[ARC] Add SYNTAX_NOP and SYNTAX_1OP for extension instructions
[deliverable/binutils-gdb.git] / gdb / solib-darwin.c
1 /* Handle Darwin shared libraries for GDB, the GNU Debugger.
2
3 Copyright (C) 2009-2016 Free Software Foundation, Inc.
4
5 This file is part of GDB.
6
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3 of the License, or
10 (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
19
20 #include "defs.h"
21
22 #include "symtab.h"
23 #include "bfd.h"
24 #include "symfile.h"
25 #include "objfiles.h"
26 #include "gdbcore.h"
27 #include "target.h"
28 #include "inferior.h"
29 #include "regcache.h"
30 #include "gdbthread.h"
31 #include "gdb_bfd.h"
32
33 #include "solist.h"
34 #include "solib.h"
35 #include "solib-svr4.h"
36
37 #include "bfd-target.h"
38 #include "elf-bfd.h"
39 #include "exec.h"
40 #include "auxv.h"
41 #include "mach-o.h"
42 #include "mach-o/external.h"
43
44 struct gdb_dyld_image_info
45 {
46 /* Base address (which corresponds to the Mach-O header). */
47 CORE_ADDR mach_header;
48 /* Image file path. */
49 CORE_ADDR file_path;
50 /* st.m_time of image file. */
51 unsigned long mtime;
52 };
53
54 /* Content of inferior dyld_all_image_infos structure.
55 See /usr/include/mach-o/dyld_images.h for the documentation. */
56 struct gdb_dyld_all_image_infos
57 {
58 /* Version (1). */
59 unsigned int version;
60 /* Number of images. */
61 unsigned int count;
62 /* Image description. */
63 CORE_ADDR info;
64 /* Notifier (function called when a library is added or removed). */
65 CORE_ADDR notifier;
66 };
67
68 /* Current all_image_infos version. */
69 #define DYLD_VERSION_MIN 1
70 #define DYLD_VERSION_MAX 14
71
72 /* Per PSPACE specific data. */
73 struct darwin_info
74 {
75 /* Address of structure dyld_all_image_infos in inferior. */
76 CORE_ADDR all_image_addr;
77
78 /* Gdb copy of dyld_all_info_infos. */
79 struct gdb_dyld_all_image_infos all_image;
80 };
81
82 /* Per-program-space data key. */
83 static const struct program_space_data *solib_darwin_pspace_data;
84
85 static void
86 darwin_pspace_data_cleanup (struct program_space *pspace, void *arg)
87 {
88 xfree (arg);
89 }
90
91 /* Get the current darwin data. If none is found yet, add it now. This
92 function always returns a valid object. */
93
94 static struct darwin_info *
95 get_darwin_info (void)
96 {
97 struct darwin_info *info;
98
99 info = (struct darwin_info *) program_space_data (current_program_space,
100 solib_darwin_pspace_data);
101 if (info != NULL)
102 return info;
103
104 info = XCNEW (struct darwin_info);
105 set_program_space_data (current_program_space,
106 solib_darwin_pspace_data, info);
107 return info;
108 }
109
110 /* Return non-zero if the version in dyld_all_image is known. */
111
112 static int
113 darwin_dyld_version_ok (const struct darwin_info *info)
114 {
115 return info->all_image.version >= DYLD_VERSION_MIN
116 && info->all_image.version <= DYLD_VERSION_MAX;
117 }
118
119 /* Read dyld_all_image from inferior. */
120
121 static void
122 darwin_load_image_infos (struct darwin_info *info)
123 {
124 gdb_byte buf[24];
125 enum bfd_endian byte_order = gdbarch_byte_order (target_gdbarch ());
126 struct type *ptr_type = builtin_type (target_gdbarch ())->builtin_data_ptr;
127 int len;
128
129 /* If the structure address is not known, don't continue. */
130 if (info->all_image_addr == 0)
131 return;
132
133 /* The structure has 4 fields: version (4 bytes), count (4 bytes),
