9a52a9c045746025712e9756171b48a0d73d2a6a
[binutils-gdb.git] / bfd / xcofflink.c
1 /* POWER/PowerPC XCOFF linker support.
2 Copyright 1995, 1996 Free Software Foundation, Inc.
3 Written by Ian Lance Taylor <ian@cygnus.com>, Cygnus Support.
4
5 This file is part of BFD, the Binary File Descriptor library.
6
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2 of the License, or
10 (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with this program; if not, write to the Free Software
19 Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. */
20
21 #include "bfd.h"
22 #include "sysdep.h"
23 #include "bfdlink.h"
24 #include "libbfd.h"
25 #include "coff/internal.h"
26 #include "libcoff.h"
27
28 /* This file holds the XCOFF linker code. */
29
30 #define STRING_SIZE_SIZE (4)
31
32 /* In order to support linking different object file formats into an
33 XCOFF format, we need to be able to determine whether a particular
34 bfd_target is an XCOFF vector. FIXME: We need to rethink this
35 whole approach. */
36 #define XCOFF_XVECP(xv) \
37 (strcmp ((xv)->name, "aixcoff-rs6000") == 0 \
38 || strcmp ((xv)->name, "xcoff-powermac") == 0)
39
40 /* Get the XCOFF hash table entries for a BFD. */
41 #define obj_xcoff_sym_hashes(bfd) \
42 ((struct xcoff_link_hash_entry **) obj_coff_sym_hashes (bfd))
43
44 /* XCOFF relocation types. These probably belong in a header file
45 somewhere. The relocations are described in the function
46 _bfd_ppc_xcoff_relocate_section in this file. */
47
48 #define R_POS (0x00)
49 #define R_NEG (0x01)
50 #define R_REL (0x02)
51 #define R_TOC (0x03)
52 #define R_RTB (0x04)
53 #define R_GL (0x05)
54 #define R_TCL (0x06)
55 #define R_BA (0x08)
56 #define R_BR (0x0a)
57 #define R_RL (0x0c)
58 #define R_RLA (0x0d)
59 #define R_REF (0x0f)
60 #define R_TRL (0x12)
61 #define R_TRLA (0x13)
62 #define R_RRTBI (0x14)
63 #define R_RRTBA (0x15)
64 #define R_CAI (0x16)
65 #define R_CREL (0x17)
66 #define R_RBA (0x18)
67 #define R_RBAC (0x19)
68 #define R_RBR (0x1a)
69 #define R_RBRC (0x1b)
70
71 /* The first word of global linkage code. This must be modified by
72 filling in the correct TOC offset. */
73
74 #define XCOFF_GLINK_FIRST (0x81820000) /* lwz r12,0(r2) */
75
76 /* The remaining words of global linkage code. */
77
78 static unsigned long xcoff_glink_code[] =
79 {
80 0x90410014, /* stw r2,20(r1) */
81 0x800c0000, /* lwz r0,0(r12) */
82 0x804c0004, /* lwz r2,4(r12) */
83 0x7c0903a6, /* mtctr r0 */
84 0x4e800420, /* bctr */
85 0x0, /* start of traceback table */
86 0x000c8000, /* traceback table */
87 0x0 /* traceback table */
88 };
89
90 #define XCOFF_GLINK_SIZE \
91 (((sizeof xcoff_glink_code / sizeof xcoff_glink_code[0]) * 4) + 4)
92
93 /* We reuse the SEC_ROM flag as a mark flag for garbage collection.
94 This flag will only be used on input sections. */
95
96 #define SEC_MARK (SEC_ROM)
97
98 /* The ldhdr structure. This appears at the start of the .loader
99 section. */
100
101 struct internal_ldhdr
102 {
103 /* The version number: currently always 1. */
104 unsigned long l_version;
105 /* The number of symbol table entries. */
106 bfd_size_type l_nsyms;
107 /* The number of relocation table entries. */
108 bfd_size_type l_nreloc;
109 /* The length of the import file string table. */
110 bfd_size_type l_istlen;
111 /* The number of import files. */
112 bfd_size_type l_nimpid;
113 /* The offset from the start of the .loader section to the first
114 entry in the import file table. */
115 bfd_size_type l_impoff;
116 /* The length of the string table. */
117 bfd_size_type l_stlen;
118 /* The offset from the start of the .loader section to the first
119 entry in the string table. */
120 bfd_size_type l_stoff;
121 };
122
123 struct external_ldhdr
124 {
125 bfd_byte l_version[4];
126 bfd_byte l_nsyms[4];
127 bfd_byte l_nreloc[4];
128 bfd_byte l_istlen[4];
129 bfd_byte l_nimpid[4];
130 bfd_byte l_impoff[4];
131 bfd_byte l_stlen[4];
132 bfd_byte l_stoff[4];
133 };
134
135 #define LDHDRSZ (8 * 4)
136
137 /* The ldsym structure. This is used to represent a symbol in the
138 .loader section. */
139
140 struct internal_ldsym
141 {
142 union
143 {
144 /* The symbol name if <= SYMNMLEN characters. */
145 char _l_name[SYMNMLEN];
146 struct
147 {
148 /* Zero if the symbol name is more than SYMNMLEN characters. */
149 long _l_zeroes;
150 /* The offset in the string table if the symbol name is more
151 than SYMNMLEN characters. */
152 long _l_offset;
153 } _l_l;
154 } _l;
155 /* The symbol value. */
156 bfd_vma l_value;
157 /* The symbol section number. */
158 short l_scnum;
159 /* The symbol type and flags. */
160 char l_smtype;
161 /* The symbol storage class. */
162 char l_smclas;
163 /* The import file ID. */
164 bfd_size_type l_ifile;
165 /* Offset to the parameter type check string. */
166 bfd_size_type l_parm;
167 };
168
169 struct external_ldsym
170 {
171 union
172 {
173 bfd_byte _l_name[SYMNMLEN];
174 struct
175 {
176 bfd_byte _l_zeroes[4];
177 bfd_byte _l_offset[4];
178 } _l_l;
179 } _l;
180 bfd_byte l_value[4];
181 bfd_byte l_scnum[2];
182 bfd_byte l_smtype[1];
183 bfd_byte l_smclas[1];
184 bfd_byte l_ifile[4];
185 bfd_byte l_parm[4];
186 };
187
188 #define LDSYMSZ (8 + 3 * 4 + 2 + 2)
189
190 /* These flags are for the l_smtype field (the lower three bits are an
191 XTY_* value). */
192
193 /* Imported symbol. */
194 #define L_IMPORT (0x40)
195 /* Entry point. */
196 #define L_ENTRY (0x20)
197 /* Exported symbol. */
198 #define L_EXPORT (0x10)
199
200 /* The ldrel structure. This is used to represent a reloc in the
201 .loader section. */
202
203 struct internal_ldrel
204 {
205 /* The reloc address. */
206 bfd_vma l_vaddr;
207 /* The symbol table index in the .loader section symbol table. */
208 bfd_size_type l_symndx;
209 /* The relocation type and size. */
210 short l_rtype;
211 /* The section number this relocation applies to. */
212 short l_rsecnm;
213 };
214
215 struct external_ldrel
216 {
217 bfd_byte l_vaddr[4];
218 bfd_byte l_symndx[4];
219 bfd_byte l_rtype[2];
220 bfd_byte l_rsecnm[2];
221 };
222
223 #define LDRELSZ (2 * 4 + 2 * 2)
224
225 /* The list of import files. */
226
227 struct xcoff_import_file
228 {
229 /* The next entry in the list. */
230 struct xcoff_import_file *next;
231 /* The path. */
232 const char *path;
233 /* The file name. */
234 const char *file;
235 /* The member name. */
236 const char *member;
237 };
238
239 /* An entry in the XCOFF linker hash table. */
240
241 struct xcoff_link_hash_entry
242 {
243 struct bfd_link_hash_entry root;
244
245 /* Symbol index in output file. Set to -1 initially. Set to -2 if
246 there is a reloc against this symbol. */
247 long indx;
248
249 /* If we have created a TOC entry for this symbol, this is the .tc
250 section which holds it. */
251 asection *toc_section;
252
253 union
254 {
255 /* If we have created a TOC entry (the XCOFF_SET_TOC flag is
256 set), this is the offset in toc_section. */
257 bfd_vma toc_offset;
258 /* If the TOC entry comes from an input file, this is set to the
259 symbol index of the C_HIDEXT XMC_TC or XMC_TD symbol. */
260 long toc_indx;
261 } u;
262
263 /* If this symbol is a function entry point which is called, this
264 field holds a pointer to the function descriptor. If this symbol
265 is a function descriptor, this field holds a pointer to the
266 function entry point. */
267 struct xcoff_link_hash_entry *descriptor;
268
269 /* The .loader symbol table entry, if there is one. */
270 struct internal_ldsym *ldsym;
271
272 /* The .loader symbol table index. */
273 long ldindx;
274
275 /* Some linker flags. */
276 unsigned short flags;
277 /* Symbol is referenced by a regular object. */
278 #define XCOFF_REF_REGULAR (01)
279 /* Symbol is defined by a regular object. */
280 #define XCOFF_DEF_REGULAR (02)
281 /* Symbol is defined by a dynamic object. */
282 #define XCOFF_DEF_DYNAMIC (04)
283 /* Symbol is used in a reloc being copied into the .loader section. */
284 #define XCOFF_LDREL (010)
285 /* Symbol is the entry point. */
286 #define XCOFF_ENTRY (020)
287 /* Symbol is called; this is, it appears in a R_BR reloc. */
288 #define XCOFF_CALLED (040)
289 /* Symbol needs the TOC entry filled in. */
290 #define XCOFF_SET_TOC (0100)
291 /* Symbol is explicitly imported. */
292 #define XCOFF_IMPORT (0200)
293 /* Symbol is explicitly exported. */
294 #define XCOFF_EXPORT (0400)
295 /* Symbol has been processed by xcoff_build_ldsyms. */
296 #define XCOFF_BUILT_LDSYM (01000)
297 /* Symbol is mentioned by a section which was not garbage collected. */
298 #define XCOFF_MARK (02000)
299 /* Symbol size is recorded in size_list list from hash table. */
300 #define XCOFF_HAS_SIZE (04000)
301 /* Symbol is a function descriptor. */
302 #define XCOFF_DESCRIPTOR (010000)
303
304 /* The storage mapping class. */
305 unsigned char smclas;
306 };
307
308 /* The XCOFF linker hash table. */
309
310 struct xcoff_link_hash_table
311 {
312 struct bfd_link_hash_table root;
313
314 /* The .debug string hash table. We need to compute this while
315 reading the input files, so that we know how large the .debug
316 section will be before we assign section positions. */
317 struct bfd_strtab_hash *debug_strtab;
318
319 /* The .debug section we will use for the final output. */
320 asection *debug_section;
321
322 /* The .loader section we will use for the final output. */
323 asection *loader_section;
324
325 /* A count of non TOC relative relocs which will need to be
326 allocated in the .loader section. */
327 size_t ldrel_count;
328
329 /* The .loader section header. */
330 struct internal_ldhdr ldhdr;
331
332 /* The .gl section we use to hold global linkage code. */
333 asection *linkage_section;
334
335 /* The .tc section we use to hold toc entries we build for global
336 linkage code. */
337 asection *toc_section;
338
339 /* The .ds section we use to hold function descriptors which we
340 create for exported symbols. */
341 asection *descriptor_section;
342
343 /* The list of import files. */
344 struct xcoff_import_file *imports;
345
346 /* Required alignment of sections within the output file. */
347 unsigned long file_align;
348
349 /* Whether the .text section must be read-only. */
350 boolean textro;
351
352 /* Whether garbage collection was done. */
353 boolean gc;
354
355 /* A linked list of symbols for which we have size information. */
356 struct xcoff_link_size_list
357 {
358 struct xcoff_link_size_list *next;
359 struct xcoff_link_hash_entry *h;
360 bfd_size_type size;
361 } *size_list;
362
363 /* Magic sections: _text, _etext, _data, _edata, _end, end. */
364 asection *special_sections[6];
365 };
366
367 /* Information we keep for each section in the output file during the
368 final link phase. */
369
370 struct xcoff_link_section_info
371 {
372 /* The relocs to be output. */
373 struct internal_reloc *relocs;
374 /* For each reloc against a global symbol whose index was not known
375 when the reloc was handled, the global hash table entry. */
376 struct xcoff_link_hash_entry **rel_hashes;
377 /* If there is a TOC relative reloc against a global symbol, and the
378 index of the TOC symbol is not known when the reloc was handled,
379 an entry is added to this linked list. This is not an array,
380 like rel_hashes, because this case is quite uncommon. */
381 struct xcoff_toc_rel_hash
382 {
383 struct xcoff_toc_rel_hash *next;
384 struct xcoff_link_hash_entry *h;
385 struct internal_reloc *rel;
386 } *toc_rel_hashes;
387 };
388
389 /* Information that we pass around while doing the final link step. */
390
391 struct xcoff_final_link_info
392 {
393 /* General link information. */
394 struct bfd_link_info *info;
395 /* Output BFD. */
396 bfd *output_bfd;
397 /* Hash table for long symbol names. */
398 struct bfd_strtab_hash *strtab;
399 /* Array of information kept for each output section, indexed by the
400 target_index field. */
401 struct xcoff_link_section_info *section_info;
402 /* Symbol index of last C_FILE symbol (-1 if none). */
403 long last_file_index;
404 /* Contents of last C_FILE symbol. */
405 struct internal_syment last_file;
406 /* Symbol index of TOC symbol. */
407 long toc_symindx;
408 /* Start of .loader symbols. */
409 struct external_ldsym *ldsym;
410 /* Next .loader reloc to swap out. */
411 struct external_ldrel *ldrel;
412 /* File position of start of line numbers. */
413 file_ptr line_filepos;
414 /* Buffer large enough to hold swapped symbols of any input file. */
415 struct internal_syment *internal_syms;
416 /* Buffer large enough to hold output indices of symbols of any
417 input file. */
418 long *sym_indices;
419 /* Buffer large enough to hold output symbols for any input file. */
420 bfd_byte *outsyms;
421 /* Buffer large enough to hold external line numbers for any input
422 section. */
423 bfd_byte *linenos;
424 /* Buffer large enough to hold any input section. */
425 bfd_byte *contents;
426 /* Buffer large enough to hold external relocs of any input section. */
427 bfd_byte *external_relocs;
428 };
429
430 static void xcoff_swap_ldhdr_in
431 PARAMS ((bfd *, const struct external_ldhdr *, struct internal_ldhdr *));
432 static void xcoff_swap_ldhdr_out
433 PARAMS ((bfd *, const struct internal_ldhdr *, struct external_ldhdr *));
434 static void xcoff_swap_ldsym_in
435 PARAMS ((bfd *, const struct external_ldsym *, struct internal_ldsym *));
436 static void xcoff_swap_ldsym_out
437 PARAMS ((bfd *, const struct internal_ldsym *, struct external_ldsym *));
438 static void xcoff_swap_ldrel_in
439 PARAMS ((bfd *, const struct external_ldrel *, struct internal_ldrel *));
440 static void xcoff_swap_ldrel_out
441 PARAMS ((bfd *, const struct internal_ldrel *, struct external_ldrel *));
442 static struct bfd_hash_entry *xcoff_link_hash_newfunc
443 PARAMS ((struct bfd_hash_entry *, struct bfd_hash_table *, const char *));
444 static struct internal_reloc *xcoff_read_internal_relocs
445 PARAMS ((bfd *, asection *, boolean, bfd_byte *, boolean,
446 struct internal_reloc *));
447 static boolean xcoff_link_add_object_symbols
448 PARAMS ((bfd *, struct bfd_link_info *));
449 static boolean xcoff_link_check_archive_element
450 PARAMS ((bfd *, struct bfd_link_info *, boolean *));
451 static boolean xcoff_link_check_ar_symbols
452 PARAMS ((bfd *, struct bfd_link_info *, boolean *));
453 static boolean xcoff_link_check_dynamic_ar_symbols
454 PARAMS ((bfd *, struct bfd_link_info *, boolean *));
455 static bfd_size_type xcoff_find_reloc
456 PARAMS ((struct internal_reloc *, bfd_size_type, bfd_vma));
457 static boolean xcoff_link_add_symbols PARAMS ((bfd *, struct bfd_link_info *));
458 static boolean xcoff_link_add_dynamic_symbols
459 PARAMS ((bfd *, struct bfd_link_info *));
460 static boolean xcoff_mark PARAMS ((struct bfd_link_info *, asection *));
461 static void xcoff_sweep PARAMS ((struct bfd_link_info *));
462 static boolean xcoff_build_ldsyms
463 PARAMS ((struct xcoff_link_hash_entry *, PTR));
464 static boolean xcoff_link_input_bfd
465 PARAMS ((struct xcoff_final_link_info *, bfd *));
466 static boolean xcoff_write_global_symbol
467 PARAMS ((struct xcoff_link_hash_entry *, PTR));
468 static boolean xcoff_reloc_link_order
469 PARAMS ((bfd *, struct xcoff_final_link_info *, asection *,
470 struct bfd_link_order *));
471 static int xcoff_sort_relocs PARAMS ((const PTR, const PTR));
472 \f
473 /* Routines to swap information in the XCOFF .loader section. If we
474 ever need to write an XCOFF loader, this stuff will need to be
475 moved to another file shared by the linker (which XCOFF calls the
476 ``binder'') and the loader. */
477
478 /* Swap in the ldhdr structure. */
479
480 static void
481 xcoff_swap_ldhdr_in (abfd, src, dst)
482 bfd *abfd;
483 const struct external_ldhdr *src;
484 struct internal_ldhdr *dst;
485 {
486 dst->l_version = bfd_get_32 (abfd, src->l_version);
487 dst->l_nsyms = bfd_get_32 (abfd, src->l_nsyms);
488 dst->l_nreloc = bfd_get_32 (abfd, src->l_nreloc);
489 dst->l_istlen = bfd_get_32 (abfd, src->l_istlen);
490 dst->l_nimpid = bfd_get_32 (abfd, src->l_nimpid);
491 dst->l_impoff = bfd_get_32 (abfd, src->l_impoff);
492 dst->l_stlen = bfd_get_32 (abfd, src->l_stlen);
493 dst->l_stoff = bfd_get_32 (abfd, src->l_stoff);
494 }
495
496 /* Swap out the ldhdr structure. */
497
498 static void
499 xcoff_swap_ldhdr_out (abfd, src, dst)
500 bfd *abfd;
501 const struct internal_ldhdr *src;
502 struct external_ldhdr *dst;
503 {
504 bfd_put_32 (abfd, src->l_version, dst->l_version);
505 bfd_put_32 (abfd, src->l_nsyms, dst->l_nsyms);
506 bfd_put_32 (abfd, src->l_nreloc, dst->l_nreloc);
507 bfd_put_32 (abfd, src->l_istlen, dst->l_istlen);
508 bfd_put_32 (abfd, src->l_nimpid, dst->l_nimpid);
509 bfd_put_32 (abfd, src->l_impoff, dst->l_impoff);
510 bfd_put_32 (abfd, src->l_stlen, dst->l_stlen);
511 bfd_put_32 (abfd, src->l_stoff, dst->l_stoff);
512 }
513
514 /* Swap in the ldsym structure. */
515
516 static void
517 xcoff_swap_ldsym_in (abfd, src, dst)
518 bfd *abfd;
519 const struct external_ldsym *src;
520 struct internal_ldsym *dst;
521 {
522 if (bfd_get_32 (abfd, src->_l._l_l._l_zeroes) != 0)
523 memcpy (dst->_l._l_name, src->_l._l_name, SYMNMLEN);
524 else
525 {
526 dst->_l._l_l._l_zeroes = 0;
527 dst->_l._l_l._l_offset = bfd_get_32 (abfd, src->_l._l_l._l_offset);
528 }
529 dst->l_value = bfd_get_32 (abfd, src->l_value);
530 dst->l_scnum = bfd_get_16 (abfd, src->l_scnum);
531 dst->l_smtype = bfd_get_8 (abfd, src->l_smtype);
532 dst->l_smclas = bfd_get_8 (abfd, src->l_smclas);
533 dst->l_ifile = bfd_get_32 (abfd, src->l_ifile);
534 dst->l_parm = bfd_get_32 (abfd, src->l_parm);
535 }
536
537 /* Swap out the ldsym structure. */
538
539 static void
540 xcoff_swap_ldsym_out (abfd, src, dst)
541 bfd *abfd;
542 const struct internal_ldsym *src;
543 struct external_ldsym *dst;
544 {
545 if (src->_l._l_l._l_zeroes != 0)
546 memcpy (dst->_l._l_name, src->_l._l_name, SYMNMLEN);
547 else
548 {
549 bfd_put_32 (abfd, 0, dst->_l._l_l._l_zeroes);
550 bfd_put_32 (abfd, src->_l._l_l._l_offset, dst->_l._l_l._l_offset);
551 }
552 bfd_put_32 (abfd, src->l_value, dst->l_value);
553 bfd_put_16 (abfd, src->l_scnum, dst->l_scnum);
554 bfd_put_8 (abfd, src->l_smtype, dst->l_smtype);
555 bfd_put_8 (abfd, src->l_smclas, dst->l_smclas);
556 bfd_put_32 (abfd, src->l_ifile, dst->l_ifile);
557 bfd_put_32 (abfd, src->l_parm, dst->l_parm);
558 }
559
560 /* Swap in the ldrel structure. */
561
562 static void
563 xcoff_swap_ldrel_in (abfd, src, dst)
564 bfd *abfd;
565 const struct external_ldrel *src;
566 struct internal_ldrel *dst;
567 {
568 dst->l_vaddr = bfd_get_32 (abfd, src->l_vaddr);
569 dst->l_symndx = bfd_get_32 (abfd, src->l_symndx);
570 dst->l_rtype = bfd_get_16 (abfd, src->l_rtype);
571 dst->l_rsecnm = bfd_get_16 (abfd, src->l_rsecnm);
572 }
573
574 /* Swap out the ldrel structure. */
575
576 static void
577 xcoff_swap_ldrel_out (abfd, src, dst)
578 bfd *abfd;
579 const struct internal_ldrel *src;
580 struct external_ldrel *dst;
581 {
582 bfd_put_32 (abfd, src->l_vaddr, dst->l_vaddr);
583 bfd_put_32 (abfd, src->l_symndx, dst->l_symndx);
584 bfd_put_16 (abfd, src->l_rtype, dst->l_rtype);
585 bfd_put_16 (abfd, src->l_rsecnm, dst->l_rsecnm);
586 }
587 \f
588 /* Routines to read XCOFF dynamic information. This don't really
589 belong here, but we already have the ldsym manipulation routines
590 here. */
591
592 /* Read the contents of a section. */
593
594 static boolean
595 xcoff_get_section_contents (abfd, sec)
596 bfd *abfd;
597 asection *sec;
598 {
599 if (coff_section_data (abfd, sec) == NULL)
600 {
601 sec->used_by_bfd = bfd_zalloc (abfd,
602 sizeof (struct coff_section_tdata));
603 if (sec->used_by_bfd == NULL)
604 return false;
605 }
606
607 if (coff_section_data (abfd, sec)->contents == NULL)
608 {
609 coff_section_data (abfd, sec)->contents = bfd_malloc (sec->_raw_size);
610 if (coff_section_data (abfd, sec)->contents == NULL)
611 return false;
612
613 if (! bfd_get_section_contents (abfd, sec,
614 coff_section_data (abfd, sec)->contents,
615 (file_ptr) 0, sec->_raw_size))
616 return false;
617 }
618
619 return true;
620 }
621
622 /* Get the size required to hold the dynamic symbols. */
623
624 long
625 _bfd_xcoff_get_dynamic_symtab_upper_bound (abfd)
626 bfd *abfd;
627 {
628 asection *lsec;
629 bfd_byte *contents;
630 struct internal_ldhdr ldhdr;
631
632 if ((abfd->flags & DYNAMIC) == 0)
633 {
634 bfd_set_error (bfd_error_invalid_operation);
635 return -1;
636 }
637
638 lsec = bfd_get_section_by_name (abfd, ".loader");
639 if (lsec == NULL)
640 {
641 bfd_set_error (bfd_error_no_symbols);
642 return -1;
643 }
644
645 if (! xcoff_get_section_contents (abfd, lsec))
646 return -1;
647 contents = coff_section_data (abfd, lsec)->contents;
648
649 xcoff_swap_ldhdr_in (abfd, (struct external_ldhdr *) contents, &ldhdr);
650
651 return (ldhdr.l_nsyms + 1) * sizeof (asymbol *);
652 }
653
654 /* Get the dynamic symbols. */
655
656 long
657 _bfd_xcoff_canonicalize_dynamic_symtab (abfd, psyms)
658 bfd *abfd;
659 asymbol **psyms;
660 {
661 asection *lsec;
662 bfd_byte *contents;
663 struct internal_ldhdr ldhdr;
664 const char *strings;
665 struct external_ldsym *elsym, *elsymend;
666 coff_symbol_type *symbuf;
667
668 if ((abfd->flags & DYNAMIC) == 0)
669 {
670 bfd_set_error (bfd_error_invalid_operation);
671 return -1;
672 }
673
674 lsec = bfd_get_section_by_name (abfd, ".loader");
675 if (lsec == NULL)
676 {
677 bfd_set_error (bfd_error_no_symbols);
678 return -1;
679 }
680
681 if (! xcoff_get_section_contents (abfd, lsec))
682 return -1;
683 contents = coff_section_data (abfd, lsec)->contents;
684
685 coff_section_data (abfd, lsec)->keep_contents = true;
686
687 xcoff_swap_ldhdr_in (abfd, (struct external_ldhdr *) contents, &ldhdr);
688
689 strings = (char *) contents + ldhdr.l_stoff;
690
691 symbuf = ((coff_symbol_type *)
692 bfd_zalloc (abfd, ldhdr.l_nsyms * sizeof (coff_symbol_type)));
693 if (symbuf == NULL)
694 return -1;
695
696 elsym = (struct external_ldsym *) (contents + LDHDRSZ);
697 elsymend = elsym + ldhdr.l_nsyms;
698 for (; elsym < elsymend; elsym++, symbuf++, psyms++)
699 {
700 struct internal_ldsym ldsym;
701
702 xcoff_swap_ldsym_in (abfd, elsym, &ldsym);
703
704 symbuf->symbol.the_bfd = abfd;
705
706 if (ldsym._l._l_l._l_zeroes == 0)
707 symbuf->symbol.name = strings + ldsym._l._l_l._l_offset;
708 else
709 {
710 int i;
711
712 for (i = 0; i < SYMNMLEN; i++)
713 if (ldsym._l._l_name[i] == '\0')
714 break;
715 if (i < SYMNMLEN)
716 symbuf->symbol.name = elsym->_l._l_name;
717 else
718 {
719 char *c;
720
721 c = bfd_alloc (abfd, SYMNMLEN + 1);
722 if (c == NULL)
723 return -1;
724 memcpy (c, ldsym._l._l_name, SYMNMLEN);
725 c[SYMNMLEN] = '\0';
726 symbuf->symbol.name = c;
727 }
728 }
729
730 if (ldsym.l_smclas == XMC_XO)
731 symbuf->symbol.section = bfd_abs_section_ptr;
732 else
733 symbuf->symbol.section = coff_section_from_bfd_index (abfd,
734 ldsym.l_scnum);
735 symbuf->symbol.value = ldsym.l_value - symbuf->symbol.section->vma;
736
737 symbuf->symbol.flags = BSF_NO_FLAGS;
738 if ((ldsym.l_smtype & L_EXPORT) != 0)
739 symbuf->symbol.flags |= BSF_GLOBAL;
740
741 /* FIXME: We have no way to record the other information stored
