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[thirdparty/qemu.git] / gdbstub.c
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b4608c04
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1/*
2 * gdb server stub
3 *
3475187d 4 * Copyright (c) 2003-2005 Fabrice Bellard
b4608c04
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5 *
6 * This library is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU Lesser General Public
8 * License as published by the Free Software Foundation; either
9 * version 2 of the License, or (at your option) any later version.
10 *
11 * This library 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 GNU
14 * Lesser General Public License for more details.
15 *
16 * You should have received a copy of the GNU Lesser General Public
17 * License along with this library; if not, write to the Free Software
18 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
19 */
1fddef4b
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20#ifdef CONFIG_USER_ONLY
21#include <stdlib.h>
22#include <stdio.h>
23#include <stdarg.h>
24#include <string.h>
25#include <errno.h>
26#include <unistd.h>
27
28#include "qemu.h"
29#else
67b915a5 30#include "vl.h"
1fddef4b 31#endif
67b915a5 32
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33#include <sys/socket.h>
34#include <netinet/in.h>
35#include <netinet/tcp.h>
36#include <signal.h>
b4608c04 37
4abe615b 38//#define DEBUG_GDB
b4608c04 39
858693c6
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40enum RSState {
41 RS_IDLE,
42 RS_GETLINE,
43 RS_CHKSUM1,
44 RS_CHKSUM2,
45};
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46/* XXX: This is not thread safe. Do we care? */
47static int gdbserver_fd = -1;
b4608c04 48
858693c6 49typedef struct GDBState {
6a00d601 50 CPUState *env; /* current CPU */
41625033 51 enum RSState state; /* parsing state */
858693c6
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52 int fd;
53 char line_buf[4096];
54 int line_buf_index;
55 int line_csum;
41625033
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56#ifdef CONFIG_USER_ONLY
57 int running_state;
58#endif
858693c6 59} GDBState;
b4608c04 60
1fddef4b
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61#ifdef CONFIG_USER_ONLY
62/* XXX: remove this hack. */
63static GDBState gdbserver_state;
64#endif
65
858693c6 66static int get_char(GDBState *s)
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67{
68 uint8_t ch;
69 int ret;
70
71 for(;;) {
858693c6 72 ret = read(s->fd, &ch, 1);
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73 if (ret < 0) {
74 if (errno != EINTR && errno != EAGAIN)
75 return -1;
76 } else if (ret == 0) {
77 return -1;
78 } else {
79 break;
80 }
81 }
82 return ch;
83}
84
858693c6 85static void put_buffer(GDBState *s, const uint8_t *buf, int len)
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86{
87 int ret;
88
89 while (len > 0) {
858693c6 90 ret = write(s->fd, buf, len);
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91 if (ret < 0) {
92 if (errno != EINTR && errno != EAGAIN)
93 return;
94 } else {
95 buf += ret;
96 len -= ret;
97 }
98 }
99}
100
101static inline int fromhex(int v)
102{
103 if (v >= '0' && v <= '9')
104 return v - '0';
105 else if (v >= 'A' && v <= 'F')
106 return v - 'A' + 10;
107 else if (v >= 'a' && v <= 'f')
108 return v - 'a' + 10;
109 else
