kgdb_stub.c revision 1.30 1 1.30 skrll /* $NetBSD: kgdb_stub.c,v 1.30 2021/01/13 07:36:56 skrll Exp $ */
2 1.1 gwr
3 1.1 gwr /*
4 1.1 gwr * Copyright (c) 1990, 1993
5 1.1 gwr * The Regents of the University of California. All rights reserved.
6 1.1 gwr *
7 1.1 gwr * This software was developed by the Computer Systems Engineering group
8 1.1 gwr * at Lawrence Berkeley Laboratory under DARPA contract BG 91-66 and
9 1.1 gwr * contributed to Berkeley.
10 1.1 gwr *
11 1.1 gwr * All advertising materials mentioning features or use of this software
12 1.1 gwr * must display the following acknowledgement:
13 1.1 gwr * This product includes software developed by the University of
14 1.1 gwr * California, Lawrence Berkeley Laboratories.
15 1.1 gwr *
16 1.1 gwr * Redistribution and use in source and binary forms, with or without
17 1.1 gwr * modification, are permitted provided that the following conditions
18 1.1 gwr * are met:
19 1.1 gwr * 1. Redistributions of source code must retain the above copyright
20 1.1 gwr * notice, this list of conditions and the following disclaimer.
21 1.1 gwr * 2. Redistributions in binary form must reproduce the above copyright
22 1.1 gwr * notice, this list of conditions and the following disclaimer in the
23 1.1 gwr * documentation and/or other materials provided with the distribution.
24 1.15 agc * 3. Neither the name of the University nor the names of its contributors
25 1.1 gwr * may be used to endorse or promote products derived from this software
26 1.1 gwr * without specific prior written permission.
27 1.1 gwr *
28 1.1 gwr * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
29 1.1 gwr * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
30 1.1 gwr * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
31 1.1 gwr * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
32 1.1 gwr * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
33 1.1 gwr * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
34 1.1 gwr * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
35 1.1 gwr * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
36 1.1 gwr * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
37 1.1 gwr * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
38 1.1 gwr * SUCH DAMAGE.
39 1.1 gwr *
40 1.1 gwr * @(#)kgdb_stub.c 8.4 (Berkeley) 1/12/94
41 1.1 gwr */
42 1.1 gwr
43 1.1 gwr /*
44 1.16 wiz * "Stub" to allow remote CPU to debug over a serial line using gdb.
45 1.1 gwr */
46 1.10 lukem
47 1.10 lukem #include <sys/cdefs.h>
48 1.30 skrll __KERNEL_RCSID(0, "$NetBSD: kgdb_stub.c,v 1.30 2021/01/13 07:36:56 skrll Exp $");
49 1.11 lukem
50 1.25 matt #include "opt_ddb.h"
51 1.11 lukem #include "opt_kgdb.h"
52 1.1 gwr
53 1.1 gwr #include <sys/param.h>
54 1.1 gwr #include <sys/systm.h>
55 1.1 gwr #include <sys/kgdb.h>
56 1.1 gwr
57 1.13 thorpej #undef DEBUG_KGDB
58 1.13 thorpej
59 1.13 thorpej #ifdef DEBUG_KGDB
60 1.13 thorpej #define DPRINTF(x) printf x
61 1.13 thorpej #else
