* sparc.cc (Target_sparc::Scan::local): Handle R_SPARC_GOTDATA_OP*
[deliverable/binutils-gdb.git] / gold / sparc.cc
1 // sparc.cc -- sparc target support for gold.
2
3 // Copyright 2008, 2009 Free Software Foundation, Inc.
4 // Written by David S. Miller <davem@davemloft.net>.
5
6 // This file is part of gold.
7
8 // This program is free software; you can redistribute it and/or modify
9 // it under the terms of the GNU General Public License as published by
10 // the Free Software Foundation; either version 3 of the License, or
11 // (at your option) any later version.
12
13 // This program is distributed in the hope that it will be useful,
14 // but WITHOUT ANY WARRANTY; without even the implied warranty of
15 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 // GNU General Public License for more details.
17
18 // You should have received a copy of the GNU General Public License
19 // along with this program; if not, write to the Free Software
20 // Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
21 // MA 02110-1301, USA.
22
23 #include "gold.h"
24
25 #include <cstdlib>
26 #include <cstdio>
27 #include <cstring>
28
29 #include "elfcpp.h"
30 #include "parameters.h"
31 #include "reloc.h"
32 #include "sparc.h"
33 #include "object.h"
34 #include "symtab.h"
35 #include "layout.h"
36 #include "output.h"
37 #include "copy-relocs.h"
38 #include "target.h"
39 #include "target-reloc.h"
40 #include "target-select.h"
41 #include "tls.h"
42 #include "errors.h"
43 #include "gc.h"
44
45 namespace
46 {
47
48 using namespace gold;
49
50 template<int size, bool big_endian>
51 class Output_data_plt_sparc;
52
53 template<int size, bool big_endian>
54 class Target_sparc : public Sized_target<size, big_endian>
55 {
56 public:
57 typedef Output_data_reloc<elfcpp::SHT_RELA, true, size, big_endian> Reloc_section;
58
59 Target_sparc()
60 : Sized_target<size, big_endian>(&sparc_info),
61 got_(NULL), plt_(NULL), rela_dyn_(NULL),
62 copy_relocs_(elfcpp::R_SPARC_COPY), dynbss_(NULL),
63 got_mod_index_offset_(-1U), tls_get_addr_sym_(NULL)
64 {
65 }
66
67 // Process the relocations to determine unreferenced sections for
68 // garbage collection.
69 void
70 gc_process_relocs(Symbol_table* symtab,
71 Layout* layout,
72 Sized_relobj<size, big_endian>* object,
73 unsigned int data_shndx,
74 unsigned int sh_type,
75 const unsigned char* prelocs,
76 size_t reloc_count,
77 Output_section* output_section,
78 bool needs_special_offset_handling,
79 size_t local_symbol_count,
80 const unsigned char* plocal_symbols);
81
82 // Scan the relocations to look for symbol adjustments.
83 void
84 scan_relocs(Symbol_table* symtab,
85 Layout* layout,
86 Sized_relobj<size, big_endian>* object,
87 unsigned int data_shndx,
88 unsigned int sh_type,
89 const unsigned char* prelocs,
90 size_t reloc_count,
91 Output_section* output_section,
92 bool needs_special_offset_handling,
93 size_t local_symbol_count,
94 const unsigned char* plocal_symbols);
95 // Finalize the sections.
96 void
97 do_finalize_sections(Layout*, const Input_objects*, Symbol_table*);
98
99 // Return the value to use for a dynamic which requires special
100 // treatment.
101 uint64_t
102 do_dynsym_value(const Symbol*) const;
103
104 // Relocate a section.
105 void
106 relocate_section(const Relocate_info<size, big_endian>*,
107 unsigned int sh_type,
108 const unsigned char* prelocs,
109 size_t reloc_count,
110 Output_section* output_section,
111 bool needs_special_offset_handling,
112 unsigned char* view,
113 typename elfcpp::Elf_types<size>::Elf_Addr view_address,
114 section_size_type view_size,
115 const Reloc_symbol_changes*);
116
117 // Scan the relocs during a relocatable link.
118 void
119 scan_relocatable_relocs(Symbol_table* symtab,
120 Layout* layout,
121 Sized_relobj<size, big_endian>* object,
122 unsigned int data_shndx,
123 unsigned int sh_type,
124 const unsigned char* prelocs,
125 size_t reloc_count,
126 Output_section* output_section,
127 bool needs_special_offset_handling,
128 size_t local_symbol_count,
129 const unsigned char* plocal_symbols,
130 Relocatable_relocs*);
131
132 // Relocate a section during a relocatable link.
133 void
134 relocate_for_relocatable(const Relocate_info<size, big_endian>*,
135 unsigned int sh_type,
136 const unsigned char* prelocs,
137 size_t reloc_count,
138 Output_section* output_section,
139 off_t offset_in_output_section,
140 const Relocatable_relocs*,
141 unsigned char* view,
142 typename elfcpp::Elf_types<size>::Elf_Addr view_address,
143 section_size_type view_size,
144 unsigned char* reloc_view,
145 section_size_type reloc_view_size);
146 // Return whether SYM is defined by the ABI.
147 bool
148 do_is_defined_by_abi(const Symbol* sym) const
149 {
150 // XXX Really need to support this better...
151 if (sym->type() == elfcpp::STT_SPARC_REGISTER)
152 return 1;
153
154 return strcmp(sym->name(), "___tls_get_addr") == 0;
155 }
156
157 // Return whether there is a GOT section.
158 bool
159 has_got_section() const
160 { return this->got_ != NULL; }
161
162 // Return the size of the GOT section.
163 section_size_type
164 got_size()
165 {
166 gold_assert(this->got_ != NULL);
167 return this->got_->data_size();
168 }
169
170 private:
171
172 // The class which scans relocations.
173 class Scan
174 {
175 public:
176 Scan()
177 : issued_non_pic_error_(false)
178 { }
179
180 inline void
181 local(Symbol_table* symtab, Layout* layout, Target_sparc* target,
182 Sized_relobj<size, big_endian>* object,
183 unsigned int data_shndx,
184 Output_section* output_section,
185 const elfcpp::Rela<size, big_endian>& reloc, unsigned int r_type,
186 const elfcpp::Sym<size, big_endian>& lsym);
187
188 inline void
189 global(Symbol_table* symtab, Layout* layout, Target_sparc* target,
190 Sized_relobj<size, big_endian>* object,
191 unsigned int data_shndx,
192 Output_section* output_section,
193 const elfcpp::Rela<size, big_endian>& reloc, unsigned int r_type,
194 Symbol* gsym);
195
196 private:
197 static void
198 unsupported_reloc_local(Sized_relobj<size, big_endian>*,
199 unsigned int r_type);
200
201 static void
202 unsupported_reloc_global(Sized_relobj<size, big_endian>*,
203 unsigned int r_type, Symbol*);
204
205 static void
206 generate_tls_call(Symbol_table* symtab, Layout* layout,
207 Target_sparc* target);
208
209 void
210 check_non_pic(Relobj*, unsigned int r_type);
211
212 // Whether we have issued an error about a non-PIC compilation.
213 bool issued_non_pic_error_;
214 };
215
216 // The class which implements relocation.
217 class Relocate
218 {
219 public:
220 Relocate()
221 : ignore_gd_add_(false)
222 { }
223
224 ~Relocate()
225 {
226 if (this->ignore_gd_add_)
227 {
228 // FIXME: This needs to specify the location somehow.
229 gold_error(_("missing expected TLS relocation"));
230 }
231 }
232
233 // Do a relocation. Return false if the caller should not issue
234 // any warnings about this relocation.
235 inline bool
236 relocate(const Relocate_info<size, big_endian>*, Target_sparc*,
237 Output_section*, size_t relnum,
238 const elfcpp::Rela<size, big_endian>&,
239 unsigned int r_type, const Sized_symbol<size>*,
240 const Symbol_value<size>*,
241 unsigned char*,
242 typename elfcpp::Elf_types<size>::Elf_Addr,
243 section_size_type);
244
245 private:
246 // Do a TLS relocation.
247 inline void
248 relocate_tls(const Relocate_info<size, big_endian>*, Target_sparc* target,
249 size_t relnum, const elfcpp::Rela<size, big_endian>&,
250 unsigned int r_type, const Sized_symbol<size>*,
251 const Symbol_value<size>*,
252 unsigned char*,
253 typename elfcpp::Elf_types<size>::Elf_Addr,
254 section_size_type);
255
256 // Ignore the next relocation which should be R_SPARC_TLS_GD_ADD
257 bool ignore_gd_add_;
258 };
259
260 // A class which returns the size required for a relocation type,
261 // used while scanning relocs during a relocatable link.
262 class Relocatable_size_for_reloc
263 {
264 public:
265 unsigned int
266 get_size_for_reloc(unsigned int, Relobj*);
267 };
268
269 // Get the GOT section, creating it if necessary.
270 Output_data_got<size, big_endian>*
271 got_section(Symbol_table*, Layout*);
272
273 // Create a PLT entry for a global symbol.
274 void
275 make_plt_entry(Symbol_table*, Layout*, Symbol*);
276
277 // Create a GOT entry for the TLS module index.
278 unsigned int
279 got_mod_index_entry(Symbol_table* symtab, Layout* layout,
280 Sized_relobj<size, big_endian>* object);
281
282 // Return the gsym for "__tls_get_addr". Cache if not already
283 // cached.
284 Symbol*
285 tls_get_addr_sym(Symbol_table* symtab)
286 {
287 if (!this->tls_get_addr_sym_)
288 this->tls_get_addr_sym_ = symtab->lookup("__tls_get_addr", NULL);
289 gold_assert(this->tls_get_addr_sym_);
290 return this->tls_get_addr_sym_;
291 }
292
293 // Get the PLT section.
294 const Output_data_plt_sparc<size, big_endian>*
295 plt_section() const
296 {
297 gold_assert(this->plt_ != NULL);
298 return this->plt_;
299 }
300
301 // Get the dynamic reloc section, creating it if necessary.
302 Reloc_section*
303 rela_dyn_section(Layout*);
304
305 // Copy a relocation against a global symbol.
306 void
307 copy_reloc(Symbol_table* symtab, Layout* layout,
308 Sized_relobj<size, big_endian>* object,
309 unsigned int shndx, Output_section* output_section,
310 Symbol* sym, const elfcpp::Rela<size, big_endian>& reloc)
311 {
312 this->copy_relocs_.copy_reloc(symtab, layout,
313 symtab->get_sized_symbol<size>(sym),
314 object, shndx, output_section,
315 reloc, this->rela_dyn_section(layout));
316 }
317
318 // Information about this specific target which we pass to the
319 // general Target structure.
320 static Target::Target_info sparc_info;
321
322 // The types of GOT entries needed for this platform.
323 enum Got_type
324 {
325 GOT_TYPE_STANDARD = 0, // GOT entry for a regular symbol
326 GOT_TYPE_TLS_OFFSET = 1, // GOT entry for TLS offset
327 GOT_TYPE_TLS_PAIR = 2, // GOT entry for TLS module/offset pair
328 };
329
330 // The GOT section.
331 Output_data_got<size, big_endian>* got_;
332 // The PLT section.
333 Output_data_plt_sparc<size, big_endian>* plt_;
334 // The dynamic reloc section.
335 Reloc_section* rela_dyn_;
336 // Relocs saved to avoid a COPY reloc.
337 Copy_relocs<elfcpp::SHT_RELA, size, big_endian> copy_relocs_;
338 // Space for variables copied with a COPY reloc.
339 Output_data_space* dynbss_;
340 // Offset of the GOT entry for the TLS module index;
341 unsigned int got_mod_index_offset_;
342 // Cached pointer to __tls_get_addr symbol
343 Symbol* tls_get_addr_sym_;
344 };
345
346 template<>
347 Target::Target_info Target_sparc<32, true>::sparc_info =
348 {
349 32, // size
350 true, // is_big_endian
351 elfcpp::EM_SPARC, // machine_code
352 false, // has_make_symbol
353 false, // has_resolve
354 false, // has_code_fill
355 true, // is_default_stack_executable
356 '\0', // wrap_char
357 "/usr/lib/ld.so.1", // dynamic_linker
358 0x00010000, // default_text_segment_address
359 64 * 1024, // abi_pagesize (overridable by -z max-page-size)
360 8 * 1024, // common_pagesize (overridable by -z common-page-size)
361 elfcpp::SHN_UNDEF, // small_common_shndx
362 elfcpp::SHN_UNDEF, // large_common_shndx
363 0, // small_common_section_flags
364 0, // large_common_section_flags
365 NULL, // attributes_section
366 NULL // attributes_vendor
367 };
368
369 template<>
370 Target::Target_info Target_sparc<64, true>::sparc_info =
371 {
372 64, // size
373 true, // is_big_endian
374 elfcpp::EM_SPARCV9, // machine_code
375 false, // has_make_symbol
376 false, // has_resolve
377 false, // has_code_fill
378 true, // is_default_stack_executable
379 '\0', // wrap_char
380 "/usr/lib/sparcv9/ld.so.1", // dynamic_linker
381 0x100000, // default_text_segment_address
382 64 * 1024, // abi_pagesize (overridable by -z max-page-size)
383 8 * 1024, // common_pagesize (overridable by -z common-page-size)
384 elfcpp::SHN_UNDEF, // small_common_shndx
385 elfcpp::SHN_UNDEF, // large_common_shndx
386 0, // small_common_section_flags
387 0, // large_common_section_flags
388 NULL, // attributes_section
389 NULL // attributes_vendor
390 };
391
392 // We have to take care here, even when operating in little-endian
393 // mode, sparc instructions are still big endian.
394 template<int size, bool big_endian>
395 class Sparc_relocate_functions
396 {
397 private:
398 // Do a simple relocation with the addend in the relocation.
399 template<int valsize>
400 static inline void
401 rela(unsigned char* view,
402 unsigned int right_shift,
403 typename elfcpp::Elf_types<valsize>::Elf_Addr dst_mask,
404 typename elfcpp::Swap<size, big_endian>::Valtype value,
405 typename elfcpp::Swap<size, big_endian>::Valtype addend)
406 {
407 typedef typename elfcpp::Swap<valsize, big_endian>::Valtype Valtype;
408 Valtype* wv = reinterpret_cast<Valtype*>(view);
409 Valtype val = elfcpp::Swap<valsize, big_endian>::readval(wv);
410 Valtype reloc = ((value + addend) >> right_shift);
411
412 val &= ~dst_mask;
413 reloc &= dst_mask;
414
415 elfcpp::Swap<valsize, big_endian>::writeval(wv, val | reloc);
416 }
417
418 // Do a simple relocation using a symbol value with the addend in
419 // the relocation.
420 template<int valsize>
421 static inline void
422 rela(unsigned char* view,
423 unsigned int right_shift,
424 typename elfcpp::Elf_types<valsize>::Elf_Addr dst_mask,
425 const Sized_relobj<size, big_endian>* object,
426 const Symbol_value<size>* psymval,
427 typename elfcpp::Swap<valsize, big_endian>::Valtype addend)
428 {
429 typedef typename elfcpp::Swap<valsize, big_endian>::Valtype Valtype;
430 Valtype* wv = reinterpret_cast<Valtype*>(view);
431 Valtype val = elfcpp::Swap<valsize, big_endian>::readval(wv);
432 Valtype reloc = (psymval->value(object, addend) >> right_shift);
433
434 val &= ~dst_mask;
435 reloc &= dst_mask;
436
437 elfcpp::Swap<valsize, big_endian>::writeval(wv, val | reloc);
438 }
439
440 // Do a simple relocation using a symbol value with the addend in
441 // the relocation, unaligned.
442 template<int valsize>
443 static inline void
444 rela_ua(unsigned char* view,
445 unsigned int right_shift, elfcpp::Elf_Xword dst_mask,
446 const Sized_relobj<size, big_endian>* object,
447 const Symbol_value<size>* psymval,
448 typename elfcpp::Swap<size, big_endian>::Valtype addend)
449 {
450 typedef typename elfcpp::Swap_unaligned<valsize,
451 big_endian>::Valtype Valtype;
452 unsigned char* wv = view;
453 Valtype val = elfcpp::Swap_unaligned<valsize, big_endian>::readval(wv);
454 Valtype reloc = (psymval->value(object, addend) >> right_shift);
455
456 val &= ~dst_mask;
457 reloc &= dst_mask;
458
459 elfcpp::Swap_unaligned<valsize, big_endian>::writeval(wv, val | reloc);
460 }
461
462 // Do a simple PC relative relocation with a Symbol_value with the
463 // addend in the relocation.
