4 * Copyright IBM, Corp. 2011
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 "sysemu/qtest.h"
17 #include "sysemu/runstate.h"
18 #include "chardev/char-fe.h"
19 #include "exec/ioport.h"
20 #include "exec/memory.h"
21 #include "exec/tswap.h"
22 #include "hw/qdev-core.h"
24 #include "hw/core/cpu.h"
25 #include "qemu/accel.h"
26 #include "sysemu/cpu-timers.h"
27 #include "qemu/config-file.h"
28 #include "qemu/option.h"
29 #include "qemu/error-report.h"
30 #include "qemu/module.h"
31 #include "qemu/cutils.h"
32 #include "qom/object_interfaces.h"
36 #define TYPE_QTEST "qtest"
38 OBJECT_DECLARE_SIMPLE_TYPE(QTest
, QTEST
)
43 bool has_machine_link
;
46 CharBackend qtest_chr
;
52 static DeviceState
*irq_intercept_dev
;
53 static FILE *qtest_log_fp
;
55 static GString
*inbuf
;
56 static int irq_levels
[MAX_IRQ
];
58 static bool qtest_opened
;
59 static void (*qtest_server_send
)(void*, const char*);
60 static void *qtest_server_send_opaque
;
62 #define FMT_timeval "%.06f"
67 * Line based protocol, request/response based. Server can send async messages
68 * so clients should always handle many async messages before the response
77 * The qtest client is completely in charge of the QEMU_CLOCK_VIRTUAL. qtest commands
78 * let you adjust the value of the clock (monotonically). All the commands
79 * return the current value of the clock in nanoseconds.
81 * .. code-block:: none
86 * Advance the clock to the next deadline. Useful when waiting for
87 * asynchronous events.
89 * .. code-block:: none
94 * Advance the clock by NS nanoseconds.
96 * .. code-block:: none
101 * Advance the clock to NS nanoseconds (do nothing if it's already past).
103 * PIO and memory access:
104 * """"""""""""""""""""""
106 * .. code-block:: none
111 * .. code-block:: none
116 * .. code-block:: none
121 * .. code-block:: none
126 * .. code-block:: none
131 * .. code-block:: none
136 * .. code-block:: none
138 * > writeb ADDR VALUE
141 * .. code-block:: none
143 * > writew ADDR VALUE
146 * .. code-block:: none
148 * > writel ADDR VALUE
151 * .. code-block:: none
153 * > writeq ADDR VALUE
156 * .. code-block:: none
161 * .. code-block:: none
166 * .. code-block:: none
171 * .. code-block:: none
176 * .. code-block:: none
181 * .. code-block:: none
183 * > write ADDR SIZE DATA
186 * .. code-block:: none
188 * > b64read ADDR SIZE
191 * .. code-block:: none
193 * > b64write ADDR SIZE B64_DATA
196 * .. code-block:: none
198 * > memset ADDR SIZE VALUE
201 * ADDR, SIZE, VALUE are all integers parsed with strtoul() with a base of 0.
202 * For 'memset' a zero size is permitted and does nothing.
204 * DATA is an arbitrarily long hex number prefixed with '0x'. If it's smaller
205 * than the expected size, the value will be zero filled at the end of the data
208 * B64_DATA is an arbitrarily long base64 encoded string.
209 * If the sizes do not match, the data will be truncated.
214 * .. code-block:: none
216 * > irq_intercept_in QOM-PATH
219 * .. code-block:: none
221 * > irq_intercept_out QOM-PATH
224 * Attach to the gpio-in (resp. gpio-out) pins exported by the device at
225 * QOM-PATH. When the pin is triggered, one of the following async messages
226 * will be printed to the qtest stream::
231 * where NUM is an IRQ number. For the PC, interrupts can be intercepted
232 * simply with "irq_intercept_in ioapic" (note that IRQ0 comes out with
233 * NUM=0 even though it is remapped to GSI 2).
