21 #include <sys/cdefs.h>
24 #include "opt_compat.h"
26 #include <sys/param.h>
27 #include <sys/systm.h>
28 #include <sys/malloc.h>
31 #include <sys/capability.h>
32 #include <sys/eventhandler.h>
33 #include <sys/sysproto.h>
34 #include <sys/filedesc.h>
35 #include <sys/kernel.h>
36 #include <sys/module.h>
37 #include <sys/kthread.h>
38 #include <sys/fcntl.h>
40 #include <sys/limits.h>
42 #include <sys/mutex.h>
43 #include <sys/unistd.h>
44 #include <sys/posix4.h>
46 #include <sys/resourcevar.h>
47 #include <sys/signalvar.h>
48 #include <sys/protosw.h>
50 #include <sys/socket.h>
51 #include <sys/socketvar.h>
52 #include <sys/syscall.h>
53 #include <sys/sysent.h>
54 #include <sys/sysctl.h>
56 #include <sys/taskqueue.h>
57 #include <sys/vnode.h>
59 #include <sys/event.h>
60 #include <sys/mount.h>
62 #include <machine/atomic.h>
65 #include <vm/vm_extern.h>
67 #include <vm/vm_map.h>
68 #include <vm/vm_object.h>
72 #include "opt_vfs_aio.h"
86 #define JOBST_JOBQSOCK 1
87 #define JOBST_JOBQGLOBAL 2
88 #define JOBST_JOBRUNNING 3
89 #define JOBST_JOBFINISHED 4
90 #define JOBST_JOBQBUF 5
91 #define JOBST_JOBQSYNC 6
93 #ifndef MAX_AIO_PER_PROC
94 #define MAX_AIO_PER_PROC 32
97 #ifndef MAX_AIO_QUEUE_PER_PROC
98 #define MAX_AIO_QUEUE_PER_PROC 256
101 #ifndef MAX_AIO_PROCS
102 #define MAX_AIO_PROCS 32
105 #ifndef MAX_AIO_QUEUE
106 #define MAX_AIO_QUEUE 1024
109 #ifndef TARGET_AIO_PROCS
110 #define TARGET_AIO_PROCS 4
114 #define MAX_BUF_AIO 16
117 #ifndef AIOD_TIMEOUT_DEFAULT
118 #define AIOD_TIMEOUT_DEFAULT (10 * hz)
121 #ifndef AIOD_LIFETIME_DEFAULT
122 #define AIOD_LIFETIME_DEFAULT (30 * hz)
125 FEATURE(aio,
"Asynchronous I/O");
127 static MALLOC_DEFINE(M_LIO,
"lio",
"listio aio control block list");
129 static SYSCTL_NODE(_vfs, OID_AUTO, aio, CTLFLAG_RW, 0,
"Async IO management");
134 "Maximum number of kernel threads to use for handling async IO ");
139 "Number of presently active kernel threads for async IO");
147 0,
"Preferred number of ready kernel threads for async IO");
151 "Maximum number of aio requests to queue, globally");
155 "Number of queued aio requests");
159 "Number of aio requests presently handled by the buf subsystem");
167 "Timeout value for synchronous aio operations");
171 "Maximum lifetime for idle aiod");
175 "Allow unload of aio (not recommended)");
180 0,
"Maximum active aio requests per process (stored in the process)");
185 "Maximum queued aio requests per process (stored in the process)");
189 "Maximum buf aio requests per process (stored in the process)");
237 struct proc *userproc;
239 struct file *fd_file;
241 struct aiocb *uuaiocb;
251 #define AIOCBLIST_DONE 0x01
252 #define AIOCBLIST_BUFDONE 0x02
253 #define AIOCBLIST_RUNDOWN 0x04
254 #define AIOCBLIST_CHECKSYNC 0x08
259 #define AIOP_FREE 0x1
264 struct thread *aiothread;
274 struct sigevent lioj_signal;
275 TAILQ_ENTRY(aioliojob) lioj_list;
280 #define LIOJ_SIGNAL 0x1
281 #define LIOJ_SIGNAL_POSTED 0x2
282 #define LIOJ_KEVENT_POSTED 0x4
305 struct task kaio_task;
308 #define AIO_LOCK(ki) mtx_lock(&(ki)->kaio_mtx)
309 #define AIO_UNLOCK(ki) mtx_unlock(&(ki)->kaio_mtx)
310 #define AIO_LOCK_ASSERT(ki, f) mtx_assert(&(ki)->kaio_mtx, (f))
311 #define AIO_MTX(ki) (&(ki)->kaio_mtx)
313 #define KAIO_RUNDOWN 0x1
314 #define KAIO_WAKEUP 0x2
321 int (*copyin)(
struct aiocb *ujob,
struct aiocb *kjob);
322 long (*fetch_status)(
struct aiocb *ujob);
323 long (*fetch_error)(
struct aiocb *ujob);
324 int (*store_status)(
struct aiocb *ujob,
long status);
325 int (*store_error)(
struct aiocb *ujob,
long error);
326 int (*store_kernelinfo)(
struct aiocb *ujob,
long jobref);
327 int (*store_aiocb)(
struct aiocb **ujobp,
struct aiocb *ujob);
