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[deliverable/binutils-gdb.git] / gdb / corelow.c
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c906108c 1/* Core dump and executable file functions below target vector, for GDB.
4646aa9d 2
e2882c85 3 Copyright (C) 1986-2018 Free Software Foundation, Inc.
c906108c 4
c5aa993b 5 This file is part of GDB.
c906108c 6
c5aa993b
JM
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
a9762ec7 9 the Free Software Foundation; either version 3 of the License, or
c5aa993b 10 (at your option) any later version.
c906108c 11
c5aa993b
JM
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.
c906108c 16
c5aa993b 17 You should have received a copy of the GNU General Public License
a9762ec7 18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
c906108c
SS
19
20#include "defs.h"
0e24ac5d 21#include "arch-utils.h"
c906108c
SS
22#include <signal.h>
23#include <fcntl.h>
fc24370e
MS
24#ifdef HAVE_SYS_FILE_H
25#include <sys/file.h> /* needed for F_OK and friends */
26#endif
c5aa993b 27#include "frame.h" /* required by inferior.h */
c906108c 28#include "inferior.h"
45741a9c 29#include "infrun.h"
c906108c
SS
30#include "symtab.h"
31#include "command.h"
32#include "bfd.h"
33#include "target.h"
34#include "gdbcore.h"
35#include "gdbthread.h"
4e052eda 36#include "regcache.h"
0e24ac5d 37#include "regset.h"
990f9fe3 38#include "symfile.h"
4646aa9d 39#include "exec.h"
dbda9972 40#include "readline/readline.h"
a77053c2 41#include "solib.h"
f90c07ac 42#include "filenames.h"
6c95b8df 43#include "progspace.h"
516ba659 44#include "objfiles.h"
cbb099e8 45#include "gdb_bfd.h"
9852c492 46#include "completer.h"
614c279d 47#include "filestuff.h"
8e860359 48
ee28ca0f
AC
49#ifndef O_LARGEFILE
50#define O_LARGEFILE 0
51#endif
52
00e32a35
AC
53/* List of all available core_fns. On gdb startup, each core file
54 register reader calls deprecated_add_core_fns() to register
55 information on each core format it is prepared to read. */
c906108c
SS
56
57static struct core_fns *core_file_fns = NULL;
58
aff410f1
MS
59/* The core_fns for a core file handler that is prepared to read the
60 core file currently open on core_bfd. */
2acceee2
JM
61
62static struct core_fns *core_vec = NULL;
63
0e24ac5d
MK
64/* FIXME: kettenis/20031023: Eventually this variable should
65 disappear. */
66
6a3bfc5c 67static struct gdbarch *core_gdbarch = NULL;
0e24ac5d 68
07b82ea5
PA
69/* Per-core data. Currently, only the section table. Note that these
70 target sections are *not* mapped in the current address spaces' set
71 of target sections --- those should come only from pure executable
72 or shared library bfds. The core bfd sections are an
73 implementation detail of the core target, just like ptrace is for
74 unix child targets. */
75static struct target_section_table *core_data;
76
a14ed312 77static void core_files_info (struct target_ops *);
c906108c 78
a14ed312 79static struct core_fns *sniff_core_bfd (bfd *);
2acceee2 80
020cc13c 81static int gdb_check_format (bfd *);
2acceee2 82
de90e03d 83static void core_close (struct target_ops *self);
c906108c 84
74b7792f
AC
85static void core_close_cleanup (void *ignore);
86
4efb68b1 87static void add_to_thread_list (bfd *, asection *, void *);
c906108c 88
a14ed312 89static void init_core_ops (void);
c906108c 90
c0edd9ed 91static struct target_ops core_ops;
c906108c 92
7f9f62ba
PA
93/* An arbitrary identifier for the core inferior. */
94#define CORELOW_PID 1
95
aff410f1
MS
96/* Link a new core_fns into the global core_file_fns list. Called on
97 gdb startup by the _initialize routine in each core file register
b021a221 98 reader, to register information about each format the reader is
aff410f1 99 prepared to handle. */
c906108c
SS
100
101void
00e32a35 102deprecated_add_core_fns (struct core_fns *cf)
c906108c 103{
c5aa993b 104 cf->next = core_file_fns;
c906108c
SS
105 core_file_fns = cf;
106}
107
2acceee2
JM
108/* The default function that core file handlers can use to examine a
109 core file BFD and decide whether or not to accept the job of
aff410f1 110 reading the core file. */
2acceee2
JM
111
112int
fba45db2 113default_core_sniffer (struct core_fns *our_fns, bfd *abfd)
2acceee2
JM
114{
115 int result;
116