235 * Setting interrupt level:
236 * """"""""""""""""""""""""
238 * .. code-block:: none
240 * > set_irq_in QOM-PATH NAME NUM LEVEL
243 * where NAME is the name of the irq/gpio list, NUM is an IRQ number and
244 * LEVEL is an signed integer IRQ level.
246 * Forcibly set the given interrupt pin to the given level.
250 static int hex2nib(char ch
)
252 if (ch
>= '0' && ch
<= '9') {
254 } else if (ch
>= 'a' && ch
<= 'f') {
255 return 10 + (ch
- 'a');
256 } else if (ch
>= 'A' && ch
<= 'F') {
257 return 10 + (ch
- 'A');
263 void qtest_send_prefix(CharBackend
*chr
)
265 if (!qtest_log_fp
|| !qtest_opened
) {
269 fprintf(qtest_log_fp
, "[S +" FMT_timeval
"] ", g_timer_elapsed(timer
, NULL
));
272 static void G_GNUC_PRINTF(1, 2) qtest_log_send(const char *fmt
, ...)
276 if (!qtest_log_fp
|| !qtest_opened
) {
280 qtest_send_prefix(NULL
);
283 vfprintf(qtest_log_fp
, fmt
, ap
);
287 static void qtest_server_char_be_send(void *opaque
, const char *str
)
289 size_t len
= strlen(str
);
290 CharBackend
* chr
= (CharBackend
*)opaque
;
291 qemu_chr_fe_write_all(chr
, (uint8_t *)str
, len
);
292 if (qtest_log_fp
&& qtest_opened
) {
293 fprintf(qtest_log_fp
, "%s", str
);
297 static void qtest_send(CharBackend
*chr
, const char *str
)
299 qtest_server_send(qtest_server_send_opaque
, str
);
302 void qtest_sendf(CharBackend
*chr
, const char *fmt
, ...)
308 buffer
= g_strdup_vprintf(fmt
, ap
);
309 qtest_send(chr
, buffer
);
314 static void qtest_irq_handler(void *opaque
, int n
, int level
)
316 qemu_irq old_irq
= *(qemu_irq
*)opaque
;
317 qemu_set_irq(old_irq
, level
);
319 if (irq_levels
[n
] != level
) {
320 CharBackend
*chr
= &qtest
->qtest_chr
;
321 irq_levels
[n
] = level
;
322 qtest_send_prefix(chr
);
323 qtest_sendf(chr
, "IRQ %s %d\n",
324 level
? "raise" : "lower", n
);
328 static bool (*process_command_cb
)(CharBackend
*chr
, gchar
**words
);
330 void qtest_set_command_cb(bool (*pc_cb
)(CharBackend
*chr
, gchar
**words
))
332 assert(!process_command_cb
); /* Switch to a list if we need more than one */
334 process_command_cb
= pc_cb
;
337 static void qtest_install_gpio_out_intercept(DeviceState
*dev
, const char *name
, int n
)
339 qemu_irq
*disconnected
= g_new0(qemu_irq
, 1);
340 qemu_irq icpt
= qemu_allocate_irq(qtest_irq_handler
,
343 *disconnected
= qdev_intercept_gpio_out(dev
, icpt
, name
, n
);
346 static void qtest_process_command(CharBackend
*chr
, gchar
**words
)
348 const gchar
*command
;
357 fprintf(qtest_log_fp
, "[R +" FMT_timeval
"]", g_timer_elapsed(timer
, NULL
));
358 for (i
= 0; words
[i
]; i
++) {
359 fprintf(qtest_log_fp
, " %s", words
[i
]);
361 fprintf(qtest_log_fp
, "\n");
365 if (strcmp(words
[0], "irq_intercept_out") == 0
366 || strcmp(words
[0], "irq_intercept_in") == 0) {
371 bool interception_succeeded
= false;
374 is_named
= words
[2] != NULL
