Commit | Line | Data |
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c906108c | 1 | /* Remote target communications for serial-line targets in custom GDB protocol |
8926118c | 2 | |
6aba47ca | 3 | Copyright (C) 1988, 1989, 1990, 1991, 1992, 1993, 1994, 1995, 1996, 1997, |
4c38e0a4 | 4 | 1998, 1999, 2000, 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008, 2009, |
7b6bb8da | 5 | 2010, 2011 Free Software Foundation, Inc. |
c906108c | 6 | |
c5aa993b JM |
7 | This file is part of GDB. |
8 | ||
9 | This program is free software; you can redistribute it and/or modify | |
10 | it under the terms of the GNU General Public License as published by | |
a9762ec7 | 11 | the Free Software Foundation; either version 3 of the License, or |
c5aa993b JM |
12 | (at your option) any later version. |
13 | ||
14 | This program is distributed in the hope that it will be useful, | |
15 | but WITHOUT ANY WARRANTY; without even the implied warranty of | |
16 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | |
17 | GNU General Public License for more details. | |
18 | ||
19 | You should have received a copy of the GNU General Public License | |
a9762ec7 | 20 | along with this program. If not, see <http://www.gnu.org/licenses/>. */ |
c5aa993b | 21 | |
23860348 | 22 | /* See the GDB User Guide for details of the GDB remote protocol. */ |
c5aa993b | 23 | |
c906108c SS |
24 | #include "defs.h" |
25 | #include "gdb_string.h" | |
26 | #include <ctype.h> | |
27 | #include <fcntl.h> | |
c906108c SS |
28 | #include "inferior.h" |
29 | #include "bfd.h" | |
30 | #include "symfile.h" | |
60250e8b | 31 | #include "exceptions.h" |
c906108c | 32 | #include "target.h" |
c5aa993b | 33 | /*#include "terminal.h" */ |
c906108c SS |
34 | #include "gdbcmd.h" |
35 | #include "objfiles.h" | |
36 | #include "gdb-stabs.h" | |
37 | #include "gdbthread.h" | |
c2c6d25f | 38 | #include "remote.h" |
4e052eda | 39 | #include "regcache.h" |
fd0407d6 | 40 | #include "value.h" |
1ff9c3d6 | 41 | #include "gdb_assert.h" |
6867ae3e | 42 | #include "observer.h" |
a77053c2 | 43 | #include "solib.h" |
37a105a1 DJ |
44 | #include "cli/cli-decode.h" |
45 | #include "cli/cli-setshow.h" | |
424163ea | 46 | #include "target-descriptions.h" |
c906108c | 47 | |
7a292a7a | 48 | #include <ctype.h> |
9846de1b | 49 | #include <sys/time.h> |
c906108c | 50 | |
43ff13b4 | 51 | #include "event-loop.h" |
c2c6d25f | 52 | #include "event-top.h" |
2acceee2 | 53 | #include "inf-loop.h" |
43ff13b4 | 54 | |
c906108c SS |
55 | #include <signal.h> |
56 | #include "serial.h" | |
57 | ||
6240bebf MS |
58 | #include "gdbcore.h" /* for exec_bfd */ |
59 | ||
449092f6 | 60 | #include "remote-fileio.h" |
a6b151f1 | 61 | #include "gdb/fileio.h" |
3e88cf8d | 62 | #include "gdb_stat.h" |
dc146f7c | 63 | #include "xml-support.h" |
449092f6 | 64 | |
fd79ecee DJ |
65 | #include "memory-map.h" |
66 | ||
35b1e5cc SS |
67 | #include "tracepoint.h" |
68 | #include "ax.h" | |
69 | #include "ax-gdb.h" | |
70 | ||
0df8b418 | 71 | /* Temp hacks for tracepoint encoding migration. */ |
35b1e5cc SS |
72 | static char *target_buf; |
73 | static long target_buf_size; | |
74 | /*static*/ void | |
9355b391 SS |
75 | encode_actions (struct breakpoint *t, struct bp_location *tloc, |
76 | char ***tdp_actions, char ***stepping_actions); | |
35b1e5cc | 77 | |
6765f3e5 DJ |
78 | /* The size to align memory write packets, when practical. The protocol |
79 | does not guarantee any alignment, and gdb will generate short | |
80 | writes and unaligned writes, but even as a best-effort attempt this | |
81 | can improve bulk transfers. For instance, if a write is misaligned | |
82 | relative to the target's data bus, the stub may need to make an extra | |
83 | round trip fetching data from the target. This doesn't make a | |
84 | huge difference, but it's easy to do, so we try to be helpful. | |
85 | ||
86 | The alignment chosen is arbitrary; usually data bus width is | |
87 | important here, not the possibly larger cache line size. */ | |
88 | enum { REMOTE_ALIGN_WRITES = 16 }; | |
89 | ||
23860348 | 90 | /* Prototypes for local functions. */ |
6426a772 JM |
91 | static void cleanup_sigint_signal_handler (void *dummy); |
92 | static void initialize_sigint_signal_handler (void); | |
6d820c5c | 93 | static int getpkt_sane (char **buf, long *sizeof_buf, int forever); |
74531fed PA |
94 | static int getpkt_or_notif_sane (char **buf, long *sizeof_buf, |
95 | int forever); | |
6426a772 | 96 | |
a14ed312 KB |
97 | static void handle_remote_sigint (int); |
98 | static void handle_remote_sigint_twice (int); | |
99 | static void async_remote_interrupt (gdb_client_data); | |
100 | void async_remote_interrupt_twice (gdb_client_data); | |
43ff13b4 | 101 | |
a14ed312 | 102 | static void remote_files_info (struct target_ops *ignore); |
c906108c | 103 | |
316f2060 | 104 | static void remote_prepare_to_store (struct regcache *regcache); |
c906108c | 105 | |
a14ed312 | 106 | static void remote_open (char *name, int from_tty); |
c906108c | 107 | |
a14ed312 | 108 | static void extended_remote_open (char *name, int from_tty); |
c906108c | 109 | |
75c99385 | 110 | static void remote_open_1 (char *, int, struct target_ops *, int extended_p); |
c906108c | 111 | |
a14ed312 | 112 | static void remote_close (int quitting); |
c906108c | 113 | |
136d6dae | 114 | static void remote_mourn (struct target_ops *ops); |
c906108c | 115 | |
a14ed312 | 116 | static void extended_remote_restart (void); |
c906108c | 117 | |
136d6dae | 118 | static void extended_remote_mourn (struct target_ops *); |
c906108c | 119 | |
a14ed312 | 120 | static void remote_mourn_1 (struct target_ops *); |
c906108c | 121 | |
6d820c5c | 122 | static void remote_send (char **buf, long *sizeof_buf_p); |
c906108c | 123 | |
a14ed312 | 124 | static int readchar (int timeout); |
c906108c | 125 | |
7d85a9c0 | 126 | static void remote_kill (struct target_ops *ops); |
c906108c | 127 | |
a14ed312 | 128 | static int tohex (int nib); |
c906108c | 129 | |
75c99385 PA |
130 | static int remote_can_async_p (void); |
131 | ||
132 | static int remote_is_async_p (void); | |
133 | ||
134 | static void remote_async (void (*callback) (enum inferior_event_type event_type, | |
135 | void *context), void *context); | |
136 | ||
137 | static int remote_async_mask (int new_mask); | |
138 | ||
136d6dae | 139 | static void remote_detach (struct target_ops *ops, char *args, int from_tty); |
c906108c | 140 | |
a14ed312 | 141 | static void remote_interrupt (int signo); |
c906108c | 142 | |
a14ed312 | 143 | static void remote_interrupt_twice (int signo); |
7a292a7a | 144 | |
a14ed312 | 145 | static void interrupt_query (void); |
c906108c | 146 | |
79d7f229 PA |
147 | static void set_general_thread (struct ptid ptid); |
148 | static void set_continue_thread (struct ptid ptid); | |
c906108c | 149 | |
a14ed312 | 150 | static void get_offsets (void); |
c906108c | 151 | |
6d820c5c DJ |
152 | static void skip_frame (void); |
153 | ||
154 | static long read_frame (char **buf_p, long *sizeof_buf); | |
c906108c | 155 | |
a14ed312 | 156 | static int hexnumlen (ULONGEST num); |
c906108c | 157 | |
a14ed312 | 158 | static void init_remote_ops (void); |
c906108c | 159 | |
a14ed312 | 160 | static void init_extended_remote_ops (void); |
c906108c | 161 | |
94cc34af | 162 | static void remote_stop (ptid_t); |
c906108c | 163 | |
a14ed312 | 164 | static int ishex (int ch, int *val); |
c906108c | 165 | |
a14ed312 | 166 | static int stubhex (int ch); |
c906108c | 167 | |
a14ed312 | 168 | static int hexnumstr (char *, ULONGEST); |
c906108c | 169 | |
a14ed312 | 170 | static int hexnumnstr (char *, ULONGEST, int); |
2df3850c | 171 | |
a14ed312 | 172 | static CORE_ADDR remote_address_masked (CORE_ADDR); |
c906108c | 173 | |
a14ed312 | 174 | static void print_packet (char *); |
c906108c | 175 | |
a14ed312 | 176 | static void compare_sections_command (char *, int); |
c906108c | 177 | |
a14ed312 | 178 | static void packet_command (char *, int); |
c906108c | 179 | |
a14ed312 | 180 | static int stub_unpack_int (char *buff, int fieldlength); |
c906108c | 181 | |
39f77062 | 182 | static ptid_t remote_current_thread (ptid_t oldptid); |
c906108c | 183 | |
a14ed312 | 184 | static void remote_find_new_threads (void); |
c906108c | 185 | |
79d7f229 | 186 | static void record_currthread (ptid_t currthread); |
c906108c | 187 | |
30559e10 | 188 | static int fromhex (int a); |
c906108c | 189 | |
00bf0b85 | 190 | extern int hex2bin (const char *hex, gdb_byte *bin, int count); |
c906108c | 191 | |
00bf0b85 | 192 | extern int bin2hex (const gdb_byte *bin, char *hex, int count); |
234fa6d1 | 193 | |
a14ed312 | 194 | static int putpkt_binary (char *buf, int cnt); |
c906108c | 195 | |
a14ed312 | 196 | static void check_binary_download (CORE_ADDR addr); |
c906108c | 197 | |
5a2468f5 | 198 | struct packet_config; |
5a2468f5 | 199 | |
a14ed312 | 200 | static void show_packet_config_cmd (struct packet_config *config); |
5a2468f5 | 201 | |
d471ea57 | 202 | static void update_packet_config (struct packet_config *config); |
5a2468f5 | 203 | |
bb572ddd DJ |
204 | static void set_remote_protocol_packet_cmd (char *args, int from_tty, |
205 | struct cmd_list_element *c); | |
206 | ||
207 | static void show_remote_protocol_packet_cmd (struct ui_file *file, | |
208 | int from_tty, | |
209 | struct cmd_list_element *c, | |
210 | const char *value); | |
211 | ||
82f73884 PA |
212 | static char *write_ptid (char *buf, const char *endbuf, ptid_t ptid); |
213 | static ptid_t read_ptid (char *buf, char **obuf); | |
214 | ||
d914c394 SS |
215 | static void remote_set_permissions (void); |
216 | ||
d5551862 | 217 | struct remote_state; |
00bf0b85 | 218 | static int remote_get_trace_status (struct trace_status *ts); |
d5551862 | 219 | |
00bf0b85 SS |
220 | static int remote_upload_tracepoints (struct uploaded_tp **utpp); |
221 | ||
222 | static int remote_upload_trace_state_variables (struct uploaded_tsv **utsvp); | |
223 | ||
c8d104ad PA |
224 | static void remote_query_supported (void); |
225 | ||
226 | static void remote_check_symbols (struct objfile *objfile); | |
227 | ||
a14ed312 | 228 | void _initialize_remote (void); |
c906108c | 229 | |
74531fed PA |
230 | struct stop_reply; |
231 | static struct stop_reply *stop_reply_xmalloc (void); | |
232 | static void stop_reply_xfree (struct stop_reply *); | |
233 | static void do_stop_reply_xfree (void *arg); | |
234 | static void remote_parse_stop_reply (char *buf, struct stop_reply *); | |
235 | static void push_stop_reply (struct stop_reply *); | |
236 | static void remote_get_pending_stop_replies (void); | |
237 | static void discard_pending_stop_replies (int pid); | |
238 | static int peek_stop_reply (ptid_t ptid); | |
239 | ||
240 | static void remote_async_inferior_event_handler (gdb_client_data); | |
241 | static void remote_async_get_pending_events_handler (gdb_client_data); | |
242 | ||
d3fd5342 PA |
243 | static void remote_terminal_ours (void); |
244 | ||
d962ef82 DJ |
245 | static int remote_read_description_p (struct target_ops *target); |
246 | ||
176a6961 | 247 | static void remote_console_output (char *msg); |
dde08ee1 | 248 | |
74531fed PA |
249 | /* The non-stop remote protocol provisions for one pending stop reply. |
250 | This is where we keep it until it is acknowledged. */ | |
251 | ||
252 | static struct stop_reply *pending_stop_reply = NULL; | |
253 | ||
a6b151f1 DJ |
254 | /* For "remote". */ |
255 | ||
256 | static struct cmd_list_element *remote_cmdlist; | |
257 | ||
bb572ddd DJ |
258 | /* For "set remote" and "show remote". */ |
259 | ||
260 | static struct cmd_list_element *remote_set_cmdlist; | |
261 | static struct cmd_list_element *remote_show_cmdlist; | |
262 | ||
ea9c271d DJ |
263 | /* Description of the remote protocol state for the currently |
264 | connected target. This is per-target state, and independent of the | |
265 | selected architecture. */ | |
266 | ||
267 | struct remote_state | |
268 | { | |
269 | /* A buffer to use for incoming packets, and its current size. The | |
270 | buffer is grown dynamically for larger incoming packets. | |
271 | Outgoing packets may also be constructed in this buffer. | |
272 | BUF_SIZE is always at least REMOTE_PACKET_SIZE; | |
273 | REMOTE_PACKET_SIZE should be used to limit the length of outgoing | |
274 | packets. */ | |
275 | char *buf; | |
276 | long buf_size; | |
be2a5f71 DJ |
277 | |
278 | /* If we negotiated packet size explicitly (and thus can bypass | |
279 | heuristics for the largest packet size that will not overflow | |
280 | a buffer in the stub), this will be set to that packet size. | |
281 | Otherwise zero, meaning to use the guessed size. */ | |
282 | long explicit_packet_size; | |
2d717e4f DJ |
283 | |
284 | /* remote_wait is normally called when the target is running and | |
285 | waits for a stop reply packet. But sometimes we need to call it | |
286 | when the target is already stopped. We can send a "?" packet | |
287 | and have remote_wait read the response. Or, if we already have | |
288 | the response, we can stash it in BUF and tell remote_wait to | |
289 | skip calling getpkt. This flag is set when BUF contains a | |
290 | stop reply packet and the target is not waiting. */ | |
291 | int cached_wait_status; | |
a6f3e723 SL |
292 | |
293 | /* True, if in no ack mode. That is, neither GDB nor the stub will | |
294 | expect acks from each other. The connection is assumed to be | |
295 | reliable. */ | |
296 | int noack_mode; | |
82f73884 PA |
297 | |
298 | /* True if we're connected in extended remote mode. */ | |
299 | int extended; | |
300 | ||
301 | /* True if the stub reported support for multi-process | |
302 | extensions. */ | |
303 | int multi_process_aware; | |
e24a49d8 PA |
304 | |
305 | /* True if we resumed the target and we're waiting for the target to | |
306 | stop. In the mean time, we can't start another command/query. | |
307 | The remote server wouldn't be ready to process it, so we'd | |
308 | timeout waiting for a reply that would never come and eventually | |
309 | we'd close the connection. This can happen in asynchronous mode | |
310 | because we allow GDB commands while the target is running. */ | |
311 | int waiting_for_stop_reply; | |
74531fed PA |
312 | |
313 | /* True if the stub reports support for non-stop mode. */ | |
314 | int non_stop_aware; | |
315 | ||
316 | /* True if the stub reports support for vCont;t. */ | |
317 | int support_vCont_t; | |
782b2b07 SS |
318 | |
319 | /* True if the stub reports support for conditional tracepoints. */ | |
320 | int cond_tracepoints; | |
3a29589a | 321 | |
7a697b8d SS |
322 | /* True if the stub reports support for fast tracepoints. */ |
323 | int fast_tracepoints; | |
324 | ||
0fb4aa4b PA |
325 | /* True if the stub reports support for static tracepoints. */ |
326 | int static_tracepoints; | |
327 | ||
d5551862 SS |
328 | /* True if the stub can continue running a trace while GDB is |
329 | disconnected. */ | |
330 | int disconnected_tracing; | |
331 | ||
3a29589a DJ |
332 | /* Nonzero if the user has pressed Ctrl-C, but the target hasn't |
333 | responded to that. */ | |
334 | int ctrlc_pending_p; | |
ea9c271d DJ |
335 | }; |
336 | ||
dc146f7c VP |
337 | /* Private data that we'll store in (struct thread_info)->private. */ |
338 | struct private_thread_info | |
339 | { | |
340 | char *extra; | |
341 | int core; | |
342 | }; | |
343 | ||
344 | static void | |
345 | free_private_thread_info (struct private_thread_info *info) | |
346 | { | |
347 | xfree (info->extra); | |
348 | xfree (info); | |
349 | } | |
350 | ||
82f73884 PA |
351 | /* Returns true if the multi-process extensions are in effect. */ |
352 | static int | |
353 | remote_multi_process_p (struct remote_state *rs) | |
354 | { | |
355 | return rs->extended && rs->multi_process_aware; | |
356 | } | |
357 | ||
ea9c271d DJ |
358 | /* This data could be associated with a target, but we do not always |
359 | have access to the current target when we need it, so for now it is | |
360 | static. This will be fine for as long as only one target is in use | |
361 | at a time. */ | |
362 | static struct remote_state remote_state; | |
363 | ||
364 | static struct remote_state * | |
0b83947e | 365 | get_remote_state_raw (void) |
ea9c271d DJ |
366 | { |
367 | return &remote_state; | |
368 | } | |
369 | ||
370 | /* Description of the remote protocol for a given architecture. */ | |
d01949b6 | 371 | |
ad10f812 AC |
372 | struct packet_reg |
373 | { | |
374 | long offset; /* Offset into G packet. */ | |
375 | long regnum; /* GDB's internal register number. */ | |
376 | LONGEST pnum; /* Remote protocol register number. */ | |
b323314b | 377 | int in_g_packet; /* Always part of G packet. */ |
1cf3db46 | 378 | /* long size in bytes; == register_size (target_gdbarch, regnum); |
23860348 | 379 | at present. */ |
1cf3db46 | 380 | /* char *name; == gdbarch_register_name (target_gdbarch, regnum); |
c9f4d572 | 381 | at present. */ |
ad10f812 AC |
382 | }; |
383 | ||
ea9c271d | 384 | struct remote_arch_state |
d01949b6 | 385 | { |
ad10f812 AC |
386 | /* Description of the remote protocol registers. */ |
387 | long sizeof_g_packet; | |
b323314b AC |
388 | |
389 | /* Description of the remote protocol registers indexed by REGNUM | |
f57d151a | 390 | (making an array gdbarch_num_regs in size). */ |
b323314b | 391 | struct packet_reg *regs; |
ad10f812 | 392 | |
d01949b6 AC |
393 | /* This is the size (in chars) of the first response to the ``g'' |
394 | packet. It is used as a heuristic when determining the maximum | |
395 | size of memory-read and memory-write packets. A target will | |
396 | typically only reserve a buffer large enough to hold the ``g'' | |
397 | packet. The size does not include packet overhead (headers and | |
23860348 | 398 | trailers). */ |
d01949b6 AC |
399 | long actual_register_packet_size; |
400 | ||
401 | /* This is the maximum size (in chars) of a non read/write packet. | |
23860348 | 402 | It is also used as a cap on the size of read/write packets. */ |
d01949b6 AC |
403 | long remote_packet_size; |
404 | }; | |
405 | ||
35b1e5cc SS |
406 | long sizeof_pkt = 2000; |
407 | ||
408 | /* Utility: generate error from an incoming stub packet. */ | |
409 | static void | |
410 | trace_error (char *buf) | |
411 | { | |
412 | if (*buf++ != 'E') | |
413 | return; /* not an error msg */ | |
414 | switch (*buf) | |
415 | { | |
416 | case '1': /* malformed packet error */ | |
417 | if (*++buf == '0') /* general case: */ | |
418 | error (_("remote.c: error in outgoing packet.")); | |
419 | else | |
420 | error (_("remote.c: error in outgoing packet at field #%ld."), | |
421 | strtol (buf, NULL, 16)); | |
422 | case '2': | |
423 | error (_("trace API error 0x%s."), ++buf); | |
424 | default: | |
425 | error (_("Target returns error code '%s'."), buf); | |
426 | } | |
427 | } | |
428 | ||
429 | /* Utility: wait for reply from stub, while accepting "O" packets. */ | |
430 | static char * | |
431 | remote_get_noisy_reply (char **buf_p, | |
432 | long *sizeof_buf) | |
433 | { | |
434 | do /* Loop on reply from remote stub. */ | |
435 | { | |
436 | char *buf; | |
a744cf53 | 437 | |
0df8b418 | 438 | QUIT; /* Allow user to bail out with ^C. */ |
35b1e5cc SS |
439 | getpkt (buf_p, sizeof_buf, 0); |
440 | buf = *buf_p; | |
ad91cd99 | 441 | if (buf[0] == 'E') |
35b1e5cc | 442 | trace_error (buf); |
dde08ee1 PA |
443 | else if (strncmp (buf, "qRelocInsn:", strlen ("qRelocInsn:")) == 0) |
444 | { | |
445 | ULONGEST ul; | |
446 | CORE_ADDR from, to, org_to; | |
447 | char *p, *pp; | |
448 | int adjusted_size = 0; | |
449 | volatile struct gdb_exception ex; | |
450 | ||
451 | p = buf + strlen ("qRelocInsn:"); | |
452 | pp = unpack_varlen_hex (p, &ul); | |
453 | if (*pp != ';') | |
cb91c06a | 454 | error (_("invalid qRelocInsn packet: %s"), buf); |
dde08ee1 PA |
455 | from = ul; |
456 | ||
457 | p = pp + 1; | |
a9cbf802 | 458 | unpack_varlen_hex (p, &ul); |
dde08ee1 PA |
459 | to = ul; |
460 | ||
461 | org_to = to; | |
462 | ||
463 | TRY_CATCH (ex, RETURN_MASK_ALL) | |
464 | { | |
465 | gdbarch_relocate_instruction (target_gdbarch, &to, from); | |
466 | } | |
467 | if (ex.reason >= 0) | |
468 | { | |
469 | adjusted_size = to - org_to; | |
470 | ||
471 | sprintf (buf, "qRelocInsn:%x", adjusted_size); | |
472 | putpkt (buf); | |
473 | } | |
474 | else if (ex.reason < 0 && ex.error == MEMORY_ERROR) | |
475 | { | |
476 | /* Propagate memory errors silently back to the target. | |
477 | The stub may have limited the range of addresses we | |
478 | can write to, for example. */ | |
479 | putpkt ("E01"); | |
480 | } | |
481 | else | |
482 | { | |
483 | /* Something unexpectedly bad happened. Be verbose so | |
484 | we can tell what, and propagate the error back to the | |
485 | stub, so it doesn't get stuck waiting for a | |
486 | response. */ | |
487 | exception_fprintf (gdb_stderr, ex, | |
488 | _("warning: relocating instruction: ")); | |
489 | putpkt ("E01"); | |
490 | } | |
491 | } | |
ad91cd99 | 492 | else if (buf[0] == 'O' && buf[1] != 'K') |
35b1e5cc SS |
493 | remote_console_output (buf + 1); /* 'O' message from stub */ |
494 | else | |
0df8b418 | 495 | return buf; /* Here's the actual reply. */ |
35b1e5cc SS |
496 | } |
497 | while (1); | |
498 | } | |
3c3bea1c | 499 | |
d01949b6 AC |
500 | /* Handle for retreving the remote protocol data from gdbarch. */ |
501 | static struct gdbarch_data *remote_gdbarch_data_handle; | |
502 | ||
ea9c271d DJ |
503 | static struct remote_arch_state * |
504 | get_remote_arch_state (void) | |
d01949b6 | 505 | { |
1cf3db46 | 506 | return gdbarch_data (target_gdbarch, remote_gdbarch_data_handle); |
d01949b6 AC |
507 | } |
508 | ||
0b83947e DJ |
509 | /* Fetch the global remote target state. */ |
510 | ||
511 | static struct remote_state * | |
512 | get_remote_state (void) | |
513 | { | |
514 | /* Make sure that the remote architecture state has been | |
515 | initialized, because doing so might reallocate rs->buf. Any | |
516 | function which calls getpkt also needs to be mindful of changes | |
517 | to rs->buf, but this call limits the number of places which run | |
518 | into trouble. */ | |
519 | get_remote_arch_state (); | |
520 | ||
521 | return get_remote_state_raw (); | |
522 | } | |
523 | ||
74ca34ce DJ |
524 | static int |
525 | compare_pnums (const void *lhs_, const void *rhs_) | |
526 | { | |
527 | const struct packet_reg * const *lhs = lhs_; | |
528 | const struct packet_reg * const *rhs = rhs_; | |
529 | ||
530 | if ((*lhs)->pnum < (*rhs)->pnum) | |
531 | return -1; | |
532 | else if ((*lhs)->pnum == (*rhs)->pnum) | |
533 | return 0; | |
534 | else | |
535 | return 1; | |
536 | } | |
537 | ||
d01949b6 AC |
538 | static void * |
539 | init_remote_state (struct gdbarch *gdbarch) | |
540 | { | |
74ca34ce | 541 | int regnum, num_remote_regs, offset; |
0b83947e | 542 | struct remote_state *rs = get_remote_state_raw (); |
ea9c271d | 543 | struct remote_arch_state *rsa; |
74ca34ce | 544 | struct packet_reg **remote_regs; |
ea9c271d DJ |
545 | |
546 | rsa = GDBARCH_OBSTACK_ZALLOC (gdbarch, struct remote_arch_state); | |
d01949b6 | 547 | |
123dc839 DJ |
548 | /* Use the architecture to build a regnum<->pnum table, which will be |
549 | 1:1 unless a feature set specifies otherwise. */ | |
f57d151a | 550 | rsa->regs = GDBARCH_OBSTACK_CALLOC (gdbarch, |
4a22f64d | 551 | gdbarch_num_regs (gdbarch), |
f57d151a | 552 | struct packet_reg); |
4a22f64d | 553 | for (regnum = 0; regnum < gdbarch_num_regs (gdbarch); regnum++) |
ad10f812 | 554 | { |
ea9c271d | 555 | struct packet_reg *r = &rsa->regs[regnum]; |
baef701f | 556 | |
4a22f64d | 557 | if (register_size (gdbarch, regnum) == 0) |
baef701f DJ |
558 | /* Do not try to fetch zero-sized (placeholder) registers. */ |
559 | r->pnum = -1; | |
560 | else | |
561 | r->pnum = gdbarch_remote_register_number (gdbarch, regnum); | |
562 | ||
b323314b | 563 | r->regnum = regnum; |
74ca34ce DJ |
564 | } |
565 | ||
566 | /* Define the g/G packet format as the contents of each register | |
567 | with a remote protocol number, in order of ascending protocol | |
568 | number. */ | |
569 | ||
4a22f64d UW |
570 | remote_regs = alloca (gdbarch_num_regs (gdbarch) |
571 | * sizeof (struct packet_reg *)); | |
f57d151a | 572 | for (num_remote_regs = 0, regnum = 0; |
4a22f64d | 573 | regnum < gdbarch_num_regs (gdbarch); |
f57d151a | 574 | regnum++) |
74ca34ce DJ |
575 | if (rsa->regs[regnum].pnum != -1) |
576 | remote_regs[num_remote_regs++] = &rsa->regs[regnum]; | |
7d58c67d | 577 | |
74ca34ce DJ |
578 | qsort (remote_regs, num_remote_regs, sizeof (struct packet_reg *), |
579 | compare_pnums); | |
580 | ||
581 | for (regnum = 0, offset = 0; regnum < num_remote_regs; regnum++) | |
582 | { | |
583 | remote_regs[regnum]->in_g_packet = 1; | |
584 | remote_regs[regnum]->offset = offset; | |
4a22f64d | 585 | offset += register_size (gdbarch, remote_regs[regnum]->regnum); |
ad10f812 AC |
586 | } |
587 | ||
74ca34ce DJ |
588 | /* Record the maximum possible size of the g packet - it may turn out |
589 | to be smaller. */ | |
590 | rsa->sizeof_g_packet = offset; | |
591 | ||
0df8b418 | 592 | /* Default maximum number of characters in a packet body. Many |
d01949b6 AC |
593 | remote stubs have a hardwired buffer size of 400 bytes |
594 | (c.f. BUFMAX in m68k-stub.c and i386-stub.c). BUFMAX-1 is used | |
595 | as the maximum packet-size to ensure that the packet and an extra | |
596 | NUL character can always fit in the buffer. This stops GDB | |
597 | trashing stubs that try to squeeze an extra NUL into what is | |
ea9c271d DJ |
598 | already a full buffer (As of 1999-12-04 that was most stubs). */ |
599 | rsa->remote_packet_size = 400 - 1; | |
d01949b6 | 600 | |
ea9c271d DJ |
601 | /* This one is filled in when a ``g'' packet is received. */ |
602 | rsa->actual_register_packet_size = 0; | |
603 | ||
604 | /* Should rsa->sizeof_g_packet needs more space than the | |
0df8b418 MS |
605 | default, adjust the size accordingly. Remember that each byte is |
606 | encoded as two characters. 32 is the overhead for the packet | |
607 | header / footer. NOTE: cagney/1999-10-26: I suspect that 8 | |
d01949b6 | 608 | (``$NN:G...#NN'') is a better guess, the below has been padded a |
23860348 | 609 | little. */ |
ea9c271d DJ |
610 | if (rsa->sizeof_g_packet > ((rsa->remote_packet_size - 32) / 2)) |
611 | rsa->remote_packet_size = (rsa->sizeof_g_packet * 2 + 32); | |
802188a7 | 612 | |
ea9c271d DJ |
613 | /* Make sure that the packet buffer is plenty big enough for |
614 | this architecture. */ | |
615 | if (rs->buf_size < rsa->remote_packet_size) | |
616 | { | |
617 | rs->buf_size = 2 * rsa->remote_packet_size; | |
7fca722e | 618 | rs->buf = xrealloc (rs->buf, rs->buf_size); |
ea9c271d | 619 | } |
6d820c5c | 620 | |
ea9c271d DJ |
621 | return rsa; |
622 | } | |
623 | ||
624 | /* Return the current allowed size of a remote packet. This is | |
625 | inferred from the current architecture, and should be used to | |
626 | limit the length of outgoing packets. */ | |
627 | static long | |
628 | get_remote_packet_size (void) | |
629 | { | |
be2a5f71 | 630 | struct remote_state *rs = get_remote_state (); |
ea9c271d DJ |
631 | struct remote_arch_state *rsa = get_remote_arch_state (); |
632 | ||
be2a5f71 DJ |
633 | if (rs->explicit_packet_size) |
634 | return rs->explicit_packet_size; | |
635 | ||
ea9c271d | 636 | return rsa->remote_packet_size; |
d01949b6 AC |
637 | } |
638 | ||
ad10f812 | 639 | static struct packet_reg * |
ea9c271d | 640 | packet_reg_from_regnum (struct remote_arch_state *rsa, long regnum) |
ad10f812 | 641 | { |
1cf3db46 | 642 | if (regnum < 0 && regnum >= gdbarch_num_regs (target_gdbarch)) |
b323314b AC |
643 | return NULL; |
644 | else | |
ad10f812 | 645 | { |
ea9c271d | 646 | struct packet_reg *r = &rsa->regs[regnum]; |
a744cf53 | 647 | |
b323314b AC |
648 | gdb_assert (r->regnum == regnum); |
649 | return r; | |
ad10f812 | 650 | } |
ad10f812 AC |
651 | } |
652 | ||
653 | static struct packet_reg * | |
ea9c271d | 654 | packet_reg_from_pnum (struct remote_arch_state *rsa, LONGEST pnum) |
ad10f812 | 655 | { |
b323314b | 656 | int i; |
a744cf53 | 657 | |
1cf3db46 | 658 | for (i = 0; i < gdbarch_num_regs (target_gdbarch); i++) |
ad10f812 | 659 | { |
ea9c271d | 660 | struct packet_reg *r = &rsa->regs[i]; |
a744cf53 | 661 | |
b323314b AC |
662 | if (r->pnum == pnum) |
663 | return r; | |
ad10f812 AC |
664 | } |
665 | return NULL; | |
d01949b6 AC |
666 | } |
667 | ||
3c3bea1c GS |
668 | /* FIXME: graces/2002-08-08: These variables should eventually be |
669 | bound to an instance of the target object (as in gdbarch-tdep()), | |
670 | when such a thing exists. */ | |
671 | ||
672 | /* This is set to the data address of the access causing the target | |
673 | to stop for a watchpoint. */ | |
674 | static CORE_ADDR remote_watch_data_address; | |
675 | ||
94e08568 | 676 | /* This is non-zero if target stopped for a watchpoint. */ |
3c3bea1c GS |
677 | static int remote_stopped_by_watchpoint_p; |
678 | ||
c906108c SS |
679 | static struct target_ops remote_ops; |
680 | ||
681 | static struct target_ops extended_remote_ops; | |
682 | ||
b84876c2 PA |
683 | static int remote_async_mask_value = 1; |
684 | ||
6426a772 JM |
685 | /* FIXME: cagney/1999-09-23: Even though getpkt was called with |
686 | ``forever'' still use the normal timeout mechanism. This is | |
687 | currently used by the ASYNC code to guarentee that target reads | |
688 | during the initial connect always time-out. Once getpkt has been | |
689 | modified to return a timeout indication and, in turn | |
690 | remote_wait()/wait_for_inferior() have gained a timeout parameter | |
23860348 | 691 | this can go away. */ |
6426a772 JM |
692 | static int wait_forever_enabled_p = 1; |
693 | ||
9a7071a8 JB |
694 | /* Allow the user to specify what sequence to send to the remote |
695 | when he requests a program interruption: Although ^C is usually | |
696 | what remote systems expect (this is the default, here), it is | |
697 | sometimes preferable to send a break. On other systems such | |
698 | as the Linux kernel, a break followed by g, which is Magic SysRq g | |
699 | is required in order to interrupt the execution. */ | |
700 | const char interrupt_sequence_control_c[] = "Ctrl-C"; | |
701 | const char interrupt_sequence_break[] = "BREAK"; | |
702 | const char interrupt_sequence_break_g[] = "BREAK-g"; | |
703 | static const char *interrupt_sequence_modes[] = | |
704 | { | |
705 | interrupt_sequence_control_c, | |
706 | interrupt_sequence_break, | |
707 | interrupt_sequence_break_g, | |
708 | NULL | |
709 | }; | |
710 | static const char *interrupt_sequence_mode = interrupt_sequence_control_c; | |
711 | ||
712 | static void | |
713 | show_interrupt_sequence (struct ui_file *file, int from_tty, | |
714 | struct cmd_list_element *c, | |
715 | const char *value) | |
716 | { | |
717 | if (interrupt_sequence_mode == interrupt_sequence_control_c) | |
718 | fprintf_filtered (file, | |
719 | _("Send the ASCII ETX character (Ctrl-c) " | |
720 | "to the remote target to interrupt the " | |
721 | "execution of the program.\n")); | |
722 | else if (interrupt_sequence_mode == interrupt_sequence_break) | |
723 | fprintf_filtered (file, | |
724 | _("send a break signal to the remote target " | |
725 | "to interrupt the execution of the program.\n")); | |
726 | else if (interrupt_sequence_mode == interrupt_sequence_break_g) | |
727 | fprintf_filtered (file, | |
728 | _("Send a break signal and 'g' a.k.a. Magic SysRq g to " | |
729 | "the remote target to interrupt the execution " | |
730 | "of Linux kernel.\n")); | |
731 | else | |
732 | internal_error (__FILE__, __LINE__, | |
733 | _("Invalid value for interrupt_sequence_mode: %s."), | |
734 | interrupt_sequence_mode); | |
735 | } | |
6426a772 | 736 | |
9a7071a8 JB |
737 | /* This boolean variable specifies whether interrupt_sequence is sent |
738 | to the remote target when gdb connects to it. | |
739 | This is mostly needed when you debug the Linux kernel: The Linux kernel | |
740 | expects BREAK g which is Magic SysRq g for connecting gdb. */ | |
741 | static int interrupt_on_connect = 0; | |
c906108c | 742 | |
9a7071a8 JB |
743 | /* This variable is used to implement the "set/show remotebreak" commands. |
744 | Since these commands are now deprecated in favor of "set/show remote | |
745 | interrupt-sequence", it no longer has any effect on the code. */ | |
c906108c SS |
746 | static int remote_break; |
747 | ||
9a7071a8 JB |
748 | static void |
749 | set_remotebreak (char *args, int from_tty, struct cmd_list_element *c) | |
750 | { | |
751 | if (remote_break) | |
752 | interrupt_sequence_mode = interrupt_sequence_break; | |
753 | else | |
754 | interrupt_sequence_mode = interrupt_sequence_control_c; | |
755 | } | |
756 | ||
757 | static void | |
758 | show_remotebreak (struct ui_file *file, int from_tty, | |
759 | struct cmd_list_element *c, | |
760 | const char *value) | |
761 | { | |
762 | } | |
763 | ||
c906108c SS |
764 | /* Descriptor for I/O to remote machine. Initialize it to NULL so that |
765 | remote_open knows that we don't have a file open when the program | |
766 | starts. */ | |
819cc324 | 767 | static struct serial *remote_desc = NULL; |
c906108c | 768 | |
c906108c SS |
769 | /* This variable sets the number of bits in an address that are to be |
770 | sent in a memory ("M" or "m") packet. Normally, after stripping | |
0df8b418 | 771 | leading zeros, the entire address would be sent. This variable |
c906108c SS |
772 | restricts the address to REMOTE_ADDRESS_SIZE bits. HISTORY: The |
773 | initial implementation of remote.c restricted the address sent in | |
774 | memory packets to ``host::sizeof long'' bytes - (typically 32 | |
775 | bits). Consequently, for 64 bit targets, the upper 32 bits of an | |
776 | address was never sent. Since fixing this bug may cause a break in | |
777 | some remote targets this variable is principly provided to | |
23860348 | 778 | facilitate backward compatibility. */ |
c906108c SS |
779 | |
780 | static int remote_address_size; | |
781 | ||
75c99385 PA |
782 | /* Temporary to track who currently owns the terminal. See |
783 | remote_terminal_* for more details. */ | |
6426a772 JM |
784 | |
785 | static int remote_async_terminal_ours_p; | |
786 | ||
2d717e4f DJ |
787 | /* The executable file to use for "run" on the remote side. */ |
788 | ||
789 | static char *remote_exec_file = ""; | |
790 | ||
11cf8741 | 791 | \f |
11cf8741 | 792 | /* User configurable variables for the number of characters in a |
ea9c271d DJ |
793 | memory read/write packet. MIN (rsa->remote_packet_size, |
794 | rsa->sizeof_g_packet) is the default. Some targets need smaller | |
24b06219 | 795 | values (fifo overruns, et.al.) and some users need larger values |
ad10f812 AC |
796 | (speed up transfers). The variables ``preferred_*'' (the user |
797 | request), ``current_*'' (what was actually set) and ``forced_*'' | |
23860348 | 798 | (Positive - a soft limit, negative - a hard limit). */ |
11cf8741 JM |
799 | |
800 | struct memory_packet_config | |
801 | { | |
802 | char *name; | |
803 | long size; | |
804 | int fixed_p; | |
805 | }; | |
806 | ||
807 | /* Compute the current size of a read/write packet. Since this makes | |
808 | use of ``actual_register_packet_size'' the computation is dynamic. */ | |
809 | ||
810 | static long | |
811 | get_memory_packet_size (struct memory_packet_config *config) | |
812 | { | |
d01949b6 | 813 | struct remote_state *rs = get_remote_state (); |
ea9c271d DJ |
814 | struct remote_arch_state *rsa = get_remote_arch_state (); |
815 | ||
11cf8741 JM |
816 | /* NOTE: The somewhat arbitrary 16k comes from the knowledge (folk |
817 | law?) that some hosts don't cope very well with large alloca() | |
818 | calls. Eventually the alloca() code will be replaced by calls to | |
819 | xmalloc() and make_cleanups() allowing this restriction to either | |
23860348 | 820 | be lifted or removed. */ |
11cf8741 JM |
821 | #ifndef MAX_REMOTE_PACKET_SIZE |
822 | #define MAX_REMOTE_PACKET_SIZE 16384 | |
823 | #endif | |
3de11b2e | 824 | /* NOTE: 20 ensures we can write at least one byte. */ |
11cf8741 | 825 | #ifndef MIN_REMOTE_PACKET_SIZE |
3de11b2e | 826 | #define MIN_REMOTE_PACKET_SIZE 20 |
11cf8741 JM |
827 | #endif |
828 | long what_they_get; | |
829 | if (config->fixed_p) | |
830 | { | |
831 | if (config->size <= 0) | |
832 | what_they_get = MAX_REMOTE_PACKET_SIZE; | |
833 | else | |
834 | what_they_get = config->size; | |
835 | } | |
836 | else | |
837 | { | |
ea9c271d | 838 | what_they_get = get_remote_packet_size (); |
23860348 | 839 | /* Limit the packet to the size specified by the user. */ |
11cf8741 JM |
840 | if (config->size > 0 |
841 | && what_they_get > config->size) | |
842 | what_they_get = config->size; | |
be2a5f71 DJ |
843 | |
844 | /* Limit it to the size of the targets ``g'' response unless we have | |
845 | permission from the stub to use a larger packet size. */ | |
846 | if (rs->explicit_packet_size == 0 | |
847 | && rsa->actual_register_packet_size > 0 | |
848 | && what_they_get > rsa->actual_register_packet_size) | |
849 | what_they_get = rsa->actual_register_packet_size; | |
11cf8741 JM |
850 | } |
851 | if (what_they_get > MAX_REMOTE_PACKET_SIZE) | |
852 | what_they_get = MAX_REMOTE_PACKET_SIZE; | |
853 | if (what_they_get < MIN_REMOTE_PACKET_SIZE) | |
854 | what_they_get = MIN_REMOTE_PACKET_SIZE; | |
6d820c5c DJ |
855 | |
856 | /* Make sure there is room in the global buffer for this packet | |
857 | (including its trailing NUL byte). */ | |
858 | if (rs->buf_size < what_they_get + 1) | |
859 | { | |
860 | rs->buf_size = 2 * what_they_get; | |
861 | rs->buf = xrealloc (rs->buf, 2 * what_they_get); | |
862 | } | |
863 | ||
11cf8741 JM |
864 | return what_they_get; |
865 | } | |
866 | ||
0df8b418 | 867 | /* Update the size of a read/write packet. If they user wants |
23860348 | 868 | something really big then do a sanity check. */ |
11cf8741 JM |
869 | |
870 | static void | |
871 | set_memory_packet_size (char *args, struct memory_packet_config *config) | |
872 | { | |
873 | int fixed_p = config->fixed_p; | |
874 | long size = config->size; | |
a744cf53 | 875 | |
11cf8741 | 876 | if (args == NULL) |
8a3fe4f8 | 877 | error (_("Argument required (integer, `fixed' or `limited').")); |
11cf8741 JM |
878 | else if (strcmp (args, "hard") == 0 |
879 | || strcmp (args, "fixed") == 0) | |
880 | fixed_p = 1; | |
881 | else if (strcmp (args, "soft") == 0 | |
882 | || strcmp (args, "limit") == 0) | |
883 | fixed_p = 0; | |
884 | else | |
885 | { | |
886 | char *end; | |
a744cf53 | 887 | |
11cf8741 JM |
888 | size = strtoul (args, &end, 0); |
889 | if (args == end) | |
8a3fe4f8 | 890 | error (_("Invalid %s (bad syntax)."), config->name); |
11cf8741 JM |
891 | #if 0 |
892 | /* Instead of explicitly capping the size of a packet to | |
893 | MAX_REMOTE_PACKET_SIZE or dissallowing it, the user is | |
894 | instead allowed to set the size to something arbitrarily | |
23860348 | 895 | large. */ |
11cf8741 | 896 | if (size > MAX_REMOTE_PACKET_SIZE) |
8a3fe4f8 | 897 | error (_("Invalid %s (too large)."), config->name); |
11cf8741 JM |
898 | #endif |
899 | } | |
23860348 | 900 | /* Extra checks? */ |
11cf8741 JM |
901 | if (fixed_p && !config->fixed_p) |
902 | { | |
e2e0b3e5 AC |
903 | if (! query (_("The target may not be able to correctly handle a %s\n" |
904 | "of %ld bytes. Change the packet size? "), | |
11cf8741 | 905 | config->name, size)) |
8a3fe4f8 | 906 | error (_("Packet size not changed.")); |
11cf8741 | 907 | } |
23860348 | 908 | /* Update the config. */ |
11cf8741 JM |
909 | config->fixed_p = fixed_p; |
910 | config->size = size; | |
911 | } | |
912 | ||
913 | static void | |
914 | show_memory_packet_size (struct memory_packet_config *config) | |
915 | { | |
a3f17187 | 916 | printf_filtered (_("The %s is %ld. "), config->name, config->size); |
11cf8741 | 917 | if (config->fixed_p) |
a3f17187 | 918 | printf_filtered (_("Packets are fixed at %ld bytes.\n"), |
11cf8741 JM |
919 | get_memory_packet_size (config)); |
920 | else | |
a3f17187 | 921 | printf_filtered (_("Packets are limited to %ld bytes.\n"), |
11cf8741 JM |
922 | get_memory_packet_size (config)); |
923 | } | |
924 | ||
925 | static struct memory_packet_config memory_write_packet_config = | |
926 | { | |
927 | "memory-write-packet-size", | |
928 | }; | |
929 | ||
930 | static void | |
931 | set_memory_write_packet_size (char *args, int from_tty) | |
932 | { | |
933 | set_memory_packet_size (args, &memory_write_packet_config); | |
934 | } | |
935 | ||
936 | static void | |
937 | show_memory_write_packet_size (char *args, int from_tty) | |
938 | { | |
939 | show_memory_packet_size (&memory_write_packet_config); | |
940 | } | |
941 | ||
942 | static long | |
943 | get_memory_write_packet_size (void) | |
944 | { | |
945 | return get_memory_packet_size (&memory_write_packet_config); | |
946 | } | |
947 | ||
948 | static struct memory_packet_config memory_read_packet_config = | |
949 | { | |
950 | "memory-read-packet-size", | |
951 | }; | |
952 | ||
953 | static void | |
954 | set_memory_read_packet_size (char *args, int from_tty) | |
955 | { | |
956 | set_memory_packet_size (args, &memory_read_packet_config); | |
957 | } | |
958 | ||
959 | static void | |
960 | show_memory_read_packet_size (char *args, int from_tty) | |
961 | { | |
962 | show_memory_packet_size (&memory_read_packet_config); | |
963 | } | |
964 | ||
965 | static long | |
966 | get_memory_read_packet_size (void) | |
967 | { | |
968 | long size = get_memory_packet_size (&memory_read_packet_config); | |
a744cf53 | 969 | |
11cf8741 JM |
970 | /* FIXME: cagney/1999-11-07: Functions like getpkt() need to get an |
971 | extra buffer size argument before the memory read size can be | |
ea9c271d DJ |
972 | increased beyond this. */ |
973 | if (size > get_remote_packet_size ()) | |
974 | size = get_remote_packet_size (); | |
11cf8741 JM |
975 | return size; |
976 | } | |
977 | ||
11cf8741 | 978 | \f |
5a2468f5 | 979 | /* Generic configuration support for packets the stub optionally |
0df8b418 | 980 | supports. Allows the user to specify the use of the packet as well |
23860348 | 981 | as allowing GDB to auto-detect support in the remote stub. */ |
5a2468f5 JM |
982 | |
983 | enum packet_support | |
984 | { | |
985 | PACKET_SUPPORT_UNKNOWN = 0, | |
986 | PACKET_ENABLE, | |
987 | PACKET_DISABLE | |
988 | }; | |
989 | ||
5a2468f5 JM |
990 | struct packet_config |
991 | { | |
bb572ddd DJ |
992 | const char *name; |
993 | const char *title; | |
7f19b9a2 | 994 | enum auto_boolean detect; |
5a2468f5 JM |
995 | enum packet_support support; |
996 | }; | |
997 | ||
d471ea57 | 998 | /* Analyze a packet's return value and update the packet config |
23860348 | 999 | accordingly. */ |
d471ea57 AC |
1000 | |
1001 | enum packet_result | |
1002 | { | |
1003 | PACKET_ERROR, | |
1004 | PACKET_OK, | |
1005 | PACKET_UNKNOWN | |
1006 | }; | |
1007 | ||
5a2468f5 | 1008 | static void |
d471ea57 | 1009 | update_packet_config (struct packet_config *config) |
5a2468f5 | 1010 | { |
d471ea57 AC |
1011 | switch (config->detect) |
1012 | { | |
7f19b9a2 | 1013 | case AUTO_BOOLEAN_TRUE: |
d471ea57 AC |
1014 | config->support = PACKET_ENABLE; |
1015 | break; | |
7f19b9a2 | 1016 | case AUTO_BOOLEAN_FALSE: |
d471ea57 AC |
1017 | config->support = PACKET_DISABLE; |
1018 | break; | |
7f19b9a2 | 1019 | case AUTO_BOOLEAN_AUTO: |
d471ea57 AC |
1020 | config->support = PACKET_SUPPORT_UNKNOWN; |
1021 | break; | |
1022 | } | |
5a2468f5 JM |
1023 | } |
1024 | ||
1025 | static void | |
fba45db2 | 1026 | show_packet_config_cmd (struct packet_config *config) |
5a2468f5 JM |
1027 | { |
1028 | char *support = "internal-error"; | |
a744cf53 | 1029 | |
5a2468f5 JM |
1030 | switch (config->support) |
1031 | { | |
1032 | case PACKET_ENABLE: | |
1033 | support = "enabled"; | |
1034 | break; | |
1035 | case PACKET_DISABLE: | |
1036 | support = "disabled"; | |
1037 | break; | |
1038 | case PACKET_SUPPORT_UNKNOWN: | |
1039 | support = "unknown"; | |
1040 | break; | |
1041 | } | |
1042 | switch (config->detect) | |
1043 | { | |
7f19b9a2 | 1044 | case AUTO_BOOLEAN_AUTO: |
3e43a32a MS |
1045 | printf_filtered (_("Support for the `%s' packet " |
1046 | "is auto-detected, currently %s.\n"), | |
37a105a1 | 1047 | config->name, support); |
5a2468f5 | 1048 | break; |
7f19b9a2 AC |
1049 | case AUTO_BOOLEAN_TRUE: |
1050 | case AUTO_BOOLEAN_FALSE: | |
37a105a1 DJ |
1051 | printf_filtered (_("Support for the `%s' packet is currently %s.\n"), |
1052 | config->name, support); | |
8e248173 | 1053 | break; |
5a2468f5 JM |
1054 | } |
1055 | } | |
1056 | ||
1057 | static void | |
bb572ddd DJ |
1058 | add_packet_config_cmd (struct packet_config *config, const char *name, |
1059 | const char *title, int legacy) | |
d471ea57 | 1060 | { |
5a2468f5 JM |
1061 | char *set_doc; |
1062 | char *show_doc; | |
d471ea57 | 1063 | char *cmd_name; |
3ed07be4 | 1064 | |
5a2468f5 JM |
1065 | config->name = name; |
1066 | config->title = title; | |
7f19b9a2 | 1067 | config->detect = AUTO_BOOLEAN_AUTO; |
8e248173 | 1068 | config->support = PACKET_SUPPORT_UNKNOWN; |
b435e160 AC |
1069 | set_doc = xstrprintf ("Set use of remote protocol `%s' (%s) packet", |
1070 | name, title); | |
3e43a32a MS |
1071 | show_doc = xstrprintf ("Show current use of remote " |
1072 | "protocol `%s' (%s) packet", | |
b435e160 | 1073 | name, title); |
d471ea57 | 1074 | /* set/show TITLE-packet {auto,on,off} */ |
b435e160 | 1075 | cmd_name = xstrprintf ("%s-packet", title); |
e9e68a56 | 1076 | add_setshow_auto_boolean_cmd (cmd_name, class_obscure, |
3e43a32a MS |
1077 | &config->detect, set_doc, |
1078 | show_doc, NULL, /* help_doc */ | |
bb572ddd DJ |
1079 | set_remote_protocol_packet_cmd, |
1080 | show_remote_protocol_packet_cmd, | |
1081 | &remote_set_cmdlist, &remote_show_cmdlist); | |
1eefb858 TT |
1082 | /* The command code copies the documentation strings. */ |
1083 | xfree (set_doc); | |
1084 | xfree (show_doc); | |
23860348 | 1085 | /* set/show remote NAME-packet {auto,on,off} -- legacy. */ |
d471ea57 AC |
1086 | if (legacy) |
1087 | { | |
1088 | char *legacy_name; | |
a744cf53 | 1089 | |
b435e160 | 1090 | legacy_name = xstrprintf ("%s-packet", name); |
d471ea57 | 1091 | add_alias_cmd (legacy_name, cmd_name, class_obscure, 0, |
bb572ddd | 1092 | &remote_set_cmdlist); |
d471ea57 | 1093 | add_alias_cmd (legacy_name, cmd_name, class_obscure, 0, |
bb572ddd | 1094 | &remote_show_cmdlist); |
d471ea57 | 1095 | } |
5a2468f5 JM |
1096 | } |
1097 | ||
d471ea57 | 1098 | static enum packet_result |
a76d924d | 1099 | packet_check_result (const char *buf) |
5a2468f5 | 1100 | { |
d471ea57 | 1101 | if (buf[0] != '\0') |
5a2468f5 | 1102 | { |
d471ea57 | 1103 | /* The stub recognized the packet request. Check that the |
23860348 | 1104 | operation succeeded. */ |
a76d924d DJ |
1105 | if (buf[0] == 'E' |
1106 | && isxdigit (buf[1]) && isxdigit (buf[2]) | |
1107 | && buf[3] == '\0') | |
1108 | /* "Enn" - definitly an error. */ | |
1109 | return PACKET_ERROR; | |
1110 | ||
1111 | /* Always treat "E." as an error. This will be used for | |
1112 | more verbose error messages, such as E.memtypes. */ | |
1113 | if (buf[0] == 'E' && buf[1] == '.') | |
1114 | return PACKET_ERROR; | |
1115 | ||
1116 | /* The packet may or may not be OK. Just assume it is. */ | |
1117 | return PACKET_OK; | |
1118 | } | |
1119 | else | |
1120 | /* The stub does not support the packet. */ | |
1121 | return PACKET_UNKNOWN; | |
1122 | } | |
1123 | ||
1124 | static enum packet_result | |
1125 | packet_ok (const char *buf, struct packet_config *config) | |
1126 | { | |
1127 | enum packet_result result; | |
1128 | ||
1129 | result = packet_check_result (buf); | |
1130 | switch (result) | |
1131 | { | |
1132 | case PACKET_OK: | |
1133 | case PACKET_ERROR: | |
1134 | /* The stub recognized the packet request. */ | |
d471ea57 AC |
1135 | switch (config->support) |
1136 | { | |
1137 | case PACKET_SUPPORT_UNKNOWN: | |
1138 | if (remote_debug) | |
1139 | fprintf_unfiltered (gdb_stdlog, | |
1140 | "Packet %s (%s) is supported\n", | |
1141 | config->name, config->title); | |
1142 | config->support = PACKET_ENABLE; | |
1143 | break; | |
1144 | case PACKET_DISABLE: | |
8e65ff28 | 1145 | internal_error (__FILE__, __LINE__, |
e2e0b3e5 | 1146 | _("packet_ok: attempt to use a disabled packet")); |
d471ea57 AC |
1147 | break; |
1148 | case PACKET_ENABLE: | |
1149 | break; | |
1150 | } | |
a76d924d DJ |
1151 | break; |
1152 | case PACKET_UNKNOWN: | |
23860348 | 1153 | /* The stub does not support the packet. */ |
d471ea57 AC |
1154 | switch (config->support) |
1155 | { | |
1156 | case PACKET_ENABLE: | |
7f19b9a2 | 1157 | if (config->detect == AUTO_BOOLEAN_AUTO) |
d471ea57 | 1158 | /* If the stub previously indicated that the packet was |
23860348 | 1159 | supported then there is a protocol error.. */ |
8a3fe4f8 | 1160 | error (_("Protocol error: %s (%s) conflicting enabled responses."), |
d471ea57 AC |
1161 | config->name, config->title); |
1162 | else | |
23860348 | 1163 | /* The user set it wrong. */ |
8a3fe4f8 | 1164 | error (_("Enabled packet %s (%s) not recognized by stub"), |
d471ea57 AC |
1165 | config->name, config->title); |
1166 | break; | |
1167 | case PACKET_SUPPORT_UNKNOWN: | |
1168 | if (remote_debug) | |
1169 | fprintf_unfiltered (gdb_stdlog, | |
1170 | "Packet %s (%s) is NOT supported\n", | |
1171 | config->name, config->title); | |
1172 | config->support = PACKET_DISABLE; | |
1173 | break; | |
1174 | case PACKET_DISABLE: | |
1175 | break; | |
1176 | } | |
a76d924d | 1177 | break; |
5a2468f5 | 1178 | } |
a76d924d DJ |
1179 | |
1180 | return result; | |
5a2468f5 JM |
1181 | } |
1182 | ||
444abaca DJ |
1183 | enum { |
1184 | PACKET_vCont = 0, | |
1185 | PACKET_X, | |
1186 | PACKET_qSymbol, | |
1187 | PACKET_P, | |
1188 | PACKET_p, | |
1189 | PACKET_Z0, | |
1190 | PACKET_Z1, | |
1191 | PACKET_Z2, | |
1192 | PACKET_Z3, | |
1193 | PACKET_Z4, | |
a6b151f1 DJ |
1194 | PACKET_vFile_open, |
1195 | PACKET_vFile_pread, | |
1196 | PACKET_vFile_pwrite, | |
1197 | PACKET_vFile_close, | |
1198 | PACKET_vFile_unlink, | |
0876f84a | 1199 | PACKET_qXfer_auxv, |
23181151 | 1200 | PACKET_qXfer_features, |
cfa9d6d9 | 1201 | PACKET_qXfer_libraries, |
fd79ecee | 1202 | PACKET_qXfer_memory_map, |
0e7f50da UW |
1203 | PACKET_qXfer_spu_read, |
1204 | PACKET_qXfer_spu_write, | |
07e059b5 | 1205 | PACKET_qXfer_osdata, |
dc146f7c | 1206 | PACKET_qXfer_threads, |
0fb4aa4b | 1207 | PACKET_qXfer_statictrace_read, |
b3b9301e | 1208 | PACKET_qXfer_traceframe_info, |
711e434b | 1209 | PACKET_qGetTIBAddr, |
444abaca | 1210 | PACKET_qGetTLSAddr, |
be2a5f71 | 1211 | PACKET_qSupported, |
89be2091 | 1212 | PACKET_QPassSignals, |
08388c79 | 1213 | PACKET_qSearch_memory, |
2d717e4f DJ |
1214 | PACKET_vAttach, |
1215 | PACKET_vRun, | |
a6f3e723 | 1216 | PACKET_QStartNoAckMode, |
82f73884 | 1217 | PACKET_vKill, |
4aa995e1 PA |
1218 | PACKET_qXfer_siginfo_read, |
1219 | PACKET_qXfer_siginfo_write, | |
0b16c5cf | 1220 | PACKET_qAttached, |
782b2b07 | 1221 | PACKET_ConditionalTracepoints, |
7a697b8d | 1222 | PACKET_FastTracepoints, |
0fb4aa4b | 1223 | PACKET_StaticTracepoints, |
40ab02ce MS |
1224 | PACKET_bc, |
1225 | PACKET_bs, | |
409873ef | 1226 | PACKET_TracepointSource, |
d914c394 | 1227 | PACKET_QAllow, |
444abaca DJ |
1228 | PACKET_MAX |
1229 | }; | |
506fb367 | 1230 | |
444abaca | 1231 | static struct packet_config remote_protocol_packets[PACKET_MAX]; |
dc8acb97 MS |
1232 | |
1233 | static void | |
444abaca DJ |
1234 | set_remote_protocol_packet_cmd (char *args, int from_tty, |
1235 | struct cmd_list_element *c) | |
dc8acb97 | 1236 | { |
444abaca | 1237 | struct packet_config *packet; |
dc8acb97 | 1238 | |
444abaca DJ |
1239 | for (packet = remote_protocol_packets; |
1240 | packet < &remote_protocol_packets[PACKET_MAX]; | |
1241 | packet++) | |
1242 | { | |
1243 | if (&packet->detect == c->var) | |
1244 | { | |
1245 | update_packet_config (packet); | |
1246 | return; | |
1247 | } | |
1248 | } | |
9b20d036 | 1249 | internal_error (__FILE__, __LINE__, _("Could not find config for %s"), |
444abaca | 1250 | c->name); |
dc8acb97 MS |
1251 | } |
1252 | ||
5a2468f5 | 1253 | static void |
444abaca DJ |
1254 | show_remote_protocol_packet_cmd (struct ui_file *file, int from_tty, |
1255 | struct cmd_list_element *c, | |
1256 | const char *value) | |
5a2468f5 | 1257 | { |
444abaca | 1258 | struct packet_config *packet; |
5a2468f5 | 1259 | |
444abaca DJ |
1260 | for (packet = remote_protocol_packets; |
1261 | packet < &remote_protocol_packets[PACKET_MAX]; | |
1262 | packet++) | |
1263 | { | |
1264 | if (&packet->detect == c->var) | |
1265 | { | |
1266 | show_packet_config_cmd (packet); | |
1267 | return; | |
1268 | } | |
1269 | } | |
9b20d036 | 1270 | internal_error (__FILE__, __LINE__, _("Could not find config for %s"), |
444abaca | 1271 | c->name); |
5a2468f5 JM |
1272 | } |
1273 | ||
d471ea57 AC |
1274 | /* Should we try one of the 'Z' requests? */ |
1275 | ||
1276 | enum Z_packet_type | |
1277 | { | |
1278 | Z_PACKET_SOFTWARE_BP, | |
1279 | Z_PACKET_HARDWARE_BP, | |
1280 | Z_PACKET_WRITE_WP, | |
1281 | Z_PACKET_READ_WP, | |
1282 | Z_PACKET_ACCESS_WP, | |
1283 | NR_Z_PACKET_TYPES | |
1284 | }; | |
96baa820 | 1285 | |
d471ea57 | 1286 | /* For compatibility with older distributions. Provide a ``set remote |
23860348 | 1287 | Z-packet ...'' command that updates all the Z packet types. */ |
d471ea57 | 1288 | |
7f19b9a2 | 1289 | static enum auto_boolean remote_Z_packet_detect; |
96baa820 JM |
1290 | |
1291 | static void | |
fba45db2 KB |
1292 | set_remote_protocol_Z_packet_cmd (char *args, int from_tty, |
1293 | struct cmd_list_element *c) | |
96baa820 | 1294 | { |
d471ea57 | 1295 | int i; |
a744cf53 | 1296 | |
d471ea57 AC |
1297 | for (i = 0; i < NR_Z_PACKET_TYPES; i++) |
1298 | { | |
444abaca DJ |
1299 | remote_protocol_packets[PACKET_Z0 + i].detect = remote_Z_packet_detect; |
1300 | update_packet_config (&remote_protocol_packets[PACKET_Z0 + i]); | |