62 1.13 thorpej #define DPRINTF(x)
63 1.13 thorpej #endif
64 1.1 gwr
65 1.1 gwr /* XXX: Maybe these should be in the MD files? */
66 1.11 lukem #ifndef KGDB_DEV
67 1.11 lukem #define KGDB_DEV NODEV
68 1.1 gwr #endif
69 1.11 lukem #ifndef KGDB_DEVRATE
70 1.11 lukem #define KGDB_DEVRATE 19200
71 1.1 gwr #endif
72 1.1 gwr
73 1.23 cegger dev_t kgdb_dev = KGDB_DEV; /* remote debugging device (NODEV if none) */
74 1.11 lukem int kgdb_rate = KGDB_DEVRATE; /* remote debugging baud rate */
75 1.1 gwr int kgdb_active = 0; /* remote debugging active if != 0 */
76 1.1 gwr int kgdb_debug_init = 0; /* != 0 waits for remote at system init */
77 1.1 gwr int kgdb_debug_panic = 0; /* != 0 waits for remote on panic */
78 1.1 gwr label_t *kgdb_recover = 0;
79 1.1 gwr
80 1.17 junyoung static int (*kgdb_getc)(void *);
81 1.17 junyoung static void (*kgdb_putc)(void *, int);
82 1.1 gwr static void *kgdb_ioarg;
83 1.1 gwr
84 1.12 dbj /* KGDB_BUFLEN must be at least (2*KGDB_NUMREGS*sizeof(kgdb_reg_t)+1) */
85 1.1 gwr static u_char buffer[KGDB_BUFLEN];
86 1.1 gwr static kgdb_reg_t gdb_regs[KGDB_NUMREGS];
87 1.1 gwr
88 1.29 christos #define GETC() kgdb_waitc(kgdb_ioarg)
89 1.29 christos #define PUTC(c) (*kgdb_putc)(kgdb_ioarg, c)
90 1.29 christos
91 1.29 christos static int
92 1.29 christos kgdb_waitc(void *arg)
93 1.29 christos {
94 1.29 christos int c;
95 1.29 christos while ((c = (*kgdb_getc)(arg)) == -1)
96 1.29 christos continue;
97 1.29 christos return c;
98 1.29 christos }
99 1.1 gwr
100 1.1 gwr /*
101 1.7 jeffs * db_trap_callback can be hooked by MD port code to handle special
102 1.7 jeffs * cases such as disabling hardware watchdogs while in kgdb. Name
103 1.7 jeffs * is shared with DDB.
104 1.7 jeffs */
105 1.25 matt #ifdef DDB
106 1.25 matt extern void (*db_trap_callback)(int);
107 1.25 matt #else
108 1.7 jeffs void (*db_trap_callback)(int);
109 1.25 matt #endif
110 1.7 jeffs
111 1.24 dyoung void kgdb_voidop(void);
112 1.24 dyoung
113 1.24 dyoung __weak_alias(kgdb_entry_notice, kgdb_voidop);
114 1.24 dyoung
115 1.24 dyoung void
116 1.24 dyoung kgdb_voidop(void)
117 1.24 dyoung {
118 1.24 dyoung return;
119 1.24 dyoung }
120 1.24 dyoung
121 1.7 jeffs /*
122 1.1 gwr * This little routine exists simply so that bcopy() can be debugged.
123 1.1 gwr */
124 1.1 gwr static void
125 1.22 thorpej kgdb_copy(void *vsrc, void *vdst, int len)
126 1.1 gwr {
127 1.1 gwr char *src = vsrc;
128 1.1 gwr char *dst = vdst;
129 1.1 gwr
130 1.1 gwr while (--len >= 0)
131 1.1 gwr *dst++ = *src++;
132 1.1 gwr }
133 1.1 gwr
134 1.1 gwr #if 0
135 1.1 gwr /* ditto for bzero */
136 1.1 gwr static void
137 1.22 thorpej kgdb_zero(void *vptr, int len)
138 1.1 gwr {
139 1.1 gwr char *ptr = vptr;
140 1.1 gwr
141 1.1 gwr while (--len >= 0)
142 1.1 gwr *ptr++ = (char) 0;
143 1.1 gwr }
144 1.1 gwr #endif
145 1.1 gwr
146 1.1 gwr /*
147 1.1 gwr * Convert a hex digit into an integer.
148 1.1 gwr * This returns -1 if the argument passed is no
149 1.1 gwr * valid hex digit.
