kvm: dirty-ring: Fix race with vcpu creation
[qemu/ar7.git] / softmmu / qtest.c
blob34bd2a33a76ae3b6e9edb35e6bead9578d6bed0e
1 /*
2 * Test Server
4 * Copyright IBM, Corp. 2011
6 * Authors:
7 * Anthony Liguori <aliguori@us.ibm.com>
9 * This work is licensed under the terms of the GNU GPL, version 2 or later.
10 * See the COPYING file in the top-level directory.
14 #include "qemu/osdep.h"
15 #include "qapi/error.h"
16 #include "cpu.h"
17 #include "sysemu/qtest.h"
18 #include "sysemu/runstate.h"
19 #include "chardev/char-fe.h"
20 #include "exec/ioport.h"
21 #include "exec/memory.h"
22 #include "hw/qdev-core.h"
23 #include "hw/irq.h"
24 #include "qemu/accel.h"
25 #include "sysemu/cpu-timers.h"
26 #include "qemu/config-file.h"
27 #include "qemu/option.h"
28 #include "qemu/error-report.h"
29 #include "qemu/module.h"
30 #include "qemu/cutils.h"
31 #include "qom/object_interfaces.h"
32 #include CONFIG_DEVICES
33 #ifdef CONFIG_PSERIES
34 #include "hw/ppc/spapr_rtas.h"
35 #endif
37 #define MAX_IRQ 256
39 #define TYPE_QTEST "qtest"
41 OBJECT_DECLARE_SIMPLE_TYPE(QTest, QTEST)
43 struct QTest {
44 Object parent;
46 bool has_machine_link;
47 char *chr_name;
48 Chardev *chr;
49 CharBackend qtest_chr;
50 char *log;
53 bool qtest_allowed;
55 static DeviceState *irq_intercept_dev;
56 static FILE *qtest_log_fp;
57 static QTest *qtest;
58 static GString *inbuf;
59 static int irq_levels[MAX_IRQ];
60 static GTimer *timer;
61 static bool qtest_opened;
62 static void (*qtest_server_send)(void*, const char*);
63 static void *qtest_server_send_opaque;
65 #define FMT_timeval "%.06f"
67 /**
68 * DOC: QTest Protocol
70 * Line based protocol, request/response based. Server can send async messages
71 * so clients should always handle many async messages before the response
72 * comes in.
74 * Valid requests
75 * ^^^^^^^^^^^^^^
77 * Clock management:
78 * """""""""""""""""
80 * The qtest client is completely in charge of the QEMU_CLOCK_VIRTUAL. qtest commands
81 * let you adjust the value of the clock (monotonically). All the commands
82 * return the current value of the clock in nanoseconds.
84 * .. code-block:: none
86 * > clock_step
87 * < OK VALUE
89 * Advance the clock to the next deadline. Useful when waiting for
90 * asynchronous events.
92 * .. code-block:: none
94 * > clock_step NS
95 * < OK VALUE
97 * Advance the clock by NS nanoseconds.
99 * .. code-block:: none
101 * > clock_set NS
102 * < OK VALUE
104 * Advance the clock to NS nanoseconds (do nothing if it's already past).
106 * PIO and memory access:
107 * """"""""""""""""""""""
109 * .. code-block:: none
111 * > outb ADDR VALUE
112 * < OK
114 * .. code-block:: none
116 * > outw ADDR VALUE
117 * < OK
119 * .. code-block:: none
121 * > outl ADDR VALUE
122 * < OK
124 * .. code-block:: none
126 * > inb ADDR
127 * < OK VALUE
129 * .. code-block:: none
131 * > inw ADDR
132 * < OK VALUE
134 * .. code-block:: none
136 * > inl ADDR
137 * < OK VALUE
139 * .. code-block:: none
141 * > writeb ADDR VALUE
142 * < OK
144 * .. code-block:: none
146 * > writew ADDR VALUE
147 * < OK
149 * .. code-block:: none
151 * > writel ADDR VALUE
152 * < OK
154 * .. code-block:: none
156 * > writeq ADDR VALUE
157 * < OK
159 * .. code-block:: none
161 * > readb ADDR
162 * < OK VALUE
164 * .. code-block:: none
166 * > readw ADDR
167 * < OK VALUE
169 * .. code-block:: none
171 * > readl ADDR
172 * < OK VALUE
174 * .. code-block:: none
176 * > readq ADDR
177 * < OK VALUE
179 * .. code-block:: none
181 * > read ADDR SIZE
182 * < OK DATA
184 * .. code-block:: none
186 * > write ADDR SIZE DATA
187 * < OK
189 * .. code-block:: none
191 * > b64read ADDR SIZE
192 * < OK B64_DATA
194 * .. code-block:: none
196 * > b64write ADDR SIZE B64_DATA
197 * < OK
199 * .. code-block:: none
201 * > memset ADDR SIZE VALUE
202 * < OK
204 * ADDR, SIZE, VALUE are all integers parsed with strtoul() with a base of 0.
