Commit | Line | Data |
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e135f41b | 1 | /* BFD back-end for PDP-11 a.out binaries. |
4b95cf5c | 2 | Copyright (C) 2001-2014 Free Software Foundation, Inc. |
e135f41b | 3 | |
42ef282f | 4 | This file is part of BFD, the Binary File Descriptor library. |
e135f41b | 5 | |
42ef282f NC |
6 | This program is free software; you can redistribute it and/or modify |
7 | it under the terms of the GNU General Public License as published by | |
cd123cb7 | 8 | the Free Software Foundation; either version 3 of the License, or |
42ef282f | 9 | (at your option) any later version. |
e135f41b | 10 | |
42ef282f NC |
11 | This program is distributed in the hope that it will be useful, |
12 | but WITHOUT ANY WARRANTY; without even the implied warranty of | |
13 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | |
14 | GNU General Public License for more details. | |
e135f41b | 15 | |
42ef282f NC |
16 | You should have received a copy of the GNU General Public License |
17 | along with this program; if not, write to the Free Software | |
cd123cb7 NC |
18 | Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston, |
19 | MA 02110-1301, USA. */ | |
20 | ||
e135f41b NC |
21 | |
22 | /* BFD backend for PDP-11, running 2.11BSD in particular. | |
23 | ||
24 | This file was hacked up by looking hard at the existing vaxnetbsd | |
25 | back end and the header files in 2.11BSD. | |
26 | ||
27 | TODO | |
28 | * support for V7 file formats | |
29 | * support for overlay object files (see 2.11 a.out(5)) | |
30 | * support for old and very old archives | |
31 | (see 2.11 ar(5), historical section) | |
dc810e39 | 32 | |
e135f41b NC |
33 | Search for TODO to find other areas needing more work. */ |
34 | ||
35 | #define BYTES_IN_WORD 2 | |
36 | #define BYTES_IN_LONG 4 | |
37 | #define ARCH_SIZE 16 | |
38 | #undef TARGET_IS_BIG_ENDIAN_P | |
39 | ||
40 | #define TARGET_PAGE_SIZE 1024 | |
41 | #define SEGMENT__SIZE TARGET_PAGE_SIZE | |
42 | ||
43 | #define DEFAULT_ARCH bfd_arch_pdp11 | |
44 | #define DEFAULT_MID M_PDP11 | |
45 | ||
e43d48cc AM |
46 | /* Do not "beautify" the CONCAT* macro args. Traditional C will not |
47 | remove whitespace added here, and thus will fail to concatenate | |
48 | the tokens. */ | |
49 | #define MY(OP) CONCAT2 (pdp11_aout_,OP) | |
50 | ||
e135f41b NC |
51 | /* This needs to start with a.out so GDB knows it is an a.out variant. */ |
52 | #define TARGETNAME "a.out-pdp11" | |
53 | ||
54 | /* This is the normal load address for executables. */ | |
55 | #define TEXT_START_ADDR 0 | |
56 | ||
57 | /* The header is not included in the text segment. */ | |
58 | #define N_HEADER_IN_TEXT(x) 0 | |
59 | ||
e135f41b NC |
60 | /* There is no flags field. */ |
61 | #define N_FLAGS(exec) 0 | |
62 | ||
63 | #define N_SET_FLAGS(exec, flags) do { } while (0) | |
a77e83b7 AM |
64 | #define N_BADMAG(x) (N_MAGIC(x) != OMAGIC \ |
65 | && N_MAGIC(x) != NMAGIC \ | |
66 | && N_MAGIC(x) != ZMAGIC) | |
e135f41b | 67 | |
3db64b00 | 68 | #include "sysdep.h" |
e135f41b NC |
69 | #include "bfd.h" |
70 | ||
71 | #define external_exec pdp11_external_exec | |
72 | struct pdp11_external_exec | |
116c20d2 NC |
73 | { |
74 | bfd_byte e_info[2]; /* Magic number. */ | |
75 | bfd_byte e_text[2]; /* Length of text section in bytes. */ | |
76 | bfd_byte e_data[2]; /* Length of data section in bytes. */ | |
77 | bfd_byte e_bss[2]; /* Length of bss area in bytes. */ | |
78 | bfd_byte e_syms[2]; /* Length of symbol table in bytes. */ | |
79 | bfd_byte e_entry[2]; /* Start address. */ | |
80 | bfd_byte e_unused[2]; /* Not used. */ | |
81 | bfd_byte e_flag[2]; /* Relocation info stripped. */ | |
82 | bfd_byte e_relocatable; /* Ugly hack. */ | |
83 | }; | |
e135f41b NC |
84 | |
85 | #define EXEC_BYTES_SIZE (8 * 2) | |
86 | ||
87 | #define A_MAGIC1 OMAGIC | |
88 | #define OMAGIC 0407 /* ...object file or impure executable. */ | |
89 | #define A_MAGIC2 NMAGIC | |
116c20d2 NC |
90 | #define NMAGIC 0410 /* Pure executable. */ |
91 | #define ZMAGIC 0413 /* Demand-paged executable. */ | |
92 | #define A_MAGIC3 0411 /* Separated I&D. */ | |
93 | #define A_MAGIC4 0405 /* Overlay. */ | |
94 | #define A_MAGIC5 0430 /* Auto-overlay (nonseparate). */ | |
95 | #define A_MAGIC6 0431 /* Auto-overlay (separate). */ | |
e135f41b NC |
96 | #define QMAGIC 0 |
97 | #define BMAGIC 0 | |
98 | ||
99 | #define A_FLAG_RELOC_STRIPPED 0x0001 | |
100 | ||
101 | #define external_nlist pdp11_external_nlist | |
102 | struct pdp11_external_nlist | |
116c20d2 NC |
103 | { |
104 | bfd_byte e_unused[2]; /* Unused. */ | |
105 | bfd_byte e_strx[2]; /* Index into string table of name. */ | |
106 | bfd_byte e_type[1]; /* Type of symbol. */ | |
107 | bfd_byte e_ovly[1]; /* Overlay number. */ | |
108 | bfd_byte e_value[2]; /* Value of symbol. */ | |
109 | }; | |
e135f41b NC |
110 | |
111 | #define EXTERNAL_NLIST_SIZE 8 | |
112 | ||
113 | #define N_TXTOFF(x) (EXEC_BYTES_SIZE) | |
114 | #define N_DATOFF(x) (N_TXTOFF(x) + (x).a_text) | |
115 | #define N_TRELOFF(x) (N_DATOFF(x) + (x).a_data) | |
116 | #define N_DRELOFF(x) (N_TRELOFF(x) + (x).a_trsize) | |
117 | #define N_SYMOFF(x) (N_DRELOFF(x) + (x).a_drsize) | |
118 | #define N_STROFF(x) (N_SYMOFF(x) + (x).a_syms) | |
119 | ||
120 | #define WRITE_HEADERS(abfd, execp) pdp11_aout_write_headers (abfd, execp) | |
121 | ||
e135f41b NC |
122 | #include "libbfd.h" |
123 | #include "libaout.h" | |
124 | ||
125 | #define SWAP_MAGIC(ext) bfd_getl16 (ext) | |
126 | ||
127 | #define MY_entry_is_text_address 1 | |
128 | ||
129 | #define MY_write_object_contents MY(write_object_contents) | |
116c20d2 | 130 | static bfd_boolean MY(write_object_contents) (bfd *); |
e135f41b NC |
131 | #define MY_text_includes_header 1 |
132 | ||
e135f41b NC |
133 | #define MY_BFD_TARGET |
134 | ||
135 | #include "aout-target.h" | |
136 | ||
116c20d2 | 137 | /* Start of modified aoutx.h. */ |
e135f41b NC |
138 | #define KEEPIT udata.i |
139 | ||
116c20d2 | 140 | #include <string.h> /* For strchr and friends. */ |
e135f41b NC |
141 | #include "bfd.h" |
142 | #include "sysdep.h" | |
3882b010 | 143 | #include "safe-ctype.h" |
e135f41b NC |
144 | #include "bfdlink.h" |
145 | ||
146 | #include "libaout.h" | |
e135f41b NC |
147 | #include "aout/aout64.h" |
148 | #include "aout/stab_gnu.h" | |
149 | #include "aout/ar.h" | |
150 | ||
151 | #undef N_TYPE | |
152 | #undef N_UNDF | |
153 | #undef N_ABS | |
154 | #undef N_TEXT | |
155 | #undef N_DATA | |
156 | #undef N_BSS | |
157 | #undef N_REG | |
158 | #undef N_FN | |
159 | #undef N_EXT | |
116c20d2 NC |
160 | #define N_TYPE 0x1f /* Type mask. */ |
161 | #define N_UNDF 0x00 /* Undefined. */ | |
162 | #define N_ABS 0x01 /* Absolute. */ | |
163 | #define N_TEXT 0x02 /* Text segment. */ | |
164 | #define N_DATA 0x03 /* Data segment. */ | |
165 | #define N_BSS 0x04 /* Bss segment. */ | |
166 | #define N_REG 0x14 /* Register symbol. */ | |
167 | #define N_FN 0x1f /* File name. */ | |
168 | #define N_EXT 0x20 /* External flag. */ | |
e135f41b NC |
169 | |
170 | #define RELOC_SIZE 2 | |
171 | ||
116c20d2 NC |
172 | #define RELFLG 0x0001 /* PC-relative flag. */ |
173 | #define RTYPE 0x000e /* Type mask. */ | |
174 | #define RIDXMASK 0xfff0 /* Index mask. */ | |
e135f41b | 175 | |
116c20d2 NC |
176 | #define RABS 0x00 /* Absolute. */ |
177 | #define RTEXT 0x02 /* Text. */ | |
178 | #define RDATA 0x04 /* Data. */ | |
179 | #define RBSS 0x06 /* Bss. */ | |
180 | #define REXT 0x08 /* External. */ | |
e135f41b NC |
181 | |
182 | #define RINDEX(x) (((x) & 0xfff0) >> 4) | |
183 | ||
e135f41b NC |
184 | #ifndef MY_final_link_relocate |
185 | #define MY_final_link_relocate _bfd_final_link_relocate | |
186 | #endif | |
187 | ||
188 | #ifndef MY_relocate_contents | |
189 | #define MY_relocate_contents _bfd_relocate_contents | |
190 | #endif | |
191 | ||
116c20d2 NC |
192 | /* A hash table used for header files with N_BINCL entries. */ |
193 | ||
194 | struct aout_link_includes_table | |
195 | { | |
196 | struct bfd_hash_table root; | |
197 | }; | |
198 | ||
199 | /* A linked list of totals that we have found for a particular header | |
200 | file. */ | |
201 | ||
202 | struct aout_link_includes_totals | |
203 | { | |
204 | struct aout_link_includes_totals *next; | |
205 | bfd_vma total; | |
206 | }; | |
207 | ||
208 | /* An entry in the header file hash table. */ | |
209 | ||
210 | struct aout_link_includes_entry | |
211 | { | |
212 | struct bfd_hash_entry root; | |
213 | /* List of totals we have found for this file. */ | |
214 | struct aout_link_includes_totals *totals; | |
215 | }; | |
216 | ||
217 | /* During the final link step we need to pass around a bunch of | |
218 | information, so we do it in an instance of this structure. */ | |
219 | ||
220 | struct aout_final_link_info | |
221 | { | |
222 | /* General link information. */ | |
223 | struct bfd_link_info *info; | |
224 | /* Output bfd. */ | |
225 | bfd *output_bfd; | |
226 | /* Reloc file positions. */ | |
227 | file_ptr treloff, dreloff; | |
228 | /* File position of symbols. */ | |
229 | file_ptr symoff; | |
230 | /* String table. */ | |
231 | struct bfd_strtab_hash *strtab; | |
232 | /* Header file hash table. */ | |
233 | struct aout_link_includes_table includes; | |
234 | /* A buffer large enough to hold the contents of any section. */ | |
235 | bfd_byte *contents; | |
236 | /* A buffer large enough to hold the relocs of any section. */ | |
237 | void * relocs; | |
238 | /* A buffer large enough to hold the symbol map of any input BFD. */ | |
239 | int *symbol_map; | |
240 | /* A buffer large enough to hold output symbols of any input BFD. */ | |
241 | struct external_nlist *output_syms; | |
242 | }; | |
243 | ||
e135f41b NC |
244 | reloc_howto_type howto_table_pdp11[] = |
245 | { | |
246 | /* type rs size bsz pcrel bitpos ovrf sf name part_inpl readmask setmask pcdone */ | |
b34976b6 AM |
247 | HOWTO( 0, 0, 1, 16, FALSE, 0, complain_overflow_signed,0,"16", TRUE, 0x0000ffff,0x0000ffff, FALSE), |
248 | HOWTO( 1, 0, 1, 16, TRUE, 0, complain_overflow_signed,0,"DISP16", TRUE, 0x0000ffff,0x0000ffff, FALSE), | |
e135f41b NC |
249 | }; |
250 | ||
251 | #define TABLE_SIZE(TABLE) (sizeof(TABLE)/sizeof(TABLE[0])) | |
252 | ||
116c20d2 NC |
253 | |
254 | static bfd_boolean aout_link_check_archive_element (bfd *, struct bfd_link_info *, bfd_boolean *); | |
255 | static bfd_boolean aout_link_add_object_symbols (bfd *, struct bfd_link_info *); | |
256 | static bfd_boolean aout_link_add_symbols (bfd *, struct bfd_link_info *); | |
257 | static bfd_boolean aout_link_write_symbols (struct aout_final_link_info *, bfd *); | |
258 | ||
259 | ||
e135f41b | 260 | reloc_howto_type * |
116c20d2 NC |
261 | NAME (aout, reloc_type_lookup) (bfd * abfd ATTRIBUTE_UNUSED, |
262 | bfd_reloc_code_real_type code) | |
e135f41b NC |
263 | { |
264 | switch (code) | |
265 | { | |
266 | case BFD_RELOC_16: | |
267 | return &howto_table_pdp11[0]; | |
268 | case BFD_RELOC_16_PCREL: | |
269 | return &howto_table_pdp11[1]; | |
270 | default: | |
116c20d2 | 271 | return NULL; |
e135f41b NC |
272 | } |
273 | } | |
274 | ||
157090f7 AM |
275 | reloc_howto_type * |
276 | NAME (aout, reloc_name_lookup) (bfd *abfd ATTRIBUTE_UNUSED, | |
277 | const char *r_name) | |
278 | { | |
279 | unsigned int i; | |
280 | ||
281 | for (i = 0; | |
282 | i < sizeof (howto_table_pdp11) / sizeof (howto_table_pdp11[0]); | |
283 | i++) | |
284 | if (howto_table_pdp11[i].name != NULL | |
285 | && strcasecmp (howto_table_pdp11[i].name, r_name) == 0) | |
286 | return &howto_table_pdp11[i]; | |
287 | ||
288 | return NULL; | |
289 | } | |
290 | ||
e135f41b | 291 | static int |
116c20d2 | 292 | pdp11_aout_write_headers (bfd *abfd, struct internal_exec *execp) |
e135f41b NC |
293 | { |
294 | struct external_exec exec_bytes; | |
295 | bfd_size_type text_size; | |
296 | file_ptr text_end; | |
297 | ||
298 | if (adata(abfd).magic == undecided_magic) | |
116c20d2 | 299 | NAME (aout, adjust_sizes_and_vmas) (abfd, &text_size, &text_end); |
e135f41b NC |
300 | |
301 | execp->a_syms = bfd_get_symcount (abfd) * EXTERNAL_NLIST_SIZE; | |
302 | execp->a_entry = bfd_get_start_address (abfd); | |
303 | ||
116c20d2 NC |
304 | if (obj_textsec (abfd)->reloc_count > 0 |
305 | || obj_datasec (abfd)->reloc_count > 0) | |
e135f41b NC |
306 | { |
307 | execp->a_trsize = execp->a_text; | |
308 | execp->a_drsize = execp->a_data; | |
309 | } | |
310 | else | |
311 | { | |
312 | execp->a_trsize = 0; | |
313 | execp->a_drsize = 0; | |
314 | } | |
315 | ||
116c20d2 | 316 | NAME (aout, swap_exec_header_out) (abfd, execp, & exec_bytes); |
e135f41b NC |
317 | |
318 | if (bfd_seek (abfd, (file_ptr) 0, SEEK_SET) != 0) | |
b34976b6 | 319 | return FALSE; |
e135f41b | 320 | |
116c20d2 | 321 | if (bfd_bwrite ((void *) &exec_bytes, (bfd_size_type) EXEC_BYTES_SIZE, abfd) |
e135f41b | 322 | != EXEC_BYTES_SIZE) |
b34976b6 | 323 | return FALSE; |
e135f41b | 324 | |
116c20d2 NC |
325 | /* Now write out reloc info, followed by syms and strings. */ |
326 | if (bfd_get_outsymbols (abfd) != NULL | |
e135f41b NC |
327 | && bfd_get_symcount (abfd) != 0) |
328 | { | |
dc810e39 | 329 | if (bfd_seek (abfd, (file_ptr) (N_SYMOFF(*execp)), SEEK_SET) != 0) |
b34976b6 | 330 | return FALSE; |
e135f41b | 331 | |
116c20d2 | 332 | if (! NAME (aout, write_syms) (abfd)) |
b34976b6 | 333 | return FALSE; |
e135f41b NC |
334 | } |
335 | ||
116c20d2 NC |
336 | if (obj_textsec (abfd)->reloc_count > 0 |
337 | || obj_datasec (abfd)->reloc_count > 0) | |
e135f41b | 338 | { |
116c20d2 NC |
339 | if (bfd_seek (abfd, (file_ptr) (N_TRELOFF(*execp)), SEEK_SET) != 0 |
340 | || !NAME (aout, squirt_out_relocs) (abfd, obj_textsec (abfd)) | |
341 | || bfd_seek (abfd, (file_ptr) (N_DRELOFF(*execp)), SEEK_SET) != 0 | |
68ffbac6 | 342 | || !NAME (aout, squirt_out_relocs) (abfd, obj_datasec (abfd))) |
b34976b6 | 343 | return FALSE; |
e135f41b NC |
344 | } |
345 | ||
b34976b6 | 346 | return TRUE; |
dc810e39 | 347 | } |
e135f41b NC |
348 | |
349 | /* Write an object file. | |
350 | Section contents have already been written. We write the | |
351 | file header, symbols, and relocation. */ | |
352 | ||
b34976b6 | 353 | static bfd_boolean |
116c20d2 | 354 | MY(write_object_contents) (bfd *abfd) |
e135f41b NC |
355 | { |
356 | struct internal_exec *execp = exec_hdr (abfd); | |
357 | ||
358 | /* We must make certain that the magic number has been set. This | |
359 | will normally have been done by set_section_contents, but only if | |
360 | there actually are some section contents. */ | |
361 | if (! abfd->output_has_begun) | |
362 | { | |
363 | bfd_size_type text_size; | |
364 | file_ptr text_end; | |
365 | ||
116c20d2 | 366 | NAME (aout, adjust_sizes_and_vmas) (abfd, &text_size, &text_end); |
e135f41b NC |
367 | } |
368 | ||
369 | obj_reloc_entry_size (abfd) = RELOC_SIZE; | |
370 | ||
116c20d2 | 371 | return WRITE_HEADERS (abfd, execp); |
e135f41b NC |
372 | } |
373 | ||
116c20d2 NC |
374 | /* Swap the information in an executable header @var{raw_bytes} taken |
375 | from a raw byte stream memory image into the internal exec header | |
376 | structure "execp". */ | |
e135f41b NC |
377 | |
378 | #ifndef NAME_swap_exec_header_in | |
379 | void | |
116c20d2 NC |
380 | NAME (aout, swap_exec_header_in) (bfd *abfd, |
381 | struct external_exec *bytes, | |
382 | struct internal_exec *execp) | |
e135f41b | 383 | { |
e135f41b NC |
384 | /* The internal_exec structure has some fields that are unused in this |
385 | configuration (IE for i960), so ensure that all such uninitialized | |
386 | fields are zero'd out. There are places where two of these structs | |
116c20d2 NC |
387 | are memcmp'd, and thus the contents do matter. */ |
388 | memset ((void *) execp, 0, sizeof (struct internal_exec)); | |
e135f41b NC |
389 | /* Now fill in fields in the execp, from the bytes in the raw data. */ |
390 | execp->a_info = GET_MAGIC (abfd, bytes->e_info); | |
391 | execp->a_text = GET_WORD (abfd, bytes->e_text); | |
392 | execp->a_data = GET_WORD (abfd, bytes->e_data); | |
393 | execp->a_bss = GET_WORD (abfd, bytes->e_bss); | |
394 | execp->a_syms = GET_WORD (abfd, bytes->e_syms); | |
395 | execp->a_entry = GET_WORD (abfd, bytes->e_entry); | |
396 | ||
397 | if (GET_WORD (abfd, bytes->e_flag) & A_FLAG_RELOC_STRIPPED) | |
398 | { | |
399 | execp->a_trsize = 0; | |
400 | execp->a_drsize = 0; | |
401 | } | |
402 | else | |
403 | { | |
404 | execp->a_trsize = execp->a_text; | |
405 | execp->a_drsize = execp->a_data; | |
406 | } | |
407 | } | |
116c20d2 | 408 | #define NAME_swap_exec_header_in NAME (aout, swap_exec_header_in) |
e135f41b NC |
409 | #endif |
410 | ||
116c20d2 NC |
411 | /* Swap the information in an internal exec header structure |
412 | "execp" into the buffer "bytes" ready for writing to disk. */ | |
e135f41b | 413 | void |
116c20d2 NC |
414 | NAME (aout, swap_exec_header_out) (bfd *abfd, |
415 | struct internal_exec *execp, | |
416 | struct external_exec *bytes) | |
e135f41b | 417 | { |
116c20d2 | 418 | /* Now fill in fields in the raw data, from the fields in the exec struct. */ |
e135f41b NC |
419 | PUT_MAGIC (abfd, execp->a_info, bytes->e_info); |
420 | PUT_WORD (abfd, execp->a_text, bytes->e_text); | |
421 | PUT_WORD (abfd, execp->a_data, bytes->e_data); | |
422 | PUT_WORD (abfd, execp->a_bss, bytes->e_bss); | |
423 | PUT_WORD (abfd, execp->a_syms, bytes->e_syms); | |
424 | PUT_WORD (abfd, execp->a_entry, bytes->e_entry); | |
425 | PUT_WORD (abfd, 0, bytes->e_unused); | |
426 | ||
116c20d2 NC |
427 | if ((execp->a_trsize == 0 || execp->a_text == 0) |
428 | && (execp->a_drsize == 0 || execp->a_data == 0)) | |
429 | PUT_WORD (abfd, A_FLAG_RELOC_STRIPPED, bytes->e_flag); | |
430 | else if (execp->a_trsize == execp->a_text | |
431 | && execp->a_drsize == execp->a_data) | |
432 | PUT_WORD (abfd, 0, bytes->e_flag); | |
e135f41b NC |
433 | else |
434 | { | |
116c20d2 | 435 | /* TODO: print a proper warning message. */ |
e135f41b NC |
436 | fprintf (stderr, "BFD:%s:%d: internal error\n", __FILE__, __LINE__); |
437 | PUT_WORD (abfd, 0, bytes->e_flag); | |
438 | } | |
439 | } | |
440 | ||
441 | /* Make all the section for an a.out file. */ | |
442 | ||
b34976b6 | 443 | bfd_boolean |
116c20d2 | 444 | NAME (aout, make_sections) (bfd *abfd) |
e135f41b | 445 | { |
116c20d2 | 446 | if (obj_textsec (abfd) == NULL && bfd_make_section (abfd, ".text") == NULL) |
b34976b6 | 447 | return FALSE; |
116c20d2 | 448 | if (obj_datasec (abfd) == NULL && bfd_make_section (abfd, ".data") == NULL) |
b34976b6 | 449 | return FALSE; |
116c20d2 | 450 | if (obj_bsssec (abfd) == NULL && bfd_make_section (abfd, ".bss") == NULL) |
b34976b6 AM |
451 | return FALSE; |
452 | return TRUE; | |
e135f41b NC |
453 | } |
454 | ||
116c20d2 NC |
455 | /* Some a.out variant thinks that the file open in ABFD |
456 | checking is an a.out file. Do some more checking, and set up | |
457 | for access if it really is. Call back to the calling | |
458 | environment's "finish up" function just before returning, to | |
459 | handle any last-minute setup. */ | |
e135f41b NC |
460 | |
461 | const bfd_target * | |
116c20d2 NC |
462 | NAME (aout, some_aout_object_p) (bfd *abfd, |
463 | struct internal_exec *execp, | |
464 | const bfd_target *(*callback_to_real_object_p) (bfd *)) | |
e135f41b NC |
465 | { |
466 | struct aout_data_struct *rawptr, *oldrawptr; | |
467 | const bfd_target *result; | |
dc810e39 | 468 | bfd_size_type amt = sizeof (struct aout_data_struct); |
e135f41b | 469 | |
116c20d2 | 470 | rawptr = bfd_zalloc (abfd, amt); |
e135f41b NC |
471 | if (rawptr == NULL) |
472 | return 0; | |
473 | ||
474 | oldrawptr = abfd->tdata.aout_data; | |
475 | abfd->tdata.aout_data = rawptr; | |
476 | ||
477 | /* Copy the contents of the old tdata struct. | |
478 | In particular, we want the subformat, since for hpux it was set in | |
479 | hp300hpux.c:swap_exec_header_in and will be used in | |
480 | hp300hpux.c:callback. */ | |
481 | if (oldrawptr != NULL) | |
482 | *abfd->tdata.aout_data = *oldrawptr; | |
483 | ||
484 | abfd->tdata.aout_data->a.hdr = &rawptr->e; | |
116c20d2 | 485 | *(abfd->tdata.aout_data->a.hdr) = *execp; /* Copy in the internal_exec struct. */ |
e135f41b NC |
486 | execp = abfd->tdata.aout_data->a.hdr; |
487 | ||
116c20d2 | 488 | /* Set the file flags. */ |
e135f41b NC |
489 | abfd->flags = BFD_NO_FLAGS; |
490 | if (execp->a_drsize || execp->a_trsize) | |
491 | abfd->flags |= HAS_RELOC; | |
116c20d2 | 492 | /* Setting of EXEC_P has been deferred to the bottom of this function. */ |
e135f41b NC |
493 | if (execp->a_syms) |
494 | abfd->flags |= HAS_LINENO | HAS_DEBUG | HAS_SYMS | HAS_LOCALS; | |
495 | if (N_DYNAMIC(*execp)) | |
496 | abfd->flags |= DYNAMIC; | |
497 | ||
498 | if (N_MAGIC (*execp) == ZMAGIC) | |
499 | { | |
500 | abfd->flags |= D_PAGED | WP_TEXT; | |
501 | adata (abfd).magic = z_magic; | |
502 | } | |
e135f41b NC |
503 | else if (N_MAGIC (*execp) == NMAGIC) |
504 | { | |
505 | abfd->flags |= WP_TEXT; | |
506 | adata (abfd).magic = n_magic; | |
507 | } | |
a77e83b7 | 508 | else if (N_MAGIC (*execp) == OMAGIC) |
e135f41b NC |
509 | adata (abfd).magic = o_magic; |
510 | else | |
511 | { | |
512 | /* Should have been checked with N_BADMAG before this routine | |
513 | was called. */ | |
514 | abort (); | |
515 | } | |
516 | ||
517 | bfd_get_start_address (abfd) = execp->a_entry; | |
518 | ||
116c20d2 | 519 | obj_aout_symbols (abfd) = NULL; |
e135f41b NC |
520 | bfd_get_symcount (abfd) = execp->a_syms / sizeof (struct external_nlist); |
521 | ||
522 | /* The default relocation entry size is that of traditional V7 Unix. */ | |
523 | obj_reloc_entry_size (abfd) = RELOC_SIZE; | |
524 | ||
116c20d2 | 525 | /* The default symbol entry size is that of traditional Unix. */ |
e135f41b NC |
526 | obj_symbol_entry_size (abfd) = EXTERNAL_NLIST_SIZE; |
527 | ||
528 | #ifdef USE_MMAP | |
529 | bfd_init_window (&obj_aout_sym_window (abfd)); | |
530 | bfd_init_window (&obj_aout_string_window (abfd)); | |
531 | #endif | |
116c20d2 | 532 | |
e135f41b NC |
533 | obj_aout_external_syms (abfd) = NULL; |
534 | obj_aout_external_strings (abfd) = NULL; | |
