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[deliverable/binutils-gdb.git] / bfd / elf32-bfin.c
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3b55e94a 1/* ADI Blackfin BFD support for 32-bit ELF.
ab96bf03 2 Copyright 2005, 2006, 2007 Free Software Foundation, Inc.
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3
4 This file is part of BFD, the Binary File Descriptor library.
5
6 This program is free software; you can redistribute it and/or modify
7 it under the terms of the GNU General Public License as published by
cd123cb7 8 the Free Software Foundation; either version 3 of the License, or
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9 (at your option) any later version.
10
11 This program is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details.
15
16 You should have received a copy of the GNU General Public License
17 along with this program; if not, write to the Free Software
cd123cb7
NC
18 Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
19 MA 02110-1301, USA. */
0f64bb02 20
0f64bb02 21#include "sysdep.h"
3db64b00 22#include "bfd.h"
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23#include "libbfd.h"
24#include "elf-bfd.h"
25#include "elf/bfin.h"
48d502e1
BS
26#include "elf/dwarf2.h"
27#include "hashtab.h"
0f64bb02 28
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CM
29/* FUNCTION : bfin_pltpc_reloc
30 ABSTRACT : TODO : figure out how to handle pltpc relocs. */
31static bfd_reloc_status_type
32bfin_pltpc_reloc (
33 bfd *abfd ATTRIBUTE_UNUSED,
34 arelent *reloc_entry ATTRIBUTE_UNUSED,
35 asymbol *symbol ATTRIBUTE_UNUSED,
36 PTR data ATTRIBUTE_UNUSED,
37 asection *input_section ATTRIBUTE_UNUSED,
38 bfd *output_bfd ATTRIBUTE_UNUSED,
3b55e94a 39 char **error_message ATTRIBUTE_UNUSED)
0f64bb02
CM
40{
41 bfd_reloc_status_type flag = bfd_reloc_ok;
3b55e94a 42 return flag;
0f64bb02
CM
43}
44\f
45
46static bfd_reloc_status_type
47bfin_pcrel24_reloc (bfd *abfd,
48 arelent *reloc_entry,
49 asymbol *symbol,
50 PTR data,
51 asection *input_section,
52 bfd *output_bfd,
53 char **error_message ATTRIBUTE_UNUSED)
54{
55 bfd_vma relocation;
56 bfd_size_type addr = reloc_entry->address;
57 bfd_vma output_base = 0;
58 reloc_howto_type *howto = reloc_entry->howto;
59 asection *output_section;
60 bfd_boolean relocatable = (output_bfd != NULL);
61
62 if (reloc_entry->address > bfd_get_section_limit (abfd, input_section))
63 return bfd_reloc_outofrange;
64
3b55e94a
BS
65 if (bfd_is_und_section (symbol->section)
66 && (symbol->flags & BSF_WEAK) == 0
67 && !relocatable)
68 return bfd_reloc_undefined;
69
70 if (bfd_is_com_section (symbol->section))
71 relocation = 0;
0f64bb02 72 else
3b55e94a 73 relocation = symbol->value;
0f64bb02 74
3b55e94a
BS
75 output_section = symbol->section->output_section;
76
77 if (relocatable)
78 output_base = 0;
79 else
80 output_base = output_section->vma;
81
82 if (!relocatable || !strcmp (symbol->name, symbol->section->name))
83 relocation += output_base + symbol->section->output_offset;
0f64bb02 84
3b55e94a
BS
85 if (!relocatable && !strcmp (symbol->name, symbol->section->name))
86 relocation += reloc_entry->addend;
0f64bb02 87
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CM
88 relocation -= input_section->output_section->vma + input_section->output_offset;
89 relocation -= reloc_entry->address;
90
91 if (howto->complain_on_overflow != complain_overflow_dont)
92 {
93 bfd_reloc_status_type status;
3b55e94a
BS
94 status = bfd_check_overflow (howto->complain_on_overflow,
95 howto->bitsize,
96 howto->rightshift,
97 bfd_arch_bits_per_address(abfd),
98 relocation);
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99 if (status != bfd_reloc_ok)
100 return status;
101 }
3b55e94a 102
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103 /* if rightshift is 1 and the number odd, return error. */
104 if (howto->rightshift && (relocation & 0x01))
105 {
106 fprintf(stderr, "relocation should be even number\n");
107 return bfd_reloc_overflow;
108 }
109
110 relocation >>= (bfd_vma) howto->rightshift;
111 /* Shift everything up to where it's going to be used. */
112
113 relocation <<= (bfd_vma) howto->bitpos;
114
115 if (relocatable)
116 {
117 reloc_entry->address += input_section->output_offset;
118 reloc_entry->addend += symbol->section->output_offset;
119 }
120
121 {
122 short x;
123
124 /* We are getting reloc_entry->address 2 byte off from
3b55e94a
BS
125 the start of instruction. Assuming absolute postion
126 of the reloc data. But, following code had been written assuming
127 reloc address is starting at begining of instruction.
128 To compensate that I have increased the value of
129 relocation by 1 (effectively 2) and used the addr -2 instead of addr. */
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130
131 relocation += 1;
132 x = bfd_get_16 (abfd, (bfd_byte *) data + addr - 2);
133 x = (x & 0xff00) | ((relocation >> 16) & 0xff);
134 bfd_put_16 (abfd, x, (unsigned char *) data + addr - 2);
135
136 x = bfd_get_16 (abfd, (bfd_byte *) data + addr);
137 x = relocation & 0xFFFF;
138 bfd_put_16 (abfd, x, (unsigned char *) data + addr );
139 }
140 return bfd_reloc_ok;
141}
142
143static bfd_reloc_status_type
3b55e94a
BS
144bfin_imm16_reloc (bfd *abfd,
145 arelent *reloc_entry,
146 asymbol *symbol,
147 PTR data,
148 asection *input_section,
149 bfd *output_bfd,
150 char **error_message ATTRIBUTE_UNUSED)
0f64bb02 151{
3b55e94a
BS
152 bfd_vma relocation, x;
153 bfd_size_type reloc_addr = reloc_entry->address;
0f64bb02 154 bfd_vma output_base = 0;
3b55e94a 155 reloc_howto_type *howto = reloc_entry->howto;
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CM
156 asection *output_section;
157 bfd_boolean relocatable = (output_bfd != NULL);
158
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BS
159 /* Is the address of the relocation really within the section? */
160 if (reloc_entry->address > bfd_get_section_limit (abfd, input_section))
161 return bfd_reloc_outofrange;
162
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163 if (bfd_is_und_section (symbol->section)
164 && (symbol->flags & BSF_WEAK) == 0
165 && !relocatable)
166 return bfd_reloc_undefined;
167
0f64bb02 168 output_section = symbol->section->output_section;
3b55e94a 169 relocation = symbol->value;
0f64bb02
CM
170
171 /* Convert input-section-relative symbol value to absolute. */
172 if (relocatable)
173 output_base = 0;
174 else
175 output_base = output_section->vma;
176
3b55e94a 177 if (!relocatable || !strcmp (symbol->name, symbol->section->name))
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178 relocation += output_base + symbol->section->output_offset;
179
180 /* Add in supplied addend. */
181 relocation += reloc_entry->addend;
182
183 if (relocatable)
184 {
185 reloc_entry->address += input_section->output_offset;
186 reloc_entry->addend += symbol->section->output_offset;
187 }
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188 else
189 {
190 reloc_entry->addend = 0;
191 }
192
193 if (howto->complain_on_overflow != complain_overflow_dont)
194 {
195 bfd_reloc_status_type flag;
196 flag = bfd_check_overflow (howto->complain_on_overflow,
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BS
197 howto->bitsize,
198 howto->rightshift,
199 bfd_arch_bits_per_address(abfd),
200 relocation);
0f64bb02 201 if (flag != bfd_reloc_ok)
3b55e94a 202 return flag;
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203 }
204
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205 /* Here the variable relocation holds the final address of the
206 symbol we are relocating against, plus any addend. */
207
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208 relocation >>= (bfd_vma) howto->rightshift;
209 x = relocation;
210 bfd_put_16 (abfd, x, (unsigned char *) data + reloc_addr);
211 return bfd_reloc_ok;
212}
213
214
215static bfd_reloc_status_type
216bfin_byte4_reloc (bfd *abfd,
217 arelent *reloc_entry,
218 asymbol *symbol,
219 PTR data,
220 asection *input_section,
221 bfd *output_bfd,
3b55e94a 222 char **error_message ATTRIBUTE_UNUSED)
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CM
223{
224 bfd_vma relocation, x;
225 bfd_size_type addr = reloc_entry->address;
226 bfd_vma output_base = 0;
227 asection *output_section;
228 bfd_boolean relocatable = (output_bfd != NULL);
229
230 /* Is the address of the relocation really within the section? */
231 if (reloc_entry->address > bfd_get_section_limit (abfd, input_section))
232 return bfd_reloc_outofrange;
233
3b55e94a
BS
234 if (bfd_is_und_section (symbol->section)
235 && (symbol->flags & BSF_WEAK) == 0
236 && !relocatable)
237 return bfd_reloc_undefined;
0f64bb02 238
3b55e94a
BS
239 output_section = symbol->section->output_section;
240 relocation = symbol->value;
241 /* Convert input-section-relative symbol value to absolute. */
242 if (relocatable)
243 output_base = 0;
0f64bb02 244 else
3b55e94a
BS
245 output_base = output_section->vma;
246
247 if ((symbol->name
248 && symbol->section->name
249 && !strcmp (symbol->name, symbol->section->name))
250 || !relocatable)
0f64bb02 251 {
3b55e94a 252 relocation += output_base + symbol->section->output_offset;
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CM
253 }
254
3b55e94a
BS
255 relocation += reloc_entry->addend;
256
0f64bb02 257 if (relocatable)
3b55e94a 258 {
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CM
259 /* This output will be relocatable ... like ld -r. */
260 reloc_entry->address += input_section->output_offset;
261 reloc_entry->addend += symbol->section->output_offset;
262 }
263 else
264 {
265 reloc_entry->addend = 0;
266 }
267
268 /* Here the variable relocation holds the final address of the
269 symbol we are relocating against, plus any addend. */
270 x = relocation & 0xFFFF0000;
271 x >>=16;
272 bfd_put_16 (abfd, x, (unsigned char *) data + addr + 2);
3b55e94a 273
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274 x = relocation & 0x0000FFFF;
275 bfd_put_16 (abfd, x, (unsigned char *) data + addr);
276 return bfd_reloc_ok;
277}
278
279/* bfin_bfd_reloc handles the blackfin arithmetic relocations.
280 Use this instead of bfd_perform_relocation. */
281static bfd_reloc_status_type
282bfin_bfd_reloc (bfd *abfd,
283 arelent *reloc_entry,
284 asymbol *symbol,
285 PTR data,
286 asection *input_section,
287 bfd *output_bfd,
288 char **error_message ATTRIBUTE_UNUSED)
289{
290 bfd_vma relocation;
291 bfd_size_type addr = reloc_entry->address;
292 bfd_vma output_base = 0;
293 reloc_howto_type *howto = reloc_entry->howto;
294 asection *output_section;
295 bfd_boolean relocatable = (output_bfd != NULL);
296
297 /* Is the address of the relocation really within the section? */
298 if (reloc_entry->address > bfd_get_section_limit (abfd, input_section))
299 return bfd_reloc_outofrange;
300
3b55e94a
BS
301 if (bfd_is_und_section (symbol->section)
302 && (symbol->flags & BSF_WEAK) == 0
303 && !relocatable)
304 return bfd_reloc_undefined;
305
306 /* Get symbol value. (Common symbols are special.) */
307 if (bfd_is_com_section (symbol->section))
308 relocation = 0;
0f64bb02 309 else
3b55e94a
BS
310 relocation = symbol->value;
311
312 output_section = symbol->section->output_section;
313
314 /* Convert input-section-relative symbol value to absolute. */
315 if (relocatable)
316 output_base = 0;
317 else
318 output_base = output_section->vma;
319
320 if (!relocatable || !strcmp (symbol->name, symbol->section->name))
321 relocation += output_base + symbol->section->output_offset;
322
323 if (!relocatable && !strcmp (symbol->name, symbol->section->name))
0f64bb02 324 {
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BS
325 /* Add in supplied addend. */
326 relocation += reloc_entry->addend;
0f64bb02 327 }
3b55e94a 328
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329 /* Here the variable relocation holds the final address of the
330 symbol we are relocating against, plus any addend. */
331
332 if (howto->pc_relative == TRUE)
333 {
334 relocation -= input_section->output_section->vma + input_section->output_offset;
335
336 if (howto->pcrel_offset == TRUE)
337 relocation -= reloc_entry->address;
338 }
339
340 if (relocatable)
341 {
342 reloc_entry->address += input_section->output_offset;
343 reloc_entry->addend += symbol->section->output_offset;
344 }
345
346 if (howto->complain_on_overflow != complain_overflow_dont)
347 {
348 bfd_reloc_status_type status;
349
3b55e94a 350 status = bfd_check_overflow (howto->complain_on_overflow,
0f64bb02 351 howto->bitsize,
3b55e94a 352 howto->rightshift,
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CM
353 bfd_arch_bits_per_address(abfd),
354 relocation);
355 if (status != bfd_reloc_ok)
356 return status;
357 }
3b55e94a 358
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CM
359 /* If rightshift is 1 and the number odd, return error. */
360 if (howto->rightshift && (relocation & 0x01))
361 {
362 fprintf(stderr, "relocation should be even number\n");
363 return bfd_reloc_overflow;
364 }
365
366 relocation >>= (bfd_vma) howto->rightshift;
367
368 /* Shift everything up to where it's going to be used. */
369
370 relocation <<= (bfd_vma) howto->bitpos;
371
3b55e94a 372#define DOIT(x) \
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373 x = ( (x & ~howto->dst_mask) | (relocation & howto->dst_mask))
374
375 /* handle 8 and 16 bit relocations here. */
376 switch (howto->size)
377 {
378 case 0:
379 {
380 char x = bfd_get_8 (abfd, (char *) data + addr);
381 DOIT (x);
382 bfd_put_8 (abfd, x, (unsigned char *) data + addr);
383 }
384 break;
385
386 case 1:
387 {
388 unsigned short x = bfd_get_16 (abfd, (bfd_byte *) data + addr);
389 DOIT (x);
390 bfd_put_16 (abfd, (bfd_vma) x, (unsigned char *) data + addr);
391 }
392 break;
393
394 default:
395 return bfd_reloc_other;
396 }
397
3b55e94a 398 return bfd_reloc_ok;
0f64bb02
CM
399}
400
0f64bb02
CM
401/* HOWTO Table for blackfin.
402 Blackfin relocations are fairly complicated.
403 Some of the salient features are
404 a. Even numbered offsets. A number of (not all) relocations are
405 even numbered. This means that the rightmost bit is not stored.
406 Needs to right shift by 1 and check to see if value is not odd
407 b. A relocation can be an expression. An expression takes on
408 a variety of relocations arranged in a stack.
409 As a result, we cannot use the standard generic function as special
410 function. We will have our own, which is very similar to the standard
411 generic function except that it understands how to get the value from
412 the relocation stack. . */
413
414#define BFIN_RELOC_MIN 0
48d502e1 415#define BFIN_RELOC_MAX 0x21
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416#define BFIN_GNUEXT_RELOC_MIN 0x40
417#define BFIN_GNUEXT_RELOC_MAX 0x43
418#define BFIN_ARELOC_MIN 0xE0
419#define BFIN_ARELOC_MAX 0xF3
420
421static reloc_howto_type bfin_howto_table [] =
422{
423 /* This reloc does nothing. . */
424 HOWTO (R_unused0, /* type. */
425 0, /* rightshift. */
426 2, /* size (0 = byte, 1 = short, 2 = long). */
427 32, /* bitsize. */
428 FALSE, /* pc_relative. */
429 0, /* bitpos. */
430 complain_overflow_bitfield, /* complain_on_overflow. */
431 bfd_elf_generic_reloc, /* special_function. */
432 "R_unused0", /* name. */
433 FALSE, /* partial_inplace. */
434 0, /* src_mask. */
435 0, /* dst_mask. */
436 FALSE), /* pcrel_offset. */
437
438 HOWTO (R_pcrel5m2, /* type. */
439 1, /* rightshift. */
440 1, /* size (0 = byte, 1 = short, 2 = long).. */
441 4, /* bitsize. */
442 TRUE, /* pc_relative. */
443 0, /* bitpos. */
444 complain_overflow_unsigned, /* complain_on_overflow. */
445 bfin_bfd_reloc, /* special_function. */
446 "R_pcrel5m2", /* name. */
447 FALSE, /* partial_inplace. */
f4707595 448 0, /* src_mask. */
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CM
449 0x0000000F, /* dst_mask. */
450 FALSE), /* pcrel_offset. */
451
452 HOWTO (R_unused1, /* type. */
453 0, /* rightshift. */
454 2, /* size (0 = byte, 1 = short, 2 = long). */
455 32, /* bitsize. */
456 FALSE, /* pc_relative. */
457 0, /* bitpos. */
458 complain_overflow_bitfield, /* complain_on_overflow. */
459 bfd_elf_generic_reloc, /* special_function. */
460 "R_unused1", /* name. */
461 FALSE, /* partial_inplace. */
462 0, /* src_mask. */
463 0, /* dst_mask. */
464 FALSE), /* pcrel_offset. */
465
466 HOWTO (R_pcrel10, /* type. */
467 1, /* rightshift. */
468 1, /* size (0 = byte, 1 = short, 2 = long). */
469 10, /* bitsize. */
470 TRUE, /* pc_relative. */
471 0, /* bitpos. */
472 complain_overflow_signed, /* complain_on_overflow. */
473 bfin_bfd_reloc, /* special_function. */
474 "R_pcrel10", /* name. */
475 FALSE, /* partial_inplace. */
f4707595 476 0, /* src_mask. */
0f64bb02
CM
477 0x000003FF, /* dst_mask. */
478 TRUE), /* pcrel_offset. */
3b55e94a 479
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CM
480 HOWTO (R_pcrel12_jump, /* type. */
481 1, /* rightshift. */
482 /* the offset is actually 13 bit
483 aligned on a word boundary so
484 only 12 bits have to be used.
485 Right shift the rightmost bit.. */
486 1, /* size (0 = byte, 1 = short, 2 = long). */
487 12, /* bitsize. */
488 TRUE, /* pc_relative. */
489 0, /* bitpos. */
490 complain_overflow_signed, /* complain_on_overflow. */
491 bfin_bfd_reloc, /* special_function. */
492 "R_pcrel12_jump", /* name. */
493 FALSE, /* partial_inplace. */
f4707595 494 0, /* src_mask. */
0f64bb02
CM
495 0x0FFF, /* dst_mask. */
496 TRUE), /* pcrel_offset. */
497
498 HOWTO (R_rimm16, /* type. */
499 0, /* rightshift. */
500 1, /* size (0 = byte, 1 = short, 2 = long). */
501 16, /* bitsize. */
502 FALSE, /* pc_relative. */
503 0, /* bitpos. */
504 complain_overflow_signed, /* complain_on_overflow. */
505 bfin_imm16_reloc, /* special_function. */
506 "R_rimm16", /* name. */
507 FALSE, /* partial_inplace. */
f4707595 508 0, /* src_mask. */
0f64bb02
CM
509 0x0000FFFF, /* dst_mask. */
510 TRUE), /* pcrel_offset. */
511
512 HOWTO (R_luimm16, /* type. */
513 0, /* rightshift. */
514 1, /* size (0 = byte, 1 = short, 2 = long). */
515 16, /* bitsize. */
516 FALSE, /* pc_relative. */
517 0, /* bitpos. */
518 complain_overflow_dont, /* complain_on_overflow. */
519 bfin_imm16_reloc, /* special_function. */
520 "R_luimm16", /* name. */
521 FALSE, /* partial_inplace. */
f4707595 522 0, /* src_mask. */
0f64bb02
CM
523 0x0000FFFF, /* dst_mask. */
524 TRUE), /* pcrel_offset. */
3b55e94a 525
0f64bb02
CM
526 HOWTO (R_huimm16, /* type. */
527 16, /* rightshift. */
528 1, /* size (0 = byte, 1 = short, 2 = long). */
529 16, /* bitsize. */
530 FALSE, /* pc_relative. */
531 0, /* bitpos. */
532 complain_overflow_unsigned, /* complain_on_overflow. */
533 bfin_imm16_reloc, /* special_function. */
534 "R_huimm16", /* name. */
535 FALSE, /* partial_inplace. */
f4707595 536 0, /* src_mask. */
0f64bb02
CM
537 0x0000FFFF, /* dst_mask. */
538 TRUE), /* pcrel_offset. */
539
540 HOWTO (R_pcrel12_jump_s, /* type. */
541 1, /* rightshift. */
542 1, /* size (0 = byte, 1 = short, 2 = long). */
543 12, /* bitsize. */
544 TRUE, /* pc_relative. */
545 0, /* bitpos. */
546 complain_overflow_signed, /* complain_on_overflow. */
547 bfin_bfd_reloc, /* special_function. */
548 "R_pcrel12_jump_s", /* name. */
549 FALSE, /* partial_inplace. */
f4707595 550 0, /* src_mask. */
0f64bb02
CM
551 0x00000FFF, /* dst_mask. */
552 TRUE), /* pcrel_offset. */
553
554 HOWTO (R_pcrel24_jump_x, /* type. */
555 1, /* rightshift. */
556 2, /* size (0 = byte, 1 = short, 2 = long). */
557 24, /* bitsize. */
558 TRUE, /* pc_relative. */
559 0, /* bitpos. */
560 complain_overflow_signed, /* complain_on_overflow. */
561 bfin_pcrel24_reloc, /* special_function. */
562 "R_pcrel24_jump_x", /* name. */
563 FALSE, /* partial_inplace. */
f4707595 564 0, /* src_mask. */
0f64bb02
CM
565 0x00FFFFFF, /* dst_mask. */
566 TRUE), /* pcrel_offset. */
567
568 HOWTO (R_pcrel24, /* type. */
569 1, /* rightshift. */
570 2, /* size (0 = byte, 1 = short, 2 = long). */
571 24, /* bitsize. */
572 TRUE, /* pc_relative. */
573 0, /* bitpos. */
574 complain_overflow_signed, /* complain_on_overflow. */
575 bfin_pcrel24_reloc, /* special_function. */
576 "R_pcrel24", /* name. */
577 FALSE, /* partial_inplace. */
f4707595 578 0, /* src_mask. */
0f64bb02
CM
579 0x00FFFFFF, /* dst_mask. */
580 TRUE), /* pcrel_offset. */
581
582 HOWTO (R_unusedb, /* type. */
583 0, /* rightshift. */
584 2, /* size (0 = byte, 1 = short, 2 = long). */
585 32, /* bitsize. */
586 FALSE, /* pc_relative. */
587 0, /* bitpos. */
588 complain_overflow_dont, /* complain_on_overflow. */
589 bfd_elf_generic_reloc, /* special_function. */
590 "R_unusedb", /* name. */
591 FALSE, /* partial_inplace. */
592 0, /* src_mask. */
593 0, /* dst_mask. */
594 FALSE), /* pcrel_offset. */
595
596 HOWTO (R_unusedc, /* type. */
597 0, /* rightshift. */
598 2, /* size (0 = byte, 1 = short, 2 = long). */
599 32, /* bitsize. */
600 FALSE, /* pc_relative. */
601 0, /* bitpos. */
602 complain_overflow_dont, /* complain_on_overflow. */
603 bfd_elf_generic_reloc, /* special_function. */
604 "R_unusedc", /* name. */
605 FALSE, /* partial_inplace. */
606 0, /* src_mask. */
607 0, /* dst_mask. */
608 FALSE), /* pcrel_offset. */
609
610 HOWTO (R_pcrel24_jump_l, /* type. */
611 1, /* rightshift. */
612 2, /* size (0 = byte, 1 = short, 2 = long). */
613 24, /* bitsize. */
614 TRUE, /* pc_relative. */
615 0, /* bitpos. */
616 complain_overflow_signed, /* complain_on_overflow. */
617 bfin_pcrel24_reloc, /* special_function. */
618 "R_pcrel24_jump_l", /* name. */
619 FALSE, /* partial_inplace. */
f4707595 620 0, /* src_mask. */
0f64bb02
CM
621 0x00FFFFFF, /* dst_mask. */
622 TRUE), /* pcrel_offset. */
623
624 HOWTO (R_pcrel24_call_x, /* type. */
625 1, /* rightshift. */
626 2, /* size (0 = byte, 1 = short, 2 = long). */
627 24, /* bitsize. */
628 TRUE, /* pc_relative. */
629 0, /* bitpos. */
630 complain_overflow_signed, /* complain_on_overflow. */
631 bfin_pcrel24_reloc, /* special_function. */
632 "R_pcrel24_call_x", /* name. */
633 FALSE, /* partial_inplace. */
f4707595 634 0, /* src_mask. */
0f64bb02
CM
635 0x00FFFFFF, /* dst_mask. */
636 TRUE), /* pcrel_offset. */
637
638 HOWTO (R_var_eq_symb, /* type. */
639 0, /* rightshift. */
640 2, /* size (0 = byte, 1 = short, 2 = long). */
641 32, /* bitsize. */
642 FALSE, /* pc_relative. */
643 0, /* bitpos. */
644 complain_overflow_bitfield, /* complain_on_overflow. */
645 bfin_bfd_reloc, /* special_function. */
646 "R_var_eq_symb", /* name. */
647 FALSE, /* partial_inplace. */
648 0, /* src_mask. */
649 0, /* dst_mask. */
650 FALSE), /* pcrel_offset. */
