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f8b76e70 | 1 | /* Handle SunOS and SVR4 shared libraries for GDB, the GNU Debugger. |
ee0613d1 | 2 | Copyright 1990, 1991, 1992 Free Software Foundation, Inc. |
f8b76e70 | 3 | |
bd5635a1 RP |
4 | This file is part of GDB. |
5 | ||
bdbd5f50 | 6 | This program is free software; you can redistribute it and/or modify |
bd5635a1 | 7 | it under the terms of the GNU General Public License as published by |
bdbd5f50 JG |
8 | the Free Software Foundation; either version 2 of the License, or |
9 | (at your option) any later version. | |
bd5635a1 | 10 | |
bdbd5f50 | 11 | This program is distributed in the hope that it will be useful, |
bd5635a1 RP |
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. | |
15 | ||
16 | You should have received a copy of the GNU General Public License | |
bdbd5f50 JG |
17 | along with this program; if not, write to the Free Software |
18 | Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. */ | |
bd5635a1 | 19 | |
f8b76e70 | 20 | |
b0246b3b FF |
21 | #include "defs.h" |
22 | ||
bd5635a1 | 23 | #include <sys/types.h> |
f8b76e70 | 24 | #include <signal.h> |
bd5635a1 RP |
25 | #include <string.h> |
26 | #include <link.h> | |
d0237a54 JK |
27 | #include <sys/param.h> |
28 | #include <fcntl.h> | |
be772100 JG |
29 | |
30 | #ifndef SVR4_SHARED_LIBS | |
31 | /* SunOS shared libs need the nlist structure. */ | |
32 | #include <a.out.h> | |
33 | #endif | |
f8b76e70 | 34 | |
bd5635a1 | 35 | #include "symtab.h" |
b0246b3b FF |
36 | #include "bfd.h" |
37 | #include "symfile.h" | |
be772100 | 38 | #include "objfiles.h" |
bd5635a1 RP |
39 | #include "gdbcore.h" |
40 | #include "command.h" | |
b3fdaf3d | 41 | #include "target.h" |
2403f49b | 42 | #include "frame.h" |
bdbd5f50 JG |
43 | #include "regex.h" |
44 | #include "inferior.h" | |
45 | ||
f8b76e70 FF |
46 | #define MAX_PATH_SIZE 256 /* FIXME: Should be dynamic */ |
47 | ||
48 | /* On SVR4 systems, for the initial implementation, use main() as the | |
49 | "startup mapping complete" breakpoint address. The models for SunOS | |
50 | and SVR4 dynamic linking debugger support are different in that SunOS | |
51 | hits one breakpoint when all mapping is complete while using the SVR4 | |
52 | debugger support takes two breakpoint hits for each file mapped, and | |
53 | there is no way to know when the "last" one is hit. Both these | |
54 | mechanisms should be tied to a "breakpoint service routine" that | |
55 | gets automatically executed whenever one of the breakpoints indicating | |
56 | a change in mapping is hit. This is a future enhancement. (FIXME) */ | |
57 | ||
58 | #define BKPT_AT_MAIN 1 | |
59 | ||
60 | /* local data declarations */ | |
61 | ||
d261ece7 | 62 | #ifndef SVR4_SHARED_LIBS |
f8b76e70 FF |
63 | |
64 | #define DEBUG_BASE "_DYNAMIC" | |
65 | #define LM_ADDR(so) ((so) -> lm.lm_addr) | |
66 | #define LM_NEXT(so) ((so) -> lm.lm_next) | |
67 | #define LM_NAME(so) ((so) -> lm.lm_name) | |
68 | static struct link_dynamic dynamic_copy; | |
69 | static struct link_dynamic_2 ld_2_copy; | |
70 | static struct ld_debug debug_copy; | |
71 | static CORE_ADDR debug_addr; | |
72 | static CORE_ADDR flag_addr; | |
73 | ||
d261ece7 | 74 | #else /* SVR4_SHARED_LIBS */ |
f8b76e70 FF |
75 | |
76 | #define DEBUG_BASE "_r_debug" | |
77 | #define LM_ADDR(so) ((so) -> lm.l_addr) | |
78 | #define LM_NEXT(so) ((so) -> lm.l_next) | |
79 | #define LM_NAME(so) ((so) -> lm.l_name) | |
80 | static struct r_debug debug_copy; | |
f8b76e70 | 81 | char shadow_contents[BREAKPOINT_MAX]; /* Stash old bkpt addr contents */ |
f8b76e70 | 82 | |
d261ece7 | 83 | #endif /* !SVR4_SHARED_LIBS */ |
bd5635a1 | 84 | |
bd5635a1 | 85 | struct so_list { |
f8b76e70 FF |
86 | struct so_list *next; /* next structure in linked list */ |
87 | struct link_map lm; /* copy of link map from inferior */ | |
88 | struct link_map *lmaddr; /* addr in inferior lm was read from */ | |
89 | CORE_ADDR lmend; /* upper addr bound of mapped object */ | |
90 | char so_name[MAX_PATH_SIZE]; /* shared object lib name (FIXME) */ | |
91 | char symbols_loaded; /* flag: symbols read in yet? */ | |
92 | char from_tty; /* flag: print msgs? */ | |
b0246b3b | 93 | struct objfile *objfile; /* objfile for loaded lib */ |
f8b76e70 FF |
94 | struct section_table *sections; |
95 | struct section_table *sections_end; | |
51b57ded | 96 | struct section_table *textsection; |
bd5635a1 RP |
97 | }; |
98 | ||
f8b76e70 FF |
99 | static struct so_list *so_list_head; /* List of known shared objects */ |
100 | static CORE_ADDR debug_base; /* Base of dynamic linker structures */ | |
101 | static CORE_ADDR breakpoint_addr; /* Address where end bkpt is set */ | |
102 | ||
51b57ded FF |
103 | extern int |
104 | fdmatch PARAMS ((int, int)); /* In libiberty */ | |
105 | ||
b0246b3b FF |
106 | /* Local function prototypes */ |
107 | ||
108 | static void | |
109 | special_symbol_handling PARAMS ((struct so_list *)); | |
110 | ||
111 | static void | |
112 | sharedlibrary_command PARAMS ((char *, int)); | |
113 | ||
114 | static int | |
115 | enable_break PARAMS ((void)); | |
116 | ||
117 | static int | |
118 | disable_break PARAMS ((void)); | |
119 | ||
120 | static void | |
51b57ded | 121 | info_sharedlibrary_command PARAMS ((char *, int)); |
b0246b3b FF |
122 | |
123 | static int | |
124 | symbol_add_stub PARAMS ((char *)); | |
125 | ||
126 | static struct so_list * | |
127 | find_solib PARAMS ((struct so_list *)); | |
128 | ||
129 | static struct link_map * | |
130 | first_link_map_member PARAMS ((void)); | |
131 | ||
132 | static CORE_ADDR | |
133 | locate_base PARAMS ((void)); | |
134 | ||
be772100 JG |
135 | static void |
136 | solib_map_sections PARAMS ((struct so_list *)); | |
137 | ||
138 | #ifdef SVR4_SHARED_LIBS | |
139 | ||
b0246b3b FF |
140 | static int |
141 | look_for_base PARAMS ((int, CORE_ADDR)); | |
142 | ||
143 | static CORE_ADDR | |
144 | bfd_lookup_symbol PARAMS ((bfd *, char *)); | |
145 | ||
be772100 | 146 | #else |
b0246b3b FF |
147 | |
