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252b5132 1/* BFD support for handling relocation entries.
7898deda 2 Copyright 1990, 1991, 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999,
263badd7 3 2000, 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008, 2009, 2010
252b5132
RH
4 Free Software Foundation, Inc.
5 Written by Cygnus Support.
6
ec4530b5 7 This file is part of BFD, the Binary File Descriptor library.
252b5132 8
ec4530b5
NC
9 This program is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
cd123cb7 11 the Free Software Foundation; either version 3 of the License, or
ec4530b5 12 (at your option) any later version.
252b5132 13
ec4530b5
NC
14 This program is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 GNU General Public License for more details.
252b5132 18
ec4530b5
NC
19 You should have received a copy of the GNU General Public License
20 along with this program; if not, write to the Free Software
cd123cb7
NC
21 Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
22 MA 02110-1301, USA. */
252b5132
RH
23
24/*
25SECTION
26 Relocations
27
28 BFD maintains relocations in much the same way it maintains
29 symbols: they are left alone until required, then read in
3f9b03b5 30 en-masse and translated into an internal form. A common
252b5132
RH
31 routine <<bfd_perform_relocation>> acts upon the
32 canonical form to do the fixup.
33
34 Relocations are maintained on a per section basis,
35 while symbols are maintained on a per BFD basis.
36
37 All that a back end has to do to fit the BFD interface is to create
38 a <<struct reloc_cache_entry>> for each relocation
39 in a particular section, and fill in the right bits of the structures.
40
41@menu
42@* typedef arelent::
43@* howto manager::
44@end menu
45
46*/
47
48/* DO compile in the reloc_code name table from libbfd.h. */
49#define _BFD_MAKE_TABLE_bfd_reloc_code_real
50
252b5132 51#include "sysdep.h"
3db64b00 52#include "bfd.h"
252b5132
RH
53#include "bfdlink.h"
54#include "libbfd.h"
55/*
56DOCDD
57INODE
58 typedef arelent, howto manager, Relocations, Relocations
59
60SUBSECTION
61 typedef arelent
62
63 This is the structure of a relocation entry:
64
65CODE_FRAGMENT
66.
67.typedef enum bfd_reloc_status
68.{
b5f79c76 69. {* No errors detected. *}
252b5132
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70. bfd_reloc_ok,
71.
b5f79c76 72. {* The relocation was performed, but there was an overflow. *}
252b5132
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73. bfd_reloc_overflow,
74.
b5f79c76 75. {* The address to relocate was not within the section supplied. *}
252b5132
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76. bfd_reloc_outofrange,
77.
b5f79c76 78. {* Used by special functions. *}
252b5132
RH
79. bfd_reloc_continue,
80.
b5f79c76 81. {* Unsupported relocation size requested. *}
252b5132
RH
82. bfd_reloc_notsupported,
83.
b5f79c76 84. {* Unused. *}
252b5132
RH
85. bfd_reloc_other,
86.
b5f79c76 87. {* The symbol to relocate against was undefined. *}
252b5132
RH
88. bfd_reloc_undefined,
89.
dc810e39
AM
90. {* The relocation was performed, but may not be ok - presently
91. generated only when linking i960 coff files with i960 b.out
92. symbols. If this type is returned, the error_message argument
93. to bfd_perform_relocation will be set. *}
252b5132
RH
94. bfd_reloc_dangerous
95. }
96. bfd_reloc_status_type;
97.
98.
99.typedef struct reloc_cache_entry
100.{
b5f79c76 101. {* A pointer into the canonical table of pointers. *}
fc0a2244 102. struct bfd_symbol **sym_ptr_ptr;
252b5132 103.
b5f79c76 104. {* offset in section. *}
252b5132
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105. bfd_size_type address;
106.
b5f79c76 107. {* addend for relocation value. *}
252b5132
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108. bfd_vma addend;
109.
b5f79c76 110. {* Pointer to how to perform the required relocation. *}
252b5132
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111. reloc_howto_type *howto;
112.
b5f79c76
NC
113.}
114.arelent;
115.
252b5132
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116*/
117
118/*
119DESCRIPTION
120
121 Here is a description of each of the fields within an <<arelent>>:
122
123 o <<sym_ptr_ptr>>
124
125 The symbol table pointer points to a pointer to the symbol
6cee3f79
AC
126 associated with the relocation request. It is the pointer
127 into the table returned by the back end's
128 <<canonicalize_symtab>> action. @xref{Symbols}. The symbol is
129 referenced through a pointer to a pointer so that tools like
130 the linker can fix up all the symbols of the same name by
131 modifying only one pointer. The relocation routine looks in
132 the symbol and uses the base of the section the symbol is
133 attached to and the value of the symbol as the initial
134 relocation offset. If the symbol pointer is zero, then the
135 section provided is looked up.
252b5132
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136
137 o <<address>>
138
139 The <<address>> field gives the offset in bytes from the base of
140 the section data which owns the relocation record to the first
141 byte of relocatable information. The actual data relocated
142 will be relative to this point; for example, a relocation
143 type which modifies the bottom two bytes of a four byte word
144 would not touch the first byte pointed to in a big endian
145 world.
146
147 o <<addend>>
148
149 The <<addend>> is a value provided by the back end to be added (!)
150 to the relocation offset. Its interpretation is dependent upon
151 the howto. For example, on the 68k the code:
152
252b5132
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153| char foo[];
154| main()
155| {
156| return foo[0x12345678];
157| }
158
159 Could be compiled into:
160
161| linkw fp,#-4
162| moveb @@#12345678,d0
163| extbl d0
164| unlk fp
165| rts
166
252b5132
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167 This could create a reloc pointing to <<foo>>, but leave the
168 offset in the data, something like:
169
252b5132
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170|RELOCATION RECORDS FOR [.text]:
171|offset type value
172|00000006 32 _foo
173|
174|00000000 4e56 fffc ; linkw fp,#-4
175|00000004 1039 1234 5678 ; moveb @@#12345678,d0
176|0000000a 49c0 ; extbl d0
177|0000000c 4e5e ; unlk fp
178|0000000e 4e75 ; rts
179
252b5132
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180 Using coff and an 88k, some instructions don't have enough
181 space in them to represent the full address range, and
182 pointers have to be loaded in two parts. So you'd get something like:
183
252b5132
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184| or.u r13,r0,hi16(_foo+0x12345678)
185| ld.b r2,r13,lo16(_foo+0x12345678)
186| jmp r1
187
252b5132
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188 This should create two relocs, both pointing to <<_foo>>, and with
189 0x12340000 in their addend field. The data would consist of:
190
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191|RELOCATION RECORDS FOR [.text]:
192|offset type value
193|00000002 HVRT16 _foo+0x12340000
194|00000006 LVRT16 _foo+0x12340000
195|
196|00000000 5da05678 ; or.u r13,r0,0x5678
197|00000004 1c4d5678 ; ld.b r2,r13,0x5678
198|00000008 f400c001 ; jmp r1
199
252b5132
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200 The relocation routine digs out the value from the data, adds
201 it to the addend to get the original offset, and then adds the
202 value of <<_foo>>. Note that all 32 bits have to be kept around
203 somewhere, to cope with carry from bit 15 to bit 16.
204
205 One further example is the sparc and the a.out format. The
206 sparc has a similar problem to the 88k, in that some
207 instructions don't have room for an entire offset, but on the
208 sparc the parts are created in odd sized lumps. The designers of
209 the a.out format chose to not use the data within the section
210 for storing part of the offset; all the offset is kept within
211 the reloc. Anything in the data should be ignored.
212
213| save %sp,-112,%sp
214| sethi %hi(_foo+0x12345678),%g2
215| ldsb [%g2+%lo(_foo+0x12345678)],%i0
216| ret
217| restore
218
219 Both relocs contain a pointer to <<foo>>, and the offsets
220 contain junk.
221
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222|RELOCATION RECORDS FOR [.text]:
223|offset type value
224|00000004 HI22 _foo+0x12345678
225|00000008 LO10 _foo+0x12345678
226|
227|00000000 9de3bf90 ; save %sp,-112,%sp
228|00000004 05000000 ; sethi %hi(_foo+0),%g2
229|00000008 f048a000 ; ldsb [%g2+%lo(_foo+0)],%i0
230|0000000c 81c7e008 ; ret
231|00000010 81e80000 ; restore
232
252b5132
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233 o <<howto>>
234
235 The <<howto>> field can be imagined as a
236 relocation instruction. It is a pointer to a structure which
237 contains information on what to do with all of the other
238 information in the reloc record and data section. A back end
239 would normally have a relocation instruction set and turn
240 relocations into pointers to the correct structure on input -
241 but it would be possible to create each howto field on demand.
242
243*/
244
245/*
246SUBSUBSECTION
247 <<enum complain_overflow>>
248
249 Indicates what sort of overflow checking should be done when
250 performing a relocation.
251
252CODE_FRAGMENT
253.
254.enum complain_overflow
255.{
b5f79c76 256. {* Do not complain on overflow. *}
252b5132
RH
257. complain_overflow_dont,
258.
a7985d73
AM
259. {* Complain if the value overflows when considered as a signed
260. number one bit larger than the field. ie. A bitfield of N bits
261. is allowed to represent -2**n to 2**n-1. *}
252b5132
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262. complain_overflow_bitfield,
263.
a7985d73 264. {* Complain if the value overflows when considered as a signed
b5f79c76 265. number. *}
252b5132
RH
266. complain_overflow_signed,
267.
dc810e39 268. {* Complain if the value overflows when considered as an
b5f79c76 269. unsigned number. *}
252b5132
RH
270. complain_overflow_unsigned
271.};
272
273*/
274
275/*
276SUBSUBSECTION
277 <<reloc_howto_type>>
278
279 The <<reloc_howto_type>> is a structure which contains all the
280 information that libbfd needs to know to tie up a back end's data.
281
282CODE_FRAGMENT
fc0a2244 283.struct bfd_symbol; {* Forward declaration. *}
252b5132
RH
284.
285.struct reloc_howto_struct
286.{
dc810e39
AM
287. {* The type field has mainly a documentary use - the back end can
288. do what it wants with it, though normally the back end's
289. external idea of what a reloc number is stored
290. in this field. For example, a PC relative word relocation
291. in a coff environment has the type 023 - because that's
292. what the outside world calls a R_PCRWORD reloc. *}
252b5132
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293. unsigned int type;
294.
dc810e39
AM
295. {* The value the final relocation is shifted right by. This drops
296. unwanted data from the relocation. *}
252b5132
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297. unsigned int rightshift;
298.
dc810e39
AM
299. {* The size of the item to be relocated. This is *not* a
300. power-of-two measure. To get the number of bytes operated
301. on by a type of relocation, use bfd_get_reloc_size. *}
252b5132
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302. int size;
303.
dc810e39
AM
304. {* The number of bits in the item to be relocated. This is used
305. when doing overflow checking. *}
252b5132
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306. unsigned int bitsize;
307.
dc810e39
AM
308. {* Notes that the relocation is relative to the location in the
309. data section of the addend. The relocation function will
310. subtract from the relocation value the address of the location
311. being relocated. *}
b34976b6 312. bfd_boolean pc_relative;
252b5132 313.
dc810e39
AM
314. {* The bit position of the reloc value in the destination.
315. The relocated value is left shifted by this amount. *}
252b5132
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316. unsigned int bitpos;
317.
dc810e39
AM
318. {* What type of overflow error should be checked for when
319. relocating. *}
252b5132
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320. enum complain_overflow complain_on_overflow;
321.
dc810e39
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322. {* If this field is non null, then the supplied function is
323. called rather than the normal function. This allows really
7dee875e 324. strange relocation methods to be accommodated (e.g., i960 callj
dc810e39 325. instructions). *}
252b5132 326. bfd_reloc_status_type (*special_function)
fc0a2244 327. (bfd *, arelent *, struct bfd_symbol *, void *, asection *,
c58b9523 328. bfd *, char **);
252b5132 329.
dc810e39 330. {* The textual name of the relocation type. *}
252b5132
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331. char *name;
332.
dc810e39
AM
333. {* Some formats record a relocation addend in the section contents
334. rather than with the relocation. For ELF formats this is the
335. distinction between USE_REL and USE_RELA (though the code checks
336. for USE_REL == 1/0). The value of this field is TRUE if the
337. addend is recorded with the section contents; when performing a
338. partial link (ld -r) the section contents (the data) will be
339. modified. The value of this field is FALSE if addends are
340. recorded with the relocation (in arelent.addend); when performing
341. a partial link the relocation will be modified.
342. All relocations for all ELF USE_RELA targets should set this field
343. to FALSE (values of TRUE should be looked on with suspicion).
344. However, the converse is not true: not all relocations of all ELF
345. USE_REL targets set this field to TRUE. Why this is so is peculiar
346. to each particular target. For relocs that aren't used in partial
347. links (e.g. GOT stuff) it doesn't matter what this is set to. *}
b34976b6 348. bfd_boolean partial_inplace;
252b5132 349.
7dc77aaa
AM
350. {* src_mask selects the part of the instruction (or data) to be used
351. in the relocation sum. If the target relocations don't have an
352. addend in the reloc, eg. ELF USE_REL, src_mask will normally equal
353. dst_mask to extract the addend from the section contents. If
354. relocations do have an addend in the reloc, eg. ELF USE_RELA, this
355. field should be zero. Non-zero values for ELF USE_RELA targets are
356. bogus as in those cases the value in the dst_mask part of the
357. section contents should be treated as garbage. *}
252b5132
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358. bfd_vma src_mask;
359.
7dc77aaa
AM
360. {* dst_mask selects which parts of the instruction (or data) are
361. replaced with a relocated value. *}
252b5132
RH
362. bfd_vma dst_mask;
363.
dc810e39
AM
364. {* When some formats create PC relative instructions, they leave
365. the value of the pc of the place being relocated in the offset
366. slot of the instruction, so that a PC relative relocation can
367. be made just by adding in an ordinary offset (e.g., sun3 a.out).
368. Some formats leave the displacement part of an instruction
369. empty (e.g., m88k bcs); this flag signals the fact. *}
b34976b6 370. bfd_boolean pcrel_offset;
252b5132 371.};
b5f79c76 372.
252b5132
RH
373*/
374
375/*
376FUNCTION
377 The HOWTO Macro
378
379DESCRIPTION
380 The HOWTO define is horrible and will go away.
381
dc810e39
AM
382.#define HOWTO(C, R, S, B, P, BI, O, SF, NAME, INPLACE, MASKSRC, MASKDST, PC) \
383. { (unsigned) C, R, S, B, P, BI, O, SF, NAME, INPLACE, MASKSRC, MASKDST, PC }
252b5132
RH
384
385DESCRIPTION
386 And will be replaced with the totally magic way. But for the
387 moment, we are compatible, so do it this way.
388
dc810e39
AM
389.#define NEWHOWTO(FUNCTION, NAME, SIZE, REL, IN) \
390. HOWTO (0, 0, SIZE, 0, REL, 0, complain_overflow_dont, FUNCTION, \
b34976b6 391. NAME, FALSE, 0, 0, IN)
252b5132 392.
5f771d47
ILT
393
394DESCRIPTION
395 This is used to fill in an empty howto entry in an array.
396
397.#define EMPTY_HOWTO(C) \
b34976b6
AM
398. HOWTO ((C), 0, 0, 0, FALSE, 0, complain_overflow_dont, NULL, \
399. NULL, FALSE, 0, 0, FALSE)
5f771d47
ILT
400.
401
252b5132
RH
402DESCRIPTION
403 Helper routine to turn a symbol into a relocation value.
404
dc810e39
AM
405.#define HOWTO_PREPARE(relocation, symbol) \
406. { \
c58b9523 407. if (symbol != NULL) \
dc810e39
AM
408. { \
409. if (bfd_is_com_section (symbol->section)) \
410. { \
411. relocation = 0; \
412. } \
413. else \
414. { \
415. relocation = symbol->value; \
416. } \
417. } \
418. }
b5f79c76 419.
252b5132
RH
420*/
421
422/*
423FUNCTION
424 bfd_get_reloc_size
425
426SYNOPSIS
427 unsigned int bfd_get_reloc_size (reloc_howto_type *);
428
429DESCRIPTION
430 For a reloc_howto_type that operates on a fixed number of bytes,
431 this returns the number of bytes operated on.
432 */
433
434unsigned int
c58b9523 435bfd_get_reloc_size (reloc_howto_type *howto)
252b5132
RH
436{
437 switch (howto->size)
438 {
439 case 0: return 1;
440 case 1: return 2;
441 case 2: return 4;
442 case 3: return 0;
443 case 4: return 8;
444 case 8: return 16;
445 case -2: return 4;
446 default: abort ();
447 }
448}
449
450/*
451TYPEDEF
452 arelent_chain
453
454DESCRIPTION
455
456 How relocs are tied together in an <<asection>>:
457
dc810e39
AM
458.typedef struct relent_chain
459.{
252b5132 460. arelent relent;
dc810e39 461. struct relent_chain *next;
b5f79c76
NC
462.}
463.arelent_chain;
464.
252b5132
RH
465*/
466
467/* N_ONES produces N one bits, without overflowing machine arithmetic. */
468#define N_ONES(n) (((((bfd_vma) 1 << ((n) - 1)) - 1) << 1) | 1)
469
470/*
471FUNCTION
472 bfd_check_overflow
473
474SYNOPSIS
c58b9523
AM
475 bfd_reloc_status_type bfd_check_overflow
476 (enum complain_overflow how,
477 unsigned int bitsize,
478 unsigned int rightshift,
479 unsigned int addrsize,
480 bfd_vma relocation);
252b5132
RH
481
482DESCRIPTION
483 Perform overflow checking on @var{relocation} which has
484 @var{bitsize} significant bits and will be shifted right by
485 @var{rightshift} bits, on a machine with addresses containing
486 @var{addrsize} significant bits. The result is either of
487 @code{bfd_reloc_ok} or @code{bfd_reloc_overflow}.
488
489*/
490
491bfd_reloc_status_type
c58b9523
AM
492bfd_check_overflow (enum complain_overflow how,
493 unsigned int bitsize,
494 unsigned int rightshift,
495 unsigned int addrsize,
496 bfd_vma relocation)
252b5132
RH
497{
498 bfd_vma fieldmask, addrmask, signmask, ss, a;
499 bfd_reloc_status_type flag = bfd_reloc_ok;
500
252b5132
RH
501 /* Note: BITSIZE should always be <= ADDRSIZE, but in case it's not,
502 we'll be permissive: extra bits in the field mask will
503 automatically extend the address mask for purposes of the
504 overflow check. */
505 fieldmask = N_ONES (bitsize);
a7985d73 506 signmask = ~fieldmask;
263badd7 507 addrmask = N_ONES (addrsize) | (fieldmask << rightshift);
a7985d73 508 a = (relocation & addrmask) >> rightshift;;
252b5132
RH
509
510 switch (how)
511 {
512 case complain_overflow_dont:
513 break;
514
515 case complain_overflow_signed:
516 /* If any sign bits are set, all sign bits must be set. That
517 is, A must be a valid negative address after shifting. */
252b5132 518 signmask = ~ (fieldmask >> 1);
a7985d73 519 /* Fall thru */
252b5132
RH
520
521 case complain_overflow_bitfield:
522 /* Bitfields are sometimes signed, sometimes unsigned. We
d5afc56e
AM
523 explicitly allow an address wrap too, which means a bitfield
524 of n bits is allowed to store -2**n to 2**n-1. Thus overflow
525 if the value has some, but not all, bits set outside the
526 field. */
a7985d73
AM
527 ss = a & signmask;
528 if (ss != 0 && ss != ((addrmask >> rightshift) & signmask))
529 flag = bfd_reloc_overflow;
530 break;
531
532 case complain_overflow_unsigned:
533 /* We have an overflow if the address does not fit in the field. */
534 if ((a & signmask) != 0)
d5afc56e 535 flag = bfd_reloc_overflow;
252b5132
RH
536 break;
537
538 default:
539 abort ();
540 }
541
542 return flag;
543}
544
545/*
546FUNCTION
547 bfd_perform_relocation
548
549SYNOPSIS
c58b9523
AM
550 bfd_reloc_status_type bfd_perform_relocation
551 (bfd *abfd,
552 arelent *reloc_entry,
553 void *data,
554 asection *input_section,
555 bfd *output_bfd,
556 char **error_message);
252b5132
RH
557
558DESCRIPTION
559 If @var{output_bfd} is supplied to this function, the
560 generated image will be relocatable; the relocations are
561 copied to the output file after they have been changed to
562 reflect the new state of the world. There are two ways of
563 reflecting the results of partial linkage in an output file:
564 by modifying the output data in place, and by modifying the
565 relocation record. Some native formats (e.g., basic a.out and
566 basic coff) have no way of specifying an addend in the
567 relocation type, so the addend has to go in the output data.
568 This is no big deal since in these formats the output data
569 slot will always be big enough for the addend. Complex reloc
570 types with addends were invented to solve just this problem.
571 The @var{error_message} argument is set to an error message if
572 this return @code{bfd_reloc_dangerous}.
573
574*/
575
252b5132 576bfd_reloc_status_type
c58b9523
AM
577bfd_perform_relocation (bfd *abfd,
578 arelent *reloc_entry,
579 void *data,
580 asection *input_section,
581 bfd *output_bfd,
582 char **error_message)
252b5132
RH
583{
584 bfd_vma relocation;
585 bfd_reloc_status_type flag = bfd_reloc_ok;
9a968f43 586 bfd_size_type octets = reloc_entry->address * bfd_octets_per_byte (abfd);
252b5132
RH
587 bfd_vma output_base = 0;
588 reloc_howto_type *howto = reloc_entry->howto;
589 asection *reloc_target_output_section;
590 asymbol *symbol;
591
592 symbol = *(reloc_entry->sym_ptr_ptr);
593 if (bfd_is_abs_section (symbol->section)
c58b9523 594 && output_bfd != NULL)
252b5132
RH
595 {
596 reloc_entry->address += input_section->output_offset;
597 return bfd_reloc_ok;
598 }
599
1049f94e 600 /* If we are not producing relocatable output, return an error if
252b5132
RH
601 the symbol is not defined. An undefined weak symbol is
602 considered to have a value of zero (SVR4 ABI, p. 4-27). */
603 if (bfd_is_und_section (symbol->section)
604 && (symbol->flags & BSF_WEAK) == 0
c58b9523 605 && output_bfd == NULL)
252b5132
RH
606 flag = bfd_reloc_undefined;
607
608 /* If there is a function supplied to handle this relocation type,
609 call it. It'll return `bfd_reloc_continue' if further processing
610 can be done. */
611 if (howto->special_function)
612 {
613 bfd_reloc_status_type cont;
614 cont = howto->special_function (abfd, reloc_entry, symbol, data,
615 input_section, output_bfd,
616 error_message);
617 if (cont != bfd_reloc_continue)
618 return cont;
619 }
620
621 /* Is the address of the relocation really within the section? */
07515404 622 if (reloc_entry->address > bfd_get_section_limit (abfd, input_section))
252b5132
RH
623 return bfd_reloc_outofrange;
624
7dee875e 625 /* Work out which section the relocation is targeted at and the
252b5132
RH
626 initial relocation command value. */
627
628 /* Get symbol value. (Common symbols are special.) */
629 if (bfd_is_com_section (symbol->section))
630 relocation = 0;
631 else
632 relocation = symbol->value;
633
252b5132
RH
634 reloc_target_output_section = symbol->section->output_section;
635
636 /* Convert input-section-relative symbol value to absolute. */
ec4530b5
NC
637 if ((output_bfd && ! howto->partial_inplace)
638 || reloc_target_output_section == NULL)
252b5132
RH
639 output_base = 0;
640 else
641 output_base = reloc_target_output_section->vma;
642
643 relocation += output_base + symbol->section->output_offset;
644
645 /* Add in supplied addend. */
646 relocation += reloc_entry->addend;
647
648 /* Here the variable relocation holds the final address of the
649 symbol we are relocating against, plus any addend. */
650
82e51918 651 if (howto->pc_relative)
252b5132
RH
652 {
653 /* This is a PC relative relocation. We want to set RELOCATION
654 to the distance between the address of the symbol and the
655 location. RELOCATION is already the address of the symbol.
656
657 We start by subtracting the address of the section containing
658 the location.
659
660 If pcrel_offset is set, we must further subtract the position
661 of the location within the section. Some targets arrange for
662 the addend to be the negative of the position of the location
663 within the section; for example, i386-aout does this. For
b34976b6 664 i386-aout, pcrel_offset is FALSE. Some other targets do not
252b5132 665 include the position of the location; for example, m88kbcs,
b34976b6 666 or ELF. For those targets, pcrel_offset is TRUE.
252b5132 667
1049f94e 668 If we are producing relocatable output, then we must ensure
252b5132 669 that this reloc will be correctly computed when the final
b34976b6 670 relocation is done. If pcrel_offset is FALSE we want to wind
252b5132
RH
671 up with the negative of the location within the section,
672 which means we must adjust the existing addend by the change
b34976b6 673 in the location within the section. If pcrel_offset is TRUE
252b5132
RH
674 we do not want to adjust the existing addend at all.
675
676 FIXME: This seems logical to me, but for the case of
1049f94e 677 producing relocatable output it is not what the code
252b5132
RH
678 actually does. I don't want to change it, because it seems
679 far too likely that something will break. */
680
681 relocation -=
682 input_section->output_section->vma + input_section->output_offset;
683
82e51918 684 if (howto->pcrel_offset)
252b5132
RH
685 relocation -= reloc_entry->address;
686 }
687
c58b9523 688 if (output_bfd != NULL)
252b5132 689 {
82e51918 690 if (! howto->partial_inplace)
252b5132
RH
691 {
692 /* This is a partial relocation, and we want to apply the relocation
693 to the reloc entry rather than the raw data. Modify the reloc
694 inplace to reflect what we now know. */
695 reloc_entry->addend = relocation;
696 reloc_entry->address += input_section->output_offset;
697 return flag;
698 }
699 else
700 {
701 /* This is a partial relocation, but inplace, so modify the
702 reloc record a bit.
703
704 If we've relocated with a symbol with a section, change
705 into a ref to the section belonging to the symbol. */
706
707 reloc_entry->address += input_section->output_offset;
708
709 /* WTF?? */
710 if (abfd->xvec->flavour == bfd_target_coff_flavour
252b5132
RH
711 && strcmp (abfd->xvec->name, "coff-Intel-little") != 0
712 && strcmp (abfd->xvec->name, "coff-Intel-big") != 0)
713 {
252b5132
RH
714 /* For m68k-coff, the addend was being subtracted twice during
715 relocation with -r. Removing the line below this comment
716 fixes that problem; see PR 2953.
717
718However, Ian wrote the following, regarding removing the line below,
719which explains why it is still enabled: --djm
720
721If you put a patch like that into BFD you need to check all the COFF
722linkers. I am fairly certain that patch will break coff-i386 (e.g.,
723SCO); see coff_i386_reloc in coff-i386.c where I worked around the
724problem in a different way. There may very well be a reason that the
725code works as it does.
726
727Hmmm. The first obvious point is that bfd_perform_relocation should
728not have any tests that depend upon the flavour. It's seem like
729entirely the wrong place for such a thing. The second obvious point
730is that the current code ignores the reloc addend when producing
1049f94e 731relocatable output for COFF. That's peculiar. In fact, I really
252b5132
RH
732have no idea what the point of the line you want to remove is.
733
734A typical COFF reloc subtracts the old value of the symbol and adds in
735the new value to the location in the object file (if it's a pc
736relative reloc it adds the difference between the symbol value and the
737location). When relocating we need to preserve that property.
738
739BFD handles this by setting the addend to the negative of the old
740value of the symbol. Unfortunately it handles common symbols in a
741non-standard way (it doesn't subtract the old value) but that's a
742different story (we can't change it without losing backward
743compatibility with old object files) (coff-i386 does subtract the old
744value, to be compatible with existing coff-i386 targets, like SCO).
745
1049f94e
AM
746So everything works fine when not producing relocatable output. When
747we are producing relocatable output, logically we should do exactly
748what we do when not producing relocatable output. Therefore, your
252b5132
RH
749patch is correct. In fact, it should probably always just set
750reloc_entry->addend to 0 for all cases, since it is, in fact, going to
751add the value into the object file. This won't hurt the COFF code,
752which doesn't use the addend; I'm not sure what it will do to other
753formats (the thing to check for would be whether any formats both use
754the addend and set partial_inplace).