651
652 HOWTO (R_byte_data, /* type. */
653 0, /* rightshift. */
654 0, /* size (0 = byte, 1 = short, 2 = long). */
655 8, /* bitsize. */
656 FALSE, /* pc_relative. */
657 0, /* bitpos. */
658 complain_overflow_unsigned, /* complain_on_overflow. */
659 bfin_bfd_reloc, /* special_function. */
660 "R_byte_data", /* name. */
661 FALSE, /* partial_inplace. */
f4707595 662 0, /* src_mask. */
0f64bb02
CM
663 0xFF, /* dst_mask. */
664 TRUE), /* pcrel_offset. */
665
666 HOWTO (R_byte2_data, /* type. */
667 0, /* rightshift. */
668 1, /* size (0 = byte, 1 = short, 2 = long). */
669 16, /* bitsize. */
670 FALSE, /* pc_relative. */
671 0, /* bitpos. */
672 complain_overflow_signed, /* complain_on_overflow. */
673 bfin_bfd_reloc, /* special_function. */
674 "R_byte2_data", /* name. */
675 FALSE, /* partial_inplace. */
f4707595 676 0, /* src_mask. */
0f64bb02
CM
677 0xFFFF, /* dst_mask. */
678 TRUE), /* pcrel_offset. */
679
680 HOWTO (R_byte4_data, /* type. */
681 0, /* rightshift. */
682 2, /* size (0 = byte, 1 = short, 2 = long). */
683 32, /* bitsize. */
684 FALSE, /* pc_relative. */
685 0, /* bitpos. */
686 complain_overflow_unsigned, /* complain_on_overflow. */
687 bfin_byte4_reloc, /* special_function. */
688 "R_byte4_data", /* name. */
689 FALSE, /* partial_inplace. */
f4707595 690 0, /* src_mask. */
0f64bb02
CM
691 0xFFFFFFFF, /* dst_mask. */
692 TRUE), /* pcrel_offset. */
693
694 HOWTO (R_pcrel11, /* type. */
695 1, /* rightshift. */
696 1, /* size (0 = byte, 1 = short, 2 = long). */
697 10, /* bitsize. */
698 TRUE, /* pc_relative. */
699 0, /* bitpos. */
700 complain_overflow_unsigned, /* complain_on_overflow. */
701 bfin_bfd_reloc, /* special_function. */
702 "R_pcrel11", /* name. */
703 FALSE, /* partial_inplace. */
f4707595 704 0, /* src_mask. */
0f64bb02
CM
705 0x000003FF, /* dst_mask. */
706 FALSE), /* pcrel_offset. */
48d502e1
BS
707
708
709 /* A 18-bit signed operand with the GOT offset for the address of
710 the symbol. */
711 HOWTO (R_BFIN_GOT17M4, /* type */
712 2, /* rightshift */
713 1, /* size (0 = byte, 1 = short, 2 = long) */
714 16, /* bitsize */
715 FALSE, /* pc_relative */
716 0, /* bitpos */
717 complain_overflow_signed, /* complain_on_overflow */
718 bfd_elf_generic_reloc, /* special_function */
5dff4664 719 "R_BFIN_GOT17M4", /* name */
48d502e1
BS
720 FALSE, /* partial_inplace */
721 0xffff, /* src_mask */
722 0xffff, /* dst_mask */
723 FALSE), /* pcrel_offset */
724
725 /* The upper 16 bits of the GOT offset for the address of the
726 symbol. */
727 HOWTO (R_BFIN_GOTHI, /* type */
728 0, /* rightshift */
729 1, /* size (0 = byte, 1 = short, 2 = long) */
730 16, /* bitsize */
731 FALSE, /* pc_relative */
732 0, /* bitpos */
733 complain_overflow_dont, /* complain_on_overflow */
734 bfd_elf_generic_reloc, /* special_function */
735 "R_BFIN_GOTHI", /* name */
736 FALSE, /* partial_inplace */
737 0xffff, /* src_mask */
738 0xffff, /* dst_mask */
739 FALSE), /* pcrel_offset */
740
741 /* The lower 16 bits of the GOT offset for the address of the
742 symbol. */
743 HOWTO (R_BFIN_GOTLO, /* type */
744 0, /* rightshift */
745 1, /* size (0 = byte, 1 = short, 2 = long) */
746 16, /* bitsize */
747 FALSE, /* pc_relative */
748 0, /* bitpos */
749 complain_overflow_dont, /* complain_on_overflow */
750 bfd_elf_generic_reloc, /* special_function */
751 "R_BFIN_GOTLO", /* name */
752 FALSE, /* partial_inplace */
753 0xffff, /* src_mask */
754 0xffff, /* dst_mask */
755 FALSE), /* pcrel_offset */
756
757 /* The 32-bit address of the canonical descriptor of a function. */
758 HOWTO (R_BFIN_FUNCDESC, /* type */
759 0, /* rightshift */
760 2, /* size (0 = byte, 1 = short, 2 = long) */
761 32, /* bitsize */
762 FALSE, /* pc_relative */
763 0, /* bitpos */
764 complain_overflow_bitfield, /* complain_on_overflow */
765 bfd_elf_generic_reloc, /* special_function */
766 "R_BFIN_FUNCDESC", /* name */
767 FALSE, /* partial_inplace */
768 0xffffffff, /* src_mask */
769 0xffffffff, /* dst_mask */
770 FALSE), /* pcrel_offset */
771
772 /* A 12-bit signed operand with the GOT offset for the address of
773 canonical descriptor of a function. */
774 HOWTO (R_BFIN_FUNCDESC_GOT17M4, /* type */
775 2, /* rightshift */
776 1, /* size (0 = byte, 1 = short, 2 = long) */
777 16, /* bitsize */
778 FALSE, /* pc_relative */
779 0, /* bitpos */
780 complain_overflow_signed, /* complain_on_overflow */
781 bfd_elf_generic_reloc, /* special_function */
782 "R_BFIN_FUNCDESC_GOT17M4", /* name */
783 FALSE, /* partial_inplace */
784 0xffff, /* src_mask */
785 0xffff, /* dst_mask */
786 FALSE), /* pcrel_offset */
787
788 /* The upper 16 bits of the GOT offset for the address of the
789 canonical descriptor of a function. */
790 HOWTO (R_BFIN_FUNCDESC_GOTHI, /* type */
791 0, /* rightshift */
792 1, /* size (0 = byte, 1 = short, 2 = long) */
793 16, /* bitsize */
794 FALSE, /* pc_relative */
795 0, /* bitpos */
796 complain_overflow_dont, /* complain_on_overflow */
797 bfd_elf_generic_reloc, /* special_function */
798 "R_BFIN_FUNCDESC_GOTHI", /* name */
799 FALSE, /* partial_inplace */
800 0xffff, /* src_mask */
801 0xffff, /* dst_mask */
802 FALSE), /* pcrel_offset */
803
804 /* The lower 16 bits of the GOT offset for the address of the
805 canonical descriptor of a function. */
806 HOWTO (R_BFIN_FUNCDESC_GOTLO, /* type */
807 0, /* rightshift */
808 1, /* size (0 = byte, 1 = short, 2 = long) */
809 16, /* bitsize */
810 FALSE, /* pc_relative */
811 0, /* bitpos */
812 complain_overflow_dont, /* complain_on_overflow */
813 bfd_elf_generic_reloc, /* special_function */
814 "R_BFIN_FUNCDESC_GOTLO", /* name */
815 FALSE, /* partial_inplace */
816 0xffff, /* src_mask */
817 0xffff, /* dst_mask */
818 FALSE), /* pcrel_offset */
819
820 /* The 32-bit address of the canonical descriptor of a function. */
821 HOWTO (R_BFIN_FUNCDESC_VALUE, /* type */
822 0, /* rightshift */
823 2, /* size (0 = byte, 1 = short, 2 = long) */
824 64, /* bitsize */
825 FALSE, /* pc_relative */
826 0, /* bitpos */
827 complain_overflow_bitfield, /* complain_on_overflow */
828 bfd_elf_generic_reloc, /* special_function */
829 "R_BFIN_FUNCDESC_VALUE", /* name */
830 FALSE, /* partial_inplace */
831 0xffffffff, /* src_mask */
832 0xffffffff, /* dst_mask */
833 FALSE), /* pcrel_offset */
834
835 /* A 12-bit signed operand with the GOT offset for the address of
836 canonical descriptor of a function. */
837 HOWTO (R_BFIN_FUNCDESC_GOTOFF17M4, /* type */
838 2, /* rightshift */
839 1, /* size (0 = byte, 1 = short, 2 = long) */
840 16, /* bitsize */
841 FALSE, /* pc_relative */
842 0, /* bitpos */
843 complain_overflow_signed, /* complain_on_overflow */
844 bfd_elf_generic_reloc, /* special_function */
845 "R_BFIN_FUNCDESC_GOTOFF17M4", /* name */
846 FALSE, /* partial_inplace */
847 0xffff, /* src_mask */
848 0xffff, /* dst_mask */
849 FALSE), /* pcrel_offset */
850
851 /* The upper 16 bits of the GOT offset for the address of the
852 canonical descriptor of a function. */
853 HOWTO (R_BFIN_FUNCDESC_GOTOFFHI, /* type */
854 0, /* rightshift */
855 1, /* size (0 = byte, 1 = short, 2 = long) */
856 16, /* bitsize */
857 FALSE, /* pc_relative */
858 0, /* bitpos */
859 complain_overflow_dont, /* complain_on_overflow */
860 bfd_elf_generic_reloc, /* special_function */
861 "R_BFIN_FUNCDESC_GOTOFFHI", /* name */
862 FALSE, /* partial_inplace */
863 0xffff, /* src_mask */
864 0xffff, /* dst_mask */
865 FALSE), /* pcrel_offset */
866
867 /* The lower 16 bits of the GOT offset for the address of the
868 canonical descriptor of a function. */
869 HOWTO (R_BFIN_FUNCDESC_GOTOFFLO, /* type */
870 0, /* rightshift */
871 1, /* size (0 = byte, 1 = short, 2 = long) */
872 16, /* bitsize */
873 FALSE, /* pc_relative */
874 0, /* bitpos */
875 complain_overflow_dont, /* complain_on_overflow */
876 bfd_elf_generic_reloc, /* special_function */
877 "R_BFIN_FUNCDESC_GOTOFFLO", /* name */
878 FALSE, /* partial_inplace */
879 0xffff, /* src_mask */
880 0xffff, /* dst_mask */
881 FALSE), /* pcrel_offset */
882
883 /* A 12-bit signed operand with the GOT offset for the address of
884 the symbol. */
885 HOWTO (R_BFIN_GOTOFF17M4, /* type */
886 2, /* rightshift */
887 1, /* size (0 = byte, 1 = short, 2 = long) */
888 16, /* bitsize */
889 FALSE, /* pc_relative */
890 0, /* bitpos */
891 complain_overflow_signed, /* complain_on_overflow */
892 bfd_elf_generic_reloc, /* special_function */
893 "R_BFIN_GOTOFF17M4", /* name */
894 FALSE, /* partial_inplace */
895 0xffff, /* src_mask */
896 0xffff, /* dst_mask */
897 FALSE), /* pcrel_offset */
898
899 /* The upper 16 bits of the GOT offset for the address of the
900 symbol. */
901 HOWTO (R_BFIN_GOTOFFHI, /* type */
902 0, /* rightshift */
903 1, /* size (0 = byte, 1 = short, 2 = long) */
904 16, /* bitsize */
905 FALSE, /* pc_relative */
906 0, /* bitpos */
907 complain_overflow_dont, /* complain_on_overflow */
908 bfd_elf_generic_reloc, /* special_function */
909 "R_BFIN_GOTOFFHI", /* name */
910 FALSE, /* partial_inplace */
911 0xffff, /* src_mask */
912 0xffff, /* dst_mask */
913 FALSE), /* pcrel_offset */
914
915 /* The lower 16 bits of the GOT offset for the address of the
916 symbol. */
917 HOWTO (R_BFIN_GOTOFFLO, /* type */
918 0, /* rightshift */
919 1, /* size (0 = byte, 1 = short, 2 = long) */
920 16, /* bitsize */
921 FALSE, /* pc_relative */
922 0, /* bitpos */
923 complain_overflow_dont, /* complain_on_overflow */
924 bfd_elf_generic_reloc, /* special_function */
925 "R_BFIN_GOTOFFLO", /* name */
926 FALSE, /* partial_inplace */
927 0xffff, /* src_mask */
928 0xffff, /* dst_mask */
929 FALSE), /* pcrel_offset */
0f64bb02
CM
930};
931
0f64bb02
CM
932static reloc_howto_type bfin_gnuext_howto_table [] =
933{
934 HOWTO (R_pltpc, /* type. */
935 0, /* rightshift. */
936 1, /* size (0 = byte, 1 = short, 2 = long). */
937 16, /* bitsize. */
938 FALSE, /* pc_relative. */
939 0, /* bitpos. */
940 complain_overflow_bitfield, /* complain_on_overflow. */
941 bfin_pltpc_reloc, /* special_function. */
942 "R_pltpc", /* name. */
943 FALSE, /* partial_inplace. */
944 0xffff, /* src_mask. */
945 0xffff, /* dst_mask. */
946 FALSE), /* pcrel_offset. */
947
948 HOWTO (R_got, /* type. */
949 0, /* rightshift. */
950 1, /* size (0 = byte, 1 = short, 2 = long). */
951 16, /* bitsize. */
952 FALSE, /* pc_relative. */
953 0, /* bitpos. */
954 complain_overflow_bitfield, /* complain_on_overflow. */
955 bfd_elf_generic_reloc, /* special_function. */
956 "R_got", /* name. */
957 FALSE, /* partial_inplace. */
958 0x7fff, /* src_mask. */
959 0x7fff, /* dst_mask. */
960 FALSE), /* pcrel_offset. */
961
962/* GNU extension to record C++ vtable hierarchy. */
963 HOWTO (R_BFIN_GNU_VTINHERIT, /* type. */
964 0, /* rightshift. */
965 2, /* size (0 = byte, 1 = short, 2 = long). */
966 0, /* bitsize. */
967 FALSE, /* pc_relative. */
968 0, /* bitpos. */
969 complain_overflow_dont, /* complain_on_overflow. */
970 NULL, /* special_function. */
971 "R_BFIN_GNU_VTINHERIT", /* name. */
972 FALSE, /* partial_inplace. */
973 0, /* src_mask. */
974 0, /* dst_mask. */
975 FALSE), /* pcrel_offset. */
976
977/* GNU extension to record C++ vtable member usage. */
978 HOWTO (R_BFIN_GNU_VTENTRY, /* type. */
979 0, /* rightshift. */
980 2, /* size (0 = byte, 1 = short, 2 = long). */
981 0, /* bitsize. */
982 FALSE, /* pc_relative. */
983 0, /* bitpos. */
984 complain_overflow_dont, /* complain_on_overflow. */
985 _bfd_elf_rel_vtable_reloc_fn, /* special_function. */
986 "R_BFIN_GNU_VTENTRY", /* name. */
987 FALSE, /* partial_inplace. */
988 0, /* src_mask. */
989 0, /* dst_mask. */
990 FALSE) /* pcrel_offset. */
991};
992
993struct bfin_reloc_map
994{
995 bfd_reloc_code_real_type bfd_reloc_val;
996 unsigned int bfin_reloc_val;
997};
998
999static const struct bfin_reloc_map bfin_reloc_map [] =
1000{
1001 { BFD_RELOC_NONE, R_unused0 },
1002 { BFD_RELOC_BFIN_5_PCREL, R_pcrel5m2 },
1003 { BFD_RELOC_NONE, R_unused1 },
1004 { BFD_RELOC_BFIN_10_PCREL, R_pcrel10 },
1005 { BFD_RELOC_BFIN_12_PCREL_JUMP, R_pcrel12_jump },
1006 { BFD_RELOC_BFIN_16_IMM, R_rimm16 },
1007 { BFD_RELOC_BFIN_16_LOW, R_luimm16 },
1008 { BFD_RELOC_BFIN_16_HIGH, R_huimm16 },
1009 { BFD_RELOC_BFIN_12_PCREL_JUMP_S, R_pcrel12_jump_s },
1010 { BFD_RELOC_24_PCREL, R_pcrel24 },
1011 { BFD_RELOC_24_PCREL, R_pcrel24 },
1012 { BFD_RELOC_BFIN_24_PCREL_JUMP_L, R_pcrel24_jump_l },
1013 { BFD_RELOC_NONE, R_unusedb },
1014 { BFD_RELOC_NONE, R_unusedc },
1015 { BFD_RELOC_BFIN_24_PCREL_CALL_X, R_pcrel24_call_x },
1016 { BFD_RELOC_8, R_byte_data },
1017 { BFD_RELOC_16, R_byte2_data },
1018 { BFD_RELOC_32, R_byte4_data },
1019 { BFD_RELOC_BFIN_11_PCREL, R_pcrel11 },
1020 { BFD_RELOC_BFIN_GOT, R_got },
1021 { BFD_RELOC_BFIN_PLTPC, R_pltpc },
48d502e1
BS
1022
1023 { BFD_RELOC_BFIN_GOT17M4, R_BFIN_GOT17M4 },
1024 { BFD_RELOC_BFIN_GOTHI, R_BFIN_GOTHI },
1025 { BFD_RELOC_BFIN_GOTLO, R_BFIN_GOTLO },
1026 { BFD_RELOC_BFIN_FUNCDESC, R_BFIN_FUNCDESC },
1027 { BFD_RELOC_BFIN_FUNCDESC_GOT17M4, R_BFIN_FUNCDESC_GOT17M4 },
1028 { BFD_RELOC_BFIN_FUNCDESC_GOTHI, R_BFIN_FUNCDESC_GOTHI },
1029 { BFD_RELOC_BFIN_FUNCDESC_GOTLO, R_BFIN_FUNCDESC_GOTLO },
1030 { BFD_RELOC_BFIN_FUNCDESC_VALUE, R_BFIN_FUNCDESC_VALUE },
1031 { BFD_RELOC_BFIN_FUNCDESC_GOTOFF17M4, R_BFIN_FUNCDESC_GOTOFF17M4 },
1032 { BFD_RELOC_BFIN_FUNCDESC_GOTOFFHI, R_BFIN_FUNCDESC_GOTOFFHI },
1033 { BFD_RELOC_BFIN_FUNCDESC_GOTOFFLO, R_BFIN_FUNCDESC_GOTOFFLO },
1034 { BFD_RELOC_BFIN_GOTOFF17M4, R_BFIN_GOTOFF17M4 },
1035 { BFD_RELOC_BFIN_GOTOFFHI, R_BFIN_GOTOFFHI },
1036 { BFD_RELOC_BFIN_GOTOFFLO, R_BFIN_GOTOFFLO },
1037
0f64bb02
CM
1038 { BFD_RELOC_VTABLE_INHERIT, R_BFIN_GNU_VTINHERIT },
1039 { BFD_RELOC_VTABLE_ENTRY, R_BFIN_GNU_VTENTRY },
0f64bb02
CM
1040};
1041
1042
1043static void
1044bfin_info_to_howto (bfd *abfd ATTRIBUTE_UNUSED,
1045 arelent *cache_ptr,
1046 Elf_Internal_Rela *dst)
1047{
1048 unsigned int r_type;
1049
1050 r_type = ELF32_R_TYPE (dst->r_info);
1051
1052 if (r_type <= BFIN_RELOC_MAX)
1053 cache_ptr->howto = &bfin_howto_table [r_type];
1054
0f64bb02
CM
1055 else if (r_type >= BFIN_GNUEXT_RELOC_MIN && r_type <= BFIN_GNUEXT_RELOC_MAX)
1056 cache_ptr->howto = &bfin_gnuext_howto_table [r_type - BFIN_GNUEXT_RELOC_MIN];
1057
1058 else
1059 cache_ptr->howto = (reloc_howto_type *) NULL;
0f64bb02 1060}
157090f7 1061
0f64bb02
CM
1062/* Given a BFD reloc type, return the howto. */
1063static reloc_howto_type *
1064bfin_bfd_reloc_type_lookup (bfd * abfd ATTRIBUTE_UNUSED,
1065 bfd_reloc_code_real_type code)
1066{
1067 unsigned int i;
1068 unsigned int r_type = BFIN_RELOC_MIN;
1069
1070 for (i = sizeof (bfin_reloc_map) / sizeof (bfin_reloc_map[0]); --i;)
1071 if (bfin_reloc_map[i].bfd_reloc_val == code)
1072 r_type = bfin_reloc_map[i].bfin_reloc_val;
1073
1074 if (r_type <= BFIN_RELOC_MAX && r_type > BFIN_RELOC_MIN)
1075 return &bfin_howto_table [r_type];
1076
0f64bb02
CM
1077 else if (r_type >= BFIN_GNUEXT_RELOC_MIN && r_type <= BFIN_GNUEXT_RELOC_MAX)
1078 return &bfin_gnuext_howto_table [r_type - BFIN_GNUEXT_RELOC_MIN];
1079
1080 return (reloc_howto_type *) NULL;
157090f7 1081}
0f64bb02 1082
157090f7
AM
1083static reloc_howto_type *
1084bfin_bfd_reloc_name_lookup (bfd *abfd ATTRIBUTE_UNUSED,
1085 const char *r_name)
1086{
1087 unsigned int i;
1088
1089 for (i = 0;
1090 i < (sizeof (bfin_howto_table)
1091 / sizeof (bfin_howto_table[0]));
1092 i++)
1093 if (bfin_howto_table[i].name != NULL
1094 && strcasecmp (bfin_howto_table[i].name, r_name) == 0)
1095 return &bfin_howto_table[i];
1096
1097 for (i = 0;
1098 i < (sizeof (bfin_gnuext_howto_table)
1099 / sizeof (bfin_gnuext_howto_table[0]));
1100 i++)
1101 if (bfin_gnuext_howto_table[i].name != NULL
1102 && strcasecmp (bfin_gnuext_howto_table[i].name, r_name) == 0)
1103 return &bfin_gnuext_howto_table[i];
1104
1105 return NULL;
0f64bb02 1106}
157090f7 1107
0f64bb02
CM
1108/* Given a bfin relocation type, return the howto. */
1109static reloc_howto_type *
1110bfin_reloc_type_lookup (bfd * abfd ATTRIBUTE_UNUSED,
1111 unsigned int r_type)
1112{
1113 if (r_type <= BFIN_RELOC_MAX)
1114 return &bfin_howto_table [r_type];
1115
0f64bb02
CM
1116 else if (r_type >= BFIN_GNUEXT_RELOC_MIN && r_type <= BFIN_GNUEXT_RELOC_MAX)
1117 return &bfin_gnuext_howto_table [r_type - BFIN_GNUEXT_RELOC_MIN];
1118
1119 return (reloc_howto_type *) NULL;
0f64bb02
CM
1120}
1121
1122/* Return TRUE if the name is a local label.
1123 bfin local labels begin with L$. */
1124static bfd_boolean
1125bfin_is_local_label_name (
1126 bfd *abfd ATTRIBUTE_UNUSED,
1127 const char *label)
1128{
1129 if (label[0] == 'L' && label[1] == '$' )
1130 return TRUE;
1131
1132 return _bfd_elf_is_local_label_name (abfd, label);
1133}
c96a8570
BS
1134\f
1135/* Look through the relocs for a section during the first phase, and
1136 allocate space in the global offset table or procedure linkage
1137 table. */
0f64bb02 1138
c96a8570
BS
1139static bfd_boolean
1140bfin_check_relocs (bfd * abfd,
1141 struct bfd_link_info *info,
1142 asection *sec,
1143 const Elf_Internal_Rela *relocs)
48d502e1 1144{
c96a8570
BS
1145 bfd *dynobj;
1146 Elf_Internal_Shdr *symtab_hdr;
1147 struct elf_link_hash_entry **sym_hashes;
1148 bfd_signed_vma *local_got_refcounts;
1149 const Elf_Internal_Rela *rel;
1150 const Elf_Internal_Rela *rel_end;
48d502e1 1151 asection *sgot;
c96a8570
BS
1152 asection *srelgot;
1153 asection *sreloc;
1154 if (info->relocatable)
1155 return TRUE;
48d502e1 1156
c96a8570
BS
1157 dynobj = elf_hash_table (info)->dynobj;
1158 symtab_hdr = &elf_tdata (abfd)->symtab_hdr;
1159 sym_hashes = elf_sym_hashes (abfd);
1160 local_got_refcounts = elf_local_got_refcounts (abfd);
48d502e1 1161
c96a8570
BS
1162 sgot = NULL;
1163 srelgot = NULL;
1164 sreloc = NULL;
48d502e1 1165
c96a8570
BS
1166 rel_end = relocs + sec->reloc_count;
1167 for (rel = relocs; rel < rel_end; rel++)
48d502e1 1168 {
c96a8570
BS
1169 unsigned long r_symndx;
1170 struct elf_link_hash_entry *h;
48d502e1 1171
c96a8570
BS
1172 r_symndx = ELF32_R_SYM (rel->r_info);
1173 if (r_symndx < symtab_hdr->sh_info)
1174 h = NULL;
1175 else
1176 h = sym_hashes[r_symndx - symtab_hdr->sh_info];
48d502e1 1177
c96a8570
BS
1178 switch (ELF32_R_TYPE (rel->r_info))
1179 {
1180 /* This relocation describes the C++ object vtable hierarchy.
1181 Reconstruct it for later use during GC. */
1182 case R_BFIN_GNU_VTINHERIT:
1183 if (!bfd_elf_gc_record_vtinherit (abfd, sec, h, rel->r_offset))
1184 return FALSE;
1185 break;
48d502e1 1186
c96a8570
BS
1187 /* This relocation describes which C++ vtable entries
1188 are actually used. Record for later use during GC. */
1189 case R_BFIN_GNU_VTENTRY:
1190 BFD_ASSERT (h != NULL);
1191 if (h != NULL
1192 && !bfd_elf_gc_record_vtentry (abfd, sec, h, rel->r_addend))
1193 return FALSE;
1194 break;
48d502e1 1195
c96a8570
BS
1196 case R_got:
1197 if (h != NULL
1198 && strcmp (h->root.root.string, "__GLOBAL_OFFSET_TABLE_") == 0)
1199 break;
1200 /* Fall through. */
48d502e1 1201
c96a8570
BS
1202 if (dynobj == NULL)
1203 {
1204 /* Create the .got section. */
1205 elf_hash_table (info)->dynobj = dynobj = abfd;
1206 if (!_bfd_elf_create_got_section (dynobj, info))
1207 return FALSE;
1208 }
48d502e1 1209
c96a8570
BS
1210 if (sgot == NULL)
1211 {
1212 sgot = bfd_get_section_by_name (dynobj, ".got");
1213 BFD_ASSERT (sgot != NULL);
1214 }
48d502e1 1215
c96a8570
BS
1216 if (srelgot == NULL && (h != NULL || info->shared))
1217 {
1218 srelgot = bfd_get_section_by_name (dynobj, ".rela.got");
1219 if (srelgot == NULL)
1220 {
1221 flagword flags = (SEC_ALLOC | SEC_LOAD | SEC_HAS_CONTENTS
1222 | SEC_IN_MEMORY | SEC_LINKER_CREATED
1223 | SEC_READONLY);
1224 srelgot = bfd_make_section_with_flags (dynobj, ".rela.got",
1225 flags);
1226 if (srelgot == NULL
1227 || !bfd_set_section_alignment (dynobj, srelgot, 2))
1228 return FALSE;
1229 }
1230 }
48d502e1 1231
c96a8570
BS
1232 if (h != NULL)
1233 {
1234 if (h->got.refcount == 0)
1235 {
1236 /* Make sure this symbol is output as a dynamic symbol. */
1237 if (h->dynindx == -1 && !h->forced_local)
1238 {
1239 if (!bfd_elf_link_record_dynamic_symbol (info, h))
1240 return FALSE;
1241 }
48d502e1 1242
c96a8570
BS
1243 /* Allocate space in the .got section. */
1244 sgot->size += 4;
1245 /* Allocate relocation space. */
1246 srelgot->size += sizeof (Elf32_External_Rela);
1247 }
1248 h->got.refcount++;
1249 }
1250 else
1251 {
1252 /* This is a global offset table entry for a local symbol. */
1253 if (local_got_refcounts == NULL)
1254 {
1255 bfd_size_type size;
48d502e1 1256
c96a8570
BS
1257 size = symtab_hdr->sh_info;
1258 size *= sizeof (bfd_signed_vma);
1259 local_got_refcounts = ((bfd_signed_vma *)
1260 bfd_zalloc (abfd, size));
1261 if (local_got_refcounts == NULL)
1262 return FALSE;
1263 elf_local_got_refcounts (abfd) = local_got_refcounts;
1264 }
1265 if (local_got_refcounts[r_symndx] == 0)
1266 {
1267 sgot->size += 4;
1268 if (info->shared)
1269 {
1270 /* If we are generating a shared object, we need to
1271 output a R_68K_RELATIVE reloc so that the dynamic
1272 linker can adjust this GOT entry. */
1273 srelgot->size += sizeof (Elf32_External_Rela);
1274 }
1275 }
1276 local_got_refcounts[r_symndx]++;
1277 }
1278 break;
48d502e1 1279
c96a8570
BS
1280 default:
1281 break;
1282 }
1283 }
1284
1285 return TRUE;
48d502e1
BS
1286}
1287
c96a8570
BS
1288static enum elf_reloc_type_class
1289elf32_bfin_reloc_type_class (const Elf_Internal_Rela * rela)
48d502e1 1290{
c96a8570
BS
1291 switch ((int) ELF32_R_TYPE (rela->r_info))
1292 {
1293 default:
1294 return reloc_class_normal;
1295 }
1296}
1297\f
1298static bfd_reloc_status_type
1299bfin_final_link_relocate (Elf_Internal_Rela *rel, reloc_howto_type *howto,
1300 bfd *input_bfd, asection *input_section,
1301 bfd_byte *contents, bfd_vma address,
1302 bfd_vma value, bfd_vma addend)
1303{
1304 int r_type = ELF32_R_TYPE (rel->r_info);
48d502e1 1305
c96a8570
BS
1306 if (r_type == R_pcrel24 || r_type == R_pcrel24_jump_l)
1307 {
1308 bfd_reloc_status_type r = bfd_reloc_ok;
1309 bfd_vma x;
48d502e1 1310
c96a8570
BS
1311 if (address > bfd_get_section_limit (input_bfd, input_section))
1312 return bfd_reloc_outofrange;
48d502e1 1313
c96a8570 1314 value += addend;
48d502e1 1315
c96a8570
BS
1316 /* Perform usual pc-relative correction. */
1317 value -= input_section->output_section->vma + input_section->output_offset;
1318 value -= address;
48d502e1 1319
c96a8570
BS
1320 /* We are getting reloc_entry->address 2 byte off from
1321 the start of instruction. Assuming absolute postion
1322 of the reloc data. But, following code had been written assuming
1323 reloc address is starting at begining of instruction.
