gdb: add target_ops::supports_displaced_step
[deliverable/binutils-gdb.git] / ld / pe-dll.c
1 /* Routines to help build PEI-format DLLs (Win32 etc)
2 Copyright (C) 1998-2020 Free Software Foundation, Inc.
3 Written by DJ Delorie <dj@cygnus.com>
4
5 This file is part of the GNU Binutils.
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 3 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., 51 Franklin Street - Fifth Floor, Boston,
20 MA 02110-1301, USA. */
21
22 #include "sysdep.h"
23 #include "bfd.h"
24 #include "bfdlink.h"
25 #include "libiberty.h"
26 #include "filenames.h"
27 #include "safe-ctype.h"
28 #include "ctf-api.h"
29
30 #include <time.h>
31
32 #include "ld.h"
33 #include "ldexp.h"
34 #include "ldlang.h"
35 #include "ldwrite.h"
36 #include "ldmisc.h"
37 #include <ldgram.h>
38 #include "ldmain.h"
39 #include "ldfile.h"
40 #include "ldemul.h"
41 #include "coff/internal.h"
42 #include "../bfd/libcoff.h"
43 #include "deffile.h"
44
45 #ifdef pe_use_x86_64
46
47 #define PE_IDATA4_SIZE 8
48 #define PE_IDATA5_SIZE 8
49 #include "pep-dll.h"
50 #undef AOUTSZ
51 #define AOUTSZ PEPAOUTSZ
52 #define PEAOUTHDR PEPAOUTHDR
53
54 #else
55
56 #include "pe-dll.h"
57
58 #endif
59
60 #ifndef PE_IDATA4_SIZE
61 #define PE_IDATA4_SIZE 4
62 #endif
63
64 #ifndef PE_IDATA5_SIZE
65 #define PE_IDATA5_SIZE 4
66 #endif
67
68 /* This file turns a regular Windows PE image into a DLL. Because of
69 the complexity of this operation, it has been broken down into a
70 number of separate modules which are all called by the main function
71 at the end of this file. This function is not re-entrant and is
72 normally only called once, so static variables are used to reduce
73 the number of parameters and return values required.
74
75 See also: ld/emultempl/pe.em and ld/emultempl/pep.em. */
76
77 /* Auto-import feature by Paul Sokolovsky
78
79 Quick facts:
80
81 1. With this feature on, DLL clients can import variables from DLL
82 without any concern from their side (for example, without any source
83 code modifications).
84
85 2. This is done completely in bounds of the PE specification (to be fair,
86 there's a place where it pokes nose out of, but in practice it works).
87 So, resulting module can be used with any other PE compiler/linker.
88
89 3. Auto-import is fully compatible with standard import method and they
90 can be mixed together.
91
92 4. Overheads: space: 8 bytes per imported symbol, plus 20 for each
93 reference to it; load time: negligible; virtual/physical memory: should be
94 less than effect of DLL relocation, and I sincerely hope it doesn't affect
95 DLL sharability (too much).
96
97 Idea
98
99 The obvious and only way to get rid of dllimport insanity is to make client
100 access variable directly in the DLL, bypassing extra dereference. I.e.,
101 whenever client contains something like
102
103 mov dll_var,%eax,
104
105 address of dll_var in the command should be relocated to point into loaded
106 DLL. The aim is to make OS loader do so, and than make ld help with that.
107 Import section of PE made following way: there's a vector of structures
108 each describing imports from particular DLL. Each such structure points
109 to two other parallel vectors: one holding imported names, and one which
110 will hold address of corresponding imported name. So, the solution is
111 de-vectorize these structures, making import locations be sparse and
112 pointing directly into code. Before continuing, it is worth a note that,
113 while authors strives to make PE act ELF-like, there're some other people
114 make ELF act PE-like: elfvector, ;-) .
115
116 Implementation
117
118 For each reference of data symbol to be imported from DLL (to set of which
119 belong symbols with name <sym>, if __imp_<sym> is found in implib), the
120 import fixup entry is generated. That entry is of type
121 IMAGE_IMPORT_DESCRIPTOR and stored in .idata$2 subsection. Each
122 fixup entry contains pointer to symbol's address within .text section
123 (marked with __fuN_<sym> symbol, where N is integer), pointer to DLL name
124 (so, DLL name is referenced by multiple entries), and pointer to symbol
125 name thunk. Symbol name thunk is singleton vector (__nm_th_<symbol>)
126 pointing to IMAGE_IMPORT_BY_NAME structure (__nm_<symbol>) directly
127 containing imported name. Here comes that "on the edge" problem mentioned
128 above: PE specification rambles that name vector (OriginalFirstThunk)
129 should run in parallel with addresses vector (FirstThunk), i.e. that they
130 should have same number of elements and terminated with zero. We violate
131 this, since FirstThunk points directly into machine code. But in practice,
132 OS loader implemented the sane way: it goes through OriginalFirstThunk and
133 puts addresses to FirstThunk, not something else. It once again should be
134 noted that dll and symbol name structures are reused across fixup entries
135 and should be there anyway to support standard import stuff, so sustained
136 overhead is 20 bytes per reference. Other question is whether having several
137 IMAGE_IMPORT_DESCRIPTORS for the same DLL is possible. Answer is yes, it is
138 done even by native compiler/linker (libth32's functions are in fact reside
139 in windows9x kernel32.dll, so if you use it, you have two
140 IMAGE_IMPORT_DESCRIPTORS for kernel32.dll). Yet other question is whether
141 referencing the same PE structures several times is valid. The answer is why
142 not, prohibiting that (detecting violation) would require more work on
143 behalf of loader than not doing it.
144
145 See also: ld/emultempl/pe.em and ld/emultempl/pep.em. */
146
147 static void add_bfd_to_link (bfd *, const char *, struct bfd_link_info *);
148
149 /* For emultempl/pe.em. */
150
151 def_file * pe_def_file = 0;
152 int pe_dll_export_everything = 0;
153 int pe_dll_exclude_all_symbols = 0;
154 int pe_dll_do_default_excludes = 1;
155 int pe_dll_kill_ats = 0;
156 int pe_dll_stdcall_aliases = 0;
157 int pe_dll_warn_dup_exports = 0;
158 int pe_dll_compat_implib = 0;
159 int pe_dll_extra_pe_debug = 0;
160 int pe_use_nul_prefixed_import_tables = 0;
161 int pe_use_coff_long_section_names = -1;
162 int pe_leading_underscore = -1;
163 int pe_dll_enable_reloc_section = 0;
164
165 /* Static variables and types. */
166
167 static bfd_vma image_base;
168 static bfd *filler_bfd;
169 static struct bfd_section *edata_s, *reloc_s;
170 static unsigned char *edata_d, *reloc_d;
171 static size_t edata_sz, reloc_sz;
172 static int runtime_pseudo_relocs_created = 0;
173 static bfd_boolean runtime_pseudp_reloc_v2_init = FALSE;
174
175 typedef struct
176 {
177 const char *name;
178 int len;
179 }
180 autofilter_entry_type;
181
182 typedef struct
183 {
184 const char *target_name;
185 const char *object_target;
186 unsigned int imagebase_reloc;
187 int pe_arch;
188 int bfd_arch;
189 bfd_boolean underscored;
190 const autofilter_entry_type* autofilter_symbollist;
191 }
192 pe_details_type;
193
194 static const autofilter_entry_type autofilter_symbollist_generic[] =
195 {
196 { STRING_COMMA_LEN ("_NULL_IMPORT_DESCRIPTOR") },
197 /* Entry point symbols. */
198 { STRING_COMMA_LEN ("DllMain") },
199 { STRING_COMMA_LEN ("DllMainCRTStartup") },
200 { STRING_COMMA_LEN ("_DllMainCRTStartup") },
201 /* Runtime pseudo-reloc. */
202 { STRING_COMMA_LEN ("_pei386_runtime_relocator") },
203 { STRING_COMMA_LEN ("do_pseudo_reloc") },
204 { NULL, 0 }
205 };
206
207 static const autofilter_entry_type autofilter_symbollist_i386[] =
208 {
209 { STRING_COMMA_LEN ("_NULL_IMPORT_DESCRIPTOR") },
210 /* Entry point symbols, and entry hooks. */
211 { STRING_COMMA_LEN ("cygwin_crt0") },
212 #ifdef pe_use_x86_64
213 { STRING_COMMA_LEN ("DllMain") },
214 { STRING_COMMA_LEN ("DllEntryPoint") },
215 { STRING_COMMA_LEN ("DllMainCRTStartup") },
216 { STRING_COMMA_LEN ("_cygwin_dll_entry") },
217 { STRING_COMMA_LEN ("_cygwin_crt0_common") },
218 { STRING_COMMA_LEN ("_cygwin_noncygwin_dll_entry") },
219 #else
220 { STRING_COMMA_LEN ("DllMain@12") },
221 { STRING_COMMA_LEN ("DllEntryPoint@0") },
222 { STRING_COMMA_LEN ("DllMainCRTStartup@12") },
223 { STRING_COMMA_LEN ("_cygwin_dll_entry@12") },
224 { STRING_COMMA_LEN ("_cygwin_crt0_common@8") },
225 { STRING_COMMA_LEN ("_cygwin_noncygwin_dll_entry@12") },
226 { STRING_COMMA_LEN ("cygwin_attach_dll") },
227 #endif
228 { STRING_COMMA_LEN ("cygwin_premain0") },
229 { STRING_COMMA_LEN ("cygwin_premain1") },
230 { STRING_COMMA_LEN ("cygwin_premain2") },
231 { STRING_COMMA_LEN ("cygwin_premain3") },
232 /* Runtime pseudo-reloc. */
233 { STRING_COMMA_LEN ("_pei386_runtime_relocator") },
234 { STRING_COMMA_LEN ("do_pseudo_reloc") },
235 /* Global vars that should not be exported. */
236 { STRING_COMMA_LEN ("impure_ptr") },
237 { STRING_COMMA_LEN ("_impure_ptr") },
238 { STRING_COMMA_LEN ("_fmode") },
239 { STRING_COMMA_LEN ("environ") },
240 { STRING_COMMA_LEN ("__dso_handle") },
241 { NULL, 0 }
242 };
243
244 #define PE_ARCH_i386 1
245 #define PE_ARCH_sh 2
246 #define PE_ARCH_mips 3
247 #define PE_ARCH_arm 4
248 #define PE_ARCH_arm_wince 5
249
250 /* Don't make it constant as underscore mode gets possibly overriden
251 by target or -(no-)leading-underscore option. */
252 static pe_details_type pe_detail_list[] =
253 {
254 {
255 #ifdef pe_use_x86_64
256 "pei-x86-64",
257 "pe-x86-64",
258 3 /* R_IMAGEBASE */,
259 #else
260 "pei-i386",
261 "pe-i386",
262 7 /* R_IMAGEBASE */,
263 #endif
264 PE_ARCH_i386,
265 bfd_arch_i386,
266 #ifdef pe_use_x86_64
267 FALSE,
268 #else
269 TRUE,
270 #endif
271 autofilter_symbollist_i386
272 },
273 #ifdef pe_use_x86_64
274 {
275 "pei-x86-64",
276 "pe-bigobj-x86-64",
277 3 /* R_IMAGEBASE */,
278 PE_ARCH_i386,
279 bfd_arch_i386,
280 FALSE,
281 autofilter_symbollist_i386
282 },
283 #else
284 {
285 "pei-i386",
286 "pe-bigobj-i386",
287 7 /* R_IMAGEBASE */,
288 PE_ARCH_i386,
289 bfd_arch_i386,
290 TRUE,
291 autofilter_symbollist_i386
292 },
293 #endif
294 {
295 "pei-shl",
296 "pe-shl",
297 16 /* R_SH_IMAGEBASE */,
298 PE_ARCH_sh,
299 bfd_arch_sh,
300 TRUE,
301 autofilter_symbollist_generic
302 },
303 {
304 "pei-mips",
305 "pe-mips",
306 34 /* MIPS_R_RVA */,
307 PE_ARCH_mips,
308 bfd_arch_mips,
309 FALSE,
310 autofilter_symbollist_generic
311 },
312 {
313 "pei-arm-little",
314 "pe-arm-little",
315 11 /* ARM_RVA32 */,
316 PE_ARCH_arm,
317 bfd_arch_arm,
318 TRUE,
319 autofilter_symbollist_generic
320 },
321 {
322 "pei-arm-wince-little",
323 "pe-arm-wince-little",
324 2, /* ARM_RVA32 on Windows CE, see bfd/coff-arm.c. */
325 PE_ARCH_arm_wince,
326 bfd_arch_arm,
327 FALSE,
328 autofilter_symbollist_generic
329 },
330 { NULL, NULL, 0, 0, 0, FALSE, NULL }
331 };
332
333 static const pe_details_type *pe_details;
334
335 /* Do not specify library suffix explicitly, to allow for dllized versions. */
336 static const autofilter_entry_type autofilter_liblist[] =
337 {
338 { STRING_COMMA_LEN ("libcegcc") },
339 { STRING_COMMA_LEN ("libcygwin") },
340 { STRING_COMMA_LEN ("libgcc") },
341 { STRING_COMMA_LEN ("libgcc_s") },
342 { STRING_COMMA_LEN ("libstdc++") },
343 { STRING_COMMA_LEN ("libmingw32") },
344 { STRING_COMMA_LEN ("libmingwex") },
345 { STRING_COMMA_LEN ("libg2c") },
346 { STRING_COMMA_LEN ("libsupc++") },
347 { STRING_COMMA_LEN ("libobjc") },
348 { STRING_COMMA_LEN ("libgcj") },
349 { STRING_COMMA_LEN ("libmsvcrt") },
350 { STRING_COMMA_LEN ("libmsvcrt-os") },
351 { STRING_COMMA_LEN ("libucrtbase") },
352 { NULL, 0 }
353 };
354
355 /* Regardless of the suffix issue mentioned above, we must ensure that
356 we do not falsely match on a leading substring, such as when libtool
357 builds libstdc++ as a DLL using libsupc++convenience.a as an intermediate.
358 This routine ensures that the leading part of the name matches and that
359 it is followed by only an optional version suffix and a file extension,
360 returning zero if so or -1 if not. */
361 static int libnamencmp (const char *libname, const autofilter_entry_type *afptr)
362 {
363 if (filename_ncmp (libname, afptr->name, afptr->len))
364 return -1;
365
366 libname += afptr->len;
367
368 /* Be liberal in interpreting what counts as a version suffix; we
369 accept anything that has a dash to separate it from the name and
370 begins with a digit. */
371 if (libname[0] == '-')
372 {
373 if (!ISDIGIT (*++libname))
374 return -1;
375 /* Ensure the filename has an extension. */
376 while (*++libname != '.')
377 if (!*libname)
378 return -1;
379 }
380 else if (libname[0] != '.')
