[GDBserver] Check input interrupt after reading in a packet
[deliverable/binutils-gdb.git] / gdb / gdbserver / remote-utils.c
CommitLineData
c906108c 1/* Remote utility routines for the remote server for GDB.
618f726f 2 Copyright (C) 1986-2016 Free Software Foundation, Inc.
c906108c 3
c5aa993b 4 This file is part of GDB.
c906108c 5
c5aa993b
JM
6 This program is free software; you can redistribute it and/or modify
7 it under the terms of the GNU General Public License as published by
a9762ec7 8 the Free Software Foundation; either version 3 of the License, or
c5aa993b 9 (at your option) any later version.
c906108c 10
c5aa993b
JM
11 This program is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details.
c906108c 15
c5aa993b 16 You should have received a copy of the GNU General Public License
a9762ec7 17 along with this program. If not, see <http://www.gnu.org/licenses/>. */
c906108c
SS
18
19#include "server.h"
20#include "terminal.h"
5b1c542e 21#include "target.h"
623b6bdf 22#include "gdbthread.h"
3aee8918 23#include "tdesc.h"
799cdc37 24#include "dll.h"
9c3d6531 25#include "rsp-low.h"
fafcc06a 26#include <ctype.h>
b80864fb 27#if HAVE_SYS_IOCTL_H
c906108c 28#include <sys/ioctl.h>
b80864fb 29#endif
68070c10 30#if HAVE_SYS_FILE_H
c906108c 31#include <sys/file.h>
68070c10 32#endif
9eb1356e
PA
33#if HAVE_NETINET_IN_H
34#include <netinet/in.h>
35#endif
36#if HAVE_SYS_SOCKET_H
37#include <sys/socket.h>
38#endif
b80864fb 39#if HAVE_NETDB_H
c906108c 40#include <netdb.h>
b80864fb
DJ
41#endif
42#if HAVE_NETINET_TCP_H
c906108c 43#include <netinet/tcp.h>
b80864fb
DJ
44#endif
45#if HAVE_SYS_IOCTL_H
c906108c 46#include <sys/ioctl.h>
b80864fb 47#endif
68070c10 48#if HAVE_SIGNAL_H
c906108c 49#include <signal.h>
68070c10
PA
50#endif
51#if HAVE_FCNTL_H
c906108c 52#include <fcntl.h>
68070c10 53#endif
438e1e42 54#include "gdb_sys_time.h"
cf30a8e1 55#include <unistd.h>
b80864fb 56#if HAVE_ARPA_INET_H
0729219d 57#include <arpa/inet.h>
b80864fb 58#endif
53ce3c39 59#include <sys/stat.h>
9eb1356e
PA
60
61#if USE_WIN32API
62#include <winsock2.h>
63#endif
c906108c 64
ac8c974e
AR
65#if __QNX__
66#include <sys/iomgr.h>
67#endif /* __QNX__ */
68
f450004a
DJ
69#ifndef HAVE_SOCKLEN_T
70typedef int socklen_t;
71#endif
72
0fb4aa4b
PA
73#ifndef IN_PROCESS_AGENT
74
7390519e
PA
75#if USE_WIN32API
76# define INVALID_DESCRIPTOR INVALID_SOCKET
77#else
78# define INVALID_DESCRIPTOR -1
79#endif
80
24b066ba
DE
81/* Extra value for readchar_callback. */
82enum {
83 /* The callback is currently not scheduled. */
84 NOT_SCHEDULED = -1
85};
86
87/* Status of the readchar callback.
88 Either NOT_SCHEDULED or the callback id. */
89static int readchar_callback = NOT_SCHEDULED;
90
bc3b5632 91static int readchar (void);
24b066ba
DE
92static void reset_readchar (void);
93static void reschedule (void);
bc3b5632 94
fd500816
DJ
95/* A cache entry for a successfully looked-up symbol. */
96struct sym_cache
97{
95954743 98 char *name;
fd500816
DJ
99 CORE_ADDR addr;
100 struct sym_cache *next;
101};
102
c906108c 103int remote_debug = 0;
03863182 104struct ui_file *gdb_stdlog;
c906108c 105
e0f9f062
DE
106static int remote_is_stdio = 0;
107
ec48365d
PA
108static gdb_fildes_t remote_desc = INVALID_DESCRIPTOR;
109static gdb_fildes_t listen_desc = INVALID_DESCRIPTOR;
c906108c 110
0d62e5e8
DJ
111/* FIXME headerize? */
112extern int using_threads;
113extern int debug_threads;
114
a6f3e723
SL
115/* If true, then GDB has requested noack mode. */
116int noack_mode = 0;
117/* If true, then we tell GDB to use noack mode by default. */
118int transport_is_reliable = 0;
119
0f48aa01 120#ifdef USE_WIN32API
68070c10
PA
121# define read(fd, buf, len) recv (fd, (char *) buf, len, 0)
122# define write(fd, buf, len) send (fd, (char *) buf, len, 0)
0f48aa01
DJ
123#endif
124
8336d594
PA
125int
126gdb_connected (void)
127{
128 return remote_desc != INVALID_DESCRIPTOR;
129}
130
e0f9f062
DE
131/* Return true if the remote connection is over stdio. */
132
133int
134remote_connection_is_stdio (void)
135{
136 return remote_is_stdio;
137}
138
8336d594
PA
139static void
140enable_async_notification (int fd)
141{
142#if defined(F_SETFL) && defined (FASYNC)
143 int save_fcntl_flags;
144
145 save_fcntl_flags = fcntl (fd, F_GETFL, 0);
146 fcntl (fd, F_SETFL, save_fcntl_flags | FASYNC);
147#if defined (F_SETOWN)
148 fcntl (fd, F_SETOWN, getpid ());
149#endif
150#endif
151}
152
153static int
154handle_accept_event (int err, gdb_client_data client_data)
155{
9eb1356e 156 struct sockaddr_in sockaddr;
8336d594
PA
157 socklen_t tmp;
158
159 if (debug_threads)
87ce2a04 160 debug_printf ("handling possible accept event\n");
8336d594 161
9eb1356e
PA
162 tmp = sizeof (sockaddr);
163 remote_desc = accept (listen_desc, (struct sockaddr *) &sockaddr, &tmp);
8336d594
PA
164 if (remote_desc == -1)
165 perror_with_name ("Accept failed");
166
167 /* Enable TCP keep alive process. */
168 tmp = 1;
169 setsockopt (remote_desc, SOL_SOCKET, SO_KEEPALIVE,
170 (char *) &tmp, sizeof (tmp));
171
172 /* Tell TCP not to delay small packets. This greatly speeds up
173 interactive response. */
174 tmp = 1;
175 setsockopt (remote_desc, IPPROTO_TCP, TCP_NODELAY,
176 (char *) &tmp, sizeof (tmp));
177
178#ifndef USE_WIN32API
8336d594
PA
179 signal (SIGPIPE, SIG_IGN); /* If we don't do this, then gdbserver simply
180 exits when the remote side dies. */
03f2bd59
JK
181#endif
182
183 if (run_once)
184 {
185#ifndef USE_WIN32API
186 close (listen_desc); /* No longer need this */
8336d594 187#else
03f2bd59 188 closesocket (listen_desc); /* No longer need this */
8336d594 189#endif
03f2bd59 190 }
8336d594 191
03f2bd59
JK
192 /* Even if !RUN_ONCE no longer notice new connections. Still keep the
193 descriptor open for add_file_handler to wait for a new connection. */
8336d594
PA
194 delete_file_handler (listen_desc);
195
196 /* Convert IP address to string. */
197 fprintf (stderr, "Remote debugging from host %s\n",
9eb1356e 198 inet_ntoa (sockaddr.sin_addr));
8336d594
PA
199
200 enable_async_notification (remote_desc);
201
202 /* Register the event loop handler. */
203 add_file_handler (remote_desc, handle_serial_event, NULL);
204
205 /* We have a new GDB connection now. If we were disconnected
206 tracing, there's a window where the target could report a stop
207 event to the event loop, and since we have a connection now, we'd
208 try to send vStopped notifications to GDB. But, don't do that
209 until GDB as selected all-stop/non-stop, and has queried the
210 threads' status ('?'). */
211 target_async (0);
212
213 return 0;
214}
215
03f2bd59
JK
216/* Prepare for a later connection to a remote debugger.