148 | static void | |
149 | solib_add_common_symbols PARAMS ((struct rtc_symb *, struct objfile *)); | |
150 | ||
151 | #endif | |
bd5635a1 | 152 | |
d0237a54 | 153 | /* |
f8b76e70 FF |
154 | |
155 | LOCAL FUNCTION | |
156 | ||
157 | solib_map_sections -- open bfd and build sections for shared lib | |
158 | ||
159 | SYNOPSIS | |
160 | ||
161 | static void solib_map_sections (struct so_list *so) | |
162 | ||
163 | DESCRIPTION | |
164 | ||
165 | Given a pointer to one of the shared objects in our list | |
166 | of mapped objects, use the recorded name to open a bfd | |
167 | descriptor for the object, build a section table, and then | |
168 | relocate all the section addresses by the base address at | |
169 | which the shared object was mapped. | |
170 | ||
171 | FIXMES | |
172 | ||
173 | In most (all?) cases the shared object file name recorded in the | |
174 | dynamic linkage tables will be a fully qualified pathname. For | |
175 | cases where it isn't, do we really mimic the systems search | |
176 | mechanism correctly in the below code (particularly the tilde | |
177 | expansion stuff?). | |
178 | */ | |
179 | ||
d0237a54 | 180 | static void |
f8b76e70 FF |
181 | solib_map_sections (so) |
182 | struct so_list *so; | |
d0237a54 JK |
183 | { |
184 | char *filename; | |
185 | char *scratch_pathname; | |
186 | int scratch_chan; | |
187 | struct section_table *p; | |
de9bef49 JG |
188 | struct cleanup *old_chain; |
189 | bfd *abfd; | |
d0237a54 | 190 | |
f8b76e70 | 191 | filename = tilde_expand (so -> so_name); |
de9bef49 | 192 | old_chain = make_cleanup (free, filename); |
d0237a54 JK |
193 | |
194 | scratch_chan = openp (getenv ("PATH"), 1, filename, O_RDONLY, 0, | |
f8b76e70 | 195 | &scratch_pathname); |
d0237a54 | 196 | if (scratch_chan < 0) |
f8b76e70 FF |
197 | { |
198 | scratch_chan = openp (getenv ("LD_LIBRARY_PATH"), 1, filename, | |
199 | O_RDONLY, 0, &scratch_pathname); | |
200 | } | |
d0237a54 | 201 | if (scratch_chan < 0) |
f8b76e70 FF |
202 | { |
203 | perror_with_name (filename); | |
204 | } | |
de9bef49 | 205 | make_cleanup (free, scratch_pathname); |
f8b76e70 | 206 | |
de9bef49 JG |
207 | abfd = bfd_fdopenr (scratch_pathname, NULL, scratch_chan); |
208 | if (!abfd) | |
f8b76e70 | 209 | { |
de9bef49 | 210 | close (scratch_chan); |
f8b76e70 FF |
211 | error ("Could not open `%s' as an executable file: %s", |
212 | scratch_pathname, bfd_errmsg (bfd_error)); | |
213 | } | |
de9bef49 JG |
214 | |
215 | make_cleanup (bfd_close, abfd); /* Zap bfd, close scratch_chan. */ | |
216 | ||
217 | if (!bfd_check_format (abfd, bfd_object)) | |
f8b76e70 FF |
218 | { |
219 | error ("\"%s\": not in executable format: %s.", | |
220 | scratch_pathname, bfd_errmsg (bfd_error)); | |
221 | } | |
de9bef49 | 222 | if (build_section_table (abfd, &so -> sections, &so -> sections_end)) |
f8b76e70 FF |
223 | { |
224 | error ("Can't find the file sections in `%s': %s", | |
225 | exec_bfd -> filename, bfd_errmsg (bfd_error)); | |
226 | } | |
227 | ||
228 | for (p = so -> sections; p < so -> sections_end; p++) | |
229 | { | |
230 | /* Relocate the section binding addresses as recorded in the shared | |
231 | object's file by the base address to which the object was actually | |
232 | mapped. */ | |
233 | p -> addr += (CORE_ADDR) LM_ADDR (so); | |
234 | p -> endaddr += (CORE_ADDR) LM_ADDR (so); | |
235 | so -> lmend = (CORE_ADDR) max (p -> endaddr, so -> lmend); | |
2e4964ad | 236 | if (STREQ (p -> sec_ptr -> name, ".text")) |
51b57ded FF |
237 | { |
238 | so -> textsection = p; | |
239 | } | |
f8b76e70 | 240 | } |
de9bef49 JG |
241 | |
242 | /* Free the file names, close the file now. */ | |
243 | do_cleanups (old_chain); | |
f8b76e70 FF |
244 | } |
245 | ||
d261ece7 | 246 | /* Read all dynamically loaded common symbol definitions from the inferior |
b0246b3b | 247 | and add them to the minimal symbol table for the shared library objfile. */ |
d261ece7 | 248 | |
7f435241 FF |
249 | #ifndef SVR4_SHARED_LIBS |
250 | ||
d261ece7 | 251 | static void |
b0246b3b | 252 | solib_add_common_symbols (rtc_symp, objfile) |
d261ece7 | 253 | struct rtc_symb *rtc_symp; |
b0246b3b | 254 | struct objfile *objfile; |
d261ece7 SG |
255 | { |
256 | struct rtc_symb inferior_rtc_symb; | |
257 | struct nlist inferior_rtc_nlist; | |
b0246b3b FF |
258 | int len; |
259 | char *name; | |
260 | char *origname; | |
d261ece7 | 261 | |
b0246b3b FF |
262 | init_minimal_symbol_collection (); |
263 | make_cleanup (discard_minimal_symbols, 0); | |
d261ece7 SG |
264 | |
265 | while (rtc_symp) | |
266 | { | |
b0246b3b FF |
267 | read_memory ((CORE_ADDR) rtc_symp, |
268 | (char *) &inferior_rtc_symb, | |
269 | sizeof (inferior_rtc_symb)); | |
270 | read_memory ((CORE_ADDR) inferior_rtc_symb.rtc_sp, | |
271 | (char *) &inferior_rtc_nlist, | |
272 | sizeof(inferior_rtc_nlist)); | |
273 | if (inferior_rtc_nlist.n_type == N_COMM) | |
274 | { | |
275 | /* FIXME: The length of the symbol name is not available, but in the | |
276 | current implementation the common symbol is allocated immediately | |
277 | behind the name of the symbol. */ | |
278 | len = inferior_rtc_nlist.n_value - inferior_rtc_nlist.n_un.n_strx; | |
279 | ||
280 | origname = name = xmalloc (len); | |
281 | read_memory ((CORE_ADDR) inferior_rtc_nlist.n_un.n_name, name, len); | |
282 | ||
283 | /* Don't enter the symbol twice if the target is re-run. */ | |
d261ece7 | 284 | |
de9bef49 | 285 | if (name[0] == bfd_get_symbol_leading_char (objfile->obfd)) |
b0246b3b FF |
286 | { |
287 | name++; | |
288 | } | |
de9bef49 | 289 | |
b0246b3b FF |
290 | /* FIXME: Do we really want to exclude symbols which happen |
291 | to match symbols for other locations in the inferior's | |
292 | address space, even when they are in different linkage units? */ | |
293 | if (lookup_minimal_symbol (name, (struct objfile *) NULL) == NULL) | |
294 | { | |
295 | name = obsavestring (name, strlen (name), | |
296 | &objfile -> symbol_obstack); | |
297 | prim_record_minimal_symbol (name, inferior_rtc_nlist.n_value, | |