381 return -1;
382
383 return 0;
384 }
385
386 static const autofilter_entry_type autofilter_objlist[] =
387 {
388 { STRING_COMMA_LEN ("crt0.o") },
389 { STRING_COMMA_LEN ("crt1.o") },
390 { STRING_COMMA_LEN ("crt2.o") },
391 { STRING_COMMA_LEN ("dllcrt1.o") },
392 { STRING_COMMA_LEN ("dllcrt2.o") },
393 { STRING_COMMA_LEN ("gcrt0.o") },
394 { STRING_COMMA_LEN ("gcrt1.o") },
395 { STRING_COMMA_LEN ("gcrt2.o") },
396 { STRING_COMMA_LEN ("crtbegin.o") },
397 { STRING_COMMA_LEN ("crtend.o") },
398 { NULL, 0 }
399 };
400
401 static const autofilter_entry_type autofilter_symbolprefixlist[] =
402 {
403 /* _imp_ is treated specially, as it is always underscored. */
404 /* { STRING_COMMA_LEN ("_imp_") }, */
405 /* Don't export some c++ symbols. */
406 { STRING_COMMA_LEN ("__rtti_") },
407 { STRING_COMMA_LEN ("__builtin_") },
408 /* Don't re-export auto-imported symbols. */
409 { STRING_COMMA_LEN ("__nm_") },
410 /* Don't export symbols specifying internal DLL layout. */
411 { STRING_COMMA_LEN ("_head_") },
412 { STRING_COMMA_LEN ("_IMPORT_DESCRIPTOR_") },
413 /* Don't export section labels or artificial symbols
414 (eg ".weak.foo". */
415 { STRING_COMMA_LEN (".") },
416 { NULL, 0 }
417 };
418
419 static const autofilter_entry_type autofilter_symbolsuffixlist[] =
420 {
421 { STRING_COMMA_LEN ("_iname") },
422 { STRING_COMMA_LEN ("_NULL_THUNK_DATA") },
423 { NULL, 0 }
424 };
425
426 #define U(str) (pe_details->underscored ? "_" str : str)
427
428 void
429 pe_dll_id_target (const char *target)
430 {
431 int i;
432
433 for (i = 0; pe_detail_list[i].target_name; i++)
434 if (strcmp (pe_detail_list[i].target_name, target) == 0
435 || strcmp (pe_detail_list[i].object_target, target) == 0)
436 {
437 int u = pe_leading_underscore; /* Underscoring mode. -1 for use default. */
438 if (u == -1)
439 bfd_get_target_info (target, NULL, NULL, &u, NULL);
440 if (u == -1)
441 abort ();
442 pe_detail_list[i].underscored = (u != 0 ? TRUE : FALSE);
443 pe_details = pe_detail_list + i;
444 pe_leading_underscore = (u != 0 ? 1 : 0);
445 return;
446 }
447 einfo (_("%X%P: unsupported PEI architecture: %s\n"), target);
448 exit (1);
449 }
450
451 /* Helper functions for qsort. Relocs must be sorted so that we can write
452 them out by pages. */
453
454 typedef struct
455 {
456 bfd_vma vma;
457 char type;
458 short extra;
459 int idx;
460 }
461 reloc_data_type;
462
463 static int
464 reloc_sort (const void *va, const void *vb)
465 {
466 const reloc_data_type *a = (const reloc_data_type *) va;
467 const reloc_data_type *b = (const reloc_data_type *) vb;
468
469 if (a->vma > b->vma)
470 return 1;
471 if (a->vma < b->vma)
472 return -1;
473 if (a->idx > b->idx)
474 return 1;
475 if (a->idx < b->idx)
476 return -1;
477 return 0;
478 }
479
480 static int
481 pe_export_sort (const void *va, const void *vb)
482 {
483 const def_file_export *a = va;
484 const def_file_export *b = vb;
485 char *an = a->name;
486 char *bn = b->name;
487 if (a->its_name)
488 an = a->its_name;
489 if (b->its_name)
490 bn = b->its_name;
491
492 return strcmp (an, bn);
493 }
494
495 /* Read and process the .DEF file. */
496
497 /* These correspond to the entries in pe_def_file->exports[]. I use
498 exported_symbol_sections[i] to tag whether or not the symbol was
499 defined, since we can't export symbols we don't have. */
500
501 static bfd_vma *exported_symbol_offsets;
502 static struct bfd_section **exported_symbol_sections;
503 static int export_table_size;
504 static int count_exported;
505 static int count_exported_byname;
506 static int count_with_ordinals;
507 static const char *dll_name;
508 static int min_ordinal, max_ordinal;
509 static int *exported_symbols;
510
511 typedef struct exclude_list_struct
512 {
513 char *string;
514 struct exclude_list_struct *next;
515 exclude_type type;
516 }
517 exclude_list_struct;
518
519 static struct exclude_list_struct *excludes = 0;
520
521 void
522 pe_dll_add_excludes (const char *new_excludes, const exclude_type type)
523 {
524 char *local_copy;
525 char *exclude_string;
526
527 local_copy = xstrdup (new_excludes);
528
529 exclude_string = strtok (local_copy, ",:");
530 for (; exclude_string; exclude_string = strtok (NULL, ",:"))
531 {
532 struct exclude_list_struct *new_exclude;
533
534 new_exclude = xmalloc (sizeof (struct exclude_list_struct));
535 new_exclude->string = xmalloc (strlen (exclude_string) + 1);
536 strcpy (new_exclude->string, exclude_string);
537 new_exclude->type = type;
538 new_exclude->next = excludes;
539 excludes = new_exclude;
540 }
541
542 free (local_copy);
543 }
544
545 static bfd_boolean
546 is_import (const char* n)
547 {
548 return (CONST_STRNEQ (n, "__imp_"));
549 }
550
551 /* abfd is a bfd containing n (or NULL)
552 It can be used for contextual checks. */
553
554 static int
555 auto_export (bfd *abfd, def_file *d, const char *n)
556 {
557 def_file_export key;
558 struct exclude_list_struct *ex;
559 const autofilter_entry_type *afptr;
560 const char * libname = NULL;
561
562 if (abfd && abfd->my_archive)
563 libname = lbasename (bfd_get_filename (abfd->my_archive));
564
565 key.name = key.its_name = (char *) n;
566
567 /* Return false if n is in the d->exports table. */
568 if (bsearch (&key, d->exports, d->num_exports,
569 sizeof (pe_def_file->exports[0]), pe_export_sort))
570 return 0;
571
572 if (pe_dll_do_default_excludes)
573 {
574 const char * p;
575 int len;
576
577 if (pe_dll_extra_pe_debug)
578 printf ("considering exporting: %s, abfd=%p, abfd->my_arc=%p\n",
579 n, abfd, abfd->my_archive);
580
581 /* First of all, make context checks:
582 Don't export anything from standard libs. */
583 if (libname)
584 {
585 afptr = autofilter_liblist;
586
587 while (afptr->name)
588 {
589 if (libnamencmp (libname, afptr) == 0 )
590 return 0;
591 afptr++;
592 }
593 }
594
595 /* Next, exclude symbols from certain startup objects. */
596
597 if (abfd && (p = lbasename (bfd_get_filename (abfd))))
598 {
599 afptr = autofilter_objlist;
600 while (afptr->name)
601 {
602 if (strcmp (p, afptr->name) == 0)
603 return 0;
604 afptr++;
605 }
606 }
607
608 /* Don't try to blindly exclude all symbols
609 that begin with '__'; this was tried and
610 it is too restrictive. Instead we have
611 a target specific list to use: */
612 afptr = pe_details->autofilter_symbollist;
613
614 while (afptr->name)
615 {
616 if (strcmp (n, afptr->name) == 0)
617 return 0;
618
619 afptr++;
620 }
621
622 /* Next, exclude symbols starting with ... */
623 afptr = autofilter_symbolprefixlist;
624 while (afptr->name)
625 {
626 if (strncmp (n, afptr->name, afptr->len) == 0)
627 return 0;
628
629 afptr++;
630 }
631
632 /* Finally, exclude symbols ending with ... */
633 len = strlen (n);
634 afptr = autofilter_symbolsuffixlist;
635 while (afptr->name)
636 {
637 if ((len >= afptr->len)
638 /* Add 1 to insure match with trailing '\0'. */
639 && strncmp (n + len - afptr->len, afptr->name,
640 afptr->len + 1) == 0)
641 return 0;
642
643 afptr++;
644 }
645 }
646
647 for (ex = excludes; ex; ex = ex->next)
648 {
649 if (ex->type == EXCLUDELIBS)
650 {
651 if (libname
652 && ((filename_cmp (libname, ex->string) == 0)
653 || (strcasecmp ("ALL", ex->string) == 0)))
654 return 0;
655 }
656 else if (ex->type == EXCLUDEFORIMPLIB)
657 {
658 if (filename_cmp (bfd_get_filename (abfd), ex->string) == 0)
659 return 0;
660 }
661 else if (strcmp (n, ex->string) == 0)
662 return 0;
663 }
664
665 return 1;
666 }
667
668 static void
669 process_def_file_and_drectve (bfd *abfd ATTRIBUTE_UNUSED, struct bfd_link_info *info)
670 {
671 int i, j;
672 struct bfd_link_hash_entry *blhe;
673 bfd *b;
674 struct bfd_section *s;
675 def_file_export *e = 0;
676 bfd_boolean resort_needed;
677
678 if (!pe_def_file)
679 pe_def_file = def_file_empty ();
680
681 /* First, run around to all the objects looking for the .drectve
682 sections, and push those into the def file too. */
683 for (b = info->input_bfds; b; b = b->link.next)
684 {
685 s = bfd_get_section_by_name (b, ".drectve");
686 if (s)
687 {
688 long size = s->size;
689 char *buf = xmalloc (size);
690
691 bfd_get_section_contents (b, s, buf, 0, size);
692 def_file_add_directive (pe_def_file, buf, size);
693 free (buf);
694 }
695 }
696
697 /* Process aligned common symbol information from the
698 .drectve sections now; common symbol allocation is
699 done before final link, so it will be too late to
700 process them in process_embedded_commands() called
701 from _bfd_coff_link_input_bfd(). */
702 if (pe_def_file->aligncomms)
703 {
704 def_file_aligncomm *ac = pe_def_file->aligncomms;
705 while (ac)
706 {
707 struct coff_link_hash_entry *sym_hash;
708 sym_hash = coff_link_hash_lookup (coff_hash_table (info),
709 ac->symbol_name, FALSE, FALSE, FALSE);
710 if (sym_hash && sym_hash->root.type == bfd_link_hash_common
711 && sym_hash->root.u.c.p->alignment_power < (unsigned) ac->alignment)
712 {
713 sym_hash->root.u.c.p->alignment_power = (unsigned) ac->alignment;
714 }
715 ac = ac->next;
716 }
717 }
718
719 /* If we are building an executable and there is nothing
720 to export, we do not build an export table at all. */
721 if (bfd_link_executable (info) && pe_def_file->num_exports == 0
722 && (!pe_dll_export_everything || pe_dll_exclude_all_symbols))
723 return;
724
725 /* Now, maybe export everything else the default way. */
726 if ((pe_dll_export_everything || pe_def_file->num_exports == 0)
727 && !pe_dll_exclude_all_symbols)
728 {
729 for (b = info->input_bfds; b; b = b->link.next)
730 {
731 asymbol **symbols;
732 int nsyms;
733
734 if (!bfd_generic_link_read_symbols (b))
735 {
736 einfo (_("%F%P: %pB: could not read symbols: %E\n"), b);
737 return;
738 }
739
740 symbols = bfd_get_outsymbols (b);
741 nsyms = bfd_get_symcount (b);
742
743 for (j = 0; j < nsyms; j++)
744 {
745 /* We should export symbols which are either global or not
746 anything at all. (.bss data is the latter)
747 We should not export undefined symbols. */
748 bfd_boolean would_export
749 = (symbols[j]->section != bfd_und_section_ptr
750 && ((symbols[j]->flags & BSF_GLOBAL)
751 || (symbols[j]->flags == 0)));
752 if (link_info.version_info && would_export)
753 would_export
754 = !bfd_hide_sym_by_version (link_info.version_info,
755 symbols[j]->name);
756 if (would_export)
757 {
758 const char *sn = symbols[j]->name;
759
760 /* We should not re-export imported stuff. */
761 {
762 char *name;
763 if (is_import (sn))
764 continue;
765
766 name = xmalloc (strlen ("__imp_") + strlen (sn) + 1);
767 sprintf (name, "%s%s", "__imp_", sn);
768
769 blhe = bfd_link_hash_lookup (info->hash, name,
770 FALSE, FALSE, FALSE);
771 free (name);
772
773 if (blhe && blhe->type == bfd_link_hash_defined)
774 continue;
775 }
776
777 if (pe_details->underscored && *sn == '_')
778 sn++;
779
780 if (auto_export (b, pe_def_file, sn))
781 {
782 int is_dup = 0;
783 def_file_export *p;
784
785 p = def_file_add_export (pe_def_file, sn, 0, -1,
786 NULL, &is_dup);
787 /* Fill data flag properly, from dlltool.c. */
788 if (!is_dup)
789 p->flag_data = !(symbols[j]->flags & BSF_FUNCTION);
790 }
791 }
792 }
793 }
794 }
795
796 #undef NE
797 #define NE pe_def_file->num_exports
798
799 /* Don't create an empty export table. */
800 if (NE == 0)
801 return;
802
803 resort_needed = FALSE;
804
805 /* Canonicalize the export list. */
806 if (pe_dll_kill_ats)
807 {
808 for (i = 0; i < NE; i++)
809 {
810 /* Check for fastcall/stdcall-decoration, but ignore
811 C++ mangled names. */
812 if (pe_def_file->exports[i].name[0] != '?'
813 && strchr (pe_def_file->exports[i].name, '@'))
814 {
815 /* This will preserve internal_name, which may have been
816 pointing to the same memory as name, or might not
817 have. */
818 int lead_at = (*pe_def_file->exports[i].name == '@');
819 char *tmp = xstrdup (pe_def_file->exports[i].name + lead_at);
820 char *tmp_at = strrchr (tmp, '@');
821
822 if (tmp_at)
823 *tmp_at = 0;
824 else
825 einfo (_("%X%P: cannot export %s: invalid export name\n"),
826 pe_def_file->exports[i].name);
827 pe_def_file->exports[i].name = tmp;
828 resort_needed = TRUE;
829 }
830 }
831 }
832
833 /* Re-sort the exports table as we have possibly changed the order
834 by removing leading @. */
835 if (resort_needed)
836 qsort (pe_def_file->exports, NE, sizeof (pe_def_file->exports[0]),
837 pe_export_sort);
838
839 if (pe_dll_stdcall_aliases)
840 {
841 for (i = 0; i < NE; i++)
842 {
843 if (is_import (pe_def_file->exports[i].name))
844 continue;
845
846 if (strchr (pe_def_file->exports[i].name, '@'))
847 {
848 int is_dup = 1;
849 int lead_at = (*pe_def_file->exports[i].name == '@');
850 char *tmp = xstrdup (pe_def_file->exports[i].name + lead_at);
851
852 *(strchr (tmp, '@')) = 0;
853 if (auto_export (NULL, pe_def_file, tmp))
854 def_file_add_export (pe_def_file, tmp,
855 pe_def_file->exports[i].internal_name,
856 -1, NULL, &is_dup);
857 if (is_dup)
858 free (tmp);
859 }
860 }
861 }
862
863 /* Convenience, but watch out for it changing. */
864 e = pe_def_file->exports;
865
866 for (i = 0, j = 0; i < NE; i++)
867 {
868 if (i > 0 && strcmp (e[i].name, e[i - 1].name) == 0)
869 {
870 /* This is a duplicate. */
871 if (e[j - 1].ordinal != -1
872 && e[i].ordinal != -1
873 && e[j - 1].ordinal != e[i].ordinal)
874 {
875 if (pe_dll_warn_dup_exports)
876 /* xgettext:c-format */
877 einfo (_("%X%P: error, duplicate EXPORT with ordinals: %s (%d vs %d)\n"),
878 e[j - 1].name, e[j - 1].ordinal, e[i].ordinal);
879 }
880 else
881 {
882 if (pe_dll_warn_dup_exports)
883 /* xgettext:c-format */
884 einfo (_("%P: warning, duplicate EXPORT: %s\n"),
885 e[j - 1].name);
886 }
887
888 if (e[i].ordinal != -1)
889 e[j - 1].ordinal = e[i].ordinal;
890 e[j - 1].flag_private |= e[i].flag_private;
891 e[j - 1].flag_constant |= e[i].flag_constant;
892 e[j - 1].flag_noname |= e[i].flag_noname;
893 e[j - 1].flag_data |= e[i].flag_data;
894 free (e[i].name);
895 free (e[i].internal_name);
896 free (e[i].its_name);
897 }
898 else
899 {
900 if (i != j)
901 e[j] = e[i];
902 j++;
903 }
904 }
905 pe_def_file->num_exports = j; /* == NE */
906
907 exported_symbol_offsets = xmalloc (NE * sizeof (bfd_vma));
908 exported_symbol_sections = xmalloc (NE * sizeof (struct bfd_section *));
909
910 memset (exported_symbol_sections, 0, NE * sizeof (struct bfd_section *));
911 max_ordinal = 0;
912 min_ordinal = 65536;
913 count_exported = 0;
914 count_exported_byname = 0;
915 count_with_ordinals = 0;
916
917 for (i = 0; i < NE; i++)
918 {
919 char *int_name = pe_def_file->exports[i].internal_name;
920 char *name;
921
922 /* PR 19803: Make sure that any exported symbol does not get garbage collected. */
923 lang_add_gc_name (int_name);
924
925 name = xmalloc (strlen (int_name) + 2);
926 if (pe_details->underscored && int_name[0] != '@')
927 {
928 *name = '_';
929 strcpy (name + 1, int_name);
930
931 /* PR 19803: The alias must be preserved as well. */
932 lang_add_gc_name (xstrdup (name));
933 }
934 else
935 strcpy (name, int_name);
936
937 blhe = bfd_link_hash_lookup (info->hash,
938 name,
939 FALSE, FALSE, TRUE);
940
941 if (blhe
942 && (blhe->type == bfd_link_hash_defined
943 || (blhe->type == bfd_link_hash_common)))
944 {
945 count_exported++;
946 if (!pe_def_file->exports[i].flag_noname)
947 count_exported_byname++;
948
949 /* Only fill in the sections. The actual offsets are computed
950 in fill_exported_offsets() after common symbols are laid
951 out. */
952 if (blhe->type == bfd_link_hash_defined)
953 exported_symbol_sections[i] = blhe->u.def.section;
954 else
955 exported_symbol_sections[i] = blhe->u.c.p->section;
956
957 if (pe_def_file->exports[i].ordinal != -1)
958 {
959 if (max_ordinal < pe_def_file->exports[i].ordinal)
960 max_ordinal = pe_def_file->exports[i].ordinal;
961 if (min_ordinal > pe_def_file->exports[i].ordinal)
962 min_ordinal = pe_def_file->exports[i].ordinal;
963 count_with_ordinals++;
964 }
965 }
966 /* Check for forward exports. These are indicated in DEF files by an
967 export directive of the form NAME1 = MODULE-NAME.EXTERNAL-NAME
968 but we must take care not to be fooled when the user wants to export
969 a symbol that actually really has a dot in it, so we only check
970 for them here, after real defined symbols have already been matched. */
971 else if (strchr (int_name, '.'))
