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1 /* Main code for remote server for GDB.
2 Copyright (C) 1989-2015 Free Software Foundation, Inc.
3
4 This file is part of GDB.
5
6 This program is free software; you can redistribute it and/or modify
7 it under the terms of the GNU General Public License as published by
8 the Free Software Foundation; either version 3 of the License, or
9 (at your option) any later version.
10
11 This program is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details.
15
16 You should have received a copy of the GNU General Public License
17 along with this program. If not, see <http://www.gnu.org/licenses/>. */
18
19 #include "server.h"
20 #include "gdbthread.h"
21 #include "agent.h"
22 #include "notif.h"
23 #include "tdesc.h"
24 #include "rsp-low.h"
25
26 #include <ctype.h>
27 #include <unistd.h>
28 #if HAVE_SIGNAL_H
29 #include <signal.h>
30 #endif
31 #include "gdb_vecs.h"
32 #include "gdb_wait.h"
33 #include "btrace-common.h"
34 #include "filestuff.h"
35 #include "tracepoint.h"
36 #include "dll.h"
37 #include "hostio.h"
38
39 /* The thread set with an `Hc' packet. `Hc' is deprecated in favor of
40 `vCont'. Note the multi-process extensions made `vCont' a
41 requirement, so `Hc pPID.TID' is pretty much undefined. So
42 CONT_THREAD can be null_ptid for no `Hc' thread, minus_one_ptid for
43 resuming all threads of the process (again, `Hc' isn't used for
44 multi-process), or a specific thread ptid_t. */
45 ptid_t cont_thread;
46
47 /* The thread set with an `Hg' packet. */
48 ptid_t general_thread;
49
50 int server_waiting;
51
52 int extended_protocol;
53 static int response_needed;
54 static int exit_requested;
55
56 /* --once: Exit after the first connection has closed. */
57 int run_once;
58
59 int multi_process;
60 int report_fork_events;
61 int report_vfork_events;
62 int report_exec_events;
63 int non_stop;
64 int swbreak_feature;
65 int hwbreak_feature;
66
67 /* True if the "vContSupported" feature is active. In that case, GDB
68 wants us to report whether single step is supported in the reply to
69 "vCont?" packet. */
70 static int vCont_supported;
71
72 /* Whether we should attempt to disable the operating system's address
73 space randomization feature before starting an inferior. */
74 int disable_randomization = 1;
75
76 static char **program_argv, **wrapper_argv;
77
78 int pass_signals[GDB_SIGNAL_LAST];
79 int program_signals[GDB_SIGNAL_LAST];
80 int program_signals_p;
81
82 /* The PID of the originally created or attached inferior. Used to
83 send signals to the process when GDB sends us an asynchronous interrupt
84 (user hitting Control-C in the client), and to wait for the child to exit
85 when no longer debugging it. */
86
87 unsigned long signal_pid;
88
89 #ifdef SIGTTOU
90 /* A file descriptor for the controlling terminal. */
91 int terminal_fd;
92
93 /* TERMINAL_FD's original foreground group. */
94 pid_t old_foreground_pgrp;
95
96 /* Hand back terminal ownership to the original foreground group. */
97
98 static void
99 restore_old_foreground_pgrp (void)
100 {
101 tcsetpgrp (terminal_fd, old_foreground_pgrp);
102 }
103 #endif
104
105 /* Set if you want to disable optional thread related packets support
106 in gdbserver, for the sake of testing GDB against stubs that don't
107 support them. */
108 int disable_packet_vCont;
109 int disable_packet_Tthread;
110 int disable_packet_qC;
111 int disable_packet_qfThreadInfo;
112
113 /* Last status reported to GDB. */
114 static struct target_waitstatus last_status;
115 static ptid_t last_ptid;
116
117 static char *own_buf;
118 static unsigned char *mem_buf;
119
120 /* A sub-class of 'struct notif_event' for stop, holding information
121 relative to a single stop reply. We keep a queue of these to
122 push to GDB in non-stop mode. */
123
124 struct vstop_notif
125 {
126 struct notif_event base;
127
128 /* Thread or process that got the event. */
129 ptid_t ptid;
130
131 /* Event info. */
132 struct target_waitstatus status;
133 };
134
135 /* The current btrace configuration. This is gdbserver's mirror of GDB's
136 btrace configuration. */
137 static struct btrace_config current_btrace_conf;
138
139 DEFINE_QUEUE_P (notif_event_p);
140
141 /* Put a stop reply to the stop reply queue. */
142
143 static void
144 queue_stop_reply (ptid_t ptid, struct target_waitstatus *status)
145 {
146 struct vstop_notif *new_notif = XNEW (struct vstop_notif);
147
148 new_notif->ptid = ptid;
149 new_notif->status = *status;
150
151 notif_event_enque (&notif_stop, (struct notif_event *) new_notif);
152 }
153
154 static int
155 remove_all_on_match_ptid (QUEUE (notif_event_p) *q,
156 QUEUE_ITER (notif_event_p) *iter,
157 struct notif_event *event,
158 void *data)
159 {
160 ptid_t filter_ptid = *(ptid_t *) data;
161 struct vstop_notif *vstop_event = (struct vstop_notif *) event;
162
163 if (ptid_match (vstop_event->ptid, filter_ptid))
164 {
165 if (q->free_func != NULL)
166 q->free_func (event);
167
168 QUEUE_remove_elem (notif_event_p, q, iter);
169 }
170
171 return 1;
172 }
173
174 /* See server.h. */
175
176 void
177 discard_queued_stop_replies (ptid_t ptid)
178 {
179 QUEUE_iterate (notif_event_p, notif_stop.queue,
180 remove_all_on_match_ptid, &ptid);
181 }
182
183 static void
184 vstop_notif_reply (struct notif_event *event, char *own_buf)
185 {
186 struct vstop_notif *vstop = (struct vstop_notif *) event;
187
188 prepare_resume_reply (own_buf, vstop->ptid, &vstop->status);
189 }
190
191 struct notif_server notif_stop =
192 {
193 "vStopped", "Stop", NULL, vstop_notif_reply,
194 };
195
196 static int
197 target_running (void)
198 {
199 return get_first_thread () != NULL;
200 }
201
202 static int
203 start_inferior (char **argv)
204 {
205 char **new_argv = argv;
206
207 if (wrapper_argv != NULL)
208 {
209 int i, count = 1;
210
211 for (i = 0; wrapper_argv[i] != NULL; i++)
212 count++;
213 for (i = 0; argv[i] != NULL; i++)
214 count++;
215 new_argv = XALLOCAVEC (char *, count);
216 count = 0;
217 for (i = 0; wrapper_argv[i] != NULL; i++)
218 new_argv[count++] = wrapper_argv[i];
219 for (i = 0; argv[i] != NULL; i++)
220 new_argv[count++] = argv[i];
221 new_argv[count] = NULL;
222 }
223
224 if (debug_threads)
225 {
226 int i;
227 for (i = 0; new_argv[i]; ++i)
228 debug_printf ("new_argv[%d] = \"%s\"\n", i, new_argv[i]);
229 debug_flush ();
230 }
231
232 #ifdef SIGTTOU
233 signal (SIGTTOU, SIG_DFL);
234 signal (SIGTTIN, SIG_DFL);
235 #endif
236
237 signal_pid = create_inferior (new_argv[0], new_argv);
238
239 /* FIXME: we don't actually know at this point that the create
240 actually succeeded. We won't know that until we wait. */
241 fprintf (stderr, "Process %s created; pid = %ld\n", argv[0],
242 signal_pid);
243 fflush (stderr);
244
245 #ifdef SIGTTOU
246 signal (SIGTTOU, SIG_IGN);
247 signal (SIGTTIN, SIG_IGN);
248 terminal_fd = fileno (stderr);
249 old_foreground_pgrp = tcgetpgrp (terminal_fd);
250 tcsetpgrp (terminal_fd, signal_pid);
251 atexit (restore_old_foreground_pgrp);
252 #endif
253
254 if (wrapper_argv != NULL)
255 {
256 struct thread_resume resume_info;
257
258 memset (&resume_info, 0, sizeof (resume_info));
259 resume_info.thread = pid_to_ptid (signal_pid);
260 resume_info.kind = resume_continue;
261 resume_info.sig = 0;
262
263 last_ptid = mywait (pid_to_ptid (signal_pid), &last_status, 0, 0);
264
265 if (last_status.kind == TARGET_WAITKIND_STOPPED)
266 {
267 do
268 {
269 (*the_target->resume) (&resume_info, 1);
270
271 last_ptid = mywait (pid_to_ptid (signal_pid), &last_status, 0, 0);
272 if (last_status.kind != TARGET_WAITKIND_STOPPED)
273 break;
274
275 current_thread->last_resume_kind = resume_stop;
276 current_thread->last_status = last_status;
277 }
278 while (last_status.value.sig != GDB_SIGNAL_TRAP);
279 }
280 target_arch_setup ();
281 return signal_pid;
282 }
283
284 /* Wait till we are at 1st instruction in program, return new pid
285 (assuming success). */
286 last_ptid = mywait (pid_to_ptid (signal_pid), &last_status, 0, 0);
287
288 target_arch_setup ();
289
290 if (last_status.kind != TARGET_WAITKIND_EXITED
291 && last_status.kind != TARGET_WAITKIND_SIGNALLED)
292 {
293 current_thread->last_resume_kind = resume_stop;
294 current_thread->last_status = last_status;
295 }
296 else
297 mourn_inferior (find_process_pid (ptid_get_pid (last_ptid)));
298
299 return signal_pid;
300 }
301
302 static int
303 attach_inferior (int pid)
304 {
305 /* myattach should return -1 if attaching is unsupported,
306 0 if it succeeded, and call error() otherwise. */
307
308 if (myattach (pid) != 0)
309 return -1;
310
311 fprintf (stderr, "Attached; pid = %d\n", pid);
312 fflush (stderr);
313
314 /* FIXME - It may be that we should get the SIGNAL_PID from the
315 attach function, so that it can be the main thread instead of
316 whichever we were told to attach to. */
317 signal_pid = pid;
318
319 if (!non_stop)
320 {
321 last_ptid = mywait (pid_to_ptid (pid), &last_status, 0, 0);
322
323 /* GDB knows to ignore the first SIGSTOP after attaching to a running
324 process using the "attach" command, but this is different; it's
325 just using "target remote". Pretend it's just starting up. */
326 if (last_status.kind == TARGET_WAITKIND_STOPPED
327 && last_status.value.sig == GDB_SIGNAL_STOP)
328 last_status.value.sig = GDB_SIGNAL_TRAP;
329
330 current_thread->last_resume_kind = resume_stop;
331 current_thread->last_status = last_status;
332 }
333
334 return 0;
335 }
336
337 extern int remote_debug;
338
339 /* Decode a qXfer read request. Return 0 if everything looks OK,
340 or -1 otherwise. */
341
342 static int
343 decode_xfer_read (char *buf, CORE_ADDR *ofs, unsigned int *len)
344 {
345 /* After the read marker and annex, qXfer looks like a
346 traditional 'm' packet. */
347 decode_m_packet (buf, ofs, len);
348
349 return 0;
350 }
351
352 static int
353 decode_xfer (char *buf, char **object, char **rw, char **annex, char **offset)
354 {
355 /* Extract and NUL-terminate the object. */
356 *object = buf;
357 while (*buf && *buf != ':')
358 buf++;
359 if (*buf == '\0')
360 return -1;
361 *buf++ = 0;
362
363 /* Extract and NUL-terminate the read/write action. */
364 *rw = buf;
365 while (*buf && *buf != ':')
366 buf++;
367 if (*buf == '\0')
368 return -1;
369 *buf++ = 0;
370
371 /* Extract and NUL-terminate the annex. */
372 *annex = buf;
373 while (*buf && *buf != ':')
374 buf++;
375 if (*buf == '\0')
376 return -1;
377 *buf++ = 0;
378
379 *offset = buf;
380 return 0;
381 }
382
383 /* Write the response to a successful qXfer read. Returns the
384 length of the (binary) data stored in BUF, corresponding
385 to as much of DATA/LEN as we could fit. IS_MORE controls
386 the first character of the response. */
387 static int
388 write_qxfer_response (char *buf, const gdb_byte *data, int len, int is_more)
389 {
390 int out_len;
391
392 if (is_more)
393 buf[0] = 'm';
394 else
395 buf[0] = 'l';
396
397 return remote_escape_output (data, len, 1, (unsigned char *) buf + 1,
398 &out_len, PBUFSIZ - 2) + 1;
399 }
400
401 /* Handle btrace enabling in BTS format. */
402
403 static const char *
404 handle_btrace_enable_bts (struct thread_info *thread)
405 {
406 if (thread->btrace != NULL)
407 return "E.Btrace already enabled.";
408
409 current_btrace_conf.format = BTRACE_FORMAT_BTS;
410 thread->btrace = target_enable_btrace (thread->entry.id,
411 &current_btrace_conf);
412 if (thread->btrace == NULL)
413 return "E.Could not enable btrace.";
414
415 return NULL;
416 }
417
418 /* Handle btrace enabling in Intel(R) Processor Trace format. */
419
420 static const char *
421 handle_btrace_enable_pt (struct thread_info *thread)
422 {
423 if (thread->btrace != NULL)
424 return "E.Btrace already enabled.";
425
426 current_btrace_conf.format = BTRACE_FORMAT_PT;
427 thread->btrace = target_enable_btrace (thread->entry.id,
428 &current_btrace_conf);
429 if (thread->btrace == NULL)
430 return "E.Could not enable btrace.";
431
432 return NULL;
433 }
434
435 /* Handle btrace disabling. */
436
437 static const char *
438 handle_btrace_disable (struct thread_info *thread)
439 {
440
441 if (thread->btrace == NULL)
442 return "E.Branch tracing not enabled.";
443
444 if (target_disable_btrace (thread->btrace) != 0)
445 return "E.Could not disable branch tracing.";
446
447 thread->btrace = NULL;
448 return NULL;
449 }
450
451 /* Handle the "Qbtrace" packet. */
452
453 static int
454 handle_btrace_general_set (char *own_buf)
455 {
456 struct thread_info *thread;
457 const char *err;
458 char *op;
459
460 if (!startswith (own_buf, "Qbtrace:"))
461 return 0;
462
463 op = own_buf + strlen ("Qbtrace:");
464
465 if (ptid_equal (general_thread, null_ptid)
466 || ptid_equal (general_thread, minus_one_ptid))
467 {
468 strcpy (own_buf, "E.Must select a single thread.");
469 return -1;
470 }
471
472 thread = find_thread_ptid (general_thread);
473 if (thread == NULL)
474 {
475 strcpy (own_buf, "E.No such thread.");
476 return -1;
477 }
478
479 err = NULL;
480
481 if (strcmp (op, "bts") == 0)
482 err = handle_btrace_enable_bts (thread);
483 else if (strcmp (op, "pt") == 0)
484 err = handle_btrace_enable_pt (thread);
485 else if (strcmp (op, "off") == 0)
486 err = handle_btrace_disable (thread);
487 else
488 err = "E.Bad Qbtrace operation. Use bts, pt, or off.";
489
490 if (err != 0)
491 strcpy (own_buf, err);
492 else
493 write_ok (own_buf);
494
495 return 1;
496 }
497
498 /* Handle the "Qbtrace-conf" packet. */
499
500 static int
501 handle_btrace_conf_general_set (char *own_buf)
502 {
503 struct thread_info *thread;
504 char *op;
505
506 if (!startswith (own_buf, "Qbtrace-conf:"))
507 return 0;
508
509 op = own_buf + strlen ("Qbtrace-conf:");
510
511 if (ptid_equal (general_thread, null_ptid)
512 || ptid_equal (general_thread, minus_one_ptid))
513 {
514 strcpy (own_buf, "E.Must select a single thread.");
515 return -1;
516 }
517
518 thread = find_thread_ptid (general_thread);
519 if (thread == NULL)
520 {
521 strcpy (own_buf, "E.No such thread.");
522 return -1;
523 }
524
525 if (startswith (op, "bts:size="))
526 {
527 unsigned long size;
528 char *endp = NULL;
529
530 errno = 0;
531 size = strtoul (op + strlen ("bts:size="), &endp, 16);
532 if (endp == NULL || *endp != 0 || errno != 0 || size > UINT_MAX)
533 {
534 strcpy (own_buf, "E.Bad size value.");
535 return -1;
536 }
537
538 current_btrace_conf.bts.size = (unsigned int) size;
539 }
540 else if (strncmp (op, "pt:size=", strlen ("pt:size=")) == 0)
541 {
542 unsigned long size;
543 char *endp = NULL;
544
545 errno = 0;
546 size = strtoul (op + strlen ("pt:size="), &endp, 16);
547 if (endp == NULL || *endp != 0 || errno != 0 || size > UINT_MAX)
548 {
549 strcpy (own_buf, "E.Bad size value.");
550 return -1;
551 }
552
553 current_btrace_conf.pt.size = (unsigned int) size;
554 }
555 else
556 {
557 strcpy (own_buf, "E.Bad Qbtrace configuration option.");
558 return -1;
559 }
560
561 write_ok (own_buf);
562 return 1;
563 }
564
565 /* Handle all of the extended 'Q' packets. */
566
567 static void
568 handle_general_set (char *own_buf)
569 {
570 if (startswith (own_buf, "QPassSignals:"))
571 {
572 int numsigs = (int) GDB_SIGNAL_LAST, i;
573 const char *p = own_buf + strlen ("QPassSignals:");
574 CORE_ADDR cursig;
575
576 p = decode_address_to_semicolon (&cursig, p);
577 for (i = 0; i < numsigs; i++)
578 {
579 if (i == cursig)
580 {
581 pass_signals[i] = 1;
582 if (*p == '\0')
583 /* Keep looping, to clear the remaining signals. */
584 cursig = -1;
585 else
586 p = decode_address_to_semicolon (&cursig, p);
587 }
588 else
589 pass_signals[i] = 0;
590 }
591 strcpy (own_buf, "OK");
592 return;
593 }
594
595 if (startswith (own_buf, "QProgramSignals:"))
596 {
597 int numsigs = (int) GDB_SIGNAL_LAST, i;
598 const char *p = own_buf + strlen ("QProgramSignals:");
599 CORE_ADDR cursig;
600
601 program_signals_p = 1;
602
603 p = decode_address_to_semicolon (&cursig, p);
604 for (i = 0; i < numsigs; i++)
605 {
606 if (i == cursig)
607 {
608 program_signals[i] = 1;
609 if (*p == '\0')
610 /* Keep looping, to clear the remaining signals. */
611 cursig = -1;
612 else
613 p = decode_address_to_semicolon (&cursig, p);
614 }
615 else
616 program_signals[i] = 0;
617 }
618 strcpy (own_buf, "OK");
619 return;
620 }
621
622 if (strcmp (own_buf, "QStartNoAckMode") == 0)
623 {
624 if (remote_debug)
625 {
626 fprintf (stderr, "[noack mode enabled]\n");
627 fflush (stderr);
628 }
629
630 noack_mode = 1;
631 write_ok (own_buf);
632 return;
633 }
634
635 if (startswith (own_buf, "QNonStop:"))
636 {
637 char *mode = own_buf + 9;
638 int req = -1;
639 const char *req_str;
640
641 if (strcmp (mode, "0") == 0)
642 req = 0;
643 else if (strcmp (mode, "1") == 0)
644 req = 1;
645 else
646 {
647 /* We don't know what this mode is, so complain to
648 GDB. */
649 fprintf (stderr, "Unknown non-stop mode requested: %s\n",
650 own_buf);
651 write_enn (own_buf);
652 return;
653 }
654
655 req_str = req ? "non-stop" : "all-stop";
656 if (start_non_stop (req) != 0)
657 {
658 fprintf (stderr, "Setting %s mode failed\n", req_str);
659 write_enn (own_buf);
660 return;
661 }
662
663 non_stop = req;
664
665 if (remote_debug)
666 fprintf (stderr, "[%s mode enabled]\n", req_str);
667
668 write_ok (own_buf);
669 return;
670 }
671
672 if (startswith (own_buf, "QDisableRandomization:"))
673 {
674 char *packet = own_buf + strlen ("QDisableRandomization:");
675 ULONGEST setting;
676
677 unpack_varlen_hex (packet, &setting);
678 disable_randomization = setting;
679
680 if (remote_debug)
681 {
682 if (disable_randomization)
683 fprintf (stderr, "[address space randomization disabled]\n");
684 else
685 fprintf (stderr, "[address space randomization enabled]\n");
686 }
687
688 write_ok (own_buf);
689 return;
690 }
691
692 if (target_supports_tracepoints ()
693 && handle_tracepoint_general_set (own_buf))
694 return;
695
696 if (startswith (own_buf, "QAgent:"))
697 {
698 char *mode = own_buf + strlen ("QAgent:");
699 int req = 0;
700
701 if (strcmp (mode, "0") == 0)
702 req = 0;
703 else if (strcmp (mode, "1") == 0)
704 req = 1;
705 else
706 {
707 /* We don't know what this value is, so complain to GDB. */
708 sprintf (own_buf, "E.Unknown QAgent value");
709 return;
710 }
711
712 /* Update the flag. */
713 use_agent = req;
714 if (remote_debug)
715 fprintf (stderr, "[%s agent]\n", req ? "Enable" : "Disable");
716 write_ok (own_buf);
717 return;
718 }
719
720 if (handle_btrace_general_set (own_buf))
721 return;
722
723 if (handle_btrace_conf_general_set (own_buf))
724 return;
725
726 /* Otherwise we didn't know what packet it was. Say we didn't
727 understand it. */
728 own_buf[0] = 0;
729 }
730
731 static const char *
732 get_features_xml (const char *annex)
733 {
734 const struct target_desc *desc = current_target_desc ();
735
736 /* `desc->xmltarget' defines what to return when looking for the
737 "target.xml" file. Its contents can either be verbatim XML code
738 (prefixed with a '@') or else the name of the actual XML file to
739 be used in place of "target.xml".
