4 * Copyright (c) 2003-2008 Fabrice Bellard
5 * Copyright (c) 2010 Red Hat, Inc.
7 * QEMU library functions on POSIX which are shared between QEMU and
10 * Permission is hereby granted, free of charge, to any person obtaining a copy
11 * of this software and associated documentation files (the "Software"), to deal
12 * in the Software without restriction, including without limitation the rights
13 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
14 * copies of the Software, and to permit persons to whom the Software is
15 * furnished to do so, subject to the following conditions:
17 * The above copyright notice and this permission notice shall be included in
18 * all copies or substantial portions of the Software.
20 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
21 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
22 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
23 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
24 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
25 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
29 #include "qemu/osdep.h"
32 #include <glib/gprintf.h>
34 #include "sysemu/sysemu.h"
36 #include "qapi/error.h"
37 #include "qemu/error-report.h"
38 #include "qemu/madvise.h"
39 #include "qemu/sockets.h"
40 #include "qemu/thread.h"
42 #include "qemu/cutils.h"
43 #include "qemu/compiler.h"
44 #include "qemu/units.h"
47 #include <sys/syscall.h>
51 #include <sys/sysctl.h>
58 #include <sys/sysctl.h>
63 #include <mach-o/dyld.h>
67 #include <kernel/image.h>
70 #include "qemu/mmap-alloc.h"
72 #ifdef CONFIG_DEBUG_STACK_USAGE
73 #include "qemu/error-report.h"
76 #define MAX_MEM_PREALLOC_THREAD_COUNT 16
80 typedef struct MemsetContext
{
81 bool all_threads_created
;
82 bool any_thread_failed
;
83 struct MemsetThread
*threads
;
93 MemsetContext
*context
;
95 typedef struct MemsetThread MemsetThread
;
97 /* used by sigbus_handler() */
98 static MemsetContext
*sigbus_memset_context
;
99 struct sigaction sigbus_oldact
;
100 static QemuMutex sigbus_mutex
;
102 static QemuMutex page_mutex
;
103 static QemuCond page_cond
;
105 int qemu_get_thread_id(void)
107 #if defined(__linux__)
108 return syscall(SYS_gettid
);
109 #elif defined(__FreeBSD__)
110 /* thread id is up to INT_MAX */
114 #elif defined(__NetBSD__)
116 #elif defined(__OpenBSD__)
123 int qemu_daemon(int nochdir
, int noclose
)
125 return daemon(nochdir
, noclose
);
128 bool qemu_write_pidfile(const char *path
, Error
**errp
)
135 struct flock lock
= {
137 .l_whence
= SEEK_SET
,
141 fd
= qemu_create(path
, O_WRONLY
, S_IRUSR
| S_IWUSR
, errp
);
146 if (fstat(fd
, &b
) < 0) {
147 error_setg_errno(errp
, errno
, "Cannot stat file");
151 if (fcntl(fd
, F_SETLK
, &lock
)) {
152 error_setg_errno(errp
, errno
, "Cannot lock pid file");
157 * Now make sure the path we locked is the same one that now
158 * exists on the filesystem.
