplace */
5bd4f169 693 0, /* src_mask */
c061c2d8 694 0xffff, /* dst_mask */
b34976b6 695 FALSE), /* pcrel_offset */
5bd4f169 696
c061c2d8 697 /* Like R_PPC64_SECTOFF, but no overflow warning. */
5bd4f169
AM
698 HOWTO (R_PPC64_SECTOFF_LO, /* type */
699 0, /* rightshift */
700 1, /* size (0 = byte, 1 = short, 2 = long) */
701 16, /* bitsize */
b34976b6 702 FALSE, /* pc_relative */
5bd4f169
AM
703 0, /* bitpos */
704 complain_overflow_dont, /* complain_on_overflow */
805fc799 705 ppc64_elf_sectoff_reloc, /* special_function */
5bd4f169 706 "R_PPC64_SECTOFF_LO", /* name */
b34976b6 707 FALSE, /* partial_inplace */
5bd4f169
AM
708 0, /* src_mask */
709 0xffff, /* dst_mask */
b34976b6 710 FALSE), /* pcrel_offset */
5bd4f169
AM
711
712 /* 16-bit upper half section relative relocation. */
713 HOWTO (R_PPC64_SECTOFF_HI, /* type */
714 16, /* rightshift */
715 1, /* size (0 = byte, 1 = short, 2 = long) */
716 16, /* bitsize */
b34976b6 717 FALSE, /* pc_relative */
5bd4f169
AM
718 0, /* bitpos */
719 complain_overflow_dont, /* complain_on_overflow */
805fc799 720 ppc64_elf_sectoff_reloc, /* special_function */
5bd4f169 721 "R_PPC64_SECTOFF_HI", /* name */
b34976b6 722 FALSE, /* partial_inplace */
5bd4f169
AM
723 0, /* src_mask */
724 0xffff, /* dst_mask */
b34976b6 725 FALSE), /* pcrel_offset */
5bd4f169
AM
726
727 /* 16-bit upper half adjusted section relative relocation. */
728 HOWTO (R_PPC64_SECTOFF_HA, /* type */
729 16, /* rightshift */
730 1, /* size (0 = byte, 1 = short, 2 = long) */
731 16, /* bitsize */
b34976b6 732 FALSE, /* pc_relative */
5bd4f169
AM
733 0, /* bitpos */
734 complain_overflow_dont, /* complain_on_overflow */
805fc799 735 ppc64_elf_sectoff_ha_reloc, /* special_function */
5bd4f169 736 "R_PPC64_SECTOFF_HA", /* name */
b34976b6 737 FALSE, /* partial_inplace */
5bd4f169
AM
738 0, /* src_mask */
739 0xffff, /* dst_mask */
b34976b6 740 FALSE), /* pcrel_offset */
5bd4f169 741
04c9666a
AM
742 /* Like R_PPC64_REL24 without touching the two least significant bits. */
743 HOWTO (R_PPC64_REL30, /* type */
5bd4f169
AM
744 2, /* rightshift */
745 2, /* size (0 = byte, 1 = short, 2 = long) */
746 30, /* bitsize */
b34976b6 747 TRUE, /* pc_relative */
5bd4f169
AM
748 0, /* bitpos */
749 complain_overflow_dont, /* complain_on_overflow */
750 bfd_elf_generic_reloc, /* special_function */
04c9666a 751 "R_PPC64_REL30", /* name */
b34976b6 752 FALSE, /* partial_inplace */
d006db6c 753 0, /* src_mask */
5bd4f169 754 0xfffffffc, /* dst_mask */
b34976b6 755 TRUE), /* pcrel_offset */
5bd4f169
AM
756
757 /* Relocs in the 64-bit PowerPC ELF ABI, not in the 32-bit ABI. */
758
759 /* A standard 64-bit relocation. */
760 HOWTO (R_PPC64_ADDR64, /* type */
761 0, /* rightshift */
762 4, /* size (0=byte, 1=short, 2=long, 4=64 bits) */
763 64, /* bitsize */
b34976b6 764 FALSE, /* pc_relative */
5bd4f169
AM
765 0, /* bitpos */
766 complain_overflow_dont, /* complain_on_overflow */
767 bfd_elf_generic_reloc, /* special_function */
768 "R_PPC64_ADDR64", /* name */
b34976b6 769 FALSE, /* partial_inplace */
5bd4f169 770 0, /* src_mask */
f5e87a1d 771 ONES (64), /* dst_mask */
b34976b6 772 FALSE), /* pcrel_offset */
5bd4f169
AM
773
774 /* The bits 32-47 of an address. */
775 HOWTO (R_PPC64_ADDR16_HIGHER, /* type */
776 32, /* rightshift */
777 1, /* size (0 = byte, 1 = short, 2 = long) */
778 16, /* bitsize */
b34976b6 779 FALSE, /* pc_relative */
5bd4f169
AM
780 0, /* bitpos */
781 complain_overflow_dont, /* complain_on_overflow */
782 bfd_elf_generic_reloc, /* special_function */
783 "R_PPC64_ADDR16_HIGHER", /* name */
b34976b6 784 FALSE, /* partial_inplace */
5bd4f169
AM
785 0, /* src_mask */
786 0xffff, /* dst_mask */
b34976b6 787 FALSE), /* pcrel_offset */
5bd4f169
AM
788
789 /* The bits 32-47 of an address, plus 1 if the contents of the low
790 16 bits, treated as a signed number, is negative. */
791 HOWTO (R_PPC64_ADDR16_HIGHERA, /* type */
792 32, /* rightshift */
793 1, /* size (0 = byte, 1 = short, 2 = long) */
794 16, /* bitsize */
b34976b6 795 FALSE, /* pc_relative */
5bd4f169
AM
796 0, /* bitpos */
797 complain_overflow_dont, /* complain_on_overflow */
805fc799 798 ppc64_elf_ha_reloc, /* special_function */
5bd4f169 799 "R_PPC64_ADDR16_HIGHERA", /* name */
b34976b6 800 FALSE, /* partial_inplace */
5bd4f169
AM
801 0, /* src_mask */
802 0xffff, /* dst_mask */
b34976b6 803 FALSE), /* pcrel_offset */
5bd4f169
AM
804
805 /* The bits 48-63 of an address. */
806 HOWTO (R_PPC64_ADDR16_HIGHEST,/* type */
807 48, /* rightshift */
808 1, /* size (0 = byte, 1 = short, 2 = long) */
809 16, /* bitsize */
b34976b6 810 FALSE, /* pc_relative */
5bd4f169
AM
811 0, /* bitpos */
812 complain_overflow_dont, /* complain_on_overflow */
813 bfd_elf_generic_reloc, /* special_function */
814 "R_PPC64_ADDR16_HIGHEST", /* name */
b34976b6 815 FALSE, /* partial_inplace */
5bd4f169
AM
816 0, /* src_mask */
817 0xffff, /* dst_mask */
b34976b6 818 FALSE), /* pcrel_offset */
5bd4f169
AM
819
820 /* The bits 48-63 of an address, plus 1 if the contents of the low
821 16 bits, treated as a signed number, is negative. */
822 HOWTO (R_PPC64_ADDR16_HIGHESTA,/* type */
823 48, /* rightshift */
824 1, /* size (0 = byte, 1 = short, 2 = long) */
825 16, /* bitsize */
b34976b6 826 FALSE, /* pc_relative */
5bd4f169
AM
827 0, /* bitpos */
828 complain_overflow_dont, /* complain_on_overflow */
805fc799 829 ppc64_elf_ha_reloc, /* special_function */
5bd4f169 830 "R_PPC64_ADDR16_HIGHESTA", /* name */
b34976b6 831 FALSE, /* partial_inplace */
5bd4f169
AM
832 0, /* src_mask */
833 0xffff, /* dst_mask */
b34976b6 834 FALSE), /* pcrel_offset */
5bd4f169
AM
835
836 /* Like ADDR64, but may be unaligned. */
837 HOWTO (R_PPC64_UADDR64, /* type */
838 0, /* rightshift */
839 4, /* size (0=byte, 1=short, 2=long, 4=64 bits) */
840 64, /* bitsize */
b34976b6 841 FALSE, /* pc_relative */
5bd4f169
AM
842 0, /* bitpos */
843 complain_overflow_dont, /* complain_on_overflow */
844 bfd_elf_generic_reloc, /* special_function */
845 "R_PPC64_UADDR64", /* name */
b34976b6 846 FALSE, /* partial_inplace */
5bd4f169 847 0, /* src_mask */
f5e87a1d 848 ONES (64), /* dst_mask */
b34976b6 849 FALSE), /* pcrel_offset */
5bd4f169
AM
850
851 /* 64-bit relative relocation. */
852 HOWTO (R_PPC64_REL64, /* type */
853 0, /* rightshift */
854 4, /* size (0=byte, 1=short, 2=long, 4=64 bits) */
855 64, /* bitsize */
b34976b6 856 TRUE, /* pc_relative */
5bd4f169
AM
857 0, /* bitpos */
858 complain_overflow_dont, /* complain_on_overflow */
859 bfd_elf_generic_reloc, /* special_function */
860 "R_PPC64_REL64", /* name */
b34976b6 861 FALSE, /* partial_inplace */
5bd4f169 862 0, /* src_mask */
f5e87a1d 863 ONES (64), /* dst_mask */
b34976b6 864 TRUE), /* pcrel_offset */
5bd4f169 865
cedb70c5 866 /* 64-bit relocation to the symbol's procedure linkage table. */
5bd4f169
AM
867 HOWTO (R_PPC64_PLT64, /* type */
868 0, /* rightshift */
869 4, /* size (0=byte, 1=short, 2=long, 4=64 bits) */
870 64, /* bitsize */
b34976b6 871 FALSE, /* pc_relative */
5bd4f169
AM
872 0, /* bitpos */
873 complain_overflow_dont, /* complain_on_overflow */
805fc799 874 ppc64_elf_unhandled_reloc, /* special_function */
5bd4f169 875 "R_PPC64_PLT64", /* name */
b34976b6 876 FALSE, /* partial_inplace */
5bd4f169 877 0, /* src_mask */
f5e87a1d 878 ONES (64), /* dst_mask */
b34976b6 879 FALSE), /* pcrel_offset */
5bd4f169
AM
880
881 /* 64-bit PC relative relocation to the symbol's procedure linkage
882 table. */
883 /* FIXME: R_PPC64_PLTREL64 not supported. */
884 HOWTO (R_PPC64_PLTREL64, /* type */
885 0, /* rightshift */
886 4, /* size (0=byte, 1=short, 2=long, 4=64 bits) */
887 64, /* bitsize */
b34976b6 888 TRUE, /* pc_relative */
5bd4f169
AM
889 0, /* bitpos */
890 complain_overflow_dont, /* complain_on_overflow */
805fc799 891 ppc64_elf_unhandled_reloc, /* special_function */
5bd4f169 892 "R_PPC64_PLTREL64", /* name */
b34976b6 893 FALSE, /* partial_inplace */
5bd4f169 894 0, /* src_mask */
f5e87a1d 895 ONES (64), /* dst_mask */
b34976b6 896 TRUE), /* pcrel_offset */
5bd4f169
AM
897
898 /* 16 bit TOC-relative relocation. */
899
900 /* R_PPC64_TOC16 47 half16* S + A - .TOC. */
901 HOWTO (R_PPC64_TOC16, /* type */
902 0, /* rightshift */
903 1, /* size (0 = byte, 1 = short, 2 = long) */
904 16, /* bitsize */
b34976b6 905 FALSE, /* pc_relative */
5bd4f169
AM
906 0, /* bitpos */
907 complain_overflow_signed, /* complain_on_overflow */
805fc799 908 ppc64_elf_toc_reloc, /* special_function */
5bd4f169 909 "R_PPC64_TOC16", /* name */
b34976b6 910 FALSE, /* partial_inplace */
5bd4f169
AM
911 0, /* src_mask */
912 0xffff, /* dst_mask */
b34976b6 913 FALSE), /* pcrel_offset */
5bd4f169
AM
914
915 /* 16 bit TOC-relative relocation without overflow. */
916
917 /* R_PPC64_TOC16_LO 48 half16 #lo (S + A - .TOC.) */
918 HOWTO (R_PPC64_TOC16_LO, /* type */
919 0, /* rightshift */
920 1, /* size (0 = byte, 1 = short, 2 = long) */
921 16, /* bitsize */
b34976b6 922 FALSE, /* pc_relative */
5bd4f169
AM
923 0, /* bitpos */
924 complain_overflow_dont, /* complain_on_overflow */
805fc799 925 ppc64_elf_toc_reloc, /* special_function */
5bd4f169 926 "R_PPC64_TOC16_LO", /* name */
b34976b6 927 FALSE, /* partial_inplace */
5bd4f169
AM
928 0, /* src_mask */
929 0xffff, /* dst_mask */
b34976b6 930 FALSE), /* pcrel_offset */
5bd4f169
AM
931
932 /* 16 bit TOC-relative relocation, high 16 bits. */
933
934 /* R_PPC64_TOC16_HI 49 half16 #hi (S + A - .TOC.) */
935 HOWTO (R_PPC64_TOC16_HI, /* type */
936 16, /* rightshift */
937 1, /* size (0 = byte, 1 = short, 2 = long) */
938 16, /* bitsize */
b34976b6 939 FALSE, /* pc_relative */
5bd4f169
AM
940 0, /* bitpos */
941 complain_overflow_dont, /* complain_on_overflow */
805fc799 942 ppc64_elf_toc_reloc, /* special_function */
5bd4f169 943 "R_PPC64_TOC16_HI", /* name */
b34976b6 944 FALSE, /* partial_inplace */
5bd4f169
AM
945 0, /* src_mask */
946 0xffff, /* dst_mask */
b34976b6 947 FALSE), /* pcrel_offset */
5bd4f169
AM
948
949 /* 16 bit TOC-relative relocation, high 16 bits, plus 1 if the
950 contents of the low 16 bits, treated as a signed number, is
951 negative. */
952
953 /* R_PPC64_TOC16_HA 50 half16 #ha (S + A - .TOC.) */
954 HOWTO (R_PPC64_TOC16_HA, /* type */
955 16, /* rightshift */
956 1, /* size (0 = byte, 1 = short, 2 = long) */
957 16, /* bitsize */
b34976b6 958 FALSE, /* pc_relative */
5bd4f169
AM
959 0, /* bitpos */
960 complain_overflow_dont, /* complain_on_overflow */
805fc799 961 ppc64_elf_toc_ha_reloc, /* special_function */
5bd4f169 962 "R_PPC64_TOC16_HA", /* name */
b34976b6 963 FALSE, /* partial_inplace */
5bd4f169
AM
964 0, /* src_mask */
965 0xffff, /* dst_mask */
b34976b6 966 FALSE), /* pcrel_offset */
5bd4f169
AM
967
968 /* 64-bit relocation; insert value of TOC base (.TOC.). */
969
970 /* R_PPC64_TOC 51 doubleword64 .TOC. */
971 HOWTO (R_PPC64_TOC, /* type */
972 0, /* rightshift */
973 4, /* size (0=byte, 1=short, 2=long, 4=64 bits) */
974 64, /* bitsize */
b34976b6 975 FALSE, /* pc_relative */
5bd4f169
AM
976 0, /* bitpos */
977 complain_overflow_bitfield, /* complain_on_overflow */
805fc799 978 ppc64_elf_toc64_reloc, /* special_function */
5bd4f169 979 "R_PPC64_TOC", /* name */
b34976b6 980 FALSE, /* partial_inplace */
5bd4f169 981 0, /* src_mask */
f5e87a1d 982 ONES (64), /* dst_mask */
b34976b6 983 FALSE), /* pcrel_offset */
5bd4f169
AM
984
985 /* Like R_PPC64_GOT16, but also informs the link editor that the
986 value to relocate may (!) refer to a PLT entry which the link
987 editor (a) may replace with the symbol value. If the link editor
988 is unable to fully resolve the symbol, it may (b) create a PLT
989 entry and store the address to the new PLT entry in the GOT.
990 This permits lazy resolution of function symbols at run time.
991 The link editor may also skip all of this and just (c) emit a
992 R_PPC64_GLOB_DAT to tie the symbol to the GOT entry. */
993 /* FIXME: R_PPC64_PLTGOT16 not implemented. */
994 HOWTO (R_PPC64_PLTGOT16, /* type */
995 0, /* rightshift */
996 1, /* size (0 = byte, 1 = short, 2 = long) */
997 16, /* bitsize */
b34976b6 998 FALSE, /* pc_relative */
5bd4f169
AM
999 0, /* bitpos */
1000 complain_overflow_signed, /* complain_on_overflow */
805fc799 1001 ppc64_elf_unhandled_reloc, /* special_function */
411e1bfb
AM
1002 "R_PPC64_PLTGOT16", /* name */
1003 FALSE, /* partial_inplace */
1004 0, /* src_mask */
1005 0xffff, /* dst_mask */
1006 FALSE), /* pcrel_offset */
1007
1008 /* Like R_PPC64_PLTGOT16, but without overflow. */
1009 /* FIXME: R_PPC64_PLTGOT16_LO not implemented. */
1010 HOWTO (R_PPC64_PLTGOT16_LO, /* type */
1011 0, /* rightshift */
1012 1, /* size (0 = byte, 1 = short, 2 = long) */
1013 16, /* bitsize */
1014 FALSE, /* pc_relative */
1015 0, /* bitpos */
1016 complain_overflow_dont, /* complain_on_overflow */
1017 ppc64_elf_unhandled_reloc, /* special_function */
1018 "R_PPC64_PLTGOT16_LO", /* name */
1019 FALSE, /* partial_inplace */
1020 0, /* src_mask */
1021 0xffff, /* dst_mask */
1022 FALSE), /* pcrel_offset */
1023
1024 /* Like R_PPC64_PLT_GOT16, but using bits 16-31 of the address. */
1025 /* FIXME: R_PPC64_PLTGOT16_HI not implemented. */
1026 HOWTO (R_PPC64_PLTGOT16_HI, /* type */
1027 16, /* rightshift */
1028 1, /* size (0 = byte, 1 = short, 2 = long) */
1029 16, /* bitsize */
1030 FALSE, /* pc_relative */
1031 0, /* bitpos */
1032 complain_overflow_dont, /* complain_on_overflow */
1033 ppc64_elf_unhandled_reloc, /* special_function */
1034 "R_PPC64_PLTGOT16_HI", /* name */
1035 FALSE, /* partial_inplace */
1036 0, /* src_mask */
1037 0xffff, /* dst_mask */
1038 FALSE), /* pcrel_offset */
1039
1040 /* Like R_PPC64_PLT_GOT16, but using bits 16-31 of the address, plus
1041 1 if the contents of the low 16 bits, treated as a signed number,
1042 is negative. */
1043 /* FIXME: R_PPC64_PLTGOT16_HA not implemented. */
1044 HOWTO (R_PPC64_PLTGOT16_HA, /* type */
1045 16, /* rightshift */
1046 1, /* size (0 = byte, 1 = short, 2 = long) */
1047 16, /* bitsize */
1048 FALSE, /* pc_relative */
1049 0, /* bitpos */
1050 complain_overflow_dont,/* complain_on_overflow */
1051 ppc64_elf_unhandled_reloc, /* special_function */
1052 "R_PPC64_PLTGOT16_HA", /* name */
1053 FALSE, /* partial_inplace */
1054 0, /* src_mask */
1055 0xffff, /* dst_mask */
1056 FALSE), /* pcrel_offset */
1057
1058 /* Like R_PPC64_ADDR16, but for instructions with a DS field. */
1059 HOWTO (R_PPC64_ADDR16_DS, /* type */
1060 0, /* rightshift */
1061 1, /* size (0 = byte, 1 = short, 2 = long) */
1062 16, /* bitsize */
1063 FALSE, /* pc_relative */
1064 0, /* bitpos */
1065 complain_overflow_bitfield, /* complain_on_overflow */
1066 bfd_elf_generic_reloc, /* special_function */
1067 "R_PPC64_ADDR16_DS", /* name */
1068 FALSE, /* partial_inplace */
1069 0, /* src_mask */
1070 0xfffc, /* dst_mask */
1071 FALSE), /* pcrel_offset */
1072
1073 /* Like R_PPC64_ADDR16_LO, but for instructions with a DS field. */
1074 HOWTO (R_PPC64_ADDR16_LO_DS, /* type */
1075 0, /* rightshift */
1076 1, /* size (0 = byte, 1 = short, 2 = long) */
1077 16, /* bitsize */
1078 FALSE, /* pc_relative */
1079 0, /* bitpos */
1080 complain_overflow_dont,/* complain_on_overflow */
1081 bfd_elf_generic_reloc, /* special_function */
1082 "R_PPC64_ADDR16_LO_DS",/* name */
1083 FALSE, /* partial_inplace */
1084 0, /* src_mask */
1085 0xfffc, /* dst_mask */
1086 FALSE), /* pcrel_offset */
1087
1088 /* Like R_PPC64_GOT16, but for instructions with a DS field. */
1089 HOWTO (R_PPC64_GOT16_DS, /* type */
1090 0, /* rightshift */
1091 1, /* size (0 = byte, 1 = short, 2 = long) */
1092 16, /* bitsize */
1093 FALSE, /* pc_relative */
1094 0, /* bitpos */
1095 complain_overflow_signed, /* complain_on_overflow */
1096 ppc64_elf_unhandled_reloc, /* special_function */
1097 "R_PPC64_GOT16_DS", /* name */
1098 FALSE, /* partial_inplace */
1099 0, /* src_mask */
1100 0xfffc, /* dst_mask */
1101 FALSE), /* pcrel_offset */
1102
1103 /* Like R_PPC64_GOT16_LO, but for instructions with a DS field. */
1104 HOWTO (R_PPC64_GOT16_LO_DS, /* type */
1105 0, /* rightshift */
1106 1, /* size (0 = byte, 1 = short, 2 = long) */
1107 16, /* bitsize */
1108 FALSE, /* pc_relative */
1109 0, /* bitpos */
1110 complain_overflow_dont, /* complain_on_overflow */
1111 ppc64_elf_unhandled_reloc, /* special_function */
1112 "R_PPC64_GOT16_LO_DS", /* name */
1113 FALSE, /* partial_inplace */
1114 0, /* src_mask */
1115 0xfffc, /* dst_mask */
1116 FALSE), /* pcrel_offset */
1117
1118 /* Like R_PPC64_PLT16_LO, but for instructions with a DS field. */
1119 HOWTO (R_PPC64_PLT16_LO_DS, /* type */
1120 0, /* rightshift */
1121 1, /* size (0 = byte, 1 = short, 2 = long) */
1122 16, /* bitsize */
1123 FALSE, /* pc_relative */
1124 0, /* bitpos */
1125 complain_overflow_dont, /* complain_on_overflow */
1126 ppc64_elf_unhandled_reloc, /* special_function */
1127 "R_PPC64_PLT16_LO_DS", /* name */
1128 FALSE, /* partial_inplace */
1129 0, /* src_mask */
1130 0xfffc, /* dst_mask */
1131 FALSE), /* pcrel_offset */
1132
1133 /* Like R_PPC64_SECTOFF, but for instructions with a DS field. */
1134 HOWTO (R_PPC64_SECTOFF_DS, /* type */
1135 0, /* rightshift */
1136 1, /* size (0 = byte, 1 = short, 2 = long) */
1137 16, /* bitsize */
1138 FALSE, /* pc_relative */
1139 0, /* bitpos */
1140 complain_overflow_bitfield, /* complain_on_overflow */
1141 ppc64_elf_sectoff_reloc, /* special_function */
1142 "R_PPC64_SECTOFF_DS", /* name */
1143 FALSE, /* partial_inplace */
1144 0, /* src_mask */
1145 0xfffc, /* dst_mask */
1146 FALSE), /* pcrel_offset */
1147
1148 /* Like R_PPC64_SECTOFF_LO, but for instructions with a DS field. */
1149 HOWTO (R_PPC64_SECTOFF_LO_DS, /* type */
1150 0, /* rightshift */
1151 1, /* size (0 = byte, 1 = short, 2 = long) */
1152 16, /* bitsize */
1153 FALSE, /* pc_relative */
1154 0, /* bitpos */
1155 complain_overflow_dont, /* complain_on_overflow */
1156 ppc64_elf_sectoff_reloc, /* special_function */
1157 "R_PPC64_SECTOFF_LO_DS",/* name */
1158 FALSE, /* partial_inplace */
1159 0, /* src_mask */
1160 0xfffc, /* dst_mask */
1161 FALSE), /* pcrel_offset */
1162
1163 /* Like R_PPC64_TOC16, but for instructions with a DS field. */
1164 HOWTO (R_PPC64_TOC16_DS, /* type */
1165 0, /* rightshift */
1166 1, /* size (0 = byte, 1 = short, 2 = long) */
1167 16, /* bitsize */
1168 FALSE, /* pc_relative */
1169 0, /* bitpos */
1170 complain_overflow_signed, /* complain_on_overflow */
1171 ppc64_elf_toc_reloc, /* special_function */
1172 "R_PPC64_TOC16_DS", /* name */
1173 FALSE, /* partial_inplace */
1174 0, /* src_mask */
1175 0xfffc, /* dst_mask */
1176 FALSE), /* pcrel_offset */
1177
1178 /* Like R_PPC64_TOC16_LO, but for instructions with a DS field. */
1179 HOWTO (R_PPC64_TOC16_LO_DS, /* type */
1180 0, /* rightshift */
1181 1, /* size (0 = byte, 1 = short, 2 = long) */
1182 16, /* bitsize */
1183 FALSE, /* pc_relative */
1184 0, /* bitpos */
1185 complain_overflow_dont, /* complain_on_overflow */
1186 ppc64_elf_toc_reloc, /* special_function */
1187 "R_PPC64_TOC16_LO_DS", /* name */
1188 FALSE, /* partial_inplace */
1189 0, /* src_mask */
1190 0xfffc, /* dst_mask */
1191 FALSE), /* pcrel_offset */
1192
1193 /* Like R_PPC64_PLTGOT16, but for instructions with a DS field. */
1194 /* FIXME: R_PPC64_PLTGOT16_DS not implemented. */
1195 HOWTO (R_PPC64_PLTGOT16_DS, /* type */
1196 0, /* rightshift */
1197 1, /* size (0 = byte, 1 = short, 2 = long) */
1198 16, /* bitsize */
1199 FALSE, /* pc_relative */
1200 0, /* bitpos */
1201 complain_overflow_signed, /* complain_on_overflow */
1202 ppc64_elf_unhandled_reloc, /* special_function */
1203 "R_PPC64_PLTGOT16_DS", /* name */
1204 FALSE, /* partial_inplace */
1205 0, /* src_mask */
1206 0xfffc, /* dst_mask */
1207 FALSE), /* pcrel_offset */
1208
1209 /* Like R_PPC64_PLTGOT16_LO, but for instructions with a DS field. */
1210 /* FIXME: R_PPC64_PLTGOT16_LO not implemented. */
1211 HOWTO (R_PPC64_PLTGOT16_LO_DS,/* type */
1212 0, /* rightshift */
1213 1, /* size (0 = byte, 1 = short, 2 = long) */
1214 16, /* bitsize */
1215 FALSE, /* pc_relative */
1216 0, /* bitpos */
1217 complain_overflow_dont, /* complain_on_overflow */
1218 ppc64_elf_unhandled_reloc, /* special_function */
1219 "R_PPC64_PLTGOT16_LO_DS",/* name */
1220 FALSE, /* partial_inplace */
1221 0, /* src_mask */
1222 0xfffc, /* dst_mask */
1223 FALSE), /* pcrel_offset */
1224
1225 /* Marker reloc for TLS. */
1226 HOWTO (R_PPC64_TLS,
1227 0, /* rightshift */
1228 2, /* size (0 = byte, 1 = short, 2 = long) */
1229 32, /* bitsize */
1230 FALSE, /* pc_relative */
1231 0, /* bitpos */
1232 complain_overflow_dont, /* complain_on_overflow */
1233 bfd_elf_generic_reloc, /* special_function */
1234 "R_PPC64_TLS", /* name */
1235 FALSE, /* partial_inplace */
1236 0, /* src_mask */
1237 0, /* dst_mask */
1238 FALSE), /* pcrel_offset */
1239
1240 /* Computes the load module index of the load module that contains the
1241 definition of its TLS sym. */
1242 HOWTO (R_PPC64_DTPMOD64,
1243 0, /* rightshift */
1244 4, /* size (0 = byte, 1 = short, 2 = long) */
1245 64, /* bitsize */
1246 FALSE, /* pc_relative */
1247 0, /* bitpos */
1248 complain_overflow_dont, /* complain_on_overflow */
1249 ppc64_elf_unhandled_reloc, /* special_function */
1250 "R_PPC64_DTPMOD64", /* name */
1251 FALSE, /* partial_inplace */
1252 0, /* src_mask */
1253 ONES (64), /* dst_mask */
1254 FALSE), /* pcrel_offset */
1255
1256 /* Computes a dtv-relative displacement, the difference between the value
1257 of sym+add and the base address of the thread-local storage block that
1258 contains the definition of sym, minus 0x8000. */
1259 HOWTO (R_PPC64_DTPREL64,
1260 0, /* rightshift */
1261 4, /* size (0 = byte, 1 = short, 2 = long) */
1262 64, /* bitsize */
1263 FALSE, /* pc_relative */
1264 0, /* bitpos */
1265 complain_overflow_dont, /* complain_on_overflow */
1266 ppc64_elf_unhandled_reloc, /* special_function */
1267 "R_PPC64_DTPREL64", /* name */
1268 FALSE, /* partial_inplace */
1269 0, /* src_mask */
1270 ONES (64), /* dst_mask */
1271 FALSE), /* pcrel_offset */
1272
1273 /* A 16 bit dtprel reloc. */
1274 HOWTO (R_PPC64_DTPREL16,
1275 0, /* rightshift */
1276 1, /* size (0 = byte, 1 = short, 2 = long) */
1277 16, /* bitsize */
1278 FALSE, /* pc_relative */
1279 0, /* bitpos */
1280 complain_overflow_signed, /* complain_on_overflow */
1281 ppc64_elf_unhandled_reloc, /* special_function */
1282 "R_PPC64_DTPREL16", /* name */
1283 FALSE, /* partial_inplace */
1284 0, /* src_mask */
1285 0xffff, /* dst_mask */
1286 FALSE), /* pcrel_offset */
1287
1288 /* Like DTPREL16, but no overflow. */
1289 HOWTO (R_PPC64_DTPREL16_LO,
1290 0, /* rightshift */
1291 1, /* size (0 = byte, 1 = short, 2 = long) */
1292 16, /* bitsize */
1293 FALSE, /* pc_relative */
1294 0, /* bitpos */
1295 complain_overflow_dont, /* complain_on_overflow */
1296 ppc64_elf_unhandled_reloc, /* special_function */
1297 "R_PPC64_DTPREL16_LO", /* name */
1298 FALSE, /* partial_inplace */
1299 0, /* src_mask */
1300 0xffff, /* dst_mask */
1301 FALSE), /* pcrel_offset */
1302
1303 /* Like DTPREL16_LO, but next higher group of 16 bits. */
1304 HOWTO (R_PPC64_DTPREL16_HI,
1305 16, /* rightshift */
1306 1, /* size (0 = byte, 1 = short, 2 = long) */
1307 16, /* bitsize */
1308 FALSE, /* pc_relative */
1309 0, /* bitpos */
1310 complain_overflow_dont, /* complain_on_overflow */
1311 ppc64_elf_unhandled_reloc, /* special_function */
1312 "R_PPC64_DTPREL16_HI", /* name */
1313 FALSE, /* partial_inplace */
1314 0, /* src_mask */
1315 0xffff, /* dst_mask */
1316 FALSE), /* pcrel_offset */
1317
1318 /* Like DTPREL16_HI, but adjust for low 16 bits. */
1319 HOWTO (R_PPC64_DTPREL16_HA,
1320 16, /* rightshift */
1321 1, /* size (0 = byte, 1 = short, 2 = long) */
1322 16, /* bitsize */
1323 FALSE, /* pc_relative */
1324 0, /* bitpos */
1325 complain_overflow_dont, /* complain_on_overflow */
1326 ppc64_elf_unhandled_reloc, /* special_function */
1327 "R_PPC64_DTPREL16_HA", /* name */
1328 FALSE, /* partial_inplace */
1329 0, /* src_mask */
1330 0xffff, /* dst_mask */
1331 FALSE), /* pcrel_offset */
1332
1333 /* Like DTPREL16_HI, but next higher group of 16 bits. */
1334 HOWTO (R_PPC64_DTPREL16_HIGHER,
1335 32, /* rightshift */
1336 1, /* size (0 = byte, 1 = short, 2 = long) */
1337 16, /* bitsize */
1338 FALSE, /* pc_relative */
1339 0, /* bitpos */
1340 complain_overflow_dont, /* complain_on_overflow */
1341 ppc64_elf_unhandled_reloc, /* special_function */
1342 "R_PPC64_DTPREL16_HIGHER", /* name */
1343 FALSE, /* partial_inplace */
1344 0, /* src_mask */
1345 0xffff, /* dst_mask */
1346 FALSE), /* pcrel_offset */
1347
1348 /* Like DTPREL16_HIGHER, but adjust for low 16 bits. */
1349 HOWTO (R_PPC64_DTPREL16_HIGHERA,
1350 32, /* rightshift */
1351 1, /* size (0 = byte, 1 = short, 2 = long) */
1352 16, /* bitsize */
1353 FALSE, /* pc_relative */
1354 0, /* bitpos */
1355 complain_overflow_dont, /* complain_on_overflow */
1356 ppc64_elf_unhandled_reloc, /* special_function */
1357 "R_PPC64_DTPREL16_HIGHERA", /* name */
1358 FALSE, /* partial_inplace */
1359 0, /* src_mask */
1360 0xffff, /* dst_mask */
1361 FALSE), /* pcrel_offset */
1362
1363 /* Like DTPREL16_HIGHER, but next higher group of 16 bits. */
1364 HOWTO (R_PPC64_DTPREL16_HIGHEST,
1365 48, /* rightshift */
1366 1, /* size (0 = byte, 1 = short, 2 = long) */
1367 16, /* bitsize */
1368 FALSE, /* pc_relative */
1369 0, /* bitpos */
1370 complain_overflow_dont, /* complain_on_overflow */
1371 ppc64_elf_unhandled_reloc, /* special_function */
1372 "R_PPC64_DTPREL16_HIGHEST", /* name */
1373 FALSE, /* partial_inplace */
1374 0, /* src_mask */
1375 0xffff, /* dst_mask */
1376 FALSE), /* pcrel_offset */
1377
1378 /* Like DTPREL16_HIGHEST, but adjust for low 16 bits. */
1379 HOWTO (R_PPC64_DTPREL16_HIGHESTA,
1380 48, /* rightshift */
1381 1, /* size (0 = byte, 1 = short, 2 = long) */
1382 16, /* bitsize */
1383 FALSE, /* pc_relative */
1384 0, /* bitpos */
1385 complain_overflow_dont, /* complain_on_overflow */
1386 ppc64_elf_unhandled_reloc, /* special_function */
1387 "R_PPC64_DTPREL16_HIGHESTA", /* name */
1388 FALSE, /* partial_inplace */
1389 0, /* src_mask */
1390 0xffff, /* dst_mask */
1391 FALSE), /* pcrel_offset */
1392
1393 /* Like DTPREL16, but for insns with a DS field. */
1394 HOWTO (R_PPC64_DTPREL16_DS,
1395 0, /* rightshift */
1396 1, /* size (0 = byte, 1 = short, 2 = long) */
1397 16, /* bitsize */
1398 FALSE, /* pc_relative */
1399 0, /* bitpos */
1400 complain_overflow_signed, /* complain_on_overflow */
1401 ppc64_elf_unhandled_reloc, /* special_function */
1402 "R_PPC64_DTPREL16_DS", /* name */
1403 FALSE, /* partial_inplace */
1404 0, /* src_mask */
1405 0xfffc, /* dst_mask */
1406 FALSE), /* pcrel_offset */
1407
1408 /* Like DTPREL16_DS, but no overflow. */
1409 HOWTO (R_PPC64_DTPREL16_LO_DS,
1410 0, /* rightshift */
1411 1, /* size (0 = byte, 1 = short, 2 = long) */
1412 16, /* bitsize */
1413 FALSE, /* pc_relative */
1414 0, /* bitpos */
1415 complain_overflow_dont, /* complain_on_overflow */
1416 ppc64_elf_unhandled_reloc, /* special_function */
1417 "R_PPC64_DTPREL16_LO_DS", /* name */
1418 FALSE, /* partial_inplace */
1419 0, /* src_mask */
1420 0xfffc, /* dst_mask */
1421 FALSE), /* pcrel_offset */
1422
1423 /* Computes a tp-relative displacement, the difference between the value of
1424 sym+add and the value of the thread pointer (r13). */
1425 HOWTO (R_PPC64_TPREL64,
1426 0, /* rightshift */
1427 4, /* size (0 = byte, 1 = short, 2 = long) */
1428 64, /* bitsize */
1429 FALSE, /* pc_relative */
1430 0, /* bitpos */
1431 complain_overflow_dont, /* complain_on_overflow */
1432 ppc64_elf_unhandled_reloc, /* special_function */
1433 "R_PPC64_TPREL64", /* name */
1434 FALSE, /* partial_inplace */
1435 0, /* src_mask */
1436 ONES (64), /* dst_mask */
1437 FALSE), /* pcrel_offset */
1438
1439 /* A 16 bit tprel reloc. */
1440 HOWTO (R_PPC64_TPREL16,
1441 0, /* rightshift */
1442 1, /* size (0 = byte, 1 = short, 2 = long) */
1443 16, /* bitsize */
1444 FALSE, /* pc_relative */
1445 0, /* bitpos */
1446 complain_overflow_signed, /* complain_on_overflow */
1447 ppc64_elf_unhandled_reloc, /* special_function */
1448 "R_PPC64_TPREL16", /* name */
1449 FALSE, /* partial_inplace */
1450 0, /* src_mask */
1451 0xffff, /* dst_mask */
1452 FALSE), /* pcrel_offset */
1453
1454 /* Like TPREL16, but no overflow. */
1455 HOWTO (R_PPC64_TPREL16_LO,
1456 0, /* rightshift */
1457 1, /* size (0 = byte, 1 = short, 2 = long) */
1458 16, /* bitsize */
1459 FALSE, /* pc_relative */
1460 0, /* bitpos */
1461 complain_overflow_dont, /* complain_on_overflow */
1462 ppc64_elf_unhandled_reloc, /* special_function */
1463 "R_PPC64_TPREL16_LO", /* name */
1464 FALSE, /* partial_inplace */
1465 0, /* src_mask */
1466 0xffff, /* dst_mask */
1467 FALSE), /* pcrel_offset */
1468
1469 /* Like TPREL16_LO, but next higher group of 16 bits. */
1470 HOWTO (R_PPC64_TPREL16_HI,
1471 16, /* rightshift */
1472 1, /* size (0 = byte, 1 = short, 2 = long) */
1473 16, /* bitsize */
1474 FALSE, /* pc_relative */
1475 0, /* bitpos */
1476 complain_overflow_dont, /* complain_on_overflow */
1477 ppc64_elf_unhandled_reloc, /* special_function */
1478 "R_PPC64_TPREL16_HI", /* name */
1479 FALSE, /* partial_inplace */
1480 0, /* src_mask */
1481 0xffff, /* dst_mask */
1482 FALSE), /* pcrel_offset */
1483
1484 /* Like TPREL16_HI, but adjust for low 16 bits. */
1485 HOWTO (R_PPC64_TPREL16_HA,
1486 16, /* rightshift */
1487 1, /* size (0 = byte, 1 = short, 2 = long) */
1488 16, /* bitsize */
1489 FALSE, /* pc_relative */
1490 0, /* bitpos */
1491 complain_overflow_dont, /* complain_on_overflow */
1492 ppc64_elf_unhandled_reloc, /* special_function */
1493 "R_PPC64_TPREL16_HA", /* name */
1494 FALSE, /* partial_inplace */
1495 0, /* src_mask */
1496 0xffff, /* dst_mask */
1497 FALSE), /* pcrel_offset */
1498
1499 /* Like TPREL16_HI, but next higher group of 16 bits. */
1500 HOWTO (R_PPC64_TPREL16_HIGHER,
1501 32, /* rightshift */
1502 1, /* size (0 = byte, 1 = short, 2 = long) */
1503 16, /* bitsize */
1504 FALSE, /* pc_relative */
1505 0, /* bitpos */
1506 complain_overflow_dont, /* complain_on_overflow */
1507 ppc64_elf_unhandled_reloc, /* special_function */
1508 "R_PPC64_TPREL16_HIGHER", /* name */
1509 FALSE, /* partial_inplace */
1510 0, /* src_mask */
1511 0xffff, /* dst_mask */
1512 FALSE), /* pcrel_offset */
1513
1514 /* Like TPREL16_HIGHER, but adjust for low 16 bits. */
1515 HOWTO (R_PPC64_TPREL16_HIGHERA,
1516 32, /* rightshift */
1517 1, /* size (0 = byte, 1 = short, 2 = long) */
1518 16, /* bitsize */
1519 FALSE, /* pc_relative */
1520 0, /* bitpos */
1521 complain_overflow_dont, /* complain_on_overflow */
1522 ppc64_elf_unhandled_reloc, /* special_function */
1523 "R_PPC64_TPREL16_HIGHERA", /* name */
1524 FALSE, /* partial_inplace */
1525 0, /* src_mask */
1526 0xffff, /* dst_mask */
1527 FALSE), /* pcrel_offset */
1528
1529 /* Like TPREL16_HIGHER, but next higher group of 16 bits. */
1530 HOWTO (R_PPC64_TPREL16_HIGHEST,
1531 48, /* rightshift */
1532 1, /* size (0 = byte, 1 = short, 2 = long) */
1533 16, /* bitsize */
1534 FALSE, /* pc_relative */
1535 0, /* bitpos */
1536 complain_overflow_dont, /* complain_on_overflow */
1537 ppc64_elf_unhandled_reloc, /* special_function */
1538 "R_PPC64_TPREL16_HIGHEST", /* name */
1539 FALSE, /* partial_inplace */
1540 0, /* src_mask */
1541 0xffff, /* dst_mask */
1542 FALSE), /* pcrel_offset */
1543
1544 /* Like TPREL16_HIGHEST, but adjust for low 16 bits. */
1545 HOWTO (R_PPC64_TPREL16_HIGHESTA,
1546 48, /* rightshift */
1547 1, /* size (0 = byte, 1 = short, 2 = long) */
1548 16, /* bitsize */
1549 FALSE, /* pc_relative */
1550 0, /* bitpos */
1551 complain_overflow_dont, /* complain_on_overflow */
1552 ppc64_elf_unhandled_reloc, /* special_function */
1553 "R_PPC64_TPREL16_HIGHESTA", /* name */
1554 FALSE, /* partial_inplace */
1555 0, /* src_mask */
1556 0xffff, /* dst_mask */
1557 FALSE), /* pcrel_offset */
1558
1559 /* Like TPREL16, but for insns with a DS field. */
1560 HOWTO (R_PPC64_TPREL16_DS,
1561 0, /* rightshift */
1562 1, /* size (0 = byte, 1 = short, 2 = long) */
1563 16, /* bitsize */
1564 FALSE, /* pc_relative */
1565 0, /* bitpos */
1566 complain_overflow_signed, /* complain_on_overflow */
1567 ppc64_elf_unhandled_reloc, /* special_function */
1568 "R_PPC64_TPREL16_DS", /* name */
1569 FALSE, /* partial_inplace */
1570 0, /* src_mask */
1571 0xfffc, /* dst_mask */
1572 FALSE), /* pcrel_offset */
1573
1574 /* Like TPREL16_DS, but no overflow. */
1575 HOWTO (R_PPC64_TPREL16_LO_DS,
1576 0, /* rightshift */
1577 1, /* size (0 = byte, 1 = short, 2 = long) */
1578 16, /* bitsize */
1579 FALSE, /* pc_relative */
1580 0, /* bitpos */
1581 complain_overflow_dont, /* complain_on_overflow */
1582 ppc64_elf_unhandled_reloc, /* special_function */
1583 "R_PPC64_TPREL16_LO_DS", /* name */
1584 FALSE, /* partial_inplace */
1585 0, /* src_mask */
1586 0xfffc, /* dst_mask */
1587 FALSE), /* pcrel_offset */
1588
1589 /* Allocates two contiguous entries in the GOT to hold a tls_index structure,
1590 with values (sym+add)@dtpmod and (sym+add)@dtprel, and computes the offset
1591 to the first entry relative to the TOC base (r2). */
1592 HOWTO (R_PPC64_GOT_TLSGD16,
1593 0, /* rightshift */
1594 1, /* size (0 = byte, 1 = short, 2 = long) */
1595 16, /* bitsize */
1596 FALSE, /* pc_relative */
1597 0, /* bitpos */
1598 complain_overflow_signed, /* complain_on_overflow */
1599 ppc64_elf_unhandled_reloc, /* special_function */
1600 "R_PPC64_GOT_TLSGD16", /* name */
b34976b6 1601 FALSE, /* partial_inplace */
5bd4f169
AM
1602 0, /* src_mask */
1603 0xffff, /* dst_mask */
b34976b6 1604 FALSE), /* pcrel_offset */
5bd4f169 1605
411e1bfb
AM
1606 /* Like GOT_TLSGD16, but no overflow. */
1607 HOWTO (R_PPC64_GOT_TLSGD16_LO,
5bd4f169
AM
1608 0, /* rightshift */
1609 1, /* size (0 = byte, 1 = short, 2 = long) */
1610 16, /* bitsize */
b34976b6 1611 FALSE, /* pc_relative */
5bd4f169
AM
1612 0, /* bitpos */
1613 complain_overflow_dont, /* complain_on_overflow */
805fc799 1614 ppc64_elf_unhandled_reloc, /* special_function */
411e1bfb 1615 "R_PPC64_GOT_TLSGD16_LO", /* name */
b34976b6 1616 FALSE, /* partial_inplace */
5bd4f169
AM
1617 0, /* src_mask */
1618 0xffff, /* dst_mask */
b34976b6 1619 FALSE), /* pcrel_offset */
5bd4f169 1620
411e1bfb
AM
1621 /* Like GOT_TLSGD16_LO, but next higher group of 16 bits. */
1622 HOWTO (R_PPC64_GOT_TLSGD16_HI,
5bd4f169
AM
1623 16, /* rightshift */
1624 1, /* size (0 = byte, 1 = short, 2 = long) */
1625 16, /* bitsize */
b34976b6 1626 FALSE, /* pc_relative */
5bd4f169
AM
1627 0, /* bitpos */
1628 complain_overflow_dont, /* complain_on_overflow */
805fc799 1629 ppc64_elf_unhandled_reloc, /* special_function */
411e1bfb 1630 "R_PPC64_GOT_TLSGD16_HI", /* name */
b34976b6 1631 FALSE, /* partial_inplace */
5bd4f169
AM
1632 0, /* src_mask */
1633 0xffff, /* dst_mask */
b34976b6 1634 FALSE), /* pcrel_offset */
5bd4f169 1635
411e1bfb
AM
1636 /* Like GOT_TLSGD16_HI, but adjust for low 16 bits. */
1637 HOWTO (R_PPC64_GOT_TLSGD16_HA,
5bd4f169
AM
1638 16, /* rightshift */
1639 1, /* size (0 = byte, 1 = short, 2 = long) */
1640 16, /* bitsize */
b34976b6 1641 FALSE, /* pc_relative */
5bd4f169 1642 0, /* bitpos */
411e1bfb 1643 complain_overflow_dont, /* complain_on_overflow */
805fc799 1644 ppc64_elf_unhandled_reloc, /* special_function */
411e1bfb 1645 "R_PPC64_GOT_TLSGD16_HA", /* name */
b34976b6 1646 FALSE, /* partial_inplace */
5bd4f169
AM
1647 0, /* src_mask */
1648 0xffff, /* dst_mask */
b34976b6 1649 FALSE), /* pcrel_offset */
5bd4f169 1650
411e1bfb
AM
1651 /* Allocates two contiguous entries in the GOT to hold a tls_index structure,
1652 with values (sym+add)@dtpmod and zero, and computes the offset to the
1653 first entry relative to the TOC base (r2). */
1654 HOWTO (R_PPC64_GOT_TLSLD16,
5bd4f169
AM
1655 0, /* rightshift */
1656 1, /* size (0 = byte, 1 = short, 2 = long) */
1657 16, /* bitsize */
b34976b6 1658 FALSE, /* pc_relative */
5bd4f169 1659 0, /* bitpos */
411e1bfb
AM
1660 complain_overflow_signed, /* complain_on_overflow */
1661 ppc64_elf_unhandled_reloc, /* special_function */
1662 "R_PPC64_GOT_TLSLD16", /* name */
b34976b6 1663 FALSE, /* partial_inplace */
d006db6c 1664 0, /* src_mask */
411e1bfb 1665 0xffff, /* dst_mask */
b34976b6 1666 FALSE), /* pcrel_offset */
5bd4f169 1667
411e1bfb
AM
1668 /* Like GOT_TLSLD16, but no overflow. */
1669 HOWTO (R_PPC64_GOT_TLSLD16_LO,
5bd4f169
AM
1670 0, /* rightshift */
1671 1, /* size (0 = byte, 1 = short, 2 = long) */
1672 16, /* bitsize */
b34976b6 1673 FALSE, /* pc_relative */
5bd4f169 1674 0, /* bitpos */
411e1bfb
AM
1675 complain_overflow_dont, /* complain_on_overflow */
1676 ppc64_elf_unhandled_reloc, /* special_function */
1677 "R_PPC64_GOT_TLSLD16_LO", /* name */
b34976b6 1678 FALSE, /* partial_inplace */
d006db6c 1679 0, /* src_mask */
411e1bfb 1680 0xffff, /* dst_mask */
b34976b6 1681 FALSE), /* pcrel_offset */
5bd4f169 1682
411e1bfb
AM
1683 /* Like GOT_TLSLD16_LO, but next higher group of 16 bits. */
1684 HOWTO (R_PPC64_GOT_TLSLD16_HI,
1685 16, /* rightshift */
5bd4f169
AM
1686 1, /* size (0 = byte, 1 = short, 2 = long) */
1687 16, /* bitsize */
b34976b6 1688 FALSE, /* pc_relative */
5bd4f169 1689 0, /* bitpos */
411e1bfb 1690 complain_overflow_dont, /* complain_on_overflow */
805fc799 1691 ppc64_elf_unhandled_reloc, /* special_function */
411e1bfb 1692 "R_PPC64_GOT_TLSLD16_HI", /* name */
b34976b6 1693 FALSE, /* partial_inplace */
d006db6c 1694 0, /* src_mask */
411e1bfb 1695 0xffff, /* dst_mask */
b34976b6 1696 FALSE), /* pcrel_offset */
5bd4f169 1697
411e1bfb
AM
1698 /* Like GOT_TLSLD16_HI, but adjust for low 16 bits. */
1699 HOWTO (R_PPC64_GOT_TLSLD16_HA,
1700 16, /* rightshift */
5bd4f169
AM
1701 1, /* size (0 = byte, 1 = short, 2 = long) */
1702 16, /* bitsize */
b34976b6 1703 FALSE, /* pc_relative */
5bd4f169
AM
1704 0, /* bitpos */
1705 complain_overflow_dont, /* complain_on_overflow */
805fc799 1706 ppc64_elf_unhandled_reloc, /* special_function */
411e1bfb 1707 "R_PPC64_GOT_TLSLD16_HA", /* name */
b34976b6 1708 FALSE, /* partial_inplace */
d006db6c 1709 0, /* src_mask */
411e1bfb 1710 0xffff, /* dst_mask */
b34976b6 1711 FALSE), /* pcrel_offset */
5bd4f169 1712
411e1bfb
AM
1713 /* Allocates an entry in the GOT with value (sym+add)@dtprel, and computes
1714 the offset to the entry relative to the TOC base (r2). */
1715 HOWTO (R_PPC64_GOT_DTPREL16_DS,
5bd4f169
AM
1716 0, /* rightshift */
1717 1, /* size (0 = byte, 1 = short, 2 = long) */
1718 16, /* bitsize */
b34976b6 1719 FALSE, /* pc_relative */
5bd4f169 1720 0, /* bitpos */
411e1bfb 1721 complain_overflow_signed, /* complain_on_overflow */
805fc799 1722 ppc64_elf_unhandled_reloc, /* special_function */
411e1bfb 1723 "R_PPC64_GOT_DTPREL16_DS", /* name */
b34976b6 1724 FALSE, /* partial_inplace */
d006db6c 1725 0, /* src_mask */
5bd4f169 1726 0xfffc, /* dst_mask */
b34976b6 1727 FALSE), /* pcrel_offset */
5bd4f169 1728
411e1bfb
AM
1729 /* Like GOT_DTPREL16_DS, but no overflow. */
1730 HOWTO (R_PPC64_GOT_DTPREL16_LO_DS,
5bd4f169 1731 0, /* rightshift */
c061c2d8
AM
1732 1, /* size (0 = byte, 1 = short, 2 = long) */
1733 16, /* bitsize */
b34976b6 1734 FALSE, /* pc_relative */
5bd4f169 1735 0, /* bitpos */
411e1bfb
AM
1736 complain_overflow_dont, /* complain_on_overflow */
1737 ppc64_elf_unhandled_reloc, /* special_function */
1738 "R_PPC64_GOT_DTPREL16_LO_DS", /* name */
b34976b6 1739 FALSE, /* partial_inplace */
d006db6c 1740 0, /* src_mask */
c061c2d8 1741 0xfffc, /* dst_mask */
b34976b6 1742 FALSE), /* pcrel_offset */
5bd4f169 1743
411e1bfb
AM
1744 /* Like GOT_DTPREL16_LO_DS, but next higher group of 16 bits. */
1745 HOWTO (R_PPC64_GOT_DTPREL16_HI,
1746 16, /* rightshift */
5bd4f169
AM
1747 1, /* size (0 = byte, 1 = short, 2 = long) */
1748 16, /* bitsize */
b34976b6 1749 FALSE, /* pc_relative */
5bd4f169
AM
1750 0, /* bitpos */
1751 complain_overflow_dont, /* complain_on_overflow */
411e1bfb
AM
1752 ppc64_elf_unhandled_reloc, /* special_function */
1753 "R_PPC64_GOT_DTPREL16_HI", /* name */
b34976b6 1754 FALSE, /* partial_inplace */
d006db6c 1755 0, /* src_mask */
411e1bfb 1756 0xffff, /* dst_mask */
b34976b6 1757 FALSE), /* pcrel_offset */
5bd4f169 1758
411e1bfb
AM
1759 /* Like GOT_DTPREL16_HI, but adjust for low 16 bits. */
1760 HOWTO (R_PPC64_GOT_DTPREL16_HA,
1761 16, /* rightshift */
1762 1, /* size (0 = byte, 1 = short, 2 = long) */
1763 16, /* bitsize */
1764 FALSE, /* pc_relative */
