]> CyberLeo.Net >> Repos - FreeBSD/FreeBSD.git/blob - sys/gdb/gdb_main.c
MFV 364467:
[FreeBSD/FreeBSD.git] / sys / gdb / gdb_main.c
1 /*-
2  * SPDX-License-Identifier: BSD-2-Clause-FreeBSD
3  *
4  * Copyright (c) 2004 Marcel Moolenaar
5  * All rights reserved.
6  *
7  * Redistribution and use in source and binary forms, with or without
8  * modification, are permitted provided that the following conditions
9  * are met:
10  *
11  * 1. Redistributions of source code must retain the above copyright
12  *    notice, this list of conditions and the following disclaimer.
13  * 2. Redistributions in binary form must reproduce the above copyright
14  *    notice, this list of conditions and the following disclaimer in the
15  *    documentation and/or other materials provided with the distribution.
16  *
17  * THIS SOFTWARE IS PROVIDED BY THE AUTHORS ``AS IS'' AND ANY EXPRESS OR
18  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20  * IN NO EVENT SHALL THE AUTHORS BE LIABLE FOR ANY DIRECT, INDIRECT,
21  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27  */
28
29 #include <sys/cdefs.h>
30 __FBSDID("$FreeBSD$");
31
32 #include <sys/param.h>
33 #include <sys/systm.h>
34 #include <sys/kdb.h>
35 #include <sys/kernel.h>
36 #include <sys/pcpu.h>
37 #include <sys/proc.h>
38 #include <sys/reboot.h>
39 #include <sys/sbuf.h>
40
41 #include <machine/gdb_machdep.h>
42 #include <machine/kdb.h>
43
44 #include <gdb/gdb.h>
45 #include <gdb/gdb_int.h>
46
47 SYSCTL_NODE(_debug, OID_AUTO, gdb, CTLFLAG_RW | CTLFLAG_MPSAFE, 0,
48     "GDB settings");
49
50 static dbbe_init_f gdb_init;
51 static dbbe_trap_f gdb_trap;
52
53 KDB_BACKEND(gdb, gdb_init, NULL, NULL, gdb_trap);
54
55 static struct gdb_dbgport null_gdb_dbgport;
56 DATA_SET(gdb_dbgport_set, null_gdb_dbgport);
57 SET_DECLARE(gdb_dbgport_set, struct gdb_dbgport);
58
59 struct gdb_dbgport *gdb_cur = NULL;
60 int gdb_listening = 0;
61 bool gdb_ackmode = true;
62
63 static unsigned char gdb_bindata[64];
64
65 #ifdef DDB
66 bool gdb_return_to_ddb = false;
67 #endif
68
69 static int
70 gdb_init(void)
71 {
72         struct gdb_dbgport *dp, **iter;
73         int cur_pri, pri;
74
75         gdb_cur = NULL;
76         cur_pri = -1;
77         SET_FOREACH(iter, gdb_dbgport_set) {
78                 dp = *iter;
79                 pri = (dp->gdb_probe != NULL) ? dp->gdb_probe() : -1;
80                 dp->gdb_active = (pri >= 0) ? 0 : -1;
81                 if (pri > cur_pri) {
82                         cur_pri = pri;
83                         gdb_cur = dp;
84                 }
85         }
86         if (gdb_cur != NULL) {
87                 printf("GDB: debug ports:");
88                 SET_FOREACH(iter, gdb_dbgport_set) {
89                         dp = *iter;
90                         if (dp->gdb_active == 0)
91                                 printf(" %s", dp->gdb_name);
92                 }
93                 printf("\n");
94         } else
95                 printf("GDB: no debug ports present\n");
96         if (gdb_cur != NULL) {
97                 gdb_cur->gdb_init();
98                 printf("GDB: current port: %s\n", gdb_cur->gdb_name);
99         }
100         if (gdb_cur != NULL) {
101                 cur_pri = (boothowto & RB_GDB) ? 2 : 0;
102                 gdb_consinit();
103         } else
104                 cur_pri = -1;
105         return (cur_pri);
106 }
107
108 static void
109 gdb_do_mem_search(void)
110 {
111         size_t patlen;
112         intmax_t addr, size;
113         const unsigned char *found;
114
115         if (gdb_rx_varhex(&addr) || gdb_rx_char() != ';' ||
116             gdb_rx_varhex(&size) || gdb_rx_char() != ';' ||
117             gdb_rx_bindata(gdb_bindata, sizeof(gdb_bindata), &patlen)) {
118                 gdb_tx_err(EINVAL);
119                 return;
