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/tmp/gdb-8.1/gdb/solib-dsbt.c
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1 /* Handle TIC6X (DSBT) shared libraries for GDB, the GNU Debugger.
2  Copyright (C) 2010-2018 Free Software Foundation, Inc.
3 
4  This file is part of GDB.
5 
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
8  the Free Software Foundation; either version 3 of the License, or
9  (at your option) any later version.
10 
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.
15 
16  You should have received a copy of the GNU General Public License
17  along with this program. If not, see <http://www.gnu.org/licenses/>. */
18 
19 
20 #include "defs.h"
21 #include "inferior.h"
22 #include "gdbcore.h"
23 #include "solib.h"
24 #include "solist.h"
25 #include "objfiles.h"
26 #include "symtab.h"
27 #include "language.h"
28 #include "command.h"
29 #include "gdbcmd.h"
30 #include "elf-bfd.h"
31 #include "gdb_bfd.h"
32 
33 #define GOT_MODULE_OFFSET 4
34 
35 /* Flag which indicates whether internal debug messages should be printed. */
36 static unsigned int solib_dsbt_debug = 0;
37 
38 /* TIC6X pointers are four bytes wide. */
39 enum { TIC6X_PTR_SIZE = 4 };
40 
41 /* Representation of loadmap and related structs for the TIC6X DSBT. */
42 
43 /* External versions; the size and alignment of the fields should be
44  the same as those on the target. When loaded, the placement of
45  the bits in each field will be the same as on the target. */
49 
51 {
52  /* Core address to which the segment is mapped. */
54  /* VMA recorded in the program header. */
56  /* Size of this segment in memory. */
58 };
59 
61  /* Protocol version number, must be zero. */
63  /* A pointer to the DSBT table; the DSBT size and the index of this
64  module. */
68  /* Number of segments in this map. */
70  /* The actual memory map. */
71  struct ext_elf32_dsbt_loadseg segs[1 /* nsegs, actually */];
72 };
73 
74 /* Internal versions; the types are GDB types and the data in each
75  of the fields is (or will be) decoded from the external struct
76  for ease of consumption. */
78 {
79  /* Core address to which the segment is mapped. */
81  /* VMA recorded in the program header. */
83  /* Size of this segment in memory. */
84  long p_memsz;
85 };
86 
88 {
89  /* Protocol version number, must be zero. */
90  int version;
92  /* A pointer to the DSBT table; the DSBT size and the index of this
93  module. */
95  /* Number of segments in this map. */
96  int nsegs;
97  /* The actual memory map. */
98  struct int_elf32_dsbt_loadseg segs[1 /* nsegs, actually */];
99 };
100 
101 /* External link_map and elf32_dsbt_loadaddr struct definitions. */
102 
103 typedef gdb_byte ext_ptr[4];
104 
106 {
107  ext_ptr map; /* struct elf32_dsbt_loadmap *map; */
108 };
109 
111 {
113 
114  /* Absolute file name object was found in. */
115  ext_ptr l_name; /* char *l_name; */
116 
117  /* Dynamic section of the shared object. */
118  ext_ptr l_ld; /* ElfW(Dyn) *l_ld; */
119 
120  /* Chain of loaded objects. */
121  ext_ptr l_next, l_prev; /* struct link_map *l_next, *l_prev; */
122 };
123 
124 /* Link map info to include in an allocated so_list entry */
125 
126 struct lm_info_dsbt : public lm_info_base
127 {
129  {
130  xfree (this->map);
131  }
132 
133  /* The loadmap, digested into an easier to use form. */
135 };
136 
137 /* Per pspace dsbt specific data. */
138 
139 struct dsbt_info
140 {
141  /* The load map, got value, etc. are not available from the chain
142  of loaded shared objects. ``main_executable_lm_info'' provides
143  a way to get at this information so that it doesn't need to be
144  frequently recomputed. Initialized by dsbt_relocate_main_executable. */
146 
147  /* Load maps for the main executable and the interpreter. These are obtained
148  from ptrace. They are the starting point for getting into the program,
149  and are required to find the solib list with the individual load maps for
150  each module. */
153 
154  /* Cached value for lm_base, below. */
156 
157  /* Link map address for main module. */
159 
164 };
165 
166 /* Per-program-space data key. */
167 static const struct program_space_data *solib_dsbt_pspace_data;
168 
169 static void
170 dsbt_pspace_data_cleanup (struct program_space *pspace, void *arg)
171 {
172  xfree (arg);
173 }
174 
175 /* Get the current dsbt data. If none is found yet, add it now. This
176  function always returns a valid object. */
177 
178 static struct dsbt_info *
180 {
181  struct dsbt_info *info;
182 
183  info = (struct dsbt_info *) program_space_data (current_program_space,
185  if (info != NULL)
186  return info;
187 
188  info = XCNEW (struct dsbt_info);
189  set_program_space_data (current_program_space, solib_dsbt_pspace_data, info);
190 
191  info->lm_base_cache = 0;
192  info->main_lm_addr = 0;
193 
194  return info;
195 }
196 
197 
198 static void
200 {
201  int i;
202 
203  if (map == NULL)
204  printf_filtered ("(null)\n");