1765 0, /* bitpos */
1766 complain_overflow_dont, /* complain_on_overflow */
1767 ppc64_elf_unhandled_reloc, /* special_function */
1768 "R_PPC64_GOT_DTPREL16_HA", /* name */
1769 FALSE, /* partial_inplace */
1770 0, /* src_mask */
1771 0xffff, /* dst_mask */
1772 FALSE), /* pcrel_offset */
1773
1774 /* Allocates an entry in the GOT with value (sym+add)@tprel, and computes the
1775 offset to the entry relative to the TOC base (r2). */
1776 HOWTO (R_PPC64_GOT_TPREL16_DS,
5bd4f169
AM
1777 0, /* rightshift */
1778 1, /* size (0 = byte, 1 = short, 2 = long) */
1779 16, /* bitsize */
b34976b6 1780 FALSE, /* pc_relative */
5bd4f169
AM
1781 0, /* bitpos */
1782 complain_overflow_signed, /* complain_on_overflow */
411e1bfb
AM
1783 ppc64_elf_unhandled_reloc, /* special_function */
1784 "R_PPC64_GOT_TPREL16_DS", /* name */
b34976b6 1785 FALSE, /* partial_inplace */
d006db6c 1786 0, /* src_mask */
ad8e1ba5 1787 0xfffc, /* dst_mask */
b34976b6 1788 FALSE), /* pcrel_offset */
5bd4f169 1789
411e1bfb
AM
1790 /* Like GOT_TPREL16_DS, but no overflow. */
1791 HOWTO (R_PPC64_GOT_TPREL16_LO_DS,
5bd4f169
AM
1792 0, /* rightshift */
1793 1, /* size (0 = byte, 1 = short, 2 = long) */
1794 16, /* bitsize */
b34976b6 1795 FALSE, /* pc_relative */
5bd4f169
AM
1796 0, /* bitpos */
1797 complain_overflow_dont, /* complain_on_overflow */
411e1bfb
AM
1798 ppc64_elf_unhandled_reloc, /* special_function */
1799 "R_PPC64_GOT_TPREL16_LO_DS", /* name */
b34976b6 1800 FALSE, /* partial_inplace */
d006db6c 1801 0, /* src_mask */
ad8e1ba5 1802 0xfffc, /* dst_mask */
b34976b6 1803 FALSE), /* pcrel_offset */
5bd4f169 1804
411e1bfb
AM
1805 /* Like GOT_TPREL16_LO_DS, but next higher group of 16 bits. */
1806 HOWTO (R_PPC64_GOT_TPREL16_HI,
1807 16, /* rightshift */
5bd4f169
AM
1808 1, /* size (0 = byte, 1 = short, 2 = long) */
1809 16, /* bitsize */
b34976b6 1810 FALSE, /* pc_relative */
5bd4f169 1811 0, /* bitpos */
411e1bfb 1812 complain_overflow_dont, /* complain_on_overflow */
805fc799 1813 ppc64_elf_unhandled_reloc, /* special_function */
411e1bfb 1814 "R_PPC64_GOT_TPREL16_HI", /* name */
b34976b6 1815 FALSE, /* partial_inplace */
d006db6c 1816 0, /* src_mask */
411e1bfb 1817 0xffff, /* dst_mask */
b34976b6 1818 FALSE), /* pcrel_offset */
5bd4f169 1819
411e1bfb
AM
1820 /* Like GOT_TPREL16_HI, but adjust for low 16 bits. */
1821 HOWTO (R_PPC64_GOT_TPREL16_HA,
1822 16, /* rightshift */
5bd4f169
AM
1823 1, /* size (0 = byte, 1 = short, 2 = long) */
1824 16, /* bitsize */
b34976b6 1825 FALSE, /* pc_relative */
5bd4f169
AM
1826 0, /* bitpos */
1827 complain_overflow_dont, /* complain_on_overflow */
805fc799 1828 ppc64_elf_unhandled_reloc, /* special_function */
411e1bfb 1829 "R_PPC64_GOT_TPREL16_HA", /* name */
b34976b6 1830 FALSE, /* partial_inplace */
d006db6c 1831 0, /* src_mask */
411e1bfb 1832 0xffff, /* dst_mask */
b34976b6 1833 FALSE), /* pcrel_offset */
5bd4f169
AM
1834
1835 /* GNU extension to record C++ vtable hierarchy. */
1836 HOWTO (R_PPC64_GNU_VTINHERIT, /* type */
1837 0, /* rightshift */
1838 0, /* size (0 = byte, 1 = short, 2 = long) */
1839 0, /* bitsize */
b34976b6 1840 FALSE, /* pc_relative */
5bd4f169
AM
1841 0, /* bitpos */
1842 complain_overflow_dont, /* complain_on_overflow */
1843 NULL, /* special_function */
1844 "R_PPC64_GNU_VTINHERIT", /* name */
b34976b6 1845 FALSE, /* partial_inplace */
5bd4f169
AM
1846 0, /* src_mask */
1847 0, /* dst_mask */
b34976b6 1848 FALSE), /* pcrel_offset */
5bd4f169
AM
1849
1850 /* GNU extension to record C++ vtable member usage. */
1851 HOWTO (R_PPC64_GNU_VTENTRY, /* type */
1852 0, /* rightshift */
1853 0, /* size (0 = byte, 1 = short, 2 = long) */
1854 0, /* bitsize */
b34976b6 1855 FALSE, /* pc_relative */
5bd4f169
AM
1856 0, /* bitpos */
1857 complain_overflow_dont, /* complain_on_overflow */
1858 NULL, /* special_function */
1859 "R_PPC64_GNU_VTENTRY", /* name */
b34976b6 1860 FALSE, /* partial_inplace */
5bd4f169
AM
1861 0, /* src_mask */
1862 0, /* dst_mask */
b34976b6 1863 FALSE), /* pcrel_offset */
5bd4f169
AM
1864};
1865
1866\f
1867/* Initialize the ppc64_elf_howto_table, so that linear accesses can
1868 be done. */
1869
1870static void
4ce794b7 1871ppc_howto_init (void)
5bd4f169
AM
1872{
1873 unsigned int i, type;
1874
1875 for (i = 0;
1876 i < sizeof (ppc64_elf_howto_raw) / sizeof (ppc64_elf_howto_raw[0]);
1877 i++)
1878 {
1879 type = ppc64_elf_howto_raw[i].type;
1880 BFD_ASSERT (type < (sizeof (ppc64_elf_howto_table)
1881 / sizeof (ppc64_elf_howto_table[0])));
1882 ppc64_elf_howto_table[type] = &ppc64_elf_howto_raw[i];
1883 }
1884}
1885
1886static reloc_howto_type *
4ce794b7
AM
1887ppc64_elf_reloc_type_lookup (bfd *abfd ATTRIBUTE_UNUSED,
1888 bfd_reloc_code_real_type code)
5bd4f169 1889{
411e1bfb 1890 enum elf_ppc64_reloc_type r = R_PPC64_NONE;
5bd4f169
AM
1891
1892 if (!ppc64_elf_howto_table[R_PPC64_ADDR32])
1893 /* Initialize howto table if needed. */
1894 ppc_howto_init ();
1895
4ce794b7 1896 switch (code)
5bd4f169
AM
1897 {
1898 default:
4ce794b7 1899 return NULL;
5bd4f169 1900
411e1bfb
AM
1901 case BFD_RELOC_NONE: r = R_PPC64_NONE;
1902 break;
1903 case BFD_RELOC_32: r = R_PPC64_ADDR32;
1904 break;
1905 case BFD_RELOC_PPC_BA26: r = R_PPC64_ADDR24;
1906 break;
1907 case BFD_RELOC_16: r = R_PPC64_ADDR16;
1908 break;
1909 case BFD_RELOC_LO16: r = R_PPC64_ADDR16_LO;
1910 break;
1911 case BFD_RELOC_HI16: r = R_PPC64_ADDR16_HI;
1912 break;
1913 case BFD_RELOC_HI16_S: r = R_PPC64_ADDR16_HA;
5bd4f169 1914 break;
411e1bfb 1915 case BFD_RELOC_PPC_BA16: r = R_PPC64_ADDR14;
5bd4f169 1916 break;
411e1bfb 1917 case BFD_RELOC_PPC_BA16_BRTAKEN: r = R_PPC64_ADDR14_BRTAKEN;
5bd4f169 1918 break;
411e1bfb 1919 case BFD_RELOC_PPC_BA16_BRNTAKEN: r = R_PPC64_ADDR14_BRNTAKEN;
5bd4f169 1920 break;
411e1bfb 1921 case BFD_RELOC_PPC_B26: r = R_PPC64_REL24;
5bd4f169 1922 break;
411e1bfb 1923 case BFD_RELOC_PPC_B16: r = R_PPC64_REL14;
5bd4f169 1924 break;
411e1bfb 1925 case BFD_RELOC_PPC_B16_BRTAKEN: r = R_PPC64_REL14_BRTAKEN;
5bd4f169 1926 break;
411e1bfb 1927 case BFD_RELOC_PPC_B16_BRNTAKEN: r = R_PPC64_REL14_BRNTAKEN;
5bd4f169 1928 break;
411e1bfb 1929 case BFD_RELOC_16_GOTOFF: r = R_PPC64_GOT16;
5bd4f169 1930 break;
411e1bfb 1931 case BFD_RELOC_LO16_GOTOFF: r = R_PPC64_GOT16_LO;
5bd4f169 1932 break;
411e1bfb 1933 case BFD_RELOC_HI16_GOTOFF: r = R_PPC64_GOT16_HI;
5bd4f169 1934 break;
411e1bfb 1935 case BFD_RELOC_HI16_S_GOTOFF: r = R_PPC64_GOT16_HA;
5bd4f169 1936 break;
411e1bfb 1937 case BFD_RELOC_PPC_COPY: r = R_PPC64_COPY;
5bd4f169 1938 break;
411e1bfb 1939 case BFD_RELOC_PPC_GLOB_DAT: r = R_PPC64_GLOB_DAT;
5bd4f169 1940 break;
411e1bfb 1941 case BFD_RELOC_32_PCREL: r = R_PPC64_REL32;
5bd4f169 1942 break;
411e1bfb 1943 case BFD_RELOC_32_PLTOFF: r = R_PPC64_PLT32;
5bd4f169 1944 break;
411e1bfb 1945 case BFD_RELOC_32_PLT_PCREL: r = R_PPC64_PLTREL32;
5bd4f169 1946 break;
411e1bfb 1947 case BFD_RELOC_LO16_PLTOFF: r = R_PPC64_PLT16_LO;
5bd4f169 1948 break;
411e1bfb 1949 case BFD_RELOC_HI16_PLTOFF: r = R_PPC64_PLT16_HI;
5bd4f169 1950 break;
411e1bfb 1951 case BFD_RELOC_HI16_S_PLTOFF: r = R_PPC64_PLT16_HA;
5bd4f169 1952 break;
411e1bfb 1953 case BFD_RELOC_16_BASEREL: r = R_PPC64_SECTOFF;
5bd4f169 1954 break;
411e1bfb 1955 case BFD_RELOC_LO16_BASEREL: r = R_PPC64_SECTOFF_LO;
5bd4f169 1956 break;
411e1bfb 1957 case BFD_RELOC_HI16_BASEREL: r = R_PPC64_SECTOFF_HI;
5bd4f169 1958 break;
411e1bfb 1959 case BFD_RELOC_HI16_S_BASEREL: r = R_PPC64_SECTOFF_HA;
5bd4f169 1960 break;
411e1bfb 1961 case BFD_RELOC_CTOR: r = R_PPC64_ADDR64;
5bd4f169 1962 break;
411e1bfb 1963 case BFD_RELOC_64: r = R_PPC64_ADDR64;
5bd4f169 1964 break;
411e1bfb 1965 case BFD_RELOC_PPC64_HIGHER: r = R_PPC64_ADDR16_HIGHER;
5bd4f169 1966 break;
411e1bfb 1967 case BFD_RELOC_PPC64_HIGHER_S: r = R_PPC64_ADDR16_HIGHERA;
5bd4f169 1968 break;
411e1bfb 1969 case BFD_RELOC_PPC64_HIGHEST: r = R_PPC64_ADDR16_HIGHEST;
5bd4f169 1970 break;
411e1bfb 1971 case BFD_RELOC_PPC64_HIGHEST_S: r = R_PPC64_ADDR16_HIGHESTA;
5bd4f169 1972 break;
411e1bfb 1973 case BFD_RELOC_64_PCREL: r = R_PPC64_REL64;
5bd4f169 1974 break;
411e1bfb 1975 case BFD_RELOC_64_PLTOFF: r = R_PPC64_PLT64;
5bd4f169 1976 break;
411e1bfb 1977 case BFD_RELOC_64_PLT_PCREL: r = R_PPC64_PLTREL64;
5bd4f169 1978 break;
411e1bfb 1979 case BFD_RELOC_PPC_TOC16: r = R_PPC64_TOC16;
5bd4f169 1980 break;
411e1bfb 1981 case BFD_RELOC_PPC64_TOC16_LO: r = R_PPC64_TOC16_LO;
5bd4f169 1982 break;
411e1bfb 1983 case BFD_RELOC_PPC64_TOC16_HI: r = R_PPC64_TOC16_HI;
5bd4f169 1984 break;
411e1bfb 1985 case BFD_RELOC_PPC64_TOC16_HA: r = R_PPC64_TOC16_HA;
5bd4f169 1986 break;
411e1bfb 1987 case BFD_RELOC_PPC64_TOC: r = R_PPC64_TOC;
5bd4f169 1988 break;
411e1bfb 1989 case BFD_RELOC_PPC64_PLTGOT16: r = R_PPC64_PLTGOT16;
5bd4f169 1990 break;
411e1bfb 1991 case BFD_RELOC_PPC64_PLTGOT16_LO: r = R_PPC64_PLTGOT16_LO;
5bd4f169 1992 break;
411e1bfb 1993 case BFD_RELOC_PPC64_PLTGOT16_HI: r = R_PPC64_PLTGOT16_HI;
5bd4f169 1994 break;
411e1bfb 1995 case BFD_RELOC_PPC64_PLTGOT16_HA: r = R_PPC64_PLTGOT16_HA;
5bd4f169 1996 break;
411e1bfb 1997 case BFD_RELOC_PPC64_ADDR16_DS: r = R_PPC64_ADDR16_DS;
5bd4f169 1998 break;
411e1bfb 1999 case BFD_RELOC_PPC64_ADDR16_LO_DS: r = R_PPC64_ADDR16_LO_DS;
5bd4f169 2000 break;
411e1bfb 2001 case BFD_RELOC_PPC64_GOT16_DS: r = R_PPC64_GOT16_DS;
5bd4f169 2002 break;
411e1bfb 2003 case BFD_RELOC_PPC64_GOT16_LO_DS: r = R_PPC64_GOT16_LO_DS;
5bd4f169 2004 break;
411e1bfb 2005 case BFD_RELOC_PPC64_PLT16_LO_DS: r = R_PPC64_PLT16_LO_DS;
5bd4f169 2006 break;
411e1bfb 2007 case BFD_RELOC_PPC64_SECTOFF_DS: r = R_PPC64_SECTOFF_DS;
5bd4f169 2008 break;
411e1bfb 2009 case BFD_RELOC_PPC64_SECTOFF_LO_DS: r = R_PPC64_SECTOFF_LO_DS;
5bd4f169 2010 break;
411e1bfb 2011 case BFD_RELOC_PPC64_TOC16_DS: r = R_PPC64_TOC16_DS;
5bd4f169 2012 break;
411e1bfb 2013 case BFD_RELOC_PPC64_TOC16_LO_DS: r = R_PPC64_TOC16_LO_DS;
5bd4f169 2014 break;
411e1bfb 2015 case BFD_RELOC_PPC64_PLTGOT16_DS: r = R_PPC64_PLTGOT16_DS;
5bd4f169 2016 break;
411e1bfb 2017 case BFD_RELOC_PPC64_PLTGOT16_LO_DS: r = R_PPC64_PLTGOT16_LO_DS;
5bd4f169 2018 break;
411e1bfb 2019 case BFD_RELOC_PPC_TLS: r = R_PPC64_TLS;
5bd4f169 2020 break;
411e1bfb 2021 case BFD_RELOC_PPC_DTPMOD: r = R_PPC64_DTPMOD64;
5bd4f169 2022 break;
411e1bfb 2023 case BFD_RELOC_PPC_TPREL16: r = R_PPC64_TPREL16;
5bd4f169 2024 break;
411e1bfb 2025 case BFD_RELOC_PPC_TPREL16_LO: r = R_PPC64_TPREL16_LO;
5bd4f169 2026 break;
411e1bfb 2027 case BFD_RELOC_PPC_TPREL16_HI: r = R_PPC64_TPREL16_HI;
5bd4f169 2028 break;
411e1bfb 2029 case BFD_RELOC_PPC_TPREL16_HA: r = R_PPC64_TPREL16_HA;
5bd4f169 2030 break;
411e1bfb 2031 case BFD_RELOC_PPC_TPREL: r = R_PPC64_TPREL64;
5bd4f169 2032 break;
411e1bfb
AM
2033 case BFD_RELOC_PPC_DTPREL16: r = R_PPC64_DTPREL16;
2034 break;
2035 case BFD_RELOC_PPC_DTPREL16_LO: r = R_PPC64_DTPREL16_LO;
2036 break;
2037 case BFD_RELOC_PPC_DTPREL16_HI: r = R_PPC64_DTPREL16_HI;
2038 break;
2039 case BFD_RELOC_PPC_DTPREL16_HA: r = R_PPC64_DTPREL16_HA;
2040 break;
2041 case BFD_RELOC_PPC_DTPREL: r = R_PPC64_DTPREL64;
2042 break;
2043 case BFD_RELOC_PPC_GOT_TLSGD16: r = R_PPC64_GOT_TLSGD16;
2044 break;
2045 case BFD_RELOC_PPC_GOT_TLSGD16_LO: r = R_PPC64_GOT_TLSGD16_LO;
2046 break;
2047 case BFD_RELOC_PPC_GOT_TLSGD16_HI: r = R_PPC64_GOT_TLSGD16_HI;
2048 break;
2049 case BFD_RELOC_PPC_GOT_TLSGD16_HA: r = R_PPC64_GOT_TLSGD16_HA;
2050 break;
2051 case BFD_RELOC_PPC_GOT_TLSLD16: r = R_PPC64_GOT_TLSLD16;
2052 break;
2053 case BFD_RELOC_PPC_GOT_TLSLD16_LO: r = R_PPC64_GOT_TLSLD16_LO;
2054 break;
2055 case BFD_RELOC_PPC_GOT_TLSLD16_HI: r = R_PPC64_GOT_TLSLD16_HI;
2056 break;
2057 case BFD_RELOC_PPC_GOT_TLSLD16_HA: r = R_PPC64_GOT_TLSLD16_HA;
2058 break;
2059 case BFD_RELOC_PPC_GOT_TPREL16: r = R_PPC64_GOT_TPREL16_DS;
2060 break;
2061 case BFD_RELOC_PPC_GOT_TPREL16_LO: r = R_PPC64_GOT_TPREL16_LO_DS;
2062 break;
2063 case BFD_RELOC_PPC_GOT_TPREL16_HI: r = R_PPC64_GOT_TPREL16_HI;
2064 break;
2065 case BFD_RELOC_PPC_GOT_TPREL16_HA: r = R_PPC64_GOT_TPREL16_HA;
2066 break;
2067 case BFD_RELOC_PPC_GOT_DTPREL16: r = R_PPC64_GOT_DTPREL16_DS;
2068 break;
2069 case BFD_RELOC_PPC_GOT_DTPREL16_LO: r = R_PPC64_GOT_DTPREL16_LO_DS;
2070 break;
2071 case BFD_RELOC_PPC_GOT_DTPREL16_HI: r = R_PPC64_GOT_DTPREL16_HI;
2072 break;
2073 case BFD_RELOC_PPC_GOT_DTPREL16_HA: r = R_PPC64_GOT_DTPREL16_HA;
2074 break;
2075 case BFD_RELOC_PPC64_TPREL16_DS: r = R_PPC64_TPREL16_DS;
2076 break;
2077 case BFD_RELOC_PPC64_TPREL16_LO_DS: r = R_PPC64_TPREL16_LO_DS;
2078 break;
2079 case BFD_RELOC_PPC64_TPREL16_HIGHER: r = R_PPC64_TPREL16_HIGHER;
2080 break;
2081 case BFD_RELOC_PPC64_TPREL16_HIGHERA: r = R_PPC64_TPREL16_HIGHERA;
2082 break;
2083 case BFD_RELOC_PPC64_TPREL16_HIGHEST: r = R_PPC64_TPREL16_HIGHEST;
2084 break;
2085 case BFD_RELOC_PPC64_TPREL16_HIGHESTA: r = R_PPC64_TPREL16_HIGHESTA;
2086 break;
2087 case BFD_RELOC_PPC64_DTPREL16_DS: r = R_PPC64_DTPREL16_DS;
2088 break;
2089 case BFD_RELOC_PPC64_DTPREL16_LO_DS: r = R_PPC64_DTPREL16_LO_DS;
2090 break;
2091 case BFD_RELOC_PPC64_DTPREL16_HIGHER: r = R_PPC64_DTPREL16_HIGHER;
2092 break;
2093 case BFD_RELOC_PPC64_DTPREL16_HIGHERA: r = R_PPC64_DTPREL16_HIGHERA;
2094 break;
2095 case BFD_RELOC_PPC64_DTPREL16_HIGHEST: r = R_PPC64_DTPREL16_HIGHEST;
2096 break;
2097 case BFD_RELOC_PPC64_DTPREL16_HIGHESTA: r = R_PPC64_DTPREL16_HIGHESTA;
2098 break;
2099 case BFD_RELOC_VTABLE_INHERIT: r = R_PPC64_GNU_VTINHERIT;
2100 break;
2101 case BFD_RELOC_VTABLE_ENTRY: r = R_PPC64_GNU_VTENTRY;
5bd4f169
AM
2102 break;
2103 }
2104
4ce794b7 2105 return ppc64_elf_howto_table[r];
5bd4f169
AM
2106};
2107
2108/* Set the howto pointer for a PowerPC ELF reloc. */
2109
2110static void
4ce794b7
AM
2111ppc64_elf_info_to_howto (bfd *abfd ATTRIBUTE_UNUSED, arelent *cache_ptr,
2112 Elf_Internal_Rela *dst)
5bd4f169 2113{
65f38f15
AM
2114 unsigned int type;
2115
ef60b7ff 2116 /* Initialize howto table if needed. */
5bd4f169 2117 if (!ppc64_elf_howto_table[R_PPC64_ADDR32])
5bd4f169
AM
2118 ppc_howto_init ();
2119
65f38f15
AM
2120 type = ELF64_R_TYPE (dst->r_info);
2121 BFD_ASSERT (type < (sizeof (ppc64_elf_howto_table)
2122 / sizeof (ppc64_elf_howto_table[0])));
2123 cache_ptr->howto = ppc64_elf_howto_table[type];
5bd4f169
AM
2124}
2125
04c9666a 2126/* Handle the R_PPC64_ADDR16_HA and similar relocs. */
5bd4f169
AM
2127
2128static bfd_reloc_status_type
4ce794b7
AM
2129ppc64_elf_ha_reloc (bfd *abfd, arelent *reloc_entry, asymbol *symbol,
2130 void *data, asection *input_section,
2131 bfd *output_bfd, char **error_message)
5bd4f169 2132{
805fc799
AM
2133 /* If this is a relocatable link (output_bfd test tells us), just
2134 call the generic function. Any adjustment will be done at final
2135 link time. */
2136 if (output_bfd != NULL)
cedb70c5 2137 return bfd_elf_generic_reloc (abfd, reloc_entry, symbol, data,
805fc799
AM
2138 input_section, output_bfd, error_message);
2139
2140 /* Adjust the addend for sign extension of the low 16 bits.
2141 We won't actually be using the low 16 bits, so trashing them
2142 doesn't matter. */
2143 reloc_entry->addend += 0x8000;
2144 return bfd_reloc_continue;
2145}
5bd4f169 2146
2441e016
AM
2147static bfd_reloc_status_type
2148ppc64_elf_branch_reloc (bfd *abfd, arelent *reloc_entry, asymbol *symbol,
2149 void *data, asection *input_section,
2150 bfd *output_bfd, char **error_message)
2151{
2152 if (output_bfd != NULL)
2153 return bfd_elf_generic_reloc (abfd, reloc_entry, symbol, data,
2154 input_section, output_bfd, error_message);
2155
699733f6
AM
2156 if (strcmp (symbol->section->name, ".opd") == 0
2157 && (symbol->section->owner->flags & DYNAMIC) == 0)
2441e016
AM
2158 {
2159 bfd_vma dest = opd_entry_value (symbol->section,
2160 symbol->value + reloc_entry->addend,
2161 NULL, NULL);
2162 if (dest != (bfd_vma) -1)
2163 reloc_entry->addend = dest - (symbol->value
2164 + symbol->section->output_section->vma
2165 + symbol->section->output_offset);
2166 }
2167 return bfd_reloc_continue;
2168}
2169
805fc799 2170static bfd_reloc_status_type
4ce794b7
AM
2171ppc64_elf_brtaken_reloc (bfd *abfd, arelent *reloc_entry, asymbol *symbol,
2172 void *data, asection *input_section,
2173 bfd *output_bfd, char **error_message)
805fc799
AM
2174{
2175 long insn;
04c9666a 2176 enum elf_ppc64_reloc_type r_type;
805fc799
AM
2177 bfd_size_type octets;
2178 /* Disabled until we sort out how ld should choose 'y' vs 'at'. */
b34976b6 2179 bfd_boolean is_power4 = FALSE;
805fc799
AM
2180
2181 /* If this is a relocatable link (output_bfd test tells us), just
2182 call the generic function. Any adjustment will be done at final
2183 link time. */
5bd4f169 2184 if (output_bfd != NULL)
cedb70c5 2185 return bfd_elf_generic_reloc (abfd, reloc_entry, symbol, data,
805fc799
AM
2186 input_section, output_bfd, error_message);
2187
2188 octets = reloc_entry->address * bfd_octets_per_byte (abfd);
2189 insn = bfd_get_32 (abfd, (bfd_byte *) data + octets);
2190 insn &= ~(0x01 << 21);
4ce794b7 2191 r_type = reloc_entry->howto->type;
805fc799
AM
2192 if (r_type == R_PPC64_ADDR14_BRTAKEN
2193 || r_type == R_PPC64_REL14_BRTAKEN)
cedb70c5 2194 insn |= 0x01 << 21; /* 'y' or 't' bit, lowest bit of BO field. */
805fc799
AM
2195
2196 if (is_power4)
5bd4f169 2197 {
805fc799
AM
2198 /* Set 'a' bit. This is 0b00010 in BO field for branch
2199 on CR(BI) insns (BO == 001at or 011at), and 0b01000
2200 for branch on CTR insns (BO == 1a00t or 1a01t). */
2201 if ((insn & (0x14 << 21)) == (0x04 << 21))
2202 insn |= 0x02 << 21;
2203 else if ((insn & (0x14 << 21)) == (0x10 << 21))
2204 insn |= 0x08 << 21;
2205 else
2441e016 2206 goto out;
5bd4f169 2207 }
805fc799
AM
2208 else
2209 {
2210 bfd_vma target = 0;
2211 bfd_vma from;
5bd4f169 2212
805fc799
AM
2213 if (!bfd_is_com_section (symbol->section))
2214 target = symbol->value;
2215 target += symbol->section->output_section->vma;
2216 target += symbol->section->output_offset;
2217 target += reloc_entry->addend;
5bd4f169 2218
805fc799
AM
2219 from = (reloc_entry->address
2220 + input_section->output_offset
2221 + input_section->output_section->vma);
5bd4f169 2222
805fc799
AM
2223 /* Invert 'y' bit if not the default. */
2224 if ((bfd_signed_vma) (target - from) < 0)
2225 insn ^= 0x01 << 21;
2226 }
4ce794b7 2227 bfd_put_32 (abfd, insn, (bfd_byte *) data + octets);
2441e016
AM
2228 out:
2229 return ppc64_elf_branch_reloc (abfd, reloc_entry, symbol, data,
2230 input_section, output_bfd, error_message);
805fc799 2231}
5bd4f169 2232
805fc799 2233static bfd_reloc_status_type
4ce794b7
AM
2234ppc64_elf_sectoff_reloc (bfd *abfd, arelent *reloc_entry, asymbol *symbol,
2235 void *data, asection *input_section,
2236 bfd *output_bfd, char **error_message)
805fc799
AM
2237{
2238 /* If this is a relocatable link (output_bfd test tells us), just
2239 call the generic function. Any adjustment will be done at final
2240 link time. */
2241 if (output_bfd != NULL)
cedb70c5 2242 return bfd_elf_generic_reloc (abfd, reloc_entry, symbol, data,
805fc799 2243 input_section, output_bfd, error_message);
5bd4f169 2244
805fc799
AM
2245 /* Subtract the symbol section base address. */
2246 reloc_entry->addend -= symbol->section->output_section->vma;
5bd4f169
AM
2247 return bfd_reloc_continue;
2248}
2249
805fc799 2250static bfd_reloc_status_type
4ce794b7
AM
2251ppc64_elf_sectoff_ha_reloc (bfd *abfd, arelent *reloc_entry, asymbol *symbol,
2252 void *data, asection *input_section,
2253 bfd *output_bfd, char **error_message)
805fc799
AM
2254{
2255 /* If this is a relocatable link (output_bfd test tells us), just
2256 call the generic function. Any adjustment will be done at final
2257 link time. */
2258 if (output_bfd != NULL)
cedb70c5 2259 return bfd_elf_generic_reloc (abfd, reloc_entry, symbol, data,
805fc799
AM
2260 input_section, output_bfd, error_message);
2261
2262 /* Subtract the symbol section base address. */
2263 reloc_entry->addend -= symbol->section->output_section->vma;
2264
2265 /* Adjust the addend for sign extension of the low 16 bits. */
2266 reloc_entry->addend += 0x8000;
2267 return bfd_reloc_continue;
2268}
2269
2270static bfd_reloc_status_type
4ce794b7
AM
2271ppc64_elf_toc_reloc (bfd *abfd, arelent *reloc_entry, asymbol *symbol,
2272 void *data, asection *input_section,
2273 bfd *output_bfd, char **error_message)
805fc799
AM
2274{
2275 bfd_vma TOCstart;
2276
2277 /* If this is a relocatable link (output_bfd test tells us), just
2278 call the generic function. Any adjustment will be done at final
2279 link time. */
2280 if (output_bfd != NULL)
cedb70c5 2281 return bfd_elf_generic_reloc (abfd, reloc_entry, symbol, data,
805fc799
AM
2282 input_section, output_bfd, error_message);
2283
2284 TOCstart = _bfd_get_gp_value (input_section->output_section->owner);
2285 if (TOCstart == 0)
2286 TOCstart = ppc64_elf_toc (input_section->output_section->owner);
2287
2288 /* Subtract the TOC base address. */
2289 reloc_entry->addend -= TOCstart + TOC_BASE_OFF;
2290 return bfd_reloc_continue;
2291}
2292
2293static bfd_reloc_status_type
4ce794b7
AM
2294ppc64_elf_toc_ha_reloc (bfd *abfd, arelent *reloc_entry, asymbol *symbol,
2295 void *data, asection *input_section,
2296 bfd *output_bfd, char **error_message)
805fc799
AM
2297{
2298 bfd_vma TOCstart;
2299
2300 /* If this is a relocatable link (output_bfd test tells us), just
2301 call the generic function. Any adjustment will be done at final
2302 link time. */
2303 if (output_bfd != NULL)
cedb70c5 2304 return bfd_elf_generic_reloc (abfd, reloc_entry, symbol, data,
805fc799
AM
2305 input_section, output_bfd, error_message);
2306
2307 TOCstart = _bfd_get_gp_value (input_section->output_section->owner);
2308 if (TOCstart == 0)
2309 TOCstart = ppc64_elf_toc (input_section->output_section->owner);
2310
2311 /* Subtract the TOC base address. */
2312 reloc_entry->addend -= TOCstart + TOC_BASE_OFF;
2313
2314 /* Adjust the addend for sign extension of the low 16 bits. */
2315 reloc_entry->addend += 0x8000;
2316 return bfd_reloc_continue;
2317}
2318
2319static bfd_reloc_status_type
4ce794b7
AM
2320ppc64_elf_toc64_reloc (bfd *abfd, arelent *reloc_entry, asymbol *symbol,
2321 void *data, asection *input_section,
2322 bfd *output_bfd, char **error_message)
805fc799
AM
2323{
2324 bfd_vma TOCstart;
2325 bfd_size_type octets;
2326
2327 /* If this is a relocatable link (output_bfd test tells us), just
2328 call the generic function. Any adjustment will be done at final
2329 link time. */
2330 if (output_bfd != NULL)
cedb70c5 2331 return bfd_elf_generic_reloc (abfd, reloc_entry, symbol, data,
805fc799
AM
2332 input_section, output_bfd, error_message);
2333
2334 TOCstart = _bfd_get_gp_value (input_section->output_section->owner);
2335 if (TOCstart == 0)
2336 TOCstart = ppc64_elf_toc (input_section->output_section->owner);
2337
2338 octets = reloc_entry->address * bfd_octets_per_byte (abfd);
2339 bfd_put_64 (abfd, TOCstart + TOC_BASE_OFF, (bfd_byte *) data + octets);
2340 return bfd_reloc_ok;
2341}
2342
2343static bfd_reloc_status_type
4ce794b7
AM
2344ppc64_elf_unhandled_reloc (bfd *abfd, arelent *reloc_entry, asymbol *symbol,
2345 void *data, asection *input_section,
2346 bfd *output_bfd, char **error_message)
805fc799
AM
2347{
2348 /* If this is a relocatable link (output_bfd test tells us), just
2349 call the generic function. Any adjustment will be done at final
2350 link time. */
2351 if (output_bfd != NULL)
cedb70c5 2352 return bfd_elf_generic_reloc (abfd, reloc_entry, symbol, data,
805fc799
AM
2353 input_section, output_bfd, error_message);
2354
2355 if (error_message != NULL)
2356 {
2357 static char buf[60];
2358 sprintf (buf, "generic linker can't handle %s",
2359 reloc_entry->howto->name);
2360 *error_message = buf;
2361 }
2362 return bfd_reloc_dangerous;
2363}
2364
e717da7e
AM
2365struct ppc64_elf_obj_tdata
2366{
2367 struct elf_obj_tdata elf;
2368
2369 /* Shortcuts to dynamic linker sections. */
2370 asection *got;
2371 asection *relgot;
2372
81688140
AM
2373 /* Used during garbage collection. We attach global symbols defined
2374 on removed .opd entries to this section so that the sym is removed. */
2375 asection *deleted_section;
2376
e717da7e
AM
2377 /* TLS local dynamic got entry handling. Suppose for multiple GOT
2378 sections means we potentially need one of these for each input bfd. */
2379 union {
2380 bfd_signed_vma refcount;
2381 bfd_vma offset;
2382 } tlsld_got;
2383};
2384
2385#define ppc64_elf_tdata(bfd) \
2386 ((struct ppc64_elf_obj_tdata *) (bfd)->tdata.any)
2387
2388#define ppc64_tlsld_got(bfd) \
2389 (&ppc64_elf_tdata (bfd)->tlsld_got)
2390
2391/* Override the generic function because we store some extras. */
2392
2393static bfd_boolean
2394ppc64_elf_mkobject (bfd *abfd)
2395{
2396 bfd_size_type amt = sizeof (struct ppc64_elf_obj_tdata);
2397 abfd->tdata.any = bfd_zalloc (abfd, amt);
2398 if (abfd->tdata.any == NULL)
2399 return FALSE;
2400 return TRUE;
2401}
2402
feee612b
AM
2403/* Fix bad default arch selected for a 64 bit input bfd when the
2404 default is 32 bit. */
2405
b34976b6 2406static bfd_boolean
4ce794b7 2407ppc64_elf_object_p (bfd *abfd)
feee612b
AM
2408{
2409 if (abfd->arch_info->the_default && abfd->arch_info->bits_per_word == 32)
2410 {
2411 Elf_Internal_Ehdr *i_ehdr = elf_elfheader (abfd);
2412
2413 if (i_ehdr->e_ident[EI_CLASS] == ELFCLASS64)
2414 {
2415 /* Relies on arch after 32 bit default being 64 bit default. */
2416 abfd->arch_info = abfd->arch_info->next;
2417 BFD_ASSERT (abfd->arch_info->bits_per_word == 64);
2418 }
2419 }
b34976b6 2420 return TRUE;
feee612b
AM
2421}
2422
d37c89e5
AM
2423/* Support for core dump NOTE sections. */
2424
2425static bfd_boolean
2426ppc64_elf_grok_prstatus (bfd *abfd, Elf_Internal_Note *note)
2427{
eea6121a 2428 size_t offset, size;
d37c89e5
AM
2429
2430 if (note->descsz != 504)
2431 return FALSE;
2432
2433 /* pr_cursig */
2434 elf_tdata (abfd)->core_signal = bfd_get_16 (abfd, note->descdata + 12);
2435
2436 /* pr_pid */
2437 elf_tdata (abfd)->core_pid = bfd_get_32 (abfd, note->descdata + 32);
2438
2439 /* pr_reg */
2440 offset = 112;
eea6121a 2441 size = 384;
d37c89e5
AM
2442
2443 /* Make a ".reg/999" section. */
2444 return _bfd_elfcore_make_pseudosection (abfd, ".reg",
eea6121a 2445 size, note->descpos + offset);
d37c89e5
AM
2446}
2447
2448static bfd_boolean
2449ppc64_elf_grok_psinfo (bfd *abfd, Elf_Internal_Note *note)
2450{
2451 if (note->descsz != 136)
2452 return FALSE;
2453
2454 elf_tdata (abfd)->core_program
2455 = _bfd_elfcore_strndup (abfd, note->descdata + 40, 16);
2456 elf_tdata (abfd)->core_command
2457 = _bfd_elfcore_strndup (abfd, note->descdata + 56, 80);
2458
2459 return TRUE;
2460}
2461
5bd4f169
AM
2462/* Merge backend specific data from an object file to the output
2463 object file when linking. */
2f6d9989 2464
b34976b6 2465static bfd_boolean
4ce794b7 2466ppc64_elf_merge_private_bfd_data (bfd *ibfd, bfd *obfd)
5bd4f169 2467{
5bd4f169
AM
2468 /* Check if we have the same endianess. */
2469 if (ibfd->xvec->byteorder != obfd->xvec->byteorder
87e226ce 2470 && ibfd->xvec->byteorder != BFD_ENDIAN_UNKNOWN
5bd4f169
AM
2471 && obfd->xvec->byteorder != BFD_ENDIAN_UNKNOWN)
2472 {
2473 const char *msg;
2474
2475 if (bfd_big_endian (ibfd))
d003868e 2476 msg = _("%B: compiled for a big endian system "
4ce794b7 2477 "and target is little endian");
5bd4f169 2478 else
d003868e 2479 msg = _("%B: compiled for a little endian system "
4ce794b7 2480 "and target is big endian");
5bd4f169 2481
d003868e 2482 (*_bfd_error_handler) (msg, ibfd);
5bd4f169
AM
2483
2484 bfd_set_error (bfd_error_wrong_format);
b34976b6 2485 return FALSE;
5bd4f169
AM
2486 }
2487
b34976b6 2488 return TRUE;
5bd4f169 2489}
f0abc2a1 2490
5d35169e
AM
2491/* Add extra PPC sections. */
2492
2493static struct bfd_elf_special_section const ppc64_elf_special_sections[]=
2494{
7dcb9820
AM
2495 { ".sdata", 6, -2, SHT_PROGBITS, SHF_ALLOC + SHF_WRITE },
2496 { ".sbss", 5, -2, SHT_NOBITS, SHF_ALLOC + SHF_WRITE },
2497 { ".plt", 4, 0, SHT_NOBITS, 0 },
2498 { ".toc", 4, 0, SHT_PROGBITS, SHF_ALLOC + SHF_WRITE },
2499 { ".toc1", 5, 0, SHT_PROGBITS, SHF_ALLOC + SHF_WRITE },
2500 { ".tocbss", 7, 0, SHT_NOBITS, SHF_ALLOC + SHF_WRITE },
2501 { NULL, 0, 0, 0, 0 }
5d35169e
AM
2502};
2503
f0abc2a1
AM
2504struct _ppc64_elf_section_data
2505{
2506 struct bfd_elf_section_data elf;
411e1bfb
AM
2507
2508 /* An array with one entry for each opd function descriptor. */
f0abc2a1
AM
2509 union
2510 {
411e1bfb 2511 /* Points to the function code section for local opd entries. */
f0abc2a1 2512 asection **func_sec;
411e1bfb 2513 /* After editing .opd, adjust references to opd local syms. */
f0abc2a1
AM
2514 long *adjust;
2515 } opd;
411e1bfb
AM
2516
2517 /* An array for toc sections, indexed by offset/8.
2518 Specifies the relocation symbol index used at a given toc offset. */
2519 unsigned *t_symndx;
f0abc2a1
AM
2520};
2521
2522#define ppc64_elf_section_data(sec) \
411e1bfb 2523 ((struct _ppc64_elf_section_data *) elf_section_data (sec))
f0abc2a1
AM
2524
2525static bfd_boolean
4ce794b7 2526ppc64_elf_new_section_hook (bfd *abfd, asection *sec)
f0abc2a1
AM
2527{
2528 struct _ppc64_elf_section_data *sdata;
2529 bfd_size_type amt = sizeof (*sdata);
2530
4ce794b7 2531 sdata = bfd_zalloc (abfd, amt);
f0abc2a1
AM
2532 if (sdata == NULL)
2533 return FALSE;
4ce794b7 2534 sec->used_by_bfd = sdata;
f0abc2a1
AM
2535
2536 return _bfd_elf_new_section_hook (abfd, sec);
2537}
4025353c
AM
2538
2539static void *
2540get_opd_info (asection * sec)
2541{
2542 if (sec != NULL
2543 && ppc64_elf_section_data (sec) != NULL
2544 && ppc64_elf_section_data (sec)->opd.adjust != NULL)
2545 return ppc64_elf_section_data (sec)->opd.adjust;
2546 return NULL;
2547}
90e3cdf2
JJ
2548\f
2549/* Parameters for the qsort hook. */
2550static asection *synthetic_opd;
2551static bfd_boolean synthetic_relocatable;
2552
699733f6 2553/* qsort comparison function for ppc64_elf_get_synthetic_symtab. */
90e3cdf2
JJ
2554
2555static int
2556compare_symbols (const void *ap, const void *bp)
2557{
2558 const asymbol *a = * (const asymbol **) ap;
2559 const asymbol *b = * (const asymbol **) bp;
2560
699733f6
AM
2561 /* Section symbols first. */
2562 if ((a->flags & BSF_SECTION_SYM) && !(b->flags & BSF_SECTION_SYM))
90e3cdf2 2563 return -1;
699733f6 2564 if (!(a->flags & BSF_SECTION_SYM) && (b->flags & BSF_SECTION_SYM))
90e3cdf2
JJ
2565 return 1;
2566
699733f6 2567 /* then .opd symbols. */
90e3cdf2
JJ
2568 if (a->section == synthetic_opd && b->section != synthetic_opd)
2569 return -1;
2570 if (a->section != synthetic_opd && b->section == synthetic_opd)
2571 return 1;
2572
699733f6 2573 /* then other code symbols. */
90e3cdf2
JJ
2574 if ((a->section->flags & (SEC_CODE | SEC_ALLOC | SEC_THREAD_LOCAL))
2575 == (SEC_CODE | SEC_ALLOC)
2576 && (b->section->flags & (SEC_CODE | SEC_ALLOC | SEC_THREAD_LOCAL))
2577 != (SEC_CODE | SEC_ALLOC))
2578 return -1;
2579
2580 if ((a->section->flags & (SEC_CODE | SEC_ALLOC | SEC_THREAD_LOCAL))
2581 != (SEC_CODE | SEC_ALLOC)
2582 && (b->section->flags & (SEC_CODE | SEC_ALLOC | SEC_THREAD_LOCAL))
2583 == (SEC_CODE | SEC_ALLOC))
2584 return 1;
2585
2586 if (synthetic_relocatable)
2587 {
2588 if (a->section->id < b->section->id)
2589 return -1;
2590
2591 if (a->section->id > b->section->id)
2592 return 1;
2593 }
2594
2595 if (a->value + a->section->vma < b->value + b->section->vma)
2596 return -1;
2597
2598 if (a->value + a->section->vma > b->value + b->section->vma)
2599 return 1;
2600
2601 return 0;
2602}
2603
699733f6 2604/* Search SYMS for a symbol of the given VALUE. */
90e3cdf2 2605
699733f6
AM
2606static asymbol *
2607sym_exists_at (asymbol **syms, long lo, long hi, int id, bfd_vma value)
90e3cdf2 2608{
699733f6 2609 long mid;
90e3cdf2 2610
699733f6
AM
2611 if (id == -1)
2612 {
2613 while (lo < hi)
2614 {
2615 mid = (lo + hi) >> 1;
2616 if (syms[mid]->value + syms[mid]->section->vma < value)
2617 lo = mid + 1;
2618 else if (syms[mid]->value + syms[mid]->section->vma > value)
2619 hi = mid;
2620 else
2621 return syms[mid];
2622 }
2623 }
2624 else
2625 {
2626 while (lo < hi)
2627 {
2628 mid = (lo + hi) >> 1;
2629 if (syms[mid]->section->id < id)
2630 lo = mid + 1;
2631 else if (syms[mid]->section->id > id)
2632 hi = mid;
2633 else if (syms[mid]->value < value)
2634 lo = mid + 1;
2635 else if (syms[mid]->value > value)
2636 hi = mid;
2637 else
2638 return syms[mid];
2639 }
2640 }
2641 return NULL;
90e3cdf2
JJ
2642}
2643
699733f6
AM
2644/* Create synthetic symbols, effectively restoring "dot-symbol" function
2645 entry syms. */
90e3cdf2
JJ
2646
2647static long
c9727e01
AM
2648ppc64_elf_get_synthetic_symtab (bfd *abfd, long symcount, asymbol **syms,
2649 long dynsymcount, asymbol **dynsyms,
2650 asymbol **ret)
90e3cdf2
JJ
2651{
2652 asymbol *s;
699733f6
AM
2653 long i;
2654 long count;
90e3cdf2 2655 char *names;
c9727e01 2656 long codesecsym, codesecsymend, secsymend, opdsymend;
699733f6 2657 asection *opd;
90e3cdf2 2658 bfd_boolean relocatable = (abfd->flags & (EXEC_P | DYNAMIC)) == 0;
c9727e01 2659 asymbol **sy = NULL;
90e3cdf2
JJ
2660
2661 *ret = NULL;
2662
2663 opd = bfd_get_section_by_name (abfd, ".opd");
2664 if (opd == NULL)
2665 return 0;
2666
c9727e01 2667 if (!relocatable)
90e3cdf2 2668 {
c9727e01 2669 if (symcount != 0 && dynsymcount != 0)
90e3cdf2 2670 {
c9727e01
AM
2671 /* Use both symbol tables. */
2672 sy = bfd_malloc ((symcount + dynsymcount + 1) * sizeof (*syms));
2673 if (sy == NULL)
90e3cdf2 2674 return 0;
c9727e01
AM
2675 memcpy (sy, syms, symcount * sizeof (*syms));
2676 memcpy (sy + symcount, dynsyms, (dynsymcount + 1) * sizeof (*syms));
2677 syms = sy;
2678 symcount = symcount + dynsymcount;
90e3cdf2 2679 }
c9727e01 2680 else if (symcount == 0)
90e3cdf2 2681 {
c9727e01
AM
2682 syms = dynsyms;
2683 symcount = dynsymcount;
90e3cdf2
JJ
2684 }
2685 }
2686
2687 if (symcount == 0)
c9727e01 2688 return 0;
90e3cdf2
JJ
2689
2690 synthetic_opd = opd;
2691 synthetic_relocatable = relocatable;
2692 qsort (syms, symcount, sizeof (asymbol *), compare_symbols);
2693
c9727e01
AM
2694 if (!relocatable && symcount > 1)
2695 {
2696 long j;
2697 /* Trim duplicate syms, since we may have merged the normal and
2698 dynamic symbols. Actually, we only care about syms that have
2699 different values, so trim any with the same value. */
2700 for (i = 1, j = 1; i < symcount; ++i)
2701 if (syms[i - 1]->value + syms[i - 1]->section->vma
2702 != syms[i]->value + syms[i]->section->vma)
2703 syms[j++] = syms[i];
2704 symcount = j;
2705 }
2706
699733f6
AM
2707 i = 0;
2708 if (syms[i]->section == opd)
2709 ++i;
2710 codesecsym = i;
90e3cdf2 2711
699733f6
AM
2712 for (; i < symcount; ++i)
2713 if (((syms[i]->section->flags & (SEC_CODE | SEC_ALLOC | SEC_THREAD_LOCAL))
2714 != (SEC_CODE | SEC_ALLOC))
2715 || (syms[i]->flags & BSF_SECTION_SYM) == 0)
2716 break;
2717 codesecsymend = i;
90e3cdf2 2718
699733f6
AM
2719 for (; i < symcount; ++i)
2720 if ((syms[i]->flags & BSF_SECTION_SYM) == 0)
2721 break;
2722 secsymend = i;
90e3cdf2 2723
699733f6
AM
2724 for (; i < symcount; ++i)
2725 if (syms[i]->section != opd)
2726 break;
2727 opdsymend = i;
90e3cdf2 2728
699733f6
AM
2729 for (; i < symcount; ++i)
2730 if ((syms[i]->section->flags & (SEC_CODE | SEC_ALLOC | SEC_THREAD_LOCAL))
2731 != (SEC_CODE | SEC_ALLOC))
2732 break;
2733 symcount = i;
2734
c9727e01 2735 count = 0;
699733f6 2736 if (opdsymend == secsymend)
c9727e01 2737 goto done;
90e3cdf2 2738
699733f6 2739 if (relocatable)
90e3cdf2 2740 {
699733f6
AM
2741 bfd_boolean (*slurp_relocs) (bfd *, asection *, asymbol **, bfd_boolean);
2742 arelent *r;
2743 size_t size;
2744 long relcount;
2745 asection *relopd;
90e3cdf2 2746
699733f6 2747 slurp_relocs = get_elf_backend_data (abfd)->s->slurp_reloc_table;
90e3cdf2
JJ
2748 relopd = opd;
2749 relcount = (opd->flags & SEC_RELOC) ? opd->reloc_count : 0;
2750
2751 if (! relcount
c9727e01
AM
2752 || ! (*slurp_relocs) (abfd, relopd, syms, FALSE))
2753 goto done;
90e3cdf2 2754
699733f6
AM
2755 size = 0;
2756 for (i = secsymend, r = relopd->relocation; i < opdsymend; ++i)
2757 {
2758 asymbol *sym;
90e3cdf2 2759
699733f6
AM
2760 while (r < relopd->relocation + relcount
2761 && r->address < syms[i]->value + opd->vma)
2762 ++r;
90e3cdf2 2763
699733f6
AM
2764 if (r == relopd->relocation + relcount)
2765 break;
90e3cdf2 2766
699733f6
AM
2767 if (r->address != syms[i]->value + opd->vma)
2768 continue;
90e3cdf2 2769
699733f6
AM
2770 if (r->howto->type != R_PPC64_ADDR64)
2771 continue;
90e3cdf2 2772
699733f6
AM
2773 sym = *r->sym_ptr_ptr;
2774 if (!sym_exists_at (syms, opdsymend, symcount,
2775 sym->section->id, sym->value + r->addend))
2776 {
2777 ++count;
2778 size += sizeof (asymbol);
2779 size += strlen (syms[i]->name) + 2;
2780 }
2781 }
90e3cdf2 2782
699733f6
AM
2783 s = *ret = bfd_malloc (size);
2784 if (s == NULL)
2785 {
c9727e01
AM
2786 count = 0;
2787 goto done;
699733f6 2788 }
90e3cdf2 2789
699733f6 2790 names = (char *) (s + count);
90e3cdf2 2791
699733f6 2792 for (i = secsymend, r = relopd->relocation; i < opdsymend; ++i)
90e3cdf2 2793 {
699733f6 2794 asymbol *sym;
90e3cdf2 2795
699733f6
AM
2796 while (r < relopd->relocation + relcount
2797 && r->address < syms[i]->value + opd->vma)
2798 ++r;
90e3cdf2 2799
699733f6
AM
2800 if (r == relopd->relocation + relcount)
2801 break;
2802
2803 if (r->address != syms[i]->value + opd->vma)
2804 continue;
2805
2806 if (r->howto->type != R_PPC64_ADDR64)
2807 continue;
90e3cdf2 2808
699733f6
AM
2809 sym = *r->sym_ptr_ptr;
2810 if (!sym_exists_at (syms, opdsymend, symcount,
2811 sym->section->id, sym->value + r->addend))
2812 {
2813 size_t len;
2814
2815 *s = *syms[i];
2816 s->section = sym->section;
2817 s->value = sym->value + r->addend;
2818 s->name = names;
2819 *names++ = '.';
2820 len = strlen (syms[i]->name);
2821 memcpy (names, syms[i]->name, len + 1);
2822 names += len + 1;
2823 s++;
2824 }
2825 }
2826 }
2827 else
90e3cdf2 2828 {
699733f6
AM
2829 bfd_byte *contents;
2830 size_t size;
90e3cdf2 2831
699733f6
AM
2832 if (!bfd_malloc_and_get_section (abfd, opd, &contents))
2833 {
2834 if (contents)
c9727e01
AM
2835 {
2836 free_contents_and_exit:
2837 free (contents);
2838 }
2839 goto done;
699733f6 2840 }
90e3cdf2 2841
699733f6
AM
2842 size = 0;
2843 for (i = secsymend; i < opdsymend; ++i)
2844 {
2845 bfd_vma ent;
90e3cdf2 2846
699733f6
AM
2847 ent = bfd_get_64 (abfd, contents + syms[i]->value);
2848 if (!sym_exists_at (syms, opdsymend, symcount, -1, ent))
2849 {
2850 ++count;
2851 size += sizeof (asymbol);
2852 size += strlen (syms[i]->name) + 2;
2853 }
2854 }
90e3cdf2 2855
699733f6
AM
2856 s = *ret = bfd_malloc (size);
2857 if (s == NULL)
2858 {
c9727e01
AM
2859 count = 0;
2860 goto free_contents_and_exit;
699733f6 2861 }
90e3cdf2 2862
699733f6 2863 names = (char *) (s + count);
90e3cdf2 2864
699733f6 2865 for (i = secsymend; i < opdsymend; ++i)
90e3cdf2 2866 {
699733f6 2867 bfd_vma ent;
90e3cdf2 2868
699733f6
AM
2869 ent = bfd_get_64 (abfd, contents + syms[i]->value);
2870 if (!sym_exists_at (syms, opdsymend, symcount, -1, ent))
90e3cdf2 2871 {
c9727e01 2872 long lo, hi;
699733f6 2873 size_t len;
c9727e01 2874 asection *sec = abfd->sections;
90e3cdf2 2875
699733f6
AM
2876 *s = *syms[i];
2877 lo = codesecsym;
2878 hi = codesecsymend;
2879 while (lo < hi)
2880 {
c9727e01 2881 long mid = (lo + hi) >> 1;
699733f6
AM
2882 if (syms[mid]->section->vma < ent)
2883 lo = mid + 1;
2884 else if (syms[mid]->section->vma > ent)
2885 hi = mid;
2886 else
c9727e01
AM
2887 {
2888 sec = syms[mid]->section;
2889 break;
2890 }
699733f6
AM
2891 }
2892
c9727e01 2893 if (lo >= hi && lo > codesecsym)
699733f6 2894 sec = syms[lo - 1]->section;
699733f6
AM
2895
2896 for (; sec != NULL; sec = sec->next)
2897 {
2898 if (sec->vma > ent)
2899 break;
2900 if ((sec->flags & SEC_ALLOC) == 0
2901 || (sec->flags & SEC_LOAD) == 0)
2902 break;
2903 if ((sec->flags & SEC_CODE) != 0)
2904 s->section = sec;
2905 }
2906 s->value = ent - s->section->vma;
2907 s->name = names;
2908 *names++ = '.';
2909 len = strlen (syms[i]->name);
2910 memcpy (names, syms[i]->name, len + 1);
2911 names += len + 1;
2912 s++;
90e3cdf2 2913 }
90e3cdf2 2914 }
699733f6 2915 free (contents);
90e3cdf2
JJ
2916 }
2917
c9727e01
AM
2918 done:
2919 if (sy != NULL)
2920 free (sy);
90e3cdf2
JJ
2921 return count;
2922}
5bd4f169 2923\f
65f38f15
AM
2924/* The following functions are specific to the ELF linker, while
2925 functions above are used generally. Those named ppc64_elf_* are
2926 called by the main ELF linker code. They appear in this file more
2927 or less in the order in which they are called. eg.