120         }
121         if (gdb_search_mem((char *)(uintptr_t)addr, size, gdb_bindata,
122             patlen, &found)) {
123                 if (found == 0ULL)
124                         gdb_tx_begin('0');
125                 else {
126                         gdb_tx_begin('1');
127                         gdb_tx_char(',');
128                         gdb_tx_hex((intmax_t)(uintptr_t)found, 8);
129                 }
130                 gdb_tx_end();
131         } else
132                 gdb_tx_err(EIO);
133 }
134
135 static void
136 gdb_do_threadinfo(struct thread **thr_iter)
137 {
138         static struct thread * const done_sentinel = (void *)(uintptr_t)1;
139         static const size_t tidsz_hex = sizeof(lwpid_t) * 2;
140         size_t tds_sent;
141
142         if (*thr_iter == NULL) {
143                 gdb_tx_err(ENXIO);
144                 return;
145         }
146
147         if (*thr_iter == done_sentinel) {
148                 gdb_tx_begin('l');
149                 *thr_iter = NULL;
150                 goto sendit;
151         }
152
153         gdb_tx_begin('m');
154
155         for (tds_sent = 0;
156             *thr_iter != NULL && gdb_txbuf_has_capacity(tidsz_hex + 1);
157             *thr_iter = kdb_thr_next(*thr_iter), tds_sent++) {
158                 if (tds_sent > 0)
159                         gdb_tx_char(',');
160                 gdb_tx_varhex((*thr_iter)->td_tid);
161         }
162
163         /*
164          * Can't send EOF and "some" in same packet, so set a sentinel to send
165          * EOF when GDB asks us next.
166          */
167         if (*thr_iter == NULL && tds_sent > 0)
168                 *thr_iter = done_sentinel;
169
170 sendit:
171         gdb_tx_end();
172 }
173
174 #define BIT(n)  (1ull << (n))
175 enum {
176         GDB_MULTIPROCESS,
177         GDB_SWBREAK,
178         GDB_HWBREAK,
179         GDB_QRELOCINSN,
180         GDB_FORK_EVENTS,
181         GDB_VFORK_EVENTS,
182         GDB_EXEC_EVENTS,
183         GDB_VCONT_SUPPORTED,
184         GDB_QTHREADEVENTS,
185         GDB_NO_RESUMED,
186 };
187 static const char * const gdb_feature_names[] = {
188         [GDB_MULTIPROCESS] = "multiprocess",
189         [GDB_SWBREAK] = "swbreak",
190         [GDB_HWBREAK] = "hwbreak",
191         [GDB_QRELOCINSN] = "qRelocInsn",
192         [GDB_FORK_EVENTS] = "fork-events",
193         [GDB_VFORK_EVENTS] = "vfork-events",
194         [GDB_EXEC_EVENTS] = "exec-events",
195         [GDB_VCONT_SUPPORTED] = "vContSupported",
196         [GDB_QTHREADEVENTS] = "QThreadEvents",
197         [GDB_NO_RESUMED] = "no-resumed",
198 };
199 static void
200 gdb_do_qsupported(uint32_t *feat)
201 {
202         char *tok, *delim, ok;
203         size_t i, toklen;
204
205         /* Parse supported host features */
206         *feat = 0;
207         switch (gdb_rx_char()) {
208         case ':':
209                 break;
210         case EOF:
211                 goto nofeatures;
212         default:
213                 goto error;
214         }
215
216         while (gdb_rxsz > 0) {
217                 tok = gdb_rxp;
218                 delim = strchrnul(gdb_rxp, ';');
219                 toklen = (delim - tok);
220
221                 gdb_rxp += toklen;
222                 gdb_rxsz -= toklen;
223                 if (*delim != '\0') {
224                         *delim = '\0';
225                         gdb_rxp += 1;
226                         gdb_rxsz -= 1;
227                 }
228
229                 if (toklen < 2)
230                         goto error;
231
232                 ok = tok[toklen - 1];
233                 if (ok != '-' && ok != '+') {
234                         /*
235                          * GDB only has one KV-pair feature, and we don't
236                          * support it, so ignore and move on.