972 {
973 count_exported++;
974 if (!pe_def_file->exports[i].flag_noname)
975 count_exported_byname++;
976
977 pe_def_file->exports[i].flag_forward = 1;
978
979 if (pe_def_file->exports[i].ordinal != -1)
980 {
981 if (max_ordinal < pe_def_file->exports[i].ordinal)
982 max_ordinal = pe_def_file->exports[i].ordinal;
983 if (min_ordinal > pe_def_file->exports[i].ordinal)
984 min_ordinal = pe_def_file->exports[i].ordinal;
985 count_with_ordinals++;
986 }
987 }
988 else if (blhe && blhe->type == bfd_link_hash_undefined)
989 {
990 /* xgettext:c-format */
991 einfo (_("%X%P: cannot export %s: symbol not defined\n"),
992 int_name);
993 }
994 else if (blhe)
995 {
996 /* xgettext:c-format */
997 einfo (_("%X%P: cannot export %s: symbol wrong type (%d vs %d)\n"),
998 int_name,
999 blhe->type, bfd_link_hash_defined);
1000 }
1001 else
1002 {
1003 /* xgettext:c-format */
1004 einfo (_("%X%P: cannot export %s: symbol not found\n"),
1005 int_name);
1006 }
1007 free (name);
1008 }
1009 }
1010
1011 /* Build the bfd that will contain .edata and .reloc sections. */
1012
1013 static void
1014 build_filler_bfd (int include_edata)
1015 {
1016 lang_input_statement_type *filler_file;
1017 filler_file = lang_add_input_file ("dll stuff",
1018 lang_input_file_is_fake_enum,
1019 NULL);
1020 filler_file->the_bfd = filler_bfd = bfd_create ("dll stuff",
1021 link_info.output_bfd);
1022 if (filler_bfd == NULL
1023 || !bfd_set_arch_mach (filler_bfd,
1024 bfd_get_arch (link_info.output_bfd),
1025 bfd_get_mach (link_info.output_bfd)))
1026 {
1027 einfo (_("%F%P: can not create BFD: %E\n"));
1028 return;
1029 }
1030
1031 if (include_edata)
1032 {
1033 edata_s = bfd_make_section_old_way (filler_bfd, ".edata");
1034 if (edata_s == NULL
1035 || !bfd_set_section_flags (edata_s, (SEC_HAS_CONTENTS
1036 | SEC_ALLOC
1037 | SEC_LOAD
1038 | SEC_KEEP
1039 | SEC_IN_MEMORY)))
1040 {
1041 einfo (_("%X%P: can not create .edata section: %E\n"));
1042 return;
1043 }
1044 bfd_set_section_size (edata_s, edata_sz);
1045 }
1046
1047 reloc_s = bfd_make_section_old_way (filler_bfd, ".reloc");
1048 if (reloc_s == NULL
1049 || !bfd_set_section_flags (reloc_s, (SEC_HAS_CONTENTS
1050 | SEC_ALLOC
1051 | SEC_LOAD
1052 | SEC_KEEP
1053 | SEC_IN_MEMORY)))
1054 {
1055 einfo (_("%X%P: can not create .reloc section: %E\n"));
1056 return;
1057 }
1058
1059 bfd_set_section_size (reloc_s, 0);
1060
1061 ldlang_add_file (filler_file);
1062 }
1063
1064 /* Gather all the exported symbols and build the .edata section. */
1065
1066 static void
1067 generate_edata (bfd *abfd, struct bfd_link_info *info ATTRIBUTE_UNUSED)
1068 {
1069 int i, next_ordinal;
1070 int name_table_size = 0;
1071 const char *dlnp;
1072
1073 /* First, we need to know how many exported symbols there are,
1074 and what the range of ordinals is. */
1075 if (pe_def_file->name)
1076 dll_name = pe_def_file->name;
1077 else
1078 {
1079 dll_name = bfd_get_filename (abfd);
1080
1081 for (dlnp = dll_name; *dlnp; dlnp++)
1082 if (*dlnp == '\\' || *dlnp == '/' || *dlnp == ':')
1083 dll_name = dlnp + 1;
1084 }
1085
1086 if (count_with_ordinals && max_ordinal > count_exported)
1087 {
1088 if (min_ordinal > max_ordinal - count_exported + 1)
1089 min_ordinal = max_ordinal - count_exported + 1;
1090 }
1091 else
1092 {
1093 min_ordinal = 1;
1094 max_ordinal = count_exported;
1095 }
1096
1097 export_table_size = max_ordinal - min_ordinal + 1;
1098 exported_symbols = xmalloc (export_table_size * sizeof (int));
1099 for (i = 0; i < export_table_size; i++)
1100 exported_symbols[i] = -1;
1101
1102 /* Now we need to assign ordinals to those that don't have them. */
1103 for (i = 0; i < NE; i++)
1104 {
1105 if (exported_symbol_sections[i]
1106 || pe_def_file->exports[i].flag_forward)
1107 {
1108 if (pe_def_file->exports[i].ordinal != -1)
1109 {
1110 int ei = pe_def_file->exports[i].ordinal - min_ordinal;
1111 int pi = exported_symbols[ei];
1112
1113 if (pi != -1)
1114 {
1115 /* xgettext:c-format */
1116 einfo (_("%X%P: error: ordinal used twice: %d (%s vs %s)\n"),
1117 pe_def_file->exports[i].ordinal,
1118 pe_def_file->exports[i].name,
1119 pe_def_file->exports[pi].name);
1120 }
1121 exported_symbols[ei] = i;
1122 }
1123 if (pe_def_file->exports[i].its_name)
1124 name_table_size += strlen (pe_def_file->exports[i].its_name) + 1;
1125 else
1126 name_table_size += strlen (pe_def_file->exports[i].name) + 1;
1127 }
1128
1129 /* Reserve space for the forward name. */
1130 if (pe_def_file->exports[i].flag_forward)
1131 {
1132 name_table_size += strlen (pe_def_file->exports[i].internal_name) + 1;
1133 }
1134 }
1135
1136 next_ordinal = min_ordinal;
1137 for (i = 0; i < NE; i++)
1138 if ((exported_symbol_sections[i]
1139 || pe_def_file->exports[i].flag_forward)
1140 && pe_def_file->exports[i].ordinal == -1)
1141 {
1142 while (exported_symbols[next_ordinal - min_ordinal] != -1)
1143 next_ordinal++;
1144
1145 exported_symbols[next_ordinal - min_ordinal] = i;
1146 pe_def_file->exports[i].ordinal = next_ordinal;
1147 }
1148
1149 /* PR 12969: Check for more than 1^16 ordinals. */
1150 if (max_ordinal > 65535 || next_ordinal > 65535)
1151 /* xgettext:c-format */
1152 einfo(_("%X%P: error: export ordinal too large: %d\n"),
1153 max_ordinal > next_ordinal ? max_ordinal : next_ordinal);
1154
1155 /* OK, now we can allocate some memory. */
1156 edata_sz = (40 /* directory */
1157 + 4 * export_table_size /* addresses */
1158 + 4 * count_exported_byname /* name ptrs */
1159 + 2 * count_exported_byname /* ordinals */
1160 + name_table_size + strlen (dll_name) + 1);
1161 }
1162
1163 /* Fill the exported symbol offsets. The preliminary work has already
1164 been done in process_def_file_and_drectve(). */
1165
1166 static void
1167 fill_exported_offsets (bfd *abfd ATTRIBUTE_UNUSED, struct bfd_link_info *info)
1168 {
1169 int i;
1170 struct bfd_link_hash_entry *blhe;
1171
1172 for (i = 0; i < pe_def_file->num_exports; i++)
1173 {
1174 char *name;
1175
1176 name = xmalloc (strlen (pe_def_file->exports[i].internal_name) + 2);
1177 if (pe_details->underscored
1178 && *pe_def_file->exports[i].internal_name != '@')
1179 {
1180 *name = '_';
1181 strcpy (name + 1, pe_def_file->exports[i].internal_name);
1182 }
1183 else
1184 strcpy (name, pe_def_file->exports[i].internal_name);
1185
1186 blhe = bfd_link_hash_lookup (info->hash,
1187 name,
1188 FALSE, FALSE, TRUE);
1189
1190 if (blhe && blhe->type == bfd_link_hash_defined)
1191 exported_symbol_offsets[i] = blhe->u.def.value;
1192
1193 free (name);
1194 }
1195 }
1196
1197 static void
1198 fill_edata (bfd *abfd, struct bfd_link_info *info ATTRIBUTE_UNUSED)
1199 {
1200 int s, hint;
1201 unsigned char *edirectory;
1202 unsigned char *eaddresses;
1203 unsigned char *enameptrs;
1204 unsigned char *eordinals;
1205 char *enamestr;
1206
1207 edata_d = xmalloc (edata_sz);
1208
1209 /* Note use of array pointer math here. */
1210 edirectory = edata_d;
1211 eaddresses = edirectory + 40;
1212 enameptrs = eaddresses + 4 * export_table_size;
1213 eordinals = enameptrs + 4 * count_exported_byname;
1214 enamestr = (char *) eordinals + 2 * count_exported_byname;
1215
1216 #define ERVA(ptr) (((unsigned char *)(ptr) - edata_d) \
1217 + edata_s->output_section->vma - image_base)
1218
1219 memset (edata_d, 0, edata_sz);
1220
1221 if (pe_data (abfd)->timestamp == -1)
1222 H_PUT_32 (abfd, time (0), edata_d + 4);
1223 else
1224 H_PUT_32 (abfd, pe_data (abfd)->timestamp, edata_d + 4);
1225
1226 if (pe_def_file->version_major != -1)
1227 {
1228 bfd_put_16 (abfd, pe_def_file->version_major, edata_d + 8);
1229 bfd_put_16 (abfd, pe_def_file->version_minor, edata_d + 10);
1230 }
1231
1232 bfd_put_32 (abfd, ERVA (enamestr), edata_d + 12);
1233 strcpy (enamestr, dll_name);
1234 enamestr += strlen (enamestr) + 1;
1235 bfd_put_32 (abfd, min_ordinal, edata_d + 16);
1236 bfd_put_32 (abfd, export_table_size, edata_d + 20);
1237 bfd_put_32 (abfd, count_exported_byname, edata_d + 24);
1238 bfd_put_32 (abfd, ERVA (eaddresses), edata_d + 28);
1239 bfd_put_32 (abfd, ERVA (enameptrs), edata_d + 32);
1240 bfd_put_32 (abfd, ERVA (eordinals), edata_d + 36);
1241
1242 fill_exported_offsets (abfd, info);
1243
1244 /* Ok, now for the filling in part.
1245 Scan alphabetically - ie the ordering in the exports[] table,
1246 rather than by ordinal - the ordering in the exported_symbol[]
1247 table. See dlltool.c and:
1248 http://sources.redhat.com/ml/binutils/2003-04/msg00379.html
1249 for more information. */
1250 hint = 0;
1251 for (s = 0; s < NE; s++)
1252 {
1253 struct bfd_section *ssec = exported_symbol_sections[s];
1254 if (pe_def_file->exports[s].ordinal != -1
1255 && (pe_def_file->exports[s].flag_forward || ssec != NULL))
1256 {
1257 int ord = pe_def_file->exports[s].ordinal;
1258
1259 if (pe_def_file->exports[s].flag_forward)
1260 {
1261 bfd_put_32 (abfd, ERVA (enamestr),
1262 eaddresses + 4 * (ord - min_ordinal));
1263
1264 strcpy (enamestr, pe_def_file->exports[s].internal_name);
1265 enamestr += strlen (pe_def_file->exports[s].internal_name) + 1;
1266 }
1267 else
1268 {
1269 bfd_vma srva = (exported_symbol_offsets[s]
1270 + ssec->output_section->vma
1271 + ssec->output_offset);
1272
1273 bfd_put_32 (abfd, srva - image_base,
1274 eaddresses + 4 * (ord - min_ordinal));
1275 }
1276
1277 if (!pe_def_file->exports[s].flag_noname)
1278 {
1279 char *ename = pe_def_file->exports[s].name;
1280 if (pe_def_file->exports[s].its_name)
1281 ename = pe_def_file->exports[s].its_name;
1282
1283 bfd_put_32 (abfd, ERVA (enamestr), enameptrs);
1284 enameptrs += 4;
1285 strcpy (enamestr, ename);
1286 enamestr += strlen (enamestr) + 1;
1287 bfd_put_16 (abfd, ord - min_ordinal, eordinals);
1288 eordinals += 2;
1289 pe_def_file->exports[s].hint = hint++;
1290 }
1291 }
1292 }
1293 }
1294
1295
1296 static struct bfd_section *current_sec;
1297
1298 static void
1299 pe_walk_relocs (struct bfd_link_info *info,
1300 char *name,
1301 const char *symname,
1302 struct bfd_hash_table *import_hash,
1303 void (*cb) (arelent *, asection *, char *, const char *))
1304 {
1305 bfd *b;
1306 asection *s;
1307
1308 for (b = info->input_bfds; b; b = b->link.next)
1309 {
1310 asymbol **symbols;
1311
1312 if (!bfd_generic_link_read_symbols (b))
1313 {
1314 einfo (_("%F%P: %pB: could not read symbols: %E\n"), b);
1315 return;
1316 }
1317
1318 symbols = bfd_get_outsymbols (b);
1319
1320 for (s = b->sections; s; s = s->next)
1321 {
1322 arelent **relocs;
1323 int relsize, nrelocs, i;
1324 int flags = bfd_section_flags (s);
1325
1326 /* Skip discarded linkonce sections. */
1327 if (flags & SEC_LINK_ONCE
1328 && s->output_section == bfd_abs_section_ptr)
1329 continue;
1330
1331 current_sec = s;
1332
1333 relsize = bfd_get_reloc_upper_bound (b, s);
1334 relocs = xmalloc (relsize);
1335 nrelocs = bfd_canonicalize_reloc (b, s, relocs, symbols);
1336
1337 for (i = 0; i < nrelocs; i++)
1338 {
1339 struct bfd_symbol *sym = *relocs[i]->sym_ptr_ptr;
1340
1341 /* Warning: the callback needs to be passed NAME directly. */
1342 if (import_hash)
1343 {
1344 if (bfd_hash_lookup (import_hash, sym->name, FALSE, FALSE))
1345 {
1346 strcpy (name, sym->name);
1347 cb (relocs[i], s, name, symname);
1348 }
1349 }
1350 else
1351 {
1352 if (strcmp (name, sym->name) == 0)
1353 cb (relocs[i], s, name, symname);
1354 }
1355 }
1356
1357 free (relocs);
1358
1359 /* Warning: the allocated symbols are remembered in BFD and reused
1360 later, so don't free them! */
1361 /* free (symbols); */
1362 }
1363 }
1364 }
1365
1366 void
1367 pe_find_data_imports (const char *symhead,
1368 void (*cb) (arelent *, asection *, char *, const char *))
1369 {
1370 struct bfd_link_hash_entry *undef;
1371 const size_t headlen = strlen (symhead);
1372 size_t namelen = 0;
1373 char *buf, *name;
1374 struct bfd_hash_table *import_hash;
1375
1376 for (undef = link_info.hash->undefs; undef; undef = undef->u.undef.next)
1377 if (undef->type == bfd_link_hash_undefined)
1378 {
1379 size_t len = strlen (undef->root.string);
1380 if (namelen < len)