217 NAME is the filename used for communication. */
218
219void
220remote_prepare (char *name)
221{
222 char *port_str;
223#ifdef USE_WIN32API
224 static int winsock_initialized;
225#endif
226 int port;
9eb1356e 227 struct sockaddr_in sockaddr;
03f2bd59
JK
228 socklen_t tmp;
229 char *port_end;
230
e0f9f062
DE
231 remote_is_stdio = 0;
232 if (strcmp (name, STDIO_CONNECTION_NAME) == 0)
233 {
234 /* We need to record fact that we're using stdio sooner than the
235 call to remote_open so start_inferior knows the connection is
236 via stdio. */
237 remote_is_stdio = 1;
238 transport_is_reliable = 1;
239 return;
240 }
241
03f2bd59
JK
242 port_str = strchr (name, ':');
243 if (port_str == NULL)
244 {
245 transport_is_reliable = 0;
246 return;
247 }
248
249 port = strtoul (port_str + 1, &port_end, 10);
250 if (port_str[1] == '\0' || *port_end != '\0')
50278d59 251 error ("Bad port argument: %s", name);
03f2bd59
JK
252
253#ifdef USE_WIN32API
254 if (!winsock_initialized)
255 {
256 WSADATA wsad;
257
258 WSAStartup (MAKEWORD (1, 0), &wsad);
259 winsock_initialized = 1;
260 }
261#endif
262
263 listen_desc = socket (PF_INET, SOCK_STREAM, IPPROTO_TCP);
264 if (listen_desc == -1)
265 perror_with_name ("Can't open socket");
266
267 /* Allow rapid reuse of this port. */
268 tmp = 1;
269 setsockopt (listen_desc, SOL_SOCKET, SO_REUSEADDR, (char *) &tmp,
270 sizeof (tmp));
271
9eb1356e
PA
272 sockaddr.sin_family = PF_INET;
273 sockaddr.sin_port = htons (port);
274 sockaddr.sin_addr.s_addr = INADDR_ANY;
03f2bd59 275
9eb1356e 276 if (bind (listen_desc, (struct sockaddr *) &sockaddr, sizeof (sockaddr))
03f2bd59
JK
277 || listen (listen_desc, 1))
278 perror_with_name ("Can't bind address");
279
280 transport_is_reliable = 1;
281}
282
c906108c
SS
283/* Open a connection to a remote debugger.
284 NAME is the filename used for communication. */
285
286void
fba45db2 287remote_open (char *name)
c906108c 288{
8264bb58
DJ
289 char *port_str;
290
291 port_str = strchr (name, ':');
e0f9f062 292#ifdef USE_WIN32API
8264bb58 293 if (port_str == NULL)
e0f9f062
DE
294 error ("Only <host>:<port> is supported on this platform.");
295#endif
296
297 if (strcmp (name, STDIO_CONNECTION_NAME) == 0)
298 {
299 fprintf (stderr, "Remote debugging using stdio\n");
300
301 /* Use stdin as the handle of the connection.
302 We only select on reads, for example. */
303 remote_desc = fileno (stdin);
304
305 enable_async_notification (remote_desc);
306
307 /* Register the event loop handler. */
308 add_file_handler (remote_desc, handle_serial_event, NULL);
309 }
310#ifndef USE_WIN32API
311 else if (port_str == NULL)
c906108c 312 {
8264bb58
DJ
313 struct stat statbuf;
314
315 if (stat (name, &statbuf) == 0
316 && (S_ISCHR (statbuf.st_mode) || S_ISFIFO (statbuf.st_mode)))
317 remote_desc = open (name, O_RDWR);
318 else
319 {
320 errno = EINVAL;
321 remote_desc = -1;
322 }
323
c906108c
SS
324 if (remote_desc < 0)
325 perror_with_name ("Could not open remote device");
326
327#ifdef HAVE_TERMIOS
328 {
329 struct termios termios;
c5aa993b 330 tcgetattr (remote_desc, &termios);
c906108c
SS
331
332 termios.c_iflag = 0;
333 termios.c_oflag = 0;
334 termios.c_lflag = 0;
c5aa993b 335 termios.c_cflag &= ~(CSIZE | PARENB);
c906108c 336 termios.c_cflag |= CLOCAL | CS8;
d0608e50 337 termios.c_cc[VMIN] = 1;
c906108c
SS
338 termios.c_cc[VTIME] = 0;
339
c5aa993b 340 tcsetattr (remote_desc, TCSANOW, &termios);
c906108c
SS
341 }
342#endif
343
344#ifdef HAVE_TERMIO
345 {
346 struct termio termio;
347 ioctl (remote_desc, TCGETA, &termio);
348
349 termio.c_iflag = 0;
350 termio.c_oflag = 0;
351 termio.c_lflag = 0;
c5aa993b 352 termio.c_cflag &= ~(CSIZE | PARENB);
c906108c 353 termio.c_cflag |= CLOCAL | CS8;
d0608e50 354 termio.c_cc[VMIN] = 1;
c906108c
SS
355 termio.c_cc[VTIME] = 0;
356
357 ioctl (remote_desc, TCSETA, &termio);
358 }
359#endif
360
361#ifdef HAVE_SGTTY
362 {
363 struct sgttyb sg;
364
365 ioctl (remote_desc, TIOCGETP, &sg);
366 sg.sg_flags = RAW;
367 ioctl (remote_desc, TIOCSETP, &sg);
368 }
369#endif
370
e641a1ca 371 fprintf (stderr, "Remote debugging using %s\n", name);
a6f3e723 372
8336d594
PA
373 enable_async_notification (remote_desc);
374
375 /* Register the event loop handler. */
376 add_file_handler (remote_desc, handle_serial_event, NULL);
c906108c 377 }
e0f9f062 378#endif /* USE_WIN32API */
c906108c
SS
379 else
380 {
c906108c 381 int port;
03f2bd59 382 socklen_t len;
c906108c 383 struct sockaddr_in sockaddr;
c906108c 384
03f2bd59
JK
385 len = sizeof (sockaddr);
386 if (getsockname (listen_desc,
387 (struct sockaddr *) &sockaddr, &len) < 0
388 || len < sizeof (sockaddr))
389 perror_with_name ("Can't determine port");
390 port = ntohs (sockaddr.sin_port);
6f8486da 391
6910d122 392 fprintf (stderr, "Listening on port %d\n", port);
b80864fb 393 fflush (stderr);
6910d122 394
8336d594
PA
395 /* Register the event loop handler. */
396 add_file_handler (listen_desc, handle_accept_event, NULL);
c906108c 397 }
c906108c
SS
398}
399
400void
fba45db2 401remote_close (void)
c906108c 402{
bd99dc85
PA
403 delete_file_handler (remote_desc);
404
b80864fb
DJ
405#ifdef USE_WIN32API
406 closesocket (remote_desc);
407#else
e0f9f062
DE
408 if (! remote_connection_is_stdio ())
409 close (remote_desc);
b80864fb 410#endif
8336d594 411 remote_desc = INVALID_DESCRIPTOR;
24b066ba
DE
412
413 reset_readchar ();
c906108c
SS
414}
415
0fb4aa4b
PA
416#endif
417
0fb4aa4b
PA
418#ifndef IN_PROCESS_AGENT
419
dae5f5cf 420void
2f2893d9
DJ
421decode_address (CORE_ADDR *addrp, const char *start, int len)
422{
423 CORE_ADDR addr;
424 char ch;
425 int i;
426
427 addr = 0;
428 for (i = 0; i < len; i++)
429 {
430 ch = start[i];
431 addr = addr << 4;
432 addr = addr | (fromhex (ch) & 0x0f);
433 }
434 *addrp = addr;
435}
436
89be2091
DJ
437const char *
438decode_address_to_semicolon (CORE_ADDR *addrp, const char *start)
439{
440 const char *end;
441
442 end = start;
443 while (*end != '\0' && *end != ';')
444 end++;
445
446 decode_address (addrp, start, end - start);
447
448 if (*end == ';')
449 end++;
450 return end;
451}
452
0fb4aa4b
PA
453#endif
454
0fb4aa4b
PA
455#ifndef IN_PROCESS_AGENT
456
5ffff7c1
DJ
457/* Look for a sequence of characters which can be run-length encoded.