237                          */
238                         if (strchr(tok, '=') != NULL)
239                                 continue;
240                         /* Not a KV-pair, and not a +/- flag?  Malformed. */
241                         goto error;
242                 }
243                 if (ok != '+')
244                         continue;
245                 tok[toklen - 1] = '\0';
246
247                 for (i = 0; i < nitems(gdb_feature_names); i++)
248                         if (strcmp(gdb_feature_names[i], tok) == 0)
249                                 break;
250
251                 if (i == nitems(gdb_feature_names)) {
252                         /* Unknown GDB feature. */
253                         continue;
254                 }
255
256                 *feat |= BIT(i);
257         }
258
259 nofeatures:
260         /* Send a supported feature list back */
261         gdb_tx_begin(0);
262
263         gdb_tx_str("PacketSize");
264         gdb_tx_char('=');
265         /*
266          * We don't buffer framing bytes, but we do need to retain a byte for a
267          * trailing nul.
268          */
269         gdb_tx_varhex(GDB_BUFSZ + strlen("$#nn") - 1);
270
271         gdb_tx_str(";qXfer:threads:read+");
272
273         /*
274          * If the debugport is a reliable transport, request No Ack mode from
275          * the server.  The server may or may not choose to enter No Ack mode.
276          * https://sourceware.org/gdb/onlinedocs/gdb/Packet-Acknowledgment.html
277          */
278         if (gdb_cur->gdb_dbfeatures & GDB_DBGP_FEAT_RELIABLE)
279                 gdb_tx_str(";QStartNoAckMode+");
280
281         /*
282          * Future consideration:
283          *   - vCont
284          *   - multiprocess
285          */
286         gdb_tx_end();
287         return;
288
289 error:
290         *feat = 0;
291         gdb_tx_err(EINVAL);
292 }
293
294 /*
295  * A qXfer_context provides a vaguely generic way to generate a multi-packet
296  * response on the fly, making some assumptions about the size of sbuf writes
297  * vs actual packet length constraints.  A non-byzantine gdb host should allow
298  * hundreds of bytes per packet or more.
299  *
300  * Upper layers are considered responsible for escaping the four forbidden
301  * characters '# $ } *'.
302  */
303 struct qXfer_context {
304         struct sbuf sb;
305         size_t last_offset;
306         bool flushed;
307         bool lastmessage;
308         char xfer_buf[GDB_BUFSZ];
309 };
310
311 static int
312 qXfer_drain(void *v, const char *buf, int len)
313 {
314         struct qXfer_context *qx;
315
316         if (len < 0)
317                 return (-EINVAL);
318
319         qx = v;
320         if (qx->flushed) {
321                 /*
322                  * Overflow.  We lost some message.  Maybe the packet size is
323                  * ridiculously small.
324                  */
325                 printf("%s: Overflow in qXfer detected.\n", __func__);
326                 return (-ENOBUFS);
327         }
328
329         qx->last_offset += len;
330         qx->flushed = true;
331
332         if (qx->lastmessage)
333                 gdb_tx_begin('l');
334         else
335                 gdb_tx_begin('m');
336
337         memcpy(gdb_txp, buf, len);
338         gdb_txp += len;
339
340         gdb_tx_end();
341         return (len);
342 }
343
344 static int
345 init_qXfer_ctx(struct qXfer_context *qx, uintmax_t len)
346 {
347
348         /* Protocol (max) length field includes framing overhead. */
349         if (len < sizeof("$m#nn"))
350                 return (ENOSPC);
351
352         len -= 4;
353         len = ummin(len, GDB_BUFSZ - 1);
354
355         qx->last_offset = 0;
356         qx->flushed = false;
357         qx->lastmessage = false;
358         sbuf_new(&qx->sb, qx->xfer_buf, len, SBUF_FIXEDLEN);
359         sbuf_set_drain(&qx->sb, qXfer_drain, qx);
360         return (0);
361 }
362
363 /*
364  * dst must be 2x strlen(max_src) + 1.
365  *
366  * Squashes invalid XML characters down to _.  Sorry.  Then escapes for GDB.