110 return 0;
111}
112
113static inline int tohex(int v)
114{
115 if (v < 10)
116 return v + '0';
117 else
118 return v - 10 + 'a';
119}
120
121static void memtohex(char *buf, const uint8_t *mem, int len)
122{
123 int i, c;
124 char *q;
125 q = buf;
126 for(i = 0; i < len; i++) {
127 c = mem[i];
128 *q++ = tohex(c >> 4);
129 *q++ = tohex(c & 0xf);
130 }
131 *q = '\0';
132}
133
134static void hextomem(uint8_t *mem, const char *buf, int len)
135{
136 int i;
137
138 for(i = 0; i < len; i++) {
139 mem[i] = (fromhex(buf[0]) << 4) | fromhex(buf[1]);
140 buf += 2;
141 }
142}
143
b4608c04 144/* return -1 if error, 0 if OK */
858693c6 145static int put_packet(GDBState *s, char *buf)
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146{
147 char buf1[3];
148 int len, csum, ch, i;
149
150#ifdef DEBUG_GDB
151 printf("reply='%s'\n", buf);
152#endif
153
154 for(;;) {
155 buf1[0] = '$';
858693c6 156 put_buffer(s, buf1, 1);
b4608c04 157 len = strlen(buf);
858693c6 158 put_buffer(s, buf, len);
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159 csum = 0;
160 for(i = 0; i < len; i++) {
161 csum += buf[i];
162 }
163 buf1[0] = '#';
164 buf1[1] = tohex((csum >> 4) & 0xf);
165 buf1[2] = tohex((csum) & 0xf);
166
858693c6 167 put_buffer(s, buf1, 3);
b4608c04 168
858693c6 169 ch = get_char(s);
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170 if (ch < 0)
171 return -1;
172 if (ch == '+')
173 break;
174 }
175 return 0;
176}
177
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178#if defined(TARGET_I386)
179
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180static int cpu_gdb_read_registers(CPUState *env, uint8_t *mem_buf)
181{
e95c8d51 182 uint32_t *registers = (uint32_t *)mem_buf;
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183 int i, fpus;
184
185 for(i = 0; i < 8; i++) {
e95c8d51 186 registers[i] = env->regs[i];
6da41eaf 187 }
e95c8d51
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188 registers[8] = env->eip;
189 registers[9] = env->eflags;
190 registers[10] = env->segs[R_CS].selector;
191 registers[11] = env->segs[R_SS].selector;
192 registers[12] = env->segs[R_DS].selector;
193 registers[13] = env->segs[R_ES].selector;
194 registers[14] = env->segs[R_FS].selector;
195 registers[15] = env->segs[R_GS].selector;
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196 /* XXX: convert floats */
197 for(i = 0; i < 8; i++) {
198 memcpy(mem_buf + 16 * 4 + i * 10, &env->fpregs[i], 10);
199 }
e95c8d51 200 registers[36] = env->fpuc;
6da41eaf 201 fpus = (env->fpus & ~0x3800) | (env->fpstt & 0x7) << 11;
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202 registers[37] = fpus;
203 registers[38] = 0; /* XXX: convert tags */
204 registers[39] = 0; /* fiseg */
205 registers[40] = 0; /* fioff */
206 registers[41] = 0; /* foseg */
207 registers[42] = 0; /* fooff */
208 registers[43] = 0; /* fop */
209
210 for(i = 0; i < 16; i++)
211 tswapls(&registers[i]);
212 for(i = 36; i < 44; i++)
213 tswapls(&registers[i]);
6da41eaf
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214 return 44 * 4;
215}
216
217static void cpu_gdb_write_registers(CPUState *env, uint8_t *mem_buf, int size)
218{
219 uint32_t *registers = (uint32_t *)mem_buf;
220 int i;
221
222 for(i = 0; i < 8; i++) {
223 env->regs[i] = tswapl(registers[i]);
224 }
e95c8d51