;
375 is_outbound
= words
[0][14] == 'o';
376 dev
= DEVICE(object_resolve_path(words
[1], NULL
));
378 qtest_send_prefix(chr
);
379 qtest_send(chr
, "FAIL Unknown device\n");
383 if (is_named
&& !is_outbound
) {
384 qtest_send_prefix(chr
);
385 qtest_send(chr
, "FAIL Interception of named in-GPIOs not yet supported\n");
389 if (irq_intercept_dev
) {
390 qtest_send_prefix(chr
);
391 if (irq_intercept_dev
!= dev
) {
392 qtest_send(chr
, "FAIL IRQ intercept already enabled\n");
394 qtest_send(chr
, "OK\n");
399 QLIST_FOREACH(ngl
, &dev
->gpios
, node
) {
400 /* We don't support inbound interception of named GPIOs yet */
402 /* NULL is valid and matchable, for "unnamed GPIO" */
403 if (g_strcmp0(ngl
->name
, words
[2]) == 0) {
405 for (i
= 0; i
< ngl
->num_out
; ++i
) {
406 qtest_install_gpio_out_intercept(dev
, ngl
->name
, i
);
408 interception_succeeded
= true;
411 qemu_irq_intercept_in(ngl
->in
, qtest_irq_handler
,
413 interception_succeeded
= true;
417 qtest_send_prefix(chr
);
418 if (interception_succeeded
) {
419 irq_intercept_dev
= dev
;
420 qtest_send(chr
, "OK\n");
422 qtest_send(chr
, "FAIL No intercepts installed\n");
424 } else if (strcmp(words
[0], "set_irq_in") == 0) {
432 g_assert(words
[1] && words
[2] && words
[3] && words
[4]);
434 dev
= DEVICE(object_resolve_path(words
[1], NULL
));
436 qtest_send_prefix(chr
);
437 qtest_send(chr
, "FAIL Unknown device\n");
441 if (strcmp(words
[2], "unnamed-gpio-in") == 0) {
447 ret
= qemu_strtoi(words
[3], NULL
, 0, &num
);
449 ret
= qemu_strtoi(words
[4], NULL
, 0, &level
);
452 irq
= qdev_get_gpio_in_named(dev
, name
, num
);
454 qemu_set_irq(irq
, level
);
455 qtest_send_prefix(chr
);
456 qtest_send(chr
, "OK\n");
457 } else if (strcmp(words
[0], "outb") == 0 ||
458 strcmp(words
[0], "outw") == 0 ||
459 strcmp(words
[0], "outl") == 0) {
464 g_assert(words
[1] && words
[2]);
465 ret
= qemu_strtoul(words
[1], NULL
, 0, &addr
);
467 ret
= qemu_strtoul(words
[2], NULL
, 0, &value
);
469 g_assert(addr
<= 0xffff);
471 if (words
[0][3] == 'b') {
472 cpu_outb(addr
, value
);
473 } else if (words
[0][3] == 'w') {
474 cpu_outw(addr
, value
);
475 } else if (words
[0][3] == 'l') {
476 cpu_outl(addr
, value
);
478 qtest_send_prefix(chr
);
479 qtest_send(chr
, "OK\n");
480 } else if (strcmp(words
[0], "inb") == 0 ||
481 strcmp(words
[0], "inw") == 0 ||
482 strcmp(words
[0], "inl") == 0) {
484 uint32_t value
= -1U;
488 ret
= qemu_strtoul(words
[1], NULL
, 0, &addr
);
490 g_assert(addr
<= 0xffff);
492 if (words
[0][2] == 'b') {
493 value
= cpu_inb(addr
);
494 } else if (words
[0][2] == 'w') {
495 value
= cpu_inw(addr
);
496 } else if (words
[0][2] == 'l') {
497 value
= cpu_inl(addr
);
499 qtest_send_prefix(chr
);
500 qtest_sendf(chr
, "OK 0x%04x\n", value
);
501 } else if (strcmp(words
[0], "writeb") == 0 ||
502 strcmp(words
