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1/* Process record and replay target for GDB, the GNU debugger.
2
e2882c85 3 Copyright (C) 2013-2018 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 "regcache.h"
23#include "gdbthread.h"
24#include "event-top.h"
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25#include "completer.h"
26#include "arch-utils.h"
27#include "gdbcore.h"
28#include "exec.h"
29#include "record.h"
30#include "record-full.h"
31#include "elf-bfd.h"
32#include "gcore.h"
33#include "event-loop.h"
34#include "inf-loop.h"
35#include "gdb_bfd.h"
76727919 36#include "observable.h"
45741a9c 37#include "infrun.h"
bef155c3 38#include "common/gdb_unlinker.h"
d7dcbefc 39#include "common/byte-vector.h"
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40
41#include <signal.h>
42
43/* This module implements "target record-full", also known as "process
44 record and replay". This target sits on top of a "normal" target
45 (a target that "has execution"), and provides a record and replay
46 functionality, including reverse debugging.
47
48 Target record has two modes: recording, and replaying.
49
f6ac5f3d 50 In record mode, we intercept the resume and wait methods.
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51 Whenever gdb resumes the target, we run the target in single step
52 mode, and we build up an execution log in which, for each executed
53 instruction, we record all changes in memory and register state.
54 This is invisible to the user, to whom it just looks like an
55 ordinary debugging session (except for performance degredation).
56
57 In replay mode, instead of actually letting the inferior run as a
58 process, we simulate its execution by playing back the recorded
59 execution log. For each instruction in the log, we simulate the
60 instruction's side effects by duplicating the changes that it would
61 have made on memory and registers. */
62
88d1aa9d 63#define DEFAULT_RECORD_FULL_INSN_MAX_NUM 200000
d02ed0bb 64
88d1aa9d 65#define RECORD_FULL_IS_REPLAY \
f6ac5f3d 66 (record_full_list->next || ::execution_direction == EXEC_REVERSE)
d02ed0bb 67
88d1aa9d 68#define RECORD_FULL_FILE_MAGIC netorder32(0x20091016)
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69
70/* These are the core structs of the process record functionality.
71
88d1aa9d
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72 A record_full_entry is a record of the value change of a register
73 ("record_full_reg") or a part of memory ("record_full_mem"). And each
74 instruction must have a struct record_full_entry ("record_full_end")
75 that indicates that this is the last struct record_full_entry of this
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76 instruction.
77
88d1aa9d
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78 Each struct record_full_entry is linked to "record_full_list" by "prev"
79 and "next" pointers. */
d02ed0bb 80
88d1aa9d 81struct record_full_mem_entry
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82{
83 CORE_ADDR addr;
84 int len;
85 /* Set this flag if target memory for this entry
86 can no longer be accessed. */
87 int mem_entry_not_accessible;
88 union
89 {
90 gdb_byte *ptr;
91 gdb_byte buf[sizeof (gdb_byte *)];
92 } u;
93};
94
88d1aa9d 95struct record_full_reg_entry
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96{
97 unsigned short num;
98 unsigned short len;
99 union
100 {
101 gdb_byte *ptr;
102 gdb_byte buf[2 * sizeof (gdb_byte *)];
103 } u;
104};
105
88d1aa9d 106struct record_full_end_entry
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107{
108 enum gdb_signal sigval;
109 ULONGEST insn_num;
110};
111
88d1aa9d 112enum record_full_type
d02ed0bb 113{
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114 record_full_end = 0,
115 record_full_reg,
116 record_full_mem
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117};
118
119/* This is the data structure that makes up the execution log.
120
121 The execution log consists of a single linked list of entries
88d1aa9d 122 of type "struct record_full_entry". It is doubly linked so that it
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123 can be traversed in either direction.
124
125 The start of the list is anchored by a struct called
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126 "record_full_first". The pointer "record_full_list" either points
127 to the last entry that was added to the list (in record mode), or to
128 the next entry in the list that will be executed (in replay mode).
d02ed0bb 129
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130 Each list element (struct record_full_entry), in addition to next
131 and prev pointers, consists of a union of three entry types: mem,
132 reg, and end. A field called "type" determines which entry type is
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133 represented by a given list element.
134
135 Each instruction that is added to the execution log is represented
136 by a variable number of list elements ('entries'). The instruction
137 will have one "reg" entry for each register that is changed by
138 executing the instruction (including the PC in every case). It
139 will also have one "mem" entry for each memory change. Finally,
140 each instruction will have an "end" entry that separates it from
141 the changes associated with the next instruction. */
142
88d1aa9d 143struct record_full_entry
d02ed0bb 144{
88d1aa9d
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145 struct record_full_entry *prev;
146 struct record_full_entry *next;
147 enum record_full_type type;
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148 union
149 {
150 /* reg */
88d1aa9d 151 struct record_full_reg_entry reg;
d02ed0bb 152 /* mem */
88d1aa9d 153 struct record_full_mem_entry mem;
d02ed0bb 154 /* end */
88d1aa9d 155 struct record_full_end_entry end;
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156 } u;
157};
158
159/* If true, query if PREC cannot record memory
160 change of next instruction. */
25ea693b 161int record_full_memory_query = 0;
d02ed0bb 162
88d1aa9d 163struct record_full_core_buf_entry
d02ed0bb 164{
88d1aa9d 165 struct record_full_core_buf_entry *prev;
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166 struct target_section *p;
167 bfd_byte *buf;
168};
169
170/* Record buf with core target. */
c8ec2f33 171static detached_regcache *record_full_core_regbuf = NULL;
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172static struct target_section *record_full_core_start;
173static struct target_section *record_full_core_end;
174static struct record_full_core_buf_entry *record_full_core_buf_list = NULL;
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175
176/* The following variables are used for managing the linked list that
177 represents the execution log.
178
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179 record_full_first is the anchor that holds down the beginning of
180 the list.
d02ed0bb 181
88d1aa9d 182 record_full_list serves two functions:
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183 1) In record mode, it anchors the end of the list.
184 2) In replay mode, it traverses the list and points to
185 the next instruction that must be emulated.
186
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187 record_full_arch_list_head and record_full_arch_list_tail are used
188 to manage a separate list, which is used to build up the change
189 elements of the currently executing instruction during record mode.
190 When this instruction has been completely annotated in the "arch
191 list", it will be appended to the main execution log. */
d02ed0bb 192
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193static struct record_full_entry record_full_first;
194static struct record_full_entry *record_full_list = &record_full_first;
195static struct record_full_entry *record_full_arch_list_head = NULL;
196static struct record_full_entry *record_full_arch_list_tail = NULL;
d02ed0bb 197
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198/* 1 ask user. 0 auto delete the last struct record_full_entry. */
199static int record_full_stop_at_limit = 1;
d02ed0bb 200/* Maximum allowed number of insns in execution log. */
88d1aa9d
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201static unsigned int record_full_insn_max_num
202 = DEFAULT_RECORD_FULL_INSN_MAX_NUM;
d02ed0bb 203/* Actual count of insns presently in execution log. */
7ee70bf5 204static unsigned int record_full_insn_num = 0;
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205/* Count of insns logged so far (may be larger
206 than count of insns presently in execution log). */
88d1aa9d 207static ULONGEST record_full_insn_count;
d02ed0bb 208
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209static const char record_longname[]
210 = N_("Process record and replay target");
211static const char record_doc[]
212 = N_("Log program while executing and replay execution from log.");
213
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214/* Base class implementing functionality common to both the
215 "record-full" and "record-core" targets. */
216
217class record_full_base_target : public target_ops
218{
219public:
220 record_full_base_target ()
221 { to_stratum = record_stratum; }
222
d9f719f1 223 const target_info &info () const override = 0;
f6ac5f3d 224
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225 void close () override;
226 void async (int) override;
227 ptid_t wait (ptid_t, struct target_waitstatus *, int) override;
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228 bool stopped_by_watchpoint () override;
229 bool stopped_data_address (CORE_ADDR *) override;
f6ac5f3d 230
57810aa7
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231 bool stopped_by_sw_breakpoint () override;
232 bool supports_stopped_by_sw_breakpoint () override;
f6ac5f3d 233
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234 bool stopped_by_hw_breakpoint () override;
235 bool supports_stopped_by_hw_breakpoint () override;
f6ac5f3d 236
57810aa7 237 bool can_execute_reverse () override;
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238
239 /* Add bookmark target methods. */
240 gdb_byte *get_bookmark (const char *, int) override;
241 void goto_bookmark (const gdb_byte *, int) override;
242 enum exec_direction_kind execution_direction () override;
243 enum record_method record_method (ptid_t ptid) override;
244 void info_record () override;
245 void save_record (const char *filename) override;
246 bool supports_delete_record () override;
247 void delete_record () override;
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248 bool record_is_replaying (ptid_t ptid) override;
249 bool record_will_replay (ptid_t ptid, int dir) override;
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250 void record_stop_replaying () override;
251 void goto_record_begin () override;
252 void goto_record_end () override;
253 void goto_record (ULONGEST insn) override;
254};
255
256/* The "record-full" target. */
257
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258static const target_info record_full_target_info = {
259 "record-full",
260 record_longname,
261 record_doc,
262};
263
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264class record_full_target final : public record_full_base_target
265{
266public:
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267 const target_info &info () const override
268 { return record_full_target_info; }
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269
270 void commit_resume () override;
271 void resume (ptid_t, int, enum gdb_signal) override;
272 void disconnect (const char *, int) override;
273 void detach (inferior *, int) override;
274 void mourn_inferior () override;
275 void kill () override;
276 void store_registers (struct regcache *, int) override;
277 enum target_xfer_status xfer_partial (enum target_object object,
278 const char *annex,
279 gdb_byte *readbuf,
280 const gdb_byte *writebuf,
281 ULONGEST offset, ULONGEST len,
282 ULONGEST *xfered_len) override;
283 int insert_breakpoint (struct gdbarch *,
284 struct bp_target_info *) override;
285 int remove_breakpoint (struct gdbarch *,
286 struct bp_target_info *,
287 enum remove_bp_reason) override;
288};
289
290/* The "record-core" target. */
291
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292static const target_info record_full_core_target_info = {
293 "record-core",
294 record_longname,
295 record_doc,
296};
297
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298class record_full_core_target final : public record_full_base_target
299{
300public:
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301 const target_info &info () const override
302 { return record_full_core_target_info; }
f6ac5f3d
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303
304 void resume (ptid_t, int, enum gdb_signal) override;
305 void disconnect (const char *, int) override;
306 void kill () override;
307 void fetch_registers (struct regcache *regcache, int regno) override;
308 void prepare_to_store (struct regcache *regcache) override;
309 void store_registers (struct regcache *, int) override;
310 enum target_xfer_status xfer_partial (enum target_object object,
311 const char *annex,
312 gdb_byte *readbuf,
313 const gdb_byte *writebuf,
314 ULONGEST offset, ULONGEST len,
315 ULONGEST *xfered_len) override;
316 int insert_breakpoint (struct gdbarch *,
317 struct bp_target_info *) override;
318 int remove_breakpoint (struct gdbarch *,
319 struct bp_target_info *,
320 enum remove_bp_reason) override;
321
57810aa7 322 bool has_execution (ptid_t) override;
f6ac5f3d
PA
323};
324
325static record_full_target record_full_ops;
326static record_full_core_target record_full_core_ops;
327
328void
329record_full_target::detach (inferior *inf, int from_tty)
330{
331 record_detach (this, inf, from_tty);
332}
333
334void
335record_full_target::disconnect (const char *args, int from_tty)
336{
337 record_disconnect (this, args, from_tty);
338}
339
340void
341record_full_core_target::disconnect (const char *args, int from_tty)
342{
343 record_disconnect (this, args, from_tty);
344}
345
346void
347record_full_target::mourn_inferior ()
348{
349 record_mourn_inferior (this);
350}
351
352void
353record_full_target::kill ()
354{
355 record_kill (this);
356}
d02ed0bb 357
8213266a
PA
358/* See record-full.h. */
359
360int
361record_full_is_used (void)
362{
363 struct target_ops *t;
364
365 t = find_record_target ();
366 return (t == &record_full_ops
367 || t == &record_full_core_ops);
368}
369
370
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371/* Command lists for "set/show record full". */
372static struct cmd_list_element *set_record_full_cmdlist;
373static struct cmd_list_element *show_record_full_cmdlist;
374
375/* Command list for "record full". */
376static struct cmd_list_element *record_full_cmdlist;
377
88d1aa9d
MM
378static void record_full_goto_insn (struct record_full_entry *entry,
379 enum exec_direction_kind dir);
88d1aa9d
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380
381/* Alloc and free functions for record_full_reg, record_full_mem, and
382 record_full_end entries. */
383
384/* Alloc a record_full_reg record entry. */
385
386static inline struct record_full_entry *
387record_full_reg_alloc (struct regcache *regcache, int regnum)
388{
389 struct record_full_entry *rec;
ac7936df 390 struct gdbarch *gdbarch = regcache->arch ();
d02ed0bb 391
8d749320 392 rec = XCNEW (struct record_full_entry);
88d1aa9d 393 rec->type = record_full_reg;
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394 rec->u.reg.num = regnum;
395 rec->u.reg.len = register_size (gdbarch, regnum);
396 if (rec->u.reg.len > sizeof (rec->u.reg.u.buf))
397 rec->u.reg.u.ptr = (gdb_byte *) xmalloc (rec->u.reg.len);
398
399 return rec;
400}
401
88d1aa9d 402/* Free a record_full_reg record entry. */
d02ed0bb
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403
404static inline void
88d1aa9d 405record_full_reg_release (struct record_full_entry *rec)
d02ed0bb 406{
88d1aa9d 407 gdb_assert (rec->type == record_full_reg);
d02ed0bb
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408 if (rec->u.reg.len > sizeof (rec->u.reg.u.buf))
409 xfree (rec->u.reg.u.ptr);
410 xfree (rec);
411}
412
88d1aa9d 413/* Alloc a record_full_mem record entry. */
d02ed0bb 414
88d1aa9d
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415static inline struct record_full_entry *
416record_full_mem_alloc (CORE_ADDR addr, int len)
d02ed0bb 417{
88d1aa9d 418 struct record_full_entry *rec;
d02ed0bb 419
8d749320 420 rec = XCNEW (struct record_full_entry);
88d1aa9d 421 rec->type = record_full_mem;
d02ed0bb
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422 rec->u.mem.addr = addr;
423 rec->u.mem.len = len;
424 if (rec->u.mem.len > sizeof (rec->u.mem.u.buf))
425 rec->u.mem.u.ptr = (gdb_byte *) xmalloc (len);
426
427 return rec;
428}
429
88d1aa9d 430/* Free a record_full_mem record entry. */
d02ed0bb
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431
432static inline void
88d1aa9d 433record_full_mem_release (struct record_full_entry *rec)
d02ed0bb 434{
88d1aa9d 435 gdb_assert (rec->type == record_full_mem);
d02ed0bb
MM
436 if (rec->u.mem.len > sizeof (rec->u.mem.u.buf))
437 xfree (rec->u.mem.u.ptr);
438 xfree (rec);
439}
440
88d1aa9d 441/* Alloc a record_full_end record entry. */
d02ed0bb 442
88d1aa9d
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443static inline struct record_full_entry *
444record_full_end_alloc (void)
d02ed0bb 445{
88d1aa9d 446 struct record_full_entry *rec;
d02ed0bb 447
8d749320 448 rec = XCNEW (struct record_full_entry);
88d1aa9d 449 rec->type = record_full_end;
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450
451 return rec;
452}
453
88d1aa9d 454/* Free a record_full_end record entry. */
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455
456static inline void
88d1aa9d 457record_full_end_release (struct record_full_entry *rec)
d02ed0bb
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458{
459 xfree (rec);
460}
461
462/* Free one record entry, any type.