150 1.1 gwr */
151 1.1 gwr static int
152 1.22 thorpej digit2i(u_char c)
153 1.1 gwr {
154 1.1 gwr if (c >= '0' && c <= '9')
155 1.6 scottr return (c - '0');
156 1.1 gwr else if (c >= 'a' && c <= 'f')
157 1.19 perry return (c - 'a' + 10);
158 1.1 gwr else if (c >= 'A' && c <= 'F')
159 1.1 gwr
160 1.19 perry return (c - 'A' + 10);
161 1.1 gwr else
162 1.6 scottr return (-1);
163 1.1 gwr }
164 1.1 gwr
165 1.1 gwr /*
166 1.1 gwr * Convert the low 4 bits of an integer into
167 1.30 skrll * a hex digit.
168 1.1 gwr */
169 1.1 gwr static u_char
170 1.22 thorpej i2digit(int n)
171 1.1 gwr {
172 1.20 christos return (hexdigits[n & 0x0f]);
173 1.1 gwr }
174 1.1 gwr
175 1.1 gwr /*
176 1.30 skrll * Convert a byte array into a hex string.
177 1.1 gwr */
178 1.1 gwr static void
179 1.22 thorpej mem2hex(void *vdst, void *vsrc, int len)
180 1.1 gwr {
181 1.1 gwr u_char *dst = vdst;
182 1.1 gwr u_char *src = vsrc;
183 1.1 gwr
184 1.1 gwr while (len--) {
185 1.1 gwr *dst++ = i2digit(*src >> 4);
186 1.1 gwr *dst++ = i2digit(*src++);
187 1.1 gwr }
188 1.1 gwr *dst = '\0';
189 1.1 gwr }
190 1.1 gwr
191 1.1 gwr /*
192 1.30 skrll * Convert a hex string into a byte array.
193 1.1 gwr * This returns a pointer to the character following
194 1.1 gwr * the last valid hex digit. If the string ends in
195 1.1 gwr * the middle of a byte, NULL is returned.
196 1.1 gwr */
197 1.1 gwr static u_char *
198 1.22 thorpej hex2mem(void *vdst, u_char *src, int maxlen)
199 1.1 gwr {
200 1.1 gwr u_char *dst = vdst;
201 1.1 gwr int msb, lsb;
202 1.1 gwr
203 1.1 gwr while (*src && maxlen--) {
204 1.1 gwr msb = digit2i(*src++);
205 1.1 gwr if (msb < 0)
206 1.6 scottr return (src - 1);
207 1.1 gwr lsb = digit2i(*src++);
208 1.1 gwr if (lsb < 0)
209 1.6 scottr return (NULL);
210 1.1 gwr *dst++ = (msb << 4) | lsb;
211 1.1 gwr }
212 1.6 scottr return (src);
213 1.1 gwr }
214 1.1 gwr
215 1.1 gwr /*
216 1.30 skrll * Convert a hex string into an integer.
217 1.1 gwr * This returns a pointer to the character following
218 1.1 gwr * the last valid hex digit.
219 1.19 perry */
220 1.5 eeh static vaddr_t
221 1.22 thorpej hex2i(u_char **srcp)
222 1.1 gwr {
223 1.1 gwr char *src = *srcp;
224 1.5 eeh vaddr_t r = 0;
225 1.1 gwr int nibble;
226 1.1 gwr
227 1.1 gwr while ((nibble = digit2i(*src)) >= 0) {
228 1.1 gwr r *= 16;
229 1.1 gwr r += nibble;
230 1.1 gwr src++;
231 1.1 gwr }
232 1.1 gwr *srcp = src;
233 1.6 scottr return (r);
234 1.1 gwr }
235 1.1 gwr
236 1.1 gwr /*
237 1.1 gwr * Send a packet.