d471ea57 | 1301 | } |
96baa820 JM |
1302 | } |
1303 | ||
1304 | static void | |
08546159 AC |
1305 | show_remote_protocol_Z_packet_cmd (struct ui_file *file, int from_tty, |
1306 | struct cmd_list_element *c, | |
1307 | const char *value) | |
96baa820 | 1308 | { |
d471ea57 | 1309 | int i; |
a744cf53 | 1310 | |
d471ea57 AC |
1311 | for (i = 0; i < NR_Z_PACKET_TYPES; i++) |
1312 | { | |
444abaca | 1313 | show_packet_config_cmd (&remote_protocol_packets[PACKET_Z0 + i]); |
d471ea57 | 1314 | } |
96baa820 JM |
1315 | } |
1316 | ||
9d1f7ab2 MS |
1317 | /* Should we try the 'ThreadInfo' query packet? |
1318 | ||
1319 | This variable (NOT available to the user: auto-detect only!) | |
1320 | determines whether GDB will use the new, simpler "ThreadInfo" | |
1321 | query or the older, more complex syntax for thread queries. | |
802188a7 | 1322 | This is an auto-detect variable (set to true at each connect, |
9d1f7ab2 MS |
1323 | and set to false when the target fails to recognize it). */ |
1324 | ||
1325 | static int use_threadinfo_query; | |
1326 | static int use_threadextra_query; | |
1327 | ||
23860348 | 1328 | /* Tokens for use by the asynchronous signal handlers for SIGINT. */ |
d5d6fca5 DJ |
1329 | static struct async_signal_handler *sigint_remote_twice_token; |
1330 | static struct async_signal_handler *sigint_remote_token; | |
43ff13b4 | 1331 | |
74531fed PA |
1332 | \f |
1333 | /* Asynchronous signal handle registered as event loop source for | |
1334 | when we have pending events ready to be passed to the core. */ | |
1335 | ||
1336 | static struct async_event_handler *remote_async_inferior_event_token; | |
1337 | ||
1338 | /* Asynchronous signal handle registered as event loop source for when | |
1339 | the remote sent us a %Stop notification. The registered callback | |
1340 | will do a vStopped sequence to pull the rest of the events out of | |
1341 | the remote side into our event queue. */ | |
1342 | ||
1343 | static struct async_event_handler *remote_async_get_pending_events_token; | |
c906108c SS |
1344 | \f |
1345 | ||
79d7f229 PA |
1346 | static ptid_t magic_null_ptid; |
1347 | static ptid_t not_sent_ptid; | |
1348 | static ptid_t any_thread_ptid; | |
1349 | ||
1350 | /* These are the threads which we last sent to the remote system. The | |
1351 | TID member will be -1 for all or -2 for not sent yet. */ | |
1352 | ||
1353 | static ptid_t general_thread; | |
1354 | static ptid_t continue_thread; | |
c5aa993b | 1355 | |
e6e4e701 PA |
1356 | /* This the traceframe which we last selected on the remote system. |
1357 | It will be -1 if no traceframe is selected. */ | |
1358 | static int remote_traceframe_number = -1; | |
1359 | ||
0b16c5cf PA |
1360 | /* Find out if the stub attached to PID (and hence GDB should offer to |
1361 | detach instead of killing it when bailing out). */ | |
1362 | ||
1363 | static int | |
1364 | remote_query_attached (int pid) | |
1365 | { | |
1366 | struct remote_state *rs = get_remote_state (); | |
1367 | ||
1368 | if (remote_protocol_packets[PACKET_qAttached].support == PACKET_DISABLE) | |
1369 | return 0; | |
1370 | ||
1371 | if (remote_multi_process_p (rs)) | |
1372 | sprintf (rs->buf, "qAttached:%x", pid); | |
1373 | else | |
1374 | sprintf (rs->buf, "qAttached"); | |
1375 | ||
1376 | putpkt (rs->buf); | |
1377 | getpkt (&rs->buf, &rs->buf_size, 0); | |
1378 | ||
1379 | switch (packet_ok (rs->buf, | |
1554e9be | 1380 | &remote_protocol_packets[PACKET_qAttached])) |
0b16c5cf PA |
1381 | { |
1382 | case PACKET_OK: | |
1383 | if (strcmp (rs->buf, "1") == 0) | |
1384 | return 1; | |
1385 | break; | |
1386 | case PACKET_ERROR: | |
1387 | warning (_("Remote failure reply: %s"), rs->buf); | |
1388 | break; | |
1389 | case PACKET_UNKNOWN: | |
1390 | break; | |
1391 | } | |
1392 | ||
1393 | return 0; | |
1394 | } | |
1395 | ||
1941c569 PA |
1396 | /* Add PID to GDB's inferior table. Since we can be connected to a |
1397 | remote system before before knowing about any inferior, mark the | |
0b16c5cf PA |
1398 | target with execution when we find the first inferior. If ATTACHED |
1399 | is 1, then we had just attached to this inferior. If it is 0, then | |
1400 | we just created this inferior. If it is -1, then try querying the | |
1401 | remote stub to find out if it had attached to the inferior or | |
1402 | not. */ | |
1941c569 PA |
1403 | |
1404 | static struct inferior * | |
0b16c5cf | 1405 | remote_add_inferior (int pid, int attached) |
1941c569 | 1406 | { |
1941c569 PA |
1407 | struct inferior *inf; |
1408 | ||
0b16c5cf PA |
1409 | /* Check whether this process we're learning about is to be |
1410 | considered attached, or if is to be considered to have been | |
1411 | spawned by the stub. */ | |
1412 | if (attached == -1) | |
1413 | attached = remote_query_attached (pid); | |
1414 | ||
6c95b8df PA |
1415 | if (gdbarch_has_global_solist (target_gdbarch)) |
1416 | { | |
1417 | /* If the target shares code across all inferiors, then every | |
1418 | attach adds a new inferior. */ | |
1419 | inf = add_inferior (pid); | |
1420 | ||
1421 | /* ... and every inferior is bound to the same program space. | |
1422 | However, each inferior may still have its own address | |
1423 | space. */ | |
1424 | inf->aspace = maybe_new_address_space (); | |
1425 | inf->pspace = current_program_space; | |
1426 | } | |
1427 | else | |
1428 | { | |
1429 | /* In the traditional debugging scenario, there's a 1-1 match | |
1430 | between program/address spaces. We simply bind the inferior | |
1431 | to the program space's address space. */ | |
1432 | inf = current_inferior (); | |
1433 | inferior_appeared (inf, pid); | |
1434 | } | |
1941c569 | 1435 | |
0b16c5cf PA |
1436 | inf->attach_flag = attached; |
1437 | ||
1941c569 PA |
1438 | return inf; |
1439 | } | |
1440 | ||
1441 | /* Add thread PTID to GDB's thread list. Tag it as executing/running | |
1442 | according to RUNNING. */ | |
1443 | ||
c906108c | 1444 | static void |
1941c569 | 1445 | remote_add_thread (ptid_t ptid, int running) |
c906108c | 1446 | { |
1941c569 PA |
1447 | add_thread (ptid); |
1448 | ||
1449 | set_executing (ptid, running); | |
1450 | set_running (ptid, running); | |
1451 | } | |
1452 | ||
1453 | /* Come here when we learn about a thread id from the remote target. | |
1454 | It may be the first time we hear about such thread, so take the | |
1455 | opportunity to add it to GDB's thread list. In case this is the | |
1456 | first time we're noticing its corresponding inferior, add it to | |
1457 | GDB's inferior list as well. */ | |
1458 | ||
1459 | static void | |
1460 | remote_notice_new_inferior (ptid_t currthread, int running) | |
1461 | { | |
c906108c SS |
1462 | /* If this is a new thread, add it to GDB's thread list. |
1463 | If we leave it up to WFI to do this, bad things will happen. */ | |
82f73884 PA |
1464 | |
1465 | if (in_thread_list (currthread) && is_exited (currthread)) | |
1466 | { | |
1467 | /* We're seeing an event on a thread id we knew had exited. | |
1468 | This has to be a new thread reusing the old id. Add it. */ | |
1941c569 | 1469 | remote_add_thread (currthread, running); |
82f73884 PA |
1470 | return; |
1471 | } | |
1472 | ||
79d7f229 | 1473 | if (!in_thread_list (currthread)) |
c0a2216e | 1474 | { |
1941c569 | 1475 | struct inferior *inf = NULL; |
bad34192 | 1476 | int pid = ptid_get_pid (currthread); |
1941c569 | 1477 | |
bad34192 PA |
1478 | if (ptid_is_pid (inferior_ptid) |
1479 | && pid == ptid_get_pid (inferior_ptid)) | |
c0a2216e PA |
1480 | { |
1481 | /* inferior_ptid has no thread member yet. This can happen | |
1482 | with the vAttach -> remote_wait,"TAAthread:" path if the | |
1483 | stub doesn't support qC. This is the first stop reported | |
1484 | after an attach, so this is the main thread. Update the | |
1485 | ptid in the thread list. */ | |
bad34192 PA |
1486 | if (in_thread_list (pid_to_ptid (pid))) |
1487 | thread_change_ptid (inferior_ptid, currthread); | |
1488 | else | |
1489 | { | |
1490 | remote_add_thread (currthread, running); | |
1491 | inferior_ptid = currthread; | |
1492 | } | |
dc146f7c | 1493 | return; |
c0a2216e | 1494 | } |
82f73884 PA |
1495 | |
1496 | if (ptid_equal (magic_null_ptid, inferior_ptid)) | |
c0a2216e PA |
1497 | { |
1498 | /* inferior_ptid is not set yet. This can happen with the | |
1499 | vRun -> remote_wait,"TAAthread:" path if the stub | |
1500 | doesn't support qC. This is the first stop reported | |
1501 | after an attach, so this is the main thread. Update the | |
1502 | ptid in the thread list. */ | |
dc146f7c | 1503 | thread_change_ptid (inferior_ptid, currthread); |
82f73884 | 1504 | return; |
c0a2216e | 1505 | } |
82f73884 | 1506 | |
29c87f7f PA |
1507 | /* When connecting to a target remote, or to a target |
1508 | extended-remote which already was debugging an inferior, we | |
1509 | may not know about it yet. Add it before adding its child | |
1510 | thread, so notifications are emitted in a sensible order. */ | |
1511 | if (!in_inferior_list (ptid_get_pid (currthread))) | |
0b16c5cf | 1512 | inf = remote_add_inferior (ptid_get_pid (currthread), -1); |
29c87f7f | 1513 | |
82f73884 | 1514 | /* This is really a new thread. Add it. */ |
1941c569 PA |
1515 | remote_add_thread (currthread, running); |
1516 | ||
1517 | /* If we found a new inferior, let the common code do whatever | |
1518 | it needs to with it (e.g., read shared libraries, insert | |
1519 | breakpoints). */ | |
1520 | if (inf != NULL) | |
1521 | notice_new_inferior (currthread, running, 0); | |
c0a2216e | 1522 | } |
c906108c SS |
1523 | } |
1524 | ||
dc146f7c VP |
1525 | /* Return the private thread data, creating it if necessary. */ |
1526 | ||
1527 | struct private_thread_info * | |
1528 | demand_private_info (ptid_t ptid) | |
1529 | { | |
1530 | struct thread_info *info = find_thread_ptid (ptid); | |
1531 | ||
1532 | gdb_assert (info); | |
1533 | ||
1534 | if (!info->private) | |
1535 | { | |
1536 | info->private = xmalloc (sizeof (*(info->private))); | |
1537 | info->private_dtor = free_private_thread_info; | |
1538 | info->private->core = -1; | |
1539 | info->private->extra = 0; | |
1540 | } | |
1541 | ||
1542 | return info->private; | |
1543 | } | |
1544 | ||
74531fed PA |
1545 | /* Call this function as a result of |
1546 | 1) A halt indication (T packet) containing a thread id | |
1547 | 2) A direct query of currthread | |
0df8b418 | 1548 | 3) Successful execution of set thread */ |
74531fed PA |
1549 | |
1550 | static void | |
1551 | record_currthread (ptid_t currthread) | |
1552 | { | |
1553 | general_thread = currthread; | |
74531fed PA |
1554 | } |
1555 | ||
89be2091 DJ |
1556 | static char *last_pass_packet; |
1557 | ||
1558 | /* If 'QPassSignals' is supported, tell the remote stub what signals | |
1559 | it can simply pass through to the inferior without reporting. */ | |
1560 | ||
1561 | static void | |
1562 | remote_pass_signals (void) | |
1563 | { | |
1564 | if (remote_protocol_packets[PACKET_QPassSignals].support != PACKET_DISABLE) | |
1565 | { | |
1566 | char *pass_packet, *p; | |
1567 | int numsigs = (int) TARGET_SIGNAL_LAST; | |
1568 | int count = 0, i; | |
1569 | ||
1570 | gdb_assert (numsigs < 256); | |
1571 | for (i = 0; i < numsigs; i++) | |
1572 | { | |
1573 | if (signal_stop_state (i) == 0 | |
1574 | && signal_print_state (i) == 0 | |
1575 | && signal_pass_state (i) == 1) | |
1576 | count++; | |
1577 | } | |
1578 | pass_packet = xmalloc (count * 3 + strlen ("QPassSignals:") + 1); | |
1579 | strcpy (pass_packet, "QPassSignals:"); | |
1580 | p = pass_packet + strlen (pass_packet); | |
1581 | for (i = 0; i < numsigs; i++) | |
1582 | { | |
1583 | if (signal_stop_state (i) == 0 | |
1584 | && signal_print_state (i) == 0 | |
1585 | && signal_pass_state (i) == 1) | |
1586 | { | |
1587 | if (i >= 16) | |
1588 | *p++ = tohex (i >> 4); | |
1589 | *p++ = tohex (i & 15); | |
1590 | if (count) | |
1591 | *p++ = ';'; | |
1592 | else | |
1593 | break; | |
1594 | count--; | |
1595 | } | |
1596 | } | |
1597 | *p = 0; | |
1598 | if (!last_pass_packet || strcmp (last_pass_packet, pass_packet)) | |
1599 | { | |
1600 | struct remote_state *rs = get_remote_state (); | |
1601 | char *buf = rs->buf; | |
1602 | ||
1603 | putpkt (pass_packet); | |
1604 | getpkt (&rs->buf, &rs->buf_size, 0); | |
1605 | packet_ok (buf, &remote_protocol_packets[PACKET_QPassSignals]); | |
1606 | if (last_pass_packet) | |
1607 | xfree (last_pass_packet); | |
1608 | last_pass_packet = pass_packet; | |
1609 | } | |
1610 | else | |
1611 | xfree (pass_packet); | |
1612 | } | |
1613 | } | |
1614 | ||
f0223081 PA |
1615 | static void |
1616 | remote_notice_signals (ptid_t ptid) | |
1617 | { | |
1618 | /* Update the remote on signals to silently pass, if they've | |
1619 | changed. */ | |
1620 | remote_pass_signals (); | |
1621 | } | |
1622 | ||
79d7f229 PA |
1623 | /* If PTID is MAGIC_NULL_PTID, don't set any thread. If PTID is |
1624 | MINUS_ONE_PTID, set the thread to -1, so the stub returns the | |
1625 | thread. If GEN is set, set the general thread, if not, then set | |
1626 | the step/continue thread. */ | |
c906108c | 1627 | static void |
79d7f229 | 1628 | set_thread (struct ptid ptid, int gen) |
c906108c | 1629 | { |
d01949b6 | 1630 | struct remote_state *rs = get_remote_state (); |
79d7f229 | 1631 | ptid_t state = gen ? general_thread : continue_thread; |
6d820c5c | 1632 | char *buf = rs->buf; |
79d7f229 | 1633 | char *endbuf = rs->buf + get_remote_packet_size (); |
c906108c | 1634 | |
79d7f229 | 1635 | if (ptid_equal (state, ptid)) |
c906108c SS |
1636 | return; |
1637 | ||
79d7f229 PA |
1638 | *buf++ = 'H'; |
1639 | *buf++ = gen ? 'g' : 'c'; | |
1640 | if (ptid_equal (ptid, magic_null_ptid)) | |
1641 | xsnprintf (buf, endbuf - buf, "0"); | |
1642 | else if (ptid_equal (ptid, any_thread_ptid)) | |
1643 | xsnprintf (buf, endbuf - buf, "0"); | |
1644 | else if (ptid_equal (ptid, minus_one_ptid)) | |
1645 | xsnprintf (buf, endbuf - buf, "-1"); | |
1646 | else | |
82f73884 | 1647 | write_ptid (buf, endbuf, ptid); |
79d7f229 | 1648 | putpkt (rs->buf); |
6d820c5c | 1649 | getpkt (&rs->buf, &rs->buf_size, 0); |
c906108c | 1650 | if (gen) |
79d7f229 | 1651 | general_thread = ptid; |
c906108c | 1652 | else |
79d7f229 | 1653 | continue_thread = ptid; |
c906108c | 1654 | } |
79d7f229 PA |
1655 | |
1656 | static void | |
1657 | set_general_thread (struct ptid ptid) | |
1658 | { | |
1659 | set_thread (ptid, 1); | |
1660 | } | |
1661 | ||
1662 | static void | |
1663 | set_continue_thread (struct ptid ptid) | |
1664 | { | |
1665 | set_thread (ptid, 0); | |
1666 | } | |
1667 | ||
3c9c4b83 PA |
1668 | /* Change the remote current process. Which thread within the process |
1669 | ends up selected isn't important, as long as it is the same process | |
1670 | as what INFERIOR_PTID points to. | |
1671 | ||
1672 | This comes from that fact that there is no explicit notion of | |
1673 | "selected process" in the protocol. The selected process for | |
1674 | general operations is the process the selected general thread | |
1675 | belongs to. */ | |
1676 | ||
1677 | static void | |
1678 | set_general_process (void) | |
1679 | { | |
1680 | struct remote_state *rs = get_remote_state (); | |
1681 | ||
1682 | /* If the remote can't handle multiple processes, don't bother. */ | |
1683 | if (!remote_multi_process_p (rs)) | |
1684 | return; | |
1685 | ||
1686 | /* We only need to change the remote current thread if it's pointing | |
1687 | at some other process. */ | |
1688 | if (ptid_get_pid (general_thread) != ptid_get_pid (inferior_ptid)) | |
1689 | set_general_thread (inferior_ptid); | |
1690 | } | |
1691 | ||
c906108c | 1692 | \f |
79d7f229 PA |
1693 | /* Return nonzero if the thread PTID is still alive on the remote |
1694 | system. */ | |
c906108c SS |
1695 | |
1696 | static int | |
28439f5e | 1697 | remote_thread_alive (struct target_ops *ops, ptid_t ptid) |
c906108c | 1698 | { |
6d820c5c | 1699 | struct remote_state *rs = get_remote_state (); |
82f73884 | 1700 | char *p, *endp; |
c906108c | 1701 | |
c0a2216e PA |
1702 | if (ptid_equal (ptid, magic_null_ptid)) |
1703 | /* The main thread is always alive. */ | |
1704 | return 1; | |
1705 | ||
1706 | if (ptid_get_pid (ptid) != 0 && ptid_get_tid (ptid) == 0) | |
1707 | /* The main thread is always alive. This can happen after a | |
1708 | vAttach, if the remote side doesn't support | |
1709 | multi-threading. */ | |
1710 | return 1; | |
1711 | ||
82f73884 PA |
1712 | p = rs->buf; |
1713 | endp = rs->buf + get_remote_packet_size (); | |
1714 | ||
1715 | *p++ = 'T'; | |
1716 | write_ptid (p, endp, ptid); | |
1717 | ||
2e9f7625 | 1718 | putpkt (rs->buf); |
6d820c5c | 1719 | getpkt (&rs->buf, &rs->buf_size, 0); |
2e9f7625 | 1720 | return (rs->buf[0] == 'O' && rs->buf[1] == 'K'); |
c906108c SS |
1721 | } |
1722 | ||
1723 | /* About these extended threadlist and threadinfo packets. They are | |
1724 | variable length packets but, the fields within them are often fixed | |
1725 | length. They are redundent enough to send over UDP as is the | |
1726 | remote protocol in general. There is a matching unit test module | |
1727 | in libstub. */ | |
1728 | ||
cce74817 JM |
1729 | #define OPAQUETHREADBYTES 8 |
1730 | ||
1731 | /* a 64 bit opaque identifier */ | |
1732 | typedef unsigned char threadref[OPAQUETHREADBYTES]; | |
1733 | ||
23860348 | 1734 | /* WARNING: This threadref data structure comes from the remote O.S., |
0df8b418 | 1735 | libstub protocol encoding, and remote.c. It is not particularly |
23860348 | 1736 | changable. */ |
cce74817 JM |
1737 | |
1738 | /* Right now, the internal structure is int. We want it to be bigger. | |
0df8b418 | 1739 | Plan to fix this. */ |
cce74817 | 1740 | |
23860348 | 1741 | typedef int gdb_threadref; /* Internal GDB thread reference. */ |
cce74817 | 1742 | |
9d1f7ab2 | 1743 | /* gdb_ext_thread_info is an internal GDB data structure which is |
cfde0993 | 1744 | equivalent to the reply of the remote threadinfo packet. */ |
cce74817 JM |
1745 | |
1746 | struct gdb_ext_thread_info | |
c5aa993b | 1747 | { |
23860348 | 1748 | threadref threadid; /* External form of thread reference. */ |
2bc416ba | 1749 | int active; /* Has state interesting to GDB? |
23860348 | 1750 | regs, stack. */ |
2bc416ba | 1751 | char display[256]; /* Brief state display, name, |
cedea757 | 1752 | blocked/suspended. */ |
23860348 | 1753 | char shortname[32]; /* To be used to name threads. */ |
2bc416ba | 1754 | char more_display[256]; /* Long info, statistics, queue depth, |
23860348 | 1755 | whatever. */ |
c5aa993b | 1756 | }; |
cce74817 JM |
1757 | |
1758 | /* The volume of remote transfers can be limited by submitting | |
1759 | a mask containing bits specifying the desired information. | |
1760 | Use a union of these values as the 'selection' parameter to | |
0df8b418 | 1761 | get_thread_info. FIXME: Make these TAG names more thread specific. */ |
cce74817 JM |
1762 | |
1763 | #define TAG_THREADID 1 | |
1764 | #define TAG_EXISTS 2 | |
1765 | #define TAG_DISPLAY 4 | |
1766 | #define TAG_THREADNAME 8 | |
c5aa993b | 1767 | #define TAG_MOREDISPLAY 16 |
cce74817 | 1768 | |
23860348 | 1769 | #define BUF_THREAD_ID_SIZE (OPAQUETHREADBYTES * 2) |
c906108c | 1770 | |
b2dd6311 | 1771 | char *unpack_varlen_hex (char *buff, ULONGEST *result); |
cce74817 | 1772 | |
a14ed312 | 1773 | static char *unpack_nibble (char *buf, int *val); |
cce74817 | 1774 | |
a14ed312 | 1775 | static char *pack_nibble (char *buf, int nibble); |
cce74817 | 1776 | |
23860348 | 1777 | static char *pack_hex_byte (char *pkt, int /* unsigned char */ byte); |
cce74817 | 1778 | |
a14ed312 | 1779 | static char *unpack_byte (char *buf, int *value); |
cce74817 | 1780 | |
a14ed312 | 1781 | static char *pack_int (char *buf, int value); |
cce74817 | 1782 | |
a14ed312 | 1783 | static char *unpack_int (char *buf, int *value); |
cce74817 | 1784 | |
a14ed312 | 1785 | static char *unpack_string (char *src, char *dest, int length); |
cce74817 | 1786 | |
23860348 | 1787 | static char *pack_threadid (char *pkt, threadref *id); |
cce74817 | 1788 | |
23860348 | 1789 | static char *unpack_threadid (char *inbuf, threadref *id); |
cce74817 | 1790 | |
23860348 | 1791 | void int_to_threadref (threadref *id, int value); |
cce74817 | 1792 | |
23860348 | 1793 | static int threadref_to_int (threadref *ref); |
cce74817 | 1794 | |
23860348 | 1795 | static void copy_threadref (threadref *dest, threadref *src); |
cce74817 | 1796 | |
23860348 | 1797 | static int threadmatch (threadref *dest, threadref *src); |
cce74817 | 1798 | |
2bc416ba | 1799 | static char *pack_threadinfo_request (char *pkt, int mode, |
23860348 | 1800 | threadref *id); |
cce74817 | 1801 | |
a14ed312 | 1802 | static int remote_unpack_thread_info_response (char *pkt, |
23860348 | 1803 | threadref *expectedref, |
a14ed312 KB |
1804 | struct gdb_ext_thread_info |
1805 | *info); | |
cce74817 JM |
1806 | |
1807 | ||
2bc416ba | 1808 | static int remote_get_threadinfo (threadref *threadid, |
23860348 | 1809 | int fieldset, /*TAG mask */ |
a14ed312 | 1810 | struct gdb_ext_thread_info *info); |
cce74817 | 1811 | |
a14ed312 KB |
1812 | static char *pack_threadlist_request (char *pkt, int startflag, |
1813 | int threadcount, | |
23860348 | 1814 | threadref *nextthread); |
cce74817 | 1815 | |
a14ed312 KB |
1816 | static int parse_threadlist_response (char *pkt, |
1817 | int result_limit, | |
23860348 | 1818 | threadref *original_echo, |
2bc416ba | 1819 | threadref *resultlist, |
23860348 | 1820 | int *doneflag); |
cce74817 | 1821 | |
a14ed312 | 1822 | static int remote_get_threadlist (int startflag, |
23860348 | 1823 | threadref *nextthread, |
a14ed312 KB |
1824 | int result_limit, |
1825 | int *done, | |
2bc416ba | 1826 | int *result_count, |
23860348 | 1827 | threadref *threadlist); |
cce74817 | 1828 | |
23860348 | 1829 | typedef int (*rmt_thread_action) (threadref *ref, void *context); |
cce74817 | 1830 | |
a14ed312 KB |
1831 | static int remote_threadlist_iterator (rmt_thread_action stepfunction, |
1832 | void *context, int looplimit); | |
cce74817 | 1833 | |
23860348 | 1834 | static int remote_newthread_step (threadref *ref, void *context); |
cce74817 | 1835 | |
82f73884 PA |
1836 | |
1837 | /* Write a PTID to BUF. ENDBUF points to one-passed-the-end of the | |
1838 | buffer we're allowed to write to. Returns | |
1839 | BUF+CHARACTERS_WRITTEN. */ | |
1840 | ||
1841 | static char * | |
1842 | write_ptid (char *buf, const char *endbuf, ptid_t ptid) | |
1843 | { | |
1844 | int pid, tid; | |
1845 | struct remote_state *rs = get_remote_state (); | |
1846 | ||
1847 | if (remote_multi_process_p (rs)) | |
1848 | { | |
1849 | pid = ptid_get_pid (ptid); | |
1850 | if (pid < 0) | |
1851 | buf += xsnprintf (buf, endbuf - buf, "p-%x.", -pid); | |
1852 | else | |
1853 | buf += xsnprintf (buf, endbuf - buf, "p%x.", pid); | |
1854 | } | |
1855 | tid = ptid_get_tid (ptid); | |
1856 | if (tid < 0) | |
1857 | buf += xsnprintf (buf, endbuf - buf, "-%x", -tid); | |
1858 | else | |
1859 | buf += xsnprintf (buf, endbuf - buf, "%x", tid); | |
1860 | ||
1861 | return buf; | |
1862 | } | |
1863 | ||
1864 | /* Extract a PTID from BUF. If non-null, OBUF is set to the to one | |
1865 | passed the last parsed char. Returns null_ptid on error. */ | |
1866 | ||
1867 | static ptid_t | |
1868 | read_ptid (char *buf, char **obuf) | |
1869 | { | |
1870 | char *p = buf; | |
1871 | char *pp; | |
1872 | ULONGEST pid = 0, tid = 0; | |
82f73884 PA |
1873 | |
1874 | if (*p == 'p') | |
1875 | { | |
1876 | /* Multi-process ptid. */ | |
1877 | pp = unpack_varlen_hex (p + 1, &pid); | |
1878 | if (*pp != '.') | |
b37520b6 | 1879 | error (_("invalid remote ptid: %s"), p); |
82f73884 PA |
1880 | |
1881 | p = pp; | |
1882 | pp = unpack_varlen_hex (p + 1, &tid); | |
1883 | if (obuf) | |
1884 | *obuf = pp; | |
1885 | return ptid_build (pid, 0, tid); | |
1886 | } | |
1887 | ||
1888 | /* No multi-process. Just a tid. */ | |
1889 | pp = unpack_varlen_hex (p, &tid); | |
1890 | ||
1891 | /* Since the stub is not sending a process id, then default to | |
ca19bf23 PA |
1892 | what's in inferior_ptid, unless it's null at this point. If so, |
1893 | then since there's no way to know the pid of the reported | |
1894 | threads, use the magic number. */ | |
1895 | if (ptid_equal (inferior_ptid, null_ptid)) | |
1896 | pid = ptid_get_pid (magic_null_ptid); | |
1897 | else | |
1898 | pid = ptid_get_pid (inferior_ptid); | |
82f73884 PA |
1899 | |
1900 | if (obuf) | |
1901 | *obuf = pp; | |
1902 | return ptid_build (pid, 0, tid); | |
1903 | } | |
1904 | ||
23860348 | 1905 | /* Encode 64 bits in 16 chars of hex. */ |
c906108c SS |
1906 | |
1907 | static const char hexchars[] = "0123456789abcdef"; | |
1908 | ||
1909 | static int | |
fba45db2 | 1910 | ishex (int ch, int *val) |
c906108c SS |
1911 | { |
1912 | if ((ch >= 'a') && (ch <= 'f')) | |
1913 | { | |
1914 | *val = ch - 'a' + 10; | |
1915 | return 1; | |
1916 | } | |
1917 | if ((ch >= 'A') && (ch <= 'F')) | |
1918 | { | |
1919 | *val = ch - 'A' + 10; | |
1920 | return 1; | |
1921 | } | |
1922 | if ((ch >= '0') && (ch <= '9')) | |
1923 | { | |
1924 | *val = ch - '0'; | |
1925 | return 1; | |
1926 | } | |
1927 | return 0; | |
1928 | } | |
1929 | ||
1930 | static int | |
fba45db2 | 1931 | stubhex (int ch) |
c906108c SS |
1932 | { |
1933 | if (ch >= 'a' && ch <= 'f') | |
1934 | return ch - 'a' + 10; | |
1935 | if (ch >= '0' && ch <= '9') | |
1936 | return ch - '0'; | |
1937 | if (ch >= 'A' && ch <= 'F') | |
1938 | return ch - 'A' + 10; | |
1939 | return -1; | |
1940 | } | |
1941 | ||
1942 | static int | |
fba45db2 | 1943 | stub_unpack_int (char *buff, int fieldlength) |
c906108c SS |
1944 | { |
1945 | int nibble; | |
1946 | int retval = 0; | |
1947 | ||
1948 | while (fieldlength) | |
1949 | { | |
1950 | nibble = stubhex (*buff++); | |
1951 | retval |= nibble; | |
1952 | fieldlength--; | |
1953 | if (fieldlength) | |
1954 | retval = retval << 4; | |
1955 | } | |
1956 | return retval; | |
1957 | } | |
1958 | ||
1959 | char * | |
fba45db2 | 1960 | unpack_varlen_hex (char *buff, /* packet to parse */ |
b2dd6311 | 1961 | ULONGEST *result) |
c906108c SS |
1962 | { |
1963 | int nibble; | |
d49c44d5 | 1964 | ULONGEST retval = 0; |
c906108c SS |
1965 | |
1966 | while (ishex (*buff, &nibble)) | |
1967 | { | |
1968 | buff++; | |
1969 | retval = retval << 4; | |
1970 | retval |= nibble & 0x0f; | |
1971 | } | |
1972 | *result = retval; | |
1973 | return buff; | |
1974 | } | |
1975 | ||
1976 | static char * | |
fba45db2 | 1977 | unpack_nibble (char *buf, int *val) |
c906108c | 1978 | { |
b7589f7d | 1979 | *val = fromhex (*buf++); |
c906108c SS |
1980 | return buf; |
1981 | } | |
1982 | ||
1983 | static char * | |
fba45db2 | 1984 | pack_nibble (char *buf, int nibble) |
c906108c SS |
1985 | { |
1986 | *buf++ = hexchars[(nibble & 0x0f)]; | |
1987 | return buf; | |
1988 | } | |
1989 | ||
1990 | static char * | |
fba45db2 | 1991 | pack_hex_byte (char *pkt, int byte) |
c906108c SS |
1992 | { |
1993 | *pkt++ = hexchars[(byte >> 4) & 0xf]; | |
1994 | *pkt++ = hexchars[(byte & 0xf)]; | |
1995 | return pkt; | |
1996 | } | |
1997 | ||
1998 | static char * | |
fba45db2 | 1999 | unpack_byte (char *buf, int *value) |
c906108c SS |
2000 | { |
2001 | *value = stub_unpack_int (buf, 2); | |
2002 | return buf + 2; | |
2003 | } | |
2004 | ||
2005 | static char * | |
fba45db2 | 2006 | pack_int (char *buf, int value) |
c906108c SS |
2007 | { |
2008 | buf = pack_hex_byte (buf, (value >> 24) & 0xff); | |
2009 | buf = pack_hex_byte (buf, (value >> 16) & 0xff); | |
2010 | buf = pack_hex_byte (buf, (value >> 8) & 0x0ff); | |
2011 | buf = pack_hex_byte (buf, (value & 0xff)); | |
2012 | return buf; | |
2013 | } | |
2014 | ||
2015 | static char * | |
fba45db2 | 2016 | unpack_int (char *buf, int *value) |
c906108c SS |
2017 | { |
2018 | *value = stub_unpack_int (buf, 8); | |
2019 | return buf + 8; | |
2020 | } | |
2021 | ||
23860348 | 2022 | #if 0 /* Currently unused, uncomment when needed. */ |
a14ed312 | 2023 | static char *pack_string (char *pkt, char *string); |
c906108c SS |
2024 | |
2025 | static char * | |
fba45db2 | 2026 | pack_string (char *pkt, char *string) |
c906108c SS |
2027 | { |
2028 | char ch; | |
2029 | int len; | |
2030 | ||
2031 | len = strlen (string); | |
2032 | if (len > 200) | |
23860348 | 2033 | len = 200; /* Bigger than most GDB packets, junk??? */ |
c906108c SS |
2034 | pkt = pack_hex_byte (pkt, len); |
2035 | while (len-- > 0) | |
2036 | { | |
2037 | ch = *string++; | |
2038 | if ((ch == '\0') || (ch == '#')) | |
23860348 | 2039 | ch = '*'; /* Protect encapsulation. */ |
c906108c SS |
2040 | *pkt++ = ch; |
2041 | } | |
2042 | return pkt; | |
2043 | } | |
2044 | #endif /* 0 (unused) */ | |
2045 | ||
2046 | static char * | |
fba45db2 | 2047 | unpack_string (char *src, char *dest, int length) |
c906108c SS |
2048 | { |
2049 | while (length--) | |
2050 | *dest++ = *src++; | |
2051 | *dest = '\0'; | |
2052 | return src; | |
2053 | } | |
2054 | ||
2055 | static char * | |
fba45db2 | 2056 | pack_threadid (char *pkt, threadref *id) |
c906108c SS |
2057 | { |
2058 | char *limit; | |
2059 | unsigned char *altid; | |
2060 | ||
2061 | altid = (unsigned char *) id; | |
2062 | limit = pkt + BUF_THREAD_ID_SIZE; | |
2063 | while (pkt < limit) | |
2064 | pkt = pack_hex_byte (pkt, *altid++); | |
2065 | return pkt; | |
2066 | } | |
2067 | ||
2068 | ||
2069 | static char * | |
fba45db2 | 2070 | unpack_threadid (char *inbuf, threadref *id) |
c906108c SS |
2071 | { |
2072 | char *altref; | |
2073 | char *limit = inbuf + BUF_THREAD_ID_SIZE; | |
2074 | int x, y; | |
2075 | ||
2076 | altref = (char *) id; | |
2077 | ||
2078 | while (inbuf < limit) | |
2079 | { | |
2080 | x = stubhex (*inbuf++); | |
2081 | y = stubhex (*inbuf++); | |
2082 | *altref++ = (x << 4) | y; | |
2083 | } | |
2084 | return inbuf; | |
2085 | } | |
2086 | ||
2087 | /* Externally, threadrefs are 64 bits but internally, they are still | |
0df8b418 | 2088 | ints. This is due to a mismatch of specifications. We would like |
c906108c SS |
2089 | to use 64bit thread references internally. This is an adapter |
2090 | function. */ | |
2091 | ||
2092 | void | |
fba45db2 | 2093 | int_to_threadref (threadref *id, int value) |
c906108c SS |
2094 | { |
2095 | unsigned char *scan; | |
2096 | ||
2097 | scan = (unsigned char *) id; | |
2098 | { | |
2099 | int i = 4; | |
2100 | while (i--) | |
2101 | *scan++ = 0; | |
2102 | } | |
2103 | *scan++ = (value >> 24) & 0xff; | |
2104 | *scan++ = (value >> 16) & 0xff; | |
2105 | *scan++ = (value >> 8) & 0xff; | |
2106 | *scan++ = (value & 0xff); | |
2107 | } | |
2108 | ||
2109 | static int | |
fba45db2 | 2110 | threadref_to_int (threadref *ref) |
c906108c SS |
2111 | { |
2112 | int i, value = 0; | |
2113 | unsigned char *scan; | |
2114 | ||
cfd77fa1 | 2115 | scan = *ref; |
c906108c SS |
2116 | scan += 4; |
2117 | i = 4; | |
2118 | while (i-- > 0) | |
2119 | value = (value << 8) | ((*scan++) & 0xff); | |
2120 | return value; | |
2121 | } | |
2122 | ||
2123 | static void | |
fba45db2 | 2124 | copy_threadref (threadref *dest, threadref *src) |
c906108c SS |
2125 | { |
2126 | int i; | |
2127 | unsigned char *csrc, *cdest; | |
2128 | ||
2129 | csrc = (unsigned char *) src; | |
2130 | cdest = (unsigned char *) dest; | |
2131 | i = 8; | |
2132 | while (i--) | |
2133 | *cdest++ = *csrc++; | |
2134 | } | |
2135 | ||
2136 | static int | |
fba45db2 | 2137 | threadmatch (threadref *dest, threadref *src) |
c906108c | 2138 | { |
23860348 | 2139 | /* Things are broken right now, so just assume we got a match. */ |
c906108c SS |
2140 | #if 0 |
2141 | unsigned char *srcp, *destp; | |
2142 | int i, result; | |
2143 | srcp = (char *) src; | |
2144 | destp = (char *) dest; | |
2145 | ||
2146 | result = 1; | |
2147 | while (i-- > 0) | |
2148 | result &= (*srcp++ == *destp++) ? 1 : 0; | |
2149 | return result; | |
2150 | #endif | |
2151 | return 1; | |
2152 | } | |
2153 | ||
2154 | /* | |
c5aa993b JM |
2155 | threadid:1, # always request threadid |
2156 | context_exists:2, | |
2157 | display:4, | |
2158 | unique_name:8, | |
2159 | more_display:16 | |
2160 | */ | |
c906108c SS |
2161 | |
2162 | /* Encoding: 'Q':8,'P':8,mask:32,threadid:64 */ | |
2163 | ||
2164 | static char * | |
fba45db2 | 2165 | pack_threadinfo_request (char *pkt, int mode, threadref *id) |
c906108c | 2166 | { |
23860348 MS |
2167 | *pkt++ = 'q'; /* Info Query */ |
2168 | *pkt++ = 'P'; /* process or thread info */ | |
2169 | pkt = pack_int (pkt, mode); /* mode */ | |
c906108c | 2170 | pkt = pack_threadid (pkt, id); /* threadid */ |
23860348 | 2171 | *pkt = '\0'; /* terminate */ |
c906108c SS |
2172 | return pkt; |
2173 | } | |
2174 | ||
23860348 | 2175 | /* These values tag the fields in a thread info response packet. */ |
c906108c | 2176 | /* Tagging the fields allows us to request specific fields and to |
23860348 | 2177 | add more fields as time goes by. */ |
c906108c | 2178 | |
23860348 | 2179 | #define TAG_THREADID 1 /* Echo the thread identifier. */ |
c5aa993b | 2180 | #define TAG_EXISTS 2 /* Is this process defined enough to |
23860348 | 2181 | fetch registers and its stack? */ |
c5aa993b | 2182 | #define TAG_DISPLAY 4 /* A short thing maybe to put on a window */ |
23860348 | 2183 | #define TAG_THREADNAME 8 /* string, maps 1-to-1 with a thread is. */ |
802188a7 | 2184 | #define TAG_MOREDISPLAY 16 /* Whatever the kernel wants to say about |
23860348 | 2185 | the process. */ |
c906108c SS |
2186 | |
2187 | static int | |
fba45db2 KB |
2188 | remote_unpack_thread_info_response (char *pkt, threadref *expectedref, |
2189 | struct gdb_ext_thread_info *info) | |
c906108c | 2190 | { |
d01949b6 | 2191 | struct remote_state *rs = get_remote_state (); |
c906108c | 2192 | int mask, length; |
cfd77fa1 | 2193 | int tag; |
c906108c | 2194 | threadref ref; |
6d820c5c | 2195 | char *limit = pkt + rs->buf_size; /* Plausible parsing limit. */ |
c906108c SS |
2196 | int retval = 1; |
2197 | ||
23860348 | 2198 | /* info->threadid = 0; FIXME: implement zero_threadref. */ |
c906108c SS |
2199 | info->active = 0; |
2200 | info->display[0] = '\0'; | |
2201 | info->shortname[0] = '\0'; | |
2202 | info->more_display[0] = '\0'; | |
2203 | ||
23860348 MS |
2204 | /* Assume the characters indicating the packet type have been |
2205 | stripped. */ | |
c906108c SS |
2206 | pkt = unpack_int (pkt, &mask); /* arg mask */ |
2207 | pkt = unpack_threadid (pkt, &ref); | |
2208 | ||
2209 | if (mask == 0) | |
8a3fe4f8 | 2210 | warning (_("Incomplete response to threadinfo request.")); |
c906108c | 2211 | if (!threadmatch (&ref, expectedref)) |
23860348 | 2212 | { /* This is an answer to a different request. */ |
8a3fe4f8 | 2213 | warning (_("ERROR RMT Thread info mismatch.")); |
c906108c SS |
2214 | return 0; |
2215 | } | |
2216 | copy_threadref (&info->threadid, &ref); | |
2217 | ||
23860348 | 2218 | /* Loop on tagged fields , try to bail if somthing goes wrong. */ |
c906108c | 2219 | |
23860348 MS |
2220 | /* Packets are terminated with nulls. */ |
2221 | while ((pkt < limit) && mask && *pkt) | |
c906108c SS |
2222 | { |
2223 | pkt = unpack_int (pkt, &tag); /* tag */ | |
23860348 MS |
2224 | pkt = unpack_byte (pkt, &length); /* length */ |
2225 | if (!(tag & mask)) /* Tags out of synch with mask. */ | |
c906108c | 2226 | { |
8a3fe4f8 | 2227 | warning (_("ERROR RMT: threadinfo tag mismatch.")); |
c906108c SS |
2228 | retval = 0; |
2229 | break; | |
2230 | } | |
2231 | if (tag == TAG_THREADID) | |
2232 | { | |
2233 | if (length != 16) | |
2234 | { | |
8a3fe4f8 | 2235 | warning (_("ERROR RMT: length of threadid is not 16.")); |
c906108c SS |
2236 | retval = 0; |
2237 | break; | |
2238 | } | |
2239 | pkt = unpack_threadid (pkt, &ref); | |
2240 | mask = mask & ~TAG_THREADID; | |
2241 | continue; | |
2242 | } | |
2243 | if (tag == TAG_EXISTS) | |
2244 | { | |
2245 | info->active = stub_unpack_int (pkt, length); | |
2246 | pkt += length; | |
2247 | mask = mask & ~(TAG_EXISTS); | |
2248 | if (length > 8) | |
2249 | { | |
8a3fe4f8 | 2250 | warning (_("ERROR RMT: 'exists' length too long.")); |
c906108c SS |
2251 | retval = 0; |
2252 | break; | |
2253 | } | |
2254 | continue; | |
2255 | } | |
2256 | if (tag == TAG_THREADNAME) | |
2257 | { | |
2258 | pkt = unpack_string (pkt, &info->shortname[0], length); | |
2259 | mask = mask & ~TAG_THREADNAME; | |
2260 | continue; | |
2261 | } | |
2262 | if (tag == TAG_DISPLAY) | |
2263 | { | |
2264 | pkt = unpack_string (pkt, &info->display[0], length); | |
2265 | mask = mask & ~TAG_DISPLAY; | |
2266 | continue; | |
2267 | } | |
2268 | if (tag == TAG_MOREDISPLAY) | |
2269 | { | |
2270 | pkt = unpack_string (pkt, &info->more_display[0], length); | |
2271 | mask = mask & ~TAG_MOREDISPLAY; | |
2272 | continue; | |
2273 | } | |
8a3fe4f8 | 2274 | warning (_("ERROR RMT: unknown thread info tag.")); |
23860348 | 2275 | break; /* Not a tag we know about. */ |
c906108c SS |
2276 | } |
2277 | return retval; | |
2278 | } | |
2279 | ||
2280 | static int | |
fba45db2 KB |
2281 | remote_get_threadinfo (threadref *threadid, int fieldset, /* TAG mask */ |
2282 | struct gdb_ext_thread_info *info) | |
c906108c | 2283 | { |
d01949b6 | 2284 | struct remote_state *rs = get_remote_state (); |
c906108c | 2285 | int result; |
c906108c | 2286 | |
2e9f7625 DJ |
2287 | pack_threadinfo_request (rs->buf, fieldset, threadid); |
2288 | putpkt (rs->buf); | |
6d820c5c | 2289 | getpkt (&rs->buf, &rs->buf_size, 0); |
3084dd77 PA |
2290 | |
2291 | if (rs->buf[0] == '\0') | |
2292 | return 0; | |
2293 | ||
2e9f7625 | 2294 | result = remote_unpack_thread_info_response (rs->buf + 2, |
23860348 | 2295 | threadid, info); |
c906108c SS |
2296 | return result; |
2297 | } | |
2298 | ||
c906108c SS |
2299 | /* Format: i'Q':8,i"L":8,initflag:8,batchsize:16,lastthreadid:32 */ |
2300 | ||
2301 | static char * | |
fba45db2 KB |
2302 | pack_threadlist_request (char *pkt, int startflag, int threadcount, |
2303 | threadref *nextthread) | |
c906108c SS |
2304 | { |
2305 | *pkt++ = 'q'; /* info query packet */ | |
2306 | *pkt++ = 'L'; /* Process LIST or threadLIST request */ | |
23860348 | 2307 | pkt = pack_nibble (pkt, startflag); /* initflag 1 bytes */ |
c906108c SS |
2308 | pkt = pack_hex_byte (pkt, threadcount); /* threadcount 2 bytes */ |
2309 | pkt = pack_threadid (pkt, nextthread); /* 64 bit thread identifier */ | |
2310 | *pkt = '\0'; | |
2311 | return pkt; | |
2312 | } | |
2313 | ||
2314 | /* Encoding: 'q':8,'M':8,count:16,done:8,argthreadid:64,(threadid:64)* */ | |
2315 | ||
2316 | static int | |
fba45db2 KB |
2317 | parse_threadlist_response (char *pkt, int result_limit, |
2318 | threadref *original_echo, threadref *resultlist, | |
2319 | int *doneflag) | |
c906108c | 2320 | { |
d01949b6 | 2321 | struct remote_state *rs = get_remote_state (); |
c906108c SS |
2322 | char *limit; |
2323 | int count, resultcount, done; | |
2324 | ||
2325 | resultcount = 0; | |
2326 | /* Assume the 'q' and 'M chars have been stripped. */ | |
6d820c5c | 2327 | limit = pkt + (rs->buf_size - BUF_THREAD_ID_SIZE); |
23860348 | 2328 | /* done parse past here */ |
c906108c SS |
2329 | pkt = unpack_byte (pkt, &count); /* count field */ |
2330 | pkt = unpack_nibble (pkt, &done); | |
2331 | /* The first threadid is the argument threadid. */ | |
2332 | pkt = unpack_threadid (pkt, original_echo); /* should match query packet */ | |
2333 | while ((count-- > 0) && (pkt < limit)) | |
2334 | { | |
2335 | pkt = unpack_threadid (pkt, resultlist++); | |
2336 | if (resultcount++ >= result_limit) | |
2337 | break; | |
2338 | } | |
2339 | if (doneflag) | |
2340 | *doneflag = done; | |
2341 | return resultcount; | |
2342 | } | |
2343 | ||
2344 | static int | |
fba45db2 KB |
2345 | remote_get_threadlist (int startflag, threadref *nextthread, int result_limit, |
2346 | int *done, int *result_count, threadref *threadlist) | |
c906108c | 2347 | { |
d01949b6 | 2348 | struct remote_state *rs = get_remote_state (); |
c906108c | 2349 | static threadref echo_nextthread; |
c906108c SS |
2350 | int result = 1; |
2351 | ||
23860348 | 2352 | /* Trancate result limit to be smaller than the packet size. */ |
3e43a32a MS |
2353 | if ((((result_limit + 1) * BUF_THREAD_ID_SIZE) + 10) |
2354 | >= get_remote_packet_size ()) | |
ea9c271d | 2355 | result_limit = (get_remote_packet_size () / BUF_THREAD_ID_SIZE) - 2; |
c906108c | 2356 | |
6d820c5c DJ |
2357 | pack_threadlist_request (rs->buf, startflag, result_limit, nextthread); |
2358 | putpkt (rs->buf); | |
2359 | getpkt (&rs->buf, &rs->buf_size, 0); | |
c906108c | 2360 | |
d8f2712d | 2361 | if (*rs->buf == '\0') |
21bce120 | 2362 | return 0; |
d8f2712d VP |
2363 | else |
2364 | *result_count = | |
2365 | parse_threadlist_response (rs->buf + 2, result_limit, &echo_nextthread, | |
2366 | threadlist, done); | |
c906108c SS |
2367 | |
2368 | if (!threadmatch (&echo_nextthread, nextthread)) | |
2369 | { | |
23860348 MS |
2370 | /* FIXME: This is a good reason to drop the packet. */ |
2371 | /* Possably, there is a duplicate response. */ | |
c906108c SS |
2372 | /* Possabilities : |
2373 | retransmit immediatly - race conditions | |
2374 | retransmit after timeout - yes | |
2375 | exit | |
2376 | wait for packet, then exit | |
2377 | */ | |
8a3fe4f8 | 2378 | warning (_("HMM: threadlist did not echo arg thread, dropping it.")); |
23860348 | 2379 | return 0; /* I choose simply exiting. */ |
c906108c SS |
2380 | } |
2381 | if (*result_count <= 0) | |
2382 | { | |
2383 | if (*done != 1) | |
2384 | { | |
8a3fe4f8 | 2385 | warning (_("RMT ERROR : failed to get remote thread list.")); |
c906108c SS |
2386 | result = 0; |
2387 | } | |
2388 | return result; /* break; */ | |
2389 | } | |
2390 | if (*result_count > result_limit) | |
2391 | { | |
2392 | *result_count = 0; | |
8a3fe4f8 | 2393 | warning (_("RMT ERROR: threadlist response longer than requested.")); |
c906108c SS |
2394 | return 0; |
2395 | } | |
2396 | return result; | |
2397 | } | |
2398 | ||
23860348 MS |
2399 | /* This is the interface between remote and threads, remotes upper |
2400 | interface. */ | |
c906108c SS |
2401 | |
2402 | /* remote_find_new_threads retrieves the thread list and for each | |
2403 | thread in the list, looks up the thread in GDB's internal list, | |
79d7f229 | 2404 | adding the thread if it does not already exist. This involves |
c906108c SS |
2405 | getting partial thread lists from the remote target so, polling the |
2406 | quit_flag is required. */ | |
2407 | ||
2408 | ||
23860348 | 2409 | /* About this many threadisds fit in a packet. */ |
c906108c SS |
2410 | |
2411 | #define MAXTHREADLISTRESULTS 32 | |
2412 | ||
2413 | static int | |
fba45db2 KB |
2414 | remote_threadlist_iterator (rmt_thread_action stepfunction, void *context, |
2415 | int looplimit) | |
c906108c SS |
2416 | { |
2417 | int done, i, result_count; | |
2418 | int startflag = 1; | |
2419 | int result = 1; | |
2420 | int loopcount = 0; | |
2421 | static threadref nextthread; | |
2422 | static threadref resultthreadlist[MAXTHREADLISTRESULTS]; | |
2423 | ||
2424 | done = 0; | |
2425 | while (!done) | |
2426 | { | |
2427 | if (loopcount++ > looplimit) | |
2428 | { | |
2429 | result = 0; | |
8a3fe4f8 | 2430 | warning (_("Remote fetch threadlist -infinite loop-.")); |
c906108c SS |
2431 | break; |
2432 | } | |
2433 | if (!remote_get_threadlist (startflag, &nextthread, MAXTHREADLISTRESULTS, | |
2434 | &done, &result_count, resultthreadlist)) | |
2435 | { | |
2436 | result = 0; | |
2437 | break; | |
2438 | } | |
23860348 | 2439 | /* Clear for later iterations. */ |
c906108c SS |
2440 | startflag = 0; |
2441 | /* Setup to resume next batch of thread references, set nextthread. */ | |
2442 | if (result_count >= 1) | |
2443 | copy_threadref (&nextthread, &resultthreadlist[result_count - 1]); | |
2444 | i = 0; | |
2445 | while (result_count--) | |
2446 | if (!(result = (*stepfunction) (&resultthreadlist[i++], context))) | |
2447 | break; | |
2448 | } | |
2449 | return result; | |
2450 | } | |
2451 | ||
2452 | static int | |
fba45db2 | 2453 | remote_newthread_step (threadref *ref, void *context) |
c906108c | 2454 | { |
79d7f229 PA |
2455 | int pid = ptid_get_pid (inferior_ptid); |
2456 | ptid_t ptid = ptid_build (pid, 0, threadref_to_int (ref)); | |
39f77062 KB |
2457 | |
2458 | if (!in_thread_list (ptid)) | |
2459 | add_thread (ptid); | |
c906108c SS |
2460 | return 1; /* continue iterator */ |
2461 | } | |
2462 | ||
2463 | #define CRAZY_MAX_THREADS 1000 | |
2464 | ||
39f77062 KB |
2465 | static ptid_t |
2466 | remote_current_thread (ptid_t oldpid) | |
c906108c | 2467 | { |
d01949b6 | 2468 | struct remote_state *rs = get_remote_state (); |
c906108c SS |
2469 | |
2470 | putpkt ("qC"); | |
6d820c5c | 2471 | getpkt (&rs->buf, &rs->buf_size, 0); |
2e9f7625 | 2472 | if (rs->buf[0] == 'Q' && rs->buf[1] == 'C') |
82f73884 | 2473 | return read_ptid (&rs->buf[2], NULL); |
c906108c SS |
2474 | else |
2475 | return oldpid; | |
2476 | } | |
2477 | ||
802188a7 RM |
2478 | /* Find new threads for info threads command. |
2479 | * Original version, using John Metzler's thread protocol. | |
9d1f7ab2 | 2480 | */ |
cce74817 JM |
2481 | |
2482 | static void | |
fba45db2 | 2483 | remote_find_new_threads (void) |
c906108c | 2484 | { |
c5aa993b JM |
2485 | remote_threadlist_iterator (remote_newthread_step, 0, |
2486 | CRAZY_MAX_THREADS); | |
c906108c SS |
2487 | } |
2488 | ||
dc146f7c VP |
2489 | #if defined(HAVE_LIBEXPAT) |
2490 | ||
2491 | typedef struct thread_item | |
2492 | { | |
2493 | ptid_t ptid; | |
2494 | char *extra; | |
2495 | int core; | |
2496 | } thread_item_t; | |
2497 | DEF_VEC_O(thread_item_t); | |
2498 | ||
2499 | struct threads_parsing_context | |
2500 | { | |
2501 | VEC (thread_item_t) *items; | |
2502 | }; | |
2503 | ||
2504 | static void | |
2505 | start_thread (struct gdb_xml_parser *parser, | |
2506 | const struct gdb_xml_element *element, | |
2507 | void *user_data, VEC(gdb_xml_value_s) *attributes) | |
2508 | { | |
2509 | struct threads_parsing_context *data = user_data; | |
2510 | ||
2511 | struct thread_item item; | |
2512 | char *id; | |
3d2c1d41 | 2513 | struct gdb_xml_value *attr; |
dc146f7c | 2514 | |
3d2c1d41 | 2515 | id = xml_find_attribute (attributes, "id")->value; |
dc146f7c VP |
2516 | item.ptid = read_ptid (id, NULL); |
2517 | ||
3d2c1d41 PA |
2518 | attr = xml_find_attribute (attributes, "core"); |
2519 | if (attr != NULL) | |
2520 | item.core = *(ULONGEST *) attr->value; | |
dc146f7c VP |
2521 | else |
2522 | item.core = -1; | |
2523 | ||
2524 | item.extra = 0; | |
2525 | ||
2526 | VEC_safe_push (thread_item_t, data->items, &item); | |
2527 | } | |
2528 | ||
2529 | static void | |
2530 | end_thread (struct gdb_xml_parser *parser, | |
2531 | const struct gdb_xml_element *element, | |
2532 | void *user_data, const char *body_text) | |
2533 | { | |
2534 | struct threads_parsing_context *data = user_data; | |
2535 | ||
2536 | if (body_text && *body_text) | |
2ae2a0b7 | 2537 | VEC_last (thread_item_t, data->items)->extra = xstrdup (body_text); |
dc146f7c VP |
2538 | } |
2539 | ||
2540 | const struct gdb_xml_attribute thread_attributes[] = { | |
2541 | { "id", GDB_XML_AF_NONE, NULL, NULL }, | |
2542 | { "core", GDB_XML_AF_OPTIONAL, gdb_xml_parse_attr_ulongest, NULL }, | |
2543 | { NULL, GDB_XML_AF_NONE, NULL, NULL } | |
2544 | }; | |
2545 | ||
2546 | const struct gdb_xml_element thread_children[] = { | |
2547 | { NULL, NULL, NULL, GDB_XML_EF_NONE, NULL, NULL } | |
2548 | }; | |
2549 | ||
2550 | const struct gdb_xml_element threads_children[] = { | |
2551 | { "thread", thread_attributes, thread_children, | |
2552 | GDB_XML_EF_REPEATABLE | GDB_XML_EF_OPTIONAL, | |
2553 | start_thread, end_thread }, | |
2554 | { NULL, NULL, NULL, GDB_XML_EF_NONE, NULL, NULL } | |
2555 | }; | |
2556 | ||
2557 | const struct gdb_xml_element threads_elements[] = { | |
2558 | { "threads", NULL, threads_children, | |
2559 | GDB_XML_EF_NONE, NULL, NULL }, | |
2560 | { NULL, NULL, NULL, GDB_XML_EF_NONE, NULL, NULL } | |
2561 | }; | |
2562 | ||
02357a4a PA |
2563 | /* Discard the contents of the constructed thread info context. */ |
2564 | ||
2565 | static void | |
2566 | clear_threads_parsing_context (void *p) | |
2567 | { | |
2568 | struct threads_parsing_context *context = p; | |
2569 | int i; | |
2570 | struct thread_item *item; | |
2571 | ||
2572 | for (i = 0; VEC_iterate (thread_item_t, context->items, i, item); ++i) | |
2573 | xfree (item->extra); | |
2574 | ||
2575 | VEC_free (thread_item_t, context->items); | |
2576 | } | |
2577 | ||
dc146f7c VP |
2578 | #endif |
2579 | ||
9d1f7ab2 MS |
2580 | /* |
2581 | * Find all threads for info threads command. | |
2582 | * Uses new thread protocol contributed by Cisco. | |
2583 | * Falls back and attempts to use the older method (above) | |
2584 | * if the target doesn't respond to the new method. | |
2585 | */ | |
2586 | ||
0f71a2f6 | 2587 | static void |
28439f5e | 2588 | remote_threads_info (struct target_ops *ops) |
0f71a2f6 | 2589 | { |
d01949b6 | 2590 | struct remote_state *rs = get_remote_state (); |
085dd6e6 | 2591 | char *bufp; |
79d7f229 | 2592 | ptid_t new_thread; |
0f71a2f6 JM |
2593 | |
2594 | if (remote_desc == 0) /* paranoia */ | |
8a3fe4f8 | 2595 | error (_("Command can only be used when connected to the remote target.")); |
0f71a2f6 | 2596 | |
dc146f7c VP |
2597 | #if defined(HAVE_LIBEXPAT) |
2598 | if (remote_protocol_packets[PACKET_qXfer_threads].support == PACKET_ENABLE) | |
2599 | { | |
2600 | char *xml = target_read_stralloc (¤t_target, | |
2601 | TARGET_OBJECT_THREADS, NULL); | |
2602 | ||
2603 | struct cleanup *back_to = make_cleanup (xfree, xml); | |
efc0eabd | 2604 | |
dc146f7c VP |
2605 | if (xml && *xml) |
2606 | { | |
dc146f7c | 2607 | struct threads_parsing_context context; |
dc146f7c | 2608 | |
efc0eabd PA |
2609 | context.items = NULL; |
2610 | make_cleanup (clear_threads_parsing_context, &context); | |
dc146f7c | 2611 | |
efc0eabd PA |
2612 | if (gdb_xml_parse_quick (_("threads"), "threads.dtd", |
2613 | threads_elements, xml, &context) == 0) | |
dc146f7c VP |
2614 | { |
2615 | int i; | |
2616 | struct thread_item *item; | |
2617 | ||
3e43a32a MS |
2618 | for (i = 0; |
2619 | VEC_iterate (thread_item_t, context.items, i, item); | |
2620 | ++i) | |
dc146f7c VP |
2621 | { |
2622 | if (!ptid_equal (item->ptid, null_ptid)) | |
2623 | { | |
2624 | struct private_thread_info *info; | |
2625 | /* In non-stop mode, we assume new found threads | |
2626 | are running until proven otherwise with a | |
2627 | stop reply. In all-stop, we can only get | |
2628 | here if all threads are stopped. */ | |
2629 | int running = non_stop ? 1 : 0; | |
2630 | ||
2631 | remote_notice_new_inferior (item->ptid, running); | |
2632 | ||
2633 | info = demand_private_info (item->ptid); | |
2634 | info->core = item->core; | |
2635 | info->extra = item->extra; | |
02357a4a | 2636 | item->extra = NULL; |
dc146f7c | 2637 | } |
dc146f7c VP |
2638 | } |
2639 | } | |
dc146f7c VP |
2640 | } |
2641 | ||
2642 | do_cleanups (back_to); | |
2643 | return; | |
2644 | } | |
2645 | #endif | |
2646 | ||
9d1f7ab2 MS |
2647 | if (use_threadinfo_query) |
2648 | { | |
2649 | putpkt ("qfThreadInfo"); | |
6d820c5c | 2650 | getpkt (&rs->buf, &rs->buf_size, 0); |
2e9f7625 | 2651 | bufp = rs->buf; |
9d1f7ab2 | 2652 | if (bufp[0] != '\0') /* q packet recognized */ |
802188a7 | 2653 | { |
9d1f7ab2 MS |
2654 | while (*bufp++ == 'm') /* reply contains one or more TID */ |
2655 | { | |
2656 | do | |
2657 | { | |
82f73884 | 2658 | new_thread = read_ptid (bufp, &bufp); |
1941c569 | 2659 | if (!ptid_equal (new_thread, null_ptid)) |
82f73884 | 2660 | { |
74531fed | 2661 | /* In non-stop mode, we assume new found threads |
1941c569 | 2662 | are running until proven otherwise with a |
74531fed PA |
2663 | stop reply. In all-stop, we can only get |
2664 | here if all threads are stopped. */ | |
1941c569 PA |
2665 | int running = non_stop ? 1 : 0; |
2666 | ||
2667 | remote_notice_new_inferior (new_thread, running); | |
82f73884 | 2668 | } |
9d1f7ab2 MS |
2669 | } |
2670 | while (*bufp++ == ','); /* comma-separated list */ | |
2671 | putpkt ("qsThreadInfo"); | |
6d820c5c | 2672 | getpkt (&rs->buf, &rs->buf_size, 0); |
2e9f7625 | 2673 | bufp = rs->buf; |
9d1f7ab2 MS |
2674 | } |
2675 | return; /* done */ | |
2676 | } | |
2677 | } | |
2678 | ||
74531fed PA |
2679 | /* Only qfThreadInfo is supported in non-stop mode. */ |
2680 | if (non_stop) | |
2681 | return; | |
2682 | ||
23860348 | 2683 | /* Else fall back to old method based on jmetzler protocol. */ |
9d1f7ab2 MS |
2684 | use_threadinfo_query = 0; |
2685 | remote_find_new_threads (); | |
2686 | return; | |
2687 | } | |
2688 | ||
802188a7 | 2689 | /* |
9d1f7ab2 MS |
2690 | * Collect a descriptive string about the given thread. |
2691 | * The target may say anything it wants to about the thread | |
2692 | * (typically info about its blocked / runnable state, name, etc.). | |
2693 | * This string will appear in the info threads display. | |
802188a7 | 2694 | * |
9d1f7ab2 MS |
2695 | * Optional: targets are not required to implement this function. |
2696 | */ | |
2697 | ||
2698 | static char * | |
2699 | remote_threads_extra_info (struct thread_info *tp) | |
2700 | { | |
d01949b6 | 2701 | struct remote_state *rs = get_remote_state (); |
9d1f7ab2 MS |
2702 | int result; |
2703 | int set; | |
2704 | threadref id; | |
2705 | struct gdb_ext_thread_info threadinfo; | |
23860348 | 2706 | static char display_buf[100]; /* arbitrary... */ |
9d1f7ab2 MS |
2707 | int n = 0; /* position in display_buf */ |
2708 | ||
2709 | if (remote_desc == 0) /* paranoia */ | |
8e65ff28 | 2710 | internal_error (__FILE__, __LINE__, |
e2e0b3e5 | 2711 | _("remote_threads_extra_info")); |
9d1f7ab2 | 2712 | |
60e569b9 PA |
2713 | if (ptid_equal (tp->ptid, magic_null_ptid) |
2714 | || (ptid_get_pid (tp->ptid) != 0 && ptid_get_tid (tp->ptid) == 0)) | |
2715 | /* This is the main thread which was added by GDB. The remote | |
2716 | server doesn't know about it. */ | |
2717 | return NULL; | |
2718 | ||
dc146f7c VP |
2719 | if (remote_protocol_packets[PACKET_qXfer_threads].support == PACKET_ENABLE) |
