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Sparc: implement monitor command 'info tlb'
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1 /*
2 * QEMU monitor
3 *
4 * Copyright (c) 2003-2004 Fabrice Bellard
5 *
6 * Permission is hereby granted, free of charge, to any person obtaining a copy
7 * of this software and associated documentation files (the "Software"), to deal
8 * in the Software without restriction, including without limitation the rights
9 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
10 * copies of the Software, and to permit persons to whom the Software is
11 * furnished to do so, subject to the following conditions:
12 *
13 * The above copyright notice and this permission notice shall be included in
14 * all copies or substantial portions of the Software.
15 *
16 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
19 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
21 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
22 * THE SOFTWARE.
23 */
24 #include <dirent.h>
25 #include "hw/hw.h"
26 #include "hw/qdev.h"
27 #include "hw/usb.h"
28 #include "hw/pcmcia.h"
29 #include "hw/pc.h"
30 #include "hw/pci.h"
31 #include "hw/watchdog.h"
32 #include "hw/loader.h"
33 #include "gdbstub.h"
34 #include "net.h"
35 #include "net/slirp.h"
36 #include "qemu-char.h"
37 #include "sysemu.h"
38 #include "monitor.h"
39 #include "readline.h"
40 #include "console.h"
41 #include "blockdev.h"
42 #include "audio/audio.h"
43 #include "disas.h"
44 #include "balloon.h"
45 #include "qemu-timer.h"
46 #include "migration.h"
47 #include "kvm.h"
48 #include "acl.h"
49 #include "qint.h"
50 #include "qfloat.h"
51 #include "qlist.h"
52 #include "qbool.h"
53 #include "qstring.h"
54 #include "qjson.h"
55 #include "json-streamer.h"
56 #include "json-parser.h"
57 #include "osdep.h"
58 #include "exec-all.h"
59 #ifdef CONFIG_SIMPLE_TRACE
60 #include "trace.h"
61 #endif
62
63 //#define DEBUG
64 //#define DEBUG_COMPLETION
65
66 /*
67 * Supported types:
68 *
69 * 'F' filename
70 * 'B' block device name
71 * 's' string (accept optional quote)
72 * 'O' option string of the form NAME=VALUE,...
73 * parsed according to QemuOptsList given by its name
74 * Example: 'device:O' uses qemu_device_opts.
75 * Restriction: only lists with empty desc are supported
76 * TODO lift the restriction
77 * 'i' 32 bit integer
78 * 'l' target long (32 or 64 bit)
79 * 'M' just like 'l', except in user mode the value is
80 * multiplied by 2^20 (think Mebibyte)
81 * 'o' octets (aka bytes)
82 * user mode accepts an optional T, t, G, g, M, m, K, k
83 * suffix, which multiplies the value by 2^40 for
84 * suffixes T and t, 2^30 for suffixes G and g, 2^20 for
85 * M and m, 2^10 for K and k
86 * 'T' double
87 * user mode accepts an optional ms, us, ns suffix,
88 * which divides the value by 1e3, 1e6, 1e9, respectively
89 * '/' optional gdb-like print format (like "/10x")
90 *
91 * '?' optional type (for all types, except '/')
92 * '.' other form of optional type (for 'i' and 'l')
93 * 'b' boolean
94 * user mode accepts "on" or "off"
95 * '-' optional parameter (eg. '-f')
96 *
97 */
98
99 typedef struct MonitorCompletionData MonitorCompletionData;
100 struct MonitorCompletionData {
101 Monitor *mon;
102 void (*user_print)(Monitor *mon, const QObject *data);
103 };
104
105 typedef struct mon_cmd_t {
106 const char *name;
107 const char *args_type;
108 const char *params;
109 const char *help;
110 void (*user_print)(Monitor *mon, const QObject *data);
111 union {
112 void (*info)(Monitor *mon);
113 void (*info_new)(Monitor *mon, QObject **ret_data);
114 int (*info_async)(Monitor *mon, MonitorCompletion *cb, void *opaque);
115 void (*cmd)(Monitor *mon, const QDict *qdict);
116 int (*cmd_new)(Monitor *mon, const QDict *params, QObject **ret_data);
117 int (*cmd_async)(Monitor *mon, const QDict *params,
118 MonitorCompletion *cb, void *opaque);
119 } mhandler;
120 int flags;
121 } mon_cmd_t;
122
123 /* file descriptors passed via SCM_RIGHTS */
124 typedef struct mon_fd_t mon_fd_t;
125 struct mon_fd_t {
126 char *name;
127 int fd;
128 QLIST_ENTRY(mon_fd_t) next;
129 };
130
131 typedef struct MonitorControl {
132 QObject *id;
133 JSONMessageParser parser;
134 int command_mode;
135 } MonitorControl;
136
137 struct Monitor {
138 CharDriverState *chr;
139 int mux_out;
140 int reset_seen;
141 int flags;
142 int suspend_cnt;
143 uint8_t outbuf[1024];
144 int outbuf_index;
145 ReadLineState *rs;
146 MonitorControl *mc;
147 CPUState *mon_cpu;
148 BlockDriverCompletionFunc *password_completion_cb;
149 void *password_opaque;
150 #ifdef CONFIG_DEBUG_MONITOR
151 int print_calls_nr;
152 #endif
153 QError *error;
154 QLIST_HEAD(,mon_fd_t) fds;
155 QLIST_ENTRY(Monitor) entry;
156 };
157
158 #ifdef CONFIG_DEBUG_MONITOR
159 #define MON_DEBUG(fmt, ...) do { \
160 fprintf(stderr, "Monitor: "); \
161 fprintf(stderr, fmt, ## __VA_ARGS__); } while (0)
162
163 static inline void mon_print_count_inc(Monitor *mon)
164 {
165 mon->print_calls_nr++;
166 }
167
168 static inline void mon_print_count_init(Monitor *mon)
169 {
170 mon->print_calls_nr = 0;
171 }
172
173 static inline int mon_print_count_get(const Monitor *mon)
174 {
175 return mon->print_calls_nr;
176 }
177
178 #else /* !CONFIG_DEBUG_MONITOR */
179 #define MON_DEBUG(fmt, ...) do { } while (0)
180 static inline void mon_print_count_inc(Monitor *mon) { }
181 static inline void mon_print_count_init(Monitor *mon) { }
182 static inline int mon_print_count_get(const Monitor *mon) { return 0; }
183 #endif /* CONFIG_DEBUG_MONITOR */
184
185 /* QMP checker flags */
186 #define QMP_ACCEPT_UNKNOWNS 1
187
188 static QLIST_HEAD(mon_list, Monitor) mon_list;
189
190 static const mon_cmd_t mon_cmds[];
191 static const mon_cmd_t info_cmds[];
192
193 static const mon_cmd_t qmp_cmds[];
194 static const mon_cmd_t qmp_query_cmds[];
195
196 Monitor *cur_mon;
197 Monitor *default_mon;
198
199 static void monitor_command_cb(Monitor *mon, const char *cmdline,
200 void *opaque);
201
202 static inline int qmp_cmd_mode(const Monitor *mon)
203 {
204 return (mon->mc ? mon->mc->command_mode : 0);
205 }
206
207 /* Return true if in control mode, false otherwise */
208 static inline int monitor_ctrl_mode(const Monitor *mon)
209 {
210 return (mon->flags & MONITOR_USE_CONTROL);
211 }
212
213 /* Return non-zero iff we have a current monitor, and it is in QMP mode. */
214 int monitor_cur_is_qmp(void)
215 {
216 return cur_mon && monitor_ctrl_mode(cur_mon);
217 }
218
219 static void monitor_read_command(Monitor *mon, int show_prompt)
220 {
221 if (!mon->rs)
222 return;
223
224 readline_start(mon->rs, "(qemu) ", 0, monitor_command_cb, NULL);
225 if (show_prompt)
226 readline_show_prompt(mon->rs);
227 }
228
229 static int monitor_read_password(Monitor *mon, ReadLineFunc *readline_func,
230 void *opaque)
231 {
232 if (monitor_ctrl_mode(mon)) {
233 qerror_report(QERR_MISSING_PARAMETER, "password");
234 return -EINVAL;
235 } else if (mon->rs) {
236 readline_start(mon->rs, "Password: ", 1, readline_func, opaque);
237 /* prompt is printed on return from the command handler */
238 return 0;
239 } else {
240 monitor_printf(mon, "terminal does not support password prompting\n");
241 return -ENOTTY;
242 }
243 }
244
245 void monitor_flush(Monitor *mon)
246 {
247 if (mon && mon->outbuf_index != 0 && !mon->mux_out) {
248 qemu_chr_write(mon->chr, mon->outbuf, mon->outbuf_index);
249 mon->outbuf_index = 0;
250 }
251 }
252
253 /* flush at every end of line or if the buffer is full */
254 static void monitor_puts(Monitor *mon, const char *str)
255 {
256 char c;
257
258 for(;;) {
259 c = *str++;
260 if (c == '\0')
261 break;
262 if (c == '\n')
263 mon->outbuf[mon->outbuf_index++] = '\r';
264 mon->outbuf[mon->outbuf_index++] = c;
265 if (mon->outbuf_index >= (sizeof(mon->outbuf) - 1)
266 || c == '\n')
267 monitor_flush(mon);
268 }
269 }
270
271 void monitor_vprintf(Monitor *mon, const char *fmt, va_list ap)
272 {
273 char buf[4096];
274
275 if (!mon)
276 return;
277
278 mon_print_count_inc(mon);
279
280 if (monitor_ctrl_mode(mon)) {
281 return;
282 }
283
284 vsnprintf(buf, sizeof(buf), fmt, ap);
285 monitor_puts(mon, buf);
286 }
287
288 void monitor_printf(Monitor *mon, const char *fmt, ...)
289 {
290 va_list ap;
291 va_start(ap, fmt);
292 monitor_vprintf(mon, fmt, ap);
293 va_end(ap);
294 }
295
296 void monitor_print_filename(Monitor *mon, const char *filename)
297 {
298 int i;
299
300 for (i = 0; filename[i]; i++) {
301 switch (filename[i]) {
302 case ' ':
303 case '"':
304 case '\\':
305 monitor_printf(mon, "\\%c", filename[i]);
306 break;
307 case '\t':
308 monitor_printf(mon, "\\t");
309 break;
310 case '\r':
311 monitor_printf(mon, "\\r");
312 break;
313 case '\n':
314 monitor_printf(mon, "\\n");
315 break;
316 default:
317 monitor_printf(mon, "%c", filename[i]);
318 break;
319 }
320 }
321 }
322
323 static int GCC_FMT_ATTR(2, 3) monitor_fprintf(FILE *stream,
324 const char *fmt, ...)
325 {
326 va_list ap;
327 va_start(ap, fmt);
328 monitor_vprintf((Monitor *)stream, fmt, ap);
329 va_end(ap);
330 return 0;
331 }
332
333 static void monitor_user_noop(Monitor *mon, const QObject *data) { }
334
335 static inline int handler_is_qobject(const mon_cmd_t *cmd)
336 {
337 return cmd->user_print != NULL;
338 }
339
340 static inline bool handler_is_async(const mon_cmd_t *cmd)
341 {
342 return cmd->flags & MONITOR_CMD_ASYNC;
343 }
344
345 static inline int monitor_has_error(const Monitor *mon)
346 {
347 return mon->error != NULL;
348 }
349
350 static void monitor_json_emitter(Monitor *mon, const QObject *data)
351 {
352 QString *json;
353
354 json = mon->flags & MONITOR_USE_PRETTY ? qobject_to_json_pretty(data) :
355 qobject_to_json(data);
356 assert(json != NULL);
357
358 qstring_append_chr(json, '\n');
359 monitor_puts(mon, qstring_get_str(json));
360
361 QDECREF(json);
362 }
363
364 static void monitor_protocol_emitter(Monitor *mon, QObject *data)
365 {
366 QDict *qmp;
367
368 qmp = qdict_new();
369
370 if (!monitor_has_error(mon)) {
371 /* success response */
372 if (data) {
373 qobject_incref(data);
374 qdict_put_obj(qmp, "return", data);
375 } else {
376 /* return an empty QDict by default */
377 qdict_put(qmp, "return", qdict_new());
378 }
379 } else {
380 /* error response */
381 qdict_put(mon->error->error, "desc", qerror_human(mon->error));
382 qdict_put(qmp, "error", mon->error->error);
383 QINCREF(mon->error->error);
384 QDECREF(mon->error);
385 mon->error = NULL;
386 }
387
388 if (mon->mc->id) {
389 qdict_put_obj(qmp, "id", mon->mc->id);
390 mon->mc->id = NULL;
391 }
392
393 monitor_json_emitter(mon, QOBJECT(qmp));
394 QDECREF(qmp);
395 }
396
397 static void timestamp_put(QDict *qdict)
398 {
399 int err;
400 QObject *obj;
401 qemu_timeval tv;
402
403 err = qemu_gettimeofday(&tv);
404 if (err < 0)
405 return;
406
407 obj = qobject_from_jsonf("{ 'seconds': %" PRId64 ", "
408 "'microseconds': %" PRId64 " }",
409 (int64_t) tv.tv_sec, (int64_t) tv.tv_usec);
410 qdict_put_obj(qdict, "timestamp", obj);
411 }
412
413 /**
414 * monitor_protocol_event(): Generate a Monitor event
415 *
416 * Event-specific data can be emitted through the (optional) 'data' parameter.
417 */
418 void monitor_protocol_event(MonitorEvent event, QObject *data)
419 {
420 QDict *qmp;
421 const char *event_name;
422 Monitor *mon;
423
424 assert(event < QEVENT_MAX);
425
426 switch (event) {
427 case QEVENT_SHUTDOWN:
428 event_name = "SHUTDOWN";
429 break;
430 case QEVENT_RESET:
431 event_name = "RESET";
432 break;
433 case QEVENT_POWERDOWN:
434 event_name = "POWERDOWN";
435 break;
436 case QEVENT_STOP:
437 event_name = "STOP";
438 break;
439 case QEVENT_RESUME:
440 event_name = "RESUME";
441 break;
442 case QEVENT_VNC_CONNECTED:
443 event_name = "VNC_CONNECTED";
444 break;
445 case QEVENT_VNC_INITIALIZED:
446 event_name = "VNC_INITIALIZED";
447 break;
448 case QEVENT_VNC_DISCONNECTED:
449 event_name = "VNC_DISCONNECTED";
450 break;
451 case QEVENT_BLOCK_IO_ERROR:
452 event_name = "BLOCK_IO_ERROR";
453 break;
454 case QEVENT_RTC_CHANGE:
455 event_name = "RTC_CHANGE";
456 break;
457 case QEVENT_WATCHDOG:
458 event_name = "WATCHDOG";
459 break;
460 default:
461 abort();
462 break;
463 }
464
465 qmp = qdict_new();
466 timestamp_put(qmp);
467 qdict_put(qmp, "event", qstring_from_str(event_name));
468 if (data) {
469 qobject_incref(data);
470 qdict_put_obj(qmp, "data", data);
471 }
472
473 QLIST_FOREACH(mon, &mon_list, entry) {
474 if (monitor_ctrl_mode(mon) && qmp_cmd_mode(mon)) {
475 monitor_json_emitter(mon, QOBJECT(qmp));
476 }
477 }
478 QDECREF(qmp);
479 }
480
481 static int do_qmp_capabilities(Monitor *mon, const QDict *params,
482 QObject **ret_data)
483 {
484 /* Will setup QMP capabilities in the future */
485 if (monitor_ctrl_mode(mon)) {
486 mon->mc->command_mode = 1;
487 }
488
489 return 0;
490 }
491
492 static int mon_set_cpu(int cpu_index);
493 static void handle_user_command(Monitor *mon, const char *cmdline);
494
495 static int do_hmp_passthrough(Monitor *mon, const QDict *params,
496 QObject **ret_data)
497 {
498 int ret = 0;
499 Monitor *old_mon, hmp;
500 CharDriverState mchar;
501
502 memset(&hmp, 0, sizeof(hmp));
503 qemu_chr_init_mem(&mchar);
504 hmp.chr = &mchar;
505
506 old_mon = cur_mon;
507 cur_mon = &hmp;
508
509 if (qdict_haskey(params, "cpu-index")) {
510 ret = mon_set_cpu(qdict_get_int(params, "cpu-index"));
511 if (ret < 0) {
512 cur_mon = old_mon;
513 qerror_report(QERR_INVALID_PARAMETER_VALUE, "cpu-index", "a CPU number");
514 goto out;
515 }
516 }
517
518 handle_user_command(&hmp, qdict_get_str(params, "command-line"));
519 cur_mon = old_mon;
520
521 if (qemu_chr_mem_osize(hmp.chr) > 0) {
522 *ret_data = QOBJECT(qemu_chr_mem_to_qs(hmp.chr));
523 }
524
525 out:
526 qemu_chr_close_mem(hmp.chr);
527 return ret;
528 }
529
530 static int compare_cmd(const char *name, const char *list)
531 {
532 const char *p, *pstart;
533 int len;
534 len = strlen(name);
535 p = list;
536 for(;;) {
537 pstart = p;
538 p = strchr(p, '|');
539 if (!p)
540 p = pstart + strlen(pstart);
541 if ((p - pstart) == len && !memcmp(pstart, name, len))
542 return 1;
543 if (*p == '\0')
544 break;
545 p++;
546 }
547 return 0;
548 }
549
550 static void help_cmd_dump(Monitor *mon, const mon_cmd_t *cmds,
551 const char *prefix, const char *name)
552 {
553 const mon_cmd_t *cmd;
554
555 for(cmd = cmds; cmd->name != NULL; cmd++) {
556 if (!name || !strcmp(name, cmd->name))
557 monitor_printf(mon, "%s%s %s -- %s\n", prefix, cmd->name,
558 cmd->params, cmd->help);
559 }
560 }
561
562 static void help_cmd(Monitor *mon, const char *name)