367  */
368 static void
369 qXfer_escape_xmlattr_str(char *dst, size_t dstlen, const char *src)
370 {
371         static const char *forbidden = "#$}*";
372
373         size_t i;
374         char c;
375
376         for (i = 0; i < dstlen - 1 && *src != 0; src++, i++) {
377                 c = *src;
378                 /* XML attr filter */
379                 if (c < 32)
380                         c = '_';
381                 /* We assume attributes will be "" quoted. */
382                 if (c == '<' || c == '&' || c == '"')
383                         c = '_';
384
385                 /* GDB escape. */
386                 if (strchr(forbidden, c) != NULL) {
387                         *dst++ = '}';
388                         c ^= 0x20;
389                 }
390                 *dst++ = c;
391         }
392         if (*src != 0)
393                 printf("XXX%s: overflow; API misuse\n", __func__);
394
395         *dst = 0;
396 }
397
398 /*
399  * Dynamically generate qXfer:threads document, one packet at a time.
400  *
401  * The format is loosely described[0], although it does not seem that the
402  * <?xml?> mentioned on that page is required.
403  *
404  * [0]: https://sourceware.org/gdb/current/onlinedocs/gdb/Thread-List-Format.html
405  */
406 static void
407 do_qXfer_threads_read(void)
408 {
409         /* Kludgy context */
410         static struct {
411                 struct qXfer_context qXfer;
412                 /* Kludgy state machine */
413                 struct thread *iter;
414                 enum {
415                         XML_START_THREAD,       /* '<thread' */
416                         XML_THREAD_ID,          /* ' id="xxx"' */
417                         XML_THREAD_CORE,        /* ' core="yyy"' */
418                         XML_THREAD_NAME,        /* ' name="zzz"' */
419                         XML_THREAD_EXTRA,       /* '> ...' */
420                         XML_END_THREAD,         /* '</thread>' */
421                         XML_SENT_END_THREADS,   /* '</threads>' */
422                 } next_step;
423         } ctx;
424         static char td_name_escape[MAXCOMLEN * 2 + 1];
425
426         const char *name_src;
427         uintmax_t offset, len;
428         int error;
429
430         /* Annex part must be empty. */
431         if (gdb_rx_char() != ':')
432                 goto misformed_request;
433
434         if (gdb_rx_varhex(&offset) != 0 ||
435             gdb_rx_char() != ',' ||
436             gdb_rx_varhex(&len) != 0)
437                 goto misformed_request;
438
439         /*
440          * Validate resume xfers.
441          */
442         if (offset != 0) {
443                 if (offset != ctx.qXfer.last_offset) {
444                         printf("%s: Resumed offset %ju != expected %zu\n",
445                             __func__, offset, ctx.qXfer.last_offset);
446                         error = ESPIPE;
447                         goto request_error;
448                 }
449                 ctx.qXfer.flushed = false;
450         }
451
452         if (offset == 0) {
453                 ctx.iter = kdb_thr_first();
454                 ctx.next_step = XML_START_THREAD;
455                 error = init_qXfer_ctx(&ctx.qXfer, len);
456                 if (error != 0)
457                         goto request_error;
458
459                 sbuf_cat(&ctx.qXfer.sb, "<threads>");
460         }
461
462         while (!ctx.qXfer.flushed && ctx.iter != NULL) {
463                 switch (ctx.next_step) {
464                 case XML_START_THREAD:
465                         ctx.next_step = XML_THREAD_ID;
466                         sbuf_cat(&ctx.qXfer.sb, "<thread");
467                         continue;
468
469                 case XML_THREAD_ID:
470                         ctx.next_step = XML_THREAD_CORE;
471                         sbuf_printf(&ctx.qXfer.sb, " id=\"%jx\"",
472                             (uintmax_t)ctx.iter->td_tid);
473                         continue;
474
475                 case XML_THREAD_CORE:
476                         ctx.next_step = XML_THREAD_NAME;
477                         if (ctx.iter->td_oncpu != NOCPU) {
478                                 sbuf_printf(&ctx.qXfer.sb, " core=\"%d\"",
479                                     ctx.iter->td_oncpu);
480                         }
481                         continue;
482
483                 case XML_THREAD_NAME:
484                         ctx.next_step = XML_THREAD_EXTRA;
485
486                         if (ctx.iter->td_name[0] != 0)
487                                 name_src = ctx.iter->td_name;
488                         else if (ctx.iter->td_proc != NULL &&
489                             ctx.iter->td_proc->p_comm[0] != 0)
490                                 name_src = ctx.iter->td_proc->p_comm;
491                         else
492                                 continue;
493
494                         qXfer_escape_xmlattr_str(td_name_escape,