160 if (stat(path
, &a
) < 0) {
162 * PID file disappeared, someone else must be racing with
169 if (a
.st_ino
== b
.st_ino
) {
174 * PID file was recreated, someone else must be racing with
180 if (ftruncate(fd
, 0) < 0) {
181 error_setg_errno(errp
, errno
, "Failed to truncate pid file");
185 snprintf(pidstr
, sizeof(pidstr
), FMT_pid
"\n", getpid());
186 if (qemu_write_full(fd
, pidstr
, strlen(pidstr
)) != strlen(pidstr
)) {
187 error_setg(errp
, "Failed to write pid file");
200 /* alloc shared memory pages */
201 void *qemu_anon_ram_alloc(size_t size
, uint64_t *alignment
, bool shared
,
204 const uint32_t qemu_map_flags
= (shared
? QEMU_MAP_SHARED
: 0) |
205 (noreserve
? QEMU_MAP_NORESERVE
: 0);
206 size_t align
= QEMU_VMALLOC_ALIGN
;
207 void *ptr
= qemu_ram_mmap(-1, size
, align
, qemu_map_flags
, 0);
209 if (ptr
== MAP_FAILED
) {
217 trace_qemu_anon_ram_alloc(size
, ptr
);
221 void qemu_anon_ram_free(void *ptr
, size_t size
)
223 trace_qemu_anon_ram_free(ptr
, size
);
224 qemu_ram_munmap(-1, ptr
, size
);
227 void qemu_set_block(int fd
)
230 f
= fcntl(fd
, F_GETFL
);
232 f
= fcntl(fd
, F_SETFL
, f
& ~O_NONBLOCK
);
236 int qemu_try_set_nonblock(int fd
)
239 f
= fcntl(fd
, F_GETFL
);
243 if (fcntl(fd
, F_SETFL
, f
| O_NONBLOCK
) == -1) {
249 void qemu_set_nonblock(int fd
)
252 f
= qemu_try_set_nonblock(fd
);
256 int socket_set_fast_reuse(int fd
)
260 ret
= setsockopt(fd
, SOL_SOCKET
, SO_REUSEADDR
,
261 (const char *)&val
, sizeof(val
));
268 void qemu_set_cloexec(int fd
)
271 f
= fcntl(fd
, F_GETFD
);
273 f
= fcntl(fd
, F_SETFD
, f
| FD_CLOEXEC
);
278 * Creates a pipe with FD_CLOEXEC set on both file descriptors
280 int qemu_pipe(int pipefd
[2])
285 ret
= pipe2(pipefd
, O_CLOEXEC
);
286 if (ret
!= -1 || errno
!= ENOSYS
) {
292 qemu_set_cloexec(pipefd
[0]);
293 qemu_set_cloexec(pipefd
[1]);
300 qemu_get_local_state_dir(void)
302 return get_relocated_path(CONFIG_QEMU_LOCALSTATEDIR
);
305 void qemu_set_tty_echo(int fd
, bool echo
)
312 tty
.c_lflag
|= ECHO
| ECHONL
| ICANON
| IEXTEN
;
314 tty
.c_lflag
&= ~(ECHO
| ECHONL
| ICANON
| IEXTEN
);
317 tcsetattr(fd
, TCSANOW
, &tty
);
320 static const char *exec_dir
;
322 void qemu_init_exec_dir(const char *argv0
)
331 #if defined(__linux__)
334 len
= readlink("/proc/self/exe", buf
, sizeof(buf
) - 1);
340 #elif defined(__FreeBSD__) \
341 || (defined(__NetBSD__) && defined(KERN_PROC_PATHNAME))
343 #if defined(__FreeBSD__)
344 static int mib
[4] = {CTL_KERN
, KERN_PROC
, KERN_PROC_PATHNAME
, -1};
346 static int mib
[4] = {CTL_KERN
, KERN_PROC_ARGS
, -1, KERN_PROC_PATHNAME
};
348 size_t len
= sizeof(buf
) - 1;
351 if (!sysctl(mib
, ARRAY_SIZE(mib
), buf
, &len
, NULL
, 0) &&
353 buf
[sizeof(buf
) - 1] = '\0';
357 #elif defined(__APPLE__)
359 char fpath
[PATH_MAX
];
360 uint32_t len
= sizeof(fpath
);
361 if (_NSGetExecutablePath(fpath
, &len
) == 0) {
362 p
= realpath(fpath
, buf
);
368 #elif defined(__HAIKU__)
374 while (get_next_image_info(0, &c
, &ii
) == B_OK
) {
375 if (ii
.type
== B_APP_IMAGE
) {
376 strncpy(buf
, ii
.name
, sizeof(buf
));
377 buf
[sizeof(buf
) - 1] = 0;
384 /* If we don't have any way of figuring out the actual executable
385 location then try argv[0]. */
387 p
= realpath(argv0
, buf
);
390 exec_dir
= g_path_get_dirname(p
);
392 exec_dir
= CONFIG_BINDIR
;
396 const char *qemu_get_exec_dir(void)
402 static void sigbus_handler(int signal
, siginfo_t
*siginfo
, void *ctx
)
403 #else /* CONFIG_LINUX */
404 static void sigbus_handler(int signal
)
405 #endif /* CONFIG_LINUX */
409 if (sigbus_memset_context
) {
410 for (i
= 0; i
< sigbus_memset_context
->num_threads
; i
++) {
411 MemsetThread
*thread
= &sigbus_memset_context
->threads
[i
];
413 if (qemu_thread_is_self(&thread
->pgthread
)) {
414 siglongjmp(thread
->env
, 1);
421 * We assume that the MCE SIGBUS handler could have been registered. We
422 * should never receive BUS_MCEERR_AO on any of our threads, but only on
423 * the main thread registered for PR_MCE_KILL_EARLY. Further, we should not
424 * receive BUS_MCEERR_AR triggered by action of other threads on one of
425 * our threads. So, no need to check for unrelated SIGBUS when seeing one
428 * We will forward to the MCE handler, which will either handle the SIGBUS
429 * or reinstall the default SIGBUS handler and reraise the SIGBUS. The
430 * default SIGBUS handler will crash the process, so we don't care.
