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qemu-io: Fix memory leak in 'aio_write -z'
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1 /*
2 * Command line utility to exercise the QEMU I/O path.
3 *
4 * Copyright (C) 2009 Red Hat, Inc.
5 * Copyright (c) 2003-2005 Silicon Graphics, Inc.
6 *
7 * This work is licensed under the terms of the GNU GPL, version 2 or later.
8 * See the COPYING file in the top-level directory.
9 */
10
11 #include "qemu/osdep.h"
12 #include "qapi/error.h"
13 #include "qemu-io.h"
14 #include "sysemu/block-backend.h"
15 #include "block/block.h"
16 #include "block/block_int.h" /* for info_f() */
17 #include "block/qapi.h"
18 #include "qemu/error-report.h"
19 #include "qemu/main-loop.h"
20 #include "qemu/timer.h"
21 #include "sysemu/block-backend.h"
22 #include "qemu/cutils.h"
23
24 #define CMD_NOFILE_OK 0x01
25
26 bool qemuio_misalign;
27
28 static cmdinfo_t *cmdtab;
29 static int ncmds;
30
31 static int compare_cmdname(const void *a, const void *b)
32 {
33 return strcmp(((const cmdinfo_t *)a)->name,
34 ((const cmdinfo_t *)b)->name);
35 }
36
37 void qemuio_add_command(const cmdinfo_t *ci)
38 {
39 cmdtab = g_renew(cmdinfo_t, cmdtab, ++ncmds);
40 cmdtab[ncmds - 1] = *ci;
41 qsort(cmdtab, ncmds, sizeof(*cmdtab), compare_cmdname);
42 }
43
44 int qemuio_command_usage(const cmdinfo_t *ci)
45 {
46 printf("%s %s -- %s\n", ci->name, ci->args, ci->oneline);
47 return 0;
48 }
49
50 static int init_check_command(BlockBackend *blk, const cmdinfo_t *ct)
51 {
52 if (ct->flags & CMD_FLAG_GLOBAL) {
53 return 1;
54 }
55 if (!(ct->flags & CMD_NOFILE_OK) && !blk) {
56 fprintf(stderr, "no file open, try 'help open'\n");
57 return 0;
58 }
59 return 1;
60 }
61
62 static int command(BlockBackend *blk, const cmdinfo_t *ct, int argc,
63 char **argv)
64 {
65 char *cmd = argv[0];
66
67 if (!init_check_command(blk, ct)) {
68 return 0;
69 }
70
71 if (argc - 1 < ct->argmin || (ct->argmax != -1 && argc - 1 > ct->argmax)) {
72 if (ct->argmax == -1) {
73 fprintf(stderr,
74 "bad argument count %d to %s, expected at least %d arguments\n",
75 argc-1, cmd, ct->argmin);
76 } else if (ct->argmin == ct->argmax) {
77 fprintf(stderr,
78 "bad argument count %d to %s, expected %d arguments\n",
79 argc-1, cmd, ct->argmin);
80 } else {
81 fprintf(stderr,
82 "bad argument count %d to %s, expected between %d and %d arguments\n",
83 argc-1, cmd, ct->argmin, ct->argmax);
84 }
85 return 0;
86 }
87 optind = 0;
88 return ct->cfunc(blk, argc, argv);
89 }
90
91 static const cmdinfo_t *find_command(const char *cmd)
92 {
93 cmdinfo_t *ct;
94
95 for (ct = cmdtab; ct < &cmdtab[ncmds]; ct++) {
96 if (strcmp(ct->name, cmd) == 0 ||
97 (ct->altname && strcmp(ct->altname, cmd) == 0))
98 {
99 return (const cmdinfo_t *)ct;
100 }
101 }
102 return NULL;
103 }
104
105 /* Invoke fn() for commands with a matching prefix */
106 void qemuio_complete_command(const char *input,
107 void (*fn)(const char *cmd, void *opaque),
108 void *opaque)
109 {
110 cmdinfo_t *ct;
111 size_t input_len = strlen(input);
112
113 for (ct = cmdtab; ct < &cmdtab[ncmds]; ct++) {
114 if (strncmp(input, ct->name, input_len) == 0) {
115 fn(ct->name, opaque);
116 }
117 }
118 }
119
120 static char **breakline(char *input, int *count)
121 {
122 int c = 0;
123 char *p;
124 char **rval = g_new0(char *, 1);
125
126 while (rval && (p = qemu_strsep(&input, " ")) != NULL) {
127 if (!*p) {
128 continue;
129 }
130 c++;
131 rval = g_renew(char *, rval, (c + 1));
132 rval[c - 1] = p;
133 rval[c] = NULL;
134 }
135 *count = c;
136 return rval;
137 }
138
139 static int64_t cvtnum(const char *s)
140 {
141 char *end;
142 int64_t ret;
143
144 ret = qemu_strtosz_suffix(s, &end, QEMU_STRTOSZ_DEFSUFFIX_B);
145 if (*end != '\0') {
146 /* Detritus at the end of the string */
147 return -EINVAL;
148 }
149 return ret;
150 }
151
152 static void print_cvtnum_err(int64_t rc, const char *arg)
153 {
154 switch (rc) {
155 case -EINVAL:
156 printf("Parsing error: non-numeric argument,"
157 " or extraneous/unrecognized suffix -- %s\n", arg);
158 break;
159 case -ERANGE:
160 printf("Parsing error: argument too large -- %s\n", arg);
161 break;
162 default:
163 printf("Parsing error: %s\n", arg);
164 }
165 }
166
167 #define EXABYTES(x) ((long long)(x) << 60)
168 #define PETABYTES(x) ((long long)(x) << 50)
169 #define TERABYTES(x) ((long long)(x) << 40)
170 #define GIGABYTES(x) ((long long)(x) << 30)
171 #define MEGABYTES(x) ((long long)(x) << 20)
172 #define KILOBYTES(x) ((long long)(x) << 10)
173
174 #define TO_EXABYTES(x) ((x) / EXABYTES(1))
175 #define TO_PETABYTES(x) ((x) / PETABYTES(1))
176 #define TO_TERABYTES(x) ((x) / TERABYTES(1))
177 #define TO_GIGABYTES(x) ((x) / GIGABYTES(1))
178 #define TO_MEGABYTES(x) ((x) / MEGABYTES(1))
179 #define TO_KILOBYTES(x) ((x) / KILOBYTES(1))
180
181 static void cvtstr(double value, char *str, size_t size)
182 {
183 char *trim;
184 const char *suffix;
185
186 if (value >= EXABYTES(1)) {
187 suffix = " EiB";
188 snprintf(str, size - 4, "%.3f", TO_EXABYTES(value));
189 } else if (value >= PETABYTES(1)) {
190 suffix = " PiB";
191 snprintf(str, size - 4, "%.3f", TO_PETABYTES(value));
192 } else if (value >= TERABYTES(1)) {
193 suffix = " TiB";
194 snprintf(str, size - 4, "%.3f", TO_TERABYTES(value));
195 } else if (value >= GIGABYTES(1)) {
196 suffix = " GiB";
197 snprintf(str, size - 4, "%.3f", TO_GIGABYTES(value));
198 } else if (value >= MEGABYTES(1)) {
199 suffix = " MiB";
200 snprintf(str, size - 4, "%.3f", TO_MEGABYTES(value));
201 } else if (value >= KILOBYTES(1)) {
202 suffix = " KiB";
203 snprintf(str, size - 4, "%.3f", TO_KILOBYTES(value));
204 } else {
205 suffix = " bytes";
206 snprintf(str, size - 6, "%f", value);
207 }
208
209 trim = strstr(str, ".000");
210 if (trim) {
211 strcpy(trim, suffix);
212 } else {
213 strcat(str, suffix);
214 }
215 }
216
217
218
219 static struct timeval tsub(struct timeval t1, struct timeval t2)
220 {
221 t1.tv_usec -= t2.tv_usec;
222 if (t1.tv_usec < 0) {
223 t1.tv_usec += 1000000;
224 t1.tv_sec--;
225 }
226 t1.tv_sec -= t2.tv_sec;
227 return t1;
228 }
229
230 static double tdiv(double value, struct timeval tv)
231 {
232 return value / ((double)tv.tv_sec + ((double)tv.tv_usec / 1000000.0));
233 }
234
235 #define HOURS(sec) ((sec) / (60 * 60))
236 #define MINUTES(sec) (((sec) % (60 * 60)) / 60)
237 #define SECONDS(sec) ((sec) % 60)
238
239 enum {
240 DEFAULT_TIME = 0x0,
241 TERSE_FIXED_TIME = 0x1,
242 VERBOSE_FIXED_TIME = 0x2,
243 };
244
245 static void timestr(struct timeval *tv, char *ts, size_t size, int format)
246 {
247 double usec = (double)tv->tv_usec / 1000000.0;
248
249 if (format & TERSE_FIXED_TIME) {
250 if (!HOURS(tv->tv_sec)) {
251 snprintf(ts, size, "%u:%02u.%02u",
252 (unsigned int) MINUTES(tv->tv_sec),
253 (unsigned int) SECONDS(tv->tv_sec),
254 (unsigned int) (usec * 100));
255 return;
256 }
257 format |= VERBOSE_FIXED_TIME; /* fallback if hours needed */
258 }
259
260 if ((format & VERBOSE_FIXED_TIME) || tv->tv_sec) {
261 snprintf(ts, size, "%u:%02u:%02u.%02u",
262 (unsigned int) HOURS(tv->tv_sec),
263 (unsigned int) MINUTES(tv->tv_sec),
264 (unsigned int) SECONDS(tv->tv_sec),
265 (unsigned int) (usec * 100));
266 } else {
267 snprintf(ts, size, "0.%04u sec", (unsigned int) (usec * 10000));
268 }
269 }
270
271 /*
272 * Parse the pattern argument to various sub-commands.
273 *
274 * Because the pattern is used as an argument to memset it must evaluate
275 * to an unsigned integer that fits into a single byte.
276 */
277 static int parse_pattern(const char *arg)
278 {
279 char *endptr = NULL;
280 long pattern;
281
282 pattern = strtol(arg, &endptr, 0);
283 if (pattern < 0 || pattern > UCHAR_MAX || *endptr != '\0') {
284 printf("%s is not a valid pattern byte\n", arg);
285 return -1;
286 }
287
288 return pattern;
289 }
290
291 /*
292 * Memory allocation helpers.