331 static struct
sema aio_newproc_sem;
332 static struct mtx aio_job_mtx;
333 static struct mtx aio_sock_mtx;
335 static struct
unrhdr *aiod_unr;
342 int aio_aqueue(struct thread *td, struct aiocb *job,
350 static
void aio_swake_cb(struct socket *, struct sockbuf *);
355 static int aio_kick(
struct proc *userp);
373 static uma_zone_t kaio_zone, aiop_zone, aiocb_zone, aiol_zone, aiolio_zone;
376 static struct filterops aio_filtops = {
424 SYSCALL_INIT_HELPER(aio_cancel),
425 SYSCALL_INIT_HELPER(aio_error),
426 SYSCALL_INIT_HELPER(aio_fsync),
427 SYSCALL_INIT_HELPER(aio_read),
428 SYSCALL_INIT_HELPER(aio_return),
429 SYSCALL_INIT_HELPER(aio_suspend),
430 SYSCALL_INIT_HELPER(aio_waitcomplete),
431 SYSCALL_INIT_HELPER(aio_write),
432 SYSCALL_INIT_HELPER(lio_listio),
433 SYSCALL_INIT_HELPER(oaio_read),
434 SYSCALL_INIT_HELPER(oaio_write),
435 SYSCALL_INIT_HELPER(olio_listio),
440 #include <sys/mount.h>
441 #include <sys/socket.h>
442 #include <compat/compat32bit/compat32bit.h>
443 #include <compat/compat32bit/compat32bit_proto.h>
444 #include <compat/compat32bit/compat32bit_signal.h>
445 #include <compat/compat32bit/compat32bit_syscall.h>
446 #include <compat/compat32bit/compat32bit_util.h>
448 static struct syscall_helper_data aio32_syscalls[] = {
449 SYSCALL32_INIT_HELPER(compat32bit_aio_return),
450 SYSCALL32_INIT_HELPER(compat32bit_aio_suspend),
451 SYSCALL32_INIT_HELPER(compat32bit_aio_cancel),
452 SYSCALL32_INIT_HELPER(compat32bit_aio_error),
453 SYSCALL32_INIT_HELPER(compat32bit_aio_fsync),
454 SYSCALL32_INIT_HELPER(compat32bit_aio_read),
455 SYSCALL32_INIT_HELPER(compat32bit_aio_write),
456 SYSCALL32_INIT_HELPER(compat32bit_aio_waitcomplete),
457 SYSCALL32_INIT_HELPER(compat32bit_lio_listio),
458 SYSCALL32_INIT_HELPER(compat32bit_oaio_read),
459 SYSCALL32_INIT_HELPER(compat32bit_oaio_write),
460 SYSCALL32_INIT_HELPER(compat32bit_olio_listio),
466 SI_SUB_VFS, SI_ORDER_ANY);
480 EVENTHANDLER_PRI_ANY);
482 EVENTHANDLER_PRI_ANY);
485 TAILQ_INIT(&aio_freeproc);
486 sema_init(&aio_newproc_sem, 0,
"aio_new_proc");
487 mtx_init(&aio_job_mtx,
"aio_job", NULL, MTX_DEF);
488 mtx_init(&aio_sock_mtx,
"aio_sock", NULL, MTX_DEF);
489 TAILQ_INIT(&aio_jobs);
491 kaio_zone = uma_zcreate(
"AIO",
sizeof(
struct kaioinfo), NULL, NULL,
492 NULL, NULL, UMA_ALIGN_PTR, UMA_ZONE_NOFREE);
493 aiop_zone = uma_zcreate(
"AIOP",
sizeof(
struct aiothreadlist), NULL,
494 NULL, NULL, NULL, UMA_ALIGN_PTR, UMA_ZONE_NOFREE);
495 aiocb_zone = uma_zcreate(
"AIOCB",
sizeof(
struct aiocblist), NULL, NULL,
496 NULL, NULL, UMA_ALIGN_PTR, UMA_ZONE_NOFREE);
497 aiol_zone = uma_zcreate(
"AIOL", AIO_LISTIO_MAX*
sizeof(intptr_t) , NULL,
498 NULL, NULL, NULL, UMA_ALIGN_PTR, UMA_ZONE_NOFREE);
499 aiolio_zone = uma_zcreate(
"AIOLIO",
sizeof(
struct aioliojob), NULL,
500 NULL, NULL, NULL, UMA_ALIGN_PTR, UMA_ZONE_NOFREE);
505 p31b_setcfg(CTL_P1003_1B_AIO_LISTIO_MAX, AIO_LISTIO_MAX);
513 error = syscall32_helper_register(aio32_syscalls);
540 syscall32_helper_unregister(aio32_syscalls);
554 uma_zdestroy(kaio_zone);
555 uma_zdestroy(aiop_zone);
556 uma_zdestroy(aiocb_zone);
557 uma_zdestroy(aiol_zone);
558 uma_zdestroy(aiolio_zone);
559 EVENTHANDLER_DEREGISTER(process_exit, exit_tag);
560 EVENTHANDLER_DEREGISTER(process_exec, exec_tag);
579 ki = uma_zalloc(kaio_zone, M_WAITOK);
588 TAILQ_INIT(&ki->kaio_all);
589 TAILQ_INIT(&ki->kaio_done);
590 TAILQ_INIT(&ki->kaio_jobqueue);
591 TAILQ_INIT(&ki->kaio_bufqueue);
592 TAILQ_INIT(&ki->kaio_liojoblist);
593 TAILQ_INIT(&ki->kaio_sockqueue);
594 TAILQ_INIT(&ki->kaio_syncqueue);
597 if (p->p_aioinfo == NULL) {
603 uma_zfree(kaio_zone, ki);
611 aio_sendsig(
struct proc *p,
struct sigevent *sigev, ksiginfo_t *ksi)
