1 /*
2 * QTest
3 *
4 * Copyright IBM, Corp. 2012
5 * Copyright Red Hat, Inc. 2012
6 * Copyright SUSE LINUX Products GmbH 2013
7 *
8 * Authors:
9 * Anthony Liguori <aliguori@us.ibm.com>
10 * Paolo Bonzini <pbonzini@redhat.com>
11 * Andreas Färber <afaerber@suse.de>
12 *
13 * This work is licensed under the terms of the GNU GPL, version 2 or later.
14 * See the COPYING file in the top-level directory.
15 */
16
17 #include "qemu/osdep.h"
18
19 #ifndef _WIN32
20 #include <sys/socket.h>
21 #include <sys/wait.h>
22 #include <sys/un.h>
23 #endif /* _WIN32 */
24 #ifdef __linux__
25 #include <sys/prctl.h>
26 #endif /* __linux__ */
27 #ifdef __FreeBSD__
28 #include <sys/procctl.h>
29 #endif /* __FreeBSD__ */
30
31 #include "libqtest.h"
32 #include "libqmp.h"
33 #include "qemu/accel.h"
34 #include "qemu/ctype.h"
35 #include "qemu/cutils.h"
36 #include "qemu/sockets.h"
37 #include "qobject/qdict.h"
38 #include "qobject/qjson.h"
39 #include "qobject/qlist.h"
40 #include "qobject/qstring.h"
41 #include "qobject/qbool.h"
42
43 #define MAX_IRQ 256
44
45 #ifndef _WIN32
46 # define SOCKET_TIMEOUT 50
47 # define CMD_EXEC "exec "
48 # define DEV_STDERR "/dev/fd/2"
49 # define DEV_NULL "/dev/null"
50 #else
51 # define SOCKET_TIMEOUT 50000
52 # define CMD_EXEC ""
53 # define DEV_STDERR "2"
54 # define DEV_NULL "nul"
55 #endif
56
57 #define WAITPID_TIMEOUT 30
58
59 typedef void (*QTestSendFn)(QTestState *s, const char *buf);
60 typedef void (*ExternalSendFn)(void *s, const char *buf);
61 typedef GString* (*QTestRecvFn)(QTestState *);
62
63 typedef struct QTestClientTransportOps {
64 QTestSendFn send; /* for sending qtest commands */
65
66 /*
67 * use external_send to send qtest command strings through functions which
68 * do not accept a QTestState as the first parameter.
69 */
70 ExternalSendFn external_send;
71
72 QTestRecvFn recv_line; /* for receiving qtest command responses */
73 } QTestTransportOps;
74
75 struct QTestState
76 {
77 int fd;
78 int qmp_fd;
79 int sock;
80 int qmpsock;
81 pid_t qemu_pid; /* our child QEMU process */
82 int wstatus;
83 #ifdef _WIN32
84 DWORD exit_code;
85 #endif
86 int expected_status;
87 bool big_endian;
88 bool irq_level[MAX_IRQ];
89 GString *rx;
90 QTestTransportOps ops;
91 GList *pending_events;
92 QTestQMPEventCallback eventCB;
93 void *eventData;
94 };
95
96 static GHookList abrt_hooks;
97 static void (*sighandler_old)(int);
98 static bool silence_spawn_log;
99
100 static int qtest_query_target_endianness(QTestState *s);
101
102 static void qtest_client_socket_send(QTestState*, const char *buf);
103 static void socket_send(int fd, const char *buf, size_t size);
104
105 static GString *qtest_client_socket_recv_line(QTestState *);
106
107 static void qtest_client_set_tx_handler(QTestState *s, QTestSendFn send);
108 static void qtest_client_set_rx_handler(QTestState *s, QTestRecvFn recv);
109
init_socket(const char * socket_path)110 static int init_socket(const char *socket_path)
111 {
112 int sock = qtest_socket_server(socket_path);
113 qemu_set_cloexec(sock);
114 return sock;
115 }
116
socket_accept(int sock)117 static int socket_accept(int sock)
118 {
119 struct sockaddr_un addr;
120 socklen_t addrlen;
121 int ret;
122 /*
123 * timeout unit of blocking receive calls is different among platforms.
124 * It's in seconds on non-Windows platforms but milliseconds on Windows.
125 */
126 #ifndef _WIN32
127 struct timeval timeout = { .tv_sec = SOCKET_TIMEOUT,
128 .tv_usec = 0 };
129 #else
130 DWORD timeout = SOCKET_TIMEOUT;
131 #endif
132
133 if (setsockopt(sock, SOL_SOCKET, SO_RCVTIMEO,
134 (void *)&timeout, sizeof(timeout))) {
135 fprintf(stderr, "%s failed to set SO_RCVTIMEO: %s\n",
136 __func__, strerror(errno));
137 close(sock);
138 return -1;
139 }
140
141 do {
142 addrlen = sizeof(addr);
143 ret = accept(sock, (struct sockaddr *)&addr, &addrlen);
144 } while (ret == -1 && errno == EINTR);
145 if (ret == -1) {
146 fprintf(stderr, "%s failed: %s\n", __func__, strerror(errno));
147 }
148 close(sock);
149
150 return ret;
151 }
152
qtest_pid(QTestState * s)153 pid_t qtest_pid(QTestState *s)
154 {
155 return s->qemu_pid;
156 }
157
qtest_probe_child(QTestState * s)158 bool qtest_probe_child(QTestState *s)
159 {
160 pid_t pid = s->qemu_pid;
161
162 if (pid != -1) {
163 #ifndef _WIN32
164 pid = waitpid(pid, &s->wstatus, WNOHANG);
165 if (pid == 0) {
166 return true;
167 }
168 #else
169 GetExitCodeProcess((HANDLE)pid, &s->exit_code);
170 if (s->exit_code == STILL_ACTIVE) {
171 return true;
172 }
173 CloseHandle((HANDLE)pid);
174 #endif
175 s->qemu_pid = -1;
176 qtest_remove_abrt_handler(s);
177 }
178 return false;
179 }
180
qtest_set_expected_status(QTestState * s,int status)181 void qtest_set_expected_status(QTestState *s, int status)
182 {
183 s->expected_status = status;
184 }
185
qtest_check_status(QTestState * s)186 static void qtest_check_status(QTestState *s)
187 {
188 assert(s->qemu_pid == -1);
189
190 /*
191 * Check whether qemu exited with expected exit status; anything else is
192 * fishy and should be logged with as much detail as possible.
193 */
194 #ifndef _WIN32
195 int wstatus = s->wstatus;
196 if (WIFEXITED(wstatus) && WEXITSTATUS(wstatus) != s->expected_status) {
197 fprintf(stderr, "%s:%d: kill_qemu() tried to terminate QEMU "
198 "process but encountered exit status %d (expected %d)\n",
199 __FILE__, __LINE__, WEXITSTATUS(wstatus), s->expected_status);
200 abort();
201 } else if (WIFSIGNALED(wstatus)) {
202 int sig = WTERMSIG(wstatus);
203 const char *signame = strsignal(sig) ?: "unknown ???";
204 const char *dump = WCOREDUMP(wstatus) ? " (core dumped)" : "";
205
206 fprintf(stderr, "%s:%d: kill_qemu() detected QEMU death "
207 "from signal %d (%s)%s\n",
208 __FILE__, __LINE__, sig, signame, dump);
209 abort();
210 }
211 #else
212 if (s->exit_code != s->expected_status) {
213 fprintf(stderr, "%s:%d: kill_qemu() tried to terminate QEMU "
214 "process but encountered exit status %ld (expected %d)\n",
215 __FILE__, __LINE__, s->exit_code, s->expected_status);
216 abort();
217 }
218 #endif
219 }
220
qtest_system_reset_nowait(QTestState * s)221 void qtest_system_reset_nowait(QTestState *s)
222 {
223 /* Request the system reset, but do not wait for it to complete */
224 qtest_qmp_assert_success(s, "{'execute': 'system_reset' }");
225 }
226
qtest_system_reset(QTestState * s)227 void qtest_system_reset(QTestState *s)
228 {
229 qtest_system_reset_nowait(s);
230 /*
231 * Wait for the RESET event, which is sent once the system reset
232 * has actually completed.