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225 env->eip = tswapl(registers[8]);
226 env->eflags = tswapl(registers[9]);
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227#if defined(CONFIG_USER_ONLY)
228#define LOAD_SEG(index, sreg)\
229 if (tswapl(registers[index]) != env->segs[sreg].selector)\
230 cpu_x86_load_seg(env, sreg, tswapl(registers[index]));
231 LOAD_SEG(10, R_CS);
232 LOAD_SEG(11, R_SS);
233 LOAD_SEG(12, R_DS);
234 LOAD_SEG(13, R_ES);
235 LOAD_SEG(14, R_FS);
236 LOAD_SEG(15, R_GS);
237#endif
238}
239
9e62fd7f 240#elif defined (TARGET_PPC)
9e62fd7f
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241static int cpu_gdb_read_registers(CPUState *env, uint8_t *mem_buf)
242{
a541f297 243 uint32_t *registers = (uint32_t *)mem_buf, tmp;
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244 int i;
245
246 /* fill in gprs */
a541f297 247 for(i = 0; i < 32; i++) {
e95c8d51 248 registers[i] = tswapl(env->gpr[i]);
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249 }
250 /* fill in fprs */
251 for (i = 0; i < 32; i++) {
e95c8d51
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252 registers[(i * 2) + 32] = tswapl(*((uint32_t *)&env->fpr[i]));
253 registers[(i * 2) + 33] = tswapl(*((uint32_t *)&env->fpr[i] + 1));
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254 }
255 /* nip, msr, ccr, lnk, ctr, xer, mq */
e95c8d51 256 registers[96] = tswapl(env->nip);
3fc6c082 257 registers[97] = tswapl(do_load_msr(env));
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258 tmp = 0;
259 for (i = 0; i < 8; i++)
a541f297 260 tmp |= env->crf[i] << (32 - ((i + 1) * 4));
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261 registers[98] = tswapl(tmp);
262 registers[99] = tswapl(env->lr);
263 registers[100] = tswapl(env->ctr);
3fc6c082 264 registers[101] = tswapl(do_load_xer(env));
e95c8d51 265 registers[102] = 0;
a541f297
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266
267 return 103 * 4;
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268}
269
270static void cpu_gdb_write_registers(CPUState *env, uint8_t *mem_buf, int size)
271{
272 uint32_t *registers = (uint32_t *)mem_buf;
273 int i;
274
275 /* fill in gprs */
276 for (i = 0; i < 32; i++) {
e95c8d51 277 env->gpr[i] = tswapl(registers[i]);
9e62fd7f
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278 }
279 /* fill in fprs */
280 for (i = 0; i < 32; i++) {
e95c8d51
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281 *((uint32_t *)&env->fpr[i]) = tswapl(registers[(i * 2) + 32]);
282 *((uint32_t *)&env->fpr[i] + 1) = tswapl(registers[(i * 2) + 33]);
9e62fd7f
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283 }
284 /* nip, msr, ccr, lnk, ctr, xer, mq */
e95c8d51 285 env->nip = tswapl(registers[96]);
3fc6c082 286 do_store_msr(env, tswapl(registers[97]));
e95c8d51 287 registers[98] = tswapl(registers[98]);
9e62fd7f 288 for (i = 0; i < 8; i++)
a541f297 289 env->crf[i] = (registers[98] >> (32 - ((i + 1) * 4))) & 0xF;
e95c8d51
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290 env->lr = tswapl(registers[99]);
291 env->ctr = tswapl(registers[100]);
3fc6c082 292 do_store_xer(env, tswapl(registers[101]));
e95c8d51
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293}
294#elif defined (TARGET_SPARC)
295static int cpu_gdb_read_registers(CPUState *env, uint8_t *mem_buf)
296{
3475187d 297 target_ulong *registers = (target_ulong *)mem_buf;