563 {
564 if (name && !strcmp(name, "info")) {
565 help_cmd_dump(mon, info_cmds, "info ", NULL);
566 } else {
567 help_cmd_dump(mon, mon_cmds, "", name);
568 if (name && !strcmp(name, "log")) {
569 const CPULogItem *item;
570 monitor_printf(mon, "Log items (comma separated):\n");
571 monitor_printf(mon, "%-10s %s\n", "none", "remove all logs");
572 for(item = cpu_log_items; item->mask != 0; item++) {
573 monitor_printf(mon, "%-10s %s\n", item->name, item->help);
574 }
575 }
576 }
577 }
578
579 static void do_help_cmd(Monitor *mon, const QDict *qdict)
580 {
581 help_cmd(mon, qdict_get_try_str(qdict, "name"));
582 }
583
584 #ifdef CONFIG_SIMPLE_TRACE
585 static void do_change_trace_event_state(Monitor *mon, const QDict *qdict)
586 {
587 const char *tp_name = qdict_get_str(qdict, "name");
588 bool new_state = qdict_get_bool(qdict, "option");
589 int ret = st_change_trace_event_state(tp_name, new_state);
590
591 if (!ret) {
592 monitor_printf(mon, "unknown event name \"%s\"\n", tp_name);
593 }
594 }
595
596 static void do_trace_file(Monitor *mon, const QDict *qdict)
597 {
598 const char *op = qdict_get_try_str(qdict, "op");
599 const char *arg = qdict_get_try_str(qdict, "arg");
600
601 if (!op) {
602 st_print_trace_file_status((FILE *)mon, &monitor_fprintf);
603 } else if (!strcmp(op, "on")) {
604 st_set_trace_file_enabled(true);
605 } else if (!strcmp(op, "off")) {
606 st_set_trace_file_enabled(false);
607 } else if (!strcmp(op, "flush")) {
608 st_flush_trace_buffer();
609 } else if (!strcmp(op, "set")) {
610 if (arg) {
611 st_set_trace_file(arg);
612 }
613 } else {
614 monitor_printf(mon, "unexpected argument \"%s\"\n", op);
615 help_cmd(mon, "trace-file");
616 }
617 }
618 #endif
619
620 static void user_monitor_complete(void *opaque, QObject *ret_data)
621 {
622 MonitorCompletionData *data = (MonitorCompletionData *)opaque;
623
624 if (ret_data) {
625 data->user_print(data->mon, ret_data);
626 }
627 monitor_resume(data->mon);
628 qemu_free(data);
629 }
630
631 static void qmp_monitor_complete(void *opaque, QObject *ret_data)
632 {
633 monitor_protocol_emitter(opaque, ret_data);
634 }
635
636 static int qmp_async_cmd_handler(Monitor *mon, const mon_cmd_t *cmd,
637 const QDict *params)
638 {
639 return cmd->mhandler.cmd_async(mon, params, qmp_monitor_complete, mon);
640 }
641
642 static void qmp_async_info_handler(Monitor *mon, const mon_cmd_t *cmd)
643 {
644 cmd->mhandler.info_async(mon, qmp_monitor_complete, mon);
645 }
646
647 static void user_async_cmd_handler(Monitor *mon, const mon_cmd_t *cmd,
648 const QDict *params)
649 {
650 int ret;
651
652 MonitorCompletionData *cb_data = qemu_malloc(sizeof(*cb_data));
653 cb_data->mon = mon;
654 cb_data->user_print = cmd->user_print;
655 monitor_suspend(mon);
656 ret = cmd->mhandler.cmd_async(mon, params,
657 user_monitor_complete, cb_data);
658 if (ret < 0) {
659 monitor_resume(mon);
660 qemu_free(cb_data);
661 }
662 }
663
664 static void user_async_info_handler(Monitor *mon, const mon_cmd_t *cmd)
665 {
666 int ret;
667
668 MonitorCompletionData *cb_data = qemu_malloc(sizeof(*cb_data));
669 cb_data->mon = mon;
670 cb_data->user_print = cmd->user_print;
671 monitor_suspend(mon);
672 ret = cmd->mhandler.info_async(mon, user_monitor_complete, cb_data);
673 if (ret < 0) {
674 monitor_resume(mon);
675 qemu_free(cb_data);
676 }
677 }
678
679 static void do_info(Monitor *mon, const QDict *qdict)
680 {
681 const mon_cmd_t *cmd;
682 const char *item = qdict_get_try_str(qdict, "item");
683
684 if (!item) {
685 goto help;
686 }
687
688 for (cmd = info_cmds; cmd->name != NULL; cmd++) {
689 if (compare_cmd(item, cmd->name))
690 break;
691 }
692
693 if (cmd->name == NULL) {
694 goto help;
695 }
696
697 if (handler_is_async(cmd)) {
698 user_async_info_handler(mon, cmd);
699 } else if (handler_is_qobject(cmd)) {
700 QObject *info_data = NULL;
701
702 cmd->mhandler.info_new(mon, &info_data);
703 if (info_data) {
704 cmd->user_print(mon, info_data);
705 qobject_decref(info_data);
706 }
707 } else {
708 cmd->mhandler.info(mon);
709 }
710
711 return;
712
713 help:
714 help_cmd(mon, "info");
715 }
716
717 static void do_info_version_print(Monitor *mon, const QObject *data)
718 {
719 QDict *qdict;
720 QDict *qemu;
721
722 qdict = qobject_to_qdict(data);
723 qemu = qdict_get_qdict(qdict, "qemu");
724
725 monitor_printf(mon, "%" PRId64 ".%" PRId64 ".%" PRId64 "%s\n",
726 qdict_get_int(qemu, "major"),
727 qdict_get_int(qemu, "minor"),
728 qdict_get_int(qemu, "micro"),
729 qdict_get_str(qdict, "package"));
730 }
731
732 static void do_info_version(Monitor *mon, QObject **ret_data)
733 {
734 const char *version = QEMU_VERSION;
735 int major = 0, minor = 0, micro = 0;
736 char *tmp;
737
738 major = strtol(version, &tmp, 10);
739 tmp++;
740 minor = strtol(tmp, &tmp, 10);
741 tmp++;
742 micro = strtol(tmp, &tmp, 10);
743
744 *ret_data = qobject_from_jsonf("{ 'qemu': { 'major': %d, 'minor': %d, \
745 'micro': %d }, 'package': %s }", major, minor, micro, QEMU_PKGVERSION);
746 }
747
748 static void do_info_name_print(Monitor *mon, const QObject *data)
749 {
750 QDict *qdict;
751
752 qdict = qobject_to_qdict(data);
753 if (qdict_size(qdict) == 0) {
754 return;
755 }
756
757 monitor_printf(mon, "%s\n", qdict_get_str(qdict, "name"));
758 }
759
760 static void do_info_name(Monitor *mon, QObject **ret_data)
761 {
762 *ret_data = qemu_name ? qobject_from_jsonf("{'name': %s }", qemu_name) :
763 qobject_from_jsonf("{}");
764 }
765
766 static QObject *get_cmd_dict(const char *name)
767 {
768 const char *p;
769
770 /* Remove '|' from some commands */
771 p = strchr(name, '|');
772 if (p) {
773 p++;
774 } else {
775 p = name;
776 }
777
778 return qobject_from_jsonf("{ 'name': %s }", p);
779 }
780
781 static void do_info_commands(Monitor *mon, QObject **ret_data)
782 {
783 QList *cmd_list;
784 const mon_cmd_t *cmd;
785
786 cmd_list = qlist_new();
787
788 for (cmd = qmp_cmds; cmd->name != NULL; cmd++) {
789 qlist_append_obj(cmd_list, get_cmd_dict(cmd->name));
790 }
791
792 for (cmd = qmp_query_cmds; cmd->name != NULL; cmd++) {
793 char buf[128];
794 snprintf(buf, sizeof(buf), "query-%s", cmd->name);
795 qlist_append_obj(cmd_list, get_cmd_dict(buf));
796 }
797
798 *ret_data = QOBJECT(cmd_list);
799 }
800
801 static void do_info_uuid_print(Monitor *mon, const QObject *data)
802 {
803 monitor_printf(mon, "%s\n", qdict_get_str(qobject_to_qdict(data), "UUID"));
804 }
805
806 static void do_info_uuid(Monitor *mon, QObject **ret_data)
807 {
808 char uuid[64];
809
810 snprintf(uuid, sizeof(uuid), UUID_FMT, qemu_uuid[0], qemu_uuid[1],
811 qemu_uuid[2], qemu_uuid[3], qemu_uuid[4], qemu_uuid[5],
812 qemu_uuid[6], qemu_uuid[7], qemu_uuid[8], qemu_uuid[9],
813 qemu_uuid[10], qemu_uuid[11], qemu_uuid[12], qemu_uuid[13],
814 qemu_uuid[14], qemu_uuid[15]);
815 *ret_data = qobject_from_jsonf("{ 'UUID': %s }", uuid);
816 }
817
818 /* get the current CPU defined by the user */
819 static int mon_set_cpu(int cpu_index)
820 {
821 CPUState *env;
822
823 for(env = first_cpu; env != NULL; env = env->next_cpu) {
824 if (env->cpu_index == cpu_index) {
825 cur_mon->mon_cpu = env;
826 return 0;
827 }
828 }
829 return -1;
830 }
831
832 static CPUState *mon_get_cpu(void)
833 {
834 if (!cur_mon->mon_cpu) {
835 mon_set_cpu(0);
836 }
837 cpu_synchronize_state(cur_mon->mon_cpu);
838 return cur_mon->mon_cpu;
839 }
840
841 static void do_info_registers(Monitor *mon)
842 {
843 CPUState *env;
844 env = mon_get_cpu();
845 #ifdef TARGET_I386
846 cpu_dump_state(env, (FILE *)mon, monitor_fprintf,
847 X86_DUMP_FPU);
848 #else
849 cpu_dump_state(env, (FILE *)mon, monitor_fprintf,
850 0);
851 #endif
852 }
853
854 static void print_cpu_iter(QObject *obj, void *opaque)
855 {
856 QDict *cpu;
857 int active = ' ';
858 Monitor *mon = opaque;
859
860 assert(qobject_type(obj) == QTYPE_QDICT);
861 cpu = qobject_to_qdict(obj);
862
863 if (qdict_get_bool(cpu, "current")) {
864 active = '*';
865 }
866
867 monitor_printf(mon, "%c CPU #%d: ", active, (int)qdict_get_int(cpu, "CPU"));
868
869 #if defined(TARGET_I386)
870 monitor_printf(mon, "pc=0x" TARGET_FMT_lx,
871 (target_ulong) qdict_get_int(cpu, "pc"));
872 #elif defined(TARGET_PPC)
873 monitor_printf(mon, "nip=0x" TARGET_FMT_lx,
874 (target_long) qdict_get_int(cpu, "nip"));
875 #elif defined(TARGET_SPARC)
876 monitor_printf(mon, "pc=0x " TARGET_FMT_lx,
877 (target_long) qdict_get_int(cpu, "pc"));
878 monitor_printf(mon, "npc=0x" TARGET_FMT_lx,
879 (target_long) qdict_get_int(cpu, "npc"));
880 #elif defined(TARGET_MIPS)
881 monitor_printf(mon, "PC=0x" TARGET_FMT_lx,
882 (target_long) qdict_get_int(cpu, "PC"));
883 #endif
884
885 if (qdict_get_bool(cpu, "halted")) {
886 monitor_printf(mon, " (halted)");
887 }
888
889 monitor_printf(mon, "\n");
890 }
891
892 static void monitor_print_cpus(Monitor *mon, const QObject *data)
893 {
894 QList *cpu_list;
895
896 assert(qobject_type(data) == QTYPE_QLIST);
897 cpu_list = qobject_to_qlist(data);
898 qlist_iter(cpu_list, print_cpu_iter, mon);
899 }
900
901 static void do_info_cpus(Monitor *mon, QObject **ret_data)
902 {
903 CPUState *env;
904 QList *cpu_list;
905
906 cpu_list = qlist_new();
907
908 /* just to set the default cpu if not already done */
909 mon_get_cpu();
910
911 for(env = first_cpu; env != NULL; env = env->next_cpu) {
912 QDict *cpu;
913 QObject *obj;
914
915 cpu_synchronize_state(env);
916
917 obj = qobject_from_jsonf("{ 'CPU': %d, 'current': %i, 'halted': %i }",
918 env->cpu_index, env == mon->mon_cpu,
919 env->halted);
920
921 cpu = qobject_to_qdict(obj);
922
923 #if defined(TARGET_I386)
924 qdict_put(cpu, "pc", qint_from_int(env->eip + env->segs[R_CS].base));
925 #elif defined(TARGET_PPC)
926 qdict_put(cpu, "nip", qint_from_int(env->nip));
927 #elif defined(TARGET_SPARC)
928 qdict_put(cpu, "pc", qint_from_int(env->pc));
929 qdict_put(cpu, "npc", qint_from_int(env->npc));
930 #elif defined(TARGET_MIPS)
931 qdict_put(cpu, "PC", qint_from_int(env->active_tc.PC));
932 #endif
933
934 qlist_append(cpu_list, cpu);
935 }
936
937 *ret_data = QOBJECT(cpu_list);
938 }
939
940 static int do_cpu_set(Monitor *mon, const QDict *qdict, QObject **ret_data)
941 {
942 int index = qdict_get_int(qdict, "index");
943 if (mon_set_cpu(index) < 0) {
944 qerror_report(QERR_INVALID_PARAMETER_VALUE, "index",
945 "a CPU number");
946 return -1;
947 }
948 return 0;
949 }
950
951 static void do_info_jit(Monitor *mon)
952 {
953 dump_exec_info((FILE *)mon, monitor_fprintf);
954 }
955
956 static void do_info_history(Monitor *mon)
957 {
958 int i;
959 const char *str;
960
961 if (!mon->rs)
962 return;
963 i = 0;
964 for(;;) {
965 str = readline_get_history(mon->rs, i);
966 if (!str)
967 break;
968 monitor_printf(mon, "%d: '%s'\n", i, str);
969 i++;
970 }
971 }
972
973 #if defined(TARGET_PPC)
974 /* XXX: not implemented in other targets */
975 static void do_info_cpu_stats(Monitor *mon)
976 {
977 CPUState *env;
978
979 env = mon_get_cpu();
980 cpu_dump_statistics(env, (FILE *)mon, &monitor_fprintf, 0);
981 }
982 #endif
983
984 #if defined(CONFIG_SIMPLE_TRACE)
985 static void do_info_trace(Monitor *mon)
986 {
987 st_print_trace((FILE *)mon, &monitor_fprintf);
988 }
989
990 static void do_info_trace_events(Monitor *mon)
991 {
992 st_print_trace_events((FILE *)mon, &monitor_fprintf);
993 }
994 #endif
995
996 /**
997 * do_quit(): Quit QEMU execution
998 */
999 static int do_quit(Monitor *mon, const QDict *qdict, QObject **ret_data)
1000 {
1001 monitor_suspend(mon);
1002 no_shutdown = 0;
1003 qemu_system_shutdown_request();
1004
1005 return 0;
1006 }
1007
1008 static int change_vnc_password(const char *password)
1009 {
1010 if (vnc_display_password(NULL, password) < 0) {
1011 qerror_report(QERR_SET_PASSWD_FAILED);
1012 return -1;
1013 }
1014
1015 return 0;
1016 }
1017
1018 static void change_vnc_password_cb(Monitor *mon, const char *password,
1019 void *opaque)
1020 {
1021 change_vnc_password(password);
1022 monitor_read_command(mon, 1);
1023 }
1024
1025 static int do_change_vnc(Monitor *mon, const char *target, const char *arg)
1026 {
1027 if (strcmp(target, "passwd") == 0 ||
1028 strcmp(target, "password") == 0) {
1029 if (arg) {
1030 char password[9];
1031 strncpy(password, arg, sizeof(password));
1032 password[sizeof(password) - 1] = '\0';
1033 return change_vnc_password(password);
1034 } else {
1035 return monitor_read_password(mon, change_vnc_password_cb, NULL);
1036 }
1037 } else {
1038 if (vnc_display_open(NULL, target) < 0) {
1039 qerror_report(QERR_VNC_SERVER_FAILED, target);
1040 return -1;
1041 }
1042 }
1043
1044 return 0;
1045 }
1046
1047 /**
1048 * do_change(): Change a removable medium, or VNC configuration
1049 */
1050 static int do_change(Monitor *mon, const QDict *qdict, QObject **ret_data)
1051 {
1052 const char *device = qdict_get_str(qdict, "device");
1053 const char *target = qdict_get_str(qdict, "target");
1054 const char *arg = qdict_get_try_str(qdict, "arg");
1055 int ret;
1056
1057 if (strcmp(device, "vnc") == 0) {
1058 ret = do_change_vnc(mon, target, arg);
1059 } else {
1060 ret = do_change_block(mon, device, target, arg);
1061 }
1062
1063 return ret;
1064 }
1065
1066 static int do_screen_dump(Monitor *mon, const QDict *qdict, QObject **ret_data)
1067 {
1068 vga_hw_screen_dump(qdict_get_str(qdict, "filename"));
1069 return 0;
1070 }
1071
1072 static void do_logfile(Monitor *mon, const QDict *qdict)
1073 {
1074 cpu_set_log_filename(qdict_get_str(qdict, "filename"));
1075 }
1076
1077 static void do_log(Monitor *mon, const QDict *qdict)
1078 {
1079 int mask;
1080 const char *items = qdict_get_str(qdict, "items");
1081
1082 if (!strcmp(items, "none")) {
1083 mask = 0;
1084 } else {
1085 mask = cpu_str_to_log_mask(items);
1086 if (!mask) {
1087 help_cmd(mon, "log");
1088 return;
1089 }
1090 }
1091 cpu_set_log(mask);
1092 }
1093
1094 static void do_singlestep(Monitor *mon, const QDict *qdict)
1095 {
1096 const char *option = qdict_get_try_str(qdict, "option");
1097 if (!option || !strcmp(option, "on")) {
1098 singlestep = 1;
1099 } else if (!strcmp(option, "off")) {
1100 singlestep = 0;
1101 } else {
1102 monitor_printf(mon, "unexpected option %s\n", option);
1103 }
1104 }
1105
1106 /**
1107 * do_stop(): Stop VM execution
1108 */
1109 static int do_stop(Monitor *mon, const QDict *qdict, QObject **ret_data)
1110 {
1111 vm_stop(EXCP_INTERRUPT);
1112 return 0;
1113 }
1114
1115 static void encrypted_bdrv_it(void *opaque, BlockDriverState *bs);
1116
1117 struct bdrv_iterate_context {
1118 Monitor *mon;
1119 int err;
1120 };
1121
1122 /**
1123 * do_cont(): Resume emulation.