755
1049f94e 756When I wanted to make coff-i386 produce relocatable output, I ran
252b5132
RH
757into the problem that you are running into: I wanted to remove that
758line. Rather than risk it, I made the coff-i386 relocs use a special
759function; it's coff_i386_reloc in coff-i386.c. The function
760specifically adds the addend field into the object file, knowing that
761bfd_perform_relocation is not going to. If you remove that line, then
762coff-i386.c will wind up adding the addend field in twice. It's
763trivial to fix; it just needs to be done.
764
765The problem with removing the line is just that it may break some
766working code. With BFD it's hard to be sure of anything. The right
767way to deal with this is simply to build and test at least all the
768supported COFF targets. It should be straightforward if time and disk
769space consuming. For each target:
770 1) build the linker
771 2) generate some executable, and link it using -r (I would
772 probably use paranoia.o and link against newlib/libc.a, which
773 for all the supported targets would be available in
774 /usr/cygnus/progressive/H-host/target/lib/libc.a).
775 3) make the change to reloc.c
776 4) rebuild the linker
777 5) repeat step 2
778 6) if the resulting object files are the same, you have at least
779 made it no worse
780 7) if they are different you have to figure out which version is
781 right
782*/
783 relocation -= reloc_entry->addend;
252b5132
RH
784 reloc_entry->addend = 0;
785 }
786 else
787 {
788 reloc_entry->addend = relocation;
789 }
790 }
791 }
792 else
793 {
794 reloc_entry->addend = 0;
795 }
796
797 /* FIXME: This overflow checking is incomplete, because the value
798 might have overflowed before we get here. For a correct check we
799 need to compute the value in a size larger than bitsize, but we
800 can't reasonably do that for a reloc the same size as a host
801 machine word.
802 FIXME: We should also do overflow checking on the result after
803 adding in the value contained in the object file. */
804 if (howto->complain_on_overflow != complain_overflow_dont
805 && flag == bfd_reloc_ok)
806 flag = bfd_check_overflow (howto->complain_on_overflow,
807 howto->bitsize,
808 howto->rightshift,
809 bfd_arch_bits_per_address (abfd),
810 relocation);
811
b5f79c76
NC
812 /* Either we are relocating all the way, or we don't want to apply
813 the relocation to the reloc entry (probably because there isn't
814 any room in the output format to describe addends to relocs). */
252b5132
RH
815
816 /* The cast to bfd_vma avoids a bug in the Alpha OSF/1 C compiler
817 (OSF version 1.3, compiler version 3.11). It miscompiles the
818 following program:
819
820 struct str
821 {
822 unsigned int i0;
823 } s = { 0 };
824
825 int
826 main ()
827 {
828 unsigned long x;
829
830 x = 0x100000000;
831 x <<= (unsigned long) s.i0;
832 if (x == 0)
833 printf ("failed\n");
834 else
835 printf ("succeeded (%lx)\n", x);
836 }
837 */
838
839 relocation >>= (bfd_vma) howto->rightshift;
840
b5f79c76 841 /* Shift everything up to where it's going to be used. */
252b5132
RH
842 relocation <<= (bfd_vma) howto->bitpos;
843
b5f79c76 844 /* Wait for the day when all have the mask in them. */
252b5132
RH
845
846 /* What we do:
847 i instruction to be left alone
848 o offset within instruction
849 r relocation offset to apply
850 S src mask
851 D dst mask
852 N ~dst mask
853 A part 1
854 B part 2
855 R result
856
857 Do this:
88b6bae0
AM
858 (( i i i i i o o o o o from bfd_get<size>
859 and S S S S S) to get the size offset we want
860 + r r r r r r r r r r) to get the final value to place
252b5132
RH
861 and D D D D D to chop to right size
862 -----------------------
88b6bae0 863 = A A A A A
252b5132 864 And this:
88b6bae0
AM
865 ( i i i i i o o o o o from bfd_get<size>
866 and N N N N N ) get instruction
252b5132 867 -----------------------
88b6bae0 868 = B B B B B
252b5132
RH
869
870 And then:
88b6bae0
AM
871 ( B B B B B
872 or A A A A A)
252b5132 873 -----------------------
88b6bae0 874 = R R R R R R R R R R put into bfd_put<size>
252b5132
RH
875 */
876
877#define DOIT(x) \
878 x = ( (x & ~howto->dst_mask) | (((x & howto->src_mask) + relocation) & howto->dst_mask))
879
880 switch (howto->size)
881 {
882 case 0:
883 {
9a968f43 884 char x = bfd_get_8 (abfd, (char *) data + octets);
252b5132 885 DOIT (x);
9a968f43 886 bfd_put_8 (abfd, x, (unsigned char *) data + octets);
252b5132
RH
887 }
888 break;
889
890 case 1:
891 {
9a968f43 892 short x = bfd_get_16 (abfd, (bfd_byte *) data + octets);
252b5132 893 DOIT (x);
dc810e39 894 bfd_put_16 (abfd, (bfd_vma) x, (unsigned char *) data + octets);
252b5132
RH
895 }
896 break;
897 case 2:
898 {
9a968f43 899 long x = bfd_get_32 (abfd, (bfd_byte *) data + octets);
252b5132 900 DOIT (x);
dc810e39 901 bfd_put_32 (abfd, (bfd_vma) x, (bfd_byte *) data + octets);
252b5132
RH
902 }
903 break;
904 case -2:
905 {
9a968f43 906 long x = bfd_get_32 (abfd, (bfd_byte *) data + octets);
252b5132
RH
907 relocation = -relocation;
908 DOIT (x);
dc810e39 909 bfd_put_32 (abfd, (bfd_vma) x, (bfd_byte *) data + octets);
252b5132
RH
910 }
911 break;
912
913 case -1:
914 {
9a968f43 915 long x = bfd_get_16 (abfd, (bfd_byte *) data + octets);
252b5132
RH
916 relocation = -relocation;
917 DOIT (x);
dc810e39 918 bfd_put_16 (abfd, (bfd_vma) x, (bfd_byte *) data + octets);
252b5132
RH
919 }
920 break;
921
922 case 3:
923 /* Do nothing */
924 break;
925
926 case 4:
927#ifdef BFD64
928 {
9a968f43 929 bfd_vma x = bfd_get_64 (abfd, (bfd_byte *) data + octets);
252b5132 930 DOIT (x);
9a968f43 931 bfd_put_64 (abfd, x, (bfd_byte *) data + octets);
252b5132
RH
932 }
933#else
934 abort ();
935#endif
936 break;
937 default:
938 return bfd_reloc_other;
939 }
940
941 return flag;
942}
943
944/*
945FUNCTION
946 bfd_install_relocation
947
948SYNOPSIS
c58b9523
AM
949 bfd_reloc_status_type bfd_install_relocation
950 (bfd *abfd,
951 arelent *reloc_entry,
952 void *data, bfd_vma data_start,
953 asection *input_section,
954 char **error_message);
252b5132
RH
955
956DESCRIPTION
957 This looks remarkably like <<bfd_perform_relocation>>, except it
958 does not expect that the section contents have been filled in.
959 I.e., it's suitable for use when creating, rather than applying
960 a relocation.
961
962 For now, this function should be considered reserved for the
963 assembler.
252b5132
RH
964*/
965
252b5132 966bfd_reloc_status_type
c58b9523
AM
967bfd_install_relocation (bfd *abfd,
968 arelent *reloc_entry,
969 void *data_start,
970 bfd_vma data_start_offset,
971 asection *input_section,
972 char **error_message)
252b5132
RH
973{
974 bfd_vma relocation;
975 bfd_reloc_status_type flag = bfd_reloc_ok;
9a968f43 976 bfd_size_type octets = reloc_entry->address * bfd_octets_per_byte (abfd);
252b5132
RH
977 bfd_vma output_base = 0;
978 reloc_howto_type *howto = reloc_entry->howto;
979 asection *reloc_target_output_section;
980 asymbol *symbol;
981 bfd_byte *data;
982
983 symbol = *(reloc_entry->sym_ptr_ptr);
984 if (bfd_is_abs_section (symbol->section))
985 {
986 reloc_entry->address += input_section->output_offset;
987 return bfd_reloc_ok;
988 }
989
990 /* If there is a function supplied to handle this relocation type,
991 call it. It'll return `bfd_reloc_continue' if further processing
992 can be done. */
993 if (howto->special_function)
994 {
995 bfd_reloc_status_type cont;
88b6bae0 996
252b5132
RH
997 /* XXX - The special_function calls haven't been fixed up to deal
998 with creating new relocations and section contents. */
999 cont = howto->special_function (abfd, reloc_entry, symbol,
1000 /* XXX - Non-portable! */
1001 ((bfd_byte *) data_start
1002 - data_start_offset),
1003 input_section, abfd, error_message);
1004 if (cont != bfd_reloc_continue)
1005 return cont;
1006 }
1007
1008 /* Is the address of the relocation really within the section? */
07515404 1009 if (reloc_entry->address > bfd_get_section_limit (abfd, input_section))
252b5132
RH
1010 return bfd_reloc_outofrange;
1011
7dee875e 1012 /* Work out which section the relocation is targeted at and the
252b5132
RH
1013 initial relocation command value. */
1014
1015 /* Get symbol value. (Common symbols are special.) */
1016 if (bfd_is_com_section (symbol->section))
1017 relocation = 0;
1018 else
1019 relocation = symbol->value;
1020
1021 reloc_target_output_section = symbol->section->output_section;
1022
1023 /* Convert input-section-relative symbol value to absolute. */
82e51918 1024 if (! howto->partial_inplace)
252b5132
RH
1025 output_base = 0;
1026 else
1027 output_base = reloc_target_output_section->vma;
1028
1029 relocation += output_base + symbol->section->output_offset;
1030
1031 /* Add in supplied addend. */
1032 relocation += reloc_entry->addend;
1033
1034 /* Here the variable relocation holds the final address of the
1035 symbol we are relocating against, plus any addend. */
1036
82e51918 1037 if (howto->pc_relative)
252b5132
RH
1038 {
1039 /* This is a PC relative relocation. We want to set RELOCATION
1040 to the distance between the address of the symbol and the
1041 location. RELOCATION is already the address of the symbol.
1042
1043 We start by subtracting the address of the section containing
1044 the location.
1045
1046 If pcrel_offset is set, we must further subtract the position
1047 of the location within the section. Some targets arrange for
1048 the addend to be the negative of the position of the location
1049 within the section; for example, i386-aout does this. For
b34976b6 1050 i386-aout, pcrel_offset is FALSE. Some other targets do not
252b5132 1051 include the position of the location; for example, m88kbcs,
b34976b6 1052 or ELF. For those targets, pcrel_offset is TRUE.
252b5132 1053
1049f94e 1054 If we are producing relocatable output, then we must ensure
252b5132 1055 that this reloc will be correctly computed when the final
b34976b6 1056 relocation is done. If pcrel_offset is FALSE we want to wind
252b5132
RH
1057 up with the negative of the location within the section,
1058 which means we must adjust the existing addend by the change
b34976b6 1059 in the location within the section. If pcrel_offset is TRUE
252b5132
RH
1060 we do not want to adjust the existing addend at all.
1061
1062 FIXME: This seems logical to me, but for the case of
1049f94e 1063 producing relocatable output it is not what the code
252b5132
RH
1064 actually does. I don't want to change it, because it seems
1065 far too likely that something will break. */
1066
1067 relocation -=
1068 input_section->output_section->vma + input_section->output_offset;
1069
82e51918 1070 if (howto->pcrel_offset && howto->partial_inplace)
252b5132
RH
1071 relocation -= reloc_entry->address;
1072 }
1073
82e51918 1074 if (! howto->partial_inplace)
252b5132
RH
1075 {
1076 /* This is a partial relocation, and we want to apply the relocation
1077 to the reloc entry rather than the raw data. Modify the reloc
1078 inplace to reflect what we now know. */
1079 reloc_entry->addend = relocation;
1080 reloc_entry->address += input_section->output_offset;
1081 return flag;
1082 }
1083 else
1084 {
1085 /* This is a partial relocation, but inplace, so modify the
1086 reloc record a bit.
1087
1088 If we've relocated with a symbol with a section, change
1089 into a ref to the section belonging to the symbol. */
252b5132
RH
1090 reloc_entry->address += input_section->output_offset;
1091
1092 /* WTF?? */
1093 if (abfd->xvec->flavour == bfd_target_coff_flavour
252b5132
RH
1094 && strcmp (abfd->xvec->name, "coff-Intel-little") != 0
1095 && strcmp (abfd->xvec->name, "coff-Intel-big") != 0)
1096 {
0e71e495
BE
1097
1098 /* For m68k-coff, the addend was being subtracted twice during
1099 relocation with -r. Removing the line below this comment
1100 fixes that problem; see PR 2953.
252b5132
RH
1101
1102However, Ian wrote the following, regarding removing the line below,
1103which explains why it is still enabled: --djm
1104
1105If you put a patch like that into BFD you need to check all the COFF
1106linkers. I am fairly certain that patch will break coff-i386 (e.g.,
1107SCO); see coff_i386_reloc in coff-i386.c where I worked around the
1108problem in a different way. There may very well be a reason that the
1109code works as it does.
1110
1111Hmmm. The first obvious point is that bfd_install_relocation should
1112not have any tests that depend upon the flavour. It's seem like
1113entirely the wrong place for such a thing. The second obvious point
1114is that the current code ignores the reloc addend when producing
1049f94e 1115relocatable output for COFF. That's peculiar. In fact, I really
252b5132
RH
1116have no idea what the point of the line you want to remove is.
1117
1118A typical COFF reloc subtracts the old value of the symbol and adds in
1119the new value to the location in the object file (if it's a pc
1120relative reloc it adds the difference between the symbol value and the
1121location). When relocating we need to preserve that property.
1122
1123BFD handles this by setting the addend to the negative of the old
1124value of the symbol. Unfortunately it handles common symbols in a
1125non-standard way (it doesn't subtract the old value) but that's a
1126different story (we can't change it without losing backward
1127compatibility with old object files) (coff-i386 does subtract the old
1128value, to be compatible with existing coff-i386 targets, like SCO).
1129
1049f94e
AM
1130So everything works fine when not producing relocatable output. When
1131we are producing relocatable output, logically we should do exactly
1132what we do when not producing relocatable output. Therefore, your
252b5132
RH
1133patch is correct. In fact, it should probably always just set
1134reloc_entry->addend to 0 for all cases, since it is, in fact, going to
1135add the value into the object file. This won't hurt the COFF code,
1136which doesn't use the addend; I'm not sure what it will do to other
1137formats (the thing to check for would be whether any formats both use
1138the addend and set partial_inplace).
1139
1049f94e 1140When I wanted to make coff-i386 produce relocatable output, I ran
252b5132
RH
1141into the problem that you are running into: I wanted to remove that
1142line. Rather than risk it, I made the coff-i386 relocs use a special
1143function; it's coff_i386_reloc in coff-i386.c. The function
1144specifically adds the addend field into the object file, knowing that
1145bfd_install_relocation is not going to. If you remove that line, then
1146coff-i386.c will wind up adding the addend field in twice. It's
1147trivial to fix; it just needs to be done.
1148
1149The problem with removing the line is just that it may break some
1150working code. With BFD it's hard to be sure of anything. The right
1151way to deal with this is simply to build and test at least all the
1152supported COFF targets. It should be straightforward if time and disk
1153space consuming. For each target:
1154 1) build the linker
1155 2) generate some executable, and link it using -r (I would
1156 probably use paranoia.o and link against newlib/libc.a, which
1157 for all the supported targets would be available in
1158 /usr/cygnus/progressive/H-host/target/lib/libc.a).
1159 3) make the change to reloc.c
1160 4) rebuild the linker
1161 5) repeat step 2
1162 6) if the resulting object files are the same, you have at least
1163 made it no worse
1164 7) if they are different you have to figure out which version is
b5f79c76 1165 right. */
252b5132 1166 relocation -= reloc_entry->addend;
c0524131
NC
1167 /* FIXME: There should be no target specific code here... */
1168 if (strcmp (abfd->xvec->name, "coff-z8k") != 0)
1169 reloc_entry->addend = 0;
252b5132
RH
1170 }
1171 else
1172 {
1173 reloc_entry->addend = relocation;
1174 }
1175 }
1176
1177 /* FIXME: This overflow checking is incomplete, because the value
1178 might have overflowed before we get here. For a correct check we
1179 need to compute the value in a size larger than bitsize, but we
1180 can't reasonably do that for a reloc the same size as a host
1181 machine word.
1182 FIXME: We should also do overflow checking on the result after
1183 adding in the value contained in the object file. */
1184 if (howto->complain_on_overflow != complain_overflow_dont)
1185 flag = bfd_check_overflow (howto->complain_on_overflow,
1186 howto->bitsize,
1187 howto->rightshift,
1188 bfd_arch_bits_per_address (abfd),
1189 relocation);
1190
b5f79c76
NC
1191 /* Either we are relocating all the way, or we don't want to apply
1192 the relocation to the reloc entry (probably because there isn't
1193 any room in the output format to describe addends to relocs). */
252b5132
RH
1194
1195 /* The cast to bfd_vma avoids a bug in the Alpha OSF/1 C compiler
1196 (OSF version 1.3, compiler version 3.11). It miscompiles the
1197 following program:
1198
1199 struct str
1200 {
1201 unsigned int i0;
1202 } s = { 0 };
1203
1204 int
1205 main ()
1206 {
1207 unsigned long x;
1208
1209 x = 0x100000000;
1210 x <<= (unsigned long) s.i0;
1211 if (x == 0)
1212 printf ("failed\n");
1213 else
1214 printf ("succeeded (%lx)\n", x);
1215 }
1216 */
1217
1218 relocation >>= (bfd_vma) howto->rightshift;
1219
b5f79c76 1220 /* Shift everything up to where it's going to be used. */
252b5132
RH
1221 relocation <<= (bfd_vma) howto->bitpos;
1222
b5f79c76 1223 /* Wait for the day when all have the mask in them. */
252b5132
RH
1224
1225 /* What we do:
1226 i instruction to be left alone
1227 o offset within instruction
1228 r relocation offset to apply
1229 S src mask
1230 D dst mask
1231 N ~dst mask
1232 A part 1
1233 B part 2
1234 R result
1235
1236 Do this:
88b6bae0
AM
1237 (( i i i i i o o o o o from bfd_get<size>
1238 and S S S S S) to get the size offset we want
1239 + r r r r r r r r r r) to get the final value to place
252b5132
RH
1240 and D D D D D to chop to right size
1241 -----------------------
88b6bae0 1242 = A A A A A
252b5132 1243 And this:
88b6bae0
AM
1244 ( i i i i i o o o o o from bfd_get<size>
1245 and N N N N N ) get instruction
252b5132 1246 -----------------------
88b6bae0 1247 = B B B B B
252b5132
RH
1248
1249 And then:
88b6bae0
AM
1250 ( B B B B B
1251 or A A A A A)
252b5132 1252 -----------------------
88b6bae0 1253 = R R R R R R R R R R put into bfd_put<size>
252b5132
RH
1254 */
1255
1256#define DOIT(x) \
1257 x = ( (x & ~howto->dst_mask) | (((x & howto->src_mask) + relocation) & howto->dst_mask))
1258
9a968f43 1259 data = (bfd_byte *) data_start + (octets - data_start_offset);
252b5132
RH
1260
1261 switch (howto->size)
1262 {
1263 case 0:
1264 {
c58b9523 1265 char x = bfd_get_8 (abfd, data);
252b5132 1266 DOIT (x);
c58b9523 1267 bfd_put_8 (abfd, x, data);
252b5132
RH
1268 }
1269 break;
1270
1271 case 1:
1272 {
c58b9523 1273 short x = bfd_get_16 (abfd, data);
252b5132 1274 DOIT (x);
c58b9523 1275 bfd_put_16 (abfd, (bfd_vma) x, data);
252b5132
RH
1276 }
1277 break;
1278 case 2:
1279 {
c58b9523 1280 long x = bfd_get_32 (abfd, data);
252b5132 1281 DOIT (x);
c58b9523 1282 bfd_put_32 (abfd, (bfd_vma) x, data);
252b5132
RH
1283 }
1284 break;
1285 case -2:
1286 {
c58b9523 1287 long x = bfd_get_32 (abfd, data);
252b5132
RH
1288 relocation = -relocation;
1289 DOIT (x);
c58b9523 1290 bfd_put_32 (abfd, (bfd_vma) x, data);
252b5132
RH
1291 }
1292 break;
1293
1294 case 3:
1295 /* Do nothing */
1296 break;
1297
1298 case 4:
1299 {
c58b9523 1300 bfd_vma x = bfd_get_64 (abfd, data);
252b5132 1301 DOIT (x);
c58b9523 1302 bfd_put_64 (abfd, x, data);
252b5132
RH
1303 }
1304 break;
1305 default:
1306 return bfd_reloc_other;
1307 }
1308
1309 return flag;
1310}
1311
1312/* This relocation routine is used by some of the backend linkers.
1313 They do not construct asymbol or arelent structures, so there is no
1314 reason for them to use bfd_perform_relocation. Also,
1315 bfd_perform_relocation is so hacked up it is easier to write a new
1316 function than to try to deal with it.
1317
1318 This routine does a final relocation. Whether it is useful for a
1049f94e 1319 relocatable link depends upon how the object format defines
252b5132
RH
1320 relocations.
1321
1322 FIXME: This routine ignores any special_function in the HOWTO,
1323 since the existing special_function values have been written for
1324 bfd_perform_relocation.
1325
1326 HOWTO is the reloc howto information.
1327 INPUT_BFD is the BFD which the reloc applies to.
1328 INPUT_SECTION is the section which the reloc applies to.
1329 CONTENTS is the contents of the section.
1330 ADDRESS is the address of the reloc within INPUT_SECTION.
1331 VALUE is the value of the symbol the reloc refers to.
1332 ADDEND is the addend of the reloc. */
1333
1334bfd_reloc_status_type
c58b9523
AM
1335_bfd_final_link_relocate (reloc_howto_type *howto,
1336 bfd *input_bfd,
1337 asection *input_section,
1338 bfd_byte *contents,
1339 bfd_vma address,
1340 bfd_vma value,
1341 bfd_vma addend)
252b5132
RH
1342{
1343 bfd_vma relocation;
1344
1345 /* Sanity check the address. */
07515404 1346 if (address > bfd_get_section_limit (input_bfd, input_section))
252b5132
RH
1347 return bfd_reloc_outofrange;
1348
1349 /* This function assumes that we are dealing with a basic relocation
1350 against a symbol. We want to compute the value of the symbol to
1351 relocate to. This is just VALUE, the value of the symbol, plus
1352 ADDEND, any addend associated with the reloc. */
1353 relocation = value + addend;
1354
1355 /* If the relocation is PC relative, we want to set RELOCATION to
1356 the distance between the symbol (currently in RELOCATION) and the
1357 location we are relocating. Some targets (e.g., i386-aout)
1358 arrange for the contents of the section to be the negative of the
1359 offset of the location within the section; for such targets
b34976b6 1360 pcrel_offset is FALSE. Other targets (e.g., m88kbcs or ELF)
252b5132 1361 simply leave the contents of the section as zero; for such
b34976b6 1362 targets pcrel_offset is TRUE. If pcrel_offset is FALSE we do not
252b5132
RH
1363 need to subtract out the offset of the location within the
1364 section (which is just ADDRESS). */
1365 if (howto->pc_relative)
1366 {
1367 relocation -= (input_section->output_section->vma
1368 + input_section->output_offset);
1369 if (howto->pcrel_offset)
1370 relocation -= address;
1371 }
1372
1373 return _bfd_relocate_contents (howto, input_bfd, relocation,
1374 contents + address);
1375}
1376
1377/* Relocate a given location using a given value and howto. */
1378
1379bfd_reloc_status_type
c58b9523
AM
1380_bfd_relocate_contents (reloc_howto_type *howto,
1381 bfd *input_bfd,
1382 bfd_vma relocation,
1383 bfd_byte *location)
252b5132
RH
1384{
1385 int size;
7442e600 1386 bfd_vma x = 0;
d5afc56e 1387 bfd_reloc_status_type flag;
252b5132
RH
1388 unsigned int rightshift = howto->rightshift;
1389 unsigned int bitpos = howto->bitpos;
1390
1391 /* If the size is negative, negate RELOCATION. This isn't very
1392 general. */
1393 if (howto->size < 0)
1394 relocation = -relocation;
1395
1396 /* Get the value we are going to relocate. */
1397 size = bfd_get_reloc_size (howto);
1398 switch (size)
1399 {
1400 default:
1401 case 0:
1402 abort ();
1403 case 1:
1404 x = bfd_get_8 (input_bfd, location);
1405 break;
1406 case 2:
1407 x = bfd_get_16 (input_bfd, location);
1408 break;
1409 case 4:
1410 x = bfd_get_32 (input_bfd, location);
1411 break;
1412 case 8:
1413#ifdef BFD64
1414 x = bfd_get_64 (input_bfd, location);
1415#else
1416 abort ();
1417#endif
1418 break;
1419 }
1420
1421 /* Check for overflow. FIXME: We may drop bits during the addition
1422 which we don't check for. We must either check at every single
1423 operation, which would be tedious, or we must do the computations
1424 in a type larger than bfd_vma, which would be inefficient. */
d5afc56e 1425 flag = bfd_reloc_ok;
252b5132
RH
1426 if (howto->complain_on_overflow != complain_overflow_dont)
1427 {
1428 bfd_vma addrmask, fieldmask, signmask, ss;
1429 bfd_vma a, b, sum;
1430
1431 /* Get the values to be added together. For signed and unsigned
1432 relocations, we assume that all values should be truncated to
1433 the size of an address. For bitfields, all the bits matter.
1434 See also bfd_check_overflow. */
1435 fieldmask = N_ONES (howto->bitsize);
a7985d73 1436 signmask = ~fieldmask;
263badd7
AM
1437 addrmask = (N_ONES (bfd_arch_bits_per_address (input_bfd))
1438 | (fieldmask << rightshift));
a7985d73
AM
1439 a = (relocation & addrmask) >> rightshift;
1440 b = (x & howto->src_mask & addrmask) >> bitpos;
263badd7 1441 addrmask >>= rightshift;
252b5132
RH
1442
1443 switch (howto->complain_on_overflow)
1444 {
1445 case complain_overflow_signed:
252b5132
RH
1446 /* If any sign bits are set, all sign bits must be set.
1447 That is, A must be a valid negative address after
1448 shifting. */
a7985d73
AM
1449 signmask = ~(fieldmask >> 1);
1450 /* Fall thru */
1451
1452 case complain_overflow_bitfield:
1453 /* Much like the signed check, but for a field one bit
1454 wider. We allow a bitfield to represent numbers in the
1455 range -2**n to 2**n-1, where n is the number of bits in the
1456 field. Note that when bfd_vma is 32 bits, a 32-bit reloc
1457 can't overflow, which is exactly what we want. */
252b5132 1458 ss = a & signmask;
263badd7 1459 if (ss != 0 && ss != (addrmask & signmask))
d5afc56e 1460 flag = bfd_reloc_overflow;
252b5132
RH
1461
1462 /* We only need this next bit of code if the sign bit of B
1463 is below the sign bit of A. This would only happen if
1464 SRC_MASK had fewer bits than BITSIZE. Note that if
1465 SRC_MASK has more bits than BITSIZE, we can get into
1466 trouble; we would need to verify that B is in range, as
1467 we do for A above. */
a7985d73
AM
1468 ss = ((~howto->src_mask) >> 1) & howto->src_mask;
1469 ss >>= bitpos;
8a4ac871
AM
1470
1471 /* Set all the bits above the sign bit. */
a7985d73 1472 b = (b ^ ss) - ss;
252b5132
RH
1473
1474 /* Now we can do the addition. */
1475 sum = a + b;
1476
1477 /* See if the result has the correct sign. Bits above the
1478 sign bit are junk now; ignore them. If the sum is
1479 positive, make sure we did not have all negative inputs;
1480 if the sum is negative, make sure we did not have all
1481 positive inputs. The test below looks only at the sign
1482 bits, and it really just
1483 SIGN (A) == SIGN (B) && SIGN (A) != SIGN (SUM)
252b5132 1484
a7985d73
AM
1485 We mask with addrmask here to explicitly allow an address
1486 wrap-around. The Linux kernel relies on it, and it is
1487 the only way to write assembler code which can run when
1488 loaded at a location 0x80000000 away from the location at
1489 which it is linked. */
1490 if (((~(a ^ b)) & (a ^ sum)) & signmask & addrmask)
1491 flag = bfd_reloc_overflow;
252b5132
RH
1492 break;
1493
1494 case complain_overflow_unsigned:
1495 /* Checking for an unsigned overflow is relatively easy:
1496 trim the addresses and add, and trim the result as well.