463 Return entry->type, in case caller wants to know. */
464
88d1aa9d
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465static inline enum record_full_type
466record_full_entry_release (struct record_full_entry *rec)
d02ed0bb 467{
88d1aa9d 468 enum record_full_type type = rec->type;
d02ed0bb
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469
470 switch (type) {
88d1aa9d
MM
471 case record_full_reg:
472 record_full_reg_release (rec);
d02ed0bb 473 break;
88d1aa9d
MM
474 case record_full_mem:
475 record_full_mem_release (rec);
d02ed0bb 476 break;
88d1aa9d
MM
477 case record_full_end:
478 record_full_end_release (rec);
d02ed0bb
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479 break;
480 }
481 return type;
482}
483
484/* Free all record entries in list pointed to by REC. */
485
486static void
88d1aa9d 487record_full_list_release (struct record_full_entry *rec)
d02ed0bb
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488{
489 if (!rec)
490 return;
491
492 while (rec->next)
493 rec = rec->next;
494
495 while (rec->prev)
496 {
497 rec = rec->prev;
88d1aa9d 498 record_full_entry_release (rec->next);
d02ed0bb
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499 }
500
88d1aa9d 501 if (rec == &record_full_first)
d02ed0bb 502 {
88d1aa9d
MM
503 record_full_insn_num = 0;
504 record_full_first.next = NULL;
d02ed0bb
MM
505 }
506 else
88d1aa9d 507 record_full_entry_release (rec);
d02ed0bb
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508}
509
510/* Free all record entries forward of the given list position. */
511
512static void
88d1aa9d 513record_full_list_release_following (struct record_full_entry *rec)
d02ed0bb 514{
88d1aa9d 515 struct record_full_entry *tmp = rec->next;
d02ed0bb
MM
516
517 rec->next = NULL;
518 while (tmp)
519 {
520 rec = tmp->next;
88d1aa9d 521 if (record_full_entry_release (tmp) == record_full_end)
d02ed0bb 522 {
88d1aa9d
MM
523 record_full_insn_num--;
524 record_full_insn_count--;
d02ed0bb
MM
525 }
526 tmp = rec;
527 }
528}
529
530/* Delete the first instruction from the beginning of the log, to make
531 room for adding a new instruction at the end of the log.
532
88d1aa9d 533 Note -- this function does not modify record_full_insn_num. */
d02ed0bb
MM
534
535static void
88d1aa9d 536record_full_list_release_first (void)
d02ed0bb 537{
88d1aa9d 538 struct record_full_entry *tmp;
d02ed0bb 539
88d1aa9d 540 if (!record_full_first.next)
d02ed0bb
MM
541 return;
542
88d1aa9d 543 /* Loop until a record_full_end. */
d02ed0bb
MM
544 while (1)
545 {
88d1aa9d
MM
546 /* Cut record_full_first.next out of the linked list. */
547 tmp = record_full_first.next;
548 record_full_first.next = tmp->next;
549 tmp->next->prev = &record_full_first;
d02ed0bb
MM
550
551 /* tmp is now isolated, and can be deleted. */
88d1aa9d
MM
552 if (record_full_entry_release (tmp) == record_full_end)
553 break; /* End loop at first record_full_end. */
d02ed0bb 554
88d1aa9d 555 if (!record_full_first.next)
d02ed0bb 556 {
88d1aa9d 557 gdb_assert (record_full_insn_num == 1);
d02ed0bb
MM
558 break; /* End loop when list is empty. */
559 }
560 }
561}
562
88d1aa9d 563/* Add a struct record_full_entry to record_full_arch_list. */
d02ed0bb
MM
564
565static void
88d1aa9d 566record_full_arch_list_add (struct record_full_entry *rec)
d02ed0bb
MM
567{
568 if (record_debug > 1)
569 fprintf_unfiltered (gdb_stdlog,
88d1aa9d 570 "Process record: record_full_arch_list_add %s.\n",
d02ed0bb
MM
571 host_address_to_string (rec));
572
88d1aa9d 573 if (record_full_arch_list_tail)
d02ed0bb 574 {
88d1aa9d
MM
575 record_full_arch_list_tail->next = rec;
576 rec->prev = record_full_arch_list_tail;
577 record_full_arch_list_tail = rec;
d02ed0bb
MM
578 }
579 else
580 {
88d1aa9d
MM
581 record_full_arch_list_head = rec;
582 record_full_arch_list_tail = rec;
d02ed0bb
MM
583 }
584}
585
586/* Return the value storage location of a record entry. */
587static inline gdb_byte *
88d1aa9d 588record_full_get_loc (struct record_full_entry *rec)
d02ed0bb
MM
589{
590 switch (rec->type) {
88d1aa9d 591 case record_full_mem:
d02ed0bb
MM
592 if (rec->u.mem.len > sizeof (rec->u.mem.u.buf))
593 return rec->u.mem.u.ptr;
594 else
595 return rec->u.mem.u.buf;
88d1aa9d 596 case record_full_reg:
d02ed0bb
MM
597 if (rec->u.reg.len > sizeof (rec->u.reg.u.buf))
598 return rec->u.reg.u.ptr;
599 else
600 return rec->u.reg.u.buf;
88d1aa9d 601 case record_full_end:
d02ed0bb 602 default:
88d1aa9d 603 gdb_assert_not_reached ("unexpected record_full_entry type");
d02ed0bb
MM
604 return NULL;
605 }
606}
607
88d1aa9d 608/* Record the value of a register NUM to record_full_arch_list. */
d02ed0bb
MM
609
610int
25ea693b 611record_full_arch_list_add_reg (struct regcache *regcache, int regnum)
d02ed0bb 612{
88d1aa9d 613 struct record_full_entry *rec;
d02ed0bb
MM
614
615 if (record_debug > 1)
616 fprintf_unfiltered (gdb_stdlog,
617 "Process record: add register num = %d to "
618 "record list.\n",
619 regnum);
620
88d1aa9d 621 rec = record_full_reg_alloc (regcache, regnum);
d02ed0bb 622
88d1aa9d 623 regcache_raw_read (regcache, regnum, record_full_get_loc (rec));
d02ed0bb 624
88d1aa9d 625 record_full_arch_list_add (rec);
d02ed0bb
MM
626
627 return 0;
628}
629
630/* Record the value of a region of memory whose address is ADDR and
88d1aa9d 631 length is LEN to record_full_arch_list. */
d02ed0bb
MM
632
633int
25ea693b 634record_full_arch_list_add_mem (CORE_ADDR addr, int len)
d02ed0bb 635{
88d1aa9d 636 struct record_full_entry *rec;
d02ed0bb
MM
637
638 if (record_debug > 1)
639 fprintf_unfiltered (gdb_stdlog,
640 "Process record: add mem addr = %s len = %d to "
641 "record list.\n",
642 paddress (target_gdbarch (), addr), len);
643
644 if (!addr) /* FIXME: Why? Some arch must permit it... */
645 return 0;
646
88d1aa9d 647 rec = record_full_mem_alloc (addr, len);
d02ed0bb 648
88d1aa9d
MM
649 if (record_read_memory (target_gdbarch (), addr,
650 record_full_get_loc (rec), len))
d02ed0bb 651 {
88d1aa9d 652 record_full_mem_release (rec);
d02ed0bb
MM
653 return -1;
654 }
655
88d1aa9d 656 record_full_arch_list_add (rec);
d02ed0bb
MM
657
658 return 0;
659}
660
88d1aa9d
MM
661/* Add a record_full_end type struct record_full_entry to
662 record_full_arch_list. */
d02ed0bb
MM
663
664int
25ea693b 665record_full_arch_list_add_end (void)
d02ed0bb 666{
88d1aa9d 667 struct record_full_entry *rec;
d02ed0bb
MM
668
669 if (record_debug > 1)
670 fprintf_unfiltered (gdb_stdlog,
671 "Process record: add end to arch list.\n");
672
88d1aa9d 673 rec = record_full_end_alloc ();
d02ed0bb 674 rec->u.end.sigval = GDB_SIGNAL_0;
88d1aa9d 675 rec->u.end.insn_num = ++record_full_insn_count;
d02ed0bb 676
88d1aa9d 677 record_full_arch_list_add (rec);
d02ed0bb
MM
678
679 return 0;
680}
681
682static void
651ce16a 683record_full_check_insn_num (void)
d02ed0bb 684{
7ee70bf5 685 if (record_full_insn_num == record_full_insn_max_num)
d02ed0bb 686 {
7ee70bf5
PA
687 /* Ask user what to do. */
688 if (record_full_stop_at_limit)
d02ed0bb 689 {
651ce16a 690 if (!yquery (_("Do you want to auto delete previous execution "
7ee70bf5 691 "log entries when record/replay buffer becomes "
651ce16a 692 "full (record full stop-at-limit)?")))
7ee70bf5 693 error (_("Process record: stopped by user."));
651ce16a 694 record_full_stop_at_limit = 0;
d02ed0bb
MM
695 }
696 }
697}
698
699static void
88d1aa9d 700record_full_arch_list_cleanups (void *ignore)
d02ed0bb 701{
88d1aa9d 702 record_full_list_release (record_full_arch_list_tail);
d02ed0bb
MM
703}
704
705/* Before inferior step (when GDB record the running message, inferior
706 only can step), GDB will call this function to record the values to
88d1aa9d 707 record_full_list. This function will call gdbarch_process_record to
d02ed0bb 708 record the running message of inferior and set them to
88d1aa9d 709 record_full_arch_list, and add it to record_full_list. */
d02ed0bb 710
bf469271 711static void
88d1aa9d 712record_full_message (struct regcache *regcache, enum gdb_signal signal)
d02ed0bb
MM
713{
714 int ret;
ac7936df 715 struct gdbarch *gdbarch = regcache->arch ();
88d1aa9d
MM
716 struct cleanup *old_cleanups
717 = make_cleanup (record_full_arch_list_cleanups, 0);
d02ed0bb 718
88d1aa9d
MM
719 record_full_arch_list_head = NULL;
720 record_full_arch_list_tail = NULL;
d02ed0bb 721
88d1aa9d 722 /* Check record_full_insn_num. */
651ce16a 723 record_full_check_insn_num ();
d02ed0bb
MM
724
725 /* If gdb sends a signal value to target_resume,
726 save it in the 'end' field of the previous instruction.
727
728 Maybe process record should record what really happened,
729 rather than what gdb pretends has happened.
730
731 So if Linux delivered the signal to the child process during
732 the record mode, we will record it and deliver it again in
733 the replay mode.
734
735 If user says "ignore this signal" during the record mode, then
736 it will be ignored again during the replay mode (no matter if
737 the user says something different, like "deliver this signal"
738 during the replay mode).
739
740 User should understand that nothing he does during the replay
741 mode will change the behavior of the child. If he tries,
742 then that is a user error.