e95c8d51
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298 int i;
299
300 /* fill in g0..g7 */
48b2c193 301 for(i = 0; i < 8; i++) {
e95c8d51
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302 registers[i] = tswapl(env->gregs[i]);
303 }
304 /* fill in register window */
305 for(i = 0; i < 24; i++) {
306 registers[i + 8] = tswapl(env->regwptr[i]);
307 }
308 /* fill in fprs */
309 for (i = 0; i < 32; i++) {
310 registers[i + 32] = tswapl(*((uint32_t *)&env->fpr[i]));
311 }
3475187d 312#ifndef TARGET_SPARC64
e95c8d51
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313 /* Y, PSR, WIM, TBR, PC, NPC, FPSR, CPSR */
314 registers[64] = tswapl(env->y);
3475187d
FB
315 {
316 target_ulong tmp;
317
318 tmp = GET_PSR(env);
319 registers[65] = tswapl(tmp);
320 }
e95c8d51
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321 registers[66] = tswapl(env->wim);
322 registers[67] = tswapl(env->tbr);
323 registers[68] = tswapl(env->pc);
324 registers[69] = tswapl(env->npc);
325 registers[70] = tswapl(env->fsr);
326 registers[71] = 0; /* csr */
327 registers[72] = 0;
3475187d
FB
328 return 73 * sizeof(target_ulong);
329#else
330 for (i = 0; i < 32; i += 2) {
331 registers[i/2 + 64] = tswapl(*((uint64_t *)&env->fpr[i]));
332 }
333 registers[81] = tswapl(env->pc);
334 registers[82] = tswapl(env->npc);
335 registers[83] = tswapl(env->tstate[env->tl]);
336 registers[84] = tswapl(env->fsr);
337 registers[85] = tswapl(env->fprs);
338 registers[86] = tswapl(env->y);
339 return 87 * sizeof(target_ulong);
340#endif
e95c8d51
FB
341}
342
343static void cpu_gdb_write_registers(CPUState *env, uint8_t *mem_buf, int size)
344{
3475187d 345 target_ulong *registers = (target_ulong *)mem_buf;
e95c8d51
FB
346 int i;
347
348 /* fill in g0..g7 */
349 for(i = 0; i < 7; i++) {
350 env->gregs[i] = tswapl(registers[i]);
351 }
352 /* fill in register window */
353 for(i = 0; i < 24; i++) {
3475187d 354 env->regwptr[i] = tswapl(registers[i + 8]);
e95c8d51
FB
355 }
356 /* fill in fprs */
357 for (i = 0; i < 32; i++) {
358 *((uint32_t *)&env->fpr[i]) = tswapl(registers[i + 32]);
359 }
3475187d 360#ifndef TARGET_SPARC64
e95c8d51
FB
361 /* Y, PSR, WIM, TBR, PC, NPC, FPSR, CPSR */
362 env->y = tswapl(registers[64]);
e80cfcfc 363 PUT_PSR(env, tswapl(registers[65]));
e95c8d51
FB
364 env->wim = tswapl(registers[66]);
365 env->tbr = tswapl(registers[67]);
366 env->pc = tswapl(registers[68]);
367 env->npc = tswapl(registers[69]);
368 env->fsr = tswapl(registers[70]);
3475187d
FB
369#else
370 for (i = 0; i < 32; i += 2) {
371 uint64_t tmp;
372 tmp = tswapl(registers[i/2 + 64]) << 32;
373 tmp |= tswapl(registers[i/2 + 64 + 1]);
374 *((uint64_t *)&env->fpr[i]) = tmp;
375 }
376 env->pc = tswapl(registers[81]);
377 env->npc = tswapl(registers[82]);
378 env->tstate[env->tl] = tswapl(registers[83]);
379 env->fsr = tswapl(registers[84]);
380 env->fprs = tswapl(registers[85]);
381 env->y = tswapl(registers[86]);
382#endif
9e62fd7f 383}
1fddef4b
FB
384#elif defined (TARGET_ARM)
385static int cpu_gdb_read_registers(CPUState *env, uint8_t *mem_buf)
386{
387 int i;
388 uint8_t *ptr;
389
390 ptr = mem_buf;
391 /* 16 core integer registers (4 bytes each). */
392 for (i = 0; i < 16; i++)
393 {
394 *(uint32_t *)ptr = tswapl(env->regs[i]);
395 ptr += 4;
396 }
397 /* 8 FPA registers (12 bytes each), FPS (4 bytes).