298 | mst_bss); | |
299 | } | |
300 | free (origname); | |
301 | } | |
302 | rtc_symp = inferior_rtc_symb.rtc_next; | |
d261ece7 SG |
303 | } |
304 | ||
b0246b3b FF |
305 | /* Install any minimal symbols that have been collected as the current |
306 | minimal symbols for this objfile. */ | |
307 | ||
308 | install_minimal_symbols (objfile); | |
d261ece7 SG |
309 | } |
310 | ||
7f435241 FF |
311 | #endif /* SVR4_SHARED_LIBS */ |
312 | ||
be772100 JG |
313 | #ifdef SVR4_SHARED_LIBS |
314 | ||
f8b76e70 FF |
315 | /* |
316 | ||
317 | LOCAL FUNCTION | |
318 | ||
319 | bfd_lookup_symbol -- lookup the value for a specific symbol | |
320 | ||
321 | SYNOPSIS | |
322 | ||
323 | CORE_ADDR bfd_lookup_symbol (bfd *abfd, char *symname) | |
324 | ||
325 | DESCRIPTION | |
326 | ||
327 | An expensive way to lookup the value of a single symbol for | |
328 | bfd's that are only temporary anyway. This is used by the | |
329 | shared library support to find the address of the debugger | |
330 | interface structures in the shared library. | |
331 | ||
332 | Note that 0 is specifically allowed as an error return (no | |
333 | such symbol). | |
334 | ||
335 | FIXME: See if there is a less "expensive" way of doing this. | |
336 | Also see if there is already another bfd or gdb function | |
337 | that specifically does this, and if so, use it. | |
338 | */ | |
339 | ||
340 | static CORE_ADDR | |
b0246b3b FF |
341 | bfd_lookup_symbol (abfd, symname) |
342 | bfd *abfd; | |
343 | char *symname; | |
f8b76e70 FF |
344 | { |
345 | unsigned int storage_needed; | |
346 | asymbol *sym; | |
347 | asymbol **symbol_table; | |
348 | unsigned int number_of_symbols; | |
349 | unsigned int i; | |
350 | struct cleanup *back_to; | |
351 | CORE_ADDR symaddr = 0; | |
f8b76e70 FF |
352 | |
353 | storage_needed = get_symtab_upper_bound (abfd); | |
354 | ||
355 | if (storage_needed > 0) | |
356 | { | |
be772100 JG |
357 | symbol_table = (asymbol **) xmalloc (storage_needed); |
358 | back_to = make_cleanup (free, (PTR)symbol_table); | |
f8b76e70 FF |
359 | number_of_symbols = bfd_canonicalize_symtab (abfd, symbol_table); |
360 | ||
361 | for (i = 0; i < number_of_symbols; i++) | |
d0237a54 | 362 | { |
f8b76e70 | 363 | sym = *symbol_table++; |
2e4964ad | 364 | if (STREQ (sym -> name, symname)) |
f8b76e70 FF |
365 | { |
366 | symaddr = sym -> value; | |
367 | break; | |
368 | } | |
d0237a54 | 369 | } |
f8b76e70 | 370 | do_cleanups (back_to); |
d0237a54 | 371 | } |
f8b76e70 | 372 | return (symaddr); |
d0237a54 JK |
373 | } |
374 | ||
f8b76e70 FF |
375 | /* |
376 | ||
d261ece7 SG |
377 | LOCAL FUNCTION |
378 | ||
379 | look_for_base -- examine file for each mapped address segment | |
380 | ||
381 | SYNOPSYS | |
382 | ||
383 | static int look_for_base (int fd, CORE_ADDR baseaddr) | |
384 | ||
385 | DESCRIPTION | |
386 | ||
387 | This function is passed to proc_iterate_over_mappings, which | |
388 | causes it to get called once for each mapped address space, with | |
389 | an open file descriptor for the file mapped to that space, and the | |
390 | base address of that mapped space. | |
391 | ||
392 | Our job is to find the symbol DEBUG_BASE in the file that this | |
393 | fd is open on, if it exists, and if so, initialize the dynamic | |
394 | linker structure base address debug_base. | |
395 | ||
396 | Note that this is a computationally expensive proposition, since | |
397 | we basically have to open a bfd on every call, so we specifically | |
398 | avoid opening the exec file. | |
399 | */ | |
400 | ||
401 | static int | |
b0246b3b FF |
402 | look_for_base (fd, baseaddr) |
403 | int fd; | |
404 | CORE_ADDR baseaddr; | |
d261ece7 SG |
405 | { |
406 | bfd *interp_bfd; | |
407 | CORE_ADDR address; | |
408 | ||
409 | /* If the fd is -1, then there is no file that corresponds to this | |
410 | mapped memory segment, so skip it. Also, if the fd corresponds | |
411 | to the exec file, skip it as well. */ | |
412 | ||
413 | if ((fd == -1) || fdmatch (fileno ((FILE *)(exec_bfd -> iostream)), fd)) | |
414 | { | |
415 | return (0); | |
416 | } | |
417 | ||
418 | /* Try to open whatever random file this fd corresponds to. Note that | |
419 | we have no way currently to find the filename. Don't gripe about | |
420 | any problems we might have, just fail. */ | |
421 | ||
422 | if ((interp_bfd = bfd_fdopenr ("unnamed", NULL, fd)) == NULL) | |
423 | { | |
424 | return (0); | |
425 | } | |
426 | if (!bfd_check_format (interp_bfd, bfd_object)) | |
427 | { | |
428 | bfd_close (interp_bfd); | |
429 | return (0); | |
430 | } | |
431 | ||
432 | /* Now try to find our DEBUG_BASE symbol in this file, which we at | |
433 | least know to be a valid ELF executable or shared library. */ | |
434 | ||
435 | if ((address = bfd_lookup_symbol (interp_bfd, DEBUG_BASE)) == 0) | |
436 | { | |
437 | bfd_close (interp_bfd); | |
438 | return (0); | |
439 | } | |
440 | ||
441 | /* Eureka! We found the symbol. But now we may need to relocate it | |
442 | by the base address. If the symbol's value is less than the base | |
443 | address of the shared library, then it hasn't yet been relocated | |
444 | by the dynamic linker, and we have to do it ourself. FIXME: Note | |
445 | that we make the assumption that the first segment that corresponds | |
446 | to the shared library has the base address to which the library | |
447 | was relocated. */ | |
448 | ||
449 | if (address < baseaddr) | |
450 | { | |
451 | address += baseaddr; | |
452 | } | |
453 | debug_base = address; | |
454 | bfd_close (interp_bfd); | |
455 | return (1); | |
456 | } | |
457 | ||
be772100 JG |
458 | #endif |
459 | ||
d261ece7 SG |
460 | /* |
461 | ||
f8b76e70 FF |
462 | LOCAL FUNCTION |
463 | ||
464 | locate_base -- locate the base address of dynamic linker structs | |
465 | ||
466 | SYNOPSIS | |
467 | ||
468 | CORE_ADDR locate_base (void) | |
469 | ||
470 | DESCRIPTION | |
471 | ||
472 | For both the SunOS and SVR4 shared library implementations, if the | |