1381 namelen = len;
1382 }
1383 if (namelen == 0)
1384 return;
1385
1386 /* For the pseudo-relocation support version 2, we can collect the symbols
1387 that are subject to auto-import and adjust the relocations en masse. */
1388 if (link_info.pei386_runtime_pseudo_reloc == 2)
1389 {
1390 import_hash
1391 = (struct bfd_hash_table *) xmalloc (sizeof (struct bfd_hash_table));
1392 if (!bfd_hash_table_init (import_hash,
1393 bfd_hash_newfunc,
1394 sizeof (struct bfd_hash_entry)))
1395 einfo (_("%F%P: bfd_hash_table_init failed: %E\n"));
1396 }
1397 else
1398 import_hash = NULL;
1399
1400 /* We are being a bit cunning here. The buffer will have space for
1401 prefixes at the beginning. The prefix is modified here and in a
1402 number of functions called from this function. */
1403 #define PREFIX_LEN 32
1404 buf = xmalloc (PREFIX_LEN + namelen + 1);
1405 name = buf + PREFIX_LEN;
1406
1407 for (undef = link_info.hash->undefs; undef; undef = undef->u.undef.next)
1408 if (undef->type == bfd_link_hash_undefined)
1409 {
1410 struct bfd_link_hash_entry *sym;
1411 char *impname;
1412
1413 if (pe_dll_extra_pe_debug)
1414 printf ("%s:%s\n", __FUNCTION__, undef->root.string);
1415
1416 strcpy (name, undef->root.string);
1417 impname = name - (sizeof "__imp_" - 1);
1418 memcpy (impname, "__imp_", sizeof "__imp_" - 1);
1419
1420 sym = bfd_link_hash_lookup (link_info.hash, impname, 0, 0, 1);
1421
1422 if (sym && sym->type == bfd_link_hash_defined)
1423 {
1424 if (import_hash)
1425 bfd_hash_lookup (import_hash, undef->root.string, TRUE, FALSE);
1426 else
1427 {
1428 bfd *b = sym->u.def.section->owner;
1429 const char *symname = NULL;
1430 asymbol **symbols;
1431 int nsyms, i;
1432
1433 if (!bfd_generic_link_read_symbols (b))
1434 {
1435 einfo (_("%F%P: %pB: could not read symbols: %E\n"), b);
1436 return;
1437 }
1438
1439 symbols = bfd_get_outsymbols (b);
1440 nsyms = bfd_get_symcount (b);
1441
1442 for (i = 0; i < nsyms; i++)
1443 if (strncmp (symbols[i]->name, symhead, headlen) == 0)
1444 {
1445 if (pe_dll_extra_pe_debug)
1446 printf ("->%s\n", symbols[i]->name);
1447
1448 symname = symbols[i]->name + headlen;
1449 break;
1450 }
1451
1452 /* If the symobl isn't part of an import table, there is no
1453 point in building a fixup, this would give rise to link
1454 errors for mangled symbols instead of the original one. */
1455 if (symname)
1456 pe_walk_relocs (&link_info, name, symname, NULL, cb);
1457 else
1458 continue;
1459 }
1460
1461 /* Let's differentiate it somehow from defined. */
1462 undef->type = bfd_link_hash_defweak;
1463 undef->u.def.value = sym->u.def.value;
1464 undef->u.def.section = sym->u.def.section;
1465
1466 /* We replace the original name with the __imp_ prefixed one, this
1467 1) may trash memory 2) leads to duplicate symbols. But this is
1468 better than having a misleading name that can confuse GDB. */
1469 undef->root.string = sym->root.string;
1470
1471 if (link_info.pei386_auto_import == -1)
1472 {
1473 static bfd_boolean warned = FALSE;
1474
1475 info_msg (_("Info: resolving %s by linking to %s "
1476 "(auto-import)\n"), name, impname);
1477
1478 /* PR linker/4844. */
1479 if (!warned)
1480 {
1481 einfo (_("%P: warning: auto-importing has been activated "
1482 "without --enable-auto-import specified on the "
1483 "command line; this should work unless it "
1484 "involves constant data structures referencing "
1485 "symbols from auto-imported DLLs\n"));
1486 warned = TRUE;
1487 }
1488 }
1489 }
1490 }
1491
1492 /* If we have the import hash table, walk the relocations only once. */
1493 if (import_hash)
1494 {
1495 pe_walk_relocs (&link_info, name, NULL, import_hash, cb);
1496 bfd_hash_table_free (import_hash);
1497 free (import_hash);
1498 }
1499
1500 free (buf);
1501 }
1502
1503 /* Gather all the relocations and build the .reloc section. */
1504
1505 static void
1506 generate_reloc (bfd *abfd, struct bfd_link_info *info)
1507 {
1508
1509 /* For .reloc stuff. */
1510 reloc_data_type *reloc_data;
1511 int total_relocs = 0;
1512 int i;
1513 bfd_vma sec_page = (bfd_vma) -1;
1514 bfd_vma page_ptr, page_count;
1515 int bi;
1516 bfd *b;
1517 struct bfd_section *s;
1518
1519 total_relocs = 0;
1520 for (b = info->input_bfds; b; b = b->link.next)
1521 for (s = b->sections; s; s = s->next)
1522 total_relocs += s->reloc_count;
1523
1524 reloc_data = xmalloc (total_relocs * sizeof (reloc_data_type));
1525
1526 total_relocs = 0;
1527 bi = 0;
1528 for (bi = 0, b = info->input_bfds; b; bi++, b = b->link.next)
1529 {
1530 arelent **relocs;
1531 int relsize, nrelocs;
1532
1533 for (s = b->sections; s; s = s->next)
1534 {
1535 bfd_vma sec_vma = s->output_section->vma + s->output_offset;
1536 asymbol **symbols;
1537
1538 /* If it's not loaded, we don't need to relocate it this way. */
1539 if (!(s->output_section->flags & SEC_LOAD))
1540 continue;
1541
1542 /* I don't know why there would be a reloc for these, but I've
1543 seen it happen - DJ */
1544 if (s->output_section == bfd_abs_section_ptr)
1545 continue;
1546
1547 if (s->output_section->vma == 0)
1548 {
1549 /* Huh? Shouldn't happen, but punt if it does. */
1550 einfo (_("%P: zero vma section reloc detected: `%s' #%d f=%d\n"),
1551 s->output_section->name, s->output_section->index,
1552 s->output_section->flags);
1553 continue;
1554 }
1555
1556 if (!bfd_generic_link_read_symbols (b))
1557 {
1558 einfo (_("%F%P: %pB: could not read symbols: %E\n"), b);
1559 return;
1560 }
1561
1562 symbols = bfd_get_outsymbols (b);
1563 relsize = bfd_get_reloc_upper_bound (b, s);
1564 relocs = xmalloc (relsize);
1565 nrelocs = bfd_canonicalize_reloc (b, s, relocs, symbols);
1566
1567 for (i = 0; i < nrelocs; i++)
1568 {
1569 if (pe_dll_extra_pe_debug)
1570 {
1571 struct bfd_symbol *sym = *relocs[i]->sym_ptr_ptr;
1572 printf ("rel: %s\n", sym->name);
1573 }
1574 if (!relocs[i]->howto->pc_relative
1575 && relocs[i]->howto->type != pe_details->imagebase_reloc)
1576 {
1577 struct bfd_symbol *sym = *relocs[i]->sym_ptr_ptr;
1578
1579 /* Don't create relocs for undefined weak symbols. */
1580 if (sym->flags == BSF_WEAK)
1581 {
1582 struct bfd_link_hash_entry *blhe
1583 = bfd_wrapped_link_hash_lookup (abfd, info, sym->name,
1584 FALSE, FALSE, FALSE);
1585 if (blhe && blhe->type == bfd_link_hash_undefweak)
1586 {
1587 /* Check aux sym and see if it is defined or not. */
1588 struct coff_link_hash_entry *h, *h2;
1589 h = (struct coff_link_hash_entry *)blhe;
1590 if (h->symbol_class != C_NT_WEAK || h->numaux != 1)
1591 continue;
1592 h2 = h->auxbfd->tdata.coff_obj_data->sym_hashes
1593 [h->aux->x_sym.x_tagndx.l];
1594 /* We don't want a base reloc if the aux sym is not
1595 found, undefined, or if it is the constant ABS
1596 zero default value. (We broaden that slightly by
1597 not testing the value, just the section; there's
1598 no reason we'd want a reference to any absolute
1599 address to get relocated during rebasing). */
1600 if (!h2 || h2->root.type == bfd_link_hash_undefined
1601 || h2->root.u.def.section == bfd_abs_section_ptr)
1602 continue;
1603 }
1604 else if (!blhe || blhe->type != bfd_link_hash_defined)
1605 continue;
1606 }
1607 /* Nor for Dwarf FDE references to discarded sections. */
1608 else if (bfd_is_abs_section (sym->section->output_section))
1609 {
1610 /* We only ignore relocs from .eh_frame sections, as
1611 they are discarded by the final link rather than
1612 resolved against the kept section. */
1613 if (!strcmp (s->name, ".eh_frame"))
1614 continue;
1615 }
1616
1617 reloc_data[total_relocs].vma = sec_vma + relocs[i]->address;
1618 reloc_data[total_relocs].idx = total_relocs;
1619
1620 #define BITS_AND_SHIFT(bits, shift) (bits * 1000 | shift)
1621
1622 switch BITS_AND_SHIFT (relocs[i]->howto->bitsize,
1623 relocs[i]->howto->rightshift)
1624 {
1625 #ifdef pe_use_x86_64
1626 case BITS_AND_SHIFT (64, 0):
1627 reloc_data[total_relocs].type = 10;
1628 total_relocs++;
1629 break;
1630 #endif
1631 case BITS_AND_SHIFT (32, 0):
1632 reloc_data[total_relocs].type = 3;
1633 total_relocs++;
1634 break;
1635 case BITS_AND_SHIFT (16, 0):
1636 reloc_data[total_relocs].type = 2;
1637 total_relocs++;
1638 break;
1639 case BITS_AND_SHIFT (16, 16):
1640 reloc_data[total_relocs].type = 4;
1641 /* FIXME: we can't know the symbol's right value
1642 yet, but we probably can safely assume that
1643 CE will relocate us in 64k blocks, so leaving
1644 it zero is safe. */
1645 reloc_data[total_relocs].extra = 0;
1646 total_relocs++;
1647 break;
1648 case BITS_AND_SHIFT (26, 2):
1649 reloc_data[total_relocs].type = 5;
1650 total_relocs++;
1651 break;
1652 case BITS_AND_SHIFT (24, 2):
1653 /* FIXME: 0 is ARM_26D, it is defined in bfd/coff-arm.c
1654 Those ARM_xxx definitions should go in proper
1655 header someday. */
1656 if (relocs[i]->howto->type == 0
1657 /* Older GNU linkers used 5 instead of 0 for this reloc. */
1658 || relocs[i]->howto->type == 5)
1659 /* This is an ARM_26D reloc, which is an ARM_26 reloc
1660 that has already been fully processed during a
1661 previous link stage, so ignore it here. */
1662 break;
1663 /* Fall through. */
1664 default:
1665 /* xgettext:c-format */
1666 einfo (_("%X%P: error: %d-bit reloc in dll\n"),
1667 relocs[i]->howto->bitsize);
1668 break;
1669 }
1670 }
1671 }
1672 free (relocs);
1673 /* Warning: the allocated symbols are remembered in BFD and
1674 reused later, so don't free them! */
1675 }
1676 }
1677
1678 /* At this point, we have total_relocs relocation addresses in
1679 reloc_addresses, which are all suitable for the .reloc section.
1680 We must now create the new sections. */
1681 qsort (reloc_data, total_relocs, sizeof (*reloc_data), reloc_sort);
1682
1683 for (i = 0; i < total_relocs; i++)
1684 {
1685 bfd_vma this_page = (reloc_data[i].vma >> 12);
1686
1687 if (this_page != sec_page)
1688 {
1689 reloc_sz = (reloc_sz + 3) & ~3; /* 4-byte align. */
1690 reloc_sz += 8;
1691 sec_page = this_page;
1692 }
1693
1694 reloc_sz += 2;
1695
1696 if (reloc_data[i].type == 4)
1697 reloc_sz += 2;
1698 }
1699
1700 reloc_sz = (reloc_sz + 3) & ~3; /* 4-byte align. */
1701 reloc_d = xmalloc (reloc_sz);
1702 sec_page = (bfd_vma) -1;
1703 reloc_sz = 0;
1704 page_ptr = (bfd_vma) -1;
1705 page_count = 0;
1706
1707 for (i = 0; i < total_relocs; i++)
1708 {
1709 bfd_vma rva = reloc_data[i].vma - image_base;
1710 bfd_vma this_page = (rva & ~0xfff);
1711
1712 if (this_page != sec_page)
1713 {
1714 while (reloc_sz & 3)
1715 reloc_d[reloc_sz++] = 0;
1716
1717 if (page_ptr != (bfd_vma) -1)
1718 bfd_put_32 (abfd, reloc_sz - page_ptr, reloc_d + page_ptr + 4);
1719
1720 bfd_put_32 (abfd, this_page, reloc_d + reloc_sz);
1721 page_ptr = reloc_sz;
1722 reloc_sz += 8;
1723 sec_page = this_page;
1724 page_count = 0;
1725 }
1726
1727 bfd_put_16 (abfd, (rva & 0xfff) + (reloc_data[i].type << 12),
1728 reloc_d + reloc_sz);
1729 reloc_sz += 2;
1730
1731 if (reloc_data[i].type == 4)
1732 {
1733 bfd_put_16 (abfd, reloc_data[i].extra, reloc_d + reloc_sz);
1734 reloc_sz += 2;
1735 }
1736
1737 page_count++;
1738 }
1739
1740 while (reloc_sz & 3)
1741 reloc_d[reloc_sz++] = 0;
1742
1743 if (page_ptr != (bfd_vma) -1)
1744 bfd_put_32 (abfd, reloc_sz - page_ptr, reloc_d + page_ptr + 4);
1745
1746 while (reloc_sz < reloc_s->size)
1747 reloc_d[reloc_sz++] = 0;
1748 }
1749
1750 /* Given the exiting def_file structure, print out a .DEF file that
1751 corresponds to it. */
1752
1753 static void
1754 quoteput (char *s, FILE *f, int needs_quotes)
1755 {
1756 char *cp;
1757
1758 for (cp = s; *cp; cp++)
1759 if (*cp == '\''
1760 || *cp == '"'
1761 || *cp == '\\'
1762 || ISSPACE (*cp)
1763 || *cp == ','
1764 || *cp == ';')
1765 needs_quotes = 1;
1766
1767 if (needs_quotes)
1768 {
1769 putc ('"', f);
1770
1771 while (*s)
1772 {
1773 if (*s == '"' || *s == '\\')
1774 putc ('\\', f);
1775
1776 putc (*s, f);
1777 s++;
1778 }
1779
1780 putc ('"', f);
1781 }
1782 else
1783 fputs (s, f);
1784 }
1785
1786 void
1787 pe_dll_generate_def_file (const char *pe_out_def_filename)