2720 | { | |
2721 | struct thread_info *info = find_thread_ptid (tp->ptid); | |
a744cf53 | 2722 | |
dc146f7c VP |
2723 | if (info && info->private) |
2724 | return info->private->extra; | |
2725 | else | |
2726 | return NULL; | |
2727 | } | |
2728 | ||
9d1f7ab2 MS |
2729 | if (use_threadextra_query) |
2730 | { | |
82f73884 PA |
2731 | char *b = rs->buf; |
2732 | char *endb = rs->buf + get_remote_packet_size (); | |
2733 | ||
2734 | xsnprintf (b, endb - b, "qThreadExtraInfo,"); | |
2735 | b += strlen (b); | |
2736 | write_ptid (b, endb, tp->ptid); | |
2737 | ||
2e9f7625 | 2738 | putpkt (rs->buf); |
6d820c5c | 2739 | getpkt (&rs->buf, &rs->buf_size, 0); |
2e9f7625 | 2740 | if (rs->buf[0] != 0) |
9d1f7ab2 | 2741 | { |
2e9f7625 DJ |
2742 | n = min (strlen (rs->buf) / 2, sizeof (display_buf)); |
2743 | result = hex2bin (rs->buf, (gdb_byte *) display_buf, n); | |
30559e10 | 2744 | display_buf [result] = '\0'; |
9d1f7ab2 MS |
2745 | return display_buf; |
2746 | } | |
0f71a2f6 | 2747 | } |
9d1f7ab2 MS |
2748 | |
2749 | /* If the above query fails, fall back to the old method. */ | |
2750 | use_threadextra_query = 0; | |
2751 | set = TAG_THREADID | TAG_EXISTS | TAG_THREADNAME | |
2752 | | TAG_MOREDISPLAY | TAG_DISPLAY; | |
79d7f229 | 2753 | int_to_threadref (&id, ptid_get_tid (tp->ptid)); |
9d1f7ab2 MS |
2754 | if (remote_get_threadinfo (&id, set, &threadinfo)) |
2755 | if (threadinfo.active) | |
0f71a2f6 | 2756 | { |
9d1f7ab2 | 2757 | if (*threadinfo.shortname) |
2bc416ba | 2758 | n += xsnprintf (&display_buf[0], sizeof (display_buf) - n, |
ecbc58df | 2759 | " Name: %s,", threadinfo.shortname); |
9d1f7ab2 | 2760 | if (*threadinfo.display) |
2bc416ba | 2761 | n += xsnprintf (&display_buf[n], sizeof (display_buf) - n, |
ecbc58df | 2762 | " State: %s,", threadinfo.display); |
9d1f7ab2 | 2763 | if (*threadinfo.more_display) |
2bc416ba | 2764 | n += xsnprintf (&display_buf[n], sizeof (display_buf) - n, |
ecbc58df | 2765 | " Priority: %s", threadinfo.more_display); |
9d1f7ab2 MS |
2766 | |
2767 | if (n > 0) | |
c5aa993b | 2768 | { |
23860348 | 2769 | /* For purely cosmetic reasons, clear up trailing commas. */ |
9d1f7ab2 MS |
2770 | if (',' == display_buf[n-1]) |
2771 | display_buf[n-1] = ' '; | |
2772 | return display_buf; | |
c5aa993b | 2773 | } |
0f71a2f6 | 2774 | } |
9d1f7ab2 | 2775 | return NULL; |
0f71a2f6 | 2776 | } |
c906108c | 2777 | \f |
c5aa993b | 2778 | |
0fb4aa4b PA |
2779 | static int |
2780 | remote_static_tracepoint_marker_at (CORE_ADDR addr, | |
2781 | struct static_tracepoint_marker *marker) | |
2782 | { | |
2783 | struct remote_state *rs = get_remote_state (); | |
2784 | char *p = rs->buf; | |
2785 | ||
2786 | sprintf (p, "qTSTMat:"); | |
2787 | p += strlen (p); | |
2788 | p += hexnumstr (p, addr); | |
2789 | putpkt (rs->buf); | |
2790 | getpkt (&rs->buf, &rs->buf_size, 0); | |
2791 | p = rs->buf; | |
2792 | ||
2793 | if (*p == 'E') | |
2794 | error (_("Remote failure reply: %s"), p); | |
2795 | ||
2796 | if (*p++ == 'm') | |
2797 | { | |
2798 | parse_static_tracepoint_marker_definition (p, &p, marker); | |
2799 | return 1; | |
2800 | } | |
2801 | ||
2802 | return 0; | |
2803 | } | |
2804 | ||
2805 | static void | |
2806 | free_current_marker (void *arg) | |
2807 | { | |
2808 | struct static_tracepoint_marker **marker_p = arg; | |
2809 | ||
2810 | if (*marker_p != NULL) | |
2811 | { | |
2812 | release_static_tracepoint_marker (*marker_p); | |
2813 | xfree (*marker_p); | |
2814 | } | |
2815 | else | |
2816 | *marker_p = NULL; | |
2817 | } | |
2818 | ||
2819 | static VEC(static_tracepoint_marker_p) * | |
2820 | remote_static_tracepoint_markers_by_strid (const char *strid) | |
2821 | { | |
2822 | struct remote_state *rs = get_remote_state (); | |
2823 | VEC(static_tracepoint_marker_p) *markers = NULL; | |
2824 | struct static_tracepoint_marker *marker = NULL; | |
2825 | struct cleanup *old_chain; | |
2826 | char *p; | |
2827 | ||
2828 | /* Ask for a first packet of static tracepoint marker | |
2829 | definition. */ | |
2830 | putpkt ("qTfSTM"); | |
2831 | getpkt (&rs->buf, &rs->buf_size, 0); | |
2832 | p = rs->buf; | |
2833 | if (*p == 'E') | |
2834 | error (_("Remote failure reply: %s"), p); | |
2835 | ||
2836 | old_chain = make_cleanup (free_current_marker, &marker); | |
2837 | ||
2838 | while (*p++ == 'm') | |
2839 | { | |
2840 | if (marker == NULL) | |
2841 | marker = XCNEW (struct static_tracepoint_marker); | |
2842 | ||
2843 | do | |
2844 | { | |
2845 | parse_static_tracepoint_marker_definition (p, &p, marker); | |
2846 | ||
2847 | if (strid == NULL || strcmp (strid, marker->str_id) == 0) | |
2848 | { | |
2849 | VEC_safe_push (static_tracepoint_marker_p, | |
2850 | markers, marker); | |
2851 | marker = NULL; | |
2852 | } | |
2853 | else | |
2854 | { | |
2855 | release_static_tracepoint_marker (marker); | |
2856 | memset (marker, 0, sizeof (*marker)); | |
2857 | } | |
2858 | } | |
2859 | while (*p++ == ','); /* comma-separated list */ | |
2860 | /* Ask for another packet of static tracepoint definition. */ | |
2861 | putpkt ("qTsSTM"); | |
2862 | getpkt (&rs->buf, &rs->buf_size, 0); | |
2863 | p = rs->buf; | |
2864 | } | |
2865 | ||
2866 | do_cleanups (old_chain); | |
2867 | return markers; | |
2868 | } | |
2869 | ||
2870 | \f | |
10760264 JB |
2871 | /* Implement the to_get_ada_task_ptid function for the remote targets. */ |
2872 | ||
2873 | static ptid_t | |
2874 | remote_get_ada_task_ptid (long lwp, long thread) | |
2875 | { | |
2876 | return ptid_build (ptid_get_pid (inferior_ptid), 0, lwp); | |
2877 | } | |
2878 | \f | |
2879 | ||
24b06219 | 2880 | /* Restart the remote side; this is an extended protocol operation. */ |
c906108c SS |
2881 | |
2882 | static void | |
fba45db2 | 2883 | extended_remote_restart (void) |
c906108c | 2884 | { |
d01949b6 | 2885 | struct remote_state *rs = get_remote_state (); |
c906108c SS |
2886 | |
2887 | /* Send the restart command; for reasons I don't understand the | |
2888 | remote side really expects a number after the "R". */ | |
ea9c271d | 2889 | xsnprintf (rs->buf, get_remote_packet_size (), "R%x", 0); |
6d820c5c | 2890 | putpkt (rs->buf); |
c906108c | 2891 | |
ad9a8f3f | 2892 | remote_fileio_reset (); |
c906108c SS |
2893 | } |
2894 | \f | |
2895 | /* Clean up connection to a remote debugger. */ | |
2896 | ||
c906108c | 2897 | static void |
fba45db2 | 2898 | remote_close (int quitting) |
c906108c | 2899 | { |
d3fd5342 PA |
2900 | if (remote_desc == NULL) |
2901 | return; /* already closed */ | |
2902 | ||
2903 | /* Make sure we leave stdin registered in the event loop, and we | |
2904 | don't leave the async SIGINT signal handler installed. */ | |
2905 | remote_terminal_ours (); | |
ce5ce7ed | 2906 | |
d3fd5342 PA |
2907 | serial_close (remote_desc); |
2908 | remote_desc = NULL; | |
ce5ce7ed PA |
2909 | |
2910 | /* We don't have a connection to the remote stub anymore. Get rid | |
f67fd822 PM |
2911 | of all the inferiors and their threads we were controlling. |
2912 | Reset inferior_ptid to null_ptid first, as otherwise has_stack_frame | |
2913 | will be unable to find the thread corresponding to (pid, 0, 0). */ | |
0f2caa1b | 2914 | inferior_ptid = null_ptid; |
f67fd822 | 2915 | discard_all_inferiors (); |
ce5ce7ed | 2916 | |
74531fed PA |
2917 | /* We're no longer interested in any of these events. */ |
2918 | discard_pending_stop_replies (-1); | |
2919 | ||
2920 | if (remote_async_inferior_event_token) | |
2921 | delete_async_event_handler (&remote_async_inferior_event_token); | |
2922 | if (remote_async_get_pending_events_token) | |
2923 | delete_async_event_handler (&remote_async_get_pending_events_token); | |
c906108c SS |
2924 | } |
2925 | ||
23860348 | 2926 | /* Query the remote side for the text, data and bss offsets. */ |
c906108c SS |
2927 | |
2928 | static void | |
fba45db2 | 2929 | get_offsets (void) |
c906108c | 2930 | { |
d01949b6 | 2931 | struct remote_state *rs = get_remote_state (); |
2e9f7625 | 2932 | char *buf; |
085dd6e6 | 2933 | char *ptr; |
31d99776 DJ |
2934 | int lose, num_segments = 0, do_sections, do_segments; |
2935 | CORE_ADDR text_addr, data_addr, bss_addr, segments[2]; | |
c906108c | 2936 | struct section_offsets *offs; |
31d99776 DJ |
2937 | struct symfile_segment_data *data; |
2938 | ||
2939 | if (symfile_objfile == NULL) | |
2940 | return; | |
c906108c SS |
2941 | |
2942 | putpkt ("qOffsets"); | |
6d820c5c | 2943 | getpkt (&rs->buf, &rs->buf_size, 0); |
2e9f7625 | 2944 | buf = rs->buf; |
c906108c SS |
2945 | |
2946 | if (buf[0] == '\000') | |
2947 | return; /* Return silently. Stub doesn't support | |
23860348 | 2948 | this command. */ |
c906108c SS |
2949 | if (buf[0] == 'E') |
2950 | { | |
8a3fe4f8 | 2951 | warning (_("Remote failure reply: %s"), buf); |
c906108c SS |
2952 | return; |
2953 | } | |
2954 | ||
2955 | /* Pick up each field in turn. This used to be done with scanf, but | |
2956 | scanf will make trouble if CORE_ADDR size doesn't match | |
2957 | conversion directives correctly. The following code will work | |
2958 | with any size of CORE_ADDR. */ | |
2959 | text_addr = data_addr = bss_addr = 0; | |
2960 | ptr = buf; | |
2961 | lose = 0; | |
2962 | ||
2963 | if (strncmp (ptr, "Text=", 5) == 0) | |
2964 | { | |
2965 | ptr += 5; | |
2966 | /* Don't use strtol, could lose on big values. */ | |
2967 | while (*ptr && *ptr != ';') | |
2968 | text_addr = (text_addr << 4) + fromhex (*ptr++); | |
c906108c | 2969 | |
31d99776 DJ |
2970 | if (strncmp (ptr, ";Data=", 6) == 0) |
2971 | { | |
2972 | ptr += 6; | |
2973 | while (*ptr && *ptr != ';') | |
2974 | data_addr = (data_addr << 4) + fromhex (*ptr++); | |
2975 | } | |
2976 | else | |
2977 | lose = 1; | |
2978 | ||
2979 | if (!lose && strncmp (ptr, ";Bss=", 5) == 0) | |
2980 | { | |
2981 | ptr += 5; | |
2982 | while (*ptr && *ptr != ';') | |
2983 | bss_addr = (bss_addr << 4) + fromhex (*ptr++); | |
c906108c | 2984 | |
31d99776 DJ |
2985 | if (bss_addr != data_addr) |
2986 | warning (_("Target reported unsupported offsets: %s"), buf); | |
2987 | } | |
2988 | else | |
2989 | lose = 1; | |
2990 | } | |
2991 | else if (strncmp (ptr, "TextSeg=", 8) == 0) | |
c906108c | 2992 | { |
31d99776 DJ |
2993 | ptr += 8; |
2994 | /* Don't use strtol, could lose on big values. */ | |
c906108c | 2995 | while (*ptr && *ptr != ';') |
31d99776 DJ |
2996 | text_addr = (text_addr << 4) + fromhex (*ptr++); |
2997 | num_segments = 1; | |
2998 | ||
2999 | if (strncmp (ptr, ";DataSeg=", 9) == 0) | |
3000 | { | |
3001 | ptr += 9; | |
3002 | while (*ptr && *ptr != ';') | |
3003 | data_addr = (data_addr << 4) + fromhex (*ptr++); | |
3004 | num_segments++; | |
3005 | } | |
c906108c SS |
3006 | } |
3007 | else | |
3008 | lose = 1; | |
3009 | ||
3010 | if (lose) | |
8a3fe4f8 | 3011 | error (_("Malformed response to offset query, %s"), buf); |
31d99776 DJ |
3012 | else if (*ptr != '\0') |
3013 | warning (_("Target reported unsupported offsets: %s"), buf); | |
c906108c | 3014 | |
802188a7 | 3015 | offs = ((struct section_offsets *) |
a39a16c4 | 3016 | alloca (SIZEOF_N_SECTION_OFFSETS (symfile_objfile->num_sections))); |
802188a7 | 3017 | memcpy (offs, symfile_objfile->section_offsets, |
a39a16c4 | 3018 | SIZEOF_N_SECTION_OFFSETS (symfile_objfile->num_sections)); |
c906108c | 3019 | |
31d99776 DJ |
3020 | data = get_symfile_segment_data (symfile_objfile->obfd); |
3021 | do_segments = (data != NULL); | |
3022 | do_sections = num_segments == 0; | |
c906108c | 3023 | |
28c32713 | 3024 | if (num_segments > 0) |
31d99776 | 3025 | { |
31d99776 DJ |
3026 | segments[0] = text_addr; |
3027 | segments[1] = data_addr; | |
3028 | } | |
28c32713 JB |
3029 | /* If we have two segments, we can still try to relocate everything |
3030 | by assuming that the .text and .data offsets apply to the whole | |
3031 | text and data segments. Convert the offsets given in the packet | |
3032 | to base addresses for symfile_map_offsets_to_segments. */ | |
3033 | else if (data && data->num_segments == 2) | |
3034 | { | |
3035 | segments[0] = data->segment_bases[0] + text_addr; | |
3036 | segments[1] = data->segment_bases[1] + data_addr; | |
3037 | num_segments = 2; | |
3038 | } | |
8d385431 DJ |
3039 | /* If the object file has only one segment, assume that it is text |
3040 | rather than data; main programs with no writable data are rare, | |
3041 | but programs with no code are useless. Of course the code might | |
3042 | have ended up in the data segment... to detect that we would need | |
3043 | the permissions here. */ | |
3044 | else if (data && data->num_segments == 1) | |
3045 | { | |
3046 | segments[0] = data->segment_bases[0] + text_addr; | |
3047 | num_segments = 1; | |
3048 | } | |
28c32713 JB |
3049 | /* There's no way to relocate by segment. */ |
3050 | else | |
3051 | do_segments = 0; | |
31d99776 DJ |
3052 | |
3053 | if (do_segments) | |
3054 | { | |
3055 | int ret = symfile_map_offsets_to_segments (symfile_objfile->obfd, data, | |
3056 | offs, num_segments, segments); | |
3057 | ||
3058 | if (ret == 0 && !do_sections) | |
3e43a32a MS |
3059 | error (_("Can not handle qOffsets TextSeg " |
3060 | "response with this symbol file")); | |
31d99776 DJ |
3061 | |
3062 | if (ret > 0) | |
3063 | do_sections = 0; | |
3064 | } | |
c906108c | 3065 | |
9ef895d6 DJ |
3066 | if (data) |
3067 | free_symfile_segment_data (data); | |
31d99776 DJ |
3068 | |
3069 | if (do_sections) | |
3070 | { | |
3071 | offs->offsets[SECT_OFF_TEXT (symfile_objfile)] = text_addr; | |
3072 | ||
3e43a32a MS |
3073 | /* This is a temporary kludge to force data and bss to use the |
3074 | same offsets because that's what nlmconv does now. The real | |
3075 | solution requires changes to the stub and remote.c that I | |
3076 | don't have time to do right now. */ | |
31d99776 DJ |
3077 | |
3078 | offs->offsets[SECT_OFF_DATA (symfile_objfile)] = data_addr; | |
3079 | offs->offsets[SECT_OFF_BSS (symfile_objfile)] = data_addr; | |
3080 | } | |
c906108c SS |
3081 | |
3082 | objfile_relocate (symfile_objfile, offs); | |
3083 | } | |
3084 | ||
74531fed PA |
3085 | /* Callback for iterate_over_threads. Set the STOP_REQUESTED flags in |
3086 | threads we know are stopped already. This is used during the | |
3087 | initial remote connection in non-stop mode --- threads that are | |
3088 | reported as already being stopped are left stopped. */ | |
3089 | ||
3090 | static int | |
3091 | set_stop_requested_callback (struct thread_info *thread, void *data) | |
3092 | { | |
3093 | /* If we have a stop reply for this thread, it must be stopped. */ | |
3094 | if (peek_stop_reply (thread->ptid)) | |
3095 | set_stop_requested (thread->ptid, 1); | |
3096 | ||
3097 | return 0; | |
3098 | } | |
3099 | ||
9a7071a8 JB |
3100 | /* Send interrupt_sequence to remote target. */ |
3101 | static void | |
eeae04df | 3102 | send_interrupt_sequence (void) |
9a7071a8 JB |
3103 | { |
3104 | if (interrupt_sequence_mode == interrupt_sequence_control_c) | |
3105 | serial_write (remote_desc, "\x03", 1); | |
3106 | else if (interrupt_sequence_mode == interrupt_sequence_break) | |
3107 | serial_send_break (remote_desc); | |
3108 | else if (interrupt_sequence_mode == interrupt_sequence_break_g) | |
3109 | { | |
3110 | serial_send_break (remote_desc); | |
3111 | serial_write (remote_desc, "g", 1); | |
3112 | } | |
3113 | else | |
3114 | internal_error (__FILE__, __LINE__, | |
3115 | _("Invalid value for interrupt_sequence_mode: %s."), | |
3116 | interrupt_sequence_mode); | |
3117 | } | |
3118 | ||
9cbc821d | 3119 | static void |
04bd08de | 3120 | remote_start_remote (int from_tty, struct target_ops *target, int extended_p) |
c906108c | 3121 | { |
c8d104ad PA |
3122 | struct remote_state *rs = get_remote_state (); |
3123 | struct packet_config *noack_config; | |
2d717e4f | 3124 | char *wait_status = NULL; |
8621d6a9 | 3125 | |
23860348 | 3126 | immediate_quit++; /* Allow user to interrupt it. */ |
c906108c | 3127 | |
c8d104ad PA |
3128 | /* Ack any packet which the remote side has already sent. */ |
3129 | serial_write (remote_desc, "+", 1); | |
3130 | ||
9a7071a8 JB |
3131 | if (interrupt_on_connect) |
3132 | send_interrupt_sequence (); | |
3133 | ||
c8d104ad PA |
3134 | /* The first packet we send to the target is the optional "supported |
3135 | packets" request. If the target can answer this, it will tell us | |
3136 | which later probes to skip. */ | |
3137 | remote_query_supported (); | |
3138 | ||
d914c394 SS |
3139 | /* If the stub wants to get a QAllow, compose one and send it. */ |
3140 | if (remote_protocol_packets[PACKET_QAllow].support != PACKET_DISABLE) | |
3141 | remote_set_permissions (); | |
3142 | ||
c8d104ad PA |
3143 | /* Next, we possibly activate noack mode. |
3144 | ||
3145 | If the QStartNoAckMode packet configuration is set to AUTO, | |
3146 | enable noack mode if the stub reported a wish for it with | |
3147 | qSupported. | |
3148 | ||
3149 | If set to TRUE, then enable noack mode even if the stub didn't | |
3150 | report it in qSupported. If the stub doesn't reply OK, the | |
3151 | session ends with an error. | |
3152 | ||
3153 | If FALSE, then don't activate noack mode, regardless of what the | |
3154 | stub claimed should be the default with qSupported. */ | |
3155 | ||
3156 | noack_config = &remote_protocol_packets[PACKET_QStartNoAckMode]; | |
3157 | ||
3158 | if (noack_config->detect == AUTO_BOOLEAN_TRUE | |
3159 | || (noack_config->detect == AUTO_BOOLEAN_AUTO | |
3160 | && noack_config->support == PACKET_ENABLE)) | |
3161 | { | |
3162 | putpkt ("QStartNoAckMode"); | |
3163 | getpkt (&rs->buf, &rs->buf_size, 0); | |
3164 | if (packet_ok (rs->buf, noack_config) == PACKET_OK) | |
3165 | rs->noack_mode = 1; | |
3166 | } | |
3167 | ||
04bd08de | 3168 | if (extended_p) |
5fe04517 PA |
3169 | { |
3170 | /* Tell the remote that we are using the extended protocol. */ | |
3171 | putpkt ("!"); | |
3172 | getpkt (&rs->buf, &rs->buf_size, 0); | |
3173 | } | |
3174 | ||
d962ef82 DJ |
3175 | /* Next, if the target can specify a description, read it. We do |
3176 | this before anything involving memory or registers. */ | |
3177 | target_find_description (); | |
3178 | ||
6c95b8df PA |
3179 | /* Next, now that we know something about the target, update the |
3180 | address spaces in the program spaces. */ | |
3181 | update_address_spaces (); | |
3182 | ||
50c71eaf PA |
3183 | /* On OSs where the list of libraries is global to all |
3184 | processes, we fetch them early. */ | |
3185 | if (gdbarch_has_global_solist (target_gdbarch)) | |
04bd08de | 3186 | solib_add (NULL, from_tty, target, auto_solib_add); |
50c71eaf | 3187 | |
74531fed PA |
3188 | if (non_stop) |
3189 | { | |
3190 | if (!rs->non_stop_aware) | |
3e43a32a MS |
3191 | error (_("Non-stop mode requested, but remote " |
3192 | "does not support non-stop")); | |
74531fed PA |
3193 | |
3194 | putpkt ("QNonStop:1"); | |
3195 | getpkt (&rs->buf, &rs->buf_size, 0); | |
3196 | ||
3197 | if (strcmp (rs->buf, "OK") != 0) | |
9b20d036 | 3198 | error (_("Remote refused setting non-stop mode with: %s"), rs->buf); |
74531fed PA |
3199 | |
3200 | /* Find about threads and processes the stub is already | |
3201 | controlling. We default to adding them in the running state. | |
3202 | The '?' query below will then tell us about which threads are | |
3203 | stopped. */ | |
04bd08de | 3204 | remote_threads_info (target); |
74531fed PA |
3205 | } |
3206 | else if (rs->non_stop_aware) | |
3207 | { | |
3208 | /* Don't assume that the stub can operate in all-stop mode. | |
3209 | Request it explicitely. */ | |
3210 | putpkt ("QNonStop:0"); | |
3211 | getpkt (&rs->buf, &rs->buf_size, 0); | |
3212 | ||
3213 | if (strcmp (rs->buf, "OK") != 0) | |
9b20d036 | 3214 | error (_("Remote refused setting all-stop mode with: %s"), rs->buf); |
74531fed PA |
3215 | } |
3216 | ||
2d717e4f DJ |
3217 | /* Check whether the target is running now. */ |
3218 | putpkt ("?"); | |
3219 | getpkt (&rs->buf, &rs->buf_size, 0); | |
3220 | ||
74531fed | 3221 | if (!non_stop) |
2d717e4f | 3222 | { |
74531fed | 3223 | if (rs->buf[0] == 'W' || rs->buf[0] == 'X') |
2d717e4f | 3224 | { |
04bd08de | 3225 | if (!extended_p) |
74531fed | 3226 | error (_("The target is not running (try extended-remote?)")); |
c35b1492 PA |
3227 | |
3228 | /* We're connected, but not running. Drop out before we | |
3229 | call start_remote. */ | |
3230 | return; | |
2d717e4f DJ |
3231 | } |
3232 | else | |
74531fed | 3233 | { |
74531fed PA |
3234 | /* Save the reply for later. */ |
3235 | wait_status = alloca (strlen (rs->buf) + 1); | |
3236 | strcpy (wait_status, rs->buf); | |
3237 | } | |
3238 | ||
3239 | /* Let the stub know that we want it to return the thread. */ | |
3240 | set_continue_thread (minus_one_ptid); | |
3241 | ||
3242 | /* Without this, some commands which require an active target | |
3243 | (such as kill) won't work. This variable serves (at least) | |
3244 | double duty as both the pid of the target process (if it has | |
3245 | such), and as a flag indicating that a target is active. | |
3246 | These functions should be split out into seperate variables, | |
3247 | especially since GDB will someday have a notion of debugging | |
3248 | several processes. */ | |
3249 | inferior_ptid = magic_null_ptid; | |
3250 | ||
3251 | /* Now, if we have thread information, update inferior_ptid. */ | |
3252 | inferior_ptid = remote_current_thread (inferior_ptid); | |
3253 | ||
0b16c5cf | 3254 | remote_add_inferior (ptid_get_pid (inferior_ptid), -1); |
74531fed PA |
3255 | |
3256 | /* Always add the main thread. */ | |
3257 | add_thread_silent (inferior_ptid); | |
3258 | ||
3259 | get_offsets (); /* Get text, data & bss offsets. */ | |
3260 | ||
d962ef82 DJ |
3261 | /* If we could not find a description using qXfer, and we know |
3262 | how to do it some other way, try again. This is not | |
3263 | supported for non-stop; it could be, but it is tricky if | |
3264 | there are no stopped threads when we connect. */ | |
04bd08de | 3265 | if (remote_read_description_p (target) |
d962ef82 DJ |
3266 | && gdbarch_target_desc (target_gdbarch) == NULL) |
3267 | { | |
3268 | target_clear_description (); | |
3269 | target_find_description (); | |
3270 | } | |
3271 | ||
74531fed PA |
3272 | /* Use the previously fetched status. */ |
3273 | gdb_assert (wait_status != NULL); | |
3274 | strcpy (rs->buf, wait_status); | |
3275 | rs->cached_wait_status = 1; | |
3276 | ||
3277 | immediate_quit--; | |
04bd08de | 3278 | start_remote (from_tty); /* Initialize gdb process mechanisms. */ |
2d717e4f DJ |
3279 | } |
3280 | else | |
3281 | { | |
68c97600 PA |
3282 | /* Clear WFI global state. Do this before finding about new |
3283 | threads and inferiors, and setting the current inferior. | |
3284 | Otherwise we would clear the proceed status of the current | |
3285 | inferior when we want its stop_soon state to be preserved | |
3286 | (see notice_new_inferior). */ | |
3287 | init_wait_for_inferior (); | |
3288 | ||
74531fed PA |
3289 | /* In non-stop, we will either get an "OK", meaning that there |
3290 | are no stopped threads at this time; or, a regular stop | |
3291 | reply. In the latter case, there may be more than one thread | |
3292 | stopped --- we pull them all out using the vStopped | |
3293 | mechanism. */ | |
3294 | if (strcmp (rs->buf, "OK") != 0) | |
3295 | { | |
3296 | struct stop_reply *stop_reply; | |
3297 | struct cleanup *old_chain; | |
2d717e4f | 3298 | |
74531fed PA |
3299 | stop_reply = stop_reply_xmalloc (); |
3300 | old_chain = make_cleanup (do_stop_reply_xfree, stop_reply); | |
2d717e4f | 3301 | |
74531fed PA |
3302 | remote_parse_stop_reply (rs->buf, stop_reply); |
3303 | discard_cleanups (old_chain); | |
c0a2216e | 3304 | |
74531fed PA |
3305 | /* get_pending_stop_replies acks this one, and gets the rest |
3306 | out. */ | |
3307 | pending_stop_reply = stop_reply; | |
3308 | remote_get_pending_stop_replies (); | |
c906108c | 3309 | |
74531fed PA |
3310 | /* Make sure that threads that were stopped remain |
3311 | stopped. */ | |
3312 | iterate_over_threads (set_stop_requested_callback, NULL); | |
3313 | } | |
2d717e4f | 3314 | |
74531fed PA |
3315 | if (target_can_async_p ()) |
3316 | target_async (inferior_event_handler, 0); | |
c906108c | 3317 | |
74531fed PA |
3318 | if (thread_count () == 0) |
3319 | { | |
04bd08de | 3320 | if (!extended_p) |
74531fed | 3321 | error (_("The target is not running (try extended-remote?)")); |
82f73884 | 3322 | |
c35b1492 PA |
3323 | /* We're connected, but not running. Drop out before we |
3324 | call start_remote. */ | |
3325 | return; | |
3326 | } | |
74531fed PA |
3327 | |
3328 | /* Let the stub know that we want it to return the thread. */ | |
c0a2216e | 3329 | |
74531fed PA |
3330 | /* Force the stub to choose a thread. */ |
3331 | set_general_thread (null_ptid); | |
c906108c | 3332 | |
74531fed PA |
3333 | /* Query it. */ |
3334 | inferior_ptid = remote_current_thread (minus_one_ptid); | |
3335 | if (ptid_equal (inferior_ptid, minus_one_ptid)) | |
3336 | error (_("remote didn't report the current thread in non-stop mode")); | |
c906108c | 3337 | |
74531fed PA |
3338 | get_offsets (); /* Get text, data & bss offsets. */ |
3339 | ||
3340 | /* In non-stop mode, any cached wait status will be stored in | |
3341 | the stop reply queue. */ | |
3342 | gdb_assert (wait_status == NULL); | |
f0223081 PA |
3343 | |
3344 | /* Update the remote on signals to silently pass, or more | |
3345 | importantly, which to not ignore, in case a previous session | |
3346 | had set some different set of signals to be ignored. */ | |
3347 | remote_pass_signals (); | |
74531fed | 3348 | } |
c8d104ad | 3349 | |
c8d104ad PA |
3350 | /* If we connected to a live target, do some additional setup. */ |
3351 | if (target_has_execution) | |
3352 | { | |
3353 | if (exec_bfd) /* No use without an exec file. */ | |
3354 | remote_check_symbols (symfile_objfile); | |
3355 | } | |
50c71eaf | 3356 | |
d5551862 SS |
3357 | /* Possibly the target has been engaged in a trace run started |
3358 | previously; find out where things are at. */ | |
ad91cd99 | 3359 | if (remote_get_trace_status (current_trace_status ()) != -1) |
d5551862 | 3360 | { |
00bf0b85 SS |
3361 | struct uploaded_tp *uploaded_tps = NULL; |
3362 | struct uploaded_tsv *uploaded_tsvs = NULL; | |
3363 | ||
00bf0b85 SS |
3364 | if (current_trace_status ()->running) |
3365 | printf_filtered (_("Trace is already running on the target.\n")); | |
3366 | ||
3367 | /* Get trace state variables first, they may be checked when | |
3368 | parsing uploaded commands. */ | |
3369 | ||
3370 | remote_upload_trace_state_variables (&uploaded_tsvs); | |
3371 | ||
3372 | merge_uploaded_trace_state_variables (&uploaded_tsvs); | |
3373 | ||
3374 | remote_upload_tracepoints (&uploaded_tps); | |
3375 | ||
3376 | merge_uploaded_tracepoints (&uploaded_tps); | |
d5551862 SS |
3377 | } |
3378 | ||
2567c7d9 PA |
3379 | /* If breakpoints are global, insert them now. */ |
3380 | if (gdbarch_has_global_breakpoints (target_gdbarch) | |
50c71eaf PA |
3381 | && breakpoints_always_inserted_mode ()) |
3382 | insert_breakpoints (); | |
c906108c SS |
3383 | } |
3384 | ||
3385 | /* Open a connection to a remote debugger. | |
3386 | NAME is the filename used for communication. */ | |
3387 | ||
3388 | static void | |
fba45db2 | 3389 | remote_open (char *name, int from_tty) |
c906108c | 3390 | { |
75c99385 | 3391 | remote_open_1 (name, from_tty, &remote_ops, 0); |
43ff13b4 JM |
3392 | } |
3393 | ||
c906108c SS |
3394 | /* Open a connection to a remote debugger using the extended |
3395 | remote gdb protocol. NAME is the filename used for communication. */ | |
3396 | ||
3397 | static void | |
fba45db2 | 3398 | extended_remote_open (char *name, int from_tty) |
c906108c | 3399 | { |
75c99385 | 3400 | remote_open_1 (name, from_tty, &extended_remote_ops, 1 /*extended_p */); |
43ff13b4 JM |
3401 | } |
3402 | ||
c906108c SS |
3403 | /* Generic code for opening a connection to a remote target. */ |
3404 | ||
d471ea57 AC |
3405 | static void |
3406 | init_all_packet_configs (void) | |
3407 | { | |
3408 | int i; | |
a744cf53 | 3409 | |
444abaca DJ |
3410 | for (i = 0; i < PACKET_MAX; i++) |
3411 | update_packet_config (&remote_protocol_packets[i]); | |
d471ea57 AC |
3412 | } |
3413 | ||
23860348 | 3414 | /* Symbol look-up. */ |
dc8acb97 MS |
3415 | |
3416 | static void | |
3417 | remote_check_symbols (struct objfile *objfile) | |
3418 | { | |
d01949b6 | 3419 | struct remote_state *rs = get_remote_state (); |
dc8acb97 MS |
3420 | char *msg, *reply, *tmp; |
3421 | struct minimal_symbol *sym; | |
3422 | int end; | |
3423 | ||
63154eca PA |
3424 | /* The remote side has no concept of inferiors that aren't running |
3425 | yet, it only knows about running processes. If we're connected | |
3426 | but our current inferior is not running, we should not invite the | |
3427 | remote target to request symbol lookups related to its | |
3428 | (unrelated) current process. */ | |
3429 | if (!target_has_execution) | |
3430 | return; | |
3431 | ||
444abaca | 3432 | if (remote_protocol_packets[PACKET_qSymbol].support == PACKET_DISABLE) |
dc8acb97 MS |
3433 | return; |
3434 | ||
63154eca PA |
3435 | /* Make sure the remote is pointing at the right process. Note |
3436 | there's no way to select "no process". */ | |
3c9c4b83 PA |
3437 | set_general_process (); |
3438 | ||
6d820c5c DJ |
3439 | /* Allocate a message buffer. We can't reuse the input buffer in RS, |
3440 | because we need both at the same time. */ | |
ea9c271d | 3441 | msg = alloca (get_remote_packet_size ()); |
6d820c5c | 3442 | |
23860348 | 3443 | /* Invite target to request symbol lookups. */ |
dc8acb97 MS |
3444 | |
3445 | putpkt ("qSymbol::"); | |
6d820c5c DJ |
3446 | getpkt (&rs->buf, &rs->buf_size, 0); |
3447 | packet_ok (rs->buf, &remote_protocol_packets[PACKET_qSymbol]); | |
2e9f7625 | 3448 | reply = rs->buf; |
dc8acb97 MS |
3449 | |
3450 | while (strncmp (reply, "qSymbol:", 8) == 0) | |
3451 | { | |
3452 | tmp = &reply[8]; | |
cfd77fa1 | 3453 | end = hex2bin (tmp, (gdb_byte *) msg, strlen (tmp) / 2); |
dc8acb97 MS |
3454 | msg[end] = '\0'; |
3455 | sym = lookup_minimal_symbol (msg, NULL, NULL); | |
3456 | if (sym == NULL) | |
ea9c271d | 3457 | xsnprintf (msg, get_remote_packet_size (), "qSymbol::%s", &reply[8]); |
dc8acb97 | 3458 | else |
2bbe3cc1 | 3459 | { |
5af949e3 | 3460 | int addr_size = gdbarch_addr_bit (target_gdbarch) / 8; |
2bbe3cc1 DJ |
3461 | CORE_ADDR sym_addr = SYMBOL_VALUE_ADDRESS (sym); |
3462 | ||
3463 | /* If this is a function address, return the start of code | |
3464 | instead of any data function descriptor. */ | |
1cf3db46 | 3465 | sym_addr = gdbarch_convert_from_func_ptr_addr (target_gdbarch, |
2bbe3cc1 DJ |
3466 | sym_addr, |
3467 | ¤t_target); | |
3468 | ||
3469 | xsnprintf (msg, get_remote_packet_size (), "qSymbol:%s:%s", | |
5af949e3 | 3470 | phex_nz (sym_addr, addr_size), &reply[8]); |
2bbe3cc1 DJ |
3471 | } |
3472 | ||
dc8acb97 | 3473 | putpkt (msg); |
6d820c5c | 3474 | getpkt (&rs->buf, &rs->buf_size, 0); |
2e9f7625 | 3475 | reply = rs->buf; |
dc8acb97 MS |
3476 | } |
3477 | } | |
3478 | ||
9db8d71f DJ |
3479 | static struct serial * |
3480 | remote_serial_open (char *name) | |
3481 | { | |
3482 | static int udp_warning = 0; | |
3483 | ||
3484 | /* FIXME: Parsing NAME here is a hack. But we want to warn here instead | |
3485 | of in ser-tcp.c, because it is the remote protocol assuming that the | |
3486 | serial connection is reliable and not the serial connection promising | |
3487 | to be. */ | |
3488 | if (!udp_warning && strncmp (name, "udp:", 4) == 0) | |
3489 | { | |
3e43a32a MS |
3490 | warning (_("The remote protocol may be unreliable over UDP.\n" |
3491 | "Some events may be lost, rendering further debugging " | |
3492 | "impossible.")); | |
9db8d71f DJ |
3493 | udp_warning = 1; |
3494 | } | |
3495 | ||
3496 | return serial_open (name); | |
3497 | } | |
3498 | ||
d914c394 SS |
3499 | /* Inform the target of our permission settings. The permission flags |
3500 | work without this, but if the target knows the settings, it can do | |
3501 | a couple things. First, it can add its own check, to catch cases | |
3502 | that somehow manage to get by the permissions checks in target | |
3503 | methods. Second, if the target is wired to disallow particular | |
3504 | settings (for instance, a system in the field that is not set up to | |
3505 | be able to stop at a breakpoint), it can object to any unavailable | |
3506 | permissions. */ | |
3507 | ||
3508 | void | |
3509 | remote_set_permissions (void) | |
3510 | { | |
3511 | struct remote_state *rs = get_remote_state (); | |
3512 | ||
3513 | sprintf (rs->buf, "QAllow:" | |
3514 | "WriteReg:%x;WriteMem:%x;" | |
3515 | "InsertBreak:%x;InsertTrace:%x;" | |
3516 | "InsertFastTrace:%x;Stop:%x", | |
3517 | may_write_registers, may_write_memory, | |
3518 | may_insert_breakpoints, may_insert_tracepoints, | |
3519 | may_insert_fast_tracepoints, may_stop); | |
3520 | putpkt (rs->buf); | |
3521 | getpkt (&rs->buf, &rs->buf_size, 0); | |
3522 | ||
3523 | /* If the target didn't like the packet, warn the user. Do not try | |
3524 | to undo the user's settings, that would just be maddening. */ | |
3525 | if (strcmp (rs->buf, "OK") != 0) | |
7ea6d463 | 3526 | warning (_("Remote refused setting permissions with: %s"), rs->buf); |
d914c394 SS |
3527 | } |
3528 | ||
be2a5f71 DJ |
3529 | /* This type describes each known response to the qSupported |
3530 | packet. */ | |
3531 | struct protocol_feature | |
3532 | { | |
3533 | /* The name of this protocol feature. */ | |
3534 | const char *name; | |
3535 | ||
3536 | /* The default for this protocol feature. */ | |
3537 | enum packet_support default_support; | |
3538 | ||
3539 | /* The function to call when this feature is reported, or after | |
3540 | qSupported processing if the feature is not supported. | |
3541 | The first argument points to this structure. The second | |
3542 | argument indicates whether the packet requested support be | |
3543 | enabled, disabled, or probed (or the default, if this function | |
3544 | is being called at the end of processing and this feature was | |
3545 | not reported). The third argument may be NULL; if not NULL, it | |
3546 | is a NUL-terminated string taken from the packet following | |
3547 | this feature's name and an equals sign. */ | |
3548 | void (*func) (const struct protocol_feature *, enum packet_support, | |
3549 | const char *); | |
3550 | ||
3551 | /* The corresponding packet for this feature. Only used if | |
3552 | FUNC is remote_supported_packet. */ | |
3553 | int packet; | |
3554 | }; | |
3555 | ||
be2a5f71 DJ |
3556 | static void |
3557 | remote_supported_packet (const struct protocol_feature *feature, | |
3558 | enum packet_support support, | |
3559 | const char *argument) | |
3560 | { | |
3561 | if (argument) | |
3562 | { | |
3563 | warning (_("Remote qSupported response supplied an unexpected value for" | |
3564 | " \"%s\"."), feature->name); | |
3565 | return; | |
3566 | } | |
3567 | ||
3568 | if (remote_protocol_packets[feature->packet].support | |
3569 | == PACKET_SUPPORT_UNKNOWN) | |
3570 | remote_protocol_packets[feature->packet].support = support; | |
3571 | } | |
be2a5f71 DJ |
3572 | |
3573 | static void | |
3574 | remote_packet_size (const struct protocol_feature *feature, | |
3575 | enum packet_support support, const char *value) | |
3576 | { | |
3577 | struct remote_state *rs = get_remote_state (); | |
3578 | ||
3579 | int packet_size; | |
3580 | char *value_end; | |
3581 | ||
3582 | if (support != PACKET_ENABLE) | |
3583 | return; | |
3584 | ||
3585 | if (value == NULL || *value == '\0') | |
3586 | { | |
3587 | warning (_("Remote target reported \"%s\" without a size."), | |
3588 | feature->name); | |
3589 | return; | |
3590 | } | |
3591 | ||
3592 | errno = 0; | |
3593 | packet_size = strtol (value, &value_end, 16); | |
3594 | if (errno != 0 || *value_end != '\0' || packet_size < 0) | |
3595 | { | |
3596 | warning (_("Remote target reported \"%s\" with a bad size: \"%s\"."), | |
3597 | feature->name, value); | |
3598 | return; | |
3599 | } | |
3600 | ||
3601 | if (packet_size > MAX_REMOTE_PACKET_SIZE) | |
3602 | { | |
3603 | warning (_("limiting remote suggested packet size (%d bytes) to %d"), | |
3604 | packet_size, MAX_REMOTE_PACKET_SIZE); | |
3605 | packet_size = MAX_REMOTE_PACKET_SIZE; | |
3606 | } | |
3607 | ||
3608 | /* Record the new maximum packet size. */ | |
3609 | rs->explicit_packet_size = packet_size; | |
3610 | } | |
3611 | ||
82f73884 PA |
3612 | static void |
3613 | remote_multi_process_feature (const struct protocol_feature *feature, | |
3614 | enum packet_support support, const char *value) | |
3615 | { | |
3616 | struct remote_state *rs = get_remote_state (); | |
a744cf53 | 3617 | |
82f73884 PA |
3618 | rs->multi_process_aware = (support == PACKET_ENABLE); |
3619 | } | |
3620 | ||
74531fed PA |
3621 | static void |
3622 | remote_non_stop_feature (const struct protocol_feature *feature, | |
3623 | enum packet_support support, const char *value) | |
3624 | { | |
3625 | struct remote_state *rs = get_remote_state (); | |
a744cf53 | 3626 | |
74531fed PA |
3627 | rs->non_stop_aware = (support == PACKET_ENABLE); |
3628 | } | |
3629 | ||
782b2b07 SS |
3630 | static void |
3631 | remote_cond_tracepoint_feature (const struct protocol_feature *feature, | |
3632 | enum packet_support support, | |
3633 | const char *value) | |
3634 | { | |
3635 | struct remote_state *rs = get_remote_state (); | |
a744cf53 | 3636 | |
782b2b07 SS |
3637 | rs->cond_tracepoints = (support == PACKET_ENABLE); |
3638 | } | |
3639 | ||
7a697b8d SS |
3640 | static void |
3641 | remote_fast_tracepoint_feature (const struct protocol_feature *feature, | |
3642 | enum packet_support support, | |
3643 | const char *value) | |
3644 | { | |
3645 | struct remote_state *rs = get_remote_state (); | |
a744cf53 | 3646 | |
7a697b8d SS |
3647 | rs->fast_tracepoints = (support == PACKET_ENABLE); |
3648 | } | |
3649 | ||
0fb4aa4b PA |
3650 | static void |
3651 | remote_static_tracepoint_feature (const struct protocol_feature *feature, | |
3652 | enum packet_support support, | |
3653 | const char *value) | |
3654 | { | |
3655 | struct remote_state *rs = get_remote_state (); | |
3656 | ||
3657 | rs->static_tracepoints = (support == PACKET_ENABLE); | |
3658 | } | |
3659 | ||
d5551862 SS |
3660 | static void |
3661 | remote_disconnected_tracing_feature (const struct protocol_feature *feature, | |
3662 | enum packet_support support, | |
3663 | const char *value) | |
3664 | { | |
3665 | struct remote_state *rs = get_remote_state (); | |
a744cf53 | 3666 | |
d5551862 SS |
3667 | rs->disconnected_tracing = (support == PACKET_ENABLE); |
3668 | } | |
3669 | ||
be2a5f71 | 3670 | static struct protocol_feature remote_protocol_features[] = { |
0876f84a | 3671 | { "PacketSize", PACKET_DISABLE, remote_packet_size, -1 }, |
40e57cf2 | 3672 | { "qXfer:auxv:read", PACKET_DISABLE, remote_supported_packet, |
fd79ecee | 3673 | PACKET_qXfer_auxv }, |
23181151 DJ |
3674 | { "qXfer:features:read", PACKET_DISABLE, remote_supported_packet, |
3675 | PACKET_qXfer_features }, | |
cfa9d6d9 DJ |
3676 | { "qXfer:libraries:read", PACKET_DISABLE, remote_supported_packet, |
3677 | PACKET_qXfer_libraries }, | |
fd79ecee | 3678 | { "qXfer:memory-map:read", PACKET_DISABLE, remote_supported_packet, |
89be2091 | 3679 | PACKET_qXfer_memory_map }, |
4de6483e UW |
3680 | { "qXfer:spu:read", PACKET_DISABLE, remote_supported_packet, |
3681 | PACKET_qXfer_spu_read }, | |
3682 | { "qXfer:spu:write", PACKET_DISABLE, remote_supported_packet, | |
3683 | PACKET_qXfer_spu_write }, | |
07e059b5 VP |
3684 | { "qXfer:osdata:read", PACKET_DISABLE, remote_supported_packet, |
3685 | PACKET_qXfer_osdata }, | |
dc146f7c VP |
3686 | { "qXfer:threads:read", PACKET_DISABLE, remote_supported_packet, |
3687 | PACKET_qXfer_threads }, | |
b3b9301e PA |
3688 | { "qXfer:traceframe-info:read", PACKET_DISABLE, remote_supported_packet, |
3689 | PACKET_qXfer_traceframe_info }, | |
89be2091 DJ |
3690 | { "QPassSignals", PACKET_DISABLE, remote_supported_packet, |
3691 | PACKET_QPassSignals }, | |
a6f3e723 SL |
3692 | { "QStartNoAckMode", PACKET_DISABLE, remote_supported_packet, |
3693 | PACKET_QStartNoAckMode }, | |
82f73884 | 3694 | { "multiprocess", PACKET_DISABLE, remote_multi_process_feature, -1 }, |
74531fed | 3695 | { "QNonStop", PACKET_DISABLE, remote_non_stop_feature, -1 }, |
4aa995e1 PA |
3696 | { "qXfer:siginfo:read", PACKET_DISABLE, remote_supported_packet, |
3697 | PACKET_qXfer_siginfo_read }, | |
3698 | { "qXfer:siginfo:write", PACKET_DISABLE, remote_supported_packet, | |
3699 | PACKET_qXfer_siginfo_write }, | |
782b2b07 SS |
3700 | { "ConditionalTracepoints", PACKET_DISABLE, remote_cond_tracepoint_feature, |
3701 | PACKET_ConditionalTracepoints }, | |
7a697b8d SS |
3702 | { "FastTracepoints", PACKET_DISABLE, remote_fast_tracepoint_feature, |
3703 | PACKET_FastTracepoints }, | |
0fb4aa4b PA |
3704 | { "StaticTracepoints", PACKET_DISABLE, remote_static_tracepoint_feature, |
3705 | PACKET_StaticTracepoints }, | |
d5551862 SS |
3706 | { "DisconnectedTracing", PACKET_DISABLE, remote_disconnected_tracing_feature, |
3707 | -1 }, | |
40ab02ce MS |
3708 | { "ReverseContinue", PACKET_DISABLE, remote_supported_packet, |
3709 | PACKET_bc }, | |
3710 | { "ReverseStep", PACKET_DISABLE, remote_supported_packet, | |
3711 | PACKET_bs }, | |
409873ef SS |
3712 | { "TracepointSource", PACKET_DISABLE, remote_supported_packet, |
3713 | PACKET_TracepointSource }, | |
d914c394 SS |
3714 | { "QAllow", PACKET_DISABLE, remote_supported_packet, |
3715 | PACKET_QAllow }, | |
be2a5f71 DJ |
3716 | }; |
3717 | ||
c8d5aac9 L |
3718 | static char *remote_support_xml; |
3719 | ||
3720 | /* Register string appended to "xmlRegisters=" in qSupported query. */ | |
3721 | ||
3722 | void | |
6e39997a | 3723 | register_remote_support_xml (const char *xml) |
c8d5aac9 L |
3724 | { |
3725 | #if defined(HAVE_LIBEXPAT) | |
3726 | if (remote_support_xml == NULL) | |
c4f7c687 | 3727 | remote_support_xml = concat ("xmlRegisters=", xml, (char *) NULL); |
c8d5aac9 L |
3728 | else |
3729 | { | |
3730 | char *copy = xstrdup (remote_support_xml + 13); | |
3731 | char *p = strtok (copy, ","); | |
3732 | ||
3733 | do | |
3734 | { | |
3735 | if (strcmp (p, xml) == 0) | |
3736 | { | |
3737 | /* already there */ | |
3738 | xfree (copy); | |
3739 | return; | |
3740 | } | |
3741 | } | |
3742 | while ((p = strtok (NULL, ",")) != NULL); | |
3743 | xfree (copy); | |
3744 | ||
94b0dee1 PA |
3745 | remote_support_xml = reconcat (remote_support_xml, |
3746 | remote_support_xml, ",", xml, | |
3747 | (char *) NULL); | |
c8d5aac9 L |
3748 | } |
3749 | #endif | |
3750 | } | |
3751 | ||
3752 | static char * | |
3753 | remote_query_supported_append (char *msg, const char *append) | |
3754 | { | |
3755 | if (msg) | |
94b0dee1 | 3756 | return reconcat (msg, msg, ";", append, (char *) NULL); |
c8d5aac9 L |
3757 | else |
3758 | return xstrdup (append); | |
3759 | } | |
3760 | ||
be2a5f71 DJ |
3761 | static void |
3762 | remote_query_supported (void) | |
3763 | { | |
3764 | struct remote_state *rs = get_remote_state (); | |
3765 | char *next; | |
3766 | int i; | |
3767 | unsigned char seen [ARRAY_SIZE (remote_protocol_features)]; | |
3768 | ||
3769 | /* The packet support flags are handled differently for this packet | |
3770 | than for most others. We treat an error, a disabled packet, and | |
3771 | an empty response identically: any features which must be reported | |
3772 | to be used will be automatically disabled. An empty buffer | |
3773 | accomplishes this, since that is also the representation for a list | |
3774 | containing no features. */ | |
3775 | ||
3776 | rs->buf[0] = 0; | |
3777 | if (remote_protocol_packets[PACKET_qSupported].support != PACKET_DISABLE) | |
3778 | { | |
c8d5aac9 | 3779 | char *q = NULL; |
94b0dee1 | 3780 | struct cleanup *old_chain = make_cleanup (free_current_contents, &q); |
c8d5aac9 L |
3781 | |
3782 | if (rs->extended) | |
3783 | q = remote_query_supported_append (q, "multiprocess+"); | |
c8d5aac9 L |
3784 | |
3785 | if (remote_support_xml) | |
3786 | q = remote_query_supported_append (q, remote_support_xml); | |
3787 | ||
dde08ee1 PA |
3788 | q = remote_query_supported_append (q, "qRelocInsn+"); |
3789 | ||
3790 | q = reconcat (q, "qSupported:", q, (char *) NULL); | |
3791 | putpkt (q); | |
82f73884 | 3792 | |
94b0dee1 PA |
3793 | do_cleanups (old_chain); |
3794 | ||
be2a5f71 DJ |
3795 | getpkt (&rs->buf, &rs->buf_size, 0); |
3796 | ||
3797 | /* If an error occured, warn, but do not return - just reset the | |
3798 | buffer to empty and go on to disable features. */ | |
3799 | if (packet_ok (rs->buf, &remote_protocol_packets[PACKET_qSupported]) | |
3800 | == PACKET_ERROR) | |
3801 | { | |
3802 | warning (_("Remote failure reply: %s"), rs->buf); | |
3803 | rs->buf[0] = 0; | |
3804 | } | |
3805 | } | |
3806 | ||
3807 | memset (seen, 0, sizeof (seen)); | |
3808 | ||
3809 | next = rs->buf; | |
3810 | while (*next) | |
3811 | { | |
3812 | enum packet_support is_supported; | |
3813 | char *p, *end, *name_end, *value; | |
3814 | ||
3815 | /* First separate out this item from the rest of the packet. If | |
3816 | there's another item after this, we overwrite the separator | |
3817 | (terminated strings are much easier to work with). */ | |
3818 | p = next; | |
3819 | end = strchr (p, ';'); | |
3820 | if (end == NULL) | |
3821 | { | |
3822 | end = p + strlen (p); | |
3823 | next = end; | |
3824 | } | |
3825 | else | |
3826 | { | |
89be2091 DJ |
3827 | *end = '\0'; |
3828 | next = end + 1; | |
3829 | ||
be2a5f71 DJ |
3830 | if (end == p) |
3831 | { | |
3832 | warning (_("empty item in \"qSupported\" response")); | |
3833 | continue; | |
3834 | } | |
be2a5f71 DJ |
3835 | } |
3836 | ||
3837 | name_end = strchr (p, '='); | |
3838 | if (name_end) | |
3839 | { | |
3840 | /* This is a name=value entry. */ | |
3841 | is_supported = PACKET_ENABLE; | |
3842 | value = name_end + 1; | |
3843 | *name_end = '\0'; | |
3844 | } | |
3845 | else | |
3846 | { | |
3847 | value = NULL; | |
3848 | switch (end[-1]) | |
3849 | { | |
3850 | case '+': | |
3851 | is_supported = PACKET_ENABLE; | |
3852 | break; | |
3853 | ||
3854 | case '-': | |
3855 | is_supported = PACKET_DISABLE; | |
3856 | break; | |
3857 | ||
3858 | case '?': | |
3859 | is_supported = PACKET_SUPPORT_UNKNOWN; | |
3860 | break; | |
3861 | ||
3862 | default: | |
3e43a32a MS |
3863 | warning (_("unrecognized item \"%s\" " |
3864 | "in \"qSupported\" response"), p); | |
be2a5f71 DJ |
3865 | continue; |
3866 | } | |
3867 | end[-1] = '\0'; | |
3868 | } | |
3869 | ||
3870 | for (i = 0; i < ARRAY_SIZE (remote_protocol_features); i++) | |
3871 | if (strcmp (remote_protocol_features[i].name, p) == 0) | |
3872 | { | |
3873 | const struct protocol_feature *feature; | |
3874 | ||
3875 | seen[i] = 1; | |
3876 | feature = &remote_protocol_features[i]; | |
3877 | feature->func (feature, is_supported, value); | |
3878 | break; | |
3879 | } | |
3880 | } | |
3881 | ||
3882 | /* If we increased the packet size, make sure to increase the global | |
3883 | buffer size also. We delay this until after parsing the entire | |
3884 | qSupported packet, because this is the same buffer we were | |
3885 | parsing. */ | |
3886 | if (rs->buf_size < rs->explicit_packet_size) | |
3887 | { | |
3888 | rs->buf_size = rs->explicit_packet_size; | |
3889 | rs->buf = xrealloc (rs->buf, rs->buf_size); | |
3890 | } | |
3891 | ||
3892 | /* Handle the defaults for unmentioned features. */ | |
3893 | for (i = 0; i < ARRAY_SIZE (remote_protocol_features); i++) | |
3894 | if (!seen[i]) | |
3895 | { | |
3896 | const struct protocol_feature *feature; | |
3897 | ||
3898 | feature = &remote_protocol_features[i]; | |
3899 | feature->func (feature, feature->default_support, NULL); | |
3900 | } | |
3901 | } | |
3902 | ||
3903 | ||
c906108c | 3904 | static void |
3e43a32a MS |
3905 | remote_open_1 (char *name, int from_tty, |
3906 | struct target_ops *target, int extended_p) | |
c906108c | 3907 | { |
d01949b6 | 3908 | struct remote_state *rs = get_remote_state (); |
a6f3e723 | 3909 | |
c906108c | 3910 | if (name == 0) |
8a3fe4f8 | 3911 | error (_("To open a remote debug connection, you need to specify what\n" |
22e04375 | 3912 | "serial device is attached to the remote system\n" |
8a3fe4f8 | 3913 | "(e.g. /dev/ttyS0, /dev/ttya, COM1, etc.).")); |
c906108c | 3914 | |
23860348 | 3915 | /* See FIXME above. */ |
c6ebd6cf | 3916 | if (!target_async_permitted) |
92d1e331 | 3917 | wait_forever_enabled_p = 1; |
6426a772 | 3918 | |
2d717e4f DJ |
3919 | /* If we're connected to a running target, target_preopen will kill it. |
3920 | But if we're connected to a target system with no running process, | |
3921 | then we will still be connected when it returns. Ask this question | |
3922 | first, before target_preopen has a chance to kill anything. */ | |
c35b1492 | 3923 | if (remote_desc != NULL && !have_inferiors ()) |
2d717e4f DJ |
3924 | { |
3925 | if (!from_tty | |
3926 | || query (_("Already connected to a remote target. Disconnect? "))) | |
3927 | pop_target (); | |
3928 | else | |
3929 | error (_("Still connected.")); | |
3930 | } | |
3931 | ||
c906108c SS |
3932 | target_preopen (from_tty); |
3933 | ||
3934 | unpush_target (target); | |
3935 | ||
2d717e4f DJ |
3936 | /* This time without a query. If we were connected to an |
3937 | extended-remote target and target_preopen killed the running | |
3938 | process, we may still be connected. If we are starting "target | |
3939 | remote" now, the extended-remote target will not have been | |
3940 | removed by unpush_target. */ | |
c35b1492 | 3941 | if (remote_desc != NULL && !have_inferiors ()) |
2d717e4f DJ |
3942 | pop_target (); |
3943 | ||
89be2091 DJ |
3944 | /* Make sure we send the passed signals list the next time we resume. */ |
3945 | xfree (last_pass_packet); | |
3946 | last_pass_packet = NULL; | |
3947 | ||
ad9a8f3f | 3948 | remote_fileio_reset (); |
1dd41f16 NS |
3949 | reopen_exec_file (); |
3950 | reread_symbols (); | |
3951 | ||
9db8d71f | 3952 | remote_desc = remote_serial_open (name); |
c906108c SS |
3953 | if (!remote_desc) |
3954 | perror_with_name (name); | |
3955 | ||
3956 | if (baud_rate != -1) | |
3957 | { | |
2cd58942 | 3958 | if (serial_setbaudrate (remote_desc, baud_rate)) |
c906108c | 3959 | { |
9b74d5d3 KB |
3960 | /* The requested speed could not be set. Error out to |
3961 | top level after closing remote_desc. Take care to | |
3962 | set remote_desc to NULL to avoid closing remote_desc | |
3963 | more than once. */ | |
2cd58942 | 3964 | serial_close (remote_desc); |
9b74d5d3 | 3965 | remote_desc = NULL; |
c906108c SS |
3966 | perror_with_name (name); |
3967 | } | |
3968 | } | |
3969 | ||
2cd58942 | 3970 | serial_raw (remote_desc); |
c906108c SS |
3971 | |
3972 | /* If there is something sitting in the buffer we might take it as a | |
3973 | response to a command, which would be bad. */ | |
2cd58942 | 3974 | serial_flush_input (remote_desc); |
c906108c SS |
3975 | |
3976 | if (from_tty) | |
3977 | { | |
3978 | puts_filtered ("Remote debugging using "); | |
3979 | puts_filtered (name); | |
3980 | puts_filtered ("\n"); | |
3981 | } | |
23860348 | 3982 | push_target (target); /* Switch to using remote target now. */ |
c906108c | 3983 | |
74531fed PA |
3984 | /* Register extra event sources in the event loop. */ |
3985 | remote_async_inferior_event_token | |
3986 | = create_async_event_handler (remote_async_inferior_event_handler, | |
3987 | NULL); | |
3988 | remote_async_get_pending_events_token | |
3989 | = create_async_event_handler (remote_async_get_pending_events_handler, | |
3990 | NULL); | |
3991 | ||
be2a5f71 DJ |
3992 | /* Reset the target state; these things will be queried either by |
3993 | remote_query_supported or as they are needed. */ | |
d471ea57 | 3994 | init_all_packet_configs (); |
74531fed | 3995 | rs->cached_wait_status = 0; |
be2a5f71 | 3996 | rs->explicit_packet_size = 0; |
a6f3e723 | 3997 | rs->noack_mode = 0; |
82f73884 PA |
3998 | rs->multi_process_aware = 0; |
3999 | rs->extended = extended_p; | |
74531fed | 4000 | rs->non_stop_aware = 0; |
e24a49d8 | 4001 | rs->waiting_for_stop_reply = 0; |
3a29589a | 4002 | rs->ctrlc_pending_p = 0; |
802188a7 | 4003 | |
79d7f229 PA |
4004 | general_thread = not_sent_ptid; |
4005 | continue_thread = not_sent_ptid; | |
e6e4e701 | 4006 | remote_traceframe_number = -1; |
c906108c | 4007 | |
9d1f7ab2 MS |
4008 | /* Probe for ability to use "ThreadInfo" query, as required. */ |
4009 | use_threadinfo_query = 1; | |
4010 | use_threadextra_query = 1; | |
4011 | ||
c6ebd6cf | 4012 | if (target_async_permitted) |
92d1e331 | 4013 | { |
23860348 | 4014 | /* With this target we start out by owning the terminal. */ |
92d1e331 DJ |
4015 | remote_async_terminal_ours_p = 1; |
4016 | ||
4017 | /* FIXME: cagney/1999-09-23: During the initial connection it is | |
4018 | assumed that the target is already ready and able to respond to | |
0df8b418 | 4019 | requests. Unfortunately remote_start_remote() eventually calls |
92d1e331 | 4020 | wait_for_inferior() with no timeout. wait_forever_enabled_p gets |
0df8b418 | 4021 | around this. Eventually a mechanism that allows |
92d1e331 | 4022 | wait_for_inferior() to expect/get timeouts will be |
23860348 | 4023 | implemented. */ |
92d1e331 DJ |
4024 | wait_forever_enabled_p = 0; |
4025 | } | |
4026 | ||
23860348 | 4027 | /* First delete any symbols previously loaded from shared libraries. */ |
f78f6cf1 | 4028 | no_shared_libraries (NULL, 0); |
f78f6cf1 | 4029 | |
74531fed PA |
4030 | /* Start afresh. */ |
4031 | init_thread_list (); | |
4032 | ||
36918e70 | 4033 | /* Start the remote connection. If error() or QUIT, discard this |
165b8e33 AC |
4034 | target (we'd otherwise be in an inconsistent state) and then |
4035 | propogate the error on up the exception chain. This ensures that | |
4036 | the caller doesn't stumble along blindly assuming that the | |
4037 | function succeeded. The CLI doesn't have this problem but other | |