620 ksiginfo_set_sigev(ksi, sigev);
621 ksi->ksi_code = SI_ASYNCIO;
622 ksi->ksi_flags |= KSI_EXT | KSI_INS;
638 struct aioliojob *lj;
641 p = aiocbe->userproc;
654 TAILQ_REMOVE(&ki->kaio_done, aiocbe, plist);
655 TAILQ_REMOVE(&ki->kaio_all, aiocbe, allist);
663 TAILQ_REMOVE(&ki->kaio_liojoblist, lj, lioj_list);
665 knlist_delete(&lj->klist, curthread, 1);
669 uma_zfree(aiolio_zone, lj);
674 knlist_delete(&aiocbe->klist, curthread, 1);
679 MPASS(aiocbe->bp == NULL);
703 fdrop(aiocbe->fd_file, curthread);
705 uma_zfree(aiocb_zone, aiocbe);
724 struct aioliojob *lj;
730 KASSERT(curthread->td_proc == p,
731 (
"%s: called on non-curproc", __func__));
745 TAILQ_FOREACH_SAFE(cbe, &ki->kaio_jobqueue, plist, cbn) {
747 mtx_lock(&aio_job_mtx);
749 TAILQ_REMOVE(&aio_jobs, cbe, list);
753 MPASS(fp->f_type == DTYPE_SOCKET);
755 TAILQ_REMOVE(&so->so_aiojobq, cbe, list);
758 TAILQ_REMOVE(&ki->kaio_syncqueue, cbe, list);
761 mtx_unlock(&aio_job_mtx);
765 cbe->uaiocb._aiocb_private.status = -1;
766 cbe->uaiocb._aiocb_private.error = ECANCELED;
767 TAILQ_REMOVE(&ki->kaio_jobqueue, cbe, plist);
773 if (TAILQ_FIRST(&ki->kaio_bufqueue) ||
774 TAILQ_FIRST(&ki->kaio_jobqueue)) {
776 msleep(&p->p_aioinfo,
AIO_MTX(ki), PRIBIO,
"aioprn",
hz);
781 while ((cbe = TAILQ_FIRST(&ki->kaio_done)) != NULL)
784 while ((lj = TAILQ_FIRST(&ki->kaio_liojoblist)) != NULL) {
786 TAILQ_REMOVE(&ki->kaio_liojoblist, lj, lioj_list);
787 knlist_delete(&lj->klist, curthread, 1);
791 uma_zfree(aiolio_zone, lj);
793 panic(
"LIO job not cleaned up: C:%d, FC:%d\n",
800 uma_zfree(kaio_zone, ki);
814 mtx_assert(&aio_job_mtx, MA_OWNED);
815 TAILQ_FOREACH(aiocbe, &aio_jobs, list) {
816 userp = aiocbe->userproc;
817 ki = userp->p_aioinfo;
820 TAILQ_REMOVE(&aio_jobs, aiocbe, list);
841 vfslocked = VFS_LOCK_GIANT(vp->v_mount);
844 vn_lock(vp, LK_EXCLUSIVE | LK_RETRY);
845 if (vp->v_object != NULL) {
846 VM_OBJECT_LOCK(vp->v_object);
847 vm_object_page_clean(vp->v_object, 0, 0, 0);
848 VM_OBJECT_UNLOCK(vp->v_object);
850 error = VOP_FSYNC(vp, MNT_WAIT, td);
855 VFS_UNLOCK_GIANT(vfslocked);
870 struct ucred *td_savedcred;
879 int oublock_st, oublock_end;
880 int inblock_st, inblock_end;
883 td_savedcred = td->td_ucred;
884 td->td_ucred = aiocbe->cred;
885 cb = &aiocbe->uaiocb;
886 fp = aiocbe->fd_file;
888 if (cb->aio_lio_opcode == LIO_SYNC) {
891 if (fp->f_vnode != NULL)
893 cb->_aiocb_private.error = error;
894 cb->_aiocb_private.status = 0;
895 td->td_ucred = td_savedcred;
899 aiov.iov_base = (
void *)(uintptr_t)cb->aio_buf;
900 aiov.iov_len = cb->aio_nbytes;
902 auio.uio_iov = &aiov;
904 auio.uio_offset = cb->aio_offset;
905 auio.uio_resid = cb->aio_nbytes;
906 cnt = cb->aio_nbytes;
907 auio.uio_segflg = UIO_USERSPACE;
910 inblock_st = td->td_ru.ru_inblock;
911 oublock_st = td->td_ru.ru_oublock;
916 if (cb->aio_lio_opcode == LIO_READ) {
917 auio.uio_rw = UIO_READ;
918 if (auio.uio_resid == 0)
921 error = fo_read(fp, &auio, fp->f_cred, FOF_OFFSET, td);
923 if (fp->f_type == DTYPE_VNODE)
925 auio.uio_rw = UIO_WRITE;
926 error = fo_write(fp, &auio, fp->f_cred, FOF_OFFSET, td);
928 inblock_end = td->td_ru.ru_inblock;
929 oublock_end = td->td_ru.ru_oublock;
931 aiocbe->inputcharge = inblock_end - inblock_st;
932 aiocbe->outputcharge = oublock_end - oublock_st;
934 if ((error) && (auio.uio_resid != cnt)) {
935 if (error == ERESTART || error == EINTR || error == EWOULDBLOCK)
937 if ((error == EPIPE) && (cb->aio_lio_opcode == LIO_WRITE)) {
939 if (fp->f_type == DTYPE_SOCKET) {
941 if (so->so_options & SO_NOSIGPIPE)
945 PROC_LOCK(aiocbe->userproc);
947 PROC_UNLOCK(aiocbe->userproc);
952 cnt -= auio.uio_resid;
953 cb->_aiocb_private.error = error;