1124 */
1125 static int do_cont(Monitor *mon, const QDict *qdict, QObject **ret_data)
1126 {
1127 struct bdrv_iterate_context context = { mon, 0 };
1128
1129 if (incoming_expected) {
1130 qerror_report(QERR_MIGRATION_EXPECTED);
1131 return -1;
1132 }
1133 bdrv_iterate(encrypted_bdrv_it, &context);
1134 /* only resume the vm if all keys are set and valid */
1135 if (!context.err) {
1136 vm_start();
1137 return 0;
1138 } else {
1139 return -1;
1140 }
1141 }
1142
1143 static void bdrv_key_cb(void *opaque, int err)
1144 {
1145 Monitor *mon = opaque;
1146
1147 /* another key was set successfully, retry to continue */
1148 if (!err)
1149 do_cont(mon, NULL, NULL);
1150 }
1151
1152 static void encrypted_bdrv_it(void *opaque, BlockDriverState *bs)
1153 {
1154 struct bdrv_iterate_context *context = opaque;
1155
1156 if (!context->err && bdrv_key_required(bs)) {
1157 context->err = -EBUSY;
1158 monitor_read_bdrv_key_start(context->mon, bs, bdrv_key_cb,
1159 context->mon);
1160 }
1161 }
1162
1163 static void do_gdbserver(Monitor *mon, const QDict *qdict)
1164 {
1165 const char *device = qdict_get_try_str(qdict, "device");
1166 if (!device)
1167 device = "tcp::" DEFAULT_GDBSTUB_PORT;
1168 if (gdbserver_start(device) < 0) {
1169 monitor_printf(mon, "Could not open gdbserver on device '%s'\n",
1170 device);
1171 } else if (strcmp(device, "none") == 0) {
1172 monitor_printf(mon, "Disabled gdbserver\n");
1173 } else {
1174 monitor_printf(mon, "Waiting for gdb connection on device '%s'\n",
1175 device);
1176 }
1177 }
1178
1179 static void do_watchdog_action(Monitor *mon, const QDict *qdict)
1180 {
1181 const char *action = qdict_get_str(qdict, "action");
1182 if (select_watchdog_action(action) == -1) {
1183 monitor_printf(mon, "Unknown watchdog action '%s'\n", action);
1184 }
1185 }
1186
1187 static void monitor_printc(Monitor *mon, int c)
1188 {
1189 monitor_printf(mon, "'");
1190 switch(c) {
1191 case '\'':
1192 monitor_printf(mon, "\\'");
1193 break;
1194 case '\\':
1195 monitor_printf(mon, "\\\\");
1196 break;
1197 case '\n':
1198 monitor_printf(mon, "\\n");
1199 break;
1200 case '\r':
1201 monitor_printf(mon, "\\r");
1202 break;
1203 default:
1204 if (c >= 32 && c <= 126) {
1205 monitor_printf(mon, "%c", c);
1206 } else {
1207 monitor_printf(mon, "\\x%02x", c);
1208 }
1209 break;
1210 }
1211 monitor_printf(mon, "'");
1212 }
1213
1214 static void memory_dump(Monitor *mon, int count, int format, int wsize,
1215 target_phys_addr_t addr, int is_physical)
1216 {
1217 CPUState *env;
1218 int l, line_size, i, max_digits, len;
1219 uint8_t buf[16];
1220 uint64_t v;
1221
1222 if (format == 'i') {
1223 int flags;
1224 flags = 0;
1225 env = mon_get_cpu();
1226 #ifdef TARGET_I386
1227 if (wsize == 2) {
1228 flags = 1;
1229 } else if (wsize == 4) {
1230 flags = 0;
1231 } else {
1232 /* as default we use the current CS size */
1233 flags = 0;
1234 if (env) {
1235 #ifdef TARGET_X86_64
1236 if ((env->efer & MSR_EFER_LMA) &&
1237 (env->segs[R_CS].flags & DESC_L_MASK))
1238 flags = 2;
1239 else
1240 #endif
1241 if (!(env->segs[R_CS].flags & DESC_B_MASK))
1242 flags = 1;
1243 }
1244 }
1245 #endif
1246 monitor_disas(mon, env, addr, count, is_physical, flags);
1247 return;
1248 }
1249
1250 len = wsize * count;
1251 if (wsize == 1)
1252 line_size = 8;
1253 else
1254 line_size = 16;
1255 max_digits = 0;
1256
1257 switch(format) {
1258 case 'o':
1259 max_digits = (wsize * 8 + 2) / 3;
1260 break;
1261 default:
1262 case 'x':
1263 max_digits = (wsize * 8) / 4;
1264 break;
1265 case 'u':
1266 case 'd':
1267 max_digits = (wsize * 8 * 10 + 32) / 33;
1268 break;
1269 case 'c':
1270 wsize = 1;
1271 break;
1272 }
1273
1274 while (len > 0) {
1275 if (is_physical)
1276 monitor_printf(mon, TARGET_FMT_plx ":", addr);
1277 else
1278 monitor_printf(mon, TARGET_FMT_lx ":", (target_ulong)addr);
1279 l = len;
1280 if (l > line_size)
1281 l = line_size;
1282 if (is_physical) {
1283 cpu_physical_memory_rw(addr, buf, l, 0);
1284 } else {
1285 env = mon_get_cpu();
1286 if (cpu_memory_rw_debug(env, addr, buf, l, 0) < 0) {
1287 monitor_printf(mon, " Cannot access memory\n");
1288 break;
1289 }
1290 }
1291 i = 0;
1292 while (i < l) {
1293 switch(wsize) {
1294 default:
1295 case 1:
1296 v = ldub_raw(buf + i);
1297 break;
1298 case 2:
1299 v = lduw_raw(buf + i);
1300 break;
1301 case 4:
1302 v = (uint32_t)ldl_raw(buf + i);
1303 break;
1304 case 8:
1305 v = ldq_raw(buf + i);
1306 break;
1307 }
1308 monitor_printf(mon, " ");
1309 switch(format) {
1310 case 'o':
1311 monitor_printf(mon, "%#*" PRIo64, max_digits, v);
1312 break;
1313 case 'x':
1314 monitor_printf(mon, "0x%0*" PRIx64, max_digits, v);
1315 break;
1316 case 'u':
1317 monitor_printf(mon, "%*" PRIu64, max_digits, v);
1318 break;
1319 case 'd':
1320 monitor_printf(mon, "%*" PRId64, max_digits, v);
1321 break;
1322 case 'c':
1323 monitor_printc(mon, v);
1324 break;
1325 }
1326 i += wsize;
1327 }
1328 monitor_printf(mon, "\n");
1329 addr += l;
1330 len -= l;
1331 }
1332 }
1333
1334 static void do_memory_dump(Monitor *mon, const QDict *qdict)
1335 {
1336 int count = qdict_get_int(qdict, "count");
1337 int format = qdict_get_int(qdict, "format");
1338 int size = qdict_get_int(qdict, "size");
1339 target_long addr = qdict_get_int(qdict, "addr");
1340
1341 memory_dump(mon, count, format, size, addr, 0);
1342 }
1343
1344 static void do_physical_memory_dump(Monitor *mon, const QDict *qdict)
1345 {
1346 int count = qdict_get_int(qdict, "count");
1347 int format = qdict_get_int(qdict, "format");
1348 int size = qdict_get_int(qdict, "size");
1349 target_phys_addr_t addr = qdict_get_int(qdict, "addr");
1350
1351 memory_dump(mon, count, format, size, addr, 1);
1352 }
1353
1354 static void do_print(Monitor *mon, const QDict *qdict)
1355 {
1356 int format = qdict_get_int(qdict, "format");
1357 target_phys_addr_t val = qdict_get_int(qdict, "val");
1358
1359 #if TARGET_PHYS_ADDR_BITS == 32
1360 switch(format) {
1361 case 'o':
1362 monitor_printf(mon, "%#o", val);
1363 break;
1364 case 'x':
1365 monitor_printf(mon, "%#x", val);
1366 break;
1367 case 'u':
1368 monitor_printf(mon, "%u", val);
1369 break;
1370 default:
1371 case 'd':
1372 monitor_printf(mon, "%d", val);
1373 break;
1374 case 'c':
1375 monitor_printc(mon, val);
1376 break;
1377 }
1378 #else
1379 switch(format) {
1380 case 'o':
1381 monitor_printf(mon, "%#" PRIo64, val);
1382 break;
1383 case 'x':
1384 monitor_printf(mon, "%#" PRIx64, val);
1385 break;
1386 case 'u':
1387 monitor_printf(mon, "%" PRIu64, val);
1388 break;
1389 default:
1390 case 'd':
1391 monitor_printf(mon, "%" PRId64, val);
1392 break;
1393 case 'c':
1394 monitor_printc(mon, val);
1395 break;
1396 }
1397 #endif
1398 monitor_printf(mon, "\n");
1399 }
1400
1401 static int do_memory_save(Monitor *mon, const QDict *qdict, QObject **ret_data)
1402 {
1403 FILE *f;
1404 uint32_t size = qdict_get_int(qdict, "size");
1405 const char *filename = qdict_get_str(qdict, "filename");
1406 target_long addr = qdict_get_int(qdict, "val");
1407 uint32_t l;
1408 CPUState *env;
1409 uint8_t buf[1024];
1410 int ret = -1;
1411
1412 env = mon_get_cpu();
1413
1414 f = fopen(filename, "wb");
1415 if (!f) {
1416 qerror_report(QERR_OPEN_FILE_FAILED, filename);
1417 return -1;
1418 }
1419 while (size != 0) {
1420 l = sizeof(buf);
1421 if (l > size)
1422 l = size;
1423 cpu_memory_rw_debug(env, addr, buf, l, 0);
1424 if (fwrite(buf, 1, l, f) != l) {
1425 monitor_printf(mon, "fwrite() error in do_memory_save\n");
1426 goto exit;
1427 }
1428 addr += l;
1429 size -= l;
1430 }
1431
1432 ret = 0;
1433
1434 exit:
1435 fclose(f);
1436 return ret;
1437 }
1438
1439 static int do_physical_memory_save(Monitor *mon, const QDict *qdict,
1440 QObject **ret_data)
1441 {
1442 FILE *f;
1443 uint32_t l;
1444 uint8_t buf[1024];
1445 uint32_t size = qdict_get_int(qdict, "size");
1446 const char *filename = qdict_get_str(qdict, "filename");
1447 target_phys_addr_t addr = qdict_get_int(qdict, "val");
1448 int ret = -1;
1449
1450 f = fopen(filename, "wb");
1451 if (!f) {
1452 qerror_report(QERR_OPEN_FILE_FAILED, filename);
1453 return -1;
1454 }
1455 while (size != 0) {
1456 l = sizeof(buf);
1457 if (l > size)
1458 l = size;
1459 cpu_physical_memory_rw(addr, buf, l, 0);
1460 if (fwrite(buf, 1, l, f) != l) {
1461 monitor_printf(mon, "fwrite() error in do_physical_memory_save\n");
1462 goto exit;
1463 }
1464 fflush(f);
1465 addr += l;
1466 size -= l;
1467 }
1468
1469 ret = 0;
1470
1471 exit:
1472 fclose(f);
1473 return ret;
1474 }
1475
1476 static void do_sum(Monitor *mon, const QDict *qdict)
1477 {
1478 uint32_t addr;
1479 uint8_t buf[1];
1480 uint16_t sum;
1481 uint32_t start = qdict_get_int(qdict, "start");
1482 uint32_t size = qdict_get_int(qdict, "size");
1483
1484 sum = 0;
1485 for(addr = start; addr < (start + size); addr++) {
1486 cpu_physical_memory_rw(addr, buf, 1, 0);
1487 /* BSD sum algorithm ('sum' Unix command) */
1488 sum = (sum >> 1) | (sum << 15);
1489 sum += buf[0];
1490 }
1491 monitor_printf(mon, "%05d\n", sum);
1492 }
1493
1494 typedef struct {
1495 int keycode;
1496 const char *name;
1497 } KeyDef;
1498
1499 static const KeyDef key_defs[] = {
1500 { 0x2a, "shift" },
1501 { 0x36, "shift_r" },
1502
1503 { 0x38, "alt" },
1504 { 0xb8, "alt_r" },
1505 { 0x64, "altgr" },
1506 { 0xe4, "altgr_r" },
1507 { 0x1d, "ctrl" },
1508 { 0x9d, "ctrl_r" },
1509
1510 { 0xdd, "menu" },
1511
1512 { 0x01, "esc" },
1513
1514 { 0x02, "1" },
1515 { 0x03, "2" },
1516 { 0x04, "3" },
1517 { 0x05, "4" },
1518 { 0x06, "5" },
1519 { 0x07, "6" },
1520 { 0x08, "7" },
1521 { 0x09, "8" },
1522 { 0x0a, "9" },
1523 { 0x0b, "0" },
1524 { 0x0c, "minus" },
1525 { 0x0d, "equal" },
1526 { 0x0e, "backspace" },
1527
1528 { 0x0f, "tab" },
1529 { 0x10, "q" },
1530 { 0x11, "w" },
1531 { 0x12, "e" },
1532 { 0x13, "r" },
1533 { 0x14, "t" },
1534 { 0x15, "y" },
1535 { 0x16, "u" },
1536 { 0x17, "i" },
1537 { 0x18, "o" },
1538 { 0x19, "p" },
1539 { 0x1a, "bracket_left" },
1540 { 0x1b, "bracket_right" },
1541 { 0x1c, "ret" },
1542
1543 { 0x1e, "a" },
1544 { 0x1f, "s" },
1545 { 0x20, "d" },
1546 { 0x21, "f" },
1547 { 0x22, "g" },
1548 { 0x23, "h" },
1549 { 0x24, "j" },
1550 { 0x25, "k" },
1551 { 0x26, "l" },
1552 { 0x27, "semicolon" },
1553 { 0x28, "apostrophe" },
1554 { 0x29, "grave_accent" },
1555
1556 { 0x2b, "backslash" },
1557 { 0x2c, "z" },
1558 { 0x2d, "x" },
1559 { 0x2e, "c" },
1560 { 0x2f, "v" },
1561 { 0x30, "b" },
1562 { 0x31, "n" },
1563 { 0x32, "m" },
1564 { 0x33, "comma" },
1565 { 0x34, "dot" },
1566 { 0x35, "slash" },
1567
1568 { 0x37, "asterisk" },
1569
1570 { 0x39, "spc" },
1571 { 0x3a, "caps_lock" },
1572 { 0x3b, "f1" },
1573 { 0x3c, "f2" },
1574 { 0x3d, "f3" },
1575 { 0x3e, "f4" },
1576 { 0x3f, "f5" },
1577 { 0x40, "f6" },
1578 { 0x41, "f7" },
1579 { 0x42, "f8" },
1580 { 0x43, "f9" },
1581 { 0x44, "f10" },
1582 { 0x45, "num_lock" },
1583 { 0x46, "scroll_lock" },
1584
1585 { 0xb5, "kp_divide" },
1586 { 0x37, "kp_multiply" },
1587 { 0x4a, "kp_subtract" },
1588 { 0x4e, "kp_add" },
1589 { 0x9c, "kp_enter" },
1590 { 0x53, "kp_decimal" },
1591 { 0x54, "sysrq" },
1592
1593 { 0x52, "kp_0" },
1594 { 0x4f, "kp_1" },
1595 { 0x50, "kp_2" },
1596 { 0x51, "kp_3" },
1597 { 0x4b, "kp_4" },
1598 { 0x4c, "kp_5" },
1599 { 0x4d, "kp_6" },
1600 { 0x47, "kp_7" },
1601 { 0x48, "kp_8" },
1602 { 0x49, "kp_9" },
1603
1604 { 0x56, "<" },
1605
1606 { 0x57, "f11" },
1607 { 0x58, "f12" },
1608
1609 { 0xb7, "print" },
1610
1611 { 0xc7, "home" },
1612 { 0xc9, "pgup" },
1613 { 0xd1, "pgdn" },
1614 { 0xcf, "end" },
1615
1616 { 0xcb, "left" },
1617 { 0xc8, "up" },
1618 { 0xd0, "down" },
1619 { 0xcd, "right" },
1620
1621 { 0xd2, "insert" },
1622 { 0xd3, "delete" },
1623 #if defined(TARGET_SPARC) && !defined(TARGET_SPARC64)
1624 { 0xf0, "stop" },
1625 { 0xf1, "again" },
1626 { 0xf2, "props" },
1627 { 0xf3, "undo" },
1628 { 0xf4, "front" },
1629 { 0xf5, "copy" },
1630 { 0xf6, "open" },
1631 { 0xf7, "paste" },
1632 { 0xf8, "find" },
1633 { 0xf9, "cut" },
1634 { 0xfa, "lf" },
1635 { 0xfb, "help" },
1636 { 0xfc, "meta_l" },
1637 { 0xfd, "meta_r" },
1638 { 0xfe, "compose" },
1639 #endif
1640 { 0, NULL },
1641 };
1642
1643 static int get_keycode(const char *key)
1644 {
1645 const KeyDef *p;
1646 char *endp;
1647 int ret;
1648
1649 for(p = key_defs; p->name != NULL; p++) {
1650 if (!strcmp(key, p->name))
1651 return p->keycode;
1652 }
1653 if (strstart(key, "0x", NULL)) {
1654 ret = strtoul(key, &endp, 0);
1655 if (*endp == '\0' && ret >= 0x01 && ret <= 0xff)
1656 return ret;
1657 }
1658 return -1;
1659 }
1660
1661 #define MAX_KEYCODES 16
1662 static uint8_t keycodes[MAX_KEYCODES];
1663 static int nb_pending_keycodes;
1664 static QEMUTimer *key_timer;
1665
1666 static void release_keys(void *opaque)
1667 {
1668 int keycode;
1669
1670 while (nb_pending_keycodes > 0) {
1671 nb_pending_keycodes--;
1672 keycode = keycodes[nb_pending_keycodes];
1673 if (keycode & 0x80)
1674 kbd_put_keycode(0xe0);
1675 kbd_put_keycode(keycode | 0x80);
1676 }
1677 }
1678
1679 static void do_sendkey(Monitor *mon, const QDict *qdict)
1680 {
1681 char keyname_buf[16];
1682 char *separator;
1683 int keyname_len, keycode, i;
1684 const char *string = qdict_get_str(qdict, "string");
1685 int has_hold_time = qdict_haskey(qdict, "hold_time");
1686 int hold_time = qdict_get_try_int(qdict, "hold_time", -1);
1687
1688 if (nb_pending_keycodes > 0) {
1689 qemu_del_timer(key_timer);
1690 release_keys(NULL);
1691 }
1692 if (!has_hold_time)
1693 hold_time = 100;
1694 i = 0;
1695 while (1) {
1696 separator = strchr(string, '-');
1697 keyname_len = separator ? separator - string : strlen(string);
1698 if (keyname_len > 0) {
1699 pstrcpy(keyname_buf, sizeof(keyname_buf), string);
1700 if (keyname_len > sizeof(keyname_buf) - 1) {
1701 monitor_printf(mon, "invalid key: '%s...'\n", keyname_buf);
1702 return;
1703 }
1704 if (i == MAX_KEYCODES) {
1705 monitor_printf(mon, "too many keys\n");
1706 return;
1707 }
1708 keyname_buf[keyname_len] = 0;
1709 keycode = get_keycode(keyname_buf);
1710 if (keycode < 0) {
1711 monitor_printf(mon, "unknown key: '%s'\n", keyname_buf);
1712 return;
1713 }
1714 keycodes[i++] = keycode;
1715 }
1716 if (!separator)
1717 break;
1718 string = separator + 1;
1719 }
1720 nb_pending_keycodes = i;
1721 /* key down events */
1722 for (i = 0; i < nb_pending_keycodes; i++) {
1723 keycode = keycodes[i];
1724 if (keycode & 0x80)
1725 kbd_put_keycode(0xe0);
1726 kbd_put_keycode(keycode & 0x7f);
1727 }
1728 /* delayed key up events */
1729 qemu_mod_timer(key_timer, qemu_get_clock(vm_clock) +
1730 muldiv64(get_ticks_per_sec(), hold_time, 1000));
1731 }
1732
1733 static int mouse_button_state;
1734
1735 static void do_mouse_move(Monitor *mon, const QDict *qdict)
1736 {
1737 int dx, dy, dz;
1738 const char *dx_str = qdict_get_str(qdict, "dx_str");
1739 const char *dy_str = qdict_get_str(qdict, "dy_str");
1740 const char *dz_str = qdict_get_try_str(qdict, "dz_str");
1741 dx = strtol(dx_str, NULL, 0);
1742 dy = strtol(dy_str, NULL, 0);
1743 dz = 0;
1744 if (dz_str)
1745 dz = strtol(dz_str, NULL, 0);
1746 kbd_mouse_event(dx, dy, dz, mouse_button_state);
1747 }
1748
1749 static void do_mouse_button(Monitor *mon, const QDict *qdict)
1750 {
1751 int button_state = qdict_get_int(qdict, "button_state");
1752 mouse_button_state = button_state;
1753 kbd_mouse_event(0, 0, 0, mouse_button_state);
1754 }
1755
1756 static void do_ioport_read(Monitor *mon, const QDict *qdict)
1757 {
1758 int size = qdict_get_int(qdict, "size");
1759 int addr = qdict_get_int(qdict, "addr");
1760 int has_index = qdict_haskey(qdict, "index");
1761 uint32_t val;
1762 int suffix;
1763
1764 if (has_index) {
1765 int index = qdict_get_int(qdict, "index");
1766 cpu_outb(addr & IOPORTS_MASK, index & 0xff);
1767 addr++;
1768 }
1769 addr &= 0xffff;
1770
1771 switch(size) {
1772 default:
1773 case 1:
1774 val = cpu_inb(addr);
1775 suffix = 'b';
1776 break;
1777 case 2:
1778 val = cpu_inw(addr);
1779 suffix = 'w';
1780 break;
1781 case 4:
1782 val = cpu_inl(addr);
1783 suffix = 'l';
1784 break;
1785 }
1786 monitor_printf(mon, "port%c[0x%04x] = %#0*x\n",
1787 suffix, addr, size * 2, val);
1788 }
1789
1790 static void do_ioport_write(Monitor *mon, const QDict *qdict)
1791 {
1792 int size = qdict_get_int(qdict, "size");
1793 int addr = qdict_get_int(qdict, "addr");
1794 int val = qdict_get_int(qdict, "val");
1795
1796 addr &= IOPORTS_MASK;
1797
1798 switch (size) {
1799 default:
1800 case 1:
1801 cpu_outb(addr, val);
1802 break;
1803 case 2:
1804 cpu_outw(addr, val);
1805 break;
1806 case 4:
1807 cpu_outl(addr, val);
1808 break;
1809 }
1810 }
1811
1812 static void do_boot_set(Monitor *mon, const QDict *qdict)
1813 {
1814 int res;
1815 const char *bootdevice = qdict_get_str(qdict, "bootdevice");
1816
1817 res = qemu_boot_set(bootdevice);
1818 if (res == 0) {
1819 monitor_printf(mon, "boot device list now set to %s\n", bootdevice);
1820 } else if (res > 0) {
1821 monitor_printf(mon, "setting boot device list failed\n");
1822 } else {
1823 monitor_printf(mon, "no function defined to set boot device list for "