4038 | UI's, such as MI do. | |
36918e70 AC |
4039 | |
4040 | FIXME: cagney/2002-05-19: Instead of re-throwing the exception, | |
4041 | this function should return an error indication letting the | |
ce2826aa | 4042 | caller restore the previous state. Unfortunately the command |
36918e70 AC |
4043 | ``target remote'' is directly wired to this function making that |
4044 | impossible. On a positive note, the CLI side of this problem has | |
4045 | been fixed - the function set_cmd_context() makes it possible for | |
4046 | all the ``target ....'' commands to share a common callback | |
4047 | function. See cli-dump.c. */ | |
109c3e39 | 4048 | { |
04bd08de | 4049 | volatile struct gdb_exception ex; |
2d717e4f | 4050 | |
04bd08de TT |
4051 | TRY_CATCH (ex, RETURN_MASK_ALL) |
4052 | { | |
4053 | remote_start_remote (from_tty, target, extended_p); | |
4054 | } | |
109c3e39 AC |
4055 | if (ex.reason < 0) |
4056 | { | |
c8d104ad PA |
4057 | /* Pop the partially set up target - unless something else did |
4058 | already before throwing the exception. */ | |
4059 | if (remote_desc != NULL) | |
4060 | pop_target (); | |
c6ebd6cf | 4061 | if (target_async_permitted) |
109c3e39 AC |
4062 | wait_forever_enabled_p = 1; |
4063 | throw_exception (ex); | |
4064 | } | |
4065 | } | |
c906108c | 4066 | |
c6ebd6cf | 4067 | if (target_async_permitted) |
92d1e331 | 4068 | wait_forever_enabled_p = 1; |
43ff13b4 JM |
4069 | } |
4070 | ||
c906108c SS |
4071 | /* This takes a program previously attached to and detaches it. After |
4072 | this is done, GDB can be used to debug some other program. We | |
4073 | better not have left any breakpoints in the target program or it'll | |
4074 | die when it hits one. */ | |
4075 | ||
4076 | static void | |
2d717e4f | 4077 | remote_detach_1 (char *args, int from_tty, int extended) |
c906108c | 4078 | { |
82f73884 | 4079 | int pid = ptid_get_pid (inferior_ptid); |
d01949b6 | 4080 | struct remote_state *rs = get_remote_state (); |
c906108c SS |
4081 | |
4082 | if (args) | |
8a3fe4f8 | 4083 | error (_("Argument given to \"detach\" when remotely debugging.")); |
c906108c | 4084 | |
2d717e4f DJ |
4085 | if (!target_has_execution) |
4086 | error (_("No process to detach from.")); | |
4087 | ||
c906108c | 4088 | /* Tell the remote target to detach. */ |
82f73884 PA |
4089 | if (remote_multi_process_p (rs)) |
4090 | sprintf (rs->buf, "D;%x", pid); | |
4091 | else | |
4092 | strcpy (rs->buf, "D"); | |
4093 | ||
4ddda9b5 PA |
4094 | putpkt (rs->buf); |
4095 | getpkt (&rs->buf, &rs->buf_size, 0); | |
4096 | ||
82f73884 PA |
4097 | if (rs->buf[0] == 'O' && rs->buf[1] == 'K') |
4098 | ; | |
4099 | else if (rs->buf[0] == '\0') | |
4100 | error (_("Remote doesn't know how to detach")); | |
4101 | else | |
4ddda9b5 | 4102 | error (_("Can't detach process.")); |
c906108c | 4103 | |
c906108c | 4104 | if (from_tty) |
2d717e4f | 4105 | { |
82f73884 PA |
4106 | if (remote_multi_process_p (rs)) |
4107 | printf_filtered (_("Detached from remote %s.\n"), | |
4108 | target_pid_to_str (pid_to_ptid (pid))); | |
2d717e4f | 4109 | else |
82f73884 PA |
4110 | { |
4111 | if (extended) | |
4112 | puts_filtered (_("Detached from remote process.\n")); | |
4113 | else | |
4114 | puts_filtered (_("Ending remote debugging.\n")); | |
4115 | } | |
2d717e4f | 4116 | } |
82f73884 | 4117 | |
74531fed | 4118 | discard_pending_stop_replies (pid); |
82f73884 | 4119 | target_mourn_inferior (); |
2d717e4f DJ |
4120 | } |
4121 | ||
4122 | static void | |
136d6dae | 4123 | remote_detach (struct target_ops *ops, char *args, int from_tty) |
2d717e4f DJ |
4124 | { |
4125 | remote_detach_1 (args, from_tty, 0); | |
4126 | } | |
4127 | ||
4128 | static void | |
136d6dae | 4129 | extended_remote_detach (struct target_ops *ops, char *args, int from_tty) |
2d717e4f DJ |
4130 | { |
4131 | remote_detach_1 (args, from_tty, 1); | |
c906108c SS |
4132 | } |
4133 | ||
6ad8ae5c DJ |
4134 | /* Same as remote_detach, but don't send the "D" packet; just disconnect. */ |
4135 | ||
43ff13b4 | 4136 | static void |
597320e7 | 4137 | remote_disconnect (struct target_ops *target, char *args, int from_tty) |
43ff13b4 | 4138 | { |
43ff13b4 | 4139 | if (args) |
2d717e4f | 4140 | error (_("Argument given to \"disconnect\" when remotely debugging.")); |
43ff13b4 | 4141 | |
2d717e4f DJ |
4142 | /* Make sure we unpush even the extended remote targets; mourn |
4143 | won't do it. So call remote_mourn_1 directly instead of | |
4144 | target_mourn_inferior. */ | |
4145 | remote_mourn_1 (target); | |
4146 | ||
43ff13b4 JM |
4147 | if (from_tty) |
4148 | puts_filtered ("Ending remote debugging.\n"); | |
4149 | } | |
4150 | ||
2d717e4f DJ |
4151 | /* Attach to the process specified by ARGS. If FROM_TTY is non-zero, |
4152 | be chatty about it. */ | |
4153 | ||
4154 | static void | |
4155 | extended_remote_attach_1 (struct target_ops *target, char *args, int from_tty) | |
4156 | { | |
4157 | struct remote_state *rs = get_remote_state (); | |
be86555c | 4158 | int pid; |
96ef3384 | 4159 | char *wait_status = NULL; |
2d717e4f | 4160 | |
74164c56 | 4161 | pid = parse_pid_to_attach (args); |
2d717e4f | 4162 | |
74164c56 JK |
4163 | /* Remote PID can be freely equal to getpid, do not check it here the same |
4164 | way as in other targets. */ | |
2d717e4f DJ |
4165 | |
4166 | if (remote_protocol_packets[PACKET_vAttach].support == PACKET_DISABLE) | |
4167 | error (_("This target does not support attaching to a process")); | |
4168 | ||
4169 | sprintf (rs->buf, "vAttach;%x", pid); | |
4170 | putpkt (rs->buf); | |
4171 | getpkt (&rs->buf, &rs->buf_size, 0); | |
4172 | ||
3e43a32a MS |
4173 | if (packet_ok (rs->buf, |
4174 | &remote_protocol_packets[PACKET_vAttach]) == PACKET_OK) | |
2d717e4f DJ |
4175 | { |
4176 | if (from_tty) | |
4177 | printf_unfiltered (_("Attached to %s\n"), | |
4178 | target_pid_to_str (pid_to_ptid (pid))); | |
4179 | ||
74531fed PA |
4180 | if (!non_stop) |
4181 | { | |
4182 | /* Save the reply for later. */ | |
4183 | wait_status = alloca (strlen (rs->buf) + 1); | |
4184 | strcpy (wait_status, rs->buf); | |
4185 | } | |
4186 | else if (strcmp (rs->buf, "OK") != 0) | |
4187 | error (_("Attaching to %s failed with: %s"), | |
4188 | target_pid_to_str (pid_to_ptid (pid)), | |
4189 | rs->buf); | |
2d717e4f DJ |
4190 | } |
4191 | else if (remote_protocol_packets[PACKET_vAttach].support == PACKET_DISABLE) | |
4192 | error (_("This target does not support attaching to a process")); | |
4193 | else | |
4194 | error (_("Attaching to %s failed"), | |
4195 | target_pid_to_str (pid_to_ptid (pid))); | |
4196 | ||
6c95b8df | 4197 | set_current_inferior (remote_add_inferior (pid, 1)); |
bad34192 | 4198 | |
2d717e4f | 4199 | inferior_ptid = pid_to_ptid (pid); |
79d7f229 | 4200 | |
bad34192 PA |
4201 | if (non_stop) |
4202 | { | |
4203 | struct thread_info *thread; | |
79d7f229 | 4204 | |
bad34192 PA |
4205 | /* Get list of threads. */ |
4206 | remote_threads_info (target); | |
82f73884 | 4207 | |
bad34192 PA |
4208 | thread = first_thread_of_process (pid); |
4209 | if (thread) | |
4210 | inferior_ptid = thread->ptid; | |
4211 | else | |
4212 | inferior_ptid = pid_to_ptid (pid); | |
4213 | ||
4214 | /* Invalidate our notion of the remote current thread. */ | |
4215 | record_currthread (minus_one_ptid); | |
4216 | } | |
74531fed | 4217 | else |
bad34192 PA |
4218 | { |
4219 | /* Now, if we have thread information, update inferior_ptid. */ | |
4220 | inferior_ptid = remote_current_thread (inferior_ptid); | |
4221 | ||
4222 | /* Add the main thread to the thread list. */ | |
4223 | add_thread_silent (inferior_ptid); | |
4224 | } | |
c0a2216e | 4225 | |
96ef3384 UW |
4226 | /* Next, if the target can specify a description, read it. We do |
4227 | this before anything involving memory or registers. */ | |
4228 | target_find_description (); | |
4229 | ||
74531fed PA |
4230 | if (!non_stop) |
4231 | { | |
4232 | /* Use the previously fetched status. */ | |
4233 | gdb_assert (wait_status != NULL); | |
4234 | ||
4235 | if (target_can_async_p ()) | |
4236 | { | |
4237 | struct stop_reply *stop_reply; | |
4238 | struct cleanup *old_chain; | |
4239 | ||
4240 | stop_reply = stop_reply_xmalloc (); | |
4241 | old_chain = make_cleanup (do_stop_reply_xfree, stop_reply); | |
4242 | remote_parse_stop_reply (wait_status, stop_reply); | |
4243 | discard_cleanups (old_chain); | |
4244 | push_stop_reply (stop_reply); | |
4245 | ||
4246 | target_async (inferior_event_handler, 0); | |
4247 | } | |
4248 | else | |
4249 | { | |
4250 | gdb_assert (wait_status != NULL); | |
4251 | strcpy (rs->buf, wait_status); | |
4252 | rs->cached_wait_status = 1; | |
4253 | } | |
4254 | } | |
4255 | else | |
4256 | gdb_assert (wait_status == NULL); | |
2d717e4f DJ |
4257 | } |
4258 | ||
4259 | static void | |
136d6dae | 4260 | extended_remote_attach (struct target_ops *ops, char *args, int from_tty) |
2d717e4f | 4261 | { |
136d6dae | 4262 | extended_remote_attach_1 (ops, args, from_tty); |
2d717e4f DJ |
4263 | } |
4264 | ||
c906108c SS |
4265 | /* Convert hex digit A to a number. */ |
4266 | ||
30559e10 | 4267 | static int |
fba45db2 | 4268 | fromhex (int a) |
c906108c SS |
4269 | { |
4270 | if (a >= '0' && a <= '9') | |
4271 | return a - '0'; | |
4272 | else if (a >= 'a' && a <= 'f') | |
4273 | return a - 'a' + 10; | |
4274 | else if (a >= 'A' && a <= 'F') | |
4275 | return a - 'A' + 10; | |
c5aa993b | 4276 | else |
8a3fe4f8 | 4277 | error (_("Reply contains invalid hex digit %d"), a); |
c906108c SS |
4278 | } |
4279 | ||
00bf0b85 | 4280 | int |
cfd77fa1 | 4281 | hex2bin (const char *hex, gdb_byte *bin, int count) |
30559e10 MS |
4282 | { |
4283 | int i; | |
4284 | ||
30559e10 MS |
4285 | for (i = 0; i < count; i++) |
4286 | { | |
4287 | if (hex[0] == 0 || hex[1] == 0) | |
4288 | { | |
4289 | /* Hex string is short, or of uneven length. | |
23860348 | 4290 | Return the count that has been converted so far. */ |
30559e10 MS |
4291 | return i; |
4292 | } | |
4293 | *bin++ = fromhex (hex[0]) * 16 + fromhex (hex[1]); | |
4294 | hex += 2; | |
4295 | } | |
4296 | return i; | |
4297 | } | |
4298 | ||
c906108c SS |
4299 | /* Convert number NIB to a hex digit. */ |
4300 | ||
4301 | static int | |
fba45db2 | 4302 | tohex (int nib) |
c906108c SS |
4303 | { |
4304 | if (nib < 10) | |
c5aa993b | 4305 | return '0' + nib; |
c906108c | 4306 | else |
c5aa993b | 4307 | return 'a' + nib - 10; |
c906108c | 4308 | } |
30559e10 | 4309 | |
00bf0b85 | 4310 | int |
cfd77fa1 | 4311 | bin2hex (const gdb_byte *bin, char *hex, int count) |
30559e10 MS |
4312 | { |
4313 | int i; | |
a744cf53 | 4314 | |
23860348 | 4315 | /* May use a length, or a nul-terminated string as input. */ |
30559e10 | 4316 | if (count == 0) |
cfd77fa1 | 4317 | count = strlen ((char *) bin); |
30559e10 MS |
4318 | |
4319 | for (i = 0; i < count; i++) | |
4320 | { | |
4321 | *hex++ = tohex ((*bin >> 4) & 0xf); | |
4322 | *hex++ = tohex (*bin++ & 0xf); | |
4323 | } | |
4324 | *hex = 0; | |
4325 | return i; | |
4326 | } | |
c906108c | 4327 | \f |
506fb367 DJ |
4328 | /* Check for the availability of vCont. This function should also check |
4329 | the response. */ | |
c906108c SS |
4330 | |
4331 | static void | |
6d820c5c | 4332 | remote_vcont_probe (struct remote_state *rs) |
c906108c | 4333 | { |
2e9f7625 | 4334 | char *buf; |
6d820c5c | 4335 | |
2e9f7625 DJ |
4336 | strcpy (rs->buf, "vCont?"); |
4337 | putpkt (rs->buf); | |
6d820c5c | 4338 | getpkt (&rs->buf, &rs->buf_size, 0); |
2e9f7625 | 4339 | buf = rs->buf; |
c906108c | 4340 | |
506fb367 DJ |
4341 | /* Make sure that the features we assume are supported. */ |
4342 | if (strncmp (buf, "vCont", 5) == 0) | |
4343 | { | |
4344 | char *p = &buf[5]; | |
4345 | int support_s, support_S, support_c, support_C; | |
4346 | ||
4347 | support_s = 0; | |
4348 | support_S = 0; | |
4349 | support_c = 0; | |
4350 | support_C = 0; | |
74531fed | 4351 | rs->support_vCont_t = 0; |
506fb367 DJ |
4352 | while (p && *p == ';') |
4353 | { | |
4354 | p++; | |
4355 | if (*p == 's' && (*(p + 1) == ';' || *(p + 1) == 0)) | |
4356 | support_s = 1; | |
4357 | else if (*p == 'S' && (*(p + 1) == ';' || *(p + 1) == 0)) | |
4358 | support_S = 1; | |
4359 | else if (*p == 'c' && (*(p + 1) == ';' || *(p + 1) == 0)) | |
4360 | support_c = 1; | |
4361 | else if (*p == 'C' && (*(p + 1) == ';' || *(p + 1) == 0)) | |
4362 | support_C = 1; | |
74531fed PA |
4363 | else if (*p == 't' && (*(p + 1) == ';' || *(p + 1) == 0)) |
4364 | rs->support_vCont_t = 1; | |
506fb367 DJ |
4365 | |
4366 | p = strchr (p, ';'); | |
4367 | } | |
c906108c | 4368 | |
506fb367 DJ |
4369 | /* If s, S, c, and C are not all supported, we can't use vCont. Clearing |
4370 | BUF will make packet_ok disable the packet. */ | |
4371 | if (!support_s || !support_S || !support_c || !support_C) | |
4372 | buf[0] = 0; | |
4373 | } | |
c906108c | 4374 | |
444abaca | 4375 | packet_ok (buf, &remote_protocol_packets[PACKET_vCont]); |
506fb367 | 4376 | } |
c906108c | 4377 | |
0d8f58ca PA |
4378 | /* Helper function for building "vCont" resumptions. Write a |
4379 | resumption to P. ENDP points to one-passed-the-end of the buffer | |
4380 | we're allowed to write to. Returns BUF+CHARACTERS_WRITTEN. The | |
4381 | thread to be resumed is PTID; STEP and SIGGNAL indicate whether the | |
4382 | resumed thread should be single-stepped and/or signalled. If PTID | |
4383 | equals minus_one_ptid, then all threads are resumed; if PTID | |
4384 | represents a process, then all threads of the process are resumed; | |
4385 | the thread to be stepped and/or signalled is given in the global | |
4386 | INFERIOR_PTID. */ | |
4387 | ||
4388 | static char * | |
4389 | append_resumption (char *p, char *endp, | |
4390 | ptid_t ptid, int step, enum target_signal siggnal) | |
4391 | { | |
4392 | struct remote_state *rs = get_remote_state (); | |
4393 | ||
4394 | if (step && siggnal != TARGET_SIGNAL_0) | |
4395 | p += xsnprintf (p, endp - p, ";S%02x", siggnal); | |
4396 | else if (step) | |
4397 | p += xsnprintf (p, endp - p, ";s"); | |
4398 | else if (siggnal != TARGET_SIGNAL_0) | |
4399 | p += xsnprintf (p, endp - p, ";C%02x", siggnal); | |
4400 | else | |
4401 | p += xsnprintf (p, endp - p, ";c"); | |
4402 | ||
4403 | if (remote_multi_process_p (rs) && ptid_is_pid (ptid)) | |
4404 | { | |
4405 | ptid_t nptid; | |
4406 | ||
4407 | /* All (-1) threads of process. */ | |
4408 | nptid = ptid_build (ptid_get_pid (ptid), 0, -1); | |
4409 | ||
4410 | p += xsnprintf (p, endp - p, ":"); | |
4411 | p = write_ptid (p, endp, nptid); | |
4412 | } | |
4413 | else if (!ptid_equal (ptid, minus_one_ptid)) | |
4414 | { | |
4415 | p += xsnprintf (p, endp - p, ":"); | |
4416 | p = write_ptid (p, endp, ptid); | |
4417 | } | |
4418 | ||
4419 | return p; | |
4420 | } | |
4421 | ||
506fb367 DJ |
4422 | /* Resume the remote inferior by using a "vCont" packet. The thread |
4423 | to be resumed is PTID; STEP and SIGGNAL indicate whether the | |
79d7f229 PA |
4424 | resumed thread should be single-stepped and/or signalled. If PTID |
4425 | equals minus_one_ptid, then all threads are resumed; the thread to | |
4426 | be stepped and/or signalled is given in the global INFERIOR_PTID. | |
4427 | This function returns non-zero iff it resumes the inferior. | |
44eaed12 | 4428 | |
506fb367 DJ |
4429 | This function issues a strict subset of all possible vCont commands at the |
4430 | moment. */ | |
44eaed12 | 4431 | |
506fb367 DJ |
4432 | static int |
4433 | remote_vcont_resume (ptid_t ptid, int step, enum target_signal siggnal) | |
4434 | { | |
4435 | struct remote_state *rs = get_remote_state (); | |
82f73884 PA |
4436 | char *p; |
4437 | char *endp; | |
44eaed12 | 4438 | |
444abaca | 4439 | if (remote_protocol_packets[PACKET_vCont].support == PACKET_SUPPORT_UNKNOWN) |
6d820c5c | 4440 | remote_vcont_probe (rs); |
44eaed12 | 4441 | |
444abaca | 4442 | if (remote_protocol_packets[PACKET_vCont].support == PACKET_DISABLE) |
6d820c5c | 4443 | return 0; |
44eaed12 | 4444 | |
82f73884 PA |
4445 | p = rs->buf; |
4446 | endp = rs->buf + get_remote_packet_size (); | |
4447 | ||
506fb367 DJ |
4448 | /* If we could generate a wider range of packets, we'd have to worry |
4449 | about overflowing BUF. Should there be a generic | |
4450 | "multi-part-packet" packet? */ | |
4451 | ||
0d8f58ca PA |
4452 | p += xsnprintf (p, endp - p, "vCont"); |
4453 | ||
79d7f229 | 4454 | if (ptid_equal (ptid, magic_null_ptid)) |
c906108c | 4455 | { |
79d7f229 PA |
4456 | /* MAGIC_NULL_PTID means that we don't have any active threads, |
4457 | so we don't have any TID numbers the inferior will | |
4458 | understand. Make sure to only send forms that do not specify | |
4459 | a TID. */ | |
a9cbf802 | 4460 | append_resumption (p, endp, minus_one_ptid, step, siggnal); |
506fb367 | 4461 | } |
0d8f58ca | 4462 | else if (ptid_equal (ptid, minus_one_ptid) || ptid_is_pid (ptid)) |
506fb367 | 4463 | { |
0d8f58ca PA |
4464 | /* Resume all threads (of all processes, or of a single |
4465 | process), with preference for INFERIOR_PTID. This assumes | |
4466 | inferior_ptid belongs to the set of all threads we are about | |
4467 | to resume. */ | |
4468 | if (step || siggnal != TARGET_SIGNAL_0) | |
82f73884 | 4469 | { |
0d8f58ca PA |
4470 | /* Step inferior_ptid, with or without signal. */ |
4471 | p = append_resumption (p, endp, inferior_ptid, step, siggnal); | |
82f73884 | 4472 | } |
0d8f58ca PA |
4473 | |
4474 | /* And continue others without a signal. */ | |
a9cbf802 | 4475 | append_resumption (p, endp, ptid, /*step=*/ 0, TARGET_SIGNAL_0); |
c906108c SS |
4476 | } |
4477 | else | |
506fb367 DJ |
4478 | { |
4479 | /* Scheduler locking; resume only PTID. */ | |
a9cbf802 | 4480 | append_resumption (p, endp, ptid, step, siggnal); |
506fb367 | 4481 | } |
c906108c | 4482 | |
82f73884 PA |
4483 | gdb_assert (strlen (rs->buf) < get_remote_packet_size ()); |
4484 | putpkt (rs->buf); | |
506fb367 | 4485 | |
74531fed PA |
4486 | if (non_stop) |
4487 | { | |
4488 | /* In non-stop, the stub replies to vCont with "OK". The stop | |
4489 | reply will be reported asynchronously by means of a `%Stop' | |
4490 | notification. */ | |
4491 | getpkt (&rs->buf, &rs->buf_size, 0); | |
4492 | if (strcmp (rs->buf, "OK") != 0) | |
4493 | error (_("Unexpected vCont reply in non-stop mode: %s"), rs->buf); | |
4494 | } | |
4495 | ||
506fb367 | 4496 | return 1; |
c906108c | 4497 | } |
43ff13b4 | 4498 | |
506fb367 DJ |
4499 | /* Tell the remote machine to resume. */ |
4500 | ||
4501 | static enum target_signal last_sent_signal = TARGET_SIGNAL_0; | |
4502 | ||
4503 | static int last_sent_step; | |
4504 | ||
43ff13b4 | 4505 | static void |
28439f5e PA |
4506 | remote_resume (struct target_ops *ops, |
4507 | ptid_t ptid, int step, enum target_signal siggnal) | |
43ff13b4 | 4508 | { |
d01949b6 | 4509 | struct remote_state *rs = get_remote_state (); |
2e9f7625 | 4510 | char *buf; |
43ff13b4 | 4511 | |
43ff13b4 JM |
4512 | last_sent_signal = siggnal; |
4513 | last_sent_step = step; | |
4514 | ||
89be2091 DJ |
4515 | /* Update the inferior on signals to silently pass, if they've changed. */ |
4516 | remote_pass_signals (); | |
4517 | ||
506fb367 | 4518 | /* The vCont packet doesn't need to specify threads via Hc. */ |
40ab02ce MS |
4519 | /* No reverse support (yet) for vCont. */ |
4520 | if (execution_direction != EXEC_REVERSE) | |
4521 | if (remote_vcont_resume (ptid, step, siggnal)) | |
4522 | goto done; | |
506fb367 | 4523 | |
79d7f229 PA |
4524 | /* All other supported resume packets do use Hc, so set the continue |
4525 | thread. */ | |
4526 | if (ptid_equal (ptid, minus_one_ptid)) | |
4527 | set_continue_thread (any_thread_ptid); | |
506fb367 | 4528 | else |
79d7f229 | 4529 | set_continue_thread (ptid); |
506fb367 | 4530 | |
2e9f7625 | 4531 | buf = rs->buf; |
b2175913 MS |
4532 | if (execution_direction == EXEC_REVERSE) |
4533 | { | |
4534 | /* We don't pass signals to the target in reverse exec mode. */ | |
4535 | if (info_verbose && siggnal != TARGET_SIGNAL_0) | |
7ea6d463 | 4536 | warning (_(" - Can't pass signal %d to target in reverse: ignored."), |
b2175913 | 4537 | siggnal); |
40ab02ce MS |
4538 | |
4539 | if (step | |
4540 | && remote_protocol_packets[PACKET_bs].support == PACKET_DISABLE) | |
4541 | error (_("Remote reverse-step not supported.")); | |
4542 | if (!step | |
4543 | && remote_protocol_packets[PACKET_bc].support == PACKET_DISABLE) | |
08c93ed9 | 4544 | error (_("Remote reverse-continue not supported.")); |
40ab02ce | 4545 | |
b2175913 MS |
4546 | strcpy (buf, step ? "bs" : "bc"); |
4547 | } | |
4548 | else if (siggnal != TARGET_SIGNAL_0) | |
43ff13b4 JM |
4549 | { |
4550 | buf[0] = step ? 'S' : 'C'; | |
c5aa993b | 4551 | buf[1] = tohex (((int) siggnal >> 4) & 0xf); |
506fb367 | 4552 | buf[2] = tohex (((int) siggnal) & 0xf); |
43ff13b4 JM |
4553 | buf[3] = '\0'; |
4554 | } | |
4555 | else | |
c5aa993b | 4556 | strcpy (buf, step ? "s" : "c"); |
506fb367 | 4557 | |
44eaed12 | 4558 | putpkt (buf); |
43ff13b4 | 4559 | |
75c99385 | 4560 | done: |
2acceee2 | 4561 | /* We are about to start executing the inferior, let's register it |
0df8b418 MS |
4562 | with the event loop. NOTE: this is the one place where all the |
4563 | execution commands end up. We could alternatively do this in each | |
23860348 | 4564 | of the execution commands in infcmd.c. */ |
2acceee2 JM |
4565 | /* FIXME: ezannoni 1999-09-28: We may need to move this out of here |
4566 | into infcmd.c in order to allow inferior function calls to work | |
23860348 | 4567 | NOT asynchronously. */ |
362646f5 | 4568 | if (target_can_async_p ()) |
2acceee2 | 4569 | target_async (inferior_event_handler, 0); |
e24a49d8 PA |
4570 | |
4571 | /* We've just told the target to resume. The remote server will | |
4572 | wait for the inferior to stop, and then send a stop reply. In | |
4573 | the mean time, we can't start another command/query ourselves | |
74531fed PA |
4574 | because the stub wouldn't be ready to process it. This applies |
4575 | only to the base all-stop protocol, however. In non-stop (which | |
4576 | only supports vCont), the stub replies with an "OK", and is | |
4577 | immediate able to process further serial input. */ | |
4578 | if (!non_stop) | |
4579 | rs->waiting_for_stop_reply = 1; | |
43ff13b4 | 4580 | } |
c906108c | 4581 | \f |
43ff13b4 JM |
4582 | |
4583 | /* Set up the signal handler for SIGINT, while the target is | |
23860348 | 4584 | executing, ovewriting the 'regular' SIGINT signal handler. */ |
43ff13b4 | 4585 | static void |
fba45db2 | 4586 | initialize_sigint_signal_handler (void) |
43ff13b4 | 4587 | { |
43ff13b4 JM |
4588 | signal (SIGINT, handle_remote_sigint); |
4589 | } | |
4590 | ||
23860348 | 4591 | /* Signal handler for SIGINT, while the target is executing. */ |
43ff13b4 | 4592 | static void |
fba45db2 | 4593 | handle_remote_sigint (int sig) |
43ff13b4 JM |
4594 | { |
4595 | signal (sig, handle_remote_sigint_twice); | |
43ff13b4 JM |
4596 | mark_async_signal_handler_wrapper (sigint_remote_token); |
4597 | } | |
4598 | ||
4599 | /* Signal handler for SIGINT, installed after SIGINT has already been | |
4600 | sent once. It will take effect the second time that the user sends | |
23860348 | 4601 | a ^C. */ |
43ff13b4 | 4602 | static void |
fba45db2 | 4603 | handle_remote_sigint_twice (int sig) |
43ff13b4 | 4604 | { |
b803fb0f | 4605 | signal (sig, handle_remote_sigint); |
43ff13b4 JM |
4606 | mark_async_signal_handler_wrapper (sigint_remote_twice_token); |
4607 | } | |
4608 | ||
6426a772 | 4609 | /* Perform the real interruption of the target execution, in response |
23860348 | 4610 | to a ^C. */ |
c5aa993b | 4611 | static void |
fba45db2 | 4612 | async_remote_interrupt (gdb_client_data arg) |
43ff13b4 JM |
4613 | { |
4614 | if (remote_debug) | |
4615 | fprintf_unfiltered (gdb_stdlog, "remote_interrupt called\n"); | |
4616 | ||
94cc34af | 4617 | target_stop (inferior_ptid); |
43ff13b4 JM |
4618 | } |
4619 | ||
0df8b418 | 4620 | /* Perform interrupt, if the first attempt did not succeed. Just give |
23860348 | 4621 | up on the target alltogether. */ |
2df3850c | 4622 | void |
fba45db2 | 4623 | async_remote_interrupt_twice (gdb_client_data arg) |
43ff13b4 | 4624 | { |
2df3850c JM |
4625 | if (remote_debug) |
4626 | fprintf_unfiltered (gdb_stdlog, "remote_interrupt_twice called\n"); | |
b803fb0f DJ |
4627 | |
4628 | interrupt_query (); | |
43ff13b4 JM |
4629 | } |
4630 | ||
4631 | /* Reinstall the usual SIGINT handlers, after the target has | |
23860348 | 4632 | stopped. */ |
6426a772 JM |
4633 | static void |
4634 | cleanup_sigint_signal_handler (void *dummy) | |
43ff13b4 JM |
4635 | { |
4636 | signal (SIGINT, handle_sigint); | |
43ff13b4 JM |
4637 | } |
4638 | ||
c906108c SS |
4639 | /* Send ^C to target to halt it. Target will respond, and send us a |
4640 | packet. */ | |
507f3c78 | 4641 | static void (*ofunc) (int); |
c906108c | 4642 | |
0df8b418 MS |
4643 | /* The command line interface's stop routine. This function is installed |
4644 | as a signal handler for SIGINT. The first time a user requests a | |
4645 | stop, we call remote_stop to send a break or ^C. If there is no | |
7a292a7a | 4646 | response from the target (it didn't stop when the user requested it), |
23860348 | 4647 | we ask the user if he'd like to detach from the target. */ |
c906108c | 4648 | static void |
fba45db2 | 4649 | remote_interrupt (int signo) |
c906108c | 4650 | { |
23860348 | 4651 | /* If this doesn't work, try more severe steps. */ |
7a292a7a SS |
4652 | signal (signo, remote_interrupt_twice); |
4653 | ||
b803fb0f | 4654 | gdb_call_async_signal_handler (sigint_remote_token, 1); |
7a292a7a SS |
4655 | } |
4656 | ||
4657 | /* The user typed ^C twice. */ | |
4658 | ||
4659 | static void | |
fba45db2 | 4660 | remote_interrupt_twice (int signo) |
7a292a7a SS |
4661 | { |
4662 | signal (signo, ofunc); | |
b803fb0f | 4663 | gdb_call_async_signal_handler (sigint_remote_twice_token, 1); |
c906108c SS |
4664 | signal (signo, remote_interrupt); |
4665 | } | |
7a292a7a | 4666 | |
74531fed PA |
4667 | /* Non-stop version of target_stop. Uses `vCont;t' to stop a remote |
4668 | thread, all threads of a remote process, or all threads of all | |
4669 | processes. */ | |
4670 | ||
4671 | static void | |
4672 | remote_stop_ns (ptid_t ptid) | |
4673 | { | |
4674 | struct remote_state *rs = get_remote_state (); | |
4675 | char *p = rs->buf; | |
4676 | char *endp = rs->buf + get_remote_packet_size (); | |
74531fed PA |
4677 | |
4678 | if (remote_protocol_packets[PACKET_vCont].support == PACKET_SUPPORT_UNKNOWN) | |
4679 | remote_vcont_probe (rs); | |
4680 | ||
4681 | if (!rs->support_vCont_t) | |
4682 | error (_("Remote server does not support stopping threads")); | |
4683 | ||
f91d3df5 PA |
4684 | if (ptid_equal (ptid, minus_one_ptid) |
4685 | || (!remote_multi_process_p (rs) && ptid_is_pid (ptid))) | |
74531fed PA |
4686 | p += xsnprintf (p, endp - p, "vCont;t"); |
4687 | else | |
4688 | { | |
4689 | ptid_t nptid; | |
4690 | ||
74531fed PA |
4691 | p += xsnprintf (p, endp - p, "vCont;t:"); |
4692 | ||
4693 | if (ptid_is_pid (ptid)) | |
4694 | /* All (-1) threads of process. */ | |
4695 | nptid = ptid_build (ptid_get_pid (ptid), 0, -1); | |
4696 | else | |
4697 | { | |
4698 | /* Small optimization: if we already have a stop reply for | |
4699 | this thread, no use in telling the stub we want this | |
4700 | stopped. */ | |
4701 | if (peek_stop_reply (ptid)) | |
4702 | return; | |
4703 | ||
4704 | nptid = ptid; | |
4705 | } | |
4706 | ||
a9cbf802 | 4707 | write_ptid (p, endp, nptid); |
74531fed PA |
4708 | } |
4709 | ||
4710 | /* In non-stop, we get an immediate OK reply. The stop reply will | |
4711 | come in asynchronously by notification. */ | |
4712 | putpkt (rs->buf); | |
4713 | getpkt (&rs->buf, &rs->buf_size, 0); | |
4714 | if (strcmp (rs->buf, "OK") != 0) | |
4715 | error (_("Stopping %s failed: %s"), target_pid_to_str (ptid), rs->buf); | |
4716 | } | |
4717 | ||
4718 | /* All-stop version of target_stop. Sends a break or a ^C to stop the | |
4719 | remote target. It is undefined which thread of which process | |
4720 | reports the stop. */ | |
4721 | ||
4722 | static void | |
4723 | remote_stop_as (ptid_t ptid) | |
4724 | { | |
4725 | struct remote_state *rs = get_remote_state (); | |
4726 | ||
3a29589a DJ |
4727 | rs->ctrlc_pending_p = 1; |
4728 | ||
74531fed PA |
4729 | /* If the inferior is stopped already, but the core didn't know |
4730 | about it yet, just ignore the request. The cached wait status | |
4731 | will be collected in remote_wait. */ | |
4732 | if (rs->cached_wait_status) | |
4733 | return; | |
4734 | ||
9a7071a8 JB |
4735 | /* Send interrupt_sequence to remote target. */ |
4736 | send_interrupt_sequence (); | |
74531fed PA |
4737 | } |
4738 | ||
0df8b418 | 4739 | /* This is the generic stop called via the target vector. When a target |
7a292a7a | 4740 | interrupt is requested, either by the command line or the GUI, we |
23860348 | 4741 | will eventually end up here. */ |
74531fed | 4742 | |
c906108c | 4743 | static void |
94cc34af | 4744 | remote_stop (ptid_t ptid) |
c906108c | 4745 | { |
7a292a7a | 4746 | if (remote_debug) |
0f71a2f6 | 4747 | fprintf_unfiltered (gdb_stdlog, "remote_stop called\n"); |
c906108c | 4748 | |
74531fed PA |
4749 | if (non_stop) |
4750 | remote_stop_ns (ptid); | |
c906108c | 4751 | else |
74531fed | 4752 | remote_stop_as (ptid); |
c906108c SS |
4753 | } |
4754 | ||
4755 | /* Ask the user what to do when an interrupt is received. */ | |
4756 | ||
4757 | static void | |
fba45db2 | 4758 | interrupt_query (void) |
c906108c SS |
4759 | { |
4760 | target_terminal_ours (); | |
4761 | ||
74531fed | 4762 | if (target_can_async_p ()) |
c906108c | 4763 | { |
74531fed | 4764 | signal (SIGINT, handle_sigint); |
315a522e | 4765 | deprecated_throw_reason (RETURN_QUIT); |
c906108c | 4766 | } |
74531fed PA |
4767 | else |
4768 | { | |
9e2f0ad4 HZ |
4769 | if (query (_("Interrupted while waiting for the program.\n\ |
4770 | Give up (and stop debugging it)? "))) | |
74531fed PA |
4771 | { |
4772 | pop_target (); | |
4773 | deprecated_throw_reason (RETURN_QUIT); | |
4774 | } | |
4775 | } | |
c906108c SS |
4776 | |
4777 | target_terminal_inferior (); | |
4778 | } | |
4779 | ||
6426a772 JM |
4780 | /* Enable/disable target terminal ownership. Most targets can use |
4781 | terminal groups to control terminal ownership. Remote targets are | |
4782 | different in that explicit transfer of ownership to/from GDB/target | |
23860348 | 4783 | is required. */ |
6426a772 JM |
4784 | |
4785 | static void | |
75c99385 | 4786 | remote_terminal_inferior (void) |
6426a772 | 4787 | { |
c6ebd6cf | 4788 | if (!target_async_permitted) |
75c99385 PA |
4789 | /* Nothing to do. */ |
4790 | return; | |
4791 | ||
d9d2d8b6 PA |
4792 | /* FIXME: cagney/1999-09-27: Make calls to target_terminal_*() |
4793 | idempotent. The event-loop GDB talking to an asynchronous target | |
4794 | with a synchronous command calls this function from both | |
4795 | event-top.c and infrun.c/infcmd.c. Once GDB stops trying to | |
4796 | transfer the terminal to the target when it shouldn't this guard | |
4797 | can go away. */ | |
6426a772 JM |
4798 | if (!remote_async_terminal_ours_p) |
4799 | return; | |
4800 | delete_file_handler (input_fd); | |
4801 | remote_async_terminal_ours_p = 0; | |
4802 | initialize_sigint_signal_handler (); | |
4803 | /* NOTE: At this point we could also register our selves as the | |
4804 | recipient of all input. Any characters typed could then be | |
23860348 | 4805 | passed on down to the target. */ |
6426a772 JM |
4806 | } |
4807 | ||
4808 | static void | |
75c99385 | 4809 | remote_terminal_ours (void) |
6426a772 | 4810 | { |
c6ebd6cf | 4811 | if (!target_async_permitted) |
75c99385 PA |
4812 | /* Nothing to do. */ |
4813 | return; | |
4814 | ||
4815 | /* See FIXME in remote_terminal_inferior. */ | |
6426a772 JM |
4816 | if (remote_async_terminal_ours_p) |
4817 | return; | |
4818 | cleanup_sigint_signal_handler (NULL); | |
4819 | add_file_handler (input_fd, stdin_event_handler, 0); | |
4820 | remote_async_terminal_ours_p = 1; | |
4821 | } | |
4822 | ||
176a6961 | 4823 | static void |
917317f4 | 4824 | remote_console_output (char *msg) |
c906108c SS |
4825 | { |
4826 | char *p; | |
4827 | ||
c5aa993b | 4828 | for (p = msg; p[0] && p[1]; p += 2) |
c906108c SS |
4829 | { |
4830 | char tb[2]; | |
4831 | char c = fromhex (p[0]) * 16 + fromhex (p[1]); | |
a744cf53 | 4832 | |
c906108c SS |
4833 | tb[0] = c; |
4834 | tb[1] = 0; | |
43ff13b4 | 4835 | fputs_unfiltered (tb, gdb_stdtarg); |
c906108c | 4836 | } |
74531fed PA |
4837 | gdb_flush (gdb_stdtarg); |
4838 | } | |
4839 | ||
4840 | typedef struct cached_reg | |
4841 | { | |
4842 | int num; | |
4843 | gdb_byte data[MAX_REGISTER_SIZE]; | |
4844 | } cached_reg_t; | |
4845 | ||
4846 | DEF_VEC_O(cached_reg_t); | |
4847 | ||
4848 | struct stop_reply | |
4849 | { | |
4850 | struct stop_reply *next; | |
4851 | ||
4852 | ptid_t ptid; | |
4853 | ||
4854 | struct target_waitstatus ws; | |
4855 | ||
4856 | VEC(cached_reg_t) *regcache; | |
4857 | ||
4858 | int stopped_by_watchpoint_p; | |
4859 | CORE_ADDR watch_data_address; | |
4860 | ||
4861 | int solibs_changed; | |
4862 | int replay_event; | |
dc146f7c VP |
4863 | |
4864 | int core; | |
74531fed PA |
4865 | }; |
4866 | ||
4867 | /* The list of already fetched and acknowledged stop events. */ | |
4868 | static struct stop_reply *stop_reply_queue; | |
4869 | ||
4870 | static struct stop_reply * | |
4871 | stop_reply_xmalloc (void) | |
4872 | { | |
4873 | struct stop_reply *r = XMALLOC (struct stop_reply); | |
a744cf53 | 4874 | |
74531fed PA |
4875 | r->next = NULL; |
4876 | return r; | |
4877 | } | |
4878 | ||
4879 | static void | |
4880 | stop_reply_xfree (struct stop_reply *r) | |
4881 | { | |
4882 | if (r != NULL) | |
4883 | { | |
4884 | VEC_free (cached_reg_t, r->regcache); | |
4885 | xfree (r); | |
4886 | } | |
c906108c SS |
4887 | } |
4888 | ||
74531fed PA |
4889 | /* Discard all pending stop replies of inferior PID. If PID is -1, |
4890 | discard everything. */ | |
c906108c | 4891 | |
74531fed PA |
4892 | static void |
4893 | discard_pending_stop_replies (int pid) | |
c906108c | 4894 | { |
74531fed | 4895 | struct stop_reply *prev = NULL, *reply, *next; |
c906108c | 4896 | |
74531fed PA |
4897 | /* Discard the in-flight notification. */ |
4898 | if (pending_stop_reply != NULL | |
4899 | && (pid == -1 | |
4900 | || ptid_get_pid (pending_stop_reply->ptid) == pid)) | |
4901 | { | |
4902 | stop_reply_xfree (pending_stop_reply); | |
4903 | pending_stop_reply = NULL; | |
4904 | } | |
c906108c | 4905 | |
74531fed PA |
4906 | /* Discard the stop replies we have already pulled with |
4907 | vStopped. */ | |
4908 | for (reply = stop_reply_queue; reply; reply = next) | |
43ff13b4 | 4909 | { |
74531fed PA |
4910 | next = reply->next; |
4911 | if (pid == -1 | |
4912 | || ptid_get_pid (reply->ptid) == pid) | |
9fa2223d | 4913 | { |
74531fed PA |
4914 | if (reply == stop_reply_queue) |
4915 | stop_reply_queue = reply->next; | |
4916 | else | |
4917 | prev->next = reply->next; | |
4918 | ||
4919 | stop_reply_xfree (reply); | |
9fa2223d | 4920 | } |
74531fed PA |
4921 | else |
4922 | prev = reply; | |
c8e38a49 | 4923 | } |
74531fed | 4924 | } |
43ff13b4 | 4925 | |
74531fed | 4926 | /* Cleanup wrapper. */ |
2e9f7625 | 4927 | |
74531fed PA |
4928 | static void |
4929 | do_stop_reply_xfree (void *arg) | |
4930 | { | |
4931 | struct stop_reply *r = arg; | |
a744cf53 | 4932 | |
74531fed PA |
4933 | stop_reply_xfree (r); |
4934 | } | |
75c99385 | 4935 | |
74531fed PA |
4936 | /* Look for a queued stop reply belonging to PTID. If one is found, |
4937 | remove it from the queue, and return it. Returns NULL if none is | |
4938 | found. If there are still queued events left to process, tell the | |
4939 | event loop to get back to target_wait soon. */ | |
e24a49d8 | 4940 | |
74531fed PA |
4941 | static struct stop_reply * |
4942 | queued_stop_reply (ptid_t ptid) | |
4943 | { | |
0723dbf5 PA |
4944 | struct stop_reply *it; |
4945 | struct stop_reply **it_link; | |
74531fed | 4946 | |
0723dbf5 PA |
4947 | it = stop_reply_queue; |
4948 | it_link = &stop_reply_queue; | |
4949 | while (it) | |
c8e38a49 | 4950 | { |
0723dbf5 PA |
4951 | if (ptid_match (it->ptid, ptid)) |
4952 | { | |
4953 | *it_link = it->next; | |
4954 | it->next = NULL; | |
4955 | break; | |
4956 | } | |
e24a49d8 | 4957 | |
0723dbf5 PA |
4958 | it_link = &it->next; |
4959 | it = *it_link; | |
4960 | } | |
74531fed PA |
4961 | |
4962 | if (stop_reply_queue) | |
4963 | /* There's still at least an event left. */ | |
4964 | mark_async_event_handler (remote_async_inferior_event_token); | |
4965 | ||
4966 | return it; | |
4967 | } | |
4968 | ||
4969 | /* Push a fully parsed stop reply in the stop reply queue. Since we | |
4970 | know that we now have at least one queued event left to pass to the | |
4971 | core side, tell the event loop to get back to target_wait soon. */ | |
4972 | ||
4973 | static void | |
4974 | push_stop_reply (struct stop_reply *new_event) | |
4975 | { | |
4976 | struct stop_reply *event; | |
4977 | ||
4978 | if (stop_reply_queue) | |
4979 | { | |
4980 | for (event = stop_reply_queue; | |
4981 | event && event->next; | |
4982 | event = event->next) | |
4983 | ; | |
4984 | ||
4985 | event->next = new_event; | |
4986 | } | |
4987 | else | |
4988 | stop_reply_queue = new_event; | |
4989 | ||
4990 | mark_async_event_handler (remote_async_inferior_event_token); | |
4991 | } | |
4992 | ||
4993 | /* Returns true if we have a stop reply for PTID. */ | |
4994 | ||
4995 | static int | |
4996 | peek_stop_reply (ptid_t ptid) | |
4997 | { | |
4998 | struct stop_reply *it; | |
4999 | ||
5000 | for (it = stop_reply_queue; it; it = it->next) | |
5001 | if (ptid_equal (ptid, it->ptid)) | |
5002 | { | |
5003 | if (it->ws.kind == TARGET_WAITKIND_STOPPED) | |
5004 | return 1; | |
5005 | } | |
5006 | ||
5007 | return 0; | |
5008 | } | |
5009 | ||
5010 | /* Parse the stop reply in BUF. Either the function succeeds, and the | |
5011 | result is stored in EVENT, or throws an error. */ | |
5012 | ||
5013 | static void | |
5014 | remote_parse_stop_reply (char *buf, struct stop_reply *event) | |
5015 | { | |
5016 | struct remote_arch_state *rsa = get_remote_arch_state (); | |
5017 | ULONGEST addr; | |
5018 | char *p; | |
5019 | ||
5020 | event->ptid = null_ptid; | |
5021 | event->ws.kind = TARGET_WAITKIND_IGNORE; | |
5022 | event->ws.value.integer = 0; | |
5023 | event->solibs_changed = 0; | |
5024 | event->replay_event = 0; | |
5025 | event->stopped_by_watchpoint_p = 0; | |
5026 | event->regcache = NULL; | |
dc146f7c | 5027 | event->core = -1; |
74531fed PA |
5028 | |
5029 | switch (buf[0]) | |
5030 | { | |
5031 | case 'T': /* Status with PC, SP, FP, ... */ | |
cea39f65 MS |
5032 | /* Expedited reply, containing Signal, {regno, reg} repeat. */ |
5033 | /* format is: 'Tssn...:r...;n...:r...;n...:r...;#cc', where | |
5034 | ss = signal number | |
5035 | n... = register number | |
5036 | r... = register contents | |
5037 | */ | |
5038 | ||
5039 | p = &buf[3]; /* after Txx */ | |
5040 | while (*p) | |
5041 | { | |
5042 | char *p1; | |
5043 | char *p_temp; | |
5044 | int fieldsize; | |
5045 | LONGEST pnum = 0; | |
43ff13b4 | 5046 | |
cea39f65 MS |
5047 | /* If the packet contains a register number, save it in |
5048 | pnum and set p1 to point to the character following it. | |
5049 | Otherwise p1 points to p. */ | |
3c3bea1c | 5050 | |
cea39f65 MS |
5051 | /* If this packet is an awatch packet, don't parse the 'a' |
5052 | as a register number. */ | |
c8e38a49 | 5053 | |
dc146f7c VP |
5054 | if (strncmp (p, "awatch", strlen("awatch")) != 0 |
5055 | && strncmp (p, "core", strlen ("core") != 0)) | |
cea39f65 MS |
5056 | { |
5057 | /* Read the ``P'' register number. */ | |
5058 | pnum = strtol (p, &p_temp, 16); | |
5059 | p1 = p_temp; | |
5060 | } | |
5061 | else | |
5062 | p1 = p; | |
802188a7 | 5063 | |
cea39f65 MS |
5064 | if (p1 == p) /* No register number present here. */ |
5065 | { | |
5066 | p1 = strchr (p, ':'); | |
5067 | if (p1 == NULL) | |
5068 | error (_("Malformed packet(a) (missing colon): %s\n\ | |
c8e38a49 | 5069 | Packet: '%s'\n"), |
cea39f65 MS |
5070 | p, buf); |
5071 | if (strncmp (p, "thread", p1 - p) == 0) | |
5072 | event->ptid = read_ptid (++p1, &p); | |
5073 | else if ((strncmp (p, "watch", p1 - p) == 0) | |
5074 | || (strncmp (p, "rwatch", p1 - p) == 0) | |
5075 | || (strncmp (p, "awatch", p1 - p) == 0)) | |
5076 | { | |
5077 | event->stopped_by_watchpoint_p = 1; | |
5078 | p = unpack_varlen_hex (++p1, &addr); | |
5079 | event->watch_data_address = (CORE_ADDR) addr; | |
5080 | } | |
5081 | else if (strncmp (p, "library", p1 - p) == 0) | |
5082 | { | |
5083 | p1++; | |
5084 | p_temp = p1; | |
5085 | while (*p_temp && *p_temp != ';') | |
5086 | p_temp++; | |
c8e38a49 | 5087 | |
cea39f65 MS |
5088 | event->solibs_changed = 1; |
5089 | p = p_temp; | |
5090 | } | |
5091 | else if (strncmp (p, "replaylog", p1 - p) == 0) | |
5092 | { | |
5093 | /* NO_HISTORY event. | |
5094 | p1 will indicate "begin" or "end", but | |
5095 | it makes no difference for now, so ignore it. */ | |
5096 | event->replay_event = 1; | |
5097 | p_temp = strchr (p1 + 1, ';'); | |
5098 | if (p_temp) | |
c8e38a49 | 5099 | p = p_temp; |
cea39f65 | 5100 | } |
dc146f7c VP |
5101 | else if (strncmp (p, "core", p1 - p) == 0) |
5102 | { | |
5103 | ULONGEST c; | |
a744cf53 | 5104 | |
dc146f7c VP |
5105 | p = unpack_varlen_hex (++p1, &c); |
5106 | event->core = c; | |
5107 | } | |
cea39f65 MS |
5108 | else |
5109 | { | |
5110 | /* Silently skip unknown optional info. */ | |
5111 | p_temp = strchr (p1 + 1, ';'); | |
5112 | if (p_temp) | |
5113 | p = p_temp; | |
5114 | } | |
5115 | } | |
5116 | else | |
5117 | { | |
5118 | struct packet_reg *reg = packet_reg_from_pnum (rsa, pnum); | |
5119 | cached_reg_t cached_reg; | |
74531fed | 5120 | |
cea39f65 | 5121 | p = p1; |
75c99385 | 5122 | |
cea39f65 MS |
5123 | if (*p != ':') |
5124 | error (_("Malformed packet(b) (missing colon): %s\n\ | |
8a3fe4f8 | 5125 | Packet: '%s'\n"), |
cea39f65 MS |
5126 | p, buf); |
5127 | ++p; | |
43ff13b4 | 5128 | |
cea39f65 MS |
5129 | if (reg == NULL) |
5130 | error (_("Remote sent bad register number %s: %s\n\ | |
8a3fe4f8 | 5131 | Packet: '%s'\n"), |
7c47795c | 5132 | hex_string (pnum), p, buf); |
c8e38a49 | 5133 | |
cea39f65 | 5134 | cached_reg.num = reg->regnum; |
4100683b | 5135 | |
cea39f65 MS |
5136 | fieldsize = hex2bin (p, cached_reg.data, |
5137 | register_size (target_gdbarch, | |
5138 | reg->regnum)); | |
5139 | p += 2 * fieldsize; | |
5140 | if (fieldsize < register_size (target_gdbarch, | |
5141 | reg->regnum)) | |
5142 | warning (_("Remote reply is too short: %s"), buf); | |
74531fed | 5143 | |
cea39f65 MS |
5144 | VEC_safe_push (cached_reg_t, event->regcache, &cached_reg); |
5145 | } | |
c8e38a49 | 5146 | |
cea39f65 MS |
5147 | if (*p != ';') |
5148 | error (_("Remote register badly formatted: %s\nhere: %s"), | |
5149 | buf, p); | |
5150 | ++p; | |
5151 | } | |
c8e38a49 PA |
5152 | /* fall through */ |
5153 | case 'S': /* Old style status, just signal only. */ | |
74531fed PA |
5154 | if (event->solibs_changed) |
5155 | event->ws.kind = TARGET_WAITKIND_LOADED; | |
5156 | else if (event->replay_event) | |
5157 | event->ws.kind = TARGET_WAITKIND_NO_HISTORY; | |
c8e38a49 PA |
5158 | else |
5159 | { | |
74531fed PA |
5160 | event->ws.kind = TARGET_WAITKIND_STOPPED; |
5161 | event->ws.value.sig = (enum target_signal) | |
c8e38a49 PA |
5162 | (((fromhex (buf[1])) << 4) + (fromhex (buf[2]))); |
5163 | } | |
5164 | break; | |
5165 | case 'W': /* Target exited. */ | |
5166 | case 'X': | |
5167 | { | |
5168 | char *p; | |
5169 | int pid; | |
5170 | ULONGEST value; | |
82f73884 | 5171 | |
c8e38a49 PA |
5172 | /* GDB used to accept only 2 hex chars here. Stubs should |
5173 | only send more if they detect GDB supports multi-process | |
5174 | support. */ | |
5175 | p = unpack_varlen_hex (&buf[1], &value); | |
82f73884 | 5176 | |
c8e38a49 PA |
5177 | if (buf[0] == 'W') |
5178 | { | |
5179 | /* The remote process exited. */ | |
74531fed PA |
5180 | event->ws.kind = TARGET_WAITKIND_EXITED; |
5181 | event->ws.value.integer = value; | |
c8e38a49 PA |
5182 | } |
5183 | else | |
5184 | { | |
5185 | /* The remote process exited with a signal. */ | |
74531fed PA |
5186 | event->ws.kind = TARGET_WAITKIND_SIGNALLED; |
5187 | event->ws.value.sig = (enum target_signal) value; | |
c8e38a49 | 5188 | } |
82f73884 | 5189 | |
c8e38a49 PA |
5190 | /* If no process is specified, assume inferior_ptid. */ |
5191 | pid = ptid_get_pid (inferior_ptid); | |
5192 | if (*p == '\0') | |
5193 | ; | |
5194 | else if (*p == ';') | |
5195 | { | |
5196 | p++; | |
5197 | ||
5198 | if (p == '\0') | |
82f73884 | 5199 | ; |
c8e38a49 PA |
5200 | else if (strncmp (p, |
5201 | "process:", sizeof ("process:") - 1) == 0) | |
82f73884 | 5202 | { |
c8e38a49 | 5203 | ULONGEST upid; |
a744cf53 | 5204 | |
c8e38a49 PA |
5205 | p += sizeof ("process:") - 1; |
5206 | unpack_varlen_hex (p, &upid); | |
5207 | pid = upid; | |
82f73884 PA |
5208 | } |
5209 | else | |
5210 | error (_("unknown stop reply packet: %s"), buf); | |
43ff13b4 | 5211 | } |
c8e38a49 PA |
5212 | else |
5213 | error (_("unknown stop reply packet: %s"), buf); | |
74531fed PA |
5214 | event->ptid = pid_to_ptid (pid); |
5215 | } | |
5216 | break; | |
5217 | } | |
5218 | ||
5219 | if (non_stop && ptid_equal (event->ptid, null_ptid)) | |
5220 | error (_("No process or thread specified in stop reply: %s"), buf); | |
5221 | } | |
5222 | ||
5223 | /* When the stub wants to tell GDB about a new stop reply, it sends a | |
5224 | stop notification (%Stop). Those can come it at any time, hence, | |
5225 | we have to make sure that any pending putpkt/getpkt sequence we're | |
5226 | making is finished, before querying the stub for more events with | |
5227 | vStopped. E.g., if we started a vStopped sequence immediatelly | |
5228 | upon receiving the %Stop notification, something like this could | |
5229 | happen: | |
5230 | ||
5231 | 1.1) --> Hg 1 | |
5232 | 1.2) <-- OK | |
5233 | 1.3) --> g | |
5234 | 1.4) <-- %Stop | |
5235 | 1.5) --> vStopped | |
5236 | 1.6) <-- (registers reply to step #1.3) | |
5237 | ||
5238 | Obviously, the reply in step #1.6 would be unexpected to a vStopped | |
5239 | query. | |
5240 | ||
5241 | To solve this, whenever we parse a %Stop notification sucessfully, | |
5242 | we mark the REMOTE_ASYNC_GET_PENDING_EVENTS_TOKEN, and carry on | |
5243 | doing whatever we were doing: | |
5244 | ||
5245 | 2.1) --> Hg 1 | |
5246 | 2.2) <-- OK | |
5247 | 2.3) --> g | |
5248 | 2.4) <-- %Stop | |
5249 | <GDB marks the REMOTE_ASYNC_GET_PENDING_EVENTS_TOKEN> | |
5250 | 2.5) <-- (registers reply to step #2.3) | |
5251 | ||
5252 | Eventualy after step #2.5, we return to the event loop, which | |
5253 | notices there's an event on the | |
5254 | REMOTE_ASYNC_GET_PENDING_EVENTS_TOKEN event and calls the | |
5255 | associated callback --- the function below. At this point, we're | |
5256 | always safe to start a vStopped sequence. : | |
5257 | ||
5258 | 2.6) --> vStopped | |
5259 | 2.7) <-- T05 thread:2 | |
5260 | 2.8) --> vStopped | |
5261 | 2.9) --> OK | |
5262 | */ | |
5263 | ||
5264 | static void | |
5265 | remote_get_pending_stop_replies (void) | |
5266 | { | |
5267 | struct remote_state *rs = get_remote_state (); | |
74531fed PA |
5268 | |
5269 | if (pending_stop_reply) | |
5270 | { | |
5271 | /* acknowledge */ | |
5272 | putpkt ("vStopped"); | |
5273 | ||
5274 | /* Now we can rely on it. */ | |
5275 | push_stop_reply (pending_stop_reply); | |
5276 | pending_stop_reply = NULL; | |
5277 | ||
5278 | while (1) | |
5279 | { | |
5280 | getpkt (&rs->buf, &rs->buf_size, 0); | |
5281 | if (strcmp (rs->buf, "OK") == 0) | |
5282 | break; | |
5283 | else | |
5284 | { | |
5285 | struct cleanup *old_chain; | |
5286 | struct stop_reply *stop_reply = stop_reply_xmalloc (); | |
5287 | ||
5288 | old_chain = make_cleanup (do_stop_reply_xfree, stop_reply); | |
5289 | remote_parse_stop_reply (rs->buf, stop_reply); | |
5290 | ||
5291 | /* acknowledge */ | |
5292 | putpkt ("vStopped"); | |
5293 | ||
5294 | if (stop_reply->ws.kind != TARGET_WAITKIND_IGNORE) | |
5295 | { | |
5296 | /* Now we can rely on it. */ | |
5297 | discard_cleanups (old_chain); | |
5298 | push_stop_reply (stop_reply); | |
5299 | } | |
5300 | else | |
5301 | /* We got an unknown stop reply. */ | |
5302 | do_cleanups (old_chain); | |
5303 | } | |
5304 | } | |
5305 | } | |
5306 | } | |
5307 | ||
5308 | ||
5309 | /* Called when it is decided that STOP_REPLY holds the info of the | |
5310 | event that is to be returned to the core. This function always | |
5311 | destroys STOP_REPLY. */ | |
5312 | ||
5313 | static ptid_t | |
5314 | process_stop_reply (struct stop_reply *stop_reply, | |
5315 | struct target_waitstatus *status) | |
5316 | { | |
5317 | ptid_t ptid; | |
5318 | ||
5319 | *status = stop_reply->ws; | |
5320 | ptid = stop_reply->ptid; | |
5321 | ||
5322 | /* If no thread/process was reported by the stub, assume the current | |
5323 | inferior. */ | |
5324 | if (ptid_equal (ptid, null_ptid)) | |
5325 | ptid = inferior_ptid; | |
5326 | ||
5f3563ea PA |
5327 | if (status->kind != TARGET_WAITKIND_EXITED |
5328 | && status->kind != TARGET_WAITKIND_SIGNALLED) | |
74531fed | 5329 | { |
5f3563ea PA |
5330 | /* Expedited registers. */ |
5331 | if (stop_reply->regcache) | |
5332 | { | |
217f1f79 UW |
5333 | struct regcache *regcache |
5334 | = get_thread_arch_regcache (ptid, target_gdbarch); | |
5f3563ea PA |
5335 | cached_reg_t *reg; |
5336 | int ix; | |
5337 | ||
5338 | for (ix = 0; | |
5339 | VEC_iterate(cached_reg_t, stop_reply->regcache, ix, reg); | |
5340 | ix++) | |
217f1f79 | 5341 | regcache_raw_supply (regcache, reg->num, reg->data); |
5f3563ea PA |
5342 | VEC_free (cached_reg_t, stop_reply->regcache); |
5343 | } | |
74531fed | 5344 | |
5f3563ea PA |
5345 | remote_stopped_by_watchpoint_p = stop_reply->stopped_by_watchpoint_p; |
5346 | remote_watch_data_address = stop_reply->watch_data_address; | |
1941c569 PA |
5347 | |
5348 | remote_notice_new_inferior (ptid, 0); | |
dc146f7c | 5349 | demand_private_info (ptid)->core = stop_reply->core; |
74531fed PA |
5350 | } |
5351 | ||
74531fed PA |
5352 | stop_reply_xfree (stop_reply); |
5353 | return ptid; | |
5354 | } | |
5355 | ||
5356 | /* The non-stop mode version of target_wait. */ | |
5357 | ||
5358 | static ptid_t | |
47608cb1 | 5359 | remote_wait_ns (ptid_t ptid, struct target_waitstatus *status, int options) |
74531fed PA |
5360 | { |
5361 | struct remote_state *rs = get_remote_state (); | |
74531fed PA |
5362 | struct stop_reply *stop_reply; |
5363 | int ret; | |
5364 | ||
5365 | /* If in non-stop mode, get out of getpkt even if a | |
5366 | notification is received. */ | |
5367 | ||
5368 | ret = getpkt_or_notif_sane (&rs->buf, &rs->buf_size, | |
5369 | 0 /* forever */); | |
5370 | while (1) | |
5371 | { | |
5372 | if (ret != -1) | |
5373 | switch (rs->buf[0]) | |
5374 | { | |
5375 | case 'E': /* Error of some sort. */ | |
5376 | /* We're out of sync with the target now. Did it continue | |
5377 | or not? We can't tell which thread it was in non-stop, | |
5378 | so just ignore this. */ | |
5379 | warning (_("Remote failure reply: %s"), rs->buf); | |
5380 | break; | |
5381 | case 'O': /* Console output. */ | |
5382 | remote_console_output (rs->buf + 1); | |
5383 | break; | |
5384 | default: | |
5385 | warning (_("Invalid remote reply: %s"), rs->buf); | |
5386 | break; | |
5387 | } | |
5388 | ||
5389 | /* Acknowledge a pending stop reply that may have arrived in the | |
5390 | mean time. */ | |
5391 | if (pending_stop_reply != NULL) | |
5392 | remote_get_pending_stop_replies (); | |
5393 | ||
5394 | /* If indeed we noticed a stop reply, we're done. */ | |
5395 | stop_reply = queued_stop_reply (ptid); | |
5396 | if (stop_reply != NULL) | |
5397 | return process_stop_reply (stop_reply, status); | |
5398 | ||
47608cb1 | 5399 | /* Still no event. If we're just polling for an event, then |
74531fed | 5400 | return to the event loop. */ |
47608cb1 | 5401 | if (options & TARGET_WNOHANG) |
74531fed PA |
5402 | { |
5403 | status->kind = TARGET_WAITKIND_IGNORE; | |
5404 | return minus_one_ptid; | |
5405 | } | |
5406 | ||
47608cb1 | 5407 | /* Otherwise do a blocking wait. */ |
74531fed PA |
5408 | ret = getpkt_or_notif_sane (&rs->buf, &rs->buf_size, |
5409 | 1 /* forever */); | |
5410 | } | |
5411 | } | |
5412 | ||
5413 | /* Wait until the remote machine stops, then return, storing status in | |
5414 | STATUS just as `wait' would. */ | |
5415 | ||
5416 | static ptid_t | |
47608cb1 | 5417 | remote_wait_as (ptid_t ptid, struct target_waitstatus *status, int options) |
74531fed PA |
5418 | { |
5419 | struct remote_state *rs = get_remote_state (); | |
74531fed | 5420 | ptid_t event_ptid = null_ptid; |
cea39f65 | 5421 | char *buf; |
74531fed PA |
5422 | struct stop_reply *stop_reply; |
5423 | ||
47608cb1 PA |
5424 | again: |
5425 | ||
74531fed PA |
5426 | status->kind = TARGET_WAITKIND_IGNORE; |
5427 | status->value.integer = 0; | |
5428 | ||
5429 | stop_reply = queued_stop_reply (ptid); | |
5430 | if (stop_reply != NULL) | |
5431 | return process_stop_reply (stop_reply, status); | |
5432 | ||
5433 | if (rs->cached_wait_status) | |
5434 | /* Use the cached wait status, but only once. */ | |
5435 | rs->cached_wait_status = 0; | |
5436 | else | |
5437 | { | |
5438 | int ret; | |
5439 | ||
5440 | if (!target_is_async_p ()) | |
5441 | { | |
5442 | ofunc = signal (SIGINT, remote_interrupt); | |
5443 | /* If the user hit C-c before this packet, or between packets, | |
5444 | pretend that it was hit right here. */ | |
5445 | if (quit_flag) | |
5446 | { | |
5447 | quit_flag = 0; | |
5448 | remote_interrupt (SIGINT); | |
5449 | } | |
5450 | } | |
5451 | ||
5452 | /* FIXME: cagney/1999-09-27: If we're in async mode we should | |
5453 | _never_ wait for ever -> test on target_is_async_p(). | |
5454 | However, before we do that we need to ensure that the caller | |