117 result = (bfd_get_flavour (abfd) == our_fns -> core_flavour);
118 return (result);
119}
120
121/* Walk through the list of core functions to find a set that can
06b9f45f 122 handle the core file open on ABFD. Returns pointer to set that is
aff410f1 123 selected. */
2acceee2
JM
124
125static struct core_fns *
fba45db2 126sniff_core_bfd (bfd *abfd)
2acceee2
JM
127{
128 struct core_fns *cf;
129 struct core_fns *yummy = NULL;
45eba0ab 130 int matches = 0;
2acceee2 131
aff410f1
MS
132 /* Don't sniff if we have support for register sets in
133 CORE_GDBARCH. */
29082443 134 if (core_gdbarch && gdbarch_iterate_over_regset_sections_p (core_gdbarch))
0e24ac5d
MK
135 return NULL;
136
2acceee2
JM
137 for (cf = core_file_fns; cf != NULL; cf = cf->next)
138 {
139 if (cf->core_sniffer (cf, abfd))
140 {
141 yummy = cf;
142 matches++;
143 }
144 }
145 if (matches > 1)
146 {
8a3fe4f8 147 warning (_("\"%s\": ambiguous core format, %d handlers match"),
2acceee2
JM
148 bfd_get_filename (abfd), matches);
149 }
150 else if (matches == 0)
06b9f45f
JK
151 error (_("\"%s\": no core file handler recognizes format"),
152 bfd_get_filename (abfd));
153
2acceee2
JM
154 return (yummy);
155}
156
157/* The default is to reject every core file format we see. Either
158 BFD has to recognize it, or we have to provide a function in the
aff410f1 159 core file handler that recognizes it. */
2acceee2
JM
160
161int
fba45db2 162default_check_format (bfd *abfd)
2acceee2
JM
163{
164 return (0);
165}
166
aff410f1 167/* Attempt to recognize core file formats that BFD rejects. */
2acceee2 168
020cc13c 169static int
fba45db2 170gdb_check_format (bfd *abfd)
2acceee2
JM
171{
172 struct core_fns *cf;
173
174 for (cf = core_file_fns; cf != NULL; cf = cf->next)
175 {
176 if (cf->check_format (abfd))
177 {
81a9a963 178 return (1);
2acceee2
JM
179 }
180 }
81a9a963 181 return (0);
2acceee2 182}
c906108c 183
aff410f1
MS
184/* Discard all vestiges of any previous core file and mark data and
185 stack spaces as empty. */
c906108c 186
c906108c 187static void
de90e03d 188core_close (struct target_ops *self)
c906108c 189{
c906108c
SS
190 if (core_bfd)
191 {
959b8724 192 int pid = ptid_get_pid (inferior_ptid);
aff410f1
MS
193 inferior_ptid = null_ptid; /* Avoid confusion from thread
194 stuff. */
06b9f45f
JK
195 if (pid != 0)
196 exit_inferior_silent (pid);
c906108c 197
aff410f1
MS
198 /* Clear out solib state while the bfd is still open. See
199 comments in clear_solib in solib.c. */
a77053c2 200 clear_solib ();
7a292a7a 201
06b9f45f
JK
202 if (core_data)
203 {
204 xfree (core_data->sections);
205 xfree (core_data);
206 core_data = NULL;
207 }
07b82ea5 208
cbb099e8 209 gdb_bfd_unref (core_bfd);
c906108c 210 core_bfd = NULL;
c906108c 211 }
2acceee2 212 core_vec = NULL;
0e24ac5d 213 core_gdbarch = NULL;
c906108c
SS
214}
215
74b7792f
AC
216static void
217core_close_cleanup (void *ignore)
218{
de90e03d 219 core_close (NULL);
74b7792f
AC
220}
221
aff410f1
MS
222/* Look for sections whose names start with `.reg/' so that we can
223 extract the list of threads in a core file. */
c906108c
SS
224
225static void
4efb68b1 226add_to_thread_list (bfd *abfd, asection *asect, void *reg_sect_arg)
c906108c 227{
0de3b513 228 ptid_t ptid;
3cdd9356
PA
229 int core_tid;
230 int pid, lwpid;
c906108c 231 asection *reg_sect = (asection *) reg_sect_arg;
88f38a04
PA
232 int fake_pid_p = 0;
233 struct inferior *inf;
c906108c 234
61012eef 235 if (!startswith (bfd_section_name (abfd, asect), ".reg/"))
c906108c
SS
236 return;
237
3cdd9356 238 core_tid = atoi (bfd_section_name (abfd, asect) + 5);
c906108c 239
261b8d08
PA
240 pid = bfd_core_file_pid (core_bfd);
241 if (pid == 0)
3cdd9356 242 {
88f38a04 243 fake_pid_p = 1;
3cdd9356 244 pid = CORELOW_PID;
3cdd9356 245 }
0de3b513 246
261b8d08
PA
247 lwpid = core_tid;
248
88f38a04
PA
249 inf = current_inferior ();
250 if (inf->pid == 0)
251 {
252 inferior_appeared (inf, pid);
253 inf->fake_pid_p = fake_pid_p;
254 }
3cdd9356
PA
255
256 ptid = ptid_build (pid, lwpid, 0);
257
258 add_thread (ptid);
c906108c
SS
259
260/* Warning, Will Robinson, looking at BFD private data! */
261
262 if (reg_sect != NULL
aff410f1
MS
263 && asect->filepos == reg_sect->filepos) /* Did we find .reg? */
