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gdb.base/corefile.exp regression for unix/-m32 on x86_64 (PR 26336)
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1/* Program and address space management, for GDB, the GNU debugger.
2
b811d2c2 3 Copyright (C) 2009-2020 Free Software Foundation, Inc.
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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#include "gdbcmd.h"
22#include "objfiles.h"
23#include "arch-utils.h"
24#include "gdbcore.h"
25#include "solib.h"
343cc952 26#include "solist.h"
6c95b8df 27#include "gdbthread.h"
00431a78 28#include "inferior.h"
d0801dd8 29#include <algorithm>
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30
31/* The last program space number assigned. */
32int last_program_space_num = 0;
33
34/* The head of the program spaces list. */
94c93c35 35std::vector<struct program_space *> program_spaces;
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36
37/* Pointer to the current program space. */
38struct program_space *current_program_space;
39
40/* The last address space number assigned. */
41static int highest_address_space_num;
42
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43\f
44
45/* Keep a registry of per-program_space data-pointers required by other GDB
46 modules. */
47
6b81941e 48DEFINE_REGISTRY (program_space, REGISTRY_ACCESS_FIELD)
6c95b8df 49
3a8356ff
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50/* Keep a registry of per-address_space data-pointers required by other GDB
51 modules. */
52
53DEFINE_REGISTRY (address_space, REGISTRY_ACCESS_FIELD)
54
55\f
56
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57/* Create a new address space object, and add it to the list. */
58
59struct address_space *
60new_address_space (void)
61{
62 struct address_space *aspace;
63
41bf6aca 64 aspace = XCNEW (struct address_space);
6c95b8df 65 aspace->num = ++highest_address_space_num;
3a8356ff 66 address_space_alloc_data (aspace);
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67
68 return aspace;
69}
70
71/* Maybe create a new address space object, and add it to the list, or
72 return a pointer to an existing address space, in case inferiors
73 share an address space on this target system. */
74
75struct address_space *
76maybe_new_address_space (void)
77{
f5656ead 78 int shared_aspace = gdbarch_has_shared_address_space (target_gdbarch ());
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79
80 if (shared_aspace)
81 {
82 /* Just return the first in the list. */
94c93c35 83 return program_spaces[0]->aspace;
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84 }
85
86 return new_address_space ();
87}
88
89static void
90free_address_space (struct address_space *aspace)
91{
3a8356ff 92 address_space_free_data (aspace);
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93 xfree (aspace);
94}
95
c0694254
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96int
97address_space_num (struct address_space *aspace)
98{
99 return aspace->num;
100}
101
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102/* Start counting over from scratch. */
103
104static void
105init_address_spaces (void)
106{
107 highest_address_space_num = 0;
108}
109
110\f
111
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112/* Remove a program space from the program spaces list. */
113
114static void
115remove_program_space (program_space *pspace)
116{
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117 gdb_assert (pspace != NULL);
118
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119 auto iter = std::find (program_spaces.begin (), program_spaces.end (),
120 pspace);
121 gdb_assert (iter != program_spaces.end ());
122 program_spaces.erase (iter);
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123}
124
125/* See progspace.h. */
126
127program_space::program_space (address_space *aspace_)
128 : num (++last_program_space_num),
129 aspace (aspace_)
130{
131 program_space_alloc_data (this);
132
94c93c35 133 program_spaces.push_back (this);
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134}
135
136/* See progspace.h. */
6c95b8df 137
564b1e3f 138program_space::~program_space ()
6c95b8df 139{
564b1e3f 140 gdb_assert (this != current_program_space);
6c95b8df 141
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142 remove_program_space (this);
143
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144 scoped_restore_current_program_space restore_pspace;
145
564b1e3f 146 set_current_program_space (this);
6c95b8df 147
564b1e3f 148 breakpoint_program_space_exit (this);
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149 no_shared_libraries (NULL, 0);
150 exec_close ();
151 free_all_objfiles ();
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152 /* Defer breakpoint re-set because we don't want to create new
153 locations for this pspace which we're tearing down. */
154 clear_symtab_users (SYMFILE_DEFER_BP_RESET);
f5656ead 155 if (!gdbarch_has_shared_address_space (target_gdbarch ()))
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156 free_address_space (this->aspace);
157 clear_section_table (&this->target_sections);
158 clear_program_space_solib_cache (this);
6c95b8df 159 /* Discard any data modules have associated with the PSPACE. */
564b1e3f 160 program_space_free_data (this);
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161}
162
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163/* See progspace.h. */
164
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165void
166program_space::free_all_objfiles ()
167{
343cc952 168 /* Any objfile reference would become stale. */
a1fd1ac9 169 for (struct so_list *so : current_program_space->solibs ())
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170 gdb_assert (so->objfile == NULL);
171
172 while (!objfiles_list.empty ())
173 objfiles_list.front ()->unlink ();