293 *
294 * Make sure memory is aligned by default, or purposefully misaligned if
295 * that is specified on the command line.
296 */
297
298 #define MISALIGN_OFFSET 16
299 static void *qemu_io_alloc(BlockBackend *blk, size_t len, int pattern)
300 {
301 void *buf;
302
303 if (qemuio_misalign) {
304 len += MISALIGN_OFFSET;
305 }
306 buf = blk_blockalign(blk, len);
307 memset(buf, pattern, len);
308 if (qemuio_misalign) {
309 buf += MISALIGN_OFFSET;
310 }
311 return buf;
312 }
313
314 static void qemu_io_free(void *p)
315 {
316 if (qemuio_misalign) {
317 p -= MISALIGN_OFFSET;
318 }
319 qemu_vfree(p);
320 }
321
322 static void dump_buffer(const void *buffer, int64_t offset, int64_t len)
323 {
324 uint64_t i;
325 int j;
326 const uint8_t *p;
327
328 for (i = 0, p = buffer; i < len; i += 16) {
329 const uint8_t *s = p;
330
331 printf("%08" PRIx64 ": ", offset + i);
332 for (j = 0; j < 16 && i + j < len; j++, p++) {
333 printf("%02x ", *p);
334 }
335 printf(" ");
336 for (j = 0; j < 16 && i + j < len; j++, s++) {
337 if (isalnum(*s)) {
338 printf("%c", *s);
339 } else {
340 printf(".");
341 }
342 }
343 printf("\n");
344 }
345 }
346
347 static void print_report(const char *op, struct timeval *t, int64_t offset,
348 int64_t count, int64_t total, int cnt, int Cflag)
349 {
350 char s1[64], s2[64], ts[64];
351
352 timestr(t, ts, sizeof(ts), Cflag ? VERBOSE_FIXED_TIME : 0);
353 if (!Cflag) {
354 cvtstr((double)total, s1, sizeof(s1));
355 cvtstr(tdiv((double)total, *t), s2, sizeof(s2));
356 printf("%s %"PRId64"/%"PRId64" bytes at offset %" PRId64 "\n",
357 op, total, count, offset);
358 printf("%s, %d ops; %s (%s/sec and %.4f ops/sec)\n",
359 s1, cnt, ts, s2, tdiv((double)cnt, *t));
360 } else {/* bytes,ops,time,bytes/sec,ops/sec */
361 printf("%"PRId64",%d,%s,%.3f,%.3f\n",
362 total, cnt, ts,
363 tdiv((double)total, *t),
364 tdiv((double)cnt, *t));
365 }
366 }
367
368 /*
369 * Parse multiple length statements for vectored I/O, and construct an I/O
370 * vector matching it.
371 */
372 static void *
373 create_iovec(BlockBackend *blk, QEMUIOVector *qiov, char **argv, int nr_iov,
374 int pattern)
375 {
376 size_t *sizes = g_new0(size_t, nr_iov);
377 size_t count = 0;
378 void *buf = NULL;
379 void *p;
380 int i;
381
382 for (i = 0; i < nr_iov; i++) {
383 char *arg = argv[i];
384 int64_t len;
385
386 len = cvtnum(arg);
387 if (len < 0) {
388 print_cvtnum_err(len, arg);
389 goto fail;
390 }
391
392 /* should be SIZE_T_MAX, but that doesn't exist */
393 if (len > INT_MAX) {
394 printf("Argument '%s' exceeds maximum size %d\n", arg, INT_MAX);
395 goto fail;
396 }
397
398 if (len & 0x1ff) {
399 printf("length argument %" PRId64
400 " is not sector aligned\n", len);
401 goto fail;
402 }
403
404 sizes[i] = len;
405 count += len;
406 }
407
408 qemu_iovec_init(qiov, nr_iov);
409
410 buf = p = qemu_io_alloc(blk, count, pattern);
411
412 for (i = 0; i < nr_iov; i++) {
413 qemu_iovec_add(qiov, p, sizes[i]);
414 p += sizes[i];
415 }
416
417 fail:
418 g_free(sizes);
419 return buf;
420 }
421
422 static int do_read(BlockBackend *blk, char *buf, int64_t offset, int64_t count,
423 int64_t *total)
424 {
425 int ret;
426
427 if (count >> 9 > INT_MAX) {
428 return -ERANGE;
429 }
430
431 ret = blk_read(blk, offset >> 9, (uint8_t *)buf, count >> 9);
432 if (ret < 0) {
433 return ret;
434 }
435 *total = count;
436 return 1;
437 }
438
439 static int do_write(BlockBackend *blk, char *buf, int64_t offset, int64_t count,
440 int64_t *total)
441 {
442 int ret;
443
444 if (count >> 9 > INT_MAX) {
445 return -ERANGE;
446 }
447
448 ret = blk_write(blk, offset >> 9, (uint8_t *)buf, count >> 9);
449 if (ret < 0) {
450 return ret;
451 }
452 *total = count;
453 return 1;
454 }
455
456 static int do_pread(BlockBackend *blk, char *buf, int64_t offset,
457 int64_t count, int64_t *total)
458 {
459 if (count > INT_MAX) {
460 return -ERANGE;
461 }
462
463 *total = blk_pread(blk, offset, (uint8_t *)buf, count);
464 if (*total < 0) {
465 return *total;
466 }
467 return 1;
468 }
469
470 static int do_pwrite(BlockBackend *blk, char *buf, int64_t offset,
471 int64_t count, int64_t *total)
472 {
473 if (count > INT_MAX) {
474 return -ERANGE;
475 }
476
477 *total = blk_pwrite(blk, offset, (uint8_t *)buf, count);
478 if (*total < 0) {
479 return *total;
480 }
481 return 1;
482 }
483
484 typedef struct {
485 BlockBackend *blk;
486 int64_t offset;
487 int64_t count;
488 int64_t *total;
489 int ret;
490 bool done;
491 } CoWriteZeroes;
492
493 static void coroutine_fn co_write_zeroes_entry(void *opaque)
494 {
495 CoWriteZeroes *data = opaque;
496
497 data->ret = blk_co_write_zeroes(data->blk, data->offset / BDRV_SECTOR_SIZE,
498 data->count / BDRV_SECTOR_SIZE, 0);
499 data->done = true;
500 if (data->ret < 0) {
501 *data->total = data->ret;
502 return;
503 }
504
505 *data->total = data->count;
506 }
507
508 static int do_co_write_zeroes(BlockBackend *blk, int64_t offset, int64_t count,
509 int64_t *total)
510 {
511 Coroutine *co;
512 CoWriteZeroes data = {
513 .blk = blk,
514 .offset = offset,
515 .count = count,
516 .total = total,
517 .done = false,
518 };
519
520 if (count >> BDRV_SECTOR_BITS > INT_MAX) {
521 return -ERANGE;
522 }
523
524 co = qemu_coroutine_create(co_write_zeroes_entry);
525 qemu_coroutine_enter(co, &data);
526 while (!data.done) {
527 aio_poll(blk_get_aio_context(blk), true);
528 }
529 if (data.ret < 0) {
530 return data.ret;
531 } else {
532 return 1;
533 }
534 }
535
536 static int do_write_compressed(BlockBackend *blk, char *buf, int64_t offset,
537 int64_t count, int64_t *total)
538 {
539 int ret;
540
541 if (count >> 9 > INT_MAX) {
542 return -ERANGE;
543 }
544
545 ret = blk_write_compressed(blk, offset >> 9, (uint8_t *)buf, count >> 9);
546 if (ret < 0) {
547 return ret;
548 }
549 *total = count;
550 return 1;
551 }
552
553 static int do_load_vmstate(BlockBackend *blk, char *buf, int64_t offset,
554 int64_t count, int64_t *total)
555 {
556 if (count > INT_MAX) {
557 return -ERANGE;
558 }
559
560 *total = blk_load_vmstate(blk, (uint8_t *)buf, offset, count);
561 if (*total < 0) {
562 return *total;
563 }
564 return 1;
565 }
566
567 static int do_save_vmstate(BlockBackend *blk, char *buf, int64_t offset,
568 int64_t count, int64_t *total)
569 {
570 if (count > INT_MAX) {
571 return -ERANGE;
572 }
573
574 *total = blk_save_vmstate(blk, (uint8_t *)buf, offset, count);
575 if (*total < 0) {
576 return *total;
577 }
578 return 1;
579 }
580
581 #define NOT_DONE 0x7fffffff
582 static void aio_rw_done(void *opaque, int ret)
583 {
584 *(int *)opaque = ret;
585 }
586
587 static int do_aio_readv(BlockBackend *blk, QEMUIOVector *qiov,
588 int64_t offset, int *total)
589 {
590 int async_ret = NOT_DONE;
591
592 blk_aio_readv(blk, offset >> 9, qiov, qiov->size >> 9,
593 aio_rw_done, &async_ret);
594 while (async_ret == NOT_DONE) {
595 main_loop_wait(false);
596 }
597
598 *total = qiov->size;
599 return async_ret < 0 ? async_ret : 1;
600 }
601
602 static int do_aio_writev(BlockBackend *blk, QEMUIOVector *qiov,
603 int64_t offset, int *total)
604 {
605 int async_ret = NOT_DONE;
606
607 blk_aio_writev(blk, offset >> 9, qiov, qiov->size >> 9,
608 aio_rw_done, &async_ret);
609 while (async_ret == NOT_DONE) {
610 main_loop_wait(false);
611 }
612
613 *total = qiov->size;
614 return async_ret < 0 ? async_ret : 1;
615 }
616
617 struct multiwrite_async_ret {
618 int num_done;
619 int error;
620 };
621
622 static void multiwrite_cb(void *opaque, int ret)
623 {
624 struct multiwrite_async_ret *async_ret = opaque;
625
626 async_ret->num_done++;
627 if (ret < 0) {
628 async_ret->error = ret;
629 }
630 }
631
632 static int do_aio_multiwrite(BlockBackend *blk, BlockRequest* reqs,
633 int num_reqs, int *total)
634 {
635 int i, ret;
636 struct multiwrite_async_ret async_ret = {
637 .num_done = 0,
638 .error = 0,