205  else if (map->version != 0)
206  printf_filtered (_("Unsupported map version: %d\n"), map->version);
207  else
208  {
209  printf_filtered ("version %d\n", map->version);
210 
211  for (i = 0; i < map->nsegs; i++)
212  printf_filtered ("%s:%s -> %s:%s\n",
214  map->segs[i].p_vaddr),
216  map->segs[i].p_vaddr
217  + map->segs[i].p_memsz),
220  + map->segs[i].p_memsz));
221  }
222 }
223 
224 /* Decode int_elf32_dsbt_loadmap from BUF. */
225 
226 static struct int_elf32_dsbt_loadmap *
228 {
229  enum bfd_endian byte_order = gdbarch_byte_order (target_gdbarch ());
230  struct ext_elf32_dsbt_loadmap *ext_ldmbuf;
231  struct int_elf32_dsbt_loadmap *int_ldmbuf;
232 
233  int version, seg, nsegs;
234  int int_ldmbuf_size;
235 
236  ext_ldmbuf = (struct ext_elf32_dsbt_loadmap *) buf;
237 
238  /* Extract the version. */
240  sizeof ext_ldmbuf->version,
241  byte_order);
242  if (version != 0)
243  {
244  /* We only handle version 0. */
245  return NULL;
246  }
247 
248  /* Extract the number of segments. */
249  nsegs = extract_unsigned_integer (ext_ldmbuf->nsegs,
250  sizeof ext_ldmbuf->nsegs,
251  byte_order);
252 
253  if (nsegs <= 0)
254  return NULL;
255 
256  /* Allocate space into which to put information extract from the
257  external loadsegs. I.e, allocate the internal loadsegs. */
258  int_ldmbuf_size = (sizeof (struct int_elf32_dsbt_loadmap)
259  + (nsegs - 1) * sizeof (struct int_elf32_dsbt_loadseg));
260  int_ldmbuf = (struct int_elf32_dsbt_loadmap *) xmalloc (int_ldmbuf_size);
261 
262  /* Place extracted information in internal structs. */
263  int_ldmbuf->version = version;
264  int_ldmbuf->nsegs = nsegs;
265  for (seg = 0; seg < nsegs; seg++)
266  {
267  int_ldmbuf->segs[seg].addr
268  = extract_unsigned_integer (ext_ldmbuf->segs[seg].addr,
269  sizeof (ext_ldmbuf->segs[seg].addr),
270  byte_order);
271  int_ldmbuf->segs[seg].p_vaddr
272  = extract_unsigned_integer (ext_ldmbuf->segs[seg].p_vaddr,
273  sizeof (ext_ldmbuf->segs[seg].p_vaddr),
274  byte_order);
275  int_ldmbuf->segs[seg].p_memsz
276  = extract_unsigned_integer (ext_ldmbuf->segs[seg].p_memsz,
277  sizeof (ext_ldmbuf->segs[seg].p_memsz),
278  byte_order);
279  }
280 
281  xfree (ext_ldmbuf);
282  return int_ldmbuf;
283 }
284 
285 
286 static struct dsbt_info *get_dsbt_info (void);
287 
288 /* Interrogate the Linux kernel to find out where the program was loaded.
289  There are two load maps; one for the executable and one for the
290  interpreter (only in the case of a dynamically linked executable). */
291 
292 static void
294 {
295  gdb_byte *buf;
296  struct dsbt_info *info = get_dsbt_info ();
297 
299  "exec", &buf))
300  {
301  info->exec_loadmap = NULL;
302  error (_("Error reading DSBT exec loadmap"));
303  }
304  info->exec_loadmap = decode_loadmap (buf);
305  if (solib_dsbt_debug)
307 
309  "interp", &buf))
310  {
311  info->interp_loadmap = NULL;
312  error (_("Error reading DSBT interp loadmap"));
313  }
314  info->interp_loadmap = decode_loadmap (buf);
315  if (solib_dsbt_debug)
317 }
318 
319 /* Given address LDMADDR, fetch and decode the loadmap at that address.
320  Return NULL if there is a problem reading the target memory or if
321  there doesn't appear to be a loadmap at the given address. The
322  allocated space (representing the loadmap) returned by this
323  function may be freed via a single call to xfree. */
324 
325 static struct int_elf32_dsbt_loadmap *
327 {
328  enum bfd_endian byte_order = gdbarch_byte_order (target_gdbarch ());
329  struct ext_elf32_dsbt_loadmap ext_ldmbuf_partial;
330  struct ext_elf32_dsbt_loadmap *ext_ldmbuf;
331  struct int_elf32_dsbt_loadmap *int_ldmbuf;
332  int ext_ldmbuf_size, int_ldmbuf_size;
333  int version, seg, nsegs;
334 
335  /* Fetch initial portion of the loadmap. */
336  if (target_read_memory (ldmaddr, (gdb_byte *) &ext_ldmbuf_partial,
337  sizeof ext_ldmbuf_partial))
338  {
339  /* Problem reading the target's memory. */
340  return NULL;
341  }
342 
343  /* Extract the version. */
344  version = extract_unsigned_integer (ext_ldmbuf_partial.version,
345  sizeof ext_ldmbuf_partial.version,
346  byte_order);
347  if (version != 0)
348  {
349  /* We only handle version 0. */
350  return NULL;
351  }
352 
353  /* Extract the number of segments. */
354  nsegs = extract_unsigned_integer (ext_ldmbuf_partial.nsegs,
355  sizeof ext_ldmbuf_partial.nsegs,
356  byte_order);
357 
358  if (nsegs <= 0)
359  return NULL;
360 
361  /* Allocate space for the complete (external) loadmap. */
362  ext_ldmbuf_size = sizeof (struct ext_elf32_dsbt_loadmap)
363  + (nsegs - 1) * sizeof (struct ext_elf32_dsbt_loadseg);
364  ext_ldmbuf = (struct ext_elf32_dsbt_loadmap *) xmalloc (ext_ldmbuf_size);
365 
366  /* Copy over the portion of the loadmap that's already been read. */
367  memcpy (ext_ldmbuf, &ext_ldmbuf_partial, sizeof ext_ldmbuf_partial);
368 
369  /* Read the rest of the loadmap from the target. */
370  if (target_read_memory (ldmaddr + sizeof ext_ldmbuf_partial,
