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 25 #include "qemu/osdep.h" 26 #include "monitor-internal.h" 27 #include "qapi/error.h" 28 #include "qapi/opts-visitor.h" 29 #include "qapi/qapi-emit-events.h" 30 #include "qapi/qapi-visit-control.h" 31 #include "qapi/qmp/qdict.h" 32 #include "qemu/error-report.h" 33 #include "qemu/option.h" 34 #include "sysemu/qtest.h" 35 #include "sysemu/sysemu.h" 36 #include "trace.h" 37 38 /* 39 * To prevent flooding clients, events can be throttled. The 40 * throttling is calculated globally, rather than per-Monitor 41 * instance. 42 */ 43 typedef struct MonitorQAPIEventState { 44 QAPIEvent event; /* Throttling state for this event type and... */ 45 QDict *data; /* ... data, see qapi_event_throttle_equal() */ 46 QEMUTimer *timer; /* Timer for handling delayed events */ 47 QDict *qdict; /* Delayed event (if any) */ 48 } MonitorQAPIEventState; 49 50 typedef struct { 51 int64_t rate; /* Minimum time (in ns) between two events */ 52 } MonitorQAPIEventConf; 53 54 /* Shared monitor I/O thread */ 55 IOThread *mon_iothread; 56 57 /* Coroutine to dispatch the requests received from I/O thread */ 58 Coroutine *qmp_dispatcher_co; 59 60 /* Set to true when the dispatcher coroutine should terminate */ 61 bool qmp_dispatcher_co_shutdown; 62 63 /* 64 * qmp_dispatcher_co_busy is used for synchronisation between the 65 * monitor thread and the main thread to ensure that the dispatcher 66 * coroutine never gets scheduled a second time when it's already 67 * scheduled (scheduling the same coroutine twice is forbidden). 68 * 69 * It is true if the coroutine is active and processing requests. 70 * Additional requests may then be pushed onto mon->qmp_requests, 71 * and @qmp_dispatcher_co_shutdown may be set without further ado. 72 * @qmp_dispatcher_co_busy must not be woken up in this case. 73 * 74 * If false, you also have to set @qmp_dispatcher_co_busy to true and 75 * wake up @qmp_dispatcher_co after pushing the new requests. 76 * 77 * The coroutine will automatically change this variable back to false 78 * before it yields. Nobody else may set the variable to false. 79 * 80 * Access must be atomic for thread safety. 81 */ 82 bool qmp_dispatcher_co_busy; 83 84 /* 85 * Protects mon_list, monitor_qapi_event_state, coroutine_mon, 86 * monitor_destroyed. 87 */ 88 QemuMutex monitor_lock; 89 static GHashTable *monitor_qapi_event_state; 90 static GHashTable *coroutine_mon; /* Maps Coroutine* to Monitor* */ 91 92 MonitorList mon_list; 93 int mon_refcount; 94 static bool monitor_destroyed; 95 96 Monitor *monitor_cur(void) 97 { 98 Monitor *mon; 99 100 qemu_mutex_lock(&monitor_lock); 101 mon = g_hash_table_lookup(coroutine_mon, qemu_coroutine_self()); 102 qemu_mutex_unlock(&monitor_lock); 103 104 return mon; 105 } 106 107 /** 108 * Sets a new current monitor and returns the old one. 109 * 110 * If a non-NULL monitor is set for a coroutine, another call 111 * resetting it to NULL is required before the coroutine terminates, 112 * otherwise a stale entry would remain in the hash table. 113 */ 114 Monitor *monitor_set_cur(Coroutine *co, Monitor *mon) 115 { 116 Monitor *old_monitor = monitor_cur(); 117 118 qemu_mutex_lock(&monitor_lock); 119 if (mon) { 120 g_hash_table_replace(coroutine_mon, co, mon); 121 } else { 122 g_hash_table_remove(coroutine_mon, co); 123 } 124 qemu_mutex_unlock(&monitor_lock); 125 126 return old_monitor; 127 } 128 129 /** 130 * Is the current monitor, if any, a QMP monitor? 