2928 ppc64_elf_check_relocs is called early in the link process,
2929 ppc64_elf_finish_dynamic_sections is one of the last functions
e86ce104
AM
2930 called.
2931
2932 PowerPC64-ELF uses a similar scheme to PowerPC64-XCOFF in that
2933 functions have both a function code symbol and a function descriptor
2934 symbol. A call to foo in a relocatable object file looks like:
2935
2936 . .text
2937 . x:
2938 . bl .foo
2939 . nop
2940
2941 The function definition in another object file might be:
2942
2943 . .section .opd
2944 . foo: .quad .foo
2945 . .quad .TOC.@tocbase
2946 . .quad 0
2947 .
2948 . .text
2949 . .foo: blr
2950
2951 When the linker resolves the call during a static link, the branch
2952 unsurprisingly just goes to .foo and the .opd information is unused.
2953 If the function definition is in a shared library, things are a little
2954 different: The call goes via a plt call stub, the opd information gets
2955 copied to the plt, and the linker patches the nop.
2956
2957 . x:
2958 . bl .foo_stub
2959 . ld 2,40(1)
2960 .
2961 .
2962 . .foo_stub:
2963 . addis 12,2,Lfoo@toc@ha # in practice, the call stub
411e1bfb 2964 . addi 12,12,Lfoo@toc@l # is slightly optimized, but
e86ce104
AM
2965 . std 2,40(1) # this is the general idea
2966 . ld 11,0(12)
2967 . ld 2,8(12)
2968 . mtctr 11
2969 . ld 11,16(12)
2970 . bctr
2971 .
2972 . .section .plt
2973 . Lfoo: reloc (R_PPC64_JMP_SLOT, foo)
2974
2975 The "reloc ()" notation is supposed to indicate that the linker emits
2976 an R_PPC64_JMP_SLOT reloc against foo. The dynamic linker does the opd
2977 copying.
2978
2979 What are the difficulties here? Well, firstly, the relocations
2980 examined by the linker in check_relocs are against the function code
2981 sym .foo, while the dynamic relocation in the plt is emitted against
2982 the function descriptor symbol, foo. Somewhere along the line, we need
2983 to carefully copy dynamic link information from one symbol to the other.
2984 Secondly, the generic part of the elf linker will make .foo a dynamic
2985 symbol as is normal for most other backends. We need foo dynamic
2986 instead, at least for an application final link. However, when
2987 creating a shared library containing foo, we need to have both symbols
2988 dynamic so that references to .foo are satisfied during the early
2989 stages of linking. Otherwise the linker might decide to pull in a
8387904d
AM
2990 definition from some other object, eg. a static library.
2991
2992 Update: As of August 2004, we support a new convention. Function
2993 calls may use the function descriptor symbol, ie. "bl foo". This
2994 behaves exactly as "bl .foo". */
65f38f15
AM
2995
2996/* The linker needs to keep track of the number of relocs that it
2997 decides to copy as dynamic relocs in check_relocs for each symbol.
2998 This is so that it can later discard them if they are found to be
2999 unnecessary. We store the information in a field extending the
3000 regular ELF linker hash table. */
3001
3002struct ppc_dyn_relocs
3003{
3004 struct ppc_dyn_relocs *next;
3005
3006 /* The input section of the reloc. */
3007 asection *sec;
3008
3009 /* Total number of relocs copied for the input section. */
3010 bfd_size_type count;
3011
3012 /* Number of pc-relative relocs copied for the input section. */
3013 bfd_size_type pc_count;
3014};
3015
411e1bfb
AM
3016/* Track GOT entries needed for a given symbol. We might need more
3017 than one got entry per symbol. */
3018struct got_entry
3019{
3020 struct got_entry *next;
3021
e7b938ca 3022 /* The symbol addend that we'll be placing in the GOT. */
411e1bfb
AM
3023 bfd_vma addend;
3024
e717da7e
AM
3025 /* Unlike other ELF targets, we use separate GOT entries for the same
3026 symbol referenced from different input files. This is to support
3027 automatic multiple TOC/GOT sections, where the TOC base can vary
3028 from one input file to another.
3029
3030 Point to the BFD owning this GOT entry. */
3031 bfd *owner;
3032
3033 /* Zero for non-tls entries, or TLS_TLS and one of TLS_GD, TLS_LD,
3034 TLS_TPREL or TLS_DTPREL for tls entries. */
3035 char tls_type;
3036
e7b938ca 3037 /* Reference count until size_dynamic_sections, GOT offset thereafter. */
411e1bfb
AM
3038 union
3039 {
3040 bfd_signed_vma refcount;
3041 bfd_vma offset;
3042 } got;
411e1bfb
AM
3043};
3044
3045/* The same for PLT. */
3046struct plt_entry
3047{
3048 struct plt_entry *next;
3049
3050 bfd_vma addend;
3051
3052 union
3053 {
3054 bfd_signed_vma refcount;
3055 bfd_vma offset;
3056 } plt;
3057};
3058
65f38f15 3059/* Of those relocs that might be copied as dynamic relocs, this macro
58ac9f71
AM
3060 selects those that must be copied when linking a shared library,
3061 even when the symbol is local. */
65f38f15 3062
411e1bfb 3063#define MUST_BE_DYN_RELOC(RTYPE) \
805fc799
AM
3064 ((RTYPE) != R_PPC64_REL32 \
3065 && (RTYPE) != R_PPC64_REL64 \
04c9666a 3066 && (RTYPE) != R_PPC64_REL30)
65f38f15 3067
f4656909
AM
3068/* If ELIMINATE_COPY_RELOCS is non-zero, the linker will try to avoid
3069 copying dynamic variables from a shared lib into an app's dynbss
3070 section, and instead use a dynamic relocation to point into the
5d35169e
AM
3071 shared lib. With code that gcc generates, it's vital that this be
3072 enabled; In the PowerPC64 ABI, the address of a function is actually
3073 the address of a function descriptor, which resides in the .opd
3074 section. gcc uses the descriptor directly rather than going via the
3075 GOT as some other ABI's do, which means that initialized function
3076 pointers must reference the descriptor. Thus, a function pointer
3077 initialized to the address of a function in a shared library will
3078 either require a copy reloc, or a dynamic reloc. Using a copy reloc
4cc11e76 3079 redefines the function descriptor symbol to point to the copy. This
5d35169e
AM
3080 presents a problem as a plt entry for that function is also
3081 initialized from the function descriptor symbol and the copy reloc
3082 may not be initialized first. */
a23b6845 3083#define ELIMINATE_COPY_RELOCS 1
f4656909 3084
721956f4
AM
3085/* Section name for stubs is the associated section name plus this
3086 string. */
3087#define STUB_SUFFIX ".stub"
3088
3089/* Linker stubs.
3090 ppc_stub_long_branch:
3091 Used when a 14 bit branch (or even a 24 bit branch) can't reach its
3092 destination, but a 24 bit branch in a stub section will reach.
3093 . b dest
3094
3095 ppc_stub_plt_branch:
3096 Similar to the above, but a 24 bit branch in the stub section won't
3097 reach its destination.
87e226ce
AM
3098 . addis %r12,%r2,xxx@toc@ha
3099 . ld %r11,xxx@toc@l(%r12)
721956f4
AM
3100 . mtctr %r11
3101 . bctr
3102
3103 ppc_stub_plt_call:
2c66dc6c
AM
3104 Used to call a function in a shared library. If it so happens that
3105 the plt entry referenced crosses a 64k boundary, then an extra
3106 "addis %r12,%r12,1" will be inserted before the load at xxx+8 or
3107 xxx+16 as appropriate.
87e226ce 3108 . addis %r12,%r2,xxx@toc@ha
721956f4 3109 . std %r2,40(%r1)
87e226ce
AM
3110 . ld %r11,xxx+0@toc@l(%r12)
3111 . ld %r2,xxx+8@toc@l(%r12)
721956f4 3112 . mtctr %r11
87e226ce 3113 . ld %r11,xxx+16@toc@l(%r12)
721956f4 3114 . bctr
ad8e1ba5
AM
3115
3116 ppc_stub_long_branch and ppc_stub_plt_branch may also have additional
3117 code to adjust the value and save r2 to support multiple toc sections.
3118 A ppc_stub_long_branch with an r2 offset looks like:
3119 . std %r2,40(%r1)
3120 . addis %r2,%r2,off@ha
3121 . addi %r2,%r2,off@l
3122 . b dest
3123
3124 A ppc_stub_plt_branch with an r2 offset looks like:
3125 . std %r2,40(%r1)
3126 . addis %r12,%r2,xxx@toc@ha
3127 . ld %r11,xxx@toc@l(%r12)
3128 . addis %r2,%r2,off@ha
3129 . addi %r2,%r2,off@l
3130 . mtctr %r11
3131 . bctr
721956f4
AM
3132*/
3133
3134enum ppc_stub_type {
3135 ppc_stub_none,
3136 ppc_stub_long_branch,
ad8e1ba5 3137 ppc_stub_long_branch_r2off,
721956f4 3138 ppc_stub_plt_branch,
ad8e1ba5 3139 ppc_stub_plt_branch_r2off,
721956f4
AM
3140 ppc_stub_plt_call
3141};
3142
3143struct ppc_stub_hash_entry {
3144
3145 /* Base hash table entry structure. */
3146 struct bfd_hash_entry root;
3147
ad8e1ba5
AM
3148 enum ppc_stub_type stub_type;
3149
721956f4
AM
3150 /* The stub section. */
3151 asection *stub_sec;
3152
3153 /* Offset within stub_sec of the beginning of this stub. */
3154 bfd_vma stub_offset;
3155
3156 /* Given the symbol's value and its section we can determine its final
3157 value when building the stubs (so the stub knows where to jump. */
3158 bfd_vma target_value;
3159 asection *target_section;
3160
721956f4
AM
3161 /* The symbol table entry, if any, that this was derived from. */
3162 struct ppc_link_hash_entry *h;
3163
411e1bfb
AM
3164 /* And the reloc addend that this was derived from. */
3165 bfd_vma addend;
3166
721956f4
AM
3167 /* Where this stub is being called from, or, in the case of combined
3168 stub sections, the first input section in the group. */
3169 asection *id_sec;
3170};
3171
3172struct ppc_branch_hash_entry {
3173
3174 /* Base hash table entry structure. */
3175 struct bfd_hash_entry root;
3176
3177 /* Offset within .branch_lt. */
3178 unsigned int offset;
3179
3180 /* Generation marker. */
3181 unsigned int iter;
3182};
65f38f15
AM
3183
3184struct ppc_link_hash_entry
3185{
3186 struct elf_link_hash_entry elf;
3187
721956f4
AM
3188 /* A pointer to the most recently used stub hash entry against this
3189 symbol. */
3190 struct ppc_stub_hash_entry *stub_cache;
3191
65f38f15
AM
3192 /* Track dynamic relocs copied for this symbol. */
3193 struct ppc_dyn_relocs *dyn_relocs;
e86ce104 3194
721956f4 3195 /* Link between function code and descriptor symbols. */
34814b9f 3196 struct ppc_link_hash_entry *oh;
721956f4 3197
e86ce104
AM
3198 /* Flag function code and descriptor symbols. */
3199 unsigned int is_func:1;
3200 unsigned int is_func_descriptor:1;
411e1bfb 3201
8843416a
AM
3202 /* Whether global opd sym has been adjusted or not.
3203 After ppc64_elf_edit_opd has run, this flag should be set for all
3204 globals defined in any opd section. */
754021d0
AM
3205 unsigned int adjust_done:1;
3206
99877b66
AM
3207 /* Set if we twiddled this symbol to weak at some stage. */
3208 unsigned int was_undefined:1;
3209
411e1bfb 3210 /* Contexts in which symbol is used in the GOT (or TOC).
e7b938ca
AM
3211 TLS_GD .. TLS_EXPLICIT bits are or'd into the mask as the
3212 corresponding relocs are encountered during check_relocs.
3213 tls_optimize clears TLS_GD .. TLS_TPREL when optimizing to
3214 indicate the corresponding GOT entry type is not needed.
3215 tls_optimize may also set TLS_TPRELGD when a GD reloc turns into
3216 a TPREL one. We use a separate flag rather than setting TPREL
3217 just for convenience in distinguishing the two cases. */
3218#define TLS_GD 1 /* GD reloc. */
3219#define TLS_LD 2 /* LD reloc. */
3220#define TLS_TPREL 4 /* TPREL reloc, => IE. */
3221#define TLS_DTPREL 8 /* DTPREL reloc, => LD. */
3222#define TLS_TLS 16 /* Any TLS reloc. */
3223#define TLS_EXPLICIT 32 /* Marks TOC section TLS relocs. */
3224#define TLS_TPRELGD 64 /* TPREL reloc resulting from GD->IE. */
3225 char tls_mask;
65f38f15
AM
3226};
3227
3228/* ppc64 ELF linker hash table. */
3229
3230struct ppc_link_hash_table
3231{
3232 struct elf_link_hash_table elf;
3233
721956f4
AM
3234 /* The stub hash table. */
3235 struct bfd_hash_table stub_hash_table;
3236
3237 /* Another hash table for plt_branch stubs. */
3238 struct bfd_hash_table branch_hash_table;
3239
3240 /* Linker stub bfd. */
3241 bfd *stub_bfd;
3242
3243 /* Linker call-backs. */
4ce794b7
AM
3244 asection * (*add_stub_section) (const char *, asection *);
3245 void (*layout_sections_again) (void);
721956f4
AM
3246
3247 /* Array to keep track of which stub sections have been created, and
3248 information on stub grouping. */
3249 struct map_stub {
3250 /* This is the section to which stubs in the group will be attached. */
3251 asection *link_sec;
3252 /* The stub section. */
3253 asection *stub_sec;
ad8e1ba5
AM
3254 /* Along with elf_gp, specifies the TOC pointer used in this group. */
3255 bfd_vma toc_off;
721956f4
AM
3256 } *stub_group;
3257
ad8e1ba5
AM
3258 /* Temp used when calculating TOC pointers. */
3259 bfd_vma toc_curr;
3260
8f3bab57
AM
3261 /* Highest input section id. */
3262 int top_id;
3263
734b6cf9
AM
3264 /* Highest output section index. */
3265 int top_index;
3266
3267 /* List of input sections for each output section. */
3268 asection **input_list;
721956f4 3269
65f38f15 3270 /* Short-cuts to get to dynamic linker sections. */
4ce794b7 3271 asection *got;
4ce794b7
AM
3272 asection *plt;
3273 asection *relplt;
3274 asection *dynbss;
3275 asection *relbss;
3276 asection *glink;
82bd7b59 3277 asection *sfpr;
4ce794b7
AM
3278 asection *brlt;
3279 asection *relbrlt;
ec338859 3280
8387904d
AM
3281 /* Shortcut to .__tls_get_addr and __tls_get_addr. */
3282 struct ppc_link_hash_entry *tls_get_addr;
3283 struct ppc_link_hash_entry *tls_get_addr_fd;
411e1bfb 3284
9b5ecbd0
AM
3285 /* Statistics. */
3286 unsigned long stub_count[ppc_stub_plt_call];
3287
ad8e1ba5 3288 /* Set if we should emit symbols for stubs. */
99877b66 3289 unsigned int emit_stub_syms:1;
ad8e1ba5 3290
5d1634d7 3291 /* Set on error. */
99877b66 3292 unsigned int stub_error:1;
721956f4
AM
3293
3294 /* Flag set when small branches are detected. Used to
3295 select suitable defaults for the stub group size. */
99877b66
AM
3296 unsigned int has_14bit_branch:1;
3297
3298 /* Temp used by ppc64_elf_check_directives. */
3299 unsigned int twiddled_syms:1;
721956f4
AM
3300
3301 /* Incremented every time we size stubs. */
3302 unsigned int stub_iteration;
5d1634d7 3303
ec338859
AM
3304 /* Small local sym to section mapping cache. */
3305 struct sym_sec_cache sym_sec;
65f38f15
AM
3306};
3307
3308/* Get the ppc64 ELF linker hash table from a link_info structure. */
3309
3310#define ppc_hash_table(p) \
3311 ((struct ppc_link_hash_table *) ((p)->hash))
3312
721956f4
AM
3313#define ppc_stub_hash_lookup(table, string, create, copy) \
3314 ((struct ppc_stub_hash_entry *) \
3315 bfd_hash_lookup ((table), (string), (create), (copy)))
3316
3317#define ppc_branch_hash_lookup(table, string, create, copy) \
3318 ((struct ppc_branch_hash_entry *) \
3319 bfd_hash_lookup ((table), (string), (create), (copy)))
3320
3321/* Create an entry in the stub hash table. */
3322
3323static struct bfd_hash_entry *
4ce794b7
AM
3324stub_hash_newfunc (struct bfd_hash_entry *entry,
3325 struct bfd_hash_table *table,
3326 const char *string)
721956f4
AM
3327{
3328 /* Allocate the structure if it has not already been allocated by a
3329 subclass. */
3330 if (entry == NULL)
3331 {
3332 entry = bfd_hash_allocate (table, sizeof (struct ppc_stub_hash_entry));
3333 if (entry == NULL)
3334 return entry;
3335 }
3336
3337 /* Call the allocation method of the superclass. */
3338 entry = bfd_hash_newfunc (entry, table, string);
3339 if (entry != NULL)
3340 {
3341 struct ppc_stub_hash_entry *eh;
3342
3343 /* Initialize the local fields. */
3344 eh = (struct ppc_stub_hash_entry *) entry;
ad8e1ba5 3345 eh->stub_type = ppc_stub_none;
721956f4
AM
3346 eh->stub_sec = NULL;
3347 eh->stub_offset = 0;
3348 eh->target_value = 0;
3349 eh->target_section = NULL;
721956f4
AM
3350 eh->h = NULL;
3351 eh->id_sec = NULL;
3352 }
3353
3354 return entry;
3355}
3356
3357/* Create an entry in the branch hash table. */
3358
3359static struct bfd_hash_entry *
4ce794b7
AM
3360branch_hash_newfunc (struct bfd_hash_entry *entry,
3361 struct bfd_hash_table *table,
3362 const char *string)
721956f4
AM
3363{
3364 /* Allocate the structure if it has not already been allocated by a
3365 subclass. */
3366 if (entry == NULL)
3367 {
3368 entry = bfd_hash_allocate (table, sizeof (struct ppc_branch_hash_entry));
3369 if (entry == NULL)
3370 return entry;
3371 }
3372
3373 /* Call the allocation method of the superclass. */
3374 entry = bfd_hash_newfunc (entry, table, string);
3375 if (entry != NULL)
3376 {
3377 struct ppc_branch_hash_entry *eh;
3378
3379 /* Initialize the local fields. */
3380 eh = (struct ppc_branch_hash_entry *) entry;
3381 eh->offset = 0;
3382 eh->iter = 0;
3383 }
3384
3385 return entry;
3386}
3387
65f38f15
AM
3388/* Create an entry in a ppc64 ELF linker hash table. */
3389
3390static struct bfd_hash_entry *
4ce794b7
AM
3391link_hash_newfunc (struct bfd_hash_entry *entry,
3392 struct bfd_hash_table *table,
3393 const char *string)
65f38f15
AM
3394{
3395 /* Allocate the structure if it has not already been allocated by a
3396 subclass. */
3397 if (entry == NULL)
3398 {
3399 entry = bfd_hash_allocate (table, sizeof (struct ppc_link_hash_entry));
3400 if (entry == NULL)
3401 return entry;
3402 }
3403
3404 /* Call the allocation method of the superclass. */
3405 entry = _bfd_elf_link_hash_newfunc (entry, table, string);
3406 if (entry != NULL)
3407 {
3408 struct ppc_link_hash_entry *eh = (struct ppc_link_hash_entry *) entry;
3409
721956f4 3410 eh->stub_cache = NULL;
65f38f15 3411 eh->dyn_relocs = NULL;
721956f4 3412 eh->oh = NULL;
e86ce104
AM
3413 eh->is_func = 0;
3414 eh->is_func_descriptor = 0;
754021d0 3415 eh->adjust_done = 0;
99877b66 3416 eh->was_undefined = 0;
e7b938ca 3417 eh->tls_mask = 0;
65f38f15
AM
3418 }
3419
3420 return entry;
3421}
3422
3423/* Create a ppc64 ELF linker hash table. */
3424
3425static struct bfd_link_hash_table *
4ce794b7 3426ppc64_elf_link_hash_table_create (bfd *abfd)
65f38f15
AM
3427{
3428 struct ppc_link_hash_table *htab;
3429 bfd_size_type amt = sizeof (struct ppc_link_hash_table);
3430
4ce794b7 3431 htab = bfd_zmalloc (amt);
65f38f15
AM
3432 if (htab == NULL)
3433 return NULL;
3434
3435 if (! _bfd_elf_link_hash_table_init (&htab->elf, abfd, link_hash_newfunc))
3436 {
e2d34d7d 3437 free (htab);
65f38f15
AM
3438 return NULL;
3439 }
3440
721956f4
AM
3441 /* Init the stub hash table too. */
3442 if (!bfd_hash_table_init (&htab->stub_hash_table, stub_hash_newfunc))
3443 return NULL;
3444
3445 /* And the branch hash table. */
3446 if (!bfd_hash_table_init (&htab->branch_hash_table, branch_hash_newfunc))
3447 return NULL;
3448
3254fd24
AM
3449 /* Initializing two fields of the union is just cosmetic. We really
3450 only care about glist, but when compiled on a 32-bit host the
3451 bfd_vma fields are larger. Setting the bfd_vma to zero makes
3452 debugger inspection of these fields look nicer. */
3453 htab->elf.init_refcount.refcount = 0;
3454 htab->elf.init_refcount.glist = NULL;
3455 htab->elf.init_offset.offset = 0;
3456 htab->elf.init_offset.glist = NULL;
3457
65f38f15
AM
3458 return &htab->elf.root;
3459}
3460
721956f4
AM
3461/* Free the derived linker hash table. */
3462
3463static void
4ce794b7 3464ppc64_elf_link_hash_table_free (struct bfd_link_hash_table *hash)
721956f4
AM
3465{
3466 struct ppc_link_hash_table *ret = (struct ppc_link_hash_table *) hash;
3467
3468 bfd_hash_table_free (&ret->stub_hash_table);
3469 bfd_hash_table_free (&ret->branch_hash_table);
3470 _bfd_generic_link_hash_table_free (hash);
3471}
3472
e717da7e
AM
3473/* Satisfy the ELF linker by filling in some fields in our fake bfd. */
3474
3475void
3476ppc64_elf_init_stub_bfd (bfd *abfd, struct bfd_link_info *info)
3477{
3478 struct ppc_link_hash_table *htab;
3479
3480 elf_elfheader (abfd)->e_ident[EI_CLASS] = ELFCLASS64;
3481
3482/* Always hook our dynamic sections into the first bfd, which is the
3483 linker created stub bfd. This ensures that the GOT header is at
3484 the start of the output TOC section. */
3485 htab = ppc_hash_table (info);
3486 htab->stub_bfd = abfd;
3487 htab->elf.dynobj = abfd;
3488}
3489
721956f4
AM
3490/* Build a name for an entry in the stub hash table. */
3491
3492static char *
4ce794b7
AM
3493ppc_stub_name (const asection *input_section,
3494 const asection *sym_sec,
3495 const struct ppc_link_hash_entry *h,
3496 const Elf_Internal_Rela *rel)
721956f4
AM
3497{
3498 char *stub_name;
3499 bfd_size_type len;
3500
3501 /* rel->r_addend is actually 64 bit, but who uses more than +/- 2^31
3502 offsets from a sym as a branch target? In fact, we could
3503 probably assume the addend is always zero. */
3504 BFD_ASSERT (((int) rel->r_addend & 0xffffffff) == rel->r_addend);
3505
3506 if (h)
3507 {
3508 len = 8 + 1 + strlen (h->elf.root.root.string) + 1 + 8 + 1;
3509 stub_name = bfd_malloc (len);
3510 if (stub_name != NULL)
3511 {
97b639ba 3512 sprintf (stub_name, "%08x.%s+%x",
721956f4
AM
3513 input_section->id & 0xffffffff,
3514 h->elf.root.root.string,
3515 (int) rel->r_addend & 0xffffffff);
3516 }
3517 }
3518 else
3519 {
ad8e1ba5 3520 len = 8 + 1 + 8 + 1 + 8 + 1 + 8 + 1;
721956f4
AM
3521 stub_name = bfd_malloc (len);
3522 if (stub_name != NULL)
3523 {
97b639ba 3524 sprintf (stub_name, "%08x.%x:%x+%x",
721956f4
AM
3525 input_section->id & 0xffffffff,
3526 sym_sec->id & 0xffffffff,
3527 (int) ELF64_R_SYM (rel->r_info) & 0xffffffff,
3528 (int) rel->r_addend & 0xffffffff);
3529 }
3530 }
3531 return stub_name;
3532}
3533
3534/* Look up an entry in the stub hash. Stub entries are cached because
3535 creating the stub name takes a bit of time. */
3536
3537static struct ppc_stub_hash_entry *
4ce794b7
AM
3538ppc_get_stub_entry (const asection *input_section,
3539 const asection *sym_sec,
039b3fef 3540 struct ppc_link_hash_entry *h,
4ce794b7
AM
3541 const Elf_Internal_Rela *rel,
3542 struct ppc_link_hash_table *htab)
721956f4
AM
3543{
3544 struct ppc_stub_hash_entry *stub_entry;
721956f4
AM
3545 const asection *id_sec;
3546
3547 /* If this input section is part of a group of sections sharing one
3548 stub section, then use the id of the first section in the group.
3549 Stub names need to include a section id, as there may well be
3550 more than one stub used to reach say, printf, and we need to
3551 distinguish between them. */
3552 id_sec = htab->stub_group[input_section->id].link_sec;
3553
3554 if (h != NULL && h->stub_cache != NULL
3555 && h->stub_cache->h == h
3556 && h->stub_cache->id_sec == id_sec)
3557 {
3558 stub_entry = h->stub_cache;
3559 }
3560 else
3561 {
3562 char *stub_name;
3563
3564 stub_name = ppc_stub_name (id_sec, sym_sec, h, rel);
3565 if (stub_name == NULL)
3566 return NULL;
3567
3568 stub_entry = ppc_stub_hash_lookup (&htab->stub_hash_table,
b34976b6 3569 stub_name, FALSE, FALSE);
721956f4
AM
3570 if (h != NULL)
3571 h->stub_cache = stub_entry;
3572
3573 free (stub_name);
3574 }
3575
3576 return stub_entry;
3577}
3578
3579/* Add a new stub entry to the stub hash. Not all fields of the new
3580 stub entry are initialised. */
3581
3582static struct ppc_stub_hash_entry *
4ce794b7
AM
3583ppc_add_stub (const char *stub_name,
3584 asection *section,
3585 struct ppc_link_hash_table *htab)
721956f4
AM
3586{
3587 asection *link_sec;
3588 asection *stub_sec;
3589 struct ppc_stub_hash_entry *stub_entry;
3590
3591 link_sec = htab->stub_group[section->id].link_sec;
3592 stub_sec = htab->stub_group[section->id].stub_sec;
3593 if (stub_sec == NULL)
3594 {
3595 stub_sec = htab->stub_group[link_sec->id].stub_sec;
3596 if (stub_sec == NULL)
3597 {
d4c88bbb 3598 size_t namelen;
721956f4
AM
3599 bfd_size_type len;
3600 char *s_name;
3601
d4c88bbb
AM
3602 namelen = strlen (link_sec->name);
3603 len = namelen + sizeof (STUB_SUFFIX);
721956f4
AM
3604 s_name = bfd_alloc (htab->stub_bfd, len);
3605 if (s_name == NULL)
3606 return NULL;
3607
d4c88bbb
AM
3608 memcpy (s_name, link_sec->name, namelen);
3609 memcpy (s_name + namelen, STUB_SUFFIX, sizeof (STUB_SUFFIX));
721956f4
AM
3610 stub_sec = (*htab->add_stub_section) (s_name, link_sec);
3611 if (stub_sec == NULL)
3612 return NULL;
3613 htab->stub_group[link_sec->id].stub_sec = stub_sec;
3614 }
3615 htab->stub_group[section->id].stub_sec = stub_sec;
3616 }
3617
3618 /* Enter this entry into the linker stub hash table. */
3619 stub_entry = ppc_stub_hash_lookup (&htab->stub_hash_table, stub_name,
b34976b6 3620 TRUE, FALSE);
721956f4
AM
3621 if (stub_entry == NULL)
3622 {
d003868e
AM
3623 (*_bfd_error_handler) (_("%B: cannot create stub entry %s"),
3624 section->owner, stub_name);
721956f4
AM
3625 return NULL;
3626 }
3627
3628 stub_entry->stub_sec = stub_sec;
3629 stub_entry->stub_offset = 0;
3630 stub_entry->id_sec = link_sec;
3631 return stub_entry;
3632}
3633
82bd7b59
AM
3634/* Create sections for linker generated code. */
3635
b34976b6 3636static bfd_boolean
4ce794b7 3637create_linkage_sections (bfd *dynobj, struct bfd_link_info *info)
82bd7b59
AM
3638{
3639 struct ppc_link_hash_table *htab;
3640 flagword flags;
3641
3642 htab = ppc_hash_table (info);
3643
3644 /* Create .sfpr for code to save and restore fp regs. */
3645 flags = (SEC_ALLOC | SEC_LOAD | SEC_CODE | SEC_READONLY
3646 | SEC_HAS_CONTENTS | SEC_IN_MEMORY | SEC_LINKER_CREATED);
721956f4 3647 htab->sfpr = bfd_make_section_anyway (dynobj, ".sfpr");
82bd7b59
AM
3648 if (htab->sfpr == NULL
3649 || ! bfd_set_section_flags (dynobj, htab->sfpr, flags)
3650 || ! bfd_set_section_alignment (dynobj, htab->sfpr, 2))
b34976b6 3651 return FALSE;
82bd7b59 3652
721956f4 3653 /* Create .glink for lazy dynamic linking support. */
4ce794b7
AM
3654 htab->glink = bfd_make_section_anyway (dynobj, ".glink");
3655 if (htab->glink == NULL
3656 || ! bfd_set_section_flags (dynobj, htab->glink, flags)
3657 || ! bfd_set_section_alignment (dynobj, htab->glink, 2))
b34976b6 3658 return FALSE;
82bd7b59 3659
721956f4
AM
3660 /* Create .branch_lt for plt_branch stubs. */
3661 flags = (SEC_ALLOC | SEC_LOAD
3662 | SEC_HAS_CONTENTS | SEC_IN_MEMORY | SEC_LINKER_CREATED);
4ce794b7
AM
3663 htab->brlt = bfd_make_section_anyway (dynobj, ".branch_lt");
3664 if (htab->brlt == NULL
3665 || ! bfd_set_section_flags (dynobj, htab->brlt, flags)
3666 || ! bfd_set_section_alignment (dynobj, htab->brlt, 3))
b34976b6 3667 return FALSE;
721956f4
AM
3668
3669 if (info->shared)
3670 {
3671 flags = (SEC_ALLOC | SEC_LOAD | SEC_READONLY
3672 | SEC_HAS_CONTENTS | SEC_IN_MEMORY | SEC_LINKER_CREATED);
4ce794b7
AM
3673 htab->relbrlt = bfd_make_section_anyway (dynobj, ".rela.branch_lt");
3674 if (!htab->relbrlt
3675 || ! bfd_set_section_flags (dynobj, htab->relbrlt, flags)
3676 || ! bfd_set_section_alignment (dynobj, htab->relbrlt, 3))
b34976b6 3677 return FALSE;
721956f4 3678 }
b34976b6 3679 return TRUE;
82bd7b59
AM
3680}
3681
e717da7e
AM
3682/* Create .got and .rela.got sections in ABFD, and .got in dynobj if
3683 not already done. */
65f38f15 3684
b34976b6 3685static bfd_boolean
e717da7e 3686create_got_section (bfd *abfd, struct bfd_link_info *info)
65f38f15 3687{
e717da7e
AM
3688 asection *got, *relgot;
3689 flagword flags;
3690 struct ppc_link_hash_table *htab = ppc_hash_table (info);
65f38f15 3691
4ce794b7 3692 if (!htab->got)
e717da7e
AM
3693 {
3694 if (! _bfd_elf_create_got_section (htab->elf.dynobj, info))
3695 return FALSE;
3696
3697 htab->got = bfd_get_section_by_name (htab->elf.dynobj, ".got");
3698 if (!htab->got)
3699 abort ();
3700 }
3701
3702 flags = (SEC_ALLOC | SEC_LOAD | SEC_HAS_CONTENTS | SEC_IN_MEMORY
3703 | SEC_LINKER_CREATED);
3704
3705 got = bfd_make_section (abfd, ".got");
3706 if (!got
3707 || !bfd_set_section_flags (abfd, got, flags)
3708 || !bfd_set_section_alignment (abfd, got, 3))
3709 return FALSE;
65f38f15 3710
e717da7e
AM
3711 relgot = bfd_make_section (abfd, ".rela.got");
3712 if (!relgot
3713 || ! bfd_set_section_flags (abfd, relgot, flags | SEC_READONLY)
3714 || ! bfd_set_section_alignment (abfd, relgot, 3))
b34976b6 3715 return FALSE;
e717da7e
AM
3716
3717 ppc64_elf_tdata (abfd)->got = got;
3718 ppc64_elf_tdata (abfd)->relgot = relgot;
b34976b6 3719 return TRUE;
65f38f15 3720}
5bd4f169 3721
82bd7b59 3722/* Create the dynamic sections, and set up shortcuts. */
5bd4f169 3723
b34976b6 3724static bfd_boolean
4ce794b7 3725ppc64_elf_create_dynamic_sections (bfd *dynobj, struct bfd_link_info *info)
5bd4f169 3726{
65f38f15 3727 struct ppc_link_hash_table *htab;
5bd4f169 3728
65f38f15 3729 if (!_bfd_elf_create_dynamic_sections (dynobj, info))
b34976b6 3730 return FALSE;
65f38f15 3731
e717da7e
AM
3732 htab = ppc_hash_table (info);
3733 if (!htab->got)
3734 htab->got = bfd_get_section_by_name (dynobj, ".got");
4ce794b7
AM
3735 htab->plt = bfd_get_section_by_name (dynobj, ".plt");
3736 htab->relplt = bfd_get_section_by_name (dynobj, ".rela.plt");
3737 htab->dynbss = bfd_get_section_by_name (dynobj, ".dynbss");
65f38f15 3738 if (!info->shared)
4ce794b7 3739 htab->relbss = bfd_get_section_by_name (dynobj, ".rela.bss");
65f38f15 3740
e717da7e 3741 if (!htab->got || !htab->plt || !htab->relplt || !htab->dynbss
4ce794b7 3742 || (!info->shared && !htab->relbss))
65f38f15
AM
3743 abort ();
3744
b34976b6 3745 return TRUE;
5bd4f169
AM
3746}
3747
65f38f15
AM
3748/* Copy the extra info we tack onto an elf_link_hash_entry. */
3749
3750static void
9c5bfbb7
AM
3751ppc64_elf_copy_indirect_symbol
3752 (const struct elf_backend_data *bed ATTRIBUTE_UNUSED,
3753 struct elf_link_hash_entry *dir,
3754 struct elf_link_hash_entry *ind)
65f38f15
AM
3755{
3756 struct ppc_link_hash_entry *edir, *eind;
81848ca0 3757 flagword mask;
65f38f15
AM
3758
3759 edir = (struct ppc_link_hash_entry *) dir;
3760 eind = (struct ppc_link_hash_entry *) ind;
3761
411e1bfb 3762 /* Copy over any dynamic relocs we may have on the indirect sym. */
bbd7ec4a 3763 if (eind->dyn_relocs != NULL)
65f38f15 3764 {
bbd7ec4a
AM
3765 if (edir->dyn_relocs != NULL)
3766 {
3767 struct ppc_dyn_relocs **pp;
3768 struct ppc_dyn_relocs *p;
3769
411e1bfb 3770 if (eind->elf.root.type == bfd_link_hash_indirect)
bbd7ec4a
AM
3771 abort ();
3772
3773 /* Add reloc counts against the weak sym to the strong sym
3774 list. Merge any entries against the same section. */
3775 for (pp = &eind->dyn_relocs; (p = *pp) != NULL; )
3776 {
3777 struct ppc_dyn_relocs *q;
3778
3779 for (q = edir->dyn_relocs; q != NULL; q = q->next)
3780 if (q->sec == p->sec)
3781 {
3782 q->pc_count += p->pc_count;
3783 q->count += p->count;
3784 *pp = p->next;
3785 break;
3786 }
3787 if (q == NULL)
3788 pp = &p->next;
3789 }
3790 *pp = edir->dyn_relocs;
3791 }
3792
65f38f15
AM
3793 edir->dyn_relocs = eind->dyn_relocs;
3794 eind->dyn_relocs = NULL;
3795 }
65f38f15 3796
6349e628
AM
3797 edir->is_func |= eind->is_func;
3798 edir->is_func_descriptor |= eind->is_func_descriptor;
58ac9f71 3799 edir->tls_mask |= eind->tls_mask;
6349e628 3800
81848ca0 3801 mask = (ELF_LINK_HASH_REF_DYNAMIC | ELF_LINK_HASH_REF_REGULAR
3addb0a9
DJ
3802 | ELF_LINK_HASH_REF_REGULAR_NONWEAK | ELF_LINK_NON_GOT_REF
3803 | ELF_LINK_HASH_NEEDS_PLT);
81848ca0
AM
3804 /* If called to transfer flags for a weakdef during processing
3805 of elf_adjust_dynamic_symbol, don't copy ELF_LINK_NON_GOT_REF.
3806 We clear it ourselves for ELIMINATE_COPY_RELOCS. */
3807 if (ELIMINATE_COPY_RELOCS
3808 && eind->elf.root.type != bfd_link_hash_indirect
3809 && (edir->elf.elf_link_hash_flags & ELF_LINK_HASH_DYNAMIC_ADJUSTED) != 0)
3810 mask &= ~ELF_LINK_NON_GOT_REF;
3811
3812 edir->elf.elf_link_hash_flags |= eind->elf.elf_link_hash_flags & mask;
6349e628
AM
3813
3814 /* If we were called to copy over info for a weak sym, that's all. */
3815 if (eind->elf.root.type != bfd_link_hash_indirect)
3816 return;
3817
81848ca0
AM
3818 /* Copy over got entries that we may have already seen to the
3819 symbol which just became indirect. */
411e1bfb
AM
3820 if (eind->elf.got.glist != NULL)
3821 {
3822 if (edir->elf.got.glist != NULL)
3823 {
3824 struct got_entry **entp;
3825 struct got_entry *ent;
3826
3827 for (entp = &eind->elf.got.glist; (ent = *entp) != NULL; )
3828 {
3829 struct got_entry *dent;
3830
3831 for (dent = edir->elf.got.glist; dent != NULL; dent = dent->next)
3832 if (dent->addend == ent->addend
e717da7e 3833 && dent->owner == ent->owner
411e1bfb
AM
3834 && dent->tls_type == ent->tls_type)
3835 {
3836 dent->got.refcount += ent->got.refcount;
3837 *entp = ent->next;
3838 break;
3839 }
3840 if (dent == NULL)
3841 entp = &ent->next;
3842 }
3843 *entp = edir->elf.got.glist;
3844 }
3845
3846 edir->elf.got.glist = eind->elf.got.glist;
3847 eind->elf.got.glist = NULL;
3848 }
3849
3850 /* And plt entries. */
3851 if (eind->elf.plt.plist != NULL)
3852 {
3853 if (edir->elf.plt.plist != NULL)
3854 {
3855 struct plt_entry **entp;
3856 struct plt_entry *ent;
3857
3858 for (entp = &eind->elf.plt.plist; (ent = *entp) != NULL; )
3859 {
3860 struct plt_entry *dent;
3861
3862 for (dent = edir->elf.plt.plist; dent != NULL; dent = dent->next)
3863 if (dent->addend == ent->addend)
3864 {
3865 dent->plt.refcount += ent->plt.refcount;
3866 *entp = ent->next;
3867 break;
3868 }
3869 if (dent == NULL)
3870 entp = &ent->next;
3871 }
3872 *entp = edir->elf.plt.plist;
3873 }
3874
3875 edir->elf.plt.plist = eind->elf.plt.plist;
3876 eind->elf.plt.plist = NULL;
3877 }
3878
411e1bfb
AM
3879 if (edir->elf.dynindx == -1)
3880 {
3881 edir->elf.dynindx = eind->elf.dynindx;
3882 edir->elf.dynstr_index = eind->elf.dynstr_index;
3883 eind->elf.dynindx = -1;
3884 eind->elf.dynstr_index = 0;
3885 }
3886 else
3887 BFD_ASSERT (eind->elf.dynindx == -1);
3888}
3889
8387904d
AM
3890/* Find the function descriptor hash entry from the given function code
3891 hash entry FH. Link the entries via their OH fields. */
3892
3893static struct ppc_link_hash_entry *
3894get_fdh (struct ppc_link_hash_entry *fh, struct ppc_link_hash_table *htab)
3895{
3896 struct ppc_link_hash_entry *fdh = fh->oh;
3897
3898 if (fdh == NULL)
3899 {
3900 const char *fd_name = fh->elf.root.root.string + 1;
3901
3902 fdh = (struct ppc_link_hash_entry *)
3903 elf_link_hash_lookup (&htab->elf, fd_name, FALSE, FALSE, FALSE);
3904 if (fdh != NULL)
3905 {
3906 fdh->is_func_descriptor = 1;
3907 fdh->oh = fh;
3908 fh->is_func = 1;
3909 fh->oh = fdh;
3910 }
3911 }
3912
3913 return fdh;
3914}
3915
3916/* Hacks to support old ABI code.
3917 When making function calls, old ABI code references function entry
3918 points (dot symbols), while new ABI code references the function
3919 descriptor symbol. We need to make any combination of reference and
3920 definition work together, without breaking archive linking.
3921
3922 For a defined function "foo" and an undefined call to "bar":
3923 An old object defines "foo" and ".foo", references ".bar" (possibly
3924 "bar" too).
3925 A new object defines "foo" and references "bar".
3926
3927 A new object thus has no problem with its undefined symbols being
3928 satisfied by definitions in an old object. On the other hand, the
3929 old object won't have ".bar" satisfied by a new object. */
3930
3931/* Fix function descriptor symbols defined in .opd sections to be
3932 function type. */
555cd476
AM
3933
3934static bfd_boolean
3935ppc64_elf_add_symbol_hook (bfd *ibfd ATTRIBUTE_UNUSED,
3936 struct bfd_link_info *info ATTRIBUTE_UNUSED,
3937 Elf_Internal_Sym *isym,
3938 const char **name ATTRIBUTE_UNUSED,
3939 flagword *flags ATTRIBUTE_UNUSED,
3940 asection **sec,
3941 bfd_vma *value ATTRIBUTE_UNUSED)
3942{
8843416a
AM
3943 if (*sec != NULL
3944 && strcmp (bfd_get_section_name (ibfd, *sec), ".opd") == 0)
555cd476
AM
3945 isym->st_info = ELF_ST_INFO (ELF_ST_BIND (isym->st_info), STT_FUNC);
3946 return TRUE;
3947}
3948
8387904d
AM
3949/* This function makes an old ABI object reference to ".bar" cause the
3950 inclusion of a new ABI object archive that defines "bar". */
3951
3952static struct elf_link_hash_entry *
3953ppc64_elf_archive_symbol_lookup (bfd *abfd,
3954 struct bfd_link_info *info,
3955 const char *name)
3956{
3957 struct elf_link_hash_entry *h;
3958 char *dot_name;
3959 size_t len;
3960
3961 h = _bfd_elf_archive_symbol_lookup (abfd, info, name);
3962 if (h != NULL)
3963 return h;
3964
3965 if (name[0] == '.')
3966 return h;
3967
3968 len = strlen (name);
3969 dot_name = bfd_alloc (abfd, len + 2);
3970 if (dot_name == NULL)
3971 return (struct elf_link_hash_entry *) 0 - 1;
3972 dot_name[0] = '.';
3973 memcpy (dot_name + 1, name, len + 1);
3974 h = _bfd_elf_archive_symbol_lookup (abfd, info, dot_name);
3975 bfd_release (abfd, dot_name);
3976 return h;
3977}
3978
3979/* This function satisfies all old ABI object references to ".bar" if a
99877b66
AM
3980 new ABI object defines "bar". Well, at least, undefined dot symbols
3981 are made weak. This stops later archive searches from including an
3982 object if we already have a function descriptor definition. It also
35b0ce59
AM
3983 prevents the linker complaining about undefined symbols.
3984 We also check and correct mismatched symbol visibility here. The
3985 most restrictive visibility of the function descriptor and the
3986 function entry symbol is used. */
8387904d
AM
3987
3988static bfd_boolean
3989add_symbol_adjust (struct elf_link_hash_entry *h, void *inf)
3990{
3991 struct bfd_link_info *info;
3992 struct ppc_link_hash_table *htab;
99877b66 3993 struct ppc_link_hash_entry *eh;
8387904d
AM
3994 struct ppc_link_hash_entry *fdh;
3995
3996 if (h->root.type == bfd_link_hash_indirect)
3997 return TRUE;
3998
3999 if (h->root.type == bfd_link_hash_warning)
4000 h = (struct elf_link_hash_entry *) h->root.u.i.link;
4001
35b0ce59 4002 if (h->root.root.string[0] != '.')
8387904d
AM
4003 return TRUE;
4004
4005 info = inf;
4006 htab = ppc_hash_table (info);
99877b66
AM
4007 eh = (struct ppc_link_hash_entry *) h;
4008 fdh = get_fdh (eh, htab);
8387904d
AM
4009 if (fdh != NULL)
4010 {
35b0ce59
AM
4011 unsigned entry_vis = ELF_ST_VISIBILITY (eh->elf.other) - 1;
4012 unsigned descr_vis = ELF_ST_VISIBILITY (fdh->elf.other) - 1;
4013 if (entry_vis < descr_vis)
4014 fdh->elf.other += entry_vis - descr_vis;
4015 else if (entry_vis > descr_vis)
4016 eh->elf.other += descr_vis - entry_vis;
4017
4018 if (eh->elf.root.type == bfd_link_hash_undefined)
4019 {
4020 eh->elf.root.type = bfd_link_hash_undefweak;
4021 eh->was_undefined = 1;
4022 htab->twiddled_syms = 1;
4023 }
8387904d 4024 }
99877b66 4025
8387904d
AM
4026 return TRUE;
4027}
4028
4029static bfd_boolean
4030ppc64_elf_check_directives (bfd *abfd ATTRIBUTE_UNUSED,
4031 struct bfd_link_info *info)
4032{
99877b66 4033 struct ppc_link_hash_table *htab;
35b0ce59
AM
4034 extern const bfd_target bfd_elf64_powerpc_vec;
4035 extern const bfd_target bfd_elf64_powerpcle_vec;
99877b66
AM
4036
4037 htab = ppc_hash_table (info);
35b0ce59
AM
4038 if (htab->elf.root.creator != &bfd_elf64_powerpc_vec
4039 && htab->elf.root.creator != &bfd_elf64_powerpcle_vec)
4040 return TRUE;
4041
8387904d 4042 elf_link_hash_traverse (&htab->elf, add_symbol_adjust, info);
99877b66
AM
4043
4044 /* We need to fix the undefs list for any syms we have twiddled to
4045 undef_weak. */
4046 if (htab->twiddled_syms)
4047 {
4048 struct bfd_link_hash_entry **pun;
4049
4050 pun = &htab->elf.root.undefs;
4051 while (*pun != NULL)
4052 {
4053 struct bfd_link_hash_entry *h = *pun;
4054
4055 if (h->type != bfd_link_hash_undefined
4056 && h->type != bfd_link_hash_common)
4057 {
4058 *pun = h->und_next;
4059 h->und_next = NULL;
4060 if (h == htab->elf.root.undefs_tail)
4061 {
4062 if (pun == &htab->elf.root.undefs)
4063 htab->elf.root.undefs_tail = NULL;
4064 else
4065 /* pun points at an und_next field. Go back to
4066 the start of the link_hash_entry. */
4067 htab->elf.root.undefs_tail = (struct bfd_link_hash_entry *)
4068 ((char *) pun - ((char *) &h->und_next - (char *) h));
4069 break;
4070 }
4071 }
4072 else
4073 pun = &h->und_next;
4074 }
4075
4076 htab->twiddled_syms = 0;
4077 }
8387904d
AM
4078 return TRUE;
4079}
4080
411e1bfb 4081static bfd_boolean
4ce794b7
AM
4082update_local_sym_info (bfd *abfd, Elf_Internal_Shdr *symtab_hdr,
4083 unsigned long r_symndx, bfd_vma r_addend, int tls_type)
411e1bfb
AM
4084{
4085 struct got_entry **local_got_ents = elf_local_got_ents (abfd);
e7b938ca 4086 char *local_got_tls_masks;
411e1bfb
AM
4087
4088 if (local_got_ents == NULL)
4089 {
4090 bfd_size_type size = symtab_hdr->sh_info;
4091
e7b938ca 4092 size *= sizeof (*local_got_ents) + sizeof (*local_got_tls_masks);
4ce794b7 4093 local_got_ents = bfd_zalloc (abfd, size);
411e1bfb
AM
4094 if (local_got_ents == NULL)
4095 return FALSE;
4096 elf_local_got_ents (abfd) = local_got_ents;
4097 }
4098
4099 if ((tls_type & TLS_EXPLICIT) == 0)
4100 {
4101 struct got_entry *ent;
4102
4103 for (ent = local_got_ents[r_symndx]; ent != NULL; ent = ent->next)
e717da7e
AM
4104 if (ent->addend == r_addend
4105 && ent->owner == abfd
4106 && ent->tls_type == tls_type)
411e1bfb
AM
4107 break;
4108 if (ent == NULL)
4109 {
4110 bfd_size_type amt = sizeof (*ent);
4ce794b7 4111 ent = bfd_alloc (abfd, amt);
411e1bfb
AM
4112 if (ent == NULL)
4113 return FALSE;
4114 ent->next = local_got_ents[r_symndx];
4115 ent->addend = r_addend;
e717da7e 4116 ent->owner = abfd;
411e1bfb
AM
4117 ent->tls_type = tls_type;
4118 ent->got.refcount = 0;
4119 local_got_ents[r_symndx] = ent;
4120 }
4121 ent->got.refcount += 1;
4122 }
4123
e7b938ca
AM
4124 local_got_tls_masks = (char *) (local_got_ents + symtab_hdr->sh_info);
4125 local_got_tls_masks[r_symndx] |= tls_type;
411e1bfb 4126 return TRUE;
65f38f15
AM
4127}
4128
411e1bfb 4129static bfd_boolean
4ce794b7 4130update_plt_info (bfd *abfd, struct ppc_link_hash_entry *eh, bfd_vma addend)
1e2f5b6e 4131{
411e1bfb 4132 struct plt_entry *ent;
1e2f5b6e 4133
411e1bfb
AM
4134 for (ent = eh->elf.plt.plist; ent != NULL; ent = ent->next)
4135 if (ent->addend == addend)
4136 break;
4137 if (ent == NULL)
1e2f5b6e 4138 {
411e1bfb 4139 bfd_size_type amt = sizeof (*ent);
4ce794b7 4140 ent = bfd_alloc (abfd, amt);
411e1bfb
AM
4141 if (ent == NULL)
4142 return FALSE;
4143 ent->next = eh->elf.plt.plist;
4144 ent->addend = addend;
4145 ent->plt.refcount = 0;
4146 eh->elf.plt.plist = ent;
1e2f5b6e 4147 }
411e1bfb
AM
4148 ent->plt.refcount += 1;
4149 eh->elf.elf_link_hash_flags |= ELF_LINK_HASH_NEEDS_PLT;
4150 eh->is_func = 1;
b34976b6 4151 return TRUE;
1e2f5b6e
AM
4152}
4153
5bd4f169 4154/* Look through the relocs for a section during the first phase, and
65f38f15 4155 calculate needed space in the global offset table, procedure
5d1634d7 4156 linkage table, and dynamic reloc sections. */
5bd4f169 4157
b34976b6 4158static bfd_boolean
4ce794b7
AM
4159ppc64_elf_check_relocs (bfd *abfd, struct bfd_link_info *info,
4160 asection *sec, const Elf_Internal_Rela *relocs)
5bd4f169 4161{
65f38f15 4162 struct ppc_link_hash_table *htab;
5bd4f169
AM
4163 Elf_Internal_Shdr *symtab_hdr;
4164 struct elf_link_hash_entry **sym_hashes, **sym_hashes_end;
4165 const Elf_Internal_Rela *rel;
4166 const Elf_Internal_Rela *rel_end;
5bd4f169 4167 asection *sreloc;
1e2f5b6e 4168 asection **opd_sym_map;
5bd4f169 4169
1049f94e 4170 if (info->relocatable)
b34976b6 4171 return TRUE;
5bd4f169 4172
680a3378
AM
4173 /* Don't do anything special with non-loaded, non-alloced sections.