742 with the loader symbol. */
743
744 *psyms = (asymbol *) symbuf;
745 }
746
747 *psyms = NULL;
748
749 return ldhdr.l_nsyms;
750 }
751
752 /* Get the size required to hold the dynamic relocs. */
753
754 long
755 _bfd_xcoff_get_dynamic_reloc_upper_bound (abfd)
756 bfd *abfd;
757 {
758 asection *lsec;
759 bfd_byte *contents;
760 struct internal_ldhdr ldhdr;
761
762 if ((abfd->flags & DYNAMIC) == 0)
763 {
764 bfd_set_error (bfd_error_invalid_operation);
765 return -1;
766 }
767
768 lsec = bfd_get_section_by_name (abfd, ".loader");
769 if (lsec == NULL)
770 {
771 bfd_set_error (bfd_error_no_symbols);
772 return -1;
773 }
774
775 if (! xcoff_get_section_contents (abfd, lsec))
776 return -1;
777 contents = coff_section_data (abfd, lsec)->contents;
778
779 xcoff_swap_ldhdr_in (abfd, (struct external_ldhdr *) contents, &ldhdr);
780
781 return (ldhdr.l_nreloc + 1) * sizeof (arelent *);
782 }
783
784 /* The typical dynamic reloc. */
785
786 static reloc_howto_type xcoff_dynamic_reloc =
787 HOWTO (0, /* type */
788 0, /* rightshift */
789 2, /* size (0 = byte, 1 = short, 2 = long) */
790 32, /* bitsize */
791 false, /* pc_relative */
792 0, /* bitpos */
793 complain_overflow_bitfield, /* complain_on_overflow */
794 0, /* special_function */
795 "R_POS", /* name */
796 true, /* partial_inplace */
797 0xffffffff, /* src_mask */
798 0xffffffff, /* dst_mask */
799 false); /* pcrel_offset */
800
801 /* Get the dynamic relocs. */
802
803 long
804 _bfd_xcoff_canonicalize_dynamic_reloc (abfd, prelocs, syms)
805 bfd *abfd;
806 arelent **prelocs;
807 asymbol **syms;
808 {
809 asection *lsec;
810 bfd_byte *contents;
811 struct internal_ldhdr ldhdr;
812 arelent *relbuf;
813 struct external_ldrel *elrel, *elrelend;
814
815 if ((abfd->flags & DYNAMIC) == 0)
816 {
817 bfd_set_error (bfd_error_invalid_operation);
818 return -1;
819 }
820
821 lsec = bfd_get_section_by_name (abfd, ".loader");
822 if (lsec == NULL)
823 {
824 bfd_set_error (bfd_error_no_symbols);
825 return -1;
826 }
827
828 if (! xcoff_get_section_contents (abfd, lsec))
829 return -1;
830 contents = coff_section_data (abfd, lsec)->contents;
831
832 xcoff_swap_ldhdr_in (abfd, (struct external_ldhdr *) contents, &ldhdr);
833
834 relbuf = (arelent *) bfd_alloc (abfd, ldhdr.l_nreloc * sizeof (arelent));
835 if (relbuf == NULL)
836 return -1;
837
838 elrel = ((struct external_ldrel *)
839 (contents + LDHDRSZ + ldhdr.l_nsyms * LDSYMSZ));
840 elrelend = elrel + ldhdr.l_nreloc;
841 for (; elrel < elrelend; elrel++, relbuf++, prelocs++)
842 {
843 struct internal_ldrel ldrel;
844
845 xcoff_swap_ldrel_in (abfd, elrel, &ldrel);
846
847 if (ldrel.l_symndx >= 3)
848 relbuf->sym_ptr_ptr = syms + (ldrel.l_symndx - 3);
849 else
850 {
851 const char *name;
852 asection *sec;
853
854 switch (ldrel.l_symndx)
855 {
856 case 0:
857 name = ".text";
858 break;
859 case 1:
860 name = ".data";
861 break;
862 case 2:
863 name = ".bss";
864 break;
865 default:
866 abort ();
867 break;
868 }
869
870 sec = bfd_get_section_by_name (abfd, name);
871 if (sec == NULL)
872 {
873 bfd_set_error (bfd_error_bad_value);
874 return -1;
875 }
876
877 relbuf->sym_ptr_ptr = sec->symbol_ptr_ptr;
878 }
879
880 relbuf->address = ldrel.l_vaddr;
881 relbuf->addend = 0;
882
883 /* Most dynamic relocs have the same type. FIXME: This is only
884 correct if ldrel.l_rtype == 0. In other cases, we should use
885 a different howto. */
886 relbuf->howto = &xcoff_dynamic_reloc;
887
888 /* FIXME: We have no way to record the l_rsecnm field. */
889
890 *prelocs = relbuf;
891 }
892
893 *prelocs = NULL;
894
895 return ldhdr.l_nreloc;
896 }
897 \f
898 /* Routine to create an entry in an XCOFF link hash table. */
899
900 static struct bfd_hash_entry *
901 xcoff_link_hash_newfunc (entry, table, string)
902 struct bfd_hash_entry *entry;
903 struct bfd_hash_table *table;
904 const char *string;
905 {
906 struct xcoff_link_hash_entry *ret = (struct xcoff_link_hash_entry *) entry;
907
908 /* Allocate the structure if it has not already been allocated by a
909 subclass. */
910 if (ret == (struct xcoff_link_hash_entry *) NULL)
911 ret = ((struct xcoff_link_hash_entry *)
912 bfd_hash_allocate (table, sizeof (struct xcoff_link_hash_entry)));
913 if (ret == (struct xcoff_link_hash_entry *) NULL)
914 return (struct bfd_hash_entry *) ret;
915
916 /* Call the allocation method of the superclass. */
917 ret = ((struct xcoff_link_hash_entry *)
918 _bfd_link_hash_newfunc ((struct bfd_hash_entry *) ret,
919 table, string));
920 if (ret != NULL)
921 {
922 /* Set local fields. */
923 ret->indx = -1;
924 ret->toc_section = NULL;
925 ret->u.toc_indx = -1;
926 ret->descriptor = NULL;
927 ret->ldsym = NULL;
928 ret->ldindx = -1;
929 ret->flags = 0;
930 ret->smclas = XMC_UA;
931 }
932
933 return (struct bfd_hash_entry *) ret;
934 }
935
936 /* Create a XCOFF link hash table. */
937
938 struct bfd_link_hash_table *
939 _bfd_xcoff_bfd_link_hash_table_create (abfd)
940 bfd *abfd;
941 {
942 struct xcoff_link_hash_table *ret;
943
944 ret = ((struct xcoff_link_hash_table *)
945 bfd_alloc (abfd, sizeof (struct xcoff_link_hash_table)));
946 if (ret == (struct xcoff_link_hash_table *) NULL)
947 return (struct bfd_link_hash_table *) NULL;
948 if (! _bfd_link_hash_table_init (&ret->root, abfd, xcoff_link_hash_newfunc))
949 {
950 bfd_release (abfd, ret);
951 return (struct bfd_link_hash_table *) NULL;
952 }
953
954 ret->debug_strtab = _bfd_xcoff_stringtab_init ();
955 ret->debug_section = NULL;
956 ret->loader_section = NULL;
957 ret->ldrel_count = 0;
958 memset (&ret->ldhdr, 0, sizeof (struct internal_ldhdr));
959 ret->linkage_section = NULL;
960 ret->toc_section = NULL;
961 ret->descriptor_section = NULL;
962 ret->imports = NULL;
963 ret->file_align = 0;
964 ret->textro = false;
965 ret->gc = false;
966 memset (ret->special_sections, 0, sizeof ret->special_sections);
967
968 /* The linker will always generate a full a.out header. We need to
969 record that fact now, before the sizeof_headers routine could be
970 called. */
971 xcoff_data (abfd)->full_aouthdr = true;
972
973 return &ret->root;
974 }
975
976 /* Look up an entry in an XCOFF link hash table. */
977
978 #define xcoff_link_hash_lookup(table, string, create, copy, follow) \
979 ((struct xcoff_link_hash_entry *) \
980 bfd_link_hash_lookup (&(table)->root, (string), (create), (copy),\
981 (follow)))
982
983 /* Traverse an XCOFF link hash table. */
984
985 #define xcoff_link_hash_traverse(table, func, info) \
986 (bfd_link_hash_traverse \
987 (&(table)->root, \
988 (boolean (*) PARAMS ((struct bfd_link_hash_entry *, PTR))) (func), \
989 (info)))
990
991 /* Get the XCOFF link hash table from the info structure. This is
992 just a cast. */
993
994 #define xcoff_hash_table(p) ((struct xcoff_link_hash_table *) ((p)->hash))
995 \f
996 /* Read internal relocs for an XCOFF csect. This is a wrapper around
997 _bfd_coff_read_internal_relocs which tries to take advantage of any
998 relocs which may have been cached for the enclosing section. */
999
1000 static struct internal_reloc *
1001 xcoff_read_internal_relocs (abfd, sec, cache, external_relocs,
1002 require_internal, internal_relocs)
1003 bfd *abfd;
1004 asection *sec;
1005 boolean cache;
1006 bfd_byte *external_relocs;
1007 boolean require_internal;
1008 struct internal_reloc *internal_relocs;
1009 {
1010 if (coff_section_data (abfd, sec) != NULL
1011 && coff_section_data (abfd, sec)->relocs == NULL
1012 && xcoff_section_data (abfd, sec) != NULL)
1013 {
1014 asection *enclosing;
1015
1016 enclosing = xcoff_section_data (abfd, sec)->enclosing;
1017
1018 if (enclosing != NULL
1019 && (coff_section_data (abfd, enclosing) == NULL
1020 || coff_section_data (abfd, enclosing)->relocs == NULL)
1021 && cache
1022 && enclosing->reloc_count > 0)
1023 {
1024 if (_bfd_coff_read_internal_relocs (abfd, enclosing, true,
1025 external_relocs, false,
1026 (struct internal_reloc *) NULL)
1027 == NULL)
1028 return NULL;
1029 }
1030
1031 if (enclosing != NULL
1032 && coff_section_data (abfd, enclosing) != NULL
1033 && coff_section_data (abfd, enclosing)->relocs != NULL)
1034 {
1035 size_t off;
1036
1037 off = ((sec->rel_filepos - enclosing->rel_filepos)
1038 / bfd_coff_relsz (abfd));
1039 if (! require_internal)
1040 return coff_section_data (abfd, enclosing)->relocs + off;
1041 memcpy (internal_relocs,
1042 coff_section_data (abfd, enclosing)->relocs + off,
1043 sec->reloc_count * sizeof (struct internal_reloc));
1044 return internal_relocs;
1045 }
1046 }
1047
1048 return _bfd_coff_read_internal_relocs (abfd, sec, cache, external_relocs,
1049 require_internal, internal_relocs);
1050 }
1051 \f
1052 /* Given an XCOFF BFD, add symbols to the global hash table as
1053 appropriate. */
1054
1055 boolean
1056 _bfd_xcoff_bfd_link_add_symbols (abfd, info)
1057 bfd *abfd;
1058 struct bfd_link_info *info;
1059 {
1060 switch (bfd_get_format (abfd))
1061 {
1062 case bfd_object:
1063 return xcoff_link_add_object_symbols (abfd, info);
1064 case bfd_archive:
1065 /* We need to look through the archive for stripped dynamic
1066 objects, because they will not appear in the archive map even
1067 though they should, perhaps, be included. Also, if the
1068 linker has no map, we just consider each object file in turn,
1069 since that apparently is what the AIX native linker does. */
1070 {
1071 bfd *member;
1072
1073 member = bfd_openr_next_archived_file (abfd, (bfd *) NULL);
1074 while (member != NULL)
1075 {
1076 if (bfd_check_format (member, bfd_object)
1077 && (! bfd_has_map (abfd)
1078 || ((member->flags & DYNAMIC) != 0
1079 && (member->flags & HAS_SYMS) == 0)))
1080 {
1081 boolean needed;
1082
1083 if (! xcoff_link_check_archive_element (member, info, &needed))
1084 return false;
1085 if (needed)
1086 member->archive_pass = -1;
1087 }
1088 member = bfd_openr_next_archived_file (abfd, member);
1089 }
1090
1091 if (! bfd_has_map (abfd))
1092 return true;
1093
1094 /* Now do the usual search. */
1095 return (_bfd_generic_link_add_archive_symbols
1096 (abfd, info, xcoff_link_check_archive_element));
1097 }
1098
1099 default:
1100 bfd_set_error (bfd_error_wrong_format);
1101 return false;
1102 }
1103 }
1104
1105 /* Add symbols from an XCOFF object file. */
1106
1107 static boolean
1108 xcoff_link_add_object_symbols (abfd, info)
1109 bfd *abfd;
1110 struct bfd_link_info *info;
1111 {
1112 if (! _bfd_coff_get_external_symbols (abfd))
1113 return false;
1114 if (! xcoff_link_add_symbols (abfd, info))
1115 return false;
1116 if (! info->keep_memory)
1117 {
1118 if (! _bfd_coff_free_symbols (abfd))
1119 return false;
1120 }
1121 return true;
1122 }
1123
1124 /* Check a single archive element to see if we need to include it in
1125 the link. *PNEEDED is set according to whether this element is
1126 needed in the link or not. This is called via
1127 _bfd_generic_link_add_archive_symbols. */
1128
1129 static boolean
1130 xcoff_link_check_archive_element (abfd, info, pneeded)
1131 bfd *abfd;
1132 struct bfd_link_info *info;
1133 boolean *pneeded;
1134 {
1135 if (! _bfd_coff_get_external_symbols (abfd))
1136 return false;
1137
1138 if (! xcoff_link_check_ar_symbols (abfd, info, pneeded))
1139 return false;
1140
1141 if (*pneeded)
1142 {
1143 if (! xcoff_link_add_symbols (abfd, info))
1144 return false;
1145 }
1146
1147 if (! info->keep_memory || ! *pneeded)
1148 {
1149 if (! _bfd_coff_free_symbols (abfd))
1150 return false;
1151 }
1152
1153 return true;
1154 }
1155
1156 /* Look through the symbols to see if this object file should be
1157 included in the link. */
1158
1159 static boolean
1160 xcoff_link_check_ar_symbols (abfd, info, pneeded)
1161 bfd *abfd;
1162 struct bfd_link_info *info;
1163 boolean *pneeded;
1164 {
1165 bfd_size_type symesz;
1166 bfd_byte *esym;
1167 bfd_byte *esym_end;
1168
1169 *pneeded = false;
1170
1171 if ((abfd->flags & DYNAMIC) != 0
1172 && ! info->static_link
1173 && info->hash->creator == abfd->xvec)
1174 return xcoff_link_check_dynamic_ar_symbols (abfd, info, pneeded);
1175
1176 symesz = bfd_coff_symesz (abfd);
1177 esym = (bfd_byte *) obj_coff_external_syms (abfd);
1178 esym_end = esym + obj_raw_syment_count (abfd) * symesz;
1179 while (esym < esym_end)
1180 {
1181 struct internal_syment sym;
1182
1183 bfd_coff_swap_sym_in (abfd, (PTR) esym, (PTR) &sym);
1184
1185 if (sym.n_sclass == C_EXT && sym.n_scnum != N_UNDEF)
1186 {
1187 const char *name;
1188 char buf[SYMNMLEN + 1];
1189 struct bfd_link_hash_entry *h;
1190
1191 /* This symbol is externally visible, and is defined by this
1192 object file. */
1193
1194 name = _bfd_coff_internal_syment_name (abfd, &sym, buf);
1195 if (name == NULL)
1196 return false;
1197 h = bfd_link_hash_lookup (info->hash, name, false, false, true);
1198
1199 /* We are only interested in symbols that are currently
1200 undefined. If a symbol is currently known to be common,
1201 XCOFF linkers do not bring in an object file which
1202 defines it. We also don't bring in symbols to satisfy
1203 undefined references in shared objects. */
1204 if (h != (struct bfd_link_hash_entry *) NULL
1205 && h->type == bfd_link_hash_undefined
1206 && (info->hash->creator != abfd->xvec
1207 || (((struct xcoff_link_hash_entry *) h)->flags
1208 & XCOFF_DEF_DYNAMIC) == 0))
1209 {
1210 if (! (*info->callbacks->add_archive_element) (info, abfd, name))
1211 return false;
1212 *pneeded = true;
1213 return true;
1214 }
1215 }
1216
1217 esym += (sym.n_numaux + 1) * symesz;
1218 }
1219
1220 /* We do not need this object file. */
1221 return true;
1222 }
1223
1224 /* Look through the loader symbols to see if this dynamic object
1225 should be included in the link. The native linker uses the loader
1226 symbols, not the normal symbol table, so we do too. */
1227
1228 static boolean
1229 xcoff_link_check_dynamic_ar_symbols (abfd, info, pneeded)
1230 bfd *abfd;
1231 struct bfd_link_info *info;
1232 boolean *pneeded;
1233 {
1234 asection *lsec;
1235 bfd_byte *buf;
1236 struct internal_ldhdr ldhdr;
1237 const char *strings;
1238 struct external_ldsym *elsym, *elsymend;
1239
1240 *pneeded = false;
1241
1242 lsec = bfd_get_section_by_name (abfd, ".loader");
1243 if (lsec == NULL)
1244 {
1245 /* There are no symbols, so don't try to include it. */
1246 return true;
1247 }
1248
1249 if (! xcoff_get_section_contents (abfd, lsec))
1250 return false;
1251 buf = coff_section_data (abfd, lsec)->contents;
1252
1253 xcoff_swap_ldhdr_in (abfd, (struct external_ldhdr *) buf, &ldhdr);
1254
1255 strings = (char *) buf + ldhdr.l_stoff;
1256
1257 elsym = (struct external_ldsym *) (buf + LDHDRSZ);
1258 elsymend = elsym + ldhdr.l_nsyms;
1259 for (; elsym < elsymend; elsym++)
1260 {
1261 struct internal_ldsym ldsym;
1262 char nambuf[SYMNMLEN + 1];
1263 const char *name;
1264 struct bfd_link_hash_entry *h;
1265
1266 xcoff_swap_ldsym_in (abfd, elsym, &ldsym);
1267
1268 /* We are only interested in exported symbols. */
1269 if ((ldsym.l_smtype & L_EXPORT) == 0)
1270 continue;
1271
1272 if (ldsym._l._l_l._l_zeroes == 0)
1273 name = strings + ldsym._l._l_l._l_offset;
1274 else
1275 {
1276 memcpy (nambuf, ldsym._l._l_name, SYMNMLEN);
1277 nambuf[SYMNMLEN] = '\0';
1278 name = nambuf;
1279 }
1280
1281 h = bfd_link_hash_lookup (info->hash, name, false, false, true);
1282
1283 /* We are only interested in symbols that are currently
1284 undefined. At this point we know that we are using an XCOFF
1285 hash table. */
1286 if (h != NULL
1287 && h->type == bfd_link_hash_undefined
1288 && (((struct xcoff_link_hash_entry *) h)->flags
1289 & XCOFF_DEF_DYNAMIC) == 0)
1290 {
1291 if (! (*info->callbacks->add_archive_element) (info, abfd, name))
1292 return false;
1293 *pneeded = true;
1294 return true;
1295 }
1296 }
1297
1298 /* We do not need this shared object. */
1299
1300 if (buf != NULL && ! coff_section_data (abfd, lsec)->keep_contents)
1301 {
1302 free (coff_section_data (abfd, lsec)->contents);
1303 coff_section_data (abfd, lsec)->contents = NULL;
1304 }
1305
1306 return true;
1307 }
1308
1309 /* Returns the index of reloc in RELOCS with the least address greater
1310 than or equal to ADDRESS. The relocs are sorted by address. */
1311
1312 static bfd_size_type
1313 xcoff_find_reloc (relocs, count, address)
1314 struct internal_reloc *relocs;
1315 bfd_size_type count;
1316 bfd_vma address;
1317 {
1318 bfd_size_type min, max, this;
1319
1320 if (count < 2)
1321 {
1322 if (count == 1 && relocs[0].r_vaddr < address)
1323 return 1;
1324 else
1325 return 0;
1326 }
1327
1328 min = 0;
1329 max = count;
1330
1331 /* Do a binary search over (min,max]. */
1332 while (min + 1 < max)
1333 {
1334 bfd_vma raddr;
1335
1336 this = (max + min) / 2;
1337 raddr = relocs[this].r_vaddr;
1338 if (raddr > address)
1339 max = this;
1340 else if (raddr < address)
1341 min = this;
1342 else
1343 {
1344 min = this;
1345 break;
1346 }
1347 }
1348
1349 if (relocs[min].r_vaddr < address)
1350 return min + 1;
1351
1352 while (min > 0
1353 && relocs[min - 1].r_vaddr == address)
1354 --min;
1355
1356 return min;
1357 }
1358
1359 /* Add all the symbols from an object file to the hash table.
1360
1361 XCOFF is a weird format. A normal XCOFF .o files will have three
1362 COFF sections--.text, .data, and .bss--but each COFF section will
1363 contain many csects. These csects are described in the symbol
1364 table. From the linker's point of view, each csect must be
1365 considered a section in its own right. For example, a TOC entry is
1366 handled as a small XMC_TC csect. The linker must be able to merge
1367 different TOC entries together, which means that it must be able to
1368 extract the XMC_TC csects from the .data section of the input .o
1369 file.
1370
1371 From the point of view of our linker, this is, of course, a hideous
1372 nightmare. We cope by actually creating sections for each csect,
1373 and discarding the original sections. We then have to handle the
1374 relocation entries carefully, since the only way to tell which
1375 csect they belong to is to examine the address. */
1376
1377 static boolean
1378 xcoff_link_add_symbols (abfd, info)
1379 bfd *abfd;
1380 struct bfd_link_info *info;
1381 {
1382 unsigned int n_tmask;
1383 unsigned int n_btshft;
1384 boolean default_copy;
1385 bfd_size_type symcount;
1386 struct xcoff_link_hash_entry **sym_hash;
1387 asection **csect_cache;
1388 bfd_size_type linesz;
1389 asection *o;
1390 asection *last_real;
1391 boolean keep_syms;
1392 asection *csect;
1393 unsigned int csect_index;
1394 asection *first_csect;
1395 bfd_size_type symesz;
1396 bfd_byte *esym;
1397 bfd_byte *esym_end;
1398 struct reloc_info_struct
1399 {
1400 struct internal_reloc *relocs;
1401 asection **csects;
1402 bfd_byte *linenos;
1403 } *reloc_info = NULL;
1404
1405 if ((abfd->flags & DYNAMIC) != 0
1406 && ! info->static_link)
1407 {
1408 if (! xcoff_link_add_dynamic_symbols (abfd, info))
1409 return false;
1410 }
1411
1412 if (info->hash->creator == abfd->xvec)
1413 {
1414 /* We need to build a .loader section, so we do it here. This
1415 won't work if we're producing an XCOFF output file with no
1416 XCOFF input files. FIXME. */
1417 if (xcoff_hash_table (info)->loader_section == NULL)
1418 {
1419 asection *lsec;
1420
1421 lsec = bfd_make_section_anyway (abfd, ".loader");
1422 if (lsec == NULL)
1423 goto error_return;
1424 xcoff_hash_table (info)->loader_section = lsec;
1425 lsec->flags |= SEC_HAS_CONTENTS | SEC_IN_MEMORY;
1426 }
1427 /* Likewise for the linkage section. */
1428 if (xcoff_hash_table (info)->linkage_section == NULL)
1429 {
1430 asection *lsec;
1431
1432 lsec = bfd_make_section_anyway (abfd, ".gl");
1433 if (lsec == NULL)
1434 goto error_return;
1435 xcoff_hash_table (info)->linkage_section = lsec;
1436 lsec->flags |= (SEC_ALLOC | SEC_LOAD | SEC_HAS_CONTENTS
1437 | SEC_IN_MEMORY);
1438 lsec->alignment_power = 2;
1439 }
1440 /* Likewise for the TOC section. */
1441 if (xcoff_hash_table (info)->toc_section == NULL)
1442 {
1443 asection *tsec;
1444
1445 tsec = bfd_make_section_anyway (abfd, ".tc");
1446 if (tsec == NULL)
1447 goto error_return;
1448 xcoff_hash_table (info)->toc_section = tsec;
1449 tsec->flags |= (SEC_ALLOC | SEC_LOAD | SEC_HAS_CONTENTS
1450 | SEC_IN_MEMORY);
1451 tsec->alignment_power = 2;
1452 }
1453 /* Likewise for the descriptor section. */
1454 if (xcoff_hash_table (info)->descriptor_section == NULL)
1455 {
1456 asection *dsec;
1457
1458 dsec = bfd_make_section_anyway (abfd, ".ds");
1459 if (dsec == NULL)
1460 goto error_return;
1461 xcoff_hash_table (info)->descriptor_section = dsec;
1462 dsec->flags |= (SEC_ALLOC | SEC_LOAD | SEC_HAS_CONTENTS
1463 | SEC_IN_MEMORY);
1464 dsec->alignment_power = 2;
1465 }
1466 /* Likewise for the .debug section. */
1467 if (xcoff_hash_table (info)->debug_section == NULL)
1468 {
1469 asection *dsec;
1470
1471 dsec = bfd_make_section_anyway (abfd, ".debug");
1472 if (dsec == NULL)
1473 goto error_return;
1474 xcoff_hash_table (info)->debug_section = dsec;
1475 dsec->flags |= SEC_HAS_CONTENTS | SEC_IN_MEMORY;
1476 }
1477 }
1478
1479 if ((abfd->flags & DYNAMIC) != 0
1480 && ! info->static_link)
1481 return true;
1482
1483 n_tmask = coff_data (abfd)->local_n_tmask;
1484 n_btshft = coff_data (abfd)->local_n_btshft;
1485
1486 /* Define macros so that ISFCN, et. al., macros work correctly. */
1487 #define N_TMASK n_tmask
1488 #define N_BTSHFT n_btshft
1489
1490 if (info->keep_memory)
1491 default_copy = false;
1492 else
1493 default_copy = true;
1494
1495 symcount = obj_raw_syment_count (abfd);
1496
1497 /* We keep a list of the linker hash table entries that correspond
1498 to each external symbol. */
1499 sym_hash = ((struct xcoff_link_hash_entry **)
1500 bfd_alloc (abfd,
1501 (symcount
1502 * sizeof (struct xcoff_link_hash_entry *))));
1503 if (sym_hash == NULL && symcount != 0)
1504 goto error_return;
1505 coff_data (abfd)->sym_hashes = (struct coff_link_hash_entry **) sym_hash;
1506 memset (sym_hash, 0,
1507 (size_t) symcount * sizeof (struct xcoff_link_hash_entry *));
1508
1509 /* Because of the weird stuff we are doing with XCOFF csects, we can
1510 not easily determine which section a symbol is in, so we store
1511 the information in the tdata for the input file. */
1512 csect_cache = ((asection **)
1513 bfd_alloc (abfd, symcount * sizeof (asection *)));
1514 if (csect_cache == NULL && symcount != 0)
1515 goto error_return;
1516 xcoff_data (abfd)->csects = csect_cache;
1517 memset (csect_cache, 0, (size_t) symcount * sizeof (asection *));
1518
1519 /* While splitting sections into csects, we need to assign the
1520 relocs correctly. The relocs and the csects must both be in
1521 order by VMA within a given section, so we handle this by
1522 scanning along the relocs as we process the csects. We index
1523 into reloc_info using the section target_index. */
1524 reloc_info = ((struct reloc_info_struct *)
1525 bfd_malloc ((abfd->section_count + 1)
1526 * sizeof (struct reloc_info_struct)));
1527 if (reloc_info == NULL)
1528 goto error_return;
1529 memset ((PTR) reloc_info, 0,
1530 (abfd->section_count + 1) * sizeof (struct reloc_info_struct));
1531
1532 /* Read in the relocs and line numbers for each section. */