[0], "writew") == 0 ||
503 strcmp(words
[0], "writel") == 0 ||
504 strcmp(words
[0], "writeq") == 0) {
509 g_assert(words
[1] && words
[2]);
510 ret
= qemu_strtou64(words
[1], NULL
, 0, &addr
);
512 ret
= qemu_strtou64(words
[2], NULL
, 0, &value
);
515 if (words
[0][5] == 'b') {
516 uint8_t data
= value
;
517 address_space_write(first_cpu
->as
, addr
, MEMTXATTRS_UNSPECIFIED
,
519 } else if (words
[0][5] == 'w') {
520 uint16_t data
= value
;
522 address_space_write(first_cpu
->as
, addr
, MEMTXATTRS_UNSPECIFIED
,
524 } else if (words
[0][5] == 'l') {
525 uint32_t data
= value
;
527 address_space_write(first_cpu
->as
, addr
, MEMTXATTRS_UNSPECIFIED
,
529 } else if (words
[0][5] == 'q') {
530 uint64_t data
= value
;
532 address_space_write(first_cpu
->as
, addr
, MEMTXATTRS_UNSPECIFIED
,
535 qtest_send_prefix(chr
);
536 qtest_send(chr
, "OK\n");
537 } else if (strcmp(words
[0], "readb") == 0 ||
538 strcmp(words
[0], "readw") == 0 ||
539 strcmp(words
[0], "readl") == 0 ||
540 strcmp(words
[0], "readq") == 0) {
542 uint64_t value
= UINT64_C(-1);
546 ret
= qemu_strtou64(words
[1], NULL
, 0, &addr
);
549 if (words
[0][4] == 'b') {
551 address_space_read(first_cpu
->as
, addr
, MEMTXATTRS_UNSPECIFIED
,
554 } else if (words
[0][4] == 'w') {
556 address_space_read(first_cpu
->as
, addr
, MEMTXATTRS_UNSPECIFIED
,
558 value
= tswap16(data
);
559 } else if (words
[0][4] == 'l') {
561 address_space_read(first_cpu
->as
, addr
, MEMTXATTRS_UNSPECIFIED
,
563 value
= tswap32(data
);
564 } else if (words
[0][4] == 'q') {
565 address_space_read(first_cpu
->as
, addr
, MEMTXATTRS_UNSPECIFIED
,
569 qtest_send_prefix(chr
);
570 qtest_sendf(chr
, "OK 0x%016" PRIx64
"\n", value
);
571 } else if (strcmp(words
[0], "read") == 0) {
572 g_autoptr(GString
) enc
= NULL
;
577 g_assert(words
[1] && words
[2]);
578 ret
= qemu_strtou64(words
[1], NULL
, 0, &addr
);
580 ret
= qemu_strtou64(words
[2], NULL
, 0, &len
);
582 /* We'd send garbage to libqtest if len is 0 */
585 data
= g_malloc(len
);
586 address_space_read(first_cpu
->as
, addr
, MEMTXATTRS_UNSPECIFIED
, data
,
589 enc
= qemu_hexdump_line(NULL
, data
, len
, 0, 0);
591 qtest_send_prefix(chr
);
592 qtest_sendf(chr
, "OK 0x%s\n", enc
->str
);
595 } else if (strcmp(words
[0], "b64read") == 0) {
601 g_assert(words
[1] && words
[2]);
602 ret
= qemu_strtou64(words
[1], NULL
, 0, &addr
);
604 ret
= qemu_strtou64(words
[2], NULL
, 0, &len
);
607 data
= g_malloc(len
);
608 address_space_read(first_cpu
->as
, addr
, MEMTXATTRS_UNSPECIFIED
, data
,
610 b64_data
= g_base64_encode(data
, len
);
611 qtest_send_prefix(chr
);
612 qtest_sendf(chr
, "OK %s\n", b64_data
);
616 } else if (strcmp(words
[0], "write") == 0) {
617 uint64_t addr
, len
, i
;
622 g_assert(words
[1] && words
[2] && words
[3]);
623 ret
= qemu_strtou64(words
[1], NULL
, 0, &addr
);