4174 In particular, any relocs in such sections should not affect GOT
4175 and PLT reference counting (ie. we don't allow them to create GOT
4176 or PLT entries), there's no possibility or desire to optimize TLS
4177 relocs, and there's not much point in propagating relocs to shared
4178 libs that the dynamic linker won't relocate. */
4179 if ((sec->flags & SEC_ALLOC) == 0)
4180 return TRUE;
4181
65f38f15 4182 htab = ppc_hash_table (info);
5bd4f169 4183 symtab_hdr = &elf_tdata (abfd)->symtab_hdr;
5bd4f169
AM
4184
4185 sym_hashes = elf_sym_hashes (abfd);
4186 sym_hashes_end = (sym_hashes
1e2f5b6e
AM
4187 + symtab_hdr->sh_size / sizeof (Elf64_External_Sym)
4188 - symtab_hdr->sh_info);
5bd4f169
AM
4189
4190 sreloc = NULL;
1e2f5b6e
AM
4191 opd_sym_map = NULL;
4192 if (strcmp (bfd_get_section_name (abfd, sec), ".opd") == 0)
4193 {
4194 /* Garbage collection needs some extra help with .opd sections.
4195 We don't want to necessarily keep everything referenced by
4196 relocs in .opd, as that would keep all functions. Instead,
4197 if we reference an .opd symbol (a function descriptor), we
4198 want to keep the function code symbol's section. This is
4199 easy for global symbols, but for local syms we need to keep
4200 information about the associated function section. Later, if
4201 edit_opd deletes entries, we'll use this array to adjust
4202 local syms in .opd. */
4203 union opd_info {
4204 asection *func_section;
4205 long entry_adjust;
4206 };
4207 bfd_size_type amt;
4208
3f764659 4209 amt = sec->size * sizeof (union opd_info) / 8;
4ce794b7 4210 opd_sym_map = bfd_zalloc (abfd, amt);
1e2f5b6e 4211 if (opd_sym_map == NULL)
b34976b6 4212 return FALSE;
f0abc2a1 4213 ppc64_elf_section_data (sec)->opd.func_sec = opd_sym_map;
1e2f5b6e 4214 }
5bd4f169 4215
82bd7b59
AM
4216 if (htab->sfpr == NULL
4217 && !create_linkage_sections (htab->elf.dynobj, info))
b34976b6 4218 return FALSE;
82bd7b59 4219
5bd4f169
AM
4220 rel_end = relocs + sec->reloc_count;
4221 for (rel = relocs; rel < rel_end; rel++)
4222 {
4223 unsigned long r_symndx;
4224 struct elf_link_hash_entry *h;
04c9666a 4225 enum elf_ppc64_reloc_type r_type;
411e1bfb 4226 int tls_type = 0;
5bd4f169
AM
4227
4228 r_symndx = ELF64_R_SYM (rel->r_info);
4229 if (r_symndx < symtab_hdr->sh_info)
4230 h = NULL;
4231 else
4232 h = sym_hashes[r_symndx - symtab_hdr->sh_info];
4233
4ce794b7 4234 r_type = ELF64_R_TYPE (rel->r_info);
a33d1f77 4235 switch (r_type)
5bd4f169 4236 {
411e1bfb
AM
4237 case R_PPC64_GOT_TLSLD16:
4238 case R_PPC64_GOT_TLSLD16_LO:
4239 case R_PPC64_GOT_TLSLD16_HI:
4240 case R_PPC64_GOT_TLSLD16_HA:
e717da7e 4241 ppc64_tlsld_got (abfd)->refcount += 1;
951fd09b 4242 tls_type = TLS_TLS | TLS_LD;
411e1bfb
AM
4243 goto dogottls;
4244
4245 case R_PPC64_GOT_TLSGD16:
4246 case R_PPC64_GOT_TLSGD16_LO:
4247 case R_PPC64_GOT_TLSGD16_HI:
4248 case R_PPC64_GOT_TLSGD16_HA:
951fd09b 4249 tls_type = TLS_TLS | TLS_GD;
411e1bfb
AM
4250 goto dogottls;
4251
4252 case R_PPC64_GOT_TPREL16_DS:
4253 case R_PPC64_GOT_TPREL16_LO_DS:
4254 case R_PPC64_GOT_TPREL16_HI:
4255 case R_PPC64_GOT_TPREL16_HA:
4256 if (info->shared)
4257 info->flags |= DF_STATIC_TLS;
4258 tls_type = TLS_TLS | TLS_TPREL;
4259 goto dogottls;
4260
4261 case R_PPC64_GOT_DTPREL16_DS:
4262 case R_PPC64_GOT_DTPREL16_LO_DS:
4263 case R_PPC64_GOT_DTPREL16_HI:
4264 case R_PPC64_GOT_DTPREL16_HA:
4265 tls_type = TLS_TLS | TLS_DTPREL;
4266 dogottls:
4267 sec->has_tls_reloc = 1;
4268 /* Fall thru */
4269
5bd4f169 4270 case R_PPC64_GOT16:
5bd4f169 4271 case R_PPC64_GOT16_DS:
65f38f15
AM
4272 case R_PPC64_GOT16_HA:
4273 case R_PPC64_GOT16_HI:
4274 case R_PPC64_GOT16_LO:
5bd4f169 4275 case R_PPC64_GOT16_LO_DS:
65f38f15 4276 /* This symbol requires a global offset table entry. */
ad8e1ba5 4277 sec->has_gp_reloc = 1;
e717da7e
AM
4278 if (ppc64_elf_tdata (abfd)->got == NULL
4279 && !create_got_section (abfd, info))
b34976b6 4280 return FALSE;
5bd4f169
AM
4281
4282 if (h != NULL)
4283 {
411e1bfb
AM
4284 struct ppc_link_hash_entry *eh;
4285 struct got_entry *ent;
65f38f15 4286
411e1bfb
AM
4287 eh = (struct ppc_link_hash_entry *) h;
4288 for (ent = eh->elf.got.glist; ent != NULL; ent = ent->next)
4289 if (ent->addend == rel->r_addend
e717da7e 4290 && ent->owner == abfd
411e1bfb
AM
4291 && ent->tls_type == tls_type)
4292 break;
4293 if (ent == NULL)
5bd4f169 4294 {
411e1bfb 4295 bfd_size_type amt = sizeof (*ent);
4ce794b7 4296 ent = bfd_alloc (abfd, amt);
411e1bfb 4297 if (ent == NULL)
b34976b6 4298 return FALSE;
411e1bfb
AM
4299 ent->next = eh->elf.got.glist;
4300 ent->addend = rel->r_addend;
e717da7e 4301 ent->owner = abfd;
411e1bfb
AM
4302 ent->tls_type = tls_type;
4303 ent->got.refcount = 0;
4304 eh->elf.got.glist = ent;
5bd4f169 4305 }
411e1bfb 4306 ent->got.refcount += 1;
e7b938ca 4307 eh->tls_mask |= tls_type;
5bd4f169 4308 }
411e1bfb
AM
4309 else
4310 /* This is a global offset table entry for a local symbol. */
4311 if (!update_local_sym_info (abfd, symtab_hdr, r_symndx,
4312 rel->r_addend, tls_type))
4313 return FALSE;
5bd4f169
AM
4314 break;
4315
5bd4f169 4316 case R_PPC64_PLT16_HA:
65f38f15
AM
4317 case R_PPC64_PLT16_HI:
4318 case R_PPC64_PLT16_LO:
4319 case R_PPC64_PLT32:
4320 case R_PPC64_PLT64:
5bd4f169 4321 /* This symbol requires a procedure linkage table entry. We
3fad3c7c
AM
4322 actually build the entry in adjust_dynamic_symbol,
4323 because this might be a case of linking PIC code without
4324 linking in any dynamic objects, in which case we don't
4325 need to generate a procedure linkage table after all. */
5bd4f169
AM
4326 if (h == NULL)
4327 {
4328 /* It does not make sense to have a procedure linkage
3fad3c7c 4329 table entry for a local symbol. */
5bd4f169 4330 bfd_set_error (bfd_error_bad_value);
b34976b6 4331 return FALSE;
5bd4f169 4332 }
411e1bfb
AM
4333 else
4334 if (!update_plt_info (abfd, (struct ppc_link_hash_entry *) h,
4335 rel->r_addend))
4336 return FALSE;
5bd4f169
AM
4337 break;
4338
4339 /* The following relocations don't need to propagate the
4340 relocation if linking a shared object since they are
4341 section relative. */
4342 case R_PPC64_SECTOFF:
4343 case R_PPC64_SECTOFF_LO:
4344 case R_PPC64_SECTOFF_HI:
4345 case R_PPC64_SECTOFF_HA:
4346 case R_PPC64_SECTOFF_DS:
4347 case R_PPC64_SECTOFF_LO_DS:
411e1bfb
AM
4348 case R_PPC64_DTPREL16:
4349 case R_PPC64_DTPREL16_LO:
4350 case R_PPC64_DTPREL16_HI:
4351 case R_PPC64_DTPREL16_HA:
4352 case R_PPC64_DTPREL16_DS:
4353 case R_PPC64_DTPREL16_LO_DS:
4354 case R_PPC64_DTPREL16_HIGHER:
4355 case R_PPC64_DTPREL16_HIGHERA:
4356 case R_PPC64_DTPREL16_HIGHEST:
4357 case R_PPC64_DTPREL16_HIGHESTA:
5bd4f169
AM
4358 break;
4359
ad8e1ba5
AM
4360 /* Nor do these. */
4361 case R_PPC64_TOC16:
4362 case R_PPC64_TOC16_LO:
4363 case R_PPC64_TOC16_HI:
4364 case R_PPC64_TOC16_HA:
4365 case R_PPC64_TOC16_DS:
4366 case R_PPC64_TOC16_LO_DS:
4367 sec->has_gp_reloc = 1;
4368 break;
4369
5bd4f169
AM
4370 /* This relocation describes the C++ object vtable hierarchy.
4371 Reconstruct it for later use during GC. */
4372 case R_PPC64_GNU_VTINHERIT:
c152c796 4373 if (!bfd_elf_gc_record_vtinherit (abfd, sec, h, rel->r_offset))
b34976b6 4374 return FALSE;
5bd4f169
AM
4375 break;
4376
4377 /* This relocation describes which C++ vtable entries are actually
4378 used. Record for later use during GC. */
4379 case R_PPC64_GNU_VTENTRY:
c152c796 4380 if (!bfd_elf_gc_record_vtentry (abfd, sec, h, rel->r_addend))
b34976b6 4381 return FALSE;
5bd4f169
AM
4382 break;
4383
721956f4
AM
4384 case R_PPC64_REL14:
4385 case R_PPC64_REL14_BRTAKEN:
4386 case R_PPC64_REL14_BRNTAKEN:
4387 htab->has_14bit_branch = 1;
4388 /* Fall through. */
4389
5d1634d7 4390 case R_PPC64_REL24:
8387904d 4391 if (h != NULL)
5d1634d7
AM
4392 {
4393 /* We may need a .plt entry if the function this reloc
4394 refers to is in a shared lib. */
411e1bfb
AM
4395 if (!update_plt_info (abfd, (struct ppc_link_hash_entry *) h,
4396 rel->r_addend))
4397 return FALSE;
8387904d
AM
4398 if (h == &htab->tls_get_addr->elf
4399 || h == &htab->tls_get_addr_fd->elf)
411e1bfb 4400 sec->has_tls_reloc = 1;
8387904d
AM
4401 else if (htab->tls_get_addr == NULL
4402 && !strncmp (h->root.root.string, ".__tls_get_addr", 15)
a48ebf4d
AM
4403 && (h->root.root.string[15] == 0
4404 || h->root.root.string[15] == '@'))
411e1bfb 4405 {
8387904d
AM
4406 htab->tls_get_addr = (struct ppc_link_hash_entry *) h;
4407 sec->has_tls_reloc = 1;
4408 }
4409 else if (htab->tls_get_addr_fd == NULL
4410 && !strncmp (h->root.root.string, "__tls_get_addr", 14)
4411 && (h->root.root.string[14] == 0
4412 || h->root.root.string[14] == '@'))
4413 {
4414 htab->tls_get_addr_fd = (struct ppc_link_hash_entry *) h;
411e1bfb
AM
4415 sec->has_tls_reloc = 1;
4416 }
4417 }
4418 break;
4419
4420 case R_PPC64_TPREL64:
4421 tls_type = TLS_EXPLICIT | TLS_TLS | TLS_TPREL;
4422 if (info->shared)
4423 info->flags |= DF_STATIC_TLS;
4424 goto dotlstoc;
4425
4426 case R_PPC64_DTPMOD64:
4427 if (rel + 1 < rel_end
4428 && rel[1].r_info == ELF64_R_INFO (r_symndx, R_PPC64_DTPREL64)
4429 && rel[1].r_offset == rel->r_offset + 8)
951fd09b 4430 tls_type = TLS_EXPLICIT | TLS_TLS | TLS_GD;
411e1bfb 4431 else
951fd09b 4432 tls_type = TLS_EXPLICIT | TLS_TLS | TLS_LD;
411e1bfb
AM
4433 goto dotlstoc;
4434
4435 case R_PPC64_DTPREL64:
4436 tls_type = TLS_EXPLICIT | TLS_TLS | TLS_DTPREL;
4437 if (rel != relocs
4438 && rel[-1].r_info == ELF64_R_INFO (r_symndx, R_PPC64_DTPMOD64)
4439 && rel[-1].r_offset == rel->r_offset - 8)
4440 /* This is the second reloc of a dtpmod, dtprel pair.
4441 Don't mark with TLS_DTPREL. */
4442 goto dodyn;
4443
4444 dotlstoc:
4445 sec->has_tls_reloc = 1;
4446 if (h != NULL)
4447 {
4448 struct ppc_link_hash_entry *eh;
4449 eh = (struct ppc_link_hash_entry *) h;
e7b938ca 4450 eh->tls_mask |= tls_type;
411e1bfb
AM
4451 }
4452 else
4453 if (!update_local_sym_info (abfd, symtab_hdr, r_symndx,
4454 rel->r_addend, tls_type))
4455 return FALSE;
4456
4457 if (ppc64_elf_section_data (sec)->t_symndx == NULL)
4458 {
e7b938ca 4459 /* One extra to simplify get_tls_mask. */
eea6121a 4460 bfd_size_type amt = sec->size * sizeof (unsigned) / 8 + 1;
4ce794b7 4461 ppc64_elf_section_data (sec)->t_symndx = bfd_zalloc (abfd, amt);
411e1bfb
AM
4462 if (ppc64_elf_section_data (sec)->t_symndx == NULL)
4463 return FALSE;
4464 }
4465 BFD_ASSERT (rel->r_offset % 8 == 0);
4466 ppc64_elf_section_data (sec)->t_symndx[rel->r_offset / 8] = r_symndx;
951fd09b
AM
4467
4468 /* Mark the second slot of a GD or LD entry.
4469 -1 to indicate GD and -2 to indicate LD. */
4470 if (tls_type == (TLS_EXPLICIT | TLS_TLS | TLS_GD))
4471 ppc64_elf_section_data (sec)->t_symndx[rel->r_offset / 8 + 1] = -1;
4472 else if (tls_type == (TLS_EXPLICIT | TLS_TLS | TLS_LD))
4473 ppc64_elf_section_data (sec)->t_symndx[rel->r_offset / 8 + 1] = -2;
411e1bfb
AM
4474 goto dodyn;
4475
4476 case R_PPC64_TPREL16:
4477 case R_PPC64_TPREL16_LO:
4478 case R_PPC64_TPREL16_HI:
4479 case R_PPC64_TPREL16_HA:
4480 case R_PPC64_TPREL16_DS:
4481 case R_PPC64_TPREL16_LO_DS:
4482 case R_PPC64_TPREL16_HIGHER:
4483 case R_PPC64_TPREL16_HIGHERA:
4484 case R_PPC64_TPREL16_HIGHEST:
4485 case R_PPC64_TPREL16_HIGHESTA:
4486 if (info->shared)
4487 {
4488 info->flags |= DF_STATIC_TLS;
4489 goto dodyn;
5d1634d7
AM
4490 }
4491 break;
4492
e86ce104 4493 case R_PPC64_ADDR64:
1e2f5b6e 4494 if (opd_sym_map != NULL
1e2f5b6e 4495 && rel + 1 < rel_end
4ce794b7 4496 && ELF64_R_TYPE ((rel + 1)->r_info) == R_PPC64_TOC)
1e2f5b6e 4497 {
8387904d
AM
4498 if (h != NULL)
4499 {
4500 if (h->root.root.string[0] == '.'
4501 && h->root.root.string[1] != 0
4502 && get_fdh ((struct ppc_link_hash_entry *) h, htab))
4503 ;
4504 else
4505 ((struct ppc_link_hash_entry *) h)->is_func = 1;
4506 }
4507 else
4508 {
4509 asection *s;
1e2f5b6e 4510
8387904d
AM
4511 s = bfd_section_from_r_symndx (abfd, &htab->sym_sec, sec,
4512 r_symndx);
4513 if (s == NULL)
4514 return FALSE;
4515 else if (s != sec)
3f764659 4516 opd_sym_map[rel->r_offset / 8] = s;
8387904d 4517 }
1e2f5b6e 4518 }
e86ce104
AM
4519 /* Fall through. */
4520
04c9666a 4521 case R_PPC64_REL30:
5bd4f169 4522 case R_PPC64_REL32:
04c9666a 4523 case R_PPC64_REL64:
65f38f15
AM
4524 case R_PPC64_ADDR14:
4525 case R_PPC64_ADDR14_BRNTAKEN:
4526 case R_PPC64_ADDR14_BRTAKEN:
4527 case R_PPC64_ADDR16:
4528 case R_PPC64_ADDR16_DS:
4529 case R_PPC64_ADDR16_HA:
4530 case R_PPC64_ADDR16_HI:
4531 case R_PPC64_ADDR16_HIGHER:
4532 case R_PPC64_ADDR16_HIGHERA:
4533 case R_PPC64_ADDR16_HIGHEST:
4534 case R_PPC64_ADDR16_HIGHESTA:
4535 case R_PPC64_ADDR16_LO:
4536 case R_PPC64_ADDR16_LO_DS:
4537 case R_PPC64_ADDR24:
65f38f15 4538 case R_PPC64_ADDR32:
65f38f15
AM
4539 case R_PPC64_UADDR16:
4540 case R_PPC64_UADDR32:
4541 case R_PPC64_UADDR64:
5bd4f169 4542 case R_PPC64_TOC:
81848ca0
AM
4543 if (h != NULL && !info->shared)
4544 /* We may need a copy reloc. */
4545 h->elf_link_hash_flags |= ELF_LINK_NON_GOT_REF;
4546
41bd81ab 4547 /* Don't propagate .opd relocs. */
1e2f5b6e 4548 if (NO_OPD_RELOCS && opd_sym_map != NULL)
e86ce104 4549 break;
e86ce104 4550
65f38f15
AM
4551 /* If we are creating a shared library, and this is a reloc
4552 against a global symbol, or a non PC relative reloc
4553 against a local symbol, then we need to copy the reloc
4554 into the shared library. However, if we are linking with
4555 -Bsymbolic, we do not need to copy a reloc against a
4556 global symbol which is defined in an object we are
4557 including in the link (i.e., DEF_REGULAR is set). At
4558 this point we have not seen all the input files, so it is
4559 possible that DEF_REGULAR is not set now but will be set
4560 later (it is never cleared). In case of a weak definition,
4561 DEF_REGULAR may be cleared later by a strong definition in
4562 a shared library. We account for that possibility below by
f4656909 4563 storing information in the dyn_relocs field of the hash
65f38f15
AM
4564 table entry. A similar situation occurs when creating
4565 shared libraries and symbol visibility changes render the
4566 symbol local.
4567
4568 If on the other hand, we are creating an executable, we
4569 may need to keep relocations for symbols satisfied by a
4570 dynamic library if we manage to avoid copy relocs for the
4571 symbol. */
411e1bfb 4572 dodyn:
65f38f15 4573 if ((info->shared
411e1bfb 4574 && (MUST_BE_DYN_RELOC (r_type)
65f38f15
AM
4575 || (h != NULL
4576 && (! info->symbolic
4577 || h->root.type == bfd_link_hash_defweak
4578 || (h->elf_link_hash_flags
4579 & ELF_LINK_HASH_DEF_REGULAR) == 0))))
f4656909
AM
4580 || (ELIMINATE_COPY_RELOCS
4581 && !info->shared
65f38f15
AM
4582 && h != NULL
4583 && (h->root.type == bfd_link_hash_defweak
4584 || (h->elf_link_hash_flags
4585 & ELF_LINK_HASH_DEF_REGULAR) == 0)))
5bd4f169 4586 {
ec338859
AM
4587 struct ppc_dyn_relocs *p;
4588 struct ppc_dyn_relocs **head;
4589
65f38f15
AM
4590 /* We must copy these reloc types into the output file.
4591 Create a reloc section in dynobj and make room for
4592 this reloc. */
5bd4f169
AM
4593 if (sreloc == NULL)
4594 {
4595 const char *name;
65f38f15 4596 bfd *dynobj;
5bd4f169
AM
4597
4598 name = (bfd_elf_string_from_elf_section
4599 (abfd,
4600 elf_elfheader (abfd)->e_shstrndx,
4601 elf_section_data (sec)->rel_hdr.sh_name));
4602 if (name == NULL)
b34976b6 4603 return FALSE;
5bd4f169 4604
65f38f15
AM
4605 if (strncmp (name, ".rela", 5) != 0
4606 || strcmp (bfd_get_section_name (abfd, sec),
4607 name + 5) != 0)
4608 {
4609 (*_bfd_error_handler)
d003868e
AM
4610 (_("%B: bad relocation section name `%s\'"),
4611 abfd, name);
5d1634d7 4612 bfd_set_error (bfd_error_bad_value);
65f38f15
AM
4613 }
4614
65f38f15 4615 dynobj = htab->elf.dynobj;
5bd4f169
AM
4616 sreloc = bfd_get_section_by_name (dynobj, name);
4617 if (sreloc == NULL)
4618 {
4619 flagword flags;
4620
4621 sreloc = bfd_make_section (dynobj, name);
4622 flags = (SEC_HAS_CONTENTS | SEC_READONLY
4623 | SEC_IN_MEMORY | SEC_LINKER_CREATED);
4624 if ((sec->flags & SEC_ALLOC) != 0)
4625 flags |= SEC_ALLOC | SEC_LOAD;
4626 if (sreloc == NULL
4627 || ! bfd_set_section_flags (dynobj, sreloc, flags)
65f38f15 4628 || ! bfd_set_section_alignment (dynobj, sreloc, 3))
b34976b6 4629 return FALSE;
5bd4f169 4630 }
65f38f15 4631 elf_section_data (sec)->sreloc = sreloc;
5bd4f169
AM
4632 }
4633
65f38f15
AM
4634 /* If this is a global symbol, we count the number of
4635 relocations we need for this symbol. */
4636 if (h != NULL)
4637 {
ec338859 4638 head = &((struct ppc_link_hash_entry *) h)->dyn_relocs;
65f38f15
AM
4639 }
4640 else
4641 {
ec338859
AM
4642 /* Track dynamic relocs needed for local syms too.
4643 We really need local syms available to do this
4644 easily. Oh well. */
4645
4646 asection *s;
4647 s = bfd_section_from_r_symndx (abfd, &htab->sym_sec,
4648 sec, r_symndx);
4649 if (s == NULL)
b34976b6 4650 return FALSE;
ec338859
AM
4651
4652 head = ((struct ppc_dyn_relocs **)
4653 &elf_section_data (s)->local_dynrel);
65f38f15 4654 }
ec338859
AM
4655
4656 p = *head;
4657 if (p == NULL || p->sec != sec)
4658 {
4ce794b7 4659 p = bfd_alloc (htab->elf.dynobj, sizeof *p);
ec338859 4660 if (p == NULL)
b34976b6 4661 return FALSE;
ec338859
AM
4662 p->next = *head;
4663 *head = p;
4664 p->sec = sec;
4665 p->count = 0;
4666 p->pc_count = 0;
4667 }
4668
4669 p->count += 1;
411e1bfb 4670 if (!MUST_BE_DYN_RELOC (r_type))
ec338859 4671 p->pc_count += 1;
65f38f15 4672 }
5bd4f169 4673 break;
65f38f15
AM
4674
4675 default:
96e0dda4 4676 break;
5bd4f169
AM
4677 }
4678 }
4679
b34976b6 4680 return TRUE;
5bd4f169
AM
4681}
4682
8387904d
AM
4683/* OFFSET in OPD_SEC specifies a function descriptor. Return the address
4684 of the code entry point, and its section. */
4685
4686static bfd_vma
4687opd_entry_value (asection *opd_sec,
4688 bfd_vma offset,
4689 asection **code_sec,
4690 bfd_vma *code_off)
4691{
4692 bfd *opd_bfd = opd_sec->owner;
4693 Elf_Internal_Rela *lo, *hi, *look;
4694
4695 /* Go find the opd reloc at the sym address. */
4696 lo = _bfd_elf_link_read_relocs (opd_bfd, opd_sec, NULL, NULL, TRUE);
4697 BFD_ASSERT (lo != NULL);
4698 hi = lo + opd_sec->reloc_count - 1; /* ignore last reloc */
4699
4700 while (lo < hi)
4701 {
4702 look = lo + (hi - lo) / 2;
4703 if (look->r_offset < offset)
4704 lo = look + 1;
4705 else if (look->r_offset > offset)
4706 hi = look;
4707 else
4708 {
4709 Elf_Internal_Shdr *symtab_hdr = &elf_tdata (opd_bfd)->symtab_hdr;
4710 if (ELF64_R_TYPE (look->r_info) == R_PPC64_ADDR64
4711 && ELF64_R_TYPE ((look + 1)->r_info) == R_PPC64_TOC)
4712 {
4713 unsigned long symndx = ELF64_R_SYM (look->r_info);
4714 bfd_vma val;
4715 asection *sec;
4716
4717 if (symndx < symtab_hdr->sh_info)
4718 {
4719 Elf_Internal_Sym *sym;
4720
4721 sym = (Elf_Internal_Sym *) symtab_hdr->contents;
4722 if (sym == NULL)
4723 {
4724 sym = bfd_elf_get_elf_syms (opd_bfd, symtab_hdr,
4725 symtab_hdr->sh_info,
4726 0, NULL, NULL, NULL);
4727 if (sym == NULL)
4728 return (bfd_vma) -1;
4729 symtab_hdr->contents = (bfd_byte *) sym;
4730 }
4731
4732 sym += symndx;
4733 val = sym->st_value;
4734 sec = NULL;
4735 if ((sym->st_shndx != SHN_UNDEF
4736 && sym->st_shndx < SHN_LORESERVE)
4737 || sym->st_shndx > SHN_HIRESERVE)
4738 sec = bfd_section_from_elf_index (opd_bfd, sym->st_shndx);
4739 BFD_ASSERT ((sec->flags & SEC_MERGE) == 0);
4740 }
4741 else
4742 {
4743 struct elf_link_hash_entry **sym_hashes;
4744 struct elf_link_hash_entry *rh;
4745
4746 sym_hashes = elf_sym_hashes (opd_bfd);
4747 rh = sym_hashes[symndx - symtab_hdr->sh_info];
4748 while (rh->root.type == bfd_link_hash_indirect
4749 || rh->root.type == bfd_link_hash_warning)
4750 rh = ((struct elf_link_hash_entry *) rh->root.u.i.link);
4751 BFD_ASSERT (rh->root.type == bfd_link_hash_defined
4752 || rh->root.type == bfd_link_hash_defweak);
4753 val = rh->root.u.def.value;
4754 sec = rh->root.u.def.section;
4755 }
4756 val += look->r_addend;
4757 if (code_off != NULL)
4758 *code_off = val;
4759 if (code_sec != NULL)
4760 *code_sec = sec;
4761 if (sec != NULL && sec->output_section != NULL)
4762 val += sec->output_section->vma + sec->output_offset;
4763 return val;
4764 }
4765 break;
4766 }
4767 }
4768 return (bfd_vma) -1;
4769}
4770
5bd4f169
AM
4771/* Return the section that should be marked against GC for a given
4772 relocation. */
4773
4774static asection *
4ce794b7 4775ppc64_elf_gc_mark_hook (asection *sec,
ccfa59ea 4776 struct bfd_link_info *info,
4ce794b7
AM
4777 Elf_Internal_Rela *rel,
4778 struct elf_link_hash_entry *h,
4779 Elf_Internal_Sym *sym)
5bd4f169 4780{
ccfa59ea
AM
4781 asection *rsec;
4782
4783 /* First mark all our entry sym sections. */
4784 if (info->gc_sym_list != NULL)
4785 {
4786 struct ppc_link_hash_table *htab = ppc_hash_table (info);
4787 struct bfd_sym_chain *sym = info->gc_sym_list;
4788
4789 info->gc_sym_list = NULL;
4790 do
4791 {
4792 struct ppc_link_hash_entry *eh;
4793
4794 eh = (struct ppc_link_hash_entry *)
4795 elf_link_hash_lookup (&htab->elf, sym->name, FALSE, FALSE, FALSE);
4796 if (eh == NULL)
4797 continue;
4798 if (eh->elf.root.type != bfd_link_hash_defined
4799 && eh->elf.root.type != bfd_link_hash_defweak)
4800 continue;
4801
4802 if (eh->is_func_descriptor)
4803 rsec = eh->oh->elf.root.u.def.section;
8387904d
AM
4804 else if (get_opd_info (eh->elf.root.u.def.section) != NULL
4805 && opd_entry_value (eh->elf.root.u.def.section,
4806 eh->elf.root.u.def.value,
4807 &rsec, NULL) != (bfd_vma) -1)
4808 ;
ccfa59ea
AM
4809 else
4810 continue;
4811
4812 if (!rsec->gc_mark)
4813 _bfd_elf_gc_mark (info, rsec, ppc64_elf_gc_mark_hook);
4814
4815 rsec = eh->elf.root.u.def.section;
4816 if (!rsec->gc_mark)
4817 _bfd_elf_gc_mark (info, rsec, ppc64_elf_gc_mark_hook);
4818
4819 sym = sym->next;
4820 }
4821 while (sym != NULL);
4822 }
4823
4824 /* Syms return NULL if we're marking .opd, so we avoid marking all
4825 function sections, as all functions are referenced in .opd. */
4826 rsec = NULL;
4827 if (get_opd_info (sec) != NULL)
4828 return rsec;
1e2f5b6e 4829
5bd4f169
AM
4830 if (h != NULL)
4831 {
04c9666a 4832 enum elf_ppc64_reloc_type r_type;
ccfa59ea 4833 struct ppc_link_hash_entry *eh;
a33d1f77 4834
4ce794b7 4835 r_type = ELF64_R_TYPE (rel->r_info);
a33d1f77 4836 switch (r_type)
5bd4f169
AM
4837 {
4838 case R_PPC64_GNU_VTINHERIT:
4839 case R_PPC64_GNU_VTENTRY:
4840 break;
4841
4842 default:
4843 switch (h->root.type)
4844 {
4845 case bfd_link_hash_defined:
4846 case bfd_link_hash_defweak:
ccfa59ea
AM
4847 eh = (struct ppc_link_hash_entry *) h;
4848 if (eh->oh != NULL && eh->oh->is_func_descriptor)
4849 eh = eh->oh;
1e2f5b6e
AM
4850
4851 /* Function descriptor syms cause the associated
4852 function code sym section to be marked. */
ccfa59ea
AM
4853 if (eh->is_func_descriptor)
4854 {
4855 /* They also mark their opd section. */
4856 if (!eh->elf.root.u.def.section->gc_mark)
4857 _bfd_elf_gc_mark (info, eh->elf.root.u.def.section,
4858 ppc64_elf_gc_mark_hook);
4859
4860 rsec = eh->oh->elf.root.u.def.section;
4861 }
8387904d
AM
4862 else if (get_opd_info (eh->elf.root.u.def.section) != NULL
4863 && opd_entry_value (eh->elf.root.u.def.section,
4864 eh->elf.root.u.def.value,
4865 &rsec, NULL) != (bfd_vma) -1)
4866 {
4867 if (!eh->elf.root.u.def.section->gc_mark)
4868 _bfd_elf_gc_mark (info, eh->elf.root.u.def.section,
4869 ppc64_elf_gc_mark_hook);
4870 }
ccfa59ea 4871 else
1e2f5b6e
AM
4872 rsec = h->root.u.def.section;
4873 break;
5bd4f169
AM
4874
4875 case bfd_link_hash_common:
1e2f5b6e
AM
4876 rsec = h->root.u.c.p->section;
4877 break;
5bd4f169
AM
4878
4879 default:
4880 break;
4881 }
4882 }
4883 }
4884 else
4885 {
1e2f5b6e
AM
4886 asection **opd_sym_section;
4887
4888 rsec = bfd_section_from_elf_index (sec->owner, sym->st_shndx);
ccfa59ea 4889 opd_sym_section = get_opd_info (rsec);
1e2f5b6e 4890 if (opd_sym_section != NULL)
ccfa59ea
AM
4891 {
4892 if (!rsec->gc_mark)
4893 _bfd_elf_gc_mark (info, rsec, ppc64_elf_gc_mark_hook);
4894
3f764659 4895 rsec = opd_sym_section[sym->st_value / 8];
ccfa59ea 4896 }
5bd4f169
AM
4897 }
4898
1e2f5b6e 4899 return rsec;
5bd4f169
AM
4900}
4901
65f38f15
AM
4902/* Update the .got, .plt. and dynamic reloc reference counts for the
4903 section being removed. */
5bd4f169 4904
b34976b6 4905static bfd_boolean
4ce794b7
AM
4906ppc64_elf_gc_sweep_hook (bfd *abfd, struct bfd_link_info *info,
4907 asection *sec, const Elf_Internal_Rela *relocs)
5bd4f169 4908{
411e1bfb 4909 struct ppc_link_hash_table *htab;
5bd4f169
AM
4910 Elf_Internal_Shdr *symtab_hdr;
4911 struct elf_link_hash_entry **sym_hashes;
411e1bfb 4912 struct got_entry **local_got_ents;
5bd4f169 4913 const Elf_Internal_Rela *rel, *relend;
5bd4f169 4914
680a3378
AM
4915 if ((sec->flags & SEC_ALLOC) == 0)
4916 return TRUE;
4917
ec338859
AM
4918 elf_section_data (sec)->local_dynrel = NULL;
4919
411e1bfb 4920 htab = ppc_hash_table (info);
5bd4f169
AM
4921 symtab_hdr = &elf_tdata (abfd)->symtab_hdr;
4922 sym_hashes = elf_sym_hashes (abfd);
411e1bfb 4923 local_got_ents = elf_local_got_ents (abfd);
5bd4f169
AM
4924
4925 relend = relocs + sec->reloc_count;
4926 for (rel = relocs; rel < relend; rel++)
a33d1f77
AM
4927 {
4928 unsigned long r_symndx;
04c9666a 4929 enum elf_ppc64_reloc_type r_type;
58ac9f71 4930 struct elf_link_hash_entry *h = NULL;
411e1bfb 4931 char tls_type = 0;
5bd4f169 4932
a33d1f77 4933 r_symndx = ELF64_R_SYM (rel->r_info);
4ce794b7 4934 r_type = ELF64_R_TYPE (rel->r_info);
58ac9f71
AM
4935 if (r_symndx >= symtab_hdr->sh_info)
4936 {
4937 struct ppc_link_hash_entry *eh;
4938 struct ppc_dyn_relocs **pp;
4939 struct ppc_dyn_relocs *p;
4940
4941 h = sym_hashes[r_symndx - symtab_hdr->sh_info];
4942 eh = (struct ppc_link_hash_entry *) h;
4943
4944 for (pp = &eh->dyn_relocs; (p = *pp) != NULL; pp = &p->next)
4945 if (p->sec == sec)
4946 {
4947 /* Everything must go for SEC. */
4948 *pp = p->next;
4949 break;
4950 }
4951 }
4952
a33d1f77
AM
4953 switch (r_type)
4954 {
411e1bfb
AM
4955 case R_PPC64_GOT_TLSLD16:
4956 case R_PPC64_GOT_TLSLD16_LO:
4957 case R_PPC64_GOT_TLSLD16_HI:
4958 case R_PPC64_GOT_TLSLD16_HA:
e717da7e 4959 ppc64_tlsld_got (abfd)->refcount -= 1;
951fd09b 4960 tls_type = TLS_TLS | TLS_LD;
411e1bfb
AM
4961 goto dogot;
4962
4963 case R_PPC64_GOT_TLSGD16:
4964 case R_PPC64_GOT_TLSGD16_LO:
4965 case R_PPC64_GOT_TLSGD16_HI:
4966 case R_PPC64_GOT_TLSGD16_HA:
951fd09b 4967 tls_type = TLS_TLS | TLS_GD;
411e1bfb
AM
4968 goto dogot;
4969
4970 case R_PPC64_GOT_TPREL16_DS:
4971 case R_PPC64_GOT_TPREL16_LO_DS:
4972 case R_PPC64_GOT_TPREL16_HI:
4973 case R_PPC64_GOT_TPREL16_HA:
4974 tls_type = TLS_TLS | TLS_TPREL;
4975 goto dogot;
4976
4977 case R_PPC64_GOT_DTPREL16_DS:
4978 case R_PPC64_GOT_DTPREL16_LO_DS:
4979 case R_PPC64_GOT_DTPREL16_HI:
4980 case R_PPC64_GOT_DTPREL16_HA:
4981 tls_type = TLS_TLS | TLS_DTPREL;
4982 goto dogot;
4983
a33d1f77
AM
4984 case R_PPC64_GOT16:
4985 case R_PPC64_GOT16_DS:
4986 case R_PPC64_GOT16_HA:
4987 case R_PPC64_GOT16_HI:
4988 case R_PPC64_GOT16_LO:
4989 case R_PPC64_GOT16_LO_DS:
411e1bfb
AM
4990 dogot:
4991 {
4992 struct got_entry *ent;
4993
58ac9f71
AM
4994 if (h != NULL)
4995 ent = h->got.glist;
411e1bfb
AM
4996 else
4997 ent = local_got_ents[r_symndx];
4998
4999 for (; ent != NULL; ent = ent->next)
5000 if (ent->addend == rel->r_addend
e717da7e 5001 && ent->owner == abfd
411e1bfb
AM
5002 && ent->tls_type == tls_type)
5003 break;
5004 if (ent == NULL)
5005 abort ();
5006 if (ent->got.refcount > 0)
5007 ent->got.refcount -= 1;
5008 }
a33d1f77 5009 break;
65f38f15 5010
a33d1f77
AM
5011 case R_PPC64_PLT16_HA:
5012 case R_PPC64_PLT16_HI:
5013 case R_PPC64_PLT16_LO:
5014 case R_PPC64_PLT32:
5015 case R_PPC64_PLT64:
721956f4
AM
5016 case R_PPC64_REL14:
5017 case R_PPC64_REL14_BRNTAKEN:
5018 case R_PPC64_REL14_BRTAKEN:
5d1634d7 5019 case R_PPC64_REL24:
58ac9f71 5020 if (h != NULL)
5d1634d7 5021 {
411e1bfb
AM
5022 struct plt_entry *ent;
5023
411e1bfb
AM
5024 for (ent = h->plt.plist; ent != NULL; ent = ent->next)
5025 if (ent->addend == rel->r_addend)
5026 break;
5027 if (ent == NULL)
5028 abort ();
5029 if (ent->plt.refcount > 0)
5030 ent->plt.refcount -= 1;
5d1634d7 5031 }
e86ce104 5032 break;
5d1634d7 5033
a33d1f77
AM
5034 default:
5035 break;
5036 }
5037 }
b34976b6 5038 return TRUE;
5bd4f169
AM
5039}
5040
deb0e272
AM
5041/* The maximum size of .sfpr. */
5042#define SFPR_MAX (218*4)
5043
5044struct sfpr_def_parms
5045{
699733f6
AM
5046 const char name[12];
5047 unsigned char lo, hi;
deb0e272
AM
5048 bfd_byte * (*write_ent) (bfd *, bfd_byte *, int);
5049 bfd_byte * (*write_tail) (bfd *, bfd_byte *, int);
5050};
5051
5052/* Auto-generate _save*, _rest* functions in .sfpr. */
5053
5054static unsigned int
5055sfpr_define (struct bfd_link_info *info, const struct sfpr_def_parms *parm)
5056{
5057 struct ppc_link_hash_table *htab = ppc_hash_table (info);
5058 unsigned int i;
5059 size_t len = strlen (parm->name);
5060 bfd_boolean writing = FALSE;
699733f6 5061 char sym[16];
deb0e272
AM
5062
5063 memcpy (sym, parm->name, len);
5064 sym[len + 2] = 0;
5065
5066 for (i = parm->lo; i <= parm->hi; i++)
5067 {
5068 struct elf_link_hash_entry *h;
5069
5070 sym[len + 0] = i / 10 + '0';
5071 sym[len + 1] = i % 10 + '0';
5072 h = elf_link_hash_lookup (&htab->elf, sym, FALSE, FALSE, TRUE);
5073 if (h != NULL
5074 && (h->elf_link_hash_flags & ELF_LINK_HASH_DEF_REGULAR) == 0)
5075 {
5076 h->root.type = bfd_link_hash_defined;
5077 h->root.u.def.section = htab->sfpr;
5078 h->root.u.def.value = htab->sfpr->size;
5079 h->type = STT_FUNC;
5080 h->elf_link_hash_flags |= ELF_LINK_HASH_DEF_REGULAR;
5081 _bfd_elf_link_hash_hide_symbol (info, h, TRUE);
5082 writing = TRUE;
5083 if (htab->sfpr->contents == NULL)
5084 {
5085 htab->sfpr->contents = bfd_alloc (htab->elf.dynobj, SFPR_MAX);
5086 if (htab->sfpr->contents == NULL)
5087 return FALSE;
5088 }
5089 }
5090 if (writing)
5091 {
5092 bfd_byte *p = htab->sfpr->contents + htab->sfpr->size;
5093 if (i != parm->hi)
5094 p = (*parm->write_ent) (htab->elf.dynobj, p, i);
5095 else
5096 p = (*parm->write_tail) (htab->elf.dynobj, p, i);
5097 htab->sfpr->size = p - htab->sfpr->contents;
5098 }
5099 }
5100
5101 return TRUE;
5102}
5103
5104static bfd_byte *
5105savegpr0 (bfd *abfd, bfd_byte *p, int r)
5106{
5107 bfd_put_32 (abfd, STD_R0_0R1 + (r << 21) + (1 << 16) - (32 - r) * 8, p);
5108 return p + 4;
5109}
5110
5111static bfd_byte *
5112savegpr0_tail (bfd *abfd, bfd_byte *p, int r)
5113{
5114 p = savegpr0 (abfd, p, r);
5115 bfd_put_32 (abfd, STD_R0_0R1 + 16, p);
5116 p = p + 4;
5117 bfd_put_32 (abfd, BLR, p);
5118 return p + 4;
5119}
5120
5121static bfd_byte *
5122restgpr0 (bfd *abfd, bfd_byte *p, int r)
5123{
5124 bfd_put_32 (abfd, LD_R0_0R1 + (r << 21) + (1 << 16) - (32 - r) * 8, p);
5125 return p + 4;
5126}
5127
5128static bfd_byte *
5129restgpr0_tail (bfd *abfd, bfd_byte *p, int r)
5130{
5131 bfd_put_32 (abfd, LD_R0_0R1 + 16, p);
5132 p = p + 4;
5133 p = restgpr0 (abfd, p, r);
5134 bfd_put_32 (abfd, MTLR_R0, p);
5135 p = p + 4;
5136 if (r == 29)
5137 {
5138 p = restgpr0 (abfd, p, 30);
5139 p = restgpr0 (abfd, p, 31);
5140 }
5141 bfd_put_32 (abfd, BLR, p);
5142 return p + 4;
5143}
5144
5145static bfd_byte *
5146savegpr1 (bfd *abfd, bfd_byte *p, int r)
5147{
5148 bfd_put_32 (abfd, STD_R0_0R12 + (r << 21) + (1 << 16) - (32 - r) * 8, p);
5149 return p + 4;
5150}
5151
5152static bfd_byte *
5153savegpr1_tail (bfd *abfd, bfd_byte *p, int r)
5154{
5155 p = savegpr1 (abfd, p, r);
5156 bfd_put_32 (abfd, BLR, p);
5157 return p + 4;
5158}
5159
5160static bfd_byte *
5161restgpr1 (bfd *abfd, bfd_byte *p, int r)
5162{
5163 bfd_put_32 (abfd, LD_R0_0R12 + (r << 21) + (1 << 16) - (32 - r) * 8, p);
5164 return p + 4;
5165}
5166
5167static bfd_byte *
5168restgpr1_tail (bfd *abfd, bfd_byte *p, int r)
5169{
5170 p = restgpr1 (abfd, p, r);
5171 bfd_put_32 (abfd, BLR, p);
5172 return p + 4;
5173}
5174
5175static bfd_byte *
5176savefpr (bfd *abfd, bfd_byte *p, int r)
5177{
5178 bfd_put_32 (abfd, STFD_FR0_0R1 + (r << 21) + (1 << 16) - (32 - r) * 8, p);
5179 return p + 4;
5180}
5181
5182static bfd_byte *
5183savefpr0_tail (bfd *abfd, bfd_byte *p, int r)
5184{
5185 p = savefpr (abfd, p, r);
5186 bfd_put_32 (abfd, STD_R0_0R1 + 16, p);
5187 p = p + 4;
5188 bfd_put_32 (abfd, BLR, p);
5189 return p + 4;
5190}
5191
5192static bfd_byte *
5193restfpr (bfd *abfd, bfd_byte *p, int r)
5194{
5195 bfd_put_32 (abfd, LFD_FR0_0R1 + (r << 21) + (1 << 16) - (32 - r) * 8, p);
5196 return p + 4;
5197}
5198
5199static bfd_byte *
5200restfpr0_tail (bfd *abfd, bfd_byte *p, int r)
5201{
5202 bfd_put_32 (abfd, LD_R0_0R1 + 16, p);
5203 p = p + 4;
5204 p = restfpr (abfd, p, r);
5205 bfd_put_32 (abfd, MTLR_R0, p);
5206 p = p + 4;
5207 if (r == 29)
5208 {
5209 p = restfpr (abfd, p, 30);
5210 p = restfpr (abfd, p, 31);
5211 }
5212 bfd_put_32 (abfd, BLR, p);
5213 return p + 4;
5214}
5215
5216static bfd_byte *
5217savefpr1_tail (bfd *abfd, bfd_byte *p, int r)
5218{
5219 p = savefpr (abfd, p, r);
5220 bfd_put_32 (abfd, BLR, p);
5221 return p + 4;
5222}
5223
5224static bfd_byte *
5225restfpr1_tail (bfd *abfd, bfd_byte *p, int r)
5226{
5227 p = restfpr (abfd, p, r);
5228 bfd_put_32 (abfd, BLR, p);
5229 return p + 4;
5230}
5231
5232static bfd_byte *
5233savevr (bfd *abfd, bfd_byte *p, int r)
5234{
5235 bfd_put_32 (abfd, LI_R12_0 + (1 << 16) - (32 - r) * 16, p);
5236 p = p + 4;
5237 bfd_put_32 (abfd, STVX_VR0_R12_R0 + (r << 21), p);
5238 return p + 4;
5239}
5240
5241static bfd_byte *
5242savevr_tail (bfd *abfd, bfd_byte *p, int r)
5243{
5244 p = savevr (abfd, p, r);
5245 bfd_put_32 (abfd, BLR, p);
5246 return p + 4;
5247}
5248
5249static bfd_byte *
5250restvr (bfd *abfd, bfd_byte *p, int r)
5251{
5252 bfd_put_32 (abfd, LI_R12_0 + (1 << 16) - (32 - r) * 16, p);
5253 p = p + 4;
5254 bfd_put_32 (abfd, LVX_VR0_R12_R0 + (r << 21), p);
5255 return p + 4;
5256}
5257
5258static bfd_byte *
5259restvr_tail (bfd *abfd, bfd_byte *p, int r)
5260{
5261 p = restvr (abfd, p, r);
5262 bfd_put_32 (abfd, BLR, p);
5263 return p + 4;
5264}
5265
e86ce104
AM
5266/* Called via elf_link_hash_traverse to transfer dynamic linking
5267 information on function code symbol entries to their corresponding
5268 function descriptor symbol entries. */
deb0e272 5269
b34976b6 5270static bfd_boolean
4ce794b7 5271func_desc_adjust (struct elf_link_hash_entry *h, void *inf)
5bd4f169 5272{
e86ce104 5273 struct bfd_link_info *info;
65f38f15 5274 struct ppc_link_hash_table *htab;
411e1bfb 5275 struct plt_entry *ent;
50bc7936
AM
5276 struct ppc_link_hash_entry *fh;
5277 struct ppc_link_hash_entry *fdh;
5278 bfd_boolean force_local;
5bd4f169 5279
50bc7936
AM
5280 fh = (struct ppc_link_hash_entry *) h;
5281 if (fh->elf.root.type == bfd_link_hash_indirect)
b34976b6 5282 return TRUE;
e86ce104 5283
50bc7936
AM
5284 if (fh->elf.root.type == bfd_link_hash_warning)
5285 fh = (struct ppc_link_hash_entry *) fh->elf.root.u.i.link;
e92d460e 5286
4ce794b7 5287 info = inf;
65f38f15 5288 htab = ppc_hash_table (info);
5bd4f169 5289
c09bdfe5
AM
5290 /* Resolve undefined references to dot-symbols as the value
5291 in the function descriptor, if we have one in a regular object.
5292 This is to satisfy cases like ".quad .foo". Calls to functions
5293 in dynamic objects are handled elsewhere. */
5294 if (fh->elf.root.type == bfd_link_hash_undefweak
5295 && fh->was_undefined
5296 && (fh->oh->elf.root.type == bfd_link_hash_defined
5297 || fh->oh->elf.root.type == bfd_link_hash_defweak)
5298 && get_opd_info (fh->oh->elf.root.u.def.section) != NULL
5299 && opd_entry_value (fh->oh->elf.root.u.def.section,
5300 fh->oh->elf.root.u.def.value,
5301 &fh->elf.root.u.def.section,
5302 &fh->elf.root.u.def.value) != (bfd_vma) -1)
5303 {
5304 fh->elf.root.type = fh->oh->elf.root.type;
5305 fh->elf.elf_link_hash_flags |= ELF_LINK_FORCED_LOCAL;
5306 }
5307
e86ce104
AM
5308 /* If this is a function code symbol, transfer dynamic linking
5309 information to the function descriptor symbol. */
50bc7936 5310 if (!fh->is_func)
b34976b6 5311 return TRUE;
e86ce104 5312
50bc7936 5313 for (ent = fh->elf.plt.plist; ent != NULL; ent = ent->next)
411e1bfb
AM
5314 if (ent->plt.refcount > 0)
5315 break;
50bc7936
AM
5316 if (ent == NULL
5317 || fh->elf.root.root.string[0] != '.'
5318 || fh->elf.root.root.string[1] == '\0')
5319 return TRUE;
5bd4f169 5320
50bc7936
AM
5321 /* Find the corresponding function descriptor symbol. Create it
5322 as undefined if necessary. */
5bd4f169 5323
50bc7936
AM
5324 fdh = get_fdh (fh, htab);
5325 if (fdh != NULL)
5326 while (fdh->elf.root.type == bfd_link_hash_indirect
5327 || fdh->elf.root.type == bfd_link_hash_warning)
5328 fdh = (struct ppc_link_hash_entry *) fdh->elf.root.u.i.link;
5bd4f169 5329
50bc7936
AM
5330 if (fdh == NULL
5331 && info->shared
5332 && (fh->elf.root.type == bfd_link_hash_undefined
5333 || fh->elf.root.type == bfd_link_hash_undefweak))
5334 {
5335 bfd *abfd;
5336 asymbol *newsym;
5337 struct bfd_link_hash_entry *bh;
5338
5339 abfd = fh->elf.root.u.undef.abfd;
5340 newsym = bfd_make_empty_symbol (abfd);
5341 newsym->name = fh->elf.root.root.string + 1;
5342 newsym->section = bfd_und_section_ptr;
5343 newsym->value = 0;
5344 newsym->flags = BSF_OBJECT;
5345 if (fh->elf.root.type == bfd_link_hash_undefweak)
5346 newsym->flags |= BSF_WEAK;
5347
5348 bh = &fdh->elf.root;
5349 if ( !(_bfd_generic_link_add_one_symbol
5350 (info, abfd, newsym->name, newsym->flags,
5351 newsym->section, newsym->value, NULL, FALSE, FALSE, &bh)))
648cca2c 5352 {
50bc7936 5353 return FALSE;
648cca2c 5354 }
50bc7936
AM
5355 fdh = (struct ppc_link_hash_entry *) bh;
5356 fdh->elf.elf_link_hash_flags &= ~ELF_LINK_NON_ELF;
5357 fdh->elf.size = 24;
5358 fdh->elf.type = STT_OBJECT;
5359 }
648cca2c 5360
50bc7936
AM
5361 if (fdh != NULL
5362 && (fdh->elf.elf_link_hash_flags & ELF_LINK_FORCED_LOCAL) == 0
5363 && (info->shared
5364 || (fdh->elf.elf_link_hash_flags & ELF_LINK_HASH_DEF_DYNAMIC) != 0
5365 || (fdh->elf.elf_link_hash_flags & ELF_LINK_HASH_REF_DYNAMIC) != 0
5366 || (fdh->elf.root.type == bfd_link_hash_undefweak
5367 && ELF_ST_VISIBILITY (fdh->elf.other) == STV_DEFAULT)))
5368 {
5369 if (fdh->elf.dynindx == -1)
c152c796 5370 if (! bfd_elf_link_record_dynamic_symbol (info, &fdh->elf))
50bc7936
AM
5371 return FALSE;
5372 fdh->elf.elf_link_hash_flags
5373 |= (fh->elf.elf_link_hash_flags & (ELF_LINK_HASH_REF_REGULAR
5374 | ELF_LINK_HASH_REF_DYNAMIC
5375 | ELF_LINK_HASH_REF_REGULAR_NONWEAK
5376 | ELF_LINK_NON_GOT_REF));
5377 if (ELF_ST_VISIBILITY (fh->elf.other) == STV_DEFAULT)
e86ce104 5378 {
8387904d
AM
5379 struct plt_entry **ep = &fdh->elf.plt.plist;
5380 while (*ep != NULL)
5381 ep = &(*ep)->next;
5382 *ep = fh->elf.plt.plist;
5383 fh->elf.plt.plist = NULL;
50bc7936 5384 fdh->elf.elf_link_hash_flags |= ELF_LINK_HASH_NEEDS_PLT;
e86ce104 5385 }
50bc7936 5386 fdh->is_func_descriptor = 1;
34814b9f
AM
5387 fdh->oh = fh;
5388 fh->oh = fdh;
e86ce104
AM
5389 }
5390
50bc7936
AM
5391 /* Now that the info is on the function descriptor, clear the
5392 function code sym info. Any function code syms for which we
5393 don't have a definition in a regular file, we force local.