205 * For 'memset' a zero size is permitted and does nothing.
207 * DATA is an arbitrarily long hex number prefixed with '0x'. If it's smaller
208 * than the expected size, the value will be zero filled at the end of the data
209 * sequence.
211 * B64_DATA is an arbitrarily long base64 encoded string.
212 * If the sizes do not match, the data will be truncated.
214 * IRQ management:
215 * """""""""""""""
217 * .. code-block:: none
219 * > irq_intercept_in QOM-PATH
220 * < OK
222 * .. code-block:: none
224 * > irq_intercept_out QOM-PATH
225 * < OK
227 * Attach to the gpio-in (resp. gpio-out) pins exported by the device at
228 * QOM-PATH. When the pin is triggered, one of the following async messages
229 * will be printed to the qtest stream::
231 * IRQ raise NUM
232 * IRQ lower NUM
234 * where NUM is an IRQ number. For the PC, interrupts can be intercepted
235 * simply with "irq_intercept_in ioapic" (note that IRQ0 comes out with
236 * NUM=0 even though it is remapped to GSI 2).
238 * Setting interrupt level:
239 * """"""""""""""""""""""""
241 * .. code-block:: none
243 * > set_irq_in QOM-PATH NAME NUM LEVEL
244 * < OK
246 * where NAME is the name of the irq/gpio list, NUM is an IRQ number and
247 * LEVEL is an signed integer IRQ level.
249 * Forcibly set the given interrupt pin to the given level.
253 static int hex2nib(char ch)
255 if (ch >= '0' && ch <= '9') {
256 return ch - '0';
257 } else if (ch >= 'a' && ch <= 'f') {
258 return 10 + (ch - 'a');
259 } else if (ch >= 'A' && ch <= 'F') {
260 return 10 + (ch - 'A');
261 } else {
262 return -1;
266 static void qtest_send_prefix(CharBackend *chr)
268 if (!qtest_log_fp || !qtest_opened) {
269 return;
272 fprintf(qtest_log_fp, "[S +" FMT_timeval "] ", g_timer_elapsed(timer, NULL));
275 static void G_GNUC_PRINTF(1, 2) qtest_log_send(const char *fmt, ...)
277 va_list ap;
279 if (!qtest_log_fp || !qtest_opened) {
280 return;
283 qtest_send_prefix(NULL);
285 va_start(ap, fmt);
286 vfprintf(qtest_log_fp, fmt, ap);
287 va_end(ap);
290 static void qtest_server_char_be_send(void *opaque, const char *str)
292 size_t len = strlen(str);
293 CharBackend* chr = (CharBackend *)opaque;
294 qemu_chr_fe_write_all(chr, (uint8_t *)str, len);
295 if (qtest_log_fp && qtest_opened) {
296 fprintf(qtest_log_fp, "%s", str);
300 static void qtest_send(CharBackend *chr, const char *str)
302 qtest_server_send(qtest_server_send_opaque, str);
305 static void G_GNUC_PRINTF(2, 3) qtest_sendf(CharBackend *chr,
306 const char *fmt, ...)