264 inferior_ptid = ptid; /* Yes, make it current. */
c906108c
SS
265}
266
267/* This routine opens and sets up the core file bfd. */
268
269static void
014f9477 270core_open (const char *arg, int from_tty)
c906108c
SS
271{
272 const char *p;
273 int siggy;
274 struct cleanup *old_chain;
c906108c 275 int scratch_chan;
ee28ca0f 276 int flags;
c906108c
SS
277
278 target_preopen (from_tty);
014f9477 279 if (!arg)
c906108c 280 {
8a3fe4f8 281 if (core_bfd)
3e43a32a
MS
282 error (_("No core file specified. (Use `detach' "
283 "to stop debugging a core file.)"));
8a3fe4f8
AC
284 else
285 error (_("No core file specified."));
c906108c
SS
286 }
287
ee0c3293
TT
288 gdb::unique_xmalloc_ptr<char> filename (tilde_expand (arg));
289 if (!IS_ABSOLUTE_PATH (filename.get ()))
290 filename.reset (concat (current_directory, "/",
291 filename.get (), (char *) NULL));
c906108c 292
ee28ca0f
AC
293 flags = O_BINARY | O_LARGEFILE;
294 if (write_files)
295 flags |= O_RDWR;
296 else
297 flags |= O_RDONLY;
ee0c3293 298 scratch_chan = gdb_open_cloexec (filename.get (), flags, 0);
c906108c 299 if (scratch_chan < 0)
ee0c3293 300 perror_with_name (filename.get ());
c906108c 301
ee0c3293 302 gdb_bfd_ref_ptr temp_bfd (gdb_bfd_fopen (filename.get (), gnutarget,
192b62ce
TT
303 write_files ? FOPEN_RUB : FOPEN_RB,
304 scratch_chan));
c906108c 305 if (temp_bfd == NULL)
ee0c3293 306 perror_with_name (filename.get ());
c906108c 307
192b62ce
TT
308 if (!bfd_check_format (temp_bfd.get (), bfd_core)
309 && !gdb_check_format (temp_bfd.get ()))
c906108c
SS
310 {
311 /* Do it after the err msg */
aff410f1
MS
312 /* FIXME: should be checking for errors from bfd_close (for one
313 thing, on error it does not free all the storage associated
314 with the bfd). */
8a3fe4f8 315 error (_("\"%s\" is not a core dump: %s"),
ee0c3293 316 filename.get (), bfd_errmsg (bfd_get_error ()));
c906108c
SS
317 }
318
aff410f1
MS
319 /* Looks semi-reasonable. Toss the old core file and work on the
320 new. */
c906108c 321
c906108c 322 unpush_target (&core_ops);
192b62ce 323 core_bfd = temp_bfd.release ();
74b7792f 324 old_chain = make_cleanup (core_close_cleanup, 0 /*ignore*/);
c906108c 325
0e24ac5d
MK
326 core_gdbarch = gdbarch_from_bfd (core_bfd);
327
2acceee2
JM
328 /* Find a suitable core file handler to munch on core_bfd */
329 core_vec = sniff_core_bfd (core_bfd);
330
c906108c
SS
331 validate_files ();
332
41bf6aca 333 core_data = XCNEW (struct target_section_table);
07b82ea5 334
c906108c 335 /* Find the data section */
07b82ea5 336 if (build_section_table (core_bfd,
aff410f1
MS
337 &core_data->sections,
338 &core_data->sections_end))
8a3fe4f8 339 error (_("\"%s\": Can't find sections: %s"),
c906108c
SS
340 bfd_get_filename (core_bfd), bfd_errmsg (bfd_get_error ()));
341
2f1b5984
MK
342 /* If we have no exec file, try to set the architecture from the
343 core file. We don't do this unconditionally since an exec file
344 typically contains more information that helps us determine the
345 architecture than a core file. */
346 if (!exec_bfd)
347 set_gdbarch_from_file (core_bfd);
cbda0a99 348
87ab71f0 349 push_target (&core_ops);
c906108c
SS
350 discard_cleanups (old_chain);
351
0de3b513
PA
352 /* Do this before acknowledging the inferior, so if
353 post_create_inferior throws (can happen easilly if you're loading
354 a core file with the wrong exec), we aren't left with threads
355 from the previous inferior. */
356 init_thread_list ();
357
3cdd9356 358 inferior_ptid = null_ptid;
0de3b513 359
739fc47a
PA
360 /* Need to flush the register cache (and the frame cache) from a
361 previous debug session. If inferior_ptid ends up the same as the
362 last debug session --- e.g., b foo; run; gcore core1; step; gcore
363 core2; core core1; core core2 --- then there's potential for
364 get_current_regcache to return the cached regcache of the
365 previous session, and the frame cache being stale. */
366 registers_changed ();
367
0de3b513
PA
368 /* Build up thread list from BFD sections, and possibly set the
369 current thread to the .reg/NN section matching the .reg
aff410f1 370 section. */
0de3b513
PA
371 bfd_map_over_sections (core_bfd, add_to_thread_list,
372 bfd_get_section_by_name (core_bfd, ".reg"));
373
3cdd9356