1533 linesz = bfd_coff_linesz (abfd);
1534 last_real = NULL;
1535 for (o = abfd->sections; o != NULL; o = o->next)
1536 {
1537 last_real = o;
1538 if ((o->flags & SEC_RELOC) != 0)
1539 {
1540 reloc_info[o->target_index].relocs =
1541 xcoff_read_internal_relocs (abfd, o, true, (bfd_byte *) NULL,
1542 false, (struct internal_reloc *) NULL);
1543 reloc_info[o->target_index].csects =
1544 (asection **) bfd_malloc (o->reloc_count * sizeof (asection *));
1545 if (reloc_info[o->target_index].csects == NULL)
1546 goto error_return;
1547 memset (reloc_info[o->target_index].csects, 0,
1548 o->reloc_count * sizeof (asection *));
1549 }
1550
1551 if ((info->strip == strip_none || info->strip == strip_some)
1552 && o->lineno_count > 0)
1553 {
1554 bfd_byte *linenos;
1555
1556 linenos = (bfd_byte *) bfd_malloc (o->lineno_count * linesz);
1557 if (linenos == NULL)
1558 goto error_return;
1559 reloc_info[o->target_index].linenos = linenos;
1560 if (bfd_seek (abfd, o->line_filepos, SEEK_SET) != 0
1561 || (bfd_read (linenos, linesz, o->lineno_count, abfd)
1562 != linesz * o->lineno_count))
1563 goto error_return;
1564 }
1565 }
1566
1567 /* Don't let the linker relocation routines discard the symbols. */
1568 keep_syms = obj_coff_keep_syms (abfd);
1569 obj_coff_keep_syms (abfd) = true;
1570
1571 csect = NULL;
1572 csect_index = 0;
1573 first_csect = NULL;
1574
1575 symesz = bfd_coff_symesz (abfd);
1576 BFD_ASSERT (symesz == bfd_coff_auxesz (abfd));
1577 esym = (bfd_byte *) obj_coff_external_syms (abfd);
1578 esym_end = esym + symcount * symesz;
1579 while (esym < esym_end)
1580 {
1581 struct internal_syment sym;
1582 union internal_auxent aux;
1583 const char *name;
1584 char buf[SYMNMLEN + 1];
1585 int smtyp;
1586 flagword flags;
1587 asection *section;
1588 bfd_vma value;
1589 struct xcoff_link_hash_entry *set_toc;
1590
1591 bfd_coff_swap_sym_in (abfd, (PTR) esym, (PTR) &sym);
1592
1593 /* In this pass we are only interested in symbols with csect
1594 information. */
1595 if (sym.n_sclass != C_EXT && sym.n_sclass != C_HIDEXT)
1596 {
1597 if (sym.n_sclass == C_FILE && csect != NULL)
1598 {
1599 xcoff_section_data (abfd, csect)->last_symndx =
1600 ((esym
1601 - (bfd_byte *) obj_coff_external_syms (abfd))
1602 / symesz);
1603 csect = NULL;
1604 }
1605
1606 if (csect != NULL)
1607 *csect_cache = csect;
1608 else if (first_csect == NULL || sym.n_sclass == C_FILE)
1609 *csect_cache = coff_section_from_bfd_index (abfd, sym.n_scnum);
1610 else
1611 *csect_cache = NULL;
1612 esym += (sym.n_numaux + 1) * symesz;
1613 sym_hash += sym.n_numaux + 1;
1614 csect_cache += sym.n_numaux + 1;
1615 continue;
1616 }
1617
1618 name = _bfd_coff_internal_syment_name (abfd, &sym, buf);
1619 if (name == NULL)
1620 goto error_return;
1621
1622 /* If this symbol has line number information attached to it,
1623 and we're not stripping it, count the number of entries and
1624 add them to the count for this csect. In the final link pass
1625 we are going to attach line number information by symbol,
1626 rather than by section, in order to more easily handle
1627 garbage collection. */
1628 if ((info->strip == strip_none || info->strip == strip_some)
1629 && sym.n_numaux > 1
1630 && csect != NULL
1631 && ISFCN (sym.n_type))
1632 {
1633 union internal_auxent auxlin;
1634
1635 bfd_coff_swap_aux_in (abfd, (PTR) (esym + symesz),
1636 sym.n_type, sym.n_sclass,
1637 0, sym.n_numaux, (PTR) &auxlin);
1638 if (auxlin.x_sym.x_fcnary.x_fcn.x_lnnoptr != 0)
1639 {
1640 asection *enclosing;
1641 bfd_size_type linoff;
1642
1643 enclosing = xcoff_section_data (abfd, csect)->enclosing;
1644 if (enclosing == NULL)
1645 {
1646 (*_bfd_error_handler)
1647 ("%s: `%s' has line numbers but no enclosing section",
1648 bfd_get_filename (abfd), name);
1649 bfd_set_error (bfd_error_bad_value);
1650 goto error_return;
1651 }
1652 linoff = (auxlin.x_sym.x_fcnary.x_fcn.x_lnnoptr
1653 - enclosing->line_filepos);
1654 if (linoff < enclosing->lineno_count * linesz)
1655 {
1656 struct internal_lineno lin;
1657 bfd_byte *linpstart;
1658
1659 linpstart = (reloc_info[enclosing->target_index].linenos
1660 + linoff);
1661 bfd_coff_swap_lineno_in (abfd, (PTR) linpstart, (PTR) &lin);
1662 if (lin.l_lnno == 0
1663 && ((bfd_size_type) lin.l_addr.l_symndx
1664 == ((esym
1665 - (bfd_byte *) obj_coff_external_syms (abfd))
1666 / symesz)))
1667 {
1668 bfd_byte *linpend, *linp;
1669
1670 linpend = (reloc_info[enclosing->target_index].linenos
1671 + enclosing->lineno_count * linesz);
1672 for (linp = linpstart + linesz;
1673 linp < linpend;
1674 linp += linesz)
1675 {
1676 bfd_coff_swap_lineno_in (abfd, (PTR) linp,
1677 (PTR) &lin);
1678 if (lin.l_lnno == 0)
1679 break;
1680 }
1681 csect->lineno_count += (linp - linpstart) / linesz;
1682 /* The setting of line_filepos will only be
1683 useful if all the line number entries for a
1684 csect are contiguous; this only matters for
1685 error reporting. */
1686 if (csect->line_filepos == 0)
1687 csect->line_filepos =
1688 auxlin.x_sym.x_fcnary.x_fcn.x_lnnoptr;
1689 }
1690 }
1691 }
1692 }
1693
1694 /* Pick up the csect auxiliary information. */
1695
1696 if (sym.n_numaux == 0)
1697 {
1698 (*_bfd_error_handler)
1699 ("%s: class %d symbol `%s' has no aux entries",
1700 bfd_get_filename (abfd), sym.n_sclass, name);
1701 bfd_set_error (bfd_error_bad_value);
1702 goto error_return;
1703 }
1704
1705 bfd_coff_swap_aux_in (abfd,
1706 (PTR) (esym + symesz * sym.n_numaux),
1707 sym.n_type, sym.n_sclass,
1708 sym.n_numaux - 1, sym.n_numaux,
1709 (PTR) &aux);
1710
1711 smtyp = SMTYP_SMTYP (aux.x_csect.x_smtyp);
1712
1713 flags = BSF_GLOBAL;
1714 section = NULL;
1715 value = 0;
1716 set_toc = NULL;
1717
1718 switch (smtyp)
1719 {
1720 default:
1721 (*_bfd_error_handler)
1722 ("%s: symbol `%s' has unrecognized csect type %d",
1723 bfd_get_filename (abfd), name, smtyp);
1724 bfd_set_error (bfd_error_bad_value);
1725 goto error_return;
1726
1727 case XTY_ER:
1728 /* This is an external reference. */
1729 if (sym.n_sclass == C_HIDEXT
1730 || sym.n_scnum != N_UNDEF
1731 || aux.x_csect.x_scnlen.l != 0)
1732 {
1733 (*_bfd_error_handler)
1734 ("%s: bad XTY_ER symbol `%s': class %d scnum %d scnlen %d",
1735 bfd_get_filename (abfd), name, sym.n_sclass, sym.n_scnum,
1736 aux.x_csect.x_scnlen.l);
1737 bfd_set_error (bfd_error_bad_value);
1738 goto error_return;
1739 }
1740
1741 /* An XMC_XO external reference is actually a reference to
1742 an absolute location. */
1743 if (aux.x_csect.x_smclas != XMC_XO)
1744 section = bfd_und_section_ptr;
1745 else
1746 {
1747 section = bfd_abs_section_ptr;
1748 value = sym.n_value;
1749 }
1750 break;
1751
1752 case XTY_SD:
1753 /* This is a csect definition. */
1754
1755 if (csect != NULL)
1756 {
1757 xcoff_section_data (abfd, csect)->last_symndx =
1758 ((esym
1759 - (bfd_byte *) obj_coff_external_syms (abfd))
1760 / symesz);
1761 }
1762
1763 csect = NULL;
1764 csect_index = -1;
1765
1766 /* When we see a TOC anchor, we record the TOC value. */
1767 if (aux.x_csect.x_smclas == XMC_TC0)
1768 {
1769 if (sym.n_sclass != C_HIDEXT
1770 || aux.x_csect.x_scnlen.l != 0)
1771 {
1772 (*_bfd_error_handler)
1773 ("%s: XMC_TC0 symbol `%s' is class %d scnlen %d",
1774 bfd_get_filename (abfd), name, sym.n_sclass,
1775 aux.x_csect.x_scnlen.l);
1776 bfd_set_error (bfd_error_bad_value);
1777 goto error_return;
1778 }
1779 xcoff_data (abfd)->toc = sym.n_value;
1780 }
1781
1782 /* We must merge TOC entries for the same symbol. We can
1783 merge two TOC entries if they are both C_HIDEXT, they
1784 both have the same name, they are both 4 bytes long, and
1785 they both have a relocation table entry for an external
1786 symbol with the same name. Unfortunately, this means
1787 that we must look through the relocations. Ick. */
1788 if (aux.x_csect.x_smclas == XMC_TC
1789 && sym.n_sclass == C_HIDEXT
1790 && aux.x_csect.x_scnlen.l == 4
1791 && info->hash->creator == abfd->xvec)
1792 {
1793 asection *enclosing;
1794 struct internal_reloc *relocs;
1795 bfd_size_type relindx;
1796 struct internal_reloc *rel;
1797
1798 enclosing = coff_section_from_bfd_index (abfd, sym.n_scnum);
1799 if (enclosing == NULL)
1800 goto error_return;
1801
1802 relocs = reloc_info[enclosing->target_index].relocs;
1803 relindx = xcoff_find_reloc (relocs, enclosing->reloc_count,
1804 sym.n_value);
1805 rel = relocs + relindx;
1806 if (relindx < enclosing->reloc_count
1807 && rel->r_vaddr == (bfd_vma) sym.n_value
1808 && rel->r_size == 31
1809 && rel->r_type == R_POS)
1810 {
1811 bfd_byte *erelsym;
1812 struct internal_syment relsym;
1813
1814 erelsym = ((bfd_byte *) obj_coff_external_syms (abfd)
1815 + rel->r_symndx * symesz);
1816 bfd_coff_swap_sym_in (abfd, (PTR) erelsym, (PTR) &relsym);
1817 if (relsym.n_sclass == C_EXT)
1818 {
1819 const char *relname;
1820 char relbuf[SYMNMLEN + 1];
1821 boolean copy;
1822 struct xcoff_link_hash_entry *h;
1823
1824 /* At this point we know that the TOC entry is
1825 for an externally visible symbol. */
1826 relname = _bfd_coff_internal_syment_name (abfd, &relsym,
1827 relbuf);
1828 if (relname == NULL)
1829 goto error_return;
1830
1831 /* We only merge TOC entries if the TC name is
1832 the same as the symbol name. This handles
1833 the normal case, but not common cases like
1834 SYM.P4 which gcc generates to store SYM + 4
1835 in the TOC. FIXME. */
1836 if (strcmp (name, relname) == 0)
1837 {
1838 copy = (! info->keep_memory
1839 || relsym._n._n_n._n_zeroes != 0
1840 || relsym._n._n_n._n_offset == 0);
1841 h = xcoff_link_hash_lookup (xcoff_hash_table (info),
1842 relname, true, copy,
1843 false);
1844 if (h == NULL)
1845 goto error_return;
1846
1847 /* At this point h->root.type could be
1848 bfd_link_hash_new. That should be OK,
1849 since we know for sure that we will come
1850 across this symbol as we step through the
1851 file. */
1852
1853 /* We store h in *sym_hash for the
1854 convenience of the relocate_section
1855 function. */
1856 *sym_hash = h;
1857
1858 if (h->toc_section != NULL)
1859 {
1860 asection **rel_csects;
1861
1862 /* We already have a TOC entry for this
1863 symbol, so we can just ignore this
1864 one. */
1865 rel_csects =
1866 reloc_info[enclosing->target_index].csects;
1867 rel_csects[relindx] = bfd_und_section_ptr;
1868 break;
1869 }
1870
1871 /* We are about to create a TOC entry for
1872 this symbol. */
1873 set_toc = h;
1874 }
1875 }
1876 }
1877 }
1878
1879 /* We need to create a new section. We get the name from
1880 the csect storage mapping class, so that the linker can
1881 accumulate similar csects together. */
1882 {
1883 static const char *csect_name_by_class[] =
1884 {
1885 ".pr", ".ro", ".db", ".tc", ".ua", ".rw", ".gl", ".xo",
1886 ".sv", ".bs", ".ds", ".uc", ".ti", ".tb", NULL, ".tc0",
1887 ".td"
1888 };
1889 const char *csect_name;
1890 asection *enclosing;
1891
1892 if ((aux.x_csect.x_smclas >=
1893 sizeof csect_name_by_class / sizeof csect_name_by_class[0])
1894 || csect_name_by_class[aux.x_csect.x_smclas] == NULL)
1895 {
1896 (*_bfd_error_handler)
1897 ("%s: symbol `%s' has unrecognized smclas %d",
1898 bfd_get_filename (abfd), name, aux.x_csect.x_smclas);
1899 bfd_set_error (bfd_error_bad_value);
1900 goto error_return;
1901 }
1902
1903 csect_name = csect_name_by_class[aux.x_csect.x_smclas];
1904 csect = bfd_make_section_anyway (abfd, csect_name);
1905 if (csect == NULL)
1906 goto error_return;
1907 enclosing = coff_section_from_bfd_index (abfd, sym.n_scnum);
1908 if (enclosing == NULL)
1909 goto error_return;
1910 if (! bfd_is_abs_section (enclosing)
1911 && ((bfd_vma) sym.n_value < enclosing->vma
1912 || ((bfd_vma) sym.n_value + aux.x_csect.x_scnlen.l
1913 > enclosing->vma + enclosing->_raw_size)))
1914 {
1915 (*_bfd_error_handler)
1916 ("%s: csect `%s' not in enclosing section",
1917 bfd_get_filename (abfd), name);
1918 bfd_set_error (bfd_error_bad_value);
1919 goto error_return;
1920 }
1921 csect->vma = sym.n_value;
1922 csect->filepos = (enclosing->filepos
1923 + sym.n_value
1924 - enclosing->vma);
1925 csect->_raw_size = aux.x_csect.x_scnlen.l;
1926 csect->flags |= SEC_ALLOC | SEC_LOAD | SEC_HAS_CONTENTS;
1927 csect->alignment_power = SMTYP_ALIGN (aux.x_csect.x_smtyp);
1928
1929 /* Record the enclosing section in the tdata for this new
1930 section. */
1931 csect->used_by_bfd =
1932 ((struct coff_section_tdata *)
1933 bfd_zalloc (abfd, sizeof (struct coff_section_tdata)));
1934 if (csect->used_by_bfd == NULL)
1935 goto error_return;
1936 coff_section_data (abfd, csect)->tdata =
1937 bfd_zalloc (abfd, sizeof (struct xcoff_section_tdata));
1938 if (coff_section_data (abfd, csect)->tdata == NULL)
1939 goto error_return;
1940 xcoff_section_data (abfd, csect)->enclosing = enclosing;
1941 xcoff_section_data (abfd, csect)->lineno_count =
1942 enclosing->lineno_count;
1943
1944 if (enclosing->owner == abfd)
1945 {
1946 struct internal_reloc *relocs;
1947 bfd_size_type relindx;
1948 struct internal_reloc *rel;
1949 asection **rel_csect;
1950
1951 relocs = reloc_info[enclosing->target_index].relocs;
1952 relindx = xcoff_find_reloc (relocs, enclosing->reloc_count,
1953 csect->vma);
1954 rel = relocs + relindx;
1955 rel_csect = (reloc_info[enclosing->target_index].csects
1956 + relindx);
1957 csect->rel_filepos = (enclosing->rel_filepos
1958 + relindx * bfd_coff_relsz (abfd));
1959 while (relindx < enclosing->reloc_count
1960 && *rel_csect == NULL
1961 && rel->r_vaddr < csect->vma + csect->_raw_size)
1962 {
1963 *rel_csect = csect;
1964 csect->flags |= SEC_RELOC;
1965 ++csect->reloc_count;
1966 ++relindx;
1967 ++rel;
1968 ++rel_csect;
1969 }
1970 }
1971
1972 /* There are a number of other fields and section flags
1973 which we do not bother to set. */
1974
1975 csect_index = ((esym
1976 - (bfd_byte *) obj_coff_external_syms (abfd))
1977 / symesz);
1978
1979 xcoff_section_data (abfd, csect)->first_symndx = csect_index;
1980
1981 if (first_csect == NULL)
1982 first_csect = csect;
1983
1984 /* If this symbol is C_EXT, we treat it as starting at the
1985 beginning of the newly created section. */
1986 if (sym.n_sclass == C_EXT)
1987 {
1988 section = csect;
1989 value = 0;
1990 }
1991
1992 /* If this is a TOC section for a symbol, record it. */
1993 if (set_toc != NULL)
1994 set_toc->toc_section = csect;
1995 }
1996 break;
1997
1998 case XTY_LD:
1999 /* This is a label definition. The x_scnlen field is the
2000 symbol index of the csect. I believe that this must
2001 always follow the appropriate XTY_SD symbol, so I will
2002 insist on it. */
2003 {
2004 boolean bad;
2005
2006 bad = false;
2007 if (aux.x_csect.x_scnlen.l < 0
2008 || (aux.x_csect.x_scnlen.l
2009 >= esym - (bfd_byte *) obj_coff_external_syms (abfd)))
2010 bad = true;
2011 if (! bad)
2012 {
2013 section = xcoff_data (abfd)->csects[aux.x_csect.x_scnlen.l];
2014 if (section == NULL
2015 || (section->flags & SEC_HAS_CONTENTS) == 0)
2016 bad = true;
2017 }
2018 if (bad)
2019 {
2020 (*_bfd_error_handler)
2021 ("%s: misplaced XTY_LD `%s'",
2022 bfd_get_filename (abfd), name);
2023 bfd_set_error (bfd_error_bad_value);
2024 goto error_return;
2025 }
2026
2027 value = sym.n_value - csect->vma;
2028 }
2029 break;
2030
2031 case XTY_CM:
2032 /* This is an unitialized csect. We could base the name on
2033 the storage mapping class, but we don't bother. If this
2034 csect is externally visible, it is a common symbol. */
2035
2036 if (csect != NULL)
2037 {
2038 xcoff_section_data (abfd, csect)->last_symndx =
2039 ((esym
2040 - (bfd_byte *) obj_coff_external_syms (abfd))
2041 / symesz);
2042 }
2043
2044 csect = bfd_make_section_anyway (abfd, ".bss");
2045 if (csect == NULL)
2046 goto error_return;
2047 csect->vma = sym.n_value;
2048 csect->_raw_size = aux.x_csect.x_scnlen.l;
2049 csect->flags |= SEC_ALLOC;
2050 csect->alignment_power = SMTYP_ALIGN (aux.x_csect.x_smtyp);
2051 /* There are a number of other fields and section flags
2052 which we do not bother to set. */
2053
2054 csect_index = ((esym
2055 - (bfd_byte *) obj_coff_external_syms (abfd))
2056 / symesz);
2057
2058 csect->used_by_bfd =
2059 ((struct coff_section_tdata *)
2060 bfd_zalloc (abfd, sizeof (struct coff_section_tdata)));
2061 if (csect->used_by_bfd == NULL)
2062 goto error_return;
2063 coff_section_data (abfd, csect)->tdata =
2064 bfd_zalloc (abfd, sizeof (struct xcoff_section_tdata));
2065 if (coff_section_data (abfd, csect)->tdata == NULL)
2066 goto error_return;
2067 xcoff_section_data (abfd, csect)->first_symndx = csect_index;
2068
2069 if (first_csect == NULL)
2070 first_csect = csect;
2071
2072 if (sym.n_sclass == C_EXT)
2073 {
2074 csect->flags |= SEC_IS_COMMON;
2075 csect->_raw_size = 0;
2076 section = csect;
2077 value = aux.x_csect.x_scnlen.l;
2078 }
2079
2080 break;
2081 }
2082
2083 /* Check for magic symbol names. */
2084 if ((smtyp == XTY_SD || smtyp == XTY_CM)
2085 && aux.x_csect.x_smclas != XMC_TC
2086 && aux.x_csect.x_smclas != XMC_TD)
2087 {
2088 int i;
2089
2090 i = -1;
2091 if (name[0] == '_')
2092 {
2093 if (strcmp (name, "_text") == 0)
2094 i = 0;
2095 else if (strcmp (name, "_etext") == 0)
2096 i = 1;
2097 else if (strcmp (name, "_data") == 0)
2098 i = 2;
2099 else if (strcmp (name, "_edata") == 0)
2100 i = 3;
2101 else if (strcmp (name, "_end") == 0)
2102 i = 4;
2103 }
2104 else if (name[0] == 'e' && strcmp (name, "end") == 0)
2105 i = 5;
2106
2107 if (i != -1)
2108 xcoff_hash_table (info)->special_sections[i] = csect;
2109 }
2110
2111 /* Now we have enough information to add the symbol to the
2112 linker hash table. */
2113
2114 if (sym.n_sclass == C_EXT)
2115 {
2116 boolean copy;
2117
2118 BFD_ASSERT (section != NULL);
2119
2120 /* We must copy the name into memory if we got it from the
2121 syment itself, rather than the string table. */
2122 copy = default_copy;
2123 if (sym._n._n_n._n_zeroes != 0
2124 || sym._n._n_n._n_offset == 0)
2125 copy = true;
2126
2127 if (info->hash->creator == abfd->xvec)
2128 {
2129 /* If we are statically linking a shared object, it is
2130 OK for symbol redefinitions to occur. I can't figure
2131 out just what the XCOFF linker is doing, but
2132 something like this is required for -bnso to work. */
2133 if (! bfd_is_und_section (section))
2134 *sym_hash = xcoff_link_hash_lookup (xcoff_hash_table (info),
2135 name, true, copy, false);
2136 else
2137 *sym_hash = ((struct xcoff_link_hash_entry *)
2138 bfd_wrapped_link_hash_lookup (abfd, info, name,
2139 true, copy, false));
2140 if (*sym_hash == NULL)
2141 goto error_return;
2142 if (((*sym_hash)->root.type == bfd_link_hash_defined
2143 || (*sym_hash)->root.type == bfd_link_hash_defweak)
2144 && ! bfd_is_und_section (section)
2145 && ! bfd_is_com_section (section))
2146 {
2147 /* If the existing symbol is to global linkage code,
2148 and this symbol is not global linkage code, then
2149 replace the existing symbol. */
2150 if ((abfd->flags & DYNAMIC) != 0
2151 && ((*sym_hash)->smclas != XMC_GL
2152 || aux.x_csect.x_smclas == XMC_GL
2153 || ((*sym_hash)->root.u.def.section->owner->flags
2154 & DYNAMIC) == 0))
2155 {
2156 section = bfd_und_section_ptr;
2157 value = 0;
2158 }
2159 else if (((*sym_hash)->root.u.def.section->owner->flags
2160 & DYNAMIC) != 0)
2161 {
2162 (*sym_hash)->root.type = bfd_link_hash_undefined;
2163 (*sym_hash)->root.u.undef.abfd =
2164 (*sym_hash)->root.u.def.section->owner;
2165 }
2166 }
2167 }
2168
2169 /* _bfd_generic_link_add_one_symbol may call the linker to
2170 generate an error message, and the linker may try to read
2171 the symbol table to give a good error. Right now, the
2172 line numbers are in an inconsistent state, since they are
2173 counted both in the real sections and in the new csects.
2174 We need to leave the count in the real sections so that
2175 the linker can report the line number of the error
2176 correctly, so temporarily clobber the link to the csects
2177 so that the linker will not try to read the line numbers
2178 a second time from the csects. */
2179 BFD_ASSERT (last_real->next == first_csect);
2180 last_real->next = NULL;
2181 if (! (_bfd_generic_link_add_one_symbol
2182 (info, abfd, name, flags, section, value,
2183 (const char *) NULL, copy, true,
2184 (struct bfd_link_hash_entry **) sym_hash)))
2185 goto error_return;
2186 last_real->next = first_csect;
2187
2188 if (smtyp == XTY_CM)
2189 {
2190 if ((*sym_hash)->root.type != bfd_link_hash_common
2191 || (*sym_hash)->root.u.c.p->section != csect)
2192 {
2193 /* We don't need the common csect we just created. */
2194 csect->_raw_size = 0;
2195 }
2196 else
2197 {
2198 (*sym_hash)->root.u.c.p->alignment_power
2199 = csect->alignment_power;
2200 }
2201 }
2202
2203 if (info->hash->creator == abfd->xvec)
2204 {
2205 int flag;
2206
2207 if (smtyp == XTY_ER || smtyp == XTY_CM)
2208 flag = XCOFF_REF_REGULAR;
2209 else
2210 flag = XCOFF_DEF_REGULAR;
2211 (*sym_hash)->flags |= flag;
2212
2213 if ((*sym_hash)->smclas == XMC_UA
2214 || flag == XCOFF_DEF_REGULAR)
2215 (*sym_hash)->smclas = aux.x_csect.x_smclas;
2216 }
2217 }
2218
2219 *csect_cache = csect;
2220
2221 esym += (sym.n_numaux + 1) * symesz;
2222 sym_hash += sym.n_numaux + 1;
2223 csect_cache += sym.n_numaux + 1;
2224 }
2225
2226 BFD_ASSERT (last_real == NULL || last_real->next == first_csect);
2227
2228 /* Make sure that we have seen all the relocs. */
2229 for (o = abfd->sections; o != first_csect; o = o->next)
2230 {
2231 /* Reset the section size and the line number count, since the
2232 data is now attached to the csects. Don't reset the size of
2233 the .debug section, since we need to read it below in
2234 bfd_xcoff_size_dynamic_sections. */
2235 if (strcmp (bfd_get_section_name (abfd, o), ".debug") != 0)
2236 o->_raw_size = 0;
2237 o->lineno_count = 0;
2238
2239 if ((o->flags & SEC_RELOC) != 0)
2240 {
2241 bfd_size_type i;
2242 struct internal_reloc *rel;
2243 asection **rel_csect;
2244
2245 rel = reloc_info[o->target_index].relocs;
2246 rel_csect = reloc_info[o->target_index].csects;
2247 for (i = 0; i < o->reloc_count; i++, rel++, rel_csect++)
2248 {
2249 if (*rel_csect == NULL)
2250 {
2251 (*_bfd_error_handler)
2252 ("%s: reloc %s:%d not in csect",
2253 bfd_get_filename (abfd), o->name, i);
2254 bfd_set_error (bfd_error_bad_value);
2255 goto error_return;
2256 }
2257
2258 /* We identify all symbols which are called, so that we
2259 can create glue code for calls to functions imported
2260 from dynamic objects. */
2261 if (info->hash->creator == abfd->xvec
2262 && *rel_csect != bfd_und_section_ptr
2263 && (rel->r_type == R_BR
2264 || rel->r_type == R_RBR)
2265 && obj_xcoff_sym_hashes (abfd)[rel->r_symndx] != NULL)
2266 {
2267 struct xcoff_link_hash_entry *h;
2268
2269 h = obj_xcoff_sym_hashes (abfd)[rel->r_symndx];
2270 h->flags |= XCOFF_CALLED;
2271 /* If the symbol name starts with a period, it is
2272 the code of a function. If the symbol is
2273 currently undefined, then add an undefined symbol
2274 for the function descriptor. This should do no
2275 harm, because any regular object that defines the
2276 function should also define the function
2277 descriptor. It helps, because it means that we
2278 will identify the function descriptor with a
2279 dynamic object if a dynamic object defines it. */
2280 if (h->root.root.string[0] == '.'