740
741 This variable is set up from the auto-generated
742 init_registers_... routine for the current target. */
743
744 if (desc->xmltarget != NULL && strcmp (annex, "target.xml") == 0)
745 {
746 if (*desc->xmltarget == '@')
747 return desc->xmltarget + 1;
748 else
749 annex = desc->xmltarget;
750 }
751
752 #ifdef USE_XML
753 {
754 extern const char *const xml_builtin[][2];
755 int i;
756
757 /* Look for the annex. */
758 for (i = 0; xml_builtin[i][0] != NULL; i++)
759 if (strcmp (annex, xml_builtin[i][0]) == 0)
760 break;
761
762 if (xml_builtin[i][0] != NULL)
763 return xml_builtin[i][1];
764 }
765 #endif
766
767 return NULL;
768 }
769
770 void
771 monitor_show_help (void)
772 {
773 monitor_output ("The following monitor commands are supported:\n");
774 monitor_output (" set debug <0|1>\n");
775 monitor_output (" Enable general debugging messages\n");
776 monitor_output (" set debug-hw-points <0|1>\n");
777 monitor_output (" Enable h/w breakpoint/watchpoint debugging messages\n");
778 monitor_output (" set remote-debug <0|1>\n");
779 monitor_output (" Enable remote protocol debugging messages\n");
780 monitor_output (" set debug-format option1[,option2,...]\n");
781 monitor_output (" Add additional information to debugging messages\n");
782 monitor_output (" Options: all, none");
783 monitor_output (", timestamp");
784 monitor_output ("\n");
785 monitor_output (" exit\n");
786 monitor_output (" Quit GDBserver\n");
787 }
788
789 /* Read trace frame or inferior memory. Returns the number of bytes
790 actually read, zero when no further transfer is possible, and -1 on
791 error. Return of a positive value smaller than LEN does not
792 indicate there's no more to be read, only the end of the transfer.
793 E.g., when GDB reads memory from a traceframe, a first request may
794 be served from a memory block that does not cover the whole request
795 length. A following request gets the rest served from either
796 another block (of the same traceframe) or from the read-only
797 regions. */
798
799 static int
800 gdb_read_memory (CORE_ADDR memaddr, unsigned char *myaddr, int len)
801 {
802 int res;
803
804 if (current_traceframe >= 0)
805 {
806 ULONGEST nbytes;
807 ULONGEST length = len;
808
809 if (traceframe_read_mem (current_traceframe,
810 memaddr, myaddr, len, &nbytes))
811 return -1;
812 /* Data read from trace buffer, we're done. */
813 if (nbytes > 0)
814 return nbytes;
815 if (!in_readonly_region (memaddr, length))
816 return -1;
817 /* Otherwise we have a valid readonly case, fall through. */
818 /* (assume no half-trace half-real blocks for now) */
819 }
820
821 res = prepare_to_access_memory ();
822 if (res == 0)
823 {
824 if (set_desired_thread (1))
825 res = read_inferior_memory (memaddr, myaddr, len);
826 else
827 res = 1;
828 done_accessing_memory ();
829
830 return res == 0 ? len : -1;
831 }
832 else
833 return -1;
834 }
835
836 /* Write trace frame or inferior memory. Actually, writing to trace
837 frames is forbidden. */
838
839 static int
840 gdb_write_memory (CORE_ADDR memaddr, const unsigned char *myaddr, int len)
841 {
842 if (current_traceframe >= 0)
843 return EIO;
844 else
845 {
846 int ret;
847
848 ret = prepare_to_access_memory ();
849 if (ret == 0)
850 {
851 if (set_desired_thread (1))
852 ret = write_inferior_memory (memaddr, myaddr, len);
853 else
854 ret = EIO;
855 done_accessing_memory ();
856 }
857 return ret;
858 }
859 }
860
861 /* Subroutine of handle_search_memory to simplify it. */
862
863 static int
864 handle_search_memory_1 (CORE_ADDR start_addr, CORE_ADDR search_space_len,
865 gdb_byte *pattern, unsigned pattern_len,
866 gdb_byte *search_buf,
867 unsigned chunk_size, unsigned search_buf_size,
868 CORE_ADDR *found_addrp)
869 {
870 /* Prime the search buffer. */
871
872 if (gdb_read_memory (start_addr, search_buf, search_buf_size)
873 != search_buf_size)
874 {
875 warning ("Unable to access %ld bytes of target "
876 "memory at 0x%lx, halting search.",
877 (long) search_buf_size, (long) start_addr);
878 return -1;
879 }
880
881 /* Perform the search.
882
883 The loop is kept simple by allocating [N + pattern-length - 1] bytes.
884 When we've scanned N bytes we copy the trailing bytes to the start and
885 read in another N bytes. */
886
887 while (search_space_len >= pattern_len)
888 {
889 gdb_byte *found_ptr;
890 unsigned nr_search_bytes = (search_space_len < search_buf_size
891 ? search_space_len
892 : search_buf_size);
893
894 found_ptr = (gdb_byte *) memmem (search_buf, nr_search_bytes, pattern,
895 pattern_len);
896
897 if (found_ptr != NULL)
898 {
899 CORE_ADDR found_addr = start_addr + (found_ptr - search_buf);
900 *found_addrp = found_addr;
901 return 1;
902 }
903
904 /* Not found in this chunk, skip to next chunk. */
905
906 /* Don't let search_space_len wrap here, it's unsigned. */
907 if (search_space_len >= chunk_size)
908 search_space_len -= chunk_size;
909 else
910 search_space_len = 0;
911
912 if (search_space_len >= pattern_len)
913 {
914 unsigned keep_len = search_buf_size - chunk_size;
915 CORE_ADDR read_addr = start_addr + chunk_size + keep_len;
916 int nr_to_read;
917
918 /* Copy the trailing part of the previous iteration to the front
919 of the buffer for the next iteration. */
920 memcpy (search_buf, search_buf + chunk_size, keep_len);
921
922 nr_to_read = (search_space_len - keep_len < chunk_size
923 ? search_space_len - keep_len
924 : chunk_size);
925
926 if (gdb_read_memory (read_addr, search_buf + keep_len,
927 nr_to_read) != search_buf_size)
928 {
929 warning ("Unable to access %ld bytes of target memory "
930 "at 0x%lx, halting search.",
931 (long) nr_to_read, (long) read_addr);
932 return -1;
933 }
934
935 start_addr += chunk_size;
936 }
937 }
938
939 /* Not found. */
940
941 return 0;
942 }
943
944 /* Handle qSearch:memory packets. */
945
946 static void
947 handle_search_memory (char *own_buf, int packet_len)
948 {
949 CORE_ADDR start_addr;
950 CORE_ADDR search_space_len;
951 gdb_byte *pattern;
952 unsigned int pattern_len;
953 /* NOTE: also defined in find.c testcase. */
954 #define SEARCH_CHUNK_SIZE 16000
955 const unsigned chunk_size = SEARCH_CHUNK_SIZE;
956 /* Buffer to hold memory contents for searching. */
957 gdb_byte *search_buf;
958 unsigned search_buf_size;
959 int found;
960 CORE_ADDR found_addr;
961 int cmd_name_len = sizeof ("qSearch:memory:") - 1;
962
963 pattern = (gdb_byte *) malloc (packet_len);
964 if (pattern == NULL)
965 {
966 error ("Unable to allocate memory to perform the search");
967 strcpy (own_buf, "E00");
968 return;
969 }
970 if (decode_search_memory_packet (own_buf + cmd_name_len,
971 packet_len - cmd_name_len,
972 &start_addr, &search_space_len,
973 pattern, &pattern_len) < 0)
974 {
975 free (pattern);
976 error ("Error in parsing qSearch:memory packet");
977 strcpy (own_buf, "E00");
978 return;
979 }
980
981 search_buf_size = chunk_size + pattern_len - 1;
982
983 /* No point in trying to allocate a buffer larger than the search space. */
984 if (search_space_len < search_buf_size)
985 search_buf_size = search_space_len;
986
987 search_buf = (gdb_byte *) malloc (search_buf_size);
988 if (search_buf == NULL)
989 {
990 free (pattern);
991 error ("Unable to allocate memory to perform the search");
992 strcpy (own_buf, "E00");
993 return;
994 }
995
996 found = handle_search_memory_1 (start_addr, search_space_len,
997 pattern, pattern_len,
998 search_buf, chunk_size, search_buf_size,
999 &found_addr);
1000
1001 if (found > 0)
1002 sprintf (own_buf, "1,%lx", (long) found_addr);
1003 else if (found == 0)
1004 strcpy (own_buf, "0");
1005 else
1006 strcpy (own_buf, "E00");
1007
1008 free (search_buf);
1009 free (pattern);
1010 }
1011
1012 #define require_running(BUF) \
1013 if (!target_running ()) \
1014 { \
1015 write_enn (BUF); \
1016 return; \
1017 }
1018
1019 /* Parse options to --debug-format= and "monitor set debug-format".
1020 ARG is the text after "--debug-format=" or "monitor set debug-format".
1021 IS_MONITOR is non-zero if we're invoked via "monitor set debug-format".
1022 This triggers calls to monitor_output.
1023 The result is NULL if all options were parsed ok, otherwise an error
1024 message which the caller must free.
1025
1026 N.B. These commands affect all debug format settings, they are not
1027 cumulative. If a format is not specified, it is turned off.
1028 However, we don't go to extra trouble with things like
1029 "monitor set debug-format all,none,timestamp".
1030 Instead we just parse them one at a time, in order.
1031
1032 The syntax for "monitor set debug" we support here is not identical
1033 to gdb's "set debug foo on|off" because we also use this function to
1034 parse "--debug-format=foo,bar". */
1035
1036 static char *
1037 parse_debug_format_options (const char *arg, int is_monitor)
1038 {
1039 VEC (char_ptr) *options;
1040 int ix;
1041 char *option;
1042
1043 /* First turn all debug format options off. */
1044 debug_timestamp = 0;
1045
1046 /* First remove leading spaces, for "monitor set debug-format". */
1047 while (isspace (*arg))
1048 ++arg;
1049
1050 options = delim_string_to_char_ptr_vec (arg, ',');
1051
1052 for (ix = 0; VEC_iterate (char_ptr, options, ix, option); ++ix)
1053 {
1054 if (strcmp (option, "all") == 0)
1055 {
1056 debug_timestamp = 1;
1057 if (is_monitor)
1058 monitor_output ("All extra debug format options enabled.\n");
1059 }
1060 else if (strcmp (option, "none") == 0)
1061 {
1062 debug_timestamp = 0;
1063 if (is_monitor)
1064 monitor_output ("All extra debug format options disabled.\n");
1065 }
1066 else if (strcmp (option, "timestamp") == 0)
1067 {
1068 debug_timestamp = 1;
1069 if (is_monitor)
1070 monitor_output ("Timestamps will be added to debug output.\n");
1071 }
1072 else if (*option == '\0')
1073 {
1074 /* An empty option, e.g., "--debug-format=foo,,bar", is ignored. */
1075 continue;
1076 }
1077 else
1078 {
1079 char *msg = xstrprintf ("Unknown debug-format argument: \"%s\"\n",
1080 option);
1081
1082 free_char_ptr_vec (options);
1083 return msg;
1084 }
1085 }
1086
1087 free_char_ptr_vec (options);
1088 return NULL;
1089 }
1090
1091 /* Handle monitor commands not handled by target-specific handlers. */
1092
1093 static void
1094 handle_monitor_command (char *mon, char *own_buf)
1095 {
1096 if (strcmp (mon, "set debug 1") == 0)
1097 {
1098 debug_threads = 1;
1099 monitor_output ("Debug output enabled.\n");
1100 }
1101 else if (strcmp (mon, "set debug 0") == 0)
1102 {
1103 debug_threads = 0;
1104 monitor_output ("Debug output disabled.\n");
1105 }
1106 else if (strcmp (mon, "set debug-hw-points 1") == 0)
1107 {
1108 show_debug_regs = 1;
1109 monitor_output ("H/W point debugging output enabled.\n");
1110 }
1111 else if (strcmp (mon, "set debug-hw-points 0") == 0)
1112 {
1113 show_debug_regs = 0;
1114 monitor_output ("H/W point debugging output disabled.\n");
1115 }
1116 else if (strcmp (mon, "set remote-debug 1") == 0)
1117 {
1118 remote_debug = 1;
1119 monitor_output ("Protocol debug output enabled.\n");
1120 }
1121 else if (strcmp (mon, "set remote-debug 0") == 0)
1122 {
1123 remote_debug = 0;
1124 monitor_output ("Protocol debug output disabled.\n");
1125 }
1126 else if (startswith (mon, "set debug-format "))
1127 {
1128 char *error_msg
1129 = parse_debug_format_options (mon + sizeof ("set debug-format ") - 1,
1130 1);
1131
1132 if (error_msg != NULL)
1133 {
1134 monitor_output (error_msg);
1135 monitor_show_help ();
1136 write_enn (own_buf);
1137 xfree (error_msg);
1138 }
1139 }
1140 else if (strcmp (mon, "help") == 0)
1141 monitor_show_help ();
1142 else if (strcmp (mon, "exit") == 0)
1143 exit_requested = 1;
1144 else
1145 {
1146 monitor_output ("Unknown monitor command.\n\n");
1147 monitor_show_help ();
1148 write_enn (own_buf);
1149 }
1150 }
1151
1152 /* Associates a callback with each supported qXfer'able object. */
1153
1154 struct qxfer
1155 {
1156 /* The object this handler handles. */
1157 const char *object;
1158
1159 /* Request that the target transfer up to LEN 8-bit bytes of the
1160 target's OBJECT. The OFFSET, for a seekable object, specifies
1161 the starting point. The ANNEX can be used to provide additional
1162 data-specific information to the target.