371  (gdb_byte *) ext_ldmbuf + sizeof ext_ldmbuf_partial,
372  ext_ldmbuf_size - sizeof ext_ldmbuf_partial))
373  {
374  /* Couldn't read rest of the loadmap. */
375  xfree (ext_ldmbuf);
376  return NULL;
377  }
378 
379  /* Allocate space into which to put information extract from the
380  external loadsegs. I.e, allocate the internal loadsegs. */
381  int_ldmbuf_size = sizeof (struct int_elf32_dsbt_loadmap)
382  + (nsegs - 1) * sizeof (struct int_elf32_dsbt_loadseg);
383  int_ldmbuf = (struct int_elf32_dsbt_loadmap *) xmalloc (int_ldmbuf_size);
384 
385  /* Place extracted information in internal structs. */
386  int_ldmbuf->version = version;
387  int_ldmbuf->nsegs = nsegs;
388  for (seg = 0; seg < nsegs; seg++)
389  {
390  int_ldmbuf->segs[seg].addr
391  = extract_unsigned_integer (ext_ldmbuf->segs[seg].addr,
392  sizeof (ext_ldmbuf->segs[seg].addr),
393  byte_order);
394  int_ldmbuf->segs[seg].p_vaddr
395  = extract_unsigned_integer (ext_ldmbuf->segs[seg].p_vaddr,
396  sizeof (ext_ldmbuf->segs[seg].p_vaddr),
397  byte_order);
398  int_ldmbuf->segs[seg].p_memsz
399  = extract_unsigned_integer (ext_ldmbuf->segs[seg].p_memsz,
400  sizeof (ext_ldmbuf->segs[seg].p_memsz),
401  byte_order);
402  }
403 
404  xfree (ext_ldmbuf);
405  return int_ldmbuf;
406 }
407 
408 static void dsbt_relocate_main_executable (void);
409 static int enable_break (void);
410 
411 /* Scan for DYNTAG in .dynamic section of ABFD. If DYNTAG is found 1 is
412  returned and the corresponding PTR is set. */
413 
414 static int
415 scan_dyntag (int dyntag, bfd *abfd, CORE_ADDR *ptr)
416 {
417  int arch_size, step, sect_size;
418  long dyn_tag;
419  CORE_ADDR dyn_ptr, dyn_addr;
420  gdb_byte *bufend, *bufstart, *buf;
421  Elf32_External_Dyn *x_dynp_32;
422  Elf64_External_Dyn *x_dynp_64;
423  struct bfd_section *sect;
425 
426  if (abfd == NULL)
427  return 0;
428 
429  if (bfd_get_flavour (abfd) != bfd_target_elf_flavour)
430  return 0;
431 
432  arch_size = bfd_get_arch_size (abfd);
433  if (arch_size == -1)
434  return 0;
435 
436  /* Find the start address of the .dynamic section. */
437  sect = bfd_get_section_by_name (abfd, ".dynamic");
438  if (sect == NULL)
439  return 0;
440 
441  for (target_section = current_target_sections->sections;
443  target_section++)
444  if (sect == target_section->the_bfd_section)
445  break;
447  dyn_addr = target_section->addr;
448  else
449  {
450  /* ABFD may come from OBJFILE acting only as a symbol file without being
451  loaded into the target (see add_symbol_file_command). This case is
452  such fallback to the file VMA address without the possibility of
453  having the section relocated to its actual in-memory address. */
454 
455  dyn_addr = bfd_section_vma (abfd, sect);
456  }
457 
458  /* Read in .dynamic from the BFD. We will get the actual value
459  from memory later. */
460  sect_size = bfd_section_size (abfd, sect);
461  buf = bufstart = (gdb_byte *) alloca (sect_size);
462  if (!bfd_get_section_contents (abfd, sect,
463  buf, 0, sect_size))
464  return 0;
465 
466  /* Iterate over BUF and scan for DYNTAG. If found, set PTR and return. */
467  step = (arch_size == 32) ? sizeof (Elf32_External_Dyn)
468  : sizeof (Elf64_External_Dyn);
469  for (bufend = buf + sect_size;
470  buf < bufend;
471  buf += step)
472  {
473  if (arch_size == 32)
474  {
475  x_dynp_32 = (Elf32_External_Dyn *) buf;
476  dyn_tag = bfd_h_get_32 (abfd, (bfd_byte *) x_dynp_32->d_tag);
477  dyn_ptr = bfd_h_get_32 (abfd, (bfd_byte *) x_dynp_32->d_un.d_ptr);
478  }
479  else
480  {
481  x_dynp_64 = (Elf64_External_Dyn *) buf;
482  dyn_tag = bfd_h_get_64 (abfd, (bfd_byte *) x_dynp_64->d_tag);
483  dyn_ptr = bfd_h_get_64 (abfd, (bfd_byte *) x_dynp_64->d_un.d_ptr);
484  }
485  if (dyn_tag == DT_NULL)
486  return 0;
487  if (dyn_tag == dyntag)
488  {
489  /* If requested, try to read the runtime value of this .dynamic
490  entry. */
491  if (ptr)
492  {
493  struct type *ptr_type;
494  gdb_byte ptr_buf[8];
495  CORE_ADDR ptr_addr;
496 
498  ptr_addr = dyn_addr + (buf - bufstart) + arch_size / 8;
499  if (target_read_memory (ptr_addr, ptr_buf, arch_size / 8) == 0)
500  dyn_ptr = extract_typed_address (ptr_buf, ptr_type);
501  *ptr = dyn_ptr;
502  }
503  return 1;
504  }
505  }
506 
507  return 0;
508 }
509 
510 /* See solist.h. */
511 
512 static int
514 {
515  /* Unimplemented. */
516  return 0;
517 }
518 
519 /* Given a loadmap and an address, return the displacement needed
520  to relocate the address. */
521 
522 static CORE_ADDR
524  CORE_ADDR addr)
525 {
526  int seg;
527 
528  for (seg = 0; seg < map->nsegs; seg++)
529  if (map->segs[seg].p_vaddr <= addr
530  && addr < map->segs[seg].p_vaddr + map->segs[seg].p_memsz)
531  return map->segs[seg].addr - map->segs[seg].p_vaddr;
532 
533  return 0;
534 }
535 
536 /* Return the address from which the link map chain may be found. On
537  DSBT, a pointer to the start of the link map will be located at the
538  word found at base of GOT + GOT_MODULE_OFFSET.