308 va_list ap;
309 gchar *buffer;
311 va_start(ap, fmt);
312 buffer = g_strdup_vprintf(fmt, ap);
313 qtest_send(chr, buffer);
314 g_free(buffer);
315 va_end(ap);
318 static void qtest_irq_handler(void *opaque, int n, int level)
320 qemu_irq old_irq = *(qemu_irq *)opaque;
321 qemu_set_irq(old_irq, level);
323 if (irq_levels[n] != level) {
324 CharBackend *chr = &qtest->qtest_chr;
325 irq_levels[n] = level;
326 qtest_send_prefix(chr);
327 qtest_sendf(chr, "IRQ %s %d\n",
328 level ? "raise" : "lower", n);
332 static int64_t qtest_clock_counter;
334 int64_t qtest_get_virtual_clock(void)
336 return qatomic_read_i64(&qtest_clock_counter);
339 static void qtest_set_virtual_clock(int64_t count)
341 qatomic_set_i64(&qtest_clock_counter, count);
344 static void qtest_clock_warp(int64_t dest)
346 int64_t clock = qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL);
347 AioContext *aio_context;
348 assert(qtest_enabled());
349 aio_context = qemu_get_aio_context();
350 while (clock < dest) {
351 int64_t deadline = qemu_clock_deadline_ns_all(QEMU_CLOCK_VIRTUAL,
352 QEMU_TIMER_ATTR_ALL);
353 int64_t warp = qemu_soonest_timeout(dest - clock, deadline);
355 qtest_set_virtual_clock(qtest_get_virtual_clock() + warp);
357 qemu_clock_run_timers(QEMU_CLOCK_VIRTUAL);
358 timerlist_run_timers(aio_context->tlg.tl[QEMU_CLOCK_VIRTUAL]);
359 clock = qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL);
361 qemu_clock_notify(QEMU_CLOCK_VIRTUAL);
364 static void qtest_process_command(CharBackend *chr, gchar **words)
366 const gchar *command;
368 g_assert(words);
370 command = words[0];
372 if (qtest_log_fp) {
373 int i;
375 fprintf(qtest_log_fp, "[R +" FMT_timeval "]", g_timer_elapsed(timer, NULL));
376 for (i = 0; words[i]; i++) {
377 fprintf(qtest_log_fp, " %s", words[i]);
379 fprintf(qtest_log_fp, "\n");
382 g_assert(command);
383 if (strcmp(words[0], "irq_intercept_out") == 0
384 || strcmp(words[0], "irq_intercept_in") == 0) {
385 DeviceState *dev;
386 NamedGPIOList *ngl;
388 g_assert(words[1]);
389 dev = DEVICE(object_resolve_path(words[1], NULL));
390 if (!dev) {
391 qtest_send_prefix(chr);
392 qtest_send(chr, "FAIL Unknown device\n");
393 return;
396 if (irq_intercept_dev) {
397 qtest_send_prefix(chr);
398 if (irq_intercept_dev != dev) {
399 qtest_send(chr, "FAIL IRQ intercept already enabled\n");
400 } else {
401 qtest_send(chr, "OK\n");
403 return;
406 QLIST_FOREACH(ngl, &dev->gpios, node) {
407 /* We don't support intercept of named GPIOs yet */
408 if (ngl->name) {
409 continue;
411 if (words[0][14] == 'o') {
412 int i;
413 for (i = 0; i < ngl->num_out; ++i) {
414 qemu_irq *disconnected = g_new0(qemu_irq, 1);
415 qemu_irq icpt = qemu_allocate_irq(qtest_irq_handler,
416 disconnected, i);
418 *disconnected = qdev_intercept_gpio_out(dev, icpt,
419 ngl->name, i);
421 } else {
422 qemu_irq_intercept_in(ngl->in, qtest_irq_handler,
423 ngl->num_in);
426 irq_intercept_dev = dev;
427 qtest_send_prefix(chr);
428 qtest_send(chr, "OK\n");
429 } else if (strcmp(words[0], "set_irq_in") == 0) {
430 DeviceState *dev;
431 qemu_irq irq;
432 char *name;
433 int ret;
434 int num;
435 int level;
437 g_assert(words[1] && words[2] && words[3] && words[4]);