1163
1164 Return the number of bytes actually transfered, zero when no
1165 further transfer is possible, -1 on error, -2 when the transfer
1166 is not supported, and -3 on a verbose error message that should
1167 be preserved. Return of a positive value smaller than LEN does
1168 not indicate the end of the object, only the end of the transfer.
1169
1170 One, and only one, of readbuf or writebuf must be non-NULL. */
1171 int (*xfer) (const char *annex,
1172 gdb_byte *readbuf, const gdb_byte *writebuf,
1173 ULONGEST offset, LONGEST len);
1174 };
1175
1176 /* Handle qXfer:auxv:read. */
1177
1178 static int
1179 handle_qxfer_auxv (const char *annex,
1180 gdb_byte *readbuf, const gdb_byte *writebuf,
1181 ULONGEST offset, LONGEST len)
1182 {
1183 if (the_target->read_auxv == NULL || writebuf != NULL)
1184 return -2;
1185
1186 if (annex[0] != '\0' || current_thread == NULL)
1187 return -1;
1188
1189 return (*the_target->read_auxv) (offset, readbuf, len);
1190 }
1191
1192 /* Handle qXfer:exec-file:read. */
1193
1194 static int
1195 handle_qxfer_exec_file (const char *const_annex,
1196 gdb_byte *readbuf, const gdb_byte *writebuf,
1197 ULONGEST offset, LONGEST len)
1198 {
1199 char *file;
1200 ULONGEST pid;
1201 int total_len;
1202
1203 if (the_target->pid_to_exec_file == NULL || writebuf != NULL)
1204 return -2;
1205
1206 if (const_annex[0] == '\0')
1207 {
1208 if (current_thread == NULL)
1209 return -1;
1210
1211 pid = pid_of (current_thread);
1212 }
1213 else
1214 {
1215 char *annex = (char *) alloca (strlen (const_annex) + 1);
1216
1217 strcpy (annex, const_annex);
1218 annex = unpack_varlen_hex (annex, &pid);
1219
1220 if (annex[0] != '\0')
1221 return -1;
1222 }
1223
1224 if (pid <= 0)
1225 return -1;
1226
1227 file = (*the_target->pid_to_exec_file) (pid);
1228 if (file == NULL)
1229 return -1;
1230
1231 total_len = strlen (file);
1232
1233 if (offset > total_len)
1234 return -1;
1235
1236 if (offset + len > total_len)
1237 len = total_len - offset;
1238
1239 memcpy (readbuf, file + offset, len);
1240 return len;
1241 }
1242
1243 /* Handle qXfer:features:read. */
1244
1245 static int
1246 handle_qxfer_features (const char *annex,
1247 gdb_byte *readbuf, const gdb_byte *writebuf,
1248 ULONGEST offset, LONGEST len)
1249 {
1250 const char *document;
1251 size_t total_len;
1252
1253 if (writebuf != NULL)
1254 return -2;
1255
1256 if (!target_running ())
1257 return -1;
1258
1259 /* Grab the correct annex. */
1260 document = get_features_xml (annex);
1261 if (document == NULL)
1262 return -1;
1263
1264 total_len = strlen (document);
1265
1266 if (offset > total_len)
1267 return -1;
1268
1269 if (offset + len > total_len)
1270 len = total_len - offset;
1271
1272 memcpy (readbuf, document + offset, len);
1273 return len;
1274 }
1275
1276 /* Worker routine for handle_qxfer_libraries.
1277 Add to the length pointed to by ARG a conservative estimate of the
1278 length needed to transmit the file name of INF. */
1279
1280 static void
1281 accumulate_file_name_length (struct inferior_list_entry *inf, void *arg)
1282 {
1283 struct dll_info *dll = (struct dll_info *) inf;
1284 unsigned int *total_len = (unsigned int *) arg;
1285
1286 /* Over-estimate the necessary memory. Assume that every character
1287 in the library name must be escaped. */
1288 *total_len += 128 + 6 * strlen (dll->name);
1289 }
1290
1291 /* Worker routine for handle_qxfer_libraries.
1292 Emit the XML to describe the library in INF. */
1293
1294 static void
1295 emit_dll_description (struct inferior_list_entry *inf, void *arg)
1296 {
1297 struct dll_info *dll = (struct dll_info *) inf;
1298 char **p_ptr = (char **) arg;
1299 char *p = *p_ptr;
1300 char *name;
1301
1302 strcpy (p, " <library name=\"");
1303 p = p + strlen (p);
1304 name = xml_escape_text (dll->name);
1305 strcpy (p, name);
1306 free (name);
1307 p = p + strlen (p);
1308 strcpy (p, "\"><segment address=\"");
1309 p = p + strlen (p);
1310 sprintf (p, "0x%lx", (long) dll->base_addr);
1311 p = p + strlen (p);
1312 strcpy (p, "\"/></library>\n");
1313 p = p + strlen (p);
1314
1315 *p_ptr = p;
1316 }
1317
1318 /* Handle qXfer:libraries:read. */
1319
1320 static int
1321 handle_qxfer_libraries (const char *annex,
1322 gdb_byte *readbuf, const gdb_byte *writebuf,
1323 ULONGEST offset, LONGEST len)
1324 {
1325 unsigned int total_len;
1326 char *document, *p;
1327
1328 if (writebuf != NULL)
1329 return -2;
1330
1331 if (annex[0] != '\0' || current_thread == NULL)
1332 return -1;
1333
1334 total_len = 64;
1335 for_each_inferior_with_data (&all_dlls, accumulate_file_name_length,
1336 &total_len);
1337
1338 document = (char *) malloc (total_len);
1339 if (document == NULL)
1340 return -1;
1341
1342 strcpy (document, "<library-list version=\"1.0\">\n");
1343 p = document + strlen (document);
1344
1345 for_each_inferior_with_data (&all_dlls, emit_dll_description, &p);
1346
1347 strcpy (p, "</library-list>\n");
1348
1349 total_len = strlen (document);
1350
1351 if (offset > total_len)
1352 {
1353 free (document);
1354 return -1;
1355 }
1356
1357 if (offset + len > total_len)
1358 len = total_len - offset;
1359
1360 memcpy (readbuf, document + offset, len);
1361 free (document);
1362 return len;
1363 }
1364
1365 /* Handle qXfer:libraries-svr4:read. */
1366
1367 static int
1368 handle_qxfer_libraries_svr4 (const char *annex,
1369 gdb_byte *readbuf, const gdb_byte *writebuf,
1370 ULONGEST offset, LONGEST len)
1371 {
1372 if (writebuf != NULL)
1373 return -2;
1374
1375 if (current_thread == NULL || the_target->qxfer_libraries_svr4 == NULL)
1376 return -1;
1377
1378 return the_target->qxfer_libraries_svr4 (annex, readbuf, writebuf, offset, len);
1379 }
1380
1381 /* Handle qXfer:osadata:read. */
1382
1383 static int
1384 handle_qxfer_osdata (const char *annex,
1385 gdb_byte *readbuf, const gdb_byte *writebuf,
1386 ULONGEST offset, LONGEST len)
1387 {
1388 if (the_target->qxfer_osdata == NULL || writebuf != NULL)
1389 return -2;
1390
1391 return (*the_target->qxfer_osdata) (annex, readbuf, NULL, offset, len);
1392 }
1393
1394 /* Handle qXfer:siginfo:read and qXfer:siginfo:write. */
1395
1396 static int
1397 handle_qxfer_siginfo (const char *annex,
1398 gdb_byte *readbuf, const gdb_byte *writebuf,
1399 ULONGEST offset, LONGEST len)
1400 {
1401 if (the_target->qxfer_siginfo == NULL)
1402 return -2;
1403
1404 if (annex[0] != '\0' || current_thread == NULL)
1405 return -1;
1406
1407 return (*the_target->qxfer_siginfo) (annex, readbuf, writebuf, offset, len);
1408 }
1409
1410 /* Handle qXfer:spu:read and qXfer:spu:write. */
1411
1412 static int
1413 handle_qxfer_spu (const char *annex,
1414 gdb_byte *readbuf, const gdb_byte *writebuf,
1415 ULONGEST offset, LONGEST len)
1416 {
1417 if (the_target->qxfer_spu == NULL)
1418 return -2;
1419
1420 if (current_thread == NULL)
1421 return -1;
1422
1423 return (*the_target->qxfer_spu) (annex, readbuf, writebuf, offset, len);
1424 }
1425
1426 /* Handle qXfer:statictrace:read. */
1427
1428 static int
1429 handle_qxfer_statictrace (const char *annex,
1430 gdb_byte *readbuf, const gdb_byte *writebuf,
1431 ULONGEST offset, LONGEST len)
1432 {
1433 ULONGEST nbytes;
1434
1435 if (writebuf != NULL)
1436 return -2;
1437
1438 if (annex[0] != '\0' || current_thread == NULL || current_traceframe == -1)
1439 return -1;
1440
1441 if (traceframe_read_sdata (current_traceframe, offset,
1442 readbuf, len, &nbytes))
1443 return -1;
1444 return nbytes;
1445 }
1446
1447 /* Helper for handle_qxfer_threads_proper.
1448 Emit the XML to describe the thread of INF. */
1449
1450 static void
1451 handle_qxfer_threads_worker (struct inferior_list_entry *inf, void *arg)
1452 {
1453 struct thread_info *thread = (struct thread_info *) inf;
1454 struct buffer *buffer = (struct buffer *) arg;
1455 ptid_t ptid = thread_to_gdb_id (thread);
1456 char ptid_s[100];
1457 int core = target_core_of_thread (ptid);
1458 char core_s[21];
1459
1460 write_ptid (ptid_s, ptid);
1461
1462 if (core != -1)
1463 {
1464 sprintf (core_s, "%d", core);
1465 buffer_xml_printf (buffer, "<thread id=\"%s\" core=\"%s\"/>\n",
1466 ptid_s, core_s);
1467 }
1468 else
1469 {
1470 buffer_xml_printf (buffer, "<thread id=\"%s\"/>\n",
1471 ptid_s);
1472 }
1473 }
1474
1475 /* Helper for handle_qxfer_threads. */
1476
1477 static void
1478 handle_qxfer_threads_proper (struct buffer *buffer)
1479 {
1480 buffer_grow_str (buffer, "<threads>\n");
1481
1482 for_each_inferior_with_data (&all_threads, handle_qxfer_threads_worker,
1483 buffer);
1484
1485 buffer_grow_str0 (buffer, "</threads>\n");
1486 }
1487
1488 /* Handle qXfer:threads:read. */
1489
1490 static int
1491 handle_qxfer_threads (const char *annex,
1492 gdb_byte *readbuf, const gdb_byte *writebuf,
1493 ULONGEST offset, LONGEST len)
1494 {
1495 static char *result = 0;
1496 static unsigned int result_length = 0;
1497
1498 if (writebuf != NULL)
1499 return -2;
1500
1501 if (annex[0] != '\0')
1502 return -1;
1503
1504 if (offset == 0)
1505 {
1506 struct buffer buffer;
1507 /* When asked for data at offset 0, generate everything and store into
1508 'result'. Successive reads will be served off 'result'. */
1509 if (result)
1510 free (result);
1511
1512 buffer_init (&buffer);
1513
1514 handle_qxfer_threads_proper (&buffer);
1515
1516 result = buffer_finish (&buffer);
1517 result_length = strlen (result);
1518 buffer_free (&buffer);
1519 }
1520
1521 if (offset >= result_length)
1522 {
1523 /* We're out of data. */
1524 free (result);
1525 result = NULL;
1526 result_length = 0;
1527 return 0;
1528 }
1529
1530 if (len > result_length - offset)
1531 len = result_length - offset;
1532
1533 memcpy (readbuf, result + offset, len);
1534
1535 return len;
1536 }
1537
1538 /* Handle qXfer:traceframe-info:read. */
1539
1540 static int
1541 handle_qxfer_traceframe_info (const char *annex,
1542 gdb_byte *readbuf, const gdb_byte *writebuf,
1543 ULONGEST offset, LONGEST len)
1544 {
1545 static char *result = 0;
1546 static unsigned int result_length = 0;
1547
1548 if (writebuf != NULL)
1549 return -2;
1550
1551 if (!target_running () || annex[0] != '\0' || current_traceframe == -1)
1552 return -1;
1553
1554 if (offset == 0)
1555 {
1556 struct buffer buffer;
1557
1558 /* When asked for data at offset 0, generate everything and
1559 store into 'result'. Successive reads will be served off
1560 'result'. */
1561 free (result);
1562
1563 buffer_init (&buffer);
1564
1565 traceframe_read_info (current_traceframe, &buffer);
1566
1567 result = buffer_finish (&buffer);
1568 result_length = strlen (result);
1569 buffer_free (&buffer);
1570 }
1571
1572 if (offset >= result_length)
1573 {
1574 /* We're out of data. */
1575 free (result);
1576 result = NULL;
1577 result_length = 0;
1578 return 0;
1579 }
1580
1581 if (len > result_length - offset)
1582 len = result_length - offset;
1583
1584 memcpy (readbuf, result + offset, len);
1585 return len;
1586 }
1587
1588 /* Handle qXfer:fdpic:read. */
1589
1590 static int
1591 handle_qxfer_fdpic (const char *annex, gdb_byte *readbuf,
1592 const gdb_byte *writebuf, ULONGEST offset, LONGEST len)
1593 {
1594 if (the_target->read_loadmap == NULL)
1595 return -2;
1596
1597 if (current_thread == NULL)
1598 return -1;
1599
1600 return (*the_target->read_loadmap) (annex, offset, readbuf, len);
1601 }
1602
1603 /* Handle qXfer:btrace:read. */
1604
1605 static int
1606 handle_qxfer_btrace (const char *annex,
1607 gdb_byte *readbuf, const gdb_byte *writebuf,
1608 ULONGEST offset, LONGEST len)
1609 {
1610 static struct buffer cache;
1611 struct thread_info *thread;
1612 enum btrace_read_type type;
1613 int result;
1614
1615 if (the_target->read_btrace == NULL || writebuf != NULL)
1616 return -2;
1617
1618 if (ptid_equal (general_thread, null_ptid)
1619 || ptid_equal (general_thread, minus_one_ptid))
1620 {
1621 strcpy (own_buf, "E.Must select a single thread.");
1622 return -3;
1623 }
1624
1625 thread = find_thread_ptid (general_thread);
1626 if (thread == NULL)
1627 {
1628 strcpy (own_buf, "E.No such thread.");
1629 return -3;
1630 }
1631
1632 if (thread->btrace == NULL)
1633 {
1634 strcpy (own_buf, "E.Btrace not enabled.");
1635 return -3;
1636 }
1637
1638 if (strcmp (annex, "all") == 0)
1639 type = BTRACE_READ_ALL;
1640 else if (strcmp (annex, "new") == 0)
1641 type = BTRACE_READ_NEW;
1642 else if (strcmp (annex, "delta") == 0)
1643 type = BTRACE_READ_DELTA;
1644 else
1645 {
1646 strcpy (own_buf, "E.Bad annex.");
1647 return -3;
1648 }
1649
1650 if (offset == 0)
1651 {
1652 buffer_free (&cache);
1653
1654 result = target_read_btrace (thread->btrace, &cache, type);
1655 if (result != 0)
1656 {
1657 memcpy (own_buf, cache.buffer, cache.used_size);
1658 return -3;
1659 }
1660 }
1661 else if (offset > cache.used_size)
1662 {
1663 buffer_free (&cache);
1664 return -3;
1665 }
1666
1667 if (len > cache.used_size - offset)
1668 len = cache.used_size - offset;
1669
1670 memcpy (readbuf, cache.buffer + offset, len);
1671
1672 return len;
1673 }
1674
1675 /* Handle qXfer:btrace-conf:read. */
1676
1677 static int
1678 handle_qxfer_btrace_conf (const char *annex,
1679 gdb_byte *readbuf, const gdb_byte *writebuf,
1680 ULONGEST offset, LONGEST len)
1681 {
1682 static struct buffer cache;
1683 struct thread_info *thread;
1684 int result;
1685
1686 if (the_target->read_btrace_conf == NULL || writebuf != NULL)
1687 return -2;
1688
1689 if (annex[0] != '\0')
1690 return -1;
1691
1692 if (ptid_equal (general_thread, null_ptid)
1693 || ptid_equal (general_thread, minus_one_ptid))
1694 {
1695 strcpy (own_buf, "E.Must select a single thread.");
1696 return -3;
1697 }
1698
1699 thread = find_thread_ptid (general_thread);
1700 if (thread == NULL)
1701 {
1702 strcpy (own_buf, "E.No such thread.");
1703 return -3;
1704 }
1705
1706 if (thread->btrace == NULL)