2281 && h->descriptor == NULL)
2282 {
2283 struct xcoff_link_hash_entry *hds;
2284
2285 hds = xcoff_link_hash_lookup (xcoff_hash_table (info),
2286 h->root.root.string + 1,
2287 true, false, true);
2288 if (hds == NULL)
2289 goto error_return;
2290 if (hds->root.type == bfd_link_hash_new)
2291 {
2292 if (! (_bfd_generic_link_add_one_symbol
2293 (info, abfd, hds->root.root.string,
2294 (flagword) 0, bfd_und_section_ptr,
2295 (bfd_vma) 0, (const char *) NULL, false,
2296 true,
2297 (struct bfd_link_hash_entry **) &hds)))
2298 goto error_return;
2299 }
2300 hds->flags |= XCOFF_DESCRIPTOR;
2301 BFD_ASSERT ((hds->flags & XCOFF_CALLED) == 0
2302 && (h->flags & XCOFF_DESCRIPTOR) == 0);
2303 hds->descriptor = h;
2304 h->descriptor = hds;
2305 }
2306 }
2307 }
2308
2309 free (reloc_info[o->target_index].csects);
2310 reloc_info[o->target_index].csects = NULL;
2311
2312 /* Reset SEC_RELOC and the reloc_count, since the reloc
2313 information is now attached to the csects. */
2314 o->flags &=~ SEC_RELOC;
2315 o->reloc_count = 0;
2316
2317 /* If we are not keeping memory, free the reloc information. */
2318 if (! info->keep_memory
2319 && coff_section_data (abfd, o) != NULL
2320 && coff_section_data (abfd, o)->relocs != NULL
2321 && ! coff_section_data (abfd, o)->keep_relocs)
2322 {
2323 free (coff_section_data (abfd, o)->relocs);
2324 coff_section_data (abfd, o)->relocs = NULL;
2325 }
2326 }
2327
2328 /* Free up the line numbers. FIXME: We could cache these
2329 somewhere for the final link, to avoid reading them again. */
2330 if (reloc_info[o->target_index].linenos != NULL)
2331 {
2332 free (reloc_info[o->target_index].linenos);
2333 reloc_info[o->target_index].linenos = NULL;
2334 }
2335 }
2336
2337 free (reloc_info);
2338
2339 obj_coff_keep_syms (abfd) = keep_syms;
2340
2341 return true;
2342
2343 error_return:
2344 if (reloc_info != NULL)
2345 {
2346 for (o = abfd->sections; o != NULL; o = o->next)
2347 {
2348 if (reloc_info[o->target_index].csects != NULL)
2349 free (reloc_info[o->target_index].csects);
2350 if (reloc_info[o->target_index].linenos != NULL)
2351 free (reloc_info[o->target_index].linenos);
2352 }
2353 free (reloc_info);
2354 }
2355 obj_coff_keep_syms (abfd) = keep_syms;
2356 return false;
2357 }
2358
2359 #undef N_TMASK
2360 #undef N_BTSHFT
2361
2362 /* This function is used to add symbols from a dynamic object to the
2363 global symbol table. */
2364
2365 static boolean
2366 xcoff_link_add_dynamic_symbols (abfd, info)
2367 bfd *abfd;
2368 struct bfd_link_info *info;
2369 {
2370 asection *lsec;
2371 bfd_byte *buf;
2372 struct internal_ldhdr ldhdr;
2373 const char *strings;
2374 struct external_ldsym *elsym, *elsymend;
2375 struct xcoff_import_file *n;
2376 const char *bname;
2377 const char *mname;
2378 const char *s;
2379 unsigned int c;
2380 struct xcoff_import_file **pp;
2381
2382 /* We can only handle a dynamic object if we are generating an XCOFF
2383 output file. */
2384 if (info->hash->creator != abfd->xvec)
2385 {
2386 (*_bfd_error_handler)
2387 ("%s: XCOFF shared object when not producing XCOFF output",
2388 bfd_get_filename (abfd));
2389 bfd_set_error (bfd_error_invalid_operation);
2390 return false;
2391 }
2392
2393 /* The symbols we use from a dynamic object are not the symbols in
2394 the normal symbol table, but, rather, the symbols in the export
2395 table. If there is a global symbol in a dynamic object which is
2396 not in the export table, the loader will not be able to find it,
2397 so we don't want to find it either. Also, on AIX 4.1.3, shr.o in
2398 libc.a has symbols in the export table which are not in the
2399 symbol table. */
2400
2401 /* Read in the .loader section. FIXME: We should really use the
2402 o_snloader field in the a.out header, rather than grabbing the
2403 section by name. */
2404 lsec = bfd_get_section_by_name (abfd, ".loader");
2405 if (lsec == NULL)
2406 {
2407 (*_bfd_error_handler)
2408 ("%s: dynamic object with no .loader section",
2409 bfd_get_filename (abfd));
2410 bfd_set_error (bfd_error_no_symbols);
2411 return false;
2412 }
2413
2414 if (! xcoff_get_section_contents (abfd, lsec))
2415 return false;
2416 buf = coff_section_data (abfd, lsec)->contents;
2417
2418 /* Remove the sections from this object, so that they do not get
2419 included in the link. */
2420 abfd->sections = NULL;
2421
2422 xcoff_swap_ldhdr_in (abfd, (struct external_ldhdr *) buf, &ldhdr);
2423
2424 strings = (char *) buf + ldhdr.l_stoff;
2425
2426 elsym = (struct external_ldsym *) (buf + LDHDRSZ);
2427 elsymend = elsym + ldhdr.l_nsyms;
2428 BFD_ASSERT (sizeof (struct external_ldsym) == LDSYMSZ);
2429 for (; elsym < elsymend; elsym++)
2430 {
2431 struct internal_ldsym ldsym;
2432 char nambuf[SYMNMLEN + 1];
2433 const char *name;
2434 struct xcoff_link_hash_entry *h;
2435
2436 xcoff_swap_ldsym_in (abfd, elsym, &ldsym);
2437
2438 /* We are only interested in exported symbols. */
2439 if ((ldsym.l_smtype & L_EXPORT) == 0)
2440 continue;
2441
2442 if (ldsym._l._l_l._l_zeroes == 0)
2443 name = strings + ldsym._l._l_l._l_offset;
2444 else
2445 {
2446 memcpy (nambuf, ldsym._l._l_name, SYMNMLEN);
2447 nambuf[SYMNMLEN] = '\0';
2448 name = nambuf;
2449 }
2450
2451 /* Normally we could not call xcoff_link_hash_lookup in an add
2452 symbols routine, since we might not be using an XCOFF hash
2453 table. However, we verified above that we are using an XCOFF
2454 hash table. */
2455
2456 h = xcoff_link_hash_lookup (xcoff_hash_table (info), name, true,
2457 true, true);
2458 if (h == NULL)
2459 return false;
2460
2461 h->flags |= XCOFF_DEF_DYNAMIC;
2462
2463 /* If the symbol is undefined, and the BFD it was found in is
2464 not a dynamic object, change the BFD to this dynamic object,
2465 so that we can get the correct import file ID. */
2466 if ((h->root.type == bfd_link_hash_undefined
2467 || h->root.type == bfd_link_hash_undefweak)
2468 && (h->root.u.undef.abfd == NULL
2469 || (h->root.u.undef.abfd->flags & DYNAMIC) == 0))
2470 h->root.u.undef.abfd = abfd;
2471
2472 if (h->root.type == bfd_link_hash_new)
2473 {
2474 h->root.type = bfd_link_hash_undefined;
2475 h->root.u.undef.abfd = abfd;
2476 /* We do not want to add this to the undefined symbol list. */
2477 }
2478
2479 if (h->smclas == XMC_UA
2480 || h->root.type == bfd_link_hash_undefined
2481 || h->root.type == bfd_link_hash_undefweak)
2482 h->smclas = ldsym.l_smclas;
2483
2484 /* Unless this is an XMC_XO symbol, we don't bother to actually
2485 define it, since we don't have a section to put it in anyhow.
2486 Instead, the relocation routines handle the DEF_DYNAMIC flag
2487 correctly. */
2488
2489 if (h->smclas == XMC_XO
2490 && (h->root.type == bfd_link_hash_undefined
2491 || h->root.type == bfd_link_hash_undefweak))
2492 {
2493 /* This symbol has an absolute value. */
2494 h->root.type = bfd_link_hash_defined;
2495 h->root.u.def.section = bfd_abs_section_ptr;
2496 h->root.u.def.value = ldsym.l_value;
2497 }
2498 }
2499
2500 if (buf != NULL && ! coff_section_data (abfd, lsec)->keep_contents)
2501 {
2502 free (coff_section_data (abfd, lsec)->contents);
2503 coff_section_data (abfd, lsec)->contents = NULL;
2504 }
2505
2506 /* Record this file in the import files. */
2507
2508 n = ((struct xcoff_import_file *)
2509 bfd_alloc (abfd, sizeof (struct xcoff_import_file)));
2510 if (n == NULL)
2511 return false;
2512 n->next = NULL;
2513
2514 /* For some reason, the path entry in the import file list for a
2515 shared object appears to always be empty. The file name is the
2516 base name. */
2517 n->path = "";
2518 if (abfd->my_archive == NULL)
2519 {
2520 bname = bfd_get_filename (abfd);
2521 mname = "";
2522 }
2523 else
2524 {
2525 bname = bfd_get_filename (abfd->my_archive);
2526 mname = bfd_get_filename (abfd);
2527 }
2528 s = strrchr (bname, '/');
2529 if (s != NULL)
2530 bname = s + 1;
2531 n->file = bname;
2532 n->member = mname;
2533
2534 /* We start c at 1 because the first import file number is reserved
2535 for LIBPATH. */
2536 for (pp = &xcoff_hash_table (info)->imports, c = 1;
2537 *pp != NULL;
2538 pp = &(*pp)->next, ++c)
2539 ;
2540 *pp = n;
2541
2542 xcoff_data (abfd)->import_file_id = c;
2543
2544 return true;
2545 }
2546 \f
2547 /* Routines that are called after all the input files have been
2548 handled, but before the sections are laid out in memory. */
2549
2550 /* Mark a symbol as not being garbage, including the section in which
2551 it is defined. */
2552
2553 static INLINE boolean
2554 xcoff_mark_symbol (info, h)
2555 struct bfd_link_info *info;
2556 struct xcoff_link_hash_entry *h;
2557 {
2558 if ((h->flags & XCOFF_MARK) != 0)
2559 return true;
2560
2561 h->flags |= XCOFF_MARK;
2562 if (h->root.type == bfd_link_hash_defined
2563 || h->root.type == bfd_link_hash_defweak)
2564 {
2565 asection *hsec;
2566
2567 hsec = h->root.u.def.section;
2568 if ((hsec->flags & SEC_MARK) == 0)
2569 {
2570 if (! xcoff_mark (info, hsec))
2571 return false;
2572 }
2573 }
2574
2575 if (h->toc_section != NULL
2576 && (h->toc_section->flags & SEC_MARK) == 0)
2577 {
2578 if (! xcoff_mark (info, h->toc_section))
2579 return false;
2580 }
2581
2582 return true;
2583 }
2584
2585 /* The mark phase of garbage collection. For a given section, mark
2586 it, and all the sections which define symbols to which it refers.
2587 Because this function needs to look at the relocs, we also count
2588 the number of relocs which need to be copied into the .loader
2589 section. */
2590
2591 static boolean
2592 xcoff_mark (info, sec)
2593 struct bfd_link_info *info;
2594 asection *sec;
2595 {
2596 if ((sec->flags & SEC_MARK) != 0)
2597 return true;
2598
2599 sec->flags |= SEC_MARK;
2600
2601 if (sec->owner->xvec == info->hash->creator
2602 && coff_section_data (sec->owner, sec) != NULL
2603 && xcoff_section_data (sec->owner, sec) != NULL)
2604 {
2605 register struct xcoff_link_hash_entry **hp, **hpend;
2606 struct internal_reloc *rel, *relend;
2607
2608 /* Mark all the symbols in this section. */
2609
2610 hp = (obj_xcoff_sym_hashes (sec->owner)
2611 + xcoff_section_data (sec->owner, sec)->first_symndx);
2612 hpend = (obj_xcoff_sym_hashes (sec->owner)
2613 + xcoff_section_data (sec->owner, sec)->last_symndx);
2614 for (; hp < hpend; hp++)
2615 {
2616 register struct xcoff_link_hash_entry *h;
2617
2618 h = *hp;
2619 if (h != NULL
2620 && (h->flags & XCOFF_MARK) == 0)
2621 {
2622 if (! xcoff_mark_symbol (info, h))
2623 return false;
2624 }
2625 }
2626
2627 /* Look through the section relocs. */
2628
2629 if ((sec->flags & SEC_RELOC) != 0
2630 && sec->reloc_count > 0)
2631 {
2632 rel = xcoff_read_internal_relocs (sec->owner, sec, true,
2633 (bfd_byte *) NULL, false,
2634 (struct internal_reloc *) NULL);
2635 if (rel == NULL)
2636 return false;
2637 relend = rel + sec->reloc_count;
2638 for (; rel < relend; rel++)
2639 {
2640 asection *rsec;
2641 struct xcoff_link_hash_entry *h;
2642
2643 if ((unsigned int) rel->r_symndx
2644 > obj_raw_syment_count (sec->owner))
2645 continue;
2646
2647 h = obj_xcoff_sym_hashes (sec->owner)[rel->r_symndx];
2648 if (h != NULL
2649 && (h->flags & XCOFF_MARK) == 0)
2650 {
2651 if (! xcoff_mark_symbol (info, h))
2652 return false;
2653 }
2654
2655 rsec = xcoff_data (sec->owner)->csects[rel->r_symndx];
2656 if (rsec != NULL
2657 && (rsec->flags & SEC_MARK) == 0)
2658 {
2659 if (! xcoff_mark (info, rsec))
2660 return false;
2661 }
2662
2663 /* See if this reloc needs to be copied into the .loader
2664 section. */
2665 switch (rel->r_type)
2666 {
2667 default:
2668 if (h == NULL
2669 || h->root.type == bfd_link_hash_defined
2670 || h->root.type == bfd_link_hash_defweak
2671 || h->root.type == bfd_link_hash_common
2672 || ((h->flags & XCOFF_CALLED) != 0
2673 && (h->root.type == bfd_link_hash_undefined
2674 || h->root.type == bfd_link_hash_undefweak)
2675 && h->root.root.string[0] == '.'
2676 && h->descriptor != NULL
2677 && ((h->descriptor->flags & XCOFF_DEF_DYNAMIC) != 0
2678 || info->shared
2679 || ((h->descriptor->flags & XCOFF_IMPORT) != 0
2680 && (h->descriptor->flags
2681 & XCOFF_DEF_REGULAR) == 0))))
2682 break;
2683 /* Fall through. */
2684 case R_POS:
2685 case R_NEG:
2686 case R_RL:
2687 case R_RLA:
2688 ++xcoff_hash_table (info)->ldrel_count;
2689 if (h != NULL)
2690 h->flags |= XCOFF_LDREL;
2691 break;
2692 case R_TOC:
2693 case R_GL:
2694 case R_TCL:
2695 case R_TRL:
2696 case R_TRLA:
2697 /* We should never need a .loader reloc for a TOC
2698 relative reloc. */
2699 break;
2700 }
2701 }
2702
2703 if (! info->keep_memory
2704 && coff_section_data (sec->owner, sec) != NULL
2705 && coff_section_data (sec->owner, sec)->relocs != NULL
2706 && ! coff_section_data (sec->owner, sec)->keep_relocs)
2707 {
2708 free (coff_section_data (sec->owner, sec)->relocs);
2709 coff_section_data (sec->owner, sec)->relocs = NULL;
2710 }
2711 }
2712 }
2713
2714 return true;
2715 }
2716
2717 /* The sweep phase of garbage collection. Remove all garbage
2718 sections. */
2719
2720 static void
2721 xcoff_sweep (info)
2722 struct bfd_link_info *info;
2723 {
2724 bfd *sub;
2725
2726 for (sub = info->input_bfds; sub != NULL; sub = sub->link_next)
2727 {
2728 asection *o;
2729
2730 for (o = sub->sections; o != NULL; o = o->next)
2731 {
2732 if ((o->flags & SEC_MARK) == 0)
2733 {
2734 /* Keep all sections from non-XCOFF input files. Keep
2735 special sections. Keep .debug sections for the
2736 moment. */
2737 if (sub->xvec != info->hash->creator
2738 || o == xcoff_hash_table (info)->debug_section
2739 || o == xcoff_hash_table (info)->loader_section
2740 || o == xcoff_hash_table (info)->linkage_section
2741 || o == xcoff_hash_table (info)->toc_section
2742 || o == xcoff_hash_table (info)->descriptor_section
2743 || strcmp (o->name, ".debug") == 0)
2744 o->flags |= SEC_MARK;
2745 else
2746 {
2747 o->_raw_size = 0;
2748 o->reloc_count = 0;
2749 o->lineno_count = 0;
2750 }
2751 }
2752 }
2753 }
2754 }
2755
2756 /* Record the number of elements in a set. This is used to output the
2757 correct csect length. */
2758
2759 boolean
2760 bfd_xcoff_link_record_set (output_bfd, info, harg, size)
2761 bfd *output_bfd;
2762 struct bfd_link_info *info;
2763 struct bfd_link_hash_entry *harg;
2764 bfd_size_type size;
2765 {
2766 struct xcoff_link_hash_entry *h = (struct xcoff_link_hash_entry *) harg;
2767 struct xcoff_link_size_list *n;
2768
2769 if (! XCOFF_XVECP (output_bfd->xvec))
2770 return true;
2771
2772 /* This will hardly ever be called. I don't want to burn four bytes
2773 per global symbol, so instead the size is kept on a linked list
2774 attached to the hash table. */
2775
2776 n = ((struct xcoff_link_size_list *)
2777 bfd_alloc (output_bfd, sizeof (struct xcoff_link_size_list)));
2778 if (n == NULL)
2779 return false;
2780 n->next = xcoff_hash_table (info)->size_list;
2781 n->h = h;
2782 n->size = size;
2783 xcoff_hash_table (info)->size_list = n;
2784
2785 h->flags |= XCOFF_HAS_SIZE;
2786
2787 return true;
2788 }
2789
2790 /* Import a symbol. */
2791
2792 boolean
2793 bfd_xcoff_import_symbol (output_bfd, info, harg, val, imppath, impfile,
2794 impmember)
2795 bfd *output_bfd;
2796 struct bfd_link_info *info;
2797 struct bfd_link_hash_entry *harg;
2798 bfd_vma val;
2799 const char *imppath;
2800 const char *impfile;
2801 const char *impmember;
2802 {
2803 struct xcoff_link_hash_entry *h = (struct xcoff_link_hash_entry *) harg;
2804
2805 if (! XCOFF_XVECP (output_bfd->xvec))
2806 return true;
2807
2808 h->flags |= XCOFF_IMPORT;
2809
2810 if (val != (bfd_vma) -1)
2811 {
2812 if (h->root.type == bfd_link_hash_defined
2813 && (! bfd_is_abs_section (h->root.u.def.section)
2814 || h->root.u.def.value != val))
2815 {
2816 if (! ((*info->callbacks->multiple_definition)
2817 (info, h->root.root.string, h->root.u.def.section->owner,
2818 h->root.u.def.section, h->root.u.def.value,
2819 output_bfd, bfd_abs_section_ptr, val)))
2820 return false;
2821 }
2822
2823 h->root.type = bfd_link_hash_defined;
2824 h->root.u.def.section = bfd_abs_section_ptr;
2825 h->root.u.def.value = val;
2826 }
2827
2828 if (h->ldsym == NULL)
2829 {
2830 h->ldsym = ((struct internal_ldsym *)
2831 bfd_zalloc (output_bfd, sizeof (struct internal_ldsym)));
2832 if (h->ldsym == NULL)
2833 return false;
2834 }
2835
2836 if (imppath == NULL)
2837 h->ldsym->l_ifile = (bfd_size_type) -1;
2838 else
2839 {
2840 unsigned int c;
2841 struct xcoff_import_file **pp;
2842
2843 /* We start c at 1 because the first entry in the import list is
2844 reserved for the library search path. */
2845 for (pp = &xcoff_hash_table (info)->imports, c = 1;
2846 *pp != NULL;
2847 pp = &(*pp)->next, ++c)
2848 {
2849 if (strcmp ((*pp)->path, imppath) == 0
2850 && strcmp ((*pp)->file, impfile) == 0
2851 && strcmp ((*pp)->member, impmember) == 0)
2852 break;
2853 }
2854
2855 if (*pp == NULL)
2856 {
2857 struct xcoff_import_file *n;
2858
2859 n = ((struct xcoff_import_file *)
2860 bfd_alloc (output_bfd, sizeof (struct xcoff_import_file)));
2861 if (n == NULL)
2862 return false;
2863 n->next = NULL;
2864 n->path = imppath;
2865 n->file = impfile;
2866 n->member = impmember;
2867 *pp = n;
2868 }
2869
2870 h->ldsym->l_ifile = c;
2871 }
2872
2873 return true;
2874 }
2875
2876 /* Export a symbol. */
2877
2878 boolean
2879 bfd_xcoff_export_symbol (output_bfd, info, harg, syscall)
2880 bfd *output_bfd;
2881 struct bfd_link_info *info;
2882 struct bfd_link_hash_entry *harg;
2883 boolean syscall;
2884 {
2885 struct xcoff_link_hash_entry *h = (struct xcoff_link_hash_entry *) harg;
2886
2887 if (! XCOFF_XVECP (output_bfd->xvec))
2888 return true;
2889
2890 h->flags |= XCOFF_EXPORT;
2891
2892 /* FIXME: I'm not at all sure what syscall is supposed to mean, so
2893 I'm just going to ignore it until somebody explains it. */
2894
2895 /* See if this is a function descriptor. It may be one even though
2896 it is not so marked. */
2897 if ((h->flags & XCOFF_DESCRIPTOR) == 0
2898 && h->root.root.string[0] != '.')
2899 {
2900 char *fnname;
2901 struct xcoff_link_hash_entry *hfn;
2902
2903 fnname = (char *) bfd_malloc (strlen (h->root.root.string) + 2);
2904 if (fnname == NULL)
2905 return false;
2906 fnname[0] = '.';
2907 strcpy (fnname + 1, h->root.root.string);
2908 hfn = xcoff_link_hash_lookup (xcoff_hash_table (info),
2909 fnname, false, false, true);
2910 free (fnname);
2911 if (hfn != NULL
2912 && hfn->smclas == XMC_PR
2913 && (hfn->root.type == bfd_link_hash_defined
2914 || hfn->root.type == bfd_link_hash_defweak))
2915 {
2916 h->flags |= XCOFF_DESCRIPTOR;
2917 h->descriptor = hfn;
2918 hfn->descriptor = h;
2919 }
2920 }
2921
2922 /* Make sure we don't garbage collect this symbol. */
2923 if (! xcoff_mark_symbol (info, h))
2924 return false;
2925
2926 /* If this is a function descriptor, make sure we don't garbage
2927 collect the associated function code. We normally don't have to
2928 worry about this, because the descriptor will be attached to a
2929 section with relocs, but if we are creating the descriptor
2930 ourselves those relocs will not be visible to the mark code. */
2931 if ((h->flags & XCOFF_DESCRIPTOR) != 0)
2932 {
2933 if (! xcoff_mark_symbol (info, h->descriptor))
2934 return false;
2935 }
2936
2937 return true;
2938 }
2939
2940 /* Count a reloc against a symbol. This is called for relocs
2941 generated by the linker script, typically for global constructors
2942 and destructors. */
2943
2944 boolean
2945 bfd_xcoff_link_count_reloc (output_bfd, info, name)
2946 bfd *output_bfd;
2947 struct bfd_link_info *info;
2948 const char *name;
2949 {
2950 struct xcoff_link_hash_entry *h;
2951
2952 if (! XCOFF_XVECP (output_bfd->xvec))
2953 return true;
2954
2955 h = ((struct xcoff_link_hash_entry *)
2956 bfd_wrapped_link_hash_lookup (output_bfd, info, name, false, false,
2957 false));
2958 if (h == NULL)
2959 {
2960 (*_bfd_error_handler) ("%s: no such symbol", name);
2961 bfd_set_error (bfd_error_no_symbols);
2962 return false;
2963 }
2964
2965 h->flags |= XCOFF_REF_REGULAR | XCOFF_LDREL;
2966 ++xcoff_hash_table (info)->ldrel_count;
2967
2968 /* Mark the symbol to avoid garbage collection. */
2969 if (! xcoff_mark_symbol (info, h))
2970 return false;
2971
2972 return true;
2973 }
2974
2975 /* This function is called for each symbol to which the linker script
2976 assigns a value. */
2977
2978 boolean
2979 bfd_xcoff_record_link_assignment (output_bfd, info, name)
2980 bfd *output_bfd;
2981 struct bfd_link_info *info;
2982 const char *name;
2983 {
2984 struct xcoff_link_hash_entry *h;
2985
2986 if (! XCOFF_XVECP (output_bfd->xvec))
2987 return true;
2988
2989 h = xcoff_link_hash_lookup (xcoff_hash_table (info), name, true, true,
2990 false);
2991 if (h == NULL)
2992 return false;
2993
2994 h->flags |= XCOFF_DEF_REGULAR;
2995
2996 return true;
2997 }
2998
2999 /* This structure is used to pass information through
3000 xcoff_link_hash_traverse. */
3001
3002 struct xcoff_loader_info
3003 {
3004 /* Set if a problem occurred. */
3005 boolean failed;
3006 /* Output BFD. */
3007 bfd *output_bfd;
3008 /* Link information structure. */
3009 struct bfd_link_info *info;
3010 /* Whether all defined symbols should be exported. */
3011 boolean export_defineds;
3012 /* Number of ldsym structures. */
3013 size_t ldsym_count;
3014 /* Size of string table. */
3015 size_t string_size;
3016 /* String table. */
3017 bfd_byte *strings;
3018 /* Allocated size of string table. */
3019 size_t string_alc;
3020 };
3021
3022 /* Build the .loader section. This is called by the XCOFF linker
3023 emulation before_allocation routine. We must set the size of the
3024 .loader section before the linker lays out the output file.
3025 LIBPATH is the library path to search for shared objects; this is
3026 normally built from the -L arguments passed to the linker. ENTRY
3027 is the name of the entry point symbol (the -e linker option).