PA
374 if (ptid_equal (inferior_ptid, null_ptid))
375 {
376 /* Either we found no .reg/NN section, and hence we have a
377 non-threaded core (single-threaded, from gdb's perspective),
378 or for some reason add_to_thread_list couldn't determine
379 which was the "main" thread. The latter case shouldn't
380 usually happen, but we're dealing with input here, which can
381 always be broken in different ways. */
382 struct thread_info *thread = first_thread_of_process (-1);
c5504eaf 383
3cdd9356
PA
384 if (thread == NULL)
385 {
c45ceae0 386 inferior_appeared (current_inferior (), CORELOW_PID);
3cdd9356
PA
387 inferior_ptid = pid_to_ptid (CORELOW_PID);
388 add_thread_silent (inferior_ptid);
389 }
390 else
391 switch_to_thread (thread->ptid);
392 }
393
959b8724
PA
394 post_create_inferior (&core_ops, from_tty);
395
0de3b513
PA
396 /* Now go through the target stack looking for threads since there
397 may be a thread_stratum target loaded on top of target core by
398 now. The layer above should claim threads found in the BFD
399 sections. */
492d29ea 400 TRY
8e7b59a5 401 {
e8032dde 402 target_update_thread_list ();
8e7b59a5
KS
403 }
404
492d29ea
PA
405 CATCH (except, RETURN_MASK_ERROR)
406 {
407 exception_print (gdb_stderr, except);
408 }
409 END_CATCH
0de3b513 410
c906108c
SS
411 p = bfd_core_file_failing_command (core_bfd);
412 if (p)
a3f17187 413 printf_filtered (_("Core was generated by `%s'.\n"), p);
c906108c 414
0c557179
SDJ
415 /* Clearing any previous state of convenience variables. */
416 clear_exit_convenience_vars ();
417
c906108c
SS
418 siggy = bfd_core_file_failing_signal (core_bfd);
419 if (siggy > 0)
423ec54c 420 {
22203bbf 421 /* If we don't have a CORE_GDBARCH to work with, assume a native
1f8cf220
PA
422 core (map gdb_signal from host signals). If we do have
423 CORE_GDBARCH to work with, but no gdb_signal_from_target
424 implementation for that gdbarch, as a fallback measure,
425 assume the host signal mapping. It'll be correct for native
426 cores, but most likely incorrect for cross-cores. */
2ea28649 427 enum gdb_signal sig = (core_gdbarch != NULL
1f8cf220
PA
428 && gdbarch_gdb_signal_from_target_p (core_gdbarch)
429 ? gdbarch_gdb_signal_from_target (core_gdbarch,
430 siggy)
431 : gdb_signal_from_host (siggy));
423ec54c 432
2d503272
PM
433 printf_filtered (_("Program terminated with signal %s, %s.\n"),
434 gdb_signal_to_name (sig), gdb_signal_to_string (sig));
0c557179
SDJ
435
436 /* Set the value of the internal variable $_exitsignal,
437 which holds the signal uncaught by the inferior. */
438 set_internalvar_integer (lookup_internalvar ("_exitsignal"),
439 siggy);
423ec54c 440 }
c906108c 441
87ab71f0
PA
442 /* Fetch all registers from core file. */
443 target_fetch_registers (get_current_regcache (), -1);
c906108c 444
87ab71f0
PA
445 /* Now, set up the frame cache, and print the top of stack. */
446 reinit_frame_cache ();
08d72866 447 print_stack_frame (get_selected_frame (NULL), 1, SRC_AND_LOC, 1);
f0e8c4c5
JK
448
449 /* Current thread should be NUM 1 but the user does not know that.
450 If a program is single threaded gdb in general does not mention
451 anything about threads. That is why the test is >= 2. */
452 if (thread_count () >= 2)
453 {
492d29ea 454 TRY
f0e8c4c5
JK
455 {
456 thread_command (NULL, from_tty);
457 }
492d29ea
PA
458 CATCH (except, RETURN_MASK_ERROR)
459 {
460 exception_print (gdb_stderr, except);
461 }
462 END_CATCH
f0e8c4c5 463 }
c906108c
SS
464}
465
466static void
6e1e1966 467core_detach (struct target_ops *ops, inferior *inf, int from_tty)
c906108c 468{
136d6dae 469 unpush_target (ops);
c906108c
SS
470 reinit_frame_cache ();
471 if (from_tty)
a3f17187 472 printf_filtered (_("No core file now.\n"));
c906108c
SS
473}
474
de57eccd
JM
475/* Try to retrieve registers from a section in core_bfd, and supply
476 them to core_vec->core_read_registers, as the register set numbered
477 WHICH.
478
11a33714
SM
479 If ptid's lwp member is zero, do the single-threaded
480 thing: look for a section named NAME. If ptid's lwp
0de3b513
PA
481 member is non-zero, do the multi-threaded thing: look for a section
482 named "NAME/LWP", where LWP is the shortest ASCII decimal
11a33714 483 representation of ptid's lwp member.