464 template<int valsize>
465 static inline void
466 pcrela(unsigned char* view,
467 unsigned int right_shift,
468 typename elfcpp::Elf_types<valsize>::Elf_Addr dst_mask,
469 const Sized_relobj<size, big_endian>* object,
470 const Symbol_value<size>* psymval,
471 typename elfcpp::Swap<size, big_endian>::Valtype addend,
472 typename elfcpp::Elf_types<size>::Elf_Addr address)
473 {
474 typedef typename elfcpp::Swap<valsize, big_endian>::Valtype Valtype;
475 Valtype* wv = reinterpret_cast<Valtype*>(view);
476 Valtype val = elfcpp::Swap<valsize, big_endian>::readval(wv);
477 Valtype reloc = ((psymval->value(object, addend) - address)
478 >> right_shift);
479
480 val &= ~dst_mask;
481 reloc &= dst_mask;
482
483 elfcpp::Swap<valsize, big_endian>::writeval(wv, val | reloc);
484 }
485
486 template<int valsize>
487 static inline void
488 pcrela_unaligned(unsigned char* view,
489 const Sized_relobj<size, big_endian>* object,
490 const Symbol_value<size>* psymval,
491 typename elfcpp::Swap<size, big_endian>::Valtype addend,
492 typename elfcpp::Elf_types<size>::Elf_Addr address)
493 {
494 typedef typename elfcpp::Swap_unaligned<valsize,
495 big_endian>::Valtype Valtype;
496 unsigned char* wv = view;
497 Valtype reloc = (psymval->value(object, addend) - address);
498
499 elfcpp::Swap_unaligned<valsize, big_endian>::writeval(wv, reloc);
500 }
501
502 typedef Sparc_relocate_functions<size, big_endian> This;
503 typedef Sparc_relocate_functions<size, true> This_insn;
504
505 public:
506 // R_SPARC_WDISP30: (Symbol + Addend - Address) >> 2
507 static inline void
508 wdisp30(unsigned char* view,
509 const Sized_relobj<size, big_endian>* object,
510 const Symbol_value<size>* psymval,
511 typename elfcpp::Elf_types<size>::Elf_Addr addend,
512 typename elfcpp::Elf_types<size>::Elf_Addr address)
513 {
514 This_insn::template pcrela<32>(view, 2, 0x3fffffff, object,
515 psymval, addend, address);
516 }
517
518 // R_SPARC_WDISP22: (Symbol + Addend - Address) >> 2
519 static inline void
520 wdisp22(unsigned char* view,
521 const Sized_relobj<size, big_endian>* object,
522 const Symbol_value<size>* psymval,
523 typename elfcpp::Elf_types<size>::Elf_Addr addend,
524 typename elfcpp::Elf_types<size>::Elf_Addr address)
525 {
526 This_insn::template pcrela<32>(view, 2, 0x003fffff, object,
527 psymval, addend, address);
528 }
529
530 // R_SPARC_WDISP19: (Symbol + Addend - Address) >> 2
531 static inline void
532 wdisp19(unsigned char* view,
533 const Sized_relobj<size, big_endian>* object,
534 const Symbol_value<size>* psymval,
535 typename elfcpp::Elf_types<size>::Elf_Addr addend,
536 typename elfcpp::Elf_types<size>::Elf_Addr address)
537 {
538 This_insn::template pcrela<32>(view, 2, 0x0007ffff, object,
539 psymval, addend, address);
540 }
541
542 // R_SPARC_WDISP16: (Symbol + Addend - Address) >> 2
543 static inline void
544 wdisp16(unsigned char* view,
545 const Sized_relobj<size, big_endian>* object,
546 const Symbol_value<size>* psymval,
547 typename elfcpp::Elf_types<size>::Elf_Addr addend,
548 typename elfcpp::Elf_types<size>::Elf_Addr address)
549 {
550 typedef typename elfcpp::Swap<32, true>::Valtype Valtype;
551 Valtype* wv = reinterpret_cast<Valtype*>(view);
552 Valtype val = elfcpp::Swap<32, true>::readval(wv);
553 Valtype reloc = ((psymval->value(object, addend) - address)
554 >> 2);
555
556 // The relocation value is split between the low 14 bits,
557 // and bits 20-21.
558 val &= ~((0x3 << 20) | 0x3fff);
559 reloc = (((reloc & 0xc000) << (20 - 14))
560 | (reloc & 0x3ffff));
561
562 elfcpp::Swap<32, true>::writeval(wv, val | reloc);
563 }
564
565 // R_SPARC_PC22: (Symbol + Addend - Address) >> 10
566 static inline void
567 pc22(unsigned char* view,
568 const Sized_relobj<size, big_endian>* object,
569 const Symbol_value<size>* psymval,
570 typename elfcpp::Elf_types<size>::Elf_Addr addend,
571 typename elfcpp::Elf_types<size>::Elf_Addr address)
572 {
573 This_insn::template pcrela<32>(view, 10, 0x003fffff, object,
574 psymval, addend, address);
575 }
576
577 // R_SPARC_PC10: (Symbol + Addend - Address) & 0x3ff
578 static inline void
579 pc10(unsigned char* view,
580 const Sized_relobj<size, big_endian>* object,
581 const Symbol_value<size>* psymval,
582 typename elfcpp::Elf_types<size>::Elf_Addr addend,
583 typename elfcpp::Elf_types<size>::Elf_Addr address)
584 {
585 This_insn::template pcrela<32>(view, 0, 0x000003ff, object,
586 psymval, addend, address);
587 }
588
589 // R_SPARC_HI22: (Symbol + Addend) >> 10
590 static inline void
591 hi22(unsigned char* view,
592 typename elfcpp::Elf_types<size>::Elf_Addr value,
593 typename elfcpp::Elf_types<size>::Elf_Addr addend)
594 {
595 This_insn::template rela<32>(view, 10, 0x003fffff, value, addend);
596 }
597
598 // R_SPARC_HI22: (Symbol + Addend) >> 10
599 static inline void
600 hi22(unsigned char* view,
601 const Sized_relobj<size, big_endian>* object,
602 const Symbol_value<size>* psymval,
603 typename elfcpp::Elf_types<size>::Elf_Addr addend)
604 {
605 This_insn::template rela<32>(view, 10, 0x003fffff, object, psymval, addend);
606 }
607
608 // R_SPARC_PCPLT22: (Symbol + Addend - Address) >> 10
609 static inline void
610 pcplt22(unsigned char* view,
611 const Sized_relobj<size, big_endian>* object,
612 const Symbol_value<size>* psymval,
613 typename elfcpp::Elf_types<size>::Elf_Addr addend,
614 typename elfcpp::Elf_types<size>::Elf_Addr address)
615 {
616 This_insn::template pcrela<32>(view, 10, 0x003fffff, object,
617 psymval, addend, address);
618 }
619
620 // R_SPARC_LO10: (Symbol + Addend) & 0x3ff
621 static inline void
622 lo10(unsigned char* view,
623 typename elfcpp::Elf_types<size>::Elf_Addr value,
624 typename elfcpp::Elf_types<size>::Elf_Addr addend)
625 {
626 This_insn::template rela<32>(view, 0, 0x000003ff, value, addend);
627 }
628
629 // R_SPARC_LO10: (Symbol + Addend) & 0x3ff
630 static inline void
631 lo10(unsigned char* view,
632 const Sized_relobj<size, big_endian>* object,
633 const Symbol_value<size>* psymval,
634 typename elfcpp::Elf_types<size>::Elf_Addr addend)
635 {
636 This_insn::template rela<32>(view, 0, 0x000003ff, object, psymval, addend);
637 }
638
639 // R_SPARC_LO10: (Symbol + Addend) & 0x3ff
640 static inline void
641 lo10(unsigned char* view,
642 const Sized_relobj<size, big_endian>* object,
643 const Symbol_value<size>* psymval,
644 typename elfcpp::Elf_types<size>::Elf_Addr addend,
645 typename elfcpp::Elf_types<size>::Elf_Addr address)
646 {
647 This_insn::template pcrela<32>(view, 0, 0x000003ff, object,
648 psymval, addend, address);
649 }
650
651 // R_SPARC_OLO10: ((Symbol + Addend) & 0x3ff) + Addend2
652 static inline void
653 olo10(unsigned char* view,
654 const Sized_relobj<size, big_endian>* object,
655 const Symbol_value<size>* psymval,
656 typename elfcpp::Elf_types<size>::Elf_Addr addend,
657 typename elfcpp::Elf_types<size>::Elf_Addr addend2)
658 {
659 typedef typename elfcpp::Swap<32, true>::Valtype Valtype;
660 Valtype* wv = reinterpret_cast<Valtype*>(view);
661 Valtype val = elfcpp::Swap<32, true>::readval(wv);
662 Valtype reloc = psymval->value(object, addend);
663
664 val &= ~0x1fff;
665 reloc &= 0x3ff;
666 reloc += addend2;
667 reloc &= 0x1fff;
668
669 elfcpp::Swap<32, true>::writeval(wv, val | reloc);
670 }
671
672 // R_SPARC_22: (Symbol + Addend)
673 static inline void
674 rela32_22(unsigned char* view,
675 const Sized_relobj<size, big_endian>* object,
676 const Symbol_value<size>* psymval,
677 typename elfcpp::Elf_types<size>::Elf_Addr addend)
678 {
679 This_insn::template rela<32>(view, 0, 0x003fffff, object, psymval, addend);
680 }
681
682 // R_SPARC_13: (Symbol + Addend)
683 static inline void
684 rela32_13(unsigned char* view,
685 typename elfcpp::Elf_types<size>::Elf_Addr value,
686 typename elfcpp::Elf_types<size>::Elf_Addr addend)
687 {
688 This_insn::template rela<32>(view, 0, 0x00001fff, value, addend);
689 }
690
691 // R_SPARC_13: (Symbol + Addend)
692 static inline void
693 rela32_13(unsigned char* view,
694 const Sized_relobj<size, big_endian>* object,
695 const Symbol_value<size>* psymval,
696 typename elfcpp::Elf_types<size>::Elf_Addr addend)
697 {
698 This_insn::template rela<32>(view, 0, 0x00001fff, object, psymval, addend);
699 }
700
701 // R_SPARC_UA16: (Symbol + Addend)
702 static inline void
703 ua16(unsigned char* view,
704 const Sized_relobj<size, big_endian>* object,
705 const Symbol_value<size>* psymval,
706 typename elfcpp::Elf_types<size>::Elf_Addr addend)
707 {
708 This::template rela_ua<16>(view, 0, 0xffff, object, psymval, addend);
709 }
710
711 // R_SPARC_UA32: (Symbol + Addend)
712 static inline void
713 ua32(unsigned char* view,
714 const Sized_relobj<size, big_endian>* object,
715 const Symbol_value<size>* psymval,
716 typename elfcpp::Elf_types<size>::Elf_Addr addend)
717 {
718 This::template rela_ua<32>(view, 0, 0xffffffff, object, psymval, addend);
719 }
720
721 // R_SPARC_UA64: (Symbol + Addend)
722 static inline void
723 ua64(unsigned char* view,
724 const Sized_relobj<size, big_endian>* object,
725 const Symbol_value<size>* psymval,
726 typename elfcpp::Elf_types<size>::Elf_Addr addend)
727 {
728 This::template rela_ua<64>(view, 0, ~(elfcpp::Elf_Xword) 0,
729 object, psymval, addend);
730 }
731
732 // R_SPARC_DISP8: (Symbol + Addend - Address)
733 static inline void
734 disp8(unsigned char* view,
735 const Sized_relobj<size, big_endian>* object,
736 const Symbol_value<size>* psymval,
737 typename elfcpp::Elf_types<size>::Elf_Addr addend,
738 typename elfcpp::Elf_types<size>::Elf_Addr address)
739 {
740 This::template pcrela_unaligned<8>(view, object, psymval,
741 addend, address);
742 }
743
744 // R_SPARC_DISP16: (Symbol + Addend - Address)
745 static inline void
746 disp16(unsigned char* view,
747 const Sized_relobj<size, big_endian>* object,
748 const Symbol_value<size>* psymval,
749 typename elfcpp::Elf_types<size>::Elf_Addr addend,
750 typename elfcpp::Elf_types<size>::Elf_Addr address)
751 {
752 This::template pcrela_unaligned<16>(view, object, psymval,
753 addend, address);
754 }
755
756 // R_SPARC_DISP32: (Symbol + Addend - Address)
757 static inline void
758 disp32(unsigned char* view,
759 const Sized_relobj<size, big_endian>* object,
760 const Symbol_value<size>* psymval,
761 typename elfcpp::Elf_types<size>::Elf_Addr addend,
762 typename elfcpp::Elf_types<size>::Elf_Addr address)
763 {
764 This::template pcrela_unaligned<32>(view, object, psymval,
765 addend, address);
766 }
767
768 // R_SPARC_DISP64: (Symbol + Addend - Address)
769 static inline void
770 disp64(unsigned char* view,
771 const Sized_relobj<size, big_endian>* object,
772 const Symbol_value<size>* psymval,
773 elfcpp::Elf_Xword addend,
774 typename elfcpp::Elf_types<size>::Elf_Addr address)
775 {
776 This::template pcrela_unaligned<64>(view, object, psymval,
777 addend, address);
778 }
779
780 // R_SPARC_H44: (Symbol + Addend) >> 22
781 static inline void
782 h44(unsigned char* view,
783 const Sized_relobj<size, big_endian>* object,
784 const Symbol_value<size>* psymval,
785 typename elfcpp::Elf_types<size>::Elf_Addr addend)
786 {
787 This_insn::template rela<32>(view, 22, 0x003fffff, object, psymval, addend);
788 }
789
790 // R_SPARC_M44: ((Symbol + Addend) >> 12) & 0x3ff
791 static inline void
792 m44(unsigned char* view,
793 const Sized_relobj<size, big_endian>* object,
794 const Symbol_value<size>* psymval,
795 typename elfcpp::Elf_types<size>::Elf_Addr addend)
796 {
797 This_insn::template rela<32>(view, 12, 0x000003ff, object, psymval, addend);
798 }
799
800 // R_SPARC_L44: (Symbol + Addend) & 0xfff
801 static inline void
802 l44(unsigned char* view,
803 const Sized_relobj<size, big_endian>* object,
804 const Symbol_value<size>* psymval,
805 typename elfcpp::Elf_types<size>::Elf_Addr addend)
806 {
807 This_insn::template rela<32>(view, 0, 0x00000fff, object, psymval, addend);
808 }
809
810 // R_SPARC_HH22: (Symbol + Addend) >> 42
811 static inline void
812 hh22(unsigned char* view,
813 const Sized_relobj<size, big_endian>* object,
814 const Symbol_value<size>* psymval,
815 typename elfcpp::Elf_types<size>::Elf_Addr addend)
816 {
817 This_insn::template rela<32>(view, 42, 0x003fffff, object, psymval, addend);
818 }
819
820 // R_SPARC_PC_HH22: (Symbol + Addend - Address) >> 42
821 static inline void
822 pc_hh22(unsigned char* view,
823 const Sized_relobj<size, big_endian>* object,
824 const Symbol_value<size>* psymval,
825 typename elfcpp::Elf_types<size>::Elf_Addr addend,
826 typename elfcpp::Elf_types<size>::Elf_Addr address)
827 {
