Add back gdb_pretty_print_insn
[deliverable/binutils-gdb.git] / gdb / remote.c
CommitLineData
c906108c 1/* Remote target communications for serial-line targets in custom GDB protocol
8926118c 2
61baf725 3 Copyright (C) 1988-2017 Free Software Foundation, Inc.
c906108c 4
c5aa993b
JM
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
a9762ec7 9 the Free Software Foundation; either version 3 of the License, or
c5aa993b
JM
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
a9762ec7 18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
c5aa993b 19
23860348 20/* See the GDB User Guide for details of the GDB remote protocol. */
c5aa993b 21
c906108c 22#include "defs.h"
c906108c
SS
23#include <ctype.h>
24#include <fcntl.h>
c906108c 25#include "inferior.h"
45741a9c 26#include "infrun.h"
c906108c
SS
27#include "bfd.h"
28#include "symfile.h"
29#include "target.h"
c5aa993b 30/*#include "terminal.h" */
c906108c
SS
31#include "gdbcmd.h"
32#include "objfiles.h"
33#include "gdb-stabs.h"
34#include "gdbthread.h"
c2c6d25f 35#include "remote.h"
722247f1 36#include "remote-notif.h"
4e052eda 37#include "regcache.h"
fd0407d6 38#include "value.h"
6867ae3e 39#include "observer.h"
a77053c2 40#include "solib.h"
37a105a1
DJ
41#include "cli/cli-decode.h"
42#include "cli/cli-setshow.h"
424163ea 43#include "target-descriptions.h"
a4453b7e 44#include "gdb_bfd.h"
614c279d 45#include "filestuff.h"
9c3d6531 46#include "rsp-low.h"
6b940e6a 47#include "disasm.h"
f00aae0f 48#include "location.h"
c906108c 49
438e1e42 50#include "gdb_sys_time.h"
c906108c 51
43ff13b4 52#include "event-loop.h"
c2c6d25f 53#include "event-top.h"
2acceee2 54#include "inf-loop.h"
43ff13b4 55
c906108c
SS
56#include <signal.h>
57#include "serial.h"
58
6240bebf
MS
59#include "gdbcore.h" /* for exec_bfd */
60
449092f6 61#include "remote-fileio.h"
a6b151f1 62#include "gdb/fileio.h"
53ce3c39 63#include <sys/stat.h>
dc146f7c 64#include "xml-support.h"
449092f6 65
fd79ecee
DJ
66#include "memory-map.h"
67
35b1e5cc
SS
68#include "tracepoint.h"
69#include "ax.h"
70#include "ax-gdb.h"
d1feda86 71#include "agent.h"
9accd112 72#include "btrace.h"
c0272db5 73#include "record-btrace.h"
325fac50 74#include <algorithm>
35b1e5cc 75
0df8b418 76/* Temp hacks for tracepoint encoding migration. */
35b1e5cc
SS
77static char *target_buf;
78static long target_buf_size;
35b1e5cc 79
94585166
DB
80/* Per-program-space data key. */
81static const struct program_space_data *remote_pspace_data;
82
83/* The variable registered as the control variable used by the
84 remote exec-file commands. While the remote exec-file setting is
85 per-program-space, the set/show machinery uses this as the
86 location of the remote exec-file value. */
87static char *remote_exec_file_var;
88
6765f3e5
DJ
89/* The size to align memory write packets, when practical. The protocol
90 does not guarantee any alignment, and gdb will generate short
91 writes and unaligned writes, but even as a best-effort attempt this
92 can improve bulk transfers. For instance, if a write is misaligned
93 relative to the target's data bus, the stub may need to make an extra
94 round trip fetching data from the target. This doesn't make a
95 huge difference, but it's easy to do, so we try to be helpful.
96
97 The alignment chosen is arbitrary; usually data bus width is
98 important here, not the possibly larger cache line size. */
99enum { REMOTE_ALIGN_WRITES = 16 };
100
23860348 101/* Prototypes for local functions. */
6d820c5c 102static int getpkt_sane (char **buf, long *sizeof_buf, int forever);
74531fed 103static int getpkt_or_notif_sane (char **buf, long *sizeof_buf,
fee9eda9 104 int forever, int *is_notif);
6426a772 105
a14ed312 106static void remote_files_info (struct target_ops *ignore);
c906108c 107
f32dbf8c
MM
108static void remote_prepare_to_store (struct target_ops *self,
109 struct regcache *regcache);
c906108c 110
014f9477
TT
111static void remote_open_1 (const char *, int, struct target_ops *,
112 int extended_p);
c906108c 113
de90e03d 114static void remote_close (struct target_ops *self);
c906108c 115
cbb8991c
DB
116struct remote_state;
117
118static int remote_vkill (int pid, struct remote_state *rs);
119
8020350c
DB
120static void remote_kill_k (void);
121
136d6dae 122static void remote_mourn (struct target_ops *ops);
c906108c 123
a14ed312 124static void extended_remote_restart (void);
c906108c 125
6d820c5c 126static void remote_send (char **buf, long *sizeof_buf_p);
c906108c 127
a14ed312 128static int readchar (int timeout);
c906108c 129
c33e31fd
PA
130static void remote_serial_write (const char *str, int len);
131
7d85a9c0 132static void remote_kill (struct target_ops *ops);
c906108c 133
6a109b6b 134static int remote_can_async_p (struct target_ops *);
75c99385 135
6a109b6b 136static int remote_is_async_p (struct target_ops *);
75c99385 137
6a3753b3 138static void remote_async (struct target_ops *ops, int enable);
75c99385 139
65706a29
PA
140static void remote_thread_events (struct target_ops *ops, int enable);
141
a14ed312 142static void interrupt_query (void);
c906108c 143
79d7f229
PA
144static void set_general_thread (struct ptid ptid);
145static void set_continue_thread (struct ptid ptid);
c906108c 146
a14ed312 147static void get_offsets (void);
c906108c 148
6d820c5c
DJ
149static void skip_frame (void);
150
151static long read_frame (char **buf_p, long *sizeof_buf);
c906108c 152
a14ed312 153static int hexnumlen (ULONGEST num);
c906108c 154
a14ed312 155static void init_remote_ops (void);
c906108c 156
a14ed312 157static void init_extended_remote_ops (void);
c906108c 158
1eab8a48 159static void remote_stop (struct target_ops *self, ptid_t);
c906108c 160
a14ed312 161static int stubhex (int ch);
c906108c 162
a14ed312 163static int hexnumstr (char *, ULONGEST);
c906108c 164
a14ed312 165static int hexnumnstr (char *, ULONGEST, int);
2df3850c 166
a14ed312 167static CORE_ADDR remote_address_masked (CORE_ADDR);
c906108c 168
baa336ce 169static void print_packet (const char *);
c906108c 170
a14ed312 171static void compare_sections_command (char *, int);
c906108c 172
a14ed312 173static void packet_command (char *, int);
c906108c 174
a14ed312 175static int stub_unpack_int (char *buff, int fieldlength);
c906108c 176
39f77062 177static ptid_t remote_current_thread (ptid_t oldptid);
c906108c 178
baa336ce 179static int putpkt_binary (const char *buf, int cnt);
c906108c 180
a14ed312 181static void check_binary_download (CORE_ADDR addr);
c906108c 182
5a2468f5 183struct packet_config;
5a2468f5 184
a14ed312 185static void show_packet_config_cmd (struct packet_config *config);
5a2468f5 186
bb572ddd
DJ
187static void show_remote_protocol_packet_cmd (struct ui_file *file,
188 int from_tty,
189 struct cmd_list_element *c,
190 const char *value);
191
82f73884
PA
192static char *write_ptid (char *buf, const char *endbuf, ptid_t ptid);
193static ptid_t read_ptid (char *buf, char **obuf);
194
c378d69d 195static void remote_set_permissions (struct target_ops *self);
d914c394 196
8bd200f1
TT
197static int remote_get_trace_status (struct target_ops *self,
198 struct trace_status *ts);
d5551862 199
ab6617cc
TT
200static int remote_upload_tracepoints (struct target_ops *self,
201 struct uploaded_tp **utpp);
00bf0b85 202
181e3713
TT
203static int remote_upload_trace_state_variables (struct target_ops *self,
204 struct uploaded_tsv **utsvp);
00bf0b85 205
c8d104ad
PA
206static void remote_query_supported (void);
207
36d25514 208static void remote_check_symbols (void);
c8d104ad 209
a14ed312 210void _initialize_remote (void);
c906108c 211
74531fed 212struct stop_reply;
74531fed 213static void stop_reply_xfree (struct stop_reply *);
722247f1 214static void remote_parse_stop_reply (char *, struct stop_reply *);
74531fed 215static void push_stop_reply (struct stop_reply *);
bcc75809 216static void discard_pending_stop_replies_in_queue (struct remote_state *);
74531fed
PA
217static int peek_stop_reply (ptid_t ptid);
218
cbb8991c
DB
219struct threads_listing_context;
220static void remove_new_fork_children (struct threads_listing_context *);
221
74531fed 222static void remote_async_inferior_event_handler (gdb_client_data);
74531fed 223
e3594fd1 224static void remote_terminal_ours (struct target_ops *self);
d3fd5342 225
d962ef82
DJ
226static int remote_read_description_p (struct target_ops *target);
227
176a6961 228static void remote_console_output (char *msg);
dde08ee1 229
efcc2da7 230static int remote_supports_cond_breakpoints (struct target_ops *self);
b775012e 231
78eff0ec 232static int remote_can_run_breakpoint_commands (struct target_ops *self);
d3ce09f5 233
f4abbc16
MM
234static void remote_btrace_reset (void);
235
c0272db5
TW
236static void remote_btrace_maybe_reopen (void);
237
221e1a37
PA
238static int stop_reply_queue_length (void);
239
80152258
PA
240static void readahead_cache_invalidate (void);
241
048094ac
PA
242static void remote_unpush_and_throw (void);
243
a6b151f1
DJ
244/* For "remote". */
245
246static struct cmd_list_element *remote_cmdlist;
247
bb572ddd
DJ
248/* For "set remote" and "show remote". */
249
250static struct cmd_list_element *remote_set_cmdlist;
251static struct cmd_list_element *remote_show_cmdlist;
252
d458bd84
PA
253/* Stub vCont actions support.
254
255 Each field is a boolean flag indicating whether the stub reports
256 support for the corresponding action. */
257
258struct vCont_action_support
259{
260 /* vCont;t */
261 int t;
c1e36e3e
PA
262
263 /* vCont;r */
264 int r;
750ce8d1
YQ
265
266 /* vCont;s */
267 int s;
268
269 /* vCont;S */
270 int S;
d458bd84
PA
271};
272
c1e36e3e
PA
273/* Controls whether GDB is willing to use range stepping. */
274
275static int use_range_stepping = 1;
276
0d031856
TT
277#define OPAQUETHREADBYTES 8
278
279/* a 64 bit opaque identifier */
280typedef unsigned char threadref[OPAQUETHREADBYTES];
281
282/* About this many threadisds fit in a packet. */
283
284#define MAXTHREADLISTRESULTS 32
285
6f8976bf
YQ
286/* The max number of chars in debug output. The rest of chars are
287 omitted. */
288
289#define REMOTE_DEBUG_MAX_CHAR 512
290
80152258
PA
291/* Data for the vFile:pread readahead cache. */
292
293struct readahead_cache
294{
295 /* The file descriptor for the file that is being cached. -1 if the
296 cache is invalid. */
297 int fd;
298
299 /* The offset into the file that the cache buffer corresponds
300 to. */
301 ULONGEST offset;
302
303 /* The buffer holding the cache contents. */
304 gdb_byte *buf;
305 /* The buffer's size. We try to read as much as fits into a packet
306 at a time. */
307 size_t bufsize;
308
309 /* Cache hit and miss counters. */
310 ULONGEST hit_count;
311 ULONGEST miss_count;
312};
313
ea9c271d
DJ
314/* Description of the remote protocol state for the currently
315 connected target. This is per-target state, and independent of the
316 selected architecture. */
317
318struct remote_state
319{
320 /* A buffer to use for incoming packets, and its current size. The
321 buffer is grown dynamically for larger incoming packets.
322 Outgoing packets may also be constructed in this buffer.
323 BUF_SIZE is always at least REMOTE_PACKET_SIZE;
324 REMOTE_PACKET_SIZE should be used to limit the length of outgoing
325 packets. */
326 char *buf;
327 long buf_size;
be2a5f71 328
1e51243a
PA
329 /* True if we're going through initial connection setup (finding out
330 about the remote side's threads, relocating symbols, etc.). */
331 int starting_up;
332
be2a5f71
DJ
333 /* If we negotiated packet size explicitly (and thus can bypass
334 heuristics for the largest packet size that will not overflow
335 a buffer in the stub), this will be set to that packet size.
336 Otherwise zero, meaning to use the guessed size. */
337 long explicit_packet_size;
2d717e4f
DJ
338
339 /* remote_wait is normally called when the target is running and
340 waits for a stop reply packet. But sometimes we need to call it
341 when the target is already stopped. We can send a "?" packet
342 and have remote_wait read the response. Or, if we already have
343 the response, we can stash it in BUF and tell remote_wait to
344 skip calling getpkt. This flag is set when BUF contains a
345 stop reply packet and the target is not waiting. */
346 int cached_wait_status;
a6f3e723
SL
347
348 /* True, if in no ack mode. That is, neither GDB nor the stub will
349 expect acks from each other. The connection is assumed to be
350 reliable. */
351 int noack_mode;
82f73884
PA
352
353 /* True if we're connected in extended remote mode. */
354 int extended;
355
e24a49d8
PA
356 /* True if we resumed the target and we're waiting for the target to
357 stop. In the mean time, we can't start another command/query.
358 The remote server wouldn't be ready to process it, so we'd
359 timeout waiting for a reply that would never come and eventually
360 we'd close the connection. This can happen in asynchronous mode
361 because we allow GDB commands while the target is running. */
362 int waiting_for_stop_reply;
74531fed 363
d458bd84
PA
364 /* The status of the stub support for the various vCont actions. */
365 struct vCont_action_support supports_vCont;
782b2b07 366
3a29589a
DJ
367 /* Nonzero if the user has pressed Ctrl-C, but the target hasn't
368 responded to that. */
369 int ctrlc_pending_p;
5d93a237 370
048094ac
PA
371 /* True if we saw a Ctrl-C while reading or writing from/to the
372 remote descriptor. At that point it is not safe to send a remote
373 interrupt packet, so we instead remember we saw the Ctrl-C and
374 process it once we're done with sending/receiving the current
375 packet, which should be shortly. If however that takes too long,
376 and the user presses Ctrl-C again, we offer to disconnect. */
377 int got_ctrlc_during_io;
378
5d93a237
TT
379 /* Descriptor for I/O to remote machine. Initialize it to NULL so that
380 remote_open knows that we don't have a file open when the program
381 starts. */
382 struct serial *remote_desc;
47f8a51d
TT
383
384 /* These are the threads which we last sent to the remote system. The
385 TID member will be -1 for all or -2 for not sent yet. */
386 ptid_t general_thread;
387 ptid_t continue_thread;
262e1174
TT
388
389 /* This is the traceframe which we last selected on the remote system.
390 It will be -1 if no traceframe is selected. */
391 int remote_traceframe_number;
747dc59d
TT
392
393 char *last_pass_packet;
5e4a05c4
TT
394
395 /* The last QProgramSignals packet sent to the target. We bypass
396 sending a new program signals list down to the target if the new
397 packet is exactly the same as the last we sent. IOW, we only let
398 the target know about program signals list changes. */
399 char *last_program_signals_packet;
b73be471
TT
400
401 enum gdb_signal last_sent_signal;
280ceea3
TT
402
403 int last_sent_step;
8e88304f 404
3a00c802
PA
405 /* The execution direction of the last resume we got. */
406 enum exec_direction_kind last_resume_exec_dir;
407
8e88304f
TT
408 char *finished_object;
409 char *finished_annex;
410 ULONGEST finished_offset;
b80fafe3
TT
411
412 /* Should we try the 'ThreadInfo' query packet?
413
414 This variable (NOT available to the user: auto-detect only!)
415 determines whether GDB will use the new, simpler "ThreadInfo"
416 query or the older, more complex syntax for thread queries.
417 This is an auto-detect variable (set to true at each connect,
418 and set to false when the target fails to recognize it). */
419 int use_threadinfo_query;
420 int use_threadextra_query;
88b496c3 421
0d031856
TT
422 threadref echo_nextthread;
423 threadref nextthread;
424 threadref resultthreadlist[MAXTHREADLISTRESULTS];
5965e028
YQ
425
426 /* The state of remote notification. */
427 struct remote_notif_state *notif_state;
f4abbc16
MM
428
429 /* The branch trace configuration. */
430 struct btrace_config btrace_config;
15a201c8
GB
431
432 /* The argument to the last "vFile:setfs:" packet we sent, used
433 to avoid sending repeated unnecessary "vFile:setfs:" packets.
434 Initialized to -1 to indicate that no "vFile:setfs:" packet
435 has yet been sent. */
436 int fs_pid;
80152258
PA
437
438 /* A readahead cache for vFile:pread. Often, reading a binary
439 involves a sequence of small reads. E.g., when parsing an ELF
440 file. A readahead cache helps mostly the case of remote
441 debugging on a connection with higher latency, due to the
442 request/reply nature of the RSP. We only cache data for a single
443 file descriptor at a time. */
444 struct readahead_cache readahead_cache;
ea9c271d
DJ
445};
446
dc146f7c
VP
447/* Private data that we'll store in (struct thread_info)->private. */
448struct private_thread_info
449{
450 char *extra;
79efa585 451 char *name;
dc146f7c 452 int core;
799a2abe
PA
453
454 /* Whether the target stopped for a breakpoint/watchpoint. */
455 enum target_stop_reason stop_reason;
456
457 /* This is set to the data address of the access causing the target
458 to stop for a watchpoint. */
459 CORE_ADDR watch_data_address;
85ad3aaf
PA
460
461 /* Fields used by the vCont action coalescing implemented in
462 remote_resume / remote_commit_resume. remote_resume stores each
463 thread's last resume request in these fields, so that a later
464 remote_commit_resume knows which is the proper action for this
465 thread to include in the vCont packet. */
466
467 /* True if the last target_resume call for this thread was a step
468 request, false if a continue request. */
469 int last_resume_step;
470
471 /* The signal specified in the last target_resume call for this
472 thread. */
473 enum gdb_signal last_resume_sig;
474
475 /* Whether this thread was already vCont-resumed on the remote
476 side. */
477 int vcont_resumed;
dc146f7c
VP
478};
479
480static void
481free_private_thread_info (struct private_thread_info *info)
482{
483 xfree (info->extra);
79efa585 484 xfree (info->name);
dc146f7c
VP
485 xfree (info);
486}
487
ea9c271d
DJ
488/* This data could be associated with a target, but we do not always
489 have access to the current target when we need it, so for now it is
490 static. This will be fine for as long as only one target is in use
491 at a time. */
cf792862 492static struct remote_state *remote_state;
ea9c271d
DJ
493
494static struct remote_state *
0b83947e 495get_remote_state_raw (void)
ea9c271d 496{
cf792862
TT
497 return remote_state;
498}
499
500/* Allocate a new struct remote_state with xmalloc, initialize it, and
501 return it. */
502
503static struct remote_state *
504new_remote_state (void)
505{
506 struct remote_state *result = XCNEW (struct remote_state);
507
508 /* The default buffer size is unimportant; it will be expanded
509 whenever a larger buffer is needed. */
510 result->buf_size = 400;
224c3ddb 511 result->buf = (char *) xmalloc (result->buf_size);
262e1174 512 result->remote_traceframe_number = -1;
b73be471 513 result->last_sent_signal = GDB_SIGNAL_0;
3a00c802 514 result->last_resume_exec_dir = EXEC_FORWARD;
15a201c8 515 result->fs_pid = -1;
cf792862
TT
516
517 return result;
ea9c271d
DJ
518}
519
520/* Description of the remote protocol for a given architecture. */
d01949b6 521
ad10f812
AC
522struct packet_reg
523{
524 long offset; /* Offset into G packet. */
525 long regnum; /* GDB's internal register number. */
526 LONGEST pnum; /* Remote protocol register number. */
b323314b 527 int in_g_packet; /* Always part of G packet. */
f5656ead 528 /* long size in bytes; == register_size (target_gdbarch (), regnum);
23860348 529 at present. */
f5656ead 530 /* char *name; == gdbarch_register_name (target_gdbarch (), regnum);
c9f4d572 531 at present. */
ad10f812
AC
532};
533
ea9c271d 534struct remote_arch_state
d01949b6 535{
ad10f812
AC
536 /* Description of the remote protocol registers. */
537 long sizeof_g_packet;
b323314b
AC
538
539 /* Description of the remote protocol registers indexed by REGNUM
f57d151a 540 (making an array gdbarch_num_regs in size). */
b323314b 541 struct packet_reg *regs;
ad10f812 542
d01949b6
AC
543 /* This is the size (in chars) of the first response to the ``g''
544 packet. It is used as a heuristic when determining the maximum
545 size of memory-read and memory-write packets. A target will
546 typically only reserve a buffer large enough to hold the ``g''
547 packet. The size does not include packet overhead (headers and
23860348 548 trailers). */
d01949b6
AC
549 long actual_register_packet_size;
550
551 /* This is the maximum size (in chars) of a non read/write packet.
23860348 552 It is also used as a cap on the size of read/write packets. */
d01949b6
AC
553 long remote_packet_size;
554};
555
35b1e5cc
SS
556/* Utility: generate error from an incoming stub packet. */
557static void
558trace_error (char *buf)
559{
560 if (*buf++ != 'E')
561 return; /* not an error msg */
562 switch (*buf)
563 {
564 case '1': /* malformed packet error */
565 if (*++buf == '0') /* general case: */
566 error (_("remote.c: error in outgoing packet."));
567 else
568 error (_("remote.c: error in outgoing packet at field #%ld."),
569 strtol (buf, NULL, 16));
35b1e5cc
SS
570 default:
571 error (_("Target returns error code '%s'."), buf);
572 }
573}
574
575/* Utility: wait for reply from stub, while accepting "O" packets. */
576static char *
577remote_get_noisy_reply (char **buf_p,
578 long *sizeof_buf)
579{
580 do /* Loop on reply from remote stub. */
581 {
582 char *buf;
a744cf53 583
0df8b418 584 QUIT; /* Allow user to bail out with ^C. */
35b1e5cc
SS
585 getpkt (buf_p, sizeof_buf, 0);
586 buf = *buf_p;
ad91cd99 587 if (buf[0] == 'E')
35b1e5cc 588 trace_error (buf);
61012eef 589 else if (startswith (buf, "qRelocInsn:"))
dde08ee1
PA
590 {
591 ULONGEST ul;
592 CORE_ADDR from, to, org_to;
593 char *p, *pp;
594 int adjusted_size = 0;
7556d4a4 595 int relocated = 0;
dde08ee1
PA
596
597 p = buf + strlen ("qRelocInsn:");
598 pp = unpack_varlen_hex (p, &ul);
599 if (*pp != ';')
cb91c06a 600 error (_("invalid qRelocInsn packet: %s"), buf);
dde08ee1
PA
601 from = ul;
602
603 p = pp + 1;
a9cbf802 604 unpack_varlen_hex (p, &ul);
dde08ee1
PA
605 to = ul;
606
607 org_to = to;
608
492d29ea 609 TRY
dde08ee1 610 {
f5656ead 611 gdbarch_relocate_instruction (target_gdbarch (), &to, from);
7556d4a4 612 relocated = 1;
dde08ee1 613 }
492d29ea 614 CATCH (ex, RETURN_MASK_ALL)
7556d4a4
PA
615 {
616 if (ex.error == MEMORY_ERROR)
617 {
618 /* Propagate memory errors silently back to the
619 target. The stub may have limited the range of
620 addresses we can write to, for example. */
621 }
622 else
623 {
624 /* Something unexpectedly bad happened. Be verbose
625 so we can tell what, and propagate the error back
626 to the stub, so it doesn't get stuck waiting for
627 a response. */
628 exception_fprintf (gdb_stderr, ex,
629 _("warning: relocating instruction: "));
630 }
631 putpkt ("E01");
632 }
492d29ea 633 END_CATCH
7556d4a4
PA
634
635 if (relocated)
dde08ee1
PA
636 {
637 adjusted_size = to - org_to;
638
bba74b36 639 xsnprintf (buf, *sizeof_buf, "qRelocInsn:%x", adjusted_size);
dde08ee1
PA
640 putpkt (buf);
641 }
dde08ee1 642 }
ad91cd99 643 else if (buf[0] == 'O' && buf[1] != 'K')
35b1e5cc
SS
644 remote_console_output (buf + 1); /* 'O' message from stub */
645 else
0df8b418 646 return buf; /* Here's the actual reply. */
35b1e5cc
SS
647 }
648 while (1);
649}
3c3bea1c 650
d01949b6
AC
651/* Handle for retreving the remote protocol data from gdbarch. */
652static struct gdbarch_data *remote_gdbarch_data_handle;
653
ea9c271d
DJ
654static struct remote_arch_state *
655get_remote_arch_state (void)
d01949b6 656{
17d8546e 657 gdb_assert (target_gdbarch () != NULL);
19ba03f4
SM
658 return ((struct remote_arch_state *)
659 gdbarch_data (target_gdbarch (), remote_gdbarch_data_handle));
d01949b6
AC
660}
661
0b83947e
DJ
662/* Fetch the global remote target state. */
663
664static struct remote_state *
665get_remote_state (void)
666{
667 /* Make sure that the remote architecture state has been
668 initialized, because doing so might reallocate rs->buf. Any
669 function which calls getpkt also needs to be mindful of changes
670 to rs->buf, but this call limits the number of places which run
671 into trouble. */
672 get_remote_arch_state ();
673
674 return get_remote_state_raw ();
675}
676
94585166
DB
677/* Cleanup routine for the remote module's pspace data. */
678
679static void
680remote_pspace_data_cleanup (struct program_space *pspace, void *arg)
681{
19ba03f4 682 char *remote_exec_file = (char *) arg;
94585166
DB
683
684 xfree (remote_exec_file);
685}
686
687/* Fetch the remote exec-file from the current program space. */
688
689static const char *
690get_remote_exec_file (void)
691{
692 char *remote_exec_file;
693
19ba03f4
SM
694 remote_exec_file
695 = (char *) program_space_data (current_program_space,
696 remote_pspace_data);
94585166
DB
697 if (remote_exec_file == NULL)
698 return "";
699
700 return remote_exec_file;
701}
702
703/* Set the remote exec file for PSPACE. */
704
705static void
706set_pspace_remote_exec_file (struct program_space *pspace,
707 char *remote_exec_file)
708{
19ba03f4 709 char *old_file = (char *) program_space_data (pspace, remote_pspace_data);
94585166
DB
710
711 xfree (old_file);
712 set_program_space_data (pspace, remote_pspace_data,
713 xstrdup (remote_exec_file));
714}
715
716/* The "set/show remote exec-file" set command hook. */
717
718static void
719set_remote_exec_file (char *ignored, int from_tty,
720 struct cmd_list_element *c)
721{
722 gdb_assert (remote_exec_file_var != NULL);
723 set_pspace_remote_exec_file (current_program_space, remote_exec_file_var);
724}
725
726/* The "set/show remote exec-file" show command hook. */
727
728static void
729show_remote_exec_file (struct ui_file *file, int from_tty,
730 struct cmd_list_element *cmd, const char *value)
731{
732 fprintf_filtered (file, "%s\n", remote_exec_file_var);
733}
734
74ca34ce
DJ
735static int
736compare_pnums (const void *lhs_, const void *rhs_)
737{
19ba03f4
SM
738 const struct packet_reg * const *lhs
739 = (const struct packet_reg * const *) lhs_;
740 const struct packet_reg * const *rhs
741 = (const struct packet_reg * const *) rhs_;
74ca34ce
DJ
742
743 if ((*lhs)->pnum < (*rhs)->pnum)
744 return -1;
745 else if ((*lhs)->pnum == (*rhs)->pnum)
746 return 0;
747 else
748 return 1;
749}
750
c21236dc
PA
751static int
752map_regcache_remote_table (struct gdbarch *gdbarch, struct packet_reg *regs)
d01949b6 753{
74ca34ce 754 int regnum, num_remote_regs, offset;
74ca34ce 755 struct packet_reg **remote_regs;
ea9c271d 756
4a22f64d 757 for (regnum = 0; regnum < gdbarch_num_regs (gdbarch); regnum++)
ad10f812 758 {
c21236dc 759 struct packet_reg *r = &regs[regnum];
baef701f 760
4a22f64d 761 if (register_size (gdbarch, regnum) == 0)
baef701f
DJ
762 /* Do not try to fetch zero-sized (placeholder) registers. */
763 r->pnum = -1;
764 else
765 r->pnum = gdbarch_remote_register_number (gdbarch, regnum);
766
b323314b 767 r->regnum = regnum;
74ca34ce
DJ
768 }
769
770 /* Define the g/G packet format as the contents of each register
771 with a remote protocol number, in order of ascending protocol
772 number. */
773
224c3ddb 774 remote_regs = XALLOCAVEC (struct packet_reg *, gdbarch_num_regs (gdbarch));
f57d151a 775 for (num_remote_regs = 0, regnum = 0;
4a22f64d 776 regnum < gdbarch_num_regs (gdbarch);
f57d151a 777 regnum++)
c21236dc
PA
778 if (regs[regnum].pnum != -1)
779 remote_regs[num_remote_regs++] = &regs[regnum];
7d58c67d 780
74ca34ce
DJ
781 qsort (remote_regs, num_remote_regs, sizeof (struct packet_reg *),
782 compare_pnums);
783
784 for (regnum = 0, offset = 0; regnum < num_remote_regs; regnum++)
785 {
786 remote_regs[regnum]->in_g_packet = 1;
787 remote_regs[regnum]->offset = offset;
4a22f64d 788 offset += register_size (gdbarch, remote_regs[regnum]->regnum);
ad10f812
AC
789 }
790
c21236dc
PA
791 return offset;
792}
793
794/* Given the architecture described by GDBARCH, return the remote
795 protocol register's number and the register's offset in the g/G
796 packets of GDB register REGNUM, in PNUM and POFFSET respectively.
797 If the target does not have a mapping for REGNUM, return false,
798 otherwise, return true. */
799
800int
801remote_register_number_and_offset (struct gdbarch *gdbarch, int regnum,
802 int *pnum, int *poffset)
803{
c21236dc
PA
804 struct packet_reg *regs;
805 struct cleanup *old_chain;
806
807 gdb_assert (regnum < gdbarch_num_regs (gdbarch));
808
224c3ddb 809 regs = XCNEWVEC (struct packet_reg, gdbarch_num_regs (gdbarch));
c21236dc
PA
810 old_chain = make_cleanup (xfree, regs);
811
54887903 812 map_regcache_remote_table (gdbarch, regs);
c21236dc
PA
813
814 *pnum = regs[regnum].pnum;
815 *poffset = regs[regnum].offset;
816
817 do_cleanups (old_chain);
818
819 return *pnum != -1;
820}
821
822static void *
823init_remote_state (struct gdbarch *gdbarch)
824{
825 struct remote_state *rs = get_remote_state_raw ();
826 struct remote_arch_state *rsa;
827
828 rsa = GDBARCH_OBSTACK_ZALLOC (gdbarch, struct remote_arch_state);
829
830 /* Use the architecture to build a regnum<->pnum table, which will be
831 1:1 unless a feature set specifies otherwise. */
832 rsa->regs = GDBARCH_OBSTACK_CALLOC (gdbarch,
833 gdbarch_num_regs (gdbarch),
834 struct packet_reg);
835
74ca34ce
DJ
836 /* Record the maximum possible size of the g packet - it may turn out
837 to be smaller. */
c21236dc 838 rsa->sizeof_g_packet = map_regcache_remote_table (gdbarch, rsa->regs);
74ca34ce 839
0df8b418 840 /* Default maximum number of characters in a packet body. Many
d01949b6
AC
841 remote stubs have a hardwired buffer size of 400 bytes
842 (c.f. BUFMAX in m68k-stub.c and i386-stub.c). BUFMAX-1 is used
843 as the maximum packet-size to ensure that the packet and an extra
844 NUL character can always fit in the buffer. This stops GDB
845 trashing stubs that try to squeeze an extra NUL into what is
ea9c271d
DJ
846 already a full buffer (As of 1999-12-04 that was most stubs). */
847 rsa->remote_packet_size = 400 - 1;
d01949b6 848
ea9c271d
DJ
849 /* This one is filled in when a ``g'' packet is received. */
850 rsa->actual_register_packet_size = 0;
851
852 /* Should rsa->sizeof_g_packet needs more space than the
0df8b418
MS
853 default, adjust the size accordingly. Remember that each byte is
854 encoded as two characters. 32 is the overhead for the packet
855 header / footer. NOTE: cagney/1999-10-26: I suspect that 8
d01949b6 856 (``$NN:G...#NN'') is a better guess, the below has been padded a
23860348 857 little. */
ea9c271d
DJ
858 if (rsa->sizeof_g_packet > ((rsa->remote_packet_size - 32) / 2))
859 rsa->remote_packet_size = (rsa->sizeof_g_packet * 2 + 32);
802188a7 860
ea9c271d
DJ
861 /* Make sure that the packet buffer is plenty big enough for
862 this architecture. */
863 if (rs->buf_size < rsa->remote_packet_size)
864 {
865 rs->buf_size = 2 * rsa->remote_packet_size;
224c3ddb 866 rs->buf = (char *) xrealloc (rs->buf, rs->buf_size);
ea9c271d 867 }
6d820c5c 868
ea9c271d
DJ
869 return rsa;
870}
871
872/* Return the current allowed size of a remote packet. This is
873 inferred from the current architecture, and should be used to
874 limit the length of outgoing packets. */
875static long
876get_remote_packet_size (void)
877{
be2a5f71 878 struct remote_state *rs = get_remote_state ();
ea9c271d
DJ
879 struct remote_arch_state *rsa = get_remote_arch_state ();
880
be2a5f71
DJ
881 if (rs->explicit_packet_size)
882 return rs->explicit_packet_size;
883
ea9c271d 884 return rsa->remote_packet_size;
d01949b6
AC
885}
886
ad10f812 887static struct packet_reg *
ea9c271d 888packet_reg_from_regnum (struct remote_arch_state *rsa, long regnum)
ad10f812 889{
f5656ead 890 if (regnum < 0 && regnum >= gdbarch_num_regs (target_gdbarch ()))
b323314b
AC
891 return NULL;
892 else
ad10f812 893 {
ea9c271d 894 struct packet_reg *r = &rsa->regs[regnum];
a744cf53 895
b323314b
AC
896 gdb_assert (r->regnum == regnum);
897 return r;
ad10f812 898 }
ad10f812
AC
899}
900
901static struct packet_reg *
ea9c271d 902packet_reg_from_pnum (struct remote_arch_state *rsa, LONGEST pnum)
ad10f812 903{
b323314b 904 int i;
a744cf53 905
f5656ead 906 for (i = 0; i < gdbarch_num_regs (target_gdbarch ()); i++)
ad10f812 907 {
ea9c271d 908 struct packet_reg *r = &rsa->regs[i];
a744cf53 909
b323314b
AC
910 if (r->pnum == pnum)
911 return r;
ad10f812
AC
912 }
913 return NULL;
d01949b6
AC
914}
915
c906108c
SS
916static struct target_ops remote_ops;
917
918static struct target_ops extended_remote_ops;
919
6426a772
JM
920/* FIXME: cagney/1999-09-23: Even though getpkt was called with
921 ``forever'' still use the normal timeout mechanism. This is
922 currently used by the ASYNC code to guarentee that target reads
923 during the initial connect always time-out. Once getpkt has been
924 modified to return a timeout indication and, in turn
925 remote_wait()/wait_for_inferior() have gained a timeout parameter
23860348 926 this can go away. */
6426a772
JM
927static int wait_forever_enabled_p = 1;
928
9a7071a8
JB
929/* Allow the user to specify what sequence to send to the remote
930 when he requests a program interruption: Although ^C is usually
931 what remote systems expect (this is the default, here), it is
932 sometimes preferable to send a break. On other systems such
933 as the Linux kernel, a break followed by g, which is Magic SysRq g
934 is required in order to interrupt the execution. */
935const char interrupt_sequence_control_c[] = "Ctrl-C";
936const char interrupt_sequence_break[] = "BREAK";
937const char interrupt_sequence_break_g[] = "BREAK-g";
40478521 938static const char *const interrupt_sequence_modes[] =
9a7071a8
JB
939 {
940 interrupt_sequence_control_c,
941 interrupt_sequence_break,
942 interrupt_sequence_break_g,
943 NULL
944 };
945static const char *interrupt_sequence_mode = interrupt_sequence_control_c;
946
947static void
948show_interrupt_sequence (struct ui_file *file, int from_tty,
949 struct cmd_list_element *c,
950 const char *value)
951{
952 if (interrupt_sequence_mode == interrupt_sequence_control_c)
953 fprintf_filtered (file,
954 _("Send the ASCII ETX character (Ctrl-c) "
955 "to the remote target to interrupt the "
956 "execution of the program.\n"));
957 else if (interrupt_sequence_mode == interrupt_sequence_break)
958 fprintf_filtered (file,
959 _("send a break signal to the remote target "
960 "to interrupt the execution of the program.\n"));
961 else if (interrupt_sequence_mode == interrupt_sequence_break_g)
962 fprintf_filtered (file,
963 _("Send a break signal and 'g' a.k.a. Magic SysRq g to "
964 "the remote target to interrupt the execution "
965 "of Linux kernel.\n"));
966 else
967 internal_error (__FILE__, __LINE__,
968 _("Invalid value for interrupt_sequence_mode: %s."),
969 interrupt_sequence_mode);
970}
6426a772 971
9a7071a8
JB
972/* This boolean variable specifies whether interrupt_sequence is sent
973 to the remote target when gdb connects to it.
974 This is mostly needed when you debug the Linux kernel: The Linux kernel
975 expects BREAK g which is Magic SysRq g for connecting gdb. */
976static int interrupt_on_connect = 0;
c906108c 977
9a7071a8
JB
978/* This variable is used to implement the "set/show remotebreak" commands.
979 Since these commands are now deprecated in favor of "set/show remote
980 interrupt-sequence", it no longer has any effect on the code. */
c906108c
SS
981static int remote_break;
982
9a7071a8
JB
983static void
984set_remotebreak (char *args, int from_tty, struct cmd_list_element *c)
985{
986 if (remote_break)
987 interrupt_sequence_mode = interrupt_sequence_break;
988 else
989 interrupt_sequence_mode = interrupt_sequence_control_c;
990}
991
992static void
993show_remotebreak (struct ui_file *file, int from_tty,
994 struct cmd_list_element *c,
995 const char *value)
996{
997}
998
c906108c
SS
999/* This variable sets the number of bits in an address that are to be
1000 sent in a memory ("M" or "m") packet. Normally, after stripping
0df8b418 1001 leading zeros, the entire address would be sent. This variable
c906108c
SS
1002 restricts the address to REMOTE_ADDRESS_SIZE bits. HISTORY: The
1003 initial implementation of remote.c restricted the address sent in
1004 memory packets to ``host::sizeof long'' bytes - (typically 32
1005 bits). Consequently, for 64 bit targets, the upper 32 bits of an
1006 address was never sent. Since fixing this bug may cause a break in
1007 some remote targets this variable is principly provided to
23860348 1008 facilitate backward compatibility. */
c906108c 1009
883b9c6c 1010static unsigned int remote_address_size;
c906108c 1011
75c99385
PA
1012/* Temporary to track who currently owns the terminal. See
1013 remote_terminal_* for more details. */
6426a772
JM
1014
1015static int remote_async_terminal_ours_p;
1016
11cf8741 1017\f
11cf8741 1018/* User configurable variables for the number of characters in a
ea9c271d
DJ
1019 memory read/write packet. MIN (rsa->remote_packet_size,
1020 rsa->sizeof_g_packet) is the default. Some targets need smaller
24b06219 1021 values (fifo overruns, et.al.) and some users need larger values
ad10f812
AC
1022 (speed up transfers). The variables ``preferred_*'' (the user
1023 request), ``current_*'' (what was actually set) and ``forced_*''
23860348 1024 (Positive - a soft limit, negative - a hard limit). */
11cf8741
JM
1025
1026struct memory_packet_config
1027{
1028 char *name;
1029 long size;
1030 int fixed_p;
1031};
1032
a5c0808e
PA
1033/* The default max memory-write-packet-size. The 16k is historical.
1034 (It came from older GDB's using alloca for buffers and the
1035 knowledge (folklore?) that some hosts don't cope very well with
1036 large alloca calls.) */
1037#define DEFAULT_MAX_MEMORY_PACKET_SIZE 16384
1038
1039/* The minimum remote packet size for memory transfers. Ensures we
1040 can write at least one byte. */
1041#define MIN_MEMORY_PACKET_SIZE 20
1042
11cf8741
JM
1043/* Compute the current size of a read/write packet. Since this makes
1044 use of ``actual_register_packet_size'' the computation is dynamic. */
1045
1046static long
1047get_memory_packet_size (struct memory_packet_config *config)
1048{
d01949b6 1049 struct remote_state *rs = get_remote_state ();
ea9c271d
DJ
1050 struct remote_arch_state *rsa = get_remote_arch_state ();
1051
11cf8741
JM
1052 long what_they_get;
1053 if (config->fixed_p)
1054 {
1055 if (config->size <= 0)
a5c0808e 1056 what_they_get = DEFAULT_MAX_MEMORY_PACKET_SIZE;
11cf8741
JM
1057 else
1058 what_they_get = config->size;
1059 }
1060 else
1061 {
ea9c271d 1062 what_they_get = get_remote_packet_size ();
23860348 1063 /* Limit the packet to the size specified by the user. */
11cf8741
JM
1064 if (config->size > 0
1065 && what_they_get > config->size)
1066 what_they_get = config->size;
be2a5f71
DJ
1067
1068 /* Limit it to the size of the targets ``g'' response unless we have
1069 permission from the stub to use a larger packet size. */
1070 if (rs->explicit_packet_size == 0
1071 && rsa->actual_register_packet_size > 0
1072 && what_they_get > rsa->actual_register_packet_size)
1073 what_they_get = rsa->actual_register_packet_size;
11cf8741 1074 }
a5c0808e
PA
1075 if (what_they_get < MIN_MEMORY_PACKET_SIZE)
1076 what_they_get = MIN_MEMORY_PACKET_SIZE;
6d820c5c
DJ
1077
1078 /* Make sure there is room in the global buffer for this packet
1079 (including its trailing NUL byte). */
1080 if (rs->buf_size < what_they_get + 1)
1081 {
1082 rs->buf_size = 2 * what_they_get;
224c3ddb 1083 rs->buf = (char *) xrealloc (rs->buf, 2 * what_they_get);
6d820c5c
DJ
1084 }
1085
11cf8741
JM
1086 return what_they_get;
1087}
1088
0df8b418 1089/* Update the size of a read/write packet. If they user wants
23860348 1090 something really big then do a sanity check. */
11cf8741
JM
1091
1092static void
1093set_memory_packet_size (char *args, struct memory_packet_config *config)
1094{
1095 int fixed_p = config->fixed_p;
1096 long size = config->size;
a744cf53 1097
11cf8741 1098 if (args == NULL)
8a3fe4f8 1099 error (_("Argument required (integer, `fixed' or `limited')."));
11cf8741
JM
1100 else if (strcmp (args, "hard") == 0
1101 || strcmp (args, "fixed") == 0)
1102 fixed_p = 1;
1103 else if (strcmp (args, "soft") == 0
1104 || strcmp (args, "limit") == 0)
1105 fixed_p = 0;
1106 else
1107 {
1108 char *end;
a744cf53 1109
11cf8741
JM
1110 size = strtoul (args, &end, 0);
1111 if (args == end)
8a3fe4f8 1112 error (_("Invalid %s (bad syntax)."), config->name);
a5c0808e
PA
1113
1114 /* Instead of explicitly capping the size of a packet to or
1115 disallowing it, the user is allowed to set the size to
1116 something arbitrarily large. */
11cf8741 1117 }
a5c0808e
PA
1118
1119 /* So that the query shows the correct value. */
1120 if (size <= 0)
1121 size = DEFAULT_MAX_MEMORY_PACKET_SIZE;
1122
23860348 1123 /* Extra checks? */
11cf8741
JM
1124 if (fixed_p && !config->fixed_p)
1125 {
e2e0b3e5
AC
1126 if (! query (_("The target may not be able to correctly handle a %s\n"
1127 "of %ld bytes. Change the packet size? "),
11cf8741 1128 config->name, size))
8a3fe4f8 1129 error (_("Packet size not changed."));
11cf8741 1130 }
23860348 1131 /* Update the config. */
11cf8741
JM
1132 config->fixed_p = fixed_p;
1133 config->size = size;
1134}
1135
1136static void
1137show_memory_packet_size (struct memory_packet_config *config)
1138{
a3f17187 1139 printf_filtered (_("The %s is %ld. "), config->name, config->size);
11cf8741 1140 if (config->fixed_p)
a3f17187 1141 printf_filtered (_("Packets are fixed at %ld bytes.\n"),
11cf8741
JM
1142 get_memory_packet_size (config));
1143 else
a3f17187 1144 printf_filtered (_("Packets are limited to %ld bytes.\n"),
11cf8741
JM
1145 get_memory_packet_size (config));
1146}
1147
1148static struct memory_packet_config memory_write_packet_config =
1149{
1150 "memory-write-packet-size",
1151};
1152
1153static void
1154set_memory_write_packet_size (char *args, int from_tty)
1155{
1156 set_memory_packet_size (args, &memory_write_packet_config);
1157}
1158
1159static void
1160show_memory_write_packet_size (char *args, int from_tty)
1161{
1162 show_memory_packet_size (&memory_write_packet_config);
1163}
1164
1165static long
1166get_memory_write_packet_size (void)
1167{
1168 return get_memory_packet_size (&memory_write_packet_config);
1169}
1170
1171static struct memory_packet_config memory_read_packet_config =
1172{
1173 "memory-read-packet-size",
1174};
1175
1176static void
1177set_memory_read_packet_size (char *args, int from_tty)
1178{
1179 set_memory_packet_size (args, &memory_read_packet_config);
1180}
1181
1182static void
1183show_memory_read_packet_size (char *args, int from_tty)
1184{
1185 show_memory_packet_size (&memory_read_packet_config);
1186}
1187
1188static long
1189get_memory_read_packet_size (void)
1190{
1191 long size = get_memory_packet_size (&memory_read_packet_config);
a744cf53 1192
11cf8741
JM
1193 /* FIXME: cagney/1999-11-07: Functions like getpkt() need to get an
1194 extra buffer size argument before the memory read size can be
ea9c271d
DJ
1195 increased beyond this. */
1196 if (size > get_remote_packet_size ())
1197 size = get_remote_packet_size ();
11cf8741
JM
1198 return size;
1199}
1200
11cf8741 1201\f
5a2468f5 1202/* Generic configuration support for packets the stub optionally
0df8b418 1203 supports. Allows the user to specify the use of the packet as well
23860348 1204 as allowing GDB to auto-detect support in the remote stub. */
5a2468f5
JM
1205
1206enum packet_support
1207 {
1208 PACKET_SUPPORT_UNKNOWN = 0,
1209 PACKET_ENABLE,
1210 PACKET_DISABLE
1211 };
1212
5a2468f5
JM
1213struct packet_config
1214 {
bb572ddd
DJ
1215 const char *name;
1216 const char *title;
4082afcc
PA
1217
1218 /* If auto, GDB auto-detects support for this packet or feature,
1219 either through qSupported, or by trying the packet and looking
1220 at the response. If true, GDB assumes the target supports this
ca4f7f8b
PA
1221 packet. If false, the packet is disabled. Configs that don't
1222 have an associated command always have this set to auto. */
7f19b9a2 1223 enum auto_boolean detect;
4082afcc
PA
1224
1225 /* Does the target support this packet? */
5a2468f5
JM
1226 enum packet_support support;
1227 };
1228
d471ea57 1229/* Analyze a packet's return value and update the packet config
23860348 1230 accordingly. */
d471ea57
AC
1231
1232enum packet_result
1233{
1234 PACKET_ERROR,
1235 PACKET_OK,
1236 PACKET_UNKNOWN
1237};
1238
4082afcc
PA
1239static enum packet_support packet_config_support (struct packet_config *config);
1240static enum packet_support packet_support (int packet);
5a2468f5
JM
1241
1242static void
fba45db2 1243show_packet_config_cmd (struct packet_config *config)
5a2468f5
JM
1244{
1245 char *support = "internal-error";
a744cf53 1246
4082afcc 1247 switch (packet_config_support (config))
5a2468f5
JM
1248 {
1249 case PACKET_ENABLE:
1250 support = "enabled";
1251 break;
1252 case PACKET_DISABLE:
1253 support = "disabled";
1254 break;
1255 case PACKET_SUPPORT_UNKNOWN:
1256 support = "unknown";
1257 break;
1258 }
1259 switch (config->detect)
1260 {
7f19b9a2 1261 case AUTO_BOOLEAN_AUTO:
3e43a32a
MS
1262 printf_filtered (_("Support for the `%s' packet "
1263 "is auto-detected, currently %s.\n"),
37a105a1 1264 config->name, support);
5a2468f5 1265 break;
7f19b9a2
AC
1266 case AUTO_BOOLEAN_TRUE:
1267 case AUTO_BOOLEAN_FALSE:
37a105a1
DJ
1268 printf_filtered (_("Support for the `%s' packet is currently %s.\n"),
1269 config->name, support);
8e248173 1270 break;
5a2468f5
JM
1271 }
1272}
1273
1274static void
bb572ddd
DJ
1275add_packet_config_cmd (struct packet_config *config, const char *name,
1276 const char *title, int legacy)
d471ea57 1277{
5a2468f5
JM
1278 char *set_doc;
1279 char *show_doc;
d471ea57 1280 char *cmd_name;
3ed07be4 1281
5a2468f5
JM
1282 config->name = name;
1283 config->title = title;
b435e160
AC
1284 set_doc = xstrprintf ("Set use of remote protocol `%s' (%s) packet",
1285 name, title);
3e43a32a
MS
1286 show_doc = xstrprintf ("Show current use of remote "
1287 "protocol `%s' (%s) packet",
b435e160 1288 name, title);
d471ea57 1289 /* set/show TITLE-packet {auto,on,off} */
b435e160 1290 cmd_name = xstrprintf ("%s-packet", title);
e9e68a56 1291 add_setshow_auto_boolean_cmd (cmd_name, class_obscure,
3e43a32a
MS
1292 &config->detect, set_doc,
1293 show_doc, NULL, /* help_doc */
4082afcc 1294 NULL,
bb572ddd
DJ
1295 show_remote_protocol_packet_cmd,
1296 &remote_set_cmdlist, &remote_show_cmdlist);
1eefb858
TT
1297 /* The command code copies the documentation strings. */
1298 xfree (set_doc);
1299 xfree (show_doc);
23860348 1300 /* set/show remote NAME-packet {auto,on,off} -- legacy. */
d471ea57
AC
1301 if (legacy)
1302 {
1303 char *legacy_name;
a744cf53 1304
b435e160 1305 legacy_name = xstrprintf ("%s-packet", name);
d471ea57 1306 add_alias_cmd (legacy_name, cmd_name, class_obscure, 0,
bb572ddd 1307 &remote_set_cmdlist);
d471ea57 1308 add_alias_cmd (legacy_name, cmd_name, class_obscure, 0,
bb572ddd 1309 &remote_show_cmdlist);
d471ea57 1310 }
5a2468f5
JM
1311}
1312
d471ea57 1313static enum packet_result
a76d924d 1314packet_check_result (const char *buf)
5a2468f5 1315{
d471ea57 1316 if (buf[0] != '\0')
5a2468f5 1317 {
d471ea57 1318 /* The stub recognized the packet request. Check that the
23860348 1319 operation succeeded. */
a76d924d
DJ
1320 if (buf[0] == 'E'
1321 && isxdigit (buf[1]) && isxdigit (buf[2])
1322 && buf[3] == '\0')
1323 /* "Enn" - definitly an error. */
1324 return PACKET_ERROR;
1325
1326 /* Always treat "E." as an error. This will be used for
1327 more verbose error messages, such as E.memtypes. */
1328 if (buf[0] == 'E' && buf[1] == '.')
1329 return PACKET_ERROR;
1330
1331 /* The packet may or may not be OK. Just assume it is. */
1332 return PACKET_OK;
1333 }
1334 else
1335 /* The stub does not support the packet. */
1336 return PACKET_UNKNOWN;
1337}
1338
1339static enum packet_result
1340packet_ok (const char *buf, struct packet_config *config)
1341{
1342 enum packet_result result;
1343
4082afcc
PA
1344 if (config->detect != AUTO_BOOLEAN_TRUE
1345 && config->support == PACKET_DISABLE)
1346 internal_error (__FILE__, __LINE__,
1347 _("packet_ok: attempt to use a disabled packet"));
1348
a76d924d
DJ
1349 result = packet_check_result (buf);
1350 switch (result)
1351 {
1352 case PACKET_OK:
1353 case PACKET_ERROR:
1354 /* The stub recognized the packet request. */
4082afcc 1355 if (config->support == PACKET_SUPPORT_UNKNOWN)
d471ea57 1356 {
d471ea57
AC
1357 if (remote_debug)
1358 fprintf_unfiltered (gdb_stdlog,
4082afcc
PA
1359 "Packet %s (%s) is supported\n",
1360 config->name, config->title);
d471ea57 1361 config->support = PACKET_ENABLE;
d471ea57 1362 }
a76d924d
DJ
1363 break;
1364 case PACKET_UNKNOWN:
23860348 1365 /* The stub does not support the packet. */
4082afcc
PA
1366 if (config->detect == AUTO_BOOLEAN_AUTO
1367 && config->support == PACKET_ENABLE)
d471ea57 1368 {
4082afcc
PA
1369 /* If the stub previously indicated that the packet was
1370 supported then there is a protocol error. */
1371 error (_("Protocol error: %s (%s) conflicting enabled responses."),
1372 config->name, config->title);
1373 }
1374 else if (config->detect == AUTO_BOOLEAN_TRUE)
1375 {
1376 /* The user set it wrong. */
1377 error (_("Enabled packet %s (%s) not recognized by stub"),
1378 config->name, config->title);
d471ea57 1379 }
4082afcc
PA
1380
1381 if (remote_debug)
1382 fprintf_unfiltered (gdb_stdlog,
1383 "Packet %s (%s) is NOT supported\n",
1384 config->name, config->title);
1385 config->support = PACKET_DISABLE;
a76d924d 1386 break;
5a2468f5 1387 }
a76d924d
DJ
1388
1389 return result;
5a2468f5
JM
1390}
1391
444abaca
DJ
1392enum {
1393 PACKET_vCont = 0,
1394 PACKET_X,
1395 PACKET_qSymbol,
1396 PACKET_P,
1397 PACKET_p,
1398 PACKET_Z0,
1399 PACKET_Z1,
1400 PACKET_Z2,
1401 PACKET_Z3,
1402 PACKET_Z4,
15a201c8 1403 PACKET_vFile_setfs,
a6b151f1
DJ
1404 PACKET_vFile_open,
1405 PACKET_vFile_pread,
1406 PACKET_vFile_pwrite,
1407 PACKET_vFile_close,
1408 PACKET_vFile_unlink,
b9e7b9c3 1409 PACKET_vFile_readlink,
0a93529c 1410 PACKET_vFile_fstat,
0876f84a 1411 PACKET_qXfer_auxv,
23181151 1412 PACKET_qXfer_features,
c78fa86a 1413 PACKET_qXfer_exec_file,
cfa9d6d9 1414 PACKET_qXfer_libraries,
2268b414 1415 PACKET_qXfer_libraries_svr4,
fd79ecee 1416 PACKET_qXfer_memory_map,
0e7f50da
UW
1417 PACKET_qXfer_spu_read,
1418 PACKET_qXfer_spu_write,
07e059b5 1419 PACKET_qXfer_osdata,
dc146f7c 1420 PACKET_qXfer_threads,
0fb4aa4b 1421 PACKET_qXfer_statictrace_read,
b3b9301e 1422 PACKET_qXfer_traceframe_info,
169081d0 1423 PACKET_qXfer_uib,
711e434b 1424 PACKET_qGetTIBAddr,
444abaca 1425 PACKET_qGetTLSAddr,
be2a5f71 1426 PACKET_qSupported,
bd3eecc3 1427 PACKET_qTStatus,
89be2091 1428 PACKET_QPassSignals,
82075af2 1429 PACKET_QCatchSyscalls,
9b224c5e 1430 PACKET_QProgramSignals,
936d2992 1431 PACKET_qCRC,
08388c79 1432 PACKET_qSearch_memory,
2d717e4f
DJ
1433 PACKET_vAttach,
1434 PACKET_vRun,
a6f3e723 1435 PACKET_QStartNoAckMode,
82f73884 1436 PACKET_vKill,
4aa995e1
PA
1437 PACKET_qXfer_siginfo_read,
1438 PACKET_qXfer_siginfo_write,
0b16c5cf 1439 PACKET_qAttached,
4082afcc
PA
1440
1441 /* Support for conditional tracepoints. */
782b2b07 1442 PACKET_ConditionalTracepoints,
4082afcc
PA
1443
1444 /* Support for target-side breakpoint conditions. */
3788aec7 1445 PACKET_ConditionalBreakpoints,
4082afcc
PA
1446
1447 /* Support for target-side breakpoint commands. */
d3ce09f5 1448 PACKET_BreakpointCommands,
4082afcc
PA
1449
1450 /* Support for fast tracepoints. */
7a697b8d 1451 PACKET_FastTracepoints,
4082afcc
PA
1452
1453 /* Support for static tracepoints. */
0fb4aa4b 1454 PACKET_StaticTracepoints,
4082afcc
PA
1455
1456 /* Support for installing tracepoints while a trace experiment is
1457 running. */
1e4d1764 1458 PACKET_InstallInTrace,
4082afcc 1459
40ab02ce
MS
1460 PACKET_bc,
1461 PACKET_bs,
409873ef 1462 PACKET_TracepointSource,
d914c394 1463 PACKET_QAllow,
78d85199 1464 PACKET_qXfer_fdpic,
03583c20 1465 PACKET_QDisableRandomization,
d1feda86 1466 PACKET_QAgent,
f6f899bf 1467 PACKET_QTBuffer_size,
9accd112
MM
1468 PACKET_Qbtrace_off,
1469 PACKET_Qbtrace_bts,
b20a6524 1470 PACKET_Qbtrace_pt,
9accd112 1471 PACKET_qXfer_btrace,
4082afcc
PA
1472
1473 /* Support for the QNonStop packet. */
1474 PACKET_QNonStop,
1475
65706a29
PA
1476 /* Support for the QThreadEvents packet. */
1477 PACKET_QThreadEvents,
1478
4082afcc
PA
1479 /* Support for multi-process extensions. */
1480 PACKET_multiprocess_feature,
1481
1482 /* Support for enabling and disabling tracepoints while a trace
1483 experiment is running. */
1484 PACKET_EnableDisableTracepoints_feature,
1485
1486 /* Support for collecting strings using the tracenz bytecode. */
1487 PACKET_tracenz_feature,
1488
1489 /* Support for continuing to run a trace experiment while GDB is
1490 disconnected. */
1491 PACKET_DisconnectedTracing_feature,
1492
1493 /* Support for qXfer:libraries-svr4:read with a non-empty annex. */
1494 PACKET_augmented_libraries_svr4_read_feature,
1495
f4abbc16
MM
1496 /* Support for the qXfer:btrace-conf:read packet. */
1497 PACKET_qXfer_btrace_conf,
1498
d33501a5
MM
1499 /* Support for the Qbtrace-conf:bts:size packet. */
1500 PACKET_Qbtrace_conf_bts_size,
1501
f7e6eed5
PA
1502 /* Support for swbreak+ feature. */
1503 PACKET_swbreak_feature,
1504
1505 /* Support for hwbreak+ feature. */
1506 PACKET_hwbreak_feature,
1507
89245bc0
DB
1508 /* Support for fork events. */
1509 PACKET_fork_event_feature,
1510
1511 /* Support for vfork events. */
1512 PACKET_vfork_event_feature,
1513
b20a6524
MM
1514 /* Support for the Qbtrace-conf:pt:size packet. */
1515 PACKET_Qbtrace_conf_pt_size,
1516
94585166
DB
1517 /* Support for exec events. */
1518 PACKET_exec_event_feature,
1519
750ce8d1
YQ
1520 /* Support for query supported vCont actions. */
1521 PACKET_vContSupported,
1522
de979965
PA
1523 /* Support remote CTRL-C. */
1524 PACKET_vCtrlC,
1525
f2faf941
PA
1526 /* Support TARGET_WAITKIND_NO_RESUMED. */
1527 PACKET_no_resumed,
1528
444abaca
DJ
1529 PACKET_MAX
1530};
506fb367 1531
444abaca 1532static struct packet_config remote_protocol_packets[PACKET_MAX];
dc8acb97 1533
f7e6eed5
PA
1534/* Returns the packet's corresponding "set remote foo-packet" command
1535 state. See struct packet_config for more details. */
1536
1537static enum auto_boolean
1538packet_set_cmd_state (int packet)
1539{
1540 return remote_protocol_packets[packet].detect;
1541}
1542
4082afcc
PA
1543/* Returns whether a given packet or feature is supported. This takes
1544 into account the state of the corresponding "set remote foo-packet"
1545 command, which may be used to bypass auto-detection. */
dc8acb97 1546
4082afcc
PA
1547static enum packet_support
1548packet_config_support (struct packet_config *config)
1549{
1550 switch (config->detect)
444abaca 1551 {
4082afcc
PA
1552 case AUTO_BOOLEAN_TRUE:
1553 return PACKET_ENABLE;
1554 case AUTO_BOOLEAN_FALSE:
1555 return PACKET_DISABLE;
1556 case AUTO_BOOLEAN_AUTO:
1557 return config->support;
1558 default:
1559 gdb_assert_not_reached (_("bad switch"));
444abaca 1560 }
4082afcc
PA
1561}
1562
1563/* Same as packet_config_support, but takes the packet's enum value as
1564 argument. */
1565
1566static enum packet_support
1567packet_support (int packet)
1568{
1569 struct packet_config *config = &remote_protocol_packets[packet];
1570
1571 return packet_config_support (config);
dc8acb97
MS
1572}
1573
5a2468f5 1574static void
444abaca
DJ
1575show_remote_protocol_packet_cmd (struct ui_file *file, int from_tty,
1576 struct cmd_list_element *c,
1577 const char *value)
5a2468f5 1578{
444abaca 1579 struct packet_config *packet;
5a2468f5 1580
444abaca
DJ
1581 for (packet = remote_protocol_packets;
1582 packet < &remote_protocol_packets[PACKET_MAX];
1583 packet++)
1584 {
1585 if (&packet->detect == c->var)
1586 {
1587 show_packet_config_cmd (packet);
1588 return;
1589 }
1590 }
9b20d036 1591 internal_error (__FILE__, __LINE__, _("Could not find config for %s"),
444abaca 1592 c->name);
5a2468f5
JM
1593}
1594
d471ea57
AC
1595/* Should we try one of the 'Z' requests? */
1596
1597enum Z_packet_type
1598{
1599 Z_PACKET_SOFTWARE_BP,
1600 Z_PACKET_HARDWARE_BP,
1601 Z_PACKET_WRITE_WP,
1602 Z_PACKET_READ_WP,
1603 Z_PACKET_ACCESS_WP,
1604 NR_Z_PACKET_TYPES
1605};
96baa820 1606
d471ea57 1607/* For compatibility with older distributions. Provide a ``set remote
23860348 1608 Z-packet ...'' command that updates all the Z packet types. */
d471ea57 1609
7f19b9a2 1610static enum auto_boolean remote_Z_packet_detect;
96baa820
JM
1611
1612static void
fba45db2
KB
1613set_remote_protocol_Z_packet_cmd (char *args, int from_tty,
1614 struct cmd_list_element *c)
96baa820 1615{
d471ea57 1616 int i;
a744cf53 1617
d471ea57 1618 for (i = 0; i < NR_Z_PACKET_TYPES; i++)
4082afcc 1619 remote_protocol_packets[PACKET_Z0 + i].detect = remote_Z_packet_detect;
96baa820
JM
1620}
1621
1622static void
08546159
AC
1623show_remote_protocol_Z_packet_cmd (struct ui_file *file, int from_tty,
1624 struct cmd_list_element *c,
1625 const char *value)
96baa820 1626{
d471ea57 1627 int i;
a744cf53 1628
d471ea57
AC
1629 for (i = 0; i < NR_Z_PACKET_TYPES; i++)
1630 {
444abaca 1631 show_packet_config_cmd (&remote_protocol_packets[PACKET_Z0 + i]);
d471ea57 1632 }
96baa820
JM
1633}
1634
4082afcc
PA
1635/* Returns true if the multi-process extensions are in effect. */
1636
1637static int
1638remote_multi_process_p (struct remote_state *rs)
1639{
1640 return packet_support (PACKET_multiprocess_feature) == PACKET_ENABLE;
1641}
1642
de0d863e
DB
1643/* Returns true if fork events are supported. */
1644
1645static int
1646remote_fork_event_p (struct remote_state *rs)
1647{
1648 return packet_support (PACKET_fork_event_feature) == PACKET_ENABLE;
1649}
1650
c269dbdb
DB
1651/* Returns true if vfork events are supported. */
1652
1653static int
1654remote_vfork_event_p (struct remote_state *rs)
1655{
1656 return packet_support (PACKET_vfork_event_feature) == PACKET_ENABLE;
1657}
1658
d46addbb
DB
1659/* Returns true if exec events are supported. */
1660
1661static int
1662remote_exec_event_p (struct remote_state *rs)
1663{
1664 return packet_support (PACKET_exec_event_feature) == PACKET_ENABLE;
1665}
1666
cbb8991c
DB
1667/* Insert fork catchpoint target routine. If fork events are enabled
1668 then return success, nothing more to do. */
1669
1670static int
1671remote_insert_fork_catchpoint (struct target_ops *ops, int pid)
1672{
1673 struct remote_state *rs = get_remote_state ();
1674
1675 return !remote_fork_event_p (rs);
1676}
1677
1678/* Remove fork catchpoint target routine. Nothing to do, just
1679 return success. */
1680
1681static int
1682remote_remove_fork_catchpoint (struct target_ops *ops, int pid)
1683{
1684 return 0;
1685}
1686
1687/* Insert vfork catchpoint target routine. If vfork events are enabled
1688 then return success, nothing more to do. */
1689
1690static int
1691remote_insert_vfork_catchpoint (struct target_ops *ops, int pid)
1692{
1693 struct remote_state *rs = get_remote_state ();
1694
1695 return !remote_vfork_event_p (rs);
1696}
1697
1698/* Remove vfork catchpoint target routine. Nothing to do, just
1699 return success. */
1700
1701static int
1702remote_remove_vfork_catchpoint (struct target_ops *ops, int pid)
1703{
1704 return 0;
1705}
1706
d46addbb
DB
1707/* Insert exec catchpoint target routine. If exec events are
1708 enabled, just return success. */
1709
1710static int
1711remote_insert_exec_catchpoint (struct target_ops *ops, int pid)
1712{
1713 struct remote_state *rs = get_remote_state ();
1714
1715 return !remote_exec_event_p (rs);
1716}
1717
1718/* Remove exec catchpoint target routine. Nothing to do, just
1719 return success. */
1720
1721static int
1722remote_remove_exec_catchpoint (struct target_ops *ops, int pid)
1723{
1724 return 0;
1725}
1726
74531fed
PA
1727\f
1728/* Asynchronous signal handle registered as event loop source for
1729 when we have pending events ready to be passed to the core. */
1730
1731static struct async_event_handler *remote_async_inferior_event_token;
1732
c906108c
SS
1733\f
1734
79d7f229
PA
1735static ptid_t magic_null_ptid;
1736static ptid_t not_sent_ptid;
1737static ptid_t any_thread_ptid;
1738
0b16c5cf
PA
1739/* Find out if the stub attached to PID (and hence GDB should offer to
1740 detach instead of killing it when bailing out). */
1741
1742static int
1743remote_query_attached (int pid)
1744{
1745 struct remote_state *rs = get_remote_state ();
bba74b36 1746 size_t size = get_remote_packet_size ();
0b16c5cf 1747
4082afcc 1748 if (packet_support (PACKET_qAttached) == PACKET_DISABLE)
0b16c5cf
PA
1749 return 0;
1750
1751 if (remote_multi_process_p (rs))
bba74b36 1752 xsnprintf (rs->buf, size, "qAttached:%x", pid);
0b16c5cf 1753 else
bba74b36 1754 xsnprintf (rs->buf, size, "qAttached");
0b16c5cf
PA
1755
1756 putpkt (rs->buf);
1757 getpkt (&rs->buf, &rs->buf_size, 0);
1758
1759 switch (packet_ok (rs->buf,
1554e9be 1760 &remote_protocol_packets[PACKET_qAttached]))
0b16c5cf
PA
1761 {
1762 case PACKET_OK:
1763 if (strcmp (rs->buf, "1") == 0)
1764 return 1;
1765 break;
1766 case PACKET_ERROR:
1767 warning (_("Remote failure reply: %s"), rs->buf);
1768 break;
1769 case PACKET_UNKNOWN:
1770 break;
1771 }
1772
1773 return 0;
1774}
1775
49c62f2e
PA
1776/* Add PID to GDB's inferior table. If FAKE_PID_P is true, then PID
1777 has been invented by GDB, instead of reported by the target. Since
1778 we can be connected to a remote system before before knowing about
1779 any inferior, mark the target with execution when we find the first
1780 inferior. If ATTACHED is 1, then we had just attached to this
1781 inferior. If it is 0, then we just created this inferior. If it
1782 is -1, then try querying the remote stub to find out if it had
1b6e6f5c
GB
1783 attached to the inferior or not. If TRY_OPEN_EXEC is true then
1784 attempt to open this inferior's executable as the main executable
1785 if no main executable is open already. */
1941c569
PA
1786
1787static struct inferior *
1b6e6f5c
GB
1788remote_add_inferior (int fake_pid_p, int pid, int attached,
1789 int try_open_exec)
1941c569 1790{
1941c569
PA
1791 struct inferior *inf;
1792
0b16c5cf
PA
1793 /* Check whether this process we're learning about is to be
1794 considered attached, or if is to be considered to have been
1795 spawned by the stub. */
1796 if (attached == -1)
1797 attached = remote_query_attached (pid);
1798
f5656ead 1799 if (gdbarch_has_global_solist (target_gdbarch ()))
6c95b8df
PA
1800 {
1801 /* If the target shares code across all inferiors, then every
1802 attach adds a new inferior. */
1803 inf = add_inferior (pid);
1804
1805 /* ... and every inferior is bound to the same program space.
1806 However, each inferior may still have its own address
1807 space. */
1808 inf->aspace = maybe_new_address_space ();
1809 inf->pspace = current_program_space;
1810 }
1811 else
1812 {
1813 /* In the traditional debugging scenario, there's a 1-1 match
1814 between program/address spaces. We simply bind the inferior
1815 to the program space's address space. */
1816 inf = current_inferior ();
1817 inferior_appeared (inf, pid);
1818 }
1941c569 1819
0b16c5cf 1820 inf->attach_flag = attached;
49c62f2e 1821 inf->fake_pid_p = fake_pid_p;
0b16c5cf 1822
1b6e6f5c
GB
1823 /* If no main executable is currently open then attempt to
1824 open the file that was executed to create this inferior. */
835205d0 1825 if (try_open_exec && get_exec_file (0) == NULL)
bb805577 1826 exec_file_locate_attach (pid, 0, 1);
1b6e6f5c 1827
1941c569
PA
1828 return inf;
1829}
1830
85ad3aaf
PA
1831static struct private_thread_info *
1832 get_private_info_thread (struct thread_info *info);
1833
1941c569
PA
1834/* Add thread PTID to GDB's thread list. Tag it as executing/running
1835 according to RUNNING. */
1836
c906108c 1837static void
0d5b594f 1838remote_add_thread (ptid_t ptid, int running, int executing)
c906108c 1839{
b7ea362b 1840 struct remote_state *rs = get_remote_state ();
85ad3aaf 1841 struct thread_info *thread;
b7ea362b
PA
1842
1843 /* GDB historically didn't pull threads in the initial connection
1844 setup. If the remote target doesn't even have a concept of
1845 threads (e.g., a bare-metal target), even if internally we
1846 consider that a single-threaded target, mentioning a new thread
1847 might be confusing to the user. Be silent then, preserving the
1848 age old behavior. */
1849 if (rs->starting_up)
85ad3aaf 1850 thread = add_thread_silent (ptid);
b7ea362b 1851 else
85ad3aaf 1852 thread = add_thread (ptid);
1941c569 1853
85ad3aaf 1854 get_private_info_thread (thread)->vcont_resumed = executing;
0d5b594f 1855 set_executing (ptid, executing);
1941c569
PA
1856 set_running (ptid, running);
1857}
1858
1859/* Come here when we learn about a thread id from the remote target.
1860 It may be the first time we hear about such thread, so take the
1861 opportunity to add it to GDB's thread list. In case this is the
1862 first time we're noticing its corresponding inferior, add it to
0d5b594f
PA
1863 GDB's inferior list as well. EXECUTING indicates whether the
1864 thread is (internally) executing or stopped. */
1941c569
PA
1865
1866static void
0d5b594f 1867remote_notice_new_inferior (ptid_t currthread, int executing)
1941c569 1868{
0d5b594f
PA
1869 /* In non-stop mode, we assume new found threads are (externally)
1870 running until proven otherwise with a stop reply. In all-stop,
1871 we can only get here if all threads are stopped. */
1872 int running = target_is_non_stop_p () ? 1 : 0;
1873
c906108c
SS
1874 /* If this is a new thread, add it to GDB's thread list.
1875 If we leave it up to WFI to do this, bad things will happen. */
82f73884
PA
1876
1877 if (in_thread_list (currthread) && is_exited (currthread))
1878 {
1879 /* We're seeing an event on a thread id we knew had exited.