473 | inferior executable has been linked dynamically, there is a single | |
474 | address somewhere in the inferior's data space which is the key to | |
d261ece7 | 475 | locating all of the dynamic linker's runtime structures. This |
f8b76e70 FF |
476 | address is the value of the symbol defined by the macro DEBUG_BASE. |
477 | The job of this function is to find and return that address, or to | |
478 | return 0 if there is no such address (the executable is statically | |
479 | linked for example). | |
480 | ||
481 | For SunOS, the job is almost trivial, since the dynamic linker and | |
482 | all of it's structures are statically linked to the executable at | |
483 | link time. Thus the symbol for the address we are looking for has | |
b0246b3b FF |
484 | already been added to the minimal symbol table for the executable's |
485 | objfile at the time the symbol file's symbols were read, and all we | |
486 | have to do is look it up there. Note that we explicitly do NOT want | |
487 | to find the copies in the shared library. | |
f8b76e70 FF |
488 | |
489 | The SVR4 version is much more complicated because the dynamic linker | |
d261ece7 SG |
490 | and it's structures are located in the shared C library, which gets |
491 | run as the executable's "interpreter" by the kernel. We have to go | |
492 | to a lot more work to discover the address of DEBUG_BASE. Because | |
f8b76e70 | 493 | of this complexity, we cache the value we find and return that value |
b0246b3b FF |
494 | on subsequent invocations. Note there is no copy in the executable |
495 | symbol tables. | |
f8b76e70 | 496 | |
d261ece7 SG |
497 | Note that we can assume nothing about the process state at the time |
498 | we need to find this address. We may be stopped on the first instruc- | |
499 | tion of the interpreter (C shared library), the first instruction of | |
500 | the executable itself, or somewhere else entirely (if we attached | |
501 | to the process for example). | |
f8b76e70 FF |
502 | |
503 | */ | |
504 | ||
505 | static CORE_ADDR | |
506 | locate_base () | |
507 | { | |
f8b76e70 | 508 | |
d261ece7 | 509 | #ifndef SVR4_SHARED_LIBS |
f8b76e70 | 510 | |
b0246b3b | 511 | struct minimal_symbol *msymbol; |
d261ece7 | 512 | CORE_ADDR address = 0; |
f8b76e70 | 513 | |
b0246b3b FF |
514 | /* For SunOS, we want to limit the search for DEBUG_BASE to the executable |
515 | being debugged, since there is a duplicate named symbol in the shared | |
516 | library. We don't want the shared library versions. */ | |
517 | ||
518 | msymbol = lookup_minimal_symbol (DEBUG_BASE, symfile_objfile); | |
2e4964ad | 519 | if ((msymbol != NULL) && (SYMBOL_VALUE_ADDRESS (msymbol) != 0)) |
f8b76e70 | 520 | { |
2e4964ad | 521 | address = SYMBOL_VALUE_ADDRESS (msymbol); |
f8b76e70 | 522 | } |
d261ece7 | 523 | return (address); |
f8b76e70 | 524 | |
d261ece7 | 525 | #else /* SVR4_SHARED_LIBS */ |
f8b76e70 | 526 | |
d261ece7 SG |
527 | /* Check to see if we have a currently valid address, and if so, avoid |
528 | doing all this work again and just return the cached address. If | |
529 | we have no cached address, ask the /proc support interface to iterate | |
530 | over the list of mapped address segments, calling look_for_base() for | |
531 | each segment. When we are done, we will have either found the base | |
532 | address or not. */ | |
f8b76e70 | 533 | |
d261ece7 | 534 | if (debug_base == 0) |
f8b76e70 | 535 | { |
d261ece7 | 536 | proc_iterate_over_mappings (look_for_base); |
f8b76e70 | 537 | } |
d261ece7 | 538 | return (debug_base); |
f8b76e70 | 539 | |
d261ece7 | 540 | #endif /* !SVR4_SHARED_LIBS */ |
f8b76e70 FF |
541 | |
542 | } | |
bd5635a1 | 543 | |
f8b76e70 FF |
544 | static struct link_map * |
545 | first_link_map_member () | |
bd5635a1 | 546 | { |
f8b76e70 FF |
547 | struct link_map *lm = NULL; |
548 | ||
d261ece7 | 549 | #ifndef SVR4_SHARED_LIBS |
f8b76e70 | 550 | |
b0246b3b | 551 | read_memory (debug_base, (char *) &dynamic_copy, sizeof (dynamic_copy)); |
f8b76e70 FF |
552 | if (dynamic_copy.ld_version >= 2) |
553 | { | |
554 | /* It is a version that we can deal with, so read in the secondary | |
555 | structure and find the address of the link map list from it. */ | |
b0246b3b | 556 | read_memory ((CORE_ADDR) dynamic_copy.ld_un.ld_2, (char *) &ld_2_copy, |
f8b76e70 FF |
557 | sizeof (struct link_dynamic_2)); |
558 | lm = ld_2_copy.ld_loaded; | |
559 | } | |
560 | ||
d261ece7 | 561 | #else /* SVR4_SHARED_LIBS */ |
f8b76e70 | 562 | |
b0246b3b | 563 | read_memory (debug_base, (char *) &debug_copy, sizeof (struct r_debug)); |
f8b76e70 FF |
564 | lm = debug_copy.r_map; |
565 | ||
d261ece7 | 566 | #endif /* !SVR4_SHARED_LIBS */ |
d0237a54 | 567 | |
f8b76e70 FF |
568 | return (lm); |
569 | } | |
570 | ||
571 | /* | |
572 | ||
b0246b3b | 573 | LOCAL FUNCTION |
f8b76e70 FF |
574 | |
575 | find_solib -- step through list of shared objects | |
576 | ||
577 | SYNOPSIS | |
578 | ||
579 | struct so_list *find_solib (struct so_list *so_list_ptr) | |
580 | ||
581 | DESCRIPTION | |
582 | ||
583 | This module contains the routine which finds the names of any | |
584 | loaded "images" in the current process. The argument in must be | |
585 | NULL on the first call, and then the returned value must be passed | |
586 | in on subsequent calls. This provides the capability to "step" down | |
587 | the list of loaded objects. On the last object, a NULL value is | |
588 | returned. | |
d0237a54 | 589 | |
f8b76e70 FF |
590 | The arg and return value are "struct link_map" pointers, as defined |
591 | in <link.h>. | |
592 | */ | |
d0237a54 | 593 | |
b0246b3b | 594 | static struct so_list * |
f8b76e70 FF |
595 | find_solib (so_list_ptr) |
596 | struct so_list *so_list_ptr; /* Last lm or NULL for first one */ | |
597 | { | |
598 | struct so_list *so_list_next = NULL; | |
599 | struct link_map *lm = NULL; | |
600 | struct so_list *new; | |
601 | ||
602 | if (so_list_ptr == NULL) | |
603 | { | |
604 | /* We are setting up for a new scan through the loaded images. */ | |