458 If there are any, update *CSUM and *P. Otherwise, output the
459 single character. Return the number of characters consumed. */
460
461static int
462try_rle (char *buf, int remaining, unsigned char *csum, char **p)
463{
464 int n;
465
466 /* Always output the character. */
467 *csum += buf[0];
468 *(*p)++ = buf[0];
469
470 /* Don't go past '~'. */
471 if (remaining > 97)
472 remaining = 97;
473
474 for (n = 1; n < remaining; n++)
475 if (buf[n] != buf[0])
476 break;
477
478 /* N is the index of the first character not the same as buf[0].
479 buf[0] is counted twice, so by decrementing N, we get the number
480 of characters the RLE sequence will replace. */
481 n--;
482
483 if (n < 3)
484 return 1;
485
486 /* Skip the frame characters. The manual says to skip '+' and '-'
487 also, but there's no reason to. Unfortunately these two unusable
488 characters double the encoded length of a four byte zero
489 value. */
490 while (n + 29 == '$' || n + 29 == '#')
491 n--;
492
493 *csum += '*';
494 *(*p)++ = '*';
495 *csum += n + 29;
496 *(*p)++ = n + 29;
497
498 return n + 1;
499}
500
0fb4aa4b
PA
501#endif
502
0fb4aa4b
PA
503#ifndef IN_PROCESS_AGENT
504
95954743
PA
505/* Write a PTID to BUF. Returns BUF+CHARACTERS_WRITTEN. */
506
507char *
508write_ptid (char *buf, ptid_t ptid)
509{
510 int pid, tid;
511
512 if (multi_process)
513 {
514 pid = ptid_get_pid (ptid);
515 if (pid < 0)
516 buf += sprintf (buf, "p-%x.", -pid);
517 else
518 buf += sprintf (buf, "p%x.", pid);
519 }
520 tid = ptid_get_lwp (ptid);
521 if (tid < 0)
522 buf += sprintf (buf, "-%x", -tid);
523 else
524 buf += sprintf (buf, "%x", tid);
525
526 return buf;
527}
528
5b3da067 529static ULONGEST
95954743
PA
530hex_or_minus_one (char *buf, char **obuf)
531{
532 ULONGEST ret;
533
61012eef 534 if (startswith (buf, "-1"))
95954743
PA
535 {
536 ret = (ULONGEST) -1;
537 buf += 2;
538 }
539 else
540 buf = unpack_varlen_hex (buf, &ret);
541
542 if (obuf)
543 *obuf = buf;
544
545 return ret;
546}
547
548/* Extract a PTID from BUF. If non-null, OBUF is set to the to one
549 passed the last parsed char. Returns null_ptid on error. */
550ptid_t
551read_ptid (char *buf, char **obuf)
552{
553 char *p = buf;
554 char *pp;
555 ULONGEST pid = 0, tid = 0;
556
557 if (*p == 'p')
558 {
559 /* Multi-process ptid. */
560 pp = unpack_varlen_hex (p + 1, &pid);
561 if (*pp != '.')
562 error ("invalid remote ptid: %s\n", p);
563
564 p = pp + 1;
565
566 tid = hex_or_minus_one (p, &pp);
567
568 if (obuf)
569 *obuf = pp;
570 return ptid_build (pid, tid, 0);
571 }
572
573 /* No multi-process. Just a tid. */
574 tid = hex_or_minus_one (p, &pp);
575
3d40fbb5
PA
576 /* Since GDB is not sending a process id (multi-process extensions
577 are off), then there's only one process. Default to the first in
578 the list. */
579 pid = pid_of (get_first_process ());
95954743
PA
580
581 if (obuf)
582 *obuf = pp;
583 return ptid_build (pid, tid, 0);
584}
585
e0f9f062
DE
586/* Write COUNT bytes in BUF to the client.
587 The result is the number of bytes written or -1 if error.
588 This may return less than COUNT. */
589
590static int
591write_prim (const void *buf, int count)
592{
593 if (remote_connection_is_stdio ())
594 return write (fileno (stdout), buf, count);
595 else
596 return write (remote_desc, buf, count);
597}
598
599/* Read COUNT bytes from the client and store in BUF.
600 The result is the number of bytes read or -1 if error.
601 This may return less than COUNT. */
602
603static int
604read_prim (void *buf, int count)
605{
606 if (remote_connection_is_stdio ())
607 return read (fileno (stdin), buf, count);
608 else
609 return read (remote_desc, buf, count);
610}
611
c906108c 612/* Send a packet to the remote machine, with error checking.