de57eccd
JM
484
485 HUMAN_NAME is a human-readable name for the kind of registers the
486 NAME section contains, for use in error messages.
487
488 If REQUIRED is non-zero, print an error if the core file doesn't
aff410f1
MS
489 have a section by the appropriate name. Otherwise, just do
490 nothing. */
de57eccd
JM
491
492static void
9eefc95f 493get_core_register_section (struct regcache *regcache,
8f0435f7 494 const struct regset *regset,
1b1818e4 495 const char *name,
8f0435f7 496 int min_size,
de57eccd 497 int which,
1b1818e4 498 const char *human_name,
de57eccd
JM
499 int required)
500{
7be0c536 501 struct bfd_section *section;
de57eccd
JM
502 bfd_size_type size;
503 char *contents;
874a1c8c
AT
504 bool variable_size_section = (regset != NULL
505 && regset->flags & REGSET_VARIABLE_SIZE);
de57eccd 506
3c3ae77e 507 thread_section_name section_name (name, regcache->ptid ());
de57eccd 508
3c3ae77e 509 section = bfd_get_section_by_name (core_bfd, section_name.c_str ());
de57eccd
JM
510 if (! section)
511 {
512 if (required)
aff410f1
MS
513 warning (_("Couldn't find %s registers in core file."),
514 human_name);
de57eccd
JM
515 return;
516 }
517
518 size = bfd_section_size (core_bfd, section);
8f0435f7
AA
519 if (size < min_size)
520 {
3c3ae77e
PA
521 warning (_("Section `%s' in core file too small."),
522 section_name.c_str ());
8f0435f7
AA
523 return;
524 }
874a1c8c 525 if (size != min_size && !variable_size_section)
f962539a
AA
526 {
527 warning (_("Unexpected size of section `%s' in core file."),
3c3ae77e 528 section_name.c_str ());
f962539a 529 }
8f0435f7 530
224c3ddb 531 contents = (char *) alloca (size);
de57eccd
JM
532 if (! bfd_get_section_contents (core_bfd, section, contents,
533 (file_ptr) 0, size))
534 {
8a3fe4f8 535 warning (_("Couldn't read %s registers from `%s' section in core file."),
3c3ae77e 536 human_name, section_name.c_str ());
de57eccd
JM
537 return;
538 }
539
8f0435f7
AA
540 if (regset != NULL)
541 {
9eefc95f 542 regset->supply_regset (regset, regcache, -1, contents, size);
0e24ac5d
MK
543 return;
544 }
545
546 gdb_assert (core_vec);
9eefc95f 547 core_vec->core_read_registers (regcache, contents, size, which,
de57eccd
JM
548 ((CORE_ADDR)
549 bfd_section_vma (core_bfd, section)));
550}
551
5aa82d05
AA
552/* Callback for get_core_registers that handles a single core file
553 register note section. */
554
555static void
556get_core_registers_cb (const char *sect_name, int size,
8f0435f7 557 const struct regset *regset,
5aa82d05
AA
558 const char *human_name, void *cb_data)
559{
560 struct regcache *regcache = (struct regcache *) cb_data;
8f0435f7 561 int required = 0;
5aa82d05
AA
562
563 if (strcmp (sect_name, ".reg") == 0)
8f0435f7
AA
564 {
565 required = 1;
566 if (human_name == NULL)
567 human_name = "general-purpose";
568 }
5aa82d05 569 else if (strcmp (sect_name, ".reg2") == 0)
8f0435f7
AA
570 {
571 if (human_name == NULL)
572 human_name = "floating-point";
573 }
574
575 /* The 'which' parameter is only used when no regset is provided.
576 Thus we just set it to -1. */
577 get_core_register_section (regcache, regset, sect_name,
578 size, -1, human_name, required);
5aa82d05 579}
de57eccd 580
c906108c
SS
581/* Get the registers out of a core file. This is the machine-
582 independent part. Fetch_core_registers is the machine-dependent
aff410f1
MS
583 part, typically implemented in the xm-file for each
584 architecture. */
c906108c
SS
585
586/* We just get all the registers, so we don't use regno. */
587
c906108c 588static void
28439f5e
PA
589get_core_registers (struct target_ops *ops,
590 struct regcache *regcache, int regno)
c906108c 591{
9c5ea4d9 592 int i;
5aa82d05 593 struct gdbarch *gdbarch;
c906108c 594
29082443 595 if (!(core_gdbarch && gdbarch_iterate_over_regset_sections_p (core_gdbarch))
0e24ac5d 596 && (core_vec == NULL || core_vec->core_read_registers == NULL))
c906108c
SS
597 {
598 fprintf_filtered (gdb_stderr,
c5aa993b 599 "Can't fetch registers from this type of core file\n");
c906108c
SS
600 return;
601 }
602
ac7936df 603 gdbarch = regcache->arch ();
5aa82d05
AA
604 if (gdbarch_iterate_over_regset_sections_p (gdbarch))
605 gdbarch_iterate_over_regset_sections (gdbarch,
606 get_core_registers_cb,
607 (void *) regcache, NULL);
1b1818e4
UW
608 else
609 {
