No longer need to sanitize away h8/s stuff.
[binutils-gdb.git] / bfd / coffcode.h
1 /* Support for the generic parts of most COFF variants, for BFD.
2 Copyright 1990, 91, 92, 93, 94, 95, 1996 Free Software Foundation, Inc.
3 Written by Cygnus Support.
4
5 This file is part of BFD, the Binary File Descriptor library.
6
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2 of the License, or
10 (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with this program; if not, write to the Free Software
19 Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. */
20
21 /*
22 Most of this hacked by Steve Chamberlain,
23 sac@cygnus.com
24 */
25 /*
26
27 SECTION
28 coff backends
29
30 BFD supports a number of different flavours of coff format.
31 The major differences between formats are the sizes and
32 alignments of fields in structures on disk, and the occasional
33 extra field.
34
35 Coff in all its varieties is implemented with a few common
36 files and a number of implementation specific files. For
37 example, The 88k bcs coff format is implemented in the file
38 @file{coff-m88k.c}. This file @code{#include}s
39 @file{coff/m88k.h} which defines the external structure of the
40 coff format for the 88k, and @file{coff/internal.h} which
41 defines the internal structure. @file{coff-m88k.c} also
42 defines the relocations used by the 88k format
43 @xref{Relocations}.
44
45 The Intel i960 processor version of coff is implemented in
46 @file{coff-i960.c}. This file has the same structure as
47 @file{coff-m88k.c}, except that it includes @file{coff/i960.h}
48 rather than @file{coff-m88k.h}.
49
50 SUBSECTION
51 Porting to a new version of coff
52
53 The recommended method is to select from the existing
54 implementations the version of coff which is most like the one
55 you want to use. For example, we'll say that i386 coff is
56 the one you select, and that your coff flavour is called foo.
57 Copy @file{i386coff.c} to @file{foocoff.c}, copy
58 @file{../include/coff/i386.h} to @file{../include/coff/foo.h},
59 and add the lines to @file{targets.c} and @file{Makefile.in}
60 so that your new back end is used. Alter the shapes of the
61 structures in @file{../include/coff/foo.h} so that they match
62 what you need. You will probably also have to add
63 @code{#ifdef}s to the code in @file{coff/internal.h} and
64 @file{coffcode.h} if your version of coff is too wild.
65
66 You can verify that your new BFD backend works quite simply by
67 building @file{objdump} from the @file{binutils} directory,
68 and making sure that its version of what's going on and your
69 host system's idea (assuming it has the pretty standard coff
70 dump utility, usually called @code{att-dump} or just
71 @code{dump}) are the same. Then clean up your code, and send
72 what you've done to Cygnus. Then your stuff will be in the
73 next release, and you won't have to keep integrating it.
74
75 SUBSECTION
76 How the coff backend works
77
78 SUBSUBSECTION
79 File layout
80
81 The Coff backend is split into generic routines that are
82 applicable to any Coff target and routines that are specific
83 to a particular target. The target-specific routines are
84 further split into ones which are basically the same for all
85 Coff targets except that they use the external symbol format
86 or use different values for certain constants.
87
88 The generic routines are in @file{coffgen.c}. These routines
89 work for any Coff target. They use some hooks into the target
90 specific code; the hooks are in a @code{bfd_coff_backend_data}
91 structure, one of which exists for each target.
92
93 The essentially similar target-specific routines are in
94 @file{coffcode.h}. This header file includes executable C code.
95 The various Coff targets first include the appropriate Coff
96 header file, make any special defines that are needed, and
97 then include @file{coffcode.h}.
98
99 Some of the Coff targets then also have additional routines in
100 the target source file itself.
101
102 For example, @file{coff-i960.c} includes
103 @file{coff/internal.h} and @file{coff/i960.h}. It then
104 defines a few constants, such as @code{I960}, and includes
105 @file{coffcode.h}. Since the i960 has complex relocation
106 types, @file{coff-i960.c} also includes some code to
107 manipulate the i960 relocs. This code is not in
108 @file{coffcode.h} because it would not be used by any other
109 target.
110
111 SUBSUBSECTION
112 Bit twiddling
113
114 Each flavour of coff supported in BFD has its own header file
115 describing the external layout of the structures. There is also
116 an internal description of the coff layout, in
117 @file{coff/internal.h}. A major function of the
118 coff backend is swapping the bytes and twiddling the bits to
119 translate the external form of the structures into the normal
120 internal form. This is all performed in the
121 @code{bfd_swap}_@i{thing}_@i{direction} routines. Some
122 elements are different sizes between different versions of
123 coff; it is the duty of the coff version specific include file
124 to override the definitions of various packing routines in
125 @file{coffcode.h}. E.g., the size of line number entry in coff is
126 sometimes 16 bits, and sometimes 32 bits. @code{#define}ing
127 @code{PUT_LNSZ_LNNO} and @code{GET_LNSZ_LNNO} will select the
128 correct one. No doubt, some day someone will find a version of
129 coff which has a varying field size not catered to at the
130 moment. To port BFD, that person will have to add more @code{#defines}.
131 Three of the bit twiddling routines are exported to
132 @code{gdb}; @code{coff_swap_aux_in}, @code{coff_swap_sym_in}
133 and @code{coff_swap_linno_in}. @code{GDB} reads the symbol
134 table on its own, but uses BFD to fix things up. More of the
135 bit twiddlers are exported for @code{gas};
136 @code{coff_swap_aux_out}, @code{coff_swap_sym_out},
137 @code{coff_swap_lineno_out}, @code{coff_swap_reloc_out},
138 @code{coff_swap_filehdr_out}, @code{coff_swap_aouthdr_out},
139 @code{coff_swap_scnhdr_out}. @code{Gas} currently keeps track
140 of all the symbol table and reloc drudgery itself, thereby
141 saving the internal BFD overhead, but uses BFD to swap things
142 on the way out, making cross ports much safer. Doing so also
143 allows BFD (and thus the linker) to use the same header files
144 as @code{gas}, which makes one avenue to disaster disappear.
145
146 SUBSUBSECTION
147 Symbol reading
148
149 The simple canonical form for symbols used by BFD is not rich
150 enough to keep all the information available in a coff symbol
151 table. The back end gets around this problem by keeping the original
152 symbol table around, "behind the scenes".
153
154 When a symbol table is requested (through a call to
155 @code{bfd_canonicalize_symtab}), a request gets through to
156 @code{coff_get_normalized_symtab}. This reads the symbol table from
157 the coff file and swaps all the structures inside into the
158 internal form. It also fixes up all the pointers in the table
159 (represented in the file by offsets from the first symbol in
160 the table) into physical pointers to elements in the new
161 internal table. This involves some work since the meanings of
162 fields change depending upon context: a field that is a
163 pointer to another structure in the symbol table at one moment
164 may be the size in bytes of a structure at the next. Another
165 pass is made over the table. All symbols which mark file names
166 (<<C_FILE>> symbols) are modified so that the internal
167 string points to the value in the auxent (the real filename)
168 rather than the normal text associated with the symbol
169 (@code{".file"}).
170
171 At this time the symbol names are moved around. Coff stores
172 all symbols less than nine characters long physically
173 within the symbol table; longer strings are kept at the end of
174 the file in the string table. This pass moves all strings
175 into memory and replaces them with pointers to the strings.
176
177
178 The symbol table is massaged once again, this time to create
179 the canonical table used by the BFD application. Each symbol
180 is inspected in turn, and a decision made (using the
181 @code{sclass} field) about the various flags to set in the
182 @code{asymbol}. @xref{Symbols}. The generated canonical table
183 shares strings with the hidden internal symbol table.
184
185 Any linenumbers are read from the coff file too, and attached
186 to the symbols which own the functions the linenumbers belong to.
187
188 SUBSUBSECTION
189 Symbol writing
190
191 Writing a symbol to a coff file which didn't come from a coff
192 file will lose any debugging information. The @code{asymbol}
193 structure remembers the BFD from which the symbol was taken, and on
194 output the back end makes sure that the same destination target as
195 source target is present.
196
197 When the symbols have come from a coff file then all the
198 debugging information is preserved.
199
200 Symbol tables are provided for writing to the back end in a
201 vector of pointers to pointers. This allows applications like
202 the linker to accumulate and output large symbol tables
203 without having to do too much byte copying.
204
205 This function runs through the provided symbol table and
206 patches each symbol marked as a file place holder
207 (@code{C_FILE}) to point to the next file place holder in the
208 list. It also marks each @code{offset} field in the list with
209 the offset from the first symbol of the current symbol.
210
211 Another function of this procedure is to turn the canonical
212 value form of BFD into the form used by coff. Internally, BFD
213 expects symbol values to be offsets from a section base; so a
214 symbol physically at 0x120, but in a section starting at
215 0x100, would have the value 0x20. Coff expects symbols to
216 contain their final value, so symbols have their values
217 changed at this point to reflect their sum with their owning
218 section. This transformation uses the
219 <<output_section>> field of the @code{asymbol}'s
220 @code{asection} @xref{Sections}.
221
222 o <<coff_mangle_symbols>>
223
224 This routine runs though the provided symbol table and uses
225 the offsets generated by the previous pass and the pointers
226 generated when the symbol table was read in to create the
227 structured hierachy required by coff. It changes each pointer
228 to a symbol into the index into the symbol table of the asymbol.
229
230 o <<coff_write_symbols>>
231
232 This routine runs through the symbol table and patches up the
233 symbols from their internal form into the coff way, calls the
234 bit twiddlers, and writes out the table to the file.
235
236 */
237
238 /*
239 INTERNAL_DEFINITION
240 coff_symbol_type
241
242 DESCRIPTION
243 The hidden information for an <<asymbol>> is described in a
244 <<combined_entry_type>>:
245
246 CODE_FRAGMENT
247 .
248 .typedef struct coff_ptr_struct
249 .{
250 .
251 . {* Remembers the offset from the first symbol in the file for
252 . this symbol. Generated by coff_renumber_symbols. *}
253 .unsigned int offset;
254 .
255 . {* Should the value of this symbol be renumbered. Used for
256 . XCOFF C_BSTAT symbols. Set by coff_slurp_symbol_table. *}
257 .unsigned int fix_value : 1;
258 .
259 . {* Should the tag field of this symbol be renumbered.
260 . Created by coff_pointerize_aux. *}
261 .unsigned int fix_tag : 1;
262 .
263 . {* Should the endidx field of this symbol be renumbered.
264 . Created by coff_pointerize_aux. *}
265 .unsigned int fix_end : 1;
266 .
267 . {* Should the x_csect.x_scnlen field be renumbered.
268 . Created by coff_pointerize_aux. *}
269 .unsigned int fix_scnlen : 1;
270 .
271 . {* Fix up an XCOFF C_BINCL/C_EINCL symbol. The value is the
272 . index into the line number entries. Set by
273 . coff_slurp_symbol_table. *}
274 .unsigned int fix_line : 1;
275 .
276 . {* The container for the symbol structure as read and translated
277 . from the file. *}
278 .
279 .union {
280 . union internal_auxent auxent;
281 . struct internal_syment syment;
282 . } u;
283 .} combined_entry_type;
284 .
285 .
286 .{* Each canonical asymbol really looks like this: *}
287 .
288 .typedef struct coff_symbol_struct
289 .{
290 . {* The actual symbol which the rest of BFD works with *}
291 .asymbol symbol;
292 .
293 . {* A pointer to the hidden information for this symbol *}
294 .combined_entry_type *native;
295 .
296 . {* A pointer to the linenumber information for this symbol *}
297 .struct lineno_cache_entry *lineno;
298 .
299 . {* Have the line numbers been relocated yet ? *}
300 .boolean done_lineno;
301 .} coff_symbol_type;
302
303
304 */
305
306 #ifdef COFF_WITH_PE
307 #include "peicode.h"
308 #else
309 #include "coffswap.h"
310 #endif
311
312 #define STRING_SIZE_SIZE (4)
313 \f
314 /* void warning(); */
315
316 /*
317 * Return a word with STYP_* (scnhdr.s_flags) flags set to represent the
318 * incoming SEC_* flags. The inverse of this function is styp_to_sec_flags().
319 * NOTE: If you add to/change this routine, you should mirror the changes
320 * in styp_to_sec_flags().
321 */
322 static long
323 sec_to_styp_flags (sec_name, sec_flags)
324 CONST char *sec_name;
325 flagword sec_flags;
326 {
327 long styp_flags = 0;
328
329 if (!strcmp (sec_name, _TEXT))
330 {
331 styp_flags = STYP_TEXT;
332 }
333 else if (!strcmp (sec_name, _DATA))
334 {
335 styp_flags = STYP_DATA;
336 }
337 else if (!strcmp (sec_name, _BSS))
338 {
339 styp_flags = STYP_BSS;
340 #ifdef _COMMENT
341 }
342 else if (!strcmp (sec_name, _COMMENT))
343 {
344 styp_flags = STYP_INFO;
345 #endif /* _COMMENT */
346 #ifdef _LIB
347 }
348 else if (!strcmp (sec_name, _LIB))
349 {
350 styp_flags = STYP_LIB;
351 #endif /* _LIB */
352 #ifdef _LIT
353 }
354 else if (!strcmp (sec_name, _LIT))
355 {
356 styp_flags = STYP_LIT;
357 #endif /* _LIT */
358 }
359 else if (!strcmp (sec_name, ".debug"))
360 {
361 #ifdef STYP_DEBUG
362 styp_flags = STYP_DEBUG;
363 #else
364 styp_flags = STYP_INFO;
365 #endif
366 }
367 else if (!strncmp (sec_name, ".stab", 5))
368 {
369 styp_flags = STYP_INFO;
370 }
371 #ifdef COFF_WITH_PE
372 else if (!strcmp (sec_name, ".edata"))
373 {
374 styp_flags = STYP_DATA;
375 }
376 #endif
377 #ifdef RS6000COFF_C
378 else if (!strcmp (sec_name, _PAD))
379 {
380 styp_flags = STYP_PAD;
381 }
382 else if (!strcmp (sec_name, _LOADER))
383 {
384 styp_flags = STYP_LOADER;
385 }
386 #endif
387 /* Try and figure out what it should be */
388 else if (sec_flags & SEC_CODE)
389 {
390 styp_flags = STYP_TEXT;
391 }
392 else if (sec_flags & SEC_DATA)
393 {
394 styp_flags = STYP_DATA;
395 }
396 else if (sec_flags & SEC_READONLY)
397 {
398 #ifdef STYP_LIT /* 29k readonly text/data section */
399 styp_flags = STYP_LIT;
400 #else
401 styp_flags = STYP_TEXT;
402 #endif /* STYP_LIT */
403 }
404 else if (sec_flags & SEC_LOAD)
405 {
406 styp_flags = STYP_TEXT;
407 }
408 else if (sec_flags & SEC_ALLOC)
409 {
410 styp_flags = STYP_BSS;
411 }
412
413 #ifdef STYP_NOLOAD
414 if ((sec_flags & (SEC_NEVER_LOAD | SEC_COFF_SHARED_LIBRARY)) != 0)
415 styp_flags |= STYP_NOLOAD;
416 #endif
417
418 #ifdef COFF_WITH_PE
419 if (sec_flags & SEC_LINK_ONCE)
420 styp_flags |= IMAGE_SCN_LNK_COMDAT;
421 #endif
422
423 return (styp_flags);
424 }
425 /*
426 * Return a word with SEC_* flags set to represent the incoming
427 * STYP_* flags (from scnhdr.s_flags). The inverse of this
428 * function is sec_to_styp_flags().
429 * NOTE: If you add to/change this routine, you should mirror the changes
430 * in sec_to_styp_flags().