233 */
234 qtest_qmp_eventwait(s, "RESET");
235 }
236
qtest_wait_qemu(QTestState * s)237 void qtest_wait_qemu(QTestState *s)
238 {
239 if (s->qemu_pid != -1) {
240 #ifndef _WIN32
241 pid_t pid;
242 uint64_t end;
243
244 /* poll for a while until sending SIGKILL */
245 end = g_get_monotonic_time() + WAITPID_TIMEOUT * G_TIME_SPAN_SECOND;
246
247 do {
248 pid = waitpid(s->qemu_pid, &s->wstatus, WNOHANG);
249 if (pid != 0) {
250 break;
251 }
252 g_usleep(100 * 1000);
253 } while (g_get_monotonic_time() < end);
254
255 if (pid == 0) {
256 kill(s->qemu_pid, SIGKILL);
257 pid = RETRY_ON_EINTR(waitpid(s->qemu_pid, &s->wstatus, 0));
258 }
259
260 assert(pid == s->qemu_pid);
261 #else
262 DWORD ret;
263
264 ret = WaitForSingleObject((HANDLE)s->qemu_pid, INFINITE);
265 assert(ret == WAIT_OBJECT_0);
266 GetExitCodeProcess((HANDLE)s->qemu_pid, &s->exit_code);
267 CloseHandle((HANDLE)s->qemu_pid);
268 #endif
269
270 s->qemu_pid = -1;
271 qtest_remove_abrt_handler(s);
272 }
273 qtest_check_status(s);
274 }
275
qtest_kill_qemu(QTestState * s)276 void qtest_kill_qemu(QTestState *s)
277 {
278 /* Skip wait if qtest_probe_child() already reaped */
279 if (s->qemu_pid != -1) {
280 #ifndef _WIN32
281 kill(s->qemu_pid, SIGTERM);
282 #else
283 TerminateProcess((HANDLE)s->qemu_pid, s->expected_status);
284 #endif
285 qtest_wait_qemu(s);
286 return;
287 }
288
289 qtest_check_status(s);
290 }
291
kill_qemu_hook_func(void * s)292 static void kill_qemu_hook_func(void *s)
293 {
294 qtest_kill_qemu(s);
295 }
296
sigabrt_handler(int signo)297 static void sigabrt_handler(int signo)
298 {
299 g_hook_list_invoke(&abrt_hooks, FALSE);
300 }
301
setup_sigabrt_handler(void)302 static void setup_sigabrt_handler(void)
303 {
304 sighandler_old = signal(SIGABRT, sigabrt_handler);
305 }
306
cleanup_sigabrt_handler(void)307 static void cleanup_sigabrt_handler(void)
308 {
309 signal(SIGABRT, sighandler_old);
310 }
311
hook_list_is_empty(GHookList * hook_list)312 static bool hook_list_is_empty(GHookList *hook_list)
313 {
314 GHook *hook = g_hook_first_valid(hook_list, TRUE);
315
316 if (!hook) {
317 return true;
318 }
319
320 g_hook_unref(hook_list, hook);
321 return false;
322 }
323
qtest_add_abrt_handler(GHookFunc fn,const void * data)324 void qtest_add_abrt_handler(GHookFunc fn, const void *data)
325 {
326 GHook *hook;
327
328 if (!abrt_hooks.is_setup) {
329 g_hook_list_init(&abrt_hooks, sizeof(GHook));
330 }
331
332 /* Only install SIGABRT handler once */
333 if (hook_list_is_empty(&abrt_hooks)) {
334 setup_sigabrt_handler();
335 }
336
337 hook = g_hook_alloc(&abrt_hooks);
338 hook->func = fn;
339 hook->data = (void *)data;
340
341 g_hook_prepend(&abrt_hooks, hook);
342 }
343
qtest_remove_abrt_handler(void * data)344 void qtest_remove_abrt_handler(void *data)
345 {
346 GHook *hook = g_hook_find_data(&abrt_hooks, TRUE, data);
347
348 if (!hook) {
349 return;
350 }
351
352 g_hook_destroy_link(&abrt_hooks, hook);
353
354 /* Uninstall SIGABRT handler on last instance */
355 if (hook_list_is_empty(&abrt_hooks)) {
356 cleanup_sigabrt_handler();
357 }
358 }
359
qtest_qemu_binary(const char * var)360 static const char *qtest_qemu_binary(const char *var)
361 {
362 const char *qemu_bin;
363
364 if (var) {
365 qemu_bin = getenv(var);
366 if (qemu_bin) {
367 return qemu_bin;
368 }
369 }
370
371 qemu_bin = getenv("QTEST_QEMU_BINARY");
372 if (!qemu_bin) {
373 fprintf(stderr, "Environment variable QTEST_QEMU_BINARY required\n");
374 exit(1);
375 }
376
377 return qemu_bin;
378 }
379
380 #ifdef _WIN32
qtest_create_process(char * cmd)381 static pid_t qtest_create_process(char *cmd)
382 {
383 STARTUPINFO si;
384 PROCESS_INFORMATION pi;
385 BOOL ret;
386
387 ZeroMemory(&si, sizeof(si));
388 si.cb = sizeof(si);
389 ZeroMemory(&pi, sizeof(pi));
390
391 ret = CreateProcess(NULL, /* module name */
392 cmd, /* command line */
393 NULL, /* process handle not inheritable */
394 NULL, /* thread handle not inheritable */
395 FALSE, /* set handle inheritance to FALSE */
396 0, /* No creation flags */
397 NULL, /* use parent's environment block */
398 NULL, /* use parent's starting directory */
399 &si, /* pointer to STARTUPINFO structure */
400 &pi /* pointer to PROCESS_INFORMATION structure */
401 );
402 if (ret == 0) {
403 fprintf(stderr, "%s:%d: unable to create a new process (%s)\n",
404 __FILE__, __LINE__, strerror(GetLastError()));
405 abort();
406 }
407
408 return (pid_t)pi.hProcess;
409 }
410 #endif /* _WIN32 */
411
qtest_spawn_qemu(const char * qemu_bin,const char * fmt,...)412 static QTestState *G_GNUC_PRINTF(2, 3) qtest_spawn_qemu(const char *qemu_bin,
413 const char *fmt, ...)
414 {
415 va_list ap;
416 QTestState *s = g_new0(QTestState, 1);
417 const char *trace = g_getenv("QTEST_TRACE");
418 g_autofree char *tracearg = trace ?
419 g_strdup_printf("-trace %s ", trace) : g_strdup("");
420 g_autoptr(GString) command = g_string_new("");
421
422 va_start(ap, fmt);
423 g_string_append_printf(command, CMD_EXEC "%s %s", qemu_bin, tracearg);
424 g_string_append_vprintf(command, fmt, ap);
425 va_end(ap);
426
427 qtest_add_abrt_handler(kill_qemu_hook_func, s);
428
429 if (!silence_spawn_log) {
430 g_test_message("starting QEMU: %s", command->str);
431 }
432
433 #ifndef _WIN32
434 s->qemu_pid = fork();
435 if (s->qemu_pid == 0) {
436 #ifdef __linux__
437 /*
438 * Although we register a ABRT handler to kill off QEMU
439 * when g_assert() triggers, we want an extra safety
440 * net. The QEMU process might be non-functional and
441 * thus not have responded to SIGTERM. The test script
442 * might also have crashed with SEGV, in which case the
443 * cleanup handlers won't ever run.
444 *
445 * This PR_SET_PDEATHSIG setup will ensure any remaining
446 * QEMU will get terminated with SIGKILL in these cases.
447 */
448 prctl(PR_SET_PDEATHSIG, SIGKILL, 0, 0, 0);
449 #endif /* __linux__ */
450 #ifdef __FreeBSD__
451 int sig = SIGKILL;
452 procctl(P_PID, getpid(), PROC_PDEATHSIG_CTL, &sig);
453 #endif /* __FreeBSD__ */
454 execlp("/bin/sh", "sh", "-c", command->str, NULL);
455 exit(1);
456 }
457 #else
458 s->qemu_pid = qtest_create_process(command->str);
459 #endif /* _WIN32 */
460
461 return s;
462 }
463
qtest_socket_path(const char * suffix)464 static char *qtest_socket_path(const char *suffix)
465 {
466 return g_strdup_printf("%s/qtest-%d.%s", g_get_tmp_dir(), getpid(), suffix);
467 }
468
qtest_init_internal(const char * qemu_bin,const char * extra_args,bool do_connect)469 static QTestState *qtest_init_internal(const char *qemu_bin,
470 const char *extra_args,
471 bool do_connect)
472 {
473 QTestState *s;
474 int sock, qmpsock, i;
475 g_autofree gchar *socket_path = qtest_socket_path("sock");
476 g_autofree gchar *qmp_socket_path = qtest_socket_path("qmp");
477
478 /*
479 * It's possible that if an earlier test run crashed it might
480 * have left a stale unix socket lying around. Delete any
481 * stale old socket to avoid spurious test failures with
482 * tests/libqtest.c:70:init_socket: assertion failed (ret != -1): (-1 != -1)
483 */
484 unlink(socket_path);
485 unlink(qmp_socket_path);
486
487 socket_init();
488 sock = init_socket(socket_path);
489 qmpsock = init_socket(qmp_socket_path);
490
491 s = qtest_spawn_qemu(qemu_bin,
492 "-qtest unix:%s "
493 "-qtest-log %s "
494 "-chardev socket,path=%s,id=char0 "
495 "-mon chardev=char0,mode=control "
496 "-display none "
497 "-audio none "
498 "%s"
499 " -accel qtest",
500 socket_path,
501 getenv("QTEST_LOG") ? DEV_STDERR : DEV_NULL,
502 qmp_socket_path,
503 extra_args ?: "");
504
505 qtest_client_set_rx_handler(s, qtest_client_socket_recv_line);
506 qtest_client_set_tx_handler(s, qtest_client_socket_send);
507
508 s->rx = g_string_new("");
509 for (i = 0; i < MAX_IRQ; i++) {
510 s->irq_level[i] = false;
511 }
512
513 s->fd = -1;
514 s->qmp_fd = -1;
515 s->sock = sock;
516 s->qmpsock = qmpsock;
517 if (do_connect) {
518 qtest_connect(s);
519 }
520
521 /*
522 * Stopping QEMU for debugging is not supported on Windows.
523 *
524 * Using DebugActiveProcess() API can suspend the QEMU process,
525 * but gdb cannot attach to the process. Using the undocumented
526 * NtSuspendProcess() can suspend the QEMU process and gdb can
527 * attach to the process, but gdb cannot resume it.