8f0435f7
AA
610 get_core_register_section (regcache, NULL,
611 ".reg", 0, 0, "general-purpose", 1);
612 get_core_register_section (regcache, NULL,
613 ".reg2", 0, 2, "floating-point", 0);
1b1818e4 614 }
c906108c 615
ee99023e 616 /* Mark all registers not found in the core as unavailable. */
ac7936df 617 for (i = 0; i < gdbarch_num_regs (regcache->arch ()); i++)
ee99023e 618 if (regcache_register_status (regcache, i) == REG_UNKNOWN)
9c5ea4d9 619 regcache_raw_supply (regcache, i, NULL);
c906108c
SS
620}
621
c906108c 622static void
fba45db2 623core_files_info (struct target_ops *t)
c906108c 624{
07b82ea5 625 print_section_info (core_data, core_bfd);
c906108c 626}
e2544d02 627\f
efcbbd14
UW
628struct spuid_list
629{
630 gdb_byte *buf;
631 ULONGEST offset;
632 LONGEST len;
633 ULONGEST pos;
634 ULONGEST written;
635};
636
637static void
638add_to_spuid_list (bfd *abfd, asection *asect, void *list_p)
639{
9a3c8263 640 struct spuid_list *list = (struct spuid_list *) list_p;
efcbbd14 641 enum bfd_endian byte_order
aff410f1 642 = bfd_big_endian (abfd) ? BFD_ENDIAN_BIG : BFD_ENDIAN_LITTLE;
efcbbd14
UW
643 int fd, pos = 0;
644
645 sscanf (bfd_section_name (abfd, asect), "SPU/%d/regs%n", &fd, &pos);
646 if (pos == 0)
647 return;
648
649 if (list->pos >= list->offset && list->pos + 4 <= list->offset + list->len)
650 {
651 store_unsigned_integer (list->buf + list->pos - list->offset,
652 4, byte_order, fd);
653 list->written += 4;
654 }
655 list->pos += 4;
656}
657
9b409511 658static enum target_xfer_status
e2544d02 659core_xfer_partial (struct target_ops *ops, enum target_object object,
961cb7b5 660 const char *annex, gdb_byte *readbuf,
aff410f1 661 const gdb_byte *writebuf, ULONGEST offset,
9b409511 662 ULONGEST len, ULONGEST *xfered_len)
e2544d02
RM
663{
664 switch (object)
665 {
666 case TARGET_OBJECT_MEMORY:
07b82ea5 667 return section_table_xfer_memory_partial (readbuf, writebuf,
9b409511 668 offset, len, xfered_len,
07b82ea5
PA
669 core_data->sections,
670 core_data->sections_end,
671 NULL);
e2544d02
RM
672
673 case TARGET_OBJECT_AUXV:
674 if (readbuf)
675 {
676 /* When the aux vector is stored in core file, BFD
677 represents this with a fake section called ".auxv". */
678
c4c5b7ba 679 struct bfd_section *section;
e2544d02 680 bfd_size_type size;
e2544d02
RM
681
682 section = bfd_get_section_by_name (core_bfd, ".auxv");
683 if (section == NULL)
2ed4b548 684 return TARGET_XFER_E_IO;
e2544d02
RM
685
686 size = bfd_section_size (core_bfd, section);
687 if (offset >= size)
9b409511 688 return TARGET_XFER_EOF;
e2544d02
RM
689 size -= offset;
690 if (size > len)
691 size = len;
9b409511
YQ
692
693 if (size == 0)
694 return TARGET_XFER_EOF;
695 if (!bfd_get_section_contents (core_bfd, section, readbuf,
696 (file_ptr) offset, size))
e2544d02 697 {
8a3fe4f8 698 warning (_("Couldn't read NT_AUXV note in core file."));
2ed4b548 699 return TARGET_XFER_E_IO;
e2544d02
RM
700 }
701
9b409511
YQ
702 *xfered_len = (ULONGEST) size;
703 return TARGET_XFER_OK;
e2544d02 704 }
2ed4b548 705 return TARGET_XFER_E_IO;
e2544d02 706
403e1656
MK
707 case TARGET_OBJECT_WCOOKIE:
708 if (readbuf)
709 {
710 /* When the StackGhost cookie is stored in core file, BFD
aff410f1
MS
711 represents this with a fake section called
712 ".wcookie". */
403e1656
MK
713
714 struct bfd_section *section;
715 bfd_size_type size;
403e1656
MK
716
717 section = bfd_get_section_by_name (core_bfd, ".wcookie");
718 if (section == NULL)
2ed4b548 719 return TARGET_XFER_E_IO;
403e1656
MK
720
721 size = bfd_section_size (core_bfd, section);
722 if (offset >= size)
96c4f946 723 return TARGET_XFER_EOF;
403e1656
MK
724 size -= offset;
725 if (size > len)
726 size = len;
9b409511
YQ
727
728 if (size == 0)
729 return TARGET_XFER_EOF;
730 if (!bfd_get_section_contents (core_bfd, section, readbuf,
731 (file_ptr) offset, size))
403e1656 732 {
8a3fe4f8 733 warning (_("Couldn't read StackGhost cookie in core file."));
2ed4b548 734 return TARGET_XFER_E_IO;
403e1656
MK
735 }
736
9b409511
YQ
737 *xfered_len = (ULONGEST) size;
738 return TARGET_XFER_OK;
739
403e1656 740 }
2ed4b548 741 return TARGET_XFER_E_IO;
403e1656 742
de584861
PA
743 case TARGET_OBJECT_LIBRARIES:
744 if (core_gdbarch
745 && gdbarch_core_xfer_shared_libraries_p (core_gdbarch))
746 {
747 if (writebuf)