743
744 But we should still deliver the signal to gdb during the replay,
745 if we delivered it during the recording. Therefore we should
88d1aa9d
MM
746 record the signal during record_full_wait, not
747 record_full_resume. */
748 if (record_full_list != &record_full_first) /* FIXME better way to check */
d02ed0bb 749 {
88d1aa9d
MM
750 gdb_assert (record_full_list->type == record_full_end);
751 record_full_list->u.end.sigval = signal;
d02ed0bb
MM
752 }
753
754 if (signal == GDB_SIGNAL_0
755 || !gdbarch_process_record_signal_p (gdbarch))
756 ret = gdbarch_process_record (gdbarch,
757 regcache,
758 regcache_read_pc (regcache));
759 else
760 ret = gdbarch_process_record_signal (gdbarch,
761 regcache,
762 signal);
763
764 if (ret > 0)
765 error (_("Process record: inferior program stopped."));
766 if (ret < 0)
767 error (_("Process record: failed to record execution log."));
768
769 discard_cleanups (old_cleanups);
770
88d1aa9d
MM
771 record_full_list->next = record_full_arch_list_head;
772 record_full_arch_list_head->prev = record_full_list;
773 record_full_list = record_full_arch_list_tail;
d02ed0bb 774
7ee70bf5 775 if (record_full_insn_num == record_full_insn_max_num)
88d1aa9d 776 record_full_list_release_first ();
d02ed0bb 777 else
88d1aa9d 778 record_full_insn_num++;
d02ed0bb
MM
779}
780
bf469271 781static bool
88d1aa9d
MM
782record_full_message_wrapper_safe (struct regcache *regcache,
783 enum gdb_signal signal)
d02ed0bb 784{
bf469271
PA
785 TRY
786 {
787 record_full_message (regcache, signal);
788 }
789 CATCH (ex, RETURN_MASK_ALL)
790 {
791 exception_print (gdb_stderr, ex);
792 return false;
793 }
794 END_CATCH
d02ed0bb 795
bf469271 796 return true;
d02ed0bb
MM
797}
798
88d1aa9d 799/* Set to 1 if record_full_store_registers and record_full_xfer_partial
d02ed0bb
MM
800 doesn't need record. */
801
88d1aa9d 802static int record_full_gdb_operation_disable = 0;
d02ed0bb 803
07036511 804scoped_restore_tmpl<int>
25ea693b 805record_full_gdb_operation_disable_set (void)
d02ed0bb 806{
07036511 807 return make_scoped_restore (&record_full_gdb_operation_disable, 1);
d02ed0bb
MM
808}
809
810/* Flag set to TRUE for target_stopped_by_watchpoint. */
9e8915c6
PA
811static enum target_stop_reason record_full_stop_reason
812 = TARGET_STOPPED_BY_NO_REASON;
d02ed0bb
MM
813
814/* Execute one instruction from the record log. Each instruction in
815 the log will be represented by an arbitrary sequence of register
816 entries and memory entries, followed by an 'end' entry. */
817
818static inline void
88d1aa9d
MM
819record_full_exec_insn (struct regcache *regcache,
820 struct gdbarch *gdbarch,
821 struct record_full_entry *entry)
d02ed0bb
MM
822{
823 switch (entry->type)
824 {
88d1aa9d 825 case record_full_reg: /* reg */
d02ed0bb 826 {
d7dcbefc 827 gdb::byte_vector reg (entry->u.reg.len);
d02ed0bb
MM
828
829 if (record_debug > 1)
830 fprintf_unfiltered (gdb_stdlog,
88d1aa9d 831 "Process record: record_full_reg %s to "
d02ed0bb
MM
832 "inferior num = %d.\n",
833 host_address_to_string (entry),
834 entry->u.reg.num);
835
d7dcbefc 836 regcache_cooked_read (regcache, entry->u.reg.num, reg.data ());
d02ed0bb 837 regcache_cooked_write (regcache, entry->u.reg.num,
88d1aa9d 838 record_full_get_loc (entry));
d7dcbefc 839 memcpy (record_full_get_loc (entry), reg.data (), entry->u.reg.len);
d02ed0bb
MM
840 }
841 break;
842
88d1aa9d 843 case record_full_mem: /* mem */
d02ed0bb
MM
844 {
845 /* Nothing to do if the entry is flagged not_accessible. */
846 if (!entry->u.mem.mem_entry_not_accessible)
847 {
a2b2bc12 848 gdb::byte_vector mem (entry->u.mem.len);
d02ed0bb
MM
849
850 if (record_debug > 1)
851 fprintf_unfiltered (gdb_stdlog,
88d1aa9d 852 "Process record: record_full_mem %s to "
d02ed0bb
MM
853 "inferior addr = %s len = %d.\n",
854 host_address_to_string (entry),
855 paddress (gdbarch, entry->u.mem.addr),
856 entry->u.mem.len);
857
858 if (record_read_memory (gdbarch,
a2b2bc12
TT
859 entry->u.mem.addr, mem.data (),
860 entry->u.mem.len))
d02ed0bb
MM
861 entry->u.mem.mem_entry_not_accessible = 1;
862 else
863 {
864 if (target_write_memory (entry->u.mem.addr,
88d1aa9d 865 record_full_get_loc (entry),
d02ed0bb
MM
866 entry->u.mem.len))
867 {
868 entry->u.mem.mem_entry_not_accessible = 1;
869 if (record_debug)
870 warning (_("Process record: error writing memory at "
871 "addr = %s len = %d."),
872 paddress (gdbarch, entry->u.mem.addr),
873 entry->u.mem.len);
874 }
875 else
876 {
a2b2bc12 877 memcpy (record_full_get_loc (entry), mem.data (),
88d1aa9d 878 entry->u.mem.len);
d02ed0bb
MM
879
880 /* We've changed memory --- check if a hardware
881 watchpoint should trap. Note that this
882 presently assumes the target beneath supports
883 continuable watchpoints. On non-continuable
884 watchpoints target, we'll want to check this
885 _before_ actually doing the memory change, and
886 not doing the change at all if the watchpoint
887 traps. */
888 if (hardware_watchpoint_inserted_in_range
a01bda52 889 (regcache->aspace (),
d02ed0bb 890 entry->u.mem.addr, entry->u.mem.len))
9e8915c6 891 record_full_stop_reason = TARGET_STOPPED_BY_WATCHPOINT;
d02ed0bb
MM
892 }
893 }
894 }
895 }
896 break;
897 }
898}
899
88d1aa9d 900static void record_full_restore (void);
d02ed0bb
MM
901
902/* Asynchronous signal handle registered as event loop source for when
903 we have pending events ready to be passed to the core. */
904
88d1aa9d 905static struct async_event_handler *record_full_async_inferior_event_token;
d02ed0bb
MM
906
907static void
88d1aa9d 908record_full_async_inferior_event_handler (gdb_client_data data)
d02ed0bb
MM
909{
910 inferior_event_handler (INF_REG_EVENT, NULL);
911}
912
d9f719f1 913/* Open the process record target for 'core' files. */
d02ed0bb
MM
914
915static void
014f9477 916record_full_core_open_1 (const char *name, int from_tty)
d02ed0bb
MM
917{
918 struct regcache *regcache = get_current_regcache ();
ac7936df 919 int regnum = gdbarch_num_regs (regcache->arch ());
d02ed0bb
MM
920 int i;
921
88d1aa9d 922 /* Get record_full_core_regbuf. */
d02ed0bb 923 target_fetch_registers (regcache, -1);
c8ec2f33
YQ
924 record_full_core_regbuf = new detached_regcache (regcache->arch (), false);
925
d02ed0bb 926 for (i = 0; i < regnum; i ++)
c8ec2f33 927 record_full_core_regbuf->raw_supply (i, *regcache);
d02ed0bb 928
88d1aa9d
MM
929 /* Get record_full_core_start and record_full_core_end. */
930 if (build_section_table (core_bfd, &record_full_core_start,
931 &record_full_core_end))
d02ed0bb 932 {
c8ec2f33 933 delete record_full_core_regbuf;
88d1aa9d 934 record_full_core_regbuf = NULL;
d02ed0bb
MM
935 error (_("\"%s\": Can't find sections: %s"),
936 bfd_get_filename (core_bfd), bfd_errmsg (bfd_get_error ()));
937 }
938
88d1aa9d
MM
939 push_target (&record_full_core_ops);
940 record_full_restore ();
d02ed0bb
MM
941}
942
d9f719f1 943/* Open the process record target for 'live' processes. */
d02ed0bb
MM
944
945static void
014f9477 946record_full_open_1 (const char *name, int from_tty)
d02ed0bb
MM
947{
948 if (record_debug)
0a0640e3 949 fprintf_unfiltered (gdb_stdlog, "Process record: record_full_open_1\n");
d02ed0bb
MM
950
951 /* check exec */
952 if (!target_has_execution)
953 error (_("Process record: the program is not being run."));
954 if (non_stop)
955 error (_("Process record target can't debug inferior in non-stop mode "
956 "(non-stop)."));
957
958 if (!gdbarch_process_record_p (target_gdbarch ()))
959 error (_("Process record: the current architecture doesn't support "
960 "record function."));
961
88d1aa9d 962 push_target (&record_full_ops);
d02ed0bb
MM
963}
964
88d1aa9d 965static void record_full_init_record_breakpoints (void);
d02ed0bb 966
d9f719f1 967/* Open the process record target. */
d02ed0bb 968
d9f719f1
PA
969static void
970record_full_open (const char *name, int from_tty)
d02ed0bb 971{
d02ed0bb 972 if (record_debug)
88d1aa9d 973 fprintf_unfiltered (gdb_stdlog, "Process record: record_full_open\n");
d02ed0bb 974
8213266a 975 record_preopen ();
d02ed0bb 976
d02ed0bb 977 /* Reset */
88d1aa9d
MM
978 record_full_insn_num = 0;
979 record_full_insn_count = 0;
980 record_full_list = &record_full_first;
981 record_full_list->next = NULL;
d02ed0bb 982
d02ed0bb 983 if (core_bfd)
88d1aa9d 984 record_full_core_open_1 (name, from_tty);
d02ed0bb 985 else
88d1aa9d 986 record_full_open_1 (name, from_tty);
d02ed0bb
MM
987
988 /* Register extra event sources in the event loop. */
88d1aa9d
MM
989 record_full_async_inferior_event_token
990 = create_async_event_handler (record_full_async_inferior_event_handler,
d02ed0bb
MM
991 NULL);
992
88d1aa9d 993 record_full_init_record_breakpoints ();
d02ed0bb 994
76727919 995 gdb::observers::record_changed.notify (current_inferior (), 1, "full", NULL);
d02ed0bb
MM
996}
997
f6ac5f3d 998/* "close" target method. Close the process record target. */
d02ed0bb 999
f6ac5f3d
PA
1000void
1001record_full_base_target::close ()
d02ed0bb 1002{
88d1aa9d 1003 struct record_full_core_buf_entry *entry;
d02ed0bb
MM
1004
1005 if (record_debug)
88d1aa9d 1006 fprintf_unfiltered (gdb_stdlog, "Process record: record_full_close\n");
d02ed0bb 1007
88d1aa9d 1008 record_full_list_release (record_full_list);
d02ed0bb 1009
88d1aa9d
MM
1010 /* Release record_full_core_regbuf. */
1011 if (record_full_core_regbuf)
d02ed0bb 1012 {
c8ec2f33 1013 delete record_full_core_regbuf;
88d1aa9d 1014 record_full_core_regbuf = NULL;
d02ed0bb
MM
1015 }
1016
88d1aa9d
MM
1017 /* Release record_full_core_buf_list. */
1018 if (record_full_core_buf_list)
d02ed0bb 1019 {
88d1aa9d
MM
1020 for (entry = record_full_core_buf_list->prev; entry;
1021 entry = entry->prev)
d02ed0bb 1022 {
88d1aa9d
MM
1023 xfree (record_full_core_buf_list);
1024 record_full_core_buf_list = entry;
d02ed0bb 1025 }
88d1aa9d 1026 record_full_core_buf_list = NULL;
d02ed0bb
MM
1027 }
1028
88d1aa9d
MM
1029 if (record_full_async_inferior_event_token)
1030 delete_async_event_handler (&record_full_async_inferior_event_token);
d02ed0bb
MM
1031}
1032
f6ac5f3d 1033/* "async" target method. */
b7d2e916 1034
f6ac5f3d
PA
1035void
1036record_full_base_target::async (int enable)
b7d2e916 1037{
6a3753b3 1038 if (enable)
b7d2e916
PA
1039 mark_async_event_handler (record_full_async_inferior_event_token);
1040 else
1041 clear_async_event_handler (record_full_async_inferior_event_token);
1042
f6ac5f3d 1043 beneath->async (enable);
b7d2e916
PA
1044}
1045
88d1aa9d 1046static int record_full_resume_step = 0;
d02ed0bb 1047
88d1aa9d
MM
1048/* True if we've been resumed, and so each record_full_wait call should
1049 advance execution. If this is false, record_full_wait will return a
d02ed0bb 1050 TARGET_WAITKIND_IGNORE. */
88d1aa9d 1051static int record_full_resumed = 0;
d02ed0bb
MM
1052
1053/* The execution direction of the last resume we got. This is
1054 necessary for async mode. Vis (order is not strictly accurate):
1055
1056 1. user has the global execution direction set to forward
1057 2. user does a reverse-step command
88d1aa9d 1058 3. record_full_resume is called with global execution direction
d02ed0bb
MM
1059 temporarily switched to reverse
1060 4. GDB's execution direction is reverted back to forward
1061 5. target record notifies event loop there's an event to handle
1062 6. infrun asks the target which direction was it going, and switches
1063 the global execution direction accordingly (to reverse)
1064 7. infrun polls an event out of the record target, and handles it
1065 8. GDB goes back to the event loop, and goto #4.
1066*/
88d1aa9d 1067static enum exec_direction_kind record_full_execution_dir = EXEC_FORWARD;
d02ed0bb 1068
f6ac5f3d 1069/* "resume" target method. Resume the process record target. */
d02ed0bb 1070
f6ac5f3d
PA
1071void
1072record_full_target::resume (ptid_t ptid, int step, enum gdb_signal signal)
d02ed0bb 1073{
88d1aa9d
MM
1074 record_full_resume_step = step;
1075 record_full_resumed = 1;
f6ac5f3d 1076 record_full_execution_dir = ::execution_direction;
d02ed0bb 1077
88d1aa9d 1078 if (!RECORD_FULL_IS_REPLAY)
d02ed0bb
MM
1079 {
1080 struct gdbarch *gdbarch = target_thread_architecture (ptid);
1081
88d1aa9d 1082 record_full_message (get_current_regcache (), signal);
d02ed0bb
MM
1083
1084 if (!step)
1085 {
1086 /* This is not hard single step. */
1087 if (!gdbarch_software_single_step_p (gdbarch))
1088 {
1089 /* This is a normal continue. */
1090 step = 1;
1091 }
1092 else
1093 {
8ce9efb0 1094 /* This arch supports soft single step. */
34b7e8a6 1095 if (thread_has_single_step_breakpoints_set (inferior_thread ()))
d02ed0bb
MM
1096 {
1097 /* This is a soft single step. */
88d1aa9d 1098 record_full_resume_step = 1;
d02ed0bb
MM
1099 }
1100 else
93f9a11f 1101 step = !insert_single_step_breakpoints (gdbarch);
d02ed0bb
MM
1102 }
1103 }
1104
1105 /* Make sure the target beneath reports all signals. */
1106 target_pass_signals (0, NULL);
1107
f6ac5f3d 1108 this->beneath->resume (ptid, step, signal);
d02ed0bb
MM
1109 }
1110
1111 /* We are about to start executing the inferior (or simulate it),
1112 let's register it with the event loop. */
1113 if (target_can_async_p ())
6a3753b3 1114 target_async (1);
d02ed0bb
MM
1115}
1116
f6ac5f3d 1117/* "commit_resume" method for process record target. */
85ad3aaf 1118
f6ac5f3d
PA
1119void
1120record_full_target::commit_resume ()
85ad3aaf
PA
1121{
1122 if (!RECORD_FULL_IS_REPLAY)
f6ac5f3d 1123 beneath->commit_resume ();
85ad3aaf
PA
1124}
1125
88d1aa9d 1126static int record_full_get_sig = 0;
d02ed0bb 1127
f6ac5f3d 1128/* SIGINT signal handler, registered by "wait" method. */
d02ed0bb
MM
1129
1130static void
88d1aa9d 1131record_full_sig_handler (int signo)
d02ed0bb
MM
1132{
1133 if (record_debug)
1134 fprintf_unfiltered (gdb_stdlog, "Process record: get a signal\n");
1135
1136 /* It will break the running inferior in replay mode. */
88d1aa9d 1137 record_full_resume_step = 1;
d02ed0bb 1138
88d1aa9d 1139 /* It will let record_full_wait set inferior status to get the signal
d02ed0bb 1140 SIGINT. */
88d1aa9d 1141 record_full_get_sig = 1;
d02ed0bb
MM
1142}
1143
1144static void
88d1aa9d 1145record_full_wait_cleanups (void *ignore)
d02ed0bb
MM
1146{
1147 if (execution_direction == EXEC_REVERSE)
1148 {
88d1aa9d
MM
1149 if (record_full_list->next)
1150 record_full_list = record_full_list->next;
d02ed0bb
MM
1151 }
1152 else
88d1aa9d 1153 record_full_list = record_full_list->prev;
d02ed0bb
MM
1154}
1155
f6ac5f3d 1156/* "wait" target method for process record target.
d02ed0bb
MM
1157
1158 In record mode, the target is always run in singlestep mode
f6ac5f3d 1159 (even when gdb says to continue). The wait method intercepts
d02ed0bb
MM
1160 the stop events and determines which ones are to be passed on to
1161 gdb. Most stop events are just singlestep events that gdb is not
f6ac5f3d 1162 to know about, so the wait method just records them and keeps
d02ed0bb
MM
1163 singlestepping.