1497 Overflow is normally indicated when the result does not
1498 fit in the field. However, we also need to consider the
1499 case when, e.g., fieldmask is 0x7fffffff or smaller, an
1500 input is 0x80000000, and bfd_vma is only 32 bits; then we
1501 will get sum == 0, but there is an overflow, since the
1502 inputs did not fit in the field. Instead of doing a
1503 separate test, we can check for this by or-ing in the
1504 operands when testing for the sum overflowing its final
1505 field. */
252b5132 1506 sum = (a + b) & addrmask;
a7985d73 1507 if ((a | b | sum) & signmask)
d5afc56e 1508 flag = bfd_reloc_overflow;
252b5132
RH
1509 break;
1510
1511 default:
1512 abort ();
1513 }
1514 }
1515
1516 /* Put RELOCATION in the right bits. */
1517 relocation >>= (bfd_vma) rightshift;
1518 relocation <<= (bfd_vma) bitpos;
1519
1520 /* Add RELOCATION to the right bits of X. */
1521 x = ((x & ~howto->dst_mask)
1522 | (((x & howto->src_mask) + relocation) & howto->dst_mask));
1523
1524 /* Put the relocated value back in the object file. */
1525 switch (size)
1526 {
1527 default:
252b5132
RH
1528 abort ();
1529 case 1:
1530 bfd_put_8 (input_bfd, x, location);
1531 break;
1532 case 2:
1533 bfd_put_16 (input_bfd, x, location);
1534 break;
1535 case 4:
1536 bfd_put_32 (input_bfd, x, location);
1537 break;
1538 case 8:
1539#ifdef BFD64
1540 bfd_put_64 (input_bfd, x, location);
1541#else
1542 abort ();
1543#endif
1544 break;
1545 }
1546
d5afc56e 1547 return flag;
252b5132
RH
1548}
1549
b1e24c02
DJ
1550/* Clear a given location using a given howto, by applying a relocation value
1551 of zero and discarding any in-place addend. This is used for fixed-up
1552 relocations against discarded symbols, to make ignorable debug or unwind
1553 information more obvious. */
1554
1555void
1556_bfd_clear_contents (reloc_howto_type *howto,
1557 bfd *input_bfd,
1558 bfd_byte *location)
1559{
1560 int size;
1561 bfd_vma x = 0;
1562
1563 /* Get the value we are going to relocate. */
1564 size = bfd_get_reloc_size (howto);
1565 switch (size)
1566 {
1567 default:
1568 case 0:
1569 abort ();
1570 case 1:
1571 x = bfd_get_8 (input_bfd, location);
1572 break;
1573 case 2:
1574 x = bfd_get_16 (input_bfd, location);
1575 break;
1576 case 4:
1577 x = bfd_get_32 (input_bfd, location);
1578 break;
1579 case 8:
1580#ifdef BFD64
1581 x = bfd_get_64 (input_bfd, location);
1582#else
1583 abort ();
1584#endif
1585 break;
1586 }
1587
1588 /* Zero out the unwanted bits of X. */
1589 x &= ~howto->dst_mask;
1590
1591 /* Put the relocated value back in the object file. */
1592 switch (size)
1593 {
1594 default:
1595 case 0:
1596 abort ();
1597 case 1:
1598 bfd_put_8 (input_bfd, x, location);
1599 break;
1600 case 2:
1601 bfd_put_16 (input_bfd, x, location);
1602 break;
1603 case 4:
1604 bfd_put_32 (input_bfd, x, location);
1605 break;
1606 case 8:
1607#ifdef BFD64
1608 bfd_put_64 (input_bfd, x, location);
1609#else
1610 abort ();
1611#endif
1612 break;
1613 }
1614}
1615
252b5132
RH
1616/*
1617DOCDD
1618INODE
1619 howto manager, , typedef arelent, Relocations
1620
1b74d094 1621SUBSECTION
252b5132
RH
1622 The howto manager
1623
1624 When an application wants to create a relocation, but doesn't
1625 know what the target machine might call it, it can find out by
1626 using this bit of code.
1627
1628*/
1629
1630/*
1631TYPEDEF
1632 bfd_reloc_code_type
1633
1634DESCRIPTION
1635 The insides of a reloc code. The idea is that, eventually, there
1636 will be one enumerator for every type of relocation we ever do.
1637 Pass one of these values to <<bfd_reloc_type_lookup>>, and it'll
1638 return a howto pointer.
1639
1640 This does mean that the application must determine the correct
1641 enumerator value; you can't get a howto pointer from a random set
1642 of attributes.
1643
1644SENUM
1645 bfd_reloc_code_real
1646
1647ENUM
1648 BFD_RELOC_64
1649ENUMX
1650 BFD_RELOC_32
1651ENUMX
1652 BFD_RELOC_26
1653ENUMX
1654 BFD_RELOC_24
1655ENUMX
1656 BFD_RELOC_16
1657ENUMX
1658 BFD_RELOC_14
1659ENUMX
1660 BFD_RELOC_8
1661ENUMDOC
1662 Basic absolute relocations of N bits.
1663
1664ENUM
1665 BFD_RELOC_64_PCREL
1666ENUMX
1667 BFD_RELOC_32_PCREL
1668ENUMX
1669 BFD_RELOC_24_PCREL
1670ENUMX
1671 BFD_RELOC_16_PCREL
1672ENUMX
1673 BFD_RELOC_12_PCREL
1674ENUMX
1675 BFD_RELOC_8_PCREL
1676ENUMDOC
1677 PC-relative relocations. Sometimes these are relative to the address
1678of the relocation itself; sometimes they are relative to the start of
1679the section containing the relocation. It depends on the specific target.
1680
1681The 24-bit relocation is used in some Intel 960 configurations.
1682
6482c264
NC
1683ENUM
1684 BFD_RELOC_32_SECREL
1685ENUMDOC
1686 Section relative relocations. Some targets need this for DWARF2.
1687
252b5132
RH
1688ENUM
1689 BFD_RELOC_32_GOT_PCREL
1690ENUMX
1691 BFD_RELOC_16_GOT_PCREL
1692ENUMX
1693 BFD_RELOC_8_GOT_PCREL
1694ENUMX
1695 BFD_RELOC_32_GOTOFF
1696ENUMX
1697 BFD_RELOC_16_GOTOFF
1698ENUMX
1699 BFD_RELOC_LO16_GOTOFF
1700ENUMX
1701 BFD_RELOC_HI16_GOTOFF
1702ENUMX
1703 BFD_RELOC_HI16_S_GOTOFF
1704ENUMX
1705 BFD_RELOC_8_GOTOFF
5bd4f169
AM
1706ENUMX
1707 BFD_RELOC_64_PLT_PCREL
252b5132
RH
1708ENUMX
1709 BFD_RELOC_32_PLT_PCREL
1710ENUMX
1711 BFD_RELOC_24_PLT_PCREL
1712ENUMX
1713 BFD_RELOC_16_PLT_PCREL
1714ENUMX
1715 BFD_RELOC_8_PLT_PCREL
5bd4f169
AM
1716ENUMX
1717 BFD_RELOC_64_PLTOFF
252b5132
RH
1718ENUMX
1719 BFD_RELOC_32_PLTOFF
1720ENUMX
1721 BFD_RELOC_16_PLTOFF
1722ENUMX
1723 BFD_RELOC_LO16_PLTOFF
1724ENUMX
1725 BFD_RELOC_HI16_PLTOFF
1726ENUMX
1727 BFD_RELOC_HI16_S_PLTOFF
1728ENUMX
1729 BFD_RELOC_8_PLTOFF
1730ENUMDOC
1731 For ELF.
1732
1733ENUM
1734 BFD_RELOC_68K_GLOB_DAT
1735ENUMX
1736 BFD_RELOC_68K_JMP_SLOT
1737ENUMX
1738 BFD_RELOC_68K_RELATIVE
cf869cce
NC
1739ENUMX
1740 BFD_RELOC_68K_TLS_GD32
1741ENUMX
1742 BFD_RELOC_68K_TLS_GD16
1743ENUMX
1744 BFD_RELOC_68K_TLS_GD8
1745ENUMX
1746 BFD_RELOC_68K_TLS_LDM32
1747ENUMX
1748 BFD_RELOC_68K_TLS_LDM16
1749ENUMX
1750 BFD_RELOC_68K_TLS_LDM8
1751ENUMX
1752 BFD_RELOC_68K_TLS_LDO32
1753ENUMX
1754 BFD_RELOC_68K_TLS_LDO16
1755ENUMX
1756 BFD_RELOC_68K_TLS_LDO8
1757ENUMX
1758 BFD_RELOC_68K_TLS_IE32
1759ENUMX
1760 BFD_RELOC_68K_TLS_IE16
1761ENUMX
1762 BFD_RELOC_68K_TLS_IE8
1763ENUMX
1764 BFD_RELOC_68K_TLS_LE32
1765ENUMX
1766 BFD_RELOC_68K_TLS_LE16
1767ENUMX
1768 BFD_RELOC_68K_TLS_LE8
252b5132
RH
1769ENUMDOC
1770 Relocations used by 68K ELF.
1771
1772ENUM
1773 BFD_RELOC_32_BASEREL
1774ENUMX
1775 BFD_RELOC_16_BASEREL
1776ENUMX
1777 BFD_RELOC_LO16_BASEREL
1778ENUMX
1779 BFD_RELOC_HI16_BASEREL
1780ENUMX
1781 BFD_RELOC_HI16_S_BASEREL
1782ENUMX
1783 BFD_RELOC_8_BASEREL
1784ENUMX
1785 BFD_RELOC_RVA
1786ENUMDOC
1787 Linkage-table relative.
1788
1789ENUM
1790 BFD_RELOC_8_FFnn
1791ENUMDOC
1792 Absolute 8-bit relocation, but used to form an address like 0xFFnn.
1793
1794ENUM
1795 BFD_RELOC_32_PCREL_S2
1796ENUMX
1797 BFD_RELOC_16_PCREL_S2
1798ENUMX
1799 BFD_RELOC_23_PCREL_S2
1800ENUMDOC
1801 These PC-relative relocations are stored as word displacements --
1802i.e., byte displacements shifted right two bits. The 30-bit word
1803displacement (<<32_PCREL_S2>> -- 32 bits, shifted 2) is used on the
1804SPARC. (SPARC tools generally refer to this as <<WDISP30>>.) The
1805signed 16-bit displacement is used on the MIPS, and the 23-bit
1806displacement is used on the Alpha.
1807
1808ENUM
1809 BFD_RELOC_HI22
1810ENUMX
1811 BFD_RELOC_LO10
1812ENUMDOC
1813 High 22 bits and low 10 bits of 32-bit value, placed into lower bits of
1814the target word. These are used on the SPARC.
1815
1816ENUM
1817 BFD_RELOC_GPREL16
1818ENUMX
1819 BFD_RELOC_GPREL32
1820ENUMDOC
1821 For systems that allocate a Global Pointer register, these are
1822displacements off that register. These relocation types are
1823handled specially, because the value the register will have is
1824decided relatively late.
1825
252b5132
RH
1826ENUM
1827 BFD_RELOC_I960_CALLJ
1828ENUMDOC
1829 Reloc types used for i960/b.out.
1830
1831ENUM
1832 BFD_RELOC_NONE
1833ENUMX
1834 BFD_RELOC_SPARC_WDISP22
1835ENUMX
1836 BFD_RELOC_SPARC22
1837ENUMX
1838 BFD_RELOC_SPARC13
1839ENUMX
1840 BFD_RELOC_SPARC_GOT10
1841ENUMX
1842 BFD_RELOC_SPARC_GOT13
1843ENUMX
1844 BFD_RELOC_SPARC_GOT22
1845ENUMX
1846 BFD_RELOC_SPARC_PC10
1847ENUMX
1848 BFD_RELOC_SPARC_PC22
1849ENUMX
1850 BFD_RELOC_SPARC_WPLT30
1851ENUMX
1852 BFD_RELOC_SPARC_COPY
1853ENUMX
1854 BFD_RELOC_SPARC_GLOB_DAT
1855ENUMX
1856 BFD_RELOC_SPARC_JMP_SLOT
1857ENUMX
1858 BFD_RELOC_SPARC_RELATIVE
0f2712ed
NC
1859ENUMX
1860 BFD_RELOC_SPARC_UA16
252b5132
RH
1861ENUMX
1862 BFD_RELOC_SPARC_UA32
0f2712ed
NC
1863ENUMX
1864 BFD_RELOC_SPARC_UA64
739f7f82
DM
1865ENUMX
1866 BFD_RELOC_SPARC_GOTDATA_HIX22
1867ENUMX
1868 BFD_RELOC_SPARC_GOTDATA_LOX10
1869ENUMX
1870 BFD_RELOC_SPARC_GOTDATA_OP_HIX22
1871ENUMX
1872 BFD_RELOC_SPARC_GOTDATA_OP_LOX10
1873ENUMX
1874 BFD_RELOC_SPARC_GOTDATA_OP
d0c9aeb3
DM
1875ENUMX
1876 BFD_RELOC_SPARC_JMP_IREL
1877ENUMX
1878 BFD_RELOC_SPARC_IRELATIVE
252b5132
RH
1879ENUMDOC
1880 SPARC ELF relocations. There is probably some overlap with other
1881 relocation types already defined.
1882
1883ENUM
1884 BFD_RELOC_SPARC_BASE13
1885ENUMX
1886 BFD_RELOC_SPARC_BASE22
1887ENUMDOC
1888 I think these are specific to SPARC a.out (e.g., Sun 4).
1889
1890ENUMEQ
1891 BFD_RELOC_SPARC_64
1892 BFD_RELOC_64
1893ENUMX
1894 BFD_RELOC_SPARC_10
1895ENUMX
1896 BFD_RELOC_SPARC_11
1897ENUMX
1898 BFD_RELOC_SPARC_OLO10
1899ENUMX
1900 BFD_RELOC_SPARC_HH22
1901ENUMX
1902 BFD_RELOC_SPARC_HM10
1903ENUMX
1904 BFD_RELOC_SPARC_LM22
1905ENUMX
1906 BFD_RELOC_SPARC_PC_HH22
1907ENUMX
1908 BFD_RELOC_SPARC_PC_HM10
1909ENUMX
1910 BFD_RELOC_SPARC_PC_LM22
1911ENUMX
1912 BFD_RELOC_SPARC_WDISP16
1913ENUMX
1914 BFD_RELOC_SPARC_WDISP19
1915ENUMX
1916 BFD_RELOC_SPARC_7
1917ENUMX
1918 BFD_RELOC_SPARC_6
1919ENUMX
1920 BFD_RELOC_SPARC_5
1921ENUMEQX
1922 BFD_RELOC_SPARC_DISP64
1923 BFD_RELOC_64_PCREL
bd5e6e7e
JJ
1924ENUMX
1925 BFD_RELOC_SPARC_PLT32
252b5132
RH
1926ENUMX
1927 BFD_RELOC_SPARC_PLT64
1928ENUMX
1929 BFD_RELOC_SPARC_HIX22
1930ENUMX
1931 BFD_RELOC_SPARC_LOX10
1932ENUMX
1933 BFD_RELOC_SPARC_H44
1934ENUMX
1935 BFD_RELOC_SPARC_M44
1936ENUMX
1937 BFD_RELOC_SPARC_L44
1938ENUMX
1939 BFD_RELOC_SPARC_REGISTER
1940ENUMDOC
1941 SPARC64 relocations
1942
1943ENUM
1944 BFD_RELOC_SPARC_REV32
1945ENUMDOC
1946 SPARC little endian relocation
b9734f35
JJ
1947ENUM
1948 BFD_RELOC_SPARC_TLS_GD_HI22
1949ENUMX
1950 BFD_RELOC_SPARC_TLS_GD_LO10
1951ENUMX
1952 BFD_RELOC_SPARC_TLS_GD_ADD
1953ENUMX
1954 BFD_RELOC_SPARC_TLS_GD_CALL
1955ENUMX
1956 BFD_RELOC_SPARC_TLS_LDM_HI22
1957ENUMX
1958 BFD_RELOC_SPARC_TLS_LDM_LO10
1959ENUMX
1960 BFD_RELOC_SPARC_TLS_LDM_ADD
1961ENUMX
1962 BFD_RELOC_SPARC_TLS_LDM_CALL
1963ENUMX
1964 BFD_RELOC_SPARC_TLS_LDO_HIX22
1965ENUMX
1966 BFD_RELOC_SPARC_TLS_LDO_LOX10
1967ENUMX
1968 BFD_RELOC_SPARC_TLS_LDO_ADD
1969ENUMX
1970 BFD_RELOC_SPARC_TLS_IE_HI22
1971ENUMX
1972 BFD_RELOC_SPARC_TLS_IE_LO10
1973ENUMX
1974 BFD_RELOC_SPARC_TLS_IE_LD
1975ENUMX
1976 BFD_RELOC_SPARC_TLS_IE_LDX
1977ENUMX
1978 BFD_RELOC_SPARC_TLS_IE_ADD
1979ENUMX
1980 BFD_RELOC_SPARC_TLS_LE_HIX22
1981ENUMX
1982 BFD_RELOC_SPARC_TLS_LE_LOX10
1983ENUMX
1984 BFD_RELOC_SPARC_TLS_DTPMOD32
1985ENUMX
1986 BFD_RELOC_SPARC_TLS_DTPMOD64
1987ENUMX
1988 BFD_RELOC_SPARC_TLS_DTPOFF32
1989ENUMX
1990 BFD_RELOC_SPARC_TLS_DTPOFF64
1991ENUMX
1992 BFD_RELOC_SPARC_TLS_TPOFF32
1993ENUMX
1994 BFD_RELOC_SPARC_TLS_TPOFF64
1995ENUMDOC
1996 SPARC TLS relocations
252b5132 1997
e9f53129
AM
1998ENUM
1999 BFD_RELOC_SPU_IMM7
2000ENUMX
2001 BFD_RELOC_SPU_IMM8
2002ENUMX
2003 BFD_RELOC_SPU_IMM10
2004ENUMX
2005 BFD_RELOC_SPU_IMM10W
2006ENUMX
2007 BFD_RELOC_SPU_IMM16
2008ENUMX
2009 BFD_RELOC_SPU_IMM16W
2010ENUMX
2011 BFD_RELOC_SPU_IMM18
2012ENUMX
2013 BFD_RELOC_SPU_PCREL9a
2014ENUMX
2015 BFD_RELOC_SPU_PCREL9b
2016ENUMX
2017 BFD_RELOC_SPU_PCREL16
2018ENUMX
2019 BFD_RELOC_SPU_LO16
2020ENUMX
2021 BFD_RELOC_SPU_HI16
ece5ef60
AM
2022ENUMX
2023 BFD_RELOC_SPU_PPU32
2024ENUMX
2025 BFD_RELOC_SPU_PPU64
8fdcc58d
TS
2026ENUMX
2027 BFD_RELOC_SPU_ADD_PIC
e9f53129
AM
2028ENUMDOC
2029 SPU Relocations.
2030
252b5132
RH
2031ENUM
2032 BFD_RELOC_ALPHA_GPDISP_HI16
2033ENUMDOC
2034 Alpha ECOFF and ELF relocations. Some of these treat the symbol or
2035 "addend" in some special way.
2036 For GPDISP_HI16 ("gpdisp") relocations, the symbol is ignored when
2037 writing; when reading, it will be the absolute section symbol. The
2038 addend is the displacement in bytes of the "lda" instruction from
2039 the "ldah" instruction (which is at the address of this reloc).
2040ENUM
2041 BFD_RELOC_ALPHA_GPDISP_LO16
2042ENUMDOC
2043 For GPDISP_LO16 ("ignore") relocations, the symbol is handled as
2044 with GPDISP_HI16 relocs. The addend is ignored when writing the
2045 relocations out, and is filled in with the file's GP value on
2046 reading, for convenience.
2047
2048ENUM
2049 BFD_RELOC_ALPHA_GPDISP
2050ENUMDOC
2051 The ELF GPDISP relocation is exactly the same as the GPDISP_HI16
2052 relocation except that there is no accompanying GPDISP_LO16
2053 relocation.
2054
2055ENUM
2056 BFD_RELOC_ALPHA_LITERAL
2057ENUMX
2058 BFD_RELOC_ALPHA_ELF_LITERAL
2059ENUMX
2060 BFD_RELOC_ALPHA_LITUSE
2061ENUMDOC
2062 The Alpha LITERAL/LITUSE relocs are produced by a symbol reference;
2063 the assembler turns it into a LDQ instruction to load the address of
2064 the symbol, and then fills in a register in the real instruction.
2065
2066 The LITERAL reloc, at the LDQ instruction, refers to the .lita
2067 section symbol. The addend is ignored when writing, but is filled
2068 in with the file's GP value on reading, for convenience, as with the
2069 GPDISP_LO16 reloc.
2070
2071 The ELF_LITERAL reloc is somewhere between 16_GOTOFF and GPDISP_LO16.
2072 It should refer to the symbol to be referenced, as with 16_GOTOFF,
2073 but it generates output not based on the position within the .got
2074 section, but relative to the GP value chosen for the file during the
2075 final link stage.
2076
2077 The LITUSE reloc, on the instruction using the loaded address, gives
2078 information to the linker that it might be able to use to optimize
2079 away some literal section references. The symbol is ignored (read
2080 as the absolute section symbol), and the "addend" indicates the type
2081 of instruction using the register:
2082 1 - "memory" fmt insn
2083 2 - byte-manipulation (byte offset reg)
2084 3 - jsr (target of branch)
2085
252b5132
RH
2086ENUM
2087 BFD_RELOC_ALPHA_HINT
2088ENUMDOC
2089 The HINT relocation indicates a value that should be filled into the
2090 "hint" field of a jmp/jsr/ret instruction, for possible branch-
2091 prediction logic which may be provided on some processors.
2092
2093ENUM
2094 BFD_RELOC_ALPHA_LINKAGE
2095ENUMDOC
2096 The LINKAGE relocation outputs a linkage pair in the object file,
2097 which is filled by the linker.
2098
2099ENUM
2100 BFD_RELOC_ALPHA_CODEADDR
2101ENUMDOC
2102 The CODEADDR relocation outputs a STO_CA in the object file,
2103 which is filled by the linker.
2104
dfe57ca0
RH
2105ENUM
2106 BFD_RELOC_ALPHA_GPREL_HI16
2107ENUMX
2108 BFD_RELOC_ALPHA_GPREL_LO16
2109ENUMDOC
dc810e39
AM
2110 The GPREL_HI/LO relocations together form a 32-bit offset from the
2111 GP register.
dfe57ca0 2112
7793f4d0
RH
2113ENUM
2114 BFD_RELOC_ALPHA_BRSGP
2115ENUMDOC
2116 Like BFD_RELOC_23_PCREL_S2, except that the source and target must
b34976b6 2117 share a common GP, and the target address is adjusted for
7793f4d0
RH
2118 STO_ALPHA_STD_GPLOAD.
2119
0c376465
TG
2120ENUM
2121 BFD_RELOC_ALPHA_NOP
2122ENUMDOC
2123 The NOP relocation outputs a NOP if the longword displacement
2124 between two procedure entry points is < 2^21.
2125
2126ENUM
2127 BFD_RELOC_ALPHA_BSR
2128ENUMDOC
2129 The BSR relocation outputs a BSR if the longword displacement
2130 between two procedure entry points is < 2^21.
2131
2132ENUM
2133 BFD_RELOC_ALPHA_LDA
2134ENUMDOC
2135 The LDA relocation outputs a LDA if the longword displacement
2136 between two procedure entry points is < 2^16.
2137
2138ENUM
2139 BFD_RELOC_ALPHA_BOH
2140ENUMDOC
2141 The BOH relocation outputs a BSR if the longword displacement
2142 between two procedure entry points is < 2^21, or else a hint.
2143
3765b1be
RH
2144ENUM
2145 BFD_RELOC_ALPHA_TLSGD
2146ENUMX
2147 BFD_RELOC_ALPHA_TLSLDM
2148ENUMX
2149 BFD_RELOC_ALPHA_DTPMOD64
2150ENUMX
2151 BFD_RELOC_ALPHA_GOTDTPREL16
2152ENUMX
2153 BFD_RELOC_ALPHA_DTPREL64
2154ENUMX
2155 BFD_RELOC_ALPHA_DTPREL_HI16
2156ENUMX
2157 BFD_RELOC_ALPHA_DTPREL_LO16
2158ENUMX
2159 BFD_RELOC_ALPHA_DTPREL16
2160ENUMX
2161 BFD_RELOC_ALPHA_GOTTPREL16
2162ENUMX
2163 BFD_RELOC_ALPHA_TPREL64
2164ENUMX
2165 BFD_RELOC_ALPHA_TPREL_HI16
2166ENUMX
2167 BFD_RELOC_ALPHA_TPREL_LO16
2168ENUMX
2169 BFD_RELOC_ALPHA_TPREL16
2170ENUMDOC
2171 Alpha thread-local storage relocations.
2172
252b5132
RH
2173ENUM
2174 BFD_RELOC_MIPS_JMP
2175ENUMDOC
2176 Bits 27..2 of the relocation address shifted right 2 bits;
2177 simple reloc otherwise.
2178
2179ENUM
2180 BFD_RELOC_MIPS16_JMP
2181ENUMDOC
2182 The MIPS16 jump instruction.
2183
2184ENUM
2185 BFD_RELOC_MIPS16_GPREL
2186ENUMDOC
2187 MIPS16 GP relative reloc.
2188
2189ENUM
2190 BFD_RELOC_HI16
2191ENUMDOC
2192 High 16 bits of 32-bit value; simple reloc.
2193ENUM
2194 BFD_RELOC_HI16_S
2195ENUMDOC
2196 High 16 bits of 32-bit value but the low 16 bits will be sign
2197 extended and added to form the final result. If the low 16
2198 bits form a negative number, we need to add one to the high value
2199 to compensate for the borrow when the low bits are added.
2200ENUM
2201 BFD_RELOC_LO16
2202ENUMDOC
2203 Low 16 bits.
0b25d3e6 2204
d7128ce4
AM
2205ENUM
2206 BFD_RELOC_HI16_PCREL
2207ENUMDOC
2208 High 16 bits of 32-bit pc-relative value
2209ENUM
2210 BFD_RELOC_HI16_S_PCREL
2211ENUMDOC
2212 High 16 bits of 32-bit pc-relative value, adjusted
2213ENUM
2214 BFD_RELOC_LO16_PCREL
2215ENUMDOC
2216 Low 16 bits of pc-relative value
2217
738e5348
RS
2218ENUM
2219 BFD_RELOC_MIPS16_GOT16
2220ENUMX
2221 BFD_RELOC_MIPS16_CALL16
2222ENUMDOC
2223 Equivalent of BFD_RELOC_MIPS_*, but with the MIPS16 layout of
2224 16-bit immediate fields
d6f16593
MR
2225ENUM
2226 BFD_RELOC_MIPS16_HI16
2227ENUMDOC
2228 MIPS16 high 16 bits of 32-bit value.
2229ENUM
2230 BFD_RELOC_MIPS16_HI16_S
2231ENUMDOC
2232 MIPS16 high 16 bits of 32-bit value but the low 16 bits will be sign
2233 extended and added to form the final result. If the low 16
2234 bits form a negative number, we need to add one to the high value
2235 to compensate for the borrow when the low bits are added.