639 };
640
641 *total = 0;
642 for (i = 0; i < num_reqs; i++) {
643 reqs[i].cb = multiwrite_cb;
644 reqs[i].opaque = &async_ret;
645 *total += reqs[i].qiov->size;
646 }
647
648 ret = blk_aio_multiwrite(blk, reqs, num_reqs);
649 if (ret < 0) {
650 return ret;
651 }
652
653 while (async_ret.num_done < num_reqs) {
654 main_loop_wait(false);
655 }
656
657 return async_ret.error < 0 ? async_ret.error : 1;
658 }
659
660 static void read_help(void)
661 {
662 printf(
663 "\n"
664 " reads a range of bytes from the given offset\n"
665 "\n"
666 " Example:\n"
667 " 'read -v 512 1k' - dumps 1 kilobyte read from 512 bytes into the file\n"
668 "\n"
669 " Reads a segment of the currently open file, optionally dumping it to the\n"
670 " standard output stream (with -v option) for subsequent inspection.\n"
671 " -b, -- read from the VM state rather than the virtual disk\n"
672 " -C, -- report statistics in a machine parsable format\n"
673 " -l, -- length for pattern verification (only with -P)\n"
674 " -p, -- use blk_pread to read the file\n"
675 " -P, -- use a pattern to verify read data\n"
676 " -q, -- quiet mode, do not show I/O statistics\n"
677 " -s, -- start offset for pattern verification (only with -P)\n"
678 " -v, -- dump buffer to standard output\n"
679 "\n");
680 }
681
682 static int read_f(BlockBackend *blk, int argc, char **argv);
683
684 static const cmdinfo_t read_cmd = {
685 .name = "read",
686 .altname = "r",
687 .cfunc = read_f,
688 .argmin = 2,
689 .argmax = -1,
690 .args = "[-abCpqv] [-P pattern [-s off] [-l len]] off len",
691 .oneline = "reads a number of bytes at a specified offset",
692 .help = read_help,
693 };
694
695 static int read_f(BlockBackend *blk, int argc, char **argv)
696 {
697 struct timeval t1, t2;
698 int Cflag = 0, pflag = 0, qflag = 0, vflag = 0;
699 int Pflag = 0, sflag = 0, lflag = 0, bflag = 0;
700 int c, cnt;
701 char *buf;
702 int64_t offset;
703 int64_t count;
704 /* Some compilers get confused and warn if this is not initialized. */
705 int64_t total = 0;
706 int pattern = 0;
707 int64_t pattern_offset = 0, pattern_count = 0;
708
709 while ((c = getopt(argc, argv, "bCl:pP:qs:v")) != -1) {
710 switch (c) {
711 case 'b':
712 bflag = 1;
713 break;
714 case 'C':
715 Cflag = 1;
716 break;
717 case 'l':
718 lflag = 1;
719 pattern_count = cvtnum(optarg);
720 if (pattern_count < 0) {
721 print_cvtnum_err(pattern_count, optarg);
722 return 0;
723 }
724 break;
725 case 'p':
726 pflag = 1;
727 break;
728 case 'P':
729 Pflag = 1;
730 pattern = parse_pattern(optarg);
731 if (pattern < 0) {
732 return 0;
733 }
734 break;
735 case 'q':
736 qflag = 1;
737 break;
738 case 's':
739 sflag = 1;
740 pattern_offset = cvtnum(optarg);
741 if (pattern_offset < 0) {
742 print_cvtnum_err(pattern_offset, optarg);
743 return 0;
744 }
745 break;
746 case 'v':
747 vflag = 1;
748 break;
749 default:
750 return qemuio_command_usage(&read_cmd);
751 }
752 }
753
754 if (optind != argc - 2) {
755 return qemuio_command_usage(&read_cmd);
756 }
757
758 if (bflag && pflag) {
759 printf("-b and -p cannot be specified at the same time\n");
760 return 0;
761 }
762
763 offset = cvtnum(argv[optind]);
764 if (offset < 0) {
765 print_cvtnum_err(offset, argv[optind]);
766 return 0;
767 }
768
769 optind++;
770 count = cvtnum(argv[optind]);
771 if (count < 0) {
772 print_cvtnum_err(count, argv[optind]);
773 return 0;
774 } else if (count > SIZE_MAX) {
775 printf("length cannot exceed %" PRIu64 ", given %s\n",
776 (uint64_t) SIZE_MAX, argv[optind]);
777 return 0;
778 }
779
780 if (!Pflag && (lflag || sflag)) {
781 return qemuio_command_usage(&read_cmd);
782 }
783
784 if (!lflag) {
785 pattern_count = count - pattern_offset;
786 }
787
788 if ((pattern_count < 0) || (pattern_count + pattern_offset > count)) {
789 printf("pattern verification range exceeds end of read data\n");
790 return 0;
791 }
792
793 if (!pflag) {
794 if (offset & 0x1ff) {
795 printf("offset %" PRId64 " is not sector aligned\n",
796 offset);
797 return 0;
798 }
799 if (count & 0x1ff) {
800 printf("count %"PRId64" is not sector aligned\n",
801 count);
802 return 0;
803 }
804 }
805
806 buf = qemu_io_alloc(blk, count, 0xab);
807
808 gettimeofday(&t1, NULL);
809 if (pflag) {
810 cnt = do_pread(blk, buf, offset, count, &total);
811 } else if (bflag) {
812 cnt = do_load_vmstate(blk, buf, offset, count, &total);
813 } else {
814 cnt = do_read(blk, buf, offset, count, &total);
815 }
816 gettimeofday(&t2, NULL);
817
818 if (cnt < 0) {
819 printf("read failed: %s\n", strerror(-cnt));
820 goto out;
821 }
822
823 if (Pflag) {
824 void *cmp_buf = g_malloc(pattern_count);
825 memset(cmp_buf, pattern, pattern_count);
826 if (memcmp(buf + pattern_offset, cmp_buf, pattern_count)) {
827 printf("Pattern verification failed at offset %"
828 PRId64 ", %"PRId64" bytes\n",
829 offset + pattern_offset, pattern_count);
830 }
831 g_free(cmp_buf);
832 }
833
834 if (qflag) {
835 goto out;
836 }
837
838 if (vflag) {
839 dump_buffer(buf, offset, count);
840 }
841
842 /* Finally, report back -- -C gives a parsable format */
843 t2 = tsub(t2, t1);
844 print_report("read", &t2, offset, count, total, cnt, Cflag);
845
846 out:
847 qemu_io_free(buf);
848
849 return 0;
850 }
851
852 static void readv_help(void)
853 {
854 printf(
855 "\n"
856 " reads a range of bytes from the given offset into multiple buffers\n"
857 "\n"
858 " Example:\n"
859 " 'readv -v 512 1k 1k ' - dumps 2 kilobytes read from 512 bytes into the file\n"
860 "\n"
861 " Reads a segment of the currently open file, optionally dumping it to the\n"
862 " standard output stream (with -v option) for subsequent inspection.\n"
863 " Uses multiple iovec buffers if more than one byte range is specified.\n"
864 " -C, -- report statistics in a machine parsable format\n"
865 " -P, -- use a pattern to verify read data\n"
866 " -v, -- dump buffer to standard output\n"
867 " -q, -- quiet mode, do not show I/O statistics\n"
868 "\n");
869 }
870
871 static int readv_f(BlockBackend *blk, int argc, char **argv);
872
873 static const cmdinfo_t readv_cmd = {
874 .name = "readv",
875 .cfunc = readv_f,
876 .argmin = 2,
877 .argmax = -1,
878 .args = "[-Cqv] [-P pattern ] off len [len..]",
879 .oneline = "reads a number of bytes at a specified offset",
880 .help = readv_help,
881 };
882
883 static int readv_f(BlockBackend *blk, int argc, char **argv)
884 {
885 struct timeval t1, t2;
886 int Cflag = 0, qflag = 0, vflag = 0;
887 int c, cnt;
888 char *buf;
889 int64_t offset;
890 /* Some compilers get confused and warn if this is not initialized. */
891 int total = 0;
892 int nr_iov;
893 QEMUIOVector qiov;
894 int pattern = 0;
895 int Pflag = 0;
896
897 while ((c = getopt(argc, argv, "CP:qv")) != -1) {
898 switch (c) {
899 case 'C':
900 Cflag = 1;
901 break;
902 case 'P':
903 Pflag = 1;
904 pattern = parse_pattern(optarg);
905 if (pattern < 0) {
906 return 0;
907 }
908 break;
909 case 'q':
910 qflag = 1;
911 break;
912 case 'v':
913 vflag = 1;
914 break;
915 default:
916 return qemuio_command_usage(&readv_cmd);
917 }
918 }
919
920 if (optind > argc - 2) {
921 return qemuio_command_usage(&readv_cmd);
922 }
923
924
925 offset = cvtnum(argv[optind]);
926 if (offset < 0) {
927 print_cvtnum_err(offset, argv[optind]);
928 return 0;
929 }
930 optind++;
931
932 if (offset & 0x1ff) {
933 printf("offset %" PRId64 " is not sector aligned\n",
934 offset);
935 return 0;
936 }
937
938 nr_iov = argc - optind;
939 buf = create_iovec(blk, &qiov, &argv[optind], nr_iov, 0xab);
940 if (buf == NULL) {
941 return 0;
942 }
943
944 gettimeofday(&t1, NULL);
945 cnt = do_aio_readv(blk, &qiov, offset, &total);
946 gettimeofday(&t2, NULL);
947
948 if (cnt < 0) {
949 printf("readv failed: %s\n", strerror(-cnt));
950 goto out;
951 }
952
953 if (Pflag) {
954 void *cmp_buf = g_malloc(qiov.size);
955 memset(cmp_buf, pattern, qiov.size);