238 1.1 gwr */
239 1.1 gwr static void
240 1.22 thorpej kgdb_send(const u_char *bp)
241 1.1 gwr {
242 1.21 christos const u_char *p;
243 1.1 gwr u_char csum, c;
244 1.1 gwr
245 1.13 thorpej DPRINTF(("kgdb_send: %s\n", bp));
246 1.1 gwr do {
247 1.1 gwr p = bp;
248 1.1 gwr PUTC(KGDB_START);
249 1.1 gwr for (csum = 0; (c = *p); p++) {
250 1.1 gwr PUTC(c);
251 1.1 gwr csum += c;
252 1.1 gwr }
253 1.1 gwr PUTC(KGDB_END);
254 1.1 gwr PUTC(i2digit(csum >> 4));
255 1.1 gwr PUTC(i2digit(csum));
256 1.1 gwr } while ((c = GETC() & 0x7f) == KGDB_BADP);
257 1.1 gwr }
258 1.1 gwr
259 1.1 gwr /*
260 1.1 gwr * Receive a packet.
261 1.1 gwr */
262 1.1 gwr static int
263 1.22 thorpej kgdb_recv(u_char *bp, int maxlen)
264 1.1 gwr {
265 1.1 gwr u_char *p;
266 1.13 thorpej int c, csum, tmpcsum;
267 1.1 gwr int len;
268 1.1 gwr
269 1.13 thorpej DPRINTF(("kgdb_recv: "));
270 1.1 gwr do {
271 1.1 gwr p = bp;
272 1.1 gwr csum = len = 0;
273 1.1 gwr while ((c = GETC()) != KGDB_START)
274 1.13 thorpej DPRINTF(("%c",c));
275 1.13 thorpej DPRINTF(("%c Start ",c));
276 1.1 gwr
277 1.1 gwr while ((c = GETC()) != KGDB_END && len < maxlen) {
278 1.13 thorpej DPRINTF(("%c",c));
279 1.1 gwr c &= 0x7f;
280 1.1 gwr csum += c;
281 1.1 gwr *p++ = c;
282 1.1 gwr len++;
283 1.1 gwr }
284 1.1 gwr csum &= 0xff;
285 1.1 gwr *p = '\0';
286 1.13 thorpej DPRINTF(("%c End ", c));
287 1.1 gwr
288 1.1 gwr if (len >= maxlen) {
289 1.13 thorpej DPRINTF(("Long- "));
290 1.1 gwr PUTC(KGDB_BADP);
291 1.1 gwr continue;
292 1.1 gwr }
293 1.13 thorpej tmpcsum = csum;
294 1.1 gwr
295 1.13 thorpej c = GETC();
296 1.13 thorpej DPRINTF(("%c",c));
297 1.13 thorpej csum -= digit2i(c) * 16;
298 1.13 thorpej c = GETC();
299 1.13 thorpej DPRINTF(("%c",c));
300 1.13 thorpej csum -= digit2i(c);
301 1.1 gwr
302 1.1 gwr if (csum == 0) {
303 1.13 thorpej DPRINTF(("Good+ "));
304 1.1 gwr PUTC(KGDB_GOODP);
305 1.1 gwr /* Sequence present? */
306 1.1 gwr if (bp[2] == ':') {
307 1.13 thorpej DPRINTF(("Seq %c%c ", bp[0], bp[1]));
308 1.1 gwr PUTC(bp[0]);
309 1.1 gwr PUTC(bp[1]);
310 1.1 gwr len -= 3;
311 1.1 gwr kgdb_copy(bp + 3, bp, len);
312 1.1 gwr }
313 1.1 gwr break;
314 1.1 gwr }
315 1.13 thorpej DPRINTF((" Bad(wanted %x, off by %d)- ", tmpcsum, csum));
316 1.27 christos __USE(tmpcsum);
317 1.1 gwr PUTC(KGDB_BADP);
318 1.1 gwr } while (1);
319 1.13 thorpej DPRINTF(("kgdb_recv: %s\n", bp));
320 1.6 scottr return (len);
321 1.1 gwr }
322 1.1 gwr
323 1.1 gwr /*
324 1.6 scottr * This is called by the appropriate tty driver.