2ed4b548 748 return TARGET_XFER_E_IO;
9b409511
YQ
749 else
750 {
751 *xfered_len = gdbarch_core_xfer_shared_libraries (core_gdbarch,
752 readbuf,
753 offset, len);
754
755 if (*xfered_len == 0)
756 return TARGET_XFER_EOF;
757 else
758 return TARGET_XFER_OK;
759 }
de584861
PA
760 }
761 /* FALL THROUGH */
762
356a5233
JB
763 case TARGET_OBJECT_LIBRARIES_AIX:
764 if (core_gdbarch
765 && gdbarch_core_xfer_shared_libraries_aix_p (core_gdbarch))
766 {
767 if (writebuf)
2ed4b548 768 return TARGET_XFER_E_IO;
9b409511
YQ
769 else
770 {
771 *xfered_len
772 = gdbarch_core_xfer_shared_libraries_aix (core_gdbarch,
773 readbuf, offset,
774 len);
775
776 if (*xfered_len == 0)
777 return TARGET_XFER_EOF;
778 else
779 return TARGET_XFER_OK;
780 }
356a5233
JB
781 }
782 /* FALL THROUGH */
783
efcbbd14
UW
784 case TARGET_OBJECT_SPU:
785 if (readbuf && annex)
786 {
787 /* When the SPU contexts are stored in a core file, BFD
aff410f1
MS
788 represents this with a fake section called
789 "SPU/<annex>". */
efcbbd14
UW
790
791 struct bfd_section *section;
792 bfd_size_type size;
efcbbd14 793 char sectionstr[100];
c5504eaf 794
efcbbd14
UW
795 xsnprintf (sectionstr, sizeof sectionstr, "SPU/%s", annex);
796
797 section = bfd_get_section_by_name (core_bfd, sectionstr);
798 if (section == NULL)
2ed4b548 799 return TARGET_XFER_E_IO;
efcbbd14
UW
800
801 size = bfd_section_size (core_bfd, section);
802 if (offset >= size)
9b409511 803 return TARGET_XFER_EOF;
efcbbd14
UW
804 size -= offset;
805 if (size > len)
806 size = len;
9b409511
YQ
807
808 if (size == 0)
809 return TARGET_XFER_EOF;
810 if (!bfd_get_section_contents (core_bfd, section, readbuf,
811 (file_ptr) offset, size))
efcbbd14
UW
812 {
813 warning (_("Couldn't read SPU section in core file."));
2ed4b548 814 return TARGET_XFER_E_IO;
efcbbd14
UW
815 }
816
9b409511
YQ
817 *xfered_len = (ULONGEST) size;
818 return TARGET_XFER_OK;
efcbbd14
UW
819 }
820 else if (readbuf)
821 {
822 /* NULL annex requests list of all present spuids. */
823 struct spuid_list list;
c5504eaf 824
efcbbd14
UW
825 list.buf = readbuf;
826 list.offset = offset;
827 list.len = len;
828 list.pos = 0;
829 list.written = 0;
830 bfd_map_over_sections (core_bfd, add_to_spuid_list, &list);
9b409511
YQ
831
832 if (list.written == 0)
833 return TARGET_XFER_EOF;
834 else
835 {
836 *xfered_len = (ULONGEST) list.written;
837 return TARGET_XFER_OK;
838 }
efcbbd14 839 }
2ed4b548 840 return TARGET_XFER_E_IO;
efcbbd14 841
9015683b
TT
842 case TARGET_OBJECT_SIGNAL_INFO:
843 if (readbuf)
9b409511 844 {
382b69bb
JB
845 if (core_gdbarch
846 && gdbarch_core_xfer_siginfo_p (core_gdbarch))
9b409511 847 {
382b69bb
JB
848 LONGEST l = gdbarch_core_xfer_siginfo (core_gdbarch, readbuf,
849 offset, len);
850
851 if (l >= 0)
852 {
853 *xfered_len = l;
854 if (l == 0)
855 return TARGET_XFER_EOF;
856 else
857 return TARGET_XFER_OK;
858 }
9b409511
YQ
859 }
860 }
2ed4b548 861 return TARGET_XFER_E_IO;
9015683b 862
e2544d02 863 default:
e75fdfca
TT
864 return ops->beneath->to_xfer_partial (ops->beneath, object,
865 annex, readbuf,
866 writebuf, offset, len,
867 xfered_len);
e2544d02
RM
868 }
869}
870
c906108c
SS
871\f
872/* If mourn is being called in all the right places, this could be say
aff410f1
MS
873 `gdb internal error' (since generic_mourn calls
874 breakpoint_init_inferior). */
c906108c
SS
875
876static int
3db08215
MM
877ignore (struct target_ops *ops, struct gdbarch *gdbarch,
878 struct bp_target_info *bp_tgt)
c906108c
SS
879{
880 return 0;
881}
882
73971819
PA
883/* Implement the to_remove_breakpoint method. */
884
885static int
886core_remove_breakpoint (struct target_ops *ops, struct gdbarch *gdbarch,
887 struct bp_target_info *bp_tgt,
888 enum remove_bp_reason reason)
889{
890 return 0;
891}
892
c906108c
SS
893
894/* Okay, let's be honest: threads gleaned from a core file aren't
895 exactly lively, are they? On the other hand, if we don't claim
896 that each & every one is alive, then we don't get any of them
897 to appear in an "info thread" command, which is quite a useful
898 behaviour.
c5aa993b 899 */
c906108c 900static int
28439f5e 901core_thread_alive (struct target_ops *ops, ptid_t ptid)
c906108c
SS
902{
903 return 1;
904}
905
4eb0ad19
DJ
906/* Ask the current architecture what it knows about this core file.