432 if (sigbus_oldact
.sa_flags
& SA_SIGINFO
) {
433 sigbus_oldact
.sa_sigaction(signal
, siginfo
, ctx
);
436 #endif /* CONFIG_LINUX */
437 warn_report("os_mem_prealloc: unrelated SIGBUS detected and ignored");
440 static void *do_touch_pages(void *arg
)
442 MemsetThread
*memset_args
= (MemsetThread
*)arg
;
443 sigset_t set
, oldset
;
447 * On Linux, the page faults from the loop below can cause mmap_sem
448 * contention with allocation of the thread stacks. Do not start
449 * clearing until all threads have been created.
451 qemu_mutex_lock(&page_mutex
);
452 while (!memset_args
->context
->all_threads_created
) {
453 qemu_cond_wait(&page_cond
, &page_mutex
);
455 qemu_mutex_unlock(&page_mutex
);
459 sigaddset(&set
, SIGBUS
);
460 pthread_sigmask(SIG_UNBLOCK
, &set
, &oldset
);
462 if (sigsetjmp(memset_args
->env
, 1)) {
465 char *addr
= memset_args
->addr
;
466 size_t numpages
= memset_args
->numpages
;
467 size_t hpagesize
= memset_args
->hpagesize
;
469 for (i
= 0; i
< numpages
; i
++) {
471 * Read & write back the same value, so we don't
472 * corrupt existing user/app data that might be
475 * 'volatile' to stop compiler optimizing this away
478 *(volatile char *)addr
= *addr
;
482 pthread_sigmask(SIG_SETMASK
, &oldset
, NULL
);
483 return (void *)(uintptr_t)ret
;
486 static void *do_madv_populate_write_pages(void *arg
)
488 MemsetThread
*memset_args
= (MemsetThread
*)arg
;
489 const size_t size
= memset_args
->numpages
* memset_args
->hpagesize
;
490 char * const addr
= memset_args
->addr
;
493 /* See do_touch_pages(). */
494 qemu_mutex_lock(&page_mutex
);
495 while (!memset_args
->context
->all_threads_created
) {
496 qemu_cond_wait(&page_cond
, &page_mutex
);
498 qemu_mutex_unlock(&page_mutex
);
500 if (size
&& qemu_madvise(addr
, size
, QEMU_MADV_POPULATE_WRITE
)) {
503 return (void *)(uintptr_t)ret
;
506 static inline int get_memset_num_threads(size_t hpagesize
, size_t numpages
,
509 long host_procs
= sysconf(_SC_NPROCESSORS_ONLN
);
512 if (host_procs
> 0) {
513 ret
= MIN(MIN(host_procs
, MAX_MEM_PREALLOC_THREAD_COUNT
), smp_cpus
);
516 /* Especially with gigantic pages, don't create more threads than pages. */
517 ret
= MIN(ret
, numpages
);
518 /* Don't start threads to prealloc comparatively little memory. */
519 ret
= MIN(ret
, MAX(1, hpagesize
* numpages
/ (64 * MiB
)));
521 /* In case sysconf() fails, we fall back to single threaded */
525 static int touch_all_pages(char *area
, size_t hpagesize
, size_t numpages
,
526 int smp_cpus
, bool use_madv_populate_write
)
528 static gsize initialized
= 0;
529 MemsetContext context
= {
530 .num_threads
= get_memset_num_threads(hpagesize
, numpages
, smp_cpus
),
532 size_t numpages_per_thread
, leftover
;
533 void *(*touch_fn
)(void *);
537 if (g_once_init_enter(&initialized
)) {
538 qemu_mutex_init(&page_mutex
);
539 qemu_cond_init(&page_cond
);
540 g_once_init_leave(&initialized
, 1);
543 if (use_madv_populate_write
) {
544 /* Avoid creating a single thread for MADV_POPULATE_WRITE */
545 if (context
.num_threads
== 1) {
546 if (qemu_madvise(area
, hpagesize
* numpages
,
547 QEMU_MADV_POPULATE_WRITE
)) {
552 touch_fn
= do_madv_populate_write_pages
;
554 touch_fn
= do_touch_pages
;
557 context
.threads
= g_new0(MemsetThread
, context
.num_threads
);
558 numpages_per_thread
= numpages
/ context