1880 This has to be a new thread reusing the old id. Add it. */
0d5b594f 1881 remote_add_thread (currthread, running, executing);
82f73884
PA
1882 return;
1883 }
1884
79d7f229 1885 if (!in_thread_list (currthread))
c0a2216e 1886 {
1941c569 1887 struct inferior *inf = NULL;
bad34192 1888 int pid = ptid_get_pid (currthread);
1941c569 1889
bad34192
PA
1890 if (ptid_is_pid (inferior_ptid)
1891 && pid == ptid_get_pid (inferior_ptid))
c0a2216e
PA
1892 {
1893 /* inferior_ptid has no thread member yet. This can happen
1894 with the vAttach -> remote_wait,"TAAthread:" path if the
1895 stub doesn't support qC. This is the first stop reported
1896 after an attach, so this is the main thread. Update the
1897 ptid in the thread list. */
bad34192
PA
1898 if (in_thread_list (pid_to_ptid (pid)))
1899 thread_change_ptid (inferior_ptid, currthread);
1900 else
1901 {
0d5b594f 1902 remote_add_thread (currthread, running, executing);
bad34192
PA
1903 inferior_ptid = currthread;
1904 }
dc146f7c 1905 return;
c0a2216e 1906 }
82f73884
PA
1907
1908 if (ptid_equal (magic_null_ptid, inferior_ptid))
c0a2216e
PA
1909 {
1910 /* inferior_ptid is not set yet. This can happen with the
1911 vRun -> remote_wait,"TAAthread:" path if the stub
1912 doesn't support qC. This is the first stop reported
1913 after an attach, so this is the main thread. Update the
1914 ptid in the thread list. */
dc146f7c 1915 thread_change_ptid (inferior_ptid, currthread);
82f73884 1916 return;
c0a2216e 1917 }
82f73884 1918
29c87f7f
PA
1919 /* When connecting to a target remote, or to a target
1920 extended-remote which already was debugging an inferior, we
1921 may not know about it yet. Add it before adding its child
1922 thread, so notifications are emitted in a sensible order. */
1923 if (!in_inferior_list (ptid_get_pid (currthread)))
49c62f2e
PA
1924 {
1925 struct remote_state *rs = get_remote_state ();
1926 int fake_pid_p = !remote_multi_process_p (rs);
1927
1928 inf = remote_add_inferior (fake_pid_p,
1b6e6f5c 1929 ptid_get_pid (currthread), -1, 1);
49c62f2e 1930 }
29c87f7f 1931
82f73884 1932 /* This is really a new thread. Add it. */
0d5b594f 1933 remote_add_thread (currthread, running, executing);
1941c569
PA
1934
1935 /* If we found a new inferior, let the common code do whatever
1936 it needs to with it (e.g., read shared libraries, insert
b7ea362b
PA
1937 breakpoints), unless we're just setting up an all-stop
1938 connection. */
1941c569 1939 if (inf != NULL)
b7ea362b
PA
1940 {
1941 struct remote_state *rs = get_remote_state ();
1942
6efcd9a8 1943 if (!rs->starting_up)
0d5b594f 1944 notice_new_inferior (currthread, executing, 0);
b7ea362b 1945 }
c0a2216e 1946 }
c906108c
SS
1947}
1948
85ad3aaf 1949/* Return THREAD's private thread data, creating it if necessary. */
dc146f7c 1950
70221824 1951static struct private_thread_info *
85ad3aaf 1952get_private_info_thread (struct thread_info *thread)
dc146f7c 1953{
85ad3aaf 1954 gdb_assert (thread != NULL);
dc146f7c 1955
85ad3aaf 1956 if (thread->priv == NULL)
dc146f7c 1957 {
85ad3aaf
PA
1958 struct private_thread_info *priv = XNEW (struct private_thread_info);
1959
1960 thread->private_dtor = free_private_thread_info;
1961 thread->priv = priv;
1962
1963 priv->core = -1;
1964 priv->extra = NULL;
1965 priv->name = NULL;
1966 priv->name = NULL;
1967 priv->last_resume_step = 0;
1968 priv->last_resume_sig = GDB_SIGNAL_0;
1969 priv->vcont_resumed = 0;
dc146f7c
VP
1970 }
1971
85ad3aaf
PA
1972 return thread->priv;
1973}
1974
1975/* Return PTID's private thread data, creating it if necessary. */
1976
1977static struct private_thread_info *
1978get_private_info_ptid (ptid_t ptid)
1979{
1980 struct thread_info *info = find_thread_ptid (ptid);
1981
1982 return get_private_info_thread (info);
dc146f7c
VP
1983}
1984
74531fed
PA
1985/* Call this function as a result of
1986 1) A halt indication (T packet) containing a thread id
1987 2) A direct query of currthread
0df8b418 1988 3) Successful execution of set thread */
74531fed
PA
1989
1990static void
47f8a51d 1991record_currthread (struct remote_state *rs, ptid_t currthread)
74531fed 1992{
47f8a51d 1993 rs->general_thread = currthread;
74531fed
PA
1994}
1995
89be2091
DJ
1996/* If 'QPassSignals' is supported, tell the remote stub what signals
1997 it can simply pass through to the inferior without reporting. */
1998
1999static void
94bedb42
TT
2000remote_pass_signals (struct target_ops *self,
2001 int numsigs, unsigned char *pass_signals)
89be2091 2002{
4082afcc 2003 if (packet_support (PACKET_QPassSignals) != PACKET_DISABLE)
89be2091
DJ
2004 {
2005 char *pass_packet, *p;
89be2091 2006 int count = 0, i;
747dc59d 2007 struct remote_state *rs = get_remote_state ();
89be2091
DJ
2008
2009 gdb_assert (numsigs < 256);
2010 for (i = 0; i < numsigs; i++)
2011 {
2455069d 2012 if (pass_signals[i])
89be2091
DJ
2013 count++;
2014 }
224c3ddb 2015 pass_packet = (char *) xmalloc (count * 3 + strlen ("QPassSignals:") + 1);
89be2091
DJ
2016 strcpy (pass_packet, "QPassSignals:");
2017 p = pass_packet + strlen (pass_packet);
2018 for (i = 0; i < numsigs; i++)
2019 {
2455069d 2020 if (pass_signals[i])
89be2091
DJ
2021 {
2022 if (i >= 16)
2023 *p++ = tohex (i >> 4);
2024 *p++ = tohex (i & 15);
2025 if (count)
2026 *p++ = ';';
2027 else
2028 break;
2029 count--;
2030 }
2031 }
2032 *p = 0;
747dc59d 2033 if (!rs->last_pass_packet || strcmp (rs->last_pass_packet, pass_packet))
89be2091 2034 {
89be2091
DJ
2035 putpkt (pass_packet);
2036 getpkt (&rs->buf, &rs->buf_size, 0);
8dc5b319 2037 packet_ok (rs->buf, &remote_protocol_packets[PACKET_QPassSignals]);
747dc59d
TT
2038 if (rs->last_pass_packet)
2039 xfree (rs->last_pass_packet);
2040 rs->last_pass_packet = pass_packet;
89be2091
DJ
2041 }
2042 else
2043 xfree (pass_packet);
2044 }
2045}
2046
82075af2
JS
2047/* If 'QCatchSyscalls' is supported, tell the remote stub
2048 to report syscalls to GDB. */
2049
2050static int
2051remote_set_syscall_catchpoint (struct target_ops *self,
2052 int pid, int needed, int any_count,
2053 int table_size, int *table)
2054{
2055 char *catch_packet;
2056 enum packet_result result;
2057 int n_sysno = 0;
2058
2059 if (packet_support (PACKET_QCatchSyscalls) == PACKET_DISABLE)
2060 {
2061 /* Not supported. */
2062 return 1;
2063 }
2064
2065 if (needed && !any_count)
2066 {
2067 int i;
2068
2069 /* Count how many syscalls are to be caught (table[sysno] != 0). */
2070 for (i = 0; i < table_size; i++)
2071 {
2072 if (table[i] != 0)
2073 n_sysno++;
2074 }
2075 }
2076
2077 if (remote_debug)
2078 {
2079 fprintf_unfiltered (gdb_stdlog,
2080 "remote_set_syscall_catchpoint "
2081 "pid %d needed %d any_count %d n_sysno %d\n",
2082 pid, needed, any_count, n_sysno);
2083 }
2084
2085 if (needed)
2086 {
2087 /* Prepare a packet with the sysno list, assuming max 8+1
2088 characters for a sysno. If the resulting packet size is too
2089 big, fallback on the non-selective packet. */
2090 const int maxpktsz = strlen ("QCatchSyscalls:1") + n_sysno * 9 + 1;
2091
c0518081 2092 catch_packet = (char *) xmalloc (maxpktsz);
82075af2
JS
2093 strcpy (catch_packet, "QCatchSyscalls:1");
2094 if (!any_count)
2095 {
2096 int i;
2097 char *p;
2098
2099 p = catch_packet;
2100 p += strlen (p);
2101
2102 /* Add in catch_packet each syscall to be caught (table[i] != 0). */
2103 for (i = 0; i < table_size; i++)
2104 {
2105 if (table[i] != 0)
2106 p += xsnprintf (p, catch_packet + maxpktsz - p, ";%x", i);
2107 }
2108 }
2109 if (strlen (catch_packet) > get_remote_packet_size ())
2110 {
2111 /* catch_packet too big. Fallback to less efficient
2112 non selective mode, with GDB doing the filtering. */
2113 catch_packet[sizeof ("QCatchSyscalls:1") - 1] = 0;
2114 }
2115 }
2116 else
2117 catch_packet = xstrdup ("QCatchSyscalls:0");
2118
2119 {
2120 struct cleanup *old_chain = make_cleanup (xfree, catch_packet);
2121 struct remote_state *rs = get_remote_state ();
2122
2123 putpkt (catch_packet);
2124 getpkt (&rs->buf, &rs->buf_size, 0);
2125 result = packet_ok (rs->buf, &remote_protocol_packets[PACKET_QCatchSyscalls]);
2126 do_cleanups (old_chain);
2127 if (result == PACKET_OK)
2128 return 0;
2129 else
2130 return -1;
2131 }
2132}
2133
9b224c5e
PA
2134/* If 'QProgramSignals' is supported, tell the remote stub what
2135 signals it should pass through to the inferior when detaching. */
2136
2137static void
daf5e9b6
TT
2138remote_program_signals (struct target_ops *self,
2139 int numsigs, unsigned char *signals)
9b224c5e 2140{
4082afcc 2141 if (packet_support (PACKET_QProgramSignals) != PACKET_DISABLE)
9b224c5e
PA
2142 {
2143 char *packet, *p;
2144 int count = 0, i;
5e4a05c4 2145 struct remote_state *rs = get_remote_state ();
9b224c5e
PA
2146
2147 gdb_assert (numsigs < 256);
2148 for (i = 0; i < numsigs; i++)
2149 {
2150 if (signals[i])
2151 count++;
2152 }
224c3ddb 2153 packet = (char *) xmalloc (count * 3 + strlen ("QProgramSignals:") + 1);
9b224c5e
PA
2154 strcpy (packet, "QProgramSignals:");
2155 p = packet + strlen (packet);
2156 for (i = 0; i < numsigs; i++)
2157 {
2158 if (signal_pass_state (i))
2159 {
2160 if (i >= 16)
2161 *p++ = tohex (i >> 4);
2162 *p++ = tohex (i & 15);
2163 if (count)
2164 *p++ = ';';
2165 else
2166 break;
2167 count--;
2168 }
2169 }
2170 *p = 0;
5e4a05c4
TT
2171 if (!rs->last_program_signals_packet
2172 || strcmp (rs->last_program_signals_packet, packet) != 0)
9b224c5e 2173 {
9b224c5e
PA
2174 putpkt (packet);
2175 getpkt (&rs->buf, &rs->buf_size, 0);
8dc5b319 2176 packet_ok (rs->buf, &remote_protocol_packets[PACKET_QProgramSignals]);
5e4a05c4
TT
2177 xfree (rs->last_program_signals_packet);
2178 rs->last_program_signals_packet = packet;
9b224c5e
PA
2179 }
2180 else
2181 xfree (packet);
2182 }
2183}
2184
79d7f229
PA
2185/* If PTID is MAGIC_NULL_PTID, don't set any thread. If PTID is
2186 MINUS_ONE_PTID, set the thread to -1, so the stub returns the
2187 thread. If GEN is set, set the general thread, if not, then set
2188 the step/continue thread. */
c906108c 2189static void
79d7f229 2190set_thread (struct ptid ptid, int gen)
c906108c 2191{
d01949b6 2192 struct remote_state *rs = get_remote_state ();
47f8a51d 2193 ptid_t state = gen ? rs->general_thread : rs->continue_thread;
6d820c5c 2194 char *buf = rs->buf;
79d7f229 2195 char *endbuf = rs->buf + get_remote_packet_size ();
c906108c 2196
79d7f229 2197 if (ptid_equal (state, ptid))
c906108c
SS
2198 return;
2199
79d7f229
PA
2200 *buf++ = 'H';
2201 *buf++ = gen ? 'g' : 'c';
2202 if (ptid_equal (ptid, magic_null_ptid))
2203 xsnprintf (buf, endbuf - buf, "0");
2204 else if (ptid_equal (ptid, any_thread_ptid))
2205 xsnprintf (buf, endbuf - buf, "0");
2206 else if (ptid_equal (ptid, minus_one_ptid))
2207 xsnprintf (buf, endbuf - buf, "-1");
2208 else
82f73884 2209 write_ptid (buf, endbuf, ptid);
79d7f229 2210 putpkt (rs->buf);
6d820c5c 2211 getpkt (&rs->buf, &rs->buf_size, 0);
c906108c 2212 if (gen)
47f8a51d 2213 rs->general_thread = ptid;
c906108c 2214 else
47f8a51d 2215 rs->continue_thread = ptid;
c906108c 2216}
79d7f229
PA
2217
2218static void
2219set_general_thread (struct ptid ptid)
2220{
2221 set_thread (ptid, 1);
2222}
2223
2224static void
2225set_continue_thread (struct ptid ptid)
2226{
2227 set_thread (ptid, 0);
2228}
2229
3c9c4b83
PA
2230/* Change the remote current process. Which thread within the process
2231 ends up selected isn't important, as long as it is the same process
2232 as what INFERIOR_PTID points to.
2233
2234 This comes from that fact that there is no explicit notion of
2235 "selected process" in the protocol. The selected process for
2236 general operations is the process the selected general thread
2237 belongs to. */
2238
2239static void
2240set_general_process (void)
2241{
2242 struct remote_state *rs = get_remote_state ();
2243
2244 /* If the remote can't handle multiple processes, don't bother. */
8020350c 2245 if (!remote_multi_process_p (rs))
3c9c4b83
PA
2246 return;
2247
2248 /* We only need to change the remote current thread if it's pointing
2249 at some other process. */
47f8a51d 2250 if (ptid_get_pid (rs->general_thread) != ptid_get_pid (inferior_ptid))
3c9c4b83
PA
2251 set_general_thread (inferior_ptid);
2252}
2253
c906108c 2254\f
7d1a114c
PA
2255/* Return nonzero if this is the main thread that we made up ourselves
2256 to model non-threaded targets as single-threaded. */
c906108c
SS
2257
2258static int
7d1a114c 2259remote_thread_always_alive (struct target_ops *ops, ptid_t ptid)
c906108c 2260{
c0a2216e
PA
2261 if (ptid_equal (ptid, magic_null_ptid))
2262 /* The main thread is always alive. */
2263 return 1;
2264
ba348170 2265 if (ptid_get_pid (ptid) != 0 && ptid_get_lwp (ptid) == 0)
c0a2216e
PA
2266 /* The main thread is always alive. This can happen after a
2267 vAttach, if the remote side doesn't support
2268 multi-threading. */
2269 return 1;
2270
7d1a114c
PA
2271 return 0;
2272}
2273
2274/* Return nonzero if the thread PTID is still alive on the remote
2275 system. */
2276
2277static int
2278remote_thread_alive (struct target_ops *ops, ptid_t ptid)
2279{
2280 struct remote_state *rs = get_remote_state ();
2281 char *p, *endp;
2282
2283 /* Check if this is a thread that we made up ourselves to model
2284 non-threaded targets as single-threaded. */
2285 if (remote_thread_always_alive (ops, ptid))
2286 return 1;
2287
82f73884
PA
2288 p = rs->buf;
2289 endp = rs->buf + get_remote_packet_size ();
2290
2291 *p++ = 'T';
2292 write_ptid (p, endp, ptid);
2293
2e9f7625 2294 putpkt (rs->buf);
6d820c5c 2295 getpkt (&rs->buf, &rs->buf_size, 0);
2e9f7625 2296 return (rs->buf[0] == 'O' && rs->buf[1] == 'K');
c906108c
SS
2297}
2298
79efa585
SM
2299/* Return a pointer to a thread name if we know it and NULL otherwise.
2300 The thread_info object owns the memory for the name. */
2301
2302static const char *
2303remote_thread_name (struct target_ops *ops, struct thread_info *info)
2304{
2305 if (info->priv != NULL)
2306 return info->priv->name;
2307
2308 return NULL;
2309}
2310
c906108c
SS
2311/* About these extended threadlist and threadinfo packets. They are
2312 variable length packets but, the fields within them are often fixed
2313 length. They are redundent enough to send over UDP as is the
2314 remote protocol in general. There is a matching unit test module
2315 in libstub. */
2316
23860348 2317/* WARNING: This threadref data structure comes from the remote O.S.,
0df8b418 2318 libstub protocol encoding, and remote.c. It is not particularly
23860348 2319 changable. */
cce74817
JM
2320
2321/* Right now, the internal structure is int. We want it to be bigger.
0df8b418 2322 Plan to fix this. */
cce74817 2323
23860348 2324typedef int gdb_threadref; /* Internal GDB thread reference. */
cce74817 2325
9d1f7ab2 2326/* gdb_ext_thread_info is an internal GDB data structure which is
cfde0993 2327 equivalent to the reply of the remote threadinfo packet. */
cce74817
JM
2328
2329struct gdb_ext_thread_info
c5aa993b 2330 {
23860348 2331 threadref threadid; /* External form of thread reference. */
2bc416ba 2332 int active; /* Has state interesting to GDB?
23860348 2333 regs, stack. */
2bc416ba 2334 char display[256]; /* Brief state display, name,
cedea757 2335 blocked/suspended. */
23860348 2336 char shortname[32]; /* To be used to name threads. */
2bc416ba 2337 char more_display[256]; /* Long info, statistics, queue depth,
23860348 2338 whatever. */
c5aa993b 2339 };
cce74817
JM
2340
2341/* The volume of remote transfers can be limited by submitting
2342 a mask containing bits specifying the desired information.
2343 Use a union of these values as the 'selection' parameter to
0df8b418 2344 get_thread_info. FIXME: Make these TAG names more thread specific. */
cce74817
JM
2345
2346#define TAG_THREADID 1
2347#define TAG_EXISTS 2
2348#define TAG_DISPLAY 4
2349#define TAG_THREADNAME 8
c5aa993b 2350#define TAG_MOREDISPLAY 16
cce74817 2351
23860348 2352#define BUF_THREAD_ID_SIZE (OPAQUETHREADBYTES * 2)
c906108c 2353
a14ed312 2354static char *unpack_nibble (char *buf, int *val);
cce74817 2355
a14ed312 2356static char *unpack_byte (char *buf, int *value);
cce74817 2357
a14ed312 2358static char *pack_int (char *buf, int value);
cce74817 2359
a14ed312 2360static char *unpack_int (char *buf, int *value);
cce74817 2361
a14ed312 2362static char *unpack_string (char *src, char *dest, int length);
cce74817 2363
23860348 2364static char *pack_threadid (char *pkt, threadref *id);
cce74817 2365
23860348 2366static char *unpack_threadid (char *inbuf, threadref *id);
cce74817 2367
23860348 2368void int_to_threadref (threadref *id, int value);
cce74817 2369
23860348 2370static int threadref_to_int (threadref *ref);
cce74817 2371
23860348 2372static void copy_threadref (threadref *dest, threadref *src);
cce74817 2373
23860348 2374static int threadmatch (threadref *dest, threadref *src);
cce74817 2375
2bc416ba 2376static char *pack_threadinfo_request (char *pkt, int mode,
23860348 2377 threadref *id);
cce74817 2378
a14ed312 2379static int remote_unpack_thread_info_response (char *pkt,
23860348 2380 threadref *expectedref,
a14ed312
KB
2381 struct gdb_ext_thread_info
2382 *info);
cce74817
JM
2383
2384
2bc416ba 2385static int remote_get_threadinfo (threadref *threadid,
23860348 2386 int fieldset, /*TAG mask */
a14ed312 2387 struct gdb_ext_thread_info *info);
cce74817 2388
a14ed312
KB
2389static char *pack_threadlist_request (char *pkt, int startflag,
2390 int threadcount,
23860348 2391 threadref *nextthread);
cce74817 2392
a14ed312
KB
2393static int parse_threadlist_response (char *pkt,
2394 int result_limit,
23860348 2395 threadref *original_echo,
2bc416ba 2396 threadref *resultlist,
23860348 2397 int *doneflag);
cce74817 2398
a14ed312 2399static int remote_get_threadlist (int startflag,
23860348 2400 threadref *nextthread,
a14ed312
KB
2401 int result_limit,
2402 int *done,
2bc416ba 2403 int *result_count,
23860348 2404 threadref *threadlist);
cce74817 2405
23860348 2406typedef int (*rmt_thread_action) (threadref *ref, void *context);
cce74817 2407
a14ed312
KB
2408static int remote_threadlist_iterator (rmt_thread_action stepfunction,
2409 void *context, int looplimit);
cce74817 2410
23860348 2411static int remote_newthread_step (threadref *ref, void *context);
cce74817 2412
82f73884
PA
2413
2414/* Write a PTID to BUF. ENDBUF points to one-passed-the-end of the
2415 buffer we're allowed to write to. Returns
2416 BUF+CHARACTERS_WRITTEN. */
2417
2418static char *
2419write_ptid (char *buf, const char *endbuf, ptid_t ptid)
2420{
2421 int pid, tid;
2422 struct remote_state *rs = get_remote_state ();
2423
2424 if (remote_multi_process_p (rs))
2425 {
2426 pid = ptid_get_pid (ptid);
2427 if (pid < 0)
2428 buf += xsnprintf (buf, endbuf - buf, "p-%x.", -pid);
2429 else
2430 buf += xsnprintf (buf, endbuf - buf, "p%x.", pid);
2431 }
ba348170 2432 tid = ptid_get_lwp (ptid);
82f73884
PA
2433 if (tid < 0)
2434 buf += xsnprintf (buf, endbuf - buf, "-%x", -tid);
2435 else
2436 buf += xsnprintf (buf, endbuf - buf, "%x", tid);
2437
2438 return buf;
2439}
2440
2441/* Extract a PTID from BUF. If non-null, OBUF is set to the to one
2442 passed the last parsed char. Returns null_ptid on error. */
2443
2444static ptid_t
2445read_ptid (char *buf, char **obuf)
2446{
2447 char *p = buf;
2448 char *pp;
2449 ULONGEST pid = 0, tid = 0;
82f73884
PA
2450
2451 if (*p == 'p')
2452 {
2453 /* Multi-process ptid. */
2454 pp = unpack_varlen_hex (p + 1, &pid);
2455 if (*pp != '.')
b37520b6 2456 error (_("invalid remote ptid: %s"), p);
82f73884
PA
2457
2458 p = pp;
2459 pp = unpack_varlen_hex (p + 1, &tid);
2460 if (obuf)
2461 *obuf = pp;
ba348170 2462 return ptid_build (pid, tid, 0);
82f73884
PA
2463 }
2464
2465 /* No multi-process. Just a tid. */
2466 pp = unpack_varlen_hex (p, &tid);
2467
c9f35b34
KB
2468 /* Return null_ptid when no thread id is found. */
2469 if (p == pp)
2470 {
2471 if (obuf)
2472 *obuf = pp;
2473 return null_ptid;
2474 }
2475
82f73884 2476 /* Since the stub is not sending a process id, then default to
ca19bf23
PA
2477 what's in inferior_ptid, unless it's null at this point. If so,
2478 then since there's no way to know the pid of the reported
2479 threads, use the magic number. */
2480 if (ptid_equal (inferior_ptid, null_ptid))
2481 pid = ptid_get_pid (magic_null_ptid);
2482 else
2483 pid = ptid_get_pid (inferior_ptid);
82f73884
PA
2484
2485 if (obuf)
2486 *obuf = pp;
ba348170 2487 return ptid_build (pid, tid, 0);
82f73884
PA
2488}
2489
c906108c 2490static int
fba45db2 2491stubhex (int ch)
c906108c
SS
2492{
2493 if (ch >= 'a' && ch <= 'f')
2494 return ch - 'a' + 10;
2495 if (ch >= '0' && ch <= '9')
2496 return ch - '0';
2497 if (ch >= 'A' && ch <= 'F')
2498 return ch - 'A' + 10;
2499 return -1;
2500}
2501
2502static int
fba45db2 2503stub_unpack_int (char *buff, int fieldlength)
c906108c
SS
2504{
2505 int nibble;
2506 int retval = 0;
2507
2508 while (fieldlength)
2509 {
2510 nibble = stubhex (*buff++);
2511 retval |= nibble;
2512 fieldlength--;
2513 if (fieldlength)
2514 retval = retval << 4;
2515 }
2516 return retval;
2517}
2518
c906108c 2519static char *
fba45db2 2520unpack_nibble (char *buf, int *val)
c906108c 2521{
b7589f7d 2522 *val = fromhex (*buf++);
c906108c
SS
2523 return buf;
2524}
2525
c906108c 2526static char *
fba45db2 2527unpack_byte (char *buf, int *value)
c906108c
SS
2528{
2529 *value = stub_unpack_int (buf, 2);
2530 return buf + 2;
2531}
2532
2533static char *
fba45db2 2534pack_int (char *buf, int value)
c906108c
SS
2535{
2536 buf = pack_hex_byte (buf, (value >> 24) & 0xff);
2537 buf = pack_hex_byte (buf, (value >> 16) & 0xff);
2538 buf = pack_hex_byte (buf, (value >> 8) & 0x0ff);
2539 buf = pack_hex_byte (buf, (value & 0xff));
2540 return buf;
2541}
2542
2543static char *
fba45db2 2544unpack_int (char *buf, int *value)
c906108c
SS
2545{
2546 *value = stub_unpack_int (buf, 8);
2547 return buf + 8;
2548}
2549
23860348 2550#if 0 /* Currently unused, uncomment when needed. */
a14ed312 2551static char *pack_string (char *pkt, char *string);
c906108c
SS
2552
2553static char *
fba45db2 2554pack_string (char *pkt, char *string)
c906108c
SS
2555{
2556 char ch;
2557 int len;
2558
2559 len = strlen (string);
2560 if (len > 200)
23860348 2561 len = 200; /* Bigger than most GDB packets, junk??? */
c906108c
SS
2562 pkt = pack_hex_byte (pkt, len);
2563 while (len-- > 0)
2564 {
2565 ch = *string++;
2566 if ((ch == '\0') || (ch == '#'))
23860348 2567 ch = '*'; /* Protect encapsulation. */
c906108c
SS
2568 *pkt++ = ch;
2569 }
2570 return pkt;
2571}
2572#endif /* 0 (unused) */
2573
2574static char *
fba45db2 2575unpack_string (char *src, char *dest, int length)
c906108c
SS
2576{
2577 while (length--)
2578 *dest++ = *src++;
2579 *dest = '\0';
2580 return src;
2581}
2582
2583static char *
fba45db2 2584pack_threadid (char *pkt, threadref *id)
c906108c
SS
2585{
2586 char *limit;
2587 unsigned char *altid;
2588
2589 altid = (unsigned char *) id;
2590 limit = pkt + BUF_THREAD_ID_SIZE;
2591 while (pkt < limit)
2592 pkt = pack_hex_byte (pkt, *altid++);
2593 return pkt;
2594}
2595
2596
2597static char *
fba45db2 2598unpack_threadid (char *inbuf, threadref *id)
c906108c
SS
2599{
2600 char *altref;
2601 char *limit = inbuf + BUF_THREAD_ID_SIZE;
2602 int x, y;
2603
2604 altref = (char *) id;
2605
2606 while (inbuf < limit)
2607 {
2608 x = stubhex (*inbuf++);
2609 y = stubhex (*inbuf++);
2610 *altref++ = (x << 4) | y;
2611 }
2612 return inbuf;
2613}
2614
2615/* Externally, threadrefs are 64 bits but internally, they are still
0df8b418 2616 ints. This is due to a mismatch of specifications. We would like
c906108c
SS
2617 to use 64bit thread references internally. This is an adapter
2618 function. */
2619
2620void
fba45db2 2621int_to_threadref (threadref *id, int value)
c906108c
SS
2622{
2623 unsigned char *scan;
2624
2625 scan = (unsigned char *) id;
2626 {
2627 int i = 4;
2628 while (i--)
2629 *scan++ = 0;
2630 }
2631 *scan++ = (value >> 24) & 0xff;
2632 *scan++ = (value >> 16) & 0xff;
2633 *scan++ = (value >> 8) & 0xff;
2634 *scan++ = (value & 0xff);
2635}
2636
2637static int
fba45db2 2638threadref_to_int (threadref *ref)
c906108c
SS
2639{
2640 int i, value = 0;
2641 unsigned char *scan;
2642
cfd77fa1 2643 scan = *ref;
c906108c
SS
2644 scan += 4;
2645 i = 4;
2646 while (i-- > 0)
2647 value = (value << 8) | ((*scan++) & 0xff);
2648 return value;
2649}
2650
2651static void
fba45db2 2652copy_threadref (threadref *dest, threadref *src)
c906108c
SS
2653{
2654 int i;
2655 unsigned char *csrc, *cdest;
2656
2657 csrc = (unsigned char *) src;
2658 cdest = (unsigned char *) dest;
2659 i = 8;
2660 while (i--)
2661 *cdest++ = *csrc++;
2662}
2663
2664static int
fba45db2 2665threadmatch (threadref *dest, threadref *src)
c906108c 2666{
23860348 2667 /* Things are broken right now, so just assume we got a match. */
c906108c
SS
2668#if 0
2669 unsigned char *srcp, *destp;
2670 int i, result;
2671 srcp = (char *) src;
2672 destp = (char *) dest;
2673
2674 result = 1;
2675 while (i-- > 0)
2676 result &= (*srcp++ == *destp++) ? 1 : 0;
2677 return result;
2678#endif
2679 return 1;
2680}
2681
2682/*
c5aa993b
JM
2683 threadid:1, # always request threadid
2684 context_exists:2,
2685 display:4,
2686 unique_name:8,
2687 more_display:16
2688 */
c906108c
SS
2689
2690/* Encoding: 'Q':8,'P':8,mask:32,threadid:64 */
2691
2692static char *
fba45db2 2693pack_threadinfo_request (char *pkt, int mode, threadref *id)
c906108c 2694{
23860348
MS
2695 *pkt++ = 'q'; /* Info Query */
2696 *pkt++ = 'P'; /* process or thread info */
2697 pkt = pack_int (pkt, mode); /* mode */
c906108c 2698 pkt = pack_threadid (pkt, id); /* threadid */
23860348 2699 *pkt = '\0'; /* terminate */
c906108c
SS
2700 return pkt;
2701}
2702
23860348 2703/* These values tag the fields in a thread info response packet. */
c906108c 2704/* Tagging the fields allows us to request specific fields and to
23860348 2705 add more fields as time goes by. */
c906108c 2706
23860348 2707#define TAG_THREADID 1 /* Echo the thread identifier. */
c5aa993b 2708#define TAG_EXISTS 2 /* Is this process defined enough to
23860348 2709 fetch registers and its stack? */
c5aa993b 2710#define TAG_DISPLAY 4 /* A short thing maybe to put on a window */
23860348 2711#define TAG_THREADNAME 8 /* string, maps 1-to-1 with a thread is. */
802188a7 2712#define TAG_MOREDISPLAY 16 /* Whatever the kernel wants to say about
23860348 2713 the process. */
c906108c
SS
2714
2715static int
fba45db2
KB
2716remote_unpack_thread_info_response (char *pkt, threadref *expectedref,
2717 struct gdb_ext_thread_info *info)
c906108c 2718{
d01949b6 2719 struct remote_state *rs = get_remote_state ();
c906108c 2720 int mask, length;
cfd77fa1 2721 int tag;
c906108c 2722 threadref ref;
6d820c5c 2723 char *limit = pkt + rs->buf_size; /* Plausible parsing limit. */
c906108c
SS
2724 int retval = 1;
2725
23860348 2726 /* info->threadid = 0; FIXME: implement zero_threadref. */
c906108c
SS
2727 info->active = 0;
2728 info->display[0] = '\0';
2729 info->shortname[0] = '\0';
2730 info->more_display[0] = '\0';
2731
23860348
MS
2732 /* Assume the characters indicating the packet type have been
2733 stripped. */
c906108c
SS
2734 pkt = unpack_int (pkt, &mask); /* arg mask */
2735 pkt = unpack_threadid (pkt, &ref);
2736
2737 if (mask == 0)
8a3fe4f8 2738 warning (_("Incomplete response to threadinfo request."));
c906108c 2739 if (!threadmatch (&ref, expectedref))
23860348 2740 { /* This is an answer to a different request. */
8a3fe4f8 2741 warning (_("ERROR RMT Thread info mismatch."));
c906108c
SS
2742 return 0;
2743 }
2744 copy_threadref (&info->threadid, &ref);
2745
23860348 2746 /* Loop on tagged fields , try to bail if somthing goes wrong. */
c906108c 2747
23860348
MS
2748 /* Packets are terminated with nulls. */
2749 while ((pkt < limit) && mask && *pkt)
c906108c
SS
2750 {
2751 pkt = unpack_int (pkt, &tag); /* tag */
23860348
MS
2752 pkt = unpack_byte (pkt, &length); /* length */
2753 if (!(tag & mask)) /* Tags out of synch with mask. */
c906108c 2754 {
8a3fe4f8 2755 warning (_("ERROR RMT: threadinfo tag mismatch."));
c906108c
SS
2756 retval = 0;
2757 break;
2758 }
2759 if (tag == TAG_THREADID)
2760 {
2761 if (length != 16)
2762 {
8a3fe4f8 2763 warning (_("ERROR RMT: length of threadid is not 16."));
c906108c
SS
2764 retval = 0;
2765 break;
2766 }
2767 pkt = unpack_threadid (pkt, &ref);
2768 mask = mask & ~TAG_THREADID;
2769 continue;
2770 }
2771 if (tag == TAG_EXISTS)
2772 {
2773 info->active = stub_unpack_int (pkt, length);
2774 pkt += length;
2775 mask = mask & ~(TAG_EXISTS);
2776 if (length > 8)
2777 {
8a3fe4f8 2778 warning (_("ERROR RMT: 'exists' length too long."));
c906108c
SS
2779 retval = 0;
2780 break;
2781 }
2782 continue;
2783 }
2784 if (tag == TAG_THREADNAME)
2785 {
2786 pkt = unpack_string (pkt, &info->shortname[0], length);
2787 mask = mask & ~TAG_THREADNAME;
2788 continue;
2789 }
2790 if (tag == TAG_DISPLAY)
2791 {
2792 pkt = unpack_string (pkt, &info->display[0], length);
2793 mask = mask & ~TAG_DISPLAY;
2794 continue;
2795 }
2796 if (tag == TAG_MOREDISPLAY)
2797 {
2798 pkt = unpack_string (pkt, &info->more_display[0], length);
2799 mask = mask & ~TAG_MOREDISPLAY;
2800 continue;
2801 }
8a3fe4f8 2802 warning (_("ERROR RMT: unknown thread info tag."));
23860348 2803 break; /* Not a tag we know about. */
c906108c
SS
2804 }
2805 return retval;
2806}
2807
2808static int
fba45db2
KB
2809remote_get_threadinfo (threadref *threadid, int fieldset, /* TAG mask */
2810 struct gdb_ext_thread_info *info)
c906108c 2811{
d01949b6 2812 struct remote_state *rs = get_remote_state ();
c906108c 2813 int result;
c906108c 2814
2e9f7625
DJ
2815 pack_threadinfo_request (rs->buf, fieldset, threadid);
2816 putpkt (rs->buf);
6d820c5c 2817 getpkt (&rs->buf, &rs->buf_size, 0);
3084dd77
PA
2818
2819 if (rs->buf[0] == '\0')
2820 return 0;
2821
2e9f7625 2822 result = remote_unpack_thread_info_response (rs->buf + 2,
23860348 2823 threadid, info);
c906108c
SS
2824 return result;
2825}
2826
c906108c
SS
2827/* Format: i'Q':8,i"L":8,initflag:8,batchsize:16,lastthreadid:32 */
2828
2829static char *
fba45db2
KB
2830pack_threadlist_request (char *pkt, int startflag, int threadcount,
2831 threadref *nextthread)
c906108c
SS
2832{
2833 *pkt++ = 'q'; /* info query packet */
2834 *pkt++ = 'L'; /* Process LIST or threadLIST request */
23860348 2835 pkt = pack_nibble (pkt, startflag); /* initflag 1 bytes */
c906108c
SS
2836 pkt = pack_hex_byte (pkt, threadcount); /* threadcount 2 bytes */
2837 pkt = pack_threadid (pkt, nextthread); /* 64 bit thread identifier */
2838 *pkt = '\0';
2839 return pkt;
2840}
2841
2842/* Encoding: 'q':8,'M':8,count:16,done:8,argthreadid:64,(threadid:64)* */
2843
2844static int
fba45db2
KB
2845parse_threadlist_response (char *pkt, int result_limit,
2846 threadref *original_echo, threadref *resultlist,
2847 int *doneflag)
c906108c 2848{
d01949b6 2849 struct remote_state *rs = get_remote_state ();
c906108c
SS
2850 char *limit;
2851 int count, resultcount, done;
2852
2853 resultcount = 0;
2854 /* Assume the 'q' and 'M chars have been stripped. */
6d820c5c 2855 limit = pkt + (rs->buf_size - BUF_THREAD_ID_SIZE);
23860348 2856 /* done parse past here */
c906108c
SS
2857 pkt = unpack_byte (pkt, &count); /* count field */
2858 pkt = unpack_nibble (pkt, &done);
2859 /* The first threadid is the argument threadid. */
2860 pkt = unpack_threadid (pkt, original_echo); /* should match query packet */
2861 while ((count-- > 0) && (pkt < limit))
2862 {
2863 pkt = unpack_threadid (pkt, resultlist++);
2864 if (resultcount++ >= result_limit)
2865 break;
2866 }
2867 if (doneflag)
2868 *doneflag = done;
2869 return resultcount;
2870}
2871
6dc54d91
PA
2872/* Fetch the next batch of threads from the remote. Returns -1 if the
2873 qL packet is not supported, 0 on error and 1 on success. */
2874
c906108c 2875static int
fba45db2
KB
2876remote_get_threadlist (int startflag, threadref *nextthread, int result_limit,
2877 int *done, int *result_count, threadref *threadlist)
c906108c 2878{
d01949b6 2879 struct remote_state *rs = get_remote_state ();
c906108c
SS
2880 int result = 1;
2881
23860348 2882 /* Trancate result limit to be smaller than the packet size. */
3e43a32a
MS
2883 if ((((result_limit + 1) * BUF_THREAD_ID_SIZE) + 10)
2884 >= get_remote_packet_size ())
ea9c271d 2885 result_limit = (get_remote_packet_size () / BUF_THREAD_ID_SIZE) - 2;
c906108c 2886
6d820c5c
DJ
2887 pack_threadlist_request (rs->buf, startflag, result_limit, nextthread);
2888 putpkt (rs->buf);
2889 getpkt (&rs->buf, &rs->buf_size, 0);
d8f2712d 2890 if (*rs->buf == '\0')
6dc54d91
PA
2891 {
2892 /* Packet not supported. */
2893 return -1;
2894 }
2895
2896 *result_count =
2897 parse_threadlist_response (rs->buf + 2, result_limit,
2898 &rs->echo_nextthread, threadlist, done);
c906108c 2899
0d031856 2900 if (!threadmatch (&rs->echo_nextthread, nextthread))
c906108c 2901 {
23860348
MS
2902 /* FIXME: This is a good reason to drop the packet. */
2903 /* Possably, there is a duplicate response. */
c906108c
SS
2904 /* Possabilities :
2905 retransmit immediatly - race conditions
2906 retransmit after timeout - yes
2907 exit
2908 wait for packet, then exit
2909 */
8a3fe4f8 2910 warning (_("HMM: threadlist did not echo arg thread, dropping it."));
23860348 2911 return 0; /* I choose simply exiting. */
c906108c
SS
2912 }
2913 if (*result_count <= 0)
2914 {
2915 if (*done != 1)
2916 {
8a3fe4f8 2917 warning (_("RMT ERROR : failed to get remote thread list."));
c906108c
SS
2918 result = 0;
2919 }
2920 return result; /* break; */
2921 }
2922 if (*result_count > result_limit)
2923 {
2924 *result_count = 0;
8a3fe4f8 2925 warning (_("RMT ERROR: threadlist response longer than requested."));
c906108c
SS
2926 return 0;
2927 }
2928 return result;
2929}
2930
6dc54d91
PA
2931/* Fetch the list of remote threads, with the qL packet, and call
2932 STEPFUNCTION for each thread found. Stops iterating and returns 1
2933 if STEPFUNCTION returns true. Stops iterating and returns 0 if the
2934 STEPFUNCTION returns false. If the packet is not supported,
2935 returns -1. */
c906108c 2936
c906108c 2937static int
fba45db2
KB
2938remote_threadlist_iterator (rmt_thread_action stepfunction, void *context,
2939 int looplimit)
c906108c 2940{
0d031856 2941 struct remote_state *rs = get_remote_state ();
c906108c
SS
2942 int done, i, result_count;
2943 int startflag = 1;
2944 int result = 1;
2945 int loopcount = 0;
c906108c
SS
2946
2947 done = 0;
2948 while (!done)
2949 {
2950 if (loopcount++ > looplimit)
2951 {
2952 result = 0;
8a3fe4f8 2953 warning (_("Remote fetch threadlist -infinite loop-."));
c906108c
SS
2954 break;
2955 }
6dc54d91
PA
2956 result = remote_get_threadlist (startflag, &rs->nextthread,
2957 MAXTHREADLISTRESULTS,
2958 &done, &result_count,
2959 rs->resultthreadlist);
2960 if (result <= 0)
2961 break;
23860348 2962 /* Clear for later iterations. */
c906108c
SS
2963 startflag = 0;
2964 /* Setup to resume next batch of thread references, set nextthread. */
2965 if (result_count >= 1)
0d031856
TT
2966 copy_threadref (&rs->nextthread,
2967 &rs->resultthreadlist[result_count - 1]);
c906108c
SS
2968 i = 0;
2969 while (result_count--)
6dc54d91
PA
2970 {
2971 if (!(*stepfunction) (&rs->resultthreadlist[i++], context))
2972 {
2973 result = 0;
2974 break;
2975 }
2976 }
c906108c
SS
2977 }
2978 return result;
2979}
2980
6dc54d91
PA
2981/* A thread found on the remote target. */
2982
2983typedef struct thread_item
2984{
2985 /* The thread's PTID. */
2986 ptid_t ptid;
2987
2988 /* The thread's extra info. May be NULL. */
2989 char *extra;
2990
79efa585
SM
2991 /* The thread's name. May be NULL. */
2992 char *name;
2993
6dc54d91
PA
2994 /* The core the thread was running on. -1 if not known. */
2995 int core;
2996} thread_item_t;
2997DEF_VEC_O(thread_item_t);
2998
2999/* Context passed around to the various methods listing remote
3000 threads. As new threads are found, they're added to the ITEMS
3001 vector. */
3002
3003struct threads_listing_context
3004{
3005 /* The threads found on the remote target. */
3006 VEC (thread_item_t) *items;
3007};
3008
80134cf5
PA
3009/* Discard the contents of the constructed thread listing context. */
3010
3011static void
3012clear_threads_listing_context (void *p)
3013{
19ba03f4
SM
3014 struct threads_listing_context *context
3015 = (struct threads_listing_context *) p;
80134cf5
PA
3016 int i;
3017 struct thread_item *item;
3018
3019 for (i = 0; VEC_iterate (thread_item_t, context->items, i, item); ++i)
79efa585
SM
3020 {
3021 xfree (item->extra);
3022 xfree (item->name);
3023 }
80134cf5
PA
3024
3025 VEC_free (thread_item_t, context->items);
3026}
3027
cbb8991c
DB
3028/* Remove the thread specified as the related_pid field of WS
3029 from the CONTEXT list. */
3030
3031static void
3032threads_listing_context_remove (struct target_waitstatus *ws,
3033 struct threads_listing_context *context)
3034{
3035 struct thread_item *item;
3036 int i;
3037 ptid_t child_ptid = ws->value.related_pid;
3038
3039 for (i = 0; VEC_iterate (thread_item_t, context->items, i, item); ++i)
3040 {
3041 if (ptid_equal (item->ptid, child_ptid))
3042 {
3043 VEC_ordered_remove (thread_item_t, context->items, i);
3044 break;
3045 }
3046 }
3047}
3048
c906108c 3049static int
6dc54d91 3050remote_newthread_step (threadref *ref, void *data)
c906108c 3051{
19ba03f4
SM
3052 struct threads_listing_context *context
3053 = (struct threads_listing_context *) data;
6dc54d91 3054 struct thread_item item;
79d7f229 3055 int pid = ptid_get_pid (inferior_ptid);
39f77062 3056
6dc54d91
PA
3057 item.ptid = ptid_build (pid, threadref_to_int (ref), 0);
3058 item.core = -1;
2e3b657e 3059 item.name = NULL;
6dc54d91
PA
3060 item.extra = NULL;
3061
3062 VEC_safe_push (thread_item_t, context->items, &item);
3063
c906108c
SS
3064 return 1; /* continue iterator */
3065}
3066
3067#define CRAZY_MAX_THREADS 1000
3068
39f77062
KB
3069static ptid_t
3070remote_current_thread (ptid_t oldpid)
c906108c 3071{
d01949b6 3072 struct remote_state *rs = get_remote_state ();
c906108c
SS
3073
3074 putpkt ("qC");
6d820c5c 3075 getpkt (&rs->buf, &rs->buf_size, 0);
2e9f7625 3076 if (rs->buf[0] == 'Q' && rs->buf[1] == 'C')
c9f35b34
KB
3077 {
3078 char *obuf;
3079 ptid_t result;
3080
3081 result = read_ptid (&rs->buf[2], &obuf);
3082 if (*obuf != '\0' && remote_debug)
3083 fprintf_unfiltered (gdb_stdlog,
3084 "warning: garbage in qC reply\n");
3085
3086 return result;
3087 }
c906108c
SS
3088 else
3089 return oldpid;
3090}
3091
6dc54d91 3092/* List remote threads using the deprecated qL packet. */
cce74817 3093
6dc54d91
PA
3094static int
3095remote_get_threads_with_ql (struct target_ops *ops,
3096 struct threads_listing_context *context)
c906108c 3097{
6dc54d91
PA
3098 if (remote_threadlist_iterator (remote_newthread_step, context,
3099 CRAZY_MAX_THREADS) >= 0)
3100 return 1;
3101
3102 return 0;
c906108c
SS
3103}
3104
dc146f7c
VP
3105#if defined(HAVE_LIBEXPAT)
3106
dc146f7c
VP
3107static void
3108start_thread (struct gdb_xml_parser *parser,
3109 const struct gdb_xml_element *element,
3110 void *user_data, VEC(gdb_xml_value_s) *attributes)
3111{
19ba03f4
SM
3112 struct threads_listing_context *data
3113 = (struct threads_listing_context *) user_data;
dc146f7c
VP
3114
3115 struct thread_item item;
3116 char *id;
3d2c1d41 3117 struct gdb_xml_value *attr;
dc146f7c 3118
19ba03f4 3119 id = (char *) xml_find_attribute (attributes, "id")->value;
dc146f7c
VP
3120 item.ptid = read_ptid (id, NULL);
3121
3d2c1d41
PA
3122 attr = xml_find_attribute (attributes, "core");
3123 if (attr != NULL)
3124 item.core = *(ULONGEST *) attr->value;
dc146f7c
VP
3125 else
3126 item.core = -1;
3127
79efa585 3128 attr = xml_find_attribute (attributes, "name");
e1961661 3129 item.name = attr != NULL ? xstrdup ((const char *) attr->value) : NULL;
79efa585 3130
dc146f7c
VP
3131 item.extra = 0;
3132
3133 VEC_safe_push (thread_item_t, data->items, &item);
3134}
3135
3136static void
3137end_thread (struct gdb_xml_parser *parser,
3138 const struct gdb_xml_element *element,
3139 void *user_data, const char *body_text)
3140{
19ba03f4
SM
3141 struct threads_listing_context *data
3142 = (struct threads_listing_context *) user_data;
dc146f7c
VP
3143
3144 if (body_text && *body_text)
2ae2a0b7 3145 VEC_last (thread_item_t, data->items)->extra = xstrdup (body_text);
dc146f7c
VP
3146}
3147
3148const struct gdb_xml_attribute thread_attributes[] = {
3149 { "id", GDB_XML_AF_NONE, NULL, NULL },
3150 { "core", GDB_XML_AF_OPTIONAL, gdb_xml_parse_attr_ulongest, NULL },
79efa585 3151 { "name", GDB_XML_AF_OPTIONAL, NULL, NULL },
dc146f7c
VP
3152 { NULL, GDB_XML_AF_NONE, NULL, NULL }
3153};
3154
3155const struct gdb_xml_element thread_children[] = {
3156 { NULL, NULL, NULL, GDB_XML_EF_NONE, NULL, NULL }
3157};
3158
3159const struct gdb_xml_element threads_children[] = {
3160 { "thread", thread_attributes, thread_children,
3161 GDB_XML_EF_REPEATABLE | GDB_XML_EF_OPTIONAL,
3162 start_thread, end_thread },
3163 { NULL, NULL, NULL, GDB_XML_EF_NONE, NULL, NULL }
3164};
3165
3166const struct gdb_xml_element threads_elements[] = {
3167 { "threads", NULL, threads_children,
3168 GDB_XML_EF_NONE, NULL, NULL },
3169 { NULL, NULL, NULL, GDB_XML_EF_NONE, NULL, NULL }
3170};
3171
3172#endif
3173
6dc54d91 3174/* List remote threads using qXfer:threads:read. */
9d1f7ab2 3175
6dc54d91
PA
3176static int
3177remote_get_threads_with_qxfer (struct target_ops *ops,
3178 struct threads_listing_context *context)
0f71a2f6 3179{
dc146f7c 3180#if defined(HAVE_LIBEXPAT)
4082afcc 3181 if (packet_support (PACKET_qXfer_threads) == PACKET_ENABLE)
dc146f7c 3182 {
6dc54d91 3183 char *xml = target_read_stralloc (ops, TARGET_OBJECT_THREADS, NULL);
dc146f7c 3184 struct cleanup *back_to = make_cleanup (xfree, xml);
efc0eabd 3185
6dc54d91 3186 if (xml != NULL && *xml != '\0')
dc146f7c 3187 {
6dc54d91
PA
3188 gdb_xml_parse_quick (_("threads"), "threads.dtd",
3189 threads_elements, xml, context);
dc146f7c
VP
3190 }
3191
3192 do_cleanups (back_to);
6dc54d91 3193 return 1;
dc146f7c
VP
3194 }
3195#endif
3196
6dc54d91
PA
3197 return 0;
3198}
3199
3200/* List remote threads using qfThreadInfo/qsThreadInfo. */
3201
3202static int
3203remote_get_threads_with_qthreadinfo (struct target_ops *ops,
3204 struct threads_listing_context *context)
3205{
3206 struct remote_state *rs = get_remote_state ();
3207
b80fafe3 3208 if (rs->use_threadinfo_query)
9d1f7ab2 3209 {
6dc54d91
PA
3210 char *bufp;
3211
9d1f7ab2 3212 putpkt ("qfThreadInfo");
6d820c5c 3213 getpkt (&rs->buf, &rs->buf_size, 0);
2e9f7625 3214 bufp = rs->buf;
9d1f7ab2 3215 if (bufp[0] != '\0') /* q packet recognized */
802188a7 3216 {
9d1f7ab2
MS
3217 while (*bufp++ == 'm') /* reply contains one or more TID */
3218 {
3219 do
3220 {
6dc54d91
PA
3221 struct thread_item item;
3222
3223 item.ptid = read_ptid (bufp, &bufp);
3224 item.core = -1;
2e3b657e 3225 item.name = NULL;
6dc54d91
PA
3226 item.extra = NULL;
3227
3228 VEC_safe_push (thread_item_t, context->items, &item);
9d1f7ab2
MS
3229 }
3230 while (*bufp++ == ','); /* comma-separated list */
3231 putpkt ("qsThreadInfo");
6d820c5c 3232 getpkt (&rs->buf, &rs->buf_size, 0);
6dc54d91 3233 bufp = rs->buf;
9d1f7ab2 3234 }
6dc54d91
PA
3235 return 1;
3236 }
3237 else
3238 {
3239 /* Packet not recognized. */
3240 rs->use_threadinfo_query = 0;
9d1f7ab2
MS
3241 }
3242 }
3243
6dc54d91
PA
3244 return 0;
3245}
3246
e8032dde 3247/* Implement the to_update_thread_list function for the remote
6dc54d91
PA
3248 targets. */
3249
3250static void
e8032dde 3251remote_update_thread_list (struct target_ops *ops)
6dc54d91 3252{
6dc54d91
PA
3253 struct threads_listing_context context;
3254 struct cleanup *old_chain;
ab970af1 3255 int got_list = 0;
e8032dde 3256
6dc54d91
PA
3257 context.items = NULL;
3258 old_chain = make_cleanup (clear_threads_listing_context, &context);
3259
3260 /* We have a few different mechanisms to fetch the thread list. Try
3261 them all, starting with the most preferred one first, falling
3262 back to older methods. */
3263 if (remote_get_threads_with_qxfer (ops, &context)
3264 || remote_get_threads_with_qthreadinfo (ops, &context)
3265 || remote_get_threads_with_ql (ops, &context))
3266 {
3267 int i;
3268 struct thread_item *item;
ab970af1
PA
3269 struct thread_info *tp, *tmp;
3270
3271 got_list = 1;
3272
7d1a114c
PA
3273 if (VEC_empty (thread_item_t, context.items)
3274 && remote_thread_always_alive (ops, inferior_ptid))
3275 {
3276 /* Some targets don't really support threads, but still
3277 reply an (empty) thread list in response to the thread
3278 listing packets, instead of replying "packet not
3279 supported". Exit early so we don't delete the main
3280 thread. */
3281 do_cleanups (old_chain);
3282 return;
3283 }
3284
ab970af1
PA
3285 /* CONTEXT now holds the current thread list on the remote
3286 target end. Delete GDB-side threads no longer found on the
3287 target. */
8a06aea7 3288 ALL_THREADS_SAFE (tp, tmp)
cbb8991c 3289 {
ab970af1
PA
3290 for (i = 0;
3291 VEC_iterate (thread_item_t, context.items, i, item);
3292 ++i)
3293 {
3294 if (ptid_equal (item->ptid, tp->ptid))
3295 break;
3296 }
3297
3298 if (i == VEC_length (thread_item_t, context.items))
3299 {
3300 /* Not found. */
3301 delete_thread (tp->ptid);
3302 }
cbb8991c
DB
3303 }
3304
3305 /* Remove any unreported fork child threads from CONTEXT so
3306 that we don't interfere with follow fork, which is where
3307 creation of such threads is handled. */
3308 remove_new_fork_children (&context);
74531fed 3309
ab970af1 3310 /* And now add threads we don't know about yet to our list. */
6dc54d91
PA
3311 for (i = 0;
3312 VEC_iterate (thread_item_t, context.items, i, item);
3313 ++i)
3314 {
3315 if (!ptid_equal (item->ptid, null_ptid))
3316 {
3317 struct private_thread_info *info;
3318 /* In non-stop mode, we assume new found threads are
0d5b594f
PA
3319 executing until proven otherwise with a stop reply.
3320 In all-stop, we can only get here if all threads are
6dc54d91 3321 stopped. */
0d5b594f 3322 int executing = target_is_non_stop_p () ? 1 : 0;
6dc54d91 3323
0d5b594f 3324 remote_notice_new_inferior (item->ptid, executing);
6dc54d91 3325
85ad3aaf 3326 info = get_private_info_ptid (item->ptid);
6dc54d91
PA
3327 info->core = item->core;
3328 info->extra = item->extra;
3329 item->extra = NULL;
79efa585
SM
3330 info->name = item->name;
3331 item->name = NULL;
6dc54d91
PA
3332 }
3333 }
3334 }
3335
ab970af1
PA
3336 if (!got_list)
3337 {
3338 /* If no thread listing method is supported, then query whether
3339 each known thread is alive, one by one, with the T packet.
3340 If the target doesn't support threads at all, then this is a
3341 no-op. See remote_thread_alive. */
3342 prune_threads ();
3343 }
3344
6dc54d91 3345 do_cleanups (old_chain);
9d1f7ab2
MS
3346}
3347
802188a7 3348/*
9d1f7ab2
MS
3349 * Collect a descriptive string about the given thread.
3350 * The target may say anything it wants to about the thread
3351 * (typically info about its blocked / runnable state, name, etc.).
3352 * This string will appear in the info threads display.
802188a7 3353 *
9d1f7ab2
MS
3354 * Optional: targets are not required to implement this function.
3355 */
3356
3357static char *
c15906d8 3358remote_threads_extra_info (struct target_ops *self, struct thread_info *tp)
9d1f7ab2 3359{
d01949b6 3360 struct remote_state *rs = get_remote_state ();
9d1f7ab2
MS
3361 int result;
3362 int set;
3363 threadref id;
3364 struct gdb_ext_thread_info threadinfo;
23860348 3365 static char display_buf[100]; /* arbitrary... */
9d1f7ab2
MS
3366 int n = 0; /* position in display_buf */
3367
5d93a237 3368 if (rs->remote_desc == 0) /* paranoia */
8e65ff28 3369 internal_error (__FILE__, __LINE__,
e2e0b3e5 3370 _("remote_threads_extra_info"));
9d1f7ab2 3371
60e569b9 3372 if (ptid_equal (tp->ptid, magic_null_ptid)
ba348170 3373 || (ptid_get_pid (tp->ptid) != 0 && ptid_get_lwp (tp->ptid) == 0))
60e569b9
PA
3374 /* This is the main thread which was added by GDB. The remote
3375 server doesn't know about it. */
3376 return NULL;
3377
4082afcc 3378 if (packet_support (PACKET_qXfer_threads) == PACKET_ENABLE)
dc146f7c
VP
3379 {
3380 struct thread_info *info = find_thread_ptid (tp->ptid);
a744cf53 3381
fe978cb0
PA
3382 if (info && info->priv)
3383 return info->priv->extra;
dc146f7c
VP
3384 else
3385 return NULL;
3386 }
3387
b80fafe3 3388 if (rs->use_threadextra_query)
9d1f7ab2 3389 {
82f73884
PA
3390 char *b = rs->buf;
3391 char *endb = rs->buf + get_remote_packet_size ();
3392
3393 xsnprintf (b, endb - b, "qThreadExtraInfo,");
3394 b += strlen (b);
3395 write_ptid (b, endb, tp->ptid);
3396
2e9f7625 3397 putpkt (rs->buf);
6d820c5c 3398 getpkt (&rs->buf, &rs->buf_size, 0);
2e9f7625 3399 if (rs->buf[0] != 0)
9d1f7ab2 3400 {
325fac50 3401 n = std::min (strlen (rs->buf) / 2, sizeof (display_buf));
2e9f7625 3402 result = hex2bin (rs->buf, (gdb_byte *) display_buf, n);
30559e10 3403 display_buf [result] = '\0';
9d1f7ab2
MS
3404 return display_buf;
3405 }
0f71a2f6 3406 }
9d1f7ab2
MS
3407
3408 /* If the above query fails, fall back to the old method. */
b80fafe3 3409 rs->use_threadextra_query = 0;
9d1f7ab2
MS
3410 set = TAG_THREADID | TAG_EXISTS | TAG_THREADNAME
3411 | TAG_MOREDISPLAY | TAG_DISPLAY;
ba348170 3412 int_to_threadref (&id, ptid_get_lwp (tp->ptid));
9d1f7ab2
MS
3413 if (remote_get_threadinfo (&id, set, &threadinfo))
3414 if (threadinfo.active)
0f71a2f6 3415 {
9d1f7ab2 3416 if (*threadinfo.shortname)
2bc416ba 3417 n += xsnprintf (&display_buf[0], sizeof (display_buf) - n,
ecbc58df 3418 " Name: %s,", threadinfo.shortname);
9d1f7ab2 3419 if (*threadinfo.display)
2bc416ba 3420 n += xsnprintf (&display_buf[n], sizeof (display_buf) - n,
ecbc58df 3421 " State: %s,", threadinfo.display);
9d1f7ab2 3422 if (*threadinfo.more_display)
2bc416ba 3423 n += xsnprintf (&display_buf[n], sizeof (display_buf) - n,
ecbc58df 3424 " Priority: %s", threadinfo.more_display);
9d1f7ab2
MS
3425
3426 if (n > 0)
c5aa993b 3427 {
23860348 3428 /* For purely cosmetic reasons, clear up trailing commas. */
9d1f7ab2
MS
3429 if (',' == display_buf[n-1])
3430 display_buf[n-1] = ' ';
3431 return display_buf;
c5aa993b 3432 }
0f71a2f6 3433 }
9d1f7ab2 3434 return NULL;
0f71a2f6 3435}
c906108c 3436\f
c5aa993b 3437
0fb4aa4b 3438static int
61fc905d 3439remote_static_tracepoint_marker_at (struct target_ops *self, CORE_ADDR addr,
0fb4aa4b
PA
3440 struct static_tracepoint_marker *marker)
3441{
3442 struct remote_state *rs = get_remote_state ();
3443 char *p = rs->buf;
3444
bba74b36 3445 xsnprintf (p, get_remote_packet_size (), "qTSTMat:");
0fb4aa4b
PA
3446 p += strlen (p);
3447 p += hexnumstr (p, addr);
3448 putpkt (rs->buf);
3449 getpkt (&rs->buf, &rs->buf_size, 0);
3450 p = rs->buf;
3451
3452 if (*p == 'E')
3453 error (_("Remote failure reply: %s"), p);
3454
3455 if (*p++ == 'm')
3456 {
3457 parse_static_tracepoint_marker_definition (p, &p, marker);
3458 return 1;
3459 }
3460
3461 return 0;
3462}
3463
0fb4aa4b 3464static VEC(static_tracepoint_marker_p) *
c686c57f
TT
3465remote_static_tracepoint_markers_by_strid (struct target_ops *self,
3466 const char *strid)
0fb4aa4b
PA
3467{
3468 struct remote_state *rs = get_remote_state ();
3469 VEC(static_tracepoint_marker_p) *markers = NULL;
3470 struct static_tracepoint_marker *marker = NULL;
3471 struct cleanup *old_chain;
3472 char *p;
3473
3474 /* Ask for a first packet of static tracepoint marker
3475 definition. */
3476 putpkt ("qTfSTM");
3477 getpkt (&rs->buf, &rs->buf_size, 0);
3478 p = rs->buf;
3479 if (*p == 'E')
3480 error (_("Remote failure reply: %s"), p);
3481
3482 old_chain = make_cleanup (free_current_marker, &marker);
3483
3484 while (*p++ == 'm')
3485 {
3486 if (marker == NULL)
3487 marker = XCNEW (struct static_tracepoint_marker);
3488
3489 do
3490 {
3491 parse_static_tracepoint_marker_definition (p, &p, marker);
3492
3493 if (strid == NULL || strcmp (strid, marker->str_id) == 0)
3494 {
3495 VEC_safe_push (static_tracepoint_marker_p,
3496 markers, marker);
3497 marker = NULL;
3498 }
3499 else
3500 {
3501 release_static_tracepoint_marker (marker);
3502 memset (marker, 0, sizeof (*marker));
3503 }
3504 }
3505 while (*p++ == ','); /* comma-separated list */
3506 /* Ask for another packet of static tracepoint definition. */
3507 putpkt ("qTsSTM");
3508 getpkt (&rs->buf, &rs->buf_size, 0);
3509 p = rs->buf;
3510 }
3511
3512 do_cleanups (old_chain);
3513 return markers;
3514}
3515
3516\f
10760264
JB
3517/* Implement the to_get_ada_task_ptid function for the remote targets. */
3518
3519static ptid_t
1e6b91a4 3520remote_get_ada_task_ptid (struct target_ops *self, long lwp, long thread)
10760264 3521{
ba348170 3522 return ptid_build (ptid_get_pid (inferior_ptid), lwp, 0);
10760264
JB
3523}
3524\f
3525
24b06219 3526/* Restart the remote side; this is an extended protocol operation. */
c906108c
SS
3527
3528static void
fba45db2 3529extended_remote_restart (void)
c906108c 3530{
d01949b6 3531 struct remote_state *rs = get_remote_state ();
c906108c
SS
3532
3533 /* Send the restart command; for reasons I don't understand the
3534 remote side really expects a number after the "R". */
ea9c271d 3535 xsnprintf (rs->buf, get_remote_packet_size (), "R%x", 0);
6d820c5c 3536 putpkt (rs->buf);
c906108c 3537
ad9a8f3f 3538 remote_fileio_reset ();
c906108c
SS
3539}
3540\f
3541/* Clean up connection to a remote debugger. */
3542
c906108c 3543static void
de90e03d 3544remote_close (struct target_ops *self)
c906108c 3545{
5d93a237
TT
3546 struct remote_state *rs = get_remote_state ();
3547
3548 if (rs->remote_desc == NULL)
d3fd5342
PA
3549 return; /* already closed */
3550
048094ac 3551 /* Make sure we leave stdin registered in the event loop. */
e3594fd1 3552 remote_terminal_ours (self);
ce5ce7ed 3553
5d93a237
TT
3554 serial_close (rs->remote_desc);
3555 rs->remote_desc = NULL;
ce5ce7ed
PA
3556
3557 /* We don't have a connection to the remote stub anymore. Get rid
f67fd822
PM
3558 of all the inferiors and their threads we were controlling.
3559 Reset inferior_ptid to null_ptid first, as otherwise has_stack_frame
3560 will be unable to find the thread corresponding to (pid, 0, 0). */
0f2caa1b 3561 inferior_ptid = null_ptid;
f67fd822 3562 discard_all_inferiors ();
ce5ce7ed 3563
f48ff2a7
YQ
3564 /* We are closing the remote target, so we should discard
3565 everything of this target. */
bcc75809 3566 discard_pending_stop_replies_in_queue (rs);
74531fed
PA
3567
3568 if (remote_async_inferior_event_token)
3569 delete_async_event_handler (&remote_async_inferior_event_token);
722247f1 3570
5965e028 3571 remote_notif_state_xfree (rs->notif_state);
aef525cb
YQ
3572
3573 trace_reset_local_state ();
c906108c
SS
3574}
3575
23860348 3576/* Query the remote side for the text, data and bss offsets. */
c906108c
SS
3577
3578static void
fba45db2 3579get_offsets (void)
c906108c 3580{
d01949b6 3581 struct remote_state *rs = get_remote_state ();
2e9f7625 3582 char *buf;
085dd6e6 3583 char *ptr;
31d99776
DJ
3584 int lose, num_segments = 0, do_sections, do_segments;
3585 CORE_ADDR text_addr, data_addr, bss_addr, segments[2];
c906108c 3586 struct section_offsets *offs;
31d99776
DJ
3587 struct symfile_segment_data *data;
3588
3589 if (symfile_objfile == NULL)
3590 return;
c906108c
SS
3591
3592 putpkt ("qOffsets");
6d820c5c 3593 getpkt (&rs->buf, &rs->buf_size, 0);
2e9f7625 3594 buf = rs->buf;
c906108c
SS
3595
3596 if (buf[0] == '\000')
3597 return; /* Return silently. Stub doesn't support
23860348 3598 this command. */
c906108c
SS
3599 if (buf[0] == 'E')
3600 {
8a3fe4f8 3601 warning (_("Remote failure reply: %s"), buf);
c906108c
SS
3602 return;
3603 }
3604
3605 /* Pick up each field in turn. This used to be done with scanf, but
3606 scanf will make trouble if CORE_ADDR size doesn't match
3607 conversion directives correctly. The following code will work
3608 with any size of CORE_ADDR. */
3609 text_addr = data_addr = bss_addr = 0;
3610 ptr = buf;
3611 lose = 0;
3612
61012eef 3613 if (startswith (ptr, "Text="))
c906108c
SS
3614 {
3615 ptr += 5;
3616 /* Don't use strtol, could lose on big values. */
3617 while (*ptr && *ptr != ';')
3618 text_addr = (text_addr << 4) + fromhex (*ptr++);
c906108c 3619
61012eef 3620 if (startswith (ptr, ";Data="))
31d99776
DJ
3621 {
3622 ptr += 6;
3623 while (*ptr && *ptr != ';')
3624 data_addr = (data_addr << 4) + fromhex (*ptr++);
3625 }
3626 else
3627 lose = 1;
3628
61012eef 3629 if (!lose && startswith (ptr, ";Bss="))
31d99776
DJ
3630 {
3631 ptr += 5;
3632 while (*ptr && *ptr != ';')
3633 bss_addr = (bss_addr << 4) + fromhex (*ptr++);
c906108c 3634
31d99776
DJ
3635 if (bss_addr != data_addr)
3636 warning (_("Target reported unsupported offsets: %s"), buf);
3637 }
3638 else
3639 lose = 1;
3640 }
61012eef 3641 else if (startswith (ptr, "TextSeg="))
c906108c 3642 {
31d99776
DJ
3643 ptr += 8;
3644 /* Don't use strtol, could lose on big values. */
c906108c 3645 while (*ptr && *ptr != ';')
31d99776
DJ
3646 text_addr = (text_addr << 4) + fromhex (*ptr++);
3647 num_segments = 1;
3648
61012eef 3649 if (startswith (ptr, ";DataSeg="))
31d99776
DJ
3650 {
3651 ptr += 9;
3652 while (*ptr && *ptr != ';')
3653 data_addr = (data_addr << 4) + fromhex (*ptr++);
3654 num_segments++;
3655 }
c906108c
SS
3656 }
3657 else
3658 lose = 1;
3659
3660 if (lose)
8a3fe4f8 3661 error (_("Malformed response to offset query, %s"), buf);
31d99776
DJ
3662 else if (*ptr != '\0')
3663 warning (_("Target reported unsupported offsets: %s"), buf);
c906108c 3664
802188a7 3665 offs = ((struct section_offsets *)
a39a16c4 3666 alloca (SIZEOF_N_SECTION_OFFSETS (symfile_objfile->num_sections)));
802188a7 3667 memcpy (offs, symfile_objfile->section_offsets,
a39a16c4 3668 SIZEOF_N_SECTION_OFFSETS (symfile_objfile->num_sections));
c906108c 3669
31d99776
DJ
3670 data = get_symfile_segment_data (symfile_objfile->obfd);
3671 do_segments = (data != NULL);
3672 do_sections = num_segments == 0;
c906108c 3673
28c32713 3674 if (num_segments > 0)
31d99776 3675 {
31d99776
DJ
3676 segments[0] = text_addr;
3677 segments[1] = data_addr;
3678 }
28c32713
JB
3679 /* If we have two segments, we can still try to relocate everything
3680 by assuming that the .text and .data offsets apply to the whole
3681 text and data segments. Convert the offsets given in the packet
3682 to base addresses for symfile_map_offsets_to_segments. */
3683 else if (data && data->num_segments == 2)
3684 {
3685 segments[0] = data->segment_bases[0] + text_addr;
3686 segments[1] = data->segment_bases[1] + data_addr;
3687 num_segments = 2;
3688 }
8d385431
DJ
3689 /* If the object file has only one segment, assume that it is text
3690 rather than data; main programs with no writable data are rare,
3691 but programs with no code are useless. Of course the code might
3692 have ended up in the data segment... to detect that we would need
3693 the permissions here. */
3694 else if (data && data->num_segments == 1)
3695 {
3696 segments[0] = data->segment_bases[0] + text_addr;
3697 num_segments = 1;
3698 }
28c32713
JB
3699 /* There's no way to relocate by segment. */
3700 else
3701 do_segments = 0;
31d99776
DJ
3702
3703 if (do_segments)
3704 {
3705 int ret = symfile_map_offsets_to_segments (symfile_objfile->obfd, data,
3706 offs, num_segments, segments);
3707
3708 if (ret == 0 && !do_sections)
3e43a32a
MS
3709 error (_("Can not handle qOffsets TextSeg "
3710 "response with this symbol file"));
31d99776
DJ
3711
3712 if (ret > 0)
3713 do_sections = 0;
3714 }
c906108c 3715
9ef895d6
DJ
3716 if (data)
3717 free_symfile_segment_data (data);
31d99776
DJ
3718
3719 if (do_sections)
3720 {
3721 offs->offsets[SECT_OFF_TEXT (symfile_objfile)] = text_addr;
3722
3e43a32a
MS
3723 /* This is a temporary kludge to force data and bss to use the
3724 same offsets because that's what nlmconv does now. The real
3725 solution requires changes to the stub and remote.c that I
3726 don't have time to do right now. */
31d99776
DJ
3727
3728 offs->offsets[SECT_OFF_DATA (symfile_objfile)] = data_addr;
3729 offs->offsets[SECT_OFF_BSS (symfile_objfile)] = data_addr;
3730 }
c906108c
SS
3731
3732 objfile_relocate (symfile_objfile, offs);
3733}
3734
9a7071a8
JB
3735/* Send interrupt_sequence to remote target. */
3736static void
eeae04df 3737send_interrupt_sequence (void)
9a7071a8 3738{
5d93a237
TT
3739 struct remote_state *rs = get_remote_state ();
3740
9a7071a8 3741 if (interrupt_sequence_mode == interrupt_sequence_control_c)
c33e31fd 3742 remote_serial_write ("\x03", 1);
9a7071a8 3743 else if (interrupt_sequence_mode == interrupt_sequence_break)
5d93a237 3744 serial_send_break (rs->remote_desc);
9a7071a8
JB
3745 else if (interrupt_sequence_mode == interrupt_sequence_break_g)
3746 {
5d93a237 3747 serial_send_break (rs->remote_desc);
c33e31fd 3748 remote_serial_write ("g", 1);
9a7071a8
JB
3749 }
3750 else
3751 internal_error (__FILE__, __LINE__,
3752 _("Invalid value for interrupt_sequence_mode: %s."),
3753 interrupt_sequence_mode);
3754}
3755
3405876a
PA
3756
3757/* If STOP_REPLY is a T stop reply, look for the "thread" register,
3758 and extract the PTID. Returns NULL_PTID if not found. */
3759
3760static ptid_t
3761stop_reply_extract_thread (char *stop_reply)
3762{
3763 if (stop_reply[0] == 'T' && strlen (stop_reply) > 3)
3764 {
3765 char *p;
3766
3767 /* Txx r:val ; r:val (...) */
3768 p = &stop_reply[3];
3769
3770 /* Look for "register" named "thread". */
3771 while (*p != '\0')
3772 {
3773 char *p1;
3774
3775 p1 = strchr (p, ':');
3776 if (p1 == NULL)
3777 return null_ptid;
3778
3779 if (strncmp (p, "thread", p1 - p) == 0)
3780 return read_ptid (++p1, &p);
3781
3782 p1 = strchr (p, ';');
3783 if (p1 == NULL)
3784 return null_ptid;
3785 p1++;
3786
3787 p = p1;
3788 }
3789 }
3790
3791 return null_ptid;
3792}
3793
b7ea362b
PA
3794/* Determine the remote side's current thread. If we have a stop
3795 reply handy (in WAIT_STATUS), maybe it's a T stop reply with a
3796 "thread" register we can extract the current thread from. If not,
3797 ask the remote which is the current thread with qC. The former
3798 method avoids a roundtrip. */
3799
3800static ptid_t
3801get_current_thread (char *wait_status)
3802{
6a49a997 3803 ptid_t ptid = null_ptid;
b7ea362b
PA
3804
3805 /* Note we don't use remote_parse_stop_reply as that makes use of
3806 the target architecture, which we haven't yet fully determined at
3807 this point. */
3808 if (wait_status != NULL)
3809 ptid = stop_reply_extract_thread (wait_status);
3810 if (ptid_equal (ptid, null_ptid))
3811 ptid = remote_current_thread (inferior_ptid);
3812
3813 return ptid;
3814}
3815
49c62f2e
PA
3816/* Query the remote target for which is the current thread/process,
3817 add it to our tables, and update INFERIOR_PTID. The caller is
3818 responsible for setting the state such that the remote end is ready
3405876a
PA
3819 to return the current thread.