528 */
529 #ifndef _WIN32
530 if (getenv("QTEST_STOP")) {
531 kill(s->qemu_pid, SIGSTOP);
532 }
533 #endif
534
535 return s;
536 }
537
qtest_connect(QTestState * s)538 void qtest_connect(QTestState *s)
539 {
540 g_autofree gchar *socket_path = qtest_socket_path("sock");
541 g_autofree gchar *qmp_socket_path = qtest_socket_path("qmp");
542
543 g_assert(s->sock >= 0 && s->qmpsock >= 0);
544 s->fd = socket_accept(s->sock);
545 if (s->fd >= 0) {
546 s->qmp_fd = socket_accept(s->qmpsock);
547 }
548 unlink(socket_path);
549 unlink(qmp_socket_path);
550 g_assert(s->fd >= 0 && s->qmp_fd >= 0);
551 s->sock = s->qmpsock = -1;
552 /* ask endianness of the target */
553 s->big_endian = qtest_query_target_endianness(s);
554 }
555
qtest_init_without_qmp_handshake(const char * extra_args)556 QTestState *qtest_init_without_qmp_handshake(const char *extra_args)
557 {
558 return qtest_init_internal(qtest_qemu_binary(NULL), extra_args, true);
559 }
560
qtest_qmp_handshake(QTestState * s,QList * capabilities)561 void qtest_qmp_handshake(QTestState *s, QList *capabilities)
562 {
563 /* Read the QMP greeting and then do the handshake */
564 QDict *greeting = qtest_qmp_receive(s);
565 qobject_unref(greeting);
566
567 if (capabilities) {
568 qtest_qmp_assert_success(s,
569 "{ 'execute': 'qmp_capabilities', "
570 "'arguments': { 'enable': %p } }",
571 qobject_ref(capabilities));
572 } else {
573 qtest_qmp_assert_success(s, "{ 'execute': 'qmp_capabilities' }");
574 }
575 }
576
qtest_init_ext(const char * var,const char * extra_args,QList * capabilities,bool do_connect)577 QTestState *qtest_init_ext(const char *var, const char *extra_args,
578 QList *capabilities, bool do_connect)
579 {
580 QTestState *s = qtest_init_internal(qtest_qemu_binary(var), extra_args,
581 do_connect);
582
583 if (do_connect) {
584 qtest_qmp_handshake(s, capabilities);
585 } else {
586 /*
587 * If the connection is delayed, the capabilities must be set
588 * at that moment.
589 */
590 assert(!capabilities);
591 }
592 return s;
593 }
594
qtest_init(const char * extra_args)595 QTestState *qtest_init(const char *extra_args)
596 {
597 return qtest_init_ext(NULL, extra_args, NULL, true);
598 }
599
qtest_vinitf(const char * fmt,va_list ap)600 QTestState *qtest_vinitf(const char *fmt, va_list ap)
601 {
602 char *args = g_strdup_vprintf(fmt, ap);
603 QTestState *s;
604
605 s = qtest_init(args);
606 g_free(args);
607 return s;
608 }
609
qtest_initf(const char * fmt,...)610 QTestState *qtest_initf(const char *fmt, ...)
611 {
612 va_list ap;
613 QTestState *s;
614
615 va_start(ap, fmt);
616 s = qtest_vinitf(fmt, ap);
617 va_end(ap);
618 return s;
619 }
620
qtest_init_with_serial(const char * extra_args,int * sock_fd)621 QTestState *qtest_init_with_serial(const char *extra_args, int *sock_fd)
622 {
623 int sock_fd_init;
624 g_autofree char *sock_dir = NULL;
625 char *sock_path;
626 QTestState *qts;
627
628 sock_dir = g_dir_make_tmp("qtest-serial-XXXXXX", NULL);
629 g_assert_true(sock_dir != NULL);
630 sock_path = g_strdup_printf("%s/sock", sock_dir);
631
632 socket_init();
633 sock_fd_init = init_socket(sock_path);
634
635 qts = qtest_initf("-chardev socket,id=s0,path=%s -serial chardev:s0 %s",
636 sock_path, extra_args);
637
638 *sock_fd = socket_accept(sock_fd_init);
639
640 unlink(sock_path);
641 g_free(sock_path);
642 rmdir(sock_dir);
643
644 g_assert_true(*sock_fd >= 0);
645
646 return qts;
647 }
648
qtest_quit(QTestState * s)649 void qtest_quit(QTestState *s)
650 {
651 qtest_remove_abrt_handler(s);
652
653 qtest_kill_qemu(s);
654 close(s->fd);
655 close(s->qmp_fd);
656 g_string_free(s->rx, true);
657
658 for (GList *it = s->pending_events; it != NULL; it = it->next) {
659 qobject_unref((QDict *)it->data);
660 }
661
662 g_list_free(s->pending_events);
663
664 g_free(s);
665 }
666
socket_send(int fd,const char * buf,size_t size)667 static void socket_send(int fd, const char *buf, size_t size)
668 {
669 ssize_t res = qemu_send_full(fd, buf, size);
670
671 assert(res == size);
672 }
673
qtest_client_socket_send(QTestState * s,const char * buf)674 static void qtest_client_socket_send(QTestState *s, const char *buf)
675 {
676 socket_send(s->fd, buf, strlen(buf));
677 }
678
qtest_sendf(QTestState * s,const char * fmt,...)679 static void G_GNUC_PRINTF(2, 3) qtest_sendf(QTestState *s, const char *fmt, ...)
680 {
681 va_list ap;
682
683 va_start(ap, fmt);
684 gchar *str = g_strdup_vprintf(fmt, ap);
685 va_end(ap);
686
687 s->ops.send(s, str);
688 g_free(str);
689 }
690
qtest_client_socket_recv_line(QTestState * s)691 static GString *qtest_client_socket_recv_line(QTestState *s)
692 {
693 GString *line;
694 size_t offset;
695 char *eol;
696
697 while ((eol = strchr(s->rx->str, '\n')) == NULL) {
698 ssize_t len;
699 char buffer[1024];
700
701 len = recv(s->fd, buffer, sizeof(buffer), 0);
702 if (len == -1 && errno == EINTR) {
703 continue;
704 }
705
706 if (len == -1 || len == 0) {
707 fprintf(stderr, "Broken pipe\n");
708 abort();
709 }
710
711 g_string_append_len(s->rx, buffer, len);
712 }
713
714 offset = eol - s->rx->str;
715 line = g_string_new_len(s->rx->str, offset);
716 g_string_erase(s->rx, 0, offset + 1);
717
718 return line;
719 }
720
qtest_rsp_args(QTestState * s,int expected_args)721 static gchar **qtest_rsp_args(QTestState *s, int expected_args)
722 {
723 GString *line;
724 gchar **words;
725 int i;
726
727 redo:
728 line = s->ops.recv_line(s);
729 words = g_strsplit(line->str, " ", 0);
730 g_string_free(line, TRUE);
731
732 if (strcmp(words[0], "IRQ") == 0) {
733 long irq;
734 int ret;
735
736 g_assert(words[1] != NULL);
737 g_assert(words[2] != NULL);
738
739 ret = qemu_strtol(words[2], NULL, 0, &irq);
740 g_assert(!ret);
741 g_assert_cmpint(irq, >=, 0);
742 g_assert_cmpint(irq, <, MAX_IRQ);
743
744 if (strcmp(words[1], "raise") == 0) {
745 s->irq_level[irq] = true;
746 } else {
747 s->irq_level[irq] = false;
748 }
749
750 g_strfreev(words);
751 goto redo;
752 }
753
754 g_assert(words[0] != NULL);
755 g_assert_cmpstr(words[0], ==, "OK");
756
757 for (i = 0; i < expected_args; i++) {
758 g_assert(words[i] != NULL);
759 }
760
761 return words;
762 }
763
qtest_rsp(QTestState * s)764 static void qtest_rsp(QTestState *s)
765 {
766 gchar **words = qtest_rsp_args(s, 0);
767
768 g_strfreev(words);
769 }
770
qtest_query_target_endianness(QTestState * s)771 static int qtest_query_target_endianness(QTestState *s)
772 {
773 gchar **args;
774 int big_endian;
775
776 qtest_sendf(s, "endianness\n");
777 args = qtest_rsp_args(s, 1);
778 g_assert(strcmp(args[1], "big") == 0 || strcmp(args[1], "little") == 0);
779 big_endian = strcmp(args[1], "big") == 0;
780 g_strfreev(args);
781
782 return big_endian;
783 }
784
qtest_qmp_receive(QTestState * s)785 QDict *qtest_qmp_receive(QTestState *s)
786 {
787 while (true) {
788 QDict *response = qtest_qmp_receive_dict(s);
789
790 if (!qdict_get_try_str(response, "event")) {
791 return response;
792 }
793
794 if (!s->eventCB ||
795 !s->eventCB(s, qdict_get_str(response, "event"),
796 response, s->eventData)) {
797 /* Stash the event for a later consumption */
798 s->pending_events = g_list_append(s->pending_events, response);
799 } else {
800 qobject_unref(response);
801 }
802 }
803 }
804
qtest_qmp_receive_dict(QTestState * s)805 QDict *qtest_qmp_receive_dict(QTestState *s)
806 {
807 g_assert(s->qmp_fd >= 0);
808 return qmp_fd_receive(s->qmp_fd);
809 }
810
qtest_socket_server(const char * socket_path)811 int qtest_socket_server(const char *socket_path)
812 {
813 struct sockaddr_un addr;
814 int sock;
815 int ret;
816
817 sock = socket(PF_UNIX, SOCK_STREAM, 0);
818 g_assert_cmpint(sock, !=, -1);
819
820 addr.sun_family = AF_UNIX;
821 snprintf(addr.sun_path, sizeof(addr.sun_path), "%s", socket_path);
822
823 ret = RETRY_ON_EINTR(bind(sock, (struct sockaddr *)&addr, sizeof(addr)));
824 g_assert_cmpint(ret, !=, -1);
825 ret = listen(sock, 1);
826 g_assert_cmpint(ret, !=, -1);
827
828 return sock;
829 }
830
831 #ifndef _WIN32
qtest_qmp_vsend_fds(QTestState * s,int * fds,size_t fds_num,const char * fmt,va_list ap)832 void qtest_qmp_vsend_fds(QTestState *s, int *fds, size_t fds_num,
833 const char *fmt, va_list ap)
834 {
835 g_assert(s->qmp_fd >= 0);
836 qmp_fd_vsend_fds(s->qmp_fd, fds, fds_num, fmt, ap);
837 }
838 #endif
839
qtest_qmp_vsend(QTestState * s,const char * fmt,va_list ap)840 void qtest_qmp_vsend(QTestState *s, const char *fmt, va_list ap)
841 {
842 g_assert(s->qmp_fd >= 0);
843 qmp_fd_vsend(s->qmp_fd, fmt, ap);
844 }
845
846 #ifndef _WIN32
qtest_vqmp_fds(QTestState * s,int * fds,size_t fds_num,const char * fmt,va_list ap)847 QDict *qtest_vqmp_fds(QTestState *s, int *fds, size_t fds_num,
848 const char *fmt, va_list ap)
849 {
850 qtest_qmp_vsend_fds(s, fds, fds_num, fmt, ap);
851
852 /* Receive reply */
853 return qtest_qmp_receive(s);
854 }
855 #endif
856
qtest_vqmp(QTestState * s,const char * fmt,va_list ap)857 QDict *qtest_vqmp(QTestState *s, const char *fmt, va_list ap)
858 {
859 qtest_qmp_vsend(s, fmt, ap);
860
861 /* Receive reply */
862 return qtest_qmp_receive(s);
863 }
864
865 #ifndef _WIN32
qtest_qmp_fds(QTestState * s,int * fds,size_t fds_num,const char * fmt,...)866 QDict *qtest_qmp_fds(QTestState *s, int *fds, size_t fds_num,
867 const char *fmt, ...)