956 if (memcmp(buf, cmp_buf, qiov.size)) {
957 printf("Pattern verification failed at offset %"
958 PRId64 ", %zd bytes\n", offset, qiov.size);
959 }
960 g_free(cmp_buf);
961 }
962
963 if (qflag) {
964 goto out;
965 }
966
967 if (vflag) {
968 dump_buffer(buf, offset, qiov.size);
969 }
970
971 /* Finally, report back -- -C gives a parsable format */
972 t2 = tsub(t2, t1);
973 print_report("read", &t2, offset, qiov.size, total, cnt, Cflag);
974
975 out:
976 qemu_iovec_destroy(&qiov);
977 qemu_io_free(buf);
978 return 0;
979 }
980
981 static void write_help(void)
982 {
983 printf(
984 "\n"
985 " writes a range of bytes from the given offset\n"
986 "\n"
987 " Example:\n"
988 " 'write 512 1k' - writes 1 kilobyte at 512 bytes into the open file\n"
989 "\n"
990 " Writes into a segment of the currently open file, using a buffer\n"
991 " filled with a set pattern (0xcdcdcdcd).\n"
992 " -b, -- write to the VM state rather than the virtual disk\n"
993 " -c, -- write compressed data with blk_write_compressed\n"
994 " -p, -- use blk_pwrite to write the file\n"
995 " -P, -- use different pattern to fill file\n"
996 " -C, -- report statistics in a machine parsable format\n"
997 " -q, -- quiet mode, do not show I/O statistics\n"
998 " -z, -- write zeroes using blk_co_write_zeroes\n"
999 "\n");
1000 }
1001
1002 static int write_f(BlockBackend *blk, int argc, char **argv);
1003
1004 static const cmdinfo_t write_cmd = {
1005 .name = "write",
1006 .altname = "w",
1007 .cfunc = write_f,
1008 .argmin = 2,
1009 .argmax = -1,
1010 .args = "[-bcCpqz] [-P pattern ] off len",
1011 .oneline = "writes a number of bytes at a specified offset",
1012 .help = write_help,
1013 };
1014
1015 static int write_f(BlockBackend *blk, int argc, char **argv)
1016 {
1017 struct timeval t1, t2;
1018 int Cflag = 0, pflag = 0, qflag = 0, bflag = 0, Pflag = 0, zflag = 0;
1019 int cflag = 0;
1020 int c, cnt;
1021 char *buf = NULL;
1022 int64_t offset;
1023 int64_t count;
1024 /* Some compilers get confused and warn if this is not initialized. */
1025 int64_t total = 0;
1026 int pattern = 0xcd;
1027
1028 while ((c = getopt(argc, argv, "bcCpP:qz")) != -1) {
1029 switch (c) {
1030 case 'b':
1031 bflag = 1;
1032 break;
1033 case 'c':
1034 cflag = 1;
1035 break;
1036 case 'C':
1037 Cflag = 1;
1038 break;
1039 case 'p':
1040 pflag = 1;
1041 break;
1042 case 'P':
1043 Pflag = 1;
1044 pattern = parse_pattern(optarg);
1045 if (pattern < 0) {
1046 return 0;
1047 }
1048 break;
1049 case 'q':
1050 qflag = 1;
1051 break;
1052 case 'z':
1053 zflag = 1;
1054 break;
1055 default:
1056 return qemuio_command_usage(&write_cmd);
1057 }
1058 }
1059
1060 if (optind != argc - 2) {
1061 return qemuio_command_usage(&write_cmd);
1062 }
1063
1064 if (bflag + pflag + zflag > 1) {
1065 printf("-b, -p, or -z cannot be specified at the same time\n");
1066 return 0;
1067 }
1068
1069 if (zflag && Pflag) {
1070 printf("-z and -P cannot be specified at the same time\n");
1071 return 0;
1072 }
1073
1074 offset = cvtnum(argv[optind]);
1075 if (offset < 0) {
1076 print_cvtnum_err(offset, argv[optind]);
1077 return 0;
1078 }
1079
1080 optind++;
1081 count = cvtnum(argv[optind]);
1082 if (count < 0) {
1083 print_cvtnum_err(count, argv[optind]);
1084 return 0;
1085 } else if (count > SIZE_MAX) {
1086 printf("length cannot exceed %" PRIu64 ", given %s\n",
1087 (uint64_t) SIZE_MAX, argv[optind]);
1088 return 0;
1089 }
1090
1091 if (!pflag) {
1092 if (offset & 0x1ff) {
1093 printf("offset %" PRId64 " is not sector aligned\n",
1094 offset);
1095 return 0;
1096 }
1097
1098 if (count & 0x1ff) {
1099 printf("count %"PRId64" is not sector aligned\n",
1100 count);
1101 return 0;
1102 }
1103 }
1104
1105 if (!zflag) {
1106 buf = qemu_io_alloc(blk, count, pattern);
1107 }
1108
1109 gettimeofday(&t1, NULL);
1110 if (pflag) {
1111 cnt = do_pwrite(blk, buf, offset, count, &total);
1112 } else if (bflag) {
1113 cnt = do_save_vmstate(blk, buf, offset, count, &total);
1114 } else if (zflag) {
1115 cnt = do_co_write_zeroes(blk, offset, count, &total);
1116 } else if (cflag) {
1117 cnt = do_write_compressed(blk, buf, offset, count, &total);
1118 } else {
1119 cnt = do_write(blk, buf, offset, count, &total);
1120 }
1121 gettimeofday(&t2, NULL);
1122
1123 if (cnt < 0) {
1124 printf("write failed: %s\n", strerror(-cnt));
1125 goto out;
1126 }
1127
1128 if (qflag) {
1129 goto out;
1130 }
1131
1132 /* Finally, report back -- -C gives a parsable format */
1133 t2 = tsub(t2, t1);
1134 print_report("wrote", &t2, offset, count, total, cnt, Cflag);
1135
1136 out:
1137 if (!zflag) {
1138 qemu_io_free(buf);
1139 }
1140
1141 return 0;
1142 }
1143
1144 static void
1145 writev_help(void)
1146 {
1147 printf(
1148 "\n"
1149 " writes a range of bytes from the given offset source from multiple buffers\n"
1150 "\n"
1151 " Example:\n"
1152 " 'writev 512 1k 1k' - writes 2 kilobytes at 512 bytes into the open file\n"
1153 "\n"
1154 " Writes into a segment of the currently open file, using a buffer\n"
1155 " filled with a set pattern (0xcdcdcdcd).\n"
1156 " -P, -- use different pattern to fill file\n"
1157 " -C, -- report statistics in a machine parsable format\n"
1158 " -q, -- quiet mode, do not show I/O statistics\n"
1159 "\n");
1160 }
1161
1162 static int writev_f(BlockBackend *blk, int argc, char **argv);
1163
1164 static const cmdinfo_t writev_cmd = {
1165 .name = "writev",
1166 .cfunc = writev_f,
1167 .argmin = 2,
1168 .argmax = -1,
1169 .args = "[-Cq] [-P pattern ] off len [len..]",
1170 .oneline = "writes a number of bytes at a specified offset",
1171 .help = writev_help,
1172 };
1173
1174 static int writev_f(BlockBackend *blk, int argc, char **argv)
1175 {
1176 struct timeval t1, t2;
1177 int Cflag = 0, qflag = 0;
1178 int c, cnt;
1179 char *buf;
1180 int64_t offset;
1181 /* Some compilers get confused and warn if this is not initialized. */
1182 int total = 0;
1183 int nr_iov;
1184 int pattern = 0xcd;
1185 QEMUIOVector qiov;
1186
1187 while ((c = getopt(argc, argv, "CqP:")) != -1) {
1188 switch (c) {
1189 case 'C':
1190 Cflag = 1;
1191 break;
1192 case 'q':
1193 qflag = 1;
1194 break;
1195 case 'P':
1196 pattern = parse_pattern(optarg);
1197 if (pattern < 0) {
1198 return 0;
1199 }
1200 break;
1201 default:
1202 return qemuio_command_usage(&writev_cmd);
1203 }
1204 }
1205
1206 if (optind > argc - 2) {
1207 return qemuio_command_usage(&writev_cmd);
1208 }
1209
1210 offset = cvtnum(argv[optind]);
1211 if (offset < 0) {
1212 print_cvtnum_err(offset, argv[optind]);
1213 return 0;
1214 }
1215 optind++;
1216
1217 if (offset & 0x1ff) {
1218 printf("offset %" PRId64 " is not sector aligned\n",
1219 offset);
1220 return 0;
1221 }
1222
1223 nr_iov = argc - optind;
1224 buf = create_iovec(blk, &qiov, &argv[optind], nr_iov, pattern);
1225 if (buf == NULL) {
1226 return 0;
1227 }
1228
1229 gettimeofday(&t1, NULL);
1230 cnt = do_aio_writev(blk, &qiov, offset, &total);
1231 gettimeofday(&t2, NULL);
1232
1233 if (cnt < 0) {
1234 printf("writev failed: %s\n", strerror(-cnt));
1235 goto out;
1236 }
1237
1238 if (qflag) {
1239 goto out;
1240 }
1241
1242 /* Finally, report back -- -C gives a parsable format */
1243 t2 = tsub(t2, t1);
1244 print_report("wrote", &t2, offset, qiov.size, total, cnt, Cflag);
1245 out:
1246 qemu_iovec_destroy(&qiov);
1247 qemu_io_free(buf);
1248 return 0;
1249 }
1250
1251 static void multiwrite_help(void)
1252 {
1253 printf(
1254 "\n"
1255 " writes a range of bytes from the given offset source from multiple buffers,\n"
1256 " in a batch of requests that may be merged by qemu\n"
1257 "\n"
1258 " Example:\n"
1259 " 'multiwrite 512 1k 1k ; 4k 1k'\n"
1260 " writes 2 kB at 512 bytes and 1 kB at 4 kB into the open file\n"
1261 "\n"
1262 " Writes into a segment of the currently open file, using a buffer\n"
1263 " filled with a set pattern (0xcdcdcdcd). The pattern byte is increased\n"