3820
3821 This function is called after handling the '?' or 'vRun' packets,
3822 whose response is a stop reply from which we can also try
3823 extracting the thread. If the target doesn't support the explicit
3824 qC query, we infer the current thread from that stop reply, passed
3825 in in WAIT_STATUS, which may be NULL. */
49c62f2e
PA
3826
3827static void
3405876a 3828add_current_inferior_and_thread (char *wait_status)
49c62f2e
PA
3829{
3830 struct remote_state *rs = get_remote_state ();
3831 int fake_pid_p = 0;
6a49a997 3832 ptid_t ptid;
49c62f2e
PA
3833
3834 inferior_ptid = null_ptid;
3835
b7ea362b
PA
3836 /* Now, if we have thread information, update inferior_ptid. */
3837 ptid = get_current_thread (wait_status);
3405876a 3838
49c62f2e
PA
3839 if (!ptid_equal (ptid, null_ptid))
3840 {
3841 if (!remote_multi_process_p (rs))
3842 fake_pid_p = 1;
3843
3844 inferior_ptid = ptid;
3845 }
3846 else
3847 {
3848 /* Without this, some commands which require an active target
3849 (such as kill) won't work. This variable serves (at least)
3850 double duty as both the pid of the target process (if it has
3851 such), and as a flag indicating that a target is active. */
3852 inferior_ptid = magic_null_ptid;
3853 fake_pid_p = 1;
3854 }
3855
1b6e6f5c 3856 remote_add_inferior (fake_pid_p, ptid_get_pid (inferior_ptid), -1, 1);
49c62f2e
PA
3857
3858 /* Add the main thread. */
3859 add_thread_silent (inferior_ptid);
3860}
3861
6efcd9a8
PA
3862/* Print info about a thread that was found already stopped on
3863 connection. */
3864
3865static void
3866print_one_stopped_thread (struct thread_info *thread)
3867{
3868 struct target_waitstatus *ws = &thread->suspend.waitstatus;
3869
3870 switch_to_thread (thread->ptid);
3871 stop_pc = get_frame_pc (get_current_frame ());
3872 set_current_sal_from_frame (get_current_frame ());
3873
3874 thread->suspend.waitstatus_pending_p = 0;
3875
3876 if (ws->kind == TARGET_WAITKIND_STOPPED)
3877 {
3878 enum gdb_signal sig = ws->value.sig;
3879
3880 if (signal_print_state (sig))
3881 observer_notify_signal_received (sig);
3882 }
3883 observer_notify_normal_stop (NULL, 1);
3884}
3885
221e1a37
PA
3886/* Process all initial stop replies the remote side sent in response
3887 to the ? packet. These indicate threads that were already stopped
3888 on initial connection. We mark these threads as stopped and print
3889 their current frame before giving the user the prompt. */
3890
3891static void
6efcd9a8 3892process_initial_stop_replies (int from_tty)
221e1a37
PA
3893{
3894 int pending_stop_replies = stop_reply_queue_length ();
6efcd9a8
PA
3895 struct inferior *inf;
3896 struct thread_info *thread;
3897 struct thread_info *selected = NULL;
3898 struct thread_info *lowest_stopped = NULL;
3899 struct thread_info *first = NULL;
221e1a37
PA
3900
3901 /* Consume the initial pending events. */
3902 while (pending_stop_replies-- > 0)
3903 {
3904 ptid_t waiton_ptid = minus_one_ptid;
3905 ptid_t event_ptid;
3906 struct target_waitstatus ws;
3907 int ignore_event = 0;
6efcd9a8 3908 struct thread_info *thread;
221e1a37
PA
3909
3910 memset (&ws, 0, sizeof (ws));
3911 event_ptid = target_wait (waiton_ptid, &ws, TARGET_WNOHANG);
3912 if (remote_debug)
3913 print_target_wait_results (waiton_ptid, event_ptid, &ws);
3914
3915 switch (ws.kind)
3916 {
3917 case TARGET_WAITKIND_IGNORE:
3918 case TARGET_WAITKIND_NO_RESUMED:
3919 case TARGET_WAITKIND_SIGNALLED:
3920 case TARGET_WAITKIND_EXITED:
3921 /* We shouldn't see these, but if we do, just ignore. */
3922 if (remote_debug)
3923 fprintf_unfiltered (gdb_stdlog, "remote: event ignored\n");
3924 ignore_event = 1;
3925 break;
3926
3927 case TARGET_WAITKIND_EXECD:
3928 xfree (ws.value.execd_pathname);
3929 break;
3930 default:
3931 break;
3932 }
3933
3934 if (ignore_event)
3935 continue;
3936
6efcd9a8 3937 thread = find_thread_ptid (event_ptid);
221e1a37
PA
3938
3939 if (ws.kind == TARGET_WAITKIND_STOPPED)
3940 {
3941 enum gdb_signal sig = ws.value.sig;
3942
3943 /* Stubs traditionally report SIGTRAP as initial signal,
3944 instead of signal 0. Suppress it. */
3945 if (sig == GDB_SIGNAL_TRAP)
3946 sig = GDB_SIGNAL_0;
6efcd9a8
PA
3947 thread->suspend.stop_signal = sig;
3948 ws.value.sig = sig;
3949 }
221e1a37 3950
6efcd9a8
PA
3951 thread->suspend.waitstatus = ws;
3952
3953 if (ws.kind != TARGET_WAITKIND_STOPPED
3954 || ws.value.sig != GDB_SIGNAL_0)
3955 thread->suspend.waitstatus_pending_p = 1;
3956
3957 set_executing (event_ptid, 0);
3958 set_running (event_ptid, 0);
85ad3aaf 3959 thread->priv->vcont_resumed = 0;
6efcd9a8
PA
3960 }
3961
3962 /* "Notice" the new inferiors before anything related to
3963 registers/memory. */
3964 ALL_INFERIORS (inf)
3965 {
3966 if (inf->pid == 0)
3967 continue;
3968
3969 inf->needs_setup = 1;
3970
3971 if (non_stop)
3972 {
3973 thread = any_live_thread_of_process (inf->pid);
3974 notice_new_inferior (thread->ptid,
3975 thread->state == THREAD_RUNNING,
3976 from_tty);
3977 }
3978 }
3979
3980 /* If all-stop on top of non-stop, pause all threads. Note this
3981 records the threads' stop pc, so must be done after "noticing"
3982 the inferiors. */
3983 if (!non_stop)
3984 {
3985 stop_all_threads ();
3986
3987 /* If all threads of an inferior were already stopped, we
3988 haven't setup the inferior yet. */
3989 ALL_INFERIORS (inf)
3990 {
3991 if (inf->pid == 0)
3992 continue;
221e1a37 3993
6efcd9a8
PA
3994 if (inf->needs_setup)
3995 {
3996 thread = any_live_thread_of_process (inf->pid);
3997 switch_to_thread_no_regs (thread);
3998 setup_inferior (0);
3999 }
4000 }
221e1a37 4001 }
6efcd9a8
PA
4002
4003 /* Now go over all threads that are stopped, and print their current
4004 frame. If all-stop, then if there's a signalled thread, pick
4005 that as current. */
4006 ALL_NON_EXITED_THREADS (thread)
4007 {
6efcd9a8
PA
4008 if (first == NULL)
4009 first = thread;
4010
4011 if (!non_stop)
4012 set_running (thread->ptid, 0);
4013 else if (thread->state != THREAD_STOPPED)
4014 continue;
4015
6efcd9a8
PA
4016 if (selected == NULL
4017 && thread->suspend.waitstatus_pending_p)
4018 selected = thread;
4019
5d5658a1
PA
4020 if (lowest_stopped == NULL
4021 || thread->inf->num < lowest_stopped->inf->num
4022 || thread->per_inf_num < lowest_stopped->per_inf_num)
6efcd9a8
PA
4023 lowest_stopped = thread;
4024
4025 if (non_stop)
4026 print_one_stopped_thread (thread);
4027 }
4028
4029 /* In all-stop, we only print the status of one thread, and leave
4030 others with their status pending. */
4031 if (!non_stop)
4032 {
4033 thread = selected;
4034 if (thread == NULL)
4035 thread = lowest_stopped;
4036 if (thread == NULL)
4037 thread = first;
4038
4039 print_one_stopped_thread (thread);
4040 }
4041
4042 /* For "info program". */
4043 thread = inferior_thread ();
4044 if (thread->state == THREAD_STOPPED)
4045 set_last_target_status (inferior_ptid, thread->suspend.waitstatus);
221e1a37
PA
4046}
4047
048094ac
PA
4048/* Start the remote connection and sync state. */
4049
9cbc821d 4050static void
04bd08de 4051remote_start_remote (int from_tty, struct target_ops *target, int extended_p)
c906108c 4052{
c8d104ad
PA
4053 struct remote_state *rs = get_remote_state ();
4054 struct packet_config *noack_config;
2d717e4f 4055 char *wait_status = NULL;
8621d6a9 4056
048094ac
PA
4057 /* Signal other parts that we're going through the initial setup,
4058 and so things may not be stable yet. E.g., we don't try to
4059 install tracepoints until we've relocated symbols. Also, a
4060 Ctrl-C before we're connected and synced up can't interrupt the
4061 target. Instead, it offers to drop the (potentially wedged)
4062 connection. */
4063 rs->starting_up = 1;
4064
522002f9 4065 QUIT;
c906108c 4066
9a7071a8
JB
4067 if (interrupt_on_connect)
4068 send_interrupt_sequence ();
4069
57e12211 4070 /* Ack any packet which the remote side has already sent. */
048094ac 4071 remote_serial_write ("+", 1);
1e51243a 4072
c8d104ad
PA
4073 /* The first packet we send to the target is the optional "supported
4074 packets" request. If the target can answer this, it will tell us
4075 which later probes to skip. */
4076 remote_query_supported ();
4077
d914c394 4078 /* If the stub wants to get a QAllow, compose one and send it. */
4082afcc 4079 if (packet_support (PACKET_QAllow) != PACKET_DISABLE)
c378d69d 4080 remote_set_permissions (target);
d914c394 4081
57809e5e
JK
4082 /* gdbserver < 7.7 (before its fix from 2013-12-11) did reply to any
4083 unknown 'v' packet with string "OK". "OK" gets interpreted by GDB
4084 as a reply to known packet. For packet "vFile:setfs:" it is an
4085 invalid reply and GDB would return error in
4086 remote_hostio_set_filesystem, making remote files access impossible.
4087 Disable "vFile:setfs:" in such case. Do not disable other 'v' packets as
4088 other "vFile" packets get correctly detected even on gdbserver < 7.7. */
4089 {
4090 const char v_mustreplyempty[] = "vMustReplyEmpty";
4091
4092 putpkt (v_mustreplyempty);
4093 getpkt (&rs->buf, &rs->buf_size, 0);
4094 if (strcmp (rs->buf, "OK") == 0)
4095 remote_protocol_packets[PACKET_vFile_setfs].support = PACKET_DISABLE;
4096 else if (strcmp (rs->buf, "") != 0)
4097 error (_("Remote replied unexpectedly to '%s': %s"), v_mustreplyempty,
4098 rs->buf);
4099 }
4100
c8d104ad
PA
4101 /* Next, we possibly activate noack mode.
4102
4103 If the QStartNoAckMode packet configuration is set to AUTO,
4104 enable noack mode if the stub reported a wish for it with
4105 qSupported.
4106
4107 If set to TRUE, then enable noack mode even if the stub didn't
4108 report it in qSupported. If the stub doesn't reply OK, the
4109 session ends with an error.
4110
4111 If FALSE, then don't activate noack mode, regardless of what the
4112 stub claimed should be the default with qSupported. */
4113
4114 noack_config = &remote_protocol_packets[PACKET_QStartNoAckMode];
4082afcc 4115 if (packet_config_support (noack_config) != PACKET_DISABLE)
c8d104ad
PA
4116 {
4117 putpkt ("QStartNoAckMode");
4118 getpkt (&rs->buf, &rs->buf_size, 0);
4119 if (packet_ok (rs->buf, noack_config) == PACKET_OK)
4120 rs->noack_mode = 1;
4121 }
4122
04bd08de 4123 if (extended_p)
5fe04517
PA
4124 {
4125 /* Tell the remote that we are using the extended protocol. */
4126 putpkt ("!");
4127 getpkt (&rs->buf, &rs->buf_size, 0);
4128 }
4129
9b224c5e
PA
4130 /* Let the target know which signals it is allowed to pass down to
4131 the program. */
4132 update_signals_program_target ();
4133
d962ef82
DJ
4134 /* Next, if the target can specify a description, read it. We do
4135 this before anything involving memory or registers. */
4136 target_find_description ();
4137
6c95b8df
PA
4138 /* Next, now that we know something about the target, update the
4139 address spaces in the program spaces. */
4140 update_address_spaces ();
4141
50c71eaf
PA
4142 /* On OSs where the list of libraries is global to all
4143 processes, we fetch them early. */
f5656ead 4144 if (gdbarch_has_global_solist (target_gdbarch ()))
04bd08de 4145 solib_add (NULL, from_tty, target, auto_solib_add);
50c71eaf 4146
6efcd9a8 4147 if (target_is_non_stop_p ())
74531fed 4148 {
4082afcc 4149 if (packet_support (PACKET_QNonStop) != PACKET_ENABLE)
3e43a32a
MS
4150 error (_("Non-stop mode requested, but remote "
4151 "does not support non-stop"));
74531fed
PA
4152
4153 putpkt ("QNonStop:1");
4154 getpkt (&rs->buf, &rs->buf_size, 0);
4155
4156 if (strcmp (rs->buf, "OK") != 0)
9b20d036 4157 error (_("Remote refused setting non-stop mode with: %s"), rs->buf);
74531fed
PA
4158
4159 /* Find about threads and processes the stub is already
4160 controlling. We default to adding them in the running state.
4161 The '?' query below will then tell us about which threads are
4162 stopped. */
e8032dde 4163 remote_update_thread_list (target);
74531fed 4164 }
4082afcc 4165 else if (packet_support (PACKET_QNonStop) == PACKET_ENABLE)
74531fed
PA
4166 {
4167 /* Don't assume that the stub can operate in all-stop mode.
e6f3fa52 4168 Request it explicitly. */
74531fed
PA
4169 putpkt ("QNonStop:0");
4170 getpkt (&rs->buf, &rs->buf_size, 0);
4171
4172 if (strcmp (rs->buf, "OK") != 0)
9b20d036 4173 error (_("Remote refused setting all-stop mode with: %s"), rs->buf);
74531fed
PA
4174 }
4175
a0743c90
YQ
4176 /* Upload TSVs regardless of whether the target is running or not. The
4177 remote stub, such as GDBserver, may have some predefined or builtin
4178 TSVs, even if the target is not running. */
8bd200f1 4179 if (remote_get_trace_status (target, current_trace_status ()) != -1)
a0743c90
YQ
4180 {
4181 struct uploaded_tsv *uploaded_tsvs = NULL;
4182
181e3713 4183 remote_upload_trace_state_variables (target, &uploaded_tsvs);
a0743c90
YQ
4184 merge_uploaded_trace_state_variables (&uploaded_tsvs);
4185 }
4186
2d717e4f
DJ
4187 /* Check whether the target is running now. */
4188 putpkt ("?");
4189 getpkt (&rs->buf, &rs->buf_size, 0);
4190
6efcd9a8 4191 if (!target_is_non_stop_p ())
2d717e4f 4192 {
74531fed 4193 if (rs->buf[0] == 'W' || rs->buf[0] == 'X')
2d717e4f 4194 {
04bd08de 4195 if (!extended_p)
74531fed 4196 error (_("The target is not running (try extended-remote?)"));
c35b1492
PA
4197
4198 /* We're connected, but not running. Drop out before we
4199 call start_remote. */
e278ad5b 4200 rs->starting_up = 0;
c35b1492 4201 return;
2d717e4f
DJ
4202 }
4203 else
74531fed 4204 {
74531fed 4205 /* Save the reply for later. */
224c3ddb 4206 wait_status = (char *) alloca (strlen (rs->buf) + 1);
74531fed
PA
4207 strcpy (wait_status, rs->buf);
4208 }
4209
b7ea362b 4210 /* Fetch thread list. */
e8032dde 4211 target_update_thread_list ();
b7ea362b 4212
74531fed
PA
4213 /* Let the stub know that we want it to return the thread. */
4214 set_continue_thread (minus_one_ptid);
4215
b7ea362b
PA
4216 if (thread_count () == 0)
4217 {
4218 /* Target has no concept of threads at all. GDB treats
4219 non-threaded target as single-threaded; add a main
4220 thread. */
4221 add_current_inferior_and_thread (wait_status);
4222 }
4223 else
4224 {
4225 /* We have thread information; select the thread the target
4226 says should be current. If we're reconnecting to a
4227 multi-threaded program, this will ideally be the thread
4228 that last reported an event before GDB disconnected. */
4229 inferior_ptid = get_current_thread (wait_status);
4230 if (ptid_equal (inferior_ptid, null_ptid))
4231 {
4232 /* Odd... The target was able to list threads, but not
4233 tell us which thread was current (no "thread"
4234 register in T stop reply?). Just pick the first
4235 thread in the thread list then. */
c9f35b34
KB
4236
4237 if (remote_debug)
4238 fprintf_unfiltered (gdb_stdlog,
4239 "warning: couldn't determine remote "
4240 "current thread; picking first in list.\n");
4241
b7ea362b
PA
4242 inferior_ptid = thread_list->ptid;
4243 }
4244 }
74531fed 4245
6e586cc5
YQ
4246 /* init_wait_for_inferior should be called before get_offsets in order
4247 to manage `inserted' flag in bp loc in a correct state.
4248 breakpoint_init_inferior, called from init_wait_for_inferior, set
4249 `inserted' flag to 0, while before breakpoint_re_set, called from
4250 start_remote, set `inserted' flag to 1. In the initialization of
4251 inferior, breakpoint_init_inferior should be called first, and then
4252 breakpoint_re_set can be called. If this order is broken, state of
4253 `inserted' flag is wrong, and cause some problems on breakpoint
4254 manipulation. */
4255 init_wait_for_inferior ();
4256
74531fed
PA
4257 get_offsets (); /* Get text, data & bss offsets. */
4258
d962ef82
DJ
4259 /* If we could not find a description using qXfer, and we know
4260 how to do it some other way, try again. This is not
4261 supported for non-stop; it could be, but it is tricky if
4262 there are no stopped threads when we connect. */
04bd08de 4263 if (remote_read_description_p (target)
f5656ead 4264 && gdbarch_target_desc (target_gdbarch ()) == NULL)
d962ef82
DJ
4265 {
4266 target_clear_description ();
4267 target_find_description ();
4268 }
4269
74531fed
PA
4270 /* Use the previously fetched status. */
4271 gdb_assert (wait_status != NULL);
4272 strcpy (rs->buf, wait_status);
4273 rs->cached_wait_status = 1;
4274
04bd08de 4275 start_remote (from_tty); /* Initialize gdb process mechanisms. */
2d717e4f
DJ
4276 }
4277 else
4278 {
68c97600
PA
4279 /* Clear WFI global state. Do this before finding about new
4280 threads and inferiors, and setting the current inferior.
4281 Otherwise we would clear the proceed status of the current
4282 inferior when we want its stop_soon state to be preserved
4283 (see notice_new_inferior). */
4284 init_wait_for_inferior ();
4285
74531fed
PA
4286 /* In non-stop, we will either get an "OK", meaning that there
4287 are no stopped threads at this time; or, a regular stop
4288 reply. In the latter case, there may be more than one thread
4289 stopped --- we pull them all out using the vStopped
4290 mechanism. */
4291 if (strcmp (rs->buf, "OK") != 0)
4292 {
722247f1 4293 struct notif_client *notif = &notif_client_stop;
2d717e4f 4294
722247f1
YQ
4295 /* remote_notif_get_pending_replies acks this one, and gets
4296 the rest out. */
f48ff2a7 4297 rs->notif_state->pending_event[notif_client_stop.id]
722247f1
YQ
4298 = remote_notif_parse (notif, rs->buf);
4299 remote_notif_get_pending_events (notif);
74531fed 4300 }
2d717e4f 4301
74531fed
PA
4302 if (thread_count () == 0)
4303 {
04bd08de 4304 if (!extended_p)
74531fed 4305 error (_("The target is not running (try extended-remote?)"));
82f73884 4306
c35b1492
PA
4307 /* We're connected, but not running. Drop out before we
4308 call start_remote. */
e278ad5b 4309 rs->starting_up = 0;
c35b1492
PA
4310 return;
4311 }
74531fed 4312
74531fed
PA
4313 /* In non-stop mode, any cached wait status will be stored in
4314 the stop reply queue. */
4315 gdb_assert (wait_status == NULL);
f0223081 4316
2455069d 4317 /* Report all signals during attach/startup. */
94bedb42 4318 remote_pass_signals (target, 0, NULL);
221e1a37
PA
4319
4320 /* If there are already stopped threads, mark them stopped and
4321 report their stops before giving the prompt to the user. */
6efcd9a8 4322 process_initial_stop_replies (from_tty);
221e1a37
PA
4323
4324 if (target_can_async_p ())
4325 target_async (1);
74531fed 4326 }
c8d104ad 4327
c8d104ad
PA
4328 /* If we connected to a live target, do some additional setup. */
4329 if (target_has_execution)
4330 {
f4ccffad 4331 if (symfile_objfile) /* No use without a symbol-file. */
36d25514 4332 remote_check_symbols ();
c8d104ad 4333 }
50c71eaf 4334
d5551862
SS
4335 /* Possibly the target has been engaged in a trace run started
4336 previously; find out where things are at. */
8bd200f1 4337 if (remote_get_trace_status (target, current_trace_status ()) != -1)
d5551862 4338 {
00bf0b85 4339 struct uploaded_tp *uploaded_tps = NULL;
00bf0b85 4340
00bf0b85
SS
4341 if (current_trace_status ()->running)
4342 printf_filtered (_("Trace is already running on the target.\n"));
4343
ab6617cc 4344 remote_upload_tracepoints (target, &uploaded_tps);
00bf0b85
SS
4345
4346 merge_uploaded_tracepoints (&uploaded_tps);
d5551862
SS
4347 }
4348
c0272db5
TW
4349 /* Possibly the target has been engaged in a btrace record started
4350 previously; find out where things are at. */
4351 remote_btrace_maybe_reopen ();
4352
1e51243a
PA
4353 /* The thread and inferior lists are now synchronized with the
4354 target, our symbols have been relocated, and we're merged the
4355 target's tracepoints with ours. We're done with basic start
4356 up. */
4357 rs->starting_up = 0;
4358
a25a5a45
PA
4359 /* Maybe breakpoints are global and need to be inserted now. */
4360 if (breakpoints_should_be_inserted_now ())
50c71eaf 4361 insert_breakpoints ();
c906108c
SS
4362}
4363
4364/* Open a connection to a remote debugger.
4365 NAME is the filename used for communication. */
4366
4367static void
014f9477 4368remote_open (const char *name, int from_tty)
c906108c 4369{
75c99385 4370 remote_open_1 (name, from_tty, &remote_ops, 0);
43ff13b4
JM
4371}
4372
c906108c
SS
4373/* Open a connection to a remote debugger using the extended
4374 remote gdb protocol. NAME is the filename used for communication. */
4375
4376static void
014f9477 4377extended_remote_open (const char *name, int from_tty)
c906108c 4378{
75c99385 4379 remote_open_1 (name, from_tty, &extended_remote_ops, 1 /*extended_p */);
43ff13b4
JM
4380}
4381
ca4f7f8b
PA
4382/* Reset all packets back to "unknown support". Called when opening a
4383 new connection to a remote target. */
c906108c 4384
d471ea57 4385static void
ca4f7f8b 4386reset_all_packet_configs_support (void)
d471ea57
AC
4387{
4388 int i;
a744cf53 4389
444abaca 4390 for (i = 0; i < PACKET_MAX; i++)
4082afcc 4391 remote_protocol_packets[i].support = PACKET_SUPPORT_UNKNOWN;
d471ea57
AC
4392}
4393
ca4f7f8b
PA
4394/* Initialize all packet configs. */
4395
4396static void
4397init_all_packet_configs (void)
4398{
4399 int i;
4400
4401 for (i = 0; i < PACKET_MAX; i++)
4402 {
4403 remote_protocol_packets[i].detect = AUTO_BOOLEAN_AUTO;
4404 remote_protocol_packets[i].support = PACKET_SUPPORT_UNKNOWN;
4405 }
4406}
4407
23860348 4408/* Symbol look-up. */
dc8acb97
MS
4409
4410static void
36d25514 4411remote_check_symbols (void)
dc8acb97 4412{
d01949b6 4413 struct remote_state *rs = get_remote_state ();
dc8acb97 4414 char *msg, *reply, *tmp;
dc8acb97 4415 int end;
28170b88 4416 long reply_size;
a5c0808e 4417 struct cleanup *old_chain;
dc8acb97 4418
63154eca
PA
4419 /* The remote side has no concept of inferiors that aren't running
4420 yet, it only knows about running processes. If we're connected
4421 but our current inferior is not running, we should not invite the
4422 remote target to request symbol lookups related to its
4423 (unrelated) current process. */
4424 if (!target_has_execution)
4425 return;
4426
4082afcc 4427 if (packet_support (PACKET_qSymbol) == PACKET_DISABLE)
dc8acb97
MS
4428 return;
4429
63154eca
PA
4430 /* Make sure the remote is pointing at the right process. Note
4431 there's no way to select "no process". */
3c9c4b83
PA
4432 set_general_process ();
4433
6d820c5c
DJ
4434 /* Allocate a message buffer. We can't reuse the input buffer in RS,
4435 because we need both at the same time. */
224c3ddb 4436 msg = (char *) xmalloc (get_remote_packet_size ());
a5c0808e 4437 old_chain = make_cleanup (xfree, msg);
28170b88
MK
4438 reply = (char *) xmalloc (get_remote_packet_size ());
4439 make_cleanup (free_current_contents, &reply);
4440 reply_size = get_remote_packet_size ();
6d820c5c 4441
23860348 4442 /* Invite target to request symbol lookups. */
dc8acb97
MS
4443
4444 putpkt ("qSymbol::");
28170b88
MK
4445 getpkt (&reply, &reply_size, 0);
4446 packet_ok (reply, &remote_protocol_packets[PACKET_qSymbol]);
dc8acb97 4447
61012eef 4448 while (startswith (reply, "qSymbol:"))
dc8acb97 4449 {
77e371c0
TT
4450 struct bound_minimal_symbol sym;
4451
dc8acb97 4452 tmp = &reply[8];
cfd77fa1 4453 end = hex2bin (tmp, (gdb_byte *) msg, strlen (tmp) / 2);
dc8acb97
MS
4454 msg[end] = '\0';
4455 sym = lookup_minimal_symbol (msg, NULL, NULL);
3b7344d5 4456 if (sym.minsym == NULL)
ea9c271d 4457 xsnprintf (msg, get_remote_packet_size (), "qSymbol::%s", &reply[8]);
dc8acb97 4458 else
2bbe3cc1 4459 {
f5656ead 4460 int addr_size = gdbarch_addr_bit (target_gdbarch ()) / 8;
77e371c0 4461 CORE_ADDR sym_addr = BMSYMBOL_VALUE_ADDRESS (sym);
2bbe3cc1
DJ
4462
4463 /* If this is a function address, return the start of code
4464 instead of any data function descriptor. */
f5656ead 4465 sym_addr = gdbarch_convert_from_func_ptr_addr (target_gdbarch (),
2bbe3cc1
DJ
4466 sym_addr,
4467 &current_target);
4468
4469 xsnprintf (msg, get_remote_packet_size (), "qSymbol:%s:%s",
5af949e3 4470 phex_nz (sym_addr, addr_size), &reply[8]);
2bbe3cc1
DJ
4471 }
4472
dc8acb97 4473 putpkt (msg);
28170b88 4474 getpkt (&reply, &reply_size, 0);
dc8acb97 4475 }
a5c0808e
PA
4476
4477 do_cleanups (old_chain);
dc8acb97
MS
4478}
4479
9db8d71f 4480static struct serial *
baa336ce 4481remote_serial_open (const char *name)
9db8d71f
DJ
4482{
4483 static int udp_warning = 0;
4484
4485 /* FIXME: Parsing NAME here is a hack. But we want to warn here instead
4486 of in ser-tcp.c, because it is the remote protocol assuming that the
4487 serial connection is reliable and not the serial connection promising
4488 to be. */
61012eef 4489 if (!udp_warning && startswith (name, "udp:"))
9db8d71f 4490 {
3e43a32a
MS
4491 warning (_("The remote protocol may be unreliable over UDP.\n"
4492 "Some events may be lost, rendering further debugging "
4493 "impossible."));
9db8d71f
DJ
4494 udp_warning = 1;
4495 }
4496
4497 return serial_open (name);
4498}
4499
d914c394
SS
4500/* Inform the target of our permission settings. The permission flags
4501 work without this, but if the target knows the settings, it can do
4502 a couple things. First, it can add its own check, to catch cases
4503 that somehow manage to get by the permissions checks in target
4504 methods. Second, if the target is wired to disallow particular
4505 settings (for instance, a system in the field that is not set up to
4506 be able to stop at a breakpoint), it can object to any unavailable
4507 permissions. */
4508
4509void
c378d69d 4510remote_set_permissions (struct target_ops *self)
d914c394
SS
4511{
4512 struct remote_state *rs = get_remote_state ();
4513
bba74b36
YQ
4514 xsnprintf (rs->buf, get_remote_packet_size (), "QAllow:"
4515 "WriteReg:%x;WriteMem:%x;"
4516 "InsertBreak:%x;InsertTrace:%x;"
4517 "InsertFastTrace:%x;Stop:%x",
4518 may_write_registers, may_write_memory,
4519 may_insert_breakpoints, may_insert_tracepoints,
4520 may_insert_fast_tracepoints, may_stop);
d914c394
SS
4521 putpkt (rs->buf);
4522 getpkt (&rs->buf, &rs->buf_size, 0);
4523
4524 /* If the target didn't like the packet, warn the user. Do not try
4525 to undo the user's settings, that would just be maddening. */
4526 if (strcmp (rs->buf, "OK") != 0)
7ea6d463 4527 warning (_("Remote refused setting permissions with: %s"), rs->buf);
d914c394
SS
4528}
4529
be2a5f71
DJ
4530/* This type describes each known response to the qSupported
4531 packet. */
4532struct protocol_feature
4533{
4534 /* The name of this protocol feature. */
4535 const char *name;
4536
4537 /* The default for this protocol feature. */
4538 enum packet_support default_support;
4539
4540 /* The function to call when this feature is reported, or after
4541 qSupported processing if the feature is not supported.
4542 The first argument points to this structure. The second
4543 argument indicates whether the packet requested support be
4544 enabled, disabled, or probed (or the default, if this function
4545 is being called at the end of processing and this feature was
4546 not reported). The third argument may be NULL; if not NULL, it
4547 is a NUL-terminated string taken from the packet following
4548 this feature's name and an equals sign. */
4549 void (*func) (const struct protocol_feature *, enum packet_support,
4550 const char *);
4551
4552 /* The corresponding packet for this feature. Only used if
4553 FUNC is remote_supported_packet. */
4554 int packet;
4555};
4556
be2a5f71
DJ
4557static void
4558remote_supported_packet (const struct protocol_feature *feature,
4559 enum packet_support support,
4560 const char *argument)
4561{
4562 if (argument)
4563 {
4564 warning (_("Remote qSupported response supplied an unexpected value for"
4565 " \"%s\"."), feature->name);
4566 return;
4567 }
4568
4082afcc 4569 remote_protocol_packets[feature->packet].support = support;
be2a5f71 4570}
be2a5f71
DJ
4571
4572static void
4573remote_packet_size (const struct protocol_feature *feature,
4574 enum packet_support support, const char *value)
4575{
4576 struct remote_state *rs = get_remote_state ();
4577
4578 int packet_size;
4579 char *value_end;
4580
4581 if (support != PACKET_ENABLE)
4582 return;
4583
4584 if (value == NULL || *value == '\0')
4585 {
4586 warning (_("Remote target reported \"%s\" without a size."),
4587 feature->name);
4588 return;
4589 }
4590
4591 errno = 0;
4592 packet_size = strtol (value, &value_end, 16);
4593 if (errno != 0 || *value_end != '\0' || packet_size < 0)
4594 {
4595 warning (_("Remote target reported \"%s\" with a bad size: \"%s\"."),
4596 feature->name, value);
4597 return;
4598 }
4599
be2a5f71
DJ
4600 /* Record the new maximum packet size. */
4601 rs->explicit_packet_size = packet_size;
4602}
4603
dc473cfb 4604static const struct protocol_feature remote_protocol_features[] = {
0876f84a 4605 { "PacketSize", PACKET_DISABLE, remote_packet_size, -1 },
40e57cf2 4606 { "qXfer:auxv:read", PACKET_DISABLE, remote_supported_packet,
fd79ecee 4607 PACKET_qXfer_auxv },
c78fa86a
GB
4608 { "qXfer:exec-file:read", PACKET_DISABLE, remote_supported_packet,
4609 PACKET_qXfer_exec_file },
23181151
DJ
4610 { "qXfer:features:read", PACKET_DISABLE, remote_supported_packet,
4611 PACKET_qXfer_features },
cfa9d6d9
DJ
4612 { "qXfer:libraries:read", PACKET_DISABLE, remote_supported_packet,
4613 PACKET_qXfer_libraries },
2268b414
JK
4614 { "qXfer:libraries-svr4:read", PACKET_DISABLE, remote_supported_packet,
4615 PACKET_qXfer_libraries_svr4 },
ced63ec0 4616 { "augmented-libraries-svr4-read", PACKET_DISABLE,
4082afcc 4617 remote_supported_packet, PACKET_augmented_libraries_svr4_read_feature },
fd79ecee 4618 { "qXfer:memory-map:read", PACKET_DISABLE, remote_supported_packet,
89be2091 4619 PACKET_qXfer_memory_map },
4de6483e
UW
4620 { "qXfer:spu:read", PACKET_DISABLE, remote_supported_packet,
4621 PACKET_qXfer_spu_read },
4622 { "qXfer:spu:write", PACKET_DISABLE, remote_supported_packet,
4623 PACKET_qXfer_spu_write },
07e059b5
VP
4624 { "qXfer:osdata:read", PACKET_DISABLE, remote_supported_packet,
4625 PACKET_qXfer_osdata },
dc146f7c
VP
4626 { "qXfer:threads:read", PACKET_DISABLE, remote_supported_packet,
4627 PACKET_qXfer_threads },
b3b9301e
PA
4628 { "qXfer:traceframe-info:read", PACKET_DISABLE, remote_supported_packet,
4629 PACKET_qXfer_traceframe_info },
89be2091
DJ
4630 { "QPassSignals", PACKET_DISABLE, remote_supported_packet,
4631 PACKET_QPassSignals },
82075af2
JS
4632 { "QCatchSyscalls", PACKET_DISABLE, remote_supported_packet,
4633 PACKET_QCatchSyscalls },
9b224c5e
PA
4634 { "QProgramSignals", PACKET_DISABLE, remote_supported_packet,
4635 PACKET_QProgramSignals },
a6f3e723
SL
4636 { "QStartNoAckMode", PACKET_DISABLE, remote_supported_packet,
4637 PACKET_QStartNoAckMode },
4082afcc
PA
4638 { "multiprocess", PACKET_DISABLE, remote_supported_packet,
4639 PACKET_multiprocess_feature },
4640 { "QNonStop", PACKET_DISABLE, remote_supported_packet, PACKET_QNonStop },
4aa995e1
PA
4641 { "qXfer:siginfo:read", PACKET_DISABLE, remote_supported_packet,
4642 PACKET_qXfer_siginfo_read },
4643 { "qXfer:siginfo:write", PACKET_DISABLE, remote_supported_packet,
4644 PACKET_qXfer_siginfo_write },
4082afcc 4645 { "ConditionalTracepoints", PACKET_DISABLE, remote_supported_packet,
782b2b07 4646 PACKET_ConditionalTracepoints },
4082afcc 4647 { "ConditionalBreakpoints", PACKET_DISABLE, remote_supported_packet,
3788aec7 4648 PACKET_ConditionalBreakpoints },
4082afcc 4649 { "BreakpointCommands", PACKET_DISABLE, remote_supported_packet,
d3ce09f5 4650 PACKET_BreakpointCommands },
4082afcc 4651 { "FastTracepoints", PACKET_DISABLE, remote_supported_packet,
7a697b8d 4652 PACKET_FastTracepoints },
4082afcc 4653 { "StaticTracepoints", PACKET_DISABLE, remote_supported_packet,
0fb4aa4b 4654 PACKET_StaticTracepoints },
4082afcc 4655 {"InstallInTrace", PACKET_DISABLE, remote_supported_packet,
1e4d1764 4656 PACKET_InstallInTrace},
4082afcc
PA
4657 { "DisconnectedTracing", PACKET_DISABLE, remote_supported_packet,
4658 PACKET_DisconnectedTracing_feature },
40ab02ce
MS
4659 { "ReverseContinue", PACKET_DISABLE, remote_supported_packet,
4660 PACKET_bc },
4661 { "ReverseStep", PACKET_DISABLE, remote_supported_packet,
4662 PACKET_bs },
409873ef
SS
4663 { "TracepointSource", PACKET_DISABLE, remote_supported_packet,
4664 PACKET_TracepointSource },
d914c394
SS
4665 { "QAllow", PACKET_DISABLE, remote_supported_packet,
4666 PACKET_QAllow },
4082afcc
PA
4667 { "EnableDisableTracepoints", PACKET_DISABLE, remote_supported_packet,
4668 PACKET_EnableDisableTracepoints_feature },
78d85199
YQ
4669 { "qXfer:fdpic:read", PACKET_DISABLE, remote_supported_packet,
4670 PACKET_qXfer_fdpic },
169081d0
TG
4671 { "qXfer:uib:read", PACKET_DISABLE, remote_supported_packet,
4672 PACKET_qXfer_uib },
03583c20
UW
4673 { "QDisableRandomization", PACKET_DISABLE, remote_supported_packet,
4674 PACKET_QDisableRandomization },
d1feda86 4675 { "QAgent", PACKET_DISABLE, remote_supported_packet, PACKET_QAgent},
f6f899bf
HAQ
4676 { "QTBuffer:size", PACKET_DISABLE,
4677 remote_supported_packet, PACKET_QTBuffer_size},
4082afcc 4678 { "tracenz", PACKET_DISABLE, remote_supported_packet, PACKET_tracenz_feature },
9accd112
MM
4679 { "Qbtrace:off", PACKET_DISABLE, remote_supported_packet, PACKET_Qbtrace_off },
4680 { "Qbtrace:bts", PACKET_DISABLE, remote_supported_packet, PACKET_Qbtrace_bts },
b20a6524 4681 { "Qbtrace:pt", PACKET_DISABLE, remote_supported_packet, PACKET_Qbtrace_pt },
9accd112 4682 { "qXfer:btrace:read", PACKET_DISABLE, remote_supported_packet,
f4abbc16
MM
4683 PACKET_qXfer_btrace },
4684 { "qXfer:btrace-conf:read", PACKET_DISABLE, remote_supported_packet,
d33501a5
MM
4685 PACKET_qXfer_btrace_conf },
4686 { "Qbtrace-conf:bts:size", PACKET_DISABLE, remote_supported_packet,
f7e6eed5
PA
4687 PACKET_Qbtrace_conf_bts_size },
4688 { "swbreak", PACKET_DISABLE, remote_supported_packet, PACKET_swbreak_feature },
0a93529c 4689 { "hwbreak", PACKET_DISABLE, remote_supported_packet, PACKET_hwbreak_feature },
89245bc0
DB
4690 { "fork-events", PACKET_DISABLE, remote_supported_packet,
4691 PACKET_fork_event_feature },
4692 { "vfork-events", PACKET_DISABLE, remote_supported_packet,
4693 PACKET_vfork_event_feature },
94585166
DB
4694 { "exec-events", PACKET_DISABLE, remote_supported_packet,
4695 PACKET_exec_event_feature },
b20a6524 4696 { "Qbtrace-conf:pt:size", PACKET_DISABLE, remote_supported_packet,
750ce8d1 4697 PACKET_Qbtrace_conf_pt_size },
65706a29
PA
4698 { "vContSupported", PACKET_DISABLE, remote_supported_packet, PACKET_vContSupported },
4699 { "QThreadEvents", PACKET_DISABLE, remote_supported_packet, PACKET_QThreadEvents },
f2faf941 4700 { "no-resumed", PACKET_DISABLE, remote_supported_packet, PACKET_no_resumed },
be2a5f71
DJ
4701};
4702
c8d5aac9
L
4703static char *remote_support_xml;
4704
4705/* Register string appended to "xmlRegisters=" in qSupported query. */
4706
4707void
6e39997a 4708register_remote_support_xml (const char *xml)
c8d5aac9
L
4709{
4710#if defined(HAVE_LIBEXPAT)
4711 if (remote_support_xml == NULL)
c4f7c687 4712 remote_support_xml = concat ("xmlRegisters=", xml, (char *) NULL);
c8d5aac9
L
4713 else
4714 {
4715 char *copy = xstrdup (remote_support_xml + 13);
4716 char *p = strtok (copy, ",");
4717
4718 do
4719 {
4720 if (strcmp (p, xml) == 0)
4721 {
4722 /* already there */
4723 xfree (copy);
4724 return;
4725 }
4726 }
4727 while ((p = strtok (NULL, ",")) != NULL);
4728 xfree (copy);
4729
94b0dee1
PA
4730 remote_support_xml = reconcat (remote_support_xml,
4731 remote_support_xml, ",", xml,
4732 (char *) NULL);
c8d5aac9
L
4733 }
4734#endif
4735}
4736
4737static char *
4738remote_query_supported_append (char *msg, const char *append)
4739{
4740 if (msg)
94b0dee1 4741 return reconcat (msg, msg, ";", append, (char *) NULL);
c8d5aac9
L
4742 else
4743 return xstrdup (append);
4744}
4745
be2a5f71
DJ
4746static void
4747remote_query_supported (void)
4748{
4749 struct remote_state *rs = get_remote_state ();
4750 char *next;
4751 int i;
4752 unsigned char seen [ARRAY_SIZE (remote_protocol_features)];
4753
4754 /* The packet support flags are handled differently for this packet
4755 than for most others. We treat an error, a disabled packet, and
4756 an empty response identically: any features which must be reported
4757 to be used will be automatically disabled. An empty buffer
4758 accomplishes this, since that is also the representation for a list
4759 containing no features. */
4760
4761 rs->buf[0] = 0;
4082afcc 4762 if (packet_support (PACKET_qSupported) != PACKET_DISABLE)
be2a5f71 4763 {
c8d5aac9 4764 char *q = NULL;
94b0dee1 4765 struct cleanup *old_chain = make_cleanup (free_current_contents, &q);
c8d5aac9 4766
73b8c1fd
PA
4767 if (packet_set_cmd_state (PACKET_multiprocess_feature) != AUTO_BOOLEAN_FALSE)
4768 q = remote_query_supported_append (q, "multiprocess+");
c8d5aac9 4769
f7e6eed5
PA
4770 if (packet_set_cmd_state (PACKET_swbreak_feature) != AUTO_BOOLEAN_FALSE)
4771 q = remote_query_supported_append (q, "swbreak+");
4772 if (packet_set_cmd_state (PACKET_hwbreak_feature) != AUTO_BOOLEAN_FALSE)
4773 q = remote_query_supported_append (q, "hwbreak+");
4774
dde08ee1
PA
4775 q = remote_query_supported_append (q, "qRelocInsn+");
4776
8020350c
DB
4777 if (packet_set_cmd_state (PACKET_fork_event_feature)
4778 != AUTO_BOOLEAN_FALSE)
4779 q = remote_query_supported_append (q, "fork-events+");
4780 if (packet_set_cmd_state (PACKET_vfork_event_feature)
4781 != AUTO_BOOLEAN_FALSE)
4782 q = remote_query_supported_append (q, "vfork-events+");
4783 if (packet_set_cmd_state (PACKET_exec_event_feature)
4784 != AUTO_BOOLEAN_FALSE)
4785 q = remote_query_supported_append (q, "exec-events+");
89245bc0 4786
750ce8d1
YQ
4787 if (packet_set_cmd_state (PACKET_vContSupported) != AUTO_BOOLEAN_FALSE)
4788 q = remote_query_supported_append (q, "vContSupported+");
4789
65706a29
PA
4790 if (packet_set_cmd_state (PACKET_QThreadEvents) != AUTO_BOOLEAN_FALSE)
4791 q = remote_query_supported_append (q, "QThreadEvents+");
4792
f2faf941
PA
4793 if (packet_set_cmd_state (PACKET_no_resumed) != AUTO_BOOLEAN_FALSE)
4794 q = remote_query_supported_append (q, "no-resumed+");
4795
b35d5edb
PA
4796 /* Keep this one last to work around a gdbserver <= 7.10 bug in
4797 the qSupported:xmlRegisters=i386 handling. */
4798 if (remote_support_xml != NULL)
4799 q = remote_query_supported_append (q, remote_support_xml);
4800
dde08ee1
PA
4801 q = reconcat (q, "qSupported:", q, (char *) NULL);
4802 putpkt (q);
82f73884 4803
94b0dee1
PA
4804 do_cleanups (old_chain);
4805
be2a5f71
DJ
4806 getpkt (&rs->buf, &rs->buf_size, 0);
4807
4808 /* If an error occured, warn, but do not return - just reset the
4809 buffer to empty and go on to disable features. */
4810 if (packet_ok (rs->buf, &remote_protocol_packets[PACKET_qSupported])
4811 == PACKET_ERROR)
4812 {
4813 warning (_("Remote failure reply: %s"), rs->buf);
4814 rs->buf[0] = 0;
4815 }
4816 }
4817
4818 memset (seen, 0, sizeof (seen));
4819
4820 next = rs->buf;
4821 while (*next)
4822 {
4823 enum packet_support is_supported;
4824 char *p, *end, *name_end, *value;
4825
4826 /* First separate out this item from the rest of the packet. If
4827 there's another item after this, we overwrite the separator
4828 (terminated strings are much easier to work with). */
4829 p = next;
4830 end = strchr (p, ';');
4831 if (end == NULL)
4832 {
4833 end = p + strlen (p);
4834 next = end;
4835 }
4836 else
4837 {
89be2091
DJ
4838 *end = '\0';
4839 next = end + 1;
4840
be2a5f71
DJ
4841 if (end == p)
4842 {
4843 warning (_("empty item in \"qSupported\" response"));
4844 continue;
4845 }
be2a5f71
DJ
4846 }
4847
4848 name_end = strchr (p, '=');
4849 if (name_end)
4850 {
4851 /* This is a name=value entry. */
4852 is_supported = PACKET_ENABLE;
4853 value = name_end + 1;
4854 *name_end = '\0';
4855 }
4856 else
4857 {
4858 value = NULL;
4859 switch (end[-1])
4860 {
4861 case '+':
4862 is_supported = PACKET_ENABLE;
4863 break;
4864
4865 case '-':
4866 is_supported = PACKET_DISABLE;
4867 break;
4868
4869 case '?':
4870 is_supported = PACKET_SUPPORT_UNKNOWN;
4871 break;
4872
4873 default:
3e43a32a
MS
4874 warning (_("unrecognized item \"%s\" "
4875 "in \"qSupported\" response"), p);
be2a5f71
DJ
4876 continue;
4877 }
4878 end[-1] = '\0';
4879 }
4880
4881 for (i = 0; i < ARRAY_SIZE (remote_protocol_features); i++)
4882 if (strcmp (remote_protocol_features[i].name, p) == 0)
4883 {
4884 const struct protocol_feature *feature;
4885
4886 seen[i] = 1;
4887 feature = &remote_protocol_features[i];
4888 feature->func (feature, is_supported, value);
4889 break;
4890 }
4891 }
4892
4893 /* If we increased the packet size, make sure to increase the global
4894 buffer size also. We delay this until after parsing the entire
4895 qSupported packet, because this is the same buffer we were
4896 parsing. */
4897 if (rs->buf_size < rs->explicit_packet_size)
4898 {
4899 rs->buf_size = rs->explicit_packet_size;
224c3ddb 4900 rs->buf = (char *) xrealloc (rs->buf, rs->buf_size);
be2a5f71
DJ
4901 }
4902
4903 /* Handle the defaults for unmentioned features. */
4904 for (i = 0; i < ARRAY_SIZE (remote_protocol_features); i++)
4905 if (!seen[i])
4906 {
4907 const struct protocol_feature *feature;
4908
4909 feature = &remote_protocol_features[i];
4910 feature->func (feature, feature->default_support, NULL);
4911 }
4912}
4913
048094ac
PA
4914/* Serial QUIT handler for the remote serial descriptor.
4915
4916 Defers handling a Ctrl-C until we're done with the current
4917 command/response packet sequence, unless:
4918
4919 - We're setting up the connection. Don't send a remote interrupt
4920 request, as we're not fully synced yet. Quit immediately
4921 instead.
4922
4923 - The target has been resumed in the foreground
4924 (target_terminal_is_ours is false) with a synchronous resume
4925 packet, and we're blocked waiting for the stop reply, thus a
4926 Ctrl-C should be immediately sent to the target.
4927
4928 - We get a second Ctrl-C while still within the same serial read or
4929 write. In that case the serial is seemingly wedged --- offer to
4930 quit/disconnect.
4931
4932 - We see a second Ctrl-C without target response, after having
4933 previously interrupted the target. In that case the target/stub
4934 is probably wedged --- offer to quit/disconnect.
4935*/
4936
4937static void
4938remote_serial_quit_handler (void)
4939{
4940 struct remote_state *rs = get_remote_state ();
4941
4942 if (check_quit_flag ())
4943 {
4944 /* If we're starting up, we're not fully synced yet. Quit
4945 immediately. */
4946 if (rs->starting_up)
4947 quit ();
4948 else if (rs->got_ctrlc_during_io)
4949 {
4950 if (query (_("The target is not responding to GDB commands.\n"
4951 "Stop debugging it? ")))
4952 remote_unpush_and_throw ();
4953 }
4954 /* If ^C has already been sent once, offer to disconnect. */
4955 else if (!target_terminal_is_ours () && rs->ctrlc_pending_p)
4956 interrupt_query ();
4957 /* All-stop protocol, and blocked waiting for stop reply. Send
4958 an interrupt request. */
4959 else if (!target_terminal_is_ours () && rs->waiting_for_stop_reply)
4960 target_interrupt (inferior_ptid);
4961 else
4962 rs->got_ctrlc_during_io = 1;
4963 }
4964}
4965
78a095c3
JK
4966/* Remove any of the remote.c targets from target stack. Upper targets depend
4967 on it so remove them first. */
4968
4969static void
4970remote_unpush_target (void)
4971{
915ef8b1 4972 pop_all_targets_at_and_above (process_stratum);
78a095c3 4973}
be2a5f71 4974
048094ac
PA
4975static void
4976remote_unpush_and_throw (void)
4977{
4978 remote_unpush_target ();
4979 throw_error (TARGET_CLOSE_ERROR, _("Disconnected from target."));
4980}
4981
c906108c 4982static void
014f9477 4983remote_open_1 (const char *name, int from_tty,
3e43a32a 4984 struct target_ops *target, int extended_p)
c906108c 4985{
d01949b6 4986 struct remote_state *rs = get_remote_state ();
a6f3e723 4987
c906108c 4988 if (name == 0)
8a3fe4f8 4989 error (_("To open a remote debug connection, you need to specify what\n"
22e04375 4990 "serial device is attached to the remote system\n"
8a3fe4f8 4991 "(e.g. /dev/ttyS0, /dev/ttya, COM1, etc.)."));
c906108c 4992
23860348 4993 /* See FIXME above. */
c6ebd6cf 4994 if (!target_async_permitted)
92d1e331 4995 wait_forever_enabled_p = 1;
6426a772 4996
2d717e4f 4997 /* If we're connected to a running target, target_preopen will kill it.
78a095c3
JK
4998 Ask this question first, before target_preopen has a chance to kill
4999 anything. */
5d93a237 5000 if (rs->remote_desc != NULL && !have_inferiors ())
2d717e4f 5001 {
78a095c3
JK
5002 if (from_tty
5003 && !query (_("Already connected to a remote target. Disconnect? ")))
2d717e4f
DJ
5004 error (_("Still connected."));
5005 }
5006
78a095c3 5007 /* Here the possibly existing remote target gets unpushed. */
c906108c
SS
5008 target_preopen (from_tty);
5009
89be2091 5010 /* Make sure we send the passed signals list the next time we resume. */
747dc59d
TT
5011 xfree (rs->last_pass_packet);
5012 rs->last_pass_packet = NULL;
89be2091 5013
9b224c5e
PA
5014 /* Make sure we send the program signals list the next time we
5015 resume. */
5e4a05c4
TT
5016 xfree (rs->last_program_signals_packet);
5017 rs->last_program_signals_packet = NULL;
9b224c5e 5018
ad9a8f3f 5019 remote_fileio_reset ();
1dd41f16
NS
5020 reopen_exec_file ();
5021 reread_symbols ();
5022
5d93a237
TT
5023 rs->remote_desc = remote_serial_open (name);
5024 if (!rs->remote_desc)
c906108c
SS
5025 perror_with_name (name);
5026
5027 if (baud_rate != -1)
5028 {
5d93a237 5029 if (serial_setbaudrate (rs->remote_desc, baud_rate))
c906108c 5030 {
9b74d5d3
KB
5031 /* The requested speed could not be set. Error out to
5032 top level after closing remote_desc. Take care to
5033 set remote_desc to NULL to avoid closing remote_desc
5034 more than once. */
5d93a237
TT
5035 serial_close (rs->remote_desc);
5036 rs->remote_desc = NULL;
c906108c
SS
5037 perror_with_name (name);
5038 }
5039 }
5040
236af5e3 5041 serial_setparity (rs->remote_desc, serial_parity);
5d93a237 5042 serial_raw (rs->remote_desc);
c906108c
SS
5043
5044 /* If there is something sitting in the buffer we might take it as a
5045 response to a command, which would be bad. */
5d93a237 5046 serial_flush_input (rs->remote_desc);
c906108c
SS
5047
5048 if (from_tty)
5049 {
5050 puts_filtered ("Remote debugging using ");
5051 puts_filtered (name);
5052 puts_filtered ("\n");
5053 }
23860348 5054 push_target (target); /* Switch to using remote target now. */
c906108c 5055
74531fed
PA
5056 /* Register extra event sources in the event loop. */
5057 remote_async_inferior_event_token
5058 = create_async_event_handler (remote_async_inferior_event_handler,
5059 NULL);
5965e028 5060 rs->notif_state = remote_notif_state_allocate ();
74531fed 5061
be2a5f71
DJ
5062 /* Reset the target state; these things will be queried either by
5063 remote_query_supported or as they are needed. */
ca4f7f8b 5064 reset_all_packet_configs_support ();
74531fed 5065 rs->cached_wait_status = 0;
be2a5f71 5066 rs->explicit_packet_size = 0;
a6f3e723 5067 rs->noack_mode = 0;
82f73884 5068 rs->extended = extended_p;
e24a49d8 5069 rs->waiting_for_stop_reply = 0;
3a29589a 5070 rs->ctrlc_pending_p = 0;
048094ac 5071 rs->got_ctrlc_during_io = 0;
802188a7 5072
47f8a51d
TT
5073 rs->general_thread = not_sent_ptid;
5074 rs->continue_thread = not_sent_ptid;
262e1174 5075 rs->remote_traceframe_number = -1;
c906108c 5076
3a00c802
PA
5077 rs->last_resume_exec_dir = EXEC_FORWARD;
5078
9d1f7ab2 5079 /* Probe for ability to use "ThreadInfo" query, as required. */
b80fafe3
TT
5080 rs->use_threadinfo_query = 1;
5081 rs->use_threadextra_query = 1;
9d1f7ab2 5082
80152258
PA
5083 readahead_cache_invalidate ();
5084
048094ac
PA
5085 /* Start out by owning the terminal. */
5086 remote_async_terminal_ours_p = 1;
5087
c6ebd6cf 5088 if (target_async_permitted)
92d1e331 5089 {
92d1e331
DJ
5090 /* FIXME: cagney/1999-09-23: During the initial connection it is
5091 assumed that the target is already ready and able to respond to
0df8b418 5092 requests. Unfortunately remote_start_remote() eventually calls
92d1e331 5093 wait_for_inferior() with no timeout. wait_forever_enabled_p gets
0df8b418 5094 around this. Eventually a mechanism that allows
92d1e331 5095 wait_for_inferior() to expect/get timeouts will be
23860348 5096 implemented. */
92d1e331
DJ
5097 wait_forever_enabled_p = 0;
5098 }
5099
23860348 5100 /* First delete any symbols previously loaded from shared libraries. */
f78f6cf1 5101 no_shared_libraries (NULL, 0);
f78f6cf1 5102
74531fed
PA
5103 /* Start afresh. */
5104 init_thread_list ();
5105
36918e70 5106 /* Start the remote connection. If error() or QUIT, discard this
165b8e33
AC
5107 target (we'd otherwise be in an inconsistent state) and then
5108 propogate the error on up the exception chain. This ensures that
5109 the caller doesn't stumble along blindly assuming that the
5110 function succeeded. The CLI doesn't have this problem but other
5111 UI's, such as MI do.
36918e70
AC
5112
5113 FIXME: cagney/2002-05-19: Instead of re-throwing the exception,
5114 this function should return an error indication letting the
ce2826aa 5115 caller restore the previous state. Unfortunately the command
36918e70
AC
5116 ``target remote'' is directly wired to this function making that
5117 impossible. On a positive note, the CLI side of this problem has
5118 been fixed - the function set_cmd_context() makes it possible for
5119 all the ``target ....'' commands to share a common callback
5120 function. See cli-dump.c. */
109c3e39 5121 {
2d717e4f 5122
492d29ea 5123 TRY
04bd08de
TT
5124 {
5125 remote_start_remote (from_tty, target, extended_p);
5126 }
492d29ea 5127 CATCH (ex, RETURN_MASK_ALL)
109c3e39 5128 {
c8d104ad
PA
5129 /* Pop the partially set up target - unless something else did
5130 already before throwing the exception. */
5d93a237 5131 if (rs->remote_desc != NULL)
78a095c3 5132 remote_unpush_target ();
c6ebd6cf 5133 if (target_async_permitted)
109c3e39
AC
5134 wait_forever_enabled_p = 1;
5135 throw_exception (ex);
5136 }
492d29ea 5137 END_CATCH
109c3e39 5138 }
c906108c 5139
f4abbc16
MM
5140 remote_btrace_reset ();
5141
c6ebd6cf 5142 if (target_async_permitted)
92d1e331 5143 wait_forever_enabled_p = 1;
43ff13b4
JM
5144}
5145
de0d863e
DB
5146/* Detach the specified process. */
5147
5148static void
5149remote_detach_pid (int pid)
5150{
5151 struct remote_state *rs = get_remote_state ();
5152
5153 if (remote_multi_process_p (rs))
5154 xsnprintf (rs->buf, get_remote_packet_size (), "D;%x", pid);
5155 else
5156 strcpy (rs->buf, "D");
5157
5158 putpkt (rs->buf);
5159 getpkt (&rs->buf, &rs->buf_size, 0);
5160
5161 if (rs->buf[0] == 'O' && rs->buf[1] == 'K')
5162 ;
5163 else if (rs->buf[0] == '\0')
5164 error (_("Remote doesn't know how to detach"));
5165 else
5166 error (_("Can't detach process."));
5167}
5168
5169/* This detaches a program to which we previously attached, using
5170 inferior_ptid to identify the process. After this is done, GDB
5171 can be used to debug some other program. We better not have left
5172 any breakpoints in the target program or it'll die when it hits
5173 one. */
c906108c
SS
5174
5175static void
de0d863e 5176remote_detach_1 (const char *args, int from_tty)
c906108c 5177{
82f73884 5178 int pid = ptid_get_pid (inferior_ptid);
d01949b6 5179 struct remote_state *rs = get_remote_state ();
de0d863e
DB
5180 struct thread_info *tp = find_thread_ptid (inferior_ptid);
5181 int is_fork_parent;
c906108c
SS
5182
5183 if (args)
8a3fe4f8 5184 error (_("Argument given to \"detach\" when remotely debugging."));
c906108c 5185
2d717e4f
DJ
5186 if (!target_has_execution)
5187 error (_("No process to detach from."));
5188
0f48b757 5189 target_announce_detach (from_tty);
7cee1e54 5190
c906108c 5191 /* Tell the remote target to detach. */
de0d863e 5192 remote_detach_pid (pid);
82f73884 5193
8020350c
DB
5194 /* Exit only if this is the only active inferior. */
5195 if (from_tty && !rs->extended && number_of_live_inferiors () == 1)
7cee1e54 5196 puts_filtered (_("Ending remote debugging.\n"));
82f73884 5197
de0d863e
DB
5198 /* Check to see if we are detaching a fork parent. Note that if we
5199 are detaching a fork child, tp == NULL. */
5200 is_fork_parent = (tp != NULL
5201 && tp->pending_follow.kind == TARGET_WAITKIND_FORKED);
5202
5203 /* If doing detach-on-fork, we don't mourn, because that will delete
5204 breakpoints that should be available for the followed inferior. */
5205 if (!is_fork_parent)
bc1e6c81 5206 target_mourn_inferior (inferior_ptid);
de0d863e
DB
5207 else
5208 {
5209 inferior_ptid = null_ptid;
5210 detach_inferior (pid);
5211 }
2d717e4f
DJ
5212}
5213
5214static void
52554a0e 5215remote_detach (struct target_ops *ops, const char *args, int from_tty)
2d717e4f 5216{
de0d863e 5217 remote_detach_1 (args, from_tty);
2d717e4f
DJ
5218}
5219
5220static void
52554a0e 5221extended_remote_detach (struct target_ops *ops, const char *args, int from_tty)
2d717e4f 5222{
de0d863e
DB
5223 remote_detach_1 (args, from_tty);
5224}
5225
5226/* Target follow-fork function for remote targets. On entry, and
5227 at return, the current inferior is the fork parent.
5228
5229 Note that although this is currently only used for extended-remote,
5230 it is named remote_follow_fork in anticipation of using it for the
5231 remote target as well. */
5232
5233static int
5234remote_follow_fork (struct target_ops *ops, int follow_child,
5235 int detach_fork)
5236{
5237 struct remote_state *rs = get_remote_state ();
c269dbdb 5238 enum target_waitkind kind = inferior_thread ()->pending_follow.kind;
de0d863e 5239
c269dbdb
DB
5240 if ((kind == TARGET_WAITKIND_FORKED && remote_fork_event_p (rs))
5241 || (kind == TARGET_WAITKIND_VFORKED && remote_vfork_event_p (rs)))
de0d863e
DB
5242 {
5243 /* When following the parent and detaching the child, we detach
5244 the child here. For the case of following the child and
5245 detaching the parent, the detach is done in the target-
5246 independent follow fork code in infrun.c. We can't use
5247 target_detach when detaching an unfollowed child because
5248 the client side doesn't know anything about the child. */
5249 if (detach_fork && !follow_child)
5250 {
5251 /* Detach the fork child. */
5252 ptid_t child_ptid;
5253 pid_t child_pid;
5254
5255 child_ptid = inferior_thread ()->pending_follow.value.related_pid;
5256 child_pid = ptid_get_pid (child_ptid);
5257
5258 remote_detach_pid (child_pid);
5259 detach_inferior (child_pid);
5260 }
5261 }
5262 return 0;
c906108c
SS
5263}
5264
94585166
DB
5265/* Target follow-exec function for remote targets. Save EXECD_PATHNAME
5266 in the program space of the new inferior. On entry and at return the
5267 current inferior is the exec'ing inferior. INF is the new exec'd
5268 inferior, which may be the same as the exec'ing inferior unless
5269 follow-exec-mode is "new". */
5270
5271static void
5272remote_follow_exec (struct target_ops *ops,
5273 struct inferior *inf, char *execd_pathname)
5274{
5275 /* We know that this is a target file name, so if it has the "target:"
5276 prefix we strip it off before saving it in the program space. */
5277 if (is_target_filename (execd_pathname))
5278 execd_pathname += strlen (TARGET_SYSROOT_PREFIX);
5279
5280 set_pspace_remote_exec_file (inf->pspace, execd_pathname);
5281}
5282
6ad8ae5c
DJ
5283/* Same as remote_detach, but don't send the "D" packet; just disconnect. */
5284
43ff13b4 5285static void
fee354ee 5286remote_disconnect (struct target_ops *target, const char *args, int from_tty)
43ff13b4 5287{
43ff13b4 5288 if (args)
2d717e4f 5289 error (_("Argument given to \"disconnect\" when remotely debugging."));
43ff13b4 5290
8020350c
DB
5291 /* Make sure we unpush even the extended remote targets. Calling
5292 target_mourn_inferior won't unpush, and remote_mourn won't
5293 unpush if there is more than one inferior left. */
5294 unpush_target (target);
5295 generic_mourn_inferior ();
2d717e4f 5296
43ff13b4
JM
5297 if (from_tty)
5298 puts_filtered ("Ending remote debugging.\n");
5299}
5300
2d717e4f
DJ
5301/* Attach to the process specified by ARGS. If FROM_TTY is non-zero,
5302 be chatty about it. */
5303
5304static void
20f796c9
GB
5305extended_remote_attach (struct target_ops *target, const char *args,
5306 int from_tty)
2d717e4f
DJ
5307{
5308 struct remote_state *rs = get_remote_state ();
be86555c 5309 int pid;
96ef3384 5310 char *wait_status = NULL;
2d717e4f 5311
74164c56 5312 pid = parse_pid_to_attach (args);
2d717e4f 5313
74164c56
JK
5314 /* Remote PID can be freely equal to getpid, do not check it here the same
5315 way as in other targets. */
2d717e4f 5316
4082afcc 5317 if (packet_support (PACKET_vAttach) == PACKET_DISABLE)
2d717e4f
DJ
5318 error (_("This target does not support attaching to a process"));
5319
7cee1e54
PA
5320 if (from_tty)
5321 {
5322 char *exec_file = get_exec_file (0);
5323
5324 if (exec_file)
5325 printf_unfiltered (_("Attaching to program: %s, %s\n"), exec_file,
5326 target_pid_to_str (pid_to_ptid (pid)));
5327 else
5328 printf_unfiltered (_("Attaching to %s\n"),
5329 target_pid_to_str (pid_to_ptid (pid)));
5330
5331 gdb_flush (gdb_stdout);
5332 }
5333
bba74b36 5334 xsnprintf (rs->buf, get_remote_packet_size (), "vAttach;%x", pid);
2d717e4f
DJ
5335 putpkt (rs->buf);
5336 getpkt (&rs->buf, &rs->buf_size, 0);
5337
4082afcc
PA
5338 switch (packet_ok (rs->buf,
5339 &remote_protocol_packets[PACKET_vAttach]))
2d717e4f 5340 {
4082afcc 5341 case PACKET_OK:
6efcd9a8 5342 if (!target_is_non_stop_p ())
74531fed
PA
5343 {
5344 /* Save the reply for later. */
224c3ddb 5345 wait_status = (char *) alloca (strlen (rs->buf) + 1);
74531fed
PA
5346 strcpy (wait_status, rs->buf);
5347 }
5348 else if (strcmp (rs->buf, "OK") != 0)
5349 error (_("Attaching to %s failed with: %s"),
5350 target_pid_to_str (pid_to_ptid (pid)),
5351 rs->buf);
4082afcc
PA
5352 break;
5353 case PACKET_UNKNOWN:
5354 error (_("This target does not support attaching to a process"));
5355 default:
5356 error (_("Attaching to %s failed"),
5357 target_pid_to_str (pid_to_ptid (pid)));
2d717e4f 5358 }
2d717e4f 5359
1b6e6f5c 5360 set_current_inferior (remote_add_inferior (0, pid, 1, 0));
bad34192 5361
2d717e4f 5362 inferior_ptid = pid_to_ptid (pid);
79d7f229 5363
6efcd9a8 5364 if (target_is_non_stop_p ())
bad34192
PA
5365 {
5366 struct thread_info *thread;
79d7f229 5367
bad34192 5368 /* Get list of threads. */
e8032dde 5369 remote_update_thread_list (target);
82f73884 5370
bad34192
PA
5371 thread = first_thread_of_process (pid);
5372 if (thread)
5373 inferior_ptid = thread->ptid;
5374 else
5375 inferior_ptid = pid_to_ptid (pid);
5376
5377 /* Invalidate our notion of the remote current thread. */
47f8a51d 5378 record_currthread (rs, minus_one_ptid);
bad34192 5379 }
74531fed 5380 else
bad34192
PA
5381 {
5382 /* Now, if we have thread information, update inferior_ptid. */
5383 inferior_ptid = remote_current_thread (inferior_ptid);
5384
5385 /* Add the main thread to the thread list. */
5386 add_thread_silent (inferior_ptid);
5387 }
c0a2216e 5388
96ef3384
UW
5389 /* Next, if the target can specify a description, read it. We do
5390 this before anything involving memory or registers. */
5391 target_find_description ();
5392
6efcd9a8 5393 if (!target_is_non_stop_p ())
74531fed
PA
5394 {
5395 /* Use the previously fetched status. */
5396 gdb_assert (wait_status != NULL);
5397
5398 if (target_can_async_p ())
5399 {
722247f1
YQ
5400 struct notif_event *reply
5401 = remote_notif_parse (&notif_client_stop, wait_status);
74531fed 5402
722247f1 5403 push_stop_reply ((struct stop_reply *) reply);
74531fed 5404
6a3753b3 5405 target_async (1);
74531fed
PA
5406 }
5407 else
5408 {
5409 gdb_assert (wait_status != NULL);
5410 strcpy (rs->buf, wait_status);
5411 rs->cached_wait_status = 1;
5412 }
5413 }
5414 else
5415 gdb_assert (wait_status == NULL);
2d717e4f
DJ
5416}
5417
b9c1d481
AS
5418/* Implementation of the to_post_attach method. */
5419
5420static void
5421extended_remote_post_attach (struct target_ops *ops, int pid)
5422{
6efcd9a8
PA
5423 /* Get text, data & bss offsets. */
5424 get_offsets ();
5425
b9c1d481
AS
5426 /* In certain cases GDB might not have had the chance to start
5427 symbol lookup up until now. This could happen if the debugged
5428 binary is not using shared libraries, the vsyscall page is not
5429 present (on Linux) and the binary itself hadn't changed since the
5430 debugging process was started. */
5431 if (symfile_objfile != NULL)
5432 remote_check_symbols();
5433}
5434
c906108c 5435\f
506fb367
DJ
5436/* Check for the availability of vCont. This function should also check
5437 the response. */
c906108c
SS
5438
5439static void
6d820c5c 5440remote_vcont_probe (struct remote_state *rs)
c906108c 5441{
2e9f7625 5442 char *buf;
6d820c5c 5443
2e9f7625
DJ
5444 strcpy (rs->buf, "vCont?");
5445 putpkt (rs->buf);
6d820c5c 5446 getpkt (&rs->buf, &rs->buf_size, 0);
2e9f7625 5447 buf = rs->buf;
c906108c 5448
506fb367 5449 /* Make sure that the features we assume are supported. */
61012eef 5450 if (startswith (buf, "vCont"))
506fb367
DJ
5451 {
5452 char *p = &buf[5];
750ce8d1 5453 int support_c, support_C;
506fb367 5454
750ce8d1
YQ
5455 rs->supports_vCont.s = 0;
5456 rs->supports_vCont.S = 0;
506fb367
DJ
5457 support_c = 0;
5458 support_C = 0;
d458bd84 5459 rs->supports_vCont.t = 0;
c1e36e3e 5460 rs->supports_vCont.r = 0;
506fb367
DJ
5461 while (p && *p == ';')
5462 {
5463 p++;
5464 if (*p == 's' && (*(p + 1) == ';' || *(p + 1) == 0))
750ce8d1 5465 rs->supports_vCont.s = 1;
506fb367 5466 else if (*p == 'S' && (*(p + 1) == ';' || *(p + 1) == 0))
750ce8d1 5467 rs->supports_vCont.S = 1;
506fb367
DJ
5468 else if (*p == 'c' && (*(p + 1) == ';' || *(p + 1) == 0))
5469 support_c = 1;
5470 else if (*p == 'C' && (*(p + 1) == ';' || *(p + 1) == 0))
5471 support_C = 1;
74531fed 5472 else if (*p == 't' && (*(p + 1) == ';' || *(p + 1) == 0))
d458bd84 5473 rs->supports_vCont.t = 1;
c1e36e3e
PA
5474 else if (*p == 'r' && (*(p + 1) == ';' || *(p + 1) == 0))
5475 rs->supports_vCont.r = 1;
506fb367
DJ
5476
5477 p = strchr (p, ';');
5478 }
c906108c 5479
750ce8d1
YQ
5480 /* If c, and C are not all supported, we can't use vCont. Clearing
5481 BUF will make packet_ok disable the packet. */
5482 if (!support_c || !support_C)
506fb367
DJ
5483 buf[0] = 0;
5484 }
c906108c 5485
444abaca 5486 packet_ok (buf, &remote_protocol_packets[PACKET_vCont]);
506fb367 5487}
c906108c 5488
0d8f58ca
PA
5489/* Helper function for building "vCont" resumptions. Write a
5490 resumption to P. ENDP points to one-passed-the-end of the buffer
5491 we're allowed to write to. Returns BUF+CHARACTERS_WRITTEN. The
5492 thread to be resumed is PTID; STEP and SIGGNAL indicate whether the
5493 resumed thread should be single-stepped and/or signalled. If PTID
5494 equals minus_one_ptid, then all threads are resumed; if PTID
5495 represents a process, then all threads of the process are resumed;
5496 the thread to be stepped and/or signalled is given in the global
5497 INFERIOR_PTID. */
5498
5499static char *
5500append_resumption (char *p, char *endp,
2ea28649 5501 ptid_t ptid, int step, enum gdb_signal siggnal)
0d8f58ca
PA
5502{
5503 struct remote_state *rs = get_remote_state ();
5504
a493e3e2 5505 if (step && siggnal != GDB_SIGNAL_0)
0d8f58ca 5506 p += xsnprintf (p, endp - p, ";S%02x", siggnal);
c1e36e3e
PA
5507 else if (step
5508 /* GDB is willing to range step. */
5509 && use_range_stepping
5510 /* Target supports range stepping. */
5511 && rs->supports_vCont.r
5512 /* We don't currently support range stepping multiple
5513 threads with a wildcard (though the protocol allows it,
5514 so stubs shouldn't make an active effort to forbid
5515 it). */
5516 && !(remote_multi_process_p (rs) && ptid_is_pid (ptid)))
5517 {
5518 struct thread_info *tp;
5519
5520 if (ptid_equal (ptid, minus_one_ptid))
5521 {
5522 /* If we don't know about the target thread's tid, then
5523 we're resuming magic_null_ptid (see caller). */
5524 tp = find_thread_ptid (magic_null_ptid);
5525 }
5526 else
5527 tp = find_thread_ptid (ptid);
5528 gdb_assert (tp != NULL);
5529
5530 if (tp->control.may_range_step)
5531 {
5532 int addr_size = gdbarch_addr_bit (target_gdbarch ()) / 8;
5533
5534 p += xsnprintf (p, endp - p, ";r%s,%s",
5535 phex_nz (tp->control.step_range_start,
5536 addr_size),
5537 phex_nz (tp->control.step_range_end,
5538 addr_size));
5539 }
5540 else
5541 p += xsnprintf (p, endp - p, ";s");
5542 }
0d8f58ca
PA
5543 else if (step)
5544 p += xsnprintf (p, endp - p, ";s");
a493e3e2 5545 else if (siggnal != GDB_SIGNAL_0)
0d8f58ca
PA
5546 p += xsnprintf (p, endp - p, ";C%02x", siggnal);
5547 else
5548 p += xsnprintf (p, endp - p, ";c");
5549
5550 if (remote_multi_process_p (rs) && ptid_is_pid (ptid))
5551 {
5552 ptid_t nptid;
5553
5554 /* All (-1) threads of process. */
ba348170 5555 nptid = ptid_build (ptid_get_pid (ptid), -1, 0);
0d8f58ca
PA
5556
5557 p += xsnprintf (p, endp - p, ":");
5558 p = write_ptid (p, endp, nptid);
5559 }
5560 else if (!ptid_equal (ptid, minus_one_ptid))
5561 {
5562 p += xsnprintf (p, endp - p, ":");
5563 p = write_ptid (p, endp, ptid);
5564 }
5565
5566 return p;
5567}
5568
799a2abe
PA
5569/* Clear the thread's private info on resume. */
5570
5571static void
5572resume_clear_thread_private_info (struct thread_info *thread)
5573{
5574 if (thread->priv != NULL)
5575 {
5576 thread->priv->stop_reason = TARGET_STOPPED_BY_NO_REASON;
5577 thread->priv->watch_data_address = 0;
5578 }
5579}
5580
e5ef252a
PA
5581/* Append a vCont continue-with-signal action for threads that have a
5582 non-zero stop signal. */
5583
5584static char *
5585append_pending_thread_resumptions (char *p, char *endp, ptid_t ptid)
5586{
5587 struct thread_info *thread;
5588
034f788c 5589 ALL_NON_EXITED_THREADS (thread)
e5ef252a
PA
5590 if (ptid_match (thread->ptid, ptid)
5591 && !ptid_equal (inferior_ptid, thread->ptid)
70509625 5592 && thread->suspend.stop_signal != GDB_SIGNAL_0)
e5ef252a
PA
5593 {
5594 p = append_resumption (p, endp, thread->ptid,
5595 0, thread->suspend.stop_signal);
5596 thread->suspend.stop_signal = GDB_SIGNAL_0;
799a2abe 5597 resume_clear_thread_private_info (thread);
e5ef252a
PA
5598 }
5599
5600 return p;
5601}
5602
7b68ffbb
PA
5603/* Set the target running, using the packets that use Hc
5604 (c/s/C/S). */
5605
5606static void
5607remote_resume_with_hc (struct target_ops *ops,
5608 ptid_t ptid, int step, enum gdb_signal siggnal)
5609{
5610 struct remote_state *rs = get_remote_state ();
5611 struct thread_info *thread;
5612 char *buf;
5613
5614 rs->last_sent_signal = siggnal;
5615 rs->last_sent_step = step;
5616
5617 /* The c/s/C/S resume packets use Hc, so set the continue
5618 thread. */
5619 if (ptid_equal (ptid, minus_one_ptid))
5620 set_continue_thread (any_thread_ptid);
5621 else
5622 set_continue_thread (ptid);
5623
5624 ALL_NON_EXITED_THREADS (thread)
5625 resume_clear_thread_private_info (thread);
5626
5627 buf = rs->buf;
5628 if (execution_direction == EXEC_REVERSE)
5629 {
5630 /* We don't pass signals to the target in reverse exec mode. */
5631 if (info_verbose && siggnal != GDB_SIGNAL_0)
5632 warning (_(" - Can't pass signal %d to target in reverse: ignored."),
5633 siggnal);
5634
5635 if (step && packet_support (PACKET_bs) == PACKET_DISABLE)
5636 error (_("Remote reverse-step not supported."));
5637 if (!step && packet_support (PACKET_bc) == PACKET_DISABLE)
5638 error (_("Remote reverse-continue not supported."));
5639
5640 strcpy (buf, step ? "bs" : "bc");
5641 }
5642 else if (siggnal != GDB_SIGNAL_0)
5643 {
5644 buf[0] = step ? 'S' : 'C';
5645 buf[1] = tohex (((int) siggnal >> 4) & 0xf);
5646 buf[2] = tohex (((int) siggnal) & 0xf);
5647 buf[3] = '\0';
5648 }
5649 else
5650 strcpy (buf, step ? "s" : "c");
5651
5652 putpkt (buf);
5653}
5654
506fb367
DJ
5655/* Resume the remote inferior by using a "vCont" packet. The thread
5656 to be resumed is PTID; STEP and SIGGNAL indicate whether the
79d7f229
PA
5657 resumed thread should be single-stepped and/or signalled. If PTID
5658 equals minus_one_ptid, then all threads are resumed; the thread to
5659 be stepped and/or signalled is given in the global INFERIOR_PTID.