2236ENUM
2237 BFD_RELOC_MIPS16_LO16
2238ENUMDOC
2239 MIPS16 low 16 bits.
2240
252b5132
RH
2241ENUM
2242 BFD_RELOC_MIPS_LITERAL
2243ENUMDOC
2244 Relocation against a MIPS literal section.
2245
2246ENUM
2247 BFD_RELOC_MIPS_GOT16
2248ENUMX
2249 BFD_RELOC_MIPS_CALL16
252b5132
RH
2250ENUMX
2251 BFD_RELOC_MIPS_GOT_HI16
2252ENUMX
2253 BFD_RELOC_MIPS_GOT_LO16
2254ENUMX
2255 BFD_RELOC_MIPS_CALL_HI16
2256ENUMX
2257 BFD_RELOC_MIPS_CALL_LO16
3f830999
MM
2258ENUMX
2259 BFD_RELOC_MIPS_SUB
2260ENUMX
2261 BFD_RELOC_MIPS_GOT_PAGE
2262ENUMX
2263 BFD_RELOC_MIPS_GOT_OFST
2264ENUMX
2265 BFD_RELOC_MIPS_GOT_DISP
c2feb664
NC
2266ENUMX
2267 BFD_RELOC_MIPS_SHIFT5
2268ENUMX
2269 BFD_RELOC_MIPS_SHIFT6
2270ENUMX
2271 BFD_RELOC_MIPS_INSERT_A
2272ENUMX
2273 BFD_RELOC_MIPS_INSERT_B
2274ENUMX
2275 BFD_RELOC_MIPS_DELETE
2276ENUMX
2277 BFD_RELOC_MIPS_HIGHEST
2278ENUMX
2279 BFD_RELOC_MIPS_HIGHER
2280ENUMX
2281 BFD_RELOC_MIPS_SCN_DISP
2282ENUMX
2283 BFD_RELOC_MIPS_REL16
2284ENUMX
2285 BFD_RELOC_MIPS_RELGOT
2286ENUMX
2287 BFD_RELOC_MIPS_JALR
0f20cc35
DJ
2288ENUMX
2289 BFD_RELOC_MIPS_TLS_DTPMOD32
2290ENUMX
2291 BFD_RELOC_MIPS_TLS_DTPREL32
2292ENUMX
2293 BFD_RELOC_MIPS_TLS_DTPMOD64
2294ENUMX
2295 BFD_RELOC_MIPS_TLS_DTPREL64
2296ENUMX
2297 BFD_RELOC_MIPS_TLS_GD
2298ENUMX
2299 BFD_RELOC_MIPS_TLS_LDM
2300ENUMX
2301 BFD_RELOC_MIPS_TLS_DTPREL_HI16
2302ENUMX
2303 BFD_RELOC_MIPS_TLS_DTPREL_LO16
2304ENUMX
2305 BFD_RELOC_MIPS_TLS_GOTTPREL
2306ENUMX
2307 BFD_RELOC_MIPS_TLS_TPREL32
2308ENUMX
2309 BFD_RELOC_MIPS_TLS_TPREL64
2310ENUMX
2311 BFD_RELOC_MIPS_TLS_TPREL_HI16
2312ENUMX
2313 BFD_RELOC_MIPS_TLS_TPREL_LO16
980491e6
MR
2314ENUMDOC
2315 MIPS ELF relocations.
252b5132 2316COMMENT
980491e6 2317
0a44bf69
RS
2318ENUM
2319 BFD_RELOC_MIPS_COPY
2320ENUMX
2321 BFD_RELOC_MIPS_JUMP_SLOT
2322ENUMDOC
861fb55a 2323 MIPS ELF relocations (VxWorks and PLT extensions).
0a44bf69
RS
2324COMMENT
2325
f865a31d
AG
2326ENUM
2327 BFD_RELOC_MOXIE_10_PCREL
2328ENUMDOC
2329 Moxie ELF relocations.
2330COMMENT
2331
4e5ba5b7
DB
2332ENUM
2333 BFD_RELOC_FRV_LABEL16
2334ENUMX
2335 BFD_RELOC_FRV_LABEL24
2336ENUMX
2337 BFD_RELOC_FRV_LO16
2338ENUMX
2339 BFD_RELOC_FRV_HI16
2340ENUMX
2341 BFD_RELOC_FRV_GPREL12
2342ENUMX
2343 BFD_RELOC_FRV_GPRELU12
2344ENUMX
2345 BFD_RELOC_FRV_GPREL32
2346ENUMX
2347 BFD_RELOC_FRV_GPRELHI
2348ENUMX
2349 BFD_RELOC_FRV_GPRELLO
51532845
AO
2350ENUMX
2351 BFD_RELOC_FRV_GOT12
2352ENUMX
2353 BFD_RELOC_FRV_GOTHI
2354ENUMX
2355 BFD_RELOC_FRV_GOTLO
2356ENUMX
2357 BFD_RELOC_FRV_FUNCDESC
2358ENUMX
2359 BFD_RELOC_FRV_FUNCDESC_GOT12
2360ENUMX
2361 BFD_RELOC_FRV_FUNCDESC_GOTHI
2362ENUMX
2363 BFD_RELOC_FRV_FUNCDESC_GOTLO
2364ENUMX
2365 BFD_RELOC_FRV_FUNCDESC_VALUE
2366ENUMX
2367 BFD_RELOC_FRV_FUNCDESC_GOTOFF12
2368ENUMX
2369 BFD_RELOC_FRV_FUNCDESC_GOTOFFHI
2370ENUMX
2371 BFD_RELOC_FRV_FUNCDESC_GOTOFFLO
2372ENUMX
2373 BFD_RELOC_FRV_GOTOFF12
2374ENUMX
2375 BFD_RELOC_FRV_GOTOFFHI
2376ENUMX
2377 BFD_RELOC_FRV_GOTOFFLO
90219bd0
AO
2378ENUMX
2379 BFD_RELOC_FRV_GETTLSOFF
2380ENUMX
2381 BFD_RELOC_FRV_TLSDESC_VALUE
2382ENUMX
2383 BFD_RELOC_FRV_GOTTLSDESC12
2384ENUMX
2385 BFD_RELOC_FRV_GOTTLSDESCHI
2386ENUMX
2387 BFD_RELOC_FRV_GOTTLSDESCLO
2388ENUMX
2389 BFD_RELOC_FRV_TLSMOFF12
2390ENUMX
2391 BFD_RELOC_FRV_TLSMOFFHI
2392ENUMX
2393 BFD_RELOC_FRV_TLSMOFFLO
2394ENUMX
2395 BFD_RELOC_FRV_GOTTLSOFF12
2396ENUMX
2397 BFD_RELOC_FRV_GOTTLSOFFHI
2398ENUMX
2399 BFD_RELOC_FRV_GOTTLSOFFLO
2400ENUMX
2401 BFD_RELOC_FRV_TLSOFF
2402ENUMX
2403 BFD_RELOC_FRV_TLSDESC_RELAX
2404ENUMX
2405 BFD_RELOC_FRV_GETTLSOFF_RELAX
2406ENUMX
2407 BFD_RELOC_FRV_TLSOFF_RELAX
2408ENUMX
2409 BFD_RELOC_FRV_TLSMOFF
4e5ba5b7
DB
2410ENUMDOC
2411 Fujitsu Frv Relocations.
2412COMMENT
252b5132 2413
03a12831
AO
2414ENUM
2415 BFD_RELOC_MN10300_GOTOFF24
2416ENUMDOC
2417 This is a 24bit GOT-relative reloc for the mn10300.
2418ENUM
2419 BFD_RELOC_MN10300_GOT32
2420ENUMDOC
2421 This is a 32bit GOT-relative reloc for the mn10300, offset by two bytes
2422 in the instruction.
2423ENUM
2424 BFD_RELOC_MN10300_GOT24
2425ENUMDOC
2426 This is a 24bit GOT-relative reloc for the mn10300, offset by two bytes
2427 in the instruction.
2428ENUM
2429 BFD_RELOC_MN10300_GOT16
2430ENUMDOC
2431 This is a 16bit GOT-relative reloc for the mn10300, offset by two bytes
2432 in the instruction.
2433ENUM
2434 BFD_RELOC_MN10300_COPY
2435ENUMDOC
2436 Copy symbol at runtime.
2437ENUM
2438 BFD_RELOC_MN10300_GLOB_DAT
2439ENUMDOC
2440 Create GOT entry.
2441ENUM
2442 BFD_RELOC_MN10300_JMP_SLOT
2443ENUMDOC
2444 Create PLT entry.
2445ENUM
2446 BFD_RELOC_MN10300_RELATIVE
2447ENUMDOC
2448 Adjust by program base.
bfff1642
NC
2449ENUM
2450 BFD_RELOC_MN10300_SYM_DIFF
2451ENUMDOC
2452 Together with another reloc targeted at the same location,
2453 allows for a value that is the difference of two symbols
2454 in the same section.
569006e5
NC
2455ENUM
2456 BFD_RELOC_MN10300_ALIGN
2457ENUMDOC
2458 The addend of this reloc is an alignment power that must
2459 be honoured at the offset's location, regardless of linker
2460 relaxation.
03a12831 2461COMMENT
252b5132
RH
2462
2463ENUM
2464 BFD_RELOC_386_GOT32
2465ENUMX
2466 BFD_RELOC_386_PLT32
2467ENUMX
2468 BFD_RELOC_386_COPY
2469ENUMX
2470 BFD_RELOC_386_GLOB_DAT
2471ENUMX
2472 BFD_RELOC_386_JUMP_SLOT
2473ENUMX
2474 BFD_RELOC_386_RELATIVE
2475ENUMX
2476 BFD_RELOC_386_GOTOFF
2477ENUMX
2478 BFD_RELOC_386_GOTPC
37e55690
JJ
2479ENUMX
2480 BFD_RELOC_386_TLS_TPOFF
2481ENUMX
2482 BFD_RELOC_386_TLS_IE
2483ENUMX
2484 BFD_RELOC_386_TLS_GOTIE
13ae64f3
JJ
2485ENUMX
2486 BFD_RELOC_386_TLS_LE
2487ENUMX
2488 BFD_RELOC_386_TLS_GD
2489ENUMX
2490 BFD_RELOC_386_TLS_LDM
2491ENUMX
2492 BFD_RELOC_386_TLS_LDO_32
2493ENUMX
2494 BFD_RELOC_386_TLS_IE_32
2495ENUMX
2496 BFD_RELOC_386_TLS_LE_32
2497ENUMX
2498 BFD_RELOC_386_TLS_DTPMOD32
2499ENUMX
2500 BFD_RELOC_386_TLS_DTPOFF32
2501ENUMX
2502 BFD_RELOC_386_TLS_TPOFF32
67a4f2b7
AO
2503ENUMX
2504 BFD_RELOC_386_TLS_GOTDESC
2505ENUMX
2506 BFD_RELOC_386_TLS_DESC_CALL
2507ENUMX
2508 BFD_RELOC_386_TLS_DESC
cbe950e9
L
2509ENUMX
2510 BFD_RELOC_386_IRELATIVE
252b5132
RH
2511ENUMDOC
2512 i386/elf relocations
2513
8d88c4ca
NC
2514ENUM
2515 BFD_RELOC_X86_64_GOT32
2516ENUMX
2517 BFD_RELOC_X86_64_PLT32
2518ENUMX
2519 BFD_RELOC_X86_64_COPY
2520ENUMX
2521 BFD_RELOC_X86_64_GLOB_DAT
2522ENUMX
2523 BFD_RELOC_X86_64_JUMP_SLOT
2524ENUMX
2525 BFD_RELOC_X86_64_RELATIVE
2526ENUMX
2527 BFD_RELOC_X86_64_GOTPCREL
2528ENUMX
2529 BFD_RELOC_X86_64_32S
bffbf940
JJ
2530ENUMX
2531 BFD_RELOC_X86_64_DTPMOD64
2532ENUMX
2533 BFD_RELOC_X86_64_DTPOFF64
2534ENUMX
2535 BFD_RELOC_X86_64_TPOFF64
2536ENUMX
2537 BFD_RELOC_X86_64_TLSGD
2538ENUMX
2539 BFD_RELOC_X86_64_TLSLD
2540ENUMX
2541 BFD_RELOC_X86_64_DTPOFF32
2542ENUMX
2543 BFD_RELOC_X86_64_GOTTPOFF
2544ENUMX
2545 BFD_RELOC_X86_64_TPOFF32
73d147dc
L
2546ENUMX
2547 BFD_RELOC_X86_64_GOTOFF64
2548ENUMX
2549 BFD_RELOC_X86_64_GOTPC32
7b81dfbb
AJ
2550ENUMX
2551 BFD_RELOC_X86_64_GOT64
2552ENUMX
2553 BFD_RELOC_X86_64_GOTPCREL64
2554ENUMX
2555 BFD_RELOC_X86_64_GOTPC64
2556ENUMX
2557 BFD_RELOC_X86_64_GOTPLT64
2558ENUMX
2559 BFD_RELOC_X86_64_PLTOFF64
67a4f2b7
AO
2560ENUMX
2561 BFD_RELOC_X86_64_GOTPC32_TLSDESC
2562ENUMX
2563 BFD_RELOC_X86_64_TLSDESC_CALL
2564ENUMX
2565 BFD_RELOC_X86_64_TLSDESC
cbe950e9
L
2566ENUMX
2567 BFD_RELOC_X86_64_IRELATIVE
8d88c4ca
NC
2568ENUMDOC
2569 x86-64/elf relocations
2570
252b5132
RH
2571ENUM
2572 BFD_RELOC_NS32K_IMM_8
2573ENUMX
2574 BFD_RELOC_NS32K_IMM_16
2575ENUMX
2576 BFD_RELOC_NS32K_IMM_32
2577ENUMX
2578 BFD_RELOC_NS32K_IMM_8_PCREL
2579ENUMX
2580 BFD_RELOC_NS32K_IMM_16_PCREL
2581ENUMX
2582 BFD_RELOC_NS32K_IMM_32_PCREL
2583ENUMX
2584 BFD_RELOC_NS32K_DISP_8
2585ENUMX
2586 BFD_RELOC_NS32K_DISP_16
2587ENUMX
2588 BFD_RELOC_NS32K_DISP_32
2589ENUMX
2590 BFD_RELOC_NS32K_DISP_8_PCREL
2591ENUMX
2592 BFD_RELOC_NS32K_DISP_16_PCREL
2593ENUMX
2594 BFD_RELOC_NS32K_DISP_32_PCREL
2595ENUMDOC
2596 ns32k relocations
2597
e135f41b
NC
2598ENUM
2599 BFD_RELOC_PDP11_DISP_8_PCREL
2600ENUMX
2601 BFD_RELOC_PDP11_DISP_6_PCREL
2602ENUMDOC
2603 PDP11 relocations
2604
0bcb993b
ILT
2605ENUM
2606 BFD_RELOC_PJ_CODE_HI16
2607ENUMX
2608 BFD_RELOC_PJ_CODE_LO16
2609ENUMX
2610 BFD_RELOC_PJ_CODE_DIR16
2611ENUMX
2612 BFD_RELOC_PJ_CODE_DIR32
2613ENUMX
2614 BFD_RELOC_PJ_CODE_REL16
2615ENUMX
2616 BFD_RELOC_PJ_CODE_REL32
2617ENUMDOC
2618 Picojava relocs. Not all of these appear in object files.
88b6bae0 2619
252b5132
RH
2620ENUM
2621 BFD_RELOC_PPC_B26
2622ENUMX
2623 BFD_RELOC_PPC_BA26
2624ENUMX
2625 BFD_RELOC_PPC_TOC16
2626ENUMX
2627 BFD_RELOC_PPC_B16
2628ENUMX
2629 BFD_RELOC_PPC_B16_BRTAKEN
2630ENUMX
2631 BFD_RELOC_PPC_B16_BRNTAKEN
2632ENUMX
2633 BFD_RELOC_PPC_BA16
2634ENUMX
2635 BFD_RELOC_PPC_BA16_BRTAKEN
2636ENUMX
2637 BFD_RELOC_PPC_BA16_BRNTAKEN
2638ENUMX
2639 BFD_RELOC_PPC_COPY
2640ENUMX
2641 BFD_RELOC_PPC_GLOB_DAT
2642ENUMX
2643 BFD_RELOC_PPC_JMP_SLOT
2644ENUMX
2645 BFD_RELOC_PPC_RELATIVE
2646ENUMX
2647 BFD_RELOC_PPC_LOCAL24PC
2648ENUMX
2649 BFD_RELOC_PPC_EMB_NADDR32
2650ENUMX
2651 BFD_RELOC_PPC_EMB_NADDR16
2652ENUMX
2653 BFD_RELOC_PPC_EMB_NADDR16_LO
2654ENUMX
2655 BFD_RELOC_PPC_EMB_NADDR16_HI
2656ENUMX
2657 BFD_RELOC_PPC_EMB_NADDR16_HA
2658ENUMX
2659 BFD_RELOC_PPC_EMB_SDAI16
2660ENUMX
2661 BFD_RELOC_PPC_EMB_SDA2I16
2662ENUMX
2663 BFD_RELOC_PPC_EMB_SDA2REL
2664ENUMX
2665 BFD_RELOC_PPC_EMB_SDA21
2666ENUMX
2667 BFD_RELOC_PPC_EMB_MRKREF
2668ENUMX
2669 BFD_RELOC_PPC_EMB_RELSEC16
2670ENUMX
2671 BFD_RELOC_PPC_EMB_RELST_LO
2672ENUMX
2673 BFD_RELOC_PPC_EMB_RELST_HI
2674ENUMX
2675 BFD_RELOC_PPC_EMB_RELST_HA
2676ENUMX
2677 BFD_RELOC_PPC_EMB_BIT_FLD
2678ENUMX
2679 BFD_RELOC_PPC_EMB_RELSDA
5bd4f169
AM
2680ENUMX
2681 BFD_RELOC_PPC64_HIGHER
2682ENUMX
2683 BFD_RELOC_PPC64_HIGHER_S
2684ENUMX
2685 BFD_RELOC_PPC64_HIGHEST
2686ENUMX
2687 BFD_RELOC_PPC64_HIGHEST_S
2688ENUMX
2689 BFD_RELOC_PPC64_TOC16_LO
2690ENUMX
2691 BFD_RELOC_PPC64_TOC16_HI
2692ENUMX
2693 BFD_RELOC_PPC64_TOC16_HA
2694ENUMX
2695 BFD_RELOC_PPC64_TOC
2696ENUMX
dc810e39 2697 BFD_RELOC_PPC64_PLTGOT16
5bd4f169
AM
2698ENUMX
2699 BFD_RELOC_PPC64_PLTGOT16_LO
2700ENUMX
2701 BFD_RELOC_PPC64_PLTGOT16_HI
2702ENUMX
2703 BFD_RELOC_PPC64_PLTGOT16_HA
2704ENUMX
2705 BFD_RELOC_PPC64_ADDR16_DS
2706ENUMX
2707 BFD_RELOC_PPC64_ADDR16_LO_DS
2708ENUMX
2709 BFD_RELOC_PPC64_GOT16_DS
2710ENUMX
2711 BFD_RELOC_PPC64_GOT16_LO_DS
2712ENUMX
2713 BFD_RELOC_PPC64_PLT16_LO_DS
2714ENUMX
2715 BFD_RELOC_PPC64_SECTOFF_DS
2716ENUMX
2717 BFD_RELOC_PPC64_SECTOFF_LO_DS
2718ENUMX
2719 BFD_RELOC_PPC64_TOC16_DS
2720ENUMX
2721 BFD_RELOC_PPC64_TOC16_LO_DS
2722ENUMX
2723 BFD_RELOC_PPC64_PLTGOT16_DS
2724ENUMX
2725 BFD_RELOC_PPC64_PLTGOT16_LO_DS
252b5132
RH
2726ENUMDOC
2727 Power(rs6000) and PowerPC relocations.
411e1bfb
AM
2728
2729ENUM
2730 BFD_RELOC_PPC_TLS
727fc41e
AM
2731ENUMX
2732 BFD_RELOC_PPC_TLSGD
2733ENUMX
2734 BFD_RELOC_PPC_TLSLD
411e1bfb
AM
2735ENUMX
2736 BFD_RELOC_PPC_DTPMOD
2737ENUMX
2738 BFD_RELOC_PPC_TPREL16
2739ENUMX
2740 BFD_RELOC_PPC_TPREL16_LO
2741ENUMX
2742 BFD_RELOC_PPC_TPREL16_HI
2743ENUMX
2744 BFD_RELOC_PPC_TPREL16_HA
2745ENUMX
2746 BFD_RELOC_PPC_TPREL
2747ENUMX
2748 BFD_RELOC_PPC_DTPREL16
2749ENUMX
2750 BFD_RELOC_PPC_DTPREL16_LO
2751ENUMX
2752 BFD_RELOC_PPC_DTPREL16_HI
2753ENUMX
2754 BFD_RELOC_PPC_DTPREL16_HA
2755ENUMX
2756 BFD_RELOC_PPC_DTPREL
2757ENUMX
2758 BFD_RELOC_PPC_GOT_TLSGD16
2759ENUMX
2760 BFD_RELOC_PPC_GOT_TLSGD16_LO
2761ENUMX
2762 BFD_RELOC_PPC_GOT_TLSGD16_HI
2763ENUMX
2764 BFD_RELOC_PPC_GOT_TLSGD16_HA
2765ENUMX
2766 BFD_RELOC_PPC_GOT_TLSLD16
2767ENUMX
2768 BFD_RELOC_PPC_GOT_TLSLD16_LO
2769ENUMX
2770 BFD_RELOC_PPC_GOT_TLSLD16_HI
2771ENUMX
2772 BFD_RELOC_PPC_GOT_TLSLD16_HA
2773ENUMX
2774 BFD_RELOC_PPC_GOT_TPREL16
2775ENUMX
2776 BFD_RELOC_PPC_GOT_TPREL16_LO
2777ENUMX
2778 BFD_RELOC_PPC_GOT_TPREL16_HI
2779ENUMX
2780 BFD_RELOC_PPC_GOT_TPREL16_HA
2781ENUMX
2782 BFD_RELOC_PPC_GOT_DTPREL16
2783ENUMX
2784 BFD_RELOC_PPC_GOT_DTPREL16_LO
2785ENUMX
2786 BFD_RELOC_PPC_GOT_DTPREL16_HI
2787ENUMX
2788 BFD_RELOC_PPC_GOT_DTPREL16_HA
2789ENUMX
2790 BFD_RELOC_PPC64_TPREL16_DS
2791ENUMX
2792 BFD_RELOC_PPC64_TPREL16_LO_DS
2793ENUMX
2794 BFD_RELOC_PPC64_TPREL16_HIGHER
2795ENUMX
2796 BFD_RELOC_PPC64_TPREL16_HIGHERA
2797ENUMX
2798 BFD_RELOC_PPC64_TPREL16_HIGHEST
2799ENUMX
2800 BFD_RELOC_PPC64_TPREL16_HIGHESTA
2801ENUMX
2802 BFD_RELOC_PPC64_DTPREL16_DS
2803ENUMX
2804 BFD_RELOC_PPC64_DTPREL16_LO_DS
2805ENUMX
2806 BFD_RELOC_PPC64_DTPREL16_HIGHER
2807ENUMX
2808 BFD_RELOC_PPC64_DTPREL16_HIGHERA
2809ENUMX
2810 BFD_RELOC_PPC64_DTPREL16_HIGHEST
2811ENUMX
2812 BFD_RELOC_PPC64_DTPREL16_HIGHESTA
2813ENUMDOC
2814 PowerPC and PowerPC64 thread-local storage relocations.
252b5132 2815
5b93d8bb
AM
2816ENUM
2817 BFD_RELOC_I370_D12
2818ENUMDOC
2819 IBM 370/390 relocations
2820
252b5132
RH
2821ENUM
2822 BFD_RELOC_CTOR
2823ENUMDOC
7dee875e 2824 The type of reloc used to build a constructor table - at the moment
252b5132
RH
2825 probably a 32 bit wide absolute relocation, but the target can choose.
2826 It generally does map to one of the other relocation types.
2827
2828ENUM
2829 BFD_RELOC_ARM_PCREL_BRANCH
2830ENUMDOC
2831 ARM 26 bit pc-relative branch. The lowest two bits must be zero and are
2832 not stored in the instruction.
dfc5f959
NC
2833ENUM
2834 BFD_RELOC_ARM_PCREL_BLX
2835ENUMDOC
2836 ARM 26 bit pc-relative branch. The lowest bit must be zero and is
2837 not stored in the instruction. The 2nd lowest bit comes from a 1 bit
2838 field in the instruction.
2839ENUM
2840 BFD_RELOC_THUMB_PCREL_BLX
2841ENUMDOC
2842 Thumb 22 bit pc-relative branch. The lowest bit must be zero and is
2843 not stored in the instruction. The 2nd lowest bit comes from a 1 bit
2844 field in the instruction.
d70c5fc7 2845ENUM
39b41c9c
PB
2846 BFD_RELOC_ARM_PCREL_CALL
2847ENUMDOC
2848 ARM 26-bit pc-relative branch for an unconditional BL or BLX instruction.
d70c5fc7 2849ENUM
39b41c9c
PB
2850 BFD_RELOC_ARM_PCREL_JUMP
2851ENUMDOC
2852 ARM 26-bit pc-relative branch for B or conditional BL instruction.
c19d1205 2853
252b5132 2854ENUM
c19d1205 2855 BFD_RELOC_THUMB_PCREL_BRANCH7
752149a0 2856ENUMX
c19d1205 2857 BFD_RELOC_THUMB_PCREL_BRANCH9
252b5132 2858ENUMX
c19d1205 2859 BFD_RELOC_THUMB_PCREL_BRANCH12
252b5132 2860ENUMX
c19d1205 2861 BFD_RELOC_THUMB_PCREL_BRANCH20
0dd132b6 2862ENUMX
c19d1205 2863 BFD_RELOC_THUMB_PCREL_BRANCH23
252b5132 2864ENUMX
c19d1205
ZW
2865 BFD_RELOC_THUMB_PCREL_BRANCH25
2866ENUMDOC
2867 Thumb 7-, 9-, 12-, 20-, 23-, and 25-bit pc-relative branches.
2868 The lowest bit must be zero and is not stored in the instruction.
2869 Note that the corresponding ELF R_ARM_THM_JUMPnn constant has an
2870 "nn" one smaller in all cases. Note further that BRANCH23
2871 corresponds to R_ARM_THM_CALL.
2872
2873ENUM
2874 BFD_RELOC_ARM_OFFSET_IMM
2875ENUMDOC
2876 12-bit immediate offset, used in ARM-format ldr and str instructions.
2877
2878ENUM
2879 BFD_RELOC_ARM_THUMB_OFFSET
2880ENUMDOC
2881 5-bit immediate offset, used in Thumb-format ldr and str instructions.
2882
2883ENUM
2884 BFD_RELOC_ARM_TARGET1
2885ENUMDOC
2886 Pc-relative or absolute relocation depending on target. Used for
2887 entries in .init_array sections.
2888ENUM
2889 BFD_RELOC_ARM_ROSEGREL32
2890ENUMDOC
2891 Read-only segment base relative address.
2892ENUM
2893 BFD_RELOC_ARM_SBREL32
2894ENUMDOC
2895 Data segment base relative address.
2896ENUM
2897 BFD_RELOC_ARM_TARGET2
2898ENUMDOC
2899 This reloc is used for references to RTTI data from exception handling
2900 tables. The actual definition depends on the target. It may be a
2901 pc-relative or some form of GOT-indirect relocation.