5455 | knows how to take the target into/out of async mode. */ | |
5456 | ret = getpkt_sane (&rs->buf, &rs->buf_size, wait_forever_enabled_p); | |
5457 | if (!target_is_async_p ()) | |
5458 | signal (SIGINT, ofunc); | |
5459 | } | |
5460 | ||
5461 | buf = rs->buf; | |
5462 | ||
5463 | remote_stopped_by_watchpoint_p = 0; | |
5464 | ||
5465 | /* We got something. */ | |
5466 | rs->waiting_for_stop_reply = 0; | |
5467 | ||
3a29589a DJ |
5468 | /* Assume that the target has acknowledged Ctrl-C unless we receive |
5469 | an 'F' or 'O' packet. */ | |
5470 | if (buf[0] != 'F' && buf[0] != 'O') | |
5471 | rs->ctrlc_pending_p = 0; | |
5472 | ||
74531fed PA |
5473 | switch (buf[0]) |
5474 | { | |
5475 | case 'E': /* Error of some sort. */ | |
5476 | /* We're out of sync with the target now. Did it continue or | |
5477 | not? Not is more likely, so report a stop. */ | |
5478 | warning (_("Remote failure reply: %s"), buf); | |
5479 | status->kind = TARGET_WAITKIND_STOPPED; | |
5480 | status->value.sig = TARGET_SIGNAL_0; | |
5481 | break; | |
5482 | case 'F': /* File-I/O request. */ | |
3a29589a DJ |
5483 | remote_fileio_request (buf, rs->ctrlc_pending_p); |
5484 | rs->ctrlc_pending_p = 0; | |
74531fed PA |
5485 | break; |
5486 | case 'T': case 'S': case 'X': case 'W': | |
5487 | { | |
5488 | struct stop_reply *stop_reply; | |
5489 | struct cleanup *old_chain; | |
5490 | ||
5491 | stop_reply = stop_reply_xmalloc (); | |
5492 | old_chain = make_cleanup (do_stop_reply_xfree, stop_reply); | |
5493 | remote_parse_stop_reply (buf, stop_reply); | |
5494 | discard_cleanups (old_chain); | |
5495 | event_ptid = process_stop_reply (stop_reply, status); | |
c8e38a49 PA |
5496 | break; |
5497 | } | |
5498 | case 'O': /* Console output. */ | |
5499 | remote_console_output (buf + 1); | |
e24a49d8 | 5500 | |
c8e38a49 PA |
5501 | /* The target didn't really stop; keep waiting. */ |
5502 | rs->waiting_for_stop_reply = 1; | |
e24a49d8 | 5503 | |
c8e38a49 PA |
5504 | break; |
5505 | case '\0': | |
5506 | if (last_sent_signal != TARGET_SIGNAL_0) | |
5507 | { | |
5508 | /* Zero length reply means that we tried 'S' or 'C' and the | |
5509 | remote system doesn't support it. */ | |
5510 | target_terminal_ours_for_output (); | |
5511 | printf_filtered | |
5512 | ("Can't send signals to this remote system. %s not sent.\n", | |
5513 | target_signal_to_name (last_sent_signal)); | |
5514 | last_sent_signal = TARGET_SIGNAL_0; | |
5515 | target_terminal_inferior (); | |
5516 | ||
5517 | strcpy ((char *) buf, last_sent_step ? "s" : "c"); | |
5518 | putpkt ((char *) buf); | |
5519 | ||
5520 | /* We just told the target to resume, so a stop reply is in | |
5521 | order. */ | |
e24a49d8 | 5522 | rs->waiting_for_stop_reply = 1; |
c8e38a49 | 5523 | break; |
43ff13b4 | 5524 | } |
c8e38a49 PA |
5525 | /* else fallthrough */ |
5526 | default: | |
5527 | warning (_("Invalid remote reply: %s"), buf); | |
5528 | /* Keep waiting. */ | |
5529 | rs->waiting_for_stop_reply = 1; | |
5530 | break; | |
43ff13b4 | 5531 | } |
c8e38a49 | 5532 | |
c8e38a49 | 5533 | if (status->kind == TARGET_WAITKIND_IGNORE) |
47608cb1 PA |
5534 | { |
5535 | /* Nothing interesting happened. If we're doing a non-blocking | |
5536 | poll, we're done. Otherwise, go back to waiting. */ | |
5537 | if (options & TARGET_WNOHANG) | |
5538 | return minus_one_ptid; | |
5539 | else | |
5540 | goto again; | |
5541 | } | |
74531fed PA |
5542 | else if (status->kind != TARGET_WAITKIND_EXITED |
5543 | && status->kind != TARGET_WAITKIND_SIGNALLED) | |
82f73884 PA |
5544 | { |
5545 | if (!ptid_equal (event_ptid, null_ptid)) | |
5546 | record_currthread (event_ptid); | |
5547 | else | |
5548 | event_ptid = inferior_ptid; | |
43ff13b4 | 5549 | } |
74531fed PA |
5550 | else |
5551 | /* A process exit. Invalidate our notion of current thread. */ | |
5552 | record_currthread (minus_one_ptid); | |
79d7f229 | 5553 | |
82f73884 | 5554 | return event_ptid; |
43ff13b4 JM |
5555 | } |
5556 | ||
74531fed PA |
5557 | /* Wait until the remote machine stops, then return, storing status in |
5558 | STATUS just as `wait' would. */ | |
5559 | ||
c8e38a49 | 5560 | static ptid_t |
117de6a9 | 5561 | remote_wait (struct target_ops *ops, |
47608cb1 | 5562 | ptid_t ptid, struct target_waitstatus *status, int options) |
c8e38a49 PA |
5563 | { |
5564 | ptid_t event_ptid; | |
5565 | ||
74531fed | 5566 | if (non_stop) |
47608cb1 | 5567 | event_ptid = remote_wait_ns (ptid, status, options); |
74531fed | 5568 | else |
47608cb1 | 5569 | event_ptid = remote_wait_as (ptid, status, options); |
c8e38a49 | 5570 | |
74531fed | 5571 | if (target_can_async_p ()) |
c8e38a49 | 5572 | { |
74531fed PA |
5573 | /* If there are are events left in the queue tell the event loop |
5574 | to return here. */ | |
5575 | if (stop_reply_queue) | |
5576 | mark_async_event_handler (remote_async_inferior_event_token); | |
c8e38a49 | 5577 | } |
c8e38a49 PA |
5578 | |
5579 | return event_ptid; | |
5580 | } | |
5581 | ||
74ca34ce | 5582 | /* Fetch a single register using a 'p' packet. */ |
c906108c | 5583 | |
b96ec7ac | 5584 | static int |
56be3814 | 5585 | fetch_register_using_p (struct regcache *regcache, struct packet_reg *reg) |
b96ec7ac AC |
5586 | { |
5587 | struct remote_state *rs = get_remote_state (); | |
2e9f7625 | 5588 | char *buf, *p; |
b96ec7ac AC |
5589 | char regp[MAX_REGISTER_SIZE]; |
5590 | int i; | |
5591 | ||
74ca34ce DJ |
5592 | if (remote_protocol_packets[PACKET_p].support == PACKET_DISABLE) |
5593 | return 0; | |
5594 | ||
5595 | if (reg->pnum == -1) | |
5596 | return 0; | |
5597 | ||
2e9f7625 | 5598 | p = rs->buf; |
fcad0fa4 | 5599 | *p++ = 'p'; |
74ca34ce | 5600 | p += hexnumstr (p, reg->pnum); |
fcad0fa4 | 5601 | *p++ = '\0'; |
1f4437a4 MS |
5602 | putpkt (rs->buf); |
5603 | getpkt (&rs->buf, &rs->buf_size, 0); | |
3f9a994c | 5604 | |
2e9f7625 DJ |
5605 | buf = rs->buf; |
5606 | ||
74ca34ce DJ |
5607 | switch (packet_ok (buf, &remote_protocol_packets[PACKET_p])) |
5608 | { | |
5609 | case PACKET_OK: | |
5610 | break; | |
5611 | case PACKET_UNKNOWN: | |
5612 | return 0; | |
5613 | case PACKET_ERROR: | |
27a9c0bf MS |
5614 | error (_("Could not fetch register \"%s\"; remote failure reply '%s'"), |
5615 | gdbarch_register_name (get_regcache_arch (regcache), | |
5616 | reg->regnum), | |
5617 | buf); | |
74ca34ce | 5618 | } |
3f9a994c JB |
5619 | |
5620 | /* If this register is unfetchable, tell the regcache. */ | |
5621 | if (buf[0] == 'x') | |
8480adf2 | 5622 | { |
56be3814 | 5623 | regcache_raw_supply (regcache, reg->regnum, NULL); |
8480adf2 | 5624 | return 1; |
b96ec7ac | 5625 | } |
b96ec7ac | 5626 | |
3f9a994c JB |
5627 | /* Otherwise, parse and supply the value. */ |
5628 | p = buf; | |
5629 | i = 0; | |
5630 | while (p[0] != 0) | |
5631 | { | |
5632 | if (p[1] == 0) | |
74ca34ce | 5633 | error (_("fetch_register_using_p: early buf termination")); |
3f9a994c JB |
5634 | |
5635 | regp[i++] = fromhex (p[0]) * 16 + fromhex (p[1]); | |
5636 | p += 2; | |
5637 | } | |
56be3814 | 5638 | regcache_raw_supply (regcache, reg->regnum, regp); |
3f9a994c | 5639 | return 1; |
b96ec7ac AC |
5640 | } |
5641 | ||
74ca34ce DJ |
5642 | /* Fetch the registers included in the target's 'g' packet. */ |
5643 | ||
29709017 DJ |
5644 | static int |
5645 | send_g_packet (void) | |
c906108c | 5646 | { |
d01949b6 | 5647 | struct remote_state *rs = get_remote_state (); |
cea39f65 | 5648 | int buf_len; |
c906108c | 5649 | |
74ca34ce DJ |
5650 | sprintf (rs->buf, "g"); |
5651 | remote_send (&rs->buf, &rs->buf_size); | |
c906108c | 5652 | |
29709017 DJ |
5653 | /* We can get out of synch in various cases. If the first character |
5654 | in the buffer is not a hex character, assume that has happened | |
5655 | and try to fetch another packet to read. */ | |
5656 | while ((rs->buf[0] < '0' || rs->buf[0] > '9') | |
5657 | && (rs->buf[0] < 'A' || rs->buf[0] > 'F') | |
5658 | && (rs->buf[0] < 'a' || rs->buf[0] > 'f') | |
5659 | && rs->buf[0] != 'x') /* New: unavailable register value. */ | |
5660 | { | |
5661 | if (remote_debug) | |
5662 | fprintf_unfiltered (gdb_stdlog, | |
5663 | "Bad register packet; fetching a new packet\n"); | |
5664 | getpkt (&rs->buf, &rs->buf_size, 0); | |
5665 | } | |
5666 | ||
74ca34ce DJ |
5667 | buf_len = strlen (rs->buf); |
5668 | ||
5669 | /* Sanity check the received packet. */ | |
5670 | if (buf_len % 2 != 0) | |
5671 | error (_("Remote 'g' packet reply is of odd length: %s"), rs->buf); | |
29709017 DJ |
5672 | |
5673 | return buf_len / 2; | |
5674 | } | |
5675 | ||
5676 | static void | |
56be3814 | 5677 | process_g_packet (struct regcache *regcache) |
29709017 | 5678 | { |
4a22f64d | 5679 | struct gdbarch *gdbarch = get_regcache_arch (regcache); |
29709017 DJ |
5680 | struct remote_state *rs = get_remote_state (); |
5681 | struct remote_arch_state *rsa = get_remote_arch_state (); | |
5682 | int i, buf_len; | |
5683 | char *p; | |
5684 | char *regs; | |
5685 | ||
5686 | buf_len = strlen (rs->buf); | |
5687 | ||
5688 | /* Further sanity checks, with knowledge of the architecture. */ | |
74ca34ce DJ |
5689 | if (buf_len > 2 * rsa->sizeof_g_packet) |
5690 | error (_("Remote 'g' packet reply is too long: %s"), rs->buf); | |
5691 | ||
5692 | /* Save the size of the packet sent to us by the target. It is used | |
5693 | as a heuristic when determining the max size of packets that the | |
5694 | target can safely receive. */ | |
5695 | if (rsa->actual_register_packet_size == 0) | |
5696 | rsa->actual_register_packet_size = buf_len; | |
5697 | ||
5698 | /* If this is smaller than we guessed the 'g' packet would be, | |
5699 | update our records. A 'g' reply that doesn't include a register's | |
5700 | value implies either that the register is not available, or that | |
5701 | the 'p' packet must be used. */ | |
5702 | if (buf_len < 2 * rsa->sizeof_g_packet) | |
b323314b | 5703 | { |
74ca34ce DJ |
5704 | rsa->sizeof_g_packet = buf_len / 2; |
5705 | ||
4a22f64d | 5706 | for (i = 0; i < gdbarch_num_regs (gdbarch); i++) |
b96ec7ac | 5707 | { |
74ca34ce DJ |
5708 | if (rsa->regs[i].pnum == -1) |
5709 | continue; | |
5710 | ||
5711 | if (rsa->regs[i].offset >= rsa->sizeof_g_packet) | |
5712 | rsa->regs[i].in_g_packet = 0; | |
b96ec7ac | 5713 | else |
74ca34ce | 5714 | rsa->regs[i].in_g_packet = 1; |
b96ec7ac | 5715 | } |
74ca34ce | 5716 | } |
b323314b | 5717 | |
74ca34ce | 5718 | regs = alloca (rsa->sizeof_g_packet); |
c906108c SS |
5719 | |
5720 | /* Unimplemented registers read as all bits zero. */ | |
ea9c271d | 5721 | memset (regs, 0, rsa->sizeof_g_packet); |
c906108c | 5722 | |
c906108c SS |
5723 | /* Reply describes registers byte by byte, each byte encoded as two |
5724 | hex characters. Suck them all up, then supply them to the | |
5725 | register cacheing/storage mechanism. */ | |
5726 | ||
74ca34ce | 5727 | p = rs->buf; |
ea9c271d | 5728 | for (i = 0; i < rsa->sizeof_g_packet; i++) |
c906108c | 5729 | { |
74ca34ce DJ |
5730 | if (p[0] == 0 || p[1] == 0) |
5731 | /* This shouldn't happen - we adjusted sizeof_g_packet above. */ | |
5732 | internal_error (__FILE__, __LINE__, | |
9b20d036 | 5733 | _("unexpected end of 'g' packet reply")); |
74ca34ce | 5734 | |
c906108c | 5735 | if (p[0] == 'x' && p[1] == 'x') |
c5aa993b | 5736 | regs[i] = 0; /* 'x' */ |
c906108c SS |
5737 | else |
5738 | regs[i] = fromhex (p[0]) * 16 + fromhex (p[1]); | |
5739 | p += 2; | |
5740 | } | |
5741 | ||
a744cf53 MS |
5742 | for (i = 0; i < gdbarch_num_regs (gdbarch); i++) |
5743 | { | |
5744 | struct packet_reg *r = &rsa->regs[i]; | |
5745 | ||
5746 | if (r->in_g_packet) | |
5747 | { | |
5748 | if (r->offset * 2 >= strlen (rs->buf)) | |
5749 | /* This shouldn't happen - we adjusted in_g_packet above. */ | |
5750 | internal_error (__FILE__, __LINE__, | |
9b20d036 | 5751 | _("unexpected end of 'g' packet reply")); |
a744cf53 MS |
5752 | else if (rs->buf[r->offset * 2] == 'x') |
5753 | { | |
5754 | gdb_assert (r->offset * 2 < strlen (rs->buf)); | |
5755 | /* The register isn't available, mark it as such (at | |
5756 | the same time setting the value to zero). */ | |
5757 | regcache_raw_supply (regcache, r->regnum, NULL); | |
5758 | } | |
5759 | else | |
5760 | regcache_raw_supply (regcache, r->regnum, | |
5761 | regs + r->offset); | |
5762 | } | |
5763 | } | |
c906108c SS |
5764 | } |
5765 | ||
29709017 | 5766 | static void |
56be3814 | 5767 | fetch_registers_using_g (struct regcache *regcache) |
29709017 DJ |
5768 | { |
5769 | send_g_packet (); | |
56be3814 | 5770 | process_g_packet (regcache); |
29709017 DJ |
5771 | } |
5772 | ||
e6e4e701 PA |
5773 | /* Make the remote selected traceframe match GDB's selected |
5774 | traceframe. */ | |
5775 | ||
5776 | static void | |
5777 | set_remote_traceframe (void) | |
5778 | { | |
5779 | int newnum; | |
5780 | ||
5781 | if (remote_traceframe_number == get_traceframe_number ()) | |
5782 | return; | |
5783 | ||
5784 | /* Avoid recursion, remote_trace_find calls us again. */ | |
5785 | remote_traceframe_number = get_traceframe_number (); | |
5786 | ||
5787 | newnum = target_trace_find (tfind_number, | |
5788 | get_traceframe_number (), 0, 0, NULL); | |
5789 | ||
5790 | /* Should not happen. If it does, all bets are off. */ | |
5791 | if (newnum != get_traceframe_number ()) | |
5792 | warning (_("could not set remote traceframe")); | |
5793 | } | |
5794 | ||
74ca34ce | 5795 | static void |
28439f5e PA |
5796 | remote_fetch_registers (struct target_ops *ops, |
5797 | struct regcache *regcache, int regnum) | |
74ca34ce | 5798 | { |
74ca34ce DJ |
5799 | struct remote_arch_state *rsa = get_remote_arch_state (); |
5800 | int i; | |
5801 | ||
e6e4e701 | 5802 | set_remote_traceframe (); |
79d7f229 | 5803 | set_general_thread (inferior_ptid); |
74ca34ce DJ |
5804 | |
5805 | if (regnum >= 0) | |
5806 | { | |
5807 | struct packet_reg *reg = packet_reg_from_regnum (rsa, regnum); | |
a744cf53 | 5808 | |
74ca34ce DJ |
5809 | gdb_assert (reg != NULL); |
5810 | ||
5811 | /* If this register might be in the 'g' packet, try that first - | |
5812 | we are likely to read more than one register. If this is the | |
5813 | first 'g' packet, we might be overly optimistic about its | |
5814 | contents, so fall back to 'p'. */ | |
5815 | if (reg->in_g_packet) | |
5816 | { | |
56be3814 | 5817 | fetch_registers_using_g (regcache); |
74ca34ce DJ |
5818 | if (reg->in_g_packet) |
5819 | return; | |
5820 | } | |
5821 | ||
56be3814 | 5822 | if (fetch_register_using_p (regcache, reg)) |
74ca34ce DJ |
5823 | return; |
5824 | ||
5825 | /* This register is not available. */ | |
56be3814 | 5826 | regcache_raw_supply (regcache, reg->regnum, NULL); |
74ca34ce DJ |
5827 | |
5828 | return; | |
5829 | } | |
5830 | ||
56be3814 | 5831 | fetch_registers_using_g (regcache); |
74ca34ce | 5832 | |
4a22f64d | 5833 | for (i = 0; i < gdbarch_num_regs (get_regcache_arch (regcache)); i++) |
74ca34ce | 5834 | if (!rsa->regs[i].in_g_packet) |
56be3814 | 5835 | if (!fetch_register_using_p (regcache, &rsa->regs[i])) |
74ca34ce DJ |
5836 | { |
5837 | /* This register is not available. */ | |
56be3814 | 5838 | regcache_raw_supply (regcache, i, NULL); |
74ca34ce DJ |
5839 | } |
5840 | } | |
5841 | ||
c906108c SS |
5842 | /* Prepare to store registers. Since we may send them all (using a |
5843 | 'G' request), we have to read out the ones we don't want to change | |
5844 | first. */ | |
5845 | ||
c5aa993b | 5846 | static void |
316f2060 | 5847 | remote_prepare_to_store (struct regcache *regcache) |
c906108c | 5848 | { |
ea9c271d | 5849 | struct remote_arch_state *rsa = get_remote_arch_state (); |
cf0e1e0d | 5850 | int i; |
cfd77fa1 | 5851 | gdb_byte buf[MAX_REGISTER_SIZE]; |
cf0e1e0d | 5852 | |
c906108c | 5853 | /* Make sure the entire registers array is valid. */ |
444abaca | 5854 | switch (remote_protocol_packets[PACKET_P].support) |
5a2468f5 JM |
5855 | { |
5856 | case PACKET_DISABLE: | |
5857 | case PACKET_SUPPORT_UNKNOWN: | |
cf0e1e0d | 5858 | /* Make sure all the necessary registers are cached. */ |
4a22f64d | 5859 | for (i = 0; i < gdbarch_num_regs (get_regcache_arch (regcache)); i++) |
ea9c271d | 5860 | if (rsa->regs[i].in_g_packet) |
316f2060 | 5861 | regcache_raw_read (regcache, rsa->regs[i].regnum, buf); |
5a2468f5 JM |
5862 | break; |
5863 | case PACKET_ENABLE: | |
5864 | break; | |
5865 | } | |
5866 | } | |
5867 | ||
ad10f812 | 5868 | /* Helper: Attempt to store REGNUM using the P packet. Return fail IFF |
23860348 | 5869 | packet was not recognized. */ |
5a2468f5 JM |
5870 | |
5871 | static int | |
1f4437a4 MS |
5872 | store_register_using_P (const struct regcache *regcache, |
5873 | struct packet_reg *reg) | |
5a2468f5 | 5874 | { |
4a22f64d | 5875 | struct gdbarch *gdbarch = get_regcache_arch (regcache); |
d01949b6 | 5876 | struct remote_state *rs = get_remote_state (); |
5a2468f5 | 5877 | /* Try storing a single register. */ |
6d820c5c | 5878 | char *buf = rs->buf; |
cfd77fa1 | 5879 | gdb_byte regp[MAX_REGISTER_SIZE]; |
5a2468f5 | 5880 | char *p; |
5a2468f5 | 5881 | |
74ca34ce DJ |
5882 | if (remote_protocol_packets[PACKET_P].support == PACKET_DISABLE) |
5883 | return 0; | |
5884 | ||
5885 | if (reg->pnum == -1) | |
5886 | return 0; | |
5887 | ||
ea9c271d | 5888 | xsnprintf (buf, get_remote_packet_size (), "P%s=", phex_nz (reg->pnum, 0)); |
5a2468f5 | 5889 | p = buf + strlen (buf); |
56be3814 | 5890 | regcache_raw_collect (regcache, reg->regnum, regp); |
4a22f64d | 5891 | bin2hex (regp, p, register_size (gdbarch, reg->regnum)); |
1f4437a4 MS |
5892 | putpkt (rs->buf); |
5893 | getpkt (&rs->buf, &rs->buf_size, 0); | |
5a2468f5 | 5894 | |
74ca34ce DJ |
5895 | switch (packet_ok (rs->buf, &remote_protocol_packets[PACKET_P])) |
5896 | { | |
5897 | case PACKET_OK: | |
5898 | return 1; | |
5899 | case PACKET_ERROR: | |
27a9c0bf MS |
5900 | error (_("Could not write register \"%s\"; remote failure reply '%s'"), |
5901 | gdbarch_register_name (gdbarch, reg->regnum), rs->buf); | |
74ca34ce DJ |
5902 | case PACKET_UNKNOWN: |
5903 | return 0; | |
5904 | default: | |
5905 | internal_error (__FILE__, __LINE__, _("Bad result from packet_ok")); | |
5906 | } | |
c906108c SS |
5907 | } |
5908 | ||
23860348 MS |
5909 | /* Store register REGNUM, or all registers if REGNUM == -1, from the |
5910 | contents of the register cache buffer. FIXME: ignores errors. */ | |
c906108c SS |
5911 | |
5912 | static void | |
56be3814 | 5913 | store_registers_using_G (const struct regcache *regcache) |
c906108c | 5914 | { |
d01949b6 | 5915 | struct remote_state *rs = get_remote_state (); |
ea9c271d | 5916 | struct remote_arch_state *rsa = get_remote_arch_state (); |
cfd77fa1 | 5917 | gdb_byte *regs; |
c906108c SS |
5918 | char *p; |
5919 | ||
193cb69f AC |
5920 | /* Extract all the registers in the regcache copying them into a |
5921 | local buffer. */ | |
5922 | { | |
b323314b | 5923 | int i; |
a744cf53 | 5924 | |
ea9c271d DJ |
5925 | regs = alloca (rsa->sizeof_g_packet); |
5926 | memset (regs, 0, rsa->sizeof_g_packet); | |
4a22f64d | 5927 | for (i = 0; i < gdbarch_num_regs (get_regcache_arch (regcache)); i++) |
193cb69f | 5928 | { |
ea9c271d | 5929 | struct packet_reg *r = &rsa->regs[i]; |
a744cf53 | 5930 | |
b323314b | 5931 | if (r->in_g_packet) |
56be3814 | 5932 | regcache_raw_collect (regcache, r->regnum, regs + r->offset); |
193cb69f AC |
5933 | } |
5934 | } | |
c906108c SS |
5935 | |
5936 | /* Command describes registers byte by byte, | |
5937 | each byte encoded as two hex characters. */ | |
6d820c5c | 5938 | p = rs->buf; |
193cb69f | 5939 | *p++ = 'G'; |
74ca34ce DJ |
5940 | /* remote_prepare_to_store insures that rsa->sizeof_g_packet gets |
5941 | updated. */ | |
5942 | bin2hex (regs, p, rsa->sizeof_g_packet); | |
1f4437a4 MS |
5943 | putpkt (rs->buf); |
5944 | getpkt (&rs->buf, &rs->buf_size, 0); | |
5945 | if (packet_check_result (rs->buf) == PACKET_ERROR) | |
27a9c0bf MS |
5946 | error (_("Could not write registers; remote failure reply '%s'"), |
5947 | rs->buf); | |
c906108c | 5948 | } |
74ca34ce DJ |
5949 | |
5950 | /* Store register REGNUM, or all registers if REGNUM == -1, from the contents | |
5951 | of the register cache buffer. FIXME: ignores errors. */ | |
5952 | ||
5953 | static void | |
28439f5e PA |
5954 | remote_store_registers (struct target_ops *ops, |
5955 | struct regcache *regcache, int regnum) | |
74ca34ce | 5956 | { |
74ca34ce DJ |
5957 | struct remote_arch_state *rsa = get_remote_arch_state (); |
5958 | int i; | |
5959 | ||
e6e4e701 | 5960 | set_remote_traceframe (); |
79d7f229 | 5961 | set_general_thread (inferior_ptid); |
74ca34ce DJ |
5962 | |
5963 | if (regnum >= 0) | |
5964 | { | |
5965 | struct packet_reg *reg = packet_reg_from_regnum (rsa, regnum); | |
a744cf53 | 5966 | |
74ca34ce DJ |
5967 | gdb_assert (reg != NULL); |
5968 | ||
5969 | /* Always prefer to store registers using the 'P' packet if | |
5970 | possible; we often change only a small number of registers. | |
5971 | Sometimes we change a larger number; we'd need help from a | |
5972 | higher layer to know to use 'G'. */ | |
56be3814 | 5973 | if (store_register_using_P (regcache, reg)) |
74ca34ce DJ |
5974 | return; |
5975 | ||
5976 | /* For now, don't complain if we have no way to write the | |
5977 | register. GDB loses track of unavailable registers too | |
5978 | easily. Some day, this may be an error. We don't have | |
0df8b418 | 5979 | any way to read the register, either... */ |
74ca34ce DJ |
5980 | if (!reg->in_g_packet) |
5981 | return; | |
5982 | ||
56be3814 | 5983 | store_registers_using_G (regcache); |
74ca34ce DJ |
5984 | return; |
5985 | } | |
5986 | ||
56be3814 | 5987 | store_registers_using_G (regcache); |
74ca34ce | 5988 | |
4a22f64d | 5989 | for (i = 0; i < gdbarch_num_regs (get_regcache_arch (regcache)); i++) |
74ca34ce | 5990 | if (!rsa->regs[i].in_g_packet) |
56be3814 | 5991 | if (!store_register_using_P (regcache, &rsa->regs[i])) |
74ca34ce DJ |
5992 | /* See above for why we do not issue an error here. */ |
5993 | continue; | |
5994 | } | |
c906108c SS |
5995 | \f |
5996 | ||
5997 | /* Return the number of hex digits in num. */ | |
5998 | ||
5999 | static int | |
fba45db2 | 6000 | hexnumlen (ULONGEST num) |
c906108c SS |
6001 | { |
6002 | int i; | |
6003 | ||
6004 | for (i = 0; num != 0; i++) | |
6005 | num >>= 4; | |
6006 | ||
6007 | return max (i, 1); | |
6008 | } | |
6009 | ||
2df3850c | 6010 | /* Set BUF to the minimum number of hex digits representing NUM. */ |
c906108c SS |
6011 | |
6012 | static int | |
fba45db2 | 6013 | hexnumstr (char *buf, ULONGEST num) |
c906108c | 6014 | { |
c906108c | 6015 | int len = hexnumlen (num); |
a744cf53 | 6016 | |
2df3850c JM |
6017 | return hexnumnstr (buf, num, len); |
6018 | } | |
6019 | ||
c906108c | 6020 | |
2df3850c | 6021 | /* Set BUF to the hex digits representing NUM, padded to WIDTH characters. */ |
c906108c | 6022 | |
2df3850c | 6023 | static int |
fba45db2 | 6024 | hexnumnstr (char *buf, ULONGEST num, int width) |
2df3850c JM |
6025 | { |
6026 | int i; | |
6027 | ||
6028 | buf[width] = '\0'; | |
6029 | ||
6030 | for (i = width - 1; i >= 0; i--) | |
c906108c | 6031 | { |
c5aa993b | 6032 | buf[i] = "0123456789abcdef"[(num & 0xf)]; |
c906108c SS |
6033 | num >>= 4; |
6034 | } | |
6035 | ||
2df3850c | 6036 | return width; |
c906108c SS |
6037 | } |
6038 | ||
23860348 | 6039 | /* Mask all but the least significant REMOTE_ADDRESS_SIZE bits. */ |
c906108c SS |
6040 | |
6041 | static CORE_ADDR | |
fba45db2 | 6042 | remote_address_masked (CORE_ADDR addr) |
c906108c | 6043 | { |
911c95a5 | 6044 | int address_size = remote_address_size; |
a744cf53 | 6045 | |
911c95a5 UW |
6046 | /* If "remoteaddresssize" was not set, default to target address size. */ |
6047 | if (!address_size) | |
1cf3db46 | 6048 | address_size = gdbarch_addr_bit (target_gdbarch); |
911c95a5 UW |
6049 | |
6050 | if (address_size > 0 | |
6051 | && address_size < (sizeof (ULONGEST) * 8)) | |
c906108c SS |
6052 | { |
6053 | /* Only create a mask when that mask can safely be constructed | |
23860348 | 6054 | in a ULONGEST variable. */ |
c906108c | 6055 | ULONGEST mask = 1; |
a744cf53 | 6056 | |
911c95a5 | 6057 | mask = (mask << address_size) - 1; |
c906108c SS |
6058 | addr &= mask; |
6059 | } | |
6060 | return addr; | |
6061 | } | |
6062 | ||
a31ea83d DJ |
6063 | /* Convert BUFFER, binary data at least LEN bytes long, into escaped |
6064 | binary data in OUT_BUF. Set *OUT_LEN to the length of the data | |
6065 | encoded in OUT_BUF, and return the number of bytes in OUT_BUF | |
6066 | (which may be more than *OUT_LEN due to escape characters). The | |
6067 | total number of bytes in the output buffer will be at most | |
6068 | OUT_MAXLEN. */ | |
6069 | ||
6070 | static int | |
6071 | remote_escape_output (const gdb_byte *buffer, int len, | |
6072 | gdb_byte *out_buf, int *out_len, | |
6073 | int out_maxlen) | |
6074 | { | |
6075 | int input_index, output_index; | |
6076 | ||
6077 | output_index = 0; | |
6078 | for (input_index = 0; input_index < len; input_index++) | |
6079 | { | |
6080 | gdb_byte b = buffer[input_index]; | |
6081 | ||
6082 | if (b == '$' || b == '#' || b == '}') | |
6083 | { | |
6084 | /* These must be escaped. */ | |
6085 | if (output_index + 2 > out_maxlen) | |
6086 | break; | |
6087 | out_buf[output_index++] = '}'; | |
6088 | out_buf[output_index++] = b ^ 0x20; | |
6089 | } | |
6090 | else | |
6091 | { | |
6092 | if (output_index + 1 > out_maxlen) | |
6093 | break; | |
6094 | out_buf[output_index++] = b; | |
6095 | } | |
6096 | } | |
6097 | ||
6098 | *out_len = input_index; | |
6099 | return output_index; | |
6100 | } | |
6101 | ||
0876f84a DJ |
6102 | /* Convert BUFFER, escaped data LEN bytes long, into binary data |
6103 | in OUT_BUF. Return the number of bytes written to OUT_BUF. | |
6104 | Raise an error if the total number of bytes exceeds OUT_MAXLEN. | |
6105 | ||
6106 | This function reverses remote_escape_output. It allows more | |
6107 | escaped characters than that function does, in particular because | |
6108 | '*' must be escaped to avoid the run-length encoding processing | |
6109 | in reading packets. */ | |
6110 | ||
6111 | static int | |
6112 | remote_unescape_input (const gdb_byte *buffer, int len, | |
6113 | gdb_byte *out_buf, int out_maxlen) | |
6114 | { | |
6115 | int input_index, output_index; | |
6116 | int escaped; | |
6117 | ||
6118 | output_index = 0; | |
6119 | escaped = 0; | |
6120 | for (input_index = 0; input_index < len; input_index++) | |
6121 | { | |
6122 | gdb_byte b = buffer[input_index]; | |
6123 | ||
6124 | if (output_index + 1 > out_maxlen) | |
6125 | { | |
6126 | warning (_("Received too much data from remote target;" | |
6127 | " ignoring overflow.")); | |
6128 | return output_index; | |
6129 | } | |
6130 | ||
6131 | if (escaped) | |
6132 | { | |
6133 | out_buf[output_index++] = b ^ 0x20; | |
6134 | escaped = 0; | |
6135 | } | |
6136 | else if (b == '}') | |
6137 | escaped = 1; | |
6138 | else | |
6139 | out_buf[output_index++] = b; | |
6140 | } | |
6141 | ||
6142 | if (escaped) | |
6143 | error (_("Unmatched escape character in target response.")); | |
6144 | ||
6145 | return output_index; | |
6146 | } | |
6147 | ||
c906108c SS |
6148 | /* Determine whether the remote target supports binary downloading. |
6149 | This is accomplished by sending a no-op memory write of zero length | |
6150 | to the target at the specified address. It does not suffice to send | |
23860348 MS |
6151 | the whole packet, since many stubs strip the eighth bit and |
6152 | subsequently compute a wrong checksum, which causes real havoc with | |
6153 | remote_write_bytes. | |
7a292a7a | 6154 | |
96baa820 | 6155 | NOTE: This can still lose if the serial line is not eight-bit |
0df8b418 | 6156 | clean. In cases like this, the user should clear "remote |
23860348 | 6157 | X-packet". */ |
96baa820 | 6158 | |
c906108c | 6159 | static void |
fba45db2 | 6160 | check_binary_download (CORE_ADDR addr) |
c906108c | 6161 | { |
d01949b6 | 6162 | struct remote_state *rs = get_remote_state (); |
24b06219 | 6163 | |
444abaca | 6164 | switch (remote_protocol_packets[PACKET_X].support) |
c906108c | 6165 | { |
96baa820 JM |
6166 | case PACKET_DISABLE: |
6167 | break; | |
6168 | case PACKET_ENABLE: | |
6169 | break; | |
6170 | case PACKET_SUPPORT_UNKNOWN: | |
6171 | { | |
96baa820 | 6172 | char *p; |
802188a7 | 6173 | |
2e9f7625 | 6174 | p = rs->buf; |
96baa820 JM |
6175 | *p++ = 'X'; |
6176 | p += hexnumstr (p, (ULONGEST) addr); | |
6177 | *p++ = ','; | |
6178 | p += hexnumstr (p, (ULONGEST) 0); | |
6179 | *p++ = ':'; | |
6180 | *p = '\0'; | |
802188a7 | 6181 | |
2e9f7625 | 6182 | putpkt_binary (rs->buf, (int) (p - rs->buf)); |
6d820c5c | 6183 | getpkt (&rs->buf, &rs->buf_size, 0); |
c906108c | 6184 | |
2e9f7625 | 6185 | if (rs->buf[0] == '\0') |
96baa820 JM |
6186 | { |
6187 | if (remote_debug) | |
6188 | fprintf_unfiltered (gdb_stdlog, | |
3e43a32a MS |
6189 | "binary downloading NOT " |
6190 | "supported by target\n"); | |
444abaca | 6191 | remote_protocol_packets[PACKET_X].support = PACKET_DISABLE; |
96baa820 JM |
6192 | } |
6193 | else | |
6194 | { | |
6195 | if (remote_debug) | |
6196 | fprintf_unfiltered (gdb_stdlog, | |
6197 | "binary downloading suppported by target\n"); | |
444abaca | 6198 | remote_protocol_packets[PACKET_X].support = PACKET_ENABLE; |
96baa820 JM |
6199 | } |
6200 | break; | |
6201 | } | |
c906108c SS |
6202 | } |
6203 | } | |
6204 | ||
6205 | /* Write memory data directly to the remote machine. | |
6206 | This does not inform the data cache; the data cache uses this. | |
a76d924d | 6207 | HEADER is the starting part of the packet. |
c906108c SS |
6208 | MEMADDR is the address in the remote memory space. |
6209 | MYADDR is the address of the buffer in our space. | |
6210 | LEN is the number of bytes. | |
a76d924d DJ |
6211 | PACKET_FORMAT should be either 'X' or 'M', and indicates if we |
6212 | should send data as binary ('X'), or hex-encoded ('M'). | |
6213 | ||
6214 | The function creates packet of the form | |
6215 | <HEADER><ADDRESS>,<LENGTH>:<DATA> | |
6216 | ||
6217 | where encoding of <DATA> is termined by PACKET_FORMAT. | |
6218 | ||
6219 | If USE_LENGTH is 0, then the <LENGTH> field and the preceding comma | |
6220 | are omitted. | |
6221 | ||
6222 | Returns the number of bytes transferred, or 0 (setting errno) for | |
23860348 | 6223 | error. Only transfer a single packet. */ |
c906108c | 6224 | |
a76d924d DJ |
6225 | static int |
6226 | remote_write_bytes_aux (const char *header, CORE_ADDR memaddr, | |
6227 | const gdb_byte *myaddr, int len, | |
6228 | char packet_format, int use_length) | |
c906108c | 6229 | { |
6d820c5c | 6230 | struct remote_state *rs = get_remote_state (); |
cfd77fa1 | 6231 | char *p; |
a76d924d DJ |
6232 | char *plen = NULL; |
6233 | int plenlen = 0; | |
917317f4 JM |
6234 | int todo; |
6235 | int nr_bytes; | |
a257b5bb | 6236 | int payload_size; |
6765f3e5 | 6237 | int payload_length; |
a76d924d DJ |
6238 | int header_length; |
6239 | ||
6240 | if (packet_format != 'X' && packet_format != 'M') | |
6241 | internal_error (__FILE__, __LINE__, | |
9b20d036 | 6242 | _("remote_write_bytes_aux: bad packet format")); |
c906108c | 6243 | |
b2182ed2 DJ |
6244 | if (len <= 0) |
6245 | return 0; | |
6246 | ||
3de11b2e | 6247 | payload_size = get_memory_write_packet_size (); |
2bc416ba | 6248 | |
6d820c5c DJ |
6249 | /* The packet buffer will be large enough for the payload; |
6250 | get_memory_packet_size ensures this. */ | |
a76d924d | 6251 | rs->buf[0] = '\0'; |
c906108c | 6252 | |
a257b5bb | 6253 | /* Compute the size of the actual payload by subtracting out the |
0df8b418 MS |
6254 | packet header and footer overhead: "$M<memaddr>,<len>:...#nn". */ |
6255 | ||
a76d924d DJ |
6256 | payload_size -= strlen ("$,:#NN"); |
6257 | if (!use_length) | |
0df8b418 | 6258 | /* The comma won't be used. */ |
a76d924d DJ |
6259 | payload_size += 1; |
6260 | header_length = strlen (header); | |
6261 | payload_size -= header_length; | |
3de11b2e | 6262 | payload_size -= hexnumlen (memaddr); |
c906108c | 6263 | |
a76d924d | 6264 | /* Construct the packet excluding the data: "<header><memaddr>,<len>:". */ |
917317f4 | 6265 | |
a76d924d DJ |
6266 | strcat (rs->buf, header); |
6267 | p = rs->buf + strlen (header); | |
6268 | ||
6269 | /* Compute a best guess of the number of bytes actually transfered. */ | |
6270 | if (packet_format == 'X') | |
c906108c | 6271 | { |
23860348 | 6272 | /* Best guess at number of bytes that will fit. */ |
a257b5bb | 6273 | todo = min (len, payload_size); |
a76d924d DJ |
6274 | if (use_length) |
6275 | payload_size -= hexnumlen (todo); | |
3de11b2e | 6276 | todo = min (todo, payload_size); |
a76d924d DJ |
6277 | } |
6278 | else | |
6279 | { | |
23860348 | 6280 | /* Num bytes that will fit. */ |
a257b5bb | 6281 | todo = min (len, payload_size / 2); |
a76d924d DJ |
6282 | if (use_length) |
6283 | payload_size -= hexnumlen (todo); | |
3de11b2e | 6284 | todo = min (todo, payload_size / 2); |
917317f4 | 6285 | } |
a76d924d | 6286 | |
3de11b2e NS |
6287 | if (todo <= 0) |
6288 | internal_error (__FILE__, __LINE__, | |
6289 | _("minumum packet size too small to write data")); | |
802188a7 | 6290 | |
6765f3e5 DJ |
6291 | /* If we already need another packet, then try to align the end |
6292 | of this packet to a useful boundary. */ | |
6293 | if (todo > 2 * REMOTE_ALIGN_WRITES && todo < len) | |
6294 | todo = ((memaddr + todo) & ~(REMOTE_ALIGN_WRITES - 1)) - memaddr; | |
6295 | ||
a257b5bb | 6296 | /* Append "<memaddr>". */ |
917317f4 JM |
6297 | memaddr = remote_address_masked (memaddr); |
6298 | p += hexnumstr (p, (ULONGEST) memaddr); | |
a257b5bb | 6299 | |
a76d924d DJ |
6300 | if (use_length) |
6301 | { | |
6302 | /* Append ",". */ | |
6303 | *p++ = ','; | |
802188a7 | 6304 | |
a76d924d DJ |
6305 | /* Append <len>. Retain the location/size of <len>. It may need to |
6306 | be adjusted once the packet body has been created. */ | |
6307 | plen = p; | |
6308 | plenlen = hexnumstr (p, (ULONGEST) todo); | |
6309 | p += plenlen; | |
6310 | } | |
a257b5bb AC |
6311 | |
6312 | /* Append ":". */ | |
917317f4 JM |
6313 | *p++ = ':'; |
6314 | *p = '\0'; | |
802188a7 | 6315 | |
a257b5bb | 6316 | /* Append the packet body. */ |
a76d924d | 6317 | if (packet_format == 'X') |
917317f4 | 6318 | { |
917317f4 JM |
6319 | /* Binary mode. Send target system values byte by byte, in |
6320 | increasing byte addresses. Only escape certain critical | |
6321 | characters. */ | |
6765f3e5 DJ |
6322 | payload_length = remote_escape_output (myaddr, todo, p, &nr_bytes, |
6323 | payload_size); | |
6324 | ||
6325 | /* If not all TODO bytes fit, then we'll need another packet. Make | |
9b7194bc DJ |
6326 | a second try to keep the end of the packet aligned. Don't do |
6327 | this if the packet is tiny. */ | |
6328 | if (nr_bytes < todo && nr_bytes > 2 * REMOTE_ALIGN_WRITES) | |
6765f3e5 DJ |
6329 | { |
6330 | int new_nr_bytes; | |
6331 | ||
6332 | new_nr_bytes = (((memaddr + nr_bytes) & ~(REMOTE_ALIGN_WRITES - 1)) | |
6333 | - memaddr); | |
6334 | if (new_nr_bytes != nr_bytes) | |
6335 | payload_length = remote_escape_output (myaddr, new_nr_bytes, | |
6336 | p, &nr_bytes, | |
6337 | payload_size); | |
6338 | } | |
6339 | ||
6340 | p += payload_length; | |
a76d924d | 6341 | if (use_length && nr_bytes < todo) |
c906108c | 6342 | { |
802188a7 | 6343 | /* Escape chars have filled up the buffer prematurely, |
917317f4 JM |
6344 | and we have actually sent fewer bytes than planned. |
6345 | Fix-up the length field of the packet. Use the same | |
6346 | number of characters as before. */ | |
917317f4 JM |
6347 | plen += hexnumnstr (plen, (ULONGEST) nr_bytes, plenlen); |
6348 | *plen = ':'; /* overwrite \0 from hexnumnstr() */ | |
c906108c | 6349 | } |
a76d924d DJ |
6350 | } |
6351 | else | |
6352 | { | |
917317f4 JM |
6353 | /* Normal mode: Send target system values byte by byte, in |
6354 | increasing byte addresses. Each byte is encoded as a two hex | |
6355 | value. */ | |
2644f393 | 6356 | nr_bytes = bin2hex (myaddr, p, todo); |
aa6c0017 | 6357 | p += 2 * nr_bytes; |
c906108c | 6358 | } |
802188a7 | 6359 | |
2e9f7625 | 6360 | putpkt_binary (rs->buf, (int) (p - rs->buf)); |
6d820c5c | 6361 | getpkt (&rs->buf, &rs->buf_size, 0); |
802188a7 | 6362 | |
2e9f7625 | 6363 | if (rs->buf[0] == 'E') |
917317f4 JM |
6364 | { |
6365 | /* There is no correspondance between what the remote protocol | |
6366 | uses for errors and errno codes. We would like a cleaner way | |
6367 | of representing errors (big enough to include errno codes, | |
6368 | bfd_error codes, and others). But for now just return EIO. */ | |
6369 | errno = EIO; | |
6370 | return 0; | |
6371 | } | |
802188a7 | 6372 | |
23860348 MS |
6373 | /* Return NR_BYTES, not TODO, in case escape chars caused us to send |
6374 | fewer bytes than we'd planned. */ | |
917317f4 | 6375 | return nr_bytes; |
c906108c SS |
6376 | } |
6377 | ||
a76d924d DJ |
6378 | /* Write memory data directly to the remote machine. |
6379 | This does not inform the data cache; the data cache uses this. | |
6380 | MEMADDR is the address in the remote memory space. | |
6381 | MYADDR is the address of the buffer in our space. | |
6382 | LEN is the number of bytes. | |
6383 | ||
6384 | Returns number of bytes transferred, or 0 (setting errno) for | |
6385 | error. Only transfer a single packet. */ | |
6386 | ||
f7605bc2 | 6387 | static int |
a76d924d DJ |
6388 | remote_write_bytes (CORE_ADDR memaddr, const gdb_byte *myaddr, int len) |
6389 | { | |
6390 | char *packet_format = 0; | |
6391 | ||
6392 | /* Check whether the target supports binary download. */ | |
6393 | check_binary_download (memaddr); | |
6394 | ||
6395 | switch (remote_protocol_packets[PACKET_X].support) | |
6396 | { | |
6397 | case PACKET_ENABLE: | |
6398 | packet_format = "X"; | |
6399 | break; | |
6400 | case PACKET_DISABLE: | |
6401 | packet_format = "M"; | |
6402 | break; | |
6403 | case PACKET_SUPPORT_UNKNOWN: | |
6404 | internal_error (__FILE__, __LINE__, | |
6405 | _("remote_write_bytes: bad internal state")); | |
6406 | default: | |
6407 | internal_error (__FILE__, __LINE__, _("bad switch")); | |
6408 | } | |
6409 | ||
6410 | return remote_write_bytes_aux (packet_format, | |
6411 | memaddr, myaddr, len, packet_format[0], 1); | |
6412 | } | |
6413 | ||
c906108c SS |
6414 | /* Read memory data directly from the remote machine. |
6415 | This does not use the data cache; the data cache uses this. | |
6416 | MEMADDR is the address in the remote memory space. | |
6417 | MYADDR is the address of the buffer in our space. | |
6418 | LEN is the number of bytes. | |
6419 | ||
6420 | Returns number of bytes transferred, or 0 for error. */ | |
6421 | ||
f7605bc2 | 6422 | static int |
cfd77fa1 | 6423 | remote_read_bytes (CORE_ADDR memaddr, gdb_byte *myaddr, int len) |
c906108c | 6424 | { |
6d820c5c | 6425 | struct remote_state *rs = get_remote_state (); |
23860348 | 6426 | int max_buf_size; /* Max size of packet output buffer. */ |
f7605bc2 PA |
6427 | char *p; |
6428 | int todo; | |
6429 | int i; | |
c906108c | 6430 | |
b2182ed2 DJ |
6431 | if (len <= 0) |
6432 | return 0; | |
6433 | ||
11cf8741 | 6434 | max_buf_size = get_memory_read_packet_size (); |
6d820c5c DJ |
6435 | /* The packet buffer will be large enough for the payload; |
6436 | get_memory_packet_size ensures this. */ | |
c906108c | 6437 | |
f7605bc2 PA |
6438 | /* Number if bytes that will fit. */ |
6439 | todo = min (len, max_buf_size / 2); | |
c906108c | 6440 | |
f7605bc2 PA |
6441 | /* Construct "m"<memaddr>","<len>". */ |
6442 | memaddr = remote_address_masked (memaddr); | |
6443 | p = rs->buf; | |
6444 | *p++ = 'm'; | |
6445 | p += hexnumstr (p, (ULONGEST) memaddr); | |
6446 | *p++ = ','; | |
6447 | p += hexnumstr (p, (ULONGEST) todo); | |
6448 | *p = '\0'; | |
6449 | putpkt (rs->buf); | |
6450 | getpkt (&rs->buf, &rs->buf_size, 0); | |
6451 | if (rs->buf[0] == 'E' | |
6452 | && isxdigit (rs->buf[1]) && isxdigit (rs->buf[2]) | |
6453 | && rs->buf[3] == '\0') | |
6454 | { | |
6455 | /* There is no correspondance between what the remote protocol | |
6456 | uses for errors and errno codes. We would like a cleaner way | |
6457 | of representing errors (big enough to include errno codes, | |
6458 | bfd_error codes, and others). But for now just return | |
6459 | EIO. */ | |
6460 | errno = EIO; | |
6461 | return 0; | |
c906108c | 6462 | } |
f7605bc2 PA |
6463 | /* Reply describes memory byte by byte, each byte encoded as two hex |
6464 | characters. */ | |
6465 | p = rs->buf; | |
6466 | i = hex2bin (p, myaddr, todo); | |
6467 | /* Return what we have. Let higher layers handle partial reads. */ | |
6468 | return i; | |
c906108c | 6469 | } |
74531fed PA |
6470 | \f |
6471 | ||
6472 | /* Remote notification handler. */ | |
6473 | ||
6474 | static void | |
6475 | handle_notification (char *buf, size_t length) | |
6476 | { | |
6477 | if (strncmp (buf, "Stop:", 5) == 0) | |
6478 | { | |
6479 | if (pending_stop_reply) | |
0723dbf5 PA |
6480 | { |
6481 | /* We've already parsed the in-flight stop-reply, but the | |
6482 | stub for some reason thought we didn't, possibly due to | |
6483 | timeout on its side. Just ignore it. */ | |
6484 | if (remote_debug) | |
6485 | fprintf_unfiltered (gdb_stdlog, "ignoring resent notification\n"); | |
6486 | } | |
74531fed PA |
6487 | else |
6488 | { | |
6489 | struct cleanup *old_chain; | |
6490 | struct stop_reply *reply = stop_reply_xmalloc (); | |
a744cf53 | 6491 | |
74531fed PA |
6492 | old_chain = make_cleanup (do_stop_reply_xfree, reply); |
6493 | ||
6494 | remote_parse_stop_reply (buf + 5, reply); | |
6495 | ||
6496 | discard_cleanups (old_chain); | |
6497 | ||
6498 | /* Be careful to only set it after parsing, since an error | |
6499 | may be thrown then. */ | |
6500 | pending_stop_reply = reply; | |
6501 | ||
6502 | /* Notify the event loop there's a stop reply to acknowledge | |
6503 | and that there may be more events to fetch. */ | |
6504 | mark_async_event_handler (remote_async_get_pending_events_token); | |
0723dbf5 PA |
6505 | |
6506 | if (remote_debug) | |
6507 | fprintf_unfiltered (gdb_stdlog, "stop notification captured\n"); | |
74531fed PA |
6508 | } |
6509 | } | |
6510 | else | |
6511 | /* We ignore notifications we don't recognize, for compatibility | |
6512 | with newer stubs. */ | |
6513 | ; | |
6514 | } | |
6515 | ||
c906108c SS |
6516 | \f |
6517 | /* Read or write LEN bytes from inferior memory at MEMADDR, | |
23860348 MS |
6518 | transferring to or from debugger address BUFFER. Write to inferior |
6519 | if SHOULD_WRITE is nonzero. Returns length of data written or | |
6520 | read; 0 for error. TARGET is unused. */ | |
392a587b | 6521 | |
c906108c | 6522 | static int |
961cb7b5 | 6523 | remote_xfer_memory (CORE_ADDR mem_addr, gdb_byte *buffer, int mem_len, |
0a65a603 | 6524 | int should_write, struct mem_attrib *attrib, |
29e57380 | 6525 | struct target_ops *target) |
c906108c | 6526 | { |
4930751a C |
6527 | int res; |
6528 | ||
e6e4e701 | 6529 | set_remote_traceframe (); |
82f73884 PA |
6530 | set_general_thread (inferior_ptid); |
6531 | ||
4930751a | 6532 | if (should_write) |
b2182ed2 | 6533 | res = remote_write_bytes (mem_addr, buffer, mem_len); |
4930751a | 6534 | else |
b2182ed2 | 6535 | res = remote_read_bytes (mem_addr, buffer, mem_len); |
4930751a C |
6536 | |
6537 | return res; | |
c906108c SS |
6538 | } |
6539 | ||
a76d924d DJ |
6540 | /* Sends a packet with content determined by the printf format string |
6541 | FORMAT and the remaining arguments, then gets the reply. Returns | |
6542 | whether the packet was a success, a failure, or unknown. */ | |
6543 | ||
2c0b251b | 6544 | static enum packet_result |
a76d924d DJ |
6545 | remote_send_printf (const char *format, ...) |
6546 | { | |
6547 | struct remote_state *rs = get_remote_state (); | |
6548 | int max_size = get_remote_packet_size (); | |
a76d924d | 6549 | va_list ap; |
a744cf53 | 6550 | |
a76d924d DJ |
6551 | va_start (ap, format); |
6552 | ||
6553 | rs->buf[0] = '\0'; | |
6554 | if (vsnprintf (rs->buf, max_size, format, ap) >= max_size) | |
9b20d036 | 6555 | internal_error (__FILE__, __LINE__, _("Too long remote packet.")); |
a76d924d DJ |
6556 | |
6557 | if (putpkt (rs->buf) < 0) | |
6558 | error (_("Communication problem with target.")); | |
6559 | ||
6560 | rs->buf[0] = '\0'; | |
6561 | getpkt (&rs->buf, &rs->buf_size, 0); | |
6562 | ||
6563 | return packet_check_result (rs->buf); | |
6564 | } | |
6565 | ||
6566 | static void | |
6567 | restore_remote_timeout (void *p) | |
6568 | { | |
6569 | int value = *(int *)p; | |
a744cf53 | 6570 | |
a76d924d DJ |
6571 | remote_timeout = value; |
6572 | } | |
6573 | ||
6574 | /* Flash writing can take quite some time. We'll set | |
6575 | effectively infinite timeout for flash operations. | |
6576 | In future, we'll need to decide on a better approach. */ | |
6577 | static const int remote_flash_timeout = 1000; | |
6578 | ||
6579 | static void | |
6580 | remote_flash_erase (struct target_ops *ops, | |
6581 | ULONGEST address, LONGEST length) | |
6582 | { | |
5af949e3 | 6583 | int addr_size = gdbarch_addr_bit (target_gdbarch) / 8; |
a76d924d DJ |
6584 | int saved_remote_timeout = remote_timeout; |
6585 | enum packet_result ret; | |
a76d924d DJ |
6586 | struct cleanup *back_to = make_cleanup (restore_remote_timeout, |
6587 | &saved_remote_timeout); | |
a744cf53 | 6588 | |
a76d924d DJ |
6589 | remote_timeout = remote_flash_timeout; |
6590 | ||
6591 | ret = remote_send_printf ("vFlashErase:%s,%s", | |
5af949e3 | 6592 | phex (address, addr_size), |
a76d924d DJ |
6593 | phex (length, 4)); |
6594 | switch (ret) | |
6595 | { | |
6596 | case PACKET_UNKNOWN: | |
6597 | error (_("Remote target does not support flash erase")); | |
6598 | case PACKET_ERROR: | |
6599 | error (_("Error erasing flash with vFlashErase packet")); | |
6600 | default: | |
6601 | break; | |
6602 | } | |
6603 | ||
6604 | do_cleanups (back_to); | |
6605 | } | |
6606 | ||
6607 | static LONGEST | |
6608 | remote_flash_write (struct target_ops *ops, | |
6609 | ULONGEST address, LONGEST length, | |
6610 | const gdb_byte *data) | |
6611 | { | |
6612 | int saved_remote_timeout = remote_timeout; | |
6613 | int ret; | |
6614 | struct cleanup *back_to = make_cleanup (restore_remote_timeout, | |
6615 | &saved_remote_timeout); | |
6616 | ||
6617 | remote_timeout = remote_flash_timeout; | |
6618 | ret = remote_write_bytes_aux ("vFlashWrite:", address, data, length, 'X', 0); | |
6619 | do_cleanups (back_to); | |
6620 | ||
6621 | return ret; | |
6622 | } | |
6623 | ||
6624 | static void | |
6625 | remote_flash_done (struct target_ops *ops) | |
6626 | { | |
6627 | int saved_remote_timeout = remote_timeout; | |
6628 | int ret; | |
6629 | struct cleanup *back_to = make_cleanup (restore_remote_timeout, | |
6630 | &saved_remote_timeout); | |
6631 | ||
6632 | remote_timeout = remote_flash_timeout; | |
6633 | ret = remote_send_printf ("vFlashDone"); | |
6634 | do_cleanups (back_to); | |
6635 | ||
6636 | switch (ret) | |
6637 | { | |
6638 | case PACKET_UNKNOWN: | |
6639 | error (_("Remote target does not support vFlashDone")); | |
6640 | case PACKET_ERROR: | |
6641 | error (_("Error finishing flash operation")); | |
6642 | default: | |
6643 | break; | |
6644 | } | |
6645 | } | |
6646 | ||
c906108c | 6647 | static void |
fba45db2 | 6648 | remote_files_info (struct target_ops *ignore) |
c906108c SS |
6649 | { |
6650 | puts_filtered ("Debugging a target over a serial line.\n"); | |
6651 | } | |
6652 | \f | |
6653 | /* Stuff for dealing with the packets which are part of this protocol. | |
6654 | See comment at top of file for details. */ | |
6655 | ||
0876f84a | 6656 | /* Read a single character from the remote end. */ |
c906108c SS |
6657 | |
6658 | static int | |
fba45db2 | 6659 | readchar (int timeout) |
c906108c SS |
6660 | { |
6661 | int ch; | |
6662 | ||
2cd58942 | 6663 | ch = serial_readchar (remote_desc, timeout); |
c906108c | 6664 | |
2acceee2 | 6665 | if (ch >= 0) |
0876f84a | 6666 | return ch; |
2acceee2 JM |
6667 | |
6668 | switch ((enum serial_rc) ch) | |
c906108c SS |
6669 | { |
6670 | case SERIAL_EOF: | |
ce5ce7ed | 6671 | pop_target (); |
8a3fe4f8 | 6672 | error (_("Remote connection closed")); |
2acceee2 | 6673 | /* no return */ |
c906108c | 6674 | case SERIAL_ERROR: |
4ac8c4da | 6675 | pop_target (); |
3e43a32a MS |
6676 | perror_with_name (_("Remote communication error. " |
6677 | "Target disconnected.")); | |
2acceee2 | 6678 | /* no return */ |
c906108c | 6679 | case SERIAL_TIMEOUT: |
2acceee2 | 6680 | break; |
c906108c | 6681 | } |
2acceee2 | 6682 | return ch; |
c906108c SS |
6683 | } |
6684 | ||
6d820c5c DJ |
6685 | /* Send the command in *BUF to the remote machine, and read the reply |
6686 | into *BUF. Report an error if we get an error reply. Resize | |
6687 | *BUF using xrealloc if necessary to hold the result, and update | |
6688 | *SIZEOF_BUF. */ | |
c906108c SS |
6689 | |
6690 | static void | |
6d820c5c DJ |
6691 | remote_send (char **buf, |
6692 | long *sizeof_buf) | |
c906108c | 6693 | { |
6d820c5c | 6694 | putpkt (*buf); |
c2d11a7d | 6695 | getpkt (buf, sizeof_buf, 0); |
c906108c | 6696 | |
6d820c5c DJ |
6697 | if ((*buf)[0] == 'E') |
6698 | error (_("Remote failure reply: %s"), *buf); | |
c906108c SS |
6699 | } |
6700 | ||
6e5abd65 PA |
6701 | /* Return a pointer to an xmalloc'ed string representing an escaped |
6702 | version of BUF, of len N. E.g. \n is converted to \\n, \t to \\t, | |
6703 | etc. The caller is responsible for releasing the returned | |
6704 | memory. */ | |
6705 | ||
6706 | static char * | |
6707 | escape_buffer (const char *buf, int n) | |
6708 | { | |
6709 | struct cleanup *old_chain; | |
6710 | struct ui_file *stb; | |
6711 | char *str; | |
6e5abd65 PA |
6712 | |
6713 | stb = mem_fileopen (); | |
6714 | old_chain = make_cleanup_ui_file_delete (stb); | |
6715 | ||
6716 | fputstrn_unfiltered (buf, n, 0, stb); | |
759ef836 | 6717 | str = ui_file_xstrdup (stb, NULL); |
6e5abd65 PA |
6718 | do_cleanups (old_chain); |
6719 | return str; | |
6720 | } | |
6721 | ||
c906108c SS |
6722 | /* Display a null-terminated packet on stdout, for debugging, using C |
6723 | string notation. */ | |
6724 | ||
6725 | static void | |
fba45db2 | 6726 | print_packet (char *buf) |
c906108c SS |
6727 | { |
6728 | puts_filtered ("\""); | |
43e526b9 | 6729 | fputstr_filtered (buf, '"', gdb_stdout); |
c906108c SS |
6730 | puts_filtered ("\""); |
6731 | } | |
6732 | ||
6733 | int | |
fba45db2 | 6734 | putpkt (char *buf) |
c906108c SS |
6735 | { |
6736 | return putpkt_binary (buf, strlen (buf)); | |
6737 | } | |
6738 | ||
6739 | /* Send a packet to the remote machine, with error checking. The data | |
23860348 | 6740 | of the packet is in BUF. The string in BUF can be at most |
ea9c271d | 6741 | get_remote_packet_size () - 5 to account for the $, # and checksum, |
23860348 MS |
6742 | and for a possible /0 if we are debugging (remote_debug) and want |
6743 | to print the sent packet as a string. */ | |
c906108c SS |
6744 | |
6745 | static int | |
fba45db2 | 6746 | putpkt_binary (char *buf, int cnt) |
c906108c | 6747 | { |
2d717e4f | 6748 | struct remote_state *rs = get_remote_state (); |
c906108c SS |
6749 | int i; |
6750 | unsigned char csum = 0; | |
11cf8741 | 6751 | char *buf2 = alloca (cnt + 6); |
085dd6e6 | 6752 | |
c906108c SS |
6753 | int ch; |
6754 | int tcount = 0; | |
6755 | char *p; | |
6756 | ||
e24a49d8 PA |
6757 | /* Catch cases like trying to read memory or listing threads while |
6758 | we're waiting for a stop reply. The remote server wouldn't be | |
6759 | ready to handle this request, so we'd hang and timeout. We don't | |
6760 | have to worry about this in synchronous mode, because in that | |
6761 | case it's not possible to issue a command while the target is | |
74531fed PA |
6762 | running. This is not a problem in non-stop mode, because in that |
6763 | case, the stub is always ready to process serial input. */ | |
6764 | if (!non_stop && target_can_async_p () && rs->waiting_for_stop_reply) | |
e24a49d8 PA |
6765 | error (_("Cannot execute this command while the target is running.")); |
6766 | ||
2d717e4f DJ |
6767 | /* We're sending out a new packet. Make sure we don't look at a |
6768 | stale cached response. */ | |
6769 | rs->cached_wait_status = 0; | |
6770 | ||
c906108c SS |
6771 | /* Copy the packet into buffer BUF2, encapsulating it |
6772 | and giving it a checksum. */ | |
6773 | ||
c906108c SS |
6774 | p = buf2; |
6775 | *p++ = '$'; | |
6776 | ||
6777 | for (i = 0; i < cnt; i++) | |
6778 | { | |
6779 | csum += buf[i]; | |
6780 | *p++ = buf[i]; | |
6781 | } | |
6782 | *p++ = '#'; | |
6783 | *p++ = tohex ((csum >> 4) & 0xf); | |
6784 | *p++ = tohex (csum & 0xf); | |
6785 | ||
6786 | /* Send it over and over until we get a positive ack. */ | |
6787 | ||
6788 | while (1) | |
6789 | { | |
6790 | int started_error_output = 0; | |
6791 | ||
6792 | if (remote_debug) | |
6793 | { | |
6e5abd65 PA |
6794 | struct cleanup *old_chain; |
6795 | char *str; | |
6796 | ||
c906108c | 6797 | *p = '\0'; |
6e5abd65 PA |
6798 | str = escape_buffer (buf2, p - buf2); |
6799 | old_chain = make_cleanup (xfree, str); | |
6800 | fprintf_unfiltered (gdb_stdlog, "Sending packet: %s...", str); | |
0f71a2f6 | 6801 | gdb_flush (gdb_stdlog); |
6e5abd65 | 6802 | do_cleanups (old_chain); |
c906108c | 6803 | } |
2cd58942 | 6804 | if (serial_write (remote_desc, buf2, p - buf2)) |
e2e0b3e5 | 6805 | perror_with_name (_("putpkt: write failed")); |
c906108c | 6806 | |
a6f3e723 SL |
6807 | /* If this is a no acks version of the remote protocol, send the |
6808 | packet and move on. */ | |
6809 | if (rs->noack_mode) | |
6810 | break; | |
6811 | ||
74531fed PA |
6812 | /* Read until either a timeout occurs (-2) or '+' is read. |
6813 | Handle any notification that arrives in the mean time. */ | |
c906108c SS |
6814 | while (1) |
6815 | { | |
6816 | ch = readchar (remote_timeout); | |
6817 | ||
c5aa993b | 6818 | if (remote_debug) |
c906108c SS |
6819 | { |
6820 | switch (ch) | |
6821 | { | |
6822 | case '+': | |
1216fa2c | 6823 | case '-': |
c906108c SS |
6824 | case SERIAL_TIMEOUT: |