5660 This function returns non-zero iff it resumes the inferior.
44eaed12 5661
7b68ffbb
PA
5662 This function issues a strict subset of all possible vCont commands
5663 at the moment. */
44eaed12 5664
506fb367 5665static int
7b68ffbb 5666remote_resume_with_vcont (ptid_t ptid, int step, enum gdb_signal siggnal)
506fb367
DJ
5667{
5668 struct remote_state *rs = get_remote_state ();
82f73884
PA
5669 char *p;
5670 char *endp;
44eaed12 5671
7b68ffbb
PA
5672 /* No reverse execution actions defined for vCont. */
5673 if (execution_direction == EXEC_REVERSE)
5674 return 0;
5675
4082afcc 5676 if (packet_support (PACKET_vCont) == PACKET_SUPPORT_UNKNOWN)
6d820c5c 5677 remote_vcont_probe (rs);
44eaed12 5678
4082afcc 5679 if (packet_support (PACKET_vCont) == PACKET_DISABLE)
6d820c5c 5680 return 0;
44eaed12 5681
82f73884
PA
5682 p = rs->buf;
5683 endp = rs->buf + get_remote_packet_size ();
5684
506fb367
DJ
5685 /* If we could generate a wider range of packets, we'd have to worry
5686 about overflowing BUF. Should there be a generic
5687 "multi-part-packet" packet? */
5688
0d8f58ca
PA
5689 p += xsnprintf (p, endp - p, "vCont");
5690
79d7f229 5691 if (ptid_equal (ptid, magic_null_ptid))
c906108c 5692 {
79d7f229
PA
5693 /* MAGIC_NULL_PTID means that we don't have any active threads,
5694 so we don't have any TID numbers the inferior will
5695 understand. Make sure to only send forms that do not specify
5696 a TID. */
a9cbf802 5697 append_resumption (p, endp, minus_one_ptid, step, siggnal);
506fb367 5698 }
0d8f58ca 5699 else if (ptid_equal (ptid, minus_one_ptid) || ptid_is_pid (ptid))
506fb367 5700 {
0d8f58ca
PA
5701 /* Resume all threads (of all processes, or of a single
5702 process), with preference for INFERIOR_PTID. This assumes
5703 inferior_ptid belongs to the set of all threads we are about
5704 to resume. */
a493e3e2 5705 if (step || siggnal != GDB_SIGNAL_0)
82f73884 5706 {
0d8f58ca
PA
5707 /* Step inferior_ptid, with or without signal. */
5708 p = append_resumption (p, endp, inferior_ptid, step, siggnal);
82f73884 5709 }
0d8f58ca 5710
e5ef252a
PA
5711 /* Also pass down any pending signaled resumption for other
5712 threads not the current. */
5713 p = append_pending_thread_resumptions (p, endp, ptid);
5714
0d8f58ca 5715 /* And continue others without a signal. */
a493e3e2 5716 append_resumption (p, endp, ptid, /*step=*/ 0, GDB_SIGNAL_0);
c906108c
SS
5717 }
5718 else
506fb367
DJ
5719 {
5720 /* Scheduler locking; resume only PTID. */
a9cbf802 5721 append_resumption (p, endp, ptid, step, siggnal);
506fb367 5722 }
c906108c 5723
82f73884
PA
5724 gdb_assert (strlen (rs->buf) < get_remote_packet_size ());
5725 putpkt (rs->buf);
506fb367 5726
6efcd9a8 5727 if (target_is_non_stop_p ())
74531fed
PA
5728 {
5729 /* In non-stop, the stub replies to vCont with "OK". The stop
5730 reply will be reported asynchronously by means of a `%Stop'
5731 notification. */
5732 getpkt (&rs->buf, &rs->buf_size, 0);
5733 if (strcmp (rs->buf, "OK") != 0)
5734 error (_("Unexpected vCont reply in non-stop mode: %s"), rs->buf);
5735 }
5736
506fb367 5737 return 1;
c906108c 5738}
43ff13b4 5739
506fb367
DJ
5740/* Tell the remote machine to resume. */
5741
43ff13b4 5742static void
28439f5e 5743remote_resume (struct target_ops *ops,
2ea28649 5744 ptid_t ptid, int step, enum gdb_signal siggnal)
43ff13b4 5745{
d01949b6 5746 struct remote_state *rs = get_remote_state ();
43ff13b4 5747
85ad3aaf
PA
5748 /* When connected in non-stop mode, the core resumes threads
5749 individually. Resuming remote threads directly in target_resume
5750 would thus result in sending one packet per thread. Instead, to
5751 minimize roundtrip latency, here we just store the resume
5752 request; the actual remote resumption will be done in
5753 target_commit_resume / remote_commit_resume, where we'll be able
5754 to do vCont action coalescing. */
5755 if (target_is_non_stop_p () && execution_direction != EXEC_REVERSE)
5756 {
5757 struct private_thread_info *remote_thr;
5758
5759 if (ptid_equal (minus_one_ptid, ptid) || ptid_is_pid (ptid))
5760 remote_thr = get_private_info_ptid (inferior_ptid);
5761 else
5762 remote_thr = get_private_info_ptid (ptid);
5763 remote_thr->last_resume_step = step;
5764 remote_thr->last_resume_sig = siggnal;
5765 return;
5766 }
5767
722247f1
YQ
5768 /* In all-stop, we can't mark REMOTE_ASYNC_GET_PENDING_EVENTS_TOKEN
5769 (explained in remote-notif.c:handle_notification) so
5770 remote_notif_process is not called. We need find a place where
5771 it is safe to start a 'vNotif' sequence. It is good to do it
5772 before resuming inferior, because inferior was stopped and no RSP
5773 traffic at that moment. */
6efcd9a8 5774 if (!target_is_non_stop_p ())
5965e028 5775 remote_notif_process (rs->notif_state, &notif_client_stop);
722247f1 5776
3a00c802
PA
5777 rs->last_resume_exec_dir = execution_direction;
5778
7b68ffbb
PA
5779 /* Prefer vCont, and fallback to s/c/S/C, which use Hc. */
5780 if (!remote_resume_with_vcont (ptid, step, siggnal))
5781 remote_resume_with_hc (ops, ptid, step, siggnal);
43ff13b4 5782
2acceee2 5783 /* We are about to start executing the inferior, let's register it
0df8b418
MS
5784 with the event loop. NOTE: this is the one place where all the
5785 execution commands end up. We could alternatively do this in each
23860348 5786 of the execution commands in infcmd.c. */
2acceee2
JM
5787 /* FIXME: ezannoni 1999-09-28: We may need to move this out of here
5788 into infcmd.c in order to allow inferior function calls to work
23860348 5789 NOT asynchronously. */
362646f5 5790 if (target_can_async_p ())
6a3753b3 5791 target_async (1);
e24a49d8
PA
5792
5793 /* We've just told the target to resume. The remote server will
5794 wait for the inferior to stop, and then send a stop reply. In
5795 the mean time, we can't start another command/query ourselves
74531fed
PA
5796 because the stub wouldn't be ready to process it. This applies
5797 only to the base all-stop protocol, however. In non-stop (which
5798 only supports vCont), the stub replies with an "OK", and is
5799 immediate able to process further serial input. */
6efcd9a8 5800 if (!target_is_non_stop_p ())
74531fed 5801 rs->waiting_for_stop_reply = 1;
43ff13b4 5802}
85ad3aaf
PA
5803
5804static void check_pending_events_prevent_wildcard_vcont
5805 (int *may_global_wildcard_vcont);
5806static int is_pending_fork_parent_thread (struct thread_info *thread);
5807
5808/* Private per-inferior info for target remote processes. */
5809
5810struct private_inferior
5811{
5812 /* Whether we can send a wildcard vCont for this process. */
5813 int may_wildcard_vcont;
5814};
5815
5816/* Structure used to track the construction of a vCont packet in the
5817 outgoing packet buffer. This is used to send multiple vCont
5818 packets if we have more actions than would fit a single packet. */
5819
5820struct vcont_builder
5821{
5822 /* Pointer to the first action. P points here if no action has been
5823 appended yet. */
5824 char *first_action;
5825
5826 /* Where the next action will be appended. */
5827 char *p;
5828
5829 /* The end of the buffer. Must never write past this. */
5830 char *endp;
5831};
5832
5833/* Prepare the outgoing buffer for a new vCont packet. */
5834
5835static void
5836vcont_builder_restart (struct vcont_builder *builder)
5837{
5838 struct remote_state *rs = get_remote_state ();
5839
5840 builder->p = rs->buf;
5841 builder->endp = rs->buf + get_remote_packet_size ();
5842 builder->p += xsnprintf (builder->p, builder->endp - builder->p, "vCont");
5843 builder->first_action = builder->p;
5844}
5845
5846/* If the vCont packet being built has any action, send it to the
5847 remote end. */
5848
5849static void
5850vcont_builder_flush (struct vcont_builder *builder)
5851{
5852 struct remote_state *rs;
5853
5854 if (builder->p == builder->first_action)
5855 return;
5856
5857 rs = get_remote_state ();
5858 putpkt (rs->buf);
5859 getpkt (&rs->buf, &rs->buf_size, 0);
5860 if (strcmp (rs->buf, "OK") != 0)
5861 error (_("Unexpected vCont reply in non-stop mode: %s"), rs->buf);
5862}
5863
5864/* The largest action is range-stepping, with its two addresses. This
5865 is more than sufficient. If a new, bigger action is created, it'll
5866 quickly trigger a failed assertion in append_resumption (and we'll
5867 just bump this). */
5868#define MAX_ACTION_SIZE 200
5869
5870/* Append a new vCont action in the outgoing packet being built. If
5871 the action doesn't fit the packet along with previous actions, push
5872 what we've got so far to the remote end and start over a new vCont
5873 packet (with the new action). */
5874
5875static void
5876vcont_builder_push_action (struct vcont_builder *builder,
5877 ptid_t ptid, int step, enum gdb_signal siggnal)
5878{
5879 char buf[MAX_ACTION_SIZE + 1];
5880 char *endp;
5881 size_t rsize;
5882
5883 endp = append_resumption (buf, buf + sizeof (buf),
5884 ptid, step, siggnal);
5885
5886 /* Check whether this new action would fit in the vCont packet along
5887 with previous actions. If not, send what we've got so far and
5888 start a new vCont packet. */
5889 rsize = endp - buf;
5890 if (rsize > builder->endp - builder->p)
5891 {
5892 vcont_builder_flush (builder);
5893 vcont_builder_restart (builder);
5894
5895 /* Should now fit. */
5896 gdb_assert (rsize <= builder->endp - builder->p);
5897 }
5898
5899 memcpy (builder->p, buf, rsize);
5900 builder->p += rsize;
5901 *builder->p = '\0';
5902}
5903
5904/* to_commit_resume implementation. */
5905
5906static void
5907remote_commit_resume (struct target_ops *ops)
5908{
5909 struct remote_state *rs = get_remote_state ();
5910 struct inferior *inf;
5911 struct thread_info *tp;
5912 int any_process_wildcard;
5913 int may_global_wildcard_vcont;
5914 struct vcont_builder vcont_builder;
5915
5916 /* If connected in all-stop mode, we'd send the remote resume
5917 request directly from remote_resume. Likewise if
5918 reverse-debugging, as there are no defined vCont actions for
5919 reverse execution. */
5920 if (!target_is_non_stop_p () || execution_direction == EXEC_REVERSE)
5921 return;
5922
5923 /* Try to send wildcard actions ("vCont;c" or "vCont;c:pPID.-1")
5924 instead of resuming all threads of each process individually.
5925 However, if any thread of a process must remain halted, we can't
5926 send wildcard resumes and must send one action per thread.
5927
5928 Care must be taken to not resume threads/processes the server
5929 side already told us are stopped, but the core doesn't know about
5930 yet, because the events are still in the vStopped notification
5931 queue. For example:
5932
5933 #1 => vCont s:p1.1;c
5934 #2 <= OK
5935 #3 <= %Stopped T05 p1.1
5936 #4 => vStopped
5937 #5 <= T05 p1.2
5938 #6 => vStopped
5939 #7 <= OK
5940 #8 (infrun handles the stop for p1.1 and continues stepping)
5941 #9 => vCont s:p1.1;c
5942
5943 The last vCont above would resume thread p1.2 by mistake, because
5944 the server has no idea that the event for p1.2 had not been
5945 handled yet.
5946
5947 The server side must similarly ignore resume actions for the
5948 thread that has a pending %Stopped notification (and any other
5949 threads with events pending), until GDB acks the notification
5950 with vStopped. Otherwise, e.g., the following case is
5951 mishandled:
5952
5953 #1 => g (or any other packet)
5954 #2 <= [registers]
5955 #3 <= %Stopped T05 p1.2
5956 #4 => vCont s:p1.1;c
5957 #5 <= OK
5958
5959 Above, the server must not resume thread p1.2. GDB can't know
5960 that p1.2 stopped until it acks the %Stopped notification, and
5961 since from GDB's perspective all threads should be running, it
5962 sends a "c" action.
5963
5964 Finally, special care must also be given to handling fork/vfork
5965 events. A (v)fork event actually tells us that two processes
5966 stopped -- the parent and the child. Until we follow the fork,
5967 we must not resume the child. Therefore, if we have a pending
5968 fork follow, we must not send a global wildcard resume action
5969 (vCont;c). We can still send process-wide wildcards though. */
5970
5971 /* Start by assuming a global wildcard (vCont;c) is possible. */
5972 may_global_wildcard_vcont = 1;
5973
5974 /* And assume every process is individually wildcard-able too. */
5975 ALL_NON_EXITED_INFERIORS (inf)
5976 {
5977 if (inf->priv == NULL)
5978 inf->priv = XNEW (struct private_inferior);
5979 inf->priv->may_wildcard_vcont = 1;
5980 }
5981
5982 /* Check for any pending events (not reported or processed yet) and
5983 disable process and global wildcard resumes appropriately. */
5984 check_pending_events_prevent_wildcard_vcont (&may_global_wildcard_vcont);
5985
5986 ALL_NON_EXITED_THREADS (tp)
5987 {
5988 /* If a thread of a process is not meant to be resumed, then we
5989 can't wildcard that process. */
5990 if (!tp->executing)
5991 {
5992 tp->inf->priv->may_wildcard_vcont = 0;
5993
5994 /* And if we can't wildcard a process, we can't wildcard
5995 everything either. */
5996 may_global_wildcard_vcont = 0;
5997 continue;
5998 }
5999
6000 /* If a thread is the parent of an unfollowed fork, then we
6001 can't do a global wildcard, as that would resume the fork
6002 child. */
6003 if (is_pending_fork_parent_thread (tp))
6004 may_global_wildcard_vcont = 0;
6005 }
6006
6007 /* Now let's build the vCont packet(s). Actions must be appended
6008 from narrower to wider scopes (thread -> process -> global). If
6009 we end up with too many actions for a single packet vcont_builder
6010 flushes the current vCont packet to the remote side and starts a
6011 new one. */
6012 vcont_builder_restart (&vcont_builder);
6013
6014 /* Threads first. */
6015 ALL_NON_EXITED_THREADS (tp)
6016 {
6017 struct private_thread_info *remote_thr = tp->priv;
6018
6019 if (!tp->executing || remote_thr->vcont_resumed)
6020 continue;
6021
6022 gdb_assert (!thread_is_in_step_over_chain (tp));
6023
6024 if (!remote_thr->last_resume_step
6025 && remote_thr->last_resume_sig == GDB_SIGNAL_0
6026 && tp->inf->priv->may_wildcard_vcont)
6027 {
6028 /* We'll send a wildcard resume instead. */
6029 remote_thr->vcont_resumed = 1;
6030 continue;
6031 }
6032
6033 vcont_builder_push_action (&vcont_builder, tp->ptid,
6034 remote_thr->last_resume_step,
6035 remote_thr->last_resume_sig);
6036 remote_thr->vcont_resumed = 1;
6037 }
6038
6039 /* Now check whether we can send any process-wide wildcard. This is
6040 to avoid sending a global wildcard in the case nothing is
6041 supposed to be resumed. */
6042 any_process_wildcard = 0;
6043
6044 ALL_NON_EXITED_INFERIORS (inf)
6045 {
6046 if (inf->priv->may_wildcard_vcont)
6047 {
6048 any_process_wildcard = 1;
6049 break;
6050 }
6051 }
6052
6053 if (any_process_wildcard)
6054 {
6055 /* If all processes are wildcard-able, then send a single "c"
6056 action, otherwise, send an "all (-1) threads of process"
6057 continue action for each running process, if any. */
6058 if (may_global_wildcard_vcont)
6059 {
6060 vcont_builder_push_action (&vcont_builder, minus_one_ptid,
6061 0, GDB_SIGNAL_0);
6062 }
6063 else
6064 {
6065 ALL_NON_EXITED_INFERIORS (inf)
6066 {
6067 if (inf->priv->may_wildcard_vcont)
6068 {
6069 vcont_builder_push_action (&vcont_builder,
6070 pid_to_ptid (inf->pid),
6071 0, GDB_SIGNAL_0);
6072 }
6073 }
6074 }
6075 }
6076
6077 vcont_builder_flush (&vcont_builder);
6078}
6079
c906108c 6080\f
43ff13b4 6081
74531fed
PA
6082/* Non-stop version of target_stop. Uses `vCont;t' to stop a remote
6083 thread, all threads of a remote process, or all threads of all
6084 processes. */
6085
6086static void
6087remote_stop_ns (ptid_t ptid)
6088{
6089 struct remote_state *rs = get_remote_state ();
6090 char *p = rs->buf;
6091 char *endp = rs->buf + get_remote_packet_size ();
74531fed 6092
4082afcc 6093 if (packet_support (PACKET_vCont) == PACKET_SUPPORT_UNKNOWN)
74531fed
PA
6094 remote_vcont_probe (rs);
6095
d458bd84 6096 if (!rs->supports_vCont.t)
74531fed
PA
6097 error (_("Remote server does not support stopping threads"));
6098
f91d3df5
PA
6099 if (ptid_equal (ptid, minus_one_ptid)
6100 || (!remote_multi_process_p (rs) && ptid_is_pid (ptid)))
74531fed
PA
6101 p += xsnprintf (p, endp - p, "vCont;t");
6102 else
6103 {
6104 ptid_t nptid;
6105
74531fed
PA
6106 p += xsnprintf (p, endp - p, "vCont;t:");
6107
6108 if (ptid_is_pid (ptid))
6109 /* All (-1) threads of process. */
ba348170 6110 nptid = ptid_build (ptid_get_pid (ptid), -1, 0);
74531fed
PA
6111 else
6112 {
6113 /* Small optimization: if we already have a stop reply for
6114 this thread, no use in telling the stub we want this
6115 stopped. */
6116 if (peek_stop_reply (ptid))
6117 return;
6118
6119 nptid = ptid;
6120 }
6121
a9cbf802 6122 write_ptid (p, endp, nptid);
74531fed
PA
6123 }
6124
6125 /* In non-stop, we get an immediate OK reply. The stop reply will
6126 come in asynchronously by notification. */
6127 putpkt (rs->buf);
6128 getpkt (&rs->buf, &rs->buf_size, 0);
6129 if (strcmp (rs->buf, "OK") != 0)
6130 error (_("Stopping %s failed: %s"), target_pid_to_str (ptid), rs->buf);
6131}
6132
bfedc46a
PA
6133/* All-stop version of target_interrupt. Sends a break or a ^C to
6134 interrupt the remote target. It is undefined which thread of which
6135 process reports the interrupt. */
74531fed
PA
6136
6137static void
de979965 6138remote_interrupt_as (void)
74531fed
PA
6139{
6140 struct remote_state *rs = get_remote_state ();
6141
3a29589a
DJ
6142 rs->ctrlc_pending_p = 1;
6143
74531fed
PA
6144 /* If the inferior is stopped already, but the core didn't know
6145 about it yet, just ignore the request. The cached wait status
6146 will be collected in remote_wait. */
6147 if (rs->cached_wait_status)
6148 return;
6149
9a7071a8
JB
6150 /* Send interrupt_sequence to remote target. */
6151 send_interrupt_sequence ();
74531fed
PA
6152}
6153
de979965
PA
6154/* Non-stop version of target_interrupt. Uses `vCtrlC' to interrupt
6155 the remote target. It is undefined which thread of which process
e42de8c7
PA
6156 reports the interrupt. Throws an error if the packet is not
6157 supported by the server. */
de979965 6158
e42de8c7 6159static void
de979965
PA
6160remote_interrupt_ns (void)
6161{
6162 struct remote_state *rs = get_remote_state ();
6163 char *p = rs->buf;
6164 char *endp = rs->buf + get_remote_packet_size ();
6165
6166 xsnprintf (p, endp - p, "vCtrlC");
6167
6168 /* In non-stop, we get an immediate OK reply. The stop reply will
6169 come in asynchronously by notification. */
6170 putpkt (rs->buf);
6171 getpkt (&rs->buf, &rs->buf_size, 0);
6172
6173 switch (packet_ok (rs->buf, &remote_protocol_packets[PACKET_vCtrlC]))
6174 {
6175 case PACKET_OK:
6176 break;
6177 case PACKET_UNKNOWN:
e42de8c7 6178 error (_("No support for interrupting the remote target."));
de979965
PA
6179 case PACKET_ERROR:
6180 error (_("Interrupting target failed: %s"), rs->buf);
6181 }
de979965
PA
6182}
6183
bfedc46a 6184/* Implement the to_stop function for the remote targets. */
74531fed 6185
c906108c 6186static void
1eab8a48 6187remote_stop (struct target_ops *self, ptid_t ptid)
c906108c 6188{
7a292a7a 6189 if (remote_debug)
0f71a2f6 6190 fprintf_unfiltered (gdb_stdlog, "remote_stop called\n");
c906108c 6191
6efcd9a8 6192 if (target_is_non_stop_p ())
74531fed 6193 remote_stop_ns (ptid);
c906108c 6194 else
bfedc46a
PA
6195 {
6196 /* We don't currently have a way to transparently pause the
6197 remote target in all-stop mode. Interrupt it instead. */
de979965 6198 remote_interrupt_as ();
bfedc46a
PA
6199 }
6200}
6201
6202/* Implement the to_interrupt function for the remote targets. */
6203
6204static void
6205remote_interrupt (struct target_ops *self, ptid_t ptid)
6206{
e42de8c7
PA
6207 struct remote_state *rs = get_remote_state ();
6208
bfedc46a
PA
6209 if (remote_debug)
6210 fprintf_unfiltered (gdb_stdlog, "remote_interrupt called\n");
6211
e42de8c7
PA
6212 if (target_is_non_stop_p ())
6213 remote_interrupt_ns ();
bfedc46a 6214 else
e42de8c7 6215 remote_interrupt_as ();
c906108c
SS
6216}
6217
93692b58
PA
6218/* Implement the to_pass_ctrlc function for the remote targets. */
6219
6220static void
6221remote_pass_ctrlc (struct target_ops *self)
6222{
6223 struct remote_state *rs = get_remote_state ();
6224
6225 if (remote_debug)
6226 fprintf_unfiltered (gdb_stdlog, "remote_pass_ctrlc called\n");
6227
6228 /* If we're starting up, we're not fully synced yet. Quit
6229 immediately. */
6230 if (rs->starting_up)
6231 quit ();
6232 /* If ^C has already been sent once, offer to disconnect. */
6233 else if (rs->ctrlc_pending_p)
6234 interrupt_query ();
6235 else
6236 target_interrupt (inferior_ptid);
6237}
6238
c906108c
SS
6239/* Ask the user what to do when an interrupt is received. */
6240
6241static void
fba45db2 6242interrupt_query (void)
c906108c 6243{
abc56d60 6244 struct remote_state *rs = get_remote_state ();
c906108c 6245
abc56d60 6246 if (rs->waiting_for_stop_reply && rs->ctrlc_pending_p)
74531fed 6247 {
abc56d60
PA
6248 if (query (_("The target is not responding to interrupt requests.\n"
6249 "Stop debugging it? ")))
74531fed 6250 {
78a095c3 6251 remote_unpush_target ();
abc56d60 6252 throw_error (TARGET_CLOSE_ERROR, _("Disconnected from target."));
74531fed
PA
6253 }
6254 }
abc56d60
PA
6255 else
6256 {
6257 if (query (_("Interrupted while waiting for the program.\n"
6258 "Give up waiting? ")))
6259 quit ();
6260 }
c906108c
SS
6261}
6262
6426a772
JM
6263/* Enable/disable target terminal ownership. Most targets can use
6264 terminal groups to control terminal ownership. Remote targets are
6265 different in that explicit transfer of ownership to/from GDB/target
23860348 6266 is required. */
6426a772
JM
6267
6268static void
d2f640d4 6269remote_terminal_inferior (struct target_ops *self)
6426a772 6270{
d9d2d8b6
PA
6271 /* FIXME: cagney/1999-09-27: Make calls to target_terminal_*()
6272 idempotent. The event-loop GDB talking to an asynchronous target
6273 with a synchronous command calls this function from both
6274 event-top.c and infrun.c/infcmd.c. Once GDB stops trying to
6275 transfer the terminal to the target when it shouldn't this guard
6276 can go away. */
6426a772
JM
6277 if (!remote_async_terminal_ours_p)
6278 return;
6426a772 6279 remote_async_terminal_ours_p = 0;
6426a772
JM
6280 /* NOTE: At this point we could also register our selves as the
6281 recipient of all input. Any characters typed could then be
23860348 6282 passed on down to the target. */
6426a772
JM
6283}
6284
6285static void
e3594fd1 6286remote_terminal_ours (struct target_ops *self)
6426a772 6287{
75c99385 6288 /* See FIXME in remote_terminal_inferior. */
6426a772
JM
6289 if (remote_async_terminal_ours_p)
6290 return;
6426a772
JM
6291 remote_async_terminal_ours_p = 1;
6292}
6293
176a6961 6294static void
917317f4 6295remote_console_output (char *msg)
c906108c
SS
6296{
6297 char *p;
6298
c5aa993b 6299 for (p = msg; p[0] && p[1]; p += 2)
c906108c
SS
6300 {
6301 char tb[2];
6302 char c = fromhex (p[0]) * 16 + fromhex (p[1]);
a744cf53 6303
c906108c
SS
6304 tb[0] = c;
6305 tb[1] = 0;
43ff13b4 6306 fputs_unfiltered (tb, gdb_stdtarg);
c906108c 6307 }
00db5b94
PA
6308 gdb_flush (gdb_stdtarg);
6309}
74531fed
PA
6310
6311typedef struct cached_reg
6312{
6313 int num;
d1dff226 6314 gdb_byte *data;
74531fed
PA
6315} cached_reg_t;
6316
6317DEF_VEC_O(cached_reg_t);
6318
722247f1 6319typedef struct stop_reply
74531fed 6320{
722247f1 6321 struct notif_event base;
74531fed 6322
722247f1 6323 /* The identifier of the thread about this event */
74531fed
PA
6324 ptid_t ptid;
6325
340e3c99 6326 /* The remote state this event is associated with. When the remote
bcc75809
YQ
6327 connection, represented by a remote_state object, is closed,
6328 all the associated stop_reply events should be released. */
6329 struct remote_state *rs;
6330
74531fed
PA
6331 struct target_waitstatus ws;
6332
15148d6a
PA
6333 /* Expedited registers. This makes remote debugging a bit more
6334 efficient for those targets that provide critical registers as
6335 part of their normal status mechanism (as another roundtrip to
6336 fetch them is avoided). */
74531fed
PA
6337 VEC(cached_reg_t) *regcache;
6338
f7e6eed5
PA
6339 enum target_stop_reason stop_reason;
6340
74531fed
PA
6341 CORE_ADDR watch_data_address;
6342
dc146f7c 6343 int core;
722247f1 6344} *stop_reply_p;
a744cf53 6345
722247f1
YQ
6346DECLARE_QUEUE_P (stop_reply_p);
6347DEFINE_QUEUE_P (stop_reply_p);
6348/* The list of already fetched and acknowledged stop events. This
6349 queue is used for notification Stop, and other notifications
6350 don't need queue for their events, because the notification events
6351 of Stop can't be consumed immediately, so that events should be
6352 queued first, and be consumed by remote_wait_{ns,as} one per
6353 time. Other notifications can consume their events immediately,
6354 so queue is not needed for them. */
6355static QUEUE (stop_reply_p) *stop_reply_queue;
74531fed
PA
6356
6357static void
6358stop_reply_xfree (struct stop_reply *r)
6359{
f48ff2a7 6360 notif_event_xfree ((struct notif_event *) r);
c906108c
SS
6361}
6362
221e1a37
PA
6363/* Return the length of the stop reply queue. */
6364
6365static int
6366stop_reply_queue_length (void)
6367{
6368 return QUEUE_length (stop_reply_p, stop_reply_queue);
6369}
6370
722247f1
YQ
6371static void
6372remote_notif_stop_parse (struct notif_client *self, char *buf,
6373 struct notif_event *event)
6374{
6375 remote_parse_stop_reply (buf, (struct stop_reply *) event);
6376}
6377
6378static void
6379remote_notif_stop_ack (struct notif_client *self, char *buf,
6380 struct notif_event *event)
6381{
6382 struct stop_reply *stop_reply = (struct stop_reply *) event;
6383
6384 /* acknowledge */
f5c4fcd9 6385 putpkt (self->ack_command);
722247f1
YQ
6386
6387 if (stop_reply->ws.kind == TARGET_WAITKIND_IGNORE)
6388 /* We got an unknown stop reply. */
6389 error (_("Unknown stop reply"));
6390
6391 push_stop_reply (stop_reply);
6392}
6393
6394static int
6395remote_notif_stop_can_get_pending_events (struct notif_client *self)
6396{
6397 /* We can't get pending events in remote_notif_process for
6398 notification stop, and we have to do this in remote_wait_ns
6399 instead. If we fetch all queued events from stub, remote stub
6400 may exit and we have no chance to process them back in
6401 remote_wait_ns. */
6402 mark_async_event_handler (remote_async_inferior_event_token);
6403 return 0;
6404}
6405
6406static void
6407stop_reply_dtr (struct notif_event *event)
6408{
6409 struct stop_reply *r = (struct stop_reply *) event;
d1dff226
AH
6410 cached_reg_t *reg;
6411 int ix;
6412
6413 for (ix = 0;
6414 VEC_iterate (cached_reg_t, r->regcache, ix, reg);
6415 ix++)
6416 xfree (reg->data);
722247f1
YQ
6417
6418 VEC_free (cached_reg_t, r->regcache);
6419}
6420
6421static struct notif_event *
6422remote_notif_stop_alloc_reply (void)
6423{
8d749320
SM
6424 /* We cast to a pointer to the "base class". */
6425 struct notif_event *r = (struct notif_event *) XNEW (struct stop_reply);
722247f1
YQ
6426
6427 r->dtr = stop_reply_dtr;
6428
6429 return r;
6430}
6431
6432/* A client of notification Stop. */
6433
6434struct notif_client notif_client_stop =
6435{
6436 "Stop",
6437 "vStopped",
6438 remote_notif_stop_parse,
6439 remote_notif_stop_ack,
6440 remote_notif_stop_can_get_pending_events,
6441 remote_notif_stop_alloc_reply,
f48ff2a7 6442 REMOTE_NOTIF_STOP,
722247f1
YQ
6443};
6444
6445/* A parameter to pass data in and out. */
6446
6447struct queue_iter_param
6448{
6449 void *input;
6450 struct stop_reply *output;
6451};
6452
85ad3aaf 6453/* Determine if THREAD_PTID is a pending fork parent thread. ARG contains
cbb8991c
DB
6454 the pid of the process that owns the threads we want to check, or
6455 -1 if we want to check all threads. */
6456
6457static int
6458is_pending_fork_parent (struct target_waitstatus *ws, int event_pid,
6459 ptid_t thread_ptid)
6460{
6461 if (ws->kind == TARGET_WAITKIND_FORKED
6462 || ws->kind == TARGET_WAITKIND_VFORKED)
6463 {
6464 if (event_pid == -1 || event_pid == ptid_get_pid (thread_ptid))
6465 return 1;
6466 }
6467
6468 return 0;
6469}
6470
85ad3aaf
PA
6471/* Return the thread's pending status used to determine whether the
6472 thread is a fork parent stopped at a fork event. */
6473
6474static struct target_waitstatus *
6475thread_pending_fork_status (struct thread_info *thread)
6476{
6477 if (thread->suspend.waitstatus_pending_p)
6478 return &thread->suspend.waitstatus;
6479 else
6480 return &thread->pending_follow;
6481}
6482
6483/* Determine if THREAD is a pending fork parent thread. */
6484
6485static int
6486is_pending_fork_parent_thread (struct thread_info *thread)
6487{
6488 struct target_waitstatus *ws = thread_pending_fork_status (thread);
6489 int pid = -1;
6490
6491 return is_pending_fork_parent (ws, pid, thread->ptid);
6492}
6493
cbb8991c
DB
6494/* Check whether EVENT is a fork event, and if it is, remove the
6495 fork child from the context list passed in DATA. */
6496
6497static int
6498remove_child_of_pending_fork (QUEUE (stop_reply_p) *q,
6499 QUEUE_ITER (stop_reply_p) *iter,
6500 stop_reply_p event,
6501 void *data)
6502{
19ba03f4
SM
6503 struct queue_iter_param *param = (struct queue_iter_param *) data;
6504 struct threads_listing_context *context
6505 = (struct threads_listing_context *) param->input;
cbb8991c
DB
6506
6507 if (event->ws.kind == TARGET_WAITKIND_FORKED
65706a29
PA
6508 || event->ws.kind == TARGET_WAITKIND_VFORKED
6509 || event->ws.kind == TARGET_WAITKIND_THREAD_EXITED)
6510 threads_listing_context_remove (&event->ws, context);
cbb8991c
DB
6511
6512 return 1;
6513}
6514
6515/* If CONTEXT contains any fork child threads that have not been
6516 reported yet, remove them from the CONTEXT list. If such a
6517 thread exists it is because we are stopped at a fork catchpoint
6518 and have not yet called follow_fork, which will set up the
6519 host-side data structures for the new process. */
6520
6521static void
6522remove_new_fork_children (struct threads_listing_context *context)
6523{
6524 struct thread_info * thread;
6525 int pid = -1;
6526 struct notif_client *notif = &notif_client_stop;
6527 struct queue_iter_param param;
6528
6529 /* For any threads stopped at a fork event, remove the corresponding
6530 fork child threads from the CONTEXT list. */
6531 ALL_NON_EXITED_THREADS (thread)
6532 {
85ad3aaf 6533 struct target_waitstatus *ws = thread_pending_fork_status (thread);
cbb8991c
DB
6534
6535 if (is_pending_fork_parent (ws, pid, thread->ptid))
6536 {
6537 threads_listing_context_remove (ws, context);
6538 }
6539 }
6540
6541 /* Check for any pending fork events (not reported or processed yet)
6542 in process PID and remove those fork child threads from the
6543 CONTEXT list as well. */
6544 remote_notif_get_pending_events (notif);
6545 param.input = context;
6546 param.output = NULL;
6547 QUEUE_iterate (stop_reply_p, stop_reply_queue,
6548 remove_child_of_pending_fork, &param);
6549}
6550
85ad3aaf
PA
6551/* Check whether EVENT would prevent a global or process wildcard
6552 vCont action. */
6553
6554static int
6555check_pending_event_prevents_wildcard_vcont_callback
6556 (QUEUE (stop_reply_p) *q,
6557 QUEUE_ITER (stop_reply_p) *iter,
6558 stop_reply_p event,
6559 void *data)
6560{
6561 struct inferior *inf;
6562 int *may_global_wildcard_vcont = (int *) data;
6563
6564 if (event->ws.kind == TARGET_WAITKIND_NO_RESUMED
6565 || event->ws.kind == TARGET_WAITKIND_NO_HISTORY)
6566 return 1;
6567
6568 if (event->ws.kind == TARGET_WAITKIND_FORKED
6569 || event->ws.kind == TARGET_WAITKIND_VFORKED)
6570 *may_global_wildcard_vcont = 0;
6571
6572 inf = find_inferior_ptid (event->ptid);
6573
6574 /* This may be the first time we heard about this process.
6575 Regardless, we must not do a global wildcard resume, otherwise
6576 we'd resume this process too. */
6577 *may_global_wildcard_vcont = 0;
6578 if (inf != NULL)
6579 inf->priv->may_wildcard_vcont = 0;
6580
6581 return 1;
6582}
6583
6584/* Check whether any event pending in the vStopped queue would prevent
6585 a global or process wildcard vCont action. Clear
6586 *may_global_wildcard if we can't do a global wildcard (vCont;c),
6587 and clear the event inferior's may_wildcard_vcont flag if we can't
6588 do a process-wide wildcard resume (vCont;c:pPID.-1). */
6589
6590static void
6591check_pending_events_prevent_wildcard_vcont (int *may_global_wildcard)
6592{
6593 struct notif_client *notif = &notif_client_stop;
6594
6595 remote_notif_get_pending_events (notif);
6596 QUEUE_iterate (stop_reply_p, stop_reply_queue,
6597 check_pending_event_prevents_wildcard_vcont_callback,
6598 may_global_wildcard);
6599}
6600
f48ff2a7
YQ
6601/* Remove stop replies in the queue if its pid is equal to the given
6602 inferior's pid. */
722247f1
YQ
6603
6604static int
f48ff2a7
YQ
6605remove_stop_reply_for_inferior (QUEUE (stop_reply_p) *q,
6606 QUEUE_ITER (stop_reply_p) *iter,
6607 stop_reply_p event,
6608 void *data)
722247f1 6609{
19ba03f4
SM
6610 struct queue_iter_param *param = (struct queue_iter_param *) data;
6611 struct inferior *inf = (struct inferior *) param->input;
722247f1 6612
f48ff2a7 6613 if (ptid_get_pid (event->ptid) == inf->pid)
722247f1
YQ
6614 {
6615 stop_reply_xfree (event);
6616 QUEUE_remove_elem (stop_reply_p, q, iter);
6617 }
6618
6619 return 1;
6620}
6621
f48ff2a7 6622/* Discard all pending stop replies of inferior INF. */
c906108c 6623
74531fed 6624static void
5f4cf0bb 6625discard_pending_stop_replies (struct inferior *inf)
c906108c 6626{
722247f1 6627 struct queue_iter_param param;
f48ff2a7
YQ
6628 struct stop_reply *reply;
6629 struct remote_state *rs = get_remote_state ();
6630 struct remote_notif_state *rns = rs->notif_state;
6631
6632 /* This function can be notified when an inferior exists. When the
6633 target is not remote, the notification state is NULL. */
6634 if (rs->remote_desc == NULL)
6635 return;
6636
6637 reply = (struct stop_reply *) rns->pending_event[notif_client_stop.id];
c906108c 6638
74531fed 6639 /* Discard the in-flight notification. */
f48ff2a7 6640 if (reply != NULL && ptid_get_pid (reply->ptid) == inf->pid)
74531fed 6641 {
722247f1 6642 stop_reply_xfree (reply);
f48ff2a7 6643 rns->pending_event[notif_client_stop.id] = NULL;
74531fed 6644 }
c906108c 6645
722247f1
YQ
6646 param.input = inf;
6647 param.output = NULL;
74531fed
PA
6648 /* Discard the stop replies we have already pulled with
6649 vStopped. */
722247f1 6650 QUEUE_iterate (stop_reply_p, stop_reply_queue,
f48ff2a7
YQ
6651 remove_stop_reply_for_inferior, &param);
6652}
6653
bcc75809
YQ
6654/* If its remote state is equal to the given remote state,
6655 remove EVENT from the stop reply queue. */
6656
6657static int
6658remove_stop_reply_of_remote_state (QUEUE (stop_reply_p) *q,
6659 QUEUE_ITER (stop_reply_p) *iter,
6660 stop_reply_p event,
6661 void *data)
6662{
19ba03f4
SM
6663 struct queue_iter_param *param = (struct queue_iter_param *) data;
6664 struct remote_state *rs = (struct remote_state *) param->input;
bcc75809
YQ
6665
6666 if (event->rs == rs)
6667 {
6668 stop_reply_xfree (event);
6669 QUEUE_remove_elem (stop_reply_p, q, iter);
6670 }
6671
6672 return 1;
6673}
6674
6675/* Discard the stop replies for RS in stop_reply_queue. */
f48ff2a7
YQ
6676
6677static void
bcc75809 6678discard_pending_stop_replies_in_queue (struct remote_state *rs)
f48ff2a7
YQ
6679{
6680 struct queue_iter_param param;
6681
bcc75809 6682 param.input = rs;
f48ff2a7
YQ
6683 param.output = NULL;
6684 /* Discard the stop replies we have already pulled with
6685 vStopped. */
6686 QUEUE_iterate (stop_reply_p, stop_reply_queue,
bcc75809 6687 remove_stop_reply_of_remote_state, &param);
722247f1 6688}
74531fed 6689
722247f1
YQ
6690/* A parameter to pass data in and out. */
6691
6692static int
6693remote_notif_remove_once_on_match (QUEUE (stop_reply_p) *q,
6694 QUEUE_ITER (stop_reply_p) *iter,
6695 stop_reply_p event,
6696 void *data)
6697{
19ba03f4
SM
6698 struct queue_iter_param *param = (struct queue_iter_param *) data;
6699 ptid_t *ptid = (ptid_t *) param->input;
722247f1
YQ
6700
6701 if (ptid_match (event->ptid, *ptid))
6702 {
6703 param->output = event;
6704 QUEUE_remove_elem (stop_reply_p, q, iter);
6705 return 0;
c8e38a49 6706 }
722247f1
YQ
6707
6708 return 1;
74531fed 6709}
43ff13b4 6710
722247f1
YQ
6711/* Remove the first reply in 'stop_reply_queue' which matches
6712 PTID. */
2e9f7625 6713
722247f1
YQ
6714static struct stop_reply *
6715remote_notif_remove_queued_reply (ptid_t ptid)
74531fed 6716{
722247f1
YQ
6717 struct queue_iter_param param;
6718
6719 param.input = &ptid;
6720 param.output = NULL;
6721
6722 QUEUE_iterate (stop_reply_p, stop_reply_queue,
6723 remote_notif_remove_once_on_match, &param);
6724 if (notif_debug)
6725 fprintf_unfiltered (gdb_stdlog,
6726 "notif: discard queued event: 'Stop' in %s\n",
6727 target_pid_to_str (ptid));
a744cf53 6728
722247f1 6729 return param.output;
74531fed 6730}
75c99385 6731
74531fed
PA
6732/* Look for a queued stop reply belonging to PTID. If one is found,
6733 remove it from the queue, and return it. Returns NULL if none is
6734 found. If there are still queued events left to process, tell the
6735 event loop to get back to target_wait soon. */
e24a49d8 6736
74531fed
PA
6737static struct stop_reply *
6738queued_stop_reply (ptid_t ptid)
6739{
722247f1 6740 struct stop_reply *r = remote_notif_remove_queued_reply (ptid);
74531fed 6741
722247f1 6742 if (!QUEUE_is_empty (stop_reply_p, stop_reply_queue))
74531fed
PA
6743 /* There's still at least an event left. */
6744 mark_async_event_handler (remote_async_inferior_event_token);
6745
722247f1 6746 return r;
74531fed
PA
6747}
6748
6749/* Push a fully parsed stop reply in the stop reply queue. Since we
6750 know that we now have at least one queued event left to pass to the
6751 core side, tell the event loop to get back to target_wait soon. */
6752
6753static void
6754push_stop_reply (struct stop_reply *new_event)
6755{
722247f1 6756 QUEUE_enque (stop_reply_p, stop_reply_queue, new_event);
74531fed 6757
722247f1
YQ
6758 if (notif_debug)
6759 fprintf_unfiltered (gdb_stdlog,
6760 "notif: push 'Stop' %s to queue %d\n",
6761 target_pid_to_str (new_event->ptid),
6762 QUEUE_length (stop_reply_p,
6763 stop_reply_queue));
74531fed
PA
6764
6765 mark_async_event_handler (remote_async_inferior_event_token);
6766}
6767
722247f1
YQ
6768static int
6769stop_reply_match_ptid_and_ws (QUEUE (stop_reply_p) *q,
6770 QUEUE_ITER (stop_reply_p) *iter,
6771 struct stop_reply *event,
6772 void *data)
6773{
19ba03f4 6774 ptid_t *ptid = (ptid_t *) data;
722247f1
YQ
6775
6776 return !(ptid_equal (*ptid, event->ptid)
6777 && event->ws.kind == TARGET_WAITKIND_STOPPED);
6778}
6779
74531fed
PA
6780/* Returns true if we have a stop reply for PTID. */
6781
6782static int
6783peek_stop_reply (ptid_t ptid)
6784{
722247f1
YQ
6785 return !QUEUE_iterate (stop_reply_p, stop_reply_queue,
6786 stop_reply_match_ptid_and_ws, &ptid);
74531fed
PA
6787}
6788
26d56a93
SL
6789/* Helper for remote_parse_stop_reply. Return nonzero if the substring
6790 starting with P and ending with PEND matches PREFIX. */
6791
6792static int
6793strprefix (const char *p, const char *pend, const char *prefix)
6794{
6795 for ( ; p < pend; p++, prefix++)
6796 if (*p != *prefix)
6797 return 0;
6798 return *prefix == '\0';
6799}
6800
74531fed
PA
6801/* Parse the stop reply in BUF. Either the function succeeds, and the
6802 result is stored in EVENT, or throws an error. */
6803
6804static void
6805remote_parse_stop_reply (char *buf, struct stop_reply *event)
6806{
6807 struct remote_arch_state *rsa = get_remote_arch_state ();
6808 ULONGEST addr;
6809 char *p;
94585166 6810 int skipregs = 0;
74531fed
PA
6811
6812 event->ptid = null_ptid;
bcc75809 6813 event->rs = get_remote_state ();
74531fed
PA
6814 event->ws.kind = TARGET_WAITKIND_IGNORE;
6815 event->ws.value.integer = 0;
f7e6eed5 6816 event->stop_reason = TARGET_STOPPED_BY_NO_REASON;
74531fed 6817 event->regcache = NULL;
dc146f7c 6818 event->core = -1;
74531fed
PA
6819
6820 switch (buf[0])
6821 {
6822 case 'T': /* Status with PC, SP, FP, ... */
cea39f65
MS
6823 /* Expedited reply, containing Signal, {regno, reg} repeat. */
6824 /* format is: 'Tssn...:r...;n...:r...;n...:r...;#cc', where
6825 ss = signal number
6826 n... = register number
6827 r... = register contents
6828 */
6829
6830 p = &buf[3]; /* after Txx */
6831 while (*p)
6832 {
6833 char *p1;
cea39f65 6834 int fieldsize;
43ff13b4 6835
1f10ba14
PA
6836 p1 = strchr (p, ':');
6837 if (p1 == NULL)
6838 error (_("Malformed packet(a) (missing colon): %s\n\
6839Packet: '%s'\n"),
6840 p, buf);
6841 if (p == p1)
6842 error (_("Malformed packet(a) (missing register number): %s\n\
6843Packet: '%s'\n"),
6844 p, buf);
3c3bea1c 6845
1f10ba14
PA
6846 /* Some "registers" are actually extended stop information.
6847 Note if you're adding a new entry here: GDB 7.9 and
6848 earlier assume that all register "numbers" that start
6849 with an hex digit are real register numbers. Make sure
6850 the server only sends such a packet if it knows the
6851 client understands it. */
c8e38a49 6852
26d56a93 6853 if (strprefix (p, p1, "thread"))
1f10ba14 6854 event->ptid = read_ptid (++p1, &p);
82075af2
JS
6855 else if (strprefix (p, p1, "syscall_entry"))
6856 {
6857 ULONGEST sysno;
6858
6859 event->ws.kind = TARGET_WAITKIND_SYSCALL_ENTRY;
6860 p = unpack_varlen_hex (++p1, &sysno);
6861 event->ws.value.syscall_number = (int) sysno;
6862 }
6863 else if (strprefix (p, p1, "syscall_return"))
6864 {
6865 ULONGEST sysno;
6866
6867 event->ws.kind = TARGET_WAITKIND_SYSCALL_RETURN;
6868 p = unpack_varlen_hex (++p1, &sysno);
6869 event->ws.value.syscall_number = (int) sysno;
6870 }
26d56a93
SL
6871 else if (strprefix (p, p1, "watch")
6872 || strprefix (p, p1, "rwatch")
6873 || strprefix (p, p1, "awatch"))
cea39f65 6874 {
f7e6eed5 6875 event->stop_reason = TARGET_STOPPED_BY_WATCHPOINT;
1f10ba14
PA
6876 p = unpack_varlen_hex (++p1, &addr);
6877 event->watch_data_address = (CORE_ADDR) addr;
cea39f65 6878 }
26d56a93 6879 else if (strprefix (p, p1, "swbreak"))
f7e6eed5
PA
6880 {
6881 event->stop_reason = TARGET_STOPPED_BY_SW_BREAKPOINT;
6882
6883 /* Make sure the stub doesn't forget to indicate support
6884 with qSupported. */
6885 if (packet_support (PACKET_swbreak_feature) != PACKET_ENABLE)
6886 error (_("Unexpected swbreak stop reason"));
6887
6888 /* The value part is documented as "must be empty",
6889 though we ignore it, in case we ever decide to make
6890 use of it in a backward compatible way. */
8424cc97 6891 p = strchrnul (p1 + 1, ';');
f7e6eed5 6892 }
26d56a93 6893 else if (strprefix (p, p1, "hwbreak"))
f7e6eed5
PA
6894 {
6895 event->stop_reason = TARGET_STOPPED_BY_HW_BREAKPOINT;
6896
6897 /* Make sure the stub doesn't forget to indicate support
6898 with qSupported. */
6899 if (packet_support (PACKET_hwbreak_feature) != PACKET_ENABLE)
6900 error (_("Unexpected hwbreak stop reason"));
6901
6902 /* See above. */
8424cc97 6903 p = strchrnul (p1 + 1, ';');
f7e6eed5 6904 }
26d56a93 6905 else if (strprefix (p, p1, "library"))
cea39f65 6906 {
1f10ba14 6907 event->ws.kind = TARGET_WAITKIND_LOADED;
8424cc97 6908 p = strchrnul (p1 + 1, ';');
1f10ba14 6909 }
26d56a93 6910 else if (strprefix (p, p1, "replaylog"))
1f10ba14
PA
6911 {
6912 event->ws.kind = TARGET_WAITKIND_NO_HISTORY;
6913 /* p1 will indicate "begin" or "end", but it makes
6914 no difference for now, so ignore it. */
8424cc97 6915 p = strchrnul (p1 + 1, ';');
1f10ba14 6916 }
26d56a93 6917 else if (strprefix (p, p1, "core"))
1f10ba14
PA
6918 {
6919 ULONGEST c;
a744cf53 6920
1f10ba14
PA
6921 p = unpack_varlen_hex (++p1, &c);
6922 event->core = c;
cea39f65 6923 }
26d56a93 6924 else if (strprefix (p, p1, "fork"))
de0d863e
DB
6925 {
6926 event->ws.value.related_pid = read_ptid (++p1, &p);
6927 event->ws.kind = TARGET_WAITKIND_FORKED;
6928 }
26d56a93 6929 else if (strprefix (p, p1, "vfork"))
c269dbdb
DB
6930 {
6931 event->ws.value.related_pid = read_ptid (++p1, &p);
6932 event->ws.kind = TARGET_WAITKIND_VFORKED;
6933 }
26d56a93 6934 else if (strprefix (p, p1, "vforkdone"))
c269dbdb
DB
6935 {
6936 event->ws.kind = TARGET_WAITKIND_VFORK_DONE;
8424cc97 6937 p = strchrnul (p1 + 1, ';');
c269dbdb 6938 }
6ab24463 6939 else if (strprefix (p, p1, "exec"))
94585166
DB
6940 {
6941 ULONGEST ignored;
6942 char pathname[PATH_MAX];
6943 int pathlen;
6944
6945 /* Determine the length of the execd pathname. */
6946 p = unpack_varlen_hex (++p1, &ignored);
6947 pathlen = (p - p1) / 2;
6948
6949 /* Save the pathname for event reporting and for
6950 the next run command. */
6951 hex2bin (p1, (gdb_byte *) pathname, pathlen);
6952 pathname[pathlen] = '\0';
6953
6954 /* This is freed during event handling. */
6955 event->ws.value.execd_pathname = xstrdup (pathname);
6956 event->ws.kind = TARGET_WAITKIND_EXECD;
6957
6958 /* Skip the registers included in this packet, since
6959 they may be for an architecture different from the
6960 one used by the original program. */
6961 skipregs = 1;
6962 }
65706a29
PA
6963 else if (strprefix (p, p1, "create"))
6964 {
6965 event->ws.kind = TARGET_WAITKIND_THREAD_CREATED;
8424cc97 6966 p = strchrnul (p1 + 1, ';');
65706a29 6967 }
cea39f65
MS
6968 else
6969 {
1f10ba14
PA
6970 ULONGEST pnum;
6971 char *p_temp;
6972
94585166
DB
6973 if (skipregs)
6974 {
8424cc97 6975 p = strchrnul (p1 + 1, ';');
94585166
DB
6976 p++;
6977 continue;
6978 }
6979
1f10ba14
PA
6980 /* Maybe a real ``P'' register number. */
6981 p_temp = unpack_varlen_hex (p, &pnum);
6982 /* If the first invalid character is the colon, we got a
6983 register number. Otherwise, it's an unknown stop
6984 reason. */
6985 if (p_temp == p1)
6986 {
6987 struct packet_reg *reg = packet_reg_from_pnum (rsa, pnum);
6988 cached_reg_t cached_reg;
d1dff226 6989 struct gdbarch *gdbarch = target_gdbarch ();
43ff13b4 6990
1f10ba14
PA
6991 if (reg == NULL)
6992 error (_("Remote sent bad register number %s: %s\n\
8a3fe4f8 6993Packet: '%s'\n"),
1f10ba14 6994 hex_string (pnum), p, buf);
c8e38a49 6995
1f10ba14 6996 cached_reg.num = reg->regnum;
d1dff226
AH
6997 cached_reg.data = (gdb_byte *)
6998 xmalloc (register_size (gdbarch, reg->regnum));
4100683b 6999
1f10ba14
PA
7000 p = p1 + 1;
7001 fieldsize = hex2bin (p, cached_reg.data,
d1dff226 7002 register_size (gdbarch, reg->regnum));
1f10ba14 7003 p += 2 * fieldsize;
d1dff226 7004 if (fieldsize < register_size (gdbarch, reg->regnum))
1f10ba14 7005 warning (_("Remote reply is too short: %s"), buf);
74531fed 7006
1f10ba14
PA
7007 VEC_safe_push (cached_reg_t, event->regcache, &cached_reg);
7008 }
7009 else
7010 {
7011 /* Not a number. Silently skip unknown optional
7012 info. */
8424cc97 7013 p = strchrnul (p1 + 1, ';');
1f10ba14 7014 }
cea39f65 7015 }
c8e38a49 7016
cea39f65
MS
7017 if (*p != ';')
7018 error (_("Remote register badly formatted: %s\nhere: %s"),
7019 buf, p);
7020 ++p;
7021 }
5b5596ff
PA
7022
7023 if (event->ws.kind != TARGET_WAITKIND_IGNORE)
7024 break;
7025
c8e38a49
PA
7026 /* fall through */
7027 case 'S': /* Old style status, just signal only. */
3a09da41
PA
7028 {
7029 int sig;
7030
7031 event->ws.kind = TARGET_WAITKIND_STOPPED;
7032 sig = (fromhex (buf[1]) << 4) + fromhex (buf[2]);
7033 if (GDB_SIGNAL_FIRST <= sig && sig < GDB_SIGNAL_LAST)
7034 event->ws.value.sig = (enum gdb_signal) sig;
7035 else
7036 event->ws.value.sig = GDB_SIGNAL_UNKNOWN;
7037 }
c8e38a49 7038 break;
65706a29
PA
7039 case 'w': /* Thread exited. */
7040 {
7041 char *p;
7042 ULONGEST value;
7043
7044 event->ws.kind = TARGET_WAITKIND_THREAD_EXITED;
7045 p = unpack_varlen_hex (&buf[1], &value);
7046 event->ws.value.integer = value;
7047 if (*p != ';')
7048 error (_("stop reply packet badly formatted: %s"), buf);
974eac9d 7049 event->ptid = read_ptid (++p, NULL);
65706a29
PA
7050 break;
7051 }
c8e38a49
PA
7052 case 'W': /* Target exited. */
7053 case 'X':
7054 {
7055 char *p;
7056 int pid;
7057 ULONGEST value;
82f73884 7058
c8e38a49
PA
7059 /* GDB used to accept only 2 hex chars here. Stubs should
7060 only send more if they detect GDB supports multi-process
7061 support. */
7062 p = unpack_varlen_hex (&buf[1], &value);
82f73884 7063
c8e38a49
PA
7064 if (buf[0] == 'W')
7065 {
7066 /* The remote process exited. */
74531fed
PA
7067 event->ws.kind = TARGET_WAITKIND_EXITED;
7068 event->ws.value.integer = value;
c8e38a49
PA
7069 }
7070 else
7071 {
7072 /* The remote process exited with a signal. */
74531fed 7073 event->ws.kind = TARGET_WAITKIND_SIGNALLED;
3a09da41
PA
7074 if (GDB_SIGNAL_FIRST <= value && value < GDB_SIGNAL_LAST)
7075 event->ws.value.sig = (enum gdb_signal) value;
7076 else
7077 event->ws.value.sig = GDB_SIGNAL_UNKNOWN;
c8e38a49 7078 }
82f73884 7079
c8e38a49
PA
7080 /* If no process is specified, assume inferior_ptid. */
7081 pid = ptid_get_pid (inferior_ptid);
7082 if (*p == '\0')
7083 ;
7084 else if (*p == ';')
7085 {
7086 p++;
7087
0b24eb2d 7088 if (*p == '\0')
82f73884 7089 ;
61012eef 7090 else if (startswith (p, "process:"))
82f73884 7091 {
c8e38a49 7092 ULONGEST upid;
a744cf53 7093
c8e38a49
PA
7094 p += sizeof ("process:") - 1;
7095 unpack_varlen_hex (p, &upid);
7096 pid = upid;
82f73884
PA
7097 }
7098 else
7099 error (_("unknown stop reply packet: %s"), buf);
43ff13b4 7100 }
c8e38a49
PA
7101 else
7102 error (_("unknown stop reply packet: %s"), buf);
74531fed
PA
7103 event->ptid = pid_to_ptid (pid);
7104 }
7105 break;
f2faf941
PA
7106 case 'N':
7107 event->ws.kind = TARGET_WAITKIND_NO_RESUMED;
7108 event->ptid = minus_one_ptid;
7109 break;
74531fed
PA
7110 }
7111
6efcd9a8 7112 if (target_is_non_stop_p () && ptid_equal (event->ptid, null_ptid))
74531fed
PA
7113 error (_("No process or thread specified in stop reply: %s"), buf);
7114}
7115
722247f1
YQ
7116/* When the stub wants to tell GDB about a new notification reply, it
7117 sends a notification (%Stop, for example). Those can come it at
7118 any time, hence, we have to make sure that any pending
7119 putpkt/getpkt sequence we're making is finished, before querying
7120 the stub for more events with the corresponding ack command
7121 (vStopped, for example). E.g., if we started a vStopped sequence
7122 immediately upon receiving the notification, something like this
7123 could happen:
74531fed
PA
7124
7125 1.1) --> Hg 1
7126 1.2) <-- OK
7127 1.3) --> g
7128 1.4) <-- %Stop
7129 1.5) --> vStopped
7130 1.6) <-- (registers reply to step #1.3)
7131
7132 Obviously, the reply in step #1.6 would be unexpected to a vStopped
7133 query.
7134
796cb314 7135 To solve this, whenever we parse a %Stop notification successfully,
74531fed
PA
7136 we mark the REMOTE_ASYNC_GET_PENDING_EVENTS_TOKEN, and carry on
7137 doing whatever we were doing:
7138
7139 2.1) --> Hg 1
7140 2.2) <-- OK
7141 2.3) --> g
7142 2.4) <-- %Stop
7143 <GDB marks the REMOTE_ASYNC_GET_PENDING_EVENTS_TOKEN>
7144 2.5) <-- (registers reply to step #2.3)
7145
7146 Eventualy after step #2.5, we return to the event loop, which
7147 notices there's an event on the
7148 REMOTE_ASYNC_GET_PENDING_EVENTS_TOKEN event and calls the
7149 associated callback --- the function below. At this point, we're
7150 always safe to start a vStopped sequence. :
7151
7152 2.6) --> vStopped
7153 2.7) <-- T05 thread:2
7154 2.8) --> vStopped
7155 2.9) --> OK
7156*/
7157
722247f1
YQ
7158void
7159remote_notif_get_pending_events (struct notif_client *nc)
74531fed
PA
7160{
7161 struct remote_state *rs = get_remote_state ();
74531fed 7162
f48ff2a7 7163 if (rs->notif_state->pending_event[nc->id] != NULL)
74531fed 7164 {
722247f1
YQ
7165 if (notif_debug)
7166 fprintf_unfiltered (gdb_stdlog,
7167 "notif: process: '%s' ack pending event\n",
7168 nc->name);
74531fed 7169
722247f1 7170 /* acknowledge */
f48ff2a7
YQ
7171 nc->ack (nc, rs->buf, rs->notif_state->pending_event[nc->id]);
7172 rs->notif_state->pending_event[nc->id] = NULL;
74531fed
PA
7173
7174 while (1)
7175 {
7176 getpkt (&rs->buf, &rs->buf_size, 0);
7177 if (strcmp (rs->buf, "OK") == 0)
7178 break;
7179 else
722247f1 7180 remote_notif_ack (nc, rs->buf);
74531fed
PA
7181 }
7182 }
722247f1
YQ
7183 else
7184 {
7185 if (notif_debug)
7186 fprintf_unfiltered (gdb_stdlog,
7187 "notif: process: '%s' no pending reply\n",
7188 nc->name);
7189 }
74531fed
PA
7190}
7191
74531fed
PA
7192/* Called when it is decided that STOP_REPLY holds the info of the
7193 event that is to be returned to the core. This function always
7194 destroys STOP_REPLY. */
7195
7196static ptid_t
7197process_stop_reply (struct stop_reply *stop_reply,
7198 struct target_waitstatus *status)
7199{
7200 ptid_t ptid;
7201
7202 *status = stop_reply->ws;
7203 ptid = stop_reply->ptid;
7204
7205 /* If no thread/process was reported by the stub, assume the current
7206 inferior. */
7207 if (ptid_equal (ptid, null_ptid))
7208 ptid = inferior_ptid;
7209
5f3563ea 7210 if (status->kind != TARGET_WAITKIND_EXITED
f2faf941
PA
7211 && status->kind != TARGET_WAITKIND_SIGNALLED
7212 && status->kind != TARGET_WAITKIND_NO_RESUMED)
74531fed 7213 {
799a2abe 7214 struct private_thread_info *remote_thr;
ee154bee 7215
5f3563ea
PA
7216 /* Expedited registers. */
7217 if (stop_reply->regcache)
7218 {
217f1f79 7219 struct regcache *regcache
f5656ead 7220 = get_thread_arch_regcache (ptid, target_gdbarch ());
5f3563ea
PA
7221 cached_reg_t *reg;
7222 int ix;
7223
7224 for (ix = 0;
d1dff226 7225 VEC_iterate (cached_reg_t, stop_reply->regcache, ix, reg);
5f3563ea 7226 ix++)
d1dff226 7227 {
217f1f79 7228 regcache_raw_supply (regcache, reg->num, reg->data);
d1dff226
AH
7229 xfree (reg->data);
7230 }
7231
5f3563ea
PA
7232 VEC_free (cached_reg_t, stop_reply->regcache);
7233 }
74531fed 7234
1941c569 7235 remote_notice_new_inferior (ptid, 0);
85ad3aaf 7236 remote_thr = get_private_info_ptid (ptid);
799a2abe
PA
7237 remote_thr->core = stop_reply->core;
7238 remote_thr->stop_reason = stop_reply->stop_reason;
7239 remote_thr->watch_data_address = stop_reply->watch_data_address;
85ad3aaf 7240 remote_thr->vcont_resumed = 0;
74531fed
PA
7241 }
7242
74531fed
PA
7243 stop_reply_xfree (stop_reply);
7244 return ptid;
7245}
7246
7247/* The non-stop mode version of target_wait. */
7248
7249static ptid_t
47608cb1 7250remote_wait_ns (ptid_t ptid, struct target_waitstatus *status, int options)
74531fed
PA
7251{
7252 struct remote_state *rs = get_remote_state ();
74531fed
PA
7253 struct stop_reply *stop_reply;
7254 int ret;
fee9eda9 7255 int is_notif = 0;
74531fed
PA
7256
7257 /* If in non-stop mode, get out of getpkt even if a
7258 notification is received. */
7259
7260 ret = getpkt_or_notif_sane (&rs->buf, &rs->buf_size,
fee9eda9 7261 0 /* forever */, &is_notif);
74531fed
PA
7262 while (1)
7263 {
fee9eda9 7264 if (ret != -1 && !is_notif)
74531fed
PA
7265 switch (rs->buf[0])
7266 {
7267 case 'E': /* Error of some sort. */
7268 /* We're out of sync with the target now. Did it continue
7269 or not? We can't tell which thread it was in non-stop,
7270 so just ignore this. */
7271 warning (_("Remote failure reply: %s"), rs->buf);
7272 break;
7273 case 'O': /* Console output. */
7274 remote_console_output (rs->buf + 1);
7275 break;
7276 default:
7277 warning (_("Invalid remote reply: %s"), rs->buf);
7278 break;
7279 }
7280
7281 /* Acknowledge a pending stop reply that may have arrived in the
7282 mean time. */
f48ff2a7 7283 if (rs->notif_state->pending_event[notif_client_stop.id] != NULL)
722247f1 7284 remote_notif_get_pending_events (&notif_client_stop);
74531fed
PA
7285
7286 /* If indeed we noticed a stop reply, we're done. */
7287 stop_reply = queued_stop_reply (ptid);
7288 if (stop_reply != NULL)
7289 return process_stop_reply (stop_reply, status);
7290
47608cb1 7291 /* Still no event. If we're just polling for an event, then
74531fed 7292 return to the event loop. */
47608cb1 7293 if (options & TARGET_WNOHANG)
74531fed
PA
7294 {
7295 status->kind = TARGET_WAITKIND_IGNORE;
7296 return minus_one_ptid;
7297 }
7298
47608cb1 7299 /* Otherwise do a blocking wait. */
74531fed 7300 ret = getpkt_or_notif_sane (&rs->buf, &rs->buf_size,
fee9eda9 7301 1 /* forever */, &is_notif);
74531fed
PA
7302 }
7303}
7304
7305/* Wait until the remote machine stops, then return, storing status in
7306 STATUS just as `wait' would. */
7307
7308static ptid_t
47608cb1 7309remote_wait_as (ptid_t ptid, struct target_waitstatus *status, int options)
74531fed
PA
7310{
7311 struct remote_state *rs = get_remote_state ();
74531fed 7312 ptid_t event_ptid = null_ptid;
cea39f65 7313 char *buf;
74531fed
PA
7314 struct stop_reply *stop_reply;
7315
47608cb1
PA
7316 again:
7317
74531fed
PA
7318 status->kind = TARGET_WAITKIND_IGNORE;
7319 status->value.integer = 0;
7320
7321 stop_reply = queued_stop_reply (ptid);
7322 if (stop_reply != NULL)
7323 return process_stop_reply (stop_reply, status);
7324
7325 if (rs->cached_wait_status)
7326 /* Use the cached wait status, but only once. */
7327 rs->cached_wait_status = 0;
7328 else
7329 {
7330 int ret;
722247f1 7331 int is_notif;
567420d1
PA
7332 int forever = ((options & TARGET_WNOHANG) == 0
7333 && wait_forever_enabled_p);
7334
7335 if (!rs->waiting_for_stop_reply)
7336 {
7337 status->kind = TARGET_WAITKIND_NO_RESUMED;
7338 return minus_one_ptid;
7339 }
74531fed 7340
74531fed
PA
7341 /* FIXME: cagney/1999-09-27: If we're in async mode we should
7342 _never_ wait for ever -> test on target_is_async_p().