495                             sizeof(td_name_escape), name_src);
496                         sbuf_printf(&ctx.qXfer.sb, " name=\"%s\"",
497                             td_name_escape);
498                         continue;
499
500                 case XML_THREAD_EXTRA:
501                         ctx.next_step = XML_END_THREAD;
502
503                         sbuf_putc(&ctx.qXfer.sb, '>');
504
505                         if (ctx.iter->td_state == TDS_RUNNING)
506                                 sbuf_cat(&ctx.qXfer.sb, "Running");
507                         else if (ctx.iter->td_state == TDS_RUNQ)
508                                 sbuf_cat(&ctx.qXfer.sb, "RunQ");
509                         else if (ctx.iter->td_state == TDS_CAN_RUN)
510                                 sbuf_cat(&ctx.qXfer.sb, "CanRun");
511                         else if (TD_ON_LOCK(ctx.iter))
512                                 sbuf_cat(&ctx.qXfer.sb, "Blocked");
513                         else if (TD_IS_SLEEPING(ctx.iter))
514                                 sbuf_cat(&ctx.qXfer.sb, "Sleeping");
515                         else if (TD_IS_SWAPPED(ctx.iter))
516                                 sbuf_cat(&ctx.qXfer.sb, "Swapped");
517                         else if (TD_AWAITING_INTR(ctx.iter))
518                                 sbuf_cat(&ctx.qXfer.sb, "IthreadWait");
519                         else if (TD_IS_SUSPENDED(ctx.iter))
520                                 sbuf_cat(&ctx.qXfer.sb, "Suspended");
521                         else
522                                 sbuf_cat(&ctx.qXfer.sb, "???");
523                         continue;
524
525                 case XML_END_THREAD:
526                         ctx.next_step = XML_START_THREAD;
527                         sbuf_cat(&ctx.qXfer.sb, "</thread>");
528                         ctx.iter = kdb_thr_next(ctx.iter);
529                         continue;
530
531                 /*
532                  * This one isn't part of the looping state machine,
533                  * but GCC complains if you leave an enum value out of the
534                  * select.
535                  */
536                 case XML_SENT_END_THREADS:
537                         /* NOTREACHED */
538                         break;
539                 }
540         }
541         if (ctx.qXfer.flushed)
542                 return;
543
544         if (ctx.next_step != XML_SENT_END_THREADS) {
545                 ctx.next_step = XML_SENT_END_THREADS;
546                 sbuf_cat(&ctx.qXfer.sb, "</threads>");
547         }
548         if (ctx.qXfer.flushed)
549                 return;
550
551         ctx.qXfer.lastmessage = true;
552         sbuf_finish(&ctx.qXfer.sb);
553         sbuf_delete(&ctx.qXfer.sb);
554         ctx.qXfer.last_offset = 0;
555         return;
556
557 misformed_request:
558         /*
559          * GDB "General-Query-Packets.html" qXfer-read anchor specifically
560          * documents an E00 code for malformed requests or invalid annex.
561          * Non-zero codes indicate invalid offset or "error reading the data."
562          */
563         error = 0;
564 request_error:
565         gdb_tx_err(error);
566         return;
567 }
568
569 /*
570  * A set of standardized transfers from "special data areas."
571  *
572  * We've already matched on "qXfer:" and advanced the rx packet buffer past
573  * that bit.  Parse out the rest of the packet and generate an appropriate
574  * response.
575  */
576 static void
577 do_qXfer(void)
578 {
579         if (!gdb_rx_equal("threads:"))
580                 goto unrecognized;
581
582         if (!gdb_rx_equal("read:"))
583                 goto unrecognized;
584
585         do_qXfer_threads_read();
586         return;
587
588 unrecognized:
589         gdb_tx_empty();
590         return;
591 }
592
593 static void
594 gdb_handle_detach(void)
595 {
596         kdb_cpu_clear_singlestep();
597         gdb_listening = 0;
598
599         if (gdb_cur->gdb_dbfeatures & GDB_DBGP_FEAT_WANTTERM)
600                 gdb_cur->gdb_term();
601
602 #ifdef DDB
603         if (!gdb_return_to_ddb)
604                 return;
605
606         gdb_return_to_ddb = false;
607
608         if (kdb_dbbe_select("ddb") != 0)
609                 printf("The ddb backend could not be selected.\n");
610 #endif
611 }
612
613 static int
614 gdb_trap(int type, int code)
615 {
616         jmp_buf jb;
617         struct thread *thr_iter;
618         void *prev_jb;
619         uint32_t host_features;
620
621         prev_jb = kdb_jmpbuf(jb);
622         if (setjmp(jb) != 0) {
623                 printf("%s bailing, hopefully back to ddb!\n", __func__);
624                 gdb_listening = 0;
625                 (void)kdb_jmpbuf(prev_jb);
626                 return (1);
627         }
628
629         gdb_listening = 0;
630         gdb_ackmode = true;
631
632         /*
633          * Send a T packet. We currently do not support watchpoints (the
634          * awatch, rwatch or watch elements).