954 cb->_aiocb_private.status = cnt;
955 td->td_ucred = td_savedcred;
961 struct aioliojob *lj;
966 ki = userp->p_aioinfo;
980 TAILQ_INSERT_TAIL(&ki->kaio_done, aiocbe, plist);
984 goto notification_done;
986 if (aiocbe->uaiocb.aio_sigevent.sigev_notify == SIGEV_SIGNAL ||
987 aiocbe->uaiocb.aio_sigevent.sigev_notify == SIGEV_THREAD_ID)
988 aio_sendsig(userp, &aiocbe->uaiocb.aio_sigevent, &aiocbe->ksi);
990 KNOTE_LOCKED(&aiocbe->klist, 1);
993 if (lj->
lioj_signal.sigev_notify == SIGEV_KEVENT) {
995 KNOTE_LOCKED(&lj->klist, 1);
999 && (lj->
lioj_signal.sigev_notify == SIGEV_SIGNAL ||
1000 lj->
lioj_signal.sigev_notify == SIGEV_THREAD_ID)) {
1008 TAILQ_FOREACH_SAFE(scb, &ki->kaio_syncqueue, list, scbn) {
1009 if (aiocbe->fd_file == scb->fd_file &&
1010 aiocbe->seqno < scb->seqno) {
1011 if (--scb->pending == 0) {
1012 mtx_lock(&aio_job_mtx);
1014 TAILQ_REMOVE(&ki->kaio_syncqueue, scb, list);
1015 TAILQ_INSERT_TAIL(&aio_jobs, scb, list);
1017 mtx_unlock(&aio_job_mtx);
1024 wakeup(&userp->p_aioinfo);
1038 struct proc *curcp, *mycp, *userp;
1039 struct vmspace *myvm, *tmpvm;
1040 struct thread *td = curthread;
1041 int id = (intptr_t)_id;
1047 myvm = mycp->p_vmspace;
1049 KASSERT(mycp->p_textvp == NULL, (
"kthread has a textvp"));
1055 aiop = uma_zalloc(aiop_zone, M_WAITOK);
1056 aiop->aiothread = td;
1066 sema_post(&aio_newproc_sem);
1068 mtx_lock(&aio_job_mtx);
1080 TAILQ_REMOVE(&aio_freeproc, aiop, list);
1088 mtx_unlock(&aio_job_mtx);
1089 userp = aiocbe->userproc;
1094 if (userp != curcp) {
1099 tmpvm = mycp->p_vmspace;
1105 mycp->p_vmspace = userp->p_vmspace;
1106 atomic_add_int(&mycp->p_vmspace->vm_refcnt, 1);
1109 pmap_activate(FIRST_THREAD_IN_PROC(mycp));
1117 if (tmpvm != myvm) {
1118 vmspace_free(tmpvm);
1123 ki = userp->p_aioinfo;
1128 mtx_lock(&aio_job_mtx);
1131 mtx_unlock(&aio_job_mtx);
1134 TAILQ_REMOVE(&ki->kaio_jobqueue, aiocbe, plist);
1138 mtx_lock(&aio_job_mtx);
1144 if (curcp != mycp) {
1146 mtx_unlock(&aio_job_mtx);
1149 tmpvm = mycp->p_vmspace;
1152 mycp->p_vmspace = myvm;
1155 pmap_activate(FIRST_THREAD_IN_PROC(mycp));
1157 if (tmpvm == myvm) {
1158 printf(
"AIOD: vmspace problem -- %d\n",
1163 vmspace_free(tmpvm);
1167 mtx_lock(&aio_job_mtx);
1176 mtx_assert(&aio_job_mtx, MA_OWNED);
1178 TAILQ_INSERT_HEAD(&aio_freeproc, aiop, list);
1185 if (msleep(aiop->aiothread, &aio_job_mtx, PRIBIO,
"aiordy",
1187 if (TAILQ_EMPTY(&aio_jobs)) {
1190 TAILQ_REMOVE(&aio_freeproc, aiop, list);
1192 mtx_unlock(&aio_job_mtx);
1193 uma_zfree(aiop_zone, aiop);
1196 if (mycp->p_vmspace->vm_refcnt <= 1) {
1197 printf(
"AIOD: bad vm refcnt for"
1198 " exiting daemon: %d\n",
1199 mycp->p_vmspace->vm_refcnt);
1207 mtx_unlock(&aio_job_mtx);
1208 panic(
"shouldn't be here\n");
1224 RFNOWAIT, 0,
"aiod%d",
id);
1229 sema_wait(&aio_newproc_sem);
1230 mtx_lock(&aio_job_mtx);
1234 mtx_unlock(&aio_job_mtx);
1260 struct aioliojob *lj;
1263 cb = &aiocbe->uaiocb;
1264 fp = aiocbe->fd_file;
1266 if (fp->f_type != DTYPE_VNODE)
1277 if (error == ENOTBLK)
1283 if (vp->v_bufobj.bo_bsize == 0)
1286 if (cb->aio_nbytes % vp->v_bufobj.bo_bsize)
1289 if (cb->aio_nbytes >
1290 MAXPHYS - (((vm_offset_t) cb->aio_buf) & PAGE_MASK))
1301 if (cb->aio_nbytes > dev->si_iosize_max) {
1307 bp = (
struct buf *)getpbuf(NULL);
1323 bp->b_bcount = cb->aio_nbytes;
1324 bp->b_bufsize = cb->aio_nbytes;
1326 bp->b_saveaddr = bp->b_data;
1327 bp->b_data = (
void *)(uintptr_t)cb->aio_buf;
1328 bp->b_offset = cb->aio_offset;
1329 bp->b_iooffset = cb->aio_offset;
1330 bp->b_blkno = btodb(cb->aio_offset);
1331 bp->b_iocmd = cb->aio_lio_opcode == LIO_WRITE ? BIO_WRITE : BIO_READ;
1336 if (
vmapbuf(bp, (dev->si_flags & SI_UNMAPPED) == 0) < 0) {
1343 bp->b_caller1 = (