1707 {
1708 strcpy (own_buf, "E.Btrace not enabled.");
1709 return -3;
1710 }
1711
1712 if (offset == 0)
1713 {
1714 buffer_free (&cache);
1715
1716 result = target_read_btrace_conf (thread->btrace, &cache);
1717 if (result != 0)
1718 {
1719 memcpy (own_buf, cache.buffer, cache.used_size);
1720 return -3;
1721 }
1722 }
1723 else if (offset > cache.used_size)
1724 {
1725 buffer_free (&cache);
1726 return -3;
1727 }
1728
1729 if (len > cache.used_size - offset)
1730 len = cache.used_size - offset;
1731
1732 memcpy (readbuf, cache.buffer + offset, len);
1733
1734 return len;
1735 }
1736
1737 static const struct qxfer qxfer_packets[] =
1738 {
1739 { "auxv", handle_qxfer_auxv },
1740 { "btrace", handle_qxfer_btrace },
1741 { "btrace-conf", handle_qxfer_btrace_conf },
1742 { "exec-file", handle_qxfer_exec_file},
1743 { "fdpic", handle_qxfer_fdpic},
1744 { "features", handle_qxfer_features },
1745 { "libraries", handle_qxfer_libraries },
1746 { "libraries-svr4", handle_qxfer_libraries_svr4 },
1747 { "osdata", handle_qxfer_osdata },
1748 { "siginfo", handle_qxfer_siginfo },
1749 { "spu", handle_qxfer_spu },
1750 { "statictrace", handle_qxfer_statictrace },
1751 { "threads", handle_qxfer_threads },
1752 { "traceframe-info", handle_qxfer_traceframe_info },
1753 };
1754
1755 static int
1756 handle_qxfer (char *own_buf, int packet_len, int *new_packet_len_p)
1757 {
1758 int i;
1759 char *object;
1760 char *rw;
1761 char *annex;
1762 char *offset;
1763
1764 if (!startswith (own_buf, "qXfer:"))
1765 return 0;
1766
1767 /* Grab the object, r/w and annex. */
1768 if (decode_xfer (own_buf + 6, &object, &rw, &annex, &offset) < 0)
1769 {
1770 write_enn (own_buf);
1771 return 1;
1772 }
1773
1774 for (i = 0;
1775 i < sizeof (qxfer_packets) / sizeof (qxfer_packets[0]);
1776 i++)
1777 {
1778 const struct qxfer *q = &qxfer_packets[i];
1779
1780 if (strcmp (object, q->object) == 0)
1781 {
1782 if (strcmp (rw, "read") == 0)
1783 {
1784 unsigned char *data;
1785 int n;
1786 CORE_ADDR ofs;
1787 unsigned int len;
1788
1789 /* Grab the offset and length. */
1790 if (decode_xfer_read (offset, &ofs, &len) < 0)
1791 {
1792 write_enn (own_buf);
1793 return 1;
1794 }
1795
1796 /* Read one extra byte, as an indicator of whether there is
1797 more. */
1798 if (len > PBUFSIZ - 2)
1799 len = PBUFSIZ - 2;
1800 data = (unsigned char *) malloc (len + 1);
1801 if (data == NULL)
1802 {
1803 write_enn (own_buf);
1804 return 1;
1805 }
1806 n = (*q->xfer) (annex, data, NULL, ofs, len + 1);
1807 if (n == -2)
1808 {
1809 free (data);
1810 return 0;
1811 }
1812 else if (n == -3)
1813 {
1814 /* Preserve error message. */
1815 }
1816 else if (n < 0)
1817 write_enn (own_buf);
1818 else if (n > len)
1819 *new_packet_len_p = write_qxfer_response (own_buf, data, len, 1);
1820 else
1821 *new_packet_len_p = write_qxfer_response (own_buf, data, n, 0);
1822
1823 free (data);
1824 return 1;
1825 }
1826 else if (strcmp (rw, "write") == 0)
1827 {
1828 int n;
1829 unsigned int len;
1830 CORE_ADDR ofs;
1831 unsigned char *data;
1832
1833 strcpy (own_buf, "E00");
1834 data = (unsigned char *) malloc (packet_len - (offset - own_buf));
1835 if (data == NULL)
1836 {
1837 write_enn (own_buf);
1838 return 1;
1839 }
1840 if (decode_xfer_write (offset, packet_len - (offset - own_buf),
1841 &ofs, &len, data) < 0)
1842 {
1843 free (data);
1844 write_enn (own_buf);
1845 return 1;
1846 }
1847
1848 n = (*q->xfer) (annex, NULL, data, ofs, len);
1849 if (n == -2)
1850 {
1851 free (data);
1852 return 0;
1853 }
1854 else if (n == -3)
1855 {
1856 /* Preserve error message. */
1857 }
1858 else if (n < 0)
1859 write_enn (own_buf);
1860 else
1861 sprintf (own_buf, "%x", n);
1862
1863 free (data);
1864 return 1;
1865 }
1866
1867 return 0;
1868 }
1869 }
1870
1871 return 0;
1872 }
1873
1874 /* Table used by the crc32 function to calcuate the checksum. */
1875
1876 static unsigned int crc32_table[256] =
1877 {0, 0};
1878
1879 /* Compute 32 bit CRC from inferior memory.
1880
1881 On success, return 32 bit CRC.
1882 On failure, return (unsigned long long) -1. */
1883
1884 static unsigned long long
1885 crc32 (CORE_ADDR base, int len, unsigned int crc)
1886 {
1887 if (!crc32_table[1])
1888 {
1889 /* Initialize the CRC table and the decoding table. */
1890 int i, j;
1891 unsigned int c;
1892
1893 for (i = 0; i < 256; i++)
1894 {
1895 for (c = i << 24, j = 8; j > 0; --j)
1896 c = c & 0x80000000 ? (c << 1) ^ 0x04c11db7 : (c << 1);
1897 crc32_table[i] = c;
1898 }
1899 }
1900
1901 while (len--)
1902 {
1903 unsigned char byte = 0;
1904
1905 /* Return failure if memory read fails. */
1906 if (read_inferior_memory (base, &byte, 1) != 0)
1907 return (unsigned long long) -1;
1908
1909 crc = (crc << 8) ^ crc32_table[((crc >> 24) ^ byte) & 255];
1910 base++;
1911 }
1912 return (unsigned long long) crc;
1913 }
1914
1915 /* Add supported btrace packets to BUF. */
1916
1917 static void
1918 supported_btrace_packets (char *buf)
1919 {
1920 int btrace_supported = 0;
1921
1922 if (target_supports_btrace (BTRACE_FORMAT_BTS))
1923 {
1924 strcat (buf, ";Qbtrace:bts+");
1925 strcat (buf, ";Qbtrace-conf:bts:size+");
1926
1927 btrace_supported = 1;
1928 }
1929
1930 if (target_supports_btrace (BTRACE_FORMAT_PT))
1931 {
1932 strcat (buf, ";Qbtrace:pt+");
1933 strcat (buf, ";Qbtrace-conf:pt:size+");
1934
1935 btrace_supported = 1;
1936 }
1937
1938 if (!btrace_supported)
1939 return;
1940
1941 strcat (buf, ";Qbtrace:off+");
1942 strcat (buf, ";qXfer:btrace:read+");
1943 strcat (buf, ";qXfer:btrace-conf:read+");
1944 }
1945
1946 /* Handle all of the extended 'q' packets. */
1947
1948 void
1949 handle_query (char *own_buf, int packet_len, int *new_packet_len_p)
1950 {
1951 static struct inferior_list_entry *thread_ptr;
1952
1953 /* Reply the current thread id. */
1954 if (strcmp ("qC", own_buf) == 0 && !disable_packet_qC)
1955 {
1956 ptid_t gdb_id;
1957 require_running (own_buf);
1958
1959 if (!ptid_equal (general_thread, null_ptid)
1960 && !ptid_equal (general_thread, minus_one_ptid))
1961 gdb_id = general_thread;
1962 else
1963 {
1964 thread_ptr = get_first_inferior (&all_threads);
1965 gdb_id = thread_to_gdb_id ((struct thread_info *)thread_ptr);
1966 }
1967
1968 sprintf (own_buf, "QC");
1969 own_buf += 2;
1970 write_ptid (own_buf, gdb_id);
1971 return;
1972 }
1973
1974 if (strcmp ("qSymbol::", own_buf) == 0)
1975 {
1976 /* GDB is suggesting new symbols have been loaded. This may
1977 mean a new shared library has been detected as loaded, so
1978 take the opportunity to check if breakpoints we think are
1979 inserted, still are. Note that it isn't guaranteed that
1980 we'll see this when a shared library is loaded, and nor will
1981 we see this for unloads (although breakpoints in unloaded
1982 libraries shouldn't trigger), as GDB may not find symbols for
1983 the library at all. We also re-validate breakpoints when we
1984 see a second GDB breakpoint for the same address, and or when
1985 we access breakpoint shadows. */
1986 validate_breakpoints ();
1987
1988 if (target_supports_tracepoints ())
1989 tracepoint_look_up_symbols ();
1990
1991 if (current_thread != NULL && the_target->look_up_symbols != NULL)
1992 (*the_target->look_up_symbols) ();
1993
1994 strcpy (own_buf, "OK");
1995 return;
1996 }
1997
1998 if (!disable_packet_qfThreadInfo)
1999 {
2000 if (strcmp ("qfThreadInfo", own_buf) == 0)
2001 {
2002 ptid_t gdb_id;
2003
2004 require_running (own_buf);
2005 thread_ptr = get_first_inferior (&all_threads);
2006
2007 *own_buf++ = 'm';
2008 gdb_id = thread_to_gdb_id ((struct thread_info *)thread_ptr);
2009 write_ptid (own_buf, gdb_id);
2010 thread_ptr = thread_ptr->next;
2011 return;
2012 }
2013
2014 if (strcmp ("qsThreadInfo", own_buf) == 0)
2015 {
2016 ptid_t gdb_id;
2017
2018 require_running (own_buf);
2019 if (thread_ptr != NULL)
2020 {
2021 *own_buf++ = 'm';
2022 gdb_id = thread_to_gdb_id ((struct thread_info *)thread_ptr);
2023 write_ptid (own_buf, gdb_id);
2024 thread_ptr = thread_ptr->next;
2025 return;
2026 }
2027 else
2028 {
2029 sprintf (own_buf, "l");
2030 return;
2031 }
2032 }
2033 }
2034
2035 if (the_target->read_offsets != NULL
2036 && strcmp ("qOffsets", own_buf) == 0)
2037 {
2038 CORE_ADDR text, data;
2039
2040 require_running (own_buf);
2041 if (the_target->read_offsets (&text, &data))
2042 sprintf (own_buf, "Text=%lX;Data=%lX;Bss=%lX",
2043 (long)text, (long)data, (long)data);
2044 else
2045 write_enn (own_buf);
2046
2047 return;
2048 }
2049
2050 /* Protocol features query. */
2051 if (startswith (own_buf, "qSupported")
2052 && (own_buf[10] == ':' || own_buf[10] == '\0'))
2053 {
2054 char *p = &own_buf[10];
2055 int gdb_supports_qRelocInsn = 0;
2056
2057 /* Start processing qSupported packet. */
2058 target_process_qsupported (NULL);
2059
2060 /* Process each feature being provided by GDB. The first
2061 feature will follow a ':', and latter features will follow
2062 ';'. */
2063 if (*p == ':')
2064 {
2065 char **qsupported = NULL;
2066 int count = 0;
2067 int i;
2068
2069 /* Two passes, to avoid nested strtok calls in
2070 target_process_qsupported. */
2071 for (p = strtok (p + 1, ";");
2072 p != NULL;
2073 p = strtok (NULL, ";"))
2074 {
2075 count++;
2076 qsupported = XRESIZEVEC (char *, qsupported, count);
2077 qsupported[count - 1] = xstrdup (p);
2078 }
2079
2080 for (i = 0; i < count; i++)
2081 {
2082 p = qsupported[i];
2083 if (strcmp (p, "multiprocess+") == 0)
2084 {
2085 /* GDB supports and wants multi-process support if
2086 possible. */
2087 if (target_supports_multi_process ())
2088 multi_process = 1;
2089 }
2090 else if (strcmp (p, "qRelocInsn+") == 0)
2091 {
2092 /* GDB supports relocate instruction requests. */
2093 gdb_supports_qRelocInsn = 1;
2094 }
2095 else if (strcmp (p, "swbreak+") == 0)
2096 {
2097 /* GDB wants us to report whether a trap is caused
2098 by a software breakpoint and for us to handle PC
2099 adjustment if necessary on this target. */
2100 if (target_supports_stopped_by_sw_breakpoint ())
2101 swbreak_feature = 1;
2102 }
2103 else if (strcmp (p, "hwbreak+") == 0)
2104 {
2105 /* GDB wants us to report whether a trap is caused
2106 by a hardware breakpoint. */
2107 if (target_supports_stopped_by_hw_breakpoint ())
2108 hwbreak_feature = 1;
2109 }
2110 else if (strcmp (p, "fork-events+") == 0)
2111 {
2112 /* GDB supports and wants fork events if possible. */
2113 if (target_supports_fork_events ())
2114 report_fork_events = 1;
2115 }
2116 else if (strcmp (p, "vfork-events+") == 0)
2117 {
2118 /* GDB supports and wants vfork events if possible. */
2119 if (target_supports_vfork_events ())
2120 report_vfork_events = 1;
2121 }
2122 else if (strcmp (p, "exec-events+") == 0)
2123 {
2124 /* GDB supports and wants exec events if possible. */
2125 if (target_supports_exec_events ())
2126 report_exec_events = 1;
2127 }
2128 else if (strcmp (p, "vContSupported+") == 0)
2129 vCont_supported = 1;
2130 else
2131 target_process_qsupported (p);
2132
2133 free (p);
2134 }
2135
2136 free (qsupported);
2137 }
2138
2139 sprintf (own_buf,
2140 "PacketSize=%x;QPassSignals+;QProgramSignals+",
2141 PBUFSIZ - 1);
2142
2143 if (the_target->qxfer_libraries_svr4 != NULL)
2144 strcat (own_buf, ";qXfer:libraries-svr4:read+"
2145 ";augmented-libraries-svr4-read+");
2146 else
2147 {
2148 /* We do not have any hook to indicate whether the non-SVR4 target
2149 backend supports qXfer:libraries:read, so always report it. */
2150 strcat (own_buf, ";qXfer:libraries:read+");
2151 }
2152
2153 if (the_target->read_auxv != NULL)
2154 strcat (own_buf, ";qXfer:auxv:read+");
2155
2156 if (the_target->qxfer_spu != NULL)
2157 strcat (own_buf, ";qXfer:spu:read+;qXfer:spu:write+");
2158
2159 if (the_target->qxfer_siginfo != NULL)
2160 strcat (own_buf, ";qXfer:siginfo:read+;qXfer:siginfo:write+");
2161
2162 if (the_target->read_loadmap != NULL)
2163 strcat (own_buf, ";qXfer:fdpic:read+");
2164
2165 /* We always report qXfer:features:read, as targets may
2166 install XML files on a subsequent call to arch_setup.
2167 If we reported to GDB on startup that we don't support
2168 qXfer:feature:read at all, we will never be re-queried. */
2169 strcat (own_buf, ";qXfer:features:read+");
2170
2171 if (transport_is_reliable)
2172 strcat (own_buf, ";QStartNoAckMode+");
2173
2174 if (the_target->qxfer_osdata != NULL)
2175 strcat (own_buf, ";qXfer:osdata:read+");
2176
2177 if (target_supports_multi_process ())
2178 strcat (own_buf, ";multiprocess+");
2179
2180 if (target_supports_fork_events ())
2181 strcat (own_buf, ";fork-events+");
2182
2183 if (target_supports_vfork_events ())
2184 strcat (own_buf, ";vfork-events+");
2185
2186 if (target_supports_exec_events ())
2187 strcat (own_buf, ";exec-events+");
2188
2189 if (target_supports_non_stop ())
2190 strcat (own_buf, ";QNonStop+");
2191
2192 if (target_supports_disable_randomization ())
2193 strcat (own_buf, ";QDisableRandomization+");
2194
2195 strcat (own_buf, ";qXfer:threads:read+");
2196
2197 if (target_supports_tracepoints ())
2198 {
2199 strcat (own_buf, ";ConditionalTracepoints+");
2200 strcat (own_buf, ";TraceStateVariables+");
2201 strcat (own_buf, ";TracepointSource+");
2202 strcat (own_buf, ";DisconnectedTracing+");
2203 if (gdb_supports_qRelocInsn && target_supports_fast_tracepoints ())
2204 strcat (own_buf, ";FastTracepoints+");
2205 strcat (own_buf, ";StaticTracepoints+");
2206 strcat (own_buf, ";InstallInTrace+");
2207 strcat (own_buf, ";qXfer:statictrace:read+");
2208 strcat (own_buf, ";qXfer:traceframe-info:read+");
2209 strcat (own_buf, ";EnableDisableTracepoints+");
2210 strcat (own_buf, ";QTBuffer:size+");
2211 strcat (own_buf, ";tracenz+");
2212 }
2213
2214 if (target_supports_hardware_single_step ())
2215 {
2216 /* Support target-side breakpoint conditions and commands.