5394 This prevents a shared library from exporting syms that have
5395 been imported from another library. Function code syms that
5396 are really in the library we must leave global to prevent the
5397 linker dragging in a definition from a static library. */
5398 force_local
5399 = (info->shared
5400 && ((fh->elf.elf_link_hash_flags & ELF_LINK_HASH_DEF_REGULAR) == 0
5401 || fdh == NULL
5402 || (fdh->elf.elf_link_hash_flags & ELF_LINK_HASH_DEF_REGULAR) == 0
5403 || (fdh->elf.elf_link_hash_flags & ELF_LINK_FORCED_LOCAL) != 0));
5404 _bfd_elf_link_hash_hide_symbol (info, &fh->elf, force_local);
5405
b34976b6 5406 return TRUE;
e86ce104 5407}
40b8271b 5408
e86ce104 5409/* Called near the start of bfd_elf_size_dynamic_sections. We use
82bd7b59
AM
5410 this hook to a) provide some gcc support functions, and b) transfer
5411 dynamic linking information gathered so far on function code symbol
5412 entries, to their corresponding function descriptor symbol entries. */
deb0e272 5413
b34976b6 5414static bfd_boolean
4ce794b7
AM
5415ppc64_elf_func_desc_adjust (bfd *obfd ATTRIBUTE_UNUSED,
5416 struct bfd_link_info *info)
e86ce104
AM
5417{
5418 struct ppc_link_hash_table *htab;
82bd7b59 5419 unsigned int i;
deb0e272
AM
5420 const struct sfpr_def_parms funcs[] =
5421 {
5422 { "_savegpr0_", 14, 31, savegpr0, savegpr0_tail },
5423 { "_restgpr0_", 14, 29, restgpr0, restgpr0_tail },
5424 { "_restgpr0_", 30, 31, restgpr0, restgpr0_tail },
5425 { "_savegpr1_", 14, 31, savegpr1, savegpr1_tail },
5426 { "_restgpr1_", 14, 31, restgpr1, restgpr1_tail },
5427 { "_savefpr_", 14, 31, savefpr, savefpr0_tail },
5428 { "_restfpr_", 14, 29, restfpr, restfpr0_tail },
5429 { "_restfpr_", 30, 31, restfpr, restfpr0_tail },
5430 { "._savef", 14, 31, savefpr, savefpr1_tail },
5431 { "._restf", 14, 31, restfpr, restfpr1_tail },
5432 { "_savevr_", 20, 31, savevr, savevr_tail },
5433 { "_restvr_", 20, 31, restvr, restvr_tail }
5434 };
e86ce104
AM
5435
5436 htab = ppc_hash_table (info);
82bd7b59
AM
5437 if (htab->sfpr == NULL)
5438 /* We don't have any relocs. */
b34976b6 5439 return TRUE;
82bd7b59 5440
deb0e272
AM
5441 /* Provide any missing _save* and _rest* functions. */
5442 htab->sfpr->size = 0;
5443 for (i = 0; i < sizeof (funcs) / sizeof (funcs[0]); i++)
5444 if (!sfpr_define (info, &funcs[i]))
5445 return FALSE;
82bd7b59 5446
4ce794b7 5447 elf_link_hash_traverse (&htab->elf, func_desc_adjust, info);
805fc799 5448
eea6121a 5449 if (htab->sfpr->size == 0)
deb0e272 5450 _bfd_strip_section_from_output (info, htab->sfpr);
82bd7b59 5451
b34976b6 5452 return TRUE;
e86ce104
AM
5453}
5454
5455/* Adjust a symbol defined by a dynamic object and referenced by a
5456 regular object. The current definition is in some section of the
5457 dynamic object, but we're not including those sections. We have to
5458 change the definition to something the rest of the link can
5459 understand. */
5460
b34976b6 5461static bfd_boolean
4ce794b7
AM
5462ppc64_elf_adjust_dynamic_symbol (struct bfd_link_info *info,
5463 struct elf_link_hash_entry *h)
e86ce104
AM
5464{
5465 struct ppc_link_hash_table *htab;
e86ce104
AM
5466 asection *s;
5467 unsigned int power_of_two;
5468
5469 htab = ppc_hash_table (info);
5470
5471 /* Deal with function syms. */
5472 if (h->type == STT_FUNC
5473 || (h->elf_link_hash_flags & ELF_LINK_HASH_NEEDS_PLT) != 0)
5474 {
5475 /* Clear procedure linkage table information for any symbol that
5476 won't need a .plt entry. */
411e1bfb
AM
5477 struct plt_entry *ent;
5478 for (ent = h->plt.plist; ent != NULL; ent = ent->next)
5479 if (ent->plt.refcount > 0)
5480 break;
8387904d 5481 if (ent == NULL
9c7a29a3
AM
5482 || SYMBOL_CALLS_LOCAL (info, h)
5483 || (ELF_ST_VISIBILITY (h->other) != STV_DEFAULT
5484 && h->root.type == bfd_link_hash_undefweak))
40b8271b 5485 {
411e1bfb 5486 h->plt.plist = NULL;
40b8271b 5487 h->elf_link_hash_flags &= ~ELF_LINK_HASH_NEEDS_PLT;
40b8271b 5488 }
5bd4f169 5489 }
bbd7ec4a 5490 else
411e1bfb 5491 h->plt.plist = NULL;
5bd4f169
AM
5492
5493 /* If this is a weak symbol, and there is a real definition, the
5494 processor independent code will have arranged for us to see the
5495 real definition first, and we can just use the same value. */
5496 if (h->weakdef != NULL)
5497 {
5498 BFD_ASSERT (h->weakdef->root.type == bfd_link_hash_defined
5499 || h->weakdef->root.type == bfd_link_hash_defweak);
5500 h->root.u.def.section = h->weakdef->root.u.def.section;
5501 h->root.u.def.value = h->weakdef->root.u.def.value;
a23b6845
AM
5502 if (ELIMINATE_COPY_RELOCS)
5503 h->elf_link_hash_flags
5504 = ((h->elf_link_hash_flags & ~ELF_LINK_NON_GOT_REF)
5505 | (h->weakdef->elf_link_hash_flags & ELF_LINK_NON_GOT_REF));
b34976b6 5506 return TRUE;
5bd4f169
AM
5507 }
5508
5bd4f169
AM
5509 /* If we are creating a shared library, we must presume that the
5510 only references to the symbol are via the global offset table.
5511 For such cases we need not do anything here; the relocations will
5512 be handled correctly by relocate_section. */
5513 if (info->shared)
b34976b6 5514 return TRUE;
5bd4f169 5515
65f38f15
AM
5516 /* If there are no references to this symbol that do not use the
5517 GOT, we don't need to generate a copy reloc. */
5518 if ((h->elf_link_hash_flags & ELF_LINK_NON_GOT_REF) == 0)
b34976b6 5519 return TRUE;
65f38f15 5520
f4656909 5521 if (ELIMINATE_COPY_RELOCS)
65f38f15 5522 {
f4656909
AM
5523 struct ppc_link_hash_entry * eh;
5524 struct ppc_dyn_relocs *p;
65f38f15 5525
f4656909
AM
5526 eh = (struct ppc_link_hash_entry *) h;
5527 for (p = eh->dyn_relocs; p != NULL; p = p->next)
5528 {
5529 s = p->sec->output_section;
5530 if (s != NULL && (s->flags & SEC_READONLY) != 0)
5531 break;
5532 }
5533
5534 /* If we didn't find any dynamic relocs in read-only sections, then
5535 we'll be keeping the dynamic relocs and avoiding the copy reloc. */
5536 if (p == NULL)
5537 {
5538 h->elf_link_hash_flags &= ~ELF_LINK_NON_GOT_REF;
5539 return TRUE;
5540 }
65f38f15
AM
5541 }
5542
5d35169e 5543 if (h->plt.plist != NULL)
97b639ba
AM
5544 {
5545 /* We should never get here, but unfortunately there are versions
5546 of gcc out there that improperly (for this ABI) put initialized
5547 function pointers, vtable refs and suchlike in read-only
5548 sections. Allow them to proceed, but warn that this might
5549 break at runtime. */
5550 (*_bfd_error_handler)
5551 (_("copy reloc against `%s' requires lazy plt linking; "
5552 "avoid setting LD_BIND_NOW=1 or upgrade gcc"),
5553 h->root.root.string);
5554 }
5d35169e
AM
5555
5556 /* This is a reference to a symbol defined by a dynamic object which
5557 is not a function. */
5558
5bd4f169
AM
5559 /* We must allocate the symbol in our .dynbss section, which will
5560 become part of the .bss section of the executable. There will be
5561 an entry for this symbol in the .dynsym section. The dynamic
5562 object will contain position independent code, so all references
5563 from the dynamic object to this symbol will go through the global
5564 offset table. The dynamic linker will use the .dynsym entry to
5565 determine the address it must put in the global offset table, so
5566 both the dynamic object and the regular object will refer to the
5567 same memory location for the variable. */
5bd4f169 5568
04c9666a
AM
5569 /* We must generate a R_PPC64_COPY reloc to tell the dynamic linker
5570 to copy the initial value out of the dynamic object and into the
5bd4f169
AM
5571 runtime process image. We need to remember the offset into the
5572 .rela.bss section we are going to use. */
5573 if ((h->root.u.def.section->flags & SEC_ALLOC) != 0)
5574 {
eea6121a 5575 htab->relbss->size += sizeof (Elf64_External_Rela);
5bd4f169
AM
5576 h->elf_link_hash_flags |= ELF_LINK_HASH_NEEDS_COPY;
5577 }
5578
5579 /* We need to figure out the alignment required for this symbol. I
5580 have no idea how ELF linkers handle this. */
5581 power_of_two = bfd_log2 (h->size);
5582 if (power_of_two > 4)
5583 power_of_two = 4;
5584
5585 /* Apply the required alignment. */
4ce794b7 5586 s = htab->dynbss;
eea6121a 5587 s->size = BFD_ALIGN (s->size, (bfd_size_type) (1 << power_of_two));
65f38f15 5588 if (power_of_two > bfd_get_section_alignment (htab->elf.dynobj, s))
5bd4f169 5589 {
65f38f15 5590 if (! bfd_set_section_alignment (htab->elf.dynobj, s, power_of_two))
b34976b6 5591 return FALSE;
5bd4f169
AM
5592 }
5593
5594 /* Define the symbol as being at this point in the section. */
5595 h->root.u.def.section = s;
eea6121a 5596 h->root.u.def.value = s->size;
5bd4f169
AM
5597
5598 /* Increment the section size to make room for the symbol. */
eea6121a 5599 s->size += h->size;
5bd4f169 5600
b34976b6 5601 return TRUE;
5bd4f169
AM
5602}
5603
e86ce104
AM
5604/* If given a function descriptor symbol, hide both the function code
5605 sym and the descriptor. */
5606static void
4ce794b7
AM
5607ppc64_elf_hide_symbol (struct bfd_link_info *info,
5608 struct elf_link_hash_entry *h,
5609 bfd_boolean force_local)
e86ce104 5610{
34814b9f 5611 struct ppc_link_hash_entry *eh;
e86ce104
AM
5612 _bfd_elf_link_hash_hide_symbol (info, h, force_local);
5613
34814b9f
AM
5614 eh = (struct ppc_link_hash_entry *) h;
5615 if (eh->is_func_descriptor)
e86ce104 5616 {
34814b9f 5617 struct ppc_link_hash_entry *fh = eh->oh;
e86ce104 5618
721956f4 5619 if (fh == NULL)
d1329ca3
AM
5620 {
5621 const char *p, *q;
5622 struct ppc_link_hash_table *htab;
5623 char save;
5624
5625 /* We aren't supposed to use alloca in BFD because on
5626 systems which do not have alloca the version in libiberty
5627 calls xmalloc, which might cause the program to crash
5628 when it runs out of memory. This function doesn't have a
5629 return status, so there's no way to gracefully return an
5630 error. So cheat. We know that string[-1] can be safely
34814b9f
AM
5631 accessed; It's either a string in an ELF string table,
5632 or allocated in an objalloc structure. */
d1329ca3 5633
34814b9f 5634 p = eh->elf.root.root.string - 1;
d1329ca3
AM
5635 save = *p;
5636 *(char *) p = '.';
5637 htab = ppc_hash_table (info);
34814b9f
AM
5638 fh = (struct ppc_link_hash_entry *)
5639 elf_link_hash_lookup (&htab->elf, p, FALSE, FALSE, FALSE);
d1329ca3
AM
5640 *(char *) p = save;
5641
5642 /* Unfortunately, if it so happens that the string we were
5643 looking for was allocated immediately before this string,
5644 then we overwrote the string terminator. That's the only
5645 reason the lookup should fail. */
5646 if (fh == NULL)
5647 {
34814b9f
AM
5648 q = eh->elf.root.root.string + strlen (eh->elf.root.root.string);
5649 while (q >= eh->elf.root.root.string && *q == *p)
d1329ca3 5650 --q, --p;
34814b9f
AM
5651 if (q < eh->elf.root.root.string && *p == '.')
5652 fh = (struct ppc_link_hash_entry *)
5653 elf_link_hash_lookup (&htab->elf, p, FALSE, FALSE, FALSE);
d1329ca3
AM
5654 }
5655 if (fh != NULL)
5656 {
34814b9f
AM
5657 eh->oh = fh;
5658 fh->oh = eh;
d1329ca3
AM
5659 }
5660 }
e86ce104 5661 if (fh != NULL)
34814b9f 5662 _bfd_elf_link_hash_hide_symbol (info, &fh->elf, force_local);
e86ce104
AM
5663 }
5664}
5665
411e1bfb 5666static bfd_boolean
8843416a
AM
5667get_sym_h (struct elf_link_hash_entry **hp,
5668 Elf_Internal_Sym **symp,
5669 asection **symsecp,
5670 char **tls_maskp,
5671 Elf_Internal_Sym **locsymsp,
5672 unsigned long r_symndx,
5673 bfd *ibfd)
411e1bfb
AM
5674{
5675 Elf_Internal_Shdr *symtab_hdr = &elf_tdata (ibfd)->symtab_hdr;
5676
5677 if (r_symndx >= symtab_hdr->sh_info)
5678 {
5679 struct elf_link_hash_entry **sym_hashes = elf_sym_hashes (ibfd);
5680 struct elf_link_hash_entry *h;
5681
5682 h = sym_hashes[r_symndx - symtab_hdr->sh_info];
5683 while (h->root.type == bfd_link_hash_indirect
5684 || h->root.type == bfd_link_hash_warning)
5685 h = (struct elf_link_hash_entry *) h->root.u.i.link;
5686
5687 if (hp != NULL)
5688 *hp = h;
5689
5690 if (symp != NULL)
5691 *symp = NULL;
5692
5693 if (symsecp != NULL)
5694 {
5695 asection *symsec = NULL;
5696 if (h->root.type == bfd_link_hash_defined
5697 || h->root.type == bfd_link_hash_defweak)
5698 symsec = h->root.u.def.section;
5699 *symsecp = symsec;
5700 }
5701
e7b938ca 5702 if (tls_maskp != NULL)
411e1bfb
AM
5703 {
5704 struct ppc_link_hash_entry *eh;
5705
5706 eh = (struct ppc_link_hash_entry *) h;
e7b938ca 5707 *tls_maskp = &eh->tls_mask;
411e1bfb
AM
5708 }
5709 }
5710 else
5711 {
5712 Elf_Internal_Sym *sym;
5713 Elf_Internal_Sym *locsyms = *locsymsp;
5714
5715 if (locsyms == NULL)
5716 {
5717 locsyms = (Elf_Internal_Sym *) symtab_hdr->contents;
5718 if (locsyms == NULL)
5719 locsyms = bfd_elf_get_elf_syms (ibfd, symtab_hdr,
5720 symtab_hdr->sh_info,
5721 0, NULL, NULL, NULL);
5722 if (locsyms == NULL)
5723 return FALSE;
5724 *locsymsp = locsyms;
5725 }
5726 sym = locsyms + r_symndx;
5727
5728 if (hp != NULL)
5729 *hp = NULL;
5730
5731 if (symp != NULL)
5732 *symp = sym;
5733
5734 if (symsecp != NULL)
5735 {
5736 asection *symsec = NULL;
5737 if ((sym->st_shndx != SHN_UNDEF
5738 && sym->st_shndx < SHN_LORESERVE)
5739 || sym->st_shndx > SHN_HIRESERVE)
5740 symsec = bfd_section_from_elf_index (ibfd, sym->st_shndx);
5741 *symsecp = symsec;
5742 }
5743
e7b938ca 5744 if (tls_maskp != NULL)
411e1bfb
AM
5745 {
5746 struct got_entry **lgot_ents;
e7b938ca 5747 char *tls_mask;
411e1bfb 5748
e7b938ca 5749 tls_mask = NULL;
411e1bfb
AM
5750 lgot_ents = elf_local_got_ents (ibfd);
5751 if (lgot_ents != NULL)
5752 {
e7b938ca
AM
5753 char *lgot_masks = (char *) (lgot_ents + symtab_hdr->sh_info);
5754 tls_mask = &lgot_masks[r_symndx];
411e1bfb 5755 }
e7b938ca 5756 *tls_maskp = tls_mask;
411e1bfb
AM
5757 }
5758 }
5759 return TRUE;
5760}
5761
e7b938ca 5762/* Returns TLS_MASKP for the given REL symbol. Function return is 0 on
951fd09b 5763 error, 2 on a toc GD type suitable for optimization, 3 on a toc LD
ad8e1ba5 5764 type suitable for optimization, and 1 otherwise. */
951fd09b
AM
5765
5766static int
0d4792f7
AM
5767get_tls_mask (char **tls_maskp, unsigned long *toc_symndx,
5768 Elf_Internal_Sym **locsymsp,
4ce794b7 5769 const Elf_Internal_Rela *rel, bfd *ibfd)
411e1bfb
AM
5770{
5771 unsigned long r_symndx;
0d4792f7 5772 int next_r;
411e1bfb
AM
5773 struct elf_link_hash_entry *h;
5774 Elf_Internal_Sym *sym;
5775 asection *sec;
5776 bfd_vma off;
5777
5778 r_symndx = ELF64_R_SYM (rel->r_info);
e7b938ca 5779 if (!get_sym_h (&h, &sym, &sec, tls_maskp, locsymsp, r_symndx, ibfd))
951fd09b 5780 return 0;
411e1bfb 5781
e7b938ca 5782 if ((*tls_maskp != NULL && **tls_maskp != 0)
411e1bfb
AM
5783 || sec == NULL
5784 || ppc64_elf_section_data (sec)->t_symndx == NULL)
951fd09b 5785 return 1;
411e1bfb
AM
5786
5787 /* Look inside a TOC section too. */
5788 if (h != NULL)
5789 {
5790 BFD_ASSERT (h->root.type == bfd_link_hash_defined);
5791 off = h->root.u.def.value;
5792 }
5793 else
5794 off = sym->st_value;
5795 off += rel->r_addend;
5796 BFD_ASSERT (off % 8 == 0);
5797 r_symndx = ppc64_elf_section_data (sec)->t_symndx[off / 8];
951fd09b 5798 next_r = ppc64_elf_section_data (sec)->t_symndx[off / 8 + 1];
e7b938ca 5799 if (!get_sym_h (&h, &sym, &sec, tls_maskp, locsymsp, r_symndx, ibfd))
951fd09b 5800 return 0;
0d4792f7
AM
5801 if (toc_symndx != NULL)
5802 *toc_symndx = r_symndx;
5803 if ((h == NULL
5804 || ((h->root.type == bfd_link_hash_defined
5805 || h->root.type == bfd_link_hash_defweak)
5806 && !(h->elf_link_hash_flags & ELF_LINK_HASH_DEF_DYNAMIC)))
5807 && (next_r == -1 || next_r == -2))
5808 return 1 - next_r;
951fd09b 5809 return 1;
411e1bfb
AM
5810}
5811
754021d0 5812/* Adjust all global syms defined in opd sections. In gcc generated
8387904d 5813 code for the old ABI, these will already have been done. */
754021d0
AM
5814
5815static bfd_boolean
5816adjust_opd_syms (struct elf_link_hash_entry *h, void *inf ATTRIBUTE_UNUSED)
5817{
5818 struct ppc_link_hash_entry *eh;
5819 asection *sym_sec;
5820 long *opd_adjust;
5821
5822 if (h->root.type == bfd_link_hash_indirect)
5823 return TRUE;
5824
5825 if (h->root.type == bfd_link_hash_warning)
5826 h = (struct elf_link_hash_entry *) h->root.u.i.link;
5827
5828 if (h->root.type != bfd_link_hash_defined
5829 && h->root.type != bfd_link_hash_defweak)
5830 return TRUE;
5831
5832 eh = (struct ppc_link_hash_entry *) h;
5833 if (eh->adjust_done)
5834 return TRUE;
5835
5836 sym_sec = eh->elf.root.u.def.section;
4025353c
AM
5837 opd_adjust = get_opd_info (sym_sec);
5838 if (opd_adjust != NULL)
754021d0 5839 {
3f764659 5840 long adjust = opd_adjust[eh->elf.root.u.def.value / 8];
4025353c
AM
5841 if (adjust == -1)
5842 {
5843 /* This entry has been deleted. */
81688140
AM
5844 asection *dsec = ppc64_elf_tdata (sym_sec->owner)->deleted_section;
5845 if (dsec == NULL)
5846 {
5847 for (dsec = sym_sec->owner->sections; dsec; dsec = dsec->next)
5848 if (elf_discarded_section (dsec))
5849 {
5850 ppc64_elf_tdata (sym_sec->owner)->deleted_section = dsec;
5851 break;
5852 }
5853 }
4025353c 5854 eh->elf.root.u.def.value = 0;
81688140 5855 eh->elf.root.u.def.section = dsec;
4025353c
AM
5856 }
5857 else
5858 eh->elf.root.u.def.value += adjust;
754021d0
AM
5859 eh->adjust_done = 1;
5860 }
5861 return TRUE;
5862}
5863
5864/* Remove unused Official Procedure Descriptor entries. Currently we
5865 only remove those associated with functions in discarded link-once
5866 sections, or weakly defined functions that have been overridden. It
5867 would be possible to remove many more entries for statically linked
5868 applications. */
5869
b34976b6 5870bfd_boolean
3f764659
JJ
5871ppc64_elf_edit_opd (bfd *obfd, struct bfd_link_info *info,
5872 bfd_boolean non_overlapping)
1e2f5b6e
AM
5873{
5874 bfd *ibfd;
754021d0 5875 bfd_boolean some_edited = FALSE;
3f764659 5876 asection *need_pad = NULL;
1e2f5b6e 5877
411e1bfb 5878 for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link_next)
1e2f5b6e
AM
5879 {
5880 asection *sec;
5881 Elf_Internal_Rela *relstart, *rel, *relend;
5882 Elf_Internal_Shdr *symtab_hdr;
6cdc0ccc 5883 Elf_Internal_Sym *local_syms;
1e2f5b6e
AM
5884 struct elf_link_hash_entry **sym_hashes;
5885 bfd_vma offset;
d6fe2dc1 5886 bfd_size_type amt;
4025353c 5887 long *opd_adjust;
3f764659
JJ
5888 bfd_boolean need_edit, add_aux_fields;
5889 bfd_size_type cnt_16b = 0;
1e2f5b6e
AM
5890
5891 sec = bfd_get_section_by_name (ibfd, ".opd");
5892 if (sec == NULL)
5893 continue;
5894
3f764659 5895 amt = sec->size * sizeof (long) / 8;
4025353c
AM
5896 opd_adjust = get_opd_info (sec);
5897 if (opd_adjust == NULL)
d6fe2dc1
AM
5898 {
5899 /* Must be a ld -r link. ie. check_relocs hasn't been
5900 called. */
4025353c
AM
5901 opd_adjust = bfd_zalloc (obfd, amt);
5902 ppc64_elf_section_data (sec)->opd.adjust = opd_adjust;
d6fe2dc1 5903 }
4025353c 5904 memset (opd_adjust, 0, amt);
1e2f5b6e
AM
5905
5906 if (sec->output_section == bfd_abs_section_ptr)
5907 continue;
5908
5909 /* Look through the section relocs. */
5910 if ((sec->flags & SEC_RELOC) == 0 || sec->reloc_count == 0)
5911 continue;
5912
6cdc0ccc 5913 local_syms = NULL;
1e2f5b6e
AM
5914 symtab_hdr = &elf_tdata (ibfd)->symtab_hdr;
5915 sym_hashes = elf_sym_hashes (ibfd);
5916
5917 /* Read the relocations. */
4ce794b7 5918 relstart = _bfd_elf_link_read_relocs (ibfd, sec, NULL, NULL,
45d6a902 5919 info->keep_memory);
1e2f5b6e 5920 if (relstart == NULL)
b34976b6 5921 return FALSE;
1e2f5b6e
AM
5922
5923 /* First run through the relocs to check they are sane, and to
5924 determine whether we need to edit this opd section. */
b34976b6 5925 need_edit = FALSE;
3f764659 5926 need_pad = sec;
1e2f5b6e
AM
5927 offset = 0;
5928 relend = relstart + sec->reloc_count;
50bc7936 5929 for (rel = relstart; rel < relend; )
1e2f5b6e 5930 {
04c9666a 5931 enum elf_ppc64_reloc_type r_type;
1e2f5b6e
AM
5932 unsigned long r_symndx;
5933 asection *sym_sec;
5934 struct elf_link_hash_entry *h;
5935 Elf_Internal_Sym *sym;
5936
3f764659 5937 /* .opd contains a regular array of 16 or 24 byte entries. We're
1e2f5b6e
AM
5938 only interested in the reloc pointing to a function entry
5939 point. */
50bc7936
AM
5940 if (rel->r_offset != offset
5941 || rel + 1 >= relend
5942 || (rel + 1)->r_offset != offset + 8)
1e2f5b6e
AM
5943 {
5944 /* If someone messes with .opd alignment then after a
5945 "ld -r" we might have padding in the middle of .opd.
5946 Also, there's nothing to prevent someone putting
5947 something silly in .opd with the assembler. No .opd
b34976b6 5948 optimization for them! */
3f764659 5949 broken_opd:
1e2f5b6e 5950 (*_bfd_error_handler)
d003868e 5951 (_("%B: .opd is not a regular array of opd entries"), ibfd);
b34976b6 5952 need_edit = FALSE;
1e2f5b6e
AM
5953 break;
5954 }
5955
50bc7936
AM
5956 if ((r_type = ELF64_R_TYPE (rel->r_info)) != R_PPC64_ADDR64
5957 || (r_type = ELF64_R_TYPE ((rel + 1)->r_info)) != R_PPC64_TOC)
5958 {
5959 (*_bfd_error_handler)
d003868e
AM
5960 (_("%B: unexpected reloc type %u in .opd section"),
5961 ibfd, r_type);
50bc7936
AM
5962 need_edit = FALSE;
5963 break;
5964 }
5965
1e2f5b6e 5966 r_symndx = ELF64_R_SYM (rel->r_info);
411e1bfb
AM
5967 if (!get_sym_h (&h, &sym, &sym_sec, NULL, &local_syms,
5968 r_symndx, ibfd))
50bc7936 5969 goto error_ret;
1e2f5b6e
AM
5970
5971 if (sym_sec == NULL || sym_sec->owner == NULL)
5972 {
411e1bfb
AM
5973 const char *sym_name;
5974 if (h != NULL)
5975 sym_name = h->root.root.string;
5976 else
5977 sym_name = bfd_elf_local_sym_name (ibfd, sym);
5978
1e2f5b6e 5979 (*_bfd_error_handler)
d003868e
AM
5980 (_("%B: undefined sym `%s' in .opd section"),
5981 ibfd, sym_name);
b34976b6 5982 need_edit = FALSE;
1e2f5b6e
AM
5983 break;
5984 }
5985
51020317
AM
5986 /* opd entries are always for functions defined in the
5987 current input bfd. If the symbol isn't defined in the
5988 input bfd, then we won't be using the function in this
5989 bfd; It must be defined in a linkonce section in another
5990 bfd, or is weak. It's also possible that we are
5991 discarding the function due to a linker script /DISCARD/,
5992 which we test for via the output_section. */
5993 if (sym_sec->owner != ibfd
5994 || sym_sec->output_section == bfd_abs_section_ptr)
b34976b6 5995 need_edit = TRUE;
1e2f5b6e 5996
50bc7936 5997 rel += 2;
3f764659
JJ
5998 if (rel == relend
5999 || (rel + 1 == relend && rel->r_offset == offset + 16))
6000 {
6001 if (sec->size == offset + 24)
6002 {
6003 need_pad = NULL;
6004 break;
6005 }
6006 if (rel == relend && sec->size == offset + 16)
6007 {
6008 cnt_16b++;
6009 break;
6010 }
6011 goto broken_opd;
6012 }
6013
6014 if (rel->r_offset == offset + 24)
6015 offset += 24;
6016 else if (rel->r_offset != offset + 16)
6017 goto broken_opd;
6018 else if (rel + 1 < relend
6019 && ELF64_R_TYPE (rel[0].r_info) == R_PPC64_ADDR64
6020 && ELF64_R_TYPE (rel[1].r_info) == R_PPC64_TOC)
6021 {
6022 offset += 16;
6023 cnt_16b++;
6024 }
6025 else if (rel + 2 < relend
6026 && ELF64_R_TYPE (rel[1].r_info) == R_PPC64_ADDR64
6027 && ELF64_R_TYPE (rel[2].r_info) == R_PPC64_TOC)
6028 {
6029 offset += 24;
6030 rel += 1;
6031 }
6032 else
6033 goto broken_opd;
1e2f5b6e
AM
6034 }
6035
3f764659
JJ
6036 add_aux_fields = non_overlapping && cnt_16b > 0;
6037
6038 if (need_edit || add_aux_fields)
1e2f5b6e
AM
6039 {
6040 Elf_Internal_Rela *write_rel;
6041 bfd_byte *rptr, *wptr;
3f764659 6042 bfd_byte *new_contents = NULL;
b34976b6 6043 bfd_boolean skip;
3f764659 6044 long opd_ent_size;
1e2f5b6e
AM
6045
6046 /* This seems a waste of time as input .opd sections are all
6047 zeros as generated by gcc, but I suppose there's no reason
6048 this will always be so. We might start putting something in
6049 the third word of .opd entries. */
6050 if ((sec->flags & SEC_IN_MEMORY) == 0)
6051 {
eea6121a
AM
6052 bfd_byte *loc;
6053 if (!bfd_malloc_and_get_section (ibfd, sec, &loc))
6cdc0ccc 6054 {
eea6121a
AM
6055 if (loc != NULL)
6056 free (loc);
50bc7936 6057 error_ret:
6cdc0ccc
AM
6058 if (local_syms != NULL
6059 && symtab_hdr->contents != (unsigned char *) local_syms)
6060 free (local_syms);
6cdc0ccc
AM
6061 if (elf_section_data (sec)->relocs != relstart)
6062 free (relstart);
b34976b6 6063 return FALSE;
6cdc0ccc 6064 }
1e2f5b6e
AM
6065 sec->contents = loc;
6066 sec->flags |= (SEC_IN_MEMORY | SEC_HAS_CONTENTS);
6067 }
6068
6069 elf_section_data (sec)->relocs = relstart;
6070
6071 wptr = sec->contents;
6072 rptr = sec->contents;
3f764659
JJ
6073 new_contents = sec->contents;
6074
6075 if (add_aux_fields)
6076 {
6077 new_contents = bfd_malloc (sec->size + cnt_16b * 8);
6078 if (new_contents == NULL)
6079 return FALSE;
6080 need_pad = FALSE;
6081 wptr = new_contents;
6082 }
6083
1e2f5b6e 6084 write_rel = relstart;
b34976b6 6085 skip = FALSE;
1e2f5b6e 6086 offset = 0;
3f764659 6087 opd_ent_size = 0;
1e2f5b6e
AM
6088 for (rel = relstart; rel < relend; rel++)
6089 {
50bc7936
AM
6090 unsigned long r_symndx;
6091 asection *sym_sec;
6092 struct elf_link_hash_entry *h;
6093 Elf_Internal_Sym *sym;
6094
6095 r_symndx = ELF64_R_SYM (rel->r_info);
6096 if (!get_sym_h (&h, &sym, &sym_sec, NULL, &local_syms,
d37c89e5 6097 r_symndx, ibfd))
50bc7936
AM
6098 goto error_ret;
6099
1e2f5b6e
AM
6100 if (rel->r_offset == offset)
6101 {
50bc7936 6102 struct ppc_link_hash_entry *fdh = NULL;
3f764659
JJ
6103
6104 /* See if the .opd entry is full 24 byte or
6105 16 byte (with fd_aux entry overlapped with next
6106 fd_func). */
6107 opd_ent_size = 24;
6108 if ((rel + 2 == relend && sec->size == offset + 16)
6109 || (rel + 3 < relend
6110 && rel[2].r_offset == offset + 16
6111 && rel[3].r_offset == offset + 24
6112 && ELF64_R_TYPE (rel[2].r_info) == R_PPC64_ADDR64
6113 && ELF64_R_TYPE (rel[3].r_info) == R_PPC64_TOC))
6114 opd_ent_size = 16;
6115
4025353c
AM
6116 if (h != NULL
6117 && h->root.root.string[0] == '.')
50bc7936
AM
6118 fdh = get_fdh ((struct ppc_link_hash_entry *) h,
6119 ppc_hash_table (info));
1e2f5b6e 6120
51020317
AM
6121 skip = (sym_sec->owner != ibfd
6122 || sym_sec->output_section == bfd_abs_section_ptr);
a4aa0fb7
AM
6123 if (skip)
6124 {
4025353c 6125 if (fdh != NULL && sym_sec->owner == ibfd)
a4aa0fb7
AM
6126 {
6127 /* Arrange for the function descriptor sym
6128 to be dropped. */
d6fe2dc1
AM
6129 fdh->elf.root.u.def.value = 0;
6130 fdh->elf.root.u.def.section = sym_sec;
a4aa0fb7 6131 }
3f764659 6132 opd_adjust[rel->r_offset / 8] = -1;
a4aa0fb7
AM
6133 }
6134 else
1e2f5b6e
AM
6135 {
6136 /* We'll be keeping this opd entry. */
6137
4025353c 6138 if (fdh != NULL)
1e2f5b6e 6139 {
754021d0
AM
6140 /* Redefine the function descriptor symbol to
6141 this location in the opd section. It is
6142 necessary to update the value here rather
6143 than using an array of adjustments as we do
6144 for local symbols, because various places
6145 in the generic ELF code use the value
6146 stored in u.def.value. */
3f764659 6147 fdh->elf.root.u.def.value = wptr - new_contents;
754021d0 6148 fdh->adjust_done = 1;
1e2f5b6e 6149 }
754021d0
AM
6150
6151 /* Local syms are a bit tricky. We could
6152 tweak them as they can be cached, but
6153 we'd need to look through the local syms
6154 for the function descriptor sym which we
6155 don't have at the moment. So keep an
6156 array of adjustments. */
3f764659
JJ
6157 opd_adjust[rel->r_offset / 8]
6158 = (wptr - new_contents) - (rptr - sec->contents);
1e2f5b6e
AM
6159
6160 if (wptr != rptr)
3f764659
JJ
6161 memcpy (wptr, rptr, opd_ent_size);
6162 wptr += opd_ent_size;
6163 if (add_aux_fields && opd_ent_size == 16)
6164 {
6165 memset (wptr, '\0', 8);
6166 wptr += 8;
6167 }
1e2f5b6e 6168 }
3f764659
JJ
6169 rptr += opd_ent_size;
6170 offset += opd_ent_size;
1e2f5b6e
AM
6171 }
6172
50bc7936
AM
6173 if (skip)
6174 {
6175 BFD_ASSERT (MUST_BE_DYN_RELOC (ELF64_R_TYPE (rel->r_info)));
6176 if (info->shared)
6177 {
6178 /* We won't be needing dynamic relocs here. */
6179 struct ppc_dyn_relocs **pp;
6180 struct ppc_dyn_relocs *p;
6181
6182 if (h != NULL)
6183 pp = &((struct ppc_link_hash_entry *) h)->dyn_relocs;
6184 else if (sym_sec != NULL)
6185 pp = ((struct ppc_dyn_relocs **)
6186 &elf_section_data (sym_sec)->local_dynrel);
6187 else
6188 pp = ((struct ppc_dyn_relocs **)
6189 &elf_section_data (sec)->local_dynrel);
6190 while ((p = *pp) != NULL)
6191 {
6192 if (p->sec == sec)
6193 {
6194 p->count -= 1;
6195 if (p->count == 0)
d37c89e5 6196 *pp = p->next;
50bc7936
AM
6197 break;
6198 }
6199 pp = &p->next;
6200 }
6201 }
6202 }
6203 else
1e2f5b6e 6204 {
50bc7936
AM
6205 /* We need to adjust any reloc offsets to point to the
6206 new opd entries. While we're at it, we may as well
6207 remove redundant relocs. */
3f764659 6208 rel->r_offset += opd_adjust[(offset - opd_ent_size) / 8];
1e2f5b6e
AM
6209 if (write_rel != rel)
6210 memcpy (write_rel, rel, sizeof (*rel));
6211 ++write_rel;
6212 }
6213 }
6214
3f764659 6215 sec->size = wptr - new_contents;
1e2f5b6e 6216 sec->reloc_count = write_rel - relstart;
3f764659
JJ
6217 if (add_aux_fields)
6218 {
6219 free (sec->contents);
6220 sec->contents = new_contents;
6221 }
6222
cdcf6e38
AM
6223 /* Fudge the size too, as this is used later in
6224 elf_bfd_final_link if we are emitting relocs. */
6225 elf_section_data (sec)->rel_hdr.sh_size
6226 = sec->reloc_count * elf_section_data (sec)->rel_hdr.sh_entsize;
6227 BFD_ASSERT (elf_section_data (sec)->rel_hdr2 == NULL);
754021d0 6228 some_edited = TRUE;
1e2f5b6e 6229 }
6cdc0ccc 6230 else if (elf_section_data (sec)->relocs != relstart)
1e2f5b6e 6231 free (relstart);
6cdc0ccc 6232
411e1bfb
AM
6233 if (local_syms != NULL
6234 && symtab_hdr->contents != (unsigned char *) local_syms)
6235 {
6236 if (!info->keep_memory)
6237 free (local_syms);
6238 else
6239 symtab_hdr->contents = (unsigned char *) local_syms;
6240 }
6241 }
6242
754021d0
AM
6243 if (some_edited)
6244 elf_link_hash_traverse (elf_hash_table (info), adjust_opd_syms, NULL);
6245
3f764659
JJ
6246 /* If we are doing a final link and the last .opd entry is just 16 byte
6247 long, add a 8 byte padding after it. */
6248 if (need_pad != NULL && !info->relocatable)
6249 {
6250 bfd_byte *p;
6251
6252 if ((need_pad->flags & SEC_IN_MEMORY) == 0)
6253 {
6254 BFD_ASSERT (need_pad->size > 0);
6255
6256 p = bfd_malloc (need_pad->size + 8);
6257 if (p == NULL)
6258 return FALSE;
699733f6 6259
3f764659
JJ
6260 if (! bfd_get_section_contents (need_pad->owner, need_pad,
6261 p, 0, need_pad->size))
6262 return FALSE;
6263
6264 need_pad->contents = p;
6265 need_pad->flags |= (SEC_IN_MEMORY | SEC_HAS_CONTENTS);
6266 }
6267 else
6268 {
6269 p = bfd_realloc (need_pad->contents, need_pad->size + 8);
6270 if (p == NULL)
6271 return FALSE;
6272
6273 need_pad->contents = p;
6274 }
6275
6276 memset (need_pad->contents + need_pad->size, 0, 8);
6277 need_pad->size += 8;
6278 }
6279
411e1bfb
AM
6280 return TRUE;
6281}
6282
e1918d23 6283/* Set htab->tls_get_addr and call the generic ELF tls_setup function. */
411e1bfb 6284
e1918d23 6285asection *
4ce794b7 6286ppc64_elf_tls_setup (bfd *obfd, struct bfd_link_info *info)
411e1bfb 6287{
411e1bfb
AM
6288 struct ppc_link_hash_table *htab;
6289
411e1bfb 6290 htab = ppc_hash_table (info);
a48ebf4d
AM
6291 if (htab->tls_get_addr != NULL)
6292 {
8387904d 6293 struct ppc_link_hash_entry *h = htab->tls_get_addr;
a48ebf4d 6294
8387904d
AM
6295 while (h->elf.root.type == bfd_link_hash_indirect
6296 || h->elf.root.type == bfd_link_hash_warning)
6297 h = (struct ppc_link_hash_entry *) h->elf.root.u.i.link;
a48ebf4d
AM
6298
6299 htab->tls_get_addr = h;
8387904d
AM
6300
6301 if (htab->tls_get_addr_fd == NULL
6302 && h->oh != NULL
6303 && h->oh->is_func_descriptor)
6304 htab->tls_get_addr_fd = h->oh;
6305 }
6306
6307 if (htab->tls_get_addr_fd != NULL)
6308 {
6309 struct ppc_link_hash_entry *h = htab->tls_get_addr_fd;
6310
6311 while (h->elf.root.type == bfd_link_hash_indirect
6312 || h->elf.root.type == bfd_link_hash_warning)
6313 h = (struct ppc_link_hash_entry *) h->elf.root.u.i.link;
6314
6315 htab->tls_get_addr_fd = h;
a48ebf4d
AM
6316 }
6317
e1918d23 6318 return _bfd_elf_tls_setup (obfd, info);
951fd09b 6319}
411e1bfb 6320
951fd09b
AM
6321/* Run through all the TLS relocs looking for optimization
6322 opportunities. The linker has been hacked (see ppc64elf.em) to do
6323 a preliminary section layout so that we know the TLS segment
6324 offsets. We can't optimize earlier because some optimizations need
6325 to know the tp offset, and we need to optimize before allocating
6326 dynamic relocations. */
6327
6328bfd_boolean
4ce794b7 6329ppc64_elf_tls_optimize (bfd *obfd ATTRIBUTE_UNUSED, struct bfd_link_info *info)
951fd09b
AM
6330{
6331 bfd *ibfd;
6332 asection *sec;
6333 struct ppc_link_hash_table *htab;
6334
1049f94e 6335 if (info->relocatable || info->shared)
411e1bfb
AM
6336 return TRUE;
6337
951fd09b 6338 htab = ppc_hash_table (info);
411e1bfb
AM
6339 for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link_next)
6340 {
6341 Elf_Internal_Sym *locsyms = NULL;
6342
6343 for (sec = ibfd->sections; sec != NULL; sec = sec->next)
6344 if (sec->has_tls_reloc && !bfd_is_abs_section (sec->output_section))
6345 {
6346 Elf_Internal_Rela *relstart, *rel, *relend;
6347 int expecting_tls_get_addr;
6348
6349 /* Read the relocations. */
4ce794b7 6350 relstart = _bfd_elf_link_read_relocs (ibfd, sec, NULL, NULL,
45d6a902 6351 info->keep_memory);
411e1bfb
AM
6352 if (relstart == NULL)
6353 return FALSE;
6354
6355 expecting_tls_get_addr = 0;
6356 relend = relstart + sec->reloc_count;
6357 for (rel = relstart; rel < relend; rel++)
6358 {
6359 enum elf_ppc64_reloc_type r_type;
6360 unsigned long r_symndx;
6361 struct elf_link_hash_entry *h;
6362 Elf_Internal_Sym *sym;
6363 asection *sym_sec;
e7b938ca
AM
6364 char *tls_mask;
6365 char tls_set, tls_clear, tls_type = 0;
411e1bfb 6366 bfd_vma value;
951fd09b 6367 bfd_boolean ok_tprel, is_local;
411e1bfb
AM
6368
6369 r_symndx = ELF64_R_SYM (rel->r_info);
e7b938ca 6370 if (!get_sym_h (&h, &sym, &sym_sec, &tls_mask, &locsyms,
411e1bfb
AM
6371 r_symndx, ibfd))
6372 {
6373 err_free_rel:
6374 if (elf_section_data (sec)->relocs != relstart)
6375 free (relstart);
6376 if (locsyms != NULL
6377 && (elf_tdata (ibfd)->symtab_hdr.contents
6378 != (unsigned char *) locsyms))
6379 free (locsyms);
6380 return FALSE;
6381 }
6382
6383 if (h != NULL)
6384 {
6385 if (h->root.type != bfd_link_hash_defined
6386 && h->root.type != bfd_link_hash_defweak)
6387 continue;
6388 value = h->root.u.def.value;
6389 }
6390 else
4025353c
AM
6391 /* Symbols referenced by TLS relocs must be of type
6392 STT_TLS. So no need for .opd local sym adjust. */
6393 value = sym->st_value;
951fd09b 6394
411e1bfb 6395 ok_tprel = FALSE;
951fd09b
AM
6396 is_local = FALSE;
6397 if (h == NULL
6398 || !(h->elf_link_hash_flags & ELF_LINK_HASH_DEF_DYNAMIC))
411e1bfb 6399 {
951fd09b 6400 is_local = TRUE;
411e1bfb
AM
6401 value += sym_sec->output_offset;
6402 value += sym_sec->output_section->vma;
e1918d23 6403 value -= htab->elf.tls_sec->vma;
411e1bfb
AM
6404 ok_tprel = (value + TP_OFFSET + ((bfd_vma) 1 << 31)
6405 < (bfd_vma) 1 << 32);
6406 }
6407
4ce794b7 6408 r_type = ELF64_R_TYPE (rel->r_info);
411e1bfb
AM
6409 switch (r_type)
6410 {
6411 case R_PPC64_GOT_TLSLD16:
6412 case R_PPC64_GOT_TLSLD16_LO:
6413 case R_PPC64_GOT_TLSLD16_HI:
6414 case R_PPC64_GOT_TLSLD16_HA:
951fd09b
AM
6415 /* These relocs should never be against a symbol
6416 defined in a shared lib. Leave them alone if
6417 that turns out to be the case. */
e717da7e 6418 ppc64_tlsld_got (ibfd)->refcount -= 1;
951fd09b
AM
6419 if (!is_local)
6420 continue;
6421
951fd09b
AM
6422 /* LD -> LE */
6423 tls_set = 0;
6424 tls_clear = TLS_LD;
e7b938ca 6425 tls_type = TLS_TLS | TLS_LD;
411e1bfb
AM
6426 expecting_tls_get_addr = 1;
6427 break;
6428
6429 case R_PPC64_GOT_TLSGD16:
6430 case R_PPC64_GOT_TLSGD16_LO:
6431 case R_PPC64_GOT_TLSGD16_HI:
6432 case R_PPC64_GOT_TLSGD16_HA:
951fd09b 6433 if (ok_tprel)
411e1bfb
AM
6434 /* GD -> LE */
6435 tls_set = 0;
6436 else
6437 /* GD -> IE */
951fd09b
AM
6438 tls_set = TLS_TLS | TLS_TPRELGD;
6439 tls_clear = TLS_GD;
e7b938ca 6440 tls_type = TLS_TLS | TLS_GD;
411e1bfb
AM
6441 expecting_tls_get_addr = 1;
6442 break;
6443
6444 case R_PPC64_GOT_TPREL16_DS:
6445 case R_PPC64_GOT_TPREL16_LO_DS:
6446 case R_PPC64_GOT_TPREL16_HI:
6447 case R_PPC64_GOT_TPREL16_HA:
6448 expecting_tls_get_addr = 0;
6449 if (ok_tprel)
6450 {
6451 /* IE -> LE */
6452 tls_set = 0;
6453 tls_clear = TLS_TPREL;
e7b938ca 6454 tls_type = TLS_TLS | TLS_TPREL;
411e1bfb
AM
6455 break;
6456 }
6457 else
6458 continue;
6459
6460 case R_PPC64_REL14:
6461 case R_PPC64_REL14_BRTAKEN:
6462 case R_PPC64_REL14_BRNTAKEN:
6463 case R_PPC64_REL24:
6464 if (h != NULL
8387904d
AM
6465 && (h == &htab->tls_get_addr->elf
6466 || h == &htab->tls_get_addr_fd->elf))
411e1bfb
AM
6467 {
6468 if (!expecting_tls_get_addr
6469 && rel != relstart
6470 && ((ELF64_R_TYPE (rel[-1].r_info)
6471 == R_PPC64_TOC16)
6472 || (ELF64_R_TYPE (rel[-1].r_info)
6473 == R_PPC64_TOC16_LO)))
6474 {
6475 /* Check for toc tls entries. */
6476 char *toc_tls;
951fd09b 6477 int retval;
411e1bfb 6478
0d4792f7 6479 retval = get_tls_mask (&toc_tls, NULL, &locsyms,
951fd09b
AM
6480 rel - 1, ibfd);
6481 if (retval == 0)
411e1bfb
AM
6482 goto err_free_rel;
6483 if (toc_tls != NULL)
951fd09b 6484 expecting_tls_get_addr = retval > 1;
411e1bfb
AM
6485 }
6486
6487 if (expecting_tls_get_addr)
6488 {
6489 struct plt_entry *ent;
6490 for (ent = h->plt.plist; ent; ent = ent->next)
6491 if (ent->addend == 0)
6492 {
6493 if (ent->plt.refcount > 0)
6494 ent->plt.refcount -= 1;
6495 break;
6496 }
6497 }
6498 }
6499 expecting_tls_get_addr = 0;
6500 continue;
6501
6502 case R_PPC64_TPREL64:
6503 expecting_tls_get_addr = 0;
6504 if (ok_tprel)
6505 {
6506 /* IE -> LE */
6507 tls_set = TLS_EXPLICIT;
6508 tls_clear = TLS_TPREL;
6509 break;
6510 }
6511 else
6512 continue;
6513
6514 case R_PPC64_DTPMOD64:
6515 expecting_tls_get_addr = 0;
951fd09b
AM
6516 if (rel + 1 < relend
6517 && (rel[1].r_info
6518 == ELF64_R_INFO (r_symndx, R_PPC64_DTPREL64))
6519 && rel[1].r_offset == rel->r_offset + 8)
411e1bfb 6520 {
951fd09b 6521 if (ok_tprel)
411e1bfb 6522 /* GD -> LE */
951fd09b 6523 tls_set = TLS_EXPLICIT | TLS_GD;
411e1bfb
AM
6524 else
6525 /* GD -> IE */
951fd09b
AM
6526 tls_set = TLS_EXPLICIT | TLS_GD | TLS_TPRELGD;
6527 tls_clear = TLS_GD;
411e1bfb
AM
6528 }
6529 else
6530 {
951fd09b
AM
6531 if (!is_local)
6532 continue;
6533
6534 /* LD -> LE */
6535 tls_set = TLS_EXPLICIT;
6536 tls_clear = TLS_LD;
411e1bfb
AM
6537 }
6538 break;
6539
6540 default:
6541 expecting_tls_get_addr = 0;
6542 continue;
6543 }
6544
6545 if ((tls_set & TLS_EXPLICIT) == 0)
6546 {
6547 struct got_entry *ent;
6548
6549 /* Adjust got entry for this reloc. */
6550 if (h != NULL)
6551 ent = h->got.glist;
6552 else
6553 ent = elf_local_got_ents (ibfd)[r_symndx];
6554
6555 for (; ent != NULL; ent = ent->next)
6556 if (ent->addend == rel->r_addend
e717da7e 6557 && ent->owner == ibfd
e7b938ca 6558 && ent->tls_type == tls_type)
411e1bfb
AM
6559 break;
6560 if (ent == NULL)
6561 abort ();
6562
6563 if (tls_set == 0)
6564 {
6565 /* We managed to get rid of a got entry. */
6566 if (ent->got.refcount > 0)
6567 ent->got.refcount -= 1;
6568 }
411e1bfb
AM
6569 }
6570 else if (h != NULL)
6571 {
6572 struct ppc_link_hash_entry * eh;
6573 struct ppc_dyn_relocs **pp;
6574 struct ppc_dyn_relocs *p;
6575
6576 /* Adjust dynamic relocs. */
6577 eh = (struct ppc_link_hash_entry *) h;
6578 for (pp = &eh->dyn_relocs;
6579 (p = *pp) != NULL;
6580 pp = &p->next)
6581 if (p->sec == sec)
6582 {
6583 /* If we got rid of a DTPMOD/DTPREL reloc
6584 pair then we'll lose one or two dyn
6585 relocs. */
951fd09b 6586 if (tls_set == (TLS_EXPLICIT | TLS_GD))
411e1bfb 6587 p->count -= 1;
951fd09b 6588 p->count -= 1;
411e1bfb
AM
6589 if (p->count == 0)
6590 *pp = p->next;
6591 break;
6592 }
6593 }
6594
e7b938ca
AM
6595 *tls_mask |= tls_set;
6596 *tls_mask &= ~tls_clear;
411e1bfb
AM
6597 }
6598
6599 if (elf_section_data (sec)->relocs != relstart)
6600 free (relstart);
6601 }
6602
6603 if (locsyms != NULL
6604 && (elf_tdata (ibfd)->symtab_hdr.contents
6605 != (unsigned char *) locsyms))
6cdc0ccc
AM
6606 {
6607 if (!info->keep_memory)
411e1bfb 6608 free (locsyms);
6cdc0ccc 6609 else
411e1bfb 6610 elf_tdata (ibfd)->symtab_hdr.contents = (unsigned char *) locsyms;
6cdc0ccc 6611 }
1e2f5b6e 6612 }
b34976b6 6613 return TRUE;
1e2f5b6e 6614}
b34976b6 6615
65f38f15
AM
6616/* Allocate space in .plt, .got and associated reloc sections for
6617 dynamic relocs. */
5bd4f169 6618
b34976b6 6619static bfd_boolean
4ce794b7 6620allocate_dynrelocs (struct elf_link_hash_entry *h, void *inf)
5bd4f169 6621{
65f38f15
AM
6622 struct bfd_link_info *info;
6623 struct ppc_link_hash_table *htab;
5bd4f169 6624 asection *s;
65f38f15
AM
6625 struct ppc_link_hash_entry *eh;
6626 struct ppc_dyn_relocs *p;
411e1bfb 6627 struct got_entry *gent;
5bd4f169 6628
e92d460e 6629 if (h->root.type == bfd_link_hash_indirect)
b34976b6 6630 return TRUE;
5bd4f169 6631
e92d460e
AM
6632 if (h->root.type == bfd_link_hash_warning)
6633 h = (struct elf_link_hash_entry *) h->root.u.i.link;
6634
65f38f15
AM
6635 info = (struct bfd_link_info *) inf;
6636 htab = ppc_hash_table (info);
5bd4f169 6637
65f38f15 6638 if (htab->elf.dynamic_sections_created
411e1bfb 6639 && h->dynindx != -1
9c7a29a3 6640 && WILL_CALL_FINISH_DYNAMIC_SYMBOL (1, info->shared, h))
5bd4f169 6641 {
411e1bfb
AM
6642 struct plt_entry *pent;
6643 bfd_boolean doneone = FALSE;
6644 for (pent = h->plt.plist; pent != NULL; pent = pent->next)
6645 if (pent->plt.refcount > 0)
6646 {
411e1bfb
AM
6647 /* If this is the first .plt entry, make room for the special
6648 first entry. */
4ce794b7 6649 s = htab->plt;
eea6121a
AM
6650 if (s->size == 0)
6651 s->size += PLT_INITIAL_ENTRY_SIZE;
411e1bfb 6652
eea6121a 6653 pent->plt.offset = s->size;
411e1bfb
AM
6654
6655 /* Make room for this entry. */
eea6121a 6656 s->size += PLT_ENTRY_SIZE;
411e1bfb
AM
6657
6658 /* Make room for the .glink code. */
4ce794b7 6659 s = htab->glink;
eea6121a
AM
6660 if (s->size == 0)
6661 s->size += GLINK_CALL_STUB_SIZE;
411e1bfb 6662 /* We need bigger stubs past index 32767. */
eea6121a
AM
6663 if (s->size >= GLINK_CALL_STUB_SIZE + 32768*2*4)
6664 s->size += 4;
6665 s->size += 2*4;
411e1bfb
AM
6666
6667 /* We also need to make an entry in the .rela.plt section. */
4ce794b7 6668 s = htab->relplt;
eea6121a 6669 s->size += sizeof (Elf64_External_Rela);
411e1bfb
AM
6670 doneone = TRUE;
6671 }
6672 else
6673 pent->plt.offset = (bfd_vma) -1;
6674 if (!doneone)
65f38f15 6675 {
411e1bfb 6676 h->plt.plist = NULL;
65f38f15
AM
6677 h->elf_link_hash_flags &= ~ELF_LINK_HASH_NEEDS_PLT;
6678 }
6679 }
6680 else
6681 {
411e1bfb 6682 h->plt.plist = NULL;
65f38f15
AM
6683 h->elf_link_hash_flags &= ~ELF_LINK_HASH_NEEDS_PLT;
6684 }
6685
951fd09b
AM
6686 eh = (struct ppc_link_hash_entry *) h;
6687 /* Run through the TLS GD got entries first if we're changing them
6688 to TPREL. */
e7b938ca 6689 if ((eh->tls_mask & TLS_TPRELGD) != 0)
951fd09b
AM
6690 for (gent = h->got.glist; gent != NULL; gent = gent->next)
6691 if (gent->got.refcount > 0
6692 && (gent->tls_type & TLS_GD) != 0)
6693 {
6694 /* This was a GD entry that has been converted to TPREL. If
6695 there happens to be a TPREL entry we can use that one. */
6696 struct got_entry *ent;
6697 for (ent = h->got.glist; ent != NULL; ent = ent->next)
6698 if (ent->got.refcount > 0
6699 && (ent->tls_type & TLS_TPREL) != 0
e717da7e
AM
6700 && ent->addend == gent->addend
6701 && ent->owner == gent->owner)
951fd09b
AM
6702 {
6703 gent->got.refcount = 0;
6704 break;
6705 }
6706
6707 /* If not, then we'll be using our own TPREL entry. */
6708 if (gent->got.refcount != 0)
6709 gent->tls_type = TLS_TLS | TLS_TPREL;
6710 }
6711
411e1bfb
AM
6712 for (gent = h->got.glist; gent != NULL; gent = gent->next)
6713 if (gent->got.refcount > 0)
6714 {
951fd09b
AM
6715 bfd_boolean dyn;
6716
411e1bfb 6717 /* Make sure this symbol is output as a dynamic symbol.