439 dev = DEVICE(object_resolve_path(words[1], NULL));
440 if (!dev) {
441 qtest_send_prefix(chr);
442 qtest_send(chr, "FAIL Unknown device\n");
443 return;
446 if (strcmp(words[2], "unnamed-gpio-in") == 0) {
447 name = NULL;
448 } else {
449 name = words[2];
452 ret = qemu_strtoi(words[3], NULL, 0, &num);
453 g_assert(!ret);
454 ret = qemu_strtoi(words[4], NULL, 0, &level);
455 g_assert(!ret);
457 irq = qdev_get_gpio_in_named(dev, name, num);
459 qemu_set_irq(irq, level);
460 qtest_send_prefix(chr);
461 qtest_send(chr, "OK\n");
462 } else if (strcmp(words[0], "outb") == 0 ||
463 strcmp(words[0], "outw") == 0 ||
464 strcmp(words[0], "outl") == 0) {
465 unsigned long addr;
466 unsigned long value;
467 int ret;
469 g_assert(words[1] && words[2]);
470 ret = qemu_strtoul(words[1], NULL, 0, &addr);
471 g_assert(ret == 0);
472 ret = qemu_strtoul(words[2], NULL, 0, &value);
473 g_assert(ret == 0);
474 g_assert(addr <= 0xffff);
476 if (words[0][3] == 'b') {
477 cpu_outb(addr, value);
478 } else if (words[0][3] == 'w') {
479 cpu_outw(addr, value);
480 } else if (words[0][3] == 'l') {
481 cpu_outl(addr, value);
483 qtest_send_prefix(chr);
484 qtest_send(chr, "OK\n");
485 } else if (strcmp(words[0], "inb") == 0 ||
486 strcmp(words[0], "inw") == 0 ||
487 strcmp(words[0], "inl") == 0) {
488 unsigned long addr;
489 uint32_t value = -1U;
490 int ret;
492 g_assert(words[1]);
493 ret = qemu_strtoul(words[1], NULL, 0, &addr);
494 g_assert(ret == 0);
495 g_assert(addr <= 0xffff);
497 if (words[0][2] == 'b') {
498 value = cpu_inb(addr);
499 } else if (words[0][2] == 'w') {
500 value = cpu_inw(addr);
501 } else if (words[0][2] == 'l') {
502 value = cpu_inl(addr);
504 qtest_send_prefix(chr);
505 qtest_sendf(chr, "OK 0x%04x\n", value);
506 } else if (strcmp(words[0], "writeb") == 0 ||
507 strcmp(words[0], "writew") == 0 ||
508 strcmp(words[0], "writel") == 0 ||
509 strcmp(words[0], "writeq") == 0) {
510 uint64_t addr;
511 uint64_t value;
512 int ret;
514 g_assert(words[1] && words[2]);
515 ret = qemu_strtou64(words[1], NULL, 0, &addr);
516 g_assert(ret == 0);
517 ret = qemu_strtou64(words[2], NULL, 0, &value);
518 g_assert(ret == 0);
520 if (words[0][5] == 'b') {
521 uint8_t data = value;
522 address_space_write(first_cpu->as, addr, MEMTXATTRS_UNSPECIFIED,
523 &data, 1);
524 } else if (words[0][5] == 'w') {
525 uint16_t data = value;
526 tswap16s(&data);
527 address_space_write(first_cpu->as, addr, MEMTXATTRS_UNSPECIFIED,
528 &data, 2);
529 } else if (words[0][5] == 'l') {
530 uint32_t data = value;
531 tswap32s(&data);
532 address_space_write(first_cpu->as, addr, MEMTXATTRS_UNSPECIFIED,
533 &data, 4);
534 } else if (words[0][5] == 'q') {
535 uint64_t data = value;
536 tswap64s(&data);
537 address_space_write(first_cpu->as, addr, MEMTXATTRS_UNSPECIFIED,
538 &data, 8);
540 qtest_send_prefix(chr);
541 qtest_send(chr, "OK\n");
542 } else if (strcmp(words[0], "readb") == 0 ||
543 strcmp(words[0], "readw") == 0 ||
544 strcmp(words[0], "readl") == 0 ||
545 strcmp(words[0], "readq") == 0) {
546 uint64_t addr;
547 uint64_t value = UINT64_C(-1);
548 int ret;
550 g_assert(words[1]);