625 ret
= qemu_strtou64(words
[2], NULL
, 0, &len
);
628 data_len
= strlen(words
[3]);
630 qtest_send(chr
, "ERR invalid argument size\n");
634 data
= g_malloc(len
);
635 for (i
= 0; i
< len
; i
++) {
636 if ((i
* 2 + 4) <= data_len
) {
637 data
[i
] = hex2nib(words
[3][i
* 2 + 2]) << 4;
638 data
[i
] |= hex2nib(words
[3][i
* 2 + 3]);
643 address_space_write(first_cpu
->as
, addr
, MEMTXATTRS_UNSPECIFIED
, data
,
647 qtest_send_prefix(chr
);
648 qtest_send(chr
, "OK\n");
649 } else if (strcmp(words
[0], "memset") == 0) {
652 unsigned long pattern
;
655 g_assert(words
[1] && words
[2] && words
[3]);
656 ret
= qemu_strtou64(words
[1], NULL
, 0, &addr
);
658 ret
= qemu_strtou64(words
[2], NULL
, 0, &len
);
660 ret
= qemu_strtoul(words
[3], NULL
, 0, &pattern
);
664 data
= g_malloc(len
);
665 memset(data
, pattern
, len
);
666 address_space_write(first_cpu
->as
, addr
, MEMTXATTRS_UNSPECIFIED
,
671 qtest_send_prefix(chr
);
672 qtest_send(chr
, "OK\n");
673 } else if (strcmp(words
[0], "b64write") == 0) {
680 g_assert(words
[1] && words
[2] && words
[3]);
681 ret
= qemu_strtou64(words
[1], NULL
, 0, &addr
);
683 ret
= qemu_strtou64(words
[2], NULL
, 0, &len
);
686 data_len
= strlen(words
[3]);
688 qtest_send(chr
, "ERR invalid argument size\n");
692 data
= g_base64_decode_inplace(words
[3], &out_len
);
693 if (out_len
!= len
) {
694 qtest_log_send("b64write: data length mismatch (told %"PRIu64
", "
697 out_len
= MIN(out_len
, len
);
700 address_space_write(first_cpu
->as
, addr
, MEMTXATTRS_UNSPECIFIED
, data
,
703 qtest_send_prefix(chr
);
704 qtest_send(chr
, "OK\n");
705 } else if (strcmp(words
[0], "endianness") == 0) {
706 qtest_send_prefix(chr
);
707 if (target_words_bigendian()) {
708 qtest_sendf(chr
, "OK big\n");
710 qtest_sendf(chr
, "OK little\n");
712 } else if (qtest_enabled() && strcmp(words
[0], "clock_step") == 0) {
716 int ret
= qemu_strtoi64(words
[1], NULL
, 0, &ns
);
719 ns
= qemu_clock_deadline_ns_all(QEMU_CLOCK_VIRTUAL
,
720 QEMU_TIMER_ATTR_ALL
);
722 qemu_clock_advance_virtual_time(
723 qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL
) + ns
);
724 qtest_send_prefix(chr
);
725 qtest_sendf(chr
, "OK %"PRIi64
"\n",
726 (int64_t)qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL
));
727 } else if (strcmp(words
[0], "module_load") == 0) {
728 Error
*local_err
= NULL
;
730 g_assert(words
[1] && words
[2]);
732 qtest_send_prefix(chr
);
733 rv
= module_load(words
[1], words
[2], &local_err
);
735 qtest_sendf(chr
, "OK\n");
738 error_report_err(local_err
);
740 qtest_sendf(chr
, "FAIL\n");
742 } else if (qtest_enabled() && strcmp(words
[0], "clock_set") == 0) {
747 ret
= qemu_strtoi64(words
[1], NULL
, 0, &ns
);
749 qemu_clock_advance_virtual_time(ns
);
750 qtest_send_prefix(chr
);
751 qtest_sendf(chr
, "OK %"PRIi64
"\n",