828 This_insn::template pcrela<32>(view, 42, 0x003fffff, object,
829 psymval, addend, address);
830 }
831
832 // R_SPARC_HM10: ((Symbol + Addend) >> 32) & 0x3ff
833 static inline void
834 hm10(unsigned char* view,
835 const Sized_relobj<size, big_endian>* object,
836 const Symbol_value<size>* psymval,
837 typename elfcpp::Elf_types<size>::Elf_Addr addend)
838 {
839 This_insn::template rela<32>(view, 32, 0x000003ff, object, psymval, addend);
840 }
841
842 // R_SPARC_PC_HM10: ((Symbol + Addend - Address) >> 32) & 0x3ff
843 static inline void
844 pc_hm10(unsigned char* view,
845 const Sized_relobj<size, big_endian>* object,
846 const Symbol_value<size>* psymval,
847 typename elfcpp::Elf_types<size>::Elf_Addr addend,
848 typename elfcpp::Elf_types<size>::Elf_Addr address)
849 {
850 This_insn::template pcrela<32>(view, 32, 0x000003ff, object,
851 psymval, addend, address);
852 }
853
854 // R_SPARC_11: (Symbol + Addend)
855 static inline void
856 rela32_11(unsigned char* view,
857 const Sized_relobj<size, big_endian>* object,
858 const Symbol_value<size>* psymval,
859 typename elfcpp::Elf_types<size>::Elf_Addr addend)
860 {
861 This_insn::template rela<32>(view, 0, 0x000007ff, object, psymval, addend);
862 }
863
864 // R_SPARC_10: (Symbol + Addend)
865 static inline void
866 rela32_10(unsigned char* view,
867 const Sized_relobj<size, big_endian>* object,
868 const Symbol_value<size>* psymval,
869 typename elfcpp::Elf_types<size>::Elf_Addr addend)
870 {
871 This_insn::template rela<32>(view, 0, 0x000003ff, object, psymval, addend);
872 }
873
874 // R_SPARC_7: (Symbol + Addend)
875 static inline void
876 rela32_7(unsigned char* view,
877 const Sized_relobj<size, big_endian>* object,
878 const Symbol_value<size>* psymval,
879 typename elfcpp::Elf_types<size>::Elf_Addr addend)
880 {
881 This_insn::template rela<32>(view, 0, 0x0000007f, object, psymval, addend);
882 }
883
884 // R_SPARC_6: (Symbol + Addend)
885 static inline void
886 rela32_6(unsigned char* view,
887 const Sized_relobj<size, big_endian>* object,
888 const Symbol_value<size>* psymval,
889 typename elfcpp::Elf_types<size>::Elf_Addr addend)
890 {
891 This_insn::template rela<32>(view, 0, 0x0000003f, object, psymval, addend);
892 }
893
894 // R_SPARC_5: (Symbol + Addend)
895 static inline void
896 rela32_5(unsigned char* view,
897 const Sized_relobj<size, big_endian>* object,
898 const Symbol_value<size>* psymval,
899 typename elfcpp::Elf_types<size>::Elf_Addr addend)
900 {
901 This_insn::template rela<32>(view, 0, 0x0000001f, object, psymval, addend);
902 }
903
904 // R_SPARC_TLS_LDO_HIX22: @dtpoff(Symbol + Addend) >> 10
905 static inline void
906 ldo_hix22(unsigned char* view,
907 typename elfcpp::Elf_types<size>::Elf_Addr value,
908 typename elfcpp::Elf_types<size>::Elf_Addr addend)
909 {
910 This_insn::hi22(view, value, addend);
911 }
912
913 // R_SPARC_TLS_LDO_LOX10: @dtpoff(Symbol + Addend) & 0x3ff
914 static inline void
915 ldo_lox10(unsigned char* view,
916 typename elfcpp::Elf_types<size>::Elf_Addr value,
917 typename elfcpp::Elf_types<size>::Elf_Addr addend)
918 {
919 typedef typename elfcpp::Swap<32, true>::Valtype Valtype;
920 Valtype* wv = reinterpret_cast<Valtype*>(view);
921 Valtype val = elfcpp::Swap<32, true>::readval(wv);
922 Valtype reloc = (value + addend);
923
924 val &= ~0x1fff;
925 reloc &= 0x3ff;
926
927 elfcpp::Swap<32, true>::writeval(wv, val | reloc);
928 }
929
930 // R_SPARC_TLS_LE_HIX22: (@tpoff(Symbol + Addend) ^ 0xffffffffffffffff) >> 10
931 static inline void
932 hix22(unsigned char* view,
933 typename elfcpp::Elf_types<size>::Elf_Addr value,
934 typename elfcpp::Elf_types<size>::Elf_Addr addend)
935 {
936 typedef typename elfcpp::Swap<32, true>::Valtype Valtype;
937 Valtype* wv = reinterpret_cast<Valtype*>(view);
938 Valtype val = elfcpp::Swap<32, true>::readval(wv);
939 Valtype reloc = (value + addend);
940
941 val &= ~0x3fffff;
942
943 reloc ^= ~(Valtype)0;
944 reloc >>= 10;
945
946 reloc &= 0x3fffff;
947
948 elfcpp::Swap<32, true>::writeval(wv, val | reloc);
949 }
950
951 // R_SPARC_HIX22: ((Symbol + Addend) ^ 0xffffffffffffffff) >> 10
952 static inline void
953 hix22(unsigned char* view,
954 const Sized_relobj<size, big_endian>* object,
955 const Symbol_value<size>* psymval,
956 typename elfcpp::Elf_types<size>::Elf_Addr addend)
957 {
958 typedef typename elfcpp::Swap<32, true>::Valtype Valtype;
959 Valtype* wv = reinterpret_cast<Valtype*>(view);
960 Valtype val = elfcpp::Swap<32, true>::readval(wv);
961 Valtype reloc = psymval->value(object, addend);
962
963 val &= ~0x3fffff;
964
965 reloc ^= ~(Valtype)0;
966 reloc >>= 10;
967
968 reloc &= 0x3fffff;
969
970 elfcpp::Swap<32, true>::writeval(wv, val | reloc);
971 }
972
973
974 // R_SPARC_TLS_LE_LOX10: (@tpoff(Symbol + Addend) & 0x3ff) | 0x1c00
975 static inline void
976 lox10(unsigned char* view,
977 typename elfcpp::Elf_types<size>::Elf_Addr value,
978 typename elfcpp::Elf_types<size>::Elf_Addr addend)
979 {
980 typedef typename elfcpp::Swap<32, true>::Valtype Valtype;
981 Valtype* wv = reinterpret_cast<Valtype*>(view);
982 Valtype val = elfcpp::Swap<32, true>::readval(wv);
983 Valtype reloc = (value + addend);
984
985 val &= ~0x1fff;
986 reloc &= 0x3ff;
987 reloc |= 0x1c00;
988
989 elfcpp::Swap<32, true>::writeval(wv, val | reloc);
990 }
991
992 // R_SPARC_LOX10: ((Symbol + Addend) & 0x3ff) | 0x1c00
993 static inline void
994 lox10(unsigned char* view,
995 const Sized_relobj<size, big_endian>* object,
996 const Symbol_value<size>* psymval,
997 typename elfcpp::Elf_types<size>::Elf_Addr addend)
998 {
999 typedef typename elfcpp::Swap<32, true>::Valtype Valtype;
1000 Valtype* wv = reinterpret_cast<Valtype*>(view);
1001 Valtype val = elfcpp::Swap<32, true>::readval(wv);
1002 Valtype reloc = psymval->value(object, addend);
1003
1004 val &= ~0x1fff;
1005 reloc &= 0x3ff;
1006 reloc |= 0x1c00;
1007
1008 elfcpp::Swap<32, true>::writeval(wv, val | reloc);
1009 }
1010 };
1011
1012 // Get the GOT section, creating it if necessary.
1013
1014 template<int size, bool big_endian>
1015 Output_data_got<size, big_endian>*
1016 Target_sparc<size, big_endian>::got_section(Symbol_table* symtab,
1017 Layout* layout)
1018 {
1019 if (this->got_ == NULL)
1020 {
1021 gold_assert(symtab != NULL && layout != NULL);
1022
1023 this->got_ = new Output_data_got<size, big_endian>();
1024
1025 Output_section* os;
1026 os = layout->add_output_section_data(".got", elfcpp::SHT_PROGBITS,
1027 (elfcpp::SHF_ALLOC
1028 | elfcpp::SHF_WRITE),
1029 this->got_, false, true, false,
1030 false);
1031
1032 // Define _GLOBAL_OFFSET_TABLE_ at the start of the .got section.
1033 symtab->define_in_output_data("_GLOBAL_OFFSET_TABLE_", NULL,
1034 Symbol_table::PREDEFINED,
1035 this->got_,
1036 0, 0, elfcpp::STT_OBJECT,
1037 elfcpp::STB_LOCAL,
1038 elfcpp::STV_HIDDEN, 0,
1039 false, false);
1040 }
1041
1042 return this->got_;
1043 }
1044
1045 // Get the dynamic reloc section, creating it if necessary.
1046
1047 template<int size, bool big_endian>
1048 typename Target_sparc<size, big_endian>::Reloc_section*
1049 Target_sparc<size, big_endian>::rela_dyn_section(Layout* layout)
1050 {
1051 if (this->rela_dyn_ == NULL)
1052 {
1053 gold_assert(layout != NULL);
1054 this->rela_dyn_ = new Reloc_section(parameters->options().combreloc());
1055 layout->add_output_section_data(".rela.dyn", elfcpp::SHT_RELA,
1056 elfcpp::SHF_ALLOC, this->rela_dyn_, true,
1057 false, false, false);
1058 }
1059 return this->rela_dyn_;
1060 }
1061
1062 // A class to handle the PLT data.
1063
1064 template<int size, bool big_endian>
1065 class Output_data_plt_sparc : public Output_section_data
1066 {
1067 public:
1068 typedef Output_data_reloc<elfcpp::SHT_RELA, true,
1069 size, big_endian> Reloc_section;
1070
1071 Output_data_plt_sparc(Layout*);
1072
1073 // Add an entry to the PLT.
1074 void add_entry(Symbol* gsym);
1075
1076 // Return the .rela.plt section data.
1077 const Reloc_section* rel_plt() const
1078 {
1079 return this->rel_;
1080 }
1081
1082 protected:
1083 void do_adjust_output_section(Output_section* os);
1084
1085 // Write to a map file.
1086 void
1087 do_print_to_mapfile(Mapfile* mapfile) const
1088 { mapfile->print_output_data(this, _("** PLT")); }
1089
1090 private:
1091 // The size of an entry in the PLT.
1092 static const int base_plt_entry_size = (size == 32 ? 12 : 32);
1093
1094 static const unsigned int plt_entries_per_block = 160;
1095 static const unsigned int plt_insn_chunk_size = 24;
1096 static const unsigned int plt_pointer_chunk_size = 8;
1097 static const unsigned int plt_block_size =
1098 (plt_entries_per_block
1099 * (plt_insn_chunk_size + plt_pointer_chunk_size));
1100
1101 // Set the final size.
1102 void
1103 set_final_data_size()
1104 {
1105 unsigned int full_count = this->count_ + 4;
1106 unsigned int extra = (size == 32 ? 4 : 0);
1107
1108 if (size == 32 || full_count < 32768)
1109 this->set_data_size((full_count * base_plt_entry_size) + extra);
1110 else
1111 {
1112 unsigned int ext_cnt = full_count - 32768;
1113
1114 this->set_data_size((32768 * base_plt_entry_size)
1115 + (ext_cnt
1116 * (plt_insn_chunk_size
1117 + plt_pointer_chunk_size)));
1118 }
1119 }
1120
1121 // Write out the PLT data.
1122 void
1123 do_write(Output_file*);
1124
1125 // The reloc section.
1126 Reloc_section* rel_;
1127 // The number of PLT entries.
1128 unsigned int count_;
1129 };
1130
1131 // Define the constants as required by C++ standard.
1132
1133 template<int size, bool big_endian>
1134 const int Output_data_plt_sparc<size, big_endian>::base_plt_entry_size;
1135
1136 template<int size, bool big_endian>
1137 const unsigned int
1138 Output_data_plt_sparc<size, big_endian>::plt_entries_per_block;
1139
1140 template<int size, bool big_endian>
1141 const unsigned int Output_data_plt_sparc<size, big_endian>::plt_insn_chunk_size;
1142
1143 template<int size, bool big_endian>
1144 const unsigned int
1145 Output_data_plt_sparc<size, big_endian>::plt_pointer_chunk_size;
1146
1147 template<int size, bool big_endian>
1148 const unsigned int Output_data_plt_sparc<size, big_endian>::plt_block_size;
1149
1150 // Create the PLT section. The ordinary .got section is an argument,
1151 // since we need to refer to the start.
1152
1153 template<int size, bool big_endian>
1154 Output_data_plt_sparc<size, big_endian>::Output_data_plt_sparc(Layout* layout)
1155 : Output_section_data(size == 32 ? 4 : 8), count_(0)
1156 {
1157 this->rel_ = new Reloc_section(false);
1158 layout->add_output_section_data(".rela.plt", elfcpp::SHT_RELA,
1159 elfcpp::SHF_ALLOC, this->rel_, true,
1160 false, false, false);
1161 }
1162
1163 template<int size, bool big_endian>
1164 void
1165 Output_data_plt_sparc<size, big_endian>::do_adjust_output_section(Output_section* os)
1166 {
1167 os->set_entsize(0);
1168 }
1169
1170 // Add an entry to the PLT.
1171
1172 template<int size, bool big_endian>
1173 void
1174 Output_data_plt_sparc<size, big_endian>::add_entry(Symbol* gsym)
1175 {
1176 gold_assert(!gsym->has_plt_offset());
1177
1178 unsigned int index = this->count_ + 4;
1179 section_offset_type plt_offset;
1180
1181 if (size == 32 || index < 32768)
1182 plt_offset = index * base_plt_entry_size;
1183 else
1184 {
1185 unsigned int ext_index = index - 32768;
1186
1187 plt_offset = (32768 * base_plt_entry_size)
1188 + ((ext_index / plt_entries_per_block)
1189 * plt_block_size)
1190 + ((ext_index % plt_entries_per_block)
1191 * plt_insn_chunk_size);
1192 }
1193
1194 gsym->set_plt_offset(plt_offset);
1195
1196 ++this->count_;
1197
1198 // Every PLT entry needs a reloc.
1199 gsym->set_needs_dynsym_entry();
1200 this->rel_->add_global(gsym, elfcpp::R_SPARC_JMP_SLOT, this,
1201 plt_offset, 0);
1202
1203 // Note that we don't need to save the symbol. The contents of the
1204 // PLT are independent of which symbols are used. The symbols only
1205 // appear in the relocations.
1206 }
1207
1208 static const unsigned int sparc_nop = 0x01000000;
1209 static const unsigned int sparc_sethi_g1 = 0x03000000;
1210 static const unsigned int sparc_branch_always = 0x30800000;
1211 static const unsigned int sparc_branch_always_pt = 0x30680000;
1212 static const unsigned int sparc_mov = 0x80100000;
1213 static const unsigned int sparc_mov_g0_o0 = 0x90100000;
1214 static const unsigned int sparc_mov_o7_g5 = 0x8a10000f;
1215 static const unsigned int sparc_call_plus_8 = 0x40000002;
1216 static const unsigned int sparc_ldx_o7_imm_g1 = 0xc25be000;
1217 static const unsigned int sparc_jmpl_o7_g1_g1 = 0x83c3c001;
1218 static const unsigned int sparc_mov_g5_o7 = 0x9e100005;
1219
1220 // Write out the PLT.