539 
540  The base of GOT may be found in a number of ways. Assuming that the
541  main executable has already been relocated,
542  1 The easiest way to find this value is to look up the address of
543  _GLOBAL_OFFSET_TABLE_.
544  2 The other way is to look for tag DT_PLTGOT, which contains the virtual
545  address of Global Offset Table. .*/
546 
547 static CORE_ADDR
548 lm_base (void)
549 {
550  enum bfd_endian byte_order = gdbarch_byte_order (target_gdbarch ());
551  struct bound_minimal_symbol got_sym;
552  CORE_ADDR addr;
554  struct dsbt_info *info = get_dsbt_info ();
555 
556  /* One of our assumptions is that the main executable has been relocated.
557  Bail out if this has not happened. (Note that post_create_inferior
558  in infcmd.c will call solib_add prior to solib_create_inferior_hook.
559  If we allow this to happen, lm_base_cache will be initialized with
560  a bogus value. */
561  if (info->main_executable_lm_info == 0)
562  return 0;
563 
564  /* If we already have a cached value, return it. */
565  if (info->lm_base_cache)
566  return info->lm_base_cache;
567 
568  got_sym = lookup_minimal_symbol ("_GLOBAL_OFFSET_TABLE_", NULL,
570 
571  if (got_sym.minsym != 0)
572  {
573  addr = BMSYMBOL_VALUE_ADDRESS (got_sym);
574  if (solib_dsbt_debug)
576  "lm_base: get addr %x by _GLOBAL_OFFSET_TABLE_.\n",
577  (unsigned int) addr);
578  }
579  else if (scan_dyntag (DT_PLTGOT, exec_bfd, &addr))
580  {
581  struct int_elf32_dsbt_loadmap *ldm;
582 
584  ldm = info->exec_loadmap;
585  addr += displacement_from_map (ldm, addr);
586  if (solib_dsbt_debug)
588  "lm_base: get addr %x by DT_PLTGOT.\n",
589  (unsigned int) addr);
590  }
591  else
592  {
593  if (solib_dsbt_debug)
595  "lm_base: _GLOBAL_OFFSET_TABLE_ not found.\n");
596  return 0;
597  }
598  addr += GOT_MODULE_OFFSET;
599 
600  if (solib_dsbt_debug)
602  "lm_base: _GLOBAL_OFFSET_TABLE_ + %d = %s\n",
604 
605  if (target_read_memory (addr, buf, sizeof buf) != 0)
606  return 0;
607  info->lm_base_cache = extract_unsigned_integer (buf, sizeof buf, byte_order);
608 
609  if (solib_dsbt_debug)
611  "lm_base: lm_base_cache = %s\n",
612  hex_string_custom (info->lm_base_cache, 8));
613 
614  return info->lm_base_cache;
615 }
616 
617 
618 /* Build a list of `struct so_list' objects describing the shared
619  objects currently loaded in the inferior. This list does not
620  include an entry for the main executable file.
621 
622  Note that we only gather information directly available from the
623  inferior --- we don't examine any of the shared library files
624  themselves. The declaration of `struct so_list' says which fields
625  we provide values for. */
626 
627 static struct so_list *
629 {
630  enum bfd_endian byte_order = gdbarch_byte_order (target_gdbarch ());
632  struct so_list *sos_head = NULL;
633  struct so_list **sos_next_ptr = &sos_head;
634  struct dsbt_info *info = get_dsbt_info ();
635 
636  /* Make sure that the main executable has been relocated. This is
637  required in order to find the address of the global offset table,
638  which in turn is used to find the link map info. (See lm_base
639  for details.)
640 
641  Note that the relocation of the main executable is also performed
642  by solib_create_inferior_hook, however, in the case of core
643  files, this hook is called too late in order to be of benefit to
644  solib_add. solib_add eventually calls this function,
645  dsbt_current_sos, and also precedes the call to
646  solib_create_inferior_hook. (See post_create_inferior in
647  infcmd.c.) */
648  if (info->main_executable_lm_info == 0 && core_bfd != NULL)
650 
651  /* Locate the address of the first link map struct. */
652  lm_addr = lm_base ();
653 
654  /* We have at least one link map entry. Fetch the the lot of them,
655  building the solist chain. */
656  while (lm_addr)
657  {
658  struct ext_link_map lm_buf;
659  ext_Elf32_Word indexword;
660  CORE_ADDR map_addr;
661  int dsbt_index;
662  int ret;
663 
664  if (solib_dsbt_debug)
666  "current_sos: reading link_map entry at %s\n",
668 
669  ret = target_read_memory (lm_addr, (gdb_byte *) &lm_buf, sizeof (lm_buf));
670  if (ret)
671  {
672  warning (_("dsbt_current_sos: Unable to read link map entry."
673  " Shared object chain may be incomplete."));
674  break;
675  }
676 
677  /* Fetch the load map address. */
678  map_addr = extract_unsigned_integer (lm_buf.l_addr.map,
679  sizeof lm_buf.l_addr.map,
680  byte_order);
681 
682  ret = target_read_memory (map_addr + 12, (gdb_byte *) &indexword,
683  sizeof indexword);
684  if (ret)
685  {
686  warning (_("dsbt_current_sos: Unable to read dsbt index."