325 1.1 gwr */
326 1.1 gwr void
327 1.22 thorpej kgdb_attach(int (*getfn)(void *), void (*putfn)(void *, int), void *ioarg)
328 1.1 gwr {
329 1.1 gwr kgdb_getc = getfn;
330 1.1 gwr kgdb_putc = putfn;
331 1.1 gwr kgdb_ioarg = ioarg;
332 1.1 gwr }
333 1.1 gwr
334 1.1 gwr /*
335 1.6 scottr * This function does all command processing for interfacing to
336 1.1 gwr * a remote gdb. Note that the error codes are ignored by gdb
337 1.1 gwr * at present, but might eventually become meaningful. (XXX)
338 1.1 gwr * It might makes sense to use POSIX errno values, because
339 1.1 gwr * that is what the gdb/remote.c functions want to return.
340 1.1 gwr */
341 1.1 gwr int
342 1.22 thorpej kgdb_trap(int type, db_regs_t *regs)
343 1.1 gwr {
344 1.1 gwr label_t jmpbuf;
345 1.5 eeh vaddr_t addr;
346 1.1 gwr size_t len;
347 1.1 gwr u_char *p;
348 1.1 gwr
349 1.24 dyoung kgdb_entry_notice(type, regs);
350 1.24 dyoung
351 1.23 cegger if (kgdb_dev == NODEV || kgdb_getc == NULL) {
352 1.1 gwr /* not debugging */
353 1.1 gwr return (0);
354 1.1 gwr }
355 1.8 wdk
356 1.8 wdk db_clear_single_step(regs);
357 1.1 gwr
358 1.26 skrll if (db_trap_callback)
359 1.26 skrll db_trap_callback(1);
360 1.7 jeffs
361 1.1 gwr /* Detect and recover from unexpected traps. */
362 1.1 gwr if (kgdb_recover != 0) {
363 1.1 gwr printf("kgdb: caught trap 0x%x at %p\n",
364 1.1 gwr type, (void*)PC_REGS(regs));
365 1.1 gwr kgdb_send("E0E"); /* 14==EFAULT */
366 1.1 gwr longjmp(kgdb_recover);
367 1.1 gwr }
368 1.1 gwr
369 1.1 gwr /*
370 1.2 gwr * The first entry to this function is normally through
371 1.2 gwr * a breakpoint trap in kgdb_connect(), in which case we
372 1.2 gwr * must advance past the breakpoint because gdb will not.
373 1.2 gwr *
374 1.2 gwr * Machines vary as to where they leave the PC after a
375 1.2 gwr * breakpoint trap. Those that leave the PC set to the
376 1.2 gwr * address of the trap instruction (i.e. pc532) will not
377 1.2 gwr * define FIXUP_PC_AFTER_BREAK(), and therefore will just
378 1.2 gwr * advance the PC. On machines that leave the PC set to
379 1.2 gwr * the instruction after the trap, FIXUP_PC_AFTER_BREAK
380 1.2 gwr * will be defined to back-up the PC, so that after the
381 1.2 gwr * "first-time" part of the if statement below has run,
382 1.2 gwr * the PC will be the same as it was on entry.
383 1.2 gwr *
384 1.1 gwr * On the first entry here, we expect that gdb is not yet
385 1.1 gwr * listening to us, so just enter the interaction loop.
386 1.2 gwr * After the debugger is "active" (connected) it will be
387 1.1 gwr * waiting for a "signaled" message from us.