1221
1222 template<int size, bool big_endian>
1223 void
1224 Output_data_plt_sparc<size, big_endian>::do_write(Output_file* of)
1225 {
1226 const off_t offset = this->offset();
1227 const section_size_type oview_size =
1228 convert_to_section_size_type(this->data_size());
1229 unsigned char* const oview = of->get_output_view(offset, oview_size);
1230 unsigned char* pov = oview;
1231
1232 memset(pov, 0, base_plt_entry_size * 4);
1233 pov += base_plt_entry_size * 4;
1234
1235 unsigned int plt_offset = base_plt_entry_size * 4;
1236 const unsigned int count = this->count_;
1237
1238 if (size == 64)
1239 {
1240 unsigned int limit;
1241
1242 limit = (count > 32768 ? 32768 : count);
1243
1244 for (unsigned int i = 0; i < limit; ++i)
1245 {
1246 elfcpp::Swap<32, true>::writeval(pov + 0x00,
1247 sparc_sethi_g1 + plt_offset);
1248 elfcpp::Swap<32, true>::writeval(pov + 0x04,
1249 sparc_branch_always_pt +
1250 (((base_plt_entry_size -
1251 (plt_offset + 4)) >> 2) &
1252 0x7ffff));
1253 elfcpp::Swap<32, true>::writeval(pov + 0x08, sparc_nop);
1254 elfcpp::Swap<32, true>::writeval(pov + 0x0c, sparc_nop);
1255 elfcpp::Swap<32, true>::writeval(pov + 0x10, sparc_nop);
1256 elfcpp::Swap<32, true>::writeval(pov + 0x14, sparc_nop);
1257 elfcpp::Swap<32, true>::writeval(pov + 0x18, sparc_nop);
1258 elfcpp::Swap<32, true>::writeval(pov + 0x1c, sparc_nop);
1259
1260 pov += base_plt_entry_size;
1261 plt_offset += base_plt_entry_size;
1262 }
1263
1264 if (count > 32768)
1265 {
1266 unsigned int ext_cnt = count - 32768;
1267 unsigned int blks = ext_cnt / plt_entries_per_block;
1268
1269 for (unsigned int i = 0; i < blks; ++i)
1270 {
1271 unsigned int data_off = (plt_entries_per_block
1272 * plt_insn_chunk_size) - 4;
1273
1274 for (unsigned int j = 0; j < plt_entries_per_block; ++j)
1275 {
1276 elfcpp::Swap<32, true>::writeval(pov + 0x00,
1277 sparc_mov_o7_g5);
1278 elfcpp::Swap<32, true>::writeval(pov + 0x04,
1279 sparc_call_plus_8);
1280 elfcpp::Swap<32, true>::writeval(pov + 0x08,
1281 sparc_nop);
1282 elfcpp::Swap<32, true>::writeval(pov + 0x0c,
1283 sparc_ldx_o7_imm_g1 +
1284 (data_off & 0x1fff));
1285 elfcpp::Swap<32, true>::writeval(pov + 0x10,
1286 sparc_jmpl_o7_g1_g1);
1287 elfcpp::Swap<32, true>::writeval(pov + 0x14,
1288 sparc_mov_g5_o7);
1289
1290 elfcpp::Swap<64, big_endian>::writeval(
1291 pov + 0x4 + data_off,
1292 (elfcpp::Elf_Xword) (oview - (pov + 0x04)));
1293
1294 pov += plt_insn_chunk_size;
1295 data_off -= 16;
1296 }
1297 }
1298
1299 unsigned int sub_blk_cnt = ext_cnt % plt_entries_per_block;
1300 for (unsigned int i = 0; i < sub_blk_cnt; ++i)
1301 {
1302 unsigned int data_off = (sub_blk_cnt
1303 * plt_insn_chunk_size) - 4;
1304
1305 for (unsigned int j = 0; j < plt_entries_per_block; ++j)
1306 {
1307 elfcpp::Swap<32, true>::writeval(pov + 0x00,
1308 sparc_mov_o7_g5);
1309 elfcpp::Swap<32, true>::writeval(pov + 0x04,
1310 sparc_call_plus_8);
1311 elfcpp::Swap<32, true>::writeval(pov + 0x08,
1312 sparc_nop);
1313 elfcpp::Swap<32, true>::writeval(pov + 0x0c,
1314 sparc_ldx_o7_imm_g1 +
1315 (data_off & 0x1fff));
1316 elfcpp::Swap<32, true>::writeval(pov + 0x10,
1317 sparc_jmpl_o7_g1_g1);
1318 elfcpp::Swap<32, true>::writeval(pov + 0x14,
1319 sparc_mov_g5_o7);
1320
1321 elfcpp::Swap<64, big_endian>::writeval(
1322 pov + 0x4 + data_off,
1323 (elfcpp::Elf_Xword) (oview - (pov + 0x04)));
1324
1325 pov += plt_insn_chunk_size;
1326 data_off -= 16;
1327 }
1328 }
1329 }
1330 }
1331 else
1332 {
1333 for (unsigned int i = 0; i < count; ++i)
1334 {
1335 elfcpp::Swap<32, true>::writeval(pov + 0x00,
1336 sparc_sethi_g1 + plt_offset);
1337 elfcpp::Swap<32, true>::writeval(pov + 0x04,
1338 sparc_branch_always +
1339 (((- (plt_offset + 4)) >> 2) &
1340 0x003fffff));
1341 elfcpp::Swap<32, true>::writeval(pov + 0x08, sparc_nop);
1342
1343 pov += base_plt_entry_size;
1344 plt_offset += base_plt_entry_size;
1345 }
1346
1347 elfcpp::Swap<32, true>::writeval(pov, sparc_nop);
1348 pov += 4;
1349 }
1350
1351 gold_assert(static_cast<section_size_type>(pov - oview) == oview_size);
1352
1353 of->write_output_view(offset, oview_size, oview);
1354 }
1355
1356 // Create a PLT entry for a global symbol.
1357
1358 template<int size, bool big_endian>
1359 void
1360 Target_sparc<size, big_endian>::make_plt_entry(Symbol_table* symtab,
1361 Layout* layout,
1362 Symbol* gsym)
1363 {
1364 if (gsym->has_plt_offset())
1365 return;
1366
1367 if (this->plt_ == NULL)
1368 {
1369 // Create the GOT sections first.
1370 this->got_section(symtab, layout);
1371
1372 this->plt_ = new Output_data_plt_sparc<size, big_endian>(layout);
1373 layout->add_output_section_data(".plt", elfcpp::SHT_PROGBITS,
1374 (elfcpp::SHF_ALLOC
1375 | elfcpp::SHF_EXECINSTR
1376 | elfcpp::SHF_WRITE),
1377 this->plt_, false, false, false, false);
1378
1379 // Define _PROCEDURE_LINKAGE_TABLE_ at the start of the .plt section.
1380 symtab->define_in_output_data("_PROCEDURE_LINKAGE_TABLE_", NULL,
1381 Symbol_table::PREDEFINED,
1382 this->plt_,
1383 0, 0, elfcpp::STT_OBJECT,
1384 elfcpp::STB_LOCAL,
1385 elfcpp::STV_HIDDEN, 0,
1386 false, false);
1387 }
1388
1389 this->plt_->add_entry(gsym);
1390 }
1391
1392 // Create a GOT entry for the TLS module index.
1393
1394 template<int size, bool big_endian>
1395 unsigned int
1396 Target_sparc<size, big_endian>::got_mod_index_entry(Symbol_table* symtab,
1397 Layout* layout,
1398 Sized_relobj<size, big_endian>* object)
1399 {
1400 if (this->got_mod_index_offset_ == -1U)
1401 {
1402 gold_assert(symtab != NULL && layout != NULL && object != NULL);
1403 Reloc_section* rela_dyn = this->rela_dyn_section(layout);
1404 Output_data_got<size, big_endian>* got;
1405 unsigned int got_offset;
1406
1407 got = this->got_section(symtab, layout);
1408 got_offset = got->add_constant(0);
1409 rela_dyn->add_local(object, 0,
1410 (size == 64 ?
1411 elfcpp::R_SPARC_TLS_DTPMOD64 :
1412 elfcpp::R_SPARC_TLS_DTPMOD32), got,
1413 got_offset, 0);
1414 got->add_constant(0);
1415 this->got_mod_index_offset_ = got_offset;
1416 }
1417 return this->got_mod_index_offset_;
1418 }
1419
1420 // Optimize the TLS relocation type based on what we know about the
1421 // symbol. IS_FINAL is true if the final address of this symbol is
1422 // known at link time.
1423
1424 static tls::Tls_optimization
1425 optimize_tls_reloc(bool is_final, int r_type)
1426 {
1427 // If we are generating a shared library, then we can't do anything
1428 // in the linker.
1429 if (parameters->options().shared())
1430 return tls::TLSOPT_NONE;
1431
1432 switch (r_type)
1433 {
1434 case elfcpp::R_SPARC_TLS_GD_HI22: // Global-dynamic
1435 case elfcpp::R_SPARC_TLS_GD_LO10:
1436 case elfcpp::R_SPARC_TLS_GD_ADD:
1437 case elfcpp::R_SPARC_TLS_GD_CALL:
1438 // These are General-Dynamic which permits fully general TLS
1439 // access. Since we know that we are generating an executable,
1440 // we can convert this to Initial-Exec. If we also know that
1441 // this is a local symbol, we can further switch to Local-Exec.
1442 if (is_final)
1443 return tls::TLSOPT_TO_LE;
1444 return tls::TLSOPT_TO_IE;
1445
1446 case elfcpp::R_SPARC_TLS_LDM_HI22: // Local-dynamic
1447 case elfcpp::R_SPARC_TLS_LDM_LO10:
1448 case elfcpp::R_SPARC_TLS_LDM_ADD:
1449 case elfcpp::R_SPARC_TLS_LDM_CALL:
1450 // This is Local-Dynamic, which refers to a local symbol in the
1451 // dynamic TLS block. Since we know that we generating an
1452 // executable, we can switch to Local-Exec.
1453 return tls::TLSOPT_TO_LE;
1454
1455 case elfcpp::R_SPARC_TLS_LDO_HIX22: // Alternate local-dynamic
1456 case elfcpp::R_SPARC_TLS_LDO_LOX10:
1457 case elfcpp::R_SPARC_TLS_LDO_ADD:
1458 // Another type of Local-Dynamic relocation.
1459 return tls::TLSOPT_TO_LE;
1460
1461 case elfcpp::R_SPARC_TLS_IE_HI22: // Initial-exec
1462 case elfcpp::R_SPARC_TLS_IE_LO10:
1463 case elfcpp::R_SPARC_TLS_IE_LD:
1464 case elfcpp::R_SPARC_TLS_IE_LDX:
1465 case elfcpp::R_SPARC_TLS_IE_ADD:
1466 // These are Initial-Exec relocs which get the thread offset
1467 // from the GOT. If we know that we are linking against the
1468 // local symbol, we can switch to Local-Exec, which links the
1469 // thread offset into the instruction.
1470 if (is_final)
1471 return tls::TLSOPT_TO_LE;
1472 return tls::TLSOPT_NONE;
1473
1474 case elfcpp::R_SPARC_TLS_LE_HIX22: // Local-exec
1475 case elfcpp::R_SPARC_TLS_LE_LOX10:
1476 // When we already have Local-Exec, there is nothing further we
1477 // can do.
1478 return tls::TLSOPT_NONE;
1479
1480 default:
1481 gold_unreachable();
1482 }
1483 }
1484
1485 // Generate a PLT entry slot for a call to __tls_get_addr
1486 template<int size, bool big_endian>
1487 void
1488 Target_sparc<size, big_endian>::Scan::generate_tls_call(Symbol_table* symtab,
1489 Layout* layout,
1490 Target_sparc<size, big_endian>* target)
1491 {
1492 Symbol* gsym = target->tls_get_addr_sym(symtab);
1493
1494 target->make_plt_entry(symtab, layout, gsym);
1495 }
1496
1497 // Report an unsupported relocation against a local symbol.
1498
1499 template<int size, bool big_endian>
1500 void
1501 Target_sparc<size, big_endian>::Scan::unsupported_reloc_local(
1502 Sized_relobj<size, big_endian>* object,
1503 unsigned int r_type)
1504 {
1505 gold_error(_("%s: unsupported reloc %u against local symbol"),
1506 object->name().c_str(), r_type);
1507 }
1508
1509 // We are about to emit a dynamic relocation of type R_TYPE. If the
1510 // dynamic linker does not support it, issue an error.
1511
1512 template<int size, bool big_endian>
1513 void
1514 Target_sparc<size, big_endian>::Scan::check_non_pic(Relobj* object, unsigned int r_type)
1515 {
1516 gold_assert(r_type != elfcpp::R_SPARC_NONE);
1517
1518 if (size == 64)
1519 {
1520 switch (r_type)
1521 {
1522 // These are the relocation types supported by glibc for sparc 64-bit.
1523 case elfcpp::R_SPARC_RELATIVE:
1524 case elfcpp::R_SPARC_COPY:
1525 case elfcpp::R_SPARC_64:
1526 case elfcpp::R_SPARC_GLOB_DAT:
1527 case elfcpp::R_SPARC_JMP_SLOT:
1528 case elfcpp::R_SPARC_TLS_DTPMOD64:
1529 case elfcpp::R_SPARC_TLS_DTPOFF64:
1530 case elfcpp::R_SPARC_TLS_TPOFF64:
1531 case elfcpp::R_SPARC_TLS_LE_HIX22:
1532 case elfcpp::R_SPARC_TLS_LE_LOX10:
1533 case elfcpp::R_SPARC_8:
1534 case elfcpp::R_SPARC_16:
1535 case elfcpp::R_SPARC_DISP8:
1536 case elfcpp::R_SPARC_DISP16:
1537 case elfcpp::R_SPARC_DISP32:
1538 case elfcpp::R_SPARC_WDISP30:
1539 case elfcpp::R_SPARC_LO10:
1540 case elfcpp::R_SPARC_HI22:
1541 case elfcpp::R_SPARC_OLO10:
1542 case elfcpp::R_SPARC_H44:
1543 case elfcpp::R_SPARC_M44:
1544 case elfcpp::R_SPARC_L44:
1545 case elfcpp::R_SPARC_HH22:
1546 case elfcpp::R_SPARC_HM10:
1547 case elfcpp::R_SPARC_LM22:
1548 case elfcpp::R_SPARC_UA16:
1549 case elfcpp::R_SPARC_UA32:
1550 case elfcpp::R_SPARC_UA64:
1551 return;
1552
1553 default:
1554 break;
1555 }
1556 }
1557 else
1558 {
1559 switch (r_type)
1560 {
1561 // These are the relocation types supported by glibc for sparc 32-bit.
1562 case elfcpp::R_SPARC_RELATIVE:
1563 case elfcpp::R_SPARC_COPY:
1564 case elfcpp::R_SPARC_GLOB_DAT:
1565 case elfcpp::R_SPARC_32:
1566 case elfcpp::R_SPARC_JMP_SLOT:
1567 case elfcpp::R_SPARC_TLS_DTPMOD32:
1568 case elfcpp::R_SPARC_TLS_DTPOFF32:
1569 case elfcpp::R_SPARC_TLS_TPOFF32:
1570 case elfcpp::R_SPARC_TLS_LE_HIX22:
1571 case elfcpp::R_SPARC_TLS_LE_LOX10:
1572 case elfcpp::R_SPARC_8:
1573 case elfcpp::R_SPARC_16:
1574 case elfcpp::R_SPARC_DISP8:
1575 case elfcpp::R_SPARC_DISP16:
1576 case elfcpp::R_SPARC_DISP32:
1577 case elfcpp::R_SPARC_LO10:
1578 case elfcpp::R_SPARC_WDISP30:
1579 case elfcpp::R_SPARC_HI22:
1580 case elfcpp::R_SPARC_UA16:
1581 case elfcpp::R_SPARC_UA32:
1582 return;
1583
1584 default:
1585 break;
1586 }
1587 }
1588
1589 // This prevents us from issuing more than one error per reloc
1590 // section. But we can still wind up issuing more than one
1591 // error per object file.
1592 if (this->issued_non_pic_error_)
1593 return;
1594 gold_assert(parameters->options().output_is_position_independent());
1595 object->error(_("requires unsupported dynamic reloc; "
1596 "recompile with -fPIC"));
1597 this->issued_non_pic_error_ = true;
1598 return;
1599 }
1600
1601 // Scan a relocation for a local symbol.
1602
1603 template<int size, bool big_endian>
1604 inline void
1605 Target_sparc<size, big_endian>::Scan::local(
1606 Symbol_table* symtab,
1607 Layout* layout,
1608 Target_sparc<size, big_endian>* target,
1609 Sized_relobj<size, big_endian>* object,
1610 unsigned int data_shndx,
1611 Output_section* output_section,
1612 const elfcpp::Rela<size, big_endian>& reloc,
1613 unsigned int r_type,
1614 const elfcpp::Sym<size, big_endian>& lsym)
1615 {
1616 unsigned int orig_r_type = r_type;
1617
1618 r_type &= 0xff;
1619 switch (r_type)
1620 {
1621 case elfcpp::R_SPARC_NONE:
1622 case elfcpp::R_SPARC_REGISTER:
1623 case elfcpp::R_SPARC_GNU_VTINHERIT:
1624 case elfcpp::R_SPARC_GNU_VTENTRY:
1625 break;
1626
1627 case elfcpp::R_SPARC_64:
1628 case elfcpp::R_SPARC_32:
1629 // If building a shared library (or a position-independent
1630 // executable), we need to create a dynamic relocation for
1631 // this location. The relocation applied at link time will
1632 // apply the link-time value, so we flag the location with
1633 // an R_SPARC_RELATIVE relocation so the dynamic loader can
1634 // relocate it easily.
1635 if (parameters->options().output_is_position_independent())
1636 {
1637 Reloc_section* rela_dyn = target->rela_dyn_section(layout);
1638 unsigned int r_sym = elfcpp::elf_r_sym<size>(reloc.get_r_info());
1639 rela_dyn->add_local_relative(object, r_sym, elfcpp::R_SPARC_RELATIVE,
1640 output_section, data_shndx,
1641 reloc.get_r_offset(),
1642 reloc.get_r_addend());
1643 }
1644 break;
1645
1646 case elfcpp::R_SPARC_HIX22:
1647 case elfcpp::R_SPARC_LOX10:
1648 case elfcpp::R_SPARC_H44:
1649 case elfcpp::R_SPARC_M44:
1650 case elfcpp::R_SPARC_L44:
1651 case elfcpp::R_SPARC_HH22:
1652 case elfcpp::R_SPARC_HM10:
1653 case elfcpp::R_SPARC_LM22:
1654 case elfcpp::R_SPARC_UA64:
1655 case elfcpp::R_SPARC_UA32:
1656 case elfcpp::R_SPARC_UA16:
1657 case elfcpp::R_SPARC_HI22:
1658 case elfcpp::R_SPARC_LO10:
1659 case elfcpp::R_SPARC_OLO10:
1660 case elfcpp::R_SPARC_16:
1661 case elfcpp::R_SPARC_11:
1662 case elfcpp::R_SPARC_10:
1663 case elfcpp::R_SPARC_8:
1664 case elfcpp::R_SPARC_7:
1665 case elfcpp::R_SPARC_6:
1666 case elfcpp::R_SPARC_5:
1667 // If building a shared library (or a position-independent
1668 // executable), we need to create a dynamic relocation for
1669 // this location.