1788 {
1789 int i;
1790 FILE *out = fopen (pe_out_def_filename, "w");
1791
1792 if (out == NULL)
1793 /* xgettext:c-format */
1794 einfo (_("%P: can't open output def file %s\n"),
1795 pe_out_def_filename);
1796
1797 if (pe_def_file)
1798 {
1799 if (pe_def_file->name)
1800 {
1801 if (pe_def_file->is_dll)
1802 fprintf (out, "LIBRARY ");
1803 else
1804 fprintf (out, "NAME ");
1805
1806 quoteput (pe_def_file->name, out, 1);
1807
1808 if (pe_data (link_info.output_bfd)->pe_opthdr.ImageBase)
1809 {
1810 fprintf (out, " BASE=0x");
1811 fprintf_vma (out, ((bfd_vma) pe_data (link_info.output_bfd)->pe_opthdr.ImageBase));
1812 }
1813 fprintf (out, "\n");
1814 }
1815
1816 if (pe_def_file->description)
1817 {
1818 fprintf (out, "DESCRIPTION ");
1819 quoteput (pe_def_file->description, out, 1);
1820 fprintf (out, "\n");
1821 }
1822
1823 if (pe_def_file->version_minor != -1)
1824 fprintf (out, "VERSION %d.%d\n", pe_def_file->version_major,
1825 pe_def_file->version_minor);
1826 else if (pe_def_file->version_major != -1)
1827 fprintf (out, "VERSION %d\n", pe_def_file->version_major);
1828
1829 if (pe_def_file->stack_reserve != -1 || pe_def_file->heap_reserve != -1)
1830 fprintf (out, "\n");
1831
1832 if (pe_def_file->stack_commit != -1)
1833 fprintf (out, "STACKSIZE 0x%x,0x%x\n",
1834 pe_def_file->stack_reserve, pe_def_file->stack_commit);
1835 else if (pe_def_file->stack_reserve != -1)
1836 fprintf (out, "STACKSIZE 0x%x\n", pe_def_file->stack_reserve);
1837
1838 if (pe_def_file->heap_commit != -1)
1839 fprintf (out, "HEAPSIZE 0x%x,0x%x\n",
1840 pe_def_file->heap_reserve, pe_def_file->heap_commit);
1841 else if (pe_def_file->heap_reserve != -1)
1842 fprintf (out, "HEAPSIZE 0x%x\n", pe_def_file->heap_reserve);
1843
1844 if (pe_def_file->num_section_defs > 0)
1845 {
1846 fprintf (out, "\nSECTIONS\n\n");
1847
1848 for (i = 0; i < pe_def_file->num_section_defs; i++)
1849 {
1850 fprintf (out, " ");
1851 quoteput (pe_def_file->section_defs[i].name, out, 0);
1852
1853 if (pe_def_file->section_defs[i].class)
1854 {
1855 fprintf (out, " CLASS ");
1856 quoteput (pe_def_file->section_defs[i].class, out, 0);
1857 }
1858
1859 if (pe_def_file->section_defs[i].flag_read)
1860 fprintf (out, " READ");
1861
1862 if (pe_def_file->section_defs[i].flag_write)
1863 fprintf (out, " WRITE");
1864
1865 if (pe_def_file->section_defs[i].flag_execute)
1866 fprintf (out, " EXECUTE");
1867
1868 if (pe_def_file->section_defs[i].flag_shared)
1869 fprintf (out, " SHARED");
1870
1871 fprintf (out, "\n");
1872 }
1873 }
1874
1875 if (pe_def_file->num_exports > 0)
1876 {
1877 fprintf (out, "EXPORTS\n");
1878
1879 for (i = 0; i < pe_def_file->num_exports; i++)
1880 {
1881 def_file_export *e = pe_def_file->exports + i;
1882 fprintf (out, " ");
1883 quoteput (e->name, out, 0);
1884
1885 if (e->internal_name && strcmp (e->internal_name, e->name))
1886 {
1887 fprintf (out, " = ");
1888 quoteput (e->internal_name, out, 0);
1889 }
1890
1891 if (e->ordinal != -1)
1892 fprintf (out, " @%d", e->ordinal);
1893
1894 if (e->flag_private)
1895 fprintf (out, " PRIVATE");
1896
1897 if (e->flag_constant)
1898 fprintf (out, " CONSTANT");
1899
1900 if (e->flag_noname)
1901 fprintf (out, " NONAME");
1902
1903 if (e->flag_data)
1904 fprintf (out, " DATA");
1905
1906 fprintf (out, "\n");
1907 }
1908 }
1909
1910 if (pe_def_file->num_imports > 0)
1911 {
1912 fprintf (out, "\nIMPORTS\n\n");
1913
1914 for (i = 0; i < pe_def_file->num_imports; i++)
1915 {
1916 def_file_import *im = pe_def_file->imports + i;
1917 fprintf (out, " ");
1918
1919 if (im->internal_name
1920 && (!im->name || strcmp (im->internal_name, im->name)))
1921 {
1922 quoteput (im->internal_name, out, 0);
1923 fprintf (out, " = ");
1924 }
1925
1926 quoteput (im->module->name, out, 0);
1927 fprintf (out, ".");
1928
1929 if (im->name)
1930 quoteput (im->name, out, 0);
1931 else
1932 fprintf (out, "%d", im->ordinal);
1933
1934 if (im->its_name)
1935 {
1936 fprintf (out, " == ");
1937 quoteput (im->its_name, out, 0);
1938 }
1939
1940 fprintf (out, "\n");
1941 }
1942 }
1943 }
1944 else
1945 fprintf (out, _("; no contents available\n"));
1946
1947 if (fclose (out) == EOF)
1948 /* xgettext:c-format */
1949 einfo (_("%P: error closing file `%s'\n"), pe_out_def_filename);
1950 }
1951
1952 /* Generate the import library. */
1953
1954 static asymbol **symtab;
1955 static int symptr;
1956 static int tmp_seq;
1957 static const char *dll_filename;
1958 static char *dll_symname;
1959
1960 #define UNDSEC bfd_und_section_ptr
1961
1962 static asection *
1963 quick_section (bfd *abfd, const char *name, int flags, int align)
1964 {
1965 asection *sec;
1966 asymbol *sym;
1967
1968 sec = bfd_make_section_old_way (abfd, name);
1969 bfd_set_section_flags (sec, flags | SEC_ALLOC | SEC_LOAD | SEC_KEEP);
1970 bfd_set_section_alignment (sec, align);
1971 /* Remember to undo this before trying to link internally! */
1972 sec->output_section = sec;
1973
1974 sym = bfd_make_empty_symbol (abfd);
1975 symtab[symptr++] = sym;
1976 sym->name = sec->name;
1977 sym->section = sec;
1978 sym->flags = BSF_LOCAL;
1979 sym->value = 0;
1980
1981 return sec;
1982 }
1983
1984 static void
1985 quick_symbol (bfd *abfd,
1986 const char *n1,
1987 const char *n2,
1988 const char *n3,
1989 asection *sec,
1990 int flags,
1991 int addr)
1992 {
1993 asymbol *sym;
1994 char *name = xmalloc (strlen (n1) + strlen (n2) + strlen (n3) + 1);
1995
1996 strcpy (name, n1);
1997 strcat (name, n2);
1998 strcat (name, n3);
1999 sym = bfd_make_empty_symbol (abfd);
2000 sym->name = name;
2001 sym->section = sec;
2002 sym->flags = flags;
2003 sym->value = addr;
2004 symtab[symptr++] = sym;
2005 }
2006
2007 static arelent *reltab = 0;
2008 static int relcount = 0, relsize = 0;
2009
2010 static void
2011 quick_reloc (bfd *abfd, bfd_size_type address, int which_howto, int symidx)
2012 {
2013 if (relcount >= relsize - 1)
2014 {
2015 relsize += 10;
2016 if (reltab)
2017 reltab = xrealloc (reltab, relsize * sizeof (arelent));
2018 else
2019 reltab = xmalloc (relsize * sizeof (arelent));
2020 }
2021 reltab[relcount].address = address;
2022 reltab[relcount].addend = 0;
2023 reltab[relcount].howto = bfd_reloc_type_lookup (abfd, which_howto);
2024 reltab[relcount].sym_ptr_ptr = symtab + symidx;
2025 relcount++;
2026 }
2027
2028 static void
2029 save_relocs (asection *sec)
2030 {
2031 int i;
2032
2033 sec->relocation = reltab;
2034 sec->reloc_count = relcount;
2035 sec->orelocation = xmalloc ((relcount + 1) * sizeof (arelent *));
2036 for (i = 0; i < relcount; i++)
2037 sec->orelocation[i] = sec->relocation + i;
2038 sec->orelocation[relcount] = 0;
2039 sec->flags |= SEC_RELOC;
2040 reltab = 0;
2041 relcount = relsize = 0;
2042 }
2043
2044 /* .section .idata$2
2045 .global __head_my_dll
2046 __head_my_dll:
2047 .rva hname
2048 .long 0
2049 .long 0
2050 .rva __my_dll_iname
2051 .rva fthunk
2052
2053 .section .idata$5
2054 .long 0
2055 fthunk:
2056
2057 .section .idata$4
2058 .long 0
2059 hname: */
2060
2061 static bfd *
2062 make_head (bfd *parent)
2063 {
2064 asection *id2, *id5, *id4;
2065 unsigned char *d2, *d5, *d4;
2066 char *oname;
2067 bfd *abfd;
2068
2069 oname = xmalloc (20);
2070 sprintf (oname, "d%06d.o", tmp_seq);
2071 tmp_seq++;
2072
2073 abfd = bfd_create (oname, parent);
2074 bfd_find_target (pe_details->object_target, abfd);
2075 bfd_make_writable (abfd);
2076
2077 bfd_set_format (abfd, bfd_object);
2078 bfd_set_arch_mach (abfd, pe_details->bfd_arch, 0);
2079
2080 symptr = 0;
2081 symtab = xmalloc (6 * sizeof (asymbol *));
2082 id2 = quick_section (abfd, ".idata$2", SEC_HAS_CONTENTS, 2);
2083 id5 = quick_section (abfd, ".idata$5", SEC_HAS_CONTENTS, 2);
2084 id4 = quick_section (abfd, ".idata$4", SEC_HAS_CONTENTS, 2);
2085 quick_symbol (abfd, U ("_head_"), dll_symname, "", id2, BSF_GLOBAL, 0);
2086 quick_symbol (abfd, U (""), dll_symname, "_iname", UNDSEC, BSF_GLOBAL, 0);
2087
2088 /* OK, pay attention here. I got confused myself looking back at
2089 it. We create a four-byte section to mark the beginning of the
2090 list, and we include an offset of 4 in the section, so that the
2091 pointer to the list points to the *end* of this section, which is
2092 the start of the list of sections from other objects. */
2093
2094 bfd_set_section_size (id2, 20);
2095 d2 = xmalloc (20);
2096 id2->contents = d2;
2097 memset (d2, 0, 20);
2098 if (pe_use_nul_prefixed_import_tables)
2099 d2[0] = d2[16] = PE_IDATA5_SIZE; /* Reloc addend. */
2100 quick_reloc (abfd, 0, BFD_RELOC_RVA, 2);
2101 quick_reloc (abfd, 12, BFD_RELOC_RVA, 4);
2102 quick_reloc (abfd, 16, BFD_RELOC_RVA, 1);
2103 save_relocs (id2);
2104
2105 if (pe_use_nul_prefixed_import_tables)
2106 bfd_set_section_size (id5, PE_IDATA5_SIZE);
2107 else
2108 bfd_set_section_size (id5, 0);
2109 d5 = xmalloc (PE_IDATA5_SIZE);
2110 id5->contents = d5;
2111 memset (d5, 0, PE_IDATA5_SIZE);
2112 if (pe_use_nul_prefixed_import_tables)
2113 bfd_set_section_size (id4, PE_IDATA4_SIZE);
2114 else
2115 bfd_set_section_size (id4, 0);
2116 d4 = xmalloc (PE_IDATA4_SIZE);
2117 id4->contents = d4;
2118 memset (d4, 0, PE_IDATA4_SIZE);
2119
2120 bfd_set_symtab (abfd, symtab, symptr);
2121
2122 bfd_set_section_contents (abfd, id2, d2, 0, 20);
2123 if (pe_use_nul_prefixed_import_tables)
2124 {
2125 bfd_set_section_contents (abfd, id5, d5, 0, PE_IDATA5_SIZE);
2126 bfd_set_section_contents (abfd, id4, d4, 0, PE_IDATA4_SIZE);
2127 }
2128 else
2129 {
2130 bfd_set_section_contents (abfd, id5, d5, 0, 0);
2131 bfd_set_section_contents (abfd, id4, d4, 0, 0);
2132 }
2133
2134 bfd_make_readable (abfd);
2135 return abfd;
2136 }
2137
2138 /* .section .idata$4
2139 .long 0
2140 [.long 0] for PE+
2141 .section .idata$5
2142 .long 0
2143 [.long 0] for PE+
2144 .section idata$7
2145 .global __my_dll_iname
2146 __my_dll_iname:
2147 .asciz "my.dll" */
2148
2149 static bfd *
2150 make_tail (bfd *parent)
2151 {
2152 asection *id4, *id5, *id7;
2153 unsigned char *d4, *d5, *d7;
2154 int len;
2155 char *oname;
2156 bfd *abfd;
2157
2158 oname = xmalloc (20);
2159 sprintf (oname, "d%06d.o", tmp_seq);
2160 tmp_seq++;
2161
2162 abfd = bfd_create (oname, parent);
2163 bfd_find_target (pe_details->object_target, abfd);
2164 bfd_make_writable (abfd);
2165
2166 bfd_set_format (abfd, bfd_object);
2167 bfd_set_arch_mach (abfd, pe_details->bfd_arch, 0);
2168
2169 symptr = 0;
2170 symtab = xmalloc (5 * sizeof (asymbol *));
2171 id4 = quick_section (abfd, ".idata$4", SEC_HAS_CONTENTS, 2);
2172 id5 = quick_section (abfd, ".idata$5", SEC_HAS_CONTENTS, 2);
2173 id7 = quick_section (abfd, ".idata$7", SEC_HAS_CONTENTS, 2);
2174 quick_symbol (abfd, U (""), dll_symname, "_iname", id7, BSF_GLOBAL, 0);
2175
2176 bfd_set_section_size (id4, PE_IDATA4_SIZE);
2177 d4 = xmalloc (PE_IDATA4_SIZE);
2178 id4->contents = d4;
2179 memset (d4, 0, PE_IDATA4_SIZE);
2180
2181 bfd_set_section_size (id5, PE_IDATA5_SIZE);
2182 d5 = xmalloc (PE_IDATA5_SIZE);
2183 id5->contents = d5;
2184 memset (d5, 0, PE_IDATA5_SIZE);
2185
2186 len = strlen (dll_filename) + 1;
2187 if (len & 1)
2188 len++;
2189 bfd_set_section_size (id7, len);
2190 d7 = xmalloc (len);
2191 id7->contents = d7;
2192 strcpy ((char *) d7, dll_filename);
2193 /* If len was odd, the above
2194 strcpy leaves behind an undefined byte. That is harmless,
2195 but we set it to 0 just so the binary dumps are pretty. */
2196 d7[len - 1] = 0;
2197
2198 bfd_set_symtab (abfd, symtab, symptr);
2199
2200 bfd_set_section_contents (abfd, id4, d4, 0, PE_IDATA4_SIZE);
2201 bfd_set_section_contents (abfd, id5, d5, 0, PE_IDATA5_SIZE);
2202 bfd_set_section_contents (abfd, id7, d7, 0, len);
2203
2204 bfd_make_readable (abfd);
2205 return abfd;
2206 }
2207
2208 /* .text
2209 .global _function
2210 .global ___imp_function
2211 .global __imp__function
2212 _function:
2213 jmp *__imp__function:
2214
2215 .section idata$7
2216 .long __head_my_dll
2217
2218 .section .idata$5
2219 ___imp_function:
2220 __imp__function:
2221 iat?
2222 .section .idata$4
2223 iat?