7343 However, before we do that we need to ensure that the caller
7344 knows how to take the target into/out of async mode. */
722247f1 7345 ret = getpkt_or_notif_sane (&rs->buf, &rs->buf_size,
567420d1 7346 forever, &is_notif);
722247f1
YQ
7347
7348 /* GDB gets a notification. Return to core as this event is
7349 not interesting. */
7350 if (ret != -1 && is_notif)
7351 return minus_one_ptid;
567420d1
PA
7352
7353 if (ret == -1 && (options & TARGET_WNOHANG) != 0)
7354 return minus_one_ptid;
74531fed
PA
7355 }
7356
7357 buf = rs->buf;
7358
3a29589a
DJ
7359 /* Assume that the target has acknowledged Ctrl-C unless we receive
7360 an 'F' or 'O' packet. */
7361 if (buf[0] != 'F' && buf[0] != 'O')
7362 rs->ctrlc_pending_p = 0;
7363
74531fed
PA
7364 switch (buf[0])
7365 {
7366 case 'E': /* Error of some sort. */
7367 /* We're out of sync with the target now. Did it continue or
7368 not? Not is more likely, so report a stop. */
29090fb6
LM
7369 rs->waiting_for_stop_reply = 0;
7370
74531fed
PA
7371 warning (_("Remote failure reply: %s"), buf);
7372 status->kind = TARGET_WAITKIND_STOPPED;
a493e3e2 7373 status->value.sig = GDB_SIGNAL_0;
74531fed
PA
7374 break;
7375 case 'F': /* File-I/O request. */
e42e5352
YQ
7376 /* GDB may access the inferior memory while handling the File-I/O
7377 request, but we don't want GDB accessing memory while waiting
7378 for a stop reply. See the comments in putpkt_binary. Set
7379 waiting_for_stop_reply to 0 temporarily. */
7380 rs->waiting_for_stop_reply = 0;
3a29589a
DJ
7381 remote_fileio_request (buf, rs->ctrlc_pending_p);
7382 rs->ctrlc_pending_p = 0;
e42e5352
YQ
7383 /* GDB handled the File-I/O request, and the target is running
7384 again. Keep waiting for events. */
7385 rs->waiting_for_stop_reply = 1;
74531fed 7386 break;
f2faf941 7387 case 'N': case 'T': case 'S': case 'X': case 'W':
74531fed 7388 {
29090fb6
LM
7389 struct stop_reply *stop_reply;
7390
7391 /* There is a stop reply to handle. */
7392 rs->waiting_for_stop_reply = 0;
7393
7394 stop_reply
722247f1
YQ
7395 = (struct stop_reply *) remote_notif_parse (&notif_client_stop,
7396 rs->buf);
74531fed 7397
74531fed 7398 event_ptid = process_stop_reply (stop_reply, status);
c8e38a49
PA
7399 break;
7400 }
7401 case 'O': /* Console output. */
7402 remote_console_output (buf + 1);
c8e38a49
PA
7403 break;
7404 case '\0':
b73be471 7405 if (rs->last_sent_signal != GDB_SIGNAL_0)
c8e38a49
PA
7406 {
7407 /* Zero length reply means that we tried 'S' or 'C' and the
7408 remote system doesn't support it. */
7409 target_terminal_ours_for_output ();
7410 printf_filtered
7411 ("Can't send signals to this remote system. %s not sent.\n",
b73be471
TT
7412 gdb_signal_to_name (rs->last_sent_signal));
7413 rs->last_sent_signal = GDB_SIGNAL_0;
c8e38a49
PA
7414 target_terminal_inferior ();
7415
f5c4fcd9
TT
7416 strcpy (buf, rs->last_sent_step ? "s" : "c");
7417 putpkt (buf);
c8e38a49 7418 break;
43ff13b4 7419 }
c8e38a49
PA
7420 /* else fallthrough */
7421 default:
7422 warning (_("Invalid remote reply: %s"), buf);
c8e38a49 7423 break;
43ff13b4 7424 }
c8e38a49 7425
f2faf941
PA
7426 if (status->kind == TARGET_WAITKIND_NO_RESUMED)
7427 return minus_one_ptid;
7428 else if (status->kind == TARGET_WAITKIND_IGNORE)
47608cb1
PA
7429 {
7430 /* Nothing interesting happened. If we're doing a non-blocking
7431 poll, we're done. Otherwise, go back to waiting. */
7432 if (options & TARGET_WNOHANG)
7433 return minus_one_ptid;
7434 else
7435 goto again;
7436 }
74531fed
PA
7437 else if (status->kind != TARGET_WAITKIND_EXITED
7438 && status->kind != TARGET_WAITKIND_SIGNALLED)
82f73884
PA
7439 {
7440 if (!ptid_equal (event_ptid, null_ptid))
47f8a51d 7441 record_currthread (rs, event_ptid);
82f73884
PA
7442 else
7443 event_ptid = inferior_ptid;
43ff13b4 7444 }
74531fed
PA
7445 else
7446 /* A process exit. Invalidate our notion of current thread. */
47f8a51d 7447 record_currthread (rs, minus_one_ptid);
79d7f229 7448
82f73884 7449 return event_ptid;
43ff13b4
JM
7450}
7451
74531fed
PA
7452/* Wait until the remote machine stops, then return, storing status in
7453 STATUS just as `wait' would. */
7454
c8e38a49 7455static ptid_t
117de6a9 7456remote_wait (struct target_ops *ops,
47608cb1 7457 ptid_t ptid, struct target_waitstatus *status, int options)
c8e38a49
PA
7458{
7459 ptid_t event_ptid;
7460
6efcd9a8 7461 if (target_is_non_stop_p ())
47608cb1 7462 event_ptid = remote_wait_ns (ptid, status, options);
74531fed 7463 else
47608cb1 7464 event_ptid = remote_wait_as (ptid, status, options);
c8e38a49 7465
d9d41e78 7466 if (target_is_async_p ())
c8e38a49 7467 {
74531fed
PA
7468 /* If there are are events left in the queue tell the event loop
7469 to return here. */
722247f1 7470 if (!QUEUE_is_empty (stop_reply_p, stop_reply_queue))
74531fed 7471 mark_async_event_handler (remote_async_inferior_event_token);
c8e38a49 7472 }
c8e38a49
PA
7473
7474 return event_ptid;
7475}
7476
74ca34ce 7477/* Fetch a single register using a 'p' packet. */
c906108c 7478
b96ec7ac 7479static int
56be3814 7480fetch_register_using_p (struct regcache *regcache, struct packet_reg *reg)
b96ec7ac 7481{
9890e433 7482 struct gdbarch *gdbarch = get_regcache_arch (regcache);
b96ec7ac 7483 struct remote_state *rs = get_remote_state ();
2e9f7625 7484 char *buf, *p;
9890e433 7485 gdb_byte *regp = (gdb_byte *) alloca (register_size (gdbarch, reg->regnum));
b96ec7ac
AC
7486 int i;
7487
4082afcc 7488 if (packet_support (PACKET_p) == PACKET_DISABLE)
74ca34ce
DJ
7489 return 0;
7490
7491 if (reg->pnum == -1)
7492 return 0;
7493
2e9f7625 7494 p = rs->buf;
fcad0fa4 7495 *p++ = 'p';
74ca34ce 7496 p += hexnumstr (p, reg->pnum);
fcad0fa4 7497 *p++ = '\0';
1f4437a4
MS
7498 putpkt (rs->buf);
7499 getpkt (&rs->buf, &rs->buf_size, 0);
3f9a994c 7500
2e9f7625
DJ
7501 buf = rs->buf;
7502
74ca34ce
DJ
7503 switch (packet_ok (buf, &remote_protocol_packets[PACKET_p]))
7504 {
7505 case PACKET_OK:
7506 break;
7507 case PACKET_UNKNOWN:
7508 return 0;
7509 case PACKET_ERROR:
27a9c0bf
MS
7510 error (_("Could not fetch register \"%s\"; remote failure reply '%s'"),
7511 gdbarch_register_name (get_regcache_arch (regcache),
7512 reg->regnum),
7513 buf);
74ca34ce 7514 }
3f9a994c
JB
7515
7516 /* If this register is unfetchable, tell the regcache. */
7517 if (buf[0] == 'x')
8480adf2 7518 {
56be3814 7519 regcache_raw_supply (regcache, reg->regnum, NULL);
8480adf2 7520 return 1;
b96ec7ac 7521 }
b96ec7ac 7522
3f9a994c
JB
7523 /* Otherwise, parse and supply the value. */
7524 p = buf;
7525 i = 0;
7526 while (p[0] != 0)
7527 {
7528 if (p[1] == 0)
74ca34ce 7529 error (_("fetch_register_using_p: early buf termination"));
3f9a994c
JB
7530
7531 regp[i++] = fromhex (p[0]) * 16 + fromhex (p[1]);
7532 p += 2;
7533 }
56be3814 7534 regcache_raw_supply (regcache, reg->regnum, regp);
3f9a994c 7535 return 1;
b96ec7ac
AC
7536}
7537
74ca34ce
DJ
7538/* Fetch the registers included in the target's 'g' packet. */
7539
29709017
DJ
7540static int
7541send_g_packet (void)
c906108c 7542{
d01949b6 7543 struct remote_state *rs = get_remote_state ();
cea39f65 7544 int buf_len;
c906108c 7545
bba74b36 7546 xsnprintf (rs->buf, get_remote_packet_size (), "g");
74ca34ce 7547 remote_send (&rs->buf, &rs->buf_size);
c906108c 7548
29709017
DJ
7549 /* We can get out of synch in various cases. If the first character
7550 in the buffer is not a hex character, assume that has happened
7551 and try to fetch another packet to read. */
7552 while ((rs->buf[0] < '0' || rs->buf[0] > '9')
7553 && (rs->buf[0] < 'A' || rs->buf[0] > 'F')
7554 && (rs->buf[0] < 'a' || rs->buf[0] > 'f')
7555 && rs->buf[0] != 'x') /* New: unavailable register value. */
7556 {
7557 if (remote_debug)
7558 fprintf_unfiltered (gdb_stdlog,
7559 "Bad register packet; fetching a new packet\n");
7560 getpkt (&rs->buf, &rs->buf_size, 0);
7561 }
7562
74ca34ce
DJ
7563 buf_len = strlen (rs->buf);
7564
7565 /* Sanity check the received packet. */
7566 if (buf_len % 2 != 0)
7567 error (_("Remote 'g' packet reply is of odd length: %s"), rs->buf);
29709017
DJ
7568
7569 return buf_len / 2;
7570}
7571
7572static void
56be3814 7573process_g_packet (struct regcache *regcache)
29709017 7574{
4a22f64d 7575 struct gdbarch *gdbarch = get_regcache_arch (regcache);
29709017
DJ
7576 struct remote_state *rs = get_remote_state ();
7577 struct remote_arch_state *rsa = get_remote_arch_state ();
7578 int i, buf_len;
7579 char *p;
7580 char *regs;
7581
7582 buf_len = strlen (rs->buf);
7583
7584 /* Further sanity checks, with knowledge of the architecture. */
74ca34ce
DJ
7585 if (buf_len > 2 * rsa->sizeof_g_packet)
7586 error (_("Remote 'g' packet reply is too long: %s"), rs->buf);
7587
7588 /* Save the size of the packet sent to us by the target. It is used
7589 as a heuristic when determining the max size of packets that the
7590 target can safely receive. */
7591 if (rsa->actual_register_packet_size == 0)
7592 rsa->actual_register_packet_size = buf_len;
7593
7594 /* If this is smaller than we guessed the 'g' packet would be,
7595 update our records. A 'g' reply that doesn't include a register's
7596 value implies either that the register is not available, or that
7597 the 'p' packet must be used. */
7598 if (buf_len < 2 * rsa->sizeof_g_packet)
b323314b 7599 {
9dc193c3 7600 long sizeof_g_packet = buf_len / 2;
74ca34ce 7601
4a22f64d 7602 for (i = 0; i < gdbarch_num_regs (gdbarch); i++)
b96ec7ac 7603 {
9dc193c3
LF
7604 long offset = rsa->regs[i].offset;
7605 long reg_size = register_size (gdbarch, i);
7606
74ca34ce
DJ
7607 if (rsa->regs[i].pnum == -1)
7608 continue;
7609
9dc193c3 7610 if (offset >= sizeof_g_packet)
74ca34ce 7611 rsa->regs[i].in_g_packet = 0;
9dc193c3
LF
7612 else if (offset + reg_size > sizeof_g_packet)
7613 error (_("Truncated register %d in remote 'g' packet"), i);
b96ec7ac 7614 else
74ca34ce 7615 rsa->regs[i].in_g_packet = 1;
b96ec7ac 7616 }
9dc193c3
LF
7617
7618 /* Looks valid enough, we can assume this is the correct length
7619 for a 'g' packet. It's important not to adjust
7620 rsa->sizeof_g_packet if we have truncated registers otherwise
7621 this "if" won't be run the next time the method is called
7622 with a packet of the same size and one of the internal errors
7623 below will trigger instead. */
7624 rsa->sizeof_g_packet = sizeof_g_packet;
74ca34ce 7625 }
b323314b 7626
224c3ddb 7627 regs = (char *) alloca (rsa->sizeof_g_packet);
c906108c
SS
7628
7629 /* Unimplemented registers read as all bits zero. */
ea9c271d 7630 memset (regs, 0, rsa->sizeof_g_packet);
c906108c 7631
c906108c
SS
7632 /* Reply describes registers byte by byte, each byte encoded as two
7633 hex characters. Suck them all up, then supply them to the
7634 register cacheing/storage mechanism. */
7635
74ca34ce 7636 p = rs->buf;
ea9c271d 7637 for (i = 0; i < rsa->sizeof_g_packet; i++)
c906108c 7638 {
74ca34ce
DJ
7639 if (p[0] == 0 || p[1] == 0)
7640 /* This shouldn't happen - we adjusted sizeof_g_packet above. */
7641 internal_error (__FILE__, __LINE__,
9b20d036 7642 _("unexpected end of 'g' packet reply"));
74ca34ce 7643
c906108c 7644 if (p[0] == 'x' && p[1] == 'x')
c5aa993b 7645 regs[i] = 0; /* 'x' */
c906108c
SS
7646 else
7647 regs[i] = fromhex (p[0]) * 16 + fromhex (p[1]);
7648 p += 2;
7649 }
7650
a744cf53
MS
7651 for (i = 0; i < gdbarch_num_regs (gdbarch); i++)
7652 {
7653 struct packet_reg *r = &rsa->regs[i];
9dc193c3 7654 long reg_size = register_size (gdbarch, i);
a744cf53
MS
7655
7656 if (r->in_g_packet)
7657 {
9dc193c3 7658 if ((r->offset + reg_size) * 2 > strlen (rs->buf))
a744cf53
MS
7659 /* This shouldn't happen - we adjusted in_g_packet above. */
7660 internal_error (__FILE__, __LINE__,
9b20d036 7661 _("unexpected end of 'g' packet reply"));
a744cf53
MS
7662 else if (rs->buf[r->offset * 2] == 'x')
7663 {
7664 gdb_assert (r->offset * 2 < strlen (rs->buf));
7665 /* The register isn't available, mark it as such (at
7666 the same time setting the value to zero). */
7667 regcache_raw_supply (regcache, r->regnum, NULL);
7668 }
7669 else
7670 regcache_raw_supply (regcache, r->regnum,
7671 regs + r->offset);
7672 }
7673 }
c906108c
SS
7674}
7675
29709017 7676static void
56be3814 7677fetch_registers_using_g (struct regcache *regcache)
29709017
DJ
7678{
7679 send_g_packet ();
56be3814 7680 process_g_packet (regcache);
29709017
DJ
7681}
7682
e6e4e701
PA
7683/* Make the remote selected traceframe match GDB's selected
7684 traceframe. */
7685
7686static void
7687set_remote_traceframe (void)
7688{
7689 int newnum;
262e1174 7690 struct remote_state *rs = get_remote_state ();
e6e4e701 7691
262e1174 7692 if (rs->remote_traceframe_number == get_traceframe_number ())
e6e4e701
PA
7693 return;
7694
7695 /* Avoid recursion, remote_trace_find calls us again. */
262e1174 7696 rs->remote_traceframe_number = get_traceframe_number ();
e6e4e701
PA
7697
7698 newnum = target_trace_find (tfind_number,
7699 get_traceframe_number (), 0, 0, NULL);
7700
7701 /* Should not happen. If it does, all bets are off. */
7702 if (newnum != get_traceframe_number ())
7703 warning (_("could not set remote traceframe"));
7704}
7705
74ca34ce 7706static void
28439f5e
PA
7707remote_fetch_registers (struct target_ops *ops,
7708 struct regcache *regcache, int regnum)
74ca34ce 7709{
74ca34ce
DJ
7710 struct remote_arch_state *rsa = get_remote_arch_state ();
7711 int i;
7712
e6e4e701 7713 set_remote_traceframe ();
79d7f229 7714 set_general_thread (inferior_ptid);
74ca34ce
DJ
7715
7716 if (regnum >= 0)
7717 {
7718 struct packet_reg *reg = packet_reg_from_regnum (rsa, regnum);
a744cf53 7719
74ca34ce
DJ
7720 gdb_assert (reg != NULL);
7721
7722 /* If this register might be in the 'g' packet, try that first -
7723 we are likely to read more than one register. If this is the
7724 first 'g' packet, we might be overly optimistic about its
7725 contents, so fall back to 'p'. */
7726 if (reg->in_g_packet)
7727 {
56be3814 7728 fetch_registers_using_g (regcache);
74ca34ce
DJ
7729 if (reg->in_g_packet)
7730 return;
7731 }
7732
56be3814 7733 if (fetch_register_using_p (regcache, reg))
74ca34ce
DJ
7734 return;
7735
7736 /* This register is not available. */
56be3814 7737 regcache_raw_supply (regcache, reg->regnum, NULL);
74ca34ce
DJ
7738
7739 return;
7740 }
7741
56be3814 7742 fetch_registers_using_g (regcache);
74ca34ce 7743
4a22f64d 7744 for (i = 0; i < gdbarch_num_regs (get_regcache_arch (regcache)); i++)
74ca34ce 7745 if (!rsa->regs[i].in_g_packet)
56be3814 7746 if (!fetch_register_using_p (regcache, &rsa->regs[i]))
74ca34ce
DJ
7747 {
7748 /* This register is not available. */
56be3814 7749 regcache_raw_supply (regcache, i, NULL);
74ca34ce
DJ
7750 }
7751}
7752
c906108c
SS
7753/* Prepare to store registers. Since we may send them all (using a
7754 'G' request), we have to read out the ones we don't want to change
7755 first. */
7756
c5aa993b 7757static void
f32dbf8c 7758remote_prepare_to_store (struct target_ops *self, struct regcache *regcache)
c906108c 7759{
ea9c271d 7760 struct remote_arch_state *rsa = get_remote_arch_state ();
cf0e1e0d 7761 int i;
cfd77fa1 7762 gdb_byte buf[MAX_REGISTER_SIZE];
cf0e1e0d 7763
c906108c 7764 /* Make sure the entire registers array is valid. */
4082afcc 7765 switch (packet_support (PACKET_P))
5a2468f5
JM
7766 {
7767 case PACKET_DISABLE:
7768 case PACKET_SUPPORT_UNKNOWN:
cf0e1e0d 7769 /* Make sure all the necessary registers are cached. */
4a22f64d 7770 for (i = 0; i < gdbarch_num_regs (get_regcache_arch (regcache)); i++)
ea9c271d 7771 if (rsa->regs[i].in_g_packet)
316f2060 7772 regcache_raw_read (regcache, rsa->regs[i].regnum, buf);
5a2468f5
JM
7773 break;
7774 case PACKET_ENABLE:
7775 break;
7776 }
7777}
7778
ad10f812 7779/* Helper: Attempt to store REGNUM using the P packet. Return fail IFF
23860348 7780 packet was not recognized. */
5a2468f5
JM
7781
7782static int
1f4437a4
MS
7783store_register_using_P (const struct regcache *regcache,
7784 struct packet_reg *reg)
5a2468f5 7785{
4a22f64d 7786 struct gdbarch *gdbarch = get_regcache_arch (regcache);
d01949b6 7787 struct remote_state *rs = get_remote_state ();
5a2468f5 7788 /* Try storing a single register. */
6d820c5c 7789 char *buf = rs->buf;
9890e433 7790 gdb_byte *regp = (gdb_byte *) alloca (register_size (gdbarch, reg->regnum));
5a2468f5 7791 char *p;
5a2468f5 7792
4082afcc 7793 if (packet_support (PACKET_P) == PACKET_DISABLE)
74ca34ce
DJ
7794 return 0;
7795
7796 if (reg->pnum == -1)
7797 return 0;
7798
ea9c271d 7799 xsnprintf (buf, get_remote_packet_size (), "P%s=", phex_nz (reg->pnum, 0));
5a2468f5 7800 p = buf + strlen (buf);
56be3814 7801 regcache_raw_collect (regcache, reg->regnum, regp);
4a22f64d 7802 bin2hex (regp, p, register_size (gdbarch, reg->regnum));
1f4437a4
MS
7803 putpkt (rs->buf);
7804 getpkt (&rs->buf, &rs->buf_size, 0);
5a2468f5 7805
74ca34ce
DJ
7806 switch (packet_ok (rs->buf, &remote_protocol_packets[PACKET_P]))
7807 {
7808 case PACKET_OK:
7809 return 1;
7810 case PACKET_ERROR:
27a9c0bf
MS
7811 error (_("Could not write register \"%s\"; remote failure reply '%s'"),
7812 gdbarch_register_name (gdbarch, reg->regnum), rs->buf);
74ca34ce
DJ
7813 case PACKET_UNKNOWN:
7814 return 0;
7815 default:
7816 internal_error (__FILE__, __LINE__, _("Bad result from packet_ok"));
7817 }
c906108c
SS
7818}
7819
23860348
MS
7820/* Store register REGNUM, or all registers if REGNUM == -1, from the
7821 contents of the register cache buffer. FIXME: ignores errors. */
c906108c
SS
7822
7823static void
56be3814 7824store_registers_using_G (const struct regcache *regcache)
c906108c 7825{
d01949b6 7826 struct remote_state *rs = get_remote_state ();
ea9c271d 7827 struct remote_arch_state *rsa = get_remote_arch_state ();
cfd77fa1 7828 gdb_byte *regs;
c906108c
SS
7829 char *p;
7830
193cb69f
AC
7831 /* Extract all the registers in the regcache copying them into a
7832 local buffer. */
7833 {
b323314b 7834 int i;
a744cf53 7835
224c3ddb 7836 regs = (gdb_byte *) alloca (rsa->sizeof_g_packet);
ea9c271d 7837 memset (regs, 0, rsa->sizeof_g_packet);
4a22f64d 7838 for (i = 0; i < gdbarch_num_regs (get_regcache_arch (regcache)); i++)
193cb69f 7839 {
ea9c271d 7840 struct packet_reg *r = &rsa->regs[i];
a744cf53 7841
b323314b 7842 if (r->in_g_packet)
56be3814 7843 regcache_raw_collect (regcache, r->regnum, regs + r->offset);
193cb69f
AC
7844 }
7845 }
c906108c
SS
7846
7847 /* Command describes registers byte by byte,
7848 each byte encoded as two hex characters. */
6d820c5c 7849 p = rs->buf;
193cb69f 7850 *p++ = 'G';
74ca34ce
DJ
7851 /* remote_prepare_to_store insures that rsa->sizeof_g_packet gets
7852 updated. */
7853 bin2hex (regs, p, rsa->sizeof_g_packet);
1f4437a4
MS
7854 putpkt (rs->buf);
7855 getpkt (&rs->buf, &rs->buf_size, 0);
7856 if (packet_check_result (rs->buf) == PACKET_ERROR)
27a9c0bf
MS
7857 error (_("Could not write registers; remote failure reply '%s'"),
7858 rs->buf);
c906108c 7859}
74ca34ce
DJ
7860
7861/* Store register REGNUM, or all registers if REGNUM == -1, from the contents
7862 of the register cache buffer. FIXME: ignores errors. */
7863
7864static void
28439f5e
PA
7865remote_store_registers (struct target_ops *ops,
7866 struct regcache *regcache, int regnum)
74ca34ce 7867{
74ca34ce
DJ
7868 struct remote_arch_state *rsa = get_remote_arch_state ();
7869 int i;
7870
e6e4e701 7871 set_remote_traceframe ();
79d7f229 7872 set_general_thread (inferior_ptid);
74ca34ce
DJ
7873
7874 if (regnum >= 0)
7875 {
7876 struct packet_reg *reg = packet_reg_from_regnum (rsa, regnum);
a744cf53 7877
74ca34ce
DJ
7878 gdb_assert (reg != NULL);
7879
7880 /* Always prefer to store registers using the 'P' packet if
7881 possible; we often change only a small number of registers.
7882 Sometimes we change a larger number; we'd need help from a
7883 higher layer to know to use 'G'. */
56be3814 7884 if (store_register_using_P (regcache, reg))
74ca34ce
DJ
7885 return;
7886
7887 /* For now, don't complain if we have no way to write the
7888 register. GDB loses track of unavailable registers too
7889 easily. Some day, this may be an error. We don't have
0df8b418 7890 any way to read the register, either... */
74ca34ce
DJ
7891 if (!reg->in_g_packet)
7892 return;
7893
56be3814 7894 store_registers_using_G (regcache);
74ca34ce
DJ
7895 return;
7896 }
7897
56be3814 7898 store_registers_using_G (regcache);
74ca34ce 7899
4a22f64d 7900 for (i = 0; i < gdbarch_num_regs (get_regcache_arch (regcache)); i++)
74ca34ce 7901 if (!rsa->regs[i].in_g_packet)
56be3814 7902 if (!store_register_using_P (regcache, &rsa->regs[i]))
74ca34ce
DJ
7903 /* See above for why we do not issue an error here. */
7904 continue;
7905}
c906108c
SS
7906\f
7907
7908/* Return the number of hex digits in num. */
7909
7910static int
fba45db2 7911hexnumlen (ULONGEST num)
c906108c
SS
7912{
7913 int i;
7914
7915 for (i = 0; num != 0; i++)
7916 num >>= 4;
7917
325fac50 7918 return std::max (i, 1);
c906108c
SS
7919}
7920
2df3850c 7921/* Set BUF to the minimum number of hex digits representing NUM. */
c906108c
SS
7922
7923static int
fba45db2 7924hexnumstr (char *buf, ULONGEST num)
c906108c 7925{
c906108c 7926 int len = hexnumlen (num);
a744cf53 7927
2df3850c
JM
7928 return hexnumnstr (buf, num, len);
7929}
7930
c906108c 7931
2df3850c 7932/* Set BUF to the hex digits representing NUM, padded to WIDTH characters. */
c906108c 7933
2df3850c 7934static int
fba45db2 7935hexnumnstr (char *buf, ULONGEST num, int width)
2df3850c
JM
7936{
7937 int i;
7938
7939 buf[width] = '\0';
7940
7941 for (i = width - 1; i >= 0; i--)
c906108c 7942 {
c5aa993b 7943 buf[i] = "0123456789abcdef"[(num & 0xf)];
c906108c
SS
7944 num >>= 4;
7945 }
7946
2df3850c 7947 return width;
c906108c
SS
7948}
7949
23860348 7950/* Mask all but the least significant REMOTE_ADDRESS_SIZE bits. */
c906108c
SS
7951
7952static CORE_ADDR
fba45db2 7953remote_address_masked (CORE_ADDR addr)
c906108c 7954{
883b9c6c 7955 unsigned int address_size = remote_address_size;
a744cf53 7956
911c95a5
UW
7957 /* If "remoteaddresssize" was not set, default to target address size. */
7958 if (!address_size)
f5656ead 7959 address_size = gdbarch_addr_bit (target_gdbarch ());
911c95a5
UW
7960
7961 if (address_size > 0
7962 && address_size < (sizeof (ULONGEST) * 8))
c906108c
SS
7963 {
7964 /* Only create a mask when that mask can safely be constructed
23860348 7965 in a ULONGEST variable. */
c906108c 7966 ULONGEST mask = 1;
a744cf53 7967
911c95a5 7968 mask = (mask << address_size) - 1;
c906108c
SS
7969 addr &= mask;
7970 }
7971 return addr;
7972}
7973
7974/* Determine whether the remote target supports binary downloading.
7975 This is accomplished by sending a no-op memory write of zero length
7976 to the target at the specified address. It does not suffice to send
23860348
MS
7977 the whole packet, since many stubs strip the eighth bit and
7978 subsequently compute a wrong checksum, which causes real havoc with
7979 remote_write_bytes.
7a292a7a 7980
96baa820 7981 NOTE: This can still lose if the serial line is not eight-bit
0df8b418 7982 clean. In cases like this, the user should clear "remote
23860348 7983 X-packet". */
96baa820 7984
c906108c 7985static void
fba45db2 7986check_binary_download (CORE_ADDR addr)
c906108c 7987{
d01949b6 7988 struct remote_state *rs = get_remote_state ();
24b06219 7989
4082afcc 7990 switch (packet_support (PACKET_X))
c906108c 7991 {
96baa820
JM
7992 case PACKET_DISABLE:
7993 break;
7994 case PACKET_ENABLE:
7995 break;
7996 case PACKET_SUPPORT_UNKNOWN:
7997 {
96baa820 7998 char *p;
802188a7 7999
2e9f7625 8000 p = rs->buf;
96baa820
JM
8001 *p++ = 'X';
8002 p += hexnumstr (p, (ULONGEST) addr);
8003 *p++ = ',';
8004 p += hexnumstr (p, (ULONGEST) 0);
8005 *p++ = ':';
8006 *p = '\0';
802188a7 8007
2e9f7625 8008 putpkt_binary (rs->buf, (int) (p - rs->buf));
6d820c5c 8009 getpkt (&rs->buf, &rs->buf_size, 0);
c906108c 8010
2e9f7625 8011 if (rs->buf[0] == '\0')
96baa820
JM
8012 {
8013 if (remote_debug)
8014 fprintf_unfiltered (gdb_stdlog,
3e43a32a
MS
8015 "binary downloading NOT "
8016 "supported by target\n");
444abaca 8017 remote_protocol_packets[PACKET_X].support = PACKET_DISABLE;
96baa820
JM
8018 }
8019 else
8020 {
8021 if (remote_debug)
8022 fprintf_unfiltered (gdb_stdlog,
64b9b334 8023 "binary downloading supported by target\n");
444abaca 8024 remote_protocol_packets[PACKET_X].support = PACKET_ENABLE;
96baa820
JM
8025 }
8026 break;
8027 }
c906108c
SS
8028 }
8029}
8030
124e13d9
SM
8031/* Helper function to resize the payload in order to try to get a good
8032 alignment. We try to write an amount of data such that the next write will
8033 start on an address aligned on REMOTE_ALIGN_WRITES. */
8034
8035static int
8036align_for_efficient_write (int todo, CORE_ADDR memaddr)
8037{
8038 return ((memaddr + todo) & ~(REMOTE_ALIGN_WRITES - 1)) - memaddr;
8039}
8040
c906108c
SS
8041/* Write memory data directly to the remote machine.
8042 This does not inform the data cache; the data cache uses this.
a76d924d 8043 HEADER is the starting part of the packet.
c906108c
SS
8044 MEMADDR is the address in the remote memory space.
8045 MYADDR is the address of the buffer in our space.
124e13d9
SM
8046 LEN_UNITS is the number of addressable units to write.
8047 UNIT_SIZE is the length in bytes of an addressable unit.
a76d924d
DJ
8048 PACKET_FORMAT should be either 'X' or 'M', and indicates if we
8049 should send data as binary ('X'), or hex-encoded ('M').
8050
8051 The function creates packet of the form
8052 <HEADER><ADDRESS>,<LENGTH>:<DATA>
8053
124e13d9 8054 where encoding of <DATA> is terminated by PACKET_FORMAT.
a76d924d
DJ
8055
8056 If USE_LENGTH is 0, then the <LENGTH> field and the preceding comma
8057 are omitted.
8058
9b409511 8059 Return the transferred status, error or OK (an
124e13d9
SM
8060 'enum target_xfer_status' value). Save the number of addressable units
8061 transferred in *XFERED_LEN_UNITS. Only transfer a single packet.
8062
8063 On a platform with an addressable memory size of 2 bytes (UNIT_SIZE == 2), an
8064 exchange between gdb and the stub could look like (?? in place of the
8065 checksum):
8066
8067 -> $m1000,4#??
8068 <- aaaabbbbccccdddd
8069
8070 -> $M1000,3:eeeeffffeeee#??
8071 <- OK
8072
8073 -> $m1000,4#??
8074 <- eeeeffffeeeedddd */
c906108c 8075
9b409511 8076static enum target_xfer_status
a76d924d 8077remote_write_bytes_aux (const char *header, CORE_ADDR memaddr,
124e13d9
SM
8078 const gdb_byte *myaddr, ULONGEST len_units,
8079 int unit_size, ULONGEST *xfered_len_units,
8080 char packet_format, int use_length)
c906108c 8081{
6d820c5c 8082 struct remote_state *rs = get_remote_state ();
cfd77fa1 8083 char *p;
a76d924d
DJ
8084 char *plen = NULL;
8085 int plenlen = 0;
124e13d9
SM
8086 int todo_units;
8087 int units_written;
8088 int payload_capacity_bytes;
8089 int payload_length_bytes;
a76d924d
DJ
8090
8091 if (packet_format != 'X' && packet_format != 'M')
8092 internal_error (__FILE__, __LINE__,
9b20d036 8093 _("remote_write_bytes_aux: bad packet format"));
c906108c 8094
124e13d9 8095 if (len_units == 0)
9b409511 8096 return TARGET_XFER_EOF;
b2182ed2 8097
124e13d9 8098 payload_capacity_bytes = get_memory_write_packet_size ();
2bc416ba 8099
6d820c5c
DJ
8100 /* The packet buffer will be large enough for the payload;
8101 get_memory_packet_size ensures this. */
a76d924d 8102 rs->buf[0] = '\0';
c906108c 8103
a257b5bb 8104 /* Compute the size of the actual payload by subtracting out the
0df8b418
MS
8105 packet header and footer overhead: "$M<memaddr>,<len>:...#nn". */
8106
124e13d9 8107 payload_capacity_bytes -= strlen ("$,:#NN");
a76d924d 8108 if (!use_length)
0df8b418 8109 /* The comma won't be used. */
124e13d9
SM
8110 payload_capacity_bytes += 1;
8111 payload_capacity_bytes -= strlen (header);
8112 payload_capacity_bytes -= hexnumlen (memaddr);
c906108c 8113
a76d924d 8114 /* Construct the packet excluding the data: "<header><memaddr>,<len>:". */
917317f4 8115
a76d924d
DJ
8116 strcat (rs->buf, header);
8117 p = rs->buf + strlen (header);
8118
8119 /* Compute a best guess of the number of bytes actually transfered. */
8120 if (packet_format == 'X')
c906108c 8121 {
23860348 8122 /* Best guess at number of bytes that will fit. */
325fac50
PA
8123 todo_units = std::min (len_units,
8124 (ULONGEST) payload_capacity_bytes / unit_size);
a76d924d 8125 if (use_length)
124e13d9 8126 payload_capacity_bytes -= hexnumlen (todo_units);
325fac50 8127 todo_units = std::min (todo_units, payload_capacity_bytes / unit_size);
a76d924d
DJ
8128 }
8129 else
8130 {
124e13d9 8131 /* Number of bytes that will fit. */
325fac50
PA
8132 todo_units
8133 = std::min (len_units,
8134 (ULONGEST) (payload_capacity_bytes / unit_size) / 2);
a76d924d 8135 if (use_length)
124e13d9 8136 payload_capacity_bytes -= hexnumlen (todo_units);
325fac50
PA
8137 todo_units = std::min (todo_units,
8138 (payload_capacity_bytes / unit_size) / 2);
917317f4 8139 }
a76d924d 8140
124e13d9 8141 if (todo_units <= 0)
3de11b2e 8142 internal_error (__FILE__, __LINE__,
405f8e94 8143 _("minimum packet size too small to write data"));
802188a7 8144
6765f3e5
DJ
8145 /* If we already need another packet, then try to align the end
8146 of this packet to a useful boundary. */
124e13d9
SM
8147 if (todo_units > 2 * REMOTE_ALIGN_WRITES && todo_units < len_units)
8148 todo_units = align_for_efficient_write (todo_units, memaddr);
6765f3e5 8149
a257b5bb 8150 /* Append "<memaddr>". */
917317f4
JM
8151 memaddr = remote_address_masked (memaddr);
8152 p += hexnumstr (p, (ULONGEST) memaddr);
a257b5bb 8153
a76d924d
DJ
8154 if (use_length)
8155 {
8156 /* Append ",". */
8157 *p++ = ',';
802188a7 8158
124e13d9
SM
8159 /* Append the length and retain its location and size. It may need to be
8160 adjusted once the packet body has been created. */
a76d924d 8161 plen = p;
124e13d9 8162 plenlen = hexnumstr (p, (ULONGEST) todo_units);
a76d924d
DJ
8163 p += plenlen;
8164 }
a257b5bb
AC
8165
8166 /* Append ":". */
917317f4
JM
8167 *p++ = ':';
8168 *p = '\0';
802188a7 8169
a257b5bb 8170 /* Append the packet body. */
a76d924d 8171 if (packet_format == 'X')
917317f4 8172 {
917317f4
JM
8173 /* Binary mode. Send target system values byte by byte, in
8174 increasing byte addresses. Only escape certain critical
8175 characters. */
124e13d9
SM
8176 payload_length_bytes =
8177 remote_escape_output (myaddr, todo_units, unit_size, (gdb_byte *) p,
8178 &units_written, payload_capacity_bytes);
6765f3e5 8179
124e13d9 8180 /* If not all TODO units fit, then we'll need another packet. Make
9b7194bc
DJ
8181 a second try to keep the end of the packet aligned. Don't do
8182 this if the packet is tiny. */
124e13d9 8183 if (units_written < todo_units && units_written > 2 * REMOTE_ALIGN_WRITES)
6765f3e5 8184 {
124e13d9
SM
8185 int new_todo_units;
8186
8187 new_todo_units = align_for_efficient_write (units_written, memaddr);
8188
8189 if (new_todo_units != units_written)
8190 payload_length_bytes =
8191 remote_escape_output (myaddr, new_todo_units, unit_size,
8192 (gdb_byte *) p, &units_written,
8193 payload_capacity_bytes);
6765f3e5
DJ
8194 }
8195
124e13d9
SM
8196 p += payload_length_bytes;
8197 if (use_length && units_written < todo_units)
c906108c 8198 {
802188a7 8199 /* Escape chars have filled up the buffer prematurely,
124e13d9 8200 and we have actually sent fewer units than planned.
917317f4
JM
8201 Fix-up the length field of the packet. Use the same
8202 number of characters as before. */
124e13d9
SM
8203 plen += hexnumnstr (plen, (ULONGEST) units_written,
8204 plenlen);
917317f4 8205 *plen = ':'; /* overwrite \0 from hexnumnstr() */
c906108c 8206 }
a76d924d
DJ
8207 }
8208 else
8209 {
917317f4
JM
8210 /* Normal mode: Send target system values byte by byte, in
8211 increasing byte addresses. Each byte is encoded as a two hex
8212 value. */
124e13d9
SM
8213 p += 2 * bin2hex (myaddr, p, todo_units * unit_size);
8214 units_written = todo_units;
c906108c 8215 }
802188a7 8216
2e9f7625 8217 putpkt_binary (rs->buf, (int) (p - rs->buf));
6d820c5c 8218 getpkt (&rs->buf, &rs->buf_size, 0);
802188a7 8219
2e9f7625 8220 if (rs->buf[0] == 'E')
00d84524 8221 return TARGET_XFER_E_IO;
802188a7 8222
124e13d9
SM
8223 /* Return UNITS_WRITTEN, not TODO_UNITS, in case escape chars caused us to
8224 send fewer units than we'd planned. */
8225 *xfered_len_units = (ULONGEST) units_written;
9b409511 8226 return TARGET_XFER_OK;
c906108c
SS
8227}
8228
a76d924d
DJ
8229/* Write memory data directly to the remote machine.
8230 This does not inform the data cache; the data cache uses this.
8231 MEMADDR is the address in the remote memory space.
8232 MYADDR is the address of the buffer in our space.
8233 LEN is the number of bytes.
8234
9b409511
YQ
8235 Return the transferred status, error or OK (an
8236 'enum target_xfer_status' value). Save the number of bytes
8237 transferred in *XFERED_LEN. Only transfer a single packet. */
a76d924d 8238
9b409511
YQ
8239static enum target_xfer_status
8240remote_write_bytes (CORE_ADDR memaddr, const gdb_byte *myaddr, ULONGEST len,
124e13d9 8241 int unit_size, ULONGEST *xfered_len)
a76d924d
DJ
8242{
8243 char *packet_format = 0;
8244
8245 /* Check whether the target supports binary download. */
8246 check_binary_download (memaddr);
8247
4082afcc 8248 switch (packet_support (PACKET_X))
a76d924d
DJ
8249 {
8250 case PACKET_ENABLE:
8251 packet_format = "X";
8252 break;
8253 case PACKET_DISABLE:
8254 packet_format = "M";
8255 break;
8256 case PACKET_SUPPORT_UNKNOWN:
8257 internal_error (__FILE__, __LINE__,
8258 _("remote_write_bytes: bad internal state"));
8259 default:
8260 internal_error (__FILE__, __LINE__, _("bad switch"));
8261 }
8262
8263 return remote_write_bytes_aux (packet_format,
124e13d9 8264 memaddr, myaddr, len, unit_size, xfered_len,
9b409511 8265 packet_format[0], 1);
a76d924d
DJ
8266}
8267
9217e74e
YQ
8268/* Read memory data directly from the remote machine.
8269 This does not use the data cache; the data cache uses this.
8270 MEMADDR is the address in the remote memory space.
8271 MYADDR is the address of the buffer in our space.
124e13d9
SM
8272 LEN_UNITS is the number of addressable memory units to read..
8273 UNIT_SIZE is the length in bytes of an addressable unit.
9217e74e
YQ
8274
8275 Return the transferred status, error or OK (an
8276 'enum target_xfer_status' value). Save the number of bytes
124e13d9
SM
8277 transferred in *XFERED_LEN_UNITS.
8278
8279 See the comment of remote_write_bytes_aux for an example of
8280 memory read/write exchange between gdb and the stub. */
9217e74e
YQ
8281
8282static enum target_xfer_status
124e13d9
SM
8283remote_read_bytes_1 (CORE_ADDR memaddr, gdb_byte *myaddr, ULONGEST len_units,
8284 int unit_size, ULONGEST *xfered_len_units)
9217e74e
YQ
8285{
8286 struct remote_state *rs = get_remote_state ();
124e13d9 8287 int buf_size_bytes; /* Max size of packet output buffer. */
9217e74e 8288 char *p;
124e13d9
SM
8289 int todo_units;
8290 int decoded_bytes;
9217e74e 8291
124e13d9 8292 buf_size_bytes = get_memory_read_packet_size ();
9217e74e
YQ
8293 /* The packet buffer will be large enough for the payload;
8294 get_memory_packet_size ensures this. */
8295
124e13d9 8296 /* Number of units that will fit. */
325fac50
PA
8297 todo_units = std::min (len_units,
8298 (ULONGEST) (buf_size_bytes / unit_size) / 2);
9217e74e
YQ
8299
8300 /* Construct "m"<memaddr>","<len>". */
8301 memaddr = remote_address_masked (memaddr);
8302 p = rs->buf;
8303 *p++ = 'm';
8304 p += hexnumstr (p, (ULONGEST) memaddr);
8305 *p++ = ',';
124e13d9 8306 p += hexnumstr (p, (ULONGEST) todo_units);
9217e74e
YQ
8307 *p = '\0';
8308 putpkt (rs->buf);
8309 getpkt (&rs->buf, &rs->buf_size, 0);
8310 if (rs->buf[0] == 'E'
8311 && isxdigit (rs->buf[1]) && isxdigit (rs->buf[2])
8312 && rs->buf[3] == '\0')
8313 return TARGET_XFER_E_IO;
8314 /* Reply describes memory byte by byte, each byte encoded as two hex
8315 characters. */
8316 p = rs->buf;
124e13d9 8317 decoded_bytes = hex2bin (p, myaddr, todo_units * unit_size);
9217e74e 8318 /* Return what we have. Let higher layers handle partial reads. */
124e13d9 8319 *xfered_len_units = (ULONGEST) (decoded_bytes / unit_size);
9217e74e
YQ
8320 return TARGET_XFER_OK;
8321}
8322
b55fbac4
YQ
8323/* Using the set of read-only target sections of remote, read live
8324 read-only memory.
8acf9577
YQ
8325
8326 For interface/parameters/return description see target.h,
8327 to_xfer_partial. */
8328
8329static enum target_xfer_status
b55fbac4
YQ
8330remote_xfer_live_readonly_partial (struct target_ops *ops, gdb_byte *readbuf,
8331 ULONGEST memaddr, ULONGEST len,
124e13d9 8332 int unit_size, ULONGEST *xfered_len)
8acf9577
YQ
8333{
8334 struct target_section *secp;
8335 struct target_section_table *table;
8336
8337 secp = target_section_by_addr (ops, memaddr);
8338 if (secp != NULL
8339 && (bfd_get_section_flags (secp->the_bfd_section->owner,
8340 secp->the_bfd_section)
8341 & SEC_READONLY))
8342 {
8343 struct target_section *p;
8344 ULONGEST memend = memaddr + len;
8345
8346 table = target_get_section_table (ops);
8347
8348 for (p = table->sections; p < table->sections_end; p++)
8349 {
8350 if (memaddr >= p->addr)
8351 {
8352 if (memend <= p->endaddr)
8353 {
8354 /* Entire transfer is within this section. */
124e13d9 8355 return remote_read_bytes_1 (memaddr, readbuf, len, unit_size,
b55fbac4 8356 xfered_len);
8acf9577
YQ
8357 }
8358 else if (memaddr >= p->endaddr)
8359 {
8360 /* This section ends before the transfer starts. */
8361 continue;
8362 }
8363 else
8364 {
8365 /* This section overlaps the transfer. Just do half. */
8366 len = p->endaddr - memaddr;
124e13d9 8367 return remote_read_bytes_1 (memaddr, readbuf, len, unit_size,
b55fbac4 8368 xfered_len);
8acf9577
YQ
8369 }
8370 }
8371 }
8372 }
8373
8374 return TARGET_XFER_EOF;
8375}
8376
9217e74e
YQ
8377/* Similar to remote_read_bytes_1, but it reads from the remote stub
8378 first if the requested memory is unavailable in traceframe.
8379 Otherwise, fall back to remote_read_bytes_1. */
c906108c 8380
9b409511 8381static enum target_xfer_status
8acf9577 8382remote_read_bytes (struct target_ops *ops, CORE_ADDR memaddr,
124e13d9
SM
8383 gdb_byte *myaddr, ULONGEST len, int unit_size,
8384 ULONGEST *xfered_len)
c906108c 8385{
6b6aa828 8386 if (len == 0)
96c4f946 8387 return TARGET_XFER_EOF;
b2182ed2 8388
8acf9577
YQ
8389 if (get_traceframe_number () != -1)
8390 {
8391 VEC(mem_range_s) *available;
8392
8393 /* If we fail to get the set of available memory, then the
8394 target does not support querying traceframe info, and so we
8395 attempt reading from the traceframe anyway (assuming the
8396 target implements the old QTro packet then). */
8397 if (traceframe_available_memory (&available, memaddr, len))
8398 {
8399 struct cleanup *old_chain;
8400
8401 old_chain = make_cleanup (VEC_cleanup(mem_range_s), &available);
8402
8403 if (VEC_empty (mem_range_s, available)
8404 || VEC_index (mem_range_s, available, 0)->start != memaddr)
8405 {
8406 enum target_xfer_status res;
8407
8408 /* Don't read into the traceframe's available
8409 memory. */
8410 if (!VEC_empty (mem_range_s, available))
8411 {
8412 LONGEST oldlen = len;
8413
8414 len = VEC_index (mem_range_s, available, 0)->start - memaddr;
8415 gdb_assert (len <= oldlen);
8416 }
8417
8418 do_cleanups (old_chain);
8419
8420 /* This goes through the topmost target again. */
b55fbac4 8421 res = remote_xfer_live_readonly_partial (ops, myaddr, memaddr,
124e13d9 8422 len, unit_size, xfered_len);
8acf9577
YQ
8423 if (res == TARGET_XFER_OK)
8424 return TARGET_XFER_OK;
8425 else
8426 {
8427 /* No use trying further, we know some memory starting
8428 at MEMADDR isn't available. */
8429 *xfered_len = len;
8430 return TARGET_XFER_UNAVAILABLE;
8431 }
8432 }
8433
8434 /* Don't try to read more than how much is available, in
8435 case the target implements the deprecated QTro packet to
8436 cater for older GDBs (the target's knowledge of read-only
8437 sections may be outdated by now). */
8438 len = VEC_index (mem_range_s, available, 0)->length;
8439
8440 do_cleanups (old_chain);
8441 }
8442 }
8443
124e13d9 8444 return remote_read_bytes_1 (memaddr, myaddr, len, unit_size, xfered_len);
c906108c 8445}
74531fed 8446
c906108c 8447\f
c906108c 8448
a76d924d
DJ
8449/* Sends a packet with content determined by the printf format string
8450 FORMAT and the remaining arguments, then gets the reply. Returns
8451 whether the packet was a success, a failure, or unknown. */
8452
77b64a49
PA
8453static enum packet_result remote_send_printf (const char *format, ...)
8454 ATTRIBUTE_PRINTF (1, 2);
8455
2c0b251b 8456static enum packet_result
a76d924d
DJ
8457remote_send_printf (const char *format, ...)
8458{
8459 struct remote_state *rs = get_remote_state ();
8460 int max_size = get_remote_packet_size ();
a76d924d 8461 va_list ap;
a744cf53 8462
a76d924d
DJ
8463 va_start (ap, format);
8464
8465 rs->buf[0] = '\0';
8466 if (vsnprintf (rs->buf, max_size, format, ap) >= max_size)
9b20d036 8467 internal_error (__FILE__, __LINE__, _("Too long remote packet."));
a76d924d
DJ
8468
8469 if (putpkt (rs->buf) < 0)
8470 error (_("Communication problem with target."));
8471
8472 rs->buf[0] = '\0';
8473 getpkt (&rs->buf, &rs->buf_size, 0);
8474
8475 return packet_check_result (rs->buf);
8476}
8477
8478static void
8479restore_remote_timeout (void *p)
8480{
8481 int value = *(int *)p;
a744cf53 8482
a76d924d
DJ
8483 remote_timeout = value;
8484}
8485
8486/* Flash writing can take quite some time. We'll set
8487 effectively infinite timeout for flash operations.
8488 In future, we'll need to decide on a better approach. */
8489static const int remote_flash_timeout = 1000;
8490
8491static void
8492remote_flash_erase (struct target_ops *ops,
8493 ULONGEST address, LONGEST length)
8494{
f5656ead 8495 int addr_size = gdbarch_addr_bit (target_gdbarch ()) / 8;
a76d924d
DJ
8496 int saved_remote_timeout = remote_timeout;
8497 enum packet_result ret;
a76d924d
DJ
8498 struct cleanup *back_to = make_cleanup (restore_remote_timeout,
8499 &saved_remote_timeout);
a744cf53 8500
a76d924d
DJ
8501 remote_timeout = remote_flash_timeout;
8502
8503 ret = remote_send_printf ("vFlashErase:%s,%s",
5af949e3 8504 phex (address, addr_size),
a76d924d
DJ
8505 phex (length, 4));
8506 switch (ret)
8507 {
8508 case PACKET_UNKNOWN:
8509 error (_("Remote target does not support flash erase"));
8510 case PACKET_ERROR:
8511 error (_("Error erasing flash with vFlashErase packet"));
8512 default:
8513 break;
8514 }
8515
8516 do_cleanups (back_to);
8517}
8518
9b409511
YQ
8519static enum target_xfer_status
8520remote_flash_write (struct target_ops *ops, ULONGEST address,
8521 ULONGEST length, ULONGEST *xfered_len,
8522 const gdb_byte *data)
a76d924d
DJ
8523{
8524 int saved_remote_timeout = remote_timeout;
9b409511 8525 enum target_xfer_status ret;
a76d924d 8526 struct cleanup *back_to = make_cleanup (restore_remote_timeout,
9b409511 8527 &saved_remote_timeout);
a76d924d
DJ
8528
8529 remote_timeout = remote_flash_timeout;
124e13d9 8530 ret = remote_write_bytes_aux ("vFlashWrite:", address, data, length, 1,
9b409511 8531 xfered_len,'X', 0);
a76d924d
DJ
8532 do_cleanups (back_to);
8533
8534 return ret;
8535}
8536
8537static void
8538remote_flash_done (struct target_ops *ops)
8539{
8540 int saved_remote_timeout = remote_timeout;
8541 int ret;
8542 struct cleanup *back_to = make_cleanup (restore_remote_timeout,
8543 &saved_remote_timeout);
8544
8545 remote_timeout = remote_flash_timeout;
8546 ret = remote_send_printf ("vFlashDone");
8547 do_cleanups (back_to);
8548
8549 switch (ret)
8550 {
8551 case PACKET_UNKNOWN:
8552 error (_("Remote target does not support vFlashDone"));
8553 case PACKET_ERROR:
8554 error (_("Error finishing flash operation"));
8555 default:
8556 break;
8557 }
8558}
8559
c906108c 8560static void
fba45db2 8561remote_files_info (struct target_ops *ignore)
c906108c
SS
8562{
8563 puts_filtered ("Debugging a target over a serial line.\n");
8564}
8565\f
8566/* Stuff for dealing with the packets which are part of this protocol.
8567 See comment at top of file for details. */
8568
1927e618
PA
8569/* Close/unpush the remote target, and throw a TARGET_CLOSE_ERROR
8570 error to higher layers. Called when a serial error is detected.
8571 The exception message is STRING, followed by a colon and a blank,
d6cb50a2
JK
8572 the system error message for errno at function entry and final dot
8573 for output compatibility with throw_perror_with_name. */
1927e618
PA
8574
8575static void
8576unpush_and_perror (const char *string)
8577{
d6cb50a2 8578 int saved_errno = errno;
1927e618
PA
8579
8580 remote_unpush_target ();
d6cb50a2
JK
8581 throw_error (TARGET_CLOSE_ERROR, "%s: %s.", string,
8582 safe_strerror (saved_errno));
1927e618
PA
8583}
8584
048094ac
PA
8585/* Read a single character from the remote end. The current quit
8586 handler is overridden to avoid quitting in the middle of packet
8587 sequence, as that would break communication with the remote server.
8588 See remote_serial_quit_handler for more detail. */
c906108c
SS
8589
8590static int
fba45db2 8591readchar (int timeout)
c906108c
SS
8592{
8593 int ch;
5d93a237 8594 struct remote_state *rs = get_remote_state ();
048094ac
PA
8595 struct cleanup *old_chain;
8596
8597 old_chain = make_cleanup_override_quit_handler (remote_serial_quit_handler);
8598
8599 rs->got_ctrlc_during_io = 0;
c906108c 8600
5d93a237 8601 ch = serial_readchar (rs->remote_desc, timeout);
c906108c 8602
048094ac
PA
8603 if (rs->got_ctrlc_during_io)
8604 set_quit_flag ();
8605
8606 do_cleanups (old_chain);
8607
2acceee2 8608 if (ch >= 0)
0876f84a 8609 return ch;
2acceee2
JM
8610
8611 switch ((enum serial_rc) ch)
c906108c
SS
8612 {
8613 case SERIAL_EOF:
78a095c3 8614 remote_unpush_target ();
598d3636 8615 throw_error (TARGET_CLOSE_ERROR, _("Remote connection closed"));
2acceee2 8616 /* no return */
c906108c 8617 case SERIAL_ERROR:
1927e618
PA
8618 unpush_and_perror (_("Remote communication error. "
8619 "Target disconnected."));
2acceee2 8620 /* no return */
c906108c 8621 case SERIAL_TIMEOUT:
2acceee2 8622 break;
c906108c 8623 }
2acceee2 8624 return ch;
c906108c
SS
8625}
8626
c33e31fd 8627/* Wrapper for serial_write that closes the target and throws if
048094ac
PA
8628 writing fails. The current quit handler is overridden to avoid
8629 quitting in the middle of packet sequence, as that would break
8630 communication with the remote server. See
8631 remote_serial_quit_handler for more detail. */
c33e31fd
PA
8632
8633static void
8634remote_serial_write (const char *str, int len)
8635{
5d93a237 8636 struct remote_state *rs = get_remote_state ();
048094ac
PA
8637 struct cleanup *old_chain;
8638
8639 old_chain = make_cleanup_override_quit_handler (remote_serial_quit_handler);
8640
8641 rs->got_ctrlc_during_io = 0;
5d93a237
TT
8642
8643 if (serial_write (rs->remote_desc, str, len))
c33e31fd 8644 {
1927e618
PA
8645 unpush_and_perror (_("Remote communication error. "
8646 "Target disconnected."));
c33e31fd 8647 }
048094ac
PA
8648
8649 if (rs->got_ctrlc_during_io)
8650 set_quit_flag ();
8651
8652 do_cleanups (old_chain);
c33e31fd
PA
8653}
8654
6d820c5c
DJ
8655/* Send the command in *BUF to the remote machine, and read the reply
8656 into *BUF. Report an error if we get an error reply. Resize
8657 *BUF using xrealloc if necessary to hold the result, and update
8658 *SIZEOF_BUF. */
c906108c
SS
8659
8660static void
6d820c5c
DJ
8661remote_send (char **buf,
8662 long *sizeof_buf)
c906108c 8663{
6d820c5c 8664 putpkt (*buf);
c2d11a7d 8665 getpkt (buf, sizeof_buf, 0);
c906108c 8666
6d820c5c
DJ
8667 if ((*buf)[0] == 'E')
8668 error (_("Remote failure reply: %s"), *buf);
c906108c
SS
8669}
8670
b3ced9ba
PA
8671/* Return a string representing an escaped version of BUF, of len N.
8672 E.g. \n is converted to \\n, \t to \\t, etc. */
6e5abd65 8673
b3ced9ba 8674static std::string
6e5abd65
PA
8675escape_buffer (const char *buf, int n)
8676{
8677 struct cleanup *old_chain;
8678 struct ui_file *stb;
6e5abd65
PA
8679
8680 stb = mem_fileopen ();
8681 old_chain = make_cleanup_ui_file_delete (stb);
8682
6ef284bd 8683 fputstrn_unfiltered (buf, n, '\\', stb);
b3ced9ba 8684 std::string str = ui_file_as_string (stb);
6e5abd65
PA
8685 do_cleanups (old_chain);
8686 return str;
8687}
8688
c906108c
SS
8689/* Display a null-terminated packet on stdout, for debugging, using C
8690 string notation. */
8691
8692static void
baa336ce 8693print_packet (const char *buf)
c906108c
SS
8694{
8695 puts_filtered ("\"");
43e526b9 8696 fputstr_filtered (buf, '"', gdb_stdout);
c906108c
SS
8697 puts_filtered ("\"");
8698}
8699
8700int
baa336ce 8701putpkt (const char *buf)
c906108c
SS
8702{
8703 return putpkt_binary (buf, strlen (buf));
8704}
8705
8706/* Send a packet to the remote machine, with error checking. The data
23860348 8707 of the packet is in BUF. The string in BUF can be at most
ea9c271d 8708 get_remote_packet_size () - 5 to account for the $, # and checksum,
23860348
MS
8709 and for a possible /0 if we are debugging (remote_debug) and want
8710 to print the sent packet as a string. */
c906108c
SS
8711
8712static int
baa336ce 8713putpkt_binary (const char *buf, int cnt)
c906108c 8714{
2d717e4f 8715 struct remote_state *rs = get_remote_state ();
c906108c
SS
8716 int i;
8717 unsigned char csum = 0;
224c3ddb 8718 char *buf2 = (char *) xmalloc (cnt + 6);
a5c0808e 8719 struct cleanup *old_chain = make_cleanup (xfree, buf2);
085dd6e6 8720
c906108c
SS
8721 int ch;
8722 int tcount = 0;
8723 char *p;
8724
e24a49d8
PA
8725 /* Catch cases like trying to read memory or listing threads while
8726 we're waiting for a stop reply. The remote server wouldn't be
8727 ready to handle this request, so we'd hang and timeout. We don't
8728 have to worry about this in synchronous mode, because in that
8729 case it's not possible to issue a command while the target is
74531fed
PA
8730 running. This is not a problem in non-stop mode, because in that
8731 case, the stub is always ready to process serial input. */
6efcd9a8
PA
8732 if (!target_is_non_stop_p ()
8733 && target_is_async_p ()
8734 && rs->waiting_for_stop_reply)
9597b22a
DE
8735 {
8736 error (_("Cannot execute this command while the target is running.\n"
8737 "Use the \"interrupt\" command to stop the target\n"
8738 "and then try again."));
8739 }
e24a49d8 8740
2d717e4f
DJ
8741 /* We're sending out a new packet. Make sure we don't look at a
8742 stale cached response. */
8743 rs->cached_wait_status = 0;
8744
c906108c
SS
8745 /* Copy the packet into buffer BUF2, encapsulating it
8746 and giving it a checksum. */
8747
c906108c
SS
8748 p = buf2;
8749 *p++ = '$';
8750
8751 for (i = 0; i < cnt; i++)
8752 {
8753 csum += buf[i];
8754 *p++ = buf[i];
8755 }
8756 *p++ = '#';
8757 *p++ = tohex ((csum >> 4) & 0xf);
8758 *p++ = tohex (csum & 0xf);
8759
8760 /* Send it over and over until we get a positive ack. */
8761
8762 while (1)
8763 {
8764 int started_error_output = 0;
8765
8766 if (remote_debug)
8767 {
8768 *p = '\0';
b3ced9ba 8769
6f8976bf
YQ
8770 int len = (int) (p - buf2);
8771
8772 std::string str
8773 = escape_buffer (buf2, std::min (len, REMOTE_DEBUG_MAX_CHAR));
8774
8775 fprintf_unfiltered (gdb_stdlog, "Sending packet: %s", str.c_str ());
8776
8777 if (str.length () > REMOTE_DEBUG_MAX_CHAR)
8778 {
8779 fprintf_unfiltered (gdb_stdlog, "[%zu bytes omitted]",
8780 str.length () - REMOTE_DEBUG_MAX_CHAR);
8781 }
8782
8783 fprintf_unfiltered (gdb_stdlog, "...");
b3ced9ba 8784
0f71a2f6 8785 gdb_flush (gdb_stdlog);
c906108c 8786 }
c33e31fd 8787 remote_serial_write (buf2, p - buf2);
c906108c 8788
a6f3e723
SL
8789 /* If this is a no acks version of the remote protocol, send the
8790 packet and move on. */
8791 if (rs->noack_mode)
8792 break;
8793
74531fed
PA
8794 /* Read until either a timeout occurs (-2) or '+' is read.
8795 Handle any notification that arrives in the mean time. */
c906108c
SS
8796 while (1)
8797 {
8798 ch = readchar (remote_timeout);
8799
c5aa993b 8800 if (remote_debug)
c906108c
SS
8801 {
8802 switch (ch)
8803 {
8804 case '+':
1216fa2c 8805 case '-':
c906108c
SS
8806 case SERIAL_TIMEOUT:
8807 case '$':
74531fed 8808 case '%':
c906108c
SS
8809 if (started_error_output)
8810 {
8811 putchar_unfiltered ('\n');
8812 started_error_output = 0;
8813 }
8814 }
8815 }
8816
8817 switch (ch)
8818 {
8819 case '+':
8820 if (remote_debug)
0f71a2f6 8821 fprintf_unfiltered (gdb_stdlog, "Ack\n");
a5c0808e 8822 do_cleanups (old_chain);
c906108c 8823 return 1;
1216fa2c
AC
8824 case '-':
8825 if (remote_debug)
8826 fprintf_unfiltered (gdb_stdlog, "Nak\n");
a17d146e 8827 /* FALLTHROUGH */
c906108c 8828 case SERIAL_TIMEOUT:
c5aa993b 8829 tcount++;
c906108c 8830 if (tcount > 3)
a5c0808e
PA
8831 {
8832 do_cleanups (old_chain);
8833 return 0;
8834 }
23860348 8835 break; /* Retransmit buffer. */
c906108c
SS
8836 case '$':
8837 {
40e3f985 8838 if (remote_debug)
2bc416ba 8839 fprintf_unfiltered (gdb_stdlog,
23860348 8840 "Packet instead of Ack, ignoring it\n");
d6f7abdf
AC
8841 /* It's probably an old response sent because an ACK
8842 was lost. Gobble up the packet and ack it so it
8843 doesn't get retransmitted when we resend this
8844 packet. */
6d820c5c 8845 skip_frame ();
c33e31fd 8846 remote_serial_write ("+", 1);
23860348 8847 continue; /* Now, go look for +. */
c906108c 8848 }
74531fed
PA
8849
8850 case '%':
8851 {
8852 int val;
8853
8854 /* If we got a notification, handle it, and go back to looking
8855 for an ack. */
8856 /* We've found the start of a notification. Now
8857 collect the data. */
8858 val = read_frame (&rs->buf, &rs->buf_size);
8859 if (val >= 0)
8860 {
8861 if (remote_debug)
8862 {
b3ced9ba 8863 std::string str = escape_buffer (rs->buf, val);
6e5abd65 8864
6e5abd65
PA
8865 fprintf_unfiltered (gdb_stdlog,
8866 " Notification received: %s\n",
b3ced9ba 8867 str.c_str ());
74531fed 8868 }
5965e028 8869 handle_notification (rs->notif_state, rs->buf);
74531fed
PA
8870 /* We're in sync now, rewait for the ack. */
8871 tcount = 0;
8872 }
8873 else
8874 {
8875 if (remote_debug)
8876 {
8877 if (!started_error_output)
8878 {
8879 started_error_output = 1;
8880 fprintf_unfiltered (gdb_stdlog, "putpkt: Junk: ");
8881 }
8882 fputc_unfiltered (ch & 0177, gdb_stdlog);
8883 fprintf_unfiltered (gdb_stdlog, "%s", rs->buf);
8884 }
8885 }
8886 continue;
8887 }
8888 /* fall-through */
c906108c
SS
8889 default:
8890 if (remote_debug)
8891 {
8892 if (!started_error_output)
8893 {
8894 started_error_output = 1;
0f71a2f6 8895 fprintf_unfiltered (gdb_stdlog, "putpkt: Junk: ");
c906108c 8896 }
0f71a2f6 8897 fputc_unfiltered (ch & 0177, gdb_stdlog);
c906108c
SS
8898 }
8899 continue;
8900 }
23860348 8901 break; /* Here to retransmit. */
c906108c
SS
8902 }
8903
8904#if 0
8905 /* This is wrong. If doing a long backtrace, the user should be
c5aa993b
JM
8906 able to get out next time we call QUIT, without anything as
8907 violent as interrupt_query. If we want to provide a way out of
8908 here without getting to the next QUIT, it should be based on
8909 hitting ^C twice as in remote_wait. */
c906108c
SS
8910 if (quit_flag)
8911 {
8912 quit_flag = 0;
8913 interrupt_query ();
8914 }
8915#endif
8916 }
a5c0808e
PA
8917
8918 do_cleanups (old_chain);
a6f3e723 8919 return 0;
c906108c
SS
8920}
8921
6d820c5c
DJ
8922/* Come here after finding the start of a frame when we expected an
8923 ack. Do our best to discard the rest of this packet. */
8924
8925static void
8926skip_frame (void)
8927{
8928 int c;
8929
8930 while (1)
8931 {
8932 c = readchar (remote_timeout);
8933 switch (c)
8934 {
8935 case SERIAL_TIMEOUT:
8936 /* Nothing we can do. */
8937 return;
8938 case '#':
8939 /* Discard the two bytes of checksum and stop. */
8940 c = readchar (remote_timeout);
8941 if (c >= 0)
8942 c = readchar (remote_timeout);
8943
8944 return;
8945 case '*': /* Run length encoding. */
8946 /* Discard the repeat count. */
8947 c = readchar (remote_timeout);
8948 if (c < 0)
8949 return;
8950 break;
8951 default:
8952 /* A regular character. */
8953 break;
8954 }
8955 }
8956}
8957
c906108c 8958/* Come here after finding the start of the frame. Collect the rest
6d820c5c
DJ
8959 into *BUF, verifying the checksum, length, and handling run-length
8960 compression. NUL terminate the buffer. If there is not enough room,
8961 expand *BUF using xrealloc.
c906108c 8962
c2d11a7d
JM
8963 Returns -1 on error, number of characters in buffer (ignoring the
8964 trailing NULL) on success. (could be extended to return one of the
23860348 8965 SERIAL status indications). */
c2d11a7d
JM
8966
8967static long
6d820c5c
DJ
8968read_frame (char **buf_p,
8969 long *sizeof_buf)
c906108c
SS
8970{
8971 unsigned char csum;
c2d11a7d 8972 long bc;
c906108c 8973 int c;
6d820c5c 8974 char *buf = *buf_p;
a6f3e723 8975 struct remote_state *rs = get_remote_state ();
c906108c
SS
8976
8977 csum = 0;
c2d11a7d 8978 bc = 0;
c906108c
SS
8979
8980 while (1)
8981 {
8982 c = readchar (remote_timeout);
c906108c
SS
8983 switch (c)
8984 {
8985 case SERIAL_TIMEOUT:
8986 if (remote_debug)
0f71a2f6 8987 fputs_filtered ("Timeout in mid-packet, retrying\n", gdb_stdlog);
c2d11a7d 8988 return -1;
c906108c
SS
8989 case '$':
8990 if (remote_debug)
0f71a2f6
JM
8991 fputs_filtered ("Saw new packet start in middle of old one\n",
8992 gdb_stdlog);
23860348 8993 return -1; /* Start a new packet, count retries. */
c906108c
SS
8994 case '#':
8995 {
8996 unsigned char pktcsum;
e1b09194
AC
8997 int check_0 = 0;
8998 int check_1 = 0;
c906108c 8999
c2d11a7d 9000 buf[bc] = '\0';
c906108c 9001
e1b09194
AC
9002 check_0 = readchar (remote_timeout);
9003 if (check_0 >= 0)
9004 check_1 = readchar (remote_timeout);
802188a7 9005
e1b09194
AC
9006 if (check_0 == SERIAL_TIMEOUT || check_1 == SERIAL_TIMEOUT)
9007 {
9008 if (remote_debug)
2bc416ba 9009 fputs_filtered ("Timeout in checksum, retrying\n",
23860348 9010 gdb_stdlog);
e1b09194
AC
9011 return -1;
9012 }
9013 else if (check_0 < 0 || check_1 < 0)
40e3f985
FN
9014 {
9015 if (remote_debug)
2bc416ba 9016 fputs_filtered ("Communication error in checksum\n",
23860348 9017 gdb_stdlog);
40e3f985
FN
9018 return -1;
9019 }
c906108c 9020
a6f3e723
SL
9021 /* Don't recompute the checksum; with no ack packets we
9022 don't have any way to indicate a packet retransmission
9023 is necessary. */
9024 if (rs->noack_mode)
9025 return bc;
9026
e1b09194 9027 pktcsum = (fromhex (check_0) << 4) | fromhex (check_1);
c906108c 9028 if (csum == pktcsum)
c2d11a7d 9029 return bc;
c906108c 9030
c5aa993b 9031 if (remote_debug)
c906108c 9032 {
b3ced9ba 9033 std::string str = escape_buffer (buf, bc);
6e5abd65 9034
6e5abd65 9035 fprintf_unfiltered (gdb_stdlog,
3e43a32a
MS
9036 "Bad checksum, sentsum=0x%x, "
9037 "csum=0x%x, buf=%s\n",
b3ced9ba 9038 pktcsum, csum, str.c_str ());
c906108c 9039 }
c2d11a7d 9040 /* Number of characters in buffer ignoring trailing
23860348 9041 NULL. */
c2d11a7d 9042 return -1;
c906108c 9043 }
23860348 9044 case '*': /* Run length encoding. */
c2c6d25f
JM
9045 {
9046 int repeat;
c906108c 9047
a744cf53 9048 csum += c;
b4501125
AC
9049 c = readchar (remote_timeout);
9050 csum += c;
23860348 9051 repeat = c - ' ' + 3; /* Compute repeat count. */
c906108c 9052
23860348 9053 /* The character before ``*'' is repeated. */
c2d11a7d 9054
6d820c5c 9055 if (repeat > 0 && repeat <= 255 && bc > 0)
c2c6d25f 9056 {
6d820c5c
DJ
9057 if (bc + repeat - 1 >= *sizeof_buf - 1)
9058 {
9059 /* Make some more room in the buffer. */
9060 *sizeof_buf += repeat;
224c3ddb 9061 *buf_p = (char *) xrealloc (*buf_p, *sizeof_buf);
6d820c5c
DJ
9062 buf = *buf_p;
9063 }
9064
c2d11a7d
JM
9065 memset (&buf[bc], buf[bc - 1], repeat);
9066 bc += repeat;
c2c6d25f
JM
9067 continue;
9068 }
9069
c2d11a7d 9070 buf[bc] = '\0';
6d820c5c 9071 printf_filtered (_("Invalid run length encoding: %s\n"), buf);
c2d11a7d 9072 return -1;
c2c6d25f 9073 }
c906108c 9074 default:
6d820c5c 9075 if (bc >= *sizeof_buf - 1)
c906108c 9076 {
6d820c5c
DJ
9077 /* Make some more room in the buffer. */
9078 *sizeof_buf *= 2;
224c3ddb 9079 *buf_p = (char *) xrealloc (*buf_p, *sizeof_buf);
6d820c5c 9080 buf = *buf_p;
c906108c
SS
9081 }
9082
6d820c5c
DJ
9083 buf[bc++] = c;
9084 csum += c;
9085 continue;
c906108c
SS
9086 }
9087 }
9088}
9089
9090/* Read a packet from the remote machine, with error checking, and
6d820c5c
DJ
9091 store it in *BUF. Resize *BUF using xrealloc if necessary to hold
9092 the result, and update *SIZEOF_BUF. If FOREVER, wait forever
9093 rather than timing out; this is used (in synchronous mode) to wait
9094 for a target that is is executing user code to stop. */
d9fcf2fb
JM
9095/* FIXME: ezannoni 2000-02-01 this wrapper is necessary so that we
9096 don't have to change all the calls to getpkt to deal with the
9097 return value, because at the moment I don't know what the right
23860348 9098 thing to do it for those. */
c906108c 9099void
6d820c5c
DJ
9100getpkt (char **buf,
9101 long *sizeof_buf,
c2d11a7d 9102 int forever)
d9fcf2fb 9103{
54887903 9104 getpkt_sane (buf, sizeof_buf, forever);
d9fcf2fb
JM
9105}
9106
9107
9108/* Read a packet from the remote machine, with error checking, and
6d820c5c
DJ
9109 store it in *BUF. Resize *BUF using xrealloc if necessary to hold
9110 the result, and update *SIZEOF_BUF. If FOREVER, wait forever
9111 rather than timing out; this is used (in synchronous mode) to wait
9112 for a target that is is executing user code to stop. If FOREVER ==
9113 0, this function is allowed to time out gracefully and return an
74531fed
PA
9114 indication of this to the caller. Otherwise return the number of
9115 bytes read. If EXPECTING_NOTIF, consider receiving a notification
fee9eda9
YQ
9116 enough reason to return to the caller. *IS_NOTIF is an output
9117 boolean that indicates whether *BUF holds a notification or not
9118 (a regular packet). */
74531fed 9119
3172dc30 9120static int
74531fed 9121getpkt_or_notif_sane_1 (char **buf, long *sizeof_buf, int forever,
fee9eda9 9122 int expecting_notif, int *is_notif)
c906108c 9123{
2d717e4f 9124 struct remote_state *rs = get_remote_state ();
c906108c
SS
9125 int c;
9126 int tries;
9127 int timeout;
df4b58fe 9128 int val = -1;
c906108c 9129
2d717e4f
DJ
9130 /* We're reading a new response. Make sure we don't look at a
9131 previously cached response. */
9132 rs->cached_wait_status = 0;
9133
6d820c5c 9134 strcpy (*buf, "timeout");
c906108c
SS
9135
9136 if (forever)
74531fed
PA
9137 timeout = watchdog > 0 ? watchdog : -1;
9138 else if (expecting_notif)
9139 timeout = 0; /* There should already be a char in the buffer. If
9140 not, bail out. */
c906108c
SS
9141 else
9142 timeout = remote_timeout;
9143
9144#define MAX_TRIES 3
9145
74531fed
PA
9146 /* Process any number of notifications, and then return when
9147 we get a packet. */
9148 for (;;)
c906108c 9149 {
d9c43928 9150 /* If we get a timeout or bad checksum, retry up to MAX_TRIES
74531fed
PA
9151 times. */
9152 for (tries = 1; tries <= MAX_TRIES; tries++)
c906108c 9153 {
74531fed
PA
9154 /* This can loop forever if the remote side sends us
9155 characters continuously, but if it pauses, we'll get
9156 SERIAL_TIMEOUT from readchar because of timeout. Then
9157 we'll count that as a retry.
9158
9159 Note that even when forever is set, we will only wait
9160 forever prior to the start of a packet. After that, we
9161 expect characters to arrive at a brisk pace. They should
9162 show up within remote_timeout intervals. */
9163 do
9164 c = readchar (timeout);
9165 while (c != SERIAL_TIMEOUT && c != '$' && c != '%');
c906108c
SS
9166
9167 if (c == SERIAL_TIMEOUT)
9168 {
74531fed
PA
9169 if (expecting_notif)
9170 return -1; /* Don't complain, it's normal to not get
9171 anything in this case. */
9172
23860348 9173 if (forever) /* Watchdog went off? Kill the target. */
c906108c 9174 {
78a095c3 9175 remote_unpush_target ();
598d3636
JK
9176 throw_error (TARGET_CLOSE_ERROR,
9177 _("Watchdog timeout has expired. "
9178 "Target detached."));
c906108c 9179 }
c906108c 9180 if (remote_debug)
0f71a2f6 9181 fputs_filtered ("Timed out.\n", gdb_stdlog);
c906108c 9182 }
74531fed
PA
9183 else
9184 {
9185 /* We've found the start of a packet or notification.