1670 if (parameters->options().output_is_position_independent())
1671 {
1672 Reloc_section* rela_dyn = target->rela_dyn_section(layout);
1673
1674 check_non_pic(object, r_type);
1675 if (lsym.get_st_type() != elfcpp::STT_SECTION)
1676 {
1677 unsigned int r_sym = elfcpp::elf_r_sym<size>(reloc.get_r_info());
1678 rela_dyn->add_local(object, r_sym, orig_r_type, output_section,
1679 data_shndx, reloc.get_r_offset(),
1680 reloc.get_r_addend());
1681 }
1682 else
1683 {
1684 unsigned int r_sym = elfcpp::elf_r_sym<size>(reloc.get_r_info());
1685 gold_assert(lsym.get_st_value() == 0);
1686 rela_dyn->add_local_relative(object, r_sym, orig_r_type,
1687 output_section, data_shndx,
1688 reloc.get_r_offset(),
1689 reloc.get_r_addend());
1690 }
1691 }
1692 break;
1693
1694 case elfcpp::R_SPARC_WDISP30:
1695 case elfcpp::R_SPARC_WDISP22:
1696 case elfcpp::R_SPARC_WDISP19:
1697 case elfcpp::R_SPARC_WDISP16:
1698 case elfcpp::R_SPARC_DISP8:
1699 case elfcpp::R_SPARC_DISP16:
1700 case elfcpp::R_SPARC_DISP32:
1701 case elfcpp::R_SPARC_DISP64:
1702 case elfcpp::R_SPARC_PC10:
1703 case elfcpp::R_SPARC_PC22:
1704 break;
1705
1706 case elfcpp::R_SPARC_GOTDATA_OP:
1707 case elfcpp::R_SPARC_GOTDATA_OP_HIX22:
1708 case elfcpp::R_SPARC_GOTDATA_OP_LOX10:
1709 case elfcpp::R_SPARC_GOT10:
1710 case elfcpp::R_SPARC_GOT13:
1711 case elfcpp::R_SPARC_GOT22:
1712 {
1713 // The symbol requires a GOT entry.
1714 Output_data_got<size, big_endian>* got;
1715 unsigned int r_sym;
1716
1717 got = target->got_section(symtab, layout);
1718 r_sym = elfcpp::elf_r_sym<size>(reloc.get_r_info());
1719
1720 // If we are generating a shared object, we need to add a
1721 // dynamic relocation for this symbol's GOT entry.
1722 if (parameters->options().output_is_position_independent())
1723 {
1724 if (!object->local_has_got_offset(r_sym, GOT_TYPE_STANDARD))
1725 {
1726 Reloc_section* rela_dyn = target->rela_dyn_section(layout);
1727 unsigned int off;
1728
1729 off = got->add_constant(0);
1730 object->set_local_got_offset(r_sym, GOT_TYPE_STANDARD, off);
1731 rela_dyn->add_local_relative(object, r_sym,
1732 elfcpp::R_SPARC_RELATIVE,
1733 got, off, 0);
1734 }
1735 }
1736 else
1737 got->add_local(object, r_sym, GOT_TYPE_STANDARD);
1738 }
1739 break;
1740
1741 // These are initial TLS relocs, which are expected when
1742 // linking.
1743 case elfcpp::R_SPARC_TLS_GD_HI22: // Global-dynamic
1744 case elfcpp::R_SPARC_TLS_GD_LO10:
1745 case elfcpp::R_SPARC_TLS_GD_ADD:
1746 case elfcpp::R_SPARC_TLS_GD_CALL:
1747 case elfcpp::R_SPARC_TLS_LDM_HI22 : // Local-dynamic
1748 case elfcpp::R_SPARC_TLS_LDM_LO10:
1749 case elfcpp::R_SPARC_TLS_LDM_ADD:
1750 case elfcpp::R_SPARC_TLS_LDM_CALL:
1751 case elfcpp::R_SPARC_TLS_LDO_HIX22: // Alternate local-dynamic
1752 case elfcpp::R_SPARC_TLS_LDO_LOX10:
1753 case elfcpp::R_SPARC_TLS_LDO_ADD:
1754 case elfcpp::R_SPARC_TLS_IE_HI22: // Initial-exec
1755 case elfcpp::R_SPARC_TLS_IE_LO10:
1756 case elfcpp::R_SPARC_TLS_IE_LD:
1757 case elfcpp::R_SPARC_TLS_IE_LDX:
1758 case elfcpp::R_SPARC_TLS_IE_ADD:
1759 case elfcpp::R_SPARC_TLS_LE_HIX22: // Local-exec
1760 case elfcpp::R_SPARC_TLS_LE_LOX10:
1761 {
1762 bool output_is_shared = parameters->options().shared();
1763 const tls::Tls_optimization optimized_type
1764 = optimize_tls_reloc(!output_is_shared, r_type);
1765 switch (r_type)
1766 {
1767 case elfcpp::R_SPARC_TLS_GD_HI22: // Global-dynamic
1768 case elfcpp::R_SPARC_TLS_GD_LO10:
1769 case elfcpp::R_SPARC_TLS_GD_ADD:
1770 case elfcpp::R_SPARC_TLS_GD_CALL:
1771 if (optimized_type == tls::TLSOPT_NONE)
1772 {
1773 // Create a pair of GOT entries for the module index and
1774 // dtv-relative offset.
1775 Output_data_got<size, big_endian>* got
1776 = target->got_section(symtab, layout);
1777 unsigned int r_sym = elfcpp::elf_r_sym<size>(reloc.get_r_info());
1778 unsigned int shndx = lsym.get_st_shndx();
1779 bool is_ordinary;
1780 shndx = object->adjust_sym_shndx(r_sym, shndx, &is_ordinary);
1781 if (!is_ordinary)
1782 object->error(_("local symbol %u has bad shndx %u"),
1783 r_sym, shndx);
1784 else
1785 got->add_local_pair_with_rela(object, r_sym,
1786 lsym.get_st_shndx(),
1787 GOT_TYPE_TLS_PAIR,
1788 target->rela_dyn_section(layout),
1789 (size == 64
1790 ? elfcpp::R_SPARC_TLS_DTPMOD64
1791 : elfcpp::R_SPARC_TLS_DTPMOD32),
1792 0);
1793 if (r_type == elfcpp::R_SPARC_TLS_GD_CALL)
1794 generate_tls_call(symtab, layout, target);
1795 }
1796 else if (optimized_type != tls::TLSOPT_TO_LE)
1797 unsupported_reloc_local(object, r_type);
1798 break;
1799
1800 case elfcpp::R_SPARC_TLS_LDM_HI22 : // Local-dynamic
1801 case elfcpp::R_SPARC_TLS_LDM_LO10:
1802 case elfcpp::R_SPARC_TLS_LDM_ADD:
1803 case elfcpp::R_SPARC_TLS_LDM_CALL:
1804 if (optimized_type == tls::TLSOPT_NONE)
1805 {
1806 // Create a GOT entry for the module index.
1807 target->got_mod_index_entry(symtab, layout, object);
1808
1809 if (r_type == elfcpp::R_SPARC_TLS_LDM_CALL)
1810 generate_tls_call(symtab, layout, target);
1811 }
1812 else if (optimized_type != tls::TLSOPT_TO_LE)
1813 unsupported_reloc_local(object, r_type);
1814 break;
1815
1816 case elfcpp::R_SPARC_TLS_LDO_HIX22: // Alternate local-dynamic
1817 case elfcpp::R_SPARC_TLS_LDO_LOX10:
1818 case elfcpp::R_SPARC_TLS_LDO_ADD:
1819 break;
1820
1821 case elfcpp::R_SPARC_TLS_IE_HI22: // Initial-exec
1822 case elfcpp::R_SPARC_TLS_IE_LO10:
1823 case elfcpp::R_SPARC_TLS_IE_LD:
1824 case elfcpp::R_SPARC_TLS_IE_LDX:
1825 case elfcpp::R_SPARC_TLS_IE_ADD:
1826 layout->set_has_static_tls();
1827 if (optimized_type == tls::TLSOPT_NONE)
1828 {
1829 // Create a GOT entry for the tp-relative offset.
1830 Output_data_got<size, big_endian>* got
1831 = target->got_section(symtab, layout);
1832 unsigned int r_sym = elfcpp::elf_r_sym<size>(reloc.get_r_info());
1833
1834 if (!object->local_has_got_offset(r_sym, GOT_TYPE_TLS_OFFSET))
1835 {
1836 Reloc_section* rela_dyn = target->rela_dyn_section(layout);
1837 unsigned int off = got->add_constant(0);
1838
1839 object->set_local_got_offset(r_sym, GOT_TYPE_TLS_OFFSET,
1840 off);
1841 rela_dyn->add_local_relative(object, r_sym,
1842 (size == 64 ?
1843 elfcpp::R_SPARC_TLS_TPOFF64 :
1844 elfcpp::R_SPARC_TLS_TPOFF32),
1845 got, off, 0);
1846 }
1847 }
1848 else if (optimized_type != tls::TLSOPT_TO_LE)
1849 unsupported_reloc_local(object, r_type);
1850 break;
1851
1852 case elfcpp::R_SPARC_TLS_LE_HIX22: // Local-exec
1853 case elfcpp::R_SPARC_TLS_LE_LOX10:
1854 layout->set_has_static_tls();
1855 if (output_is_shared)
1856 {
1857 // We need to create a dynamic relocation.
1858 gold_assert(lsym.get_st_type() != elfcpp::STT_SECTION);
1859 unsigned int r_sym = elfcpp::elf_r_sym<size>(reloc.get_r_info());
1860 Reloc_section* rela_dyn = target->rela_dyn_section(layout);
1861 rela_dyn->add_local_relative(object, r_sym, r_type,
1862 output_section, data_shndx,
1863 reloc.get_r_offset(), 0);
1864 }
1865 break;
1866 }
1867 }
1868 break;
1869
1870 // These are relocations which should only be seen by the
1871 // dynamic linker, and should never be seen here.
1872 case elfcpp::R_SPARC_COPY:
1873 case elfcpp::R_SPARC_GLOB_DAT:
1874 case elfcpp::R_SPARC_JMP_SLOT:
1875 case elfcpp::R_SPARC_RELATIVE:
1876 case elfcpp::R_SPARC_TLS_DTPMOD64:
1877 case elfcpp::R_SPARC_TLS_DTPMOD32:
1878 case elfcpp::R_SPARC_TLS_DTPOFF64:
1879 case elfcpp::R_SPARC_TLS_DTPOFF32:
1880 case elfcpp::R_SPARC_TLS_TPOFF64:
1881 case elfcpp::R_SPARC_TLS_TPOFF32:
1882 gold_error(_("%s: unexpected reloc %u in object file"),
1883 object->name().c_str(), r_type);
1884 break;
1885
1886 default:
1887 unsupported_reloc_local(object, r_type);
1888 break;
1889 }
1890 }
1891
1892 // Report an unsupported relocation against a global symbol.
1893
1894 template<int size, bool big_endian>
1895 void
1896 Target_sparc<size, big_endian>::Scan::unsupported_reloc_global(
1897 Sized_relobj<size, big_endian>* object,
1898 unsigned int r_type,
1899 Symbol* gsym)
1900 {
1901 gold_error(_("%s: unsupported reloc %u against global symbol %s"),
1902 object->name().c_str(), r_type, gsym->demangled_name().c_str());
1903 }
1904
1905 // Scan a relocation for a global symbol.
1906
1907 template<int size, bool big_endian>
1908 inline void
1909 Target_sparc<size, big_endian>::Scan::global(
1910 Symbol_table* symtab,
1911 Layout* layout,
1912 Target_sparc<size, big_endian>* target,
1913 Sized_relobj<size, big_endian>* object,
1914 unsigned int data_shndx,
1915 Output_section* output_section,
1916 const elfcpp::Rela<size, big_endian>& reloc,
1917 unsigned int r_type,
1918 Symbol* gsym)
1919 {
1920 unsigned int orig_r_type = r_type;
1921
1922 // A reference to _GLOBAL_OFFSET_TABLE_ implies that we need a got
1923 // section. We check here to avoid creating a dynamic reloc against
1924 // _GLOBAL_OFFSET_TABLE_.
1925 if (!target->has_got_section()
1926 && strcmp(gsym->name(), "_GLOBAL_OFFSET_TABLE_") == 0)
1927 target->got_section(symtab, layout);
1928
1929 r_type &= 0xff;
1930 switch (r_type)
1931 {
1932 case elfcpp::R_SPARC_NONE:
1933 case elfcpp::R_SPARC_REGISTER:
1934 case elfcpp::R_SPARC_GNU_VTINHERIT:
1935 case elfcpp::R_SPARC_GNU_VTENTRY:
1936 break;
1937
1938 case elfcpp::R_SPARC_PLT64:
1939 case elfcpp::R_SPARC_PLT32:
1940 case elfcpp::R_SPARC_HIPLT22:
1941 case elfcpp::R_SPARC_LOPLT10:
1942 case elfcpp::R_SPARC_PCPLT32:
1943 case elfcpp::R_SPARC_PCPLT22:
1944 case elfcpp::R_SPARC_PCPLT10:
1945 case elfcpp::R_SPARC_WPLT30:
1946 // If the symbol is fully resolved, this is just a PC32 reloc.
1947 // Otherwise we need a PLT entry.
1948 if (gsym->final_value_is_known())
1949 break;
1950 // If building a shared library, we can also skip the PLT entry
1951 // if the symbol is defined in the output file and is protected
1952 // or hidden.
1953 if (gsym->is_defined()
1954 && !gsym->is_from_dynobj()
1955 && !gsym->is_preemptible())
1956 break;
1957 target->make_plt_entry(symtab, layout, gsym);
1958 break;
1959
1960 case elfcpp::R_SPARC_DISP8:
1961 case elfcpp::R_SPARC_DISP16:
1962 case elfcpp::R_SPARC_DISP32:
1963 case elfcpp::R_SPARC_DISP64:
1964 case elfcpp::R_SPARC_PC_HH22:
1965 case elfcpp::R_SPARC_PC_HM10:
1966 case elfcpp::R_SPARC_PC_LM22:
1967 case elfcpp::R_SPARC_PC10:
1968 case elfcpp::R_SPARC_PC22:
1969 case elfcpp::R_SPARC_WDISP30:
1970 case elfcpp::R_SPARC_WDISP22:
1971 case elfcpp::R_SPARC_WDISP19:
1972 case elfcpp::R_SPARC_WDISP16:
1973 {
1974 if (gsym->needs_plt_entry())
1975 target->make_plt_entry(symtab, layout, gsym);
1976 // Make a dynamic relocation if necessary.
1977 int flags = Symbol::NON_PIC_REF;
1978 if (gsym->type() == elfcpp::STT_FUNC)
1979 flags |= Symbol::FUNCTION_CALL;
1980 if (gsym->needs_dynamic_reloc(flags))
1981 {
1982 if (gsym->may_need_copy_reloc())
1983 {
1984 target->copy_reloc(symtab, layout, object,
1985 data_shndx, output_section, gsym,
1986 reloc);
1987 }
1988 else
1989 {
1990 Reloc_section* rela_dyn = target->rela_dyn_section(layout);
1991 check_non_pic(object, r_type);
1992 rela_dyn->add_global(gsym, orig_r_type, output_section, object,
1993 data_shndx, reloc.get_r_offset(),
1994 reloc.get_r_addend());
1995 }
1996 }
1997 }
1998 break;
1999
2000 case elfcpp::R_SPARC_UA64:
2001 case elfcpp::R_SPARC_64:
2002 case elfcpp::R_SPARC_HIX22:
2003 case elfcpp::R_SPARC_LOX10:
2004 case elfcpp::R_SPARC_H44:
2005 case elfcpp::R_SPARC_M44:
2006 case elfcpp::R_SPARC_L44:
2007 case elfcpp::R_SPARC_HH22:
2008 case elfcpp::R_SPARC_HM10:
2009 case elfcpp::R_SPARC_LM22:
2010 case elfcpp::R_SPARC_HI22:
2011 case elfcpp::R_SPARC_LO10:
2012 case elfcpp::R_SPARC_OLO10:
2013 case elfcpp::R_SPARC_UA32:
2014 case elfcpp::R_SPARC_32:
2015 case elfcpp::R_SPARC_UA16:
2016 case elfcpp::R_SPARC_16:
2017 case elfcpp::R_SPARC_11:
2018 case elfcpp::R_SPARC_10:
2019 case elfcpp::R_SPARC_8:
2020 case elfcpp::R_SPARC_7:
2021 case elfcpp::R_SPARC_6:
2022 case elfcpp::R_SPARC_5:
2023 {
2024 // Make a PLT entry if necessary.