951fd09b
AM
6718 Undefined weak syms won't yet be marked as dynamic,
6719 nor will all TLS symbols. */
411e1bfb
AM
6720 if (h->dynindx == -1
6721 && (h->elf_link_hash_flags & ELF_LINK_FORCED_LOCAL) == 0)
6722 {
c152c796 6723 if (! bfd_elf_link_record_dynamic_symbol (info, h))
411e1bfb
AM
6724 return FALSE;
6725 }
65f38f15 6726
d881513a
AM
6727 if ((gent->tls_type & TLS_LD) != 0
6728 && !(h->elf_link_hash_flags & ELF_LINK_HASH_DEF_DYNAMIC))
411e1bfb 6729 {
e717da7e 6730 gent->got.offset = ppc64_tlsld_got (gent->owner)->offset;
951fd09b 6731 continue;
411e1bfb 6732 }
951fd09b 6733
e717da7e 6734 s = ppc64_elf_tdata (gent->owner)->got;
eea6121a
AM
6735 gent->got.offset = s->size;
6736 s->size
d881513a 6737 += (gent->tls_type & eh->tls_mask & (TLS_GD | TLS_LD)) ? 16 : 8;
951fd09b 6738 dyn = htab->elf.dynamic_sections_created;
4e795f50
AM
6739 if ((info->shared
6740 || WILL_CALL_FINISH_DYNAMIC_SYMBOL (dyn, 0, h))
6741 && (ELF_ST_VISIBILITY (h->other) == STV_DEFAULT
6742 || h->root.type != bfd_link_hash_undefweak))
eea6121a 6743 ppc64_elf_tdata (gent->owner)->relgot->size
e7b938ca 6744 += (gent->tls_type & eh->tls_mask & TLS_GD
951fd09b
AM
6745 ? 2 * sizeof (Elf64_External_Rela)
6746 : sizeof (Elf64_External_Rela));
411e1bfb
AM
6747 }
6748 else
6749 gent->got.offset = (bfd_vma) -1;
65f38f15 6750
65f38f15 6751 if (eh->dyn_relocs == NULL)
b34976b6 6752 return TRUE;
65f38f15
AM
6753
6754 /* In the shared -Bsymbolic case, discard space allocated for
6755 dynamic pc-relative relocs against symbols which turn out to be
6756 defined in regular objects. For the normal shared case, discard
6757 space for relocs that have become local due to symbol visibility
6758 changes. */
6759
6760 if (info->shared)
6761 {
9c7a29a3
AM
6762 /* Relocs that use pc_count are those that appear on a call insn,
6763 or certain REL relocs (see MUST_BE_DYN_RELOC) that can be
6764 generated via assembly. We want calls to protected symbols to
6765 resolve directly to the function rather than going via the plt.
6766 If people want function pointer comparisons to work as expected
6767 then they should avoid writing weird assembly. */
09695f56 6768 if (SYMBOL_CALLS_LOCAL (info, h))
65f38f15
AM
6769 {
6770 struct ppc_dyn_relocs **pp;
6771
6772 for (pp = &eh->dyn_relocs; (p = *pp) != NULL; )
5bd4f169 6773 {
65f38f15
AM
6774 p->count -= p->pc_count;
6775 p->pc_count = 0;
6776 if (p->count == 0)
6777 *pp = p->next;
6778 else
6779 pp = &p->next;
5bd4f169 6780 }
65f38f15 6781 }
4e795f50
AM
6782
6783 /* Also discard relocs on undefined weak syms with non-default
6784 visibility. */
6785 if (ELF_ST_VISIBILITY (h->other) != STV_DEFAULT
6786 && h->root.type == bfd_link_hash_undefweak)
6787 eh->dyn_relocs = NULL;
65f38f15 6788 }
f4656909 6789 else if (ELIMINATE_COPY_RELOCS)
65f38f15
AM
6790 {
6791 /* For the non-shared case, discard space for relocs against
6792 symbols which turn out to need copy relocs or are not
6793 dynamic. */
6794
6795 if ((h->elf_link_hash_flags & ELF_LINK_NON_GOT_REF) == 0
58ac9f71
AM
6796 && (h->elf_link_hash_flags & ELF_LINK_HASH_DEF_DYNAMIC) != 0
6797 && (h->elf_link_hash_flags & ELF_LINK_HASH_DEF_REGULAR) == 0)
65f38f15
AM
6798 {
6799 /* Make sure this symbol is output as a dynamic symbol.
6800 Undefined weak syms won't yet be marked as dynamic. */
6801 if (h->dynindx == -1
6802 && (h->elf_link_hash_flags & ELF_LINK_FORCED_LOCAL) == 0)
6803 {
c152c796 6804 if (! bfd_elf_link_record_dynamic_symbol (info, h))
b34976b6 6805 return FALSE;
65f38f15
AM
6806 }
6807
6808 /* If that succeeded, we know we'll be keeping all the
6809 relocs. */
6810 if (h->dynindx != -1)
6811 goto keep;
6812 }
6813
6814 eh->dyn_relocs = NULL;
6815
ec338859 6816 keep: ;
65f38f15
AM
6817 }
6818
6819 /* Finally, allocate space. */
6820 for (p = eh->dyn_relocs; p != NULL; p = p->next)
6821 {
6822 asection *sreloc = elf_section_data (p->sec)->sreloc;
eea6121a 6823 sreloc->size += p->count * sizeof (Elf64_External_Rela);
65f38f15
AM
6824 }
6825
b34976b6 6826 return TRUE;
65f38f15
AM
6827}
6828
6829/* Find any dynamic relocs that apply to read-only sections. */
6830
b34976b6 6831static bfd_boolean
4ce794b7 6832readonly_dynrelocs (struct elf_link_hash_entry *h, void *inf)
65f38f15
AM
6833{
6834 struct ppc_link_hash_entry *eh;
6835 struct ppc_dyn_relocs *p;
6836
e92d460e
AM
6837 if (h->root.type == bfd_link_hash_warning)
6838 h = (struct elf_link_hash_entry *) h->root.u.i.link;
6839
65f38f15
AM
6840 eh = (struct ppc_link_hash_entry *) h;
6841 for (p = eh->dyn_relocs; p != NULL; p = p->next)
6842 {
6843 asection *s = p->sec->output_section;
6844
6845 if (s != NULL && (s->flags & SEC_READONLY) != 0)
6846 {
4ce794b7 6847 struct bfd_link_info *info = inf;
65f38f15
AM
6848
6849 info->flags |= DF_TEXTREL;
6850
6851 /* Not an error, just cut short the traversal. */
b34976b6 6852 return FALSE;
65f38f15
AM
6853 }
6854 }
b34976b6 6855 return TRUE;
65f38f15
AM
6856}
6857
6858/* Set the sizes of the dynamic sections. */
6859
b34976b6 6860static bfd_boolean
4ce794b7
AM
6861ppc64_elf_size_dynamic_sections (bfd *output_bfd ATTRIBUTE_UNUSED,
6862 struct bfd_link_info *info)
65f38f15
AM
6863{
6864 struct ppc_link_hash_table *htab;
6865 bfd *dynobj;
6866 asection *s;
b34976b6 6867 bfd_boolean relocs;
65f38f15
AM
6868 bfd *ibfd;
6869
6870 htab = ppc_hash_table (info);
6871 dynobj = htab->elf.dynobj;
6872 if (dynobj == NULL)
6873 abort ();
6874
6875 if (htab->elf.dynamic_sections_created)
6876 {
6877 /* Set the contents of the .interp section to the interpreter. */
36af4a4e 6878 if (info->executable)
65f38f15
AM
6879 {
6880 s = bfd_get_section_by_name (dynobj, ".interp");
6881 if (s == NULL)
6882 abort ();
eea6121a 6883 s->size = sizeof ELF_DYNAMIC_INTERPRETER;
65f38f15
AM
6884 s->contents = (unsigned char *) ELF_DYNAMIC_INTERPRETER;
6885 }
6886 }
6887
6888 /* Set up .got offsets for local syms, and space for local dynamic
6889 relocs. */
6890 for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link_next)
6891 {
411e1bfb
AM
6892 struct got_entry **lgot_ents;
6893 struct got_entry **end_lgot_ents;
e7b938ca 6894 char *lgot_masks;
65f38f15
AM
6895 bfd_size_type locsymcount;
6896 Elf_Internal_Shdr *symtab_hdr;
6897 asection *srel;
6898
6899 if (bfd_get_flavour (ibfd) != bfd_target_elf_flavour)
6900 continue;
6901
e717da7e
AM
6902 if (ppc64_tlsld_got (ibfd)->refcount > 0)
6903 {
6904 s = ppc64_elf_tdata (ibfd)->got;
eea6121a
AM
6905 ppc64_tlsld_got (ibfd)->offset = s->size;
6906 s->size += 16;
e717da7e
AM
6907 if (info->shared)
6908 {
6909 srel = ppc64_elf_tdata (ibfd)->relgot;
eea6121a 6910 srel->size += sizeof (Elf64_External_Rela);
e717da7e
AM
6911 }
6912 }
6913 else
6914 ppc64_tlsld_got (ibfd)->offset = (bfd_vma) -1;
6915
65f38f15
AM
6916 for (s = ibfd->sections; s != NULL; s = s->next)
6917 {
ec338859 6918 struct ppc_dyn_relocs *p;
65f38f15 6919
ec338859
AM
6920 for (p = *((struct ppc_dyn_relocs **)
6921 &elf_section_data (s)->local_dynrel);
6922 p != NULL;
6923 p = p->next)
65f38f15 6924 {
ec338859
AM
6925 if (!bfd_is_abs_section (p->sec)
6926 && bfd_is_abs_section (p->sec->output_section))
6927 {
6928 /* Input section has been discarded, either because
6929 it is a copy of a linkonce section or due to
6930 linker script /DISCARD/, so we'll be discarding
6931 the relocs too. */
6932 }
248866a8 6933 else if (p->count != 0)
ec338859
AM
6934 {
6935 srel = elf_section_data (p->sec)->sreloc;
eea6121a 6936 srel->size += p->count * sizeof (Elf64_External_Rela);
248866a8
AM
6937 if ((p->sec->output_section->flags & SEC_READONLY) != 0)
6938 info->flags |= DF_TEXTREL;
ec338859 6939 }
65f38f15
AM
6940 }
6941 }
6942
411e1bfb
AM
6943 lgot_ents = elf_local_got_ents (ibfd);
6944 if (!lgot_ents)
65f38f15
AM
6945 continue;
6946
6947 symtab_hdr = &elf_tdata (ibfd)->symtab_hdr;
6948 locsymcount = symtab_hdr->sh_info;
411e1bfb 6949 end_lgot_ents = lgot_ents + locsymcount;
e7b938ca 6950 lgot_masks = (char *) end_lgot_ents;
e717da7e
AM
6951 s = ppc64_elf_tdata (ibfd)->got;
6952 srel = ppc64_elf_tdata (ibfd)->relgot;
e7b938ca 6953 for (; lgot_ents < end_lgot_ents; ++lgot_ents, ++lgot_masks)
65f38f15 6954 {
411e1bfb
AM
6955 struct got_entry *ent;
6956
6957 for (ent = *lgot_ents; ent != NULL; ent = ent->next)
6958 if (ent->got.refcount > 0)
6959 {
e7b938ca 6960 if ((ent->tls_type & *lgot_masks & TLS_LD) != 0)
411e1bfb 6961 {
e717da7e 6962 if (ppc64_tlsld_got (ibfd)->offset == (bfd_vma) -1)
411e1bfb 6963 {
eea6121a
AM
6964 ppc64_tlsld_got (ibfd)->offset = s->size;
6965 s->size += 16;
411e1bfb 6966 if (info->shared)
eea6121a 6967 srel->size += sizeof (Elf64_External_Rela);
411e1bfb 6968 }
e717da7e 6969 ent->got.offset = ppc64_tlsld_got (ibfd)->offset;
411e1bfb
AM
6970 }
6971 else
6972 {
eea6121a 6973 ent->got.offset = s->size;
e7b938ca 6974 if ((ent->tls_type & *lgot_masks & TLS_GD) != 0)
411e1bfb 6975 {
eea6121a 6976 s->size += 16;
411e1bfb 6977 if (info->shared)
eea6121a 6978 srel->size += 2 * sizeof (Elf64_External_Rela);
411e1bfb
AM
6979 }
6980 else
6981 {
eea6121a 6982 s->size += 8;
411e1bfb 6983 if (info->shared)
eea6121a 6984 srel->size += sizeof (Elf64_External_Rela);
411e1bfb
AM
6985 }
6986 }
6987 }
6988 else
6989 ent->got.offset = (bfd_vma) -1;
65f38f15
AM
6990 }
6991 }
6992
6993 /* Allocate global sym .plt and .got entries, and space for global
6994 sym dynamic relocs. */
4ce794b7 6995 elf_link_hash_traverse (&htab->elf, allocate_dynrelocs, info);
65f38f15
AM
6996
6997 /* We now have determined the sizes of the various dynamic sections.
6998 Allocate memory for them. */
b34976b6 6999 relocs = FALSE;
65f38f15
AM
7000 for (s = dynobj->sections; s != NULL; s = s->next)
7001 {
7002 if ((s->flags & SEC_LINKER_CREATED) == 0)
7003 continue;
7004
4ce794b7 7005 if (s == htab->brlt || s == htab->relbrlt)
721956f4
AM
7006 /* These haven't been allocated yet; don't strip. */
7007 continue;
e717da7e
AM
7008 else if (s == htab->got
7009 || s == htab->plt
4ce794b7 7010 || s == htab->glink)
65f38f15
AM
7011 {
7012 /* Strip this section if we don't need it; see the
7013 comment below. */
5bd4f169 7014 }
65f38f15 7015 else if (strncmp (bfd_get_section_name (dynobj, s), ".rela", 5) == 0)
5bd4f169 7016 {
eea6121a 7017 if (s->size == 0)
5bd4f169
AM
7018 {
7019 /* If we don't need this section, strip it from the
7020 output file. This is mostly to handle .rela.bss and
7021 .rela.plt. We must create both sections in
7022 create_dynamic_sections, because they must be created
7023 before the linker maps input sections to output
7024 sections. The linker does that before
7025 adjust_dynamic_symbol is called, and it is that
7026 function which decides whether anything needs to go
7027 into these sections. */
5bd4f169
AM
7028 }
7029 else
7030 {
4ce794b7 7031 if (s != htab->relplt)
b34976b6 7032 relocs = TRUE;
5bd4f169
AM
7033
7034 /* We use the reloc_count field as a counter if we need
7035 to copy relocs into the output file. */
7036 s->reloc_count = 0;
7037 }
7038 }
65f38f15 7039 else
5bd4f169
AM
7040 {
7041 /* It's not one of our sections, so don't allocate space. */
7042 continue;
7043 }
7044
eea6121a 7045 if (s->size == 0)
5bd4f169
AM
7046 {
7047 _bfd_strip_section_from_output (info, s);
7048 continue;
7049 }
7050
5f333394 7051 /* .plt is in the bss section. We don't initialise it. */
680a3378 7052 if (s == htab->plt)
5f333394
AM
7053 continue;
7054
65f38f15
AM
7055 /* Allocate memory for the section contents. We use bfd_zalloc
7056 here in case unused entries are not reclaimed before the
7057 section's contents are written out. This should not happen,
411e1bfb
AM
7058 but this way if it does we get a R_PPC64_NONE reloc in .rela
7059 sections instead of garbage.
7060 We also rely on the section contents being zero when writing
7061 the GOT. */
eea6121a 7062 s->contents = bfd_zalloc (dynobj, s->size);
65f38f15 7063 if (s->contents == NULL)
b34976b6 7064 return FALSE;
5bd4f169
AM
7065 }
7066
e717da7e
AM
7067 for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link_next)
7068 {
7069 s = ppc64_elf_tdata (ibfd)->got;
7070 if (s != NULL && s != htab->got)
7071 {
eea6121a 7072 if (s->size == 0)
e717da7e
AM
7073 _bfd_strip_section_from_output (info, s);
7074 else
7075 {
eea6121a 7076 s->contents = bfd_zalloc (ibfd, s->size);
e717da7e
AM
7077 if (s->contents == NULL)
7078 return FALSE;
7079 }
7080 }
7081 s = ppc64_elf_tdata (ibfd)->relgot;
7082 if (s != NULL)
7083 {
eea6121a 7084 if (s->size == 0)
e717da7e
AM
7085 _bfd_strip_section_from_output (info, s);
7086 else
7087 {
eea6121a 7088 s->contents = bfd_zalloc (ibfd, s->size);
e717da7e
AM
7089 if (s->contents == NULL)
7090 return FALSE;
7091 relocs = TRUE;
7092 s->reloc_count = 0;
7093 }
7094 }
7095 }
7096
e86ce104 7097 if (htab->elf.dynamic_sections_created)
5bd4f169
AM
7098 {
7099 /* Add some entries to the .dynamic section. We fill in the
7100 values later, in ppc64_elf_finish_dynamic_sections, but we
7101 must add the entries now so that we get the correct size for
7102 the .dynamic section. The DT_DEBUG entry is filled in by the
7103 dynamic linker and used by the debugger. */
dc810e39 7104#define add_dynamic_entry(TAG, VAL) \
5a580b3a 7105 _bfd_elf_add_dynamic_entry (info, TAG, VAL)
dc810e39 7106
36af4a4e 7107 if (info->executable)
5bd4f169 7108 {
dc810e39 7109 if (!add_dynamic_entry (DT_DEBUG, 0))
b34976b6 7110 return FALSE;
5bd4f169
AM
7111 }
7112
eea6121a 7113 if (htab->plt != NULL && htab->plt->size != 0)
5bd4f169 7114 {
dc810e39
AM
7115 if (!add_dynamic_entry (DT_PLTGOT, 0)
7116 || !add_dynamic_entry (DT_PLTRELSZ, 0)
7117 || !add_dynamic_entry (DT_PLTREL, DT_RELA)
5d1634d7
AM
7118 || !add_dynamic_entry (DT_JMPREL, 0)
7119 || !add_dynamic_entry (DT_PPC64_GLINK, 0))
b34976b6 7120 return FALSE;
5bd4f169
AM
7121 }
7122
19397422
AM
7123 if (NO_OPD_RELOCS)
7124 {
7125 if (!add_dynamic_entry (DT_PPC64_OPD, 0)
7126 || !add_dynamic_entry (DT_PPC64_OPDSZ, 0))
b34976b6 7127 return FALSE;
19397422
AM
7128 }
7129
5bd4f169
AM
7130 if (relocs)
7131 {
dc810e39
AM
7132 if (!add_dynamic_entry (DT_RELA, 0)
7133 || !add_dynamic_entry (DT_RELASZ, 0)
7134 || !add_dynamic_entry (DT_RELAENT, sizeof (Elf64_External_Rela)))
b34976b6 7135 return FALSE;
5bd4f169 7136
65f38f15
AM
7137 /* If any dynamic relocs apply to a read-only section,
7138 then we need a DT_TEXTREL entry. */
248866a8 7139 if ((info->flags & DF_TEXTREL) == 0)
4ce794b7 7140 elf_link_hash_traverse (&htab->elf, readonly_dynrelocs, info);
5bd4f169 7141
65f38f15 7142 if ((info->flags & DF_TEXTREL) != 0)
5bd4f169 7143 {
65f38f15 7144 if (!add_dynamic_entry (DT_TEXTREL, 0))
b34976b6 7145 return FALSE;
5bd4f169 7146 }
5bd4f169 7147 }
5bd4f169 7148 }
65f38f15 7149#undef add_dynamic_entry
5bd4f169 7150
b34976b6 7151 return TRUE;
5bd4f169
AM
7152}
7153
721956f4 7154/* Determine the type of stub needed, if any, for a call. */
5bd4f169 7155
4ce794b7
AM
7156static inline enum ppc_stub_type
7157ppc_type_of_stub (asection *input_sec,
7158 const Elf_Internal_Rela *rel,
7159 struct ppc_link_hash_entry **hash,
7160 bfd_vma destination)
5bd4f169 7161{
721956f4
AM
7162 struct ppc_link_hash_entry *h = *hash;
7163 bfd_vma location;
7164 bfd_vma branch_offset;
7165 bfd_vma max_branch_offset;
4ce794b7 7166 enum elf_ppc64_reloc_type r_type;
5bd4f169 7167
721956f4
AM
7168 if (h != NULL)
7169 {
7170 if (h->oh != NULL
8387904d
AM
7171 && h->oh->is_func_descriptor)
7172 h = h->oh;
7173
7174 if (h->elf.dynindx != -1)
5bd4f169 7175 {
411e1bfb 7176 struct plt_entry *ent;
8387904d
AM
7177
7178 for (ent = h->elf.plt.plist; ent != NULL; ent = ent->next)
411e1bfb
AM
7179 if (ent->addend == rel->r_addend
7180 && ent->plt.offset != (bfd_vma) -1)
7181 {
8387904d 7182 *hash = h;
411e1bfb
AM
7183 return ppc_stub_plt_call;
7184 }
5bd4f169
AM
7185 }
7186
ee7de3e6
AM
7187 if (!(h->elf.root.type == bfd_link_hash_defined
7188 || h->elf.root.type == bfd_link_hash_defweak)
7189 || h->elf.root.u.def.section->output_section == NULL)
721956f4 7190 return ppc_stub_none;
5d1634d7 7191 }
5d1634d7 7192
721956f4
AM
7193 /* Determine where the call point is. */
7194 location = (input_sec->output_offset
7195 + input_sec->output_section->vma
7196 + rel->r_offset);
5d1634d7 7197
721956f4
AM
7198 branch_offset = destination - location;
7199 r_type = ELF64_R_TYPE (rel->r_info);
5d1634d7 7200
721956f4
AM
7201 /* Determine if a long branch stub is needed. */
7202 max_branch_offset = 1 << 25;
4ce794b7 7203 if (r_type != R_PPC64_REL24)
721956f4 7204 max_branch_offset = 1 << 15;
5d1634d7 7205
721956f4
AM
7206 if (branch_offset + max_branch_offset >= 2 * max_branch_offset)
7207 /* We need a stub. Figure out whether a long_branch or plt_branch
7208 is needed later. */
7209 return ppc_stub_long_branch;
5d1634d7 7210
721956f4 7211 return ppc_stub_none;
5d1634d7
AM
7212}
7213
7214/* Build a .plt call stub. */
7215
4ce794b7
AM
7216static inline bfd_byte *
7217build_plt_stub (bfd *obfd, bfd_byte *p, int offset)
5d1634d7
AM
7218{
7219#define PPC_LO(v) ((v) & 0xffff)
7220#define PPC_HI(v) (((v) >> 16) & 0xffff)
7221#define PPC_HA(v) PPC_HI ((v) + 0x8000)
7222
5d1634d7 7223 bfd_put_32 (obfd, ADDIS_R12_R2 | PPC_HA (offset), p), p += 4;
ad8e1ba5 7224 bfd_put_32 (obfd, STD_R2_40R1, p), p += 4;
5d1634d7
AM
7225 bfd_put_32 (obfd, LD_R11_0R12 | PPC_LO (offset), p), p += 4;
7226 if (PPC_HA (offset + 8) != PPC_HA (offset))
ad8e1ba5 7227 bfd_put_32 (obfd, ADDIS_R12_R12 | 1, p), p += 4;
5d1634d7
AM
7228 offset += 8;
7229 bfd_put_32 (obfd, LD_R2_0R12 | PPC_LO (offset), p), p += 4;
7230 if (PPC_HA (offset + 8) != PPC_HA (offset))
ad8e1ba5 7231 bfd_put_32 (obfd, ADDIS_R12_R12 | 1, p), p += 4;
5d1634d7
AM
7232 offset += 8;
7233 bfd_put_32 (obfd, MTCTR_R11, p), p += 4;
7234 bfd_put_32 (obfd, LD_R11_0R12 | PPC_LO (offset), p), p += 4;
7235 bfd_put_32 (obfd, BCTR, p), p += 4;
7236 return p;
7237}
7238
b34976b6 7239static bfd_boolean
4ce794b7 7240ppc_build_one_stub (struct bfd_hash_entry *gen_entry, void *in_arg)
5d1634d7 7241{
721956f4
AM
7242 struct ppc_stub_hash_entry *stub_entry;
7243 struct ppc_branch_hash_entry *br_entry;
5d1634d7
AM
7244 struct bfd_link_info *info;
7245 struct ppc_link_hash_table *htab;
721956f4
AM
7246 bfd_byte *loc;
7247 bfd_byte *p;
7248 unsigned int indx;
411e1bfb 7249 struct plt_entry *ent;
721956f4
AM
7250 bfd_vma off;
7251 int size;
5d1634d7 7252
721956f4
AM
7253 /* Massage our args to the form they really have. */
7254 stub_entry = (struct ppc_stub_hash_entry *) gen_entry;
4ce794b7 7255 info = in_arg;
5d1634d7 7256
5d1634d7
AM
7257 htab = ppc_hash_table (info);
7258
721956f4 7259 /* Make a note of the offset within the stubs for this entry. */
eea6121a 7260 stub_entry->stub_offset = stub_entry->stub_sec->size;
97b639ba 7261 loc = stub_entry->stub_sec->contents + stub_entry->stub_offset;
721956f4 7262
4ce794b7 7263 htab->stub_count[stub_entry->stub_type - 1] += 1;
721956f4 7264 switch (stub_entry->stub_type)
5d1634d7 7265 {
721956f4 7266 case ppc_stub_long_branch:
ad8e1ba5 7267 case ppc_stub_long_branch_r2off:
721956f4
AM
7268 /* Branches are relative. This is where we are going to. */
7269 off = (stub_entry->target_value
7270 + stub_entry->target_section->output_offset
7271 + stub_entry->target_section->output_section->vma);
5d1634d7 7272
721956f4
AM
7273 /* And this is where we are coming from. */
7274 off -= (stub_entry->stub_offset
97b639ba
AM
7275 + stub_entry->stub_sec->output_offset
7276 + stub_entry->stub_sec->output_section->vma);
e86ce104 7277
ad8e1ba5
AM
7278 if (stub_entry->stub_type != ppc_stub_long_branch_r2off)
7279 size = 4;
7280 else
7281 {
7282 bfd_vma r2off;
7283
7284 r2off = (htab->stub_group[stub_entry->target_section->id].toc_off
7285 - htab->stub_group[stub_entry->id_sec->id].toc_off);
97b639ba 7286 bfd_put_32 (htab->stub_bfd, STD_R2_40R1, loc);
ad8e1ba5 7287 loc += 4;
97b639ba 7288 bfd_put_32 (htab->stub_bfd, ADDIS_R2_R2 | PPC_HA (r2off), loc);
ad8e1ba5 7289 loc += 4;
97b639ba 7290 bfd_put_32 (htab->stub_bfd, ADDI_R2_R2 | PPC_LO (r2off), loc);
ad8e1ba5
AM
7291 loc += 4;
7292 off -= 12;
7293 size = 16;
7294 }
97b639ba 7295 bfd_put_32 (htab->stub_bfd, B_DOT | (off & 0x3fffffc), loc);
ad8e1ba5
AM
7296
7297 BFD_ASSERT (off + (1 << 25) < (bfd_vma) (1 << 26));
721956f4 7298 break;
e86ce104 7299
721956f4 7300 case ppc_stub_plt_branch:
ad8e1ba5 7301 case ppc_stub_plt_branch_r2off:
721956f4
AM
7302 br_entry = ppc_branch_hash_lookup (&htab->branch_hash_table,
7303 stub_entry->root.string + 9,
b34976b6 7304 FALSE, FALSE);
721956f4
AM
7305 if (br_entry == NULL)
7306 {
7307 (*_bfd_error_handler) (_("can't find branch stub `%s'"),
7308 stub_entry->root.string + 9);
b34976b6
AM
7309 htab->stub_error = TRUE;
7310 return FALSE;
721956f4
AM
7311 }
7312
7313 off = (stub_entry->target_value
7314 + stub_entry->target_section->output_offset
7315 + stub_entry->target_section->output_section->vma);
7316
4ce794b7
AM
7317 bfd_put_64 (htab->brlt->owner, off,
7318 htab->brlt->contents + br_entry->offset);
721956f4
AM
7319
7320 if (info->shared)
7321 {
7322 /* Create a reloc for the branch lookup table entry. */
7323 Elf_Internal_Rela rela;
ad8e1ba5 7324 bfd_byte *rl;
5d1634d7 7325
721956f4 7326 rela.r_offset = (br_entry->offset
4ce794b7
AM
7327 + htab->brlt->output_offset
7328 + htab->brlt->output_section->vma);
721956f4
AM
7329 rela.r_info = ELF64_R_INFO (0, R_PPC64_RELATIVE);
7330 rela.r_addend = off;
7331
4ce794b7
AM
7332 rl = htab->relbrlt->contents;
7333 rl += htab->relbrlt->reloc_count++ * sizeof (Elf64_External_Rela);
7334 bfd_elf64_swap_reloca_out (htab->relbrlt->owner, &rela, rl);
721956f4
AM
7335 }
7336
7337 off = (br_entry->offset
4ce794b7
AM
7338 + htab->brlt->output_offset
7339 + htab->brlt->output_section->vma
7340 - elf_gp (htab->brlt->output_section->owner)
ad8e1ba5 7341 - htab->stub_group[stub_entry->id_sec->id].toc_off);
721956f4 7342
ad8e1ba5 7343 if (off + 0x80008000 > 0xffffffff || (off & 7) != 0)
5d1634d7
AM
7344 {
7345 (*_bfd_error_handler)
e86ce104 7346 (_("linkage table error against `%s'"),
721956f4 7347 stub_entry->root.string);
5d1634d7 7348 bfd_set_error (bfd_error_bad_value);
b34976b6
AM
7349 htab->stub_error = TRUE;
7350 return FALSE;
5d1634d7 7351 }
41bd81ab 7352
721956f4 7353 indx = off;
ad8e1ba5
AM
7354 if (stub_entry->stub_type != ppc_stub_plt_branch_r2off)
7355 {
97b639ba 7356 bfd_put_32 (htab->stub_bfd, ADDIS_R12_R2 | PPC_HA (indx), loc);
ad8e1ba5 7357 loc += 4;
97b639ba 7358 bfd_put_32 (htab->stub_bfd, LD_R11_0R12 | PPC_LO (indx), loc);
ad8e1ba5
AM
7359 size = 16;
7360 }
7361 else
7362 {
7363 bfd_vma r2off;
7364
7365 r2off = (htab->stub_group[stub_entry->target_section->id].toc_off
7366 - htab->stub_group[stub_entry->id_sec->id].toc_off);
97b639ba 7367 bfd_put_32 (htab->stub_bfd, STD_R2_40R1, loc);
ad8e1ba5 7368 loc += 4;
97b639ba 7369 bfd_put_32 (htab->stub_bfd, ADDIS_R12_R2 | PPC_HA (indx), loc);
ad8e1ba5 7370 loc += 4;
97b639ba 7371 bfd_put_32 (htab->stub_bfd, LD_R11_0R12 | PPC_LO (indx), loc);
ad8e1ba5 7372 loc += 4;
97b639ba 7373 bfd_put_32 (htab->stub_bfd, ADDIS_R2_R2 | PPC_HA (r2off), loc);
ad8e1ba5 7374 loc += 4;
97b639ba 7375 bfd_put_32 (htab->stub_bfd, ADDI_R2_R2 | PPC_LO (r2off), loc);
ad8e1ba5
AM
7376 size = 28;
7377 }
7378 loc += 4;
97b639ba 7379 bfd_put_32 (htab->stub_bfd, MTCTR_R11, loc);
ad8e1ba5 7380 loc += 4;
97b639ba 7381 bfd_put_32 (htab->stub_bfd, BCTR, loc);
721956f4 7382 break;
5d1634d7 7383
721956f4 7384 case ppc_stub_plt_call:
c862ae31
AM
7385 /* Do the best we can for shared libraries built without
7386 exporting ".foo" for each "foo". This can happen when symbol
7387 versioning scripts strip all bar a subset of symbols. */
8387904d
AM
7388 if (stub_entry->h->oh != NULL
7389 && stub_entry->h->oh->elf.root.type != bfd_link_hash_defined
34814b9f 7390 && stub_entry->h->oh->elf.root.type != bfd_link_hash_defweak)
c862ae31
AM
7391 {
7392 /* Point the symbol at the stub. There may be multiple stubs,
7393 we don't really care; The main thing is to make this sym
8f3bab57
AM
7394 defined somewhere. Maybe defining the symbol in the stub
7395 section is a silly idea. If we didn't do this, htab->top_id
7396 could disappear. */
34814b9f
AM
7397 stub_entry->h->oh->elf.root.type = bfd_link_hash_defined;
7398 stub_entry->h->oh->elf.root.u.def.section = stub_entry->stub_sec;
7399 stub_entry->h->oh->elf.root.u.def.value = stub_entry->stub_offset;
c862ae31
AM
7400 }
7401
721956f4 7402 /* Now build the stub. */
411e1bfb
AM
7403 off = (bfd_vma) -1;
7404 for (ent = stub_entry->h->elf.plt.plist; ent != NULL; ent = ent->next)
7405 if (ent->addend == stub_entry->addend)
7406 {
7407 off = ent->plt.offset;
7408 break;
7409 }
721956f4
AM
7410 if (off >= (bfd_vma) -2)
7411 abort ();
7412
7413 off &= ~ (bfd_vma) 1;
4ce794b7
AM
7414 off += (htab->plt->output_offset
7415 + htab->plt->output_section->vma
7416 - elf_gp (htab->plt->output_section->owner)
ad8e1ba5 7417 - htab->stub_group[stub_entry->id_sec->id].toc_off);
721956f4 7418
ad8e1ba5 7419 if (off + 0x80008000 > 0xffffffff || (off & 7) != 0)
721956f4
AM
7420 {
7421 (*_bfd_error_handler)
7422 (_("linkage table error against `%s'"),
7423 stub_entry->h->elf.root.root.string);
7424 bfd_set_error (bfd_error_bad_value);
b34976b6
AM
7425 htab->stub_error = TRUE;
7426 return FALSE;
721956f4
AM
7427 }
7428
97b639ba 7429 p = build_plt_stub (htab->stub_bfd, loc, off);
721956f4
AM
7430 size = p - loc;
7431 break;
7432
7433 default:
7434 BFD_FAIL ();
b34976b6 7435 return FALSE;
721956f4
AM
7436 }
7437
eea6121a 7438 stub_entry->stub_sec->size += size;
97b639ba
AM
7439
7440 if (htab->emit_stub_syms
7441 && !(stub_entry->stub_type == ppc_stub_plt_call
8387904d 7442 && stub_entry->h->oh != NULL
34814b9f
AM
7443 && stub_entry->h->oh->elf.root.type == bfd_link_hash_defined
7444 && stub_entry->h->oh->elf.root.u.def.section == stub_entry->stub_sec
7445 && stub_entry->h->oh->elf.root.u.def.value == stub_entry->stub_offset))
97b639ba
AM
7446 {
7447 struct elf_link_hash_entry *h;
7448 h = elf_link_hash_lookup (&htab->elf, stub_entry->root.string,
7449 TRUE, FALSE, FALSE);
7450 if (h == NULL)
7451 return FALSE;
7452 if (h->root.type == bfd_link_hash_new)
7453 {
7454 h->root.type = bfd_link_hash_defined;
7455 h->root.u.def.section = stub_entry->stub_sec;
7456 h->root.u.def.value = stub_entry->stub_offset;
7457 h->elf_link_hash_flags = (ELF_LINK_HASH_REF_REGULAR
7458 | ELF_LINK_HASH_DEF_REGULAR
7459 | ELF_LINK_HASH_REF_REGULAR_NONWEAK
7460 | ELF_LINK_FORCED_LOCAL);
7461 }
7462 }
7463
b34976b6 7464 return TRUE;
721956f4
AM
7465}
7466
7467/* As above, but don't actually build the stub. Just bump offset so
7468 we know stub section sizes, and select plt_branch stubs where
7469 long_branch stubs won't do. */
7470
b34976b6 7471static bfd_boolean
4ce794b7 7472ppc_size_one_stub (struct bfd_hash_entry *gen_entry, void *in_arg)
721956f4
AM
7473{
7474 struct ppc_stub_hash_entry *stub_entry;
63bc6f6c 7475 struct bfd_link_info *info;
721956f4
AM
7476 struct ppc_link_hash_table *htab;
7477 bfd_vma off;
7478 int size;
7479
7480 /* Massage our args to the form they really have. */
7481 stub_entry = (struct ppc_stub_hash_entry *) gen_entry;
63bc6f6c
AM
7482 info = in_arg;
7483
7484 htab = ppc_hash_table (info);
721956f4
AM
7485
7486 if (stub_entry->stub_type == ppc_stub_plt_call)
7487 {
411e1bfb 7488 struct plt_entry *ent;
58ac9f71 7489 off = (bfd_vma) -1;
411e1bfb
AM
7490 for (ent = stub_entry->h->elf.plt.plist; ent != NULL; ent = ent->next)
7491 if (ent->addend == stub_entry->addend)
7492 {
7493 off = ent->plt.offset & ~(bfd_vma) 1;
7494 break;
7495 }
58ac9f71 7496 if (off >= (bfd_vma) -2)
411e1bfb 7497 abort ();
4ce794b7
AM
7498 off += (htab->plt->output_offset
7499 + htab->plt->output_section->vma
7500 - elf_gp (htab->plt->output_section->owner)
ad8e1ba5 7501 - htab->stub_group[stub_entry->id_sec->id].toc_off);
721956f4 7502
ad8e1ba5 7503 size = PLT_CALL_STUB_SIZE;
4ce794b7 7504 if (PPC_HA (off + 16) != PPC_HA (off))
721956f4
AM
7505 size += 4;
7506 }
7507 else
7508 {
ad8e1ba5
AM
7509 /* ppc_stub_long_branch or ppc_stub_plt_branch, or their r2off
7510 variants. */
721956f4
AM
7511 off = (stub_entry->target_value
7512 + stub_entry->target_section->output_offset
7513 + stub_entry->target_section->output_section->vma);
eea6121a 7514 off -= (stub_entry->stub_sec->size
721956f4
AM
7515 + stub_entry->stub_sec->output_offset
7516 + stub_entry->stub_sec->output_section->vma);
7517
ad8e1ba5
AM
7518 /* Reset the stub type from the plt variant in case we now
7519 can reach with a shorter stub. */
7520 if (stub_entry->stub_type >= ppc_stub_plt_branch)
7521 stub_entry->stub_type += ppc_stub_long_branch - ppc_stub_plt_branch;
7522
7523 size = 4;
7524 if (stub_entry->stub_type == ppc_stub_long_branch_r2off)
7525 {
7526 off -= 12;
7527 size = 16;
7528 }
7529
7530 /* If the branch offset if too big, use a ppc_stub_plt_branch. */
721956f4
AM
7531 if (off + (1 << 25) >= (bfd_vma) (1 << 26))
7532 {
7533 struct ppc_branch_hash_entry *br_entry;
7534
7535 br_entry = ppc_branch_hash_lookup (&htab->branch_hash_table,
7536 stub_entry->root.string + 9,
b34976b6 7537 TRUE, FALSE);
721956f4
AM
7538 if (br_entry == NULL)
7539 {
7540 (*_bfd_error_handler) (_("can't build branch stub `%s'"),
7541 stub_entry->root.string + 9);
b34976b6
AM
7542 htab->stub_error = TRUE;
7543 return FALSE;
721956f4
AM
7544 }
7545
7546 if (br_entry->iter != htab->stub_iteration)
7547 {
7548 br_entry->iter = htab->stub_iteration;
eea6121a
AM
7549 br_entry->offset = htab->brlt->size;
7550 htab->brlt->size += 8;
63bc6f6c
AM
7551
7552 if (info->shared)
eea6121a 7553 htab->relbrlt->size += sizeof (Elf64_External_Rela);
721956f4 7554 }
ad8e1ba5
AM
7555
7556 stub_entry->stub_type += ppc_stub_plt_branch - ppc_stub_long_branch;
721956f4 7557 size = 16;
ad8e1ba5
AM
7558 if (stub_entry->stub_type != ppc_stub_plt_branch)
7559 size = 28;
721956f4
AM
7560 }
7561 }
7562
eea6121a 7563 stub_entry->stub_sec->size += size;
b34976b6 7564 return TRUE;
721956f4
AM
7565}
7566
7567/* Set up various things so that we can make a list of input sections
7568 for each output section included in the link. Returns -1 on error,
cedb70c5 7569 0 when no stubs will be needed, and 1 on success. */
721956f4
AM
7570
7571int
4ce794b7 7572ppc64_elf_setup_section_lists (bfd *output_bfd, struct bfd_link_info *info)
721956f4
AM
7573{
7574 bfd *input_bfd;
734b6cf9 7575 int top_id, top_index, id;
721956f4 7576 asection *section;
734b6cf9 7577 asection **input_list;
721956f4
AM
7578 bfd_size_type amt;
7579 struct ppc_link_hash_table *htab = ppc_hash_table (info);
7580
4ce794b7 7581 if (htab->brlt == NULL)
721956f4
AM
7582 return 0;
7583
1e2f5b6e 7584 /* Find the top input section id. */
3d6f9012 7585 for (input_bfd = info->input_bfds, top_id = 3;
721956f4
AM
7586 input_bfd != NULL;
7587 input_bfd = input_bfd->link_next)
7588 {
721956f4
AM
7589 for (section = input_bfd->sections;
7590 section != NULL;
7591 section = section->next)
7592 {
7593 if (top_id < section->id)
7594 top_id = section->id;
7595 }
7596 }
721956f4 7597
8f3bab57 7598 htab->top_id = top_id;
721956f4 7599 amt = sizeof (struct map_stub) * (top_id + 1);
4ce794b7 7600 htab->stub_group = bfd_zmalloc (amt);
721956f4
AM
7601 if (htab->stub_group == NULL)
7602 return -1;
7603
3d6f9012
AM
7604 /* Set toc_off for com, und, abs and ind sections. */
7605 for (id = 0; id < 3; id++)
7606 htab->stub_group[id].toc_off = TOC_BASE_OFF;
721956f4 7607
3d6f9012 7608 elf_gp (output_bfd) = htab->toc_curr = ppc64_elf_toc (output_bfd);
734b6cf9
AM
7609
7610 /* We can't use output_bfd->section_count here to find the top output
7611 section index as some sections may have been removed, and
7612 _bfd_strip_section_from_output doesn't renumber the indices. */
7613 for (section = output_bfd->sections, top_index = 0;
7614 section != NULL;
7615 section = section->next)
7616 {
7617 if (top_index < section->index)
7618 top_index = section->index;
7619 }
7620
7621 htab->top_index = top_index;
7622 amt = sizeof (asection *) * (top_index + 1);
4ce794b7 7623 input_list = bfd_zmalloc (amt);
734b6cf9
AM
7624 htab->input_list = input_list;
7625 if (input_list == NULL)
7626 return -1;
7627
721956f4
AM
7628 return 1;
7629}
7630
e717da7e
AM
7631/* The linker repeatedly calls this function for each TOC input section
7632 and linker generated GOT section. Group input bfds such that the toc
7633 within a group is less than 64k in size. Will break with cute linker
7634 scripts that play games with dot in the output toc section. */
ad8e1ba5
AM
7635
7636void
4ce794b7 7637ppc64_elf_next_toc_section (struct bfd_link_info *info, asection *isec)
ad8e1ba5
AM
7638{
7639 struct ppc_link_hash_table *htab = ppc_hash_table (info);
99877b66
AM
7640 bfd_vma addr = isec->output_offset + isec->output_section->vma;
7641 bfd_vma off = addr - htab->toc_curr;
ad8e1ba5 7642
99877b66
AM
7643 if (off + isec->size > 0x10000)
7644 htab->toc_curr = addr;
7645
7646 elf_gp (isec->owner) = (htab->toc_curr
7647 - elf_gp (isec->output_section->owner)
7648 + TOC_BASE_OFF);
ad8e1ba5
AM
7649}
7650
7651/* Called after the last call to the above function. */
7652
7653void
4ce794b7
AM
7654ppc64_elf_reinit_toc (bfd *output_bfd ATTRIBUTE_UNUSED,
7655 struct bfd_link_info *info)
ad8e1ba5
AM
7656{
7657 struct ppc_link_hash_table *htab = ppc_hash_table (info);
ad8e1ba5
AM
7658
7659 /* toc_curr tracks the TOC offset used for code sections below in
7660 ppc64_elf_next_input_section. Start off at 0x8000. */
3d6f9012 7661 htab->toc_curr = TOC_BASE_OFF;
ad8e1ba5
AM
7662}
7663
9b5ecbd0
AM
7664/* No toc references were found in ISEC. If the code in ISEC makes no
7665 calls, then there's no need to use toc adjusting stubs when branching
7666 into ISEC. Actually, indirect calls from ISEC are OK as they will
7667 load r2. */
7668
7669static int
4ce794b7 7670toc_adjusting_stub_needed (struct bfd_link_info *info, asection *isec)
9b5ecbd0
AM
7671{
7672 bfd_byte *contents;
7673 bfd_size_type i;
7674 int ret;
7675 int branch_ok;
7676
772119ce
AM
7677 /* We know none of our code bearing sections will need toc stubs. */
7678 if ((isec->flags & SEC_LINKER_CREATED) != 0)
7679 return 0;
7680
eea6121a 7681 if (isec->size == 0)
082c50f8
AM
7682 return 0;
7683
9b5ecbd0
AM
7684 /* Hack for linux kernel. .fixup contains branches, but only back to
7685 the function that hit an exception. */
7686 branch_ok = strcmp (isec->name, ".fixup") == 0;
7687
7688 contents = elf_section_data (isec)->this_hdr.contents;
7689 if (contents == NULL)
7690 {
eea6121a 7691 if (!bfd_malloc_and_get_section (isec->owner, isec, &contents))
9b5ecbd0 7692 {
eea6121a
AM
7693 if (contents != NULL)
7694 free (contents);
9b5ecbd0
AM
7695 return -1;
7696 }
7697 if (info->keep_memory)
7698 elf_section_data (isec)->this_hdr.contents = contents;
7699 }
7700
7701 /* Code scan, because we don't necessarily have relocs on calls to
7702 static functions. */
7703 ret = 0;
eea6121a 7704 for (i = 0; i < isec->size; i += 4)
9b5ecbd0
AM
7705 {
7706 unsigned long insn = bfd_get_32 (isec->owner, contents + i);
7707 /* Is this a branch? */
772119ce 7708 if ((insn & (0x3f << 26)) == (18 << 26)
9b5ecbd0
AM
7709 /* If branch and link, it's a function call. */
7710 && ((insn & 1) != 0
7711 /* Sibling calls use a plain branch. I don't know a way
7712 of deciding whether a branch is really a sibling call. */
7713 || !branch_ok))
7714 {
7715 ret = 1;
7716 break;
7717 }
7718 }
7719
7720 if (elf_section_data (isec)->this_hdr.contents != contents)
7721 free (contents);
7722 return ret;
7723}
7724
721956f4
AM
7725/* The linker repeatedly calls this function for each input section,
7726 in the order that input sections are linked into output sections.
7727 Build lists of input sections to determine groupings between which
7728 we may insert linker stubs. */
7729
9b5ecbd0 7730bfd_boolean
4ce794b7 7731ppc64_elf_next_input_section (struct bfd_link_info *info, asection *isec)
721956f4
AM
7732{
7733 struct ppc_link_hash_table *htab = ppc_hash_table (info);
9b5ecbd0 7734 int ret;
721956f4 7735
734b6cf9
AM
7736 if ((isec->output_section->flags & SEC_CODE) != 0
7737 && isec->output_section->index <= htab->top_index)
721956f4 7738 {
734b6cf9 7739 asection **list = htab->input_list + isec->output_section->index;
3d6f9012 7740 /* Steal the link_sec pointer for our list. */
721956f4 7741#define PREV_SEC(sec) (htab->stub_group[(sec)->id].link_sec)
3d6f9012
AM
7742 /* This happens to make the list in reverse order,
7743 which is what we want. */
734b6cf9
AM
7744 PREV_SEC (isec) = *list;
7745 *list = isec;
721956f4 7746 }
ad8e1ba5
AM
7747
7748 /* If a code section has a function that uses the TOC then we need
7749 to use the right TOC (obviously). Also, make sure that .opd gets
ee87f2da
AM
7750 the correct TOC value for R_PPC64_TOC relocs that don't have or
7751 can't find their function symbol (shouldn't ever happen now). */
ad8e1ba5 7752 if (isec->has_gp_reloc || (isec->flags & SEC_CODE) == 0)
9b5ecbd0
AM
7753 {
7754 if (elf_gp (isec->owner) != 0)
7755 htab->toc_curr = elf_gp (isec->owner);
7756 }
7757 else if ((ret = toc_adjusting_stub_needed (info, isec)) < 0)
7758 return FALSE;
7759 else
7760 isec->has_gp_reloc = ret;
ad8e1ba5
AM
7761
7762 /* Functions that don't use the TOC can belong in any TOC group.