535 | obj_aout_sym_hashes (abfd) = NULL; | |
536 | ||
116c20d2 | 537 | if (! NAME (aout, make_sections) (abfd)) |
e135f41b NC |
538 | return NULL; |
539 | ||
eea6121a AM |
540 | obj_datasec (abfd)->size = execp->a_data; |
541 | obj_bsssec (abfd)->size = execp->a_bss; | |
e135f41b NC |
542 | |
543 | obj_textsec (abfd)->flags = | |
544 | (execp->a_trsize != 0 | |
545 | ? (SEC_ALLOC | SEC_LOAD | SEC_CODE | SEC_HAS_CONTENTS | SEC_RELOC) | |
546 | : (SEC_ALLOC | SEC_LOAD | SEC_CODE | SEC_HAS_CONTENTS)); | |
547 | obj_datasec (abfd)->flags = | |
548 | (execp->a_drsize != 0 | |
549 | ? (SEC_ALLOC | SEC_LOAD | SEC_DATA | SEC_HAS_CONTENTS | SEC_RELOC) | |
550 | : (SEC_ALLOC | SEC_LOAD | SEC_DATA | SEC_HAS_CONTENTS)); | |
551 | obj_bsssec (abfd)->flags = SEC_ALLOC; | |
552 | ||
553 | #ifdef THIS_IS_ONLY_DOCUMENTATION | |
554 | /* The common code can't fill in these things because they depend | |
555 | on either the start address of the text segment, the rounding | |
556 | up of virtual addresses between segments, or the starting file | |
557 | position of the text segment -- all of which varies among different | |
558 | versions of a.out. */ | |
559 | ||
560 | /* Call back to the format-dependent code to fill in the rest of the | |
561 | fields and do any further cleanup. Things that should be filled | |
562 | in by the callback: */ | |
e135f41b NC |
563 | struct exec *execp = exec_hdr (abfd); |
564 | ||
565 | obj_textsec (abfd)->size = N_TXTSIZE(*execp); | |
116c20d2 | 566 | /* Data and bss are already filled in since they're so standard. */ |
e135f41b | 567 | |
116c20d2 | 568 | /* The virtual memory addresses of the sections. */ |
e135f41b NC |
569 | obj_textsec (abfd)->vma = N_TXTADDR(*execp); |
570 | obj_datasec (abfd)->vma = N_DATADDR(*execp); | |
571 | obj_bsssec (abfd)->vma = N_BSSADDR(*execp); | |
572 | ||
116c20d2 | 573 | /* The file offsets of the sections. */ |
e135f41b NC |
574 | obj_textsec (abfd)->filepos = N_TXTOFF(*execp); |
575 | obj_datasec (abfd)->filepos = N_DATOFF(*execp); | |
576 | ||
116c20d2 | 577 | /* The file offsets of the relocation info. */ |
e135f41b NC |
578 | obj_textsec (abfd)->rel_filepos = N_TRELOFF(*execp); |
579 | obj_datasec (abfd)->rel_filepos = N_DRELOFF(*execp); | |
580 | ||
581 | /* The file offsets of the string table and symbol table. */ | |
582 | obj_str_filepos (abfd) = N_STROFF (*execp); | |
583 | obj_sym_filepos (abfd) = N_SYMOFF (*execp); | |
584 | ||
585 | /* Determine the architecture and machine type of the object file. */ | |
586 | abfd->obj_arch = bfd_arch_obscure; | |
587 | ||
588 | adata(abfd)->page_size = TARGET_PAGE_SIZE; | |
589 | adata(abfd)->segment_size = SEGMENT_SIZE; | |
590 | adata(abfd)->exec_bytes_size = EXEC_BYTES_SIZE; | |
591 | ||
592 | return abfd->xvec; | |
593 | ||
594 | /* The architecture is encoded in various ways in various a.out variants, | |
595 | or is not encoded at all in some of them. The relocation size depends | |
596 | on the architecture and the a.out variant. Finally, the return value | |
597 | is the bfd_target vector in use. If an error occurs, return zero and | |
598 | set bfd_error to the appropriate error code. | |
599 | ||
600 | Formats such as b.out, which have additional fields in the a.out | |
601 | header, should cope with them in this callback as well. */ | |
116c20d2 | 602 | #endif /* DOCUMENTATION */ |
e135f41b NC |
603 | |
604 | result = (*callback_to_real_object_p)(abfd); | |
605 | ||
606 | /* Now that the segment addresses have been worked out, take a better | |
607 | guess at whether the file is executable. If the entry point | |
608 | is within the text segment, assume it is. (This makes files | |
609 | executable even if their entry point address is 0, as long as | |
610 | their text starts at zero.). | |
611 | ||
612 | This test had to be changed to deal with systems where the text segment | |
613 | runs at a different location than the default. The problem is that the | |
614 | entry address can appear to be outside the text segment, thus causing an | |
615 | erroneous conclusion that the file isn't executable. | |
616 | ||
617 | To fix this, we now accept any non-zero entry point as an indication of | |
618 | executability. This will work most of the time, since only the linker | |
619 | sets the entry point, and that is likely to be non-zero for most systems. */ | |
620 | ||
621 | if (execp->a_entry != 0 | |
622 | || (execp->a_entry >= obj_textsec(abfd)->vma | |
eea6121a | 623 | && execp->a_entry < obj_textsec(abfd)->vma + obj_textsec(abfd)->size)) |
e135f41b NC |
624 | abfd->flags |= EXEC_P; |
625 | #ifdef STAT_FOR_EXEC | |
626 | else | |
627 | { | |
628 | struct stat stat_buf; | |
629 | ||
630 | /* The original heuristic doesn't work in some important cases. | |
631 | The a.out file has no information about the text start | |
632 | address. For files (like kernels) linked to non-standard | |
633 | addresses (ld -Ttext nnn) the entry point may not be between | |
634 | the default text start (obj_textsec(abfd)->vma) and | |
635 | (obj_textsec(abfd)->vma) + text size. This is not just a mach | |
636 | issue. Many kernels are loaded at non standard addresses. */ | |
637 | if (abfd->iostream != NULL | |
638 | && (abfd->flags & BFD_IN_MEMORY) == 0 | |
639 | && (fstat(fileno((FILE *) (abfd->iostream)), &stat_buf) == 0) | |
640 | && ((stat_buf.st_mode & 0111) != 0)) | |
641 | abfd->flags |= EXEC_P; | |
642 | } | |
643 | #endif /* STAT_FOR_EXEC */ | |
644 | ||
0e71e495 | 645 | if (!result) |
e135f41b NC |
646 | { |
647 | free (rawptr); | |
648 | abfd->tdata.aout_data = oldrawptr; | |
649 | } | |
650 | return result; | |
651 | } | |
652 | ||
116c20d2 | 653 | /* Initialize ABFD for use with a.out files. */ |
e135f41b | 654 | |
b34976b6 | 655 | bfd_boolean |
116c20d2 | 656 | NAME (aout, mkobject) (bfd *abfd) |
e135f41b NC |
657 | { |
658 | struct aout_data_struct *rawptr; | |
dc810e39 | 659 | bfd_size_type amt = sizeof (struct aout_data_struct); |
e135f41b NC |
660 | |
661 | bfd_set_error (bfd_error_system_call); | |
662 | ||
116c20d2 NC |
663 | /* Use an intermediate variable for clarity. */ |
664 | rawptr = bfd_zalloc (abfd, amt); | |
e135f41b NC |
665 | |
666 | if (rawptr == NULL) | |
b34976b6 | 667 | return FALSE; |
e135f41b NC |
668 | |
669 | abfd->tdata.aout_data = rawptr; | |
670 | exec_hdr (abfd) = &(rawptr->e); | |
671 | ||
116c20d2 NC |
672 | obj_textsec (abfd) = NULL; |
673 | obj_datasec (abfd) = NULL; | |
674 | obj_bsssec (abfd) = NULL; | |
e135f41b | 675 | |
b34976b6 | 676 | return TRUE; |
e135f41b NC |
677 | } |
678 | ||
116c20d2 NC |
679 | /* Keep track of machine architecture and machine type for |
680 | a.out's. Return the <<machine_type>> for a particular | |
681 | architecture and machine, or <<M_UNKNOWN>> if that exact architecture | |
682 | and machine can't be represented in a.out format. | |
e135f41b | 683 | |
116c20d2 NC |
684 | If the architecture is understood, machine type 0 (default) |
685 | is always understood. */ | |
e135f41b NC |
686 | |
687 | enum machine_type | |
116c20d2 NC |
688 | NAME (aout, machine_type) (enum bfd_architecture arch, |
689 | unsigned long machine, | |
690 | bfd_boolean *unknown) | |
e135f41b NC |
691 | { |
692 | enum machine_type arch_flags; | |
693 | ||
694 | arch_flags = M_UNKNOWN; | |
b34976b6 | 695 | *unknown = TRUE; |
e135f41b NC |
696 | |
697 | switch (arch) | |
698 | { | |
699 | case bfd_arch_sparc: | |
700 | if (machine == 0 | |
701 | || machine == bfd_mach_sparc | |
702 | || machine == bfd_mach_sparc_sparclite | |
703 | || machine == bfd_mach_sparc_v9) | |
704 | arch_flags = M_SPARC; | |
705 | else if (machine == bfd_mach_sparc_sparclet) | |
706 | arch_flags = M_SPARCLET; | |
707 | break; | |
708 | ||
709 | case bfd_arch_m68k: | |
710 | switch (machine) | |
711 | { | |
712 | case 0: arch_flags = M_68010; break; | |
b34976b6 | 713 | case bfd_mach_m68000: arch_flags = M_UNKNOWN; *unknown = FALSE; break; |
e135f41b NC |
714 | case bfd_mach_m68010: arch_flags = M_68010; break; |
715 | case bfd_mach_m68020: arch_flags = M_68020; break; | |
716 | default: arch_flags = M_UNKNOWN; break; | |
717 | } | |
718 | break; | |
719 | ||
720 | case bfd_arch_i386: | |
250d94fd AM |
721 | if (machine == 0 |
722 | || machine == bfd_mach_i386_i386 | |
723 | || machine == bfd_mach_i386_i386_intel_syntax) | |
724 | arch_flags = M_386; | |
e135f41b NC |
725 | break; |
726 | ||
e135f41b NC |
727 | case bfd_arch_arm: |
728 | if (machine == 0) arch_flags = M_ARM; | |
729 | break; | |
730 | ||
731 | case bfd_arch_mips: | |
732 | switch (machine) | |
733 | { | |
734 | case 0: | |
735 | case 2000: | |
736 | case bfd_mach_mips3000: | |
737 | arch_flags = M_MIPS1; | |
738 | break; | |
116c20d2 | 739 | case bfd_mach_mips4000: /* MIPS3 */ |
e135f41b | 740 | case bfd_mach_mips4400: |
116c20d2 NC |
741 | case bfd_mach_mips8000: /* MIPS4 */ |
742 | case bfd_mach_mips6000: /* Real MIPS2: */ | |
e135f41b NC |
743 | arch_flags = M_MIPS2; |
744 | break; | |
745 | default: | |
746 | arch_flags = M_UNKNOWN; | |
747 | break; | |
748 | } | |
749 | break; | |
750 | ||
751 | case bfd_arch_ns32k: | |
752 | switch (machine) | |
753 | { | |
754 | case 0: arch_flags = M_NS32532; break; | |
755 | case 32032: arch_flags = M_NS32032; break; | |
756 | case 32532: arch_flags = M_NS32532; break; | |
757 | default: arch_flags = M_UNKNOWN; break; | |
758 | } | |
759 | break; | |
760 | ||
761 | case bfd_arch_pdp11: | |
762 | /* TODO: arch_flags = M_PDP11; */ | |
b34976b6 | 763 | *unknown = FALSE; |
e135f41b NC |
764 | break; |
765 | ||
766 | case bfd_arch_vax: | |
b34976b6 | 767 | *unknown = FALSE; |
e135f41b | 768 | break; |
dc810e39 | 769 | |
e135f41b NC |
770 | default: |
771 | arch_flags = M_UNKNOWN; | |
772 | } | |
773 | ||
774 | if (arch_flags != M_UNKNOWN) | |
b34976b6 | 775 | *unknown = FALSE; |
e135f41b NC |
776 | |
777 | return arch_flags; | |
778 | } | |
779 | ||
116c20d2 NC |
780 | /* Set the architecture and the machine of the ABFD to the |
781 | values ARCH and MACHINE. Verify that @ABFD's format | |
782 | can support the architecture required. */ | |
e135f41b | 783 | |
b34976b6 | 784 | bfd_boolean |
116c20d2 NC |
785 | NAME (aout, set_arch_mach) (bfd *abfd, |
786 | enum bfd_architecture arch, | |
787 | unsigned long machine) | |
e135f41b NC |
788 | { |
789 | if (! bfd_default_set_arch_mach (abfd, arch, machine)) | |
b34976b6 | 790 | return FALSE; |
e135f41b NC |
791 | |
792 | if (arch != bfd_arch_unknown) | |
793 | { | |
b34976b6 | 794 | bfd_boolean unknown; |
e135f41b | 795 | |
116c20d2 | 796 | NAME (aout, machine_type) (arch, machine, &unknown); |
e135f41b | 797 | if (unknown) |
b34976b6 | 798 | return FALSE; |
e135f41b NC |
799 | } |
800 | ||
801 | obj_reloc_entry_size (abfd) = RELOC_SIZE; | |
802 | ||
803 | return (*aout_backend_info(abfd)->set_sizes) (abfd); | |
804 | } | |
805 | ||
806 | static void | |
116c20d2 | 807 | adjust_o_magic (bfd *abfd, struct internal_exec *execp) |
e135f41b NC |
808 | { |
809 | file_ptr pos = adata (abfd).exec_bytes_size; | |
810 | bfd_vma vma = 0; | |
811 | int pad = 0; | |
812 | ||
813 | /* Text. */ | |
814 | obj_textsec (abfd)->filepos = pos; | |
815 | if (! obj_textsec (abfd)->user_set_vma) | |
816 | obj_textsec (abfd)->vma = vma; | |
817 | else | |
818 | vma = obj_textsec (abfd)->vma; | |
819 | ||
eea6121a AM |
820 | pos += obj_textsec (abfd)->size; |
821 | vma += obj_textsec (abfd)->size; | |
e135f41b NC |
822 | |
823 | /* Data. */ | |
824 | if (!obj_datasec (abfd)->user_set_vma) | |
825 | { | |
eea6121a | 826 | obj_textsec (abfd)->size += pad; |
e135f41b NC |
827 | pos += pad; |
828 | vma += pad; | |
829 | obj_datasec (abfd)->vma = vma; | |
830 | } | |
831 | else | |
832 | vma = obj_datasec (abfd)->vma; | |
833 | obj_datasec (abfd)->filepos = pos; | |
eea6121a AM |
834 | pos += obj_datasec (abfd)->size; |
835 | vma += obj_datasec (abfd)->size; | |
e135f41b NC |
836 | |
837 | /* BSS. */ | |
838 | if (! obj_bsssec (abfd)->user_set_vma) | |
839 | { | |
eea6121a | 840 | obj_datasec (abfd)->size += pad; |
e135f41b NC |
841 | pos += pad; |
842 | vma += pad; | |
843 | obj_bsssec (abfd)->vma = vma; | |
844 | } | |
845 | else | |
846 | { | |
08da05b0 | 847 | /* The VMA of the .bss section is set by the VMA of the |
e135f41b NC |
848 | .data section plus the size of the .data section. We may |
849 | need to add padding bytes to make this true. */ | |
850 | pad = obj_bsssec (abfd)->vma - vma; | |
851 | if (pad > 0) | |
852 | { | |
eea6121a | 853 | obj_datasec (abfd)->size += pad; |
e135f41b NC |
854 | pos += pad; |
855 | } | |
856 | } | |
857 | obj_bsssec (abfd)->filepos = pos; | |
858 | ||
859 | /* Fix up the exec header. */ | |
eea6121a AM |
860 | execp->a_text = obj_textsec (abfd)->size; |
861 | execp->a_data = obj_datasec (abfd)->size; | |
862 | execp->a_bss = obj_bsssec (abfd)->size; | |
e135f41b NC |
863 | N_SET_MAGIC (*execp, OMAGIC); |
864 | } | |
865 | ||
866 | static void | |
116c20d2 | 867 | adjust_z_magic (bfd *abfd, struct internal_exec *execp) |
e135f41b NC |
868 | { |
869 | bfd_size_type data_pad, text_pad; | |
870 | file_ptr text_end; | |
dc810e39 | 871 | const struct aout_backend_data *abdp; |
e135f41b | 872 | int ztih; /* Nonzero if text includes exec header. */ |
dc810e39 | 873 | |
e135f41b NC |
874 | abdp = aout_backend_info (abfd); |
875 | ||
876 | /* Text. */ | |
877 | ztih = (abdp != NULL | |
878 | && (abdp->text_includes_header | |
879 | || obj_aout_subformat (abfd) == q_magic_format)); | |
880 | obj_textsec(abfd)->filepos = (ztih | |
881 | ? adata(abfd).exec_bytes_size | |
882 | : adata(abfd).zmagic_disk_block_size); | |
883 | if (! obj_textsec(abfd)->user_set_vma) | |
884 | { | |
885 | /* ?? Do we really need to check for relocs here? */ | |
886 | obj_textsec(abfd)->vma = ((abfd->flags & HAS_RELOC) | |
887 | ? 0 | |
888 | : (ztih | |
889 | ? (abdp->default_text_vma | |
890 | + adata (abfd).exec_bytes_size) | |
891 | : abdp->default_text_vma)); | |
892 | text_pad = 0; | |
893 | } | |
894 | else | |
895 | { | |
896 | /* The .text section is being loaded at an unusual address. We | |
897 | may need to pad it such that the .data section starts at a page | |
898 | boundary. */ | |
899 | if (ztih) | |
900 | text_pad = ((obj_textsec (abfd)->filepos - obj_textsec (abfd)->vma) | |
901 | & (adata (abfd).page_size - 1)); | |
902 | else | |
903 | text_pad = ((- obj_textsec (abfd)->vma) | |
904 | & (adata (abfd).page_size - 1)); | |
905 | } | |
906 | ||
907 | /* Find start of data. */ | |
908 | if (ztih) | |
909 | { | |
eea6121a | 910 | text_end = obj_textsec (abfd)->filepos + obj_textsec (abfd)->size; |
e135f41b NC |
911 | text_pad += BFD_ALIGN (text_end, adata (abfd).page_size) - text_end; |
912 | } | |
913 | else | |
914 | { | |
915 | /* Note that if page_size == zmagic_disk_block_size, then | |
916 | filepos == page_size, and this case is the same as the ztih | |
917 | case. */ | |
eea6121a | 918 | text_end = obj_textsec (abfd)->size; |
e135f41b NC |
919 | text_pad += BFD_ALIGN (text_end, adata (abfd).page_size) - text_end; |
920 | text_end += obj_textsec (abfd)->filepos; | |
921 | } | |
922 | ||
eea6121a | 923 | obj_textsec (abfd)->size += text_pad; |
e135f41b NC |
924 | text_end += text_pad; |
925 | ||
926 | /* Data. */ | |
927 | if (!obj_datasec(abfd)->user_set_vma) | |
928 | { | |
929 | bfd_vma vma; | |
eea6121a | 930 | vma = obj_textsec(abfd)->vma + obj_textsec(abfd)->size; |
e135f41b NC |
931 | obj_datasec(abfd)->vma = BFD_ALIGN (vma, adata(abfd).segment_size); |
932 | } | |
933 | if (abdp && abdp->zmagic_mapped_contiguous) | |
934 | { | |
935 | text_pad = (obj_datasec(abfd)->vma | |
936 | - obj_textsec(abfd)->vma | |
eea6121a AM |
937 | - obj_textsec(abfd)->size); |
938 | obj_textsec(abfd)->size += text_pad; | |
e135f41b NC |
939 | } |
940 | obj_datasec (abfd)->filepos = (obj_textsec (abfd)->filepos | |
eea6121a | 941 | + obj_textsec (abfd)->size); |
dc810e39 | 942 | |
e135f41b | 943 | /* Fix up exec header while we're at it. */ |
eea6121a | 944 | execp->a_text = obj_textsec(abfd)->size; |
e135f41b NC |
945 | if (ztih && (!abdp || (abdp && !abdp->exec_header_not_counted))) |
946 | execp->a_text += adata(abfd).exec_bytes_size; | |
a77e83b7 | 947 | N_SET_MAGIC (*execp, ZMAGIC); |
e135f41b NC |
948 | |
949 | /* Spec says data section should be rounded up to page boundary. */ | |
eea6121a AM |
950 | obj_datasec(abfd)->size |
951 | = align_power (obj_datasec(abfd)->size, | |
e135f41b | 952 | obj_bsssec(abfd)->alignment_power); |
eea6121a | 953 | execp->a_data = BFD_ALIGN (obj_datasec(abfd)->size, |
e135f41b | 954 | adata(abfd).page_size); |
eea6121a | 955 | data_pad = execp->a_data - obj_datasec(abfd)->size; |
e135f41b NC |
956 | |
957 | /* BSS. */ | |
958 | if (!obj_bsssec(abfd)->user_set_vma) | |
959 | obj_bsssec(abfd)->vma = (obj_datasec(abfd)->vma | |
eea6121a | 960 | + obj_datasec(abfd)->size); |
e135f41b NC |
961 | /* If the BSS immediately follows the data section and extra space |
962 | in the page is left after the data section, fudge data | |
963 | in the header so that the bss section looks smaller by that | |
964 | amount. We'll start the bss section there, and lie to the OS. | |
965 | (Note that a linker script, as well as the above assignment, | |
966 | could have explicitly set the BSS vma to immediately follow | |
967 | the data section.) */ | |
968 | if (align_power (obj_bsssec(abfd)->vma, obj_bsssec(abfd)->alignment_power) | |
eea6121a AM |
969 | == obj_datasec(abfd)->vma + obj_datasec(abfd)->size) |
970 | execp->a_bss = (data_pad > obj_bsssec(abfd)->size) ? 0 : | |
971 | obj_bsssec(abfd)->size - data_pad; | |
e135f41b | 972 | else |
eea6121a | 973 | execp->a_bss = obj_bsssec(abfd)->size; |
e135f41b NC |
974 | } |
975 | ||
976 | static void | |
116c20d2 | 977 | adjust_n_magic (bfd *abfd, struct internal_exec *execp) |
e135f41b NC |
978 | { |
979 | file_ptr pos = adata(abfd).exec_bytes_size; | |
980 | bfd_vma vma = 0; | |
981 | int pad; | |
dc810e39 | 982 | |
e135f41b NC |
983 | /* Text. */ |
984 | obj_textsec(abfd)->filepos = pos; | |
985 | if (!obj_textsec(abfd)->user_set_vma) | |
986 | obj_textsec(abfd)->vma = vma; | |
987 | else | |
988 | vma = obj_textsec(abfd)->vma; | |
eea6121a AM |
989 | pos += obj_textsec(abfd)->size; |
990 | vma += obj_textsec(abfd)->size; | |
e135f41b NC |
991 | |
992 | /* Data. */ | |
993 | obj_datasec(abfd)->filepos = pos; | |
994 | if (!obj_datasec(abfd)->user_set_vma) | |
995 | obj_datasec(abfd)->vma = BFD_ALIGN (vma, adata(abfd).segment_size); | |
996 | vma = obj_datasec(abfd)->vma; | |
dc810e39 | 997 | |
e135f41b | 998 | /* Since BSS follows data immediately, see if it needs alignment. */ |
eea6121a | 999 | vma += obj_datasec(abfd)->size; |
e135f41b | 1000 | pad = align_power (vma, obj_bsssec(abfd)->alignment_power) - vma; |
eea6121a AM |
1001 | obj_datasec(abfd)->size += pad; |
1002 | pos += obj_datasec(abfd)->size; | |
e135f41b NC |
1003 | |
1004 | /* BSS. */ | |
1005 | if (!obj_bsssec(abfd)->user_set_vma) | |
1006 | obj_bsssec(abfd)->vma = vma; | |
1007 | else | |
1008 | vma = obj_bsssec(abfd)->vma; | |
1009 | ||
1010 | /* Fix up exec header. */ | |
eea6121a AM |
1011 | execp->a_text = obj_textsec(abfd)->size; |
1012 | execp->a_data = obj_datasec(abfd)->size; | |
1013 | execp->a_bss = obj_bsssec(abfd)->size; | |
e135f41b NC |
1014 | N_SET_MAGIC (*execp, NMAGIC); |
1015 | } | |
1016 | ||
b34976b6 | 1017 | bfd_boolean |
116c20d2 NC |
1018 | NAME (aout, adjust_sizes_and_vmas) (bfd *abfd, |
1019 | bfd_size_type *text_size, | |
1020 | file_ptr * text_end ATTRIBUTE_UNUSED) | |
e135f41b NC |
1021 | { |
1022 | struct internal_exec *execp = exec_hdr (abfd); | |
1023 | ||
116c20d2 | 1024 | if (! NAME (aout, make_sections) (abfd)) |
b34976b6 | 1025 | return FALSE; |
e135f41b NC |
1026 | |
1027 | if (adata(abfd).magic != undecided_magic) | |
b34976b6 | 1028 | return TRUE; |
e135f41b | 1029 | |
eea6121a AM |
1030 | obj_textsec(abfd)->size = |
1031 | align_power(obj_textsec(abfd)->size, | |
e135f41b NC |
1032 | obj_textsec(abfd)->alignment_power); |
1033 | ||
eea6121a | 1034 | *text_size = obj_textsec (abfd)->size; |
e135f41b NC |
1035 | /* Rule (heuristic) for when to pad to a new page. Note that there |
1036 | are (at least) two ways demand-paged (ZMAGIC) files have been | |
1037 | handled. Most Berkeley-based systems start the text segment at | |
1038 | (TARGET_PAGE_SIZE). However, newer versions of SUNOS start the text | |
1039 | segment right after the exec header; the latter is counted in the | |
1040 | text segment size, and is paged in by the kernel with the rest of | |
1041 | the text. */ | |
1042 | ||
1043 | /* This perhaps isn't the right way to do this, but made it simpler for me | |
1044 | to understand enough to implement it. Better would probably be to go | |
1045 | right from BFD flags to alignment/positioning characteristics. But the | |
1046 | old code was sloppy enough about handling the flags, and had enough | |
1047 | other magic, that it was a little hard for me to understand. I think | |
1048 | I understand it better now, but I haven't time to do the cleanup this | |
1049 | minute. */ | |
1050 | ||
1051 | if (abfd->flags & WP_TEXT) | |
1052 | adata(abfd).magic = n_magic; | |
1053 | else | |
1054 | adata(abfd).magic = o_magic; | |
1055 | ||
1056 | #ifdef BFD_AOUT_DEBUG /* requires gcc2 */ | |
1057 | #if __GNUC__ >= 2 | |
1058 | fprintf (stderr, "%s text=<%x,%x,%x> data=<%x,%x,%x> bss=<%x,%x,%x>\n", | |
1059 | ({ char *str; | |
1060 | switch (adata(abfd).magic) { | |
1061 | case n_magic: str = "NMAGIC"; break; | |
1062 | case o_magic: str = "OMAGIC"; break; | |
1063 | case z_magic: str = "ZMAGIC"; break; | |
1064 | default: abort (); | |
1065 | } | |
1066 | str; | |
1067 | }), | |
eea6121a | 1068 | obj_textsec(abfd)->vma, obj_textsec(abfd)->size, |
e135f41b | 1069 | obj_textsec(abfd)->alignment_power, |
eea6121a | 1070 | obj_datasec(abfd)->vma, obj_datasec(abfd)->size, |
e135f41b | 1071 | obj_datasec(abfd)->alignment_power, |
eea6121a | 1072 | obj_bsssec(abfd)->vma, obj_bsssec(abfd)->size, |
e135f41b NC |
1073 | obj_bsssec(abfd)->alignment_power); |
