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bd5635a1 | 1 | /* Read a symbol table in MIPS' format (Third-Eye). |
2fe3b329 PS |
2 | Copyright 1986, 1987, 1989, 1990, 1991, 1992, 1993, 1994 |
3 | Free Software Foundation, Inc. | |
6c2e7392 PS |
4 | Contributed by Alessandro Forin ([email protected]) at CMU. Major work |
5 | by Per Bothner, John Gilmore and Ian Lance Taylor at Cygnus Support. | |
bd5635a1 RP |
6 | |
7 | This file is part of GDB. | |
8 | ||
b8c50f09 | 9 | This program is free software; you can redistribute it and/or modify |
bd5635a1 | 10 | it under the terms of the GNU General Public License as published by |
b8c50f09 JG |
11 | the Free Software Foundation; either version 2 of the License, or |
12 | (at your option) any later version. | |
bd5635a1 | 13 | |
b8c50f09 | 14 | This program is distributed in the hope that it will be useful, |
bd5635a1 RP |
15 | but WITHOUT ANY WARRANTY; without even the implied warranty of |
16 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | |
17 | GNU General Public License for more details. | |
18 | ||
19 | You should have received a copy of the GNU General Public License | |
b8c50f09 JG |
20 | along with this program; if not, write to the Free Software |
21 | Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. */ | |
bd5635a1 | 22 | |
e03c0cc6 ILT |
23 | /* Read symbols from an ECOFF file. Most of the work is done in |
24 | mdebugread.c. */ | |
d747e0af | 25 | |
bd5635a1 | 26 | #include "defs.h" |
2b576293 | 27 | #include "gdb_string.h" |
2fe3b329 | 28 | #include "bfd.h" |
bd5635a1 | 29 | #include "symtab.h" |
bd5635a1 | 30 | #include "symfile.h" |
5e2e79f8 | 31 | #include "objfiles.h" |
7e258d18 | 32 | #include "buildsym.h" |
dac4929a | 33 | #include "stabsread.h" |
dac4929a SG |
34 | #include "gdb-stabs.h" |
35 | ||
2fe3b329 | 36 | #include "coff/sym.h" |
6c2e7392 | 37 | #include "coff/internal.h" |
e03c0cc6 | 38 | #include "coff/ecoff.h" |
6c2e7392 PS |
39 | #include "libcoff.h" /* Private BFD COFF information. */ |
40 | #include "libecoff.h" /* Private BFD ECOFF information. */ | |
2fe3b329 PS |
41 | #include "elf/common.h" |
42 | #include "elf/mips.h" | |
6c2e7392 | 43 | |
d747e0af | 44 | static void |
e03c0cc6 | 45 | mipscoff_new_init PARAMS ((struct objfile *)); |
84ffdec2 | 46 | |
d747e0af | 47 | static void |
e03c0cc6 | 48 | mipscoff_symfile_init PARAMS ((struct objfile *)); |
c55e6167 | 49 | |
84ffdec2 | 50 | static void |
e03c0cc6 ILT |
51 | mipscoff_symfile_read PARAMS ((struct objfile *, struct section_offsets *, |
52 | int)); | |
84ffdec2 JG |
53 | |
54 | static void | |
e03c0cc6 | 55 | mipscoff_symfile_finish PARAMS ((struct objfile *)); |
84ffdec2 | 56 | |
e03c0cc6 ILT |
57 | static struct section_offsets * |
58 | mipscoff_symfile_offsets PARAMS ((struct objfile *, CORE_ADDR)); | |
84ffdec2 | 59 | |
2fe3b329 PS |
60 | static void |
61 | read_alphacoff_dynamic_symtab PARAMS ((struct section_offsets *, | |
62 | struct objfile *objfile)); | |
63 | ||
e03c0cc6 ILT |
64 | /* Initialize anything that needs initializing when a completely new |