6825 | case '$': | |
74531fed | 6826 | case '%': |
c906108c SS |
6827 | if (started_error_output) |
6828 | { | |
6829 | putchar_unfiltered ('\n'); | |
6830 | started_error_output = 0; | |
6831 | } | |
6832 | } | |
6833 | } | |
6834 | ||
6835 | switch (ch) | |
6836 | { | |
6837 | case '+': | |
6838 | if (remote_debug) | |
0f71a2f6 | 6839 | fprintf_unfiltered (gdb_stdlog, "Ack\n"); |
c906108c | 6840 | return 1; |
1216fa2c AC |
6841 | case '-': |
6842 | if (remote_debug) | |
6843 | fprintf_unfiltered (gdb_stdlog, "Nak\n"); | |
a17d146e | 6844 | /* FALLTHROUGH */ |
c906108c | 6845 | case SERIAL_TIMEOUT: |
c5aa993b | 6846 | tcount++; |
c906108c SS |
6847 | if (tcount > 3) |
6848 | return 0; | |
23860348 | 6849 | break; /* Retransmit buffer. */ |
c906108c SS |
6850 | case '$': |
6851 | { | |
40e3f985 | 6852 | if (remote_debug) |
2bc416ba | 6853 | fprintf_unfiltered (gdb_stdlog, |
23860348 | 6854 | "Packet instead of Ack, ignoring it\n"); |
d6f7abdf AC |
6855 | /* It's probably an old response sent because an ACK |
6856 | was lost. Gobble up the packet and ack it so it | |
6857 | doesn't get retransmitted when we resend this | |
6858 | packet. */ | |
6d820c5c | 6859 | skip_frame (); |
d6f7abdf | 6860 | serial_write (remote_desc, "+", 1); |
23860348 | 6861 | continue; /* Now, go look for +. */ |
c906108c | 6862 | } |
74531fed PA |
6863 | |
6864 | case '%': | |
6865 | { | |
6866 | int val; | |
6867 | ||
6868 | /* If we got a notification, handle it, and go back to looking | |
6869 | for an ack. */ | |
6870 | /* We've found the start of a notification. Now | |
6871 | collect the data. */ | |
6872 | val = read_frame (&rs->buf, &rs->buf_size); | |
6873 | if (val >= 0) | |
6874 | { | |
6875 | if (remote_debug) | |
6876 | { | |
6e5abd65 PA |
6877 | struct cleanup *old_chain; |
6878 | char *str; | |
6879 | ||
6880 | str = escape_buffer (rs->buf, val); | |
6881 | old_chain = make_cleanup (xfree, str); | |
6882 | fprintf_unfiltered (gdb_stdlog, | |
6883 | " Notification received: %s\n", | |
6884 | str); | |
6885 | do_cleanups (old_chain); | |
74531fed PA |
6886 | } |
6887 | handle_notification (rs->buf, val); | |
6888 | /* We're in sync now, rewait for the ack. */ | |
6889 | tcount = 0; | |
6890 | } | |
6891 | else | |
6892 | { | |
6893 | if (remote_debug) | |
6894 | { | |
6895 | if (!started_error_output) | |
6896 | { | |
6897 | started_error_output = 1; | |
6898 | fprintf_unfiltered (gdb_stdlog, "putpkt: Junk: "); | |
6899 | } | |
6900 | fputc_unfiltered (ch & 0177, gdb_stdlog); | |
6901 | fprintf_unfiltered (gdb_stdlog, "%s", rs->buf); | |
6902 | } | |
6903 | } | |
6904 | continue; | |
6905 | } | |
6906 | /* fall-through */ | |
c906108c SS |
6907 | default: |
6908 | if (remote_debug) | |
6909 | { | |
6910 | if (!started_error_output) | |
6911 | { | |
6912 | started_error_output = 1; | |
0f71a2f6 | 6913 | fprintf_unfiltered (gdb_stdlog, "putpkt: Junk: "); |
c906108c | 6914 | } |
0f71a2f6 | 6915 | fputc_unfiltered (ch & 0177, gdb_stdlog); |
c906108c SS |
6916 | } |
6917 | continue; | |
6918 | } | |
23860348 | 6919 | break; /* Here to retransmit. */ |
c906108c SS |
6920 | } |
6921 | ||
6922 | #if 0 | |
6923 | /* This is wrong. If doing a long backtrace, the user should be | |
c5aa993b JM |
6924 | able to get out next time we call QUIT, without anything as |
6925 | violent as interrupt_query. If we want to provide a way out of | |
6926 | here without getting to the next QUIT, it should be based on | |
6927 | hitting ^C twice as in remote_wait. */ | |
c906108c SS |
6928 | if (quit_flag) |
6929 | { | |
6930 | quit_flag = 0; | |
6931 | interrupt_query (); | |
6932 | } | |
6933 | #endif | |
6934 | } | |
a6f3e723 | 6935 | return 0; |
c906108c SS |
6936 | } |
6937 | ||
6d820c5c DJ |
6938 | /* Come here after finding the start of a frame when we expected an |
6939 | ack. Do our best to discard the rest of this packet. */ | |
6940 | ||
6941 | static void | |
6942 | skip_frame (void) | |
6943 | { | |
6944 | int c; | |
6945 | ||
6946 | while (1) | |
6947 | { | |
6948 | c = readchar (remote_timeout); | |
6949 | switch (c) | |
6950 | { | |
6951 | case SERIAL_TIMEOUT: | |
6952 | /* Nothing we can do. */ | |
6953 | return; | |
6954 | case '#': | |
6955 | /* Discard the two bytes of checksum and stop. */ | |
6956 | c = readchar (remote_timeout); | |
6957 | if (c >= 0) | |
6958 | c = readchar (remote_timeout); | |
6959 | ||
6960 | return; | |
6961 | case '*': /* Run length encoding. */ | |
6962 | /* Discard the repeat count. */ | |
6963 | c = readchar (remote_timeout); | |
6964 | if (c < 0) | |
6965 | return; | |
6966 | break; | |
6967 | default: | |
6968 | /* A regular character. */ | |
6969 | break; | |
6970 | } | |
6971 | } | |
6972 | } | |
6973 | ||
c906108c | 6974 | /* Come here after finding the start of the frame. Collect the rest |
6d820c5c DJ |
6975 | into *BUF, verifying the checksum, length, and handling run-length |
6976 | compression. NUL terminate the buffer. If there is not enough room, | |
6977 | expand *BUF using xrealloc. | |
c906108c | 6978 | |
c2d11a7d JM |
6979 | Returns -1 on error, number of characters in buffer (ignoring the |
6980 | trailing NULL) on success. (could be extended to return one of the | |
23860348 | 6981 | SERIAL status indications). */ |
c2d11a7d JM |
6982 | |
6983 | static long | |
6d820c5c DJ |
6984 | read_frame (char **buf_p, |
6985 | long *sizeof_buf) | |
c906108c SS |
6986 | { |
6987 | unsigned char csum; | |
c2d11a7d | 6988 | long bc; |
c906108c | 6989 | int c; |
6d820c5c | 6990 | char *buf = *buf_p; |
a6f3e723 | 6991 | struct remote_state *rs = get_remote_state (); |
c906108c SS |
6992 | |
6993 | csum = 0; | |
c2d11a7d | 6994 | bc = 0; |
c906108c SS |
6995 | |
6996 | while (1) | |
6997 | { | |
6998 | c = readchar (remote_timeout); | |
c906108c SS |
6999 | switch (c) |
7000 | { | |
7001 | case SERIAL_TIMEOUT: | |
7002 | if (remote_debug) | |
0f71a2f6 | 7003 | fputs_filtered ("Timeout in mid-packet, retrying\n", gdb_stdlog); |
c2d11a7d | 7004 | return -1; |
c906108c SS |
7005 | case '$': |
7006 | if (remote_debug) | |
0f71a2f6 JM |
7007 | fputs_filtered ("Saw new packet start in middle of old one\n", |
7008 | gdb_stdlog); | |
23860348 | 7009 | return -1; /* Start a new packet, count retries. */ |
c906108c SS |
7010 | case '#': |
7011 | { | |
7012 | unsigned char pktcsum; | |
e1b09194 AC |
7013 | int check_0 = 0; |
7014 | int check_1 = 0; | |
c906108c | 7015 | |
c2d11a7d | 7016 | buf[bc] = '\0'; |
c906108c | 7017 | |
e1b09194 AC |
7018 | check_0 = readchar (remote_timeout); |
7019 | if (check_0 >= 0) | |
7020 | check_1 = readchar (remote_timeout); | |
802188a7 | 7021 | |
e1b09194 AC |
7022 | if (check_0 == SERIAL_TIMEOUT || check_1 == SERIAL_TIMEOUT) |
7023 | { | |
7024 | if (remote_debug) | |
2bc416ba | 7025 | fputs_filtered ("Timeout in checksum, retrying\n", |
23860348 | 7026 | gdb_stdlog); |
e1b09194 AC |
7027 | return -1; |
7028 | } | |
7029 | else if (check_0 < 0 || check_1 < 0) | |
40e3f985 FN |
7030 | { |
7031 | if (remote_debug) | |
2bc416ba | 7032 | fputs_filtered ("Communication error in checksum\n", |
23860348 | 7033 | gdb_stdlog); |
40e3f985 FN |
7034 | return -1; |
7035 | } | |
c906108c | 7036 | |
a6f3e723 SL |
7037 | /* Don't recompute the checksum; with no ack packets we |
7038 | don't have any way to indicate a packet retransmission | |
7039 | is necessary. */ | |
7040 | if (rs->noack_mode) | |
7041 | return bc; | |
7042 | ||
e1b09194 | 7043 | pktcsum = (fromhex (check_0) << 4) | fromhex (check_1); |
c906108c | 7044 | if (csum == pktcsum) |
c2d11a7d | 7045 | return bc; |
c906108c | 7046 | |
c5aa993b | 7047 | if (remote_debug) |
c906108c | 7048 | { |
6e5abd65 PA |
7049 | struct cleanup *old_chain; |
7050 | char *str; | |
7051 | ||
7052 | str = escape_buffer (buf, bc); | |
7053 | old_chain = make_cleanup (xfree, str); | |
7054 | fprintf_unfiltered (gdb_stdlog, | |
3e43a32a MS |
7055 | "Bad checksum, sentsum=0x%x, " |
7056 | "csum=0x%x, buf=%s\n", | |
6e5abd65 PA |
7057 | pktcsum, csum, str); |
7058 | do_cleanups (old_chain); | |
c906108c | 7059 | } |
c2d11a7d | 7060 | /* Number of characters in buffer ignoring trailing |
23860348 | 7061 | NULL. */ |
c2d11a7d | 7062 | return -1; |
c906108c | 7063 | } |
23860348 | 7064 | case '*': /* Run length encoding. */ |
c2c6d25f JM |
7065 | { |
7066 | int repeat; | |
c906108c | 7067 | |
a744cf53 | 7068 | csum += c; |
b4501125 AC |
7069 | c = readchar (remote_timeout); |
7070 | csum += c; | |
23860348 | 7071 | repeat = c - ' ' + 3; /* Compute repeat count. */ |
c906108c | 7072 | |
23860348 | 7073 | /* The character before ``*'' is repeated. */ |
c2d11a7d | 7074 | |
6d820c5c | 7075 | if (repeat > 0 && repeat <= 255 && bc > 0) |
c2c6d25f | 7076 | { |
6d820c5c DJ |
7077 | if (bc + repeat - 1 >= *sizeof_buf - 1) |
7078 | { | |
7079 | /* Make some more room in the buffer. */ | |
7080 | *sizeof_buf += repeat; | |
7081 | *buf_p = xrealloc (*buf_p, *sizeof_buf); | |
7082 | buf = *buf_p; | |
7083 | } | |
7084 | ||
c2d11a7d JM |
7085 | memset (&buf[bc], buf[bc - 1], repeat); |
7086 | bc += repeat; | |
c2c6d25f JM |
7087 | continue; |
7088 | } | |
7089 | ||
c2d11a7d | 7090 | buf[bc] = '\0'; |
6d820c5c | 7091 | printf_filtered (_("Invalid run length encoding: %s\n"), buf); |
c2d11a7d | 7092 | return -1; |
c2c6d25f | 7093 | } |
c906108c | 7094 | default: |
6d820c5c | 7095 | if (bc >= *sizeof_buf - 1) |
c906108c | 7096 | { |
6d820c5c DJ |
7097 | /* Make some more room in the buffer. */ |
7098 | *sizeof_buf *= 2; | |
7099 | *buf_p = xrealloc (*buf_p, *sizeof_buf); | |
7100 | buf = *buf_p; | |
c906108c SS |
7101 | } |
7102 | ||
6d820c5c DJ |
7103 | buf[bc++] = c; |
7104 | csum += c; | |
7105 | continue; | |
c906108c SS |
7106 | } |
7107 | } | |
7108 | } | |
7109 | ||
7110 | /* Read a packet from the remote machine, with error checking, and | |
6d820c5c DJ |
7111 | store it in *BUF. Resize *BUF using xrealloc if necessary to hold |
7112 | the result, and update *SIZEOF_BUF. If FOREVER, wait forever | |
7113 | rather than timing out; this is used (in synchronous mode) to wait | |
7114 | for a target that is is executing user code to stop. */ | |
d9fcf2fb JM |
7115 | /* FIXME: ezannoni 2000-02-01 this wrapper is necessary so that we |
7116 | don't have to change all the calls to getpkt to deal with the | |
7117 | return value, because at the moment I don't know what the right | |
23860348 | 7118 | thing to do it for those. */ |
c906108c | 7119 | void |
6d820c5c DJ |
7120 | getpkt (char **buf, |
7121 | long *sizeof_buf, | |
c2d11a7d | 7122 | int forever) |
d9fcf2fb JM |
7123 | { |
7124 | int timed_out; | |
7125 | ||
7126 | timed_out = getpkt_sane (buf, sizeof_buf, forever); | |
7127 | } | |
7128 | ||
7129 | ||
7130 | /* Read a packet from the remote machine, with error checking, and | |
6d820c5c DJ |
7131 | store it in *BUF. Resize *BUF using xrealloc if necessary to hold |
7132 | the result, and update *SIZEOF_BUF. If FOREVER, wait forever | |
7133 | rather than timing out; this is used (in synchronous mode) to wait | |
7134 | for a target that is is executing user code to stop. If FOREVER == | |
7135 | 0, this function is allowed to time out gracefully and return an | |
74531fed PA |
7136 | indication of this to the caller. Otherwise return the number of |
7137 | bytes read. If EXPECTING_NOTIF, consider receiving a notification | |
7138 | enough reason to return to the caller. */ | |
7139 | ||
3172dc30 | 7140 | static int |
74531fed PA |
7141 | getpkt_or_notif_sane_1 (char **buf, long *sizeof_buf, int forever, |
7142 | int expecting_notif) | |
c906108c | 7143 | { |
2d717e4f | 7144 | struct remote_state *rs = get_remote_state (); |
c906108c SS |
7145 | int c; |
7146 | int tries; | |
7147 | int timeout; | |
df4b58fe | 7148 | int val = -1; |
c906108c | 7149 | |
2d717e4f DJ |
7150 | /* We're reading a new response. Make sure we don't look at a |
7151 | previously cached response. */ | |
7152 | rs->cached_wait_status = 0; | |
7153 | ||
6d820c5c | 7154 | strcpy (*buf, "timeout"); |
c906108c SS |
7155 | |
7156 | if (forever) | |
74531fed PA |
7157 | timeout = watchdog > 0 ? watchdog : -1; |
7158 | else if (expecting_notif) | |
7159 | timeout = 0; /* There should already be a char in the buffer. If | |
7160 | not, bail out. */ | |
c906108c SS |
7161 | else |
7162 | timeout = remote_timeout; | |
7163 | ||
7164 | #define MAX_TRIES 3 | |
7165 | ||
74531fed PA |
7166 | /* Process any number of notifications, and then return when |
7167 | we get a packet. */ | |
7168 | for (;;) | |
c906108c | 7169 | { |
74531fed PA |
7170 | /* If we get a timeout or bad checksm, retry up to MAX_TRIES |
7171 | times. */ | |
7172 | for (tries = 1; tries <= MAX_TRIES; tries++) | |
c906108c | 7173 | { |
74531fed PA |
7174 | /* This can loop forever if the remote side sends us |
7175 | characters continuously, but if it pauses, we'll get | |
7176 | SERIAL_TIMEOUT from readchar because of timeout. Then | |
7177 | we'll count that as a retry. | |
7178 | ||
7179 | Note that even when forever is set, we will only wait | |
7180 | forever prior to the start of a packet. After that, we | |
7181 | expect characters to arrive at a brisk pace. They should | |
7182 | show up within remote_timeout intervals. */ | |
7183 | do | |
7184 | c = readchar (timeout); | |
7185 | while (c != SERIAL_TIMEOUT && c != '$' && c != '%'); | |
c906108c SS |
7186 | |
7187 | if (c == SERIAL_TIMEOUT) | |
7188 | { | |
74531fed PA |
7189 | if (expecting_notif) |
7190 | return -1; /* Don't complain, it's normal to not get | |
7191 | anything in this case. */ | |
7192 | ||
23860348 | 7193 | if (forever) /* Watchdog went off? Kill the target. */ |
c906108c | 7194 | { |
2acceee2 | 7195 | QUIT; |
ce5ce7ed | 7196 | pop_target (); |
489eaeba | 7197 | error (_("Watchdog timeout has expired. Target detached.")); |
c906108c | 7198 | } |
c906108c | 7199 | if (remote_debug) |
0f71a2f6 | 7200 | fputs_filtered ("Timed out.\n", gdb_stdlog); |
c906108c | 7201 | } |
74531fed PA |
7202 | else |
7203 | { | |
7204 | /* We've found the start of a packet or notification. | |
7205 | Now collect the data. */ | |
7206 | val = read_frame (buf, sizeof_buf); | |
7207 | if (val >= 0) | |
7208 | break; | |
7209 | } | |
7210 | ||
7211 | serial_write (remote_desc, "-", 1); | |
c906108c | 7212 | } |
c906108c | 7213 | |
74531fed PA |
7214 | if (tries > MAX_TRIES) |
7215 | { | |
7216 | /* We have tried hard enough, and just can't receive the | |
7217 | packet/notification. Give up. */ | |
7218 | printf_unfiltered (_("Ignoring packet error, continuing...\n")); | |
c906108c | 7219 | |
74531fed PA |
7220 | /* Skip the ack char if we're in no-ack mode. */ |
7221 | if (!rs->noack_mode) | |
7222 | serial_write (remote_desc, "+", 1); | |
7223 | return -1; | |
7224 | } | |
c906108c | 7225 | |
74531fed PA |
7226 | /* If we got an ordinary packet, return that to our caller. */ |
7227 | if (c == '$') | |
c906108c SS |
7228 | { |
7229 | if (remote_debug) | |
43e526b9 | 7230 | { |
6e5abd65 PA |
7231 | struct cleanup *old_chain; |
7232 | char *str; | |
7233 | ||
7234 | str = escape_buffer (*buf, val); | |
7235 | old_chain = make_cleanup (xfree, str); | |
7236 | fprintf_unfiltered (gdb_stdlog, "Packet received: %s\n", str); | |
7237 | do_cleanups (old_chain); | |
43e526b9 | 7238 | } |
a6f3e723 SL |
7239 | |
7240 | /* Skip the ack char if we're in no-ack mode. */ | |
7241 | if (!rs->noack_mode) | |
7242 | serial_write (remote_desc, "+", 1); | |
0876f84a | 7243 | return val; |
c906108c SS |
7244 | } |
7245 | ||
74531fed PA |
7246 | /* If we got a notification, handle it, and go back to looking |
7247 | for a packet. */ | |
7248 | else | |
7249 | { | |
7250 | gdb_assert (c == '%'); | |
7251 | ||
7252 | if (remote_debug) | |
7253 | { | |
6e5abd65 PA |
7254 | struct cleanup *old_chain; |
7255 | char *str; | |
7256 | ||
7257 | str = escape_buffer (*buf, val); | |
7258 | old_chain = make_cleanup (xfree, str); | |
7259 | fprintf_unfiltered (gdb_stdlog, | |
7260 | " Notification received: %s\n", | |
7261 | str); | |
7262 | do_cleanups (old_chain); | |
74531fed | 7263 | } |
c906108c | 7264 | |
74531fed | 7265 | handle_notification (*buf, val); |
c906108c | 7266 | |
74531fed | 7267 | /* Notifications require no acknowledgement. */ |
a6f3e723 | 7268 | |
74531fed PA |
7269 | if (expecting_notif) |
7270 | return -1; | |
7271 | } | |
7272 | } | |
7273 | } | |
7274 | ||
7275 | static int | |
7276 | getpkt_sane (char **buf, long *sizeof_buf, int forever) | |
7277 | { | |
7278 | return getpkt_or_notif_sane_1 (buf, sizeof_buf, forever, 0); | |
7279 | } | |
7280 | ||
7281 | static int | |
7282 | getpkt_or_notif_sane (char **buf, long *sizeof_buf, int forever) | |
7283 | { | |
7284 | return getpkt_or_notif_sane_1 (buf, sizeof_buf, forever, 1); | |
c906108c | 7285 | } |
74531fed | 7286 | |
c906108c SS |
7287 | \f |
7288 | static void | |
7d85a9c0 | 7289 | remote_kill (struct target_ops *ops) |
43ff13b4 | 7290 | { |
23860348 MS |
7291 | /* Use catch_errors so the user can quit from gdb even when we |
7292 | aren't on speaking terms with the remote system. */ | |
c5aa993b | 7293 | catch_errors ((catch_errors_ftype *) putpkt, "k", "", RETURN_MASK_ERROR); |
43ff13b4 JM |
7294 | |
7295 | /* Don't wait for it to die. I'm not really sure it matters whether | |
7296 | we do or not. For the existing stubs, kill is a noop. */ | |
7297 | target_mourn_inferior (); | |
7298 | } | |
7299 | ||
82f73884 PA |
7300 | static int |
7301 | remote_vkill (int pid, struct remote_state *rs) | |
7302 | { | |
7303 | if (remote_protocol_packets[PACKET_vKill].support == PACKET_DISABLE) | |
7304 | return -1; | |
7305 | ||
7306 | /* Tell the remote target to detach. */ | |
7307 | sprintf (rs->buf, "vKill;%x", pid); | |
7308 | putpkt (rs->buf); | |
7309 | getpkt (&rs->buf, &rs->buf_size, 0); | |
7310 | ||
7311 | if (packet_ok (rs->buf, | |
7312 | &remote_protocol_packets[PACKET_vKill]) == PACKET_OK) | |
7313 | return 0; | |
7314 | else if (remote_protocol_packets[PACKET_vKill].support == PACKET_DISABLE) | |
7315 | return -1; | |
7316 | else | |
7317 | return 1; | |
7318 | } | |
7319 | ||
7320 | static void | |
7d85a9c0 | 7321 | extended_remote_kill (struct target_ops *ops) |
82f73884 PA |
7322 | { |
7323 | int res; | |
7324 | int pid = ptid_get_pid (inferior_ptid); | |
7325 | struct remote_state *rs = get_remote_state (); | |
7326 | ||
7327 | res = remote_vkill (pid, rs); | |
7328 | if (res == -1 && !remote_multi_process_p (rs)) | |
7329 | { | |
7330 | /* Don't try 'k' on a multi-process aware stub -- it has no way | |
7331 | to specify the pid. */ | |
7332 | ||
7333 | putpkt ("k"); | |
7334 | #if 0 | |
7335 | getpkt (&rs->buf, &rs->buf_size, 0); | |
7336 | if (rs->buf[0] != 'O' || rs->buf[0] != 'K') | |
7337 | res = 1; | |
7338 | #else | |
7339 | /* Don't wait for it to die. I'm not really sure it matters whether | |
7340 | we do or not. For the existing stubs, kill is a noop. */ | |
7341 | res = 0; | |
7342 | #endif | |
7343 | } | |
7344 | ||
7345 | if (res != 0) | |
7346 | error (_("Can't kill process")); | |
7347 | ||
82f73884 PA |
7348 | target_mourn_inferior (); |
7349 | } | |
7350 | ||
c906108c | 7351 | static void |
136d6dae | 7352 | remote_mourn (struct target_ops *ops) |
c906108c | 7353 | { |
136d6dae | 7354 | remote_mourn_1 (ops); |
c906108c SS |
7355 | } |
7356 | ||
c906108c SS |
7357 | /* Worker function for remote_mourn. */ |
7358 | static void | |
fba45db2 | 7359 | remote_mourn_1 (struct target_ops *target) |
c906108c SS |
7360 | { |
7361 | unpush_target (target); | |
ce5ce7ed | 7362 | |
8a2492ee PA |
7363 | /* remote_close takes care of doing most of the clean up. */ |
7364 | generic_mourn_inferior (); | |
c906108c SS |
7365 | } |
7366 | ||
2d717e4f DJ |
7367 | static void |
7368 | extended_remote_mourn_1 (struct target_ops *target) | |
7369 | { | |
7370 | struct remote_state *rs = get_remote_state (); | |
c906108c | 7371 | |
e24a49d8 PA |
7372 | /* In case we got here due to an error, but we're going to stay |
7373 | connected. */ | |
7374 | rs->waiting_for_stop_reply = 0; | |
7375 | ||
74531fed PA |
7376 | /* We're no longer interested in these events. */ |
7377 | discard_pending_stop_replies (ptid_get_pid (inferior_ptid)); | |
7378 | ||
dc1981d7 PA |
7379 | /* If the current general thread belonged to the process we just |
7380 | detached from or has exited, the remote side current general | |
7381 | thread becomes undefined. Considering a case like this: | |
7382 | ||
7383 | - We just got here due to a detach. | |
7384 | - The process that we're detaching from happens to immediately | |
7385 | report a global breakpoint being hit in non-stop mode, in the | |
7386 | same thread we had selected before. | |
7387 | - GDB attaches to this process again. | |
7388 | - This event happens to be the next event we handle. | |
7389 | ||
7390 | GDB would consider that the current general thread didn't need to | |
7391 | be set on the stub side (with Hg), since for all it knew, | |
7392 | GENERAL_THREAD hadn't changed. | |
7393 | ||
7394 | Notice that although in all-stop mode, the remote server always | |
7395 | sets the current thread to the thread reporting the stop event, | |
7396 | that doesn't happen in non-stop mode; in non-stop, the stub *must | |
7397 | not* change the current thread when reporting a breakpoint hit, | |
7398 | due to the decoupling of event reporting and event handling. | |
7399 | ||
7400 | To keep things simple, we always invalidate our notion of the | |
7401 | current thread. */ | |
7402 | record_currthread (minus_one_ptid); | |
7403 | ||
2d717e4f DJ |
7404 | /* Unlike "target remote", we do not want to unpush the target; then |
7405 | the next time the user says "run", we won't be connected. */ | |
7406 | ||
48aa3c27 PA |
7407 | /* Call common code to mark the inferior as not running. */ |
7408 | generic_mourn_inferior (); | |
7409 | ||
d729566a | 7410 | if (!have_inferiors ()) |
2d717e4f | 7411 | { |
82f73884 PA |
7412 | if (!remote_multi_process_p (rs)) |
7413 | { | |
7414 | /* Check whether the target is running now - some remote stubs | |
7415 | automatically restart after kill. */ | |
7416 | putpkt ("?"); | |
7417 | getpkt (&rs->buf, &rs->buf_size, 0); | |
7418 | ||
7419 | if (rs->buf[0] == 'S' || rs->buf[0] == 'T') | |
7420 | { | |
3e43a32a MS |
7421 | /* Assume that the target has been restarted. Set |
7422 | inferior_ptid so that bits of core GDB realizes | |
7423 | there's something here, e.g., so that the user can | |
7424 | say "kill" again. */ | |
82f73884 PA |
7425 | inferior_ptid = magic_null_ptid; |
7426 | } | |
82f73884 | 7427 | } |
2d717e4f DJ |
7428 | } |
7429 | } | |
c906108c SS |
7430 | |
7431 | static void | |
136d6dae | 7432 | extended_remote_mourn (struct target_ops *ops) |
c906108c | 7433 | { |
136d6dae | 7434 | extended_remote_mourn_1 (ops); |
2d717e4f | 7435 | } |
c906108c | 7436 | |
2d717e4f DJ |
7437 | static int |
7438 | extended_remote_run (char *args) | |
7439 | { | |
7440 | struct remote_state *rs = get_remote_state (); | |
2d717e4f | 7441 | int len; |
c906108c | 7442 | |
2d717e4f DJ |
7443 | /* If the user has disabled vRun support, or we have detected that |
7444 | support is not available, do not try it. */ | |
7445 | if (remote_protocol_packets[PACKET_vRun].support == PACKET_DISABLE) | |
7446 | return -1; | |
424163ea | 7447 | |
2d717e4f DJ |
7448 | strcpy (rs->buf, "vRun;"); |
7449 | len = strlen (rs->buf); | |
c906108c | 7450 | |
2d717e4f DJ |
7451 | if (strlen (remote_exec_file) * 2 + len >= get_remote_packet_size ()) |
7452 | error (_("Remote file name too long for run packet")); | |
7453 | len += 2 * bin2hex ((gdb_byte *) remote_exec_file, rs->buf + len, 0); | |
7454 | ||
d1a41061 | 7455 | gdb_assert (args != NULL); |
2d717e4f DJ |
7456 | if (*args) |
7457 | { | |
7458 | struct cleanup *back_to; | |
7459 | int i; | |
7460 | char **argv; | |
7461 | ||
d1a41061 | 7462 | argv = gdb_buildargv (args); |
2d717e4f DJ |
7463 | back_to = make_cleanup ((void (*) (void *)) freeargv, argv); |
7464 | for (i = 0; argv[i] != NULL; i++) | |
7465 | { | |
7466 | if (strlen (argv[i]) * 2 + 1 + len >= get_remote_packet_size ()) | |
7467 | error (_("Argument list too long for run packet")); | |
7468 | rs->buf[len++] = ';'; | |
7469 | len += 2 * bin2hex ((gdb_byte *) argv[i], rs->buf + len, 0); | |
7470 | } | |
7471 | do_cleanups (back_to); | |
7472 | } | |
7473 | ||
7474 | rs->buf[len++] = '\0'; | |
7475 | ||
7476 | putpkt (rs->buf); | |
7477 | getpkt (&rs->buf, &rs->buf_size, 0); | |
7478 | ||
7479 | if (packet_ok (rs->buf, &remote_protocol_packets[PACKET_vRun]) == PACKET_OK) | |
7480 | { | |
7481 | /* We have a wait response; we don't need it, though. All is well. */ | |
7482 | return 0; | |
7483 | } | |
7484 | else if (remote_protocol_packets[PACKET_vRun].support == PACKET_DISABLE) | |
7485 | /* It wasn't disabled before, but it is now. */ | |
7486 | return -1; | |
7487 | else | |
7488 | { | |
7489 | if (remote_exec_file[0] == '\0') | |
7490 | error (_("Running the default executable on the remote target failed; " | |
7491 | "try \"set remote exec-file\"?")); | |
7492 | else | |
7493 | error (_("Running \"%s\" on the remote target failed"), | |
7494 | remote_exec_file); | |
7495 | } | |
c906108c SS |
7496 | } |
7497 | ||
2d717e4f DJ |
7498 | /* In the extended protocol we want to be able to do things like |
7499 | "run" and have them basically work as expected. So we need | |
7500 | a special create_inferior function. We support changing the | |
7501 | executable file and the command line arguments, but not the | |
7502 | environment. */ | |
7503 | ||
43ff13b4 | 7504 | static void |
2d717e4f | 7505 | extended_remote_create_inferior_1 (char *exec_file, char *args, |
75c99385 | 7506 | char **env, int from_tty) |
43ff13b4 | 7507 | { |
43ff13b4 | 7508 | /* If running asynchronously, register the target file descriptor |
23860348 | 7509 | with the event loop. */ |
75c99385 | 7510 | if (target_can_async_p ()) |
2acceee2 | 7511 | target_async (inferior_event_handler, 0); |
43ff13b4 JM |
7512 | |
7513 | /* Now restart the remote server. */ | |
2d717e4f DJ |
7514 | if (extended_remote_run (args) == -1) |
7515 | { | |
7516 | /* vRun was not supported. Fail if we need it to do what the | |
7517 | user requested. */ | |
7518 | if (remote_exec_file[0]) | |
7519 | error (_("Remote target does not support \"set remote exec-file\"")); | |
7520 | if (args[0]) | |
7521 | error (_("Remote target does not support \"set args\" or run <ARGS>")); | |
43ff13b4 | 7522 | |
2d717e4f DJ |
7523 | /* Fall back to "R". */ |
7524 | extended_remote_restart (); | |
7525 | } | |
424163ea | 7526 | |
6c95b8df PA |
7527 | if (!have_inferiors ()) |
7528 | { | |
7529 | /* Clean up from the last time we ran, before we mark the target | |
7530 | running again. This will mark breakpoints uninserted, and | |
7531 | get_offsets may insert breakpoints. */ | |
7532 | init_thread_list (); | |
7533 | init_wait_for_inferior (); | |
7534 | } | |
45280a52 | 7535 | |
2d717e4f | 7536 | /* Now mark the inferior as running before we do anything else. */ |
79d7f229 | 7537 | inferior_ptid = magic_null_ptid; |
c0a2216e | 7538 | |
74531fed PA |
7539 | /* Now, if we have thread information, update inferior_ptid. */ |
7540 | inferior_ptid = remote_current_thread (inferior_ptid); | |
7541 | ||
0b16c5cf | 7542 | remote_add_inferior (ptid_get_pid (inferior_ptid), 0); |
c0a2216e PA |
7543 | add_thread_silent (inferior_ptid); |
7544 | ||
2d717e4f DJ |
7545 | /* Get updated offsets, if the stub uses qOffsets. */ |
7546 | get_offsets (); | |
2d717e4f DJ |
7547 | } |
7548 | ||
7549 | static void | |
136d6dae VP |
7550 | extended_remote_create_inferior (struct target_ops *ops, |
7551 | char *exec_file, char *args, | |
2d717e4f DJ |
7552 | char **env, int from_tty) |
7553 | { | |
75c99385 | 7554 | extended_remote_create_inferior_1 (exec_file, args, env, from_tty); |
43ff13b4 | 7555 | } |
c906108c | 7556 | \f |
c5aa993b | 7557 | |
8181d85f DJ |
7558 | /* Insert a breakpoint. On targets that have software breakpoint |
7559 | support, we ask the remote target to do the work; on targets | |
7560 | which don't, we insert a traditional memory breakpoint. */ | |
c906108c SS |
7561 | |
7562 | static int | |
a6d9a66e UW |
7563 | remote_insert_breakpoint (struct gdbarch *gdbarch, |
7564 | struct bp_target_info *bp_tgt) | |
c906108c | 7565 | { |
d471ea57 AC |
7566 | /* Try the "Z" s/w breakpoint packet if it is not already disabled. |
7567 | If it succeeds, then set the support to PACKET_ENABLE. If it | |
7568 | fails, and the user has explicitly requested the Z support then | |
23860348 | 7569 | report an error, otherwise, mark it disabled and go on. */ |
802188a7 | 7570 | |
444abaca | 7571 | if (remote_protocol_packets[PACKET_Z0].support != PACKET_DISABLE) |
96baa820 | 7572 | { |
7c0f6dcc | 7573 | CORE_ADDR addr = bp_tgt->placed_address; |
4fff2411 JZ |
7574 | struct remote_state *rs; |
7575 | char *p; | |
7c0f6dcc | 7576 | int bpsize; |
4fff2411 | 7577 | |
a1dcb23a | 7578 | gdbarch_remote_breakpoint_from_pc (gdbarch, &addr, &bpsize); |
4fff2411 JZ |
7579 | |
7580 | rs = get_remote_state (); | |
7581 | p = rs->buf; | |
802188a7 | 7582 | |
96baa820 JM |
7583 | *(p++) = 'Z'; |
7584 | *(p++) = '0'; | |
7585 | *(p++) = ','; | |
7c0f6dcc | 7586 | addr = (ULONGEST) remote_address_masked (addr); |
8181d85f | 7587 | p += hexnumstr (p, addr); |
7c0f6dcc | 7588 | sprintf (p, ",%d", bpsize); |
802188a7 | 7589 | |
6d820c5c DJ |
7590 | putpkt (rs->buf); |
7591 | getpkt (&rs->buf, &rs->buf_size, 0); | |
96baa820 | 7592 | |
6d820c5c | 7593 | switch (packet_ok (rs->buf, &remote_protocol_packets[PACKET_Z0])) |
96baa820 | 7594 | { |
d471ea57 AC |
7595 | case PACKET_ERROR: |
7596 | return -1; | |
7597 | case PACKET_OK: | |
7c0f6dcc JL |
7598 | bp_tgt->placed_address = addr; |
7599 | bp_tgt->placed_size = bpsize; | |
d471ea57 AC |
7600 | return 0; |
7601 | case PACKET_UNKNOWN: | |
7602 | break; | |
96baa820 JM |
7603 | } |
7604 | } | |
c906108c | 7605 | |
a6d9a66e | 7606 | return memory_insert_breakpoint (gdbarch, bp_tgt); |
c906108c SS |
7607 | } |
7608 | ||
7609 | static int | |
a6d9a66e UW |
7610 | remote_remove_breakpoint (struct gdbarch *gdbarch, |
7611 | struct bp_target_info *bp_tgt) | |
c906108c | 7612 | { |
8181d85f | 7613 | CORE_ADDR addr = bp_tgt->placed_address; |
d01949b6 | 7614 | struct remote_state *rs = get_remote_state (); |
96baa820 | 7615 | |
444abaca | 7616 | if (remote_protocol_packets[PACKET_Z0].support != PACKET_DISABLE) |
96baa820 | 7617 | { |
6d820c5c | 7618 | char *p = rs->buf; |
802188a7 | 7619 | |
96baa820 JM |
7620 | *(p++) = 'z'; |
7621 | *(p++) = '0'; | |
7622 | *(p++) = ','; | |
7623 | ||
8181d85f DJ |
7624 | addr = (ULONGEST) remote_address_masked (bp_tgt->placed_address); |
7625 | p += hexnumstr (p, addr); | |
7626 | sprintf (p, ",%d", bp_tgt->placed_size); | |
802188a7 | 7627 | |
6d820c5c DJ |
7628 | putpkt (rs->buf); |
7629 | getpkt (&rs->buf, &rs->buf_size, 0); | |
96baa820 | 7630 | |
6d820c5c | 7631 | return (rs->buf[0] == 'E'); |
96baa820 JM |
7632 | } |
7633 | ||
a6d9a66e | 7634 | return memory_remove_breakpoint (gdbarch, bp_tgt); |
c906108c SS |
7635 | } |
7636 | ||
d471ea57 AC |
7637 | static int |
7638 | watchpoint_to_Z_packet (int type) | |
7639 | { | |
7640 | switch (type) | |
7641 | { | |
7642 | case hw_write: | |
bb858e6a | 7643 | return Z_PACKET_WRITE_WP; |
d471ea57 AC |
7644 | break; |
7645 | case hw_read: | |
bb858e6a | 7646 | return Z_PACKET_READ_WP; |
d471ea57 AC |
7647 | break; |
7648 | case hw_access: | |
bb858e6a | 7649 | return Z_PACKET_ACCESS_WP; |
d471ea57 AC |
7650 | break; |
7651 | default: | |
8e65ff28 | 7652 | internal_error (__FILE__, __LINE__, |
e2e0b3e5 | 7653 | _("hw_bp_to_z: bad watchpoint type %d"), type); |
d471ea57 AC |
7654 | } |
7655 | } | |
7656 | ||
3c3bea1c | 7657 | static int |
0cf6dd15 TJB |
7658 | remote_insert_watchpoint (CORE_ADDR addr, int len, int type, |
7659 | struct expression *cond) | |
96baa820 | 7660 | { |
d01949b6 | 7661 | struct remote_state *rs = get_remote_state (); |
e514a9d6 | 7662 | char *p; |
d471ea57 | 7663 | enum Z_packet_type packet = watchpoint_to_Z_packet (type); |
96baa820 | 7664 | |
444abaca | 7665 | if (remote_protocol_packets[PACKET_Z0 + packet].support == PACKET_DISABLE) |
85d721b8 | 7666 | return 1; |
802188a7 | 7667 | |
6d820c5c DJ |
7668 | sprintf (rs->buf, "Z%x,", packet); |
7669 | p = strchr (rs->buf, '\0'); | |
96baa820 JM |
7670 | addr = remote_address_masked (addr); |
7671 | p += hexnumstr (p, (ULONGEST) addr); | |
d4f3574e | 7672 | sprintf (p, ",%x", len); |
802188a7 | 7673 | |
6d820c5c DJ |
7674 | putpkt (rs->buf); |
7675 | getpkt (&rs->buf, &rs->buf_size, 0); | |
96baa820 | 7676 | |
6d820c5c | 7677 | switch (packet_ok (rs->buf, &remote_protocol_packets[PACKET_Z0 + packet])) |
d471ea57 AC |
7678 | { |
7679 | case PACKET_ERROR: | |
d471ea57 | 7680 | return -1; |
85d721b8 PA |
7681 | case PACKET_UNKNOWN: |
7682 | return 1; | |
d471ea57 AC |
7683 | case PACKET_OK: |
7684 | return 0; | |
7685 | } | |
8e65ff28 | 7686 | internal_error (__FILE__, __LINE__, |
e2e0b3e5 | 7687 | _("remote_insert_watchpoint: reached end of function")); |
96baa820 JM |
7688 | } |
7689 | ||
d471ea57 | 7690 | |
3c3bea1c | 7691 | static int |
0cf6dd15 TJB |
7692 | remote_remove_watchpoint (CORE_ADDR addr, int len, int type, |
7693 | struct expression *cond) | |
96baa820 | 7694 | { |
d01949b6 | 7695 | struct remote_state *rs = get_remote_state (); |
e514a9d6 | 7696 | char *p; |
d471ea57 AC |
7697 | enum Z_packet_type packet = watchpoint_to_Z_packet (type); |
7698 | ||
444abaca | 7699 | if (remote_protocol_packets[PACKET_Z0 + packet].support == PACKET_DISABLE) |
5cffb350 | 7700 | return -1; |
802188a7 | 7701 | |
6d820c5c DJ |
7702 | sprintf (rs->buf, "z%x,", packet); |
7703 | p = strchr (rs->buf, '\0'); | |
96baa820 JM |
7704 | addr = remote_address_masked (addr); |
7705 | p += hexnumstr (p, (ULONGEST) addr); | |
d4f3574e | 7706 | sprintf (p, ",%x", len); |
6d820c5c DJ |
7707 | putpkt (rs->buf); |
7708 | getpkt (&rs->buf, &rs->buf_size, 0); | |
96baa820 | 7709 | |
6d820c5c | 7710 | switch (packet_ok (rs->buf, &remote_protocol_packets[PACKET_Z0 + packet])) |
d471ea57 AC |
7711 | { |
7712 | case PACKET_ERROR: | |
7713 | case PACKET_UNKNOWN: | |
7714 | return -1; | |
7715 | case PACKET_OK: | |
7716 | return 0; | |
7717 | } | |
8e65ff28 | 7718 | internal_error (__FILE__, __LINE__, |
e2e0b3e5 | 7719 | _("remote_remove_watchpoint: reached end of function")); |
96baa820 JM |
7720 | } |
7721 | ||
3c3bea1c | 7722 | |
501eef12 AC |
7723 | int remote_hw_watchpoint_limit = -1; |
7724 | int remote_hw_breakpoint_limit = -1; | |
d471ea57 | 7725 | |
b9362cc7 | 7726 | static int |
3c3bea1c | 7727 | remote_check_watch_resources (int type, int cnt, int ot) |
96baa820 | 7728 | { |
3c3bea1c GS |
7729 | if (type == bp_hardware_breakpoint) |
7730 | { | |
7731 | if (remote_hw_breakpoint_limit == 0) | |
7732 | return 0; | |
501eef12 AC |
7733 | else if (remote_hw_breakpoint_limit < 0) |
7734 | return 1; | |
3c3bea1c GS |
7735 | else if (cnt <= remote_hw_breakpoint_limit) |
7736 | return 1; | |
7737 | } | |
7738 | else | |
7739 | { | |
7740 | if (remote_hw_watchpoint_limit == 0) | |
7741 | return 0; | |
501eef12 AC |
7742 | else if (remote_hw_watchpoint_limit < 0) |
7743 | return 1; | |
3c3bea1c GS |
7744 | else if (ot) |
7745 | return -1; | |
7746 | else if (cnt <= remote_hw_watchpoint_limit) | |
7747 | return 1; | |
7748 | } | |
7749 | return -1; | |
7750 | } | |
7751 | ||
b9362cc7 | 7752 | static int |
3c3bea1c GS |
7753 | remote_stopped_by_watchpoint (void) |
7754 | { | |
82f73884 | 7755 | return remote_stopped_by_watchpoint_p; |
3c3bea1c GS |
7756 | } |
7757 | ||
4aa7a7f5 JJ |
7758 | static int |
7759 | remote_stopped_data_address (struct target_ops *target, CORE_ADDR *addr_p) | |
3c3bea1c | 7760 | { |
4aa7a7f5 | 7761 | int rc = 0; |
a744cf53 | 7762 | |
d983da9c | 7763 | if (remote_stopped_by_watchpoint ()) |
4aa7a7f5 JJ |
7764 | { |
7765 | *addr_p = remote_watch_data_address; | |
7766 | rc = 1; | |
7767 | } | |
7768 | ||
7769 | return rc; | |
3c3bea1c GS |
7770 | } |
7771 | ||
7772 | ||
7773 | static int | |
a6d9a66e UW |
7774 | remote_insert_hw_breakpoint (struct gdbarch *gdbarch, |
7775 | struct bp_target_info *bp_tgt) | |
3c3bea1c | 7776 | { |
8181d85f | 7777 | CORE_ADDR addr; |
4fff2411 JZ |
7778 | struct remote_state *rs; |
7779 | char *p; | |
802188a7 | 7780 | |
c8189ed1 | 7781 | /* The length field should be set to the size of a breakpoint |
8181d85f | 7782 | instruction, even though we aren't inserting one ourselves. */ |
c8189ed1 | 7783 | |
a1dcb23a | 7784 | gdbarch_remote_breakpoint_from_pc |
a6d9a66e | 7785 | (gdbarch, &bp_tgt->placed_address, &bp_tgt->placed_size); |
3c3bea1c | 7786 | |
444abaca | 7787 | if (remote_protocol_packets[PACKET_Z1].support == PACKET_DISABLE) |
5cffb350 | 7788 | return -1; |
2bc416ba | 7789 | |
4fff2411 JZ |
7790 | rs = get_remote_state (); |
7791 | p = rs->buf; | |
7792 | ||
96baa820 JM |
7793 | *(p++) = 'Z'; |
7794 | *(p++) = '1'; | |
7795 | *(p++) = ','; | |
802188a7 | 7796 | |
8181d85f | 7797 | addr = remote_address_masked (bp_tgt->placed_address); |
96baa820 | 7798 | p += hexnumstr (p, (ULONGEST) addr); |
8181d85f | 7799 | sprintf (p, ",%x", bp_tgt->placed_size); |
96baa820 | 7800 | |
6d820c5c DJ |
7801 | putpkt (rs->buf); |
7802 | getpkt (&rs->buf, &rs->buf_size, 0); | |
96baa820 | 7803 | |
6d820c5c | 7804 | switch (packet_ok (rs->buf, &remote_protocol_packets[PACKET_Z1])) |
d471ea57 AC |
7805 | { |
7806 | case PACKET_ERROR: | |
7807 | case PACKET_UNKNOWN: | |
7808 | return -1; | |
7809 | case PACKET_OK: | |
7810 | return 0; | |
7811 | } | |
8e65ff28 | 7812 | internal_error (__FILE__, __LINE__, |
e2e0b3e5 | 7813 | _("remote_insert_hw_breakpoint: reached end of function")); |
96baa820 JM |
7814 | } |
7815 | ||
d471ea57 | 7816 | |
802188a7 | 7817 | static int |
a6d9a66e UW |
7818 | remote_remove_hw_breakpoint (struct gdbarch *gdbarch, |
7819 | struct bp_target_info *bp_tgt) | |
96baa820 | 7820 | { |
8181d85f | 7821 | CORE_ADDR addr; |
d01949b6 | 7822 | struct remote_state *rs = get_remote_state (); |
6d820c5c | 7823 | char *p = rs->buf; |
c8189ed1 | 7824 | |
444abaca | 7825 | if (remote_protocol_packets[PACKET_Z1].support == PACKET_DISABLE) |
5cffb350 | 7826 | return -1; |
802188a7 | 7827 | |
96baa820 JM |
7828 | *(p++) = 'z'; |
7829 | *(p++) = '1'; | |
7830 | *(p++) = ','; | |
802188a7 | 7831 | |
8181d85f | 7832 | addr = remote_address_masked (bp_tgt->placed_address); |
96baa820 | 7833 | p += hexnumstr (p, (ULONGEST) addr); |
8181d85f | 7834 | sprintf (p, ",%x", bp_tgt->placed_size); |
96baa820 | 7835 | |
6d820c5c DJ |
7836 | putpkt (rs->buf); |
7837 | getpkt (&rs->buf, &rs->buf_size, 0); | |
802188a7 | 7838 | |
6d820c5c | 7839 | switch (packet_ok (rs->buf, &remote_protocol_packets[PACKET_Z1])) |
d471ea57 AC |
7840 | { |
7841 | case PACKET_ERROR: | |
7842 | case PACKET_UNKNOWN: | |
7843 | return -1; | |
7844 | case PACKET_OK: | |
7845 | return 0; | |
7846 | } | |
8e65ff28 | 7847 | internal_error (__FILE__, __LINE__, |
e2e0b3e5 | 7848 | _("remote_remove_hw_breakpoint: reached end of function")); |
96baa820 | 7849 | } |
96baa820 | 7850 | |
23860348 | 7851 | /* Table used by the crc32 function to calcuate the checksum. */ |
c906108c | 7852 | |
c5aa993b JM |
7853 | static unsigned long crc32_table[256] = |
7854 | {0, 0}; | |
c906108c SS |
7855 | |
7856 | static unsigned long | |
4a5e7a5b | 7857 | crc32 (const unsigned char *buf, int len, unsigned int crc) |
c906108c | 7858 | { |
c5aa993b | 7859 | if (!crc32_table[1]) |
c906108c | 7860 | { |
23860348 | 7861 | /* Initialize the CRC table and the decoding table. */ |
c906108c SS |
7862 | int i, j; |
7863 | unsigned int c; | |
7864 | ||
7865 | for (i = 0; i < 256; i++) | |
c5aa993b JM |
7866 | { |
7867 | for (c = i << 24, j = 8; j > 0; --j) | |
7868 | c = c & 0x80000000 ? (c << 1) ^ 0x04c11db7 : (c << 1); | |
7869 | crc32_table[i] = c; | |
7870 | } | |
c906108c SS |
7871 | } |
7872 | ||
7873 | while (len--) | |
7874 | { | |
7875 | crc = (crc << 8) ^ crc32_table[((crc >> 24) ^ *buf) & 255]; | |
7876 | buf++; | |
7877 | } | |
7878 | return crc; | |
7879 | } | |
7880 | ||
4a5e7a5b PA |
7881 | /* Verify memory using the "qCRC:" request. */ |
7882 | ||
7883 | static int | |
7884 | remote_verify_memory (struct target_ops *ops, | |
7885 | const gdb_byte *data, CORE_ADDR lma, ULONGEST size) | |
7886 | { | |
7887 | struct remote_state *rs = get_remote_state (); | |
7888 | unsigned long host_crc, target_crc; | |
7889 | char *tmp; | |
7890 | ||
7891 | /* FIXME: assumes lma can fit into long. */ | |
7892 | xsnprintf (rs->buf, get_remote_packet_size (), "qCRC:%lx,%lx", | |
7893 | (long) lma, (long) size); | |
7894 | putpkt (rs->buf); | |
7895 | ||
7896 | /* Be clever; compute the host_crc before waiting for target | |
7897 | reply. */ | |
7898 | host_crc = crc32 (data, size, 0xffffffff); | |
7899 | ||
7900 | getpkt (&rs->buf, &rs->buf_size, 0); | |
7901 | if (rs->buf[0] == 'E') | |
7902 | return -1; | |
7903 | ||
7904 | if (rs->buf[0] != 'C') | |
7905 | error (_("remote target does not support this operation")); | |
7906 | ||
7907 | for (target_crc = 0, tmp = &rs->buf[1]; *tmp; tmp++) | |
7908 | target_crc = target_crc * 16 + fromhex (*tmp); | |
7909 | ||
7910 | return (host_crc == target_crc); | |
7911 | } | |
7912 | ||
c906108c SS |
7913 | /* compare-sections command |
7914 | ||
7915 | With no arguments, compares each loadable section in the exec bfd | |
7916 | with the same memory range on the target, and reports mismatches. | |
4a5e7a5b | 7917 | Useful for verifying the image on the target against the exec file. */ |
e514a9d6 | 7918 | |
c906108c | 7919 | static void |
fba45db2 | 7920 | compare_sections_command (char *args, int from_tty) |
c906108c SS |
7921 | { |
7922 | asection *s; | |
c906108c | 7923 | struct cleanup *old_chain; |
085dd6e6 | 7924 | char *sectdata; |
ce359b09 | 7925 | const char *sectname; |
c906108c SS |
7926 | bfd_size_type size; |
7927 | bfd_vma lma; | |
7928 | int matched = 0; | |
7929 | int mismatched = 0; | |
4a5e7a5b | 7930 | int res; |
c906108c SS |
7931 | |
7932 | if (!exec_bfd) | |
8a3fe4f8 | 7933 | error (_("command cannot be used without an exec file")); |
c906108c | 7934 | |
c5aa993b | 7935 | for (s = exec_bfd->sections; s; s = s->next) |
c906108c SS |
7936 | { |
7937 | if (!(s->flags & SEC_LOAD)) | |
0df8b418 | 7938 | continue; /* Skip non-loadable section. */ |
c906108c | 7939 | |
2c500098 | 7940 | size = bfd_get_section_size (s); |
c906108c | 7941 | if (size == 0) |
0df8b418 | 7942 | continue; /* Skip zero-length section. */ |
c906108c | 7943 | |
ce359b09 | 7944 | sectname = bfd_get_section_name (exec_bfd, s); |
c906108c | 7945 | if (args && strcmp (args, sectname) != 0) |
0df8b418 | 7946 | continue; /* Not the section selected by user. */ |
c906108c | 7947 | |
0df8b418 | 7948 | matched = 1; /* Do this section. */ |
c906108c | 7949 | lma = s->lma; |
c906108c | 7950 | |
c906108c | 7951 | sectdata = xmalloc (size); |
b8c9b27d | 7952 | old_chain = make_cleanup (xfree, sectdata); |
c906108c | 7953 | bfd_get_section_contents (exec_bfd, s, sectdata, 0, size); |
c906108c | 7954 | |
4a5e7a5b PA |
7955 | res = target_verify_memory (sectdata, lma, size); |
7956 | ||
7957 | if (res == -1) | |
5af949e3 UW |
7958 | error (_("target memory fault, section %s, range %s -- %s"), sectname, |
7959 | paddress (target_gdbarch, lma), | |
7960 | paddress (target_gdbarch, lma + size)); | |
c906108c | 7961 | |
5af949e3 UW |
7962 | printf_filtered ("Section %s, range %s -- %s: ", sectname, |
7963 | paddress (target_gdbarch, lma), | |
7964 | paddress (target_gdbarch, lma + size)); | |
4a5e7a5b | 7965 | if (res) |
c906108c SS |
7966 | printf_filtered ("matched.\n"); |
7967 | else | |
c5aa993b JM |
7968 | { |
7969 | printf_filtered ("MIS-MATCHED!\n"); | |
7970 | mismatched++; | |
7971 | } | |
c906108c SS |
7972 | |
7973 | do_cleanups (old_chain); | |
7974 | } | |
7975 | if (mismatched > 0) | |
8a3fe4f8 AC |
7976 | warning (_("One or more sections of the remote executable does not match\n\ |
7977 | the loaded file\n")); | |
c906108c | 7978 | if (args && !matched) |
a3f17187 | 7979 | printf_filtered (_("No loaded section named '%s'.\n"), args); |
c906108c SS |
7980 | } |
7981 | ||
0e7f50da UW |
7982 | /* Write LEN bytes from WRITEBUF into OBJECT_NAME/ANNEX at OFFSET |
7983 | into remote target. The number of bytes written to the remote | |
7984 | target is returned, or -1 for error. */ | |
7985 | ||
7986 | static LONGEST | |
7987 | remote_write_qxfer (struct target_ops *ops, const char *object_name, | |
7988 | const char *annex, const gdb_byte *writebuf, | |
7989 | ULONGEST offset, LONGEST len, | |
7990 | struct packet_config *packet) | |
7991 | { | |
7992 | int i, buf_len; | |
7993 | ULONGEST n; | |
0e7f50da UW |
7994 | struct remote_state *rs = get_remote_state (); |
7995 | int max_size = get_memory_write_packet_size (); | |
7996 | ||
7997 | if (packet->support == PACKET_DISABLE) | |
7998 | return -1; | |
7999 | ||
8000 | /* Insert header. */ | |
8001 | i = snprintf (rs->buf, max_size, | |
8002 | "qXfer:%s:write:%s:%s:", | |
8003 | object_name, annex ? annex : "", | |
8004 | phex_nz (offset, sizeof offset)); | |
8005 | max_size -= (i + 1); | |
8006 | ||
8007 | /* Escape as much data as fits into rs->buf. */ | |
8008 | buf_len = remote_escape_output | |
8009 | (writebuf, len, (rs->buf + i), &max_size, max_size); | |
8010 | ||
8011 | if (putpkt_binary (rs->buf, i + buf_len) < 0 | |
8012 | || getpkt_sane (&rs->buf, &rs->buf_size, 0) < 0 | |
8013 | || packet_ok (rs->buf, packet) != PACKET_OK) | |
8014 | return -1; | |
8015 | ||
8016 | unpack_varlen_hex (rs->buf, &n); | |
8017 | return n; | |
8018 | } | |
8019 | ||
0876f84a DJ |
8020 | /* Read OBJECT_NAME/ANNEX from the remote target using a qXfer packet. |
8021 | Data at OFFSET, of up to LEN bytes, is read into READBUF; the | |
8022 | number of bytes read is returned, or 0 for EOF, or -1 for error. | |
8023 | The number of bytes read may be less than LEN without indicating an | |
8024 | EOF. PACKET is checked and updated to indicate whether the remote | |
8025 | target supports this object. */ | |
8026 | ||
8027 | static LONGEST | |
8028 | remote_read_qxfer (struct target_ops *ops, const char *object_name, | |
8029 | const char *annex, | |
8030 | gdb_byte *readbuf, ULONGEST offset, LONGEST len, | |
8031 | struct packet_config *packet) | |
8032 | { | |
8033 | static char *finished_object; | |
8034 | static char *finished_annex; | |
8035 | static ULONGEST finished_offset; | |
8036 | ||
8037 | struct remote_state *rs = get_remote_state (); | |
0876f84a DJ |
8038 | LONGEST i, n, packet_len; |
8039 | ||
8040 | if (packet->support == PACKET_DISABLE) | |
8041 | return -1; | |
8042 | ||
8043 | /* Check whether we've cached an end-of-object packet that matches | |
8044 | this request. */ | |
8045 | if (finished_object) | |
8046 | { | |
8047 | if (strcmp (object_name, finished_object) == 0 | |
8048 | && strcmp (annex ? annex : "", finished_annex) == 0 | |
8049 | && offset == finished_offset) | |
8050 | return 0; | |
8051 | ||
8052 | /* Otherwise, we're now reading something different. Discard | |
8053 | the cache. */ | |
8054 | xfree (finished_object); | |
8055 | xfree (finished_annex); | |
8056 | finished_object = NULL; | |
8057 | finished_annex = NULL; | |
8058 | } | |
8059 | ||
8060 | /* Request only enough to fit in a single packet. The actual data | |
8061 | may not, since we don't know how much of it will need to be escaped; | |
8062 | the target is free to respond with slightly less data. We subtract | |
8063 | five to account for the response type and the protocol frame. */ | |
8064 | n = min (get_remote_packet_size () - 5, len); | |
8065 | snprintf (rs->buf, get_remote_packet_size () - 4, "qXfer:%s:read:%s:%s,%s", | |
8066 | object_name, annex ? annex : "", | |
8067 | phex_nz (offset, sizeof offset), | |
8068 | phex_nz (n, sizeof n)); | |
8069 | i = putpkt (rs->buf); | |
8070 | if (i < 0) | |
8071 | return -1; | |
8072 | ||
8073 | rs->buf[0] = '\0'; | |
8074 | packet_len = getpkt_sane (&rs->buf, &rs->buf_size, 0); | |
8075 | if (packet_len < 0 || packet_ok (rs->buf, packet) != PACKET_OK) | |
8076 | return -1; | |
8077 | ||
8078 | if (rs->buf[0] != 'l' && rs->buf[0] != 'm') | |
8079 | error (_("Unknown remote qXfer reply: %s"), rs->buf); | |
8080 | ||
8081 | /* 'm' means there is (or at least might be) more data after this | |
8082 | batch. That does not make sense unless there's at least one byte | |
8083 | of data in this reply. */ | |
8084 | if (rs->buf[0] == 'm' && packet_len == 1) | |
8085 | error (_("Remote qXfer reply contained no data.")); | |
8086 | ||
8087 | /* Got some data. */ | |
8088 | i = remote_unescape_input (rs->buf + 1, packet_len - 1, readbuf, n); | |
8089 | ||
8090 | /* 'l' is an EOF marker, possibly including a final block of data, | |
0e7f50da UW |
8091 | or possibly empty. If we have the final block of a non-empty |
8092 | object, record this fact to bypass a subsequent partial read. */ | |
8093 | if (rs->buf[0] == 'l' && offset + i > 0) | |
0876f84a DJ |
8094 | { |
8095 | finished_object = xstrdup (object_name); | |
8096 | finished_annex = xstrdup (annex ? annex : ""); | |
8097 | finished_offset = offset + i; | |
8098 | } | |
8099 | ||
8100 | return i; | |
8101 | } | |
8102 | ||
1e3ff5ad | 8103 | static LONGEST |
4b8a223f | 8104 | remote_xfer_partial (struct target_ops *ops, enum target_object object, |
961cb7b5 MK |
8105 | const char *annex, gdb_byte *readbuf, |
8106 | const gdb_byte *writebuf, ULONGEST offset, LONGEST len) | |
c906108c | 8107 | { |
82f73884 | 8108 | struct remote_state *rs; |
c906108c | 8109 | int i; |
6d820c5c | 8110 | char *p2; |
1e3ff5ad | 8111 | char query_type; |
c906108c | 8112 | |
e6e4e701 | 8113 | set_remote_traceframe (); |
82f73884 PA |
8114 | set_general_thread (inferior_ptid); |
8115 | ||
8116 | rs = get_remote_state (); | |
8117 | ||
b2182ed2 | 8118 | /* Handle memory using the standard memory routines. */ |
21e3b9b9 DJ |
8119 | if (object == TARGET_OBJECT_MEMORY) |
8120 | { | |
8121 | int xfered; | |
a744cf53 | 8122 | |
21e3b9b9 DJ |
8123 | errno = 0; |
8124 | ||
2d717e4f DJ |
8125 | /* If the remote target is connected but not running, we should |
8126 | pass this request down to a lower stratum (e.g. the executable | |
8127 | file). */ | |
8128 | if (!target_has_execution) | |
8129 | return 0; | |
8130 | ||
21e3b9b9 | 8131 | if (writebuf != NULL) |
b2182ed2 | 8132 | xfered = remote_write_bytes (offset, writebuf, len); |
21e3b9b9 | 8133 | else |
b2182ed2 | 8134 | xfered = remote_read_bytes (offset, readbuf, len); |
21e3b9b9 DJ |
8135 | |
8136 | if (xfered > 0) | |
8137 | return xfered; | |
8138 | else if (xfered == 0 && errno == 0) | |
8139 | return 0; | |
8140 | else | |
8141 | return -1; | |
8142 | } | |
8143 | ||
0df8b418 | 8144 | /* Handle SPU memory using qxfer packets. */ |
0e7f50da UW |
8145 | if (object == TARGET_OBJECT_SPU) |
8146 | { | |
8147 | if (readbuf) | |
8148 | return remote_read_qxfer (ops, "spu", annex, readbuf, offset, len, | |
8149 | &remote_protocol_packets | |
8150 | [PACKET_qXfer_spu_read]); | |
8151 | else | |
8152 | return remote_write_qxfer (ops, "spu", annex, writebuf, offset, len, | |
8153 | &remote_protocol_packets | |
8154 | [PACKET_qXfer_spu_write]); | |
8155 | } | |
8156 | ||
4aa995e1 PA |
8157 | /* Handle extra signal info using qxfer packets. */ |
8158 | if (object == TARGET_OBJECT_SIGNAL_INFO) | |
8159 | { | |
8160 | if (readbuf) | |
8161 | return remote_read_qxfer (ops, "siginfo", annex, readbuf, offset, len, | |
8162 | &remote_protocol_packets | |
8163 | [PACKET_qXfer_siginfo_read]); | |
8164 | else | |
3e43a32a MS |
8165 | return remote_write_qxfer (ops, "siginfo", annex, |
8166 | writebuf, offset, len, | |
4aa995e1 PA |
8167 | &remote_protocol_packets |
8168 | [PACKET_qXfer_siginfo_write]); | |
8169 | } | |
8170 | ||
0fb4aa4b PA |
8171 | if (object == TARGET_OBJECT_STATIC_TRACE_DATA) |
8172 | { | |
8173 | if (readbuf) | |
3e43a32a MS |
8174 | return remote_read_qxfer (ops, "statictrace", annex, |
8175 | readbuf, offset, len, | |
0fb4aa4b PA |
8176 | &remote_protocol_packets |
8177 | [PACKET_qXfer_statictrace_read]); | |
8178 | else | |
8179 | return -1; | |
8180 | } | |
8181 | ||
a76d924d DJ |
8182 | /* Only handle flash writes. */ |
8183 | if (writebuf != NULL) | |
8184 | { | |
8185 | LONGEST xfered; | |
8186 | ||
8187 | switch (object) | |
8188 | { | |
8189 | case TARGET_OBJECT_FLASH: | |
8190 | xfered = remote_flash_write (ops, offset, len, writebuf); | |
8191 | ||
8192 | if (xfered > 0) | |
8193 | return xfered; | |
8194 | else if (xfered == 0 && errno == 0) | |
8195 | return 0; | |
8196 | else | |
8197 | return -1; | |
8198 | ||
8199 | default: | |
8200 | return -1; | |
8201 | } | |
8202 | } | |
4b8a223f | 8203 | |
1e3ff5ad AC |
8204 | /* Map pre-existing objects onto letters. DO NOT do this for new |
8205 | objects!!! Instead specify new query packets. */ | |
8206 | switch (object) | |
c906108c | 8207 | { |
1e3ff5ad AC |
8208 | case TARGET_OBJECT_AVR: |
8209 | query_type = 'R'; | |
8210 | break; | |
802188a7 RM |
8211 | |
8212 | case TARGET_OBJECT_AUXV: | |
0876f84a DJ |
8213 | gdb_assert (annex == NULL); |
8214 | return remote_read_qxfer (ops, "auxv", annex, readbuf, offset, len, | |
8215 | &remote_protocol_packets[PACKET_qXfer_auxv]); | |
802188a7 | 8216 | |
23181151 DJ |
8217 | case TARGET_OBJECT_AVAILABLE_FEATURES: |
8218 | return remote_read_qxfer | |
8219 | (ops, "features", annex, readbuf, offset, len, | |
8220 | &remote_protocol_packets[PACKET_qXfer_features]); | |
8221 | ||
cfa9d6d9 DJ |
8222 | case TARGET_OBJECT_LIBRARIES: |
8223 | return remote_read_qxfer | |
8224 | (ops, "libraries", annex, readbuf, offset, len, | |
8225 | &remote_protocol_packets[PACKET_qXfer_libraries]); | |
8226 | ||
fd79ecee DJ |
8227 | case TARGET_OBJECT_MEMORY_MAP: |
8228 | gdb_assert (annex == NULL); | |
8229 | return remote_read_qxfer (ops, "memory-map", annex, readbuf, offset, len, | |
8230 | &remote_protocol_packets[PACKET_qXfer_memory_map]); | |
8231 | ||
07e059b5 VP |