431 */
432 static flagword
433 styp_to_sec_flags (abfd, hdr, name)
434 bfd *abfd;
435 PTR hdr;
436 const char *name;
437 {
438 struct internal_scnhdr *internal_s = (struct internal_scnhdr *) hdr;
439 long styp_flags = internal_s->s_flags;
440 flagword sec_flags = 0;
441
442 #ifdef STYP_NOLOAD
443 if (styp_flags & STYP_NOLOAD)
444 {
445 sec_flags |= SEC_NEVER_LOAD;
446 }
447 #endif /* STYP_NOLOAD */
448
449 /* For 386 COFF, at least, an unloadable text or data section is
450 actually a shared library section. */
451 if (styp_flags & STYP_TEXT)
452 {
453 if (sec_flags & SEC_NEVER_LOAD)
454 sec_flags |= SEC_CODE | SEC_COFF_SHARED_LIBRARY;
455 else
456 sec_flags |= SEC_CODE | SEC_LOAD | SEC_ALLOC;
457 }
458 else if (styp_flags & STYP_DATA)
459 {
460 if (sec_flags & SEC_NEVER_LOAD)
461 sec_flags |= SEC_DATA | SEC_COFF_SHARED_LIBRARY;
462 else
463 sec_flags |= SEC_DATA | SEC_LOAD | SEC_ALLOC;
464 }
465 else if (styp_flags & STYP_BSS)
466 {
467 #ifdef BSS_NOLOAD_IS_SHARED_LIBRARY
468 if (sec_flags & SEC_NEVER_LOAD)
469 sec_flags |= SEC_ALLOC | SEC_COFF_SHARED_LIBRARY;
470 else
471 #endif
472 sec_flags |= SEC_ALLOC;
473 }
474 else if (styp_flags & STYP_INFO)
475 {
476 /* We mark these as SEC_DEBUGGING, but only if COFF_PAGE_SIZE is
477 defined. coff_compute_section_file_positions uses
478 COFF_PAGE_SIZE to ensure that the low order bits of the
479 section VMA and the file offset match. If we don't know
480 COFF_PAGE_SIZE, we can't ensure the correct correspondence,
481 and demand page loading of the file will fail. */
482 #ifdef COFF_PAGE_SIZE
483 sec_flags |= SEC_DEBUGGING;
484 #endif
485 }
486 else if (styp_flags & STYP_PAD)
487 {
488 sec_flags = 0;
489 }
490 else if (strcmp (name, _TEXT) == 0)
491 {
492 if (sec_flags & SEC_NEVER_LOAD)
493 sec_flags |= SEC_CODE | SEC_COFF_SHARED_LIBRARY;
494 else
495 sec_flags |= SEC_CODE | SEC_LOAD | SEC_ALLOC;
496 }
497 else if (strcmp (name, _DATA) == 0)
498 {
499 if (sec_flags & SEC_NEVER_LOAD)
500 sec_flags |= SEC_DATA | SEC_COFF_SHARED_LIBRARY;
501 else
502 sec_flags |= SEC_DATA | SEC_LOAD | SEC_ALLOC;
503 }
504 else if (strcmp (name, _BSS) == 0)
505 {
506 #ifdef BSS_NOLOAD_IS_SHARED_LIBRARY
507 if (sec_flags & SEC_NEVER_LOAD)
508 sec_flags |= SEC_ALLOC | SEC_COFF_SHARED_LIBRARY;
509 else
510 #endif
511 sec_flags |= SEC_ALLOC;
512 }
513 else if (strcmp (name, ".debug") == 0
514 #ifdef _COMMENT
515 || strcmp (name, _COMMENT) == 0
516 #endif
517 || strncmp (name, ".stab", 5) == 0)
518 {
519 #ifdef COFF_PAGE_SIZE
520 sec_flags |= SEC_DEBUGGING;
521 #endif
522 }
523 #ifdef _LIB
524 else if (strcmp (name, _LIB) == 0)
525 ;
526 #endif
527 #ifdef _LIT
528 else if (strcmp (name, _LIT) == 0)
529 {
530 sec_flags = SEC_LOAD | SEC_ALLOC | SEC_READONLY;
531 }
532 #endif
533 else
534 {
535 sec_flags |= SEC_ALLOC | SEC_LOAD;
536 }
537
538 #ifdef STYP_LIT /* A29k readonly text/data section type */
539 if ((styp_flags & STYP_LIT) == STYP_LIT)
540 {
541 sec_flags = (SEC_LOAD | SEC_ALLOC | SEC_READONLY);
542 }
543 #endif /* STYP_LIT */
544 #ifdef STYP_OTHER_LOAD /* Other loaded sections */
545 if (styp_flags & STYP_OTHER_LOAD)
546 {
547 sec_flags = (SEC_LOAD | SEC_ALLOC);
548 }
549 #endif /* STYP_SDATA */
550
551 #ifdef COFF_WITH_PE
552 if (styp_flags & IMAGE_SCN_LNK_REMOVE)
553 sec_flags |= SEC_EXCLUDE;
554
555 if (styp_flags & IMAGE_SCN_LNK_COMDAT)
556 {
557 sec_flags |= SEC_LINK_ONCE;
558
559 /* Unfortunately, the PE format stores essential information in
560 the symbol table, of all places. We need to extract that
561 information now, so that objdump and the linker will know how
562 to handle the section without worrying about the symbols. We
563 can't call slurp_symtab, because the linker doesn't want the
564 swapped symbols. */
565
566 if (_bfd_coff_get_external_symbols (abfd))
567 {
568 bfd_byte *esym, *esymend;
569
570 esym = (bfd_byte *) obj_coff_external_syms (abfd);
571 esymend = esym + obj_raw_syment_count (abfd) * SYMESZ;
572
573 while (esym < esymend)
574 {
575 struct internal_syment isym;
576
577 bfd_coff_swap_sym_in (abfd, (PTR) esym, (PTR) &isym);
578
579 if (sizeof (internal_s->s_name) > SYMNMLEN)
580 {
581 /* This case implies that the matching symbol name
582 will be in the string table. */
583 abort ();
584 }
585
586 if (isym.n_sclass == C_STAT
587 && isym.n_type == T_NULL
588 && isym.n_numaux == 1)
589 {
590 char buf[SYMNMLEN + 1];
591 const char *symname;
592
593 symname = _bfd_coff_internal_syment_name (abfd, &isym, buf);
594 if (symname == NULL)
595 abort ();
596
597 if (strcmp (name, symname) == 0)
598 {
599 union internal_auxent aux;
600
601 /* This is the section symbol. */
602
603 bfd_coff_swap_aux_in (abfd, (PTR) (esym + SYMESZ),
604 isym.n_type, isym.n_sclass,
605 0, isym.n_numaux, (PTR) &aux);
606
607 switch (aux.x_scn.x_comdat)
608 {
609 case IMAGE_COMDAT_SELECT_NODUPLICATES:
610 sec_flags |= SEC_LINK_DUPLICATES_ONE_ONLY;
611 break;
612
613 default:
614 case IMAGE_COMDAT_SELECT_ANY:
615 sec_flags |= SEC_LINK_DUPLICATES_DISCARD;
616 break;
617
618 case IMAGE_COMDAT_SELECT_SAME_SIZE:
619 sec_flags |= SEC_LINK_DUPLICATES_SAME_SIZE;
620 break;
621
622 case IMAGE_COMDAT_SELECT_EXACT_MATCH:
623 sec_flags |= SEC_LINK_DUPLICATES_SAME_CONTENTS;
624 break;
625
626 case IMAGE_COMDAT_SELECT_ASSOCIATIVE:
627 /* FIXME: This is not currently implemented. */
628 sec_flags |= SEC_LINK_DUPLICATES_DISCARD;
629 break;
630 }
631
632 break;
633 }
634 }
635
636 esym += (isym.n_numaux + 1) * SYMESZ;
637 }
638 }
639 }
640 #endif
641
642 return (sec_flags);
643 }
644
645 #define get_index(symbol) ((symbol)->udata.i)
646
647 /*
648 INTERNAL_DEFINITION
649 bfd_coff_backend_data
650
651 CODE_FRAGMENT
652
653 Special entry points for gdb to swap in coff symbol table parts:
654 .typedef struct
655 .{
656 . void (*_bfd_coff_swap_aux_in) PARAMS ((
657 . bfd *abfd,
658 . PTR ext,
659 . int type,
660 . int class,
661 . int indaux,
662 . int numaux,
663 . PTR in));
664 .
665 . void (*_bfd_coff_swap_sym_in) PARAMS ((
666 . bfd *abfd ,
667 . PTR ext,
668 . PTR in));
669 .
670 . void (*_bfd_coff_swap_lineno_in) PARAMS ((
671 . bfd *abfd,
672 . PTR ext,
673 . PTR in));
674 .
675
676 Special entry points for gas to swap out coff parts:
677
678 . unsigned int (*_bfd_coff_swap_aux_out) PARAMS ((
679 . bfd *abfd,
680 . PTR in,
681 . int type,
682 . int class,
683 . int indaux,
684 . int numaux,
685 . PTR ext));
686 .
687 . unsigned int (*_bfd_coff_swap_sym_out) PARAMS ((
688 . bfd *abfd,
689 . PTR in,
690 . PTR ext));
691 .
692 . unsigned int (*_bfd_coff_swap_lineno_out) PARAMS ((
693 . bfd *abfd,
694 . PTR in,
695 . PTR ext));
696 .
697 . unsigned int (*_bfd_coff_swap_reloc_out) PARAMS ((
698 . bfd *abfd,
699 . PTR src,
700 . PTR dst));
701 .
702 . unsigned int (*_bfd_coff_swap_filehdr_out) PARAMS ((
703 . bfd *abfd,
704 . PTR in,
705 . PTR out));
706 .
707 . unsigned int (*_bfd_coff_swap_aouthdr_out) PARAMS ((
708 . bfd *abfd,
709 . PTR in,
710 . PTR out));
711 .
712 . unsigned int (*_bfd_coff_swap_scnhdr_out) PARAMS ((
713 . bfd *abfd,
714 . PTR in,
715 . PTR out));
716 .
717
718 Special entry points for generic COFF routines to call target
719 dependent COFF routines:
720
721 . unsigned int _bfd_filhsz;
722 . unsigned int _bfd_aoutsz;
723 . unsigned int _bfd_scnhsz;
724 . unsigned int _bfd_symesz;
725 . unsigned int _bfd_auxesz;
726 . unsigned int _bfd_relsz;
727 . unsigned int _bfd_linesz;
728 . boolean _bfd_coff_long_filenames;
729 . boolean _bfd_coff_long_section_names;
730 . void (*_bfd_coff_swap_filehdr_in) PARAMS ((
731 . bfd *abfd,
732 . PTR ext,
733 . PTR in));
734 . void (*_bfd_coff_swap_aouthdr_in) PARAMS ((
735 . bfd *abfd,
736 . PTR ext,
737 . PTR in));
738 . void (*_bfd_coff_swap_scnhdr_in) PARAMS ((
739 . bfd *abfd,
740 . PTR ext,
741 . PTR in));
742 . void (*_bfd_coff_swap_reloc_in) PARAMS ((
743 . bfd *abfd,
744 . PTR ext,
745 . PTR in));
746 . boolean (*_bfd_coff_bad_format_hook) PARAMS ((
747 . bfd *abfd,
748 . PTR internal_filehdr));
749 . boolean (*_bfd_coff_set_arch_mach_hook) PARAMS ((
750 . bfd *abfd,
751 . PTR internal_filehdr));
752 . PTR (*_bfd_coff_mkobject_hook) PARAMS ((
753 . bfd *abfd,
754 . PTR internal_filehdr,
755 . PTR internal_aouthdr));
756 . flagword (*_bfd_styp_to_sec_flags_hook) PARAMS ((
757 . bfd *abfd,
758 . PTR internal_scnhdr,
759 . const char *name));
760 . void (*_bfd_set_alignment_hook) PARAMS ((
761 . bfd *abfd,
762 . asection *sec,
763 . PTR internal_scnhdr));
764 . boolean (*_bfd_coff_slurp_symbol_table) PARAMS ((
765 . bfd *abfd));
766 . boolean (*_bfd_coff_symname_in_debug) PARAMS ((
767 . bfd *abfd,
768 . struct internal_syment *sym));
769 . boolean (*_bfd_coff_pointerize_aux_hook) PARAMS ((
770 . bfd *abfd,
771 . combined_entry_type *table_base,
772 . combined_entry_type *symbol,
773 . unsigned int indaux,
774 . combined_entry_type *aux));
775 . boolean (*_bfd_coff_print_aux) PARAMS ((
776 . bfd *abfd,
777 . FILE *file,
778 . combined_entry_type *table_base,
779 . combined_entry_type *symbol,
780 . combined_entry_type *aux,
781 . unsigned int indaux));
782 . void (*_bfd_coff_reloc16_extra_cases) PARAMS ((
783 . bfd *abfd,
784 . struct bfd_link_info *link_info,
785 . struct bfd_link_order *link_order,
786 . arelent *reloc,
787 . bfd_byte *data,
788 . unsigned int *src_ptr,
789 . unsigned int *dst_ptr));
790 . int (*_bfd_coff_reloc16_estimate) PARAMS ((
791 . bfd *abfd,
792 . asection *input_section,
793 . arelent *r,
794 . unsigned int shrink,
795 . struct bfd_link_info *link_info));
796 . boolean (*_bfd_coff_sym_is_global) PARAMS ((
797 . bfd *abfd,
798 . struct internal_syment *));
799 . void (*_bfd_coff_compute_section_file_positions) PARAMS ((
800 . bfd *abfd));
801 . boolean (*_bfd_coff_start_final_link) PARAMS ((
802 . bfd *output_bfd,
803 . struct bfd_link_info *info));
804 . boolean (*_bfd_coff_relocate_section) PARAMS ((
805 . bfd *output_bfd,
806 . struct bfd_link_info *info,
807 . bfd *input_bfd,
808 . asection *input_section,
809 . bfd_byte *contents,
810 . struct internal_reloc *relocs,
811 . struct internal_syment *syms,
812 . asection **sections));
813 . reloc_howto_type *(*_bfd_coff_rtype_to_howto) PARAMS ((
814 . bfd *abfd,
815 . asection *sec,
816 . struct internal_reloc *rel,
817 . struct coff_link_hash_entry *h,
818 . struct internal_syment *sym,
819 . bfd_vma *addendp));
820 . boolean (*_bfd_coff_adjust_symndx) PARAMS ((
821 . bfd *obfd,
822 . struct bfd_link_info *info,
823 . bfd *ibfd,
824 . asection *sec,
825 . struct internal_reloc *reloc,
826 . boolean *adjustedp));
827 . boolean (*_bfd_coff_link_add_one_symbol) PARAMS ((
828 . struct bfd_link_info *info,
829 . bfd *abfd,
830 . const char *name,
831 . flagword flags,
832 . asection *section,
833 . bfd_vma value,
834 . const char *string,
835 . boolean copy,
836 . boolean collect,
837 . struct bfd_link_hash_entry **hashp));
838 .
839 .} bfd_coff_backend_data;
840 .
841 .#define coff_backend_info(abfd) ((bfd_coff_backend_data *) (abfd)->xvec->backend_data)
842 .
843 .#define bfd_coff_swap_aux_in(a,e,t,c,ind,num,i) \
844 . ((coff_backend_info (a)->_bfd_coff_swap_aux_in) (a,e,t,c,ind,num,i))
845 .
846 .#define bfd_coff_swap_sym_in(a,e,i) \
847 . ((coff_backend_info (a)->_bfd_coff_swap_sym_in) (a,e,i))
848 .
849 .#define bfd_coff_swap_lineno_in(a,e,i) \
850 . ((coff_backend_info ( a)->_bfd_coff_swap_lineno_in) (a,e,i))
851 .
852 .#define bfd_coff_swap_reloc_out(abfd, i, o) \
853 . ((coff_backend_info (abfd)->_bfd_coff_swap_reloc_out) (abfd, i, o))
854 .
855 .#define bfd_coff_swap_lineno_out(abfd, i, o) \
856 . ((coff_backend_info (abfd)->_bfd_coff_swap_lineno_out) (abfd, i, o))
857 .
858 .#define bfd_coff_swap_aux_out(a,i,t,c,ind,num,o) \
859 . ((coff_backend_info (a)->_bfd_coff_swap_aux_out) (a,i,t,c,ind,num,o))
860 .
861 .#define bfd_coff_swap_sym_out(abfd, i,o) \
862 . ((coff_backend_info (abfd)->_bfd_coff_swap_sym_out) (abfd, i, o))
863 .
864 .#define bfd_coff_swap_scnhdr_out(abfd, i,o) \
865 . ((coff_backend_info (abfd)->_bfd_coff_swap_scnhdr_out) (abfd, i, o))
866 .
867 .#define bfd_coff_swap_filehdr_out(abfd, i,o) \
868 . ((coff_backend_info (abfd)->_bfd_coff_swap_filehdr_out) (abfd, i, o))
869 .
870 .#define bfd_coff_swap_aouthdr_out(abfd, i,o) \
871 . ((coff_backend_info (abfd)->_bfd_coff_swap_aouthdr_out) (abfd, i, o))
872 .
873 .#define bfd_coff_filhsz(abfd) (coff_backend_info (abfd)->_bfd_filhsz)
874 .#define bfd_coff_aoutsz(abfd) (coff_backend_info (abfd)->_bfd_aoutsz)
875 .#define bfd_coff_scnhsz(abfd) (coff_backend_info (abfd)->_bfd_scnhsz)
876 .#define bfd_coff_symesz(abfd) (coff_backend_info (abfd)->_bfd_symesz)
877 .#define bfd_coff_auxesz(abfd) (coff_backend_info (abfd)->_bfd_auxesz)
878 .#define bfd_coff_relsz(abfd) (coff_backend_info (abfd)->_bfd_relsz)
879 .#define bfd_coff_linesz(abfd) (coff_backend_info (abfd)->_bfd_linesz)
880 .#define bfd_coff_long_filenames(abfd) (coff_backend_info (abfd)->_bfd_coff_long_filenames)
881 .#define bfd_coff_long_section_names(abfd) \
882 . (coff_backend_info (abfd)->_bfd_coff_long_section_names)
883 .#define bfd_coff_swap_filehdr_in(abfd, i,o) \
884 . ((coff_backend_info (abfd)->_bfd_coff_swap_filehdr_in) (abfd, i, o))
885 .
886 .#define bfd_coff_swap_aouthdr_in(abfd, i,o) \
887 . ((coff_backend_info (abfd)->_bfd_coff_swap_aouthdr_in) (abfd, i, o))
888 .
889 .#define bfd_coff_swap_scnhdr_in(abfd, i,o) \
890 . ((coff_backend_info (abfd)->_bfd_coff_swap_scnhdr_in) (abfd, i, o))
891 .
892 .#define bfd_coff_swap_reloc_in(abfd, i, o) \
893 . ((coff_backend_info (abfd)->_bfd_coff_swap_reloc_in) (abfd, i, o))
894 .
895 .#define bfd_coff_bad_format_hook(abfd, filehdr) \
896 . ((coff_backend_info (abfd)->_bfd_coff_bad_format_hook) (abfd, filehdr))
897 .
898 .#define bfd_coff_set_arch_mach_hook(abfd, filehdr)\
899 . ((coff_backend_info (abfd)->_bfd_coff_set_arch_mach_hook) (abfd, filehdr))
900 .#define bfd_coff_mkobject_hook(abfd, filehdr, aouthdr)\
901 . ((coff_backend_info (abfd)->_bfd_coff_mkobject_hook) (abfd, filehdr, aouthdr))
902 .
903 .#define bfd_coff_styp_to_sec_flags_hook(abfd, scnhdr, name)\
904 . ((coff_backend_info (abfd)->_bfd_styp_to_sec_flags_hook) (abfd, scnhdr, name))
905 .
906 .#define bfd_coff_set_alignment_hook(abfd, sec, scnhdr)\
907 . ((coff_backend_info (abfd)->_bfd_set_alignment_hook) (abfd, sec, scnhdr))
908 .
909 .#define bfd_coff_slurp_symbol_table(abfd)\
910 . ((coff_backend_info (abfd)->_bfd_coff_slurp_symbol_table) (abfd))
911 .