2224 .section .idata$6
2225 ID<ordinal>:
2226 .short <hint>
2227 .asciz "function" xlate? (add underscore, kill at) */
2228
2229 static const unsigned char jmp_ix86_bytes[] =
2230 {
2231 0xff, 0x25, 0x00, 0x00, 0x00, 0x00, 0x90, 0x90
2232 };
2233
2234 /* _function:
2235 mov.l ip+8,r0
2236 mov.l @r0,r0
2237 jmp @r0
2238 nop
2239 .dw __imp_function */
2240
2241 static const unsigned char jmp_sh_bytes[] =
2242 {
2243 0x01, 0xd0, 0x02, 0x60, 0x2b, 0x40, 0x09, 0x00, 0x00, 0x00, 0x00, 0x00
2244 };
2245
2246 /* _function:
2247 lui $t0,<high:__imp_function>
2248 lw $t0,<low:__imp_function>
2249 jr $t0
2250 nop */
2251
2252 static const unsigned char jmp_mips_bytes[] =
2253 {
2254 0x00, 0x00, 0x08, 0x3c, 0x00, 0x00, 0x08, 0x8d,
2255 0x08, 0x00, 0x00, 0x01, 0x00, 0x00, 0x00, 0x00
2256 };
2257
2258 static const unsigned char jmp_arm_bytes[] =
2259 {
2260 0x00, 0xc0, 0x9f, 0xe5, /* ldr ip, [pc] */
2261 0x00, 0xf0, 0x9c, 0xe5, /* ldr pc, [ip] */
2262 0, 0, 0, 0
2263 };
2264
2265
2266 static bfd *
2267 make_one (def_file_export *exp, bfd *parent, bfd_boolean include_jmp_stub)
2268 {
2269 asection *tx, *id7, *id5, *id4, *id6;
2270 unsigned char *td = NULL, *d7, *d5, *d4, *d6 = NULL;
2271 int len;
2272 char *oname;
2273 bfd *abfd;
2274 const unsigned char *jmp_bytes = NULL;
2275 int jmp_byte_count = 0;
2276
2277 /* Include the jump stub section only if it is needed. A jump
2278 stub is needed if the symbol being imported <sym> is a function
2279 symbol and there is at least one undefined reference to that
2280 symbol. In other words, if all the import references to <sym> are
2281 explicitly through _declspec(dllimport) then the jump stub is not
2282 needed. */
2283 if (include_jmp_stub)
2284 {
2285 switch (pe_details->pe_arch)
2286 {
2287 case PE_ARCH_i386:
2288 jmp_bytes = jmp_ix86_bytes;
2289 jmp_byte_count = sizeof (jmp_ix86_bytes);
2290 break;
2291 case PE_ARCH_sh:
2292 jmp_bytes = jmp_sh_bytes;
2293 jmp_byte_count = sizeof (jmp_sh_bytes);
2294 break;
2295 case PE_ARCH_mips:
2296 jmp_bytes = jmp_mips_bytes;
2297 jmp_byte_count = sizeof (jmp_mips_bytes);
2298 break;
2299 case PE_ARCH_arm:
2300 case PE_ARCH_arm_wince:
2301 jmp_bytes = jmp_arm_bytes;
2302 jmp_byte_count = sizeof (jmp_arm_bytes);
2303 break;
2304 default:
2305 abort ();
2306 }
2307 }
2308
2309 oname = xmalloc (20);
2310 sprintf (oname, "d%06d.o", tmp_seq);
2311 tmp_seq++;
2312
2313 abfd = bfd_create (oname, parent);
2314 bfd_find_target (pe_details->object_target, abfd);
2315 bfd_make_writable (abfd);
2316
2317 bfd_set_format (abfd, bfd_object);
2318 bfd_set_arch_mach (abfd, pe_details->bfd_arch, 0);
2319
2320 symptr = 0;
2321 symtab = xmalloc (12 * sizeof (asymbol *));
2322
2323 tx = quick_section (abfd, ".text", SEC_CODE | SEC_HAS_CONTENTS | SEC_READONLY, 2);
2324 id7 = quick_section (abfd, ".idata$7", SEC_HAS_CONTENTS, 2);
2325 id5 = quick_section (abfd, ".idata$5", SEC_HAS_CONTENTS, 2);
2326 id4 = quick_section (abfd, ".idata$4", SEC_HAS_CONTENTS, 2);
2327 id6 = quick_section (abfd, ".idata$6", SEC_HAS_CONTENTS, 2);
2328
2329 if (*exp->internal_name == '@')
2330 {
2331 quick_symbol (abfd, U ("_head_"), dll_symname, "", UNDSEC,
2332 BSF_GLOBAL, 0);
2333 if (include_jmp_stub)
2334 quick_symbol (abfd, "", exp->internal_name, "", tx, BSF_GLOBAL, 0);
2335 quick_symbol (abfd, "__imp_", exp->internal_name, "", id5,
2336 BSF_GLOBAL, 0);
2337 /* Fastcall applies only to functions,
2338 so no need for auto-import symbol. */
2339 }
2340 else
2341 {
2342 quick_symbol (abfd, U ("_head_"), dll_symname, "", UNDSEC,
2343 BSF_GLOBAL, 0);
2344 if (include_jmp_stub)
2345 quick_symbol (abfd, U (""), exp->internal_name, "", tx,
2346 BSF_GLOBAL, 0);
2347 quick_symbol (abfd, "__imp_", U (""), exp->internal_name, id5,
2348 BSF_GLOBAL, 0);
2349 /* Symbol to reference ord/name of imported
2350 data symbol, used to implement auto-import. */
2351 if (exp->flag_data)
2352 quick_symbol (abfd, "__nm_", U (""), exp->internal_name, id6,
2353 BSF_GLOBAL,0);
2354 }
2355 if (pe_dll_compat_implib)
2356 quick_symbol (abfd, "___imp_", exp->internal_name, "", id5,
2357 BSF_GLOBAL, 0);
2358
2359 if (include_jmp_stub)
2360 {
2361 bfd_set_section_size (tx, jmp_byte_count);
2362 td = xmalloc (jmp_byte_count);
2363 tx->contents = td;
2364 memcpy (td, jmp_bytes, jmp_byte_count);
2365
2366 switch (pe_details->pe_arch)
2367 {
2368 case PE_ARCH_i386:
2369 #ifdef pe_use_x86_64
2370 quick_reloc (abfd, 2, BFD_RELOC_32_PCREL, 2);
2371 #else
2372 /* Mark this object as SAFESEH compatible. */
2373 quick_symbol (abfd, "", "@feat.00", "", bfd_abs_section_ptr,
2374 BSF_LOCAL, 1);
2375 quick_reloc (abfd, 2, BFD_RELOC_32, 2);
2376 #endif
2377 break;
2378 case PE_ARCH_sh:
2379 quick_reloc (abfd, 8, BFD_RELOC_32, 2);
2380 break;
2381 case PE_ARCH_mips:
2382 quick_reloc (abfd, 0, BFD_RELOC_HI16_S, 2);
2383 quick_reloc (abfd, 0, BFD_RELOC_LO16, 0); /* MIPS_R_PAIR */
2384 quick_reloc (abfd, 4, BFD_RELOC_LO16, 2);
2385 break;
2386 case PE_ARCH_arm:
2387 case PE_ARCH_arm_wince:
2388 quick_reloc (abfd, 8, BFD_RELOC_32, 2);
2389 break;
2390 default:
2391 abort ();
2392 }
2393 save_relocs (tx);
2394 }
2395 else
2396 bfd_set_section_size (tx, 0);
2397
2398 bfd_set_section_size (id7, 4);
2399 d7 = xmalloc (4);
2400 id7->contents = d7;
2401 memset (d7, 0, 4);
2402 quick_reloc (abfd, 0, BFD_RELOC_RVA, 5);
2403 save_relocs (id7);
2404
2405 bfd_set_section_size (id5, PE_IDATA5_SIZE);
2406 d5 = xmalloc (PE_IDATA5_SIZE);
2407 id5->contents = d5;
2408 memset (d5, 0, PE_IDATA5_SIZE);
2409
2410 if (exp->flag_noname)
2411 {
2412 d5[0] = exp->ordinal;
2413 d5[1] = exp->ordinal >> 8;
2414 d5[PE_IDATA5_SIZE - 1] = 0x80;
2415 }
2416 else
2417 {
2418 quick_reloc (abfd, 0, BFD_RELOC_RVA, 4);
2419 save_relocs (id5);
2420 }
2421
2422 bfd_set_section_size (id4, PE_IDATA4_SIZE);
2423 d4 = xmalloc (PE_IDATA4_SIZE);
2424 id4->contents = d4;
2425 memset (d4, 0, PE_IDATA4_SIZE);
2426
2427 if (exp->flag_noname)
2428 {
2429 d4[0] = exp->ordinal;
2430 d4[1] = exp->ordinal >> 8;
2431 d4[PE_IDATA4_SIZE - 1] = 0x80;
2432 }
2433 else
2434 {
2435 quick_reloc (abfd, 0, BFD_RELOC_RVA, 4);
2436 save_relocs (id4);
2437 }
2438
2439 if (exp->flag_noname)
2440 {
2441 len = 0;
2442 bfd_set_section_size (id6, 0);
2443 }
2444 else
2445 {
2446 int ord;
2447
2448 /* { short, asciz } */
2449 if (exp->its_name)
2450 len = 2 + strlen (exp->its_name) + 1;
2451 else
2452 len = 2 + strlen (exp->name) + 1;
2453 if (len & 1)
2454 len++;
2455 bfd_set_section_size (id6, len);
2456 d6 = xmalloc (len);
2457 id6->contents = d6;
2458 memset (d6, 0, len);
2459
2460 /* PR 20880: Use exp->hint as a backup, just in case exp->ordinal
2461 contains an invalid value (-1). */
2462 ord = (exp->ordinal >= 0) ? exp->ordinal : exp->hint;
2463 d6[0] = ord;
2464 d6[1] = ord >> 8;
2465
2466 if (exp->its_name)
2467 strcpy ((char*) d6 + 2, exp->its_name);
2468 else
2469 strcpy ((char *) d6 + 2, exp->name);
2470 }
2471
2472 bfd_set_symtab (abfd, symtab, symptr);
2473
2474 if (include_jmp_stub)
2475 bfd_set_section_contents (abfd, tx, td, 0, jmp_byte_count);
2476 bfd_set_section_contents (abfd, id7, d7, 0, 4);
2477 bfd_set_section_contents (abfd, id5, d5, 0, PE_IDATA5_SIZE);
2478 bfd_set_section_contents (abfd, id4, d4, 0, PE_IDATA4_SIZE);
2479 if (!exp->flag_noname)
2480 bfd_set_section_contents (abfd, id6, d6, 0, len);
2481
2482 bfd_make_readable (abfd);
2483 return abfd;
2484 }
2485
2486 static bfd *
2487 make_singleton_name_thunk (const char *import, bfd *parent)
2488 {
2489 /* Name thunks go to idata$4. */
2490 asection *id4;
2491 unsigned char *d4;
2492 char *oname;
2493 bfd *abfd;
2494
2495 oname = xmalloc (20);
2496 sprintf (oname, "nmth%06d.o", tmp_seq);
2497 tmp_seq++;
2498
2499 abfd = bfd_create (oname, parent);
2500 bfd_find_target (pe_details->object_target, abfd);
2501 bfd_make_writable (abfd);
2502
2503 bfd_set_format (abfd, bfd_object);
2504 bfd_set_arch_mach (abfd, pe_details->bfd_arch, 0);
2505
2506 symptr = 0;
2507 symtab = xmalloc (3 * sizeof (asymbol *));
2508 id4 = quick_section (abfd, ".idata$4", SEC_HAS_CONTENTS, 2);
2509 quick_symbol (abfd, "__nm_thnk_", import, "", id4, BSF_GLOBAL, 0);
2510 quick_symbol (abfd, "__nm_", import, "", UNDSEC, BSF_GLOBAL, 0);
2511
2512 /* We need space for the real thunk and for the null terminator. */
2513 bfd_set_section_size (id4, PE_IDATA4_SIZE * 2);
2514 d4 = xmalloc (PE_IDATA4_SIZE * 2);
2515 id4->contents = d4;
2516 memset (d4, 0, PE_IDATA4_SIZE * 2);
2517 quick_reloc (abfd, 0, BFD_RELOC_RVA, 2);
2518 save_relocs (id4);
2519
2520 bfd_set_symtab (abfd, symtab, symptr);
2521
2522 bfd_set_section_contents (abfd, id4, d4, 0, PE_IDATA4_SIZE * 2);
2523
2524 bfd_make_readable (abfd);
2525 return abfd;
2526 }
2527
2528 static const char *
2529 make_import_fixup_mark (arelent *rel, char *name)
2530 {
2531 /* We convert reloc to symbol, for later reference. */
2532 static unsigned int counter;
2533 struct bfd_symbol *sym = *rel->sym_ptr_ptr;
2534 bfd *abfd = bfd_asymbol_bfd (sym);
2535 struct bfd_link_hash_entry *bh;
2536 char *fixup_name, buf[26];
2537 size_t prefix_len;
2538
2539 /* "name" buffer has space before the symbol name for prefixes. */
2540 sprintf (buf, "__fu%d_", counter++);
2541 prefix_len = strlen (buf);
2542 fixup_name = name - prefix_len;
2543 memcpy (fixup_name, buf, prefix_len);
2544
2545 bh = NULL;
2546 bfd_coff_link_add_one_symbol (&link_info, abfd, fixup_name, BSF_GLOBAL,
2547 current_sec, /* sym->section, */
2548 rel->address, NULL, TRUE, FALSE, &bh);
2549
2550 return bh->root.string;
2551 }
2552
2553 /* .section .idata$2
2554 .rva __nm_thnk_SYM (singleton thunk with name of func)
2555 .long 0
2556 .long 0
2557 .rva __my_dll_iname (name of dll)
2558 .rva __fuNN_SYM (pointer to reference (address) in text) */
2559
2560 static bfd *
2561 make_import_fixup_entry (const char *name,
2562 const char *fixup_name,
2563 const char *symname,
2564 bfd *parent)
2565 {
2566 asection *id2;
2567 unsigned char *d2;
2568 char *oname;
2569 bfd *abfd;
2570
2571 oname = xmalloc (20);
2572 sprintf (oname, "fu%06d.o", tmp_seq);
2573 tmp_seq++;
2574
2575 abfd = bfd_create (oname, parent);
2576 bfd_find_target (pe_details->object_target, abfd);
2577 bfd_make_writable (abfd);
2578
2579 bfd_set_format (abfd, bfd_object);
2580 bfd_set_arch_mach (abfd, pe_details->bfd_arch, 0);
2581
2582 symptr = 0;
2583 symtab = xmalloc (6 * sizeof (asymbol *));
2584 id2 = quick_section (abfd, ".idata$2", SEC_HAS_CONTENTS, 2);
2585
2586 quick_symbol (abfd, "__nm_thnk_", name, "", UNDSEC, BSF_GLOBAL, 0);
2587 quick_symbol (abfd, U (""), symname, "_iname", UNDSEC, BSF_GLOBAL, 0);
2588 quick_symbol (abfd, "", fixup_name, "", UNDSEC, BSF_GLOBAL, 0);
2589
2590 bfd_set_section_size (id2, 20);
2591 d2 = xmalloc (20);
2592 id2->contents = d2;
2593 memset (d2, 0, 20);
2594
2595 quick_reloc (abfd, 0, BFD_RELOC_RVA, 1);
2596 quick_reloc (abfd, 12, BFD_RELOC_RVA, 2);
2597 quick_reloc (abfd, 16, BFD_RELOC_RVA, 3);
2598 save_relocs (id2);
2599
2600 bfd_set_symtab (abfd, symtab, symptr);
2601
2602 bfd_set_section_contents (abfd, id2, d2, 0, 20);
2603
2604 bfd_make_readable (abfd);
2605 return abfd;
2606 }
2607
2608 /* .section .rdata_runtime_pseudo_reloc
2609 .long addend
2610 .rva __fuNN_SYM (pointer to reference (address) in text) */
2611
2612 static bfd *
2613 make_runtime_pseudo_reloc (const char *name ATTRIBUTE_UNUSED,
2614 const char *fixup_name,
2615 bfd_vma addend ATTRIBUTE_UNUSED,
2616 bfd_vma bitsize,
2617 bfd *parent)
2618 {
2619 asection *rt_rel;
2620 unsigned char *rt_rel_d;
2621 char *oname;
2622 bfd *abfd;
2623 bfd_size_type size;
2624
2625 oname = xmalloc (20);
2626 sprintf (oname, "rtr%06d.o", tmp_seq);
2627 tmp_seq++;
2628
2629 abfd = bfd_create (oname, parent);
2630 bfd_find_target (pe_details->object_target, abfd);
2631 bfd_make_writable (abfd);
2632
2633 bfd_set_format (abfd, bfd_object);
2634 bfd_set_arch_mach (abfd, pe_details->bfd_arch, 0);
2635
2636 if (link_info.pei386_runtime_pseudo_reloc == 2)
2637 {
2638 if (runtime_pseudp_reloc_v2_init)
2639 size = 3 * sizeof (asymbol *);
2640 else
2641 size = 6 * sizeof (asymbol *);
2642 }
2643 else
2644 size = 2 * sizeof (asymbol *);
2645
2646 symptr = 0;
2647 symtab = xmalloc (size);
2648
2649 rt_rel
2650 = quick_section (abfd, ".rdata_runtime_pseudo_reloc", SEC_HAS_CONTENTS, 2);
2651
2652 quick_symbol (abfd, "", fixup_name, "", UNDSEC, BSF_GLOBAL, 0);
2653
2654 if (link_info.pei386_runtime_pseudo_reloc == 2)
2655 {
2656 size = 12;
2657 if (!runtime_pseudp_reloc_v2_init)
2658 {
2659 size += 12;
2660 runtime_pseudp_reloc_v2_init = TRUE;
2661 }
2662
2663 quick_symbol (abfd, "__imp_", name, "", UNDSEC, BSF_GLOBAL, 0);
2664
2665 bfd_set_section_size (rt_rel, size);
2666 rt_rel_d = xmalloc (size);
2667 rt_rel->contents = rt_rel_d;
2668 memset (rt_rel_d, 0, size);
2669 quick_reloc (abfd, size - 8, BFD_RELOC_RVA, 1);
2670 quick_reloc (abfd, size - 12, BFD_RELOC_RVA, 2);
2671 bfd_put_32 (abfd, bitsize, rt_rel_d + (size - 4));
2672 if (size != 12)
2673 bfd_put_32 (abfd, 1, rt_rel_d + 8);
2674 save_relocs (rt_rel);
2675
2676 bfd_set_symtab (abfd, symtab, symptr);
2677
2678 bfd_set_section_contents (abfd, rt_rel, rt_rel_d, 0, size);
2679 }
2680 else
2681 {
2682 bfd_set_section_size (rt_rel, 8);
2683 rt_rel_d = xmalloc (8);
2684 rt_rel->contents = rt_rel_d;
2685 memset (rt_rel_d, 0, 8);
2686
2687 bfd_put_32 (abfd, addend, rt_rel_d);
2688 quick_reloc (abfd, 4, BFD_RELOC_RVA, 1);
2689
2690 save_relocs (rt_rel);
2691
2692 bfd_set_symtab (abfd, symtab, symptr);
2693
2694 bfd_set_section_contents (abfd, rt_rel, rt_rel_d, 0, 8);
2695 }
2696
2697 bfd_make_readable (abfd);
2698 return abfd;
2699 }
2700
2701 /* .section .rdata
2702 .rva __pei386_runtime_relocator */
2703
2704 static bfd *
2705 pe_create_runtime_relocator_reference (bfd *parent)
2706 {
2707 asection *extern_rt_rel;
2708 unsigned char *extern_rt_rel_d;
2709 char *oname;
2710 bfd *abfd;
2711
2712 oname = xmalloc (20);
2713 sprintf (oname, "ertr%06d.o", tmp_seq);
2714 tmp_seq++;
2715