void *)aiocbe;
1344 TAILQ_INSERT_TAIL(&ki->kaio_bufqueue, aiocbe, plist);
1345 TAILQ_INSERT_TAIL(&ki->kaio_all, aiocbe, allist);
1347 cb->_aiocb_private.status = cb->aio_nbytes;
1355 TASK_INIT(&aiocbe->biotask, 0,
biohelper, aiocbe);
1385 SOCKBUF_LOCK_ASSERT(sb);
1386 if (sb == &so->so_snd)
1391 sb->sb_flags &= ~SB_AIO;
1392 mtx_lock(&aio_job_mtx);
1393 TAILQ_FOREACH_SAFE(cb, &so->so_aiojobq, list, cbn) {
1394 if (opcode == cb->uaiocb.aio_lio_opcode) {
1396 panic(
"invalid queue value");
1402 TAILQ_REMOVE(&so->so_aiojobq, cb, list);
1403 TAILQ_INSERT_TAIL(&aio_jobs, cb, list);
1407 mtx_unlock(&aio_job_mtx);
1418 nsig->sigev_notify = osig->sigev_notify;
1419 switch (nsig->sigev_notify) {
1423 nsig->sigev_signo = osig->__sigev_u.__sigev_signo;
1426 nsig->sigev_notify_kqueue =
1427 osig->__sigev_u.__sigev_notify_kqueue;
1428 nsig->sigev_value.sival_ptr = osig->sigev_value.sival_ptr;
1442 bzero(kjob,
sizeof(
struct aiocb));
1443 error = copyin(ujob, kjob,
sizeof(
struct oaiocb));
1446 ojob = (
struct oaiocb *)kjob;
1454 return (copyin(ujob, kjob,
sizeof(
struct aiocb)));
1461 return (fuword(&ujob->_aiocb_private.status));
1468 return (fuword(&ujob->_aiocb_private.error));
1475 return (
suword(&ujob->_aiocb_private.status, status));
1482 return (
suword(&ujob->_aiocb_private.error, error));
1489 return (
suword(&ujob->_aiocb_private.kernelinfo, jobref));
1496 return (
suword(ujobp, (
long)ujob));
1524 aio_aqueue(
struct thread *td,
struct aiocb *job,
struct aioliojob *lj,
1525 int type,
struct aiocb_ops *ops)
1527 struct proc *p = td->td_proc;
1540 if (p->p_aioinfo == NULL)
1555 aiocbe = uma_zalloc(aiocb_zone, M_WAITOK | M_ZERO);
1556 aiocbe->inputcharge = 0;
1557 aiocbe->outputcharge = 0;
1560 error = ops->
copyin(job, &aiocbe->uaiocb);
1563 uma_zfree(aiocb_zone, aiocbe);
1567 if (aiocbe->uaiocb.aio_sigevent.sigev_notify != SIGEV_KEVENT &&
1568 aiocbe->uaiocb.aio_sigevent.sigev_notify != SIGEV_SIGNAL &&
1569 aiocbe->uaiocb.aio_sigevent.sigev_notify != SIGEV_THREAD_ID &&
1570 aiocbe->uaiocb.aio_sigevent.sigev_notify != SIGEV_NONE) {
1572 uma_zfree(aiocb_zone, aiocbe);
1576 if ((aiocbe->uaiocb.aio_sigevent.sigev_notify == SIGEV_SIGNAL ||
1577 aiocbe->uaiocb.aio_sigevent.sigev_notify == SIGEV_THREAD_ID) &&
1578 !_SIG_VALID(aiocbe->uaiocb.aio_sigevent.sigev_signo)) {
1579 uma_zfree(aiocb_zone, aiocbe);
1583 ksiginfo_init(&aiocbe->ksi);
1586 aiocbe->uuaiocb = job;
1589 if (type != LIO_NOP)
1590 aiocbe->uaiocb.aio_lio_opcode =
type;
1591 opcode = aiocbe->uaiocb.aio_lio_opcode;
1601 fd = aiocbe->uaiocb.aio_fildes;
1604 error =
fget_write(td, fd, CAP_WRITE | CAP_SEEK, &fp);
1607 error =
fget_read(td, fd, CAP_READ | CAP_SEEK, &fp);
1610 error =
fget(td, fd, CAP_FSYNC, &fp);
1613 error =
fget(td, fd, 0, &fp);
1619 uma_zfree(aiocb_zone, aiocbe);
1624 if (opcode == LIO_SYNC && fp->f_vnode == NULL) {
1629 if (opcode != LIO_SYNC && aiocbe->uaiocb.aio_offset == -1LL) {
1634 aiocbe->fd_file = fp;
1636 mtx_lock(&aio_job_mtx);
1639 mtx_unlock(&aio_job_mtx);
1645 aiocbe->uaiocb._aiocb_private.kernelinfo = (
void *)(intptr_t)jid;
1647 if (opcode == LIO_NOP) {
1649 uma_zfree(aiocb_zone, aiocbe);
1653 if (aiocbe->uaiocb.aio_sigevent.sigev_notify != SIGEV_KEVENT)
1655 evflags = aiocbe->uaiocb.aio_sigevent.sigev_notify_kevent_flags;
1656 if ((evflags & ~(EV_CLEAR | EV_DISPATCH | EV_ONESHOT)) != 0) {
1660 kqfd = aiocbe->uaiocb.aio_sigevent.sigev_notify_kqueue;
1661 kev.ident = (uintptr_t)aiocbe->uuaiocb;
1662 kev.filter = EVFILT_AIO;
1663 kev.flags = EV_ADD | EV_ENABLE | EV_FLAG1 | evflags;
1664 kev.data = (intptr_t)aiocbe;
1665 kev.udata = aiocbe->uaiocb.aio_sigevent.sigev_value.sival_ptr;
1670 uma_zfree(aiocb_zone, aiocbe);