1324 To compensate that I have increased the value of
1325 relocation by 1 (effectively 2) and used the addr -2 instead of addr. */
48d502e1 1326
c96a8570
BS
1327 value += 2;
1328 address -= 2;
48d502e1 1329
c96a8570
BS
1330 if ((value & 0xFF000000) != 0
1331 && (value & 0xFF000000) != 0xFF000000)
1332 r = bfd_reloc_overflow;
48d502e1 1333
c96a8570 1334 value >>= 1;
48d502e1 1335
c96a8570
BS
1336 x = bfd_get_16 (input_bfd, contents + address);
1337 x = (x & 0xff00) | ((value >> 16) & 0xff);
1338 bfd_put_16 (input_bfd, x, contents + address);
48d502e1 1339
c96a8570
BS
1340 x = bfd_get_16 (input_bfd, contents + address + 2);
1341 x = value & 0xFFFF;
1342 bfd_put_16 (input_bfd, x, contents + address + 2);
1343 return r;
1344 }
48d502e1 1345
c96a8570
BS
1346 return _bfd_final_link_relocate (howto, input_bfd, input_section, contents,
1347 rel->r_offset, value, addend);
48d502e1 1348
48d502e1
BS
1349}
1350
c96a8570
BS
1351static bfd_boolean
1352bfin_relocate_section (bfd * output_bfd,
1353 struct bfd_link_info *info,
1354 bfd * input_bfd,
1355 asection * input_section,
1356 bfd_byte * contents,
1357 Elf_Internal_Rela * relocs,
1358 Elf_Internal_Sym * local_syms,
1359 asection ** local_sections)
48d502e1 1360{
c96a8570
BS
1361 bfd *dynobj;
1362 Elf_Internal_Shdr *symtab_hdr;
1363 struct elf_link_hash_entry **sym_hashes;
1364 bfd_vma *local_got_offsets;
1365 asection *sgot;
1366 asection *sreloc;
1367 Elf_Internal_Rela *rel;
1368 Elf_Internal_Rela *relend;
1369 int i = 0;
48d502e1 1370
c96a8570
BS
1371 dynobj = elf_hash_table (info)->dynobj;
1372 symtab_hdr = &elf_tdata (input_bfd)->symtab_hdr;
1373 sym_hashes = elf_sym_hashes (input_bfd);
1374 local_got_offsets = elf_local_got_offsets (input_bfd);
48d502e1 1375
c96a8570
BS
1376 sgot = NULL;
1377 sreloc = NULL;
48d502e1 1378
c96a8570
BS
1379 rel = relocs;
1380 relend = relocs + input_section->reloc_count;
1381 for (; rel < relend; rel++, i++)
1382 {
1383 int r_type;
1384 reloc_howto_type *howto;
1385 unsigned long r_symndx;
1386 struct elf_link_hash_entry *h;
1387 Elf_Internal_Sym *sym;
1388 asection *sec;
1389 bfd_vma relocation = 0;
1390 bfd_boolean unresolved_reloc;
1391 bfd_reloc_status_type r;
1392 bfd_vma address;
48d502e1 1393
c96a8570
BS
1394 r_type = ELF32_R_TYPE (rel->r_info);
1395 if (r_type < 0 || r_type >= 243)
1396 {
1397 bfd_set_error (bfd_error_bad_value);
1398 return FALSE;
1399 }
48d502e1 1400
c96a8570
BS
1401 if (r_type == R_BFIN_GNU_VTENTRY
1402 || r_type == R_BFIN_GNU_VTINHERIT)
1403 continue;
48d502e1 1404
c96a8570
BS
1405 howto = bfin_reloc_type_lookup (input_bfd, r_type);
1406 if (howto == NULL)
1407 {
1408 bfd_set_error (bfd_error_bad_value);
1409 return FALSE;
1410 }
1411 r_symndx = ELF32_R_SYM (rel->r_info);
48d502e1 1412
c96a8570
BS
1413 h = NULL;
1414 sym = NULL;
1415 sec = NULL;
1416 unresolved_reloc = FALSE;
48d502e1 1417
c96a8570
BS
1418 if (r_symndx < symtab_hdr->sh_info)
1419 {
1420 sym = local_syms + r_symndx;
1421 sec = local_sections[r_symndx];
1422 relocation = _bfd_elf_rela_local_sym (output_bfd, sym, &sec, rel);
1423 }
1424 else
1425 {
1426 bfd_boolean warned;
48d502e1 1427
c96a8570
BS
1428 RELOC_FOR_GLOBAL_SYMBOL (info, input_bfd, input_section, rel,
1429 r_symndx, symtab_hdr, sym_hashes,
1430 h, sec, relocation,
1431 unresolved_reloc, warned);
1432 }
48d502e1 1433
c96a8570
BS
1434 if (sec != NULL && elf_discarded_section (sec))
1435 {
1436 /* For relocs against symbols from removed linkonce sections,
1437 or sections discarded by a linker script, we just want the
1438 section contents zeroed. Avoid any special processing. */
1439 _bfd_clear_contents (howto, input_bfd, contents + rel->r_offset);
1440 rel->r_info = 0;
1441 rel->r_addend = 0;
1442 continue;
1443 }
48d502e1 1444
c96a8570
BS
1445 if (info->relocatable)
1446 continue;
48d502e1 1447
c96a8570 1448 address = rel->r_offset;
48d502e1 1449
c96a8570
BS
1450 /* Then, process normally. */
1451 switch (r_type)
1452 {
1453 case R_BFIN_GNU_VTINHERIT:
1454 case R_BFIN_GNU_VTENTRY:
1455 return bfd_reloc_ok;
48d502e1 1456
c96a8570
BS
1457 case R_got:
1458 /* Relocation is to the address of the entry for this symbol
1459 in the global offset table. */
1460 if (h != NULL
1461 && strcmp (h->root.root.string, "__GLOBAL_OFFSET_TABLE_") == 0)
1462 goto do_default;
1463 /* Fall through. */
1464 /* Relocation is the offset of the entry for this symbol in
1465 the global offset table. */
48d502e1 1466
c96a8570
BS
1467 {
1468 bfd_vma off;
48d502e1 1469
c96a8570
BS
1470 if (dynobj == NULL)
1471 {
1472 /* Create the .got section. */
1473 elf_hash_table (info)->dynobj = dynobj = output_bfd;
1474 if (!_bfd_elf_create_got_section (dynobj, info))
1475 return FALSE;
1476 }
48d502e1 1477
c96a8570
BS
1478 if (sgot == NULL)
1479 {
1480 sgot = bfd_get_section_by_name (dynobj, ".got");
1481 BFD_ASSERT (sgot != NULL);
1482 }
48d502e1 1483
c96a8570
BS
1484 if (h != NULL)
1485 {
1486 bfd_boolean dyn;
48d502e1 1487
c96a8570
BS
1488 off = h->got.offset;
1489 BFD_ASSERT (off != (bfd_vma) - 1);
1490 dyn = elf_hash_table (info)->dynamic_sections_created;
48d502e1 1491
c96a8570
BS
1492 if (!WILL_CALL_FINISH_DYNAMIC_SYMBOL (dyn, info->shared, h)
1493 || (info->shared
1494 && (info->symbolic
1495 || h->dynindx == -1
1496 || h->forced_local)
1497 && h->def_regular))
1498 {
1499 /* This is actually a static link, or it is a
1500 -Bsymbolic link and the symbol is defined
1501 locally, or the symbol was forced to be local
1502 because of a version file.. We must initialize
1503 this entry in the global offset table. Since
1504 the offset must always be a multiple of 4, we
1505 use the least significant bit to record whether
1506 we have initialized it already.
48d502e1 1507
c96a8570
BS
1508 When doing a dynamic link, we create a .rela.got
1509 relocation entry to initialize the value. This
1510 is done in the finish_dynamic_symbol routine. */
1511 if ((off & 1) != 0)
1512 off &= ~1;
1513 else
1514 {
1515 bfd_put_32 (output_bfd, relocation,
1516 sgot->contents + off);
1517 h->got.offset |= 1;
1518 }
1519 }
1520 else
1521 unresolved_reloc = FALSE;
1522 }
1523 else
1524 {
1525 BFD_ASSERT (local_got_offsets != NULL);
1526 off = local_got_offsets[r_symndx];
1527 BFD_ASSERT (off != (bfd_vma) - 1);
48d502e1 1528
c96a8570
BS
1529 /* The offset must always be a multiple of 4. We use
1530 the least significant bit to record whether we have
1531 already generated the necessary reloc. */
1532 if ((off & 1) != 0)
1533 off &= ~1;
1534 else
1535 {
1536 bfd_put_32 (output_bfd, relocation, sgot->contents + off);
48d502e1 1537
c96a8570
BS
1538 if (info->shared)
1539 {
1540 asection *s;
1541 Elf_Internal_Rela outrel;
1542 bfd_byte *loc;
48d502e1 1543
c96a8570
BS
1544 s = bfd_get_section_by_name (dynobj, ".rela.got");
1545 BFD_ASSERT (s != NULL);
48d502e1 1546
c96a8570
BS
1547 outrel.r_offset = (sgot->output_section->vma
1548 + sgot->output_offset + off);
1549 outrel.r_info =
1550 ELF32_R_INFO (0, R_pcrel24);
1551 outrel.r_addend = relocation;
1552 loc = s->contents;
1553 loc +=
1554 s->reloc_count++ * sizeof (Elf32_External_Rela);
1555 bfd_elf32_swap_reloca_out (output_bfd, &outrel, loc);
1556 }
48d502e1 1557
c96a8570
BS
1558 local_got_offsets[r_symndx] |= 1;
1559 }
1560 }
48d502e1 1561
c96a8570
BS
1562 relocation = sgot->output_offset + off;
1563 rel->r_addend = 0;
1564 /* bfin : preg = [preg + 17bitdiv4offset] relocation is div by 4. */
1565 relocation /= 4;
1566 }
1567 goto do_default;
1568
1569 default:
1570 do_default:
1571 r = bfin_final_link_relocate (rel, howto, input_bfd, input_section,
1572 contents, address,
1573 relocation, rel->r_addend);
1574
1575 break;
48d502e1
BS
1576 }
1577
c96a8570
BS
1578 /* Dynamic relocs are not propagated for SEC_DEBUGGING sections
1579 because such sections are not SEC_ALLOC and thus ld.so will
1580 not process them. */
1581 if (unresolved_reloc
1582 && !((input_section->flags & SEC_DEBUGGING) != 0 && h->def_dynamic))
48d502e1 1583 {
c96a8570
BS
1584 (*_bfd_error_handler)
1585 (_("%B(%A+0x%lx): unresolvable relocation against symbol `%s'"),
1586 input_bfd,
1587 input_section, (long) rel->r_offset, h->root.root.string);
1588 return FALSE;
48d502e1 1589 }
48d502e1 1590
c96a8570 1591 if (r != bfd_reloc_ok)
48d502e1 1592 {
c96a8570
BS
1593 const char *name;
1594
1595 if (h != NULL)
1596 name = h->root.root.string;
1597 else
48d502e1 1598 {
c96a8570
BS
1599 name = bfd_elf_string_from_elf_section (input_bfd,
1600 symtab_hdr->sh_link,
1601 sym->st_name);
1602 if (name == NULL)
1603 return FALSE;
1604 if (*name == '\0')
1605 name = bfd_section_name (input_bfd, sec);
48d502e1 1606 }
c96a8570
BS
1607
1608 if (r == bfd_reloc_overflow)
48d502e1 1609 {
c96a8570
BS
1610 if (!(info->callbacks->reloc_overflow
1611 (info, (h ? &h->root : NULL), name, howto->name,
1612 (bfd_vma) 0, input_bfd, input_section, rel->r_offset)))
48d502e1
BS
1613 return FALSE;
1614 }
1615 else
1616 {
c96a8570
BS
1617 (*_bfd_error_handler)
1618 (_("%B(%A+0x%lx): reloc against `%s': error %d"),
1619 input_bfd, input_section,
1620 (long) rel->r_offset, name, (int) r);
1621 return FALSE;
48d502e1 1622 }
48d502e1 1623 }
48d502e1
BS
1624 }
1625
c96a8570
BS
1626 return TRUE;
1627}
48d502e1 1628
c96a8570
BS
1629static asection *
1630bfin_gc_mark_hook (asection * sec,
1631 struct bfd_link_info *info,
1632 Elf_Internal_Rela * rel,
1633 struct elf_link_hash_entry *h,
1634 Elf_Internal_Sym * sym)
1635{
1636 if (h != NULL)
1637 switch (ELF32_R_TYPE (rel->r_info))
1638 {
1639 case R_BFIN_GNU_VTINHERIT:
1640 case R_BFIN_GNU_VTENTRY:
1641 return NULL;
1642 }
48d502e1 1643
c96a8570
BS
1644 return _bfd_elf_gc_mark_hook (sec, info, rel, h, sym);
1645}
48d502e1 1646
c96a8570 1647/* Update the got entry reference counts for the section being removed. */
48d502e1 1648
c96a8570
BS
1649static bfd_boolean
1650bfin_gc_sweep_hook (bfd * abfd,
1651 struct bfd_link_info *info,
1652 asection * sec,
1653 const Elf_Internal_Rela * relocs)
1654{
1655 Elf_Internal_Shdr *symtab_hdr;
1656 struct elf_link_hash_entry **sym_hashes;
1657 bfd_signed_vma *local_got_refcounts;
1658 const Elf_Internal_Rela *rel, *relend;
1659 bfd *dynobj;
1660 asection *sgot;
1661 asection *srelgot;
48d502e1 1662
c96a8570
BS
1663 dynobj = elf_hash_table (info)->dynobj;
1664 if (dynobj == NULL)
0f64bb02
CM
1665 return TRUE;
1666
0f64bb02
CM
1667 symtab_hdr = &elf_tdata (abfd)->symtab_hdr;
1668 sym_hashes = elf_sym_hashes (abfd);
1669 local_got_refcounts = elf_local_got_refcounts (abfd);
1670
c96a8570
BS
1671 sgot = bfd_get_section_by_name (dynobj, ".got");
1672 srelgot = bfd_get_section_by_name (dynobj, ".rela.got");
0f64bb02 1673
c96a8570
BS
1674 relend = relocs + sec->reloc_count;
1675 for (rel = relocs; rel < relend; rel++)
0f64bb02
CM
1676 {
1677 unsigned long r_symndx;
1678 struct elf_link_hash_entry *h;
1679
0f64bb02
CM
1680 switch (ELF32_R_TYPE (rel->r_info))
1681 {
0f64bb02 1682 case R_got:
c96a8570
BS
1683 r_symndx = ELF32_R_SYM (rel->r_info);
1684 if (r_symndx >= symtab_hdr->sh_info)
0f64bb02 1685 {
c96a8570
BS
1686 h = sym_hashes[r_symndx - symtab_hdr->sh_info];
1687 if (h->got.refcount > 0)
0f64bb02 1688 {
c96a8570
BS
1689 --h->got.refcount;
1690 if (h->got.refcount == 0)
0f64bb02 1691 {
c96a8570
BS
1692 /* We don't need the .got entry any more. */
1693 sgot->size -= 4;
1694 srelgot->size -= sizeof (Elf32_External_Rela);
0f64bb02 1695 }
0f64bb02 1696 }
0f64bb02 1697 }
c96a8570 1698 else if (local_got_refcounts != NULL)
0f64bb02 1699 {
c96a8570 1700 if (local_got_refcounts[r_symndx] > 0)
0f64bb02 1701 {
c96a8570
BS
1702 --local_got_refcounts[r_symndx];
1703 if (local_got_refcounts[r_symndx] == 0)
0f64bb02 1704 {
c96a8570
BS
1705 /* We don't need the .got entry any more. */
1706 sgot->size -= 4;
1707 if (info->shared)
1708 srelgot->size -= sizeof (Elf32_External_Rela);
0f64bb02
CM
1709 }
1710 }
0f64bb02
CM
1711 }
1712 break;
0f64bb02
CM
1713 default:
1714 break;
1715 }
1716 }
0f64bb02
CM
1717 return TRUE;
1718}
c96a8570
BS
1719\f
1720extern const bfd_target bfd_elf32_bfinfdpic_vec;
1721#define IS_FDPIC(bfd) ((bfd)->xvec == &bfd_elf32_bfinfdpic_vec)
0f64bb02 1722
c96a8570
BS
1723/* An extension of the elf hash table data structure, containing some
1724 additional Blackfin-specific data. */
1725struct bfinfdpic_elf_link_hash_table
c35e54f4 1726{
c96a8570 1727 struct elf_link_hash_table elf;
c35e54f4 1728
c96a8570
BS
1729 /* A pointer to the .got section. */
1730 asection *sgot;
1731 /* A pointer to the .rel.got section. */
1732 asection *sgotrel;
1733 /* A pointer to the .rofixup section. */
1734 asection *sgotfixup;
1735 /* A pointer to the .plt section. */
1736 asection *splt;
1737 /* A pointer to the .rel.plt section. */
1738 asection *spltrel;
1739 /* GOT base offset. */
1740 bfd_vma got0;
1741 /* Location of the first non-lazy PLT entry, i.e., the number of
1742 bytes taken by lazy PLT entries. */
1743 bfd_vma plt0;
1744 /* A hash table holding information about which symbols were
1745 referenced with which PIC-related relocations. */
1746 struct htab *relocs_info;
1747};
c35e54f4 1748
c96a8570 1749/* Get the Blackfin ELF linker hash table from a link_info structure. */
c35e54f4 1750
c96a8570
BS
1751#define bfinfdpic_hash_table(info) \
1752 ((struct bfinfdpic_elf_link_hash_table *) ((info)->hash))
c35e54f4 1753
c96a8570
BS
1754#define bfinfdpic_got_section(info) \
1755 (bfinfdpic_hash_table (info)->sgot)
1756#define bfinfdpic_gotrel_section(info) \
1757 (bfinfdpic_hash_table (info)->sgotrel)
1758#define bfinfdpic_gotfixup_section(info) \
1759 (bfinfdpic_hash_table (info)->sgotfixup)
1760#define bfinfdpic_plt_section(info) \
1761 (bfinfdpic_hash_table (info)->splt)
1762#define bfinfdpic_pltrel_section(info) \
1763 (bfinfdpic_hash_table (info)->spltrel)
1764#define bfinfdpic_relocs_info(info) \
1765 (bfinfdpic_hash_table (info)->relocs_info)
1766#define bfinfdpic_got_initial_offset(info) \
1767 (bfinfdpic_hash_table (info)->got0)
1768#define bfinfdpic_plt_initial_offset(info) \
1769 (bfinfdpic_hash_table (info)->plt0)
c35e54f4 1770
c96a8570
BS
1771/* The name of the dynamic interpreter. This is put in the .interp
1772 section. */
c35e54f4 1773
c96a8570 1774#define ELF_DYNAMIC_INTERPRETER "/lib/ld.so.1"
c35e54f4 1775
c96a8570 1776#define DEFAULT_STACK_SIZE 0x20000
c35e54f4 1777
c96a8570
BS
1778/* This structure is used to collect the number of entries present in
1779 each addressable range of the got. */
1780struct _bfinfdpic_dynamic_got_info
1781{
1782 /* Several bits of information about the current link. */
1783 struct bfd_link_info *info;
1784 /* Total size needed for GOT entries within the 18- or 32-bit
1785 ranges. */
1786 bfd_vma got17m4, gothilo;
1787 /* Total size needed for function descriptor entries within the 18-
1788 or 32-bit ranges. */
1789 bfd_vma fd17m4, fdhilo;
1790 /* Total size needed function descriptor entries referenced in PLT
1791 entries, that would be profitable to place in offsets close to
1792 the PIC register. */
1793 bfd_vma fdplt;
1794 /* Total size needed by lazy PLT entries. */
1795 bfd_vma lzplt;
1796 /* Number of relocations carried over from input object files. */
1797 unsigned long relocs;
1798 /* Number of fixups introduced by relocations in input object files. */
1799 unsigned long fixups;
1800};
c35e54f4 1801
c96a8570 1802/* Create a Blackfin ELF linker hash table. */
c35e54f4 1803
c96a8570
BS
1804static struct bfd_link_hash_table *
1805bfinfdpic_elf_link_hash_table_create (bfd *abfd)
1806{
1807 struct bfinfdpic_elf_link_hash_table *ret;
1808 bfd_size_type amt = sizeof (struct bfinfdpic_elf_link_hash_table);
c35e54f4 1809
c96a8570
BS
1810 ret = bfd_zalloc (abfd, amt);
1811 if (ret == NULL)
1812 return NULL;
c35e54f4 1813
c96a8570
BS
1814 if (!_bfd_elf_link_hash_table_init (&ret->elf, abfd,
1815 _bfd_elf_link_hash_newfunc,
1816 sizeof (struct elf_link_hash_entry)))
1817 {
1818 free (ret);
1819 return NULL;
1820 }
c35e54f4 1821
c96a8570
BS
1822 return &ret->elf.root;
1823}
48d502e1 1824
c96a8570
BS
1825/* Decide whether a reference to a symbol can be resolved locally or
1826 not. If the symbol is protected, we want the local address, but
1827 its function descriptor must be assigned by the dynamic linker. */
1828#define BFINFDPIC_SYM_LOCAL(INFO, H) \
1829 (_bfd_elf_symbol_refs_local_p ((H), (INFO), 1) \
1830 || ! elf_hash_table (INFO)->dynamic_sections_created)
1831#define BFINFDPIC_FUNCDESC_LOCAL(INFO, H) \
1832 ((H)->dynindx == -1 || ! elf_hash_table (INFO)->dynamic_sections_created)
48d502e1 1833
c96a8570
BS
1834/* This structure collects information on what kind of GOT, PLT or
1835 function descriptors are required by relocations that reference a
1836 certain symbol. */
1837struct bfinfdpic_relocs_info
1838{
1839 /* The index of the symbol, as stored in the relocation r_info, if
1840 we have a local symbol; -1 otherwise. */
1841 long symndx;
1842 union
1843 {
1844 /* The input bfd in which the symbol is defined, if it's a local
1845 symbol. */
1846 bfd *abfd;
1847 /* If symndx == -1, the hash table entry corresponding to a global
1848 symbol (even if it turns out to bind locally, in which case it
1849 should ideally be replaced with section's symndx + addend). */
1850 struct elf_link_hash_entry *h;
1851 } d;
1852 /* The addend of the relocation that references the symbol. */
1853 bfd_vma addend;
48d502e1 1854
c96a8570
BS
1855 /* The fields above are used to identify an entry. The fields below
1856 contain information on how an entry is used and, later on, which
1857 locations it was assigned. */
1858 /* The following 2 fields record whether the symbol+addend above was
1859 ever referenced with a GOT relocation. The 17M4 suffix indicates a
1860 GOT17M4 relocation; hilo is used for GOTLO/GOTHI pairs. */
1861 unsigned got17m4;
1862 unsigned gothilo;
1863 /* Whether a FUNCDESC relocation references symbol+addend. */
1864 unsigned fd;
1865 /* Whether a FUNCDESC_GOT relocation references symbol+addend. */
1866 unsigned fdgot17m4;
1867 unsigned fdgothilo;
1868 /* Whether a FUNCDESC_GOTOFF relocation references symbol+addend. */
1869 unsigned fdgoff17m4;
1870 unsigned fdgoffhilo;
1871 /* Whether symbol+addend is referenced with GOTOFF17M4, GOTOFFLO or
1872 GOTOFFHI relocations. The addend doesn't really matter, since we
1873 envision that this will only be used to check whether the symbol
1874 is mapped to the same segment as the got. */
1875 unsigned gotoff;
1876 /* Whether symbol+addend is referenced by a LABEL24 relocation. */
1877 unsigned call;
1878 /* Whether symbol+addend is referenced by a 32 or FUNCDESC_VALUE
1879 relocation. */
1880 unsigned sym;
1881 /* Whether we need a PLT entry for a symbol. Should be implied by
1882 something like:
1883 (call && symndx == -1 && ! BFINFDPIC_SYM_LOCAL (info, d.h)) */
1884 unsigned plt:1;
1885 /* Whether a function descriptor should be created in this link unit
1886 for symbol+addend. Should be implied by something like:
1887 (plt || fdgotoff17m4 || fdgotofflohi
1888 || ((fd || fdgot17m4 || fdgothilo)
1889 && (symndx != -1 || BFINFDPIC_FUNCDESC_LOCAL (info, d.h)))) */
1890 unsigned privfd:1;
1891 /* Whether a lazy PLT entry is needed for this symbol+addend.
1892 Should be implied by something like:
1893 (privfd && symndx == -1 && ! BFINFDPIC_SYM_LOCAL (info, d.h)
1894 && ! (info->flags & DF_BIND_NOW)) */
1895 unsigned lazyplt:1;
1896 /* Whether we've already emitted GOT relocations and PLT entries as
1897 needed for this symbol. */
1898 unsigned done:1;
48d502e1 1899
c96a8570
BS
1900 /* The number of R_byte4_data, R_BFIN_FUNCDESC and R_BFIN_FUNCDESC_VALUE
1901 relocations referencing the symbol. */
1902 unsigned relocs32, relocsfd, relocsfdv;
48d502e1 1903
c96a8570
BS
1904 /* The number of .rofixups entries and dynamic relocations allocated
1905 for this symbol, minus any that might have already been used. */
1906 unsigned fixups, dynrelocs;
48d502e1 1907
c96a8570
BS
1908 /* The offsets of the GOT entries assigned to symbol+addend, to the
1909 function descriptor's address, and to a function descriptor,
1910 respectively. Should be zero if unassigned. The offsets are
1911 counted from the value that will be assigned to the PIC register,
1912 not from the beginning of the .got section. */
1913 bfd_signed_vma got_entry, fdgot_entry, fd_entry;
1914 /* The offsets of the PLT entries assigned to symbol+addend,
1915 non-lazy and lazy, respectively. If unassigned, should be
1916 (bfd_vma)-1. */
1917 bfd_vma plt_entry, lzplt_entry;
1918};
48d502e1 1919
c96a8570
BS
1920/* Compute a hash with the key fields of an bfinfdpic_relocs_info entry. */
1921static hashval_t
1922bfinfdpic_relocs_info_hash (const void *entry_)
1923{
1924 const struct bfinfdpic_relocs_info *entry = entry_;
48d502e1 1925
c96a8570
BS
1926 return (entry->symndx == -1
1927 ? (long) entry->d.h->root.root.hash
1928 : entry->symndx + (long) entry->d.abfd->id * 257) + entry->addend;
1929}
f4707595 1930
c96a8570
BS
1931/* Test whether the key fields of two bfinfdpic_relocs_info entries are
1932 identical. */
1933static int
1934bfinfdpic_relocs_info_eq (const void *entry1, const void *entry2)
0f64bb02 1935{
c96a8570
BS
1936 const struct bfinfdpic_relocs_info *e1 = entry1;
1937 const struct bfinfdpic_relocs_info *e2 = entry2;
0f64bb02 1938
c96a8570
BS
1939 return e1->symndx == e2->symndx && e1->addend == e2->addend
1940 && (e1->symndx == -1 ? e1->d.h == e2->d.h : e1->d.abfd == e2->d.abfd);
1941}
48d502e1 1942
c96a8570
BS
1943/* Find or create an entry in a hash table HT that matches the key
1944 fields of the given ENTRY. If it's not found, memory for a new
1945 entry is allocated in ABFD's obstack. */
1946static struct bfinfdpic_relocs_info *
1947bfinfdpic_relocs_info_find (struct htab *ht,
1948 bfd *abfd,
1949 const struct bfinfdpic_relocs_info *entry,
1950 enum insert_option insert)
1951{
1952 struct bfinfdpic_relocs_info **loc =
1953 (struct bfinfdpic_relocs_info **) htab_find_slot (ht, entry, insert);
0f64bb02 1954
c96a8570
BS
1955 if (! loc)
1956 return NULL;
0f64bb02 1957
c96a8570
BS
1958 if (*loc)
1959 return *loc;
0f64bb02 1960
c96a8570 1961 *loc = bfd_zalloc (abfd, sizeof (**loc));
0f64bb02 1962
c96a8570
BS
1963 if (! *loc)
1964 return *loc;
0f64bb02 1965
c96a8570
BS
1966 (*loc)->symndx = entry->symndx;
1967 (*loc)->d = entry->d;
1968 (*loc)->addend = entry->addend;
1969 (*loc)->plt_entry = (bfd_vma)-1;
1970 (*loc)->lzplt_entry = (bfd_vma)-1;
0f64bb02 1971
c96a8570
BS
1972 return *loc;
1973}
48d502e1 1974
c96a8570
BS
1975/* Obtain the address of the entry in HT associated with H's symbol +
1976 addend, creating a new entry if none existed. ABFD is only used
1977 for memory allocation purposes. */
1978inline static struct bfinfdpic_relocs_info *
1979bfinfdpic_relocs_info_for_global (struct htab *ht,
1980 bfd *abfd,
1981 struct elf_link_hash_entry *h,
1982 bfd_vma addend,
1983 enum insert_option insert)
1984{
1985 struct bfinfdpic_relocs_info entry;
0f64bb02 1986
c96a8570
BS
1987 entry.symndx = -1;
1988 entry.d.h = h;
1989 entry.addend = addend;
f4707595 1990
c96a8570
BS
1991 return bfinfdpic_relocs_info_find (ht, abfd, &entry, insert);
1992}
48d502e1 1993
c96a8570
BS
1994/* Obtain the address of the entry in HT associated with the SYMNDXth
1995 local symbol of the input bfd ABFD, plus the addend, creating a new
1996 entry if none existed. */
1997inline static struct bfinfdpic_relocs_info *
1998bfinfdpic_relocs_info_for_local (struct htab *ht,
1999 bfd *abfd,
2000 long symndx,
2001 bfd_vma addend,
2002 enum insert_option insert)
2003{
2004 struct bfinfdpic_relocs_info entry;
ab96bf03 2005
c96a8570
BS
2006 entry.symndx = symndx;
2007 entry.d.abfd = abfd;
2008 entry.addend = addend;
48d502e1 2009
c96a8570
BS
2010 return bfinfdpic_relocs_info_find (ht, abfd, &entry, insert);
2011}
48d502e1 2012
c96a8570
BS
2013/* Merge fields set by check_relocs() of two entries that end up being
2014 mapped to the same (presumably global) symbol. */
0f64bb02 2015
c96a8570
BS
2016inline static void
2017bfinfdpic_pic_merge_early_relocs_info (struct bfinfdpic_relocs_info *e2,
2018 struct bfinfdpic_relocs_info const *e1)
2019{
2020 e2->got17m4 |= e1->got17m4;
2021 e2->gothilo |= e1->gothilo;
2022 e2->fd |= e1->fd;
2023 e2->fdgot17m4 |= e1->fdgot17m4;
2024 e2->fdgothilo |= e1->fdgothilo;
2025 e2->fdgoff17m4 |= e1->fdgoff17m4;
2026 e2->fdgoffhilo |= e1->fdgoffhilo;
2027 e2->gotoff |= e1->gotoff;
2028 e2->call |= e1->call;
2029 e2->sym |= e1->sym;
2030}
48d502e1 2031
c96a8570
BS
2032/* Every block of 65535 lazy PLT entries shares a single call to the
2033 resolver, inserted in the 32768th lazy PLT entry (i.e., entry #
2034 32767, counting from 0). All other lazy PLT entries branch to it
2035 in a single instruction. */
48d502e1 2036
c96a8570
BS
2037#define LZPLT_RESOLVER_EXTRA 10
2038#define LZPLT_NORMAL_SIZE 6
2039#define LZPLT_ENTRIES 1362
48d502e1 2040
c96a8570
BS
2041#define BFINFDPIC_LZPLT_BLOCK_SIZE ((bfd_vma) LZPLT_NORMAL_SIZE * LZPLT_ENTRIES + LZPLT_RESOLVER_EXTRA)
2042#define BFINFDPIC_LZPLT_RESOLV_LOC (LZPLT_NORMAL_SIZE * LZPLT_ENTRIES / 2)
48d502e1 2043
c96a8570 2044/* Add a dynamic relocation to the SRELOC section. */
48d502e1 2045
c96a8570
BS
2046inline static bfd_vma