868 {
869 va_list ap;
870 QDict *response;
871
872 va_start(ap, fmt);
873 response = qtest_vqmp_fds(s, fds, fds_num, fmt, ap);
874 va_end(ap);
875 return response;
876 }
877 #endif
878
qtest_qmp(QTestState * s,const char * fmt,...)879 QDict *qtest_qmp(QTestState *s, const char *fmt, ...)
880 {
881 va_list ap;
882 QDict *response;
883
884 va_start(ap, fmt);
885 response = qtest_vqmp(s, fmt, ap);
886 va_end(ap);
887 return response;
888 }
889
qtest_qmp_send(QTestState * s,const char * fmt,...)890 void qtest_qmp_send(QTestState *s, const char *fmt, ...)
891 {
892 va_list ap;
893
894 va_start(ap, fmt);
895 qtest_qmp_vsend(s, fmt, ap);
896 va_end(ap);
897 }
898
qtest_qmp_send_raw(QTestState * s,const char * fmt,...)899 void qtest_qmp_send_raw(QTestState *s, const char *fmt, ...)
900 {
901 va_list ap;
902
903 g_assert(s->qmp_fd >= 0);
904 va_start(ap, fmt);
905 qmp_fd_vsend_raw(s->qmp_fd, fmt, ap);
906 va_end(ap);
907 }
908
qtest_qmp_set_event_callback(QTestState * s,QTestQMPEventCallback cb,void * opaque)909 void qtest_qmp_set_event_callback(QTestState *s,
910 QTestQMPEventCallback cb, void *opaque)
911 {
912 s->eventCB = cb;
913 s->eventData = opaque;
914 }
915
qtest_qmp_event_ref(QTestState * s,const char * event)916 QDict *qtest_qmp_event_ref(QTestState *s, const char *event)
917 {
918 while (s->pending_events) {
919
920 GList *first = s->pending_events;
921 QDict *response = (QDict *)first->data;
922
923 s->pending_events = g_list_delete_link(s->pending_events, first);
924
925 if (!strcmp(qdict_get_str(response, "event"), event)) {
926 return response;
927 }
928 qobject_unref(response);
929 }
930 return NULL;
931 }
932
qtest_qmp_eventwait_ref(QTestState * s,const char * event)933 QDict *qtest_qmp_eventwait_ref(QTestState *s, const char *event)
934 {
935 QDict *response = qtest_qmp_event_ref(s, event);
936
937 if (response) {
938 return response;
939 }
940
941 for (;;) {
942 response = qtest_qmp_receive_dict(s);
943 if ((qdict_haskey(response, "event")) &&
944 (strcmp(qdict_get_str(response, "event"), event) == 0)) {
945 return response;
946 }
947 qobject_unref(response);
948 }
949 }
950
qtest_qmp_eventwait(QTestState * s,const char * event)951 void qtest_qmp_eventwait(QTestState *s, const char *event)
952 {
953 QDict *response;
954
955 response = qtest_qmp_eventwait_ref(s, event);
956 qobject_unref(response);
957 }
958
qtest_vhmp(QTestState * s,const char * fmt,va_list ap)959 char *qtest_vhmp(QTestState *s, const char *fmt, va_list ap)
960 {
961 char *cmd;
962 QDict *resp;
963 char *ret;
964
965 cmd = g_strdup_vprintf(fmt, ap);
966 resp = qtest_qmp(s, "{'execute': 'human-monitor-command',"
967 " 'arguments': {'command-line': %s}}",
968 cmd);
969 ret = g_strdup(qdict_get_try_str(resp, "return"));
970 g_assert(ret);
971 qobject_unref(resp);
972 g_free(cmd);
973 return ret;
974 }
975
qtest_hmp(QTestState * s,const char * fmt,...)976 char *qtest_hmp(QTestState *s, const char *fmt, ...)
977 {
978 va_list ap;
979 char *ret;
980
981 va_start(ap, fmt);
982 ret = qtest_vhmp(s, fmt, ap);
983 va_end(ap);
984 return ret;
985 }
986
qtest_get_arch(void)987 const char *qtest_get_arch(void)
988 {
989 const char *qemu = qtest_qemu_binary(NULL);
990 const char *end = strrchr(qemu, '-');
991
992 if (!end) {
993 fprintf(stderr, "Can't determine architecture from binary name.\n");
994 exit(1);
995 }
996
997 if (!strstr(qemu, "-system-")) {
998 fprintf(stderr, "QTEST_QEMU_BINARY must end with *-system-<arch> "
999 "where 'arch' is the target\narchitecture (x86_64, aarch64, "
1000 "etc).\n");
1001 exit(1);
1002 }
1003
1004 return end + 1;
1005 }
1006
qtest_qom_has_concrete_type(const char * parent_typename,const char * child_typename,QList ** cached_list)1007 static bool qtest_qom_has_concrete_type(const char *parent_typename,
1008 const char *child_typename,
1009 QList **cached_list)
1010 {
1011 QList *list = cached_list ? *cached_list : NULL;
1012 const QListEntry *p;
1013 QObject *qobj;
1014 QString *qstr;
1015 QDict *devinfo;
1016 int idx;
1017
1018 if (!list) {
1019 QDict *resp;
1020 QDict *args;
1021 QTestState *qts = qtest_init("-machine none");
1022
1023 args = qdict_new();
1024 qdict_put_bool(args, "abstract", false);
1025 qdict_put_str(args, "implements", parent_typename);
1026
1027 resp = qtest_qmp(qts, "{'execute': 'qom-list-types', 'arguments': %p }",
1028 args);
1029 g_assert(qdict_haskey(resp, "return"));
1030 list = qdict_get_qlist(resp, "return");
1031 qobject_ref(list);
1032 qobject_unref(resp);
1033
1034 qtest_quit(qts);
1035
1036 if (cached_list) {
1037 *cached_list = list;
1038 }
1039 }
1040
1041 for (p = qlist_first(list), idx = 0; p; p = qlist_next(p), idx++) {
1042 devinfo = qobject_to(QDict, qlist_entry_obj(p));
1043 g_assert(devinfo);
1044
1045 qobj = qdict_get(devinfo, "name");
1046 g_assert(qobj);
1047 qstr = qobject_to(QString, qobj);
1048 g_assert(qstr);
1049 if (g_str_equal(qstring_get_str(qstr), child_typename)) {
1050 return true;
1051 }
1052 }
1053
1054 return false;
1055 }
1056
qtest_has_accel(const char * accel_name)1057 bool qtest_has_accel(const char *accel_name)
1058 {
1059 static QList *list;
1060 g_autofree char *accel_type = NULL;
1061
1062 if (g_str_equal(accel_name, "kvm")) {
1063 int i;
1064 const char *arch = qtest_get_arch();
1065 const char *targets[] = { CONFIG_KVM_TARGETS };
1066
1067 for (i = 0; i < ARRAY_SIZE(targets); i++) {
1068 if (!strncmp(targets[i], arch, strlen(arch))) {
1069 if (!access("/dev/kvm", R_OK | W_OK)) {
1070 return true;
1071 }
1072 }
1073 }
1074 return false;
1075 }
1076
1077 accel_type = g_strconcat(accel_name, ACCEL_CLASS_SUFFIX, NULL);
1078
1079 return qtest_qom_has_concrete_type("accel", accel_type, &list);
1080 }
1081
qtest_get_irq(QTestState * s,int num)1082 bool qtest_get_irq(QTestState *s, int num)
1083 {
1084 /* dummy operation in order to make sure irq is up to date */
1085 qtest_inb(s, 0);
1086
1087 return s->irq_level[num];
1088 }
1089
qtest_module_load(QTestState * s,const char * prefix,const char * libname)1090 void qtest_module_load(QTestState *s, const char *prefix, const char *libname)
1091 {
1092 qtest_sendf(s, "module_load %s %s\n", prefix, libname);
1093 qtest_rsp(s);
1094 }
1095
qtest_clock_rsp(QTestState * s)1096 static int64_t qtest_clock_rsp(QTestState *s)
1097 {
1098 gchar **words;
1099 int64_t clock;
1100 words = qtest_rsp_args(s, 2);
1101 clock = g_ascii_strtoll(words[1], NULL, 0);
1102 g_strfreev(words);
1103 return clock;
1104 }
1105
qtest_clock_step_next(QTestState * s)1106 int64_t qtest_clock_step_next(QTestState *s)
1107 {
1108 qtest_sendf(s, "clock_step\n");
1109 return qtest_clock_rsp(s);
1110 }
1111
qtest_clock_step(QTestState * s,int64_t step)1112 int64_t qtest_clock_step(QTestState *s, int64_t step)
1113 {
1114 qtest_sendf(s, "clock_step %"PRIi64"\n", step);
1115 return qtest_clock_rsp(s);
1116 }
1117
qtest_clock_set(QTestState * s,int64_t val)1118 int64_t qtest_clock_set(QTestState *s, int64_t val)
1119 {
1120 qtest_sendf(s, "clock_set %"PRIi64"\n", val);
1121 return qtest_clock_rsp(s);
1122 }
1123
qtest_irq_intercept_out(QTestState * s,const char * qom_path)1124 void qtest_irq_intercept_out(QTestState *s, const char *qom_path)
1125 {
1126 qtest_sendf(s, "irq_intercept_out %s\n", qom_path);
1127 qtest_rsp(s);
1128 }
1129
qtest_irq_intercept_out_named(QTestState * s,const char * qom_path,const char * name)1130 void qtest_irq_intercept_out_named(QTestState *s, const char *qom_path, const char *name)
1131 {