131 */ 132 bool monitor_cur_is_qmp(void) 133 { 134 Monitor *cur_mon = monitor_cur(); 135 136 return cur_mon && monitor_is_qmp(cur_mon); 137 } 138 139 /** 140 * Is @mon is using readline? 141 * Note: not all HMP monitors use readline, e.g., gdbserver has a 142 * non-interactive HMP monitor, so readline is not used there. 143 */ 144 static inline bool monitor_uses_readline(const MonitorHMP *mon) 145 { 146 return mon->use_readline; 147 } 148 149 static inline bool monitor_is_hmp_non_interactive(const Monitor *mon) 150 { 151 if (monitor_is_qmp(mon)) { 152 return false; 153 } 154 155 return !monitor_uses_readline(container_of(mon, MonitorHMP, common)); 156 } 157 158 static void monitor_flush_locked(Monitor *mon); 159 160 static gboolean monitor_unblocked(GIOChannel *chan, GIOCondition cond, 161 void *opaque) 162 { 163 Monitor *mon = opaque; 164 165 qemu_mutex_lock(&mon->mon_lock); 166 mon->out_watch = 0; 167 monitor_flush_locked(mon); 168 qemu_mutex_unlock(&mon->mon_lock); 169 return FALSE; 170 } 171 172 /* Caller must hold mon->mon_lock */ 173 static void monitor_flush_locked(Monitor *mon) 174 { 175 int rc; 176 size_t len; 177 const char *buf; 178 179 if (mon->skip_flush) { 180 return; 181 } 182 183 buf = mon->outbuf->str; 184 len = mon->outbuf->len; 185 186 if (len && !mon->mux_out) { 187 rc = qemu_chr_fe_write(&mon->chr, (const uint8_t *) buf, len); 188 if ((rc < 0 && errno != EAGAIN) || (rc == len)) { 189 /* all flushed or error */ 190 g_string_truncate(mon->outbuf, 0); 191 return; 192 } 193 if (rc > 0) { 194 /* partial write */ 195 g_string_erase(mon->outbuf, 0, rc); 196 } 197 if (mon->out_watch == 0) { 198 mon->out_watch = 199 qemu_chr_fe_add_watch(&mon->chr, G_IO_OUT | G_IO_HUP, 200 monitor_unblocked, mon); 201 } 202 } 203 } 204 205 void monitor_flush(Monitor *mon) 206 { 207 qemu_mutex_lock(&mon->mon_lock); 208 monitor_flush_locked(mon); 209 qemu_mutex_unlock(&mon->mon_lock); 210 } 211 212 /* flush at every end of line */ 213 int monitor_puts(Monitor *mon, const char *str) 214 { 215 int i; 216 char c; 217 218 qemu_mutex_lock(&mon->mon_lock); 219 for (i = 0; str[i]; i++) { 220 c = str[i]; 221 if (c == '\n') { 222 g_string_append_c(mon->outbuf, '\r'); 223 } 224 g_string_append_c(mon->outbuf, c); 225 if (c == '\n') { 226 monitor_flush_locked(mon); 227 } 228 } 229 qemu_mutex_unlock(&mon->mon_lock); 230 231 return i; 232 } 233 234 int monitor_vprintf(Monitor *mon, const char *fmt, va_list ap) 235 { 236 char *buf; 237 int n; 238 239 if (!mon) { 240 return -1; 241 } 242 243 if (monitor_is_qmp(mon)) { 244 return -1; 245 } 246 247 buf = g_strdup_vprintf(fmt, ap); 248 n = monitor_puts(mon, buf); 249 g_free(buf); 250 return n; 251 } 252 253 int monitor_printf(Monitor *mon, const char *fmt, ...) 254 { 255 int ret; 256 257 va_list ap; 258 va_start(ap, fmt); 259 ret = monitor_vprintf(mon, fmt, ap); 260 va_end(ap); 261 return ret; 262 } 263 264 /* 265 * Print to current monitor if we have one, else to stderr. 