2025 if (gsym->needs_plt_entry())
2026 {
2027 target->make_plt_entry(symtab, layout, gsym);
2028 // Since this is not a PC-relative relocation, we may be
2029 // taking the address of a function. In that case we need to
2030 // set the entry in the dynamic symbol table to the address of
2031 // the PLT entry.
2032 if (gsym->is_from_dynobj() && !parameters->options().shared())
2033 gsym->set_needs_dynsym_value();
2034 }
2035 // Make a dynamic relocation if necessary.
2036 if (gsym->needs_dynamic_reloc(Symbol::ABSOLUTE_REF))
2037 {
2038 if (gsym->may_need_copy_reloc())
2039 {
2040 target->copy_reloc(symtab, layout, object,
2041 data_shndx, output_section, gsym, reloc);
2042 }
2043 else if ((r_type == elfcpp::R_SPARC_32
2044 || r_type == elfcpp::R_SPARC_64)
2045 && gsym->can_use_relative_reloc(false))
2046 {
2047 Reloc_section* rela_dyn = target->rela_dyn_section(layout);
2048 rela_dyn->add_global_relative(gsym, elfcpp::R_SPARC_RELATIVE,
2049 output_section, object,
2050 data_shndx, reloc.get_r_offset(),
2051 reloc.get_r_addend());
2052 }
2053 else
2054 {
2055 Reloc_section* rela_dyn = target->rela_dyn_section(layout);
2056
2057 check_non_pic(object, r_type);
2058 if (gsym->is_from_dynobj()
2059 || gsym->is_undefined()
2060 || gsym->is_preemptible())
2061 rela_dyn->add_global(gsym, orig_r_type, output_section,
2062 object, data_shndx,
2063 reloc.get_r_offset(),
2064 reloc.get_r_addend());
2065 else
2066 rela_dyn->add_global_relative(gsym, orig_r_type,
2067 output_section, object,
2068 data_shndx,
2069 reloc.get_r_offset(),
2070 reloc.get_r_addend());
2071 }
2072 }
2073 }
2074 break;
2075
2076 case elfcpp::R_SPARC_GOTDATA_OP:
2077 case elfcpp::R_SPARC_GOTDATA_OP_HIX22:
2078 case elfcpp::R_SPARC_GOTDATA_OP_LOX10:
2079 case elfcpp::R_SPARC_GOT10:
2080 case elfcpp::R_SPARC_GOT13:
2081 case elfcpp::R_SPARC_GOT22:
2082 {
2083 // The symbol requires a GOT entry.
2084 Output_data_got<size, big_endian>* got;
2085
2086 got = target->got_section(symtab, layout);
2087 if (gsym->final_value_is_known())
2088 got->add_global(gsym, GOT_TYPE_STANDARD);
2089 else
2090 {
2091 // If this symbol is not fully resolved, we need to add a
2092 // dynamic relocation for it.
2093 Reloc_section* rela_dyn = target->rela_dyn_section(layout);
2094 if (gsym->is_from_dynobj()
2095 || gsym->is_undefined()
2096 || gsym->is_preemptible())
2097 got->add_global_with_rela(gsym, GOT_TYPE_STANDARD, rela_dyn,
2098 elfcpp::R_SPARC_GLOB_DAT);
2099 else if (!gsym->has_got_offset(GOT_TYPE_STANDARD))
2100 {
2101 unsigned int off = got->add_constant(0);
2102
2103 gsym->set_got_offset(GOT_TYPE_STANDARD, off);
2104 rela_dyn->add_global_relative(gsym, elfcpp::R_SPARC_RELATIVE,
2105 got, off, 0);
2106 }
2107 }
2108 }
2109 break;
2110
2111 // These are initial tls relocs, which are expected when
2112 // linking.
2113 case elfcpp::R_SPARC_TLS_GD_HI22: // Global-dynamic
2114 case elfcpp::R_SPARC_TLS_GD_LO10:
2115 case elfcpp::R_SPARC_TLS_GD_ADD:
2116 case elfcpp::R_SPARC_TLS_GD_CALL:
2117 case elfcpp::R_SPARC_TLS_LDM_HI22: // Local-dynamic
2118 case elfcpp::R_SPARC_TLS_LDM_LO10:
2119 case elfcpp::R_SPARC_TLS_LDM_ADD:
2120 case elfcpp::R_SPARC_TLS_LDM_CALL:
2121 case elfcpp::R_SPARC_TLS_LDO_HIX22: // Alternate local-dynamic
2122 case elfcpp::R_SPARC_TLS_LDO_LOX10:
2123 case elfcpp::R_SPARC_TLS_LDO_ADD:
2124 case elfcpp::R_SPARC_TLS_LE_HIX22:
2125 case elfcpp::R_SPARC_TLS_LE_LOX10:
2126 case elfcpp::R_SPARC_TLS_IE_HI22: // Initial-exec
2127 case elfcpp::R_SPARC_TLS_IE_LO10:
2128 case elfcpp::R_SPARC_TLS_IE_LD:
2129 case elfcpp::R_SPARC_TLS_IE_LDX:
2130 case elfcpp::R_SPARC_TLS_IE_ADD:
2131 {
2132 const bool is_final = gsym->final_value_is_known();
2133 const tls::Tls_optimization optimized_type
2134 = optimize_tls_reloc(is_final, r_type);
2135 switch (r_type)
2136 {
2137 case elfcpp::R_SPARC_TLS_GD_HI22: // Global-dynamic
2138 case elfcpp::R_SPARC_TLS_GD_LO10:
2139 case elfcpp::R_SPARC_TLS_GD_ADD:
2140 case elfcpp::R_SPARC_TLS_GD_CALL:
2141 if (optimized_type == tls::TLSOPT_NONE)
2142 {
2143 // Create a pair of GOT entries for the module index and
2144 // dtv-relative offset.
2145 Output_data_got<size, big_endian>* got
2146 = target->got_section(symtab, layout);
2147 got->add_global_pair_with_rela(gsym, GOT_TYPE_TLS_PAIR,
2148 target->rela_dyn_section(layout),
2149 (size == 64 ?
2150 elfcpp::R_SPARC_TLS_DTPMOD64 :
2151 elfcpp::R_SPARC_TLS_DTPMOD32),
2152 (size == 64 ?
2153 elfcpp::R_SPARC_TLS_DTPOFF64 :
2154 elfcpp::R_SPARC_TLS_DTPOFF32));
2155
2156 // Emit R_SPARC_WPLT30 against "__tls_get_addr"
2157 if (r_type == elfcpp::R_SPARC_TLS_GD_CALL)
2158 generate_tls_call(symtab, layout, target);
2159 }
2160 else if (optimized_type == tls::TLSOPT_TO_IE)
2161 {
2162 // Create a GOT entry for the tp-relative offset.
2163 Output_data_got<size, big_endian>* got
2164 = target->got_section(symtab, layout);
2165 got->add_global_with_rela(gsym, GOT_TYPE_TLS_OFFSET,
2166 target->rela_dyn_section(layout),
2167 (size == 64 ?
2168 elfcpp::R_SPARC_TLS_TPOFF64 :
2169 elfcpp::R_SPARC_TLS_TPOFF32));
2170 }
2171 else if (optimized_type != tls::TLSOPT_TO_LE)
2172 unsupported_reloc_global(object, r_type, gsym);
2173 break;
2174
2175 case elfcpp::R_SPARC_TLS_LDM_HI22: // Local-dynamic
2176 case elfcpp::R_SPARC_TLS_LDM_LO10:
2177 case elfcpp::R_SPARC_TLS_LDM_ADD:
2178 case elfcpp::R_SPARC_TLS_LDM_CALL:
2179 if (optimized_type == tls::TLSOPT_NONE)
2180 {
2181 // Create a GOT entry for the module index.
2182 target->got_mod_index_entry(symtab, layout, object);
2183
2184 if (r_type == elfcpp::R_SPARC_TLS_LDM_CALL)
2185 generate_tls_call(symtab, layout, target);
2186 }
2187 else if (optimized_type != tls::TLSOPT_TO_LE)
2188 unsupported_reloc_global(object, r_type, gsym);
2189 break;
2190
2191 case elfcpp::R_SPARC_TLS_LDO_HIX22: // Alternate local-dynamic
2192 case elfcpp::R_SPARC_TLS_LDO_LOX10:
2193 case elfcpp::R_SPARC_TLS_LDO_ADD:
2194 break;
2195
2196 case elfcpp::R_SPARC_TLS_LE_HIX22:
2197 case elfcpp::R_SPARC_TLS_LE_LOX10:
2198 layout->set_has_static_tls();
2199 if (parameters->options().shared())
2200 {
2201 Reloc_section* rela_dyn = target->rela_dyn_section(layout);
2202 rela_dyn->add_global_relative(gsym, orig_r_type,
2203 output_section, object,
2204 data_shndx, reloc.get_r_offset(),
2205 0);
2206 }
2207 break;
2208
2209 case elfcpp::R_SPARC_TLS_IE_HI22: // Initial-exec
2210 case elfcpp::R_SPARC_TLS_IE_LO10:
2211 case elfcpp::R_SPARC_TLS_IE_LD:
2212 case elfcpp::R_SPARC_TLS_IE_LDX:
2213 case elfcpp::R_SPARC_TLS_IE_ADD:
2214 layout->set_has_static_tls();
2215 if (optimized_type == tls::TLSOPT_NONE)
2216 {
2217 // Create a GOT entry for the tp-relative offset.
2218 Output_data_got<size, big_endian>* got
2219 = target->got_section(symtab, layout);
2220 got->add_global_with_rela(gsym, GOT_TYPE_TLS_OFFSET,
2221 target->rela_dyn_section(layout),
2222 (size == 64 ?
2223 elfcpp::R_SPARC_TLS_TPOFF64 :
2224 elfcpp::R_SPARC_TLS_TPOFF32));
2225 }
2226 else if (optimized_type != tls::TLSOPT_TO_LE)
2227 unsupported_reloc_global(object, r_type, gsym);
2228 break;
2229 }
2230 }
2231 break;
2232
2233 // These are relocations which should only be seen by the
2234 // dynamic linker, and should never be seen here.
2235 case elfcpp::R_SPARC_COPY:
2236 case elfcpp::R_SPARC_GLOB_DAT:
2237 case elfcpp::R_SPARC_JMP_SLOT:
2238 case elfcpp::R_SPARC_RELATIVE:
2239 case elfcpp::R_SPARC_TLS_DTPMOD64:
2240 case elfcpp::R_SPARC_TLS_DTPMOD32:
2241 case elfcpp::R_SPARC_TLS_DTPOFF64:
2242 case elfcpp::R_SPARC_TLS_DTPOFF32:
2243 case elfcpp::R_SPARC_TLS_TPOFF64:
2244 case elfcpp::R_SPARC_TLS_TPOFF32:
2245 gold_error(_("%s: unexpected reloc %u in object file"),
2246 object->name().c_str(), r_type);
2247 break;
2248
2249 default:
2250 unsupported_reloc_global(object, r_type, gsym);
2251 break;
2252 }
2253 }
2254
2255 // Process relocations for gc.
2256
2257 template<int size, bool big_endian>
2258 void
2259 Target_sparc<size, big_endian>::gc_process_relocs(
2260 Symbol_table* symtab,
2261 Layout* layout,
2262 Sized_relobj<size, big_endian>* object,
2263 unsigned int data_shndx,
2264 unsigned int,
2265 const unsigned char* prelocs,
2266 size_t reloc_count,
2267 Output_section* output_section,
2268 bool needs_special_offset_handling,
2269 size_t local_symbol_count,
2270 const unsigned char* plocal_symbols)
2271 {
2272 typedef Target_sparc<size, big_endian> Sparc;
2273 typedef typename Target_sparc<size, big_endian>::Scan Scan;
2274
2275 gold::gc_process_relocs<size, big_endian, Sparc, elfcpp::SHT_RELA, Scan>(
2276 symtab,
2277 layout,
2278 this,
2279 object,
2280 data_shndx,
2281 prelocs,
2282 reloc_count,
2283 output_section,
2284 needs_special_offset_handling,
2285 local_symbol_count,
2286 plocal_symbols);
2287 }
2288
2289 // Scan relocations for a section.
2290
2291 template<int size, bool big_endian>
2292 void
2293 Target_sparc<size, big_endian>::scan_relocs(
2294 Symbol_table* symtab,
2295 Layout* layout,
2296 Sized_relobj<size, big_endian>* object,
2297 unsigned int data_shndx,
2298 unsigned int sh_type,
2299 const unsigned char* prelocs,
2300 size_t reloc_count,
2301 Output_section* output_section,
2302 bool needs_special_offset_handling,
2303 size_t local_symbol_count,
2304 const unsigned char* plocal_symbols)
2305 {
2306 typedef Target_sparc<size, big_endian> Sparc;
2307 typedef typename Target_sparc<size, big_endian>::Scan Scan;
2308
2309 if (sh_type == elfcpp::SHT_REL)
2310 {
2311 gold_error(_("%s: unsupported REL reloc section"),
2312 object->name().c_str());
2313 return;
2314 }
2315
2316 gold::scan_relocs<size, big_endian, Sparc, elfcpp::SHT_RELA, Scan>(
2317 symtab,
2318 layout,
2319 this,
2320 object,
2321 data_shndx,
2322 prelocs,
2323 reloc_count,
2324 output_section,
2325 needs_special_offset_handling,
2326 local_symbol_count,
2327 plocal_symbols);
2328 }
2329
2330 // Finalize the sections.
2331
2332 template<int size, bool big_endian>
2333 void
2334 Target_sparc<size, big_endian>::do_finalize_sections(
2335 Layout* layout,
2336 const Input_objects*,
2337 Symbol_table*)
2338 {
2339 // Fill in some more dynamic tags.
2340 const Reloc_section* rel_plt = (this->plt_ == NULL
2341 ? NULL
2342 : this->plt_->rel_plt());
2343 layout->add_target_dynamic_tags(false, this->plt_, rel_plt,
2344 this->rela_dyn_, true);
2345
2346 // Emit any relocs we saved in an attempt to avoid generating COPY
2347 // relocs.
2348 if (this->copy_relocs_.any_saved_relocs())
2349 this->copy_relocs_.emit(this->rela_dyn_section(layout));
2350 }
2351
2352 // Perform a relocation.
2353
2354 template<int size, bool big_endian>
2355 inline bool
2356 Target_sparc<size, big_endian>::Relocate::relocate(
2357 const Relocate_info<size, big_endian>* relinfo,
2358 Target_sparc* target,
2359 Output_section*,
2360 size_t relnum,
2361 const elfcpp::Rela<size, big_endian>& rela,
2362 unsigned int r_type,
2363 const Sized_symbol<size>* gsym,
2364 const Symbol_value<size>* psymval,
2365 unsigned char* view,
2366 typename elfcpp::Elf_types<size>::Elf_Addr address,
2367 section_size_type view_size)
2368 {
2369 r_type &= 0xff;
2370
2371 if (this->ignore_gd_add_)
2372 {
2373 if (r_type != elfcpp::R_SPARC_TLS_GD_ADD)
2374 gold_error_at_location(relinfo, relnum, rela.get_r_offset(),
2375 _("missing expected TLS relocation"));
2376 else
2377 {
2378 this->ignore_gd_add_ = false;
2379 return false;
2380 }
2381 }
2382
2383 typedef Sparc_relocate_functions<size, big_endian> Reloc;
2384
2385 // Pick the value to use for symbols defined in shared objects.
2386 Symbol_value<size> symval;
2387 if (gsym != NULL
2388 && gsym->use_plt_offset(r_type == elfcpp::R_SPARC_DISP8
2389 || r_type == elfcpp::R_SPARC_DISP16
2390 || r_type == elfcpp::R_SPARC_DISP32
2391 || r_type == elfcpp::R_SPARC_DISP64
2392 || r_type == elfcpp::R_SPARC_PC_HH22
2393 || r_type == elfcpp::R_SPARC_PC_HM10
2394 || r_type == elfcpp::R_SPARC_PC_LM22
2395 || r_type == elfcpp::R_SPARC_PC10
2396 || r_type == elfcpp::R_SPARC_PC22
2397 || r_type == elfcpp::R_SPARC_WDISP30
2398 || r_type == elfcpp::R_SPARC_WDISP22
2399 || r_type == elfcpp::R_SPARC_WDISP19
2400 || r_type == elfcpp::R_SPARC_WDISP16))
2401 {
2402 elfcpp::Elf_Xword value;
2403
2404 value = target->plt_section()->address() + gsym->plt_offset();
2405
2406 symval.set_output_value(value);
2407
2408 psymval = &symval;
2409 }
2410
2411 const Sized_relobj<size, big_endian>* object = relinfo->object;
2412 const elfcpp::Elf_Xword addend = rela.get_r_addend();
2413
2414 // Get the GOT offset if needed. Unlike i386 and x86_64, our GOT
2415 // pointer points to the beginning, not the end, of the table.