7763 Use the last TOC base. This happens to make _init and _fini
7764 pasting work. */
7765 htab->stub_group[isec->id].toc_off = htab->toc_curr;
9b5ecbd0 7766 return TRUE;
721956f4
AM
7767}
7768
7769/* See whether we can group stub sections together. Grouping stub
7770 sections may result in fewer stubs. More importantly, we need to
7771 put all .init* and .fini* stubs at the beginning of the .init or
7772 .fini output sections respectively, because glibc splits the
7773 _init and _fini functions into multiple parts. Putting a stub in
7774 the middle of a function is not a good idea. */
7775
7776static void
4ce794b7
AM
7777group_sections (struct ppc_link_hash_table *htab,
7778 bfd_size_type stub_group_size,
7779 bfd_boolean stubs_always_before_branch)
721956f4 7780{
734b6cf9
AM
7781 asection **list = htab->input_list + htab->top_index;
7782 do
721956f4 7783 {
734b6cf9
AM
7784 asection *tail = *list;
7785 while (tail != NULL)
721956f4 7786 {
734b6cf9
AM
7787 asection *curr;
7788 asection *prev;
7789 bfd_size_type total;
7790 bfd_boolean big_sec;
7791 bfd_vma curr_toc;
7792
7793 curr = tail;
eea6121a 7794 total = tail->size;
734b6cf9
AM
7795 big_sec = total >= stub_group_size;
7796 curr_toc = htab->stub_group[tail->id].toc_off;
7797
7798 while ((prev = PREV_SEC (curr)) != NULL
7799 && ((total += curr->output_offset - prev->output_offset)
ad8e1ba5
AM
7800 < stub_group_size)
7801 && htab->stub_group[prev->id].toc_off == curr_toc)
734b6cf9
AM
7802 curr = prev;
7803
7804 /* OK, the size from the start of CURR to the end is less
7805 than stub_group_size and thus can be handled by one stub
7806 section. (or the tail section is itself larger than
7807 stub_group_size, in which case we may be toast.) We
7808 should really be keeping track of the total size of stubs
7809 added here, as stubs contribute to the final output
7810 section size. That's a little tricky, and this way will
7811 only break if stubs added make the total size more than
7812 2^25, ie. for the default stub_group_size, if stubs total
7813 more than 2097152 bytes, or nearly 75000 plt call stubs. */
7814 do
721956f4
AM
7815 {
7816 prev = PREV_SEC (tail);
734b6cf9 7817 /* Set up this stub group. */
721956f4
AM
7818 htab->stub_group[tail->id].link_sec = curr;
7819 }
734b6cf9
AM
7820 while (tail != curr && (tail = prev) != NULL);
7821
7822 /* But wait, there's more! Input sections up to stub_group_size
7823 bytes before the stub section can be handled by it too.
7824 Don't do this if we have a really large section after the
7825 stubs, as adding more stubs increases the chance that
7826 branches may not reach into the stub section. */
7827 if (!stubs_always_before_branch && !big_sec)
7828 {
7829 total = 0;
7830 while (prev != NULL
7831 && ((total += tail->output_offset - prev->output_offset)
7832 < stub_group_size)
7833 && htab->stub_group[prev->id].toc_off == curr_toc)
7834 {
7835 tail = prev;
7836 prev = PREV_SEC (tail);
7837 htab->stub_group[tail->id].link_sec = curr;
7838 }
7839 }
7840 tail = prev;
721956f4
AM
7841 }
7842 }
734b6cf9
AM
7843 while (list-- != htab->input_list);
7844 free (htab->input_list);
721956f4
AM
7845#undef PREV_SEC
7846}
7847
721956f4
AM
7848/* Determine and set the size of the stub section for a final link.
7849
7850 The basic idea here is to examine all the relocations looking for
7851 PC-relative calls to a target that is unreachable with a "bl"
7852 instruction. */
7853
b34976b6 7854bfd_boolean
4ce794b7 7855ppc64_elf_size_stubs (bfd *output_bfd,
4ce794b7
AM
7856 struct bfd_link_info *info,
7857 bfd_signed_vma group_size,
7858 asection *(*add_stub_section) (const char *, asection *),
7859 void (*layout_sections_again) (void))
721956f4
AM
7860{
7861 bfd_size_type stub_group_size;
b34976b6 7862 bfd_boolean stubs_always_before_branch;
721956f4
AM
7863 struct ppc_link_hash_table *htab = ppc_hash_table (info);
7864
7865 /* Stash our params away. */
721956f4
AM
7866 htab->add_stub_section = add_stub_section;
7867 htab->layout_sections_again = layout_sections_again;
7868 stubs_always_before_branch = group_size < 0;
7869 if (group_size < 0)
7870 stub_group_size = -group_size;
7871 else
7872 stub_group_size = group_size;
7873 if (stub_group_size == 1)
7874 {
7875 /* Default values. */
58ac9f71
AM
7876 if (stubs_always_before_branch)
7877 {
7878 stub_group_size = 0x1e00000;
7879 if (htab->has_14bit_branch)
7880 stub_group_size = 0x7800;
7881 }
7882 else
7883 {
7884 stub_group_size = 0x1c00000;
7885 if (htab->has_14bit_branch)
7886 stub_group_size = 0x7000;
7887 }
721956f4
AM
7888 }
7889
7890 group_sections (htab, stub_group_size, stubs_always_before_branch);
7891
721956f4
AM
7892 while (1)
7893 {
7894 bfd *input_bfd;
7895 unsigned int bfd_indx;
7896 asection *stub_sec;
b34976b6 7897 bfd_boolean stub_changed;
721956f4
AM
7898
7899 htab->stub_iteration += 1;
b34976b6 7900 stub_changed = FALSE;
721956f4
AM
7901
7902 for (input_bfd = info->input_bfds, bfd_indx = 0;
7903 input_bfd != NULL;
7904 input_bfd = input_bfd->link_next, bfd_indx++)
7905 {
7906 Elf_Internal_Shdr *symtab_hdr;
7907 asection *section;
6cdc0ccc 7908 Elf_Internal_Sym *local_syms = NULL;
721956f4
AM
7909
7910 /* We'll need the symbol table in a second. */
7911 symtab_hdr = &elf_tdata (input_bfd)->symtab_hdr;
7912 if (symtab_hdr->sh_info == 0)
7913 continue;
7914
721956f4
AM
7915 /* Walk over each section attached to the input bfd. */
7916 for (section = input_bfd->sections;
7917 section != NULL;
7918 section = section->next)
7919 {
721956f4 7920 Elf_Internal_Rela *internal_relocs, *irelaend, *irela;
721956f4
AM
7921
7922 /* If there aren't any relocs, then there's nothing more
7923 to do. */
7924 if ((section->flags & SEC_RELOC) == 0
7925 || section->reloc_count == 0)
7926 continue;
7927
7928 /* If this section is a link-once section that will be
7929 discarded, then don't create any stubs. */
7930 if (section->output_section == NULL
7931 || section->output_section->owner != output_bfd)
7932 continue;
7933
1e2f5b6e
AM
7934 /* Get the relocs. */
7935 internal_relocs
4ce794b7 7936 = _bfd_elf_link_read_relocs (input_bfd, section, NULL, NULL,
45d6a902 7937 info->keep_memory);
721956f4 7938 if (internal_relocs == NULL)
1e2f5b6e 7939 goto error_ret_free_local;
721956f4
AM
7940
7941 /* Now examine each relocation. */
7942 irela = internal_relocs;
7943 irelaend = irela + section->reloc_count;
7944 for (; irela < irelaend; irela++)
7945 {
4ce794b7
AM
7946 enum elf_ppc64_reloc_type r_type;
7947 unsigned int r_indx;
721956f4
AM
7948 enum ppc_stub_type stub_type;
7949 struct ppc_stub_hash_entry *stub_entry;
8387904d 7950 asection *sym_sec, *code_sec;
721956f4
AM
7951 bfd_vma sym_value;
7952 bfd_vma destination;
8843416a 7953 bfd_boolean ok_dest;
721956f4 7954 struct ppc_link_hash_entry *hash;
8387904d 7955 struct ppc_link_hash_entry *fdh;
411e1bfb
AM
7956 struct elf_link_hash_entry *h;
7957 Elf_Internal_Sym *sym;
721956f4
AM
7958 char *stub_name;
7959 const asection *id_sec;
8387904d 7960 long *opd_adjust;
721956f4
AM
7961
7962 r_type = ELF64_R_TYPE (irela->r_info);
7963 r_indx = ELF64_R_SYM (irela->r_info);
7964
4ce794b7 7965 if (r_type >= R_PPC64_max)
721956f4
AM
7966 {
7967 bfd_set_error (bfd_error_bad_value);
6cdc0ccc 7968 goto error_ret_free_internal;
721956f4
AM
7969 }
7970
7971 /* Only look for stubs on branch instructions. */
4ce794b7
AM
7972 if (r_type != R_PPC64_REL24
7973 && r_type != R_PPC64_REL14
7974 && r_type != R_PPC64_REL14_BRTAKEN
7975 && r_type != R_PPC64_REL14_BRNTAKEN)
721956f4
AM
7976 continue;
7977
7978 /* Now determine the call target, its name, value,
7979 section. */
411e1bfb
AM
7980 if (!get_sym_h (&h, &sym, &sym_sec, NULL, &local_syms,
7981 r_indx, input_bfd))
7982 goto error_ret_free_internal;
7983 hash = (struct ppc_link_hash_entry *) h;
7984
8843416a 7985 ok_dest = FALSE;
8387904d 7986 fdh = NULL;
411e1bfb 7987 if (hash == NULL)
721956f4 7988 {
411e1bfb 7989 sym_value = sym->st_value;
8843416a 7990 ok_dest = TRUE;
721956f4
AM
7991 }
7992 else
7993 {
411e1bfb 7994 sym_value = 0;
99877b66
AM
7995 /* Recognise an old ABI func code entry sym, and
7996 use the func descriptor sym instead. */
7997 if (hash->elf.root.type == bfd_link_hash_undefweak
8387904d
AM
7998 && hash->elf.root.root.string[0] == '.'
7999 && (fdh = get_fdh (hash, htab)) != NULL)
8000 {
8387904d
AM
8001 if (fdh->elf.root.type == bfd_link_hash_defined
8002 || fdh->elf.root.type == bfd_link_hash_defweak)
8003 {
8004 sym_sec = fdh->elf.root.u.def.section;
8005 sym_value = fdh->elf.root.u.def.value;
8006 if (sym_sec->output_section != NULL)
8007 ok_dest = TRUE;
8008 }
99877b66
AM
8009 else
8010 fdh = NULL;
8387904d
AM
8011 }
8012 else if (hash->elf.root.type == bfd_link_hash_defined
8013 || hash->elf.root.type == bfd_link_hash_defweak)
721956f4 8014 {
721956f4
AM
8015 sym_value = hash->elf.root.u.def.value;
8016 if (sym_sec->output_section != NULL)
8843416a 8017 ok_dest = TRUE;
721956f4
AM
8018 }
8019 else if (hash->elf.root.type == bfd_link_hash_undefweak)
8020 ;
8021 else if (hash->elf.root.type == bfd_link_hash_undefined)
8022 ;
8023 else
8024 {
8025 bfd_set_error (bfd_error_bad_value);
8026 goto error_ret_free_internal;
8027 }
8028 }
8029
8843416a
AM
8030 destination = 0;
8031 if (ok_dest)
8032 {
8033 sym_value += irela->r_addend;
8034 destination = (sym_value
8035 + sym_sec->output_offset
8036 + sym_sec->output_section->vma);
8037 }
8038
8387904d
AM
8039 code_sec = sym_sec;
8040 opd_adjust = get_opd_info (sym_sec);
8041 if (opd_adjust != NULL)
8042 {
8043 bfd_vma dest;
8044
8045 if (hash == NULL)
8046 {
3f764659 8047 long adjust = opd_adjust[sym_value / 8];
8387904d
AM
8048 if (adjust == -1)
8049 continue;
8050 sym_value += adjust;
8051 }
8052 dest = opd_entry_value (sym_sec, sym_value,
8053 &code_sec, &sym_value);
8054 if (dest != (bfd_vma) -1)
8055 {
8056 destination = dest;
8057 if (fdh != NULL)
8058 {
8059 /* Fixup old ABI sym to point at code
8060 entry. */
99877b66 8061 hash->elf.root.type = bfd_link_hash_defweak;
8387904d
AM
8062 hash->elf.root.u.def.section = code_sec;
8063 hash->elf.root.u.def.value = sym_value;
8064 }
8065 }
8066 }
8067
721956f4
AM
8068 /* Determine what (if any) linker stub is needed. */
8069 stub_type = ppc_type_of_stub (section, irela, &hash,
8070 destination);
ad8e1ba5
AM
8071
8072 if (stub_type != ppc_stub_plt_call)
8073 {
8074 /* Check whether we need a TOC adjusting stub.
8075 Since the linker pastes together pieces from
8076 different object files when creating the
8077 _init and _fini functions, it may be that a
8078 call to what looks like a local sym is in
8079 fact a call needing a TOC adjustment. */
8387904d
AM
8080 if (code_sec != NULL
8081 && code_sec->output_section != NULL
8082 && (htab->stub_group[code_sec->id].toc_off
9b5ecbd0 8083 != htab->stub_group[section->id].toc_off)
8387904d 8084 && code_sec->has_gp_reloc
9b5ecbd0 8085 && section->has_gp_reloc)
ad8e1ba5
AM
8086 stub_type = ppc_stub_long_branch_r2off;
8087 }
8088
721956f4
AM
8089 if (stub_type == ppc_stub_none)
8090 continue;
8091
411e1bfb
AM
8092 /* __tls_get_addr calls might be eliminated. */
8093 if (stub_type != ppc_stub_plt_call
8094 && hash != NULL
8387904d
AM
8095 && (hash == htab->tls_get_addr
8096 || hash == htab->tls_get_addr_fd)
411e1bfb
AM
8097 && section->has_tls_reloc
8098 && irela != internal_relocs)
8099 {
8100 /* Get tls info. */
e7b938ca 8101 char *tls_mask;
411e1bfb 8102
0d4792f7 8103 if (!get_tls_mask (&tls_mask, NULL, &local_syms,
411e1bfb
AM
8104 irela - 1, input_bfd))
8105 goto error_ret_free_internal;
e7b938ca 8106 if (*tls_mask != 0)
411e1bfb
AM
8107 continue;
8108 }
8109
721956f4
AM
8110 /* Support for grouping stub sections. */
8111 id_sec = htab->stub_group[section->id].link_sec;
8112
8113 /* Get the name of this stub. */
8114 stub_name = ppc_stub_name (id_sec, sym_sec, hash, irela);
8115 if (!stub_name)
8116 goto error_ret_free_internal;
8117
8118 stub_entry = ppc_stub_hash_lookup (&htab->stub_hash_table,
b34976b6 8119 stub_name, FALSE, FALSE);
721956f4
AM
8120 if (stub_entry != NULL)
8121 {
8122 /* The proper stub has already been created. */
8123 free (stub_name);
8124 continue;
8125 }
8126
8127 stub_entry = ppc_add_stub (stub_name, section, htab);
8128 if (stub_entry == NULL)
8129 {
8130 free (stub_name);
6cdc0ccc
AM
8131 error_ret_free_internal:
8132 if (elf_section_data (section)->relocs == NULL)
8133 free (internal_relocs);
8134 error_ret_free_local:
8135 if (local_syms != NULL
8136 && (symtab_hdr->contents
8137 != (unsigned char *) local_syms))
8138 free (local_syms);
b34976b6 8139 return FALSE;
721956f4
AM
8140 }
8141
ad8e1ba5 8142 stub_entry->stub_type = stub_type;
721956f4 8143 stub_entry->target_value = sym_value;
8387904d 8144 stub_entry->target_section = code_sec;
721956f4 8145 stub_entry->h = hash;
411e1bfb 8146 stub_entry->addend = irela->r_addend;
b34976b6 8147 stub_changed = TRUE;
721956f4
AM
8148 }
8149
8150 /* We're done with the internal relocs, free them. */
6cdc0ccc 8151 if (elf_section_data (section)->relocs != internal_relocs)
1e2f5b6e 8152 free (internal_relocs);
721956f4 8153 }
6cdc0ccc
AM
8154
8155 if (local_syms != NULL
8156 && symtab_hdr->contents != (unsigned char *) local_syms)
8157 {
8158 if (!info->keep_memory)
8159 free (local_syms);
8160 else
8161 symtab_hdr->contents = (unsigned char *) local_syms;
8162 }
721956f4
AM
8163 }
8164
8165 if (!stub_changed)
8166 break;
8167
8168 /* OK, we've added some stubs. Find out the new size of the
8169 stub sections. */
8170 for (stub_sec = htab->stub_bfd->sections;
8171 stub_sec != NULL;
8172 stub_sec = stub_sec->next)
e717da7e 8173 if ((stub_sec->flags & SEC_LINKER_CREATED) == 0)
eea6121a
AM
8174 stub_sec->size = 0;
8175
8176 htab->brlt->size = 0;
63bc6f6c 8177 if (info->shared)
eea6121a 8178 htab->relbrlt->size = 0;
721956f4 8179
63bc6f6c 8180 bfd_hash_traverse (&htab->stub_hash_table, ppc_size_one_stub, info);
721956f4
AM
8181
8182 /* Ask the linker to do its stuff. */
8183 (*htab->layout_sections_again) ();
8184 }
8185
afbe61cf
AM
8186 /* It would be nice to strip .branch_lt from the output if the
8187 section is empty, but it's too late. If we strip sections here,
8188 the dynamic symbol table is corrupted since the section symbol
8189 for the stripped section isn't written. */
721956f4 8190
b34976b6 8191 return TRUE;
721956f4
AM
8192}
8193
8194/* Called after we have determined section placement. If sections
805fc799 8195 move, we'll be called again. Provide a value for TOCstart. */
721956f4 8196
805fc799 8197bfd_vma
4ce794b7 8198ppc64_elf_toc (bfd *obfd)
721956f4 8199{
805fc799
AM
8200 asection *s;
8201 bfd_vma TOCstart;
721956f4 8202
805fc799
AM
8203 /* The TOC consists of sections .got, .toc, .tocbss, .plt in that
8204 order. The TOC starts where the first of these sections starts. */
8205 s = bfd_get_section_by_name (obfd, ".got");
8206 if (s == NULL)
8207 s = bfd_get_section_by_name (obfd, ".toc");
8208 if (s == NULL)
8209 s = bfd_get_section_by_name (obfd, ".tocbss");
8210 if (s == NULL)
8211 s = bfd_get_section_by_name (obfd, ".plt");
8212 if (s == NULL)
8213 {
8214 /* This may happen for
8215 o references to TOC base (SYM@toc / TOC[tc0]) without a
8216 .toc directive
8217 o bad linker script
8218 o --gc-sections and empty TOC sections
8219
8220 FIXME: Warn user? */
8221
8222 /* Look for a likely section. We probably won't even be
8223 using TOCstart. */
8224 for (s = obfd->sections; s != NULL; s = s->next)
8225 if ((s->flags & (SEC_ALLOC | SEC_SMALL_DATA | SEC_READONLY))
8226 == (SEC_ALLOC | SEC_SMALL_DATA))
8227 break;
721956f4 8228 if (s == NULL)
805fc799
AM
8229 for (s = obfd->sections; s != NULL; s = s->next)
8230 if ((s->flags & (SEC_ALLOC | SEC_SMALL_DATA))
8231 == (SEC_ALLOC | SEC_SMALL_DATA))
8232 break;
721956f4 8233 if (s == NULL)
805fc799
AM
8234 for (s = obfd->sections; s != NULL; s = s->next)
8235 if ((s->flags & (SEC_ALLOC | SEC_READONLY)) == SEC_ALLOC)
8236 break;
721956f4 8237 if (s == NULL)
805fc799
AM
8238 for (s = obfd->sections; s != NULL; s = s->next)
8239 if ((s->flags & SEC_ALLOC) == SEC_ALLOC)
8240 break;
8241 }
721956f4 8242
805fc799
AM
8243 TOCstart = 0;
8244 if (s != NULL)
8245 TOCstart = s->output_section->vma + s->output_offset;
721956f4 8246
805fc799 8247 return TOCstart;
721956f4
AM
8248}
8249
8250/* Build all the stubs associated with the current output file.
8251 The stubs are kept in a hash table attached to the main linker
8252 hash table. This function is called via gldelf64ppc_finish. */
8253
b34976b6 8254bfd_boolean
4ce794b7
AM
8255ppc64_elf_build_stubs (bfd_boolean emit_stub_syms,
8256 struct bfd_link_info *info,
8257 char **stats)
5d1634d7
AM
8258{
8259 struct ppc_link_hash_table *htab = ppc_hash_table (info);
721956f4 8260 asection *stub_sec;
5d1634d7 8261 bfd_byte *p;
e717da7e 8262 int stub_sec_count = 0;
5d1634d7 8263
ad8e1ba5 8264 htab->emit_stub_syms = emit_stub_syms;
eea6121a
AM
8265
8266 /* Allocate memory to hold the linker stubs. */
721956f4
AM
8267 for (stub_sec = htab->stub_bfd->sections;
8268 stub_sec != NULL;
8269 stub_sec = stub_sec->next)
eea6121a
AM
8270 if ((stub_sec->flags & SEC_LINKER_CREATED) == 0
8271 && stub_sec->size != 0)
e717da7e 8272 {
eea6121a
AM
8273 stub_sec->contents = bfd_zalloc (htab->stub_bfd, stub_sec->size);
8274 if (stub_sec->contents == NULL)
8275 return FALSE;
8276 /* We want to check that built size is the same as calculated
8277 size. rawsize is a convenient location to use. */
8278 stub_sec->rawsize = stub_sec->size;
8279 stub_sec->size = 0;
e717da7e 8280 }
5d1634d7 8281
4ce794b7 8282 if (htab->plt != NULL)
5d1634d7 8283 {
9f951329 8284 unsigned int indx;
ad8e1ba5 8285 bfd_vma plt0;
9f951329 8286
721956f4 8287 /* Build the .glink plt call stub. */
4ce794b7
AM
8288 plt0 = (htab->plt->output_section->vma
8289 + htab->plt->output_offset
8290 - (htab->glink->output_section->vma
8291 + htab->glink->output_offset
ad8e1ba5
AM
8292 + GLINK_CALL_STUB_SIZE));
8293 if (plt0 + 0x80008000 > 0xffffffff)
721956f4 8294 {
ad8e1ba5
AM
8295 (*_bfd_error_handler) (_(".glink and .plt too far apart"));
8296 bfd_set_error (bfd_error_bad_value);
8297 return FALSE;
721956f4 8298 }
721956f4 8299
97b639ba
AM
8300 if (htab->emit_stub_syms)
8301 {
8302 struct elf_link_hash_entry *h;
8303 h = elf_link_hash_lookup (&htab->elf, "__glink", TRUE, FALSE, FALSE);
8304 if (h == NULL)
8305 return FALSE;
8306 if (h->root.type == bfd_link_hash_new)
8307 {
8308 h->root.type = bfd_link_hash_defined;
8309 h->root.u.def.section = htab->glink;
8310 h->root.u.def.value = 0;
8311 h->elf_link_hash_flags = (ELF_LINK_HASH_REF_REGULAR
8312 | ELF_LINK_HASH_DEF_REGULAR
8313 | ELF_LINK_HASH_REF_REGULAR_NONWEAK
8314 | ELF_LINK_FORCED_LOCAL);
8315 }
8316 }
4ce794b7
AM
8317 p = htab->glink->contents;
8318 bfd_put_32 (htab->glink->owner, MFCTR_R12, p);
ad8e1ba5 8319 p += 4;
4ce794b7 8320 bfd_put_32 (htab->glink->owner, SLDI_R11_R0_3, p);
ad8e1ba5 8321 p += 4;
4ce794b7 8322 bfd_put_32 (htab->glink->owner, ADDIC_R2_R0_32K, p);
ad8e1ba5 8323 p += 4;
4ce794b7 8324 bfd_put_32 (htab->glink->owner, SUB_R12_R12_R11, p);
ad8e1ba5 8325 p += 4;
4ce794b7 8326 bfd_put_32 (htab->glink->owner, SRADI_R2_R2_63, p);
ad8e1ba5 8327 p += 4;
4ce794b7 8328 bfd_put_32 (htab->glink->owner, SLDI_R11_R0_2, p);
ad8e1ba5 8329 p += 4;
4ce794b7 8330 bfd_put_32 (htab->glink->owner, AND_R2_R2_R11, p);
ad8e1ba5 8331 p += 4;
4ce794b7 8332 bfd_put_32 (htab->glink->owner, SUB_R12_R12_R11, p);
ad8e1ba5 8333 p += 4;
4ce794b7 8334 bfd_put_32 (htab->glink->owner, ADD_R12_R12_R2, p);
ad8e1ba5 8335 p += 4;
4ce794b7 8336 bfd_put_32 (htab->glink->owner, ADDIS_R12_R12 | PPC_HA (plt0), p);
ad8e1ba5 8337 p += 4;
4ce794b7 8338 bfd_put_32 (htab->glink->owner, LD_R11_0R12 | PPC_LO (plt0), p);
ad8e1ba5 8339 p += 4;
4ce794b7 8340 bfd_put_32 (htab->glink->owner, ADDI_R12_R12 | PPC_LO (plt0), p);
ad8e1ba5 8341 p += 4;
4ce794b7 8342 bfd_put_32 (htab->glink->owner, LD_R2_0R12 | 8, p);
ad8e1ba5 8343 p += 4;
4ce794b7 8344 bfd_put_32 (htab->glink->owner, MTCTR_R11, p);
ad8e1ba5 8345 p += 4;
4ce794b7 8346 bfd_put_32 (htab->glink->owner, LD_R11_0R12 | 16, p);
ad8e1ba5 8347 p += 4;
4ce794b7 8348 bfd_put_32 (htab->glink->owner, BCTR, p);
ad8e1ba5
AM
8349 p += 4;
8350
9f951329
AM
8351 /* Build the .glink lazy link call stubs. */
8352 indx = 0;
eea6121a 8353 while (p < htab->glink->contents + htab->glink->size)
9f951329
AM
8354 {
8355 if (indx < 0x8000)
8356 {
4ce794b7 8357 bfd_put_32 (htab->glink->owner, LI_R0_0 | indx, p);
9f951329
AM
8358 p += 4;
8359 }
8360 else
8361 {
4ce794b7 8362 bfd_put_32 (htab->glink->owner, LIS_R0_0 | PPC_HI (indx), p);
9f951329 8363 p += 4;
4ce794b7 8364 bfd_put_32 (htab->glink->owner, ORI_R0_R0_0 | PPC_LO (indx), p);
9f951329
AM
8365 p += 4;
8366 }
4ce794b7
AM
8367 bfd_put_32 (htab->glink->owner,
8368 B_DOT | ((htab->glink->contents - p) & 0x3fffffc), p);
a16d5acb 8369 indx++;
9f951329
AM
8370 p += 4;
8371 }
eea6121a 8372 htab->glink->rawsize = p - htab->glink->contents;
5d1634d7 8373 }
5d1634d7 8374
eea6121a 8375 if (htab->brlt->size != 0)
721956f4 8376 {
4ce794b7 8377 htab->brlt->contents = bfd_zalloc (htab->brlt->owner,
eea6121a 8378 htab->brlt->size);
4ce794b7 8379 if (htab->brlt->contents == NULL)
b34976b6 8380 return FALSE;
721956f4 8381 }
eea6121a 8382 if (info->shared && htab->relbrlt->size != 0)
63bc6f6c
AM
8383 {
8384 htab->relbrlt->contents = bfd_zalloc (htab->relbrlt->owner,
eea6121a 8385 htab->relbrlt->size);
63bc6f6c
AM
8386 if (htab->relbrlt->contents == NULL)
8387 return FALSE;
8388 }
5d1634d7 8389
721956f4
AM
8390 /* Build the stubs as directed by the stub hash table. */
8391 bfd_hash_traverse (&htab->stub_hash_table, ppc_build_one_stub, info);
5d1634d7 8392
721956f4
AM
8393 for (stub_sec = htab->stub_bfd->sections;
8394 stub_sec != NULL;
8395 stub_sec = stub_sec->next)
e717da7e
AM
8396 if ((stub_sec->flags & SEC_LINKER_CREATED) == 0)
8397 {
8398 stub_sec_count += 1;
eea6121a 8399 if (stub_sec->rawsize != stub_sec->size)
e717da7e
AM
8400 break;
8401 }
5d1634d7 8402
721956f4 8403 if (stub_sec != NULL
eea6121a 8404 || htab->glink->rawsize != htab->glink->size)
5d1634d7 8405 {
b34976b6 8406 htab->stub_error = TRUE;
721956f4 8407 (*_bfd_error_handler) (_("stubs don't match calculated size"));
5d1634d7 8408 }
721956f4 8409
d2a300cf
AM
8410 if (htab->stub_error)
8411 return FALSE;
8412
8413 if (stats != NULL)
8414 {
8415 *stats = bfd_malloc (500);
8416 if (*stats == NULL)
8417 return FALSE;
8418
8419 sprintf (*stats, _("linker stubs in %u groups\n"
8420 " branch %lu\n"
8421 " toc adjust %lu\n"
8422 " long branch %lu\n"
8423 " long toc adj %lu\n"
8424 " plt call %lu"),
e717da7e 8425 stub_sec_count,
4ce794b7
AM
8426 htab->stub_count[ppc_stub_long_branch - 1],
8427 htab->stub_count[ppc_stub_long_branch_r2off - 1],
8428 htab->stub_count[ppc_stub_plt_branch - 1],
8429 htab->stub_count[ppc_stub_plt_branch_r2off - 1],
8430 htab->stub_count[ppc_stub_plt_call - 1]);
d2a300cf
AM
8431 }
8432 return TRUE;
5bd4f169
AM
8433}
8434
99877b66
AM
8435/* This function undoes the changes made by add_symbol_adjust. */
8436
8437static bfd_boolean
8438undo_symbol_twiddle (struct elf_link_hash_entry *h, void *inf ATTRIBUTE_UNUSED)
8439{
8440 struct ppc_link_hash_entry *eh;
8441
8442 if (h->root.type == bfd_link_hash_indirect)
8443 return TRUE;
8444
8445 if (h->root.type == bfd_link_hash_warning)
8446 h = (struct elf_link_hash_entry *) h->root.u.i.link;
8447
8448 eh = (struct ppc_link_hash_entry *) h;
8449 if (eh->elf.root.type != bfd_link_hash_undefweak || !eh->was_undefined)
8450 return TRUE;
8451
8452 eh->elf.root.type = bfd_link_hash_undefined;
8453 return TRUE;
8454}
8455
8456void
8457ppc64_elf_restore_symbols (struct bfd_link_info *info)
8458{
8459 struct ppc_link_hash_table *htab = ppc_hash_table (info);
8460 elf_link_hash_traverse (&htab->elf, undo_symbol_twiddle, info);
8461}
8462
5bd4f169
AM
8463/* The RELOCATE_SECTION function is called by the ELF backend linker
8464 to handle the relocations for a section.
8465
8466 The relocs are always passed as Rela structures; if the section
8467 actually uses Rel structures, the r_addend field will always be
8468 zero.
8469
8470 This function is responsible for adjust the section contents as
8471 necessary, and (if using Rela relocs and generating a
1049f94e 8472 relocatable output file) adjusting the reloc addend as
5bd4f169
AM
8473 necessary.
8474
8475 This function does not have to worry about setting the reloc
8476 address or the reloc symbol index.
8477
8478 LOCAL_SYMS is a pointer to the swapped in local symbols.
8479
8480 LOCAL_SECTIONS is an array giving the section in the input file
8481 corresponding to the st_shndx field of each local symbol.
8482
8483 The global hash table entry for the global symbols can be found
8484 via elf_sym_hashes (input_bfd).
8485
1049f94e 8486 When generating relocatable output, this function must handle
5bd4f169
AM
8487 STB_LOCAL/STT_SECTION symbols specially. The output symbol is
8488 going to be the section symbol corresponding to the output
8489 section, which means that the addend must be adjusted
8490 accordingly. */
8491
b34976b6 8492static bfd_boolean
4ce794b7
AM
8493ppc64_elf_relocate_section (bfd *output_bfd,
8494 struct bfd_link_info *info,
8495 bfd *input_bfd,
8496 asection *input_section,
8497 bfd_byte *contents,
8498 Elf_Internal_Rela *relocs,
8499 Elf_Internal_Sym *local_syms,
8500 asection **local_sections)
5bd4f169 8501{
65f38f15 8502 struct ppc_link_hash_table *htab;
5bd4f169
AM
8503 Elf_Internal_Shdr *symtab_hdr;
8504 struct elf_link_hash_entry **sym_hashes;
5bd4f169
AM
8505 Elf_Internal_Rela *rel;
8506 Elf_Internal_Rela *relend;
411e1bfb
AM
8507 Elf_Internal_Rela outrel;
8508 bfd_byte *loc;
411e1bfb 8509 struct got_entry **local_got_ents;
5bd4f169 8510 bfd_vma TOCstart;
b34976b6
AM
8511 bfd_boolean ret = TRUE;
8512 bfd_boolean is_opd;
96e0dda4 8513 /* Disabled until we sort out how ld should choose 'y' vs 'at'. */
b34976b6 8514 bfd_boolean is_power4 = FALSE;
5bd4f169 8515
1049f94e 8516 if (info->relocatable)
b34976b6 8517 return TRUE;
b491616a 8518
65f38f15 8519 /* Initialize howto table if needed. */
5bd4f169 8520 if (!ppc64_elf_howto_table[R_PPC64_ADDR32])
5bd4f169
AM
8521 ppc_howto_init ();
8522
65f38f15 8523 htab = ppc_hash_table (info);
411e1bfb 8524 local_got_ents = elf_local_got_ents (input_bfd);
5bd4f169 8525 TOCstart = elf_gp (output_bfd);
5bd4f169
AM
8526 symtab_hdr = &elf_tdata (input_bfd)->symtab_hdr;
8527 sym_hashes = elf_sym_hashes (input_bfd);
f0abc2a1 8528 is_opd = ppc64_elf_section_data (input_section)->opd.adjust != NULL;
65f38f15 8529
5bd4f169
AM
8530 rel = relocs;
8531 relend = relocs + input_section->reloc_count;
8532 for (; rel < relend; rel++)
8533 {
04c9666a 8534 enum elf_ppc64_reloc_type r_type;
5bd4f169
AM
8535 bfd_vma addend;
8536 bfd_reloc_status_type r;
8537 Elf_Internal_Sym *sym;
8538 asection *sec;
039b3fef
AM
8539 struct elf_link_hash_entry *h_elf;
8540 struct ppc_link_hash_entry *h;
8541 struct ppc_link_hash_entry *fdh;
5bd4f169 8542 const char *sym_name;
0d4792f7 8543 unsigned long r_symndx, toc_symndx;
951fd09b 8544 char tls_mask, tls_gd, tls_type;
0d4792f7 8545 char sym_type;
5bd4f169 8546 bfd_vma relocation;
b34976b6
AM
8547 bfd_boolean unresolved_reloc;
8548 bfd_boolean warned;
50bc7936 8549 unsigned long insn, mask;
721956f4
AM
8550 struct ppc_stub_hash_entry *stub_entry;
8551 bfd_vma max_br_offset;
8552 bfd_vma from;
5bd4f169 8553
4ce794b7 8554 r_type = ELF64_R_TYPE (rel->r_info);
5bd4f169 8555 r_symndx = ELF64_R_SYM (rel->r_info);
ee87f2da
AM
8556
8557 /* For old style R_PPC64_TOC relocs with a zero symbol, use the
8558 symbol of the previous ADDR64 reloc. The symbol gives us the
8559 proper TOC base to use. */
8560 if (rel->r_info == ELF64_R_INFO (0, R_PPC64_TOC)
8561 && rel != relocs
8562 && ELF64_R_TYPE (rel[-1].r_info) == R_PPC64_ADDR64
8563 && is_opd)
8564 r_symndx = ELF64_R_SYM (rel[-1].r_info);
8565
4ce794b7
AM
8566 sym = NULL;
8567 sec = NULL;
039b3fef 8568 h_elf = NULL;
4ce794b7 8569 sym_name = NULL;
b34976b6
AM
8570 unresolved_reloc = FALSE;
8571 warned = FALSE;
65f38f15 8572
0b13192e 8573 if (r_symndx < symtab_hdr->sh_info)
5bd4f169
AM
8574 {
8575 /* It's a local symbol. */
4025353c
AM
8576 long *opd_adjust;
8577
5bd4f169
AM
8578 sym = local_syms + r_symndx;
8579 sec = local_sections[r_symndx];
411e1bfb 8580 sym_name = bfd_elf_local_sym_name (input_bfd, sym);
0d4792f7 8581 sym_type = ELF64_ST_TYPE (sym->st_info);
8517fae7 8582 relocation = _bfd_elf_rela_local_sym (output_bfd, sym, &sec, rel);
4025353c
AM
8583 opd_adjust = get_opd_info (sec);
8584 if (opd_adjust != NULL)
1e2f5b6e 8585 {
3f764659 8586 long adjust = opd_adjust[(sym->st_value + rel->r_addend) / 8];
4025353c
AM
8587 if (adjust == -1)
8588 relocation = 0;
8589 else
8590 relocation += adjust;
1e2f5b6e 8591 }
5bd4f169
AM
8592 }
8593 else
8594 {
b2a8e766
AM
8595 RELOC_FOR_GLOBAL_SYMBOL (info, input_bfd, input_section, rel,
8596 r_symndx, symtab_hdr, sym_hashes,
039b3fef 8597 h_elf, sec, relocation,
b2a8e766 8598 unresolved_reloc, warned);
039b3fef
AM
8599 sym_name = h_elf->root.root.string;
8600 sym_type = h_elf->type;
5bd4f169 8601 }
039b3fef 8602 h = (struct ppc_link_hash_entry *) h_elf;
5bd4f169 8603
951fd09b
AM
8604 /* TLS optimizations. Replace instruction sequences and relocs
8605 based on information we collected in tls_optimize. We edit
8606 RELOCS so that --emit-relocs will output something sensible
8607 for the final instruction stream. */
8608 tls_mask = 0;
8609 tls_gd = 0;
0d4792f7 8610 toc_symndx = 0;
d881513a 8611 if (IS_PPC64_TLS_RELOC (r_type))
411e1bfb
AM
8612 {
8613 if (h != NULL)
039b3fef 8614 tls_mask = h->tls_mask;
411e1bfb
AM
8615 else if (local_got_ents != NULL)
8616 {
e7b938ca
AM
8617 char *lgot_masks;
8618 lgot_masks = (char *) (local_got_ents + symtab_hdr->sh_info);
8619 tls_mask = lgot_masks[r_symndx];
411e1bfb 8620 }
0d4792f7
AM
8621 if (tls_mask == 0 && r_type == R_PPC64_TLS)
8622 {
8623 /* Check for toc tls entries. */
8624 char *toc_tls;
8625
8626 if (!get_tls_mask (&toc_tls, &toc_symndx, &local_syms,
8627 rel, input_bfd))
8628 return FALSE;
8629
8630 if (toc_tls)
8631 tls_mask = *toc_tls;
8632 }
8633 }
8634
8635 /* Check that tls relocs are used with tls syms, and non-tls
8636 relocs are used with non-tls syms. */
8637 if (r_symndx != 0
8638 && r_type != R_PPC64_NONE
8639 && (h == NULL
039b3fef
AM
8640 || h->elf.root.type == bfd_link_hash_defined
8641 || h->elf.root.type == bfd_link_hash_defweak)
0d4792f7
AM
8642 && IS_PPC64_TLS_RELOC (r_type) != (sym_type == STT_TLS))
8643 {
8644 if (r_type == R_PPC64_TLS && tls_mask != 0)
8645 /* R_PPC64_TLS is OK against a symbol in the TOC. */
8646 ;
8647 else
8648 (*_bfd_error_handler)
8649 (sym_type == STT_TLS
d003868e
AM
8650 ? _("%B(%A+0x%lx): %s used with TLS symbol %s")
8651 : _("%B(%A+0x%lx): %s used with non-TLS symbol %s"),
8652 input_bfd,
8653 input_section,
0d4792f7
AM
8654 (long) rel->r_offset,
8655 ppc64_elf_howto_table[r_type]->name,
8656 sym_name);
411e1bfb
AM
8657 }
8658
8659 /* Ensure reloc mapping code below stays sane. */
8660 if (R_PPC64_TOC16_LO_DS != R_PPC64_TOC16_DS + 1
8661 || R_PPC64_TOC16_LO != R_PPC64_TOC16 + 1
8662 || (R_PPC64_GOT_TLSLD16 & 3) != (R_PPC64_GOT_TLSGD16 & 3)
8663 || (R_PPC64_GOT_TLSLD16_LO & 3) != (R_PPC64_GOT_TLSGD16_LO & 3)
8664 || (R_PPC64_GOT_TLSLD16_HI & 3) != (R_PPC64_GOT_TLSGD16_HI & 3)
8665 || (R_PPC64_GOT_TLSLD16_HA & 3) != (R_PPC64_GOT_TLSGD16_HA & 3)
8666 || (R_PPC64_GOT_TLSLD16 & 3) != (R_PPC64_GOT_TPREL16_DS & 3)
8667 || (R_PPC64_GOT_TLSLD16_LO & 3) != (R_PPC64_GOT_TPREL16_LO_DS & 3)
8668 || (R_PPC64_GOT_TLSLD16_HI & 3) != (R_PPC64_GOT_TPREL16_HI & 3)
8669 || (R_PPC64_GOT_TLSLD16_HA & 3) != (R_PPC64_GOT_TPREL16_HA & 3))
8670 abort ();
0d4792f7 8671
411e1bfb
AM
8672 switch (r_type)
8673 {
8674 default:
411e1bfb
AM
8675 break;
8676
8677 case R_PPC64_TOC16:
8678 case R_PPC64_TOC16_LO:
8679 case R_PPC64_TOC16_DS:
8680 case R_PPC64_TOC16_LO_DS:
411e1bfb
AM
8681 {
8682 /* Check for toc tls entries. */
8683 char *toc_tls;
951fd09b 8684 int retval;
411e1bfb 8685
0d4792f7
AM
8686 retval = get_tls_mask (&toc_tls, &toc_symndx, &local_syms,
8687 rel, input_bfd);
951fd09b 8688 if (retval == 0)
411e1bfb
AM
8689 return FALSE;
8690
8691 if (toc_tls)
8692 {
951fd09b 8693 tls_mask = *toc_tls;
411e1bfb
AM
8694 if (r_type == R_PPC64_TOC16_DS
8695 || r_type == R_PPC64_TOC16_LO_DS)
81407a69
AM
8696 {
8697 if (tls_mask != 0
8698 && (tls_mask & (TLS_DTPREL | TLS_TPREL)) == 0)
8699 goto toctprel;
8700 }
411e1bfb 8701 else
951fd09b
AM
8702 {
8703 /* If we found a GD reloc pair, then we might be
8704 doing a GD->IE transition. */
8705 if (retval == 2)
8706 {
8707 tls_gd = TLS_TPRELGD;
8708 if (tls_mask != 0 && (tls_mask & TLS_GD) == 0)
8709 goto tls_get_addr_check;
8710 }
8711 else if (retval == 3)
8712 {
8713 if (tls_mask != 0 && (tls_mask & TLS_LD) == 0)
8714 goto tls_get_addr_check;
8715 }
8716 }
411e1bfb
AM
8717 }
8718 }
8719 break;
8720
8721 case R_PPC64_GOT_TPREL16_DS:
8722 case R_PPC64_GOT_TPREL16_LO_DS:
951fd09b
AM
8723 if (tls_mask != 0
8724 && (tls_mask & TLS_TPREL) == 0)
411e1bfb 8725 {
81407a69 8726 toctprel:
411e1bfb
AM
8727 insn = bfd_get_32 (output_bfd, contents + rel->r_offset - 2);
8728 insn &= 31 << 21;
8729 insn |= 0x3c0d0000; /* addis 0,13,0 */
8730 bfd_put_32 (output_bfd, insn, contents + rel->r_offset - 2);
8731 r_type = R_PPC64_TPREL16_HA;
0d4792f7
AM
8732 if (toc_symndx != 0)
8733 {
8734 rel->r_info = ELF64_R_INFO (toc_symndx, r_type);
8735 /* We changed the symbol. Start over in order to
8736 get h, sym, sec etc. right. */
8737 rel--;
8738 continue;
8739 }
8740 else
8741 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
411e1bfb
AM
8742 }
8743 break;
8744
8745 case R_PPC64_TLS:
951fd09b
AM
8746 if (tls_mask != 0
8747 && (tls_mask & TLS_TPREL) == 0)
411e1bfb 8748 {
50bc7936 8749 bfd_vma rtra;
411e1bfb 8750 insn = bfd_get_32 (output_bfd, contents + rel->r_offset);
772119ce 8751 if ((insn & ((0x3f << 26) | (31 << 11)))
411e1bfb
AM
8752 == ((31 << 26) | (13 << 11)))
8753 rtra = insn & ((1 << 26) - (1 << 16));
772119ce 8754 else if ((insn & ((0x3f << 26) | (31 << 16)))
411e1bfb
AM
8755 == ((31 << 26) | (13 << 16)))
8756 rtra = (insn & (31 << 21)) | ((insn & (31 << 11)) << 5);
8757 else
8758 abort ();
8759 if ((insn & ((1 << 11) - (1 << 1))) == 266 << 1)
8760 /* add -> addi. */
8761 insn = 14 << 26;
8762 else if ((insn & (31 << 1)) == 23 << 1
8763 && ((insn & (31 << 6)) < 14 << 6
8764 || ((insn & (31 << 6)) >= 16 << 6
8765 && (insn & (31 << 6)) < 24 << 6)))
8766 /* load and store indexed -> dform. */
8767 insn = (32 | ((insn >> 6) & 31)) << 26;
8768 else if ((insn & (31 << 1)) == 21 << 1
8769 && (insn & (0x1a << 6)) == 0)
8770 /* ldx, ldux, stdx, stdux -> ld, ldu, std, stdu. */
8771 insn = (((58 | ((insn >> 6) & 4)) << 26)
8772 | ((insn >> 6) & 1));
8773 else if ((insn & (31 << 1)) == 21 << 1
8774 && (insn & ((1 << 11) - (1 << 1))) == 341 << 1)
8775 /* lwax -> lwa. */
8776 insn = (58 << 26) | 2;
8777 else
8778 abort ();
8779 insn |= rtra;
8780 bfd_put_32 (output_bfd, insn, contents + rel->r_offset);
411e1bfb
AM
8781 /* Was PPC64_TLS which sits on insn boundary, now
8782 PPC64_TPREL16_LO which is at insn+2. */
8783 rel->r_offset += 2;
0d4792f7
AM
8784 r_type = R_PPC64_TPREL16_LO;
8785 if (toc_symndx != 0)
8786 {
8787 rel->r_info = ELF64_R_INFO (toc_symndx, r_type);
8788 /* We changed the symbol. Start over in order to
8789 get h, sym, sec etc. right. */
8790 rel--;
8791 continue;
8792 }
8793 else
8794 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
411e1bfb
AM
8795 }
8796 break;
8797
411e1bfb
AM
8798 case R_PPC64_GOT_TLSGD16_HI:
8799 case R_PPC64_GOT_TLSGD16_HA:
951fd09b
AM
8800 tls_gd = TLS_TPRELGD;
8801 if (tls_mask != 0 && (tls_mask & TLS_GD) == 0)
8802 goto tls_gdld_hi;
8803 break;
8804
411e1bfb
AM
8805 case R_PPC64_GOT_TLSLD16_HI:
8806 case R_PPC64_GOT_TLSLD16_HA:
951fd09b 8807 if (tls_mask != 0 && (tls_mask & TLS_LD) == 0)
411e1bfb 8808 {
951fd09b
AM
8809 tls_gdld_hi:
8810 if ((tls_mask & tls_gd) != 0)
8811 r_type = (((r_type - (R_PPC64_GOT_TLSGD16 & 3)) & 3)
8812 + R_PPC64_GOT_TPREL16_DS);
8813 else
411e1bfb 8814 {
951fd09b
AM
8815 bfd_put_32 (output_bfd, NOP, contents + rel->r_offset);
8816 rel->r_offset -= 2;
8817 r_type = R_PPC64_NONE;
411e1bfb 8818 }
951fd09b 8819 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
411e1bfb
AM
8820 }
8821 break;
8822
951fd09b
AM
8823 case R_PPC64_GOT_TLSGD16:
8824 case R_PPC64_GOT_TLSGD16_LO:
8825 tls_gd = TLS_TPRELGD;
8826 if (tls_mask != 0 && (tls_mask & TLS_GD) == 0)
8827 goto tls_get_addr_check;
8828 break;
411e1bfb 8829
951fd09b
AM
8830 case R_PPC64_GOT_TLSLD16:
8831 case R_PPC64_GOT_TLSLD16_LO:
8832 if (tls_mask != 0 && (tls_mask & TLS_LD) == 0)
8833 {
8834 tls_get_addr_check:
8835 if (rel + 1 < relend)
411e1bfb 8836 {
951fd09b
AM
8837 enum elf_ppc64_reloc_type r_type2;
8838 unsigned long r_symndx2;
8839 struct elf_link_hash_entry *h2;
8840 bfd_vma insn1, insn2, insn3;
8841 bfd_vma offset;
8842
8843 /* The next instruction should be a call to
8844 __tls_get_addr. Peek at the reloc to be sure. */
4ce794b7 8845 r_type2 = ELF64_R_TYPE (rel[1].r_info);
951fd09b
AM
8846 r_symndx2 = ELF64_R_SYM (rel[1].r_info);
8847 if (r_symndx2 < symtab_hdr->sh_info
8848 || (r_type2 != R_PPC64_REL14
8849 && r_type2 != R_PPC64_REL14_BRTAKEN
8850 && r_type2 != R_PPC64_REL14_BRNTAKEN
8851 && r_type2 != R_PPC64_REL24))
8852 break;
8853
8854 h2 = sym_hashes[r_symndx2 - symtab_hdr->sh_info];
8855 while (h2->root.type == bfd_link_hash_indirect
8856 || h2->root.type == bfd_link_hash_warning)
8857 h2 = (struct elf_link_hash_entry *) h2->root.u.i.link;
8387904d
AM
8858 if (h2 == NULL || (h2 != &htab->tls_get_addr->elf
8859 && h2 != &htab->tls_get_addr_fd->elf))
951fd09b
AM
8860 break;
8861
8862 /* OK, it checks out. Replace the call. */
8863 offset = rel[1].r_offset;
8864 insn1 = bfd_get_32 (output_bfd,
8865 contents + rel->r_offset - 2);
8866 insn3 = bfd_get_32 (output_bfd,
8867 contents + offset + 4);
8868 if ((tls_mask & tls_gd) != 0)
411e1bfb 8869 {
951fd09b
AM
8870 /* IE */
8871 insn1 &= (1 << 26) - (1 << 2);
8872 insn1 |= 58 << 26; /* ld */
8873 insn2 = 0x7c636a14; /* add 3,3,13 */
8874 rel[1].r_info = ELF64_R_INFO (r_symndx2, R_PPC64_NONE);
8875 if ((tls_mask & TLS_EXPLICIT) == 0)
8876 r_type = (((r_type - (R_PPC64_GOT_TLSGD16 & 3)) & 3)
8877 + R_PPC64_GOT_TPREL16_DS);
8878 else
8879 r_type += R_PPC64_TOC16_DS - R_PPC64_TOC16;
8880 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
411e1bfb
AM
8881 }
8882 else
951fd09b
AM
8883 {
8884 /* LE */
8885 insn1 = 0x3c6d0000; /* addis 3,13,0 */
8886 insn2 = 0x38630000; /* addi 3,3,0 */
8887 if (tls_gd == 0)
8888 {
8889 /* Was an LD reloc. */
8890 r_symndx = 0;
e1918d23
AM
8891 rel->r_addend = htab->elf.tls_sec->vma + DTP_OFFSET;
8892 rel[1].r_addend = htab->elf.tls_sec->vma + DTP_OFFSET;
951fd09b 8893 }
0d4792f7
AM
8894 else if (toc_symndx != 0)
8895 r_symndx = toc_symndx;
951fd09b
AM
8896 r_type = R_PPC64_TPREL16_HA;
8897 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
8898 rel[1].r_info = ELF64_R_INFO (r_symndx,
8899 R_PPC64_TPREL16_LO);
8900 rel[1].r_offset += 2;
8901 }
8902 if (insn3 == NOP
8903 || insn3 == CROR_151515 || insn3 == CROR_313131)
8904 {
8905 insn3 = insn2;
8906 insn2 = NOP;
8907 rel[1].r_offset += 4;
8908 }
8909 bfd_put_32 (output_bfd, insn1, contents + rel->r_offset - 2);
8910 bfd_put_32 (output_bfd, insn2, contents + offset);
8911 bfd_put_32 (output_bfd, insn3, contents + offset + 4);
0d4792f7 8912 if (tls_gd == 0 || toc_symndx != 0)
951fd09b 8913 {
0d4792f7
AM
8914 /* We changed the symbol. Start over in order
8915 to get h, sym, sec etc. right. */
951fd09b
AM
8916 rel--;
8917 continue;
8918 }
411e1bfb 8919 }
411e1bfb 8920 }
411e1bfb
AM
8921 break;
8922
8923 case R_PPC64_DTPMOD64:
951fd09b
AM
8924 if (rel + 1 < relend
8925 && rel[1].r_info == ELF64_R_INFO (r_symndx, R_PPC64_DTPREL64)
8926 && rel[1].r_offset == rel->r_offset + 8)
411e1bfb 8927 {
951fd09b
AM
8928 if ((tls_mask & TLS_GD) == 0)
8929 {
8930 rel[1].r_info = ELF64_R_INFO (r_symndx, R_PPC64_NONE);
8931 if ((tls_mask & TLS_TPRELGD) != 0)
8932 r_type = R_PPC64_TPREL64;
8933 else
8934 {
4ce794b7 8935 bfd_put_64 (output_bfd, 1, contents + rel->r_offset);
951fd09b
AM
8936 r_type = R_PPC64_NONE;
8937 }
8938 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
8939 }
8940 }
8941 else
8942 {
8943 if ((tls_mask & TLS_LD) == 0)
411e1bfb 8944 {
4ce794b7 8945 bfd_put_64 (output_bfd, 1, contents + rel->r_offset);
411e1bfb 8946 r_type = R_PPC64_NONE;
951fd09b 8947 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
411e1bfb 8948 }
411e1bfb
AM
8949 }
8950 break;
8951
8952 case R_PPC64_TPREL64:
951fd09b 8953 if ((tls_mask & TLS_TPREL) == 0)
411e1bfb
AM
8954 {
8955 r_type = R_PPC64_NONE;
8956 rel->r_info = ELF64_R_INFO (r_symndx, r_type);
8957 }
8958 break;
8959 }
8960
8961 /* Handle other relocations that tweak non-addend part of insn. */
86c76c7b 8962 insn = 0;
b25116a9
AM
8963 max_br_offset = 1 << 25;
8964 addend = rel->r_addend;
65f38f15 8965 switch (r_type)
5bd4f169
AM
8966 {
8967 default:
65f38f15 8968 break;
5bd4f169 8969
65f38f15
AM
8970 /* Branch taken prediction relocations. */
8971 case R_PPC64_ADDR14_BRTAKEN:
8972 case R_PPC64_REL14_BRTAKEN:
cedb70c5
KH
8973 insn = 0x01 << 21; /* 'y' or 't' bit, lowest bit of BO field. */
8974 /* Fall thru. */
65f38f15 8975
86c76c7b 8976 /* Branch not taken prediction relocations. */
65f38f15
AM
8977 case R_PPC64_ADDR14_BRNTAKEN:
8978 case R_PPC64_REL14_BRNTAKEN:
411e1bfb
AM
8979 insn |= bfd_get_32 (output_bfd,
8980 contents + rel->r_offset) & ~(0x01 << 21);
b25116a9 8981 /* Fall thru. */
86c76c7b 8982
b25116a9
AM
8983 case R_PPC64_REL14:
8984 max_br_offset = 1 << 15;
8985 /* Fall thru. */
5bd4f169 8986
65f38f15 8987 case R_PPC64_REL24:
ad8e1ba5
AM
8988 /* Calls to functions with a different TOC, such as calls to
8989 shared objects, need to alter the TOC pointer. This is
8990 done using a linkage stub. A REL24 branching to these
8991 linkage stubs needs to be followed by a nop, as the nop
8992 will be replaced with an instruction to restore the TOC
8993 base pointer. */
b25116a9 8994 stub_entry = NULL;
8387904d 8995 fdh = h;
ad8e1ba5 8996 if (((h != NULL
039b3fef
AM
8997 && (((fdh = h->oh) != NULL
8998 && fdh->elf.plt.plist != NULL)
8999 || (fdh = h)->elf.plt.plist != NULL))
8387904d 9000 || (sec != NULL
ad8e1ba5 9001 && sec->output_section != NULL
b25116a9 9002 && sec->id <= htab->top_id
ad8e1ba5
AM
9003 && (htab->stub_group[sec->id].toc_off
9004 != htab->stub_group[input_section->id].toc_off)))
721956f4 9005 && (stub_entry = ppc_get_stub_entry (input_section, sec, fdh,
ad8e1ba5
AM
9006 rel, htab)) != NULL
9007 && (stub_entry->stub_type == ppc_stub_plt_call
9008 || stub_entry->stub_type == ppc_stub_plt_branch_r2off
9009 || stub_entry->stub_type == ppc_stub_long_branch_r2off))
41bd81ab 9010 {
b25116a9 9011 bfd_boolean can_plt_call = FALSE;
721956f4 9012
eea6121a 9013 if (rel->r_offset + 8 <= input_section->size)
41bd81ab 9014 {
b25116a9
AM
9015 unsigned long nop;
9016 nop = bfd_get_32 (input_bfd, contents + rel->r_offset + 4);
9017 if (nop == NOP
9018 || nop == CROR_151515 || nop == CROR_313131)
41bd81ab 9019 {
4ce794b7 9020 bfd_put_32 (input_bfd, LD_R2_40R1,
411e1bfb 9021 contents + rel->r_offset + 4);
b25116a9 9022 can_plt_call = TRUE;
41bd81ab 9023 }
5bd4f169 9024 }
721956f4
AM
9025
9026 if (!can_plt_call)
9027 {
ad8e1ba5
AM
9028 if (stub_entry->stub_type == ppc_stub_plt_call)
9029 {
9030 /* If this is a plain branch rather than a branch
9031 and link, don't require a nop. */
b25116a9
AM
9032 unsigned long br;
9033 br = bfd_get_32 (input_bfd, contents + rel->r_offset);
9034 if ((br & 1) == 0)
9035 can_plt_call = TRUE;
ad8e1ba5 9036 }
6ab189d5 9037 else if (h != NULL
039b3fef 9038 && strcmp (h->elf.root.root.string,
6ab189d5
AM
9039 ".__libc_start_main") == 0)
9040 {
9041 /* Allow crt1 branch to go via a toc adjusting stub. */
b25116a9 9042 can_plt_call = TRUE;
6ab189d5 9043 }
ad8e1ba5
AM
9044 else
9045 {
9046 if (strcmp (input_section->output_section->name,
9047 ".init") == 0
9048 || strcmp (input_section->output_section->name,
9049 ".fini") == 0)
9050 (*_bfd_error_handler)
d003868e 9051 (_("%B(%A+0x%lx): automatic multiple TOCs "
ad8e1ba5
AM
9052 "not supported using your crt files; "
9053 "recompile with -mminimal-toc or upgrade gcc"),
d003868e
AM
9054 input_bfd,
9055 input_section,
ad8e1ba5
AM
9056 (long) rel->r_offset);
9057 else
9058 (*_bfd_error_handler)
d003868e 9059 (_("%B(%A+0x%lx): sibling call optimization to `%s' "
ad8e1ba5
AM
9060 "does not allow automatic multiple TOCs; "
9061 "recompile with -mminimal-toc or "
9062 "-fno-optimize-sibling-calls, "
9063 "or make `%s' extern"),
d003868e
AM
9064 input_bfd,
9065 input_section,
ad8e1ba5
AM
9066 (long) rel->r_offset,
9067 sym_name,
9068 sym_name);
9069 bfd_set_error (bfd_error_bad_value);
9070 ret = FALSE;
9071 }
721956f4
AM
9072 }
9073
b25116a9
AM
9074 if (can_plt_call
9075 && stub_entry->stub_type == ppc_stub_plt_call)
9076 unresolved_reloc = FALSE;
9077 }
9078
8387904d
AM
9079 if (stub_entry == NULL
9080 && get_opd_info (sec) != NULL)
9081 {
9082 /* The branch destination is the value of the opd entry. */
9083 bfd_vma off = (relocation - sec->output_section->vma
9084 - sec->output_offset + rel->r_addend);
9085 bfd_vma dest = opd_entry_value (sec, off, NULL, NULL);
9086 if (dest != (bfd_vma) -1)
9087 {
9088 relocation = dest;
9089 addend = 0;
9090 }
9091 }
9092
b25116a9
AM
9093 /* If the branch is out of reach we ought to have a long
9094 branch stub. */
9095 from = (rel->r_offset
9096 + input_section->output_offset
9097 + input_section->output_section->vma);
9098
9099 if (stub_entry == NULL
9100 && (relocation + rel->r_addend - from + max_br_offset
9101 >= 2 * max_br_offset)
9102 && r_type != R_PPC64_ADDR14_BRTAKEN
9103 && r_type != R_PPC64_ADDR14_BRNTAKEN)
039b3fef
AM
9104 stub_entry = ppc_get_stub_entry (input_section, sec, h, rel,
9105 htab);
b25116a9
AM
9106
9107 if (stub_entry != NULL)
9108 {
9109 /* Munge up the value and addend so that we call the stub
9110 rather than the procedure directly. */
9111 relocation = (stub_entry->stub_offset
9112 + stub_entry->stub_sec->output_offset
9113 + stub_entry->stub_sec->output_section->vma);
9114 addend = 0;
9115 }
9116
9117 if (insn != 0)
9118 {
9119 if (is_power4)
721956f4 9120 {
b25116a9
AM
9121 /* Set 'a' bit. This is 0b00010 in BO field for branch
9122 on CR(BI) insns (BO == 001at or 011at), and 0b01000
9123 for branch on CTR insns (BO == 1a00t or 1a01t). */
9124 if ((insn & (0x14 << 21)) == (0x04 << 21))
9125 insn |= 0x02 << 21;
9126 else if ((insn & (0x14 << 21)) == (0x10 << 21))
9127 insn |= 0x08 << 21;
9128 else
9129 break;
9130 }
9131 else
9132 {
9133 /* Invert 'y' bit if not the default. */
9134 if ((bfd_signed_vma) (relocation + rel->r_addend - from) < 0)
9135 insn ^= 0x01 << 21;
721956f4 9136 }
b25116a9
AM
9137
9138 bfd_put_32 (output_bfd, insn, contents + rel->r_offset);
5bd4f169 9139 }
e86ce104 9140
06da1e8e
AM
9141 /* NOP out calls to undefined weak functions.