1132 qtest_sendf(s, "irq_intercept_out %s %s\n", qom_path, name);
1133 qtest_rsp(s);
1134 }
1135
qtest_irq_intercept_in(QTestState * s,const char * qom_path)1136 void qtest_irq_intercept_in(QTestState *s, const char *qom_path)
1137 {
1138 qtest_sendf(s, "irq_intercept_in %s\n", qom_path);
1139 qtest_rsp(s);
1140 }
1141
qtest_set_irq_in(QTestState * s,const char * qom_path,const char * name,int num,int level)1142 void qtest_set_irq_in(QTestState *s, const char *qom_path, const char *name,
1143 int num, int level)
1144 {
1145 if (!name) {
1146 name = "unnamed-gpio-in";
1147 }
1148 qtest_sendf(s, "set_irq_in %s %s %d %d\n", qom_path, name, num, level);
1149 qtest_rsp(s);
1150 }
1151
qtest_out(QTestState * s,const char * cmd,uint16_t addr,uint32_t value)1152 static void qtest_out(QTestState *s, const char *cmd, uint16_t addr, uint32_t value)
1153 {
1154 qtest_sendf(s, "%s 0x%x 0x%x\n", cmd, addr, value);
1155 qtest_rsp(s);
1156 }
1157
qtest_outb(QTestState * s,uint16_t addr,uint8_t value)1158 void qtest_outb(QTestState *s, uint16_t addr, uint8_t value)
1159 {
1160 qtest_out(s, "outb", addr, value);
1161 }
1162
qtest_outw(QTestState * s,uint16_t addr,uint16_t value)1163 void qtest_outw(QTestState *s, uint16_t addr, uint16_t value)
1164 {
1165 qtest_out(s, "outw", addr, value);
1166 }
1167
qtest_outl(QTestState * s,uint16_t addr,uint32_t value)1168 void qtest_outl(QTestState *s, uint16_t addr, uint32_t value)
1169 {
1170 qtest_out(s, "outl", addr, value);
1171 }
1172
qtest_in(QTestState * s,const char * cmd,uint16_t addr)1173 static uint32_t qtest_in(QTestState *s, const char *cmd, uint16_t addr)
1174 {
1175 gchar **args;
1176 int ret;
1177 unsigned long value;
1178
1179 qtest_sendf(s, "%s 0x%x\n", cmd, addr);
1180 args = qtest_rsp_args(s, 2);
1181 ret = qemu_strtoul(args[1], NULL, 0, &value);
1182 g_assert(!ret && value <= UINT32_MAX);
1183 g_strfreev(args);
1184
1185 return value;
1186 }
1187
qtest_inb(QTestState * s,uint16_t addr)1188 uint8_t qtest_inb(QTestState *s, uint16_t addr)
1189 {
1190 return qtest_in(s, "inb", addr);
1191 }
1192
qtest_inw(QTestState * s,uint16_t addr)1193 uint16_t qtest_inw(QTestState *s, uint16_t addr)
1194 {
1195 return qtest_in(s, "inw", addr);
1196 }
1197
qtest_inl(QTestState * s,uint16_t addr)1198 uint32_t qtest_inl(QTestState *s, uint16_t addr)
1199 {
1200 return qtest_in(s, "inl", addr);
1201 }
1202
qtest_write(QTestState * s,const char * cmd,uint64_t addr,uint64_t value)1203 static void qtest_write(QTestState *s, const char *cmd, uint64_t addr,
1204 uint64_t value)
1205 {
1206 qtest_sendf(s, "%s 0x%" PRIx64 " 0x%" PRIx64 "\n", cmd, addr, value);
1207 qtest_rsp(s);
1208 }
1209
qtest_writeb(QTestState * s,uint64_t addr,uint8_t value)1210 void qtest_writeb(QTestState *s, uint64_t addr, uint8_t value)
1211 {
1212 qtest_write(s, "writeb", addr, value);
1213 }
1214
qtest_writew(QTestState * s,uint64_t addr,uint16_t value)1215 void qtest_writew(QTestState *s, uint64_t addr, uint16_t value)
1216 {
1217 qtest_write(s, "writew", addr, value);
1218 }
1219
qtest_writel(QTestState * s,uint64_t addr,uint32_t value)1220 void qtest_writel(QTestState *s, uint64_t addr, uint32_t value)
1221 {
1222 qtest_write(s, "writel", addr, value);
1223 }
1224
qtest_writeq(QTestState * s,uint64_t addr,uint64_t value)1225 void qtest_writeq(QTestState *s, uint64_t addr, uint64_t value)
1226 {
1227 qtest_write(s, "writeq", addr, value);
1228 }
1229
qtest_read(QTestState * s,const char * cmd,uint64_t addr)1230 static uint64_t qtest_read(QTestState *s, const char *cmd, uint64_t addr)
1231 {
1232 gchar **args;
1233 int ret;
1234 uint64_t value;
1235
1236 qtest_sendf(s, "%s 0x%" PRIx64 "\n", cmd, addr);
1237 args = qtest_rsp_args(s, 2);
1238 ret = qemu_strtou64(args[1], NULL, 0, &value);
1239 g_assert(!ret);
1240 g_strfreev(args);
1241
1242 return value;
1243 }
1244
qtest_readb(QTestState * s,uint64_t addr)1245 uint8_t qtest_readb(QTestState *s, uint64_t addr)
1246 {
1247 return qtest_read(s, "readb", addr);
1248 }
1249
qtest_readw(QTestState * s,uint64_t addr)1250 uint16_t qtest_readw(QTestState *s, uint64_t addr)
1251 {
1252 return qtest_read(s, "readw", addr);
1253 }
1254
qtest_readl(QTestState * s,uint64_t addr)1255 uint32_t qtest_readl(QTestState *s, uint64_t addr)
1256 {
1257 return qtest_read(s, "readl", addr);
1258 }
1259
qtest_readq(QTestState * s,uint64_t addr)1260 uint64_t qtest_readq(QTestState *s, uint64_t addr)
1261 {
1262 return qtest_read(s, "readq", addr);
1263 }
1264
hex2nib(char ch)1265 static int hex2nib(char ch)
1266 {
1267 if (ch >= '0' && ch <= '9') {
1268 return ch - '0';
1269 } else if (ch >= 'a' && ch <= 'f') {
1270 return 10 + (ch - 'a');
1271 } else if (ch >= 'A' && ch <= 'F') {
1272 return 10 + (ch - 'a');
1273 } else {
1274 return -1;
1275 }
1276 }
1277
qtest_memread(QTestState * s,uint64_t addr,void * data,size_t size)1278 void qtest_memread(QTestState *s, uint64_t addr, void *data, size_t size)
1279 {
1280 uint8_t *ptr = data;
1281 gchar **args;
1282 size_t i;
1283
1284 if (!size) {
1285 return;
1286 }
1287
1288 qtest_sendf(s, "read 0x%" PRIx64 " 0x%zx\n", addr, size);
1289 args = qtest_rsp_args(s, 2);
1290
1291 for (i = 0; i < size; i++) {
1292 ptr[i] = hex2nib(args[1][2 + (i * 2)]) << 4;
1293 ptr[i] |= hex2nib(args[1][2 + (i * 2) + 1]);
1294 }
1295
1296 g_strfreev(args);
1297 }
1298
qtest_rtas_call(QTestState * s,const char * name,uint32_t nargs,uint64_t args,uint32_t nret,uint64_t ret)1299 uint64_t qtest_rtas_call(QTestState *s, const char *name,
1300 uint32_t nargs, uint64_t args,
1301 uint32_t nret, uint64_t ret)
1302 {
1303 qtest_sendf(s, "rtas %s %u 0x%"PRIx64" %u 0x%"PRIx64"\n",
1304 name, nargs, args, nret, ret);
1305 qtest_rsp(s);
1306 return 0;
1307 }
1308
qtest_rsp_csr(QTestState * s,uint64_t * val)1309 static void qtest_rsp_csr(QTestState *s, uint64_t *val)
1310 {
1311 gchar **args;
1312 uint64_t ret;
1313 int rc;
1314
1315 args = qtest_rsp_args(s, 3);
1316
1317 rc = qemu_strtou64(args[1], NULL, 16, &ret);
1318 g_assert(rc == 0);
1319 rc = qemu_strtou64(args[2], NULL, 16, val);
1320 g_assert(rc == 0);
1321
1322 g_strfreev(args);
1323 }
1324
qtest_csr_call(QTestState * s,const char * name,uint64_t cpu,int csr,uint64_t * val)1325 uint64_t qtest_csr_call(QTestState *s, const char *name,
1326 uint64_t cpu, int csr,
1327 uint64_t *val)
1328 {
1329 qtest_sendf(s, "csr %s 0x%"PRIx64" %d 0x%"PRIx64"\n",
1330 name, cpu, csr, *val);
1331
1332 qtest_rsp_csr(s, val);
1333 return 0;
1334 }
1335
qtest_add_func(const char * str,void (* fn)(void))1336 void qtest_add_func(const char *str, void (*fn)(void))
1337 {
1338 gchar *path = g_strdup_printf("/%s/%s", qtest_get_arch(), str);
1339 g_test_add_func(path, fn);
1340 g_free(path);
1341 }
1342
qtest_add_data_func_full(const char * str,void * data,void (* fn)(const void *),GDestroyNotify data_free_func)1343 void qtest_add_data_func_full(const char *str, void *data,
1344 void (*fn)(const void *),
1345 GDestroyNotify data_free_func)
1346 {
1347 gchar *path = g_strdup_printf("/%s/%s", qtest_get_arch(), str);
1348 g_test_add_data_func_full(path, data, fn, data_free_func);
1349 g_free(path);
1350 }
1351
qtest_add_data_func(const char * str,const void * data,void (* fn)(const void *))1352 void qtest_add_data_func(const char *str, const void *data,
1353 void (*fn)(const void *))
1354 {
1355 gchar *path = g_strdup_printf("/%s/%s", qtest_get_arch(), str);
1356 g_test_add_data_func(path, data, fn);
1357 g_free(path);
1358 }
1359