2416 // So we just use the plain offset.
2417 bool have_got_offset = false;
2418 unsigned int got_offset = 0;
2419 switch (r_type)
2420 {
2421 case elfcpp::R_SPARC_GOTDATA_OP:
2422 case elfcpp::R_SPARC_GOTDATA_OP_HIX22:
2423 case elfcpp::R_SPARC_GOTDATA_OP_LOX10:
2424 case elfcpp::R_SPARC_GOT10:
2425 case elfcpp::R_SPARC_GOT13:
2426 case elfcpp::R_SPARC_GOT22:
2427 if (gsym != NULL)
2428 {
2429 gold_assert(gsym->has_got_offset(GOT_TYPE_STANDARD));
2430 got_offset = gsym->got_offset(GOT_TYPE_STANDARD);
2431 }
2432 else
2433 {
2434 unsigned int r_sym = elfcpp::elf_r_sym<size>(rela.get_r_info());
2435 gold_assert(object->local_has_got_offset(r_sym, GOT_TYPE_STANDARD));
2436 got_offset = object->local_got_offset(r_sym, GOT_TYPE_STANDARD);
2437 }
2438 have_got_offset = true;
2439 break;
2440
2441 default:
2442 break;
2443 }
2444
2445 switch (r_type)
2446 {
2447 case elfcpp::R_SPARC_NONE:
2448 case elfcpp::R_SPARC_REGISTER:
2449 case elfcpp::R_SPARC_GNU_VTINHERIT:
2450 case elfcpp::R_SPARC_GNU_VTENTRY:
2451 break;
2452
2453 case elfcpp::R_SPARC_8:
2454 Relocate_functions<size, big_endian>::rela8(view, object,
2455 psymval, addend);
2456 break;
2457
2458 case elfcpp::R_SPARC_16:
2459 if (rela.get_r_offset() & 0x1)
2460 {
2461 // The assembler can sometimes emit unaligned relocations
2462 // for dwarf2 cfi directives.
2463 Reloc::ua16(view, object, psymval, addend);
2464 }
2465 else
2466 Relocate_functions<size, big_endian>::rela16(view, object,
2467 psymval, addend);
2468 break;
2469
2470 case elfcpp::R_SPARC_32:
2471 if (!parameters->options().output_is_position_independent())
2472 {
2473 if (rela.get_r_offset() & 0x3)
2474 {
2475 // The assembler can sometimes emit unaligned relocations
2476 // for dwarf2 cfi directives.
2477 Reloc::ua32(view, object, psymval, addend);
2478 }
2479 else
2480 Relocate_functions<size, big_endian>::rela32(view, object,
2481 psymval, addend);
2482 }
2483 break;
2484
2485 case elfcpp::R_SPARC_DISP8:
2486 Reloc::disp8(view, object, psymval, addend, address);
2487 break;
2488
2489 case elfcpp::R_SPARC_DISP16:
2490 Reloc::disp16(view, object, psymval, addend, address);
2491 break;
2492
2493 case elfcpp::R_SPARC_DISP32:
2494 Reloc::disp32(view, object, psymval, addend, address);
2495 break;
2496
2497 case elfcpp::R_SPARC_DISP64:
2498 Reloc::disp64(view, object, psymval, addend, address);
2499 break;
2500
2501 case elfcpp::R_SPARC_WDISP30:
2502 case elfcpp::R_SPARC_WPLT30:
2503 Reloc::wdisp30(view, object, psymval, addend, address);
2504 break;
2505
2506 case elfcpp::R_SPARC_WDISP22:
2507 Reloc::wdisp22(view, object, psymval, addend, address);
2508 break;
2509
2510 case elfcpp::R_SPARC_WDISP19:
2511 Reloc::wdisp19(view, object, psymval, addend, address);
2512 break;
2513
2514 case elfcpp::R_SPARC_WDISP16:
2515 Reloc::wdisp16(view, object, psymval, addend, address);
2516 break;
2517
2518 case elfcpp::R_SPARC_HI22:
2519 Reloc::hi22(view, object, psymval, addend);
2520 break;
2521
2522 case elfcpp::R_SPARC_22:
2523 Reloc::rela32_22(view, object, psymval, addend);
2524 break;
2525
2526 case elfcpp::R_SPARC_13:
2527 Reloc::rela32_13(view, object, psymval, addend);
2528 break;
2529
2530 case elfcpp::R_SPARC_LO10:
2531 Reloc::lo10(view, object, psymval, addend);
2532 break;
2533
2534 case elfcpp::R_SPARC_GOT10:
2535 Reloc::lo10(view, got_offset, addend);
2536 break;
2537
2538 case elfcpp::R_SPARC_GOTDATA_OP:
2539 break;
2540
2541 case elfcpp::R_SPARC_GOTDATA_OP_LOX10:
2542 case elfcpp::R_SPARC_GOT13:
2543 Reloc::rela32_13(view, got_offset, addend);
2544 break;
2545
2546 case elfcpp::R_SPARC_GOTDATA_OP_HIX22:
2547 case elfcpp::R_SPARC_GOT22:
2548 Reloc::hi22(view, got_offset, addend);
2549 break;
2550
2551 case elfcpp::R_SPARC_PC10:
2552 Reloc::pc10(view, object, psymval, addend, address);
2553 break;
2554
2555 case elfcpp::R_SPARC_PC22:
2556 Reloc::pc22(view, object, psymval, addend, address);
2557 break;
2558
2559 case elfcpp::R_SPARC_TLS_DTPOFF32:
2560 case elfcpp::R_SPARC_UA32:
2561 Reloc::ua32(view, object, psymval, addend);
2562 break;
2563
2564 case elfcpp::R_SPARC_PLT64:
2565 Relocate_functions<size, big_endian>::rela64(view, object,
2566 psymval, addend);
2567 break;
2568
2569 case elfcpp::R_SPARC_PLT32:
2570 Relocate_functions<size, big_endian>::rela32(view, object,
2571 psymval, addend);
2572 break;
2573
2574 case elfcpp::R_SPARC_HIPLT22:
2575 Reloc::hi22(view, object, psymval, addend);
2576 break;
2577
2578 case elfcpp::R_SPARC_LOPLT10:
2579 Reloc::lo10(view, object, psymval, addend);
2580 break;
2581
2582 case elfcpp::R_SPARC_PCPLT32:
2583 Reloc::disp32(view, object, psymval, addend, address);
2584 break;
2585
2586 case elfcpp::R_SPARC_PCPLT22:
2587 Reloc::pcplt22(view, object, psymval, addend, address);
2588 break;
2589
2590 case elfcpp::R_SPARC_PCPLT10:
2591 Reloc::lo10(view, object, psymval, addend, address);
2592 break;
2593
2594 case elfcpp::R_SPARC_64:
2595 if (!parameters->options().output_is_position_independent())
2596 {
2597 if (rela.get_r_offset() & 0x7)
2598 {
2599 // The assembler can sometimes emit unaligned relocations
2600 // for dwarf2 cfi directives.
2601 Reloc::ua64(view, object, psymval, addend);
2602 }
2603 else
2604 Relocate_functions<size, big_endian>::rela64(view, object,
2605 psymval, addend);
2606 }
2607 break;
2608
2609 case elfcpp::R_SPARC_OLO10:
2610 {
2611 unsigned int addend2 = rela.get_r_info() & 0xffffffff;
2612 addend2 = ((addend2 >> 8) ^ 0x800000) - 0x800000;
2613 Reloc::olo10(view, object, psymval, addend, addend2);
2614 }
2615 break;
2616
2617 case elfcpp::R_SPARC_HH22:
2618 Reloc::hh22(view, object, psymval, addend);
2619 break;
2620
2621 case elfcpp::R_SPARC_PC_HH22:
2622 Reloc::pc_hh22(view, object, psymval, addend, address);
2623 break;
2624
2625 case elfcpp::R_SPARC_HM10:
2626 Reloc::hm10(view, object, psymval, addend);
2627 break;
2628
2629 case elfcpp::R_SPARC_PC_HM10:
2630 Reloc::pc_hm10(view, object, psymval, addend, address);
2631 break;
2632
2633 case elfcpp::R_SPARC_LM22:
2634 Reloc::hi22(view, object, psymval, addend);
2635 break;
2636
2637 case elfcpp::R_SPARC_PC_LM22:
2638 Reloc::pcplt22(view, object, psymval, addend, address);
2639 break;
2640
2641 case elfcpp::R_SPARC_11:
2642 Reloc::rela32_11(view, object, psymval, addend);
2643 break;
2644
2645 case elfcpp::R_SPARC_10:
2646 Reloc::rela32_10(view, object, psymval, addend);
2647 break;
2648
2649 case elfcpp::R_SPARC_7:
2650 Reloc::rela32_7(view, object, psymval, addend);
2651 break;
2652
2653 case elfcpp::R_SPARC_6:
2654 Reloc::rela32_6(view, object, psymval, addend);
2655 break;
2656
2657 case elfcpp::R_SPARC_5:
2658 Reloc::rela32_5(view, object, psymval, addend);
2659 break;
2660
2661 case elfcpp::R_SPARC_HIX22:
2662 Reloc::hix22(view, object, psymval, addend);
2663 break;
2664
2665 case elfcpp::R_SPARC_LOX10:
2666 Reloc::lox10(view, object, psymval, addend);
2667 break;
2668
2669 case elfcpp::R_SPARC_H44:
2670 Reloc::h44(view, object, psymval, addend);
2671 break;
2672
2673 case elfcpp::R_SPARC_M44:
2674 Reloc::m44(view, object, psymval, addend);
2675 break;
2676
2677 case elfcpp::R_SPARC_L44:
2678 Reloc::l44(view, object, psymval, addend);
2679 break;
2680
2681 case elfcpp::R_SPARC_TLS_DTPOFF64:
2682 case elfcpp::R_SPARC_UA64:
2683 Reloc::ua64(view, object, psymval, addend);
2684 break;
2685
2686 case elfcpp::R_SPARC_UA16:
2687 Reloc::ua16(view, object, psymval, addend);
2688 break;
2689
2690 case elfcpp::R_SPARC_TLS_GD_HI22:
2691 case elfcpp::R_SPARC_TLS_GD_LO10:
2692 case elfcpp::R_SPARC_TLS_GD_ADD:
2693 case elfcpp::R_SPARC_TLS_GD_CALL:
2694 case elfcpp::R_SPARC_TLS_LDM_HI22:
2695 case elfcpp::R_SPARC_TLS_LDM_LO10:
2696 case elfcpp::R_SPARC_TLS_LDM_ADD:
2697 case elfcpp::R_SPARC_TLS_LDM_CALL:
2698 case elfcpp::R_SPARC_TLS_LDO_HIX22:
2699 case elfcpp::R_SPARC_TLS_LDO_LOX10:
2700 case elfcpp::R_SPARC_TLS_LDO_ADD:
2701 case elfcpp::R_SPARC_TLS_IE_HI22:
2702 case elfcpp::R_SPARC_TLS_IE_LO10:
2703 case elfcpp::R_SPARC_TLS_IE_LD:
2704 case elfcpp::R_SPARC_TLS_IE_LDX:
2705 case elfcpp::R_SPARC_TLS_IE_ADD:
2706 case elfcpp::R_SPARC_TLS_LE_HIX22:
2707 case elfcpp::R_SPARC_TLS_LE_LOX10:
2708 this->relocate_tls(relinfo, target, relnum, rela,
2709 r_type, gsym, psymval, view,
2710 address, view_size);
2711 break;
2712
2713 case elfcpp::R_SPARC_COPY:
2714 case elfcpp::R_SPARC_GLOB_DAT:
2715 case elfcpp::R_SPARC_JMP_SLOT:
2716 case elfcpp::R_SPARC_RELATIVE:
2717 // These are outstanding tls relocs, which are unexpected when
2718 // linking.
2719 case elfcpp::R_SPARC_TLS_DTPMOD64:
2720 case elfcpp::R_SPARC_TLS_DTPMOD32:
2721 case elfcpp::R_SPARC_TLS_TPOFF64:
2722 case elfcpp::R_SPARC_TLS_TPOFF32:
2723 gold_error_at_location(relinfo, relnum, rela.get_r_offset(),
2724 _("unexpected reloc %u in object file"),
2725 r_type);
2726 break;
2727
2728 default:
2729 gold_error_at_location(relinfo, relnum, rela.get_r_offset(),
2730 _("unsupported reloc %u"),
2731 r_type);
2732 break;
2733 }
2734
2735 return true;
2736 }
2737
2738 // Perform a TLS relocation.
2739
2740 template<int size, bool big_endian>
2741 inline void
2742 Target_sparc<size, big_endian>::Relocate::relocate_tls(
2743 const Relocate_info<size, big_endian>* relinfo,
2744 Target_sparc<size, big_endian>* target,
2745 size_t relnum,
2746 const elfcpp::Rela<size, big_endian>& rela,
2747 unsigned int r_type,
2748 const Sized_symbol<size>* gsym,
2749 const Symbol_value<size>* psymval,
2750 unsigned char* view,
2751 typename elfcpp::Elf_types<size>::Elf_Addr address,
2752 section_size_type)
2753 {
2754 Output_segment* tls_segment = relinfo->layout->tls_segment();
2755 typedef Sparc_relocate_functions<size, big_endian> Reloc;
2756 const Sized_relobj<size, big_endian>* object = relinfo->object;
2757 typedef typename elfcpp::Swap<32, true>::Valtype Insntype;
2758
2759 const elfcpp::Elf_Xword addend = rela.get_r_addend();
2760 typename elfcpp::Elf_types<size>::Elf_Addr value = psymval->value(object, 0);
2761
2762 const bool is_final =
2763 (gsym == NULL
2764 ? !parameters->options().output_is_position_independent()
2765 : gsym->final_value_is_known());
2766 const tls::Tls_optimization optimized_type
2767 = optimize_tls_reloc(is_final, r_type);
2768
2769 switch (r_type)
2770 {
2771 case elfcpp::R_SPARC_TLS_GD_HI22:
2772 case elfcpp::R_SPARC_TLS_GD_LO10:
2773 case elfcpp::R_SPARC_TLS_GD_ADD:
2774 case elfcpp::R_SPARC_TLS_GD_CALL:
2775 if (optimized_type == tls::TLSOPT_TO_LE)
2776 {
2777 Insntype* wv = reinterpret_cast<Insntype*>(view);
2778 Insntype val;
2779
2780 value -= tls_segment->memsz();
2781
2782 switch (r_type)
2783 {
2784 case elfcpp::R_SPARC_TLS_GD_HI22:
2785 // TLS_GD_HI22 --> TLS_LE_HIX22
2786 Reloc::hix22(view, value, addend);
2787 break;
2788
2789 case elfcpp::R_SPARC_TLS_GD_LO10:
2790 // TLS_GD_LO10 --> TLS_LE_LOX10
2791 Reloc::lox10(view, value, addend);
2792 break;
2793
2794 case elfcpp::R_SPARC_TLS_GD_ADD:
2795 // add %reg1, %reg2, %reg3 --> mov %g7, %reg2, %reg3
2796 val = elfcpp::Swap<32, true>::readval(wv);
2797 val = (val & ~0x7c000) | 0x1c000;
2798 elfcpp::Swap<32, true>::writeval(wv, val);
2799 break;
2800 case elfcpp::R_SPARC_TLS_GD_CALL:
2801 // call __tls_get_addr --> nop
2802 elfcpp::Swap<32, true>::writeval(wv, sparc_nop);
2803 break;
2804 }
2805 break;
2806 }
2807 else
2808 {
2809 unsigned int got_type = (optimized_type == tls::TLSOPT_TO_IE
2810 ? GOT_TYPE_TLS_OFFSET
2811 : GOT_TYPE_TLS_PAIR);
2812 if (gsym != NULL)
2813 {
2814 gold_assert(gsym->has_got_offset(got_type));
2815 value = gsym->got_offset(got_type);
2816 }
2817 else
2818 {
2819 unsigned int r_sym = elfcpp::elf_r_sym<size>(rela.get_r_info());
2820 gold_assert(object->local_has_got_offset(r_sym, got_type));
2821 value = object->local_got_offset(r_sym, got_type);
2822 }
2823 if (optimized_type == tls::TLSOPT_TO_IE)
2824 {
2825 Insntype* wv = reinterpret_cast<Insntype*>(view);
2826 Insntype val;
2827
2828 switch (r_type)
2829 {
2830 case elfcpp::R_SPARC_TLS_GD_HI22:
2831 // TLS_GD_HI22 --> TLS_IE_HI22
2832 Reloc::hi22(view, value, addend);
2833 break;
2834
2835 case elfcpp::R_SPARC_TLS_GD_LO10:
2836 // TLS_GD_LO10 --> TLS_IE_LO10
2837 Reloc::lo10(view, value, addend);
2838 break;
2839
2840 case elfcpp::R_SPARC_TLS_GD_ADD:
2841 // add %reg1, %reg2, %reg3 --> ld [%reg1 + %reg2], %reg3
2842 val = elfcpp::Swap<32, true>::readval(wv);
2843
2844 if (size == 64)
2845 val |= 0xc0580000;
2846 else
2847 val |= 0xc0000000;
2848
2849 elfcpp::Swap<32, true>::writeval(wv, val);
2850 break;
2851
2852 case elfcpp::R_SPARC_TLS_GD_CALL:
2853 // The compiler can put the TLS_GD_ADD instruction
2854 // into the delay slot of the call. If so, we need
2855 // to transpose the two instructions so that the
2856 // the new sequence works properly.