2902ENUM
2903 BFD_RELOC_ARM_PREL31
2904ENUMDOC
2905 31-bit PC relative address.
b6895b4f
PB
2906ENUM
2907 BFD_RELOC_ARM_MOVW
2908ENUMX
2909 BFD_RELOC_ARM_MOVT
2910ENUMX
2911 BFD_RELOC_ARM_MOVW_PCREL
2912ENUMX
2913 BFD_RELOC_ARM_MOVT_PCREL
2914ENUMX
2915 BFD_RELOC_ARM_THUMB_MOVW
2916ENUMX
2917 BFD_RELOC_ARM_THUMB_MOVT
2918ENUMX
2919 BFD_RELOC_ARM_THUMB_MOVW_PCREL
2920ENUMX
2921 BFD_RELOC_ARM_THUMB_MOVT_PCREL
2922ENUMDOC
2923 Low and High halfword relocations for MOVW and MOVT instructions.
c19d1205
ZW
2924
2925ENUM
2926 BFD_RELOC_ARM_JUMP_SLOT
252b5132 2927ENUMX
c19d1205 2928 BFD_RELOC_ARM_GLOB_DAT
252b5132 2929ENUMX
c19d1205 2930 BFD_RELOC_ARM_GOT32
e16bb312 2931ENUMX
c19d1205 2932 BFD_RELOC_ARM_PLT32
252b5132 2933ENUMX
c19d1205 2934 BFD_RELOC_ARM_RELATIVE
252b5132 2935ENUMX
c19d1205 2936 BFD_RELOC_ARM_GOTOFF
252b5132 2937ENUMX
c19d1205 2938 BFD_RELOC_ARM_GOTPC
b43420e6
NC
2939ENUMX
2940 BFD_RELOC_ARM_GOT_PREL
c19d1205
ZW
2941ENUMDOC
2942 Relocations for setting up GOTs and PLTs for shared libraries.
2943
2944ENUM
2945 BFD_RELOC_ARM_TLS_GD32
252b5132 2946ENUMX
c19d1205 2947 BFD_RELOC_ARM_TLS_LDO32
252b5132 2948ENUMX
c19d1205 2949 BFD_RELOC_ARM_TLS_LDM32
252b5132 2950ENUMX
c19d1205 2951 BFD_RELOC_ARM_TLS_DTPOFF32
252b5132 2952ENUMX
c19d1205 2953 BFD_RELOC_ARM_TLS_DTPMOD32
252b5132 2954ENUMX
c19d1205 2955 BFD_RELOC_ARM_TLS_TPOFF32
252b5132 2956ENUMX
c19d1205 2957 BFD_RELOC_ARM_TLS_IE32
252b5132 2958ENUMX
c19d1205
ZW
2959 BFD_RELOC_ARM_TLS_LE32
2960ENUMDOC
2961 ARM thread-local storage relocations.
2962
4962c51a
MS
2963ENUM
2964 BFD_RELOC_ARM_ALU_PC_G0_NC
2965ENUMX
2966 BFD_RELOC_ARM_ALU_PC_G0
2967ENUMX
2968 BFD_RELOC_ARM_ALU_PC_G1_NC
2969ENUMX
2970 BFD_RELOC_ARM_ALU_PC_G1
2971ENUMX
2972 BFD_RELOC_ARM_ALU_PC_G2
2973ENUMX
2974 BFD_RELOC_ARM_LDR_PC_G0
2975ENUMX
2976 BFD_RELOC_ARM_LDR_PC_G1
2977ENUMX
2978 BFD_RELOC_ARM_LDR_PC_G2
2979ENUMX
2980 BFD_RELOC_ARM_LDRS_PC_G0
2981ENUMX
2982 BFD_RELOC_ARM_LDRS_PC_G1
2983ENUMX
2984 BFD_RELOC_ARM_LDRS_PC_G2
2985ENUMX
2986 BFD_RELOC_ARM_LDC_PC_G0
2987ENUMX
2988 BFD_RELOC_ARM_LDC_PC_G1
2989ENUMX
2990 BFD_RELOC_ARM_LDC_PC_G2
2991ENUMX
2992 BFD_RELOC_ARM_ALU_SB_G0_NC
2993ENUMX
2994 BFD_RELOC_ARM_ALU_SB_G0
2995ENUMX
2996 BFD_RELOC_ARM_ALU_SB_G1_NC
2997ENUMX
2998 BFD_RELOC_ARM_ALU_SB_G1
2999ENUMX
3000 BFD_RELOC_ARM_ALU_SB_G2
3001ENUMX
3002 BFD_RELOC_ARM_LDR_SB_G0
3003ENUMX
3004 BFD_RELOC_ARM_LDR_SB_G1
3005ENUMX
3006 BFD_RELOC_ARM_LDR_SB_G2
3007ENUMX
3008 BFD_RELOC_ARM_LDRS_SB_G0
3009ENUMX
3010 BFD_RELOC_ARM_LDRS_SB_G1
3011ENUMX
3012 BFD_RELOC_ARM_LDRS_SB_G2
3013ENUMX
3014 BFD_RELOC_ARM_LDC_SB_G0
3015ENUMX
3016 BFD_RELOC_ARM_LDC_SB_G1
3017ENUMX
3018 BFD_RELOC_ARM_LDC_SB_G2
3019ENUMDOC
3020 ARM group relocations.
3021
845b51d6
PB
3022ENUM
3023 BFD_RELOC_ARM_V4BX
3024ENUMDOC
3025 Annotation of BX instructions.
3026
c19d1205
ZW
3027ENUM
3028 BFD_RELOC_ARM_IMMEDIATE
252b5132 3029ENUMX
c19d1205 3030 BFD_RELOC_ARM_ADRL_IMMEDIATE
252b5132 3031ENUMX
c19d1205 3032 BFD_RELOC_ARM_T32_IMMEDIATE
16805f35
PB
3033ENUMX
3034 BFD_RELOC_ARM_T32_ADD_IMM
92e90b6e
PB
3035ENUMX
3036 BFD_RELOC_ARM_T32_IMM12
e9f89963
PB
3037ENUMX
3038 BFD_RELOC_ARM_T32_ADD_PC12
252b5132 3039ENUMX
c19d1205 3040 BFD_RELOC_ARM_SHIFT_IMM
252b5132 3041ENUMX
3eb17e6b 3042 BFD_RELOC_ARM_SMC
252b5132 3043ENUMX
c19d1205 3044 BFD_RELOC_ARM_SWI
252b5132 3045ENUMX
c19d1205 3046 BFD_RELOC_ARM_MULTI
252b5132 3047ENUMX
c19d1205 3048 BFD_RELOC_ARM_CP_OFF_IMM
252b5132 3049ENUMX
c19d1205 3050 BFD_RELOC_ARM_CP_OFF_IMM_S2
8f06b2d8
PB
3051ENUMX
3052 BFD_RELOC_ARM_T32_CP_OFF_IMM
3053ENUMX
3054 BFD_RELOC_ARM_T32_CP_OFF_IMM_S2
252b5132 3055ENUMX
c19d1205 3056 BFD_RELOC_ARM_ADR_IMM
ba93b8ac 3057ENUMX
c19d1205 3058 BFD_RELOC_ARM_LDR_IMM
ba93b8ac 3059ENUMX
c19d1205 3060 BFD_RELOC_ARM_LITERAL
ba93b8ac 3061ENUMX
c19d1205 3062 BFD_RELOC_ARM_IN_POOL
ba93b8ac 3063ENUMX
c19d1205 3064 BFD_RELOC_ARM_OFFSET_IMM8
ba93b8ac 3065ENUMX
c19d1205 3066 BFD_RELOC_ARM_T32_OFFSET_U8
ba93b8ac 3067ENUMX
c19d1205 3068 BFD_RELOC_ARM_T32_OFFSET_IMM
ba93b8ac 3069ENUMX
c19d1205 3070 BFD_RELOC_ARM_HWLITERAL
ba93b8ac 3071ENUMX
c19d1205
ZW
3072 BFD_RELOC_ARM_THUMB_ADD
3073ENUMX
3074 BFD_RELOC_ARM_THUMB_IMM
3075ENUMX
3076 BFD_RELOC_ARM_THUMB_SHIFT
252b5132
RH
3077ENUMDOC
3078 These relocs are only used within the ARM assembler. They are not
3079 (at present) written to any object files.
3080
3081ENUM
3082 BFD_RELOC_SH_PCDISP8BY2
3083ENUMX
3084 BFD_RELOC_SH_PCDISP12BY2
1d70c7fb
AO
3085ENUMX
3086 BFD_RELOC_SH_IMM3
3087ENUMX
3088 BFD_RELOC_SH_IMM3U
3089ENUMX
3090 BFD_RELOC_SH_DISP12
3091ENUMX
3092 BFD_RELOC_SH_DISP12BY2
3093ENUMX
3094 BFD_RELOC_SH_DISP12BY4
3095ENUMX
3096 BFD_RELOC_SH_DISP12BY8
3097ENUMX
3098 BFD_RELOC_SH_DISP20
3099ENUMX
3100 BFD_RELOC_SH_DISP20BY8
252b5132
RH
3101ENUMX
3102 BFD_RELOC_SH_IMM4
3103ENUMX
3104 BFD_RELOC_SH_IMM4BY2
3105ENUMX
3106 BFD_RELOC_SH_IMM4BY4
3107ENUMX
3108 BFD_RELOC_SH_IMM8
3109ENUMX
3110 BFD_RELOC_SH_IMM8BY2
3111ENUMX
3112 BFD_RELOC_SH_IMM8BY4
3113ENUMX
3114 BFD_RELOC_SH_PCRELIMM8BY2
3115ENUMX
3116 BFD_RELOC_SH_PCRELIMM8BY4
3117ENUMX
3118 BFD_RELOC_SH_SWITCH16
3119ENUMX
3120 BFD_RELOC_SH_SWITCH32
3121ENUMX
3122 BFD_RELOC_SH_USES
3123ENUMX
3124 BFD_RELOC_SH_COUNT
3125ENUMX
3126 BFD_RELOC_SH_ALIGN
3127ENUMX
3128 BFD_RELOC_SH_CODE
3129ENUMX
3130 BFD_RELOC_SH_DATA
3131ENUMX
3132 BFD_RELOC_SH_LABEL
015551fc
JR
3133ENUMX
3134 BFD_RELOC_SH_LOOP_START
3135ENUMX
3136 BFD_RELOC_SH_LOOP_END
3d96075c
L
3137ENUMX
3138 BFD_RELOC_SH_COPY
3139ENUMX
3140 BFD_RELOC_SH_GLOB_DAT
3141ENUMX
3142 BFD_RELOC_SH_JMP_SLOT
3143ENUMX
3144 BFD_RELOC_SH_RELATIVE
3145ENUMX
3146 BFD_RELOC_SH_GOTPC
eb1e0e80
NC
3147ENUMX
3148 BFD_RELOC_SH_GOT_LOW16
3149ENUMX
3150 BFD_RELOC_SH_GOT_MEDLOW16
3151ENUMX
3152 BFD_RELOC_SH_GOT_MEDHI16
3153ENUMX
3154 BFD_RELOC_SH_GOT_HI16
3155ENUMX
3156 BFD_RELOC_SH_GOTPLT_LOW16
3157ENUMX
3158 BFD_RELOC_SH_GOTPLT_MEDLOW16
3159ENUMX
3160 BFD_RELOC_SH_GOTPLT_MEDHI16
3161ENUMX
3162 BFD_RELOC_SH_GOTPLT_HI16
3163ENUMX
3164 BFD_RELOC_SH_PLT_LOW16
3165ENUMX
3166 BFD_RELOC_SH_PLT_MEDLOW16
3167ENUMX
3168 BFD_RELOC_SH_PLT_MEDHI16
3169ENUMX
3170 BFD_RELOC_SH_PLT_HI16
3171ENUMX
3172 BFD_RELOC_SH_GOTOFF_LOW16
3173ENUMX
3174 BFD_RELOC_SH_GOTOFF_MEDLOW16
3175ENUMX
3176 BFD_RELOC_SH_GOTOFF_MEDHI16
3177ENUMX
3178 BFD_RELOC_SH_GOTOFF_HI16
3179ENUMX
3180 BFD_RELOC_SH_GOTPC_LOW16
3181ENUMX
3182 BFD_RELOC_SH_GOTPC_MEDLOW16
3183ENUMX
3184 BFD_RELOC_SH_GOTPC_MEDHI16
3185ENUMX
3186 BFD_RELOC_SH_GOTPC_HI16
3187ENUMX
3188 BFD_RELOC_SH_COPY64
3189ENUMX
3190 BFD_RELOC_SH_GLOB_DAT64
3191ENUMX
3192 BFD_RELOC_SH_JMP_SLOT64
3193ENUMX
3194 BFD_RELOC_SH_RELATIVE64
3195ENUMX
3196 BFD_RELOC_SH_GOT10BY4
3197ENUMX
3198 BFD_RELOC_SH_GOT10BY8
3199ENUMX
3200 BFD_RELOC_SH_GOTPLT10BY4
3201ENUMX
3202 BFD_RELOC_SH_GOTPLT10BY8
3203ENUMX
3204 BFD_RELOC_SH_GOTPLT32
3205ENUMX
3206 BFD_RELOC_SH_SHMEDIA_CODE
3207ENUMX
3208 BFD_RELOC_SH_IMMU5
3209ENUMX
3210 BFD_RELOC_SH_IMMS6
3211ENUMX
3212 BFD_RELOC_SH_IMMS6BY32
3213ENUMX
3214 BFD_RELOC_SH_IMMU6
3215ENUMX
3216 BFD_RELOC_SH_IMMS10
3217ENUMX
3218 BFD_RELOC_SH_IMMS10BY2
3219ENUMX
3220 BFD_RELOC_SH_IMMS10BY4
3221ENUMX
3222 BFD_RELOC_SH_IMMS10BY8
3223ENUMX
3224 BFD_RELOC_SH_IMMS16
3225ENUMX
3226 BFD_RELOC_SH_IMMU16
3227ENUMX
3228 BFD_RELOC_SH_IMM_LOW16
3229ENUMX
3230 BFD_RELOC_SH_IMM_LOW16_PCREL
3231ENUMX
3232 BFD_RELOC_SH_IMM_MEDLOW16
3233ENUMX
3234 BFD_RELOC_SH_IMM_MEDLOW16_PCREL
3235ENUMX
3236 BFD_RELOC_SH_IMM_MEDHI16
3237ENUMX
3238 BFD_RELOC_SH_IMM_MEDHI16_PCREL
3239ENUMX
3240 BFD_RELOC_SH_IMM_HI16
3241ENUMX
3242 BFD_RELOC_SH_IMM_HI16_PCREL
3243ENUMX
3244 BFD_RELOC_SH_PT_16
3376eaf5
KK
3245ENUMX
3246 BFD_RELOC_SH_TLS_GD_32
3247ENUMX
3248 BFD_RELOC_SH_TLS_LD_32
3249ENUMX
3250 BFD_RELOC_SH_TLS_LDO_32
3251ENUMX
3252 BFD_RELOC_SH_TLS_IE_32
3253ENUMX
3254 BFD_RELOC_SH_TLS_LE_32
3255ENUMX
3256 BFD_RELOC_SH_TLS_DTPMOD32
3257ENUMX
3258 BFD_RELOC_SH_TLS_DTPOFF32
3259ENUMX
3260 BFD_RELOC_SH_TLS_TPOFF32
252b5132 3261ENUMDOC
ef230218 3262 Renesas / SuperH SH relocs. Not all of these appear in object files.
252b5132 3263
252b5132
RH
3264ENUM
3265 BFD_RELOC_ARC_B22_PCREL
3266ENUMDOC
0d2bcfaf 3267 ARC Cores relocs.
252b5132
RH
3268 ARC 22 bit pc-relative branch. The lowest two bits must be zero and are
3269 not stored in the instruction. The high 20 bits are installed in bits 26
3270 through 7 of the instruction.
3271ENUM
3272 BFD_RELOC_ARC_B26
3273ENUMDOC
3274 ARC 26 bit absolute branch. The lowest two bits must be zero and are not
3275 stored in the instruction. The high 24 bits are installed in bits 23
3276 through 0.
3277
0f64bb02
CM
3278ENUM
3279 BFD_RELOC_BFIN_16_IMM
3280ENUMDOC
3281 ADI Blackfin 16 bit immediate absolute reloc.
3282ENUM
3283 BFD_RELOC_BFIN_16_HIGH
3284ENUMDOC
3285 ADI Blackfin 16 bit immediate absolute reloc higher 16 bits.
3286ENUM
3287 BFD_RELOC_BFIN_4_PCREL
3288ENUMDOC
3289 ADI Blackfin 'a' part of LSETUP.
3290ENUM
3291 BFD_RELOC_BFIN_5_PCREL
3292ENUMDOC
3293 ADI Blackfin.
3294ENUM
3295 BFD_RELOC_BFIN_16_LOW
3296ENUMDOC
3297 ADI Blackfin 16 bit immediate absolute reloc lower 16 bits.
3298ENUM
3299 BFD_RELOC_BFIN_10_PCREL
3300ENUMDOC
3301 ADI Blackfin.
3302ENUM
3303 BFD_RELOC_BFIN_11_PCREL
3304ENUMDOC
3305 ADI Blackfin 'b' part of LSETUP.
3306ENUM
3307 BFD_RELOC_BFIN_12_PCREL_JUMP
3308ENUMDOC
3309 ADI Blackfin.
3310ENUM
3311 BFD_RELOC_BFIN_12_PCREL_JUMP_S
3312ENUMDOC
3313 ADI Blackfin Short jump, pcrel.
3314ENUM
3315 BFD_RELOC_BFIN_24_PCREL_CALL_X
3316ENUMDOC
3317 ADI Blackfin Call.x not implemented.
3318ENUM
3319 BFD_RELOC_BFIN_24_PCREL_JUMP_L
3320ENUMDOC
3321 ADI Blackfin Long Jump pcrel.
48d502e1
BS
3322ENUM
3323 BFD_RELOC_BFIN_GOT17M4
3324ENUMX
3325 BFD_RELOC_BFIN_GOTHI
3326ENUMX
3327 BFD_RELOC_BFIN_GOTLO
3328ENUMX
3329 BFD_RELOC_BFIN_FUNCDESC
3330ENUMX
3331 BFD_RELOC_BFIN_FUNCDESC_GOT17M4
3332ENUMX
3333 BFD_RELOC_BFIN_FUNCDESC_GOTHI
3334ENUMX
3335 BFD_RELOC_BFIN_FUNCDESC_GOTLO
3336ENUMX
3337 BFD_RELOC_BFIN_FUNCDESC_VALUE
3338ENUMX
3339 BFD_RELOC_BFIN_FUNCDESC_GOTOFF17M4
3340ENUMX
3341 BFD_RELOC_BFIN_FUNCDESC_GOTOFFHI
3342ENUMX
3343 BFD_RELOC_BFIN_FUNCDESC_GOTOFFLO
3344ENUMX
3345 BFD_RELOC_BFIN_GOTOFF17M4
3346ENUMX
3347 BFD_RELOC_BFIN_GOTOFFHI
3348ENUMX
3349 BFD_RELOC_BFIN_GOTOFFLO
3350ENUMDOC
3351 ADI Blackfin FD-PIC relocations.
0f64bb02
CM
3352ENUM
3353 BFD_RELOC_BFIN_GOT
3354ENUMDOC
3355 ADI Blackfin GOT relocation.
3356ENUM
3357 BFD_RELOC_BFIN_PLTPC
3358ENUMDOC
3359 ADI Blackfin PLTPC relocation.
3360ENUM
3361 BFD_ARELOC_BFIN_PUSH
3362ENUMDOC
3363 ADI Blackfin arithmetic relocation.
3364ENUM
3365 BFD_ARELOC_BFIN_CONST
3366ENUMDOC
3367 ADI Blackfin arithmetic relocation.
3368ENUM
3369 BFD_ARELOC_BFIN_ADD
3370ENUMDOC
3371 ADI Blackfin arithmetic relocation.
3372ENUM
3373 BFD_ARELOC_BFIN_SUB
3374ENUMDOC
3375 ADI Blackfin arithmetic relocation.
3376ENUM
3377 BFD_ARELOC_BFIN_MULT
3378ENUMDOC
3379 ADI Blackfin arithmetic relocation.
3380ENUM
3381 BFD_ARELOC_BFIN_DIV
3382ENUMDOC
3383 ADI Blackfin arithmetic relocation.
3384ENUM
3385 BFD_ARELOC_BFIN_MOD
3386ENUMDOC
3387 ADI Blackfin arithmetic relocation.
3388ENUM
3389 BFD_ARELOC_BFIN_LSHIFT
3390ENUMDOC
3391 ADI Blackfin arithmetic relocation.
3392ENUM
3393 BFD_ARELOC_BFIN_RSHIFT
3394ENUMDOC
3395 ADI Blackfin arithmetic relocation.
3396ENUM
3397 BFD_ARELOC_BFIN_AND
3398ENUMDOC
3399 ADI Blackfin arithmetic relocation.
3400ENUM
3401 BFD_ARELOC_BFIN_OR
3402ENUMDOC
3403 ADI Blackfin arithmetic relocation.
3404ENUM
3405 BFD_ARELOC_BFIN_XOR
3406ENUMDOC
3407 ADI Blackfin arithmetic relocation.
3408ENUM
3409 BFD_ARELOC_BFIN_LAND
3410ENUMDOC
3411 ADI Blackfin arithmetic relocation.
3412ENUM
3413 BFD_ARELOC_BFIN_LOR
3414ENUMDOC
3415 ADI Blackfin arithmetic relocation.
3416ENUM
3417 BFD_ARELOC_BFIN_LEN
3418ENUMDOC
3419 ADI Blackfin arithmetic relocation.
3420ENUM
3421 BFD_ARELOC_BFIN_NEG
3422ENUMDOC
3423 ADI Blackfin arithmetic relocation.
3424ENUM
3425 BFD_ARELOC_BFIN_COMP
3426ENUMDOC
3427 ADI Blackfin arithmetic relocation.
3428ENUM
3429 BFD_ARELOC_BFIN_PAGE
3430ENUMDOC
3431 ADI Blackfin arithmetic relocation.
3432ENUM
3433 BFD_ARELOC_BFIN_HWPAGE
3434ENUMDOC
3435 ADI Blackfin arithmetic relocation.
3436ENUM
3437 BFD_ARELOC_BFIN_ADDR
3438ENUMDOC
3439 ADI Blackfin arithmetic relocation.
3440
252b5132
RH
3441ENUM
3442 BFD_RELOC_D10V_10_PCREL_R
3443ENUMDOC
3444 Mitsubishi D10V relocs.
3445 This is a 10-bit reloc with the right 2 bits
3446 assumed to be 0.
3447ENUM
3448 BFD_RELOC_D10V_10_PCREL_L
3449ENUMDOC
3450 Mitsubishi D10V relocs.
3451 This is a 10-bit reloc with the right 2 bits
3452 assumed to be 0. This is the same as the previous reloc
3453 except it is in the left container, i.e.,
3454 shifted left 15 bits.
3455ENUM
3456 BFD_RELOC_D10V_18
3457ENUMDOC
3458 This is an 18-bit reloc with the right 2 bits
3459 assumed to be 0.
3460ENUM
3461 BFD_RELOC_D10V_18_PCREL
3462ENUMDOC
3463 This is an 18-bit reloc with the right 2 bits
3464 assumed to be 0.
3465
3466ENUM
3467 BFD_RELOC_D30V_6
3468ENUMDOC
3469 Mitsubishi D30V relocs.
3470 This is a 6-bit absolute reloc.
3471ENUM
3472 BFD_RELOC_D30V_9_PCREL
3473ENUMDOC
88b6bae0
AM
3474 This is a 6-bit pc-relative reloc with
3475 the right 3 bits assumed to be 0.
252b5132
RH
3476ENUM
3477 BFD_RELOC_D30V_9_PCREL_R
3478ENUMDOC
88b6bae0 3479 This is a 6-bit pc-relative reloc with
252b5132
RH
3480 the right 3 bits assumed to be 0. Same
3481 as the previous reloc but on the right side
88b6bae0 3482 of the container.
252b5132
RH
3483ENUM
3484 BFD_RELOC_D30V_15
3485ENUMDOC
88b6bae0
AM
3486 This is a 12-bit absolute reloc with the
3487 right 3 bitsassumed to be 0.
252b5132
RH
3488ENUM
3489 BFD_RELOC_D30V_15_PCREL
3490ENUMDOC
88b6bae0
AM
3491 This is a 12-bit pc-relative reloc with
3492 the right 3 bits assumed to be 0.
252b5132
RH
3493ENUM
3494 BFD_RELOC_D30V_15_PCREL_R
3495ENUMDOC
88b6bae0 3496 This is a 12-bit pc-relative reloc with
252b5132
RH
3497 the right 3 bits assumed to be 0. Same
3498 as the previous reloc but on the right side
88b6bae0 3499 of the container.
252b5132
RH
3500ENUM
3501 BFD_RELOC_D30V_21
3502ENUMDOC
88b6bae0 3503 This is an 18-bit absolute reloc with
252b5132
RH
3504 the right 3 bits assumed to be 0.
3505ENUM
3506 BFD_RELOC_D30V_21_PCREL
3507ENUMDOC
88b6bae0 3508 This is an 18-bit pc-relative reloc with
252b5132
RH
3509 the right 3 bits assumed to be 0.
3510ENUM
3511 BFD_RELOC_D30V_21_PCREL_R
3512ENUMDOC
88b6bae0 3513 This is an 18-bit pc-relative reloc with
252b5132
RH
3514 the right 3 bits assumed to be 0. Same
3515 as the previous reloc but on the right side
3516 of the container.
3517ENUM
3518 BFD_RELOC_D30V_32
3519ENUMDOC
3520 This is a 32-bit absolute reloc.
3521ENUM
3522 BFD_RELOC_D30V_32_PCREL
3523ENUMDOC
3524 This is a 32-bit pc-relative reloc.
3525
d172d4ba
NC
3526ENUM
3527 BFD_RELOC_DLX_HI16_S
3528ENUMDOC
3529 DLX relocs
3530ENUM
3531 BFD_RELOC_DLX_LO16
3532ENUMDOC
3533 DLX relocs
3534ENUM
3535 BFD_RELOC_DLX_JMP26
3536ENUMDOC
3537 DLX relocs
3538
e729279b 3539ENUM
fd54057a 3540 BFD_RELOC_M32C_HI8
6772dd07
DD
3541ENUMX
3542 BFD_RELOC_M32C_RL_JUMP
3543ENUMX
3544 BFD_RELOC_M32C_RL_1ADDR
3545ENUMX
3546 BFD_RELOC_M32C_RL_2ADDR
e729279b
NC
3547ENUMDOC
3548 Renesas M16C/M32C Relocations.
3549
252b5132
RH
3550ENUM
3551 BFD_RELOC_M32R_24
3552ENUMDOC
26597c86 3553 Renesas M32R (formerly Mitsubishi M32R) relocs.
252b5132
RH
3554 This is a 24 bit absolute address.
3555ENUM
3556 BFD_RELOC_M32R_10_PCREL
3557ENUMDOC
3558 This is a 10-bit pc-relative reloc with the right 2 bits assumed to be 0.
3559ENUM
3560 BFD_RELOC_M32R_18_PCREL
3561ENUMDOC
3562 This is an 18-bit reloc with the right 2 bits assumed to be 0.
3563ENUM
3564 BFD_RELOC_M32R_26_PCREL
3565ENUMDOC
3566 This is a 26-bit reloc with the right 2 bits assumed to be 0.
3567ENUM
3568 BFD_RELOC_M32R_HI16_ULO
3569ENUMDOC
3570 This is a 16-bit reloc containing the high 16 bits of an address
3571 used when the lower 16 bits are treated as unsigned.
3572ENUM
3573 BFD_RELOC_M32R_HI16_SLO
3574ENUMDOC
3575 This is a 16-bit reloc containing the high 16 bits of an address
3576 used when the lower 16 bits are treated as signed.
3577ENUM
3578 BFD_RELOC_M32R_LO16
3579ENUMDOC
3580 This is a 16-bit reloc containing the lower 16 bits of an address.
3581ENUM
3582 BFD_RELOC_M32R_SDA16
3583ENUMDOC
3584 This is a 16-bit reloc containing the small data area offset for use in
3585 add3, load, and store instructions.
6edf0760
NC
3586ENUM
3587 BFD_RELOC_M32R_GOT24
3588ENUMX
3589 BFD_RELOC_M32R_26_PLTREL
3590ENUMX
3591 BFD_RELOC_M32R_COPY
3592ENUMX
3593 BFD_RELOC_M32R_GLOB_DAT
3594ENUMX
3595 BFD_RELOC_M32R_JMP_SLOT
3596ENUMX
3597 BFD_RELOC_M32R_RELATIVE
3598ENUMX
3599 BFD_RELOC_M32R_GOTOFF
097f809a
NC
3600ENUMX
3601 BFD_RELOC_M32R_GOTOFF_HI_ULO
3602ENUMX
3603 BFD_RELOC_M32R_GOTOFF_HI_SLO
3604ENUMX
3605 BFD_RELOC_M32R_GOTOFF_LO
6edf0760
NC
3606ENUMX
3607 BFD_RELOC_M32R_GOTPC24
3608ENUMX
3609 BFD_RELOC_M32R_GOT16_HI_ULO
3610ENUMX
3611 BFD_RELOC_M32R_GOT16_HI_SLO
3612ENUMX
3613 BFD_RELOC_M32R_GOT16_LO
3614ENUMX
3615 BFD_RELOC_M32R_GOTPC_HI_ULO
3616ENUMX
3617 BFD_RELOC_M32R_GOTPC_HI_SLO
3618ENUMX
3619 BFD_RELOC_M32R_GOTPC_LO
3620ENUMDOC
3621 For PIC.
3622
252b5132
RH
3623
3624ENUM
3625 BFD_RELOC_V850_9_PCREL
3626ENUMDOC
3627 This is a 9-bit reloc
3628ENUM
3629 BFD_RELOC_V850_22_PCREL
3630ENUMDOC
3631 This is a 22-bit reloc
3632
3633ENUM
3634 BFD_RELOC_V850_SDA_16_16_OFFSET
3635ENUMDOC
3636 This is a 16 bit offset from the short data area pointer.
3637ENUM
3638 BFD_RELOC_V850_SDA_15_16_OFFSET
3639ENUMDOC
3640 This is a 16 bit offset (of which only 15 bits are used) from the
3641 short data area pointer.