266 */ 267 int error_vprintf(const char *fmt, va_list ap) 268 { 269 Monitor *cur_mon = monitor_cur(); 270 271 if (cur_mon && !monitor_cur_is_qmp()) { 272 return monitor_vprintf(cur_mon, fmt, ap); 273 } 274 return vfprintf(stderr, fmt, ap); 275 } 276 277 int error_vprintf_unless_qmp(const char *fmt, va_list ap) 278 { 279 Monitor *cur_mon = monitor_cur(); 280 281 if (!cur_mon) { 282 return vfprintf(stderr, fmt, ap); 283 } 284 if (!monitor_cur_is_qmp()) { 285 return monitor_vprintf(cur_mon, fmt, ap); 286 } 287 return -1; 288 } 289 290 291 static MonitorQAPIEventConf monitor_qapi_event_conf[QAPI_EVENT__MAX] = { 292 /* Limit guest-triggerable events to 1 per second */ 293 [QAPI_EVENT_RTC_CHANGE] = { 1000 * SCALE_MS }, 294 [QAPI_EVENT_WATCHDOG] = { 1000 * SCALE_MS }, 295 [QAPI_EVENT_BALLOON_CHANGE] = { 1000 * SCALE_MS }, 296 [QAPI_EVENT_QUORUM_REPORT_BAD] = { 1000 * SCALE_MS }, 297 [QAPI_EVENT_QUORUM_FAILURE] = { 1000 * SCALE_MS }, 298 [QAPI_EVENT_VSERPORT_CHANGE] = { 1000 * SCALE_MS }, 299 [QAPI_EVENT_MEMORY_DEVICE_SIZE_CHANGE] = { 1000 * SCALE_MS }, 300 }; 301 302 /* 303 * Return the clock to use for recording an event's time. 304 * It's QEMU_CLOCK_REALTIME, except for qtests it's 305 * QEMU_CLOCK_VIRTUAL, to support testing rate limits. 306 * Beware: result is invalid before configure_accelerator(). 307 */ 308 static inline QEMUClockType monitor_get_event_clock(void) 309 { 310 return qtest_enabled() ? QEMU_CLOCK_VIRTUAL : QEMU_CLOCK_REALTIME; 311 } 312 313 /* 314 * Broadcast an event to all monitors. 315 * @qdict is the event object. Its member "event" must match @event. 316 * Caller must hold monitor_lock. 317 */ 318 static void monitor_qapi_event_emit(QAPIEvent event, QDict *qdict) 319 { 320 Monitor *mon; 321 MonitorQMP *qmp_mon; 322 323 trace_monitor_protocol_event_emit(event, qdict); 324 QTAILQ_FOREACH(mon, &mon_list, entry) { 325 if (!monitor_is_qmp(mon)) { 326 continue; 327 } 328 329 qmp_mon = container_of(mon, MonitorQMP, common); 330 if (qmp_mon->commands != &qmp_cap_negotiation_commands) { 331 qmp_send_response(qmp_mon, qdict); 332 } 333 } 334 } 335 336 static void monitor_qapi_event_handler(void *opaque); 337 338 /* 339 * Queue a new event for emission to Monitor instances, 340 * applying any rate limiting if required. 341 */ 342 static void 343 monitor_qapi_event_queue_no_reenter(QAPIEvent event, QDict *qdict) 344 { 345 MonitorQAPIEventConf *evconf; 346 MonitorQAPIEventState *evstate; 347 348 assert(event < QAPI_EVENT__MAX); 349 evconf = &monitor_qapi_event_conf[event]; 350 trace_monitor_protocol_event_queue(event, qdict, evconf->rate); 351 352 QEMU_LOCK_GUARD(&monitor_lock); 353 354 if (!evconf->rate) { 355 /* Unthrottled event */ 356 monitor_qapi_event_emit(event, qdict); 357 } else { 358 QDict *data = qobject_to(QDict, qdict_get(qdict, "data")); 359 MonitorQAPIEventState key = { .event = event, .data = data }; 360 361 evstate = g_hash_table_lookup(monitor_qapi_event_state, &key); 362 assert(!evstate || timer_pending(evstate->timer)); 363 364 if (evstate) { 365 /* 366 * Timer is pending for (at least) evconf->rate ns after 367 * last send. Store event for sending when timer fires, 368 * replacing a prior stored event if any. 369 */ 370 qobject_unref(evstate->qdict); 371 evstate->qdict = qobject_ref(qdict); 372 } else { 373 /* 374 * Last send was (at least) evconf->rate ns ago. 375 * Send immediately, and arm the timer to call 376 * monitor_qapi_event_handler() in evconf->rate ns. Any 377 * events arriving before then will be delayed until then. 378 */ 379 int64_t now = qemu_clock_get_ns(monitor_get_event_clock()); 380 381 monitor_qapi_event_emit(event, qdict); 382 383 evstate = g_new(MonitorQAPIEventState, 1); 384 evstate->event = event; 385 evstate->data = qobject_ref(data); 386 evstate->qdict = NULL; 387 evstate->timer = timer_new_ns(monitor_get_event_clock(), 388 monitor_qapi_event_handler, 389 evstate); 390 g_hash_table_add(monitor_qapi_event_state, evstate); 391 timer_mod_ns(evstate->timer, now + evconf->rate); 392 } 393 } 394 } 395 396 void qapi_event_emit(QAPIEvent event, QDict *qdict) 397 { 398 /* 399 * monitor_qapi_event_queue_no_reenter() is not reentrant: it 400 * would deadlock on monitor_lock. Work around by queueing 401 * events in thread-local storage. 