qtest_bufwrite(QTestState * s,uint64_t addr,const void * data,size_t size)1360 void qtest_bufwrite(QTestState *s, uint64_t addr, const void *data, size_t size)
1361 {
1362 gchar *bdata;
1363
1364 bdata = g_base64_encode(data, size);
1365 qtest_sendf(s, "b64write 0x%" PRIx64 " 0x%zx ", addr, size);
1366 s->ops.send(s, bdata);
1367 s->ops.send(s, "\n");
1368 qtest_rsp(s);
1369 g_free(bdata);
1370 }
1371
qtest_bufread(QTestState * s,uint64_t addr,void * data,size_t size)1372 void qtest_bufread(QTestState *s, uint64_t addr, void *data, size_t size)
1373 {
1374 gchar **args;
1375 size_t len;
1376
1377 qtest_sendf(s, "b64read 0x%" PRIx64 " 0x%zx\n", addr, size);
1378 args = qtest_rsp_args(s, 2);
1379
1380 g_base64_decode_inplace(args[1], &len);
1381 if (size != len) {
1382 fprintf(stderr, "bufread: asked for %zu bytes but decoded %zu\n",
1383 size, len);
1384 len = MIN(len, size);
1385 }
1386
1387 memcpy(data, args[1], len);
1388 g_strfreev(args);
1389 }
1390
qtest_memwrite(QTestState * s,uint64_t addr,const void * data,size_t size)1391 void qtest_memwrite(QTestState *s, uint64_t addr, const void *data, size_t size)
1392 {
1393 const uint8_t *ptr = data;
1394 size_t i;
1395 char *enc;
1396
1397 if (!size) {
1398 return;
1399 }
1400
1401 enc = g_malloc(2 * size + 1);
1402
1403 for (i = 0; i < size; i++) {
1404 sprintf(&enc[i * 2], "%02x", ptr[i]);
1405 }
1406
1407 qtest_sendf(s, "write 0x%" PRIx64 " 0x%zx 0x%s\n", addr, size, enc);
1408 qtest_rsp(s);
1409 g_free(enc);
1410 }
1411
qtest_memset(QTestState * s,uint64_t addr,uint8_t pattern,size_t size)1412 void qtest_memset(QTestState *s, uint64_t addr, uint8_t pattern, size_t size)
1413 {
1414 qtest_sendf(s, "memset 0x%" PRIx64 " 0x%zx 0x%02x\n", addr, size, pattern);
1415 qtest_rsp(s);
1416 }
1417
qtest_vqmp_assert_failure_ref(QTestState * qts,const char * fmt,va_list args)1418 QDict *qtest_vqmp_assert_failure_ref(QTestState *qts,
1419 const char *fmt, va_list args)
1420 {
1421 QDict *response;
1422 QDict *ret;
1423
1424 response = qtest_vqmp(qts, fmt, args);
1425
1426 g_assert(response);
1427 if (!qdict_haskey(response, "error")) {
1428 g_autoptr(GString) s = qobject_to_json_pretty(QOBJECT(response), true);
1429 g_test_message("%s", s->str);
1430 }
1431 g_assert(qdict_haskey(response, "error"));
1432 g_assert(!qdict_haskey(response, "return"));
1433 ret = qdict_get_qdict(response, "error");
1434 qobject_ref(ret);
1435 qobject_unref(response);
1436
1437 return ret;
1438 }
1439
qtest_vqmp_assert_success_ref(QTestState * qts,const char * fmt,va_list args)1440 QDict *qtest_vqmp_assert_success_ref(QTestState *qts,
1441 const char *fmt, va_list args)
1442 {
1443 QDict *response;
1444 QDict *ret;
1445
1446 response = qtest_vqmp(qts, fmt, args);
1447
1448 g_assert(response);
1449 if (!qdict_haskey(response, "return")) {
1450 g_autoptr(GString) s = qobject_to_json_pretty(QOBJECT(response), true);
1451 g_test_message("%s", s->str);
1452 }
1453 g_assert(qdict_haskey(response, "return"));
1454 ret = qdict_get_qdict(response, "return");
1455 qobject_ref(ret);
1456 qobject_unref(response);
1457
1458 return ret;
1459 }
1460
qtest_vqmp_assert_success(QTestState * qts,const char * fmt,va_list args)1461 void qtest_vqmp_assert_success(QTestState *qts,
1462 const char *fmt, va_list args)
1463 {
1464 QDict *response;
1465
1466 response = qtest_vqmp_assert_success_ref(qts, fmt, args);
1467
1468 qobject_unref(response);
1469 }
1470
1471 #ifndef _WIN32
qtest_vqmp_fds_assert_success_ref(QTestState * qts,int * fds,size_t nfds,const char * fmt,va_list args)1472 QDict *qtest_vqmp_fds_assert_success_ref(QTestState *qts, int *fds, size_t nfds,
1473 const char *fmt, va_list args)
1474 {
1475 QDict *response;
1476 QDict *ret;
1477
1478 response = qtest_vqmp_fds(qts, fds, nfds, fmt, args);
1479
1480 g_assert(response);
1481 if (!qdict_haskey(response, "return")) {
1482 g_autoptr(GString) s = qobject_to_json_pretty(QOBJECT(response), true);
1483 g_test_message("%s", s->str);
1484 }
1485 g_assert(qdict_haskey(response, "return"));
1486 ret = qdict_get_qdict(response, "return");
1487 qobject_ref(ret);
1488 qobject_unref(response);
1489
1490 return ret;
1491 }
1492
qtest_vqmp_fds_assert_success(QTestState * qts,int * fds,size_t nfds,const char * fmt,va_list args)1493 void qtest_vqmp_fds_assert_success(QTestState *qts, int *fds, size_t nfds,
1494 const char *fmt, va_list args)
1495 {
1496 QDict *response;
1497 response = qtest_vqmp_fds_assert_success_ref(qts, fds, nfds, fmt, args);
1498 qobject_unref(response);
1499 }
1500 #endif /* !_WIN32 */
1501
qtest_qmp_assert_failure_ref(QTestState * qts,const char * fmt,...)1502 QDict *qtest_qmp_assert_failure_ref(QTestState *qts, const char *fmt, ...)
1503 {
1504 QDict *response;
1505 va_list ap;
1506
1507 va_start(ap, fmt);
1508 response = qtest_vqmp_assert_failure_ref(qts, fmt, ap);
1509 va_end(ap);
1510 return response;
1511 }
1512
qtest_qmp_assert_success_ref(QTestState * qts,const char * fmt,...)1513 QDict *qtest_qmp_assert_success_ref(QTestState *qts, const char *fmt, ...)
1514 {
1515 QDict *response;
1516 va_list ap;
1517 va_start(ap, fmt);
1518 response = qtest_vqmp_assert_success_ref(qts, fmt, ap);
1519 va_end(ap);
1520 return response;
1521 }
1522
qtest_qmp_assert_success(QTestState * qts,const char * fmt,...)1523 void qtest_qmp_assert_success(QTestState *qts, const char *fmt, ...)
1524 {
1525 va_list ap;
1526 va_start(ap, fmt);
1527 qtest_vqmp_assert_success(qts, fmt, ap);
1528 va_end(ap);
1529 }
1530
1531 #ifndef _WIN32
qtest_qmp_fds_assert_success_ref(QTestState * qts,int * fds,size_t nfds,const char * fmt,...)1532 QDict *qtest_qmp_fds_assert_success_ref(QTestState *qts, int *fds, size_t nfds,
1533 const char *fmt, ...)
1534 {
1535 QDict *response;
1536 va_list ap;
1537 va_start(ap, fmt);
1538 response = qtest_vqmp_fds_assert_success_ref(qts, fds, nfds, fmt, ap);
1539 va_end(ap);
1540 return response;
1541 }
1542
qtest_qmp_fds_assert_success(QTestState * qts,int * fds,size_t nfds,const char * fmt,...)1543 void qtest_qmp_fds_assert_success(QTestState *qts, int *fds, size_t nfds,
1544 const char *fmt, ...)
1545 {
1546 va_list ap;
1547 va_start(ap, fmt);
1548 qtest_vqmp_fds_assert_success(qts, fds, nfds, fmt, ap);
1549 va_end(ap);
1550 }
1551 #endif /* !_WIN32 */
1552
qtest_big_endian(QTestState * s)1553 bool qtest_big_endian(QTestState *s)
1554 {
1555 return s->big_endian;
1556 }
1557
qtest_check_machine_version(const char * mname,const char * basename,int major,int minor)1558 static bool qtest_check_machine_version(const char *mname, const char *basename,
1559 int major, int minor)
1560 {
1561 char *newname;
1562 bool is_equal;
1563
1564 newname = g_strdup_printf("%s-%i.%i", basename, major, minor);
1565 is_equal = g_str_equal(mname, newname);
1566 g_free(newname);
1567
1568 return is_equal;
1569 }
1570
qtest_is_old_versioned_machine(const char * mname)1571 static bool qtest_is_old_versioned_machine(const char *mname)
1572 {
1573 const char *dash = strrchr(mname, '-');
1574 const char *dot = strrchr(mname, '.');
1575 const char *chr;
1576 char *bname;
1577 const int major = QEMU_VERSION_MAJOR;
1578 const int minor = QEMU_VERSION_MINOR;
1579 bool res = false;
1580
1581 if (dash && dot && dot > dash) {
1582 for (chr = dash + 1; *chr; chr++) {
1583 if (!qemu_isdigit(*chr) && *chr != '.') {
1584 return false;
1585 }
1586 }
1587 /*
1588 * Now check if it is one of the latest versions. Check major + 1
1589 * and minor + 1 versions as well, since they might already exist
1590 * in the development branch.