.num_threads
;
559 leftover
= numpages
% context
.num_threads
;
560 for (i
= 0; i
< context
.num_threads
; i
++) {
561 context
.threads
[i
].addr
= addr
;
562 context
.threads
[i
].numpages
= numpages_per_thread
+ (i
< leftover
);
563 context
.threads
[i
].hpagesize
= hpagesize
;
564 context
.threads
[i
].context
= &context
;
565 qemu_thread_create(&context
.threads
[i
].pgthread
, "touch_pages",
566 touch_fn
, &context
.threads
[i
],
567 QEMU_THREAD_JOINABLE
);
568 addr
+= context
.threads
[i
].numpages
* hpagesize
;
571 if (!use_madv_populate_write
) {
572 sigbus_memset_context
= &context
;
575 qemu_mutex_lock(&page_mutex
);
576 context
.all_threads_created
= true;
577 qemu_cond_broadcast(&page_cond
);
578 qemu_mutex_unlock(&page_mutex
);
580 for (i
= 0; i
< context
.num_threads
; i
++) {
581 int tmp
= (uintptr_t)qemu_thread_join(&context
.threads
[i
].pgthread
);
588 if (!use_madv_populate_write
) {
589 sigbus_memset_context
= NULL
;
591 g_free(context
.threads
);
596 static bool madv_populate_write_possible(char *area
, size_t pagesize
)
598 return !qemu_madvise(area
, pagesize
, QEMU_MADV_POPULATE_WRITE
) ||
602 void os_mem_prealloc(int fd
, char *area
, size_t memory
, int smp_cpus
,
605 static gsize initialized
;
607 size_t hpagesize
= qemu_fd_getpagesize(fd
);
608 size_t numpages
= DIV_ROUND_UP(memory
, hpagesize
);
609 bool use_madv_populate_write
;
610 struct sigaction act
;
613 * Sense on every invocation, as MADV_POPULATE_WRITE cannot be used for
614 * some special mappings, such as mapping /dev/mem.
616 use_madv_populate_write
= madv_populate_write_possible(area
, hpagesize
);
618 if (!use_madv_populate_write
) {
619 if (g_once_init_enter(&initialized
)) {
620 qemu_mutex_init(&sigbus_mutex
);
621 g_once_init_leave(&initialized
, 1);
624 qemu_mutex_lock(&sigbus_mutex
);
625 memset(&act
, 0, sizeof(act
));
627 act
.sa_sigaction
= &sigbus_handler
;
628 act
.sa_flags
= SA_SIGINFO
;
629 #else /* CONFIG_LINUX */
630 act
.sa_handler
= &sigbus_handler
;
632 #endif /* CONFIG_LINUX */
634 ret
= sigaction(SIGBUS
, &act
, &sigbus_oldact
);
636 qemu_mutex_unlock(&sigbus_mutex
);
637 error_setg_errno(errp
, errno
,
638 "os_mem_prealloc: failed to install signal handler");
643 /* touch pages simultaneously */
644 ret
= touch_all_pages(area
, hpagesize
, numpages
, smp_cpus
,
645 use_madv_populate_write
);
647 error_setg_errno(errp
, -ret
,
648 "os_mem_prealloc: preallocating memory failed");
651 if (!use_madv_populate_write
) {
652 ret
= sigaction(SIGBUS
, &sigbus_oldact
, NULL
);
654 /* Terminate QEMU since it can't recover from error */
655 perror("os_mem_prealloc: failed to reinstall signal handler");
658 qemu_mutex_unlock(&sigbus_mutex
);
662 char *qemu_get_pid_name(pid_t pid
)
666 #if defined(__FreeBSD__)
667 /* BSDs don't have /proc, but they provide a nice substitute */
668 struct kinfo_proc
*proc
= kinfo_getproc(pid
);
671 name
= g_strdup(proc
->ki_comm
);
675 /* Assume a system with reasonable procfs */
679 pid_path
= g_strdup_printf("/proc/%d/cmdline", pid
);
680 g_file_get_contents(pid_path
, &name
, &len
, NULL
);
688 pid_t
qemu_fork(Error
**errp
)
690 sigset_t oldmask
, newmask
;
691 struct sigaction sig_action
;
696 * Need to block signals now, so that child process can safely
697 * kill off caller's signal handlers without a race.