402 * TODO: remove this, make it re-enter safe. 403 */ 404 typedef struct MonitorQapiEvent { 405 QAPIEvent event; 406 QDict *qdict; 407 QSIMPLEQ_ENTRY(MonitorQapiEvent) entry; 408 } MonitorQapiEvent; 409 static __thread QSIMPLEQ_HEAD(, MonitorQapiEvent) event_queue; 410 static __thread bool reentered; 411 MonitorQapiEvent *ev; 412 413 if (!reentered) { 414 QSIMPLEQ_INIT(&event_queue); 415 } 416 417 ev = g_new(MonitorQapiEvent, 1); 418 ev->qdict = qobject_ref(qdict); 419 ev->event = event; 420 QSIMPLEQ_INSERT_TAIL(&event_queue, ev, entry); 421 if (reentered) { 422 return; 423 } 424 425 reentered = true; 426 427 while ((ev = QSIMPLEQ_FIRST(&event_queue)) != NULL) { 428 QSIMPLEQ_REMOVE_HEAD(&event_queue, entry); 429 monitor_qapi_event_queue_no_reenter(ev->event, ev->qdict); 430 qobject_unref(ev->qdict); 431 g_free(ev); 432 } 433 434 reentered = false; 435 } 436 437 /* 438 * This function runs evconf->rate ns after sending a throttled 439 * event. 440 * If another event has since been stored, send it. 441 */ 442 static void monitor_qapi_event_handler(void *opaque) 443 { 444 MonitorQAPIEventState *evstate = opaque; 445 MonitorQAPIEventConf *evconf = &monitor_qapi_event_conf[evstate->event]; 446 447 trace_monitor_protocol_event_handler(evstate->event, evstate->qdict); 448 QEMU_LOCK_GUARD(&monitor_lock); 449 450 if (evstate->qdict) { 451 int64_t now = qemu_clock_get_ns(monitor_get_event_clock()); 452 453 monitor_qapi_event_emit(evstate->event, evstate->qdict); 454 qobject_unref(evstate->qdict); 455 evstate->qdict = NULL; 456 timer_mod_ns(evstate->timer, now + evconf->rate); 457 } else { 458 g_hash_table_remove(monitor_qapi_event_state, evstate); 459 qobject_unref(evstate->data); 460 timer_free(evstate->timer); 461 g_free(evstate); 462 } 463 } 464 465 static unsigned int qapi_event_throttle_hash(const void *key) 466 { 467 const MonitorQAPIEventState *evstate = key; 468 unsigned int hash = evstate->event * 255; 469 470 if (evstate->event == QAPI_EVENT_VSERPORT_CHANGE) { 471 hash += g_str_hash(qdict_get_str(evstate->data, "id")); 472 } 473 474 if (evstate->event == QAPI_EVENT_QUORUM_REPORT_BAD) { 475 hash += g_str_hash(qdict_get_str(evstate->data, "node-name")); 476 } 477 478 return hash; 479 } 480 481 static gboolean qapi_event_throttle_equal(const void *a, const void *b) 482 { 483 const MonitorQAPIEventState *eva = a; 484 const MonitorQAPIEventState *evb = b; 485 486 if (eva->event != evb->event) { 487 return FALSE; 488 } 489 490 if (eva->event == QAPI_EVENT_VSERPORT_CHANGE) { 491 return !strcmp(qdict_get_str(eva->data, "id"), 492 qdict_get_str(evb->data, "id")); 493 } 494 495 if (eva->event == QAPI_EVENT_QUORUM_REPORT_BAD) { 496 return !strcmp(qdict_get_str(eva->data, "node-name"), 497 qdict_get_str(evb->data, "node-name")); 498 } 499 500 return TRUE; 501 } 502 503 int monitor_suspend(Monitor *mon) 504 { 505 if (monitor_is_hmp_non_interactive(mon)) { 506 return -ENOTTY; 507 } 508 509 qatomic_inc(&mon->suspend_cnt); 510 511 if (mon->use_io_thread) { 512 /* 513 * Kick I/O thread to make sure this takes effect. It'll be 514 * evaluated again in prepare() of the watch object. 