1074 | #endif | |
1075 | #endif | |
1076 | ||
1077 | switch (adata(abfd).magic) | |
1078 | { | |
1079 | case o_magic: | |
1080 | adjust_o_magic (abfd, execp); | |
1081 | break; | |
1082 | case z_magic: | |
1083 | adjust_z_magic (abfd, execp); | |
1084 | break; | |
1085 | case n_magic: | |
1086 | adjust_n_magic (abfd, execp); | |
1087 | break; | |
1088 | default: | |
1089 | abort (); | |
1090 | } | |
1091 | ||
1092 | #ifdef BFD_AOUT_DEBUG | |
1093 | fprintf (stderr, " text=<%x,%x,%x> data=<%x,%x,%x> bss=<%x,%x>\n", | |
eea6121a | 1094 | obj_textsec(abfd)->vma, obj_textsec(abfd)->size, |
e135f41b | 1095 | obj_textsec(abfd)->filepos, |
eea6121a | 1096 | obj_datasec(abfd)->vma, obj_datasec(abfd)->size, |
e135f41b | 1097 | obj_datasec(abfd)->filepos, |
eea6121a | 1098 | obj_bsssec(abfd)->vma, obj_bsssec(abfd)->size); |
e135f41b NC |
1099 | #endif |
1100 | ||
b34976b6 | 1101 | return TRUE; |
e135f41b NC |
1102 | } |
1103 | ||
116c20d2 | 1104 | /* Called by the BFD in response to a bfd_make_section request. */ |
e135f41b | 1105 | |
b34976b6 | 1106 | bfd_boolean |
116c20d2 | 1107 | NAME (aout, new_section_hook) (bfd *abfd, asection *newsect) |
e135f41b | 1108 | { |
116c20d2 | 1109 | /* Align to double at least. */ |
e135f41b NC |
1110 | newsect->alignment_power = bfd_get_arch_info(abfd)->section_align_power; |
1111 | ||
e135f41b NC |
1112 | if (bfd_get_format (abfd) == bfd_object) |
1113 | { | |
1114 | if (obj_textsec (abfd) == NULL | |
f592407e | 1115 | && !strcmp (newsect->name, ".text")) |
e135f41b NC |
1116 | { |
1117 | obj_textsec(abfd)= newsect; | |
1118 | newsect->target_index = N_TEXT; | |
e135f41b | 1119 | } |
f592407e AM |
1120 | else if (obj_datasec (abfd) == NULL |
1121 | && !strcmp (newsect->name, ".data")) | |
1122 | { | |
1123 | obj_datasec (abfd) = newsect; | |
1124 | newsect->target_index = N_DATA; | |
1125 | } | |
1126 | else if (obj_bsssec (abfd) == NULL | |
1127 | && !strcmp (newsect->name, ".bss")) | |
1128 | { | |
1129 | obj_bsssec (abfd) = newsect; | |
1130 | newsect->target_index = N_BSS; | |
1131 | } | |
1132 | } | |
e135f41b | 1133 | |
116c20d2 | 1134 | /* We allow more than three sections internally. */ |
f592407e | 1135 | return _bfd_generic_new_section_hook (abfd, newsect); |
e135f41b NC |
1136 | } |
1137 | ||
b34976b6 | 1138 | bfd_boolean |
116c20d2 NC |
1139 | NAME (aout, set_section_contents) (bfd *abfd, |
1140 | sec_ptr section, | |
1141 | const void * location, | |
1142 | file_ptr offset, | |
1143 | bfd_size_type count) | |
e135f41b NC |
1144 | { |
1145 | file_ptr text_end; | |
1146 | bfd_size_type text_size; | |
1147 | ||
1148 | if (! abfd->output_has_begun) | |
1149 | { | |
116c20d2 | 1150 | if (! NAME (aout, adjust_sizes_and_vmas) (abfd, & text_size, & text_end)) |
b34976b6 | 1151 | return FALSE; |
e135f41b NC |
1152 | } |
1153 | ||
1154 | if (section == obj_bsssec (abfd)) | |
1155 | { | |
1156 | bfd_set_error (bfd_error_no_contents); | |
b34976b6 | 1157 | return FALSE; |
e135f41b NC |
1158 | } |
1159 | ||
1160 | if (section != obj_textsec (abfd) | |
1161 | && section != obj_datasec (abfd)) | |
1162 | { | |
1163 | (*_bfd_error_handler) | |
1164 | ("%s: can not represent section `%s' in a.out object file format", | |
1165 | bfd_get_filename (abfd), bfd_get_section_name (abfd, section)); | |
1166 | bfd_set_error (bfd_error_nonrepresentable_section); | |
b34976b6 | 1167 | return FALSE; |
e135f41b NC |
1168 | } |
1169 | ||
1170 | if (count != 0) | |
1171 | { | |
1172 | if (bfd_seek (abfd, section->filepos + offset, SEEK_SET) != 0 | |
dc810e39 | 1173 | || bfd_bwrite (location, count, abfd) != count) |
b34976b6 | 1174 | return FALSE; |
e135f41b NC |
1175 | } |
1176 | ||
b34976b6 | 1177 | return TRUE; |
e135f41b NC |
1178 | } |
1179 | \f | |
1180 | /* Read the external symbols from an a.out file. */ | |
1181 | ||
b34976b6 | 1182 | static bfd_boolean |
116c20d2 | 1183 | aout_get_external_symbols (bfd *abfd) |
e135f41b | 1184 | { |
116c20d2 | 1185 | if (obj_aout_external_syms (abfd) == NULL) |
e135f41b NC |
1186 | { |
1187 | bfd_size_type count; | |
1188 | struct external_nlist *syms; | |
1189 | ||
1190 | count = exec_hdr (abfd)->a_syms / EXTERNAL_NLIST_SIZE; | |
1191 | ||
1192 | #ifdef USE_MMAP | |
82e51918 AM |
1193 | if (! bfd_get_file_window (abfd, obj_sym_filepos (abfd), |
1194 | exec_hdr (abfd)->a_syms, | |
b34976b6 AM |
1195 | &obj_aout_sym_window (abfd), TRUE)) |
1196 | return FALSE; | |
e135f41b NC |
1197 | syms = (struct external_nlist *) obj_aout_sym_window (abfd).data; |
1198 | #else | |
1199 | /* We allocate using malloc to make the values easy to free | |
1200 | later on. If we put them on the objalloc it might not be | |
1201 | possible to free them. */ | |
116c20d2 NC |
1202 | syms = bfd_malloc (count * EXTERNAL_NLIST_SIZE); |
1203 | if (syms == NULL && count != 0) | |
b34976b6 | 1204 | return FALSE; |
e135f41b NC |
1205 | |
1206 | if (bfd_seek (abfd, obj_sym_filepos (abfd), SEEK_SET) != 0 | |
dc810e39 | 1207 | || (bfd_bread (syms, exec_hdr (abfd)->a_syms, abfd) |
e135f41b NC |
1208 | != exec_hdr (abfd)->a_syms)) |
1209 | { | |
1210 | free (syms); | |
b34976b6 | 1211 | return FALSE; |
e135f41b NC |
1212 | } |
1213 | #endif | |
1214 | ||
1215 | obj_aout_external_syms (abfd) = syms; | |
1216 | obj_aout_external_sym_count (abfd) = count; | |
1217 | } | |
dc810e39 | 1218 | |
e135f41b NC |
1219 | if (obj_aout_external_strings (abfd) == NULL |
1220 | && exec_hdr (abfd)->a_syms != 0) | |
1221 | { | |
1222 | unsigned char string_chars[BYTES_IN_LONG]; | |
1223 | bfd_size_type stringsize; | |
1224 | char *strings; | |
1225 | ||
1226 | /* Get the size of the strings. */ | |
1227 | if (bfd_seek (abfd, obj_str_filepos (abfd), SEEK_SET) != 0 | |
116c20d2 | 1228 | || (bfd_bread ((void *) string_chars, (bfd_size_type) BYTES_IN_LONG, |
dc810e39 | 1229 | abfd) != BYTES_IN_LONG)) |
b34976b6 | 1230 | return FALSE; |
dc810e39 | 1231 | stringsize = H_GET_32 (abfd, string_chars); |
e135f41b NC |
1232 | |
1233 | #ifdef USE_MMAP | |
82e51918 | 1234 | if (! bfd_get_file_window (abfd, obj_str_filepos (abfd), stringsize, |
b34976b6 AM |
1235 | &obj_aout_string_window (abfd), TRUE)) |
1236 | return FALSE; | |
e135f41b NC |
1237 | strings = (char *) obj_aout_string_window (abfd).data; |
1238 | #else | |
116c20d2 | 1239 | strings = bfd_malloc (stringsize + 1); |
e135f41b | 1240 | if (strings == NULL) |
b34976b6 | 1241 | return FALSE; |
e135f41b NC |
1242 | |
1243 | /* Skip space for the string count in the buffer for convenience | |
1244 | when using indexes. */ | |
dc810e39 | 1245 | if (bfd_bread (strings + 4, stringsize - 4, abfd) != stringsize - 4) |
e135f41b NC |
1246 | { |
1247 | free (strings); | |
b34976b6 | 1248 | return FALSE; |
e135f41b NC |
1249 | } |
1250 | #endif | |
e135f41b NC |
1251 | /* Ensure that a zero index yields an empty string. */ |
1252 | strings[0] = '\0'; | |
1253 | ||
1254 | strings[stringsize - 1] = 0; | |
1255 | ||
1256 | obj_aout_external_strings (abfd) = strings; | |
1257 | obj_aout_external_string_size (abfd) = stringsize; | |
1258 | } | |
1259 | ||
b34976b6 | 1260 | return TRUE; |
e135f41b NC |
1261 | } |
1262 | ||
1263 | /* Translate an a.out symbol into a BFD symbol. The desc, other, type | |
1264 | and symbol->value fields of CACHE_PTR will be set from the a.out | |
1265 | nlist structure. This function is responsible for setting | |
1266 | symbol->flags and symbol->section, and adjusting symbol->value. */ | |
1267 | ||
b34976b6 | 1268 | static bfd_boolean |
116c20d2 NC |
1269 | translate_from_native_sym_flags (bfd *abfd, |
1270 | aout_symbol_type *cache_ptr) | |
e135f41b NC |
1271 | { |
1272 | flagword visible; | |
1273 | ||
1274 | if (cache_ptr->type == N_FN) | |
1275 | { | |
1276 | asection *sec; | |
1277 | ||
1278 | /* This is a debugging symbol. */ | |
e135f41b NC |
1279 | cache_ptr->symbol.flags = BSF_DEBUGGING; |
1280 | ||
1281 | /* Work out the symbol section. */ | |
1282 | switch (cache_ptr->type & N_TYPE) | |
1283 | { | |
1284 | case N_TEXT: | |
1285 | case N_FN: | |
1286 | sec = obj_textsec (abfd); | |
1287 | break; | |
1288 | case N_DATA: | |
1289 | sec = obj_datasec (abfd); | |
1290 | break; | |
1291 | case N_BSS: | |
1292 | sec = obj_bsssec (abfd); | |
1293 | break; | |
1294 | default: | |
1295 | case N_ABS: | |
1296 | sec = bfd_abs_section_ptr; | |
1297 | break; | |
1298 | } | |
1299 | ||
1300 | cache_ptr->symbol.section = sec; | |
1301 | cache_ptr->symbol.value -= sec->vma; | |
1302 | ||
b34976b6 | 1303 | return TRUE; |
e135f41b NC |
1304 | } |
1305 | ||
1306 | /* Get the default visibility. This does not apply to all types, so | |
1307 | we just hold it in a local variable to use if wanted. */ | |
1308 | if ((cache_ptr->type & N_EXT) == 0) | |
1309 | visible = BSF_LOCAL; | |
1310 | else | |
1311 | visible = BSF_GLOBAL; | |
1312 | ||
1313 | switch (cache_ptr->type) | |
1314 | { | |
1315 | default: | |
1316 | case N_ABS: case N_ABS | N_EXT: | |
1317 | cache_ptr->symbol.section = bfd_abs_section_ptr; | |
1318 | cache_ptr->symbol.flags = visible; | |
1319 | break; | |
1320 | ||
1321 | case N_UNDF | N_EXT: | |
1322 | if (cache_ptr->symbol.value != 0) | |
1323 | { | |
1324 | /* This is a common symbol. */ | |
1325 | cache_ptr->symbol.flags = BSF_GLOBAL; | |
1326 | cache_ptr->symbol.section = bfd_com_section_ptr; | |
1327 | } | |
1328 | else | |
1329 | { | |
1330 | cache_ptr->symbol.flags = 0; | |
1331 | cache_ptr->symbol.section = bfd_und_section_ptr; | |
1332 | } | |
1333 | break; | |
1334 | ||
1335 | case N_TEXT: case N_TEXT | N_EXT: | |
1336 | cache_ptr->symbol.section = obj_textsec (abfd); | |
1337 | cache_ptr->symbol.value -= cache_ptr->symbol.section->vma; | |
1338 | cache_ptr->symbol.flags = visible; | |
1339 | break; | |
1340 | ||
1341 | case N_DATA: case N_DATA | N_EXT: | |
1342 | cache_ptr->symbol.section = obj_datasec (abfd); | |
1343 | cache_ptr->symbol.value -= cache_ptr->symbol.section->vma; | |
1344 | cache_ptr->symbol.flags = visible; | |
1345 | break; | |
1346 | ||
1347 | case N_BSS: case N_BSS | N_EXT: | |
1348 | cache_ptr->symbol.section = obj_bsssec (abfd); | |
1349 | cache_ptr->symbol.value -= cache_ptr->symbol.section->vma; | |
1350 | cache_ptr->symbol.flags = visible; | |
1351 | break; | |
1352 | } | |
1353 | ||
b34976b6 | 1354 | return TRUE; |
e135f41b NC |
1355 | } |
1356 | ||
1357 | /* Set the fields of SYM_POINTER according to CACHE_PTR. */ | |
1358 | ||
b34976b6 | 1359 | static bfd_boolean |
116c20d2 NC |
1360 | translate_to_native_sym_flags (bfd *abfd, |
1361 | asymbol *cache_ptr, | |
1362 | struct external_nlist *sym_pointer) | |
e135f41b NC |
1363 | { |
1364 | bfd_vma value = cache_ptr->value; | |
1365 | asection *sec; | |
1366 | bfd_vma off; | |
1367 | ||
1368 | /* Mask out any existing type bits in case copying from one section | |
1369 | to another. */ | |
1370 | sym_pointer->e_type[0] &= ~N_TYPE; | |
1371 | ||
1372 | sec = bfd_get_section (cache_ptr); | |
1373 | off = 0; | |
1374 | ||
1375 | if (sec == NULL) | |
1376 | { | |
1377 | /* This case occurs, e.g., for the *DEBUG* section of a COFF | |
1378 | file. */ | |
1379 | (*_bfd_error_handler) | |
d003868e AM |
1380 | ("%B: can not represent section for symbol `%s' in a.out object file format", |
1381 | abfd, cache_ptr->name != NULL ? cache_ptr->name : "*unknown*"); | |
e135f41b | 1382 | bfd_set_error (bfd_error_nonrepresentable_section); |
b34976b6 | 1383 | return FALSE; |
e135f41b NC |
1384 | } |
1385 | ||
1386 | if (sec->output_section != NULL) | |
1387 | { | |
1388 | off = sec->output_offset; | |
1389 | sec = sec->output_section; | |
1390 | } | |
1391 | ||
1392 | if (bfd_is_abs_section (sec)) | |
1393 | sym_pointer->e_type[0] |= N_ABS; | |
1394 | else if (sec == obj_textsec (abfd)) | |
1395 | sym_pointer->e_type[0] |= N_TEXT; | |
1396 | else if (sec == obj_datasec (abfd)) | |
1397 | sym_pointer->e_type[0] |= N_DATA; | |
1398 | else if (sec == obj_bsssec (abfd)) | |
1399 | sym_pointer->e_type[0] |= N_BSS; | |
1400 | else if (bfd_is_und_section (sec)) | |
1401 | sym_pointer->e_type[0] = N_UNDF | N_EXT; | |
1402 | else if (bfd_is_com_section (sec)) | |
1403 | sym_pointer->e_type[0] = N_UNDF | N_EXT; | |
1404 | else | |
1405 | { | |
1406 | (*_bfd_error_handler) | |
d003868e AM |
1407 | ("%B: can not represent section `%A' in a.out object file format", |
1408 | abfd, sec); | |
e135f41b | 1409 | bfd_set_error (bfd_error_nonrepresentable_section); |
b34976b6 | 1410 | return FALSE; |
e135f41b NC |
1411 | } |
1412 | ||
1413 | /* Turn the symbol from section relative to absolute again */ | |
1414 | value += sec->vma + off; | |
1415 | ||
1416 | if ((cache_ptr->flags & BSF_DEBUGGING) != 0) | |
1417 | sym_pointer->e_type[0] = ((aout_symbol_type *) cache_ptr)->type; | |
1418 | else if ((cache_ptr->flags & BSF_GLOBAL) != 0) | |
1419 | sym_pointer->e_type[0] |= N_EXT; | |
1420 | ||
e135f41b NC |
1421 | PUT_WORD(abfd, value, sym_pointer->e_value); |
1422 | ||
b34976b6 | 1423 | return TRUE; |
e135f41b NC |
1424 | } |
1425 | \f | |
1426 | /* Native-level interface to symbols. */ | |
1427 | ||
1428 | asymbol * | |
116c20d2 | 1429 | NAME (aout, make_empty_symbol) (bfd *abfd) |
e135f41b | 1430 | { |
dc810e39 | 1431 | bfd_size_type amt = sizeof (aout_symbol_type); |
d3ce72d0 | 1432 | aout_symbol_type *new_symbol_type = bfd_zalloc (abfd, amt); |
116c20d2 | 1433 | |
d3ce72d0 | 1434 | if (!new_symbol_type) |
e135f41b | 1435 | return NULL; |
d3ce72d0 | 1436 | new_symbol_type->symbol.the_bfd = abfd; |
e135f41b | 1437 | |
d3ce72d0 | 1438 | return &new_symbol_type->symbol; |
e135f41b NC |
1439 | } |
1440 | ||
1441 | /* Translate a set of internal symbols into external symbols. */ | |
1442 | ||
b34976b6 | 1443 | bfd_boolean |
116c20d2 NC |
1444 | NAME (aout, translate_symbol_table) (bfd *abfd, |
1445 | aout_symbol_type *in, | |
1446 | struct external_nlist *ext, | |
1447 | bfd_size_type count, | |
1448 | char *str, | |
1449 | bfd_size_type strsize, | |
1450 | bfd_boolean dynamic) | |
e135f41b NC |
1451 | { |
1452 | struct external_nlist *ext_end; | |
1453 | ||
1454 | ext_end = ext + count; | |
1455 | for (; ext < ext_end; ext++, in++) | |
1456 | { | |
1457 | bfd_vma x; | |
1458 | ||
1459 | x = GET_WORD (abfd, ext->e_strx); | |
1460 | in->symbol.the_bfd = abfd; | |
1461 | ||
1462 | /* For the normal symbols, the zero index points at the number | |
1463 | of bytes in the string table but is to be interpreted as the | |
1464 | null string. For the dynamic symbols, the number of bytes in | |
1465 | the string table is stored in the __DYNAMIC structure and the | |
1466 | zero index points at an actual string. */ | |
1467 | if (x == 0 && ! dynamic) | |
1468 | in->symbol.name = ""; | |
1469 | else if (x < strsize) | |
1470 | in->symbol.name = str + x; | |
1471 | else | |
b34976b6 | 1472 | return FALSE; |
e135f41b NC |
1473 | |
1474 | in->symbol.value = GET_SWORD (abfd, ext->e_value); | |
116c20d2 | 1475 | /* TODO: is 0 a safe value here? */ |
e135f41b NC |
1476 | in->desc = 0; |
1477 | in->other = 0; | |
dc810e39 | 1478 | in->type = H_GET_8 (abfd, ext->e_type); |
e135f41b NC |
1479 | in->symbol.udata.p = NULL; |
1480 | ||
1481 | if (! translate_from_native_sym_flags (abfd, in)) | |
b34976b6 | 1482 | return FALSE; |
e135f41b NC |
1483 | |
1484 | if (dynamic) | |
1485 | in->symbol.flags |= BSF_DYNAMIC; | |
1486 | } | |
1487 | ||
b34976b6 | 1488 | return TRUE; |
e135f41b NC |
1489 | } |
1490 | ||
1491 | /* We read the symbols into a buffer, which is discarded when this | |
1492 | function exits. We read the strings into a buffer large enough to | |
116c20d2 | 1493 | hold them all plus all the cached symbol entries. */ |
e135f41b | 1494 | |
b34976b6 | 1495 | bfd_boolean |
116c20d2 | 1496 | NAME (aout, slurp_symbol_table) (bfd *abfd) |
e135f41b NC |
1497 | { |
1498 | struct external_nlist *old_external_syms; | |
1499 | aout_symbol_type *cached; | |
dc810e39 | 1500 | bfd_size_type cached_size; |
e135f41b | 1501 | |
116c20d2 NC |
1502 | /* If there's no work to be done, don't do any. */ |
1503 | if (obj_aout_symbols (abfd) != NULL) | |
b34976b6 | 1504 | return TRUE; |
e135f41b NC |
1505 | |
1506 | old_external_syms = obj_aout_external_syms (abfd); | |
1507 | ||
1508 | if (! aout_get_external_symbols (abfd)) | |
b34976b6 | 1509 | return FALSE; |
e135f41b | 1510 | |
dc810e39 AM |
1511 | cached_size = obj_aout_external_sym_count (abfd); |
1512 | cached_size *= sizeof (aout_symbol_type); | |
116c20d2 | 1513 | cached = bfd_zmalloc (cached_size); |
e135f41b | 1514 | if (cached == NULL && cached_size != 0) |
b34976b6 | 1515 | return FALSE; |
e135f41b NC |
1516 | |
1517 | /* Convert from external symbol information to internal. */ | |
116c20d2 | 1518 | if (! (NAME (aout, translate_symbol_table) |
e135f41b NC |
1519 | (abfd, cached, |
1520 | obj_aout_external_syms (abfd), | |
1521 | obj_aout_external_sym_count (abfd), | |
1522 | obj_aout_external_strings (abfd), | |
1523 | obj_aout_external_string_size (abfd), | |
b34976b6 | 1524 | FALSE))) |
e135f41b NC |
1525 | { |
1526 | free (cached); | |
b34976b6 | 1527 | return FALSE; |
e135f41b NC |
1528 | } |
1529 | ||
1530 | bfd_get_symcount (abfd) = obj_aout_external_sym_count (abfd); | |
1531 | ||
1532 | obj_aout_symbols (abfd) = cached; | |
1533 | ||
1534 | /* It is very likely that anybody who calls this function will not | |
1535 | want the external symbol information, so if it was allocated | |
1536 | because of our call to aout_get_external_symbols, we free it up | |
1537 | right away to save space. */ | |
116c20d2 NC |
1538 | if (old_external_syms == NULL |
1539 | && obj_aout_external_syms (abfd) != NULL) | |
e135f41b NC |
1540 | { |
1541 | #ifdef USE_MMAP | |
1542 | bfd_free_window (&obj_aout_sym_window (abfd)); | |
1543 | #else | |
1544 | free (obj_aout_external_syms (abfd)); | |
1545 | #endif | |
1546 | obj_aout_external_syms (abfd) = NULL; | |
1547 | } | |
1548 | ||
b34976b6 | 1549 | return TRUE; |
e135f41b NC |
1550 | } |
1551 | \f | |
1552 | /* We use a hash table when writing out symbols so that we only write | |
1553 | out a particular string once. This helps particularly when the | |
1554 | linker writes out stabs debugging entries, because each different | |
1555 | contributing object file tends to have many duplicate stabs | |
1556 | strings. | |
1557 | ||
1558 | This hash table code breaks dbx on SunOS 4.1.3, so we don't do it | |
1559 | if BFD_TRADITIONAL_FORMAT is set. */ | |
1560 | ||
e135f41b NC |
1561 | /* Get the index of a string in a strtab, adding it if it is not |
1562 | already present. */ | |
1563 | ||
1564 | static INLINE bfd_size_type | |
116c20d2 NC |
1565 | add_to_stringtab (bfd *abfd, |
1566 | struct bfd_strtab_hash *tab, | |
1567 | const char *str, | |
1568 | bfd_boolean copy) | |
e135f41b | 1569 | { |
b34976b6 | 1570 | bfd_boolean hash; |
91d6fa6a | 1571 | bfd_size_type str_index; |
e135f41b NC |
1572 | |
1573 | /* An index of 0 always means the empty string. */ | |
1574 | if (str == 0 || *str == '\0') | |
1575 | return 0; | |
1576 | ||
1577 | /* Don't hash if BFD_TRADITIONAL_FORMAT is set, because SunOS dbx | |
1578 | doesn't understand a hashed string table. */ | |
b34976b6 | 1579 | hash = TRUE; |
e135f41b | 1580 | if ((abfd->flags & BFD_TRADITIONAL_FORMAT) != 0) |
b34976b6 | 1581 | hash = FALSE; |
e135f41b | 1582 | |
91d6fa6a | 1583 | str_index = _bfd_stringtab_add (tab, str, hash, copy); |
e135f41b | 1584 | |
91d6fa6a | 1585 | if (str_index != (bfd_size_type) -1) |
116c20d2 NC |
1586 | /* Add BYTES_IN_LONG to the return value to account for the |
1587 | space taken up by the string table size. */ | |
91d6fa6a | 1588 | str_index += BYTES_IN_LONG; |
e135f41b | 1589 | |
91d6fa6a | 1590 | return str_index; |
e135f41b NC |
1591 | } |
1592 | ||
1593 | /* Write out a strtab. ABFD is already at the right location in the | |
1594 | file. */ | |
1595 | ||
b34976b6 | 1596 | static bfd_boolean |
116c20d2 | 1597 | emit_stringtab (bfd *abfd, struct bfd_strtab_hash *tab) |
e135f41b NC |
1598 | { |
1599 | bfd_byte buffer[BYTES_IN_LONG]; | |
1600 | ||
1601 | /* The string table starts with the size. */ | |
dc810e39 | 1602 | H_PUT_32 (abfd, _bfd_stringtab_size (tab) + BYTES_IN_LONG, buffer); |
116c20d2 | 1603 | if (bfd_bwrite ((void *) buffer, (bfd_size_type) BYTES_IN_LONG, abfd) |
dc810e39 | 1604 | != BYTES_IN_LONG) |
b34976b6 | 1605 | return FALSE; |
e135f41b NC |
1606 | |
1607 | return _bfd_stringtab_emit (abfd, tab); | |
1608 | } | |
1609 | \f | |
b34976b6 | 1610 | bfd_boolean |
116c20d2 | 1611 | NAME (aout, write_syms) (bfd *abfd) |
e135f41b NC |
1612 | { |
1613 | unsigned int count ; | |
1614 | asymbol **generic = bfd_get_outsymbols (abfd); | |
1615 | struct bfd_strtab_hash *strtab; | |
1616 | ||
1617 | strtab = _bfd_stringtab_init (); | |
1618 | if (strtab == NULL) | |
b34976b6 | 1619 | return FALSE; |
e135f41b NC |
1620 | |
1621 | for (count = 0; count < bfd_get_symcount (abfd); count++) | |
1622 | { | |
1623 | asymbol *g = generic[count]; | |
1624 | bfd_size_type indx; | |
1625 | struct external_nlist nsp; | |
1626 | ||
dc810e39 | 1627 | PUT_WORD (abfd, 0, nsp.e_unused); |
e135f41b | 1628 | |
b34976b6 | 1629 | indx = add_to_stringtab (abfd, strtab, g->name, FALSE); |
e135f41b NC |
1630 | if (indx == (bfd_size_type) -1) |
1631 | goto error_return; | |
dc810e39 | 1632 | PUT_WORD (abfd, indx, nsp.e_strx); |
e135f41b NC |
1633 | |
1634 | if (bfd_asymbol_flavour(g) == abfd->xvec->flavour) | |
dc810e39 | 1635 | H_PUT_8 (abfd, aout_symbol(g)->type, nsp.e_type); |
e135f41b | 1636 | else |
dc810e39 | 1637 | H_PUT_8 (abfd, 0, nsp.e_type); |
e135f41b NC |
1638 | |
1639 | if (! translate_to_native_sym_flags (abfd, g, &nsp)) | |
1640 | goto error_return; | |
1641 | ||
dc810e39 | 1642 | H_PUT_8 (abfd, 0, nsp.e_ovly); |
e135f41b | 1643 | |
116c20d2 | 1644 | if (bfd_bwrite ((void *)&nsp, (bfd_size_type) EXTERNAL_NLIST_SIZE, abfd) |
e135f41b NC |
1645 | != EXTERNAL_NLIST_SIZE) |
1646 | goto error_return; | |
1647 | ||
1648 | /* NB: `KEEPIT' currently overlays `udata.p', so set this only | |
1649 | here, at the end. */ | |
1650 | g->KEEPIT = count; | |
1651 | } | |
1652 | ||
1653 | if (! emit_stringtab (abfd, strtab)) | |