2047_bfinfdpic_add_dyn_reloc (bfd *output_bfd, asection *sreloc, bfd_vma offset,
2048 int reloc_type, long dynindx, bfd_vma addend,
2049 struct bfinfdpic_relocs_info *entry)
2050{
2051 Elf_Internal_Rela outrel;
2052 bfd_vma reloc_offset;
0f64bb02 2053
c96a8570
BS
2054 outrel.r_offset = offset;
2055 outrel.r_info = ELF32_R_INFO (dynindx, reloc_type);
2056 outrel.r_addend = addend;
48d502e1 2057
c96a8570
BS
2058 reloc_offset = sreloc->reloc_count * sizeof (Elf32_External_Rel);
2059 BFD_ASSERT (reloc_offset < sreloc->size);
2060 bfd_elf32_swap_reloc_out (output_bfd, &outrel,
2061 sreloc->contents + reloc_offset);
2062 sreloc->reloc_count++;
48d502e1 2063
c96a8570
BS
2064 /* If the entry's index is zero, this relocation was probably to a
2065 linkonce section that got discarded. We reserved a dynamic
2066 relocation, but it was for another entry than the one we got at
2067 the time of emitting the relocation. Unfortunately there's no
2068 simple way for us to catch this situation, since the relocation
2069 is cleared right before calling relocate_section, at which point
2070 we no longer know what the relocation used to point to. */
2071 if (entry->symndx)
2072 {
2073 BFD_ASSERT (entry->dynrelocs > 0);
2074 entry->dynrelocs--;
2075 }
48d502e1 2076
c96a8570
BS
2077 return reloc_offset;
2078}
0f64bb02 2079
c96a8570 2080/* Add a fixup to the ROFIXUP section. */
48d502e1 2081
c96a8570
BS
2082static bfd_vma
2083_bfinfdpic_add_rofixup (bfd *output_bfd, asection *rofixup, bfd_vma offset,
2084 struct bfinfdpic_relocs_info *entry)
2085{
2086 bfd_vma fixup_offset;
8aafe8b4 2087
c96a8570
BS
2088 if (rofixup->flags & SEC_EXCLUDE)
2089 return -1;
0f64bb02 2090
c96a8570
BS
2091 fixup_offset = rofixup->reloc_count * 4;
2092 if (rofixup->contents)
2093 {
2094 BFD_ASSERT (fixup_offset < rofixup->size);
2095 bfd_put_32 (output_bfd, offset, rofixup->contents + fixup_offset);
2096 }
2097 rofixup->reloc_count++;
0f64bb02 2098
c96a8570
BS
2099 if (entry && entry->symndx)
2100 {
2101 /* See discussion about symndx == 0 in _bfinfdpic_add_dyn_reloc
2102 above. */
2103 BFD_ASSERT (entry->fixups > 0);
2104 entry->fixups--;
2105 }
f4707595 2106
c96a8570
BS
2107 return fixup_offset;
2108}
0f64bb02 2109
c96a8570
BS
2110/* Find the segment number in which OSEC, and output section, is
2111 located. */
ca889129 2112
c96a8570
BS
2113static unsigned
2114_bfinfdpic_osec_to_segment (bfd *output_bfd, asection *osec)
2115{
2116 Elf_Internal_Phdr *p = _bfd_elf_find_segment_containing_section (output_bfd, osec);
0f64bb02 2117
c96a8570
BS
2118 return (p != NULL) ? p - elf_tdata (output_bfd)->phdr : -1;
2119}
2120
2121inline static bfd_boolean
2122_bfinfdpic_osec_readonly_p (bfd *output_bfd, asection *osec)
2123{
2124 unsigned seg = _bfinfdpic_osec_to_segment (output_bfd, osec);
2125
2126 return ! (elf_tdata (output_bfd)->phdr[seg].p_flags & PF_W);
2127}
2128
2129/* Generate relocations for GOT entries, function descriptors, and
2130 code for PLT and lazy PLT entries. */
2131
2132inline static bfd_boolean
2133_bfinfdpic_emit_got_relocs_plt_entries (struct bfinfdpic_relocs_info *entry,
2134 bfd *output_bfd,
2135 struct bfd_link_info *info,
2136 asection *sec,
2137 Elf_Internal_Sym *sym,
2138 bfd_vma addend)
2139
2140{
2141 bfd_vma fd_lazy_rel_offset = (bfd_vma)-1;
2142 int dynindx = -1;
2143
2144 if (entry->done)
2145 return TRUE;
2146 entry->done = 1;
2147
2148 if (entry->got_entry || entry->fdgot_entry || entry->fd_entry)
2149 {
2150 /* If the symbol is dynamic, consider it for dynamic
2151 relocations, otherwise decay to section + offset. */
2152 if (entry->symndx == -1 && entry->d.h->dynindx != -1)
2153 dynindx = entry->d.h->dynindx;
2154 else
2155 {
2156 if (sec->output_section
2157 && ! bfd_is_abs_section (sec->output_section)
2158 && ! bfd_is_und_section (sec->output_section))
2159 dynindx = elf_section_data (sec->output_section)->dynindx;
2160 else
2161 dynindx = 0;
2162 }
2163 }
2164
2165 /* Generate relocation for GOT entry pointing to the symbol. */
2166 if (entry->got_entry)
2167 {
2168 int idx = dynindx;
2169 bfd_vma ad = addend;
2170
2171 /* If the symbol is dynamic but binds locally, use
2172 section+offset. */
2173 if (sec && (entry->symndx != -1
2174 || BFINFDPIC_SYM_LOCAL (info, entry->d.h)))
2175 {
2176 if (entry->symndx == -1)
2177 ad += entry->d.h->root.u.def.value;
2178 else
2179 ad += sym->st_value;
2180 ad += sec->output_offset;
2181 if (sec->output_section && elf_section_data (sec->output_section))
2182 idx = elf_section_data (sec->output_section)->dynindx;
2183 else
2184 idx = 0;
2185 }
2186
2187 /* If we're linking an executable at a fixed address, we can
2188 omit the dynamic relocation as long as the symbol is local to
2189 this module. */
2190 if (info->executable && !info->pie
2191 && (entry->symndx != -1
2192 || BFINFDPIC_SYM_LOCAL (info, entry->d.h)))
2193 {
2194 if (sec)
2195 ad += sec->output_section->vma;
2196 if (entry->symndx != -1
2197 || entry->d.h->root.type != bfd_link_hash_undefweak)
2198 _bfinfdpic_add_rofixup (output_bfd,
2199 bfinfdpic_gotfixup_section (info),
2200 bfinfdpic_got_section (info)->output_section
2201 ->vma
2202 + bfinfdpic_got_section (info)->output_offset
2203 + bfinfdpic_got_initial_offset (info)
2204 + entry->got_entry, entry);
2205 }
2206 else
2207 _bfinfdpic_add_dyn_reloc (output_bfd, bfinfdpic_gotrel_section (info),
2208 _bfd_elf_section_offset
2209 (output_bfd, info,
2210 bfinfdpic_got_section (info),
2211 bfinfdpic_got_initial_offset (info)
2212 + entry->got_entry)
2213 + bfinfdpic_got_section (info)
2214 ->output_section->vma
2215 + bfinfdpic_got_section (info)->output_offset,
2216 R_byte4_data, idx, ad, entry);
2217
2218 bfd_put_32 (output_bfd, ad,
2219 bfinfdpic_got_section (info)->contents
2220 + bfinfdpic_got_initial_offset (info)
2221 + entry->got_entry);
2222 }
2223
2224 /* Generate relocation for GOT entry pointing to a canonical
2225 function descriptor. */
2226 if (entry->fdgot_entry)
2227 {
2228 int reloc, idx;
2229 bfd_vma ad = 0;
2230
2231 if (! (entry->symndx == -1
2232 && entry->d.h->root.type == bfd_link_hash_undefweak
2233 && BFINFDPIC_SYM_LOCAL (info, entry->d.h)))
2234 {
2235 /* If the symbol is dynamic and there may be dynamic symbol
2236 resolution because we are, or are linked with, a shared
2237 library, emit a FUNCDESC relocation such that the dynamic
2238 linker will allocate the function descriptor. If the
2239 symbol needs a non-local function descriptor but binds
2240 locally (e.g., its visibility is protected, emit a
2241 dynamic relocation decayed to section+offset. */
2242 if (entry->symndx == -1
2243 && ! BFINFDPIC_FUNCDESC_LOCAL (info, entry->d.h)
2244 && BFINFDPIC_SYM_LOCAL (info, entry->d.h)
2245 && !(info->executable && !info->pie))
2246 {
2247 reloc = R_BFIN_FUNCDESC;
2248 idx = elf_section_data (entry->d.h->root.u.def.section
2249 ->output_section)->dynindx;
2250 ad = entry->d.h->root.u.def.section->output_offset
2251 + entry->d.h->root.u.def.value;
2252 }
2253 else if (entry->symndx == -1
2254 && ! BFINFDPIC_FUNCDESC_LOCAL (info, entry->d.h))
2255 {
2256 reloc = R_BFIN_FUNCDESC;
2257 idx = dynindx;
2258 ad = addend;
2259 if (ad)
2260 return FALSE;
2261 }
2262 else
2263 {
2264 /* Otherwise, we know we have a private function descriptor,
2265 so reference it directly. */
2266 if (elf_hash_table (info)->dynamic_sections_created)
2267 BFD_ASSERT (entry->privfd);
2268 reloc = R_byte4_data;
2269 idx = elf_section_data (bfinfdpic_got_section (info)
2270 ->output_section)->dynindx;
2271 ad = bfinfdpic_got_section (info)->output_offset
2272 + bfinfdpic_got_initial_offset (info) + entry->fd_entry;
2273 }
2274
2275 /* If there is room for dynamic symbol resolution, emit the
2276 dynamic relocation. However, if we're linking an
2277 executable at a fixed location, we won't have emitted a
2278 dynamic symbol entry for the got section, so idx will be
2279 zero, which means we can and should compute the address
2280 of the private descriptor ourselves. */
2281 if (info->executable && !info->pie
2282 && (entry->symndx != -1
2283 || BFINFDPIC_FUNCDESC_LOCAL (info, entry->d.h)))
2284 {
2285 ad += bfinfdpic_got_section (info)->output_section->vma;
2286 _bfinfdpic_add_rofixup (output_bfd,
2287 bfinfdpic_gotfixup_section (info),
2288 bfinfdpic_got_section (info)
2289 ->output_section->vma
2290 + bfinfdpic_got_section (info)
2291 ->output_offset
2292 + bfinfdpic_got_initial_offset (info)
2293 + entry->fdgot_entry, entry);
2294 }
2295 else
2296 _bfinfdpic_add_dyn_reloc (output_bfd,
2297 bfinfdpic_gotrel_section (info),
2298 _bfd_elf_section_offset
2299 (output_bfd, info,
2300 bfinfdpic_got_section (info),
2301 bfinfdpic_got_initial_offset (info)
2302 + entry->fdgot_entry)
2303 + bfinfdpic_got_section (info)
2304 ->output_section->vma
2305 + bfinfdpic_got_section (info)
2306 ->output_offset,
2307 reloc, idx, ad, entry);
2308 }
f4707595 2309
c96a8570
BS
2310 bfd_put_32 (output_bfd, ad,
2311 bfinfdpic_got_section (info)->contents
2312 + bfinfdpic_got_initial_offset (info)
2313 + entry->fdgot_entry);
2314 }
2315
2316 /* Generate relocation to fill in a private function descriptor in
2317 the GOT. */
2318 if (entry->fd_entry)
2319 {
2320 int idx = dynindx;
2321 bfd_vma ad = addend;
2322 bfd_vma ofst;
2323 long lowword, highword;
2324
2325 /* If the symbol is dynamic but binds locally, use
2326 section+offset. */
2327 if (sec && (entry->symndx != -1
2328 || BFINFDPIC_SYM_LOCAL (info, entry->d.h)))
2329 {
2330 if (entry->symndx == -1)
2331 ad += entry->d.h->root.u.def.value;
2332 else
2333 ad += sym->st_value;
2334 ad += sec->output_offset;
2335 if (sec->output_section && elf_section_data (sec->output_section))
2336 idx = elf_section_data (sec->output_section)->dynindx;
2337 else
2338 idx = 0;
48d502e1 2339 }
f4707595 2340
c96a8570
BS
2341 /* If we're linking an executable at a fixed address, we can
2342 omit the dynamic relocation as long as the symbol is local to
2343 this module. */
2344 if (info->executable && !info->pie
2345 && (entry->symndx != -1 || BFINFDPIC_SYM_LOCAL (info, entry->d.h)))
48d502e1 2346 {
c96a8570
BS
2347 if (sec)
2348 ad += sec->output_section->vma;
2349 ofst = 0;
2350 if (entry->symndx != -1
2351 || entry->d.h->root.type != bfd_link_hash_undefweak)
2352 {
2353 _bfinfdpic_add_rofixup (output_bfd,
2354 bfinfdpic_gotfixup_section (info),
2355 bfinfdpic_got_section (info)
2356 ->output_section->vma
2357 + bfinfdpic_got_section (info)
2358 ->output_offset
2359 + bfinfdpic_got_initial_offset (info)
2360 + entry->fd_entry, entry);
2361 _bfinfdpic_add_rofixup (output_bfd,
2362 bfinfdpic_gotfixup_section (info),
2363 bfinfdpic_got_section (info)
2364 ->output_section->vma
2365 + bfinfdpic_got_section (info)
2366 ->output_offset
2367 + bfinfdpic_got_initial_offset (info)
2368 + entry->fd_entry + 4, entry);
2369 }
2370 }
2371 else
2372 {
2373 ofst
2374 = _bfinfdpic_add_dyn_reloc (output_bfd,
2375 entry->lazyplt
2376 ? bfinfdpic_pltrel_section (info)
2377 : bfinfdpic_gotrel_section (info),
2378 _bfd_elf_section_offset
2379 (output_bfd, info,
2380 bfinfdpic_got_section (info),
2381 bfinfdpic_got_initial_offset (info)
2382 + entry->fd_entry)
2383 + bfinfdpic_got_section (info)
2384 ->output_section->vma
2385 + bfinfdpic_got_section (info)
2386 ->output_offset,
2387 R_BFIN_FUNCDESC_VALUE, idx, ad, entry);
48d502e1 2388 }
f4707595 2389
c96a8570
BS
2390 /* If we've omitted the dynamic relocation, just emit the fixed
2391 addresses of the symbol and of the local GOT base offset. */
2392 if (info->executable && !info->pie && sec && sec->output_section)
48d502e1 2393 {
c96a8570
BS
2394 lowword = ad;
2395 highword = bfinfdpic_got_section (info)->output_section->vma
2396 + bfinfdpic_got_section (info)->output_offset
2397 + bfinfdpic_got_initial_offset (info);
2398 }
2399 else if (entry->lazyplt)
2400 {
2401 if (ad)
2402 return FALSE;
f4707595 2403
c96a8570 2404 fd_lazy_rel_offset = ofst;
f4707595 2405
c96a8570
BS
2406 /* A function descriptor used for lazy or local resolving is
2407 initialized such that its high word contains the output
2408 section index in which the PLT entries are located, and
2409 the low word contains the address of the lazy PLT entry
2410 entry point, that must be within the memory region
2411 assigned to that section. */
2412 lowword = entry->lzplt_entry + 4
2413 + bfinfdpic_plt_section (info)->output_offset
2414 + bfinfdpic_plt_section (info)->output_section->vma;
2415 highword = _bfinfdpic_osec_to_segment
2416 (output_bfd, bfinfdpic_plt_section (info)->output_section);
2417 }
2418 else
2419 {
2420 /* A function descriptor for a local function gets the index
2421 of the section. For a non-local function, it's
2422 disregarded. */
2423 lowword = ad;
2424 if (entry->symndx == -1 && entry->d.h->dynindx != -1
2425 && entry->d.h->dynindx == idx)
2426 highword = 0;
2427 else
2428 highword = _bfinfdpic_osec_to_segment
2429 (output_bfd, sec->output_section);
48d502e1 2430 }
f4707595 2431
c96a8570
BS
2432 bfd_put_32 (output_bfd, lowword,
2433 bfinfdpic_got_section (info)->contents
2434 + bfinfdpic_got_initial_offset (info)
2435 + entry->fd_entry);
2436 bfd_put_32 (output_bfd, highword,
2437 bfinfdpic_got_section (info)->contents
2438 + bfinfdpic_got_initial_offset (info)
2439 + entry->fd_entry + 4);
2440 }
2441
2442 /* Generate code for the PLT entry. */
2443 if (entry->plt_entry != (bfd_vma) -1)
2444 {
2445 bfd_byte *plt_code = bfinfdpic_plt_section (info)->contents
2446 + entry->plt_entry;
2447
2448 BFD_ASSERT (entry->fd_entry);
2449
2450 /* Figure out what kind of PLT entry we need, depending on the
2451 location of the function descriptor within the GOT. */
2452 if (entry->fd_entry >= -(1 << (18 - 1))
2453 && entry->fd_entry + 4 < (1 << (18 - 1)))
48d502e1 2454 {
c96a8570
BS
2455 /* P1 = [P3 + fd_entry]; P3 = [P3 + fd_entry + 4] */
2456 bfd_put_32 (output_bfd,
2457 0xe519 | ((entry->fd_entry << 14) & 0xFFFF0000),
2458 plt_code);
2459 bfd_put_32 (output_bfd,
2460 0xe51b | (((entry->fd_entry + 4) << 14) & 0xFFFF0000),
2461 plt_code + 4);
2462 plt_code += 8;
2463 }
2464 else
2465 {
2466 /* P1.L = fd_entry; P1.H = fd_entry;
2467 P3 = P3 + P1;
2468 P1 = [P3];
2469 P3 = [P3 + 4]; */
2470 bfd_put_32 (output_bfd,
2471 0xe109 | (entry->fd_entry << 16),
2472 plt_code);
2473 bfd_put_32 (output_bfd,
2474 0xe149 | (entry->fd_entry & 0xFFFF0000),
2475 plt_code + 4);
2476 bfd_put_16 (output_bfd, 0x5ad9, plt_code + 8);
2477 bfd_put_16 (output_bfd, 0x9159, plt_code + 10);
2478 bfd_put_16 (output_bfd, 0xac5b, plt_code + 12);
2479 plt_code += 14;
2480 }
2481 /* JUMP (P1) */
2482 bfd_put_16 (output_bfd, 0x0051, plt_code);
2483 }
f4707595 2484
c96a8570
BS
2485 /* Generate code for the lazy PLT entry. */
2486 if (entry->lzplt_entry != (bfd_vma) -1)
2487 {
2488 bfd_byte *lzplt_code = bfinfdpic_plt_section (info)->contents
2489 + entry->lzplt_entry;
2490 bfd_vma resolverStub_addr;
0f64bb02 2491
c96a8570
BS
2492 bfd_put_32 (output_bfd, fd_lazy_rel_offset, lzplt_code);
2493 lzplt_code += 4;
0f64bb02 2494
c96a8570
BS
2495 resolverStub_addr = entry->lzplt_entry / BFINFDPIC_LZPLT_BLOCK_SIZE
2496 * BFINFDPIC_LZPLT_BLOCK_SIZE + BFINFDPIC_LZPLT_RESOLV_LOC;
2497 if (resolverStub_addr >= bfinfdpic_plt_initial_offset (info))
2498 resolverStub_addr = bfinfdpic_plt_initial_offset (info) - LZPLT_NORMAL_SIZE - LZPLT_RESOLVER_EXTRA;
0f64bb02 2499
c96a8570 2500 if (entry->lzplt_entry == resolverStub_addr)
0f64bb02 2501 {
c96a8570
BS
2502 /* This is a lazy PLT entry that includes a resolver call.
2503 P2 = [P3];
2504 R3 = [P3 + 4];
2505 JUMP (P2); */
2506 bfd_put_32 (output_bfd,
2507 0xa05b915a,
2508 lzplt_code);
2509 bfd_put_16 (output_bfd, 0x0052, lzplt_code + 4);
2510 }
2511 else
2512 {
2513 /* JUMP.S resolverStub */
2514 bfd_put_16 (output_bfd,
2515 0x2000
2516 | (((resolverStub_addr - entry->lzplt_entry)
2517 / 2) & (((bfd_vma)1 << 12) - 1)),
2518 lzplt_code);
2519 }
2520 }
0f64bb02 2521
c96a8570
BS
2522 return TRUE;
2523}
2524\f
2525/* Relocate an Blackfin ELF section.
48d502e1 2526
c96a8570
BS
2527 The RELOCATE_SECTION function is called by the new ELF backend linker
2528 to handle the relocations for a section.
48d502e1 2529
c96a8570
BS
2530 The relocs are always passed as Rela structures; if the section
2531 actually uses Rel structures, the r_addend field will always be
2532 zero.
48d502e1 2533
c96a8570
BS
2534 This function is responsible for adjusting the section contents as
2535 necessary, and (if using Rela relocs and generating a relocatable
2536 output file) adjusting the reloc addend as necessary.
48d502e1 2537
c96a8570
BS
2538 This function does not have to worry about setting the reloc
2539 address or the reloc symbol index.
48d502e1 2540
c96a8570 2541 LOCAL_SYMS is a pointer to the swapped in local symbols.
48d502e1 2542
c96a8570
BS
2543 LOCAL_SECTIONS is an array giving the section in the input file
2544 corresponding to the st_shndx field of each local symbol.
48d502e1 2545
c96a8570
BS
2546 The global hash table entry for the global symbols can be found
2547 via elf_sym_hashes (input_bfd).
48d502e1 2548
c96a8570
BS
2549 When generating relocatable output, this function must handle
2550 STB_LOCAL/STT_SECTION symbols specially. The output symbol is
2551 going to be the section symbol corresponding to the output
2552 section, which means that the addend must be adjusted
2553 accordingly. */
48d502e1
BS
2554
2555static bfd_boolean
c96a8570
BS
2556bfinfdpic_relocate_section (bfd * output_bfd,
2557 struct bfd_link_info *info,
2558 bfd * input_bfd,
2559 asection * input_section,
2560 bfd_byte * contents,
2561 Elf_Internal_Rela * relocs,
2562 Elf_Internal_Sym * local_syms,
2563 asection ** local_sections)
48d502e1 2564{
48d502e1
BS
2565 Elf_Internal_Shdr *symtab_hdr;
2566 struct elf_link_hash_entry **sym_hashes;
48d502e1
BS
2567 Elf_Internal_Rela *rel;
2568 Elf_Internal_Rela *relend;
c96a8570
BS
2569 unsigned isec_segment, got_segment, plt_segment,
2570 check_segment[2];
2571 int silence_segment_error = !(info->shared || info->pie);
48d502e1 2572
c96a8570 2573 symtab_hdr = & elf_tdata (input_bfd)->symtab_hdr;
48d502e1 2574 sym_hashes = elf_sym_hashes (input_bfd);
c96a8570 2575 relend = relocs + input_section->reloc_count;
48d502e1 2576
c96a8570
BS
2577 isec_segment = _bfinfdpic_osec_to_segment (output_bfd,
2578 input_section->output_section);
2579 if (IS_FDPIC (output_bfd) && bfinfdpic_got_section (info))
2580 got_segment = _bfinfdpic_osec_to_segment (output_bfd,
2581 bfinfdpic_got_section (info)
2582 ->output_section);
2583 else
2584 got_segment = -1;
2585 if (IS_FDPIC (output_bfd) && elf_hash_table (info)->dynamic_sections_created)
2586 plt_segment = _bfinfdpic_osec_to_segment (output_bfd,
2587 bfinfdpic_plt_section (info)
2588 ->output_section);
2589 else
2590 plt_segment = -1;
48d502e1 2591
c96a8570 2592 for (rel = relocs; rel < relend; rel ++)
48d502e1 2593 {
48d502e1
BS
2594 reloc_howto_type *howto;
2595 unsigned long r_symndx;
48d502e1
BS
2596 Elf_Internal_Sym *sym;
2597 asection *sec;
c96a8570
BS
2598 struct elf_link_hash_entry *h;
2599 bfd_vma relocation;
48d502e1 2600 bfd_reloc_status_type r;
c96a8570
BS
2601 const char * name = NULL;
2602 int r_type;
2603 asection *osec;
2604 struct bfinfdpic_relocs_info *picrel;
2605 bfd_vma orig_addend = rel->r_addend;
48d502e1
BS
2606
2607 r_type = ELF32_R_TYPE (rel->r_info);
48d502e1 2608
c96a8570
BS
2609 if (r_type == R_BFIN_GNU_VTINHERIT
2610 || r_type == R_BFIN_GNU_VTENTRY)
48d502e1
BS
2611 continue;
2612
c96a8570 2613 r_symndx = ELF32_R_SYM (rel->r_info);
48d502e1
BS
2614 howto = bfin_reloc_type_lookup (input_bfd, r_type);
2615 if (howto == NULL)
2616 {
2617 bfd_set_error (bfd_error_bad_value);
2618 return FALSE;
2619 }
48d502e1 2620
c96a8570
BS
2621 h = NULL;
2622 sym = NULL;
2623 sec = NULL;
2624
2625 if (r_symndx < symtab_hdr->sh_info)
2626 {
2627 sym = local_syms + r_symndx;
2628 osec = sec = local_sections [r_symndx];
2629 relocation = _bfd_elf_rela_local_sym (output_bfd, sym, &sec, rel);
2630
2631 name = bfd_elf_string_from_elf_section
2632 (input_bfd, symtab_hdr->sh_link, sym->st_name);
2633 name = (name == NULL) ? bfd_section_name (input_bfd, sec) : name;
2634 }
2635 else
2636 {
2637 bfd_boolean warned;
2638 bfd_boolean unresolved_reloc;
2639
2640 RELOC_FOR_GLOBAL_SYMBOL (info, input_bfd, input_section, rel,
2641 r_symndx, symtab_hdr, sym_hashes,
2642 h, sec, relocation,
2643 unresolved_reloc, warned);
2644 osec = sec;
2645 }
2646
2647 if (sec != NULL && elf_discarded_section (sec))
2648 {
2649 /* For relocs against symbols from removed linkonce sections,
2650 or sections discarded by a linker script, we just want the
2651 section contents zeroed. Avoid any special processing. */
2652 _bfd_clear_contents (howto, input_bfd, contents + rel->r_offset);
2653 rel->r_info = 0;
2654 rel->r_addend = 0;
2655 continue;
2656 }
2657
2658 if (info->relocatable)
2659 continue;
2660
2661 if (h != NULL
2662 && (h->root.type == bfd_link_hash_defined
2663 || h->root.type == bfd_link_hash_defweak)
2664 && !BFINFDPIC_SYM_LOCAL (info, h))
2665 {
2666 osec = sec = NULL;
2667 relocation = 0;
2668 }
2669
2670 switch (r_type)
2671 {
2672 case R_pcrel24:
2673 case R_pcrel24_jump_l:
2674 case R_byte4_data:
2675 if (! IS_FDPIC (output_bfd))
2676 goto non_fdpic;
2677
2678 case R_BFIN_GOT17M4:
2679 case R_BFIN_GOTHI:
2680 case R_BFIN_GOTLO:
2681 case R_BFIN_FUNCDESC_GOT17M4:
2682 case R_BFIN_FUNCDESC_GOTHI:
2683 case R_BFIN_FUNCDESC_GOTLO:
2684 case R_BFIN_GOTOFF17M4:
2685 case R_BFIN_GOTOFFHI:
2686 case R_BFIN_GOTOFFLO:
2687 case R_BFIN_FUNCDESC_GOTOFF17M4:
2688 case R_BFIN_FUNCDESC_GOTOFFHI:
2689 case R_BFIN_FUNCDESC_GOTOFFLO:
2690 case R_BFIN_FUNCDESC:
2691 case R_BFIN_FUNCDESC_VALUE:
2692 if (h != NULL)
2693 picrel = bfinfdpic_relocs_info_for_global (bfinfdpic_relocs_info
2694 (info), input_bfd, h,
2695 orig_addend, INSERT);
2696 else
2697 /* In order to find the entry we created before, we must
2698 use the original addend, not the one that may have been
2699 modified by _bfd_elf_rela_local_sym(). */
2700 picrel = bfinfdpic_relocs_info_for_local (bfinfdpic_relocs_info
2701 (info), input_bfd, r_symndx,
2702 orig_addend, INSERT);
2703 if (! picrel)
2704 return FALSE;
2705
2706 if (!_bfinfdpic_emit_got_relocs_plt_entries (picrel, output_bfd, info,
2707 osec, sym,
2708 rel->r_addend))
2709 {
2710 (*_bfd_error_handler)
2711 (_("%B: relocation at `%A+0x%x' references symbol `%s' with nonzero addend"),
2712 input_bfd, input_section, rel->r_offset, name);
2713 return FALSE;
2714
2715 }
48d502e1 2716
c96a8570 2717 break;
ab96bf03 2718
c96a8570
BS
2719 default:
2720 non_fdpic:
2721 picrel = NULL;
2722 if (h && ! BFINFDPIC_SYM_LOCAL (info, h))
2723 {
2724 info->callbacks->warning
2725 (info, _("relocation references symbol not defined in the module"),
2726 name, input_bfd, input_section, rel->r_offset);
2727 return FALSE;
2728 }
2729 break;
48d502e1
BS
2730 }
2731
c96a8570 2732 switch (r_type)
ab96bf03 2733 {
c96a8570
BS
2734 case R_pcrel24:
2735 case R_pcrel24_jump_l:
2736 check_segment[0] = isec_segment;
2737 if (! IS_FDPIC (output_bfd))
2738 check_segment[1] = isec_segment;
2739 else if (picrel->plt)
2740 {
2741 relocation = bfinfdpic_plt_section (info)->output_section->vma
2742 + bfinfdpic_plt_section (info)->output_offset
2743 + picrel->plt_entry;
2744 check_segment[1] = plt_segment;
2745 }
2746 /* We don't want to warn on calls to undefined weak symbols,
2747 as calls to them must be protected by non-NULL tests
2748 anyway, and unprotected calls would invoke undefined
2749 behavior. */
2750 else if (picrel->symndx == -1
2751 && picrel->d.h->root.type == bfd_link_hash_undefweak)
2752 check_segment[1] = check_segment[0];
2753 else
2754 check_segment[1] = sec
2755 ? _bfinfdpic_osec_to_segment (output_bfd, sec->output_section)
2756 : (unsigned)-1;
2757 break;
ab96bf03 2758
c96a8570
BS
2759 case R_BFIN_GOT17M4:
2760 case R_BFIN_GOTHI:
2761 case R_BFIN_GOTLO:
2762 relocation = picrel->got_entry;
2763 check_segment[0] = check_segment[1] = got_segment;
2764 break;
ab96bf03 2765
c96a8570
BS
2766 case R_BFIN_FUNCDESC_GOT17M4:
2767 case R_BFIN_FUNCDESC_GOTHI:
2768 case R_BFIN_FUNCDESC_GOTLO:
2769 relocation = picrel->fdgot_entry;
2770 check_segment[0] = check_segment[1] = got_segment;
2771 break;
48d502e1 2772
c96a8570
BS
2773 case R_BFIN_GOTOFFHI:
2774 case R_BFIN_GOTOFF17M4:
2775 case R_BFIN_GOTOFFLO:
2776 relocation -= bfinfdpic_got_section (info)->output_section->vma
2777 + bfinfdpic_got_section (info)->output_offset
2778 + bfinfdpic_got_initial_offset (info);
2779 check_segment[0] = got_segment;
2780 check_segment[1] = sec
2781 ? _bfinfdpic_osec_to_segment (output_bfd, sec->output_section)
2782 : (unsigned)-1;
2783 break;
48d502e1 2784
c96a8570
BS
2785 case R_BFIN_FUNCDESC_GOTOFF17M4:
2786 case R_BFIN_FUNCDESC_GOTOFFHI:
2787 case R_BFIN_FUNCDESC_GOTOFFLO:
2788 relocation = picrel->fd_entry;
2789 check_segment[0] = check_segment[1] = got_segment;
2790 break;
48d502e1 2791
c96a8570 2792 case R_BFIN_FUNCDESC:
48d502e1 2793 {
c96a8570
BS
2794 int dynindx;
2795 bfd_vma addend = rel->r_addend;
48d502e1 2796
c96a8570
BS
2797 if (! (h && h->root.type == bfd_link_hash_undefweak