9186 Now collect the data. */
9187 val = read_frame (buf, sizeof_buf);
9188 if (val >= 0)
9189 break;
9190 }
9191
c33e31fd 9192 remote_serial_write ("-", 1);
c906108c 9193 }
c906108c 9194
74531fed
PA
9195 if (tries > MAX_TRIES)
9196 {
9197 /* We have tried hard enough, and just can't receive the
9198 packet/notification. Give up. */
9199 printf_unfiltered (_("Ignoring packet error, continuing...\n"));
c906108c 9200
74531fed
PA
9201 /* Skip the ack char if we're in no-ack mode. */
9202 if (!rs->noack_mode)
c33e31fd 9203 remote_serial_write ("+", 1);
74531fed
PA
9204 return -1;
9205 }
c906108c 9206
74531fed
PA
9207 /* If we got an ordinary packet, return that to our caller. */
9208 if (c == '$')
c906108c
SS
9209 {
9210 if (remote_debug)
43e526b9 9211 {
6f8976bf
YQ
9212 std::string str
9213 = escape_buffer (*buf,
9214 std::min (val, REMOTE_DEBUG_MAX_CHAR));
9215
9216 fprintf_unfiltered (gdb_stdlog, "Packet received: %s",
9217 str.c_str ());
9218
9219 if (str.length () > REMOTE_DEBUG_MAX_CHAR)
9220 {
9221 fprintf_unfiltered (gdb_stdlog, "[%zu bytes omitted]",
9222 str.length () - REMOTE_DEBUG_MAX_CHAR);
9223 }
6e5abd65 9224
6f8976bf 9225 fprintf_unfiltered (gdb_stdlog, "\n");
43e526b9 9226 }
a6f3e723
SL
9227
9228 /* Skip the ack char if we're in no-ack mode. */
9229 if (!rs->noack_mode)
c33e31fd 9230 remote_serial_write ("+", 1);
fee9eda9
YQ
9231 if (is_notif != NULL)
9232 *is_notif = 0;
0876f84a 9233 return val;
c906108c
SS
9234 }
9235
74531fed
PA
9236 /* If we got a notification, handle it, and go back to looking
9237 for a packet. */
9238 else
9239 {
9240 gdb_assert (c == '%');
9241
9242 if (remote_debug)
9243 {
b3ced9ba 9244 std::string str = escape_buffer (*buf, val);
6e5abd65 9245
6e5abd65
PA
9246 fprintf_unfiltered (gdb_stdlog,
9247 " Notification received: %s\n",
b3ced9ba 9248 str.c_str ());
74531fed 9249 }
fee9eda9
YQ
9250 if (is_notif != NULL)
9251 *is_notif = 1;
c906108c 9252
5965e028 9253 handle_notification (rs->notif_state, *buf);
c906108c 9254
74531fed 9255 /* Notifications require no acknowledgement. */
a6f3e723 9256
74531fed 9257 if (expecting_notif)
fee9eda9 9258 return val;
74531fed
PA
9259 }
9260 }
9261}
9262
9263static int
9264getpkt_sane (char **buf, long *sizeof_buf, int forever)
9265{
fee9eda9 9266 return getpkt_or_notif_sane_1 (buf, sizeof_buf, forever, 0, NULL);
74531fed
PA
9267}
9268
9269static int
fee9eda9
YQ
9270getpkt_or_notif_sane (char **buf, long *sizeof_buf, int forever,
9271 int *is_notif)
74531fed 9272{
fee9eda9
YQ
9273 return getpkt_or_notif_sane_1 (buf, sizeof_buf, forever, 1,
9274 is_notif);
c906108c 9275}
74531fed 9276
cbb8991c
DB
9277/* Check whether EVENT is a fork event for the process specified
9278 by the pid passed in DATA, and if it is, kill the fork child. */
9279
9280static int
9281kill_child_of_pending_fork (QUEUE (stop_reply_p) *q,
9282 QUEUE_ITER (stop_reply_p) *iter,
9283 stop_reply_p event,
9284 void *data)
9285{
19ba03f4 9286 struct queue_iter_param *param = (struct queue_iter_param *) data;
cbb8991c
DB
9287 int parent_pid = *(int *) param->input;
9288
9289 if (is_pending_fork_parent (&event->ws, parent_pid, event->ptid))
9290 {
9291 struct remote_state *rs = get_remote_state ();
9292 int child_pid = ptid_get_pid (event->ws.value.related_pid);
9293 int res;
9294
9295 res = remote_vkill (child_pid, rs);
9296 if (res != 0)
9297 error (_("Can't kill fork child process %d"), child_pid);
9298 }
9299
9300 return 1;
9301}
9302
9303/* Kill any new fork children of process PID that haven't been
9304 processed by follow_fork. */
9305
9306static void
9307kill_new_fork_children (int pid, struct remote_state *rs)
9308{
9309 struct thread_info *thread;
9310 struct notif_client *notif = &notif_client_stop;
9311 struct queue_iter_param param;
9312
9313 /* Kill the fork child threads of any threads in process PID
9314 that are stopped at a fork event. */
9315 ALL_NON_EXITED_THREADS (thread)
9316 {
9317 struct target_waitstatus *ws = &thread->pending_follow;
9318
9319 if (is_pending_fork_parent (ws, pid, thread->ptid))
9320 {
9321 struct remote_state *rs = get_remote_state ();
9322 int child_pid = ptid_get_pid (ws->value.related_pid);
9323 int res;
9324
9325 res = remote_vkill (child_pid, rs);
9326 if (res != 0)
9327 error (_("Can't kill fork child process %d"), child_pid);
9328 }
9329 }
9330
9331 /* Check for any pending fork events (not reported or processed yet)
9332 in process PID and kill those fork child threads as well. */
9333 remote_notif_get_pending_events (notif);
9334 param.input = &pid;
9335 param.output = NULL;
9336 QUEUE_iterate (stop_reply_p, stop_reply_queue,
9337 kill_child_of_pending_fork, &param);
9338}
9339
c906108c 9340\f
8020350c
DB
9341/* Target hook to kill the current inferior. */
9342
c906108c 9343static void
7d85a9c0 9344remote_kill (struct target_ops *ops)
43ff13b4 9345{
8020350c
DB
9346 int res = -1;
9347 int pid = ptid_get_pid (inferior_ptid);
9348 struct remote_state *rs = get_remote_state ();
0fdf84ca 9349
8020350c 9350 if (packet_support (PACKET_vKill) != PACKET_DISABLE)
0fdf84ca 9351 {
8020350c
DB
9352 /* If we're stopped while forking and we haven't followed yet,
9353 kill the child task. We need to do this before killing the
9354 parent task because if this is a vfork then the parent will
9355 be sleeping. */
9356 kill_new_fork_children (pid, rs);
9357
9358 res = remote_vkill (pid, rs);
9359 if (res == 0)
0fdf84ca 9360 {
bc1e6c81 9361 target_mourn_inferior (inferior_ptid);
0fdf84ca
PA
9362 return;
9363 }
8020350c 9364 }
0fdf84ca 9365
8020350c
DB
9366 /* If we are in 'target remote' mode and we are killing the only
9367 inferior, then we will tell gdbserver to exit and unpush the
9368 target. */
9369 if (res == -1 && !remote_multi_process_p (rs)
9370 && number_of_live_inferiors () == 1)
9371 {
9372 remote_kill_k ();
9373
9374 /* We've killed the remote end, we get to mourn it. If we are
9375 not in extended mode, mourning the inferior also unpushes
9376 remote_ops from the target stack, which closes the remote
9377 connection. */
bc1e6c81 9378 target_mourn_inferior (inferior_ptid);
8020350c
DB
9379
9380 return;
0fdf84ca 9381 }
43ff13b4 9382
8020350c 9383 error (_("Can't kill process"));
43ff13b4
JM
9384}
9385
8020350c
DB
9386/* Send a kill request to the target using the 'vKill' packet. */
9387
82f73884
PA
9388static int
9389remote_vkill (int pid, struct remote_state *rs)
9390{
4082afcc 9391 if (packet_support (PACKET_vKill) == PACKET_DISABLE)
82f73884
PA
9392 return -1;
9393
9394 /* Tell the remote target to detach. */
bba74b36 9395 xsnprintf (rs->buf, get_remote_packet_size (), "vKill;%x", pid);
82f73884
PA
9396 putpkt (rs->buf);
9397 getpkt (&rs->buf, &rs->buf_size, 0);
9398
4082afcc
PA
9399 switch (packet_ok (rs->buf,
9400 &remote_protocol_packets[PACKET_vKill]))
9401 {
9402 case PACKET_OK:
9403 return 0;
9404 case PACKET_ERROR:
9405 return 1;
9406 case PACKET_UNKNOWN:
9407 return -1;
9408 default:
9409 internal_error (__FILE__, __LINE__, _("Bad result from packet_ok"));
9410 }
82f73884
PA
9411}
9412
8020350c
DB
9413/* Send a kill request to the target using the 'k' packet. */
9414
82f73884 9415static void
8020350c 9416remote_kill_k (void)
82f73884 9417{
8020350c
DB
9418 /* Catch errors so the user can quit from gdb even when we
9419 aren't on speaking terms with the remote system. */
9420 TRY
82f73884 9421 {
82f73884 9422 putpkt ("k");
82f73884 9423 }
8020350c
DB
9424 CATCH (ex, RETURN_MASK_ERROR)
9425 {
9426 if (ex.error == TARGET_CLOSE_ERROR)
9427 {
9428 /* If we got an (EOF) error that caused the target
9429 to go away, then we're done, that's what we wanted.
9430 "k" is susceptible to cause a premature EOF, given
9431 that the remote server isn't actually required to
9432 reply to "k", and it can happen that it doesn't
9433 even get to reply ACK to the "k". */
9434 return;
9435 }
82f73884 9436
8020350c
DB
9437 /* Otherwise, something went wrong. We didn't actually kill
9438 the target. Just propagate the exception, and let the
9439 user or higher layers decide what to do. */
9440 throw_exception (ex);
9441 }
9442 END_CATCH
82f73884
PA
9443}
9444
c906108c 9445static void
20f796c9 9446remote_mourn (struct target_ops *target)
c906108c 9447{
8020350c 9448 struct remote_state *rs = get_remote_state ();
ce5ce7ed 9449
8020350c
DB
9450 /* In 'target remote' mode with one inferior, we close the connection. */
9451 if (!rs->extended && number_of_live_inferiors () <= 1)
9452 {
9453 unpush_target (target);
c906108c 9454
8020350c
DB
9455 /* remote_close takes care of doing most of the clean up. */
9456 generic_mourn_inferior ();
9457 return;
9458 }
c906108c 9459
e24a49d8
PA
9460 /* In case we got here due to an error, but we're going to stay
9461 connected. */
9462 rs->waiting_for_stop_reply = 0;
9463
dc1981d7
PA
9464 /* If the current general thread belonged to the process we just
9465 detached from or has exited, the remote side current general
9466 thread becomes undefined. Considering a case like this:
9467
9468 - We just got here due to a detach.
9469 - The process that we're detaching from happens to immediately
9470 report a global breakpoint being hit in non-stop mode, in the
9471 same thread we had selected before.
9472 - GDB attaches to this process again.
9473 - This event happens to be the next event we handle.
9474
9475 GDB would consider that the current general thread didn't need to
9476 be set on the stub side (with Hg), since for all it knew,
9477 GENERAL_THREAD hadn't changed.
9478
9479 Notice that although in all-stop mode, the remote server always
9480 sets the current thread to the thread reporting the stop event,
9481 that doesn't happen in non-stop mode; in non-stop, the stub *must
9482 not* change the current thread when reporting a breakpoint hit,
9483 due to the decoupling of event reporting and event handling.
9484
9485 To keep things simple, we always invalidate our notion of the
9486 current thread. */
47f8a51d 9487 record_currthread (rs, minus_one_ptid);
dc1981d7 9488
8020350c 9489 /* Call common code to mark the inferior as not running. */
48aa3c27
PA
9490 generic_mourn_inferior ();
9491
d729566a 9492 if (!have_inferiors ())
2d717e4f 9493 {
82f73884
PA
9494 if (!remote_multi_process_p (rs))
9495 {
9496 /* Check whether the target is running now - some remote stubs
9497 automatically restart after kill. */
9498 putpkt ("?");
9499 getpkt (&rs->buf, &rs->buf_size, 0);
9500
9501 if (rs->buf[0] == 'S' || rs->buf[0] == 'T')
9502 {
3e43a32a
MS
9503 /* Assume that the target has been restarted. Set
9504 inferior_ptid so that bits of core GDB realizes
9505 there's something here, e.g., so that the user can
9506 say "kill" again. */
82f73884
PA
9507 inferior_ptid = magic_null_ptid;
9508 }
82f73884 9509 }
2d717e4f
DJ
9510 }
9511}
c906108c 9512
03583c20 9513static int
2bfc0540 9514extended_remote_supports_disable_randomization (struct target_ops *self)
03583c20 9515{
4082afcc 9516 return packet_support (PACKET_QDisableRandomization) == PACKET_ENABLE;
03583c20
UW
9517}
9518
9519static void
9520extended_remote_disable_randomization (int val)
9521{
9522 struct remote_state *rs = get_remote_state ();
9523 char *reply;
9524
bba74b36
YQ
9525 xsnprintf (rs->buf, get_remote_packet_size (), "QDisableRandomization:%x",
9526 val);
03583c20
UW
9527 putpkt (rs->buf);
9528 reply = remote_get_noisy_reply (&target_buf, &target_buf_size);
9529 if (*reply == '\0')
9530 error (_("Target does not support QDisableRandomization."));
9531 if (strcmp (reply, "OK") != 0)
9532 error (_("Bogus QDisableRandomization reply from target: %s"), reply);
9533}
9534
2d717e4f
DJ
9535static int
9536extended_remote_run (char *args)
9537{
9538 struct remote_state *rs = get_remote_state ();
2d717e4f 9539 int len;
94585166 9540 const char *remote_exec_file = get_remote_exec_file ();
c906108c 9541
2d717e4f
DJ
9542 /* If the user has disabled vRun support, or we have detected that
9543 support is not available, do not try it. */
4082afcc 9544 if (packet_support (PACKET_vRun) == PACKET_DISABLE)
2d717e4f 9545 return -1;
424163ea 9546
2d717e4f
DJ
9547 strcpy (rs->buf, "vRun;");
9548 len = strlen (rs->buf);
c906108c 9549
2d717e4f
DJ
9550 if (strlen (remote_exec_file) * 2 + len >= get_remote_packet_size ())
9551 error (_("Remote file name too long for run packet"));
9f1b45b0
TT
9552 len += 2 * bin2hex ((gdb_byte *) remote_exec_file, rs->buf + len,
9553 strlen (remote_exec_file));
2d717e4f 9554
d1a41061 9555 gdb_assert (args != NULL);
2d717e4f
DJ
9556 if (*args)
9557 {
9558 struct cleanup *back_to;
9559 int i;
9560 char **argv;
9561
d1a41061 9562 argv = gdb_buildargv (args);
6e366df1 9563 back_to = make_cleanup_freeargv (argv);
2d717e4f
DJ
9564 for (i = 0; argv[i] != NULL; i++)
9565 {
9566 if (strlen (argv[i]) * 2 + 1 + len >= get_remote_packet_size ())
9567 error (_("Argument list too long for run packet"));
9568 rs->buf[len++] = ';';
9f1b45b0
TT
9569 len += 2 * bin2hex ((gdb_byte *) argv[i], rs->buf + len,
9570 strlen (argv[i]));
2d717e4f
DJ
9571 }
9572 do_cleanups (back_to);
9573 }
9574
9575 rs->buf[len++] = '\0';
9576
9577 putpkt (rs->buf);
9578 getpkt (&rs->buf, &rs->buf_size, 0);
9579
4082afcc 9580 switch (packet_ok (rs->buf, &remote_protocol_packets[PACKET_vRun]))
2d717e4f 9581 {
4082afcc 9582 case PACKET_OK:
3405876a 9583 /* We have a wait response. All is well. */
2d717e4f 9584 return 0;
4082afcc
PA
9585 case PACKET_UNKNOWN:
9586 return -1;
9587 case PACKET_ERROR:
2d717e4f
DJ
9588 if (remote_exec_file[0] == '\0')
9589 error (_("Running the default executable on the remote target failed; "
9590 "try \"set remote exec-file\"?"));
9591 else
9592 error (_("Running \"%s\" on the remote target failed"),
9593 remote_exec_file);
4082afcc
PA
9594 default:
9595 gdb_assert_not_reached (_("bad switch"));
2d717e4f 9596 }
c906108c
SS
9597}
9598
2d717e4f
DJ
9599/* In the extended protocol we want to be able to do things like
9600 "run" and have them basically work as expected. So we need
9601 a special create_inferior function. We support changing the
9602 executable file and the command line arguments, but not the
9603 environment. */
9604
43ff13b4 9605static void
77a19445
TT
9606extended_remote_create_inferior (struct target_ops *ops,
9607 char *exec_file, char *args,
9608 char **env, int from_tty)
43ff13b4 9609{
3405876a
PA
9610 int run_worked;
9611 char *stop_reply;
9612 struct remote_state *rs = get_remote_state ();
94585166 9613 const char *remote_exec_file = get_remote_exec_file ();
3405876a 9614
43ff13b4 9615 /* If running asynchronously, register the target file descriptor
23860348 9616 with the event loop. */
75c99385 9617 if (target_can_async_p ())
6a3753b3 9618 target_async (1);
43ff13b4 9619
03583c20 9620 /* Disable address space randomization if requested (and supported). */
2bfc0540 9621 if (extended_remote_supports_disable_randomization (ops))
03583c20
UW
9622 extended_remote_disable_randomization (disable_randomization);
9623
43ff13b4 9624 /* Now restart the remote server. */
3405876a
PA
9625 run_worked = extended_remote_run (args) != -1;
9626 if (!run_worked)
2d717e4f
DJ
9627 {
9628 /* vRun was not supported. Fail if we need it to do what the
9629 user requested. */
9630 if (remote_exec_file[0])
9631 error (_("Remote target does not support \"set remote exec-file\""));
9632 if (args[0])
9633 error (_("Remote target does not support \"set args\" or run <ARGS>"));
43ff13b4 9634
2d717e4f
DJ
9635 /* Fall back to "R". */
9636 extended_remote_restart ();
9637 }
424163ea 9638
6c95b8df
PA
9639 if (!have_inferiors ())
9640 {
9641 /* Clean up from the last time we ran, before we mark the target
9642 running again. This will mark breakpoints uninserted, and
9643 get_offsets may insert breakpoints. */
9644 init_thread_list ();
9645 init_wait_for_inferior ();
9646 }
45280a52 9647
3405876a
PA
9648 /* vRun's success return is a stop reply. */
9649 stop_reply = run_worked ? rs->buf : NULL;
9650 add_current_inferior_and_thread (stop_reply);
c0a2216e 9651
2d717e4f
DJ
9652 /* Get updated offsets, if the stub uses qOffsets. */
9653 get_offsets ();
2d717e4f 9654}
c906108c 9655\f
c5aa993b 9656
b775012e
LM
9657/* Given a location's target info BP_TGT and the packet buffer BUF, output
9658 the list of conditions (in agent expression bytecode format), if any, the
9659 target needs to evaluate. The output is placed into the packet buffer
bba74b36 9660 started from BUF and ended at BUF_END. */
b775012e
LM
9661
9662static int
9663remote_add_target_side_condition (struct gdbarch *gdbarch,
bba74b36
YQ
9664 struct bp_target_info *bp_tgt, char *buf,
9665 char *buf_end)
b775012e 9666{
3cde5c42 9667 if (bp_tgt->conditions.empty ())
b775012e
LM
9668 return 0;
9669
9670 buf += strlen (buf);
bba74b36 9671 xsnprintf (buf, buf_end - buf, "%s", ";");
b775012e
LM
9672 buf++;
9673
9674 /* Send conditions to the target and free the vector. */
3cde5c42 9675 for (int ix = 0; ix < bp_tgt->conditions.size (); ix++)
b775012e 9676 {
3cde5c42
PA
9677 struct agent_expr *aexpr = bp_tgt->conditions[ix];
9678
bba74b36 9679 xsnprintf (buf, buf_end - buf, "X%x,", aexpr->len);
b775012e 9680 buf += strlen (buf);
3cde5c42 9681 for (int i = 0; i < aexpr->len; ++i)
b775012e
LM
9682 buf = pack_hex_byte (buf, aexpr->buf[i]);
9683 *buf = '\0';
9684 }
b775012e
LM
9685 return 0;
9686}
9687
d3ce09f5
SS
9688static void
9689remote_add_target_side_commands (struct gdbarch *gdbarch,
9690 struct bp_target_info *bp_tgt, char *buf)
9691{
3cde5c42 9692 if (bp_tgt->tcommands.empty ())
d3ce09f5
SS
9693 return;
9694
9695 buf += strlen (buf);
9696
9697 sprintf (buf, ";cmds:%x,", bp_tgt->persist);
9698 buf += strlen (buf);
9699
9700 /* Concatenate all the agent expressions that are commands into the
9701 cmds parameter. */
3cde5c42 9702 for (int ix = 0; ix < bp_tgt->tcommands.size (); ix++)
d3ce09f5 9703 {
3cde5c42
PA
9704 struct agent_expr *aexpr = bp_tgt->tcommands[ix];
9705
d3ce09f5
SS
9706 sprintf (buf, "X%x,", aexpr->len);
9707 buf += strlen (buf);
3cde5c42 9708 for (int i = 0; i < aexpr->len; ++i)
d3ce09f5
SS
9709 buf = pack_hex_byte (buf, aexpr->buf[i]);
9710 *buf = '\0';
9711 }
d3ce09f5
SS
9712}
9713
8181d85f
DJ
9714/* Insert a breakpoint. On targets that have software breakpoint
9715 support, we ask the remote target to do the work; on targets
9716 which don't, we insert a traditional memory breakpoint. */
c906108c
SS
9717
9718static int
3db08215
MM
9719remote_insert_breakpoint (struct target_ops *ops,
9720 struct gdbarch *gdbarch,
a6d9a66e 9721 struct bp_target_info *bp_tgt)
c906108c 9722{
d471ea57
AC
9723 /* Try the "Z" s/w breakpoint packet if it is not already disabled.
9724 If it succeeds, then set the support to PACKET_ENABLE. If it
9725 fails, and the user has explicitly requested the Z support then
23860348 9726 report an error, otherwise, mark it disabled and go on. */
802188a7 9727
4082afcc 9728 if (packet_support (PACKET_Z0) != PACKET_DISABLE)
96baa820 9729 {
0d5ed153 9730 CORE_ADDR addr = bp_tgt->reqstd_address;
4fff2411 9731 struct remote_state *rs;
bba74b36 9732 char *p, *endbuf;
7c0f6dcc 9733 int bpsize;
4fff2411 9734
28439a30
PA
9735 /* Make sure the remote is pointing at the right process, if
9736 necessary. */
9737 if (!gdbarch_has_global_breakpoints (target_gdbarch ()))
9738 set_general_process ();
9739
4fff2411
JZ
9740 rs = get_remote_state ();
9741 p = rs->buf;
bba74b36 9742 endbuf = rs->buf + get_remote_packet_size ();
802188a7 9743
96baa820
JM
9744 *(p++) = 'Z';
9745 *(p++) = '0';
9746 *(p++) = ',';
7c0f6dcc 9747 addr = (ULONGEST) remote_address_masked (addr);
8181d85f 9748 p += hexnumstr (p, addr);
579c6ad9 9749 xsnprintf (p, endbuf - p, ",%d", bp_tgt->kind);
802188a7 9750
efcc2da7 9751 if (remote_supports_cond_breakpoints (ops))
bba74b36 9752 remote_add_target_side_condition (gdbarch, bp_tgt, p, endbuf);
b775012e 9753
78eff0ec 9754 if (remote_can_run_breakpoint_commands (ops))
d3ce09f5
SS
9755 remote_add_target_side_commands (gdbarch, bp_tgt, p);
9756
6d820c5c
DJ
9757 putpkt (rs->buf);
9758 getpkt (&rs->buf, &rs->buf_size, 0);
96baa820 9759
6d820c5c 9760 switch (packet_ok (rs->buf, &remote_protocol_packets[PACKET_Z0]))
96baa820 9761 {
d471ea57
AC
9762 case PACKET_ERROR:
9763 return -1;
9764 case PACKET_OK:
9765 return 0;
9766 case PACKET_UNKNOWN:
9767 break;
96baa820
JM
9768 }
9769 }
c906108c 9770
0000e5cc
PA
9771 /* If this breakpoint has target-side commands but this stub doesn't
9772 support Z0 packets, throw error. */
3cde5c42 9773 if (!bp_tgt->tcommands.empty ())
0000e5cc
PA
9774 throw_error (NOT_SUPPORTED_ERROR, _("\
9775Target doesn't support breakpoints that have target side commands."));
9776
3db08215 9777 return memory_insert_breakpoint (ops, gdbarch, bp_tgt);
c906108c
SS
9778}
9779
9780static int
3db08215
MM
9781remote_remove_breakpoint (struct target_ops *ops,
9782 struct gdbarch *gdbarch,
73971819
PA
9783 struct bp_target_info *bp_tgt,
9784 enum remove_bp_reason reason)
c906108c 9785{
8181d85f 9786 CORE_ADDR addr = bp_tgt->placed_address;
d01949b6 9787 struct remote_state *rs = get_remote_state ();
96baa820 9788
4082afcc 9789 if (packet_support (PACKET_Z0) != PACKET_DISABLE)
96baa820 9790 {
6d820c5c 9791 char *p = rs->buf;
bba74b36 9792 char *endbuf = rs->buf + get_remote_packet_size ();
802188a7 9793
28439a30
PA
9794 /* Make sure the remote is pointing at the right process, if
9795 necessary. */
9796 if (!gdbarch_has_global_breakpoints (target_gdbarch ()))
9797 set_general_process ();
9798
96baa820
JM
9799 *(p++) = 'z';
9800 *(p++) = '0';
9801 *(p++) = ',';
9802
8181d85f
DJ
9803 addr = (ULONGEST) remote_address_masked (bp_tgt->placed_address);
9804 p += hexnumstr (p, addr);
579c6ad9 9805 xsnprintf (p, endbuf - p, ",%d", bp_tgt->kind);
802188a7 9806
6d820c5c
DJ
9807 putpkt (rs->buf);
9808 getpkt (&rs->buf, &rs->buf_size, 0);
96baa820 9809
6d820c5c 9810 return (rs->buf[0] == 'E');
96baa820
JM
9811 }
9812
73971819 9813 return memory_remove_breakpoint (ops, gdbarch, bp_tgt, reason);
c906108c
SS
9814}
9815
f486487f 9816static enum Z_packet_type
d471ea57
AC
9817watchpoint_to_Z_packet (int type)
9818{
9819 switch (type)
9820 {
9821 case hw_write:
bb858e6a 9822 return Z_PACKET_WRITE_WP;
d471ea57
AC
9823 break;
9824 case hw_read:
bb858e6a 9825 return Z_PACKET_READ_WP;
d471ea57
AC
9826 break;
9827 case hw_access:
bb858e6a 9828 return Z_PACKET_ACCESS_WP;
d471ea57
AC
9829 break;
9830 default:
8e65ff28 9831 internal_error (__FILE__, __LINE__,
e2e0b3e5 9832 _("hw_bp_to_z: bad watchpoint type %d"), type);
d471ea57
AC
9833 }
9834}
9835
3c3bea1c 9836static int
f486487f
SM
9837remote_insert_watchpoint (struct target_ops *self, CORE_ADDR addr, int len,
9838 enum target_hw_bp_type type, struct expression *cond)
96baa820 9839{
d01949b6 9840 struct remote_state *rs = get_remote_state ();
bba74b36 9841 char *endbuf = rs->buf + get_remote_packet_size ();
e514a9d6 9842 char *p;
d471ea57 9843 enum Z_packet_type packet = watchpoint_to_Z_packet (type);
96baa820 9844
4082afcc 9845 if (packet_support (PACKET_Z0 + packet) == PACKET_DISABLE)
85d721b8 9846 return 1;
802188a7 9847
28439a30
PA
9848 /* Make sure the remote is pointing at the right process, if
9849 necessary. */
9850 if (!gdbarch_has_global_breakpoints (target_gdbarch ()))
9851 set_general_process ();
9852
bba74b36 9853 xsnprintf (rs->buf, endbuf - rs->buf, "Z%x,", packet);
6d820c5c 9854 p = strchr (rs->buf, '\0');
96baa820
JM
9855 addr = remote_address_masked (addr);
9856 p += hexnumstr (p, (ULONGEST) addr);
bba74b36 9857 xsnprintf (p, endbuf - p, ",%x", len);
802188a7 9858
6d820c5c
DJ
9859 putpkt (rs->buf);
9860 getpkt (&rs->buf, &rs->buf_size, 0);
96baa820 9861
6d820c5c 9862 switch (packet_ok (rs->buf, &remote_protocol_packets[PACKET_Z0 + packet]))
d471ea57
AC
9863 {
9864 case PACKET_ERROR:
d471ea57 9865 return -1;
85d721b8
PA
9866 case PACKET_UNKNOWN:
9867 return 1;
d471ea57
AC
9868 case PACKET_OK:
9869 return 0;
9870 }
8e65ff28 9871 internal_error (__FILE__, __LINE__,
e2e0b3e5 9872 _("remote_insert_watchpoint: reached end of function"));
96baa820
JM
9873}
9874
283002cf
MR
9875static int
9876remote_watchpoint_addr_within_range (struct target_ops *target, CORE_ADDR addr,
9877 CORE_ADDR start, int length)
9878{
9879 CORE_ADDR diff = remote_address_masked (addr - start);
9880
9881 return diff < length;
9882}
9883
d471ea57 9884
3c3bea1c 9885static int
f486487f
SM
9886remote_remove_watchpoint (struct target_ops *self, CORE_ADDR addr, int len,
9887 enum target_hw_bp_type type, struct expression *cond)
96baa820 9888{
d01949b6 9889 struct remote_state *rs = get_remote_state ();
bba74b36 9890 char *endbuf = rs->buf + get_remote_packet_size ();
e514a9d6 9891 char *p;
d471ea57
AC
9892 enum Z_packet_type packet = watchpoint_to_Z_packet (type);
9893
4082afcc 9894 if (packet_support (PACKET_Z0 + packet) == PACKET_DISABLE)
5cffb350 9895 return -1;
802188a7 9896
28439a30
PA
9897 /* Make sure the remote is pointing at the right process, if
9898 necessary. */
9899 if (!gdbarch_has_global_breakpoints (target_gdbarch ()))
9900 set_general_process ();
9901
bba74b36 9902 xsnprintf (rs->buf, endbuf - rs->buf, "z%x,", packet);
6d820c5c 9903 p = strchr (rs->buf, '\0');
96baa820
JM
9904 addr = remote_address_masked (addr);
9905 p += hexnumstr (p, (ULONGEST) addr);
bba74b36 9906 xsnprintf (p, endbuf - p, ",%x", len);
6d820c5c
DJ
9907 putpkt (rs->buf);
9908 getpkt (&rs->buf, &rs->buf_size, 0);
96baa820 9909
6d820c5c 9910 switch (packet_ok (rs->buf, &remote_protocol_packets[PACKET_Z0 + packet]))
d471ea57
AC
9911 {
9912 case PACKET_ERROR:
9913 case PACKET_UNKNOWN:
9914 return -1;
9915 case PACKET_OK:
9916 return 0;
9917 }
8e65ff28 9918 internal_error (__FILE__, __LINE__,
e2e0b3e5 9919 _("remote_remove_watchpoint: reached end of function"));
96baa820
JM
9920}
9921
3c3bea1c 9922
501eef12 9923int remote_hw_watchpoint_limit = -1;
480a3f21 9924int remote_hw_watchpoint_length_limit = -1;
501eef12 9925int remote_hw_breakpoint_limit = -1;
d471ea57 9926
480a3f21 9927static int
31568a15
TT
9928remote_region_ok_for_hw_watchpoint (struct target_ops *self,
9929 CORE_ADDR addr, int len)
480a3f21
PW
9930{
9931 if (remote_hw_watchpoint_length_limit == 0)
9932 return 0;
9933 else if (remote_hw_watchpoint_length_limit < 0)
9934 return 1;
9935 else if (len <= remote_hw_watchpoint_length_limit)
9936 return 1;
9937 else
9938 return 0;
9939}
9940
b9362cc7 9941static int
5461485a 9942remote_check_watch_resources (struct target_ops *self,
f486487f 9943 enum bptype type, int cnt, int ot)
96baa820 9944{
3c3bea1c
GS
9945 if (type == bp_hardware_breakpoint)
9946 {
9947 if (remote_hw_breakpoint_limit == 0)
9948 return 0;
501eef12
AC
9949 else if (remote_hw_breakpoint_limit < 0)
9950 return 1;
3c3bea1c
GS
9951 else if (cnt <= remote_hw_breakpoint_limit)
9952 return 1;
9953 }
9954 else
9955 {
9956 if (remote_hw_watchpoint_limit == 0)
9957 return 0;
501eef12
AC
9958 else if (remote_hw_watchpoint_limit < 0)
9959 return 1;
3c3bea1c
GS
9960 else if (ot)
9961 return -1;
9962 else if (cnt <= remote_hw_watchpoint_limit)
9963 return 1;
9964 }
9965 return -1;
9966}
9967
f7e6eed5
PA
9968/* The to_stopped_by_sw_breakpoint method of target remote. */
9969
9970static int
9971remote_stopped_by_sw_breakpoint (struct target_ops *ops)
9972{
799a2abe 9973 struct thread_info *thread = inferior_thread ();
f7e6eed5 9974
799a2abe
PA
9975 return (thread->priv != NULL
9976 && thread->priv->stop_reason == TARGET_STOPPED_BY_SW_BREAKPOINT);
f7e6eed5
PA
9977}
9978
9979/* The to_supports_stopped_by_sw_breakpoint method of target
9980 remote. */
9981
9982static int
9983remote_supports_stopped_by_sw_breakpoint (struct target_ops *ops)
9984{
f7e6eed5
PA
9985 return (packet_support (PACKET_swbreak_feature) == PACKET_ENABLE);
9986}
9987
9988/* The to_stopped_by_hw_breakpoint method of target remote. */
9989
9990static int
9991remote_stopped_by_hw_breakpoint (struct target_ops *ops)
9992{
799a2abe 9993 struct thread_info *thread = inferior_thread ();
f7e6eed5 9994
799a2abe
PA
9995 return (thread->priv != NULL
9996 && thread->priv->stop_reason == TARGET_STOPPED_BY_HW_BREAKPOINT);
f7e6eed5
PA
9997}
9998
9999/* The to_supports_stopped_by_hw_breakpoint method of target
10000 remote. */
10001
10002static int
10003remote_supports_stopped_by_hw_breakpoint (struct target_ops *ops)
10004{
f7e6eed5
PA
10005 return (packet_support (PACKET_hwbreak_feature) == PACKET_ENABLE);
10006}
10007
b9362cc7 10008static int
6a109b6b 10009remote_stopped_by_watchpoint (struct target_ops *ops)
3c3bea1c 10010{
799a2abe 10011 struct thread_info *thread = inferior_thread ();
ee154bee 10012
799a2abe
PA
10013 return (thread->priv != NULL
10014 && thread->priv->stop_reason == TARGET_STOPPED_BY_WATCHPOINT);
3c3bea1c
GS
10015}
10016
4aa7a7f5
JJ
10017static int
10018remote_stopped_data_address (struct target_ops *target, CORE_ADDR *addr_p)
3c3bea1c 10019{
799a2abe 10020 struct thread_info *thread = inferior_thread ();
a744cf53 10021
799a2abe
PA
10022 if (thread->priv != NULL
10023 && thread->priv->stop_reason == TARGET_STOPPED_BY_WATCHPOINT)
4aa7a7f5 10024 {
799a2abe
PA
10025 *addr_p = thread->priv->watch_data_address;
10026 return 1;
4aa7a7f5
JJ
10027 }
10028
799a2abe 10029 return 0;
3c3bea1c
GS
10030}
10031
10032
10033static int
23a26771 10034remote_insert_hw_breakpoint (struct target_ops *self, struct gdbarch *gdbarch,
a6d9a66e 10035 struct bp_target_info *bp_tgt)
3c3bea1c 10036{
0d5ed153 10037 CORE_ADDR addr = bp_tgt->reqstd_address;
4fff2411 10038 struct remote_state *rs;
bba74b36 10039 char *p, *endbuf;
dd61ec5c 10040 char *message;
3c3bea1c 10041
4082afcc 10042 if (packet_support (PACKET_Z1) == PACKET_DISABLE)
5cffb350 10043 return -1;
2bc416ba 10044
28439a30
PA
10045 /* Make sure the remote is pointing at the right process, if
10046 necessary. */
10047 if (!gdbarch_has_global_breakpoints (target_gdbarch ()))
10048 set_general_process ();
10049
4fff2411
JZ
10050 rs = get_remote_state ();
10051 p = rs->buf;
bba74b36 10052 endbuf = rs->buf + get_remote_packet_size ();
4fff2411 10053
96baa820
JM
10054 *(p++) = 'Z';
10055 *(p++) = '1';
10056 *(p++) = ',';
802188a7 10057
0d5ed153 10058 addr = remote_address_masked (addr);
96baa820 10059 p += hexnumstr (p, (ULONGEST) addr);
579c6ad9 10060 xsnprintf (p, endbuf - p, ",%x", bp_tgt->kind);
96baa820 10061
efcc2da7 10062 if (remote_supports_cond_breakpoints (self))
bba74b36 10063 remote_add_target_side_condition (gdbarch, bp_tgt, p, endbuf);
b775012e 10064
78eff0ec 10065 if (remote_can_run_breakpoint_commands (self))
d3ce09f5
SS
10066 remote_add_target_side_commands (gdbarch, bp_tgt, p);
10067
6d820c5c
DJ
10068 putpkt (rs->buf);
10069 getpkt (&rs->buf, &rs->buf_size, 0);
96baa820 10070
6d820c5c 10071 switch (packet_ok (rs->buf, &remote_protocol_packets[PACKET_Z1]))
d471ea57
AC
10072 {
10073 case PACKET_ERROR:
dd61ec5c
MW
10074 if (rs->buf[1] == '.')
10075 {
10076 message = strchr (rs->buf + 2, '.');
10077 if (message)
0316657e 10078 error (_("Remote failure reply: %s"), message + 1);
dd61ec5c
MW
10079 }
10080 return -1;
d471ea57
AC
10081 case PACKET_UNKNOWN:
10082 return -1;
10083 case PACKET_OK:
10084 return 0;
10085 }
8e65ff28 10086 internal_error (__FILE__, __LINE__,
e2e0b3e5 10087 _("remote_insert_hw_breakpoint: reached end of function"));
96baa820
JM
10088}
10089
d471ea57 10090
802188a7 10091static int
a64dc96c 10092remote_remove_hw_breakpoint (struct target_ops *self, struct gdbarch *gdbarch,
a6d9a66e 10093 struct bp_target_info *bp_tgt)
96baa820 10094{
8181d85f 10095 CORE_ADDR addr;
d01949b6 10096 struct remote_state *rs = get_remote_state ();
6d820c5c 10097 char *p = rs->buf;
bba74b36 10098 char *endbuf = rs->buf + get_remote_packet_size ();
c8189ed1 10099
4082afcc 10100 if (packet_support (PACKET_Z1) == PACKET_DISABLE)
5cffb350 10101 return -1;
802188a7 10102
28439a30
PA
10103 /* Make sure the remote is pointing at the right process, if
10104 necessary. */
10105 if (!gdbarch_has_global_breakpoints (target_gdbarch ()))
10106 set_general_process ();
10107
96baa820
JM
10108 *(p++) = 'z';
10109 *(p++) = '1';
10110 *(p++) = ',';
802188a7 10111
8181d85f 10112 addr = remote_address_masked (bp_tgt->placed_address);
96baa820 10113 p += hexnumstr (p, (ULONGEST) addr);
579c6ad9 10114 xsnprintf (p, endbuf - p, ",%x", bp_tgt->kind);
96baa820 10115
6d820c5c
DJ
10116 putpkt (rs->buf);
10117 getpkt (&rs->buf, &rs->buf_size, 0);
802188a7 10118
6d820c5c 10119 switch (packet_ok (rs->buf, &remote_protocol_packets[PACKET_Z1]))
d471ea57
AC
10120 {
10121 case PACKET_ERROR:
10122 case PACKET_UNKNOWN:
10123 return -1;
10124 case PACKET_OK:
10125 return 0;
10126 }
8e65ff28 10127 internal_error (__FILE__, __LINE__,
e2e0b3e5 10128 _("remote_remove_hw_breakpoint: reached end of function"));
96baa820 10129}
96baa820 10130
4a5e7a5b
PA
10131/* Verify memory using the "qCRC:" request. */
10132
10133static int
10134remote_verify_memory (struct target_ops *ops,
10135 const gdb_byte *data, CORE_ADDR lma, ULONGEST size)
10136{
10137 struct remote_state *rs = get_remote_state ();
10138 unsigned long host_crc, target_crc;
10139 char *tmp;
10140
936d2992
PA
10141 /* It doesn't make sense to use qCRC if the remote target is
10142 connected but not running. */
10143 if (target_has_execution && packet_support (PACKET_qCRC) != PACKET_DISABLE)
10144 {
10145 enum packet_result result;
28439a30 10146
936d2992
PA
10147 /* Make sure the remote is pointing at the right process. */
10148 set_general_process ();
4a5e7a5b 10149
936d2992
PA
10150 /* FIXME: assumes lma can fit into long. */
10151 xsnprintf (rs->buf, get_remote_packet_size (), "qCRC:%lx,%lx",
10152 (long) lma, (long) size);
10153 putpkt (rs->buf);
4a5e7a5b 10154
936d2992
PA
10155 /* Be clever; compute the host_crc before waiting for target
10156 reply. */
10157 host_crc = xcrc32 (data, size, 0xffffffff);
10158
10159 getpkt (&rs->buf, &rs->buf_size, 0);
4a5e7a5b 10160
936d2992
PA
10161 result = packet_ok (rs->buf,
10162 &remote_protocol_packets[PACKET_qCRC]);
10163 if (result == PACKET_ERROR)
10164 return -1;
10165 else if (result == PACKET_OK)
10166 {
10167 for (target_crc = 0, tmp = &rs->buf[1]; *tmp; tmp++)
10168 target_crc = target_crc * 16 + fromhex (*tmp);
4a5e7a5b 10169
936d2992
PA
10170 return (host_crc == target_crc);
10171 }
10172 }
4a5e7a5b 10173
936d2992 10174 return simple_verify_memory (ops, data, lma, size);
4a5e7a5b
PA
10175}
10176
c906108c
SS
10177/* compare-sections command
10178
10179 With no arguments, compares each loadable section in the exec bfd
10180 with the same memory range on the target, and reports mismatches.
4a5e7a5b 10181 Useful for verifying the image on the target against the exec file. */
e514a9d6 10182
c906108c 10183static void
fba45db2 10184compare_sections_command (char *args, int from_tty)
c906108c
SS
10185{
10186 asection *s;
c906108c 10187 struct cleanup *old_chain;
948f8e3d 10188 gdb_byte *sectdata;
ce359b09 10189 const char *sectname;
c906108c
SS
10190 bfd_size_type size;
10191 bfd_vma lma;
10192 int matched = 0;
10193 int mismatched = 0;
4a5e7a5b 10194 int res;
95cf3b38 10195 int read_only = 0;
c906108c
SS
10196
10197 if (!exec_bfd)
8a3fe4f8 10198 error (_("command cannot be used without an exec file"));
c906108c 10199
28439a30
PA
10200 /* Make sure the remote is pointing at the right process. */
10201 set_general_process ();
10202
95cf3b38
DT
10203 if (args != NULL && strcmp (args, "-r") == 0)
10204 {
10205 read_only = 1;
10206 args = NULL;
10207 }
10208
c5aa993b 10209 for (s = exec_bfd->sections; s; s = s->next)
c906108c
SS
10210 {
10211 if (!(s->flags & SEC_LOAD))
0df8b418 10212 continue; /* Skip non-loadable section. */
c906108c 10213
95cf3b38
DT
10214 if (read_only && (s->flags & SEC_READONLY) == 0)
10215 continue; /* Skip writeable sections */
10216
2c500098 10217 size = bfd_get_section_size (s);
c906108c 10218 if (size == 0)
0df8b418 10219 continue; /* Skip zero-length section. */
c906108c 10220
ce359b09 10221 sectname = bfd_get_section_name (exec_bfd, s);
c906108c 10222 if (args && strcmp (args, sectname) != 0)
0df8b418 10223 continue; /* Not the section selected by user. */
c906108c 10224
0df8b418 10225 matched = 1; /* Do this section. */
c906108c 10226 lma = s->lma;
c906108c 10227
224c3ddb 10228 sectdata = (gdb_byte *) xmalloc (size);
b8c9b27d 10229 old_chain = make_cleanup (xfree, sectdata);
c906108c 10230 bfd_get_section_contents (exec_bfd, s, sectdata, 0, size);
c906108c 10231
4a5e7a5b
PA
10232 res = target_verify_memory (sectdata, lma, size);
10233
10234 if (res == -1)
5af949e3 10235 error (_("target memory fault, section %s, range %s -- %s"), sectname,
f5656ead
TT
10236 paddress (target_gdbarch (), lma),
10237 paddress (target_gdbarch (), lma + size));
c906108c 10238
5af949e3 10239 printf_filtered ("Section %s, range %s -- %s: ", sectname,
f5656ead
TT
10240 paddress (target_gdbarch (), lma),
10241 paddress (target_gdbarch (), lma + size));
4a5e7a5b 10242 if (res)
c906108c
SS
10243 printf_filtered ("matched.\n");
10244 else
c5aa993b
JM
10245 {
10246 printf_filtered ("MIS-MATCHED!\n");
10247 mismatched++;
10248 }
c906108c
SS
10249
10250 do_cleanups (old_chain);
10251 }
10252 if (mismatched > 0)
936d2992 10253 warning (_("One or more sections of the target image does not match\n\
8a3fe4f8 10254the loaded file\n"));
c906108c 10255 if (args && !matched)
a3f17187 10256 printf_filtered (_("No loaded section named '%s'.\n"), args);
c906108c
SS
10257}
10258
0e7f50da
UW
10259/* Write LEN bytes from WRITEBUF into OBJECT_NAME/ANNEX at OFFSET
10260 into remote target. The number of bytes written to the remote
10261 target is returned, or -1 for error. */
10262
9b409511 10263static enum target_xfer_status
0e7f50da
UW
10264remote_write_qxfer (struct target_ops *ops, const char *object_name,
10265 const char *annex, const gdb_byte *writebuf,
9b409511 10266 ULONGEST offset, LONGEST len, ULONGEST *xfered_len,
0e7f50da
UW
10267 struct packet_config *packet)
10268{
10269 int i, buf_len;
10270 ULONGEST n;
0e7f50da
UW
10271 struct remote_state *rs = get_remote_state ();
10272 int max_size = get_memory_write_packet_size ();
10273
10274 if (packet->support == PACKET_DISABLE)
2ed4b548 10275 return TARGET_XFER_E_IO;
0e7f50da
UW
10276
10277 /* Insert header. */
10278 i = snprintf (rs->buf, max_size,
10279 "qXfer:%s:write:%s:%s:",
10280 object_name, annex ? annex : "",
10281 phex_nz (offset, sizeof offset));
10282 max_size -= (i + 1);
10283
10284 /* Escape as much data as fits into rs->buf. */
10285 buf_len = remote_escape_output
124e13d9 10286 (writebuf, len, 1, (gdb_byte *) rs->buf + i, &max_size, max_size);
0e7f50da
UW
10287
10288 if (putpkt_binary (rs->buf, i + buf_len) < 0
10289 || getpkt_sane (&rs->buf, &rs->buf_size, 0) < 0
10290 || packet_ok (rs->buf, packet) != PACKET_OK)
2ed4b548 10291 return TARGET_XFER_E_IO;
0e7f50da
UW
10292
10293 unpack_varlen_hex (rs->buf, &n);
9b409511
YQ
10294
10295 *xfered_len = n;
10296 return TARGET_XFER_OK;
0e7f50da
UW
10297}
10298
0876f84a
DJ
10299/* Read OBJECT_NAME/ANNEX from the remote target using a qXfer packet.
10300 Data at OFFSET, of up to LEN bytes, is read into READBUF; the
10301 number of bytes read is returned, or 0 for EOF, or -1 for error.
10302 The number of bytes read may be less than LEN without indicating an
10303 EOF. PACKET is checked and updated to indicate whether the remote
10304 target supports this object. */
10305
9b409511 10306static enum target_xfer_status
0876f84a
DJ
10307remote_read_qxfer (struct target_ops *ops, const char *object_name,
10308 const char *annex,
10309 gdb_byte *readbuf, ULONGEST offset, LONGEST len,
9b409511 10310 ULONGEST *xfered_len,
0876f84a
DJ
10311 struct packet_config *packet)
10312{
0876f84a 10313 struct remote_state *rs = get_remote_state ();
0876f84a
DJ
10314 LONGEST i, n, packet_len;
10315
10316 if (packet->support == PACKET_DISABLE)
2ed4b548 10317 return TARGET_XFER_E_IO;
0876f84a
DJ
10318
10319 /* Check whether we've cached an end-of-object packet that matches
10320 this request. */
8e88304f 10321 if (rs->finished_object)
0876f84a 10322 {
8e88304f
TT
10323 if (strcmp (object_name, rs->finished_object) == 0
10324 && strcmp (annex ? annex : "", rs->finished_annex) == 0
10325 && offset == rs->finished_offset)
9b409511
YQ
10326 return TARGET_XFER_EOF;
10327
0876f84a
DJ
10328
10329 /* Otherwise, we're now reading something different. Discard
10330 the cache. */
8e88304f
TT
10331 xfree (rs->finished_object);
10332 xfree (rs->finished_annex);
10333 rs->finished_object = NULL;
10334 rs->finished_annex = NULL;
0876f84a
DJ
10335 }
10336
10337 /* Request only enough to fit in a single packet. The actual data
10338 may not, since we don't know how much of it will need to be escaped;
10339 the target is free to respond with slightly less data. We subtract
10340 five to account for the response type and the protocol frame. */
768adc05 10341 n = std::min<LONGEST> (get_remote_packet_size () - 5, len);
0876f84a
DJ
10342 snprintf (rs->buf, get_remote_packet_size () - 4, "qXfer:%s:read:%s:%s,%s",
10343 object_name, annex ? annex : "",
10344 phex_nz (offset, sizeof offset),
10345 phex_nz (n, sizeof n));
10346 i = putpkt (rs->buf);
10347 if (i < 0)
2ed4b548 10348 return TARGET_XFER_E_IO;
0876f84a
DJ
10349
10350 rs->buf[0] = '\0';
10351 packet_len = getpkt_sane (&rs->buf, &rs->buf_size, 0);
10352 if (packet_len < 0 || packet_ok (rs->buf, packet) != PACKET_OK)
2ed4b548 10353 return TARGET_XFER_E_IO;
0876f84a
DJ
10354
10355 if (rs->buf[0] != 'l' && rs->buf[0] != 'm')
10356 error (_("Unknown remote qXfer reply: %s"), rs->buf);
10357
10358 /* 'm' means there is (or at least might be) more data after this
10359 batch. That does not make sense unless there's at least one byte
10360 of data in this reply. */
10361 if (rs->buf[0] == 'm' && packet_len == 1)
10362 error (_("Remote qXfer reply contained no data."));
10363
10364 /* Got some data. */
bc20a4af
PA
10365 i = remote_unescape_input ((gdb_byte *) rs->buf + 1,
10366 packet_len - 1, readbuf, n);
0876f84a
DJ
10367
10368 /* 'l' is an EOF marker, possibly including a final block of data,
0e7f50da
UW
10369 or possibly empty. If we have the final block of a non-empty
10370 object, record this fact to bypass a subsequent partial read. */
10371 if (rs->buf[0] == 'l' && offset + i > 0)
0876f84a 10372 {
8e88304f
TT
10373 rs->finished_object = xstrdup (object_name);
10374 rs->finished_annex = xstrdup (annex ? annex : "");
10375 rs->finished_offset = offset + i;
0876f84a
DJ
10376 }
10377
9b409511
YQ
10378 if (i == 0)
10379 return TARGET_XFER_EOF;
10380 else
10381 {
10382 *xfered_len = i;
10383 return TARGET_XFER_OK;
10384 }
0876f84a
DJ
10385}
10386
9b409511 10387static enum target_xfer_status
4b8a223f 10388remote_xfer_partial (struct target_ops *ops, enum target_object object,
961cb7b5 10389 const char *annex, gdb_byte *readbuf,
9b409511
YQ
10390 const gdb_byte *writebuf, ULONGEST offset, ULONGEST len,
10391 ULONGEST *xfered_len)
c906108c 10392{
82f73884 10393 struct remote_state *rs;
c906108c 10394 int i;
6d820c5c 10395 char *p2;
1e3ff5ad 10396 char query_type;
124e13d9 10397 int unit_size = gdbarch_addressable_memory_unit_size (target_gdbarch ());
c906108c 10398
e6e4e701 10399 set_remote_traceframe ();
82f73884
PA
10400 set_general_thread (inferior_ptid);
10401
10402 rs = get_remote_state ();
10403
b2182ed2 10404 /* Handle memory using the standard memory routines. */
21e3b9b9
DJ
10405 if (object == TARGET_OBJECT_MEMORY)
10406 {
2d717e4f
DJ
10407 /* If the remote target is connected but not running, we should
10408 pass this request down to a lower stratum (e.g. the executable
10409 file). */
10410 if (!target_has_execution)
9b409511 10411 return TARGET_XFER_EOF;
2d717e4f 10412
21e3b9b9 10413 if (writebuf != NULL)
124e13d9
SM
10414 return remote_write_bytes (offset, writebuf, len, unit_size,
10415 xfered_len);
21e3b9b9 10416 else
124e13d9
SM
10417 return remote_read_bytes (ops, offset, readbuf, len, unit_size,
10418 xfered_len);
21e3b9b9
DJ
10419 }
10420
0df8b418 10421 /* Handle SPU memory using qxfer packets. */
0e7f50da
UW
10422 if (object == TARGET_OBJECT_SPU)
10423 {
10424 if (readbuf)
10425 return remote_read_qxfer (ops, "spu", annex, readbuf, offset, len,
9b409511
YQ
10426 xfered_len, &remote_protocol_packets
10427 [PACKET_qXfer_spu_read]);
0e7f50da
UW
10428 else
10429 return remote_write_qxfer (ops, "spu", annex, writebuf, offset, len,
9b409511
YQ
10430 xfered_len, &remote_protocol_packets
10431 [PACKET_qXfer_spu_write]);
0e7f50da
UW
10432 }
10433
4aa995e1
PA
10434 /* Handle extra signal info using qxfer packets. */
10435 if (object == TARGET_OBJECT_SIGNAL_INFO)
10436 {
10437 if (readbuf)
10438 return remote_read_qxfer (ops, "siginfo", annex, readbuf, offset, len,
9b409511 10439 xfered_len, &remote_protocol_packets
4aa995e1
PA
10440 [PACKET_qXfer_siginfo_read]);
10441 else
3e43a32a 10442 return remote_write_qxfer (ops, "siginfo", annex,
9b409511 10443 writebuf, offset, len, xfered_len,
4aa995e1
PA
10444 &remote_protocol_packets
10445 [PACKET_qXfer_siginfo_write]);
10446 }
10447
0fb4aa4b
PA
10448 if (object == TARGET_OBJECT_STATIC_TRACE_DATA)
10449 {
10450 if (readbuf)
3e43a32a 10451 return remote_read_qxfer (ops, "statictrace", annex,
9b409511 10452 readbuf, offset, len, xfered_len,
0fb4aa4b
PA
10453 &remote_protocol_packets
10454 [PACKET_qXfer_statictrace_read]);
10455 else
2ed4b548 10456 return TARGET_XFER_E_IO;
0fb4aa4b
PA
10457 }
10458
a76d924d
DJ
10459 /* Only handle flash writes. */
10460 if (writebuf != NULL)
10461 {
a76d924d
DJ
10462 switch (object)
10463 {
10464 case TARGET_OBJECT_FLASH:
9b409511
YQ
10465 return remote_flash_write (ops, offset, len, xfered_len,
10466 writebuf);
a76d924d
DJ
10467
10468 default:
2ed4b548 10469 return TARGET_XFER_E_IO;
a76d924d
DJ
10470 }
10471 }
4b8a223f 10472
1e3ff5ad
AC
10473 /* Map pre-existing objects onto letters. DO NOT do this for new
10474 objects!!! Instead specify new query packets. */
10475 switch (object)
c906108c 10476 {
1e3ff5ad
AC
10477 case TARGET_OBJECT_AVR:
10478 query_type = 'R';
10479 break;
802188a7
RM
10480
10481 case TARGET_OBJECT_AUXV:
0876f84a
DJ
10482 gdb_assert (annex == NULL);
10483 return remote_read_qxfer (ops, "auxv", annex, readbuf, offset, len,
9b409511 10484 xfered_len,
0876f84a 10485 &remote_protocol_packets[PACKET_qXfer_auxv]);
802188a7 10486
23181151
DJ
10487 case TARGET_OBJECT_AVAILABLE_FEATURES:
10488 return remote_read_qxfer
9b409511 10489 (ops, "features", annex, readbuf, offset, len, xfered_len,
23181151
DJ
10490 &remote_protocol_packets[PACKET_qXfer_features]);
10491
cfa9d6d9
DJ
10492 case TARGET_OBJECT_LIBRARIES:
10493 return remote_read_qxfer
9b409511 10494 (ops, "libraries", annex, readbuf, offset, len, xfered_len,
cfa9d6d9
DJ
10495 &remote_protocol_packets[PACKET_qXfer_libraries]);
10496
2268b414
JK
10497 case TARGET_OBJECT_LIBRARIES_SVR4:
10498 return remote_read_qxfer
9b409511 10499 (ops, "libraries-svr4", annex, readbuf, offset, len, xfered_len,
2268b414
JK
10500 &remote_protocol_packets[PACKET_qXfer_libraries_svr4]);
10501
fd79ecee
DJ
10502 case TARGET_OBJECT_MEMORY_MAP:
10503 gdb_assert (annex == NULL);
10504 return remote_read_qxfer (ops, "memory-map", annex, readbuf, offset, len,
9b409511 10505 xfered_len,
fd79ecee
DJ
10506 &remote_protocol_packets[PACKET_qXfer_memory_map]);
10507
07e059b5
VP
10508 case TARGET_OBJECT_OSDATA:
10509 /* Should only get here if we're connected. */
5d93a237 10510 gdb_assert (rs->remote_desc);
07e059b5 10511 return remote_read_qxfer
9b409511 10512 (ops, "osdata", annex, readbuf, offset, len, xfered_len,
07e059b5
VP
10513 &remote_protocol_packets[PACKET_qXfer_osdata]);
10514
dc146f7c
VP
10515 case TARGET_OBJECT_THREADS:
10516 gdb_assert (annex == NULL);
10517 return remote_read_qxfer (ops, "threads", annex, readbuf, offset, len,
9b409511 10518 xfered_len,
dc146f7c
VP
10519 &remote_protocol_packets[PACKET_qXfer_threads]);
10520
b3b9301e
PA
10521 case TARGET_OBJECT_TRACEFRAME_INFO:
10522 gdb_assert (annex == NULL);
10523 return remote_read_qxfer
9b409511 10524 (ops, "traceframe-info", annex, readbuf, offset, len, xfered_len,
b3b9301e 10525 &remote_protocol_packets[PACKET_qXfer_traceframe_info]);
78d85199
YQ
10526
10527 case TARGET_OBJECT_FDPIC:
10528 return remote_read_qxfer (ops, "fdpic", annex, readbuf, offset, len,
9b409511 10529 xfered_len,
78d85199 10530 &remote_protocol_packets[PACKET_qXfer_fdpic]);
169081d0
TG
10531
10532 case TARGET_OBJECT_OPENVMS_UIB:
10533 return remote_read_qxfer (ops, "uib", annex, readbuf, offset, len,
9b409511 10534 xfered_len,
169081d0
TG
10535 &remote_protocol_packets[PACKET_qXfer_uib]);
10536
9accd112
MM
10537 case TARGET_OBJECT_BTRACE:
10538 return remote_read_qxfer (ops, "btrace", annex, readbuf, offset, len,
9b409511 10539 xfered_len,
9accd112
MM
10540 &remote_protocol_packets[PACKET_qXfer_btrace]);
10541
f4abbc16
MM
10542 case TARGET_OBJECT_BTRACE_CONF:
10543 return remote_read_qxfer (ops, "btrace-conf", annex, readbuf, offset,
10544 len, xfered_len,
10545 &remote_protocol_packets[PACKET_qXfer_btrace_conf]);
10546
c78fa86a
GB
10547 case TARGET_OBJECT_EXEC_FILE:
10548 return remote_read_qxfer (ops, "exec-file", annex, readbuf, offset,
10549 len, xfered_len,
10550 &remote_protocol_packets[PACKET_qXfer_exec_file]);
10551
1e3ff5ad 10552 default:
2ed4b548 10553 return TARGET_XFER_E_IO;
c906108c
SS
10554 }
10555
0df8b418 10556 /* Minimum outbuf size is get_remote_packet_size (). If LEN is not
24b06219 10557 large enough let the caller deal with it. */
ea9c271d 10558 if (len < get_remote_packet_size ())
2ed4b548 10559 return TARGET_XFER_E_IO;
ea9c271d 10560 len = get_remote_packet_size ();
1e3ff5ad 10561
23860348 10562 /* Except for querying the minimum buffer size, target must be open. */
5d93a237 10563 if (!rs->remote_desc)
8a3fe4f8 10564 error (_("remote query is only available after target open"));
c906108c 10565
1e3ff5ad 10566 gdb_assert (annex != NULL);
4b8a223f 10567 gdb_assert (readbuf != NULL);
c906108c 10568
6d820c5c 10569 p2 = rs->buf;
c906108c
SS
10570 *p2++ = 'q';
10571 *p2++ = query_type;
10572
23860348
MS
10573 /* We used one buffer char for the remote protocol q command and
10574 another for the query type. As the remote protocol encapsulation
10575 uses 4 chars plus one extra in case we are debugging
10576 (remote_debug), we have PBUFZIZ - 7 left to pack the query
10577 string. */
c906108c 10578 i = 0;
ea9c271d 10579 while (annex[i] && (i < (get_remote_packet_size () - 8)))
c906108c 10580 {
1e3ff5ad
AC
10581 /* Bad caller may have sent forbidden characters. */
10582 gdb_assert (isprint (annex[i]) && annex[i] != '$' && annex[i] != '#');
10583 *p2++ = annex[i];
c906108c
SS
10584 i++;
10585 }
1e3ff5ad
AC
10586 *p2 = '\0';
10587 gdb_assert (annex[i] == '\0');
c906108c 10588
6d820c5c 10589 i = putpkt (rs->buf);
c5aa993b 10590 if (i < 0)
2ed4b548 10591 return TARGET_XFER_E_IO;
c906108c 10592
6d820c5c
DJ
10593 getpkt (&rs->buf, &rs->buf_size, 0);
10594 strcpy ((char *) readbuf, rs->buf);
c906108c 10595
9b409511
YQ
10596 *xfered_len = strlen ((char *) readbuf);
10597 return TARGET_XFER_OK;
c906108c
SS
10598}
10599
09c98b44
DB
10600/* Implementation of to_get_memory_xfer_limit. */
10601
10602static ULONGEST
10603remote_get_memory_xfer_limit (struct target_ops *ops)
10604{
10605 return get_memory_write_packet_size ();
10606}
10607
08388c79
DE
10608static int
10609remote_search_memory (struct target_ops* ops,
10610 CORE_ADDR start_addr, ULONGEST search_space_len,
10611 const gdb_byte *pattern, ULONGEST pattern_len,
10612 CORE_ADDR *found_addrp)
10613{
f5656ead 10614 int addr_size = gdbarch_addr_bit (target_gdbarch ()) / 8;
08388c79
DE
10615 struct remote_state *rs = get_remote_state ();
10616 int max_size = get_memory_write_packet_size ();
10617 struct packet_config *packet =
10618 &remote_protocol_packets[PACKET_qSearch_memory];
0df8b418
MS
10619 /* Number of packet bytes used to encode the pattern;
10620 this could be more than PATTERN_LEN due to escape characters. */
08388c79 10621 int escaped_pattern_len;
0df8b418 10622 /* Amount of pattern that was encodable in the packet. */
08388c79
DE
10623 int used_pattern_len;
10624 int i;
10625 int found;
10626 ULONGEST found_addr;
10627
10628 /* Don't go to the target if we don't have to.
10629 This is done before checking packet->support to avoid the possibility that
10630 a success for this edge case means the facility works in general. */
10631 if (pattern_len > search_space_len)
10632 return 0;
10633 if (pattern_len == 0)
10634 {
10635 *found_addrp = start_addr;
10636 return 1;
10637 }
10638
10639 /* If we already know the packet isn't supported, fall back to the simple
10640 way of searching memory. */
10641
4082afcc 10642 if (packet_config_support (packet) == PACKET_DISABLE)
08388c79
DE
10643 {
10644 /* Target doesn't provided special support, fall back and use the
10645 standard support (copy memory and do the search here). */
10646 return simple_search_memory (ops, start_addr, search_space_len,
10647 pattern, pattern_len, found_addrp);
10648 }
10649
28439a30
PA
10650 /* Make sure the remote is pointing at the right process. */
10651 set_general_process ();
10652
08388c79
DE
10653 /* Insert header. */
10654 i = snprintf (rs->buf, max_size,
10655 "qSearch:memory:%s;%s;",
5af949e3 10656 phex_nz (start_addr, addr_size),
08388c79
DE
10657 phex_nz (search_space_len, sizeof (search_space_len)));
10658 max_size -= (i + 1);
10659
10660 /* Escape as much data as fits into rs->buf. */
10661 escaped_pattern_len =
124e13d9 10662 remote_escape_output (pattern, pattern_len, 1, (gdb_byte *) rs->buf + i,
08388c79
DE
10663 &used_pattern_len, max_size);
10664
10665 /* Bail if the pattern is too large. */
10666 if (used_pattern_len != pattern_len)
9b20d036 10667 error (_("Pattern is too large to transmit to remote target."));
08388c79
DE
10668
10669 if (putpkt_binary (rs->buf, i + escaped_pattern_len) < 0
10670 || getpkt_sane (&rs->buf, &rs->buf_size, 0) < 0
10671 || packet_ok (rs->buf, packet) != PACKET_OK)
10672 {
10673 /* The request may not have worked because the command is not
10674 supported. If so, fall back to the simple way. */
10675 if (packet->support == PACKET_DISABLE)
10676 {
10677 return simple_search_memory (ops, start_addr, search_space_len,
10678 pattern, pattern_len, found_addrp);
10679 }
10680 return -1;
10681 }
10682
10683 if (rs->buf[0] == '0')
10684 found = 0;
10685 else if (rs->buf[0] == '1')
10686 {
10687 found = 1;
10688 if (rs->buf[1] != ',')
10e0fa18 10689 error (_("Unknown qSearch:memory reply: %s"), rs->buf);
08388c79
DE
10690 unpack_varlen_hex (rs->buf + 2, &found_addr);
10691 *found_addrp = found_addr;
10692 }
10693 else
10e0fa18 10694 error (_("Unknown qSearch:memory reply: %s"), rs->buf);
08388c79
DE
10695
10696 return found;
10697}
10698
96baa820 10699static void
a30bf1f1 10700remote_rcmd (struct target_ops *self, const char *command,
d9fcf2fb 10701 struct ui_file *outbuf)
96baa820 10702{
d01949b6 10703 struct remote_state *rs = get_remote_state ();
2e9f7625 10704 char *p = rs->buf;
96baa820 10705
5d93a237 10706 if (!rs->remote_desc)
8a3fe4f8 10707 error (_("remote rcmd is only available after target open"));
96baa820 10708
23860348 10709 /* Send a NULL command across as an empty command. */
7be570e7
JM
10710 if (command == NULL)
10711 command = "";
10712
23860348 10713 /* The query prefix. */
2e9f7625
DJ
10714 strcpy (rs->buf, "qRcmd,");
10715 p = strchr (rs->buf, '\0');
96baa820 10716
3e43a32a
MS
10717 if ((strlen (rs->buf) + strlen (command) * 2 + 8/*misc*/)
10718 > get_remote_packet_size ())
8a3fe4f8 10719 error (_("\"monitor\" command ``%s'' is too long."), command);
96baa820 10720
23860348 10721 /* Encode the actual command. */
a30bf1f1 10722 bin2hex ((const gdb_byte *) command, p, strlen (command));
96baa820 10723
6d820c5c 10724 if (putpkt (rs->buf) < 0)
8a3fe4f8 10725 error (_("Communication problem with target."));
96baa820
JM
10726
10727 /* get/display the response */
10728 while (1)
10729 {
2e9f7625
DJ
10730 char *buf;
10731
00bf0b85 10732 /* XXX - see also remote_get_noisy_reply(). */
5b37825d 10733 QUIT; /* Allow user to bail out with ^C. */
2e9f7625 10734 rs->buf[0] = '\0';
5b37825d
PW
10735 if (getpkt_sane (&rs->buf, &rs->buf_size, 0) == -1)
10736 {
10737 /* Timeout. Continue to (try to) read responses.
10738 This is better than stopping with an error, assuming the stub
10739 is still executing the (long) monitor command.
10740 If needed, the user can interrupt gdb using C-c, obtaining
10741 an effect similar to stop on timeout. */
10742 continue;
10743 }
2e9f7625 10744 buf = rs->buf;
96baa820 10745 if (buf[0] == '\0')
8a3fe4f8 10746 error (_("Target does not support this command."));
96baa820
JM
10747 if (buf[0] == 'O' && buf[1] != 'K')
10748 {
23860348 10749 remote_console_output (buf + 1); /* 'O' message from stub. */
96baa820
JM
10750 continue;
10751 }
10752 if (strcmp (buf, "OK") == 0)
10753 break;
7be570e7
JM
10754 if (strlen (buf) == 3 && buf[0] == 'E'
10755 && isdigit (buf[1]) && isdigit (buf[2]))
10756 {
8a3fe4f8 10757 error (_("Protocol error with Rcmd"));
7be570e7 10758 }
96baa820
JM
10759 for (p = buf; p[0] != '\0' && p[1] != '\0'; p += 2)
10760 {
10761 char c = (fromhex (p[0]) << 4) + fromhex (p[1]);
a744cf53 10762
96baa820
JM
10763 fputc_unfiltered (c, outbuf);
10764 }
10765 break;
10766 }
10767}
10768
fd79ecee
DJ
10769static VEC(mem_region_s) *
10770remote_memory_map (struct target_ops *ops)
10771{
10772 VEC(mem_region_s) *result = NULL;
10773 char *text = target_read_stralloc (&current_target,
10774 TARGET_OBJECT_MEMORY_MAP, NULL);
10775
10776 if (text)
10777 {
10778 struct cleanup *back_to = make_cleanup (xfree, text);
a744cf53 10779
fd79ecee
DJ
10780 result = parse_memory_map (text);
10781 do_cleanups (back_to);
10782 }
10783
10784 return result;
10785}
10786
c906108c 10787static void
fba45db2 10788packet_command (char *args, int from_tty)
c906108c 10789{
d01949b6 10790 struct remote_state *rs = get_remote_state ();
c906108c 10791
5d93a237 10792 if (!rs->remote_desc)
8a3fe4f8 10793 error (_("command can only be used with remote target"));
c906108c 10794
c5aa993b 10795 if (!args)
8a3fe4f8 10796 error (_("remote-packet command requires packet text as argument"));
c906108c
SS
10797
10798 puts_filtered ("sending: ");
10799 print_packet (args);
10800 puts_filtered ("\n");
10801 putpkt (args);
10802
6d820c5c 10803 getpkt (&rs->buf, &rs->buf_size, 0);
c906108c 10804 puts_filtered ("received: ");
6d820c5c 10805 print_packet (rs->buf);
c906108c
SS
10806 puts_filtered ("\n");
10807}
10808
10809#if 0
23860348 10810/* --------- UNIT_TEST for THREAD oriented PACKETS ------------------- */
c906108c 10811
a14ed312 10812static void display_thread_info (struct gdb_ext_thread_info *info);
c906108c 10813
a14ed312 10814static void threadset_test_cmd (char *cmd, int tty);
c906108c 10815
a14ed312 10816static void threadalive_test (char *cmd, int tty);
c906108c 10817
a14ed312 10818static void threadlist_test_cmd (char *cmd, int tty);
c906108c 10819
23860348 10820int get_and_display_threadinfo (threadref *ref);
c906108c 10821
a14ed312 10822static void threadinfo_test_cmd (char *cmd, int tty);
c906108c 10823
23860348 10824static int thread_display_step (threadref *ref, void *context);
c906108c 10825
a14ed312 10826static void threadlist_update_test_cmd (char *cmd, int tty);
c906108c 10827
a14ed312 10828static void init_remote_threadtests (void);
c906108c 10829
23860348 10830#define SAMPLE_THREAD 0x05060708 /* Truncated 64 bit threadid. */
c906108c
SS
10831
10832static void
fba45db2 10833threadset_test_cmd (char *cmd, int tty)
c906108c
SS
10834{
10835 int sample_thread = SAMPLE_THREAD;
10836
a3f17187 10837 printf_filtered (_("Remote threadset test\n"));
79d7f229 10838 set_general_thread (sample_thread);
c906108c
SS
10839}
10840
10841
10842static void
fba45db2 10843threadalive_test (char *cmd, int tty)
c906108c
SS
10844{
10845 int sample_thread = SAMPLE_THREAD;
79d7f229 10846 int pid = ptid_get_pid (inferior_ptid);
ba348170 10847 ptid_t ptid = ptid_build (pid, sample_thread, 0);
c906108c 10848
79d7f229 10849 if (remote_thread_alive (ptid))
c906108c
SS
10850 printf_filtered ("PASS: Thread alive test\n");
10851 else
10852 printf_filtered ("FAIL: Thread alive test\n");
10853}
10854
23860348 10855void output_threadid (char *title, threadref *ref);
c906108c
SS
10856
10857void
fba45db2 10858output_threadid (char *title, threadref *ref)
c906108c
SS
10859{
10860 char hexid[20];
10861
23860348 10862 pack_threadid (&hexid[0], ref); /* Convert threead id into hex. */
c906108c
SS
10863 hexid[16] = 0;
10864 printf_filtered ("%s %s\n", title, (&hexid[0]));
10865}
10866
10867static void
fba45db2 10868threadlist_test_cmd (char *cmd, int tty)
c906108c
SS
10869{
10870 int startflag = 1;
10871 threadref nextthread;
10872 int done, result_count;
10873 threadref threadlist[3];
10874
10875 printf_filtered ("Remote Threadlist test\n");
10876 if (!remote_get_threadlist (startflag, &nextthread, 3, &done,
10877 &result_count, &threadlist[0]))
10878 printf_filtered ("FAIL: threadlist test\n");
10879 else
10880 {
10881 threadref *scan = threadlist;
10882 threadref *limit = scan + result_count;
10883
10884 while (scan < limit)
10885 output_threadid (" thread ", scan++);
10886 }
10887}
10888
10889void
fba45db2 10890display_thread_info (struct gdb_ext_thread_info *info)
c906108c
SS
10891{
10892 output_threadid ("Threadid: ", &info->threadid);
10893 printf_filtered ("Name: %s\n ", info->shortname);
10894 printf_filtered ("State: %s\n", info->display);
10895 printf_filtered ("other: %s\n\n", info->more_display);
10896}
10897
10898int
fba45db2 10899get_and_display_threadinfo (threadref *ref)
c906108c
SS
10900{
10901 int result;
10902 int set;
10903 struct gdb_ext_thread_info threadinfo;
10904
10905 set = TAG_THREADID | TAG_EXISTS | TAG_THREADNAME
10906 | TAG_MOREDISPLAY | TAG_DISPLAY;
10907 if (0 != (result = remote_get_threadinfo (ref, set, &threadinfo)))
10908 display_thread_info (&threadinfo);
10909 return result;
10910}
10911
10912static void
fba45db2 10913threadinfo_test_cmd (char *cmd, int tty)
c906108c
SS
10914{
10915 int athread = SAMPLE_THREAD;
10916 threadref thread;
10917 int set;
10918
10919 int_to_threadref (&thread, athread);
10920 printf_filtered ("Remote Threadinfo test\n");
10921 if (!get_and_display_threadinfo (&thread))
10922 printf_filtered ("FAIL cannot get thread info\n");
10923}
10924
10925static int
fba45db2 10926thread_display_step (threadref *ref, void *context)
c906108c
SS
10927{
10928 /* output_threadid(" threadstep ",ref); *//* simple test */
10929 return get_and_display_threadinfo (ref);
10930}
10931
10932static void
fba45db2 10933threadlist_update_test_cmd (char *cmd, int tty)
c906108c
SS
10934{
10935 printf_filtered ("Remote Threadlist update test\n");
10936 remote_threadlist_iterator (thread_display_step, 0, CRAZY_MAX_THREADS);
10937}
10938
10939static void
10940init_remote_threadtests (void)
10941{
3e43a32a
MS
10942 add_com ("tlist", class_obscure, threadlist_test_cmd,
10943 _("Fetch and print the remote list of "
10944 "thread identifiers, one pkt only"));
c906108c 10945 add_com ("tinfo", class_obscure, threadinfo_test_cmd,
1bedd215 10946 _("Fetch and display info about one thread"));
c906108c 10947 add_com ("tset", class_obscure, threadset_test_cmd,
1bedd215 10948 _("Test setting to a different thread"));
c906108c 10949 add_com ("tupd", class_obscure, threadlist_update_test_cmd,
1bedd215 10950 _("Iterate through updating all remote thread info"));
c906108c 10951 add_com ("talive", class_obscure, threadalive_test,
1bedd215 10952 _(" Remote thread alive test "));
c906108c
SS
10953}
10954
10955#endif /* 0 */
10956
f3fb8c85
MS
10957/* Convert a thread ID to a string. Returns the string in a static
10958 buffer. */
10959
10960static char *
117de6a9 10961remote_pid_to_str (struct target_ops *ops, ptid_t ptid)
f3fb8c85 10962{
79d7f229 10963 static char buf[64];
82f73884 10964 struct remote_state *rs = get_remote_state ();
f3fb8c85 10965
7cee1e54
PA
10966 if (ptid_equal (ptid, null_ptid))
10967 return normal_pid_to_str (ptid);
10968 else if (ptid_is_pid (ptid))
ecd0ada5
PA
10969 {
10970 /* Printing an inferior target id. */
10971
10972 /* When multi-process extensions are off, there's no way in the
10973 remote protocol to know the remote process id, if there's any
10974 at all. There's one exception --- when we're connected with
10975 target extended-remote, and we manually attached to a process
10976 with "attach PID". We don't record anywhere a flag that
10977 allows us to distinguish that case from the case of
10978 connecting with extended-remote and the stub already being
10979 attached to a process, and reporting yes to qAttached, hence
10980 no smart special casing here. */
10981 if (!remote_multi_process_p (rs))
10982 {
10983 xsnprintf (buf, sizeof buf, "Remote target");
10984 return buf;
10985 }
10986
10987 return normal_pid_to_str (ptid);
82f73884 10988 }
ecd0ada5 10989 else
79d7f229 10990 {
ecd0ada5
PA
10991 if (ptid_equal (magic_null_ptid, ptid))
10992 xsnprintf (buf, sizeof buf, "Thread <main>");
8020350c 10993 else if (remote_multi_process_p (rs))
de0d863e
DB
10994 if (ptid_get_lwp (ptid) == 0)
10995 return normal_pid_to_str (ptid);
10996 else
10997 xsnprintf (buf, sizeof buf, "Thread %d.%ld",
10998 ptid_get_pid (ptid), ptid_get_lwp (ptid));
ecd0ada5
PA
10999 else
11000 xsnprintf (buf, sizeof buf, "Thread %ld",
ba348170 11001 ptid_get_lwp (ptid));
79d7f229
PA
11002 return buf;
11003 }
f3fb8c85
MS
11004}
11005
38691318
KB
11006/* Get the address of the thread local variable in OBJFILE which is
11007 stored at OFFSET within the thread local storage for thread PTID. */
11008
11009static CORE_ADDR
117de6a9
PA
11010remote_get_thread_local_address (struct target_ops *ops,
11011 ptid_t ptid, CORE_ADDR lm, CORE_ADDR offset)
38691318 11012{
4082afcc 11013 if (packet_support (PACKET_qGetTLSAddr) != PACKET_DISABLE)
38691318
KB
11014 {
11015 struct remote_state *rs = get_remote_state ();
6d820c5c 11016 char *p = rs->buf;
82f73884 11017 char *endp = rs->buf + get_remote_packet_size ();
571dd617 11018 enum packet_result result;
38691318
KB
11019
11020 strcpy (p, "qGetTLSAddr:");
11021 p += strlen (p);
82f73884 11022 p = write_ptid (p, endp, ptid);
38691318
KB
11023 *p++ = ',';
11024 p += hexnumstr (p, offset);
11025 *p++ = ',';
11026 p += hexnumstr (p, lm);
11027 *p++ = '\0';
11028
6d820c5c
DJ
11029 putpkt (rs->buf);
11030 getpkt (&rs->buf, &rs->buf_size, 0);
3e43a32a
MS
11031 result = packet_ok (rs->buf,
11032 &remote_protocol_packets[PACKET_qGetTLSAddr]);
571dd617 11033 if (result == PACKET_OK)
38691318
KB
11034 {
11035 ULONGEST result;
11036
6d820c5c 11037 unpack_varlen_hex (rs->buf, &result);
38691318
KB
11038 return result;
11039 }
571dd617 11040 else if (result == PACKET_UNKNOWN)
109c3e39
AC
11041 throw_error (TLS_GENERIC_ERROR,
11042 _("Remote target doesn't support qGetTLSAddr packet"));
38691318 11043 else
109c3e39
AC
11044 throw_error (TLS_GENERIC_ERROR,
11045 _("Remote target failed to process qGetTLSAddr request"));
38691318
KB
11046 }
11047 else
109c3e39
AC
11048 throw_error (TLS_GENERIC_ERROR,
11049 _("TLS not supported or disabled on this target"));
38691318
KB
11050 /* Not reached. */
11051 return 0;
11052}
11053
711e434b
PM
11054/* Provide thread local base, i.e. Thread Information Block address.