01f9e8fa
DJ
613 The data of the packet is in BUF, and the length of the
614 packet is in CNT. Returns >= 0 on success, -1 otherwise. */
c906108c 615
bd99dc85
PA
616static int
617putpkt_binary_1 (char *buf, int cnt, int is_notif)
c906108c
SS
618{
619 int i;
620 unsigned char csum = 0;
0a30fbc4 621 char *buf2;
c906108c 622 char *p;
bc3b5632 623 int cc;
c906108c 624
224c3ddb 625 buf2 = (char *) xmalloc (strlen ("$") + cnt + strlen ("#nn") + 1);
0a30fbc4 626
c906108c
SS
627 /* Copy the packet into buffer BUF2, encapsulating it
628 and giving it a checksum. */
629
630 p = buf2;
bd99dc85
PA
631 if (is_notif)
632 *p++ = '%';
633 else
634 *p++ = '$';
c906108c 635
5ffff7c1
DJ
636 for (i = 0; i < cnt;)
637 i += try_rle (buf + i, cnt - i, &csum, &p);
638
c906108c
SS
639 *p++ = '#';
640 *p++ = tohex ((csum >> 4) & 0xf);
641 *p++ = tohex (csum & 0xf);
642
643 *p = '\0';
644
645 /* Send it over and over until we get a positive ack. */
646
647 do
648 {
e0f9f062 649 if (write_prim (buf2, p - buf2) != p - buf2)
c906108c
SS
650 {
651 perror ("putpkt(write)");
f88c79e6 652 free (buf2);
c906108c
SS
653 return -1;
654 }
655
bd99dc85 656 if (noack_mode || is_notif)
a6f3e723
SL
657 {
658 /* Don't expect an ack then. */
659 if (remote_debug)
660 {
bd99dc85
PA
661 if (is_notif)
662 fprintf (stderr, "putpkt (\"%s\"); [notif]\n", buf2);
663 else
664 fprintf (stderr, "putpkt (\"%s\"); [noack mode]\n", buf2);
a6f3e723
SL
665 fflush (stderr);
666 }
667 break;
668 }
669
c906108c 670 if (remote_debug)
0d62e5e8
DJ
671 {
672 fprintf (stderr, "putpkt (\"%s\"); [looking for ack]\n", buf2);
673 fflush (stderr);
674 }
0d62e5e8 675
bc3b5632 676 cc = readchar ();
c906108c 677
bc3b5632
DE
678 if (cc < 0)
679 {
0a30fbc4 680 free (buf2);
c906108c
SS
681 return -1;
682 }
0d62e5e8 683
bc3b5632
DE
684 if (remote_debug)
685 {
686 fprintf (stderr, "[received '%c' (0x%x)]\n", cc, cc);
687 fflush (stderr);
688 }
689
0d62e5e8 690 /* Check for an input interrupt while we're here. */
0bfdf32f 691 if (cc == '\003' && current_thread != NULL)
ef57601b 692 (*the_target->request_interrupt) ();
c906108c 693 }
bc3b5632 694 while (cc != '+');
c906108c 695
0a30fbc4 696 free (buf2);
c906108c
SS
697 return 1; /* Success! */
698}
699
bd99dc85
PA
700int
701putpkt_binary (char *buf, int cnt)
702{
703 return putpkt_binary_1 (buf, cnt, 0);
704}
705
01f9e8fa
DJ
706/* Send a packet to the remote machine, with error checking. The data
707 of the packet is in BUF, and the packet should be a NUL-terminated
708 string. Returns >= 0 on success, -1 otherwise. */
709
710int
711putpkt (char *buf)
712{
713 return putpkt_binary (buf, strlen (buf));
714}
715
bd99dc85
PA
716int
717putpkt_notif (char *buf)
718{
719 return putpkt_binary_1 (buf, strlen (buf), 1);
720}
721
c906108c
SS
722/* Come here when we get an input interrupt from the remote side. This
723 interrupt should only be active while we are waiting for the child to do
bc3b5632
DE
724 something. Thus this assumes readchar:bufcnt is 0.
725 About the only thing that should come through is a ^C, which
ef57601b 726 will cause us to request child interruption. */
c906108c
SS
727
728static void
0a30fbc4 729input_interrupt (int unused)
c906108c 730{
cf30a8e1
C
731 fd_set readset;
732 struct timeval immediate = { 0, 0 };
c906108c 733
cf30a8e1
C
734 /* Protect against spurious interrupts. This has been observed to
735 be a problem under NetBSD 1.4 and 1.5. */
c906108c 736
cf30a8e1
C
737 FD_ZERO (&readset);
738 FD_SET (remote_desc, &readset);
739 if (select (remote_desc + 1, &readset, 0, 0, &immediate) > 0)
c906108c 740 {
cf30a8e1 741 int cc;
fd500816 742 char c = 0;
7390519e 743
e0f9f062 744 cc = read_prim (&c, 1);
c906108c 745
fafcc06a 746 if (cc == 0)
cf30a8e1 747 {
fafcc06a
SDJ
748 fprintf (stderr, "client connection closed\n");
749 return;
750 }
f0db101d 751 else if (cc != 1 || c != '\003')
fafcc06a
SDJ
752 {
753 fprintf (stderr, "input_interrupt, count = %d c = %d ", cc, c);
754 if (isprint (c))
755 fprintf (stderr, "('%c')\n", c);
756 else
757 fprintf (stderr, "('\\x%02x')\n", c & 0xff);
cf30a8e1
C
758 return;
759 }
7390519e 760
ef57601b 761 (*the_target->request_interrupt) ();
cf30a8e1 762 }
c906108c 763}
7390519e
PA
764
765/* Check if the remote side sent us an interrupt request (^C). */
766void
767check_remote_input_interrupt_request (void)
768{
769 /* This function may be called before establishing communications,
770 therefore we need to validate the remote descriptor. */
771
772 if (remote_desc == INVALID_DESCRIPTOR)
773 return;
774
775 input_interrupt (0);
776}
b80864fb
DJ
777
778/* Asynchronous I/O support. SIGIO must be enabled when waiting, in order to
779 accept Control-C from the client, and must be disabled when talking to
780 the client. */
c906108c 781
a20d5e98 782static void
62ea82f5
DJ
783unblock_async_io (void)
784{
b80864fb 785#ifndef USE_WIN32API
62ea82f5 786 sigset_t sigio_set;
a20d5e98 787
62ea82f5
DJ
788 sigemptyset (&sigio_set);
789 sigaddset (&sigio_set, SIGIO);
790 sigprocmask (SIG_UNBLOCK, &sigio_set, NULL);
b80864fb 791#endif
62ea82f5
DJ
792}
793
ac8c974e
AR
794#ifdef __QNX__
795static void
796nto_comctrl (int enable)
797{
798 struct sigevent event;
799
800 if (enable)
801 {
802 event.sigev_notify = SIGEV_SIGNAL_THREAD;
803 event.sigev_signo = SIGIO;
804 event.sigev_code = 0;
805 event.sigev_value.sival_ptr = NULL;
806 event.sigev_priority = -1;
807 ionotify (remote_desc, _NOTIFY_ACTION_POLLARM, _NOTIFY_COND_INPUT,
808 &event);
809 }
810 else
811 ionotify (remote_desc, _NOTIFY_ACTION_POLL, _NOTIFY_COND_INPUT, NULL);
812}
813#endif /* __QNX__ */
814
815
fd500816
DJ
816/* Current state of asynchronous I/O. */
817static int async_io_enabled;
818
819/* Enable asynchronous I/O. */
c906108c 820void
fba45db2 821enable_async_io (void)
c906108c 822{
fd500816
DJ
823 if (async_io_enabled)
824 return;
825
b80864fb 826#ifndef USE_WIN32API
c906108c 827 signal (SIGIO, input_interrupt);
b80864fb 828#endif
fd500816 829 async_io_enabled = 1;
ac8c974e
AR
830#ifdef __QNX__
831 nto_comctrl (1);
832#endif /* __QNX__ */
c906108c
SS
833}
834
fd500816 835/* Disable asynchronous I/O. */
c906108c 836void
fba45db2 837disable_async_io (void)
c906108c 838{
fd500816
DJ
839 if (!async_io_enabled)
840 return;
841
b80864fb 842#ifndef USE_WIN32API
c906108c 843 signal (SIGIO, SIG_IGN);
b80864fb 844#endif
fd500816 845 async_io_enabled = 0;
ac8c974e
AR
846#ifdef __QNX__
847 nto_comctrl (0);
848#endif /* __QNX__ */
849
c906108c
SS
850}
851
a20d5e98
DJ
852void
853initialize_async_io (void)
854{
855 /* Make sure that async I/O starts disabled. */
856 async_io_enabled = 1;
857 disable_async_io ();
858
859 /* Make sure the signal is unblocked. */
860 unblock_async_io ();
861}
862
24b066ba
DE
863/* Internal buffer used by readchar.