3028 FILE_ALIGN is the alignment to use for sections within the file
3029 (the -H linker option). MAXSTACK is the maximum stack size (the
3030 -bmaxstack linker option). MAXDATA is the maximum data size (the
3031 -bmaxdata linker option). GC is whether to do garbage collection
3032 (the -bgc linker option). MODTYPE is the module type (the
3033 -bmodtype linker option). TEXTRO is whether the text section must
3034 be read only (the -btextro linker option). EXPORT_DEFINEDS is
3035 whether all defined symbols should be exported (the -unix linker
3036 option). SPECIAL_SECTIONS is set by this routine to csects with
3037 magic names like _end. */
3038
3039 boolean
3040 bfd_xcoff_size_dynamic_sections (output_bfd, info, libpath, entry,
3041 file_align, maxstack, maxdata, gc,
3042 modtype, textro, export_defineds,
3043 special_sections)
3044 bfd *output_bfd;
3045 struct bfd_link_info *info;
3046 const char *libpath;
3047 const char *entry;
3048 unsigned long file_align;
3049 unsigned long maxstack;
3050 unsigned long maxdata;
3051 boolean gc;
3052 int modtype;
3053 boolean textro;
3054 boolean export_defineds;
3055 asection **special_sections;
3056 {
3057 struct xcoff_link_hash_entry *hentry;
3058 asection *lsec;
3059 struct xcoff_loader_info ldinfo;
3060 int i;
3061 size_t impsize, impcount;
3062 struct xcoff_import_file *fl;
3063 struct internal_ldhdr *ldhdr;
3064 bfd_size_type stoff;
3065 register char *out;
3066 asection *sec;
3067 bfd *sub;
3068 struct bfd_strtab_hash *debug_strtab;
3069 bfd_byte *debug_contents = NULL;
3070
3071 if (! XCOFF_XVECP (output_bfd->xvec))
3072 {
3073 for (i = 0; i < 6; i++)
3074 special_sections[i] = NULL;
3075 return true;
3076 }
3077
3078 ldinfo.failed = false;
3079 ldinfo.output_bfd = output_bfd;
3080 ldinfo.info = info;
3081 ldinfo.export_defineds = export_defineds;
3082 ldinfo.ldsym_count = 0;
3083 ldinfo.string_size = 0;
3084 ldinfo.strings = NULL;
3085 ldinfo.string_alc = 0;
3086
3087 xcoff_data (output_bfd)->maxstack = maxstack;
3088 xcoff_data (output_bfd)->maxdata = maxdata;
3089 xcoff_data (output_bfd)->modtype = modtype;
3090
3091 xcoff_hash_table (info)->file_align = file_align;
3092 xcoff_hash_table (info)->textro = textro;
3093
3094 hentry = xcoff_link_hash_lookup (xcoff_hash_table (info), entry,
3095 false, false, true);
3096 if (hentry != NULL)
3097 hentry->flags |= XCOFF_ENTRY;
3098
3099 /* Garbage collect unused sections. */
3100 if (info->relocateable
3101 || ! gc
3102 || hentry == NULL
3103 || (hentry->root.type != bfd_link_hash_defined
3104 && hentry->root.type != bfd_link_hash_defweak))
3105 {
3106 gc = false;
3107 xcoff_hash_table (info)->gc = false;
3108
3109 /* We still need to call xcoff_mark, in order to set ldrel_count
3110 correctly. */
3111 for (sub = info->input_bfds; sub != NULL; sub = sub->link_next)
3112 {
3113 asection *o;
3114
3115 for (o = sub->sections; o != NULL; o = o->next)
3116 {
3117 if ((o->flags & SEC_MARK) == 0)
3118 {
3119 if (! xcoff_mark (info, o))
3120 goto error_return;
3121 }
3122 }
3123 }
3124 }
3125 else
3126 {
3127 if (! xcoff_mark (info, hentry->root.u.def.section))
3128 goto error_return;
3129 xcoff_sweep (info);
3130 xcoff_hash_table (info)->gc = true;
3131 }
3132
3133 /* Return special sections to the caller. */
3134 for (i = 0; i < 6; i++)
3135 {
3136 asection *sec;
3137
3138 sec = xcoff_hash_table (info)->special_sections[i];
3139 if (sec != NULL
3140 && gc
3141 && (sec->flags & SEC_MARK) == 0)
3142 sec = NULL;
3143 special_sections[i] = sec;
3144 }
3145
3146 if (info->input_bfds == NULL)
3147 {
3148 /* I'm not sure what to do in this bizarre case. */
3149 return true;
3150 }
3151
3152 xcoff_link_hash_traverse (xcoff_hash_table (info), xcoff_build_ldsyms,
3153 (PTR) &ldinfo);
3154 if (ldinfo.failed)
3155 goto error_return;
3156
3157 /* Work out the size of the import file names. Each import file ID
3158 consists of three null terminated strings: the path, the file
3159 name, and the archive member name. The first entry in the list
3160 of names is the path to use to find objects, which the linker has
3161 passed in as the libpath argument. For some reason, the path
3162 entry in the other import file names appears to always be empty. */
3163 impsize = strlen (libpath) + 3;
3164 impcount = 1;
3165 for (fl = xcoff_hash_table (info)->imports; fl != NULL; fl = fl->next)
3166 {
3167 ++impcount;
3168 impsize += (strlen (fl->path)
3169 + strlen (fl->file)
3170 + strlen (fl->member)
3171 + 3);
3172 }
3173
3174 /* Set up the .loader section header. */
3175 ldhdr = &xcoff_hash_table (info)->ldhdr;
3176 ldhdr->l_version = 1;
3177 ldhdr->l_nsyms = ldinfo.ldsym_count;
3178 ldhdr->l_nreloc = xcoff_hash_table (info)->ldrel_count;
3179 ldhdr->l_istlen = impsize;
3180 ldhdr->l_nimpid = impcount;
3181 ldhdr->l_impoff = (LDHDRSZ
3182 + ldhdr->l_nsyms * LDSYMSZ
3183 + ldhdr->l_nreloc * LDRELSZ);
3184 ldhdr->l_stlen = ldinfo.string_size;
3185 stoff = ldhdr->l_impoff + impsize;
3186 if (ldinfo.string_size == 0)
3187 ldhdr->l_stoff = 0;
3188 else
3189 ldhdr->l_stoff = stoff;
3190
3191 /* We now know the final size of the .loader section. Allocate
3192 space for it. */
3193 lsec = xcoff_hash_table (info)->loader_section;
3194 lsec->_raw_size = stoff + ldhdr->l_stlen;
3195 lsec->contents = (bfd_byte *) bfd_zalloc (output_bfd, lsec->_raw_size);
3196 if (lsec->contents == NULL)
3197 goto error_return;
3198
3199 /* Set up the header. */
3200 xcoff_swap_ldhdr_out (output_bfd, ldhdr,
3201 (struct external_ldhdr *) lsec->contents);
3202
3203 /* Set up the import file names. */
3204 out = (char *) lsec->contents + ldhdr->l_impoff;
3205 strcpy (out, libpath);
3206 out += strlen (libpath) + 1;
3207 *out++ = '\0';
3208 *out++ = '\0';
3209 for (fl = xcoff_hash_table (info)->imports; fl != NULL; fl = fl->next)
3210 {
3211 register const char *s;
3212
3213 s = fl->path;
3214 while ((*out++ = *s++) != '\0')
3215 ;
3216 s = fl->file;
3217 while ((*out++ = *s++) != '\0')
3218 ;
3219 s = fl->member;
3220 while ((*out++ = *s++) != '\0')
3221 ;
3222 }
3223
3224 BFD_ASSERT ((bfd_size_type) ((bfd_byte *) out - lsec->contents) == stoff);
3225
3226 /* Set up the symbol string table. */
3227 if (ldinfo.string_size > 0)
3228 {
3229 memcpy (out, ldinfo.strings, ldinfo.string_size);
3230 free (ldinfo.strings);
3231 ldinfo.strings = NULL;
3232 }
3233
3234 /* We can't set up the symbol table or the relocs yet, because we
3235 don't yet know the final position of the various sections. The
3236 .loader symbols are written out when the corresponding normal
3237 symbols are written out in xcoff_link_input_bfd or
3238 xcoff_write_global_symbol. The .loader relocs are written out
3239 when the corresponding normal relocs are handled in
3240 xcoff_link_input_bfd. */
3241
3242 /* Allocate space for the magic sections. */
3243 sec = xcoff_hash_table (info)->linkage_section;
3244 if (sec->_raw_size > 0)
3245 {
3246 sec->contents = (bfd_byte *) bfd_zalloc (output_bfd, sec->_raw_size);
3247 if (sec->contents == NULL)
3248 goto error_return;
3249 }
3250 sec = xcoff_hash_table (info)->toc_section;
3251 if (sec->_raw_size > 0)
3252 {
3253 sec->contents = (bfd_byte *) bfd_zalloc (output_bfd, sec->_raw_size);
3254 if (sec->contents == NULL)
3255 goto error_return;
3256 }
3257 sec = xcoff_hash_table (info)->descriptor_section;
3258 if (sec->_raw_size > 0)
3259 {
3260 sec->contents = (bfd_byte *) bfd_zalloc (output_bfd, sec->_raw_size);
3261 if (sec->contents == NULL)
3262 goto error_return;
3263 }
3264
3265 /* Now that we've done garbage collection, figure out the contents
3266 of the .debug section. */
3267 debug_strtab = xcoff_hash_table (info)->debug_strtab;
3268
3269 for (sub = info->input_bfds; sub != NULL; sub = sub->link_next)
3270 {
3271 asection *subdeb;
3272 bfd_size_type symcount;
3273 unsigned long *debug_index;
3274 asection **csectpp;
3275 bfd_byte *esym, *esymend;
3276 bfd_size_type symesz;
3277
3278 if (sub->xvec != info->hash->creator)
3279 continue;
3280 subdeb = bfd_get_section_by_name (sub, ".debug");
3281 if (subdeb == NULL || subdeb->_raw_size == 0)
3282 continue;
3283
3284 if (info->strip == strip_all
3285 || info->strip == strip_debugger
3286 || info->discard == discard_all)
3287 {
3288 subdeb->_raw_size = 0;
3289 continue;
3290 }
3291
3292 if (! _bfd_coff_get_external_symbols (sub))
3293 goto error_return;
3294
3295 symcount = obj_raw_syment_count (sub);
3296 debug_index = ((unsigned long *)
3297 bfd_zalloc (sub, symcount * sizeof (unsigned long)));
3298 if (debug_index == NULL)
3299 goto error_return;
3300 xcoff_data (sub)->debug_indices = debug_index;
3301
3302 /* Grab the contents of the .debug section. We use malloc and
3303 copy the neams into the debug stringtab, rather than
3304 bfd_alloc, because I expect that, when linking many files
3305 together, many of the strings will be the same. Storing the
3306 strings in the hash table should save space in this case. */
3307 debug_contents = (bfd_byte *) bfd_malloc (subdeb->_raw_size);
3308 if (debug_contents == NULL)
3309 goto error_return;
3310 if (! bfd_get_section_contents (sub, subdeb, (PTR) debug_contents,
3311 (file_ptr) 0, subdeb->_raw_size))
3312 goto error_return;
3313
3314 csectpp = xcoff_data (sub)->csects;
3315
3316 symesz = bfd_coff_symesz (sub);
3317 esym = (bfd_byte *) obj_coff_external_syms (sub);
3318 esymend = esym + symcount * symesz;
3319 while (esym < esymend)
3320 {
3321 struct internal_syment sym;
3322
3323 bfd_coff_swap_sym_in (sub, (PTR) esym, (PTR) &sym);
3324
3325 *debug_index = (unsigned long) -1;
3326
3327 if (sym._n._n_n._n_zeroes == 0
3328 && *csectpp != NULL
3329 && (! gc
3330 || ((*csectpp)->flags & SEC_MARK) != 0
3331 || *csectpp == bfd_abs_section_ptr)
3332 && bfd_coff_symname_in_debug (sub, &sym))
3333 {
3334 char *name;
3335 bfd_size_type indx;
3336
3337 name = (char *) debug_contents + sym._n._n_n._n_offset;
3338 indx = _bfd_stringtab_add (debug_strtab, name, true, true);
3339 if (indx == (bfd_size_type) -1)
3340 goto error_return;
3341 *debug_index = indx;
3342 }
3343
3344 esym += (sym.n_numaux + 1) * symesz;
3345 csectpp += sym.n_numaux + 1;
3346 debug_index += sym.n_numaux + 1;
3347 }
3348
3349 free (debug_contents);
3350 debug_contents = NULL;
3351
3352 /* Clear the size of subdeb, so that it is not included directly
3353 in the output file. */
3354 subdeb->_raw_size = 0;
3355
3356 if (! info->keep_memory)
3357 {
3358 if (! _bfd_coff_free_symbols (sub))
3359 goto error_return;
3360 }
3361 }
3362
3363 xcoff_hash_table (info)->debug_section->_raw_size =
3364 _bfd_stringtab_size (debug_strtab);
3365
3366 return true;
3367
3368 error_return:
3369 if (ldinfo.strings != NULL)
3370 free (ldinfo.strings);
3371 if (debug_contents != NULL)
3372 free (debug_contents);
3373 return false;
3374 }
3375
3376 /* Add a symbol to the .loader symbols, if necessary. */
3377
3378 static boolean
3379 xcoff_build_ldsyms (h, p)
3380 struct xcoff_link_hash_entry *h;
3381 PTR p;
3382 {
3383 struct xcoff_loader_info *ldinfo = (struct xcoff_loader_info *) p;
3384 size_t len;
3385
3386 /* If this is a final link, and the symbol was defined as a common
3387 symbol in a regular object file, and there was no definition in
3388 any dynamic object, then the linker will have allocated space for
3389 the symbol in a common section but the XCOFF_DEF_REGULAR flag
3390 will not have been set. */
3391 if (h->root.type == bfd_link_hash_defined
3392 && (h->flags & XCOFF_DEF_REGULAR) == 0
3393 && (h->flags & XCOFF_REF_REGULAR) != 0
3394 && (h->flags & XCOFF_DEF_DYNAMIC) == 0
3395 && (h->root.u.def.section->owner->flags & DYNAMIC) == 0)
3396 h->flags |= XCOFF_DEF_REGULAR;
3397
3398 /* If all defined symbols should be exported, mark them now. We
3399 don't want to export the actual functions, just the function
3400 descriptors. */
3401 if (ldinfo->export_defineds
3402 && (h->flags & XCOFF_DEF_REGULAR) != 0
3403 && h->root.root.string[0] != '.')
3404 h->flags |= XCOFF_EXPORT;
3405
3406 /* We don't want to garbage collect symbols which are not defined in
3407 XCOFF files. This is a convenient place to mark them. */
3408 if (xcoff_hash_table (ldinfo->info)->gc
3409 && (h->flags & XCOFF_MARK) == 0
3410 && (h->root.type == bfd_link_hash_defined
3411 || h->root.type == bfd_link_hash_defweak)
3412 && (h->root.u.def.section->owner == NULL
3413 || (h->root.u.def.section->owner->xvec
3414 != ldinfo->info->hash->creator)))
3415 h->flags |= XCOFF_MARK;
3416
3417 /* If this symbol is called and defined in a dynamic object, or not
3418 defined at all when building a shared object, or imported, then
3419 we need to set up global linkage code for it. (Unless we did
3420 garbage collection and we didn't need this symbol.) */
3421 if ((h->flags & XCOFF_CALLED) != 0
3422 && (h->root.type == bfd_link_hash_undefined
3423 || h->root.type == bfd_link_hash_undefweak)
3424 && h->root.root.string[0] == '.'
3425 && h->descriptor != NULL
3426 && ((h->descriptor->flags & XCOFF_DEF_DYNAMIC) != 0
3427 || ldinfo->info->shared
3428 || ((h->descriptor->flags & XCOFF_IMPORT) != 0
3429 && (h->descriptor->flags & XCOFF_DEF_REGULAR) == 0))
3430 && (! xcoff_hash_table (ldinfo->info)->gc
3431 || (h->flags & XCOFF_MARK) != 0))
3432 {
3433 asection *sec;
3434 struct xcoff_link_hash_entry *hds;
3435
3436 sec = xcoff_hash_table (ldinfo->info)->linkage_section;
3437 h->root.type = bfd_link_hash_defined;
3438 h->root.u.def.section = sec;
3439 h->root.u.def.value = sec->_raw_size;
3440 h->smclas = XMC_GL;
3441 h->flags |= XCOFF_DEF_REGULAR;
3442 sec->_raw_size += XCOFF_GLINK_SIZE;
3443
3444 /* The global linkage code requires a TOC entry for the
3445 descriptor. */
3446 hds = h->descriptor;
3447 BFD_ASSERT ((hds->root.type == bfd_link_hash_undefined
3448 || hds->root.type == bfd_link_hash_undefweak)
3449 && (hds->flags & XCOFF_DEF_REGULAR) == 0);
3450 hds->flags |= XCOFF_MARK;
3451 if (hds->toc_section == NULL)
3452 {
3453 hds->toc_section = xcoff_hash_table (ldinfo->info)->toc_section;
3454 hds->u.toc_offset = hds->toc_section->_raw_size;
3455 hds->toc_section->_raw_size += 4;
3456 ++xcoff_hash_table (ldinfo->info)->ldrel_count;
3457 ++hds->toc_section->reloc_count;
3458 hds->indx = -2;
3459 hds->flags |= XCOFF_SET_TOC | XCOFF_LDREL;
3460
3461 /* We need to call xcoff_build_ldsyms recursively here,
3462 because we may already have passed hds on the traversal. */
3463 xcoff_build_ldsyms (hds, p);
3464 }
3465 }
3466
3467 /* If this symbol is exported, but not defined, we need to try to
3468 define it. */
3469 if ((h->flags & XCOFF_EXPORT) != 0
3470 && (h->flags & XCOFF_IMPORT) == 0
3471 && (h->flags & XCOFF_DEF_REGULAR) == 0
3472 && (h->flags & XCOFF_DEF_DYNAMIC) == 0
3473 && (h->root.type == bfd_link_hash_undefined
3474 || h->root.type == bfd_link_hash_undefweak))
3475 {
3476 if ((h->flags & XCOFF_DESCRIPTOR) != 0
3477 && (h->descriptor->root.type == bfd_link_hash_defined
3478 || h->descriptor->root.type == bfd_link_hash_defweak))
3479 {
3480 asection *sec;
3481
3482 /* This is an undefined function descriptor associated with
3483 a defined entry point. We can build up a function
3484 descriptor ourselves. Believe it or not, the AIX linker
3485 actually does this, and there are cases where we need to
3486 do it as well. */
3487 sec = xcoff_hash_table (ldinfo->info)->descriptor_section;
3488 h->root.type = bfd_link_hash_defined;
3489 h->root.u.def.section = sec;
3490 h->root.u.def.value = sec->_raw_size;
3491 h->smclas = XMC_DS;
3492 h->flags |= XCOFF_DEF_REGULAR;
3493 sec->_raw_size += 12;
3494
3495 /* A function descriptor uses two relocs: one for the
3496 associated code, and one for the TOC address. */
3497 xcoff_hash_table (ldinfo->info)->ldrel_count += 2;
3498 sec->reloc_count += 2;
3499
3500 /* We handle writing out the contents of the descriptor in
3501 xcoff_write_global_symbol. */
3502 }
3503 else
3504 {
3505 (*_bfd_error_handler)
3506 ("warning: attempt to export undefined symbol `%s'",
3507 h->root.root.string);
3508 h->ldsym = NULL;
3509 return true;
3510 }
3511 }
3512
3513 /* If this is still a common symbol, and it wasn't garbage
3514 collected, we need to actually allocate space for it in the .bss
3515 section. */
3516 if (h->root.type == bfd_link_hash_common
3517 && (! xcoff_hash_table (ldinfo->info)->gc
3518 || (h->flags & XCOFF_MARK) != 0)
3519 && h->root.u.c.p->section->_raw_size == 0)
3520 {
3521 BFD_ASSERT (bfd_is_com_section (h->root.u.c.p->section));
3522 h->root.u.c.p->section->_raw_size = h->root.u.c.size;
3523 }
3524
3525 /* We need to add a symbol to the .loader section if it is mentioned
3526 in a reloc which we are copying to the .loader section and it was
3527 not defined or common, or if it is the entry point, or if it is
3528 being exported. */
3529
3530 if (((h->flags & XCOFF_LDREL) == 0
3531 || h->root.type == bfd_link_hash_defined
3532 || h->root.type == bfd_link_hash_defweak
3533 || h->root.type == bfd_link_hash_common)
3534 && (h->flags & XCOFF_ENTRY) == 0
3535 && (h->flags & XCOFF_EXPORT) == 0)
3536 {
3537 h->ldsym = NULL;
3538 return true;
3539 }
3540
3541 /* We don't need to add this symbol if we did garbage collection and
3542 we did not mark this symbol. */
3543 if (xcoff_hash_table (ldinfo->info)->gc
3544 && (h->flags & XCOFF_MARK) == 0)
3545 {
3546 h->ldsym = NULL;
3547 return true;
3548 }
3549
3550 /* We may have already processed this symbol due to the recursive
3551 call above. */
3552 if ((h->flags & XCOFF_BUILT_LDSYM) != 0)
3553 return true;
3554
3555 /* We need to add this symbol to the .loader symbols. */
3556
3557 /* h->ldsym will already have been allocated for an explicitly
3558 imported symbol. */
3559 if (h->ldsym == NULL)
3560 {
3561 h->ldsym = ((struct internal_ldsym *)
3562 bfd_zalloc (ldinfo->output_bfd,
3563 sizeof (struct internal_ldsym)));
3564 if (h->ldsym == NULL)
3565 {
3566 ldinfo->failed = true;
3567 return false;
3568 }
3569 }
3570
3571 /* The first 3 symbol table indices are reserved to indicate the
3572 sections. */
3573 h->ldindx = ldinfo->ldsym_count + 3;
3574
3575 ++ldinfo->ldsym_count;
3576
3577 len = strlen (h->root.root.string);
3578 if (len <= SYMNMLEN)
3579 strncpy (h->ldsym->_l._l_name, h->root.root.string, SYMNMLEN);
3580 else
3581 {
3582 if (ldinfo->string_size + len + 3 > ldinfo->string_alc)
3583 {
3584 size_t newalc;
3585 bfd_byte *newstrings;
3586
3587 newalc = ldinfo->string_alc * 2;
3588 if (newalc == 0)
3589 newalc = 32;
3590 while (ldinfo->string_size + len + 3 > newalc)
3591 newalc *= 2;
3592
3593 newstrings = ((bfd_byte *)
3594 bfd_realloc ((PTR) ldinfo->strings, newalc));
3595 if (newstrings == NULL)
3596 {
3597 ldinfo->failed = true;
3598 return false;
3599 }
3600 ldinfo->string_alc = newalc;
3601 ldinfo->strings = newstrings;
3602 }
3603
3604 bfd_put_16 (ldinfo->output_bfd, len + 1,
3605 ldinfo->strings + ldinfo->string_size);
3606 strcpy (ldinfo->strings + ldinfo->string_size + 2, h->root.root.string);
3607 h->ldsym->_l._l_l._l_zeroes = 0;
3608 h->ldsym->_l._l_l._l_offset = ldinfo->string_size + 2;
3609 ldinfo->string_size += len + 3;
3610 }
3611
3612 h->flags |= XCOFF_BUILT_LDSYM;
3613
3614 return true;
3615 }
3616 \f
3617 /* Do the final link step. */
3618
3619 boolean
3620 _bfd_xcoff_bfd_final_link (abfd, info)
3621 bfd *abfd;
3622 struct bfd_link_info *info;
3623 {
3624 bfd_size_type symesz;
3625 struct xcoff_final_link_info finfo;
3626 asection *o;
3627 struct bfd_link_order *p;
3628 size_t max_contents_size;
3629 size_t max_sym_count;
3630 size_t max_lineno_count;
3631 size_t max_reloc_count;
3632 size_t max_output_reloc_count;
3633 file_ptr rel_filepos;
3634 unsigned int relsz;
3635 file_ptr line_filepos;
3636 unsigned int linesz;
3637 bfd *sub;
3638 bfd_byte *external_relocs = NULL;
3639 char strbuf[STRING_SIZE_SIZE];
3640
3641 if (info->shared)
3642 abfd->flags |= DYNAMIC;
3643
3644 symesz = bfd_coff_symesz (abfd);
3645
3646 finfo.info = info;
3647 finfo.output_bfd = abfd;
3648 finfo.strtab = NULL;
3649 finfo.section_info = NULL;
3650 finfo.last_file_index = -1;
3651 finfo.toc_symindx = -1;
3652 finfo.internal_syms = NULL;
3653 finfo.sym_indices = NULL;
3654 finfo.outsyms = NULL;
3655 finfo.linenos = NULL;
3656 finfo.contents = NULL;
3657 finfo.external_relocs = NULL;
3658
3659 finfo.ldsym = ((struct external_ldsym *)
3660 (xcoff_hash_table (info)->loader_section->contents
3661 + LDHDRSZ));
3662 finfo.ldrel = ((struct external_ldrel *)
3663 (xcoff_hash_table (info)->loader_section->contents
3664 + LDHDRSZ
3665 + xcoff_hash_table (info)->ldhdr.l_nsyms * LDSYMSZ));
3666
3667 xcoff_data (abfd)->coff.link_info = info;
3668
3669 finfo.strtab = _bfd_stringtab_init ();
3670 if (finfo.strtab == NULL)
3671 goto error_return;
3672
3673 /* Count the line number and relocation entries required for the
3674 output file. Determine a few maximum sizes. */
3675 max_contents_size = 0;
3676 max_lineno_count = 0;
3677 max_reloc_count = 0;
3678 for (o = abfd->sections; o != NULL; o = o->next)
3679 {
3680 o->reloc_count = 0;
3681 o->lineno_count = 0;
3682 for (p = o->link_order_head; p != NULL; p = p->next)
3683 {
3684 if (p->type == bfd_indirect_link_order)
3685 {
3686 asection *sec;
3687
3688 sec = p->u.indirect.section;
3689
3690 /* Mark all sections which are to be included in the
3691 link. This will normally be every section. We need
3692 to do this so that we can identify any sections which
3693 the linker has decided to not include. */
3694 sec->linker_mark = true;
3695
3696 if (info->strip == strip_none
3697 || info->strip == strip_some)
3698 o->lineno_count += sec->lineno_count;
3699
3700 o->reloc_count += sec->reloc_count;
3701
3702 if (sec->_raw_size > max_contents_size)
3703 max_contents_size = sec->_raw_size;
3704 if (sec->lineno_count > max_lineno_count)
3705 max_lineno_count = sec->lineno_count;
3706 if (coff_section_data (sec->owner, sec) != NULL
3707 && xcoff_section_data (sec->owner, sec) != NULL
3708 && (xcoff_section_data (sec->owner, sec)->lineno_count
3709 > max_lineno_count))
3710 max_lineno_count =
3711 xcoff_section_data (sec->owner, sec)->lineno_count;
3712 if (sec->reloc_count > max_reloc_count)
3713 max_reloc_count = sec->reloc_count;
3714 }
3715 else if (p->type == bfd_section_reloc_link_order
3716 || p->type == bfd_symbol_reloc_link_order)
3717 ++o->reloc_count;
3718 }
3719 }
3720
3721 /* Compute the file positions for all the sections. */
3722 if (abfd->output_has_begun)
3723 {
3724 if (xcoff_hash_table (info)->file_align != 0)
3725 abort ();
3726 }
3727 else
3728 {
3729 bfd_vma file_align;
3730
3731 file_align = xcoff_hash_table (info)->file_align;
3732 if (file_align != 0)
3733 {
3734 boolean saw_contents;
3735 int indx;
3736 asection **op;
3737 file_ptr sofar;
3738
3739 /* Insert .pad sections before every section which has
3740 contents and is loaded, if it is preceded by some other
3741 section which has contents and is loaded. */
3742 saw_contents = true;
3743 for (op = &abfd->sections; *op != NULL; op = &(*op)->next)
3744 {
3745 (*op)->target_index = indx;
3746 if (strcmp ((*op)->name, ".pad") == 0)
3747 saw_contents = false;
3748 else if (((*op)->flags & SEC_HAS_CONTENTS) != 0
3749 && ((*op)->flags & SEC_LOAD) != 0)
3750 {
3751 if (! saw_contents)
3752 saw_contents = true;
3753 else
3754 {
3755 asection *n, *hold;
3756
3757 hold = *op;
3758 *op = NULL;
3759 n = bfd_make_section_anyway (abfd, ".pad");
3760 BFD_ASSERT (*op == n);
3761 n->next = hold;
3762 n->flags = SEC_HAS_CONTENTS;
3763 n->alignment_power = 0;
3764 saw_contents = false;
3765 }
3766 }
3767 }
3768
3769 /* Reset the section indices after inserting the new
3770 sections. */
3771 indx = 0;
3772 for (o = abfd->sections; o != NULL; o = o->next)
3773 {
3774 ++indx;
3775 o->target_index = indx;
3776 }
3777 BFD_ASSERT ((unsigned int) indx == abfd->section_count);
3778
3779 /* Work out appropriate sizes for the .pad sections to force
3780 each section to land on a page boundary. This bit of
3781 code knows what compute_section_file_positions is going
3782 to do. */
3783 sofar = bfd_coff_filhsz (abfd);
3784 sofar += bfd_coff_aoutsz (abfd);
3785 sofar += abfd->section_count * bfd_coff_scnhsz (abfd);
3786 for (o = abfd->sections; o != NULL; o = o->next)
3787 if (o->reloc_count >= 0xffff || o->lineno_count >= 0xffff)
3788 sofar += bfd_coff_scnhsz (abfd);
3789
3790 for (o = abfd->sections; o != NULL; o = o->next)
3791 {
3792 if (strcmp (o->name, ".pad") == 0)
3793 {
3794 bfd_vma pageoff;
3795
3796 BFD_ASSERT (o->_raw_size == 0);
3797 pageoff = sofar & (file_align - 1);
3798 if (pageoff != 0)
3799 {
3800 o->_raw_size = file_align - pageoff;
3801 sofar += file_align - pageoff;
3802 o->flags |= SEC_HAS_CONTENTS;
3803 }
3804 }
3805 else
3806 {
3807 if ((o->flags & SEC_HAS_CONTENTS) != 0)
3808 sofar += BFD_ALIGN (o->_raw_size,
3809 1 << o->alignment_power);
3810 }
3811 }
3812 }
3813
3814 bfd_coff_compute_section_file_positions (abfd);
3815 }
3816
3817 /* Allocate space for the pointers we need to keep for the relocs. */
3818 {
3819 unsigned int i;
3820
3821 /* We use section_count + 1, rather than section_count, because
3822 the target_index fields are 1 based. */
3823 finfo.section_info =
3824 ((struct xcoff_link_section_info *)
3825 bfd_malloc ((abfd->section_count + 1)
3826 * sizeof (struct xcoff_link_section_info)));
3827 if (finfo.section_info == NULL)
3828 goto error_return;
3829 for (i = 0; i <= abfd->section_count; i++)
3830 {
3831 finfo.section_info[i].relocs = NULL;
3832 finfo.section_info[i].rel_hashes = NULL;
3833 finfo.section_info[i].toc_rel_hashes = NULL;
3834 }
3835 }
3836
3837 /* Set the file positions for the relocs. */
3838 rel_filepos = obj_relocbase (abfd);
3839 relsz = bfd_coff_relsz (abfd);
3840 max_output_reloc_count = 0;
3841 for (o = abfd->sections; o != NULL; o = o->next)
3842 {
3843 if (o->reloc_count == 0)
3844 o->rel_filepos = 0;
3845 else
3846 {
3847 o->flags |= SEC_RELOC;
3848 o->rel_filepos = rel_filepos;
3849 rel_filepos += o->reloc_count * relsz;
3850
3851 /* We don't know the indices of global symbols until we have
3852 written out all the local symbols. For each section in
3853 the output file, we keep an array of pointers to hash
3854 table entries. Each entry in the array corresponds to a
3855 reloc. When we find a reloc against a global symbol, we
3856 set the corresponding entry in this array so that we can
3857 fix up the symbol index after we have written out all the
3858 local symbols.
3859
3860 Because of this problem, we also keep the relocs in
3861 memory until the end of the link. This wastes memory.