515 */ 516 aio_notify(iothread_get_aio_context(mon_iothread)); 517 } 518 519 trace_monitor_suspend(mon, 1); 520 return 0; 521 } 522 523 static void monitor_accept_input(void *opaque) 524 { 525 Monitor *mon = opaque; 526 527 qemu_chr_fe_accept_input(&mon->chr); 528 } 529 530 void monitor_resume(Monitor *mon) 531 { 532 if (monitor_is_hmp_non_interactive(mon)) { 533 return; 534 } 535 536 if (qatomic_dec_fetch(&mon->suspend_cnt) == 0) { 537 AioContext *ctx; 538 539 if (mon->use_io_thread) { 540 ctx = iothread_get_aio_context(mon_iothread); 541 } else { 542 ctx = qemu_get_aio_context(); 543 } 544 545 if (!monitor_is_qmp(mon)) { 546 MonitorHMP *hmp_mon = container_of(mon, MonitorHMP, common); 547 assert(hmp_mon->rs); 548 readline_show_prompt(hmp_mon->rs); 549 } 550 551 aio_bh_schedule_oneshot(ctx, monitor_accept_input, mon); 552 } 553 554 trace_monitor_suspend(mon, -1); 555 } 556 557 int monitor_can_read(void *opaque) 558 { 559 Monitor *mon = opaque; 560 561 return !qatomic_mb_read(&mon->suspend_cnt); 562 } 563 564 void monitor_list_append(Monitor *mon) 565 { 566 qemu_mutex_lock(&monitor_lock); 567 /* 568 * This prevents inserting new monitors during monitor_cleanup(). 569 * A cleaner solution would involve the main thread telling other 570 * threads to terminate, waiting for their termination. 571 */ 572 if (!monitor_destroyed) { 573 QTAILQ_INSERT_HEAD(&mon_list, mon, entry); 574 mon = NULL; 575 } 576 qemu_mutex_unlock(&monitor_lock); 577 578 if (mon) { 579 monitor_data_destroy(mon); 580 g_free(mon); 581 } 582 } 583 584 static void monitor_iothread_init(void) 585 { 586 mon_iothread = iothread_create("mon_iothread", &error_abort); 587 } 588 589 void monitor_data_init(Monitor *mon, bool is_qmp, bool skip_flush, 590 bool use_io_thread) 591 { 592 if (use_io_thread && !mon_iothread) { 593 monitor_iothread_init(); 594 } 595 qemu_mutex_init(&mon->mon_lock); 596 mon->is_qmp = is_qmp; 597 mon->outbuf = g_string_new(NULL); 598 mon->skip_flush = skip_flush; 599 mon->use_io_thread = use_io_thread; 600 } 601 602 void monitor_data_destroy(Monitor *mon) 603 { 604 g_free(mon->mon_cpu_path); 605 qemu_chr_fe_deinit(&mon->chr, false); 606 if (monitor_is_qmp(mon)) { 607 monitor_data_destroy_qmp(container_of(mon, MonitorQMP, common)); 608 } else { 609 readline_free(container_of(mon, MonitorHMP, common)->rs); 610 } 611 g_string_free(mon->outbuf, true); 612 qemu_mutex_destroy(&mon->mon_lock); 613 } 614 615 void monitor_cleanup(void) 616 { 617 /* 618 * The dispatcher needs to stop before destroying the monitor and 619 * the I/O thread. 620 * 621 * We need to poll both qemu_aio_context and iohandler_ctx to make 622 * sure that the dispatcher coroutine keeps making progress and 623 * eventually terminates. qemu_aio_context is automatically 624 * polled by calling AIO_WAIT_WHILE on it, but we must poll 625 * iohandler_ctx manually. 626 * 627 * Letting the iothread continue while shutting down the dispatcher 628 * means that new requests may still be coming in. This is okay, 629 * we'll just leave them in the queue without sending a response 630 * and monitor_data_destroy() will free them. 631 */ 632 qmp_dispatcher_co_shutdown = true; 633 if (!qatomic_xchg(&qmp_dispatcher_co_busy, true)) { 634 aio_co_wake(qmp_dispatcher_co); 635 } 636 637 AIO_WAIT_WHILE(qemu_get_aio_context(), 638 (aio_poll(iohandler_get_aio_context(), false), 639 