687  " Shared object chain may be incomplete."));
688  break;
689  }
690  dsbt_index = extract_unsigned_integer (indexword, sizeof indexword,
691  byte_order);
692 
693  /* If the DSBT index is zero, then we're looking at the entry
694  for the main executable. By convention, we don't include
695  this in the list of shared objects. */
696  if (dsbt_index != 0)
697  {
698  int errcode;
699  char *name_buf;
700  struct int_elf32_dsbt_loadmap *loadmap;
701  struct so_list *sop;
702  CORE_ADDR addr;
703 
704  loadmap = fetch_loadmap (map_addr);
705  if (loadmap == NULL)
706  {
707  warning (_("dsbt_current_sos: Unable to fetch load map."
708  " Shared object chain may be incomplete."));
709  break;
710  }
711 
712  sop = XCNEW (struct so_list);
713  lm_info_dsbt *li = new lm_info_dsbt;
714  sop->lm_info = li;
715  li->map = loadmap;
716  /* Fetch the name. */
717  addr = extract_unsigned_integer (lm_buf.l_name,
718  sizeof (lm_buf.l_name),
719  byte_order);
720  target_read_string (addr, &name_buf, SO_NAME_MAX_PATH_SIZE - 1,
721  &errcode);
722 
723  if (errcode != 0)
724  warning (_("Can't read pathname for link map entry: %s."),
725  safe_strerror (errcode));
726  else
727  {
728  if (solib_dsbt_debug)
729  fprintf_unfiltered (gdb_stdlog, "current_sos: name = %s\n",
730  name_buf);
731 
732  strncpy (sop->so_name, name_buf, SO_NAME_MAX_PATH_SIZE - 1);
733  sop->so_name[SO_NAME_MAX_PATH_SIZE - 1] = '\0';
734  xfree (name_buf);
735  strcpy (sop->so_original_name, sop->so_name);
736  }
737 
738  *sos_next_ptr = sop;
739  sos_next_ptr = &sop->next;
740  }
741  else
742  {
743  info->main_lm_addr = lm_addr;
744  }
745 
746  lm_addr = extract_unsigned_integer (lm_buf.l_next,
747  sizeof (lm_buf.l_next), byte_order);
748  }
749 
750  return sos_head;
751 }
752 
753 /* Return 1 if PC lies in the dynamic symbol resolution code of the
754  run time loader. */
755 
756 static int
758 {
759  struct dsbt_info *info = get_dsbt_info ();
760 
761  return ((pc >= info->interp_text_sect_low && pc < info->interp_text_sect_high)
762  || (pc >= info->interp_plt_sect_low && pc < info->interp_plt_sect_high)
763  || in_plt_section (pc));
764 }
765 
766 /* Print a warning about being unable to set the dynamic linker
767  breakpoint. */
768 
769 static void
771 {
772  warning (_("Unable to find dynamic linker breakpoint function.\n"
773  "GDB will be unable to debug shared library initializers\n"
774  "and track explicitly loaded dynamic code."));
775 }
776 
777 /* Helper function for gdb_bfd_lookup_symbol. */
778 
779 static int
780 cmp_name (const asymbol *sym, const void *data)
781 {
782  return (strcmp (sym->name, (const char *) data) == 0);
783 }
784 
785 /* The dynamic linkers has, as part of its debugger interface, support
786  for arranging for the inferior to hit a breakpoint after mapping in
787  the shared libraries. This function enables that breakpoint.
788 
789  On the TIC6X, using the shared library (DSBT), GDB can try to place
790  a breakpoint on '_dl_debug_state' to monitor the shared library
791  event. */
792 
793 static int
795 {
796  asection *interp_sect;
797  struct dsbt_info *info;
798 
799  if (exec_bfd == NULL)
800  return 0;
801 
803  return 0;
804 
805  info = get_dsbt_info ();
806 
807  info->interp_text_sect_low = 0;
808  info->interp_text_sect_high = 0;
809  info->interp_plt_sect_low = 0;
810  info->interp_plt_sect_high = 0;
811 
812  /* Find the .interp section; if not found, warn the user and drop
813  into the old breakpoint at symbol code. */
814  interp_sect = bfd_get_section_by_name (exec_bfd, ".interp");
815  if (interp_sect)
816  {
817  unsigned int interp_sect_size;
818  char *buf;
819  CORE_ADDR addr;
820  struct int_elf32_dsbt_loadmap *ldm;
821  int ret;
822 
823  /* Read the contents of the .interp section into a local buffer;
824  the contents specify the dynamic linker this program uses. */
825  interp_sect_size = bfd_section_size (exec_bfd, interp_sect);
826  buf = (char *) alloca (interp_sect_size);
827  bfd_get_section_contents (exec_bfd, interp_sect,
828  buf, 0, interp_sect_size);
829 
830  /* Now we need to figure out where the dynamic linker was
831  loaded so that we can load its symbols and place a breakpoint
832  in the dynamic linker itself. */
833 
834  gdb_bfd_ref_ptr tmp_bfd;
835  TRY
836  {
837  tmp_bfd = solib_bfd_open (buf);
838  }
839  CATCH (ex, RETURN_MASK_ALL)
840  {
841  }
842  END_CATCH
843 
844  if (tmp_bfd == NULL)
845  {
847  return 0;
848  }
849 
851  ldm = info->interp_loadmap;
852 
853  /* Record the relocated start and end address of the dynamic linker
854  text and plt section for dsbt_in_dynsym_resolve_code. */
855  interp_sect = bfd_get_section_by_name (tmp_bfd.get (), ".text");
856  if (interp_sect)
857  {
859  = bfd_section_vma (tmp_bfd.get (), interp_sect);
863  = info->interp_text_sect_low
864  + bfd_section_size (tmp_bfd.get (), interp_sect);
865  }
866  interp_sect = bfd_get_section_by_name (tmp_bfd.get (), ".plt");
867  if (interp_sect)
868  {
869  info->interp_plt_sect_low =
870  bfd_section_vma (tmp_bfd.get (), interp_sect);
871  info->interp_plt_sect_low
873  info->interp_plt_sect_high =
874  info->interp_plt_sect_low + bfd_section_size (tmp_bfd.get (),
875  interp_sect);
876  }
877 
878  addr = gdb_bfd_lookup_symbol (tmp_bfd.get (), cmp_name,
879  "_dl_debug_state");
880  if (addr != 0)