605 | if ((so_list_next = so_list_head) == NULL) | |
606 | { | |
607 | /* We have not already read in the dynamic linking structures | |
608 | from the inferior, lookup the address of the base structure. */ | |
609 | debug_base = locate_base (); | |
610 | if (debug_base > 0) | |
611 | { | |
612 | /* Read the base structure in and find the address of the first | |
613 | link map list member. */ | |
614 | lm = first_link_map_member (); | |
615 | } | |
616 | } | |
617 | } | |
618 | else | |
619 | { | |
620 | /* We have been called before, and are in the process of walking | |
621 | the shared library list. Advance to the next shared object. */ | |
622 | if ((lm = LM_NEXT (so_list_ptr)) == NULL) | |
623 | { | |
624 | /* We have hit the end of the list, so check to see if any were | |
625 | added, but be quiet if we can't read from the target any more. */ | |
626 | int status = target_read_memory ((CORE_ADDR) so_list_ptr -> lmaddr, | |
627 | (char *) &(so_list_ptr -> lm), | |
628 | sizeof (struct link_map)); | |
629 | if (status == 0) | |
630 | { | |
631 | lm = LM_NEXT (so_list_ptr); | |
632 | } | |
633 | else | |
634 | { | |
635 | lm = NULL; | |
636 | } | |
637 | } | |
638 | so_list_next = so_list_ptr -> next; | |
639 | } | |
640 | if ((so_list_next == NULL) && (lm != NULL)) | |
641 | { | |
642 | /* Get next link map structure from inferior image and build a local | |
643 | abbreviated load_map structure */ | |
644 | new = (struct so_list *) xmalloc (sizeof (struct so_list)); | |
de9bef49 | 645 | memset ((char *) new, 0, sizeof (struct so_list)); |
f8b76e70 FF |
646 | new -> lmaddr = lm; |
647 | /* Add the new node as the next node in the list, or as the root | |
648 | node if this is the first one. */ | |
649 | if (so_list_ptr != NULL) | |
650 | { | |
651 | so_list_ptr -> next = new; | |
652 | } | |
653 | else | |
654 | { | |
655 | so_list_head = new; | |
656 | } | |
657 | so_list_next = new; | |
b0246b3b FF |
658 | read_memory ((CORE_ADDR) lm, (char *) &(new -> lm), |
659 | sizeof (struct link_map)); | |
f8b76e70 FF |
660 | /* For the SVR4 version, there is one entry that has no name |
661 | (for the inferior executable) since it is not a shared object. */ | |
662 | if (LM_NAME (new) != 0) | |
663 | { | |
ee0613d1 JG |
664 | if (!target_read_string((CORE_ADDR) LM_NAME (new), new -> so_name, |
665 | MAX_PATH_SIZE - 1)) | |
666 | error ("find_solib: Can't read pathname for load map\n"); | |
f8b76e70 FF |
667 | new -> so_name[MAX_PATH_SIZE - 1] = 0; |
668 | solib_map_sections (new); | |
669 | } | |
670 | } | |
671 | return (so_list_next); | |
bd5635a1 | 672 | } |
d0237a54 | 673 | |
bdbd5f50 JG |
674 | /* A small stub to get us past the arg-passing pinhole of catch_errors. */ |
675 | ||
676 | static int | |
677 | symbol_add_stub (arg) | |
678 | char *arg; | |
d0237a54 | 679 | { |
f8b76e70 FF |
680 | register struct so_list *so = (struct so_list *) arg; /* catch_errs bogon */ |
681 | ||
b0246b3b | 682 | so -> objfile = symbol_file_add (so -> so_name, so -> from_tty, |
51b57ded FF |
683 | (unsigned int) so -> textsection -> addr, |
684 | 0, 0, 0); | |
f8b76e70 | 685 | return (1); |
d0237a54 | 686 | } |
bd5635a1 | 687 | |
f8b76e70 FF |
688 | /* |
689 | ||
690 | GLOBAL FUNCTION | |
691 | ||
692 | solib_add -- add a shared library file to the symtab and section list | |
693 | ||
694 | SYNOPSIS | |
695 | ||
696 | void solib_add (char *arg_string, int from_tty, | |
697 | struct target_ops *target) | |
698 | ||
699 | DESCRIPTION | |
700 | ||
701 | */ | |
bdbd5f50 JG |
702 | |
703 | void | |
704 | solib_add (arg_string, from_tty, target) | |
705 | char *arg_string; | |
706 | int from_tty; | |
707 | struct target_ops *target; | |
bd5635a1 | 708 | { |
f8b76e70 FF |
709 | register struct so_list *so = NULL; /* link map state variable */ |
710 | char *re_err; | |
711 | int count; | |
712 | int old; | |
713 | ||
714 | if ((re_err = re_comp (arg_string ? arg_string : ".")) != NULL) | |
715 | { | |
716 | error ("Invalid regexp: %s", re_err); | |
717 | } | |
718 | ||
bdbd5f50 JG |
719 | /* Getting new symbols may change our opinion about what is |
720 | frameless. */ | |
721 | reinit_frame_cache (); | |
bdbd5f50 | 722 | |
f8b76e70 FF |
723 | while ((so = find_solib (so)) != NULL) |
724 | { | |
725 | if (so -> so_name[0] && re_exec (so -> so_name)) | |
726 | { | |
727 | if (so -> symbols_loaded) | |
728 | { | |
bdbd5f50 | 729 | if (from_tty) |
f8b76e70 FF |
730 | { |
731 | printf ("Symbols already loaded for %s\n", so -> so_name); | |
732 | } | |
733 | } | |
734 | else | |
735 | { | |
f8b76e70 FF |
736 | catch_errors (symbol_add_stub, (char *) so, |
737 | "Error while reading shared library symbols:\n"); | |
b0246b3b FF |
738 | |
739 | special_symbol_handling (so); | |
740 | so -> symbols_loaded = 1; | |
741 | so -> from_tty = from_tty; | |
f8b76e70 FF |
742 | } |
743 | } | |
744 | } | |
745 | ||
bdbd5f50 JG |
746 | /* Now add the shared library sections to the section table of the |
747 | specified target, if any. */ | |
f8b76e70 FF |
748 | if (target) |
749 | { | |
750 | /* Count how many new section_table entries there are. */ | |
751 | so = NULL; | |
752 | count = 0; | |
753 | while ((so = find_solib (so)) != NULL) | |
754 | { | |
755 | if (so -> so_name[0]) | |
756 | { | |
757 | count += so -> sections_end - so -> sections; | |
758 | } | |
759 | } | |
760 | ||
761 | if (count) | |
762 | { | |
763 | /* Reallocate the target's section table including the new size. */ | |
ee0613d1 | 764 | if (target -> to_sections) |
f8b76e70 | 765 | { |
ee0613d1 JG |
766 | old = target -> to_sections_end - target -> to_sections; |
767 | target -> to_sections = (struct section_table *) | |
768 | realloc ((char *)target -> to_sections, | |
f8b76e70 FF |
769 | (sizeof (struct section_table)) * (count + old)); |
770 | } | |
771 | else | |
772 | { | |
773 | old = 0; | |
ee0613d1 | 774 | target -> to_sections = (struct section_table *) |
f8b76e70 FF |
775 | malloc ((sizeof (struct section_table)) * count); |
776 | } | |