1654 | goto error_return; | |
1655 | ||
1656 | _bfd_stringtab_free (strtab); | |
1657 | ||
b34976b6 | 1658 | return TRUE; |
e135f41b NC |
1659 | |
1660 | error_return: | |
1661 | _bfd_stringtab_free (strtab); | |
b34976b6 | 1662 | return FALSE; |
e135f41b NC |
1663 | } |
1664 | ||
1665 | \f | |
1666 | long | |
116c20d2 | 1667 | NAME (aout, canonicalize_symtab) (bfd *abfd, asymbol **location) |
e135f41b | 1668 | { |
116c20d2 NC |
1669 | unsigned int counter = 0; |
1670 | aout_symbol_type *symbase; | |
e135f41b | 1671 | |
116c20d2 NC |
1672 | if (!NAME (aout, slurp_symbol_table) (abfd)) |
1673 | return -1; | |
e135f41b | 1674 | |
116c20d2 NC |
1675 | for (symbase = obj_aout_symbols (abfd); counter++ < bfd_get_symcount (abfd);) |
1676 | *(location++) = (asymbol *)(symbase++); | |
1677 | *location++ =0; | |
1678 | return bfd_get_symcount (abfd); | |
e135f41b NC |
1679 | } |
1680 | ||
1681 | \f | |
116c20d2 | 1682 | /* Output extended relocation information to a file in target byte order. */ |
e135f41b | 1683 | |
116c20d2 NC |
1684 | static void |
1685 | pdp11_aout_swap_reloc_out (bfd *abfd, arelent *g, bfd_byte *natptr) | |
e135f41b NC |
1686 | { |
1687 | int r_index; | |
1688 | int r_pcrel; | |
1689 | int reloc_entry; | |
1690 | int r_type; | |
1691 | asymbol *sym = *(g->sym_ptr_ptr); | |
1692 | asection *output_section = sym->section->output_section; | |
1693 | ||
1694 | if (g->addend != 0) | |
1695 | fprintf (stderr, "BFD: can't do this reloc addend stuff\n"); | |
1696 | ||
1697 | r_pcrel = g->howto->pc_relative; | |
1698 | ||
1699 | if (bfd_is_abs_section (output_section)) | |
1700 | r_type = RABS; | |
1701 | else if (output_section == obj_textsec (abfd)) | |
1702 | r_type = RTEXT; | |
1703 | else if (output_section == obj_datasec (abfd)) | |
1704 | r_type = RDATA; | |
1705 | else if (output_section == obj_bsssec (abfd)) | |
1706 | r_type = RBSS; | |
1707 | else if (bfd_is_und_section (output_section)) | |
1708 | r_type = REXT; | |
1709 | else if (bfd_is_com_section (output_section)) | |
1710 | r_type = REXT; | |
1711 | else | |
1712 | r_type = -1; | |
1713 | ||
1714 | BFD_ASSERT (r_type != -1); | |
1715 | ||
1716 | if (r_type == RABS) | |
1717 | r_index = 0; | |
1718 | else | |
1719 | r_index = (*(g->sym_ptr_ptr))->KEEPIT; | |
1720 | ||
e135f41b NC |
1721 | reloc_entry = r_index << 4 | r_type | r_pcrel; |
1722 | ||
9dadfa79 | 1723 | PUT_WORD (abfd, reloc_entry, natptr); |
e135f41b NC |
1724 | } |
1725 | ||
1726 | /* BFD deals internally with all things based from the section they're | |
1727 | in. so, something in 10 bytes into a text section with a base of | |
1728 | 50 would have a symbol (.text+10) and know .text vma was 50. | |
1729 | ||
1730 | Aout keeps all it's symbols based from zero, so the symbol would | |
1731 | contain 60. This macro subs the base of each section from the value | |
1732 | to give the true offset from the section */ | |
1733 | ||
1734 | ||
1735 | #define MOVE_ADDRESS(ad) \ | |
1736 | if (r_extern) \ | |
1737 | { \ | |
1738 | /* Undefined symbol. */ \ | |
1739 | cache_ptr->sym_ptr_ptr = symbols + r_index; \ | |
1740 | cache_ptr->addend = ad; \ | |
1741 | } \ | |
1742 | else \ | |
1743 | { \ | |
1744 | /* Defined, section relative. replace symbol with pointer to \ | |
1745 | symbol which points to section. */ \ | |
1746 | switch (r_index) \ | |
1747 | { \ | |
1748 | case N_TEXT: \ | |
1749 | case N_TEXT | N_EXT: \ | |
1750 | cache_ptr->sym_ptr_ptr = obj_textsec (abfd)->symbol_ptr_ptr; \ | |
1751 | cache_ptr->addend = ad - su->textsec->vma; \ | |
1752 | break; \ | |
1753 | case N_DATA: \ | |
1754 | case N_DATA | N_EXT: \ | |
1755 | cache_ptr->sym_ptr_ptr = obj_datasec (abfd)->symbol_ptr_ptr; \ | |
1756 | cache_ptr->addend = ad - su->datasec->vma; \ | |
1757 | break; \ | |
1758 | case N_BSS: \ | |
1759 | case N_BSS | N_EXT: \ | |
1760 | cache_ptr->sym_ptr_ptr = obj_bsssec (abfd)->symbol_ptr_ptr; \ | |
1761 | cache_ptr->addend = ad - su->bsssec->vma; \ | |
1762 | break; \ | |
1763 | default: \ | |
1764 | case N_ABS: \ | |
1765 | case N_ABS | N_EXT: \ | |
1766 | cache_ptr->sym_ptr_ptr = bfd_abs_section_ptr->symbol_ptr_ptr; \ | |
1767 | cache_ptr->addend = ad; \ | |
1768 | break; \ | |
1769 | } \ | |
dc810e39 | 1770 | } |
e135f41b | 1771 | |
116c20d2 NC |
1772 | static void |
1773 | pdp11_aout_swap_reloc_in (bfd * abfd, | |
1774 | bfd_byte * bytes, | |
1775 | arelent * cache_ptr, | |
1776 | bfd_size_type offset, | |
1777 | asymbol ** symbols, | |
1778 | bfd_size_type symcount) | |
e135f41b NC |
1779 | { |
1780 | struct aoutdata *su = &(abfd->tdata.aout_data->a); | |
1781 | unsigned int r_index; | |
1782 | int reloc_entry; | |
1783 | int r_extern; | |
1784 | int r_pcrel; | |
1785 | ||
116c20d2 | 1786 | reloc_entry = GET_WORD (abfd, (void *) bytes); |
e135f41b NC |
1787 | |
1788 | r_pcrel = reloc_entry & RELFLG; | |
1789 | ||
1790 | cache_ptr->address = offset; | |
1791 | cache_ptr->howto = howto_table_pdp11 + (r_pcrel ? 1 : 0); | |
1792 | ||
1793 | if ((reloc_entry & RTYPE) == RABS) | |
1794 | r_index = N_ABS; | |
1795 | else | |
1796 | r_index = RINDEX (reloc_entry); | |
1797 | ||
1798 | /* r_extern reflects whether the symbol the reloc is against is | |
1799 | local or global. */ | |
1800 | r_extern = (reloc_entry & RTYPE) == REXT; | |
1801 | ||
1802 | if (r_extern && r_index > symcount) | |
1803 | { | |
1804 | /* We could arrange to return an error, but it might be useful | |
1805 | to see the file even if it is bad. */ | |
1806 | r_extern = 0; | |
1807 | r_index = N_ABS; | |
1808 | } | |
1809 | ||
1810 | MOVE_ADDRESS(0); | |
1811 | } | |
1812 | ||
1813 | /* Read and swap the relocs for a section. */ | |
1814 | ||
b34976b6 | 1815 | bfd_boolean |
116c20d2 | 1816 | NAME (aout, slurp_reloc_table) (bfd *abfd, sec_ptr asect, asymbol **symbols) |
e135f41b | 1817 | { |
9dadfa79 | 1818 | bfd_byte *rptr; |
dc810e39 | 1819 | bfd_size_type count; |
e135f41b | 1820 | bfd_size_type reloc_size; |
116c20d2 | 1821 | void * relocs; |
e135f41b NC |
1822 | arelent *reloc_cache; |
1823 | size_t each_size; | |
1824 | unsigned int counter = 0; | |
1825 | arelent *cache_ptr; | |
1826 | ||
1827 | if (asect->relocation) | |
b34976b6 | 1828 | return TRUE; |
e135f41b NC |
1829 | |
1830 | if (asect->flags & SEC_CONSTRUCTOR) | |
b34976b6 | 1831 | return TRUE; |
e135f41b NC |
1832 | |
1833 | if (asect == obj_datasec (abfd)) | |
1834 | reloc_size = exec_hdr(abfd)->a_drsize; | |
1835 | else if (asect == obj_textsec (abfd)) | |
1836 | reloc_size = exec_hdr(abfd)->a_trsize; | |
1837 | else if (asect == obj_bsssec (abfd)) | |
1838 | reloc_size = 0; | |
1839 | else | |
1840 | { | |
1841 | bfd_set_error (bfd_error_invalid_operation); | |
b34976b6 | 1842 | return FALSE; |
e135f41b NC |
1843 | } |
1844 | ||
1845 | if (bfd_seek (abfd, asect->rel_filepos, SEEK_SET) != 0) | |
b34976b6 | 1846 | return FALSE; |
e135f41b NC |
1847 | |
1848 | each_size = obj_reloc_entry_size (abfd); | |
1849 | ||
dc810e39 | 1850 | relocs = bfd_malloc (reloc_size); |
e135f41b | 1851 | if (relocs == NULL && reloc_size != 0) |
b34976b6 | 1852 | return FALSE; |
e135f41b | 1853 | |
dc810e39 | 1854 | if (bfd_bread (relocs, reloc_size, abfd) != reloc_size) |
e135f41b NC |
1855 | { |
1856 | free (relocs); | |
b34976b6 | 1857 | return FALSE; |
e135f41b NC |
1858 | } |
1859 | ||
1860 | count = reloc_size / each_size; | |
1861 | ||
116c20d2 | 1862 | /* Count the number of NON-ZERO relocs, this is the count we want. */ |
e135f41b NC |
1863 | { |
1864 | unsigned int real_count = 0; | |
1865 | ||
1866 | for (counter = 0; counter < count; counter++) | |
1867 | { | |
1868 | int x; | |
1869 | ||
973ffd63 | 1870 | x = GET_WORD (abfd, (char *) relocs + each_size * counter); |
e135f41b NC |
1871 | if (x != 0) |
1872 | real_count++; | |
1873 | } | |
1874 | ||
1875 | count = real_count; | |
1876 | } | |
1877 | ||
116c20d2 | 1878 | reloc_cache = bfd_zmalloc (count * sizeof (arelent)); |
e135f41b | 1879 | if (reloc_cache == NULL && count != 0) |
b34976b6 | 1880 | return FALSE; |
e135f41b NC |
1881 | |
1882 | cache_ptr = reloc_cache; | |
1883 | ||
9dadfa79 | 1884 | rptr = relocs; |
e135f41b NC |
1885 | for (counter = 0; |
1886 | counter < count; | |
9dadfa79 | 1887 | counter++, rptr += RELOC_SIZE, cache_ptr++) |
e135f41b | 1888 | { |
116c20d2 | 1889 | while (GET_WORD (abfd, (void *) rptr) == 0) |
e135f41b | 1890 | { |
9dadfa79 | 1891 | rptr += RELOC_SIZE; |
dc810e39 | 1892 | if ((char *) rptr >= (char *) relocs + reloc_size) |
e135f41b NC |
1893 | goto done; |
1894 | } | |
1895 | ||
1896 | pdp11_aout_swap_reloc_in (abfd, rptr, cache_ptr, | |
dc810e39 AM |
1897 | (bfd_size_type) ((char *) rptr - (char *) relocs), |
1898 | symbols, | |
1899 | (bfd_size_type) bfd_get_symcount (abfd)); | |
e135f41b NC |
1900 | } |
1901 | done: | |
1902 | /* Just in case, if rptr >= relocs + reloc_size should happen | |
116c20d2 | 1903 | too early. */ |
e135f41b NC |
1904 | BFD_ASSERT (counter == count); |
1905 | ||
1906 | free (relocs); | |
1907 | ||
1908 | asect->relocation = reloc_cache; | |
1909 | asect->reloc_count = cache_ptr - reloc_cache; | |
1910 | ||
b34976b6 | 1911 | return TRUE; |
e135f41b NC |
1912 | } |
1913 | ||
1914 | /* Write out a relocation section into an object file. */ | |
1915 | ||
b34976b6 | 1916 | bfd_boolean |
116c20d2 | 1917 | NAME (aout, squirt_out_relocs) (bfd *abfd, asection *section) |
e135f41b NC |
1918 | { |
1919 | arelent **generic; | |
1920 | unsigned char *native; | |
1921 | unsigned int count = section->reloc_count; | |
dc810e39 | 1922 | bfd_size_type natsize; |
e135f41b | 1923 | |
eea6121a | 1924 | natsize = section->size; |
116c20d2 | 1925 | native = bfd_zalloc (abfd, natsize); |
e135f41b | 1926 | if (!native) |
b34976b6 | 1927 | return FALSE; |
e135f41b | 1928 | |
e135f41b NC |
1929 | generic = section->orelocation; |
1930 | if (generic != NULL) | |
1931 | { | |
1932 | while (count > 0) | |
1933 | { | |
9dadfa79 | 1934 | bfd_byte *r; |
e135f41b | 1935 | |
9dadfa79 | 1936 | r = native + (*generic)->address; |
e135f41b NC |
1937 | pdp11_aout_swap_reloc_out (abfd, *generic, r); |
1938 | count--; | |
1939 | generic++; | |
1940 | } | |
1941 | } | |
1942 | ||
116c20d2 | 1943 | if (bfd_bwrite ((void *) native, natsize, abfd) != natsize) |
e135f41b | 1944 | { |
dc810e39 | 1945 | bfd_release (abfd, native); |
b34976b6 | 1946 | return FALSE; |
e135f41b NC |
1947 | } |
1948 | ||
1949 | bfd_release (abfd, native); | |
b34976b6 | 1950 | return TRUE; |
e135f41b NC |
1951 | } |
1952 | ||
116c20d2 NC |
1953 | /* This is stupid. This function should be a boolean predicate. */ |
1954 | ||
e135f41b | 1955 | long |
116c20d2 NC |
1956 | NAME (aout, canonicalize_reloc) (bfd *abfd, |
1957 | sec_ptr section, | |
1958 | arelent **relptr, | |
1959 | asymbol **symbols) | |
e135f41b NC |
1960 | { |
1961 | arelent *tblptr = section->relocation; | |
1962 | unsigned int count; | |
1963 | ||
1964 | if (section == obj_bsssec (abfd)) | |
1965 | { | |
1966 | *relptr = NULL; | |
1967 | return 0; | |
1968 | } | |
1969 | ||
116c20d2 | 1970 | if (!(tblptr || NAME (aout, slurp_reloc_table)(abfd, section, symbols))) |
e135f41b NC |
1971 | return -1; |
1972 | ||
1973 | if (section->flags & SEC_CONSTRUCTOR) | |
1974 | { | |
1975 | arelent_chain *chain = section->constructor_chain; | |
1976 | ||
1977 | for (count = 0; count < section->reloc_count; count ++) | |
1978 | { | |
1979 | *relptr ++ = &chain->relent; | |
1980 | chain = chain->next; | |
1981 | } | |
1982 | } | |
1983 | else | |
1984 | { | |
1985 | tblptr = section->relocation; | |
1986 | ||
1987 | for (count = 0; count++ < section->reloc_count;) | |
1988 | *relptr++ = tblptr++; | |
1989 | } | |
1990 | ||
1991 | *relptr = 0; | |
1992 | ||
1993 | return section->reloc_count; | |
1994 | } | |
1995 | ||
1996 | long | |
116c20d2 | 1997 | NAME (aout, get_reloc_upper_bound) (bfd *abfd, sec_ptr asect) |
e135f41b NC |
1998 | { |
1999 | if (bfd_get_format (abfd) != bfd_object) | |
2000 | { | |
2001 | bfd_set_error (bfd_error_invalid_operation); | |
2002 | return -1; | |
2003 | } | |
2004 | ||
dc810e39 | 2005 | if (asect->flags & SEC_CONSTRUCTOR) |
116c20d2 | 2006 | return (sizeof (arelent *) * (asect->reloc_count + 1)); |
e135f41b NC |
2007 | |
2008 | if (asect == obj_datasec (abfd)) | |
2009 | return (sizeof (arelent *) | |
116c20d2 | 2010 | * ((exec_hdr (abfd)->a_drsize / obj_reloc_entry_size (abfd)) |
e135f41b NC |
2011 | + 1)); |
2012 | ||
2013 | if (asect == obj_textsec (abfd)) | |
2014 | return (sizeof (arelent *) | |
116c20d2 | 2015 | * ((exec_hdr (abfd)->a_trsize / obj_reloc_entry_size (abfd)) |
e135f41b NC |
2016 | + 1)); |
2017 | ||
2018 | /* TODO: why are there two if statements for obj_bsssec()? */ | |
2019 | ||
2020 | if (asect == obj_bsssec (abfd)) | |
2021 | return sizeof (arelent *); | |
2022 | ||
2023 | if (asect == obj_bsssec (abfd)) | |
2024 | return 0; | |
2025 | ||
2026 | bfd_set_error (bfd_error_invalid_operation); | |
2027 | return -1; | |
2028 | } | |
2029 | ||
2030 | \f | |
2031 | long | |
116c20d2 | 2032 | NAME (aout, get_symtab_upper_bound) (bfd *abfd) |
e135f41b | 2033 | { |
116c20d2 | 2034 | if (!NAME (aout, slurp_symbol_table) (abfd)) |
e135f41b NC |
2035 | return -1; |
2036 | ||
2037 | return (bfd_get_symcount (abfd) + 1) * (sizeof (aout_symbol_type *)); | |
2038 | } | |
2039 | ||
2040 | alent * | |
116c20d2 NC |
2041 | NAME (aout, get_lineno) (bfd * abfd ATTRIBUTE_UNUSED, |
2042 | asymbol * symbol ATTRIBUTE_UNUSED) | |
e135f41b | 2043 | { |
116c20d2 | 2044 | return NULL; |
e135f41b NC |
2045 | } |
2046 | ||
2047 | void | |
116c20d2 NC |
2048 | NAME (aout, get_symbol_info) (bfd * abfd ATTRIBUTE_UNUSED, |
2049 | asymbol *symbol, | |
2050 | symbol_info *ret) | |
e135f41b NC |
2051 | { |
2052 | bfd_symbol_info (symbol, ret); | |
2053 | ||
2054 | if (ret->type == '?') | |
2055 | { | |
2056 | int type_code = aout_symbol(symbol)->type & 0xff; | |
2057 | const char *stab_name = bfd_get_stab_name (type_code); | |
2058 | static char buf[10]; | |
2059 | ||
2060 | if (stab_name == NULL) | |
2061 | { | |
2062 | sprintf(buf, "(%d)", type_code); | |
2063 | stab_name = buf; | |
2064 | } | |
2065 | ret->type = '-'; | |
116c20d2 NC |
2066 | ret->stab_type = type_code; |
2067 | ret->stab_other = (unsigned) (aout_symbol(symbol)->other & 0xff); | |
2068 | ret->stab_desc = (unsigned) (aout_symbol(symbol)->desc & 0xffff); | |
2069 | ret->stab_name = stab_name; | |
e135f41b NC |
2070 | } |
2071 | } | |
2072 | ||
e135f41b | 2073 | void |
116c20d2 NC |
2074 | NAME (aout, print_symbol) (bfd * abfd, |
2075 | void * afile, | |
2076 | asymbol *symbol, | |
2077 | bfd_print_symbol_type how) | |
e135f41b | 2078 | { |
116c20d2 | 2079 | FILE *file = (FILE *) afile; |
e135f41b NC |
2080 | |
2081 | switch (how) | |
2082 | { | |
2083 | case bfd_print_symbol_name: | |
2084 | if (symbol->name) | |
2085 | fprintf(file,"%s", symbol->name); | |
2086 | break; | |
2087 | case bfd_print_symbol_more: | |
116c20d2 NC |
2088 | fprintf(file,"%4x %2x %2x", |
2089 | (unsigned) (aout_symbol (symbol)->desc & 0xffff), | |
2090 | (unsigned) (aout_symbol (symbol)->other & 0xff), | |
2091 | (unsigned) (aout_symbol (symbol)->type)); | |
e135f41b NC |
2092 | break; |
2093 | case bfd_print_symbol_all: | |
2094 | { | |
dc810e39 | 2095 | const char *section_name = symbol->section->name; |
e135f41b | 2096 | |
116c20d2 | 2097 | bfd_print_symbol_vandf (abfd, (void *) file, symbol); |
e135f41b NC |
2098 | |
2099 | fprintf (file," %-5s %04x %02x %02x", | |
2100 | section_name, | |
116c20d2 NC |
2101 | (unsigned) (aout_symbol (symbol)->desc & 0xffff), |
2102 | (unsigned) (aout_symbol (symbol)->other & 0xff), | |
2103 | (unsigned) (aout_symbol (symbol)->type & 0xff)); | |
e135f41b NC |
2104 | if (symbol->name) |
2105 | fprintf(file," %s", symbol->name); | |
2106 | } | |
2107 | break; | |
2108 | } | |
2109 | } | |
2110 | ||
2111 | /* If we don't have to allocate more than 1MB to hold the generic | |
2112 | symbols, we use the generic minisymbol method: it's faster, since | |
2113 | it only translates the symbols once, not multiple times. */ | |
2114 | #define MINISYM_THRESHOLD (1000000 / sizeof (asymbol)) | |
2115 | ||
2116 | /* Read minisymbols. For minisymbols, we use the unmodified a.out | |
2117 | symbols. The minisymbol_to_symbol function translates these into | |
2118 | BFD asymbol structures. */ | |
2119 | ||
2120 | long | |
116c20d2 NC |
2121 | NAME (aout, read_minisymbols) (bfd *abfd, |
2122 | bfd_boolean dynamic, | |
2123 | void * *minisymsp, | |
2124 | unsigned int *sizep) | |
e135f41b NC |
2125 | { |
2126 | if (dynamic) | |
116c20d2 NC |
2127 | /* We could handle the dynamic symbols here as well, but it's |
2128 | easier to hand them off. */ | |
2129 | return _bfd_generic_read_minisymbols (abfd, dynamic, minisymsp, sizep); | |
e135f41b NC |
2130 | |
2131 | if (! aout_get_external_symbols (abfd)) | |
2132 | return -1; | |
2133 | ||
2134 | if (obj_aout_external_sym_count (abfd) < MINISYM_THRESHOLD) | |
2135 | return _bfd_generic_read_minisymbols (abfd, dynamic, minisymsp, sizep); | |
2136 | ||
116c20d2 | 2137 | *minisymsp = (void *) obj_aout_external_syms (abfd); |
e135f41b NC |
2138 | |
2139 | /* By passing the external symbols back from this routine, we are | |
2140 | giving up control over the memory block. Clear | |
2141 | obj_aout_external_syms, so that we do not try to free it | |
2142 | ourselves. */ | |
2143 | obj_aout_external_syms (abfd) = NULL; | |
2144 | ||
2145 | *sizep = EXTERNAL_NLIST_SIZE; | |
2146 | return obj_aout_external_sym_count (abfd); | |
2147 | } | |
2148 | ||
2149 | /* Convert a minisymbol to a BFD asymbol. A minisymbol is just an | |
2150 | unmodified a.out symbol. The SYM argument is a structure returned | |
2151 | by bfd_make_empty_symbol, which we fill in here. */ | |
2152 | ||
2153 | asymbol * | |
116c20d2 NC |
2154 | NAME (aout, minisymbol_to_symbol) (bfd *abfd, |
2155 | bfd_boolean dynamic, | |
2156 | const void * minisym, | |
2157 | asymbol *sym) | |
e135f41b NC |
2158 | { |
2159 | if (dynamic | |
2160 | || obj_aout_external_sym_count (abfd) < MINISYM_THRESHOLD) | |
2161 | return _bfd_generic_minisymbol_to_symbol (abfd, dynamic, minisym, sym); | |
2162 | ||
2163 | memset (sym, 0, sizeof (aout_symbol_type)); | |
2164 | ||
2165 | /* We call translate_symbol_table to translate a single symbol. */ | |
116c20d2 | 2166 | if (! (NAME (aout, translate_symbol_table) |
e135f41b NC |
2167 | (abfd, |
2168 | (aout_symbol_type *) sym, | |
2169 | (struct external_nlist *) minisym, | |
2170 | (bfd_size_type) 1, | |
2171 | obj_aout_external_strings (abfd), | |
2172 | obj_aout_external_string_size (abfd), | |
b34976b6 | 2173 | FALSE))) |
e135f41b NC |
2174 | return NULL; |
2175 | ||
2176 | return sym; | |
2177 | } | |
2178 | ||
116c20d2 NC |
2179 | /* Provided a BFD, a section and an offset into the section, calculate |
2180 | and return the name of the source file and the line nearest to the | |
2181 | wanted location. */ | |
e135f41b | 2182 | |
b34976b6 | 2183 | bfd_boolean |
116c20d2 NC |
2184 | NAME (aout, find_nearest_line) (bfd *abfd, |
2185 | asection *section, | |
2186 | asymbol **symbols, | |
2187 | bfd_vma offset, | |
2188 | const char **filename_ptr, | |
2189 | const char **functionname_ptr, | |
2190 | unsigned int *line_ptr) | |
e135f41b | 2191 | { |
116c20d2 | 2192 | /* Run down the file looking for the filename, function and linenumber. */ |
e135f41b | 2193 | asymbol **p; |
dc810e39 AM |
2194 | const char *directory_name = NULL; |
2195 | const char *main_file_name = NULL; | |
2196 | const char *current_file_name = NULL; | |
116c20d2 | 2197 | const char *line_file_name = NULL; /* Value of current_file_name at line number. */ |
e135f41b NC |
2198 | bfd_vma low_line_vma = 0; |
2199 | bfd_vma low_func_vma = 0; | |
2200 | asymbol *func = 0; | |
2201 | size_t filelen, funclen; | |
2202 | char *buf; | |
2203 | ||
2204 | *filename_ptr = abfd->filename; | |
2205 | *functionname_ptr = 0; | |
2206 | *line_ptr = 0; | |
2207 | ||
116c20d2 | 2208 | if (symbols != NULL) |
e135f41b NC |
2209 | { |
2210 | for (p = symbols; *p; p++) | |
2211 | { | |
2212 | aout_symbol_type *q = (aout_symbol_type *)(*p); | |
2213 | next: | |
2214 | switch (q->type) | |
2215 | { | |
2216 | case N_TEXT: | |
2217 | /* If this looks like a file name symbol, and it comes after | |
2218 | the line number we have found so far, but before the | |
2219 | offset, then we have probably not found the right line | |
2220 | number. */ | |
2221 | if (q->symbol.value <= offset | |
2222 | && ((q->symbol.value > low_line_vma | |
2223 | && (line_file_name != NULL | |
2224 | || *line_ptr != 0)) | |
2225 | || (q->symbol.value > low_func_vma | |
2226 | && func != NULL))) | |
2227 | { | |
2228 | const char * symname; | |
2229 | ||
2230 | symname = q->symbol.name; | |
2231 | if (strcmp (symname + strlen (symname) - 2, ".o") == 0) | |
2232 | { | |
2233 | if (q->symbol.value > low_line_vma) | |
2234 | { | |
2235 | *line_ptr = 0; | |
2236 | line_file_name = NULL; | |
2237 | } | |
2238 | if (q->symbol.value > low_func_vma) | |
2239 | func = NULL; | |
2240 | } | |
2241 | } | |
2242 | break; | |
2243 | ||
2244 | case N_SO: | |
2245 | /* If this symbol is less than the offset, but greater than | |
2246 | the line number we have found so far, then we have not | |
2247 | found the right line number. */ | |
2248 | if (q->symbol.value <= offset) | |
2249 | { | |
2250 | if (q->symbol.value > low_line_vma) | |
2251 | { | |
2252 | *line_ptr = 0; | |
2253 | line_file_name = NULL; | |
2254 | } | |
2255 | if (q->symbol.value > low_func_vma) | |
2256 | func = NULL; | |
2257 | } | |
2258 | ||
2259 | main_file_name = current_file_name = q->symbol.name; | |
116c20d2 | 2260 | /* Look ahead to next symbol to check if that too is an N_SO. */ |
e135f41b NC |
2261 | p++; |
2262 | if (*p == NULL) | |
2263 | break; | |
2264 | q = (aout_symbol_type *)(*p); | |
116c20d2 | 2265 | if (q->type != (int) N_SO) |
e135f41b NC |
2266 | goto next; |
2267 | ||
116c20d2 | 2268 | /* Found a second N_SO First is directory; second is filename. */ |
e135f41b NC |
2269 | directory_name = current_file_name; |