398 Not yet implemented. */
399 memset (ptr, 0, 8 * 12 + 4);
400 ptr += 8 * 12 + 4;
401 /* CPSR (4 bytes). */
b5ff1b31 402 *(uint32_t *)ptr = tswapl (cpsr_read(env));
1fddef4b
FB
403 ptr += 4;
404
405 return ptr - mem_buf;
406}
6da41eaf 407
1fddef4b
FB
408static void cpu_gdb_write_registers(CPUState *env, uint8_t *mem_buf, int size)
409{
410 int i;
411 uint8_t *ptr;
412
413 ptr = mem_buf;
414 /* Core integer registers. */
415 for (i = 0; i < 16; i++)
416 {
417 env->regs[i] = tswapl(*(uint32_t *)ptr);
418 ptr += 4;
419 }
420 /* Ignore FPA regs and scr. */
421 ptr += 8 * 12 + 4;
b5ff1b31 422 cpsr_write (env, tswapl(*(uint32_t *)ptr), 0xffffffff);
1fddef4b 423}
6f970bd9
FB
424#elif defined (TARGET_MIPS)
425static int cpu_gdb_read_registers(CPUState *env, uint8_t *mem_buf)
426{
427 int i;
428 uint8_t *ptr;
429
430 ptr = mem_buf;
431 for (i = 0; i < 32; i++)
432 {
433 *(uint32_t *)ptr = tswapl(env->gpr[i]);
434 ptr += 4;
435 }
436
437 *(uint32_t *)ptr = tswapl(env->CP0_Status);
438 ptr += 4;
439
440 *(uint32_t *)ptr = tswapl(env->LO);
441 ptr += 4;
442
443 *(uint32_t *)ptr = tswapl(env->HI);
444 ptr += 4;
445
446 *(uint32_t *)ptr = tswapl(env->CP0_BadVAddr);
447 ptr += 4;
448
449 *(uint32_t *)ptr = tswapl(env->CP0_Cause);
450 ptr += 4;
451
452 *(uint32_t *)ptr = tswapl(env->PC);
453 ptr += 4;
454
455 /* 32 FP registers, fsr, fir, fp. Not yet implemented. */
456
457 return ptr - mem_buf;
458}
459
460static void cpu_gdb_write_registers(CPUState *env, uint8_t *mem_buf, int size)
461{
462 int i;
463 uint8_t *ptr;
464
465 ptr = mem_buf;
466 for (i = 0; i < 32; i++)
467 {
468 env->gpr[i] = tswapl(*(uint32_t *)ptr);
469 ptr += 4;
470 }
471
472 env->CP0_Status = tswapl(*(uint32_t *)ptr);
473 ptr += 4;
474
475 env->LO = tswapl(*(uint32_t *)ptr);
476 ptr += 4;
477
478 env->HI = tswapl(*(uint32_t *)ptr);
479 ptr += 4;
480
481 env->CP0_BadVAddr = tswapl(*(uint32_t *)ptr);
482 ptr += 4;
483
484 env->CP0_Cause = tswapl(*(uint32_t *)ptr);
485 ptr += 4;
486
487 env->PC = tswapl(*(uint32_t *)ptr);
488 ptr += 4;
489}
1fddef4b 490#else
6da41eaf
FB
491static int cpu_gdb_read_registers(CPUState *env, uint8_t *mem_buf)
492{
493 return 0;
494}
495
496static void cpu_gdb_write_registers(CPUState *env, uint8_t *mem_buf, int size)
497{
498}
499
500#endif
b4608c04 501
1fddef4b 502static int gdb_handle_packet(GDBState *s, CPUState *env, const char *line_buf)
b4608c04 503{
b4608c04 504 const char *p;
858693c6 505 int ch, reg_size, type;
b4608c04
FB
506 char buf[4096];
507 uint8_t mem_buf[2000];
508 uint32_t *registers;
509 uint32_t addr, len;
510
858693c6
FB
511#ifdef DEBUG_GDB
512 printf("command='%s'\n", line_buf);
513#endif
514 p = line_buf;
515 ch = *p++;
516 switch(ch) {
517 case '?':
1fddef4b 518 /* TODO: Make this return the correct value for user-mode. */
858693c6
FB
519 snprintf(buf, sizeof(buf), "S%02x", SIGTRAP);
520 put_packet(s, buf);
521 break;
522 case 'c':
523 if (*p != '\0') {
524 addr = strtoul(p, (char **)&p, 16);
4c3a88a2 525#if defined(TARGET_I386)
858693c6 526 env->eip = addr;
5be1a8e0 527#elif defined (TARGET_PPC)
858693c6 528 env->nip = addr;
8d5f07fa
FB
529#elif defined (TARGET_SPARC)
530 env->pc = addr;
531 env->npc = addr + 4;
b5ff1b31
FB
532#elif defined (TARGET_ARM)
533 env->regs[15] = addr;
4c3a88a2 534#endif
858693c6 535 }
41625033
FB
536#ifdef CONFIG_USER_ONLY
537 s->running_state = 1;
538#else
539 vm_start();
540#endif
541 return RS_IDLE;
858693c6
FB
542 case 's':
543 if (*p != '\0') {