9142 We can thus call a weak function without first
9143 checking whether the function is defined. */
b25116a9 9144 else if (h != NULL
039b3fef 9145 && h->elf.root.type == bfd_link_hash_undefweak
b25116a9
AM
9146 && r_type == R_PPC64_REL24
9147 && relocation == 0
9148 && rel->r_addend == 0)
e86ce104 9149 {
06da1e8e
AM
9150 bfd_put_32 (output_bfd, NOP, contents + rel->r_offset);
9151 continue;
e86ce104 9152 }
65f38f15
AM
9153 break;
9154 }
5bd4f169 9155
65f38f15 9156 /* Set `addend'. */
411e1bfb 9157 tls_type = 0;
65f38f15
AM
9158 switch (r_type)
9159 {
9160 default:
9161 (*_bfd_error_handler)
d003868e
AM
9162 (_("%B: unknown relocation type %d for symbol %s"),
9163 input_bfd, (int) r_type, sym_name);
5bd4f169 9164
65f38f15 9165 bfd_set_error (bfd_error_bad_value);
b34976b6 9166 ret = FALSE;
65f38f15 9167 continue;
5bd4f169 9168
65f38f15 9169 case R_PPC64_NONE:
411e1bfb 9170 case R_PPC64_TLS:
04c9666a
AM
9171 case R_PPC64_GNU_VTINHERIT:
9172 case R_PPC64_GNU_VTENTRY:
65f38f15 9173 continue;
5bd4f169
AM
9174
9175 /* GOT16 relocations. Like an ADDR16 using the symbol's
9176 address in the GOT as relocation value instead of the
411e1bfb 9177 symbol's value itself. Also, create a GOT entry for the
5bd4f169 9178 symbol and put the symbol value there. */
411e1bfb
AM
9179 case R_PPC64_GOT_TLSGD16:
9180 case R_PPC64_GOT_TLSGD16_LO:
9181 case R_PPC64_GOT_TLSGD16_HI:
9182 case R_PPC64_GOT_TLSGD16_HA:
951fd09b 9183 tls_type = TLS_TLS | TLS_GD;
411e1bfb
AM
9184 goto dogot;
9185
9186 case R_PPC64_GOT_TLSLD16:
9187 case R_PPC64_GOT_TLSLD16_LO:
9188 case R_PPC64_GOT_TLSLD16_HI:
9189 case R_PPC64_GOT_TLSLD16_HA:
951fd09b 9190 tls_type = TLS_TLS | TLS_LD;
411e1bfb
AM
9191 goto dogot;
9192
9193 case R_PPC64_GOT_TPREL16_DS:
9194 case R_PPC64_GOT_TPREL16_LO_DS:
9195 case R_PPC64_GOT_TPREL16_HI:
9196 case R_PPC64_GOT_TPREL16_HA:
9197 tls_type = TLS_TLS | TLS_TPREL;
9198 goto dogot;
9199
9200 case R_PPC64_GOT_DTPREL16_DS:
9201 case R_PPC64_GOT_DTPREL16_LO_DS:
9202 case R_PPC64_GOT_DTPREL16_HI:
9203 case R_PPC64_GOT_DTPREL16_HA:
9204 tls_type = TLS_TLS | TLS_DTPREL;
9205 goto dogot;
9206
65f38f15
AM
9207 case R_PPC64_GOT16:
9208 case R_PPC64_GOT16_LO:
9209 case R_PPC64_GOT16_HI:
9210 case R_PPC64_GOT16_HA:
9211 case R_PPC64_GOT16_DS:
9212 case R_PPC64_GOT16_LO_DS:
411e1bfb 9213 dogot:
5bd4f169
AM
9214 {
9215 /* Relocation is to the entry for this symbol in the global
9216 offset table. */
e717da7e 9217 asection *got;
d881513a 9218 bfd_vma *offp;
5bd4f169 9219 bfd_vma off;
d881513a 9220 unsigned long indx = 0;
65f38f15 9221
d881513a
AM
9222 if (tls_type == (TLS_TLS | TLS_LD)
9223 && (h == NULL
039b3fef
AM
9224 || (h->elf.elf_link_hash_flags
9225 & ELF_LINK_HASH_DEF_DYNAMIC) == 0))
e717da7e 9226 offp = &ppc64_tlsld_got (input_bfd)->offset;
411e1bfb 9227 else
5bd4f169 9228 {
d881513a 9229 struct got_entry *ent;
5bd4f169 9230
d881513a
AM
9231 if (h != NULL)
9232 {
9233 bfd_boolean dyn = htab->elf.dynamic_sections_created;
039b3fef
AM
9234 if (!WILL_CALL_FINISH_DYNAMIC_SYMBOL (dyn, info->shared,
9235 &h->elf)
d881513a 9236 || (info->shared
039b3fef 9237 && SYMBOL_REFERENCES_LOCAL (info, &h->elf)))
d881513a
AM
9238 /* This is actually a static link, or it is a
9239 -Bsymbolic link and the symbol is defined
9240 locally, or the symbol was forced to be local
9241 because of a version file. */
9242 ;
9243 else
9244 {
039b3fef 9245 indx = h->elf.dynindx;
d881513a
AM
9246 unresolved_reloc = FALSE;
9247 }
039b3fef 9248 ent = h->elf.got.glist;
d881513a 9249 }
411e1bfb 9250 else
5bd4f169 9251 {
d881513a
AM
9252 if (local_got_ents == NULL)
9253 abort ();
9254 ent = local_got_ents[r_symndx];
5bd4f169 9255 }
d881513a
AM
9256
9257 for (; ent != NULL; ent = ent->next)
9258 if (ent->addend == rel->r_addend
e717da7e 9259 && ent->owner == input_bfd
d881513a
AM
9260 && ent->tls_type == tls_type)
9261 break;
9262 if (ent == NULL)
9263 abort ();
9264 offp = &ent->got.offset;
5bd4f169 9265 }
411e1bfb 9266
e717da7e
AM
9267 got = ppc64_elf_tdata (input_bfd)->got;
9268 if (got == NULL)
9269 abort ();
9270
411e1bfb
AM
9271 /* The offset must always be a multiple of 8. We use the
9272 least significant bit to record whether we have already
9273 processed this entry. */
d881513a 9274 off = *offp;
411e1bfb
AM
9275 if ((off & 1) != 0)
9276 off &= ~1;
5bd4f169
AM
9277 else
9278 {
411e1bfb
AM
9279 /* Generate relocs for the dynamic linker, except in
9280 the case of TLSLD where we'll use one entry per
9281 module. */
e717da7e
AM
9282 asection *relgot = ppc64_elf_tdata (input_bfd)->relgot;
9283
d881513a 9284 *offp = off | 1;
4e795f50
AM
9285 if ((info->shared || indx != 0)
9286 && (h == NULL
039b3fef
AM
9287 || ELF_ST_VISIBILITY (h->elf.other) == STV_DEFAULT
9288 || h->elf.root.type != bfd_link_hash_undefweak))
5bd4f169 9289 {
e717da7e
AM
9290 outrel.r_offset = (got->output_section->vma
9291 + got->output_offset
411e1bfb 9292 + off);
81407a69 9293 outrel.r_addend = rel->r_addend;
d881513a 9294 if (tls_type & (TLS_LD | TLS_GD))
5bd4f169 9295 {
411e1bfb 9296 outrel.r_addend = 0;
e515b051 9297 outrel.r_info = ELF64_R_INFO (indx, R_PPC64_DTPMOD64);
d881513a
AM
9298 if (tls_type == (TLS_TLS | TLS_GD))
9299 {
e717da7e
AM
9300 loc = relgot->contents;
9301 loc += (relgot->reloc_count++
d881513a
AM
9302 * sizeof (Elf64_External_Rela));
9303 bfd_elf64_swap_reloca_out (output_bfd,
9304 &outrel, loc);
e515b051 9305 outrel.r_offset += 8;
81407a69 9306 outrel.r_addend = rel->r_addend;
d881513a
AM
9307 outrel.r_info
9308 = ELF64_R_INFO (indx, R_PPC64_DTPREL64);
d881513a 9309 }
411e1bfb 9310 }
951fd09b 9311 else if (tls_type == (TLS_TLS | TLS_DTPREL))
411e1bfb 9312 outrel.r_info = ELF64_R_INFO (indx, R_PPC64_DTPREL64);
951fd09b 9313 else if (tls_type == (TLS_TLS | TLS_TPREL))
411e1bfb
AM
9314 outrel.r_info = ELF64_R_INFO (indx, R_PPC64_TPREL64);
9315 else if (indx == 0)
81407a69
AM
9316 {
9317 outrel.r_info = ELF64_R_INFO (indx, R_PPC64_RELATIVE);
9318
9319 /* Write the .got section contents for the sake
9320 of prelink. */
e717da7e 9321 loc = got->contents + off;
23fbd6fa
JJ
9322 bfd_put_64 (output_bfd, outrel.r_addend + relocation,
9323 loc);
81407a69 9324 }
411e1bfb
AM
9325 else
9326 outrel.r_info = ELF64_R_INFO (indx, R_PPC64_GLOB_DAT);
81407a69
AM
9327
9328 if (indx == 0 && tls_type != (TLS_TLS | TLS_LD))
e515b051
AM
9329 {
9330 outrel.r_addend += relocation;
9331 if (tls_type & (TLS_GD | TLS_DTPREL | TLS_TPREL))
e1918d23 9332 outrel.r_addend -= htab->elf.tls_sec->vma;
e515b051 9333 }
e717da7e
AM
9334 loc = relgot->contents;
9335 loc += (relgot->reloc_count++
411e1bfb
AM
9336 * sizeof (Elf64_External_Rela));
9337 bfd_elf64_swap_reloca_out (output_bfd, &outrel, loc);
9338 }
9339
ad8e1ba5 9340 /* Init the .got section contents here if we're not
81407a69 9341 emitting a reloc. */
d881513a 9342 else
411e1bfb 9343 {
d881513a 9344 relocation += rel->r_addend;
7b609f53
AM
9345 if (tls_type == (TLS_TLS | TLS_LD))
9346 relocation = 1;
9347 else if (tls_type != 0)
411e1bfb 9348 {
e1918d23 9349 relocation -= htab->elf.tls_sec->vma + DTP_OFFSET;
7b609f53 9350 if (tls_type == (TLS_TLS | TLS_TPREL))
411e1bfb 9351 relocation += DTP_OFFSET - TP_OFFSET;
5bd4f169 9352
7b609f53
AM
9353 if (tls_type == (TLS_TLS | TLS_GD))
9354 {
9355 bfd_put_64 (output_bfd, relocation,
e717da7e 9356 got->contents + off + 8);
7b609f53
AM
9357 relocation = 1;
9358 }
411e1bfb 9359 }
7b609f53 9360
411e1bfb 9361 bfd_put_64 (output_bfd, relocation,
e717da7e 9362 got->contents + off);
5bd4f169
AM
9363 }
9364 }
9365
65f38f15
AM
9366 if (off >= (bfd_vma) -2)
9367 abort ();
9368
e717da7e 9369 relocation = got->output_offset + off;
65f38f15 9370
5bd4f169 9371 /* TOC base (r2) is TOC start plus 0x8000. */
e717da7e 9372 addend = -TOC_BASE_OFF;
5bd4f169 9373 }
65f38f15
AM
9374 break;
9375
9376 case R_PPC64_PLT16_HA:
9377 case R_PPC64_PLT16_HI:
9378 case R_PPC64_PLT16_LO:
9379 case R_PPC64_PLT32:
9380 case R_PPC64_PLT64:
9381 /* Relocation is to the entry for this symbol in the
9382 procedure linkage table. */
9383
9384 /* Resolve a PLT reloc against a local symbol directly,
9385 without using the procedure linkage table. */
9386 if (h == NULL)
9387 break;
9388
411e1bfb
AM
9389 /* It's possible that we didn't make a PLT entry for this
9390 symbol. This happens when statically linking PIC code,
9391 or when using -Bsymbolic. Go find a match if there is a
9392 PLT entry. */
4ce794b7 9393 if (htab->plt != NULL)
65f38f15 9394 {
411e1bfb 9395 struct plt_entry *ent;
039b3fef 9396 for (ent = h->elf.plt.plist; ent != NULL; ent = ent->next)
411e1bfb
AM
9397 if (ent->addend == rel->r_addend
9398 && ent->plt.offset != (bfd_vma) -1)
9399 {
4ce794b7
AM
9400 relocation = (htab->plt->output_section->vma
9401 + htab->plt->output_offset
411e1bfb
AM
9402 + ent->plt.offset);
9403 unresolved_reloc = FALSE;
9404 }
65f38f15 9405 }
65f38f15 9406 break;
5bd4f169 9407
0b13192e
AM
9408 case R_PPC64_TOC:
9409 /* Relocation value is TOC base. */
9410 relocation = TOCstart;
9411 if (r_symndx == 0)
9412 relocation += htab->stub_group[input_section->id].toc_off;
8517fae7
AM
9413 else if (unresolved_reloc)
9414 ;
9415 else if (sec != NULL && sec->id <= htab->top_id)
0b13192e
AM
9416 relocation += htab->stub_group[sec->id].toc_off;
9417 else
9418 unresolved_reloc = TRUE;
9419 goto dodyn2;
9420
5bd4f169
AM
9421 /* TOC16 relocs. We want the offset relative to the TOC base,
9422 which is the address of the start of the TOC plus 0x8000.
9423 The TOC consists of sections .got, .toc, .tocbss, and .plt,
9424 in this order. */
65f38f15
AM
9425 case R_PPC64_TOC16:
9426 case R_PPC64_TOC16_LO:
9427 case R_PPC64_TOC16_HI:
9428 case R_PPC64_TOC16_DS:
9429 case R_PPC64_TOC16_LO_DS:
9430 case R_PPC64_TOC16_HA:
ad8e1ba5 9431 addend -= TOCstart + htab->stub_group[input_section->id].toc_off;
5bd4f169
AM
9432 break;
9433
9434 /* Relocate against the beginning of the section. */
65f38f15
AM
9435 case R_PPC64_SECTOFF:
9436 case R_PPC64_SECTOFF_LO:
9437 case R_PPC64_SECTOFF_HI:
9438 case R_PPC64_SECTOFF_DS:
9439 case R_PPC64_SECTOFF_LO_DS:
9440 case R_PPC64_SECTOFF_HA:
4ce794b7 9441 if (sec != NULL)
65f38f15 9442 addend -= sec->output_section->vma;
5bd4f169
AM
9443 break;
9444
721956f4
AM
9445 case R_PPC64_REL14:
9446 case R_PPC64_REL14_BRNTAKEN:
9447 case R_PPC64_REL14_BRTAKEN:
5d1634d7
AM
9448 case R_PPC64_REL24:
9449 break;
9450
411e1bfb
AM
9451 case R_PPC64_TPREL16:
9452 case R_PPC64_TPREL16_LO:
9453 case R_PPC64_TPREL16_HI:
9454 case R_PPC64_TPREL16_HA:
9455 case R_PPC64_TPREL16_DS:
9456 case R_PPC64_TPREL16_LO_DS:
9457 case R_PPC64_TPREL16_HIGHER:
9458 case R_PPC64_TPREL16_HIGHERA:
9459 case R_PPC64_TPREL16_HIGHEST:
9460 case R_PPC64_TPREL16_HIGHESTA:
e1918d23 9461 addend -= htab->elf.tls_sec->vma + TP_OFFSET;
411e1bfb
AM
9462 if (info->shared)
9463 /* The TPREL16 relocs shouldn't really be used in shared
9464 libs as they will result in DT_TEXTREL being set, but
9465 support them anyway. */
9466 goto dodyn;
9467 break;
9468
9469 case R_PPC64_DTPREL16:
9470 case R_PPC64_DTPREL16_LO:
9471 case R_PPC64_DTPREL16_HI:
9472 case R_PPC64_DTPREL16_HA:
9473 case R_PPC64_DTPREL16_DS:
9474 case R_PPC64_DTPREL16_LO_DS:
9475 case R_PPC64_DTPREL16_HIGHER:
9476 case R_PPC64_DTPREL16_HIGHERA:
9477 case R_PPC64_DTPREL16_HIGHEST:
9478 case R_PPC64_DTPREL16_HIGHESTA:
e1918d23 9479 addend -= htab->elf.tls_sec->vma + DTP_OFFSET;
411e1bfb
AM
9480 break;
9481
e515b051
AM
9482 case R_PPC64_DTPMOD64:
9483 relocation = 1;
9484 addend = 0;
9485 goto dodyn;
9486
411e1bfb 9487 case R_PPC64_TPREL64:
e1918d23 9488 addend -= htab->elf.tls_sec->vma + TP_OFFSET;
411e1bfb
AM
9489 goto dodyn;
9490
9491 case R_PPC64_DTPREL64:
e1918d23 9492 addend -= htab->elf.tls_sec->vma + DTP_OFFSET;
411e1bfb
AM
9493 /* Fall thru */
9494
65f38f15
AM
9495 /* Relocations that may need to be propagated if this is a
9496 dynamic object. */
04c9666a 9497 case R_PPC64_REL30:
65f38f15
AM
9498 case R_PPC64_REL32:
9499 case R_PPC64_REL64:
9500 case R_PPC64_ADDR14:
9501 case R_PPC64_ADDR14_BRNTAKEN:
9502 case R_PPC64_ADDR14_BRTAKEN:
9503 case R_PPC64_ADDR16:
9504 case R_PPC64_ADDR16_DS:
9505 case R_PPC64_ADDR16_HA:
9506 case R_PPC64_ADDR16_HI:
9507 case R_PPC64_ADDR16_HIGHER:
9508 case R_PPC64_ADDR16_HIGHERA:
9509 case R_PPC64_ADDR16_HIGHEST:
9510 case R_PPC64_ADDR16_HIGHESTA:
9511 case R_PPC64_ADDR16_LO:
9512 case R_PPC64_ADDR16_LO_DS:
9513 case R_PPC64_ADDR24:
65f38f15
AM
9514 case R_PPC64_ADDR32:
9515 case R_PPC64_ADDR64:
9516 case R_PPC64_UADDR16:
9517 case R_PPC64_UADDR32:
9518 case R_PPC64_UADDR64:
ec338859
AM
9519 /* r_symndx will be zero only for relocs against symbols
9520 from removed linkonce sections, or sections discarded by
9521 a linker script. */
411e1bfb 9522 dodyn:
5d1634d7
AM
9523 if (r_symndx == 0)
9524 break;
9525 /* Fall thru. */
9526
0b13192e 9527 dodyn2:
5d1634d7 9528 if ((input_section->flags & SEC_ALLOC) == 0)
ec338859
AM
9529 break;
9530
41bd81ab
AM
9531 if (NO_OPD_RELOCS && is_opd)
9532 break;
9533
65f38f15 9534 if ((info->shared
4e795f50 9535 && (h == NULL
039b3fef
AM
9536 || ELF_ST_VISIBILITY (h->elf.other) == STV_DEFAULT
9537 || h->elf.root.type != bfd_link_hash_undefweak)
411e1bfb 9538 && (MUST_BE_DYN_RELOC (r_type)
039b3fef 9539 || !SYMBOL_CALLS_LOCAL (info, &h->elf)))
f4656909
AM
9540 || (ELIMINATE_COPY_RELOCS
9541 && !info->shared
65f38f15 9542 && h != NULL
039b3fef
AM
9543 && h->elf.dynindx != -1
9544 && !(h->elf.elf_link_hash_flags & ELF_LINK_NON_GOT_REF)
9545 && (h->elf.elf_link_hash_flags & ELF_LINK_HASH_DEF_DYNAMIC)
9546 && !(h->elf.elf_link_hash_flags & ELF_LINK_HASH_DEF_REGULAR)))
65f38f15
AM
9547 {
9548 Elf_Internal_Rela outrel;
b34976b6 9549 bfd_boolean skip, relocate;
65f38f15 9550 asection *sreloc;
947216bf 9551 bfd_byte *loc;
1cf1f670 9552 bfd_vma out_off;
65f38f15
AM
9553
9554 /* When generating a dynamic object, these relocations
9555 are copied into the output file to be resolved at run
9556 time. */
9557
b34976b6
AM
9558 skip = FALSE;
9559 relocate = FALSE;
65f38f15 9560
1cf1f670
AM
9561 out_off = _bfd_elf_section_offset (output_bfd, info,
9562 input_section, rel->r_offset);
9563 if (out_off == (bfd_vma) -1)
b34976b6 9564 skip = TRUE;
1cf1f670 9565 else if (out_off == (bfd_vma) -2)
b34976b6 9566 skip = TRUE, relocate = TRUE;
1cf1f670
AM
9567 out_off += (input_section->output_section->vma
9568 + input_section->output_offset);
9569 outrel.r_offset = out_off;
411e1bfb 9570 outrel.r_addend = rel->r_addend;
65f38f15 9571
1cf1f670
AM
9572 /* Optimize unaligned reloc use. */
9573 if ((r_type == R_PPC64_ADDR64 && (out_off & 7) != 0)
9574 || (r_type == R_PPC64_UADDR64 && (out_off & 7) == 0))
9575 r_type ^= R_PPC64_ADDR64 ^ R_PPC64_UADDR64;
9576 else if ((r_type == R_PPC64_ADDR32 && (out_off & 3) != 0)
9577 || (r_type == R_PPC64_UADDR32 && (out_off & 3) == 0))
9578 r_type ^= R_PPC64_ADDR32 ^ R_PPC64_UADDR32;
9579 else if ((r_type == R_PPC64_ADDR16 && (out_off & 1) != 0)
9580 || (r_type == R_PPC64_UADDR16 && (out_off & 1) == 0))
9581 r_type ^= R_PPC64_ADDR16 ^ R_PPC64_UADDR16;
9582
65f38f15 9583 if (skip)
0bb2d96a 9584 memset (&outrel, 0, sizeof outrel);
039b3fef 9585 else if (!SYMBOL_REFERENCES_LOCAL (info, &h->elf)
0b13192e
AM
9586 && !is_opd
9587 && r_type != R_PPC64_TOC)
039b3fef 9588 outrel.r_info = ELF64_R_INFO (h->elf.dynindx, r_type);
65f38f15
AM
9589 else
9590 {
41bd81ab
AM
9591 /* This symbol is local, or marked to become local,
9592 or this is an opd section reloc which must point
9593 at a local function. */
65f38f15 9594 outrel.r_addend += relocation;
e86ce104 9595 if (r_type == R_PPC64_ADDR64 || r_type == R_PPC64_TOC)
65f38f15 9596 {
3fad3c7c 9597 if (is_opd && h != NULL)
afbe61cf
AM
9598 {
9599 /* Lie about opd entries. This case occurs
9600 when building shared libraries and we
9601 reference a function in another shared
3fad3c7c
AM
9602 lib. The same thing happens for a weak
9603 definition in an application that's
9604 overridden by a strong definition in a
9605 shared lib. (I believe this is a generic
9606 bug in binutils handling of weak syms.)
9607 In these cases we won't use the opd
1e2f5b6e 9608 entry in this lib. */
b34976b6 9609 unresolved_reloc = FALSE;
afbe61cf 9610 }
65f38f15 9611 outrel.r_info = ELF64_R_INFO (0, R_PPC64_RELATIVE);
81407a69
AM
9612
9613 /* We need to relocate .opd contents for ld.so.
9614 Prelink also wants simple and consistent rules
9615 for relocs. This make all RELATIVE relocs have
9616 *r_offset equal to r_addend. */
9617 relocate = TRUE;
65f38f15
AM
9618 }
9619 else
9620 {
9621 long indx = 0;
9622
41bd81ab 9623 if (bfd_is_abs_section (sec))
65f38f15
AM
9624 ;
9625 else if (sec == NULL || sec->owner == NULL)
9626 {
9627 bfd_set_error (bfd_error_bad_value);
b34976b6 9628 return FALSE;
65f38f15
AM
9629 }
9630 else
9631 {
9632 asection *osec;
9633
9634 osec = sec->output_section;
9635 indx = elf_section_data (osec)->dynindx;
9636
9637 /* We are turning this relocation into one
9638 against a section symbol, so subtract out
9639 the output section's address but not the
9640 offset of the input section in the output
9641 section. */
9642 outrel.r_addend -= osec->vma;
9643 }
9644
9645 outrel.r_info = ELF64_R_INFO (indx, r_type);
9646 }
9647 }
9648
9649 sreloc = elf_section_data (input_section)->sreloc;
9650 if (sreloc == NULL)
9651 abort ();
9652
947216bf
AM
9653 loc = sreloc->contents;
9654 loc += sreloc->reloc_count++ * sizeof (Elf64_External_Rela);
65f38f15
AM
9655 bfd_elf64_swap_reloca_out (output_bfd, &outrel, loc);
9656
9657 /* If this reloc is against an external symbol, it will
9658 be computed at runtime, so there's no need to do
81407a69
AM
9659 anything now. However, for the sake of prelink ensure
9660 that the section contents are a known value. */
65f38f15 9661 if (! relocate)
81407a69
AM
9662 {
9663 unresolved_reloc = FALSE;
9664 /* The value chosen here is quite arbitrary as ld.so
9665 ignores section contents except for the special
9666 case of .opd where the contents might be accessed
9667 before relocation. Choose zero, as that won't
9668 cause reloc overflow. */
9669 relocation = 0;
9670 addend = 0;
9671 /* Use *r_offset == r_addend for R_PPC64_ADDR64 relocs
9672 to improve backward compatibility with older
9673 versions of ld. */
9674 if (r_type == R_PPC64_ADDR64)
9675 addend = outrel.r_addend;
9676 /* Adjust pc_relative relocs to have zero in *r_offset. */
4ce794b7 9677 else if (ppc64_elf_howto_table[r_type]->pc_relative)
000732f7
AM
9678 addend = (input_section->output_section->vma
9679 + input_section->output_offset
9680 + rel->r_offset);
81407a69 9681 }
65f38f15 9682 }
5bd4f169
AM
9683 break;
9684
65f38f15
AM
9685 case R_PPC64_COPY:
9686 case R_PPC64_GLOB_DAT:
9687 case R_PPC64_JMP_SLOT:
9688 case R_PPC64_RELATIVE:
9689 /* We shouldn't ever see these dynamic relocs in relocatable
9690 files. */
ae9a127f 9691 /* Fall through. */
65f38f15
AM
9692
9693 case R_PPC64_PLTGOT16:
9694 case R_PPC64_PLTGOT16_DS:
9695 case R_PPC64_PLTGOT16_HA:
9696 case R_PPC64_PLTGOT16_HI:
9697 case R_PPC64_PLTGOT16_LO:
9698 case R_PPC64_PLTGOT16_LO_DS:
9699 case R_PPC64_PLTREL32:
9700 case R_PPC64_PLTREL64:
9701 /* These ones haven't been implemented yet. */
9702
9703 (*_bfd_error_handler)
d003868e
AM
9704 (_("%B: relocation %s is not supported for symbol %s."),
9705 input_bfd,
4ce794b7 9706 ppc64_elf_howto_table[r_type]->name, sym_name);
5bd4f169
AM
9707
9708 bfd_set_error (bfd_error_invalid_operation);
b34976b6 9709 ret = FALSE;
5bd4f169 9710 continue;
65f38f15 9711 }
5bd4f169 9712
65f38f15
AM
9713 /* Do any further special processing. */
9714 switch (r_type)
9715 {
9716 default:
9717 break;
9718
9719 case R_PPC64_ADDR16_HA:
9720 case R_PPC64_ADDR16_HIGHERA:
9721 case R_PPC64_ADDR16_HIGHESTA:
86bbe32f
AM
9722 case R_PPC64_GOT16_HA:
9723 case R_PPC64_PLTGOT16_HA:
65f38f15
AM
9724 case R_PPC64_PLT16_HA:
9725 case R_PPC64_TOC16_HA:
9726 case R_PPC64_SECTOFF_HA:
411e1bfb
AM
9727 case R_PPC64_TPREL16_HA:
9728 case R_PPC64_DTPREL16_HA:
9729 case R_PPC64_GOT_TLSGD16_HA:
9730 case R_PPC64_GOT_TLSLD16_HA:
9731 case R_PPC64_GOT_TPREL16_HA:
9732 case R_PPC64_GOT_DTPREL16_HA:
9733 case R_PPC64_TPREL16_HIGHER:
9734 case R_PPC64_TPREL16_HIGHERA:
9735 case R_PPC64_TPREL16_HIGHEST:
9736 case R_PPC64_TPREL16_HIGHESTA:
9737 case R_PPC64_DTPREL16_HIGHER:
9738 case R_PPC64_DTPREL16_HIGHERA:
9739 case R_PPC64_DTPREL16_HIGHEST:
9740 case R_PPC64_DTPREL16_HIGHESTA:
65f38f15
AM
9741 /* It's just possible that this symbol is a weak symbol
9742 that's not actually defined anywhere. In that case,
9743 'sec' would be NULL, and we should leave the symbol
9744 alone (it will be set to zero elsewhere in the link). */
9745 if (sec != NULL)
e515b051
AM
9746 /* Add 0x10000 if sign bit in 0:15 is set.
9747 Bits 0:15 are not used. */
9748 addend += 0x8000;
65f38f15
AM
9749 break;
9750
9751 case R_PPC64_ADDR16_DS:
9752 case R_PPC64_ADDR16_LO_DS:
9753 case R_PPC64_GOT16_DS:
9754 case R_PPC64_GOT16_LO_DS:
9755 case R_PPC64_PLT16_LO_DS:
9756 case R_PPC64_SECTOFF_DS:
9757 case R_PPC64_SECTOFF_LO_DS:
9758 case R_PPC64_TOC16_DS:
9759 case R_PPC64_TOC16_LO_DS:
9760 case R_PPC64_PLTGOT16_DS:
9761 case R_PPC64_PLTGOT16_LO_DS:
411e1bfb
AM
9762 case R_PPC64_GOT_TPREL16_DS:
9763 case R_PPC64_GOT_TPREL16_LO_DS:
9764 case R_PPC64_GOT_DTPREL16_DS:
9765 case R_PPC64_GOT_DTPREL16_LO_DS:
9766 case R_PPC64_TPREL16_DS:
9767 case R_PPC64_TPREL16_LO_DS:
9768 case R_PPC64_DTPREL16_DS:
9769 case R_PPC64_DTPREL16_LO_DS:
adadcc0c
AM
9770 insn = bfd_get_32 (input_bfd, contents + (rel->r_offset & ~3));
9771 mask = 3;
9772 /* If this reloc is against an lq insn, then the value must be
9773 a multiple of 16. This is somewhat of a hack, but the
9774 "correct" way to do this by defining _DQ forms of all the
9775 _DS relocs bloats all reloc switches in this file. It
9776 doesn't seem to make much sense to use any of these relocs
9777 in data, so testing the insn should be safe. */
494dac0c 9778 if ((insn & (0x3f << 26)) == (56u << 26))
adadcc0c
AM
9779 mask = 15;
9780 if (((relocation + addend) & mask) != 0)
65f38f15
AM
9781 {
9782 (*_bfd_error_handler)
d003868e
AM
9783 (_("%B: error: relocation %s not a multiple of %d"),
9784 input_bfd,
4ce794b7 9785 ppc64_elf_howto_table[r_type]->name,
adadcc0c 9786 mask + 1);
65f38f15 9787 bfd_set_error (bfd_error_bad_value);
b34976b6 9788 ret = FALSE;
65f38f15
AM
9789 continue;
9790 }
9791 break;
5bd4f169
AM
9792 }
9793
239e1f3a
AM
9794 /* Dynamic relocs are not propagated for SEC_DEBUGGING sections
9795 because such sections are not SEC_ALLOC and thus ld.so will
9796 not process them. */
65f38f15 9797 if (unresolved_reloc
239e1f3a 9798 && !((input_section->flags & SEC_DEBUGGING) != 0
039b3fef 9799 && (h->elf.elf_link_hash_flags & ELF_LINK_HASH_DEF_DYNAMIC)))
9c07fe7c
AM
9800 {
9801 (*_bfd_error_handler)
d003868e
AM
9802 (_("%B(%A+0x%lx): unresolvable %s relocation against symbol `%s'"),
9803 input_bfd,
9804 input_section,
9c07fe7c 9805 (long) rel->r_offset,
7b609f53 9806 ppc64_elf_howto_table[(int) r_type]->name,
039b3fef 9807 h->elf.root.root.string);
b34976b6 9808 ret = FALSE;
9c07fe7c 9809 }
5bd4f169 9810
65f38f15 9811 r = _bfd_final_link_relocate (ppc64_elf_howto_table[(int) r_type],
5bd4f169
AM
9812 input_bfd,
9813 input_section,
9814 contents,
411e1bfb 9815 rel->r_offset,
5bd4f169
AM
9816 relocation,
9817 addend);
9818
ef60b7ff 9819 if (r != bfd_reloc_ok)
5bd4f169 9820 {
cd27b276
AM
9821 if (sym_name == NULL)
9822 sym_name = "(null)";
9823 if (r == bfd_reloc_overflow)
5bd4f169 9824 {
cd27b276
AM
9825 if (warned)
9826 continue;
9827 if (h != NULL
039b3fef 9828 && h->elf.root.type == bfd_link_hash_undefweak
4ce794b7 9829 && ppc64_elf_howto_table[r_type]->pc_relative)
5bd4f169
AM
9830 {
9831 /* Assume this is a call protected by other code that
9832 detects the symbol is undefined. If this is the case,
9833 we can safely ignore the overflow. If not, the
9834 program is hosed anyway, and a little warning isn't
9835 going to help. */
9836
9837 continue;
9838 }
9839
ef60b7ff 9840 if (!((*info->callbacks->reloc_overflow)
4ce794b7 9841 (info, sym_name, ppc64_elf_howto_table[r_type]->name,
411e1bfb 9842 rel->r_addend, input_bfd, input_section, rel->r_offset)))
b34976b6 9843 return FALSE;
ef60b7ff
AM
9844 }
9845 else
9846 {
9847 (*_bfd_error_handler)
d003868e
AM
9848 (_("%B(%A+0x%lx): %s reloc against `%s': error %d"),
9849 input_bfd,
9850 input_section,
7b609f53 9851 (long) rel->r_offset,
4ce794b7 9852 ppc64_elf_howto_table[r_type]->name,
7b609f53
AM
9853 sym_name,
9854 (int) r);
b34976b6 9855 ret = FALSE;
ef60b7ff 9856 }
5bd4f169 9857 }
5bd4f169
AM
9858 }
9859
5bd4f169
AM
9860 return ret;
9861}
9862
754021d0
AM
9863/* Adjust the value of any local symbols in opd sections. */
9864
9865static bfd_boolean
9866ppc64_elf_output_symbol_hook (struct bfd_link_info *info,
9867 const char *name ATTRIBUTE_UNUSED,
9868 Elf_Internal_Sym *elfsym,
9869 asection *input_sec,
9870 struct elf_link_hash_entry *h)
9871{
4025353c 9872 long *opd_adjust, adjust;
754021d0
AM
9873 bfd_vma value;
9874
4025353c
AM
9875 if (h != NULL)
9876 return TRUE;
9877
9878 opd_adjust = get_opd_info (input_sec);
9879 if (opd_adjust == NULL)
754021d0
AM
9880 return TRUE;
9881
9882 value = elfsym->st_value - input_sec->output_offset;
9883 if (!info->relocatable)
9884 value -= input_sec->output_section->vma;
9885
3f764659 9886 adjust = opd_adjust[value / 8];
4025353c
AM
9887 if (adjust == -1)
9888 elfsym->st_value = 0;
9889 else
9890 elfsym->st_value += adjust;
754021d0
AM
9891 return TRUE;
9892}
9893
5bd4f169
AM
9894/* Finish up dynamic symbol handling. We set the contents of various
9895 dynamic sections here. */
9896
b34976b6 9897static bfd_boolean
4ce794b7
AM
9898ppc64_elf_finish_dynamic_symbol (bfd *output_bfd,
9899 struct bfd_link_info *info,
9900 struct elf_link_hash_entry *h,
9901 Elf_Internal_Sym *sym)
5bd4f169 9902{
65f38f15 9903 struct ppc_link_hash_table *htab;
5bd4f169 9904 bfd *dynobj;
8387904d
AM
9905 struct plt_entry *ent;
9906 Elf_Internal_Rela rela;
9907 bfd_byte *loc;
5bd4f169 9908
65f38f15
AM
9909 htab = ppc_hash_table (info);
9910 dynobj = htab->elf.dynobj;
5bd4f169 9911
8387904d
AM
9912 for (ent = h->plt.plist; ent != NULL; ent = ent->next)
9913 if (ent->plt.offset != (bfd_vma) -1)
9914 {
9915 /* This symbol has an entry in the procedure linkage
9916 table. Set it up. */
9917
9918 if (htab->plt == NULL
9919 || htab->relplt == NULL
9920 || htab->glink == NULL)
9921 abort ();
9922
9923 /* Create a JMP_SLOT reloc to inform the dynamic linker to
9924 fill in the PLT entry. */
9925 rela.r_offset = (htab->plt->output_section->vma
9926 + htab->plt->output_offset
9927 + ent->plt.offset);
9928 rela.r_info = ELF64_R_INFO (h->dynindx, R_PPC64_JMP_SLOT);
9929 rela.r_addend = ent->addend;
9930
9931 loc = htab->relplt->contents;
9932 loc += ((ent->plt.offset - PLT_INITIAL_ENTRY_SIZE) / PLT_ENTRY_SIZE
9933 * sizeof (Elf64_External_Rela));
9934 bfd_elf64_swap_reloca_out (output_bfd, &rela, loc);
9935 }
5bd4f169
AM
9936
9937 if ((h->elf_link_hash_flags & ELF_LINK_HASH_NEEDS_COPY) != 0)
9938 {
5bd4f169 9939 Elf_Internal_Rela rela;
947216bf 9940 bfd_byte *loc;
5bd4f169 9941
65f38f15 9942 /* This symbol needs a copy reloc. Set it up. */
5bd4f169 9943
65f38f15
AM
9944 if (h->dynindx == -1
9945 || (h->root.type != bfd_link_hash_defined
9946 && h->root.type != bfd_link_hash_defweak)
4ce794b7 9947 || htab->relbss == NULL)
65f38f15 9948 abort ();
5bd4f169
AM
9949
9950 rela.r_offset = (h->root.u.def.value
9951 + h->root.u.def.section->output_section->vma
9952 + h->root.u.def.section->output_offset);
9953 rela.r_info = ELF64_R_INFO (h->dynindx, R_PPC64_COPY);
9954 rela.r_addend = 0;
4ce794b7
AM
9955 loc = htab->relbss->contents;
9956 loc += htab->relbss->reloc_count++ * sizeof (Elf64_External_Rela);
65f38f15 9957 bfd_elf64_swap_reloca_out (output_bfd, &rela, loc);
5bd4f169
AM
9958 }
9959
5bd4f169
AM
9960 /* Mark some specially defined symbols as absolute. */
9961 if (strcmp (h->root.root.string, "_DYNAMIC") == 0)
9962 sym->st_shndx = SHN_ABS;
9963
b34976b6 9964 return TRUE;
5bd4f169
AM
9965}
9966
65f38f15
AM
9967/* Used to decide how to sort relocs in an optimal manner for the
9968 dynamic linker, before writing them out. */
9969
9970static enum elf_reloc_type_class
4ce794b7 9971ppc64_elf_reloc_type_class (const Elf_Internal_Rela *rela)
65f38f15 9972{
04c9666a 9973 enum elf_ppc64_reloc_type r_type;
a33d1f77 9974
4ce794b7 9975 r_type = ELF64_R_TYPE (rela->r_info);
a33d1f77 9976 switch (r_type)
65f38f15
AM
9977 {
9978 case R_PPC64_RELATIVE:
9979 return reloc_class_relative;
9980 case R_PPC64_JMP_SLOT:
9981 return reloc_class_plt;
9982 case R_PPC64_COPY:
9983 return reloc_class_copy;
9984 default:
9985 return reloc_class_normal;
9986 }
9987}
9988
5bd4f169
AM
9989/* Finish up the dynamic sections. */
9990
b34976b6 9991static bfd_boolean
4ce794b7
AM
9992ppc64_elf_finish_dynamic_sections (bfd *output_bfd,
9993 struct bfd_link_info *info)
5bd4f169 9994{
65f38f15
AM
9995 struct ppc_link_hash_table *htab;
9996 bfd *dynobj;
5bd4f169 9997 asection *sdyn;
5bd4f169 9998
65f38f15
AM
9999 htab = ppc_hash_table (info);
10000 dynobj = htab->elf.dynobj;
5bd4f169
AM
10001 sdyn = bfd_get_section_by_name (dynobj, ".dynamic");
10002
65f38f15 10003 if (htab->elf.dynamic_sections_created)
5bd4f169 10004 {
5bd4f169
AM
10005 Elf64_External_Dyn *dyncon, *dynconend;
10006
4ce794b7 10007 if (sdyn == NULL || htab->got == NULL)
65f38f15 10008 abort ();
5bd4f169
AM
10009
10010 dyncon = (Elf64_External_Dyn *) sdyn->contents;
eea6121a 10011 dynconend = (Elf64_External_Dyn *) (sdyn->contents + sdyn->size);
5bd4f169
AM
10012 for (; dyncon < dynconend; dyncon++)
10013 {
10014 Elf_Internal_Dyn dyn;
19397422 10015 asection *s;
5bd4f169
AM
10016
10017 bfd_elf64_swap_dyn_in (dynobj, dyncon, &dyn);
10018
10019 switch (dyn.d_tag)
10020 {
65f38f15
AM
10021 default:
10022 continue;
5bd4f169 10023
5d1634d7 10024 case DT_PPC64_GLINK:
4ce794b7 10025 s = htab->glink;
6348e046 10026 dyn.d_un.d_ptr = s->output_section->vma + s->output_offset;
ad8e1ba5
AM
10027 /* We stupidly defined DT_PPC64_GLINK to be the start
10028 of glink rather than the first entry point, which is
10029 what ld.so needs, and now have a bigger stub to
10030 support automatic multiple TOCs. */
10031 dyn.d_un.d_ptr += GLINK_CALL_STUB_SIZE - 32;
5d1634d7
AM
10032 break;
10033
19397422
AM
10034 case DT_PPC64_OPD:
10035 s = bfd_get_section_by_name (output_bfd, ".opd");
6348e046
AM
10036 if (s == NULL)
10037 continue;
10038 dyn.d_un.d_ptr = s->vma;
19397422
AM
10039 break;
10040
10041 case DT_PPC64_OPDSZ:
10042 s = bfd_get_section_by_name (output_bfd, ".opd");
6348e046
AM
10043 if (s == NULL)
10044 continue;
eea6121a 10045 dyn.d_un.d_val = s->size;
19397422
AM
10046 break;
10047
65f38f15 10048 case DT_PLTGOT:
4ce794b7 10049 s = htab->plt;
6348e046 10050 dyn.d_un.d_ptr = s->output_section->vma + s->output_offset;
65f38f15
AM
10051 break;
10052
10053 case DT_JMPREL:
4ce794b7 10054 s = htab->relplt;
6348e046 10055 dyn.d_un.d_ptr = s->output_section->vma + s->output_offset;
65f38f15 10056 break;
5bd4f169 10057
65f38f15 10058 case DT_PLTRELSZ:
eea6121a 10059 dyn.d_un.d_val = htab->relplt->size;
5d1634d7
AM
10060 break;
10061
10062 case DT_RELASZ:
10063 /* Don't count procedure linkage table relocs in the
10064 overall reloc count. */
4ce794b7 10065 s = htab->relplt;
6348e046
AM
10066 if (s == NULL)
10067 continue;
eea6121a 10068 dyn.d_un.d_val -= s->size;
6348e046
AM
10069 break;
10070
10071 case DT_RELA:
10072 /* We may not be using the standard ELF linker script.
10073 If .rela.plt is the first .rela section, we adjust
10074 DT_RELA to not include it. */
4ce794b7 10075 s = htab->relplt;
6348e046
AM
10076 if (s == NULL)
10077 continue;
10078 if (dyn.d_un.d_ptr != s->output_section->vma + s->output_offset)
10079 continue;
eea6121a 10080 dyn.d_un.d_ptr += s->size;
65f38f15 10081 break;
5bd4f169 10082 }
5bd4f169 10083
65f38f15 10084 bfd_elf64_swap_dyn_out (output_bfd, &dyn, dyncon);
5bd4f169 10085 }
5bd4f169
AM
10086 }
10087
eea6121a 10088 if (htab->got != NULL && htab->got->size != 0)
5d1634d7
AM
10089 {
10090 /* Fill in the first entry in the global offset table.
10091 We use it to hold the link-time TOCbase. */
10092 bfd_put_64 (output_bfd,
60ee0d4a 10093 elf_gp (output_bfd) + TOC_BASE_OFF,
4ce794b7 10094 htab->got->contents);
5d1634d7
AM
10095
10096 /* Set .got entry size. */
4ce794b7 10097 elf_section_data (htab->got->output_section)->this_hdr.sh_entsize = 8;
5d1634d7
AM
10098 }
10099
eea6121a 10100 if (htab->plt != NULL && htab->plt->size != 0)
5d1634d7
AM
10101 {
10102 /* Set .plt entry size. */
4ce794b7 10103 elf_section_data (htab->plt->output_section)->this_hdr.sh_entsize
5d1634d7
AM
10104 = PLT_ENTRY_SIZE;
10105 }
10106
e717da7e
AM
10107 /* We need to handle writing out multiple GOT sections ourselves,
10108 since we didn't add them to DYNOBJ. */
10109 while ((dynobj = dynobj->link_next) != NULL)
10110 {
10111 asection *s;
10112 s = ppc64_elf_tdata (dynobj)->got;
10113 if (s != NULL
eea6121a 10114 && s->size != 0
e717da7e
AM
10115 && s->output_section != bfd_abs_section_ptr
10116 && !bfd_set_section_contents (output_bfd, s->output_section,
10117 s->contents, s->output_offset,
eea6121a 10118 s->size))
e717da7e
AM
10119 return FALSE;
10120 s = ppc64_elf_tdata (dynobj)->relgot;
10121 if (s != NULL
eea6121a 10122 && s->size != 0
e717da7e
AM
10123 && s->output_section != bfd_abs_section_ptr
10124 && !bfd_set_section_contents (output_bfd, s->output_section,
10125 s->contents, s->output_offset,
eea6121a 10126 s->size))
e717da7e
AM
10127 return FALSE;
10128 }
f6c52c13 10129
b34976b6 10130 return TRUE;
5bd4f169
AM
10131}
10132
5bd4f169 10133#include "elf64-target.h"
This page took 0.806399 seconds and 4 git commands to generate.