134 info (pointer) and notifier (pointer). */
135 len = 4 + 4 + 2 * TYPE_LENGTH (ptr_type);
136 gdb_assert (len <= sizeof (buf));
137 memset (&info->all_image, 0, sizeof (info->all_image));
138
139 /* Read structure raw bytes from target. */
140 if (target_read_memory (info->all_image_addr, buf, len))
141 return;
142
143 /* Extract the fields. */
144 info->all_image.version = extract_unsigned_integer (buf, 4, byte_order);
145 if (!darwin_dyld_version_ok (info))
146 return;
147
148 info->all_image.count = extract_unsigned_integer (buf + 4, 4, byte_order);
149 info->all_image.info = extract_typed_address (buf + 8, ptr_type);
150 info->all_image.notifier = extract_typed_address
151 (buf + 8 + TYPE_LENGTH (ptr_type), ptr_type);
152 }
153
154 /* Link map info to include in an allocated so_list entry. */
155
156 struct lm_info
157 {
158 /* The target location of lm. */
159 CORE_ADDR lm_addr;
160 };
161
162 struct darwin_so_list
163 {
164 /* Common field. */
165 struct so_list sl;
166 /* Darwin specific data. */
167 struct lm_info li;
168 };
169
170 /* Lookup the value for a specific symbol. */
171
172 static CORE_ADDR
173 lookup_symbol_from_bfd (bfd *abfd, char *symname)
174 {
175 long storage_needed;
176 asymbol **symbol_table;
177 unsigned int number_of_symbols;
178 unsigned int i;
179 CORE_ADDR symaddr = 0;
180
181 storage_needed = bfd_get_symtab_upper_bound (abfd);
182
183 if (storage_needed <= 0)
184 return 0;
185
186 symbol_table = (asymbol **) xmalloc (storage_needed);
187 number_of_symbols = bfd_canonicalize_symtab (abfd, symbol_table);
188
189 for (i = 0; i < number_of_symbols; i++)
190 {
191 asymbol *sym = symbol_table[i];
192
193 if (strcmp (sym->name, symname) == 0
194 && (sym->section->flags & (SEC_CODE | SEC_DATA)) != 0)
195 {
196 /* BFD symbols are section relative. */
197 symaddr = sym->value + sym->section->vma;
198 break;
199 }
200 }
201 xfree (symbol_table);
202
203 return symaddr;
204 }
205
206 /* Return program interpreter string. */
207
208 static char *
209 find_program_interpreter (void)
210 {
211 char *buf = NULL;
212
213 /* If we have an exec_bfd, get the interpreter from the load commands. */
214 if (exec_bfd)
215 {
216 bfd_mach_o_load_command *cmd;
217
218 if (bfd_mach_o_lookup_command (exec_bfd,
219 BFD_MACH_O_LC_LOAD_DYLINKER, &cmd) == 1)
220 return cmd->command.dylinker.name_str;
221 }
222
223 /* If we didn't find it, read from memory.
224 FIXME: todo. */
225 return buf;
226 }
227
228 /* Not used. I don't see how the main symbol file can be found: the
229 interpreter name is needed and it is known from the executable file.
230 Note that darwin-nat.c implements pid_to_exec_file. */
231
232 static int
233 open_symbol_file_object (void *from_ttyp)
234 {
235 return 0;
236 }
237
238 /* Build a list of currently loaded shared objects. See solib-svr4.c. */
239
240 static struct so_list *
241 darwin_current_sos (void)
242 {
243 struct type *ptr_type = builtin_type (target_gdbarch ())->builtin_data_ptr;
244 enum bfd_endian byte_order = gdbarch_byte_order (target_gdbarch ());
245 int ptr_len = TYPE_LENGTH (ptr_type);
246 unsigned int image_info_size;
247 struct so_list *head = NULL;
248 struct so_list *tail = NULL;
249 int i;
250 struct darwin_info *info = get_darwin_info ();
251
252 /* Be sure image infos are loaded. */
253 darwin_load_image_infos (info);
254
255 if (!darwin_dyld_version_ok (info))
256 return NULL;
257
258 image_info_size = ptr_len * 3;
259
260 /* Read infos for each solib.