881  {
882  if (solib_dsbt_debug)
884  "enable_break: _dl_debug_state (prior to relocation) = %s\n",
885  hex_string_custom (addr, 8));
886  addr += displacement_from_map (ldm, addr);
887 
888  if (solib_dsbt_debug)
890  "enable_break: _dl_debug_state (after relocation) = %s\n",
891  hex_string_custom (addr, 8));
892 
893  /* Now (finally!) create the solib breakpoint. */
895 
896  ret = 1;
897  }
898  else
899  {
900  if (solib_dsbt_debug)
902  "enable_break: _dl_debug_state is not found\n");
903  ret = 0;
904  }
905 
906  /* We're done with the loadmap. */
907  xfree (ldm);
908 
909  return ret;
910  }
911 
912  /* Tell the user we couldn't set a dynamic linker breakpoint. */
914 
915  /* Failure return. */
916  return 0;
917 }
918 
919 static void
921 {
922  struct int_elf32_dsbt_loadmap *ldm;
923  struct cleanup *old_chain;
924  struct section_offsets *new_offsets;
925  int changed;
926  struct obj_section *osect;
927  struct dsbt_info *info = get_dsbt_info ();
928 
930  ldm = info->exec_loadmap;
931 
932  delete info->main_executable_lm_info;
934  info->main_executable_lm_info->map = ldm;
935 
936  new_offsets = XCNEWVEC (struct section_offsets,
937  symfile_objfile->num_sections);
938  old_chain = make_cleanup (xfree, new_offsets);
939  changed = 0;
940 
942  {
943  CORE_ADDR orig_addr, addr, offset;
944  int osect_idx;
945  int seg;
946 
947  osect_idx = osect - symfile_objfile->sections;
948 
949  /* Current address of section. */
950  addr = obj_section_addr (osect);
951  /* Offset from where this section started. */
952  offset = ANOFFSET (symfile_objfile->section_offsets, osect_idx);
953  /* Original address prior to any past relocations. */
954  orig_addr = addr - offset;
955 
956  for (seg = 0; seg < ldm->nsegs; seg++)
957  {
958  if (ldm->segs[seg].p_vaddr <= orig_addr
959  && orig_addr < ldm->segs[seg].p_vaddr + ldm->segs[seg].p_memsz)
960  {
961  new_offsets->offsets[osect_idx]
962  = ldm->segs[seg].addr - ldm->segs[seg].p_vaddr;
963 
964  if (new_offsets->offsets[osect_idx] != offset)
965  changed = 1;
966  break;
967  }
968  }
969  }
970 
971  if (changed)
972  objfile_relocate (symfile_objfile, new_offsets);
973 
974  do_cleanups (old_chain);
975 
976  /* Now that symfile_objfile has been relocated, we can compute the
977  GOT value and stash it away. */
978 }
979 
980 /* When gdb starts up the inferior, it nurses it along (through the
981  shell) until it is ready to execute it's first instruction. At this
982  point, this function gets called via solib_create_inferior_hook.
983 
984  For the DSBT shared library, the main executable needs to be relocated.
985  The shared library breakpoints also need to be enabled. */
986 
987 static void
989 {
990  /* Relocate main executable. */
992 
993  /* Enable shared library breakpoints. */
994  if (!enable_break ())
995  {
996  warning (_("shared library handler failed to enable breakpoint"));
997  return;
998  }
999 }
1000 
1001 static void
1003 {
1004  struct dsbt_info *info = get_dsbt_info ();
1005 
1006  info->lm_base_cache = 0;
1007  info->main_lm_addr = 0;
1008 
1009  delete info->main_executable_lm_info;
1010  info->main_executable_lm_info = NULL;
1011 }
1012 
1013 static void
1014 dsbt_free_so (struct so_list *so)
1015 {
1016  lm_info_dsbt *li = (lm_info_dsbt *) so->lm_info;
1017 
1018  delete li;
1019 }
1020 
1021 static void
1023  struct target_section *sec)
1024 {
1025  int seg;
1026  lm_info_dsbt *li = (lm_info_dsbt *) so->lm_info;
1027  int_elf32_dsbt_loadmap *map = li->map;
1028 
1029  for (seg = 0; seg < map->nsegs; seg++)
1030  {
1031  if (map->segs[seg].p_vaddr <= sec->addr
1032  && sec->addr < map->segs[seg].p_vaddr + map->segs[seg].p_memsz)
1033  {
1034  CORE_ADDR displ = map->segs[seg].addr - map->segs[seg].p_vaddr;
1035 
1036  sec->addr += displ;
1037  sec->endaddr += displ;
1038  break;
1039  }
1040  }
1041 }
1042 static void
1043 show_dsbt_debug (struct ui_file *file, int from_tty,
1044  struct cmd_list_element *c, const char *value)
1045 {
1046  fprintf_filtered (file, _("solib-dsbt debugging is %s.\n"), value);
1047 }
1048 
1050 
1051 void
1053 {
1055  = register_program_space_data_with_cleanup (NULL, dsbt_pspace_data_cleanup);
1056 
1065 
1066  /* Debug this file's internals. */
1068  &solib_dsbt_debug, _("\
1069 Set internal debugging of shared library code for DSBT ELF."), _("\
1070 Show internal debugging of shared library code for DSBT ELF."), _("\
1071 When non-zero, DSBT solib specific internal debugging is enabled."),
1072  NULL,
1075 }
struct gdbarch * target_gdbarch(void)
Definition: gdbarch.c:5467
static void dsbt_print_loadmap(struct int_elf32_dsbt_loadmap *map)
Definition: solib-dsbt.c:199
CORE_ADDR extract_typed_address(const gdb_byte *buf, struct type *type)
Definition: findvar.c:154
CORE_ADDR offsets[1]
Definition: symtab.h:1273
bfd_vma CORE_ADDR
Definition: common-types.h:41
CORE_ADDR interp_plt_sect_high
Definition: solib-dsbt.c:163
ext_Elf32_Word version
Definition: solib-dsbt.c:62
static void dsbt_solib_create_inferior_hook(int from_tty)
Definition: solib-dsbt.c:988
void xfree(void *)
struct so_list * next
Definition: solist.h:44
struct breakpoint * create_solib_event_breakpoint(struct gdbarch *gdbarch, CORE_ADDR address)
Definition: breakpoint.c:7560
#define BMSYMBOL_VALUE_ADDRESS(symbol)
Definition: symtab.h:691
void warning(const char *fmt,...)