2270 | main_file_name = current_file_name = q->symbol.name; | |
2271 | if (obj_textsec(abfd) != section) | |
2272 | goto done; | |
2273 | break; | |
2274 | case N_SOL: | |
2275 | current_file_name = q->symbol.name; | |
2276 | break; | |
2277 | ||
2278 | case N_SLINE: | |
2279 | case N_DSLINE: | |
2280 | case N_BSLINE: | |
2281 | /* We'll keep this if it resolves nearer than the one we have | |
2282 | already. */ | |
2283 | if (q->symbol.value >= low_line_vma | |
2284 | && q->symbol.value <= offset) | |
2285 | { | |
2286 | *line_ptr = q->desc; | |
2287 | low_line_vma = q->symbol.value; | |
2288 | line_file_name = current_file_name; | |
2289 | } | |
2290 | break; | |
2291 | ||
2292 | case N_FUN: | |
2293 | { | |
116c20d2 | 2294 | /* We'll keep this if it is nearer than the one we have already. */ |
e135f41b NC |
2295 | if (q->symbol.value >= low_func_vma && |
2296 | q->symbol.value <= offset) | |
2297 | { | |
2298 | low_func_vma = q->symbol.value; | |
116c20d2 | 2299 | func = (asymbol *) q; |
e135f41b NC |
2300 | } |
2301 | else if (q->symbol.value > offset) | |
2302 | goto done; | |
2303 | } | |
2304 | break; | |
2305 | } | |
2306 | } | |
2307 | } | |
2308 | ||
2309 | done: | |
2310 | if (*line_ptr != 0) | |
2311 | main_file_name = line_file_name; | |
2312 | ||
2313 | if (main_file_name == NULL | |
2314 | || main_file_name[0] == '/' | |
2315 | || directory_name == NULL) | |
2316 | filelen = 0; | |
2317 | else | |
2318 | filelen = strlen (directory_name) + strlen (main_file_name); | |
2319 | if (func == NULL) | |
2320 | funclen = 0; | |
2321 | else | |
2322 | funclen = strlen (bfd_asymbol_name (func)); | |
2323 | ||
2324 | if (adata (abfd).line_buf != NULL) | |
2325 | free (adata (abfd).line_buf); | |
2326 | if (filelen + funclen == 0) | |
2327 | adata (abfd).line_buf = buf = NULL; | |
2328 | else | |
2329 | { | |
116c20d2 | 2330 | buf = bfd_malloc ((bfd_size_type) filelen + funclen + 3); |
e135f41b NC |
2331 | adata (abfd).line_buf = buf; |
2332 | if (buf == NULL) | |
b34976b6 | 2333 | return FALSE; |
e135f41b NC |
2334 | } |
2335 | ||
2336 | if (main_file_name != NULL) | |
2337 | { | |
2338 | if (main_file_name[0] == '/' || directory_name == NULL) | |
2339 | *filename_ptr = main_file_name; | |
2340 | else | |
2341 | { | |
2342 | sprintf (buf, "%s%s", directory_name, main_file_name); | |
2343 | *filename_ptr = buf; | |
2344 | buf += filelen + 1; | |
2345 | } | |
2346 | } | |
2347 | ||
2348 | if (func) | |
2349 | { | |
2350 | const char *function = func->name; | |
dc810e39 | 2351 | char *colon; |
e135f41b NC |
2352 | |
2353 | /* The caller expects a symbol name. We actually have a | |
2354 | function name, without the leading underscore. Put the | |
2355 | underscore back in, so that the caller gets a symbol name. */ | |
2356 | if (bfd_get_symbol_leading_char (abfd) == '\0') | |
2357 | strcpy (buf, function); | |
2358 | else | |
2359 | { | |
2360 | buf[0] = bfd_get_symbol_leading_char (abfd); | |
2361 | strcpy (buf + 1, function); | |
2362 | } | |
2363 | ||
2364 | /* Have to remove : stuff. */ | |
dc810e39 AM |
2365 | colon = strchr (buf, ':'); |
2366 | if (colon != NULL) | |
2367 | *colon = '\0'; | |
e135f41b NC |
2368 | *functionname_ptr = buf; |
2369 | } | |
2370 | ||
b34976b6 | 2371 | return TRUE; |
e135f41b NC |
2372 | } |
2373 | ||
2374 | int | |
a6b96beb AM |
2375 | NAME (aout, sizeof_headers) (bfd *abfd, |
2376 | struct bfd_link_info *info ATTRIBUTE_UNUSED) | |
e135f41b | 2377 | { |
116c20d2 | 2378 | return adata (abfd).exec_bytes_size; |
e135f41b NC |
2379 | } |
2380 | ||
2381 | /* Free all information we have cached for this BFD. We can always | |
2382 | read it again later if we need it. */ | |
2383 | ||
b34976b6 | 2384 | bfd_boolean |
116c20d2 | 2385 | NAME (aout, bfd_free_cached_info) (bfd *abfd) |
e135f41b NC |
2386 | { |
2387 | asection *o; | |
2388 | ||
2389 | if (bfd_get_format (abfd) != bfd_object) | |
b34976b6 | 2390 | return TRUE; |
e135f41b NC |
2391 | |
2392 | #define BFCI_FREE(x) if (x != NULL) { free (x); x = NULL; } | |
2393 | BFCI_FREE (obj_aout_symbols (abfd)); | |
116c20d2 | 2394 | |
e135f41b NC |
2395 | #ifdef USE_MMAP |
2396 | obj_aout_external_syms (abfd) = 0; | |
2397 | bfd_free_window (&obj_aout_sym_window (abfd)); | |
2398 | bfd_free_window (&obj_aout_string_window (abfd)); | |
2399 | obj_aout_external_strings (abfd) = 0; | |
2400 | #else | |
2401 | BFCI_FREE (obj_aout_external_syms (abfd)); | |
2402 | BFCI_FREE (obj_aout_external_strings (abfd)); | |
2403 | #endif | |
116c20d2 | 2404 | for (o = abfd->sections; o != NULL; o = o->next) |
e135f41b NC |
2405 | BFCI_FREE (o->relocation); |
2406 | #undef BFCI_FREE | |
2407 | ||
b34976b6 | 2408 | return TRUE; |
e135f41b NC |
2409 | } |
2410 | \f | |
e135f41b NC |
2411 | /* Routine to create an entry in an a.out link hash table. */ |
2412 | ||
2413 | struct bfd_hash_entry * | |
116c20d2 NC |
2414 | NAME (aout, link_hash_newfunc) (struct bfd_hash_entry *entry, |
2415 | struct bfd_hash_table *table, | |
2416 | const char *string) | |
e135f41b NC |
2417 | { |
2418 | struct aout_link_hash_entry *ret = (struct aout_link_hash_entry *) entry; | |
2419 | ||
2420 | /* Allocate the structure if it has not already been allocated by a | |
2421 | subclass. */ | |
116c20d2 NC |
2422 | if (ret == NULL) |
2423 | ret = bfd_hash_allocate (table, sizeof (* ret)); | |
2424 | if (ret == NULL) | |
2425 | return NULL; | |
e135f41b NC |
2426 | |
2427 | /* Call the allocation method of the superclass. */ | |
116c20d2 NC |
2428 | ret = (struct aout_link_hash_entry *) |
2429 | _bfd_link_hash_newfunc ((struct bfd_hash_entry *) ret, table, string); | |
e135f41b NC |
2430 | if (ret) |
2431 | { | |
2432 | /* Set local fields. */ | |
b34976b6 | 2433 | ret->written = FALSE; |
e135f41b NC |
2434 | ret->indx = -1; |
2435 | } | |
2436 | ||
2437 | return (struct bfd_hash_entry *) ret; | |
2438 | } | |
2439 | ||
2440 | /* Initialize an a.out link hash table. */ | |
2441 | ||
b34976b6 | 2442 | bfd_boolean |
116c20d2 NC |
2443 | NAME (aout, link_hash_table_init) (struct aout_link_hash_table *table, |
2444 | bfd *abfd, | |
2445 | struct bfd_hash_entry *(*newfunc) (struct bfd_hash_entry *, | |
2446 | struct bfd_hash_table *, | |
66eb6687 AM |
2447 | const char *), |
2448 | unsigned int entsize) | |
e135f41b | 2449 | { |
66eb6687 | 2450 | return _bfd_link_hash_table_init (&table->root, abfd, newfunc, entsize); |
e135f41b NC |
2451 | } |
2452 | ||
2453 | /* Create an a.out link hash table. */ | |
2454 | ||
2455 | struct bfd_link_hash_table * | |
116c20d2 | 2456 | NAME (aout, link_hash_table_create) (bfd *abfd) |
e135f41b NC |
2457 | { |
2458 | struct aout_link_hash_table *ret; | |
dc810e39 | 2459 | bfd_size_type amt = sizeof (struct aout_link_hash_table); |
e135f41b | 2460 | |
22cdc249 | 2461 | ret = bfd_malloc (amt); |
e135f41b | 2462 | if (ret == NULL) |
116c20d2 NC |
2463 | return NULL; |
2464 | if (! NAME (aout, link_hash_table_init) (ret, abfd, | |
66eb6687 AM |
2465 | NAME (aout, link_hash_newfunc), |
2466 | sizeof (struct aout_link_hash_entry))) | |
e135f41b NC |
2467 | { |
2468 | free (ret); | |
116c20d2 | 2469 | return NULL; |
e135f41b NC |
2470 | } |
2471 | return &ret->root; | |
2472 | } | |
2473 | ||
116c20d2 NC |
2474 | /* Free up the internal symbols read from an a.out file. */ |
2475 | ||
2476 | static bfd_boolean | |
2477 | aout_link_free_symbols (bfd *abfd) | |
2478 | { | |
2479 | if (obj_aout_external_syms (abfd) != NULL) | |
2480 | { | |
2481 | #ifdef USE_MMAP | |
2482 | bfd_free_window (&obj_aout_sym_window (abfd)); | |
2483 | #else | |
2484 | free ((void *) obj_aout_external_syms (abfd)); | |
2485 | #endif | |
2486 | obj_aout_external_syms (abfd) = NULL; | |
2487 | } | |
2488 | ||
2489 | if (obj_aout_external_strings (abfd) != NULL) | |
2490 | { | |
2491 | #ifdef USE_MMAP | |
2492 | bfd_free_window (&obj_aout_string_window (abfd)); | |
2493 | #else | |
2494 | free ((void *) obj_aout_external_strings (abfd)); | |
2495 | #endif | |
2496 | obj_aout_external_strings (abfd) = NULL; | |
2497 | } | |
2498 | return TRUE; | |
2499 | } | |
2500 | ||
e135f41b NC |
2501 | /* Given an a.out BFD, add symbols to the global hash table as |
2502 | appropriate. */ | |
2503 | ||
b34976b6 | 2504 | bfd_boolean |
116c20d2 | 2505 | NAME (aout, link_add_symbols) (bfd *abfd, struct bfd_link_info *info) |
e135f41b NC |
2506 | { |
2507 | switch (bfd_get_format (abfd)) | |
2508 | { | |
2509 | case bfd_object: | |
2510 | return aout_link_add_object_symbols (abfd, info); | |
2511 | case bfd_archive: | |
2512 | return _bfd_generic_link_add_archive_symbols | |
2513 | (abfd, info, aout_link_check_archive_element); | |
2514 | default: | |
2515 | bfd_set_error (bfd_error_wrong_format); | |
b34976b6 | 2516 | return FALSE; |
e135f41b NC |
2517 | } |
2518 | } | |
2519 | ||
2520 | /* Add symbols from an a.out object file. */ | |
2521 | ||
b34976b6 | 2522 | static bfd_boolean |
116c20d2 | 2523 | aout_link_add_object_symbols (bfd *abfd, struct bfd_link_info *info) |
e135f41b NC |
2524 | { |
2525 | if (! aout_get_external_symbols (abfd)) | |
b34976b6 | 2526 | return FALSE; |
e135f41b | 2527 | if (! aout_link_add_symbols (abfd, info)) |
b34976b6 | 2528 | return FALSE; |
e135f41b NC |
2529 | if (! info->keep_memory) |
2530 | { | |
2531 | if (! aout_link_free_symbols (abfd)) | |
b34976b6 | 2532 | return FALSE; |
e135f41b | 2533 | } |
b34976b6 | 2534 | return TRUE; |
e135f41b NC |
2535 | } |
2536 | ||
e135f41b NC |
2537 | /* Look through the internal symbols to see if this object file should |
2538 | be included in the link. We should include this object file if it | |
2539 | defines any symbols which are currently undefined. If this object | |
2540 | file defines a common symbol, then we may adjust the size of the | |
2541 | known symbol but we do not include the object file in the link | |
2542 | (unless there is some other reason to include it). */ | |
2543 | ||
b34976b6 | 2544 | static bfd_boolean |
116c20d2 NC |
2545 | aout_link_check_ar_symbols (bfd *abfd, |
2546 | struct bfd_link_info *info, | |
5d3236ee DK |
2547 | bfd_boolean *pneeded, |
2548 | bfd **subsbfd) | |
e135f41b | 2549 | { |
116c20d2 | 2550 | struct external_nlist *p; |
e135f41b NC |
2551 | struct external_nlist *pend; |
2552 | char *strings; | |
2553 | ||
b34976b6 | 2554 | *pneeded = FALSE; |
e135f41b NC |
2555 | |
2556 | /* Look through all the symbols. */ | |
2557 | p = obj_aout_external_syms (abfd); | |
2558 | pend = p + obj_aout_external_sym_count (abfd); | |
2559 | strings = obj_aout_external_strings (abfd); | |
2560 | for (; p < pend; p++) | |
2561 | { | |
dc810e39 | 2562 | int type = H_GET_8 (abfd, p->e_type); |
e135f41b NC |
2563 | const char *name; |
2564 | struct bfd_link_hash_entry *h; | |
2565 | ||
2566 | /* Ignore symbols that are not externally visible. This is an | |
2567 | optimization only, as we check the type more thoroughly | |
2568 | below. */ | |
2569 | if ((type & N_EXT) == 0 | |
2570 | || type == N_FN) | |
2571 | continue; | |
2572 | ||
2573 | name = strings + GET_WORD (abfd, p->e_strx); | |
b34976b6 | 2574 | h = bfd_link_hash_lookup (info->hash, name, FALSE, FALSE, TRUE); |
e135f41b NC |
2575 | |
2576 | /* We are only interested in symbols that are currently | |
2577 | undefined or common. */ | |
116c20d2 | 2578 | if (h == NULL |
e135f41b NC |
2579 | || (h->type != bfd_link_hash_undefined |
2580 | && h->type != bfd_link_hash_common)) | |
2581 | continue; | |
2582 | ||
2583 | if (type == (N_TEXT | N_EXT) | |
2584 | || type == (N_DATA | N_EXT) | |
2585 | || type == (N_BSS | N_EXT) | |
2586 | || type == (N_ABS | N_EXT)) | |
2587 | { | |
2588 | /* This object file defines this symbol. We must link it | |
2589 | in. This is true regardless of whether the current | |
2590 | definition of the symbol is undefined or common. If the | |
2591 | current definition is common, we have a case in which we | |
2592 | have already seen an object file including | |
2593 | int a; | |
2594 | and this object file from the archive includes | |
2595 | int a = 5; | |
2596 | In such a case we must include this object file. | |
2597 | ||
2598 | FIXME: The SunOS 4.1.3 linker will pull in the archive | |
2599 | element if the symbol is defined in the .data section, | |
2600 | but not if it is defined in the .text section. That | |
2601 | seems a bit crazy to me, and I haven't implemented it. | |
2602 | However, it might be correct. */ | |
0e144ba7 AM |
2603 | if (!(*info->callbacks |
2604 | ->add_archive_element) (info, abfd, name, subsbfd)) | |
b34976b6 AM |
2605 | return FALSE; |
2606 | *pneeded = TRUE; | |
2607 | return TRUE; | |
e135f41b NC |
2608 | } |
2609 | ||
2610 | if (type == (N_UNDF | N_EXT)) | |
2611 | { | |
2612 | bfd_vma value; | |
2613 | ||
2614 | value = GET_WORD (abfd, p->e_value); | |
2615 | if (value != 0) | |
2616 | { | |
2617 | /* This symbol is common in the object from the archive | |
2618 | file. */ | |
2619 | if (h->type == bfd_link_hash_undefined) | |
2620 | { | |
2621 | bfd *symbfd; | |
2622 | unsigned int power; | |
2623 | ||
2624 | symbfd = h->u.undef.abfd; | |
116c20d2 | 2625 | if (symbfd == NULL) |
e135f41b NC |
2626 | { |
2627 | /* This symbol was created as undefined from | |
2628 | outside BFD. We assume that we should link | |
2629 | in the object file. This is done for the -u | |
2630 | option in the linker. */ | |
0e144ba7 AM |
2631 | if (!(*info->callbacks |
2632 | ->add_archive_element) (info, abfd, name, subsbfd)) | |
b34976b6 AM |
2633 | return FALSE; |
2634 | *pneeded = TRUE; | |
2635 | return TRUE; | |
e135f41b NC |
2636 | } |
2637 | /* Turn the current link symbol into a common | |
2638 | symbol. It is already on the undefs list. */ | |
2639 | h->type = bfd_link_hash_common; | |
116c20d2 NC |
2640 | h->u.c.p = bfd_hash_allocate (&info->hash->table, |
2641 | sizeof (struct bfd_link_hash_common_entry)); | |
e135f41b | 2642 | if (h->u.c.p == NULL) |
b34976b6 | 2643 | return FALSE; |
e135f41b NC |
2644 | |
2645 | h->u.c.size = value; | |
2646 | ||
2647 | /* FIXME: This isn't quite right. The maximum | |
2648 | alignment of a common symbol should be set by the | |
2649 | architecture of the output file, not of the input | |
2650 | file. */ | |
2651 | power = bfd_log2 (value); | |
2652 | if (power > bfd_get_arch_info (abfd)->section_align_power) | |
2653 | power = bfd_get_arch_info (abfd)->section_align_power; | |
2654 | h->u.c.p->alignment_power = power; | |
2655 | ||
2656 | h->u.c.p->section = bfd_make_section_old_way (symbfd, | |
2657 | "COMMON"); | |
2658 | } | |
2659 | else | |
2660 | { | |
2661 | /* Adjust the size of the common symbol if | |
2662 | necessary. */ | |
2663 | if (value > h->u.c.size) | |
2664 | h->u.c.size = value; | |
2665 | } | |
2666 | } | |
2667 | } | |
2668 | } | |
2669 | ||
2670 | /* We do not need this object file. */ | |
b34976b6 | 2671 | return TRUE; |
e135f41b NC |
2672 | } |
2673 | ||
116c20d2 NC |
2674 | /* Check a single archive element to see if we need to include it in |
2675 | the link. *PNEEDED is set according to whether this element is | |
2676 | needed in the link or not. This is called from | |
2677 | _bfd_generic_link_add_archive_symbols. */ | |
2678 | ||
2679 | static bfd_boolean | |
2680 | aout_link_check_archive_element (bfd *abfd, | |
2681 | struct bfd_link_info *info, | |
2682 | bfd_boolean *pneeded) | |
2683 | { | |
0e144ba7 AM |
2684 | bfd *oldbfd; |
2685 | bfd_boolean needed; | |
5d3236ee | 2686 | |
0e144ba7 | 2687 | if (!aout_get_external_symbols (abfd)) |
116c20d2 NC |
2688 | return FALSE; |
2689 | ||
0e144ba7 AM |
2690 | oldbfd = abfd; |
2691 | if (!aout_link_check_ar_symbols (abfd, info, pneeded, &abfd)) | |
116c20d2 NC |
2692 | return FALSE; |
2693 | ||
0e144ba7 AM |
2694 | needed = *pneeded; |
2695 | if (needed) | |
116c20d2 | 2696 | { |
5d3236ee DK |
2697 | /* Potentially, the add_archive_element hook may have set a |
2698 | substitute BFD for us. */ | |
0e144ba7 AM |
2699 | if (abfd != oldbfd) |
2700 | { | |
2701 | if (!info->keep_memory | |
2702 | && !aout_link_free_symbols (oldbfd)) | |
2703 | return FALSE; | |
2704 | if (!aout_get_external_symbols (abfd)) | |
2705 | return FALSE; | |
2706 | } | |
2707 | if (!aout_link_add_symbols (abfd, info)) | |
116c20d2 NC |
2708 | return FALSE; |
2709 | } | |
2710 | ||
0e144ba7 | 2711 | if (!info->keep_memory || !needed) |
116c20d2 | 2712 | { |
0e144ba7 | 2713 | if (!aout_link_free_symbols (abfd)) |
116c20d2 NC |
2714 | return FALSE; |
2715 | } | |
2716 | ||
2717 | return TRUE; | |
2718 | } | |
2719 | ||
e135f41b NC |
2720 | /* Add all symbols from an object file to the hash table. */ |
2721 | ||
b34976b6 | 2722 | static bfd_boolean |
116c20d2 | 2723 | aout_link_add_symbols (bfd *abfd, struct bfd_link_info *info) |
e135f41b | 2724 | { |
b34976b6 | 2725 | bfd_boolean (*add_one_symbol) |
116c20d2 NC |
2726 | (struct bfd_link_info *, bfd *, const char *, flagword, asection *, |
2727 | bfd_vma, const char *, bfd_boolean, bfd_boolean, | |
2728 | struct bfd_link_hash_entry **); | |
e135f41b NC |
2729 | struct external_nlist *syms; |
2730 | bfd_size_type sym_count; | |
2731 | char *strings; | |
b34976b6 | 2732 | bfd_boolean copy; |
e135f41b | 2733 | struct aout_link_hash_entry **sym_hash; |
116c20d2 | 2734 | struct external_nlist *p; |
e135f41b NC |
2735 | struct external_nlist *pend; |
2736 | ||
2737 | syms = obj_aout_external_syms (abfd); | |
2738 | sym_count = obj_aout_external_sym_count (abfd); | |
2739 | strings = obj_aout_external_strings (abfd); | |
2740 | if (info->keep_memory) | |
b34976b6 | 2741 | copy = FALSE; |
e135f41b | 2742 | else |
b34976b6 | 2743 | copy = TRUE; |
e135f41b NC |
2744 | |
2745 | if (aout_backend_info (abfd)->add_dynamic_symbols != NULL) | |
2746 | { | |
2747 | if (! ((*aout_backend_info (abfd)->add_dynamic_symbols) | |
2748 | (abfd, info, &syms, &sym_count, &strings))) | |
b34976b6 | 2749 | return FALSE; |
e135f41b NC |
2750 | } |
2751 | ||
2752 | /* We keep a list of the linker hash table entries that correspond | |
2753 | to particular symbols. We could just look them up in the hash | |
2754 | table, but keeping the list is more efficient. Perhaps this | |
2755 | should be conditional on info->keep_memory. */ | |
116c20d2 NC |
2756 | sym_hash = bfd_alloc (abfd, |
2757 | sym_count * sizeof (struct aout_link_hash_entry *)); | |
e135f41b | 2758 | if (sym_hash == NULL && sym_count != 0) |
b34976b6 | 2759 | return FALSE; |
e135f41b NC |
2760 | obj_aout_sym_hashes (abfd) = sym_hash; |
2761 | ||
2762 | add_one_symbol = aout_backend_info (abfd)->add_one_symbol; | |
2763 | if (add_one_symbol == NULL) | |
2764 | add_one_symbol = _bfd_generic_link_add_one_symbol; | |
2765 | ||
2766 | p = syms; | |
2767 | pend = p + sym_count; | |
2768 | for (; p < pend; p++, sym_hash++) | |
2769 | { | |
2770 | int type; | |
2771 | const char *name; | |
2772 | bfd_vma value; | |
2773 | asection *section; | |
2774 | flagword flags; | |
2775 | const char *string; | |
2776 | ||
2777 | *sym_hash = NULL; | |
2778 | ||
dc810e39 | 2779 | type = H_GET_8 (abfd, p->e_type); |
e135f41b | 2780 | |
e135f41b NC |
2781 | name = strings + GET_WORD (abfd, p->e_strx); |
2782 | value = GET_WORD (abfd, p->e_value); | |
2783 | flags = BSF_GLOBAL; | |
2784 | string = NULL; | |
2785 | switch (type) | |
2786 | { | |
2787 | default: | |
0c98115d PK |
2788 | /* Anything else should be a debugging symbol. */ |
2789 | BFD_ASSERT ((type & N_STAB) != 0); | |
2790 | continue; | |
e135f41b NC |
2791 | |
2792 | case N_UNDF: | |
2793 | case N_ABS: | |
2794 | case N_TEXT: | |
2795 | case N_DATA: | |
2796 | case N_BSS: | |
2797 | case N_REG: | |
2798 | case N_FN: | |
2799 | /* Ignore symbols that are not externally visible. */ | |
2800 | continue; | |
2801 | ||
2802 | case N_UNDF | N_EXT: | |
2803 | if (value == 0) | |
2804 | { | |
2805 | section = bfd_und_section_ptr; | |
2806 | flags = 0; | |
2807 | } | |
2808 | else | |
2809 | section = bfd_com_section_ptr; | |
2810 | break; | |
2811 | case N_ABS | N_EXT: | |
2812 | section = bfd_abs_section_ptr; | |
2813 | break; | |
2814 | case N_TEXT | N_EXT: | |
2815 | section = obj_textsec (abfd); | |
2816 | value -= bfd_get_section_vma (abfd, section); | |
2817 | break; | |
2818 | case N_DATA | N_EXT: | |
2819 | /* Treat N_SETV symbols as N_DATA symbol; see comment in | |
2820 | translate_from_native_sym_flags. */ | |
2821 | section = obj_datasec (abfd); | |
2822 | value -= bfd_get_section_vma (abfd, section); | |
2823 | break; | |
2824 | case N_BSS | N_EXT: | |
2825 | section = obj_bsssec (abfd); | |
2826 | value -= bfd_get_section_vma (abfd, section); | |
2827 | break; | |
2828 | } | |
2829 | ||
2830 | if (! ((*add_one_symbol) | |
b34976b6 | 2831 | (info, abfd, name, flags, section, value, string, copy, FALSE, |
e135f41b | 2832 | (struct bfd_link_hash_entry **) sym_hash))) |
b34976b6 | 2833 | return FALSE; |
e135f41b NC |
2834 | |
2835 | /* Restrict the maximum alignment of a common symbol based on | |
2836 | the architecture, since a.out has no way to represent | |
2837 | alignment requirements of a section in a .o file. FIXME: | |
2838 | This isn't quite right: it should use the architecture of the | |
2839 | output file, not the input files. */ | |
2840 | if ((*sym_hash)->root.type == bfd_link_hash_common | |
2841 | && ((*sym_hash)->root.u.c.p->alignment_power > | |
2842 | bfd_get_arch_info (abfd)->section_align_power)) | |
2843 | (*sym_hash)->root.u.c.p->alignment_power = | |
2844 | bfd_get_arch_info (abfd)->section_align_power; | |
2845 | ||
2846 | /* If this is a set symbol, and we are not building sets, then | |
2847 | it is possible for the hash entry to not have been set. In | |
2848 | such a case, treat the symbol as not globally defined. */ | |
2849 | if ((*sym_hash)->root.type == bfd_link_hash_new) | |
2850 | { | |
2851 | BFD_ASSERT ((flags & BSF_CONSTRUCTOR) != 0); | |
2852 | *sym_hash = NULL; | |
2853 | } | |
2854 | } | |
2855 | ||
b34976b6 | 2856 | return TRUE; |
e135f41b NC |
2857 | } |
2858 | \f | |
116c20d2 | 2859 | /* Look up an entry in an the header file hash table. */ |
e135f41b NC |
2860 | |
2861 | #define aout_link_includes_lookup(table, string, create, copy) \ | |