ee0613d1 | 777 | target -> to_sections_end = target -> to_sections + (count + old); |
f8b76e70 FF |
778 | |
779 | /* Add these section table entries to the target's table. */ | |
780 | while ((so = find_solib (so)) != NULL) | |
781 | { | |
782 | if (so -> so_name[0]) | |
783 | { | |
784 | count = so -> sections_end - so -> sections; | |
de9bef49 JG |
785 | memcpy ((char *) (target -> to_sections + old), |
786 | so -> sections, | |
787 | (sizeof (struct section_table)) * count); | |
f8b76e70 FF |
788 | old += count; |
789 | } | |
790 | } | |
791 | } | |
792 | } | |
bd5635a1 | 793 | } |
bdbd5f50 | 794 | |
f8b76e70 | 795 | /* |
bd5635a1 | 796 | |
f8b76e70 FF |
797 | LOCAL FUNCTION |
798 | ||
799 | info_sharedlibrary_command -- code for "info sharedlibrary" | |
800 | ||
801 | SYNOPSIS | |
802 | ||
803 | static void info_sharedlibrary_command () | |
804 | ||
805 | DESCRIPTION | |
bd5635a1 | 806 | |
f8b76e70 FF |
807 | Walk through the shared library list and print information |
808 | about each attached library. | |
809 | */ | |
810 | ||
811 | static void | |
51b57ded FF |
812 | info_sharedlibrary_command (ignore, from_tty) |
813 | char *ignore; | |
814 | int from_tty; | |
f8b76e70 FF |
815 | { |
816 | register struct so_list *so = NULL; /* link map state variable */ | |
817 | int header_done = 0; | |
818 | ||
819 | if (exec_bfd == NULL) | |
820 | { | |
821 | printf ("No exec file.\n"); | |
822 | return; | |
823 | } | |
824 | while ((so = find_solib (so)) != NULL) | |
825 | { | |
826 | if (so -> so_name[0]) | |
827 | { | |
828 | if (!header_done) | |
829 | { | |
830 | printf("%-12s%-12s%-12s%s\n", "From", "To", "Syms Read", | |
831 | "Shared Object Library"); | |
832 | header_done++; | |
833 | } | |
b0246b3b | 834 | printf ("%-12s", local_hex_string_custom ((int) LM_ADDR (so), "08")); |
f8b76e70 FF |
835 | printf ("%-12s", local_hex_string_custom (so -> lmend, "08")); |
836 | printf ("%-12s", so -> symbols_loaded ? "Yes" : "No"); | |
837 | printf ("%s\n", so -> so_name); | |
bd5635a1 | 838 | } |
bd5635a1 | 839 | } |
f8b76e70 FF |
840 | if (so_list_head == NULL) |
841 | { | |
842 | printf ("No shared libraries loaded at this time.\n"); | |
bd5635a1 RP |
843 | } |
844 | } | |
845 | ||
846 | /* | |
f8b76e70 FF |
847 | |
848 | GLOBAL FUNCTION | |
849 | ||
850 | solib_address -- check to see if an address is in a shared lib | |
851 | ||
852 | SYNOPSIS | |
853 | ||
854 | int solib_address (CORE_ADDR address) | |
855 | ||
856 | DESCRIPTION | |
857 | ||
858 | Provides a hook for other gdb routines to discover whether or | |
859 | not a particular address is within the mapped address space of | |
860 | a shared library. Any address between the base mapping address | |
861 | and the first address beyond the end of the last mapping, is | |
862 | considered to be within the shared library address space, for | |
863 | our purposes. | |
864 | ||
865 | For example, this routine is called at one point to disable | |
866 | breakpoints which are in shared libraries that are not currently | |
867 | mapped in. | |
868 | */ | |
869 | ||
bd5635a1 | 870 | int |
f8b76e70 | 871 | solib_address (address) |
bd5635a1 RP |
872 | CORE_ADDR address; |
873 | { | |
f8b76e70 FF |
874 | register struct so_list *so = 0; /* link map state variable */ |
875 | ||
876 | while ((so = find_solib (so)) != NULL) | |
877 | { | |
878 | if (so -> so_name[0]) | |
879 | { | |
880 | if ((address >= (CORE_ADDR) LM_ADDR (so)) && | |
881 | (address < (CORE_ADDR) so -> lmend)) | |
882 | { | |
883 | return (1); | |
884 | } | |
885 | } | |
886 | } | |
887 | return (0); | |
888 | } | |
889 | ||
890 | /* Called by free_all_symtabs */ | |
bd5635a1 | 891 | |
f8b76e70 FF |
892 | void |
893 | clear_solib() | |
894 | { | |
895 | struct so_list *next; | |
896 | ||
897 | while (so_list_head) | |
898 | { | |
899 | if (so_list_head -> sections) | |
900 | { | |
be772100 | 901 | free ((PTR)so_list_head -> sections); |
f8b76e70 | 902 | } |
f8b76e70 | 903 | next = so_list_head -> next; |
be772100 | 904 | free((PTR)so_list_head); |
f8b76e70 | 905 | so_list_head = next; |
bd5635a1 | 906 | } |
f8b76e70 | 907 | debug_base = 0; |
bd5635a1 RP |
908 | } |
909 | ||
910 | /* | |
f8b76e70 FF |
911 | |
912 | LOCAL FUNCTION | |
913 | ||
914 | disable_break -- remove the "mapping changed" breakpoint | |
915 | ||
916 | SYNOPSIS | |
917 | ||
918 | static int disable_break () | |
919 | ||
920 | DESCRIPTION | |
921 | ||
922 | Removes the breakpoint that gets hit when the dynamic linker | |
923 | completes a mapping change. | |
924 | ||
bd5635a1 | 925 | */ |
f8b76e70 FF |
926 | |
927 | static int | |
928 | disable_break () | |
bd5635a1 | 929 | { |
f8b76e70 FF |
930 | int status = 1; |
931 | ||
d261ece7 | 932 | #ifndef SVR4_SHARED_LIBS |
f8b76e70 FF |
933 | |
934 | int in_debugger = 0; | |
935 | ||
f8b76e70 FF |
936 | /* Read the debugger structure from the inferior to retrieve the |
937 | address of the breakpoint and the original contents of the | |
938 | breakpoint address. Remove the breakpoint by writing the original | |
939 | contents back. */ | |
940 | ||
b0246b3b | 941 | read_memory (debug_addr, (char *) &debug_copy, sizeof (debug_copy)); |
d261ece7 SG |
942 | |
943 | /* Set `in_debugger' to zero now. */ | |
944 | ||
b0246b3b | 945 | write_memory (flag_addr, (char *) &in_debugger, sizeof (in_debugger)); |
d261ece7 | 946 | |
f8b76e70 | 947 | breakpoint_addr = (CORE_ADDR) debug_copy.ldd_bp_addr; |
b0246b3b | 948 | write_memory (breakpoint_addr, (char *) &debug_copy.ldd_bp_inst, |
f8b76e70 FF |
949 | sizeof (debug_copy.ldd_bp_inst)); |
950 | ||
d261ece7 | 951 | #else /* SVR4_SHARED_LIBS */ |
f8b76e70 FF |
952 | |
953 | /* Note that breakpoint address and original contents are in our address | |
954 | space, so we just need to write the original contents back. */ | |
955 | ||
956 | if (memory_remove_breakpoint (breakpoint_addr, shadow_contents) != 0) | |
957 | { | |
958 | status = 0; | |
959 | } | |
960 | ||
d261ece7 | 961 | #endif /* !SVR4_SHARED_LIBS */ |
f8b76e70 FF |
962 | |