3862 We could backpatch the file later, I suppose, although it
3863 would be slow. */
3864 finfo.section_info[o->target_index].relocs =
3865 ((struct internal_reloc *)
3866 bfd_malloc (o->reloc_count * sizeof (struct internal_reloc)));
3867 finfo.section_info[o->target_index].rel_hashes =
3868 ((struct xcoff_link_hash_entry **)
3869 bfd_malloc (o->reloc_count
3870 * sizeof (struct xcoff_link_hash_entry *)));
3871 if (finfo.section_info[o->target_index].relocs == NULL
3872 || finfo.section_info[o->target_index].rel_hashes == NULL)
3873 goto error_return;
3874
3875 if (o->reloc_count > max_output_reloc_count)
3876 max_output_reloc_count = o->reloc_count;
3877 }
3878 }
3879
3880 /* We now know the size of the relocs, so we can determine the file
3881 positions of the line numbers. */
3882 line_filepos = rel_filepos;
3883 finfo.line_filepos = line_filepos;
3884 linesz = bfd_coff_linesz (abfd);
3885 for (o = abfd->sections; o != NULL; o = o->next)
3886 {
3887 if (o->lineno_count == 0)
3888 o->line_filepos = 0;
3889 else
3890 {
3891 o->line_filepos = line_filepos;
3892 line_filepos += o->lineno_count * linesz;
3893 }
3894
3895 /* Reset the reloc and lineno counts, so that we can use them to
3896 count the number of entries we have output so far. */
3897 o->reloc_count = 0;
3898 o->lineno_count = 0;
3899 }
3900
3901 obj_sym_filepos (abfd) = line_filepos;
3902
3903 /* Figure out the largest number of symbols in an input BFD. Take
3904 the opportunity to clear the output_has_begun fields of all the
3905 input BFD's. We want at least 4 symbols, since that is the
3906 number which xcoff_write_global_symbol may need. */
3907 max_sym_count = 4;
3908 for (sub = info->input_bfds; sub != NULL; sub = sub->link_next)
3909 {
3910 size_t sz;
3911
3912 sub->output_has_begun = false;
3913 sz = obj_raw_syment_count (sub);
3914 if (sz > max_sym_count)
3915 max_sym_count = sz;
3916 }
3917
3918 /* Allocate some buffers used while linking. */
3919 finfo.internal_syms = ((struct internal_syment *)
3920 bfd_malloc (max_sym_count
3921 * sizeof (struct internal_syment)));
3922 finfo.sym_indices = (long *) bfd_malloc (max_sym_count * sizeof (long));
3923 finfo.outsyms = ((bfd_byte *)
3924 bfd_malloc ((size_t) ((max_sym_count + 1) * symesz)));
3925 finfo.linenos = (bfd_byte *) bfd_malloc (max_lineno_count
3926 * bfd_coff_linesz (abfd));
3927 finfo.contents = (bfd_byte *) bfd_malloc (max_contents_size);
3928 finfo.external_relocs = (bfd_byte *) bfd_malloc (max_reloc_count * relsz);
3929 if ((finfo.internal_syms == NULL && max_sym_count > 0)
3930 || (finfo.sym_indices == NULL && max_sym_count > 0)
3931 || finfo.outsyms == NULL
3932 || (finfo.linenos == NULL && max_lineno_count > 0)
3933 || (finfo.contents == NULL && max_contents_size > 0)
3934 || (finfo.external_relocs == NULL && max_reloc_count > 0))
3935 goto error_return;
3936
3937 obj_raw_syment_count (abfd) = 0;
3938 xcoff_data (abfd)->toc = (bfd_vma) -1;
3939
3940 /* We now know the position of everything in the file, except that
3941 we don't know the size of the symbol table and therefore we don't
3942 know where the string table starts. We just build the string
3943 table in memory as we go along. We process all the relocations
3944 for a single input file at once. */
3945 for (o = abfd->sections; o != NULL; o = o->next)
3946 {
3947 for (p = o->link_order_head; p != NULL; p = p->next)
3948 {
3949 if (p->type == bfd_indirect_link_order
3950 && p->u.indirect.section->owner->xvec == abfd->xvec)
3951 {
3952 sub = p->u.indirect.section->owner;
3953 if (! sub->output_has_begun)
3954 {
3955 if (! xcoff_link_input_bfd (&finfo, sub))
3956 goto error_return;
3957 sub->output_has_begun = true;
3958 }
3959 }
3960 else if (p->type == bfd_section_reloc_link_order
3961 || p->type == bfd_symbol_reloc_link_order)
3962 {
3963 if (! xcoff_reloc_link_order (abfd, &finfo, o, p))
3964 goto error_return;
3965 }
3966 else
3967 {
3968 if (! _bfd_default_link_order (abfd, info, o, p))
3969 goto error_return;
3970 }
3971 }
3972 }
3973
3974 /* Free up the buffers used by xcoff_link_input_bfd. */
3975
3976 if (finfo.internal_syms != NULL)
3977 {
3978 free (finfo.internal_syms);
3979 finfo.internal_syms = NULL;
3980 }
3981 if (finfo.sym_indices != NULL)
3982 {
3983 free (finfo.sym_indices);
3984 finfo.sym_indices = NULL;
3985 }
3986 if (finfo.linenos != NULL)
3987 {
3988 free (finfo.linenos);
3989 finfo.linenos = NULL;
3990 }
3991 if (finfo.contents != NULL)
3992 {
3993 free (finfo.contents);
3994 finfo.contents = NULL;
3995 }
3996 if (finfo.external_relocs != NULL)
3997 {
3998 free (finfo.external_relocs);
3999 finfo.external_relocs = NULL;
4000 }
4001
4002 /* The value of the last C_FILE symbol is supposed to be -1. Write
4003 it out again. */
4004 if (finfo.last_file_index != -1)
4005 {
4006 finfo.last_file.n_value = -1;
4007 bfd_coff_swap_sym_out (abfd, (PTR) &finfo.last_file,
4008 (PTR) finfo.outsyms);
4009 if (bfd_seek (abfd,
4010 (obj_sym_filepos (abfd)
4011 + finfo.last_file_index * symesz),
4012 SEEK_SET) != 0
4013 || bfd_write (finfo.outsyms, symesz, 1, abfd) != symesz)
4014 goto error_return;
4015 }
4016
4017 /* Write out all the global symbols which do not come from XCOFF
4018 input files. */
4019 xcoff_link_hash_traverse (xcoff_hash_table (info),
4020 xcoff_write_global_symbol,
4021 (PTR) &finfo);
4022
4023 if (finfo.outsyms != NULL)
4024 {
4025 free (finfo.outsyms);
4026 finfo.outsyms = NULL;
4027 }
4028
4029 /* Now that we have written out all the global symbols, we know the
4030 symbol indices to use for relocs against them, and we can finally
4031 write out the relocs. */
4032 external_relocs = (bfd_byte *) malloc (max_output_reloc_count * relsz);
4033 if (external_relocs == NULL && max_output_reloc_count != 0)
4034 {
4035 bfd_set_error (bfd_error_no_memory);
4036 goto error_return;
4037 }
4038
4039 for (o = abfd->sections; o != NULL; o = o->next)
4040 {
4041 struct internal_reloc *irel;
4042 struct internal_reloc *irelend;
4043 struct xcoff_link_hash_entry **rel_hash;
4044 struct xcoff_toc_rel_hash *toc_rel_hash;
4045 bfd_byte *erel;
4046
4047 if (o->reloc_count == 0)
4048 continue;
4049
4050 irel = finfo.section_info[o->target_index].relocs;
4051 irelend = irel + o->reloc_count;
4052 rel_hash = finfo.section_info[o->target_index].rel_hashes;
4053 for (; irel < irelend; irel++, rel_hash++, erel += relsz)
4054 {
4055 if (*rel_hash != NULL)
4056 {
4057 if ((*rel_hash)->indx < 0)
4058 {
4059 if (! ((*info->callbacks->unattached_reloc)
4060 (info, (*rel_hash)->root.root.string,
4061 (bfd *) NULL, o, irel->r_vaddr)))
4062 goto error_return;
4063 (*rel_hash)->indx = 0;
4064 }
4065 irel->r_symndx = (*rel_hash)->indx;
4066 }
4067 }
4068
4069 for (toc_rel_hash = finfo.section_info[o->target_index].toc_rel_hashes;
4070 toc_rel_hash != NULL;
4071 toc_rel_hash = toc_rel_hash->next)
4072 {
4073 if (toc_rel_hash->h->u.toc_indx < 0)
4074 {
4075 if (! ((*info->callbacks->unattached_reloc)
4076 (info, toc_rel_hash->h->root.root.string,
4077 (bfd *) NULL, o, toc_rel_hash->rel->r_vaddr)))
4078 goto error_return;
4079 toc_rel_hash->h->u.toc_indx = 0;
4080 }
4081 toc_rel_hash->rel->r_symndx = toc_rel_hash->h->u.toc_indx;
4082 }
4083
4084 /* XCOFF requires that the relocs be sorted by address. We tend
4085 to produce them in the order in which their containing csects
4086 appear in the symbol table, which is not necessarily by
4087 address. So we sort them here. There may be a better way to
4088 do this. */
4089 qsort ((PTR) finfo.section_info[o->target_index].relocs,
4090 o->reloc_count, sizeof (struct internal_reloc),
4091 xcoff_sort_relocs);
4092
4093 irel = finfo.section_info[o->target_index].relocs;
4094 irelend = irel + o->reloc_count;
4095 erel = external_relocs;
4096 for (; irel < irelend; irel++, rel_hash++, erel += relsz)
4097 bfd_coff_swap_reloc_out (abfd, (PTR) irel, (PTR) erel);
4098
4099 if (bfd_seek (abfd, o->rel_filepos, SEEK_SET) != 0
4100 || bfd_write ((PTR) external_relocs, relsz, o->reloc_count,
4101 abfd) != relsz * o->reloc_count)
4102 goto error_return;
4103 }
4104
4105 if (external_relocs != NULL)
4106 {
4107 free (external_relocs);
4108 external_relocs = NULL;
4109 }
4110
4111 /* Free up the section information. */
4112 if (finfo.section_info != NULL)
4113 {
4114 unsigned int i;
4115
4116 for (i = 0; i < abfd->section_count; i++)
4117 {
4118 if (finfo.section_info[i].relocs != NULL)
4119 free (finfo.section_info[i].relocs);
4120 if (finfo.section_info[i].rel_hashes != NULL)
4121 free (finfo.section_info[i].rel_hashes);
4122 }
4123 free (finfo.section_info);
4124 finfo.section_info = NULL;
4125 }
4126
4127 /* Write out the loader section contents. */
4128 BFD_ASSERT ((bfd_byte *) finfo.ldrel
4129 == (xcoff_hash_table (info)->loader_section->contents
4130 + xcoff_hash_table (info)->ldhdr.l_impoff));
4131 o = xcoff_hash_table (info)->loader_section;
4132 if (! bfd_set_section_contents (abfd, o->output_section,
4133 o->contents, o->output_offset,
4134 o->_raw_size))
4135 goto error_return;
4136
4137 /* Write out the magic sections. */
4138 o = xcoff_hash_table (info)->linkage_section;
4139 if (o->_raw_size > 0
4140 && ! bfd_set_section_contents (abfd, o->output_section, o->contents,
4141 o->output_offset, o->_raw_size))
4142 goto error_return;
4143 o = xcoff_hash_table (info)->toc_section;
4144 if (o->_raw_size > 0
4145 && ! bfd_set_section_contents (abfd, o->output_section, o->contents,
4146 o->output_offset, o->_raw_size))
4147 goto error_return;
4148 o = xcoff_hash_table (info)->descriptor_section;
4149 if (o->_raw_size > 0
4150 && ! bfd_set_section_contents (abfd, o->output_section, o->contents,
4151 o->output_offset, o->_raw_size))
4152 goto error_return;
4153
4154 /* Write out the string table. */
4155 if (bfd_seek (abfd,
4156 (obj_sym_filepos (abfd)
4157 + obj_raw_syment_count (abfd) * symesz),
4158 SEEK_SET) != 0)
4159 goto error_return;
4160 bfd_h_put_32 (abfd,
4161 _bfd_stringtab_size (finfo.strtab) + STRING_SIZE_SIZE,
4162 (bfd_byte *) strbuf);
4163 if (bfd_write (strbuf, 1, STRING_SIZE_SIZE, abfd) != STRING_SIZE_SIZE)
4164 goto error_return;
4165 if (! _bfd_stringtab_emit (abfd, finfo.strtab))
4166 goto error_return;
4167
4168 _bfd_stringtab_free (finfo.strtab);
4169
4170 /* Write out the debugging string table. */
4171 o = xcoff_hash_table (info)->debug_section;
4172 if (o != NULL)
4173 {
4174 struct bfd_strtab_hash *debug_strtab;
4175
4176 debug_strtab = xcoff_hash_table (info)->debug_strtab;
4177 BFD_ASSERT (o->output_section->_raw_size - o->output_offset
4178 >= _bfd_stringtab_size (debug_strtab));
4179 if (bfd_seek (abfd,
4180 o->output_section->filepos + o->output_offset,
4181 SEEK_SET) != 0)
4182 goto error_return;
4183 if (! _bfd_stringtab_emit (abfd, debug_strtab))
4184 goto error_return;
4185 }
4186
4187 /* Setting bfd_get_symcount to 0 will cause write_object_contents to
4188 not try to write out the symbols. */
4189 bfd_get_symcount (abfd) = 0;
4190
4191 return true;
4192
4193 error_return:
4194 if (finfo.strtab != NULL)
4195 _bfd_stringtab_free (finfo.strtab);
4196 if (finfo.section_info != NULL)
4197 {
4198 unsigned int i;
4199
4200 for (i = 0; i < abfd->section_count; i++)
4201 {
4202 if (finfo.section_info[i].relocs != NULL)
4203 free (finfo.section_info[i].relocs);
4204 if (finfo.section_info[i].rel_hashes != NULL)
4205 free (finfo.section_info[i].rel_hashes);
4206 }
4207 free (finfo.section_info);
4208 }
4209 if (finfo.internal_syms != NULL)
4210 free (finfo.internal_syms);
4211 if (finfo.sym_indices != NULL)
4212 free (finfo.sym_indices);
4213 if (finfo.outsyms != NULL)
4214 free (finfo.outsyms);
4215 if (finfo.linenos != NULL)
4216 free (finfo.linenos);
4217 if (finfo.contents != NULL)
4218 free (finfo.contents);
4219 if (finfo.external_relocs != NULL)
4220 free (finfo.external_relocs);
4221 if (external_relocs != NULL)
4222 free (external_relocs);
4223 return false;
4224 }
4225
4226 /* Link an input file into the linker output file. This function
4227 handles all the sections and relocations of the input file at once. */
4228
4229 static boolean
4230 xcoff_link_input_bfd (finfo, input_bfd)
4231 struct xcoff_final_link_info *finfo;
4232 bfd *input_bfd;
4233 {
4234 bfd *output_bfd;
4235 const char *strings;
4236 bfd_size_type syment_base;
4237 unsigned int n_tmask;
4238 unsigned int n_btshft;
4239 boolean copy, hash;
4240 bfd_size_type isymesz;
4241 bfd_size_type osymesz;
4242 bfd_size_type linesz;
4243 bfd_byte *esym;
4244 bfd_byte *esym_end;
4245 struct xcoff_link_hash_entry **sym_hash;
4246 struct internal_syment *isymp;
4247 asection **csectpp;
4248 unsigned long *debug_index;
4249 long *indexp;
4250 unsigned long output_index;
4251 bfd_byte *outsym;
4252 unsigned int incls;
4253 asection *oline;
4254 boolean keep_syms;
4255 asection *o;
4256
4257 /* We can just skip DYNAMIC files, unless this is a static link. */
4258 if ((input_bfd->flags & DYNAMIC) != 0
4259 && ! finfo->info->static_link)
4260 return true;
4261
4262 /* Move all the symbols to the output file. */
4263
4264 output_bfd = finfo->output_bfd;
4265 strings = NULL;
4266 syment_base = obj_raw_syment_count (output_bfd);
4267 isymesz = bfd_coff_symesz (input_bfd);
4268 osymesz = bfd_coff_symesz (output_bfd);
4269 linesz = bfd_coff_linesz (input_bfd);
4270 BFD_ASSERT (linesz == bfd_coff_linesz (output_bfd));
4271
4272 n_tmask = coff_data (input_bfd)->local_n_tmask;
4273 n_btshft = coff_data (input_bfd)->local_n_btshft;
4274
4275 /* Define macros so that ISFCN, et. al., macros work correctly. */
4276 #define N_TMASK n_tmask
4277 #define N_BTSHFT n_btshft
4278
4279 copy = false;
4280 if (! finfo->info->keep_memory)
4281 copy = true;
4282 hash = true;
4283 if ((output_bfd->flags & BFD_TRADITIONAL_FORMAT) != 0)
4284 hash = false;
4285
4286 if (! _bfd_coff_get_external_symbols (input_bfd))
4287 return false;
4288
4289 esym = (bfd_byte *) obj_coff_external_syms (input_bfd);
4290 esym_end = esym + obj_raw_syment_count (input_bfd) * isymesz;
4291 sym_hash = obj_xcoff_sym_hashes (input_bfd);
4292 csectpp = xcoff_data (input_bfd)->csects;
4293 debug_index = xcoff_data (input_bfd)->debug_indices;
4294 isymp = finfo->internal_syms;
4295 indexp = finfo->sym_indices;
4296 output_index = syment_base;
4297 outsym = finfo->outsyms;
4298 incls = 0;
4299 oline = NULL;
4300
4301 while (esym < esym_end)
4302 {
4303 struct internal_syment isym;
4304 union internal_auxent aux;
4305 int smtyp = 0;
4306 boolean skip;
4307 boolean require;
4308 int add;
4309
4310 bfd_coff_swap_sym_in (input_bfd, (PTR) esym, (PTR) isymp);
4311
4312 /* If this is a C_EXT or C_HIDEXT symbol, we need the csect
4313 information. */
4314 if (isymp->n_sclass == C_EXT || isymp->n_sclass == C_HIDEXT)
4315 {
4316 BFD_ASSERT (isymp->n_numaux > 0);
4317 bfd_coff_swap_aux_in (input_bfd,
4318 (PTR) (esym + isymesz * isymp->n_numaux),
4319 isymp->n_type, isymp->n_sclass,
4320 isymp->n_numaux - 1, isymp->n_numaux,
4321 (PTR) &aux);
4322 smtyp = SMTYP_SMTYP (aux.x_csect.x_smtyp);
4323 }
4324
4325 /* Make a copy of *isymp so that the relocate_section function
4326 always sees the original values. This is more reliable than
4327 always recomputing the symbol value even if we are stripping
4328 the symbol. */
4329 isym = *isymp;
4330
4331 /* If this symbol is in the .loader section, swap out the
4332 .loader symbol information. If this is an external symbol
4333 reference to a defined symbol, though, then wait until we get
4334 to the definition. */
4335 if (isym.n_sclass == C_EXT
4336 && *sym_hash != NULL
4337 && (*sym_hash)->ldsym != NULL
4338 && (smtyp != XTY_ER
4339 || (*sym_hash)->root.type == bfd_link_hash_undefined))
4340 {
4341 struct xcoff_link_hash_entry *h;
4342 struct internal_ldsym *ldsym;
4343
4344 h = *sym_hash;
4345 ldsym = h->ldsym;
4346 if (isym.n_scnum > 0)
4347 {
4348 ldsym->l_scnum = (*csectpp)->output_section->target_index;
4349 ldsym->l_value = (isym.n_value
4350 + (*csectpp)->output_section->vma
4351 + (*csectpp)->output_offset
4352 - (*csectpp)->vma);
4353 }
4354 else
4355 {
4356 ldsym->l_scnum = isym.n_scnum;
4357 ldsym->l_value = isym.n_value;
4358 }
4359
4360 ldsym->l_smtype = smtyp;
4361 if (((h->flags & XCOFF_DEF_REGULAR) == 0
4362 && (h->flags & XCOFF_DEF_DYNAMIC) != 0)
4363 || (h->flags & XCOFF_IMPORT) != 0)
4364 ldsym->l_smtype |= L_IMPORT;
4365 if (((h->flags & XCOFF_DEF_REGULAR) != 0
4366 && (h->flags & XCOFF_DEF_DYNAMIC) != 0)
4367 || (h->flags & XCOFF_EXPORT) != 0)
4368 ldsym->l_smtype |= L_EXPORT;
4369 if ((h->flags & XCOFF_ENTRY) != 0)
4370 ldsym->l_smtype |= L_ENTRY;
4371
4372 ldsym->l_smclas = aux.x_csect.x_smclas;
4373
4374 if (ldsym->l_ifile == (bfd_size_type) -1)
4375 ldsym->l_ifile = 0;
4376 else if (ldsym->l_ifile == 0)
4377 {
4378 if ((ldsym->l_smtype & L_IMPORT) == 0)
4379 ldsym->l_ifile = 0;
4380 else
4381 {
4382 bfd *impbfd;
4383
4384 if (h->root.type == bfd_link_hash_defined
4385 || h->root.type == bfd_link_hash_defweak)
4386 impbfd = h->root.u.def.section->owner;
4387 else if (h->root.type == bfd_link_hash_undefined
4388 || h->root.type == bfd_link_hash_undefweak)
4389 impbfd = h->root.u.undef.abfd;
4390 else
4391 impbfd = NULL;
4392
4393 if (impbfd == NULL)
4394 ldsym->l_ifile = 0;
4395 else
4396 {
4397 BFD_ASSERT (impbfd->xvec == finfo->output_bfd->xvec);
4398 ldsym->l_ifile = xcoff_data (impbfd)->import_file_id;
4399 }
4400 }
4401 }
4402
4403 ldsym->l_parm = 0;
4404
4405 BFD_ASSERT (h->ldindx >= 0);
4406 BFD_ASSERT (LDSYMSZ == sizeof (struct external_ldsym));
4407 xcoff_swap_ldsym_out (finfo->output_bfd, ldsym,
4408 finfo->ldsym + h->ldindx - 3);
4409 h->ldsym = NULL;
4410
4411 /* Fill in snentry now that we know the target_index. */
4412 if ((h->flags & XCOFF_ENTRY) != 0
4413 && (h->root.type == bfd_link_hash_defined
4414 || h->root.type == bfd_link_hash_defweak))
4415 xcoff_data (output_bfd)->snentry =
4416 h->root.u.def.section->output_section->target_index;
4417 }
4418
4419 *indexp = -1;
4420
4421 skip = false;
4422 require = false;
4423 add = 1 + isym.n_numaux;
4424
4425 /* If we are skipping this csect, we want to skip this symbol. */
4426 if (*csectpp == NULL)
4427 skip = true;
4428
4429 /* If we garbage collected this csect, we want to skip this
4430 symbol. */
4431 if (! skip
4432 && xcoff_hash_table (finfo->info)->gc
4433 && ((*csectpp)->flags & SEC_MARK) == 0
4434 && *csectpp != bfd_abs_section_ptr)
4435 skip = true;
4436
4437 /* An XCOFF linker always skips C_STAT symbols. */
4438 if (! skip
4439 && isymp->n_sclass == C_STAT)
4440 skip = true;
4441
4442 /* We skip all but the first TOC anchor. */
4443 if (! skip
4444 && isymp->n_sclass == C_HIDEXT
4445 && aux.x_csect.x_smclas == XMC_TC0)
4446 {
4447 if (finfo->toc_symindx != -1)
4448 skip = true;
4449 else
4450 {
4451 bfd_vma tocval, tocend;
4452
4453 tocval = ((*csectpp)->output_section->vma
4454 + (*csectpp)->output_offset
4455 + isym.n_value
4456 - (*csectpp)->vma);
4457 /* We want to find out if tocval is a good value to use
4458 as the TOC anchor--that is, whether we can access all
4459 of the TOC using a 16 bit offset from tocval. This
4460 test assumes that the TOC comes at the end of the
4461 output section, as it does in the default linker
4462 script. */
4463
4464 tocend = ((*csectpp)->output_section->vma
4465 + (*csectpp)->output_section->_raw_size);
4466
4467 if (tocval + 0x10000 < tocend)
4468 {
4469 (*_bfd_error_handler)
4470 ("TOC overflow: 0x%lx > 0x10000; try -mminimal-toc when compiling",
4471 (unsigned long) (tocend - tocval));
4472 bfd_set_error (bfd_error_file_too_big);
4473 return false;
4474 }
4475
4476 if (tocval + 0x8000 < tocend)
4477 {
4478 bfd_vma tocadd;
4479
4480 tocadd = tocend - (tocval + 0x8000);
4481 tocval += tocadd;
4482 isym.n_value += tocadd;
4483 }
4484
4485 finfo->toc_symindx = output_index;
4486 xcoff_data (finfo->output_bfd)->toc = tocval;
4487 xcoff_data (finfo->output_bfd)->sntoc =
4488 (*csectpp)->output_section->target_index;
4489 require = true;
4490 }
4491 }
4492
4493 /* If we are stripping all symbols, we want to skip this one. */
4494 if (! skip
4495 && finfo->info->strip == strip_all)
4496 skip = true;
4497
4498 /* We can skip resolved external references. */
4499 if (! skip
4500 && isym.n_sclass == C_EXT
4501 && smtyp == XTY_ER
4502 && (*sym_hash)->root.type != bfd_link_hash_undefined)
4503 skip = true;
4504
4505 /* We can skip common symbols if they got defined somewhere
4506 else. */
4507 if (! skip
4508 && isym.n_sclass == C_EXT
4509 && smtyp == XTY_CM
4510 && ((*sym_hash)->root.type != bfd_link_hash_common
4511 || (*sym_hash)->root.u.c.p->section != *csectpp)
4512 && ((*sym_hash)->root.type != bfd_link_hash_defined
4513 || (*sym_hash)->root.u.def.section != *csectpp))
4514 skip = true;
4515
4516 /* Skip local symbols if we are discarding them. */
4517 if (! skip
4518 && finfo->info->discard == discard_all
4519 && isym.n_sclass != C_EXT
4520 && (isym.n_sclass != C_HIDEXT
4521 || smtyp != XTY_SD))
4522 skip = true;
4523
4524 /* If we stripping debugging symbols, and this is a debugging
4525 symbol, then skip it. */
4526 if (! skip
4527 && finfo->info->strip == strip_debugger
4528 && isym.n_scnum == N_DEBUG)
4529 skip = true;
4530
4531 /* If some symbols are stripped based on the name, work out the
4532 name and decide whether to skip this symbol. We don't handle
4533 this correctly for symbols whose names are in the .debug
4534 section; to get it right we would need a new bfd_strtab_hash
4535 function to return the string given the index. */
4536 if (! skip
4537 && (finfo->info->strip == strip_some
4538 || finfo->info->discard == discard_l)
4539 && (debug_index == NULL || *debug_index == (unsigned long) -1))
4540 {
4541 const char *name;
4542 char buf[SYMNMLEN + 1];
4543
4544 name = _bfd_coff_internal_syment_name (input_bfd, &isym, buf);
4545 if (name == NULL)
4546 return false;
4547
4548 if ((finfo->info->strip == strip_some
4549 && (bfd_hash_lookup (finfo->info->keep_hash, name, false,
4550 false) == NULL))
4551 || (finfo->info->discard == discard_l
4552 && (isym.n_sclass != C_EXT
4553 && (isym.n_sclass != C_HIDEXT
4554 || smtyp != XTY_SD))
4555 && strncmp (name, finfo->info->lprefix,
4556 finfo->info->lprefix_len) == 0))
4557 skip = true;
4558 }
4559
4560 /* We can not skip the first TOC anchor. */
4561 if (skip
4562 && require
4563 && finfo->info->strip != strip_all)
4564 skip = false;
4565
4566 /* We now know whether we are to skip this symbol or not. */
4567 if (! skip)
4568 {
4569 /* Adjust the symbol in order to output it. */
4570
4571 if (isym._n._n_n._n_zeroes == 0
4572 && isym._n._n_n._n_offset != 0)
4573 {
4574 /* This symbol has a long name. Enter it in the string
4575 table we are building. If *debug_index != -1, the
4576 name has already been entered in the .debug section. */
4577 if (debug_index != NULL && *debug_index != (unsigned long) -1)
4578 isym._n._n_n._n_offset = *debug_index;
4579 else
4580 {
4581 const char *name;
4582 bfd_size_type indx;
4583
4584 name = _bfd_coff_internal_syment_name (input_bfd, &isym,
4585 (char *) NULL);
4586 if (name == NULL)
4587 return false;
4588 indx = _bfd_stringtab_add (finfo->strtab, name, hash, copy);
4589 if (indx == (bfd_size_type) -1)
4590 return false;
4591 isym._n._n_n._n_offset = STRING_SIZE_SIZE + indx;
4592 }
4593 }
4594
4595 if (isym.n_sclass != C_BSTAT
4596 && isym.n_sclass != C_ESTAT
4597 && isym.n_sclass != C_DECL
4598 && isym.n_scnum > 0)
4599 {
4600 isym.n_scnum = (*csectpp)->output_section->target_index;
4601 isym.n_value += ((*csectpp)->output_section->vma
4602 + (*csectpp)->output_offset
4603 - (*csectpp)->vma);
4604 }
4605
4606 /* The value of a C_FILE symbol is the symbol index of the
4607 next C_FILE symbol. The value of the last C_FILE symbol
4608 is -1. We try to get this right, below, just before we
4609 write the symbols out, but in the general case we may
4610 have to write the symbol out twice. */
4611 if (isym.n_sclass == C_FILE)
4612 {
4613 if (finfo->last_file_index != -1
4614 && finfo->last_file.n_value != (long) output_index)
4615 {
4616 /* We must correct the value of the last C_FILE entry. */
4617 finfo->last_file.n_value = output_index;
4618 if ((bfd_size_type) finfo->last_file_index >= syment_base)
4619 {
4620 /* The last C_FILE symbol is in this input file. */