551 ret = qemu_strtou64(words[1], NULL, 0, &addr);
552 g_assert(ret == 0);
554 if (words[0][4] == 'b') {
555 uint8_t data;
556 address_space_read(first_cpu->as, addr, MEMTXATTRS_UNSPECIFIED,
557 &data, 1);
558 value = data;
559 } else if (words[0][4] == 'w') {
560 uint16_t data;
561 address_space_read(first_cpu->as, addr, MEMTXATTRS_UNSPECIFIED,
562 &data, 2);
563 value = tswap16(data);
564 } else if (words[0][4] == 'l') {
565 uint32_t data;
566 address_space_read(first_cpu->as, addr, MEMTXATTRS_UNSPECIFIED,
567 &data, 4);
568 value = tswap32(data);
569 } else if (words[0][4] == 'q') {
570 address_space_read(first_cpu->as, addr, MEMTXATTRS_UNSPECIFIED,
571 &value, 8);
572 tswap64s(&value);
574 qtest_send_prefix(chr);
575 qtest_sendf(chr, "OK 0x%016" PRIx64 "\n", value);
576 } else if (strcmp(words[0], "read") == 0) {
577 uint64_t addr, len, i;
578 uint8_t *data;
579 char *enc;
580 int ret;
582 g_assert(words[1] && words[2]);
583 ret = qemu_strtou64(words[1], NULL, 0, &addr);
584 g_assert(ret == 0);
585 ret = qemu_strtou64(words[2], NULL, 0, &len);
586 g_assert(ret == 0);
587 /* We'd send garbage to libqtest if len is 0 */
588 g_assert(len);
590 data = g_malloc(len);
591 address_space_read(first_cpu->as, addr, MEMTXATTRS_UNSPECIFIED, data,
592 len);
594 enc = g_malloc(2 * len + 1);
595 for (i = 0; i < len; i++) {
596 sprintf(&enc[i * 2], "%02x", data[i]);
599 qtest_send_prefix(chr);
600 qtest_sendf(chr, "OK 0x%s\n", enc);
602 g_free(data);
603 g_free(enc);
604 } else if (strcmp(words[0], "b64read") == 0) {
605 uint64_t addr, len;
606 uint8_t *data;
607 gchar *b64_data;
608 int ret;
610 g_assert(words[1] && words[2]);
611 ret = qemu_strtou64(words[1], NULL, 0, &addr);
612 g_assert(ret == 0);
613 ret = qemu_strtou64(words[2], NULL, 0, &len);
614 g_assert(ret == 0);
616 data = g_malloc(len);
617 address_space_read(first_cpu->as, addr, MEMTXATTRS_UNSPECIFIED, data,
618 len);
619 b64_data = g_base64_encode(data, len);
620 qtest_send_prefix(chr);
621 qtest_sendf(chr, "OK %s\n", b64_data);
623 g_free(data);
624 g_free(b64_data);
625 } else if (strcmp(words[0], "write") == 0) {
626 uint64_t addr, len, i;
627 uint8_t *data;
628 size_t data_len;
629 int ret;
631 g_assert(words[1] && words[2] && words[3]);
632 ret = qemu_strtou64(words[1], NULL, 0, &addr);
633 g_assert(ret == 0);
634 ret = qemu_strtou64(words[2], NULL, 0, &len);
635 g_assert(ret == 0);
637 data_len = strlen(words[3]);
638 if (data_len < 3) {
639 qtest_send(chr, "ERR invalid argument size\n");
640 return;
643 data = g_malloc(len);
644 for (i = 0; i < len; i++) {
645 if ((i * 2 + 4) <= data_len) {
646 data[i] = hex2nib(words[3][i * 2 + 2]) << 4;
647 data[i] |= hex2nib(words[3][i * 2 + 3]);
648 } else {
649 data[i] = 0;
652 address_space_write(first_cpu->as, addr, MEMTXATTRS_UNSPECIFIED, data,
653 len);
654 g_free(data);
656 qtest_send_prefix(chr);
657 qtest_send(chr, "OK\n");
658 } else if (strcmp(words[0], "memset") == 0) {
659 uint64_t addr, len;
660 uint8_t *data;
661 unsigned long pattern;
662 int ret;
664 g_assert(words[1] && words[2] && words[3]);
665 ret = qemu_strtou64(words[1], NULL, 0, &addr);
666 g_assert(ret == 0);
667 ret = qemu_strtou64(words[2], NULL, 0, &len);