544 addr = strtoul(p, (char **)&p, 16);
c33a346e 545#if defined(TARGET_I386)
858693c6 546 env->eip = addr;
5be1a8e0 547#elif defined (TARGET_PPC)
858693c6 548 env->nip = addr;
8d5f07fa
FB
549#elif defined (TARGET_SPARC)
550 env->pc = addr;
551 env->npc = addr + 4;
b5ff1b31
FB
552#elif defined (TARGET_ARM)
553 env->regs[15] = addr;
c33a346e 554#endif
858693c6
FB
555 }
556 cpu_single_step(env, 1);
41625033
FB
557#ifdef CONFIG_USER_ONLY
558 s->running_state = 1;
559#else
560 vm_start();
561#endif
562 return RS_IDLE;
858693c6
FB
563 case 'g':
564 reg_size = cpu_gdb_read_registers(env, mem_buf);
565 memtohex(buf, mem_buf, reg_size);
566 put_packet(s, buf);
567 break;
568 case 'G':
569 registers = (void *)mem_buf;
570 len = strlen(p) / 2;
571 hextomem((uint8_t *)registers, p, len);
572 cpu_gdb_write_registers(env, mem_buf, len);
573 put_packet(s, "OK");
574 break;
575 case 'm':
576 addr = strtoul(p, (char **)&p, 16);
577 if (*p == ',')
578 p++;
579 len = strtoul(p, NULL, 16);
6f970bd9
FB
580 if (cpu_memory_rw_debug(env, addr, mem_buf, len, 0) != 0) {
581 put_packet (s, "E14");
582 } else {
583 memtohex(buf, mem_buf, len);
584 put_packet(s, buf);
585 }
858693c6
FB
586 break;
587 case 'M':
588 addr = strtoul(p, (char **)&p, 16);
589 if (*p == ',')
590 p++;
591 len = strtoul(p, (char **)&p, 16);
b328f873 592 if (*p == ':')
858693c6
FB
593 p++;
594 hextomem(mem_buf, p, len);
595 if (cpu_memory_rw_debug(env, addr, mem_buf, len, 1) != 0)
905f20b1 596 put_packet(s, "E14");
858693c6
FB
597 else
598 put_packet(s, "OK");
599 break;
600 case 'Z':
601 type = strtoul(p, (char **)&p, 16);
602 if (*p == ',')
603 p++;
604 addr = strtoul(p, (char **)&p, 16);
605 if (*p == ',')
606 p++;
607 len = strtoul(p, (char **)&p, 16);
608 if (type == 0 || type == 1) {
609 if (cpu_breakpoint_insert(env, addr) < 0)
610 goto breakpoint_error;
611 put_packet(s, "OK");
612 } else {
613 breakpoint_error:
905f20b1 614 put_packet(s, "E22");
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615 }
616 break;
617 case 'z':
618 type = strtoul(p, (char **)&p, 16);
619 if (*p == ',')
620 p++;
621 addr = strtoul(p, (char **)&p, 16);
622 if (*p == ',')
623 p++;
624 len = strtoul(p, (char **)&p, 16);
625 if (type == 0 || type == 1) {
626 cpu_breakpoint_remove(env, addr);
627 put_packet(s, "OK");
628 } else {
629 goto breakpoint_error;
630 }
631 break;
632 default:
633 // unknown_command:
634 /* put empty packet */
635 buf[0] = '\0';
636 put_packet(s, buf);
637 break;
638 }
639 return RS_IDLE;
640}
641
612458f5
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642extern void tb_flush(CPUState *env);
643
1fddef4b 644#ifndef CONFIG_USER_ONLY
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645static void gdb_vm_stopped(void *opaque, int reason)
646{
647 GDBState *s = opaque;
648 char buf[256];
649 int ret;
650
651 /* disable single step if it was enable */
6a00d601 652 cpu_single_step(s->env, 0);
858693c6 653
e80cfcfc 654 if (reason == EXCP_DEBUG) {
6a00d601 655 tb_flush(s->env);
858693c6 656 ret = SIGTRAP;
e80cfcfc 657 }
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658 else
659 ret = 0;
660 snprintf(buf, sizeof(buf), "S%02x", ret);
661 put_packet(s, buf);
662}
1fddef4b 663#endif
858693c6 664
6a00d601 665static void gdb_read_byte(GDBState *s, int ch)
858693c6 666{
6a00d601 667 CPUState *env = s->env;
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668 int i, csum;
669 char reply[1];
670
1fddef4b 671#ifndef CONFIG_USER_ONLY