8232 | case TARGET_OBJECT_OSDATA: |
8233 | /* Should only get here if we're connected. */ | |
8234 | gdb_assert (remote_desc); | |
8235 | return remote_read_qxfer | |
8236 | (ops, "osdata", annex, readbuf, offset, len, | |
8237 | &remote_protocol_packets[PACKET_qXfer_osdata]); | |
8238 | ||
dc146f7c VP |
8239 | case TARGET_OBJECT_THREADS: |
8240 | gdb_assert (annex == NULL); | |
8241 | return remote_read_qxfer (ops, "threads", annex, readbuf, offset, len, | |
8242 | &remote_protocol_packets[PACKET_qXfer_threads]); | |
8243 | ||
b3b9301e PA |
8244 | case TARGET_OBJECT_TRACEFRAME_INFO: |
8245 | gdb_assert (annex == NULL); | |
8246 | return remote_read_qxfer | |
8247 | (ops, "traceframe-info", annex, readbuf, offset, len, | |
8248 | &remote_protocol_packets[PACKET_qXfer_traceframe_info]); | |
1e3ff5ad | 8249 | default: |
c906108c SS |
8250 | return -1; |
8251 | } | |
8252 | ||
4b8a223f | 8253 | /* Note: a zero OFFSET and LEN can be used to query the minimum |
1e3ff5ad | 8254 | buffer size. */ |
4b8a223f | 8255 | if (offset == 0 && len == 0) |
ea9c271d | 8256 | return (get_remote_packet_size ()); |
0df8b418 | 8257 | /* Minimum outbuf size is get_remote_packet_size (). If LEN is not |
24b06219 | 8258 | large enough let the caller deal with it. */ |
ea9c271d | 8259 | if (len < get_remote_packet_size ()) |
1e3ff5ad | 8260 | return -1; |
ea9c271d | 8261 | len = get_remote_packet_size (); |
1e3ff5ad | 8262 | |
23860348 | 8263 | /* Except for querying the minimum buffer size, target must be open. */ |
c5aa993b | 8264 | if (!remote_desc) |
8a3fe4f8 | 8265 | error (_("remote query is only available after target open")); |
c906108c | 8266 | |
1e3ff5ad | 8267 | gdb_assert (annex != NULL); |
4b8a223f | 8268 | gdb_assert (readbuf != NULL); |
c906108c | 8269 | |
6d820c5c | 8270 | p2 = rs->buf; |
c906108c SS |
8271 | *p2++ = 'q'; |
8272 | *p2++ = query_type; | |
8273 | ||
23860348 MS |
8274 | /* We used one buffer char for the remote protocol q command and |
8275 | another for the query type. As the remote protocol encapsulation | |
8276 | uses 4 chars plus one extra in case we are debugging | |
8277 | (remote_debug), we have PBUFZIZ - 7 left to pack the query | |
8278 | string. */ | |
c906108c | 8279 | i = 0; |
ea9c271d | 8280 | while (annex[i] && (i < (get_remote_packet_size () - 8))) |
c906108c | 8281 | { |
1e3ff5ad AC |
8282 | /* Bad caller may have sent forbidden characters. */ |
8283 | gdb_assert (isprint (annex[i]) && annex[i] != '$' && annex[i] != '#'); | |
8284 | *p2++ = annex[i]; | |
c906108c SS |
8285 | i++; |
8286 | } | |
1e3ff5ad AC |
8287 | *p2 = '\0'; |
8288 | gdb_assert (annex[i] == '\0'); | |
c906108c | 8289 | |
6d820c5c | 8290 | i = putpkt (rs->buf); |
c5aa993b JM |
8291 | if (i < 0) |
8292 | return i; | |
c906108c | 8293 | |
6d820c5c DJ |
8294 | getpkt (&rs->buf, &rs->buf_size, 0); |
8295 | strcpy ((char *) readbuf, rs->buf); | |
c906108c | 8296 | |
cfd77fa1 | 8297 | return strlen ((char *) readbuf); |
c906108c SS |
8298 | } |
8299 | ||
08388c79 DE |
8300 | static int |
8301 | remote_search_memory (struct target_ops* ops, | |
8302 | CORE_ADDR start_addr, ULONGEST search_space_len, | |
8303 | const gdb_byte *pattern, ULONGEST pattern_len, | |
8304 | CORE_ADDR *found_addrp) | |
8305 | { | |
5af949e3 | 8306 | int addr_size = gdbarch_addr_bit (target_gdbarch) / 8; |
08388c79 DE |
8307 | struct remote_state *rs = get_remote_state (); |
8308 | int max_size = get_memory_write_packet_size (); | |
8309 | struct packet_config *packet = | |
8310 | &remote_protocol_packets[PACKET_qSearch_memory]; | |
0df8b418 MS |
8311 | /* Number of packet bytes used to encode the pattern; |
8312 | this could be more than PATTERN_LEN due to escape characters. */ | |
08388c79 | 8313 | int escaped_pattern_len; |
0df8b418 | 8314 | /* Amount of pattern that was encodable in the packet. */ |
08388c79 DE |
8315 | int used_pattern_len; |
8316 | int i; | |
8317 | int found; | |
8318 | ULONGEST found_addr; | |
8319 | ||
8320 | /* Don't go to the target if we don't have to. | |
8321 | This is done before checking packet->support to avoid the possibility that | |
8322 | a success for this edge case means the facility works in general. */ | |
8323 | if (pattern_len > search_space_len) | |
8324 | return 0; | |
8325 | if (pattern_len == 0) | |
8326 | { | |
8327 | *found_addrp = start_addr; | |
8328 | return 1; | |
8329 | } | |
8330 | ||
8331 | /* If we already know the packet isn't supported, fall back to the simple | |
8332 | way of searching memory. */ | |
8333 | ||
8334 | if (packet->support == PACKET_DISABLE) | |
8335 | { | |
8336 | /* Target doesn't provided special support, fall back and use the | |
8337 | standard support (copy memory and do the search here). */ | |
8338 | return simple_search_memory (ops, start_addr, search_space_len, | |
8339 | pattern, pattern_len, found_addrp); | |
8340 | } | |
8341 | ||
8342 | /* Insert header. */ | |
8343 | i = snprintf (rs->buf, max_size, | |
8344 | "qSearch:memory:%s;%s;", | |
5af949e3 | 8345 | phex_nz (start_addr, addr_size), |
08388c79 DE |
8346 | phex_nz (search_space_len, sizeof (search_space_len))); |
8347 | max_size -= (i + 1); | |
8348 | ||
8349 | /* Escape as much data as fits into rs->buf. */ | |
8350 | escaped_pattern_len = | |
8351 | remote_escape_output (pattern, pattern_len, (rs->buf + i), | |
8352 | &used_pattern_len, max_size); | |
8353 | ||
8354 | /* Bail if the pattern is too large. */ | |
8355 | if (used_pattern_len != pattern_len) | |
9b20d036 | 8356 | error (_("Pattern is too large to transmit to remote target.")); |
08388c79 DE |
8357 | |
8358 | if (putpkt_binary (rs->buf, i + escaped_pattern_len) < 0 | |
8359 | || getpkt_sane (&rs->buf, &rs->buf_size, 0) < 0 | |
8360 | || packet_ok (rs->buf, packet) != PACKET_OK) | |
8361 | { | |
8362 | /* The request may not have worked because the command is not | |
8363 | supported. If so, fall back to the simple way. */ | |
8364 | if (packet->support == PACKET_DISABLE) | |
8365 | { | |
8366 | return simple_search_memory (ops, start_addr, search_space_len, | |
8367 | pattern, pattern_len, found_addrp); | |
8368 | } | |
8369 | return -1; | |
8370 | } | |
8371 | ||
8372 | if (rs->buf[0] == '0') | |
8373 | found = 0; | |
8374 | else if (rs->buf[0] == '1') | |
8375 | { | |
8376 | found = 1; | |
8377 | if (rs->buf[1] != ',') | |
10e0fa18 | 8378 | error (_("Unknown qSearch:memory reply: %s"), rs->buf); |
08388c79 DE |
8379 | unpack_varlen_hex (rs->buf + 2, &found_addr); |
8380 | *found_addrp = found_addr; | |
8381 | } | |
8382 | else | |
10e0fa18 | 8383 | error (_("Unknown qSearch:memory reply: %s"), rs->buf); |
08388c79 DE |
8384 | |
8385 | return found; | |
8386 | } | |
8387 | ||
96baa820 JM |
8388 | static void |
8389 | remote_rcmd (char *command, | |
d9fcf2fb | 8390 | struct ui_file *outbuf) |
96baa820 | 8391 | { |
d01949b6 | 8392 | struct remote_state *rs = get_remote_state (); |
2e9f7625 | 8393 | char *p = rs->buf; |
96baa820 JM |
8394 | |
8395 | if (!remote_desc) | |
8a3fe4f8 | 8396 | error (_("remote rcmd is only available after target open")); |
96baa820 | 8397 | |
23860348 | 8398 | /* Send a NULL command across as an empty command. */ |
7be570e7 JM |
8399 | if (command == NULL) |
8400 | command = ""; | |
8401 | ||
23860348 | 8402 | /* The query prefix. */ |
2e9f7625 DJ |
8403 | strcpy (rs->buf, "qRcmd,"); |
8404 | p = strchr (rs->buf, '\0'); | |
96baa820 | 8405 | |
3e43a32a MS |
8406 | if ((strlen (rs->buf) + strlen (command) * 2 + 8/*misc*/) |
8407 | > get_remote_packet_size ()) | |
8a3fe4f8 | 8408 | error (_("\"monitor\" command ``%s'' is too long."), command); |
96baa820 | 8409 | |
23860348 | 8410 | /* Encode the actual command. */ |
cfd77fa1 | 8411 | bin2hex ((gdb_byte *) command, p, 0); |
96baa820 | 8412 | |
6d820c5c | 8413 | if (putpkt (rs->buf) < 0) |
8a3fe4f8 | 8414 | error (_("Communication problem with target.")); |
96baa820 JM |
8415 | |
8416 | /* get/display the response */ | |
8417 | while (1) | |
8418 | { | |
2e9f7625 DJ |
8419 | char *buf; |
8420 | ||
00bf0b85 | 8421 | /* XXX - see also remote_get_noisy_reply(). */ |
2e9f7625 | 8422 | rs->buf[0] = '\0'; |
6d820c5c | 8423 | getpkt (&rs->buf, &rs->buf_size, 0); |
2e9f7625 | 8424 | buf = rs->buf; |
96baa820 | 8425 | if (buf[0] == '\0') |
8a3fe4f8 | 8426 | error (_("Target does not support this command.")); |
96baa820 JM |
8427 | if (buf[0] == 'O' && buf[1] != 'K') |
8428 | { | |
23860348 | 8429 | remote_console_output (buf + 1); /* 'O' message from stub. */ |
96baa820 JM |
8430 | continue; |
8431 | } | |
8432 | if (strcmp (buf, "OK") == 0) | |
8433 | break; | |
7be570e7 JM |
8434 | if (strlen (buf) == 3 && buf[0] == 'E' |
8435 | && isdigit (buf[1]) && isdigit (buf[2])) | |
8436 | { | |
8a3fe4f8 | 8437 | error (_("Protocol error with Rcmd")); |
7be570e7 | 8438 | } |
96baa820 JM |
8439 | for (p = buf; p[0] != '\0' && p[1] != '\0'; p += 2) |
8440 | { | |
8441 | char c = (fromhex (p[0]) << 4) + fromhex (p[1]); | |
a744cf53 | 8442 | |
96baa820 JM |
8443 | fputc_unfiltered (c, outbuf); |
8444 | } | |
8445 | break; | |
8446 | } | |
8447 | } | |
8448 | ||
fd79ecee DJ |
8449 | static VEC(mem_region_s) * |
8450 | remote_memory_map (struct target_ops *ops) | |
8451 | { | |
8452 | VEC(mem_region_s) *result = NULL; | |
8453 | char *text = target_read_stralloc (¤t_target, | |
8454 | TARGET_OBJECT_MEMORY_MAP, NULL); | |
8455 | ||
8456 | if (text) | |
8457 | { | |
8458 | struct cleanup *back_to = make_cleanup (xfree, text); | |
a744cf53 | 8459 | |
fd79ecee DJ |
8460 | result = parse_memory_map (text); |
8461 | do_cleanups (back_to); | |
8462 | } | |
8463 | ||
8464 | return result; | |
8465 | } | |
8466 | ||
c906108c | 8467 | static void |
fba45db2 | 8468 | packet_command (char *args, int from_tty) |
c906108c | 8469 | { |
d01949b6 | 8470 | struct remote_state *rs = get_remote_state (); |
c906108c | 8471 | |
c5aa993b | 8472 | if (!remote_desc) |
8a3fe4f8 | 8473 | error (_("command can only be used with remote target")); |
c906108c | 8474 | |
c5aa993b | 8475 | if (!args) |
8a3fe4f8 | 8476 | error (_("remote-packet command requires packet text as argument")); |
c906108c SS |
8477 | |
8478 | puts_filtered ("sending: "); | |
8479 | print_packet (args); | |
8480 | puts_filtered ("\n"); | |
8481 | putpkt (args); | |
8482 | ||
6d820c5c | 8483 | getpkt (&rs->buf, &rs->buf_size, 0); |
c906108c | 8484 | puts_filtered ("received: "); |
6d820c5c | 8485 | print_packet (rs->buf); |
c906108c SS |
8486 | puts_filtered ("\n"); |
8487 | } | |
8488 | ||
8489 | #if 0 | |
23860348 | 8490 | /* --------- UNIT_TEST for THREAD oriented PACKETS ------------------- */ |
c906108c | 8491 | |
a14ed312 | 8492 | static void display_thread_info (struct gdb_ext_thread_info *info); |
c906108c | 8493 | |
a14ed312 | 8494 | static void threadset_test_cmd (char *cmd, int tty); |
c906108c | 8495 | |
a14ed312 | 8496 | static void threadalive_test (char *cmd, int tty); |
c906108c | 8497 | |
a14ed312 | 8498 | static void threadlist_test_cmd (char *cmd, int tty); |
c906108c | 8499 | |
23860348 | 8500 | int get_and_display_threadinfo (threadref *ref); |
c906108c | 8501 | |
a14ed312 | 8502 | static void threadinfo_test_cmd (char *cmd, int tty); |
c906108c | 8503 | |
23860348 | 8504 | static int thread_display_step (threadref *ref, void *context); |
c906108c | 8505 | |
a14ed312 | 8506 | static void threadlist_update_test_cmd (char *cmd, int tty); |
c906108c | 8507 | |
a14ed312 | 8508 | static void init_remote_threadtests (void); |
c906108c | 8509 | |
23860348 | 8510 | #define SAMPLE_THREAD 0x05060708 /* Truncated 64 bit threadid. */ |
c906108c SS |
8511 | |
8512 | static void | |
fba45db2 | 8513 | threadset_test_cmd (char *cmd, int tty) |
c906108c SS |
8514 | { |
8515 | int sample_thread = SAMPLE_THREAD; | |
8516 | ||
a3f17187 | 8517 | printf_filtered (_("Remote threadset test\n")); |
79d7f229 | 8518 | set_general_thread (sample_thread); |
c906108c SS |
8519 | } |
8520 | ||
8521 | ||
8522 | static void | |
fba45db2 | 8523 | threadalive_test (char *cmd, int tty) |
c906108c SS |
8524 | { |
8525 | int sample_thread = SAMPLE_THREAD; | |
79d7f229 PA |
8526 | int pid = ptid_get_pid (inferior_ptid); |
8527 | ptid_t ptid = ptid_build (pid, 0, sample_thread); | |
c906108c | 8528 | |
79d7f229 | 8529 | if (remote_thread_alive (ptid)) |
c906108c SS |
8530 | printf_filtered ("PASS: Thread alive test\n"); |
8531 | else | |
8532 | printf_filtered ("FAIL: Thread alive test\n"); | |
8533 | } | |
8534 | ||
23860348 | 8535 | void output_threadid (char *title, threadref *ref); |
c906108c SS |
8536 | |
8537 | void | |
fba45db2 | 8538 | output_threadid (char *title, threadref *ref) |
c906108c SS |
8539 | { |
8540 | char hexid[20]; | |
8541 | ||
23860348 | 8542 | pack_threadid (&hexid[0], ref); /* Convert threead id into hex. */ |
c906108c SS |
8543 | hexid[16] = 0; |
8544 | printf_filtered ("%s %s\n", title, (&hexid[0])); | |
8545 | } | |
8546 | ||
8547 | static void | |
fba45db2 | 8548 | threadlist_test_cmd (char *cmd, int tty) |
c906108c SS |
8549 | { |
8550 | int startflag = 1; | |
8551 | threadref nextthread; | |
8552 | int done, result_count; | |
8553 | threadref threadlist[3]; | |
8554 | ||
8555 | printf_filtered ("Remote Threadlist test\n"); | |
8556 | if (!remote_get_threadlist (startflag, &nextthread, 3, &done, | |
8557 | &result_count, &threadlist[0])) | |
8558 | printf_filtered ("FAIL: threadlist test\n"); | |
8559 | else | |
8560 | { | |
8561 | threadref *scan = threadlist; | |
8562 | threadref *limit = scan + result_count; | |
8563 | ||
8564 | while (scan < limit) | |
8565 | output_threadid (" thread ", scan++); | |
8566 | } | |
8567 | } | |
8568 | ||
8569 | void | |
fba45db2 | 8570 | display_thread_info (struct gdb_ext_thread_info *info) |
c906108c SS |
8571 | { |
8572 | output_threadid ("Threadid: ", &info->threadid); | |
8573 | printf_filtered ("Name: %s\n ", info->shortname); | |
8574 | printf_filtered ("State: %s\n", info->display); | |
8575 | printf_filtered ("other: %s\n\n", info->more_display); | |
8576 | } | |
8577 | ||
8578 | int | |
fba45db2 | 8579 | get_and_display_threadinfo (threadref *ref) |
c906108c SS |
8580 | { |
8581 | int result; | |
8582 | int set; | |
8583 | struct gdb_ext_thread_info threadinfo; | |
8584 | ||
8585 | set = TAG_THREADID | TAG_EXISTS | TAG_THREADNAME | |
8586 | | TAG_MOREDISPLAY | TAG_DISPLAY; | |
8587 | if (0 != (result = remote_get_threadinfo (ref, set, &threadinfo))) | |
8588 | display_thread_info (&threadinfo); | |
8589 | return result; | |
8590 | } | |
8591 | ||
8592 | static void | |
fba45db2 | 8593 | threadinfo_test_cmd (char *cmd, int tty) |
c906108c SS |
8594 | { |
8595 | int athread = SAMPLE_THREAD; | |
8596 | threadref thread; | |
8597 | int set; | |
8598 | ||
8599 | int_to_threadref (&thread, athread); | |
8600 | printf_filtered ("Remote Threadinfo test\n"); | |
8601 | if (!get_and_display_threadinfo (&thread)) | |
8602 | printf_filtered ("FAIL cannot get thread info\n"); | |
8603 | } | |
8604 | ||
8605 | static int | |
fba45db2 | 8606 | thread_display_step (threadref *ref, void *context) |
c906108c SS |
8607 | { |
8608 | /* output_threadid(" threadstep ",ref); *//* simple test */ | |
8609 | return get_and_display_threadinfo (ref); | |
8610 | } | |
8611 | ||
8612 | static void | |
fba45db2 | 8613 | threadlist_update_test_cmd (char *cmd, int tty) |
c906108c SS |
8614 | { |
8615 | printf_filtered ("Remote Threadlist update test\n"); | |
8616 | remote_threadlist_iterator (thread_display_step, 0, CRAZY_MAX_THREADS); | |
8617 | } | |
8618 | ||
8619 | static void | |
8620 | init_remote_threadtests (void) | |
8621 | { | |
3e43a32a MS |
8622 | add_com ("tlist", class_obscure, threadlist_test_cmd, |
8623 | _("Fetch and print the remote list of " | |
8624 | "thread identifiers, one pkt only")); | |
c906108c | 8625 | add_com ("tinfo", class_obscure, threadinfo_test_cmd, |
1bedd215 | 8626 | _("Fetch and display info about one thread")); |
c906108c | 8627 | add_com ("tset", class_obscure, threadset_test_cmd, |
1bedd215 | 8628 | _("Test setting to a different thread")); |
c906108c | 8629 | add_com ("tupd", class_obscure, threadlist_update_test_cmd, |
1bedd215 | 8630 | _("Iterate through updating all remote thread info")); |
c906108c | 8631 | add_com ("talive", class_obscure, threadalive_test, |
1bedd215 | 8632 | _(" Remote thread alive test ")); |
c906108c SS |
8633 | } |
8634 | ||
8635 | #endif /* 0 */ | |
8636 | ||
f3fb8c85 MS |
8637 | /* Convert a thread ID to a string. Returns the string in a static |
8638 | buffer. */ | |
8639 | ||
8640 | static char * | |
117de6a9 | 8641 | remote_pid_to_str (struct target_ops *ops, ptid_t ptid) |
f3fb8c85 | 8642 | { |
79d7f229 | 8643 | static char buf[64]; |
82f73884 | 8644 | struct remote_state *rs = get_remote_state (); |
f3fb8c85 | 8645 | |
ecd0ada5 PA |
8646 | if (ptid_is_pid (ptid)) |
8647 | { | |
8648 | /* Printing an inferior target id. */ | |
8649 | ||
8650 | /* When multi-process extensions are off, there's no way in the | |
8651 | remote protocol to know the remote process id, if there's any | |
8652 | at all. There's one exception --- when we're connected with | |
8653 | target extended-remote, and we manually attached to a process | |
8654 | with "attach PID". We don't record anywhere a flag that | |
8655 | allows us to distinguish that case from the case of | |
8656 | connecting with extended-remote and the stub already being | |
8657 | attached to a process, and reporting yes to qAttached, hence | |
8658 | no smart special casing here. */ | |
8659 | if (!remote_multi_process_p (rs)) | |
8660 | { | |
8661 | xsnprintf (buf, sizeof buf, "Remote target"); | |
8662 | return buf; | |
8663 | } | |
8664 | ||
8665 | return normal_pid_to_str (ptid); | |
82f73884 | 8666 | } |
ecd0ada5 | 8667 | else |
79d7f229 | 8668 | { |
ecd0ada5 PA |
8669 | if (ptid_equal (magic_null_ptid, ptid)) |
8670 | xsnprintf (buf, sizeof buf, "Thread <main>"); | |
8671 | else if (remote_multi_process_p (rs)) | |
8672 | xsnprintf (buf, sizeof buf, "Thread %d.%ld", | |
8673 | ptid_get_pid (ptid), ptid_get_tid (ptid)); | |
8674 | else | |
8675 | xsnprintf (buf, sizeof buf, "Thread %ld", | |
8676 | ptid_get_tid (ptid)); | |
79d7f229 PA |
8677 | return buf; |
8678 | } | |
f3fb8c85 MS |
8679 | } |
8680 | ||
38691318 KB |
8681 | /* Get the address of the thread local variable in OBJFILE which is |
8682 | stored at OFFSET within the thread local storage for thread PTID. */ | |
8683 | ||
8684 | static CORE_ADDR | |
117de6a9 PA |
8685 | remote_get_thread_local_address (struct target_ops *ops, |
8686 | ptid_t ptid, CORE_ADDR lm, CORE_ADDR offset) | |
38691318 | 8687 | { |
444abaca | 8688 | if (remote_protocol_packets[PACKET_qGetTLSAddr].support != PACKET_DISABLE) |
38691318 KB |
8689 | { |
8690 | struct remote_state *rs = get_remote_state (); | |
6d820c5c | 8691 | char *p = rs->buf; |
82f73884 | 8692 | char *endp = rs->buf + get_remote_packet_size (); |
571dd617 | 8693 | enum packet_result result; |
38691318 KB |
8694 | |
8695 | strcpy (p, "qGetTLSAddr:"); | |
8696 | p += strlen (p); | |
82f73884 | 8697 | p = write_ptid (p, endp, ptid); |
38691318 KB |
8698 | *p++ = ','; |
8699 | p += hexnumstr (p, offset); | |
8700 | *p++ = ','; | |
8701 | p += hexnumstr (p, lm); | |
8702 | *p++ = '\0'; | |
8703 | ||
6d820c5c DJ |
8704 | putpkt (rs->buf); |
8705 | getpkt (&rs->buf, &rs->buf_size, 0); | |
3e43a32a MS |
8706 | result = packet_ok (rs->buf, |
8707 | &remote_protocol_packets[PACKET_qGetTLSAddr]); | |
571dd617 | 8708 | if (result == PACKET_OK) |
38691318 KB |
8709 | { |
8710 | ULONGEST result; | |
8711 | ||
6d820c5c | 8712 | unpack_varlen_hex (rs->buf, &result); |
38691318 KB |
8713 | return result; |
8714 | } | |
571dd617 | 8715 | else if (result == PACKET_UNKNOWN) |
109c3e39 AC |
8716 | throw_error (TLS_GENERIC_ERROR, |
8717 | _("Remote target doesn't support qGetTLSAddr packet")); | |
38691318 | 8718 | else |
109c3e39 AC |
8719 | throw_error (TLS_GENERIC_ERROR, |
8720 | _("Remote target failed to process qGetTLSAddr request")); | |
38691318 KB |
8721 | } |
8722 | else | |
109c3e39 AC |
8723 | throw_error (TLS_GENERIC_ERROR, |
8724 | _("TLS not supported or disabled on this target")); | |
38691318 KB |
8725 | /* Not reached. */ |
8726 | return 0; | |
8727 | } | |
8728 | ||
711e434b PM |
8729 | /* Provide thread local base, i.e. Thread Information Block address. |
8730 | Returns 1 if ptid is found and thread_local_base is non zero. */ | |
8731 | ||
8732 | int | |
8733 | remote_get_tib_address (ptid_t ptid, CORE_ADDR *addr) | |
8734 | { | |
8735 | if (remote_protocol_packets[PACKET_qGetTIBAddr].support != PACKET_DISABLE) | |
8736 | { | |
8737 | struct remote_state *rs = get_remote_state (); | |
8738 | char *p = rs->buf; | |
8739 | char *endp = rs->buf + get_remote_packet_size (); | |
8740 | enum packet_result result; | |
8741 | ||
8742 | strcpy (p, "qGetTIBAddr:"); | |
8743 | p += strlen (p); | |
8744 | p = write_ptid (p, endp, ptid); | |
8745 | *p++ = '\0'; | |
8746 | ||
8747 | putpkt (rs->buf); | |
8748 | getpkt (&rs->buf, &rs->buf_size, 0); | |
8749 | result = packet_ok (rs->buf, | |
8750 | &remote_protocol_packets[PACKET_qGetTIBAddr]); | |
8751 | if (result == PACKET_OK) | |
8752 | { | |
8753 | ULONGEST result; | |
8754 | ||
8755 | unpack_varlen_hex (rs->buf, &result); | |
8756 | if (addr) | |
8757 | *addr = (CORE_ADDR) result; | |
8758 | return 1; | |
8759 | } | |
8760 | else if (result == PACKET_UNKNOWN) | |
8761 | error (_("Remote target doesn't support qGetTIBAddr packet")); | |
8762 | else | |
8763 | error (_("Remote target failed to process qGetTIBAddr request")); | |
8764 | } | |
8765 | else | |
8766 | error (_("qGetTIBAddr not supported or disabled on this target")); | |
8767 | /* Not reached. */ | |
8768 | return 0; | |
8769 | } | |
8770 | ||
29709017 DJ |
8771 | /* Support for inferring a target description based on the current |
8772 | architecture and the size of a 'g' packet. While the 'g' packet | |
8773 | can have any size (since optional registers can be left off the | |
8774 | end), some sizes are easily recognizable given knowledge of the | |
8775 | approximate architecture. */ | |
8776 | ||
8777 | struct remote_g_packet_guess | |
8778 | { | |
8779 | int bytes; | |
8780 | const struct target_desc *tdesc; | |
8781 | }; | |
8782 | typedef struct remote_g_packet_guess remote_g_packet_guess_s; | |
8783 | DEF_VEC_O(remote_g_packet_guess_s); | |
8784 | ||
8785 | struct remote_g_packet_data | |
8786 | { | |
8787 | VEC(remote_g_packet_guess_s) *guesses; | |
8788 | }; | |
8789 | ||
8790 | static struct gdbarch_data *remote_g_packet_data_handle; | |
8791 | ||
8792 | static void * | |
8793 | remote_g_packet_data_init (struct obstack *obstack) | |
8794 | { | |
8795 | return OBSTACK_ZALLOC (obstack, struct remote_g_packet_data); | |
8796 | } | |
8797 | ||
8798 | void | |
8799 | register_remote_g_packet_guess (struct gdbarch *gdbarch, int bytes, | |
8800 | const struct target_desc *tdesc) | |
8801 | { | |
8802 | struct remote_g_packet_data *data | |
8803 | = gdbarch_data (gdbarch, remote_g_packet_data_handle); | |
8804 | struct remote_g_packet_guess new_guess, *guess; | |
8805 | int ix; | |
8806 | ||
8807 | gdb_assert (tdesc != NULL); | |
8808 | ||
8809 | for (ix = 0; | |
8810 | VEC_iterate (remote_g_packet_guess_s, data->guesses, ix, guess); | |
8811 | ix++) | |
8812 | if (guess->bytes == bytes) | |
8813 | internal_error (__FILE__, __LINE__, | |
9b20d036 | 8814 | _("Duplicate g packet description added for size %d"), |
29709017 DJ |
8815 | bytes); |
8816 | ||
8817 | new_guess.bytes = bytes; | |
8818 | new_guess.tdesc = tdesc; | |
8819 | VEC_safe_push (remote_g_packet_guess_s, data->guesses, &new_guess); | |
8820 | } | |
8821 | ||
d962ef82 DJ |
8822 | /* Return 1 if remote_read_description would do anything on this target |
8823 | and architecture, 0 otherwise. */ | |
8824 | ||
8825 | static int | |
8826 | remote_read_description_p (struct target_ops *target) | |
8827 | { | |
8828 | struct remote_g_packet_data *data | |
8829 | = gdbarch_data (target_gdbarch, remote_g_packet_data_handle); | |
8830 | ||
8831 | if (!VEC_empty (remote_g_packet_guess_s, data->guesses)) | |
8832 | return 1; | |
8833 | ||
8834 | return 0; | |
8835 | } | |
8836 | ||
29709017 DJ |
8837 | static const struct target_desc * |
8838 | remote_read_description (struct target_ops *target) | |
8839 | { | |
8840 | struct remote_g_packet_data *data | |
1cf3db46 | 8841 | = gdbarch_data (target_gdbarch, remote_g_packet_data_handle); |
29709017 | 8842 | |
d962ef82 DJ |
8843 | /* Do not try this during initial connection, when we do not know |
8844 | whether there is a running but stopped thread. */ | |
8845 | if (!target_has_execution || ptid_equal (inferior_ptid, null_ptid)) | |
8846 | return NULL; | |
8847 | ||
29709017 DJ |
8848 | if (!VEC_empty (remote_g_packet_guess_s, data->guesses)) |
8849 | { | |
8850 | struct remote_g_packet_guess *guess; | |
8851 | int ix; | |
8852 | int bytes = send_g_packet (); | |
8853 | ||
8854 | for (ix = 0; | |
8855 | VEC_iterate (remote_g_packet_guess_s, data->guesses, ix, guess); | |
8856 | ix++) | |
8857 | if (guess->bytes == bytes) | |
8858 | return guess->tdesc; | |
8859 | ||
8860 | /* We discard the g packet. A minor optimization would be to | |
8861 | hold on to it, and fill the register cache once we have selected | |
8862 | an architecture, but it's too tricky to do safely. */ | |
8863 | } | |
8864 | ||
8865 | return NULL; | |
8866 | } | |
8867 | ||
a6b151f1 DJ |
8868 | /* Remote file transfer support. This is host-initiated I/O, not |
8869 | target-initiated; for target-initiated, see remote-fileio.c. */ | |
8870 | ||
8871 | /* If *LEFT is at least the length of STRING, copy STRING to | |
8872 | *BUFFER, update *BUFFER to point to the new end of the buffer, and | |
8873 | decrease *LEFT. Otherwise raise an error. */ | |
8874 | ||
8875 | static void | |
8876 | remote_buffer_add_string (char **buffer, int *left, char *string) | |
8877 | { | |
8878 | int len = strlen (string); | |
8879 | ||
8880 | if (len > *left) | |
8881 | error (_("Packet too long for target.")); | |
8882 | ||
8883 | memcpy (*buffer, string, len); | |
8884 | *buffer += len; | |
8885 | *left -= len; | |
8886 | ||
8887 | /* NUL-terminate the buffer as a convenience, if there is | |
8888 | room. */ | |
8889 | if (*left) | |
8890 | **buffer = '\0'; | |
8891 | } | |
8892 | ||
8893 | /* If *LEFT is large enough, hex encode LEN bytes from BYTES into | |
8894 | *BUFFER, update *BUFFER to point to the new end of the buffer, and | |
8895 | decrease *LEFT. Otherwise raise an error. */ | |
8896 | ||
8897 | static void | |
8898 | remote_buffer_add_bytes (char **buffer, int *left, const gdb_byte *bytes, | |
8899 | int len) | |
8900 | { | |
8901 | if (2 * len > *left) | |
8902 | error (_("Packet too long for target.")); | |
8903 | ||
8904 | bin2hex (bytes, *buffer, len); | |
8905 | *buffer += 2 * len; | |
8906 | *left -= 2 * len; | |
8907 | ||
8908 | /* NUL-terminate the buffer as a convenience, if there is | |
8909 | room. */ | |
8910 | if (*left) | |
8911 | **buffer = '\0'; | |
8912 | } | |
8913 | ||
8914 | /* If *LEFT is large enough, convert VALUE to hex and add it to | |
8915 | *BUFFER, update *BUFFER to point to the new end of the buffer, and | |
8916 | decrease *LEFT. Otherwise raise an error. */ | |
8917 | ||
8918 | static void | |
8919 | remote_buffer_add_int (char **buffer, int *left, ULONGEST value) | |
8920 | { | |
8921 | int len = hexnumlen (value); | |
8922 | ||
8923 | if (len > *left) | |
8924 | error (_("Packet too long for target.")); | |
8925 | ||
8926 | hexnumstr (*buffer, value); | |
8927 | *buffer += len; | |
8928 | *left -= len; | |
8929 | ||
8930 | /* NUL-terminate the buffer as a convenience, if there is | |
8931 | room. */ | |
8932 | if (*left) | |
8933 | **buffer = '\0'; | |
8934 | } | |
8935 | ||
8936 | /* Parse an I/O result packet from BUFFER. Set RETCODE to the return | |
8937 | value, *REMOTE_ERRNO to the remote error number or zero if none | |
8938 | was included, and *ATTACHMENT to point to the start of the annex | |
8939 | if any. The length of the packet isn't needed here; there may | |
8940 | be NUL bytes in BUFFER, but they will be after *ATTACHMENT. | |
8941 | ||
8942 | Return 0 if the packet could be parsed, -1 if it could not. If | |
8943 | -1 is returned, the other variables may not be initialized. */ | |
8944 | ||
8945 | static int | |
8946 | remote_hostio_parse_result (char *buffer, int *retcode, | |
8947 | int *remote_errno, char **attachment) | |
8948 | { | |
8949 | char *p, *p2; | |
8950 | ||
8951 | *remote_errno = 0; | |
8952 | *attachment = NULL; | |
8953 | ||
8954 | if (buffer[0] != 'F') | |
8955 | return -1; | |
8956 | ||
8957 | errno = 0; | |
8958 | *retcode = strtol (&buffer[1], &p, 16); | |
8959 | if (errno != 0 || p == &buffer[1]) | |
8960 | return -1; | |
8961 | ||
8962 | /* Check for ",errno". */ | |
8963 | if (*p == ',') | |
8964 | { | |
8965 | errno = 0; | |
8966 | *remote_errno = strtol (p + 1, &p2, 16); | |
8967 | if (errno != 0 || p + 1 == p2) | |
8968 | return -1; | |
8969 | p = p2; | |
8970 | } | |
8971 | ||
8972 | /* Check for ";attachment". If there is no attachment, the | |
8973 | packet should end here. */ | |
8974 | if (*p == ';') | |
8975 | { | |
8976 | *attachment = p + 1; | |
8977 | return 0; | |
8978 | } | |
8979 | else if (*p == '\0') | |
8980 | return 0; | |
8981 | else | |
8982 | return -1; | |
8983 | } | |
8984 | ||
8985 | /* Send a prepared I/O packet to the target and read its response. | |
8986 | The prepared packet is in the global RS->BUF before this function | |
8987 | is called, and the answer is there when we return. | |
8988 | ||
8989 | COMMAND_BYTES is the length of the request to send, which may include | |
8990 | binary data. WHICH_PACKET is the packet configuration to check | |
8991 | before attempting a packet. If an error occurs, *REMOTE_ERRNO | |
8992 | is set to the error number and -1 is returned. Otherwise the value | |
8993 | returned by the function is returned. | |
8994 | ||
8995 | ATTACHMENT and ATTACHMENT_LEN should be non-NULL if and only if an | |
8996 | attachment is expected; an error will be reported if there's a | |
8997 | mismatch. If one is found, *ATTACHMENT will be set to point into | |
8998 | the packet buffer and *ATTACHMENT_LEN will be set to the | |
8999 | attachment's length. */ | |
9000 | ||
9001 | static int | |
9002 | remote_hostio_send_command (int command_bytes, int which_packet, | |
9003 | int *remote_errno, char **attachment, | |
9004 | int *attachment_len) | |
9005 | { | |
9006 | struct remote_state *rs = get_remote_state (); | |
9007 | int ret, bytes_read; | |
9008 | char *attachment_tmp; | |
9009 | ||
f1838a98 UW |
9010 | if (!remote_desc |
9011 | || remote_protocol_packets[which_packet].support == PACKET_DISABLE) | |
a6b151f1 DJ |
9012 | { |
9013 | *remote_errno = FILEIO_ENOSYS; | |
9014 | return -1; | |
9015 | } | |
9016 | ||
9017 | putpkt_binary (rs->buf, command_bytes); | |
9018 | bytes_read = getpkt_sane (&rs->buf, &rs->buf_size, 0); | |
9019 | ||
9020 | /* If it timed out, something is wrong. Don't try to parse the | |
9021 | buffer. */ | |
9022 | if (bytes_read < 0) | |
9023 | { | |
9024 | *remote_errno = FILEIO_EINVAL; | |
9025 | return -1; | |
9026 | } | |
9027 | ||
9028 | switch (packet_ok (rs->buf, &remote_protocol_packets[which_packet])) | |
9029 | { | |
9030 | case PACKET_ERROR: | |
9031 | *remote_errno = FILEIO_EINVAL; | |
9032 | return -1; | |
9033 | case PACKET_UNKNOWN: | |
9034 | *remote_errno = FILEIO_ENOSYS; | |
9035 | return -1; | |
9036 | case PACKET_OK: | |
9037 | break; | |
9038 | } | |
9039 | ||
9040 | if (remote_hostio_parse_result (rs->buf, &ret, remote_errno, | |
9041 | &attachment_tmp)) | |
9042 | { | |
9043 | *remote_errno = FILEIO_EINVAL; | |
9044 | return -1; | |
9045 | } | |
9046 | ||
9047 | /* Make sure we saw an attachment if and only if we expected one. */ | |
9048 | if ((attachment_tmp == NULL && attachment != NULL) | |
9049 | || (attachment_tmp != NULL && attachment == NULL)) | |
9050 | { | |
9051 | *remote_errno = FILEIO_EINVAL; | |
9052 | return -1; | |
9053 | } | |
9054 | ||
9055 | /* If an attachment was found, it must point into the packet buffer; | |
9056 | work out how many bytes there were. */ | |
9057 | if (attachment_tmp != NULL) | |
9058 | { | |
9059 | *attachment = attachment_tmp; | |
9060 | *attachment_len = bytes_read - (*attachment - rs->buf); | |
9061 | } | |
9062 | ||
9063 | return ret; | |
9064 | } | |
9065 | ||
9066 | /* Open FILENAME on the remote target, using FLAGS and MODE. Return a | |
9067 | remote file descriptor, or -1 if an error occurs (and set | |
9068 | *REMOTE_ERRNO). */ | |
9069 | ||
9070 | static int | |
9071 | remote_hostio_open (const char *filename, int flags, int mode, | |
9072 | int *remote_errno) | |
9073 | { | |
9074 | struct remote_state *rs = get_remote_state (); | |
9075 | char *p = rs->buf; | |
9076 | int left = get_remote_packet_size () - 1; | |
9077 | ||
9078 | remote_buffer_add_string (&p, &left, "vFile:open:"); | |
9079 | ||
9080 | remote_buffer_add_bytes (&p, &left, (const gdb_byte *) filename, | |
9081 | strlen (filename)); | |
9082 | remote_buffer_add_string (&p, &left, ","); | |
9083 | ||
9084 | remote_buffer_add_int (&p, &left, flags); | |
9085 | remote_buffer_add_string (&p, &left, ","); | |
9086 | ||
9087 | remote_buffer_add_int (&p, &left, mode); | |
9088 | ||
9089 | return remote_hostio_send_command (p - rs->buf, PACKET_vFile_open, | |
9090 | remote_errno, NULL, NULL); | |
9091 | } | |
9092 | ||
9093 | /* Write up to LEN bytes from WRITE_BUF to FD on the remote target. | |
9094 | Return the number of bytes written, or -1 if an error occurs (and | |
9095 | set *REMOTE_ERRNO). */ | |
9096 | ||
9097 | static int | |
9098 | remote_hostio_pwrite (int fd, const gdb_byte *write_buf, int len, | |
9099 | ULONGEST offset, int *remote_errno) | |
9100 | { | |
9101 | struct remote_state *rs = get_remote_state (); | |
9102 | char *p = rs->buf; | |
9103 | int left = get_remote_packet_size (); | |
9104 | int out_len; | |
9105 | ||
9106 | remote_buffer_add_string (&p, &left, "vFile:pwrite:"); | |
9107 | ||
9108 | remote_buffer_add_int (&p, &left, fd); | |
9109 | remote_buffer_add_string (&p, &left, ","); | |
9110 | ||
9111 | remote_buffer_add_int (&p, &left, offset); | |
9112 | remote_buffer_add_string (&p, &left, ","); | |
9113 | ||
9114 | p += remote_escape_output (write_buf, len, p, &out_len, | |
9115 | get_remote_packet_size () - (p - rs->buf)); | |
9116 | ||
9117 | return remote_hostio_send_command (p - rs->buf, PACKET_vFile_pwrite, | |
9118 | remote_errno, NULL, NULL); | |
9119 | } | |
9120 | ||
9121 | /* Read up to LEN bytes FD on the remote target into READ_BUF | |
9122 | Return the number of bytes read, or -1 if an error occurs (and | |
9123 | set *REMOTE_ERRNO). */ | |
9124 | ||
9125 | static int | |
9126 | remote_hostio_pread (int fd, gdb_byte *read_buf, int len, | |
9127 | ULONGEST offset, int *remote_errno) | |
9128 | { | |
9129 | struct remote_state *rs = get_remote_state (); | |
9130 | char *p = rs->buf; | |
9131 | char *attachment; | |
9132 | int left = get_remote_packet_size (); | |
9133 | int ret, attachment_len; | |
9134 | int read_len; | |
9135 | ||
9136 | remote_buffer_add_string (&p, &left, "vFile:pread:"); | |
9137 | ||
9138 | remote_buffer_add_int (&p, &left, fd); | |
9139 | remote_buffer_add_string (&p, &left, ","); | |
9140 | ||
9141 | remote_buffer_add_int (&p, &left, len); | |
9142 | remote_buffer_add_string (&p, &left, ","); | |
9143 | ||
9144 | remote_buffer_add_int (&p, &left, offset); | |
9145 | ||
9146 | ret = remote_hostio_send_command (p - rs->buf, PACKET_vFile_pread, | |
9147 | remote_errno, &attachment, | |
9148 | &attachment_len); | |
9149 | ||
9150 | if (ret < 0) | |
9151 | return ret; | |
9152 | ||
9153 | read_len = remote_unescape_input (attachment, attachment_len, | |
9154 | read_buf, len); | |
9155 | if (read_len != ret) | |
9156 | error (_("Read returned %d, but %d bytes."), ret, (int) read_len); | |
9157 | ||
9158 | return ret; | |
9159 | } | |
9160 | ||
9161 | /* Close FD on the remote target. Return 0, or -1 if an error occurs | |
9162 | (and set *REMOTE_ERRNO). */ | |
9163 | ||
9164 | static int | |
9165 | remote_hostio_close (int fd, int *remote_errno) | |
9166 | { | |
9167 | struct remote_state *rs = get_remote_state (); | |
9168 | char *p = rs->buf; | |
9169 | int left = get_remote_packet_size () - 1; | |
9170 | ||
9171 | remote_buffer_add_string (&p, &left, "vFile:close:"); | |
9172 | ||
9173 | remote_buffer_add_int (&p, &left, fd); | |
9174 | ||
9175 | return remote_hostio_send_command (p - rs->buf, PACKET_vFile_close, | |
9176 | remote_errno, NULL, NULL); | |
9177 | } | |
9178 | ||
9179 | /* Unlink FILENAME on the remote target. Return 0, or -1 if an error | |
9180 | occurs (and set *REMOTE_ERRNO). */ | |
9181 | ||
9182 | static int | |
9183 | remote_hostio_unlink (const char *filename, int *remote_errno) | |
9184 | { | |
9185 | struct remote_state *rs = get_remote_state (); | |
9186 | char *p = rs->buf; | |
9187 | int left = get_remote_packet_size () - 1; | |
9188 | ||
9189 | remote_buffer_add_string (&p, &left, "vFile:unlink:"); | |
9190 | ||
9191 | remote_buffer_add_bytes (&p, &left, (const gdb_byte *) filename, | |
9192 | strlen (filename)); | |
9193 | ||
9194 | return remote_hostio_send_command (p - rs->buf, PACKET_vFile_unlink, | |
9195 | remote_errno, NULL, NULL); | |
9196 | } | |
9197 | ||
9198 | static int | |
9199 | remote_fileio_errno_to_host (int errnum) | |
9200 | { | |
9201 | switch (errnum) | |
9202 | { | |
9203 | case FILEIO_EPERM: | |
9204 | return EPERM; | |
9205 | case FILEIO_ENOENT: | |
9206 | return ENOENT; | |
9207 | case FILEIO_EINTR: | |
9208 | return EINTR; | |
9209 | case FILEIO_EIO: | |
9210 | return EIO; | |
9211 | case FILEIO_EBADF: | |
9212 | return EBADF; | |
9213 | case FILEIO_EACCES: | |
9214 | return EACCES; | |
9215 | case FILEIO_EFAULT: | |
9216 | return EFAULT; | |
9217 | case FILEIO_EBUSY: | |
9218 | return EBUSY; | |
9219 | case FILEIO_EEXIST: | |
9220 | return EEXIST; | |
9221 | case FILEIO_ENODEV: | |
9222 | return ENODEV; | |
9223 | case FILEIO_ENOTDIR: | |
9224 | return ENOTDIR; | |
9225 | case FILEIO_EISDIR: | |
9226 | return EISDIR; | |
9227 | case FILEIO_EINVAL: | |
9228 | return EINVAL; | |
9229 | case FILEIO_ENFILE: | |
9230 | return ENFILE; | |
9231 | case FILEIO_EMFILE: | |
9232 | return EMFILE; | |
9233 | case FILEIO_EFBIG: | |
9234 | return EFBIG; | |
9235 | case FILEIO_ENOSPC: | |
9236 | return ENOSPC; | |
9237 | case FILEIO_ESPIPE: | |
9238 | return ESPIPE; | |
9239 | case FILEIO_EROFS: | |
9240 | return EROFS; | |
9241 | case FILEIO_ENOSYS: | |
9242 | return ENOSYS; | |
9243 | case FILEIO_ENAMETOOLONG: | |
9244 | return ENAMETOOLONG; | |
9245 | } | |
9246 | return -1; | |
9247 | } | |
9248 | ||
9249 | static char * | |
9250 | remote_hostio_error (int errnum) | |
9251 | { | |
9252 | int host_error = remote_fileio_errno_to_host (errnum); | |
9253 | ||
9254 | if (host_error == -1) | |
9255 | error (_("Unknown remote I/O error %d"), errnum); | |
9256 | else | |
9257 | error (_("Remote I/O error: %s"), safe_strerror (host_error)); | |
9258 | } | |
9259 | ||
a6b151f1 DJ |
9260 | static void |
9261 | remote_hostio_close_cleanup (void *opaque) | |
9262 | { | |
9263 | int fd = *(int *) opaque; | |
9264 | int remote_errno; | |
9265 | ||
9266 | remote_hostio_close (fd, &remote_errno); | |
9267 | } | |
9268 | ||
f1838a98 UW |
9269 | |
9270 | static void * | |
9271 | remote_bfd_iovec_open (struct bfd *abfd, void *open_closure) | |
9272 | { | |
9273 | const char *filename = bfd_get_filename (abfd); | |
9274 | int fd, remote_errno; | |
9275 | int *stream; | |
9276 | ||
9277 | gdb_assert (remote_filename_p (filename)); | |
9278 | ||
9279 | fd = remote_hostio_open (filename + 7, FILEIO_O_RDONLY, 0, &remote_errno); | |
9280 | if (fd == -1) | |
9281 | { | |
9282 | errno = remote_fileio_errno_to_host (remote_errno); | |
9283 | bfd_set_error (bfd_error_system_call); | |
9284 | return NULL; | |
9285 | } | |
9286 | ||
9287 | stream = xmalloc (sizeof (int)); | |
9288 | *stream = fd; | |
9289 | return stream; | |
9290 | } | |
9291 | ||
9292 | static int | |
9293 | remote_bfd_iovec_close (struct bfd *abfd, void *stream) | |
9294 | { | |
9295 | int fd = *(int *)stream; | |
9296 | int remote_errno; | |
9297 | ||
9298 | xfree (stream); | |
9299 | ||
9300 | /* Ignore errors on close; these may happen if the remote | |
9301 | connection was already torn down. */ | |
9302 | remote_hostio_close (fd, &remote_errno); | |
9303 | ||
9304 | return 1; | |
9305 | } | |
9306 | ||
9307 | static file_ptr | |
9308 | remote_bfd_iovec_pread (struct bfd *abfd, void *stream, void *buf, | |
9309 | file_ptr nbytes, file_ptr offset) | |
9310 | { | |
9311 | int fd = *(int *)stream; | |
9312 | int remote_errno; | |
9313 | file_ptr pos, bytes; | |
9314 | ||
9315 | pos = 0; | |
9316 | while (nbytes > pos) | |
9317 | { | |
9318 | bytes = remote_hostio_pread (fd, (char *)buf + pos, nbytes - pos, | |
9319 | offset + pos, &remote_errno); | |
9320 | if (bytes == 0) | |
9321 | /* Success, but no bytes, means end-of-file. */ | |
9322 | break; | |
9323 | if (bytes == -1) | |
9324 | { | |
9325 | errno = remote_fileio_errno_to_host (remote_errno); | |
9326 | bfd_set_error (bfd_error_system_call); | |
9327 | return -1; | |
9328 | } | |
9329 | ||
9330 | pos += bytes; | |
9331 | } | |
9332 | ||
9333 | return pos; | |
9334 | } | |
9335 | ||
9336 | static int | |
9337 | remote_bfd_iovec_stat (struct bfd *abfd, void *stream, struct stat *sb) | |
9338 | { | |
9339 | /* FIXME: We should probably implement remote_hostio_stat. */ | |
9340 | sb->st_size = INT_MAX; | |
9341 | return 0; | |
9342 | } | |
9343 | ||
9344 | int | |
9345 | remote_filename_p (const char *filename) | |
9346 | { | |
9347 | return strncmp (filename, "remote:", 7) == 0; | |
9348 | } | |
9349 | ||
9350 | bfd * | |
9351 | remote_bfd_open (const char *remote_file, const char *target) | |
9352 | { | |
9353 | return bfd_openr_iovec (remote_file, target, | |
9354 | remote_bfd_iovec_open, NULL, | |
9355 | remote_bfd_iovec_pread, | |
9356 | remote_bfd_iovec_close, | |
9357 | remote_bfd_iovec_stat); | |
9358 | } | |
9359 | ||
a6b151f1 DJ |
9360 | void |
9361 | remote_file_put (const char *local_file, const char *remote_file, int from_tty) | |
9362 | { | |
9363 | struct cleanup *back_to, *close_cleanup; | |
9364 | int retcode, fd, remote_errno, bytes, io_size; | |
9365 | FILE *file; | |
9366 | gdb_byte *buffer; | |
9367 | int bytes_in_buffer; | |
9368 | int saw_eof; | |
9369 | ULONGEST offset; | |
9370 | ||
9371 | if (!remote_desc) | |
9372 | error (_("command can only be used with remote target")); | |
9373 | ||
9374 | file = fopen (local_file, "rb"); | |
9375 | if (file == NULL) | |
9376 | perror_with_name (local_file); | |
7c8a8b04 | 9377 | back_to = make_cleanup_fclose (file); |
a6b151f1 DJ |
9378 | |
9379 | fd = remote_hostio_open (remote_file, (FILEIO_O_WRONLY | FILEIO_O_CREAT | |
9380 | | FILEIO_O_TRUNC), | |
9381 | 0700, &remote_errno); | |
9382 | if (fd == -1) | |
9383 | remote_hostio_error (remote_errno); | |
9384 | ||
9385 | /* Send up to this many bytes at once. They won't all fit in the | |
9386 | remote packet limit, so we'll transfer slightly fewer. */ | |
9387 | io_size = get_remote_packet_size (); | |
9388 | buffer = xmalloc (io_size); | |
9389 | make_cleanup (xfree, buffer); | |
9390 | ||
9391 | close_cleanup = make_cleanup (remote_hostio_close_cleanup, &fd); | |
9392 | ||
9393 | bytes_in_buffer = 0; | |
9394 | saw_eof = 0; | |
9395 | offset = 0; | |
9396 | while (bytes_in_buffer || !saw_eof) | |
9397 | { | |
9398 | if (!saw_eof) | |
9399 | { | |
3e43a32a MS |
9400 | bytes = fread (buffer + bytes_in_buffer, 1, |
9401 | io_size - bytes_in_buffer, | |
a6b151f1 DJ |
9402 | file); |
9403 | if (bytes == 0) | |
9404 | { | |
9405 | if (ferror (file)) | |
9406 | error (_("Error reading %s."), local_file); | |
9407 | else | |
9408 | { | |
9409 | /* EOF. Unless there is something still in the | |
9410 | buffer from the last iteration, we are done. */ | |
9411 | saw_eof = 1; | |
9412 | if (bytes_in_buffer == 0) | |
9413 | break; | |
9414 | } | |
9415 | } | |
9416 | } | |
9417 | else | |
9418 | bytes = 0; | |
9419 | ||
9420 | bytes += bytes_in_buffer; | |
9421 | bytes_in_buffer = 0; | |
9422 | ||
3e43a32a MS |
9423 | retcode = remote_hostio_pwrite (fd, buffer, bytes, |
9424 | offset, &remote_errno); | |
a6b151f1 DJ |
9425 | |
9426 | if (retcode < 0) | |
9427 | remote_hostio_error (remote_errno); | |
9428 | else if (retcode == 0) | |
9429 | error (_("Remote write of %d bytes returned 0!"), bytes); | |
9430 | else if (retcode < bytes) | |
9431 | { | |
9432 | /* Short write. Save the rest of the read data for the next | |
9433 | write. */ | |
9434 | bytes_in_buffer = bytes - retcode; | |
9435 | memmove (buffer, buffer + retcode, bytes_in_buffer); | |
9436 | } | |
9437 | ||
9438 | offset += retcode; | |
9439 | } | |
9440 | ||
9441 | discard_cleanups (close_cleanup); | |
9442 | if (remote_hostio_close (fd, &remote_errno)) | |
9443 | remote_hostio_error (remote_errno); | |
9444 | ||
9445 | if (from_tty) | |
9446 | printf_filtered (_("Successfully sent file \"%s\".\n"), local_file); | |
9447 | do_cleanups (back_to); | |
9448 | } | |
9449 | ||
9450 | void | |
9451 | remote_file_get (const char *remote_file, const char *local_file, int from_tty) | |
9452 | { | |
9453 | struct cleanup *back_to, *close_cleanup; | |
cea39f65 | 9454 | int fd, remote_errno, bytes, io_size; |
a6b151f1 DJ |
9455 | FILE *file; |
9456 | gdb_byte *buffer; | |
9457 | ULONGEST offset; | |
9458 | ||
9459 | if (!remote_desc) | |
9460 | error (_("command can only be used with remote target")); | |
9461 | ||
9462 | fd = remote_hostio_open (remote_file, FILEIO_O_RDONLY, 0, &remote_errno); | |
9463 | if (fd == -1) | |
9464 | remote_hostio_error (remote_errno); | |
9465 | ||
9466 | file = fopen (local_file, "wb"); | |
9467 | if (file == NULL) | |
9468 | perror_with_name (local_file); | |
7c8a8b04 | 9469 | back_to = make_cleanup_fclose (file); |
a6b151f1 DJ |
9470 | |
9471 | /* Send up to this many bytes at once. They won't all fit in the | |
9472 | remote packet limit, so we'll transfer slightly fewer. */ | |
9473 | io_size = get_remote_packet_size (); | |
9474 | buffer = xmalloc (io_size); | |
9475 | make_cleanup (xfree, buffer); | |
9476 | ||
9477 | close_cleanup = make_cleanup (remote_hostio_close_cleanup, &fd); | |
9478 | ||
9479 | offset = 0; | |
9480 | while (1) | |
9481 | { | |
9482 | bytes = remote_hostio_pread (fd, buffer, io_size, offset, &remote_errno); | |
9483 | if (bytes == 0) | |
9484 | /* Success, but no bytes, means end-of-file. */ | |
9485 | break; | |
9486 | if (bytes == -1) | |
9487 | remote_hostio_error (remote_errno); | |
9488 | ||
9489 | offset += bytes; | |
9490 | ||
9491 | bytes = fwrite (buffer, 1, bytes, file); | |
9492 | if (bytes == 0) | |
9493 | perror_with_name (local_file); | |
9494 | } | |
9495 | ||
9496 | discard_cleanups (close_cleanup); | |
9497 | if (remote_hostio_close (fd, &remote_errno)) | |
9498 | remote_hostio_error (remote_errno); | |
9499 | ||
9500 | if (from_tty) | |
9501 | printf_filtered (_("Successfully fetched file \"%s\".\n"), remote_file); | |
9502 | do_cleanups (back_to); | |
9503 | } | |
9504 | ||
9505 | void | |
9506 | remote_file_delete (const char *remote_file, int from_tty) | |
9507 | { | |
9508 | int retcode, remote_errno; | |
9509 | ||
9510 | if (!remote_desc) | |
9511 | error (_("command can only be used with remote target")); | |
9512 | ||
9513 | retcode = remote_hostio_unlink (remote_file, &remote_errno); | |
9514 | if (retcode == -1) | |
9515 | remote_hostio_error (remote_errno); | |
9516 | ||
9517 | if (from_tty) | |
9518 | printf_filtered (_("Successfully deleted file \"%s\".\n"), remote_file); | |
9519 | } | |
9520 | ||
9521 | static void | |
9522 | remote_put_command (char *args, int from_tty) | |
9523 | { | |
9524 | struct cleanup *back_to; | |
9525 | char **argv; | |
9526 | ||
d1a41061 PP |
9527 | if (args == NULL) |
9528 | error_no_arg (_("file to put")); | |
9529 | ||
9530 | argv = gdb_buildargv (args); | |
a6b151f1 DJ |
9531 | back_to = make_cleanup_freeargv (argv); |
9532 | if (argv[0] == NULL || argv[1] == NULL || argv[2] != NULL) | |
9533 | error (_("Invalid parameters to remote put")); | |
9534 | ||
9535 | remote_file_put (argv[0], argv[1], from_tty); | |
9536 | ||
9537 | do_cleanups (back_to); | |
9538 | } | |
9539 | ||
9540 | static void | |
9541 | remote_get_command (char *args, int from_tty) | |
9542 | { | |
9543 | struct cleanup *back_to; | |
9544 | char **argv; | |
9545 | ||
d1a41061 PP |
9546 | if (args == NULL) |
9547 | error_no_arg (_("file to get")); | |
9548 | ||
9549 | argv = gdb_buildargv (args); | |
a6b151f1 DJ |
9550 | back_to = make_cleanup_freeargv (argv); |
9551 | if (argv[0] == NULL || argv[1] == NULL || argv[2] != NULL) | |
9552 | error (_("Invalid parameters to remote get")); | |
9553 | ||
9554 | remote_file_get (argv[0], argv[1], from_tty); | |
9555 | ||
9556 | do_cleanups (back_to); | |
9557 | } | |
9558 | ||
9559 | static void | |
9560 | remote_delete_command (char *args, int from_tty) | |
9561 | { | |
9562 | struct cleanup *back_to; | |
9563 | char **argv; | |
9564 | ||
d1a41061 PP |
9565 | if (args == NULL) |
9566 | error_no_arg (_("file to delete")); | |
9567 | ||
9568 | argv = gdb_buildargv (args); | |
a6b151f1 DJ |
9569 | back_to = make_cleanup_freeargv (argv); |
9570 | if (argv[0] == NULL || argv[1] != NULL) | |
9571 | error (_("Invalid parameters to remote delete")); | |
9572 | ||
9573 | remote_file_delete (argv[0], from_tty); | |
9574 | ||
9575 | do_cleanups (back_to); | |
9576 | } | |
9577 | ||
9578 | static void | |
9579 | remote_command (char *args, int from_tty) | |
9580 | { | |
9581 | help_list (remote_cmdlist, "remote ", -1, gdb_stdout); | |
9582 | } | |
9583 | ||
b2175913 MS |
9584 | static int |
9585 | remote_can_execute_reverse (void) | |
9586 | { | |
40ab02ce MS |
9587 | if (remote_protocol_packets[PACKET_bs].support == PACKET_ENABLE |
9588 | || remote_protocol_packets[PACKET_bc].support == PACKET_ENABLE) | |
9589 | return 1; | |
9590 | else | |
9591 | return 0; | |
b2175913 MS |
9592 | } |
9593 | ||
74531fed PA |
9594 | static int |
9595 | remote_supports_non_stop (void) | |
9596 | { | |
9597 | return 1; | |
9598 | } | |
9599 | ||
8a305172 PA |
9600 | static int |
9601 | remote_supports_multi_process (void) | |
9602 | { | |
9603 | struct remote_state *rs = get_remote_state (); | |
a744cf53 | 9604 | |
8a305172 PA |
9605 | return remote_multi_process_p (rs); |
9606 | } | |
9607 | ||
782b2b07 SS |
9608 | int |
9609 | remote_supports_cond_tracepoints (void) | |
9610 | { | |
9611 | struct remote_state *rs = get_remote_state (); | |
a744cf53 | 9612 | |
782b2b07 SS |
9613 | return rs->cond_tracepoints; |
9614 | } | |
9615 | ||
7a697b8d SS |
9616 | int |
9617 | remote_supports_fast_tracepoints (void) | |
9618 | { | |
9619 | struct remote_state *rs = get_remote_state (); | |
a744cf53 | 9620 | |
7a697b8d SS |
9621 | return rs->fast_tracepoints; |
9622 | } | |
9623 | ||
0fb4aa4b PA |
9624 | static int |
9625 | remote_supports_static_tracepoints (void) | |
9626 | { | |
9627 | struct remote_state *rs = get_remote_state (); | |
9628 | ||
9629 | return rs->static_tracepoints; | |
9630 | } | |
9631 | ||
35b1e5cc | 9632 | static void |
ad91cd99 | 9633 | remote_trace_init (void) |
35b1e5cc SS |
9634 | { |
9635 | putpkt ("QTinit"); | |
9636 | remote_get_noisy_reply (&target_buf, &target_buf_size); | |
ad91cd99 | 9637 | if (strcmp (target_buf, "OK") != 0) |
35b1e5cc SS |
9638 | error (_("Target does not support this command.")); |
9639 | } | |
9640 | ||
9641 | static void free_actions_list (char **actions_list); | |
9642 | static void free_actions_list_cleanup_wrapper (void *); | |
9643 | static void | |
9644 | free_actions_list_cleanup_wrapper (void *al) | |
9645 | { | |
9646 | free_actions_list (al); | |
9647 | } | |
9648 | ||
9649 | static void | |
9650 | free_actions_list (char **actions_list) | |
9651 | { | |
9652 | int ndx; | |
9653 | ||
9654 | if (actions_list == 0) | |
9655 | return; | |
9656 | ||
9657 | for (ndx = 0; actions_list[ndx]; ndx++) | |
9658 | xfree (actions_list[ndx]); | |
9659 | ||
9660 | xfree (actions_list); | |
9661 | } | |
9662 | ||
409873ef SS |
9663 | /* Recursive routine to walk through command list including loops, and |
9664 | download packets for each command. */ | |
9665 | ||
9666 | static void | |
9667 | remote_download_command_source (int num, ULONGEST addr, | |
9668 | struct command_line *cmds) | |
9669 | { | |
9670 | struct remote_state *rs = get_remote_state (); | |
9671 | struct command_line *cmd; | |
9672 | ||
9673 | for (cmd = cmds; cmd; cmd = cmd->next) | |
9674 | { | |
0df8b418 | 9675 | QUIT; /* Allow user to bail out with ^C. */ |
409873ef SS |
9676 | strcpy (rs->buf, "QTDPsrc:"); |
9677 | encode_source_string (num, addr, "cmd", cmd->line, | |
9678 | rs->buf + strlen (rs->buf), | |
9679 | rs->buf_size - strlen (rs->buf)); | |
9680 | putpkt (rs->buf); | |
9681 | remote_get_noisy_reply (&target_buf, &target_buf_size); | |
9682 | if (strcmp (target_buf, "OK")) | |
9683 | warning (_("Target does not support source download.")); | |
9684 | ||
9685 | if (cmd->control_type == while_control | |
9686 | || cmd->control_type == while_stepping_control) | |
9687 | { | |
9688 | remote_download_command_source (num, addr, *cmd->body_list); | |
9689 | ||
0df8b418 | 9690 | QUIT; /* Allow user to bail out with ^C. */ |
409873ef SS |
9691 | strcpy (rs->buf, "QTDPsrc:"); |
9692 | encode_source_string (num, addr, "cmd", "end", | |
9693 | rs->buf + strlen (rs->buf), | |
9694 | rs->buf_size - strlen (rs->buf)); | |
9695 | putpkt (rs->buf); | |
9696 | remote_get_noisy_reply (&target_buf, &target_buf_size); | |
9697 | if (strcmp (target_buf, "OK")) | |
9698 | warning (_("Target does not support source download.")); | |
9699 | } | |
9700 | } | |
9701 | } | |
9702 | ||
35b1e5cc SS |
9703 | static void |
9704 | remote_download_tracepoint (struct breakpoint *t) | |
9705 | { | |