2716 abfd = bfd_create (oname, parent);
2717 bfd_find_target (pe_details->object_target, abfd);
2718 bfd_make_writable (abfd);
2719
2720 bfd_set_format (abfd, bfd_object);
2721 bfd_set_arch_mach (abfd, pe_details->bfd_arch, 0);
2722
2723 symptr = 0;
2724 symtab = xmalloc (2 * sizeof (asymbol *));
2725 extern_rt_rel = quick_section (abfd, ".rdata", SEC_HAS_CONTENTS, 2);
2726
2727 quick_symbol (abfd, "", U ("_pei386_runtime_relocator"), "", UNDSEC,
2728 BSF_NO_FLAGS, 0);
2729
2730 bfd_set_section_size (extern_rt_rel, PE_IDATA5_SIZE);
2731 extern_rt_rel_d = xcalloc (1, PE_IDATA5_SIZE);
2732 extern_rt_rel->contents = extern_rt_rel_d;
2733
2734 quick_reloc (abfd, 0, BFD_RELOC_RVA, 1);
2735 save_relocs (extern_rt_rel);
2736
2737 bfd_set_symtab (abfd, symtab, symptr);
2738
2739 bfd_set_section_contents (abfd, extern_rt_rel, extern_rt_rel_d, 0, PE_IDATA5_SIZE);
2740
2741 bfd_make_readable (abfd);
2742 return abfd;
2743 }
2744
2745 void
2746 pe_create_import_fixup (arelent *rel, asection *s, bfd_vma addend, char *name,
2747 const char *symname)
2748 {
2749 const char *fixup_name = make_import_fixup_mark (rel, name);
2750 bfd *b;
2751
2752 /* This is the original implementation of the auto-import feature, which
2753 primarily relied on the OS loader to patch things up with some help
2754 from the pseudo-relocator to overcome the main limitation. See the
2755 comment at the beginning of the file for an overview of the feature. */
2756 if (link_info.pei386_runtime_pseudo_reloc != 2)
2757 {
2758 struct bfd_link_hash_entry *name_thunk_sym;
2759 /* name buffer is allocated with space at beginning for prefixes. */
2760 char *thname = name - (sizeof "__nm_thnk_" - 1);
2761 memcpy (thname, "__nm_thnk_", sizeof "__nm_thnk_" - 1);
2762 name_thunk_sym = bfd_link_hash_lookup (link_info.hash, thname, 0, 0, 1);
2763
2764 if (!(name_thunk_sym && name_thunk_sym->type == bfd_link_hash_defined))
2765 {
2766 b = make_singleton_name_thunk (name, link_info.output_bfd);
2767 add_bfd_to_link (b, bfd_get_filename (b), &link_info);
2768
2769 /* If we ever use autoimport, we have to cast text section writable. */
2770 config.text_read_only = FALSE;
2771 link_info.output_bfd->flags &= ~WP_TEXT;
2772 }
2773
2774 if (addend == 0 || link_info.pei386_runtime_pseudo_reloc == 1)
2775 {
2776 b = make_import_fixup_entry (name, fixup_name, symname,
2777 link_info.output_bfd);
2778 add_bfd_to_link (b, bfd_get_filename (b), &link_info);
2779 }
2780 }
2781
2782 /* In the original implementation, the pseudo-relocator was only used when
2783 the addend was not null. In the new implementation, the OS loader is
2784 completely bypassed and the pseudo-relocator does the entire work. */
2785 if ((addend != 0 && link_info.pei386_runtime_pseudo_reloc == 1)
2786 || link_info.pei386_runtime_pseudo_reloc == 2)
2787 {
2788 if (pe_dll_extra_pe_debug)
2789 printf ("creating runtime pseudo-reloc entry for %s (addend=%d)\n",
2790 fixup_name, (int) addend);
2791
2792 b = make_runtime_pseudo_reloc (name, fixup_name, addend, rel->howto->bitsize,
2793 link_info.output_bfd);
2794 add_bfd_to_link (b, bfd_get_filename (b), &link_info);
2795
2796 if (runtime_pseudo_relocs_created++ == 0)
2797 {
2798 b = pe_create_runtime_relocator_reference (link_info.output_bfd);
2799 add_bfd_to_link (b, bfd_get_filename (b), &link_info);
2800 }
2801 }
2802
2803 else if (addend != 0)
2804 einfo (_("%X%P: %C: variable '%pT' can't be auto-imported; please read the documentation for ld's --enable-auto-import for details\n"),
2805 s->owner, s, rel->address, (*rel->sym_ptr_ptr)->name);
2806 }
2807
2808 void
2809 pe_dll_generate_implib (def_file *def, const char *impfilename, struct bfd_link_info *info)
2810 {
2811 int i;
2812 bfd *ar_head;
2813 bfd *ar_tail;
2814 bfd *outarch;
2815 bfd *ibfd;
2816 bfd *head = 0;
2817
2818 dll_filename = (def->name) ? def->name : dll_name;
2819 dll_symname = xstrdup (dll_filename);
2820 for (i = 0; dll_symname[i]; i++)
2821 if (!ISALNUM (dll_symname[i]))
2822 dll_symname[i] = '_';
2823
2824 unlink_if_ordinary (impfilename);
2825
2826 outarch = bfd_openw (impfilename, 0);
2827
2828 if (!outarch)
2829 {
2830 /* xgettext:c-format */
2831 einfo (_("%X%P: can't open .lib file: %s\n"), impfilename);
2832 return;
2833 }
2834
2835 if (verbose)
2836 /* xgettext:c-format */
2837 info_msg (_("Creating library file: %s\n"), impfilename);
2838
2839 bfd_set_format (outarch, bfd_archive);
2840 outarch->has_armap = 1;
2841
2842 /* Work out a reasonable size of things to put onto one line. */
2843 ar_head = make_head (outarch);
2844
2845 /* Iterate the input BFDs, looking for exclude-modules-for-implib. */
2846 for (ibfd = info->input_bfds; ibfd; ibfd = ibfd->link.next)
2847 {
2848 /* Iterate the exclude list. */
2849 struct exclude_list_struct *ex;
2850 char found;
2851 for (ex = excludes, found = 0; ex && !found; ex = ex->next)
2852 {
2853 if (ex->type != EXCLUDEFORIMPLIB)
2854 continue;
2855 found = (filename_cmp (ex->string, bfd_get_filename (ibfd)) == 0);
2856 }
2857 /* If it matched, we must open a fresh BFD for it (the original
2858 input BFD is still needed for the DLL's final link) and add
2859 it into the archive member chain. */
2860 if (found)
2861 {
2862 bfd *newbfd = bfd_openr (ibfd->my_archive
2863 ? bfd_get_filename (ibfd->my_archive)
2864 : bfd_get_filename (ibfd), NULL);
2865 if (!newbfd)
2866 {
2867 einfo (_("%X%P: bfd_openr %s: %E\n"), bfd_get_filename (ibfd));
2868 return;
2869 }
2870 if (ibfd->my_archive)
2871 {
2872 /* Must now iterate through archive until we find the
2873 required member. A minor shame that we'll open the
2874 archive once per member that we require from it, and
2875 leak those archive bfds rather than reuse them. */
2876 bfd *arbfd = newbfd;
2877 if (!bfd_check_format_matches (arbfd, bfd_archive, NULL))
2878 {
2879 einfo (_("%X%P: %s(%s): can't find member in non-archive file"),
2880 bfd_get_filename (ibfd->my_archive),
2881 bfd_get_filename (ibfd));
2882 return;
2883 }
2884 newbfd = NULL;
2885 while ((newbfd = bfd_openr_next_archived_file (arbfd, newbfd)) != 0)
2886 {
2887 if (filename_cmp (bfd_get_filename (newbfd),
2888 bfd_get_filename (ibfd)) == 0)
2889 break;
2890 }
2891 if (!newbfd)
2892 {
2893 einfo (_("%X%P: %s(%s): can't find member in archive"),
2894 bfd_get_filename (ibfd->my_archive),
2895 bfd_get_filename (ibfd));
2896 return;
2897 }
2898 }
2899 newbfd->archive_next = head;
2900 head = newbfd;
2901 }
2902 }
2903
2904 for (i = 0; i < def->num_exports; i++)
2905 {
2906 /* The import library doesn't know about the internal name. */
2907 char *internal = def->exports[i].internal_name;
2908 bfd *n;
2909
2910 /* Don't add PRIVATE entries to import lib. */
2911 if (pe_def_file->exports[i].flag_private)
2912 continue;
2913
2914 def->exports[i].internal_name = def->exports[i].name;
2915
2916 /* PR 19803: If a symbol has been discard due to garbage
2917 collection then do not create any exports for it. */
2918 {
2919 struct coff_link_hash_entry *h;
2920
2921 h = coff_link_hash_lookup (coff_hash_table (info), internal,
2922 FALSE, FALSE, FALSE);
2923 if (h != NULL
2924 /* If the symbol is hidden and undefined then it
2925 has been swept up by garbage collection. */
2926 && h->symbol_class == C_HIDDEN
2927 && h->root.u.def.section == bfd_und_section_ptr)
2928 continue;
2929
2930 /* If necessary, check with an underscore prefix as well. */
2931 if (pe_details->underscored && internal[0] != '@')
2932 {
2933 char *name;
2934
2935 name = xmalloc (strlen (internal) + 2);
2936 sprintf (name, "_%s", internal);
2937
2938 h = coff_link_hash_lookup (coff_hash_table (info), name,
2939 FALSE, FALSE, FALSE);
2940 free (name);
2941
2942 if (h != NULL
2943 /* If the symbol is hidden and undefined then it
2944 has been swept up by garbage collection. */
2945 && h->symbol_class == C_HIDDEN
2946 && h->root.u.def.section == bfd_und_section_ptr)
2947 continue;
2948 }
2949 }
2950
2951 n = make_one (def->exports + i, outarch,
2952 ! (def->exports + i)->flag_data);
2953 n->archive_next = head;
2954 head = n;
2955 def->exports[i].internal_name = internal;
2956 }
2957
2958 ar_tail = make_tail (outarch);
2959
2960 if (ar_head == NULL || ar_tail == NULL)
2961 return;
2962
2963 /* Now stick them all into the archive. */
2964 ar_head->archive_next = head;
2965 ar_tail->archive_next = ar_head;
2966 head = ar_tail;
2967
2968 if (! bfd_set_archive_head (outarch, head))
2969 einfo ("%X%P: bfd_set_archive_head: %E\n");
2970
2971 if (! bfd_close (outarch))
2972 einfo ("%X%P: bfd_close %s: %E\n", impfilename);
2973
2974 while (head != NULL)
2975 {
2976 bfd *n = head->archive_next;
2977 bfd_close (head);
2978 head = n;
2979 }
2980 }
2981
2982 static int undef_count = 0;
2983
2984 struct key_value
2985 {
2986 char *key;
2987 const char *oname;
2988 };
2989
2990 static struct key_value *udef_table;
2991
2992 static int undef_sort_cmp (const void *l1, const void *r1)
2993 {
2994 const struct key_value *l = l1;
2995 const struct key_value *r = r1;
2996
2997 return strcmp (l->key, r->key);
2998 }
2999
3000 static struct bfd_link_hash_entry *
3001 pe_find_cdecl_alias_match (struct bfd_link_info *linfo, char *name)
3002 {
3003 struct bfd_link_hash_entry *h = NULL;
3004 struct key_value *kv;
3005 struct key_value key;
3006 char *at, *lname = xmalloc (strlen (name) + 3);
3007
3008 strcpy (lname, name);
3009
3010 at = strchr (lname + (lname[0] == '@'), '@');
3011 if (at)
3012 at[1] = 0;
3013
3014 key.key = lname;
3015 kv = bsearch (&key, udef_table, undef_count, sizeof (struct key_value),
3016 undef_sort_cmp);
3017
3018 if (kv)
3019 {
3020 h = bfd_link_hash_lookup (linfo->hash, kv->oname, FALSE, FALSE, FALSE);
3021 if (h->type == bfd_link_hash_undefined)
3022 goto return_h;
3023 }
3024
3025 if (lname[0] == '?')
3026 goto return_NULL;
3027
3028 if (at || lname[0] == '@')
3029 {
3030 if (lname[0] == '@')
3031 {
3032 if (pe_details->underscored)
3033 lname[0] = '_';
3034 else
3035 strcpy (lname, lname + 1);
3036 key.key = lname;
3037 kv = bsearch (&key, udef_table, undef_count,
3038 sizeof (struct key_value), undef_sort_cmp);
3039 if (kv)
3040 {
3041 h = bfd_link_hash_lookup (linfo->hash, kv->oname, FALSE, FALSE, FALSE);
3042 if (h->type == bfd_link_hash_undefined)
3043 goto return_h;
3044 }
3045 }
3046 if (at)
3047 *strchr (lname, '@') = 0;
3048 key.key = lname;
3049 kv = bsearch (&key, udef_table, undef_count,
3050 sizeof (struct key_value), undef_sort_cmp);
3051 if (kv)
3052 {
3053 h = bfd_link_hash_lookup (linfo->hash, kv->oname, FALSE, FALSE, FALSE);
3054 if (h->type == bfd_link_hash_undefined)
3055 goto return_h;
3056 }
3057 goto return_NULL;
3058 }
3059
3060 strcat (lname, "@");
3061 key.key = lname;
3062 kv = bsearch (&key, udef_table, undef_count,
3063 sizeof (struct key_value), undef_sort_cmp);
3064
3065 if (kv)
3066 {
3067 h = bfd_link_hash_lookup (linfo->hash, kv->oname, FALSE, FALSE, FALSE);
3068 if (h->type == bfd_link_hash_undefined)
3069 goto return_h;
3070 }
3071
3072 if (lname[0] == '_' && pe_details->underscored)
3073 lname[0] = '@';
3074 else
3075 {
3076 memmove (lname + 1, lname, strlen (lname) + 1);
3077 lname[0] = '@';
3078 }
3079 key.key = lname;
3080
3081 kv = bsearch (&key, udef_table, undef_count,
3082 sizeof (struct key_value), undef_sort_cmp);
3083
3084 if (kv)
3085 {
3086 h = bfd_link_hash_lookup (linfo->hash, kv->oname, FALSE, FALSE, FALSE);
3087 if (h->type == bfd_link_hash_undefined)
3088 goto return_h;
3089 }
3090
3091 return_NULL:
3092 h = NULL;
3093 return_h:
3094 free (lname);
3095 return h;
3096 }
3097
3098 static bfd_boolean
3099 pe_undef_count (struct bfd_link_hash_entry *h ATTRIBUTE_UNUSED,
3100 void *inf ATTRIBUTE_UNUSED)
3101 {
3102 if (h->type == bfd_link_hash_undefined)
3103 undef_count++;
3104 return TRUE;
3105 }
3106
3107 static bfd_boolean
3108 pe_undef_fill (struct bfd_link_hash_entry *h, void *inf ATTRIBUTE_UNUSED)
3109 {
3110 if (h->type == bfd_link_hash_undefined)
3111 {
3112 char *at;
3113
3114 udef_table[undef_count].key = xstrdup (h->root.string);
3115 at = strchr (udef_table[undef_count].key
3116 + (udef_table[undef_count].key[0] == '@'), '@');
3117 if (at)
3118 at[1] = 0;
3119 udef_table[undef_count].oname = h->root.string;
3120 undef_count++;
3121 }
3122 return TRUE;
3123 }
3124
3125 static void
3126 pe_create_undef_table (void)
3127 {
3128 undef_count = 0;
3129
3130 /* count undefined symbols */
3131
3132 bfd_link_hash_traverse (link_info.hash, pe_undef_count, "");
3133
3134 /* create and fill the corresponding table */
3135 udef_table = xmalloc (undef_count * sizeof (struct key_value));
3136
3137 undef_count = 0;
3138 bfd_link_hash_traverse (link_info.hash, pe_undef_fill, "");
3139
3140 /* sort items */
3141 qsort (udef_table, undef_count, sizeof (struct key_value), undef_sort_cmp);
3142 }
3143
3144 static void
3145 add_bfd_to_link (bfd *abfd, const char *name, struct bfd_link_info *linfo)
3146 {
3147 lang_input_statement_type *fake_file;
3148
3149 fake_file = lang_add_input_file (name,
3150 lang_input_file_is_fake_enum,
3151 NULL);
3152 fake_file->the_bfd = abfd;
3153 ldlang_add_file (fake_file);
3154
3155 if (!bfd_link_add_symbols (abfd, linfo))
3156 einfo (_("%X%P: add symbols %s: %E\n"), name);
3157 }
3158
3159 void
3160 pe_process_import_defs (bfd *output_bfd, struct bfd_link_info *linfo)
3161 {
3162 int i, j;
3163 def_file_module *module;
3164 def_file_import *imp;
3165
3166 pe_dll_id_target (bfd_get_target (output_bfd));
3167
3168 if (!pe_def_file)
3169 return;
3170
3171 imp = pe_def_file->imports;
3172
3173 pe_create_undef_table ();
3174
3175 for (module = pe_def_file->modules; module; module = module->next)
3176 {
3177 int do_this_dll = 0;
3178
3179 for (i = 0; i < pe_def_file->num_imports && imp[i].module != module; i++)
3180 ;
3181 if (i >= pe_def_file->num_imports)
3182 continue;
3183
3184 dll_filename = module->name;
3185 dll_symname = xstrdup (module->name);
3186 for (j = 0; dll_symname[j]; j++)
3187 if (!ISALNUM (dll_symname[j]))