1591 */
1592 bname = g_strdup(mname);
1593 bname[dash - mname] = 0;
1594 res = !qtest_check_machine_version(mname, bname, major + 1, 0) &&
1595 !qtest_check_machine_version(mname, bname, major, minor + 1) &&
1596 !qtest_check_machine_version(mname, bname, major, minor);
1597 g_free(bname);
1598 }
1599
1600 return res;
1601 }
1602
1603 struct MachInfo {
1604 char *name;
1605 char *alias;
1606 };
1607
1608 struct CpuModel {
1609 char *name;
1610 char *alias_of;
1611 bool deprecated;
1612 };
1613
qtest_free_machine_list(struct MachInfo * machines)1614 static void qtest_free_machine_list(struct MachInfo *machines)
1615 {
1616 if (machines) {
1617 for (int i = 0; machines[i].name != NULL; i++) {
1618 g_free(machines[i].name);
1619 g_free(machines[i].alias);
1620 }
1621
1622 g_free(machines);
1623 }
1624 }
1625
1626 /*
1627 * Returns an array with pointers to the available machine names.
1628 * The terminating entry has the name set to NULL.
1629 */
qtest_get_machines(const char * var)1630 static struct MachInfo *qtest_get_machines(const char *var)
1631 {
1632 static struct MachInfo *machines;
1633 static char *qemu_var;
1634 QDict *response, *minfo;
1635 QList *list;
1636 const QListEntry *p;
1637 QObject *qobj;
1638 QString *qstr;
1639 QTestState *qts;
1640 int idx;
1641
1642 if (g_strcmp0(qemu_var, var)) {
1643 g_free(qemu_var);
1644 qemu_var = g_strdup(var);
1645
1646 /* new qemu, clear the cache */
1647 qtest_free_machine_list(machines);
1648 machines = NULL;
1649 }
1650
1651 if (machines) {
1652 return machines;
1653 }
1654
1655 silence_spawn_log = !g_test_verbose();
1656
1657 qts = qtest_init_ext(qemu_var, "-machine none", NULL, true);
1658 response = qtest_qmp(qts, "{ 'execute': 'query-machines' }");
1659 g_assert(response);
1660 list = qdict_get_qlist(response, "return");
1661 g_assert(list);
1662
1663 machines = g_new(struct MachInfo, qlist_size(list) + 1);
1664
1665 for (p = qlist_first(list), idx = 0; p; p = qlist_next(p), idx++) {
1666 minfo = qobject_to(QDict, qlist_entry_obj(p));
1667 g_assert(minfo);
1668
1669 qobj = qdict_get(minfo, "name");
1670 g_assert(qobj);
1671 qstr = qobject_to(QString, qobj);
1672 g_assert(qstr);
1673 machines[idx].name = g_strdup(qstring_get_str(qstr));
1674
1675 qobj = qdict_get(minfo, "alias");
1676 if (qobj) { /* The alias is optional */
1677 qstr = qobject_to(QString, qobj);
1678 g_assert(qstr);
1679 machines[idx].alias = g_strdup(qstring_get_str(qstr));
1680 } else {
1681 machines[idx].alias = NULL;
1682 }
1683 }
1684
1685 qtest_quit(qts);
1686 qobject_unref(response);
1687
1688 silence_spawn_log = false;
1689
1690 memset(&machines[idx], 0, sizeof(struct MachInfo)); /* Terminating entry */
1691 return machines;
1692 }
1693
qtest_get_cpu_models(void)1694 static struct CpuModel *qtest_get_cpu_models(void)
1695 {
1696 static struct CpuModel *cpus;
1697 QDict *response, *minfo;
1698 QList *list;
1699 const QListEntry *p;
1700 QObject *qobj;
1701 QString *qstr;
1702 QBool *qbool;
1703 QTestState *qts;
1704 int idx;
1705
1706 if (cpus) {
1707 return cpus;
1708 }
1709
1710 silence_spawn_log = !g_test_verbose();
1711
1712 qts = qtest_init_ext(NULL, "-machine none", NULL, true);
1713 response = qtest_qmp(qts, "{ 'execute': 'query-cpu-definitions' }");
1714 g_assert(response);
1715 list = qdict_get_qlist(response, "return");
1716 g_assert(list);
1717
1718 cpus = g_new0(struct CpuModel, qlist_size(list) + 1);
1719
1720 for (p = qlist_first(list), idx = 0; p; p = qlist_next(p), idx++) {
1721 minfo = qobject_to(QDict, qlist_entry_obj(p));
1722 g_assert(minfo);
1723
1724 qobj = qdict_get(minfo, "name");
1725 g_assert(qobj);
1726 qstr = qobject_to(QString, qobj);
1727 g_assert(qstr);
1728 cpus[idx].name = g_strdup(qstring_get_str(qstr));
1729
1730 qobj = qdict_get(minfo, "alias_of");
1731 if (qobj) { /* old machines do not report aliases */
1732 qstr = qobject_to(QString, qobj);
1733 g_assert(qstr);
1734 cpus[idx].alias_of = g_strdup(qstring_get_str(qstr));
1735 } else {
1736 cpus[idx].alias_of = NULL;
1737 }
1738
1739 qobj = qdict_get(minfo, "deprecated");
1740 qbool = qobject_to(QBool, qobj);
1741 g_assert(qbool);
1742 cpus[idx].deprecated = qbool_get_bool(qbool);
1743 }
1744
1745 qtest_quit(qts);
1746 qobject_unref(response);
1747
1748 silence_spawn_log = false;
1749
1750 return cpus;
1751 }
1752
qtest_has_cpu_model(const char * cpu)1753 bool qtest_has_cpu_model(const char *cpu)
1754 {
1755 struct CpuModel *cpus;
1756 int i;
1757
1758 cpus = qtest_get_cpu_models();
1759
1760 for (i = 0; cpus[i].name != NULL; i++) {
1761 if (g_str_equal(cpu, cpus[i].name) ||
1762 (cpus[i].alias_of && g_str_equal(cpu, cpus[i].alias_of))) {
1763 return true;
1764 }
1765 }
1766
1767 return false;
1768 }
1769
qtest_cb_for_every_machine(void (* cb)(const char * machine),bool skip_old_versioned)1770 void qtest_cb_for_every_machine(void (*cb)(const char *machine),
1771 bool skip_old_versioned)
1772 {
1773 struct MachInfo *machines;
1774 int i;
1775
1776 machines = qtest_get_machines(NULL);
1777
1778 for (i = 0; machines[i].name != NULL; i++) {
1779 /* Ignore machines that cannot be used for qtests */
1780 if (!strncmp("xenfv", machines[i].name, 5) ||
1781 g_str_equal("xenpv", machines[i].name) ||
1782 g_str_equal("xenpvh", machines[i].name) ||
1783 g_str_equal("vmapple", machines[i].name) ||
1784 g_str_equal("nitro-enclave", machines[i].name)) {
1785 continue;
1786 }
1787 if (!skip_old_versioned ||
1788 !qtest_is_old_versioned_machine(machines[i].name)) {
1789 cb(machines[i].name);
1790 }
1791 }
1792 }
1793
qtest_resolve_machine_alias(const char * var,const char * alias)1794 char *qtest_resolve_machine_alias(const char *var, const char *alias)
1795 {
1796 struct MachInfo *machines;
1797 int i;
1798
1799 machines = qtest_get_machines(var);
1800
1801 for (i = 0; machines[i].name != NULL; i++) {
1802 if (machines[i].alias && g_str_equal(alias, machines[i].alias)) {
1803 return g_strdup(machines[i].name);
1804 }
1805 }
1806
1807 return NULL;
1808 }
1809
qtest_has_machine_with_env(const char * var,const char * machine)1810 bool qtest_has_machine_with_env(const char *var, const char *machine)
1811 {
1812 struct MachInfo *machines;
1813 int i;
1814
1815 machines = qtest_get_machines(var);
1816
1817 for (i = 0; machines[i].name != NULL; i++) {
1818 if (g_str_equal(machine, machines[i].name) ||
1819 (machines[i].alias && g_str_equal(machine, machines[i].alias))) {
1820 return true;
1821 }
1822 }
1823
1824 return false;
1825 }
1826
qtest_has_machine(const char * machine)1827 bool qtest_has_machine(const char *machine)
1828 {
1829 return qtest_has_machine_with_env(NULL, machine);
1830 }
1831
qtest_has_device(const char * device)1832 bool qtest_has_device(const char *device)
1833 {
1834 static QList *list;
1835
1836 return qtest_qom_has_concrete_type("device", device, &list);
1837 }
1838
1839 /*
1840 * Generic hot-plugging test via the device_add QMP commands.
1841 */
qtest_qmp_device_add_qdict(QTestState * qts,const char * drv,const QDict * arguments)1842 void qtest_qmp_device_add_qdict(QTestState *qts, const char *drv,
1843 const QDict *arguments)
1844 {
1845 QDict *resp;
1846 QDict *args = arguments ? qdict_clone_shallow(arguments) : qdict_new();
1847
1848 g_assert(!qdict_haskey(args, "driver"));
1849 qdict_put_str(args, "driver", drv);
1850 resp = qtest_qmp(qts, "{'execute': 'device_add', 'arguments': %p}", args);
1851 g_assert(resp);
1852 g_assert(!qdict_haskey(resp, "event")); /* We don't expect any events */
1853 if (qdict_haskey(resp, "error")) {
1854 fprintf(stderr, "error: %s\n",
1855 qdict_get_str(qdict_get_qdict(resp, "error"), "desc"));
1856 }
1857 g_assert(!qdict_haskey(resp, "error"));
1858 qobject_unref(resp);
1859 }
1860
qtest_qmp_device_add(QTestState * qts,const char * driver,const char * id,const char * fmt,...)1861 void qtest_qmp_device_add(QTestState *qts, const char *driver, const char *id,
1862 const char *fmt, ...)