261 The first entry was rumored to be the executable itself, but this is not
262 true when a large number of shared libraries are used (table expanded ?).
263 We now check all entries, but discard executable images. */
264 for (i = 0; i < info->all_image.count; i++)
265 {
266 CORE_ADDR iinfo = info->all_image.info + i * image_info_size;
267 gdb_byte buf[image_info_size];
268 CORE_ADDR load_addr;
269 CORE_ADDR path_addr;
270 struct mach_o_header_external hdr;
271 unsigned long hdr_val;
272 char *file_path;
273 int errcode;
274 struct darwin_so_list *dnew;
275 struct so_list *newobj;
276 struct cleanup *old_chain;
277
278 /* Read image info from inferior. */
279 if (target_read_memory (iinfo, buf, image_info_size))
280 break;
281
282 load_addr = extract_typed_address (buf, ptr_type);
283 path_addr = extract_typed_address (buf + ptr_len, ptr_type);
284
285 /* Read Mach-O header from memory. */
286 if (target_read_memory (load_addr, (gdb_byte *) &hdr, sizeof (hdr) - 4))
287 break;
288 /* Discard wrong magic numbers. Shouldn't happen. */
289 hdr_val = extract_unsigned_integer
290 (hdr.magic, sizeof (hdr.magic), byte_order);
291 if (hdr_val != BFD_MACH_O_MH_MAGIC && hdr_val != BFD_MACH_O_MH_MAGIC_64)
292 continue;
293 /* Discard executable. Should happen only once. */
294 hdr_val = extract_unsigned_integer
295 (hdr.filetype, sizeof (hdr.filetype), byte_order);
296 if (hdr_val == BFD_MACH_O_MH_EXECUTE)
297 continue;
298
299 target_read_string (path_addr, &file_path,
300 SO_NAME_MAX_PATH_SIZE - 1, &errcode);
301 if (errcode)
302 break;
303
304 /* Create and fill the new so_list element. */
305 dnew = XCNEW (struct darwin_so_list);
306 newobj = &dnew->sl;
307 old_chain = make_cleanup (xfree, dnew);
308
309 newobj->lm_info = &dnew->li;
310
311 strncpy (newobj->so_name, file_path, SO_NAME_MAX_PATH_SIZE - 1);
312 newobj->so_name[SO_NAME_MAX_PATH_SIZE - 1] = '\0';
313 strcpy (newobj->so_original_name, newobj->so_name);
314 xfree (file_path);
315 newobj->lm_info->lm_addr = load_addr;
316
317 if (head == NULL)
318 head = newobj;
319 else
320 tail->next = newobj;
321 tail = newobj;
322
323 discard_cleanups (old_chain);
324 }
325
326 return head;
327 }
328
329 /* Check LOAD_ADDR points to a Mach-O executable header. Return LOAD_ADDR
330 in case of success, 0 in case of failure. */
331
332 static CORE_ADDR
333 darwin_validate_exec_header (CORE_ADDR load_addr)
334 {
335 enum bfd_endian byte_order = gdbarch_byte_order (target_gdbarch ());
336 struct mach_o_header_external hdr;
337 unsigned long hdr_val;
338
339 /* Read Mach-O header from memory. */
340 if (target_read_memory (load_addr, (gdb_byte *) &hdr, sizeof (hdr) - 4))
341 return 0;
342
343 /* Discard wrong magic numbers. Shouldn't happen. */
344 hdr_val = extract_unsigned_integer
345 (hdr.magic, sizeof (hdr.magic), byte_order);
346 if (hdr_val != BFD_MACH_O_MH_MAGIC && hdr_val != BFD_MACH_O_MH_MAGIC_64)
347 return 0;
348
349 /* Check executable. */
350 hdr_val = extract_unsigned_integer
351 (hdr.filetype, sizeof (hdr.filetype), byte_order);
352 if (hdr_val == BFD_MACH_O_MH_EXECUTE)
353 return load_addr;
354
355 return 0;
356 }
357
358 /* Get the load address of the executable using dyld list of images.