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174}
175
176/* See progspace.h. */
177
7cac64af 178void
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179program_space::add_objfile (std::shared_ptr<objfile> &&objfile,
180 struct objfile *before)
7cac64af 181{
d0801dd8 182 if (before == nullptr)
7d7167ce 183 objfiles_list.push_back (std::move (objfile));
d0801dd8 184 else
7cac64af 185 {
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186 auto iter = std::find_if (objfiles_list.begin (), objfiles_list.end (),
187 [=] (const std::shared_ptr<::objfile> &objf)
188 {
189 return objf.get () == before;
190 });
d0801dd8 191 gdb_assert (iter != objfiles_list.end ());
7d7167ce 192 objfiles_list.insert (iter, std::move (objfile));
7cac64af 193 }
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194}
195
23452926
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196/* See progspace.h. */
197
198void
199program_space::remove_objfile (struct objfile *objfile)
200{
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201 /* Removing an objfile from the objfile list invalidates any frame
202 that was built using frame info found in the objfile. Reinit the
203 frame cache to get rid of any frame that might otherwise
204 reference stale info. */
205 reinit_frame_cache ();
206
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207 auto iter = std::find_if (objfiles_list.begin (), objfiles_list.end (),
208 [=] (const std::shared_ptr<::objfile> &objf)
209 {
210 return objf.get () == objfile;
211 });
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212 gdb_assert (iter != objfiles_list.end ());
213 objfiles_list.erase (iter);
23452926 214
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215 if (objfile == symfile_object_file)
216 symfile_object_file = NULL;
deeafabb
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217}
218
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219/* See progspace.h. */
220
221next_adapter<struct so_list>
222program_space::solibs () const
223{
224 return next_adapter<struct so_list> (this->so_list);
225}
226
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227/* Copies program space SRC to DEST. Copies the main executable file,
228 and the main symbol file. Returns DEST. */
229
230struct program_space *
231clone_program_space (struct program_space *dest, struct program_space *src)
232{
5ed8105e 233 scoped_restore_current_program_space restore_pspace;
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234
235 set_current_program_space (dest);
236
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237 if (src->pspace_exec_filename != NULL)
238 exec_file_attach (src->pspace_exec_filename, 0);
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239
240 if (src->symfile_object_file != NULL)
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241 symbol_file_add_main (objfile_name (src->symfile_object_file),
242 SYMFILE_DEFER_BP_RESET);
6c95b8df 243
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244 return dest;
245}
246
247/* Sets PSPACE as the current program space. It is the caller's
248 responsibility to make sure that the currently selected
249 inferior/thread matches the selected program space. */
250
251void
252set_current_program_space (struct program_space *pspace)
253{
254 if (current_program_space == pspace)
255 return;
256
257 gdb_assert (pspace != NULL);
258
259 current_program_space = pspace;
260
261 /* Different symbols change our view of the frame chain. */
262 reinit_frame_cache ();
263}
264
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265/* Returns true iff there's no inferior bound to PSPACE. */
266
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267int
268program_space_empty_p (struct program_space *pspace)
6c95b8df 269{
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270 if (find_inferior_for_program_space (pspace) != NULL)
271 return 0;
272
273 return 1;
274}
275
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276/* Prints the list of program spaces and their details on UIOUT. If
277 REQUESTED is not -1, it's the ID of the pspace that should be
278 printed. Otherwise, all spaces are printed. */
279
280static void
281print_program_space (struct ui_out *uiout, int requested)
282{
6c95b8df 283 int count = 0;
6c95b8df 284
6c95b8df 285 /* Compute number of pspaces we will print. */
94c93c35 286 for (struct program_space *pspace : program_spaces)
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287 {
288 if (requested != -1 && pspace->num != requested)
289 continue;
290
291 ++count;
292 }
293
294 /* There should always be at least one. */
295 gdb_assert (count > 0);
296
4a2b031d 297 ui_out_emit_table table_emitter (uiout, 3, count, "pspaces");
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298 uiout->table_header (1, ui_left, "current", "");
299 uiout->table_header (4, ui_left, "id", "Id");
300 uiout->table_header (17, ui_left, "exec", "Executable");
301 uiout->table_body ();
6c95b8df 302
94c93c35 303 for (struct program_space *pspace : program_spaces)
6c95b8df 304 {
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305 struct inferior *inf;
306 int printed_header;
307
308 if (requested != -1 && requested != pspace->num)
309 continue;
310
2e783024 311 ui_out_emit_tuple tuple_emitter (uiout, NULL);
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312
313 if (pspace == current_program_space)
112e8700 314 uiout->field_string ("current", "*");
6c95b8df 315 else
112e8700 316 uiout->field_skip ("current");
6c95b8df 317
381befee 318 uiout->field_signed ("id", pspace->num);
6c95b8df 319
1f0c4988 320 if (pspace->pspace_exec_filename)
112e8700 321 uiout->field_string ("exec", pspace->pspace_exec_filename);
6c95b8df 322 else
112e8700 323 uiout->field_skip ("exec");
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324
325 /* Print extra info that doesn't really fit in tabular form.