1863 {
1864 QDict *args;
1865 va_list ap;
1866
1867 va_start(ap, fmt);
1868 args = qdict_from_vjsonf_nofail(fmt, ap);
1869 va_end(ap);
1870
1871 g_assert(!qdict_haskey(args, "id"));
1872 qdict_put_str(args, "id", id);
1873
1874 qtest_qmp_device_add_qdict(qts, driver, args);
1875 qobject_unref(args);
1876 }
1877
qtest_qmp_add_client(QTestState * qts,const char * protocol,int fd)1878 void qtest_qmp_add_client(QTestState *qts, const char *protocol, int fd)
1879 {
1880 QDict *resp;
1881
1882 #ifdef WIN32
1883 WSAPROTOCOL_INFOW info;
1884 g_autofree char *info64 = NULL;
1885 SOCKET s;
1886
1887 assert(fd_is_socket(fd));
1888 s = _get_osfhandle(fd);
1889 if (WSADuplicateSocketW(s, GetProcessId((HANDLE)qts->qemu_pid), &info) == SOCKET_ERROR) {
1890 g_autofree char *emsg = g_win32_error_message(WSAGetLastError());
1891 g_error("WSADuplicateSocketW failed: %s", emsg);
1892 }
1893 info64 = g_base64_encode((guchar *)&info, sizeof(info));
1894 resp = qtest_qmp(qts, "{'execute': 'get-win32-socket',"
1895 "'arguments': {'fdname': 'fdname', 'info': %s}}", info64);
1896 #else
1897 resp = qtest_qmp_fds(qts, &fd, 1, "{'execute': 'getfd',"
1898 "'arguments': {'fdname': 'fdname'}}");
1899 #endif
1900 g_assert(resp);
1901 g_assert(!qdict_haskey(resp, "event")); /* We don't expect any events */
1902 g_assert(!qdict_haskey(resp, "error"));
1903 qobject_unref(resp);
1904
1905 resp = qtest_qmp(
1906 qts, "{'execute': 'add_client',"
1907 "'arguments': {'protocol': %s, 'fdname': 'fdname'}}", protocol);
1908 g_assert(resp);
1909 g_assert(!qdict_haskey(resp, "event")); /* We don't expect any events */
1910 g_assert(!qdict_haskey(resp, "error"));
1911 qobject_unref(resp);
1912 }
1913
1914 /*
1915 * Generic hot-unplugging test via the device_del QMP command.
1916 * Device deletion will get one response and one event. For example:
1917 *
1918 * {'execute': 'device_del','arguments': { 'id': 'scsi-hd'}}
1919 *
1920 * will get this one:
1921 *
1922 * {"timestamp": {"seconds": 1505289667, "microseconds": 569862},
1923 * "event": "DEVICE_DELETED", "data": {"device": "scsi-hd",
1924 * "path": "/machine/peripheral/scsi-hd"}}
1925 *
1926 * and this one:
1927 *
1928 * {"return": {}}
1929 */
qtest_qmp_device_del_send(QTestState * qts,const char * id)1930 void qtest_qmp_device_del_send(QTestState *qts, const char *id)
1931 {
1932 QDict *rsp = qtest_qmp(qts, "{'execute': 'device_del', "
1933 "'arguments': {'id': %s}}", id);
1934 g_assert(rsp);
1935 g_assert(qdict_haskey(rsp, "return"));
1936 g_assert(!qdict_haskey(rsp, "error"));
1937 qobject_unref(rsp);
1938 }
1939
qtest_qmp_device_del(QTestState * qts,const char * id)1940 void qtest_qmp_device_del(QTestState *qts, const char *id)
1941 {
1942 qtest_qmp_device_del_send(qts, id);
1943 qtest_qmp_eventwait(qts, "DEVICE_DELETED");
1944 }
1945
qtest_client_set_tx_handler(QTestState * s,QTestSendFn send)1946 static void qtest_client_set_tx_handler(QTestState *s,
1947 QTestSendFn send)
1948 {
1949 s->ops.send = send;
1950 }
qtest_client_set_rx_handler(QTestState * s,QTestRecvFn recv)1951 static void qtest_client_set_rx_handler(QTestState *s, QTestRecvFn recv)
1952 {
1953 s->ops.recv_line = recv;
1954 }
1955 /* A type-safe wrapper for s->send() */
send_wrapper(QTestState * s,const char * buf)1956 static void send_wrapper(QTestState *s, const char *buf)
1957 {
1958 s->ops.external_send(s, buf);
1959 }
1960
qtest_client_inproc_recv_line(QTestState * s)1961 static GString *qtest_client_inproc_recv_line(QTestState *s)
1962 {
1963 GString *line;
1964 size_t offset;
1965 char *eol;
1966
1967 eol = strchr(s->rx->str, '\n');
1968 offset = eol - s->rx->str;
1969 line = g_string_new_len(s->rx->str, offset);
1970 g_string_erase(s->rx, 0, offset + 1);
1971 return line;
1972 }
1973
qtest_inproc_init(QTestState ** s,bool log,const char * arch,void (* send)(void *,const char *))1974 QTestState *qtest_inproc_init(QTestState **s, bool log, const char* arch,
1975 void (*send)(void*, const char*))
1976 {
1977 QTestState *qts;
1978 qts = g_new0(QTestState, 1);
1979 qts->pending_events = NULL;
1980 *s = qts; /* Expose qts early on, since the query endianness relies on it */
1981 qts->wstatus = 0;
1982 for (int i = 0; i < MAX_IRQ; i++) {
1983 qts->irq_level[i] = false;
1984 }
1985
1986 qtest_client_set_rx_handler(qts, qtest_client_inproc_recv_line);
1987
1988 /* send() may not have a matching prototype, so use a type-safe wrapper */
1989 qts->ops.external_send = send;
1990 qtest_client_set_tx_handler(qts, send_wrapper);
1991
1992 qts->big_endian = qtest_query_target_endianness(qts);
1993
1994 /*
1995 * Set a dummy path for QTEST_QEMU_BINARY. Doesn't need to exist, but this
1996 * way, qtest_get_arch works for inproc qtest.
1997 */
1998 gchar *bin_path = g_strconcat("/qemu-system-", arch, NULL);
1999 if (!g_setenv("QTEST_QEMU_BINARY", bin_path, 0)) {
2000 fprintf(stderr,
2001 "Could not set environment variable QTEST_QEMU_BINARY\n");
2002 exit(1);
2003 }
2004 g_free(bin_path);
2005
2006 return qts;
2007 }
2008
qtest_client_inproc_recv(void * opaque,const char * str)2009 void qtest_client_inproc_recv(void *opaque, const char *str)
2010 {
2011 QTestState *qts = *(QTestState **)opaque;
2012
2013 if (!qts->rx) {
2014 qts->rx = g_string_new(NULL);
2015 }
2016 g_string_append(qts->rx, str);
2017 }
2018
qtest_qom_set_bool(QTestState * s,const char * path,const char * property,bool value)2019 void qtest_qom_set_bool(QTestState *s, const char *path, const char *property,
2020 bool value)
2021 {
2022 QDict *r;
2023
2024 r = qtest_qmp(s, "{ 'execute': 'qom-set', 'arguments': "
2025 "{ 'path': %s, 'property': %s, 'value': %i } }",
2026 path, property, value);
2027 qobject_unref(r);
2028 }
2029
qtest_qom_get_bool(QTestState * s,const char * path,const char * property)2030 bool qtest_qom_get_bool(QTestState *s, const char *path, const char *property)
2031 {
2032 QDict *r;
2033 bool b;
2034
2035 r = qtest_qmp(s, "{ 'execute': 'qom-get', 'arguments': "
2036 "{ 'path': %s, 'property': %s } }", path, property);
2037 b = qdict_get_bool(r, "return");
2038 qobject_unref(r);
2039
2040 return b;
2041 }
2042
have_qemu_img(void)2043 bool have_qemu_img(void)
2044 {
2045 char *rpath;
2046 const char *path = getenv("QTEST_QEMU_IMG");
2047 if (!path) {
2048 return false;
2049 }
2050
2051 rpath = realpath(path, NULL);
2052 if (!rpath) {
2053 return false;
2054 } else {
2055 free(rpath);
2056 return true;
2057 }
2058 }
2059
mkimg(const char * file,const char * fmt,unsigned size_mb)2060 bool mkimg(const char *file, const char *fmt, unsigned size_mb)
2061 {
2062 gchar *cli;
2063 bool ret;
2064 int rc;
2065 GError *err = NULL;
2066 char *qemu_img_path;
2067 gchar *out, *out2;
2068 char *qemu_img_abs_path;
2069
2070 qemu_img_path = getenv("QTEST_QEMU_IMG");
2071 if (!qemu_img_path) {
2072 return false;
2073 }
2074 qemu_img_abs_path = realpath(qemu_img_path, NULL);
2075 if (!qemu_img_abs_path) {
2076 return false;
2077 }
2078
2079 cli = g_strdup_printf("%s create -f %s %s %uM", qemu_img_abs_path,
2080 fmt, file, size_mb);
2081 ret = g_spawn_command_line_sync(cli, &out, &out2, &rc, &err);
2082 if (err || !g_spawn_check_exit_status(rc, &err)) {
2083 fprintf(stderr, "%s\n", err->message);
2084 g_error_free(err);
2085 }
2086
2087 g_free(out);
2088 g_free(out2);
2089 g_free(cli);
2090 free(qemu_img_abs_path);
2091
2092 return ret && !err;
2093 }
2094