1677 aiocbe->uaiocb._aiocb_private.error = EINPROGRESS;
1678 aiocbe->userproc = p;
1679 aiocbe->cred =
crhold(td->td_ucred);
1680 aiocbe->jobflags = 0;
1683 if (opcode == LIO_SYNC)
1686 if (fp->f_type == DTYPE_SOCKET) {
1701 sb = (opcode == LIO_READ) ? &so->so_rcv : &so->so_snd;
1703 if (((opcode == LIO_READ) && (!soreadable(so))) || ((opcode ==
1704 LIO_WRITE) && (!sowriteable(so)))) {
1705 sb->sb_flags |= SB_AIO;
1707 mtx_lock(&aio_job_mtx);
1708 TAILQ_INSERT_TAIL(&so->so_aiojobq, aiocbe, list);
1709 mtx_unlock(&aio_job_mtx);
1712 TAILQ_INSERT_TAIL(&ki->kaio_all, aiocbe, allist);
1713 TAILQ_INSERT_TAIL(&ki->kaio_jobqueue, aiocbe, plist);
1731 aiocbe->uaiocb._aiocb_private.error = error;
1745 TAILQ_INSERT_TAIL(&ki->kaio_jobqueue, aiocbe, plist);
1746 TAILQ_INSERT_TAIL(&ki->kaio_all, aiocbe, allist);
1747 if (opcode == LIO_SYNC) {
1748 TAILQ_FOREACH(cb, &ki->kaio_jobqueue, plist) {
1749 if (cb->fd_file == aiocbe->fd_file &&
1750 cb->uaiocb.aio_lio_opcode != LIO_SYNC &&
1751 cb->seqno < aiocbe->seqno) {
1756 TAILQ_FOREACH(cb, &ki->kaio_bufqueue, plist) {
1757 if (cb->fd_file == aiocbe->fd_file &&
1758 cb->uaiocb.aio_lio_opcode != LIO_SYNC &&
1759 cb->seqno < aiocbe->seqno) {
1764 if (aiocbe->pending != 0) {
1765 TAILQ_INSERT_TAIL(&ki->kaio_syncqueue, aiocbe, list);
1771 mtx_lock(&aio_job_mtx);
1772 TAILQ_INSERT_TAIL(&aio_jobs, aiocbe, list);
1775 mtx_unlock(&aio_job_mtx);
1785 struct kaioinfo *ki = userp->p_aioinfo;
1788 mtx_assert(&aio_job_mtx, MA_OWNED);
1789 if ((aiop = TAILQ_FIRST(&aio_freeproc)) != NULL) {
1790 TAILQ_REMOVE(&aio_freeproc, aiop, list);
1803 struct kaioinfo *ki = userp->p_aioinfo;
1807 mtx_assert(&aio_job_mtx, MA_OWNED);
1809 if ((aiop = TAILQ_FIRST(&aio_freeproc)) != NULL) {
1810 TAILQ_REMOVE(&aio_freeproc, aiop, list);
1817 mtx_unlock(&aio_job_mtx);
1819 mtx_lock(&aio_job_mtx);
1833 struct proc *userp = context;
1835 mtx_lock(&aio_job_mtx);
1836 while (--pending >= 0) {
1840 mtx_unlock(&aio_job_mtx);
1850 struct proc *p = td->td_proc;
1859 TAILQ_FOREACH(cb, &ki->kaio_done, plist) {
1860 if (cb->uuaiocb == uaiocb)
1865 status = cb->uaiocb._aiocb_private.status;
1866 error = cb->uaiocb._aiocb_private.error;
1867 td->td_retval[0] = status;
1868 if (cb->uaiocb.aio_lio_opcode == LIO_WRITE) {
1869 td->td_ru.ru_oublock += cb->outputcharge;
1870 cb->outputcharge = 0;
1871 }
else if (cb->uaiocb.aio_lio_opcode == LIO_READ) {
1872 td->td_ru.ru_inblock += cb->inputcharge;
1873 cb->inputcharge = 0;
1898 struct timespec *
ts)
1900 struct proc *p = td->td_proc;
1908 if (ts->tv_nsec < 0 || ts->tv_nsec >= 1000000000)
1911 TIMESPEC_TO_TIMEVAL(&atv, ts);
1928 TAILQ_FOREACH(cb, &ki->kaio_all, allist) {
1929 for (i = 0; i < njoblist; i++) {
1930 if (cb->uuaiocb == ujoblist[i]) {
1931 if (cbfirst == NULL)
1939 if (cbfirst == NULL)
1943 error = msleep(&p->p_aioinfo,
AIO_MTX(ki), PRIBIO | PCATCH,
1945 if (error == ERESTART)
1958 struct timespec ts, *tsp;
1959 struct aiocb **ujoblist;
1962 if (uap->nent < 0 || uap->nent > AIO_LISTIO_MAX)
1967 if ((error = copyin(uap->timeout, &ts,
sizeof(ts))) != 0)
1973 ujoblist = uma_zalloc(aiol_zone, M_WAITOK);
1974 error = copyin(uap->aiocbp, ujoblist, uap->nent *
sizeof(ujoblist[0]));
1977 uma_zfree(aiol_zone, ujoblist);
1988 struct proc *p = td->td_proc;
1996 int notcancelled = 0;
2000 error =
fget(td, uap->fd, 0, &fp);
2008 if (fp->f_type == DTYPE_VNODE) {
2012 td->td_retval[0] = AIO_NOTCANCELED;
2018 TAILQ_FOREACH_SAFE(cbe, &ki->kaio_jobqueue, plist, cbn) {
2019 if ((uap->fd == cbe->uaiocb.aio_fildes) &&
2020 ((uap->aiocbp == NULL) ||
2021 (uap->aiocbp == cbe->uuaiocb))) {
2024 mtx_lock(&aio_job_mtx);
2026 TAILQ_REMOVE(&aio_jobs, cbe, list);
2029 MPASS(fp->f_type == DTYPE_SOCKET);