668 g_assert(ret == 0);
669 ret = qemu_strtoul(words[3], NULL, 0, &pattern);
670 g_assert(ret == 0);
672 if (len) {
673 data = g_malloc(len);
674 memset(data, pattern, len);
675 address_space_write(first_cpu->as, addr, MEMTXATTRS_UNSPECIFIED,
676 data, len);
677 g_free(data);
680 qtest_send_prefix(chr);
681 qtest_send(chr, "OK\n");
682 } else if (strcmp(words[0], "b64write") == 0) {
683 uint64_t addr, len;
684 uint8_t *data;
685 size_t data_len;
686 gsize out_len;
687 int ret;
689 g_assert(words[1] && words[2] && words[3]);
690 ret = qemu_strtou64(words[1], NULL, 0, &addr);
691 g_assert(ret == 0);
692 ret = qemu_strtou64(words[2], NULL, 0, &len);
693 g_assert(ret == 0);
695 data_len = strlen(words[3]);
696 if (data_len < 3) {
697 qtest_send(chr, "ERR invalid argument size\n");
698 return;
701 data = g_base64_decode_inplace(words[3], &out_len);
702 if (out_len != len) {
703 qtest_log_send("b64write: data length mismatch (told %"PRIu64", "
704 "found %zu)\n",
705 len, out_len);
706 out_len = MIN(out_len, len);
709 address_space_write(first_cpu->as, addr, MEMTXATTRS_UNSPECIFIED, data,
710 len);
712 qtest_send_prefix(chr);
713 qtest_send(chr, "OK\n");
714 } else if (strcmp(words[0], "endianness") == 0) {
715 qtest_send_prefix(chr);
716 #if TARGET_BIG_ENDIAN
717 qtest_sendf(chr, "OK big\n");
718 #else
719 qtest_sendf(chr, "OK little\n");
720 #endif
721 #ifdef CONFIG_PSERIES
722 } else if (strcmp(words[0], "rtas") == 0) {
723 uint64_t res, args, ret;
724 unsigned long nargs, nret;
725 int rc;
727 rc = qemu_strtoul(words[2], NULL, 0, &nargs);
728 g_assert(rc == 0);
729 rc = qemu_strtou64(words[3], NULL, 0, &args);
730 g_assert(rc == 0);
731 rc = qemu_strtoul(words[4], NULL, 0, &nret);
732 g_assert(rc == 0);
733 rc = qemu_strtou64(words[5], NULL, 0, &ret);
734 g_assert(rc == 0);
735 res = qtest_rtas_call(words[1], nargs, args, nret, ret);
737 qtest_send_prefix(chr);
738 qtest_sendf(chr, "OK %"PRIu64"\n", res);
739 #endif
740 } else if (qtest_enabled() && strcmp(words[0], "clock_step") == 0) {
741 int64_t ns;
743 if (words[1]) {
744 int ret = qemu_strtoi64(words[1], NULL, 0, &ns);
745 g_assert(ret == 0);
746 } else {
747 ns = qemu_clock_deadline_ns_all(QEMU_CLOCK_VIRTUAL,
748 QEMU_TIMER_ATTR_ALL);
750 qtest_clock_warp(qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL) + ns);
751 qtest_send_prefix(chr);
752 qtest_sendf(chr, "OK %"PRIi64"\n",
753 (int64_t)qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL));
754 } else if (strcmp(words[0], "module_load") == 0) {
755 Error *local_err = NULL;
756 int rv;
757 g_assert(words[1] && words[2]);
759 qtest_send_prefix(chr);
760 rv = module_load(words[1], words[2], &local_err);
761 if (rv > 0) {
762 qtest_sendf(chr, "OK\n");
763 } else {
764 if (rv < 0) {
765 error_report_err(local_err);
767 qtest_sendf(chr, "FAIL\n");
769 } else if (qtest_enabled() && strcmp(words[0], "clock_set") == 0) {
770 int64_t ns;
771 int ret;
773 g_assert(words[1]);
774 ret = qemu_strtoi64(words[1], NULL, 0, &ns);
775 g_assert(ret == 0);
776 qtest_clock_warp(ns);
777 qtest_send_prefix(chr);
778 qtest_sendf(chr, "OK %"PRIi64"\n",
779 (int64_t)qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL));