1264 " by one for each request contained in the multiwrite command.\n"
1265 " -P, -- use different pattern to fill file\n"
1266 " -C, -- report statistics in a machine parsable format\n"
1267 " -q, -- quiet mode, do not show I/O statistics\n"
1268 "\n");
1269 }
1270
1271 static int multiwrite_f(BlockBackend *blk, int argc, char **argv);
1272
1273 static const cmdinfo_t multiwrite_cmd = {
1274 .name = "multiwrite",
1275 .cfunc = multiwrite_f,
1276 .argmin = 2,
1277 .argmax = -1,
1278 .args = "[-Cq] [-P pattern ] off len [len..] [; off len [len..]..]",
1279 .oneline = "issues multiple write requests at once",
1280 .help = multiwrite_help,
1281 };
1282
1283 static int multiwrite_f(BlockBackend *blk, int argc, char **argv)
1284 {
1285 struct timeval t1, t2;
1286 int Cflag = 0, qflag = 0;
1287 int c, cnt;
1288 char **buf;
1289 int64_t offset, first_offset = 0;
1290 /* Some compilers get confused and warn if this is not initialized. */
1291 int total = 0;
1292 int nr_iov;
1293 int nr_reqs;
1294 int pattern = 0xcd;
1295 QEMUIOVector *qiovs;
1296 int i;
1297 BlockRequest *reqs;
1298
1299 while ((c = getopt(argc, argv, "CqP:")) != -1) {
1300 switch (c) {
1301 case 'C':
1302 Cflag = 1;
1303 break;
1304 case 'q':
1305 qflag = 1;
1306 break;
1307 case 'P':
1308 pattern = parse_pattern(optarg);
1309 if (pattern < 0) {
1310 return 0;
1311 }
1312 break;
1313 default:
1314 return qemuio_command_usage(&writev_cmd);
1315 }
1316 }
1317
1318 if (optind > argc - 2) {
1319 return qemuio_command_usage(&writev_cmd);
1320 }
1321
1322 nr_reqs = 1;
1323 for (i = optind; i < argc; i++) {
1324 if (!strcmp(argv[i], ";")) {
1325 nr_reqs++;
1326 }
1327 }
1328
1329 reqs = g_new0(BlockRequest, nr_reqs);
1330 buf = g_new0(char *, nr_reqs);
1331 qiovs = g_new(QEMUIOVector, nr_reqs);
1332
1333 for (i = 0; i < nr_reqs && optind < argc; i++) {
1334 int j;
1335
1336 /* Read the offset of the request */
1337 offset = cvtnum(argv[optind]);
1338 if (offset < 0) {
1339 print_cvtnum_err(offset, argv[optind]);
1340 goto out;
1341 }
1342 optind++;
1343
1344 if (offset & 0x1ff) {
1345 printf("offset %lld is not sector aligned\n",
1346 (long long)offset);
1347 goto out;
1348 }
1349
1350 if (i == 0) {
1351 first_offset = offset;
1352 }
1353
1354 /* Read lengths for qiov entries */
1355 for (j = optind; j < argc; j++) {
1356 if (!strcmp(argv[j], ";")) {
1357 break;
1358 }
1359 }
1360
1361 nr_iov = j - optind;
1362
1363 /* Build request */
1364 buf[i] = create_iovec(blk, &qiovs[i], &argv[optind], nr_iov, pattern);
1365 if (buf[i] == NULL) {
1366 goto out;
1367 }
1368
1369 reqs[i].qiov = &qiovs[i];
1370 reqs[i].sector = offset >> 9;
1371 reqs[i].nb_sectors = reqs[i].qiov->size >> 9;
1372
1373 optind = j + 1;
1374
1375 pattern++;
1376 }
1377
1378 /* If there were empty requests at the end, ignore them */
1379 nr_reqs = i;
1380
1381 gettimeofday(&t1, NULL);
1382 cnt = do_aio_multiwrite(blk, reqs, nr_reqs, &total);
1383 gettimeofday(&t2, NULL);
1384
1385 if (cnt < 0) {
1386 printf("aio_multiwrite failed: %s\n", strerror(-cnt));
1387 goto out;
1388 }
1389
1390 if (qflag) {
1391 goto out;
1392 }
1393
1394 /* Finally, report back -- -C gives a parsable format */
1395 t2 = tsub(t2, t1);
1396 print_report("wrote", &t2, first_offset, total, total, cnt, Cflag);
1397 out:
1398 for (i = 0; i < nr_reqs; i++) {
1399 qemu_io_free(buf[i]);
1400 if (reqs[i].qiov != NULL) {
1401 qemu_iovec_destroy(&qiovs[i]);
1402 }
1403 }
1404 g_free(buf);
1405 g_free(reqs);
1406 g_free(qiovs);
1407 return 0;
1408 }
1409
1410 struct aio_ctx {
1411 BlockBackend *blk;
1412 QEMUIOVector qiov;
1413 int64_t offset;
1414 char *buf;
1415 int qflag;
1416 int vflag;
1417 int Cflag;
1418 int Pflag;
1419 int zflag;
1420 BlockAcctCookie acct;
1421 int pattern;
1422 struct timeval t1;
1423 };
1424
1425 static void aio_write_done(void *opaque, int ret)
1426 {
1427 struct aio_ctx *ctx = opaque;
1428 struct timeval t2;
1429
1430 gettimeofday(&t2, NULL);
1431
1432
1433 if (ret < 0) {
1434 printf("aio_write failed: %s\n", strerror(-ret));
1435 block_acct_failed(blk_get_stats(ctx->blk), &ctx->acct);
1436 goto out;
1437 }
1438
1439 block_acct_done(blk_get_stats(ctx->blk), &ctx->acct);
1440
1441 if (ctx->qflag) {
1442 goto out;
1443 }
1444
1445 /* Finally, report back -- -C gives a parsable format */
1446 t2 = tsub(t2, ctx->t1);
1447 print_report("wrote", &t2, ctx->offset, ctx->qiov.size,
1448 ctx->qiov.size, 1, ctx->Cflag);
1449 out:
1450 if (!ctx->zflag) {
1451 qemu_io_free(ctx->buf);
1452 qemu_iovec_destroy(&ctx->qiov);
1453 }
1454 g_free(ctx);
1455 }
1456
1457 static void aio_read_done(void *opaque, int ret)
1458 {
1459 struct aio_ctx *ctx = opaque;
1460 struct timeval t2;
1461
1462 gettimeofday(&t2, NULL);
1463
1464 if (ret < 0) {
1465 printf("readv failed: %s\n", strerror(-ret));
1466 block_acct_failed(blk_get_stats(ctx->blk), &ctx->acct);
1467 goto out;
1468 }
1469
1470 if (ctx->Pflag) {
1471 void *cmp_buf = g_malloc(ctx->qiov.size);
1472
1473 memset(cmp_buf, ctx->pattern, ctx->qiov.size);
1474 if (memcmp(ctx->buf, cmp_buf, ctx->qiov.size)) {
1475 printf("Pattern verification failed at offset %"
1476 PRId64 ", %zd bytes\n", ctx->offset, ctx->qiov.size);
1477 }
1478 g_free(cmp_buf);
1479 }
1480
1481 block_acct_done(blk_get_stats(ctx->blk), &ctx->acct);
1482
1483 if (ctx->qflag) {
1484 goto out;
1485 }
1486
1487 if (ctx->vflag) {
1488 dump_buffer(ctx->buf, ctx->offset, ctx->qiov.size);
1489 }
1490
1491 /* Finally, report back -- -C gives a parsable format */
1492 t2 = tsub(t2, ctx->t1);
1493 print_report("read", &t2, ctx->offset, ctx->qiov.size,
1494 ctx->qiov.size, 1, ctx->Cflag);
1495 out:
1496 qemu_io_free(ctx->buf);
1497 qemu_iovec_destroy(&ctx->qiov);
1498 g_free(ctx);
1499 }
1500
1501 static void aio_read_help(void)
1502 {
1503 printf(
1504 "\n"
1505 " asynchronously reads a range of bytes from the given offset\n"
1506 "\n"
1507 " Example:\n"
1508 " 'aio_read -v 512 1k 1k ' - dumps 2 kilobytes read from 512 bytes into the file\n"
1509 "\n"
1510 " Reads a segment of the currently open file, optionally dumping it to the\n"
1511 " standard output stream (with -v option) for subsequent inspection.\n"
1512 " The read is performed asynchronously and the aio_flush command must be\n"
1513 " used to ensure all outstanding aio requests have been completed.\n"
1514 " -C, -- report statistics in a machine parsable format\n"
1515 " -P, -- use a pattern to verify read data\n"
1516 " -v, -- dump buffer to standard output\n"
1517 " -q, -- quiet mode, do not show I/O statistics\n"
1518 "\n");
1519 }
1520
1521 static int aio_read_f(BlockBackend *blk, int argc, char **argv);
1522
1523 static const cmdinfo_t aio_read_cmd = {
1524 .name = "aio_read",
1525 .cfunc = aio_read_f,
1526 .argmin = 2,
1527 .argmax = -1,
1528 .args = "[-Cqv] [-P pattern ] off len [len..]",
1529 .oneline = "asynchronously reads a number of bytes",
1530 .help = aio_read_help,
1531 };
1532
1533 static int aio_read_f(BlockBackend *blk, int argc, char **argv)
1534 {
1535 int nr_iov, c;
1536 struct aio_ctx *ctx = g_new0(struct aio_ctx, 1);
1537
1538 ctx->blk = blk;
1539 while ((c = getopt(argc, argv, "CP:qv")) != -1) {
1540 switch (c) {
1541 case 'C':
1542 ctx->Cflag = 1;
1543 break;
1544 case 'P':
1545 ctx->Pflag = 1;
1546 ctx->pattern = parse_pattern(optarg);
1547 if (ctx->pattern < 0) {
1548 g_free(ctx);
1549 return 0;
1550 }
1551 break;
1552 case 'q':
1553 ctx->qflag = 1;
1554 break;
1555 case 'v':
1556 ctx->vflag = 1;
1557 break;
1558 default:
1559 g_free(ctx);
1560 return qemuio_command_usage(&aio_read_cmd);
1561 }
1562 }
1563
1564 if (optind > argc - 2) {
1565 g_free(ctx);
1566 return qemuio_command_usage(&aio_read_cmd);
1567 }
1568
1569 ctx->offset = cvtnum(argv[optind]);
1570 if (ctx->offset < 0) {
1571 print_cvtnum_err(ctx->offset, argv[optind]);