1824 "this architecture\n");
1825 }
1826 }
1827
1828 /**
1829 * do_system_reset(): Issue a machine reset
1830 */
1831 static int do_system_reset(Monitor *mon, const QDict *qdict,
1832 QObject **ret_data)
1833 {
1834 qemu_system_reset_request();
1835 return 0;
1836 }
1837
1838 /**
1839 * do_system_powerdown(): Issue a machine powerdown
1840 */
1841 static int do_system_powerdown(Monitor *mon, const QDict *qdict,
1842 QObject **ret_data)
1843 {
1844 qemu_system_powerdown_request();
1845 return 0;
1846 }
1847
1848 #if defined(TARGET_I386)
1849 static void print_pte(Monitor *mon, target_phys_addr_t addr,
1850 target_phys_addr_t pte,
1851 target_phys_addr_t mask)
1852 {
1853 #ifdef TARGET_X86_64
1854 if (addr & (1ULL << 47)) {
1855 addr |= -1LL << 48;
1856 }
1857 #endif
1858 monitor_printf(mon, TARGET_FMT_plx ": " TARGET_FMT_plx
1859 " %c%c%c%c%c%c%c%c%c\n",
1860 addr,
1861 pte & mask,
1862 pte & PG_NX_MASK ? 'X' : '-',
1863 pte & PG_GLOBAL_MASK ? 'G' : '-',
1864 pte & PG_PSE_MASK ? 'P' : '-',
1865 pte & PG_DIRTY_MASK ? 'D' : '-',
1866 pte & PG_ACCESSED_MASK ? 'A' : '-',
1867 pte & PG_PCD_MASK ? 'C' : '-',
1868 pte & PG_PWT_MASK ? 'T' : '-',
1869 pte & PG_USER_MASK ? 'U' : '-',
1870 pte & PG_RW_MASK ? 'W' : '-');
1871 }
1872
1873 static void tlb_info_32(Monitor *mon, CPUState *env)
1874 {
1875 int l1, l2;
1876 uint32_t pgd, pde, pte;
1877
1878 pgd = env->cr[3] & ~0xfff;
1879 for(l1 = 0; l1 < 1024; l1++) {
1880 cpu_physical_memory_read(pgd + l1 * 4, (uint8_t *)&pde, 4);
1881 pde = le32_to_cpu(pde);
1882 if (pde & PG_PRESENT_MASK) {
1883 if ((pde & PG_PSE_MASK) && (env->cr[4] & CR4_PSE_MASK)) {
1884 /* 4M pages */
1885 print_pte(mon, (l1 << 22), pde, ~((1 << 21) - 1));
1886 } else {
1887 for(l2 = 0; l2 < 1024; l2++) {
1888 cpu_physical_memory_read((pde & ~0xfff) + l2 * 4,
1889 (uint8_t *)&pte, 4);
1890 pte = le32_to_cpu(pte);
1891 if (pte & PG_PRESENT_MASK) {
1892 print_pte(mon, (l1 << 22) + (l2 << 12),
1893 pte & ~PG_PSE_MASK,
1894 ~0xfff);
1895 }
1896 }
1897 }
1898 }
1899 }
1900 }
1901
1902 static void tlb_info_pae32(Monitor *mon, CPUState *env)
1903 {
1904 int l1, l2, l3;
1905 uint64_t pdpe, pde, pte;
1906 uint64_t pdp_addr, pd_addr, pt_addr;
1907
1908 pdp_addr = env->cr[3] & ~0x1f;
1909 for (l1 = 0; l1 < 4; l1++) {
1910 cpu_physical_memory_read(pdp_addr + l1 * 8, (uint8_t *)&pdpe, 8);
1911 pdpe = le64_to_cpu(pdpe);
1912 if (pdpe & PG_PRESENT_MASK) {
1913 pd_addr = pdpe & 0x3fffffffff000ULL;
1914 for (l2 = 0; l2 < 512; l2++) {
1915 cpu_physical_memory_read(pd_addr + l2 * 8,
1916 (uint8_t *)&pde, 8);
1917 pde = le64_to_cpu(pde);
1918 if (pde & PG_PRESENT_MASK) {
1919 if (pde & PG_PSE_MASK) {
1920 /* 2M pages with PAE, CR4.PSE is ignored */
1921 print_pte(mon, (l1 << 30 ) + (l2 << 21), pde,
1922 ~((target_phys_addr_t)(1 << 20) - 1));
1923 } else {
1924 pt_addr = pde & 0x3fffffffff000ULL;
1925 for (l3 = 0; l3 < 512; l3++) {
1926 cpu_physical_memory_read(pt_addr + l3 * 8,
1927 (uint8_t *)&pte, 8);
1928 pte = le64_to_cpu(pte);
1929 if (pte & PG_PRESENT_MASK) {
1930 print_pte(mon, (l1 << 30 ) + (l2 << 21)
1931 + (l3 << 12),
1932 pte & ~PG_PSE_MASK,
1933 ~(target_phys_addr_t)0xfff);
1934 }
1935 }
1936 }
1937 }
1938 }
1939 }
1940 }
1941 }
1942
1943 #ifdef TARGET_X86_64
1944 static void tlb_info_64(Monitor *mon, CPUState *env)
1945 {
1946 uint64_t l1, l2, l3, l4;
1947 uint64_t pml4e, pdpe, pde, pte;
1948 uint64_t pml4_addr, pdp_addr, pd_addr, pt_addr;
1949
1950 pml4_addr = env->cr[3] & 0x3fffffffff000ULL;
1951 for (l1 = 0; l1 < 512; l1++) {
1952 cpu_physical_memory_read(pml4_addr + l1 * 8, (uint8_t *)&pml4e, 8);
1953 pml4e = le64_to_cpu(pml4e);
1954 if (pml4e & PG_PRESENT_MASK) {
1955 pdp_addr = pml4e & 0x3fffffffff000ULL;
1956 for (l2 = 0; l2 < 512; l2++) {
1957 cpu_physical_memory_read(pdp_addr + l2 * 8, (uint8_t *)&pdpe,
1958 8);
1959 pdpe = le64_to_cpu(pdpe);
1960 if (pdpe & PG_PRESENT_MASK) {
1961 if (pdpe & PG_PSE_MASK) {
1962 /* 1G pages, CR4.PSE is ignored */
1963 print_pte(mon, (l1 << 39) + (l2 << 30), pdpe,
1964 0x3ffffc0000000ULL);
1965 } else {
1966 pd_addr = pdpe & 0x3fffffffff000ULL;
1967 for (l3 = 0; l3 < 512; l3++) {
1968 cpu_physical_memory_read(pd_addr + l3 * 8,
1969 (uint8_t *)&pde, 8);
1970 pde = le64_to_cpu(pde);
1971 if (pde & PG_PRESENT_MASK) {
1972 if (pde & PG_PSE_MASK) {
1973 /* 2M pages, CR4.PSE is ignored */
1974 print_pte(mon, (l1 << 39) + (l2 << 30) +
1975 (l3 << 21), pde,
1976 0x3ffffffe00000ULL);
1977 } else {
1978 pt_addr = pde & 0x3fffffffff000ULL;
1979 for (l4 = 0; l4 < 512; l4++) {
1980 cpu_physical_memory_read(pt_addr
1981 + l4 * 8,
1982 (uint8_t *)&pte,
1983 8);
1984 pte = le64_to_cpu(pte);
1985 if (pte & PG_PRESENT_MASK) {
1986 print_pte(mon, (l1 << 39) +
1987 (l2 << 30) +
1988 (l3 << 21) + (l4 << 12),
1989 pte & ~PG_PSE_MASK,
1990 0x3fffffffff000ULL);
1991 }
1992 }
1993 }
1994 }
1995 }
1996 }
1997 }
1998 }
1999 }
2000 }
2001 }
2002 #endif
2003
2004 static void tlb_info(Monitor *mon)
2005 {
2006 CPUState *env;
2007
2008 env = mon_get_cpu();
2009
2010 if (!(env->cr[0] & CR0_PG_MASK)) {
2011 monitor_printf(mon, "PG disabled\n");
2012 return;
2013 }
2014 if (env->cr[4] & CR4_PAE_MASK) {
2015 #ifdef TARGET_X86_64
2016 if (env->hflags & HF_LMA_MASK) {
2017 tlb_info_64(mon, env);
2018 } else
2019 #endif
2020 {
2021 tlb_info_pae32(mon, env);
2022 }
2023 } else {
2024 tlb_info_32(mon, env);
2025 }
2026 }
2027
2028 static void mem_print(Monitor *mon, target_phys_addr_t *pstart,
2029 int *plast_prot,
2030 target_phys_addr_t end, int prot)
2031 {
2032 int prot1;
2033 prot1 = *plast_prot;
2034 if (prot != prot1) {
2035 if (*pstart != -1) {
2036 monitor_printf(mon, TARGET_FMT_plx "-" TARGET_FMT_plx " "
2037 TARGET_FMT_plx " %c%c%c\n",
2038 *pstart, end, end - *pstart,
2039 prot1 & PG_USER_MASK ? 'u' : '-',
2040 'r',
2041 prot1 & PG_RW_MASK ? 'w' : '-');
2042 }
2043 if (prot != 0)
2044 *pstart = end;
2045 else
2046 *pstart = -1;
2047 *plast_prot = prot;
2048 }
2049 }
2050
2051 static void mem_info_32(Monitor *mon, CPUState *env)
2052 {
2053 int l1, l2, prot, last_prot;
2054 uint32_t pgd, pde, pte;
2055 target_phys_addr_t start, end;
2056
2057 pgd = env->cr[3] & ~0xfff;
2058 last_prot = 0;
2059 start = -1;
2060 for(l1 = 0; l1 < 1024; l1++) {
2061 cpu_physical_memory_read(pgd + l1 * 4, (uint8_t *)&pde, 4);
2062 pde = le32_to_cpu(pde);
2063 end = l1 << 22;
2064 if (pde & PG_PRESENT_MASK) {
2065 if ((pde & PG_PSE_MASK) && (env->cr[4] & CR4_PSE_MASK)) {
2066 prot = pde & (PG_USER_MASK | PG_RW_MASK | PG_PRESENT_MASK);
2067 mem_print(mon, &start, &last_prot, end, prot);
2068 } else {
2069 for(l2 = 0; l2 < 1024; l2++) {
2070 cpu_physical_memory_read((pde & ~0xfff) + l2 * 4,
2071 (uint8_t *)&pte, 4);
2072 pte = le32_to_cpu(pte);
2073 end = (l1 << 22) + (l2 << 12);
2074 if (pte & PG_PRESENT_MASK) {
2075 prot = pte & (PG_USER_MASK | PG_RW_MASK | PG_PRESENT_MASK);
2076 } else {
2077 prot = 0;
2078 }
2079 mem_print(mon, &start, &last_prot, end, prot);
2080 }
2081 }
2082 } else {
2083 prot = 0;
2084 mem_print(mon, &start, &last_prot, end, prot);
2085 }
2086 }
2087 }
2088
2089 static void mem_info_pae32(Monitor *mon, CPUState *env)
2090 {
2091 int l1, l2, l3, prot, last_prot;
2092 uint64_t pdpe, pde, pte;
2093 uint64_t pdp_addr, pd_addr, pt_addr;
2094 target_phys_addr_t start, end;
2095
2096 pdp_addr = env->cr[3] & ~0x1f;
2097 last_prot = 0;
2098 start = -1;
2099 for (l1 = 0; l1 < 4; l1++) {
2100 cpu_physical_memory_read(pdp_addr + l1 * 8, (uint8_t *)&pdpe, 8);
2101 pdpe = le64_to_cpu(pdpe);
2102 end = l1 << 30;
2103 if (pdpe & PG_PRESENT_MASK) {
2104 pd_addr = pdpe & 0x3fffffffff000ULL;
2105 for (l2 = 0; l2 < 512; l2++) {
2106 cpu_physical_memory_read(pd_addr + l2 * 8,
2107 (uint8_t *)&pde, 8);
2108 pde = le64_to_cpu(pde);
2109 end = (l1 << 30) + (l2 << 21);
2110 if (pde & PG_PRESENT_MASK) {
2111 if (pde & PG_PSE_MASK) {
2112 prot = pde & (PG_USER_MASK | PG_RW_MASK |
2113 PG_PRESENT_MASK);
2114 mem_print(mon, &start, &last_prot, end, prot);
2115 } else {
2116 pt_addr = pde & 0x3fffffffff000ULL;
2117 for (l3 = 0; l3 < 512; l3++) {
2118 cpu_physical_memory_read(pt_addr + l3 * 8,
2119 (uint8_t *)&pte, 8);
2120 pte = le64_to_cpu(pte);
2121 end = (l1 << 30) + (l2 << 21) + (l3 << 12);
2122 if (pte & PG_PRESENT_MASK) {
2123 prot = pte & (PG_USER_MASK | PG_RW_MASK |
2124 PG_PRESENT_MASK);
2125 } else {
2126 prot = 0;
2127 }
2128 mem_print(mon, &start, &last_prot, end, prot);
2129 }
2130 }
2131 } else {
2132 prot = 0;
2133 mem_print(mon, &start, &last_prot, end, prot);
2134 }
2135 }
2136 } else {
2137 prot = 0;
2138 mem_print(mon, &start, &last_prot, end, prot);
2139 }
2140 }
2141 }
2142
2143
2144 #ifdef TARGET_X86_64
2145 static void mem_info_64(Monitor *mon, CPUState *env)
2146 {
2147 int prot, last_prot;
2148 uint64_t l1, l2, l3, l4;
2149 uint64_t pml4e, pdpe, pde, pte;
2150 uint64_t pml4_addr, pdp_addr, pd_addr, pt_addr, start, end;
2151
2152 pml4_addr = env->cr[3] & 0x3fffffffff000ULL;
2153 last_prot = 0;
2154 start = -1;
2155 for (l1 = 0; l1 < 512; l1++) {
2156 cpu_physical_memory_read(pml4_addr + l1 * 8, (uint8_t *)&pml4e, 8);
2157 pml4e = le64_to_cpu(pml4e);
2158 end = l1 << 39;
2159 if (pml4e & PG_PRESENT_MASK) {
2160 pdp_addr = pml4e & 0x3fffffffff000ULL;
2161 for (l2 = 0; l2 < 512; l2++) {
2162 cpu_physical_memory_read(pdp_addr + l2 * 8, (uint8_t *)&pdpe,
2163 8);
2164 pdpe = le64_to_cpu(pdpe);
2165 end = (l1 << 39) + (l2 << 30);
2166 if (pdpe & PG_PRESENT_MASK) {
2167 if (pdpe & PG_PSE_MASK) {
2168 prot = pde & (PG_USER_MASK | PG_RW_MASK |
2169 PG_PRESENT_MASK);
2170 mem_print(mon, &start, &last_prot, end, prot);
2171 } else {
2172 pd_addr = pdpe & 0x3fffffffff000ULL;
2173 for (l3 = 0; l3 < 512; l3++) {
2174 cpu_physical_memory_read(pd_addr + l3 * 8,
2175 (uint8_t *)&pde, 8);
2176 pde = le64_to_cpu(pde);
2177 end = (l1 << 39) + (l2 << 30) + (l3 << 21);
2178 if (pde & PG_PRESENT_MASK) {
2179 if (pde & PG_PSE_MASK) {
2180 prot = pde & (PG_USER_MASK | PG_RW_MASK |
2181 PG_PRESENT_MASK);
2182 mem_print(mon, &start, &last_prot, end, prot);
2183 } else {
2184 pt_addr = pde & 0x3fffffffff000ULL;
2185 for (l4 = 0; l4 < 512; l4++) {
2186 cpu_physical_memory_read(pt_addr
2187 + l4 * 8,
2188 (uint8_t *)&pte,
2189 8);
2190 pte = le64_to_cpu(pte);
2191 end = (l1 << 39) + (l2 << 30) +
2192 (l3 << 21) + (l4 << 12);
2193 if (pte & PG_PRESENT_MASK) {
2194 prot = pte & (PG_USER_MASK | PG_RW_MASK |
2195 PG_PRESENT_MASK);
2196 } else {
2197 prot = 0;
2198 }
2199 mem_print(mon, &start, &last_prot, end, prot);
2200 }
2201 }
2202 } else {
2203 prot = 0;
2204 mem_print(mon, &start, &last_prot, end, prot);
2205 }
2206 }
2207 }
2208 } else {
2209 prot = 0;
2210 mem_print(mon, &start, &last_prot, end, prot);
2211 }
2212 }
2213 } else {
2214 prot = 0;
2215 mem_print(mon, &start, &last_prot, end, prot);
2216 }
2217 }
2218 }
2219 #endif
2220
2221 static void mem_info(Monitor *mon)
2222 {
2223 CPUState *env;
2224
2225 env = mon_get_cpu();
2226
2227 if (!(env->cr[0] & CR0_PG_MASK)) {
2228 monitor_printf(mon, "PG disabled\n");
2229 return;
2230 }
2231 if (env->cr[4] & CR4_PAE_MASK) {
2232 #ifdef TARGET_X86_64
2233 if (env->hflags & HF_LMA_MASK) {
2234 mem_info_64(mon, env);
2235 } else
2236 #endif
2237 {
2238 mem_info_pae32(mon, env);
2239 }
2240 } else {
2241 mem_info_32(mon, env);
2242 }
2243 }
2244 #endif
2245
2246 #if defined(TARGET_SH4)
2247
2248 static void print_tlb(Monitor *mon, int idx, tlb_t *tlb)
2249 {
2250 monitor_printf(mon, " tlb%i:\t"
2251 "asid=%hhu vpn=%x\tppn=%x\tsz=%hhu size=%u\t"
2252 "v=%hhu shared=%hhu cached=%hhu prot=%hhu "
2253 "dirty=%hhu writethrough=%hhu\n",
2254 idx,
2255 tlb->asid, tlb->vpn, tlb->ppn, tlb->sz, tlb->size,
2256 tlb->v, tlb->sh, tlb->c, tlb->pr,
2257 tlb->d, tlb->wt);
2258 }
2259
2260 static void tlb_info(Monitor *mon)
2261 {
2262 CPUState *env = mon_get_cpu();
2263 int i;
2264
2265 monitor_printf (mon, "ITLB:\n");
2266 for (i = 0 ; i < ITLB_SIZE ; i++)
2267 print_tlb (mon, i, &env->itlb[i]);
2268 monitor_printf (mon, "UTLB:\n");
2269 for (i = 0 ; i < UTLB_SIZE ; i++)
2270 print_tlb (mon, i, &env->utlb[i]);
2271 }
2272
2273 #endif
2274
2275 #if defined(TARGET_SPARC)
2276 static void tlb_info(Monitor *mon)
2277 {
2278 CPUState *env1 = mon_get_cpu();
2279
2280 dump_mmu((FILE*)mon, (fprintf_function)monitor_printf, env1);
2281 }
2282 #endif
2283
2284 static void do_info_kvm_print(Monitor *mon, const QObject *data)
2285 {
2286 QDict *qdict;
2287
2288 qdict = qobject_to_qdict(data);
2289
2290 monitor_printf(mon, "kvm support: ");
2291 if (qdict_get_bool(qdict, "present")) {
2292 monitor_printf(mon, "%s\n", qdict_get_bool(qdict, "enabled") ?
2293 "enabled" : "disabled");
2294 } else {
2295 monitor_printf(mon, "not compiled\n");
2296 }
2297 }
2298
2299 static void do_info_kvm(Monitor *mon, QObject **ret_data)
2300 {
2301 #ifdef CONFIG_KVM
2302 *ret_data = qobject_from_jsonf("{ 'enabled': %i, 'present': true }",
2303 kvm_enabled());
2304 #else
2305 *ret_data = qobject_from_jsonf("{ 'enabled': false, 'present': false }");
2306 #endif
2307 }
2308
2309 static void do_info_numa(Monitor *mon)
2310 {
2311 int i;
2312 CPUState *env;
2313
2314 monitor_printf(mon, "%d nodes\n", nb_numa_nodes);
2315 for (i = 0; i < nb_numa_nodes; i++) {
2316 monitor_printf(mon, "node %d cpus:", i);
2317 for (env = first_cpu; env != NULL; env = env->next_cpu) {
2318 if (env->numa_node == i) {
2319 monitor_printf(mon, " %d", env->cpu_index);
2320 }
2321 }
2322 monitor_printf(mon, "\n");
2323 monitor_printf(mon, "node %d size: %" PRId64 " MB\n", i,
2324 node_mem[i] >> 20);
2325 }
2326 }
2327
2328 #ifdef CONFIG_PROFILER
2329
2330 int64_t qemu_time;
2331 int64_t dev_time;
2332
2333 static void do_info_profile(Monitor *mon)
2334 {
2335 int64_t total;
2336 total = qemu_time;
2337 if (total == 0)
2338 total = 1;
2339 monitor_printf(mon, "async time %" PRId64 " (%0.3f)\n",
2340 dev_time, dev_time / (double)get_ticks_per_sec());
2341 monitor_printf(mon, "qemu time %" PRId64 " (%0.3f)\n",
2342 qemu_time, qemu_time / (double)get_ticks_per_sec());
2343 qemu_time = 0;
2344 dev_time = 0;
2345 }
2346 #else
2347 static void do_info_profile(Monitor *mon)
2348 {
2349 monitor_printf(mon, "Internal profiler not compiled\n");
2350 }
2351 #endif
2352
2353 /* Capture support */
2354 static QLIST_HEAD (capture_list_head, CaptureState) capture_head;
2355
2356 static void do_info_capture(Monitor *mon)
2357 {
2358 int i;
2359 CaptureState *s;
2360
2361 for (s = capture_head.lh_first, i = 0; s; s = s->entries.le_next, ++i) {
2362 monitor_printf(mon, "[%d]: ", i);
2363 s->ops.info (s->opaque);
2364 }
2365 }
2366
2367 #ifdef HAS_AUDIO
2368 static void do_stop_capture(Monitor *mon, const QDict *qdict)
2369 {
2370 int i;
2371 int n = qdict_get_int(qdict, "n");
2372 CaptureState *s;
2373
2374 for (s = capture_head.lh_first, i = 0; s; s = s->entries.le_next, ++i) {
2375 if (i == n) {
2376 s->ops.destroy (s->opaque);
2377 QLIST_REMOVE (s, entries);
2378 qemu_free (s);
2379 return;
2380 }
2381 }
2382 }
2383
2384 static void do_wav_capture(Monitor *mon, const QDict *qdict)
2385 {
2386 const char *path = qdict_get_str(qdict, "path");
2387 int has_freq = qdict_haskey(qdict, "freq");
2388 int freq = qdict_get_try_int(qdict, "freq", -1);
2389 int has_bits = qdict_haskey(qdict, "bits");
2390 int bits = qdict_get_try_int(qdict, "bits", -1);
2391 int has_channels = qdict_haskey(qdict, "nchannels");
2392 int nchannels = qdict_get_try_int(qdict, "nchannels", -1);
2393 CaptureState *s;
2394
2395 s = qemu_mallocz (sizeof (*s));
2396
2397 freq = has_freq ? freq : 44100;
2398 bits = has_bits ? bits : 16;
2399 nchannels = has_channels ? nchannels : 2;
2400
2401 if (wav_start_capture (s, path, freq, bits, nchannels)) {
2402 monitor_printf(mon, "Faied to add wave capture\n");
2403 qemu_free (s);
2404 }
2405 QLIST_INSERT_HEAD (&capture_head, s, entries);
2406 }
2407 #endif
2408
2409 #if defined(TARGET_I386)
2410 static void do_inject_nmi(Monitor *mon, const QDict *qdict)
2411 {
2412 CPUState *env;
2413 int cpu_index = qdict_get_int(qdict, "cpu_index");
2414
2415 for (env = first_cpu; env != NULL; env = env->next_cpu)
2416 if (env->cpu_index == cpu_index) {
2417 cpu_interrupt(env, CPU_INTERRUPT_NMI);
2418 break;
2419 }
2420 }
2421 #endif
2422
2423 static void do_info_status_print(Monitor *mon, const QObject *data)
2424 {
2425 QDict *qdict;
2426
2427 qdict = qobject_to_qdict(data);
2428
2429 monitor_printf(mon, "VM status: ");
2430 if (qdict_get_bool(qdict, "running")) {
2431 monitor_printf(mon, "running");
2432 if (qdict_get_bool(qdict, "singlestep")) {
2433 monitor_printf(mon, " (single step mode)");
2434 }
2435 } else {
2436 monitor_printf(mon, "paused");
2437 }
2438
2439 monitor_printf(mon, "\n");
2440 }
2441
2442 static void do_info_status(Monitor *mon, QObject **ret_data)
2443 {
2444 *ret_data = qobject_from_jsonf("{ 'running': %i, 'singlestep': %i }",
2445 vm_running, singlestep);
2446 }
2447
2448 static qemu_acl *find_acl(Monitor *mon, const char *name)
2449 {
2450 qemu_acl *acl = qemu_acl_find(name);
2451
2452 if (!acl) {
2453 monitor_printf(mon, "acl: unknown list '%s'\n", name);