912 .#define bfd_coff_symname_in_debug(abfd, sym)\
913 . ((coff_backend_info (abfd)->_bfd_coff_symname_in_debug) (abfd, sym))
914 .
915 .#define bfd_coff_print_aux(abfd, file, base, symbol, aux, indaux)\
916 . ((coff_backend_info (abfd)->_bfd_coff_print_aux)\
917 . (abfd, file, base, symbol, aux, indaux))
918 .
919 .#define bfd_coff_reloc16_extra_cases(abfd, link_info, link_order, reloc, data, src_ptr, dst_ptr)\
920 . ((coff_backend_info (abfd)->_bfd_coff_reloc16_extra_cases)\
921 . (abfd, link_info, link_order, reloc, data, src_ptr, dst_ptr))
922 .
923 .#define bfd_coff_reloc16_estimate(abfd, section, reloc, shrink, link_info)\
924 . ((coff_backend_info (abfd)->_bfd_coff_reloc16_estimate)\
925 . (abfd, section, reloc, shrink, link_info))
926 .
927 .#define bfd_coff_sym_is_global(abfd, sym)\
928 . ((coff_backend_info (abfd)->_bfd_coff_sym_is_global)\
929 . (abfd, sym))
930 .
931 .#define bfd_coff_compute_section_file_positions(abfd)\
932 . ((coff_backend_info (abfd)->_bfd_coff_compute_section_file_positions)\
933 . (abfd))
934 .
935 .#define bfd_coff_start_final_link(obfd, info)\
936 . ((coff_backend_info (obfd)->_bfd_coff_start_final_link)\
937 . (obfd, info))
938 .#define bfd_coff_relocate_section(obfd,info,ibfd,o,con,rel,isyms,secs)\
939 . ((coff_backend_info (ibfd)->_bfd_coff_relocate_section)\
940 . (obfd, info, ibfd, o, con, rel, isyms, secs))
941 .#define bfd_coff_rtype_to_howto(abfd, sec, rel, h, sym, addendp)\
942 . ((coff_backend_info (abfd)->_bfd_coff_rtype_to_howto)\
943 . (abfd, sec, rel, h, sym, addendp))
944 .#define bfd_coff_adjust_symndx(obfd, info, ibfd, sec, rel, adjustedp)\
945 . ((coff_backend_info (abfd)->_bfd_coff_adjust_symndx)\
946 . (obfd, info, ibfd, sec, rel, adjustedp))
947 .#define bfd_coff_link_add_one_symbol(info,abfd,name,flags,section,value,string,cp,coll,hashp)\
948 . ((coff_backend_info (abfd)->_bfd_coff_link_add_one_symbol)\
949 . (info, abfd, name, flags, section, value, string, cp, coll, hashp))
950 .
951 */
952
953 /* See whether the magic number matches. */
954
955 static boolean
956 coff_bad_format_hook (abfd, filehdr)
957 bfd * abfd;
958 PTR filehdr;
959 {
960 struct internal_filehdr *internal_f = (struct internal_filehdr *) filehdr;
961
962 if (BADMAG (*internal_f))
963 return false;
964
965 /* if the optional header is NULL or not the correct size then
966 quit; the only difference I can see between m88k dgux headers (MC88DMAGIC)
967 and Intel 960 readwrite headers (I960WRMAGIC) is that the
968 optional header is of a different size.
969
970 But the mips keeps extra stuff in it's opthdr, so dont check
971 when doing that
972 */
973
974 #if defined(M88) || defined(I960)
975 if (internal_f->f_opthdr != 0 && AOUTSZ != internal_f->f_opthdr)
976 return false;
977 #endif
978
979 return true;
980 }
981
982 /*
983 initialize a section structure with information peculiar to this
984 particular implementation of coff
985 */
986
987 static boolean
988 coff_new_section_hook (abfd, section)
989 bfd * abfd;
990 asection * section;
991 {
992 section->alignment_power = COFF_DEFAULT_SECTION_ALIGNMENT_POWER;
993
994 #ifdef RS6000COFF_C
995 if (xcoff_data (abfd)->text_align_power != 0
996 && strcmp (bfd_get_section_name (abfd, section), ".text") == 0)
997 section->alignment_power = xcoff_data (abfd)->text_align_power;
998 if (xcoff_data (abfd)->data_align_power != 0
999 && strcmp (bfd_get_section_name (abfd, section), ".data") == 0)
1000 section->alignment_power = xcoff_data (abfd)->data_align_power;
1001 #endif
1002
1003 /* Allocate aux records for section symbols, to store size and
1004 related info.
1005
1006 @@ The 10 is a guess at a plausible maximum number of aux entries
1007 (but shouldn't be a constant). */
1008 coffsymbol (section->symbol)->native =
1009 (combined_entry_type *) bfd_zalloc (abfd,
1010 sizeof (combined_entry_type) * 10);
1011
1012 /* The .stab section must be aligned to 2**2 at most, because
1013 otherwise there may be gaps in the section which gdb will not
1014 know how to interpret. Examining the section name is a hack, but
1015 that is also how gdb locates the section.
1016 We need to handle the .ctors and .dtors sections similarly, to
1017 avoid introducing null words in the tables. */
1018 if (COFF_DEFAULT_SECTION_ALIGNMENT_POWER > 2
1019 && (strncmp (section->name, ".stab", 5) == 0
1020 || strcmp (section->name, ".ctors") == 0
1021 || strcmp (section->name, ".dtors") == 0))
1022 section->alignment_power = 2;
1023
1024 /* Similarly, the .stabstr section must be aligned to 2**0 at most. */
1025 if (COFF_DEFAULT_SECTION_ALIGNMENT_POWER > 0
1026 && strncmp (section->name, ".stabstr", 8) == 0)
1027 section->alignment_power = 0;
1028
1029 return true;
1030 }
1031
1032 #ifdef I960
1033
1034 /* Set the alignment of a BFD section. */
1035
1036 static void
1037 coff_set_alignment_hook (abfd, section, scnhdr)
1038 bfd * abfd;
1039 asection * section;
1040 PTR scnhdr;
1041 {
1042 struct internal_scnhdr *hdr = (struct internal_scnhdr *) scnhdr;
1043 unsigned int i;
1044
1045 for (i = 0; i < 32; i++)
1046 if ((1 << i) >= hdr->s_align)
1047 break;
1048 section->alignment_power = i;
1049 }
1050
1051 #else /* ! I960 */
1052 #ifdef COFF_WITH_PE
1053
1054 /* a couple of macros to help setting the alignment power field */
1055 #define ALIGN_SET(field,x,y) \
1056 if (((field) & IMAGE_SCN_ALIGN_64BYTES) == x )\
1057 {\
1058 section->alignment_power = y;\
1059 }
1060
1061 #define ELIFALIGN_SET(field,x,y) \
1062 else if (( (field) & IMAGE_SCN_ALIGN_64BYTES) == x ) \
1063 {\
1064 section->alignment_power = y;\
1065 }
1066
1067 static void
1068 coff_set_alignment_hook (abfd, section, scnhdr)
1069 bfd * abfd;
1070 asection * section;
1071 PTR scnhdr;
1072 {
1073 struct internal_scnhdr *hdr = (struct internal_scnhdr *) scnhdr;
1074
1075 ALIGN_SET (hdr->s_flags, IMAGE_SCN_ALIGN_64BYTES, 6)
1076 ELIFALIGN_SET (hdr->s_flags, IMAGE_SCN_ALIGN_32BYTES, 5)
1077 ELIFALIGN_SET (hdr->s_flags, IMAGE_SCN_ALIGN_16BYTES, 4)
1078 ELIFALIGN_SET (hdr->s_flags, IMAGE_SCN_ALIGN_8BYTES, 3)
1079 ELIFALIGN_SET (hdr->s_flags, IMAGE_SCN_ALIGN_4BYTES, 2)
1080 ELIFALIGN_SET (hdr->s_flags, IMAGE_SCN_ALIGN_2BYTES, 1)
1081 ELIFALIGN_SET (hdr->s_flags, IMAGE_SCN_ALIGN_1BYTES, 0)
1082
1083 #ifdef POWERPC_LE_PE
1084 if (strcmp (section->name, ".idata$2") == 0)
1085 {
1086 section->alignment_power = 0;
1087 }
1088 else if (strcmp (section->name, ".idata$3") == 0)
1089 {
1090 section->alignment_power = 0;
1091 }
1092 else if (strcmp (section->name, ".idata$4") == 0)
1093 {
1094 section->alignment_power = 2;
1095 }
1096 else if (strcmp (section->name, ".idata$5") == 0)
1097 {
1098 section->alignment_power = 2;
1099 }
1100 else if (strcmp (section->name, ".idata$6") == 0)
1101 {
1102 section->alignment_power = 1;
1103 }
1104 else if (strcmp (section->name, ".reloc") == 0)
1105 {
1106 section->alignment_power = 1;
1107 }
1108 else if (strncmp (section->name, ".stab", 5) == 0)
1109 {
1110 section->alignment_power = 2;
1111 }
1112 #endif
1113
1114 #ifdef COFF_IMAGE_WITH_PE
1115 /* In a PE image file, the s_paddr field holds the virtual size of a
1116 section, while the s_size field holds the raw size. */
1117 if (hdr->s_paddr != 0)
1118 {
1119 if (coff_section_data (abfd, section) == NULL)
1120 {
1121 section->used_by_bfd =
1122 (PTR) bfd_zalloc (abfd, sizeof (struct coff_section_tdata));
1123 if (section->used_by_bfd == NULL)
1124 {
1125 /* FIXME: Return error. */
1126 abort ();
1127 }
1128 }
1129 if (pei_section_data (abfd, section) == NULL)
1130 {
1131 coff_section_data (abfd, section)->tdata =
1132 (PTR) bfd_zalloc (abfd, sizeof (struct pei_section_tdata));
1133 if (coff_section_data (abfd, section)->tdata == NULL)
1134 {
1135 /* FIXME: Return error. */
1136 abort ();
1137 }
1138 }
1139 pei_section_data (abfd, section)->virt_size = hdr->s_paddr;
1140 }
1141 #endif
1142
1143 }
1144 #undef ALIGN_SET
1145 #undef ELIFALIGN_SET
1146
1147 #else /* ! COFF_WITH_PE */
1148 #ifdef RS6000COFF_C
1149
1150 /* We grossly abuse this function to handle XCOFF overflow headers.
1151 When we see one, we correct the reloc and line number counts in the
1152 real header, and remove the section we just created. */
1153
1154 static void
1155 coff_set_alignment_hook (abfd, section, scnhdr)
1156 bfd *abfd;
1157 asection *section;
1158 PTR scnhdr;
1159 {
1160 struct internal_scnhdr *hdr = (struct internal_scnhdr *) scnhdr;
1161 asection *real_sec;
1162 asection **ps;
1163
1164 if ((hdr->s_flags & STYP_OVRFLO) == 0)
1165 return;
1166
1167 real_sec = coff_section_from_bfd_index (abfd, hdr->s_nreloc);
1168 if (real_sec == NULL)
1169 return;
1170
1171 real_sec->reloc_count = hdr->s_paddr;
1172 real_sec->lineno_count = hdr->s_vaddr;
1173
1174 for (ps = &abfd->sections; *ps != NULL; ps = &(*ps)->next)
1175 {
1176 if (*ps == section)
1177 {
1178 *ps = (*ps)->next;
1179 --abfd->section_count;
1180 break;
1181 }
1182 }
1183 }
1184
1185 #else /* ! RS6000COFF_C */
1186
1187 #define coff_set_alignment_hook \
1188 ((void (*) PARAMS ((bfd *, asection *, PTR))) bfd_void)
1189
1190 #endif /* ! RS6000COFF_C */
1191 #endif /* ! COFF_WITH_PE */
1192 #endif /* ! I960 */
1193
1194 #ifndef coff_mkobject
1195 static boolean
1196 coff_mkobject (abfd)
1197 bfd * abfd;
1198 {
1199 coff_data_type *coff;
1200
1201 abfd->tdata.coff_obj_data = (struct coff_tdata *) bfd_zalloc (abfd, sizeof (coff_data_type));
1202 if (abfd->tdata.coff_obj_data == 0)
1203 return false;
1204 coff = coff_data (abfd);
1205 coff->symbols = (coff_symbol_type *) NULL;
1206 coff->conversion_table = (unsigned int *) NULL;
1207 coff->raw_syments = (struct coff_ptr_struct *) NULL;
1208 coff->relocbase = 0;
1209 coff->local_toc_sym_map = 0;
1210
1211 /* make_abs_section(abfd);*/
1212
1213 return true;
1214 }
1215 #endif
1216
1217 /* Create the COFF backend specific information. */
1218 #ifndef coff_mkobject_hook
1219 static PTR
1220 coff_mkobject_hook (abfd, filehdr, aouthdr)
1221 bfd * abfd;
1222 PTR filehdr;
1223 PTR aouthdr;
1224 {
1225 struct internal_filehdr *internal_f = (struct internal_filehdr *) filehdr;
1226 coff_data_type *coff;
1227
1228 if (coff_mkobject (abfd) == false)
1229 return NULL;
1230
1231 coff = coff_data (abfd);
1232
1233 coff->sym_filepos = internal_f->f_symptr;
1234
1235 /* These members communicate important constants about the symbol
1236 table to GDB's symbol-reading code. These `constants'
1237 unfortunately vary among coff implementations... */
1238 coff->local_n_btmask = N_BTMASK;
1239 coff->local_n_btshft = N_BTSHFT;
1240 coff->local_n_tmask = N_TMASK;
1241 coff->local_n_tshift = N_TSHIFT;
1242 coff->local_symesz = SYMESZ;
1243 coff->local_auxesz = AUXESZ;
1244 coff->local_linesz = LINESZ;
1245
1246 obj_raw_syment_count (abfd) =
1247 obj_conv_table_size (abfd) =
1248 internal_f->f_nsyms;
1249
1250 #ifdef RS6000COFF_C
1251 if ((internal_f->f_flags & F_SHROBJ) != 0)
1252 abfd->flags |= DYNAMIC;
1253 if (aouthdr != NULL && internal_f->f_opthdr >= AOUTSZ)
1254 {
1255 struct internal_aouthdr *internal_a =
1256 (struct internal_aouthdr *) aouthdr;
1257 struct xcoff_tdata *xcoff;
1258
1259 xcoff = xcoff_data (abfd);
1260 xcoff->full_aouthdr = true;
1261 xcoff->toc = internal_a->o_toc;
1262 xcoff->sntoc = internal_a->o_sntoc;
1263 xcoff->snentry = internal_a->o_snentry;
1264 xcoff->text_align_power = internal_a->o_algntext;
1265 xcoff->data_align_power = internal_a->o_algndata;
1266 xcoff->modtype = internal_a->o_modtype;
1267 xcoff->cputype = internal_a->o_cputype;
1268 xcoff->maxdata = internal_a->o_maxdata;
1269 xcoff->maxstack = internal_a->o_maxstack;
1270 }
1271 #endif
1272
1273 return (PTR) coff;
1274 }
1275 #endif
1276
1277 /* Determine the machine architecture and type. FIXME: This is target
1278 dependent because the magic numbers are defined in the target
1279 dependent header files. But there is no particular need for this.