3642ENUM
3643 BFD_RELOC_V850_ZDA_16_16_OFFSET
3644ENUMDOC
3645 This is a 16 bit offset from the zero data area pointer.
3646ENUM
3647 BFD_RELOC_V850_ZDA_15_16_OFFSET
3648ENUMDOC
3649 This is a 16 bit offset (of which only 15 bits are used) from the
3650 zero data area pointer.
3651ENUM
3652 BFD_RELOC_V850_TDA_6_8_OFFSET
3653ENUMDOC
3654 This is an 8 bit offset (of which only 6 bits are used) from the
3655 tiny data area pointer.
3656ENUM
3657 BFD_RELOC_V850_TDA_7_8_OFFSET
3658ENUMDOC
3659 This is an 8bit offset (of which only 7 bits are used) from the tiny
3660 data area pointer.
3661ENUM
3662 BFD_RELOC_V850_TDA_7_7_OFFSET
3663ENUMDOC
3664 This is a 7 bit offset from the tiny data area pointer.
3665ENUM
3666 BFD_RELOC_V850_TDA_16_16_OFFSET
3667ENUMDOC
3668 This is a 16 bit offset from the tiny data area pointer.
3669COMMENT
3670ENUM
3671 BFD_RELOC_V850_TDA_4_5_OFFSET
3672ENUMDOC
3673 This is a 5 bit offset (of which only 4 bits are used) from the tiny
3674 data area pointer.
3675ENUM
3676 BFD_RELOC_V850_TDA_4_4_OFFSET
3677ENUMDOC
3678 This is a 4 bit offset from the tiny data area pointer.
3679ENUM
3680 BFD_RELOC_V850_SDA_16_16_SPLIT_OFFSET
3681ENUMDOC
3682 This is a 16 bit offset from the short data area pointer, with the
7dee875e 3683 bits placed non-contiguously in the instruction.
252b5132
RH
3684ENUM
3685 BFD_RELOC_V850_ZDA_16_16_SPLIT_OFFSET
3686ENUMDOC
3687 This is a 16 bit offset from the zero data area pointer, with the
7dee875e 3688 bits placed non-contiguously in the instruction.
252b5132
RH
3689ENUM
3690 BFD_RELOC_V850_CALLT_6_7_OFFSET
3691ENUMDOC
3692 This is a 6 bit offset from the call table base pointer.
3693ENUM
3694 BFD_RELOC_V850_CALLT_16_16_OFFSET
3695ENUMDOC
3696 This is a 16 bit offset from the call table base pointer.
86aba9db
NC
3697ENUM
3698 BFD_RELOC_V850_LONGCALL
3699ENUMDOC
3700 Used for relaxing indirect function calls.
3701ENUM
3702 BFD_RELOC_V850_LONGJUMP
3703ENUMDOC
3704 Used for relaxing indirect jumps.
3705ENUM
3706 BFD_RELOC_V850_ALIGN
3707ENUMDOC
3708 Used to maintain alignment whilst relaxing.
1e50d24d
RS
3709ENUM
3710 BFD_RELOC_V850_LO16_SPLIT_OFFSET
3711ENUMDOC
3712 This is a variation of BFD_RELOC_LO16 that can be used in v850e ld.bu
3713 instructions.
252b5132
RH
3714ENUM
3715 BFD_RELOC_MN10300_32_PCREL
3716ENUMDOC
3717 This is a 32bit pcrel reloc for the mn10300, offset by two bytes in the
3718 instruction.
3719ENUM
3720 BFD_RELOC_MN10300_16_PCREL
3721ENUMDOC
3722 This is a 16bit pcrel reloc for the mn10300, offset by two bytes in the
3723 instruction.
3724
3725ENUM
3726 BFD_RELOC_TIC30_LDP
3727ENUMDOC
3728 This is a 8bit DP reloc for the tms320c30, where the most
3729 significant 8 bits of a 24 bit word are placed into the least
3730 significant 8 bits of the opcode.
3731
81635ce4
TW
3732ENUM
3733 BFD_RELOC_TIC54X_PARTLS7
3734ENUMDOC
3735 This is a 7bit reloc for the tms320c54x, where the least
3736 significant 7 bits of a 16 bit word are placed into the least
3737 significant 7 bits of the opcode.
3738
3739ENUM
3740 BFD_RELOC_TIC54X_PARTMS9
3741ENUMDOC
3742 This is a 9bit DP reloc for the tms320c54x, where the most
3743 significant 9 bits of a 16 bit word are placed into the least
3744 significant 9 bits of the opcode.
3745
3746ENUM
3747 BFD_RELOC_TIC54X_23
3748ENUMDOC
3749 This is an extended address 23-bit reloc for the tms320c54x.
3750
3751ENUM
3752 BFD_RELOC_TIC54X_16_OF_23
3753ENUMDOC
3d855632
KH
3754 This is a 16-bit reloc for the tms320c54x, where the least
3755 significant 16 bits of a 23-bit extended address are placed into
81635ce4
TW
3756 the opcode.
3757
3758ENUM
3759 BFD_RELOC_TIC54X_MS7_OF_23
3760ENUMDOC
3761 This is a reloc for the tms320c54x, where the most
3d855632 3762 significant 7 bits of a 23-bit extended address are placed into
81635ce4 3763 the opcode.
81635ce4 3764
40b36596
JM
3765ENUM
3766 BFD_RELOC_C6000_PCR_S21
3767ENUMX
3768 BFD_RELOC_C6000_PCR_S12
3769ENUMX
3770 BFD_RELOC_C6000_PCR_S10
3771ENUMX
3772 BFD_RELOC_C6000_PCR_S7
3773ENUMX
3774 BFD_RELOC_C6000_ABS_S16
3775ENUMX
3776 BFD_RELOC_C6000_ABS_L16
3777ENUMX
3778 BFD_RELOC_C6000_ABS_H16
3779ENUMX
3780 BFD_RELOC_C6000_SBR_U15_B
3781ENUMX
3782 BFD_RELOC_C6000_SBR_U15_H
3783ENUMX
3784 BFD_RELOC_C6000_SBR_U15_W
3785ENUMX
3786 BFD_RELOC_C6000_SBR_S16
3787ENUMX
3788 BFD_RELOC_C6000_SBR_L16_B
3789ENUMX
3790 BFD_RELOC_C6000_SBR_L16_H
3791ENUMX
3792 BFD_RELOC_C6000_SBR_L16_W
3793ENUMX
3794 BFD_RELOC_C6000_SBR_H16_B
3795ENUMX
3796 BFD_RELOC_C6000_SBR_H16_H
3797ENUMX
3798 BFD_RELOC_C6000_SBR_H16_W
3799ENUMX
3800 BFD_RELOC_C6000_SBR_GOT_U15_W
3801ENUMX
3802 BFD_RELOC_C6000_SBR_GOT_L16_W
3803ENUMX
3804 BFD_RELOC_C6000_SBR_GOT_H16_W
3805ENUMX
3806 BFD_RELOC_C6000_DSBT_INDEX
3807ENUMX
3808 BFD_RELOC_C6000_PREL31
3809ENUMX
3810 BFD_RELOC_C6000_COPY
3811ENUMX
3812 BFD_RELOC_C6000_ALIGN
3813ENUMX
3814 BFD_RELOC_C6000_FPHEAD
3815ENUMX
3816 BFD_RELOC_C6000_NOCMP
3817ENUMDOC
3818 TMS320C6000 relocations.
3819
252b5132
RH
3820ENUM
3821 BFD_RELOC_FR30_48
3822ENUMDOC
3823 This is a 48 bit reloc for the FR30 that stores 32 bits.
3824ENUM
3825 BFD_RELOC_FR30_20
3826ENUMDOC
3827 This is a 32 bit reloc for the FR30 that stores 20 bits split up into
3828 two sections.
3829ENUM
3830 BFD_RELOC_FR30_6_IN_4
3831ENUMDOC
3832 This is a 16 bit reloc for the FR30 that stores a 6 bit word offset in
3833 4 bits.
3834ENUM
3835 BFD_RELOC_FR30_8_IN_8
3836ENUMDOC
3837 This is a 16 bit reloc for the FR30 that stores an 8 bit byte offset
3838 into 8 bits.
3839ENUM
3840 BFD_RELOC_FR30_9_IN_8
3841ENUMDOC
3842 This is a 16 bit reloc for the FR30 that stores a 9 bit short offset
3843 into 8 bits.
3844ENUM
3845 BFD_RELOC_FR30_10_IN_8
3846ENUMDOC
3847 This is a 16 bit reloc for the FR30 that stores a 10 bit word offset
3848 into 8 bits.
3849ENUM
3850 BFD_RELOC_FR30_9_PCREL
3851ENUMDOC
3852 This is a 16 bit reloc for the FR30 that stores a 9 bit pc relative
3853 short offset into 8 bits.
3854ENUM
3855 BFD_RELOC_FR30_12_PCREL
3856ENUMDOC
3857 This is a 16 bit reloc for the FR30 that stores a 12 bit pc relative
3858 short offset into 11 bits.
88b6bae0 3859
252b5132
RH
3860ENUM
3861 BFD_RELOC_MCORE_PCREL_IMM8BY4
3862ENUMX
3863 BFD_RELOC_MCORE_PCREL_IMM11BY2
3864ENUMX
3865 BFD_RELOC_MCORE_PCREL_IMM4BY2
3866ENUMX
3867 BFD_RELOC_MCORE_PCREL_32
3868ENUMX
3869 BFD_RELOC_MCORE_PCREL_JSR_IMM11BY2
36797d47
NC
3870ENUMX
3871 BFD_RELOC_MCORE_RVA
252b5132
RH
3872ENUMDOC
3873 Motorola Mcore relocations.
88b6bae0 3874
d9352518
DB
3875ENUM
3876 BFD_RELOC_MEP_8
3877ENUMX
3878 BFD_RELOC_MEP_16
3879ENUMX
3880 BFD_RELOC_MEP_32
3881ENUMX
3882 BFD_RELOC_MEP_PCREL8A2
3883ENUMX
3884 BFD_RELOC_MEP_PCREL12A2
3885ENUMX
3886 BFD_RELOC_MEP_PCREL17A2
3887ENUMX
3888 BFD_RELOC_MEP_PCREL24A2
3889ENUMX
3890 BFD_RELOC_MEP_PCABS24A2
3891ENUMX
3892 BFD_RELOC_MEP_LOW16
3893ENUMX
3894 BFD_RELOC_MEP_HI16U
3895ENUMX
3896 BFD_RELOC_MEP_HI16S
3897ENUMX
3898 BFD_RELOC_MEP_GPREL
3899ENUMX
3900 BFD_RELOC_MEP_TPREL
3901ENUMX
3902 BFD_RELOC_MEP_TPREL7
3903ENUMX
3904 BFD_RELOC_MEP_TPREL7A2
3905ENUMX
3906 BFD_RELOC_MEP_TPREL7A4
3907ENUMX
3908 BFD_RELOC_MEP_UIMM24
3909ENUMX
3910 BFD_RELOC_MEP_ADDR24A4
3911ENUMX
3912 BFD_RELOC_MEP_GNU_VTINHERIT
3913ENUMX
3914 BFD_RELOC_MEP_GNU_VTENTRY
3915ENUMDOC
3916 Toshiba Media Processor Relocations.
3917COMMENT
3918
3c3bdf30
NC
3919ENUM
3920 BFD_RELOC_MMIX_GETA
3921ENUMX
3922 BFD_RELOC_MMIX_GETA_1
3923ENUMX
3924 BFD_RELOC_MMIX_GETA_2
3925ENUMX
3926 BFD_RELOC_MMIX_GETA_3
3927ENUMDOC
3928 These are relocations for the GETA instruction.
3929ENUM
3930 BFD_RELOC_MMIX_CBRANCH
3931ENUMX
3932 BFD_RELOC_MMIX_CBRANCH_J
3933ENUMX
3934 BFD_RELOC_MMIX_CBRANCH_1
3935ENUMX
3936 BFD_RELOC_MMIX_CBRANCH_2
3937ENUMX
3938 BFD_RELOC_MMIX_CBRANCH_3
3939ENUMDOC
3940 These are relocations for a conditional branch instruction.
3941ENUM
3942 BFD_RELOC_MMIX_PUSHJ
3943ENUMX
3944 BFD_RELOC_MMIX_PUSHJ_1
3945ENUMX
3946 BFD_RELOC_MMIX_PUSHJ_2
3947ENUMX
3948 BFD_RELOC_MMIX_PUSHJ_3
f60ebe14
HPN
3949ENUMX
3950 BFD_RELOC_MMIX_PUSHJ_STUBBABLE
3c3bdf30
NC
3951ENUMDOC
3952 These are relocations for the PUSHJ instruction.
3953ENUM
3954 BFD_RELOC_MMIX_JMP
3955ENUMX
3956 BFD_RELOC_MMIX_JMP_1
3957ENUMX
3958 BFD_RELOC_MMIX_JMP_2
3959ENUMX
3960 BFD_RELOC_MMIX_JMP_3
3961ENUMDOC
3962 These are relocations for the JMP instruction.
3963ENUM
3964 BFD_RELOC_MMIX_ADDR19
3965ENUMDOC
3966 This is a relocation for a relative address as in a GETA instruction or
3967 a branch.
3968ENUM
3969 BFD_RELOC_MMIX_ADDR27
3970ENUMDOC
3971 This is a relocation for a relative address as in a JMP instruction.
3972ENUM
3973 BFD_RELOC_MMIX_REG_OR_BYTE
3974ENUMDOC
3975 This is a relocation for an instruction field that may be a general
3976 register or a value 0..255.
3977ENUM
3978 BFD_RELOC_MMIX_REG
3979ENUMDOC
3980 This is a relocation for an instruction field that may be a general
3981 register.
3982ENUM
3983 BFD_RELOC_MMIX_BASE_PLUS_OFFSET
3984ENUMDOC
3985 This is a relocation for two instruction fields holding a register and
3986 an offset, the equivalent of the relocation.
3987ENUM
3988 BFD_RELOC_MMIX_LOCAL
3989ENUMDOC
3990 This relocation is an assertion that the expression is not allocated as
3991 a global register. It does not modify contents.
3992
adde6300
AM
3993ENUM
3994 BFD_RELOC_AVR_7_PCREL
3995ENUMDOC
3996 This is a 16 bit reloc for the AVR that stores 8 bit pc relative
3997 short offset into 7 bits.
3998ENUM
3999 BFD_RELOC_AVR_13_PCREL
4000ENUMDOC
4001 This is a 16 bit reloc for the AVR that stores 13 bit pc relative
4002 short offset into 12 bits.
4003ENUM
4004 BFD_RELOC_AVR_16_PM
4005ENUMDOC
4006 This is a 16 bit reloc for the AVR that stores 17 bit value (usually
3d855632 4007 program memory address) into 16 bits.
adde6300
AM
4008ENUM
4009 BFD_RELOC_AVR_LO8_LDI
4010ENUMDOC
4011 This is a 16 bit reloc for the AVR that stores 8 bit value (usually
4012 data memory address) into 8 bit immediate value of LDI insn.
4013ENUM
4014 BFD_RELOC_AVR_HI8_LDI
4015ENUMDOC
4016 This is a 16 bit reloc for the AVR that stores 8 bit value (high 8 bit
4017 of data memory address) into 8 bit immediate value of LDI insn.
4018ENUM
4019 BFD_RELOC_AVR_HH8_LDI
4020ENUMDOC
4021 This is a 16 bit reloc for the AVR that stores 8 bit value (most high 8 bit
4022 of program memory address) into 8 bit immediate value of LDI insn.
df406460
NC
4023ENUM
4024 BFD_RELOC_AVR_MS8_LDI
4025ENUMDOC
4026 This is a 16 bit reloc for the AVR that stores 8 bit value (most high 8 bit
4027 of 32 bit value) into 8 bit immediate value of LDI insn.
adde6300
AM
4028ENUM
4029 BFD_RELOC_AVR_LO8_LDI_NEG
4030ENUMDOC
4031 This is a 16 bit reloc for the AVR that stores negated 8 bit value
4032 (usually data memory address) into 8 bit immediate value of SUBI insn.
4033ENUM
4034 BFD_RELOC_AVR_HI8_LDI_NEG
4035ENUMDOC
4036 This is a 16 bit reloc for the AVR that stores negated 8 bit value
4037 (high 8 bit of data memory address) into 8 bit immediate value of
4038 SUBI insn.
4039ENUM
4040 BFD_RELOC_AVR_HH8_LDI_NEG
4041ENUMDOC
4042 This is a 16 bit reloc for the AVR that stores negated 8 bit value
4043 (most high 8 bit of program memory address) into 8 bit immediate value
4044 of LDI or SUBI insn.
df406460
NC
4045ENUM
4046 BFD_RELOC_AVR_MS8_LDI_NEG
4047ENUMDOC
4048 This is a 16 bit reloc for the AVR that stores negated 8 bit value (msb
4049 of 32 bit value) into 8 bit immediate value of LDI insn.
adde6300
AM
4050ENUM
4051 BFD_RELOC_AVR_LO8_LDI_PM
4052ENUMDOC
4053 This is a 16 bit reloc for the AVR that stores 8 bit value (usually
4054 command address) into 8 bit immediate value of LDI insn.
28c9d252
NC
4055ENUM
4056 BFD_RELOC_AVR_LO8_LDI_GS
4057ENUMDOC
4058 This is a 16 bit reloc for the AVR that stores 8 bit value
4059 (command address) into 8 bit immediate value of LDI insn. If the address
4060 is beyond the 128k boundary, the linker inserts a jump stub for this reloc
4061 in the lower 128k.
adde6300
AM
4062ENUM
4063 BFD_RELOC_AVR_HI8_LDI_PM
4064ENUMDOC
4065 This is a 16 bit reloc for the AVR that stores 8 bit value (high 8 bit
4066 of command address) into 8 bit immediate value of LDI insn.
28c9d252
NC
4067ENUM
4068 BFD_RELOC_AVR_HI8_LDI_GS
4069ENUMDOC
4070 This is a 16 bit reloc for the AVR that stores 8 bit value (high 8 bit
4071 of command address) into 8 bit immediate value of LDI insn. If the address
4072 is beyond the 128k boundary, the linker inserts a jump stub for this reloc
4073 below 128k.
adde6300
AM
4074ENUM
4075 BFD_RELOC_AVR_HH8_LDI_PM
4076ENUMDOC
4077 This is a 16 bit reloc for the AVR that stores 8 bit value (most high 8 bit
4078 of command address) into 8 bit immediate value of LDI insn.
4079ENUM
4080 BFD_RELOC_AVR_LO8_LDI_PM_NEG
4081ENUMDOC
4082 This is a 16 bit reloc for the AVR that stores negated 8 bit value
4083 (usually command address) into 8 bit immediate value of SUBI insn.
4084ENUM
4085 BFD_RELOC_AVR_HI8_LDI_PM_NEG
4086ENUMDOC
4087 This is a 16 bit reloc for the AVR that stores negated 8 bit value
4088 (high 8 bit of 16 bit command address) into 8 bit immediate value
4089 of SUBI insn.
4090ENUM
4091 BFD_RELOC_AVR_HH8_LDI_PM_NEG
4092ENUMDOC
4093 This is a 16 bit reloc for the AVR that stores negated 8 bit value
4094 (high 6 bit of 22 bit command address) into 8 bit immediate
4095 value of SUBI insn.
4096ENUM
4097 BFD_RELOC_AVR_CALL
4098ENUMDOC
4099 This is a 32 bit reloc for the AVR that stores 23 bit value
4100 into 22 bits.
b996922c
AM
4101ENUM
4102 BFD_RELOC_AVR_LDI
4103ENUMDOC
4104 This is a 16 bit reloc for the AVR that stores all needed bits
4105 for absolute addressing with ldi with overflow check to linktime
4106ENUM
4107 BFD_RELOC_AVR_6
4108ENUMDOC
4109 This is a 6 bit reloc for the AVR that stores offset for ldd/std
4110 instructions
4111ENUM
4112 BFD_RELOC_AVR_6_ADIW
4113ENUMDOC
4114 This is a 6 bit reloc for the AVR that stores offset for adiw/sbiw
4115 instructions
adde6300 4116
c7927a3c
NC
4117ENUM
4118 BFD_RELOC_RX_NEG8
4119ENUMX
4120 BFD_RELOC_RX_NEG16
4121ENUMX
4122 BFD_RELOC_RX_NEG24
4123ENUMX
4124 BFD_RELOC_RX_NEG32
4125ENUMX
4126 BFD_RELOC_RX_16_OP
4127ENUMX
4128 BFD_RELOC_RX_24_OP
4129ENUMX
4130 BFD_RELOC_RX_32_OP
4131ENUMX
4132 BFD_RELOC_RX_8U
4133ENUMX
4134 BFD_RELOC_RX_16U
4135ENUMX
4136 BFD_RELOC_RX_24U
4137ENUMX
4138 BFD_RELOC_RX_DIR3U_PCREL
4139ENUMX
4140 BFD_RELOC_RX_DIFF
4141ENUMX
4142 BFD_RELOC_RX_GPRELB
4143ENUMX
4144 BFD_RELOC_RX_GPRELW
4145ENUMX
4146 BFD_RELOC_RX_GPRELL
4147ENUMX
4148 BFD_RELOC_RX_SYM
4149ENUMX
4150 BFD_RELOC_RX_OP_SUBTRACT
4151ENUMX
4152 BFD_RELOC_RX_ABS8
4153ENUMX
4154 BFD_RELOC_RX_ABS16
4155ENUMX
4156 BFD_RELOC_RX_ABS32
4157ENUMX
4158 BFD_RELOC_RX_ABS16U
4159ENUMX
4160 BFD_RELOC_RX_ABS16UW
4161ENUMX
4162 BFD_RELOC_RX_ABS16UL
4163ENUMX
4164 BFD_RELOC_RX_RELAX
4165ENUMDOC
4166 Renesas RX Relocations.
4167
a85d7ed0
NC
4168ENUM
4169 BFD_RELOC_390_12
4170ENUMDOC
4171 Direct 12 bit.
4172ENUM
4173 BFD_RELOC_390_GOT12
4174ENUMDOC
4175 12 bit GOT offset.
4176ENUM
4177 BFD_RELOC_390_PLT32
4178ENUMDOC
4179 32 bit PC relative PLT address.
4180ENUM
4181 BFD_RELOC_390_COPY
4182ENUMDOC
4183 Copy symbol at runtime.
4184ENUM
4185 BFD_RELOC_390_GLOB_DAT
4186ENUMDOC
4187 Create GOT entry.
4188ENUM
4189 BFD_RELOC_390_JMP_SLOT
4190ENUMDOC
4191 Create PLT entry.
4192ENUM
4193 BFD_RELOC_390_RELATIVE
4194ENUMDOC
4195 Adjust by program base.
4196ENUM
4197 BFD_RELOC_390_GOTPC
4198ENUMDOC
4199 32 bit PC relative offset to GOT.
4200ENUM
4201 BFD_RELOC_390_GOT16
4202ENUMDOC
4203 16 bit GOT offset.
4204ENUM
4205 BFD_RELOC_390_PC16DBL
4206ENUMDOC
4207 PC relative 16 bit shifted by 1.
4208ENUM
4209 BFD_RELOC_390_PLT16DBL
4210ENUMDOC
4211 16 bit PC rel. PLT shifted by 1.
4212ENUM
4213 BFD_RELOC_390_PC32DBL
4214ENUMDOC
4215 PC relative 32 bit shifted by 1.
4216ENUM
4217 BFD_RELOC_390_PLT32DBL
4218ENUMDOC
4219 32 bit PC rel. PLT shifted by 1.
4220ENUM
4221 BFD_RELOC_390_GOTPCDBL
4222ENUMDOC
4223 32 bit PC rel. GOT shifted by 1.
4224ENUM
4225 BFD_RELOC_390_GOT64
4226ENUMDOC
4227 64 bit GOT offset.
4228ENUM
4229 BFD_RELOC_390_PLT64
4230ENUMDOC
4231 64 bit PC relative PLT address.
4232ENUM
4233 BFD_RELOC_390_GOTENT
4234ENUMDOC
4235 32 bit rel. offset to GOT entry.
5236c819
MS
4236ENUM
4237 BFD_RELOC_390_GOTOFF64
4238ENUMDOC
4239 64 bit offset to GOT.
4240ENUM
4241 BFD_RELOC_390_GOTPLT12
4242ENUMDOC
4243 12-bit offset to symbol-entry within GOT, with PLT handling.
4244ENUM
4245 BFD_RELOC_390_GOTPLT16
4246ENUMDOC
4247 16-bit offset to symbol-entry within GOT, with PLT handling.
4248ENUM
4249 BFD_RELOC_390_GOTPLT32
4250ENUMDOC
4251 32-bit offset to symbol-entry within GOT, with PLT handling.
4252ENUM
4253 BFD_RELOC_390_GOTPLT64
4254ENUMDOC
4255 64-bit offset to symbol-entry within GOT, with PLT handling.
4256ENUM
4257 BFD_RELOC_390_GOTPLTENT
4258ENUMDOC
4259 32-bit rel. offset to symbol-entry within GOT, with PLT handling.
4260ENUM
4261 BFD_RELOC_390_PLTOFF16
4262ENUMDOC
4263 16-bit rel. offset from the GOT to a PLT entry.
4264ENUM
4265 BFD_RELOC_390_PLTOFF32
4266ENUMDOC
4267 32-bit rel. offset from the GOT to a PLT entry.
4268ENUM
4269 BFD_RELOC_390_PLTOFF64
4270ENUMDOC
4271 64-bit rel. offset from the GOT to a PLT entry.
dc810e39 4272
69fc87f1
MS
4273ENUM
4274 BFD_RELOC_390_TLS_LOAD
4275ENUMX
4276 BFD_RELOC_390_TLS_GDCALL
4277ENUMX
4278 BFD_RELOC_390_TLS_LDCALL
4279ENUMX
4280 BFD_RELOC_390_TLS_GD32
4281ENUMX
4282 BFD_RELOC_390_TLS_GD64
4283ENUMX
4284 BFD_RELOC_390_TLS_GOTIE12
4285ENUMX
4286 BFD_RELOC_390_TLS_GOTIE32
4287ENUMX
4288 BFD_RELOC_390_TLS_GOTIE64
4289ENUMX
4290 BFD_RELOC_390_TLS_LDM32
4291ENUMX
4292 BFD_RELOC_390_TLS_LDM64
4293ENUMX
4294 BFD_RELOC_390_TLS_IE32
4295ENUMX
4296 BFD_RELOC_390_TLS_IE64
4297ENUMX
4298 BFD_RELOC_390_TLS_IEENT
4299ENUMX
4300 BFD_RELOC_390_TLS_LE32
4301ENUMX
4302 BFD_RELOC_390_TLS_LE64
4303ENUMX
4304 BFD_RELOC_390_TLS_LDO32
4305ENUMX
4306 BFD_RELOC_390_TLS_LDO64
4307ENUMX
4308 BFD_RELOC_390_TLS_DTPMOD
4309ENUMX
4310 BFD_RELOC_390_TLS_DTPOFF
4311ENUMX
4312 BFD_RELOC_390_TLS_TPOFF
4313ENUMDOC
4314 s390 tls relocations.