1164
1165 In replay mode, this function emulates the recorded execution log,
1166 one instruction at a time (forward or backward), and determines
1167 where to stop. */
1168
1169static ptid_t
88d1aa9d
MM
1170record_full_wait_1 (struct target_ops *ops,
1171 ptid_t ptid, struct target_waitstatus *status,
1172 int options)
d02ed0bb 1173{
07036511
TT
1174 scoped_restore restore_operation_disable
1175 = record_full_gdb_operation_disable_set ();
d02ed0bb
MM
1176
1177 if (record_debug)
1178 fprintf_unfiltered (gdb_stdlog,
88d1aa9d
MM
1179 "Process record: record_full_wait "
1180 "record_full_resume_step = %d, "
1181 "record_full_resumed = %d, direction=%s\n",
1182 record_full_resume_step, record_full_resumed,
1183 record_full_execution_dir == EXEC_FORWARD
1184 ? "forward" : "reverse");
1185
1186 if (!record_full_resumed)
d02ed0bb
MM
1187 {
1188 gdb_assert ((options & TARGET_WNOHANG) != 0);
1189
1190 /* No interesting event. */
1191 status->kind = TARGET_WAITKIND_IGNORE;
1192 return minus_one_ptid;
1193 }
1194
88d1aa9d
MM
1195 record_full_get_sig = 0;
1196 signal (SIGINT, record_full_sig_handler);
d02ed0bb 1197
9e8915c6
PA
1198 record_full_stop_reason = TARGET_STOPPED_BY_NO_REASON;
1199
88d1aa9d 1200 if (!RECORD_FULL_IS_REPLAY && ops != &record_full_core_ops)
d02ed0bb 1201 {
88d1aa9d 1202 if (record_full_resume_step)
d02ed0bb
MM
1203 {
1204 /* This is a single step. */
f6ac5f3d 1205 return ops->beneath->wait (ptid, status, options);
d02ed0bb
MM
1206 }
1207 else
1208 {
1209 /* This is not a single step. */
1210 ptid_t ret;
1211 CORE_ADDR tmp_pc;
1212 struct gdbarch *gdbarch = target_thread_architecture (inferior_ptid);
1213
1214 while (1)
1215 {
34b7e8a6
PA
1216 struct thread_info *tp;
1217
f6ac5f3d 1218 ret = ops->beneath->wait (ptid, status, options);
d02ed0bb
MM
1219 if (status->kind == TARGET_WAITKIND_IGNORE)
1220 {
1221 if (record_debug)
1222 fprintf_unfiltered (gdb_stdlog,
88d1aa9d 1223 "Process record: record_full_wait "
d02ed0bb
MM
1224 "target beneath not done yet\n");
1225 return ret;
1226 }
1227
34b7e8a6
PA
1228 ALL_NON_EXITED_THREADS (tp)
1229 delete_single_step_breakpoints (tp);
d02ed0bb 1230
88d1aa9d 1231 if (record_full_resume_step)
d02ed0bb
MM
1232 return ret;
1233
1234 /* Is this a SIGTRAP? */
1235 if (status->kind == TARGET_WAITKIND_STOPPED
1236 && status->value.sig == GDB_SIGNAL_TRAP)
1237 {
1238 struct regcache *regcache;
9e8915c6
PA
1239 enum target_stop_reason *stop_reason_p
1240 = &record_full_stop_reason;
d02ed0bb
MM
1241
1242 /* Yes -- this is likely our single-step finishing,
1243 but check if there's any reason the core would be
1244 interested in the event. */
1245
1246 registers_changed ();
1247 regcache = get_current_regcache ();
1248 tmp_pc = regcache_read_pc (regcache);
8b86c959 1249 const struct address_space *aspace = regcache->aspace ();
d02ed0bb
MM
1250
1251 if (target_stopped_by_watchpoint ())
1252 {
1253 /* Always interested in watchpoints. */
1254 }
9e8915c6
PA
1255 else if (record_check_stopped_by_breakpoint (aspace, tmp_pc,
1256 stop_reason_p))
d02ed0bb
MM
1257 {
1258 /* There is a breakpoint here. Let the core
1259 handle it. */
d02ed0bb
MM
1260 }
1261 else
1262 {
1263 /* This is a single-step trap. Record the
1264 insn and issue another step.
1265 FIXME: this part can be a random SIGTRAP too.
1266 But GDB cannot handle it. */
1267 int step = 1;
1268
88d1aa9d
MM
1269 if (!record_full_message_wrapper_safe (regcache,
1270 GDB_SIGNAL_0))
d02ed0bb
MM
1271 {
1272 status->kind = TARGET_WAITKIND_STOPPED;
1273 status->value.sig = GDB_SIGNAL_0;
1274 break;
1275 }
1276
1277 if (gdbarch_software_single_step_p (gdbarch))
1278 {
1279 /* Try to insert the software single step breakpoint.
1280 If insert success, set step to 0. */
1281 set_executing (inferior_ptid, 0);
1282 reinit_frame_cache ();
93f9a11f
YQ
1283
1284 step = !insert_single_step_breakpoints (gdbarch);
1285
d02ed0bb
MM
1286 set_executing (inferior_ptid, 1);
1287 }
1288
1289 if (record_debug)
1290 fprintf_unfiltered (gdb_stdlog,
88d1aa9d
MM
1291 "Process record: record_full_wait "
1292 "issuing one more step in the "
1293 "target beneath\n");
f6ac5f3d
PA
1294 ops->beneath->resume (ptid, step, GDB_SIGNAL_0);
1295 ops->beneath->commit_resume ();
d02ed0bb
MM
1296 continue;
1297 }
1298 }
1299
1300 /* The inferior is broken by a breakpoint or a signal. */
1301 break;
1302 }
1303
1304 return ret;
1305 }
1306 }
1307 else
1308 {
1309 struct regcache *regcache = get_current_regcache ();
ac7936df 1310 struct gdbarch *gdbarch = regcache->arch ();
8b86c959 1311 const struct address_space *aspace = regcache->aspace ();
d02ed0bb 1312 int continue_flag = 1;
88d1aa9d
MM
1313 int first_record_full_end = 1;
1314 struct cleanup *old_cleanups
1315 = make_cleanup (record_full_wait_cleanups, 0);
d02ed0bb
MM
1316 CORE_ADDR tmp_pc;
1317
9e8915c6 1318 record_full_stop_reason = TARGET_STOPPED_BY_NO_REASON;
d02ed0bb
MM
1319 status->kind = TARGET_WAITKIND_STOPPED;
1320
1321 /* Check breakpoint when forward execute. */
1322 if (execution_direction == EXEC_FORWARD)
1323 {
1324 tmp_pc = regcache_read_pc (regcache);
9e8915c6
PA
1325 if (record_check_stopped_by_breakpoint (aspace, tmp_pc,
1326 &record_full_stop_reason))
d02ed0bb 1327 {
d02ed0bb
MM
1328 if (record_debug)
1329 fprintf_unfiltered (gdb_stdlog,
1330 "Process record: break at %s.\n",
1331 paddress (gdbarch, tmp_pc));
d02ed0bb
MM
1332 goto replay_out;
1333 }
1334 }
1335
1336 /* If GDB is in terminal_inferior mode, it will not get the signal.
1337 And in GDB replay mode, GDB doesn't need to be in terminal_inferior
1338 mode, because inferior will not executed.
1339 Then set it to terminal_ours to make GDB get the signal. */
223ffa71 1340 target_terminal::ours ();
d02ed0bb 1341
88d1aa9d 1342 /* In EXEC_FORWARD mode, record_full_list points to the tail of prev
d02ed0bb 1343 instruction. */
88d1aa9d
MM
1344 if (execution_direction == EXEC_FORWARD && record_full_list->next)
1345 record_full_list = record_full_list->next;
d02ed0bb 1346
88d1aa9d 1347 /* Loop over the record_full_list, looking for the next place to
d02ed0bb
MM
1348 stop. */
1349 do
1350 {
1351 /* Check for beginning and end of log. */
1352 if (execution_direction == EXEC_REVERSE
88d1aa9d 1353 && record_full_list == &record_full_first)
d02ed0bb
MM
1354 {
1355 /* Hit beginning of record log in reverse. */
1356 status->kind = TARGET_WAITKIND_NO_HISTORY;
1357 break;
1358 }
88d1aa9d 1359 if (execution_direction != EXEC_REVERSE && !record_full_list->next)
d02ed0bb
MM
1360 {
1361 /* Hit end of record log going forward. */
1362 status->kind = TARGET_WAITKIND_NO_HISTORY;
1363 break;
1364 }
1365
88d1aa9d 1366 record_full_exec_insn (regcache, gdbarch, record_full_list);
d02ed0bb 1367
88d1aa9d 1368 if (record_full_list->type == record_full_end)
d02ed0bb
MM
1369 {
1370 if (record_debug > 1)
1371 fprintf_unfiltered (gdb_stdlog,
88d1aa9d 1372 "Process record: record_full_end %s to "
d02ed0bb 1373 "inferior.\n",
88d1aa9d 1374 host_address_to_string (record_full_list));
d02ed0bb 1375
88d1aa9d 1376 if (first_record_full_end && execution_direction == EXEC_REVERSE)
d02ed0bb 1377 {
88d1aa9d
MM
1378 /* When reverse excute, the first record_full_end is the
1379 part of current instruction. */
1380 first_record_full_end = 0;
d02ed0bb
MM
1381 }
1382 else
1383 {
88d1aa9d 1384 /* In EXEC_REVERSE mode, this is the record_full_end of prev
d02ed0bb 1385 instruction.
88d1aa9d
MM
1386 In EXEC_FORWARD mode, this is the record_full_end of
1387 current instruction. */
d02ed0bb 1388 /* step */
88d1aa9d 1389 if (record_full_resume_step)
d02ed0bb
MM
1390 {
1391 if (record_debug > 1)
1392 fprintf_unfiltered (gdb_stdlog,
1393 "Process record: step.\n");
1394 continue_flag = 0;
1395 }
1396
1397 /* check breakpoint */
1398 tmp_pc = regcache_read_pc (regcache);
9e8915c6
PA
1399 if (record_check_stopped_by_breakpoint (aspace, tmp_pc,
1400 &record_full_stop_reason))
d02ed0bb 1401 {
d02ed0bb
MM
1402 if (record_debug)
1403 fprintf_unfiltered (gdb_stdlog,
1404 "Process record: break "
1405 "at %s.\n",
1406 paddress (gdbarch, tmp_pc));
9e8915c6 1407
d02ed0bb
MM
1408 continue_flag = 0;
1409 }
1410
9e8915c6 1411 if (record_full_stop_reason == TARGET_STOPPED_BY_WATCHPOINT)
d02ed0bb
MM
1412 {
1413 if (record_debug)
1414 fprintf_unfiltered (gdb_stdlog,
1415 "Process record: hit hw "
1416 "watchpoint.\n");
1417 continue_flag = 0;
1418 }
1419 /* Check target signal */
88d1aa9d 1420 if (record_full_list->u.end.sigval != GDB_SIGNAL_0)
d02ed0bb
MM
1421 /* FIXME: better way to check */
1422 continue_flag = 0;
1423 }
1424 }
1425
1426 if (continue_flag)
1427 {
1428 if (execution_direction == EXEC_REVERSE)
1429 {
88d1aa9d
MM
1430 if (record_full_list->prev)
1431 record_full_list = record_full_list->prev;
d02ed0bb
MM
1432 }
1433 else
1434 {
88d1aa9d
MM
1435 if (record_full_list->next)
1436 record_full_list = record_full_list->next;
d02ed0bb
MM
1437 }
1438 }
1439 }
1440 while (continue_flag);
1441
1442replay_out:
88d1aa9d 1443 if (record_full_get_sig)
d02ed0bb 1444 status->value.sig = GDB_SIGNAL_INT;
88d1aa9d 1445 else if (record_full_list->u.end.sigval != GDB_SIGNAL_0)
d02ed0bb 1446 /* FIXME: better way to check */
88d1aa9d 1447 status->value.sig = record_full_list->u.end.sigval;
d02ed0bb
MM
1448 else
1449 status->value.sig = GDB_SIGNAL_TRAP;
1450
1451 discard_cleanups (old_cleanups);
1452 }
1453
1454 signal (SIGINT, handle_sigint);
1455
d02ed0bb
MM
1456 return inferior_ptid;
1457}
1458
f6ac5f3d
PA
1459ptid_t
1460record_full_base_target::wait (ptid_t ptid, struct target_waitstatus *status,
1461 int options)
d02ed0bb
MM
1462{
1463 ptid_t return_ptid;
1464
f6ac5f3d 1465 return_ptid = record_full_wait_1 (this, ptid, status, options);
d02ed0bb
MM
1466 if (status->kind != TARGET_WAITKIND_IGNORE)
1467 {
1468 /* We're reporting a stop. Make sure any spurious
1469 target_wait(WNOHANG) doesn't advance the target until the
1470 core wants us resumed again. */
88d1aa9d 1471 record_full_resumed = 0;
d02ed0bb
MM
1472 }
1473 return return_ptid;
1474}
1475
57810aa7 1476bool
f6ac5f3d 1477record_full_base_target::stopped_by_watchpoint ()
d02ed0bb 1478{
88d1aa9d 1479 if (RECORD_FULL_IS_REPLAY)
9e8915c6 1480 return record_full_stop_reason == TARGET_STOPPED_BY_WATCHPOINT;
d02ed0bb 1481 else
f6ac5f3d 1482 return beneath->stopped_by_watchpoint ();
d02ed0bb
MM
1483}
1484
57810aa7 1485bool
f6ac5f3d 1486record_full_base_target::stopped_data_address (CORE_ADDR *addr_p)
d02ed0bb 1487{
88d1aa9d 1488 if (RECORD_FULL_IS_REPLAY)
57810aa7 1489 return false;
d02ed0bb 1490 else
f6ac5f3d 1491 return this->beneath->stopped_data_address (addr_p);
d02ed0bb
MM
1492}
1493
f6ac5f3d 1494/* The stopped_by_sw_breakpoint method of target record-full. */
9e8915c6 1495
57810aa7 1496bool
f6ac5f3d 1497record_full_base_target::stopped_by_sw_breakpoint ()
9e8915c6
PA
1498{
1499 return record_full_stop_reason == TARGET_STOPPED_BY_SW_BREAKPOINT;
1500}
1501
f6ac5f3d 1502/* The supports_stopped_by_sw_breakpoint method of target
9e8915c6
PA
1503 record-full. */
1504
57810aa7 1505bool
f6ac5f3d 1506record_full_base_target::supports_stopped_by_sw_breakpoint ()
9e8915c6 1507{
57810aa7 1508 return true;
9e8915c6
PA
1509}
1510
f6ac5f3d 1511/* The stopped_by_hw_breakpoint method of target record-full. */
9e8915c6 1512
57810aa7 1513bool
f6ac5f3d 1514record_full_base_target::stopped_by_hw_breakpoint ()
9e8915c6
PA
1515{
1516 return record_full_stop_reason == TARGET_STOPPED_BY_HW_BREAKPOINT;
1517}
1518
f6ac5f3d 1519/* The supports_stopped_by_sw_breakpoint method of target
9e8915c6
PA
1520 record-full. */
1521
57810aa7 1522bool
f6ac5f3d 1523record_full_base_target::supports_stopped_by_hw_breakpoint ()
9e8915c6 1524{
57810aa7 1525 return true;
9e8915c6
PA
1526}
1527
d02ed0bb
MM
1528/* Record registers change (by user or by GDB) to list as an instruction. */
1529
1530static void
88d1aa9d 1531record_full_registers_change (struct regcache *regcache, int regnum)
d02ed0bb 1532{
88d1aa9d 1533 /* Check record_full_insn_num. */
651ce16a 1534 record_full_check_insn_num ();
d02ed0bb 1535
88d1aa9d
MM
1536 record_full_arch_list_head = NULL;
1537 record_full_arch_list_tail = NULL;
d02ed0bb
MM
1538
1539 if (regnum < 0)
1540 {
1541 int i;
1542
ac7936df 1543 for (i = 0; i < gdbarch_num_regs (regcache->arch ()); i++)
d02ed0bb 1544 {
25ea693b 1545 if (record_full_arch_list_add_reg (regcache, i))
d02ed0bb 1546 {
88d1aa9d 1547 record_full_list_release (record_full_arch_list_tail);
d02ed0bb
MM
1548 error (_("Process record: failed to record execution log."));
1549 }
1550 }
1551 }
1552 else
1553 {
25ea693b 1554 if (record_full_arch_list_add_reg (regcache, regnum))
d02ed0bb 1555 {
88d1aa9d 1556 record_full_list_release (record_full_arch_list_tail);
d02ed0bb
MM
1557 error (_("Process record: failed to record execution log."));
1558 }
1559 }
25ea693b 1560 if (record_full_arch_list_add_end ())
d02ed0bb 1561 {
88d1aa9d 1562 record_full_list_release (record_full_arch_list_tail);
d02ed0bb
MM
1563 error (_("Process record: failed to record execution log."));
1564 }
88d1aa9d
MM
1565 record_full_list->next = record_full_arch_list_head;
1566 record_full_arch_list_head->prev = record_full_list;
1567 record_full_list = record_full_arch_list_tail;
d02ed0bb 1568
7ee70bf5 1569 if (record_full_insn_num == record_full_insn_max_num)
88d1aa9d 1570 record_full_list_release_first ();
d02ed0bb 1571 else
88d1aa9d 1572 record_full_insn_num++;
d02ed0bb
MM
1573}
1574
f6ac5f3d 1575/* "store_registers" method for process record target. */
d02ed0bb 1576
f6ac5f3d
PA
1577void
1578record_full_target::store_registers (struct regcache *regcache, int regno)
d02ed0bb 1579{
88d1aa9d 1580 if (!record_full_gdb_operation_disable)
d02ed0bb 1581 {
88d1aa9d 1582 if (RECORD_FULL_IS_REPLAY)
d02ed0bb
MM
1583 {
1584 int n;
1585
1586 /* Let user choose if he wants to write register or not. */
1587 if (regno < 0)
1588 n =
1589 query (_("Because GDB is in replay mode, changing the "
1590 "value of a register will make the execution "
1591 "log unusable from this point onward. "
1592 "Change all registers?"));
1593 else
1594 n =
1595 query (_("Because GDB is in replay mode, changing the value "
1596 "of a register will make the execution log unusable "
1597 "from this point onward. Change register %s?"),
ac7936df 1598 gdbarch_register_name (regcache->arch (),
d02ed0bb
MM
1599 regno));
1600
1601 if (!n)
1602 {
1603 /* Invalidate the value of regcache that was set in function
1604 "regcache_raw_write". */
1605 if (regno < 0)
1606 {
1607 int i;
1608
1609 for (i = 0;
ac7936df 1610 i < gdbarch_num_regs (regcache->arch ());
d02ed0bb
MM
1611 i++)
1612 regcache_invalidate (regcache, i);
1613 }
1614 else
1615 regcache_invalidate (regcache, regno);
1616
1617 error (_("Process record canceled the operation."));
1618 }
1619
1620 /* Destroy the record from here forward. */
88d1aa9d 1621 record_full_list_release_following (record_full_list);
d02ed0bb
MM
1622 }
1623
88d1aa9d 1624 record_full_registers_change (regcache, regno);
d02ed0bb 1625 }
f6ac5f3d 1626 this->beneath->store_registers (regcache, regno);
d02ed0bb
MM
1627}
1628
f6ac5f3d 1629/* "xfer_partial" method. Behavior is conditional on
88d1aa9d 1630 RECORD_FULL_IS_REPLAY.