11055 Returns 1 if ptid is found and thread_local_base is non zero. */
11056
70221824 11057static int
bd7ae0f5 11058remote_get_tib_address (struct target_ops *self, ptid_t ptid, CORE_ADDR *addr)
711e434b 11059{
4082afcc 11060 if (packet_support (PACKET_qGetTIBAddr) != PACKET_DISABLE)
711e434b
PM
11061 {
11062 struct remote_state *rs = get_remote_state ();
11063 char *p = rs->buf;
11064 char *endp = rs->buf + get_remote_packet_size ();
11065 enum packet_result result;
11066
11067 strcpy (p, "qGetTIBAddr:");
11068 p += strlen (p);
11069 p = write_ptid (p, endp, ptid);
11070 *p++ = '\0';
11071
11072 putpkt (rs->buf);
11073 getpkt (&rs->buf, &rs->buf_size, 0);
11074 result = packet_ok (rs->buf,
11075 &remote_protocol_packets[PACKET_qGetTIBAddr]);
11076 if (result == PACKET_OK)
11077 {
11078 ULONGEST result;
11079
11080 unpack_varlen_hex (rs->buf, &result);
11081 if (addr)
11082 *addr = (CORE_ADDR) result;
11083 return 1;
11084 }
11085 else if (result == PACKET_UNKNOWN)
11086 error (_("Remote target doesn't support qGetTIBAddr packet"));
11087 else
11088 error (_("Remote target failed to process qGetTIBAddr request"));
11089 }
11090 else
11091 error (_("qGetTIBAddr not supported or disabled on this target"));
11092 /* Not reached. */
11093 return 0;
11094}
11095
29709017
DJ
11096/* Support for inferring a target description based on the current
11097 architecture and the size of a 'g' packet. While the 'g' packet
11098 can have any size (since optional registers can be left off the
11099 end), some sizes are easily recognizable given knowledge of the
11100 approximate architecture. */
11101
11102struct remote_g_packet_guess
11103{
11104 int bytes;
11105 const struct target_desc *tdesc;
11106};
11107typedef struct remote_g_packet_guess remote_g_packet_guess_s;
11108DEF_VEC_O(remote_g_packet_guess_s);
11109
11110struct remote_g_packet_data
11111{
11112 VEC(remote_g_packet_guess_s) *guesses;
11113};
11114
11115static struct gdbarch_data *remote_g_packet_data_handle;
11116
11117static void *
11118remote_g_packet_data_init (struct obstack *obstack)
11119{
11120 return OBSTACK_ZALLOC (obstack, struct remote_g_packet_data);
11121}
11122
11123void
11124register_remote_g_packet_guess (struct gdbarch *gdbarch, int bytes,
11125 const struct target_desc *tdesc)
11126{
11127 struct remote_g_packet_data *data
19ba03f4
SM
11128 = ((struct remote_g_packet_data *)
11129 gdbarch_data (gdbarch, remote_g_packet_data_handle));
29709017
DJ
11130 struct remote_g_packet_guess new_guess, *guess;
11131 int ix;
11132
11133 gdb_assert (tdesc != NULL);
11134
11135 for (ix = 0;
11136 VEC_iterate (remote_g_packet_guess_s, data->guesses, ix, guess);
11137 ix++)
11138 if (guess->bytes == bytes)
11139 internal_error (__FILE__, __LINE__,
9b20d036 11140 _("Duplicate g packet description added for size %d"),
29709017
DJ
11141 bytes);
11142
11143 new_guess.bytes = bytes;
11144 new_guess.tdesc = tdesc;
11145 VEC_safe_push (remote_g_packet_guess_s, data->guesses, &new_guess);
11146}
11147
d962ef82
DJ
11148/* Return 1 if remote_read_description would do anything on this target
11149 and architecture, 0 otherwise. */
11150
11151static int
11152remote_read_description_p (struct target_ops *target)
11153{
11154 struct remote_g_packet_data *data
19ba03f4
SM
11155 = ((struct remote_g_packet_data *)
11156 gdbarch_data (target_gdbarch (), remote_g_packet_data_handle));
d962ef82
DJ
11157
11158 if (!VEC_empty (remote_g_packet_guess_s, data->guesses))
11159 return 1;
11160
11161 return 0;
11162}
11163
29709017
DJ
11164static const struct target_desc *
11165remote_read_description (struct target_ops *target)
11166{
11167 struct remote_g_packet_data *data
19ba03f4
SM
11168 = ((struct remote_g_packet_data *)
11169 gdbarch_data (target_gdbarch (), remote_g_packet_data_handle));
29709017 11170
d962ef82
DJ
11171 /* Do not try this during initial connection, when we do not know
11172 whether there is a running but stopped thread. */
11173 if (!target_has_execution || ptid_equal (inferior_ptid, null_ptid))
2117c711 11174 return target->beneath->to_read_description (target->beneath);
d962ef82 11175
29709017
DJ
11176 if (!VEC_empty (remote_g_packet_guess_s, data->guesses))
11177 {
11178 struct remote_g_packet_guess *guess;
11179 int ix;
11180 int bytes = send_g_packet ();
11181
11182 for (ix = 0;
11183 VEC_iterate (remote_g_packet_guess_s, data->guesses, ix, guess);
11184 ix++)
11185 if (guess->bytes == bytes)
11186 return guess->tdesc;
11187
11188 /* We discard the g packet. A minor optimization would be to
11189 hold on to it, and fill the register cache once we have selected
11190 an architecture, but it's too tricky to do safely. */
11191 }
11192
2117c711 11193 return target->beneath->to_read_description (target->beneath);
29709017
DJ
11194}
11195
a6b151f1
DJ
11196/* Remote file transfer support. This is host-initiated I/O, not
11197 target-initiated; for target-initiated, see remote-fileio.c. */
11198
11199/* If *LEFT is at least the length of STRING, copy STRING to
11200 *BUFFER, update *BUFFER to point to the new end of the buffer, and
11201 decrease *LEFT. Otherwise raise an error. */
11202
11203static void
11204remote_buffer_add_string (char **buffer, int *left, char *string)
11205{
11206 int len = strlen (string);
11207
11208 if (len > *left)
11209 error (_("Packet too long for target."));
11210
11211 memcpy (*buffer, string, len);
11212 *buffer += len;
11213 *left -= len;
11214
11215 /* NUL-terminate the buffer as a convenience, if there is
11216 room. */
11217 if (*left)
11218 **buffer = '\0';
11219}
11220
11221/* If *LEFT is large enough, hex encode LEN bytes from BYTES into
11222 *BUFFER, update *BUFFER to point to the new end of the buffer, and
11223 decrease *LEFT. Otherwise raise an error. */
11224
11225static void
11226remote_buffer_add_bytes (char **buffer, int *left, const gdb_byte *bytes,
11227 int len)
11228{
11229 if (2 * len > *left)
11230 error (_("Packet too long for target."));
11231
11232 bin2hex (bytes, *buffer, len);
11233 *buffer += 2 * len;
11234 *left -= 2 * len;
11235
11236 /* NUL-terminate the buffer as a convenience, if there is
11237 room. */
11238 if (*left)
11239 **buffer = '\0';
11240}
11241
11242/* If *LEFT is large enough, convert VALUE to hex and add it to
11243 *BUFFER, update *BUFFER to point to the new end of the buffer, and
11244 decrease *LEFT. Otherwise raise an error. */
11245
11246static void
11247remote_buffer_add_int (char **buffer, int *left, ULONGEST value)
11248{
11249 int len = hexnumlen (value);
11250
11251 if (len > *left)
11252 error (_("Packet too long for target."));
11253
11254 hexnumstr (*buffer, value);
11255 *buffer += len;
11256 *left -= len;
11257
11258 /* NUL-terminate the buffer as a convenience, if there is
11259 room. */
11260 if (*left)
11261 **buffer = '\0';
11262}
11263
11264/* Parse an I/O result packet from BUFFER. Set RETCODE to the return
11265 value, *REMOTE_ERRNO to the remote error number or zero if none
11266 was included, and *ATTACHMENT to point to the start of the annex
11267 if any. The length of the packet isn't needed here; there may
11268 be NUL bytes in BUFFER, but they will be after *ATTACHMENT.
11269
11270 Return 0 if the packet could be parsed, -1 if it could not. If
11271 -1 is returned, the other variables may not be initialized. */
11272
11273static int
11274remote_hostio_parse_result (char *buffer, int *retcode,
11275 int *remote_errno, char **attachment)
11276{
11277 char *p, *p2;
11278
11279 *remote_errno = 0;
11280 *attachment = NULL;
11281
11282 if (buffer[0] != 'F')
11283 return -1;
11284
11285 errno = 0;
11286 *retcode = strtol (&buffer[1], &p, 16);
11287 if (errno != 0 || p == &buffer[1])
11288 return -1;
11289
11290 /* Check for ",errno". */
11291 if (*p == ',')
11292 {
11293 errno = 0;
11294 *remote_errno = strtol (p + 1, &p2, 16);
11295 if (errno != 0 || p + 1 == p2)
11296 return -1;
11297 p = p2;
11298 }
11299
11300 /* Check for ";attachment". If there is no attachment, the
11301 packet should end here. */
11302 if (*p == ';')
11303 {
11304 *attachment = p + 1;
11305 return 0;
11306 }
11307 else if (*p == '\0')
11308 return 0;
11309 else
11310 return -1;
11311}
11312
11313/* Send a prepared I/O packet to the target and read its response.
11314 The prepared packet is in the global RS->BUF before this function
11315 is called, and the answer is there when we return.
11316
11317 COMMAND_BYTES is the length of the request to send, which may include
11318 binary data. WHICH_PACKET is the packet configuration to check
11319 before attempting a packet. If an error occurs, *REMOTE_ERRNO
11320 is set to the error number and -1 is returned. Otherwise the value
11321 returned by the function is returned.
11322
11323 ATTACHMENT and ATTACHMENT_LEN should be non-NULL if and only if an
11324 attachment is expected; an error will be reported if there's a
11325 mismatch. If one is found, *ATTACHMENT will be set to point into
11326 the packet buffer and *ATTACHMENT_LEN will be set to the
11327 attachment's length. */
11328
11329static int
11330remote_hostio_send_command (int command_bytes, int which_packet,
11331 int *remote_errno, char **attachment,
11332 int *attachment_len)
11333{
11334 struct remote_state *rs = get_remote_state ();
11335 int ret, bytes_read;
11336 char *attachment_tmp;
11337
5d93a237 11338 if (!rs->remote_desc
4082afcc 11339 || packet_support (which_packet) == PACKET_DISABLE)
a6b151f1
DJ
11340 {
11341 *remote_errno = FILEIO_ENOSYS;
11342 return -1;
11343 }
11344
11345 putpkt_binary (rs->buf, command_bytes);
11346 bytes_read = getpkt_sane (&rs->buf, &rs->buf_size, 0);
11347
11348 /* If it timed out, something is wrong. Don't try to parse the
11349 buffer. */
11350 if (bytes_read < 0)
11351 {
11352 *remote_errno = FILEIO_EINVAL;
11353 return -1;
11354 }
11355
11356 switch (packet_ok (rs->buf, &remote_protocol_packets[which_packet]))
11357 {
11358 case PACKET_ERROR:
11359 *remote_errno = FILEIO_EINVAL;
11360 return -1;
11361 case PACKET_UNKNOWN:
11362 *remote_errno = FILEIO_ENOSYS;
11363 return -1;
11364 case PACKET_OK:
11365 break;
11366 }
11367
11368 if (remote_hostio_parse_result (rs->buf, &ret, remote_errno,
11369 &attachment_tmp))
11370 {
11371 *remote_errno = FILEIO_EINVAL;
11372 return -1;
11373 }
11374
11375 /* Make sure we saw an attachment if and only if we expected one. */
11376 if ((attachment_tmp == NULL && attachment != NULL)
11377 || (attachment_tmp != NULL && attachment == NULL))
11378 {
11379 *remote_errno = FILEIO_EINVAL;
11380 return -1;
11381 }
11382
11383 /* If an attachment was found, it must point into the packet buffer;
11384 work out how many bytes there were. */
11385 if (attachment_tmp != NULL)
11386 {
11387 *attachment = attachment_tmp;
11388 *attachment_len = bytes_read - (*attachment - rs->buf);
11389 }
11390
11391 return ret;
11392}
11393
80152258
PA
11394/* Invalidate the readahead cache. */
11395
11396static void
11397readahead_cache_invalidate (void)
11398{
11399 struct remote_state *rs = get_remote_state ();
11400
11401 rs->readahead_cache.fd = -1;
11402}
11403
11404/* Invalidate the readahead cache if it is holding data for FD. */
11405
11406static void
11407readahead_cache_invalidate_fd (int fd)
11408{
11409 struct remote_state *rs = get_remote_state ();
11410
11411 if (rs->readahead_cache.fd == fd)
11412 rs->readahead_cache.fd = -1;
11413}
11414
15a201c8
GB
11415/* Set the filesystem remote_hostio functions that take FILENAME
11416 arguments will use. Return 0 on success, or -1 if an error
11417 occurs (and set *REMOTE_ERRNO). */
11418
11419static int
11420remote_hostio_set_filesystem (struct inferior *inf, int *remote_errno)
11421{
11422 struct remote_state *rs = get_remote_state ();
11423 int required_pid = (inf == NULL || inf->fake_pid_p) ? 0 : inf->pid;
11424 char *p = rs->buf;
11425 int left = get_remote_packet_size () - 1;
11426 char arg[9];
11427 int ret;
11428
11429 if (packet_support (PACKET_vFile_setfs) == PACKET_DISABLE)
11430 return 0;
11431
11432 if (rs->fs_pid != -1 && required_pid == rs->fs_pid)
11433 return 0;
11434
11435 remote_buffer_add_string (&p, &left, "vFile:setfs:");
11436
11437 xsnprintf (arg, sizeof (arg), "%x", required_pid);
11438 remote_buffer_add_string (&p, &left, arg);
11439
11440 ret = remote_hostio_send_command (p - rs->buf, PACKET_vFile_setfs,
11441 remote_errno, NULL, NULL);
11442
11443 if (packet_support (PACKET_vFile_setfs) == PACKET_DISABLE)
11444 return 0;
11445
11446 if (ret == 0)
11447 rs->fs_pid = required_pid;
11448
11449 return ret;
11450}
11451
12e2a5fd 11452/* Implementation of to_fileio_open. */
a6b151f1
DJ
11453
11454static int
cd897586 11455remote_hostio_open (struct target_ops *self,
07c138c8 11456 struct inferior *inf, const char *filename,
4313b8c0
GB
11457 int flags, int mode, int warn_if_slow,
11458 int *remote_errno)
a6b151f1
DJ
11459{
11460 struct remote_state *rs = get_remote_state ();
11461 char *p = rs->buf;
11462 int left = get_remote_packet_size () - 1;
11463
4313b8c0
GB
11464 if (warn_if_slow)
11465 {
11466 static int warning_issued = 0;
11467
11468 printf_unfiltered (_("Reading %s from remote target...\n"),
11469 filename);
11470
11471 if (!warning_issued)
11472 {
11473 warning (_("File transfers from remote targets can be slow."
11474 " Use \"set sysroot\" to access files locally"
11475 " instead."));
11476 warning_issued = 1;
11477 }
11478 }
11479
15a201c8
GB
11480 if (remote_hostio_set_filesystem (inf, remote_errno) != 0)
11481 return -1;
11482
a6b151f1
DJ
11483 remote_buffer_add_string (&p, &left, "vFile:open:");
11484
11485 remote_buffer_add_bytes (&p, &left, (const gdb_byte *) filename,
11486 strlen (filename));
11487 remote_buffer_add_string (&p, &left, ",");
11488
11489 remote_buffer_add_int (&p, &left, flags);
11490 remote_buffer_add_string (&p, &left, ",");
11491
11492 remote_buffer_add_int (&p, &left, mode);
11493
11494 return remote_hostio_send_command (p - rs->buf, PACKET_vFile_open,
11495 remote_errno, NULL, NULL);
11496}
11497
12e2a5fd 11498/* Implementation of to_fileio_pwrite. */
a6b151f1
DJ
11499
11500static int
0d866f62
TT
11501remote_hostio_pwrite (struct target_ops *self,
11502 int fd, const gdb_byte *write_buf, int len,
a6b151f1
DJ
11503 ULONGEST offset, int *remote_errno)
11504{
11505 struct remote_state *rs = get_remote_state ();
11506 char *p = rs->buf;
11507 int left = get_remote_packet_size ();
11508 int out_len;
11509
80152258
PA
11510 readahead_cache_invalidate_fd (fd);
11511
a6b151f1
DJ
11512 remote_buffer_add_string (&p, &left, "vFile:pwrite:");
11513
11514 remote_buffer_add_int (&p, &left, fd);
11515 remote_buffer_add_string (&p, &left, ",");
11516
11517 remote_buffer_add_int (&p, &left, offset);
11518 remote_buffer_add_string (&p, &left, ",");
11519
124e13d9 11520 p += remote_escape_output (write_buf, len, 1, (gdb_byte *) p, &out_len,
a6b151f1
DJ
11521 get_remote_packet_size () - (p - rs->buf));
11522
11523 return remote_hostio_send_command (p - rs->buf, PACKET_vFile_pwrite,
11524 remote_errno, NULL, NULL);
11525}
11526
80152258
PA
11527/* Helper for the implementation of to_fileio_pread. Read the file
11528 from the remote side with vFile:pread. */
a6b151f1
DJ
11529
11530static int
80152258
PA
11531remote_hostio_pread_vFile (struct target_ops *self,
11532 int fd, gdb_byte *read_buf, int len,
11533 ULONGEST offset, int *remote_errno)
a6b151f1
DJ
11534{
11535 struct remote_state *rs = get_remote_state ();
11536 char *p = rs->buf;
11537 char *attachment;
11538 int left = get_remote_packet_size ();
11539 int ret, attachment_len;
11540 int read_len;
11541
11542 remote_buffer_add_string (&p, &left, "vFile:pread:");
11543
11544 remote_buffer_add_int (&p, &left, fd);
11545 remote_buffer_add_string (&p, &left, ",");
11546
11547 remote_buffer_add_int (&p, &left, len);
11548 remote_buffer_add_string (&p, &left, ",");
11549
11550 remote_buffer_add_int (&p, &left, offset);
11551
11552 ret = remote_hostio_send_command (p - rs->buf, PACKET_vFile_pread,
11553 remote_errno, &attachment,
11554 &attachment_len);
11555
11556 if (ret < 0)
11557 return ret;
11558
bc20a4af 11559 read_len = remote_unescape_input ((gdb_byte *) attachment, attachment_len,
a6b151f1
DJ
11560 read_buf, len);
11561 if (read_len != ret)
11562 error (_("Read returned %d, but %d bytes."), ret, (int) read_len);
11563
11564 return ret;
11565}
11566
80152258
PA
11567/* Serve pread from the readahead cache. Returns number of bytes
11568 read, or 0 if the request can't be served from the cache. */
11569
11570static int
11571remote_hostio_pread_from_cache (struct remote_state *rs,
11572 int fd, gdb_byte *read_buf, size_t len,
11573 ULONGEST offset)
11574{
11575 struct readahead_cache *cache = &rs->readahead_cache;
11576
11577 if (cache->fd == fd
11578 && cache->offset <= offset
11579 && offset < cache->offset + cache->bufsize)
11580 {
11581 ULONGEST max = cache->offset + cache->bufsize;
11582
11583 if (offset + len > max)
11584 len = max - offset;
11585
11586 memcpy (read_buf, cache->buf + offset - cache->offset, len);
11587 return len;
11588 }
11589
11590 return 0;
11591}
11592
11593/* Implementation of to_fileio_pread. */
11594
11595static int
11596remote_hostio_pread (struct target_ops *self,
11597 int fd, gdb_byte *read_buf, int len,
11598 ULONGEST offset, int *remote_errno)
11599{
11600 int ret;
11601 struct remote_state *rs = get_remote_state ();
11602 struct readahead_cache *cache = &rs->readahead_cache;
11603
11604 ret = remote_hostio_pread_from_cache (rs, fd, read_buf, len, offset);
11605 if (ret > 0)
11606 {
11607 cache->hit_count++;
11608
11609 if (remote_debug)
11610 fprintf_unfiltered (gdb_stdlog, "readahead cache hit %s\n",
11611 pulongest (cache->hit_count));
11612 return ret;
11613 }
11614
11615 cache->miss_count++;
11616 if (remote_debug)
11617 fprintf_unfiltered (gdb_stdlog, "readahead cache miss %s\n",
11618 pulongest (cache->miss_count));
11619
11620 cache->fd = fd;
11621 cache->offset = offset;
11622 cache->bufsize = get_remote_packet_size ();
224c3ddb 11623 cache->buf = (gdb_byte *) xrealloc (cache->buf, cache->bufsize);
80152258
PA
11624
11625 ret = remote_hostio_pread_vFile (self, cache->fd, cache->buf, cache->bufsize,
11626 cache->offset, remote_errno);
11627 if (ret <= 0)
11628 {
11629 readahead_cache_invalidate_fd (fd);
11630 return ret;
11631 }
11632
11633 cache->bufsize = ret;
11634 return remote_hostio_pread_from_cache (rs, fd, read_buf, len, offset);
11635}
11636
12e2a5fd 11637/* Implementation of to_fileio_close. */
a6b151f1
DJ
11638
11639static int
df39ea25 11640remote_hostio_close (struct target_ops *self, int fd, int *remote_errno)
a6b151f1
DJ
11641{
11642 struct remote_state *rs = get_remote_state ();
11643 char *p = rs->buf;
11644 int left = get_remote_packet_size () - 1;
11645
80152258
PA
11646 readahead_cache_invalidate_fd (fd);
11647
a6b151f1
DJ
11648 remote_buffer_add_string (&p, &left, "vFile:close:");
11649
11650 remote_buffer_add_int (&p, &left, fd);
11651
11652 return remote_hostio_send_command (p - rs->buf, PACKET_vFile_close,
11653 remote_errno, NULL, NULL);
11654}
11655
12e2a5fd 11656/* Implementation of to_fileio_unlink. */
a6b151f1
DJ
11657
11658static int
dbbca37d 11659remote_hostio_unlink (struct target_ops *self,
07c138c8
GB
11660 struct inferior *inf, const char *filename,
11661 int *remote_errno)
a6b151f1
DJ
11662{
11663 struct remote_state *rs = get_remote_state ();
11664 char *p = rs->buf;
11665 int left = get_remote_packet_size () - 1;
11666
15a201c8
GB
11667 if (remote_hostio_set_filesystem (inf, remote_errno) != 0)
11668 return -1;
11669
a6b151f1
DJ
11670 remote_buffer_add_string (&p, &left, "vFile:unlink:");
11671
11672 remote_buffer_add_bytes (&p, &left, (const gdb_byte *) filename,
11673 strlen (filename));
11674
11675 return remote_hostio_send_command (p - rs->buf, PACKET_vFile_unlink,
11676 remote_errno, NULL, NULL);
11677}
11678
12e2a5fd 11679/* Implementation of to_fileio_readlink. */
b9e7b9c3
UW
11680
11681static char *
fab5aa7c 11682remote_hostio_readlink (struct target_ops *self,
07c138c8
GB
11683 struct inferior *inf, const char *filename,
11684 int *remote_errno)
b9e7b9c3
UW
11685{
11686 struct remote_state *rs = get_remote_state ();
11687 char *p = rs->buf;
11688 char *attachment;
11689 int left = get_remote_packet_size ();
11690 int len, attachment_len;
11691 int read_len;
11692 char *ret;
11693
15a201c8
GB
11694 if (remote_hostio_set_filesystem (inf, remote_errno) != 0)
11695 return NULL;
11696
b9e7b9c3
UW
11697 remote_buffer_add_string (&p, &left, "vFile:readlink:");
11698
11699 remote_buffer_add_bytes (&p, &left, (const gdb_byte *) filename,
11700 strlen (filename));
11701
11702 len = remote_hostio_send_command (p - rs->buf, PACKET_vFile_readlink,
11703 remote_errno, &attachment,
11704 &attachment_len);
11705
11706 if (len < 0)
11707 return NULL;
11708
224c3ddb 11709 ret = (char *) xmalloc (len + 1);
b9e7b9c3 11710
bc20a4af
PA
11711 read_len = remote_unescape_input ((gdb_byte *) attachment, attachment_len,
11712 (gdb_byte *) ret, len);
b9e7b9c3
UW
11713 if (read_len != len)
11714 error (_("Readlink returned %d, but %d bytes."), len, read_len);
11715
11716 ret[len] = '\0';
11717 return ret;
11718}
11719
12e2a5fd 11720/* Implementation of to_fileio_fstat. */
0a93529c
GB
11721
11722static int
11723remote_hostio_fstat (struct target_ops *self,
11724 int fd, struct stat *st,
11725 int *remote_errno)
11726{
11727 struct remote_state *rs = get_remote_state ();
11728 char *p = rs->buf;
11729 int left = get_remote_packet_size ();
11730 int attachment_len, ret;
11731 char *attachment;
11732 struct fio_stat fst;
11733 int read_len;
11734
464b0089
GB
11735 remote_buffer_add_string (&p, &left, "vFile:fstat:");
11736
11737 remote_buffer_add_int (&p, &left, fd);
11738
11739 ret = remote_hostio_send_command (p - rs->buf, PACKET_vFile_fstat,
11740 remote_errno, &attachment,
11741 &attachment_len);
11742 if (ret < 0)
0a93529c 11743 {
464b0089
GB
11744 if (*remote_errno != FILEIO_ENOSYS)
11745 return ret;
11746
0a93529c
GB
11747 /* Strictly we should return -1, ENOSYS here, but when
11748 "set sysroot remote:" was implemented in August 2008
11749 BFD's need for a stat function was sidestepped with
11750 this hack. This was not remedied until March 2015
11751 so we retain the previous behavior to avoid breaking
11752 compatibility.
11753
11754 Note that the memset is a March 2015 addition; older
11755 GDBs set st_size *and nothing else* so the structure
11756 would have garbage in all other fields. This might
11757 break something but retaining the previous behavior
11758 here would be just too wrong. */
11759
11760 memset (st, 0, sizeof (struct stat));
11761 st->st_size = INT_MAX;
11762 return 0;
11763 }
11764
0a93529c
GB
11765 read_len = remote_unescape_input ((gdb_byte *) attachment, attachment_len,
11766 (gdb_byte *) &fst, sizeof (fst));
11767
11768 if (read_len != ret)
11769 error (_("vFile:fstat returned %d, but %d bytes."), ret, read_len);
11770
11771 if (read_len != sizeof (fst))
11772 error (_("vFile:fstat returned %d bytes, but expecting %d."),
11773 read_len, (int) sizeof (fst));
11774
11775 remote_fileio_to_host_stat (&fst, st);
11776
11777 return 0;
11778}
11779
12e2a5fd 11780/* Implementation of to_filesystem_is_local. */
e3dd7556
GB
11781
11782static int
11783remote_filesystem_is_local (struct target_ops *self)
11784{
11785 /* Valgrind GDB presents itself as a remote target but works
11786 on the local filesystem: it does not implement remote get
11787 and users are not expected to set a sysroot. To handle
11788 this case we treat the remote filesystem as local if the
11789 sysroot is exactly TARGET_SYSROOT_PREFIX and if the stub
11790 does not support vFile:open. */
a3be80c3 11791 if (strcmp (gdb_sysroot, TARGET_SYSROOT_PREFIX) == 0)
e3dd7556
GB
11792 {
11793 enum packet_support ps = packet_support (PACKET_vFile_open);
11794
11795 if (ps == PACKET_SUPPORT_UNKNOWN)
11796 {
11797 int fd, remote_errno;
11798
11799 /* Try opening a file to probe support. The supplied
11800 filename is irrelevant, we only care about whether
11801 the stub recognizes the packet or not. */
07c138c8 11802 fd = remote_hostio_open (self, NULL, "just probing",
4313b8c0 11803 FILEIO_O_RDONLY, 0700, 0,
e3dd7556
GB
11804 &remote_errno);
11805
11806 if (fd >= 0)
11807 remote_hostio_close (self, fd, &remote_errno);
11808
11809 ps = packet_support (PACKET_vFile_open);
11810 }
11811
11812 if (ps == PACKET_DISABLE)
11813 {
11814 static int warning_issued = 0;
11815
11816 if (!warning_issued)
11817 {
11818 warning (_("remote target does not support file"
11819 " transfer, attempting to access files"
11820 " from local filesystem."));
11821 warning_issued = 1;
11822 }
11823
11824 return 1;
11825 }
11826 }
11827
11828 return 0;
11829}
11830
a6b151f1
DJ
11831static int
11832remote_fileio_errno_to_host (int errnum)
11833{
11834 switch (errnum)
11835 {
11836 case FILEIO_EPERM:
11837 return EPERM;
11838 case FILEIO_ENOENT:
11839 return ENOENT;
11840 case FILEIO_EINTR:
11841 return EINTR;
11842 case FILEIO_EIO:
11843 return EIO;
11844 case FILEIO_EBADF:
11845 return EBADF;
11846 case FILEIO_EACCES:
11847 return EACCES;
11848 case FILEIO_EFAULT:
11849 return EFAULT;
11850 case FILEIO_EBUSY:
11851 return EBUSY;
11852 case FILEIO_EEXIST:
11853 return EEXIST;
11854 case FILEIO_ENODEV:
11855 return ENODEV;
11856 case FILEIO_ENOTDIR:
11857 return ENOTDIR;
11858 case FILEIO_EISDIR:
11859 return EISDIR;
11860 case FILEIO_EINVAL:
11861 return EINVAL;
11862 case FILEIO_ENFILE:
11863 return ENFILE;
11864 case FILEIO_EMFILE:
11865 return EMFILE;
11866 case FILEIO_EFBIG:
11867 return EFBIG;
11868 case FILEIO_ENOSPC:
11869 return ENOSPC;
11870 case FILEIO_ESPIPE:
11871 return ESPIPE;
11872 case FILEIO_EROFS:
11873 return EROFS;
11874 case FILEIO_ENOSYS:
11875 return ENOSYS;
11876 case FILEIO_ENAMETOOLONG:
11877 return ENAMETOOLONG;
11878 }
11879 return -1;
11880}
11881
11882static char *
11883remote_hostio_error (int errnum)
11884{
11885 int host_error = remote_fileio_errno_to_host (errnum);
11886
11887 if (host_error == -1)
11888 error (_("Unknown remote I/O error %d"), errnum);
11889 else
11890 error (_("Remote I/O error: %s"), safe_strerror (host_error));
11891}
11892
a6b151f1
DJ
11893static void
11894remote_hostio_close_cleanup (void *opaque)
11895{
11896 int fd = *(int *) opaque;
11897 int remote_errno;
11898
df39ea25 11899 remote_hostio_close (find_target_at (process_stratum), fd, &remote_errno);
a6b151f1
DJ
11900}
11901
11902void
11903remote_file_put (const char *local_file, const char *remote_file, int from_tty)
11904{
11905 struct cleanup *back_to, *close_cleanup;
11906 int retcode, fd, remote_errno, bytes, io_size;
11907 FILE *file;
11908 gdb_byte *buffer;
11909 int bytes_in_buffer;
11910 int saw_eof;
11911 ULONGEST offset;
5d93a237 11912 struct remote_state *rs = get_remote_state ();
a6b151f1 11913
5d93a237 11914 if (!rs->remote_desc)
a6b151f1
DJ
11915 error (_("command can only be used with remote target"));
11916
614c279d 11917 file = gdb_fopen_cloexec (local_file, "rb");
a6b151f1
DJ
11918 if (file == NULL)
11919 perror_with_name (local_file);
7c8a8b04 11920 back_to = make_cleanup_fclose (file);
a6b151f1 11921
07c138c8 11922 fd = remote_hostio_open (find_target_at (process_stratum), NULL,
cd897586 11923 remote_file, (FILEIO_O_WRONLY | FILEIO_O_CREAT
a6b151f1 11924 | FILEIO_O_TRUNC),
4313b8c0 11925 0700, 0, &remote_errno);
a6b151f1
DJ
11926 if (fd == -1)
11927 remote_hostio_error (remote_errno);
11928
11929 /* Send up to this many bytes at once. They won't all fit in the
11930 remote packet limit, so we'll transfer slightly fewer. */
11931 io_size = get_remote_packet_size ();
224c3ddb 11932 buffer = (gdb_byte *) xmalloc (io_size);
a6b151f1
DJ
11933 make_cleanup (xfree, buffer);
11934
11935 close_cleanup = make_cleanup (remote_hostio_close_cleanup, &fd);
11936
11937 bytes_in_buffer = 0;
11938 saw_eof = 0;
11939 offset = 0;
11940 while (bytes_in_buffer || !saw_eof)
11941 {
11942 if (!saw_eof)
11943 {
3e43a32a
MS
11944 bytes = fread (buffer + bytes_in_buffer, 1,
11945 io_size - bytes_in_buffer,
a6b151f1
DJ
11946 file);
11947 if (bytes == 0)
11948 {
11949 if (ferror (file))
11950 error (_("Error reading %s."), local_file);
11951 else
11952 {
11953 /* EOF. Unless there is something still in the
11954 buffer from the last iteration, we are done. */
11955 saw_eof = 1;
11956 if (bytes_in_buffer == 0)
11957 break;
11958 }
11959 }
11960 }
11961 else
11962 bytes = 0;
11963
11964 bytes += bytes_in_buffer;
11965 bytes_in_buffer = 0;
11966
0d866f62
TT
11967 retcode = remote_hostio_pwrite (find_target_at (process_stratum),
11968 fd, buffer, bytes,
3e43a32a 11969 offset, &remote_errno);
a6b151f1
DJ
11970
11971 if (retcode < 0)
11972 remote_hostio_error (remote_errno);
11973 else if (retcode == 0)
11974 error (_("Remote write of %d bytes returned 0!"), bytes);
11975 else if (retcode < bytes)
11976 {
11977 /* Short write. Save the rest of the read data for the next
11978 write. */
11979 bytes_in_buffer = bytes - retcode;
11980 memmove (buffer, buffer + retcode, bytes_in_buffer);
11981 }
11982
11983 offset += retcode;
11984 }
11985
11986 discard_cleanups (close_cleanup);
df39ea25 11987 if (remote_hostio_close (find_target_at (process_stratum), fd, &remote_errno))
a6b151f1
DJ
11988 remote_hostio_error (remote_errno);
11989
11990 if (from_tty)
11991 printf_filtered (_("Successfully sent file \"%s\".\n"), local_file);
11992 do_cleanups (back_to);
11993}
11994
11995void
11996remote_file_get (const char *remote_file, const char *local_file, int from_tty)
11997{
11998 struct cleanup *back_to, *close_cleanup;
cea39f65 11999 int fd, remote_errno, bytes, io_size;
a6b151f1
DJ
12000 FILE *file;
12001 gdb_byte *buffer;
12002 ULONGEST offset;
5d93a237 12003 struct remote_state *rs = get_remote_state ();
a6b151f1 12004
5d93a237 12005 if (!rs->remote_desc)
a6b151f1
DJ
12006 error (_("command can only be used with remote target"));
12007
07c138c8 12008 fd = remote_hostio_open (find_target_at (process_stratum), NULL,
4313b8c0
GB
12009 remote_file, FILEIO_O_RDONLY, 0, 0,
12010 &remote_errno);
a6b151f1
DJ
12011 if (fd == -1)
12012 remote_hostio_error (remote_errno);
12013
614c279d 12014 file = gdb_fopen_cloexec (local_file, "wb");
a6b151f1
DJ
12015 if (file == NULL)
12016 perror_with_name (local_file);
7c8a8b04 12017 back_to = make_cleanup_fclose (file);
a6b151f1
DJ
12018
12019 /* Send up to this many bytes at once. They won't all fit in the
12020 remote packet limit, so we'll transfer slightly fewer. */
12021 io_size = get_remote_packet_size ();
224c3ddb 12022 buffer = (gdb_byte *) xmalloc (io_size);
a6b151f1
DJ
12023 make_cleanup (xfree, buffer);
12024
12025 close_cleanup = make_cleanup (remote_hostio_close_cleanup, &fd);
12026
12027 offset = 0;
12028 while (1)
12029 {
a3be983c
TT
12030 bytes = remote_hostio_pread (find_target_at (process_stratum),
12031 fd, buffer, io_size, offset, &remote_errno);
a6b151f1
DJ
12032 if (bytes == 0)
12033 /* Success, but no bytes, means end-of-file. */
12034 break;
12035 if (bytes == -1)
12036 remote_hostio_error (remote_errno);
12037
12038 offset += bytes;
12039
12040 bytes = fwrite (buffer, 1, bytes, file);
12041 if (bytes == 0)
12042 perror_with_name (local_file);
12043 }
12044
12045 discard_cleanups (close_cleanup);
df39ea25 12046 if (remote_hostio_close (find_target_at (process_stratum), fd, &remote_errno))
a6b151f1
DJ
12047 remote_hostio_error (remote_errno);
12048
12049 if (from_tty)
12050 printf_filtered (_("Successfully fetched file \"%s\".\n"), remote_file);
12051 do_cleanups (back_to);
12052}
12053
12054void
12055remote_file_delete (const char *remote_file, int from_tty)
12056{
12057 int retcode, remote_errno;
5d93a237 12058 struct remote_state *rs = get_remote_state ();
a6b151f1 12059
5d93a237 12060 if (!rs->remote_desc)
a6b151f1
DJ
12061 error (_("command can only be used with remote target"));
12062
dbbca37d 12063 retcode = remote_hostio_unlink (find_target_at (process_stratum),
07c138c8 12064 NULL, remote_file, &remote_errno);
a6b151f1
DJ
12065 if (retcode == -1)
12066 remote_hostio_error (remote_errno);
12067
12068 if (from_tty)
12069 printf_filtered (_("Successfully deleted file \"%s\".\n"), remote_file);
12070}
12071
12072static void
12073remote_put_command (char *args, int from_tty)
12074{
12075 struct cleanup *back_to;
12076 char **argv;
12077
d1a41061
PP
12078 if (args == NULL)
12079 error_no_arg (_("file to put"));
12080
12081 argv = gdb_buildargv (args);
a6b151f1
DJ
12082 back_to = make_cleanup_freeargv (argv);
12083 if (argv[0] == NULL || argv[1] == NULL || argv[2] != NULL)
12084 error (_("Invalid parameters to remote put"));
12085
12086 remote_file_put (argv[0], argv[1], from_tty);
12087
12088 do_cleanups (back_to);
12089}
12090
12091static void
12092remote_get_command (char *args, int from_tty)
12093{
12094 struct cleanup *back_to;
12095 char **argv;
12096
d1a41061
PP
12097 if (args == NULL)
12098 error_no_arg (_("file to get"));
12099
12100 argv = gdb_buildargv (args);
a6b151f1
DJ
12101 back_to = make_cleanup_freeargv (argv);
12102 if (argv[0] == NULL || argv[1] == NULL || argv[2] != NULL)
12103 error (_("Invalid parameters to remote get"));
12104
12105 remote_file_get (argv[0], argv[1], from_tty);
12106
12107 do_cleanups (back_to);
12108}
12109
12110static void
12111remote_delete_command (char *args, int from_tty)
12112{
12113 struct cleanup *back_to;
12114 char **argv;
12115
d1a41061
PP
12116 if (args == NULL)
12117 error_no_arg (_("file to delete"));
12118
12119 argv = gdb_buildargv (args);
a6b151f1
DJ
12120 back_to = make_cleanup_freeargv (argv);
12121 if (argv[0] == NULL || argv[1] != NULL)
12122 error (_("Invalid parameters to remote delete"));
12123
12124 remote_file_delete (argv[0], from_tty);
12125
12126 do_cleanups (back_to);
12127}
12128
12129static void
12130remote_command (char *args, int from_tty)
12131{
635c7e8a 12132 help_list (remote_cmdlist, "remote ", all_commands, gdb_stdout);
a6b151f1
DJ
12133}
12134
b2175913 12135static int
19db3e69 12136remote_can_execute_reverse (struct target_ops *self)
b2175913 12137{
4082afcc
PA
12138 if (packet_support (PACKET_bs) == PACKET_ENABLE
12139 || packet_support (PACKET_bc) == PACKET_ENABLE)
40ab02ce
MS
12140 return 1;
12141 else
12142 return 0;
b2175913
MS
12143}
12144
74531fed 12145static int
2a9a2795 12146remote_supports_non_stop (struct target_ops *self)
74531fed
PA
12147{
12148 return 1;
12149}
12150
03583c20 12151static int
2bfc0540 12152remote_supports_disable_randomization (struct target_ops *self)
03583c20
UW
12153{
12154 /* Only supported in extended mode. */
12155 return 0;
12156}
12157
8a305172 12158static int
86ce2668 12159remote_supports_multi_process (struct target_ops *self)
8a305172
PA
12160{
12161 struct remote_state *rs = get_remote_state ();
a744cf53 12162
8020350c 12163 return remote_multi_process_p (rs);
8a305172
PA
12164}
12165
70221824 12166static int
782b2b07
SS
12167remote_supports_cond_tracepoints (void)
12168{
4082afcc 12169 return packet_support (PACKET_ConditionalTracepoints) == PACKET_ENABLE;
782b2b07
SS
12170}
12171
3788aec7 12172static int
efcc2da7 12173remote_supports_cond_breakpoints (struct target_ops *self)
3788aec7 12174{
4082afcc 12175 return packet_support (PACKET_ConditionalBreakpoints) == PACKET_ENABLE;
3788aec7
LM
12176}
12177
70221824 12178static int
7a697b8d
SS
12179remote_supports_fast_tracepoints (void)
12180{
4082afcc 12181 return packet_support (PACKET_FastTracepoints) == PACKET_ENABLE;
7a697b8d
SS
12182}
12183
0fb4aa4b
PA
12184static int
12185remote_supports_static_tracepoints (void)
12186{
4082afcc 12187 return packet_support (PACKET_StaticTracepoints) == PACKET_ENABLE;
0fb4aa4b
PA
12188}
12189
1e4d1764
YQ
12190static int
12191remote_supports_install_in_trace (void)
12192{
4082afcc 12193 return packet_support (PACKET_InstallInTrace) == PACKET_ENABLE;
1e4d1764
YQ
12194}
12195
d248b706 12196static int
7d178d6a 12197remote_supports_enable_disable_tracepoint (struct target_ops *self)
d248b706 12198{
4082afcc
PA
12199 return (packet_support (PACKET_EnableDisableTracepoints_feature)
12200 == PACKET_ENABLE);
d248b706
KY
12201}
12202
3065dfb6 12203static int
6de37a3a 12204remote_supports_string_tracing (struct target_ops *self)
3065dfb6 12205{
4082afcc 12206 return packet_support (PACKET_tracenz_feature) == PACKET_ENABLE;
3065dfb6
SS
12207}
12208
d3ce09f5 12209static int
78eff0ec 12210remote_can_run_breakpoint_commands (struct target_ops *self)
d3ce09f5 12211{
4082afcc 12212 return packet_support (PACKET_BreakpointCommands) == PACKET_ENABLE;
d3ce09f5
SS
12213}
12214
35b1e5cc 12215static void
ecae04e1 12216remote_trace_init (struct target_ops *self)
35b1e5cc
SS
12217{
12218 putpkt ("QTinit");
12219 remote_get_noisy_reply (&target_buf, &target_buf_size);
ad91cd99 12220 if (strcmp (target_buf, "OK") != 0)
35b1e5cc
SS
12221 error (_("Target does not support this command."));
12222}
12223
12224static void free_actions_list (char **actions_list);
12225static void free_actions_list_cleanup_wrapper (void *);
12226static void
12227free_actions_list_cleanup_wrapper (void *al)
12228{
19ba03f4 12229 free_actions_list ((char **) al);
35b1e5cc
SS
12230}
12231
12232static void
12233free_actions_list (char **actions_list)
12234{
12235 int ndx;
12236
12237 if (actions_list == 0)
12238 return;
12239
12240 for (ndx = 0; actions_list[ndx]; ndx++)
12241 xfree (actions_list[ndx]);
12242
12243 xfree (actions_list);
12244}
12245
409873ef
SS
12246/* Recursive routine to walk through command list including loops, and
12247 download packets for each command. */
12248
12249static void
12250remote_download_command_source (int num, ULONGEST addr,
12251 struct command_line *cmds)
12252{
12253 struct remote_state *rs = get_remote_state ();
12254 struct command_line *cmd;
12255
12256 for (cmd = cmds; cmd; cmd = cmd->next)
12257 {
0df8b418 12258 QUIT; /* Allow user to bail out with ^C. */
409873ef
SS
12259 strcpy (rs->buf, "QTDPsrc:");
12260 encode_source_string (num, addr, "cmd", cmd->line,
12261 rs->buf + strlen (rs->buf),
12262 rs->buf_size - strlen (rs->buf));
12263 putpkt (rs->buf);
12264 remote_get_noisy_reply (&target_buf, &target_buf_size);
12265 if (strcmp (target_buf, "OK"))
12266 warning (_("Target does not support source download."));
12267
12268 if (cmd->control_type == while_control
12269 || cmd->control_type == while_stepping_control)
12270 {
12271 remote_download_command_source (num, addr, *cmd->body_list);
12272
0df8b418 12273 QUIT; /* Allow user to bail out with ^C. */
409873ef
SS
12274 strcpy (rs->buf, "QTDPsrc:");
12275 encode_source_string (num, addr, "cmd", "end",
12276 rs->buf + strlen (rs->buf),
12277 rs->buf_size - strlen (rs->buf));
12278 putpkt (rs->buf);
12279 remote_get_noisy_reply (&target_buf, &target_buf_size);
12280 if (strcmp (target_buf, "OK"))
12281 warning (_("Target does not support source download."));
12282 }
12283 }
12284}
12285
35b1e5cc 12286static void
548f7808 12287remote_download_tracepoint (struct target_ops *self, struct bp_location *loc)
35b1e5cc 12288{
bba74b36 12289#define BUF_SIZE 2048
e8ba3115 12290
35b1e5cc 12291 CORE_ADDR tpaddr;
409873ef 12292 char addrbuf[40];
bba74b36 12293 char buf[BUF_SIZE];
35b1e5cc
SS
12294 char **tdp_actions;
12295 char **stepping_actions;
12296 int ndx;
12297 struct cleanup *old_chain = NULL;
35b1e5cc 12298 char *pkt;
e8ba3115 12299 struct breakpoint *b = loc->owner;
d9b3f62e 12300 struct tracepoint *t = (struct tracepoint *) b;
35b1e5cc 12301
dc673c81 12302 encode_actions_rsp (loc, &tdp_actions, &stepping_actions);
e8ba3115
YQ
12303 old_chain = make_cleanup (free_actions_list_cleanup_wrapper,
12304 tdp_actions);
12305 (void) make_cleanup (free_actions_list_cleanup_wrapper,
12306 stepping_actions);
12307
12308 tpaddr = loc->address;
12309 sprintf_vma (addrbuf, tpaddr);
bba74b36
YQ
12310 xsnprintf (buf, BUF_SIZE, "QTDP:%x:%s:%c:%lx:%x", b->number,
12311 addrbuf, /* address */
12312 (b->enable_state == bp_enabled ? 'E' : 'D'),
12313 t->step_count, t->pass_count);
e8ba3115
YQ
12314 /* Fast tracepoints are mostly handled by the target, but we can
12315 tell the target how big of an instruction block should be moved
12316 around. */
12317 if (b->type == bp_fast_tracepoint)
12318 {
12319 /* Only test for support at download time; we may not know
12320 target capabilities at definition time. */
12321 if (remote_supports_fast_tracepoints ())
35b1e5cc 12322 {
6b940e6a
PL
12323 if (gdbarch_fast_tracepoint_valid_at (loc->gdbarch, tpaddr,
12324 NULL))
bba74b36 12325 xsnprintf (buf + strlen (buf), BUF_SIZE - strlen (buf), ":F%x",
6b940e6a 12326 gdb_insn_length (loc->gdbarch, tpaddr));
35b1e5cc 12327 else
e8ba3115
YQ
12328 /* If it passed validation at definition but fails now,
12329 something is very wrong. */
12330 internal_error (__FILE__, __LINE__,
12331 _("Fast tracepoint not "
12332 "valid during download"));
35b1e5cc 12333 }
e8ba3115
YQ
12334 else
12335 /* Fast tracepoints are functionally identical to regular
12336 tracepoints, so don't take lack of support as a reason to
12337 give up on the trace run. */
12338 warning (_("Target does not support fast tracepoints, "
12339 "downloading %d as regular tracepoint"), b->number);
12340 }
12341 else if (b->type == bp_static_tracepoint)
12342 {
12343 /* Only test for support at download time; we may not know
12344 target capabilities at definition time. */
12345 if (remote_supports_static_tracepoints ())
0fb4aa4b 12346 {
e8ba3115 12347 struct static_tracepoint_marker marker;
0fb4aa4b 12348
e8ba3115
YQ
12349 if (target_static_tracepoint_marker_at (tpaddr, &marker))
12350 strcat (buf, ":S");
0fb4aa4b 12351 else
e8ba3115 12352 error (_("Static tracepoint not valid during download"));
0fb4aa4b 12353 }
e8ba3115
YQ
12354 else
12355 /* Fast tracepoints are functionally identical to regular
12356 tracepoints, so don't take lack of support as a reason
12357 to give up on the trace run. */
12358 error (_("Target does not support static tracepoints"));
12359 }
12360 /* If the tracepoint has a conditional, make it into an agent
12361 expression and append to the definition. */
12362 if (loc->cond)
12363 {
12364 /* Only test support at download time, we may not know target
12365 capabilities at definition time. */
12366 if (remote_supports_cond_tracepoints ())
35b1e5cc 12367 {
833177a4 12368 agent_expr_up aexpr = gen_eval_for_expr (tpaddr, loc->cond.get ());
bba74b36
YQ
12369 xsnprintf (buf + strlen (buf), BUF_SIZE - strlen (buf), ":X%x,",
12370 aexpr->len);
e8ba3115
YQ
12371 pkt = buf + strlen (buf);
12372 for (ndx = 0; ndx < aexpr->len; ++ndx)
12373 pkt = pack_hex_byte (pkt, aexpr->buf[ndx]);
12374 *pkt = '\0';
35b1e5cc 12375 }
e8ba3115
YQ
12376 else
12377 warning (_("Target does not support conditional tracepoints, "
12378 "ignoring tp %d cond"), b->number);
12379 }
35b1e5cc 12380
d9b3f62e 12381 if (b->commands || *default_collect)
e8ba3115
YQ
12382 strcat (buf, "-");
12383 putpkt (buf);
12384 remote_get_noisy_reply (&target_buf, &target_buf_size);
12385 if (strcmp (target_buf, "OK"))
12386 error (_("Target does not support tracepoints."));
35b1e5cc 12387
e8ba3115
YQ
12388 /* do_single_steps (t); */
12389 if (tdp_actions)
12390 {
12391 for (ndx = 0; tdp_actions[ndx]; ndx++)
35b1e5cc 12392 {
e8ba3115 12393 QUIT; /* Allow user to bail out with ^C. */
bba74b36
YQ
12394 xsnprintf (buf, BUF_SIZE, "QTDP:-%x:%s:%s%c",
12395 b->number, addrbuf, /* address */
12396 tdp_actions[ndx],
12397 ((tdp_actions[ndx + 1] || stepping_actions)
12398 ? '-' : 0));
e8ba3115
YQ
12399 putpkt (buf);
12400 remote_get_noisy_reply (&target_buf,
12401 &target_buf_size);
12402 if (strcmp (target_buf, "OK"))
12403 error (_("Error on target while setting tracepoints."));
35b1e5cc 12404 }
e8ba3115
YQ
12405 }
12406 if (stepping_actions)
12407 {
12408 for (ndx = 0; stepping_actions[ndx]; ndx++)
35b1e5cc 12409 {
e8ba3115 12410 QUIT; /* Allow user to bail out with ^C. */
bba74b36
YQ
12411 xsnprintf (buf, BUF_SIZE, "QTDP:-%x:%s:%s%s%s",
12412 b->number, addrbuf, /* address */
12413 ((ndx == 0) ? "S" : ""),
12414 stepping_actions[ndx],
12415 (stepping_actions[ndx + 1] ? "-" : ""));
e8ba3115
YQ
12416 putpkt (buf);
12417 remote_get_noisy_reply (&target_buf,
12418 &target_buf_size);
12419 if (strcmp (target_buf, "OK"))
12420 error (_("Error on target while setting tracepoints."));
35b1e5cc 12421 }
e8ba3115 12422 }
409873ef 12423
4082afcc 12424 if (packet_support (PACKET_TracepointSource) == PACKET_ENABLE)
e8ba3115 12425 {
f00aae0f 12426 if (b->location != NULL)
409873ef 12427 {
e8ba3115 12428 strcpy (buf, "QTDPsrc:");
f00aae0f
KS
12429 encode_source_string (b->number, loc->address, "at",
12430 event_location_to_string (b->location),
12431 buf + strlen (buf), 2048 - strlen (buf));
e8ba3115
YQ
12432 putpkt (buf);
12433 remote_get_noisy_reply (&target_buf, &target_buf_size);
12434 if (strcmp (target_buf, "OK"))
12435 warning (_("Target does not support source download."));
409873ef 12436 }
e8ba3115
YQ
12437 if (b->cond_string)
12438 {
12439 strcpy (buf, "QTDPsrc:");
12440 encode_source_string (b->number, loc->address,
12441 "cond", b->cond_string, buf + strlen (buf),
12442 2048 - strlen (buf));
12443 putpkt (buf);
12444 remote_get_noisy_reply (&target_buf, &target_buf_size);
12445 if (strcmp (target_buf, "OK"))
12446 warning (_("Target does not support source download."));
12447 }
12448 remote_download_command_source (b->number, loc->address,
12449 breakpoint_commands (b));
35b1e5cc 12450 }
e8ba3115
YQ
12451
12452 do_cleanups (old_chain);
35b1e5cc
SS
12453}
12454
1e4d1764 12455static int
a52a8357 12456remote_can_download_tracepoint (struct target_ops *self)
1e4d1764 12457{
1e51243a
PA
12458 struct remote_state *rs = get_remote_state ();
12459 struct trace_status *ts;
12460 int status;
12461
12462 /* Don't try to install tracepoints until we've relocated our
12463 symbols, and fetched and merged the target's tracepoint list with
12464 ours. */
12465 if (rs->starting_up)
12466 return 0;
12467
12468 ts = current_trace_status ();
8bd200f1 12469 status = remote_get_trace_status (self, ts);
1e4d1764
YQ
12470
12471 if (status == -1 || !ts->running_known || !ts->running)
12472 return 0;
12473
12474 /* If we are in a tracing experiment, but remote stub doesn't support
12475 installing tracepoint in trace, we have to return. */
12476 if (!remote_supports_install_in_trace ())
12477 return 0;
12478
12479 return 1;
12480}
12481
12482
35b1e5cc 12483static void
559d2b81
TT
12484remote_download_trace_state_variable (struct target_ops *self,
12485 struct trace_state_variable *tsv)
35b1e5cc
SS
12486{
12487 struct remote_state *rs = get_remote_state ();
00bf0b85 12488 char *p;
35b1e5cc 12489
bba74b36
YQ
12490 xsnprintf (rs->buf, get_remote_packet_size (), "QTDV:%x:%s:%x:",
12491 tsv->number, phex ((ULONGEST) tsv->initial_value, 8),
12492 tsv->builtin);
00bf0b85
SS
12493 p = rs->buf + strlen (rs->buf);
12494 if ((p - rs->buf) + strlen (tsv->name) * 2 >= get_remote_packet_size ())
12495 error (_("Trace state variable name too long for tsv definition packet"));
9f1b45b0 12496 p += 2 * bin2hex ((gdb_byte *) (tsv->name), p, strlen (tsv->name));
00bf0b85 12497 *p++ = '\0';
35b1e5cc
SS
12498 putpkt (rs->buf);
12499 remote_get_noisy_reply (&target_buf, &target_buf_size);
ad91cd99
PA
12500 if (*target_buf == '\0')
12501 error (_("Target does not support this command."));
12502 if (strcmp (target_buf, "OK") != 0)
12503 error (_("Error on target while downloading trace state variable."));
35b1e5cc
SS
12504}
12505
d248b706 12506static void
46670d57
TT
12507remote_enable_tracepoint (struct target_ops *self,
12508 struct bp_location *location)
d248b706
KY
12509{
12510 struct remote_state *rs = get_remote_state ();
12511 char addr_buf[40];
12512
12513 sprintf_vma (addr_buf, location->address);
bba74b36
YQ
12514 xsnprintf (rs->buf, get_remote_packet_size (), "QTEnable:%x:%s",
12515 location->owner->number, addr_buf);
d248b706
KY
12516 putpkt (rs->buf);
12517 remote_get_noisy_reply (&rs->buf, &rs->buf_size);
12518 if (*rs->buf == '\0')
12519 error (_("Target does not support enabling tracepoints while a trace run is ongoing."));
12520 if (strcmp (rs->buf, "OK") != 0)
12521 error (_("Error on target while enabling tracepoint."));
12522}
12523
12524static void
780b049c
TT
12525remote_disable_tracepoint (struct target_ops *self,
12526 struct bp_location *location)
d248b706
KY
12527{
12528 struct remote_state *rs = get_remote_state ();
12529 char addr_buf[40];
12530
12531 sprintf_vma (addr_buf, location->address);
bba74b36
YQ
12532 xsnprintf (rs->buf, get_remote_packet_size (), "QTDisable:%x:%s",
12533 location->owner->number, addr_buf);
d248b706
KY
12534 putpkt (rs->buf);
12535 remote_get_noisy_reply (&rs->buf, &rs->buf_size);
12536 if (*rs->buf == '\0')
12537 error (_("Target does not support disabling tracepoints while a trace run is ongoing."));
12538 if (strcmp (rs->buf, "OK") != 0)
12539 error (_("Error on target while disabling tracepoint."));
12540}
12541
35b1e5cc 12542static void
583f9a86 12543remote_trace_set_readonly_regions (struct target_ops *self)
35b1e5cc
SS
12544{
12545 asection *s;
81b9b86e 12546 bfd *abfd = NULL;
35b1e5cc 12547 bfd_size_type size;
608bcef2 12548 bfd_vma vma;
35b1e5cc 12549 int anysecs = 0;
c2fa21f1 12550 int offset = 0;
35b1e5cc
SS
12551
12552 if (!exec_bfd)
12553 return; /* No information to give. */
12554
12555 strcpy (target_buf, "QTro");
9779ab84 12556 offset = strlen (target_buf);
35b1e5cc
SS
12557 for (s = exec_bfd->sections; s; s = s->next)
12558 {
12559 char tmp1[40], tmp2[40];
c2fa21f1 12560 int sec_length;
35b1e5cc
SS
12561
12562 if ((s->flags & SEC_LOAD) == 0 ||
0df8b418 12563 /* (s->flags & SEC_CODE) == 0 || */
35b1e5cc
SS
12564 (s->flags & SEC_READONLY) == 0)
12565 continue;
12566
12567 anysecs = 1;
81b9b86e 12568 vma = bfd_get_section_vma (abfd, s);
35b1e5cc 12569 size = bfd_get_section_size (s);
608bcef2
HZ
12570 sprintf_vma (tmp1, vma);
12571 sprintf_vma (tmp2, vma + size);
c2fa21f1
HZ
12572 sec_length = 1 + strlen (tmp1) + 1 + strlen (tmp2);
12573 if (offset + sec_length + 1 > target_buf_size)
12574 {
4082afcc 12575 if (packet_support (PACKET_qXfer_traceframe_info) != PACKET_ENABLE)
864ac8a7 12576 warning (_("\
c2fa21f1
HZ
12577Too many sections for read-only sections definition packet."));
12578 break;
12579 }
bba74b36
YQ
12580 xsnprintf (target_buf + offset, target_buf_size - offset, ":%s,%s",
12581 tmp1, tmp2);
c2fa21f1 12582 offset += sec_length;
35b1e5cc
SS
12583 }
12584 if (anysecs)
12585 {
12586 putpkt (target_buf);
12587 getpkt (&target_buf, &target_buf_size, 0);
12588 }
12589}
12590
12591static void
e2d1aae3 12592remote_trace_start (struct target_ops *self)
35b1e5cc
SS
12593{
12594 putpkt ("QTStart");
12595 remote_get_noisy_reply (&target_buf, &target_buf_size);
ad91cd99
PA
12596 if (*target_buf == '\0')
12597 error (_("Target does not support this command."));
12598 if (strcmp (target_buf, "OK") != 0)
35b1e5cc
SS
12599 error (_("Bogus reply from target: %s"), target_buf);
12600}
12601
12602static int
8bd200f1 12603remote_get_trace_status (struct target_ops *self, struct trace_status *ts)
35b1e5cc 12604{
953b98d1 12605 /* Initialize it just to avoid a GCC false warning. */
f652de6f 12606 char *p = NULL;
0df8b418 12607 /* FIXME we need to get register block size some other way. */
00bf0b85 12608 extern int trace_regblock_size;
bd3eecc3
PA
12609 enum packet_result result;
12610
4082afcc 12611 if (packet_support (PACKET_qTStatus) == PACKET_DISABLE)
bd3eecc3 12612 return -1;
a744cf53 12613
00bf0b85
SS
12614 trace_regblock_size = get_remote_arch_state ()->sizeof_g_packet;
12615
049dc89b
JK
12616 putpkt ("qTStatus");
12617
492d29ea 12618 TRY
67f41397
JK
12619 {
12620 p = remote_get_noisy_reply (&target_buf, &target_buf_size);
12621 }
492d29ea 12622 CATCH (ex, RETURN_MASK_ERROR)
67f41397 12623 {
598d3636
JK
12624 if (ex.error != TARGET_CLOSE_ERROR)
12625 {
12626 exception_fprintf (gdb_stderr, ex, "qTStatus: ");
12627 return -1;
12628 }
12629 throw_exception (ex);
67f41397 12630 }
492d29ea 12631 END_CATCH
00bf0b85 12632
bd3eecc3
PA
12633 result = packet_ok (p, &remote_protocol_packets[PACKET_qTStatus]);
12634
00bf0b85 12635 /* If the remote target doesn't do tracing, flag it. */
bd3eecc3 12636 if (result == PACKET_UNKNOWN)
00bf0b85 12637 return -1;
35b1e5cc 12638
00bf0b85 12639 /* We're working with a live target. */
f5911ea1 12640 ts->filename = NULL;
00bf0b85 12641
00bf0b85 12642 if (*p++ != 'T')
35b1e5cc
SS
12643 error (_("Bogus trace status reply from target: %s"), target_buf);
12644
84cebc4a
YQ
12645 /* Function 'parse_trace_status' sets default value of each field of
12646 'ts' at first, so we don't have to do it here. */
00bf0b85
SS
12647 parse_trace_status (p, ts);
12648
12649 return ts->running;
35b1e5cc
SS
12650}
12651
70221824 12652static void
db90e85c 12653remote_get_tracepoint_status (struct target_ops *self, struct breakpoint *bp,
f196051f
SS
12654 struct uploaded_tp *utp)
12655{
12656 struct remote_state *rs = get_remote_state ();
f196051f
SS
12657 char *reply;
12658 struct bp_location *loc;
12659 struct tracepoint *tp = (struct tracepoint *) bp;
bba74b36 12660 size_t size = get_remote_packet_size ();
f196051f
SS
12661
12662 if (tp)
12663 {
12664 tp->base.hit_count = 0;
12665 tp->traceframe_usage = 0;
12666 for (loc = tp->base.loc; loc; loc = loc->next)
12667 {
12668 /* If the tracepoint was never downloaded, don't go asking for
12669 any status. */
12670 if (tp->number_on_target == 0)
12671 continue;
bba74b36
YQ
12672 xsnprintf (rs->buf, size, "qTP:%x:%s", tp->number_on_target,
12673 phex_nz (loc->address, 0));
f196051f
SS
12674 putpkt (rs->buf);
12675 reply = remote_get_noisy_reply (&target_buf, &target_buf_size);
12676 if (reply && *reply)
12677 {
12678 if (*reply == 'V')
12679 parse_tracepoint_status (reply + 1, bp, utp);
12680 }
12681 }
12682 }
12683 else if (utp)
12684 {
12685 utp->hit_count = 0;
12686 utp->traceframe_usage = 0;
bba74b36
YQ
12687 xsnprintf (rs->buf, size, "qTP:%x:%s", utp->number,
12688 phex_nz (utp->addr, 0));
f196051f
SS
12689 putpkt (rs->buf);
12690 reply = remote_get_noisy_reply (&target_buf, &target_buf_size);
12691 if (reply && *reply)
12692 {
12693 if (*reply == 'V')
12694 parse_tracepoint_status (reply + 1, bp, utp);
12695 }
12696 }
12697}
12698
35b1e5cc 12699static void
74499f1b 12700remote_trace_stop (struct target_ops *self)
35b1e5cc
SS
12701{
12702 putpkt ("QTStop");
12703 remote_get_noisy_reply (&target_buf, &target_buf_size);
ad91cd99
PA
12704 if (*target_buf == '\0')
12705 error (_("Target does not support this command."));
12706 if (strcmp (target_buf, "OK") != 0)
35b1e5cc
SS
12707 error (_("Bogus reply from target: %s"), target_buf);
12708}
12709
12710static int
bd4c6793
TT
12711remote_trace_find (struct target_ops *self,
12712 enum trace_find_type type, int num,
cc5925ad 12713 CORE_ADDR addr1, CORE_ADDR addr2,
35b1e5cc
SS
12714 int *tpp)
12715{
12716 struct remote_state *rs = get_remote_state ();
bba74b36 12717 char *endbuf = rs->buf + get_remote_packet_size ();
35b1e5cc
SS
12718 char *p, *reply;
12719 int target_frameno = -1, target_tracept = -1;
12720
e6e4e701
PA
12721 /* Lookups other than by absolute frame number depend on the current
12722 trace selected, so make sure it is correct on the remote end
12723 first. */
12724 if (type != tfind_number)
12725 set_remote_traceframe ();
12726
35b1e5cc
SS
12727 p = rs->buf;
12728 strcpy (p, "QTFrame:");
12729 p = strchr (p, '\0');
12730 switch (type)
12731 {
12732 case tfind_number:
bba74b36 12733 xsnprintf (p, endbuf - p, "%x", num);
35b1e5cc
SS
12734 break;
12735 case tfind_pc:
bba74b36 12736 xsnprintf (p, endbuf - p, "pc:%s", phex_nz (addr1, 0));
35b1e5cc
SS
12737 break;
12738 case tfind_tp:
bba74b36 12739 xsnprintf (p, endbuf - p, "tdp:%x", num);
35b1e5cc
SS
12740 break;
12741 case tfind_range:
bba74b36
YQ
12742 xsnprintf (p, endbuf - p, "range:%s:%s", phex_nz (addr1, 0),
12743 phex_nz (addr2, 0));
35b1e5cc
SS
12744 break;
12745 case tfind_outside:
bba74b36
YQ
12746 xsnprintf (p, endbuf - p, "outside:%s:%s", phex_nz (addr1, 0),
12747 phex_nz (addr2, 0));
35b1e5cc
SS
12748 break;
12749 default:
9b20d036 12750 error (_("Unknown trace find type %d"), type);
35b1e5cc
SS
12751 }
12752
12753 putpkt (rs->buf);
2f65bcb7 12754 reply = remote_get_noisy_reply (&(rs->buf), &rs->buf_size);
ad91cd99
PA
12755 if (*reply == '\0')
12756 error (_("Target does not support this command."));
35b1e5cc
SS
12757
12758 while (reply && *reply)
12759 switch (*reply)
12760 {
12761 case 'F':
f197e0f1
VP
12762 p = ++reply;
12763 target_frameno = (int) strtol (p, &reply, 16);
12764 if (reply == p)
12765 error (_("Unable to parse trace frame number"));
e6e4e701
PA
12766 /* Don't update our remote traceframe number cache on failure
12767 to select a remote traceframe. */
f197e0f1
VP
12768 if (target_frameno == -1)
12769 return -1;
35b1e5cc
SS
12770 break;
12771 case 'T':
f197e0f1
VP
12772 p = ++reply;
12773 target_tracept = (int) strtol (p, &reply, 16);
12774 if (reply == p)
12775 error (_("Unable to parse tracepoint number"));
35b1e5cc
SS
12776 break;
12777 case 'O': /* "OK"? */
12778 if (reply[1] == 'K' && reply[2] == '\0')
12779 reply += 2;
12780 else
12781 error (_("Bogus reply from target: %s"), reply);
12782 break;
12783 default:
12784 error (_("Bogus reply from target: %s"), reply);
12785 }
12786 if (tpp)
12787 *tpp = target_tracept;
e6e4e701 12788
262e1174 12789 rs->remote_traceframe_number = target_frameno;
35b1e5cc
SS
12790 return target_frameno;
12791}
12792
12793static int
4011015b
TT
12794remote_get_trace_state_variable_value (struct target_ops *self,
12795 int tsvnum, LONGEST *val)
35b1e5cc
SS
12796{
12797 struct remote_state *rs = get_remote_state ();
12798 char *reply;
12799 ULONGEST uval;
12800
e6e4e701
PA
12801 set_remote_traceframe ();
12802
bba74b36 12803 xsnprintf (rs->buf, get_remote_packet_size (), "qTV:%x", tsvnum);
35b1e5cc
SS
12804 putpkt (rs->buf);
12805 reply = remote_get_noisy_reply (&target_buf, &target_buf_size);
12806 if (reply && *reply)
12807 {
12808 if (*reply == 'V')
12809 {
12810 unpack_varlen_hex (reply + 1, &uval);
12811 *val = (LONGEST) uval;
12812 return 1;
12813 }
12814 }
12815 return 0;
12816}
12817
00bf0b85 12818static int
dc3decaf 12819remote_save_trace_data (struct target_ops *self, const char *filename)
00bf0b85
SS
12820{
12821 struct remote_state *rs = get_remote_state ();
12822 char *p, *reply;
12823
12824 p = rs->buf;
12825 strcpy (p, "QTSave:");
12826 p += strlen (p);
12827 if ((p - rs->buf) + strlen (filename) * 2 >= get_remote_packet_size ())
12828 error (_("Remote file name too long for trace save packet"));
9f1b45b0 12829 p += 2 * bin2hex ((gdb_byte *) filename, p, strlen (filename));
00bf0b85
SS
12830 *p++ = '\0';
12831 putpkt (rs->buf);
ad91cd99 12832 reply = remote_get_noisy_reply (&target_buf, &target_buf_size);
d6c5869f 12833 if (*reply == '\0')
ad91cd99
PA
12834 error (_("Target does not support this command."));
12835 if (strcmp (reply, "OK") != 0)
12836 error (_("Bogus reply from target: %s"), reply);
00bf0b85
SS
12837 return 0;
12838}
12839
12840/* This is basically a memory transfer, but needs to be its own packet
12841 because we don't know how the target actually organizes its trace
12842 memory, plus we want to be able to ask for as much as possible, but
12843 not be unhappy if we don't get as much as we ask for. */
12844
12845static LONGEST
88ee6f45
TT
12846remote_get_raw_trace_data (struct target_ops *self,
12847 gdb_byte *buf, ULONGEST offset, LONGEST len)
00bf0b85
SS
12848{
12849 struct remote_state *rs = get_remote_state ();
12850 char *reply;
12851 char *p;
12852 int rslt;
12853
12854 p = rs->buf;
12855 strcpy (p, "qTBuffer:");
12856 p += strlen (p);
12857 p += hexnumstr (p, offset);
12858 *p++ = ',';
12859 p += hexnumstr (p, len);
12860 *p++ = '\0';
12861
12862 putpkt (rs->buf);
12863 reply = remote_get_noisy_reply (&target_buf, &target_buf_size);
12864 if (reply && *reply)
12865 {
12866 /* 'l' by itself means we're at the end of the buffer and
12867 there is nothing more to get. */
12868 if (*reply == 'l')
12869 return 0;
12870
12871 /* Convert the reply into binary. Limit the number of bytes to
12872 convert according to our passed-in buffer size, rather than
12873 what was returned in the packet; if the target is
12874 unexpectedly generous and gives us a bigger reply than we
12875 asked for, we don't want to crash. */
12876 rslt = hex2bin (target_buf, buf, len);
12877 return rslt;
12878 }
12879
12880 /* Something went wrong, flag as an error. */
12881 return -1;
12882}
12883
35b1e5cc 12884static void
37b25738 12885remote_set_disconnected_tracing (struct target_ops *self, int val)
35b1e5cc
SS
12886{
12887 struct remote_state *rs = get_remote_state ();
12888
4082afcc 12889 if (packet_support (PACKET_DisconnectedTracing_feature) == PACKET_ENABLE)
33da3f1c 12890 {
ad91cd99
PA
12891 char *reply;
12892
bba74b36 12893 xsnprintf (rs->buf, get_remote_packet_size (), "QTDisconnected:%x", val);
33da3f1c 12894 putpkt (rs->buf);
ad91cd99
PA
12895 reply = remote_get_noisy_reply (&target_buf, &target_buf_size);
12896 if (*reply == '\0')
33da3f1c 12897 error (_("Target does not support this command."));
ad91cd99
PA
12898 if (strcmp (reply, "OK") != 0)
12899 error (_("Bogus reply from target: %s"), reply);
33da3f1c
SS
12900 }
12901 else if (val)
12902 warning (_("Target does not support disconnected tracing."));
35b1e5cc
SS
12903}
12904
dc146f7c
VP
12905static int
12906remote_core_of_thread (struct target_ops *ops, ptid_t ptid)
12907{
12908 struct thread_info *info = find_thread_ptid (ptid);
a744cf53 12909
fe978cb0
PA
12910 if (info && info->priv)
12911 return info->priv->core;
dc146f7c
VP
12912 return -1;
12913}
12914
4daf5ac0 12915static void
736d5b1f 12916remote_set_circular_trace_buffer (struct target_ops *self, int val)
4daf5ac0
SS
12917{
12918 struct remote_state *rs = get_remote_state ();
ad91cd99 12919 char *reply;
4daf5ac0 12920
bba74b36 12921 xsnprintf (rs->buf, get_remote_packet_size (), "QTBuffer:circular:%x", val);
4daf5ac0 12922 putpkt (rs->buf);
ad91cd99
PA
12923 reply = remote_get_noisy_reply (&target_buf, &target_buf_size);
12924 if (*reply == '\0')
4daf5ac0 12925 error (_("Target does not support this command."));
ad91cd99
PA
12926 if (strcmp (reply, "OK") != 0)
12927 error (_("Bogus reply from target: %s"), reply);
4daf5ac0
SS
12928}
12929
b3b9301e 12930static struct traceframe_info *
a893e81f 12931remote_traceframe_info (struct target_ops *self)
b3b9301e
PA
12932{
12933 char *text;
12934
12935 text = target_read_stralloc (&current_target,
12936 TARGET_OBJECT_TRACEFRAME_INFO, NULL);
12937 if (text != NULL)
12938 {
12939 struct traceframe_info *info;
12940 struct cleanup *back_to = make_cleanup (xfree, text);
12941
12942 info = parse_traceframe_info (text);
12943 do_cleanups (back_to);
12944 return info;
12945 }
12946
12947 return NULL;
12948}
12949
405f8e94
SS
12950/* Handle the qTMinFTPILen packet. Returns the minimum length of
12951 instruction on which a fast tracepoint may be placed. Returns -1
12952 if the packet is not supported, and 0 if the minimum instruction
12953 length is unknown. */
12954
12955static int
0e67620a 12956remote_get_min_fast_tracepoint_insn_len (struct target_ops *self)
405f8e94
SS
12957{
12958 struct remote_state *rs = get_remote_state ();
12959 char *reply;
12960
e886a173
PA
12961 /* If we're not debugging a process yet, the IPA can't be
12962 loaded. */
12963 if (!target_has_execution)
12964 return 0;
12965
12966 /* Make sure the remote is pointing at the right process. */
12967 set_general_process ();
12968
bba74b36 12969 xsnprintf (rs->buf, get_remote_packet_size (), "qTMinFTPILen");
405f8e94
SS
12970 putpkt (rs->buf);
12971 reply = remote_get_noisy_reply (&target_buf, &target_buf_size);
12972 if (*reply == '\0')
12973 return -1;
12974 else
12975 {
12976 ULONGEST min_insn_len;
12977
12978 unpack_varlen_hex (reply, &min_insn_len);
12979
12980 return (int) min_insn_len;
12981 }
12982}
12983
f6f899bf 12984static void
4da384be 12985remote_set_trace_buffer_size (struct target_ops *self, LONGEST val)
f6f899bf 12986{
4082afcc 12987 if (packet_support (PACKET_QTBuffer_size) != PACKET_DISABLE)
f6f899bf
HAQ
12988 {
12989 struct remote_state *rs = get_remote_state ();
12990 char *buf = rs->buf;
12991 char *endbuf = rs->buf + get_remote_packet_size ();
12992 enum packet_result result;
12993
12994 gdb_assert (val >= 0 || val == -1);
12995 buf += xsnprintf (buf, endbuf - buf, "QTBuffer:size:");
12996 /* Send -1 as literal "-1" to avoid host size dependency. */
12997 if (val < 0)
12998 {
12999 *buf++ = '-';
13000 buf += hexnumstr (buf, (ULONGEST) -val);
13001 }
13002 else
13003 buf += hexnumstr (buf, (ULONGEST) val);
13004
13005 putpkt (rs->buf);
13006 remote_get_noisy_reply (&rs->buf, &rs->buf_size);
13007 result = packet_ok (rs->buf,
13008 &remote_protocol_packets[PACKET_QTBuffer_size]);
13009
13010 if (result != PACKET_OK)
13011 warning (_("Bogus reply from target: %s"), rs->buf);
13012 }
13013}
13014
f196051f 13015static int
d9e68a2c
TT
13016remote_set_trace_notes (struct target_ops *self,
13017 const char *user, const char *notes,
ca623f82 13018 const char *stop_notes)
f196051f
SS
13019{
13020 struct remote_state *rs = get_remote_state ();
13021 char *reply;
13022 char *buf = rs->buf;
13023 char *endbuf = rs->buf + get_remote_packet_size ();
13024 int nbytes;
13025
13026 buf += xsnprintf (buf, endbuf - buf, "QTNotes:");
13027 if (user)
13028 {
13029 buf += xsnprintf (buf, endbuf - buf, "user:");
9f1b45b0 13030 nbytes = bin2hex ((gdb_byte *) user, buf, strlen (user));
f196051f
SS
13031 buf += 2 * nbytes;
13032 *buf++ = ';';
13033 }
13034 if (notes)
13035 {
13036 buf += xsnprintf (buf, endbuf - buf, "notes:");
9f1b45b0 13037 nbytes = bin2hex ((gdb_byte *) notes, buf, strlen (notes));
f196051f
SS
13038 buf += 2 * nbytes;
13039 *buf++ = ';';
13040 }
13041 if (stop_notes)
13042 {
13043 buf += xsnprintf (buf, endbuf - buf, "tstop:");
9f1b45b0 13044 nbytes = bin2hex ((gdb_byte *) stop_notes, buf, strlen (stop_notes));
f196051f
SS
13045 buf += 2 * nbytes;
13046 *buf++ = ';';
13047 }
13048 /* Ensure the buffer is terminated. */
13049 *buf = '\0';
13050
13051 putpkt (rs->buf);
13052 reply = remote_get_noisy_reply (&target_buf, &target_buf_size);
13053 if (*reply == '\0')
13054 return 0;
13055
13056 if (strcmp (reply, "OK") != 0)
13057 error (_("Bogus reply from target: %s"), reply);
13058
13059 return 1;
13060}
13061
d1feda86 13062static int
2c152180 13063remote_use_agent (struct target_ops *self, int use)
d1feda86 13064{
4082afcc 13065 if (packet_support (PACKET_QAgent) != PACKET_DISABLE)
d1feda86
YQ
13066 {
13067 struct remote_state *rs = get_remote_state ();
13068
13069 /* If the stub supports QAgent. */
bba74b36 13070 xsnprintf (rs->buf, get_remote_packet_size (), "QAgent:%d", use);
d1feda86
YQ
13071 putpkt (rs->buf);
13072 getpkt (&rs->buf, &rs->buf_size, 0);
13073
13074 if (strcmp (rs->buf, "OK") == 0)
13075 {
13076 use_agent = use;
13077 return 1;
13078 }
13079 }
13080
13081 return 0;
13082}
13083
13084static int
fe38f897 13085remote_can_use_agent (struct target_ops *self)
d1feda86 13086{
4082afcc 13087 return (packet_support (PACKET_QAgent) != PACKET_DISABLE);
d1feda86
YQ
13088}
13089
9accd112
MM
13090struct btrace_target_info
13091{
13092 /* The ptid of the traced thread. */
13093 ptid_t ptid;
f4abbc16
MM
13094
13095 /* The obtained branch trace configuration. */
13096 struct btrace_config conf;
9accd112
MM
13097};
13098
f4abbc16
MM
13099/* Reset our idea of our target's btrace configuration. */
13100
13101static void
13102remote_btrace_reset (void)
13103{
13104 struct remote_state *rs = get_remote_state ();
13105
13106 memset (&rs->btrace_config, 0, sizeof (rs->btrace_config));
13107}
13108
9accd112
MM
13109/* Check whether the target supports branch tracing. */
13110
13111static int
043c3577 13112remote_supports_btrace (struct target_ops *self, enum btrace_format format)
9accd112 13113{
4082afcc 13114 if (packet_support (PACKET_Qbtrace_off) != PACKET_ENABLE)
9accd112 13115 return 0;
4082afcc 13116 if (packet_support (PACKET_qXfer_btrace) != PACKET_ENABLE)
9accd112
MM
13117 return 0;
13118
043c3577
MM
13119 switch (format)
13120 {
13121 case BTRACE_FORMAT_NONE:
13122 return 0;
13123
13124 case BTRACE_FORMAT_BTS:
13125 return (packet_support (PACKET_Qbtrace_bts) == PACKET_ENABLE);
b20a6524
MM
13126
13127 case BTRACE_FORMAT_PT:
13128 /* The trace is decoded on the host. Even if our target supports it,
13129 we still need to have libipt to decode the trace. */
13130#if defined (HAVE_LIBIPT)
13131 return (packet_support (PACKET_Qbtrace_pt) == PACKET_ENABLE);
13132#else /* !defined (HAVE_LIBIPT) */
13133 return 0;
13134#endif /* !defined (HAVE_LIBIPT) */
043c3577
MM
13135 }
13136
13137 internal_error (__FILE__, __LINE__, _("Unknown branch trace format"));
9accd112
MM
13138}
13139
f4abbc16
MM
13140/* Synchronize the configuration with the target. */
13141
13142static void
13143btrace_sync_conf (const struct btrace_config *conf)
13144{
d33501a5
MM
13145 struct packet_config *packet;
13146 struct remote_state *rs;
13147 char *buf, *pos, *endbuf;
13148
13149 rs = get_remote_state ();
13150 buf = rs->buf;
13151 endbuf = buf + get_remote_packet_size ();
13152
13153 packet = &remote_protocol_packets[PACKET_Qbtrace_conf_bts_size];
13154 if (packet_config_support (packet) == PACKET_ENABLE
13155 && conf->bts.size != rs->btrace_config.bts.size)
13156 {
13157 pos = buf;
13158 pos += xsnprintf (pos, endbuf - pos, "%s=0x%x", packet->name,
13159 conf->bts.size);
13160
13161 putpkt (buf);
13162 getpkt (&buf, &rs->buf_size, 0);
13163
13164 if (packet_ok (buf, packet) == PACKET_ERROR)
13165 {
13166 if (buf[0] == 'E' && buf[1] == '.')