326 Currently, we print the list of inferiors bound to a pspace.
327 There can be more than one inferior bound to the same pspace,
328 e.g., both parent/child inferiors in a vfork, or, on targets
329 that share pspaces between inferiors. */
330 printed_header = 0;
331 for (inf = inferior_list; inf; inf = inf->next)
332 if (inf->pspace == pspace)
333 {
334 if (!printed_header)
335 {
336 printed_header = 1;
337 printf_filtered ("\n\tBound inferiors: ID %d (%s)",
338 inf->num,
a068643d 339 target_pid_to_str (ptid_t (inf->pid)).c_str ());
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340 }
341 else
342 printf_filtered (", ID %d (%s)",
343 inf->num,
a068643d 344 target_pid_to_str (ptid_t (inf->pid)).c_str ());
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345 }
346
112e8700 347 uiout->text ("\n");
6c95b8df 348 }
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349}
350
351/* Boolean test for an already-known program space id. */
352
353static int
354valid_program_space_id (int num)
355{
94c93c35 356 for (struct program_space *pspace : program_spaces)
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357 if (pspace->num == num)
358 return 1;
359
360 return 0;
361}
362
363/* If ARGS is NULL or empty, print information about all program
364 spaces. Otherwise, ARGS is a text representation of a LONG
365 indicating which the program space to print information about. */
366
367static void
9c504b5d 368maintenance_info_program_spaces_command (const char *args, int from_tty)
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369{
370 int requested = -1;
371
372 if (args && *args)
373 {
374 requested = parse_and_eval_long (args);
375 if (!valid_program_space_id (requested))
376 error (_("program space ID %d not known."), requested);
377 }
378
79a45e25 379 print_program_space (current_uiout, requested);
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380}
381
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382/* Update all program spaces matching to address spaces. The user may
383 have created several program spaces, and loaded executables into
384 them before connecting to the target interface that will create the
385 inferiors. All that happens before GDB has a chance to know if the
386 inferiors will share an address space or not. Call this after
387 having connected to the target interface and having fetched the
388 target description, to fixup the program/address spaces mappings.
389
390 It is assumed that there are no bound inferiors yet, otherwise,
391 they'd be left with stale referenced to released aspaces. */
392
393void
394update_address_spaces (void)
395{
f5656ead 396 int shared_aspace = gdbarch_has_shared_address_space (target_gdbarch ());
7e9af34a 397 struct inferior *inf;
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398
399 init_address_spaces ();
400
7e9af34a 401 if (shared_aspace)
6c95b8df 402 {
7e9af34a 403 struct address_space *aspace = new_address_space ();
ad3bbd48 404
7e9af34a 405 free_address_space (current_program_space->aspace);
94c93c35 406 for (struct program_space *pspace : program_spaces)
7e9af34a 407 pspace->aspace = aspace;
6c95b8df 408 }
7e9af34a 409 else
94c93c35 410 for (struct program_space *pspace : program_spaces)
7e9af34a
DJ
411 {
412 free_address_space (pspace->aspace);
413 pspace->aspace = new_address_space ();
414 }
415
416 for (inf = inferior_list; inf; inf = inf->next)
f5656ead 417 if (gdbarch_has_global_solist (target_gdbarch ()))
7e9af34a
DJ
418 inf->aspace = maybe_new_address_space ();
419 else
420 inf->aspace = inf->pspace->aspace;
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421}
422
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423\f
424
edcc5120
TT
425/* See progspace.h. */
426
427void
428clear_program_space_solib_cache (struct program_space *pspace)
429{
bcb430e4 430 pspace->added_solibs.clear ();
6fb16ce6 431 pspace->deleted_solibs.clear ();
edcc5120
TT
432}
433
434\f
435
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436void
437initialize_progspace (void)
438{
439 add_cmd ("program-spaces", class_maintenance,
3e43a32a
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440 maintenance_info_program_spaces_command,
441 _("Info about currently known program spaces."),
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PA
442 &maintenanceinfolist);
443
444 /* There's always one program space. Note that this function isn't
445 an automatic _initialize_foo function, since other
446 _initialize_foo routines may need to install their per-pspace
447 data keys. We can only allocate a progspace when all those
448 modules have done that. Do this before
449 initialize_current_architecture, because that accesses exec_bfd,
450 which in turn dereferences current_program_space. */
564b1e3f 451 current_program_space = new program_space (new_address_space ());
6c95b8df 452}