1280 If the magic numbers were moved to a separate file, this function
1281 would be target independent and would also be much more successful
1282 at linking together COFF files for different architectures. */
1283
1284 static boolean
1285 coff_set_arch_mach_hook (abfd, filehdr)
1286 bfd *abfd;
1287 PTR filehdr;
1288 {
1289 long machine;
1290 enum bfd_architecture arch;
1291 struct internal_filehdr *internal_f = (struct internal_filehdr *) filehdr;
1292
1293 machine = 0;
1294 switch (internal_f->f_magic)
1295 {
1296 #ifdef PPCMAGIC
1297 case PPCMAGIC:
1298 arch = bfd_arch_powerpc;
1299 machine = 0; /* what does this mean? (krk) */
1300 break;
1301 #endif
1302 #ifdef I386MAGIC
1303 case I386MAGIC:
1304 case I386PTXMAGIC:
1305 case I386AIXMAGIC: /* Danbury PS/2 AIX C Compiler */
1306 case LYNXCOFFMAGIC: /* shadows the m68k Lynx number below, sigh */
1307 arch = bfd_arch_i386;
1308 machine = 0;
1309 break;
1310 #endif
1311 #ifdef A29K_MAGIC_BIG
1312 case A29K_MAGIC_BIG:
1313 case A29K_MAGIC_LITTLE:
1314 arch = bfd_arch_a29k;
1315 machine = 0;
1316 break;
1317 #endif
1318 #ifdef ARMMAGIC
1319 case ARMMAGIC:
1320 arch = bfd_arch_arm;
1321 machine =0;
1322 break;
1323 #endif
1324 #ifdef MC68MAGIC
1325 case MC68MAGIC:
1326 case M68MAGIC:
1327 #ifdef MC68KBCSMAGIC
1328 case MC68KBCSMAGIC:
1329 #endif
1330 #ifdef APOLLOM68KMAGIC
1331 case APOLLOM68KMAGIC:
1332 #endif
1333 #ifdef LYNXCOFFMAGIC
1334 case LYNXCOFFMAGIC:
1335 #endif
1336 arch = bfd_arch_m68k;
1337 machine = 68020;
1338 break;
1339 #endif
1340 #ifdef MC88MAGIC
1341 case MC88MAGIC:
1342 case MC88DMAGIC:
1343 case MC88OMAGIC:
1344 arch = bfd_arch_m88k;
1345 machine = 88100;
1346 break;
1347 #endif
1348 #ifdef Z8KMAGIC
1349 case Z8KMAGIC:
1350 arch = bfd_arch_z8k;
1351 switch (internal_f->f_flags & F_MACHMASK)
1352 {
1353 case F_Z8001:
1354 machine = bfd_mach_z8001;
1355 break;
1356 case F_Z8002:
1357 machine = bfd_mach_z8002;
1358 break;
1359 default:
1360 return false;
1361 }
1362 break;
1363 #endif
1364 #ifdef I860
1365 case I860MAGIC:
1366 arch = bfd_arch_i860;
1367 break;
1368 #endif
1369 #ifdef I960
1370 #ifdef I960ROMAGIC
1371 case I960ROMAGIC:
1372 case I960RWMAGIC:
1373 arch = bfd_arch_i960;
1374 switch (F_I960TYPE & internal_f->f_flags)
1375 {
1376 default:
1377 case F_I960CORE:
1378 machine = bfd_mach_i960_core;
1379 break;
1380 case F_I960KB:
1381 machine = bfd_mach_i960_kb_sb;
1382 break;
1383 case F_I960MC:
1384 machine = bfd_mach_i960_mc;
1385 break;
1386 case F_I960XA:
1387 machine = bfd_mach_i960_xa;
1388 break;
1389 case F_I960CA:
1390 machine = bfd_mach_i960_ca;
1391 break;
1392 case F_I960KA:
1393 machine = bfd_mach_i960_ka_sa;
1394 break;
1395 case F_I960JX:
1396 machine = bfd_mach_i960_jx;
1397 break;
1398 case F_I960HX:
1399 machine = bfd_mach_i960_hx;
1400 break;
1401 }
1402 break;
1403 #endif
1404 #endif
1405
1406 #ifdef RS6000COFF_C
1407 case U802ROMAGIC:
1408 case U802WRMAGIC:
1409 case U802TOCMAGIC:
1410 {
1411 int cputype;
1412
1413 if (xcoff_data (abfd)->cputype != -1)
1414 cputype = xcoff_data (abfd)->cputype & 0xff;
1415 else
1416 {
1417 /* We did not get a value from the a.out header. If the
1418 file has not been stripped, we may be able to get the
1419 architecture information from the first symbol, if it
1420 is a .file symbol. */
1421 if (obj_raw_syment_count (abfd) == 0)
1422 cputype = 0;
1423 else
1424 {
1425 bfd_byte buf[SYMESZ];
1426 struct internal_syment sym;
1427
1428 if (bfd_seek (abfd, obj_sym_filepos (abfd), SEEK_SET) != 0
1429 || bfd_read (buf, 1, SYMESZ, abfd) != SYMESZ)
1430 return false;
1431 coff_swap_sym_in (abfd, (PTR) buf, (PTR) &sym);
1432 if (sym.n_sclass == C_FILE)
1433 cputype = sym.n_type & 0xff;
1434 else
1435 cputype = 0;
1436 }
1437 }
1438
1439 /* FIXME: We don't handle all cases here. */
1440 switch (cputype)
1441 {
1442 default:
1443 case 0:
1444 #ifdef POWERMAC
1445 /* PowerPC Macs use the same magic numbers as RS/6000
1446 (because that's how they were bootstrapped originally),
1447 but they are always PowerPC architecture. */
1448 arch = bfd_arch_powerpc;
1449 machine = 0;
1450 #else
1451 arch = bfd_arch_rs6000;
1452 machine = 6000;
1453 #endif /* POWERMAC */
1454 break;
1455
1456 case 1:
1457 arch = bfd_arch_powerpc;
1458 machine = 601;
1459 break;
1460 case 2: /* 64 bit PowerPC */
1461 arch = bfd_arch_powerpc;
1462 machine = 620;
1463 break;
1464 case 3:
1465 arch = bfd_arch_powerpc;
1466 machine = 0;
1467 break;
1468 case 4:
1469 arch = bfd_arch_rs6000;
1470 machine = 6000;
1471 break;
1472 }
1473 }
1474 break;
1475 #endif
1476
1477 #ifdef WE32KMAGIC
1478 case WE32KMAGIC:
1479 arch = bfd_arch_we32k;
1480 machine = 0;
1481 break;
1482 #endif
1483
1484 #ifdef H8300MAGIC
1485 case H8300MAGIC:
1486 arch = bfd_arch_h8300;
1487 machine = bfd_mach_h8300;
1488 /* !! FIXME this probably isn't the right place for this */
1489 abfd->flags |= BFD_IS_RELAXABLE;
1490 break;
1491 #endif
1492
1493 #ifdef H8300HMAGIC
1494 case H8300HMAGIC:
1495 arch = bfd_arch_h8300;
1496 machine = bfd_mach_h8300h;
1497 /* !! FIXME this probably isn't the right place for this */
1498 abfd->flags |= BFD_IS_RELAXABLE;
1499 break;
1500 #endif
1501
1502 #ifdef H8300SMAGIC
1503 case H8300SMAGIC:
1504 arch = bfd_arch_h8300;
1505 machine = bfd_mach_h8300s;
1506 /* !! FIXME this probably isn't the right place for this */
1507 abfd->flags |= BFD_IS_RELAXABLE;
1508 break;
1509 #endif
1510
1511 #ifdef SH_ARCH_MAGIC_BIG
1512 case SH_ARCH_MAGIC_BIG:
1513 case SH_ARCH_MAGIC_LITTLE:
1514 arch = bfd_arch_sh;
1515 machine = 0;
1516 break;
1517 #endif
1518
1519 #ifdef H8500MAGIC
1520 case H8500MAGIC:
1521 arch = bfd_arch_h8500;
1522 machine = 0;
1523 break;
1524 #endif
1525
1526 #ifdef SPARCMAGIC
1527 case SPARCMAGIC:
1528 #ifdef LYNXCOFFMAGIC
1529 case LYNXCOFFMAGIC:
1530 #endif
1531 arch = bfd_arch_sparc;
1532 machine = 0;
1533 break;
1534 #endif
1535
1536 default: /* Unreadable input file type */
1537 arch = bfd_arch_obscure;
1538 break;
1539 }
1540
1541 bfd_default_set_arch_mach (abfd, arch, machine);
1542 return true;
1543 }
1544
1545 #ifdef SYMNAME_IN_DEBUG
1546
1547 static boolean
1548 symname_in_debug_hook (abfd, sym)
1549 bfd * abfd;
1550 struct internal_syment *sym;
1551 {
1552 return SYMNAME_IN_DEBUG (sym) ? true : false;
1553 }
1554
1555 #else
1556
1557 #define symname_in_debug_hook \
1558 (boolean (*) PARAMS ((bfd *, struct internal_syment *))) bfd_false
1559
1560 #endif
1561
1562 #ifdef RS6000COFF_C
1563
1564 /* Handle the csect auxent of a C_EXT or C_HIDEXT symbol. */
1565
1566 static boolean coff_pointerize_aux_hook
1567 PARAMS ((bfd *, combined_entry_type *, combined_entry_type *,
1568 unsigned int, combined_entry_type *));
1569
1570 /*ARGSUSED*/
1571 static boolean
1572 coff_pointerize_aux_hook (abfd, table_base, symbol, indaux, aux)
1573 bfd *abfd;
1574 combined_entry_type *table_base;
1575 combined_entry_type *symbol;
1576 unsigned int indaux;
1577 combined_entry_type *aux;
1578 {
1579 int class = symbol->u.syment.n_sclass;
1580
1581 if ((class == C_EXT || class == C_HIDEXT)
1582 && indaux + 1 == symbol->u.syment.n_numaux)
1583 {
1584 if (SMTYP_SMTYP (aux->u.auxent.x_csect.x_smtyp) == XTY_LD)
1585 {
1586 aux->u.auxent.x_csect.x_scnlen.p =
1587 table_base + aux->u.auxent.x_csect.x_scnlen.l;
1588 aux->fix_scnlen = 1;
1589 }
1590
1591 /* Return true to indicate that the caller should not do any
1592 further work on this auxent. */
1593 return true;
1594 }
1595
1596 /* Return false to indicate that this auxent should be handled by
1597 the caller. */
1598 return false;
1599 }
1600
1601 #else
1602 #ifdef I960
1603
1604 /* We don't want to pointerize bal entries. */
1605
1606 static boolean coff_pointerize_aux_hook
1607 PARAMS ((bfd *, combined_entry_type *, combined_entry_type *,
1608 unsigned int, combined_entry_type *));
1609
1610 /*ARGSUSED*/
1611 static boolean
1612 coff_pointerize_aux_hook (abfd, table_base, symbol, indaux, aux)
1613 bfd *abfd;
1614 combined_entry_type *table_base;
1615 combined_entry_type *symbol;
1616 unsigned int indaux;
1617 combined_entry_type *aux;
1618 {
1619 /* Return true if we don't want to pointerize this aux entry, which
1620 is the case for the lastfirst aux entry for a C_LEAFPROC symbol. */
1621 return (indaux == 1
1622 && (symbol->u.syment.n_sclass == C_LEAFPROC
1623 || symbol->u.syment.n_sclass == C_LEAFSTAT
1624 || symbol->u.syment.n_sclass == C_LEAFEXT));
1625 }
1626
1627 #else /* ! I960 */
1628
1629 #define coff_pointerize_aux_hook 0
1630
1631 #endif /* ! I960 */
1632 #endif /* ! RS6000COFF_C */
1633
1634 /* Print an aux entry. This returns true if it has printed it. */
1635
1636 static boolean coff_print_aux
1637 PARAMS ((bfd *, FILE *, combined_entry_type *, combined_entry_type *,
1638 combined_entry_type *, unsigned int));
1639
1640 static boolean
1641 coff_print_aux (abfd, file, table_base, symbol, aux, indaux)
1642 bfd *abfd;
1643 FILE *file;
1644 combined_entry_type *table_base;
1645 combined_entry_type *symbol;
1646 combined_entry_type *aux;
1647 unsigned int indaux;
1648 {
1649 #ifdef RS6000COFF_C
1650 if ((symbol->u.syment.n_sclass == C_EXT
1651 || symbol->u.syment.n_sclass == C_HIDEXT)
1652 && indaux + 1 == symbol->u.syment.n_numaux)
1653 {
1654 /* This is a csect entry. */
1655 fprintf (file, "AUX ");
1656 if (SMTYP_SMTYP (aux->u.auxent.x_csect.x_smtyp) != XTY_LD)
1657 {
1658 BFD_ASSERT (! aux->fix_scnlen);
1659 fprintf (file, "val %5ld", aux->u.auxent.x_csect.x_scnlen.l);
1660 }
1661 else
1662 {
1663 fprintf (file, "indx ");
1664 if (! aux->fix_scnlen)
1665 fprintf (file, "%4ld", aux->u.auxent.x_csect.x_scnlen.l);
1666 else
1667 fprintf (file, "%4ld",
1668 (long) (aux->u.auxent.x_csect.x_scnlen.p - table_base));
1669 }
1670 fprintf (file,
1671 " prmhsh %ld snhsh %u typ %d algn %d clss %u stb %ld snstb %u",
1672 aux->u.auxent.x_csect.x_parmhash,
1673 (unsigned int) aux->u.auxent.x_csect.x_snhash,
1674 SMTYP_SMTYP (aux->u.auxent.x_csect.x_smtyp),
1675 SMTYP_ALIGN (aux->u.auxent.x_csect.x_smtyp),
1676 (unsigned int) aux->u.auxent.x_csect.x_smclas,
1677 aux->u.auxent.x_csect.x_stab,
1678 (unsigned int) aux->u.auxent.x_csect.x_snstab);
1679 return true;
1680 }
1681 #endif
1682
1683 /* Return false to indicate that no special action was taken. */
1684 return false;
1685 }
1686
1687 /*
1688 SUBSUBSECTION
1689 Writing relocations
1690
1691 To write relocations, the back end steps though the
1692 canonical relocation table and create an
1693 @code{internal_reloc}. The symbol index to use is removed from
1694 the @code{offset} field in the symbol table supplied. The
1695 address comes directly from the sum of the section base
1696 address and the relocation offset; the type is dug directly
1697 from the howto field. Then the @code{internal_reloc} is
1698 swapped into the shape of an @code{external_reloc} and written
1699 out to disk.
1700
1701 */
1702
1703 #ifdef TARG_AUX
1704
1705 static int compare_arelent_ptr PARAMS ((const PTR, const PTR));
1706
1707 /* AUX's ld wants relocations to be sorted */
1708 static int
1709 compare_arelent_ptr (x, y)
1710 const PTR x;
1711 const PTR y;
1712 {
1713 const arelent **a = (const arelent **) x;
1714 const arelent **b = (const arelent **) y;
1715 bfd_size_type aadr = (*a)->address;
1716 bfd_size_type badr = (*b)->address;
1717
1718 return (aadr < badr ? -1 : badr < aadr ? 1 : 0);
1719 }
1720
1721 #endif /* TARG_AUX */
1722
1723 static boolean
1724 coff_write_relocs (abfd, first_undef)
1725 bfd * abfd;
1726 int first_undef;
1727 {
1728 asection *s;
1729
1730 for (s = abfd->sections; s != (asection *) NULL; s = s->next)
1731 {
1732 unsigned int i;
1733 struct external_reloc dst;
1734 arelent **p;
1735
1736 #ifndef TARG_AUX
1737 p = s->orelocation;
1738 #else
1739 /* sort relocations before we write them out */
1740 p = (arelent **) bfd_malloc (s->reloc_count * sizeof (arelent *));
1741 if (p == NULL && s->reloc_count > 0)
1742 return false;
1743 memcpy (p, s->orelocation, s->reloc_count * sizeof (arelent *));
1744 qsort (p, s->reloc_count, sizeof (arelent *), compare_arelent_ptr);
1745 #endif
1746
1747 if (bfd_seek (abfd, s->rel_filepos, SEEK_SET) != 0)
1748 return false;
1749 for (i = 0; i < s->reloc_count; i++)
1750 {
1751 struct internal_reloc n;
1752 arelent *q = p[i];
1753 memset ((PTR) & n, 0, sizeof (n));
1754
1755 /* Now we've renumbered the symbols we know where the
1756 undefined symbols live in the table. Check the reloc
1757 entries for symbols who's output bfd isn't the right one.
1758 This is because the symbol was undefined (which means
1759 that all the pointers are never made to point to the same
1760 place). This is a bad thing,'cause the symbols attached
1761 to the output bfd are indexed, so that the relocation
1762 entries know which symbol index they point to. So we
1763 have to look up the output symbol here. */
1764
1765 if (q->sym_ptr_ptr[0]->the_bfd != abfd)
1766 {
1767 int i;
1768 const char *sname = q->sym_ptr_ptr[0]->name;
1769 asymbol **outsyms = abfd->outsymbols;
1770 for (i = first_undef; outsyms[i]; i++)
1771 {
1772 const char *intable = outsyms[i]->name;
1773 if (strcmp (intable, sname) == 0) {
1774 /* got a hit, so repoint the reloc */
1775 q->sym_ptr_ptr = outsyms + i;
1776 break;
1777 }
1778 }
1779 }
1780
1781 n.r_vaddr = q->address + s->vma;
1782
1783 #ifdef R_IHCONST
1784 /* The 29k const/consth reloc pair is a real kludge. The consth
1785 part doesn't have a symbol; it has an offset. So rebuilt
1786 that here. */
1787 if (q->howto->type == R_IHCONST)
1788 n.r_symndx = q->addend;
1789 else
1790 #endif
1791 if (q->sym_ptr_ptr)
1792 {
1793 if (q->sym_ptr_ptr == bfd_abs_section_ptr->symbol_ptr_ptr)
1794 /* This is a relocation relative to the absolute symbol. */
1795 n.r_symndx = -1;
1796 else
1797 {
1798 n.r_symndx = get_index ((*(q->sym_ptr_ptr)));
1799 /* Take notice if the symbol reloc points to a symbol
1800 we don't have in our symbol table. What should we
1801 do for this?? */
1802 if (n.r_symndx > obj_conv_table_size (abfd))
1803 abort ();
1804 }
1805 }
1806
1807 #ifdef SWAP_OUT_RELOC_OFFSET
1808 n.r_offset = q->addend;
1809 #endif
1810
1811 #ifdef SELECT_RELOC
1812 /* Work out reloc type from what is required */
1813 SELECT_RELOC (n, q->howto);
1814 #else
1815 n.r_type = q->howto->type;
1816 #endif
1817 coff_swap_reloc_out (abfd, &n, &dst);
1818 if (bfd_write ((PTR) & dst, 1, RELSZ, abfd) != RELSZ)
1819 return false;
1820 }
1821
1822 #ifdef TARG_AUX
1823 if (p != NULL)
1824 free (p);
1825 #endif
1826 }
1827
1828 return true;
1829 }
1830
1831 /* Set flags and magic number of a coff file from architecture and machine
1832 type. Result is true if we can represent the arch&type, false if not. */
1833
1834 static boolean
1835 coff_set_flags (abfd, magicp, flagsp)
1836 bfd * abfd;
1837 unsigned *magicp;
1838 unsigned short *flagsp;
1839 {
1840 switch (bfd_get_arch (abfd))
1841 {
1842 #ifdef Z8KMAGIC
1843 case bfd_arch_z8k:
1844 *magicp = Z8KMAGIC;
1845 switch (bfd_get_mach (abfd))
1846 {
1847 case bfd_mach_z8001:
1848 *flagsp = F_Z8001;
1849 break;
1850 case bfd_mach_z8002:
1851 *flagsp = F_Z8002;
1852 break;
1853 default:
1854 return false;
1855 }
1856 return true;
1857 #endif
1858 #ifdef I960ROMAGIC
1859
1860 case bfd_arch_i960:
1861
1862 {
1863 unsigned flags;
1864 *magicp = I960ROMAGIC;
1865 /*
1866 ((bfd_get_file_flags(abfd) & WP_TEXT) ? I960ROMAGIC :