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672 if (vm_running) {
673 /* when the CPU is running, we cannot do anything except stop
674 it when receiving a char */
675 vm_stop(EXCP_INTERRUPT);
41625033 676 } else
1fddef4b 677#endif
41625033 678 {
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679 switch(s->state) {
680 case RS_IDLE:
681 if (ch == '$') {
682 s->line_buf_index = 0;
683 s->state = RS_GETLINE;
c33a346e 684 }
b4608c04 685 break;
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686 case RS_GETLINE:
687 if (ch == '#') {
688 s->state = RS_CHKSUM1;
689 } else if (s->line_buf_index >= sizeof(s->line_buf) - 1) {
690 s->state = RS_IDLE;
4c3a88a2 691 } else {
858693c6 692 s->line_buf[s->line_buf_index++] = ch;
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693 }
694 break;
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695 case RS_CHKSUM1:
696 s->line_buf[s->line_buf_index] = '\0';
697 s->line_csum = fromhex(ch) << 4;
698 s->state = RS_CHKSUM2;
699 break;
700 case RS_CHKSUM2:
701 s->line_csum |= fromhex(ch);
702 csum = 0;
703 for(i = 0; i < s->line_buf_index; i++) {
704 csum += s->line_buf[i];
705 }
706 if (s->line_csum != (csum & 0xff)) {
707 reply[0] = '-';
708 put_buffer(s, reply, 1);
709 s->state = RS_IDLE;
4c3a88a2 710 } else {
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711 reply[0] = '+';
712 put_buffer(s, reply, 1);
1fddef4b 713 s->state = gdb_handle_packet(s, env, s->line_buf);
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714 }
715 break;
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716 }
717 }
718}
719
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720#ifdef CONFIG_USER_ONLY
721int
722gdb_handlesig (CPUState *env, int sig)
723{
724 GDBState *s;
725 char buf[256];
726 int n;
727
728 if (gdbserver_fd < 0)
729 return sig;
730
731 s = &gdbserver_state;
732
733 /* disable single step if it was enabled */
734 cpu_single_step(env, 0);
735 tb_flush(env);
736
737 if (sig != 0)
738 {
739 snprintf(buf, sizeof(buf), "S%02x", sig);
740 put_packet(s, buf);
741 }
742
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743 sig = 0;
744 s->state = RS_IDLE;
41625033
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745 s->running_state = 0;
746 while (s->running_state == 0) {
1fddef4b
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747 n = read (s->fd, buf, 256);
748 if (n > 0)
749 {
750 int i;
751
752 for (i = 0; i < n; i++)
6a00d601 753 gdb_read_byte (s, buf[i]);
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754 }
755 else if (n == 0 || errno != EAGAIN)
756 {
757 /* XXX: Connection closed. Should probably wait for annother
758 connection before continuing. */
759 return sig;
760 }
41625033 761 }
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762 return sig;
763}
e9009676
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764
765/* Tell the remote gdb that the process has exited. */
766void gdb_exit(CPUState *env, int code)
767{
768 GDBState *s;
769 char buf[4];
770
771 if (gdbserver_fd < 0)
772 return;
773
774 s = &gdbserver_state;
775
776 snprintf(buf, sizeof(buf), "W%02x", code);
777 put_packet(s, buf);
778}
779
1fddef4b 780#else
7c9d8e07 781static void gdb_read(void *opaque)
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782{
783 GDBState *s = opaque;
7c9d8e07
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784 int i, size;
785 uint8_t buf[4096];
786
787 size = read(s->fd, buf, sizeof(buf));