780 } else {
781 qtest_send_prefix(chr);
782 qtest_sendf(chr, "FAIL Unknown command '%s'\n", words[0]);
786 static void qtest_process_inbuf(CharBackend *chr, GString *inbuf)
788 char *end;
790 while ((end = strchr(inbuf->str, '\n')) != NULL) {
791 size_t offset;
792 GString *cmd;
793 gchar **words;
795 offset = end - inbuf->str;
797 cmd = g_string_new_len(inbuf->str, offset);
798 g_string_erase(inbuf, 0, offset + 1);
800 words = g_strsplit(cmd->str, " ", 0);
801 qtest_process_command(chr, words);
802 g_strfreev(words);
804 g_string_free(cmd, TRUE);
808 static void qtest_read(void *opaque, const uint8_t *buf, int size)
810 CharBackend *chr = opaque;
812 g_string_append_len(inbuf, (const gchar *)buf, size);
813 qtest_process_inbuf(chr, inbuf);
816 static int qtest_can_read(void *opaque)
818 return 1024;
821 static void qtest_event(void *opaque, QEMUChrEvent event)
823 int i;
825 switch (event) {
826 case CHR_EVENT_OPENED:
828 * We used to call qemu_system_reset() here, hoping we could
829 * use the same process for multiple tests that way. Never
830 * used. Injects an extra reset even when it's not used, and
831 * that can mess up tests, e.g. -boot once.
833 for (i = 0; i < ARRAY_SIZE(irq_levels); i++) {
834 irq_levels[i] = 0;
837 g_clear_pointer(&timer, g_timer_destroy);
838 timer = g_timer_new();
839 qtest_opened = true;
840 if (qtest_log_fp) {
841 fprintf(qtest_log_fp, "[I " FMT_timeval "] OPENED\n", g_timer_elapsed(timer, NULL));
843 break;
844 case CHR_EVENT_CLOSED:
845 qtest_opened = false;
846 if (qtest_log_fp) {
847 fprintf(qtest_log_fp, "[I +" FMT_timeval "] CLOSED\n", g_timer_elapsed(timer, NULL));
849 g_clear_pointer(&timer, g_timer_destroy);
850 break;
851 default:
852 break;
856 void qtest_server_init(const char *qtest_chrdev, const char *qtest_log, Error **errp)
858 ERRP_GUARD();
859 Chardev *chr;
860 Object *qtest;
862 chr = qemu_chr_new("qtest", qtest_chrdev, NULL);
863 if (chr == NULL) {
864 error_setg(errp, "Failed to initialize device for qtest: \"%s\"",
865 qtest_chrdev);
866 return;
869 qtest = object_new(TYPE_QTEST);
870 object_property_set_str(qtest, "chardev", "qtest", &error_abort);
871 if (qtest_log) {
872 object_property_set_str(qtest, "log", qtest_log, &error_abort);
874 object_property_add_child(qdev_get_machine(), "qtest", qtest);
875 user_creatable_complete(USER_CREATABLE(qtest), errp);
876 if (*errp) {
877 object_unparent(qtest);
879 object_unref(OBJECT(chr));
880 object_unref(qtest);
883 static bool qtest_server_start(QTest *q, Error **errp)
885 Chardev *chr = q->chr;
886 const char *qtest_log = q->log;
888 if (qtest_log) {
889 if (strcmp(qtest_log, "none") != 0) {
890 qtest_log_fp = fopen(qtest_log, "w+");
892 } else {
893 qtest_log_fp = stderr;
896 if (!qemu_chr_fe_init(&q->qtest_chr, chr, errp)) {
897 return false;
899 qemu_chr_fe_set_handlers(&q->qtest_chr, qtest_can_read, qtest_read,
900 qtest_event, NULL, &q->qtest_chr, NULL, true);
901 qemu_chr_fe_set_echo(&q->qtest_chr, true);
903 inbuf = g_string_new("");
905 if (!qtest_server_send) {
906 qtest_server_set_send_handler(qtest_server_char_be_send, &q->qtest_chr);
908 qtest = q;
909 return true;