1867 I960RWMAGIC); FIXME???
1868 */
1869 switch (bfd_get_mach (abfd))
1870 {
1871 case bfd_mach_i960_core:
1872 flags = F_I960CORE;
1873 break;
1874 case bfd_mach_i960_kb_sb:
1875 flags = F_I960KB;
1876 break;
1877 case bfd_mach_i960_mc:
1878 flags = F_I960MC;
1879 break;
1880 case bfd_mach_i960_xa:
1881 flags = F_I960XA;
1882 break;
1883 case bfd_mach_i960_ca:
1884 flags = F_I960CA;
1885 break;
1886 case bfd_mach_i960_ka_sa:
1887 flags = F_I960KA;
1888 break;
1889 case bfd_mach_i960_jx:
1890 flags = F_I960JX;
1891 break;
1892 case bfd_mach_i960_hx:
1893 flags = F_I960HX;
1894 break;
1895 default:
1896 return false;
1897 }
1898 *flagsp = flags;
1899 return true;
1900 }
1901 break;
1902 #endif
1903 #ifdef ARMMAGIC
1904 case bfd_arch_arm:
1905 *magicp = ARMMAGIC;
1906 return true;
1907 #endif
1908 #ifdef PPCMAGIC
1909 case bfd_arch_powerpc:
1910 *magicp = PPCMAGIC;
1911 return true;
1912 break;
1913 #endif
1914 #ifdef I386MAGIC
1915 case bfd_arch_i386:
1916 *magicp = I386MAGIC;
1917 #ifdef LYNXOS
1918 /* Just overwrite the usual value if we're doing Lynx. */
1919 *magicp = LYNXCOFFMAGIC;
1920 #endif
1921 return true;
1922 break;
1923 #endif
1924 #ifdef I860MAGIC
1925 case bfd_arch_i860:
1926 *magicp = I860MAGIC;
1927 return true;
1928 break;
1929 #endif
1930 #ifdef MC68MAGIC
1931 case bfd_arch_m68k:
1932 #ifdef APOLLOM68KMAGIC
1933 *magicp = APOLLO_COFF_VERSION_NUMBER;
1934 #else
1935 *magicp = MC68MAGIC;
1936 #endif
1937 #ifdef LYNXOS
1938 /* Just overwrite the usual value if we're doing Lynx. */
1939 *magicp = LYNXCOFFMAGIC;
1940 #endif
1941 return true;
1942 break;
1943 #endif
1944
1945 #ifdef MC88MAGIC
1946 case bfd_arch_m88k:
1947 *magicp = MC88OMAGIC;
1948 return true;
1949 break;
1950 #endif
1951 #ifdef H8300MAGIC
1952 case bfd_arch_h8300:
1953 switch (bfd_get_mach (abfd))
1954 {
1955 case bfd_mach_h8300:
1956 *magicp = H8300MAGIC;
1957 return true;
1958 case bfd_mach_h8300h:
1959 *magicp = H8300HMAGIC;
1960 return true;
1961 case bfd_mach_h8300s:
1962 *magicp = H8300SMAGIC;
1963 return true;
1964 }
1965 break;
1966 #endif
1967
1968 #ifdef SH_ARCH_MAGIC_BIG
1969 case bfd_arch_sh:
1970 if (bfd_big_endian (abfd))
1971 *magicp = SH_ARCH_MAGIC_BIG;
1972 else
1973 *magicp = SH_ARCH_MAGIC_LITTLE;
1974 return true;
1975 break;
1976 #endif
1977
1978 #ifdef SPARCMAGIC
1979 case bfd_arch_sparc:
1980 *magicp = SPARCMAGIC;
1981 #ifdef LYNXOS
1982 /* Just overwrite the usual value if we're doing Lynx. */
1983 *magicp = LYNXCOFFMAGIC;
1984 #endif
1985 return true;
1986 break;
1987 #endif
1988
1989 #ifdef H8500MAGIC
1990 case bfd_arch_h8500:
1991 *magicp = H8500MAGIC;
1992 return true;
1993 break;
1994 #endif
1995 #ifdef A29K_MAGIC_BIG
1996 case bfd_arch_a29k:
1997 if (bfd_big_endian (abfd))
1998 *magicp = A29K_MAGIC_BIG;
1999 else
2000 *magicp = A29K_MAGIC_LITTLE;
2001 return true;
2002 break;
2003 #endif
2004
2005 #ifdef WE32KMAGIC
2006 case bfd_arch_we32k:
2007 *magicp = WE32KMAGIC;
2008 return true;
2009 break;
2010 #endif
2011
2012 #ifdef U802TOCMAGIC
2013 case bfd_arch_rs6000:
2014 #ifndef PPCMAGIC
2015 case bfd_arch_powerpc:
2016 #endif
2017 *magicp = U802TOCMAGIC;
2018 return true;
2019 break;
2020 #endif
2021
2022 default: /* Unknown architecture */
2023 /* return false; -- fall through to "return false" below, to avoid
2024 "statement never reached" errors on the one below. */
2025 break;
2026 }
2027
2028 return false;
2029 }
2030
2031
2032 static boolean
2033 coff_set_arch_mach (abfd, arch, machine)
2034 bfd * abfd;
2035 enum bfd_architecture arch;
2036 unsigned long machine;
2037 {
2038 unsigned dummy1;
2039 unsigned short dummy2;
2040
2041 if (! bfd_default_set_arch_mach (abfd, arch, machine))
2042 return false;
2043
2044 if (arch != bfd_arch_unknown &&
2045 coff_set_flags (abfd, &dummy1, &dummy2) != true)
2046 return false; /* We can't represent this type */
2047
2048 return true; /* We're easy ... */
2049 }
2050
2051
2052 /* Calculate the file position for each section. */
2053
2054 static void
2055 coff_compute_section_file_positions (abfd)
2056 bfd * abfd;
2057 {
2058 asection *current;
2059 asection *previous = (asection *) NULL;
2060 file_ptr sofar = FILHSZ;
2061
2062 #ifndef I960
2063 file_ptr old_sofar;
2064 #endif
2065 unsigned int count;
2066
2067 #ifdef RS6000COFF_C
2068 /* On XCOFF, if we have symbols, set up the .debug section. */
2069 if (bfd_get_symcount (abfd) > 0)
2070 {
2071 bfd_size_type sz;
2072 bfd_size_type i, symcount;
2073 asymbol **symp;
2074
2075 sz = 0;
2076 symcount = bfd_get_symcount (abfd);
2077 for (symp = abfd->outsymbols, i = 0; i < symcount; symp++, i++)
2078 {
2079 coff_symbol_type *cf;
2080
2081 cf = coff_symbol_from (abfd, *symp);
2082 if (cf != NULL
2083 && cf->native != NULL
2084 && SYMNAME_IN_DEBUG (&cf->native->u.syment))
2085 {
2086 size_t len;
2087
2088 len = strlen (bfd_asymbol_name (*symp));
2089 if (len > SYMNMLEN)
2090 sz += len + 3;
2091 }
2092 }
2093 if (sz > 0)
2094 {
2095 asection *dsec;
2096
2097 dsec = bfd_make_section_old_way (abfd, ".debug");
2098 if (dsec == NULL)
2099 abort ();
2100 dsec->_raw_size = sz;
2101 dsec->flags |= SEC_HAS_CONTENTS;
2102 }
2103 }
2104 #endif
2105
2106 #ifdef COFF_IMAGE_WITH_PE
2107 int page_size;
2108 if (coff_data (abfd)->link_info)
2109 {
2110 page_size = pe_data (abfd)->pe_opthdr.FileAlignment;
2111 }
2112 else
2113 page_size = PE_DEF_FILE_ALIGNMENT;
2114 #else
2115 #ifdef COFF_PAGE_SIZE
2116 int page_size = COFF_PAGE_SIZE;
2117 #endif
2118 #endif
2119
2120 if (bfd_get_start_address (abfd))
2121 {
2122 /* A start address may have been added to the original file. In this
2123 case it will need an optional header to record it. */
2124 abfd->flags |= EXEC_P;
2125 }
2126
2127 if (abfd->flags & EXEC_P)
2128 sofar += AOUTSZ;
2129 #ifdef RS6000COFF_C
2130 else if (xcoff_data (abfd)->full_aouthdr)
2131 sofar += AOUTSZ;
2132 else
2133 sofar += SMALL_AOUTSZ;
2134 #endif
2135
2136 sofar += abfd->section_count * SCNHSZ;
2137
2138 #ifdef RS6000COFF_C
2139 /* XCOFF handles overflows in the reloc and line number count fields
2140 by allocating a new section header to hold the correct counts. */
2141 for (current = abfd->sections; current != NULL; current = current->next)
2142 if (current->reloc_count >= 0xffff || current->lineno_count >= 0xffff)
2143 sofar += SCNHSZ;
2144 #endif
2145
2146 for (current = abfd->sections, count = 1;
2147 current != (asection *) NULL;
2148 current = current->next, ++count)
2149 {
2150 current->target_index = count;
2151
2152 /* Only deal with sections which have contents */
2153 if (!(current->flags & SEC_HAS_CONTENTS))
2154 continue;
2155
2156 /* Align the sections in the file to the same boundary on
2157 which they are aligned in virtual memory. I960 doesn't
2158 do this (FIXME) so we can stay in sync with Intel. 960
2159 doesn't yet page from files... */
2160 #ifndef I960
2161 if ((abfd->flags & EXEC_P) != 0)
2162 {
2163 /* make sure this section is aligned on the right boundary - by
2164 padding the previous section up if necessary */
2165
2166 old_sofar = sofar;
2167 sofar = BFD_ALIGN (sofar, 1 << current->alignment_power);
2168 if (previous != (asection *) NULL)
2169 {
2170 previous->_raw_size += sofar - old_sofar;
2171 }
2172 }
2173
2174 #endif
2175
2176 /* In demand paged files the low order bits of the file offset
2177 must match the low order bits of the virtual address. */
2178 #ifdef COFF_PAGE_SIZE
2179 if ((abfd->flags & D_PAGED) != 0
2180 && (current->flags & SEC_ALLOC) != 0)
2181 sofar += (current->vma - sofar) % page_size;
2182 #endif
2183 current->filepos = sofar;
2184
2185 #ifdef COFF_IMAGE_WITH_PE
2186 /* With PE we have to pad each section to be a multiple of its
2187 page size too, and remember both sizes. */
2188
2189 if (coff_section_data (abfd, current) == NULL)
2190 {
2191 current->used_by_bfd =
2192 (PTR) bfd_zalloc (abfd, sizeof (struct coff_section_tdata));
2193 if (current->used_by_bfd == NULL)
2194 {
2195 /* FIXME: Return error. */
2196 abort ();
2197 }
2198 }
2199 if (pei_section_data (abfd, current) == NULL)
2200 {
2201 coff_section_data (abfd, current)->tdata =
2202 (PTR) bfd_zalloc (abfd, sizeof (struct pei_section_tdata));
2203 if (coff_section_data (abfd, current)->tdata == NULL)
2204 {
2205 /* FIXME: Return error. */
2206 abort ();
2207 }
2208 }
2209 if (pei_section_data (abfd, current)->virt_size == 0)
2210 pei_section_data (abfd, current)->virt_size = current->_raw_size;
2211
2212 current->_raw_size = (current->_raw_size + page_size -1) & -page_size;
2213 #endif
2214
2215 sofar += current->_raw_size;
2216
2217 #ifndef I960
2218 /* make sure that this section is of the right size too */
2219 if ((abfd->flags & EXEC_P) == 0)
2220 current->_raw_size = BFD_ALIGN (current->_raw_size,
2221 1 << current->alignment_power);
2222 else
2223 {
2224 old_sofar = sofar;
2225 sofar = BFD_ALIGN (sofar, 1 << current->alignment_power);
2226 current->_raw_size += sofar - old_sofar;
2227 }
2228 #endif
2229
2230 #ifdef _LIB
2231 /* Force .lib sections to start at zero. The vma is then
2232 incremented in coff_set_section_contents. This is right for
2233 SVR3.2. */
2234 if (strcmp (current->name, _LIB) == 0)
2235 bfd_set_section_vma (abfd, current, 0);
2236 #endif
2237
2238 previous = current;
2239 }
2240
2241 obj_relocbase (abfd) = sofar;
2242 abfd->output_has_begun = true;
2243
2244 }
2245
2246 #if 0
2247
2248 /* This can never work, because it is called too late--after the
2249 section positions have been set. I can't figure out what it is
2250 for, so I am going to disable it--Ian Taylor 20 March 1996. */
2251
2252 /* If .file, .text, .data, .bss symbols are missing, add them. */
2253 /* @@ Should we only be adding missing symbols, or overriding the aux
2254 values for existing section symbols? */
2255 static boolean
2256 coff_add_missing_symbols (abfd)
2257 bfd *abfd;
2258 {
2259 unsigned int nsyms = bfd_get_symcount (abfd);
2260 asymbol **sympp = abfd->outsymbols;
2261 asymbol **sympp2;
2262 unsigned int i;
2263 int need_text = 1, need_data = 1, need_bss = 1, need_file = 1;
2264
2265 for (i = 0; i < nsyms; i++)
2266 {
2267 coff_symbol_type *csym = coff_symbol_from (abfd, sympp[i]);
2268 CONST char *name;
2269 if (csym)
2270 {
2271 /* only do this if there is a coff representation of the input
2272 symbol */
2273 if (csym->native && csym->native->u.syment.n_sclass == C_FILE)
2274 {
2275 need_file = 0;
2276 continue;
2277 }
2278 name = csym->symbol.name;
2279 if (!name)
2280 continue;
2281 if (!strcmp (name, _TEXT))
2282 need_text = 0;
2283 #ifdef APOLLO_M68
2284 else if (!strcmp (name, ".wtext"))
2285 need_text = 0;
2286 #endif
2287 else if (!strcmp (name, _DATA))
2288 need_data = 0;
2289 else if (!strcmp (name, _BSS))
2290 need_bss = 0;
2291 }
2292 }
2293 /* Now i == bfd_get_symcount (abfd). */
2294 /* @@ For now, don't deal with .file symbol. */
2295 need_file = 0;
2296
2297 if (!need_text && !need_data && !need_bss && !need_file)
2298 return true;
2299 nsyms += need_text + need_data + need_bss + need_file;
2300 sympp2 = (asymbol **) bfd_alloc_by_size_t (abfd, nsyms * sizeof (asymbol *));
2301 if (!sympp2)
2302 return false;
2303 memcpy (sympp2, sympp, i * sizeof (asymbol *));
2304 if (need_file)
2305 {
2306 /* @@ Generate fake .file symbol, in sympp2[i], and increment i. */
2307 abort ();
2308 }
2309 if (need_text)
2310 sympp2[i++] = coff_section_symbol (abfd, _TEXT);
2311 if (need_data)
2312 sympp2[i++] = coff_section_symbol (abfd, _DATA);
2313 if (need_bss)
2314 sympp2[i++] = coff_section_symbol (abfd, _BSS);
2315 BFD_ASSERT (i == nsyms);
2316 bfd_set_symtab (abfd, sympp2, nsyms);
2317 return true;
2318 }
2319
2320 #endif /* 0 */
2321
2322 /* SUPPRESS 558 */
2323 /* SUPPRESS 529 */
2324 static boolean
2325 coff_write_object_contents (abfd)
2326 bfd * abfd;
2327 {
2328 asection *current;
2329 boolean hasrelocs = false;
2330 boolean haslinno = false;
2331 file_ptr scn_base;
2332 file_ptr reloc_base;
2333 file_ptr lineno_base;
2334 file_ptr sym_base;
2335 unsigned long reloc_size = 0;
2336 unsigned long lnno_size = 0;
2337 boolean long_section_names;
2338 asection *text_sec = NULL;
2339 asection *data_sec = NULL;
2340 asection *bss_sec = NULL;
2341 struct internal_filehdr internal_f;
2342 struct internal_aouthdr internal_a;
2343 #ifdef COFF_LONG_SECTION_NAMES
2344 size_t string_size = STRING_SIZE_SIZE;
2345 #endif
2346
2347 bfd_set_error (bfd_error_system_call);
2348
2349 /* Make a pass through the symbol table to count line number entries and
2350 put them into the correct asections */
2351
2352 lnno_size = coff_count_linenumbers (abfd) * LINESZ;
2353
2354 if (abfd->output_has_begun == false)
2355 coff_compute_section_file_positions (abfd);
2356
2357 reloc_base = obj_relocbase (abfd);
2358
2359 /* Work out the size of the reloc and linno areas */
2360
2361 for (current = abfd->sections; current != NULL; current =
2362 current->next)
2363 reloc_size += current->reloc_count * RELSZ;
2364
2365 lineno_base = reloc_base + reloc_size;
2366 sym_base = lineno_base + lnno_size;
2367
2368 /* Indicate in each section->line_filepos its actual file address */
2369 for (current = abfd->sections; current != NULL; current =
2370 current->next)
2371 {
2372 if (current->lineno_count)
2373 {
2374 current->line_filepos = lineno_base;
2375 current->moving_line_filepos = lineno_base;
2376 lineno_base += current->lineno_count * LINESZ;
2377 }
2378 else
2379 {
2380 current->line_filepos = 0;
2381 }
2382 if (current->reloc_count)
2383 {
2384 current->rel_filepos = reloc_base;
2385 reloc_base += current->reloc_count * RELSZ;
2386 }
2387 else
2388 {
2389 current->rel_filepos = 0;
2390 }
2391 }
2392
2393 /* Write section headers to the file. */
2394 internal_f.f_nscns = 0;
2395
2396 if ((abfd->flags & EXEC_P) != 0)
2397 scn_base = FILHSZ + AOUTSZ;
2398 else
2399 {
2400 scn_base = FILHSZ;
2401 #ifdef RS6000COFF_C
2402 if (xcoff_data (abfd)->full_aouthdr)
2403 scn_base += AOUTSZ;
2404 else
2405 scn_base += SMALL_AOUTSZ;
2406 #endif
2407 }
2408
2409 if (bfd_seek (abfd, scn_base, SEEK_SET) != 0)
2410 return false;
2411
2412 long_section_names = false;
2413 for (current = abfd->sections;
2414 current != NULL;
2415 current = current->next)
2416 {
2417 struct internal_scnhdr section;
2418
2419 #ifdef COFF_WITH_PE
2420 /* If we've got a .reloc section, remember. */
2421
2422 #ifdef COFF_IMAGE_WITH_PE
2423 if (strcmp (current->name, ".reloc") == 0)
2424 {
2425 pe_data (abfd)->has_reloc_section = 1;
2426 }
2427 #endif
2428
2429 #endif
2430 internal_f.f_nscns++;
2431
2432 strncpy (section.s_name, current->name, SCNNMLEN);
2433
2434 #ifdef COFF_LONG_SECTION_NAMES
2435 /* Handle long section names as in PE. This must be compatible
2436 with the code in coff_write_symbols. */
2437 {
2438 size_t len;
2439
2440 len = strlen (current->name);
2441 if (len > SCNNMLEN)
2442 {
2443 memset (section.s_name, 0, SCNNMLEN);
2444 sprintf (section.s_name, "/%lu", (unsigned long) string_size);
2445 string_size += len + 1;
2446 long_section_names = true;
2447 }
2448 }
2449 #endif
2450
2451 #ifdef _LIB
2452 /* Always set s_vaddr of .lib to 0. This is right for SVR3.2
2453 Ian Taylor <ian@cygnus.com>. */
2454 if (strcmp (current->name, _LIB) == 0)
2455 section.s_vaddr = 0;
2456 else
2457 #endif
2458 section.s_vaddr = current->vma;
2459 section.s_paddr = current->lma;
2460 section.s_size = current->_raw_size;
2461
2462 #ifdef COFF_WITH_PE
2463 section.s_paddr = 0;
2464 #endif
2465 #ifdef COFF_IMAGE_WITH_PE
2466 /* Reminder: s_paddr holds the virtual size of the section. */
2467 if (coff_section_data (abfd, current) != NULL
2468 && pei_section_data (abfd, current) != NULL)
2469 section.s_paddr = pei_section_data (abfd, current)->virt_size;
2470 else
2471 section.s_paddr = 0;
2472 #endif
2473
2474 /*
2475 If this section has no size or is unloadable then the scnptr
2476 will be 0 too
2477 */
2478 if (current->_raw_size == 0 ||
2479 (current->flags & (SEC_LOAD | SEC_HAS_CONTENTS)) == 0)
2480 {
2481 section.s_scnptr = 0;
2482 }
2483 else
2484 {
2485 section.s_scnptr = current->filepos;
2486 }
2487 section.s_relptr = current->rel_filepos;
2488 section.s_lnnoptr = current->line_filepos;
2489 section.s_nreloc = current->reloc_count;
2490 section.s_nlnno = current->lineno_count;
2491 if (current->reloc_count != 0)
2492 hasrelocs = true;
2493 if (current->lineno_count != 0)
2494 haslinno = true;
2495
2496 #ifdef RS6000COFF_C
2497 /* Indicate the use of an XCOFF overflow section header. */
2498 if (current->reloc_count >= 0xffff || current->lineno_count >= 0xffff)
2499 {
2500 section.s_nreloc = 0xffff;
2501 section.s_nlnno = 0xffff;
2502 }
2503 #endif
2504
2505 section.s_flags = sec_to_styp_flags (current->name, current->flags);
2506
2507 if (!strcmp (current->name, _TEXT))
2508 {
2509 text_sec = current;
2510 }
2511 else if (!strcmp (current->name, _DATA))
2512 {
2513 data_sec = current;
2514 }
2515 else if (!strcmp (current->name, _BSS))
2516 {
2517 bss_sec = current;
2518 }
2519
2520 #ifdef I960
2521 section.s_align = (current->alignment_power
2522 ? 1 << current->alignment_power
2523 : 0);
2524
2525 #endif
2526
2527 #ifdef COFF_IMAGE_WITH_PE
2528 /* suppress output of the sections if they are null. ld includes
2529 the bss and data sections even if there is no size assigned
2530 to them. NT loader doesn't like it if these section headers are
2531 included if the sections themselves are not needed */
2532 if (section.s_size == 0)
2533 internal_f.f_nscns--;
2534 else
2535 #endif
2536 {
2537 SCNHDR buff;
2538 if (coff_swap_scnhdr_out (abfd, &section, &buff) == 0
2539 || bfd_write ((PTR) (&buff), 1, SCNHSZ, abfd) != SCNHSZ)
2540 return false;
2541 }
2542
2543 #ifdef COFF_WITH_PE
2544 /* PE stores COMDAT section information in the symbol table. If
2545 this section is supposed to have some COMDAT info, track down
2546 the symbol in the symbol table and modify it. */
2547 if ((current->flags & SEC_LINK_ONCE) != 0)
2548 {
2549 unsigned int i, count;
2550 asymbol **psym;
2551 coff_symbol_type *csym;
2552
2553 count = bfd_get_symcount (abfd);
2554 for (i = 0, psym = abfd->outsymbols; i < count; i++, psym++)
2555 {
2556 /* Here *PSYM is the section symbol for CURRENT. */
2557
2558 if (strcmp ((*psym)->name, current->name) == 0)
2559 {
2560 csym = coff_symbol_from (abfd, *psym);
2561 if (csym == NULL
2562 || csym->native == NULL
2563 || csym->native->u.syment.n_numaux < 1
2564 || csym->native->u.syment.n_sclass != C_STAT
2565 || csym->native->u.syment.n_type != T_NULL)
2566 continue;
2567 break;
2568 }
2569 }
2570
2571 /* Did we find it?