2862 | ((struct aout_link_includes_entry *) \ | |
2863 | bfd_hash_lookup (&(table)->root, (string), (create), (copy))) | |
2864 | ||
e135f41b NC |
2865 | /* The function to create a new entry in the header file hash table. */ |
2866 | ||
2867 | static struct bfd_hash_entry * | |
116c20d2 NC |
2868 | aout_link_includes_newfunc (struct bfd_hash_entry *entry, |
2869 | struct bfd_hash_table *table, | |
2870 | const char *string) | |
e135f41b | 2871 | { |
116c20d2 | 2872 | struct aout_link_includes_entry * ret = |
e135f41b NC |
2873 | (struct aout_link_includes_entry *) entry; |
2874 | ||
2875 | /* Allocate the structure if it has not already been allocated by a | |
2876 | subclass. */ | |
116c20d2 NC |
2877 | if (ret == NULL) |
2878 | ret = bfd_hash_allocate (table, | |
2879 | sizeof (struct aout_link_includes_entry)); | |
2880 | if (ret == NULL) | |
2881 | return NULL; | |
e135f41b NC |
2882 | |
2883 | /* Call the allocation method of the superclass. */ | |
2884 | ret = ((struct aout_link_includes_entry *) | |
2885 | bfd_hash_newfunc ((struct bfd_hash_entry *) ret, table, string)); | |
2886 | if (ret) | |
116c20d2 NC |
2887 | /* Set local fields. */ |
2888 | ret->totals = NULL; | |
e135f41b NC |
2889 | |
2890 | return (struct bfd_hash_entry *) ret; | |
2891 | } | |
2892 | ||
116c20d2 | 2893 | static bfd_boolean |
7686d77d | 2894 | aout_link_write_other_symbol (struct bfd_hash_entry *bh, void *data) |
e135f41b | 2895 | { |
7686d77d | 2896 | struct aout_link_hash_entry *h = (struct aout_link_hash_entry *) bh; |
57402f1e | 2897 | struct aout_final_link_info *flaginfo = (struct aout_final_link_info *) data; |
116c20d2 NC |
2898 | bfd *output_bfd; |
2899 | int type; | |
2900 | bfd_vma val; | |
2901 | struct external_nlist outsym; | |
2902 | bfd_size_type indx; | |
2903 | bfd_size_type amt; | |
e135f41b | 2904 | |
116c20d2 NC |
2905 | if (h->root.type == bfd_link_hash_warning) |
2906 | { | |
2907 | h = (struct aout_link_hash_entry *) h->root.u.i.link; | |
2908 | if (h->root.type == bfd_link_hash_new) | |
2909 | return TRUE; | |
2910 | } | |
e135f41b | 2911 | |
57402f1e | 2912 | output_bfd = flaginfo->output_bfd; |
e135f41b | 2913 | |
116c20d2 | 2914 | if (aout_backend_info (output_bfd)->write_dynamic_symbol != NULL) |
e135f41b | 2915 | { |
116c20d2 | 2916 | if (! ((*aout_backend_info (output_bfd)->write_dynamic_symbol) |
57402f1e | 2917 | (output_bfd, flaginfo->info, h))) |
e135f41b | 2918 | { |
116c20d2 NC |
2919 | /* FIXME: No way to handle errors. */ |
2920 | abort (); | |
e135f41b | 2921 | } |
116c20d2 | 2922 | } |
e135f41b | 2923 | |
116c20d2 NC |
2924 | if (h->written) |
2925 | return TRUE; | |
e135f41b | 2926 | |
116c20d2 | 2927 | h->written = TRUE; |
e135f41b | 2928 | |
116c20d2 NC |
2929 | /* An indx of -2 means the symbol must be written. */ |
2930 | if (h->indx != -2 | |
57402f1e NC |
2931 | && (flaginfo->info->strip == strip_all |
2932 | || (flaginfo->info->strip == strip_some | |
2933 | && bfd_hash_lookup (flaginfo->info->keep_hash, h->root.root.string, | |
116c20d2 NC |
2934 | FALSE, FALSE) == NULL))) |
2935 | return TRUE; | |
e135f41b | 2936 | |
116c20d2 | 2937 | switch (h->root.type) |
e135f41b | 2938 | { |
116c20d2 NC |
2939 | default: |
2940 | abort (); | |
2941 | /* Avoid variable not initialized warnings. */ | |
2942 | return TRUE; | |
2943 | case bfd_link_hash_new: | |
2944 | /* This can happen for set symbols when sets are not being | |
2945 | built. */ | |
2946 | return TRUE; | |
2947 | case bfd_link_hash_undefined: | |
2948 | type = N_UNDF | N_EXT; | |
2949 | val = 0; | |
2950 | break; | |
2951 | case bfd_link_hash_defined: | |
2952 | case bfd_link_hash_defweak: | |
2953 | { | |
2954 | asection *sec; | |
2955 | ||
2956 | sec = h->root.u.def.section->output_section; | |
2957 | BFD_ASSERT (bfd_is_abs_section (sec) | |
2958 | || sec->owner == output_bfd); | |
2959 | if (sec == obj_textsec (output_bfd)) | |
2960 | type = h->root.type == bfd_link_hash_defined ? N_TEXT : N_WEAKT; | |
2961 | else if (sec == obj_datasec (output_bfd)) | |
2962 | type = h->root.type == bfd_link_hash_defined ? N_DATA : N_WEAKD; | |
2963 | else if (sec == obj_bsssec (output_bfd)) | |
2964 | type = h->root.type == bfd_link_hash_defined ? N_BSS : N_WEAKB; | |
2965 | else | |
2966 | type = h->root.type == bfd_link_hash_defined ? N_ABS : N_WEAKA; | |
2967 | type |= N_EXT; | |
2968 | val = (h->root.u.def.value | |
2969 | + sec->vma | |
2970 | + h->root.u.def.section->output_offset); | |
2971 | } | |
2972 | break; | |
2973 | case bfd_link_hash_common: | |
2974 | type = N_UNDF | N_EXT; | |
2975 | val = h->root.u.c.size; | |
2976 | break; | |
2977 | case bfd_link_hash_undefweak: | |
2978 | type = N_WEAKU; | |
2979 | val = 0; | |
2980 | case bfd_link_hash_indirect: | |
2981 | case bfd_link_hash_warning: | |
2982 | /* FIXME: Ignore these for now. The circumstances under which | |
2983 | they should be written out are not clear to me. */ | |
2984 | return TRUE; | |
e135f41b NC |
2985 | } |
2986 | ||
116c20d2 | 2987 | H_PUT_8 (output_bfd, type, outsym.e_type); |
57402f1e | 2988 | indx = add_to_stringtab (output_bfd, flaginfo->strtab, h->root.root.string, |
116c20d2 NC |
2989 | FALSE); |
2990 | if (indx == (bfd_size_type) -1) | |
2991 | /* FIXME: No way to handle errors. */ | |
2992 | abort (); | |
e135f41b | 2993 | |
116c20d2 NC |
2994 | PUT_WORD (output_bfd, indx, outsym.e_strx); |
2995 | PUT_WORD (output_bfd, val, outsym.e_value); | |
e135f41b | 2996 | |
116c20d2 | 2997 | amt = EXTERNAL_NLIST_SIZE; |
57402f1e | 2998 | if (bfd_seek (output_bfd, flaginfo->symoff, SEEK_SET) != 0 |
116c20d2 NC |
2999 | || bfd_bwrite ((void *) &outsym, amt, output_bfd) != amt) |
3000 | /* FIXME: No way to handle errors. */ | |
3001 | abort (); | |
e135f41b | 3002 | |
57402f1e | 3003 | flaginfo->symoff += amt; |
116c20d2 NC |
3004 | h->indx = obj_aout_external_sym_count (output_bfd); |
3005 | ++obj_aout_external_sym_count (output_bfd); | |
e135f41b | 3006 | |
116c20d2 NC |
3007 | return TRUE; |
3008 | } | |
e135f41b | 3009 | |
116c20d2 | 3010 | /* Handle a link order which is supposed to generate a reloc. */ |
e135f41b | 3011 | |
116c20d2 | 3012 | static bfd_boolean |
57402f1e | 3013 | aout_link_reloc_link_order (struct aout_final_link_info *flaginfo, |
116c20d2 NC |
3014 | asection *o, |
3015 | struct bfd_link_order *p) | |
3016 | { | |
3017 | struct bfd_link_order_reloc *pr; | |
3018 | int r_index; | |
3019 | int r_extern; | |
3020 | reloc_howto_type *howto; | |
3021 | file_ptr *reloff_ptr; | |
3022 | struct reloc_std_external srel; | |
3023 | void * rel_ptr; | |
3024 | bfd_size_type rel_size; | |
e135f41b | 3025 | |
116c20d2 | 3026 | pr = p->u.reloc.p; |
e135f41b | 3027 | |
116c20d2 | 3028 | if (p->type == bfd_section_reloc_link_order) |
e135f41b | 3029 | { |
116c20d2 NC |
3030 | r_extern = 0; |
3031 | if (bfd_is_abs_section (pr->u.section)) | |
3032 | r_index = N_ABS | N_EXT; | |
3033 | else | |
e135f41b | 3034 | { |
57402f1e | 3035 | BFD_ASSERT (pr->u.section->owner == flaginfo->output_bfd); |
116c20d2 | 3036 | r_index = pr->u.section->target_index; |
e135f41b NC |
3037 | } |
3038 | } | |
116c20d2 | 3039 | else |
e135f41b | 3040 | { |
116c20d2 | 3041 | struct aout_link_hash_entry *h; |
e135f41b | 3042 | |
116c20d2 NC |
3043 | BFD_ASSERT (p->type == bfd_symbol_reloc_link_order); |
3044 | r_extern = 1; | |
3045 | h = ((struct aout_link_hash_entry *) | |
57402f1e | 3046 | bfd_wrapped_link_hash_lookup (flaginfo->output_bfd, flaginfo->info, |
116c20d2 NC |
3047 | pr->u.name, FALSE, FALSE, TRUE)); |
3048 | if (h != NULL | |
3049 | && h->indx >= 0) | |
3050 | r_index = h->indx; | |
3051 | else if (h != NULL) | |
3052 | { | |
3053 | /* We decided to strip this symbol, but it turns out that we | |
3054 | can't. Note that we lose the other and desc information | |
3055 | here. I don't think that will ever matter for a global | |
3056 | symbol. */ | |
3057 | h->indx = -2; | |
3058 | h->written = FALSE; | |
57402f1e | 3059 | if (!aout_link_write_other_symbol (&h->root.root, flaginfo)) |
116c20d2 NC |
3060 | return FALSE; |
3061 | r_index = h->indx; | |
e135f41b | 3062 | } |
116c20d2 | 3063 | else |
e135f41b | 3064 | { |
57402f1e NC |
3065 | if (! ((*flaginfo->info->callbacks->unattached_reloc) |
3066 | (flaginfo->info, pr->u.name, NULL, NULL, (bfd_vma) 0))) | |
116c20d2 NC |
3067 | return FALSE; |
3068 | r_index = 0; | |
e135f41b NC |
3069 | } |
3070 | } | |
3071 | ||
57402f1e | 3072 | howto = bfd_reloc_type_lookup (flaginfo->output_bfd, pr->reloc); |
116c20d2 | 3073 | if (howto == 0) |
e135f41b | 3074 | { |
116c20d2 NC |
3075 | bfd_set_error (bfd_error_bad_value); |
3076 | return FALSE; | |
e135f41b NC |
3077 | } |
3078 | ||
57402f1e NC |
3079 | if (o == obj_textsec (flaginfo->output_bfd)) |
3080 | reloff_ptr = &flaginfo->treloff; | |
3081 | else if (o == obj_datasec (flaginfo->output_bfd)) | |
3082 | reloff_ptr = &flaginfo->dreloff; | |
116c20d2 NC |
3083 | else |
3084 | abort (); | |
e135f41b | 3085 | |
116c20d2 | 3086 | #ifdef MY_put_reloc |
57402f1e | 3087 | MY_put_reloc(flaginfo->output_bfd, r_extern, r_index, p->offset, howto, |
116c20d2 NC |
3088 | &srel); |
3089 | #else | |
3090 | { | |
3091 | int r_pcrel; | |
3092 | int r_baserel; | |
3093 | int r_jmptable; | |
3094 | int r_relative; | |
3095 | int r_length; | |
e135f41b | 3096 | |
116c20d2 | 3097 | fprintf (stderr, "TODO: line %d in bfd/pdp11.c\n", __LINE__); |
e135f41b | 3098 | |
116c20d2 NC |
3099 | r_pcrel = howto->pc_relative; |
3100 | r_baserel = (howto->type & 8) != 0; | |
3101 | r_jmptable = (howto->type & 16) != 0; | |
3102 | r_relative = (howto->type & 32) != 0; | |
3103 | r_length = howto->size; | |
e135f41b | 3104 | |
57402f1e NC |
3105 | PUT_WORD (flaginfo->output_bfd, p->offset, srel.r_address); |
3106 | if (bfd_header_big_endian (flaginfo->output_bfd)) | |
116c20d2 NC |
3107 | { |
3108 | srel.r_index[0] = r_index >> 16; | |
3109 | srel.r_index[1] = r_index >> 8; | |
3110 | srel.r_index[2] = r_index; | |
3111 | srel.r_type[0] = | |
3112 | ((r_extern ? RELOC_STD_BITS_EXTERN_BIG : 0) | |
3113 | | (r_pcrel ? RELOC_STD_BITS_PCREL_BIG : 0) | |
3114 | | (r_baserel ? RELOC_STD_BITS_BASEREL_BIG : 0) | |
3115 | | (r_jmptable ? RELOC_STD_BITS_JMPTABLE_BIG : 0) | |
3116 | | (r_relative ? RELOC_STD_BITS_RELATIVE_BIG : 0) | |
3117 | | (r_length << RELOC_STD_BITS_LENGTH_SH_BIG)); | |
3118 | } | |
3119 | else | |
3120 | { | |
3121 | srel.r_index[2] = r_index >> 16; | |
3122 | srel.r_index[1] = r_index >> 8; | |
3123 | srel.r_index[0] = r_index; | |
3124 | srel.r_type[0] = | |
3125 | ((r_extern ? RELOC_STD_BITS_EXTERN_LITTLE : 0) | |
3126 | | (r_pcrel ? RELOC_STD_BITS_PCREL_LITTLE : 0) | |
3127 | | (r_baserel ? RELOC_STD_BITS_BASEREL_LITTLE : 0) | |
3128 | | (r_jmptable ? RELOC_STD_BITS_JMPTABLE_LITTLE : 0) | |
3129 | | (r_relative ? RELOC_STD_BITS_RELATIVE_LITTLE : 0) | |
3130 | | (r_length << RELOC_STD_BITS_LENGTH_SH_LITTLE)); | |
3131 | } | |
3132 | } | |
3133 | #endif | |
3134 | rel_ptr = (void *) &srel; | |
e135f41b | 3135 | |
116c20d2 NC |
3136 | /* We have to write the addend into the object file, since |
3137 | standard a.out relocs are in place. It would be more | |
3138 | reliable if we had the current contents of the file here, | |
3139 | rather than assuming zeroes, but we can't read the file since | |
3140 | it was opened using bfd_openw. */ | |
3141 | if (pr->addend != 0) | |
e135f41b | 3142 | { |
116c20d2 NC |
3143 | bfd_size_type size; |
3144 | bfd_reloc_status_type r; | |
3145 | bfd_byte *buf; | |
3146 | bfd_boolean ok; | |
3147 | ||
3148 | size = bfd_get_reloc_size (howto); | |
3149 | buf = bfd_zmalloc (size); | |
3150 | if (buf == NULL) | |
3151 | return FALSE; | |
57402f1e | 3152 | r = MY_relocate_contents (howto, flaginfo->output_bfd, |
116c20d2 NC |
3153 | pr->addend, buf); |
3154 | switch (r) | |
3155 | { | |
3156 | case bfd_reloc_ok: | |
3157 | break; | |
3158 | default: | |
3159 | case bfd_reloc_outofrange: | |
3160 | abort (); | |
3161 | case bfd_reloc_overflow: | |
57402f1e NC |
3162 | if (! ((*flaginfo->info->callbacks->reloc_overflow) |
3163 | (flaginfo->info, NULL, | |
116c20d2 | 3164 | (p->type == bfd_section_reloc_link_order |
57402f1e | 3165 | ? bfd_section_name (flaginfo->output_bfd, |
116c20d2 NC |
3166 | pr->u.section) |
3167 | : pr->u.name), | |
3168 | howto->name, pr->addend, NULL, | |
3169 | (asection *) NULL, (bfd_vma) 0))) | |
3170 | { | |
3171 | free (buf); | |
3172 | return FALSE; | |
3173 | } | |
3174 | break; | |
3175 | } | |
57402f1e | 3176 | ok = bfd_set_section_contents (flaginfo->output_bfd, o, |
116c20d2 NC |
3177 | (void *) buf, |
3178 | (file_ptr) p->offset, | |
3179 | size); | |
3180 | free (buf); | |
3181 | if (! ok) | |
3182 | return FALSE; | |
e135f41b NC |
3183 | } |
3184 | ||
57402f1e NC |
3185 | rel_size = obj_reloc_entry_size (flaginfo->output_bfd); |
3186 | if (bfd_seek (flaginfo->output_bfd, *reloff_ptr, SEEK_SET) != 0 | |
3187 | || bfd_bwrite (rel_ptr, rel_size, flaginfo->output_bfd) != rel_size) | |
b34976b6 | 3188 | return FALSE; |
e135f41b | 3189 | |
116c20d2 | 3190 | *reloff_ptr += rel_size; |
e135f41b | 3191 | |
116c20d2 NC |
3192 | /* Assert that the relocs have not run into the symbols, and that n |
3193 | the text relocs have not run into the data relocs. */ | |
57402f1e NC |
3194 | BFD_ASSERT (*reloff_ptr <= obj_sym_filepos (flaginfo->output_bfd) |
3195 | && (reloff_ptr != &flaginfo->treloff | |
116c20d2 | 3196 | || (*reloff_ptr |
57402f1e | 3197 | <= obj_datasec (flaginfo->output_bfd)->rel_filepos))); |
e135f41b | 3198 | |
116c20d2 NC |
3199 | return TRUE; |
3200 | } | |
e135f41b | 3201 | |
116c20d2 NC |
3202 | /* Get the section corresponding to a reloc index. */ |
3203 | ||
3204 | static inline asection * | |
3205 | aout_reloc_type_to_section (bfd *abfd, int type) | |
3206 | { | |
3207 | switch (type) | |
e135f41b | 3208 | { |
116c20d2 NC |
3209 | case RTEXT: return obj_textsec (abfd); |
3210 | case RDATA: return obj_datasec (abfd); | |
3211 | case RBSS: return obj_bsssec (abfd); | |
3212 | case RABS: return bfd_abs_section_ptr; | |
3213 | case REXT: return bfd_und_section_ptr; | |
3214 | default: abort (); | |
e135f41b | 3215 | } |
e135f41b NC |
3216 | } |
3217 | ||
b34976b6 | 3218 | static bfd_boolean |
57402f1e | 3219 | pdp11_aout_link_input_section (struct aout_final_link_info *flaginfo, |
116c20d2 NC |
3220 | bfd *input_bfd, |
3221 | asection *input_section, | |
3222 | bfd_byte *relocs, | |
3223 | bfd_size_type rel_size, | |
3224 | bfd_byte *contents) | |
e135f41b | 3225 | { |
116c20d2 NC |
3226 | bfd_boolean (*check_dynamic_reloc) |
3227 | (struct bfd_link_info *, bfd *, asection *, | |
3228 | struct aout_link_hash_entry *, void *, bfd_byte *, bfd_boolean *, | |
3229 | bfd_vma *); | |
e135f41b | 3230 | bfd *output_bfd; |
116c20d2 NC |
3231 | bfd_boolean relocatable; |
3232 | struct external_nlist *syms; | |
e135f41b | 3233 | char *strings; |
116c20d2 | 3234 | struct aout_link_hash_entry **sym_hashes; |
e135f41b | 3235 | int *symbol_map; |
116c20d2 NC |
3236 | bfd_byte *rel; |
3237 | bfd_byte *rel_end; | |
e135f41b | 3238 | |
57402f1e | 3239 | output_bfd = flaginfo->output_bfd; |
116c20d2 | 3240 | check_dynamic_reloc = aout_backend_info (output_bfd)->check_dynamic_reloc; |
e135f41b | 3241 | |
116c20d2 NC |
3242 | BFD_ASSERT (obj_reloc_entry_size (input_bfd) == RELOC_SIZE); |
3243 | BFD_ASSERT (input_bfd->xvec->header_byteorder | |
3244 | == output_bfd->xvec->header_byteorder); | |
e135f41b | 3245 | |
57402f1e | 3246 | relocatable = flaginfo->info->relocatable; |
116c20d2 NC |
3247 | syms = obj_aout_external_syms (input_bfd); |
3248 | strings = obj_aout_external_strings (input_bfd); | |
3249 | sym_hashes = obj_aout_sym_hashes (input_bfd); | |
57402f1e | 3250 | symbol_map = flaginfo->symbol_map; |
116c20d2 | 3251 | |
116c20d2 NC |
3252 | rel = relocs; |
3253 | rel_end = rel + rel_size; | |
3254 | for (; rel < rel_end; rel += RELOC_SIZE) | |
e135f41b | 3255 | { |
116c20d2 NC |
3256 | bfd_vma r_addr; |
3257 | int r_index; | |
3258 | int r_type; | |
3259 | int r_pcrel; | |
3260 | int r_extern; | |
3261 | reloc_howto_type *howto; | |
3262 | struct aout_link_hash_entry *h = NULL; | |
3263 | bfd_vma relocation; | |
3264 | bfd_reloc_status_type r; | |
3265 | int reloc_entry; | |
e135f41b | 3266 | |
116c20d2 NC |
3267 | reloc_entry = GET_WORD (input_bfd, (void *) rel); |
3268 | if (reloc_entry == 0) | |
e135f41b NC |
3269 | continue; |
3270 | ||
116c20d2 NC |
3271 | { |
3272 | unsigned int howto_idx; | |
e135f41b | 3273 | |
116c20d2 NC |
3274 | r_index = (reloc_entry & RIDXMASK) >> 4; |
3275 | r_type = reloc_entry & RTYPE; | |
3276 | r_pcrel = reloc_entry & RELFLG; | |
3277 | r_addr = (char *) rel - (char *) relocs; | |
e135f41b | 3278 | |
116c20d2 | 3279 | r_extern = (r_type == REXT); |
e135f41b | 3280 | |
116c20d2 NC |
3281 | howto_idx = r_pcrel; |
3282 | BFD_ASSERT (howto_idx < TABLE_SIZE (howto_table_pdp11)); | |
3283 | howto = howto_table_pdp11 + howto_idx; | |
3284 | } | |
3285 | ||
3286 | if (relocatable) | |
e135f41b | 3287 | { |
116c20d2 NC |
3288 | /* We are generating a relocatable output file, and must |
3289 | modify the reloc accordingly. */ | |
3290 | if (r_extern) | |
3291 | { | |
3292 | /* If we know the symbol this relocation is against, | |
3293 | convert it into a relocation against a section. This | |
3294 | is what the native linker does. */ | |
3295 | h = sym_hashes[r_index]; | |
3296 | if (h != NULL | |
3297 | && (h->root.type == bfd_link_hash_defined | |
3298 | || h->root.type == bfd_link_hash_defweak)) | |
3299 | { | |
3300 | asection *output_section; | |
e135f41b | 3301 | |
116c20d2 NC |
3302 | /* Compute a new r_index. */ |
3303 | output_section = h->root.u.def.section->output_section; | |
e135f41b | 3304 | if (output_section == obj_textsec (output_bfd)) |
116c20d2 | 3305 | r_type = N_TEXT; |
e135f41b | 3306 | else if (output_section == obj_datasec (output_bfd)) |
116c20d2 | 3307 | r_type = N_DATA; |
e135f41b | 3308 | else if (output_section == obj_bsssec (output_bfd)) |
116c20d2 | 3309 | r_type = N_BSS; |
e135f41b | 3310 | else |
116c20d2 | 3311 | r_type = N_ABS; |
e135f41b | 3312 | |
116c20d2 NC |
3313 | /* Add the symbol value and the section VMA to the |
3314 | addend stored in the contents. */ | |
3315 | relocation = (h->root.u.def.value | |
3316 | + output_section->vma | |
3317 | + h->root.u.def.section->output_offset); | |
e135f41b | 3318 | } |
116c20d2 | 3319 | else |
e135f41b | 3320 | { |
116c20d2 NC |
3321 | /* We must change r_index according to the symbol |
3322 | map. */ | |
3323 | r_index = symbol_map[r_index]; | |
e135f41b | 3324 | |
116c20d2 | 3325 | if (r_index == -1) |
e135f41b | 3326 | { |
116c20d2 | 3327 | if (h != NULL) |
e135f41b | 3328 | { |
116c20d2 NC |
3329 | /* We decided to strip this symbol, but it |
3330 | turns out that we can't. Note that we | |
3331 | lose the other and desc information here. | |
3332 | I don't think that will ever matter for a | |
3333 | global symbol. */ | |
3334 | if (h->indx < 0) | |
e135f41b | 3335 | { |
116c20d2 NC |
3336 | h->indx = -2; |
3337 | h->written = FALSE; | |
7686d77d | 3338 | if (!aout_link_write_other_symbol (&h->root.root, |
57402f1e | 3339 | flaginfo)) |
116c20d2 | 3340 | return FALSE; |
e135f41b | 3341 | } |
116c20d2 NC |
3342 | r_index = h->indx; |
3343 | } | |
3344 | else | |
3345 | { | |
3346 | const char *name; | |
3347 | ||
3348 | name = strings + GET_WORD (input_bfd, | |
3349 | syms[r_index].e_strx); | |
57402f1e NC |
3350 | if (! ((*flaginfo->info->callbacks->unattached_reloc) |
3351 | (flaginfo->info, name, input_bfd, input_section, | |
116c20d2 NC |
3352 | r_addr))) |
3353 | return FALSE; | |
3354 | r_index = 0; | |
e135f41b NC |
3355 | } |
3356 | } | |
116c20d2 NC |
3357 | |
3358 | relocation = 0; | |
e135f41b NC |
3359 | } |
3360 | ||
116c20d2 NC |
3361 | /* Write out the new r_index value. */ |
3362 | reloc_entry = GET_WORD (input_bfd, rel); | |
3363 | reloc_entry &= RIDXMASK; | |
3364 | reloc_entry |= r_index << 4; | |
3365 | PUT_WORD (input_bfd, reloc_entry, rel); | |
3366 | } | |
3367 | else | |
3368 | { | |
3369 | asection *section; | |
3370 | ||
3371 | /* This is a relocation against a section. We must | |
3372 | adjust by the amount that the section moved. */ | |
3373 | section = aout_reloc_type_to_section (input_bfd, r_type); | |
3374 | relocation = (section->output_section->vma | |
3375 | + section->output_offset | |
3376 | - section->vma); | |
3377 | } | |
3378 | ||
3379 | /* Change the address of the relocation. */ | |
3380 | fprintf (stderr, "TODO: change the address of the relocation\n"); | |
3381 | ||
3382 | /* Adjust a PC relative relocation by removing the reference | |
3383 | to the original address in the section and including the | |
3384 | reference to the new address. */ | |
3385 | if (r_pcrel) | |
3386 | relocation -= (input_section->output_section->vma | |
3387 | + input_section->output_offset | |
3388 | - input_section->vma); | |
3389 | ||
3390 | #ifdef MY_relocatable_reloc | |
3391 | MY_relocatable_reloc (howto, output_bfd, rel, relocation, r_addr); | |
3392 | #endif | |
3393 | ||
3394 | if (relocation == 0) | |
3395 | r = bfd_reloc_ok; | |
3396 | else | |
3397 | r = MY_relocate_contents (howto, | |
3398 | input_bfd, relocation, | |
3399 | contents + r_addr); | |
3400 | } | |
3401 | else | |
3402 | { | |
3403 | bfd_boolean hundef; | |
3404 | ||
3405 | /* We are generating an executable, and must do a full | |
3406 | relocation. */ | |
3407 | hundef = FALSE; | |
3408 | if (r_extern) | |
3409 | { | |
3410 | h = sym_hashes[r_index]; | |
3411 | ||
3412 | if (h != NULL | |
3413 | && (h->root.type == bfd_link_hash_defined | |
3414 | || h->root.type == bfd_link_hash_defweak)) | |
e135f41b | 3415 | { |
116c20d2 NC |
3416 | relocation = (h->root.u.def.value |
3417 | + h->root.u.def.section->output_section->vma | |
3418 | + h->root.u.def.section->output_offset); | |
e135f41b | 3419 | } |
116c20d2 NC |
3420 | else if (h != NULL |
3421 | && h->root.type == bfd_link_hash_undefweak) | |
3422 | relocation = 0; | |
e135f41b NC |
3423 | else |
3424 | { | |
116c20d2 NC |