752 (int64_t)qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL
));
753 } else if (process_command_cb
&& process_command_cb(chr
, words
)) {
754 /* Command got consumed by the callback handler */
756 qtest_send_prefix(chr
);
757 qtest_sendf(chr
, "FAIL Unknown command '%s'\n", words
[0]);
761 static void qtest_process_inbuf(CharBackend
*chr
, GString
*inbuf
)
765 while ((end
= strchr(inbuf
->str
, '\n')) != NULL
) {
770 offset
= end
- inbuf
->str
;
772 cmd
= g_string_new_len(inbuf
->str
, offset
);
773 g_string_erase(inbuf
, 0, offset
+ 1);
775 words
= g_strsplit(cmd
->str
, " ", 0);
776 qtest_process_command(chr
, words
);
779 g_string_free(cmd
, TRUE
);
783 static void qtest_read(void *opaque
, const uint8_t *buf
, int size
)
785 CharBackend
*chr
= opaque
;
787 g_string_append_len(inbuf
, (const gchar
*)buf
, size
);
788 qtest_process_inbuf(chr
, inbuf
);
791 static int qtest_can_read(void *opaque
)
796 static void qtest_event(void *opaque
, QEMUChrEvent event
)
801 case CHR_EVENT_OPENED
:
803 * We used to call qemu_system_reset() here, hoping we could
804 * use the same process for multiple tests that way. Never
805 * used. Injects an extra reset even when it's not used, and
806 * that can mess up tests, e.g. -boot once.
808 for (i
= 0; i
< ARRAY_SIZE(irq_levels
); i
++) {
812 g_clear_pointer(&timer
, g_timer_destroy
);
813 timer
= g_timer_new();
816 fprintf(qtest_log_fp
, "[I " FMT_timeval
"] OPENED\n", g_timer_elapsed(timer
, NULL
));
819 case CHR_EVENT_CLOSED
:
820 qtest_opened
= false;
822 fprintf(qtest_log_fp
, "[I +" FMT_timeval
"] CLOSED\n", g_timer_elapsed(timer
, NULL
));
824 g_clear_pointer(&timer
, g_timer_destroy
);
831 void qtest_server_init(const char *qtest_chrdev
, const char *qtest_log
, Error
**errp
)
837 chr
= qemu_chr_new("qtest", qtest_chrdev
, NULL
);
839 error_setg(errp
, "Failed to initialize device for qtest: \"%s\"",
844 qobj
= object_new(TYPE_QTEST
);
845 object_property_set_str(qobj
, "chardev", chr
->label
, &error_abort
);
847 object_property_set_str(qobj
, "log", qtest_log
, &error_abort
);
849 object_property_add_child(qdev_get_machine(), "qtest", qobj
);
850 user_creatable_complete(USER_CREATABLE(qobj
), errp
);
852 object_unparent(qobj
);
854 object_unref(OBJECT(chr
));
858 static bool qtest_server_start(QTest
*q
, Error
**errp
)
860 Chardev
*chr
= q
->chr
;
861 const char *qtest_log
= q
->log
;
864 if (strcmp(qtest_log
, "none") != 0) {
865 qtest_log_fp
= fopen(qtest_log
, "w+");
868 qtest_log_fp
= stderr
;
871 if (!qemu_chr_fe_init(&q
->qtest_chr
, chr
, errp
)) {
874 qemu_chr_fe_set_handlers(&q
->qtest_chr
, qtest_can_read
, qtest_read
,
875 qtest_event
, NULL
, &q
->qtest_chr
, NULL
, true);
876 qemu_chr_fe_set_echo(&q
->qtest_chr
, true);
878 inbuf
= g_string_new("");
880 if (!qtest_server_send
) {
881 qtest_server_set_send_handler(qtest_server_char_be_send