2031 TAILQ_REMOVE(&so->so_aiojobq, cbe, list);
2034 TAILQ_REMOVE(&ki->kaio_syncqueue, cbe, list);
2037 mtx_unlock(&aio_job_mtx);
2040 TAILQ_REMOVE(&ki->kaio_jobqueue, cbe, plist);
2041 cbe->uaiocb._aiocb_private.status = -1;
2042 cbe->uaiocb._aiocb_private.error = ECANCELED;
2048 if (uap->aiocbp != NULL)
2057 if (uap->aiocbp != NULL) {
2059 td->td_retval[0] = AIO_CANCELED;
2065 td->td_retval[0] = AIO_NOTCANCELED;
2070 td->td_retval[0] = AIO_CANCELED;
2074 td->td_retval[0] = AIO_ALLDONE;
2087 struct proc *p = td->td_proc;
2094 td->td_retval[0] = EINVAL;
2099 TAILQ_FOREACH(cb, &ki->kaio_all, allist) {
2100 if (cb->uuaiocb == aiocbp) {
2103 cb->uaiocb._aiocb_private.error;
2105 td->td_retval[0] = EINPROGRESS;
2121 td->td_retval[0] = EINVAL;
2137 return (
aio_aqueue(td, (
struct aiocb *)uap->aiocbp, NULL, LIO_READ,
2138 &aiocb_ops_osigevent));
2145 return (
aio_aqueue(td, uap->aiocbp, NULL, LIO_READ, &aiocb_ops));
2153 return (
aio_aqueue(td, (
struct aiocb *)uap->aiocbp, NULL, LIO_WRITE,
2154 &aiocb_ops_osigevent));
2161 return (
aio_aqueue(td, uap->aiocbp, NULL, LIO_WRITE, &aiocb_ops));
2166 struct aiocb **acb_list,
int nent,
struct sigevent *sig,
2167 struct aiocb_ops *ops)
2169 struct proc *p = td->td_proc;
2172 struct aioliojob *lj;
2178 if ((mode != LIO_NOWAIT) && (mode != LIO_WAIT))
2181 if (nent < 0 || nent > AIO_LISTIO_MAX)
2184 if (p->p_aioinfo == NULL)
2189 lj = uma_zalloc(aiolio_zone, M_WAITOK);
2194 ksiginfo_init(&lj->lioj_ksi);
2199 if (sig && (mode == LIO_NOWAIT)) {
2201 if (lj->
lioj_signal.sigev_notify == SIGEV_KEVENT) {
2203 kev.filter = EVFILT_LIO;
2204 kev.flags = EV_ADD | EV_ENABLE | EV_FLAG1;
2205 kev.ident = (uintptr_t)uacb_list;
2206 kev.data = (intptr_t)lj;
2208 kev.udata = lj->
lioj_signal.sigev_value.sival_ptr;
2210 lj->
lioj_signal.sigev_notify_kqueue, &kev, td, 1);
2212 uma_zfree(aiolio_zone, lj);
2215 }
else if (lj->
lioj_signal.sigev_notify == SIGEV_NONE) {
2217 }
else if (lj->
lioj_signal.sigev_notify == SIGEV_SIGNAL ||
2218 lj->
lioj_signal.sigev_notify == SIGEV_THREAD_ID) {
2220 uma_zfree(aiolio_zone, lj);
2225 uma_zfree(aiolio_zone, lj);
2231 TAILQ_INSERT_TAIL(&ki->kaio_liojoblist, lj, lioj_list);
2245 for (i = 0; i < nent; i++) {
2248 error =
aio_aqueue(td, iocb, lj, LIO_NOP, ops);
2256 if (mode == LIO_WAIT) {
2259 error = msleep(&p->p_aioinfo,
AIO_MTX(ki),
2260 PRIBIO | PCATCH,
"aiospn", 0);
2261 if (error == ERESTART)
2268 if (lj->
lioj_signal.sigev_notify == SIGEV_KEVENT) {
2270 KNOTE_LOCKED(&lj->klist, 1);
2274 && (lj->
lioj_signal.sigev_notify == SIGEV_SIGNAL ||
2275 lj->
lioj_signal.sigev_notify == SIGEV_THREAD_ID)) {
2284 TAILQ_REMOVE(&ki->kaio_liojoblist, lj, lioj_list);
2285 knlist_delete(&lj->klist, curthread, 1);
2290 uma_zfree(aiolio_zone, lj);
2303 struct aiocb **acb_list;
2304 struct sigevent *sigp, sig;
2305 struct osigevent osig;
2308 if ((uap->mode != LIO_NOWAIT) && (uap->mode != LIO_WAIT))
2312 if (nent < 0 || nent > AIO_LISTIO_MAX)
2315 if (uap->sig && (uap->mode == LIO_NOWAIT)) {
2316 error = copyin(uap->sig, &osig,
sizeof(osig));
2326 acb_list =
malloc(
sizeof(
struct aiocb *) * nent, M_LIO, M_WAITOK);
2327 error = copyin(uap->acb_list, acb_list, nent *
sizeof(acb_list[0]));
2330 (
struct aiocb *
const *)uap->acb_list, acb_list, nent, sigp,
2331 &aiocb_ops_osigevent);
2332 free(acb_list, M_LIO);
2340 struct aiocb **acb_list;
2341 struct sigevent *sigp, sig;
2344 if ((uap->mode != LIO_NOWAIT) && (uap->mode != LIO_WAIT))
2348 if (nent < 0 || nent > AIO_LISTIO_MAX)
2351 if (uap->sig && (uap->mode == LIO_NOWAIT)) {
2352 error = copyin(uap->sig, &sig,
sizeof(sig));
2359 acb_list =
malloc(
sizeof(
struct aiocb *) * nent, M_LIO, M_WAITOK);