963 | /* For the SVR4 version, we always know the breakpoint address. For the | |
964 | SunOS version we don't know it until the above code is executed. | |
965 | Grumble if we are stopped anywhere besides the breakpoint address. */ | |
966 | ||
967 | if (stop_pc != breakpoint_addr) | |
968 | { | |
969 | warning ("stopped at unknown breakpoint while handling shared libraries"); | |
970 | } | |
971 | ||
972 | return (status); | |
bdbd5f50 JG |
973 | } |
974 | ||
f8b76e70 | 975 | /* |
bdbd5f50 | 976 | |
f8b76e70 FF |
977 | LOCAL FUNCTION |
978 | ||
979 | enable_break -- arrange for dynamic linker to hit breakpoint | |
980 | ||
981 | SYNOPSIS | |
982 | ||
983 | int enable_break (void) | |
984 | ||
985 | DESCRIPTION | |
986 | ||
987 | Both the SunOS and the SVR4 dynamic linkers have, as part of their | |
988 | debugger interface, support for arranging for the inferior to hit | |
989 | a breakpoint after mapping in the shared libraries. This function | |
990 | enables that breakpoint. | |
991 | ||
992 | For SunOS, there is a special flag location (in_debugger) which we | |
993 | set to 1. When the dynamic linker sees this flag set, it will set | |
994 | a breakpoint at a location known only to itself, after saving the | |
995 | original contents of that place and the breakpoint address itself, | |
996 | in it's own internal structures. When we resume the inferior, it | |
997 | will eventually take a SIGTRAP when it runs into the breakpoint. | |
998 | We handle this (in a different place) by restoring the contents of | |
999 | the breakpointed location (which is only known after it stops), | |
1000 | chasing around to locate the shared libraries that have been | |
1001 | loaded, then resuming. | |
1002 | ||
1003 | For SVR4, the debugger interface structure contains a member (r_brk) | |
1004 | which is statically initialized at the time the shared library is | |
1005 | built, to the offset of a function (_r_debug_state) which is guaran- | |
1006 | teed to be called once before mapping in a library, and again when | |
1007 | the mapping is complete. At the time we are examining this member, | |
1008 | it contains only the unrelocated offset of the function, so we have | |
1009 | to do our own relocation. Later, when the dynamic linker actually | |
1010 | runs, it relocates r_brk to be the actual address of _r_debug_state(). | |
1011 | ||
1012 | The debugger interface structure also contains an enumeration which | |
1013 | is set to either RT_ADD or RT_DELETE prior to changing the mapping, | |
1014 | depending upon whether or not the library is being mapped or unmapped, | |
1015 | and then set to RT_CONSISTENT after the library is mapped/unmapped. | |
1016 | */ | |
1017 | ||
1018 | static int | |
1019 | enable_break () | |
bdbd5f50 | 1020 | { |
bdbd5f50 | 1021 | |
d261ece7 | 1022 | #ifndef SVR4_SHARED_LIBS |
bdbd5f50 | 1023 | |
51b57ded | 1024 | int j; |
f8b76e70 | 1025 | int in_debugger; |
51b57ded | 1026 | |
bdbd5f50 | 1027 | /* Get link_dynamic structure */ |
f8b76e70 FF |
1028 | |
1029 | j = target_read_memory (debug_base, (char *) &dynamic_copy, | |
1030 | sizeof (dynamic_copy)); | |
1031 | if (j) | |
1032 | { | |
1033 | /* unreadable */ | |
1034 | return (0); | |
1035 | } | |
06b6c733 | 1036 | |
bdbd5f50 | 1037 | /* Calc address of debugger interface structure */ |
f8b76e70 FF |
1038 | |
1039 | debug_addr = (CORE_ADDR) dynamic_copy.ldd; | |
1040 | ||
bdbd5f50 | 1041 | /* Calc address of `in_debugger' member of debugger interface structure */ |
f8b76e70 FF |
1042 | |
1043 | flag_addr = debug_addr + (CORE_ADDR) ((char *) &debug_copy.ldd_in_debugger - | |
1044 | (char *) &debug_copy); | |
1045 | ||
bdbd5f50 | 1046 | /* Write a value of 1 to this member. */ |
f8b76e70 | 1047 | |
bdbd5f50 | 1048 | in_debugger = 1; |
bdbd5f50 | 1049 | |
b0246b3b | 1050 | write_memory (flag_addr, (char *) &in_debugger, sizeof (in_debugger)); |
f8b76e70 | 1051 | |
d261ece7 | 1052 | #else /* SVR4_SHARED_LIBS */ |
f8b76e70 FF |
1053 | |
1054 | #ifdef BKPT_AT_MAIN | |
1055 | ||
b0246b3b | 1056 | struct minimal_symbol *msymbol; |
f8b76e70 | 1057 | |
b0246b3b | 1058 | msymbol = lookup_minimal_symbol ("main", symfile_objfile); |
2e4964ad | 1059 | if ((msymbol != NULL) && (SYMBOL_VALUE_ADDRESS (msymbol) != 0)) |
f8b76e70 | 1060 | { |
2e4964ad | 1061 | breakpoint_addr = SYMBOL_VALUE_ADDRESS (msymbol); |
f8b76e70 FF |
1062 | } |
1063 | else | |
1064 | { | |
1065 | return (0); | |
1066 | } | |
1067 | ||
1068 | if (target_insert_breakpoint (breakpoint_addr, shadow_contents) != 0) | |
1069 | { | |
1070 | return (0); | |
1071 | } | |
1072 | ||
1073 | #else /* !BKPT_AT_MAIN */ | |
1074 | ||
1075 | struct symtab_and_line sal; | |
1076 | ||
1077 | /* Read the debugger interface structure directly. */ | |
1078 | ||
1079 | read_memory (debug_base, (char *) &debug_copy, sizeof (debug_copy)); | |
1080 | ||
1081 | /* Set breakpoint at the debugger interface stub routine that will | |
1082 | be called just prior to each mapping change and again after the | |
1083 | mapping change is complete. Set up the (nonexistent) handler to | |
1084 | deal with hitting these breakpoints. (FIXME). */ | |
1085 | ||
1086 | warning ("'%s': line %d: missing SVR4 support code", __FILE__, __LINE__); | |
1087 | ||
1088 | #endif /* BKPT_AT_MAIN */ | |
1089 | ||
d261ece7 | 1090 | #endif /* !SVR4_SHARED_LIBS */ |
f8b76e70 FF |
1091 | |
1092 | return (1); | |
1093 | } | |
1094 | ||
1095 | /* | |
1096 | ||
1097 | GLOBAL FUNCTION | |
1098 | ||
1099 | solib_create_inferior_hook -- shared library startup support | |
1100 | ||
1101 | SYNOPSIS | |
1102 | ||
1103 | void solib_create_inferior_hook() | |
1104 | ||
1105 | DESCRIPTION | |
1106 | ||
1107 | When gdb starts up the inferior, it nurses it along (through the | |
1108 | shell) until it is ready to execute it's first instruction. At this | |
1109 | point, this function gets called via expansion of the macro | |
1110 | SOLIB_CREATE_INFERIOR_HOOK. | |
1111 | ||
1112 | For both SunOS shared libraries, and SVR4 shared libraries, we | |