2217 GDBserver needs to step over the breakpoint if the condition
2218 is false. GDBserver software single step is too simple, so
2219 disable conditional breakpoints if the target doesn't have
2220 hardware single step. */
2221 strcat (own_buf, ";ConditionalBreakpoints+");
2222 }
2223 strcat (own_buf, ";BreakpointCommands+");
2224
2225 if (target_supports_agent ())
2226 strcat (own_buf, ";QAgent+");
2227
2228 supported_btrace_packets (own_buf);
2229
2230 if (target_supports_stopped_by_sw_breakpoint ())
2231 strcat (own_buf, ";swbreak+");
2232
2233 if (target_supports_stopped_by_hw_breakpoint ())
2234 strcat (own_buf, ";hwbreak+");
2235
2236 if (the_target->pid_to_exec_file != NULL)
2237 strcat (own_buf, ";qXfer:exec-file:read+");
2238
2239 strcat (own_buf, ";vContSupported+");
2240
2241 /* Reinitialize components as needed for the new connection. */
2242 hostio_handle_new_gdb_connection ();
2243 target_handle_new_gdb_connection ();
2244
2245 return;
2246 }
2247
2248 /* Thread-local storage support. */
2249 if (the_target->get_tls_address != NULL
2250 && startswith (own_buf, "qGetTLSAddr:"))
2251 {
2252 char *p = own_buf + 12;
2253 CORE_ADDR parts[2], address = 0;
2254 int i, err;
2255 ptid_t ptid = null_ptid;
2256
2257 require_running (own_buf);
2258
2259 for (i = 0; i < 3; i++)
2260 {
2261 char *p2;
2262 int len;
2263
2264 if (p == NULL)
2265 break;
2266
2267 p2 = strchr (p, ',');
2268 if (p2)
2269 {
2270 len = p2 - p;
2271 p2++;
2272 }
2273 else
2274 {
2275 len = strlen (p);
2276 p2 = NULL;
2277 }
2278
2279 if (i == 0)
2280 ptid = read_ptid (p, NULL);
2281 else
2282 decode_address (&parts[i - 1], p, len);
2283 p = p2;
2284 }
2285
2286 if (p != NULL || i < 3)
2287 err = 1;
2288 else
2289 {
2290 struct thread_info *thread = find_thread_ptid (ptid);
2291
2292 if (thread == NULL)
2293 err = 2;
2294 else
2295 err = the_target->get_tls_address (thread, parts[0], parts[1],
2296 &address);
2297 }
2298
2299 if (err == 0)
2300 {
2301 strcpy (own_buf, paddress(address));
2302 return;
2303 }
2304 else if (err > 0)
2305 {
2306 write_enn (own_buf);
2307 return;
2308 }
2309
2310 /* Otherwise, pretend we do not understand this packet. */
2311 }
2312
2313 /* Windows OS Thread Information Block address support. */
2314 if (the_target->get_tib_address != NULL
2315 && startswith (own_buf, "qGetTIBAddr:"))
2316 {
2317 char *annex;
2318 int n;
2319 CORE_ADDR tlb;
2320 ptid_t ptid = read_ptid (own_buf + 12, &annex);
2321
2322 n = (*the_target->get_tib_address) (ptid, &tlb);
2323 if (n == 1)
2324 {
2325 strcpy (own_buf, paddress(tlb));
2326 return;
2327 }
2328 else if (n == 0)
2329 {
2330 write_enn (own_buf);
2331 return;
2332 }
2333 return;
2334 }
2335
2336 /* Handle "monitor" commands. */
2337 if (startswith (own_buf, "qRcmd,"))
2338 {
2339 char *mon = (char *) malloc (PBUFSIZ);
2340 int len = strlen (own_buf + 6);
2341
2342 if (mon == NULL)
2343 {
2344 write_enn (own_buf);
2345 return;
2346 }
2347
2348 if ((len % 2) != 0
2349 || hex2bin (own_buf + 6, (gdb_byte *) mon, len / 2) != len / 2)
2350 {
2351 write_enn (own_buf);
2352 free (mon);
2353 return;
2354 }
2355 mon[len / 2] = '\0';
2356
2357 write_ok (own_buf);
2358
2359 if (the_target->handle_monitor_command == NULL
2360 || (*the_target->handle_monitor_command) (mon) == 0)
2361 /* Default processing. */
2362 handle_monitor_command (mon, own_buf);
2363
2364 free (mon);
2365 return;
2366 }
2367
2368 if (startswith (own_buf, "qSearch:memory:"))
2369 {
2370 require_running (own_buf);
2371 handle_search_memory (own_buf, packet_len);
2372 return;
2373 }
2374
2375 if (strcmp (own_buf, "qAttached") == 0
2376 || startswith (own_buf, "qAttached:"))
2377 {
2378 struct process_info *process;
2379
2380 if (own_buf[sizeof ("qAttached") - 1])
2381 {
2382 int pid = strtoul (own_buf + sizeof ("qAttached:") - 1, NULL, 16);
2383 process = (struct process_info *)
2384 find_inferior_id (&all_processes, pid_to_ptid (pid));
2385 }
2386 else
2387 {
2388 require_running (own_buf);
2389 process = current_process ();
2390 }
2391
2392 if (process == NULL)
2393 {
2394 write_enn (own_buf);
2395 return;
2396 }
2397
2398 strcpy (own_buf, process->attached ? "1" : "0");
2399 return;
2400 }
2401
2402 if (startswith (own_buf, "qCRC:"))
2403 {
2404 /* CRC check (compare-section). */
2405 char *comma;
2406 ULONGEST base;
2407 int len;
2408 unsigned long long crc;
2409
2410 require_running (own_buf);
2411 comma = unpack_varlen_hex (own_buf + 5, &base);
2412 if (*comma++ != ',')
2413 {
2414 write_enn (own_buf);
2415 return;
2416 }
2417 len = strtoul (comma, NULL, 16);
2418 crc = crc32 (base, len, 0xffffffff);
2419 /* Check for memory failure. */
2420 if (crc == (unsigned long long) -1)
2421 {
2422 write_enn (own_buf);
2423 return;
2424 }
2425 sprintf (own_buf, "C%lx", (unsigned long) crc);
2426 return;
2427 }
2428
2429 if (handle_qxfer (own_buf, packet_len, new_packet_len_p))
2430 return;
2431
2432 if (target_supports_tracepoints () && handle_tracepoint_query (own_buf))
2433 return;
2434
2435 /* Otherwise we didn't know what packet it was. Say we didn't
2436 understand it. */
2437 own_buf[0] = 0;
2438 }
2439
2440 static void gdb_wants_all_threads_stopped (void);
2441 static void resume (struct thread_resume *actions, size_t n);
2442
2443 /* The callback that is passed to visit_actioned_threads. */
2444 typedef int (visit_actioned_threads_callback_ftype)
2445 (const struct thread_resume *, struct thread_info *);
2446
2447 /* Struct to pass data to visit_actioned_threads. */
2448
2449 struct visit_actioned_threads_data
2450 {
2451 const struct thread_resume *actions;
2452 size_t num_actions;
2453 visit_actioned_threads_callback_ftype *callback;
2454 };
2455
2456 /* Call CALLBACK for any thread to which ACTIONS applies to. Returns
2457 true if CALLBACK returns true. Returns false if no matching thread
2458 is found or CALLBACK results false.
2459 Note: This function is itself a callback for find_inferior. */
2460
2461 static int
2462 visit_actioned_threads (struct inferior_list_entry *entry, void *datap)
2463 {
2464 struct visit_actioned_threads_data *data
2465 = (struct visit_actioned_threads_data *) datap;
2466 const struct thread_resume *actions = data->actions;
2467 size_t num_actions = data->num_actions;
2468 visit_actioned_threads_callback_ftype *callback = data->callback;
2469 size_t i;
2470
2471 for (i = 0; i < num_actions; i++)
2472 {
2473 const struct thread_resume *action = &actions[i];
2474
2475 if (ptid_equal (action->thread, minus_one_ptid)
2476 || ptid_equal (action->thread, entry->id)
2477 || ((ptid_get_pid (action->thread)
2478 == ptid_get_pid (entry->id))
2479 && ptid_get_lwp (action->thread) == -1))
2480 {
2481 struct thread_info *thread = (struct thread_info *) entry;
2482
2483 if ((*callback) (action, thread))
2484 return 1;
2485 }
2486 }
2487
2488 return 0;
2489 }
2490
2491 /* Callback for visit_actioned_threads. If the thread has a pending
2492 status to report, report it now. */
2493
2494 static int
2495 handle_pending_status (const struct thread_resume *resumption,
2496 struct thread_info *thread)
2497 {
2498 if (thread->status_pending_p)
2499 {
2500 thread->status_pending_p = 0;
2501
2502 last_status = thread->last_status;
2503 last_ptid = thread->entry.id;
2504 prepare_resume_reply (own_buf, last_ptid, &last_status);
2505 return 1;
2506 }
2507 return 0;
2508 }
2509
2510 /* Parse vCont packets. */
2511 void
2512 handle_v_cont (char *own_buf)
2513 {
2514 char *p, *q;
2515 int n = 0, i = 0;
2516 struct thread_resume *resume_info;
2517 struct thread_resume default_action = {{0}};
2518
2519 /* Count the number of semicolons in the packet. There should be one
2520 for every action. */
2521 p = &own_buf[5];
2522 while (p)
2523 {
2524 n++;
2525 p++;
2526 p = strchr (p, ';');
2527 }
2528
2529 resume_info = (struct thread_resume *) malloc (n * sizeof (resume_info[0]));
2530 if (resume_info == NULL)
2531 goto err;
2532
2533 p = &own_buf[5];
2534 while (*p)
2535 {
2536 p++;
2537
2538 memset (&resume_info[i], 0, sizeof resume_info[i]);
2539
2540 if (p[0] == 's' || p[0] == 'S')
2541 resume_info[i].kind = resume_step;
2542 else if (p[0] == 'r')
2543 resume_info[i].kind = resume_step;
2544 else if (p[0] == 'c' || p[0] == 'C')
2545 resume_info[i].kind = resume_continue;
2546 else if (p[0] == 't')
2547 resume_info[i].kind = resume_stop;
2548 else
2549 goto err;
2550
2551 if (p[0] == 'S' || p[0] == 'C')
2552 {
2553 int sig;
2554 sig = strtol (p + 1, &q, 16);
2555 if (p == q)
2556 goto err;
2557 p = q;
2558
2559 if (!gdb_signal_to_host_p ((enum gdb_signal) sig))
2560 goto err;
2561 resume_info[i].sig = gdb_signal_to_host ((enum gdb_signal) sig);
2562 }
2563 else if (p[0] == 'r')
2564 {
2565 ULONGEST addr;
2566
2567 p = unpack_varlen_hex (p + 1, &addr);
2568 resume_info[i].step_range_start = addr;
2569
2570 if (*p != ',')
2571 goto err;
2572
2573 p = unpack_varlen_hex (p + 1, &addr);
2574 resume_info[i].step_range_end = addr;
2575 }
2576 else
2577 {
2578 p = p + 1;
2579 }
2580
2581 if (p[0] == 0)
2582 {
2583 resume_info[i].thread = minus_one_ptid;
2584 default_action = resume_info[i];
2585
2586 /* Note: we don't increment i here, we'll overwrite this entry
2587 the next time through. */
2588 }
2589 else if (p[0] == ':')
2590 {
2591 ptid_t ptid = read_ptid (p + 1, &q);
2592
2593 if (p == q)
2594 goto err;
2595 p = q;
2596 if (p[0] != ';' && p[0] != 0)
2597 goto err;
2598
2599 resume_info[i].thread = ptid;
2600
2601 i++;
2602 }
2603 }
2604
2605 if (i < n)
2606 resume_info[i] = default_action;
2607
2608 resume (resume_info, n);
2609 free (resume_info);
2610 return;
2611
2612 err:
2613 write_enn (own_buf);
2614 free (resume_info);
2615 return;
2616 }
2617
2618 /* Resume target with ACTIONS, an array of NUM_ACTIONS elements. */
2619
2620 static void
2621 resume (struct thread_resume *actions, size_t num_actions)
2622 {
2623 if (!non_stop)
2624 {
2625 /* Check if among the threads that GDB wants actioned, there's
2626 one with a pending status to report. If so, skip actually
2627 resuming/stopping and report the pending event
2628 immediately. */
2629 struct visit_actioned_threads_data data;
2630
2631 data.actions = actions;
2632 data.num_actions = num_actions;
2633 data.callback = handle_pending_status;
2634 if (find_inferior (&all_threads, visit_actioned_threads, &data) != NULL)
2635 return;
2636
2637 enable_async_io ();
2638 }
2639
2640 (*the_target->resume) (actions, num_actions);
2641
2642 if (non_stop)
2643 write_ok (own_buf);
2644 else
2645 {
2646 last_ptid = mywait (minus_one_ptid, &last_status, 0, 1);
2647
2648 if (last_status.kind == TARGET_WAITKIND_NO_RESUMED)
2649 {
2650 /* No proper RSP support for this yet. At least return
2651 error. */
2652 sprintf (own_buf, "E.No unwaited-for children left.");
2653 disable_async_io ();
2654 return;
2655 }
2656
2657 if (last_status.kind != TARGET_WAITKIND_EXITED
2658 && last_status.kind != TARGET_WAITKIND_SIGNALLED
2659 && last_status.kind != TARGET_WAITKIND_NO_RESUMED)
2660 current_thread->last_status = last_status;
2661
2662 /* From the client's perspective, all-stop mode always stops all
2663 threads implicitly (and the target backend has already done
2664 so by now). Tag all threads as "want-stopped", so we don't
2665 resume them implicitly without the client telling us to. */
2666 gdb_wants_all_threads_stopped ();
2667 prepare_resume_reply (own_buf, last_ptid, &last_status);
2668 disable_async_io ();
2669
2670 if (last_status.kind == TARGET_WAITKIND_EXITED
2671 || last_status.kind == TARGET_WAITKIND_SIGNALLED)
2672 mourn_inferior (find_process_pid (ptid_get_pid (last_ptid)));
2673 }
2674 }
2675
2676 /* Attach to a new program. Return 1 if successful, 0 if failure. */
2677 int
2678 handle_v_attach (char *own_buf)
2679 {
2680 int pid;
2681
2682 pid = strtol (own_buf + 8, NULL, 16);
2683 if (pid != 0 && attach_inferior (pid) == 0)
2684 {
2685 /* Don't report shared library events after attaching, even if
2686 some libraries are preloaded. GDB will always poll the
2687 library list. Avoids the "stopped by shared library event"
2688 notice on the GDB side. */
2689 dlls_changed = 0;
2690
2691 if (non_stop)
2692 {
2693 /* In non-stop, we don't send a resume reply. Stop events
2694 will follow up using the normal notification
2695 mechanism. */
2696 write_ok (own_buf);
2697 }
2698 else
2699 prepare_resume_reply (own_buf, last_ptid, &last_status);
2700
2701 return 1;
2702 }
2703 else
2704 {
2705 write_enn (own_buf);
2706 return 0;
2707 }
2708 }
2709
2710 /* Run a new program. Return 1 if successful, 0 if failure. */
2711 static int
2712 handle_v_run (char *own_buf)
2713 {
2714 char *p, *next_p, **new_argv;
2715 int i, new_argc;
2716
2717 new_argc = 0;
2718 for (p = own_buf + strlen ("vRun;"); p && *p; p = strchr (p, ';'))
2719 {
2720 p++;
2721 new_argc++;
2722 }
2723
2724 new_argv = (char **) calloc (new_argc + 2, sizeof (char *));
2725 if (new_argv == NULL)
2726 {
2727 write_enn (own_buf);
2728 return 0;
2729 }
2730
2731 i = 0;
2732 for (p = own_buf + strlen ("vRun;"); *p; p = next_p)
2733 {
2734 next_p = strchr (p, ';');
2735 if (next_p == NULL)
2736 next_p = p + strlen (p);
2737
2738 if (i == 0 && p == next_p)
2739 new_argv[i] = NULL;
2740 else
2741 {
2742 /* FIXME: Fail request if out of memory instead of dying. */
2743 new_argv[i] = (char *) xmalloc (1 + (next_p - p) / 2);
2744 hex2bin (p, (gdb_byte *) new_argv[i], (next_p - p) / 2);
2745 new_argv[i][(next_p - p) / 2] = '\0';
2746 }
2747
2748 if (*next_p)
2749 next_p++;
2750 i++;
2751 }
2752 new_argv[i] = NULL;
2753
2754 if (new_argv[0] == NULL)
2755 {
2756 /* GDB didn't specify a program to run. Use the program from the
2757 last run with the new argument list. */
2758
2759 if (program_argv == NULL)
2760 {
2761 write_enn (own_buf);
2762 freeargv (new_argv);
2763 return 0;
2764 }
2765
2766 new_argv[0] = strdup (program_argv[0]);
2767 if (new_argv[0] == NULL)
2768 {
2769 write_enn (own_buf);
2770 freeargv (new_argv);
2771 return 0;
2772 }
2773 }
2774
2775 /* Free the old argv and install the new one. */
2776 freeargv (program_argv);
2777 program_argv = new_argv;
2778
2779 start_inferior (program_argv);
2780 if (last_status.kind == TARGET_WAITKIND_STOPPED)
2781 {
2782 prepare_resume_reply (own_buf, last_ptid, &last_status);
2783
2784 /* In non-stop, sending a resume reply doesn't set the general
2785 thread, but GDB assumes a vRun sets it (this is so GDB can
2786 query which is the main thread of the new inferior. */
2787 if (non_stop)
2788 general_thread = last_ptid;
2789
2790 return 1;
2791 }
2792 else
2793 {
2794 write_enn (own_buf);
2795 return 0;
2796 }
2797 }
2798
2799 /* Kill process. Return 1 if successful, 0 if failure. */
2800 int
2801 handle_v_kill (char *own_buf)
2802 {
2803 int pid;
2804 char *p = &own_buf[6];
2805 if (multi_process)
2806 pid = strtol (p, NULL, 16);
2807 else
2808 pid = signal_pid;
2809 if (pid != 0 && kill_inferior (pid) == 0)
2810 {
2811 last_status.kind = TARGET_WAITKIND_SIGNALLED;
2812 last_status.value.sig = GDB_SIGNAL_KILL;
2813 last_ptid = pid_to_ptid (pid);
2814 discard_queued_stop_replies (last_ptid);
2815 write_ok (own_buf);
2816 return 1;
2817 }
2818 else
2819 {
2820 write_enn (own_buf);
2821 return 0;
2822 }
2823 }
2824
2825 /* Handle all of the extended 'v' packets. */
2826 void
2827 handle_v_requests (char *own_buf, int packet_len, int *new_packet_len)
2828 {
2829 if (!disable_packet_vCont)
2830 {
2831 if (startswith (own_buf, "vCont;"))
2832 {
2833 require_running (own_buf);
2834 handle_v_cont (own_buf);
2835 return;
2836 }
2837
2838 if (startswith (own_buf, "vCont?"))