699 sigfillset(&newmask
);
700 if (pthread_sigmask(SIG_SETMASK
, &newmask
, &oldmask
) != 0) {
701 error_setg_errno(errp
, errno
,
702 "cannot block signals");
710 /* attempt to restore signal mask, but ignore failure, to
711 * avoid obscuring the fork failure */
712 (void)pthread_sigmask(SIG_SETMASK
, &oldmask
, NULL
);
713 error_setg_errno(errp
, saved_errno
,
714 "cannot fork child process");
720 /* Restore our original signal mask now that the child is
721 * safely running. Only documented failures are EFAULT (not
722 * possible, since we are using just-grabbed mask) or EINVAL
723 * (not possible, since we are using correct arguments). */
724 (void)pthread_sigmask(SIG_SETMASK
, &oldmask
, NULL
);
729 /* Clear out all signal handlers from parent so nothing
730 * unexpected can happen in our child once we unblock
732 sig_action
.sa_handler
= SIG_DFL
;
733 sig_action
.sa_flags
= 0;
734 sigemptyset(&sig_action
.sa_mask
);
736 for (i
= 1; i
< NSIG
; i
++) {
737 /* Only possible errors are EFAULT or EINVAL The former
738 * won't happen, the latter we expect, so no need to check
740 (void)sigaction(i
, &sig_action
, NULL
);
743 /* Unmask all signals in child, since we've no idea what the
744 * caller's done with their signal mask and don't want to
745 * propagate that to children */
746 sigemptyset(&newmask
);
747 if (pthread_sigmask(SIG_SETMASK
, &newmask
, NULL
) != 0) {
748 Error
*local_err
= NULL
;
749 error_setg_errno(&local_err
, errno
,
750 "cannot unblock signals");
751 error_report_err(local_err
);
758 void *qemu_alloc_stack(size_t *sz
)
760 void *ptr
, *guardpage
;
762 #ifdef CONFIG_DEBUG_STACK_USAGE
765 size_t pagesz
= qemu_real_host_page_size();
766 #ifdef _SC_THREAD_STACK_MIN
767 /* avoid stacks smaller than _SC_THREAD_STACK_MIN */
768 long min_stack_sz
= sysconf(_SC_THREAD_STACK_MIN
);
769 *sz
= MAX(MAX(min_stack_sz
, 0), *sz
);
771 /* adjust stack size to a multiple of the page size */
772 *sz
= ROUND_UP(*sz
, pagesz
);
773 /* allocate one extra page for the guard page */
776 flags
= MAP_PRIVATE
| MAP_ANONYMOUS
;
777 #if defined(MAP_STACK) && defined(__OpenBSD__)
778 /* Only enable MAP_STACK on OpenBSD. Other OS's such as
779 * Linux/FreeBSD/NetBSD have a flag with the same name
780 * but have differing functionality. OpenBSD will SEGV
781 * if it spots execution with a stack pointer pointing
782 * at memory that was not allocated with MAP_STACK.