864 These are global to readchar because reschedule_remote needs to be
865 able to tell whether the buffer is empty. */
866
867static unsigned char readchar_buf[BUFSIZ];
868static int readchar_bufcnt = 0;
869static unsigned char *readchar_bufp;
870
c906108c
SS
871/* Returns next char from remote GDB. -1 if error. */
872
873static int
fba45db2 874readchar (void)
c906108c 875{
24b066ba 876 int ch;
c906108c 877
24b066ba
DE
878 if (readchar_bufcnt == 0)
879 {
e0f9f062 880 readchar_bufcnt = read_prim (readchar_buf, sizeof (readchar_buf));
c906108c 881
24b066ba
DE
882 if (readchar_bufcnt <= 0)
883 {
884 if (readchar_bufcnt == 0)
fddedbe6
PA
885 {
886 if (remote_debug)
887 fprintf (stderr, "readchar: Got EOF\n");
888 }
24b066ba
DE
889 else
890 perror ("readchar");
c906108c 891
24b066ba
DE
892 return -1;
893 }
c906108c 894
24b066ba 895 readchar_bufp = readchar_buf;
c906108c
SS
896 }
897
24b066ba
DE
898 readchar_bufcnt--;
899 ch = *readchar_bufp++;
900 reschedule ();
901 return ch;
902}
903
904/* Reset the readchar state machine. */
905
906static void
907reset_readchar (void)
908{
909 readchar_bufcnt = 0;
910 if (readchar_callback != NOT_SCHEDULED)
911 {
912 delete_callback_event (readchar_callback);
913 readchar_callback = NOT_SCHEDULED;
914 }
915}
916
917/* Process remaining data in readchar_buf. */
918
919static int
920process_remaining (void *context)
921{
922 int res;
923
924 /* This is a one-shot event. */
925 readchar_callback = NOT_SCHEDULED;
926
927 if (readchar_bufcnt > 0)
928 res = handle_serial_event (0, NULL);
929 else
930 res = 0;
931
932 return res;
933}
934
935/* If there is still data in the buffer, queue another event to process it,
936 we can't sleep in select yet. */
937
938static void
939reschedule (void)
940{
941 if (readchar_bufcnt > 0 && readchar_callback == NOT_SCHEDULED)
942 readchar_callback = append_callback_event (process_remaining, NULL);
c906108c
SS
943}
944
945/* Read a packet from the remote machine, with error checking,
946 and store it in BUF. Returns length of packet, or negative if error. */
947
948int
fba45db2 949getpkt (char *buf)
c906108c
SS
950{
951 char *bp;
952 unsigned char csum, c1, c2;
953 int c;
954
955 while (1)
956 {
957 csum = 0;
958
959 while (1)
960 {
961 c = readchar ();
5a0dd67a
YQ
962
963 /* The '\003' may appear before or after each packet, so
964 check for an input interrupt. */
965 if (c == '\003')
966 {
967 (*the_target->request_interrupt) ();
968 continue;
969 }
970
c906108c
SS
971 if (c == '$')
972 break;
973 if (remote_debug)
0d62e5e8
DJ
974 {
975 fprintf (stderr, "[getpkt: discarding char '%c']\n", c);
976 fflush (stderr);
977 }
978
c906108c
SS
979 if (c < 0)
980 return -1;
981 }
982
983 bp = buf;
984 while (1)
985 {
986 c = readchar ();
987 if (c < 0)
988 return -1;
989 if (c == '#')
990 break;
991 *bp++ = c;
992 csum += c;
993 }
994 *bp = 0;
995
996 c1 = fromhex (readchar ());
997 c2 = fromhex (readchar ());
c5aa993b 998
c906108c
SS
999 if (csum == (c1 << 4) + c2)
1000 break;
1001
a6f3e723
SL
1002 if (noack_mode)
1003 {
493e2a69
MS
1004 fprintf (stderr,
1005 "Bad checksum, sentsum=0x%x, csum=0x%x, "
1006 "buf=%s [no-ack-mode, Bad medium?]\n",
a6f3e723
SL
1007 (c1 << 4) + c2, csum, buf);
1008 /* Not much we can do, GDB wasn't expecting an ack/nac. */
1009 break;
1010 }
1011
c906108c
SS
1012 fprintf (stderr, "Bad checksum, sentsum=0x%x, csum=0x%x, buf=%s\n",
1013 (c1 << 4) + c2, csum, buf);
e0f9f062 1014 if (write_prim ("-", 1) != 1)
e581f2b4 1015 return -1;
c906108c
SS
1016 }
1017
a6f3e723 1018 if (!noack_mode)
0d62e5e8 1019 {
a6f3e723
SL
1020 if (remote_debug)
1021 {
1022 fprintf (stderr, "getpkt (\"%s\"); [sending ack] \n", buf);
1023 fflush (stderr);
1024 }
c906108c 1025
e0f9f062 1026 if (write_prim ("+", 1) != 1)
e581f2b4 1027 return -1;
c906108c 1028
a6f3e723
SL
1029 if (remote_debug)
1030 {
1031 fprintf (stderr, "[sent ack]\n");
1032 fflush (stderr);
1033 }
0d62e5e8 1034 }
86b1f9c5
PM
1035 else
1036 {
1037 if (remote_debug)
1038 {
1039 fprintf (stderr, "getpkt (\"%s\"); [no ack sent] \n", buf);
1040 fflush (stderr);
1041 }
1042 }
0d62e5e8 1043
18879fef
YQ
1044 /* The readchar above may have already read a '\003' out of the socket
1045 and moved it to the local buffer. For example, when GDB sends
1046 vCont;c immediately followed by interrupt (see
1047 gdb.base/interrupt-noterm.exp). As soon as we see the vCont;c, we'll
1048 resume the inferior and wait. Since we've already moved the '\003'
1049 to the local buffer, SIGIO won't help. In that case, if we don't
1050 check for interrupt after the vCont;c packet, the interrupt character
1051 would stay in the buffer unattended until after the next (unrelated)
1052 stop. */
1053 while (readchar_bufcnt > 0 && *readchar_bufp == '\003')
1054 {
1055 /* Consume the interrupt character in the buffer. */
1056 readchar ();
1057 (*the_target->request_interrupt) ();
1058 }
1059
c906108c
SS
1060 return bp - buf;
1061}
1062
1063void
fba45db2 1064write_ok (char *buf)
c906108c
SS
1065{
1066 buf[0] = 'O';
1067 buf[1] = 'K';
1068 buf[2] = '\0';
1069}
1070
1071void
fba45db2 1072write_enn (char *buf)
c906108c 1073{
c89dc5d4 1074 /* Some day, we should define the meanings of the error codes... */
c906108c 1075 buf[0] = 'E';
c89dc5d4
DJ
1076 buf[1] = '0';
1077 buf[2] = '1';
c906108c
SS
1078 buf[3] = '\0';
1079}
1080
0fb4aa4b
PA
1081#endif
1082
0fb4aa4b 1083#ifndef IN_PROCESS_AGENT
c906108c 1084
c906108c 1085static char *
442ea881 1086outreg (struct regcache *regcache, int regno, char *buf)
c906108c 1087{
5c44784c
JM