2572 Note that we might not if we're converting the file from
2573 some other object file format. */
2574 if (i < count)
2575 {
2576 combined_entry_type *aux;
2577
2578 /* We don't touch the x_checksum field. The
2579 x_associated field is not currently supported. */
2580
2581 aux = csym->native + 1;
2582 switch (current->flags & SEC_LINK_DUPLICATES)
2583 {
2584 case SEC_LINK_DUPLICATES_DISCARD:
2585 aux->u.auxent.x_scn.x_comdat = IMAGE_COMDAT_SELECT_ANY;
2586 break;
2587
2588 case SEC_LINK_DUPLICATES_ONE_ONLY:
2589 aux->u.auxent.x_scn.x_comdat =
2590 IMAGE_COMDAT_SELECT_NODUPLICATES;
2591 break;
2592
2593 case SEC_LINK_DUPLICATES_SAME_SIZE:
2594 aux->u.auxent.x_scn.x_comdat =
2595 IMAGE_COMDAT_SELECT_SAME_SIZE;
2596 break;
2597
2598 case SEC_LINK_DUPLICATES_SAME_CONTENTS:
2599 aux->u.auxent.x_scn.x_comdat =
2600 IMAGE_COMDAT_SELECT_EXACT_MATCH;
2601 break;
2602 }
2603 }
2604 }
2605 #endif /* COFF_WITH_PE */
2606 }
2607
2608 #ifdef RS6000COFF_C
2609 /* XCOFF handles overflows in the reloc and line number count fields
2610 by creating a new section header to hold the correct values. */
2611 for (current = abfd->sections; current != NULL; current = current->next)
2612 {
2613 if (current->reloc_count >= 0xffff || current->lineno_count >= 0xffff)
2614 {
2615 struct internal_scnhdr scnhdr;
2616 SCNHDR buff;
2617
2618 internal_f.f_nscns++;
2619 strncpy (&(scnhdr.s_name[0]), current->name, 8);
2620 scnhdr.s_paddr = current->reloc_count;
2621 scnhdr.s_vaddr = current->lineno_count;
2622 scnhdr.s_size = 0;
2623 scnhdr.s_scnptr = 0;
2624 scnhdr.s_relptr = current->rel_filepos;
2625 scnhdr.s_lnnoptr = current->line_filepos;
2626 scnhdr.s_nreloc = current->target_index;
2627 scnhdr.s_nlnno = current->target_index;
2628 scnhdr.s_flags = STYP_OVRFLO;
2629 if (coff_swap_scnhdr_out (abfd, &scnhdr, &buff) == 0
2630 || bfd_write ((PTR) &buff, 1, SCNHSZ, abfd) != SCNHSZ)
2631 return false;
2632 }
2633 }
2634 #endif
2635
2636 /* OK, now set up the filehdr... */
2637
2638 /* Don't include the internal abs section in the section count */
2639
2640 /*
2641 We will NOT put a fucking timestamp in the header here. Every time you
2642 put it back, I will come in and take it out again. I'm sorry. This
2643 field does not belong here. We fill it with a 0 so it compares the
2644 same but is not a reasonable time. -- gnu@cygnus.com
2645 */
2646 internal_f.f_timdat = 0;
2647
2648 internal_f.f_flags = 0;
2649
2650 if (abfd->flags & EXEC_P)
2651 internal_f.f_opthdr = AOUTSZ;
2652 else
2653 {
2654 internal_f.f_opthdr = 0;
2655 #ifdef RS6000COFF_C
2656 if (xcoff_data (abfd)->full_aouthdr)
2657 internal_f.f_opthdr = AOUTSZ;
2658 else
2659 internal_f.f_opthdr = SMALL_AOUTSZ;
2660 #endif
2661 }
2662
2663 if (!hasrelocs)
2664 internal_f.f_flags |= F_RELFLG;
2665 if (!haslinno)
2666 internal_f.f_flags |= F_LNNO;
2667 if (abfd->flags & EXEC_P)
2668 internal_f.f_flags |= F_EXEC;
2669
2670 /* FIXME: this is wrong for PPC_PE! */
2671 if (bfd_little_endian (abfd))
2672 internal_f.f_flags |= F_AR32WR;
2673 else
2674 internal_f.f_flags |= F_AR32W;
2675
2676 /*
2677 FIXME, should do something about the other byte orders and
2678 architectures.
2679 */
2680
2681 #ifdef RS6000COFF_C
2682 if ((abfd->flags & DYNAMIC) != 0)
2683 internal_f.f_flags |= F_SHROBJ;
2684 if (bfd_get_section_by_name (abfd, _LOADER) != NULL)
2685 internal_f.f_flags |= F_DYNLOAD;
2686 #endif
2687
2688 memset (&internal_a, 0, sizeof internal_a);
2689
2690 /* Set up architecture-dependent stuff */
2691
2692 {
2693 unsigned int magic = 0;
2694 unsigned short flags = 0;
2695 coff_set_flags (abfd, &magic, &flags);
2696 internal_f.f_magic = magic;
2697 internal_f.f_flags |= flags;
2698 /* ...and the "opt"hdr... */
2699
2700 #ifdef A29K
2701 #ifdef ULTRA3 /* NYU's machine */
2702 /* FIXME: This is a bogus check. I really want to see if there
2703 * is a .shbss or a .shdata section, if so then set the magic
2704 * number to indicate a shared data executable.
2705 */
2706 if (internal_f.f_nscns >= 7)
2707 internal_a.magic = SHMAGIC; /* Shared magic */
2708 else
2709 #endif /* ULTRA3 */
2710 internal_a.magic = NMAGIC; /* Assume separate i/d */
2711 #define __A_MAGIC_SET__
2712 #endif /* A29K */
2713 #ifdef I860
2714 /* FIXME: What are the a.out magic numbers for the i860? */
2715 internal_a.magic = 0;
2716 #define __A_MAGIC_SET__
2717 #endif /* I860 */
2718 #ifdef I960
2719 internal_a.magic = (magic == I960ROMAGIC ? NMAGIC : OMAGIC);
2720 #define __A_MAGIC_SET__
2721 #endif /* I960 */
2722 #if M88
2723 #define __A_MAGIC_SET__
2724 internal_a.magic = PAGEMAGICBCS;
2725 #endif /* M88 */
2726
2727 #if APOLLO_M68
2728 #define __A_MAGIC_SET__
2729 internal_a.magic = APOLLO_COFF_VERSION_NUMBER;
2730 #endif
2731
2732 #if defined(M68) || defined(WE32K) || defined(M68K)
2733 #define __A_MAGIC_SET__
2734 #if defined(LYNXOS)
2735 internal_a.magic = LYNXCOFFMAGIC;
2736 #else
2737 #if defined(TARG_AUX)
2738 internal_a.magic = (abfd->flags & D_PAGED ? PAGEMAGICPEXECPAGED :
2739 abfd->flags & WP_TEXT ? PAGEMAGICPEXECSWAPPED :
2740 PAGEMAGICEXECSWAPPED);
2741 #else
2742 #if defined (PAGEMAGICPEXECPAGED)
2743 internal_a.magic = PAGEMAGICPEXECPAGED;
2744 #endif
2745 #endif /* TARG_AUX */
2746 #endif /* LYNXOS */
2747 #endif /* M68 || WE32K || M68K */
2748
2749 #if defined(ARM)
2750 #define __A_MAGIC_SET__
2751 internal_a.magic = ZMAGIC;
2752 #endif
2753 #if defined(PPC_PE)
2754 #define __A_MAGIC_SET__
2755 internal_a.magic = IMAGE_NT_OPTIONAL_HDR_MAGIC;
2756 #endif
2757 #if defined(I386)
2758 #define __A_MAGIC_SET__
2759 #if defined(LYNXOS)
2760 internal_a.magic = LYNXCOFFMAGIC;
2761 #else /* LYNXOS */
2762 internal_a.magic = ZMAGIC;
2763 #endif /* LYNXOS */
2764 #endif /* I386 */
2765
2766 #if defined(SPARC)
2767 #define __A_MAGIC_SET__
2768 #if defined(LYNXOS)
2769 internal_a.magic = LYNXCOFFMAGIC;
2770 #endif /* LYNXOS */
2771 #endif /* SPARC */
2772
2773 #if RS6000COFF_C
2774 #define __A_MAGIC_SET__
2775 internal_a.magic = (abfd->flags & D_PAGED) ? RS6K_AOUTHDR_ZMAGIC :
2776 (abfd->flags & WP_TEXT) ? RS6K_AOUTHDR_NMAGIC :
2777 RS6K_AOUTHDR_OMAGIC;
2778 #endif
2779
2780 #ifndef __A_MAGIC_SET__
2781 #include "Your aouthdr magic number is not being set!"
2782 #else
2783 #undef __A_MAGIC_SET__
2784 #endif
2785 }
2786
2787 /* FIXME: Does anybody ever set this to another value? */
2788 internal_a.vstamp = 0;
2789
2790 /* Now should write relocs, strings, syms */
2791 obj_sym_filepos (abfd) = sym_base;
2792
2793 if (bfd_get_symcount (abfd) != 0)
2794 {
2795 int firstundef;
2796 #if 0
2797 if (!coff_add_missing_symbols (abfd))
2798 return false;
2799 #endif
2800 if (!coff_renumber_symbols (abfd, &firstundef))
2801 return false;
2802 coff_mangle_symbols (abfd);
2803 if (! coff_write_symbols (abfd))
2804 return false;
2805 if (! coff_write_linenumbers (abfd))
2806 return false;
2807 if (! coff_write_relocs (abfd, firstundef))
2808 return false;
2809 }
2810 #ifdef COFF_IMAGE_WITH_PE
2811 #ifdef PPC_PE
2812 else if ((abfd->flags & EXEC_P) != 0)
2813 {
2814 bfd_byte b;
2815
2816 /* PowerPC PE appears to require that all executable files be
2817 rounded up to the page size. */
2818 b = 0;
2819 if (bfd_seek (abfd,
2820 BFD_ALIGN (sym_base, COFF_PAGE_SIZE) - 1,
2821 SEEK_SET) != 0
2822 || bfd_write (&b, 1, 1, abfd) != 1)
2823 return false;
2824 }
2825 #endif
2826 #endif
2827
2828 /* If bfd_get_symcount (abfd) != 0, then we are not using the COFF
2829 backend linker, and obj_raw_syment_count is not valid until after
2830 coff_write_symbols is called. */
2831 if (obj_raw_syment_count (abfd) != 0)
2832 {
2833 internal_f.f_symptr = sym_base;
2834 #ifdef RS6000COFF_C
2835 /* AIX appears to require that F_RELFLG not be set if there are
2836 local symbols but no relocations. */
2837 internal_f.f_flags &=~ F_RELFLG;
2838 #endif
2839 }
2840 else
2841 {
2842 if (long_section_names)
2843 internal_f.f_symptr = sym_base;
2844 else
2845 internal_f.f_symptr = 0;
2846 internal_f.f_flags |= F_LSYMS;
2847 }
2848
2849 if (text_sec)
2850 {
2851 internal_a.tsize = bfd_get_section_size_before_reloc (text_sec);
2852 internal_a.text_start = internal_a.tsize ? text_sec->vma : 0;
2853 }
2854 if (data_sec)
2855 {
2856 internal_a.dsize = bfd_get_section_size_before_reloc (data_sec);
2857 internal_a.data_start = internal_a.dsize ? data_sec->vma : 0;
2858 }
2859 if (bss_sec)
2860 {
2861 internal_a.bsize = bfd_get_section_size_before_reloc (bss_sec);
2862 if (internal_a.bsize && bss_sec->vma < internal_a.data_start)
2863 internal_a.data_start = bss_sec->vma;
2864 }
2865
2866 internal_a.entry = bfd_get_start_address (abfd);
2867 internal_f.f_nsyms = obj_raw_syment_count (abfd);
2868
2869 #ifdef RS6000COFF_C
2870 if (xcoff_data (abfd)->full_aouthdr)
2871 {
2872 bfd_vma toc;
2873 asection *loader_sec;
2874
2875 internal_a.vstamp = 1;
2876
2877 internal_a.o_snentry = xcoff_data (abfd)->snentry;
2878 if (internal_a.o_snentry == 0)
2879 internal_a.entry = (bfd_vma) -1;
2880
2881 if (text_sec != NULL)
2882 {
2883 internal_a.o_sntext = text_sec->target_index;
2884 internal_a.o_algntext = bfd_get_section_alignment (abfd, text_sec);
2885 }
2886 else
2887 {
2888 internal_a.o_sntext = 0;
2889 internal_a.o_algntext = 0;
2890 }
2891 if (data_sec != NULL)
2892 {
2893 internal_a.o_sndata = data_sec->target_index;
2894 internal_a.o_algndata = bfd_get_section_alignment (abfd, data_sec);
2895 }
2896 else
2897 {
2898 internal_a.o_sndata = 0;
2899 internal_a.o_algndata = 0;
2900 }
2901 loader_sec = bfd_get_section_by_name (abfd, ".loader");
2902 if (loader_sec != NULL)
2903 internal_a.o_snloader = loader_sec->target_index;
2904 else
2905 internal_a.o_snloader = 0;
2906 if (bss_sec != NULL)
2907 internal_a.o_snbss = bss_sec->target_index;
2908 else
2909 internal_a.o_snbss = 0;
2910
2911 toc = xcoff_data (abfd)->toc;
2912 internal_a.o_toc = toc;
2913 internal_a.o_sntoc = xcoff_data (abfd)->sntoc;
2914
2915 internal_a.o_modtype = xcoff_data (abfd)->modtype;
2916 if (xcoff_data (abfd)->cputype != -1)
2917 internal_a.o_cputype = xcoff_data (abfd)->cputype;
2918 else
2919 {
2920 switch (bfd_get_arch (abfd))
2921 {
2922 case bfd_arch_rs6000:
2923 internal_a.o_cputype = 4;
2924 break;
2925 case bfd_arch_powerpc:
2926 if (bfd_get_mach (abfd) == 0)
2927 internal_a.o_cputype = 3;
2928 else
2929 internal_a.o_cputype = 1;
2930 break;
2931 default:
2932 abort ();
2933 }
2934 }
2935 internal_a.o_maxstack = xcoff_data (abfd)->maxstack;
2936 internal_a.o_maxdata = xcoff_data (abfd)->maxdata;
2937 }
2938 #endif
2939
2940 /* now write them */
2941 if (bfd_seek (abfd, (file_ptr) 0, SEEK_SET) != 0)
2942 return false;
2943 {
2944 char buff[FILHSZ];
2945 coff_swap_filehdr_out (abfd, (PTR) & internal_f, (PTR) buff);
2946 if (bfd_write ((PTR) buff, 1, FILHSZ, abfd) != FILHSZ)
2947 return false;
2948 }
2949 if (abfd->flags & EXEC_P)
2950 {
2951 /* Note that peicode.h fills in a PEAOUTHDR, not an AOUTHDR.