2798 && BFINFDPIC_SYM_LOCAL (info, h)))
2799 {
2800 /* If the symbol is dynamic and there may be dynamic
2801 symbol resolution because we are or are linked with a
2802 shared library, emit a FUNCDESC relocation such that
2803 the dynamic linker will allocate the function
2804 descriptor. If the symbol needs a non-local function
2805 descriptor but binds locally (e.g., its visibility is
2806 protected, emit a dynamic relocation decayed to
2807 section+offset. */
2808 if (h && ! BFINFDPIC_FUNCDESC_LOCAL (info, h)
2809 && BFINFDPIC_SYM_LOCAL (info, h)
2810 && !(info->executable && !info->pie))
2811 {
2812 dynindx = elf_section_data (h->root.u.def.section
2813 ->output_section)->dynindx;
2814 addend += h->root.u.def.section->output_offset
2815 + h->root.u.def.value;
2816 }
2817 else if (h && ! BFINFDPIC_FUNCDESC_LOCAL (info, h))
2818 {
2819 if (addend)
2820 {
2821 info->callbacks->warning
2822 (info, _("R_BFIN_FUNCDESC references dynamic symbol with nonzero addend"),
2823 name, input_bfd, input_section, rel->r_offset);
2824 return FALSE;
2825 }
2826 dynindx = h->dynindx;
2827 }
2828 else
2829 {
2830 /* Otherwise, we know we have a private function
2831 descriptor, so reference it directly. */
2832 BFD_ASSERT (picrel->privfd);
2833 r_type = R_byte4_data;
2834 dynindx = elf_section_data (bfinfdpic_got_section (info)
2835 ->output_section)->dynindx;
2836 addend = bfinfdpic_got_section (info)->output_offset
2837 + bfinfdpic_got_initial_offset (info)
2838 + picrel->fd_entry;
2839 }
2840
2841 /* If there is room for dynamic symbol resolution, emit
2842 the dynamic relocation. However, if we're linking an
2843 executable at a fixed location, we won't have emitted a
2844 dynamic symbol entry for the got section, so idx will
2845 be zero, which means we can and should compute the
2846 address of the private descriptor ourselves. */
2847 if (info->executable && !info->pie
2848 && (!h || BFINFDPIC_FUNCDESC_LOCAL (info, h)))
2849 {
2850 addend += bfinfdpic_got_section (info)->output_section->vma;
2851 if ((bfd_get_section_flags (output_bfd,
2852 input_section->output_section)
2853 & (SEC_ALLOC | SEC_LOAD)) == (SEC_ALLOC | SEC_LOAD))
2854 {
2855 if (_bfinfdpic_osec_readonly_p (output_bfd,
2856 input_section
2857 ->output_section))
2858 {
2859 info->callbacks->warning
2860 (info,
2861 _("cannot emit fixups in read-only section"),
2862 name, input_bfd, input_section, rel->r_offset);
2863 return FALSE;
2864 }
2865 _bfinfdpic_add_rofixup (output_bfd,
2866 bfinfdpic_gotfixup_section
2867 (info),
2868 _bfd_elf_section_offset
2869 (output_bfd, info,
2870 input_section, rel->r_offset)
2871 + input_section
2872 ->output_section->vma
2873 + input_section->output_offset,
2874 picrel);
2875 }
2876 }
2877 else if ((bfd_get_section_flags (output_bfd,
2878 input_section->output_section)
2879 & (SEC_ALLOC | SEC_LOAD)) == (SEC_ALLOC | SEC_LOAD))
2880 {
2881 bfd_vma offset;
2882
2883 if (_bfinfdpic_osec_readonly_p (output_bfd,
2884 input_section
2885 ->output_section))
2886 {
2887 info->callbacks->warning
2888 (info,
2889 _("cannot emit dynamic relocations in read-only section"),
2890 name, input_bfd, input_section, rel->r_offset);
2891 return FALSE;
2892 }
2893 offset = _bfd_elf_section_offset (output_bfd, info,
2894 input_section, rel->r_offset);
2895 /* Only output a reloc for a not deleted entry. */
2896 if (offset >= (bfd_vma) -2)
2897 _bfinfdpic_add_dyn_reloc (output_bfd,
2898 bfinfdpic_gotrel_section (info),
2899 0,
2900 R_unused0,
2901 dynindx, addend, picrel);
2902 else
2903 _bfinfdpic_add_dyn_reloc (output_bfd,
2904 bfinfdpic_gotrel_section (info),
2905 offset + input_section
2906 ->output_section->vma
2907 + input_section->output_offset,
2908 r_type,
2909 dynindx, addend, picrel);
2910 }
2911 else
2912 addend += bfinfdpic_got_section (info)->output_section->vma;
2913 }
2914
2915 /* We want the addend in-place because dynamic
2916 relocations are REL. Setting relocation to it should
2917 arrange for it to be installed. */
2918 relocation = addend - rel->r_addend;
2919 }
2920 check_segment[0] = check_segment[1] = got_segment;
2921 break;
2922
2923 case R_byte4_data:
2924 if (! IS_FDPIC (output_bfd))
7a84e3da 2925 {
c96a8570
BS
2926 check_segment[0] = check_segment[1] = -1;
2927 break;
7a84e3da 2928 }
c96a8570
BS
2929 /* Fall through. */
2930 case R_BFIN_FUNCDESC_VALUE:
2931 {
2932 int dynindx;
2933 bfd_vma addend = rel->r_addend;
2934 bfd_vma offset;
2935 offset = _bfd_elf_section_offset (output_bfd, info,
2936 input_section, rel->r_offset);
7a84e3da 2937
c96a8570
BS
2938 /* If the symbol is dynamic but binds locally, use
2939 section+offset. */
2940 if (h && ! BFINFDPIC_SYM_LOCAL (info, h))
48d502e1 2941 {
c96a8570
BS
2942 if (addend && r_type == R_BFIN_FUNCDESC_VALUE)
2943 {
2944 info->callbacks->warning
2945 (info, _("R_BFIN_FUNCDESC_VALUE references dynamic symbol with nonzero addend"),
2946 name, input_bfd, input_section, rel->r_offset);
2947 return FALSE;
2948 }
2949 dynindx = h->dynindx;
48d502e1 2950 }
c96a8570 2951 else
48d502e1 2952 {
c96a8570
BS
2953 if (h)
2954 addend += h->root.u.def.value;
2955 else
2956 addend += sym->st_value;
2957 if (osec)
2958 addend += osec->output_offset;
2959 if (osec && osec->output_section
2960 && ! bfd_is_abs_section (osec->output_section)
2961 && ! bfd_is_und_section (osec->output_section))
2962 dynindx = elf_section_data (osec->output_section)->dynindx;
2963 else
2964 dynindx = 0;
2965 }
48d502e1 2966
c96a8570
BS
2967 /* If we're linking an executable at a fixed address, we
2968 can omit the dynamic relocation as long as the symbol
2969 is defined in the current link unit (which is implied
2970 by its output section not being NULL). */
2971 if (info->executable && !info->pie
2972 && (!h || BFINFDPIC_SYM_LOCAL (info, h)))
2973 {
2974 if (osec)
2975 addend += osec->output_section->vma;
2976 if (IS_FDPIC (input_bfd)
2977 && (bfd_get_section_flags (output_bfd,
2978 input_section->output_section)
2979 & (SEC_ALLOC | SEC_LOAD)) == (SEC_ALLOC | SEC_LOAD))
48d502e1 2980 {
c96a8570
BS
2981 if (_bfinfdpic_osec_readonly_p (output_bfd,
2982 input_section
2983 ->output_section))
48d502e1 2984 {
c96a8570
BS
2985 info->callbacks->warning
2986 (info,
2987 _("cannot emit fixups in read-only section"),
2988 name, input_bfd, input_section, rel->r_offset);
2989 return FALSE;
2990 }
2991 if (!h || h->root.type != bfd_link_hash_undefweak)
2992 {
2993 /* Only output a reloc for a not deleted entry. */
2994 if (offset >= (bfd_vma)-2)
2995 _bfinfdpic_add_rofixup (output_bfd,
2996 bfinfdpic_gotfixup_section
2997 (info), -1, picrel);
2998 else
2999 _bfinfdpic_add_rofixup (output_bfd,
3000 bfinfdpic_gotfixup_section
3001 (info),
3002 offset + input_section
3003 ->output_section->vma
3004 + input_section->output_offset,
3005 picrel);
3006
3007 if (r_type == R_BFIN_FUNCDESC_VALUE)
3008 {
3009 if (offset >= (bfd_vma)-2)
3010 _bfinfdpic_add_rofixup
3011 (output_bfd,
3012 bfinfdpic_gotfixup_section (info),
3013 -1, picrel);
3014 else
3015 _bfinfdpic_add_rofixup
3016 (output_bfd,
3017 bfinfdpic_gotfixup_section (info),
3018 offset + input_section->output_section->vma
3019 + input_section->output_offset + 4, picrel);
3020 }
48d502e1
BS
3021 }
3022 }
48d502e1
BS
3023 }
3024 else
3025 {
c96a8570
BS
3026 if ((bfd_get_section_flags (output_bfd,
3027 input_section->output_section)
3028 & (SEC_ALLOC | SEC_LOAD)) == (SEC_ALLOC | SEC_LOAD))
48d502e1 3029 {
c96a8570
BS
3030 if (_bfinfdpic_osec_readonly_p (output_bfd,
3031 input_section
3032 ->output_section))
48d502e1 3033 {
c96a8570
BS
3034 info->callbacks->warning
3035 (info,
3036 _("cannot emit dynamic relocations in read-only section"),
3037 name, input_bfd, input_section, rel->r_offset);
3038 return FALSE;
48d502e1 3039 }
c96a8570
BS
3040 /* Only output a reloc for a not deleted entry. */
3041 if (offset >= (bfd_vma)-2)
3042 _bfinfdpic_add_dyn_reloc (output_bfd,
3043 bfinfdpic_gotrel_section (info),
3044 0, R_unused0, dynindx, addend, picrel);
3045 else
3046 _bfinfdpic_add_dyn_reloc (output_bfd,
3047 bfinfdpic_gotrel_section (info),
3048 offset
3049 + input_section
3050 ->output_section->vma
3051 + input_section->output_offset,
3052 r_type, dynindx, addend, picrel);
48d502e1 3053 }
c96a8570
BS
3054 else if (osec)
3055 addend += osec->output_section->vma;
3056 /* We want the addend in-place because dynamic
3057 relocations are REL. Setting relocation to it
3058 should arrange for it to be installed. */
3059 relocation = addend - rel->r_addend;
3060 }
3061
3062 if (r_type == R_BFIN_FUNCDESC_VALUE && offset < (bfd_vma)-2)
3063 {
3064 /* If we've omitted the dynamic relocation, just emit
3065 the fixed addresses of the symbol and of the local
3066 GOT base offset. */
3067 if (info->executable && !info->pie
3068 && (!h || BFINFDPIC_SYM_LOCAL (info, h)))
3069 bfd_put_32 (output_bfd,
3070 bfinfdpic_got_section (info)->output_section->vma
3071 + bfinfdpic_got_section (info)->output_offset
3072 + bfinfdpic_got_initial_offset (info),
3073 contents + rel->r_offset + 4);
3074 else
3075 /* A function descriptor used for lazy or local
3076 resolving is initialized such that its high word
3077 contains the output section index in which the
3078 PLT entries are located, and the low word
3079 contains the offset of the lazy PLT entry entry
3080 point into that section. */
3081 bfd_put_32 (output_bfd,
3082 h && ! BFINFDPIC_SYM_LOCAL (info, h)
3083 ? 0
3084 : _bfinfdpic_osec_to_segment (output_bfd,
3085 sec
3086 ->output_section),
3087 contents + rel->r_offset + 4);
48d502e1 3088 }
c96a8570
BS
3089 }
3090 check_segment[0] = check_segment[1] = got_segment;
3091 break;
3092
3093 default:
3094 check_segment[0] = isec_segment;
3095 check_segment[1] = sec
3096 ? _bfinfdpic_osec_to_segment (output_bfd, sec->output_section)
3097 : (unsigned)-1;
3098 break;
3099 }
3100
3101 if (check_segment[0] != check_segment[1] && IS_FDPIC (output_bfd))
3102 {
3103#if 1 /* If you take this out, remove the #error from fdpic-static-6.d
3104 in the ld testsuite. */
3105 /* This helps catch problems in GCC while we can't do more
3106 than static linking. The idea is to test whether the
3107 input file basename is crt0.o only once. */
3108 if (silence_segment_error == 1)
3109 silence_segment_error =
3110 (strlen (input_bfd->filename) == 6
3111 && strcmp (input_bfd->filename, "crt0.o") == 0)
3112 || (strlen (input_bfd->filename) > 6
3113 && strcmp (input_bfd->filename
3114 + strlen (input_bfd->filename) - 7,
3115 "/crt0.o") == 0)
3116 ? -1 : 0;
3117#endif
3118 if (!silence_segment_error
3119 /* We don't want duplicate errors for undefined
3120 symbols. */
3121 && !(picrel && picrel->symndx == -1
3122 && picrel->d.h->root.type == bfd_link_hash_undefined))
3123 info->callbacks->warning
3124 (info,
3125 (info->shared || info->pie)
3126 ? _("relocations between different segments are not supported")
3127 : _("warning: relocation references a different segment"),
3128 name, input_bfd, input_section, rel->r_offset);
3129 if (!silence_segment_error && (info->shared || info->pie))
3130 return FALSE;
3131 elf_elfheader (output_bfd)->e_flags |= EF_BFIN_PIC;
3132 }
3133
3134 switch (r_type)
3135 {
3136 case R_BFIN_GOTOFFHI:
3137 /* We need the addend to be applied before we shift the
3138 value right. */
3139 relocation += rel->r_addend;
3140 /* Fall through. */
3141 case R_BFIN_GOTHI:
3142 case R_BFIN_FUNCDESC_GOTHI:
3143 case R_BFIN_FUNCDESC_GOTOFFHI:
3144 relocation >>= 16;
3145 /* Fall through. */
48d502e1 3146
c96a8570
BS
3147 case R_BFIN_GOTLO:
3148 case R_BFIN_FUNCDESC_GOTLO:
3149 case R_BFIN_GOTOFFLO:
3150 case R_BFIN_FUNCDESC_GOTOFFLO:
3151 relocation &= 0xffff;
3152 break;
48d502e1 3153
48d502e1 3154 default:
48d502e1
BS
3155 break;
3156 }
3157
c96a8570 3158 switch (r_type)
48d502e1 3159 {
c96a8570
BS
3160 case R_pcrel24:
3161 case R_pcrel24_jump_l:
3162 if (! IS_FDPIC (output_bfd) || ! picrel->plt)
3163 break;
3164 /* Fall through. */
3165
3166 /* When referencing a GOT entry, a function descriptor or a
3167 PLT, we don't want the addend to apply to the reference,
3168 but rather to the referenced symbol. The actual entry
3169 will have already been created taking the addend into
3170 account, so cancel it out here. */
3171 case R_BFIN_GOT17M4:
3172 case R_BFIN_GOTHI:
3173 case R_BFIN_GOTLO:
3174 case R_BFIN_FUNCDESC_GOT17M4:
3175 case R_BFIN_FUNCDESC_GOTHI:
3176 case R_BFIN_FUNCDESC_GOTLO:
3177 case R_BFIN_FUNCDESC_GOTOFF17M4:
3178 case R_BFIN_FUNCDESC_GOTOFFHI:
3179 case R_BFIN_FUNCDESC_GOTOFFLO:
3180 /* Note that we only want GOTOFFHI, not GOTOFFLO or GOTOFF17M4
3181 here, since we do want to apply the addend to the others.
3182 Note that we've applied the addend to GOTOFFHI before we
3183 shifted it right. */
3184 case R_BFIN_GOTOFFHI:
3185 relocation -= rel->r_addend;
3186 break;
3187
3188 default:
3189 break;
48d502e1
BS
3190 }
3191
c96a8570
BS
3192 r = bfin_final_link_relocate (rel, howto, input_bfd, input_section,
3193 contents, rel->r_offset,
3194 relocation, rel->r_addend);
3195
48d502e1
BS
3196 if (r != bfd_reloc_ok)
3197 {
c96a8570 3198 const char * msg = (const char *) NULL;
48d502e1 3199
c96a8570 3200 switch (r)
48d502e1 3201 {
c96a8570
BS
3202 case bfd_reloc_overflow:
3203 r = info->callbacks->reloc_overflow
3204 (info, (h ? &h->root : NULL), name, howto->name,
3205 (bfd_vma) 0, input_bfd, input_section, rel->r_offset);
3206 break;
0f64bb02 3207
c96a8570
BS
3208 case bfd_reloc_undefined:
3209 r = info->callbacks->undefined_symbol
3210 (info, name, input_bfd, input_section, rel->r_offset, TRUE);
3211 break;
3212
3213 case bfd_reloc_outofrange:
3214 msg = _("internal error: out of range error");
3215 break;
3216
3217 case bfd_reloc_notsupported:
3218 msg = _("internal error: unsupported relocation error");
3219 break;
3220
3221 case bfd_reloc_dangerous:
3222 msg = _("internal error: dangerous relocation");
3223 break;
3224
3225 default:
3226 msg = _("internal error: unknown error");
3227 break;
48d502e1 3228 }
c96a8570
BS
3229
3230 if (msg)
3231 r = info->callbacks->warning
3232 (info, msg, name, input_bfd, input_section, rel->r_offset);
3233
3234 if (! r)
3235 return FALSE;
48d502e1
BS
3236 }
3237 }
3238
3239 return TRUE;
3240}
3241
2774f1a6
BS
3242/* Update the relocation information for the relocations of the section
3243 being removed. */
3244
3245static bfd_boolean
3246bfinfdpic_gc_sweep_hook (bfd *abfd,
3247 struct bfd_link_info *info,
3248 asection *sec,
3249 const Elf_Internal_Rela *relocs)
3250{
3251 Elf_Internal_Shdr *symtab_hdr;
3252 struct elf_link_hash_entry **sym_hashes, **sym_hashes_end;
3253 const Elf_Internal_Rela *rel;
3254 const Elf_Internal_Rela *rel_end;
3255 struct bfinfdpic_relocs_info *picrel;
3256
3257 BFD_ASSERT (IS_FDPIC (abfd));
3258
3259 symtab_hdr = &elf_tdata (abfd)->symtab_hdr;
3260 sym_hashes = elf_sym_hashes (abfd);
3261 sym_hashes_end = sym_hashes + symtab_hdr->sh_size/sizeof(Elf32_External_Sym);
3262 if (!elf_bad_symtab (abfd))
3263 sym_hashes_end -= symtab_hdr->sh_info;
3264
3265 rel_end = relocs + sec->reloc_count;
3266 for (rel = relocs; rel < rel_end; rel++)
3267 {
3268 struct elf_link_hash_entry *h;
3269 unsigned long r_symndx;
3270
3271 r_symndx = ELF32_R_SYM (rel->r_info);
3272 if (r_symndx < symtab_hdr->sh_info)
3273 h = NULL;
3274 else
3275 h = sym_hashes[r_symndx - symtab_hdr->sh_info];
3276
3277 if (h != NULL)
3278 picrel = bfinfdpic_relocs_info_for_global (bfinfdpic_relocs_info (info),
3279 abfd, h,
3280 rel->r_addend, NO_INSERT);
3281 else
3282 picrel = bfinfdpic_relocs_info_for_local (bfinfdpic_relocs_info
3283 (info), abfd, r_symndx,
3284 rel->r_addend, NO_INSERT);
3285
3286 if (!picrel)
3287 return TRUE;
3288
3289 switch (ELF32_R_TYPE (rel->r_info))
3290 {
3291 case R_pcrel24:
3292 case R_pcrel24_jump_l:
3293 picrel->call--;
3294 break;
3295
3296 case R_BFIN_FUNCDESC_VALUE:
3297 picrel->relocsfdv--;
3298 if (bfd_get_section_flags (abfd, sec) & SEC_ALLOC)
3299 picrel->relocs32++;
3300 /* Fall through. */
3301
3302 case R_byte4_data:
3303 picrel->sym--;
3304 if (bfd_get_section_flags (abfd, sec) & SEC_ALLOC)
3305 picrel->relocs32--;
3306 break;
3307
3308 case R_BFIN_GOT17M4:
3309 picrel->got17m4--;
3310 break;
3311
3312 case R_BFIN_GOTHI:
3313 case R_BFIN_GOTLO:
3314 picrel->gothilo--;
3315 break;
3316
3317 case R_BFIN_FUNCDESC_GOT17M4:
3318 picrel->fdgot17m4--;
3319 break;
3320
3321 case R_BFIN_FUNCDESC_GOTHI:
3322 case R_BFIN_FUNCDESC_GOTLO:
3323 picrel->fdgothilo--;
3324 break;
3325
3326 case R_BFIN_GOTOFF17M4:
3327 case R_BFIN_GOTOFFHI:
3328 case R_BFIN_GOTOFFLO:
3329 picrel->gotoff--;
3330 break;
3331
3332 case R_BFIN_FUNCDESC_GOTOFF17M4:
3333 picrel->fdgoff17m4--;
3334 break;
3335
3336 case R_BFIN_FUNCDESC_GOTOFFHI:
3337 case R_BFIN_FUNCDESC_GOTOFFLO:
3338 picrel->fdgoffhilo--;
3339 break;
3340
3341 case R_BFIN_FUNCDESC:
3342 picrel->fd--;
3343 picrel->relocsfd--;
3344 break;
3345
3346 default:
3347 break;
3348 }
3349 }
3350
3351 return TRUE;
3352}
3353
48d502e1
BS
3354/* We need dynamic symbols for every section, since segments can
3355 relocate independently. */
3356static bfd_boolean
3357_bfinfdpic_link_omit_section_dynsym (bfd *output_bfd ATTRIBUTE_UNUSED,
3358 struct bfd_link_info *info
3359 ATTRIBUTE_UNUSED,
3360 asection *p ATTRIBUTE_UNUSED)
3361{
3362 switch (elf_section_data (p)->this_hdr.sh_type)
3363 {
3364 case SHT_PROGBITS:
3365 case SHT_NOBITS:
3366 /* If sh_type is yet undecided, assume it could be
3367 SHT_PROGBITS/SHT_NOBITS. */
3368 case SHT_NULL:
3369 return FALSE;
3370
3371 /* There shouldn't be section relative relocations
3372 against any other section. */
3373 default:
3374 return TRUE;
3375 }
3376}
3377
3378/* Create a .got section, as well as its additional info field. This
3379 is almost entirely copied from
3380 elflink.c:_bfd_elf_create_got_section(). */
3381
3382static bfd_boolean
3383_bfin_create_got_section (bfd *abfd, struct bfd_link_info *info)
3384{
3385 flagword flags, pltflags;
3386 asection *s;
3387 struct elf_link_hash_entry *h;
48d502e1
BS
3388 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
3389 int ptralign;
3390 int offset;
3391
3392 /* This function may be called more than once. */
3393 s = bfd_get_section_by_name (abfd, ".got");
3394 if (s != NULL && (s->flags & SEC_LINKER_CREATED) != 0)
3395 return TRUE;
3396
3397 /* Machine specific: although pointers are 32-bits wide, we want the
3398 GOT to be aligned to a 64-bit boundary, such that function
3399 descriptors in it can be accessed with 64-bit loads and
3400 stores. */
3401 ptralign = 3;
3402
3403 flags = (SEC_ALLOC | SEC_LOAD | SEC_HAS_CONTENTS | SEC_IN_MEMORY
3404 | SEC_LINKER_CREATED);
3405 pltflags = flags;
3406
3407 s = bfd_make_section_with_flags (abfd, ".got", flags);
3408 if (s == NULL
3409 || !bfd_set_section_alignment (abfd, s, ptralign))
3410 return FALSE;
3411
3412 if (bed->want_got_plt)
3413 {
3414 s = bfd_make_section_with_flags (abfd, ".got.plt", flags);
3415 if (s == NULL
3416 || !bfd_set_section_alignment (abfd, s, ptralign))
3417 return FALSE;
3418 }
3419
3420 if (bed->want_got_sym)
3421 {
3422 /* Define the symbol _GLOBAL_OFFSET_TABLE_ at the start of the .got
3423 (or .got.plt) section. We don't do this in the linker script
3424 because we don't want to define the symbol if we are not creating
3425 a global offset table. */
5592d7ec 3426 h = _bfd_elf_define_linkage_sym (abfd, info, s, "__GLOBAL_OFFSET_TABLE_");
48d502e1
BS
3427 elf_hash_table (info)->hgot = h;
3428 if (h == NULL)
3429 return FALSE;
3430
3431 /* Machine-specific: we want the symbol for executables as
3432 well. */
3433 if (! bfd_elf_link_record_dynamic_symbol (info, h))
3434 return FALSE;
3435 }
3436
3437 /* The first bit of the global offset table is the header. */
3438 s->size += bed->got_header_size;
3439
3440 /* This is the machine-specific part. Create and initialize section
3441 data for the got. */
3442 if (IS_FDPIC (abfd))
3443 {
3444 bfinfdpic_got_section (info) = s;
3445 bfinfdpic_relocs_info (info) = htab_try_create (1,
3446 bfinfdpic_relocs_info_hash,
3447 bfinfdpic_relocs_info_eq,
3448 (htab_del) NULL);
3449 if (! bfinfdpic_relocs_info (info))
3450 return FALSE;
3451
3452 s = bfd_make_section_with_flags (abfd, ".rel.got",
3453 (flags | SEC_READONLY));
3454 if (s == NULL
3455 || ! bfd_set_section_alignment (abfd, s, 2))
3456 return FALSE;
3457
3458 bfinfdpic_gotrel_section (info) = s;
3459
3460 /* Machine-specific. */
3461 s = bfd_make_section_with_flags (abfd, ".rofixup",
3462 (flags | SEC_READONLY));
3463 if (s == NULL
3464 || ! bfd_set_section_alignment (abfd, s, 2))
3465 return FALSE;
3466
3467 bfinfdpic_gotfixup_section (info) = s;
3468 offset = -2048;
3469 flags = BSF_GLOBAL;
3470 }
3471 else
3472 {
3473 offset = 2048;
3474 flags = BSF_GLOBAL | BSF_WEAK;
3475 }
3476
48d502e1
BS
3477 return TRUE;
3478}
3479
3480/* Make sure the got and plt sections exist, and that our pointers in
3481 the link hash table point to them. */
3482
3483static bfd_boolean
3484elf32_bfinfdpic_create_dynamic_sections (bfd *abfd, struct bfd_link_info *info)
3485{
3486 /* This is mostly copied from
3487 elflink.c:_bfd_elf_create_dynamic_sections(). */
3488 flagword flags, pltflags;
3489 asection *s;
3490 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
3491
3492 /* We need to create .plt, .rel[a].plt, .got, .got.plt, .dynbss, and
3493 .rel[a].bss sections. */
3494
3495 flags = (SEC_ALLOC | SEC_LOAD | SEC_HAS_CONTENTS | SEC_IN_MEMORY
3496 | SEC_LINKER_CREATED);
3497
3498 pltflags = flags;
3499 pltflags |= SEC_CODE;
3500 if (bed->plt_not_loaded)
3501 pltflags &= ~ (SEC_CODE | SEC_LOAD | SEC_HAS_CONTENTS);
3502 if (bed->plt_readonly)
3503 pltflags |= SEC_READONLY;
3504
117ed4f8 3505 s = bfd_make_section_with_flags (abfd, ".plt", pltflags);
48d502e1 3506 if (s == NULL
48d502e1
BS
3507 || ! bfd_set_section_alignment (abfd, s, bed->plt_alignment))
3508 return FALSE;
3509 /* Blackfin-specific: remember it. */
3510 bfinfdpic_plt_section (info) = s;
3511
3512 if (bed->want_plt_sym)
3513 {
3514 /* Define the symbol _PROCEDURE_LINKAGE_TABLE_ at the start of the
3515 .plt section. */
3516 struct elf_link_hash_entry *h;
3517 struct bfd_link_hash_entry *bh = NULL;
3518
3519 if (! (_bfd_generic_link_add_one_symbol
5592d7ec 3520 (info, abfd, "__PROCEDURE_LINKAGE_TABLE_", BSF_GLOBAL, s, 0, NULL,
48d502e1
BS
3521 FALSE, get_elf_backend_data (abfd)->collect, &bh)))
3522 return FALSE;
3523 h = (struct elf_link_hash_entry *) bh;
3524 h->def_regular = 1;
3525 h->type = STT_OBJECT;
3526
3527 if (! info->executable
3528 && ! bfd_elf_link_record_dynamic_symbol (info, h))
3529 return FALSE;
3530 }
3531
3532 /* Blackfin-specific: we want rel relocations for the plt. */
117ed4f8 3533 s = bfd_make_section_with_flags (abfd, ".rel.plt", flags | SEC_READONLY);
48d502e1 3534 if (s == NULL
48d502e1
BS
3535 || ! bfd_set_section_alignment (abfd, s, bed->s->log_file_align))
3536 return FALSE;
3537 /* Blackfin-specific: remember it. */
3538 bfinfdpic_pltrel_section (info) = s;
3539
3540 /* Blackfin-specific: we want to create the GOT in the Blackfin way. */
3541 if (! _bfin_create_got_section (abfd, info))
3542 return FALSE;
3543
3544 /* Blackfin-specific: make sure we created everything we wanted. */
3545 BFD_ASSERT (bfinfdpic_got_section (info) && bfinfdpic_gotrel_section (info)
3546 /* && bfinfdpic_gotfixup_section (info) */
3547 && bfinfdpic_plt_section (info)
3548 && bfinfdpic_pltrel_section (info));
3549
3550 if (bed->want_dynbss)
3551 {
3552 /* The .dynbss section is a place to put symbols which are defined
3553 by dynamic objects, are referenced by regular objects, and are
3554 not functions. We must allocate space for them in the process
3555 image and use a R_*_COPY reloc to tell the dynamic linker to
3556 initialize them at run time. The linker script puts the .dynbss
3557 section into the .bss section of the final image. */
117ed4f8
AM
3558 s = bfd_make_section_with_flags (abfd, ".dynbss",
3559 SEC_ALLOC | SEC_LINKER_CREATED);
3560 if (s == NULL)
48d502e1
BS
3561 return FALSE;
3562
3563 /* The .rel[a].bss section holds copy relocs. This section is not
3564 normally needed. We need to create it here, though, so that the
3565 linker will map it to an output section. We can't just create it
3566 only if we need it, because we will not know whether we need it
3567 until we have seen all the input files, and the first time the
3568 main linker code calls BFD after examining all the input files
3569 (size_dynamic_sections) the input sections have already been
3570 mapped to the output sections. If the section turns out not to
3571 be needed, we can discard it later. We will never need this
3572 section when generating a shared object, since they do not use
3573 copy relocs. */
3574 if (! info->shared)
3575 {
117ed4f8
AM
3576 s = bfd_make_section_with_flags (abfd,
3577 (bed->default_use_rela_p
3578 ? ".rela.bss" : ".rel.bss"),
3579 flags | SEC_READONLY);
48d502e1 3580 if (s == NULL
48d502e1
BS
3581 || ! bfd_set_section_alignment (abfd, s, bed->s->log_file_align))
3582 return FALSE;
3583 }
3584 }
3585
3586 return TRUE;
3587}
3588
48d502e1
BS
3589/* Compute the total GOT size required by each symbol in each range.