, &q
->qtest_chr
);
887 void qtest_server_set_send_handler(void (*send
)(void*, const char*),
890 qtest_server_send
= send
;
891 qtest_server_send_opaque
= opaque
;
894 bool qtest_driver(void)
896 return qtest
&& qtest
->qtest_chr
.chr
!= NULL
;
899 void qtest_server_inproc_recv(void *dummy
, const char *buf
)
901 static GString
*gstr
;
903 gstr
= g_string_new(NULL
);
905 g_string_append(gstr
, buf
);
906 if (gstr
->str
[gstr
->len
- 1] == '\n') {
907 qtest_process_inbuf(NULL
, gstr
);
908 g_string_truncate(gstr
, 0);
912 static void qtest_complete(UserCreatable
*uc
, Error
**errp
)
914 QTest
*q
= QTEST(uc
);
916 error_setg(errp
, "Only one instance of qtest can be created");
920 error_setg(errp
, "No backend specified");
924 if (OBJECT(uc
)->parent
!= qdev_get_machine()) {
925 q
->has_machine_link
= true;
926 object_property_add_const_link(qdev_get_machine(), "qtest", OBJECT(uc
));
928 /* -qtest was used. */
931 qtest_server_start(q
, errp
);
934 static void qtest_unparent(Object
*obj
)
936 QTest
*q
= QTEST(obj
);
939 qemu_chr_fe_disconnect(&q
->qtest_chr
);
940 assert(!qtest_opened
);
941 qemu_chr_fe_deinit(&q
->qtest_chr
, false);
943 fclose(qtest_log_fp
);
949 if (q
->has_machine_link
) {
950 object_property_del(qdev_get_machine(), "qtest");
951 q
->has_machine_link
= false;
955 static void qtest_set_log(Object
*obj
, const char *value
, Error
**errp
)
957 QTest
*q
= QTEST(obj
);
960 error_setg(errp
, "Property 'log' can not be set now");
963 q
->log
= g_strdup(value
);
967 static char *qtest_get_log(Object
*obj
, Error
**errp
)
969 QTest
*q
= QTEST(obj
);
971 return g_strdup(q
->log
);
974 static void qtest_set_chardev(Object
*obj
, const char *value
, Error
**errp
)
976 QTest
*q
= QTEST(obj
);
980 error_setg(errp
, "Property 'chardev' can not be set now");
984 chr
= qemu_chr_find(value
);
986 error_setg(errp
, "Cannot find character device '%s'", value
);
991 q
->chr_name
= g_strdup(value
);
994 object_unref(q
->chr
);
1000 static char *qtest_get_chardev(Object
*obj
, Error
**errp
)
1002 QTest
*q
= QTEST(obj
);
1004 return g_strdup(q
->chr_name
);
1007 static void qtest_class_init(ObjectClass
*oc
, void *data
)
1009 UserCreatableClass
*ucc
= USER_CREATABLE_CLASS(oc
);
1011 oc
->unparent
= qtest_unparent
;
1012 ucc
->complete
= qtest_complete
;
1014 object_class_property_add_str(oc
, "chardev",
1015 qtest_get_chardev
, qtest_set_chardev
);
1016 object_class_property_add_str(oc
, "log",
1017 qtest_get_log
, qtest_set_log
);
1020 static const TypeInfo qtest_info
= {
1022 .parent
= TYPE_OBJECT
,
1023 .class_init
= qtest_class_init
,
1024 .instance_size
= sizeof(QTest
),
1025 .interfaces
= (InterfaceInfo
[]) {
1026 { TYPE_USER_CREATABLE
},
1031 static void register_types(void)
1033 type_register_static(&qtest_info
);
1036 type_init(register_types
);