1572 g_free(ctx);
1573 return 0;
1574 }
1575 optind++;
1576
1577 if (ctx->offset & 0x1ff) {
1578 printf("offset %" PRId64 " is not sector aligned\n",
1579 ctx->offset);
1580 block_acct_invalid(blk_get_stats(blk), BLOCK_ACCT_READ);
1581 g_free(ctx);
1582 return 0;
1583 }
1584
1585 nr_iov = argc - optind;
1586 ctx->buf = create_iovec(blk, &ctx->qiov, &argv[optind], nr_iov, 0xab);
1587 if (ctx->buf == NULL) {
1588 block_acct_invalid(blk_get_stats(blk), BLOCK_ACCT_READ);
1589 g_free(ctx);
1590 return 0;
1591 }
1592
1593 gettimeofday(&ctx->t1, NULL);
1594 block_acct_start(blk_get_stats(blk), &ctx->acct, ctx->qiov.size,
1595 BLOCK_ACCT_READ);
1596 blk_aio_readv(blk, ctx->offset >> 9, &ctx->qiov,
1597 ctx->qiov.size >> 9, aio_read_done, ctx);
1598 return 0;
1599 }
1600
1601 static void aio_write_help(void)
1602 {
1603 printf(
1604 "\n"
1605 " asynchronously writes a range of bytes from the given offset source\n"
1606 " from multiple buffers\n"
1607 "\n"
1608 " Example:\n"
1609 " 'aio_write 512 1k 1k' - writes 2 kilobytes at 512 bytes into the open file\n"
1610 "\n"
1611 " Writes into a segment of the currently open file, using a buffer\n"
1612 " filled with a set pattern (0xcdcdcdcd).\n"
1613 " The write is performed asynchronously and the aio_flush command must be\n"
1614 " used to ensure all outstanding aio requests have been completed.\n"
1615 " -P, -- use different pattern to fill file\n"
1616 " -C, -- report statistics in a machine parsable format\n"
1617 " -q, -- quiet mode, do not show I/O statistics\n"
1618 " -z, -- write zeroes using blk_aio_write_zeroes\n"
1619 "\n");
1620 }
1621
1622 static int aio_write_f(BlockBackend *blk, int argc, char **argv);
1623
1624 static const cmdinfo_t aio_write_cmd = {
1625 .name = "aio_write",
1626 .cfunc = aio_write_f,
1627 .argmin = 2,
1628 .argmax = -1,
1629 .args = "[-Cqz] [-P pattern ] off len [len..]",
1630 .oneline = "asynchronously writes a number of bytes",
1631 .help = aio_write_help,
1632 };
1633
1634 static int aio_write_f(BlockBackend *blk, int argc, char **argv)
1635 {
1636 int nr_iov, c;
1637 int pattern = 0xcd;
1638 struct aio_ctx *ctx = g_new0(struct aio_ctx, 1);
1639
1640 ctx->blk = blk;
1641 while ((c = getopt(argc, argv, "CqP:z")) != -1) {
1642 switch (c) {
1643 case 'C':
1644 ctx->Cflag = 1;
1645 break;
1646 case 'q':
1647 ctx->qflag = 1;
1648 break;
1649 case 'P':
1650 pattern = parse_pattern(optarg);
1651 if (pattern < 0) {
1652 g_free(ctx);
1653 return 0;
1654 }
1655 break;
1656 case 'z':
1657 ctx->zflag = 1;
1658 break;
1659 default:
1660 g_free(ctx);
1661 return qemuio_command_usage(&aio_write_cmd);
1662 }
1663 }
1664
1665 if (optind > argc - 2) {
1666 g_free(ctx);
1667 return qemuio_command_usage(&aio_write_cmd);
1668 }
1669
1670 if (ctx->zflag && optind != argc - 2) {
1671 printf("-z supports only a single length parameter\n");
1672 g_free(ctx);
1673 return 0;
1674 }
1675
1676 if (ctx->zflag && ctx->Pflag) {
1677 printf("-z and -P cannot be specified at the same time\n");
1678 g_free(ctx);
1679 return 0;
1680 }
1681
1682 ctx->offset = cvtnum(argv[optind]);
1683 if (ctx->offset < 0) {
1684 print_cvtnum_err(ctx->offset, argv[optind]);
1685 g_free(ctx);
1686 return 0;
1687 }
1688 optind++;
1689
1690 if (ctx->offset & 0x1ff) {
1691 printf("offset %" PRId64 " is not sector aligned\n",
1692 ctx->offset);
1693 block_acct_invalid(blk_get_stats(blk), BLOCK_ACCT_WRITE);
1694 g_free(ctx);
1695 return 0;
1696 }
1697
1698 if (ctx->zflag) {
1699 int64_t count = cvtnum(argv[optind]);
1700 if (count < 0) {
1701 print_cvtnum_err(count, argv[optind]);
1702 g_free(ctx);
1703 return 0;
1704 }
1705
1706 ctx->qiov.size = count;
1707 blk_aio_write_zeroes(blk, ctx->offset >> 9, count >> 9, 0,
1708 aio_write_done, ctx);
1709 } else {
1710 nr_iov = argc - optind;
1711 ctx->buf = create_iovec(blk, &ctx->qiov, &argv[optind], nr_iov,
1712 pattern);
1713 if (ctx->buf == NULL) {
1714 block_acct_invalid(blk_get_stats(blk), BLOCK_ACCT_WRITE);
1715 g_free(ctx);
1716 return 0;
1717 }
1718
1719 gettimeofday(&ctx->t1, NULL);
1720 block_acct_start(blk_get_stats(blk), &ctx->acct, ctx->qiov.size,
1721 BLOCK_ACCT_WRITE);
1722
1723 blk_aio_writev(blk, ctx->offset >> 9, &ctx->qiov,
1724 ctx->qiov.size >> 9, aio_write_done, ctx);
1725 }
1726 return 0;
1727 }
1728
1729 static int aio_flush_f(BlockBackend *blk, int argc, char **argv)
1730 {
1731 BlockAcctCookie cookie;
1732 block_acct_start(blk_get_stats(blk), &cookie, 0, BLOCK_ACCT_FLUSH);
1733 blk_drain_all();
1734 block_acct_done(blk_get_stats(blk), &cookie);
1735 return 0;
1736 }
1737
1738 static const cmdinfo_t aio_flush_cmd = {
1739 .name = "aio_flush",
1740 .cfunc = aio_flush_f,
1741 .oneline = "completes all outstanding aio requests"
1742 };
1743
1744 static int flush_f(BlockBackend *blk, int argc, char **argv)
1745 {
1746 blk_flush(blk);
1747 return 0;
1748 }
1749
1750 static const cmdinfo_t flush_cmd = {
1751 .name = "flush",
1752 .altname = "f",
1753 .cfunc = flush_f,
1754 .oneline = "flush all in-core file state to disk",
1755 };
1756
1757 static int truncate_f(BlockBackend *blk, int argc, char **argv)
1758 {
1759 int64_t offset;
1760 int ret;
1761
1762 offset = cvtnum(argv[1]);
1763 if (offset < 0) {
1764 print_cvtnum_err(offset, argv[1]);
1765 return 0;
1766 }
1767
1768 ret = blk_truncate(blk, offset);
1769 if (ret < 0) {
1770 printf("truncate: %s\n", strerror(-ret));
1771 return 0;
1772 }
1773
1774 return 0;
1775 }
1776
1777 static const cmdinfo_t truncate_cmd = {
1778 .name = "truncate",
1779 .altname = "t",
1780 .cfunc = truncate_f,
1781 .argmin = 1,
1782 .argmax = 1,
1783 .args = "off",
1784 .oneline = "truncates the current file at the given offset",
1785 };
1786
1787 static int length_f(BlockBackend *blk, int argc, char **argv)
1788 {
1789 int64_t size;
1790 char s1[64];
1791
1792 size = blk_getlength(blk);
1793 if (size < 0) {
1794 printf("getlength: %s\n", strerror(-size));
1795 return 0;
1796 }
1797
1798 cvtstr(size, s1, sizeof(s1));
1799 printf("%s\n", s1);
1800 return 0;
1801 }
1802
1803
1804 static const cmdinfo_t length_cmd = {
1805 .name = "length",
1806 .altname = "l",
1807 .cfunc = length_f,
1808 .oneline = "gets the length of the current file",
1809 };
1810
1811
1812 static int info_f(BlockBackend *blk, int argc, char **argv)
1813 {
1814 BlockDriverState *bs = blk_bs(blk);
1815 BlockDriverInfo bdi;
1816 ImageInfoSpecific *spec_info;
1817 char s1[64], s2[64];
1818 int ret;
1819
1820 if (bs->drv && bs->drv->format_name) {
1821 printf("format name: %s\n", bs->drv->format_name);
1822 }
1823 if (bs->drv && bs->drv->protocol_name) {
1824 printf("format name: %s\n", bs->drv->protocol_name);
1825 }
1826
1827 ret = bdrv_get_info(bs, &bdi);
1828 if (ret) {
1829 return 0;
1830 }
1831
1832 cvtstr(bdi.cluster_size, s1, sizeof(s1));
1833 cvtstr(bdi.vm_state_offset, s2, sizeof(s2));
1834
1835 printf("cluster size: %s\n", s1);
1836 printf("vm state offset: %s\n", s2);
1837
1838 spec_info = bdrv_get_specific_info(bs);
1839 if (spec_info) {
1840 printf("Format specific information:\n");
1841 bdrv_image_info_specific_dump(fprintf, stdout, spec_info);
1842 qapi_free_ImageInfoSpecific(spec_info);
1843 }
1844
1845 return 0;
1846 }
1847
1848
1849
1850 static const cmdinfo_t info_cmd = {
1851 .name = "info",
1852 .altname = "i",
1853 .cfunc = info_f,
1854 .oneline = "prints information about the current file",
1855 };
1856
1857 static void discard_help(void)
1858 {
1859 printf(
1860 "\n"
1861 " discards a range of bytes from the given offset\n"
1862 "\n"
1863 " Example:\n"
1864 " 'discard 512 1k' - discards 1 kilobyte from 512 bytes into the file\n"
1865 "\n"
1866 " Discards a segment of the currently open file.\n"
1867 " -C, -- report statistics in a machine parsable format\n"
1868 " -q, -- quiet mode, do not show I/O statistics\n"
1869 "\n");
1870 }
1871