1088 if ((regno >> 12) != 0)
1089 *buf++ = tohex ((regno >> 12) & 0xf);
1090 if ((regno >> 8) != 0)
1091 *buf++ = tohex ((regno >> 8) & 0xf);
1092 *buf++ = tohex ((regno >> 4) & 0xf);
c906108c
SS
1093 *buf++ = tohex (regno & 0xf);
1094 *buf++ = ':';
442ea881 1095 collect_register_as_string (regcache, regno, buf);
3aee8918 1096 buf += 2 * register_size (regcache->tdesc, regno);
c906108c
SS
1097 *buf++ = ';';
1098
1099 return buf;
1100}
1101
1102void
95954743 1103prepare_resume_reply (char *buf, ptid_t ptid,
5b1c542e 1104 struct target_waitstatus *status)
c906108c 1105{
5b1c542e 1106 if (debug_threads)
87ce2a04
DE
1107 debug_printf ("Writing resume reply for %s:%d\n",
1108 target_pid_to_str (ptid), status->kind);
c906108c 1109
5b1c542e 1110 switch (status->kind)
c906108c 1111 {
5b1c542e 1112 case TARGET_WAITKIND_STOPPED:
de0d863e 1113 case TARGET_WAITKIND_FORKED:
c269dbdb 1114 case TARGET_WAITKIND_VFORKED:
8228463c 1115 case TARGET_WAITKIND_VFORK_DONE:
94585166 1116 case TARGET_WAITKIND_EXECD:
65706a29 1117 case TARGET_WAITKIND_THREAD_CREATED:
82075af2
JS
1118 case TARGET_WAITKIND_SYSCALL_ENTRY:
1119 case TARGET_WAITKIND_SYSCALL_RETURN:
5b1c542e 1120 {
0bfdf32f 1121 struct thread_info *saved_thread;
5b1c542e 1122 const char **regp;
442ea881 1123 struct regcache *regcache;
e013ee27 1124
c269dbdb
DB
1125 if ((status->kind == TARGET_WAITKIND_FORKED && report_fork_events)
1126 || (status->kind == TARGET_WAITKIND_VFORKED && report_vfork_events))
de0d863e
DB
1127 {
1128 enum gdb_signal signal = GDB_SIGNAL_TRAP;
c269dbdb
DB
1129 const char *event = (status->kind == TARGET_WAITKIND_FORKED
1130 ? "fork" : "vfork");
de0d863e 1131
c269dbdb 1132 sprintf (buf, "T%02x%s:", signal, event);
de0d863e
DB
1133 buf += strlen (buf);
1134 buf = write_ptid (buf, status->value.related_pid);
1135 strcat (buf, ";");
1136 }
8228463c
PA
1137 else if (status->kind == TARGET_WAITKIND_VFORK_DONE && report_vfork_events)
1138 {
1139 enum gdb_signal signal = GDB_SIGNAL_TRAP;
1140
1141 sprintf (buf, "T%02xvforkdone:;", signal);
1142 }
d57e0d50 1143 else if (status->kind == TARGET_WAITKIND_EXECD && report_exec_events)
94585166
DB
1144 {
1145 enum gdb_signal signal = GDB_SIGNAL_TRAP;
1146 const char *event = "exec";
1147 char hexified_pathname[PATH_MAX * 2];
1148
1149 sprintf (buf, "T%02x%s:", signal, event);
1150 buf += strlen (buf);
1151
1152 /* Encode pathname to hexified format. */
1153 bin2hex ((const gdb_byte *) status->value.execd_pathname,
1154 hexified_pathname,
1155 strlen (status->value.execd_pathname));
1156
1157 sprintf (buf, "%s;", hexified_pathname);
1158 xfree (status->value.execd_pathname);
1159 status->value.execd_pathname = NULL;
1160 buf += strlen (buf);
1161 }
65706a29
PA
1162 else if (status->kind == TARGET_WAITKIND_THREAD_CREATED
1163 && report_thread_events)
1164 {
1165 enum gdb_signal signal = GDB_SIGNAL_TRAP;
1166
1167 sprintf (buf, "T%02xcreate:;", signal);
1168 }
82075af2
JS
1169 else if (status->kind == TARGET_WAITKIND_SYSCALL_ENTRY
1170 || status->kind == TARGET_WAITKIND_SYSCALL_RETURN)
1171 {
1172 enum gdb_signal signal = GDB_SIGNAL_TRAP;
1173 const char *event = (status->kind == TARGET_WAITKIND_SYSCALL_ENTRY
1174 ? "syscall_entry" : "syscall_return");
1175
1176 sprintf (buf, "T%02x%s:%x;", signal, event,
1177 status->value.syscall_number);
1178 }
de0d863e
DB
1179 else
1180 sprintf (buf, "T%02x", status->value.sig);
1181
5b1c542e 1182 buf += strlen (buf);
e013ee27 1183
0bfdf32f 1184 saved_thread = current_thread;
e013ee27 1185
0bfdf32f 1186 current_thread = find_thread_ptid (ptid);
e013ee27 1187
3aee8918
PA
1188 regp = current_target_desc ()->expedite_regs;
1189
0bfdf32f 1190 regcache = get_thread_regcache (current_thread, 1);
442ea881 1191
5b1c542e
PA
1192 if (the_target->stopped_by_watchpoint != NULL
1193 && (*the_target->stopped_by_watchpoint) ())
1194 {
1195 CORE_ADDR addr;
1196 int i;
c906108c 1197
5b1c542e
PA
1198 strncpy (buf, "watch:", 6);
1199 buf += 6;
0d62e5e8 1200
5b1c542e 1201 addr = (*the_target->stopped_data_address) ();
255e7678 1202
5b1c542e
PA
1203 /* Convert each byte of the address into two hexadecimal
1204 chars. Note that we take sizeof (void *) instead of
1205 sizeof (addr); this is to avoid sending a 64-bit
1206 address to a 32-bit GDB. */
1207 for (i = sizeof (void *) * 2; i > 0; i--)
1208 *buf++ = tohex ((addr >> (i - 1) * 4) & 0xf);
1209 *buf++ = ';';
1210 }
1ec68e26
PA
1211 else if (swbreak_feature && target_stopped_by_sw_breakpoint ())
1212 {
1213 sprintf (buf, "swbreak:;");
1214 buf += strlen (buf);
1215 }
1216 else if (hwbreak_feature && target_stopped_by_hw_breakpoint ())
1217 {
1218 sprintf (buf, "hwbreak:;");
1219 buf += strlen (buf);
1220 }
5b1c542e
PA
1221
1222 while (*regp)
1223 {
3aee8918 1224 buf = outreg (regcache, find_regno (regcache->tdesc, *regp), buf);
5b1c542e
PA
1225 regp ++;
1226 }
5472f405 1227 *buf = '\0';
5b1c542e
PA
1228
1229 /* Formerly, if the debugger had not used any thread features
1230 we would not burden it with a thread status response. This
1231 was for the benefit of GDB 4.13 and older. However, in
1232 recent GDB versions the check (``if (cont_thread != 0)'')
1233 does not have the desired effect because of sillyness in
1234 the way that the remote protocol handles specifying a
1235 thread. Since thread support relies on qSymbol support
1236 anyway, assume GDB can handle threads. */
1237
1238 if (using_threads && !disable_packet_Tthread)
1239 {
1240 /* This if (1) ought to be unnecessary. But remote_wait
1241 in GDB will claim this event belongs to inferior_ptid