388 1.1 gwr */
389 1.1 gwr if (kgdb_active == 0) {
390 1.1 gwr if (!IS_BREAKPOINT_TRAP(type, 0)) {
391 1.1 gwr /* No debugger active -- let trap handle this. */
392 1.26 skrll if (db_trap_callback)
393 1.26 skrll db_trap_callback(0);
394 1.1 gwr return (0);
395 1.1 gwr }
396 1.2 gwr /* Make the PC point at the breakpoint... */
397 1.2 gwr #ifdef FIXUP_PC_AFTER_BREAK
398 1.2 gwr FIXUP_PC_AFTER_BREAK(regs);
399 1.2 gwr #endif
400 1.2 gwr /* ... and then advance past it. */
401 1.4 pk #ifdef PC_ADVANCE
402 1.4 pk PC_ADVANCE(regs);
403 1.4 pk #else
404 1.2 gwr PC_REGS(regs) += BKPT_SIZE;
405 1.4 pk #endif
406 1.1 gwr kgdb_active = 1;
407 1.1 gwr } else {
408 1.9 wiz /* Tell remote host that an exception has occurred. */
409 1.18 itojun snprintf(buffer, sizeof(buffer), "S%02x", kgdb_signal(type));
410 1.1 gwr kgdb_send(buffer);
411 1.1 gwr }
412 1.1 gwr
413 1.1 gwr /* Stick frame regs into our reg cache. */
414 1.1 gwr kgdb_getregs(regs, gdb_regs);
415 1.1 gwr
416 1.1 gwr /*
417 1.1 gwr * Interact with gdb until it lets us go.
418 1.1 gwr * If we cause a trap, resume here.
419 1.1 gwr */
420 1.6 scottr (void)setjmp((kgdb_recover = &jmpbuf));
421 1.1 gwr for (;;) {
422 1.1 gwr kgdb_recv(buffer, sizeof(buffer));
423 1.1 gwr switch (buffer[0]) {
424 1.1 gwr
425 1.1 gwr default:
426 1.1 gwr /* Unknown command. */
427 1.1 gwr kgdb_send("");
428 1.1 gwr continue;
429 1.1 gwr
430 1.1 gwr case KGDB_SIGNAL:
431 1.1 gwr /*
432 1.1 gwr * if this command came from a running gdb,
433 1.1 gwr * answer it -- the other guy has no way of
434 1.1 gwr * knowing if we're in or out of this loop
435 1.1 gwr * when he issues a "remote-signal".
436 1.1 gwr */
437 1.18 itojun snprintf(buffer, sizeof(buffer), "S%02x",
438 1.18 itojun kgdb_signal(type));
439 1.1 gwr kgdb_send(buffer);
440 1.1 gwr continue;
441 1.1 gwr
442 1.1 gwr case KGDB_REG_R:
443 1.1 gwr mem2hex(buffer, gdb_regs, sizeof(gdb_regs));
444 1.1 gwr kgdb_send(buffer);
445 1.1 gwr continue;
446 1.1 gwr
447 1.1 gwr case KGDB_REG_W:
448 1.1 gwr p = hex2mem(gdb_regs, buffer + 1, sizeof(gdb_regs));
449 1.1 gwr if (p == NULL || *p != '\0')
450 1.1 gwr kgdb_send("E01");
451 1.1 gwr else {
452 1.1 gwr kgdb_setregs(regs, gdb_regs);
453 1.1 gwr kgdb_send("OK");
454 1.1 gwr }
455 1.1 gwr continue;
456 1.1 gwr
457 1.1 gwr case KGDB_MEM_R:
458 1.1 gwr p = buffer + 1;
459 1.1 gwr addr = hex2i(&p);
460 1.1 gwr if (*p++ != ',') {
461 1.1 gwr kgdb_send("E02");
462 1.1 gwr continue;
463 1.1 gwr }
464 1.1 gwr len = hex2i(&p);
465 1.1 gwr if (*p != '\0') {
466 1.1 gwr kgdb_send("E03");
467 1.1 gwr continue;
468 1.1 gwr }
469 1.1 gwr if (len > sizeof(buffer) / 2) {
470 1.1 gwr kgdb_send("E04");