1872 static int discard_f(BlockBackend *blk, int argc, char **argv);
1873
1874 static const cmdinfo_t discard_cmd = {
1875 .name = "discard",
1876 .altname = "d",
1877 .cfunc = discard_f,
1878 .argmin = 2,
1879 .argmax = -1,
1880 .args = "[-Cq] off len",
1881 .oneline = "discards a number of bytes at a specified offset",
1882 .help = discard_help,
1883 };
1884
1885 static int discard_f(BlockBackend *blk, int argc, char **argv)
1886 {
1887 struct timeval t1, t2;
1888 int Cflag = 0, qflag = 0;
1889 int c, ret;
1890 int64_t offset, count;
1891
1892 while ((c = getopt(argc, argv, "Cq")) != -1) {
1893 switch (c) {
1894 case 'C':
1895 Cflag = 1;
1896 break;
1897 case 'q':
1898 qflag = 1;
1899 break;
1900 default:
1901 return qemuio_command_usage(&discard_cmd);
1902 }
1903 }
1904
1905 if (optind != argc - 2) {
1906 return qemuio_command_usage(&discard_cmd);
1907 }
1908
1909 offset = cvtnum(argv[optind]);
1910 if (offset < 0) {
1911 print_cvtnum_err(offset, argv[optind]);
1912 return 0;
1913 }
1914
1915 optind++;
1916 count = cvtnum(argv[optind]);
1917 if (count < 0) {
1918 print_cvtnum_err(count, argv[optind]);
1919 return 0;
1920 } else if (count >> BDRV_SECTOR_BITS > INT_MAX) {
1921 printf("length cannot exceed %"PRIu64", given %s\n",
1922 (uint64_t)INT_MAX << BDRV_SECTOR_BITS,
1923 argv[optind]);
1924 return 0;
1925 }
1926
1927 gettimeofday(&t1, NULL);
1928 ret = blk_discard(blk, offset >> BDRV_SECTOR_BITS,
1929 count >> BDRV_SECTOR_BITS);
1930 gettimeofday(&t2, NULL);
1931
1932 if (ret < 0) {
1933 printf("discard failed: %s\n", strerror(-ret));
1934 goto out;
1935 }
1936
1937 /* Finally, report back -- -C gives a parsable format */
1938 if (!qflag) {
1939 t2 = tsub(t2, t1);
1940 print_report("discard", &t2, offset, count, count, 1, Cflag);
1941 }
1942
1943 out:
1944 return 0;
1945 }
1946
1947 static int alloc_f(BlockBackend *blk, int argc, char **argv)
1948 {
1949 BlockDriverState *bs = blk_bs(blk);
1950 int64_t offset, sector_num, nb_sectors, remaining;
1951 char s1[64];
1952 int num, ret;
1953 int64_t sum_alloc;
1954
1955 offset = cvtnum(argv[1]);
1956 if (offset < 0) {
1957 print_cvtnum_err(offset, argv[1]);
1958 return 0;
1959 } else if (offset & 0x1ff) {
1960 printf("offset %" PRId64 " is not sector aligned\n",
1961 offset);
1962 return 0;
1963 }
1964
1965 if (argc == 3) {
1966 nb_sectors = cvtnum(argv[2]);
1967 if (nb_sectors < 0) {
1968 print_cvtnum_err(nb_sectors, argv[2]);
1969 return 0;
1970 } else if (nb_sectors > INT_MAX) {
1971 printf("length argument cannot exceed %d, given %s\n",
1972 INT_MAX, argv[2]);
1973 return 0;
1974 }
1975 } else {
1976 nb_sectors = 1;
1977 }
1978
1979 remaining = nb_sectors;
1980 sum_alloc = 0;
1981 sector_num = offset >> 9;
1982 while (remaining) {
1983 ret = bdrv_is_allocated(bs, sector_num, remaining, &num);
1984 if (ret < 0) {
1985 printf("is_allocated failed: %s\n", strerror(-ret));
1986 return 0;
1987 }
1988 sector_num += num;
1989 remaining -= num;
1990 if (ret) {
1991 sum_alloc += num;
1992 }
1993 if (num == 0) {
1994 nb_sectors -= remaining;
1995 remaining = 0;
1996 }
1997 }
1998
1999 cvtstr(offset, s1, sizeof(s1));
2000
2001 printf("%"PRId64"/%"PRId64" sectors allocated at offset %s\n",
2002 sum_alloc, nb_sectors, s1);
2003 return 0;
2004 }
2005
2006 static const cmdinfo_t alloc_cmd = {
2007 .name = "alloc",
2008 .altname = "a",
2009 .argmin = 1,
2010 .argmax = 2,
2011 .cfunc = alloc_f,
2012 .args = "off [sectors]",
2013 .oneline = "checks if a sector is present in the file",
2014 };
2015
2016
2017 static int map_is_allocated(BlockDriverState *bs, int64_t sector_num,
2018 int64_t nb_sectors, int64_t *pnum)
2019 {
2020 int num, num_checked;
2021 int ret, firstret;
2022
2023 num_checked = MIN(nb_sectors, INT_MAX);
2024 ret = bdrv_is_allocated(bs, sector_num, num_checked, &num);
2025 if (ret < 0) {
2026 return ret;
2027 }
2028
2029 firstret = ret;
2030 *pnum = num;
2031
2032 while (nb_sectors > 0 && ret == firstret) {
2033 sector_num += num;
2034 nb_sectors -= num;
2035
2036 num_checked = MIN(nb_sectors, INT_MAX);
2037 ret = bdrv_is_allocated(bs, sector_num, num_checked, &num);
2038 if (ret == firstret && num) {
2039 *pnum += num;
2040 } else {
2041 break;
2042 }
2043 }
2044
2045 return firstret;
2046 }
2047
2048 static int map_f(BlockBackend *blk, int argc, char **argv)
2049 {
2050 int64_t offset;
2051 int64_t nb_sectors, total_sectors;
2052 char s1[64];
2053 int64_t num;
2054 int ret;
2055 const char *retstr;
2056
2057 offset = 0;
2058 total_sectors = blk_nb_sectors(blk);
2059 if (total_sectors < 0) {
2060 error_report("Failed to query image length: %s",
2061 strerror(-total_sectors));
2062 return 0;
2063 }
2064
2065 nb_sectors = total_sectors;
2066
2067 do {
2068 ret = map_is_allocated(blk_bs(blk), offset, nb_sectors, &num);
2069 if (ret < 0) {
2070 error_report("Failed to get allocation status: %s", strerror(-ret));
2071 return 0;
2072 } else if (!num) {
2073 error_report("Unexpected end of image");
2074 return 0;
2075 }
2076
2077 retstr = ret ? " allocated" : "not allocated";
2078 cvtstr(offset << 9ULL, s1, sizeof(s1));
2079 printf("[% 24" PRId64 "] % 8" PRId64 "/% 8" PRId64 " sectors %s "
2080 "at offset %s (%d)\n",
2081 offset << 9ULL, num, nb_sectors, retstr, s1, ret);
2082
2083 offset += num;
2084 nb_sectors -= num;
2085 } while (offset < total_sectors);
2086
2087 return 0;
2088 }
2089
2090 static const cmdinfo_t map_cmd = {
2091 .name = "map",
2092 .argmin = 0,
2093 .argmax = 0,
2094 .cfunc = map_f,
2095 .args = "",
2096 .oneline = "prints the allocated areas of a file",
2097 };
2098
2099 static void reopen_help(void)
2100 {
2101 printf(
2102 "\n"
2103 " Changes the open options of an already opened image\n"
2104 "\n"
2105 " Example:\n"
2106 " 'reopen -o lazy-refcounts=on' - activates lazy refcount writeback on a qcow2 image\n"
2107 "\n"
2108 " -r, -- Reopen the image read-only\n"
2109 " -c, -- Change the cache mode to the given value\n"
2110 " -o, -- Changes block driver options (cf. 'open' command)\n"
2111 "\n");
2112 }
2113
2114 static int reopen_f(BlockBackend *blk, int argc, char **argv);
2115
2116 static QemuOptsList reopen_opts = {
2117 .name = "reopen",
2118 .merge_lists = true,
2119 .head = QTAILQ_HEAD_INITIALIZER(reopen_opts.head),
2120 .desc = {
2121 /* no elements => accept any params */
2122 { /* end of list */ }
2123 },
2124 };
2125
2126 static const cmdinfo_t reopen_cmd = {
2127 .name = "reopen",
2128 .argmin = 0,
2129 .argmax = -1,
2130 .cfunc = reopen_f,
2131 .args = "[-r] [-c cache] [-o options]",
2132 .oneline = "reopens an image with new options",
2133 .help = reopen_help,
2134 };
2135
2136 static int reopen_f(BlockBackend *blk, int argc, char **argv)
2137 {
2138 BlockDriverState *bs = blk_bs(blk);
2139 QemuOpts *qopts;
2140 QDict *opts;
2141 int c;
2142 int flags = bs->open_flags;
2143 bool writethrough = !blk_enable_write_cache(blk);
2144
2145 BlockReopenQueue *brq;
2146 Error *local_err = NULL;
2147
2148 while ((c = getopt(argc, argv, "c:o:r")) != -1) {
2149 switch (c) {
2150 case 'c':
2151 if (bdrv_parse_cache_mode(optarg, &flags, &writethrough) < 0) {
2152 error_report("Invalid cache option: %s", optarg);
2153 return 0;
2154 }
2155 break;
2156 case 'o':
2157 if (!qemu_opts_parse_noisily(&reopen_opts, optarg, 0)) {
2158 qemu_opts_reset(&reopen_opts);
2159 return 0;
2160 }
2161 break;
2162 case 'r':
2163 flags &= ~BDRV_O_RDWR;
2164 break;
2165 default:
2166 qemu_opts_reset(&reopen_opts);
2167 return qemuio_command_usage(&reopen_cmd);
2168 }
2169 }
2170
2171 if (optind != argc) {
2172 qemu_opts_reset(&reopen_opts);
2173 return qemuio_command_usage(&reopen_cmd);
2174 }
2175
2176 if (writethrough != blk_enable_write_cache(blk) &&
2177 blk_get_attached_dev(blk))
2178 {
2179 error_report("Cannot change cache.writeback: Device attached");
2180 qemu_opts_reset(&reopen_opts);
2181 return 0;