4315
bd1ea41b
MS
4316ENUM
4317 BFD_RELOC_390_20
4318ENUMX
4319 BFD_RELOC_390_GOT20
4320ENUMX
4321 BFD_RELOC_390_GOTPLT20
4322ENUMX
4323 BFD_RELOC_390_TLS_GOTIE20
4324ENUMDOC
4325 Long displacement extension.
4326
1c0d3aa6
NC
4327ENUM
4328 BFD_RELOC_SCORE_GPREL15
4329ENUMDOC
c3b7224a 4330 Score relocations
1c0d3aa6
NC
4331 Low 16 bit for load/store
4332ENUM
4333 BFD_RELOC_SCORE_DUMMY2
4334ENUMX
4335 BFD_RELOC_SCORE_JMP
4336ENUMDOC
4337 This is a 24-bit reloc with the right 1 bit assumed to be 0
4338ENUM
4339 BFD_RELOC_SCORE_BRANCH
4340ENUMDOC
4341 This is a 19-bit reloc with the right 1 bit assumed to be 0
c3b7224a
NC
4342ENUM
4343 BFD_RELOC_SCORE_IMM30
4344ENUMDOC
4345 This is a 32-bit reloc for 48-bit instructions.
4346ENUM
4347 BFD_RELOC_SCORE_IMM32
4348ENUMDOC
4349 This is a 32-bit reloc for 48-bit instructions.
1c0d3aa6
NC
4350ENUM
4351 BFD_RELOC_SCORE16_JMP
4352ENUMDOC
4353 This is a 11-bit reloc with the right 1 bit assumed to be 0
4354ENUM
4355 BFD_RELOC_SCORE16_BRANCH
4356ENUMDOC
4357 This is a 8-bit reloc with the right 1 bit assumed to be 0
c3b7224a
NC
4358ENUM
4359 BFD_RELOC_SCORE_BCMP
4360ENUMDOC
4361 This is a 9-bit reloc with the right 1 bit assumed to be 0
1c0d3aa6
NC
4362ENUM
4363 BFD_RELOC_SCORE_GOT15
4364ENUMX
4365 BFD_RELOC_SCORE_GOT_LO16
4366ENUMX
4367 BFD_RELOC_SCORE_CALL15
4368ENUMX
4369 BFD_RELOC_SCORE_DUMMY_HI16
4370ENUMDOC
4371 Undocumented Score relocs
4372
cf88bb9f
NC
4373ENUM
4374 BFD_RELOC_IP2K_FR9
4375ENUMDOC
4376 Scenix IP2K - 9-bit register number / data address
4377ENUM
4378 BFD_RELOC_IP2K_BANK
4379ENUMDOC
4380 Scenix IP2K - 4-bit register/data bank number
4381ENUM
4382 BFD_RELOC_IP2K_ADDR16CJP
4383ENUMDOC
4384 Scenix IP2K - low 13 bits of instruction word address
4385ENUM
4386 BFD_RELOC_IP2K_PAGE3
4387ENUMDOC
4388 Scenix IP2K - high 3 bits of instruction word address
4389ENUM
4390 BFD_RELOC_IP2K_LO8DATA
4391ENUMX
4392 BFD_RELOC_IP2K_HI8DATA
4393ENUMX
4394 BFD_RELOC_IP2K_EX8DATA
4395ENUMDOC
4396 Scenix IP2K - ext/low/high 8 bits of data address
4397ENUM
4398 BFD_RELOC_IP2K_LO8INSN
4399ENUMX
4400 BFD_RELOC_IP2K_HI8INSN
4401ENUMDOC
4402 Scenix IP2K - low/high 8 bits of instruction word address
4403ENUM
4404 BFD_RELOC_IP2K_PC_SKIP
4405ENUMDOC
4406 Scenix IP2K - even/odd PC modifier to modify snb pcl.0
4407ENUM
4408 BFD_RELOC_IP2K_TEXT
4409ENUMDOC
4410 Scenix IP2K - 16 bit word address in text section.
4411ENUM
4412 BFD_RELOC_IP2K_FR_OFFSET
4413ENUMDOC
4414 Scenix IP2K - 7-bit sp or dp offset
4415ENUM
4416 BFD_RELOC_VPE4KMATH_DATA
4417ENUMX
4418 BFD_RELOC_VPE4KMATH_INSN
4419ENUMDOC
4420 Scenix VPE4K coprocessor - data/insn-space addressing
4421
252b5132
RH
4422ENUM
4423 BFD_RELOC_VTABLE_INHERIT
4424ENUMX
4425 BFD_RELOC_VTABLE_ENTRY
4426ENUMDOC
88b6bae0 4427 These two relocations are used by the linker to determine which of
252b5132
RH
4428 the entries in a C++ virtual function table are actually used. When
4429 the --gc-sections option is given, the linker will zero out the entries
4430 that are not used, so that the code for those functions need not be
4431 included in the output.
4432
4433 VTABLE_INHERIT is a zero-space relocation used to describe to the
7dee875e 4434 linker the inheritance tree of a C++ virtual function table. The
252b5132
RH
4435 relocation's symbol should be the parent class' vtable, and the
4436 relocation should be located at the child vtable.
4437
4438 VTABLE_ENTRY is a zero-space relocation that describes the use of a
4439 virtual function table entry. The reloc's symbol should refer to the
4440 table of the class mentioned in the code. Off of that base, an offset
88b6bae0 4441 describes the entry that is being used. For Rela hosts, this offset
252b5132
RH
4442 is stored in the reloc's addend. For Rel hosts, we are forced to put
4443 this offset in the reloc's section offset.
4444
800eeca4
JW
4445ENUM
4446 BFD_RELOC_IA64_IMM14
4447ENUMX
4448 BFD_RELOC_IA64_IMM22
4449ENUMX
4450 BFD_RELOC_IA64_IMM64
4451ENUMX
4452 BFD_RELOC_IA64_DIR32MSB
4453ENUMX
4454 BFD_RELOC_IA64_DIR32LSB
4455ENUMX
4456 BFD_RELOC_IA64_DIR64MSB
4457ENUMX
4458 BFD_RELOC_IA64_DIR64LSB
4459ENUMX
4460 BFD_RELOC_IA64_GPREL22
4461ENUMX
4462 BFD_RELOC_IA64_GPREL64I
4463ENUMX
4464 BFD_RELOC_IA64_GPREL32MSB
4465ENUMX
4466 BFD_RELOC_IA64_GPREL32LSB
4467ENUMX
4468 BFD_RELOC_IA64_GPREL64MSB
4469ENUMX
4470 BFD_RELOC_IA64_GPREL64LSB
4471ENUMX
4472 BFD_RELOC_IA64_LTOFF22
4473ENUMX
4474 BFD_RELOC_IA64_LTOFF64I
4475ENUMX
4476 BFD_RELOC_IA64_PLTOFF22
4477ENUMX
4478 BFD_RELOC_IA64_PLTOFF64I
4479ENUMX
4480 BFD_RELOC_IA64_PLTOFF64MSB
4481ENUMX
4482 BFD_RELOC_IA64_PLTOFF64LSB
4483ENUMX
4484 BFD_RELOC_IA64_FPTR64I
4485ENUMX
4486 BFD_RELOC_IA64_FPTR32MSB
4487ENUMX
4488 BFD_RELOC_IA64_FPTR32LSB
4489ENUMX
4490 BFD_RELOC_IA64_FPTR64MSB
4491ENUMX
4492 BFD_RELOC_IA64_FPTR64LSB
4493ENUMX
4494 BFD_RELOC_IA64_PCREL21B
748abff6
RH
4495ENUMX
4496 BFD_RELOC_IA64_PCREL21BI
800eeca4
JW
4497ENUMX
4498 BFD_RELOC_IA64_PCREL21M
4499ENUMX
4500 BFD_RELOC_IA64_PCREL21F
748abff6
RH
4501ENUMX
4502 BFD_RELOC_IA64_PCREL22
4503ENUMX
4504 BFD_RELOC_IA64_PCREL60B
4505ENUMX
4506 BFD_RELOC_IA64_PCREL64I
800eeca4
JW
4507ENUMX
4508 BFD_RELOC_IA64_PCREL32MSB
4509ENUMX
4510 BFD_RELOC_IA64_PCREL32LSB
4511ENUMX
4512 BFD_RELOC_IA64_PCREL64MSB
4513ENUMX
4514 BFD_RELOC_IA64_PCREL64LSB
4515ENUMX
4516 BFD_RELOC_IA64_LTOFF_FPTR22
4517ENUMX
4518 BFD_RELOC_IA64_LTOFF_FPTR64I
a4bd8390
JW
4519ENUMX
4520 BFD_RELOC_IA64_LTOFF_FPTR32MSB
4521ENUMX
4522 BFD_RELOC_IA64_LTOFF_FPTR32LSB
800eeca4
JW
4523ENUMX
4524 BFD_RELOC_IA64_LTOFF_FPTR64MSB
4525ENUMX
4526 BFD_RELOC_IA64_LTOFF_FPTR64LSB
800eeca4
JW
4527ENUMX
4528 BFD_RELOC_IA64_SEGREL32MSB
4529ENUMX
4530 BFD_RELOC_IA64_SEGREL32LSB
4531ENUMX
4532 BFD_RELOC_IA64_SEGREL64MSB
4533ENUMX
4534 BFD_RELOC_IA64_SEGREL64LSB
4535ENUMX
4536 BFD_RELOC_IA64_SECREL32MSB
4537ENUMX
4538 BFD_RELOC_IA64_SECREL32LSB
4539ENUMX
4540 BFD_RELOC_IA64_SECREL64MSB
4541ENUMX
4542 BFD_RELOC_IA64_SECREL64LSB
4543ENUMX
4544 BFD_RELOC_IA64_REL32MSB
4545ENUMX
4546 BFD_RELOC_IA64_REL32LSB
4547ENUMX
4548 BFD_RELOC_IA64_REL64MSB
4549ENUMX
4550 BFD_RELOC_IA64_REL64LSB
4551ENUMX
4552 BFD_RELOC_IA64_LTV32MSB
4553ENUMX
4554 BFD_RELOC_IA64_LTV32LSB
4555ENUMX
4556 BFD_RELOC_IA64_LTV64MSB
4557ENUMX
4558 BFD_RELOC_IA64_LTV64LSB
4559ENUMX
4560 BFD_RELOC_IA64_IPLTMSB
4561ENUMX
4562 BFD_RELOC_IA64_IPLTLSB
800eeca4
JW
4563ENUMX
4564 BFD_RELOC_IA64_COPY
13ae64f3
JJ
4565ENUMX
4566 BFD_RELOC_IA64_LTOFF22X
4567ENUMX
4568 BFD_RELOC_IA64_LDXMOV
4569ENUMX
4570 BFD_RELOC_IA64_TPREL14
800eeca4
JW
4571ENUMX
4572 BFD_RELOC_IA64_TPREL22
13ae64f3
JJ
4573ENUMX
4574 BFD_RELOC_IA64_TPREL64I
800eeca4
JW
4575ENUMX
4576 BFD_RELOC_IA64_TPREL64MSB
4577ENUMX
4578 BFD_RELOC_IA64_TPREL64LSB
4579ENUMX
13ae64f3 4580 BFD_RELOC_IA64_LTOFF_TPREL22
800eeca4 4581ENUMX
13ae64f3 4582 BFD_RELOC_IA64_DTPMOD64MSB
800eeca4 4583ENUMX
13ae64f3
JJ
4584 BFD_RELOC_IA64_DTPMOD64LSB
4585ENUMX
4586 BFD_RELOC_IA64_LTOFF_DTPMOD22
4587ENUMX
4588 BFD_RELOC_IA64_DTPREL14
4589ENUMX
4590 BFD_RELOC_IA64_DTPREL22
4591ENUMX
4592 BFD_RELOC_IA64_DTPREL64I
4593ENUMX
4594 BFD_RELOC_IA64_DTPREL32MSB
4595ENUMX
4596 BFD_RELOC_IA64_DTPREL32LSB
4597ENUMX
4598 BFD_RELOC_IA64_DTPREL64MSB
4599ENUMX
4600 BFD_RELOC_IA64_DTPREL64LSB
4601ENUMX
4602 BFD_RELOC_IA64_LTOFF_DTPREL22
800eeca4
JW
4603ENUMDOC
4604 Intel IA64 Relocations.
60bcf0fa
NC
4605
4606ENUM
4607 BFD_RELOC_M68HC11_HI8
4608ENUMDOC
4609 Motorola 68HC11 reloc.
3dbfec86 4610 This is the 8 bit high part of an absolute address.
60bcf0fa
NC
4611ENUM
4612 BFD_RELOC_M68HC11_LO8
4613ENUMDOC
4614 Motorola 68HC11 reloc.
3dbfec86 4615 This is the 8 bit low part of an absolute address.
60bcf0fa
NC
4616ENUM
4617 BFD_RELOC_M68HC11_3B
4618ENUMDOC
4619 Motorola 68HC11 reloc.
3dbfec86
SC
4620 This is the 3 bit of a value.
4621ENUM
4622 BFD_RELOC_M68HC11_RL_JUMP
4623ENUMDOC
4624 Motorola 68HC11 reloc.
4625 This reloc marks the beginning of a jump/call instruction.
4626 It is used for linker relaxation to correctly identify beginning
7dee875e 4627 of instruction and change some branches to use PC-relative
3dbfec86
SC
4628 addressing mode.
4629ENUM
4630 BFD_RELOC_M68HC11_RL_GROUP
4631ENUMDOC
4632 Motorola 68HC11 reloc.
4633 This reloc marks a group of several instructions that gcc generates
4634 and for which the linker relaxation pass can modify and/or remove
4635 some of them.
4636ENUM
4637 BFD_RELOC_M68HC11_LO16
4638ENUMDOC
4639 Motorola 68HC11 reloc.
4640 This is the 16-bit lower part of an address. It is used for 'call'
4641 instruction to specify the symbol address without any special
4642 transformation (due to memory bank window).
4643ENUM
4644 BFD_RELOC_M68HC11_PAGE
4645ENUMDOC
4646 Motorola 68HC11 reloc.
4647 This is a 8-bit reloc that specifies the page number of an address.
4648 It is used by 'call' instruction to specify the page number of
4649 the symbol.
4650ENUM
4651 BFD_RELOC_M68HC11_24
4652ENUMDOC
4653 Motorola 68HC11 reloc.
4654 This is a 24-bit reloc that represents the address with a 16-bit
4655 value and a 8-bit page number. The symbol address is transformed
4656 to follow the 16K memory bank of 68HC12 (seen as mapped in the window).
28d39d1a
NC
4657ENUM
4658 BFD_RELOC_M68HC12_5B
4659ENUMDOC
4660 Motorola 68HC12 reloc.
4661 This is the 5 bits of a value.
60bcf0fa 4662
0949843d
NC
4663ENUM
4664 BFD_RELOC_16C_NUM08
4665ENUMX
4666 BFD_RELOC_16C_NUM08_C
4667ENUMX
4668 BFD_RELOC_16C_NUM16
4669ENUMX
4670 BFD_RELOC_16C_NUM16_C
4671ENUMX
4672 BFD_RELOC_16C_NUM32
4673ENUMX
4674 BFD_RELOC_16C_NUM32_C
4675ENUMX
4676 BFD_RELOC_16C_DISP04
4677ENUMX
4678 BFD_RELOC_16C_DISP04_C
4679ENUMX
4680 BFD_RELOC_16C_DISP08
4681ENUMX
4682 BFD_RELOC_16C_DISP08_C
4683ENUMX
4684 BFD_RELOC_16C_DISP16
4685ENUMX
4686 BFD_RELOC_16C_DISP16_C
4687ENUMX
4688 BFD_RELOC_16C_DISP24
4689ENUMX
4690 BFD_RELOC_16C_DISP24_C
4691ENUMX
4692 BFD_RELOC_16C_DISP24a
4693ENUMX
4694 BFD_RELOC_16C_DISP24a_C
4695ENUMX
4696 BFD_RELOC_16C_REG04
4697ENUMX
4698 BFD_RELOC_16C_REG04_C
4699ENUMX
4700 BFD_RELOC_16C_REG04a
4701ENUMX
4702 BFD_RELOC_16C_REG04a_C
4703ENUMX
4704 BFD_RELOC_16C_REG14
4705ENUMX
4706 BFD_RELOC_16C_REG14_C
4707ENUMX
4708 BFD_RELOC_16C_REG16
4709ENUMX
4710 BFD_RELOC_16C_REG16_C
4711ENUMX
4712 BFD_RELOC_16C_REG20
4713ENUMX
4714 BFD_RELOC_16C_REG20_C
4715ENUMX
4716 BFD_RELOC_16C_ABS20
4717ENUMX
4718 BFD_RELOC_16C_ABS20_C
4719ENUMX
4720 BFD_RELOC_16C_ABS24
4721ENUMX
4722 BFD_RELOC_16C_ABS24_C
4723ENUMX
4724 BFD_RELOC_16C_IMM04
4725ENUMX
4726 BFD_RELOC_16C_IMM04_C
4727ENUMX
4728 BFD_RELOC_16C_IMM16
4729ENUMX
4730 BFD_RELOC_16C_IMM16_C
4731ENUMX
4732 BFD_RELOC_16C_IMM20
4733ENUMX
4734 BFD_RELOC_16C_IMM20_C
4735ENUMX
4736 BFD_RELOC_16C_IMM24
4737ENUMX
4738 BFD_RELOC_16C_IMM24_C
4739ENUMX
4740 BFD_RELOC_16C_IMM32
4741ENUMX
4742 BFD_RELOC_16C_IMM32_C
4743ENUMDOC
4744 NS CR16C Relocations.
4745
3d3d428f
NC
4746ENUM
4747 BFD_RELOC_CR16_NUM8
4748ENUMX
4749 BFD_RELOC_CR16_NUM16
4750ENUMX
4751 BFD_RELOC_CR16_NUM32
4752ENUMX
4753 BFD_RELOC_CR16_NUM32a
4754ENUMX
4755 BFD_RELOC_CR16_REGREL0
4756ENUMX
4757 BFD_RELOC_CR16_REGREL4
4758ENUMX
4759 BFD_RELOC_CR16_REGREL4a
4760ENUMX
4761 BFD_RELOC_CR16_REGREL14
4762ENUMX
4763 BFD_RELOC_CR16_REGREL14a
4764ENUMX
4765 BFD_RELOC_CR16_REGREL16
4766ENUMX
4767 BFD_RELOC_CR16_REGREL20
4768ENUMX
4769 BFD_RELOC_CR16_REGREL20a
4770ENUMX
4771 BFD_RELOC_CR16_ABS20
4772ENUMX
4773 BFD_RELOC_CR16_ABS24
4774ENUMX
4775 BFD_RELOC_CR16_IMM4
4776ENUMX
4777 BFD_RELOC_CR16_IMM8
4778ENUMX
4779 BFD_RELOC_CR16_IMM16
4780ENUMX
4781 BFD_RELOC_CR16_IMM20
4782ENUMX
4783 BFD_RELOC_CR16_IMM24
4784ENUMX
4785 BFD_RELOC_CR16_IMM32
4786ENUMX
4787 BFD_RELOC_CR16_IMM32a
4788ENUMX
4789 BFD_RELOC_CR16_DISP4
4790ENUMX
4791 BFD_RELOC_CR16_DISP8
4792ENUMX
4793 BFD_RELOC_CR16_DISP16
4794ENUMX
4795 BFD_RELOC_CR16_DISP20
4796ENUMX
4797 BFD_RELOC_CR16_DISP24
4798ENUMX
4799 BFD_RELOC_CR16_DISP24a
7fac7ff4
NC
4800ENUMX
4801 BFD_RELOC_CR16_SWITCH8
4802ENUMX
4803 BFD_RELOC_CR16_SWITCH16
4804ENUMX
4805 BFD_RELOC_CR16_SWITCH32
99706f30
SR
4806ENUMX
4807 BFD_RELOC_CR16_GOT_REGREL20
4808ENUMX
4809 BFD_RELOC_CR16_GOTC_REGREL20
4810ENUMX
4811 BFD_RELOC_CR16_GLOB_DAT
3d3d428f
NC
4812ENUMDOC
4813 NS CR16 Relocations.
4814
e729279b 4815ENUM
1fe1f39c
NC
4816 BFD_RELOC_CRX_REL4
4817ENUMX
4818 BFD_RELOC_CRX_REL8
4819ENUMX
4820 BFD_RELOC_CRX_REL8_CMP
4821ENUMX
4822 BFD_RELOC_CRX_REL16
4823ENUMX
4824 BFD_RELOC_CRX_REL24
4825ENUMX
4826 BFD_RELOC_CRX_REL32
4827ENUMX
4828 BFD_RELOC_CRX_REGREL12
4829ENUMX
4830 BFD_RELOC_CRX_REGREL22
4831ENUMX
4832 BFD_RELOC_CRX_REGREL28
4833ENUMX
4834 BFD_RELOC_CRX_REGREL32
4835ENUMX
4836 BFD_RELOC_CRX_ABS16
4837ENUMX
4838 BFD_RELOC_CRX_ABS32
4839ENUMX
4840 BFD_RELOC_CRX_NUM8
4841ENUMX
4842 BFD_RELOC_CRX_NUM16
4843ENUMX
4844 BFD_RELOC_CRX_NUM32
4845ENUMX
4846 BFD_RELOC_CRX_IMM16
4847ENUMX
4848 BFD_RELOC_CRX_IMM32
670ec21d
NC
4849ENUMX
4850 BFD_RELOC_CRX_SWITCH8
4851ENUMX
4852 BFD_RELOC_CRX_SWITCH16
4853ENUMX
4854 BFD_RELOC_CRX_SWITCH32
d70c5fc7 4855ENUMDOC
1fe1f39c
NC
4856 NS CRX Relocations.
4857
06c15ad7
HPN
4858ENUM
4859 BFD_RELOC_CRIS_BDISP8
4860ENUMX
4861 BFD_RELOC_CRIS_UNSIGNED_5
4862ENUMX
4863 BFD_RELOC_CRIS_SIGNED_6
4864ENUMX
4865 BFD_RELOC_CRIS_UNSIGNED_6
bac23f82
HPN
4866ENUMX
4867 BFD_RELOC_CRIS_SIGNED_8
4868ENUMX
4869 BFD_RELOC_CRIS_UNSIGNED_8
4870ENUMX
4871 BFD_RELOC_CRIS_SIGNED_16
4872ENUMX
4873 BFD_RELOC_CRIS_UNSIGNED_16
4874ENUMX
4875 BFD_RELOC_CRIS_LAPCQ_OFFSET
06c15ad7
HPN
4876ENUMX
4877 BFD_RELOC_CRIS_UNSIGNED_4
4878ENUMDOC
4879 These relocs are only used within the CRIS assembler. They are not
4880 (at present) written to any object files.
58d29fc3
HPN
4881ENUM
4882 BFD_RELOC_CRIS_COPY
4883ENUMX
4884 BFD_RELOC_CRIS_GLOB_DAT
4885ENUMX
4886 BFD_RELOC_CRIS_JUMP_SLOT
4887ENUMX
4888 BFD_RELOC_CRIS_RELATIVE
4889ENUMDOC
4890 Relocs used in ELF shared libraries for CRIS.
4891ENUM
4892 BFD_RELOC_CRIS_32_GOT
4893ENUMDOC
4894 32-bit offset to symbol-entry within GOT.
4895ENUM
4896 BFD_RELOC_CRIS_16_GOT
4897ENUMDOC
4898 16-bit offset to symbol-entry within GOT.
4899ENUM
4900 BFD_RELOC_CRIS_32_GOTPLT
4901ENUMDOC
4902 32-bit offset to symbol-entry within GOT, with PLT handling.
4903ENUM
4904 BFD_RELOC_CRIS_16_GOTPLT
4905ENUMDOC
4906 16-bit offset to symbol-entry within GOT, with PLT handling.
4907ENUM
4908 BFD_RELOC_CRIS_32_GOTREL
4909ENUMDOC
4910 32-bit offset to symbol, relative to GOT.
4911ENUM
4912 BFD_RELOC_CRIS_32_PLT_GOTREL
4913ENUMDOC
4914 32-bit offset to symbol with PLT entry, relative to GOT.
4915ENUM
4916 BFD_RELOC_CRIS_32_PLT_PCREL
4917ENUMDOC
4918 32-bit offset to symbol with PLT entry, relative to this relocation.
06c15ad7 4919
3926fc54
HPN
4920ENUM
4921 BFD_RELOC_CRIS_32_GOT_GD
4922ENUMX
4923 BFD_RELOC_CRIS_16_GOT_GD
4924ENUMX
4925 BFD_RELOC_CRIS_32_GD
4926ENUMX
4927 BFD_RELOC_CRIS_DTP
4928ENUMX
4929 BFD_RELOC_CRIS_32_DTPREL
4930ENUMX
4931 BFD_RELOC_CRIS_16_DTPREL
4932ENUMX
4933 BFD_RELOC_CRIS_32_GOT_TPREL
4934ENUMX
4935 BFD_RELOC_CRIS_16_GOT_TPREL
4936ENUMX
4937 BFD_RELOC_CRIS_32_TPREL
4938ENUMX
4939 BFD_RELOC_CRIS_16_TPREL
4940ENUMX
4941 BFD_RELOC_CRIS_DTPMOD
75f500d7
HPN
4942ENUMX
4943 BFD_RELOC_CRIS_32_IE
3926fc54
HPN
4944ENUMDOC
4945 Relocs used in TLS code for CRIS.
4946
a87fdb8d
JE
4947ENUM
4948 BFD_RELOC_860_COPY
4949ENUMX
4950 BFD_RELOC_860_GLOB_DAT
4951ENUMX
4952 BFD_RELOC_860_JUMP_SLOT
4953ENUMX
4954 BFD_RELOC_860_RELATIVE
4955ENUMX
4956 BFD_RELOC_860_PC26
4957ENUMX
4958 BFD_RELOC_860_PLT26
4959ENUMX
4960 BFD_RELOC_860_PC16
4961ENUMX
4962 BFD_RELOC_860_LOW0
4963ENUMX
4964 BFD_RELOC_860_SPLIT0
4965ENUMX
4966 BFD_RELOC_860_LOW1
4967ENUMX
4968 BFD_RELOC_860_SPLIT1
4969ENUMX
4970 BFD_RELOC_860_LOW2
4971ENUMX
4972 BFD_RELOC_860_SPLIT2
4973ENUMX
4974 BFD_RELOC_860_LOW3
4975ENUMX
4976 BFD_RELOC_860_LOGOT0
4977ENUMX
4978 BFD_RELOC_860_SPGOT0
4979ENUMX
4980 BFD_RELOC_860_LOGOT1
4981ENUMX
4982 BFD_RELOC_860_SPGOT1
4983ENUMX
4984 BFD_RELOC_860_LOGOTOFF0
4985ENUMX
4986 BFD_RELOC_860_SPGOTOFF0
4987ENUMX
4988 BFD_RELOC_860_LOGOTOFF1
4989ENUMX
4990 BFD_RELOC_860_SPGOTOFF1
4991ENUMX
4992 BFD_RELOC_860_LOGOTOFF2
4993ENUMX
4994 BFD_RELOC_860_LOGOTOFF3
4995ENUMX
4996 BFD_RELOC_860_LOPC
4997ENUMX
4998 BFD_RELOC_860_HIGHADJ
4999ENUMX
5000 BFD_RELOC_860_HAGOT
5001ENUMX
5002 BFD_RELOC_860_HAGOTOFF
5003ENUMX
5004 BFD_RELOC_860_HAPC
5005ENUMX
5006 BFD_RELOC_860_HIGH
5007ENUMX
5008 BFD_RELOC_860_HIGOT
5009ENUMX
5010 BFD_RELOC_860_HIGOTOFF
5011ENUMDOC
5012 Intel i860 Relocations.
5013
b3baf5d0
NC
5014ENUM
5015 BFD_RELOC_OPENRISC_ABS_26
5016ENUMX
5017 BFD_RELOC_OPENRISC_REL_26
5018ENUMDOC
5019 OpenRISC Relocations.
5020
e01b0e69
JR
5021ENUM
5022 BFD_RELOC_H8_DIR16A8
5023ENUMX
5024 BFD_RELOC_H8_DIR16R8
5025ENUMX
5026 BFD_RELOC_H8_DIR24A8
5027ENUMX
5028 BFD_RELOC_H8_DIR24R8
5029ENUMX
5030 BFD_RELOC_H8_DIR32A16
5031ENUMDOC
5032 H8 elf Relocations.
5033
93fbbb04
GK
5034ENUM
5035 BFD_RELOC_XSTORMY16_REL_12
5fd63999
DD
5036ENUMX
5037 BFD_RELOC_XSTORMY16_12
93fbbb04
GK
5038ENUMX
5039 BFD_RELOC_XSTORMY16_24
5040ENUMX
5041 BFD_RELOC_XSTORMY16_FPTR16
5042ENUMDOC
5043 Sony Xstormy16 Relocations.
5044
d9352518
DB
5045ENUM
5046 BFD_RELOC_RELC
5047ENUMDOC
5048 Self-describing complex relocations.
5049COMMENT
5050
d70c5fc7
NC
5051ENUM
5052 BFD_RELOC_XC16X_PAG
5053ENUMX
5054 BFD_RELOC_XC16X_POF
5055ENUMX
5056 BFD_RELOC_XC16X_SEG
5057ENUMX
5058 BFD_RELOC_XC16X_SOF
5059ENUMDOC
5060 Infineon Relocations.
5061
90ace9e9
JT
5062ENUM
5063 BFD_RELOC_VAX_GLOB_DAT
5064ENUMX
5065 BFD_RELOC_VAX_JMP_SLOT
5066ENUMX
5067 BFD_RELOC_VAX_RELATIVE
5068ENUMDOC
5069 Relocations used by VAX ELF.
d70c5fc7 5070
e729279b 5071ENUM
d031aafb 5072 BFD_RELOC_MT_PC16
e729279b 5073ENUMDOC
d70c5fc7 5074 Morpho MT - 16 bit immediate relocation.
e729279b 5075ENUM
d031aafb 5076 BFD_RELOC_MT_HI16
e729279b 5077ENUMDOC
d70c5fc7 5078 Morpho MT - Hi 16 bits of an address.
e729279b 5079ENUM
d031aafb 5080 BFD_RELOC_MT_LO16
e729279b 5081ENUMDOC
d70c5fc7 5082 Morpho MT - Low 16 bits of an address.
e729279b 5083ENUM
d031aafb 5084 BFD_RELOC_MT_GNU_VTINHERIT
e729279b 5085ENUMDOC
d031aafb 5086 Morpho MT - Used to tell the linker which vtable entries are used.
e729279b 5087ENUM
d031aafb 5088 BFD_RELOC_MT_GNU_VTENTRY
e729279b 5089ENUMDOC
d031aafb 5090 Morpho MT - Used to tell the linker which vtable entries are used.