359 We assume that the dyld info are correct (which is wrong if the target
360 is stopped at the first instruction). */
361
362 static CORE_ADDR
363 darwin_read_exec_load_addr_from_dyld (struct darwin_info *info)
364 {
365 struct type *ptr_type = builtin_type (target_gdbarch ())->builtin_data_ptr;
366 enum bfd_endian byte_order = gdbarch_byte_order (target_gdbarch ());
367 int ptr_len = TYPE_LENGTH (ptr_type);
368 unsigned int image_info_size = ptr_len * 3;
369 int i;
370
371 /* Read infos for each solib. One of them should be the executable. */
372 for (i = 0; i < info->all_image.count; i++)
373 {
374 CORE_ADDR iinfo = info->all_image.info + i * image_info_size;
375 gdb_byte buf[image_info_size];
376 CORE_ADDR load_addr;
377
378 /* Read image info from inferior. */
379 if (target_read_memory (iinfo, buf, image_info_size))
380 break;
381
382 load_addr = extract_typed_address (buf, ptr_type);
383 if (darwin_validate_exec_header (load_addr) == load_addr)
384 return load_addr;
385 }
386
387 return 0;
388 }
389
390 /* Get the load address of the executable when the PC is at the dyld
391 entry point using parameter passed by the kernel (at SP). */
392
393 static CORE_ADDR
394 darwin_read_exec_load_addr_at_init (struct darwin_info *info)
395 {
396 struct gdbarch *gdbarch = target_gdbarch ();
397 enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
398 int addr_size = gdbarch_addr_bit (gdbarch) / 8;
399 ULONGEST load_ptr_addr;
400 ULONGEST load_addr;
401 gdb_byte buf[8];
402
403 /* Get SP. */
404 if (regcache_cooked_read_unsigned (get_current_regcache (),
405 gdbarch_sp_regnum (gdbarch),
406 &load_ptr_addr) != REG_VALID)
407 return 0;
408
409 /* Read value at SP (image load address). */
410 if (target_read_memory (load_ptr_addr, buf, addr_size))
411 return 0;
412
413 load_addr = extract_unsigned_integer (buf, addr_size, byte_order);
414
415 return darwin_validate_exec_header (load_addr);
416 }
417
418 /* Return 1 if PC lies in the dynamic symbol resolution code of the
419 run time loader. */
420
421 static int
422 darwin_in_dynsym_resolve_code (CORE_ADDR pc)
423 {
424 return 0;
425 }
426
427
428 /* No special symbol handling. */
429
430 static void
431 darwin_special_symbol_handling (void)
432 {
433 }
434
435 /* A wrapper for bfd_mach_o_fat_extract that handles reference
436 counting properly. This will either return NULL, or return a new
437 reference to a BFD. */
438
439 static bfd *
440 gdb_bfd_mach_o_fat_extract (bfd *abfd, bfd_format format,
441 const bfd_arch_info_type *arch)
442 {
443 bfd *result = bfd_mach_o_fat_extract (abfd, format, arch);
444
445 if (result == NULL)
446 return NULL;
447
448 if (result == abfd)
449 gdb_bfd_ref (result);
450 else
451 gdb_bfd_mark_parent (result, abfd);
452
453 return result;
454 }
455
456 /* Extract dyld_all_image_addr when the process was just created, assuming the
457 current PC is at the entry of the dynamic linker. */
458
459 static void
460 darwin_solib_get_all_image_info_addr_at_init (struct darwin_info *info)
461 {
462 char *interp_name;
463 CORE_ADDR load_addr = 0;
464 bfd *dyld_bfd = NULL;
465 struct cleanup *cleanup;
466
467 /* This method doesn't work with an attached process. */
468 if (current_inferior ()->attach_flag)
469 return;
470
471 /* Find the program interpreter. */
472 interp_name = find_program_interpreter ();
473 if (!interp_name)
474 return;
475
476 cleanup = make_cleanup (null_cleanup, NULL);
477
478 /* Create a bfd for the interpreter. */
479 dyld_bfd = gdb_bfd_open (interp_name, gnutarget, -1);
480 if (dyld_bfd)
481 {
482 bfd *sub;
483
484 make_cleanup_bfd_unref (dyld_bfd);
485 sub = gdb_bfd_mach_o_fat_extract