d02ed0bb
MM
1631 In replay mode, we cannot write memory unles we are willing to
1632 invalidate the record/replay log from this point forward. */
1633
f6ac5f3d
PA
1634enum target_xfer_status
1635record_full_target::xfer_partial (enum target_object object,
1636 const char *annex, gdb_byte *readbuf,
1637 const gdb_byte *writebuf, ULONGEST offset,
1638 ULONGEST len, ULONGEST *xfered_len)
d02ed0bb 1639{
88d1aa9d 1640 if (!record_full_gdb_operation_disable
d02ed0bb
MM
1641 && (object == TARGET_OBJECT_MEMORY
1642 || object == TARGET_OBJECT_RAW_MEMORY) && writebuf)
1643 {
88d1aa9d 1644 if (RECORD_FULL_IS_REPLAY)
d02ed0bb
MM
1645 {
1646 /* Let user choose if he wants to write memory or not. */
1647 if (!query (_("Because GDB is in replay mode, writing to memory "
1648 "will make the execution log unusable from this "
1649 "point onward. Write memory at address %s?"),
1650 paddress (target_gdbarch (), offset)))
1651 error (_("Process record canceled the operation."));
1652
1653 /* Destroy the record from here forward. */
88d1aa9d 1654 record_full_list_release_following (record_full_list);
d02ed0bb
MM
1655 }
1656
88d1aa9d 1657 /* Check record_full_insn_num */
651ce16a 1658 record_full_check_insn_num ();
d02ed0bb
MM
1659
1660 /* Record registers change to list as an instruction. */
88d1aa9d
MM
1661 record_full_arch_list_head = NULL;
1662 record_full_arch_list_tail = NULL;
25ea693b 1663 if (record_full_arch_list_add_mem (offset, len))
d02ed0bb 1664 {
88d1aa9d 1665 record_full_list_release (record_full_arch_list_tail);
d02ed0bb
MM
1666 if (record_debug)
1667 fprintf_unfiltered (gdb_stdlog,
1668 "Process record: failed to record "
1669 "execution log.");
2ed4b548 1670 return TARGET_XFER_E_IO;
d02ed0bb 1671 }
25ea693b 1672 if (record_full_arch_list_add_end ())
d02ed0bb 1673 {
88d1aa9d 1674 record_full_list_release (record_full_arch_list_tail);
d02ed0bb
MM
1675 if (record_debug)
1676 fprintf_unfiltered (gdb_stdlog,
1677 "Process record: failed to record "
1678 "execution log.");
2ed4b548 1679 return TARGET_XFER_E_IO;
d02ed0bb 1680 }
88d1aa9d
MM
1681 record_full_list->next = record_full_arch_list_head;
1682 record_full_arch_list_head->prev = record_full_list;
1683 record_full_list = record_full_arch_list_tail;
d02ed0bb 1684
7ee70bf5 1685 if (record_full_insn_num == record_full_insn_max_num)
88d1aa9d 1686 record_full_list_release_first ();
d02ed0bb 1687 else
88d1aa9d 1688 record_full_insn_num++;
d02ed0bb
MM
1689 }
1690
f6ac5f3d
PA
1691 return this->beneath->xfer_partial (object, annex, readbuf, writebuf, offset,
1692 len, xfered_len);
d02ed0bb
MM
1693}
1694
1695/* This structure represents a breakpoint inserted while the record
1696 target is active. We use this to know when to install/remove
1697 breakpoints in/from the target beneath. For example, a breakpoint
1698 may be inserted while recording, but removed when not replaying nor
1699 recording. In that case, the breakpoint had not been inserted on
1700 the target beneath, so we should not try to remove it there. */
1701
88d1aa9d 1702struct record_full_breakpoint
d02ed0bb
MM
1703{
1704 /* The address and address space the breakpoint was set at. */
1705 struct address_space *address_space;
1706 CORE_ADDR addr;
1707
1708 /* True when the breakpoint has been also installed in the target
1709 beneath. This will be false for breakpoints set during replay or
1710 when recording. */
1711 int in_target_beneath;
1712};
1713
88d1aa9d
MM
1714typedef struct record_full_breakpoint *record_full_breakpoint_p;
1715DEF_VEC_P(record_full_breakpoint_p);
d02ed0bb
MM
1716
1717/* The list of breakpoints inserted while the record target is
1718 active. */
88d1aa9d 1719VEC(record_full_breakpoint_p) *record_full_breakpoints = NULL;
d02ed0bb
MM
1720
1721static void
88d1aa9d 1722record_full_sync_record_breakpoints (struct bp_location *loc, void *data)
d02ed0bb
MM
1723{
1724 if (loc->loc_type != bp_loc_software_breakpoint)
1725 return;
1726
1727 if (loc->inserted)
1728 {
88d1aa9d 1729 struct record_full_breakpoint *bp = XNEW (struct record_full_breakpoint);
d02ed0bb
MM
1730
1731 bp->addr = loc->target_info.placed_address;
1732 bp->address_space = loc->target_info.placed_address_space;
1733
1734 bp->in_target_beneath = 1;
1735
88d1aa9d 1736 VEC_safe_push (record_full_breakpoint_p, record_full_breakpoints, bp);
d02ed0bb
MM
1737 }
1738}
1739
88d1aa9d 1740/* Sync existing breakpoints to record_full_breakpoints. */
d02ed0bb
MM
1741
1742static void
88d1aa9d 1743record_full_init_record_breakpoints (void)
d02ed0bb 1744{
88d1aa9d 1745 VEC_free (record_full_breakpoint_p, record_full_breakpoints);
d02ed0bb 1746
88d1aa9d 1747 iterate_over_bp_locations (record_full_sync_record_breakpoints);
d02ed0bb
MM
1748}
1749
88d1aa9d 1750/* Behavior is conditional on RECORD_FULL_IS_REPLAY. We will not actually
d02ed0bb
MM
1751 insert or remove breakpoints in the real target when replaying, nor
1752 when recording. */
1753
f6ac5f3d
PA
1754int
1755record_full_target::insert_breakpoint (struct gdbarch *gdbarch,
1756 struct bp_target_info *bp_tgt)
d02ed0bb 1757{
88d1aa9d 1758 struct record_full_breakpoint *bp;
d02ed0bb 1759 int in_target_beneath = 0;
e390720b 1760 int ix;
d02ed0bb 1761
88d1aa9d 1762 if (!RECORD_FULL_IS_REPLAY)
d02ed0bb
MM
1763 {
1764 /* When recording, we currently always single-step, so we don't
1765 really need to install regular breakpoints in the inferior.
1766 However, we do have to insert software single-step
1767 breakpoints, in case the target can't hardware step. To keep
f99bd5f2 1768 things simple, we always insert. */
d02ed0bb 1769
07036511
TT
1770 scoped_restore restore_operation_disable
1771 = record_full_gdb_operation_disable_set ();
d02ed0bb 1772
f6ac5f3d 1773 int ret = this->beneath->insert_breakpoint (gdbarch, bp_tgt);
d02ed0bb
MM
1774 if (ret != 0)
1775 return ret;
1776
1777 in_target_beneath = 1;
1778 }
1779
e390720b
YQ
1780 /* Use the existing entries if found in order to avoid duplication
1781 in record_full_breakpoints. */
1782
1783 for (ix = 0;
1784 VEC_iterate (record_full_breakpoint_p,
1785 record_full_breakpoints, ix, bp);
1786 ++ix)
1787 {
1788 if (bp->addr == bp_tgt->placed_address
1789 && bp->address_space == bp_tgt->placed_address_space)
1790 {
1791 gdb_assert (bp->in_target_beneath == in_target_beneath);
1792 return 0;
1793 }
1794 }
1795
88d1aa9d 1796 bp = XNEW (struct record_full_breakpoint);
d02ed0bb
MM
1797 bp->addr = bp_tgt->placed_address;
1798 bp->address_space = bp_tgt->placed_address_space;
1799 bp->in_target_beneath = in_target_beneath;
88d1aa9d 1800 VEC_safe_push (record_full_breakpoint_p, record_full_breakpoints, bp);
d02ed0bb
MM
1801 return 0;
1802}
1803
f6ac5f3d 1804/* "remove_breakpoint" method for process record target. */
d02ed0bb 1805
f6ac5f3d
PA
1806int
1807record_full_target::remove_breakpoint (struct gdbarch *gdbarch,
1808 struct bp_target_info *bp_tgt,
1809 enum remove_bp_reason reason)
d02ed0bb 1810{
88d1aa9d 1811 struct record_full_breakpoint *bp;
d02ed0bb
MM
1812 int ix;
1813
1814 for (ix = 0;
88d1aa9d
MM
1815 VEC_iterate (record_full_breakpoint_p,
1816 record_full_breakpoints, ix, bp);
d02ed0bb
MM
1817 ++ix)
1818 {
1819 if (bp->addr == bp_tgt->placed_address
1820 && bp->address_space == bp_tgt->placed_address_space)
1821 {
1822 if (bp->in_target_beneath)
1823 {
07036511
TT
1824 scoped_restore restore_operation_disable
1825 = record_full_gdb_operation_disable_set ();
f6ac5f3d
PA
1826
1827 int ret = this->beneath->remove_breakpoint (gdbarch, bp_tgt,
1828 reason);
d02ed0bb
MM
1829 if (ret != 0)
1830 return ret;
1831 }
1832
01d3dedf
PA
1833 if (reason == REMOVE_BREAKPOINT)
1834 {
1835 VEC_unordered_remove (record_full_breakpoint_p,
1836 record_full_breakpoints, ix);
1837 }
d02ed0bb
MM
1838 return 0;
1839 }
1840 }
1841
1842 gdb_assert_not_reached ("removing unknown breakpoint");
1843}
1844
f6ac5f3d 1845/* "can_execute_reverse" method for process record target. */
d02ed0bb 1846
57810aa7 1847bool
f6ac5f3d 1848record_full_base_target::can_execute_reverse ()
d02ed0bb 1849{
57810aa7 1850 return true;
d02ed0bb
MM
1851}
1852
f6ac5f3d 1853/* "get_bookmark" method for process record and prec over core. */
d02ed0bb 1854
f6ac5f3d
PA
1855gdb_byte *
1856record_full_base_target::get_bookmark (const char *args, int from_tty)
d02ed0bb 1857{
0f928d68 1858 char *ret = NULL;
d02ed0bb
MM
1859
1860 /* Return stringified form of instruction count. */
88d1aa9d
MM
1861 if (record_full_list && record_full_list->type == record_full_end)
1862 ret = xstrdup (pulongest (record_full_list->u.end.insn_num));
d02ed0bb
MM
1863
1864 if (record_debug)
1865 {
1866 if (ret)
1867 fprintf_unfiltered (gdb_stdlog,
88d1aa9d 1868 "record_full_get_bookmark returns %s\n", ret);
d02ed0bb
MM
1869 else
1870 fprintf_unfiltered (gdb_stdlog,
88d1aa9d 1871 "record_full_get_bookmark returns NULL\n");
d02ed0bb 1872 }
0f928d68 1873 return (gdb_byte *) ret;
d02ed0bb
MM
1874}
1875
f6ac5f3d 1876/* "goto_bookmark" method for process record and prec over core. */
d02ed0bb 1877
f6ac5f3d
PA
1878void
1879record_full_base_target::goto_bookmark (const gdb_byte *raw_bookmark,
1880 int from_tty)
d02ed0bb 1881{
c2bcbb1d 1882 const char *bookmark = (const char *) raw_bookmark;
0f928d68 1883
d02ed0bb
MM
1884 if (record_debug)
1885 fprintf_unfiltered (gdb_stdlog,
88d1aa9d 1886 "record_full_goto_bookmark receives %s\n", bookmark);
d02ed0bb 1887
a2b2bc12 1888 std::string name_holder;
d02ed0bb
MM
1889 if (bookmark[0] == '\'' || bookmark[0] == '\"')
1890 {
1891 if (bookmark[strlen (bookmark) - 1] != bookmark[0])
1892 error (_("Unbalanced quotes: %s"), bookmark);
1893
a2b2bc12
TT
1894 name_holder = std::string (bookmark + 1, strlen (bookmark) - 2);
1895 bookmark = name_holder.c_str ();
d02ed0bb
MM
1896 }
1897
c2bcbb1d 1898 record_goto (bookmark);
d02ed0bb
MM
1899}
1900
f6ac5f3d
PA
1901enum exec_direction_kind
1902record_full_base_target::execution_direction ()
d02ed0bb 1903{
88d1aa9d 1904 return record_full_execution_dir;
d02ed0bb
MM
1905}
1906
f6ac5f3d 1907/* The record_method method of target record-full. */
b158a20f
TW
1908
1909enum record_method
f6ac5f3d 1910record_full_base_target::record_method (ptid_t ptid)
b158a20f
TW
1911{
1912 return RECORD_METHOD_FULL;
1913}
1914
f6ac5f3d
PA
1915void
1916record_full_base_target::info_record ()
d02ed0bb 1917{
88d1aa9d 1918 struct record_full_entry *p;
d02ed0bb 1919
88d1aa9d 1920 if (RECORD_FULL_IS_REPLAY)
d02ed0bb
MM
1921 printf_filtered (_("Replay mode:\n"));
1922 else
1923 printf_filtered (_("Record mode:\n"));
1924
1925 /* Find entry for first actual instruction in the log. */
88d1aa9d
MM
1926 for (p = record_full_first.next;