1242 if we do not specify a thread, and there's no way for
1243 gdbserver to know what inferior_ptid is. */
95954743 1244 if (1 || !ptid_equal (general_thread, ptid))
5b1c542e 1245 {
dc146f7c 1246 int core = -1;
bd99dc85
PA
1247 /* In non-stop, don't change the general thread behind
1248 GDB's back. */
1249 if (!non_stop)
1250 general_thread = ptid;
95954743
PA
1251 sprintf (buf, "thread:");
1252 buf += strlen (buf);
1253 buf = write_ptid (buf, ptid);
1254 strcat (buf, ";");
5b1c542e 1255 buf += strlen (buf);
dc146f7c 1256
3e10640f
YQ
1257 core = target_core_of_thread (ptid);
1258
dc146f7c
VP
1259 if (core != -1)
1260 {
1261 sprintf (buf, "core:");
1262 buf += strlen (buf);
1263 sprintf (buf, "%x", core);
1264 strcat (buf, ";");
1265 buf += strlen (buf);
1266 }
5b1c542e
PA
1267 }
1268 }
1269
1270 if (dlls_changed)
1271 {
1272 strcpy (buf, "library:;");
1273 buf += strlen (buf);
1274 dlls_changed = 0;
1275 }
1276
0bfdf32f 1277 current_thread = saved_thread;
5b1c542e
PA
1278 }
1279 break;
1280 case TARGET_WAITKIND_EXITED:
95954743
PA
1281 if (multi_process)
1282 sprintf (buf, "W%x;process:%x",
1283 status->value.integer, ptid_get_pid (ptid));
1284 else
1285 sprintf (buf, "W%02x", status->value.integer);
5b1c542e
PA
1286 break;
1287 case TARGET_WAITKIND_SIGNALLED:
95954743
PA
1288 if (multi_process)
1289 sprintf (buf, "X%x;process:%x",
1290 status->value.sig, ptid_get_pid (ptid));
1291 else
1292 sprintf (buf, "X%02x", status->value.sig);
5b1c542e 1293 break;
65706a29
PA
1294 case TARGET_WAITKIND_THREAD_EXITED:
1295 sprintf (buf, "w%x;", status->value.integer);
1296 buf += strlen (buf);
1297 buf = write_ptid (buf, ptid);
1298 break;
f2faf941
PA
1299 case TARGET_WAITKIND_NO_RESUMED:
1300 sprintf (buf, "N");
1301 break;
5b1c542e
PA
1302 default:
1303 error ("unhandled waitkind");
1304 break;
c906108c 1305 }
c906108c
SS
1306}
1307
1308void
fba45db2 1309decode_m_packet (char *from, CORE_ADDR *mem_addr_ptr, unsigned int *len_ptr)
c906108c
SS
1310{
1311 int i = 0, j = 0;
1312 char ch;
1313 *mem_addr_ptr = *len_ptr = 0;
1314
1315 while ((ch = from[i++]) != ',')
1316 {
1317 *mem_addr_ptr = *mem_addr_ptr << 4;
1318 *mem_addr_ptr |= fromhex (ch) & 0x0f;
1319 }
1320
1321 for (j = 0; j < 4; j++)
1322 {
1323 if ((ch = from[i++]) == 0)
1324 break;
1325 *len_ptr = *len_ptr << 4;
1326 *len_ptr |= fromhex (ch) & 0x0f;
1327 }
1328}
1329
1330void
fba45db2 1331decode_M_packet (char *from, CORE_ADDR *mem_addr_ptr, unsigned int *len_ptr,
fa593d66 1332 unsigned char **to_p)
c906108c
SS
1333{
1334 int i = 0;
1335 char ch;
1336 *mem_addr_ptr = *len_ptr = 0;
1337
1338 while ((ch = from[i++]) != ',')
1339 {
1340 *mem_addr_ptr = *mem_addr_ptr << 4;
1341 *mem_addr_ptr |= fromhex (ch) & 0x0f;
1342 }
1343
1344 while ((ch = from[i++]) != ':')
1345 {
1346 *len_ptr = *len_ptr << 4;
1347 *len_ptr |= fromhex (ch) & 0x0f;
1348 }
1349
fa593d66 1350 if (*to_p == NULL)
224c3ddb 1351 *to_p = (unsigned char *) xmalloc (*len_ptr);
fa593d66 1352
a7191e8b 1353 hex2bin (&from[i++], *to_p, *len_ptr);
c906108c 1354}
2f2893d9 1355
01f9e8fa
DJ
1356int
1357decode_X_packet (char *from, int packet_len, CORE_ADDR *mem_addr_ptr,
fa593d66 1358 unsigned int *len_ptr, unsigned char **to_p)
01f9e8fa
DJ
1359{
1360 int i = 0;
1361 char ch;
1362 *mem_addr_ptr = *len_ptr = 0;
1363
1364 while ((ch = from[i++]) != ',')
1365 {
1366 *mem_addr_ptr = *mem_addr_ptr << 4;
1367 *mem_addr_ptr |= fromhex (ch) & 0x0f;
1368 }
1369
1370 while ((ch = from[i++]) != ':')
1371 {
1372 *len_ptr = *len_ptr << 4;
1373 *len_ptr |= fromhex (ch) & 0x0f;
1374 }
1375
fa593d66 1376 if (*to_p == NULL)
224c3ddb 1377 *to_p = (unsigned char *) xmalloc (*len_ptr);
fa593d66 1378
01f9e8fa 1379 if (remote_unescape_input ((const gdb_byte *) &from[i], packet_len - i,
fa593d66 1380 *to_p, *len_ptr) != *len_ptr)
01f9e8fa
DJ
1381 return -1;
1382
1383 return 0;
1384}
1385
0e7f50da 1386/* Decode a qXfer write request. */
d08aafef 1387
0e7f50da 1388int
d08aafef 1389decode_xfer_write (char *buf, int packet_len, CORE_ADDR *offset,
0e7f50da
UW
1390 unsigned int *len, unsigned char *data)
1391{
1392 char ch;
d08aafef 1393 char *b = buf;
0e7f50da
UW
1394
1395 /* Extract the offset. */
1396 *offset = 0;
1397 while ((ch = *buf++) != ':')
1398 {
1399 *offset = *offset << 4;
1400 *offset |= fromhex (ch) & 0x0f;
1401 }
1402
1403 /* Get encoded data. */
d08aafef 1404 packet_len -= buf - b;
0e7f50da
UW
1405 *len = remote_unescape_input ((const gdb_byte *) buf, packet_len,
1406 data, packet_len);
1407 return 0;
1408}
1409
08388c79
DE
1410/* Decode the parameters of a qSearch:memory packet. */
1411
1412int
1413decode_search_memory_packet (const char *buf, int packet_len,
1414 CORE_ADDR *start_addrp,
1415 CORE_ADDR *search_space_lenp,
1416 gdb_byte *pattern, unsigned int *pattern_lenp)
1417{
1418 const char *p = buf;
1419
1420 p = decode_address_to_semicolon (start_addrp, p);
1421 p = decode_address_to_semicolon (search_space_lenp, p);
1422 packet_len -= p - buf;
1423 *pattern_lenp = remote_unescape_input ((const gdb_byte *) p, packet_len,
1424 pattern, packet_len);
1425 return 0;
1426}
1427
95954743
PA
1428static void
1429free_sym_cache (struct sym_cache *sym)
1430{
1431 if (sym != NULL)
1432 {
1433 free (sym->name);
1434 free (sym);
1435 }
1436}
1437
1438void
1439clear_symbol_cache (struct sym_cache **symcache_p)
1440{
1441 struct sym_cache *sym, *next;
1442
1443 /* Check the cache first. */
1444 for (sym = *symcache_p; sym; sym = next)
1445 {
1446 next = sym->next;
1447 free_sym_cache (sym);
1448 }
1449
1450 *symcache_p = NULL;