Definition: errors.c:26
LONGEST target_read_alloc(struct target_ops *ops, enum target_object object, const char *annex, gdb_byte **buf_p)
Definition: target.c:1918
const struct builtin_type * builtin_type(struct gdbarch *gdbarch)
Definition: gdbtypes.c:5217
void(* relocate_section_addresses)(struct so_list *so, struct target_section *)
Definition: solist.h:95
static int cmp_name(const asymbol *sym, const void *data)
Definition: solib-dsbt.c:780
void(* solib_create_inferior_hook)(int from_tty)
Definition: solist.h:112
struct so_list *(* current_sos)(void)
Definition: solist.h:121
gdb_byte ext_Elf32_Addr[4]
Definition: solib-dsbt.c:47
void objfile_relocate(struct objfile *objfile, const struct section_offsets *new_offsets)
Definition: objfiles.c:896
static struct dsbt_info * get_dsbt_info(void)
Definition: solib-dsbt.c:179
static int enable_break(void)
Definition: solib-dsbt.c:794
Definition: solist.h:38
int_elf32_dsbt_loadmap * map
Definition: solib-dsbt.c:134
#define ALL_OBJFILE_OSECTIONS(objfile, osect)
Definition: objfiles.h:630
#define SO_NAME_MAX_PATH_SIZE
Definition: solist.h:22
CORE_ADDR lm_base_cache
Definition: solib-dsbt.c:155
static CORE_ADDR lm_addr(struct so_list *so)
Definition: nto-tdep.c:243
#define _(String)
Definition: gdb_locale.h:35
#define END_CATCH
CORE_ADDR dsbt_table_ptr
Definition: solib-dsbt.c:91
void printf_filtered(const char *format,...)
Definition: utils.c:2045
gdb_bfd_ref_ptr(* bfd_open)(char *pathname)
Definition: solist.h:132
CORE_ADDR interp_plt_sect_low
Definition: solib-dsbt.c:162
ext_Elf32_Word p_memsz
Definition: solib-dsbt.c:57
static int dsbt_in_dynsym_resolve_code(CORE_ADDR pc)
Definition: solib-dsbt.c:757
void add_setshow_zuinteger_cmd(const char *name, enum command_class theclass, unsigned int *var, const char *set_doc, const char *show_doc, const char *help_doc, cmd_const_sfunc_ftype *set_func, show_value_ftype *show_func, struct cmd_list_element **set_list, struct cmd_list_element **show_list)
Definition: cli-decode.c:792
ext_Elf32_Word nsegs
Definition: solib-dsbt.c:69
void(* clear_solib)(void)
Definition: solist.h:109
struct int_elf32_dsbt_loadseg segs[1]
Definition: solib-dsbt.c:98
#define XCNEWVEC(T, N)
Definition: poison.h:157
#define TRY
static struct int_elf32_dsbt_loadmap * decode_loadmap(gdb_byte *buf)
Definition: solib-dsbt.c:227
ext_Elf32_Word dsbt_index
Definition: solib-dsbt.c:67
struct lm_info_dsbt * main_executable_lm_info
Definition: solib-dsbt.c:145
int(* in_dynsym_resolve_code)(CORE_ADDR pc)
Definition: solist.h:129
gdb_byte ext_Elf32_Word[4]
Definition: solib-dsbt.c:48
#define CATCH(EXCEPTION, MASK)
CORE_ADDR interp_text_sect_high
Definition: solib-dsbt.c:161
struct target_ops current_target
static void dsbt_relocate_section_addresses(struct so_list *so, struct target_section *sec)
Definition: solib-dsbt.c:1022
#define exec_bfd
Definition: exec.h:33
void fprintf_filtered(struct ui_file *stream, const char *format,...)
Definition: utils.c:2008
static ULONGEST extract_unsigned_integer(const gdb_byte *addr, int len, enum bfd_endian byte_order)
Definition: defs.h:577
#define current_target_sections
Definition: progspace.h:235
static void show_dsbt_debug(struct ui_file *file, int from_tty, struct cmd_list_element *c, const char *value)
Definition: solib-dsbt.c:1043
#define GOT_MODULE_OFFSET
Definition: solib-dsbt.c:33
void fprintf_unfiltered(struct ui_file *stream, const char *format,...)