2839 {
2840 strcpy (own_buf, "vCont;c;C;t");
2841
2842 if (target_supports_hardware_single_step () || !vCont_supported)
2843 {
2844 /* If target supports hardware single step, add actions s
2845 and S to the list of supported actions. On the other
2846 hand, if GDB doesn't request the supported vCont actions
2847 in qSupported packet, add s and S to the list too. */
2848 own_buf = own_buf + strlen (own_buf);
2849 strcpy (own_buf, ";s;S");
2850 }
2851
2852 if (target_supports_range_stepping ())
2853 {
2854 own_buf = own_buf + strlen (own_buf);
2855 strcpy (own_buf, ";r");
2856 }
2857 return;
2858 }
2859 }
2860
2861 if (startswith (own_buf, "vFile:")
2862 && handle_vFile (own_buf, packet_len, new_packet_len))
2863 return;
2864
2865 if (startswith (own_buf, "vAttach;"))
2866 {
2867 if ((!extended_protocol || !multi_process) && target_running ())
2868 {
2869 fprintf (stderr, "Already debugging a process\n");
2870 write_enn (own_buf);
2871 return;
2872 }
2873 handle_v_attach (own_buf);
2874 return;
2875 }
2876
2877 if (startswith (own_buf, "vRun;"))
2878 {
2879 if ((!extended_protocol || !multi_process) && target_running ())
2880 {
2881 fprintf (stderr, "Already debugging a process\n");
2882 write_enn (own_buf);
2883 return;
2884 }
2885 handle_v_run (own_buf);
2886 return;
2887 }
2888
2889 if (startswith (own_buf, "vKill;"))
2890 {
2891 if (!target_running ())
2892 {
2893 fprintf (stderr, "No process to kill\n");
2894 write_enn (own_buf);
2895 return;
2896 }
2897 handle_v_kill (own_buf);
2898 return;
2899 }
2900
2901 if (handle_notif_ack (own_buf, packet_len))
2902 return;
2903
2904 /* Otherwise we didn't know what packet it was. Say we didn't
2905 understand it. */
2906 own_buf[0] = 0;
2907 return;
2908 }
2909
2910 /* Resume thread and wait for another event. In non-stop mode,
2911 don't really wait here, but return immediatelly to the event
2912 loop. */
2913 static void
2914 myresume (char *own_buf, int step, int sig)
2915 {
2916 struct thread_resume resume_info[2];
2917 int n = 0;
2918 int valid_cont_thread;
2919
2920 valid_cont_thread = (!ptid_equal (cont_thread, null_ptid)
2921 && !ptid_equal (cont_thread, minus_one_ptid));
2922
2923 if (step || sig || valid_cont_thread)
2924 {
2925 resume_info[0].thread = current_ptid;
2926 if (step)
2927 resume_info[0].kind = resume_step;
2928 else
2929 resume_info[0].kind = resume_continue;
2930 resume_info[0].sig = sig;
2931 n++;
2932 }
2933
2934 if (!valid_cont_thread)
2935 {
2936 resume_info[n].thread = minus_one_ptid;
2937 resume_info[n].kind = resume_continue;
2938 resume_info[n].sig = 0;
2939 n++;
2940 }
2941
2942 resume (resume_info, n);
2943 }
2944
2945 /* Callback for for_each_inferior. Make a new stop reply for each
2946 stopped thread. */
2947
2948 static int
2949 queue_stop_reply_callback (struct inferior_list_entry *entry, void *arg)
2950 {
2951 struct thread_info *thread = (struct thread_info *) entry;
2952
2953 /* For now, assume targets that don't have this callback also don't
2954 manage the thread's last_status field. */
2955 if (the_target->thread_stopped == NULL)
2956 {
2957 struct vstop_notif *new_notif = XNEW (struct vstop_notif);
2958
2959 new_notif->ptid = entry->id;
2960 new_notif->status = thread->last_status;
2961 /* Pass the last stop reply back to GDB, but don't notify
2962 yet. */
2963 notif_event_enque (&notif_stop,
2964 (struct notif_event *) new_notif);
2965 }
2966 else
2967 {
2968 if (thread_stopped (thread))
2969 {
2970 if (debug_threads)
2971 {
2972 char *status_string
2973 = target_waitstatus_to_string (&thread->last_status);
2974
2975 debug_printf ("Reporting thread %s as already stopped with %s\n",
2976 target_pid_to_str (entry->id),
2977 status_string);
2978
2979 xfree (status_string);
2980 }
2981
2982 gdb_assert (thread->last_status.kind != TARGET_WAITKIND_IGNORE);
2983
2984 /* Pass the last stop reply back to GDB, but don't notify
2985 yet. */
2986 queue_stop_reply (entry->id, &thread->last_status);
2987 }
2988 }
2989
2990 return 0;
2991 }
2992
2993 /* Set this inferior threads's state as "want-stopped". We won't
2994 resume this thread until the client gives us another action for
2995 it. */
2996
2997 static void
2998 gdb_wants_thread_stopped (struct inferior_list_entry *entry)
2999 {
3000 struct thread_info *thread = (struct thread_info *) entry;
3001
3002 thread->last_resume_kind = resume_stop;
3003
3004 if (thread->last_status.kind == TARGET_WAITKIND_IGNORE)
3005 {
3006 /* Most threads are stopped implicitly (all-stop); tag that with
3007 signal 0. */
3008 thread->last_status.kind = TARGET_WAITKIND_STOPPED;
3009 thread->last_status.value.sig = GDB_SIGNAL_0;
3010 }
3011 }
3012
3013 /* Set all threads' states as "want-stopped". */
3014
3015 static void
3016 gdb_wants_all_threads_stopped (void)
3017 {
3018 for_each_inferior (&all_threads, gdb_wants_thread_stopped);
3019 }
3020
3021 /* Clear the gdb_detached flag of every process. */
3022
3023 static void
3024 gdb_reattached_process (struct inferior_list_entry *entry)
3025 {
3026 struct process_info *process = (struct process_info *) entry;
3027
3028 process->gdb_detached = 0;
3029 }
3030
3031 /* Callback for for_each_inferior. Clear the thread's pending status
3032 flag. */
3033
3034 static void
3035 clear_pending_status_callback (struct inferior_list_entry *entry)
3036 {
3037 struct thread_info *thread = (struct thread_info *) entry;
3038
3039 thread->status_pending_p = 0;
3040 }
3041
3042 /* Callback for for_each_inferior. If the thread is stopped with an
3043 interesting event, mark it as having a pending event. */
3044
3045 static void
3046 set_pending_status_callback (struct inferior_list_entry *entry)
3047 {
3048 struct thread_info *thread = (struct thread_info *) entry;
3049
3050 if (thread->last_status.kind != TARGET_WAITKIND_STOPPED
3051 || (thread->last_status.value.sig != GDB_SIGNAL_0
3052 /* A breakpoint, watchpoint or finished step from a previous
3053 GDB run isn't considered interesting for a new GDB run.
3054 If we left those pending, the new GDB could consider them
3055 random SIGTRAPs. This leaves out real async traps. We'd
3056 have to peek into the (target-specific) siginfo to
3057 distinguish those. */
3058 && thread->last_status.value.sig != GDB_SIGNAL_TRAP))
3059 thread->status_pending_p = 1;
3060 }
3061
3062 /* Callback for find_inferior. Return true if ENTRY (a thread) has a
3063 pending status to report to GDB. */
3064
3065 static int
3066 find_status_pending_thread_callback (struct inferior_list_entry *entry, void *data)
3067 {
3068 struct thread_info *thread = (struct thread_info *) entry;
3069
3070 return thread->status_pending_p;
3071 }
3072
3073 /* Status handler for the '?' packet. */
3074
3075 static void
3076 handle_status (char *own_buf)
3077 {
3078 /* GDB is connected, don't forward events to the target anymore. */
3079 for_each_inferior (&all_processes, gdb_reattached_process);
3080
3081 /* In non-stop mode, we must send a stop reply for each stopped
3082 thread. In all-stop mode, just send one for the first stopped
3083 thread we find. */
3084
3085 if (non_stop)
3086 {
3087 find_inferior (&all_threads, queue_stop_reply_callback, NULL);
3088
3089 /* The first is sent immediatly. OK is sent if there is no
3090 stopped thread, which is the same handling of the vStopped
3091 packet (by design). */
3092 notif_write_event (&notif_stop, own_buf);
3093 }
3094 else
3095 {
3096 struct inferior_list_entry *thread = NULL;
3097
3098 pause_all (0);
3099 stabilize_threads ();
3100 gdb_wants_all_threads_stopped ();
3101
3102 /* We can only report one status, but we might be coming out of
3103 non-stop -- if more than one thread is stopped with
3104 interesting events, leave events for the threads we're not
3105 reporting now pending. They'll be reported the next time the
3106 threads are resumed. Start by marking all interesting events
3107 as pending. */
3108 for_each_inferior (&all_threads, set_pending_status_callback);
3109
3110 /* Prefer the last thread that reported an event to GDB (even if
3111 that was a GDB_SIGNAL_TRAP). */
3112 if (last_status.kind != TARGET_WAITKIND_IGNORE
3113 && last_status.kind != TARGET_WAITKIND_EXITED
3114 && last_status.kind != TARGET_WAITKIND_SIGNALLED)
3115 thread = find_inferior_id (&all_threads, last_ptid);
3116
3117 /* If the last event thread is not found for some reason, look
3118 for some other thread that might have an event to report. */
3119 if (thread == NULL)
3120 thread = find_inferior (&all_threads,
3121 find_status_pending_thread_callback, NULL);
3122
3123 /* If we're still out of luck, simply pick the first thread in
3124 the thread list. */
3125 if (thread == NULL)
3126 thread = get_first_inferior (&all_threads);
3127
3128 if (thread != NULL)
3129 {
3130 struct thread_info *tp = (struct thread_info *) thread;
3131
3132 /* We're reporting this event, so it's no longer
3133 pending. */
3134 tp->status_pending_p = 0;
3135
3136 /* GDB assumes the current thread is the thread we're
3137 reporting the status for. */
3138 general_thread = thread->id;
3139 set_desired_thread (1);
3140
3141 gdb_assert (tp->last_status.kind != TARGET_WAITKIND_IGNORE);
3142 prepare_resume_reply (own_buf, tp->entry.id, &tp->last_status);
3143 }
3144 else
3145 strcpy (own_buf, "W00");
3146 }
3147 }
3148
3149 static void
3150 gdbserver_version (void)
3151 {
3152 printf ("GNU gdbserver %s%s\n"
3153 "Copyright (C) 2015 Free Software Foundation, Inc.\n"
3154 "gdbserver is free software, covered by the "
3155 "GNU General Public License.\n"
3156 "This gdbserver was configured as \"%s\"\n",
3157 PKGVERSION, version, host_name);
3158 }
3159
3160 static void
3161 gdbserver_usage (FILE *stream)
3162 {
3163 fprintf (stream, "Usage:\tgdbserver [OPTIONS] COMM PROG [ARGS ...]\n"
3164 "\tgdbserver [OPTIONS] --attach COMM PID\n"
3165 "\tgdbserver [OPTIONS] --multi COMM\n"
3166 "\n"
3167 "COMM may either be a tty device (for serial debugging),\n"
3168 "HOST:PORT to listen for a TCP connection, or '-' or 'stdio' to use \n"
3169 "stdin/stdout of gdbserver.\n"
3170 "PROG is the executable program. ARGS are arguments passed to inferior.\n"
3171 "PID is the process ID to attach to, when --attach is specified.\n"
3172 "\n"
3173 "Operating modes:\n"
3174 "\n"
3175 " --attach Attach to running process PID.\n"
3176 " --multi Start server without a specific program, and\n"
3177 " only quit when explicitly commanded.\n"
3178 " --once Exit after the first connection has closed.\n"
3179 " --help Print this message and then exit.\n"
3180 " --version Display version information and exit.\n"
3181 "\n"
3182 "Other options:\n"
3183 "\n"
3184 " --wrapper WRAPPER -- Run WRAPPER to start new programs.\n"
3185 " --disable-randomization\n"
3186 " Run PROG with address space randomization disabled.\n"
3187 " --no-disable-randomization\n"
3188 " Don't disable address space randomization when\n"
3189 " starting PROG.\n"
3190 "\n"
3191 "Debug options:\n"
3192 "\n"
3193 " --debug Enable general debugging output.\n"
3194 " --debug-format=opt1[,opt2,...]\n"
3195 " Specify extra content in debugging output.\n"
3196 " Options:\n"
3197 " all\n"
3198 " none\n"
3199 " timestamp\n"
3200 " --remote-debug Enable remote protocol debugging output.\n"
3201 " --disable-packet=opt1[,opt2,...]\n"
3202 " Disable support for RSP packets or features.\n"
3203 " Options:\n"
3204 " vCont, Tthread, qC, qfThreadInfo and \n"
3205 " threads (disable all threading packets).\n"
3206 "\n"
3207 "For more information, consult the GDB manual (available as on-line \n"
3208 "info or a printed manual).\n");
3209 if (REPORT_BUGS_TO[0] && stream == stdout)
3210 fprintf (stream, "Report bugs to \"%s\".\n", REPORT_BUGS_TO);
3211 }
3212
3213 static void
3214 gdbserver_show_disableable (FILE *stream)
3215 {
3216 fprintf (stream, "Disableable packets:\n"
3217 " vCont \tAll vCont packets\n"
3218 " qC \tQuerying the current thread\n"
3219 " qfThreadInfo\tThread listing\n"
3220 " Tthread \tPassing the thread specifier in the "
3221 "T stop reply packet\n"
3222 " threads \tAll of the above\n");
3223 }
3224
3225
3226 #undef require_running
3227 #define require_running(BUF) \
3228 if (!target_running ()) \
3229 { \
3230 write_enn (BUF); \
3231 break; \
3232 }
3233
3234 static int
3235 first_thread_of (struct inferior_list_entry *entry, void *args)
3236 {
3237 int pid = * (int *) args;
3238
3239 if (ptid_get_pid (entry->id) == pid)
3240 return 1;
3241
3242 return 0;
3243 }
3244
3245 static void
3246 kill_inferior_callback (struct inferior_list_entry *entry)
3247 {
3248 struct process_info *process = (struct process_info *) entry;
3249 int pid = ptid_get_pid (process->entry.id);
3250
3251 kill_inferior (pid);
3252 discard_queued_stop_replies (pid_to_ptid (pid));
3253 }
3254
3255 /* Callback for for_each_inferior to detach or kill the inferior,
3256 depending on whether we attached to it or not.