635          */
636         gdb_tx_begin('T');
637         gdb_tx_hex(gdb_cpu_signal(type, code), 2);
638         gdb_tx_varhex(GDB_REG_PC);
639         gdb_tx_char(':');
640         gdb_tx_reg(GDB_REG_PC);
641         gdb_tx_char(';');
642         gdb_tx_str("thread:");
643         gdb_tx_varhex((long)kdb_thread->td_tid);
644         gdb_tx_char(';');
645         gdb_tx_end();                   /* XXX check error condition. */
646
647         thr_iter = NULL;
648         while (gdb_rx_begin() == 0) {
649                 /* printf("GDB: got '%s'\n", gdb_rxp); */
650                 switch (gdb_rx_char()) {
651                 case '?':       /* Last signal. */
652                         gdb_tx_begin('T');
653                         gdb_tx_hex(gdb_cpu_signal(type, code), 2);
654                         gdb_tx_str("thread:");
655                         gdb_tx_varhex((long)kdb_thread->td_tid);
656                         gdb_tx_char(';');
657                         gdb_tx_end();
658                         break;
659                 case 'c': {     /* Continue. */
660                         uintmax_t addr;
661                         register_t pc;
662                         if (!gdb_rx_varhex(&addr)) {
663                                 pc = addr;
664                                 gdb_cpu_setreg(GDB_REG_PC, &pc);
665                         }
666                         kdb_cpu_clear_singlestep();
667                         gdb_listening = 1;
668                         return (1);
669                 }
670                 case 'C': {     /* Continue with signal. */
671                         uintmax_t addr, sig;
672                         register_t pc;
673                         if (!gdb_rx_varhex(&sig) && gdb_rx_char() == ';' &&
674                             !gdb_rx_varhex(&addr)) {
675                                 pc = addr;
676                                 gdb_cpu_setreg(GDB_REG_PC, &pc);
677                         }
678                         kdb_cpu_clear_singlestep();
679                         gdb_listening = 1;
680                         return (1);
681                 }
682                 case 'D': {     /* Detach */
683                         gdb_tx_ok();
684                         gdb_handle_detach();
685                         return (1);
686                 }
687                 case 'g': {     /* Read registers. */
688                         size_t r;
689                         gdb_tx_begin(0);
690                         for (r = 0; r < GDB_NREGS; r++)
691                                 gdb_tx_reg(r);
692                         gdb_tx_end();
693                         break;
694                 }
695                 case 'G':       /* Write registers. */
696                         gdb_tx_err(0);
697                         break;
698                 case 'H': {     /* Set thread. */
699                         intmax_t tid;
700                         struct thread *thr;
701
702                         /* Ignore 'g' (general) or 'c' (continue) flag. */
703                         (void) gdb_rx_char();
704
705                         if (gdb_rx_varhex(&tid)) {
706                                 gdb_tx_err(EINVAL);
707                                 break;
708                         }
709                         if (tid > 0) {
710                                 thr = kdb_thr_lookup(tid);
711                                 if (thr == NULL) {
712                                         gdb_tx_err(ENOENT);
713                                         break;
714                                 }
715                                 kdb_thr_select(thr);
716                         }
717                         gdb_tx_ok();
718                         break;
719                 }
720                 case 'k':       /* Kill request. */
721                         gdb_handle_detach();
722                         return (1);
723                 case 'm': {     /* Read memory. */
724                         uintmax_t addr, size;
725                         if (gdb_rx_varhex(&addr) || gdb_rx_char() != ',' ||
726                             gdb_rx_varhex(&size)) {
727                                 gdb_tx_err(EINVAL);
728                                 break;
729                         }
730                         gdb_tx_begin(0);
731                         if (gdb_tx_mem((char *)(uintptr_t)addr, size))
732                                 gdb_tx_end();
733                         else
734                                 gdb_tx_err(EIO);
735                         break;
736                 }
737                 case 'M': {     /* Write memory. */
738                         uintmax_t addr, size;
739                         if (gdb_rx_varhex(&addr) || gdb_rx_char() != ',' ||
740                             gdb_rx_varhex(&size) || gdb_rx_char() != ':') {
741                                 gdb_tx_err(EINVAL);
742                                 break;
743                         }
744                         if (gdb_rx_mem((char *)(uintptr_t)addr, size) == 0)