Definition: utils.c:2018
struct int_elf32_dsbt_loadmap * interp_loadmap
Definition: solib-dsbt.c:152
char so_original_name[SO_NAME_MAX_PATH_SIZE]
Definition: solist.h:57
enum bfd_endian gdbarch_byte_order(struct gdbarch *gdbarch)
Definition: gdbarch.c:1509
struct cleanup * make_cleanup(make_cleanup_ftype *function, void *arg)
Definition: cleanups.c:116
static unsigned int solib_dsbt_debug
Definition: solib-dsbt.c:36
#define ANOFFSET(secoff, whichone)
Definition: symtab.h:1276
const char version[]
Definition: version.c:2
Definition: gdbtypes.h:749
char so_name[SO_NAME_MAX_PATH_SIZE]
Definition: solist.h:60
ext_Elf32_Addr p_vaddr
Definition: solib-dsbt.c:55
gdb_byte ext_ptr[4]
Definition: solib-dsbt.c:103
struct target_so_ops dsbt_so_ops
Definition: solib-dsbt.c:1049
#define symfile_objfile
Definition: progspace.h:227
CORE_ADDR endaddr
Definition: target.h:2318
#define target_has_execution
Definition: target.h:1756
struct cmd_list_element * setdebuglist
Definition: cli-cmds.c:153
CORE_ADDR gdb_bfd_lookup_symbol(bfd *abfd, int(*match_sym)(const asymbol *, const void *), const void *data)
Definition: solib.c:1582
struct bfd_section * the_bfd_section
Definition: target.h:2320
void * xmalloc(YYSIZE_T)
static void dsbt_get_initial_loadmaps(void)
Definition: solib-dsbt.c:293
CORE_ADDR addr
Definition: target.h:2317
static CORE_ADDR displacement_from_map(struct int_elf32_dsbt_loadmap *map, CORE_ADDR addr)
Definition: solib-dsbt.c:523
Definition: value.c:169
static const struct program_space_data * solib_dsbt_pspace_data
Definition: solib-dsbt.c:167
static int scan_dyntag(int dyntag, bfd *abfd, CORE_ADDR *ptr)
Definition: solib-dsbt.c:415
int(* open_symbol_file_object)(int from_ttyp)
Definition: solist.h:125
static void enable_break_failure_warning(void)
Definition: solib-dsbt.c:770
bfd_byte gdb_byte
Definition: common-types.h:38
#define XCNEW(T)
Definition: poison.h:121
static CORE_ADDR interp_plt_sect_high
Definition: solib-frv.c:449
struct ext_elf32_dsbt_loadseg segs[1]
Definition: solib-dsbt.c:71
int target_read_memory(CORE_ADDR memaddr, gdb_byte *myaddr, ssize_t len)
Definition: target.c:1370
struct type * builtin_data_ptr
Definition: gdbtypes.h:1554
static int in_plt_section(CORE_ADDR pc)
Definition: objfiles.h:542
static CORE_ADDR lm_base(void)
Definition: solib-dsbt.c:548
struct minimal_symbol * minsym
Definition: minsyms.h:34
CORE_ADDR main_lm_addr
Definition: solib-dsbt.c:158
void(* free_so)(struct so_list *so)
Definition: solist.h:100
char * safe_strerror(int)
#define obj_section_addr(s)
Definition: objfiles.h:140
int offset
Definition: agent.c:65
T * get() const
Definition: gdb_ref_ptr.h:130
static void dsbt_free_so(struct so_list *so)
Definition: solib-dsbt.c:1014
const char * print_core_address(struct gdbarch *gdbarch, CORE_ADDR address)
Definition: utils.c:2766
struct program_space * current_program_space
Definition: progspace.c:35
ext_Elf32_Word dsbt_table_ptr
Definition: solib-dsbt.c:65
ext_Elf32_Word dsbt_size
Definition: solib-dsbt.c:66
CORE_ADDR interp_text_sect_low
Definition: solib-dsbt.c:160
static int open_symbol_file_object(int from_tty)
Definition: solib-dsbt.c:513
static void dsbt_pspace_data_cleanup(struct program_space *pspace, void *arg)
Definition: solib-dsbt.c:170
#define gdb_stdlog
Definition: utils.h:349
struct cmd_list_element * showdebuglist
Definition: cli-cmds.c:155
void _initialize_dsbt_solib(void)
Definition: solib-dsbt.c:1052
bfd * core_bfd
Definition: corefile.c:54
gdb_bfd_ref_ptr solib_bfd_open(char *pathname)
Definition: solib.c:496
gdb_byte ext_Elf32_Half[2]
Definition: solib-dsbt.c:46
static struct so_list * dsbt_current_sos(void)
Definition: solib-dsbt.c:628
static CORE_ADDR interp_text_sect_high
Definition: solib-frv.c:447
lm_info_base * lm_info
Definition: solist.h:50
struct bound_minimal_symbol lookup_minimal_symbol(const char *name, const char *sfile, struct objfile *objf)
Definition: minsyms.c:311
int target_read_string(CORE_ADDR memaddr, char **string, int len, int *errnop)
Definition: target.c:907
struct int_elf32_dsbt_loadmap * exec_loadmap
Definition: solib-dsbt.c:151
void error(const char *fmt,...)
Definition: errors.c:38
static struct int_elf32_dsbt_loadmap * fetch_loadmap(CORE_ADDR ldmaddr)
Definition: solib-dsbt.c:326
ext_Elf32_Addr addr
Definition: solib-dsbt.c:53
void do_cleanups(struct cleanup *old_chain)
Definition: cleanups.c:174
static void dsbt_relocate_main_executable(void)
Definition: solib-dsbt.c:920
static void dsbt_clear_solib(void)
Definition: solib-dsbt.c:1002