2454 }
2455 return acl;
2456 }
2457
2458 static void do_acl_show(Monitor *mon, const QDict *qdict)
2459 {
2460 const char *aclname = qdict_get_str(qdict, "aclname");
2461 qemu_acl *acl = find_acl(mon, aclname);
2462 qemu_acl_entry *entry;
2463 int i = 0;
2464
2465 if (acl) {
2466 monitor_printf(mon, "policy: %s\n",
2467 acl->defaultDeny ? "deny" : "allow");
2468 QTAILQ_FOREACH(entry, &acl->entries, next) {
2469 i++;
2470 monitor_printf(mon, "%d: %s %s\n", i,
2471 entry->deny ? "deny" : "allow", entry->match);
2472 }
2473 }
2474 }
2475
2476 static void do_acl_reset(Monitor *mon, const QDict *qdict)
2477 {
2478 const char *aclname = qdict_get_str(qdict, "aclname");
2479 qemu_acl *acl = find_acl(mon, aclname);
2480
2481 if (acl) {
2482 qemu_acl_reset(acl);
2483 monitor_printf(mon, "acl: removed all rules\n");
2484 }
2485 }
2486
2487 static void do_acl_policy(Monitor *mon, const QDict *qdict)
2488 {
2489 const char *aclname = qdict_get_str(qdict, "aclname");
2490 const char *policy = qdict_get_str(qdict, "policy");
2491 qemu_acl *acl = find_acl(mon, aclname);
2492
2493 if (acl) {
2494 if (strcmp(policy, "allow") == 0) {
2495 acl->defaultDeny = 0;
2496 monitor_printf(mon, "acl: policy set to 'allow'\n");
2497 } else if (strcmp(policy, "deny") == 0) {
2498 acl->defaultDeny = 1;
2499 monitor_printf(mon, "acl: policy set to 'deny'\n");
2500 } else {
2501 monitor_printf(mon, "acl: unknown policy '%s', "
2502 "expected 'deny' or 'allow'\n", policy);
2503 }
2504 }
2505 }
2506
2507 static void do_acl_add(Monitor *mon, const QDict *qdict)
2508 {
2509 const char *aclname = qdict_get_str(qdict, "aclname");
2510 const char *match = qdict_get_str(qdict, "match");
2511 const char *policy = qdict_get_str(qdict, "policy");
2512 int has_index = qdict_haskey(qdict, "index");
2513 int index = qdict_get_try_int(qdict, "index", -1);
2514 qemu_acl *acl = find_acl(mon, aclname);
2515 int deny, ret;
2516
2517 if (acl) {
2518 if (strcmp(policy, "allow") == 0) {
2519 deny = 0;
2520 } else if (strcmp(policy, "deny") == 0) {
2521 deny = 1;
2522 } else {
2523 monitor_printf(mon, "acl: unknown policy '%s', "
2524 "expected 'deny' or 'allow'\n", policy);
2525 return;
2526 }
2527 if (has_index)
2528 ret = qemu_acl_insert(acl, deny, match, index);
2529 else
2530 ret = qemu_acl_append(acl, deny, match);
2531 if (ret < 0)
2532 monitor_printf(mon, "acl: unable to add acl entry\n");
2533 else
2534 monitor_printf(mon, "acl: added rule at position %d\n", ret);
2535 }
2536 }
2537
2538 static void do_acl_remove(Monitor *mon, const QDict *qdict)
2539 {
2540 const char *aclname = qdict_get_str(qdict, "aclname");
2541 const char *match = qdict_get_str(qdict, "match");
2542 qemu_acl *acl = find_acl(mon, aclname);
2543 int ret;
2544
2545 if (acl) {
2546 ret = qemu_acl_remove(acl, match);
2547 if (ret < 0)
2548 monitor_printf(mon, "acl: no matching acl entry\n");
2549 else
2550 monitor_printf(mon, "acl: removed rule at position %d\n", ret);
2551 }
2552 }
2553
2554 #if defined(TARGET_I386)
2555 static void do_inject_mce(Monitor *mon, const QDict *qdict)
2556 {
2557 CPUState *cenv;
2558 int cpu_index = qdict_get_int(qdict, "cpu_index");
2559 int bank = qdict_get_int(qdict, "bank");
2560 uint64_t status = qdict_get_int(qdict, "status");
2561 uint64_t mcg_status = qdict_get_int(qdict, "mcg_status");
2562 uint64_t addr = qdict_get_int(qdict, "addr");
2563 uint64_t misc = qdict_get_int(qdict, "misc");
2564
2565 for (cenv = first_cpu; cenv != NULL; cenv = cenv->next_cpu)
2566 if (cenv->cpu_index == cpu_index && cenv->mcg_cap) {
2567 cpu_inject_x86_mce(cenv, bank, status, mcg_status, addr, misc);
2568 break;
2569 }
2570 }
2571 #endif
2572
2573 static int do_getfd(Monitor *mon, const QDict *qdict, QObject **ret_data)
2574 {
2575 const char *fdname = qdict_get_str(qdict, "fdname");
2576 mon_fd_t *monfd;
2577 int fd;
2578
2579 fd = qemu_chr_get_msgfd(mon->chr);
2580 if (fd == -1) {
2581 qerror_report(QERR_FD_NOT_SUPPLIED);
2582 return -1;
2583 }
2584
2585 if (qemu_isdigit(fdname[0])) {
2586 qerror_report(QERR_INVALID_PARAMETER_VALUE, "fdname",
2587 "a name not starting with a digit");
2588 return -1;
2589 }
2590
2591 QLIST_FOREACH(monfd, &mon->fds, next) {
2592 if (strcmp(monfd->name, fdname) != 0) {
2593 continue;
2594 }
2595
2596 close(monfd->fd);
2597 monfd->fd = fd;
2598 return 0;
2599 }
2600
2601 monfd = qemu_mallocz(sizeof(mon_fd_t));
2602 monfd->name = qemu_strdup(fdname);
2603 monfd->fd = fd;
2604
2605 QLIST_INSERT_HEAD(&mon->fds, monfd, next);
2606 return 0;
2607 }
2608
2609 static int do_closefd(Monitor *mon, const QDict *qdict, QObject **ret_data)
2610 {
2611 const char *fdname = qdict_get_str(qdict, "fdname");
2612 mon_fd_t *monfd;
2613
2614 QLIST_FOREACH(monfd, &mon->fds, next) {
2615 if (strcmp(monfd->name, fdname) != 0) {
2616 continue;
2617 }
2618
2619 QLIST_REMOVE(monfd, next);
2620 close(monfd->fd);
2621 qemu_free(monfd->name);
2622 qemu_free(monfd);
2623 return 0;
2624 }
2625
2626 qerror_report(QERR_FD_NOT_FOUND, fdname);
2627 return -1;
2628 }
2629
2630 static void do_loadvm(Monitor *mon, const QDict *qdict)
2631 {
2632 int saved_vm_running = vm_running;
2633 const char *name = qdict_get_str(qdict, "name");
2634
2635 vm_stop(0);
2636
2637 if (load_vmstate(name) == 0 && saved_vm_running) {
2638 vm_start();
2639 }
2640 }
2641
2642 int monitor_get_fd(Monitor *mon, const char *fdname)
2643 {
2644 mon_fd_t *monfd;
2645
2646 QLIST_FOREACH(monfd, &mon->fds, next) {
2647 int fd;
2648
2649 if (strcmp(monfd->name, fdname) != 0) {
2650 continue;
2651 }
2652
2653 fd = monfd->fd;
2654
2655 /* caller takes ownership of fd */
2656 QLIST_REMOVE(monfd, next);
2657 qemu_free(monfd->name);
2658 qemu_free(monfd);
2659
2660 return fd;
2661 }
2662
2663 return -1;
2664 }
2665
2666 static const mon_cmd_t mon_cmds[] = {
2667 #include "hmp-commands.h"
2668 { NULL, NULL, },
2669 };
2670
2671 /* Please update hmp-commands.hx when adding or changing commands */
2672 static const mon_cmd_t info_cmds[] = {
2673 {
2674 .name = "version",
2675 .args_type = "",
2676 .params = "",
2677 .help = "show the version of QEMU",
2678 .user_print = do_info_version_print,
2679 .mhandler.info_new = do_info_version,
2680 },
2681 {
2682 .name = "network",
2683 .args_type = "",
2684 .params = "",
2685 .help = "show the network state",
2686 .mhandler.info = do_info_network,
2687 },
2688 {
2689 .name = "chardev",
2690 .args_type = "",
2691 .params = "",
2692 .help = "show the character devices",
2693 .user_print = qemu_chr_info_print,
2694 .mhandler.info_new = qemu_chr_info,
2695 },
2696 {
2697 .name = "block",
2698 .args_type = "",
2699 .params = "",
2700 .help = "show the block devices",
2701 .user_print = bdrv_info_print,
2702 .mhandler.info_new = bdrv_info,
2703 },
2704 {
2705 .name = "blockstats",
2706 .args_type = "",
2707 .params = "",
2708 .help = "show block device statistics",
2709 .user_print = bdrv_stats_print,
2710 .mhandler.info_new = bdrv_info_stats,
2711 },
2712 {
2713 .name = "registers",
2714 .args_type = "",
2715 .params = "",
2716 .help = "show the cpu registers",
2717 .mhandler.info = do_info_registers,
2718 },
2719 {
2720 .name = "cpus",
2721 .args_type = "",
2722 .params = "",
2723 .help = "show infos for each CPU",
2724 .user_print = monitor_print_cpus,
2725 .mhandler.info_new = do_info_cpus,
2726 },
2727 {
2728 .name = "history",
2729 .args_type = "",
2730 .params = "",
2731 .help = "show the command line history",
2732 .mhandler.info = do_info_history,
2733 },
2734 {
2735 .name = "irq",
2736 .args_type = "",
2737 .params = "",
2738 .help = "show the interrupts statistics (if available)",
2739 .mhandler.info = irq_info,
2740 },
2741 {
2742 .name = "pic",
2743 .args_type = "",
2744 .params = "",
2745 .help = "show i8259 (PIC) state",
2746 .mhandler.info = pic_info,
2747 },
2748 {
2749 .name = "pci",
2750 .args_type = "",
2751 .params = "",
2752 .help = "show PCI info",
2753 .user_print = do_pci_info_print,
2754 .mhandler.info_new = do_pci_info,
2755 },
2756 #if defined(TARGET_I386) || defined(TARGET_SH4) || defined(TARGET_SPARC)
2757 {
2758 .name = "tlb",
2759 .args_type = "",
2760 .params = "",
2761 .help = "show virtual to physical memory mappings",
2762 .mhandler.info = tlb_info,
2763 },
2764 #endif
2765 #if defined(TARGET_I386)
2766 {
2767 .name = "mem",
2768 .args_type = "",
2769 .params = "",
2770 .help = "show the active virtual memory mappings",
2771 .mhandler.info = mem_info,
2772 },
2773 #endif
2774 {
2775 .name = "jit",
2776 .args_type = "",
2777 .params = "",
2778 .help = "show dynamic compiler info",
2779 .mhandler.info = do_info_jit,
2780 },
2781 {
2782 .name = "kvm",
2783 .args_type = "",
2784 .params = "",
2785 .help = "show KVM information",
2786 .user_print = do_info_kvm_print,
2787 .mhandler.info_new = do_info_kvm,
2788 },
2789 {
2790 .name = "numa",
2791 .args_type = "",
2792 .params = "",
2793 .help = "show NUMA information",
2794 .mhandler.info = do_info_numa,
2795 },
2796 {
2797 .name = "usb",
2798 .args_type = "",
2799 .params = "",
2800 .help = "show guest USB devices",
2801 .mhandler.info = usb_info,
2802 },
2803 {
2804 .name = "usbhost",
2805 .args_type = "",
2806 .params = "",
2807 .help = "show host USB devices",
2808 .mhandler.info = usb_host_info,
2809 },
2810 {
2811 .name = "profile",
2812 .args_type = "",
2813 .params = "",
2814 .help = "show profiling information",
2815 .mhandler.info = do_info_profile,
2816 },
2817 {
2818 .name = "capture",
2819 .args_type = "",
2820 .params = "",
2821 .help = "show capture information",
2822 .mhandler.info = do_info_capture,
2823 },
2824 {
2825 .name = "snapshots",
2826 .args_type = "",
2827 .params = "",
2828 .help = "show the currently saved VM snapshots",
2829 .mhandler.info = do_info_snapshots,
2830 },
2831 {
2832 .name = "status",
2833 .args_type = "",
2834 .params = "",
2835 .help = "show the current VM status (running|paused)",
2836 .user_print = do_info_status_print,
2837 .mhandler.info_new = do_info_status,
2838 },
2839 {
2840 .name = "pcmcia",
2841 .args_type = "",
2842 .params = "",
2843 .help = "show guest PCMCIA status",
2844 .mhandler.info = pcmcia_info,
2845 },
2846 {
2847 .name = "mice",
2848 .args_type = "",
2849 .params = "",
2850 .help = "show which guest mouse is receiving events",
2851 .user_print = do_info_mice_print,
2852 .mhandler.info_new = do_info_mice,
2853 },
2854 {
2855 .name = "vnc",
2856 .args_type = "",
2857 .params = "",
2858 .help = "show the vnc server status",
2859 .user_print = do_info_vnc_print,
2860 .mhandler.info_new = do_info_vnc,
2861 },
2862 {
2863 .name = "name",
2864 .args_type = "",
2865 .params = "",
2866 .help = "show the current VM name",
2867 .user_print = do_info_name_print,
2868 .mhandler.info_new = do_info_name,
2869 },
2870 {
2871 .name = "uuid",
2872 .args_type = "",
2873 .params = "",
2874 .help = "show the current VM UUID",
2875 .user_print = do_info_uuid_print,
2876 .mhandler.info_new = do_info_uuid,
2877 },
2878 #if defined(TARGET_PPC)
2879 {
2880 .name = "cpustats",
2881 .args_type = "",
2882 .params = "",
2883 .help = "show CPU statistics",
2884 .mhandler.info = do_info_cpu_stats,
2885 },
2886 #endif
2887 #if defined(CONFIG_SLIRP)
2888 {
2889 .name = "usernet",
2890 .args_type = "",
2891 .params = "",
2892 .help = "show user network stack connection states",
2893 .mhandler.info = do_info_usernet,
2894 },
2895 #endif
2896 {
2897 .name = "migrate",
2898 .args_type = "",
2899 .params = "",
2900 .help = "show migration status",
2901 .user_print = do_info_migrate_print,
2902 .mhandler.info_new = do_info_migrate,
2903 },
2904 {
2905 .name = "balloon",
2906 .args_type = "",
2907 .params = "",
2908 .help = "show balloon information",
2909 .user_print = monitor_print_balloon,
2910 .mhandler.info_async = do_info_balloon,
2911 .flags = MONITOR_CMD_ASYNC,
2912 },
2913 {
2914 .name = "qtree",
2915 .args_type = "",
2916 .params = "",
2917 .help = "show device tree",
2918 .mhandler.info = do_info_qtree,
2919 },
2920 {
2921 .name = "qdm",
2922 .args_type = "",
2923 .params = "",
2924 .help = "show qdev device model list",
2925 .mhandler.info = do_info_qdm,
2926 },
2927 {
2928 .name = "roms",
2929 .args_type = "",
2930 .params = "",
2931 .help = "show roms",
2932 .mhandler.info = do_info_roms,
2933 },
2934 #if defined(CONFIG_SIMPLE_TRACE)
2935 {
2936 .name = "trace",
2937 .args_type = "",
2938 .params = "",
2939 .help = "show current contents of trace buffer",
2940 .mhandler.info = do_info_trace,
2941 },
2942 {
2943 .name = "trace-events",
2944 .args_type = "",
2945 .params = "",
2946 .help = "show available trace-events & their state",
2947 .mhandler.info = do_info_trace_events,
2948 },
2949 #endif
2950 {
2951 .name = NULL,
2952 },
2953 };
2954
2955 static const mon_cmd_t qmp_cmds[] = {
2956 #include "qmp-commands.h"
2957 { /* NULL */ },
2958 };
2959
2960 static const mon_cmd_t qmp_query_cmds[] = {
2961 {
2962 .name = "version",
2963 .args_type = "",
2964 .params = "",
2965 .help = "show the version of QEMU",
2966 .user_print = do_info_version_print,
2967 .mhandler.info_new = do_info_version,
2968 },
2969 {
2970 .name = "commands",
2971 .args_type = "",
2972 .params = "",
2973 .help = "list QMP available commands",
2974 .user_print = monitor_user_noop,
2975 .mhandler.info_new = do_info_commands,
2976 },
2977 {
2978 .name = "chardev",
2979 .args_type = "",
2980 .params = "",
2981 .help = "show the character devices",
2982 .user_print = qemu_chr_info_print,
2983 .mhandler.info_new = qemu_chr_info,
2984 },
2985 {
2986 .name = "block",
2987 .args_type = "",
2988 .params = "",
2989 .help = "show the block devices",
2990 .user_print = bdrv_info_print,
2991 .mhandler.info_new = bdrv_info,
2992 },
2993 {
2994 .name = "blockstats",
2995 .args_type = "",
2996 .params = "",
2997 .help = "show block device statistics",
2998 .user_print = bdrv_stats_print,
2999 .mhandler.info_new = bdrv_info_stats,
3000 },
3001 {
3002 .name = "cpus",
3003 .args_type = "",
3004 .params = "",
3005 .help = "show infos for each CPU",
3006 .user_print = monitor_print_cpus,
3007 .mhandler.info_new = do_info_cpus,
3008 },
3009 {
3010 .name = "pci",
3011 .args_type = "",
3012 .params = "",
3013 .help = "show PCI info",
3014 .user_print = do_pci_info_print,
3015 .mhandler.info_new = do_pci_info,
3016 },
3017 {
3018 .name = "kvm",
3019 .args_type = "",
3020 .params = "",
3021 .help = "show KVM information",
3022 .user_print = do_info_kvm_print,
3023 .mhandler.info_new = do_info_kvm,
3024 },
3025 {
3026 .name = "status",
3027 .args_type = "",
3028 .params = "",
3029 .help = "show the current VM status (running|paused)",
3030 .user_print = do_info_status_print,
3031 .mhandler.info_new = do_info_status,
3032 },
3033 {
3034 .name = "mice",
3035 .args_type = "",
3036 .params = "",
3037 .help = "show which guest mouse is receiving events",
3038 .user_print = do_info_mice_print,
3039 .mhandler.info_new = do_info_mice,
3040 },
3041 {
3042 .name = "vnc",
3043 .args_type = "",
3044 .params = "",
3045 .help = "show the vnc server status",
3046 .user_print = do_info_vnc_print,
3047 .mhandler.info_new = do_info_vnc,
3048 },
3049 {
3050 .name = "name",
3051 .args_type = "",
3052 .params = "",
3053 .help = "show the current VM name",
3054 .user_print = do_info_name_print,
3055 .mhandler.info_new = do_info_name,
3056 },
3057 {
3058 .name = "uuid",
3059 .args_type = "",
3060 .params = "",
3061 .help = "show the current VM UUID",
3062 .user_print = do_info_uuid_print,
3063 .mhandler.info_new = do_info_uuid,
3064 },
3065 {
3066 .name = "migrate",
3067 .args_type = "",
3068 .params = "",
3069 .help = "show migration status",
3070 .user_print = do_info_migrate_print,
3071 .mhandler.info_new = do_info_migrate,
3072 },
3073 {
3074 .name = "balloon",
3075 .args_type = "",
3076 .params = "",
3077 .help = "show balloon information",
3078 .user_print = monitor_print_balloon,
3079 .mhandler.info_async = do_info_balloon,
3080 .flags = MONITOR_CMD_ASYNC,
3081 },
3082 { /* NULL */ },
3083 };
3084
3085 /*******************************************************************/
3086
3087 static const char *pch;
3088 static jmp_buf expr_env;
3089
3090 #define MD_TLONG 0
3091 #define MD_I32 1
3092
3093 typedef struct MonitorDef {
3094 const char *name;
3095 int offset;
3096 target_long (*get_value)(const struct MonitorDef *md, int val);
3097 int type;
3098 } MonitorDef;
3099
3100 #if defined(TARGET_I386)
3101 static target_long monitor_get_pc (const struct MonitorDef *md, int val)
3102 {
3103 CPUState *env = mon_get_cpu();
3104 return env->eip + env->segs[R_CS].base;
3105 }
3106 #endif
3107
3108 #if defined(TARGET_PPC)
3109 static target_long monitor_get_ccr (const struct MonitorDef *md, int val)
3110 {
3111 CPUState *env = mon_get_cpu();
3112 unsigned int u;
3113 int i;
3114
3115 u = 0;
3116 for (i = 0; i < 8; i++)
3117 u |= env->crf[i] << (32 - (4 * i));
3118
3119 return u;
3120 }
3121
3122 static target_long monitor_get_msr (const struct MonitorDef *md, int val)
3123 {
3124 CPUState *env = mon_get_cpu();