3425 | hundef = TRUE; |
3426 | relocation = 0; | |
3427 | } | |
3428 | } | |
3429 | else | |
3430 | { | |
3431 | asection *section; | |
e135f41b | 3432 | |
116c20d2 NC |
3433 | section = aout_reloc_type_to_section (input_bfd, r_type); |
3434 | relocation = (section->output_section->vma | |
3435 | + section->output_offset | |
3436 | - section->vma); | |
3437 | if (r_pcrel) | |
3438 | relocation += input_section->vma; | |
3439 | } | |
e135f41b | 3440 | |
116c20d2 NC |
3441 | if (check_dynamic_reloc != NULL) |
3442 | { | |
3443 | bfd_boolean skip; | |
e135f41b | 3444 | |
116c20d2 | 3445 | if (! ((*check_dynamic_reloc) |
57402f1e | 3446 | (flaginfo->info, input_bfd, input_section, h, |
116c20d2 NC |
3447 | (void *) rel, contents, &skip, &relocation))) |
3448 | return FALSE; | |
3449 | if (skip) | |
3450 | continue; | |
3451 | } | |
3452 | ||
3453 | /* Now warn if a global symbol is undefined. We could not | |
3454 | do this earlier, because check_dynamic_reloc might want | |
3455 | to skip this reloc. */ | |
57402f1e | 3456 | if (hundef && ! flaginfo->info->shared) |
116c20d2 NC |
3457 | { |
3458 | const char *name; | |
3459 | ||
3460 | if (h != NULL) | |
3461 | name = h->root.root.string; | |
3462 | else | |
3463 | name = strings + GET_WORD (input_bfd, syms[r_index].e_strx); | |
57402f1e NC |
3464 | if (! ((*flaginfo->info->callbacks->undefined_symbol) |
3465 | (flaginfo->info, name, input_bfd, input_section, | |
116c20d2 NC |
3466 | r_addr, TRUE))) |
3467 | return FALSE; | |
e135f41b | 3468 | } |
116c20d2 NC |
3469 | |
3470 | r = MY_final_link_relocate (howto, | |
3471 | input_bfd, input_section, | |
3472 | contents, r_addr, relocation, | |
3473 | (bfd_vma) 0); | |
e135f41b NC |
3474 | } |
3475 | ||
116c20d2 | 3476 | if (r != bfd_reloc_ok) |
e135f41b | 3477 | { |
116c20d2 NC |
3478 | switch (r) |
3479 | { | |
3480 | default: | |
3481 | case bfd_reloc_outofrange: | |
3482 | abort (); | |
3483 | case bfd_reloc_overflow: | |
3484 | { | |
3485 | const char *name; | |
3486 | ||
3487 | if (h != NULL) | |
3488 | name = NULL; | |
3489 | else if (r_extern) | |
3490 | name = strings + GET_WORD (input_bfd, | |
3491 | syms[r_index].e_strx); | |
3492 | else | |
3493 | { | |
3494 | asection *s; | |
3495 | ||
3496 | s = aout_reloc_type_to_section (input_bfd, r_type); | |
3497 | name = bfd_section_name (input_bfd, s); | |
3498 | } | |
57402f1e NC |
3499 | if (! ((*flaginfo->info->callbacks->reloc_overflow) |
3500 | (flaginfo->info, (h ? &h->root : NULL), name, | |
116c20d2 NC |
3501 | howto->name, (bfd_vma) 0, input_bfd, |
3502 | input_section, r_addr))) | |
3503 | return FALSE; | |
3504 | } | |
3505 | break; | |
3506 | } | |
e135f41b | 3507 | } |
e135f41b NC |
3508 | } |
3509 | ||
116c20d2 NC |
3510 | return TRUE; |
3511 | } | |
3512 | ||
3513 | /* Link an a.out section into the output file. */ | |
3514 | ||
3515 | static bfd_boolean | |
57402f1e | 3516 | aout_link_input_section (struct aout_final_link_info *flaginfo, |
116c20d2 NC |
3517 | bfd *input_bfd, |
3518 | asection *input_section, | |
3519 | file_ptr *reloff_ptr, | |
3520 | bfd_size_type rel_size) | |
3521 | { | |
3522 | bfd_size_type input_size; | |
3523 | void * relocs; | |
3524 | ||
3525 | /* Get the section contents. */ | |
3526 | input_size = input_section->size; | |
3527 | if (! bfd_get_section_contents (input_bfd, input_section, | |
57402f1e | 3528 | (void *) flaginfo->contents, |
116c20d2 NC |
3529 | (file_ptr) 0, input_size)) |
3530 | return FALSE; | |
3531 | ||
3532 | /* Read in the relocs if we haven't already done it. */ | |
3533 | if (aout_section_data (input_section) != NULL | |
3534 | && aout_section_data (input_section)->relocs != NULL) | |
3535 | relocs = aout_section_data (input_section)->relocs; | |
3536 | else | |
e135f41b | 3537 | { |
57402f1e | 3538 | relocs = flaginfo->relocs; |
116c20d2 NC |
3539 | if (rel_size > 0) |
3540 | { | |
3541 | if (bfd_seek (input_bfd, input_section->rel_filepos, SEEK_SET) != 0 | |
3542 | || bfd_bread (relocs, rel_size, input_bfd) != rel_size) | |
3543 | return FALSE; | |
3544 | } | |
3545 | } | |
e135f41b | 3546 | |
116c20d2 | 3547 | /* Relocate the section contents. */ |
57402f1e | 3548 | if (! pdp11_aout_link_input_section (flaginfo, input_bfd, input_section, |
116c20d2 | 3549 | (bfd_byte *) relocs, |
57402f1e | 3550 | rel_size, flaginfo->contents)) |
116c20d2 NC |
3551 | return FALSE; |
3552 | ||
3553 | /* Write out the section contents. */ | |
57402f1e | 3554 | if (! bfd_set_section_contents (flaginfo->output_bfd, |
116c20d2 | 3555 | input_section->output_section, |
57402f1e | 3556 | (void *) flaginfo->contents, |
116c20d2 NC |
3557 | (file_ptr) input_section->output_offset, |
3558 | input_size)) | |
3559 | return FALSE; | |
3560 | ||
3561 | /* If we are producing relocatable output, the relocs were | |
3562 | modified, and we now write them out. */ | |
57402f1e | 3563 | if (flaginfo->info->relocatable && rel_size > 0) |
116c20d2 | 3564 | { |
57402f1e | 3565 | if (bfd_seek (flaginfo->output_bfd, *reloff_ptr, SEEK_SET) != 0) |
116c20d2 | 3566 | return FALSE; |
57402f1e | 3567 | if (bfd_bwrite (relocs, rel_size, flaginfo->output_bfd) != rel_size) |
116c20d2 NC |
3568 | return FALSE; |
3569 | *reloff_ptr += rel_size; | |
3570 | ||
3571 | /* Assert that the relocs have not run into the symbols, and | |
3572 | that if these are the text relocs they have not run into the | |
3573 | data relocs. */ | |
57402f1e NC |
3574 | BFD_ASSERT (*reloff_ptr <= obj_sym_filepos (flaginfo->output_bfd) |
3575 | && (reloff_ptr != &flaginfo->treloff | |
116c20d2 | 3576 | || (*reloff_ptr |
57402f1e | 3577 | <= obj_datasec (flaginfo->output_bfd)->rel_filepos))); |
116c20d2 NC |
3578 | } |
3579 | ||
3580 | return TRUE; | |
3581 | } | |
3582 | ||
3583 | /* Link an a.out input BFD into the output file. */ | |
3584 | ||
3585 | static bfd_boolean | |
57402f1e | 3586 | aout_link_input_bfd (struct aout_final_link_info *flaginfo, bfd *input_bfd) |
116c20d2 | 3587 | { |
116c20d2 NC |
3588 | BFD_ASSERT (bfd_get_format (input_bfd) == bfd_object); |
3589 | ||
3590 | /* If this is a dynamic object, it may need special handling. */ | |
3591 | if ((input_bfd->flags & DYNAMIC) != 0 | |
3592 | && aout_backend_info (input_bfd)->link_dynamic_object != NULL) | |
3593 | return ((*aout_backend_info (input_bfd)->link_dynamic_object) | |
57402f1e | 3594 | (flaginfo->info, input_bfd)); |
116c20d2 NC |
3595 | |
3596 | /* Get the symbols. We probably have them already, unless | |
57402f1e | 3597 | flaginfo->info->keep_memory is FALSE. */ |
116c20d2 NC |
3598 | if (! aout_get_external_symbols (input_bfd)) |
3599 | return FALSE; | |
3600 | ||
116c20d2 | 3601 | /* Write out the symbols and get a map of the new indices. The map |
57402f1e NC |
3602 | is placed into flaginfo->symbol_map. */ |
3603 | if (! aout_link_write_symbols (flaginfo, input_bfd)) | |
116c20d2 NC |
3604 | return FALSE; |
3605 | ||
3606 | /* Relocate and write out the sections. These functions use the | |
3607 | symbol map created by aout_link_write_symbols. The linker_mark | |
3608 | field will be set if these sections are to be included in the | |
3609 | link, which will normally be the case. */ | |
3610 | if (obj_textsec (input_bfd)->linker_mark) | |
3611 | { | |
57402f1e | 3612 | if (! aout_link_input_section (flaginfo, input_bfd, |
116c20d2 | 3613 | obj_textsec (input_bfd), |
57402f1e | 3614 | &flaginfo->treloff, |
116c20d2 NC |
3615 | exec_hdr (input_bfd)->a_trsize)) |
3616 | return FALSE; | |
3617 | } | |
3618 | if (obj_datasec (input_bfd)->linker_mark) | |
3619 | { | |
57402f1e | 3620 | if (! aout_link_input_section (flaginfo, input_bfd, |
116c20d2 | 3621 | obj_datasec (input_bfd), |
57402f1e | 3622 | &flaginfo->dreloff, |
116c20d2 | 3623 | exec_hdr (input_bfd)->a_drsize)) |
b34976b6 | 3624 | return FALSE; |
116c20d2 NC |
3625 | } |
3626 | ||
3627 | /* If we are not keeping memory, we don't need the symbols any | |
3628 | longer. We still need them if we are keeping memory, because the | |
3629 | strings in the hash table point into them. */ | |
57402f1e | 3630 | if (! flaginfo->info->keep_memory) |
116c20d2 NC |
3631 | { |
3632 | if (! aout_link_free_symbols (input_bfd)) | |
b34976b6 | 3633 | return FALSE; |
e135f41b NC |
3634 | } |
3635 | ||
b34976b6 | 3636 | return TRUE; |
e135f41b NC |
3637 | } |
3638 | ||
116c20d2 NC |
3639 | /* Do the final link step. This is called on the output BFD. The |
3640 | INFO structure should point to a list of BFDs linked through the | |
3641 | link_next field which can be used to find each BFD which takes part | |
3642 | in the output. Also, each section in ABFD should point to a list | |
3643 | of bfd_link_order structures which list all the input sections for | |
3644 | the output section. */ | |
e135f41b | 3645 | |
116c20d2 NC |
3646 | bfd_boolean |
3647 | NAME (aout, final_link) (bfd *abfd, | |
3648 | struct bfd_link_info *info, | |
3649 | void (*callback) (bfd *, file_ptr *, file_ptr *, file_ptr *)) | |
e135f41b | 3650 | { |
116c20d2 NC |
3651 | struct aout_final_link_info aout_info; |
3652 | bfd_boolean includes_hash_initialized = FALSE; | |
3653 | bfd *sub; | |
3654 | bfd_size_type trsize, drsize; | |
3655 | bfd_size_type max_contents_size; | |
3656 | bfd_size_type max_relocs_size; | |
3657 | bfd_size_type max_sym_count; | |
3658 | bfd_size_type text_size; | |
3659 | file_ptr text_end; | |
3660 | struct bfd_link_order *p; | |
3661 | asection *o; | |
3662 | bfd_boolean have_link_order_relocs; | |
e135f41b | 3663 | |
116c20d2 NC |
3664 | if (info->shared) |
3665 | abfd->flags |= DYNAMIC; | |
e92d460e | 3666 | |
116c20d2 NC |
3667 | aout_info.info = info; |
3668 | aout_info.output_bfd = abfd; | |
3669 | aout_info.contents = NULL; | |
3670 | aout_info.relocs = NULL; | |
3671 | aout_info.symbol_map = NULL; | |
3672 | aout_info.output_syms = NULL; | |
e135f41b | 3673 | |
66eb6687 AM |
3674 | if (!bfd_hash_table_init_n (&aout_info.includes.root, |
3675 | aout_link_includes_newfunc, | |
3676 | sizeof (struct aout_link_includes_entry), | |
3677 | 251)) | |
116c20d2 NC |
3678 | goto error_return; |
3679 | includes_hash_initialized = TRUE; | |
3680 | ||
3681 | /* Figure out the largest section size. Also, if generating | |
3682 | relocatable output, count the relocs. */ | |
3683 | trsize = 0; | |
3684 | drsize = 0; | |
3685 | max_contents_size = 0; | |
3686 | max_relocs_size = 0; | |
3687 | max_sym_count = 0; | |
3688 | for (sub = info->input_bfds; sub != NULL; sub = sub->link_next) | |
e135f41b | 3689 | { |
116c20d2 NC |
3690 | size_t sz; |
3691 | ||
3692 | if (info->relocatable) | |
e135f41b | 3693 | { |
116c20d2 NC |
3694 | if (bfd_get_flavour (sub) == bfd_target_aout_flavour) |
3695 | { | |
3696 | trsize += exec_hdr (sub)->a_trsize; | |
3697 | drsize += exec_hdr (sub)->a_drsize; | |
3698 | } | |
3699 | else | |
3700 | { | |
3701 | /* FIXME: We need to identify the .text and .data sections | |
3702 | and call get_reloc_upper_bound and canonicalize_reloc to | |
3703 | work out the number of relocs needed, and then multiply | |
3704 | by the reloc size. */ | |
3705 | (*_bfd_error_handler) | |
3706 | ("%s: relocatable link from %s to %s not supported", | |
3707 | bfd_get_filename (abfd), | |
3708 | sub->xvec->name, abfd->xvec->name); | |
3709 | bfd_set_error (bfd_error_invalid_operation); | |
3710 | goto error_return; | |
3711 | } | |
e135f41b | 3712 | } |
e135f41b | 3713 | |
116c20d2 NC |
3714 | if (bfd_get_flavour (sub) == bfd_target_aout_flavour) |
3715 | { | |
3716 | sz = obj_textsec (sub)->size; | |
3717 | if (sz > max_contents_size) | |
3718 | max_contents_size = sz; | |
3719 | sz = obj_datasec (sub)->size; | |
3720 | if (sz > max_contents_size) | |
3721 | max_contents_size = sz; | |
e135f41b | 3722 | |
116c20d2 NC |
3723 | sz = exec_hdr (sub)->a_trsize; |
3724 | if (sz > max_relocs_size) | |
3725 | max_relocs_size = sz; | |
3726 | sz = exec_hdr (sub)->a_drsize; | |
3727 | if (sz > max_relocs_size) | |
3728 | max_relocs_size = sz; | |
e135f41b | 3729 | |
116c20d2 NC |
3730 | sz = obj_aout_external_sym_count (sub); |
3731 | if (sz > max_sym_count) | |
3732 | max_sym_count = sz; | |
3733 | } | |
e135f41b NC |
3734 | } |
3735 | ||
116c20d2 | 3736 | if (info->relocatable) |
e135f41b | 3737 | { |
116c20d2 NC |
3738 | if (obj_textsec (abfd) != NULL) |
3739 | trsize += (_bfd_count_link_order_relocs (obj_textsec (abfd) | |
8423293d | 3740 | ->map_head.link_order) |
116c20d2 NC |
3741 | * obj_reloc_entry_size (abfd)); |
3742 | if (obj_datasec (abfd) != NULL) | |
3743 | drsize += (_bfd_count_link_order_relocs (obj_datasec (abfd) | |
8423293d | 3744 | ->map_head.link_order) |
116c20d2 | 3745 | * obj_reloc_entry_size (abfd)); |
e135f41b | 3746 | } |
e135f41b | 3747 | |
116c20d2 NC |
3748 | exec_hdr (abfd)->a_trsize = trsize; |
3749 | exec_hdr (abfd)->a_drsize = drsize; | |
3750 | exec_hdr (abfd)->a_entry = bfd_get_start_address (abfd); | |
3751 | ||
3752 | /* Adjust the section sizes and vmas according to the magic number. | |
3753 | This sets a_text, a_data and a_bss in the exec_hdr and sets the | |
3754 | filepos for each section. */ | |
3755 | if (! NAME (aout, adjust_sizes_and_vmas) (abfd, &text_size, &text_end)) | |
3756 | goto error_return; | |
3757 | ||
3758 | /* The relocation and symbol file positions differ among a.out | |
3759 | targets. We are passed a callback routine from the backend | |
3760 | specific code to handle this. | |
3761 | FIXME: At this point we do not know how much space the symbol | |
3762 | table will require. This will not work for any (nonstandard) | |
3763 | a.out target that needs to know the symbol table size before it | |
3764 | can compute the relocation file positions. This may or may not | |
3765 | be the case for the hp300hpux target, for example. */ | |
3766 | (*callback) (abfd, &aout_info.treloff, &aout_info.dreloff, | |
3767 | &aout_info.symoff); | |
3768 | obj_textsec (abfd)->rel_filepos = aout_info.treloff; | |
3769 | obj_datasec (abfd)->rel_filepos = aout_info.dreloff; | |
3770 | obj_sym_filepos (abfd) = aout_info.symoff; | |
3771 | ||
3772 | /* We keep a count of the symbols as we output them. */ | |
3773 | obj_aout_external_sym_count (abfd) = 0; | |
3774 | ||
3775 | /* We accumulate the string table as we write out the symbols. */ | |
3776 | aout_info.strtab = _bfd_stringtab_init (); | |
3777 | if (aout_info.strtab == NULL) | |
3778 | goto error_return; | |
3779 | ||
3780 | /* Allocate buffers to hold section contents and relocs. */ | |
3781 | aout_info.contents = bfd_malloc (max_contents_size); | |
3782 | aout_info.relocs = bfd_malloc (max_relocs_size); | |
3783 | aout_info.symbol_map = bfd_malloc (max_sym_count * sizeof (int *)); | |
3784 | aout_info.output_syms = bfd_malloc ((max_sym_count + 1) | |
3785 | * sizeof (struct external_nlist)); | |
3786 | if ((aout_info.contents == NULL && max_contents_size != 0) | |
3787 | || (aout_info.relocs == NULL && max_relocs_size != 0) | |
3788 | || (aout_info.symbol_map == NULL && max_sym_count != 0) | |
3789 | || aout_info.output_syms == NULL) | |
3790 | goto error_return; | |
3791 | ||
3792 | /* If we have a symbol named __DYNAMIC, force it out now. This is | |
3793 | required by SunOS. Doing this here rather than in sunos.c is a | |
3794 | hack, but it's easier than exporting everything which would be | |
3795 | needed. */ | |
3796 | { | |
3797 | struct aout_link_hash_entry *h; | |
3798 | ||
3799 | h = aout_link_hash_lookup (aout_hash_table (info), "__DYNAMIC", | |
3800 | FALSE, FALSE, FALSE); | |
3801 | if (h != NULL) | |
7686d77d | 3802 | aout_link_write_other_symbol (&h->root.root, &aout_info); |
116c20d2 NC |
3803 | } |
3804 | ||
3805 | /* The most time efficient way to do the link would be to read all | |
3806 | the input object files into memory and then sort out the | |
3807 | information into the output file. Unfortunately, that will | |
3808 | probably use too much memory. Another method would be to step | |
3809 | through everything that composes the text section and write it | |
3810 | out, and then everything that composes the data section and write | |
3811 | it out, and then write out the relocs, and then write out the | |
3812 | symbols. Unfortunately, that requires reading stuff from each | |
3813 | input file several times, and we will not be able to keep all the | |
3814 | input files open simultaneously, and reopening them will be slow. | |
3815 | ||
3816 | What we do is basically process one input file at a time. We do | |
3817 | everything we need to do with an input file once--copy over the | |
3818 | section contents, handle the relocation information, and write | |
3819 | out the symbols--and then we throw away the information we read | |
3820 | from it. This approach requires a lot of lseeks of the output | |
3821 | file, which is unfortunate but still faster than reopening a lot | |
3822 | of files. | |
3823 | ||
3824 | We use the output_has_begun field of the input BFDs to see | |
3825 | whether we have already handled it. */ | |
3826 | for (sub = info->input_bfds; sub != NULL; sub = sub->link_next) | |
3827 | sub->output_has_begun = FALSE; | |
3828 | ||
3829 | /* Mark all sections which are to be included in the link. This | |
3830 | will normally be every section. We need to do this so that we | |
3831 | can identify any sections which the linker has decided to not | |
3832 | include. */ | |
3833 | for (o = abfd->sections; o != NULL; o = o->next) | |
e135f41b | 3834 | { |
8423293d | 3835 | for (p = o->map_head.link_order; p != NULL; p = p->next) |
116c20d2 NC |
3836 | if (p->type == bfd_indirect_link_order) |
3837 | p->u.indirect.section->linker_mark = TRUE; | |
e135f41b NC |
3838 | } |
3839 | ||
116c20d2 NC |
3840 | have_link_order_relocs = FALSE; |
3841 | for (o = abfd->sections; o != NULL; o = o->next) | |
3842 | { | |
8423293d | 3843 | for (p = o->map_head.link_order; |
116c20d2 NC |
3844 | p != NULL; |
3845 | p = p->next) | |
3846 | { | |
3847 | if (p->type == bfd_indirect_link_order | |
3848 | && (bfd_get_flavour (p->u.indirect.section->owner) | |
3849 | == bfd_target_aout_flavour)) | |
3850 | { | |
3851 | bfd *input_bfd; | |
e135f41b | 3852 | |
116c20d2 NC |
3853 | input_bfd = p->u.indirect.section->owner; |
3854 | if (! input_bfd->output_has_begun) | |
3855 | { | |
3856 | if (! aout_link_input_bfd (&aout_info, input_bfd)) | |
3857 | goto error_return; | |
3858 | input_bfd->output_has_begun = TRUE; | |
3859 | } | |
3860 | } | |
3861 | else if (p->type == bfd_section_reloc_link_order | |
3862 | || p->type == bfd_symbol_reloc_link_order) | |
3863 | /* These are handled below. */ | |
3864 | have_link_order_relocs = TRUE; | |
3865 | else | |
3866 | { | |
3867 | if (! _bfd_default_link_order (abfd, info, o, p)) | |
3868 | goto error_return; | |
3869 | } | |
3870 | } | |
3871 | } | |
e135f41b | 3872 | |
116c20d2 | 3873 | /* Write out any symbols that we have not already written out. */ |
7686d77d AM |
3874 | bfd_hash_traverse (&info->hash->table, |
3875 | aout_link_write_other_symbol, | |
3876 | &aout_info); | |
e135f41b | 3877 | |
116c20d2 NC |
3878 | /* Now handle any relocs we were asked to create by the linker. |
3879 | These did not come from any input file. We must do these after | |
3880 | we have written out all the symbols, so that we know the symbol | |
3881 | indices to use. */ | |
3882 | if (have_link_order_relocs) | |
e135f41b | 3883 | { |
116c20d2 | 3884 | for (o = abfd->sections; o != NULL; o = o->next) |
e135f41b | 3885 | { |
8423293d | 3886 | for (p = o->map_head.link_order; |
116c20d2 NC |
3887 | p != NULL; |
3888 | p = p->next) | |
3889 | { | |
3890 | if (p->type == bfd_section_reloc_link_order | |
3891 | || p->type == bfd_symbol_reloc_link_order) | |
3892 | { | |
3893 | if (! aout_link_reloc_link_order (&aout_info, o, p)) | |
3894 | goto error_return; | |
3895 | } | |
3896 | } | |
e135f41b NC |
3897 | } |
3898 | } | |
3899 | ||
116c20d2 NC |
3900 | if (aout_info.contents != NULL) |
3901 | { | |
3902 | free (aout_info.contents); | |
3903 | aout_info.contents = NULL; | |
3904 | } | |
3905 | if (aout_info.relocs != NULL) | |
3906 | { | |
3907 | free (aout_info.relocs); | |
3908 | aout_info.relocs = NULL; | |
3909 | } | |
3910 | if (aout_info.symbol_map != NULL) | |
3911 | { | |
3912 | free (aout_info.symbol_map); | |
3913 | aout_info.symbol_map = NULL; | |
3914 | } | |
3915 | if (aout_info.output_syms != NULL) | |
3916 | { | |
3917 | free (aout_info.output_syms); | |
3918 | aout_info.output_syms = NULL; | |
3919 | } | |
3920 | if (includes_hash_initialized) | |
3921 | { | |
3922 | bfd_hash_table_free (&aout_info.includes.root); | |
3923 | includes_hash_initialized = FALSE; | |
3924 | } | |
e135f41b | 3925 | |
116c20d2 NC |
3926 | /* Finish up any dynamic linking we may be doing. */ |
3927 | if (aout_backend_info (abfd)->finish_dynamic_link != NULL) | |
3928 | { | |
3929 | if (! (*aout_backend_info (abfd)->finish_dynamic_link) (abfd, info)) | |
3930 | goto error_return; | |
3931 | } | |
e135f41b | 3932 | |
116c20d2 NC |
3933 | /* Update the header information. */ |
3934 | abfd->symcount = obj_aout_external_sym_count (abfd); | |
3935 | exec_hdr (abfd)->a_syms = abfd->symcount * EXTERNAL_NLIST_SIZE; | |
3936 | obj_str_filepos (abfd) = obj_sym_filepos (abfd) + exec_hdr (abfd)->a_syms; | |
3937 | obj_textsec (abfd)->reloc_count = | |
3938 | exec_hdr (abfd)->a_trsize / obj_reloc_entry_size (abfd); | |
3939 | obj_datasec (abfd)->reloc_count = | |
3940 | exec_hdr (abfd)->a_drsize / obj_reloc_entry_size (abfd); | |
3941 | ||
3942 | /* Write out the string table, unless there are no symbols. */ | |
3943 | if (abfd->symcount > 0) | |
e135f41b | 3944 | { |
116c20d2 NC |
3945 | if (bfd_seek (abfd, obj_str_filepos (abfd), SEEK_SET) != 0 |
3946 | || ! emit_stringtab (abfd, aout_info.strtab)) | |
3947 | goto error_return; | |
3948 | } | |
3949 | else if (obj_textsec (abfd)->reloc_count == 0 | |
3950 | && obj_datasec (abfd)->reloc_count == 0) | |
3951 | { | |
3952 | bfd_byte b; | |
e135f41b | 3953 | |
116c20d2 NC |
3954 | b = 0; |
3955 | if (bfd_seek (abfd, | |
3956 | (file_ptr) (obj_datasec (abfd)->filepos | |