2952 include/coff/pe.h sets AOUTSZ == sizeof(PEAOUTHDR)) */
2953 char buff[AOUTSZ];
2954 coff_swap_aouthdr_out (abfd, (PTR) & internal_a, (PTR) buff);
2955 if (bfd_write ((PTR) buff, 1, AOUTSZ, abfd) != AOUTSZ)
2956 return false;
2957 }
2958 #ifdef RS6000COFF_C
2959 else
2960 {
2961 AOUTHDR buff;
2962 size_t size;
2963
2964 /* XCOFF seems to always write at least a small a.out header. */
2965 coff_swap_aouthdr_out (abfd, (PTR) &internal_a, (PTR) &buff);
2966 if (xcoff_data (abfd)->full_aouthdr)
2967 size = AOUTSZ;
2968 else
2969 size = SMALL_AOUTSZ;
2970 if (bfd_write ((PTR) &buff, 1, size, abfd) != size)
2971 return false;
2972 }
2973 #endif
2974
2975 return true;
2976 }
2977
2978 static boolean
2979 coff_set_section_contents (abfd, section, location, offset, count)
2980 bfd * abfd;
2981 sec_ptr section;
2982 PTR location;
2983 file_ptr offset;
2984 bfd_size_type count;
2985 {
2986 if (abfd->output_has_begun == false) /* set by bfd.c handler */
2987 coff_compute_section_file_positions (abfd);
2988
2989 #ifdef _LIB
2990
2991 /* The physical address field of a .lib section is used to hold the
2992 number of shared libraries in the section. This code counts the
2993 number of sections being written, and increments the lma field
2994 with the number.
2995
2996 I have found no documentation on the contents of this section.
2997 Experimentation indicates that the section contains zero or more
2998 records, each of which has the following structure:
2999
3000 - a (four byte) word holding the length of this record, in words,
3001 - a word that always seems to be set to "2",
3002 - the path to a shared library, null-terminated and then padded
3003 to a whole word boundary.
3004
3005 bfd_assert calls have been added to alert if an attempt is made
3006 to write a section which doesn't follow these assumptions. The
3007 code has been tested on ISC 4.1 by me, and on SCO by Robert Lipe
3008 <robertl@arnet.com> (Thanks!).
3009
3010 Gvran Uddeborg <gvran@uddeborg.pp.se> */
3011
3012 if (strcmp (section->name, _LIB) == 0)
3013 {
3014 bfd_byte *rec, *recend;
3015
3016 rec = (bfd_byte *) location;
3017 recend = rec + count;
3018 while (rec < recend)
3019 {
3020 ++section->lma;
3021 rec += bfd_get_32 (abfd, rec) * 4;
3022 }
3023
3024 BFD_ASSERT (rec == recend);
3025 }
3026
3027 #endif
3028
3029 /* Don't write out bss sections - one way to do this is to
3030 see if the filepos has not been set. */
3031 if (section->filepos == 0)
3032 return true;
3033
3034 if (bfd_seek (abfd, (file_ptr) (section->filepos + offset), SEEK_SET) != 0)
3035 return false;
3036
3037 if (count != 0)
3038 {
3039 return (bfd_write (location, 1, count, abfd) == count) ? true : false;
3040 }
3041 return true;
3042 }
3043 #if 0
3044 static boolean
3045 coff_close_and_cleanup (abfd)
3046 bfd *abfd;
3047 {
3048 if (!bfd_read_p (abfd))
3049 switch (abfd->format)
3050 {
3051 case bfd_archive:
3052 if (!_bfd_write_archive_contents (abfd))
3053 return false;
3054 break;
3055 case bfd_object:
3056 if (!coff_write_object_contents (abfd))
3057 return false;
3058 break;
3059 default:
3060 bfd_set_error (bfd_error_invalid_operation);
3061 return false;
3062 }
3063
3064 /* We depend on bfd_close to free all the memory on the obstack. */
3065 /* FIXME if bfd_release is not using obstacks! */
3066 return true;
3067 }
3068
3069 #endif
3070
3071 static PTR
3072 buy_and_read (abfd, where, seek_direction, size)
3073 bfd *abfd;
3074 file_ptr where;
3075 int seek_direction;
3076 size_t size;
3077 {
3078 PTR area = (PTR) bfd_alloc (abfd, size);
3079 if (!area)
3080 return (NULL);
3081 if (bfd_seek (abfd, where, seek_direction) != 0
3082 || bfd_read (area, 1, size, abfd) != size)
3083 return (NULL);
3084 return (area);
3085 } /* buy_and_read() */
3086
3087 /*
3088 SUBSUBSECTION
3089 Reading linenumbers
3090
3091 Creating the linenumber table is done by reading in the entire
3092 coff linenumber table, and creating another table for internal use.
3093
3094 A coff linenumber table is structured so that each function
3095 is marked as having a line number of 0. Each line within the
3096 function is an offset from the first line in the function. The
3097 base of the line number information for the table is stored in
3098 the symbol associated with the function.
3099
3100 The information is copied from the external to the internal
3101 table, and each symbol which marks a function is marked by
3102 pointing its...
3103
3104 How does this work ?
3105
3106 */
3107
3108 static boolean
3109 coff_slurp_line_table (abfd, asect)
3110 bfd *abfd;
3111 asection *asect;
3112 {
3113 LINENO *native_lineno;
3114 alent *lineno_cache;
3115
3116 BFD_ASSERT (asect->lineno == (alent *) NULL);
3117
3118 native_lineno = (LINENO *) buy_and_read (abfd,
3119 asect->line_filepos,
3120 SEEK_SET,
3121 (size_t) (LINESZ *
3122 asect->lineno_count));
3123 lineno_cache =
3124 (alent *) bfd_alloc (abfd, (size_t) ((asect->lineno_count + 1) * sizeof (alent)));
3125 if (lineno_cache == NULL)
3126 return false;
3127 else
3128 {
3129 unsigned int counter = 0;
3130 alent *cache_ptr = lineno_cache;
3131 LINENO *src = native_lineno;
3132
3133 while (counter < asect->lineno_count)
3134 {
3135 struct internal_lineno dst;
3136 coff_swap_lineno_in (abfd, src, &dst);
3137 cache_ptr->line_number = dst.l_lnno;
3138
3139 if (cache_ptr->line_number == 0)
3140 {
3141 coff_symbol_type *sym =
3142 (coff_symbol_type *) (dst.l_addr.l_symndx
3143 + obj_raw_syments (abfd))->u.syment._n._n_n._n_zeroes;
3144 cache_ptr->u.sym = (asymbol *) sym;
3145 if (sym->lineno != NULL)
3146 {
3147 (*_bfd_error_handler)
3148 ("%s: warning: duplicate line number information for `%s'",
3149 bfd_get_filename (abfd),
3150 bfd_asymbol_name (&sym->symbol));
3151 }
3152 sym->lineno = cache_ptr;
3153 }
3154 else
3155 {
3156 cache_ptr->u.offset = dst.l_addr.l_paddr
3157 - bfd_section_vma (abfd, asect);
3158 } /* If no linenumber expect a symbol index */
3159
3160 cache_ptr++;
3161 src++;
3162 counter++;
3163 }
3164 cache_ptr->line_number = 0;
3165
3166 }
3167 asect->lineno = lineno_cache;
3168 /* FIXME, free native_lineno here, or use alloca or something. */
3169 return true;
3170 }
3171
3172 static boolean
3173 coff_slurp_symbol_table (abfd)
3174 bfd * abfd;
3175 {
3176 combined_entry_type *native_symbols;
3177 coff_symbol_type *cached_area;
3178 unsigned int *table_ptr;
3179
3180 unsigned int number_of_symbols = 0;
3181
3182 if (obj_symbols (abfd))
3183 return true;
3184
3185 /* Read in the symbol table */
3186 if ((native_symbols = coff_get_normalized_symtab (abfd)) == NULL)
3187 {
3188 return (false);
3189 } /* on error */
3190
3191 /* Allocate enough room for all the symbols in cached form */
3192 cached_area = ((coff_symbol_type *)
3193 bfd_alloc (abfd,
3194 (obj_raw_syment_count (abfd)
3195 * sizeof (coff_symbol_type))));
3196
3197 if (cached_area == NULL)
3198 return false;
3199 table_ptr = ((unsigned int *)
3200 bfd_alloc (abfd,
3201 (obj_raw_syment_count (abfd)
3202 * sizeof (unsigned int))));
3203
3204 if (table_ptr == NULL)
3205 return false;
3206 else
3207 {
3208 coff_symbol_type *dst = cached_area;
3209 unsigned int last_native_index = obj_raw_syment_count (abfd);
3210 unsigned int this_index = 0;
3211 while (this_index < last_native_index)
3212 {
3213 combined_entry_type *src = native_symbols + this_index;
3214 table_ptr[this_index] = number_of_symbols;
3215 dst->symbol.the_bfd = abfd;
3216
3217 dst->symbol.name = (char *) (src->u.syment._n._n_n._n_offset);
3218 /* We use the native name field to point to the cached field. */
3219 src->u.syment._n._n_n._n_zeroes = (long) dst;
3220 dst->symbol.section = coff_section_from_bfd_index (abfd,
3221 src->u.syment.n_scnum);
3222 dst->symbol.flags = 0;
3223 dst->done_lineno = false;
3224
3225 switch (src->u.syment.n_sclass)
3226 {
3227 #ifdef I960
3228 case C_LEAFEXT:
3229 #if 0
3230 dst->symbol.value = src->u.syment.n_value - dst->symbol.section->vma;
3231 dst->symbol.flags = BSF_EXPORT | BSF_GLOBAL;
3232 dst->symbol.flags |= BSF_NOT_AT_END | BSF_FUNCTION;
3233 #endif
3234 /* Fall through to next case */
3235
3236 #endif
3237
3238 case C_EXT:
3239 #ifdef RS6000COFF_C
3240 case C_HIDEXT:
3241 #endif
3242 #ifdef COFF_WITH_PE
3243 /* PE uses storage class 0x68 to denote a section symbol */
3244 case C_SECTION:
3245 /* PE uses storage class 0x67 for a weak external symbol. */
3246 case C_NT_WEAK:
3247 #endif
3248 if ((src->u.syment.n_scnum) == 0)
3249 {
3250 if ((src->u.syment.n_value) == 0)
3251 {
3252 dst->symbol.section = bfd_und_section_ptr;
3253 dst->symbol.value = 0;
3254 }
3255 else
3256 {
3257 dst->symbol.section = bfd_com_section_ptr;
3258 dst->symbol.value = (src->u.syment.n_value);
3259 }
3260 }
3261 else
3262 {
3263 /* Base the value as an index from the base of the
3264 section */
3265
3266 dst->symbol.flags = BSF_EXPORT | BSF_GLOBAL;
3267 dst->symbol.value = (src->u.syment.n_value
3268 - dst->symbol.section->vma);
3269
3270 if (ISFCN ((src->u.syment.n_type)))
3271 {
3272 /* A function ext does not go at the end of a
3273 file. */
3274 dst->symbol.flags |= BSF_NOT_AT_END | BSF_FUNCTION;
3275 }
3276 }
3277
3278 #ifdef RS6000COFF_C
3279 /* A C_HIDEXT symbol is not global. */
3280 if (src->u.syment.n_sclass == C_HIDEXT)
3281 dst->symbol.flags = BSF_LOCAL;
3282 /* A symbol with a csect entry should not go at the end. */
3283 if (src->u.syment.n_numaux > 0)
3284 dst->symbol.flags |= BSF_NOT_AT_END;
3285 #endif
3286
3287 #ifdef COFF_WITH_PE
3288 if (src->u.syment.n_sclass == C_NT_WEAK)
3289 dst->symbol.flags = BSF_WEAK;
3290 #endif
3291
3292 break;
3293
3294 case C_STAT: /* static */
3295 #ifdef I960
3296 case C_LEAFSTAT: /* static leaf procedure */
3297 #endif
3298 case C_LABEL: /* label */
3299 if (src->u.syment.n_scnum == -2)
3300 dst->symbol.flags = BSF_DEBUGGING;
3301 else
3302 dst->symbol.flags = BSF_LOCAL;
3303
3304 /* Base the value as an index from the base of the
3305 section, if there is one. */
3306 if (dst->symbol.section)
3307 dst->symbol.value = (src->u.syment.n_value
3308 - dst->symbol.section->vma);
3309 else
3310 dst->symbol.value = src->u.syment.n_value;
3311 break;
3312
3313 case C_MOS: /* member of structure */
3314 case C_EOS: /* end of structure */
3315 #ifdef NOTDEF /* C_AUTOARG has the same value */
3316 #ifdef C_GLBLREG
3317 case C_GLBLREG: /* A29k-specific storage class */
3318 #endif
3319 #endif
3320 case C_REGPARM: /* register parameter */
3321 case C_REG: /* register variable */
3322 #ifdef C_AUTOARG
3323 case C_AUTOARG: /* 960-specific storage class */
3324 #endif
3325 case C_TPDEF: /* type definition */
3326 case C_ARG:
3327 case C_AUTO: /* automatic variable */
3328 case C_FIELD: /* bit field */
3329 case C_ENTAG: /* enumeration tag */
3330 case C_MOE: /* member of enumeration */
3331 case C_MOU: /* member of union */
3332 case C_UNTAG: /* union tag */
3333 dst->symbol.flags = BSF_DEBUGGING;
3334 dst->symbol.value = (src->u.syment.n_value);
3335 break;
3336
3337 case C_FILE: /* file name */
3338 case C_STRTAG: /* structure tag */
3339 #ifdef RS6000COFF_C
3340 case C_GSYM:
3341 case C_LSYM:
3342 case C_PSYM:
3343 case C_RSYM:
3344 case C_RPSYM:
3345 case C_STSYM:
3346 case C_BCOMM:
3347 case C_ECOMM:
3348 case C_DECL:
3349 case C_ENTRY:
3350 case C_FUN:
3351 case C_ESTAT:
3352 #endif
3353 dst->symbol.flags = BSF_DEBUGGING;
3354 dst->symbol.value = (src->u.syment.n_value);
3355 break;
3356
3357 #ifdef RS6000COFF_C
3358 case C_BINCL: /* beginning of include file */
3359 case C_EINCL: /* ending of include file */
3360 /* The value is actually a pointer into the line numbers
3361 of the file. We locate the line number entry, and
3362 set the section to the section which contains it, and
3363 the value to the index in that section. */
3364 {
3365 asection *sec;
3366
3367 dst->symbol.flags = BSF_DEBUGGING;
3368 for (sec = abfd->sections; sec != NULL; sec = sec->next)
3369 if (sec->line_filepos <= (file_ptr) src->u.syment.n_value
3370 && ((file_ptr) (sec->line_filepos
3371 + sec->lineno_count * LINESZ)
3372 > (file_ptr) src->u.syment.n_value))
3373 break;
3374 if (sec == NULL)
3375 dst->symbol.value = 0;
3376 else
3377 {
3378 dst->symbol.section = sec;
3379 dst->symbol.value = ((src->u.syment.n_value
3380 - sec->line_filepos)
3381 / LINESZ);
3382 src->fix_line = 1;
3383 }
3384 }
3385 break;
3386
3387 case C_BSTAT:
3388 dst->symbol.flags = BSF_DEBUGGING;
3389
3390 /* The value is actually a symbol index. Save a pointer
3391 to the symbol instead of the index. FIXME: This
3392 should use a union. */
3393 src->u.syment.n_value =
3394 (long) (native_symbols + src->u.syment.n_value);
3395 dst->symbol.value = src->u.syment.n_value;
3396 src->fix_value = 1;
3397 break;
3398 #endif
3399
3400 case C_BLOCK: /* ".bb" or ".eb" */
3401 case C_FCN: /* ".bf" or ".ef" */
3402 case C_EFCN: /* physical end of function */
3403 dst->symbol.flags = BSF_LOCAL;
3404 /* Base the value as an index from the base of the
3405 section. */
3406 dst->symbol.value = (src->u.syment.n_value
3407 - dst->symbol.section->vma);
3408 break;
3409
3410 case C_NULL:
3411 case C_EXTDEF: /* external definition */
3412 case C_ULABEL: /* undefined label */
3413 case C_USTATIC: /* undefined static */
3414 #ifndef COFF_WITH_PE
3415 /* C_LINE in regular coff is 0x68. NT has taken over this storage
3416 class to represent a section symbol */
3417 case C_LINE: /* line # reformatted as symbol table entry */
3418 /* NT uses 0x67 for a weak symbol, not C_ALIAS. */
3419 case C_ALIAS: /* duplicate tag */
3420 #endif
3421 case C_HIDDEN: /* ext symbol in dmert public lib */
3422 default:
3423 (*_bfd_error_handler)
3424 ("%s: Unrecognized storage class %d for %s symbol `%s'",
3425 bfd_get_filename (abfd), src->u.syment.n_sclass,
3426 dst->symbol.section->name, dst->symbol.name);
3427 dst->symbol.flags = BSF_DEBUGGING;
3428 dst->symbol.value = (src->u.syment.n_value);
3429 break;
3430 }
3431
3432 /* BFD_ASSERT(dst->symbol.flags != 0);*/
3433
3434 dst->native = src;
3435
3436 dst->symbol.udata.i = 0;
3437 dst->lineno = (alent *) NULL;
3438 this_index += (src->u.syment.n_numaux) + 1;
3439 dst++;
3440 number_of_symbols++;
3441 } /* walk the native symtab */
3442 } /* bfdize the native symtab */
3443
3444 obj_symbols (abfd) = cached_area;
3445 obj_raw_syments (abfd) = native_symbols;
3446
3447 bfd_get_symcount (abfd) = number_of_symbols;
3448 obj_convert (abfd) = table_ptr;
3449 /* Slurp the line tables for each section too */
3450 {
3451 asection *p;
3452 p = abfd->sections;
3453 while (p)
3454 {
3455 coff_slurp_line_table (abfd, p);
3456 p = p->next;
3457 }
3458 }
3459 return true;
3460 } /* coff_slurp_symbol_table() */
3461
3462 /* Check whether a symbol is globally visible. This is used by the
3463 COFF backend linker code in cofflink.c, since a couple of targets
3464 have globally visible symbols which are not class C_EXT. This
3465 function need not handle the case of n_class == C_EXT. */
3466
3467 #undef OTHER_GLOBAL_CLASS
3468
3469 #ifdef I960
3470 #define OTHER_GLOBAL_CLASS C_LEAFEXT
3471 #endif
3472
3473 #ifdef COFF_WITH_PE
3474 #define OTHER_GLOBAL_CLASS C_SECTION
3475 #endif
3476
3477 #ifdef OTHER_GLOBAL_CLASS
3478
3479 static boolean
3480 coff_sym_is_global (abfd, syment)
3481 bfd *abfd;
3482 struct internal_syment *syment;
3483 {
3484 if (syment->n_sclass == OTHER_GLOBAL_CLASS)
3485 return true;
3486 return false;
3487 }
3488
3489 #undef OTHER_GLOBAL_CLASS
3490
3491 #else /* ! defined (OTHER_GLOBAL_CLASS) */
3492
3493 /* sym_is_global should not be defined if it has nothing to do. */
3494
3495 #define coff_sym_is_global 0
3496
3497 #endif /* ! defined (OTHER_GLOBAL_CLASS) */
3498
3499 /*
3500 SUBSUBSECTION
3501 Reading relocations
3502
3503 Coff relocations are easily transformed into the internal BFD form
3504 (@code{arelent}).