3590 Symbols may require up to 4 words in the GOT: an entry pointing to
3591 the symbol, an entry pointing to its function descriptor, and a
3592 private function descriptors taking two words. */
3593
3594static int
3595_bfinfdpic_count_got_plt_entries (void **entryp, void *dinfo_)
3596{
3597 struct bfinfdpic_relocs_info *entry = *entryp;
3598 struct _bfinfdpic_dynamic_got_info *dinfo = dinfo_;
3599 unsigned relocs = 0, fixups = 0;
3600
3601 /* Allocate space for a GOT entry pointing to the symbol. */
3602 if (entry->got17m4)
3603 dinfo->got17m4 += 4;
3604 else if (entry->gothilo)
3605 dinfo->gothilo += 4;
3606 else
3607 entry->relocs32--;
3608 entry->relocs32++;
3609
3610 /* Allocate space for a GOT entry pointing to the function
3611 descriptor. */
3612 if (entry->fdgot17m4)
3613 dinfo->got17m4 += 4;
3614 else if (entry->fdgothilo)
3615 dinfo->gothilo += 4;
3616 else
3617 entry->relocsfd--;
3618 entry->relocsfd++;
3619
3620 /* Decide whether we need a PLT entry, a function descriptor in the
3621 GOT, and a lazy PLT entry for this symbol. */
3622 entry->plt = entry->call
3623 && entry->symndx == -1 && ! BFINFDPIC_SYM_LOCAL (dinfo->info, entry->d.h)
3624 && elf_hash_table (dinfo->info)->dynamic_sections_created;
3625 entry->privfd = entry->plt
3626 || entry->fdgoff17m4 || entry->fdgoffhilo
3627 || ((entry->fd || entry->fdgot17m4 || entry->fdgothilo)
3628 && (entry->symndx != -1
3629 || BFINFDPIC_FUNCDESC_LOCAL (dinfo->info, entry->d.h)));
3630 entry->lazyplt = entry->privfd
3631 && entry->symndx == -1 && ! BFINFDPIC_SYM_LOCAL (dinfo->info, entry->d.h)
3632 && ! (dinfo->info->flags & DF_BIND_NOW)
3633 && elf_hash_table (dinfo->info)->dynamic_sections_created;
3634
3635 /* Allocate space for a function descriptor. */
3636 if (entry->fdgoff17m4)
3637 dinfo->fd17m4 += 8;
3638 else if (entry->privfd && entry->plt)
3639 dinfo->fdplt += 8;
3640 else if (entry->privfd)
3641 dinfo->fdhilo += 8;
3642 else
3643 entry->relocsfdv--;
3644 entry->relocsfdv++;
3645
3646 if (entry->lazyplt)
3647 dinfo->lzplt += LZPLT_NORMAL_SIZE;
3648
3649 if (!dinfo->info->executable || dinfo->info->pie)
3650 relocs = entry->relocs32 + entry->relocsfd + entry->relocsfdv;
3651 else
3652 {
3653 if (entry->symndx != -1 || BFINFDPIC_SYM_LOCAL (dinfo->info, entry->d.h))
3654 {
3655 if (entry->symndx != -1
3656 || entry->d.h->root.type != bfd_link_hash_undefweak)
3657 fixups += entry->relocs32 + 2 * entry->relocsfdv;
3658 }
3659 else
3660 relocs += entry->relocs32 + entry->relocsfdv;
3661
3662 if (entry->symndx != -1
3663 || BFINFDPIC_FUNCDESC_LOCAL (dinfo->info, entry->d.h))
3664 {
3665 if (entry->symndx != -1
3666 || entry->d.h->root.type != bfd_link_hash_undefweak)
3667 fixups += entry->relocsfd;
3668 }
3669 else
3670 relocs += entry->relocsfd;
3671 }
3672
3673 entry->dynrelocs += relocs;
3674 entry->fixups += fixups;
3675 dinfo->relocs += relocs;
3676 dinfo->fixups += fixups;
3677
3678 return 1;
3679}
3680
3681/* This structure is used to assign offsets to got entries, function
3682 descriptors, plt entries and lazy plt entries. */
3683
3684struct _bfinfdpic_dynamic_got_plt_info
3685{
3686 /* Summary information collected with _bfinfdpic_count_got_plt_entries. */
3687 struct _bfinfdpic_dynamic_got_info g;
3688
3689 /* For each addressable range, we record a MAX (positive) and MIN
3690 (negative) value. CUR is used to assign got entries, and it's
3691 incremented from an initial positive value to MAX, then from MIN
3692 to FDCUR (unless FDCUR wraps around first). FDCUR is used to
3693 assign function descriptors, and it's decreased from an initial
3694 non-positive value to MIN, then from MAX down to CUR (unless CUR
3695 wraps around first). All of MIN, MAX, CUR and FDCUR always point
3696 to even words. ODD, if non-zero, indicates an odd word to be
3697 used for the next got entry, otherwise CUR is used and
3698 incremented by a pair of words, wrapping around when it reaches
3699 MAX. FDCUR is decremented (and wrapped) before the next function
3700 descriptor is chosen. FDPLT indicates the number of remaining
3701 slots that can be used for function descriptors used only by PLT
3702 entries. */
3703 struct _bfinfdpic_dynamic_got_alloc_data
3704 {
3705 bfd_signed_vma max, cur, odd, fdcur, min;
3706 bfd_vma fdplt;
3707 } got17m4, gothilo;
3708};
3709
3710/* Determine the positive and negative ranges to be used by each
3711 offset range in the GOT. FDCUR and CUR, that must be aligned to a
3712 double-word boundary, are the minimum (negative) and maximum
3713 (positive) GOT offsets already used by previous ranges, except for
3714 an ODD entry that may have been left behind. GOT and FD indicate
3715 the size of GOT entries and function descriptors that must be
3716 placed within the range from -WRAP to WRAP. If there's room left,
3717 up to FDPLT bytes should be reserved for additional function
3718 descriptors. */
3719
3720inline static bfd_signed_vma
3721_bfinfdpic_compute_got_alloc_data (struct _bfinfdpic_dynamic_got_alloc_data *gad,
3722 bfd_signed_vma fdcur,
3723 bfd_signed_vma odd,
3724 bfd_signed_vma cur,
3725 bfd_vma got,
3726 bfd_vma fd,
3727 bfd_vma fdplt,
3728 bfd_vma wrap)
3729{
3730 bfd_signed_vma wrapmin = -wrap;
3731
3732 /* Start at the given initial points. */
3733 gad->fdcur = fdcur;
3734 gad->cur = cur;
3735
3736 /* If we had an incoming odd word and we have any got entries that
3737 are going to use it, consume it, otherwise leave gad->odd at
3738 zero. We might force gad->odd to zero and return the incoming
3739 odd such that it is used by the next range, but then GOT entries
3740 might appear to be out of order and we wouldn't be able to
3741 shorten the GOT by one word if it turns out to end with an
3742 unpaired GOT entry. */
3743 if (odd && got)
3744 {
3745 gad->odd = odd;
3746 got -= 4;
3747 odd = 0;
3748 }
3749 else
3750 gad->odd = 0;
3751
3752 /* If we're left with an unpaired GOT entry, compute its location
3753 such that we can return it. Otherwise, if got doesn't require an
3754 odd number of words here, either odd was already zero in the
3755 block above, or it was set to zero because got was non-zero, or
3756 got was already zero. In the latter case, we want the value of
3757 odd to carry over to the return statement, so we don't want to
3758 reset odd unless the condition below is true. */
3759 if (got & 4)
3760 {
3761 odd = cur + got;
3762 got += 4;
3763 }
3764
3765 /* Compute the tentative boundaries of this range. */
3766 gad->max = cur + got;
3767 gad->min = fdcur - fd;
3768 gad->fdplt = 0;
3769
3770 /* If function descriptors took too much space, wrap some of them
3771 around. */
3772 if (gad->min < wrapmin)
3773 {
3774 gad->max += wrapmin - gad->min;
3775 gad->min = wrapmin;
3776 }
3777 /* If there is space left and we have function descriptors
3778 referenced in PLT entries that could take advantage of shorter
3779 offsets, place them here. */
3780 else if (fdplt && gad->min > wrapmin)
3781 {
3782 bfd_vma fds;
3783 if ((bfd_vma) (gad->min - wrapmin) < fdplt)
3784 fds = gad->min - wrapmin;
3785 else
3786 fds = fdplt;
3787
3788 fdplt -= fds;
3789 gad->min -= fds;
3790 gad->fdplt += fds;
3791 }
3792
3793 /* If GOT entries took too much space, wrap some of them around.
3794 This may well cause gad->min to become lower than wrapmin. This
3795 will cause a relocation overflow later on, so we don't have to
3796 report it here . */
3797 if ((bfd_vma) gad->max > wrap)
3798 {
3799 gad->min -= gad->max - wrap;
3800 gad->max = wrap;
3801 }
3802 /* If there is more space left, try to place some more function
3803 descriptors for PLT entries. */
3804 else if (fdplt && (bfd_vma) gad->max < wrap)
3805 {
3806 bfd_vma fds;
3807 if ((bfd_vma) (wrap - gad->max) < fdplt)
3808 fds = wrap - gad->max;
3809 else
3810 fds = fdplt;
3811
3812 fdplt -= fds;
3813 gad->max += fds;
3814 gad->fdplt += fds;
3815 }
3816
3817 /* If odd was initially computed as an offset past the wrap point,
3818 wrap it around. */
3819 if (odd > gad->max)
3820 odd = gad->min + odd - gad->max;
3821
3822 /* _bfinfdpic_get_got_entry() below will always wrap gad->cur if needed
3823 before returning, so do it here too. This guarantees that,
3824 should cur and fdcur meet at the wrap point, they'll both be
3825 equal to min. */
3826 if (gad->cur == gad->max)
3827 gad->cur = gad->min;
3828
3829 return odd;
3830}
3831
3832/* Compute the location of the next GOT entry, given the allocation
3833 data for a range. */
3834
3835inline static bfd_signed_vma
3836_bfinfdpic_get_got_entry (struct _bfinfdpic_dynamic_got_alloc_data *gad)
3837{
3838 bfd_signed_vma ret;
3839
3840 if (gad->odd)
3841 {
3842 /* If there was an odd word left behind, use it. */
3843 ret = gad->odd;
3844 gad->odd = 0;
3845 }
3846 else
3847 {
3848 /* Otherwise, use the word pointed to by cur, reserve the next
3849 as an odd word, and skip to the next pair of words, possibly
3850 wrapping around. */
3851 ret = gad->cur;
3852 gad->odd = gad->cur + 4;
3853 gad->cur += 8;
3854 if (gad->cur == gad->max)
3855 gad->cur = gad->min;
3856 }
3857
3858 return ret;
3859}
3860
3861/* Compute the location of the next function descriptor entry in the
3862 GOT, given the allocation data for a range. */
3863
3864inline static bfd_signed_vma
3865_bfinfdpic_get_fd_entry (struct _bfinfdpic_dynamic_got_alloc_data *gad)
3866{
3867 /* If we're at the bottom, wrap around, and only then allocate the
3868 next pair of words. */
3869 if (gad->fdcur == gad->min)
3870 gad->fdcur = gad->max;
3871 return gad->fdcur -= 8;
3872}
3873
3874/* Assign GOT offsets for every GOT entry and function descriptor.
3875 Doing everything in a single pass is tricky. */
3876
3877static int
3878_bfinfdpic_assign_got_entries (void **entryp, void *info_)
3879{
3880 struct bfinfdpic_relocs_info *entry = *entryp;
3881 struct _bfinfdpic_dynamic_got_plt_info *dinfo = info_;
3882
3883 if (entry->got17m4)
3884 entry->got_entry = _bfinfdpic_get_got_entry (&dinfo->got17m4);
3885 else if (entry->gothilo)
3886 entry->got_entry = _bfinfdpic_get_got_entry (&dinfo->gothilo);
3887
3888 if (entry->fdgot17m4)
3889 entry->fdgot_entry = _bfinfdpic_get_got_entry (&dinfo->got17m4);
3890 else if (entry->fdgothilo)
3891 entry->fdgot_entry = _bfinfdpic_get_got_entry (&dinfo->gothilo);
3892
3893 if (entry->fdgoff17m4)
3894 entry->fd_entry = _bfinfdpic_get_fd_entry (&dinfo->got17m4);
3895 else if (entry->plt && dinfo->got17m4.fdplt)
3896 {
3897 dinfo->got17m4.fdplt -= 8;
3898 entry->fd_entry = _bfinfdpic_get_fd_entry (&dinfo->got17m4);
3899 }
3900 else if (entry->plt)
3901 {
3902 dinfo->gothilo.fdplt -= 8;
3903 entry->fd_entry = _bfinfdpic_get_fd_entry (&dinfo->gothilo);
3904 }
3905 else if (entry->privfd)
3906 entry->fd_entry = _bfinfdpic_get_fd_entry (&dinfo->gothilo);
3907
3908 return 1;
3909}
3910
3911/* Assign GOT offsets to private function descriptors used by PLT
3912 entries (or referenced by 32-bit offsets), as well as PLT entries
3913 and lazy PLT entries. */
3914
3915static int
3916_bfinfdpic_assign_plt_entries (void **entryp, void *info_)
3917{
3918 struct bfinfdpic_relocs_info *entry = *entryp;
3919 struct _bfinfdpic_dynamic_got_plt_info *dinfo = info_;
3920
3921 /* If this symbol requires a local function descriptor, allocate
3922 one. */
3923 if (entry->privfd && entry->fd_entry == 0)
3924 {
3925 if (dinfo->got17m4.fdplt)
3926 {
3927 entry->fd_entry = _bfinfdpic_get_fd_entry (&dinfo->got17m4);
3928 dinfo->got17m4.fdplt -= 8;
3929 }
3930 else
3931 {
3932 BFD_ASSERT (dinfo->gothilo.fdplt);
3933 entry->fd_entry = _bfinfdpic_get_fd_entry (&dinfo->gothilo);
3934 dinfo->gothilo.fdplt -= 8;
3935 }
3936 }
3937
3938 if (entry->plt)
3939 {
3940 int size;
3941
3942 /* We use the section's raw size to mark the location of the
3943 next PLT entry. */
3944 entry->plt_entry = bfinfdpic_plt_section (dinfo->g.info)->size;
3945
3946 /* Figure out the length of this PLT entry based on the
3947 addressing mode we need to reach the function descriptor. */
3948 BFD_ASSERT (entry->fd_entry);
3949 if (entry->fd_entry >= -(1 << (18 - 1))
3950 && entry->fd_entry + 4 < (1 << (18 - 1)))
3951 size = 10;
3952 else
3953 size = 16;
3954
3955 bfinfdpic_plt_section (dinfo->g.info)->size += size;
3956 }
3957
3958 if (entry->lazyplt)
3959 {
3960 entry->lzplt_entry = dinfo->g.lzplt;
3961 dinfo->g.lzplt += LZPLT_NORMAL_SIZE;
3962 /* If this entry is the one that gets the resolver stub, account
3963 for the additional instruction. */
3964 if (entry->lzplt_entry % BFINFDPIC_LZPLT_BLOCK_SIZE
3965 == BFINFDPIC_LZPLT_RESOLV_LOC)
3966 dinfo->g.lzplt += LZPLT_RESOLVER_EXTRA;
3967 }
3968
3969 return 1;
3970}
3971
3972/* Follow indirect and warning hash entries so that each got entry
3973 points to the final symbol definition. P must point to a pointer
3974 to the hash table we're traversing. Since this traversal may
3975 modify the hash table, we set this pointer to NULL to indicate
3976 we've made a potentially-destructive change to the hash table, so
3977 the traversal must be restarted. */
3978static int
3979_bfinfdpic_resolve_final_relocs_info (void **entryp, void *p)
3980{
3981 struct bfinfdpic_relocs_info *entry = *entryp;
3982 htab_t *htab = p;
3983
3984 if (entry->symndx == -1)
3985 {
3986 struct elf_link_hash_entry *h = entry->d.h;
3987 struct bfinfdpic_relocs_info *oentry;
3988
3989 while (h->root.type == bfd_link_hash_indirect
3990 || h->root.type == bfd_link_hash_warning)
3991 h = (struct elf_link_hash_entry *)h->root.u.i.link;
3992
3993 if (entry->d.h == h)
3994 return 1;
3995
3996 oentry = bfinfdpic_relocs_info_for_global (*htab, 0, h, entry->addend,
3997 NO_INSERT);
3998
3999 if (oentry)
4000 {
4001 /* Merge the two entries. */
4002 bfinfdpic_pic_merge_early_relocs_info (oentry, entry);
4003 htab_clear_slot (*htab, entryp);
4004 return 1;
4005 }
4006
4007 entry->d.h = h;
4008
4009 /* If we can't find this entry with the new bfd hash, re-insert
4010 it, and get the traversal restarted. */
4011 if (! htab_find (*htab, entry))
4012 {
4013 htab_clear_slot (*htab, entryp);
4014 entryp = htab_find_slot (*htab, entry, INSERT);
4015 if (! *entryp)
4016 *entryp = entry;
4017 /* Abort the traversal, since the whole table may have
4018 moved, and leave it up to the parent to restart the
4019 process. */
4020 *(htab_t *)p = NULL;
4021 return 0;
4022 }
4023 }
4024
4025 return 1;
4026}
4027
4028/* Set the sizes of the dynamic sections. */
4029
4030static bfd_boolean
4031elf32_bfinfdpic_size_dynamic_sections (bfd *output_bfd,
4032 struct bfd_link_info *info)
4033{
4034 bfd *dynobj;
4035 asection *s;
4036 struct _bfinfdpic_dynamic_got_plt_info gpinfo;
4037 bfd_signed_vma odd;
4038 bfd_vma limit;
4039
4040 dynobj = elf_hash_table (info)->dynobj;
4041 BFD_ASSERT (dynobj != NULL);
4042
4043 if (elf_hash_table (info)->dynamic_sections_created)
4044 {
4045 /* Set the contents of the .interp section to the interpreter. */
4046 if (info->executable)
4047 {
4048 s = bfd_get_section_by_name (dynobj, ".interp");
4049 BFD_ASSERT (s != NULL);
4050 s->size = sizeof ELF_DYNAMIC_INTERPRETER;
4051 s->contents = (bfd_byte *) ELF_DYNAMIC_INTERPRETER;
4052 }
4053 }
4054
4055 memset (&gpinfo, 0, sizeof (gpinfo));
4056 gpinfo.g.info = info;
4057
4058 for (;;)
4059 {
4060 htab_t relocs = bfinfdpic_relocs_info (info);
4061
4062 htab_traverse (relocs, _bfinfdpic_resolve_final_relocs_info, &relocs);
4063
4064 if (relocs == bfinfdpic_relocs_info (info))
4065 break;
4066 }
4067
4068 htab_traverse (bfinfdpic_relocs_info (info), _bfinfdpic_count_got_plt_entries,
4069 &gpinfo.g);
4070
4071 odd = 12;
4072 /* Compute the total size taken by entries in the 18-bit range,
4073 to tell how many PLT function descriptors we can bring into it
4074 without causing it to overflow. */
4075 limit = odd + gpinfo.g.got17m4 + gpinfo.g.fd17m4;
4076 if (limit < (bfd_vma)1 << 18)
4077 limit = ((bfd_vma)1 << 18) - limit;
4078 else
4079 limit = 0;
4080 if (gpinfo.g.fdplt < limit)
4081 limit = gpinfo.g.fdplt;
4082
4083 /* Determine the ranges of GOT offsets that we can use for each
4084 range of addressing modes. */
4085 odd = _bfinfdpic_compute_got_alloc_data (&gpinfo.got17m4,
4086 0,
4087 odd,
4088 16,
4089 gpinfo.g.got17m4,
4090 gpinfo.g.fd17m4,
4091 limit,
4092 (bfd_vma)1 << (18-1));
4093 odd = _bfinfdpic_compute_got_alloc_data (&gpinfo.gothilo,
4094 gpinfo.got17m4.min,
4095 odd,
4096 gpinfo.got17m4.max,
4097 gpinfo.g.gothilo,
4098 gpinfo.g.fdhilo,
4099 gpinfo.g.fdplt - gpinfo.got17m4.fdplt,
4100 (bfd_vma)1 << (32-1));
4101
4102 /* Now assign (most) GOT offsets. */
4103 htab_traverse (bfinfdpic_relocs_info (info), _bfinfdpic_assign_got_entries,
4104 &gpinfo);
4105
4106 bfinfdpic_got_section (info)->size = gpinfo.gothilo.max
4107 - gpinfo.gothilo.min
4108 /* If an odd word is the last word of the GOT, we don't need this
4109 word to be part of the GOT. */
4110 - (odd + 4 == gpinfo.gothilo.max ? 4 : 0);
4111 if (bfinfdpic_got_section (info)->size == 0)
4112 bfinfdpic_got_section (info)->flags |= SEC_EXCLUDE;
4113 else if (bfinfdpic_got_section (info)->size == 12
4114 && ! elf_hash_table (info)->dynamic_sections_created)
4115 {
4116 bfinfdpic_got_section (info)->flags |= SEC_EXCLUDE;
4117 bfinfdpic_got_section (info)->size = 0;
4118 }
4119 else
4120 {
4121 bfinfdpic_got_section (info)->contents =
4122 (bfd_byte *) bfd_zalloc (dynobj,
4123 bfinfdpic_got_section (info)->size);
4124 if (bfinfdpic_got_section (info)->contents == NULL)
4125 return FALSE;
4126 }
4127
4128 if (elf_hash_table (info)->dynamic_sections_created)
4129 /* Subtract the number of lzplt entries, since those will generate
4130 relocations in the pltrel section. */
4131 bfinfdpic_gotrel_section (info)->size =
4132 (gpinfo.g.relocs - gpinfo.g.lzplt / LZPLT_NORMAL_SIZE)
4133 * get_elf_backend_data (output_bfd)->s->sizeof_rel;
4134 else
4135 BFD_ASSERT (gpinfo.g.relocs == 0);
4136 if (bfinfdpic_gotrel_section (info)->size == 0)
4137 bfinfdpic_gotrel_section (info)->flags |= SEC_EXCLUDE;
4138 else
4139 {
4140 bfinfdpic_gotrel_section (info)->contents =
4141 (bfd_byte *) bfd_zalloc (dynobj,
4142 bfinfdpic_gotrel_section (info)->size);
4143 if (bfinfdpic_gotrel_section (info)->contents == NULL)
4144 return FALSE;
4145 }
4146
4147 bfinfdpic_gotfixup_section (info)->size = (gpinfo.g.fixups + 1) * 4;
4148 if (bfinfdpic_gotfixup_section (info)->size == 0)
4149 bfinfdpic_gotfixup_section (info)->flags |= SEC_EXCLUDE;
4150 else
4151 {
4152 bfinfdpic_gotfixup_section (info)->contents =
4153 (bfd_byte *) bfd_zalloc (dynobj,
4154 bfinfdpic_gotfixup_section (info)->size);
4155 if (bfinfdpic_gotfixup_section (info)->contents == NULL)
4156 return FALSE;
4157 }
4158
4159 if (elf_hash_table (info)->dynamic_sections_created)
4160 {
4161 bfinfdpic_pltrel_section (info)->size =
4162 gpinfo.g.lzplt / LZPLT_NORMAL_SIZE * get_elf_backend_data (output_bfd)->s->sizeof_rel;
4163 if (bfinfdpic_pltrel_section (info)->size == 0)
4164 bfinfdpic_pltrel_section (info)->flags |= SEC_EXCLUDE;
4165 else
4166 {
4167 bfinfdpic_pltrel_section (info)->contents =
4168 (bfd_byte *) bfd_zalloc (dynobj,
4169 bfinfdpic_pltrel_section (info)->size);
4170 if (bfinfdpic_pltrel_section (info)->contents == NULL)
4171 return FALSE;
4172 }
4173 }
4174
4175 /* Add 4 bytes for every block of at most 65535 lazy PLT entries,
4176 such that there's room for the additional instruction needed to
4177 call the resolver. Since _bfinfdpic_assign_got_entries didn't
4178 account for them, our block size is 4 bytes smaller than the real
4179 block size. */
4180 if (elf_hash_table (info)->dynamic_sections_created)
4181 {
4182 bfinfdpic_plt_section (info)->size = gpinfo.g.lzplt
4183 + ((gpinfo.g.lzplt + (BFINFDPIC_LZPLT_BLOCK_SIZE - 4) - LZPLT_NORMAL_SIZE)
4184 / (BFINFDPIC_LZPLT_BLOCK_SIZE - 4) * LZPLT_RESOLVER_EXTRA);
4185 }
4186
4187 /* Reset it, such that _bfinfdpic_assign_plt_entries() can use it to
4188 actually assign lazy PLT entries addresses. */
4189 gpinfo.g.lzplt = 0;
4190
4191 /* Save information that we're going to need to generate GOT and PLT
4192 entries. */
4193 bfinfdpic_got_initial_offset (info) = -gpinfo.gothilo.min;
4194
4195 if (get_elf_backend_data (output_bfd)->want_got_sym)
4196 elf_hash_table (info)->hgot->root.u.def.value
4197 += bfinfdpic_got_initial_offset (info);
4198
4199 if (elf_hash_table (info)->dynamic_sections_created)
4200 bfinfdpic_plt_initial_offset (info) =
4201 bfinfdpic_plt_section (info)->size;
4202
4203 htab_traverse (bfinfdpic_relocs_info (info), _bfinfdpic_assign_plt_entries,
4204 &gpinfo);
4205
4206 /* Allocate the PLT section contents only after
4207 _bfinfdpic_assign_plt_entries has a chance to add the size of the
4208 non-lazy PLT entries. */
4209 if (elf_hash_table (info)->dynamic_sections_created)
4210 {
4211 if (bfinfdpic_plt_section (info)->size == 0)
4212 bfinfdpic_plt_section (info)->flags |= SEC_EXCLUDE;
4213 else
4214 {
4215 bfinfdpic_plt_section (info)->contents =
4216 (bfd_byte *) bfd_zalloc (dynobj,
4217 bfinfdpic_plt_section (info)->size);
4218 if (bfinfdpic_plt_section (info)->contents == NULL)
4219 return FALSE;
4220 }
4221 }
4222
4223 if (elf_hash_table (info)->dynamic_sections_created)
4224 {
4225 if (bfinfdpic_got_section (info)->size)
4226 if (!_bfd_elf_add_dynamic_entry (info, DT_PLTGOT, 0))
4227 return FALSE;
4228
4229 if (bfinfdpic_pltrel_section (info)->size)
4230 if (!_bfd_elf_add_dynamic_entry (info, DT_PLTRELSZ, 0)
4231 || !_bfd_elf_add_dynamic_entry (info, DT_PLTREL, DT_REL)
4232 || !_bfd_elf_add_dynamic_entry (info, DT_JMPREL, 0))
4233 return FALSE;
4234
4235 if (bfinfdpic_gotrel_section (info)->size)
4236 if (!_bfd_elf_add_dynamic_entry (info, DT_REL, 0)
4237 || !_bfd_elf_add_dynamic_entry (info, DT_RELSZ, 0)
4238 || !_bfd_elf_add_dynamic_entry (info, DT_RELENT,
4239 sizeof (Elf32_External_Rel)))
4240 return FALSE;
4241 }
4242
4243 return TRUE;
4244}
4245
4246static bfd_boolean
4247elf32_bfinfdpic_always_size_sections (bfd *output_bfd,
4248 struct bfd_link_info *info)
4249{
4250 if (!info->relocatable)
4251 {
4252 struct elf_link_hash_entry *h;
48d502e1
BS
4253
4254 /* Force a PT_GNU_STACK segment to be created. */
4255 if (! elf_tdata (output_bfd)->stack_flags)
4256 elf_tdata (output_bfd)->stack_flags = PF_R | PF_W | PF_X;
4257
4258 /* Define __stacksize if it's not defined yet. */
4259 h = elf_link_hash_lookup (elf_hash_table (info), "__stacksize",
4260 FALSE, FALSE, FALSE);
4261 if (! h || h->root.type != bfd_link_hash_defined
4262 || h->type != STT_OBJECT
4263 || !h->def_regular)
4264 {
4265 struct bfd_link_hash_entry *bh = NULL;
4266
4267 if (!(_bfd_generic_link_add_one_symbol
4268 (info, output_bfd, "__stacksize",
4269 BSF_GLOBAL, bfd_abs_section_ptr, DEFAULT_STACK_SIZE,
4270 (const char *) NULL, FALSE,
4271 get_elf_backend_data (output_bfd)->collect, &bh)))
4272 return FALSE;
4273
4274 h = (struct elf_link_hash_entry *) bh;
4275 h->def_regular = 1;
4276 h->type = STT_OBJECT;
4277 }
48d502e1
BS
4278 }
4279
4280 return TRUE;
4281}
4282
4283static bfd_boolean
e36284ab
AM
4284elf32_bfinfdpic_modify_program_headers (bfd *output_bfd,
4285 struct bfd_link_info *info)
48d502e1 4286{
e36284ab 4287 struct elf_obj_tdata *tdata = elf_tdata (output_bfd);
48d502e1 4288 struct elf_segment_map *m;
e36284ab 4289 Elf_Internal_Phdr *p;
48d502e1
BS
4290
4291 /* objcopy and strip preserve what's already there using
4292 elf32_bfinfdpic_copy_private_bfd_data (). */
4293 if (! info)
4294 return TRUE;
4295
e36284ab 4296 for (p = tdata->phdr, m = tdata->segment_map; m != NULL; m = m->next, p++)
48d502e1
BS
4297 if (m->p_type == PT_GNU_STACK)
4298 break;
4299
4300 if (m)
4301 {
48d502e1
BS
4302 struct elf_link_hash_entry *h;
4303
e36284ab
AM
4304 /* Obtain the pointer to the __stacksize symbol. */
4305 h = elf_link_hash_lookup (elf_hash_table (info), "__stacksize",
4306 FALSE, FALSE, FALSE);
4307 if (h)
48d502e1 4308 {
48d502e1
BS
4309 while (h->root.type == bfd_link_hash_indirect
4310 || h->root.type == bfd_link_hash_warning)
e36284ab 4311 h = (struct elf_link_hash_entry *) h->root.u.i.link;
48d502e1 4312 BFD_ASSERT (h->root.type == bfd_link_hash_defined);
e36284ab 4313 }
48d502e1 4314
e36284ab
AM
4315 /* Set the header p_memsz from the symbol value. We
4316 intentionally ignore the symbol section. */
4317 if (h && h->root.type == bfd_link_hash_defined)
4318 p->p_memsz = h->root.u.def.value;
4319 else
4320 p->p_memsz = DEFAULT_STACK_SIZE;
48d502e1 4321
e36284ab 4322 p->p_align = 8;
48d502e1
BS
4323 }
4324
4325 return TRUE;
4326}
4327
4328static bfd_boolean
4329elf32_bfinfdpic_finish_dynamic_sections (bfd *output_bfd,