1927 p != NULL && p->type != record_full_end;
d02ed0bb
MM
1928 p = p->next)
1929 ;
1930
1931 /* Do we have a log at all? */
88d1aa9d 1932 if (p != NULL && p->type == record_full_end)
d02ed0bb
MM
1933 {
1934 /* Display instruction number for first instruction in the log. */
1935 printf_filtered (_("Lowest recorded instruction number is %s.\n"),
1936 pulongest (p->u.end.insn_num));
1937
1938 /* If in replay mode, display where we are in the log. */
88d1aa9d 1939 if (RECORD_FULL_IS_REPLAY)
d02ed0bb 1940 printf_filtered (_("Current instruction number is %s.\n"),
88d1aa9d 1941 pulongest (record_full_list->u.end.insn_num));
d02ed0bb
MM
1942
1943 /* Display instruction number for last instruction in the log. */
1944 printf_filtered (_("Highest recorded instruction number is %s.\n"),
88d1aa9d 1945 pulongest (record_full_insn_count));
d02ed0bb
MM
1946
1947 /* Display log count. */
7ee70bf5 1948 printf_filtered (_("Log contains %u instructions.\n"),
88d1aa9d 1949 record_full_insn_num);
d02ed0bb
MM
1950 }
1951 else
1952 printf_filtered (_("No instructions have been logged.\n"));
1953
1954 /* Display max log size. */
7ee70bf5 1955 printf_filtered (_("Max logged instructions is %u.\n"),
88d1aa9d 1956 record_full_insn_max_num);
d02ed0bb
MM
1957}
1958
f6ac5f3d
PA
1959bool
1960record_full_base_target::supports_delete_record ()
1961{
1962 return true;
1963}
d02ed0bb 1964
f6ac5f3d
PA
1965/* The "delete_record" target method. */
1966
1967void
1968record_full_base_target::delete_record ()
d02ed0bb 1969{
88d1aa9d 1970 record_full_list_release_following (record_full_list);
d02ed0bb
MM
1971}
1972
f6ac5f3d 1973/* The "record_is_replaying" target method. */
d02ed0bb 1974
57810aa7 1975bool
f6ac5f3d 1976record_full_base_target::record_is_replaying (ptid_t ptid)
d02ed0bb 1977{
88d1aa9d 1978 return RECORD_FULL_IS_REPLAY;
d02ed0bb
MM
1979}
1980
f6ac5f3d 1981/* The "record_will_replay" target method. */
7ff27e9b 1982
57810aa7 1983bool
f6ac5f3d 1984record_full_base_target::record_will_replay (ptid_t ptid, int dir)
7ff27e9b
MM
1985{
1986 /* We can currently only record when executing forwards. Should we be able
1987 to record when executing backwards on targets that support reverse
1988 execution, this needs to be changed. */
1989
1990 return RECORD_FULL_IS_REPLAY || dir == EXEC_REVERSE;
1991}
1992
d02ed0bb
MM
1993/* Go to a specific entry. */
1994
1995static void
88d1aa9d 1996record_full_goto_entry (struct record_full_entry *p)
d02ed0bb
MM
1997{
1998 if (p == NULL)
1999 error (_("Target insn not found."));
88d1aa9d 2000 else if (p == record_full_list)
d02ed0bb 2001 error (_("Already at target insn."));
88d1aa9d 2002 else if (p->u.end.insn_num > record_full_list->u.end.insn_num)
d02ed0bb
MM
2003 {
2004 printf_filtered (_("Go forward to insn number %s\n"),
2005 pulongest (p->u.end.insn_num));
88d1aa9d 2006 record_full_goto_insn (p, EXEC_FORWARD);
d02ed0bb
MM
2007 }
2008 else
2009 {
2010 printf_filtered (_("Go backward to insn number %s\n"),
2011 pulongest (p->u.end.insn_num));
88d1aa9d 2012 record_full_goto_insn (p, EXEC_REVERSE);
d02ed0bb
MM
2013 }
2014
2015 registers_changed ();
2016 reinit_frame_cache ();
485668e5 2017 stop_pc = regcache_read_pc (get_current_regcache ());
08d72866 2018 print_stack_frame (get_selected_frame (NULL), 1, SRC_AND_LOC, 1);
d02ed0bb
MM
2019}
2020
f6ac5f3d 2021/* The "goto_record_begin" target method. */
d02ed0bb 2022
f6ac5f3d
PA
2023void
2024record_full_base_target::goto_record_begin ()
d02ed0bb 2025{
88d1aa9d 2026 struct record_full_entry *p = NULL;
d02ed0bb 2027
88d1aa9d
MM
2028 for (p = &record_full_first; p != NULL; p = p->next)
2029 if (p->type == record_full_end)
d02ed0bb
MM
2030 break;
2031
88d1aa9d 2032 record_full_goto_entry (p);
d02ed0bb
MM
2033}
2034
f6ac5f3d 2035/* The "goto_record_end" target method. */
d02ed0bb 2036
f6ac5f3d
PA
2037void
2038record_full_base_target::goto_record_end ()
d02ed0bb 2039{
88d1aa9d 2040 struct record_full_entry *p = NULL;
d02ed0bb 2041
88d1aa9d 2042 for (p = record_full_list; p->next != NULL; p = p->next)
d02ed0bb
MM
2043 ;
2044 for (; p!= NULL; p = p->prev)
88d1aa9d 2045 if (p->type == record_full_end)
d02ed0bb
MM
2046 break;
2047
88d1aa9d 2048 record_full_goto_entry (p);
d02ed0bb
MM
2049}
2050
f6ac5f3d 2051/* The "goto_record" target method. */
d02ed0bb 2052
f6ac5f3d
PA
2053void
2054record_full_base_target::goto_record (ULONGEST target_insn)
d02ed0bb 2055{
88d1aa9d 2056 struct record_full_entry *p = NULL;
d02ed0bb 2057
88d1aa9d
MM
2058 for (p = &record_full_first; p != NULL; p = p->next)
2059 if (p->type == record_full_end && p->u.end.insn_num == target_insn)
d02ed0bb
MM
2060 break;
2061
88d1aa9d 2062 record_full_goto_entry (p);
d02ed0bb
MM
2063}
2064
f6ac5f3d 2065/* The "record_stop_replaying" target method. */
797094dd 2066
f6ac5f3d
PA
2067void
2068record_full_base_target::record_stop_replaying ()
797094dd 2069{
f6ac5f3d 2070 goto_record_end ();
797094dd
MM
2071}
2072
f6ac5f3d 2073/* "resume" method for prec over corefile. */
d02ed0bb 2074
f6ac5f3d
PA
2075void
2076record_full_core_target::resume (ptid_t ptid, int step,
2077 enum gdb_signal signal)
d02ed0bb 2078{
88d1aa9d
MM
2079 record_full_resume_step = step;
2080 record_full_resumed = 1;
f6ac5f3d 2081 record_full_execution_dir = ::execution_direction;
d02ed0bb
MM
2082
2083 /* We are about to start executing the inferior (or simulate it),
2084 let's register it with the event loop. */
2085 if (target_can_async_p ())
6a3753b3 2086 target_async (1);
d02ed0bb
MM
2087}
2088
f6ac5f3d 2089/* "kill" method for prec over corefile. */
d02ed0bb 2090
f6ac5f3d
PA
2091void
2092record_full_core_target::kill ()
d02ed0bb
MM
2093{
2094 if (record_debug)
88d1aa9d 2095 fprintf_unfiltered (gdb_stdlog, "Process record: record_full_core_kill\n");
d02ed0bb 2096
f6ac5f3d 2097 unpush_target (this);
d02ed0bb
MM
2098}
2099
f6ac5f3d 2100/* "fetch_registers" method for prec over corefile. */
d02ed0bb 2101
f6ac5f3d
PA
2102void
2103record_full_core_target::fetch_registers (struct regcache *regcache,
2104 int regno)
d02ed0bb
MM
2105{
2106 if (regno < 0)
2107 {
ac7936df 2108 int num = gdbarch_num_regs (regcache->arch ());
d02ed0bb
MM
2109 int i;
2110
2111 for (i = 0; i < num; i ++)
c8ec2f33 2112 regcache->raw_supply (i, *record_full_core_regbuf);
d02ed0bb
MM
2113 }
2114 else
c8ec2f33 2115 regcache->raw_supply (regno, *record_full_core_regbuf);
d02ed0bb
MM
2116}
2117
f6ac5f3d 2118/* "prepare_to_store" method for prec over corefile. */
d02ed0bb 2119
f6ac5f3d
PA
2120void
2121record_full_core_target::prepare_to_store (struct regcache *regcache)
d02ed0bb
MM
2122{
2123}
2124
f6ac5f3d 2125/* "store_registers" method for prec over corefile. */
d02ed0bb 2126
f6ac5f3d
PA
2127void
2128record_full_core_target::store_registers (struct regcache *regcache,
2129 int regno)
d02ed0bb 2130{
88d1aa9d 2131 if (record_full_gdb_operation_disable)
c8ec2f33 2132 record_full_core_regbuf->raw_supply (regno, *regcache);
d02ed0bb
MM
2133 else
2134 error (_("You can't do that without a process to debug."));
2135}
2136
f6ac5f3d 2137/* "xfer_partial" method for prec over corefile. */
d02ed0bb 2138
f6ac5f3d
PA
2139enum target_xfer_status
2140record_full_core_target::xfer_partial (enum target_object object,
2141 const char *annex, gdb_byte *readbuf,
2142 const gdb_byte *writebuf, ULONGEST offset,
2143 ULONGEST len, ULONGEST *xfered_len)
d02ed0bb
MM
2144{
2145 if (object == TARGET_OBJECT_MEMORY)
2146 {
88d1aa9d 2147 if (record_full_gdb_operation_disable || !writebuf)
d02ed0bb
MM
2148 {
2149 struct target_section *p;
2150
88d1aa9d 2151 for (p = record_full_core_start; p < record_full_core_end; p++)
d02ed0bb
MM
2152 {
2153 if (offset >= p->addr)
2154 {
88d1aa9d 2155 struct record_full_core_buf_entry *entry;
d02ed0bb
MM
2156 ULONGEST sec_offset;
2157
2158 if (offset >= p->endaddr)
2159 continue;
2160
2161 if (offset + len > p->endaddr)
2162 len = p->endaddr - offset;
2163
2164 sec_offset = offset - p->addr;
2165
2166 /* Read readbuf or write writebuf p, offset, len. */
2167 /* Check flags. */
2168 if (p->the_bfd_section->flags & SEC_CONSTRUCTOR
2169 || (p->the_bfd_section->flags & SEC_HAS_CONTENTS) == 0)
2170 {
2171 if (readbuf)
2172 memset (readbuf, 0, len);
9b409511
YQ
2173
2174 *xfered_len = len;
2175 return TARGET_XFER_OK;
d02ed0bb 2176 }
88d1aa9d
MM
2177 /* Get record_full_core_buf_entry. */
2178 for (entry = record_full_core_buf_list; entry;
d02ed0bb
MM
2179 entry = entry->prev)
2180 if (entry->p == p)
2181 break;
2182 if (writebuf)
2183 {
2184 if (!entry)
2185 {
2186 /* Add a new entry. */
8d749320 2187 entry = XNEW (struct record_full_core_buf_entry);
d02ed0bb 2188 entry->p = p;
2b2848e2
DE
2189 if (!bfd_malloc_and_get_section
2190 (p->the_bfd_section->owner,
2191 p->the_bfd_section,
2192 &entry->buf))
d02ed0bb
MM
2193 {
2194 xfree (entry);
9b409511 2195 return TARGET_XFER_EOF;
d02ed0bb 2196 }
88d1aa9d
MM
2197 entry->prev = record_full_core_buf_list;
2198 record_full_core_buf_list = entry;
d02ed0bb
MM
2199 }
2200
2201 memcpy (entry->buf + sec_offset, writebuf,
2202 (size_t) len);
2203 }
2204 else
2205 {
2206 if (!entry)
f6ac5f3d
PA
2207 return this->beneath->xfer_partial (object, annex,
2208 readbuf, writebuf,
2209 offset, len,
2210 xfered_len);
d02ed0bb
MM
2211
2212 memcpy (readbuf, entry->buf + sec_offset,
2213 (size_t) len);
2214 }
2215
9b409511
YQ
2216 *xfered_len = len;
2217 return TARGET_XFER_OK;
d02ed0bb
MM
2218 }
2219 }
2220
2ed4b548 2221 return TARGET_XFER_E_IO;
d02ed0bb
MM
2222 }
2223 else
2224 error (_("You can't do that without a process to debug."));
2225 }
2226
f6ac5f3d
PA
2227 return this->beneath->xfer_partial (object, annex,
2228 readbuf, writebuf, offset, len,
2229 xfered_len);
d02ed0bb
MM
2230}
2231
f6ac5f3d 2232/* "insert_breakpoint" method for prec over corefile. */
d02ed0bb 2233
f6ac5f3d
PA
2234int
2235record_full_core_target::insert_breakpoint (struct gdbarch *gdbarch,
2236 struct bp_target_info *bp_tgt)
d02ed0bb
MM
2237{
2238 return 0;
2239}
2240
f6ac5f3d 2241/* "remove_breakpoint" method for prec over corefile. */
d02ed0bb 2242
f6ac5f3d
PA
2243int
2244record_full_core_target::remove_breakpoint (struct gdbarch *gdbarch,
2245 struct bp_target_info *bp_tgt,
2246 enum remove_bp_reason reason)
d02ed0bb
MM
2247{
2248 return 0;
2249}
2250
f6ac5f3d 2251/* "has_execution" method for prec over corefile. */
d02ed0bb 2252
57810aa7 2253bool
f6ac5f3d 2254record_full_core_target::has_execution (ptid_t the_ptid)
d02ed0bb 2255{
57810aa7 2256 return true;
d02ed0bb
MM
2257}
2258
d02ed0bb
MM
2259/* Record log save-file format
2260 Version 1 (never released)
2261
2262 Header:
2263 4 bytes: magic number htonl(0x20090829).