745                                 gdb_tx_err(EIO);
746                         else
747                                 gdb_tx_ok();
748                         break;
749                 }
750                 case 'P': {     /* Write register. */
751                         char *val;
752                         uintmax_t reg;
753                         val = gdb_rxp;
754                         if (gdb_rx_varhex(&reg) || gdb_rx_char() != '=' ||
755                             !gdb_rx_mem(val, gdb_cpu_regsz(reg))) {
756                                 gdb_tx_err(EINVAL);
757                                 break;
758                         }
759                         gdb_cpu_setreg(reg, val);
760                         gdb_tx_ok();
761                         break;
762                 }
763                 case 'q':       /* General query. */
764                         if (gdb_rx_equal("C")) {
765                                 gdb_tx_begin('Q');
766                                 gdb_tx_char('C');
767                                 gdb_tx_varhex((long)kdb_thread->td_tid);
768                                 gdb_tx_end();
769                         } else if (gdb_rx_equal("Supported")) {
770                                 gdb_do_qsupported(&host_features);
771                         } else if (gdb_rx_equal("fThreadInfo")) {
772                                 thr_iter = kdb_thr_first();
773                                 gdb_do_threadinfo(&thr_iter);
774                         } else if (gdb_rx_equal("sThreadInfo")) {
775                                 gdb_do_threadinfo(&thr_iter);
776                         } else if (gdb_rx_equal("Xfer:")) {
777                                 do_qXfer();
778                         } else if (gdb_rx_equal("Search:memory:")) {
779                                 gdb_do_mem_search();
780 #ifdef __powerpc__
781                         } else if (gdb_rx_equal("Offsets")) {
782                                 gdb_cpu_do_offsets();
783 #endif
784                         } else if (!gdb_cpu_query())
785                                 gdb_tx_empty();
786                         break;
787                 case 'Q':
788                         if (gdb_rx_equal("StartNoAckMode")) {
789                                 if ((gdb_cur->gdb_dbfeatures &
790                                     GDB_DBGP_FEAT_RELIABLE) == 0) {
791                                         /*
792                                          * Shouldn't happen if we didn't
793                                          * advertise support.  Reject.
794                                          */
795                                         gdb_tx_empty();
796                                         break;
797                                 }
798                                 gdb_ackmode = false;
799                                 gdb_tx_ok();
800                         } else
801                                 gdb_tx_empty();
802                         break;
803                 case 's': {     /* Step. */
804                         uintmax_t addr;
805                         register_t pc;
806                         if (!gdb_rx_varhex(&addr)) {
807                                 pc = addr;
808                                 gdb_cpu_setreg(GDB_REG_PC, &pc);
809                         }
810                         kdb_cpu_set_singlestep();
811                         gdb_listening = 1;
812                         return (1);
813                 }
814                 case 'S': {     /* Step with signal. */
815                         uintmax_t addr, sig;
816                         register_t pc;
817                         if (!gdb_rx_varhex(&sig) && gdb_rx_char() == ';' &&
818                             !gdb_rx_varhex(&addr)) {
819                                 pc = addr;
820                                 gdb_cpu_setreg(GDB_REG_PC, &pc);
821                         }
822                         kdb_cpu_set_singlestep();
823                         gdb_listening = 1;
824                         return (1);
825                 }
826                 case 'T': {     /* Thread alive. */
827                         intmax_t tid;
828                         if (gdb_rx_varhex(&tid)) {
829                                 gdb_tx_err(EINVAL);
830                                 break;
831                         }
832                         if (kdb_thr_lookup(tid) != NULL)
833                                 gdb_tx_ok();
834                         else
835                                 gdb_tx_err(ENOENT);
836                         break;
837                 }
838                 case EOF:
839                         /* Empty command. Treat as unknown command. */
840                         /* FALLTHROUGH */
841                 default:
842                         /* Unknown command. Send empty response. */
843                         gdb_tx_empty();
844                         break;
845                 }
846         }
847         (void)kdb_jmpbuf(prev_jb);
848         return (0);
849 }