3257 We inform the user whether we're detaching or killing the process
3258 as this is only called when gdbserver is about to exit. */
3259
3260 static void
3261 detach_or_kill_inferior_callback (struct inferior_list_entry *entry)
3262 {
3263 struct process_info *process = (struct process_info *) entry;
3264 int pid = ptid_get_pid (process->entry.id);
3265
3266 if (process->attached)
3267 detach_inferior (pid);
3268 else
3269 kill_inferior (pid);
3270
3271 discard_queued_stop_replies (pid_to_ptid (pid));
3272 }
3273
3274 /* for_each_inferior callback for detach_or_kill_for_exit to print
3275 the pids of started inferiors. */
3276
3277 static void
3278 print_started_pid (struct inferior_list_entry *entry)
3279 {
3280 struct process_info *process = (struct process_info *) entry;
3281
3282 if (! process->attached)
3283 {
3284 int pid = ptid_get_pid (process->entry.id);
3285 fprintf (stderr, " %d", pid);
3286 }
3287 }
3288
3289 /* for_each_inferior callback for detach_or_kill_for_exit to print
3290 the pids of attached inferiors. */
3291
3292 static void
3293 print_attached_pid (struct inferior_list_entry *entry)
3294 {
3295 struct process_info *process = (struct process_info *) entry;
3296
3297 if (process->attached)
3298 {
3299 int pid = ptid_get_pid (process->entry.id);
3300 fprintf (stderr, " %d", pid);
3301 }
3302 }
3303
3304 /* Call this when exiting gdbserver with possible inferiors that need
3305 to be killed or detached from. */
3306
3307 static void
3308 detach_or_kill_for_exit (void)
3309 {
3310 /* First print a list of the inferiors we will be killing/detaching.
3311 This is to assist the user, for example, in case the inferior unexpectedly
3312 dies after we exit: did we screw up or did the inferior exit on its own?
3313 Having this info will save some head-scratching. */
3314
3315 if (have_started_inferiors_p ())
3316 {
3317 fprintf (stderr, "Killing process(es):");
3318 for_each_inferior (&all_processes, print_started_pid);
3319 fprintf (stderr, "\n");
3320 }
3321 if (have_attached_inferiors_p ())
3322 {
3323 fprintf (stderr, "Detaching process(es):");
3324 for_each_inferior (&all_processes, print_attached_pid);
3325 fprintf (stderr, "\n");
3326 }
3327
3328 /* Now we can kill or detach the inferiors. */
3329
3330 for_each_inferior (&all_processes, detach_or_kill_inferior_callback);
3331 }
3332
3333 /* Value that will be passed to exit(3) when gdbserver exits. */
3334 static int exit_code;
3335
3336 /* Cleanup version of detach_or_kill_for_exit. */
3337
3338 static void
3339 detach_or_kill_for_exit_cleanup (void *ignore)
3340 {
3341
3342 TRY
3343 {
3344 detach_or_kill_for_exit ();
3345 }
3346
3347 CATCH (exception, RETURN_MASK_ALL)
3348 {
3349 fflush (stdout);
3350 fprintf (stderr, "Detach or kill failed: %s\n", exception.message);
3351 exit_code = 1;
3352 }
3353 END_CATCH
3354 }
3355
3356 /* Main function. This is called by the real "main" function,
3357 wrapped in a TRY_CATCH that handles any uncaught exceptions. */
3358
3359 static void ATTRIBUTE_NORETURN
3360 captured_main (int argc, char *argv[])
3361 {
3362 int bad_attach;
3363 int pid;
3364 char *arg_end, *port;
3365 char **next_arg = &argv[1];
3366 volatile int multi_mode = 0;
3367 volatile int attach = 0;
3368 int was_running;
3369
3370 while (*next_arg != NULL && **next_arg == '-')
3371 {
3372 if (strcmp (*next_arg, "--version") == 0)
3373 {
3374 gdbserver_version ();
3375 exit (0);
3376 }
3377 else if (strcmp (*next_arg, "--help") == 0)
3378 {
3379 gdbserver_usage (stdout);
3380 exit (0);
3381 }
3382 else if (strcmp (*next_arg, "--attach") == 0)
3383 attach = 1;
3384 else if (strcmp (*next_arg, "--multi") == 0)
3385 multi_mode = 1;
3386 else if (strcmp (*next_arg, "--wrapper") == 0)
3387 {
3388 next_arg++;
3389
3390 wrapper_argv = next_arg;
3391 while (*next_arg != NULL && strcmp (*next_arg, "--") != 0)
3392 next_arg++;
3393
3394 if (next_arg == wrapper_argv || *next_arg == NULL)
3395 {
3396 gdbserver_usage (stderr);
3397 exit (1);
3398 }
3399
3400 /* Consume the "--". */
3401 *next_arg = NULL;
3402 }
3403 else if (strcmp (*next_arg, "--debug") == 0)
3404 debug_threads = 1;
3405 else if (startswith (*next_arg, "--debug-format="))
3406 {
3407 char *error_msg
3408 = parse_debug_format_options ((*next_arg)
3409 + sizeof ("--debug-format=") - 1, 0);
3410
3411 if (error_msg != NULL)
3412 {
3413 fprintf (stderr, "%s", error_msg);
3414 exit (1);
3415 }
3416 }
3417 else if (strcmp (*next_arg, "--remote-debug") == 0)
3418 remote_debug = 1;
3419 else if (strcmp (*next_arg, "--disable-packet") == 0)
3420 {
3421 gdbserver_show_disableable (stdout);
3422 exit (0);
3423 }
3424 else if (startswith (*next_arg, "--disable-packet="))
3425 {
3426 char *packets, *tok;
3427
3428 packets = *next_arg += sizeof ("--disable-packet=") - 1;
3429 for (tok = strtok (packets, ",");
3430 tok != NULL;
3431 tok = strtok (NULL, ","))
3432 {
3433 if (strcmp ("vCont", tok) == 0)
3434 disable_packet_vCont = 1;
3435 else if (strcmp ("Tthread", tok) == 0)
3436 disable_packet_Tthread = 1;
3437 else if (strcmp ("qC", tok) == 0)
3438 disable_packet_qC = 1;
3439 else if (strcmp ("qfThreadInfo", tok) == 0)
3440 disable_packet_qfThreadInfo = 1;
3441 else if (strcmp ("threads", tok) == 0)
3442 {
3443 disable_packet_vCont = 1;
3444 disable_packet_Tthread = 1;
3445 disable_packet_qC = 1;
3446 disable_packet_qfThreadInfo = 1;
3447 }
3448 else
3449 {
3450 fprintf (stderr, "Don't know how to disable \"%s\".\n\n",
3451 tok);
3452 gdbserver_show_disableable (stderr);
3453 exit (1);
3454 }
3455 }
3456 }
3457 else if (strcmp (*next_arg, "-") == 0)
3458 {
3459 /* "-" specifies a stdio connection and is a form of port
3460 specification. */
3461 *next_arg = STDIO_CONNECTION_NAME;
3462 break;
3463 }
3464 else if (strcmp (*next_arg, "--disable-randomization") == 0)
3465 disable_randomization = 1;
3466 else if (strcmp (*next_arg, "--no-disable-randomization") == 0)
3467 disable_randomization = 0;
3468 else if (strcmp (*next_arg, "--once") == 0)
3469 run_once = 1;
3470 else
3471 {
3472 fprintf (stderr, "Unknown argument: %s\n", *next_arg);
3473 exit (1);
3474 }
3475
3476 next_arg++;
3477 continue;
3478 }
3479
3480 port = *next_arg;
3481 next_arg++;
3482 if (port == NULL || (!attach && !multi_mode && *next_arg == NULL))
3483 {
3484 gdbserver_usage (stderr);
3485 exit (1);
3486 }
3487
3488 /* Remember stdio descriptors. LISTEN_DESC must not be listed, it will be
3489 opened by remote_prepare. */
3490 notice_open_fds ();
3491
3492 /* We need to know whether the remote connection is stdio before
3493 starting the inferior. Inferiors created in this scenario have
3494 stdin,stdout redirected. So do this here before we call
3495 start_inferior. */
3496 remote_prepare (port);
3497
3498 bad_attach = 0;
3499 pid = 0;
3500
3501 /* --attach used to come after PORT, so allow it there for
3502 compatibility. */
3503 if (*next_arg != NULL && strcmp (*next_arg, "--attach") == 0)
3504 {
3505 attach = 1;
3506 next_arg++;
3507 }
3508
3509 if (attach
3510 && (*next_arg == NULL
3511 || (*next_arg)[0] == '\0'
3512 || (pid = strtoul (*next_arg, &arg_end, 0)) == 0
3513 || *arg_end != '\0'
3514 || next_arg[1] != NULL))
3515 bad_attach = 1;
3516
3517 if (bad_attach)
3518 {
3519 gdbserver_usage (stderr);
3520 exit (1);
3521 }
3522
3523 initialize_async_io ();
3524 initialize_low ();
3525 initialize_event_loop ();
3526 if (target_supports_tracepoints ())
3527 initialize_tracepoint ();
3528 initialize_notif ();
3529
3530 own_buf = (char *) xmalloc (PBUFSIZ + 1);
3531 mem_buf = (unsigned char *) xmalloc (PBUFSIZ);
3532
3533 if (pid == 0 && *next_arg != NULL)
3534 {
3535 int i, n;
3536
3537 n = argc - (next_arg - argv);
3538 program_argv = XNEWVEC (char *, n + 1);
3539 for (i = 0; i < n; i++)
3540 program_argv[i] = xstrdup (next_arg[i]);
3541 program_argv[i] = NULL;
3542
3543 /* Wait till we are at first instruction in program. */
3544 start_inferior (program_argv);
3545
3546 /* We are now (hopefully) stopped at the first instruction of
3547 the target process. This assumes that the target process was
3548 successfully created. */
3549 }
3550 else if (pid != 0)
3551 {
3552 if (attach_inferior (pid) == -1)
3553 error ("Attaching not supported on this target");
3554
3555 /* Otherwise succeeded. */
3556 }
3557 else
3558 {
3559 last_status.kind = TARGET_WAITKIND_EXITED;
3560 last_status.value.integer = 0;
3561 last_ptid = minus_one_ptid;
3562 }
3563 make_cleanup (detach_or_kill_for_exit_cleanup, NULL);
3564
3565 /* Don't report shared library events on the initial connection,
3566 even if some libraries are preloaded. Avoids the "stopped by
3567 shared library event" notice on gdb side. */
3568 dlls_changed = 0;
3569
3570 if (last_status.kind == TARGET_WAITKIND_EXITED
3571 || last_status.kind == TARGET_WAITKIND_SIGNALLED)
3572 was_running = 0;
3573 else
3574 was_running = 1;
3575
3576 if (!was_running && !multi_mode)
3577 error ("No program to debug");
3578
3579 while (1)
3580 {
3581
3582 noack_mode = 0;
3583 multi_process = 0;
3584 report_fork_events = 0;
3585 report_vfork_events = 0;
3586 report_exec_events = 0;
3587 /* Be sure we're out of tfind mode. */
3588 current_traceframe = -1;
3589 cont_thread = null_ptid;
3590 swbreak_feature = 0;
3591 hwbreak_feature = 0;
3592 vCont_supported = 0;
3593
3594 remote_open (port);
3595
3596 TRY
3597 {
3598 /* Wait for events. This will return when all event sources
3599 are removed from the event loop. */
3600 start_event_loop ();
3601
3602 /* If an exit was requested (using the "monitor exit"
3603 command), terminate now. The only other way to get
3604 here is for getpkt to fail; close the connection
3605 and reopen it at the top of the loop. */
3606
3607 if (exit_requested || run_once)
3608 throw_quit ("Quit");
3609
3610 fprintf (stderr,
3611 "Remote side has terminated connection. "
3612 "GDBserver will reopen the connection.\n");
3613
3614 /* Get rid of any pending statuses. An eventual reconnection
3615 (by the same GDB instance or another) will refresh all its
3616 state from scratch. */
3617 discard_queued_stop_replies (minus_one_ptid);
3618 for_each_inferior (&all_threads,
3619 clear_pending_status_callback);
3620
3621 if (tracing)
3622 {
3623 if (disconnected_tracing)
3624 {
3625 /* Try to enable non-stop/async mode, so we we can
3626 both wait for an async socket accept, and handle
3627 async target events simultaneously. There's also
3628 no point either in having the target always stop
3629 all threads, when we're going to pass signals
3630 down without informing GDB. */
3631 if (!non_stop)
3632 {
3633 if (start_non_stop (1))
3634 non_stop = 1;
3635
3636 /* Detaching implicitly resumes all threads;
3637 simply disconnecting does not. */
3638 }
3639 }
3640 else
3641 {
3642 fprintf (stderr,
3643 "Disconnected tracing disabled; "
3644 "stopping trace run.\n");
3645 stop_tracing ();
3646 }
3647 }
3648 }
3649 CATCH (exception, RETURN_MASK_ERROR)
3650 {
3651 fflush (stdout);
3652 fprintf (stderr, "gdbserver: %s\n", exception.message);
3653
3654 if (response_needed)
3655 {
3656 write_enn (own_buf);
3657 putpkt (own_buf);
3658 }
3659
3660 if (run_once)
3661 throw_quit ("Quit");
3662 }
3663 END_CATCH
3664 }
3665 }
3666
3667 /* Main function. */
3668
3669 int
3670 main (int argc, char *argv[])
3671 {
3672
3673 TRY
3674 {
3675 captured_main (argc, argv);
3676 }
3677 CATCH (exception, RETURN_MASK_ALL)
3678 {
3679 if (exception.reason == RETURN_ERROR)
3680 {
3681 fflush (stdout);
3682 fprintf (stderr, "%s\n", exception.message);
3683 fprintf (stderr, "Exiting\n");
3684 exit_code = 1;
3685 }
3686
3687 exit (exit_code);
3688 }
3689 END_CATCH
3690
3691 gdb_assert_not_reached ("captured_main should never return");
3692 }
3693
3694 /* Skip PACKET until the next semi-colon (or end of string). */
3695
3696 static void
3697 skip_to_semicolon (char **packet)
3698 {
3699 while (**packet != '\0' && **packet != ';')
3700 (*packet)++;
3701 }
3702
3703 /* Process options coming from Z packets for a breakpoint. PACKET is
3704 the packet buffer. *PACKET is updated to point to the first char
3705 after the last processed option. */
3706
3707 static void
3708 process_point_options (struct breakpoint *bp, char **packet)
3709 {
3710 char *dataptr = *packet;
3711 int persist;
3712
3713 /* Check if data has the correct format. */
3714 if (*dataptr != ';')
3715 return;
3716
3717 dataptr++;
3718
3719 while (*dataptr)
3720 {
3721 if (*dataptr == ';')
3722 ++dataptr;
3723
3724 if (*dataptr == 'X')
3725 {
3726 /* Conditional expression. */
3727 if (debug_threads)
3728 debug_printf ("Found breakpoint condition.\n");
3729 if (!add_breakpoint_condition (bp, &dataptr))
3730 skip_to_semicolon (&dataptr);
3731 }
3732 else if (startswith (dataptr, "cmds:"))
3733 {
3734 dataptr += strlen ("cmds:");
3735 if (debug_threads)
3736 debug_printf ("Found breakpoint commands %s.\n", dataptr);
3737 persist = (*dataptr == '1');
3738 dataptr += 2;
3739 if (add_breakpoint_commands (bp, &dataptr, persist))
3740 skip_to_semicolon (&dataptr);
3741 }
3742 else
3743 {
3744 fprintf (stderr, "Unknown token %c, ignoring.\n",
3745 *dataptr);
3746 /* Skip tokens until we find one that we recognize. */
3747 skip_to_semicolon (&dataptr);
3748 }
3749 }
3750 *packet = dataptr;
3751 }
3752
3753 /* Event loop callback that handles a serial event. The first byte in
3754 the serial buffer gets us here. We expect characters to arrive at
3755 a brisk pace, so we read the rest of the packet with a blocking
3756 getpkt call. */
3757
3758 static int
3759 process_serial_event (void)
3760 {
3761 char ch;
3762 int i = 0;
3763 int signal;
3764 unsigned int len;
3765 int res;
3766 CORE_ADDR mem_addr;
3767 int pid;
3768 unsigned char sig;
3769 int packet_len;
3770 int new_packet_len = -1;
3771
3772 /* Used to decide when gdbserver should exit in
3773 multi-mode/remote. */
3774 static int have_ran = 0;
3775
3776 if (!have_ran)
3777 have_ran = target_running ();
3778
3779 disable_async_io ();
3780
3781 response_needed = 0;
3782 packet_len = getpkt (own_buf);
3783 if (packet_len <= 0)
3784 {
3785 remote_close ();
3786 /* Force an event loop break. */
3787 return -1;
3788 }
3789 response_needed = 1;
3790
3791 i = 0;
3792 ch = own_buf[i++];
3793 switch (ch)
3794 {