9355b391 | 9706 | struct bp_location *loc; |
35b1e5cc | 9707 | CORE_ADDR tpaddr; |
409873ef | 9708 | char addrbuf[40]; |
35b1e5cc SS |
9709 | char buf[2048]; |
9710 | char **tdp_actions; | |
9711 | char **stepping_actions; | |
9712 | int ndx; | |
9713 | struct cleanup *old_chain = NULL; | |
9714 | struct agent_expr *aexpr; | |
9715 | struct cleanup *aexpr_chain = NULL; | |
9716 | char *pkt; | |
9717 | ||
9355b391 SS |
9718 | /* Iterate over all the tracepoint locations. It's up to the target to |
9719 | notice multiple tracepoint packets with the same number but different | |
9720 | addresses, and treat them as multiple locations. */ | |
9721 | for (loc = t->loc; loc; loc = loc->next) | |
9722 | { | |
9723 | encode_actions (t, loc, &tdp_actions, &stepping_actions); | |
9724 | old_chain = make_cleanup (free_actions_list_cleanup_wrapper, | |
9725 | tdp_actions); | |
3e43a32a MS |
9726 | (void) make_cleanup (free_actions_list_cleanup_wrapper, |
9727 | stepping_actions); | |
9355b391 SS |
9728 | |
9729 | tpaddr = loc->address; | |
409873ef | 9730 | sprintf_vma (addrbuf, tpaddr); |
9355b391 | 9731 | sprintf (buf, "QTDP:%x:%s:%c:%lx:%x", t->number, |
409873ef | 9732 | addrbuf, /* address */ |
9355b391 SS |
9733 | (t->enable_state == bp_enabled ? 'E' : 'D'), |
9734 | t->step_count, t->pass_count); | |
9735 | /* Fast tracepoints are mostly handled by the target, but we can | |
9736 | tell the target how big of an instruction block should be moved | |
9737 | around. */ | |
9738 | if (t->type == bp_fast_tracepoint) | |
35b1e5cc | 9739 | { |
9355b391 SS |
9740 | /* Only test for support at download time; we may not know |
9741 | target capabilities at definition time. */ | |
9742 | if (remote_supports_fast_tracepoints ()) | |
9743 | { | |
9744 | int isize; | |
35b1e5cc | 9745 | |
9355b391 SS |
9746 | if (gdbarch_fast_tracepoint_valid_at (target_gdbarch, |
9747 | tpaddr, &isize, NULL)) | |
9748 | sprintf (buf + strlen (buf), ":F%x", isize); | |
9749 | else | |
9750 | /* If it passed validation at definition but fails now, | |
9751 | something is very wrong. */ | |
9752 | internal_error (__FILE__, __LINE__, | |
9b20d036 MS |
9753 | _("Fast tracepoint not " |
9754 | "valid during download")); | |
9355b391 | 9755 | } |
35b1e5cc | 9756 | else |
9355b391 SS |
9757 | /* Fast tracepoints are functionally identical to regular |
9758 | tracepoints, so don't take lack of support as a reason to | |
9759 | give up on the trace run. */ | |
3e43a32a MS |
9760 | warning (_("Target does not support fast tracepoints, " |
9761 | "downloading %d as regular tracepoint"), t->number); | |
35b1e5cc | 9762 | } |
0fb4aa4b PA |
9763 | else if (t->type == bp_static_tracepoint) |
9764 | { | |
9765 | /* Only test for support at download time; we may not know | |
9766 | target capabilities at definition time. */ | |
9767 | if (remote_supports_static_tracepoints ()) | |
9768 | { | |
9769 | struct static_tracepoint_marker marker; | |
9770 | ||
9771 | if (target_static_tracepoint_marker_at (tpaddr, &marker)) | |
9772 | strcat (buf, ":S"); | |
9773 | else | |
74232302 | 9774 | error (_("Static tracepoint not valid during download")); |
0fb4aa4b PA |
9775 | } |
9776 | else | |
9777 | /* Fast tracepoints are functionally identical to regular | |
9778 | tracepoints, so don't take lack of support as a reason | |
9779 | to give up on the trace run. */ | |
9780 | error (_("Target does not support static tracepoints")); | |
9781 | } | |
9355b391 SS |
9782 | /* If the tracepoint has a conditional, make it into an agent |
9783 | expression and append to the definition. */ | |
9784 | if (loc->cond) | |
35b1e5cc | 9785 | { |
9355b391 SS |
9786 | /* Only test support at download time, we may not know target |
9787 | capabilities at definition time. */ | |
9788 | if (remote_supports_cond_tracepoints ()) | |
9789 | { | |
9790 | aexpr = gen_eval_for_expr (tpaddr, loc->cond); | |
9791 | aexpr_chain = make_cleanup_free_agent_expr (aexpr); | |
9792 | sprintf (buf + strlen (buf), ":X%x,", aexpr->len); | |
9793 | pkt = buf + strlen (buf); | |
9794 | for (ndx = 0; ndx < aexpr->len; ++ndx) | |
9795 | pkt = pack_hex_byte (pkt, aexpr->buf[ndx]); | |
9796 | *pkt = '\0'; | |
9797 | do_cleanups (aexpr_chain); | |
9798 | } | |
9799 | else | |
3e43a32a MS |
9800 | warning (_("Target does not support conditional tracepoints, " |
9801 | "ignoring tp %d cond"), t->number); | |
35b1e5cc | 9802 | } |
35b1e5cc | 9803 | |
a7bdde9e | 9804 | if (t->commands || *default_collect) |
9355b391 SS |
9805 | strcat (buf, "-"); |
9806 | putpkt (buf); | |
9807 | remote_get_noisy_reply (&target_buf, &target_buf_size); | |
9808 | if (strcmp (target_buf, "OK")) | |
9809 | error (_("Target does not support tracepoints.")); | |
35b1e5cc | 9810 | |
9355b391 SS |
9811 | /* do_single_steps (t); */ |
9812 | if (tdp_actions) | |
35b1e5cc | 9813 | { |
9355b391 SS |
9814 | for (ndx = 0; tdp_actions[ndx]; ndx++) |
9815 | { | |
0df8b418 | 9816 | QUIT; /* Allow user to bail out with ^C. */ |
9355b391 | 9817 | sprintf (buf, "QTDP:-%x:%s:%s%c", |
409873ef | 9818 | t->number, addrbuf, /* address */ |
9355b391 SS |
9819 | tdp_actions[ndx], |
9820 | ((tdp_actions[ndx + 1] || stepping_actions) | |
9821 | ? '-' : 0)); | |
9822 | putpkt (buf); | |
9823 | remote_get_noisy_reply (&target_buf, | |
9824 | &target_buf_size); | |
9825 | if (strcmp (target_buf, "OK")) | |
9826 | error (_("Error on target while setting tracepoints.")); | |
9827 | } | |
35b1e5cc | 9828 | } |
9355b391 | 9829 | if (stepping_actions) |
35b1e5cc | 9830 | { |
9355b391 SS |
9831 | for (ndx = 0; stepping_actions[ndx]; ndx++) |
9832 | { | |
0df8b418 | 9833 | QUIT; /* Allow user to bail out with ^C. */ |
9355b391 | 9834 | sprintf (buf, "QTDP:-%x:%s:%s%s%s", |
409873ef | 9835 | t->number, addrbuf, /* address */ |
9355b391 SS |
9836 | ((ndx == 0) ? "S" : ""), |
9837 | stepping_actions[ndx], | |
9838 | (stepping_actions[ndx + 1] ? "-" : "")); | |
9839 | putpkt (buf); | |
9840 | remote_get_noisy_reply (&target_buf, | |
9841 | &target_buf_size); | |
9842 | if (strcmp (target_buf, "OK")) | |
9843 | error (_("Error on target while setting tracepoints.")); | |
9844 | } | |
35b1e5cc | 9845 | } |
409873ef | 9846 | |
3e43a32a MS |
9847 | if (remote_protocol_packets[PACKET_TracepointSource].support |
9848 | == PACKET_ENABLE) | |
409873ef SS |
9849 | { |
9850 | if (t->addr_string) | |
9851 | { | |
9852 | strcpy (buf, "QTDPsrc:"); | |
9853 | encode_source_string (t->number, loc->address, | |
9854 | "at", t->addr_string, buf + strlen (buf), | |
9855 | 2048 - strlen (buf)); | |
9856 | ||
9857 | putpkt (buf); | |
9858 | remote_get_noisy_reply (&target_buf, &target_buf_size); | |
9859 | if (strcmp (target_buf, "OK")) | |
9860 | warning (_("Target does not support source download.")); | |
9861 | } | |
9862 | if (t->cond_string) | |
9863 | { | |
9864 | strcpy (buf, "QTDPsrc:"); | |
9865 | encode_source_string (t->number, loc->address, | |
9866 | "cond", t->cond_string, buf + strlen (buf), | |
9867 | 2048 - strlen (buf)); | |
9868 | putpkt (buf); | |
9869 | remote_get_noisy_reply (&target_buf, &target_buf_size); | |
9870 | if (strcmp (target_buf, "OK")) | |
9871 | warning (_("Target does not support source download.")); | |
9872 | } | |
9873 | remote_download_command_source (t->number, loc->address, | |
5cea2a26 | 9874 | breakpoint_commands (t)); |
409873ef SS |
9875 | } |
9876 | ||
9355b391 | 9877 | do_cleanups (old_chain); |
35b1e5cc | 9878 | } |
35b1e5cc SS |
9879 | } |
9880 | ||
9881 | static void | |
9882 | remote_download_trace_state_variable (struct trace_state_variable *tsv) | |
9883 | { | |
9884 | struct remote_state *rs = get_remote_state (); | |
00bf0b85 | 9885 | char *p; |
35b1e5cc | 9886 | |
00bf0b85 SS |
9887 | sprintf (rs->buf, "QTDV:%x:%s:%x:", |
9888 | tsv->number, phex ((ULONGEST) tsv->initial_value, 8), tsv->builtin); | |
9889 | p = rs->buf + strlen (rs->buf); | |
9890 | if ((p - rs->buf) + strlen (tsv->name) * 2 >= get_remote_packet_size ()) | |
9891 | error (_("Trace state variable name too long for tsv definition packet")); | |
9892 | p += 2 * bin2hex ((gdb_byte *) (tsv->name), p, 0); | |
9893 | *p++ = '\0'; | |
35b1e5cc SS |
9894 | putpkt (rs->buf); |
9895 | remote_get_noisy_reply (&target_buf, &target_buf_size); | |
ad91cd99 PA |
9896 | if (*target_buf == '\0') |
9897 | error (_("Target does not support this command.")); | |
9898 | if (strcmp (target_buf, "OK") != 0) | |
9899 | error (_("Error on target while downloading trace state variable.")); | |
35b1e5cc SS |
9900 | } |
9901 | ||
9902 | static void | |
ad91cd99 | 9903 | remote_trace_set_readonly_regions (void) |
35b1e5cc SS |
9904 | { |
9905 | asection *s; | |
9906 | bfd_size_type size; | |
608bcef2 | 9907 | bfd_vma vma; |
35b1e5cc SS |
9908 | int anysecs = 0; |
9909 | ||
9910 | if (!exec_bfd) | |
9911 | return; /* No information to give. */ | |
9912 | ||
9913 | strcpy (target_buf, "QTro"); | |
9914 | for (s = exec_bfd->sections; s; s = s->next) | |
9915 | { | |
9916 | char tmp1[40], tmp2[40]; | |
9917 | ||
9918 | if ((s->flags & SEC_LOAD) == 0 || | |
0df8b418 | 9919 | /* (s->flags & SEC_CODE) == 0 || */ |
35b1e5cc SS |
9920 | (s->flags & SEC_READONLY) == 0) |
9921 | continue; | |
9922 | ||
9923 | anysecs = 1; | |
608bcef2 | 9924 | vma = bfd_get_section_vma (,s); |
35b1e5cc | 9925 | size = bfd_get_section_size (s); |
608bcef2 HZ |
9926 | sprintf_vma (tmp1, vma); |
9927 | sprintf_vma (tmp2, vma + size); | |
35b1e5cc SS |
9928 | sprintf (target_buf + strlen (target_buf), |
9929 | ":%s,%s", tmp1, tmp2); | |
9930 | } | |
9931 | if (anysecs) | |
9932 | { | |
9933 | putpkt (target_buf); | |
9934 | getpkt (&target_buf, &target_buf_size, 0); | |
9935 | } | |
9936 | } | |
9937 | ||
9938 | static void | |
ad91cd99 | 9939 | remote_trace_start (void) |
35b1e5cc SS |
9940 | { |
9941 | putpkt ("QTStart"); | |
9942 | remote_get_noisy_reply (&target_buf, &target_buf_size); | |
ad91cd99 PA |
9943 | if (*target_buf == '\0') |
9944 | error (_("Target does not support this command.")); | |
9945 | if (strcmp (target_buf, "OK") != 0) | |
35b1e5cc SS |
9946 | error (_("Bogus reply from target: %s"), target_buf); |
9947 | } | |
9948 | ||
9949 | static int | |
00bf0b85 | 9950 | remote_get_trace_status (struct trace_status *ts) |
35b1e5cc | 9951 | { |
aa369b55 | 9952 | char *p; |
0df8b418 | 9953 | /* FIXME we need to get register block size some other way. */ |
00bf0b85 | 9954 | extern int trace_regblock_size; |
a744cf53 | 9955 | |
00bf0b85 SS |
9956 | trace_regblock_size = get_remote_arch_state ()->sizeof_g_packet; |
9957 | ||
35b1e5cc | 9958 | putpkt ("qTStatus"); |
ad91cd99 | 9959 | p = remote_get_noisy_reply (&target_buf, &target_buf_size); |
00bf0b85 SS |
9960 | |
9961 | /* If the remote target doesn't do tracing, flag it. */ | |
9962 | if (*p == '\0') | |
9963 | return -1; | |
35b1e5cc | 9964 | |
00bf0b85 SS |
9965 | /* We're working with a live target. */ |
9966 | ts->from_file = 0; | |
9967 | ||
9968 | /* Set some defaults. */ | |
9969 | ts->running_known = 0; | |
9970 | ts->stop_reason = trace_stop_reason_unknown; | |
9971 | ts->traceframe_count = -1; | |
9972 | ts->buffer_free = 0; | |
9973 | ||
9974 | if (*p++ != 'T') | |
35b1e5cc SS |
9975 | error (_("Bogus trace status reply from target: %s"), target_buf); |
9976 | ||
00bf0b85 SS |
9977 | parse_trace_status (p, ts); |
9978 | ||
9979 | return ts->running; | |
35b1e5cc SS |
9980 | } |
9981 | ||
9982 | static void | |
ad91cd99 | 9983 | remote_trace_stop (void) |
35b1e5cc SS |
9984 | { |
9985 | putpkt ("QTStop"); | |
9986 | remote_get_noisy_reply (&target_buf, &target_buf_size); | |
ad91cd99 PA |
9987 | if (*target_buf == '\0') |
9988 | error (_("Target does not support this command.")); | |
9989 | if (strcmp (target_buf, "OK") != 0) | |
35b1e5cc SS |
9990 | error (_("Bogus reply from target: %s"), target_buf); |
9991 | } | |
9992 | ||
9993 | static int | |
9994 | remote_trace_find (enum trace_find_type type, int num, | |
9995 | ULONGEST addr1, ULONGEST addr2, | |
9996 | int *tpp) | |
9997 | { | |
9998 | struct remote_state *rs = get_remote_state (); | |
9999 | char *p, *reply; | |
10000 | int target_frameno = -1, target_tracept = -1; | |
10001 | ||
e6e4e701 PA |
10002 | /* Lookups other than by absolute frame number depend on the current |
10003 | trace selected, so make sure it is correct on the remote end | |
10004 | first. */ | |
10005 | if (type != tfind_number) | |
10006 | set_remote_traceframe (); | |
10007 | ||
35b1e5cc SS |
10008 | p = rs->buf; |
10009 | strcpy (p, "QTFrame:"); | |
10010 | p = strchr (p, '\0'); | |
10011 | switch (type) | |
10012 | { | |
10013 | case tfind_number: | |
10014 | sprintf (p, "%x", num); | |
10015 | break; | |
10016 | case tfind_pc: | |
00bf0b85 | 10017 | sprintf (p, "pc:%s", phex_nz (addr1, 0)); |
35b1e5cc SS |
10018 | break; |
10019 | case tfind_tp: | |
10020 | sprintf (p, "tdp:%x", num); | |
10021 | break; | |
10022 | case tfind_range: | |
00bf0b85 | 10023 | sprintf (p, "range:%s:%s", phex_nz (addr1, 0), phex_nz (addr2, 0)); |
35b1e5cc SS |
10024 | break; |
10025 | case tfind_outside: | |
00bf0b85 | 10026 | sprintf (p, "outside:%s:%s", phex_nz (addr1, 0), phex_nz (addr2, 0)); |
35b1e5cc SS |
10027 | break; |
10028 | default: | |
9b20d036 | 10029 | error (_("Unknown trace find type %d"), type); |
35b1e5cc SS |
10030 | } |
10031 | ||
10032 | putpkt (rs->buf); | |
10033 | reply = remote_get_noisy_reply (&(rs->buf), &sizeof_pkt); | |
ad91cd99 PA |
10034 | if (*reply == '\0') |
10035 | error (_("Target does not support this command.")); | |
35b1e5cc SS |
10036 | |
10037 | while (reply && *reply) | |
10038 | switch (*reply) | |
10039 | { | |
10040 | case 'F': | |
f197e0f1 VP |
10041 | p = ++reply; |
10042 | target_frameno = (int) strtol (p, &reply, 16); | |
10043 | if (reply == p) | |
10044 | error (_("Unable to parse trace frame number")); | |
e6e4e701 PA |
10045 | /* Don't update our remote traceframe number cache on failure |
10046 | to select a remote traceframe. */ | |
f197e0f1 VP |
10047 | if (target_frameno == -1) |
10048 | return -1; | |
35b1e5cc SS |
10049 | break; |
10050 | case 'T': | |
f197e0f1 VP |
10051 | p = ++reply; |
10052 | target_tracept = (int) strtol (p, &reply, 16); | |
10053 | if (reply == p) | |
10054 | error (_("Unable to parse tracepoint number")); | |
35b1e5cc SS |
10055 | break; |
10056 | case 'O': /* "OK"? */ | |
10057 | if (reply[1] == 'K' && reply[2] == '\0') | |
10058 | reply += 2; | |
10059 | else | |
10060 | error (_("Bogus reply from target: %s"), reply); | |
10061 | break; | |
10062 | default: | |
10063 | error (_("Bogus reply from target: %s"), reply); | |
10064 | } | |
10065 | if (tpp) | |
10066 | *tpp = target_tracept; | |
e6e4e701 PA |
10067 | |
10068 | remote_traceframe_number = target_frameno; | |
35b1e5cc SS |
10069 | return target_frameno; |
10070 | } | |
10071 | ||
10072 | static int | |
10073 | remote_get_trace_state_variable_value (int tsvnum, LONGEST *val) | |
10074 | { | |
10075 | struct remote_state *rs = get_remote_state (); | |
10076 | char *reply; | |
10077 | ULONGEST uval; | |
10078 | ||
e6e4e701 PA |
10079 | set_remote_traceframe (); |
10080 | ||
35b1e5cc SS |
10081 | sprintf (rs->buf, "qTV:%x", tsvnum); |
10082 | putpkt (rs->buf); | |
10083 | reply = remote_get_noisy_reply (&target_buf, &target_buf_size); | |
10084 | if (reply && *reply) | |
10085 | { | |
10086 | if (*reply == 'V') | |
10087 | { | |
10088 | unpack_varlen_hex (reply + 1, &uval); | |
10089 | *val = (LONGEST) uval; | |
10090 | return 1; | |
10091 | } | |
10092 | } | |
10093 | return 0; | |
10094 | } | |
10095 | ||
00bf0b85 | 10096 | static int |
011aacb0 | 10097 | remote_save_trace_data (const char *filename) |
00bf0b85 SS |
10098 | { |
10099 | struct remote_state *rs = get_remote_state (); | |
10100 | char *p, *reply; | |
10101 | ||
10102 | p = rs->buf; | |
10103 | strcpy (p, "QTSave:"); | |
10104 | p += strlen (p); | |
10105 | if ((p - rs->buf) + strlen (filename) * 2 >= get_remote_packet_size ()) | |
10106 | error (_("Remote file name too long for trace save packet")); | |
10107 | p += 2 * bin2hex ((gdb_byte *) filename, p, 0); | |
10108 | *p++ = '\0'; | |
10109 | putpkt (rs->buf); | |
ad91cd99 PA |
10110 | reply = remote_get_noisy_reply (&target_buf, &target_buf_size); |
10111 | if (*reply != '\0') | |
10112 | error (_("Target does not support this command.")); | |
10113 | if (strcmp (reply, "OK") != 0) | |
10114 | error (_("Bogus reply from target: %s"), reply); | |
00bf0b85 SS |
10115 | return 0; |
10116 | } | |
10117 | ||
10118 | /* This is basically a memory transfer, but needs to be its own packet | |
10119 | because we don't know how the target actually organizes its trace | |
10120 | memory, plus we want to be able to ask for as much as possible, but | |
10121 | not be unhappy if we don't get as much as we ask for. */ | |
10122 | ||
10123 | static LONGEST | |
10124 | remote_get_raw_trace_data (gdb_byte *buf, ULONGEST offset, LONGEST len) | |
10125 | { | |
10126 | struct remote_state *rs = get_remote_state (); | |
10127 | char *reply; | |
10128 | char *p; | |
10129 | int rslt; | |
10130 | ||
10131 | p = rs->buf; | |
10132 | strcpy (p, "qTBuffer:"); | |
10133 | p += strlen (p); | |
10134 | p += hexnumstr (p, offset); | |
10135 | *p++ = ','; | |
10136 | p += hexnumstr (p, len); | |
10137 | *p++ = '\0'; | |
10138 | ||
10139 | putpkt (rs->buf); | |
10140 | reply = remote_get_noisy_reply (&target_buf, &target_buf_size); | |
10141 | if (reply && *reply) | |
10142 | { | |
10143 | /* 'l' by itself means we're at the end of the buffer and | |
10144 | there is nothing more to get. */ | |
10145 | if (*reply == 'l') | |
10146 | return 0; | |
10147 | ||
10148 | /* Convert the reply into binary. Limit the number of bytes to | |
10149 | convert according to our passed-in buffer size, rather than | |
10150 | what was returned in the packet; if the target is | |
10151 | unexpectedly generous and gives us a bigger reply than we | |
10152 | asked for, we don't want to crash. */ | |
10153 | rslt = hex2bin (target_buf, buf, len); | |
10154 | return rslt; | |
10155 | } | |
10156 | ||
10157 | /* Something went wrong, flag as an error. */ | |
10158 | return -1; | |
10159 | } | |
10160 | ||
35b1e5cc SS |
10161 | static void |
10162 | remote_set_disconnected_tracing (int val) | |
10163 | { | |
10164 | struct remote_state *rs = get_remote_state (); | |
10165 | ||
33da3f1c SS |
10166 | if (rs->disconnected_tracing) |
10167 | { | |
ad91cd99 PA |
10168 | char *reply; |
10169 | ||
33da3f1c SS |
10170 | sprintf (rs->buf, "QTDisconnected:%x", val); |
10171 | putpkt (rs->buf); | |
ad91cd99 PA |
10172 | reply = remote_get_noisy_reply (&target_buf, &target_buf_size); |
10173 | if (*reply == '\0') | |
33da3f1c | 10174 | error (_("Target does not support this command.")); |
ad91cd99 PA |
10175 | if (strcmp (reply, "OK") != 0) |
10176 | error (_("Bogus reply from target: %s"), reply); | |
33da3f1c SS |
10177 | } |
10178 | else if (val) | |
10179 | warning (_("Target does not support disconnected tracing.")); | |
35b1e5cc SS |
10180 | } |
10181 | ||
dc146f7c VP |
10182 | static int |
10183 | remote_core_of_thread (struct target_ops *ops, ptid_t ptid) | |
10184 | { | |
10185 | struct thread_info *info = find_thread_ptid (ptid); | |
a744cf53 | 10186 | |
dc146f7c VP |
10187 | if (info && info->private) |
10188 | return info->private->core; | |
10189 | return -1; | |
10190 | } | |
10191 | ||
4daf5ac0 SS |
10192 | static void |
10193 | remote_set_circular_trace_buffer (int val) | |
10194 | { | |
10195 | struct remote_state *rs = get_remote_state (); | |
ad91cd99 | 10196 | char *reply; |
4daf5ac0 SS |
10197 | |
10198 | sprintf (rs->buf, "QTBuffer:circular:%x", val); | |
10199 | putpkt (rs->buf); | |
ad91cd99 PA |
10200 | reply = remote_get_noisy_reply (&target_buf, &target_buf_size); |
10201 | if (*reply == '\0') | |
4daf5ac0 | 10202 | error (_("Target does not support this command.")); |
ad91cd99 PA |
10203 | if (strcmp (reply, "OK") != 0) |
10204 | error (_("Bogus reply from target: %s"), reply); | |
4daf5ac0 SS |
10205 | } |
10206 | ||
b3b9301e PA |
10207 | static struct traceframe_info * |
10208 | remote_traceframe_info (void) | |
10209 | { | |
10210 | char *text; | |
10211 | ||
10212 | text = target_read_stralloc (¤t_target, | |
10213 | TARGET_OBJECT_TRACEFRAME_INFO, NULL); | |
10214 | if (text != NULL) | |
10215 | { | |
10216 | struct traceframe_info *info; | |
10217 | struct cleanup *back_to = make_cleanup (xfree, text); | |
10218 | ||
10219 | info = parse_traceframe_info (text); | |
10220 | do_cleanups (back_to); | |
10221 | return info; | |
10222 | } | |
10223 | ||
10224 | return NULL; | |
10225 | } | |
10226 | ||
c906108c | 10227 | static void |
fba45db2 | 10228 | init_remote_ops (void) |
c906108c | 10229 | { |
c5aa993b | 10230 | remote_ops.to_shortname = "remote"; |
c906108c | 10231 | remote_ops.to_longname = "Remote serial target in gdb-specific protocol"; |
c5aa993b | 10232 | remote_ops.to_doc = |
c906108c | 10233 | "Use a remote computer via a serial line, using a gdb-specific protocol.\n\ |
0d06e24b JM |
10234 | Specify the serial device it is connected to\n\ |
10235 | (e.g. /dev/ttyS0, /dev/ttya, COM1, etc.)."; | |
c5aa993b JM |
10236 | remote_ops.to_open = remote_open; |
10237 | remote_ops.to_close = remote_close; | |
c906108c | 10238 | remote_ops.to_detach = remote_detach; |
6ad8ae5c | 10239 | remote_ops.to_disconnect = remote_disconnect; |
c5aa993b | 10240 | remote_ops.to_resume = remote_resume; |
c906108c SS |
10241 | remote_ops.to_wait = remote_wait; |
10242 | remote_ops.to_fetch_registers = remote_fetch_registers; | |
10243 | remote_ops.to_store_registers = remote_store_registers; | |
10244 | remote_ops.to_prepare_to_store = remote_prepare_to_store; | |
c8e73a31 | 10245 | remote_ops.deprecated_xfer_memory = remote_xfer_memory; |
c5aa993b | 10246 | remote_ops.to_files_info = remote_files_info; |
c906108c SS |
10247 | remote_ops.to_insert_breakpoint = remote_insert_breakpoint; |
10248 | remote_ops.to_remove_breakpoint = remote_remove_breakpoint; | |
3c3bea1c GS |
10249 | remote_ops.to_stopped_by_watchpoint = remote_stopped_by_watchpoint; |
10250 | remote_ops.to_stopped_data_address = remote_stopped_data_address; | |
10251 | remote_ops.to_can_use_hw_breakpoint = remote_check_watch_resources; | |
10252 | remote_ops.to_insert_hw_breakpoint = remote_insert_hw_breakpoint; | |
10253 | remote_ops.to_remove_hw_breakpoint = remote_remove_hw_breakpoint; | |
10254 | remote_ops.to_insert_watchpoint = remote_insert_watchpoint; | |
10255 | remote_ops.to_remove_watchpoint = remote_remove_watchpoint; | |
c5aa993b JM |
10256 | remote_ops.to_kill = remote_kill; |
10257 | remote_ops.to_load = generic_load; | |
c906108c | 10258 | remote_ops.to_mourn_inferior = remote_mourn; |
f0223081 | 10259 | remote_ops.to_notice_signals = remote_notice_signals; |
c906108c | 10260 | remote_ops.to_thread_alive = remote_thread_alive; |
0f71a2f6 | 10261 | remote_ops.to_find_new_threads = remote_threads_info; |
0caabb7e | 10262 | remote_ops.to_pid_to_str = remote_pid_to_str; |
cf759d3b | 10263 | remote_ops.to_extra_thread_info = remote_threads_extra_info; |
10760264 | 10264 | remote_ops.to_get_ada_task_ptid = remote_get_ada_task_ptid; |
c906108c | 10265 | remote_ops.to_stop = remote_stop; |
4b8a223f | 10266 | remote_ops.to_xfer_partial = remote_xfer_partial; |
96baa820 | 10267 | remote_ops.to_rcmd = remote_rcmd; |
49d03eab | 10268 | remote_ops.to_log_command = serial_log_command; |
38691318 | 10269 | remote_ops.to_get_thread_local_address = remote_get_thread_local_address; |
c906108c | 10270 | remote_ops.to_stratum = process_stratum; |
c35b1492 PA |
10271 | remote_ops.to_has_all_memory = default_child_has_all_memory; |
10272 | remote_ops.to_has_memory = default_child_has_memory; | |
10273 | remote_ops.to_has_stack = default_child_has_stack; | |
10274 | remote_ops.to_has_registers = default_child_has_registers; | |
10275 | remote_ops.to_has_execution = default_child_has_execution; | |
3e43a32a | 10276 | remote_ops.to_has_thread_control = tc_schedlock; /* can lock scheduler */ |
b2175913 | 10277 | remote_ops.to_can_execute_reverse = remote_can_execute_reverse; |
c5aa993b | 10278 | remote_ops.to_magic = OPS_MAGIC; |
fd79ecee | 10279 | remote_ops.to_memory_map = remote_memory_map; |
a76d924d DJ |
10280 | remote_ops.to_flash_erase = remote_flash_erase; |
10281 | remote_ops.to_flash_done = remote_flash_done; | |
29709017 | 10282 | remote_ops.to_read_description = remote_read_description; |
08388c79 | 10283 | remote_ops.to_search_memory = remote_search_memory; |
75c99385 PA |
10284 | remote_ops.to_can_async_p = remote_can_async_p; |
10285 | remote_ops.to_is_async_p = remote_is_async_p; | |
10286 | remote_ops.to_async = remote_async; | |
10287 | remote_ops.to_async_mask = remote_async_mask; | |
10288 | remote_ops.to_terminal_inferior = remote_terminal_inferior; | |
10289 | remote_ops.to_terminal_ours = remote_terminal_ours; | |
74531fed | 10290 | remote_ops.to_supports_non_stop = remote_supports_non_stop; |
8a305172 | 10291 | remote_ops.to_supports_multi_process = remote_supports_multi_process; |
35b1e5cc SS |
10292 | remote_ops.to_trace_init = remote_trace_init; |
10293 | remote_ops.to_download_tracepoint = remote_download_tracepoint; | |
3e43a32a MS |
10294 | remote_ops.to_download_trace_state_variable |
10295 | = remote_download_trace_state_variable; | |
35b1e5cc SS |
10296 | remote_ops.to_trace_set_readonly_regions = remote_trace_set_readonly_regions; |
10297 | remote_ops.to_trace_start = remote_trace_start; | |
10298 | remote_ops.to_get_trace_status = remote_get_trace_status; | |
10299 | remote_ops.to_trace_stop = remote_trace_stop; | |
10300 | remote_ops.to_trace_find = remote_trace_find; | |
3e43a32a MS |
10301 | remote_ops.to_get_trace_state_variable_value |
10302 | = remote_get_trace_state_variable_value; | |
00bf0b85 SS |
10303 | remote_ops.to_save_trace_data = remote_save_trace_data; |
10304 | remote_ops.to_upload_tracepoints = remote_upload_tracepoints; | |
3e43a32a MS |
10305 | remote_ops.to_upload_trace_state_variables |
10306 | = remote_upload_trace_state_variables; | |
00bf0b85 | 10307 | remote_ops.to_get_raw_trace_data = remote_get_raw_trace_data; |
35b1e5cc | 10308 | remote_ops.to_set_disconnected_tracing = remote_set_disconnected_tracing; |
4daf5ac0 | 10309 | remote_ops.to_set_circular_trace_buffer = remote_set_circular_trace_buffer; |
dc146f7c | 10310 | remote_ops.to_core_of_thread = remote_core_of_thread; |
4a5e7a5b | 10311 | remote_ops.to_verify_memory = remote_verify_memory; |
711e434b | 10312 | remote_ops.to_get_tib_address = remote_get_tib_address; |
d914c394 | 10313 | remote_ops.to_set_permissions = remote_set_permissions; |
0fb4aa4b PA |
10314 | remote_ops.to_static_tracepoint_marker_at |
10315 | = remote_static_tracepoint_marker_at; | |
10316 | remote_ops.to_static_tracepoint_markers_by_strid | |
10317 | = remote_static_tracepoint_markers_by_strid; | |
b3b9301e | 10318 | remote_ops.to_traceframe_info = remote_traceframe_info; |
c906108c SS |
10319 | } |
10320 | ||
10321 | /* Set up the extended remote vector by making a copy of the standard | |
10322 | remote vector and adding to it. */ | |
10323 | ||
10324 | static void | |
fba45db2 | 10325 | init_extended_remote_ops (void) |
c906108c SS |
10326 | { |
10327 | extended_remote_ops = remote_ops; | |
10328 | ||
0f71a2f6 | 10329 | extended_remote_ops.to_shortname = "extended-remote"; |
c5aa993b | 10330 | extended_remote_ops.to_longname = |
c906108c | 10331 | "Extended remote serial target in gdb-specific protocol"; |
c5aa993b | 10332 | extended_remote_ops.to_doc = |
c906108c | 10333 | "Use a remote computer via a serial line, using a gdb-specific protocol.\n\ |
39237dd1 PA |
10334 | Specify the serial device it is connected to (e.g. /dev/ttya)."; |
10335 | extended_remote_ops.to_open = extended_remote_open; | |
c906108c SS |
10336 | extended_remote_ops.to_create_inferior = extended_remote_create_inferior; |
10337 | extended_remote_ops.to_mourn_inferior = extended_remote_mourn; | |
2d717e4f DJ |
10338 | extended_remote_ops.to_detach = extended_remote_detach; |
10339 | extended_remote_ops.to_attach = extended_remote_attach; | |
82f73884 | 10340 | extended_remote_ops.to_kill = extended_remote_kill; |
0f71a2f6 JM |
10341 | } |
10342 | ||
6426a772 JM |
10343 | static int |
10344 | remote_can_async_p (void) | |
10345 | { | |
c6ebd6cf | 10346 | if (!target_async_permitted) |
75c99385 PA |
10347 | /* We only enable async when the user specifically asks for it. */ |
10348 | return 0; | |
10349 | ||
23860348 | 10350 | /* We're async whenever the serial device is. */ |
b84876c2 | 10351 | return remote_async_mask_value && serial_can_async_p (remote_desc); |
6426a772 JM |
10352 | } |
10353 | ||
10354 | static int | |
10355 | remote_is_async_p (void) | |
10356 | { | |
c6ebd6cf | 10357 | if (!target_async_permitted) |
75c99385 PA |
10358 | /* We only enable async when the user specifically asks for it. */ |
10359 | return 0; | |
10360 | ||
23860348 | 10361 | /* We're async whenever the serial device is. */ |
b84876c2 | 10362 | return remote_async_mask_value && serial_is_async_p (remote_desc); |
6426a772 JM |
10363 | } |
10364 | ||
2acceee2 JM |
10365 | /* Pass the SERIAL event on and up to the client. One day this code |
10366 | will be able to delay notifying the client of an event until the | |
23860348 | 10367 | point where an entire packet has been received. */ |
2acceee2 | 10368 | |
2bc416ba | 10369 | static void (*async_client_callback) (enum inferior_event_type event_type, |
23860348 | 10370 | void *context); |
2acceee2 JM |
10371 | static void *async_client_context; |
10372 | static serial_event_ftype remote_async_serial_handler; | |
10373 | ||
6426a772 | 10374 | static void |
819cc324 | 10375 | remote_async_serial_handler (struct serial *scb, void *context) |
6426a772 | 10376 | { |
2acceee2 JM |
10377 | /* Don't propogate error information up to the client. Instead let |
10378 | the client find out about the error by querying the target. */ | |
10379 | async_client_callback (INF_REG_EVENT, async_client_context); | |
10380 | } | |
10381 | ||
74531fed PA |
10382 | static void |
10383 | remote_async_inferior_event_handler (gdb_client_data data) | |
10384 | { | |
10385 | inferior_event_handler (INF_REG_EVENT, NULL); | |
10386 | } | |
10387 | ||
10388 | static void | |
10389 | remote_async_get_pending_events_handler (gdb_client_data data) | |
10390 | { | |
10391 | remote_get_pending_stop_replies (); | |
10392 | } | |
10393 | ||
2acceee2 | 10394 | static void |
2bc416ba | 10395 | remote_async (void (*callback) (enum inferior_event_type event_type, |
23860348 | 10396 | void *context), void *context) |
2acceee2 | 10397 | { |
b84876c2 | 10398 | if (remote_async_mask_value == 0) |
8e65ff28 | 10399 | internal_error (__FILE__, __LINE__, |
e2e0b3e5 | 10400 | _("Calling remote_async when async is masked")); |
ed9a39eb | 10401 | |
2acceee2 JM |
10402 | if (callback != NULL) |
10403 | { | |
2cd58942 | 10404 | serial_async (remote_desc, remote_async_serial_handler, NULL); |
2acceee2 JM |
10405 | async_client_callback = callback; |
10406 | async_client_context = context; | |
10407 | } | |
10408 | else | |
2cd58942 | 10409 | serial_async (remote_desc, NULL, NULL); |
6426a772 JM |
10410 | } |
10411 | ||
b84876c2 PA |
10412 | static int |
10413 | remote_async_mask (int new_mask) | |
10414 | { | |
10415 | int curr_mask = remote_async_mask_value; | |
a744cf53 | 10416 | |
b84876c2 PA |
10417 | remote_async_mask_value = new_mask; |
10418 | return curr_mask; | |
10419 | } | |
10420 | ||
5a2468f5 | 10421 | static void |
c2d11a7d | 10422 | set_remote_cmd (char *args, int from_tty) |
5a2468f5 | 10423 | { |
427c3a89 | 10424 | help_list (remote_set_cmdlist, "set remote ", -1, gdb_stdout); |
5a2468f5 JM |
10425 | } |
10426 | ||
d471ea57 AC |
10427 | static void |
10428 | show_remote_cmd (char *args, int from_tty) | |
10429 | { | |
37a105a1 | 10430 | /* We can't just use cmd_show_list here, because we want to skip |
427c3a89 | 10431 | the redundant "show remote Z-packet" and the legacy aliases. */ |
37a105a1 DJ |
10432 | struct cleanup *showlist_chain; |
10433 | struct cmd_list_element *list = remote_show_cmdlist; | |
10434 | ||
10435 | showlist_chain = make_cleanup_ui_out_tuple_begin_end (uiout, "showlist"); | |
10436 | for (; list != NULL; list = list->next) | |
10437 | if (strcmp (list->name, "Z-packet") == 0) | |
10438 | continue; | |
427c3a89 DJ |
10439 | else if (list->type == not_set_cmd) |
10440 | /* Alias commands are exactly like the original, except they | |
10441 | don't have the normal type. */ | |
10442 | continue; | |
10443 | else | |
37a105a1 DJ |
10444 | { |
10445 | struct cleanup *option_chain | |
10446 | = make_cleanup_ui_out_tuple_begin_end (uiout, "option"); | |
a744cf53 | 10447 | |
37a105a1 DJ |
10448 | ui_out_field_string (uiout, "name", list->name); |
10449 | ui_out_text (uiout, ": "); | |
427c3a89 DJ |
10450 | if (list->type == show_cmd) |
10451 | do_setshow_command ((char *) NULL, from_tty, list); | |
10452 | else | |
10453 | cmd_func (list, NULL, from_tty); | |
37a105a1 DJ |
10454 | /* Close the tuple. */ |
10455 | do_cleanups (option_chain); | |
10456 | } | |
427c3a89 DJ |
10457 | |
10458 | /* Close the tuple. */ | |
10459 | do_cleanups (showlist_chain); | |
d471ea57 | 10460 | } |
5a2468f5 | 10461 | |
0f71a2f6 | 10462 | |
23860348 | 10463 | /* Function to be called whenever a new objfile (shlib) is detected. */ |
dc8acb97 MS |
10464 | static void |
10465 | remote_new_objfile (struct objfile *objfile) | |
10466 | { | |
23860348 | 10467 | if (remote_desc != 0) /* Have a remote connection. */ |
06d3b283 | 10468 | remote_check_symbols (objfile); |
dc8acb97 MS |
10469 | } |
10470 | ||
00bf0b85 SS |
10471 | /* Pull all the tracepoints defined on the target and create local |
10472 | data structures representing them. We don't want to create real | |
10473 | tracepoints yet, we don't want to mess up the user's existing | |
10474 | collection. */ | |
10475 | ||
10476 | static int | |
10477 | remote_upload_tracepoints (struct uploaded_tp **utpp) | |
d5551862 | 10478 | { |
00bf0b85 SS |
10479 | struct remote_state *rs = get_remote_state (); |
10480 | char *p; | |
d5551862 | 10481 | |
00bf0b85 SS |
10482 | /* Ask for a first packet of tracepoint definition. */ |
10483 | putpkt ("qTfP"); | |
10484 | getpkt (&rs->buf, &rs->buf_size, 0); | |
10485 | p = rs->buf; | |
10486 | while (*p && *p != 'l') | |
d5551862 | 10487 | { |
00bf0b85 SS |
10488 | parse_tracepoint_definition (p, utpp); |
10489 | /* Ask for another packet of tracepoint definition. */ | |
10490 | putpkt ("qTsP"); | |
10491 | getpkt (&rs->buf, &rs->buf_size, 0); | |
10492 | p = rs->buf; | |
d5551862 | 10493 | } |
00bf0b85 | 10494 | return 0; |
d5551862 SS |
10495 | } |
10496 | ||
00bf0b85 SS |
10497 | static int |
10498 | remote_upload_trace_state_variables (struct uploaded_tsv **utsvp) | |
d5551862 | 10499 | { |
00bf0b85 | 10500 | struct remote_state *rs = get_remote_state (); |
d5551862 | 10501 | char *p; |
d5551862 | 10502 | |
00bf0b85 SS |
10503 | /* Ask for a first packet of variable definition. */ |
10504 | putpkt ("qTfV"); | |
d5551862 SS |
10505 | getpkt (&rs->buf, &rs->buf_size, 0); |
10506 | p = rs->buf; | |
00bf0b85 | 10507 | while (*p && *p != 'l') |
d5551862 | 10508 | { |
00bf0b85 SS |
10509 | parse_tsv_definition (p, utsvp); |
10510 | /* Ask for another packet of variable definition. */ | |
10511 | putpkt ("qTsV"); | |
d5551862 SS |
10512 | getpkt (&rs->buf, &rs->buf_size, 0); |
10513 | p = rs->buf; | |
10514 | } | |
00bf0b85 | 10515 | return 0; |
d5551862 SS |
10516 | } |
10517 | ||
c906108c | 10518 | void |
fba45db2 | 10519 | _initialize_remote (void) |
c906108c | 10520 | { |
ea9c271d | 10521 | struct remote_state *rs; |
9a7071a8 JB |
10522 | struct cmd_list_element *cmd; |
10523 | char *cmd_name; | |
ea9c271d | 10524 | |
0f71a2f6 | 10525 | /* architecture specific data */ |
2bc416ba | 10526 | remote_gdbarch_data_handle = |
23860348 | 10527 | gdbarch_data_register_post_init (init_remote_state); |
29709017 DJ |
10528 | remote_g_packet_data_handle = |
10529 | gdbarch_data_register_pre_init (remote_g_packet_data_init); | |
d01949b6 | 10530 | |
ea9c271d DJ |
10531 | /* Initialize the per-target state. At the moment there is only one |
10532 | of these, not one per target. Only one target is active at a | |
10533 | time. The default buffer size is unimportant; it will be expanded | |
10534 | whenever a larger buffer is needed. */ | |
0b83947e | 10535 | rs = get_remote_state_raw (); |
ea9c271d DJ |
10536 | rs->buf_size = 400; |
10537 | rs->buf = xmalloc (rs->buf_size); | |
10538 | ||
c906108c SS |
10539 | init_remote_ops (); |
10540 | add_target (&remote_ops); | |
10541 | ||
10542 | init_extended_remote_ops (); | |
10543 | add_target (&extended_remote_ops); | |
cce74817 | 10544 | |
dc8acb97 | 10545 | /* Hook into new objfile notification. */ |
06d3b283 | 10546 | observer_attach_new_objfile (remote_new_objfile); |
dc8acb97 | 10547 | |
b803fb0f DJ |
10548 | /* Set up signal handlers. */ |
10549 | sigint_remote_token = | |
10550 | create_async_signal_handler (async_remote_interrupt, NULL); | |
10551 | sigint_remote_twice_token = | |
10552 | create_async_signal_handler (inferior_event_handler_wrapper, NULL); | |
10553 | ||
c906108c SS |
10554 | #if 0 |
10555 | init_remote_threadtests (); | |
10556 | #endif | |
10557 | ||
23860348 | 10558 | /* set/show remote ... */ |
d471ea57 | 10559 | |
1bedd215 | 10560 | add_prefix_cmd ("remote", class_maintenance, set_remote_cmd, _("\ |
5a2468f5 JM |
10561 | Remote protocol specific variables\n\ |
10562 | Configure various remote-protocol specific variables such as\n\ | |
1bedd215 | 10563 | the packets being used"), |
cff3e48b | 10564 | &remote_set_cmdlist, "set remote ", |
23860348 | 10565 | 0 /* allow-unknown */, &setlist); |
1bedd215 | 10566 | add_prefix_cmd ("remote", class_maintenance, show_remote_cmd, _("\ |
5a2468f5 JM |
10567 | Remote protocol specific variables\n\ |
10568 | Configure various remote-protocol specific variables such as\n\ | |
1bedd215 | 10569 | the packets being used"), |
cff3e48b | 10570 | &remote_show_cmdlist, "show remote ", |
23860348 | 10571 | 0 /* allow-unknown */, &showlist); |
5a2468f5 | 10572 | |
1a966eab AC |
10573 | add_cmd ("compare-sections", class_obscure, compare_sections_command, _("\ |
10574 | Compare section data on target to the exec file.\n\ | |
10575 | Argument is a single section name (default: all loaded sections)."), | |
c906108c SS |
10576 | &cmdlist); |
10577 | ||
1a966eab AC |
10578 | add_cmd ("packet", class_maintenance, packet_command, _("\ |
10579 | Send an arbitrary packet to a remote target.\n\ | |
c906108c SS |
10580 | maintenance packet TEXT\n\ |
10581 | If GDB is talking to an inferior via the GDB serial protocol, then\n\ | |
10582 | this command sends the string TEXT to the inferior, and displays the\n\ | |
10583 | response packet. GDB supplies the initial `$' character, and the\n\ | |
1a966eab | 10584 | terminating `#' character and checksum."), |
c906108c SS |
10585 | &maintenancelist); |
10586 | ||
7915a72c AC |
10587 | add_setshow_boolean_cmd ("remotebreak", no_class, &remote_break, _("\ |
10588 | Set whether to send break if interrupted."), _("\ | |
10589 | Show whether to send break if interrupted."), _("\ | |
10590 | If set, a break, instead of a cntrl-c, is sent to the remote target."), | |
9a7071a8 | 10591 | set_remotebreak, show_remotebreak, |
e707bbc2 | 10592 | &setlist, &showlist); |
9a7071a8 JB |
10593 | cmd_name = "remotebreak"; |
10594 | cmd = lookup_cmd (&cmd_name, setlist, "", -1, 1); | |
10595 | deprecate_cmd (cmd, "set remote interrupt-sequence"); | |
10596 | cmd_name = "remotebreak"; /* needed because lookup_cmd updates the pointer */ | |
10597 | cmd = lookup_cmd (&cmd_name, showlist, "", -1, 1); | |
10598 | deprecate_cmd (cmd, "show remote interrupt-sequence"); | |
10599 | ||
10600 | add_setshow_enum_cmd ("interrupt-sequence", class_support, | |
3e43a32a MS |
10601 | interrupt_sequence_modes, &interrupt_sequence_mode, |
10602 | _("\ | |
9a7071a8 JB |
10603 | Set interrupt sequence to remote target."), _("\ |
10604 | Show interrupt sequence to remote target."), _("\ | |
10605 | Valid value is \"Ctrl-C\", \"BREAK\" or \"BREAK-g\". The default is \"Ctrl-C\"."), | |
10606 | NULL, show_interrupt_sequence, | |
10607 | &remote_set_cmdlist, | |
10608 | &remote_show_cmdlist); | |
10609 | ||
10610 | add_setshow_boolean_cmd ("interrupt-on-connect", class_support, | |
10611 | &interrupt_on_connect, _("\ | |
10612 | Set whether interrupt-sequence is sent to remote target when gdb connects to."), _(" \ | |
10613 | Show whether interrupt-sequence is sent to remote target when gdb connects to."), _(" \ | |
10614 | If set, interrupt sequence is sent to remote target."), | |
10615 | NULL, NULL, | |
10616 | &remote_set_cmdlist, &remote_show_cmdlist); | |
c906108c | 10617 | |
23860348 | 10618 | /* Install commands for configuring memory read/write packets. */ |
11cf8741 | 10619 | |
1a966eab AC |
10620 | add_cmd ("remotewritesize", no_class, set_memory_write_packet_size, _("\ |
10621 | Set the maximum number of bytes per memory write packet (deprecated)."), | |
11cf8741 | 10622 | &setlist); |
1a966eab AC |
10623 | add_cmd ("remotewritesize", no_class, show_memory_write_packet_size, _("\ |
10624 | Show the maximum number of bytes per memory write packet (deprecated)."), | |
11cf8741 JM |
10625 | &showlist); |
10626 | add_cmd ("memory-write-packet-size", no_class, | |
1a966eab AC |
10627 | set_memory_write_packet_size, _("\ |
10628 | Set the maximum number of bytes per memory-write packet.\n\ | |
10629 | Specify the number of bytes in a packet or 0 (zero) for the\n\ | |
10630 | default packet size. The actual limit is further reduced\n\ | |
10631 | dependent on the target. Specify ``fixed'' to disable the\n\ | |
10632 | further restriction and ``limit'' to enable that restriction."), | |
11cf8741 JM |
10633 | &remote_set_cmdlist); |
10634 | add_cmd ("memory-read-packet-size", no_class, | |
1a966eab AC |
10635 | set_memory_read_packet_size, _("\ |
10636 | Set the maximum number of bytes per memory-read packet.\n\ | |
10637 | Specify the number of bytes in a packet or 0 (zero) for the\n\ | |
10638 | default packet size. The actual limit is further reduced\n\ | |
10639 | dependent on the target. Specify ``fixed'' to disable the\n\ | |
10640 | further restriction and ``limit'' to enable that restriction."), | |
11cf8741 JM |
10641 | &remote_set_cmdlist); |
10642 | add_cmd ("memory-write-packet-size", no_class, | |
10643 | show_memory_write_packet_size, | |
1a966eab | 10644 | _("Show the maximum number of bytes per memory-write packet."), |
11cf8741 JM |
10645 | &remote_show_cmdlist); |
10646 | add_cmd ("memory-read-packet-size", no_class, | |
10647 | show_memory_read_packet_size, | |
1a966eab | 10648 | _("Show the maximum number of bytes per memory-read packet."), |
11cf8741 | 10649 | &remote_show_cmdlist); |
c906108c | 10650 | |
b3f42336 | 10651 | add_setshow_zinteger_cmd ("hardware-watchpoint-limit", no_class, |
7915a72c AC |
10652 | &remote_hw_watchpoint_limit, _("\ |
10653 | Set the maximum number of target hardware watchpoints."), _("\ | |
10654 | Show the maximum number of target hardware watchpoints."), _("\ | |
10655 | Specify a negative limit for unlimited."), | |
3e43a32a MS |
10656 | NULL, NULL, /* FIXME: i18n: The maximum |
10657 | number of target hardware | |
10658 | watchpoints is %s. */ | |
b3f42336 AC |
10659 | &remote_set_cmdlist, &remote_show_cmdlist); |
10660 | add_setshow_zinteger_cmd ("hardware-breakpoint-limit", no_class, | |
7915a72c AC |
10661 | &remote_hw_breakpoint_limit, _("\ |
10662 | Set the maximum number of target hardware breakpoints."), _("\ | |
10663 | Show the maximum number of target hardware breakpoints."), _("\ | |
10664 | Specify a negative limit for unlimited."), | |
3e43a32a MS |
10665 | NULL, NULL, /* FIXME: i18n: The maximum |
10666 | number of target hardware | |
10667 | breakpoints is %s. */ | |
b3f42336 | 10668 | &remote_set_cmdlist, &remote_show_cmdlist); |
501eef12 | 10669 | |
4d28ad1e AC |
10670 | add_setshow_integer_cmd ("remoteaddresssize", class_obscure, |
10671 | &remote_address_size, _("\ | |
10672 | Set the maximum size of the address (in bits) in a memory packet."), _("\ | |
10673 | Show the maximum size of the address (in bits) in a memory packet."), NULL, | |
10674 | NULL, | |
10675 | NULL, /* FIXME: i18n: */ | |
10676 | &setlist, &showlist); | |
c906108c | 10677 | |
444abaca | 10678 | add_packet_config_cmd (&remote_protocol_packets[PACKET_X], |
bb572ddd | 10679 | "X", "binary-download", 1); |
0f71a2f6 | 10680 | |
444abaca | 10681 | add_packet_config_cmd (&remote_protocol_packets[PACKET_vCont], |
bb572ddd | 10682 | "vCont", "verbose-resume", 0); |
506fb367 | 10683 | |
89be2091 DJ |
10684 | add_packet_config_cmd (&remote_protocol_packets[PACKET_QPassSignals], |
10685 | "QPassSignals", "pass-signals", 0); | |
10686 | ||
444abaca | 10687 | add_packet_config_cmd (&remote_protocol_packets[PACKET_qSymbol], |
bb572ddd | 10688 | "qSymbol", "symbol-lookup", 0); |
dc8acb97 | 10689 | |
444abaca | 10690 | add_packet_config_cmd (&remote_protocol_packets[PACKET_P], |
bb572ddd | 10691 | "P", "set-register", 1); |
d471ea57 | 10692 | |
444abaca | 10693 | add_packet_config_cmd (&remote_protocol_packets[PACKET_p], |
bb572ddd | 10694 | "p", "fetch-register", 1); |
b96ec7ac | 10695 | |
444abaca | 10696 | add_packet_config_cmd (&remote_protocol_packets[PACKET_Z0], |
bb572ddd | 10697 | "Z0", "software-breakpoint", 0); |
d471ea57 | 10698 | |
444abaca | 10699 | add_packet_config_cmd (&remote_protocol_packets[PACKET_Z1], |
bb572ddd | 10700 | "Z1", "hardware-breakpoint", 0); |
d471ea57 | 10701 | |
444abaca | 10702 | add_packet_config_cmd (&remote_protocol_packets[PACKET_Z2], |
bb572ddd | 10703 | "Z2", "write-watchpoint", 0); |
d471ea57 | 10704 | |
444abaca | 10705 | add_packet_config_cmd (&remote_protocol_packets[PACKET_Z3], |
bb572ddd | 10706 | "Z3", "read-watchpoint", 0); |
d471ea57 | 10707 | |
444abaca | 10708 | add_packet_config_cmd (&remote_protocol_packets[PACKET_Z4], |
bb572ddd | 10709 | "Z4", "access-watchpoint", 0); |
d471ea57 | 10710 | |
0876f84a DJ |
10711 | add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_auxv], |
10712 | "qXfer:auxv:read", "read-aux-vector", 0); | |
802188a7 | 10713 | |
23181151 DJ |
10714 | add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_features], |
10715 | "qXfer:features:read", "target-features", 0); | |
10716 | ||
cfa9d6d9 DJ |
10717 | add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_libraries], |
10718 | "qXfer:libraries:read", "library-info", 0); | |
10719 | ||
fd79ecee DJ |
10720 | add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_memory_map], |
10721 | "qXfer:memory-map:read", "memory-map", 0); | |
10722 | ||
0e7f50da UW |
10723 | add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_spu_read], |
10724 | "qXfer:spu:read", "read-spu-object", 0); | |
10725 | ||
10726 | add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_spu_write], | |
10727 | "qXfer:spu:write", "write-spu-object", 0); | |
10728 | ||
07e059b5 VP |
10729 | add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_osdata], |
10730 | "qXfer:osdata:read", "osdata", 0); | |
10731 | ||
dc146f7c VP |
10732 | add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_threads], |
10733 | "qXfer:threads:read", "threads", 0); | |
10734 | ||
4aa995e1 PA |
10735 | add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_siginfo_read], |
10736 | "qXfer:siginfo:read", "read-siginfo-object", 0); | |
10737 | ||
10738 | add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_siginfo_write], | |
10739 | "qXfer:siginfo:write", "write-siginfo-object", 0); | |
10740 | ||
b3b9301e PA |
10741 | add_packet_config_cmd |
10742 | (&remote_protocol_packets[PACKET_qXfer_traceframe_info], | |
10743 | "qXfer:trace-frame-info:read", "traceframe-info", 0); | |
10744 | ||
444abaca | 10745 | add_packet_config_cmd (&remote_protocol_packets[PACKET_qGetTLSAddr], |
38691318 | 10746 | "qGetTLSAddr", "get-thread-local-storage-address", |
38691318 KB |
10747 | 0); |
10748 | ||
711e434b PM |
10749 | add_packet_config_cmd (&remote_protocol_packets[PACKET_qGetTIBAddr], |
10750 | "qGetTIBAddr", "get-thread-information-block-address", | |
10751 | 0); | |
10752 | ||
40ab02ce MS |
10753 | add_packet_config_cmd (&remote_protocol_packets[PACKET_bc], |
10754 | "bc", "reverse-continue", 0); | |
10755 | ||
10756 | add_packet_config_cmd (&remote_protocol_packets[PACKET_bs], | |
10757 | "bs", "reverse-step", 0); | |
10758 | ||
be2a5f71 DJ |
10759 | add_packet_config_cmd (&remote_protocol_packets[PACKET_qSupported], |
10760 | "qSupported", "supported-packets", 0); | |
10761 | ||
08388c79 DE |
10762 | add_packet_config_cmd (&remote_protocol_packets[PACKET_qSearch_memory], |
10763 | "qSearch:memory", "search-memory", 0); | |
10764 | ||
a6b151f1 DJ |
10765 | add_packet_config_cmd (&remote_protocol_packets[PACKET_vFile_open], |
10766 | "vFile:open", "hostio-open", 0); | |
10767 | ||
10768 | add_packet_config_cmd (&remote_protocol_packets[PACKET_vFile_pread], | |
10769 | "vFile:pread", "hostio-pread", 0); | |
10770 | ||
10771 | add_packet_config_cmd (&remote_protocol_packets[PACKET_vFile_pwrite], | |
10772 | "vFile:pwrite", "hostio-pwrite", 0); | |
10773 | ||
10774 | add_packet_config_cmd (&remote_protocol_packets[PACKET_vFile_close], | |
10775 | "vFile:close", "hostio-close", 0); | |
10776 | ||
10777 | add_packet_config_cmd (&remote_protocol_packets[PACKET_vFile_unlink], | |
10778 | "vFile:unlink", "hostio-unlink", 0); | |
10779 | ||
2d717e4f DJ |
10780 | add_packet_config_cmd (&remote_protocol_packets[PACKET_vAttach], |
10781 | "vAttach", "attach", 0); | |
10782 | ||
10783 | add_packet_config_cmd (&remote_protocol_packets[PACKET_vRun], | |
10784 | "vRun", "run", 0); | |
10785 | ||
a6f3e723 SL |
10786 | add_packet_config_cmd (&remote_protocol_packets[PACKET_QStartNoAckMode], |
10787 | "QStartNoAckMode", "noack", 0); | |
10788 | ||
82f73884 PA |
10789 | add_packet_config_cmd (&remote_protocol_packets[PACKET_vKill], |
10790 | "vKill", "kill", 0); | |
10791 | ||
0b16c5cf PA |
10792 | add_packet_config_cmd (&remote_protocol_packets[PACKET_qAttached], |
10793 | "qAttached", "query-attached", 0); | |
10794 | ||
782b2b07 | 10795 | add_packet_config_cmd (&remote_protocol_packets[PACKET_ConditionalTracepoints], |
3e43a32a MS |
10796 | "ConditionalTracepoints", |
10797 | "conditional-tracepoints", 0); | |
7a697b8d SS |
10798 | add_packet_config_cmd (&remote_protocol_packets[PACKET_FastTracepoints], |
10799 | "FastTracepoints", "fast-tracepoints", 0); | |
782b2b07 | 10800 | |
409873ef SS |
10801 | add_packet_config_cmd (&remote_protocol_packets[PACKET_TracepointSource], |
10802 | "TracepointSource", "TracepointSource", 0); | |
10803 | ||
d914c394 SS |
10804 | add_packet_config_cmd (&remote_protocol_packets[PACKET_QAllow], |
10805 | "QAllow", "allow", 0); | |
10806 | ||
0fb4aa4b PA |
10807 | add_packet_config_cmd (&remote_protocol_packets[PACKET_StaticTracepoints], |
10808 | "StaticTracepoints", "static-tracepoints", 0); | |
10809 | ||
10810 | add_packet_config_cmd (&remote_protocol_packets[PACKET_qXfer_statictrace_read], | |
10811 | "qXfer:statictrace:read", "read-sdata-object", 0); | |
10812 | ||
37a105a1 DJ |
10813 | /* Keep the old ``set remote Z-packet ...'' working. Each individual |
10814 | Z sub-packet has its own set and show commands, but users may | |
10815 | have sets to this variable in their .gdbinit files (or in their | |
10816 | documentation). */ | |
e9e68a56 | 10817 | add_setshow_auto_boolean_cmd ("Z-packet", class_obscure, |
7915a72c AC |
10818 | &remote_Z_packet_detect, _("\ |
10819 | Set use of remote protocol `Z' packets"), _("\ | |
10820 | Show use of remote protocol `Z' packets "), _("\ | |
3b64bf98 | 10821 | When set, GDB will attempt to use the remote breakpoint and watchpoint\n\ |
7915a72c | 10822 | packets."), |
e9e68a56 | 10823 | set_remote_protocol_Z_packet_cmd, |
3e43a32a MS |
10824 | show_remote_protocol_Z_packet_cmd, |
10825 | /* FIXME: i18n: Use of remote protocol | |
10826 | `Z' packets is %s. */ | |
e9e68a56 | 10827 | &remote_set_cmdlist, &remote_show_cmdlist); |
449092f6 | 10828 | |
a6b151f1 DJ |
10829 | add_prefix_cmd ("remote", class_files, remote_command, _("\ |
10830 | Manipulate files on the remote system\n\ | |
10831 | Transfer files to and from the remote target system."), | |
10832 | &remote_cmdlist, "remote ", | |
10833 | 0 /* allow-unknown */, &cmdlist); | |
10834 | ||
10835 | add_cmd ("put", class_files, remote_put_command, | |
10836 | _("Copy a local file to the remote system."), | |
10837 | &remote_cmdlist); | |
10838 | ||
10839 | add_cmd ("get", class_files, remote_get_command, | |
10840 | _("Copy a remote file to the local system."), | |
10841 | &remote_cmdlist); | |
10842 | ||
10843 | add_cmd ("delete", class_files, remote_delete_command, | |
10844 | _("Delete a remote file."), | |
10845 | &remote_cmdlist); | |
10846 | ||
2d717e4f DJ |
10847 | remote_exec_file = xstrdup (""); |
10848 | add_setshow_string_noescape_cmd ("exec-file", class_files, | |
10849 | &remote_exec_file, _("\ | |
10850 | Set the remote pathname for \"run\""), _("\ | |
10851 | Show the remote pathname for \"run\""), NULL, NULL, NULL, | |
10852 | &remote_set_cmdlist, &remote_show_cmdlist); | |
10853 | ||
449092f6 CV |
10854 | /* Eventually initialize fileio. See fileio.c */ |
10855 | initialize_remote_fileio (remote_set_cmdlist, remote_show_cmdlist); | |
79d7f229 PA |
10856 | |
10857 | /* Take advantage of the fact that the LWP field is not used, to tag | |
10858 | special ptids with it set to != 0. */ | |
82f73884 PA |
10859 | magic_null_ptid = ptid_build (42000, 1, -1); |
10860 | not_sent_ptid = ptid_build (42000, 1, -2); | |
10861 | any_thread_ptid = ptid_build (42000, 1, 0); | |
35b1e5cc SS |
10862 | |
10863 | target_buf_size = 2048; | |
10864 | target_buf = xmalloc (target_buf_size); | |
c906108c | 10865 | } |
10760264 | 10866 |