486 (dyld_bfd, bfd_object, gdbarch_bfd_arch_info (target_gdbarch ()));
487 if (sub)
488 {
489 dyld_bfd = sub;
490 make_cleanup_bfd_unref (sub);
491 }
492 else
493 dyld_bfd = NULL;
494 }
495 if (!dyld_bfd)
496 {
497 do_cleanups (cleanup);
498 return;
499 }
500
501 /* We find the dynamic linker's base address by examining
502 the current pc (which should point at the entry point for the
503 dynamic linker) and subtracting the offset of the entry point. */
504 load_addr = (regcache_read_pc (get_current_regcache ())
505 - bfd_get_start_address (dyld_bfd));
506
507 /* Now try to set a breakpoint in the dynamic linker. */
508 info->all_image_addr =
509 lookup_symbol_from_bfd (dyld_bfd, "_dyld_all_image_infos");
510
511 do_cleanups (cleanup);
512
513 if (info->all_image_addr == 0)
514 return;
515
516 info->all_image_addr += load_addr;
517 }
518
519 /* Extract dyld_all_image_addr reading it from
520 TARGET_OBJECT_DARWIN_DYLD_INFO. */
521
522 static void
523 darwin_solib_read_all_image_info_addr (struct darwin_info *info)
524 {
525 gdb_byte buf[8];
526 LONGEST len;
527 enum bfd_endian byte_order = gdbarch_byte_order (target_gdbarch ());
528 struct type *ptr_type = builtin_type (target_gdbarch ())->builtin_data_ptr;
529
530 /* Sanity check. */
531 if (TYPE_LENGTH (ptr_type) > sizeof (buf))
532 return;
533
534 len = target_read (&current_target, TARGET_OBJECT_DARWIN_DYLD_INFO, NULL,
535 buf, 0, TYPE_LENGTH (ptr_type));
536 if (len <= 0)
537 return;
538
539 /* The use of BIG endian is intended, as BUF is a raw stream of bytes. This
540 makes the support of remote protocol easier. */
541 info->all_image_addr = extract_unsigned_integer (buf, len, BFD_ENDIAN_BIG);
542 }
543
544 /* Shared library startup support. See documentation in solib-svr4.c. */
545
546 static void
547 darwin_solib_create_inferior_hook (int from_tty)
548 {
549 struct darwin_info *info = get_darwin_info ();
550 CORE_ADDR load_addr;
551
552 info->all_image_addr = 0;
553
554 darwin_solib_read_all_image_info_addr (info);
555
556 if (info->all_image_addr == 0)
557 darwin_solib_get_all_image_info_addr_at_init (info);
558
559 if (info->all_image_addr == 0)
560 return;
561
562 darwin_load_image_infos (info);
563
564 if (!darwin_dyld_version_ok (info))
565 {
566 warning (_("unhandled dyld version (%d)"), info->all_image.version);
567 return;
568 }
569
570 /* Add the breakpoint which is hit by dyld when the list of solib is
571 modified. */
572 create_solib_event_breakpoint (target_gdbarch (), info->all_image.notifier);
573
574 if (info->all_image.count != 0)
575 {
576 /* Possible relocate the main executable (PIE). */
577 load_addr = darwin_read_exec_load_addr_from_dyld (info);
578 }
579 else
580 {
581 /* Possible issue:
582 Do not break on the notifier if dyld is not initialized (deduced from
583 count == 0). In that case, dyld hasn't relocated itself and the
584 notifier may point to a wrong address. */
585
586 load_addr = darwin_read_exec_load_addr_at_init (info);
587 }
588
589 if (load_addr != 0 && symfile_objfile != NULL)
590 {
591 CORE_ADDR vmaddr;
592
593 /* Find the base address of the executable. */
594 vmaddr = bfd_mach_o_get_base_address (exec_bfd);
595
596 /* Relocate. */
597 if (vmaddr != load_addr)
598 objfile_rebase (symfile_objfile, load_addr - vmaddr);
599 }
600 }
601
602 static void
603 darwin_clear_solib (void)
604 {
605 struct darwin_info *info = get_darwin_info ();
606
607 info->all_image_addr = 0;
608 info->all_image.version = 0;
609 }
610
611 static void
612 darwin_free_so (struct so_list *so)
613 {
614 }
615
616 /* The section table is built from bfd sections using bfd VMAs.