1113 | can arrange to cooperate with the dynamic linker to discover the | |
1114 | names of shared libraries that are dynamically linked, and the | |
1115 | base addresses to which they are linked. | |
1116 | ||
1117 | This function is responsible for discovering those names and | |
1118 | addresses, and saving sufficient information about them to allow | |
1119 | their symbols to be read at a later time. | |
1120 | ||
1121 | FIXME | |
1122 | ||
1123 | Between enable_break() and disable_break(), this code does not | |
1124 | properly handle hitting breakpoints which the user might have | |
1125 | set in the startup code or in the dynamic linker itself. Proper | |
1126 | handling will probably have to wait until the implementation is | |
1127 | changed to use the "breakpoint handler function" method. | |
1128 | ||
1129 | Also, what if child has exit()ed? Must exit loop somehow. | |
1130 | */ | |
1131 | ||
1132 | void | |
1133 | solib_create_inferior_hook() | |
1134 | { | |
f8b76e70 FF |
1135 | |
1136 | if ((debug_base = locate_base ()) == 0) | |
1137 | { | |
1138 | /* Can't find the symbol or the executable is statically linked. */ | |
1139 | return; | |
1140 | } | |
1141 | ||
1142 | if (!enable_break ()) | |
1143 | { | |
1144 | warning ("shared library handler failed to enable breakpoint"); | |
1145 | return; | |
1146 | } | |
1147 | ||
1148 | /* Now run the target. It will eventually hit the breakpoint, at | |
1149 | which point all of the libraries will have been mapped in and we | |
1150 | can go groveling around in the dynamic linker structures to find | |
1151 | out what we need to know about them. */ | |
bdbd5f50 JG |
1152 | |
1153 | clear_proceed_status (); | |
1154 | stop_soon_quietly = 1; | |
f8b76e70 FF |
1155 | stop_signal = 0; |
1156 | do | |
bdbd5f50 | 1157 | { |
bdbd5f50 JG |
1158 | target_resume (0, stop_signal); |
1159 | wait_for_inferior (); | |
1160 | } | |
f8b76e70 | 1161 | while (stop_signal != SIGTRAP); |
bdbd5f50 | 1162 | stop_soon_quietly = 0; |
f8b76e70 FF |
1163 | |
1164 | /* We are now either at the "mapping complete" breakpoint (or somewhere | |
1165 | else, a condition we aren't prepared to deal with anyway), so adjust | |
1166 | the PC as necessary after a breakpoint, disable the breakpoint, and | |
1167 | add any shared libraries that were mapped in. */ | |
bdbd5f50 | 1168 | |
f8b76e70 FF |
1169 | if (DECR_PC_AFTER_BREAK) |
1170 | { | |
1171 | stop_pc -= DECR_PC_AFTER_BREAK; | |
1172 | write_register (PC_REGNUM, stop_pc); | |
1173 | } | |
1174 | ||
1175 | if (!disable_break ()) | |
1176 | { | |
1177 | warning ("shared library handler failed to disable breakpoint"); | |
1178 | } | |
1179 | ||
1180 | solib_add ((char *) 0, 0, (struct target_ops *) 0); | |
bdbd5f50 JG |
1181 | } |
1182 | ||
f8b76e70 FF |
1183 | /* |
1184 | ||
b0246b3b FF |
1185 | LOCAL FUNCTION |
1186 | ||
1187 | special_symbol_handling -- additional shared library symbol handling | |
1188 | ||
1189 | SYNOPSIS | |
1190 | ||
1191 | void special_symbol_handling (struct so_list *so) | |
1192 | ||
1193 | DESCRIPTION | |
1194 | ||
1195 | Once the symbols from a shared object have been loaded in the usual | |
1196 | way, we are called to do any system specific symbol handling that | |
1197 | is needed. | |
1198 | ||
1199 | For Suns, this consists of grunging around in the dynamic linkers | |
1200 | structures to find symbol definitions for "common" symbols and | |
1201 | adding them to the minimal symbol table for the corresponding | |
1202 | objfile. | |
1203 | ||
1204 | */ | |
1205 | ||
1206 | static void | |
1207 | special_symbol_handling (so) | |
1208 | struct so_list *so; | |
1209 | { | |
1210 | #ifndef SVR4_SHARED_LIBS | |
51b57ded FF |
1211 | int j; |
1212 | ||
1213 | if (debug_addr == 0) | |
1214 | { | |
1215 | /* Get link_dynamic structure */ | |
1216 | ||
1217 | j = target_read_memory (debug_base, (char *) &dynamic_copy, | |
1218 | sizeof (dynamic_copy)); | |
1219 | if (j) | |
1220 | { | |
1221 | /* unreadable */ | |
1222 | return; | |
1223 | } | |
1224 | ||
1225 | /* Calc address of debugger interface structure */ | |
1226 | /* FIXME, this needs work for cross-debugging of core files | |
1227 | (byteorder, size, alignment, etc). */ | |
1228 | ||
1229 | debug_addr = (CORE_ADDR) dynamic_copy.ldd; | |
1230 | } | |
b0246b3b FF |
1231 | |
1232 | /* Read the debugger structure from the inferior, just to make sure | |
1233 | we have a current copy. */ | |
1234 | ||
51b57ded FF |
1235 | j = target_read_memory (debug_addr, (char *) &debug_copy, |
1236 | sizeof (debug_copy)); | |
1237 | if (j) | |
1238 | return; /* unreadable */ | |
b0246b3b FF |
1239 | |
1240 | /* Get common symbol definitions for the loaded object. */ | |
1241 | ||
1242 | if (debug_copy.ldd_cp) | |
1243 | { | |
1244 | solib_add_common_symbols (debug_copy.ldd_cp, so -> objfile); | |
1245 | } | |
1246 | ||
1247 | #endif /* !SVR4_SHARED_LIBS */ | |
1248 | } | |
1249 | ||
1250 | ||
1251 | /* | |
1252 | ||
1253 | LOCAL FUNCTION | |
f8b76e70 FF |
1254 | |
1255 | sharedlibrary_command -- handle command to explicitly add library | |
1256 | ||
1257 | SYNOPSIS | |
1258 | ||
b0246b3b | 1259 | static void sharedlibrary_command (char *args, int from_tty) |
f8b76e70 FF |
1260 | |
1261 | DESCRIPTION | |
1262 | ||
1263 | */ | |
1264 | ||
b0246b3b | 1265 | static void |
bdbd5f50 | 1266 | sharedlibrary_command (args, from_tty) |
f8b76e70 FF |
1267 | char *args; |
1268 | int from_tty; | |
bdbd5f50 | 1269 | { |
f8b76e70 FF |
1270 | dont_repeat (); |
1271 | solib_add (args, from_tty, (struct target_ops *) 0); | |
bd5635a1 RP |
1272 | } |
1273 | ||
1274 | void | |
1275 | _initialize_solib() | |
1276 | { | |
f8b76e70 FF |
1277 | |
1278 | add_com ("sharedlibrary", class_files, sharedlibrary_command, | |
bd5635a1 | 1279 | "Load shared object library symbols for files matching REGEXP."); |
f8b76e70 FF |
1280 | add_info ("sharedlibrary", info_sharedlibrary_command, |
1281 | "Status of loaded shared object libraries."); | |
bd5635a1 | 1282 | } |