907 That will be used, in turn, to pick a better architecture. This
908 wrapper could be avoided if targets got a chance to specialize
909 core_ops. */
910
911static const struct target_desc *
912core_read_description (struct target_ops *target)
913{
a78c2d62 914 if (core_gdbarch && gdbarch_core_read_description_p (core_gdbarch))
2117c711
TT
915 {
916 const struct target_desc *result;
917
918 result = gdbarch_core_read_description (core_gdbarch,
919 target, core_bfd);
920 if (result != NULL)
921 return result;
922 }
4eb0ad19 923
2117c711 924 return target->beneath->to_read_description (target->beneath);
4eb0ad19
DJ
925}
926
7a114964 927static const char *
117de6a9 928core_pid_to_str (struct target_ops *ops, ptid_t ptid)
0de3b513
PA
929{
930 static char buf[64];
88f38a04 931 struct inferior *inf;
a5ee0f0c 932 int pid;
0de3b513 933
a5ee0f0c
PA
934 /* The preferred way is to have a gdbarch/OS specific
935 implementation. */
28439f5e
PA
936 if (core_gdbarch
937 && gdbarch_core_pid_to_str_p (core_gdbarch))
a5ee0f0c 938 return gdbarch_core_pid_to_str (core_gdbarch, ptid);
c5504eaf 939
a5ee0f0c
PA
940 /* Otherwise, if we don't have one, we'll just fallback to
941 "process", with normal_pid_to_str. */
28439f5e 942
a5ee0f0c
PA
943 /* Try the LWPID field first. */
944 pid = ptid_get_lwp (ptid);
945 if (pid != 0)
946 return normal_pid_to_str (pid_to_ptid (pid));
947
948 /* Otherwise, this isn't a "threaded" core -- use the PID field, but
949 only if it isn't a fake PID. */
c9657e70 950 inf = find_inferior_ptid (ptid);
88f38a04 951 if (inf != NULL && !inf->fake_pid_p)
a5ee0f0c 952 return normal_pid_to_str (ptid);
0de3b513 953
a5ee0f0c
PA
954 /* No luck. We simply don't have a valid PID to print. */
955 xsnprintf (buf, sizeof buf, "<main task>");
0de3b513
PA
956 return buf;
957}
958
4dfc5dbc
JB
959static const char *
960core_thread_name (struct target_ops *self, struct thread_info *thr)
961{
962 if (core_gdbarch
963 && gdbarch_core_thread_name_p (core_gdbarch))
964 return gdbarch_core_thread_name (core_gdbarch, thr);
965 return NULL;
966}
967
c35b1492
PA
968static int
969core_has_memory (struct target_ops *ops)
970{
971 return (core_bfd != NULL);
972}
973
974static int
975core_has_stack (struct target_ops *ops)
976{
977 return (core_bfd != NULL);
978}
979
980static int
981core_has_registers (struct target_ops *ops)
982{
983 return (core_bfd != NULL);
984}
985
451b7c33
TT
986/* Implement the to_info_proc method. */
987
988static void
7bc112c1
TT
989core_info_proc (struct target_ops *ops, const char *args,
990 enum info_proc_what request)
451b7c33
TT
991{
992 struct gdbarch *gdbarch = get_current_arch ();
993
994 /* Since this is the core file target, call the 'core_info_proc'
995 method on gdbarch, not 'info_proc'. */
996 if (gdbarch_core_info_proc_p (gdbarch))
997 gdbarch_core_info_proc (gdbarch, args, request);
998}
999
c906108c
SS
1000/* Fill in core_ops with its defined operations and properties. */
1001
1002static void
fba45db2 1003init_core_ops (void)
c906108c
SS
1004{
1005 core_ops.to_shortname = "core";
1006 core_ops.to_longname = "Local core dump file";
1007 core_ops.to_doc =
1008 "Use a core file as a target. Specify the filename of the core file.";
1009 core_ops.to_open = core_open;
1010 core_ops.to_close = core_close;
c906108c 1011 core_ops.to_detach = core_detach;
c906108c 1012 core_ops.to_fetch_registers = get_core_registers;
e2544d02 1013 core_ops.to_xfer_partial = core_xfer_partial;
c906108c
SS
1014 core_ops.to_files_info = core_files_info;
1015 core_ops.to_insert_breakpoint = ignore;
73971819 1016 core_ops.to_remove_breakpoint = core_remove_breakpoint;
28439f5e 1017 core_ops.to_thread_alive = core_thread_alive;
4eb0ad19 1018 core_ops.to_read_description = core_read_description;
0de3b513 1019 core_ops.to_pid_to_str = core_pid_to_str;
4dfc5dbc 1020 core_ops.to_thread_name = core_thread_name;
c0edd9ed 1021 core_ops.to_stratum = process_stratum;
c35b1492
PA
1022 core_ops.to_has_memory = core_has_memory;
1023 core_ops.to_has_stack = core_has_stack;
1024 core_ops.to_has_registers = core_has_registers;
451b7c33 1025 core_ops.to_info_proc = core_info_proc;
c5aa993b 1026 core_ops.to_magic = OPS_MAGIC;
c0edd9ed
JK
1027
1028 if (core_target)
1029 internal_error (__FILE__, __LINE__,
1030 _("init_core_ops: core target already exists (\"%s\")."),
1031 core_target->to_longname);
1032 core_target = &core_ops;
c906108c
SS
1033}
1034
c906108c 1035void
fba45db2 1036_initialize_corelow (void)
c906108c
SS
1037{
1038 init_core_ops ();
1039
9852c492 1040 add_target_with_completer (&core_ops, filename_completer);
c906108c 1041}
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