3957 | + exec_hdr (abfd)->a_data | |
3958 | - 1), | |
3959 | SEEK_SET) != 0 | |
3960 | || bfd_bwrite (&b, (bfd_size_type) 1, abfd) != 1) | |
3961 | goto error_return; | |
e135f41b NC |
3962 | } |
3963 | ||
b34976b6 | 3964 | return TRUE; |
e135f41b | 3965 | |
116c20d2 NC |
3966 | error_return: |
3967 | if (aout_info.contents != NULL) | |
3968 | free (aout_info.contents); | |
3969 | if (aout_info.relocs != NULL) | |
3970 | free (aout_info.relocs); | |
3971 | if (aout_info.symbol_map != NULL) | |
3972 | free (aout_info.symbol_map); | |
3973 | if (aout_info.output_syms != NULL) | |
3974 | free (aout_info.output_syms); | |
3975 | if (includes_hash_initialized) | |
3976 | bfd_hash_table_free (&aout_info.includes.root); | |
3977 | return FALSE; | |
e135f41b NC |
3978 | } |
3979 | ||
116c20d2 NC |
3980 | /* Adjust and write out the symbols for an a.out file. Set the new |
3981 | symbol indices into a symbol_map. */ | |
3982 | ||
b34976b6 | 3983 | static bfd_boolean |
57402f1e | 3984 | aout_link_write_symbols (struct aout_final_link_info *flaginfo, bfd *input_bfd) |
e135f41b | 3985 | { |
e135f41b | 3986 | bfd *output_bfd; |
116c20d2 | 3987 | bfd_size_type sym_count; |
e135f41b | 3988 | char *strings; |
116c20d2 NC |
3989 | enum bfd_link_strip strip; |
3990 | enum bfd_link_discard discard; | |
3991 | struct external_nlist *outsym; | |
3992 | bfd_size_type strtab_index; | |
3993 | struct external_nlist *sym; | |
3994 | struct external_nlist *sym_end; | |
3995 | struct aout_link_hash_entry **sym_hash; | |
e135f41b | 3996 | int *symbol_map; |
116c20d2 NC |
3997 | bfd_boolean pass; |
3998 | bfd_boolean skip_next; | |
e135f41b | 3999 | |
57402f1e | 4000 | output_bfd = flaginfo->output_bfd; |
116c20d2 | 4001 | sym_count = obj_aout_external_sym_count (input_bfd); |
e135f41b | 4002 | strings = obj_aout_external_strings (input_bfd); |
57402f1e NC |
4003 | strip = flaginfo->info->strip; |
4004 | discard = flaginfo->info->discard; | |
4005 | outsym = flaginfo->output_syms; | |
e135f41b | 4006 | |
116c20d2 NC |
4007 | /* First write out a symbol for this object file, unless we are |
4008 | discarding such symbols. */ | |
4009 | if (strip != strip_all | |
4010 | && (strip != strip_some | |
57402f1e | 4011 | || bfd_hash_lookup (flaginfo->info->keep_hash, input_bfd->filename, |
116c20d2 NC |
4012 | FALSE, FALSE) != NULL) |
4013 | && discard != discard_all) | |
4014 | { | |
4015 | H_PUT_8 (output_bfd, N_TEXT, outsym->e_type); | |
57402f1e | 4016 | strtab_index = add_to_stringtab (output_bfd, flaginfo->strtab, |
116c20d2 NC |
4017 | input_bfd->filename, FALSE); |
4018 | if (strtab_index == (bfd_size_type) -1) | |
4019 | return FALSE; | |
4020 | PUT_WORD (output_bfd, strtab_index, outsym->e_strx); | |
4021 | PUT_WORD (output_bfd, | |
4022 | (bfd_get_section_vma (output_bfd, | |
4023 | obj_textsec (input_bfd)->output_section) | |
4024 | + obj_textsec (input_bfd)->output_offset), | |
4025 | outsym->e_value); | |
4026 | ++obj_aout_external_sym_count (output_bfd); | |
4027 | ++outsym; | |
4028 | } | |
4029 | ||
4030 | pass = FALSE; | |
4031 | skip_next = FALSE; | |
4032 | sym = obj_aout_external_syms (input_bfd); | |
4033 | sym_end = sym + sym_count; | |
4034 | sym_hash = obj_aout_sym_hashes (input_bfd); | |
57402f1e | 4035 | symbol_map = flaginfo->symbol_map; |
116c20d2 NC |
4036 | memset (symbol_map, 0, (size_t) sym_count * sizeof *symbol_map); |
4037 | for (; sym < sym_end; sym++, sym_hash++, symbol_map++) | |
e135f41b | 4038 | { |
116c20d2 NC |
4039 | const char *name; |
4040 | int type; | |
4041 | struct aout_link_hash_entry *h; | |
4042 | bfd_boolean skip; | |
4043 | asection *symsec; | |
4044 | bfd_vma val = 0; | |
4045 | bfd_boolean copy; | |
e135f41b | 4046 | |
116c20d2 NC |
4047 | /* We set *symbol_map to 0 above for all symbols. If it has |
4048 | already been set to -1 for this symbol, it means that we are | |
4049 | discarding it because it appears in a duplicate header file. | |
4050 | See the N_BINCL code below. */ | |
4051 | if (*symbol_map == -1) | |
e135f41b NC |
4052 | continue; |
4053 | ||
116c20d2 NC |
4054 | /* Initialize *symbol_map to -1, which means that the symbol was |
4055 | not copied into the output file. We will change it later if | |
4056 | we do copy the symbol over. */ | |
4057 | *symbol_map = -1; | |
e135f41b | 4058 | |
116c20d2 NC |
4059 | type = H_GET_8 (input_bfd, sym->e_type); |
4060 | name = strings + GET_WORD (input_bfd, sym->e_strx); | |
e135f41b | 4061 | |
116c20d2 | 4062 | h = NULL; |
e135f41b | 4063 | |
116c20d2 | 4064 | if (pass) |
e135f41b | 4065 | { |
116c20d2 NC |
4066 | /* Pass this symbol through. It is the target of an |
4067 | indirect or warning symbol. */ | |
4068 | val = GET_WORD (input_bfd, sym->e_value); | |
4069 | pass = FALSE; | |
4070 | } | |
4071 | else if (skip_next) | |
4072 | { | |
4073 | /* Skip this symbol, which is the target of an indirect | |
4074 | symbol that we have changed to no longer be an indirect | |
4075 | symbol. */ | |
4076 | skip_next = FALSE; | |
4077 | continue; | |
4078 | } | |
4079 | else | |
4080 | { | |
4081 | struct aout_link_hash_entry *hresolve; | |
e135f41b | 4082 | |
116c20d2 NC |
4083 | /* We have saved the hash table entry for this symbol, if |
4084 | there is one. Note that we could just look it up again | |
4085 | in the hash table, provided we first check that it is an | |
4086 | external symbol. */ | |
4087 | h = *sym_hash; | |
e135f41b | 4088 | |
116c20d2 NC |
4089 | /* Use the name from the hash table, in case the symbol was |
4090 | wrapped. */ | |
4091 | if (h != NULL) | |
4092 | name = h->root.root.string; | |
e135f41b | 4093 | |
116c20d2 NC |
4094 | /* If this is an indirect or warning symbol, then change |
4095 | hresolve to the base symbol. We also change *sym_hash so | |
4096 | that the relocation routines relocate against the real | |
4097 | symbol. */ | |
4098 | hresolve = h; | |
4099 | if (h != NULL | |
4100 | && (h->root.type == bfd_link_hash_indirect | |
4101 | || h->root.type == bfd_link_hash_warning)) | |
4102 | { | |
4103 | hresolve = (struct aout_link_hash_entry *) h->root.u.i.link; | |
4104 | while (hresolve->root.type == bfd_link_hash_indirect | |
4105 | || hresolve->root.type == bfd_link_hash_warning) | |
4106 | hresolve = ((struct aout_link_hash_entry *) | |
4107 | hresolve->root.u.i.link); | |
4108 | *sym_hash = hresolve; | |
4109 | } | |
e135f41b | 4110 | |
116c20d2 NC |
4111 | /* If the symbol has already been written out, skip it. */ |
4112 | if (h != NULL | |
4113 | && h->root.type != bfd_link_hash_warning | |
4114 | && h->written) | |
4115 | { | |
4116 | if ((type & N_TYPE) == N_INDR | |
4117 | || type == N_WARNING) | |
4118 | skip_next = TRUE; | |
4119 | *symbol_map = h->indx; | |
4120 | continue; | |
4121 | } | |
e135f41b | 4122 | |
116c20d2 NC |
4123 | /* See if we are stripping this symbol. */ |
4124 | skip = FALSE; | |
4125 | switch (strip) | |
4126 | { | |
4127 | case strip_none: | |
4128 | break; | |
4129 | case strip_debugger: | |
4130 | if ((type & N_STAB) != 0) | |
4131 | skip = TRUE; | |
4132 | break; | |
4133 | case strip_some: | |
57402f1e | 4134 | if (bfd_hash_lookup (flaginfo->info->keep_hash, name, FALSE, FALSE) |
116c20d2 NC |
4135 | == NULL) |
4136 | skip = TRUE; | |
4137 | break; | |
4138 | case strip_all: | |
4139 | skip = TRUE; | |
4140 | break; | |
e135f41b | 4141 | } |
116c20d2 | 4142 | if (skip) |
e135f41b | 4143 | { |
116c20d2 NC |
4144 | if (h != NULL) |
4145 | h->written = TRUE; | |
4146 | continue; | |
4147 | } | |
e135f41b | 4148 | |
116c20d2 NC |
4149 | /* Get the value of the symbol. */ |
4150 | if ((type & N_TYPE) == N_TEXT | |
4151 | || type == N_WEAKT) | |
4152 | symsec = obj_textsec (input_bfd); | |
4153 | else if ((type & N_TYPE) == N_DATA | |
4154 | || type == N_WEAKD) | |
4155 | symsec = obj_datasec (input_bfd); | |
4156 | else if ((type & N_TYPE) == N_BSS | |
4157 | || type == N_WEAKB) | |
4158 | symsec = obj_bsssec (input_bfd); | |
4159 | else if ((type & N_TYPE) == N_ABS | |
4160 | || type == N_WEAKA) | |
4161 | symsec = bfd_abs_section_ptr; | |
4162 | else if (((type & N_TYPE) == N_INDR | |
4163 | && (hresolve == NULL | |
4164 | || (hresolve->root.type != bfd_link_hash_defined | |
4165 | && hresolve->root.type != bfd_link_hash_defweak | |
4166 | && hresolve->root.type != bfd_link_hash_common))) | |
4167 | || type == N_WARNING) | |
4168 | { | |
4169 | /* Pass the next symbol through unchanged. The | |
4170 | condition above for indirect symbols is so that if | |
4171 | the indirect symbol was defined, we output it with | |
4172 | the correct definition so the debugger will | |
4173 | understand it. */ | |
4174 | pass = TRUE; | |
4175 | val = GET_WORD (input_bfd, sym->e_value); | |
4176 | symsec = NULL; | |
4177 | } | |
4178 | else if ((type & N_STAB) != 0) | |
4179 | { | |
4180 | val = GET_WORD (input_bfd, sym->e_value); | |
4181 | symsec = NULL; | |
e135f41b | 4182 | } |
116c20d2 NC |
4183 | else |
4184 | { | |
4185 | /* If we get here with an indirect symbol, it means that | |
4186 | we are outputting it with a real definition. In such | |
4187 | a case we do not want to output the next symbol, | |
4188 | which is the target of the indirection. */ | |
4189 | if ((type & N_TYPE) == N_INDR) | |
4190 | skip_next = TRUE; | |
e135f41b | 4191 | |
116c20d2 | 4192 | symsec = NULL; |
e135f41b | 4193 | |
116c20d2 NC |
4194 | /* We need to get the value from the hash table. We use |
4195 | hresolve so that if we have defined an indirect | |
4196 | symbol we output the final definition. */ | |
4197 | if (h == NULL) | |
4198 | { | |
4199 | switch (type & N_TYPE) | |
4200 | { | |
4201 | case N_SETT: | |
4202 | symsec = obj_textsec (input_bfd); | |
4203 | break; | |
4204 | case N_SETD: | |
4205 | symsec = obj_datasec (input_bfd); | |
4206 | break; | |
4207 | case N_SETB: | |
4208 | symsec = obj_bsssec (input_bfd); | |
4209 | break; | |
4210 | case N_SETA: | |
4211 | symsec = bfd_abs_section_ptr; | |
4212 | break; | |
4213 | default: | |
4214 | val = 0; | |
4215 | break; | |
4216 | } | |
4217 | } | |
4218 | else if (hresolve->root.type == bfd_link_hash_defined | |
4219 | || hresolve->root.type == bfd_link_hash_defweak) | |
4220 | { | |
4221 | asection *input_section; | |
4222 | asection *output_section; | |
e135f41b | 4223 | |
116c20d2 NC |
4224 | /* This case usually means a common symbol which was |
4225 | turned into a defined symbol. */ | |
4226 | input_section = hresolve->root.u.def.section; | |
4227 | output_section = input_section->output_section; | |
4228 | BFD_ASSERT (bfd_is_abs_section (output_section) | |
4229 | || output_section->owner == output_bfd); | |
4230 | val = (hresolve->root.u.def.value | |
4231 | + bfd_get_section_vma (output_bfd, output_section) | |
4232 | + input_section->output_offset); | |
e135f41b | 4233 | |
116c20d2 NC |
4234 | /* Get the correct type based on the section. If |
4235 | this is a constructed set, force it to be | |
4236 | globally visible. */ | |
4237 | if (type == N_SETT | |
4238 | || type == N_SETD | |
4239 | || type == N_SETB | |
4240 | || type == N_SETA) | |
4241 | type |= N_EXT; | |
e135f41b | 4242 | |
116c20d2 | 4243 | type &=~ N_TYPE; |
e135f41b | 4244 | |
116c20d2 NC |
4245 | if (output_section == obj_textsec (output_bfd)) |
4246 | type |= (hresolve->root.type == bfd_link_hash_defined | |
4247 | ? N_TEXT | |
4248 | : N_WEAKT); | |
4249 | else if (output_section == obj_datasec (output_bfd)) | |
4250 | type |= (hresolve->root.type == bfd_link_hash_defined | |
4251 | ? N_DATA | |
4252 | : N_WEAKD); | |
4253 | else if (output_section == obj_bsssec (output_bfd)) | |
4254 | type |= (hresolve->root.type == bfd_link_hash_defined | |
4255 | ? N_BSS | |
4256 | : N_WEAKB); | |
4257 | else | |
4258 | type |= (hresolve->root.type == bfd_link_hash_defined | |
4259 | ? N_ABS | |
4260 | : N_WEAKA); | |
e135f41b | 4261 | } |
116c20d2 NC |
4262 | else if (hresolve->root.type == bfd_link_hash_common) |
4263 | val = hresolve->root.u.c.size; | |
4264 | else if (hresolve->root.type == bfd_link_hash_undefweak) | |
e135f41b | 4265 | { |
116c20d2 NC |
4266 | val = 0; |
4267 | type = N_WEAKU; | |
e135f41b | 4268 | } |
116c20d2 NC |
4269 | else |
4270 | val = 0; | |
e135f41b | 4271 | } |
116c20d2 NC |
4272 | if (symsec != NULL) |
4273 | val = (symsec->output_section->vma | |
4274 | + symsec->output_offset | |
4275 | + (GET_WORD (input_bfd, sym->e_value) | |
4276 | - symsec->vma)); | |
e135f41b | 4277 | |
116c20d2 NC |
4278 | /* If this is a global symbol set the written flag, and if |
4279 | it is a local symbol see if we should discard it. */ | |
4280 | if (h != NULL) | |
e135f41b | 4281 | { |
116c20d2 NC |
4282 | h->written = TRUE; |
4283 | h->indx = obj_aout_external_sym_count (output_bfd); | |
e135f41b | 4284 | } |
116c20d2 NC |
4285 | else if ((type & N_TYPE) != N_SETT |
4286 | && (type & N_TYPE) != N_SETD | |
4287 | && (type & N_TYPE) != N_SETB | |
4288 | && (type & N_TYPE) != N_SETA) | |
e135f41b | 4289 | { |
116c20d2 NC |
4290 | switch (discard) |
4291 | { | |
4292 | case discard_none: | |
4293 | case discard_sec_merge: | |
4294 | break; | |
4295 | case discard_l: | |
4296 | if ((type & N_STAB) == 0 | |
4297 | && bfd_is_local_label_name (input_bfd, name)) | |
4298 | skip = TRUE; | |
4299 | break; | |
4300 | case discard_all: | |
4301 | skip = TRUE; | |
4302 | break; | |
4303 | } | |
4304 | if (skip) | |
4305 | { | |
4306 | pass = FALSE; | |
4307 | continue; | |
4308 | } | |
e135f41b NC |
4309 | } |
4310 | ||
116c20d2 NC |
4311 | /* An N_BINCL symbol indicates the start of the stabs |
4312 | entries for a header file. We need to scan ahead to the | |
4313 | next N_EINCL symbol, ignoring nesting, adding up all the | |
4314 | characters in the symbol names, not including the file | |
4315 | numbers in types (the first number after an open | |
4316 | parenthesis). */ | |
4317 | if (type == N_BINCL) | |
e135f41b | 4318 | { |
116c20d2 NC |
4319 | struct external_nlist *incl_sym; |
4320 | int nest; | |
4321 | struct aout_link_includes_entry *incl_entry; | |
4322 | struct aout_link_includes_totals *t; | |
e135f41b | 4323 | |
116c20d2 NC |
4324 | val = 0; |
4325 | nest = 0; | |
4326 | for (incl_sym = sym + 1; incl_sym < sym_end; incl_sym++) | |
4327 | { | |
4328 | int incl_type; | |
e135f41b | 4329 | |
116c20d2 NC |
4330 | incl_type = H_GET_8 (input_bfd, incl_sym->e_type); |
4331 | if (incl_type == N_EINCL) | |
4332 | { | |
4333 | if (nest == 0) | |
4334 | break; | |
4335 | --nest; | |
4336 | } | |
4337 | else if (incl_type == N_BINCL) | |
4338 | ++nest; | |
4339 | else if (nest == 0) | |
4340 | { | |
4341 | const char *s; | |
e135f41b | 4342 | |
116c20d2 NC |
4343 | s = strings + GET_WORD (input_bfd, incl_sym->e_strx); |
4344 | for (; *s != '\0'; s++) | |
4345 | { | |
4346 | val += *s; | |
4347 | if (*s == '(') | |
4348 | { | |
4349 | /* Skip the file number. */ | |
4350 | ++s; | |
4351 | while (ISDIGIT (*s)) | |
4352 | ++s; | |
4353 | --s; | |
4354 | } | |
4355 | } | |
4356 | } | |
4357 | } | |
e135f41b | 4358 | |
116c20d2 NC |
4359 | /* If we have already included a header file with the |
4360 | same value, then replace this one with an N_EXCL | |
4361 | symbol. */ | |
57402f1e NC |
4362 | copy = ! flaginfo->info->keep_memory; |
4363 | incl_entry = aout_link_includes_lookup (&flaginfo->includes, | |
116c20d2 NC |
4364 | name, TRUE, copy); |
4365 | if (incl_entry == NULL) | |
4366 | return FALSE; | |
4367 | for (t = incl_entry->totals; t != NULL; t = t->next) | |
4368 | if (t->total == val) | |
4369 | break; | |
4370 | if (t == NULL) | |
4371 | { | |
4372 | /* This is the first time we have seen this header | |
4373 | file with this set of stabs strings. */ | |
57402f1e | 4374 | t = bfd_hash_allocate (&flaginfo->includes.root, |
116c20d2 NC |
4375 | sizeof *t); |
4376 | if (t == NULL) | |
4377 | return FALSE; | |
4378 | t->total = val; | |
4379 | t->next = incl_entry->totals; | |
4380 | incl_entry->totals = t; | |
4381 | } | |
4382 | else | |
4383 | { | |
4384 | int *incl_map; | |
e135f41b | 4385 | |
116c20d2 NC |
4386 | /* This is a duplicate header file. We must change |
4387 | it to be an N_EXCL entry, and mark all the | |
4388 | included symbols to prevent outputting them. */ | |
4389 | type = N_EXCL; | |
e135f41b | 4390 | |
116c20d2 NC |
4391 | nest = 0; |
4392 | for (incl_sym = sym + 1, incl_map = symbol_map + 1; | |
4393 | incl_sym < sym_end; | |
4394 | incl_sym++, incl_map++) | |
4395 | { | |
4396 | int incl_type; | |
e135f41b | 4397 | |
116c20d2 NC |
4398 | incl_type = H_GET_8 (input_bfd, incl_sym->e_type); |
4399 | if (incl_type == N_EINCL) | |
4400 | { | |
4401 | if (nest == 0) | |
4402 | { | |
4403 | *incl_map = -1; | |
4404 | break; | |
4405 | } | |
4406 | --nest; | |
4407 | } | |
4408 | else if (incl_type == N_BINCL) | |
4409 | ++nest; | |
4410 | else if (nest == 0) | |
4411 | *incl_map = -1; | |
4412 | } | |
4413 | } | |
4414 | } | |
e135f41b | 4415 | } |
e135f41b | 4416 | |
116c20d2 NC |
4417 | /* Copy this symbol into the list of symbols we are going to |
4418 | write out. */ | |
4419 | H_PUT_8 (output_bfd, type, outsym->e_type); | |
4420 | copy = FALSE; | |
57402f1e | 4421 | if (! flaginfo->info->keep_memory) |
e135f41b | 4422 | { |
116c20d2 NC |
4423 | /* name points into a string table which we are going to |
4424 | free. If there is a hash table entry, use that string. | |
4425 | Otherwise, copy name into memory. */ | |
4426 | if (h != NULL) | |
4427 | name = h->root.root.string; | |
4428 | else | |
4429 | copy = TRUE; | |
e135f41b | 4430 | } |
57402f1e | 4431 | strtab_index = add_to_stringtab (output_bfd, flaginfo->strtab, |
116c20d2 NC |
4432 | name, copy); |
4433 | if (strtab_index == (bfd_size_type) -1) | |
4434 | return FALSE; | |
4435 | PUT_WORD (output_bfd, strtab_index, outsym->e_strx); | |
4436 | PUT_WORD (output_bfd, val, outsym->e_value); | |
4437 | *symbol_map = obj_aout_external_sym_count (output_bfd); | |
4438 | ++obj_aout_external_sym_count (output_bfd); | |
4439 | ++outsym; | |
e135f41b NC |
4440 | } |
4441 | ||
116c20d2 | 4442 | /* Write out the output symbols we have just constructed. */ |
57402f1e | 4443 | if (outsym > flaginfo->output_syms) |
e135f41b NC |
4444 | { |
4445 | bfd_size_type size; | |
e135f41b | 4446 | |
57402f1e | 4447 | if (bfd_seek (output_bfd, flaginfo->symoff, SEEK_SET) != 0) |
b34976b6 | 4448 | return FALSE; |
57402f1e | 4449 | size = outsym - flaginfo->output_syms; |
116c20d2 | 4450 | size *= EXTERNAL_NLIST_SIZE; |
57402f1e | 4451 | if (bfd_bwrite ((void *) flaginfo->output_syms, size, output_bfd) != size) |
b34976b6 | 4452 | return FALSE; |
57402f1e | 4453 | flaginfo->symoff += size; |
e135f41b NC |
4454 | } |
4455 | ||
b34976b6 | 4456 | return TRUE; |
e135f41b | 4457 | } |
116c20d2 NC |
4458 | |
4459 | /* Write out a symbol that was not associated with an a.out input | |
4460 | object. */ | |
e135f41b | 4461 | |
edeb6e24 AM |
4462 | static bfd_vma |
4463 | bfd_getp32 (const void *p) | |
e135f41b | 4464 | { |
edeb6e24 AM |
4465 | const bfd_byte *addr = p; |
4466 | unsigned long v; | |
116c20d2 | 4467 | |
edeb6e24 AM |
4468 | v = (unsigned long) addr[1] << 24; |
4469 | v |= (unsigned long) addr[0] << 16; | |
4470 | v |= (unsigned long) addr[3] << 8; | |
4471 | v |= (unsigned long) addr[2]; | |
4472 | return v; | |
e135f41b NC |
4473 | } |
4474 | ||
4475 | #define COERCE32(x) (((bfd_signed_vma) (x) ^ 0x80000000) - 0x80000000) | |
4476 | ||
edeb6e24 AM |
4477 | static bfd_signed_vma |
4478 | bfd_getp_signed_32 (const void *p) | |
e135f41b | 4479 | { |
edeb6e24 AM |
4480 | const bfd_byte *addr = p; |
4481 | unsigned long v; | |
116c20d2 | 4482 | |
edeb6e24 AM |
4483 | v = (unsigned long) addr[1] << 24; |
4484 | v |= (unsigned long) addr[0] << 16; | |
4485 | v |= (unsigned long) addr[3] << 8; | |
4486 | v |= (unsigned long) addr[2]; | |
4487 | return COERCE32 (v); | |
e135f41b NC |
4488 | } |
4489 | ||
edeb6e24 AM |
4490 | static void |
4491 | bfd_putp32 (bfd_vma data, void *p) | |
e135f41b | 4492 | { |
edeb6e24 | 4493 | bfd_byte *addr = p; |
116c20d2 | 4494 | |
edeb6e24 AM |
4495 | addr[0] = (data >> 16) & 0xff; |
4496 | addr[1] = (data >> 24) & 0xff; | |
4497 | addr[2] = (data >> 0) & 0xff; | |
4498 | addr[3] = (data >> 8) & 0xff; | |
e135f41b | 4499 | } |
116c20d2 NC |
4500 | |
4501 | const bfd_target MY (vec) = | |
4502 | { | |
4503 | TARGETNAME, /* Name. */ | |
4504 | bfd_target_aout_flavour, | |
4505 | BFD_ENDIAN_LITTLE, /* Target byte order (little). */ | |
4506 | BFD_ENDIAN_LITTLE, /* Target headers byte order (little). */ | |
4507 | (HAS_RELOC | EXEC_P | /* Object flags. */ | |
4508 | HAS_LINENO | HAS_DEBUG | | |
4509 | HAS_SYMS | HAS_LOCALS | WP_TEXT), | |
4510 | (SEC_HAS_CONTENTS | SEC_ALLOC | SEC_LOAD | SEC_RELOC | SEC_CODE | SEC_DATA), | |
4511 | MY_symbol_leading_char, | |
4512 | AR_PAD_CHAR, /* AR_pad_char. */ | |
4513 | 15, /* AR_max_namelen. */ | |
0aabe54e | 4514 | 0, /* match priority. */ |
116c20d2 NC |
4515 | bfd_getl64, bfd_getl_signed_64, bfd_putl64, |
4516 | bfd_getp32, bfd_getp_signed_32, bfd_putp32, | |
4517 | bfd_getl16, bfd_getl_signed_16, bfd_putl16, /* Data. */ | |
4518 | bfd_getl64, bfd_getl_signed_64, bfd_putl64, | |
4519 | bfd_getp32, bfd_getp_signed_32, bfd_putp32, | |
4520 | bfd_getl16, bfd_getl_signed_16, bfd_putl16, /* Headers. */ | |
4521 | {_bfd_dummy_target, MY_object_p, /* bfd_check_format. */ | |
4522 | bfd_generic_archive_p, MY_core_file_p}, | |
4523 | {bfd_false, MY_mkobject, /* bfd_set_format. */ | |
4524 | _bfd_generic_mkarchive, bfd_false}, | |
4525 | {bfd_false, MY_write_object_contents, /* bfd_write_contents. */ | |
4526 | _bfd_write_archive_contents, bfd_false}, | |
4527 | ||
4528 | BFD_JUMP_TABLE_GENERIC (MY), | |
4529 | BFD_JUMP_TABLE_COPY (MY), | |
4530 | BFD_JUMP_TABLE_CORE (MY), | |
4531 | BFD_JUMP_TABLE_ARCHIVE (MY), | |
4532 | BFD_JUMP_TABLE_SYMBOLS (MY), | |
4533 | BFD_JUMP_TABLE_RELOCS (MY), | |
4534 | BFD_JUMP_TABLE_WRITE (MY), | |
4535 | BFD_JUMP_TABLE_LINK (MY), | |
4536 | BFD_JUMP_TABLE_DYNAMIC (MY), | |
4537 | ||
4538 | /* Alternative_target. */ | |
4539 | NULL, | |
4540 | ||
4541 | (void *) MY_backend_data | |
4542 | }; |