3125 return env->msr;
3126 }
3127
3128 static target_long monitor_get_xer (const struct MonitorDef *md, int val)
3129 {
3130 CPUState *env = mon_get_cpu();
3131 return env->xer;
3132 }
3133
3134 static target_long monitor_get_decr (const struct MonitorDef *md, int val)
3135 {
3136 CPUState *env = mon_get_cpu();
3137 return cpu_ppc_load_decr(env);
3138 }
3139
3140 static target_long monitor_get_tbu (const struct MonitorDef *md, int val)
3141 {
3142 CPUState *env = mon_get_cpu();
3143 return cpu_ppc_load_tbu(env);
3144 }
3145
3146 static target_long monitor_get_tbl (const struct MonitorDef *md, int val)
3147 {
3148 CPUState *env = mon_get_cpu();
3149 return cpu_ppc_load_tbl(env);
3150 }
3151 #endif
3152
3153 #if defined(TARGET_SPARC)
3154 #ifndef TARGET_SPARC64
3155 static target_long monitor_get_psr (const struct MonitorDef *md, int val)
3156 {
3157 CPUState *env = mon_get_cpu();
3158
3159 return cpu_get_psr(env);
3160 }
3161 #endif
3162
3163 static target_long monitor_get_reg(const struct MonitorDef *md, int val)
3164 {
3165 CPUState *env = mon_get_cpu();
3166 return env->regwptr[val];
3167 }
3168 #endif
3169
3170 static const MonitorDef monitor_defs[] = {
3171 #ifdef TARGET_I386
3172
3173 #define SEG(name, seg) \
3174 { name, offsetof(CPUState, segs[seg].selector), NULL, MD_I32 },\
3175 { name ".base", offsetof(CPUState, segs[seg].base) },\
3176 { name ".limit", offsetof(CPUState, segs[seg].limit), NULL, MD_I32 },
3177
3178 { "eax", offsetof(CPUState, regs[0]) },
3179 { "ecx", offsetof(CPUState, regs[1]) },
3180 { "edx", offsetof(CPUState, regs[2]) },
3181 { "ebx", offsetof(CPUState, regs[3]) },
3182 { "esp|sp", offsetof(CPUState, regs[4]) },
3183 { "ebp|fp", offsetof(CPUState, regs[5]) },
3184 { "esi", offsetof(CPUState, regs[6]) },
3185 { "edi", offsetof(CPUState, regs[7]) },
3186 #ifdef TARGET_X86_64
3187 { "r8", offsetof(CPUState, regs[8]) },
3188 { "r9", offsetof(CPUState, regs[9]) },
3189 { "r10", offsetof(CPUState, regs[10]) },
3190 { "r11", offsetof(CPUState, regs[11]) },
3191 { "r12", offsetof(CPUState, regs[12]) },
3192 { "r13", offsetof(CPUState, regs[13]) },
3193 { "r14", offsetof(CPUState, regs[14]) },
3194 { "r15", offsetof(CPUState, regs[15]) },
3195 #endif
3196 { "eflags", offsetof(CPUState, eflags) },
3197 { "eip", offsetof(CPUState, eip) },
3198 SEG("cs", R_CS)
3199 SEG("ds", R_DS)
3200 SEG("es", R_ES)
3201 SEG("ss", R_SS)
3202 SEG("fs", R_FS)
3203 SEG("gs", R_GS)
3204 { "pc", 0, monitor_get_pc, },
3205 #elif defined(TARGET_PPC)
3206 /* General purpose registers */
3207 { "r0", offsetof(CPUState, gpr[0]) },
3208 { "r1", offsetof(CPUState, gpr[1]) },
3209 { "r2", offsetof(CPUState, gpr[2]) },
3210 { "r3", offsetof(CPUState, gpr[3]) },
3211 { "r4", offsetof(CPUState, gpr[4]) },
3212 { "r5", offsetof(CPUState, gpr[5]) },
3213 { "r6", offsetof(CPUState, gpr[6]) },
3214 { "r7", offsetof(CPUState, gpr[7]) },
3215 { "r8", offsetof(CPUState, gpr[8]) },
3216 { "r9", offsetof(CPUState, gpr[9]) },
3217 { "r10", offsetof(CPUState, gpr[10]) },
3218 { "r11", offsetof(CPUState, gpr[11]) },
3219 { "r12", offsetof(CPUState, gpr[12]) },
3220 { "r13", offsetof(CPUState, gpr[13]) },
3221 { "r14", offsetof(CPUState, gpr[14]) },
3222 { "r15", offsetof(CPUState, gpr[15]) },
3223 { "r16", offsetof(CPUState, gpr[16]) },
3224 { "r17", offsetof(CPUState, gpr[17]) },
3225 { "r18", offsetof(CPUState, gpr[18]) },
3226 { "r19", offsetof(CPUState, gpr[19]) },
3227 { "r20", offsetof(CPUState, gpr[20]) },
3228 { "r21", offsetof(CPUState, gpr[21]) },
3229 { "r22", offsetof(CPUState, gpr[22]) },
3230 { "r23", offsetof(CPUState, gpr[23]) },
3231 { "r24", offsetof(CPUState, gpr[24]) },
3232 { "r25", offsetof(CPUState, gpr[25]) },
3233 { "r26", offsetof(CPUState, gpr[26]) },
3234 { "r27", offsetof(CPUState, gpr[27]) },
3235 { "r28", offsetof(CPUState, gpr[28]) },
3236 { "r29", offsetof(CPUState, gpr[29]) },
3237 { "r30", offsetof(CPUState, gpr[30]) },
3238 { "r31", offsetof(CPUState, gpr[31]) },
3239 /* Floating point registers */
3240 { "f0", offsetof(CPUState, fpr[0]) },
3241 { "f1", offsetof(CPUState, fpr[1]) },
3242 { "f2", offsetof(CPUState, fpr[2]) },
3243 { "f3", offsetof(CPUState, fpr[3]) },
3244 { "f4", offsetof(CPUState, fpr[4]) },
3245 { "f5", offsetof(CPUState, fpr[5]) },
3246 { "f6", offsetof(CPUState, fpr[6]) },
3247 { "f7", offsetof(CPUState, fpr[7]) },
3248 { "f8", offsetof(CPUState, fpr[8]) },
3249 { "f9", offsetof(CPUState, fpr[9]) },
3250 { "f10", offsetof(CPUState, fpr[10]) },
3251 { "f11", offsetof(CPUState, fpr[11]) },
3252 { "f12", offsetof(CPUState, fpr[12]) },
3253 { "f13", offsetof(CPUState, fpr[13]) },
3254 { "f14", offsetof(CPUState, fpr[14]) },
3255 { "f15", offsetof(CPUState, fpr[15]) },
3256 { "f16", offsetof(CPUState, fpr[16]) },
3257 { "f17", offsetof(CPUState, fpr[17]) },
3258 { "f18", offsetof(CPUState, fpr[18]) },
3259 { "f19", offsetof(CPUState, fpr[19]) },
3260 { "f20", offsetof(CPUState, fpr[20]) },
3261 { "f21", offsetof(CPUState, fpr[21]) },
3262 { "f22", offsetof(CPUState, fpr[22]) },
3263 { "f23", offsetof(CPUState, fpr[23]) },
3264 { "f24", offsetof(CPUState, fpr[24]) },
3265 { "f25", offsetof(CPUState, fpr[25]) },
3266 { "f26", offsetof(CPUState, fpr[26]) },
3267 { "f27", offsetof(CPUState, fpr[27]) },
3268 { "f28", offsetof(CPUState, fpr[28]) },
3269 { "f29", offsetof(CPUState, fpr[29]) },
3270 { "f30", offsetof(CPUState, fpr[30]) },
3271 { "f31", offsetof(CPUState, fpr[31]) },
3272 { "fpscr", offsetof(CPUState, fpscr) },
3273 /* Next instruction pointer */
3274 { "nip|pc", offsetof(CPUState, nip) },
3275 { "lr", offsetof(CPUState, lr) },
3276 { "ctr", offsetof(CPUState, ctr) },
3277 { "decr", 0, &monitor_get_decr, },
3278 { "ccr", 0, &monitor_get_ccr, },
3279 /* Machine state register */
3280 { "msr", 0, &monitor_get_msr, },
3281 { "xer", 0, &monitor_get_xer, },
3282 { "tbu", 0, &monitor_get_tbu, },
3283 { "tbl", 0, &monitor_get_tbl, },
3284 #if defined(TARGET_PPC64)
3285 /* Address space register */
3286 { "asr", offsetof(CPUState, asr) },
3287 #endif
3288 /* Segment registers */
3289 { "sdr1", offsetof(CPUState, sdr1) },
3290 { "sr0", offsetof(CPUState, sr[0]) },
3291 { "sr1", offsetof(CPUState, sr[1]) },
3292 { "sr2", offsetof(CPUState, sr[2]) },
3293 { "sr3", offsetof(CPUState, sr[3]) },
3294 { "sr4", offsetof(CPUState, sr[4]) },
3295 { "sr5", offsetof(CPUState, sr[5]) },
3296 { "sr6", offsetof(CPUState, sr[6]) },
3297 { "sr7", offsetof(CPUState, sr[7]) },
3298 { "sr8", offsetof(CPUState, sr[8]) },
3299 { "sr9", offsetof(CPUState, sr[9]) },
3300 { "sr10", offsetof(CPUState, sr[10]) },
3301 { "sr11", offsetof(CPUState, sr[11]) },
3302 { "sr12", offsetof(CPUState, sr[12]) },
3303 { "sr13", offsetof(CPUState, sr[13]) },
3304 { "sr14", offsetof(CPUState, sr[14]) },
3305 { "sr15", offsetof(CPUState, sr[15]) },
3306 /* Too lazy to put BATs and SPRs ... */
3307 #elif defined(TARGET_SPARC)
3308 { "g0", offsetof(CPUState, gregs[0]) },
3309 { "g1", offsetof(CPUState, gregs[1]) },
3310 { "g2", offsetof(CPUState, gregs[2]) },
3311 { "g3", offsetof(CPUState, gregs[3]) },
3312 { "g4", offsetof(CPUState, gregs[4]) },
3313 { "g5", offsetof(CPUState, gregs[5]) },
3314 { "g6", offsetof(CPUState, gregs[6]) },
3315 { "g7", offsetof(CPUState, gregs[7]) },
3316 { "o0", 0, monitor_get_reg },
3317 { "o1", 1, monitor_get_reg },
3318 { "o2", 2, monitor_get_reg },
3319 { "o3", 3, monitor_get_reg },
3320 { "o4", 4, monitor_get_reg },
3321 { "o5", 5, monitor_get_reg },
3322 { "o6", 6, monitor_get_reg },
3323 { "o7", 7, monitor_get_reg },
3324 { "l0", 8, monitor_get_reg },
3325 { "l1", 9, monitor_get_reg },
3326 { "l2", 10, monitor_get_reg },
3327 { "l3", 11, monitor_get_reg },
3328 { "l4", 12, monitor_get_reg },
3329 { "l5", 13, monitor_get_reg },
3330 { "l6", 14, monitor_get_reg },
3331 { "l7", 15, monitor_get_reg },
3332 { "i0", 16, monitor_get_reg },
3333 { "i1", 17, monitor_get_reg },
3334 { "i2", 18, monitor_get_reg },
3335 { "i3", 19, monitor_get_reg },
3336 { "i4", 20, monitor_get_reg },
3337 { "i5", 21, monitor_get_reg },
3338 { "i6", 22, monitor_get_reg },
3339 { "i7", 23, monitor_get_reg },
3340 { "pc", offsetof(CPUState, pc) },
3341 { "npc", offsetof(CPUState, npc) },
3342 { "y", offsetof(CPUState, y) },
3343 #ifndef TARGET_SPARC64
3344 { "psr", 0, &monitor_get_psr, },
3345 { "wim", offsetof(CPUState, wim) },
3346 #endif
3347 { "tbr", offsetof(CPUState, tbr) },
3348 { "fsr", offsetof(CPUState, fsr) },
3349 { "f0", offsetof(CPUState, fpr[0]) },
3350 { "f1", offsetof(CPUState, fpr[1]) },
3351 { "f2", offsetof(CPUState, fpr[2]) },
3352 { "f3", offsetof(CPUState, fpr[3]) },
3353 { "f4", offsetof(CPUState, fpr[4]) },
3354 { "f5", offsetof(CPUState, fpr[5]) },
3355 { "f6", offsetof(CPUState, fpr[6]) },
3356 { "f7", offsetof(CPUState, fpr[7]) },
3357 { "f8", offsetof(CPUState, fpr[8]) },
3358 { "f9", offsetof(CPUState, fpr[9]) },
3359 { "f10", offsetof(CPUState, fpr[10]) },
3360 { "f11", offsetof(CPUState, fpr[11]) },
3361 { "f12", offsetof(CPUState, fpr[12]) },
3362 { "f13", offsetof(CPUState, fpr[13]) },
3363 { "f14", offsetof(CPUState, fpr[14]) },
3364 { "f15", offsetof(CPUState, fpr[15]) },
3365 { "f16", offsetof(CPUState, fpr[16]) },
3366 { "f17", offsetof(CPUState, fpr[17]) },
3367 { "f18", offsetof(CPUState, fpr[18]) },
3368 { "f19", offsetof(CPUState, fpr[19]) },
3369 { "f20", offsetof(CPUState, fpr[20]) },
3370 { "f21", offsetof(CPUState, fpr[21]) },
3371 { "f22", offsetof(CPUState, fpr[22]) },
3372 { "f23", offsetof(CPUState, fpr[23]) },
3373 { "f24", offsetof(CPUState, fpr[24]) },
3374 { "f25", offsetof(CPUState, fpr[25]) },
3375 { "f26", offsetof(CPUState, fpr[26]) },
3376 { "f27", offsetof(CPUState, fpr[27]) },
3377 { "f28", offsetof(CPUState, fpr[28]) },
3378 { "f29", offsetof(CPUState, fpr[29]) },
3379 { "f30", offsetof(CPUState, fpr[30]) },
3380 { "f31", offsetof(CPUState, fpr[31]) },
3381 #ifdef TARGET_SPARC64
3382 { "f32", offsetof(CPUState, fpr[32]) },
3383 { "f34", offsetof(CPUState, fpr[34]) },
3384 { "f36", offsetof(CPUState, fpr[36]) },
3385 { "f38", offsetof(CPUState, fpr[38]) },
3386 { "f40", offsetof(CPUState, fpr[40]) },
3387 { "f42", offsetof(CPUState, fpr[42]) },
3388 { "f44", offsetof(CPUState, fpr[44]) },
3389 { "f46", offsetof(CPUState, fpr[46]) },
3390 { "f48", offsetof(CPUState, fpr[48]) },
3391 { "f50", offsetof(CPUState, fpr[50]) },
3392 { "f52", offsetof(CPUState, fpr[52]) },
3393 { "f54", offsetof(CPUState, fpr[54]) },
3394 { "f56", offsetof(CPUState, fpr[56]) },
3395 { "f58", offsetof(CPUState, fpr[58]) },
3396 { "f60", offsetof(CPUState, fpr[60]) },
3397 { "f62", offsetof(CPUState, fpr[62]) },
3398 { "asi", offsetof(CPUState, asi) },
3399 { "pstate", offsetof(CPUState, pstate) },
3400 { "cansave", offsetof(CPUState, cansave) },
3401 { "canrestore", offsetof(CPUState, canrestore) },
3402 { "otherwin", offsetof(CPUState, otherwin) },
3403 { "wstate", offsetof(CPUState, wstate) },
3404 { "cleanwin", offsetof(CPUState, cleanwin) },
3405 { "fprs", offsetof(CPUState, fprs) },
3406 #endif
3407 #endif
3408 { NULL },
3409 };
3410
3411 static void expr_error(Monitor *mon, const char *msg)
3412 {
3413 monitor_printf(mon, "%s\n", msg);
3414 longjmp(expr_env, 1);
3415 }
3416
3417 /* return 0 if OK, -1 if not found */
3418 static int get_monitor_def(target_long *pval, const char *name)
3419 {
3420 const MonitorDef *md;
3421 void *ptr;
3422
3423 for(md = monitor_defs; md->name != NULL; md++) {
3424 if (compare_cmd(name, md->name)) {
3425 if (md->get_value) {
3426 *pval = md->get_value(md, md->offset);
3427 } else {
3428 CPUState *env = mon_get_cpu();
3429 ptr = (uint8_t *)env + md->offset;
3430 switch(md->type) {
3431 case MD_I32:
3432 *pval = *(int32_t *)ptr;
3433 break;
3434 case MD_TLONG:
3435 *pval = *(target_long *)ptr;
3436 break;
3437 default:
3438 *pval = 0;
3439 break;
3440 }
3441 }
3442 return 0;
3443 }
3444 }
3445 return -1;
3446 }
3447
3448 static void next(void)
3449 {
3450 if (*pch != '\0') {
3451 pch++;
3452 while (qemu_isspace(*pch))
3453 pch++;
3454 }
3455 }
3456
3457 static int64_t expr_sum(Monitor *mon);
3458
3459 static int64_t expr_unary(Monitor *mon)
3460 {
3461 int64_t n;
3462 char *p;
3463 int ret;
3464
3465 switch(*pch) {
3466 case '+':
3467 next();
3468 n = expr_unary(mon);
3469 break;
3470 case '-':
3471 next();
3472 n = -expr_unary(mon);
3473 break;
3474 case '~':
3475 next();
3476 n = ~expr_unary(mon);
3477 break;
3478 case '(':
3479 next();
3480 n = expr_sum(mon);
3481 if (*pch != ')') {
3482 expr_error(mon, "')' expected");
3483 }
3484 next();
3485 break;
3486 case '\'':
3487 pch++;
3488 if (*pch == '\0')
3489 expr_error(mon, "character constant expected");
3490 n = *pch;
3491 pch++;
3492 if (*pch != '\'')
3493 expr_error(mon, "missing terminating \' character");
3494 next();
3495 break;
3496 case '$':
3497 {
3498 char buf[128], *q;
3499 target_long reg=0;
3500
3501 pch++;
3502 q = buf;
3503 while ((*pch >= 'a' && *pch <= 'z') ||
3504 (*pch >= 'A' && *pch <= 'Z') ||
3505 (*pch >= '0' && *pch <= '9') ||
3506 *pch == '_' || *pch == '.') {
3507 if ((q - buf) < sizeof(buf) - 1)
3508 *q++ = *pch;
3509 pch++;
3510 }
3511 while (qemu_isspace(*pch))
3512 pch++;
3513 *q = 0;
3514 ret = get_monitor_def(&reg, buf);
3515 if (ret < 0)
3516 expr_error(mon, "unknown register");
3517 n = reg;
3518 }
3519 break;
3520 case '\0':
3521 expr_error(mon, "unexpected end of expression");
3522 n = 0;
3523 break;
3524 default:
3525 #if TARGET_PHYS_ADDR_BITS > 32
3526 n = strtoull(pch, &p, 0);
3527 #else
3528 n = strtoul(pch, &p, 0);
3529 #endif
3530 if (pch == p) {
3531 expr_error(mon, "invalid char in expression");
3532 }
3533 pch = p;
3534 while (qemu_isspace(*pch))
3535 pch++;
3536 break;
3537 }
3538 return n;
3539 }
3540
3541
3542 static int64_t expr_prod(Monitor *mon)
3543 {
3544 int64_t val, val2;
3545 int op;
3546
3547 val = expr_unary(mon);
3548 for(;;) {
3549 op = *pch;
3550 if (op != '*' && op != '/' && op != '%')
3551 break;
3552 next();
3553 val2 = expr_unary(mon);
3554 switch(op) {
3555 default:
3556 case '*':
3557 val *= val2;
3558 break;
3559 case '/':
3560 case '%':
3561 if (val2 == 0)
3562 expr_error(mon, "division by zero");
3563 if (op == '/')
3564 val /= val2;
3565 else
3566 val %= val2;
3567 break;
3568 }
3569 }
3570 return val;
3571 }
3572
3573 static int64_t expr_logic(Monitor *mon)
3574 {
3575 int64_t val, val2;
3576 int op;
3577
3578 val = expr_prod(mon);
3579 for(;;) {
3580 op = *pch;
3581 if (op != '&' && op != '|' && op != '^')
3582 break;
3583 next();
3584 val2 = expr_prod(mon);
3585 switch(op) {
3586 default:
3587 case '&':
3588 val &= val2;
3589 break;
3590 case '|':
3591 val |= val2;
3592 break;
3593 case '^':
3594 val ^= val2;
3595 break;
3596 }
3597 }
3598 return val;
3599 }
3600
3601 static int64_t expr_sum(Monitor *mon)
3602 {
3603 int64_t val, val2;
3604 int op;
3605
3606 val = expr_logic(mon);
3607 for(;;) {
3608 op = *pch;
3609 if (op != '+' && op != '-')
3610 break;
3611 next();
3612 val2 = expr_logic(mon);
3613 if (op == '+')
3614 val += val2;
3615 else
3616 val -= val2;
3617 }
3618 return val;
3619 }
3620
3621 static int get_expr(Monitor *mon, int64_t *pval, const char **pp)
3622 {
3623 pch = *pp;
3624 if (setjmp(expr_env)) {
3625 *pp = pch;
3626 return -1;
3627 }
3628 while (qemu_isspace(*pch))
3629 pch++;
3630 *pval = expr_sum(mon);
3631 *pp = pch;
3632 return 0;
3633 }
3634
3635 static int get_double(Monitor *mon, double *pval, const char **pp)
3636 {
3637 const char *p = *pp;
3638 char *tailp;
3639 double d;
3640
3641 d = strtod(p, &tailp);
3642 if (tailp == p) {
3643 monitor_printf(mon, "Number expected\n");
3644 return -1;
3645 }
3646 if (d != d || d - d != 0) {
3647 /* NaN or infinity */
3648 monitor_printf(mon, "Bad number\n");
3649 return -1;
3650 }
3651 *pval = d;
3652 *pp = tailp;
3653 return 0;
3654 }
3655
3656 static int get_str(char *buf, int buf_size, const char **pp)
3657 {
3658 const char *p;
3659 char *q;
3660 int c;
3661
3662 q = buf;
3663 p = *pp;
3664 while (qemu_isspace(*p))
3665 p++;
3666 if (*p == '\0') {
3667 fail:
3668 *q = '\0';
3669 *pp = p;
3670 return -1;
3671 }
3672 if (*p == '\"') {
3673 p++;
3674 while (*p != '\0' && *p != '\"') {
3675 if (*p == '\\') {
3676 p++;
3677 c = *p++;
3678 switch(c) {
3679 case 'n':
3680 c = '\n';
3681 break;
3682 case 'r':
3683 c = '\r';
3684 break;
3685 case '\\':
3686 case '\'':
3687 case '\"':
3688 break;
3689 default:
3690 qemu_printf("unsupported escape code: '\\%c'\n", c);
3691 goto fail;
3692 }
3693 if ((q - buf) < buf_size - 1) {
3694 *q++ = c;
3695 }
3696 } else {
3697 if ((q - buf) < buf_size - 1) {
3698 *q++ = *p;
3699 }
3700 p++;
3701 }
3702 }
3703 if (*p != '\"') {
3704 qemu_printf("unterminated string\n");
3705 goto fail;
3706 }
3707 p++;
3708 } else {
3709 while (*p != '\0' && !qemu_isspace(*p)) {
3710 if ((q - buf) < buf_size - 1) {
3711 *q++ = *p;
3712 }
3713 p++;
3714 }
3715 }
3716 *q = '\0';
3717 *pp = p;
3718 return 0;
3719 }
3720
3721 /*
3722 * Store the command-name in cmdname, and return a pointer to
3723 * the remaining of the command string.