qatomic_mb_read(&qmp_dispatcher_co_busy))); 640 641 /* 642 * We need to explicitly stop the I/O thread (but not destroy it), 643 * clean up the monitor resources, then destroy the I/O thread since 644 * we need to unregister from chardev below in 645 * monitor_data_destroy(), and chardev is not thread-safe yet 646 */ 647 if (mon_iothread) { 648 iothread_stop(mon_iothread); 649 } 650 651 /* Flush output buffers and destroy monitors */ 652 qemu_mutex_lock(&monitor_lock); 653 monitor_destroyed = true; 654 while (!QTAILQ_EMPTY(&mon_list)) { 655 Monitor *mon = QTAILQ_FIRST(&mon_list); 656 QTAILQ_REMOVE(&mon_list, mon, entry); 657 /* Permit QAPI event emission from character frontend release */ 658 qemu_mutex_unlock(&monitor_lock); 659 monitor_flush(mon); 660 monitor_data_destroy(mon); 661 qemu_mutex_lock(&monitor_lock); 662 g_free(mon); 663 } 664 qemu_mutex_unlock(&monitor_lock); 665 666 if (mon_iothread) { 667 iothread_destroy(mon_iothread); 668 mon_iothread = NULL; 669 } 670 } 671 672 static void monitor_qapi_event_init(void) 673 { 674 monitor_qapi_event_state = g_hash_table_new(qapi_event_throttle_hash, 675 qapi_event_throttle_equal); 676 } 677 678 void monitor_init_globals_core(void) 679 { 680 monitor_qapi_event_init(); 681 qemu_mutex_init(&monitor_lock); 682 coroutine_mon = g_hash_table_new(NULL, NULL); 683 684 /* 685 * The dispatcher BH must run in the main loop thread, since we 686 * have commands assuming that context. It would be nice to get 687 * rid of those assumptions. 688 */ 689 qmp_dispatcher_co = qemu_coroutine_create(monitor_qmp_dispatcher_co, NULL); 690 qatomic_mb_set(&qmp_dispatcher_co_busy, true); 691 aio_co_schedule(iohandler_get_aio_context(), qmp_dispatcher_co); 692 } 693 694 int monitor_init(MonitorOptions *opts, bool allow_hmp, Error **errp) 695 { 696 Chardev *chr; 697 Error *local_err = NULL; 698 699 chr = qemu_chr_find(opts->chardev); 700 if (chr == NULL) { 701 error_setg(errp, "chardev \"%s\" not found", opts->chardev); 702 return -1; 703 } 704 705 if (!opts->has_mode) { 706 opts->mode = allow_hmp ? MONITOR_MODE_READLINE : MONITOR_MODE_CONTROL; 707 } 708 709 switch (opts->mode) { 710 case MONITOR_MODE_CONTROL: 711 monitor_init_qmp(chr, opts->pretty, &local_err); 712 break; 713 case MONITOR_MODE_READLINE: 714 if (!allow_hmp) { 715 error_setg(errp, "Only QMP is supported"); 716 return -1; 717 } 718 if (opts->pretty) { 719 error_setg(errp, "'pretty' is not compatible with HMP monitors"); 720 return -1; 721 } 722 monitor_init_hmp(chr, true, &local_err); 723 break; 724 default: 725 g_assert_not_reached(); 726 } 727 728 if (local_err) { 729 error_propagate(errp, local_err); 730 return -1; 731 } 732 return 0; 733 } 734 735 int monitor_init_opts(QemuOpts *opts, Error **errp) 736 { 737 Visitor *v; 738 MonitorOptions *options; 739 int ret; 740 741 v = opts_visitor_new(opts); 742 visit_type_MonitorOptions(v, NULL, &options, errp); 743 visit_free(v); 744 if (!options) { 745 return -1; 746 } 747 748 ret = monitor_init(options, true, errp); 749 qapi_free_MonitorOptions(options); 750 return ret; 751 } 752 753 QemuOptsList qemu_mon_opts = { 754 .name = "mon", 755 .implied_opt_name = "chardev", 756 .head = QTAILQ_HEAD_INITIALIZER(qemu_mon_opts.head), 757 .desc = { 758 { 759 .name = "mode", 760 .type = QEMU_OPT_STRING, 761 },{ 762 .name = "chardev", 763 .type = QEMU_OPT_STRING, 764 },{ 765 .name = "pretty", 766 .type = QEMU_OPT_BOOL, 767 }, 768 { /* end of list */ } 769 }, 770 }; 771