2857 //
2858 // The test we use is if the instruction in the
2859 // delay slot is an add with destination register
2860 // equal to %o0
2861 val = elfcpp::Swap<32, true>::readval(wv + 1);
2862 if ((val & 0x81f80000) == 0x80000000
2863 && ((val >> 25) & 0x1f) == 0x8)
2864 {
2865 if (size == 64)
2866 val |= 0xc0580000;
2867 else
2868 val |= 0xc0000000;
2869
2870 elfcpp::Swap<32, true>::writeval(wv, val);
2871
2872 wv += 1;
2873 this->ignore_gd_add_ = true;
2874 }
2875
2876 // call __tls_get_addr --> add %g7, %o0, %o0
2877 elfcpp::Swap<32, true>::writeval(wv, 0x9001c008);
2878 break;
2879 }
2880 break;
2881 }
2882 else if (optimized_type == tls::TLSOPT_NONE)
2883 {
2884 switch (r_type)
2885 {
2886 case elfcpp::R_SPARC_TLS_GD_HI22:
2887 Reloc::hi22(view, value, addend);
2888 break;
2889 case elfcpp::R_SPARC_TLS_GD_LO10:
2890 Reloc::lo10(view, value, addend);
2891 break;
2892 case elfcpp::R_SPARC_TLS_GD_ADD:
2893 break;
2894 case elfcpp::R_SPARC_TLS_GD_CALL:
2895 {
2896 Symbol_value<size> symval;
2897 elfcpp::Elf_Xword value;
2898 Symbol* tsym;
2899
2900 tsym = target->tls_get_addr_sym_;
2901 gold_assert(tsym);
2902 value = (target->plt_section()->address() +
2903 tsym->plt_offset());
2904 symval.set_output_value(value);
2905 Reloc::wdisp30(view, object, &symval, addend, address);
2906 }
2907 break;
2908 }
2909 break;
2910 }
2911 }
2912 gold_error_at_location(relinfo, relnum, rela.get_r_offset(),
2913 _("unsupported reloc %u"),
2914 r_type);
2915 break;
2916
2917 case elfcpp::R_SPARC_TLS_LDM_HI22:
2918 case elfcpp::R_SPARC_TLS_LDM_LO10:
2919 case elfcpp::R_SPARC_TLS_LDM_ADD:
2920 case elfcpp::R_SPARC_TLS_LDM_CALL:
2921 if (optimized_type == tls::TLSOPT_TO_LE)
2922 {
2923 Insntype* wv = reinterpret_cast<Insntype*>(view);
2924
2925 switch (r_type)
2926 {
2927 case elfcpp::R_SPARC_TLS_LDM_HI22:
2928 case elfcpp::R_SPARC_TLS_LDM_LO10:
2929 case elfcpp::R_SPARC_TLS_LDM_ADD:
2930 elfcpp::Swap<32, true>::writeval(wv, sparc_nop);
2931 break;
2932
2933 case elfcpp::R_SPARC_TLS_LDM_CALL:
2934 elfcpp::Swap<32, true>::writeval(wv, sparc_mov_g0_o0);
2935 break;
2936 }
2937 break;
2938 }
2939 else if (optimized_type == tls::TLSOPT_NONE)
2940 {
2941 // Relocate the field with the offset of the GOT entry for
2942 // the module index.
2943 unsigned int got_offset;
2944
2945 got_offset = target->got_mod_index_entry(NULL, NULL, NULL);
2946 switch (r_type)
2947 {
2948 case elfcpp::R_SPARC_TLS_LDM_HI22:
2949 Reloc::hi22(view, got_offset, addend);
2950 break;
2951 case elfcpp::R_SPARC_TLS_LDM_LO10:
2952 Reloc::lo10(view, got_offset, addend);
2953 break;
2954 case elfcpp::R_SPARC_TLS_LDM_ADD:
2955 break;
2956 case elfcpp::R_SPARC_TLS_LDM_CALL:
2957 {
2958 Symbol_value<size> symval;
2959 elfcpp::Elf_Xword value;
2960 Symbol* tsym;
2961
2962 tsym = target->tls_get_addr_sym_;
2963 gold_assert(tsym);
2964 value = (target->plt_section()->address() +
2965 tsym->plt_offset());
2966 symval.set_output_value(value);
2967 Reloc::wdisp30(view, object, &symval, addend, address);
2968 }
2969 break;
2970 }
2971 break;
2972 }
2973 gold_error_at_location(relinfo, relnum, rela.get_r_offset(),
2974 _("unsupported reloc %u"),
2975 r_type);
2976 break;
2977
2978 // These relocs can appear in debugging sections, in which case
2979 // we won't see the TLS_LDM relocs. The local_dynamic_type
2980 // field tells us this.
2981 case elfcpp::R_SPARC_TLS_LDO_HIX22:
2982 if (optimized_type == tls::TLSOPT_TO_LE)
2983 {
2984 value -= tls_segment->memsz();
2985 Reloc::hix22(view, value, addend);
2986 }
2987 else
2988 Reloc::ldo_hix22(view, value, addend);
2989 break;
2990 case elfcpp::R_SPARC_TLS_LDO_LOX10:
2991 if (optimized_type == tls::TLSOPT_TO_LE)
2992 {
2993 value -= tls_segment->memsz();
2994 Reloc::lox10(view, value, addend);
2995 }
2996 else
2997 Reloc::ldo_lox10(view, value, addend);
2998 break;
2999 case elfcpp::R_SPARC_TLS_LDO_ADD:
3000 if (optimized_type == tls::TLSOPT_TO_LE)
3001 {
3002 Insntype* wv = reinterpret_cast<Insntype*>(view);
3003 Insntype val;
3004
3005 // add %reg1, %reg2, %reg3 --> add %g7, %reg2, %reg3
3006 val = elfcpp::Swap<32, true>::readval(wv);
3007 val = (val & ~0x7c000) | 0x1c000;
3008 elfcpp::Swap<32, true>::writeval(wv, val);
3009 }
3010 break;
3011
3012 // When optimizing IE --> LE, the only relocation that is handled
3013 // differently is R_SPARC_TLS_IE_LD, it is rewritten from
3014 // 'ld{,x} [rs1 + rs2], rd' into 'mov rs2, rd' or simply a NOP is
3015 // rs2 and rd are the same.
3016 case elfcpp::R_SPARC_TLS_IE_LD:
3017 case elfcpp::R_SPARC_TLS_IE_LDX:
3018 if (optimized_type == tls::TLSOPT_TO_LE)
3019 {
3020 Insntype* wv = reinterpret_cast<Insntype*>(view);
3021 Insntype val = elfcpp::Swap<32, true>::readval(wv);
3022 Insntype rs2 = val & 0x1f;
3023 Insntype rd = (val >> 25) & 0x1f;
3024
3025 if (rs2 == rd)
3026 val = sparc_nop;
3027 else
3028 val = sparc_mov | (val & 0x3e00001f);
3029
3030 elfcpp::Swap<32, true>::writeval(wv, val);
3031 }
3032 break;
3033
3034 case elfcpp::R_SPARC_TLS_IE_HI22:
3035 case elfcpp::R_SPARC_TLS_IE_LO10:
3036 if (optimized_type == tls::TLSOPT_TO_LE)
3037 {
3038 value -= tls_segment->memsz();
3039 switch (r_type)
3040 {
3041 case elfcpp::R_SPARC_TLS_IE_HI22:
3042 // IE_HI22 --> LE_HIX22
3043 Reloc::hix22(view, value, addend);
3044 break;
3045 case elfcpp::R_SPARC_TLS_IE_LO10:
3046 // IE_LO10 --> LE_LOX10
3047 Reloc::lox10(view, value, addend);
3048 break;
3049 }
3050 break;
3051 }
3052 else if (optimized_type == tls::TLSOPT_NONE)
3053 {
3054 // Relocate the field with the offset of the GOT entry for
3055 // the tp-relative offset of the symbol.
3056 if (gsym != NULL)
3057 {
3058 gold_assert(gsym->has_got_offset(GOT_TYPE_TLS_OFFSET));
3059 value = gsym->got_offset(GOT_TYPE_TLS_OFFSET);
3060 }
3061 else
3062 {
3063 unsigned int r_sym = elfcpp::elf_r_sym<size>(rela.get_r_info());
3064 gold_assert(object->local_has_got_offset(r_sym,
3065 GOT_TYPE_TLS_OFFSET));
3066 value = object->local_got_offset(r_sym,
3067 GOT_TYPE_TLS_OFFSET);
3068 }
3069 switch (r_type)
3070 {
3071 case elfcpp::R_SPARC_TLS_IE_HI22:
3072 Reloc::hi22(view, value, addend);
3073 break;
3074 case elfcpp::R_SPARC_TLS_IE_LO10:
3075 Reloc::lo10(view, value, addend);
3076 break;
3077 }
3078 break;
3079 }
3080 gold_error_at_location(relinfo, relnum, rela.get_r_offset(),
3081 _("unsupported reloc %u"),
3082 r_type);
3083 break;
3084
3085 case elfcpp::R_SPARC_TLS_IE_ADD:
3086 // This seems to be mainly so that we can find the addition
3087 // instruction if there is one. There doesn't seem to be any
3088 // actual relocation to apply.
3089 break;
3090
3091 case elfcpp::R_SPARC_TLS_LE_HIX22:
3092 // If we're creating a shared library, a dynamic relocation will
3093 // have been created for this location, so do not apply it now.
3094 if (!parameters->options().shared())
3095 {
3096 value -= tls_segment->memsz();
3097 Reloc::hix22(view, value, addend);
3098 }
3099 break;
3100
3101 case elfcpp::R_SPARC_TLS_LE_LOX10:
3102 // If we're creating a shared library, a dynamic relocation will
3103 // have been created for this location, so do not apply it now.
3104 if (!parameters->options().shared())
3105 {
3106 value -= tls_segment->memsz();
3107 Reloc::lox10(view, value, addend);
3108 }
3109 break;
3110 }
3111 }
3112
3113 // Relocate section data.
3114
3115 template<int size, bool big_endian>
3116 void
3117 Target_sparc<size, big_endian>::relocate_section(
3118 const Relocate_info<size, big_endian>* relinfo,
3119 unsigned int sh_type,
3120 const unsigned char* prelocs,
3121 size_t reloc_count,
3122 Output_section* output_section,
3123 bool needs_special_offset_handling,
3124 unsigned char* view,
3125 typename elfcpp::Elf_types<size>::Elf_Addr address,
3126 section_size_type view_size,
3127 const Reloc_symbol_changes* reloc_symbol_changes)
3128 {
3129 typedef Target_sparc<size, big_endian> Sparc;
3130 typedef typename Target_sparc<size, big_endian>::Relocate Sparc_relocate;
3131
3132 gold_assert(sh_type == elfcpp::SHT_RELA);
3133
3134 gold::relocate_section<size, big_endian, Sparc, elfcpp::SHT_RELA,
3135 Sparc_relocate>(
3136 relinfo,
3137 this,
3138 prelocs,
3139 reloc_count,
3140 output_section,
3141 needs_special_offset_handling,
3142 view,
3143 address,
3144 view_size,
3145 reloc_symbol_changes);
3146 }
3147
3148 // Return the size of a relocation while scanning during a relocatable
3149 // link.
3150
3151 template<int size, bool big_endian>
3152 unsigned int
3153 Target_sparc<size, big_endian>::Relocatable_size_for_reloc::get_size_for_reloc(
3154 unsigned int,
3155 Relobj*)
3156 {
3157 // We are always SHT_RELA, so we should never get here.
3158 gold_unreachable();
3159 return 0;
3160 }
3161
3162 // Scan the relocs during a relocatable link.
3163
3164 template<int size, bool big_endian>
3165 void
3166 Target_sparc<size, big_endian>::scan_relocatable_relocs(
3167 Symbol_table* symtab,
3168 Layout* layout,
3169 Sized_relobj<size, big_endian>* object,
3170 unsigned int data_shndx,
3171 unsigned int sh_type,
3172 const unsigned char* prelocs,
3173 size_t reloc_count,
3174 Output_section* output_section,
3175 bool needs_special_offset_handling,
3176 size_t local_symbol_count,
3177 const unsigned char* plocal_symbols,
3178 Relocatable_relocs* rr)
3179 {
3180 gold_assert(sh_type == elfcpp::SHT_RELA);
3181
3182 typedef gold::Default_scan_relocatable_relocs<elfcpp::SHT_RELA,
3183 Relocatable_size_for_reloc> Scan_relocatable_relocs;
3184
3185 gold::scan_relocatable_relocs<size, big_endian, elfcpp::SHT_RELA,
3186 Scan_relocatable_relocs>(
3187 symtab,
3188 layout,
3189 object,
3190 data_shndx,
3191 prelocs,
3192 reloc_count,
3193 output_section,
3194 needs_special_offset_handling,
3195 local_symbol_count,
3196 plocal_symbols,
3197 rr);
3198 }
3199
3200 // Relocate a section during a relocatable link.
3201
3202 template<int size, bool big_endian>
3203 void
3204 Target_sparc<size, big_endian>::relocate_for_relocatable(
3205 const Relocate_info<size, big_endian>* relinfo,
3206 unsigned int sh_type,
3207 const unsigned char* prelocs,
3208 size_t reloc_count,
3209 Output_section* output_section,
3210 off_t offset_in_output_section,
3211 const Relocatable_relocs* rr,
3212 unsigned char* view,
3213 typename elfcpp::Elf_types<size>::Elf_Addr view_address,
3214 section_size_type view_size,
3215 unsigned char* reloc_view,
3216 section_size_type reloc_view_size)
3217 {
3218 gold_assert(sh_type == elfcpp::SHT_RELA);
3219
3220 gold::relocate_for_relocatable<size, big_endian, elfcpp::SHT_RELA>(
3221 relinfo,
3222 prelocs,
3223 reloc_count,
3224 output_section,
3225 offset_in_output_section,
3226 rr,
3227 view,
3228 view_address,
3229 view_size,
3230 reloc_view,
3231 reloc_view_size);
3232 }
3233
3234 // Return the value to use for a dynamic which requires special
3235 // treatment. This is how we support equality comparisons of function
3236 // pointers across shared library boundaries, as described in the
3237 // processor specific ABI supplement.
3238
3239 template<int size, bool big_endian>
3240 uint64_t
3241 Target_sparc<size, big_endian>::do_dynsym_value(const Symbol* gsym) const
3242 {
3243 gold_assert(gsym->is_from_dynobj() && gsym->has_plt_offset());
3244 return this->plt_section()->address() + gsym->plt_offset();
3245 }
3246
3247 // The selector for sparc object files.
3248
3249 template<int size, bool big_endian>
3250 class Target_selector_sparc : public Target_selector
3251 {
3252 public:
3253 Target_selector_sparc()
3254 : Target_selector(elfcpp::EM_NONE, size, big_endian,
3255 (size == 64 ? "elf64-sparc" : "elf32-sparc"))
3256 { }
3257
3258 Target* do_recognize(int machine, int, int)
3259 {
3260 switch (size)
3261 {
3262 case 64:
3263 if (machine != elfcpp::EM_SPARCV9)
3264 return NULL;
3265 break;
3266
3267 case 32:
3268 if (machine != elfcpp::EM_SPARC
3269 && machine != elfcpp::EM_SPARC32PLUS)
3270 return NULL;
3271 break;
3272
3273 default:
3274 return NULL;
3275 }
3276
3277 return this->instantiate_target();
3278 }
3279
3280 Target* do_instantiate_target()
3281 { return new Target_sparc<size, big_endian>(); }
3282 };
3283
3284 Target_selector_sparc<32, true> target_selector_sparc32;
3285 Target_selector_sparc<64, true> target_selector_sparc64;
3286
3287 } // End anonymous namespace.
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