3505
3506 Reading a coff relocation table is done in the following stages:
3507
3508 o Read the entire coff relocation table into memory.
3509
3510 o Process each relocation in turn; first swap it from the
3511 external to the internal form.
3512
3513 o Turn the symbol referenced in the relocation's symbol index
3514 into a pointer into the canonical symbol table.
3515 This table is the same as the one returned by a call to
3516 @code{bfd_canonicalize_symtab}. The back end will call that
3517 routine and save the result if a canonicalization hasn't been done.
3518
3519 o The reloc index is turned into a pointer to a howto
3520 structure, in a back end specific way. For instance, the 386
3521 and 960 use the @code{r_type} to directly produce an index
3522 into a howto table vector; the 88k subtracts a number from the
3523 @code{r_type} field and creates an addend field.
3524
3525
3526 */
3527
3528 #ifndef CALC_ADDEND
3529 #define CALC_ADDEND(abfd, ptr, reloc, cache_ptr) \
3530 { \
3531 coff_symbol_type *coffsym = (coff_symbol_type *) NULL; \
3532 if (ptr && bfd_asymbol_bfd (ptr) != abfd) \
3533 coffsym = (obj_symbols (abfd) \
3534 + (cache_ptr->sym_ptr_ptr - symbols)); \
3535 else if (ptr) \
3536 coffsym = coff_symbol_from (abfd, ptr); \
3537 if (coffsym != (coff_symbol_type *) NULL \
3538 && coffsym->native->u.syment.n_scnum == 0) \
3539 cache_ptr->addend = 0; \
3540 else if (ptr && bfd_asymbol_bfd (ptr) == abfd \
3541 && ptr->section != (asection *) NULL) \
3542 cache_ptr->addend = - (ptr->section->vma + ptr->value); \
3543 else \
3544 cache_ptr->addend = 0; \
3545 }
3546 #endif
3547
3548 static boolean
3549 coff_slurp_reloc_table (abfd, asect, symbols)
3550 bfd * abfd;
3551 sec_ptr asect;
3552 asymbol ** symbols;
3553 {
3554 RELOC *native_relocs;
3555 arelent *reloc_cache;
3556 arelent *cache_ptr;
3557
3558 unsigned int idx;
3559
3560 if (asect->relocation)
3561 return true;
3562 if (asect->reloc_count == 0)
3563 return true;
3564 if (asect->flags & SEC_CONSTRUCTOR)
3565 return true;
3566 if (!coff_slurp_symbol_table (abfd))
3567 return false;
3568 native_relocs =
3569 (RELOC *) buy_and_read (abfd,
3570 asect->rel_filepos,
3571 SEEK_SET,
3572 (size_t) (RELSZ *
3573 asect->reloc_count));
3574 reloc_cache = (arelent *)
3575 bfd_alloc (abfd, (size_t) (asect->reloc_count * sizeof (arelent)));
3576
3577 if (reloc_cache == NULL)
3578 return false;
3579
3580
3581 for (idx = 0; idx < asect->reloc_count; idx++)
3582 {
3583 #ifdef RELOC_PROCESSING
3584 struct internal_reloc dst;
3585 struct external_reloc *src;
3586
3587 cache_ptr = reloc_cache + idx;
3588 src = native_relocs + idx;
3589 coff_swap_reloc_in (abfd, src, &dst);
3590
3591 RELOC_PROCESSING (cache_ptr, &dst, symbols, abfd, asect);
3592 #else
3593 struct internal_reloc dst;
3594 asymbol *ptr;
3595 struct external_reloc *src;
3596
3597 cache_ptr = reloc_cache + idx;
3598 src = native_relocs + idx;
3599
3600 coff_swap_reloc_in (abfd, src, &dst);
3601
3602
3603 cache_ptr->address = dst.r_vaddr;
3604
3605 if (dst.r_symndx != -1)
3606 {
3607 /* @@ Should never be greater than count of symbols! */
3608 if (dst.r_symndx >= obj_conv_table_size (abfd))
3609 abort ();
3610 cache_ptr->sym_ptr_ptr = symbols + obj_convert (abfd)[dst.r_symndx];
3611 ptr = *(cache_ptr->sym_ptr_ptr);
3612 }
3613 else
3614 {
3615 cache_ptr->sym_ptr_ptr = bfd_abs_section_ptr->symbol_ptr_ptr;
3616 ptr = 0;
3617 }
3618
3619 /* The symbols definitions that we have read in have been
3620 relocated as if their sections started at 0. But the offsets
3621 refering to the symbols in the raw data have not been
3622 modified, so we have to have a negative addend to compensate.
3623
3624 Note that symbols which used to be common must be left alone */
3625
3626 /* Calculate any reloc addend by looking at the symbol */
3627 CALC_ADDEND (abfd, ptr, dst, cache_ptr);
3628
3629 cache_ptr->address -= asect->vma;
3630 /* !! cache_ptr->section = (asection *) NULL;*/
3631
3632 /* Fill in the cache_ptr->howto field from dst.r_type */
3633 RTYPE2HOWTO (cache_ptr, &dst);
3634 #endif
3635
3636 }
3637
3638 asect->relocation = reloc_cache;
3639 return true;
3640 }
3641
3642 #ifndef coff_rtype_to_howto
3643 #ifdef RTYPE2HOWTO
3644
3645 /* Get the howto structure for a reloc. This is only used if the file
3646 including this one defines coff_relocate_section to be
3647 _bfd_coff_generic_relocate_section, so it is OK if it does not
3648 always work. It is the responsibility of the including file to
3649 make sure it is reasonable if it is needed. */
3650
3651 static reloc_howto_type *coff_rtype_to_howto
3652 PARAMS ((bfd *, asection *, struct internal_reloc *,
3653 struct coff_link_hash_entry *, struct internal_syment *,
3654 bfd_vma *));
3655
3656 /*ARGSUSED*/
3657 static reloc_howto_type *
3658 coff_rtype_to_howto (abfd, sec, rel, h, sym, addendp)
3659 bfd *abfd;
3660 asection *sec;
3661 struct internal_reloc *rel;
3662 struct coff_link_hash_entry *h;
3663 struct internal_syment *sym;
3664 bfd_vma *addendp;
3665 {
3666 arelent genrel;
3667
3668 RTYPE2HOWTO (&genrel, rel);
3669 return genrel.howto;
3670 }
3671
3672 #else /* ! defined (RTYPE2HOWTO) */
3673
3674 #define coff_rtype_to_howto NULL
3675
3676 #endif /* ! defined (RTYPE2HOWTO) */
3677 #endif /* ! defined (coff_rtype_to_howto) */
3678
3679 /* This is stupid. This function should be a boolean predicate. */
3680 static long
3681 coff_canonicalize_reloc (abfd, section, relptr, symbols)
3682 bfd * abfd;
3683 sec_ptr section;
3684 arelent ** relptr;
3685 asymbol ** symbols;
3686 {
3687 arelent *tblptr = section->relocation;
3688 unsigned int count = 0;
3689
3690
3691 if (section->flags & SEC_CONSTRUCTOR)
3692 {
3693 /* this section has relocs made up by us, they are not in the
3694 file, so take them out of their chain and place them into
3695 the data area provided */
3696 arelent_chain *chain = section->constructor_chain;
3697 for (count = 0; count < section->reloc_count; count++)
3698 {
3699 *relptr++ = &chain->relent;
3700 chain = chain->next;
3701 }
3702
3703 }
3704 else
3705 {
3706 if (! coff_slurp_reloc_table (abfd, section, symbols))
3707 return -1;
3708
3709 tblptr = section->relocation;
3710
3711 for (; count++ < section->reloc_count;)
3712 *relptr++ = tblptr++;
3713
3714
3715 }
3716 *relptr = 0;
3717 return section->reloc_count;
3718 }
3719
3720 #ifdef GNU960
3721 file_ptr
3722 coff_sym_filepos (abfd)
3723 bfd *abfd;
3724 {
3725 return obj_sym_filepos (abfd);
3726 }
3727 #endif
3728
3729 #ifndef coff_reloc16_estimate
3730 #define coff_reloc16_estimate dummy_reloc16_estimate
3731
3732 static int
3733 dummy_reloc16_estimate (abfd, input_section, reloc, shrink, link_info)
3734 bfd *abfd;
3735 asection *input_section;
3736 arelent *reloc;
3737 unsigned int shrink;
3738 struct bfd_link_info *link_info;
3739 {
3740 abort ();
3741 }
3742
3743 #endif
3744
3745 #ifndef coff_reloc16_extra_cases
3746 #define coff_reloc16_extra_cases dummy_reloc16_extra_cases
3747 /* This works even if abort is not declared in any header file. */
3748 static void
3749 dummy_reloc16_extra_cases (abfd, link_info, link_order, reloc, data, src_ptr,
3750 dst_ptr)
3751 bfd *abfd;
3752 struct bfd_link_info *link_info;
3753 struct bfd_link_order *link_order;
3754 arelent *reloc;
3755 bfd_byte *data;
3756 unsigned int *src_ptr;
3757 unsigned int *dst_ptr;
3758 {
3759 abort ();
3760 }
3761 #endif
3762
3763 /* If coff_relocate_section is defined, we can use the optimized COFF
3764 backend linker. Otherwise we must continue to use the old linker. */
3765 #ifdef coff_relocate_section
3766 #ifndef coff_bfd_link_hash_table_create
3767 #define coff_bfd_link_hash_table_create _bfd_coff_link_hash_table_create
3768 #endif
3769 #ifndef coff_bfd_link_add_symbols
3770 #define coff_bfd_link_add_symbols _bfd_coff_link_add_symbols
3771 #endif
3772 #ifndef coff_bfd_final_link
3773 #define coff_bfd_final_link _bfd_coff_final_link
3774 #endif
3775 #else /* ! defined (coff_relocate_section) */
3776 #define coff_relocate_section NULL
3777 #ifndef coff_bfd_link_hash_table_create
3778 #define coff_bfd_link_hash_table_create _bfd_generic_link_hash_table_create
3779 #endif
3780 #ifndef coff_bfd_link_add_symbols
3781 #define coff_bfd_link_add_symbols _bfd_generic_link_add_symbols
3782 #endif
3783 #define coff_bfd_final_link _bfd_generic_final_link
3784 #endif /* ! defined (coff_relocate_section) */
3785 #define coff_bfd_link_split_section _bfd_generic_link_split_section
3786
3787 #ifndef coff_start_final_link
3788 #define coff_start_final_link NULL
3789 #endif
3790
3791 #ifndef coff_adjust_symndx
3792 #define coff_adjust_symndx NULL
3793 #endif
3794
3795 #ifndef coff_link_add_one_symbol
3796 #define coff_link_add_one_symbol _bfd_generic_link_add_one_symbol
3797 #endif
3798
3799 static CONST bfd_coff_backend_data bfd_coff_std_swap_table =
3800 {
3801 coff_swap_aux_in, coff_swap_sym_in, coff_swap_lineno_in,
3802 coff_swap_aux_out, coff_swap_sym_out,
3803 coff_swap_lineno_out, coff_swap_reloc_out,
3804 coff_swap_filehdr_out, coff_swap_aouthdr_out,
3805 coff_swap_scnhdr_out,
3806 FILHSZ, AOUTSZ, SCNHSZ, SYMESZ, AUXESZ, RELSZ, LINESZ,
3807 #ifdef COFF_LONG_FILENAMES
3808 true,
3809 #else
3810 false,
3811 #endif
3812 #ifdef COFF_LONG_SECTION_NAMES
3813 true,
3814 #else
3815 false,
3816 #endif
3817 coff_swap_filehdr_in, coff_swap_aouthdr_in, coff_swap_scnhdr_in,
3818 coff_swap_reloc_in, coff_bad_format_hook, coff_set_arch_mach_hook,
3819 coff_mkobject_hook, styp_to_sec_flags, coff_set_alignment_hook,
3820 coff_slurp_symbol_table, symname_in_debug_hook, coff_pointerize_aux_hook,
3821 coff_print_aux, coff_reloc16_extra_cases, coff_reloc16_estimate,
3822 coff_sym_is_global, coff_compute_section_file_positions,
3823 coff_start_final_link, coff_relocate_section, coff_rtype_to_howto,
3824 coff_adjust_symndx, coff_link_add_one_symbol
3825 };
3826
3827 #define coff_close_and_cleanup _bfd_generic_close_and_cleanup
3828 #define coff_bfd_free_cached_info _bfd_generic_bfd_free_cached_info
3829 #define coff_get_section_contents _bfd_generic_get_section_contents
3830
3831 #ifndef coff_bfd_copy_private_symbol_data
3832 #define coff_bfd_copy_private_symbol_data _bfd_generic_bfd_copy_private_symbol_data
3833 #endif
3834
3835 #ifndef coff_bfd_copy_private_section_data
3836 #define coff_bfd_copy_private_section_data _bfd_generic_bfd_copy_private_section_data
3837 #endif
3838
3839 #ifndef coff_bfd_copy_private_bfd_data
3840 #define coff_bfd_copy_private_bfd_data _bfd_generic_bfd_copy_private_bfd_data
3841 #endif
3842
3843 #define coff_bfd_merge_private_bfd_data _bfd_generic_bfd_merge_private_bfd_data
3844 #define coff_bfd_set_private_flags _bfd_generic_bfd_set_private_flags
3845
3846 #ifndef coff_bfd_print_private_bfd_data
3847 #define coff_bfd_print_private_bfd_data _bfd_generic_bfd_print_private_bfd_data
3848 #endif
3849
3850 #ifndef coff_bfd_is_local_label
3851 #define coff_bfd_is_local_label bfd_generic_is_local_label
3852 #endif
3853 #ifndef coff_read_minisymbols
3854 #define coff_read_minisymbols _bfd_generic_read_minisymbols
3855 #endif
3856 #ifndef coff_minisymbol_to_symbol
3857 #define coff_minisymbol_to_symbol _bfd_generic_minisymbol_to_symbol
3858 #endif
3859
3860 /* The reloc lookup routine must be supplied by each individual COFF
3861 backend. */
3862 #ifndef coff_bfd_reloc_type_lookup
3863 #define coff_bfd_reloc_type_lookup _bfd_norelocs_bfd_reloc_type_lookup
3864 #endif
3865
3866 #ifndef coff_bfd_get_relocated_section_contents
3867 #define coff_bfd_get_relocated_section_contents \
3868 bfd_generic_get_relocated_section_contents
3869 #endif
3870 #ifndef coff_bfd_relax_section
3871 #define coff_bfd_relax_section bfd_generic_relax_section
3872 #endif