788 if (size < 0)
789 return;
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790 if (size == 0) {
791 /* end of connection */
792 qemu_del_vm_stop_handler(gdb_vm_stopped, s);
7c9d8e07 793 qemu_set_fd_handler(s->fd, NULL, NULL, NULL);
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794 qemu_free(s);
795 vm_start();
796 } else {
797 for(i = 0; i < size; i++)
6a00d601 798 gdb_read_byte(s, buf[i]);
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799 }
800}
801
1fddef4b
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802#endif
803
7c9d8e07 804static void gdb_accept(void *opaque)
858693c6
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805{
806 GDBState *s;
807 struct sockaddr_in sockaddr;
808 socklen_t len;
809 int val, fd;
810
811 for(;;) {
812 len = sizeof(sockaddr);
813 fd = accept(gdbserver_fd, (struct sockaddr *)&sockaddr, &len);
814 if (fd < 0 && errno != EINTR) {
815 perror("accept");
816 return;
817 } else if (fd >= 0) {
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818 break;
819 }
820 }
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821
822 /* set short latency */
823 val = 1;
7d3505c5 824 setsockopt(fd, IPPROTO_TCP, TCP_NODELAY, &val, sizeof(val));
858693c6 825
1fddef4b
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826#ifdef CONFIG_USER_ONLY
827 s = &gdbserver_state;
828 memset (s, 0, sizeof (GDBState));
829#else
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830 s = qemu_mallocz(sizeof(GDBState));
831 if (!s) {
832 close(fd);
833 return;
834 }
1fddef4b 835#endif
6a00d601 836 s->env = first_cpu; /* XXX: allow to change CPU */
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837 s->fd = fd;
838
839 fcntl(fd, F_SETFL, O_NONBLOCK);
840
1fddef4b 841#ifndef CONFIG_USER_ONLY
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842 /* stop the VM */
843 vm_stop(EXCP_INTERRUPT);
844
845 /* start handling I/O */
7c9d8e07 846 qemu_set_fd_handler(s->fd, gdb_read, NULL, s);
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847 /* when the VM is stopped, the following callback is called */
848 qemu_add_vm_stop_handler(gdb_vm_stopped, s);
1fddef4b 849#endif
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850}
851
852static int gdbserver_open(int port)
853{
854 struct sockaddr_in sockaddr;
855 int fd, val, ret;
856
857 fd = socket(PF_INET, SOCK_STREAM, 0);
858 if (fd < 0) {
859 perror("socket");
860 return -1;
861 }
862
863 /* allow fast reuse */
864 val = 1;
865 setsockopt(fd, SOL_SOCKET, SO_REUSEADDR, &val, sizeof(val));
866
867 sockaddr.sin_family = AF_INET;
868 sockaddr.sin_port = htons(port);
869 sockaddr.sin_addr.s_addr = 0;
870 ret = bind(fd, (struct sockaddr *)&sockaddr, sizeof(sockaddr));
871 if (ret < 0) {
872 perror("bind");
873 return -1;
874 }
875 ret = listen(fd, 0);
876 if (ret < 0) {
877 perror("listen");
878 return -1;
879 }
1fddef4b 880#ifndef CONFIG_USER_ONLY
858693c6 881 fcntl(fd, F_SETFL, O_NONBLOCK);
1fddef4b 882#endif
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883 return fd;
884}
885
886int gdbserver_start(int port)
887{
888 gdbserver_fd = gdbserver_open(port);
889 if (gdbserver_fd < 0)
890 return -1;
891 /* accept connections */
1fddef4b 892#ifdef CONFIG_USER_ONLY
7c9d8e07 893 gdb_accept (NULL);
1fddef4b 894#else
7c9d8e07 895 qemu_set_fd_handler(gdbserver_fd, gdb_accept, NULL, NULL);
1fddef4b 896#endif
b4608c04
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897 return 0;
898}