2182 }
2183
2184 qopts = qemu_opts_find(&reopen_opts, NULL);
2185 opts = qopts ? qemu_opts_to_qdict(qopts, NULL) : NULL;
2186 qemu_opts_reset(&reopen_opts);
2187
2188 brq = bdrv_reopen_queue(NULL, bs, opts, flags);
2189 bdrv_reopen_multiple(brq, &local_err);
2190 if (local_err) {
2191 error_report_err(local_err);
2192 } else {
2193 blk_set_enable_write_cache(blk, !writethrough);
2194 }
2195
2196 return 0;
2197 }
2198
2199 static int break_f(BlockBackend *blk, int argc, char **argv)
2200 {
2201 int ret;
2202
2203 ret = bdrv_debug_breakpoint(blk_bs(blk), argv[1], argv[2]);
2204 if (ret < 0) {
2205 printf("Could not set breakpoint: %s\n", strerror(-ret));
2206 }
2207
2208 return 0;
2209 }
2210
2211 static int remove_break_f(BlockBackend *blk, int argc, char **argv)
2212 {
2213 int ret;
2214
2215 ret = bdrv_debug_remove_breakpoint(blk_bs(blk), argv[1]);
2216 if (ret < 0) {
2217 printf("Could not remove breakpoint %s: %s\n", argv[1], strerror(-ret));
2218 }
2219
2220 return 0;
2221 }
2222
2223 static const cmdinfo_t break_cmd = {
2224 .name = "break",
2225 .argmin = 2,
2226 .argmax = 2,
2227 .cfunc = break_f,
2228 .args = "event tag",
2229 .oneline = "sets a breakpoint on event and tags the stopped "
2230 "request as tag",
2231 };
2232
2233 static const cmdinfo_t remove_break_cmd = {
2234 .name = "remove_break",
2235 .argmin = 1,
2236 .argmax = 1,
2237 .cfunc = remove_break_f,
2238 .args = "tag",
2239 .oneline = "remove a breakpoint by tag",
2240 };
2241
2242 static int resume_f(BlockBackend *blk, int argc, char **argv)
2243 {
2244 int ret;
2245
2246 ret = bdrv_debug_resume(blk_bs(blk), argv[1]);
2247 if (ret < 0) {
2248 printf("Could not resume request: %s\n", strerror(-ret));
2249 }
2250
2251 return 0;
2252 }
2253
2254 static const cmdinfo_t resume_cmd = {
2255 .name = "resume",
2256 .argmin = 1,
2257 .argmax = 1,
2258 .cfunc = resume_f,
2259 .args = "tag",
2260 .oneline = "resumes the request tagged as tag",
2261 };
2262
2263 static int wait_break_f(BlockBackend *blk, int argc, char **argv)
2264 {
2265 while (!bdrv_debug_is_suspended(blk_bs(blk), argv[1])) {
2266 aio_poll(blk_get_aio_context(blk), true);
2267 }
2268
2269 return 0;
2270 }
2271
2272 static const cmdinfo_t wait_break_cmd = {
2273 .name = "wait_break",
2274 .argmin = 1,
2275 .argmax = 1,
2276 .cfunc = wait_break_f,
2277 .args = "tag",
2278 .oneline = "waits for the suspension of a request",
2279 };
2280
2281 static int abort_f(BlockBackend *blk, int argc, char **argv)
2282 {
2283 abort();
2284 }
2285
2286 static const cmdinfo_t abort_cmd = {
2287 .name = "abort",
2288 .cfunc = abort_f,
2289 .flags = CMD_NOFILE_OK,
2290 .oneline = "simulate a program crash using abort(3)",
2291 };
2292
2293 static void sigraise_help(void)
2294 {
2295 printf(
2296 "\n"
2297 " raises the given signal\n"
2298 "\n"
2299 " Example:\n"
2300 " 'sigraise %i' - raises SIGTERM\n"
2301 "\n"
2302 " Invokes raise(signal), where \"signal\" is the mandatory integer argument\n"
2303 " given to sigraise.\n"
2304 "\n", SIGTERM);
2305 }
2306
2307 static int sigraise_f(BlockBackend *blk, int argc, char **argv);
2308
2309 static const cmdinfo_t sigraise_cmd = {
2310 .name = "sigraise",
2311 .cfunc = sigraise_f,
2312 .argmin = 1,
2313 .argmax = 1,
2314 .flags = CMD_NOFILE_OK,
2315 .args = "signal",
2316 .oneline = "raises a signal",
2317 .help = sigraise_help,
2318 };
2319
2320 static int sigraise_f(BlockBackend *blk, int argc, char **argv)
2321 {
2322 int64_t sig = cvtnum(argv[1]);
2323 if (sig < 0) {
2324 print_cvtnum_err(sig, argv[1]);
2325 return 0;
2326 } else if (sig > NSIG) {
2327 printf("signal argument '%s' is too large to be a valid signal\n",
2328 argv[1]);
2329 return 0;
2330 }
2331
2332 /* Using raise() to kill this process does not necessarily flush all open
2333 * streams. At least stdout and stderr (although the latter should be
2334 * non-buffered anyway) should be flushed, though. */
2335 fflush(stdout);
2336 fflush(stderr);
2337
2338 raise(sig);
2339 return 0;
2340 }
2341
2342 static void sleep_cb(void *opaque)
2343 {
2344 bool *expired = opaque;
2345 *expired = true;
2346 }
2347
2348 static int sleep_f(BlockBackend *blk, int argc, char **argv)
2349 {
2350 char *endptr;
2351 long ms;
2352 struct QEMUTimer *timer;
2353 bool expired = false;
2354
2355 ms = strtol(argv[1], &endptr, 0);
2356 if (ms < 0 || *endptr != '\0') {
2357 printf("%s is not a valid number\n", argv[1]);
2358 return 0;
2359 }
2360
2361 timer = timer_new_ns(QEMU_CLOCK_HOST, sleep_cb, &expired);
2362 timer_mod(timer, qemu_clock_get_ns(QEMU_CLOCK_HOST) + SCALE_MS * ms);
2363
2364 while (!expired) {
2365 main_loop_wait(false);
2366 }
2367
2368 timer_free(timer);
2369
2370 return 0;
2371 }
2372
2373 static const cmdinfo_t sleep_cmd = {
2374 .name = "sleep",
2375 .argmin = 1,
2376 .argmax = 1,
2377 .cfunc = sleep_f,
2378 .flags = CMD_NOFILE_OK,
2379 .oneline = "waits for the given value in milliseconds",
2380 };
2381
2382 static void help_oneline(const char *cmd, const cmdinfo_t *ct)
2383 {
2384 if (cmd) {
2385 printf("%s ", cmd);
2386 } else {
2387 printf("%s ", ct->name);
2388 if (ct->altname) {
2389 printf("(or %s) ", ct->altname);
2390 }
2391 }
2392
2393 if (ct->args) {
2394 printf("%s ", ct->args);
2395 }
2396 printf("-- %s\n", ct->oneline);
2397 }
2398
2399 static void help_onecmd(const char *cmd, const cmdinfo_t *ct)
2400 {
2401 help_oneline(cmd, ct);
2402 if (ct->help) {
2403 ct->help();
2404 }
2405 }
2406
2407 static void help_all(void)
2408 {
2409 const cmdinfo_t *ct;
2410
2411 for (ct = cmdtab; ct < &cmdtab[ncmds]; ct++) {
2412 help_oneline(ct->name, ct);
2413 }
2414 printf("\nUse 'help commandname' for extended help.\n");
2415 }
2416
2417 static int help_f(BlockBackend *blk, int argc, char **argv)
2418 {
2419 const cmdinfo_t *ct;
2420
2421 if (argc == 1) {
2422 help_all();
2423 return 0;
2424 }
2425
2426 ct = find_command(argv[1]);
2427 if (ct == NULL) {
2428 printf("command %s not found\n", argv[1]);
2429 return 0;
2430 }
2431
2432 help_onecmd(argv[1], ct);
2433 return 0;
2434 }
2435
2436 static const cmdinfo_t help_cmd = {
2437 .name = "help",
2438 .altname = "?",
2439 .cfunc = help_f,
2440 .argmin = 0,
2441 .argmax = 1,
2442 .flags = CMD_FLAG_GLOBAL,
2443 .args = "[command]",
2444 .oneline = "help for one or all commands",
2445 };
2446
2447 bool qemuio_command(BlockBackend *blk, const char *cmd)
2448 {
2449 char *input;
2450 const cmdinfo_t *ct;
2451 char **v;
2452 int c;
2453 bool done = false;
2454
2455 input = g_strdup(cmd);
2456 v = breakline(input, &c);
2457 if (c) {
2458 ct = find_command(v[0]);
2459 if (ct) {
2460 done = command(blk, ct, c, v);
2461 } else {
2462 fprintf(stderr, "command \"%s\" not found\n", v[0]);
2463 }
2464 }
2465 g_free(input);
2466 g_free(v);
2467
2468 return done;
2469 }
2470
2471 static void __attribute((constructor)) init_qemuio_commands(void)
2472 {
2473 /* initialize commands */
2474 qemuio_add_command(&help_cmd);
2475 qemuio_add_command(&read_cmd);
2476 qemuio_add_command(&readv_cmd);
2477 qemuio_add_command(&write_cmd);
2478 qemuio_add_command(&writev_cmd);
2479 qemuio_add_command(&multiwrite_cmd);
2480 qemuio_add_command(&aio_read_cmd);
2481 qemuio_add_command(&aio_write_cmd);
2482 qemuio_add_command(&aio_flush_cmd);
2483 qemuio_add_command(&flush_cmd);
2484 qemuio_add_command(&truncate_cmd);
2485 qemuio_add_command(&length_cmd);
2486 qemuio_add_command(&info_cmd);
2487 qemuio_add_command(&discard_cmd);
2488 qemuio_add_command(&alloc_cmd);
2489 qemuio_add_command(&map_cmd);
2490 qemuio_add_command(&reopen_cmd);
2491 qemuio_add_command(&break_cmd);
2492 qemuio_add_command(&remove_break_cmd);
2493 qemuio_add_command(&resume_cmd);
2494 qemuio_add_command(&wait_break_cmd);
2495 qemuio_add_command(&abort_cmd);
2496 qemuio_add_command(&sleep_cmd);
2497 qemuio_add_command(&sigraise_cmd);
2498 }