787 ptr
= mmap(NULL
, *sz
, PROT_READ
| PROT_WRITE
, flags
, -1, 0);
788 if (ptr
== MAP_FAILED
) {
789 perror("failed to allocate memory for stack");
793 #if defined(HOST_IA64)
794 /* separate register stack */
795 guardpage
= ptr
+ (((*sz
- pagesz
) / 2) & ~pagesz
);
796 #elif defined(HOST_HPPA)
798 guardpage
= ptr
+ *sz
- pagesz
;
800 /* stack grows down */
803 if (mprotect(guardpage
, pagesz
, PROT_NONE
) != 0) {
804 perror("failed to set up stack guard page");
808 #ifdef CONFIG_DEBUG_STACK_USAGE
809 for (ptr2
= ptr
+ pagesz
; ptr2
< ptr
+ *sz
; ptr2
+= sizeof(uint32_t)) {
810 *(uint32_t *)ptr2
= 0xdeadbeaf;
817 #ifdef CONFIG_DEBUG_STACK_USAGE
818 static __thread
unsigned int max_stack_usage
;
821 void qemu_free_stack(void *stack
, size_t sz
)
823 #ifdef CONFIG_DEBUG_STACK_USAGE
827 for (ptr
= stack
+ qemu_real_host_page_size(); ptr
< stack
+ sz
;
828 ptr
+= sizeof(uint32_t)) {
829 if (*(uint32_t *)ptr
!= 0xdeadbeaf) {
833 usage
= sz
- (uintptr_t) (ptr
- stack
);
834 if (usage
> max_stack_usage
) {
835 error_report("thread %d max stack usage increased from %u to %u",
836 qemu_get_thread_id(), max_stack_usage
, usage
);
837 max_stack_usage
= usage
;
845 * Disable CFI checks.
846 * We are going to call a signal hander directly. Such handler may or may not
847 * have been defined in our binary, so there's no guarantee that the pointer
848 * used to set the handler is a cfi-valid pointer. Since the handlers are
849 * stored in kernel memory, changing the handler to an attacker-defined
850 * function requires being able to call a sigaction() syscall,
851 * which is not as easy as overwriting a pointer in memory.
854 void sigaction_invoke(struct sigaction
*action
,
855 struct qemu_signalfd_siginfo
*info
)
858 si
.si_signo
= info
->ssi_signo
;
859 si
.si_errno
= info
->ssi_errno
;
860 si
.si_code
= info
->ssi_code
;
862 /* Convert the minimal set of fields defined by POSIX.
863 * Positive si_code values are reserved for kernel-generated
864 * signals, where the valid siginfo fields are determined by
865 * the signal number. But according to POSIX, it is unspecified
866 * whether SI_USER and SI_QUEUE have values less than or equal to
869 if (info
->ssi_code
== SI_USER
|| info
->ssi_code
== SI_QUEUE
||
870 info
->ssi_code
<= 0) {
872 si
.si_pid
= info
->ssi_pid
;
873 si
.si_uid
= info
->ssi_uid
;
874 } else if (info
->ssi_signo
== SIGILL
|| info
->ssi_signo
== SIGFPE
||
875 info
->ssi_signo
== SIGSEGV
|| info
->ssi_signo
== SIGBUS
) {
876 si
.si_addr
= (void *)(uintptr_t)info
->ssi_addr
;
877 } else if (info
->ssi_signo
== SIGCHLD
) {
878 si
.si_pid
= info
->ssi_pid
;
879 si
.si_status
= info
->ssi_status
;
880 si
.si_uid
= info
->ssi_uid
;
882 action
->sa_sigaction(info
->ssi_signo
, &si
, NULL
);
885 size_t qemu_get_host_physmem(void)
887 #ifdef _SC_PHYS_PAGES
888 long pages
= sysconf(_SC_PHYS_PAGES
);
890 if (pages
> SIZE_MAX
/ qemu_real_host_page_size()) {
893 return pages
* qemu_real_host_page_size();
900 /* Sets a specific flag */
901 int fcntl_setfl(int fd
, int flag
)
905 flags
= fcntl(fd
, F_GETFL
);
909 if (fcntl(fd
, F_SETFL
, flags
| flag
) == -1) {
915 int qemu_msync(void *addr
, size_t length
, int fd
)
917 size_t align_mask
= ~(qemu_real_host_page_size() - 1);
920 * There are no strict reqs as per the length of mapping
921 * to be synced. Still the length needs to follow the address
922 * alignment changes. Additionally - round the size to the multiple
925 length
+= ((uintptr_t)addr
& (qemu_real_host_page_size() - 1));
926 length
= (length
+ ~align_mask
) & align_mask
;
928 addr
= (void *)((uintptr_t)addr
& align_mask
);
930 return msync(addr
, length
, MS_SYNC
);