65 | symbol file is specified (not just adding some symbols from another | |
66 | file, e.g. a shared library). */ | |
bd5635a1 | 67 | |
e03c0cc6 | 68 | extern CORE_ADDR sigtramp_address; |
bd5635a1 | 69 | |
4ad1963e | 70 | static void |
84ffdec2 JG |
71 | mipscoff_new_init (ignore) |
72 | struct objfile *ignore; | |
bd5635a1 | 73 | { |
e7ff735c | 74 | sigtramp_address = 0; |
0b0d6c3f PS |
75 | stabsread_new_init (); |
76 | buildsym_new_init (); | |
bd5635a1 RP |
77 | } |
78 | ||
e03c0cc6 ILT |
79 | /* Initialize to read a symbol file (nothing to do). */ |
80 | ||
4ad1963e | 81 | static void |
80d68b1d FF |
82 | mipscoff_symfile_init (objfile) |
83 | struct objfile *objfile; | |
bd5635a1 | 84 | { |
bd5635a1 RP |
85 | } |
86 | ||
e03c0cc6 ILT |
87 | /* Read a symbol file from a file. */ |
88 | ||
4ad1963e | 89 | static void |
dac4929a | 90 | mipscoff_symfile_read (objfile, section_offsets, mainline) |
80d68b1d | 91 | struct objfile *objfile; |
dac4929a | 92 | struct section_offsets *section_offsets; |
bd5635a1 RP |
93 | int mainline; |
94 | { | |
e03c0cc6 | 95 | bfd *abfd = objfile->obfd; |
6ac14d25 PS |
96 | struct cleanup * back_to; |
97 | ||
021959e2 | 98 | init_minimal_symbol_collection (); |
6ac14d25 | 99 | back_to = make_cleanup (discard_minimal_symbols, 0); |
bd5635a1 RP |
100 | |
101 | /* Now that the executable file is positioned at symbol table, | |
102 | process it and define symbols accordingly. */ | |
103 | ||
2b576293 C |
104 | if (!((*ecoff_backend (abfd)->debug_swap.read_debug_info) |
105 | (abfd, (asection *) NULL, &ecoff_data (abfd)->debug_info))) | |
2fe3b329 | 106 | error ("Error reading symbol table: %s", bfd_errmsg (bfd_get_error ())); |
e03c0cc6 ILT |
107 | |
108 | mdebug_build_psymtabs (objfile, &ecoff_backend (abfd)->debug_swap, | |
109 | &ecoff_data (abfd)->debug_info, section_offsets); | |
bd5635a1 | 110 | |
2fe3b329 PS |
111 | /* Add the dynamic symbols if we are reading the main symbol table. */ |
112 | ||
113 | if (mainline) | |
114 | read_alphacoff_dynamic_symtab (section_offsets, objfile); | |
115 | ||
021959e2 JG |
116 | /* Install any minimal symbols that have been collected as the current |
117 | minimal symbols for this objfile. */ | |
bd5635a1 | 118 | |
80d68b1d | 119 | install_minimal_symbols (objfile); |
6ac14d25 PS |
120 | |
121 | do_cleanups (back_to); | |
bd5635a1 | 122 | } |
817bc7b8 | 123 | |
e03c0cc6 ILT |
124 | /* Perform any local cleanups required when we are done with a |
125 | particular objfile. */ | |
80d68b1d FF |
126 | |
127 | static void | |
128 | mipscoff_symfile_finish (objfile) | |
129 | struct objfile *objfile; | |
130 | { | |
bd5635a1 RP |
131 | } |
132 | ||
e03c0cc6 | 133 | /* Fake up identical offsets for all sections. */ |
bd5635a1 | 134 | |
e03c0cc6 ILT |
135 | static struct section_offsets * |
136 | mipscoff_symfile_offsets (objfile, addr) | |
5f7b2142 | 137 | struct objfile *objfile; |
e03c0cc6 | 138 | CORE_ADDR addr; |
bd5635a1 | 139 | { |
e03c0cc6 ILT |
140 | struct section_offsets *section_offsets; |