4621 bfd_coff_swap_sym_out (output_bfd,
4622 (PTR) &finfo->last_file,
4623 (PTR) (finfo->outsyms
4624 + ((finfo->last_file_index
4625 - syment_base)
4626 * osymesz)));
4627 }
4628 else
4629 {
4630 /* We have already written out the last C_FILE
4631 symbol. We need to write it out again. We
4632 borrow *outsym temporarily. */
4633 bfd_coff_swap_sym_out (output_bfd,
4634 (PTR) &finfo->last_file,
4635 (PTR) outsym);
4636 if (bfd_seek (output_bfd,
4637 (obj_sym_filepos (output_bfd)
4638 + finfo->last_file_index * osymesz),
4639 SEEK_SET) != 0
4640 || (bfd_write (outsym, osymesz, 1, output_bfd)
4641 != osymesz))
4642 return false;
4643 }
4644 }
4645
4646 finfo->last_file_index = output_index;
4647 finfo->last_file = isym;
4648 }
4649
4650 /* The value of a C_BINCL or C_EINCL symbol is a file offset
4651 into the line numbers. We update the symbol values when
4652 we handle the line numbers. */
4653 if (isym.n_sclass == C_BINCL
4654 || isym.n_sclass == C_EINCL)
4655 {
4656 isym.n_value = finfo->line_filepos;
4657 ++incls;
4658 }
4659
4660 /* Output the symbol. */
4661
4662 bfd_coff_swap_sym_out (output_bfd, (PTR) &isym, (PTR) outsym);
4663
4664 *indexp = output_index;
4665
4666 if (isym.n_sclass == C_EXT)
4667 {
4668 long indx;
4669 struct xcoff_link_hash_entry *h;
4670
4671 indx = ((esym - (bfd_byte *) obj_coff_external_syms (input_bfd))
4672 / isymesz);
4673 h = obj_xcoff_sym_hashes (input_bfd)[indx];
4674 BFD_ASSERT (h != NULL);
4675 h->indx = output_index;
4676 }
4677
4678 /* If this is a symbol in the TOC which we may have merged
4679 (class XMC_TC), remember the symbol index of the TOC
4680 symbol. */
4681 if (isym.n_sclass == C_HIDEXT
4682 && aux.x_csect.x_smclas == XMC_TC
4683 && *sym_hash != NULL)
4684 {
4685 BFD_ASSERT (((*sym_hash)->flags & XCOFF_SET_TOC) == 0);
4686 BFD_ASSERT ((*sym_hash)->toc_section != NULL);
4687 (*sym_hash)->u.toc_indx = output_index;
4688 }
4689
4690 output_index += add;
4691 outsym += add * osymesz;
4692 }
4693
4694 esym += add * isymesz;
4695 isymp += add;
4696 csectpp += add;
4697 sym_hash += add;
4698 if (debug_index != NULL)
4699 debug_index += add;
4700 ++indexp;
4701 for (--add; add > 0; --add)
4702 *indexp++ = -1;
4703 }
4704
4705 /* Fix up the aux entries and the C_BSTAT symbols. This must be
4706 done in a separate pass, because we don't know the correct symbol
4707 indices until we have already decided which symbols we are going
4708 to keep. */
4709
4710 esym = (bfd_byte *) obj_coff_external_syms (input_bfd);
4711 esym_end = esym + obj_raw_syment_count (input_bfd) * isymesz;
4712 isymp = finfo->internal_syms;
4713 indexp = finfo->sym_indices;
4714 csectpp = xcoff_data (input_bfd)->csects;
4715 outsym = finfo->outsyms;
4716 while (esym < esym_end)
4717 {
4718 int add;
4719
4720 add = 1 + isymp->n_numaux;
4721
4722 if (*indexp < 0)
4723 esym += add * isymesz;
4724 else
4725 {
4726 int i;
4727
4728 if (isymp->n_sclass == C_BSTAT)
4729 {
4730 struct internal_syment isym;
4731 unsigned long indx;
4732
4733 /* The value of a C_BSTAT symbol is the symbol table
4734 index of the containing csect. */
4735 bfd_coff_swap_sym_in (output_bfd, (PTR) outsym, (PTR) &isym);
4736 indx = isym.n_value;
4737 if (indx < obj_raw_syment_count (input_bfd))
4738 {
4739 long symindx;
4740
4741 symindx = finfo->sym_indices[indx];
4742 if (symindx < 0)
4743 isym.n_value = 0;
4744 else
4745 isym.n_value = symindx;
4746 bfd_coff_swap_sym_out (output_bfd, (PTR) &isym,
4747 (PTR) outsym);
4748 }
4749 }
4750
4751 esym += isymesz;
4752 outsym += osymesz;
4753
4754 for (i = 0; i < isymp->n_numaux && esym < esym_end; i++)
4755 {
4756 union internal_auxent aux;
4757
4758 bfd_coff_swap_aux_in (input_bfd, (PTR) esym, isymp->n_type,
4759 isymp->n_sclass, i, isymp->n_numaux,
4760 (PTR) &aux);
4761
4762 if (isymp->n_sclass == C_FILE)
4763 {
4764 /* This is the file name (or some comment put in by
4765 the compiler). If it is long, we must put it in
4766 the string table. */
4767 if (aux.x_file.x_n.x_zeroes == 0
4768 && aux.x_file.x_n.x_offset != 0)
4769 {
4770 const char *filename;
4771 bfd_size_type indx;
4772
4773 BFD_ASSERT (aux.x_file.x_n.x_offset
4774 >= STRING_SIZE_SIZE);
4775 if (strings == NULL)
4776 {
4777 strings = _bfd_coff_read_string_table (input_bfd);
4778 if (strings == NULL)
4779 return false;
4780 }
4781 filename = strings + aux.x_file.x_n.x_offset;
4782 indx = _bfd_stringtab_add (finfo->strtab, filename,
4783 hash, copy);
4784 if (indx == (bfd_size_type) -1)
4785 return false;
4786 aux.x_file.x_n.x_offset = STRING_SIZE_SIZE + indx;
4787 }
4788 }
4789 else if ((isymp->n_sclass == C_EXT
4790 || isymp->n_sclass == C_HIDEXT)
4791 && i + 1 == isymp->n_numaux)
4792 {
4793 /* We don't support type checking. I don't know if
4794 anybody does. */
4795 aux.x_csect.x_parmhash = 0;
4796 /* I don't think anybody uses these fields, but we'd
4797 better clobber them just in case. */
4798 aux.x_csect.x_stab = 0;
4799 aux.x_csect.x_snstab = 0;
4800 if (SMTYP_SMTYP (aux.x_csect.x_smtyp) == XTY_LD)
4801 {
4802 unsigned long indx;
4803
4804 indx = aux.x_csect.x_scnlen.l;
4805 if (indx < obj_raw_syment_count (input_bfd))
4806 {
4807 long symindx;
4808
4809 symindx = finfo->sym_indices[indx];
4810 if (symindx < 0)
4811 aux.x_sym.x_tagndx.l = 0;
4812 else
4813 aux.x_sym.x_tagndx.l = symindx;
4814 }
4815 }
4816 }
4817 else if (isymp->n_sclass != C_STAT || isymp->n_type != T_NULL)
4818 {
4819 unsigned long indx;
4820
4821 if (ISFCN (isymp->n_type)
4822 || ISTAG (isymp->n_sclass)
4823 || isymp->n_sclass == C_BLOCK
4824 || isymp->n_sclass == C_FCN)
4825 {
4826 indx = aux.x_sym.x_fcnary.x_fcn.x_endndx.l;
4827 if (indx > 0
4828 && indx < obj_raw_syment_count (input_bfd))
4829 {
4830 /* We look forward through the symbol for
4831 the index of the next symbol we are going
4832 to include. I don't know if this is
4833 entirely right. */
4834 while (finfo->sym_indices[indx] < 0
4835 && indx < obj_raw_syment_count (input_bfd))
4836 ++indx;
4837 if (indx >= obj_raw_syment_count (input_bfd))
4838 indx = output_index;
4839 else
4840 indx = finfo->sym_indices[indx];
4841 aux.x_sym.x_fcnary.x_fcn.x_endndx.l = indx;
4842 }
4843 }
4844
4845 indx = aux.x_sym.x_tagndx.l;
4846 if (indx > 0 && indx < obj_raw_syment_count (input_bfd))
4847 {
4848 long symindx;
4849
4850 symindx = finfo->sym_indices[indx];
4851 if (symindx < 0)
4852 aux.x_sym.x_tagndx.l = 0;
4853 else
4854 aux.x_sym.x_tagndx.l = symindx;
4855 }
4856 }
4857
4858 /* Copy over the line numbers, unless we are stripping
4859 them. We do this on a symbol by symbol basis in
4860 order to more easily handle garbage collection. */
4861 if ((isymp->n_sclass == C_EXT
4862 || isymp->n_sclass == C_HIDEXT)
4863 && i == 0
4864 && isymp->n_numaux > 1
4865 && ISFCN (isymp->n_type)
4866 && aux.x_sym.x_fcnary.x_fcn.x_lnnoptr != 0)
4867 {
4868 if (finfo->info->strip != strip_none
4869 && finfo->info->strip != strip_some)
4870 aux.x_sym.x_fcnary.x_fcn.x_lnnoptr = 0;
4871 else
4872 {
4873 asection *enclosing;
4874 unsigned int enc_count;
4875 bfd_size_type linoff;
4876 struct internal_lineno lin;
4877
4878 o = *csectpp;
4879 enclosing = xcoff_section_data (abfd, o)->enclosing;
4880 enc_count = xcoff_section_data (abfd, o)->lineno_count;
4881 if (oline != enclosing)
4882 {
4883 if (bfd_seek (input_bfd,
4884 enclosing->line_filepos,
4885 SEEK_SET) != 0
4886 || (bfd_read (finfo->linenos, linesz,
4887 enc_count, input_bfd)
4888 != linesz * enc_count))
4889 return false;
4890 oline = enclosing;
4891 }
4892
4893 linoff = (aux.x_sym.x_fcnary.x_fcn.x_lnnoptr
4894 - enclosing->line_filepos);
4895
4896 bfd_coff_swap_lineno_in (input_bfd,
4897 (PTR) (finfo->linenos + linoff),
4898 (PTR) &lin);
4899 if (lin.l_lnno != 0
4900 || ((bfd_size_type) lin.l_addr.l_symndx
4901 != ((esym
4902 - isymesz
4903 - ((bfd_byte *)
4904 obj_coff_external_syms (input_bfd)))
4905 / isymesz)))
4906 aux.x_sym.x_fcnary.x_fcn.x_lnnoptr = 0;
4907 else
4908 {
4909 bfd_byte *linpend, *linp;
4910 bfd_vma offset;
4911 bfd_size_type count;
4912
4913 lin.l_addr.l_symndx = *indexp;
4914 bfd_coff_swap_lineno_out (output_bfd, (PTR) &lin,
4915 (PTR) (finfo->linenos
4916 + linoff));
4917
4918 linpend = (finfo->linenos
4919 + enc_count * linesz);
4920 offset = (o->output_section->vma
4921 + o->output_offset
4922 - o->vma);
4923 for (linp = finfo->linenos + linoff + linesz;
4924 linp < linpend;
4925 linp += linesz)
4926 {
4927 bfd_coff_swap_lineno_in (input_bfd, (PTR) linp,
4928 (PTR) &lin);
4929 if (lin.l_lnno == 0)
4930 break;
4931 lin.l_addr.l_paddr += offset;
4932 bfd_coff_swap_lineno_out (output_bfd,
4933 (PTR) &lin,
4934 (PTR) linp);
4935 }
4936
4937 count = (linp - (finfo->linenos + linoff)) / linesz;
4938
4939 aux.x_sym.x_fcnary.x_fcn.x_lnnoptr =
4940 (o->output_section->line_filepos
4941 + o->output_section->lineno_count * linesz);
4942
4943 if (bfd_seek (output_bfd,
4944 aux.x_sym.x_fcnary.x_fcn.x_lnnoptr,
4945 SEEK_SET) != 0
4946 || (bfd_write (finfo->linenos + linoff,
4947 linesz, count, output_bfd)
4948 != linesz * count))
4949 return false;
4950
4951 o->output_section->lineno_count += count;
4952
4953 if (incls > 0)
4954 {
4955 struct internal_syment *iisp, *iispend;
4956 long *iindp;
4957 bfd_byte *oos;
4958 int iiadd;
4959
4960 /* Update any C_BINCL or C_EINCL symbols
4961 that refer to a line number in the
4962 range we just output. */
4963 iisp = finfo->internal_syms;
4964 iispend = (iisp
4965 + obj_raw_syment_count (input_bfd));
4966 iindp = finfo->sym_indices;
4967 oos = finfo->outsyms;
4968 while (iisp < iispend)
4969 {
4970 if (*iindp >= 0
4971 && (iisp->n_sclass == C_BINCL
4972 || iisp->n_sclass == C_EINCL)
4973 && ((bfd_size_type) iisp->n_value
4974 >= enclosing->line_filepos + linoff)
4975 && ((bfd_size_type) iisp->n_value
4976 < (enclosing->line_filepos
4977 + enc_count * linesz)))
4978 {
4979 struct internal_syment iis;
4980
4981 bfd_coff_swap_sym_in (output_bfd,
4982 (PTR) oos,
4983 (PTR) &iis);
4984 iis.n_value =
4985 (iisp->n_value
4986 - enclosing->line_filepos
4987 - linoff
4988 + aux.x_sym.x_fcnary.x_fcn.x_lnnoptr);
4989 bfd_coff_swap_sym_out (output_bfd,
4990 (PTR) &iis,
4991 (PTR) oos);
4992 --incls;
4993 }
4994
4995 iiadd = 1 + iisp->n_numaux;
4996 if (*iindp >= 0)
4997 oos += iiadd * osymesz;
4998 iisp += iiadd;
4999 iindp += iiadd;
5000 }
5001 }
5002 }
5003 }
5004 }
5005
5006 bfd_coff_swap_aux_out (output_bfd, (PTR) &aux, isymp->n_type,
5007 isymp->n_sclass, i, isymp->n_numaux,
5008 (PTR) outsym);
5009 outsym += osymesz;
5010 esym += isymesz;
5011 }
5012 }
5013
5014 indexp += add;
5015 isymp += add;
5016 csectpp += add;
5017 }
5018
5019 /* If we swapped out a C_FILE symbol, guess that the next C_FILE
5020 symbol will be the first symbol in the next input file. In the
5021 normal case, this will save us from writing out the C_FILE symbol
5022 again. */
5023 if (finfo->last_file_index != -1
5024 && (bfd_size_type) finfo->last_file_index >= syment_base)
5025 {
5026 finfo->last_file.n_value = output_index;
5027 bfd_coff_swap_sym_out (output_bfd, (PTR) &finfo->last_file,
5028 (PTR) (finfo->outsyms
5029 + ((finfo->last_file_index - syment_base)
5030 * osymesz)));
5031 }
5032
5033 /* Write the modified symbols to the output file. */
5034 if (outsym > finfo->outsyms)
5035 {
5036 if (bfd_seek (output_bfd,
5037 obj_sym_filepos (output_bfd) + syment_base * osymesz,
5038 SEEK_SET) != 0
5039 || (bfd_write (finfo->outsyms, outsym - finfo->outsyms, 1,
5040 output_bfd)
5041 != (bfd_size_type) (outsym - finfo->outsyms)))
5042 return false;
5043
5044 BFD_ASSERT ((obj_raw_syment_count (output_bfd)
5045 + (outsym - finfo->outsyms) / osymesz)
5046 == output_index);
5047
5048 obj_raw_syment_count (output_bfd) = output_index;
5049 }
5050
5051 /* Don't let the linker relocation routines discard the symbols. */
5052 keep_syms = obj_coff_keep_syms (input_bfd);
5053 obj_coff_keep_syms (input_bfd) = true;
5054
5055 /* Relocate the contents of each section. */
5056 for (o = input_bfd->sections; o != NULL; o = o->next)
5057 {
5058 bfd_byte *contents;
5059
5060 if (! o->linker_mark)
5061 {
5062 /* This section was omitted from the link. */
5063 continue;
5064 }
5065
5066 if ((o->flags & SEC_HAS_CONTENTS) == 0
5067 || o->_raw_size == 0
5068 || (o->flags & SEC_IN_MEMORY) != 0)
5069 continue;
5070
5071 /* We have set filepos correctly for the sections we created to
5072 represent csects, so bfd_get_section_contents should work. */
5073 if (coff_section_data (input_bfd, o) != NULL
5074 && coff_section_data (input_bfd, o)->contents != NULL)
5075 contents = coff_section_data (input_bfd, o)->contents;
5076 else
5077 {
5078 if (! bfd_get_section_contents (input_bfd, o, finfo->contents,
5079 (file_ptr) 0, o->_raw_size))
5080 return false;
5081 contents = finfo->contents;
5082 }
5083
5084 if ((o->flags & SEC_RELOC) != 0)
5085 {
5086 int target_index;
5087 struct internal_reloc *internal_relocs;
5088 struct internal_reloc *irel;
5089 bfd_vma offset;
5090 struct internal_reloc *irelend;
5091 struct xcoff_link_hash_entry **rel_hash;
5092 long r_symndx;
5093
5094 /* Read in the relocs. */
5095 target_index = o->output_section->target_index;
5096 internal_relocs = (xcoff_read_internal_relocs
5097 (input_bfd, o, false, finfo->external_relocs,
5098 true,
5099 (finfo->section_info[target_index].relocs
5100 + o->output_section->reloc_count)));
5101 if (internal_relocs == NULL)
5102 return false;
5103
5104 /* Call processor specific code to relocate the section
5105 contents. */
5106 if (! bfd_coff_relocate_section (output_bfd, finfo->info,
5107 input_bfd, o,
5108 contents,
5109 internal_relocs,
5110 finfo->internal_syms,
5111 xcoff_data (input_bfd)->csects))
5112 return false;
5113
5114 offset = o->output_section->vma + o->output_offset - o->vma;
5115 irel = internal_relocs;
5116 irelend = irel + o->reloc_count;
5117 rel_hash = (finfo->section_info[target_index].rel_hashes
5118 + o->output_section->reloc_count);
5119 for (; irel < irelend; irel++, rel_hash++)
5120 {
5121 struct xcoff_link_hash_entry *h = NULL;
5122 struct internal_ldrel ldrel;
5123
5124 *rel_hash = NULL;
5125
5126 /* Adjust the reloc address and symbol index. */
5127
5128 irel->r_vaddr += offset;
5129
5130 r_symndx = irel->r_symndx;
5131
5132 if (r_symndx != -1)
5133 {
5134 h = obj_xcoff_sym_hashes (input_bfd)[r_symndx];
5135 if (h != NULL
5136 && h->smclas != XMC_TD
5137 && (irel->r_type == R_TOC
5138 || irel->r_type == R_GL
5139 || irel->r_type == R_TCL
5140 || irel->r_type == R_TRL
5141 || irel->r_type == R_TRLA))
5142 {
5143 /* This is a TOC relative reloc with a symbol
5144 attached. The symbol should be the one which
5145 this reloc is for. We want to make this
5146 reloc against the TOC address of the symbol,
5147 not the symbol itself. */
5148 BFD_ASSERT (h->toc_section != NULL);
5149 BFD_ASSERT ((h->flags & XCOFF_SET_TOC) == 0);
5150 if (h->u.toc_indx != -1)
5151 irel->r_symndx = h->u.toc_indx;
5152 else
5153 {
5154 struct xcoff_toc_rel_hash *n;
5155 struct xcoff_link_section_info *si;
5156
5157 n = ((struct xcoff_toc_rel_hash *)
5158 bfd_alloc (finfo->output_bfd,
5159 sizeof (struct xcoff_toc_rel_hash)));
5160 if (n == NULL)
5161 return false;
5162 si = finfo->section_info + target_index;
5163 n->next = si->toc_rel_hashes;
5164 n->h = h;
5165 n->rel = irel;
5166 si->toc_rel_hashes = n;
5167 }
5168 }
5169 else if (h != NULL)
5170 {
5171 /* This is a global symbol. */
5172 if (h->indx >= 0)
5173 irel->r_symndx = h->indx;
5174 else
5175 {
5176 /* This symbol is being written at the end
5177 of the file, and we do not yet know the
5178 symbol index. We save the pointer to the
5179 hash table entry in the rel_hash list.
5180 We set the indx field to -2 to indicate
5181 that this symbol must not be stripped. */
5182 *rel_hash = h;
5183 h->indx = -2;
5184 }
5185 }
5186 else
5187 {
5188 long indx;
5189
5190 indx = finfo->sym_indices[r_symndx];
5191
5192 if (indx == -1)
5193 {
5194 struct internal_syment *is;
5195
5196 /* Relocations against a TC0 TOC anchor are
5197 automatically transformed to be against
5198 the TOC anchor in the output file. */
5199 is = finfo->internal_syms + r_symndx;
5200 if (is->n_sclass == C_HIDEXT
5201 && is->n_numaux > 0)
5202 {
5203 PTR auxptr;
5204 union internal_auxent aux;
5205
5206 auxptr = ((PTR)
5207 (((bfd_byte *)
5208 obj_coff_external_syms (input_bfd))
5209 + ((r_symndx + is->n_numaux)
5210 * isymesz)));
5211 bfd_coff_swap_aux_in (input_bfd, auxptr,
5212 is->n_type, is->n_sclass,
5213 is->n_numaux - 1,
5214 is->n_numaux,
5215 (PTR) &aux);
5216 if (SMTYP_SMTYP (aux.x_csect.x_smtyp) == XTY_SD
5217 && aux.x_csect.x_smclas == XMC_TC0)
5218 indx = finfo->toc_symindx;
5219 }
5220 }
5221
5222 if (indx != -1)
5223 irel->r_symndx = indx;
5224 else
5225 {
5226 struct internal_syment *is;
5227 const char *name;
5228 char buf[SYMNMLEN + 1];
5229
5230 /* This reloc is against a symbol we are
5231 stripping. It would be possible to handle
5232 this case, but I don't think it's worth it. */
5233 is = finfo->internal_syms + r_symndx;
5234
5235 name = (_bfd_coff_internal_syment_name
5236 (input_bfd, is, buf));
5237 if (name == NULL)
5238 return false;
5239
5240 if (! ((*finfo->info->callbacks->unattached_reloc)
5241 (finfo->info, name, input_bfd, o,
5242 irel->r_vaddr)))
5243 return false;
5244 }
5245 }
5246 }
5247
5248 switch (irel->r_type)
5249 {
5250 default:
5251 if (h == NULL
5252 || h->root.type == bfd_link_hash_defined
5253 || h->root.type == bfd_link_hash_defweak
5254 || h->root.type == bfd_link_hash_common)
5255 break;
5256 /* Fall through. */
5257 case R_POS:
5258 case R_NEG:
5259 case R_RL:
5260 case R_RLA:
5261 /* This reloc needs to be copied into the .loader
5262 section. */
5263 ldrel.l_vaddr = irel->r_vaddr;
5264 if (r_symndx == -1)
5265 ldrel.l_symndx = -1;
5266 else if (h == NULL
5267 || (h->root.type == bfd_link_hash_defined
5268 || h->root.type == bfd_link_hash_defweak
5269 || h->root.type == bfd_link_hash_common))
5270 {
5271 asection *sec;
5272
5273 if (h == NULL)
5274 sec = xcoff_data (input_bfd)->csects[r_symndx];
5275 else if (h->root.type == bfd_link_hash_common)
5276 sec = h->root.u.c.p->section;
5277 else
5278 sec = h->root.u.def.section;
5279 sec = sec->output_section;
5280
5281 if (strcmp (sec->name, ".text") == 0)
5282 ldrel.l_symndx = 0;
5283 else if (strcmp (sec->name, ".data") == 0)
5284 ldrel.l_symndx = 1;
5285 else if (strcmp (sec->name, ".bss") == 0)
5286 ldrel.l_symndx = 2;
5287 else
5288 {
5289 (*_bfd_error_handler)
5290 ("%s: loader reloc in unrecognized section `%s'",
5291 bfd_get_filename (input_bfd),
5292 sec->name);
5293 bfd_set_error (bfd_error_nonrepresentable_section);
5294 return false;
5295 }
5296 }
5297 else
5298 {
5299 if (h->ldindx < 0)
5300 {
5301 (*_bfd_error_handler)
5302 ("%s: `%s' in loader reloc but not loader sym",
5303 bfd_get_filename (input_bfd),
5304 h->root.root.string);
5305 bfd_set_error (bfd_error_bad_value);
5306 return false;
5307 }
5308 ldrel.l_symndx = h->ldindx;
5309 }
5310 ldrel.l_rtype = (irel->r_size << 8) | irel->r_type;
5311 ldrel.l_rsecnm = o->output_section->target_index;
5312 if (xcoff_hash_table (finfo->info)->textro
5313 && strcmp (o->output_section->name, ".text") == 0)
5314 {
5315 (*_bfd_error_handler)
5316 ("%s: loader reloc in read-only section %s",
5317 bfd_get_filename (input_bfd),
5318 bfd_get_section_name (finfo->output_bfd,
5319 o->output_section));
5320 bfd_set_error (bfd_error_invalid_operation);
5321 return false;
5322 }
5323 xcoff_swap_ldrel_out (output_bfd, &ldrel,
5324 finfo->ldrel);
5325 BFD_ASSERT (sizeof (struct external_ldrel) == LDRELSZ);
5326 ++finfo->ldrel;
5327 break;
5328
5329 case R_TOC:
5330 case R_GL:
5331 case R_TCL:
5332 case R_TRL:
5333 case R_TRLA:
5334 /* We should never need a .loader reloc for a TOC
5335 relative reloc. */
5336 break;
5337 }
5338 }
5339
5340 o->output_section->reloc_count += o->reloc_count;
5341 }
5342
5343 /* Write out the modified section contents. */
5344 if (! bfd_set_section_contents (output_bfd, o->output_section,
5345 contents, o->output_offset,
5346 (o->_cooked_size != 0
5347 ? o->_cooked_size
5348 : o->_raw_size)))
5349 return false;
5350 }
5351
5352 obj_coff_keep_syms (input_bfd) = keep_syms;
5353
5354 if (! finfo->info->keep_memory)
5355 {
5356 if (! _bfd_coff_free_symbols (input_bfd))
5357 return false;
5358 }
5359
5360 return true;
5361 }
5362
5363 #undef N_TMASK
5364 #undef N_BTSHFT
5365
5366 /* Write out a non-XCOFF global symbol. */
5367
5368 static boolean
5369 xcoff_write_global_symbol (h, p)
5370 struct xcoff_link_hash_entry *h;
5371 PTR p;
5372 {
5373 struct xcoff_final_link_info *finfo = (struct xcoff_final_link_info *) p;
5374 bfd *output_bfd;
5375 bfd_byte *outsym;
5376 struct internal_syment isym;
5377 union internal_auxent aux;
5378
5379 output_bfd = finfo->output_bfd;
5380
5381 /* If this symbol was garbage collected, just skip it. */
5382 if (xcoff_hash_table (finfo->info)->gc
5383 && (h->flags & XCOFF_MARK) == 0)
5384 return true;
5385
5386 /* If we need a .loader section entry, write it out. */
5387 if (h->ldsym != NULL)
5388 {
5389 struct internal_ldsym *ldsym;
5390 bfd *impbfd;
5391
5392 ldsym = h->ldsym;
5393
5394 if (h->root.type == bfd_link_hash_undefined
5395 || h->root.type == bfd_link_hash_undefweak)
5396 {
5397 ldsym->l_value = 0;
5398 ldsym->l_scnum = N_UNDEF;
5399 ldsym->l_smtype = XTY_ER;
5400 impbfd = h->root.u.undef.abfd;
5401 }
5402 else if (h->root.type == bfd_link_hash_defined
5403 || h->root.type == bfd_link_hash_defweak)
5404 {
5405 asection *sec;
5406
5407 sec = h->root.u.def.section;
5408 ldsym->l_value = (sec->output_section->vma
5409 + sec->output_offset
5410 + h->root.u.def.value);
5411 ldsym->l_scnum = sec->output_section->target_index;
5412 ldsym->l_smtype = XTY_SD;
5413 impbfd = sec->owner;
5414 }
5415 else
5416 abort ();
5417
5418 if (((h->flags & XCOFF_DEF_REGULAR) == 0
5419 && (h->flags & XCOFF_DEF_DYNAMIC) != 0)
5420 || (h->flags & XCOFF_IMPORT) != 0)
5421 ldsym->l_smtype |= L_IMPORT;
5422 if (((h->flags & XCOFF_DEF_REGULAR) != 0
5423 && (h->flags & XCOFF_DEF_DYNAMIC) != 0)
5424 || (h->flags & XCOFF_EXPORT) != 0)
5425 ldsym->l_smtype |= L_EXPORT;
5426 if ((h->flags & XCOFF_ENTRY) != 0)
5427 ldsym->l_smtype |= L_ENTRY;
5428
5429 ldsym->l_smclas = h->smclas;
5430
5431 if (ldsym->l_ifile == (bfd_size_type) -1)
5432 ldsym->l_ifile = 0;
5433 else if (ldsym->l_ifile == 0)
5434 {
5435 if ((ldsym->l_smtype & L_IMPORT) == 0)
5436 ldsym->l_ifile = 0;
5437 else if (impbfd == NULL)
5438 ldsym->l_ifile = 0;
5439 else
5440 {
5441 BFD_ASSERT (impbfd->xvec == output_bfd->xvec);
5442 ldsym->l_ifile = xcoff_data (impbfd)->import_file_id;
5443 }
5444 }
5445
5446 ldsym->l_parm = 0;
5447
5448 BFD_ASSERT (h->ldindx >= 0);
5449 BFD_ASSERT (LDSYMSZ == sizeof (struct external_ldsym));
5450 xcoff_swap_ldsym_out (output_bfd, ldsym, finfo->ldsym + h->ldindx - 3);
5451 h->ldsym = NULL;
5452 }
5453
5454 /* If this symbol needs global linkage code, write it out. */
5455 if (h->root.type == bfd_link_hash_defined
5456 && (h->root.u.def.section
5457 == xcoff_hash_table (finfo->info)->linkage_section))
5458 {
5459 bfd_byte *p;
5460 bfd_vma tocoff;
5461 unsigned int i;
5462
5463 p = h->root.u.def.section->contents + h->root.u.def.value;
5464
5465 /* The first instruction in the global linkage code loads a
5466 specific TOC element. */
5467 tocoff = (h->descriptor->toc_section->output_section->vma
5468 + h->descriptor->toc_section->output_offset
5469 - xcoff_data (output_bfd)->toc);
5470 if ((h->descriptor->flags & XCOFF_SET_TOC) != 0)
5471 tocoff += h->descriptor->u.toc_offset;
5472 bfd_put_32 (output_bfd, XCOFF_GLINK_FIRST | (tocoff & 0xffff), p);
5473 for (i = 0, p += 4;
5474 i < sizeof xcoff_glink_code / sizeof xcoff_glink_code[0];
5475 i++, p += 4)
5476 bfd_put_32 (output_bfd, xcoff_glink_code[i], p);
5477 }
5478
5479 /* If we created a TOC entry for this symbol, write out the required
5480 relocs. */
5481 if ((h->flags & XCOFF_SET_TOC) != 0)
5482 {
5483 asection *tocsec;
5484 asection *osec;
5485 int oindx;
5486 struct internal_reloc *irel;
5487 struct internal_ldrel ldrel;
5488
5489 tocsec = h->toc_section;
5490 osec = tocsec->output_section;
5491 oindx = osec->target_index;
5492 irel = finfo->section_info[oindx].relocs + osec->reloc_count;