4330 struct bfd_link_info *info)
4331{
4332 bfd *dynobj;
4333 asection *sdyn;
4334
4335 dynobj = elf_hash_table (info)->dynobj;
4336
4337 if (bfinfdpic_got_section (info))
4338 {
4339 BFD_ASSERT (bfinfdpic_gotrel_section (info)->size
4340 == (bfinfdpic_gotrel_section (info)->reloc_count
4341 * sizeof (Elf32_External_Rel)));
4342
4343 if (bfinfdpic_gotfixup_section (info))
4344 {
4345 struct elf_link_hash_entry *hgot = elf_hash_table (info)->hgot;
4346 bfd_vma got_value = hgot->root.u.def.value
4347 + hgot->root.u.def.section->output_section->vma
4348 + hgot->root.u.def.section->output_offset;
4349
4350 _bfinfdpic_add_rofixup (output_bfd, bfinfdpic_gotfixup_section (info),
4351 got_value, 0);
4352
4353 if (bfinfdpic_gotfixup_section (info)->size
4354 != (bfinfdpic_gotfixup_section (info)->reloc_count * 4))
0f64bb02
CM
4355 {
4356 (*_bfd_error_handler)
48d502e1 4357 ("LINKER BUG: .rofixup section size mismatch");
0f64bb02
CM
4358 return FALSE;
4359 }
4360 }
4361 }
48d502e1
BS
4362 if (elf_hash_table (info)->dynamic_sections_created)
4363 {
4364 BFD_ASSERT (bfinfdpic_pltrel_section (info)->size
4365 == (bfinfdpic_pltrel_section (info)->reloc_count
4366 * sizeof (Elf32_External_Rel)));
4367 }
4368
4369 sdyn = bfd_get_section_by_name (dynobj, ".dynamic");
4370
4371 if (elf_hash_table (info)->dynamic_sections_created)
4372 {
4373 Elf32_External_Dyn * dyncon;
4374 Elf32_External_Dyn * dynconend;
4375
4376 BFD_ASSERT (sdyn != NULL);
4377
4378 dyncon = (Elf32_External_Dyn *) sdyn->contents;
4379 dynconend = (Elf32_External_Dyn *) (sdyn->contents + sdyn->size);
4380
4381 for (; dyncon < dynconend; dyncon++)
4382 {
4383 Elf_Internal_Dyn dyn;
4384
4385 bfd_elf32_swap_dyn_in (dynobj, dyncon, &dyn);
4386
4387 switch (dyn.d_tag)
4388 {
4389 default:
4390 break;
4391
4392 case DT_PLTGOT:
4393 dyn.d_un.d_ptr = bfinfdpic_got_section (info)->output_section->vma
4394 + bfinfdpic_got_section (info)->output_offset
4395 + bfinfdpic_got_initial_offset (info);
4396 bfd_elf32_swap_dyn_out (output_bfd, &dyn, dyncon);
4397 break;
4398
4399 case DT_JMPREL:
4400 dyn.d_un.d_ptr = bfinfdpic_pltrel_section (info)
4401 ->output_section->vma
4402 + bfinfdpic_pltrel_section (info)->output_offset;
4403 bfd_elf32_swap_dyn_out (output_bfd, &dyn, dyncon);
4404 break;
4405
4406 case DT_PLTRELSZ:
4407 dyn.d_un.d_val = bfinfdpic_pltrel_section (info)->size;
4408 bfd_elf32_swap_dyn_out (output_bfd, &dyn, dyncon);
4409 break;
4410 }
4411 }
4412 }
4413
4414 return TRUE;
4415}
4416
4417/* Adjust a symbol defined by a dynamic object and referenced by a
4418 regular object. */
4419
4420static bfd_boolean
4421elf32_bfinfdpic_adjust_dynamic_symbol
4422(struct bfd_link_info *info ATTRIBUTE_UNUSED,
4423 struct elf_link_hash_entry *h ATTRIBUTE_UNUSED)
4424{
4425 bfd * dynobj;
4426
4427 dynobj = elf_hash_table (info)->dynobj;
4428
4429 /* Make sure we know what is going on here. */
4430 BFD_ASSERT (dynobj != NULL
4431 && (h->u.weakdef != NULL
4432 || (h->def_dynamic
4433 && h->ref_regular
4434 && !h->def_regular)));
4435
4436 /* If this is a weak symbol, and there is a real definition, the
4437 processor independent code will have arranged for us to see the
4438 real definition first, and we can just use the same value. */
4439 if (h->u.weakdef != NULL)
4440 {
4441 BFD_ASSERT (h->u.weakdef->root.type == bfd_link_hash_defined
4442 || h->u.weakdef->root.type == bfd_link_hash_defweak);
4443 h->root.u.def.section = h->u.weakdef->root.u.def.section;
4444 h->root.u.def.value = h->u.weakdef->root.u.def.value;
4445 }
0f64bb02
CM
4446
4447 return TRUE;
4448}
4449
48d502e1
BS
4450/* Perform any actions needed for dynamic symbols. */
4451
4452static bfd_boolean
4453elf32_bfinfdpic_finish_dynamic_symbol
4454(bfd *output_bfd ATTRIBUTE_UNUSED,
4455 struct bfd_link_info *info ATTRIBUTE_UNUSED,
4456 struct elf_link_hash_entry *h ATTRIBUTE_UNUSED,
4457 Elf_Internal_Sym *sym ATTRIBUTE_UNUSED)
0f64bb02 4458{
48d502e1
BS
4459 return TRUE;
4460}
0f64bb02 4461
48d502e1
BS
4462/* Decide whether to attempt to turn absptr or lsda encodings in
4463 shared libraries into pcrel within the given input section. */
0f64bb02 4464
48d502e1
BS
4465static bfd_boolean
4466bfinfdpic_elf_use_relative_eh_frame
4467(bfd *input_bfd ATTRIBUTE_UNUSED,
4468 struct bfd_link_info *info ATTRIBUTE_UNUSED,
4469 asection *eh_frame_section ATTRIBUTE_UNUSED)
4470{
4471 /* We can't use PC-relative encodings in FDPIC binaries, in general. */
4472 return FALSE;
4473}
0f64bb02 4474
48d502e1 4475/* Adjust the contents of an eh_frame_hdr section before they're output. */
0f64bb02 4476
48d502e1
BS
4477static bfd_byte
4478bfinfdpic_elf_encode_eh_address (bfd *abfd,
4479 struct bfd_link_info *info,
4480 asection *osec, bfd_vma offset,
4481 asection *loc_sec, bfd_vma loc_offset,
4482 bfd_vma *encoded)
4483{
4484 struct elf_link_hash_entry *h;
0f64bb02 4485
48d502e1
BS
4486 h = elf_hash_table (info)->hgot;
4487 BFD_ASSERT (h && h->root.type == bfd_link_hash_defined);
4488
4489 if (! h || (_bfinfdpic_osec_to_segment (abfd, osec)
4490 == _bfinfdpic_osec_to_segment (abfd, loc_sec->output_section)))
4491 return _bfd_elf_encode_eh_address (abfd, info, osec, offset,
4492 loc_sec, loc_offset, encoded);
4493
4494 BFD_ASSERT (_bfinfdpic_osec_to_segment (abfd, osec)
4495 == (_bfinfdpic_osec_to_segment
4496 (abfd, h->root.u.def.section->output_section)));
4497
4498 *encoded = osec->vma + offset
4499 - (h->root.u.def.value
4500 + h->root.u.def.section->output_section->vma
4501 + h->root.u.def.section->output_offset);
4502
4503 return DW_EH_PE_datarel | DW_EH_PE_sdata4;
0f64bb02
CM
4504}
4505
4506
48d502e1
BS
4507
4508/* Look through the relocs for a section during the first phase.
4509
4510 Besides handling virtual table relocs for gc, we have to deal with
4511 all sorts of PIC-related relocations. We describe below the
4512 general plan on how to handle such relocations, even though we only
4513 collect information at this point, storing them in hash tables for
4514 perusal of later passes.
4515
4516 32 relocations are propagated to the linker output when creating
4517 position-independent output. LO16 and HI16 relocations are not
4518 supposed to be encountered in this case.
4519
4520 LABEL16 should always be resolvable by the linker, since it's only
4521 used by branches.
4522
4523 LABEL24, on the other hand, is used by calls. If it turns out that
4524 the target of a call is a dynamic symbol, a PLT entry must be
4525 created for it, which triggers the creation of a private function
4526 descriptor and, unless lazy binding is disabled, a lazy PLT entry.
4527
4528 GPREL relocations require the referenced symbol to be in the same
4529 segment as _gp, but this can only be checked later.
4530
4531 All GOT, GOTOFF and FUNCDESC relocations require a .got section to
4532 exist. LABEL24 might as well, since it may require a PLT entry,
4533 that will require a got.
4534
4535 Non-FUNCDESC GOT relocations require a GOT entry to be created
4536 regardless of whether the symbol is dynamic. However, since a
4537 global symbol that turns out to not be exported may have the same
4538 address of a non-dynamic symbol, we don't assign GOT entries at
4539 this point, such that we can share them in this case. A relocation
4540 for the GOT entry always has to be created, be it to offset a
4541 private symbol by the section load address, be it to get the symbol
4542 resolved dynamically.
4543
4544 FUNCDESC GOT relocations require a GOT entry to be created, and
4545 handled as if a FUNCDESC relocation was applied to the GOT entry in
4546 an object file.
4547
4548 FUNCDESC relocations referencing a symbol that turns out to NOT be
4549 dynamic cause a private function descriptor to be created. The
4550 FUNCDESC relocation then decays to a 32 relocation that points at
4551 the private descriptor. If the symbol is dynamic, the FUNCDESC
4552 relocation is propagated to the linker output, such that the
4553 dynamic linker creates the canonical descriptor, pointing to the
4554 dynamically-resolved definition of the function.
4555
4556 Non-FUNCDESC GOTOFF relocations must always refer to non-dynamic
4557 symbols that are assigned to the same segment as the GOT, but we
4558 can only check this later, after we know the complete set of
4559 symbols defined and/or exported.
4560
4561 FUNCDESC GOTOFF relocations require a function descriptor to be
4562 created and, unless lazy binding is disabled or the symbol is not
4563 dynamic, a lazy PLT entry. Since we can't tell at this point
4564 whether a symbol is going to be dynamic, we have to decide later
4565 whether to create a lazy PLT entry or bind the descriptor directly
4566 to the private function.
4567
4568 FUNCDESC_VALUE relocations are not supposed to be present in object
4569 files, but they may very well be simply propagated to the linker
4570 output, since they have no side effect.
4571
4572
4573 A function descriptor always requires a FUNCDESC_VALUE relocation.
4574 Whether it's in .plt.rel or not depends on whether lazy binding is
4575 enabled and on whether the referenced symbol is dynamic.
4576
4577 The existence of a lazy PLT requires the resolverStub lazy PLT
4578 entry to be present.
4579
4580
4581 As for assignment of GOT, PLT and lazy PLT entries, and private
4582 descriptors, we might do them all sequentially, but we can do
4583 better than that. For example, we can place GOT entries and
4584 private function descriptors referenced using 12-bit operands
4585 closer to the PIC register value, such that these relocations don't
4586 overflow. Those that are only referenced with LO16 relocations
4587 could come next, but we may as well place PLT-required function
4588 descriptors in the 12-bit range to make them shorter. Symbols
4589 referenced with LO16/HI16 may come next, but we may place
4590 additional function descriptors in the 16-bit range if we can
4591 reliably tell that we've already placed entries that are ever
4592 referenced with only LO16. PLT entries are therefore generated as
4593 small as possible, while not introducing relocation overflows in
4594 GOT or FUNCDESC_GOTOFF relocations. Lazy PLT entries could be
4595 generated before or after PLT entries, but not intermingled with
4596 them, such that we can have more lazy PLT entries in range for a
4597 branch to the resolverStub. The resolverStub should be emitted at
4598 the most distant location from the first lazy PLT entry such that
4599 it's still in range for a branch, or closer, if there isn't a need
4600 for so many lazy PLT entries. Additional lazy PLT entries may be
4601 emitted after the resolverStub, as long as branches are still in
4602 range. If the branch goes out of range, longer lazy PLT entries
4603 are emitted.
4604
4605 We could further optimize PLT and lazy PLT entries by giving them
4606 priority in assignment to closer-to-gr17 locations depending on the
4607 number of occurrences of references to them (assuming a function
4608 that's called more often is more important for performance, so its
4609 PLT entry should be faster), or taking hints from the compiler.
4610 Given infinite time and money... :-) */
0f64bb02
CM
4611
4612static bfd_boolean
48d502e1
BS
4613bfinfdpic_check_relocs (bfd *abfd, struct bfd_link_info *info,
4614 asection *sec, const Elf_Internal_Rela *relocs)
0f64bb02
CM
4615{
4616 Elf_Internal_Shdr *symtab_hdr;
5582a088 4617 struct elf_link_hash_entry **sym_hashes;
48d502e1
BS
4618 const Elf_Internal_Rela *rel;
4619 const Elf_Internal_Rela *rel_end;
0f64bb02 4620 bfd *dynobj;
48d502e1 4621 struct bfinfdpic_relocs_info *picrel;
0f64bb02 4622
48d502e1 4623 if (info->relocatable)
0f64bb02
CM
4624 return TRUE;
4625
4626 symtab_hdr = &elf_tdata (abfd)->symtab_hdr;
4627 sym_hashes = elf_sym_hashes (abfd);
0f64bb02 4628
48d502e1
BS
4629 dynobj = elf_hash_table (info)->dynobj;
4630 rel_end = relocs + sec->reloc_count;
4631 for (rel = relocs; rel < rel_end; rel++)
0f64bb02 4632 {
0f64bb02 4633 struct elf_link_hash_entry *h;
48d502e1
BS
4634 unsigned long r_symndx;
4635
4636 r_symndx = ELF32_R_SYM (rel->r_info);
4637 if (r_symndx < symtab_hdr->sh_info)
4638 h = NULL;
4639 else
4640 h = sym_hashes[r_symndx - symtab_hdr->sh_info];
0f64bb02
CM
4641
4642 switch (ELF32_R_TYPE (rel->r_info))
4643 {
48d502e1
BS
4644 case R_BFIN_GOT17M4:
4645 case R_BFIN_GOTHI:
4646 case R_BFIN_GOTLO:
4647 case R_BFIN_FUNCDESC_GOT17M4:
4648 case R_BFIN_FUNCDESC_GOTHI:
4649 case R_BFIN_FUNCDESC_GOTLO:
4650 case R_BFIN_GOTOFF17M4:
4651 case R_BFIN_GOTOFFHI:
4652 case R_BFIN_GOTOFFLO:
4653 case R_BFIN_FUNCDESC_GOTOFF17M4:
4654 case R_BFIN_FUNCDESC_GOTOFFHI:
4655 case R_BFIN_FUNCDESC_GOTOFFLO:
4656 case R_BFIN_FUNCDESC:
4657 case R_BFIN_FUNCDESC_VALUE:
4658 if (! IS_FDPIC (abfd))
4659 goto bad_reloc;
4660 /* Fall through. */
4661 case R_pcrel24:
4662 case R_pcrel24_jump_l:
4663 case R_byte4_data:
4664 if (IS_FDPIC (abfd) && ! dynobj)
0f64bb02 4665 {
48d502e1
BS
4666 elf_hash_table (info)->dynobj = dynobj = abfd;
4667 if (! _bfin_create_got_section (abfd, info))
4668 return FALSE;
0f64bb02 4669 }
48d502e1 4670 if (! IS_FDPIC (abfd))
0f64bb02 4671 {
48d502e1
BS
4672 picrel = NULL;
4673 break;
4674 }
4675 if (h != NULL)
4676 {
4677 if (h->dynindx == -1)
4678 switch (ELF_ST_VISIBILITY (h->other))
4679 {
4680 case STV_INTERNAL:
4681 case STV_HIDDEN:
4682 break;
4683 default:
4684 bfd_elf_link_record_dynamic_symbol (info, h);
4685 break;
4686 }
4687 picrel
4688 = bfinfdpic_relocs_info_for_global (bfinfdpic_relocs_info (info),
4689 abfd, h,
4690 rel->r_addend, INSERT);
0f64bb02 4691 }
48d502e1
BS
4692 else
4693 picrel = bfinfdpic_relocs_info_for_local (bfinfdpic_relocs_info
4694 (info), abfd, r_symndx,
4695 rel->r_addend, INSERT);
4696 if (! picrel)
4697 return FALSE;
0f64bb02 4698 break;
48d502e1 4699
0f64bb02 4700 default:
48d502e1 4701 picrel = NULL;
0f64bb02
CM
4702 break;
4703 }
48d502e1
BS
4704
4705 switch (ELF32_R_TYPE (rel->r_info))
4706 {
4707 case R_pcrel24:
4708 case R_pcrel24_jump_l:
4709 if (IS_FDPIC (abfd))
2774f1a6 4710 picrel->call++;
48d502e1
BS
4711 break;
4712
4713 case R_BFIN_FUNCDESC_VALUE:
4714 picrel->relocsfdv++;
4715 if (bfd_get_section_flags (abfd, sec) & SEC_ALLOC)
4716 picrel->relocs32--;
4717 /* Fall through. */
4718
4719 case R_byte4_data:
4720 if (! IS_FDPIC (abfd))
4721 break;
4722
2774f1a6 4723 picrel->sym++;
48d502e1
BS
4724 if (bfd_get_section_flags (abfd, sec) & SEC_ALLOC)
4725 picrel->relocs32++;
4726 break;
4727
4728 case R_BFIN_GOT17M4:
2774f1a6 4729 picrel->got17m4++;
48d502e1
BS
4730 break;
4731
4732 case R_BFIN_GOTHI:
4733 case R_BFIN_GOTLO:
2774f1a6 4734 picrel->gothilo++;
48d502e1
BS
4735 break;
4736
4737 case R_BFIN_FUNCDESC_GOT17M4:
2774f1a6 4738 picrel->fdgot17m4++;
48d502e1
BS
4739 break;
4740
4741 case R_BFIN_FUNCDESC_GOTHI:
4742 case R_BFIN_FUNCDESC_GOTLO:
2774f1a6 4743 picrel->fdgothilo++;
48d502e1
BS
4744 break;
4745
4746 case R_BFIN_GOTOFF17M4:
4747 case R_BFIN_GOTOFFHI:
4748 case R_BFIN_GOTOFFLO:
2774f1a6 4749 picrel->gotoff++;
48d502e1
BS
4750 break;
4751
4752 case R_BFIN_FUNCDESC_GOTOFF17M4:
2774f1a6 4753 picrel->fdgoff17m4++;
48d502e1
BS
4754 break;
4755
4756 case R_BFIN_FUNCDESC_GOTOFFHI:
4757 case R_BFIN_FUNCDESC_GOTOFFLO:
2774f1a6 4758 picrel->fdgoffhilo++;
48d502e1
BS
4759 break;
4760
4761 case R_BFIN_FUNCDESC:
2774f1a6 4762 picrel->fd++;
48d502e1
BS
4763 picrel->relocsfd++;
4764 break;
4765
4766 /* This relocation describes the C++ object vtable hierarchy.
4767 Reconstruct it for later use during GC. */
4768 case R_BFIN_GNU_VTINHERIT:
4769 if (!bfd_elf_gc_record_vtinherit (abfd, sec, h, rel->r_offset))
4770 return FALSE;
4771 break;
4772
4773 /* This relocation describes which C++ vtable entries are actually
4774 used. Record for later use during GC. */
4775 case R_BFIN_GNU_VTENTRY:
d17e0c6e
JB
4776 BFD_ASSERT (h != NULL);
4777 if (h != NULL
4778 && !bfd_elf_gc_record_vtentry (abfd, sec, h, rel->r_addend))
48d502e1
BS
4779 return FALSE;
4780 break;
4781
4782 case R_huimm16:
4783 case R_luimm16:
4784 case R_pcrel12_jump_s:
4785 case R_pcrel10:
4786 break;
4787
4788 default:
4789 bad_reloc:
4790 (*_bfd_error_handler)
4791 (_("%B: unsupported relocation type %i"),
4792 abfd, ELF32_R_TYPE (rel->r_info));
4793 return FALSE;
4794 }
0f64bb02
CM
4795 }
4796
4797 return TRUE;
4798}
4799
48d502e1
BS
4800/* Set the right machine number for a Blackfin ELF file. */
4801
4802static bfd_boolean
4803elf32_bfin_object_p (bfd *abfd)
4804{
4805 bfd_default_set_arch_mach (abfd, bfd_arch_bfin, 0);
4806 return (((elf_elfheader (abfd)->e_flags & EF_BFIN_FDPIC) != 0)
4807 == (IS_FDPIC (abfd)));
4808}
0f64bb02 4809
0f64bb02 4810static bfd_boolean
48d502e1 4811elf32_bfin_set_private_flags (bfd * abfd, flagword flags)
0f64bb02 4812{
48d502e1
BS
4813 elf_elfheader (abfd)->e_flags = flags;
4814 elf_flags_init (abfd) = TRUE;
4815 return TRUE;
4816}
0f64bb02 4817
48d502e1
BS
4818/* Copy backend specific data from one object module to another. */
4819
4820static bfd_boolean
4821bfin_elf_copy_private_bfd_data (bfd *ibfd, bfd *obfd)
4822{
0f64bb02
CM
4823 if (bfd_get_flavour (ibfd) != bfd_target_elf_flavour
4824 || bfd_get_flavour (obfd) != bfd_target_elf_flavour)
4825 return TRUE;
4826
48d502e1
BS
4827 BFD_ASSERT (!elf_flags_init (obfd)
4828 || elf_elfheader (obfd)->e_flags == elf_elfheader (ibfd)->e_flags);
0f64bb02 4829
48d502e1
BS
4830 elf_elfheader (obfd)->e_flags = elf_elfheader (ibfd)->e_flags;
4831 elf_flags_init (obfd) = TRUE;
104d59d1
JM
4832
4833 /* Copy object attributes. */
4834 _bfd_elf_copy_obj_attributes (ibfd, obfd);
4835
0f64bb02
CM
4836 return TRUE;
4837}
4838
0f64bb02 4839static bfd_boolean
48d502e1 4840elf32_bfinfdpic_copy_private_bfd_data (bfd *ibfd, bfd *obfd)
0f64bb02 4841{
48d502e1
BS
4842 unsigned i;
4843
4844 if (bfd_get_flavour (ibfd) != bfd_target_elf_flavour
4845 || bfd_get_flavour (obfd) != bfd_target_elf_flavour)
4846 return TRUE;
4847
4848 if (! bfin_elf_copy_private_bfd_data (ibfd, obfd))
4849 return FALSE;
4850
4851 if (! elf_tdata (ibfd) || ! elf_tdata (ibfd)->phdr
4852 || ! elf_tdata (obfd) || ! elf_tdata (obfd)->phdr)
4853 return TRUE;
4854
4855 /* Copy the stack size. */
4856 for (i = 0; i < elf_elfheader (ibfd)->e_phnum; i++)
4857 if (elf_tdata (ibfd)->phdr[i].p_type == PT_GNU_STACK)
4858 {
4859 Elf_Internal_Phdr *iphdr = &elf_tdata (ibfd)->phdr[i];
4860
4861 for (i = 0; i < elf_elfheader (obfd)->e_phnum; i++)
4862 if (elf_tdata (obfd)->phdr[i].p_type == PT_GNU_STACK)
4863 {
4864 memcpy (&elf_tdata (obfd)->phdr[i], iphdr, sizeof (*iphdr));
4865
4866 /* Rewrite the phdrs, since we're only called after they
4867 were first written. */
4868 if (bfd_seek (obfd, (bfd_signed_vma) get_elf_backend_data (obfd)
4869 ->s->sizeof_ehdr, SEEK_SET) != 0
4870 || get_elf_backend_data (obfd)->s
4871 ->write_out_phdrs (obfd, elf_tdata (obfd)->phdr,
4872 elf_elfheader (obfd)->e_phnum) != 0)
4873 return FALSE;
4874 break;
4875 }
4876
4877 break;
4878 }
4879
0f64bb02
CM
4880 return TRUE;
4881}
4882
4883
4884/* Display the flags field. */
4885static bfd_boolean
4886elf32_bfin_print_private_bfd_data (bfd * abfd, PTR ptr)
4887{
4888 FILE *file = (FILE *) ptr;
48d502e1 4889 flagword flags;
0f64bb02
CM
4890
4891 BFD_ASSERT (abfd != NULL && ptr != NULL);
4892
4893 /* Print normal ELF private data. */
4894 _bfd_elf_print_private_bfd_data (abfd, ptr);
4895
48d502e1 4896 flags = elf_elfheader (abfd)->e_flags;
0f64bb02
CM
4897
4898 /* xgettext:c-format */
4899 fprintf (file, _("private flags = %lx:"), elf_elfheader (abfd)->e_flags);
4900
48d502e1
BS
4901 if (flags & EF_BFIN_PIC)
4902 fprintf (file, " -fpic");
4903
4904 if (flags & EF_BFIN_FDPIC)
4905 fprintf (file, " -mfdpic");
4906
0f64bb02
CM
4907 fputc ('\n', file);
4908
4909 return TRUE;
4910}
4911
48d502e1
BS
4912/* Merge backend specific data from an object file to the output
4913 object file when linking. */
4914
4915static bfd_boolean
4916elf32_bfin_merge_private_bfd_data (bfd *ibfd, bfd *obfd)
4917{
7a84e3da 4918 flagword old_flags, new_flags;
48d502e1
BS
4919 bfd_boolean error = FALSE;
4920
4921 new_flags = elf_elfheader (ibfd)->e_flags;
4922 old_flags = elf_elfheader (obfd)->e_flags;
4923
4924 if (new_flags & EF_BFIN_FDPIC)
4925 new_flags &= ~EF_BFIN_PIC;
4926
4927#ifdef DEBUG
4928 (*_bfd_error_handler) ("old_flags = 0x%.8lx, new_flags = 0x%.8lx, init = %s, filename = %s",
4929 old_flags, new_flags, elf_flags_init (obfd) ? "yes" : "no",
4930 bfd_get_filename (ibfd));
4931#endif
4932
4933 if (!elf_flags_init (obfd)) /* First call, no flags set. */
4934 {
4935 elf_flags_init (obfd) = TRUE;
7a84e3da 4936 elf_elfheader (obfd)->e_flags = new_flags;
48d502e1
BS
4937 }
4938
7a84e3da 4939 if (((new_flags & EF_BFIN_FDPIC) == 0) != (! IS_FDPIC (obfd)))
48d502e1
BS
4940 {
4941 error = TRUE;
4942 if (IS_FDPIC (obfd))
4943 (*_bfd_error_handler)
4944 (_("%s: cannot link non-fdpic object file into fdpic executable"),
4945 bfd_get_filename (ibfd));
4946 else
4947 (*_bfd_error_handler)
4948 (_("%s: cannot link fdpic object file into non-fdpic executable"),
4949 bfd_get_filename (ibfd));
4950 }
4951
4952 if (error)
4953 bfd_set_error (bfd_error_bad_value);
4954
4955 return !error;
4956}
4957\f
0f64bb02
CM
4958/* bfin ELF linker hash entry. */
4959
4960struct bfin_link_hash_entry
4961{
4962 struct elf_link_hash_entry root;
4963
4964 /* Number of PC relative relocs copied for this symbol. */
4965 struct bfin_pcrel_relocs_copied *pcrel_relocs_copied;
4966};
4967
4968/* bfin ELF linker hash table. */
4969
4970struct bfin_link_hash_table
4971{
4972 struct elf_link_hash_table root;
4973
4974 /* Small local sym to section mapping cache. */
4975 struct sym_sec_cache sym_sec;
4976};
4977
4978#define bfin_hash_entry(ent) ((struct bfin_link_hash_entry *) (ent))
4979
4980static struct bfd_hash_entry *
4981bfin_link_hash_newfunc (struct bfd_hash_entry *entry,
48d502e1 4982 struct bfd_hash_table *table, const char *string)
0f64bb02
CM
4983{
4984 struct bfd_hash_entry *ret = entry;
4985
4986 /* Allocate the structure if it has not already been allocated by a
4987 subclass. */
4988 if (ret == NULL)
4989 ret = bfd_hash_allocate (table, sizeof (struct bfin_link_hash_entry));
4990 if (ret == NULL)
4991 return ret;
4992
4993 /* Call the allocation method of the superclass. */
4994 ret = _bfd_elf_link_hash_newfunc (ret, table, string);
4995 if (ret != NULL)
4996 bfin_hash_entry (ret)->pcrel_relocs_copied = NULL;
4997
4998 return ret;
4999}
5000
5001/* Create an bfin ELF linker hash table. */
5002
5003static struct bfd_link_hash_table *
5004bfin_link_hash_table_create (bfd * abfd)
5005{
5006 struct bfin_link_hash_table *ret;
5007 bfd_size_type amt = sizeof (struct bfin_link_hash_table);
5008
48d502e1
BS
5009 ret = bfd_zalloc (abfd, amt);
5010 if (ret == NULL)
0f64bb02
CM
5011 return NULL;
5012
5013 if (!_bfd_elf_link_hash_table_init (&ret->root, abfd,
66eb6687 5014 bfin_link_hash_newfunc,
48d502e1 5015 sizeof (struct elf_link_hash_entry)))
0f64bb02
CM
5016 {
5017 free (ret);
5018 return NULL;
5019 }
5020
5021 ret->sym_sec.abfd = NULL;
5022
5023 return &ret->root.root;
5024}
5025
5026/* The size in bytes of an entry in the procedure linkage table. */
5027
5028/* Finish up the dynamic sections. */
5029
5030static bfd_boolean
5031bfin_finish_dynamic_sections (bfd * output_bfd ATTRIBUTE_UNUSED,
5032 struct bfd_link_info *info)
5033{
5034 bfd *dynobj;
5035 asection *sdyn;
5036
5037 dynobj = elf_hash_table (info)->dynobj;
5038
5039 sdyn = bfd_get_section_by_name (dynobj, ".dynamic");
5040
5041 if (elf_hash_table (info)->dynamic_sections_created)
5042 {
5043 Elf32_External_Dyn *dyncon, *dynconend;
5044
5045 BFD_ASSERT (sdyn != NULL);
5046
5047 dyncon = (Elf32_External_Dyn *) sdyn->contents;
5048 dynconend = (Elf32_External_Dyn *) (sdyn->contents + sdyn->size);
5049 for (; dyncon < dynconend; dyncon++)
5050 {
5051 Elf_Internal_Dyn dyn;
5052
5053 bfd_elf32_swap_dyn_in (dynobj, dyncon, &dyn);
5054
5055 }
5056
5057 }
5058 return TRUE;
5059}
5060
5061/* Finish up dynamic symbol handling. We set the contents of various
5062 dynamic sections here. */
5063
5064static bfd_boolean
5065bfin_finish_dynamic_symbol (bfd * output_bfd,
5066 struct bfd_link_info *info,
5067 struct elf_link_hash_entry *h,
5068 Elf_Internal_Sym * sym)
5069{
5070 bfd *dynobj;
5071
5072 dynobj = elf_hash_table (info)->dynobj;
5073
5074 if (h->got.offset != (bfd_vma) - 1)
5075 {
5076 asection *sgot;
5077 asection *srela;
5078 Elf_Internal_Rela rela;
5079 bfd_byte *loc;
5080
5081 /* This symbol has an entry in the global offset table.