141 | int i; | |
bd5635a1 | 142 | |
e03c0cc6 ILT |
143 | objfile->num_sections = SECT_OFF_MAX; |
144 | section_offsets = ((struct section_offsets *) | |
145 | obstack_alloc (&objfile->psymbol_obstack, | |
146 | (sizeof (struct section_offsets) | |
147 | + (sizeof (section_offsets->offsets) | |
148 | * (SECT_OFF_MAX - 1))))); | |
bd5635a1 | 149 | |
e03c0cc6 ILT |
150 | for (i = 0; i < SECT_OFF_MAX; i++) |
151 | ANOFFSET (section_offsets, i) = addr; | |
bd5635a1 | 152 | |
e03c0cc6 | 153 | return section_offsets; |
bd5635a1 RP |
154 | } |
155 | ||
2fe3b329 PS |
156 | /* Alpha OSF/1 encapsulates the dynamic symbols in ELF format in a |
157 | standard coff section. The ELF format for the symbols differs from | |
158 | the format defined in elf/external.h. It seems that a normal ELF 32 bit | |
159 | format is used, and the representation only changes because longs are | |
160 | 64 bit on the alpha. In addition, the handling of text/data section | |
161 | indices for symbols is different from the ELF ABI. | |
162 | As the BFD linker currently does not support dynamic linking on the alpha, | |
163 | there seems to be no reason to pollute BFD with another mixture of object | |
164 | file formats for now. */ | |
165 | ||
166 | /* Format of an alpha external ELF symbol. */ | |
167 | ||
168 | typedef struct { | |
169 | unsigned char st_name[4]; /* Symbol name, index in string tbl */ | |
170 | unsigned char st_pad[4]; /* Pad to long word boundary */ | |
171 | unsigned char st_value[8]; /* Value of the symbol */ | |
172 | unsigned char st_size[4]; /* Associated symbol size */ | |
173 | unsigned char st_info[1]; /* Type and binding attributes */ | |
174 | unsigned char st_other[1]; /* No defined meaning, 0 */ | |
175 | unsigned char st_shndx[2]; /* Associated section index */ | |
176 | } Elfalpha_External_Sym; | |
177 | ||
178 | /* Format of an alpha external ELF dynamic info structure. */ | |
179 | ||
180 | typedef struct { | |
181 | unsigned char d_tag[4]; /* Tag */ | |
182 | unsigned char d_pad[4]; /* Pad to long word boundary */ | |
183 | union { | |
184 | unsigned char d_ptr[8]; /* Pointer value */ | |
185 | unsigned char d_val[4]; /* Integer value */ | |
186 | } d_un; | |
187 | } Elfalpha_External_Dyn; | |
188 | ||
189 | /* Struct to obtain the section pointers for alpha dynamic symbol info. */ | |
190 | ||
191 | struct alphacoff_dynsecinfo { | |
192 | asection *sym_sect; /* Section pointer for .dynsym section */ | |
193 | asection *str_sect; /* Section pointer for .dynstr section */ | |
194 | asection *dyninfo_sect; /* Section pointer for .dynamic section */ | |
195 | asection *got_sect; /* Section pointer for .got section */ | |
196 | }; | |
197 | ||
198 | static void | |
199 | alphacoff_locate_sections PARAMS ((bfd *, asection *, void *)); | |
200 | ||
201 | /* We are called once per section from read_alphacoff_dynamic_symtab. | |
202 | We need to examine each section we are passed, check to see | |
203 | if it is something we are interested in processing, and | |