1451}
1452
9836d6ea
PA
1453/* Get the address of NAME, and return it in ADDRP if found. if
1454 MAY_ASK_GDB is false, assume symbol cache misses are failures.
fd500816
DJ
1455 Returns 1 if the symbol is found, 0 if it is not, -1 on error. */
1456
2f2893d9 1457int
9836d6ea 1458look_up_one_symbol (const char *name, CORE_ADDR *addrp, int may_ask_gdb)
2f2893d9
DJ
1459{
1460 char own_buf[266], *p, *q;
1461 int len;
fd500816 1462 struct sym_cache *sym;
95954743
PA
1463 struct process_info *proc;
1464
1465 proc = current_process ();
fd500816
DJ
1466
1467 /* Check the cache first. */
95954743 1468 for (sym = proc->symbol_cache; sym; sym = sym->next)
fd500816
DJ
1469 if (strcmp (name, sym->name) == 0)
1470 {
1471 *addrp = sym->addr;
1472 return 1;
1473 }
2f2893d9 1474
9836d6ea
PA
1475 /* It might not be an appropriate time to look up a symbol,
1476 e.g. while we're trying to fetch registers. */
1477 if (!may_ask_gdb)
ea025f5f
DJ
1478 return 0;
1479
2f2893d9
DJ
1480 /* Send the request. */
1481 strcpy (own_buf, "qSymbol:");
971dc0b8
TT
1482 bin2hex ((const gdb_byte *) name, own_buf + strlen ("qSymbol:"),
1483 strlen (name));
2f2893d9
DJ
1484 if (putpkt (own_buf) < 0)
1485 return -1;
1486
1487 /* FIXME: Eventually add buffer overflow checking (to getpkt?) */
1488 len = getpkt (own_buf);
1489 if (len < 0)
1490 return -1;
1491
2bbe3cc1
DJ
1492 /* We ought to handle pretty much any packet at this point while we
1493 wait for the qSymbol "response". That requires re-entering the
1494 main loop. For now, this is an adequate approximation; allow
1495 GDB to read from memory while it figures out the address of the
1496 symbol. */
1497 while (own_buf[0] == 'm')
1498 {
1499 CORE_ADDR mem_addr;
1500 unsigned char *mem_buf;
1501 unsigned int mem_len;
1502
1503 decode_m_packet (&own_buf[1], &mem_addr, &mem_len);
224c3ddb 1504 mem_buf = (unsigned char *) xmalloc (mem_len);
2bbe3cc1 1505 if (read_inferior_memory (mem_addr, mem_buf, mem_len) == 0)
e9371aff 1506 bin2hex (mem_buf, own_buf, mem_len);
2bbe3cc1
DJ
1507 else
1508 write_enn (own_buf);
1509 free (mem_buf);
1510 if (putpkt (own_buf) < 0)
1511 return -1;
1512 len = getpkt (own_buf);
1513 if (len < 0)
1514 return -1;
1515 }
1b3f6016 1516
61012eef 1517 if (!startswith (own_buf, "qSymbol:"))
2f2893d9 1518 {
2bbe3cc1 1519 warning ("Malformed response to qSymbol, ignoring: %s\n", own_buf);
2f2893d9
DJ
1520 return -1;
1521 }
1522
1523 p = own_buf + strlen ("qSymbol:");
1524 q = p;
1525 while (*q && *q != ':')
1526 q++;
1527
1528 /* Make sure we found a value for the symbol. */
1529 if (p == q || *q == '\0')
1530 return 0;
1531
1532 decode_address (addrp, p, q - p);
fd500816
DJ
1533
1534 /* Save the symbol in our cache. */
8d749320 1535 sym = XNEW (struct sym_cache);
bca929d3 1536 sym->name = xstrdup (name);
fd500816 1537 sym->addr = *addrp;
95954743
PA
1538 sym->next = proc->symbol_cache;
1539 proc->symbol_cache = sym;
fd500816 1540
2f2893d9
DJ
1541 return 1;
1542}
c74d0ad8 1543
fa593d66
PA
1544/* Relocate an instruction to execute at a different address. OLDLOC
1545 is the address in the inferior memory where the instruction to
1546 relocate is currently at. On input, TO points to the destination
1547 where we want the instruction to be copied (and possibly adjusted)
1548 to. On output, it points to one past the end of the resulting
1549 instruction(s). The effect of executing the instruction at TO
86a30030 1550 shall be the same as if executing it at OLDLOC. For example, call
fa593d66
PA
1551 instructions that implicitly push the return address on the stack
1552 should be adjusted to return to the instruction after OLDLOC;
1553 relative branches, and other PC-relative instructions need the
1554 offset adjusted; etc. Returns 0 on success, -1 on failure. */
1555
1556int
1557relocate_instruction (CORE_ADDR *to, CORE_ADDR oldloc)
1558{
1559 char own_buf[266];
1560 int len;
1561 ULONGEST written = 0;
1562
1563 /* Send the request. */
1564 strcpy (own_buf, "qRelocInsn:");
1565 sprintf (own_buf, "qRelocInsn:%s;%s", paddress (oldloc),
1566 paddress (*to));
1567 if (putpkt (own_buf) < 0)
1568 return -1;
1569
1570 /* FIXME: Eventually add buffer overflow checking (to getpkt?) */
1571 len = getpkt (own_buf);
1572 if (len < 0)
1573 return -1;
1574
1575 /* We ought to handle pretty much any packet at this point while we
1576 wait for the qRelocInsn "response". That requires re-entering
1577 the main loop. For now, this is an adequate approximation; allow
1578 GDB to access memory. */
1579 while (own_buf[0] == 'm' || own_buf[0] == 'M' || own_buf[0] == 'X')
1580 {
1581 CORE_ADDR mem_addr;
1582 unsigned char *mem_buf = NULL;
1583 unsigned int mem_len;
1584
1585 if (own_buf[0] == 'm')
1586 {
1587 decode_m_packet (&own_buf[1], &mem_addr, &mem_len);
224c3ddb 1588 mem_buf = (unsigned char *) xmalloc (mem_len);
fa593d66 1589 if (read_inferior_memory (mem_addr, mem_buf, mem_len) == 0)
e9371aff 1590 bin2hex (mem_buf, own_buf, mem_len);
fa593d66
PA
1591 else
1592 write_enn (own_buf);
1593 }
1594 else if (own_buf[0] == 'X')
1595 {
1596 if (decode_X_packet (&own_buf[1], len - 1, &mem_addr,
1597 &mem_len, &mem_buf) < 0
1598 || write_inferior_memory (mem_addr, mem_buf, mem_len) != 0)
1599 write_enn (own_buf);
1600 else
1601 write_ok (own_buf);
1602 }
1603 else
1604 {
1605 decode_M_packet (&own_buf[1], &mem_addr, &mem_len, &mem_buf);
1606 if (write_inferior_memory (mem_addr, mem_buf, mem_len) == 0)
1607 write_ok (own_buf);
1608 else
1609 write_enn (own_buf);
1610 }
1611 free (mem_buf);
1612 if (putpkt (own_buf) < 0)
1613 return -1;
1614 len = getpkt (own_buf);
1615 if (len < 0)
1616 return -1;
1617 }
1618
1619 if (own_buf[0] == 'E')
1620 {
1621 warning ("An error occurred while relocating an instruction: %s\n",
1622 own_buf);
1623 return -1;
1624 }
1625
61012eef 1626 if (!startswith (own_buf, "qRelocInsn:"))
fa593d66
PA
1627 {
1628 warning ("Malformed response to qRelocInsn, ignoring: %s\n",
1629 own_buf);
1630 return -1;
1631 }
1632
1633 unpack_varlen_hex (own_buf + strlen ("qRelocInsn:"), &written);
1634
1635 *to += written;
1636 return 0;
1637}
1638
c74d0ad8 1639void
bce7165d 1640monitor_output (const char *msg)
c74d0ad8 1641{
0a822afb 1642 int len = strlen (msg);
224c3ddb 1643 char *buf = (char *) xmalloc (len * 2 + 2);
c74d0ad8
DJ
1644
1645 buf[0] = 'O';
971dc0b8 1646 bin2hex ((const gdb_byte *) msg, buf + 1, len);
c74d0ad8
DJ
1647
1648 putpkt (buf);
1649 free (buf);
1650}
255e7678 1651
0fb4aa4b 1652#endif
This page took 1.788133 seconds and 4 git commands to generate.