5493 irel->r_vaddr = (osec->vma
5494 + tocsec->output_offset
5495 + h->u.toc_offset);
5496 if (h->indx >= 0)
5497 irel->r_symndx = h->indx;
5498 else
5499 {
5500 h->indx = -2;
5501 irel->r_symndx = obj_raw_syment_count (output_bfd);
5502 }
5503 irel->r_type = R_POS;
5504 irel->r_size = 31;
5505 finfo->section_info[oindx].rel_hashes[osec->reloc_count] = NULL;
5506 ++osec->reloc_count;
5507
5508 BFD_ASSERT (h->ldindx >= 0);
5509 ldrel.l_vaddr = irel->r_vaddr;
5510 ldrel.l_symndx = h->ldindx;
5511 ldrel.l_rtype = (31 << 8) | R_POS;
5512 ldrel.l_rsecnm = oindx;
5513 xcoff_swap_ldrel_out (output_bfd, &ldrel, finfo->ldrel);
5514 ++finfo->ldrel;
5515 }
5516
5517 /* If this symbol is a specially defined function descriptor, write
5518 it out. The first word is the address of the function code
5519 itself, the second word is the address of the TOC, and the third
5520 word is zero. */
5521 if ((h->flags & XCOFF_DESCRIPTOR) != 0
5522 && h->root.type == bfd_link_hash_defined
5523 && (h->root.u.def.section
5524 == xcoff_hash_table (finfo->info)->descriptor_section))
5525 {
5526 asection *sec;
5527 asection *osec;
5528 int oindx;
5529 bfd_byte *p;
5530 struct xcoff_link_hash_entry *hentry;
5531 asection *esec;
5532 struct internal_reloc *irel;
5533 struct internal_ldrel ldrel;
5534 asection *tsec;
5535
5536 sec = h->root.u.def.section;
5537 osec = sec->output_section;
5538 oindx = osec->target_index;
5539 p = sec->contents + h->root.u.def.value;
5540
5541 hentry = h->descriptor;
5542 BFD_ASSERT (hentry != NULL
5543 && (hentry->root.type == bfd_link_hash_defined
5544 || hentry->root.type == bfd_link_hash_defweak));
5545 esec = hentry->root.u.def.section;
5546 bfd_put_32 (output_bfd,
5547 (esec->output_section->vma
5548 + esec->output_offset
5549 + hentry->root.u.def.value),
5550 p);
5551
5552 irel = finfo->section_info[oindx].relocs + osec->reloc_count;
5553 irel->r_vaddr = (osec->vma
5554 + sec->output_offset
5555 + h->root.u.def.value);
5556 irel->r_symndx = esec->output_section->target_index;
5557 irel->r_type = R_POS;
5558 irel->r_size = 31;
5559 finfo->section_info[oindx].rel_hashes[osec->reloc_count] = NULL;
5560 ++osec->reloc_count;
5561
5562 ldrel.l_vaddr = irel->r_vaddr;
5563 if (strcmp (esec->output_section->name, ".text") == 0)
5564 ldrel.l_symndx = 0;
5565 else if (strcmp (esec->output_section->name, ".data") == 0)
5566 ldrel.l_symndx = 1;
5567 else if (strcmp (esec->output_section->name, ".bss") == 0)
5568 ldrel.l_symndx = 2;
5569 else
5570 {
5571 (*_bfd_error_handler)
5572 ("%s: loader reloc in unrecognized section `%s'",
5573 bfd_get_filename (output_bfd),
5574 esec->output_section->name);
5575 bfd_set_error (bfd_error_nonrepresentable_section);
5576 return false;
5577 }
5578 ldrel.l_rtype = (31 << 8) | R_POS;
5579 ldrel.l_rsecnm = oindx;
5580 xcoff_swap_ldrel_out (output_bfd, &ldrel, finfo->ldrel);
5581 ++finfo->ldrel;
5582
5583 bfd_put_32 (output_bfd, xcoff_data (output_bfd)->toc, p + 4);
5584
5585 tsec = coff_section_from_bfd_index (output_bfd,
5586 xcoff_data (output_bfd)->sntoc);
5587
5588 ++irel;
5589 irel->r_vaddr = (osec->vma
5590 + sec->output_offset
5591 + h->root.u.def.value
5592 + 4);
5593 irel->r_symndx = tsec->output_section->target_index;
5594 irel->r_type = R_POS;
5595 irel->r_size = 31;
5596 finfo->section_info[oindx].rel_hashes[osec->reloc_count] = NULL;
5597 ++osec->reloc_count;
5598
5599 ldrel.l_vaddr = irel->r_vaddr;
5600 if (strcmp (tsec->output_section->name, ".text") == 0)
5601 ldrel.l_symndx = 0;
5602 else if (strcmp (tsec->output_section->name, ".data") == 0)
5603 ldrel.l_symndx = 1;
5604 else if (strcmp (tsec->output_section->name, ".bss") == 0)
5605 ldrel.l_symndx = 2;
5606 else
5607 {
5608 (*_bfd_error_handler)
5609 ("%s: loader reloc in unrecognized section `%s'",
5610 bfd_get_filename (output_bfd),
5611 tsec->output_section->name);
5612 bfd_set_error (bfd_error_nonrepresentable_section);
5613 return false;
5614 }
5615 ldrel.l_rtype = (31 << 8) | R_POS;
5616 ldrel.l_rsecnm = oindx;
5617 xcoff_swap_ldrel_out (output_bfd, &ldrel, finfo->ldrel);
5618 ++finfo->ldrel;
5619 }
5620
5621 if (h->indx >= 0)
5622 return true;
5623
5624 if (h->indx != -2
5625 && (finfo->info->strip == strip_all
5626 || (finfo->info->strip == strip_some
5627 && (bfd_hash_lookup (finfo->info->keep_hash,
5628 h->root.root.string, false, false)
5629 == NULL))))
5630 return true;
5631
5632 if (h->indx != -2
5633 && (h->flags & (XCOFF_REF_REGULAR | XCOFF_DEF_REGULAR)) == 0)
5634 return true;
5635
5636 outsym = finfo->outsyms;
5637
5638 memset (&aux, 0, sizeof aux);
5639
5640 h->indx = obj_raw_syment_count (output_bfd);
5641
5642 if (strlen (h->root.root.string) <= SYMNMLEN)
5643 strncpy (isym._n._n_name, h->root.root.string, SYMNMLEN);
5644 else
5645 {
5646 boolean hash;
5647 bfd_size_type indx;
5648
5649 hash = true;
5650 if ((output_bfd->flags & BFD_TRADITIONAL_FORMAT) != 0)
5651 hash = false;
5652 indx = _bfd_stringtab_add (finfo->strtab, h->root.root.string, hash,
5653 false);
5654 if (indx == (bfd_size_type) -1)
5655 return false;
5656 isym._n._n_n._n_zeroes = 0;
5657 isym._n._n_n._n_offset = STRING_SIZE_SIZE + indx;
5658 }
5659
5660 if (h->root.type == bfd_link_hash_undefined
5661 || h->root.type == bfd_link_hash_undefweak)
5662 {
5663 isym.n_value = 0;
5664 isym.n_scnum = N_UNDEF;
5665 isym.n_sclass = C_EXT;
5666 aux.x_csect.x_smtyp = XTY_ER;
5667 }
5668 else if (h->root.type == bfd_link_hash_defined
5669 || h->root.type == bfd_link_hash_defweak)
5670 {
5671 struct xcoff_link_size_list *l;
5672
5673 isym.n_value = (h->root.u.def.section->output_section->vma
5674 + h->root.u.def.section->output_offset
5675 + h->root.u.def.value);
5676 isym.n_scnum = h->root.u.def.section->output_section->target_index;
5677 isym.n_sclass = C_HIDEXT;
5678 aux.x_csect.x_smtyp = XTY_SD;
5679
5680 if ((h->flags & XCOFF_HAS_SIZE) != 0)
5681 {
5682 for (l = xcoff_hash_table (finfo->info)->size_list;
5683 l != NULL;
5684 l = l->next)
5685 {
5686 if (l->h == h)
5687 {
5688 aux.x_csect.x_scnlen.l = l->size;
5689 break;
5690 }
5691 }
5692 }
5693 }
5694 else if (h->root.type == bfd_link_hash_common)
5695 {
5696 isym.n_value = (h->root.u.c.p->section->output_section->vma
5697 + h->root.u.c.p->section->output_offset);
5698 isym.n_scnum = h->root.u.c.p->section->output_section->target_index;
5699 isym.n_sclass = C_EXT;
5700 aux.x_csect.x_smtyp = XTY_CM;
5701 aux.x_csect.x_scnlen.l = h->root.u.c.size;
5702 }
5703 else
5704 abort ();
5705
5706 isym.n_type = T_NULL;
5707 isym.n_numaux = 1;
5708
5709 bfd_coff_swap_sym_out (output_bfd, (PTR) &isym, (PTR) outsym);
5710 outsym += bfd_coff_symesz (output_bfd);
5711
5712 aux.x_csect.x_smclas = h->smclas;
5713
5714 bfd_coff_swap_aux_out (output_bfd, (PTR) &aux, T_NULL, isym.n_sclass, 0, 1,
5715 (PTR) outsym);
5716 outsym += bfd_coff_auxesz (output_bfd);
5717
5718 if (h->root.type == bfd_link_hash_defined
5719 || h->root.type == bfd_link_hash_defweak)
5720 {
5721 /* We just output an SD symbol. Now output an LD symbol. */
5722
5723 h->indx += 2;
5724
5725 isym.n_sclass = C_EXT;
5726 bfd_coff_swap_sym_out (output_bfd, (PTR) &isym, (PTR) outsym);
5727 outsym += bfd_coff_symesz (output_bfd);
5728
5729 aux.x_csect.x_smtyp = XTY_LD;
5730 aux.x_csect.x_scnlen.l = obj_raw_syment_count (output_bfd);
5731
5732 bfd_coff_swap_aux_out (output_bfd, (PTR) &aux, T_NULL, C_EXT, 0, 1,
5733 (PTR) outsym);
5734 outsym += bfd_coff_auxesz (output_bfd);
5735 }
5736
5737 if (bfd_seek (output_bfd,
5738 (obj_sym_filepos (output_bfd)
5739 + (obj_raw_syment_count (output_bfd)
5740 * bfd_coff_symesz (output_bfd))),
5741 SEEK_SET) != 0
5742 || (bfd_write (finfo->outsyms, outsym - finfo->outsyms, 1, output_bfd)
5743 != (bfd_size_type) (outsym - finfo->outsyms)))
5744 return false;
5745 obj_raw_syment_count (output_bfd) +=
5746 (outsym - finfo->outsyms) / bfd_coff_symesz (output_bfd);
5747
5748 return true;
5749 }
5750
5751 /* Handle a link order which is supposed to generate a reloc. */
5752
5753 static boolean
5754 xcoff_reloc_link_order (output_bfd, finfo, output_section, link_order)
5755 bfd *output_bfd;
5756 struct xcoff_final_link_info *finfo;
5757 asection *output_section;
5758 struct bfd_link_order *link_order;
5759 {
5760 reloc_howto_type *howto;
5761 struct xcoff_link_hash_entry *h;
5762 asection *hsec;
5763 bfd_vma hval;
5764 bfd_vma addend;
5765 struct internal_reloc *irel;
5766 struct xcoff_link_hash_entry **rel_hash_ptr;
5767 struct internal_ldrel ldrel;
5768
5769 if (link_order->type == bfd_section_reloc_link_order)
5770 {
5771 /* We need to somehow locate a symbol in the right section. The
5772 symbol must either have a value of zero, or we must adjust
5773 the addend by the value of the symbol. FIXME: Write this
5774 when we need it. The old linker couldn't handle this anyhow. */
5775 abort ();
5776 }
5777
5778 howto = bfd_reloc_type_lookup (output_bfd, link_order->u.reloc.p->reloc);
5779 if (howto == NULL)
5780 {
5781 bfd_set_error (bfd_error_bad_value);
5782 return false;
5783 }
5784
5785 h = ((struct xcoff_link_hash_entry *)
5786 bfd_wrapped_link_hash_lookup (output_bfd, finfo->info,
5787 link_order->u.reloc.p->u.name,
5788 false, false, true));
5789 if (h == NULL)
5790 {
5791 if (! ((*finfo->info->callbacks->unattached_reloc)
5792 (finfo->info, link_order->u.reloc.p->u.name, (bfd *) NULL,
5793 (asection *) NULL, (bfd_vma) 0)))
5794 return false;
5795 return true;
5796 }
5797
5798 if (h->root.type == bfd_link_hash_common)
5799 {
5800 hsec = h->root.u.c.p->section;
5801 hval = 0;
5802 }
5803 else if (h->root.type == bfd_link_hash_defined
5804 || h->root.type == bfd_link_hash_defweak)
5805 {
5806 hsec = h->root.u.def.section;
5807 hval = h->root.u.def.value;
5808 }
5809 else
5810 {
5811 hsec = NULL;
5812 hval = 0;
5813 }
5814
5815 addend = link_order->u.reloc.p->addend;
5816 if (hsec != NULL)
5817 addend += (hsec->output_section->vma
5818 + hsec->output_offset
5819 + hval);
5820
5821 if (addend != 0)
5822 {
5823 bfd_size_type size;
5824 bfd_byte *buf;
5825 bfd_reloc_status_type rstat;
5826 boolean ok;
5827
5828 size = bfd_get_reloc_size (howto);
5829 buf = (bfd_byte *) bfd_zmalloc (size);
5830 if (buf == NULL)
5831 return false;
5832
5833 rstat = _bfd_relocate_contents (howto, output_bfd, addend, buf);
5834 switch (rstat)
5835 {
5836 case bfd_reloc_ok:
5837 break;
5838 default:
5839 case bfd_reloc_outofrange:
5840 abort ();
5841 case bfd_reloc_overflow:
5842 if (! ((*finfo->info->callbacks->reloc_overflow)
5843 (finfo->info, link_order->u.reloc.p->u.name,
5844 howto->name, addend, (bfd *) NULL, (asection *) NULL,
5845 (bfd_vma) 0)))
5846 {
5847 free (buf);
5848 return false;
5849 }
5850 break;
5851 }
5852 ok = bfd_set_section_contents (output_bfd, output_section, (PTR) buf,
5853 (file_ptr) link_order->offset, size);
5854 free (buf);
5855 if (! ok)
5856 return false;
5857 }
5858
5859 /* Store the reloc information in the right place. It will get
5860 swapped and written out at the end of the final_link routine. */
5861
5862 irel = (finfo->section_info[output_section->target_index].relocs
5863 + output_section->reloc_count);
5864 rel_hash_ptr = (finfo->section_info[output_section->target_index].rel_hashes
5865 + output_section->reloc_count);
5866
5867 memset (irel, 0, sizeof (struct internal_reloc));
5868 *rel_hash_ptr = NULL;
5869
5870 irel->r_vaddr = output_section->vma + link_order->offset;
5871
5872 if (h->indx >= 0)
5873 irel->r_symndx = h->indx;
5874 else
5875 {
5876 /* Set the index to -2 to force this symbol to get written out. */
5877 h->indx = -2;
5878 *rel_hash_ptr = h;
5879 irel->r_symndx = 0;
5880 }
5881
5882 irel->r_type = howto->type;
5883 irel->r_size = howto->bitsize - 1;
5884 if (howto->complain_on_overflow == complain_overflow_signed)
5885 irel->r_size |= 0x80;
5886
5887 ++output_section->reloc_count;
5888
5889 /* Now output the reloc to the .loader section. */
5890
5891 ldrel.l_vaddr = irel->r_vaddr;
5892
5893 if (hsec != NULL)
5894 {
5895 const char *secname;
5896
5897 secname = hsec->output_section->name;
5898
5899 if (strcmp (secname, ".text") == 0)
5900 ldrel.l_symndx = 0;
5901 else if (strcmp (secname, ".data") == 0)
5902 ldrel.l_symndx = 1;
5903 else if (strcmp (secname, ".bss") == 0)
5904 ldrel.l_symndx = 2;
5905 else
5906 {
5907 (*_bfd_error_handler)
5908 ("%s: loader reloc in unrecognized section `%s'",
5909 bfd_get_filename (output_bfd), secname);
5910 bfd_set_error (bfd_error_nonrepresentable_section);
5911 return false;
5912 }
5913 }
5914 else
5915 {
5916 if (h->ldindx < 0)
5917 {
5918 (*_bfd_error_handler)
5919 ("%s: `%s' in loader reloc but not loader sym",
5920 bfd_get_filename (output_bfd),
5921 h->root.root.string);
5922 bfd_set_error (bfd_error_bad_value);
5923 return false;
5924 }
5925 ldrel.l_symndx = h->ldindx;
5926 }
5927
5928 ldrel.l_rtype = (irel->r_size << 8) | irel->r_type;
5929 ldrel.l_rsecnm = output_section->target_index;
5930 xcoff_swap_ldrel_out (output_bfd, &ldrel, finfo->ldrel);
5931 ++finfo->ldrel;
5932
5933 return true;
5934 }
5935
5936 /* Sort relocs by VMA. This is called via qsort. */
5937
5938 static int
5939 xcoff_sort_relocs (p1, p2)
5940 const PTR p1;
5941 const PTR p2;
5942 {
5943 const struct internal_reloc *r1 = (const struct internal_reloc *) p1;
5944 const struct internal_reloc *r2 = (const struct internal_reloc *) p2;
5945
5946 if (r1->r_vaddr > r2->r_vaddr)
5947 return 1;
5948 else if (r1->r_vaddr < r2->r_vaddr)
5949 return -1;
5950 else
5951 return 0;
5952 }
5953
5954 /* This is the relocation function for the RS/6000/POWER/PowerPC.
5955 This is currently the only processor which uses XCOFF; I hope that
5956 will never change. */
5957
5958 boolean
5959 _bfd_ppc_xcoff_relocate_section (output_bfd, info, input_bfd,
5960 input_section, contents, relocs, syms,
5961 sections)
5962 bfd *output_bfd;
5963 struct bfd_link_info *info;
5964 bfd *input_bfd;
5965 asection *input_section;
5966 bfd_byte *contents;
5967 struct internal_reloc *relocs;
5968 struct internal_syment *syms;
5969 asection **sections;
5970 {
5971 struct internal_reloc *rel;
5972 struct internal_reloc *relend;
5973
5974 rel = relocs;
5975 relend = rel + input_section->reloc_count;
5976 for (; rel < relend; rel++)
5977 {
5978 long symndx;
5979 struct xcoff_link_hash_entry *h;
5980 struct internal_syment *sym;
5981 bfd_vma addend;
5982 bfd_vma val;
5983 struct reloc_howto_struct howto;
5984 bfd_reloc_status_type rstat;
5985
5986 /* Relocation type R_REF is a special relocation type which is
5987 merely used to prevent garbage collection from occurring for
5988 the csect including the symbol which it references. */
5989 if (rel->r_type == R_REF)
5990 continue;
5991
5992 symndx = rel->r_symndx;
5993
5994 if (symndx == -1)
5995 {
5996 h = NULL;
5997 sym = NULL;
5998 addend = 0;
5999 }
6000 else
6001 {
6002 h = obj_xcoff_sym_hashes (input_bfd)[symndx];
6003 sym = syms + symndx;
6004 addend = - sym->n_value;
6005 }
6006
6007 /* We build the howto information on the fly. */
6008
6009 howto.type = rel->r_type;
6010 howto.rightshift = 0;
6011 howto.size = 2;
6012 howto.bitsize = (rel->r_size & 0x1f) + 1;
6013 howto.pc_relative = false;
6014 howto.bitpos = 0;
6015 if ((rel->r_size & 0x80) != 0)
6016 howto.complain_on_overflow = complain_overflow_signed;
6017 else
6018 howto.complain_on_overflow = complain_overflow_bitfield;
6019 howto.special_function = NULL;
6020 howto.name = "internal";
6021 howto.partial_inplace = true;
6022 if (howto.bitsize == 32)
6023 howto.src_mask = howto.dst_mask = 0xffffffff;
6024 else
6025 {
6026 howto.src_mask = howto.dst_mask = (1 << howto.bitsize) - 1;
6027 if (howto.bitsize == 16)
6028 howto.size = 1;
6029 }
6030 howto.pcrel_offset = false;
6031
6032 val = 0;
6033
6034 if (h == NULL)
6035 {
6036 asection *sec;
6037
6038 if (symndx == -1)
6039 {
6040 sec = bfd_abs_section_ptr;
6041 val = 0;
6042 }
6043 else
6044 {
6045 sec = sections[symndx];
6046 /* Hack to make sure we use the right TOC anchor value
6047 if this reloc is against the TOC anchor. */
6048 if (sec->name[3] == '0'
6049 && strcmp (sec->name, ".tc0") == 0)
6050 val = xcoff_data (output_bfd)->toc;
6051 else
6052 val = (sec->output_section->vma
6053 + sec->output_offset
6054 + sym->n_value
6055 - sec->vma);
6056 }
6057 }
6058 else
6059 {
6060 if (h->root.type == bfd_link_hash_defined
6061 || h->root.type == bfd_link_hash_defweak)
6062 {
6063 asection *sec;
6064
6065 sec = h->root.u.def.section;
6066 val = (h->root.u.def.value
6067 + sec->output_section->vma
6068 + sec->output_offset);
6069 }
6070 else if (h->root.type == bfd_link_hash_common)
6071 {
6072 asection *sec;
6073
6074 sec = h->root.u.c.p->section;
6075 val = (sec->output_section->vma
6076 + sec->output_offset);
6077 }
6078 else if ((h->flags & XCOFF_DEF_DYNAMIC) != 0
6079 || (h->flags & XCOFF_IMPORT) != 0)
6080 {
6081 /* Every symbol in a shared object is defined somewhere. */
6082 val = 0;
6083 }
6084 else if (! info->relocateable)
6085 {
6086 if (! ((*info->callbacks->undefined_symbol)
6087 (info, h->root.root.string, input_bfd, input_section,
6088 rel->r_vaddr - input_section->vma)))
6089 return false;
6090 }
6091 }
6092
6093 /* I took the relocation type definitions from two documents:
6094 the PowerPC AIX Version 4 Application Binary Interface, First
6095 Edition (April 1992), and the PowerOpen ABI, Big-Endian
6096 32-Bit Hardware Implementation (June 30, 1994). Differences
6097 between the documents are noted below. */
6098
6099 switch (rel->r_type)
6100 {
6101 case R_RTB:
6102 case R_RRTBI:
6103 case R_RRTBA:
6104 /* These relocs are defined by the PowerPC ABI to be
6105 relative branches which use half of the difference
6106 between the symbol and the program counter. I can't
6107 quite figure out when this is useful. These relocs are
6108 not defined by the PowerOpen ABI. */
6109 default:
6110 (*_bfd_error_handler)
6111 ("%s: unsupported relocation type 0x%02x",
6112 bfd_get_filename (input_bfd), (unsigned int) rel->r_type);
6113 bfd_set_error (bfd_error_bad_value);
6114 return false;
6115 case R_POS:
6116 /* Simple positive relocation. */
6117 break;
6118 case R_NEG:
6119 /* Simple negative relocation. */
6120 val = - val;
6121 break;
6122 case R_REL:
6123 /* Simple PC relative relocation. */
6124 howto.pc_relative = true;
6125 break;
6126 case R_TOC:
6127 /* TOC relative relocation. The value in the instruction in
6128 the input file is the offset from the input file TOC to
6129 the desired location. We want the offset from the final
6130 TOC to the desired location. We have:
6131 isym = iTOC + in
6132 iinsn = in + o
6133 osym = oTOC + on
6134 oinsn = on + o
6135 so we must change insn by on - in.
6136 */
6137 case R_GL:
6138 /* Global linkage relocation. The value of this relocation
6139 is the address of the entry in the TOC section. */
6140 case R_TCL:
6141 /* Local object TOC address. I can't figure out the
6142 difference between this and case R_GL. */
6143 case R_TRL:
6144 /* TOC relative relocation. A TOC relative load instruction
6145 which may be changed to a load address instruction.
6146 FIXME: We don't currently implement this optimization. */
6147 case R_TRLA:
6148 /* TOC relative relocation. This is a TOC relative load
6149 address instruction which may be changed to a load
6150 instruction. FIXME: I don't know if this is the correct
6151 implementation. */
6152 if (h != NULL && h->smclas != XMC_TD)
6153 {
6154 if (h->toc_section == NULL)
6155 {
6156 (*_bfd_error_handler)
6157 ("%s: TOC reloc at 0x%x to symbol `%s' with no TOC entry",
6158 bfd_get_filename (input_bfd), rel->r_vaddr,
6159 h->root.root.string);
6160 bfd_set_error (bfd_error_bad_value);
6161 return false;
6162 }
6163
6164 BFD_ASSERT ((h->flags & XCOFF_SET_TOC) == 0);
6165 val = (h->toc_section->output_section->vma
6166 + h->toc_section->output_offset);
6167 }
6168
6169 val = ((val - xcoff_data (output_bfd)->toc)
6170 - (sym->n_value - xcoff_data (input_bfd)->toc));
6171 addend = 0;
6172 break;
6173 case R_BA:
6174 /* Absolute branch. We don't want to mess with the lower
6175 two bits of the instruction. */
6176 case R_CAI:
6177 /* The PowerPC ABI defines this as an absolute call which
6178 may be modified to become a relative call. The PowerOpen
6179 ABI does not define this relocation type. */
6180 case R_RBA:
6181 /* Absolute branch which may be modified to become a
6182 relative branch. */
6183 case R_RBAC:
6184 /* The PowerPC ABI defines this as an absolute branch to a
6185 fixed address which may be modified to an absolute branch
6186 to a symbol. The PowerOpen ABI does not define this
6187 relocation type. */
6188 case R_RBRC:
6189 /* The PowerPC ABI defines this as an absolute branch to a
6190 fixed address which may be modified to a relative branch.
6191 The PowerOpen ABI does not define this relocation type. */
6192 howto.src_mask &= ~3;
6193 howto.dst_mask = howto.src_mask;
6194 break;
6195 case R_BR:
6196 /* Relative branch. We don't want to mess with the lower
6197 two bits of the instruction. */
6198 case R_CREL:
6199 /* The PowerPC ABI defines this as a relative call which may
6200 be modified to become an absolute call. The PowerOpen
6201 ABI does not define this relocation type. */
6202 case R_RBR:
6203 /* A relative branch which may be modified to become an
6204 absolute branch. FIXME: We don't implement this,
6205 although we should for symbols of storage mapping class
6206 XMC_XO. */
6207 howto.pc_relative = true;
6208 howto.src_mask &= ~3;
6209 howto.dst_mask = howto.src_mask;
6210 break;
6211 case R_RL:
6212 /* The PowerPC AIX ABI describes this as a load which may be
6213 changed to a load address. The PowerOpen ABI says this
6214 is the same as case R_POS. */
6215 break;
6216 case R_RLA:
6217 /* The PowerPC AIX ABI describes this as a load address
6218 which may be changed to a load. The PowerOpen ABI says
6219 this is the same as R_POS. */
6220 break;
6221 }
6222
6223 /* If we see an R_BR or R_RBR reloc which is jumping to global
6224 linkage code, and it is followed by an appropriate cror nop
6225 instruction, we replace the cror with lwz r2,20(r1). This
6226 restores the TOC after the glink code. Contrariwise, if the
6227 call is followed by a lwz r2,20(r1), but the call is not
6228 going to global linkage code, we can replace the load with a
6229 cror. */
6230 if ((rel->r_type == R_BR || rel->r_type == R_RBR)
6231 && h != NULL
6232 && h->root.type == bfd_link_hash_defined
6233 && (rel->r_vaddr - input_section->vma + 8
6234 <= input_section->_cooked_size))
6235 {
6236 bfd_byte *pnext;
6237 unsigned long next;
6238
6239 pnext = contents + (rel->r_vaddr - input_section->vma) + 4;
6240 next = bfd_get_32 (input_bfd, pnext);
6241
6242 /* The _ptrgl function is magic. It is used by the AIX
6243 compiler to call a function through a pointer. */
6244 if (h->smclas == XMC_GL
6245 || strcmp (h->root.root.string, "._ptrgl") == 0)
6246 {
6247 if (next == 0x4def7b82 /* cror 15,15,15 */
6248 || next == 0x4ffffb82) /* cror 31,31,31 */
6249 bfd_put_32 (input_bfd, 0x80410014, pnext); /* lwz r1,20(r1) */
6250 }
6251 else
6252 {
6253 if (next == 0x80410014) /* lwz r1,20(r1) */
6254 bfd_put_32 (input_bfd, 0x4ffffb82, pnext); /* cror 31,31,31 */
6255 }
6256 }
6257
6258 /* A PC relative reloc includes the section address. */
6259 if (howto.pc_relative)
6260 addend += input_section->vma;
6261
6262 rstat = _bfd_final_link_relocate (&howto, input_bfd, input_section,
6263 contents,
6264 rel->r_vaddr - input_section->vma,
6265 val, addend);
6266
6267 switch (rstat)
6268 {
6269 default:
6270 abort ();
6271 case bfd_reloc_ok:
6272 break;
6273 case bfd_reloc_overflow:
6274 {
6275 const char *name;
6276 char buf[SYMNMLEN + 1];
6277 char howto_name[10];
6278
6279 if (symndx == -1)
6280 name = "*ABS*";
6281 else if (h != NULL)
6282 name = h->root.root.string;
6283 else
6284 {
6285 name = _bfd_coff_internal_syment_name (input_bfd, sym, buf);
6286 if (name == NULL)
6287 return false;
6288 }
6289 sprintf (howto_name, "0x%02x", rel->r_type);
6290
6291 if (! ((*info->callbacks->reloc_overflow)
6292 (info, name, howto_name, (bfd_vma) 0, input_bfd,
6293 input_section, rel->r_vaddr - input_section->vma)))
6294 return false;
6295 }
6296 }
6297 }
6298
6299 return true;
6300 }