617 Relocate these VMAs according to solib info. */
618
619 static void
620 darwin_relocate_section_addresses (struct so_list *so,
621 struct target_section *sec)
622 {
623 sec->addr += so->lm_info->lm_addr;
624 sec->endaddr += so->lm_info->lm_addr;
625
626 /* Best effort to set addr_high/addr_low. This is used only by
627 'info sharedlibary'. */
628 if (so->addr_high == 0)
629 {
630 so->addr_low = sec->addr;
631 so->addr_high = sec->endaddr;
632 }
633 if (sec->endaddr > so->addr_high)
634 so->addr_high = sec->endaddr;
635 if (sec->addr < so->addr_low)
636 so->addr_low = sec->addr;
637 }
638 \f
639 static struct block_symbol
640 darwin_lookup_lib_symbol (struct objfile *objfile,
641 const char *name,
642 const domain_enum domain)
643 {
644 return (struct block_symbol) {NULL, NULL};
645 }
646
647 static bfd *
648 darwin_bfd_open (char *pathname)
649 {
650 char *found_pathname;
651 int found_file;
652 bfd *abfd;
653 bfd *res;
654
655 /* Search for shared library file. */
656 found_pathname = solib_find (pathname, &found_file);
657 if (found_pathname == NULL)
658 perror_with_name (pathname);
659
660 /* Open bfd for shared library. */
661 abfd = solib_bfd_fopen (found_pathname, found_file);
662
663 res = gdb_bfd_mach_o_fat_extract (abfd, bfd_object,
664 gdbarch_bfd_arch_info (target_gdbarch ()));
665 if (!res)
666 {
667 make_cleanup_bfd_unref (abfd);
668 error (_("`%s': not a shared-library: %s"),
669 bfd_get_filename (abfd), bfd_errmsg (bfd_get_error ()));
670 }
671
672 /* The current filename for fat-binary BFDs is a name generated
673 by BFD, usually a string containing the name of the architecture.
674 Reset its value to the actual filename. */
675 xfree (bfd_get_filename (res));
676 res->filename = xstrdup (pathname);
677
678 gdb_bfd_unref (abfd);
679 return res;
680 }
681
682 struct target_so_ops darwin_so_ops;
683
684 /* -Wmissing-prototypes */
685 extern initialize_file_ftype _initialize_darwin_solib;
686
687 void
688 _initialize_darwin_solib (void)
689 {
690 solib_darwin_pspace_data
691 = register_program_space_data_with_cleanup (NULL,
692 darwin_pspace_data_cleanup);
693
694 darwin_so_ops.relocate_section_addresses = darwin_relocate_section_addresses;
695 darwin_so_ops.free_so = darwin_free_so;
696 darwin_so_ops.clear_solib = darwin_clear_solib;
697 darwin_so_ops.solib_create_inferior_hook = darwin_solib_create_inferior_hook;
698 darwin_so_ops.special_symbol_handling = darwin_special_symbol_handling;
699 darwin_so_ops.current_sos = darwin_current_sos;
700 darwin_so_ops.open_symbol_file_object = open_symbol_file_object;
701 darwin_so_ops.in_dynsym_resolve_code = darwin_in_dynsym_resolve_code;
702 darwin_so_ops.lookup_lib_global_symbol = darwin_lookup_lib_symbol;
703 darwin_so_ops.bfd_open = darwin_bfd_open;
704 }
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