3724 */
3725 static const char *get_command_name(const char *cmdline,
3726 char *cmdname, size_t nlen)
3727 {
3728 size_t len;
3729 const char *p, *pstart;
3730
3731 p = cmdline;
3732 while (qemu_isspace(*p))
3733 p++;
3734 if (*p == '\0')
3735 return NULL;
3736 pstart = p;
3737 while (*p != '\0' && *p != '/' && !qemu_isspace(*p))
3738 p++;
3739 len = p - pstart;
3740 if (len > nlen - 1)
3741 len = nlen - 1;
3742 memcpy(cmdname, pstart, len);
3743 cmdname[len] = '\0';
3744 return p;
3745 }
3746
3747 /**
3748 * Read key of 'type' into 'key' and return the current
3749 * 'type' pointer.
3750 */
3751 static char *key_get_info(const char *type, char **key)
3752 {
3753 size_t len;
3754 char *p, *str;
3755
3756 if (*type == ',')
3757 type++;
3758
3759 p = strchr(type, ':');
3760 if (!p) {
3761 *key = NULL;
3762 return NULL;
3763 }
3764 len = p - type;
3765
3766 str = qemu_malloc(len + 1);
3767 memcpy(str, type, len);
3768 str[len] = '\0';
3769
3770 *key = str;
3771 return ++p;
3772 }
3773
3774 static int default_fmt_format = 'x';
3775 static int default_fmt_size = 4;
3776
3777 #define MAX_ARGS 16
3778
3779 static int is_valid_option(const char *c, const char *typestr)
3780 {
3781 char option[3];
3782
3783 option[0] = '-';
3784 option[1] = *c;
3785 option[2] = '\0';
3786
3787 typestr = strstr(typestr, option);
3788 return (typestr != NULL);
3789 }
3790
3791 static const mon_cmd_t *search_dispatch_table(const mon_cmd_t *disp_table,
3792 const char *cmdname)
3793 {
3794 const mon_cmd_t *cmd;
3795
3796 for (cmd = disp_table; cmd->name != NULL; cmd++) {
3797 if (compare_cmd(cmdname, cmd->name)) {
3798 return cmd;
3799 }
3800 }
3801
3802 return NULL;
3803 }
3804
3805 static const mon_cmd_t *monitor_find_command(const char *cmdname)
3806 {
3807 return search_dispatch_table(mon_cmds, cmdname);
3808 }
3809
3810 static const mon_cmd_t *qmp_find_query_cmd(const char *info_item)
3811 {
3812 return search_dispatch_table(qmp_query_cmds, info_item);
3813 }
3814
3815 static const mon_cmd_t *qmp_find_cmd(const char *cmdname)
3816 {
3817 return search_dispatch_table(qmp_cmds, cmdname);
3818 }
3819
3820 static const mon_cmd_t *monitor_parse_command(Monitor *mon,
3821 const char *cmdline,
3822 QDict *qdict)
3823 {
3824 const char *p, *typestr;
3825 int c;
3826 const mon_cmd_t *cmd;
3827 char cmdname[256];
3828 char buf[1024];
3829 char *key;
3830
3831 #ifdef DEBUG
3832 monitor_printf(mon, "command='%s'\n", cmdline);
3833 #endif
3834
3835 /* extract the command name */
3836 p = get_command_name(cmdline, cmdname, sizeof(cmdname));
3837 if (!p)
3838 return NULL;
3839
3840 cmd = monitor_find_command(cmdname);
3841 if (!cmd) {
3842 monitor_printf(mon, "unknown command: '%s'\n", cmdname);
3843 return NULL;
3844 }
3845
3846 /* parse the parameters */
3847 typestr = cmd->args_type;
3848 for(;;) {
3849 typestr = key_get_info(typestr, &key);
3850 if (!typestr)
3851 break;
3852 c = *typestr;
3853 typestr++;
3854 switch(c) {
3855 case 'F':
3856 case 'B':
3857 case 's':
3858 {
3859 int ret;
3860
3861 while (qemu_isspace(*p))
3862 p++;
3863 if (*typestr == '?') {
3864 typestr++;
3865 if (*p == '\0') {
3866 /* no optional string: NULL argument */
3867 break;
3868 }
3869 }
3870 ret = get_str(buf, sizeof(buf), &p);
3871 if (ret < 0) {
3872 switch(c) {
3873 case 'F':
3874 monitor_printf(mon, "%s: filename expected\n",
3875 cmdname);
3876 break;
3877 case 'B':
3878 monitor_printf(mon, "%s: block device name expected\n",
3879 cmdname);
3880 break;
3881 default:
3882 monitor_printf(mon, "%s: string expected\n", cmdname);
3883 break;
3884 }
3885 goto fail;
3886 }
3887 qdict_put(qdict, key, qstring_from_str(buf));
3888 }
3889 break;
3890 case 'O':
3891 {
3892 QemuOptsList *opts_list;
3893 QemuOpts *opts;
3894
3895 opts_list = qemu_find_opts(key);
3896 if (!opts_list || opts_list->desc->name) {
3897 goto bad_type;
3898 }
3899 while (qemu_isspace(*p)) {
3900 p++;
3901 }
3902 if (!*p)
3903 break;
3904 if (get_str(buf, sizeof(buf), &p) < 0) {
3905 goto fail;
3906 }
3907 opts = qemu_opts_parse(opts_list, buf, 1);
3908 if (!opts) {
3909 goto fail;
3910 }
3911 qemu_opts_to_qdict(opts, qdict);
3912 qemu_opts_del(opts);
3913 }
3914 break;
3915 case '/':
3916 {
3917 int count, format, size;
3918
3919 while (qemu_isspace(*p))
3920 p++;
3921 if (*p == '/') {
3922 /* format found */
3923 p++;
3924 count = 1;
3925 if (qemu_isdigit(*p)) {
3926 count = 0;
3927 while (qemu_isdigit(*p)) {
3928 count = count * 10 + (*p - '0');
3929 p++;
3930 }
3931 }
3932 size = -1;
3933 format = -1;
3934 for(;;) {
3935 switch(*p) {
3936 case 'o':
3937 case 'd':
3938 case 'u':
3939 case 'x':
3940 case 'i':
3941 case 'c':
3942 format = *p++;
3943 break;
3944 case 'b':
3945 size = 1;
3946 p++;
3947 break;
3948 case 'h':
3949 size = 2;
3950 p++;
3951 break;
3952 case 'w':
3953 size = 4;
3954 p++;
3955 break;
3956 case 'g':
3957 case 'L':
3958 size = 8;
3959 p++;
3960 break;
3961 default:
3962 goto next;
3963 }
3964 }
3965 next:
3966 if (*p != '\0' && !qemu_isspace(*p)) {
3967 monitor_printf(mon, "invalid char in format: '%c'\n",
3968 *p);
3969 goto fail;
3970 }
3971 if (format < 0)
3972 format = default_fmt_format;
3973 if (format != 'i') {
3974 /* for 'i', not specifying a size gives -1 as size */
3975 if (size < 0)
3976 size = default_fmt_size;
3977 default_fmt_size = size;
3978 }
3979 default_fmt_format = format;
3980 } else {
3981 count = 1;
3982 format = default_fmt_format;
3983 if (format != 'i') {
3984 size = default_fmt_size;
3985 } else {
3986 size = -1;
3987 }
3988 }
3989 qdict_put(qdict, "count", qint_from_int(count));
3990 qdict_put(qdict, "format", qint_from_int(format));
3991 qdict_put(qdict, "size", qint_from_int(size));
3992 }
3993 break;
3994 case 'i':
3995 case 'l':
3996 case 'M':
3997 {
3998 int64_t val;
3999
4000 while (qemu_isspace(*p))
4001 p++;
4002 if (*typestr == '?' || *typestr == '.') {
4003 if (*typestr == '?') {
4004 if (*p == '\0') {
4005 typestr++;
4006 break;
4007 }
4008 } else {
4009 if (*p == '.') {
4010 p++;
4011 while (qemu_isspace(*p))
4012 p++;
4013 } else {
4014 typestr++;
4015 break;
4016 }
4017 }
4018 typestr++;
4019 }
4020 if (get_expr(mon, &val, &p))
4021 goto fail;
4022 /* Check if 'i' is greater than 32-bit */
4023 if ((c == 'i') && ((val >> 32) & 0xffffffff)) {
4024 monitor_printf(mon, "\'%s\' has failed: ", cmdname);
4025 monitor_printf(mon, "integer is for 32-bit values\n");
4026 goto fail;
4027 } else if (c == 'M') {
4028 val <<= 20;
4029 }
4030 qdict_put(qdict, key, qint_from_int(val));
4031 }
4032 break;
4033 case 'o':
4034 {
4035 ssize_t val;
4036 char *end;
4037
4038 while (qemu_isspace(*p)) {
4039 p++;
4040 }
4041 if (*typestr == '?') {
4042 typestr++;
4043 if (*p == '\0') {
4044 break;
4045 }
4046 }
4047 val = strtosz(p, &end);
4048 if (val < 0) {
4049 monitor_printf(mon, "invalid size\n");
4050 goto fail;
4051 }
4052 qdict_put(qdict, key, qint_from_int(val));
4053 p = end;
4054 }
4055 break;
4056 case 'T':
4057 {
4058 double val;
4059
4060 while (qemu_isspace(*p))
4061 p++;
4062 if (*typestr == '?') {
4063 typestr++;
4064 if (*p == '\0') {
4065 break;
4066 }
4067 }
4068 if (get_double(mon, &val, &p) < 0) {
4069 goto fail;
4070 }
4071 if (p[0] && p[1] == 's') {
4072 switch (*p) {
4073 case 'm':
4074 val /= 1e3; p += 2; break;
4075 case 'u':
4076 val /= 1e6; p += 2; break;
4077 case 'n':
4078 val /= 1e9; p += 2; break;
4079 }
4080 }
4081 if (*p && !qemu_isspace(*p)) {
4082 monitor_printf(mon, "Unknown unit suffix\n");
4083 goto fail;
4084 }
4085 qdict_put(qdict, key, qfloat_from_double(val));
4086 }
4087 break;
4088 case 'b':
4089 {
4090 const char *beg;
4091 int val;
4092
4093 while (qemu_isspace(*p)) {
4094 p++;
4095 }
4096 beg = p;
4097 while (qemu_isgraph(*p)) {
4098 p++;
4099 }
4100 if (p - beg == 2 && !memcmp(beg, "on", p - beg)) {
4101 val = 1;
4102 } else if (p - beg == 3 && !memcmp(beg, "off", p - beg)) {
4103 val = 0;
4104 } else {
4105 monitor_printf(mon, "Expected 'on' or 'off'\n");
4106 goto fail;
4107 }
4108 qdict_put(qdict, key, qbool_from_int(val));
4109 }
4110 break;
4111 case '-':
4112 {
4113 const char *tmp = p;
4114 int skip_key = 0;
4115 /* option */
4116
4117 c = *typestr++;
4118 if (c == '\0')
4119 goto bad_type;
4120 while (qemu_isspace(*p))
4121 p++;
4122 if (*p == '-') {
4123 p++;
4124 if(c != *p) {
4125 if(!is_valid_option(p, typestr)) {
4126
4127 monitor_printf(mon, "%s: unsupported option -%c\n",
4128 cmdname, *p);
4129 goto fail;
4130 } else {
4131 skip_key = 1;
4132 }
4133 }
4134 if(skip_key) {
4135 p = tmp;
4136 } else {
4137 /* has option */
4138 p++;
4139 qdict_put(qdict, key, qbool_from_int(1));
4140 }
4141 }
4142 }
4143 break;
4144 default:
4145 bad_type:
4146 monitor_printf(mon, "%s: unknown type '%c'\n", cmdname, c);
4147 goto fail;
4148 }
4149 qemu_free(key);
4150 key = NULL;
4151 }
4152 /* check that all arguments were parsed */
4153 while (qemu_isspace(*p))
4154 p++;
4155 if (*p != '\0') {
4156 monitor_printf(mon, "%s: extraneous characters at the end of line\n",
4157 cmdname);
4158 goto fail;
4159 }
4160
4161 return cmd;
4162
4163 fail:
4164 qemu_free(key);
4165 return NULL;
4166 }
4167
4168 void monitor_set_error(Monitor *mon, QError *qerror)
4169 {
4170 /* report only the first error */
4171 if (!mon->error) {
4172 mon->error = qerror;
4173 } else {
4174 MON_DEBUG("Additional error report at %s:%d\n",
4175 qerror->file, qerror->linenr);
4176 QDECREF(qerror);
4177 }
4178 }
4179
4180 static void handler_audit(Monitor *mon, const mon_cmd_t *cmd, int ret)
4181 {
4182 if (ret && !monitor_has_error(mon)) {
4183 /*
4184 * If it returns failure, it must have passed on error.
4185 *
4186 * Action: Report an internal error to the client if in QMP.
4187 */
4188 qerror_report(QERR_UNDEFINED_ERROR);
4189 MON_DEBUG("command '%s' returned failure but did not pass an error\n",
4190 cmd->name);
4191 }
4192
4193 #ifdef CONFIG_DEBUG_MONITOR
4194 if (!ret && monitor_has_error(mon)) {
4195 /*
4196 * If it returns success, it must not have passed an error.
4197 *
4198 * Action: Report the passed error to the client.
4199 */
4200 MON_DEBUG("command '%s' returned success but passed an error\n",
4201 cmd->name);
4202 }
4203
4204 if (mon_print_count_get(mon) > 0 && strcmp(cmd->name, "info") != 0) {
4205 /*
4206 * Handlers should not call Monitor print functions.
4207 *
4208 * Action: Ignore them in QMP.
4209 *
4210 * (XXX: we don't check any 'info' or 'query' command here
4211 * because the user print function _is_ called by do_info(), hence
4212 * we will trigger this check. This problem will go away when we
4213 * make 'query' commands real and kill do_info())
4214 */
4215 MON_DEBUG("command '%s' called print functions %d time(s)\n",
4216 cmd->name, mon_print_count_get(mon));
4217 }
4218 #endif
4219 }
4220
4221 static void handle_user_command(Monitor *mon, const char *cmdline)
4222 {
4223 QDict *qdict;
4224 const mon_cmd_t *cmd;
4225
4226 qdict = qdict_new();
4227
4228 cmd = monitor_parse_command(mon, cmdline, qdict);
4229 if (!cmd)
4230 goto out;
4231
4232 if (handler_is_async(cmd)) {
4233 user_async_cmd_handler(mon, cmd, qdict);
4234 } else if (handler_is_qobject(cmd)) {
4235 QObject *data = NULL;
4236
4237 /* XXX: ignores the error code */
4238 cmd->mhandler.cmd_new(mon, qdict, &data);
4239 assert(!monitor_has_error(mon));
4240 if (data) {
4241 cmd->user_print(mon, data);
4242 qobject_decref(data);
4243 }
4244 } else {
4245 cmd->mhandler.cmd(mon, qdict);
4246 }
4247
4248 out:
4249 QDECREF(qdict);
4250 }
4251
4252 static void cmd_completion(const char *name, const char *list)
4253 {
4254 const char *p, *pstart;
4255 char cmd[128];
4256 int len;
4257
4258 p = list;
4259 for(;;) {
4260 pstart = p;
4261 p = strchr(p, '|');
4262 if (!p)
4263 p = pstart + strlen(pstart);
4264 len = p - pstart;
4265 if (len > sizeof(cmd) - 2)
4266 len = sizeof(cmd) - 2;
4267 memcpy(cmd, pstart, len);
4268 cmd[len] = '\0';
4269 if (name[0] == '\0' || !strncmp(name, cmd, strlen(name))) {
4270 readline_add_completion(cur_mon->rs, cmd);
4271 }
4272 if (*p == '\0')
4273 break;
4274 p++;
4275 }
4276 }
4277
4278 static void file_completion(const char *input)
4279 {
4280 DIR *ffs;
4281 struct dirent *d;
4282 char path[1024];
4283 char file[1024], file_prefix[1024];
4284 int input_path_len;
4285 const char *p;
4286
4287 p = strrchr(input, '/');
4288 if (!p) {
4289 input_path_len = 0;
4290 pstrcpy(file_prefix, sizeof(file_prefix), input);
4291 pstrcpy(path, sizeof(path), ".");
4292 } else {
4293 input_path_len = p - input + 1;
4294 memcpy(path, input, input_path_len);
4295 if (input_path_len > sizeof(path) - 1)
4296 input_path_len = sizeof(path) - 1;
4297 path[input_path_len] = '\0';
4298 pstrcpy(file_prefix, sizeof(file_prefix), p + 1);
4299 }
4300 #ifdef DEBUG_COMPLETION
4301 monitor_printf(cur_mon, "input='%s' path='%s' prefix='%s'\n",
4302 input, path, file_prefix);
4303 #endif
4304 ffs = opendir(path);
4305 if (!ffs)
4306 return;
4307 for(;;) {
4308 struct stat sb;
4309 d = readdir(ffs);
4310 if (!d)
4311 break;
4312
4313 if (strcmp(d->d_name, ".") == 0 || strcmp(d->d_name, "..") == 0) {
4314 continue;
4315 }
4316
4317 if (strstart(d->d_name, file_prefix, NULL)) {
4318 memcpy(file, input, input_path_len);
4319 if (input_path_len < sizeof(file))
4320 pstrcpy(file + input_path_len, sizeof(file) - input_path_len,
4321 d->d_name);
4322 /* stat the file to find out if it's a directory.
4323 * In that case add a slash to speed up typing long paths
4324 */
4325 stat(file, &sb);
4326 if(S_ISDIR(sb.st_mode))
4327 pstrcat(file, sizeof(file), "/");
4328 readline_add_completion(cur_mon->rs, file);
4329 }
4330 }
4331 closedir(ffs);
4332 }
4333
4334 static void block_completion_it(void *opaque, BlockDriverState *bs)
4335 {
4336 const char *name = bdrv_get_device_name(bs);
4337 const char *input = opaque;
4338
4339 if (input[0] == '\0' ||
4340 !strncmp(name, (char *)input, strlen(input))) {
4341 readline_add_completion(cur_mon->rs, name);
4342 }
4343 }
4344
4345 /* NOTE: this parser is an approximate form of the real command parser */
4346 static void parse_cmdline(const char *cmdline,
4347 int *pnb_args, char **args)
4348 {
4349 const char *p;
4350 int nb_args, ret;
4351 char buf[1024];
4352
4353 p = cmdline;
4354 nb_args = 0;
4355 for(;;) {
4356 while (qemu_isspace(*p))
4357 p++;
4358 if (*p == '\0')
4359 break;
4360 if (nb_args >= MAX_ARGS)
4361 break;
4362 ret = get_str(buf, sizeof(buf), &p);
4363 args[nb_args] = qemu_strdup(buf);
4364 nb_args++;
4365 if (ret < 0)
4366 break;
4367 }
4368 *pnb_args = nb_args;
4369 }
4370
4371 static const char *next_arg_type(const char *typestr)
4372 {
4373 const char *p = strchr(typestr, ':');
4374 return (p != NULL ? ++p : typestr);
4375 }
4376
4377 static void monitor_find_completion(const char *cmdline)
4378 {
4379 const char *cmdname;
4380 char *args[MAX_ARGS];
4381 int nb_args, i, len;
4382 const char *ptype, *str;
4383 const mon_cmd_t *cmd;
4384 const KeyDef *key;
4385
4386 parse_cmdline(cmdline, &nb_args, args);
4387 #ifdef DEBUG_COMPLETION
4388 for(i = 0; i < nb_args; i++) {
4389 monitor_printf(cur_mon, "arg%d = '%s'\n", i, (char *)args[i]);
4390 }
4391 #endif
4392
4393 /* if the line ends with a space, it means we want to complete the
4394 next arg */
4395 len = strlen(cmdline);
4396 if (len > 0 && qemu_isspace(cmdline[len - 1])) {
4397 if (nb_args >= MAX_ARGS) {
4398 goto cleanup;
4399 }
4400 args[nb_args++] = qemu_strdup("");
4401 }
4402 if (nb_args <= 1) {
4403 /* command completion */
4404 if (nb_args == 0)
4405 cmdname = "";
4406 else
4407 cmdname = args[0];
4408 readline_set_completion_index(cur_mon->rs, strlen(cmdname));
4409 for(cmd = mon_cmds; cmd->name != NULL; cmd++) {
4410 cmd_completion(cmdname, cmd->name);
4411 }
4412 } else {
4413 /* find the command */
4414 for (cmd = mon_cmds; cmd->name != NULL; cmd++) {
4415 if (compare_cmd(args[0], cmd->name)) {
4416 break;
4417 }
4418 }
4419 if (!cmd->name) {
4420 goto cleanup;
4421 }
4422
4423 ptype = next_arg_type(cmd->args_type);
4424 for(i = 0; i < nb_args - 2; i++) {
4425 if (*ptype != '\0') {
4426 ptype = next_arg_type(ptype);
4427 while (*ptype == '?')