204 | if so, stash away some access information for the section. */ | |
205 | ||
206 | static void | |
207 | alphacoff_locate_sections (ignore_abfd, sectp, sip) | |
208 | bfd *ignore_abfd; | |
209 | asection *sectp; | |
210 | PTR sip; | |
211 | { | |
212 | register struct alphacoff_dynsecinfo *si; | |
213 | ||
214 | si = (struct alphacoff_dynsecinfo *) sip; | |
215 | ||
216 | if (STREQ (sectp->name, ".dynsym")) | |
217 | { | |
218 | si->sym_sect = sectp; | |
219 | } | |
220 | else if (STREQ (sectp->name, ".dynstr")) | |
221 | { | |
222 | si->str_sect = sectp; | |
223 | } | |
224 | else if (STREQ (sectp->name, ".dynamic")) | |
225 | { | |
226 | si->dyninfo_sect = sectp; | |
227 | } | |
228 | else if (STREQ (sectp->name, ".got")) | |
229 | { | |
230 | si->got_sect = sectp; | |
231 | } | |
232 | } | |
233 | ||
234 | /* Scan an alpha dynamic symbol table for symbols of interest and | |
235 | add them to the minimal symbol table. */ | |
236 | ||
237 | static void | |
238 | read_alphacoff_dynamic_symtab (section_offsets, objfile) | |
239 | struct section_offsets *section_offsets; | |
240 | struct objfile *objfile; | |
241 | { | |
242 | bfd *abfd = objfile->obfd; | |
243 | struct alphacoff_dynsecinfo si; | |
244 | char *sym_secptr; | |
245 | char *str_secptr; | |
246 | char *dyninfo_secptr; | |
247 | char *got_secptr; | |
248 | bfd_size_type sym_secsize; | |
249 | bfd_size_type str_secsize; | |
250 | bfd_size_type dyninfo_secsize; | |
251 | bfd_size_type got_secsize; | |
252 | int sym_count; | |
253 | int i; | |
254 | int stripped; | |
255 | Elfalpha_External_Sym *x_symp; | |
256 | char *dyninfo_p; | |
257 | char *dyninfo_end; | |
258 | int got_entry_size = 8; | |
259 | int dt_mips_local_gotno = -1; | |
260 | int dt_mips_gotsym = -1; | |
261 | ||
262 | ||
263 | /* We currently only know how to handle alpha dynamic symbols. */ | |
264 | if (bfd_get_arch (abfd) != bfd_arch_alpha) | |
265 | return; | |
266 | ||
267 | /* Locate the dynamic symbols sections and read them in. */ | |
268 | memset ((char *) &si, 0, sizeof (si)); | |
269 | bfd_map_over_sections (abfd, alphacoff_locate_sections, (PTR) &si); | |
270 | if (si.sym_sect == NULL | |
271 | || si.str_sect == NULL | |
272 | || si.dyninfo_sect == NULL | |
273 | || si.got_sect == NULL) | |
274 | return; | |
275 | ||
276 | sym_secsize = bfd_get_section_size_before_reloc (si.sym_sect); | |
277 | str_secsize = bfd_get_section_size_before_reloc (si.str_sect); | |
278 | dyninfo_secsize = bfd_get_section_size_before_reloc (si.dyninfo_sect); | |
279 | got_secsize = bfd_get_section_size_before_reloc (si.got_sect); | |
280 | sym_secptr = alloca (sym_secsize); | |
281 | str_secptr = alloca (str_secsize); | |
282 | dyninfo_secptr = alloca (dyninfo_secsize); | |
283 | got_secptr = alloca (got_secsize); | |
284 | ||
285 | if (!bfd_get_section_contents (abfd, si.sym_sect, sym_secptr, | |
286 | (file_ptr)0, sym_secsize)) | |
287 | return; | |
288 | if (!bfd_get_section_contents (abfd, si.str_sect, str_secptr, | |
289 | (file_ptr)0, str_secsize)) | |
290 | return; | |