6f84a2a6 5091ENUM
d031aafb 5092 BFD_RELOC_MT_PCINSN8
6f84a2a6 5093ENUMDOC
d70c5fc7 5094 Morpho MT - 8 bit immediate relocation.
e729279b 5095
2469cfa2
NC
5096ENUM
5097 BFD_RELOC_MSP430_10_PCREL
5098ENUMX
5099 BFD_RELOC_MSP430_16_PCREL
5100ENUMX
5101 BFD_RELOC_MSP430_16
5102ENUMX
5103 BFD_RELOC_MSP430_16_PCREL_BYTE
5104ENUMX
5105 BFD_RELOC_MSP430_16_BYTE
b18c562e
NC
5106ENUMX
5107 BFD_RELOC_MSP430_2X_PCREL
5108ENUMX
5109 BFD_RELOC_MSP430_RL_PCREL
2469cfa2
NC
5110ENUMDOC
5111 msp430 specific relocation codes
90ace9e9 5112
a75473eb
SC
5113ENUM
5114 BFD_RELOC_IQ2000_OFFSET_16
5115ENUMX
5116 BFD_RELOC_IQ2000_OFFSET_21
5117ENUMX
5118 BFD_RELOC_IQ2000_UHI16
5119ENUMDOC
5120 IQ2000 Relocations.
5121
e0001a05
NC
5122ENUM
5123 BFD_RELOC_XTENSA_RTLD
5124ENUMDOC
5125 Special Xtensa relocation used only by PLT entries in ELF shared
5126 objects to indicate that the runtime linker should set the value
5127 to one of its own internal functions or data structures.
5128ENUM
5129 BFD_RELOC_XTENSA_GLOB_DAT
5130ENUMX
5131 BFD_RELOC_XTENSA_JMP_SLOT
5132ENUMX
5133 BFD_RELOC_XTENSA_RELATIVE
5134ENUMDOC
5135 Xtensa relocations for ELF shared objects.
5136ENUM
5137 BFD_RELOC_XTENSA_PLT
5138ENUMDOC
5139 Xtensa relocation used in ELF object files for symbols that may require
5140 PLT entries. Otherwise, this is just a generic 32-bit relocation.
43cd72b9
BW
5141ENUM
5142 BFD_RELOC_XTENSA_DIFF8
5143ENUMX
5144 BFD_RELOC_XTENSA_DIFF16
5145ENUMX
5146 BFD_RELOC_XTENSA_DIFF32
5147ENUMDOC
5148 Xtensa relocations to mark the difference of two local symbols.
5149 These are only needed to support linker relaxation and can be ignored
5150 when not relaxing. The field is set to the value of the difference
5151 assuming no relaxation. The relocation encodes the position of the
5152 first symbol so the linker can determine whether to adjust the field
5153 value.
5154ENUM
5155 BFD_RELOC_XTENSA_SLOT0_OP
5156ENUMX
5157 BFD_RELOC_XTENSA_SLOT1_OP
5158ENUMX
5159 BFD_RELOC_XTENSA_SLOT2_OP
5160ENUMX
5161 BFD_RELOC_XTENSA_SLOT3_OP
5162ENUMX
5163 BFD_RELOC_XTENSA_SLOT4_OP
5164ENUMX
5165 BFD_RELOC_XTENSA_SLOT5_OP
5166ENUMX
5167 BFD_RELOC_XTENSA_SLOT6_OP
5168ENUMX
5169 BFD_RELOC_XTENSA_SLOT7_OP
5170ENUMX
5171 BFD_RELOC_XTENSA_SLOT8_OP
5172ENUMX
5173 BFD_RELOC_XTENSA_SLOT9_OP
5174ENUMX
5175 BFD_RELOC_XTENSA_SLOT10_OP
5176ENUMX
5177 BFD_RELOC_XTENSA_SLOT11_OP
5178ENUMX
5179 BFD_RELOC_XTENSA_SLOT12_OP
5180ENUMX
5181 BFD_RELOC_XTENSA_SLOT13_OP
5182ENUMX
5183 BFD_RELOC_XTENSA_SLOT14_OP
5184ENUMDOC
5185 Generic Xtensa relocations for instruction operands. Only the slot
5186 number is encoded in the relocation. The relocation applies to the
5187 last PC-relative immediate operand, or if there are no PC-relative
5188 immediates, to the last immediate operand.
5189ENUM
5190 BFD_RELOC_XTENSA_SLOT0_ALT
5191ENUMX
5192 BFD_RELOC_XTENSA_SLOT1_ALT
5193ENUMX
5194 BFD_RELOC_XTENSA_SLOT2_ALT
5195ENUMX
5196 BFD_RELOC_XTENSA_SLOT3_ALT
5197ENUMX
5198 BFD_RELOC_XTENSA_SLOT4_ALT
5199ENUMX
5200 BFD_RELOC_XTENSA_SLOT5_ALT
5201ENUMX
5202 BFD_RELOC_XTENSA_SLOT6_ALT
5203ENUMX
5204 BFD_RELOC_XTENSA_SLOT7_ALT
5205ENUMX
5206 BFD_RELOC_XTENSA_SLOT8_ALT
5207ENUMX
5208 BFD_RELOC_XTENSA_SLOT9_ALT
5209ENUMX
5210 BFD_RELOC_XTENSA_SLOT10_ALT
5211ENUMX
5212 BFD_RELOC_XTENSA_SLOT11_ALT
5213ENUMX
5214 BFD_RELOC_XTENSA_SLOT12_ALT
5215ENUMX
5216 BFD_RELOC_XTENSA_SLOT13_ALT
5217ENUMX
5218 BFD_RELOC_XTENSA_SLOT14_ALT
5219ENUMDOC
5220 Alternate Xtensa relocations. Only the slot is encoded in the
5221 relocation. The meaning of these relocations is opcode-specific.
e0001a05
NC
5222ENUM
5223 BFD_RELOC_XTENSA_OP0
5224ENUMX
5225 BFD_RELOC_XTENSA_OP1
5226ENUMX
5227 BFD_RELOC_XTENSA_OP2
5228ENUMDOC
43cd72b9
BW
5229 Xtensa relocations for backward compatibility. These have all been
5230 replaced by BFD_RELOC_XTENSA_SLOT0_OP.
e0001a05
NC
5231ENUM
5232 BFD_RELOC_XTENSA_ASM_EXPAND
5233ENUMDOC
d70c5fc7 5234 Xtensa relocation to mark that the assembler expanded the
e0001a05
NC
5235 instructions from an original target. The expansion size is
5236 encoded in the reloc size.
5237ENUM
5238 BFD_RELOC_XTENSA_ASM_SIMPLIFY
5239ENUMDOC
d70c5fc7
NC
5240 Xtensa relocation to mark that the linker should simplify
5241 assembler-expanded instructions. This is commonly used
5242 internally by the linker after analysis of a
e0001a05 5243 BFD_RELOC_XTENSA_ASM_EXPAND.
28dbbc02
BW
5244ENUM
5245 BFD_RELOC_XTENSA_TLSDESC_FN
5246ENUMX
5247 BFD_RELOC_XTENSA_TLSDESC_ARG
5248ENUMX
5249 BFD_RELOC_XTENSA_TLS_DTPOFF
5250ENUMX
5251 BFD_RELOC_XTENSA_TLS_TPOFF
5252ENUMX
5253 BFD_RELOC_XTENSA_TLS_FUNC
5254ENUMX
5255 BFD_RELOC_XTENSA_TLS_ARG
5256ENUMX
5257 BFD_RELOC_XTENSA_TLS_CALL
5258ENUMDOC
5259 Xtensa TLS relocations.
e0001a05 5260
3c9b82ba
NC
5261ENUM
5262 BFD_RELOC_Z80_DISP8
5263ENUMDOC
5264 8 bit signed offset in (ix+d) or (iy+d).
5265
c0524131
NC
5266ENUM
5267 BFD_RELOC_Z8K_DISP7
5268ENUMDOC
5269 DJNZ offset.
5270ENUM
5271 BFD_RELOC_Z8K_CALLR
5272ENUMDOC
5273 CALR offset.
5274ENUM
5275 BFD_RELOC_Z8K_IMM4L
5276ENUMDOC
5277 4 bit value.
5278
84e94c90
NC
5279ENUM
5280 BFD_RELOC_LM32_CALL
5281ENUMX
5282 BFD_RELOC_LM32_BRANCH
5283ENUMX
5284 BFD_RELOC_LM32_16_GOT
5285ENUMX
5286 BFD_RELOC_LM32_GOTOFF_HI16
5287ENUMX
5288 BFD_RELOC_LM32_GOTOFF_LO16
5289ENUMX
5290 BFD_RELOC_LM32_COPY
5291ENUMX
5292 BFD_RELOC_LM32_GLOB_DAT
5293ENUMX
5294 BFD_RELOC_LM32_JMP_SLOT
5295ENUMX
5296 BFD_RELOC_LM32_RELATIVE
5297ENUMDOC
5298 Lattice Mico32 relocations.
92bc0e80
TG
5299
5300ENUM
f88af2f1 5301 BFD_RELOC_MACH_O_SECTDIFF
92bc0e80 5302ENUMDOC
f88af2f1
TG
5303 Difference between two section addreses. Must be followed by a
5304 BFD_RELOC_MACH_O_PAIR.
92bc0e80 5305ENUM
f88af2f1 5306 BFD_RELOC_MACH_O_PAIR
92bc0e80 5307ENUMDOC
f88af2f1
TG
5308 Pair of relocation. Contains the first symbol.
5309
5310ENUM
5311 BFD_RELOC_MACH_O_X86_64_BRANCH32
5312ENUMX
5313 BFD_RELOC_MACH_O_X86_64_BRANCH8
5314ENUMDOC
5315 PCREL relocations. They are marked as branch to create PLT entry if
5316 required.
5317ENUM
5318 BFD_RELOC_MACH_O_X86_64_GOT
5319ENUMDOC
5320 Used when referencing a GOT entry.
5321ENUM
5322 BFD_RELOC_MACH_O_X86_64_GOT_LOAD
5323ENUMDOC
5324 Used when loading a GOT entry with movq. It is specially marked so that
5325 the linker could optimize the movq to a leaq if possible.
5326ENUM
5327 BFD_RELOC_MACH_O_X86_64_SUBTRACTOR32
5328ENUMDOC
5329 Symbol will be substracted. Must be followed by a BFD_RELOC_64.
5330ENUM
5331 BFD_RELOC_MACH_O_X86_64_SUBTRACTOR64
5332ENUMDOC
5333 Symbol will be substracted. Must be followed by a BFD_RELOC_64.
5334ENUM
5335 BFD_RELOC_MACH_O_X86_64_PCREL32_1
5336ENUMDOC
5337 Same as BFD_RELOC_32_PCREL but with an implicit -1 addend.
5338ENUM
5339 BFD_RELOC_MACH_O_X86_64_PCREL32_2
5340ENUMDOC
5341 Same as BFD_RELOC_32_PCREL but with an implicit -2 addend.
5342ENUM
5343 BFD_RELOC_MACH_O_X86_64_PCREL32_4
5344ENUMDOC
5345 Same as BFD_RELOC_32_PCREL but with an implicit -4 addend.
efde2f2c 5346
7ba29e2a
NC
5347ENUM
5348 BFD_RELOC_MICROBLAZE_32_LO
5349ENUMDOC
5350 This is a 32 bit reloc for the microblaze that stores the
5351 low 16 bits of a value
5352ENUM
5353 BFD_RELOC_MICROBLAZE_32_LO_PCREL
5354ENUMDOC
5355 This is a 32 bit pc-relative reloc for the microblaze that
5356 stores the low 16 bits of a value
5357ENUM
5358 BFD_RELOC_MICROBLAZE_32_ROSDA
5359ENUMDOC
5360 This is a 32 bit reloc for the microblaze that stores a
5361 value relative to the read-only small data area anchor
5362ENUM
5363 BFD_RELOC_MICROBLAZE_32_RWSDA
5364ENUMDOC
5365 This is a 32 bit reloc for the microblaze that stores a
5366 value relative to the read-write small data area anchor
5367ENUM
5368 BFD_RELOC_MICROBLAZE_32_SYM_OP_SYM
5369ENUMDOC
5370 This is a 32 bit reloc for the microblaze to handle
5371 expressions of the form "Symbol Op Symbol"
5372ENUM
5373 BFD_RELOC_MICROBLAZE_64_NONE
5374ENUMDOC
5375 This is a 64 bit reloc that stores the 32 bit pc relative
5376 value in two words (with an imm instruction). No relocation is
5377 done here - only used for relaxing
5378ENUM
5379 BFD_RELOC_MICROBLAZE_64_GOTPC
5380ENUMDOC
5381 This is a 64 bit reloc that stores the 32 bit pc relative
5382 value in two words (with an imm instruction). The relocation is
5383 PC-relative GOT offset
5384ENUM
5385 BFD_RELOC_MICROBLAZE_64_GOT
5386ENUMDOC
5387 This is a 64 bit reloc that stores the 32 bit pc relative
5388 value in two words (with an imm instruction). The relocation is
5389 GOT offset
5390ENUM
5391 BFD_RELOC_MICROBLAZE_64_PLT
5392ENUMDOC
5393 This is a 64 bit reloc that stores the 32 bit pc relative
5394 value in two words (with an imm instruction). The relocation is
5395 PC-relative offset into PLT
5396ENUM
5397 BFD_RELOC_MICROBLAZE_64_GOTOFF
5398ENUMDOC
5399 This is a 64 bit reloc that stores the 32 bit GOT relative
5400 value in two words (with an imm instruction). The relocation is
5401 relative offset from _GLOBAL_OFFSET_TABLE_
5402ENUM
5403 BFD_RELOC_MICROBLAZE_32_GOTOFF
5404ENUMDOC
5405 This is a 32 bit reloc that stores the 32 bit GOT relative
5406 value in a word. The relocation is relative offset from
5407 _GLOBAL_OFFSET_TABLE_
5408ENUM
5409 BFD_RELOC_MICROBLAZE_COPY
5410ENUMDOC
5411 This is used to tell the dynamic linker to copy the value out of
5412 the dynamic object into the runtime process image.
5413
5414
252b5132
RH
5415ENDSENUM
5416 BFD_RELOC_UNUSED
5417CODE_FRAGMENT
5418.
5419.typedef enum bfd_reloc_code_real bfd_reloc_code_real_type;
5420*/
5421
252b5132
RH
5422/*
5423FUNCTION
5424 bfd_reloc_type_lookup
157090f7 5425 bfd_reloc_name_lookup
252b5132
RH
5426
5427SYNOPSIS
c58b9523
AM
5428 reloc_howto_type *bfd_reloc_type_lookup
5429 (bfd *abfd, bfd_reloc_code_real_type code);
157090f7
AM
5430 reloc_howto_type *bfd_reloc_name_lookup
5431 (bfd *abfd, const char *reloc_name);
252b5132
RH
5432
5433DESCRIPTION
5434 Return a pointer to a howto structure which, when
5435 invoked, will perform the relocation @var{code} on data from the
5436 architecture noted.
5437
5438*/
5439
252b5132 5440reloc_howto_type *
c58b9523 5441bfd_reloc_type_lookup (bfd *abfd, bfd_reloc_code_real_type code)
252b5132
RH
5442{
5443 return BFD_SEND (abfd, reloc_type_lookup, (abfd, code));
5444}
5445
157090f7
AM
5446reloc_howto_type *
5447bfd_reloc_name_lookup (bfd *abfd, const char *reloc_name)
5448{
5449 return BFD_SEND (abfd, reloc_name_lookup, (abfd, reloc_name));
5450}
5451
252b5132 5452static reloc_howto_type bfd_howto_32 =
a7985d73 5453HOWTO (0, 00, 2, 32, FALSE, 0, complain_overflow_dont, 0, "VRT32", FALSE, 0xffffffff, 0xffffffff, TRUE);
252b5132 5454
252b5132
RH
5455/*
5456INTERNAL_FUNCTION
5457 bfd_default_reloc_type_lookup
5458
5459SYNOPSIS
5460 reloc_howto_type *bfd_default_reloc_type_lookup
c58b9523 5461 (bfd *abfd, bfd_reloc_code_real_type code);
252b5132
RH
5462
5463DESCRIPTION
5464 Provides a default relocation lookup routine for any architecture.
5465
252b5132
RH
5466*/
5467
5468reloc_howto_type *
c58b9523 5469bfd_default_reloc_type_lookup (bfd *abfd, bfd_reloc_code_real_type code)
252b5132
RH
5470{
5471 switch (code)
5472 {
5473 case BFD_RELOC_CTOR:
5474 /* The type of reloc used in a ctor, which will be as wide as the
5475 address - so either a 64, 32, or 16 bitter. */
5476 switch (bfd_get_arch_info (abfd)->bits_per_address)
5477 {
5478 case 64:
5479 BFD_FAIL ();
5480 case 32:
5481 return &bfd_howto_32;
5482 case 16:
5483 BFD_FAIL ();
5484 default:
5485 BFD_FAIL ();
5486 }
5487 default:
5488 BFD_FAIL ();
5489 }
c58b9523 5490 return NULL;
252b5132
RH
5491}
5492
5493/*
5494FUNCTION
5495 bfd_get_reloc_code_name
5496
5497SYNOPSIS
5498 const char *bfd_get_reloc_code_name (bfd_reloc_code_real_type code);
5499
5500DESCRIPTION
5501 Provides a printable name for the supplied relocation code.
5502 Useful mainly for printing error messages.
5503*/
5504
5505const char *
c58b9523 5506bfd_get_reloc_code_name (bfd_reloc_code_real_type code)
252b5132 5507{
c58b9523 5508 if (code > BFD_RELOC_UNUSED)
252b5132 5509 return 0;
c58b9523 5510 return bfd_reloc_code_real_names[code];
252b5132
RH
5511}
5512
5513/*
5514INTERNAL_FUNCTION
5515 bfd_generic_relax_section
5516
5517SYNOPSIS
b34976b6 5518 bfd_boolean bfd_generic_relax_section
c58b9523
AM
5519 (bfd *abfd,
5520 asection *section,
5521 struct bfd_link_info *,
5522 bfd_boolean *);
252b5132
RH
5523
5524DESCRIPTION
5525 Provides default handling for relaxing for back ends which
eea6121a 5526 don't do relaxing.
252b5132
RH
5527*/
5528
b34976b6 5529bfd_boolean
c58b9523
AM
5530bfd_generic_relax_section (bfd *abfd ATTRIBUTE_UNUSED,
5531 asection *section ATTRIBUTE_UNUSED,
5532 struct bfd_link_info *link_info ATTRIBUTE_UNUSED,
5533 bfd_boolean *again)
252b5132 5534{
c8a1f254
NS
5535 if (link_info->relocatable)
5536 (*link_info->callbacks->einfo)
5537 (_("%P%F: --relax and -r may not be used together\n"));
5538
b34976b6
AM
5539 *again = FALSE;
5540 return TRUE;
252b5132
RH
5541}
5542
5543/*
5544INTERNAL_FUNCTION
5545 bfd_generic_gc_sections
5546
5547SYNOPSIS
b34976b6 5548 bfd_boolean bfd_generic_gc_sections
c58b9523 5549 (bfd *, struct bfd_link_info *);
252b5132
RH
5550
5551DESCRIPTION
5552 Provides default handling for relaxing for back ends which
a3c2b96a 5553 don't do section gc -- i.e., does nothing.
252b5132
RH
5554*/
5555
b34976b6 5556bfd_boolean
c58b9523 5557bfd_generic_gc_sections (bfd *abfd ATTRIBUTE_UNUSED,
a3c2b96a 5558 struct bfd_link_info *info ATTRIBUTE_UNUSED)
252b5132 5559{
b34976b6 5560 return TRUE;
252b5132
RH
5561}
5562
8550eb6e
JJ
5563/*
5564INTERNAL_FUNCTION
5565 bfd_generic_merge_sections
5566
5567SYNOPSIS
b34976b6 5568 bfd_boolean bfd_generic_merge_sections
c58b9523 5569 (bfd *, struct bfd_link_info *);
8550eb6e
JJ
5570
5571DESCRIPTION
5572 Provides default handling for SEC_MERGE section merging for back ends
5573 which don't have SEC_MERGE support -- i.e., does nothing.
5574*/
5575
b34976b6 5576bfd_boolean
c58b9523
AM
5577bfd_generic_merge_sections (bfd *abfd ATTRIBUTE_UNUSED,
5578 struct bfd_link_info *link_info ATTRIBUTE_UNUSED)
8550eb6e 5579{
b34976b6 5580 return TRUE;
8550eb6e
JJ
5581}
5582
252b5132
RH
5583/*
5584INTERNAL_FUNCTION
5585 bfd_generic_get_relocated_section_contents
5586
5587SYNOPSIS
c58b9523
AM
5588 bfd_byte *bfd_generic_get_relocated_section_contents
5589 (bfd *abfd,
5590 struct bfd_link_info *link_info,
5591 struct bfd_link_order *link_order,
5592 bfd_byte *data,
5593 bfd_boolean relocatable,
5594 asymbol **symbols);
252b5132
RH
5595
5596DESCRIPTION
5597 Provides default handling of relocation effort for back ends
5598 which can't be bothered to do it efficiently.
5599
5600*/
5601
5602bfd_byte *
c58b9523
AM
5603bfd_generic_get_relocated_section_contents (bfd *abfd,
5604 struct bfd_link_info *link_info,
5605 struct bfd_link_order *link_order,
5606 bfd_byte *data,
5607 bfd_boolean relocatable,
5608 asymbol **symbols)
252b5132 5609{
252b5132
RH
5610 bfd *input_bfd = link_order->u.indirect.section->owner;
5611 asection *input_section = link_order->u.indirect.section;
d4947150
AM
5612 long reloc_size;
5613 arelent **reloc_vector;
252b5132 5614 long reloc_count;
eea6121a 5615 bfd_size_type sz;
252b5132 5616
d4947150 5617 reloc_size = bfd_get_reloc_upper_bound (input_bfd, input_section);
252b5132 5618 if (reloc_size < 0)
d4947150 5619 return NULL;
252b5132 5620
b5f79c76 5621 /* Read in the section. */
eea6121a
AM
5622 sz = input_section->rawsize ? input_section->rawsize : input_section->size;
5623 if (!bfd_get_section_contents (input_bfd, input_section, data, 0, sz))
d4947150
AM
5624 return NULL;
5625
5626 if (reloc_size == 0)
5627 return data;
5628
a50b1753 5629 reloc_vector = (arelent **) bfd_malloc (reloc_size);
d4947150
AM
5630 if (reloc_vector == NULL)
5631 return NULL;
252b5132 5632
252b5132
RH
5633 reloc_count = bfd_canonicalize_reloc (input_bfd,
5634 input_section,
5635 reloc_vector,
5636 symbols);
5637 if (reloc_count < 0)
5638 goto error_return;
5639
5640 if (reloc_count > 0)
5641 {
5642 arelent **parent;
c58b9523 5643 for (parent = reloc_vector; *parent != NULL; parent++)
252b5132 5644 {
c58b9523 5645 char *error_message = NULL;
ab96bf03
AM
5646 asymbol *symbol;
5647 bfd_reloc_status_type r;
5648
5649 symbol = *(*parent)->sym_ptr_ptr;
5650 if (symbol->section && elf_discarded_section (symbol->section))
5651 {
5652 bfd_byte *p;
15344ad7 5653 static reloc_howto_type none_howto
ab96bf03
AM
5654 = HOWTO (0, 0, 0, 0, FALSE, 0, complain_overflow_dont, NULL,
5655 "unused", FALSE, 0, 0, FALSE);
5656
5657 p = data + (*parent)->address * bfd_octets_per_byte (input_bfd);
5658 _bfd_clear_contents ((*parent)->howto, input_bfd, p);
5659 (*parent)->sym_ptr_ptr = bfd_abs_section.symbol_ptr_ptr;
5660 (*parent)->addend = 0;
5661 (*parent)->howto = &none_howto;
5662 r = bfd_reloc_ok;
5663 }
5664 else
5665 r = bfd_perform_relocation (input_bfd,
5666 *parent,
5667 data,
5668 input_section,
5669 relocatable ? abfd : NULL,
5670 &error_message);
252b5132 5671
1049f94e 5672 if (relocatable)
252b5132
RH
5673 {
5674 asection *os = input_section->output_section;
5675
b5f79c76 5676 /* A partial link, so keep the relocs. */
252b5132
RH
5677 os->orelocation[os->reloc_count] = *parent;
5678 os->reloc_count++;
5679 }
5680
5681 if (r != bfd_reloc_ok)
5682 {
5683 switch (r)
5684 {
5685 case bfd_reloc_undefined:
5686 if (!((*link_info->callbacks->undefined_symbol)
5687 (link_info, bfd_asymbol_name (*(*parent)->sym_ptr_ptr),
5cc7c785 5688 input_bfd, input_section, (*parent)->address,
b34976b6 5689 TRUE)))
252b5132
RH
5690 goto error_return;
5691 break;
5692 case bfd_reloc_dangerous:
c58b9523 5693 BFD_ASSERT (error_message != NULL);
252b5132
RH
5694 if (!((*link_info->callbacks->reloc_dangerous)
5695 (link_info, error_message, input_bfd, input_section,
5696 (*parent)->address)))
5697 goto error_return;
5698 break;
5699 case bfd_reloc_overflow:
5700 if (!((*link_info->callbacks->reloc_overflow)
dfeffb9f
L
5701 (link_info, NULL,
5702 bfd_asymbol_name (*(*parent)->sym_ptr_ptr),
252b5132
RH
5703 (*parent)->howto->name, (*parent)->addend,
5704 input_bfd, input_section, (*parent)->address)))
5705 goto error_return;
5706 break;
5707 case bfd_reloc_outofrange:
5708 default:
5709 abort ();
5710 break;
5711 }
5712
5713 }
5714 }
5715 }
d4947150
AM
5716
5717 free (reloc_vector);
252b5132
RH
5718 return data;
5719
5720error_return:
d4947150 5721 free (reloc_vector);
252b5132
RH
5722 return NULL;
5723}