3795 case 'q':
3796 handle_query (own_buf, packet_len, &new_packet_len);
3797 break;
3798 case 'Q':
3799 handle_general_set (own_buf);
3800 break;
3801 case 'D':
3802 require_running (own_buf);
3803
3804 if (multi_process)
3805 {
3806 i++; /* skip ';' */
3807 pid = strtol (&own_buf[i], NULL, 16);
3808 }
3809 else
3810 pid = ptid_get_pid (current_ptid);
3811
3812 if ((tracing && disconnected_tracing) || any_persistent_commands ())
3813 {
3814 struct thread_resume resume_info;
3815 struct process_info *process = find_process_pid (pid);
3816
3817 if (process == NULL)
3818 {
3819 write_enn (own_buf);
3820 break;
3821 }
3822
3823 if (tracing && disconnected_tracing)
3824 fprintf (stderr,
3825 "Disconnected tracing in effect, "
3826 "leaving gdbserver attached to the process\n");
3827
3828 if (any_persistent_commands ())
3829 fprintf (stderr,
3830 "Persistent commands are present, "
3831 "leaving gdbserver attached to the process\n");
3832
3833 /* Make sure we're in non-stop/async mode, so we we can both
3834 wait for an async socket accept, and handle async target
3835 events simultaneously. There's also no point either in
3836 having the target stop all threads, when we're going to
3837 pass signals down without informing GDB. */
3838 if (!non_stop)
3839 {
3840 if (debug_threads)
3841 debug_printf ("Forcing non-stop mode\n");
3842
3843 non_stop = 1;
3844 start_non_stop (1);
3845 }
3846
3847 process->gdb_detached = 1;
3848
3849 /* Detaching implicitly resumes all threads. */
3850 resume_info.thread = minus_one_ptid;
3851 resume_info.kind = resume_continue;
3852 resume_info.sig = 0;
3853 (*the_target->resume) (&resume_info, 1);
3854
3855 write_ok (own_buf);
3856 break; /* from switch/case */
3857 }
3858
3859 fprintf (stderr, "Detaching from process %d\n", pid);
3860 stop_tracing ();
3861 if (detach_inferior (pid) != 0)
3862 write_enn (own_buf);
3863 else
3864 {
3865 discard_queued_stop_replies (pid_to_ptid (pid));
3866 write_ok (own_buf);
3867
3868 if (extended_protocol)
3869 {
3870 /* Treat this like a normal program exit. */
3871 last_status.kind = TARGET_WAITKIND_EXITED;
3872 last_status.value.integer = 0;
3873 last_ptid = pid_to_ptid (pid);
3874
3875 current_thread = NULL;
3876 }
3877 else
3878 {
3879 putpkt (own_buf);
3880 remote_close ();
3881
3882 /* If we are attached, then we can exit. Otherwise, we
3883 need to hang around doing nothing, until the child is
3884 gone. */
3885 join_inferior (pid);
3886 exit (0);
3887 }
3888 }
3889 break;
3890 case '!':
3891 extended_protocol = 1;
3892 write_ok (own_buf);
3893 break;
3894 case '?':
3895 handle_status (own_buf);
3896 break;
3897 case 'H':
3898 if (own_buf[1] == 'c' || own_buf[1] == 'g' || own_buf[1] == 's')
3899 {
3900 ptid_t gdb_id, thread_id;
3901 int pid;
3902
3903 require_running (own_buf);
3904
3905 gdb_id = read_ptid (&own_buf[2], NULL);
3906
3907 pid = ptid_get_pid (gdb_id);
3908
3909 if (ptid_equal (gdb_id, null_ptid)
3910 || ptid_equal (gdb_id, minus_one_ptid))
3911 thread_id = null_ptid;
3912 else if (pid != 0
3913 && ptid_equal (pid_to_ptid (pid),
3914 gdb_id))
3915 {
3916 struct thread_info *thread =
3917 (struct thread_info *) find_inferior (&all_threads,
3918 first_thread_of,
3919 &pid);
3920 if (!thread)
3921 {
3922 write_enn (own_buf);
3923 break;
3924 }
3925
3926 thread_id = thread->entry.id;
3927 }
3928 else
3929 {
3930 thread_id = gdb_id_to_thread_id (gdb_id);
3931 if (ptid_equal (thread_id, null_ptid))
3932 {
3933 write_enn (own_buf);
3934 break;
3935 }
3936 }
3937
3938 if (own_buf[1] == 'g')
3939 {
3940 if (ptid_equal (thread_id, null_ptid))
3941 {
3942 /* GDB is telling us to choose any thread. Check if
3943 the currently selected thread is still valid. If
3944 it is not, select the first available. */
3945 struct thread_info *thread =
3946 (struct thread_info *) find_inferior_id (&all_threads,
3947 general_thread);
3948 if (thread == NULL)
3949 thread = get_first_thread ();
3950 thread_id = thread->entry.id;
3951 }
3952
3953 general_thread = thread_id;
3954 set_desired_thread (1);
3955 gdb_assert (current_thread != NULL);
3956 }
3957 else if (own_buf[1] == 'c')
3958 cont_thread = thread_id;
3959
3960 write_ok (own_buf);
3961 }
3962 else
3963 {
3964 /* Silently ignore it so that gdb can extend the protocol
3965 without compatibility headaches. */
3966 own_buf[0] = '\0';
3967 }
3968 break;
3969 case 'g':
3970 require_running (own_buf);
3971 if (current_traceframe >= 0)
3972 {
3973 struct regcache *regcache
3974 = new_register_cache (current_target_desc ());
3975
3976 if (fetch_traceframe_registers (current_traceframe,
3977 regcache, -1) == 0)
3978 registers_to_string (regcache, own_buf);
3979 else
3980 write_enn (own_buf);
3981 free_register_cache (regcache);
3982 }
3983 else
3984 {
3985 struct regcache *regcache;
3986
3987 if (!set_desired_thread (1))
3988 write_enn (own_buf);
3989 else
3990 {
3991 regcache = get_thread_regcache (current_thread, 1);
3992 registers_to_string (regcache, own_buf);
3993 }
3994 }
3995 break;
3996 case 'G':
3997 require_running (own_buf);
3998 if (current_traceframe >= 0)
3999 write_enn (own_buf);
4000 else
4001 {
4002 struct regcache *regcache;
4003
4004 if (!set_desired_thread (1))
4005 write_enn (own_buf);
4006 else
4007 {
4008 regcache = get_thread_regcache (current_thread, 1);
4009 registers_from_string (regcache, &own_buf[1]);
4010 write_ok (own_buf);
4011 }
4012 }
4013 break;
4014 case 'm':
4015 require_running (own_buf);
4016 decode_m_packet (&own_buf[1], &mem_addr, &len);
4017 res = gdb_read_memory (mem_addr, mem_buf, len);
4018 if (res < 0)
4019 write_enn (own_buf);
4020 else
4021 bin2hex (mem_buf, own_buf, res);
4022 break;
4023 case 'M':
4024 require_running (own_buf);
4025 decode_M_packet (&own_buf[1], &mem_addr, &len, &mem_buf);
4026 if (gdb_write_memory (mem_addr, mem_buf, len) == 0)
4027 write_ok (own_buf);
4028 else
4029 write_enn (own_buf);
4030 break;
4031 case 'X':
4032 require_running (own_buf);
4033 if (decode_X_packet (&own_buf[1], packet_len - 1,
4034 &mem_addr, &len, &mem_buf) < 0
4035 || gdb_write_memory (mem_addr, mem_buf, len) != 0)
4036 write_enn (own_buf);
4037 else
4038 write_ok (own_buf);
4039 break;
4040 case 'C':
4041 require_running (own_buf);
4042 hex2bin (own_buf + 1, &sig, 1);
4043 if (gdb_signal_to_host_p ((enum gdb_signal) sig))
4044 signal = gdb_signal_to_host ((enum gdb_signal) sig);
4045 else
4046 signal = 0;
4047 myresume (own_buf, 0, signal);
4048 break;
4049 case 'S':
4050 require_running (own_buf);
4051 hex2bin (own_buf + 1, &sig, 1);
4052 if (gdb_signal_to_host_p ((enum gdb_signal) sig))
4053 signal = gdb_signal_to_host ((enum gdb_signal) sig);
4054 else
4055 signal = 0;
4056 myresume (own_buf, 1, signal);
4057 break;
4058 case 'c':
4059 require_running (own_buf);
4060 signal = 0;
4061 myresume (own_buf, 0, signal);
4062 break;
4063 case 's':
4064 require_running (own_buf);
4065 signal = 0;
4066 myresume (own_buf, 1, signal);
4067 break;
4068 case 'Z': /* insert_ ... */
4069 /* Fallthrough. */
4070 case 'z': /* remove_ ... */
4071 {
4072 char *dataptr;
4073 ULONGEST addr;
4074 int kind;
4075 char type = own_buf[1];
4076 int res;
4077 const int insert = ch == 'Z';
4078 char *p = &own_buf[3];
4079
4080 p = unpack_varlen_hex (p, &addr);
4081 kind = strtol (p + 1, &dataptr, 16);
4082
4083 if (insert)
4084 {
4085 struct breakpoint *bp;
4086
4087 bp = set_gdb_breakpoint (type, addr, kind, &res);
4088 if (bp != NULL)
4089 {
4090 res = 0;
4091
4092 /* GDB may have sent us a list of *point parameters to
4093 be evaluated on the target's side. Read such list
4094 here. If we already have a list of parameters, GDB
4095 is telling us to drop that list and use this one
4096 instead. */
4097 clear_breakpoint_conditions_and_commands (bp);
4098 process_point_options (bp, &dataptr);
4099 }
4100 }
4101 else
4102 res = delete_gdb_breakpoint (type, addr, kind);
4103
4104 if (res == 0)
4105 write_ok (own_buf);
4106 else if (res == 1)
4107 /* Unsupported. */
4108 own_buf[0] = '\0';
4109 else
4110 write_enn (own_buf);
4111 break;
4112 }
4113 case 'k':
4114 response_needed = 0;
4115 if (!target_running ())
4116 /* The packet we received doesn't make sense - but we can't
4117 reply to it, either. */
4118 return 0;
4119
4120 fprintf (stderr, "Killing all inferiors\n");
4121 for_each_inferior (&all_processes, kill_inferior_callback);
4122
4123 /* When using the extended protocol, we wait with no program
4124 running. The traditional protocol will exit instead. */
4125 if (extended_protocol)
4126 {
4127 last_status.kind = TARGET_WAITKIND_EXITED;
4128 last_status.value.sig = GDB_SIGNAL_KILL;
4129 return 0;
4130 }
4131 else
4132 exit (0);
4133
4134 case 'T':
4135 {
4136 ptid_t gdb_id, thread_id;
4137
4138 require_running (own_buf);
4139
4140 gdb_id = read_ptid (&own_buf[1], NULL);
4141 thread_id = gdb_id_to_thread_id (gdb_id);
4142 if (ptid_equal (thread_id, null_ptid))
4143 {
4144 write_enn (own_buf);
4145 break;
4146 }
4147
4148 if (mythread_alive (thread_id))
4149 write_ok (own_buf);
4150 else
4151 write_enn (own_buf);
4152 }
4153 break;
4154 case 'R':
4155 response_needed = 0;
4156
4157 /* Restarting the inferior is only supported in the extended
4158 protocol. */
4159 if (extended_protocol)
4160 {
4161 if (target_running ())
4162 for_each_inferior (&all_processes,
4163 kill_inferior_callback);
4164 fprintf (stderr, "GDBserver restarting\n");
4165
4166 /* Wait till we are at 1st instruction in prog. */
4167 if (program_argv != NULL)
4168 {
4169 start_inferior (program_argv);
4170 if (last_status.kind == TARGET_WAITKIND_STOPPED)
4171 {
4172 /* Stopped at the first instruction of the target
4173 process. */
4174 general_thread = last_ptid;
4175 }
4176 else
4177 {
4178 /* Something went wrong. */
4179 general_thread = null_ptid;
4180 }
4181 }
4182 else
4183 {
4184 last_status.kind = TARGET_WAITKIND_EXITED;
4185 last_status.value.sig = GDB_SIGNAL_KILL;
4186 }
4187 return 0;
4188 }
4189 else
4190 {
4191 /* It is a request we don't understand. Respond with an
4192 empty packet so that gdb knows that we don't support this
4193 request. */
4194 own_buf[0] = '\0';
4195 break;
4196 }
4197 case 'v':
4198 /* Extended (long) request. */
4199 handle_v_requests (own_buf, packet_len, &new_packet_len);
4200 break;
4201
4202 default:
4203 /* It is a request we don't understand. Respond with an empty
4204 packet so that gdb knows that we don't support this
4205 request. */
4206 own_buf[0] = '\0';
4207 break;
4208 }
4209
4210 if (new_packet_len != -1)
4211 putpkt_binary (own_buf, new_packet_len);
4212 else
4213 putpkt (own_buf);
4214
4215 response_needed = 0;
4216
4217 if (!extended_protocol && have_ran && !target_running ())
4218 {
4219 /* In non-stop, defer exiting until GDB had a chance to query
4220 the whole vStopped list (until it gets an OK). */
4221 if (QUEUE_is_empty (notif_event_p, notif_stop.queue))
4222 {
4223 /* Be transparent when GDB is connected through stdio -- no
4224 need to spam GDB's console. */
4225 if (!remote_connection_is_stdio ())
4226 fprintf (stderr, "GDBserver exiting\n");
4227 remote_close ();
4228 exit (0);
4229 }
4230 }
4231
4232 if (exit_requested)
4233 return -1;
4234
4235 return 0;
4236 }
4237
4238 /* Event-loop callback for serial events. */
4239
4240 int
4241 handle_serial_event (int err, gdb_client_data client_data)
4242 {
4243 if (debug_threads)
4244 debug_printf ("handling possible serial event\n");
4245
4246 /* Really handle it. */
4247 if (process_serial_event () < 0)
4248 return -1;
4249
4250 /* Be sure to not change the selected thread behind GDB's back.
4251 Important in the non-stop mode asynchronous protocol. */
4252 set_desired_thread (1);
4253
4254 return 0;
4255 }
4256
4257 /* Event-loop callback for target events. */
4258
4259 int
4260 handle_target_event (int err, gdb_client_data client_data)
4261 {
4262 if (debug_threads)
4263 debug_printf ("handling possible target event\n");
4264
4265 last_ptid = mywait (minus_one_ptid, &last_status,
4266 TARGET_WNOHANG, 1);
4267
4268 if (last_status.kind == TARGET_WAITKIND_NO_RESUMED)
4269 {
4270 /* No RSP support for this yet. */
4271 }
4272 else if (last_status.kind != TARGET_WAITKIND_IGNORE)
4273 {
4274 int pid = ptid_get_pid (last_ptid);
4275 struct process_info *process = find_process_pid (pid);
4276 int forward_event = !gdb_connected () || process->gdb_detached;
4277
4278 if (last_status.kind == TARGET_WAITKIND_EXITED
4279 || last_status.kind == TARGET_WAITKIND_SIGNALLED)
4280 {
4281 mark_breakpoints_out (process);
4282 mourn_inferior (process);
4283 }
4284 else
4285 {
4286 /* We're reporting this thread as stopped. Update its
4287 "want-stopped" state to what the client wants, until it
4288 gets a new resume action. */
4289 current_thread->last_resume_kind = resume_stop;
4290 current_thread->last_status = last_status;
4291 }
4292
4293 if (forward_event)
4294 {
4295 if (!target_running ())
4296 {
4297 /* The last process exited. We're done. */
4298 exit (0);
4299 }
4300
4301 if (last_status.kind == TARGET_WAITKIND_STOPPED)
4302 {
4303 /* A thread stopped with a signal, but gdb isn't
4304 connected to handle it. Pass it down to the
4305 inferior, as if it wasn't being traced. */
4306 struct thread_resume resume_info;
4307
4308 if (debug_threads)
4309 debug_printf ("GDB not connected; forwarding event %d for"
4310 " [%s]\n",
4311 (int) last_status.kind,
4312 target_pid_to_str (last_ptid));
4313
4314 resume_info.thread = last_ptid;
4315 resume_info.kind = resume_continue;
4316 resume_info.sig = gdb_signal_to_host (last_status.value.sig);
4317 (*the_target->resume) (&resume_info, 1);
4318 }
4319 else if (debug_threads)
4320 debug_printf ("GDB not connected; ignoring event %d for [%s]\n",
4321 (int) last_status.kind,
4322 target_pid_to_str (last_ptid));
4323 }
4324 else
4325 {
4326 struct vstop_notif *vstop_notif = XNEW (struct vstop_notif);
4327
4328 vstop_notif->status = last_status;
4329 vstop_notif->ptid = last_ptid;
4330 /* Push Stop notification. */
4331 notif_push (&notif_stop,
4332 (struct notif_event *) vstop_notif);
4333 }
4334 }
4335
4336 /* Be sure to not change the selected thread behind GDB's back.
4337 Important in the non-stop mode asynchronous protocol. */
4338 set_desired_thread (1);
4339
4340 return 0;
4341 }