291 | if (!bfd_get_section_contents (abfd, si.dyninfo_sect, dyninfo_secptr, | |
292 | (file_ptr)0, dyninfo_secsize)) | |
293 | return; | |
294 | if (!bfd_get_section_contents (abfd, si.got_sect, got_secptr, | |
295 | (file_ptr)0, got_secsize)) | |
296 | return; | |
297 | ||
298 | /* Find the number of local GOT entries and the index for the | |
299 | the first dynamic symbol in the GOT. */ | |
300 | for (dyninfo_p = dyninfo_secptr, dyninfo_end = dyninfo_p + dyninfo_secsize; | |
301 | dyninfo_p < dyninfo_end; | |
302 | dyninfo_p += sizeof (Elfalpha_External_Dyn)) | |
303 | { | |
304 | Elfalpha_External_Dyn *x_dynp = (Elfalpha_External_Dyn *)dyninfo_p; | |
305 | long dyn_tag; | |
306 | ||
307 | dyn_tag = bfd_h_get_32 (abfd, (bfd_byte *) x_dynp->d_tag); | |
308 | if (dyn_tag == DT_NULL) | |
309 | break; | |
310 | else if (dyn_tag == DT_MIPS_LOCAL_GOTNO) | |
311 | { | |
312 | dt_mips_local_gotno = bfd_h_get_32 (abfd, | |
313 | (bfd_byte *) x_dynp->d_un.d_val); | |
314 | } | |
315 | else if (dyn_tag == DT_MIPS_GOTSYM) | |
316 | { | |
317 | dt_mips_gotsym = bfd_h_get_32 (abfd, (bfd_byte *) x_dynp->d_un.d_val); | |
318 | } | |
319 | } | |
320 | if (dt_mips_local_gotno < 0 || dt_mips_gotsym < 0) | |
321 | return; | |
322 | ||
323 | /* Scan all dynamic symbols and enter them into the minimal symbol table | |
324 | if appropriate. */ | |
325 | sym_count = sym_secsize / sizeof (Elfalpha_External_Sym); | |
326 | stripped = (bfd_get_symcount (abfd) == 0); | |
327 | ||
328 | /* Skip first symbol, which is a null dummy. */ | |
329 | for (i = 1, x_symp = (Elfalpha_External_Sym *) sym_secptr + 1; | |
330 | i < sym_count; | |
331 | i++, x_symp++) | |
332 | { | |
333 | unsigned long strx; | |
334 | char *name; | |
335 | bfd_vma sym_value; | |
336 | unsigned char sym_info; | |
337 | unsigned int sym_shndx; | |
338 | int isglobal; | |
339 | enum minimal_symbol_type ms_type; | |
340 | ||
341 | strx = bfd_h_get_32 (abfd, (bfd_byte *) x_symp->st_name); | |
342 | if (strx >= str_secsize) | |
343 | continue; | |
344 | name = str_secptr + strx; | |
345 | if (*name == '\0' || *name == '.') | |
346 | continue; | |
347 | ||
348 | sym_value = bfd_h_get_64 (abfd, (bfd_byte *) x_symp->st_value); | |
349 | sym_info = bfd_h_get_8 (abfd, (bfd_byte *) x_symp->st_info); | |
350 | sym_shndx = bfd_h_get_16 (abfd, (bfd_byte *) x_symp->st_shndx); | |
351 | isglobal = (ELF_ST_BIND (sym_info) == STB_GLOBAL); | |
352 | ||
353 | if (sym_shndx == SHN_UNDEF) | |
354 | { | |
355 | /* Handle undefined functions which are defined in a shared | |
356 | library. */ | |
357 | if (ELF_ST_TYPE (sym_info) != STT_FUNC | |
358 | || ELF_ST_BIND (sym_info) != STB_GLOBAL) | |
359 | continue; | |
360 | ||
361 | ms_type = mst_solib_trampoline; | |
362 | ||
363 | /* If sym_value is nonzero, it points to the shared library | |
364 | trampoline entry, which is what we are looking for. | |
365 | ||
366 | If sym_value is zero, then we have to get the GOT entry | |
367 | for the symbol. | |
368 | If the GOT entry is nonzero, it represents the quickstart | |