471 1.1 gwr continue;
472 1.1 gwr }
473 1.1 gwr if (kgdb_acc(addr, len) == 0) {
474 1.1 gwr kgdb_send("E05");
475 1.1 gwr continue;
476 1.1 gwr }
477 1.28 christos char *ptr = (char *)buffer + sizeof(buffer) / 2;
478 1.28 christos db_read_bytes(addr, len, ptr);
479 1.28 christos mem2hex(buffer, ptr, len);
480 1.1 gwr kgdb_send(buffer);
481 1.1 gwr continue;
482 1.1 gwr
483 1.1 gwr case KGDB_MEM_W:
484 1.1 gwr p = buffer + 1;
485 1.1 gwr addr = hex2i(&p);
486 1.1 gwr if (*p++ != ',') {
487 1.1 gwr kgdb_send("E06");
488 1.1 gwr continue;
489 1.1 gwr }
490 1.1 gwr len = hex2i(&p);
491 1.1 gwr if (*p++ != ':') {
492 1.1 gwr kgdb_send("E07");
493 1.1 gwr continue;
494 1.1 gwr }
495 1.1 gwr if (len > (sizeof(buffer) - (p - buffer))) {
496 1.1 gwr kgdb_send("E08");
497 1.1 gwr continue;
498 1.1 gwr }
499 1.1 gwr p = hex2mem(buffer, p, sizeof(buffer));
500 1.1 gwr if (p == NULL) {
501 1.1 gwr kgdb_send("E09");
502 1.1 gwr continue;
503 1.1 gwr }
504 1.1 gwr if (kgdb_acc(addr, len) == 0) {
505 1.1 gwr kgdb_send("E0A");
506 1.1 gwr continue;
507 1.1 gwr }
508 1.28 christos db_write_bytes(addr, len, (char *)buffer);
509 1.1 gwr kgdb_send("OK");
510 1.1 gwr continue;
511 1.1 gwr
512 1.12 dbj case KGDB_DETACH:
513 1.1 gwr case KGDB_KILL:
514 1.1 gwr kgdb_active = 0;
515 1.1 gwr printf("kgdb detached\n");
516 1.1 gwr db_clear_single_step(regs);
517 1.12 dbj kgdb_send("OK");
518 1.1 gwr goto out;
519 1.1 gwr
520 1.1 gwr case KGDB_CONT:
521 1.1 gwr if (buffer[1]) {
522 1.1 gwr p = buffer + 1;
523 1.1 gwr addr = hex2i(&p);
524 1.1 gwr if (*p) {
525 1.1 gwr kgdb_send("E0B");
526 1.1 gwr continue;
527 1.1 gwr }
528 1.1 gwr PC_REGS(regs) = addr;
529 1.14 dbj DPRINTF(("kgdb: continuing at %08lx\n", addr));
530 1.13 thorpej
531 1.13 thorpej } else {
532 1.13 thorpej DPRINTF((
533 1.13 thorpej "kgdb: continuing at old address %08lx\n",
534 1.14 dbj (vaddr_t)PC_REGS(regs)));
535 1.1 gwr }
536 1.13 thorpej
537 1.1 gwr db_clear_single_step(regs);
538 1.1 gwr goto out;
539 1.1 gwr
540 1.1 gwr case KGDB_STEP:
541 1.1 gwr if (buffer[1]) {
542 1.1 gwr p = buffer + 1;
543 1.1 gwr addr = hex2i(&p);
544 1.1 gwr if (*p) {
545 1.1 gwr kgdb_send("E0B");
546 1.1 gwr continue;
547 1.1 gwr }
548 1.1 gwr PC_REGS(regs) = addr;
549 1.1 gwr }
550 1.1 gwr db_set_single_step(regs);
551 1.1 gwr goto out;
552 1.1 gwr }
553 1.1 gwr }
554 1.1 gwr out:
555 1.26 skrll if (db_trap_callback)
556 1.26 skrll db_trap_callback(0);
557 1.1 gwr kgdb_recover = 0;
558 1.1 gwr return (1);
559 1.1 gwr }
560 1.24 dyoung
561 1.24 dyoung int
562 1.24 dyoung kgdb_disconnected(void)
563 1.24 dyoung {
564 1.24 dyoung return 1;
565 1.24 dyoung }
566