5082 Set it up. */
5083
5084 sgot = bfd_get_section_by_name (dynobj, ".got");
5085 srela = bfd_get_section_by_name (dynobj, ".rela.got");
5086 BFD_ASSERT (sgot != NULL && srela != NULL);
5087
5088 rela.r_offset = (sgot->output_section->vma
5089 + sgot->output_offset
5090 + (h->got.offset & ~(bfd_vma) 1));
5091
5092 /* If this is a -Bsymbolic link, and the symbol is defined
5093 locally, we just want to emit a RELATIVE reloc. Likewise if
5094 the symbol was forced to be local because of a version file.
5095 The entry in the global offset table will already have been
5096 initialized in the relocate_section function. */
5097 if (info->shared
5098 && (info->symbolic
5099 || h->dynindx == -1 || h->forced_local) && h->def_regular)
5100 {
5592d7ec 5101 fprintf(stderr, "*** check this relocation %s\n", __FUNCTION__);
0f64bb02
CM
5102 rela.r_info = ELF32_R_INFO (0, R_pcrel24);
5103 rela.r_addend = bfd_get_signed_32 (output_bfd,
5104 (sgot->contents
5105 +
5106 (h->got.
5107 offset & ~(bfd_vma) 1)));
5108 }
5109 else
5110 {
5111 bfd_put_32 (output_bfd, (bfd_vma) 0,
5112 sgot->contents + (h->got.offset & ~(bfd_vma) 1));
5113 rela.r_info = ELF32_R_INFO (h->dynindx, R_got);
5114 rela.r_addend = 0;
5115 }
5116
5117 loc = srela->contents;
5118 loc += srela->reloc_count++ * sizeof (Elf32_External_Rela);
5119 bfd_elf32_swap_reloca_out (output_bfd, &rela, loc);
5120 }
5121
5122 if (h->needs_copy)
5123 {
5124 BFD_ASSERT (0);
5125 }
5126 /* Mark _DYNAMIC and _GLOBAL_OFFSET_TABLE_ as absolute. */
5592d7ec 5127 if (strcmp (h->root.root.string, "__DYNAMIC") == 0
22edb2f1 5128 || h == elf_hash_table (info)->hgot)
0f64bb02
CM
5129 sym->st_shndx = SHN_ABS;
5130
5131 return TRUE;
5132}
5133
5134/* Adjust a symbol defined by a dynamic object and referenced by a
5135 regular object. The current definition is in some section of the
5136 dynamic object, but we're not including those sections. We have to
5137 change the definition to something the rest of the link can
5138 understand. */
5139
5140static bfd_boolean
5141bfin_adjust_dynamic_symbol (struct bfd_link_info *info,
5142 struct elf_link_hash_entry *h)
5143{
5144 bfd *dynobj;
5145 asection *s;
5146 unsigned int power_of_two;
5147
5148 dynobj = elf_hash_table (info)->dynobj;
5149
5150 /* Make sure we know what is going on here. */
5151 BFD_ASSERT (dynobj != NULL
5152 && (h->needs_plt
5153 || h->u.weakdef != NULL
5154 || (h->def_dynamic && h->ref_regular && !h->def_regular)));
5155
5156 /* If this is a function, put it in the procedure linkage table. We
5157 will fill in the contents of the procedure linkage table later,
5158 when we know the address of the .got section. */
5159 if (h->type == STT_FUNC || h->needs_plt)
5160 {
5161 BFD_ASSERT(0);
5162 }
5163
5164 /* If this is a weak symbol, and there is a real definition, the
5165 processor independent code will have arranged for us to see the
5166 real definition first, and we can just use the same value. */
5167 if (h->u.weakdef != NULL)
5168 {
5169 BFD_ASSERT (h->u.weakdef->root.type == bfd_link_hash_defined
5170 || h->u.weakdef->root.type == bfd_link_hash_defweak);
5171 h->root.u.def.section = h->u.weakdef->root.u.def.section;
5172 h->root.u.def.value = h->u.weakdef->root.u.def.value;
5173 return TRUE;
5174 }
5175
5176 /* This is a reference to a symbol defined by a dynamic object which
5177 is not a function. */
5178
5179 /* If we are creating a shared library, we must presume that the
5180 only references to the symbol are via the global offset table.
5181 For such cases we need not do anything here; the relocations will
5182 be handled correctly by relocate_section. */
5183 if (info->shared)
5184 return TRUE;
5185
5186 /* We must allocate the symbol in our .dynbss section, which will
5187 become part of the .bss section of the executable. There will be
5188 an entry for this symbol in the .dynsym section. The dynamic
5189 object will contain position independent code, so all references
5190 from the dynamic object to this symbol will go through the global
5191 offset table. The dynamic linker will use the .dynsym entry to
5192 determine the address it must put in the global offset table, so
5193 both the dynamic object and the regular object will refer to the
5194 same memory location for the variable. */
5195
5196 s = bfd_get_section_by_name (dynobj, ".dynbss");
5197 BFD_ASSERT (s != NULL);
5198
5199 /* We must generate a R_68K_COPY reloc to tell the dynamic linker to
5200 copy the initial value out of the dynamic object and into the
5201 runtime process image. We need to remember the offset into the
5202 .rela.bss section we are going to use. */
5203 if ((h->root.u.def.section->flags & SEC_ALLOC) != 0)
5204 {
5205 asection *srel;
5206
5207 srel = bfd_get_section_by_name (dynobj, ".rela.bss");
5208 BFD_ASSERT (srel != NULL);
5209 srel->size += sizeof (Elf32_External_Rela);
5210 h->needs_copy = 1;
5211 }
5212
5213 /* We need to figure out the alignment required for this symbol. I
5214 have no idea how ELF linkers handle this. */
5215 power_of_two = bfd_log2 (h->size);
5216 if (power_of_two > 3)
5217 power_of_two = 3;
5218
5219 /* Apply the required alignment. */
5220 s->size = BFD_ALIGN (s->size, (bfd_size_type) (1 << power_of_two));
5221 if (power_of_two > bfd_get_section_alignment (dynobj, s))
5222 {
5223 if (!bfd_set_section_alignment (dynobj, s, power_of_two))
5224 return FALSE;
5225 }
5226
5227 /* Define the symbol as being at this point in the section. */
5228 h->root.u.def.section = s;
5229 h->root.u.def.value = s->size;
5230
5231 /* Increment the section size to make room for the symbol. */
5232 s->size += h->size;
5233
5234 return TRUE;
5235}
5236
5237/* The bfin linker needs to keep track of the number of relocs that it
5238 decides to copy in check_relocs for each symbol. This is so that it
5239 can discard PC relative relocs if it doesn't need them when linking
5240 with -Bsymbolic. We store the information in a field extending the
5241 regular ELF linker hash table. */
5242
5243/* This structure keeps track of the number of PC relative relocs we have
5244 copied for a given symbol. */
5245
5246struct bfin_pcrel_relocs_copied
5247{
5248 /* Next section. */
5249 struct bfin_pcrel_relocs_copied *next;
5250 /* A section in dynobj. */
5251 asection *section;
5252 /* Number of relocs copied in this section. */
5253 bfd_size_type count;
5254};
5255
5256/* This function is called via elf_link_hash_traverse if we are
5257 creating a shared object. In the -Bsymbolic case it discards the
5258 space allocated to copy PC relative relocs against symbols which
5259 are defined in regular objects. For the normal shared case, it
5260 discards space for pc-relative relocs that have become local due to
5261 symbol visibility changes. We allocated space for them in the
5262 check_relocs routine, but we won't fill them in in the
5263 relocate_section routine.
5264
5265 We also check whether any of the remaining relocations apply
5266 against a readonly section, and set the DF_TEXTREL flag in this
5267 case. */
5268
5269static bfd_boolean
5270bfin_discard_copies (struct elf_link_hash_entry *h, PTR inf)
5271{
5272 struct bfd_link_info *info = (struct bfd_link_info *) inf;
5273 struct bfin_pcrel_relocs_copied *s;
5274
5275 if (h->root.type == bfd_link_hash_warning)
5276 h = (struct elf_link_hash_entry *) h->root.u.i.link;
5277
5278 if (!h->def_regular || (!info->symbolic && !h->forced_local))
5279 {
5280 if ((info->flags & DF_TEXTREL) == 0)
5281 {
5282 /* Look for relocations against read-only sections. */
5283 for (s = bfin_hash_entry (h)->pcrel_relocs_copied;
5284 s != NULL; s = s->next)
5285 if ((s->section->flags & SEC_READONLY) != 0)
5286 {
5287 info->flags |= DF_TEXTREL;
5288 break;
5289 }
5290 }
5291
5292 return TRUE;
5293 }
5294
5295 for (s = bfin_hash_entry (h)->pcrel_relocs_copied;
5296 s != NULL; s = s->next)
5297 s->section->size -= s->count * sizeof (Elf32_External_Rela);
5298
5299 return TRUE;
5300}
5301
0f64bb02
CM
5302static bfd_boolean
5303bfin_size_dynamic_sections (bfd * output_bfd ATTRIBUTE_UNUSED,
5304 struct bfd_link_info *info)
5305{
5306 bfd *dynobj;
5307 asection *s;
5308 bfd_boolean relocs;
5309
5310 dynobj = elf_hash_table (info)->dynobj;
5311 BFD_ASSERT (dynobj != NULL);
5312
5313 if (elf_hash_table (info)->dynamic_sections_created)
5314 {
5315 /* Set the contents of the .interp section to the interpreter. */
5316 if (info->executable)
5317 {
5318 s = bfd_get_section_by_name (dynobj, ".interp");
5319 BFD_ASSERT (s != NULL);
5320 s->size = sizeof ELF_DYNAMIC_INTERPRETER;
5321 s->contents = (unsigned char *) ELF_DYNAMIC_INTERPRETER;
5322 }
5323 }
5324 else
5325 {
5326 /* We may have created entries in the .rela.got section.
5327 However, if we are not creating the dynamic sections, we will
5328 not actually use these entries. Reset the size of .rela.got,
5329 which will cause it to get stripped from the output file
5330 below. */
5331 s = bfd_get_section_by_name (dynobj, ".rela.got");
5332 if (s != NULL)
5333 s->size = 0;
5334 }
5335
5336 /* If this is a -Bsymbolic shared link, then we need to discard all
5337 PC relative relocs against symbols defined in a regular object.
5338 For the normal shared case we discard the PC relative relocs
5339 against symbols that have become local due to visibility changes.
5340 We allocated space for them in the check_relocs routine, but we
5341 will not fill them in in the relocate_section routine. */
5342 if (info->shared)
5343 elf_link_hash_traverse (elf_hash_table (info),
5344 bfin_discard_copies, (PTR) info);
5345
5346 /* The check_relocs and adjust_dynamic_symbol entry points have
5347 determined the sizes of the various dynamic sections. Allocate
5348 memory for them. */
5349 relocs = FALSE;
5350 for (s = dynobj->sections; s != NULL; s = s->next)
5351 {
5352 const char *name;
5353 bfd_boolean strip;
5354
5355 if ((s->flags & SEC_LINKER_CREATED) == 0)
5356 continue;
5357
5358 /* It's OK to base decisions on the section name, because none
5359 of the dynobj section names depend upon the input files. */
5360 name = bfd_get_section_name (dynobj, s);
5361
5362 strip = FALSE;
5363
0112cd26 5364 if (CONST_STRNEQ (name, ".rela"))
0f64bb02
CM
5365 {
5366 if (s->size == 0)
5367 {
5368 /* If we don't need this section, strip it from the
5369 output file. This is mostly to handle .rela.bss and
5370 .rela.plt. We must create both sections in
5371 create_dynamic_sections, because they must be created
5372 before the linker maps input sections to output
5373 sections. The linker does that before
5374 adjust_dynamic_symbol is called, and it is that
5375 function which decides whether anything needs to go
5376 into these sections. */
5377 strip = TRUE;
5378 }
5379 else
5380 {
5381 relocs = TRUE;
5382
5383 /* We use the reloc_count field as a counter if we need
5384 to copy relocs into the output file. */
5385 s->reloc_count = 0;
5386 }
5387 }
0112cd26 5388 else if (! CONST_STRNEQ (name, ".got"))
0f64bb02
CM
5389 {
5390 /* It's not one of our sections, so don't allocate space. */
5391 continue;
5392 }
5393
5394 if (strip)
5395 {
5396 s->flags |= SEC_EXCLUDE;
5397 continue;
5398 }
5399
5400 /* Allocate memory for the section contents. */
5401 /* FIXME: This should be a call to bfd_alloc not bfd_zalloc.
5402 Unused entries should be reclaimed before the section's contents
5403 are written out, but at the moment this does not happen. Thus in
5404 order to prevent writing out garbage, we initialise the section's
5405 contents to zero. */
5406 s->contents = (bfd_byte *) bfd_zalloc (dynobj, s->size);
5407 if (s->contents == NULL && s->size != 0)
5408 return FALSE;
5409 }
5410
5411 if (elf_hash_table (info)->dynamic_sections_created)
5412 {
5413 /* Add some entries to the .dynamic section. We fill in the
5414 values later, in bfin_finish_dynamic_sections, but we
5415 must add the entries now so that we get the correct size for
5416 the .dynamic section. The DT_DEBUG entry is filled in by the
5417 dynamic linker and used by the debugger. */
5418#define add_dynamic_entry(TAG, VAL) \
5419 _bfd_elf_add_dynamic_entry (info, TAG, VAL)
5420
5421 if (!info->shared)
5422 {
5423 if (!add_dynamic_entry (DT_DEBUG, 0))
5424 return FALSE;
5425 }
5426
5427
5428 if (relocs)
5429 {
5430 if (!add_dynamic_entry (DT_RELA, 0)
5431 || !add_dynamic_entry (DT_RELASZ, 0)
5432 || !add_dynamic_entry (DT_RELAENT,
5433 sizeof (Elf32_External_Rela)))
5434 return FALSE;
5435 }
5436
5437 if ((info->flags & DF_TEXTREL) != 0)
5438 {
5439 if (!add_dynamic_entry (DT_TEXTREL, 0))
5440 return FALSE;
5441 }
5442 }
5443#undef add_dynamic_entry
5444
5445 return TRUE;
5446}
48d502e1 5447\f
0f64bb02
CM
5448/* Given a .data section and a .emreloc in-memory section, store
5449 relocation information into the .emreloc section which can be
5450 used at runtime to relocate the section. This is called by the
5451 linker when the --embedded-relocs switch is used. This is called
5452 after the add_symbols entry point has been called for all the
5453 objects, and before the final_link entry point is called. */
5454
3b55e94a
BS
5455bfd_boolean bfd_bfin_elf32_create_embedded_relocs
5456 PARAMS ((bfd *, struct bfd_link_info *, asection *, asection *, char **));
5457
0f64bb02
CM
5458bfd_boolean
5459bfd_bfin_elf32_create_embedded_relocs (
5460 bfd *abfd,
5461 struct bfd_link_info *info,
5462 asection *datasec,
5463 asection *relsec,
5464 char **errmsg)
5465{
5466 Elf_Internal_Shdr *symtab_hdr;
5467 Elf_Internal_Sym *isymbuf = NULL;
5468 Elf_Internal_Rela *internal_relocs = NULL;
5469 Elf_Internal_Rela *irel, *irelend;
5470 bfd_byte *p;
5471 bfd_size_type amt;
5472
5473 BFD_ASSERT (! info->relocatable);
5474
5475 *errmsg = NULL;
5476
5477 if (datasec->reloc_count == 0)
5478 return TRUE;
5479
5480 symtab_hdr = &elf_tdata (abfd)->symtab_hdr;
5481
5482 /* Get a copy of the native relocations. */
5483 internal_relocs = (_bfd_elf_link_read_relocs
5484 (abfd, datasec, (PTR) NULL, (Elf_Internal_Rela *) NULL,
5485 info->keep_memory));
5486 if (internal_relocs == NULL)
5487 goto error_return;
5488
5489 amt = (bfd_size_type) datasec->reloc_count * 12;
5490 relsec->contents = (bfd_byte *) bfd_alloc (abfd, amt);
5491 if (relsec->contents == NULL)
5492 goto error_return;
5493
5494 p = relsec->contents;
5495
5496 irelend = internal_relocs + datasec->reloc_count;
5497 for (irel = internal_relocs; irel < irelend; irel++, p += 12)
5498 {
5499 asection *targetsec;
5500
5501 /* We are going to write a four byte longword into the runtime
5502 reloc section. The longword will be the address in the data
5503 section which must be relocated. It is followed by the name
5504 of the target section NUL-padded or truncated to 8
5505 characters. */
5506
5507 /* We can only relocate absolute longword relocs at run time. */
5508 if (ELF32_R_TYPE (irel->r_info) != (int) R_byte4_data)
5509 {
5510 *errmsg = _("unsupported reloc type");
5511 bfd_set_error (bfd_error_bad_value);
5512 goto error_return;
5513 }
5514
5515 /* Get the target section referred to by the reloc. */
5516 if (ELF32_R_SYM (irel->r_info) < symtab_hdr->sh_info)
5517 {
5518 /* A local symbol. */
5519 Elf_Internal_Sym *isym;
5520
5521 /* Read this BFD's local symbols if we haven't done so already. */
5522 if (isymbuf == NULL)
5523 {
5524 isymbuf = (Elf_Internal_Sym *) symtab_hdr->contents;
5525 if (isymbuf == NULL)
5526 isymbuf = bfd_elf_get_elf_syms (abfd, symtab_hdr,
5527 symtab_hdr->sh_info, 0,
5528 NULL, NULL, NULL);
5529 if (isymbuf == NULL)
5530 goto error_return;
5531 }
5532
5533 isym = isymbuf + ELF32_R_SYM (irel->r_info);
5534 targetsec = bfd_section_from_elf_index (abfd, isym->st_shndx);
5535 }
5536 else
5537 {
5538 unsigned long indx;
5539 struct elf_link_hash_entry *h;
5540
5541 /* An external symbol. */
5542 indx = ELF32_R_SYM (irel->r_info) - symtab_hdr->sh_info;
5543 h = elf_sym_hashes (abfd)[indx];
5544 BFD_ASSERT (h != NULL);
5545 if (h->root.type == bfd_link_hash_defined
5546 || h->root.type == bfd_link_hash_defweak)
5547 targetsec = h->root.u.def.section;
5548 else
5549 targetsec = NULL;
5550 }
5551
5552 bfd_put_32 (abfd, irel->r_offset + datasec->output_offset, p);
5553 memset (p + 4, 0, 8);
5554 if (targetsec != NULL)
9ba4c445 5555 strncpy ((char *) p + 4, targetsec->output_section->name, 8);
0f64bb02
CM
5556 }
5557
5558 if (isymbuf != NULL && symtab_hdr->contents != (unsigned char *) isymbuf)
5559 free (isymbuf);
5560 if (internal_relocs != NULL
5561 && elf_section_data (datasec)->relocs != internal_relocs)
5562 free (internal_relocs);
5563 return TRUE;
5564
5565error_return:
5566 if (isymbuf != NULL && symtab_hdr->contents != (unsigned char *) isymbuf)
5567 free (isymbuf);
5568 if (internal_relocs != NULL
5569 && elf_section_data (datasec)->relocs != internal_relocs)
5570 free (internal_relocs);
5571 return FALSE;
5572}
b0a0b978
JZ
5573
5574struct bfd_elf_special_section const elf32_bfin_special_sections[] =
5575{
5576 { ".l1.text", 8, -2, SHT_PROGBITS, SHF_ALLOC + SHF_EXECINSTR },
5577 { ".l1.data", 8, -2, SHT_PROGBITS, SHF_ALLOC + SHF_WRITE },
5578 { NULL, 0, 0, 0, 0 }
5579};
5580
48d502e1 5581\f
0f64bb02
CM
5582#define TARGET_LITTLE_SYM bfd_elf32_bfin_vec
5583#define TARGET_LITTLE_NAME "elf32-bfin"
5584#define ELF_ARCH bfd_arch_bfin
3b55e94a 5585#define ELF_MACHINE_CODE EM_BLACKFIN
0f64bb02
CM
5586#define ELF_MAXPAGESIZE 0x1000
5587#define elf_symbol_leading_char '_'
5588
5589#define bfd_elf32_bfd_reloc_type_lookup bfin_bfd_reloc_type_lookup
157090f7
AM
5590#define bfd_elf32_bfd_reloc_name_lookup \
5591 bfin_bfd_reloc_name_lookup
0f64bb02
CM
5592#define elf_info_to_howto bfin_info_to_howto
5593#define elf_info_to_howto_rel 0
48d502e1 5594#define elf_backend_object_p elf32_bfin_object_p
0f64bb02
CM
5595
5596#define bfd_elf32_bfd_is_local_label_name \
5597 bfin_is_local_label_name
5598#define bfin_hash_table(p) \
5599 ((struct bfin_link_hash_table *) (p)->hash)
5600
5601
5602
5603#define elf_backend_create_dynamic_sections \
5604 _bfd_elf_create_dynamic_sections
5605#define bfd_elf32_bfd_link_hash_table_create \
5606 bfin_link_hash_table_create
5607#define bfd_elf32_bfd_final_link bfd_elf_gc_common_final_link
5608
48d502e1 5609#define elf_backend_check_relocs bfin_check_relocs
0f64bb02
CM
5610#define elf_backend_adjust_dynamic_symbol \
5611 bfin_adjust_dynamic_symbol
5612#define elf_backend_size_dynamic_sections \
5613 bfin_size_dynamic_sections
5614#define elf_backend_relocate_section bfin_relocate_section
5615#define elf_backend_finish_dynamic_symbol \
5616 bfin_finish_dynamic_symbol
5617#define elf_backend_finish_dynamic_sections \
5618 bfin_finish_dynamic_sections
5619#define elf_backend_gc_mark_hook bfin_gc_mark_hook
5620#define elf_backend_gc_sweep_hook bfin_gc_sweep_hook
5621#define bfd_elf32_bfd_merge_private_bfd_data \
5622 elf32_bfin_merge_private_bfd_data
5623#define bfd_elf32_bfd_set_private_flags \
5624 elf32_bfin_set_private_flags
5625#define bfd_elf32_bfd_print_private_bfd_data \
5626 elf32_bfin_print_private_bfd_data
5627#define elf_backend_reloc_type_class elf32_bfin_reloc_type_class
5628#define elf_backend_can_gc_sections 1
b0a0b978 5629#define elf_backend_special_sections elf32_bfin_special_sections
0f64bb02
CM
5630#define elf_backend_can_refcount 1
5631#define elf_backend_want_got_plt 0
5632#define elf_backend_plt_readonly 1
5633#define elf_backend_want_plt_sym 0
5634#define elf_backend_got_header_size 12
5635#define elf_backend_rela_normal 1
5636
48d502e1
BS
5637#include "elf32-target.h"
5638
5639#undef TARGET_LITTLE_SYM
5640#define TARGET_LITTLE_SYM bfd_elf32_bfinfdpic_vec
5641#undef TARGET_LITTLE_NAME
5642#define TARGET_LITTLE_NAME "elf32-bfinfdpic"
5643#undef elf32_bed
5644#define elf32_bed elf32_bfinfdpic_bed
5645
5646#undef elf_backend_gc_sweep_hook
2774f1a6 5647#define elf_backend_gc_sweep_hook bfinfdpic_gc_sweep_hook
48d502e1
BS
5648
5649#undef elf_backend_got_header_size
5650#define elf_backend_got_header_size 0
5651
5652#undef elf_backend_relocate_section
5653#define elf_backend_relocate_section bfinfdpic_relocate_section
5654#undef elf_backend_check_relocs
5655#define elf_backend_check_relocs bfinfdpic_check_relocs
5656
5657#undef bfd_elf32_bfd_link_hash_table_create
5658#define bfd_elf32_bfd_link_hash_table_create \
5659 bfinfdpic_elf_link_hash_table_create
5660#undef elf_backend_always_size_sections
5661#define elf_backend_always_size_sections \
5662 elf32_bfinfdpic_always_size_sections
e36284ab
AM
5663#undef elf_backend_modify_program_headers
5664#define elf_backend_modify_program_headers \
5665 elf32_bfinfdpic_modify_program_headers
48d502e1
BS
5666#undef bfd_elf32_bfd_copy_private_bfd_data
5667#define bfd_elf32_bfd_copy_private_bfd_data \
5668 elf32_bfinfdpic_copy_private_bfd_data
5669
5670#undef elf_backend_create_dynamic_sections
5671#define elf_backend_create_dynamic_sections \
5672 elf32_bfinfdpic_create_dynamic_sections
5673#undef elf_backend_adjust_dynamic_symbol
5674#define elf_backend_adjust_dynamic_symbol \
5675 elf32_bfinfdpic_adjust_dynamic_symbol
5676#undef elf_backend_size_dynamic_sections
5677#define elf_backend_size_dynamic_sections \
5678 elf32_bfinfdpic_size_dynamic_sections
5679#undef elf_backend_finish_dynamic_symbol
5680#define elf_backend_finish_dynamic_symbol \
5681 elf32_bfinfdpic_finish_dynamic_symbol
5682#undef elf_backend_finish_dynamic_sections
5683#define elf_backend_finish_dynamic_sections \
5684 elf32_bfinfdpic_finish_dynamic_sections
5685
5686#undef elf_backend_can_make_relative_eh_frame
5687#define elf_backend_can_make_relative_eh_frame \
5688 bfinfdpic_elf_use_relative_eh_frame
5689#undef elf_backend_can_make_lsda_relative_eh_frame
5690#define elf_backend_can_make_lsda_relative_eh_frame \
5691 bfinfdpic_elf_use_relative_eh_frame
5692#undef elf_backend_encode_eh_address
5693#define elf_backend_encode_eh_address \
5694 bfinfdpic_elf_encode_eh_address
5695
5696#undef elf_backend_may_use_rel_p
5697#define elf_backend_may_use_rel_p 1
5698#undef elf_backend_may_use_rela_p
5699#define elf_backend_may_use_rela_p 1
5700/* We use REL for dynamic relocations only. */
5701#undef elf_backend_default_use_rela_p
5702#define elf_backend_default_use_rela_p 1
5703
5704#undef elf_backend_omit_section_dynsym
5705#define elf_backend_omit_section_dynsym _bfinfdpic_link_omit_section_dynsym
0f64bb02
CM
5706
5707#include "elf32-target.h"
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