4428 ptype = next_arg_type(ptype);
4429 }
4430 }
4431 str = args[nb_args - 1];
4432 if (*ptype == '-' && ptype[1] != '\0') {
4433 ptype = next_arg_type(ptype);
4434 }
4435 switch(*ptype) {
4436 case 'F':
4437 /* file completion */
4438 readline_set_completion_index(cur_mon->rs, strlen(str));
4439 file_completion(str);
4440 break;
4441 case 'B':
4442 /* block device name completion */
4443 readline_set_completion_index(cur_mon->rs, strlen(str));
4444 bdrv_iterate(block_completion_it, (void *)str);
4445 break;
4446 case 's':
4447 /* XXX: more generic ? */
4448 if (!strcmp(cmd->name, "info")) {
4449 readline_set_completion_index(cur_mon->rs, strlen(str));
4450 for(cmd = info_cmds; cmd->name != NULL; cmd++) {
4451 cmd_completion(str, cmd->name);
4452 }
4453 } else if (!strcmp(cmd->name, "sendkey")) {
4454 char *sep = strrchr(str, '-');
4455 if (sep)
4456 str = sep + 1;
4457 readline_set_completion_index(cur_mon->rs, strlen(str));
4458 for(key = key_defs; key->name != NULL; key++) {
4459 cmd_completion(str, key->name);
4460 }
4461 } else if (!strcmp(cmd->name, "help|?")) {
4462 readline_set_completion_index(cur_mon->rs, strlen(str));
4463 for (cmd = mon_cmds; cmd->name != NULL; cmd++) {
4464 cmd_completion(str, cmd->name);
4465 }
4466 }
4467 break;
4468 default:
4469 break;
4470 }
4471 }
4472
4473 cleanup:
4474 for (i = 0; i < nb_args; i++) {
4475 qemu_free(args[i]);
4476 }
4477 }
4478
4479 static int monitor_can_read(void *opaque)
4480 {
4481 Monitor *mon = opaque;
4482
4483 return (mon->suspend_cnt == 0) ? 1 : 0;
4484 }
4485
4486 static int invalid_qmp_mode(const Monitor *mon, const char *cmd_name)
4487 {
4488 int is_cap = compare_cmd(cmd_name, "qmp_capabilities");
4489 return (qmp_cmd_mode(mon) ? is_cap : !is_cap);
4490 }
4491
4492 /*
4493 * Argument validation rules:
4494 *
4495 * 1. The argument must exist in cmd_args qdict
4496 * 2. The argument type must be the expected one
4497 *
4498 * Special case: If the argument doesn't exist in cmd_args and
4499 * the QMP_ACCEPT_UNKNOWNS flag is set, then the
4500 * checking is skipped for it.
4501 */
4502 static int check_client_args_type(const QDict *client_args,
4503 const QDict *cmd_args, int flags)
4504 {
4505 const QDictEntry *ent;
4506
4507 for (ent = qdict_first(client_args); ent;ent = qdict_next(client_args,ent)){
4508 QObject *obj;
4509 QString *arg_type;
4510 const QObject *client_arg = qdict_entry_value(ent);
4511 const char *client_arg_name = qdict_entry_key(ent);
4512
4513 obj = qdict_get(cmd_args, client_arg_name);
4514 if (!obj) {
4515 if (flags & QMP_ACCEPT_UNKNOWNS) {
4516 /* handler accepts unknowns */
4517 continue;
4518 }
4519 /* client arg doesn't exist */
4520 qerror_report(QERR_INVALID_PARAMETER, client_arg_name);
4521 return -1;
4522 }
4523
4524 arg_type = qobject_to_qstring(obj);
4525 assert(arg_type != NULL);
4526
4527 /* check if argument's type is correct */
4528 switch (qstring_get_str(arg_type)[0]) {
4529 case 'F':
4530 case 'B':
4531 case 's':
4532 if (qobject_type(client_arg) != QTYPE_QSTRING) {
4533 qerror_report(QERR_INVALID_PARAMETER_TYPE, client_arg_name,
4534 "string");
4535 return -1;
4536 }
4537 break;
4538 case 'i':
4539 case 'l':
4540 case 'M':
4541 case 'o':
4542 if (qobject_type(client_arg) != QTYPE_QINT) {
4543 qerror_report(QERR_INVALID_PARAMETER_TYPE, client_arg_name,
4544 "int");
4545 return -1;
4546 }
4547 break;
4548 case 'T':
4549 if (qobject_type(client_arg) != QTYPE_QINT &&
4550 qobject_type(client_arg) != QTYPE_QFLOAT) {
4551 qerror_report(QERR_INVALID_PARAMETER_TYPE, client_arg_name,
4552 "number");
4553 return -1;
4554 }
4555 break;
4556 case 'b':
4557 case '-':
4558 if (qobject_type(client_arg) != QTYPE_QBOOL) {
4559 qerror_report(QERR_INVALID_PARAMETER_TYPE, client_arg_name,
4560 "bool");
4561 return -1;
4562 }
4563 break;
4564 case 'O':
4565 assert(flags & QMP_ACCEPT_UNKNOWNS);
4566 break;
4567 case '/':
4568 case '.':
4569 /*
4570 * These types are not supported by QMP and thus are not
4571 * handled here. Fall through.
4572 */
4573 default:
4574 abort();
4575 }
4576 }
4577
4578 return 0;
4579 }
4580
4581 /*
4582 * - Check if the client has passed all mandatory args
4583 * - Set special flags for argument validation
4584 */
4585 static int check_mandatory_args(const QDict *cmd_args,
4586 const QDict *client_args, int *flags)
4587 {
4588 const QDictEntry *ent;
4589
4590 for (ent = qdict_first(cmd_args); ent; ent = qdict_next(cmd_args, ent)) {
4591 const char *cmd_arg_name = qdict_entry_key(ent);
4592 QString *type = qobject_to_qstring(qdict_entry_value(ent));
4593 assert(type != NULL);
4594
4595 if (qstring_get_str(type)[0] == 'O') {
4596 assert((*flags & QMP_ACCEPT_UNKNOWNS) == 0);
4597 *flags |= QMP_ACCEPT_UNKNOWNS;
4598 } else if (qstring_get_str(type)[0] != '-' &&
4599 qstring_get_str(type)[1] != '?' &&
4600 !qdict_haskey(client_args, cmd_arg_name)) {
4601 qerror_report(QERR_MISSING_PARAMETER, cmd_arg_name);
4602 return -1;
4603 }
4604 }
4605
4606 return 0;
4607 }
4608
4609 static QDict *qdict_from_args_type(const char *args_type)
4610 {
4611 int i;
4612 QDict *qdict;
4613 QString *key, *type, *cur_qs;
4614
4615 assert(args_type != NULL);
4616
4617 qdict = qdict_new();
4618
4619 if (args_type == NULL || args_type[0] == '\0') {
4620 /* no args, empty qdict */
4621 goto out;
4622 }
4623
4624 key = qstring_new();
4625 type = qstring_new();
4626
4627 cur_qs = key;
4628
4629 for (i = 0;; i++) {
4630 switch (args_type[i]) {
4631 case ',':
4632 case '\0':
4633 qdict_put(qdict, qstring_get_str(key), type);
4634 QDECREF(key);
4635 if (args_type[i] == '\0') {
4636 goto out;
4637 }
4638 type = qstring_new(); /* qdict has ref */
4639 cur_qs = key = qstring_new();
4640 break;
4641 case ':':
4642 cur_qs = type;
4643 break;
4644 default:
4645 qstring_append_chr(cur_qs, args_type[i]);
4646 break;
4647 }
4648 }
4649
4650 out:
4651 return qdict;
4652 }
4653
4654 /*
4655 * Client argument checking rules:
4656 *
4657 * 1. Client must provide all mandatory arguments
4658 * 2. Each argument provided by the client must be expected
4659 * 3. Each argument provided by the client must have the type expected
4660 * by the command
4661 */
4662 static int qmp_check_client_args(const mon_cmd_t *cmd, QDict *client_args)
4663 {
4664 int flags, err;
4665 QDict *cmd_args;
4666
4667 cmd_args = qdict_from_args_type(cmd->args_type);
4668
4669 flags = 0;
4670 err = check_mandatory_args(cmd_args, client_args, &flags);
4671 if (err) {
4672 goto out;
4673 }
4674
4675 err = check_client_args_type(client_args, cmd_args, flags);
4676
4677 out:
4678 QDECREF(cmd_args);
4679 return err;
4680 }
4681
4682 /*
4683 * Input object checking rules
4684 *
4685 * 1. Input object must be a dict
4686 * 2. The "execute" key must exist
4687 * 3. The "execute" key must be a string
4688 * 4. If the "arguments" key exists, it must be a dict
4689 * 5. If the "id" key exists, it can be anything (ie. json-value)
4690 * 6. Any argument not listed above is considered invalid
4691 */
4692 static QDict *qmp_check_input_obj(QObject *input_obj)
4693 {
4694 const QDictEntry *ent;
4695 int has_exec_key = 0;
4696 QDict *input_dict;
4697
4698 if (qobject_type(input_obj) != QTYPE_QDICT) {
4699 qerror_report(QERR_QMP_BAD_INPUT_OBJECT, "object");
4700 return NULL;
4701 }
4702
4703 input_dict = qobject_to_qdict(input_obj);
4704
4705 for (ent = qdict_first(input_dict); ent; ent = qdict_next(input_dict, ent)){
4706 const char *arg_name = qdict_entry_key(ent);
4707 const QObject *arg_obj = qdict_entry_value(ent);
4708
4709 if (!strcmp(arg_name, "execute")) {
4710 if (qobject_type(arg_obj) != QTYPE_QSTRING) {
4711 qerror_report(QERR_QMP_BAD_INPUT_OBJECT_MEMBER, "execute",
4712 "string");
4713 return NULL;
4714 }
4715 has_exec_key = 1;
4716 } else if (!strcmp(arg_name, "arguments")) {
4717 if (qobject_type(arg_obj) != QTYPE_QDICT) {
4718 qerror_report(QERR_QMP_BAD_INPUT_OBJECT_MEMBER, "arguments",
4719 "object");
4720 return NULL;
4721 }
4722 } else if (!strcmp(arg_name, "id")) {
4723 /* FIXME: check duplicated IDs for async commands */
4724 } else {
4725 qerror_report(QERR_QMP_EXTRA_MEMBER, arg_name);
4726 return NULL;
4727 }
4728 }
4729
4730 if (!has_exec_key) {
4731 qerror_report(QERR_QMP_BAD_INPUT_OBJECT, "execute");
4732 return NULL;
4733 }
4734
4735 return input_dict;
4736 }
4737
4738 static void qmp_call_query_cmd(Monitor *mon, const mon_cmd_t *cmd)
4739 {
4740 QObject *ret_data = NULL;
4741
4742 if (handler_is_async(cmd)) {
4743 qmp_async_info_handler(mon, cmd);
4744 if (monitor_has_error(mon)) {
4745 monitor_protocol_emitter(mon, NULL);
4746 }
4747 } else {
4748 cmd->mhandler.info_new(mon, &ret_data);
4749 monitor_protocol_emitter(mon, ret_data);
4750 qobject_decref(ret_data);
4751 }
4752 }
4753
4754 static void qmp_call_cmd(Monitor *mon, const mon_cmd_t *cmd,
4755 const QDict *params)
4756 {
4757 int ret;
4758 QObject *data = NULL;
4759
4760 mon_print_count_init(mon);
4761
4762 ret = cmd->mhandler.cmd_new(mon, params, &data);
4763 handler_audit(mon, cmd, ret);
4764 monitor_protocol_emitter(mon, data);
4765 qobject_decref(data);
4766 }
4767
4768 static void handle_qmp_command(JSONMessageParser *parser, QList *tokens)
4769 {
4770 int err;
4771 QObject *obj;
4772 QDict *input, *args;
4773 const mon_cmd_t *cmd;
4774 Monitor *mon = cur_mon;
4775 const char *cmd_name, *query_cmd;
4776
4777 query_cmd = NULL;
4778 args = input = NULL;
4779
4780 obj = json_parser_parse(tokens, NULL);
4781 if (!obj) {
4782 // FIXME: should be triggered in json_parser_parse()
4783 qerror_report(QERR_JSON_PARSING);
4784 goto err_out;
4785 }
4786
4787 input = qmp_check_input_obj(obj);
4788 if (!input) {
4789 qobject_decref(obj);
4790 goto err_out;
4791 }
4792
4793 mon->mc->id = qdict_get(input, "id");
4794 qobject_incref(mon->mc->id);
4795
4796 cmd_name = qdict_get_str(input, "execute");
4797 if (invalid_qmp_mode(mon, cmd_name)) {
4798 qerror_report(QERR_COMMAND_NOT_FOUND, cmd_name);
4799 goto err_out;
4800 }
4801
4802 if (strstart(cmd_name, "query-", &query_cmd)) {
4803 cmd = qmp_find_query_cmd(query_cmd);
4804 } else {
4805 cmd = qmp_find_cmd(cmd_name);
4806 }
4807
4808 if (!cmd) {
4809 qerror_report(QERR_COMMAND_NOT_FOUND, cmd_name);
4810 goto err_out;
4811 }
4812
4813 obj = qdict_get(input, "arguments");
4814 if (!obj) {
4815 args = qdict_new();
4816 } else {
4817 args = qobject_to_qdict(obj);
4818 QINCREF(args);
4819 }
4820
4821 err = qmp_check_client_args(cmd, args);
4822 if (err < 0) {
4823 goto err_out;
4824 }
4825
4826 if (query_cmd) {
4827 qmp_call_query_cmd(mon, cmd);
4828 } else if (handler_is_async(cmd)) {
4829 err = qmp_async_cmd_handler(mon, cmd, args);
4830 if (err) {
4831 /* emit the error response */
4832 goto err_out;
4833 }
4834 } else {
4835 qmp_call_cmd(mon, cmd, args);
4836 }
4837
4838 goto out;
4839
4840 err_out:
4841 monitor_protocol_emitter(mon, NULL);
4842 out:
4843 QDECREF(input);
4844 QDECREF(args);
4845 }
4846
4847 /**
4848 * monitor_control_read(): Read and handle QMP input
4849 */
4850 static void monitor_control_read(void *opaque, const uint8_t *buf, int size)
4851 {
4852 Monitor *old_mon = cur_mon;
4853
4854 cur_mon = opaque;
4855
4856 json_message_parser_feed(&cur_mon->mc->parser, (const char *) buf, size);
4857
4858 cur_mon = old_mon;
4859 }
4860
4861 static void monitor_read(void *opaque, const uint8_t *buf, int size)
4862 {
4863 Monitor *old_mon = cur_mon;
4864 int i;
4865
4866 cur_mon = opaque;
4867
4868 if (cur_mon->rs) {
4869 for (i = 0; i < size; i++)
4870 readline_handle_byte(cur_mon->rs, buf[i]);
4871 } else {
4872 if (size == 0 || buf[size - 1] != 0)
4873 monitor_printf(cur_mon, "corrupted command\n");
4874 else
4875 handle_user_command(cur_mon, (char *)buf);
4876 }
4877
4878 cur_mon = old_mon;
4879 }
4880
4881 static void monitor_command_cb(Monitor *mon, const char *cmdline, void *opaque)
4882 {
4883 monitor_suspend(mon);
4884 handle_user_command(mon, cmdline);
4885 monitor_resume(mon);
4886 }
4887
4888 int monitor_suspend(Monitor *mon)
4889 {
4890 if (!mon->rs)
4891 return -ENOTTY;
4892 mon->suspend_cnt++;
4893 return 0;
4894 }
4895
4896 void monitor_resume(Monitor *mon)
4897 {
4898 if (!mon->rs)
4899 return;
4900 if (--mon->suspend_cnt == 0)
4901 readline_show_prompt(mon->rs);
4902 }
4903
4904 static QObject *get_qmp_greeting(void)
4905 {
4906 QObject *ver;
4907
4908 do_info_version(NULL, &ver);
4909 return qobject_from_jsonf("{'QMP':{'version': %p,'capabilities': []}}",ver);
4910 }
4911
4912 /**
4913 * monitor_control_event(): Print QMP gretting
4914 */
4915 static void monitor_control_event(void *opaque, int event)
4916 {
4917 QObject *data;
4918 Monitor *mon = opaque;
4919
4920 switch (event) {
4921 case CHR_EVENT_OPENED:
4922 mon->mc->command_mode = 0;
4923 json_message_parser_init(&mon->mc->parser, handle_qmp_command);
4924 data = get_qmp_greeting();
4925 monitor_json_emitter(mon, data);
4926 qobject_decref(data);
4927 break;
4928 case CHR_EVENT_CLOSED:
4929 json_message_parser_destroy(&mon->mc->parser);
4930 break;
4931 }
4932 }
4933
4934 static void monitor_event(void *opaque, int event)
4935 {
4936 Monitor *mon = opaque;
4937
4938 switch (event) {
4939 case CHR_EVENT_MUX_IN:
4940 mon->mux_out = 0;
4941 if (mon->reset_seen) {
4942 readline_restart(mon->rs);
4943 monitor_resume(mon);
4944 monitor_flush(mon);
4945 } else {
4946 mon->suspend_cnt = 0;
4947 }
4948 break;
4949
4950 case CHR_EVENT_MUX_OUT:
4951 if (mon->reset_seen) {
4952 if (mon->suspend_cnt == 0) {
4953 monitor_printf(mon, "\n");
4954 }
4955 monitor_flush(mon);
4956 monitor_suspend(mon);
4957 } else {
4958 mon->suspend_cnt++;
4959 }
4960 mon->mux_out = 1;
4961 break;
4962
4963 case CHR_EVENT_OPENED:
4964 monitor_printf(mon, "QEMU %s monitor - type 'help' for more "
4965 "information\n", QEMU_VERSION);
4966 if (!mon->mux_out) {
4967 readline_show_prompt(mon->rs);
4968 }
4969 mon->reset_seen = 1;
4970 break;
4971 }
4972 }
4973
4974
4975 /*
4976 * Local variables:
4977 * c-indent-level: 4
4978 * c-basic-offset: 4
4979 * tab-width: 8
4980 * End:
4981 */
4982
4983 void monitor_init(CharDriverState *chr, int flags)
4984 {
4985 static int is_first_init = 1;
4986 Monitor *mon;
4987
4988 if (is_first_init) {
4989 key_timer = qemu_new_timer(vm_clock, release_keys, NULL);
4990 is_first_init = 0;
4991 }
4992
4993 mon = qemu_mallocz(sizeof(*mon));
4994
4995 mon->chr = chr;
4996 mon->flags = flags;
4997 if (flags & MONITOR_USE_READLINE) {
4998 mon->rs = readline_init(mon, monitor_find_completion);
4999 monitor_read_command(mon, 0);
5000 }
5001
5002 if (monitor_ctrl_mode(mon)) {
5003 mon->mc = qemu_mallocz(sizeof(MonitorControl));
5004 /* Control mode requires special handlers */
5005 qemu_chr_add_handlers(chr, monitor_can_read, monitor_control_read,
5006 monitor_control_event, mon);
5007 } else {
5008 qemu_chr_add_handlers(chr, monitor_can_read, monitor_read,
5009 monitor_event, mon);
5010 }
5011
5012 QLIST_INSERT_HEAD(&mon_list, mon, entry);
5013 if (!default_mon || (flags & MONITOR_IS_DEFAULT))
5014 default_mon = mon;
5015 }
5016
5017 static void bdrv_password_cb(Monitor *mon, const char *password, void *opaque)
5018 {
5019 BlockDriverState *bs = opaque;
5020 int ret = 0;
5021
5022 if (bdrv_set_key(bs, password) != 0) {
5023 monitor_printf(mon, "invalid password\n");
5024 ret = -EPERM;
5025 }
5026 if (mon->password_completion_cb)
5027 mon->password_completion_cb(mon->password_opaque, ret);
5028
5029 monitor_read_command(mon, 1);
5030 }
5031
5032 int monitor_read_bdrv_key_start(Monitor *mon, BlockDriverState *bs,
5033 BlockDriverCompletionFunc *completion_cb,
5034 void *opaque)
5035 {
5036 int err;
5037
5038 if (!bdrv_key_required(bs)) {
5039 if (completion_cb)
5040 completion_cb(opaque, 0);
5041 return 0;
5042 }
5043
5044 if (monitor_ctrl_mode(mon)) {
5045 qerror_report(QERR_DEVICE_ENCRYPTED, bdrv_get_device_name(bs));
5046 return -1;
5047 }
5048
5049 monitor_printf(mon, "%s (%s) is encrypted.\n", bdrv_get_device_name(bs),
5050 bdrv_get_encrypted_filename(bs));
5051
5052 mon->password_completion_cb = completion_cb;
5053 mon->password_opaque = opaque;
5054
5055 err = monitor_read_password(mon, bdrv_password_cb, bs);
5056
5057 if (err && completion_cb)
5058 completion_cb(opaque, err);
5059
5060 return err;
5061 }