13167 error (_("Failed to configure the BTS buffer size: %s"), buf + 2);
13168 else
13169 error (_("Failed to configure the BTS buffer size."));
13170 }
13171
13172 rs->btrace_config.bts.size = conf->bts.size;
13173 }
b20a6524
MM
13174
13175 packet = &remote_protocol_packets[PACKET_Qbtrace_conf_pt_size];
13176 if (packet_config_support (packet) == PACKET_ENABLE
13177 && conf->pt.size != rs->btrace_config.pt.size)
13178 {
13179 pos = buf;
13180 pos += xsnprintf (pos, endbuf - pos, "%s=0x%x", packet->name,
13181 conf->pt.size);
13182
13183 putpkt (buf);
13184 getpkt (&buf, &rs->buf_size, 0);
13185
13186 if (packet_ok (buf, packet) == PACKET_ERROR)
13187 {
13188 if (buf[0] == 'E' && buf[1] == '.')
13189 error (_("Failed to configure the trace buffer size: %s"), buf + 2);
13190 else
13191 error (_("Failed to configure the trace buffer size."));
13192 }
13193
13194 rs->btrace_config.pt.size = conf->pt.size;
13195 }
f4abbc16
MM
13196}
13197
13198/* Read the current thread's btrace configuration from the target and
13199 store it into CONF. */
13200
13201static void
13202btrace_read_config (struct btrace_config *conf)
13203{
13204 char *xml;
13205
13206 xml = target_read_stralloc (&current_target,
b20a6524 13207 TARGET_OBJECT_BTRACE_CONF, "");
f4abbc16
MM
13208 if (xml != NULL)
13209 {
13210 struct cleanup *cleanup;
13211
13212 cleanup = make_cleanup (xfree, xml);
13213 parse_xml_btrace_conf (conf, xml);
13214 do_cleanups (cleanup);
13215 }
13216}
13217
c0272db5
TW
13218/* Maybe reopen target btrace. */
13219
13220static void
13221remote_btrace_maybe_reopen (void)
13222{
13223 struct remote_state *rs = get_remote_state ();
13224 struct cleanup *cleanup;
13225 struct thread_info *tp;
13226 int btrace_target_pushed = 0;
13227 int warned = 0;
13228
13229 cleanup = make_cleanup_restore_current_thread ();
13230 ALL_NON_EXITED_THREADS (tp)
13231 {
13232 set_general_thread (tp->ptid);
13233
13234 memset (&rs->btrace_config, 0x00, sizeof (struct btrace_config));
13235 btrace_read_config (&rs->btrace_config);
13236
13237 if (rs->btrace_config.format == BTRACE_FORMAT_NONE)
13238 continue;
13239
13240#if !defined (HAVE_LIBIPT)
13241 if (rs->btrace_config.format == BTRACE_FORMAT_PT)
13242 {
13243 if (!warned)
13244 {
13245 warned = 1;
13246 warning (_("GDB does not support Intel Processor Trace. "
13247 "\"record\" will not work in this session."));
13248 }
13249
13250 continue;
13251 }
13252#endif /* !defined (HAVE_LIBIPT) */
13253
13254 /* Push target, once, but before anything else happens. This way our
13255 changes to the threads will be cleaned up by unpushing the target
13256 in case btrace_read_config () throws. */
13257 if (!btrace_target_pushed)
13258 {
13259 btrace_target_pushed = 1;
13260 record_btrace_push_target ();
13261 printf_filtered (_("Target is recording using %s.\n"),
13262 btrace_format_string (rs->btrace_config.format));
13263 }
13264
13265 tp->btrace.target = XCNEW (struct btrace_target_info);
13266 tp->btrace.target->ptid = tp->ptid;
13267 tp->btrace.target->conf = rs->btrace_config;
13268 }
13269 do_cleanups (cleanup);
13270}
13271
9accd112
MM
13272/* Enable branch tracing. */
13273
13274static struct btrace_target_info *
f4abbc16
MM
13275remote_enable_btrace (struct target_ops *self, ptid_t ptid,
13276 const struct btrace_config *conf)
9accd112
MM
13277{
13278 struct btrace_target_info *tinfo = NULL;
b20a6524 13279 struct packet_config *packet = NULL;
9accd112
MM
13280 struct remote_state *rs = get_remote_state ();
13281 char *buf = rs->buf;
13282 char *endbuf = rs->buf + get_remote_packet_size ();
13283
b20a6524
MM
13284 switch (conf->format)
13285 {
13286 case BTRACE_FORMAT_BTS:
13287 packet = &remote_protocol_packets[PACKET_Qbtrace_bts];
13288 break;
13289
13290 case BTRACE_FORMAT_PT:
13291 packet = &remote_protocol_packets[PACKET_Qbtrace_pt];
13292 break;
13293 }
13294
13295 if (packet == NULL || packet_config_support (packet) != PACKET_ENABLE)
9accd112
MM
13296 error (_("Target does not support branch tracing."));
13297
f4abbc16
MM
13298 btrace_sync_conf (conf);
13299
9accd112
MM
13300 set_general_thread (ptid);
13301
13302 buf += xsnprintf (buf, endbuf - buf, "%s", packet->name);
13303 putpkt (rs->buf);
13304 getpkt (&rs->buf, &rs->buf_size, 0);
13305
13306 if (packet_ok (rs->buf, packet) == PACKET_ERROR)
13307 {
13308 if (rs->buf[0] == 'E' && rs->buf[1] == '.')
13309 error (_("Could not enable branch tracing for %s: %s"),
13310 target_pid_to_str (ptid), rs->buf + 2);
13311 else
13312 error (_("Could not enable branch tracing for %s."),
13313 target_pid_to_str (ptid));
13314 }
13315
8d749320 13316 tinfo = XCNEW (struct btrace_target_info);
9accd112
MM
13317 tinfo->ptid = ptid;
13318
f4abbc16
MM
13319 /* If we fail to read the configuration, we lose some information, but the
13320 tracing itself is not impacted. */
492d29ea
PA
13321 TRY
13322 {
13323 btrace_read_config (&tinfo->conf);
13324 }
13325 CATCH (err, RETURN_MASK_ERROR)
13326 {
13327 if (err.message != NULL)
13328 warning ("%s", err.message);
13329 }
13330 END_CATCH
f4abbc16 13331
9accd112
MM
13332 return tinfo;
13333}
13334
13335/* Disable branch tracing. */
13336
13337static void
25e95349
TT
13338remote_disable_btrace (struct target_ops *self,
13339 struct btrace_target_info *tinfo)
9accd112
MM
13340{
13341 struct packet_config *packet = &remote_protocol_packets[PACKET_Qbtrace_off];
13342 struct remote_state *rs = get_remote_state ();
13343 char *buf = rs->buf;
13344 char *endbuf = rs->buf + get_remote_packet_size ();
13345
4082afcc 13346 if (packet_config_support (packet) != PACKET_ENABLE)
9accd112
MM
13347 error (_("Target does not support branch tracing."));
13348
13349 set_general_thread (tinfo->ptid);
13350
13351 buf += xsnprintf (buf, endbuf - buf, "%s", packet->name);
13352 putpkt (rs->buf);
13353 getpkt (&rs->buf, &rs->buf_size, 0);
13354
13355 if (packet_ok (rs->buf, packet) == PACKET_ERROR)
13356 {
13357 if (rs->buf[0] == 'E' && rs->buf[1] == '.')
13358 error (_("Could not disable branch tracing for %s: %s"),
13359 target_pid_to_str (tinfo->ptid), rs->buf + 2);
13360 else
13361 error (_("Could not disable branch tracing for %s."),
13362 target_pid_to_str (tinfo->ptid));
13363 }
13364
13365 xfree (tinfo);
13366}
13367
13368/* Teardown branch tracing. */
13369
13370static void
1777056d
TT
13371remote_teardown_btrace (struct target_ops *self,
13372 struct btrace_target_info *tinfo)
9accd112
MM
13373{
13374 /* We must not talk to the target during teardown. */
13375 xfree (tinfo);
13376}
13377
13378/* Read the branch trace. */
13379
969c39fb 13380static enum btrace_error
39c49f83 13381remote_read_btrace (struct target_ops *self,
734b0e4b 13382 struct btrace_data *btrace,
969c39fb 13383 struct btrace_target_info *tinfo,
9accd112
MM
13384 enum btrace_read_type type)
13385{
13386 struct packet_config *packet = &remote_protocol_packets[PACKET_qXfer_btrace];
969c39fb 13387 struct cleanup *cleanup;
9accd112
MM
13388 const char *annex;
13389 char *xml;
13390
4082afcc 13391 if (packet_config_support (packet) != PACKET_ENABLE)
9accd112
MM
13392 error (_("Target does not support branch tracing."));
13393
13394#if !defined(HAVE_LIBEXPAT)
13395 error (_("Cannot process branch tracing result. XML parsing not supported."));
13396#endif
13397
13398 switch (type)
13399 {
864089d2 13400 case BTRACE_READ_ALL:
9accd112
MM
13401 annex = "all";
13402 break;
864089d2 13403 case BTRACE_READ_NEW:
9accd112
MM
13404 annex = "new";
13405 break;
969c39fb
MM
13406 case BTRACE_READ_DELTA:
13407 annex = "delta";
13408 break;
9accd112
MM
13409 default:
13410 internal_error (__FILE__, __LINE__,
13411 _("Bad branch tracing read type: %u."),
13412 (unsigned int) type);
13413 }
13414
13415 xml = target_read_stralloc (&current_target,
b20a6524 13416 TARGET_OBJECT_BTRACE, annex);
969c39fb
MM
13417 if (xml == NULL)
13418 return BTRACE_ERR_UNKNOWN;
9accd112 13419
969c39fb 13420 cleanup = make_cleanup (xfree, xml);
734b0e4b 13421 parse_xml_btrace (btrace, xml);
969c39fb 13422 do_cleanups (cleanup);
9accd112 13423
969c39fb 13424 return BTRACE_ERR_NONE;
9accd112
MM
13425}
13426
f4abbc16
MM
13427static const struct btrace_config *
13428remote_btrace_conf (struct target_ops *self,
13429 const struct btrace_target_info *tinfo)
13430{
13431 return &tinfo->conf;
13432}
13433
ced63ec0 13434static int
5436ff03 13435remote_augmented_libraries_svr4_read (struct target_ops *self)
ced63ec0 13436{
4082afcc
PA
13437 return (packet_support (PACKET_augmented_libraries_svr4_read_feature)
13438 == PACKET_ENABLE);
ced63ec0
GB
13439}
13440
9dd130a0
TT
13441/* Implementation of to_load. */
13442
13443static void
9cbe5fff 13444remote_load (struct target_ops *self, const char *name, int from_tty)
9dd130a0
TT
13445{
13446 generic_load (name, from_tty);
13447}
13448
c78fa86a
GB
13449/* Accepts an integer PID; returns a string representing a file that
13450 can be opened on the remote side to get the symbols for the child
13451 process. Returns NULL if the operation is not supported. */
13452
13453static char *
13454remote_pid_to_exec_file (struct target_ops *self, int pid)
13455{
13456 static char *filename = NULL;
835205d0
GB
13457 struct inferior *inf;
13458 char *annex = NULL;
c78fa86a
GB
13459
13460 if (packet_support (PACKET_qXfer_exec_file) != PACKET_ENABLE)
13461 return NULL;
13462
13463 if (filename != NULL)
13464 xfree (filename);
13465
835205d0
GB
13466 inf = find_inferior_pid (pid);
13467 if (inf == NULL)
13468 internal_error (__FILE__, __LINE__,
13469 _("not currently attached to process %d"), pid);
13470
13471 if (!inf->fake_pid_p)
13472 {
13473 const int annex_size = 9;
13474
224c3ddb 13475 annex = (char *) alloca (annex_size);
835205d0
GB
13476 xsnprintf (annex, annex_size, "%x", pid);
13477 }
13478
c78fa86a
GB
13479 filename = target_read_stralloc (&current_target,
13480 TARGET_OBJECT_EXEC_FILE, annex);
13481
13482 return filename;
13483}
13484
750ce8d1
YQ
13485/* Implement the to_can_do_single_step target_ops method. */
13486
13487static int
13488remote_can_do_single_step (struct target_ops *ops)
13489{
13490 /* We can only tell whether target supports single step or not by
13491 supported s and S vCont actions if the stub supports vContSupported
13492 feature. If the stub doesn't support vContSupported feature,
13493 we have conservatively to think target doesn't supports single
13494 step. */
13495 if (packet_support (PACKET_vContSupported) == PACKET_ENABLE)
13496 {
13497 struct remote_state *rs = get_remote_state ();
13498
13499 if (packet_support (PACKET_vCont) == PACKET_SUPPORT_UNKNOWN)
13500 remote_vcont_probe (rs);
13501
13502 return rs->supports_vCont.s && rs->supports_vCont.S;
13503 }
13504 else
13505 return 0;
13506}
13507
3a00c802
PA
13508/* Implementation of the to_execution_direction method for the remote
13509 target. */
13510
13511static enum exec_direction_kind
13512remote_execution_direction (struct target_ops *self)
13513{
13514 struct remote_state *rs = get_remote_state ();
13515
13516 return rs->last_resume_exec_dir;
13517}
13518
c906108c 13519static void
fba45db2 13520init_remote_ops (void)
c906108c 13521{
c5aa993b 13522 remote_ops.to_shortname = "remote";
c906108c 13523 remote_ops.to_longname = "Remote serial target in gdb-specific protocol";
c5aa993b 13524 remote_ops.to_doc =
c906108c 13525 "Use a remote computer via a serial line, using a gdb-specific protocol.\n\
0d06e24b
JM
13526Specify the serial device it is connected to\n\
13527(e.g. /dev/ttyS0, /dev/ttya, COM1, etc.).";
c5aa993b
JM
13528 remote_ops.to_open = remote_open;
13529 remote_ops.to_close = remote_close;
c906108c 13530 remote_ops.to_detach = remote_detach;
6ad8ae5c 13531 remote_ops.to_disconnect = remote_disconnect;
c5aa993b 13532 remote_ops.to_resume = remote_resume;
85ad3aaf 13533 remote_ops.to_commit_resume = remote_commit_resume;
c906108c
SS
13534 remote_ops.to_wait = remote_wait;
13535 remote_ops.to_fetch_registers = remote_fetch_registers;
13536 remote_ops.to_store_registers = remote_store_registers;
13537 remote_ops.to_prepare_to_store = remote_prepare_to_store;
c5aa993b 13538 remote_ops.to_files_info = remote_files_info;
c906108c
SS
13539 remote_ops.to_insert_breakpoint = remote_insert_breakpoint;
13540 remote_ops.to_remove_breakpoint = remote_remove_breakpoint;
f7e6eed5
PA
13541 remote_ops.to_stopped_by_sw_breakpoint = remote_stopped_by_sw_breakpoint;
13542 remote_ops.to_supports_stopped_by_sw_breakpoint = remote_supports_stopped_by_sw_breakpoint;
13543 remote_ops.to_stopped_by_hw_breakpoint = remote_stopped_by_hw_breakpoint;
13544 remote_ops.to_supports_stopped_by_hw_breakpoint = remote_supports_stopped_by_hw_breakpoint;
3c3bea1c
GS
13545 remote_ops.to_stopped_by_watchpoint = remote_stopped_by_watchpoint;
13546 remote_ops.to_stopped_data_address = remote_stopped_data_address;
283002cf
MR
13547 remote_ops.to_watchpoint_addr_within_range =
13548 remote_watchpoint_addr_within_range;
3c3bea1c
GS
13549 remote_ops.to_can_use_hw_breakpoint = remote_check_watch_resources;
13550 remote_ops.to_insert_hw_breakpoint = remote_insert_hw_breakpoint;
13551 remote_ops.to_remove_hw_breakpoint = remote_remove_hw_breakpoint;
480a3f21
PW
13552 remote_ops.to_region_ok_for_hw_watchpoint
13553 = remote_region_ok_for_hw_watchpoint;
3c3bea1c
GS
13554 remote_ops.to_insert_watchpoint = remote_insert_watchpoint;
13555 remote_ops.to_remove_watchpoint = remote_remove_watchpoint;
c5aa993b 13556 remote_ops.to_kill = remote_kill;
9dd130a0 13557 remote_ops.to_load = remote_load;
c906108c 13558 remote_ops.to_mourn_inferior = remote_mourn;
2455069d 13559 remote_ops.to_pass_signals = remote_pass_signals;
82075af2 13560 remote_ops.to_set_syscall_catchpoint = remote_set_syscall_catchpoint;
9b224c5e 13561 remote_ops.to_program_signals = remote_program_signals;
c906108c 13562 remote_ops.to_thread_alive = remote_thread_alive;
79efa585 13563 remote_ops.to_thread_name = remote_thread_name;
e8032dde 13564 remote_ops.to_update_thread_list = remote_update_thread_list;
0caabb7e 13565 remote_ops.to_pid_to_str = remote_pid_to_str;
cf759d3b 13566 remote_ops.to_extra_thread_info = remote_threads_extra_info;
10760264 13567 remote_ops.to_get_ada_task_ptid = remote_get_ada_task_ptid;
c906108c 13568 remote_ops.to_stop = remote_stop;
bfedc46a 13569 remote_ops.to_interrupt = remote_interrupt;
93692b58 13570 remote_ops.to_pass_ctrlc = remote_pass_ctrlc;
4b8a223f 13571 remote_ops.to_xfer_partial = remote_xfer_partial;
09c98b44 13572 remote_ops.to_get_memory_xfer_limit = remote_get_memory_xfer_limit;
96baa820 13573 remote_ops.to_rcmd = remote_rcmd;
c78fa86a 13574 remote_ops.to_pid_to_exec_file = remote_pid_to_exec_file;
49d03eab 13575 remote_ops.to_log_command = serial_log_command;
38691318 13576 remote_ops.to_get_thread_local_address = remote_get_thread_local_address;
c906108c 13577 remote_ops.to_stratum = process_stratum;
c35b1492
PA
13578 remote_ops.to_has_all_memory = default_child_has_all_memory;
13579 remote_ops.to_has_memory = default_child_has_memory;
13580 remote_ops.to_has_stack = default_child_has_stack;
13581 remote_ops.to_has_registers = default_child_has_registers;
13582 remote_ops.to_has_execution = default_child_has_execution;
3e43a32a 13583 remote_ops.to_has_thread_control = tc_schedlock; /* can lock scheduler */
b2175913 13584 remote_ops.to_can_execute_reverse = remote_can_execute_reverse;
c5aa993b 13585 remote_ops.to_magic = OPS_MAGIC;
fd79ecee 13586 remote_ops.to_memory_map = remote_memory_map;
a76d924d
DJ
13587 remote_ops.to_flash_erase = remote_flash_erase;
13588 remote_ops.to_flash_done = remote_flash_done;
29709017 13589 remote_ops.to_read_description = remote_read_description;
08388c79 13590 remote_ops.to_search_memory = remote_search_memory;
75c99385
PA
13591 remote_ops.to_can_async_p = remote_can_async_p;
13592 remote_ops.to_is_async_p = remote_is_async_p;
13593 remote_ops.to_async = remote_async;
65706a29 13594 remote_ops.to_thread_events = remote_thread_events;
750ce8d1 13595 remote_ops.to_can_do_single_step = remote_can_do_single_step;
75c99385
PA
13596 remote_ops.to_terminal_inferior = remote_terminal_inferior;
13597 remote_ops.to_terminal_ours = remote_terminal_ours;
74531fed 13598 remote_ops.to_supports_non_stop = remote_supports_non_stop;
8a305172 13599 remote_ops.to_supports_multi_process = remote_supports_multi_process;
03583c20
UW
13600 remote_ops.to_supports_disable_randomization
13601 = remote_supports_disable_randomization;
4bd7dc42 13602 remote_ops.to_filesystem_is_local = remote_filesystem_is_local;
7313baad
UW
13603 remote_ops.to_fileio_open = remote_hostio_open;
13604 remote_ops.to_fileio_pwrite = remote_hostio_pwrite;
13605 remote_ops.to_fileio_pread = remote_hostio_pread;
9b15c1f0 13606 remote_ops.to_fileio_fstat = remote_hostio_fstat;
7313baad
UW
13607 remote_ops.to_fileio_close = remote_hostio_close;
13608 remote_ops.to_fileio_unlink = remote_hostio_unlink;
b9e7b9c3 13609 remote_ops.to_fileio_readlink = remote_hostio_readlink;
d248b706 13610 remote_ops.to_supports_enable_disable_tracepoint = remote_supports_enable_disable_tracepoint;
3065dfb6 13611 remote_ops.to_supports_string_tracing = remote_supports_string_tracing;
b775012e 13612 remote_ops.to_supports_evaluation_of_breakpoint_conditions = remote_supports_cond_breakpoints;
d3ce09f5 13613 remote_ops.to_can_run_breakpoint_commands = remote_can_run_breakpoint_commands;
35b1e5cc
SS
13614 remote_ops.to_trace_init = remote_trace_init;
13615 remote_ops.to_download_tracepoint = remote_download_tracepoint;
1e4d1764 13616 remote_ops.to_can_download_tracepoint = remote_can_download_tracepoint;
3e43a32a
MS
13617 remote_ops.to_download_trace_state_variable
13618 = remote_download_trace_state_variable;
d248b706
KY
13619 remote_ops.to_enable_tracepoint = remote_enable_tracepoint;
13620 remote_ops.to_disable_tracepoint = remote_disable_tracepoint;
35b1e5cc
SS
13621 remote_ops.to_trace_set_readonly_regions = remote_trace_set_readonly_regions;
13622 remote_ops.to_trace_start = remote_trace_start;
13623 remote_ops.to_get_trace_status = remote_get_trace_status;
f196051f 13624 remote_ops.to_get_tracepoint_status = remote_get_tracepoint_status;
35b1e5cc
SS
13625 remote_ops.to_trace_stop = remote_trace_stop;
13626 remote_ops.to_trace_find = remote_trace_find;
3e43a32a
MS
13627 remote_ops.to_get_trace_state_variable_value
13628 = remote_get_trace_state_variable_value;
00bf0b85
SS
13629 remote_ops.to_save_trace_data = remote_save_trace_data;
13630 remote_ops.to_upload_tracepoints = remote_upload_tracepoints;
3e43a32a
MS
13631 remote_ops.to_upload_trace_state_variables
13632 = remote_upload_trace_state_variables;
00bf0b85 13633 remote_ops.to_get_raw_trace_data = remote_get_raw_trace_data;
405f8e94 13634 remote_ops.to_get_min_fast_tracepoint_insn_len = remote_get_min_fast_tracepoint_insn_len;
35b1e5cc 13635 remote_ops.to_set_disconnected_tracing = remote_set_disconnected_tracing;
4daf5ac0 13636 remote_ops.to_set_circular_trace_buffer = remote_set_circular_trace_buffer;
f6f899bf 13637 remote_ops.to_set_trace_buffer_size = remote_set_trace_buffer_size;
f196051f 13638 remote_ops.to_set_trace_notes = remote_set_trace_notes;
dc146f7c 13639 remote_ops.to_core_of_thread = remote_core_of_thread;
4a5e7a5b 13640 remote_ops.to_verify_memory = remote_verify_memory;
711e434b 13641 remote_ops.to_get_tib_address = remote_get_tib_address;
d914c394 13642 remote_ops.to_set_permissions = remote_set_permissions;
0fb4aa4b
PA
13643 remote_ops.to_static_tracepoint_marker_at
13644 = remote_static_tracepoint_marker_at;
13645 remote_ops.to_static_tracepoint_markers_by_strid
13646 = remote_static_tracepoint_markers_by_strid;
b3b9301e 13647 remote_ops.to_traceframe_info = remote_traceframe_info;
d1feda86
YQ
13648 remote_ops.to_use_agent = remote_use_agent;
13649 remote_ops.to_can_use_agent = remote_can_use_agent;
9accd112
MM
13650 remote_ops.to_supports_btrace = remote_supports_btrace;
13651 remote_ops.to_enable_btrace = remote_enable_btrace;
13652 remote_ops.to_disable_btrace = remote_disable_btrace;
13653 remote_ops.to_teardown_btrace = remote_teardown_btrace;
13654 remote_ops.to_read_btrace = remote_read_btrace;
f4abbc16 13655 remote_ops.to_btrace_conf = remote_btrace_conf;
ced63ec0
GB
13656 remote_ops.to_augmented_libraries_svr4_read =
13657 remote_augmented_libraries_svr4_read;
8020350c
DB
13658 remote_ops.to_follow_fork = remote_follow_fork;
13659 remote_ops.to_follow_exec = remote_follow_exec;
13660 remote_ops.to_insert_fork_catchpoint = remote_insert_fork_catchpoint;
13661 remote_ops.to_remove_fork_catchpoint = remote_remove_fork_catchpoint;
13662 remote_ops.to_insert_vfork_catchpoint = remote_insert_vfork_catchpoint;
13663 remote_ops.to_remove_vfork_catchpoint = remote_remove_vfork_catchpoint;
13664 remote_ops.to_insert_exec_catchpoint = remote_insert_exec_catchpoint;
13665 remote_ops.to_remove_exec_catchpoint = remote_remove_exec_catchpoint;
3a00c802 13666 remote_ops.to_execution_direction = remote_execution_direction;
c906108c
SS
13667}
13668
13669/* Set up the extended remote vector by making a copy of the standard
13670 remote vector and adding to it. */
13671
13672static void
fba45db2 13673init_extended_remote_ops (void)
c906108c
SS
13674{
13675 extended_remote_ops = remote_ops;
13676
0f71a2f6 13677 extended_remote_ops.to_shortname = "extended-remote";
c5aa993b 13678 extended_remote_ops.to_longname =
c906108c 13679 "Extended remote serial target in gdb-specific protocol";
c5aa993b 13680 extended_remote_ops.to_doc =
c906108c 13681 "Use a remote computer via a serial line, using a gdb-specific protocol.\n\
39237dd1
PA
13682Specify the serial device it is connected to (e.g. /dev/ttya).";
13683 extended_remote_ops.to_open = extended_remote_open;
c906108c 13684 extended_remote_ops.to_create_inferior = extended_remote_create_inferior;
2d717e4f
DJ
13685 extended_remote_ops.to_detach = extended_remote_detach;
13686 extended_remote_ops.to_attach = extended_remote_attach;
b9c1d481 13687 extended_remote_ops.to_post_attach = extended_remote_post_attach;
03583c20
UW
13688 extended_remote_ops.to_supports_disable_randomization
13689 = extended_remote_supports_disable_randomization;
0f71a2f6
JM
13690}
13691
6426a772 13692static int
6a109b6b 13693remote_can_async_p (struct target_ops *ops)
6426a772 13694{
5d93a237
TT
13695 struct remote_state *rs = get_remote_state ();
13696
3015c064
SM
13697 /* We don't go async if the user has explicitly prevented it with the
13698 "maint set target-async" command. */
c6ebd6cf 13699 if (!target_async_permitted)
75c99385
PA
13700 return 0;
13701
23860348 13702 /* We're async whenever the serial device is. */
5d93a237 13703 return serial_can_async_p (rs->remote_desc);
6426a772
JM
13704}
13705
13706static int
6a109b6b 13707remote_is_async_p (struct target_ops *ops)
6426a772 13708{
5d93a237
TT
13709 struct remote_state *rs = get_remote_state ();
13710
c6ebd6cf 13711 if (!target_async_permitted)
75c99385
PA
13712 /* We only enable async when the user specifically asks for it. */
13713 return 0;
13714
23860348 13715 /* We're async whenever the serial device is. */
5d93a237 13716 return serial_is_async_p (rs->remote_desc);
6426a772
JM
13717}
13718
2acceee2
JM
13719/* Pass the SERIAL event on and up to the client. One day this code
13720 will be able to delay notifying the client of an event until the
23860348 13721 point where an entire packet has been received. */
2acceee2 13722
2acceee2
JM
13723static serial_event_ftype remote_async_serial_handler;
13724
6426a772 13725static void
819cc324 13726remote_async_serial_handler (struct serial *scb, void *context)
6426a772 13727{
2acceee2
JM
13728 /* Don't propogate error information up to the client. Instead let
13729 the client find out about the error by querying the target. */
6a3753b3 13730 inferior_event_handler (INF_REG_EVENT, NULL);
2acceee2
JM
13731}
13732
74531fed
PA
13733static void
13734remote_async_inferior_event_handler (gdb_client_data data)
13735{
13736 inferior_event_handler (INF_REG_EVENT, NULL);
13737}
13738
2acceee2 13739static void
6a3753b3 13740remote_async (struct target_ops *ops, int enable)
2acceee2 13741{
5d93a237
TT
13742 struct remote_state *rs = get_remote_state ();
13743
6a3753b3 13744 if (enable)
2acceee2 13745 {
88b496c3 13746 serial_async (rs->remote_desc, remote_async_serial_handler, rs);
b7d2e916
PA
13747
13748 /* If there are pending events in the stop reply queue tell the
13749 event loop to process them. */
13750 if (!QUEUE_is_empty (stop_reply_p, stop_reply_queue))
13751 mark_async_event_handler (remote_async_inferior_event_token);
6efcd9a8
PA
13752 /* For simplicity, below we clear the pending events token
13753 without remembering whether it is marked, so here we always
13754 mark it. If there's actually no pending notification to
13755 process, this ends up being a no-op (other than a spurious
13756 event-loop wakeup). */
13757 if (target_is_non_stop_p ())
13758 mark_async_event_handler (rs->notif_state->get_pending_events_token);
2acceee2
JM
13759 }
13760 else
b7d2e916
PA
13761 {
13762 serial_async (rs->remote_desc, NULL, NULL);
6efcd9a8
PA
13763 /* If the core is disabling async, it doesn't want to be
13764 disturbed with target events. Clear all async event sources
13765 too. */
b7d2e916 13766 clear_async_event_handler (remote_async_inferior_event_token);
6efcd9a8
PA
13767 if (target_is_non_stop_p ())
13768 clear_async_event_handler (rs->notif_state->get_pending_events_token);
b7d2e916 13769 }
6426a772
JM
13770}
13771
65706a29
PA
13772/* Implementation of the to_thread_events method. */
13773
13774static void
13775remote_thread_events (struct target_ops *ops, int enable)
13776{
13777 struct remote_state *rs = get_remote_state ();
13778 size_t size = get_remote_packet_size ();
65706a29
PA
13779
13780 if (packet_support (PACKET_QThreadEvents) == PACKET_DISABLE)
13781 return;
13782
13783 xsnprintf (rs->buf, size, "QThreadEvents:%x", enable ? 1 : 0);
13784 putpkt (rs->buf);
13785 getpkt (&rs->buf, &rs->buf_size, 0);
13786
13787 switch (packet_ok (rs->buf,
13788 &remote_protocol_packets[PACKET_QThreadEvents]))
13789 {
13790 case PACKET_OK:
13791 if (strcmp (rs->buf, "OK") != 0)
13792 error (_("Remote refused setting thread events: %s"), rs->buf);
13793 break;
13794 case PACKET_ERROR:
13795 warning (_("Remote failure reply: %s"), rs->buf);
13796 break;
13797 case PACKET_UNKNOWN:
13798 break;
13799 }
13800}
13801
5a2468f5 13802static void
c2d11a7d 13803set_remote_cmd (char *args, int from_tty)
5a2468f5 13804{
635c7e8a 13805 help_list (remote_set_cmdlist, "set remote ", all_commands, gdb_stdout);
5a2468f5
JM
13806}
13807
d471ea57
AC
13808static void
13809show_remote_cmd (char *args, int from_tty)
13810{
37a105a1 13811 /* We can't just use cmd_show_list here, because we want to skip
427c3a89 13812 the redundant "show remote Z-packet" and the legacy aliases. */
37a105a1
DJ
13813 struct cleanup *showlist_chain;
13814 struct cmd_list_element *list = remote_show_cmdlist;
79a45e25 13815 struct ui_out *uiout = current_uiout;
37a105a1
DJ
13816
13817 showlist_chain = make_cleanup_ui_out_tuple_begin_end (uiout, "showlist");
13818 for (; list != NULL; list = list->next)
13819 if (strcmp (list->name, "Z-packet") == 0)
13820 continue;
427c3a89
DJ
13821 else if (list->type == not_set_cmd)
13822 /* Alias commands are exactly like the original, except they
13823 don't have the normal type. */
13824 continue;
13825 else
37a105a1
DJ
13826 {
13827 struct cleanup *option_chain
13828 = make_cleanup_ui_out_tuple_begin_end (uiout, "option");
a744cf53 13829
112e8700
SM
13830 uiout->field_string ("name", list->name);
13831 uiout->text (": ");
427c3a89 13832 if (list->type == show_cmd)
f5c4fcd9 13833 do_show_command (NULL, from_tty, list);
427c3a89
DJ
13834 else
13835 cmd_func (list, NULL, from_tty);
37a105a1
DJ
13836 /* Close the tuple. */
13837 do_cleanups (option_chain);
13838 }
427c3a89
DJ
13839
13840 /* Close the tuple. */
13841 do_cleanups (showlist_chain);
d471ea57 13842}
5a2468f5 13843
0f71a2f6 13844
23860348 13845/* Function to be called whenever a new objfile (shlib) is detected. */
dc8acb97
MS
13846static void
13847remote_new_objfile (struct objfile *objfile)
13848{
5d93a237
TT
13849 struct remote_state *rs = get_remote_state ();
13850
13851 if (rs->remote_desc != 0) /* Have a remote connection. */
36d25514 13852 remote_check_symbols ();
dc8acb97
MS
13853}
13854
00bf0b85
SS
13855/* Pull all the tracepoints defined on the target and create local
13856 data structures representing them. We don't want to create real
13857 tracepoints yet, we don't want to mess up the user's existing
13858 collection. */
13859
13860static int
ab6617cc 13861remote_upload_tracepoints (struct target_ops *self, struct uploaded_tp **utpp)
d5551862 13862{
00bf0b85
SS
13863 struct remote_state *rs = get_remote_state ();
13864 char *p;
d5551862 13865
00bf0b85
SS
13866 /* Ask for a first packet of tracepoint definition. */
13867 putpkt ("qTfP");
13868 getpkt (&rs->buf, &rs->buf_size, 0);
13869 p = rs->buf;
13870 while (*p && *p != 'l')
d5551862 13871 {
00bf0b85
SS
13872 parse_tracepoint_definition (p, utpp);
13873 /* Ask for another packet of tracepoint definition. */
13874 putpkt ("qTsP");
13875 getpkt (&rs->buf, &rs->buf_size, 0);
13876 p = rs->buf;
d5551862 13877 }
00bf0b85 13878 return 0;
d5551862
SS
13879}
13880
00bf0b85 13881static int
181e3713
TT
13882remote_upload_trace_state_variables (struct target_ops *self,
13883 struct uploaded_tsv **utsvp)
d5551862 13884{
00bf0b85 13885 struct remote_state *rs = get_remote_state ();
d5551862 13886 char *p;
d5551862 13887
00bf0b85
SS
13888 /* Ask for a first packet of variable definition. */
13889 putpkt ("qTfV");
d5551862
SS
13890 getpkt (&rs->buf, &rs->buf_size, 0);
13891 p = rs->buf;
00bf0b85 13892 while (*p && *p != 'l')
d5551862 13893 {
00bf0b85
SS
13894 parse_tsv_definition (p, utsvp);
13895 /* Ask for another packet of variable definition. */
13896 putpkt ("qTsV");
d5551862
SS
13897 getpkt (&rs->buf, &rs->buf_size, 0);
13898 p = rs->buf;
13899 }
00bf0b85 13900 return 0;
d5551862
SS
13901}
13902
c1e36e3e
PA
13903/* The "set/show range-stepping" show hook. */
13904
13905static void
13906show_range_stepping (struct ui_file *file, int from_tty,
13907 struct cmd_list_element *c,
13908 const char *value)
13909{
13910 fprintf_filtered (file,
13911 _("Debugger's willingness to use range stepping "
13912 "is %s.\n"), value);
13913}
13914
13915/* The "set/show range-stepping" set hook. */
13916
13917static void
13918set_range_stepping (char *ignore_args, int from_tty,
13919 struct cmd_list_element *c)
13920{
5d93a237
TT
13921 struct remote_state *rs = get_remote_state ();
13922
c1e36e3e
PA
13923 /* Whene enabling, check whether range stepping is actually
13924 supported by the target, and warn if not. */
13925 if (use_range_stepping)
13926 {
5d93a237 13927 if (rs->remote_desc != NULL)
c1e36e3e 13928 {
4082afcc 13929 if (packet_support (PACKET_vCont) == PACKET_SUPPORT_UNKNOWN)
c1e36e3e
PA
13930 remote_vcont_probe (rs);
13931
4082afcc 13932 if (packet_support (PACKET_vCont) == PACKET_ENABLE
c1e36e3e
PA
13933 && rs->supports_vCont.r)
13934 return;
13935 }
13936
13937 warning (_("Range stepping is not supported by the current target"));
13938 }
13939}
13940
c906108c 13941void
fba45db2 13942_initialize_remote (void)
c906108c 13943{
9a7071a8 13944 struct cmd_list_element *cmd;
6f937416 13945 const char *cmd_name;
ea9c271d 13946
0f71a2f6 13947 /* architecture specific data */
2bc416ba 13948 remote_gdbarch_data_handle =
23860348 13949 gdbarch_data_register_post_init (init_remote_state);
29709017
DJ
13950 remote_g_packet_data_handle =
13951 gdbarch_data_register_pre_init (remote_g_packet_data_init);
d01949b6 13952
94585166
DB
13953 remote_pspace_data
13954 = register_program_space_data_with_cleanup (NULL,
13955 remote_pspace_data_cleanup);
13956
ea9c271d
DJ
13957 /* Initialize the per-target state. At the moment there is only one
13958 of these, not one per target. Only one target is active at a
cf792862
TT
13959 time. */
13960 remote_state = new_remote_state ();
ea9c271d 13961
c906108c
SS
13962 init_remote_ops ();
13963 add_target (&remote_ops);
13964
13965 init_extended_remote_ops ();
13966 add_target (&extended_remote_ops);
cce74817 13967
dc8acb97 13968 /* Hook into new objfile notification. */
06d3b283 13969 observer_attach_new_objfile (remote_new_objfile);
5f4cf0bb
YQ
13970 /* We're no longer interested in notification events of an inferior
13971 when it exits. */
13972 observer_attach_inferior_exit (discard_pending_stop_replies);
dc8acb97 13973
c906108c
SS
13974#if 0
13975 init_remote_threadtests ();
13976#endif
13977
722247f1 13978 stop_reply_queue = QUEUE_alloc (stop_reply_p, stop_reply_xfree);
23860348 13979 /* set/show remote ... */
d471ea57 13980
1bedd215 13981 add_prefix_cmd ("remote", class_maintenance, set_remote_cmd, _("\
5a2468f5
JM
13982Remote protocol specific variables\n\
13983Configure various remote-protocol specific variables such as\n\
1bedd215 13984the packets being used"),
cff3e48b 13985 &remote_set_cmdlist, "set remote ",
23860348 13986 0 /* allow-unknown */, &setlist);
1bedd215 13987 add_prefix_cmd ("remote", class_maintenance, show_remote_cmd, _("\
5a2468f5
JM
13988Remote protocol specific variables\n\
13989Configure various remote-protocol specific variables such as\n\
1bedd215 13990the packets being used"),
cff3e48b 13991 &remote_show_cmdlist, "show remote ",
23860348 13992 0 /* allow-unknown */, &showlist);
5a2468f5 13993
1a966eab
AC
13994 add_cmd ("compare-sections", class_obscure, compare_sections_command, _("\
13995Compare section data on target to the exec file.\n\
95cf3b38
DT
13996Argument is a single section name (default: all loaded sections).\n\
13997To compare only read-only loaded sections, specify the -r option."),
c906108c
SS
13998 &cmdlist);
13999
1a966eab
AC
14000 add_cmd ("packet", class_maintenance, packet_command, _("\
14001Send an arbitrary packet to a remote target.\n\
c906108c
SS
14002 maintenance packet TEXT\n\
14003If GDB is talking to an inferior via the GDB serial protocol, then\n\
14004this command sends the string TEXT to the inferior, and displays the\n\
14005response packet. GDB supplies the initial `$' character, and the\n\
1a966eab 14006terminating `#' character and checksum."),
c906108c
SS
14007 &maintenancelist);
14008
7915a72c
AC
14009 add_setshow_boolean_cmd ("remotebreak", no_class, &remote_break, _("\
14010Set whether to send break if interrupted."), _("\
14011Show whether to send break if interrupted."), _("\
14012If set, a break, instead of a cntrl-c, is sent to the remote target."),
9a7071a8 14013 set_remotebreak, show_remotebreak,
e707bbc2 14014 &setlist, &showlist);
9a7071a8
JB
14015 cmd_name = "remotebreak";
14016 cmd = lookup_cmd (&cmd_name, setlist, "", -1, 1);
14017 deprecate_cmd (cmd, "set remote interrupt-sequence");
14018 cmd_name = "remotebreak"; /* needed because lookup_cmd updates the pointer */
14019 cmd = lookup_cmd (&cmd_name, showlist, "", -1, 1);
14020 deprecate_cmd (cmd, "show remote interrupt-sequence");
14021
14022 add_setshow_enum_cmd ("interrupt-sequence", class_support,
3e43a32a
MS
14023 interrupt_sequence_modes, &interrupt_sequence_mode,
14024 _("\
9a7071a8
JB
14025Set interrupt sequence to remote target."), _("\
14026Show interrupt sequence to remote target."), _("\
14027Valid value is \"Ctrl-C\", \"BREAK\" or \"BREAK-g\". The default is \"Ctrl-C\"."),
14028 NULL, show_interrupt_sequence,
14029 &remote_set_cmdlist,
14030 &remote_show_cmdlist);
14031
14032 add_setshow_boolean_cmd ("interrupt-on-connect", class_support,
14033 &interrupt_on_connect, _("\
14034Set whether interrupt-sequence is sent to remote target when gdb connects to."), _(" \
14035Show whether interrupt-sequence is sent to remote target when gdb connects to."), _(" \
14036If set, interrupt sequence is sent to remote target."),
14037 NULL, NULL,
14038 &remote_set_cmdlist, &remote_show_cmdlist);
c906108c 14039
23860348 14040 /* Install commands for configuring memory read/write packets. */
11cf8741 14041
1a966eab
AC
14042 add_cmd ("remotewritesize", no_class, set_memory_write_packet_size, _("\
14043Set the maximum number of bytes per memory write packet (deprecated)."),
11cf8741 14044 &setlist);
1a966eab
AC
14045 add_cmd ("remotewritesize", no_class, show_memory_write_packet_size, _("\
14046Show the maximum number of bytes per memory write packet (deprecated)."),
11cf8741
JM
14047 &showlist);
14048 add_cmd ("memory-write-packet-size", no_class,
1a966eab
AC
14049 set_memory_write_packet_size, _("\
14050Set the maximum number of bytes per memory-write packet.\n\
14051Specify the number of bytes in a packet or 0 (zero) for the\n\
14052default packet size. The actual limit is further reduced\n\
14053dependent on the target. Specify ``fixed'' to disable the\n\
14054further restriction and ``limit'' to enable that restriction."),
11cf8741
JM
14055 &remote_set_cmdlist);
14056 add_cmd ("memory-read-packet-size", no_class,
1a966eab
AC
14057 set_memory_read_packet_size, _("\
14058Set the maximum number of bytes per memory-read packet.\n\
14059Specify the number of bytes in a packet or 0 (zero) for the\n\
14060default packet size. The actual limit is further reduced\n\
14061dependent on the target. Specify ``fixed'' to disable the\n\
14062further restriction and ``limit'' to enable that restriction."),
11cf8741
JM
14063 &remote_set_cmdlist);
14064 add_cmd ("memory-write-packet-size", no_class,
14065 show_memory_write_packet_size,
1a966eab 14066 _("Show the maximum number of bytes per memory-write packet."),
11cf8741
JM
14067 &remote_show_cmdlist);
14068 add_cmd ("memory-read-packet-size", no_class,
14069 show_memory_read_packet_size,
1a966eab 14070 _("Show the maximum number of bytes per memory-read packet."),
11cf8741 14071 &remote_show_cmdlist);
c906108c 14072
b3f42336 14073 add_setshow_zinteger_cmd ("hardware-watchpoint-limit", no_class,
7915a72c
AC
14074 &remote_hw_watchpoint_limit, _("\
14075Set the maximum number of target hardware watchpoints."), _("\
14076Show the maximum number of target hardware watchpoints."), _("\
14077Specify a negative limit for unlimited."),
3e43a32a
MS
14078 NULL, NULL, /* FIXME: i18n: The maximum
14079 number of target hardware
14080 watchpoints is %s. */
b3f42336 14081 &remote_set_cmdlist, &remote_show_cmdlist);
480a3f21
PW
14082 add_setshow_zinteger_cmd ("hardware-watchpoint-length-limit", no_class,
14083 &remote_hw_watchpoint_length_limit, _("\
14084Set the maximum length (in bytes) of a target hardware watchpoint."), _("\
14085Show the maximum length (in bytes) of a target hardware watchpoint."), _("\
14086Specify a negative limit for unlimited."),
14087 NULL, NULL, /* FIXME: i18n: The maximum
14088 length (in bytes) of a target
14089 hardware watchpoint is %s. */
14090 &remote_set_cmdlist, &remote_show_cmdlist);
b3f42336 14091 add_setshow_zinteger_cmd ("hardware-breakpoint-limit", no_class,
7915a72c
AC
14092 &remote_hw_breakpoint_limit, _("\
14093Set the maximum number of target hardware breakpoints."), _("\
14094Show the maximum number of target hardware breakpoints."), _("\
14095Specify a negative limit for unlimited."),
3e43a32a
MS
14096 NULL, NULL, /* FIXME: i18n: The maximum
14097 number of target hardware
14098 breakpoints is %s. */
b3f42336 14099 &remote_set_cmdlist, &remote_show_cmdlist);
501eef12 14100
1b493192
PA
14101 add_setshow_zuinteger_cmd ("remoteaddresssize", class_obscure,
14102 &remote_address_size, _("\
4d28ad1e
AC
14103Set the maximum size of the address (in bits) in a memory packet."), _("\
14104Show the maximum size of the address (in bits) in a memory packet."), NULL,
1b493192
PA
14105 NULL,
14106 NULL, /* FIXME: i18n: */
14107 &setlist, &showlist);
c906108c 14108
ca4f7f8b
PA
14109 init_all_packet_configs ();
14110
444abaca 14111 add_packet_config_cmd (&remote_protocol_packets[PACKET_X],
bb572ddd 14112 "X", "binary-download", 1);
0f71a2f6 14113
444abaca 14114 add_packet_config_cmd (&remote_protocol_packets[PACKET_vCont],
bb572ddd 14115 "vCont", "verbose-resume", 0);
506fb367 14116
89be2091
DJ
14117 add_packet_config_cmd (&remote_protocol_packets[PACKET_QPassSignals],
14118 "QPassSignals", "pass-signals", 0);
14119
82075af2
JS
14120 add_packet_config_cmd (&remote_protocol_packets[PACKET_QCatchSyscalls],
14121 "QCatchSyscalls", "catch-syscalls", 0);
14122
9b224c5e
PA
14123 add_packet_config_cmd (&remote_protocol_packets[PACKET_QProgramSignals],
14124 "QProgramSignals", "program-signals", 0);
14125
444abaca 14126 add_packet_config_cmd (&remote_protocol_packets[PACKET_qSymbol],
bb572ddd 14127 "qSymbol", "symbol-lookup", 0);
dc8acb97 14128
444abaca 14129 add_packet_config_cmd (&remote_protocol_packets[PACKET_P],
bb572ddd 14130 "P", "set-register", 1);
d471ea57 14131
444abaca 14132 add_packet_config_cmd (&remote_protocol_packets[PACKET_p],
bb572ddd 14133 "p", "fetch-register", 1);
b96ec7ac 14134
444abaca 14135 add_packet_config_cmd (&remote_protocol_packets[PACKET_Z0],
bb572ddd 14136 "Z0", "software-breakpoint", 0);
d471ea57 14137
444abaca 14138 add_packet_config_cmd (&remote_protocol_packets[PACKET_Z1],
bb572ddd 14139 "Z1", "hardware-breakpoint", 0);
d471ea57 14140
444abaca 14141 add_packet_config_cmd (&remote_protocol_packets[PACKET_Z2],
bb572ddd 14142 "Z2", "write-watchpoint", 0);
d471ea57 14143
444abaca 14144 add_packet_config_cmd (&remote_protocol_packets[PACKET_Z3],
bb572ddd 14145 "Z3", "read-watchpoint", 0);
d471ea57 14146
444abaca 14147 add_packet_config_cmd (&remote_protocol_packets[PACKET_Z4],
bb572ddd 14148 "Z4", "access-watchpoint", 0);
d471ea57 14149
0876f84a
DJ
14150 add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_auxv],
14151 "qXfer:auxv:read", "read-aux-vector", 0);
802188a7 14152
c78fa86a
GB
14153 add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_exec_file],
14154 "qXfer:exec-file:read", "pid-to-exec-file", 0);
14155
23181151
DJ
14156 add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_features],
14157 "qXfer:features:read", "target-features", 0);
14158
cfa9d6d9
DJ
14159 add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_libraries],
14160 "qXfer:libraries:read", "library-info", 0);
14161
2268b414
JK
14162 add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_libraries_svr4],
14163 "qXfer:libraries-svr4:read", "library-info-svr4", 0);
14164
fd79ecee
DJ
14165 add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_memory_map],
14166 "qXfer:memory-map:read", "memory-map", 0);
14167
0e7f50da
UW
14168 add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_spu_read],
14169 "qXfer:spu:read", "read-spu-object", 0);
14170
14171 add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_spu_write],
14172 "qXfer:spu:write", "write-spu-object", 0);
14173
07e059b5
VP
14174 add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_osdata],
14175 "qXfer:osdata:read", "osdata", 0);
14176
dc146f7c
VP
14177 add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_threads],
14178 "qXfer:threads:read", "threads", 0);
14179
4aa995e1
PA
14180 add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_siginfo_read],
14181 "qXfer:siginfo:read", "read-siginfo-object", 0);
14182
14183 add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_siginfo_write],
14184 "qXfer:siginfo:write", "write-siginfo-object", 0);
14185
b3b9301e
PA
14186 add_packet_config_cmd
14187 (&remote_protocol_packets[PACKET_qXfer_traceframe_info],
eb9fe518 14188 "qXfer:traceframe-info:read", "traceframe-info", 0);
b3b9301e 14189
169081d0
TG
14190 add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_uib],
14191 "qXfer:uib:read", "unwind-info-block", 0);
14192
444abaca 14193 add_packet_config_cmd (&remote_protocol_packets[PACKET_qGetTLSAddr],
38691318 14194 "qGetTLSAddr", "get-thread-local-storage-address",
38691318
KB
14195 0);
14196
711e434b
PM
14197 add_packet_config_cmd (&remote_protocol_packets[PACKET_qGetTIBAddr],
14198 "qGetTIBAddr", "get-thread-information-block-address",
14199 0);
14200
40ab02ce
MS
14201 add_packet_config_cmd (&remote_protocol_packets[PACKET_bc],
14202 "bc", "reverse-continue", 0);
14203
14204 add_packet_config_cmd (&remote_protocol_packets[PACKET_bs],
14205 "bs", "reverse-step", 0);
14206
be2a5f71
DJ
14207 add_packet_config_cmd (&remote_protocol_packets[PACKET_qSupported],
14208 "qSupported", "supported-packets", 0);
14209
08388c79
DE
14210 add_packet_config_cmd (&remote_protocol_packets[PACKET_qSearch_memory],
14211 "qSearch:memory", "search-memory", 0);
14212
bd3eecc3
PA
14213 add_packet_config_cmd (&remote_protocol_packets[PACKET_qTStatus],
14214 "qTStatus", "trace-status", 0);
14215
15a201c8
GB
14216 add_packet_config_cmd (&remote_protocol_packets[PACKET_vFile_setfs],
14217 "vFile:setfs", "hostio-setfs", 0);
14218
a6b151f1
DJ
14219 add_packet_config_cmd (&remote_protocol_packets[PACKET_vFile_open],
14220 "vFile:open", "hostio-open", 0);
14221
14222 add_packet_config_cmd (&remote_protocol_packets[PACKET_vFile_pread],
14223 "vFile:pread", "hostio-pread", 0);
14224
14225 add_packet_config_cmd (&remote_protocol_packets[PACKET_vFile_pwrite],
14226 "vFile:pwrite", "hostio-pwrite", 0);
14227
14228 add_packet_config_cmd (&remote_protocol_packets[PACKET_vFile_close],
14229 "vFile:close", "hostio-close", 0);
14230
14231 add_packet_config_cmd (&remote_protocol_packets[PACKET_vFile_unlink],
14232 "vFile:unlink", "hostio-unlink", 0);
14233
b9e7b9c3
UW
14234 add_packet_config_cmd (&remote_protocol_packets[PACKET_vFile_readlink],
14235 "vFile:readlink", "hostio-readlink", 0);
14236
0a93529c
GB
14237 add_packet_config_cmd (&remote_protocol_packets[PACKET_vFile_fstat],
14238 "vFile:fstat", "hostio-fstat", 0);
14239
2d717e4f
DJ
14240 add_packet_config_cmd (&remote_protocol_packets[PACKET_vAttach],
14241 "vAttach", "attach", 0);
14242
14243 add_packet_config_cmd (&remote_protocol_packets[PACKET_vRun],
14244 "vRun", "run", 0);
14245
a6f3e723
SL
14246 add_packet_config_cmd (&remote_protocol_packets[PACKET_QStartNoAckMode],
14247 "QStartNoAckMode", "noack", 0);
14248
82f73884
PA
14249 add_packet_config_cmd (&remote_protocol_packets[PACKET_vKill],
14250 "vKill", "kill", 0);
14251
0b16c5cf
PA
14252 add_packet_config_cmd (&remote_protocol_packets[PACKET_qAttached],
14253 "qAttached", "query-attached", 0);
14254
782b2b07 14255 add_packet_config_cmd (&remote_protocol_packets[PACKET_ConditionalTracepoints],
3e43a32a
MS
14256 "ConditionalTracepoints",
14257 "conditional-tracepoints", 0);
3788aec7
LM
14258
14259 add_packet_config_cmd (&remote_protocol_packets[PACKET_ConditionalBreakpoints],
14260 "ConditionalBreakpoints",
14261 "conditional-breakpoints", 0);
14262
d3ce09f5
SS
14263 add_packet_config_cmd (&remote_protocol_packets[PACKET_BreakpointCommands],
14264 "BreakpointCommands",
14265 "breakpoint-commands", 0);
14266
7a697b8d
SS
14267 add_packet_config_cmd (&remote_protocol_packets[PACKET_FastTracepoints],
14268 "FastTracepoints", "fast-tracepoints", 0);
782b2b07 14269
409873ef
SS
14270 add_packet_config_cmd (&remote_protocol_packets[PACKET_TracepointSource],
14271 "TracepointSource", "TracepointSource", 0);
14272
d914c394
SS
14273 add_packet_config_cmd (&remote_protocol_packets[PACKET_QAllow],
14274 "QAllow", "allow", 0);
14275
0fb4aa4b
PA
14276 add_packet_config_cmd (&remote_protocol_packets[PACKET_StaticTracepoints],
14277 "StaticTracepoints", "static-tracepoints", 0);
14278
1e4d1764
YQ
14279 add_packet_config_cmd (&remote_protocol_packets[PACKET_InstallInTrace],
14280 "InstallInTrace", "install-in-trace", 0);
14281
0fb4aa4b
PA
14282 add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_statictrace_read],
14283 "qXfer:statictrace:read", "read-sdata-object", 0);
14284
78d85199
YQ
14285 add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_fdpic],
14286 "qXfer:fdpic:read", "read-fdpic-loadmap", 0);
14287
03583c20
UW
14288 add_packet_config_cmd (&remote_protocol_packets[PACKET_QDisableRandomization],
14289 "QDisableRandomization", "disable-randomization", 0);
14290
d1feda86
YQ
14291 add_packet_config_cmd (&remote_protocol_packets[PACKET_QAgent],
14292 "QAgent", "agent", 0);
14293
f6f899bf
HAQ
14294 add_packet_config_cmd (&remote_protocol_packets[PACKET_QTBuffer_size],
14295 "QTBuffer:size", "trace-buffer-size", 0);
14296
9accd112
MM
14297 add_packet_config_cmd (&remote_protocol_packets[PACKET_Qbtrace_off],
14298 "Qbtrace:off", "disable-btrace", 0);
14299
14300 add_packet_config_cmd (&remote_protocol_packets[PACKET_Qbtrace_bts],
b20a6524
MM
14301 "Qbtrace:bts", "enable-btrace-bts", 0);
14302
14303 add_packet_config_cmd (&remote_protocol_packets[PACKET_Qbtrace_pt],
14304 "Qbtrace:pt", "enable-btrace-pt", 0);
9accd112
MM
14305
14306 add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_btrace],
14307 "qXfer:btrace", "read-btrace", 0);
14308
f4abbc16
MM
14309 add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_btrace_conf],
14310 "qXfer:btrace-conf", "read-btrace-conf", 0);
14311
d33501a5
MM
14312 add_packet_config_cmd (&remote_protocol_packets[PACKET_Qbtrace_conf_bts_size],
14313 "Qbtrace-conf:bts:size", "btrace-conf-bts-size", 0);
14314
73b8c1fd
PA
14315 add_packet_config_cmd (&remote_protocol_packets[PACKET_multiprocess_feature],
14316 "multiprocess-feature", "multiprocess-feature", 0);
14317
f7e6eed5
PA
14318 add_packet_config_cmd (&remote_protocol_packets[PACKET_swbreak_feature],
14319 "swbreak-feature", "swbreak-feature", 0);
14320
14321 add_packet_config_cmd (&remote_protocol_packets[PACKET_hwbreak_feature],
14322 "hwbreak-feature", "hwbreak-feature", 0);
14323
89245bc0
DB
14324 add_packet_config_cmd (&remote_protocol_packets[PACKET_fork_event_feature],
14325 "fork-event-feature", "fork-event-feature", 0);
14326
14327 add_packet_config_cmd (&remote_protocol_packets[PACKET_vfork_event_feature],
14328 "vfork-event-feature", "vfork-event-feature", 0);
14329
b20a6524
MM
14330 add_packet_config_cmd (&remote_protocol_packets[PACKET_Qbtrace_conf_pt_size],
14331 "Qbtrace-conf:pt:size", "btrace-conf-pt-size", 0);
14332
750ce8d1
YQ
14333 add_packet_config_cmd (&remote_protocol_packets[PACKET_vContSupported],
14334 "vContSupported", "verbose-resume-supported", 0);
14335
94585166
DB
14336 add_packet_config_cmd (&remote_protocol_packets[PACKET_exec_event_feature],
14337 "exec-event-feature", "exec-event-feature", 0);
14338
de979965
PA
14339 add_packet_config_cmd (&remote_protocol_packets[PACKET_vCtrlC],
14340 "vCtrlC", "ctrl-c", 0);
14341
65706a29
PA
14342 add_packet_config_cmd (&remote_protocol_packets[PACKET_QThreadEvents],
14343 "QThreadEvents", "thread-events", 0);
14344
f2faf941
PA
14345 add_packet_config_cmd (&remote_protocol_packets[PACKET_no_resumed],
14346 "N stop reply", "no-resumed-stop-reply", 0);
14347
0b736949
DB
14348 /* Assert that we've registered "set remote foo-packet" commands
14349 for all packet configs. */
ca4f7f8b
PA
14350 {
14351 int i;
14352
14353 for (i = 0; i < PACKET_MAX; i++)
14354 {
14355 /* Ideally all configs would have a command associated. Some
14356 still don't though. */
14357 int excepted;
14358
14359 switch (i)
14360 {
14361 case PACKET_QNonStop:
ca4f7f8b
PA
14362 case PACKET_EnableDisableTracepoints_feature:
14363 case PACKET_tracenz_feature:
14364 case PACKET_DisconnectedTracing_feature:
14365 case PACKET_augmented_libraries_svr4_read_feature:
936d2992
PA
14366 case PACKET_qCRC:
14367 /* Additions to this list need to be well justified:
14368 pre-existing packets are OK; new packets are not. */
ca4f7f8b
PA
14369 excepted = 1;
14370 break;
14371 default:
14372 excepted = 0;
14373 break;
14374 }
14375
14376 /* This catches both forgetting to add a config command, and
14377 forgetting to remove a packet from the exception list. */
14378 gdb_assert (excepted == (remote_protocol_packets[i].name == NULL));
14379 }
14380 }
14381
37a105a1
DJ
14382 /* Keep the old ``set remote Z-packet ...'' working. Each individual
14383 Z sub-packet has its own set and show commands, but users may
14384 have sets to this variable in their .gdbinit files (or in their
14385 documentation). */
e9e68a56 14386 add_setshow_auto_boolean_cmd ("Z-packet", class_obscure,
7915a72c
AC
14387 &remote_Z_packet_detect, _("\
14388Set use of remote protocol `Z' packets"), _("\
14389Show use of remote protocol `Z' packets "), _("\
3b64bf98 14390When set, GDB will attempt to use the remote breakpoint and watchpoint\n\
7915a72c 14391packets."),
e9e68a56 14392 set_remote_protocol_Z_packet_cmd,
3e43a32a
MS
14393 show_remote_protocol_Z_packet_cmd,
14394 /* FIXME: i18n: Use of remote protocol
14395 `Z' packets is %s. */
e9e68a56 14396 &remote_set_cmdlist, &remote_show_cmdlist);
449092f6 14397
a6b151f1
DJ
14398 add_prefix_cmd ("remote", class_files, remote_command, _("\
14399Manipulate files on the remote system\n\
14400Transfer files to and from the remote target system."),
14401 &remote_cmdlist, "remote ",
14402 0 /* allow-unknown */, &cmdlist);
14403
14404 add_cmd ("put", class_files, remote_put_command,
14405 _("Copy a local file to the remote system."),
14406 &remote_cmdlist);
14407
14408 add_cmd ("get", class_files, remote_get_command,
14409 _("Copy a remote file to the local system."),
14410 &remote_cmdlist);
14411
14412 add_cmd ("delete", class_files, remote_delete_command,
14413 _("Delete a remote file."),
14414 &remote_cmdlist);
14415
2d717e4f 14416 add_setshow_string_noescape_cmd ("exec-file", class_files,
94585166 14417 &remote_exec_file_var, _("\
2d717e4f 14418Set the remote pathname for \"run\""), _("\
94585166
DB
14419Show the remote pathname for \"run\""), NULL,
14420 set_remote_exec_file,
14421 show_remote_exec_file,
14422 &remote_set_cmdlist,
14423 &remote_show_cmdlist);
2d717e4f 14424
c1e36e3e
PA
14425 add_setshow_boolean_cmd ("range-stepping", class_run,
14426 &use_range_stepping, _("\
14427Enable or disable range stepping."), _("\
14428Show whether target-assisted range stepping is enabled."), _("\
14429If on, and the target supports it, when stepping a source line, GDB\n\
14430tells the target to step the corresponding range of addresses itself instead\n\
14431of issuing multiple single-steps. This speeds up source level\n\
14432stepping. If off, GDB always issues single-steps, even if range\n\
14433stepping is supported by the target. The default is on."),
14434 set_range_stepping,
14435 show_range_stepping,
14436 &setlist,
14437 &showlist);
14438
449092f6
CV
14439 /* Eventually initialize fileio. See fileio.c */
14440 initialize_remote_fileio (remote_set_cmdlist, remote_show_cmdlist);
79d7f229 14441
ba348170 14442 /* Take advantage of the fact that the TID field is not used, to tag
79d7f229 14443 special ptids with it set to != 0. */
ba348170
PA
14444 magic_null_ptid = ptid_build (42000, -1, 1);
14445 not_sent_ptid = ptid_build (42000, -2, 1);
14446 any_thread_ptid = ptid_build (42000, 0, 1);
35b1e5cc
SS
14447
14448 target_buf_size = 2048;
224c3ddb 14449 target_buf = (char *) xmalloc (target_buf_size);
c906108c 14450}
10760264 14451
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