3188 dll_symname[j] = '_';
3189
3190 for (; i < pe_def_file->num_imports && imp[i].module == module; i++)
3191 {
3192 def_file_export exp;
3193 struct bfd_link_hash_entry *blhe;
3194 int lead_at = (*imp[i].internal_name == '@');
3195 /* See if we need this import. */
3196 size_t len = strlen (imp[i].internal_name);
3197 char *name = xmalloc (len + 2 + 6);
3198 bfd_boolean include_jmp_stub = FALSE;
3199 bfd_boolean is_cdecl = FALSE;
3200 bfd_boolean is_undef = FALSE;
3201
3202 if (!lead_at && strchr (imp[i].internal_name, '@') == NULL)
3203 is_cdecl = TRUE;
3204
3205 if (lead_at)
3206 sprintf (name, "%s", imp[i].internal_name);
3207 else
3208 sprintf (name, "%s%s",U (""), imp[i].internal_name);
3209
3210 blhe = bfd_link_hash_lookup (linfo->hash, name,
3211 FALSE, FALSE, FALSE);
3212
3213 /* Include the jump stub for <sym> only if the <sym>
3214 is undefined. */
3215 if (!blhe || (blhe && blhe->type != bfd_link_hash_undefined))
3216 {
3217 if (lead_at)
3218 sprintf (name, "%s%s", "__imp_", imp[i].internal_name);
3219 else
3220 sprintf (name, "%s%s%s", "__imp_", U (""),
3221 imp[i].internal_name);
3222
3223 blhe = bfd_link_hash_lookup (linfo->hash, name,
3224 FALSE, FALSE, FALSE);
3225 if (blhe)
3226 is_undef = (blhe->type == bfd_link_hash_undefined);
3227 }
3228 else
3229 {
3230 include_jmp_stub = TRUE;
3231 is_undef = (blhe->type == bfd_link_hash_undefined);
3232 }
3233
3234 if (is_cdecl && (!blhe || (blhe && blhe->type != bfd_link_hash_undefined)))
3235 {
3236 sprintf (name, "%s%s",U (""), imp[i].internal_name);
3237 blhe = pe_find_cdecl_alias_match (linfo, name);
3238 include_jmp_stub = TRUE;
3239 if (blhe)
3240 is_undef = (blhe->type == bfd_link_hash_undefined);
3241 }
3242
3243 free (name);
3244
3245 if (is_undef)
3246 {
3247 bfd *one;
3248 /* We do. */
3249 if (!do_this_dll)
3250 {
3251 bfd *ar_head = make_head (output_bfd);
3252 add_bfd_to_link (ar_head, bfd_get_filename (ar_head), linfo);
3253 do_this_dll = 1;
3254 }
3255 exp.internal_name = imp[i].internal_name;
3256 exp.name = imp[i].name;
3257 exp.its_name = imp[i].its_name;
3258 exp.ordinal = imp[i].ordinal;
3259 exp.hint = exp.ordinal >= 0 ? exp.ordinal : 0;
3260 exp.flag_private = 0;
3261 exp.flag_constant = 0;
3262 exp.flag_data = imp[i].data;
3263 exp.flag_noname = exp.name ? 0 : 1;
3264 one = make_one (&exp, output_bfd, (! exp.flag_data) && include_jmp_stub);
3265 add_bfd_to_link (one, bfd_get_filename (one), linfo);
3266 }
3267 }
3268 if (do_this_dll)
3269 {
3270 bfd *ar_tail = make_tail (output_bfd);
3271 add_bfd_to_link (ar_tail, bfd_get_filename (ar_tail), linfo);
3272 }
3273
3274 free (dll_symname);
3275 }
3276
3277 while (undef_count)
3278 {
3279 --undef_count;
3280 free (udef_table[undef_count].key);
3281 }
3282 free (udef_table);
3283 }
3284
3285 /* We were handed a *.DLL file. Parse it and turn it into a set of
3286 IMPORTS directives in the def file. Return TRUE if the file was
3287 handled, FALSE if not. */
3288
3289 static unsigned int
3290 pe_get16 (bfd *abfd, int where)
3291 {
3292 unsigned char b[2];
3293
3294 bfd_seek (abfd, (file_ptr) where, SEEK_SET);
3295 bfd_bread (b, (bfd_size_type) 2, abfd);
3296 return b[0] + (b[1] << 8);
3297 }
3298
3299 static unsigned int
3300 pe_get32 (bfd *abfd, int where)
3301 {
3302 unsigned char b[4];
3303
3304 bfd_seek (abfd, (file_ptr) where, SEEK_SET);
3305 bfd_bread (b, (bfd_size_type) 4, abfd);
3306 return b[0] + (b[1] << 8) + (b[2] << 16) + ((unsigned) b[3] << 24);
3307 }
3308
3309 static unsigned int
3310 pe_as32 (void *ptr)
3311 {
3312 unsigned char *b = ptr;
3313
3314 return b[0] + (b[1] << 8) + (b[2] << 16) + ((unsigned) b[3] << 24);
3315 }
3316
3317 bfd_boolean
3318 pe_implied_import_dll (const char *filename)
3319 {
3320 bfd *dll;
3321 bfd_vma pe_header_offset, opthdr_ofs, num_entries, i;
3322 bfd_vma export_rva, export_size, nsections, secptr, expptr;
3323 bfd_vma exp_funcbase;
3324 unsigned char *expdata;
3325 char *erva;
3326 bfd_vma name_rvas, nexp;
3327 const char *dllname;
3328 /* Initialization with start > end guarantees that is_data
3329 will not be set by mistake, and avoids compiler warning. */
3330 bfd_vma data_start = 1;
3331 bfd_vma data_end = 0;
3332 bfd_vma rdata_start = 1;
3333 bfd_vma rdata_end = 0;
3334 bfd_vma bss_start = 1;
3335 bfd_vma bss_end = 0;
3336 int from;
3337
3338 /* No, I can't use bfd here. kernel32.dll puts its export table in
3339 the middle of the .rdata section. */
3340 dll = bfd_openr (filename, pe_details->target_name);
3341 if (!dll)
3342 {
3343 einfo (_("%X%P: open %s: %E\n"), filename);
3344 return FALSE;
3345 }
3346
3347 /* PEI dlls seem to be bfd_objects. */
3348 if (!bfd_check_format (dll, bfd_object))
3349 {
3350 einfo (_("%X%P: %s: this doesn't appear to be a DLL\n"), filename);
3351 return FALSE;
3352 }
3353
3354 /* Get pe_header, optional header and numbers of directory entries. */
3355 pe_header_offset = pe_get32 (dll, 0x3c);
3356 opthdr_ofs = pe_header_offset + 4 + 20;
3357 #ifdef pe_use_x86_64
3358 num_entries = pe_get32 (dll, opthdr_ofs + 92 + 4 * 4); /* & NumberOfRvaAndSizes. */
3359 #else
3360 num_entries = pe_get32 (dll, opthdr_ofs + 92);
3361 #endif
3362
3363 /* No import or export directory entry. */
3364 if (num_entries < 1)
3365 return FALSE;
3366
3367 #ifdef pe_use_x86_64
3368 export_rva = pe_get32 (dll, opthdr_ofs + 96 + 4 * 4);
3369 export_size = pe_get32 (dll, opthdr_ofs + 100 + 4 * 4);
3370 #else
3371 export_rva = pe_get32 (dll, opthdr_ofs + 96);
3372 export_size = pe_get32 (dll, opthdr_ofs + 100);
3373 #endif
3374
3375 /* No export table - nothing to export. */
3376 if (export_size == 0)
3377 return FALSE;
3378
3379 nsections = pe_get16 (dll, pe_header_offset + 4 + 2);
3380 secptr = (pe_header_offset + 4 + 20 +
3381 pe_get16 (dll, pe_header_offset + 4 + 16));
3382 expptr = 0;
3383
3384 /* Get the rva and size of the export section. */
3385 for (i = 0; i < nsections; i++)
3386 {
3387 char sname[8];
3388 bfd_vma secptr1 = secptr + 40 * i;
3389 bfd_vma vaddr = pe_get32 (dll, secptr1 + 12);
3390 bfd_vma vsize = pe_get32 (dll, secptr1 + 16);
3391 bfd_vma fptr = pe_get32 (dll, secptr1 + 20);
3392
3393 bfd_seek (dll, (file_ptr) secptr1, SEEK_SET);
3394 bfd_bread (sname, (bfd_size_type) 8, dll);
3395
3396 if (vaddr <= export_rva && vaddr + vsize > export_rva)
3397 {
3398 expptr = fptr + (export_rva - vaddr);
3399 if (export_rva + export_size > vaddr + vsize)
3400 export_size = vsize - (export_rva - vaddr);
3401 break;
3402 }
3403 }
3404
3405 /* Scan sections and store the base and size of the
3406 data and bss segments in data/base_start/end. */
3407 for (i = 0; i < nsections; i++)
3408 {
3409 bfd_vma secptr1 = secptr + 40 * i;
3410 bfd_vma vsize = pe_get32 (dll, secptr1 + 8);
3411 bfd_vma vaddr = pe_get32 (dll, secptr1 + 12);
3412 bfd_vma flags = pe_get32 (dll, secptr1 + 36);
3413 char sec_name[9];
3414
3415 sec_name[8] = '\0';
3416 bfd_seek (dll, (file_ptr) secptr1 + 0, SEEK_SET);
3417 bfd_bread (sec_name, (bfd_size_type) 8, dll);
3418
3419 if (strcmp(sec_name,".data") == 0)
3420 {
3421 data_start = vaddr;
3422 data_end = vaddr + vsize;
3423
3424 if (pe_dll_extra_pe_debug)
3425 printf ("%s %s: 0x%08lx-0x%08lx (0x%08lx)\n",
3426 __FUNCTION__, sec_name, (unsigned long) vaddr,
3427 (unsigned long) (vaddr + vsize), (unsigned long) flags);
3428 }
3429 else if (strcmp(sec_name,".rdata") == 0)
3430 {
3431 rdata_start = vaddr;
3432 rdata_end = vaddr + vsize;
3433
3434 if (pe_dll_extra_pe_debug)
3435 printf ("%s %s: 0x%08lx-0x%08lx (0x%08lx)\n",
3436 __FUNCTION__, sec_name, (unsigned long) vaddr,
3437 (unsigned long) (vaddr + vsize), (unsigned long) flags);
3438 }
3439 else if (strcmp (sec_name,".bss") == 0)
3440 {
3441 bss_start = vaddr;
3442 bss_end = vaddr + vsize;
3443
3444 if (pe_dll_extra_pe_debug)
3445 printf ("%s %s: 0x%08lx-0x%08lx (0x%08lx)\n",
3446 __FUNCTION__, sec_name, (unsigned long) vaddr,
3447 (unsigned long) (vaddr + vsize), (unsigned long) flags);
3448 }
3449 }
3450
3451 expdata = xmalloc (export_size);
3452 bfd_seek (dll, (file_ptr) expptr, SEEK_SET);
3453 bfd_bread (expdata, (bfd_size_type) export_size, dll);
3454 erva = (char *) expdata - export_rva;
3455
3456 if (pe_def_file == 0)
3457 pe_def_file = def_file_empty ();
3458
3459 nexp = pe_as32 (expdata + 24);
3460 name_rvas = pe_as32 (expdata + 32);
3461 exp_funcbase = pe_as32 (expdata + 28);
3462
3463 /* Use internal dll name instead of filename
3464 to enable symbolic dll linking. */
3465 dllname = erva + pe_as32 (expdata + 12);
3466
3467 /* Check to see if the dll has already been added to
3468 the definition list and if so return without error.
3469 This avoids multiple symbol definitions. */
3470 if (def_get_module (pe_def_file, dllname))
3471 {
3472 if (pe_dll_extra_pe_debug)
3473 printf ("%s is already loaded\n", dllname);
3474 return TRUE;
3475 }
3476
3477 /* This is an optimized version of the insertion loop, which avoids lots of
3478 calls to realloc and memmove from def_file_add_import. */
3479 if ((from = def_file_add_import_from (pe_def_file, nexp,
3480 erva + pe_as32 (erva + name_rvas),
3481 dllname, 0, NULL, NULL)) >= 0)
3482 {
3483 for (i = 0; i < nexp; i++)
3484 {
3485 /* Pointer to the names vector. */
3486 bfd_vma name_rva = pe_as32 (erva + name_rvas + i * 4);
3487 def_file_import *imp;
3488 /* Pointer to the function address vector. */
3489 bfd_vma func_rva = pe_as32 (erva + exp_funcbase + i * 4);
3490 /* is_data is true if the address is in the data, rdata or bss
3491 segment. */
3492 const int is_data =
3493 (func_rva >= data_start && func_rva < data_end)
3494 || (func_rva >= rdata_start && func_rva < rdata_end)
3495 || (func_rva >= bss_start && func_rva < bss_end);
3496
3497 imp = def_file_add_import_at (pe_def_file, from + i, erva + name_rva,
3498 dllname, i, NULL, NULL);
3499 /* Mark symbol type. */
3500 imp->data = is_data;
3501
3502 if (pe_dll_extra_pe_debug)
3503 printf ("%s dll-name: %s sym: %s addr: 0x%lx %s\n",
3504 __FUNCTION__, dllname, erva + name_rva,
3505 (unsigned long) func_rva, is_data ? "(data)" : "");
3506 }
3507
3508 return TRUE;
3509 }
3510
3511 /* Iterate through the list of symbols. */
3512 for (i = 0; i < nexp; i++)
3513 {
3514 /* Pointer to the names vector. */
3515 bfd_vma name_rva = pe_as32 (erva + name_rvas + i * 4);
3516 def_file_import *imp;
3517 /* Pointer to the function address vector. */
3518 bfd_vma func_rva = pe_as32 (erva + exp_funcbase + i * 4);
3519 int is_data = 0;
3520
3521 /* Skip unwanted symbols, which are
3522 exported in buggy auto-import releases. */
3523 if (! CONST_STRNEQ (erva + name_rva, "__nm_"))
3524 {
3525 int is_dup = 0;
3526 /* is_data is true if the address is in the data, rdata or bss
3527 segment. */
3528 is_data =
3529 (func_rva >= data_start && func_rva < data_end)
3530 || (func_rva >= rdata_start && func_rva < rdata_end)
3531 || (func_rva >= bss_start && func_rva < bss_end);
3532
3533 imp = def_file_add_import (pe_def_file, erva + name_rva,
3534 dllname, i, NULL, NULL, &is_dup);
3535 /* Mark symbol type. */
3536 if (!is_dup)
3537 imp->data = is_data;
3538
3539 if (pe_dll_extra_pe_debug)
3540 printf ("%s dll-name: %s sym: %s addr: 0x%lx %s\n",
3541 __FUNCTION__, dllname, erva + name_rva,
3542 (unsigned long) func_rva, is_data ? "(data)" : "");
3543 }
3544 }
3545
3546 return TRUE;
3547 }
3548
3549 void
3550 pe_output_file_set_long_section_names (bfd *abfd)
3551 {
3552 if (pe_use_coff_long_section_names < 0)
3553 return;
3554 if (!bfd_coff_set_long_section_names (abfd, pe_use_coff_long_section_names))
3555 einfo (_("%X%P: error: can't use long section names on this arch\n"));
3556 }
3557
3558 /* These are the main functions, called from the emulation. The first
3559 is called after the bfds are read, so we can guess at how much space
3560 we need. The second is called after everything is placed, so we
3561 can put the right values in place. */
3562
3563 void
3564 pe_dll_build_sections (bfd *abfd, struct bfd_link_info *info)
3565 {
3566 pe_dll_id_target (bfd_get_target (abfd));
3567 pe_output_file_set_long_section_names (abfd);
3568 process_def_file_and_drectve (abfd, info);
3569
3570 if (pe_def_file->num_exports == 0 && !bfd_link_pic (info))
3571 {
3572 if (pe_dll_enable_reloc_section)
3573 {
3574 build_filler_bfd (0);
3575 pe_output_file_set_long_section_names (filler_bfd);
3576 }
3577 return;
3578 }
3579
3580 generate_edata (abfd, info);
3581 build_filler_bfd (1);
3582 pe_output_file_set_long_section_names (filler_bfd);
3583 }
3584
3585 void
3586 pe_exe_build_sections (bfd *abfd, struct bfd_link_info *info ATTRIBUTE_UNUSED)
3587 {
3588 pe_dll_id_target (bfd_get_target (abfd));
3589 pe_output_file_set_long_section_names (abfd);
3590 build_filler_bfd (0);
3591 pe_output_file_set_long_section_names (filler_bfd);
3592 }
3593
3594 void
3595 pe_dll_fill_sections (bfd *abfd, struct bfd_link_info *info)
3596 {
3597 pe_exe_fill_sections (abfd, info);
3598
3599 if (edata_s)
3600 {
3601 fill_edata (abfd, info);
3602 edata_s->contents = edata_d;
3603 }
3604
3605 if (bfd_link_dll (info))
3606 pe_data (abfd)->dll = 1;
3607 }
3608
3609 void
3610 pe_exe_fill_sections (bfd *abfd, struct bfd_link_info *info)
3611 {
3612 pe_dll_id_target (bfd_get_target (abfd));
3613 pe_output_file_set_long_section_names (abfd);
3614 image_base = pe_data (abfd)->pe_opthdr.ImageBase;
3615
3616 generate_reloc (abfd, info);
3617 if (reloc_sz > 0)
3618 {
3619 bfd_set_section_size (reloc_s, reloc_sz);
3620
3621 /* Resize the sections. */
3622 lang_reset_memory_regions ();
3623 lang_size_sections (NULL, TRUE);
3624
3625 /* Redo special stuff. */
3626 ldemul_after_allocation ();
3627
3628 /* Do the assignments again. */
3629 lang_do_assignments (lang_final_phase_enum);
3630 }
3631 reloc_s->contents = reloc_d;
3632 }
3633
3634 bfd_boolean
3635 pe_bfd_is_dll (bfd *abfd)
3636 {
3637 return (bfd_get_format (abfd) == bfd_object
3638 && obj_pe (abfd)
3639 && pe_data (abfd)->dll);
3640 }
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