369 | address of the function and we use that as the symbol value. | |
370 | ||
371 | If the GOT entry is zero, the function address has to be resolved | |
372 | by the runtime loader before the executable is started. | |
373 | We are unable to find any meaningful address for these | |
374 | functions in the executable file, so we skip them. */ | |
375 | if (sym_value == 0) | |
376 | { | |
377 | int got_entry_offset = | |
378 | (i - dt_mips_gotsym + dt_mips_local_gotno) * got_entry_size; | |
379 | ||
380 | if (got_entry_offset < 0 || got_entry_offset >= got_secsize) | |
381 | continue; | |
382 | sym_value = | |
383 | bfd_h_get_64 (abfd, | |
384 | (bfd_byte *) (got_secptr + got_entry_offset)); | |
385 | if (sym_value == 0) | |
386 | continue; | |
387 | } | |
388 | } | |
389 | else | |
390 | { | |
391 | /* Symbols defined in the executable itself. We only care about | |
392 | them if this is a stripped executable, otherwise they have | |
393 | been retrieved from the normal symbol table already. */ | |
394 | if (!stripped) | |
395 | continue; | |
396 | ||
397 | if (sym_shndx == SHN_MIPS_TEXT) | |
398 | { | |
399 | if (isglobal) | |
400 | ms_type = mst_text; | |
401 | else | |
402 | ms_type = mst_file_text; | |
403 | sym_value += ANOFFSET (section_offsets, SECT_OFF_TEXT); | |
404 | } | |
405 | else if (sym_shndx == SHN_MIPS_DATA) | |
406 | { | |
407 | if (isglobal) | |
408 | ms_type = mst_data; | |
409 | else | |
410 | ms_type = mst_file_data; | |
411 | sym_value += ANOFFSET (section_offsets, SECT_OFF_DATA); | |
412 | } | |
413 | else if (sym_shndx == SHN_MIPS_ACOMMON) | |
414 | { | |
415 | if (isglobal) | |
416 | ms_type = mst_bss; | |
417 | else | |
418 | ms_type = mst_file_bss; | |
419 | sym_value += ANOFFSET (section_offsets, SECT_OFF_BSS); | |
420 | } | |
421 | else if (sym_shndx == SHN_ABS) | |
422 | { | |
423 | ms_type = mst_abs; | |
424 | } | |
425 | else | |
426 | { | |
427 | continue; | |
428 | } | |
429 | } | |
430 | ||
431 | prim_record_minimal_symbol (obsavestring (name, | |
432 | strlen (name), | |
433 | &objfile -> symbol_obstack), | |
434 | sym_value, | |
435 | ms_type, | |
436 | objfile); | |
437 | } | |
438 | } | |
439 | ||
e03c0cc6 | 440 | /* Initialization */ |
bd5635a1 | 441 | |
e03c0cc6 | 442 | static struct sym_fns ecoff_sym_fns = |
5f7b2142 | 443 | { |
e03c0cc6 ILT |
444 | bfd_target_ecoff_flavour, |
445 | mipscoff_new_init, /* sym_new_init: init anything gbl to entire symtab */ | |
446 | mipscoff_symfile_init, /* sym_init: read initial info, setup for sym_read() */ | |
447 | mipscoff_symfile_read, /* sym_read: read a symbol file into symtab */ | |
448 | mipscoff_symfile_finish, /* sym_finish: finished with file, cleanup */ | |
449 | mipscoff_symfile_offsets, /* sym_offsets: dummy FIXME til implem sym reloc */ | |
450 | NULL /* next: pointer to next struct sym_fns */ | |
e7e02420 | 451 | }; |
bd5635a1 | 452 | |
e03c0cc6 ILT |
453 | void |
454 | _initialize_mipsread () | |
bd5635a1 | 455 | { |
5f7b2142 | 456 | add_symtab_fns (&ecoff_sym_fns); |
bd5635a1 | 457 | } |