2264 NOTE: be sure to change whenever this file format changes!
2265
2266 Records:
88d1aa9d
MM
2267 record_full_end:
2268 1 byte: record type (record_full_end, see enum record_full_type).
2269 record_full_reg:
2270 1 byte: record type (record_full_reg, see enum record_full_type).
d02ed0bb
MM
2271 8 bytes: register id (network byte order).
2272 MAX_REGISTER_SIZE bytes: register value.
88d1aa9d
MM
2273 record_full_mem:
2274 1 byte: record type (record_full_mem, see enum record_full_type).
d02ed0bb
MM
2275 8 bytes: memory length (network byte order).
2276 8 bytes: memory address (network byte order).
2277 n bytes: memory value (n == memory length).
2278
2279 Version 2
2280 4 bytes: magic number netorder32(0x20091016).
2281 NOTE: be sure to change whenever this file format changes!
2282
2283 Records:
88d1aa9d
MM
2284 record_full_end:
2285 1 byte: record type (record_full_end, see enum record_full_type).
d02ed0bb
MM
2286 4 bytes: signal
2287 4 bytes: instruction count
88d1aa9d
MM
2288 record_full_reg:
2289 1 byte: record type (record_full_reg, see enum record_full_type).
d02ed0bb
MM
2290 4 bytes: register id (network byte order).
2291 n bytes: register value (n == actual register size).
2292 (eg. 4 bytes for x86 general registers).
88d1aa9d
MM
2293 record_full_mem:
2294 1 byte: record type (record_full_mem, see enum record_full_type).
d02ed0bb
MM
2295 4 bytes: memory length (network byte order).
2296 8 bytes: memory address (network byte order).
2297 n bytes: memory value (n == memory length).
2298
2299*/
2300
2301/* bfdcore_read -- read bytes from a core file section. */
2302
2303static inline void
2304bfdcore_read (bfd *obfd, asection *osec, void *buf, int len, int *offset)
2305{
2306 int ret = bfd_get_section_contents (obfd, osec, buf, *offset, len);
2307
2308 if (ret)
2309 *offset += len;
2310 else
2311 error (_("Failed to read %d bytes from core file %s ('%s')."),
2312 len, bfd_get_filename (obfd),
2313 bfd_errmsg (bfd_get_error ()));
2314}
2315
2316static inline uint64_t
2317netorder64 (uint64_t input)
2318{
2319 uint64_t ret;
2320
2321 store_unsigned_integer ((gdb_byte *) &ret, sizeof (ret),
2322 BFD_ENDIAN_BIG, input);
2323 return ret;
2324}
2325
2326static inline uint32_t
2327netorder32 (uint32_t input)
2328{
2329 uint32_t ret;
2330
d02ed0bb
MM
2331 store_unsigned_integer ((gdb_byte *) &ret, sizeof (ret),
2332 BFD_ENDIAN_BIG, input);
2333 return ret;
2334}
2335
2336/* Restore the execution log from a core_bfd file. */
2337static void
88d1aa9d 2338record_full_restore (void)
d02ed0bb
MM
2339{
2340 uint32_t magic;
2341 struct cleanup *old_cleanups;
88d1aa9d 2342 struct record_full_entry *rec;
d02ed0bb
MM
2343 asection *osec;
2344 uint32_t osec_size;
2345 int bfd_offset = 0;
2346 struct regcache *regcache;
2347
2348 /* We restore the execution log from the open core bfd,
2349 if there is one. */
2350 if (core_bfd == NULL)
2351 return;
2352
88d1aa9d
MM
2353 /* "record_full_restore" can only be called when record list is empty. */
2354 gdb_assert (record_full_first.next == NULL);
d02ed0bb
MM
2355
2356 if (record_debug)
2357 fprintf_unfiltered (gdb_stdlog, "Restoring recording from core file.\n");
2358
2359 /* Now need to find our special note section. */
2360 osec = bfd_get_section_by_name (core_bfd, "null0");
2361 if (record_debug)
2362 fprintf_unfiltered (gdb_stdlog, "Find precord section %s.\n",
2363 osec ? "succeeded" : "failed");
2364 if (osec == NULL)
2365 return;
2366 osec_size = bfd_section_size (core_bfd, osec);
2367 if (record_debug)
2368 fprintf_unfiltered (gdb_stdlog, "%s", bfd_section_name (core_bfd, osec));
2369
2370 /* Check the magic code. */
2371 bfdcore_read (core_bfd, osec, &magic, sizeof (magic), &bfd_offset);
88d1aa9d 2372 if (magic != RECORD_FULL_FILE_MAGIC)
d02ed0bb
MM
2373 error (_("Version mis-match or file format error in core file %s."),
2374 bfd_get_filename (core_bfd));
2375 if (record_debug)
2376 fprintf_unfiltered (gdb_stdlog,
2377 " Reading 4-byte magic cookie "
88d1aa9d 2378 "RECORD_FULL_FILE_MAGIC (0x%s)\n",
d02ed0bb
MM
2379 phex_nz (netorder32 (magic), 4));
2380
88d1aa9d
MM
2381 /* Restore the entries in recfd into record_full_arch_list_head and
2382 record_full_arch_list_tail. */
2383 record_full_arch_list_head = NULL;
2384 record_full_arch_list_tail = NULL;
2385 record_full_insn_num = 0;
2386 old_cleanups = make_cleanup (record_full_arch_list_cleanups, 0);
d02ed0bb
MM
2387 regcache = get_current_regcache ();
2388
2389 while (1)
2390 {
2391 uint8_t rectype;
2392 uint32_t regnum, len, signal, count;
2393 uint64_t addr;
2394
2395 /* We are finished when offset reaches osec_size. */
2396 if (bfd_offset >= osec_size)
2397 break;
2398 bfdcore_read (core_bfd, osec, &rectype, sizeof (rectype), &bfd_offset);
2399
2400 switch (rectype)
2401 {
88d1aa9d 2402 case record_full_reg: /* reg */
d02ed0bb
MM
2403 /* Get register number to regnum. */
2404 bfdcore_read (core_bfd, osec, &regnum,
2405 sizeof (regnum), &bfd_offset);
2406 regnum = netorder32 (regnum);
2407
88d1aa9d 2408 rec = record_full_reg_alloc (regcache, regnum);
d02ed0bb
MM
2409
2410 /* Get val. */
88d1aa9d 2411 bfdcore_read (core_bfd, osec, record_full_get_loc (rec),
d02ed0bb
MM
2412 rec->u.reg.len, &bfd_offset);
2413
2414 if (record_debug)
2415 fprintf_unfiltered (gdb_stdlog,
2416 " Reading register %d (1 "
2417 "plus %lu plus %d bytes)\n",
2418 rec->u.reg.num,
2419 (unsigned long) sizeof (regnum),
2420 rec->u.reg.len);
2421 break;
2422
88d1aa9d 2423 case record_full_mem: /* mem */
d02ed0bb
MM
2424 /* Get len. */
2425 bfdcore_read (core_bfd, osec, &len,
2426 sizeof (len), &bfd_offset);
2427 len = netorder32 (len);
2428
2429 /* Get addr. */
2430 bfdcore_read (core_bfd, osec, &addr,
2431 sizeof (addr), &bfd_offset);
2432 addr = netorder64 (addr);
2433
88d1aa9d 2434 rec = record_full_mem_alloc (addr, len);
d02ed0bb
MM
2435
2436 /* Get val. */
88d1aa9d 2437 bfdcore_read (core_bfd, osec, record_full_get_loc (rec),
d02ed0bb
MM
2438 rec->u.mem.len, &bfd_offset);
2439
2440 if (record_debug)
2441 fprintf_unfiltered (gdb_stdlog,
2442 " Reading memory %s (1 plus "
2443 "%lu plus %lu plus %d bytes)\n",
2444 paddress (get_current_arch (),
2445 rec->u.mem.addr),
2446 (unsigned long) sizeof (addr),
2447 (unsigned long) sizeof (len),
2448 rec->u.mem.len);
2449 break;
2450
88d1aa9d
MM
2451 case record_full_end: /* end */
2452 rec = record_full_end_alloc ();
2453 record_full_insn_num ++;
d02ed0bb
MM
2454
2455 /* Get signal value. */
2456 bfdcore_read (core_bfd, osec, &signal,
2457 sizeof (signal), &bfd_offset);
2458 signal = netorder32 (signal);
aead7601 2459 rec->u.end.sigval = (enum gdb_signal) signal;
d02ed0bb
MM
2460
2461 /* Get insn count. */
2462 bfdcore_read (core_bfd, osec, &count,
2463 sizeof (count), &bfd_offset);
2464 count = netorder32 (count);
2465 rec->u.end.insn_num = count;
88d1aa9d 2466 record_full_insn_count = count + 1;
d02ed0bb
MM
2467 if (record_debug)
2468 fprintf_unfiltered (gdb_stdlog,
88d1aa9d 2469 " Reading record_full_end (1 + "
d02ed0bb
MM
2470 "%lu + %lu bytes), offset == %s\n",
2471 (unsigned long) sizeof (signal),
2472 (unsigned long) sizeof (count),
2473 paddress (get_current_arch (),
2474 bfd_offset));
2475 break;
2476
2477 default:
2478 error (_("Bad entry type in core file %s."),
2479 bfd_get_filename (core_bfd));
2480 break;
2481 }
2482
2483 /* Add rec to record arch list. */
88d1aa9d 2484 record_full_arch_list_add (rec);
d02ed0bb
MM
2485 }
2486
2487 discard_cleanups (old_cleanups);
2488
88d1aa9d
MM
2489 /* Add record_full_arch_list_head to the end of record list. */
2490 record_full_first.next = record_full_arch_list_head;
2491 record_full_arch_list_head->prev = &record_full_first;
2492 record_full_arch_list_tail->next = NULL;
2493 record_full_list = &record_full_first;
d02ed0bb 2494
88d1aa9d
MM
2495 /* Update record_full_insn_max_num. */
2496 if (record_full_insn_num > record_full_insn_max_num)
d02ed0bb 2497 {
88d1aa9d 2498 record_full_insn_max_num = record_full_insn_num;
7ee70bf5 2499 warning (_("Auto increase record/replay buffer limit to %u."),
88d1aa9d 2500 record_full_insn_max_num);
d02ed0bb
MM
2501 }
2502
2503 /* Succeeded. */
2504 printf_filtered (_("Restored records from core file %s.\n"),
2505 bfd_get_filename (core_bfd));
2506
08d72866 2507 print_stack_frame (get_selected_frame (NULL), 1, SRC_AND_LOC, 1);
d02ed0bb
MM
2508}
2509
2510/* bfdcore_write -- write bytes into a core file section. */
2511
2512static inline void
2513bfdcore_write (bfd *obfd, asection *osec, void *buf, int len, int *offset)
2514{
2515 int ret = bfd_set_section_contents (obfd, osec, buf, *offset, len);
2516
2517 if (ret)
2518 *offset += len;
2519 else
2520 error (_("Failed to write %d bytes to core file %s ('%s')."),
2521 len, bfd_get_filename (obfd),
2522 bfd_errmsg (bfd_get_error ()));
2523}
2524
2525/* Restore the execution log from a file. We use a modified elf
2526 corefile format, with an extra section for our data. */
2527
2528static void
41243651 2529cmd_record_full_restore (const char *args, int from_tty)
d02ed0bb
MM
2530{
2531 core_file_command (args, from_tty);
d9f719f1 2532 record_full_open (args, from_tty);
d02ed0bb
MM
2533}
2534
d02ed0bb
MM
2535/* Save the execution log to a file. We use a modified elf corefile
2536 format, with an extra section for our data. */
2537
f6ac5f3d
PA
2538void
2539record_full_base_target::save_record (const char *recfilename)
d02ed0bb 2540{
88d1aa9d 2541 struct record_full_entry *cur_record_full_list;
d02ed0bb
MM
2542 uint32_t magic;
2543 struct regcache *regcache;
2544 struct gdbarch *gdbarch;
d02ed0bb
MM
2545 int save_size = 0;
2546 asection *osec = NULL;
2547 int bfd_offset = 0;
2548
2549 /* Open the save file. */
2550 if (record_debug)
2551 fprintf_unfiltered (gdb_stdlog, "Saving execution log to core file '%s'\n",
2552 recfilename);
2553
2554 /* Open the output file. */
bef155c3
TT
2555 gdb_bfd_ref_ptr obfd (create_gcore_bfd (recfilename));
2556
2557 /* Arrange to remove the output file on failure. */
2558 gdb::unlinker unlink_file (recfilename);
d02ed0bb 2559
88d1aa9d
MM
2560 /* Save the current record entry to "cur_record_full_list". */
2561 cur_record_full_list = record_full_list;
d02ed0bb
MM
2562
2563 /* Get the values of regcache and gdbarch. */
2564 regcache = get_current_regcache ();
ac7936df 2565 gdbarch = regcache->arch ();
d02ed0bb
MM
2566
2567 /* Disable the GDB operation record. */
07036511
TT
2568 scoped_restore restore_operation_disable
2569 = record_full_gdb_operation_disable_set ();
d02ed0bb
MM
2570
2571 /* Reverse execute to the begin of record list. */
2572 while (1)
2573 {
2574 /* Check for beginning and end of log. */
88d1aa9d 2575 if (record_full_list == &record_full_first)
d02ed0bb
MM
2576 break;
2577
88d1aa9d 2578 record_full_exec_insn (regcache, gdbarch, record_full_list);
d02ed0bb 2579
88d1aa9d
MM
2580 if (record_full_list->prev)
2581 record_full_list = record_full_list->prev;
d02ed0bb
MM
2582 }
2583
2584 /* Compute the size needed for the extra bfd section. */
2585 save_size = 4; /* magic cookie */
88d1aa9d
MM
2586 for (record_full_list = record_full_first.next; record_full_list;
2587 record_full_list = record_full_list->next)
2588 switch (record_full_list->type)
d02ed0bb 2589 {
88d1aa9d 2590 case record_full_end:
d02ed0bb
MM
2591 save_size += 1 + 4 + 4;
2592 break;
88d1aa9d
MM
2593 case record_full_reg:
2594 save_size += 1 + 4 + record_full_list->u.reg.len;
d02ed0bb 2595 break;
88d1aa9d
MM
2596 case record_full_mem:
2597 save_size += 1 + 4 + 8 + record_full_list->u.mem.len;
d02ed0bb
MM
2598 break;
2599 }
2600
2601 /* Make the new bfd section. */
bef155c3 2602 osec = bfd_make_section_anyway_with_flags (obfd.get (), "precord",
d02ed0bb
MM