912 void qtest_server_set_send_handler(void (*send)(void*, const char*),
913 void *opaque)
915 qtest_server_send = send;
916 qtest_server_send_opaque = opaque;
919 bool qtest_driver(void)
921 return qtest && qtest->qtest_chr.chr != NULL;
924 void qtest_server_inproc_recv(void *dummy, const char *buf)
926 static GString *gstr;
927 if (!gstr) {
928 gstr = g_string_new(NULL);
930 g_string_append(gstr, buf);
931 if (gstr->str[gstr->len - 1] == '\n') {
932 qtest_process_inbuf(NULL, gstr);
933 g_string_truncate(gstr, 0);
937 static void qtest_complete(UserCreatable *uc, Error **errp)
939 QTest *q = QTEST(uc);
940 if (qtest) {
941 error_setg(errp, "Only one instance of qtest can be created");
942 return;
944 if (!q->chr_name) {
945 error_setg(errp, "No backend specified");
946 return;
949 if (OBJECT(uc)->parent != qdev_get_machine()) {
950 q->has_machine_link = true;
951 object_property_add_const_link(qdev_get_machine(), "qtest", OBJECT(uc));
952 } else {
953 /* -qtest was used. */
956 qtest_server_start(q, errp);
959 static void qtest_unparent(Object *obj)
961 QTest *q = QTEST(obj);
963 if (qtest == q) {
964 qemu_chr_fe_disconnect(&q->qtest_chr);
965 assert(!qtest_opened);
966 qemu_chr_fe_deinit(&q->qtest_chr, false);
967 if (qtest_log_fp) {
968 fclose(qtest_log_fp);
969 qtest_log_fp = NULL;
971 qtest = NULL;
974 if (q->has_machine_link) {
975 object_property_del(qdev_get_machine(), "qtest");
976 q->has_machine_link = false;
980 static void qtest_set_log(Object *obj, const char *value, Error **errp)
982 QTest *q = QTEST(obj);
984 if (qtest == q) {
985 error_setg(errp, "Property 'log' can not be set now");
986 } else {
987 g_free(q->log);
988 q->log = g_strdup(value);
992 static char *qtest_get_log(Object *obj, Error **errp)
994 QTest *q = QTEST(obj);
996 return g_strdup(q->log);
999 static void qtest_set_chardev(Object *obj, const char *value, Error **errp)
1001 QTest *q = QTEST(obj);
1002 Chardev *chr;
1004 if (qtest == q) {
1005 error_setg(errp, "Property 'chardev' can not be set now");
1006 return;
1009 chr = qemu_chr_find(value);
1010 if (!chr) {
1011 error_setg(errp, "Cannot find character device '%s'", value);
1012 return;
1015 g_free(q->chr_name);
1016 q->chr_name = g_strdup(value);
1018 if (q->chr) {
1019 object_unref(q->chr);
1021 q->chr = chr;
1022 object_ref(chr);
1025 static char *qtest_get_chardev(Object *obj, Error **errp)
1027 QTest *q = QTEST(obj);
1029 return g_strdup(q->chr_name);
1032 static void qtest_class_init(ObjectClass *oc, void *data)
1034 UserCreatableClass *ucc = USER_CREATABLE_CLASS(oc);
1036 oc->unparent = qtest_unparent;
1037 ucc->complete = qtest_complete;
1039 object_class_property_add_str(oc, "chardev",
1040 qtest_get_chardev, qtest_set_chardev);
1041 object_class_property_add_str(oc, "log",
1042 qtest_get_log, qtest_set_log);
1045 static const TypeInfo qtest_info = {
1046 .name = TYPE_QTEST,
1047 .parent = TYPE_OBJECT,
1048 .class_init = qtest_class_init,
1049 .instance_size = sizeof(QTest),
1050 .interfaces = (InterfaceInfo[]) {
1051 { TYPE_USER_CREATABLE },
1056 static void register_types(void)
1058 type_register_static(&qtest_info);
1061 type_init(register_types);