2603 SEC_HAS_CONTENTS
2604 | SEC_READONLY);
2605 if (osec == NULL)
2606 error (_("Failed to create 'precord' section for corefile %s: %s"),
2607 recfilename,
2608 bfd_errmsg (bfd_get_error ()));
bef155c3
TT
2609 bfd_set_section_size (obfd.get (), osec, save_size);
2610 bfd_set_section_vma (obfd.get (), osec, 0);
2611 bfd_set_section_alignment (obfd.get (), osec, 0);
2612 bfd_section_lma (obfd.get (), osec) = 0;
d02ed0bb
MM
2613
2614 /* Save corefile state. */
bef155c3 2615 write_gcore_file (obfd.get ());
d02ed0bb
MM
2616
2617 /* Write out the record log. */
2618 /* Write the magic code. */
88d1aa9d 2619 magic = RECORD_FULL_FILE_MAGIC;
d02ed0bb
MM
2620 if (record_debug)
2621 fprintf_unfiltered (gdb_stdlog,
2622 " Writing 4-byte magic cookie "
88d1aa9d 2623 "RECORD_FULL_FILE_MAGIC (0x%s)\n",
d02ed0bb 2624 phex_nz (magic, 4));
bef155c3 2625 bfdcore_write (obfd.get (), osec, &magic, sizeof (magic), &bfd_offset);
d02ed0bb
MM
2626
2627 /* Save the entries to recfd and forward execute to the end of
2628 record list. */
88d1aa9d 2629 record_full_list = &record_full_first;
d02ed0bb
MM
2630 while (1)
2631 {
2632 /* Save entry. */
88d1aa9d 2633 if (record_full_list != &record_full_first)
d02ed0bb
MM
2634 {
2635 uint8_t type;
2636 uint32_t regnum, len, signal, count;
2637 uint64_t addr;
2638
88d1aa9d 2639 type = record_full_list->type;
bef155c3 2640 bfdcore_write (obfd.get (), osec, &type, sizeof (type), &bfd_offset);
d02ed0bb 2641
88d1aa9d 2642 switch (record_full_list->type)
d02ed0bb 2643 {
88d1aa9d 2644 case record_full_reg: /* reg */
d02ed0bb
MM
2645 if (record_debug)
2646 fprintf_unfiltered (gdb_stdlog,
2647 " Writing register %d (1 "
2648 "plus %lu plus %d bytes)\n",
88d1aa9d 2649 record_full_list->u.reg.num,
d02ed0bb 2650 (unsigned long) sizeof (regnum),
88d1aa9d 2651 record_full_list->u.reg.len);
d02ed0bb
MM
2652
2653 /* Write regnum. */
88d1aa9d 2654 regnum = netorder32 (record_full_list->u.reg.num);
bef155c3 2655 bfdcore_write (obfd.get (), osec, &regnum,
d02ed0bb
MM
2656 sizeof (regnum), &bfd_offset);
2657
2658 /* Write regval. */
bef155c3 2659 bfdcore_write (obfd.get (), osec,
88d1aa9d
MM
2660 record_full_get_loc (record_full_list),
2661 record_full_list->u.reg.len, &bfd_offset);
d02ed0bb
MM
2662 break;
2663
88d1aa9d 2664 case record_full_mem: /* mem */
d02ed0bb
MM
2665 if (record_debug)
2666 fprintf_unfiltered (gdb_stdlog,
2667 " Writing memory %s (1 plus "
2668 "%lu plus %lu plus %d bytes)\n",
2669 paddress (gdbarch,
88d1aa9d 2670 record_full_list->u.mem.addr),
d02ed0bb
MM
2671 (unsigned long) sizeof (addr),
2672 (unsigned long) sizeof (len),
88d1aa9d 2673 record_full_list->u.mem.len);
d02ed0bb
MM
2674
2675 /* Write memlen. */
88d1aa9d 2676 len = netorder32 (record_full_list->u.mem.len);
bef155c3
TT
2677 bfdcore_write (obfd.get (), osec, &len, sizeof (len),
2678 &bfd_offset);
d02ed0bb
MM
2679
2680 /* Write memaddr. */
88d1aa9d 2681 addr = netorder64 (record_full_list->u.mem.addr);
bef155c3 2682 bfdcore_write (obfd.get (), osec, &addr,
d02ed0bb
MM
2683 sizeof (addr), &bfd_offset);
2684
2685 /* Write memval. */
bef155c3 2686 bfdcore_write (obfd.get (), osec,
88d1aa9d
MM
2687 record_full_get_loc (record_full_list),
2688 record_full_list->u.mem.len, &bfd_offset);
d02ed0bb
MM
2689 break;
2690
88d1aa9d 2691 case record_full_end:
d02ed0bb
MM
2692 if (record_debug)
2693 fprintf_unfiltered (gdb_stdlog,
88d1aa9d 2694 " Writing record_full_end (1 + "
d02ed0bb
MM
2695 "%lu + %lu bytes)\n",
2696 (unsigned long) sizeof (signal),
2697 (unsigned long) sizeof (count));
2698 /* Write signal value. */
88d1aa9d 2699 signal = netorder32 (record_full_list->u.end.sigval);
bef155c3 2700 bfdcore_write (obfd.get (), osec, &signal,
d02ed0bb
MM
2701 sizeof (signal), &bfd_offset);
2702
2703 /* Write insn count. */
88d1aa9d 2704 count = netorder32 (record_full_list->u.end.insn_num);
bef155c3 2705 bfdcore_write (obfd.get (), osec, &count,
d02ed0bb
MM
2706 sizeof (count), &bfd_offset);
2707 break;
2708 }
2709 }
2710
2711 /* Execute entry. */
88d1aa9d 2712 record_full_exec_insn (regcache, gdbarch, record_full_list);
d02ed0bb 2713
88d1aa9d
MM
2714 if (record_full_list->next)
2715 record_full_list = record_full_list->next;
d02ed0bb
MM
2716 else
2717 break;
2718 }
2719
88d1aa9d 2720 /* Reverse execute to cur_record_full_list. */
d02ed0bb
MM
2721 while (1)
2722 {
2723 /* Check for beginning and end of log. */
88d1aa9d 2724 if (record_full_list == cur_record_full_list)
d02ed0bb
MM
2725 break;
2726
88d1aa9d 2727 record_full_exec_insn (regcache, gdbarch, record_full_list);
d02ed0bb 2728
88d1aa9d
MM
2729 if (record_full_list->prev)
2730 record_full_list = record_full_list->prev;
d02ed0bb
MM
2731 }
2732
bef155c3 2733 unlink_file.keep ();
d02ed0bb
MM
2734
2735 /* Succeeded. */
2736 printf_filtered (_("Saved core file %s with execution log.\n"),
2737 recfilename);
2738}
2739
88d1aa9d 2740/* record_full_goto_insn -- rewind the record log (forward or backward,
d02ed0bb
MM
2741 depending on DIR) to the given entry, changing the program state
2742 correspondingly. */
2743
2744static void
88d1aa9d
MM
2745record_full_goto_insn (struct record_full_entry *entry,
2746 enum exec_direction_kind dir)
d02ed0bb 2747{
07036511
TT
2748 scoped_restore restore_operation_disable
2749 = record_full_gdb_operation_disable_set ();
d02ed0bb 2750 struct regcache *regcache = get_current_regcache ();
ac7936df 2751 struct gdbarch *gdbarch = regcache->arch ();
d02ed0bb
MM
2752
2753 /* Assume everything is valid: we will hit the entry,
2754 and we will not hit the end of the recording. */
2755
2756 if (dir == EXEC_FORWARD)
88d1aa9d 2757 record_full_list = record_full_list->next;
d02ed0bb
MM
2758
2759 do
2760 {
88d1aa9d 2761 record_full_exec_insn (regcache, gdbarch, record_full_list);
d02ed0bb 2762 if (dir == EXEC_REVERSE)
88d1aa9d 2763 record_full_list = record_full_list->prev;
d02ed0bb 2764 else
88d1aa9d
MM
2765 record_full_list = record_full_list->next;
2766 } while (record_full_list != entry);
d02ed0bb
MM
2767}
2768
2769/* Alias for "target record-full". */
2770
2771static void
981a3fb3 2772cmd_record_full_start (const char *args, int from_tty)
d02ed0bb 2773{
95a6b0a1 2774 execute_command ("target record-full", from_tty);
d02ed0bb
MM
2775}
2776
2777static void
eb4c3f4a 2778set_record_full_insn_max_num (const char *args, int from_tty,
88d1aa9d 2779 struct cmd_list_element *c)
d02ed0bb 2780{
7ee70bf5 2781 if (record_full_insn_num > record_full_insn_max_num)
d02ed0bb 2782 {
88d1aa9d
MM
2783 /* Count down record_full_insn_num while releasing records from list. */
2784 while (record_full_insn_num > record_full_insn_max_num)
d02ed0bb 2785 {
88d1aa9d
MM
2786 record_full_list_release_first ();
2787 record_full_insn_num--;
d02ed0bb
MM
2788 }
2789 }
2790}
2791
2792/* The "set record full" command. */
2793
2794static void
981a3fb3 2795set_record_full_command (const char *args, int from_tty)
d02ed0bb
MM
2796{
2797 printf_unfiltered (_("\"set record full\" must be followed "
981a3fb3 2798 "by an appropriate subcommand.\n"));
d02ed0bb
MM
2799 help_list (set_record_full_cmdlist, "set record full ", all_commands,
2800 gdb_stdout);
2801}
2802
2803/* The "show record full" command. */
2804
2805static void
981a3fb3 2806show_record_full_command (const char *args, int from_tty)
d02ed0bb
MM
2807{
2808 cmd_show_list (show_record_full_cmdlist, from_tty, "");
2809}
2810
d02ed0bb
MM
2811void
2812_initialize_record_full (void)
2813{
2814 struct cmd_list_element *c;
2815
88d1aa9d
MM
2816 /* Init record_full_first. */
2817 record_full_first.prev = NULL;
2818 record_full_first.next = NULL;
2819 record_full_first.type = record_full_end;
d02ed0bb 2820
d9f719f1
PA
2821 add_target (record_full_target_info, record_full_open);
2822 add_deprecated_target_alias (record_full_target_info, "record");
2823 add_target (record_full_core_target_info, record_full_open);
d02ed0bb 2824
88d1aa9d 2825 add_prefix_cmd ("full", class_obscure, cmd_record_full_start,
d02ed0bb
MM
2826 _("Start full execution recording."), &record_full_cmdlist,
2827 "record full ", 0, &record_cmdlist);
2828
88d1aa9d 2829 c = add_cmd ("restore", class_obscure, cmd_record_full_restore,
d02ed0bb
MM
2830 _("Restore the execution log from a file.\n\
2831Argument is filename. File must be created with 'record save'."),
2832 &record_full_cmdlist);
2833 set_cmd_completer (c, filename_completer);
2834
2835 /* Deprecate the old version without "full" prefix. */
2836 c = add_alias_cmd ("restore", "full restore", class_obscure, 1,
2837 &record_cmdlist);
2838 set_cmd_completer (c, filename_completer);
2839 deprecate_cmd (c, "record full restore");
2840
2841 add_prefix_cmd ("full", class_support, set_record_full_command,
2842 _("Set record options"), &set_record_full_cmdlist,
2843 "set record full ", 0, &set_record_cmdlist);
2844
2845 add_prefix_cmd ("full", class_support, show_record_full_command,
2846 _("Show record options"), &show_record_full_cmdlist,
2847 "show record full ", 0, &show_record_cmdlist);
2848
2849 /* Record instructions number limit command. */
2850 add_setshow_boolean_cmd ("stop-at-limit", no_class,
88d1aa9d 2851 &record_full_stop_at_limit, _("\
d02ed0bb
MM
2852Set whether record/replay stops when record/replay buffer becomes full."), _("\
2853Show whether record/replay stops when record/replay buffer becomes full."),
2854 _("Default is ON.\n\
2855When ON, if the record/replay buffer becomes full, ask user what to do.\n\
2856When OFF, if the record/replay buffer becomes full,\n\
2857delete the oldest recorded instruction to make room for each new one."),
2858 NULL, NULL,
2859 &set_record_full_cmdlist, &show_record_full_cmdlist);
2860
2861 c = add_alias_cmd ("stop-at-limit", "full stop-at-limit", no_class, 1,
2862 &set_record_cmdlist);
2863 deprecate_cmd (c, "set record full stop-at-limit");
2864
2865 c = add_alias_cmd ("stop-at-limit", "full stop-at-limit", no_class, 1,
2866 &show_record_cmdlist);
2867 deprecate_cmd (c, "show record full stop-at-limit");
2868
88d1aa9d
MM
2869 add_setshow_uinteger_cmd ("insn-number-max", no_class,
2870 &record_full_insn_max_num,
d02ed0bb
MM
2871 _("Set record/replay buffer limit."),
2872 _("Show record/replay buffer limit."), _("\
2873Set the maximum number of instructions to be stored in the\n\
f81d1120
PA
2874record/replay buffer. A value of either \"unlimited\" or zero means no\n\
2875limit. Default is 200000."),
88d1aa9d 2876 set_record_full_insn_max_num,
d02ed0bb
MM
2877 NULL, &set_record_full_cmdlist,
2878 &show_record_full_cmdlist);
2879
2880 c = add_alias_cmd ("insn-number-max", "full insn-number-max", no_class, 1,
2881 &set_record_cmdlist);
2882 deprecate_cmd (c, "set record full insn-number-max");
2883
2884 c = add_alias_cmd ("insn-number-max", "full insn-number-max", no_class, 1,
2885 &show_record_cmdlist);
2886 deprecate_cmd (c, "show record full insn-number-max");
2887
88d1aa9d 2888 add_setshow_boolean_cmd ("memory-query", no_class,
25ea693b 2889 &record_full_memory_query, _("\
d02ed0bb
MM
2890Set whether query if PREC cannot record memory change of next instruction."),
2891 _("\
2892Show whether query if PREC cannot record memory change of next instruction."),
2893 _("\
2894Default is OFF.\n\
2895When ON, query if PREC cannot record memory change of next instruction."),
2896 NULL, NULL,
88d1aa9d
MM
2897 &set_record_full_cmdlist,
2898 &show_record_full_cmdlist);
d02ed0bb
MM
2899
2900 c = add_alias_cmd ("memory-query", "full memory-query", no_class, 1,
2901 &set_record_cmdlist);
2902 deprecate_cmd (c, "set record full memory-query");
2903
2904 c = add_alias_cmd ("memory-query", "full memory-query", no_class, 1,
2905 &show_record_cmdlist);
2906 deprecate_cmd (c, "show record full memory-query");
2907}