2360 error = copyin(uap->acb_list, acb_list, nent *
sizeof(acb_list[0]));
2363 nent, sigp, &aiocb_ops);
2364 free(acb_list, M_LIO);
2377 aiocbe = (
struct aiocblist *)bp->b_caller1;
2394 userp = aiocbe->userproc;
2395 ki = userp->p_aioinfo;
2397 aiocbe->uaiocb._aiocb_private.status -= bp->b_resid;
2398 aiocbe->uaiocb._aiocb_private.error = 0;
2399 if (bp->b_ioflags & BIO_ERROR)
2400 aiocbe->uaiocb._aiocb_private.error = bp->b_error;
2401 nblks = btodb(aiocbe->uaiocb.aio_nbytes);
2402 if (aiocbe->uaiocb.aio_lio_opcode == LIO_WRITE)
2403 aiocbe->outputcharge += nblks;
2405 aiocbe->inputcharge += nblks;
2407 TAILQ_REMOVE(&userp->p_aioinfo->kaio_bufqueue, aiocbe, plist);
2421 struct timespec *
ts,
struct aiocb_ops *ops)
2423 struct proc *p = td->td_proc;
2427 struct aiocb *uuaiocb;
2428 int error, status, timo;
2434 if ((ts->tv_nsec < 0) || (ts->tv_nsec >= 1000000000))
2437 TIMESPEC_TO_TIMEVAL(&atv, ts);
2443 if (p->p_aioinfo == NULL)
2450 while ((cb = TAILQ_FIRST(&ki->kaio_done)) == NULL) {
2452 error = msleep(&p->p_aioinfo,
AIO_MTX(ki), PRIBIO | PCATCH,
2454 if (timo && error == ERESTART)
2462 uuaiocb = cb->uuaiocb;
2463 status = cb->uaiocb._aiocb_private.status;
2464 error = cb->uaiocb._aiocb_private.error;
2465 td->td_retval[0] = status;
2466 if (cb->uaiocb.aio_lio_opcode == LIO_WRITE) {
2467 td->td_ru.ru_oublock += cb->outputcharge;
2468 cb->outputcharge = 0;
2469 }
else if (cb->uaiocb.aio_lio_opcode == LIO_READ) {
2470 td->td_ru.ru_inblock += cb->inputcharge;
2471 cb->inputcharge = 0;
2487 struct timespec ts, *tsp;
2492 error = copyin(uap->timeout, &ts,
sizeof(ts));
2504 struct aiocb_ops *ops)
2506 struct proc *p = td->td_proc;
2514 return (
aio_aqueue(td, aiocbp, NULL, LIO_SYNC, ops));
2535 if ((kn->kn_flags & EV_FLAG1) == 0)
2537 kn->kn_ptr.p_aio = aiocbe;
2538 kn->kn_flags &= ~EV_FLAG1;
2551 knl = &kn->kn_ptr.p_aio->klist;
2552 knl->kl_lock(knl->kl_lockarg);
2555 knl->kl_unlock(knl->kl_lockarg);
2563 struct aiocblist *aiocbe = kn->kn_ptr.p_aio;
2565 kn->kn_data = aiocbe->uaiocb._aiocb_private.error;
2568 kn->kn_flags |= EV_EOF;
2576 struct aioliojob * lj = (
struct aioliojob *)kn->kn_sdata;
2583 if ((kn->kn_flags & EV_FLAG1) == 0)
2585 kn->kn_ptr.p_lio = lj;
2586 kn->kn_flags &= ~EV_FLAG1;
2599 knl = &kn->kn_ptr.p_lio->klist;
2600 knl->kl_lock(knl->kl_lockarg);
2603 knl->kl_unlock(knl->kl_lockarg);
2611 struct aioliojob * lj = kn->kn_ptr.p_lio;
2618 struct __aiocb_private32 {
2621 uint32_t kernelinfo;
2624 typedef struct oaiocb32 {
2626 uint64_t aio_offset __packed;
2628 uint32_t aio_nbytes;
2629 struct osigevent32 aio_sigevent;
2632 struct __aiocb_private32 _aiocb_private;
2635 typedef struct aiocb32 {
2637 uint64_t aio_offset __packed;
2639 uint32_t aio_nbytes;
2641 uint32_t __spare2__;
2644 struct __aiocb_private32 _aiocb_private;
2645 struct sigevent32 aio_sigevent;
2649 convert_old_sigevent32(
struct osigevent32 *osig,
struct sigevent *nsig)
2656 CP(*osig, *nsig, sigev_notify);
2657 switch (nsig->sigev_notify) {
2661 nsig->sigev_signo = osig->__sigev_u.__sigev_signo;
2664 nsig->sigev_notify_kqueue =
2665 osig->__sigev_u.__sigev_notify_kqueue;
2666 PTRIN_CP(*osig, *nsig, sigev_value.sival_ptr);
2675 aiocb32_copyin_old_sigevent(
struct aiocb *ujob,
struct aiocb *kjob)
2677 struct oaiocb32 job32;
2680 bzero(kjob,
sizeof(
struct aiocb));
2681 error = copyin(ujob, &job32,
sizeof(job32));
2685 CP(job32, *kjob, aio_fildes);
2686 CP(job32, *kjob, aio_offset);
2687 PTRIN_CP(job32, *kjob, aio_buf);
2688 CP(job32, *kjob, aio_nbytes);
2689 CP(job32, *kjob, aio_lio_opcode);
2690 CP(job32, *kjob, aio_reqprio);
2691 CP(job32, *kjob, _aiocb_private.status);
2692 CP(job32, *kjob, _aiocb_private.error);
2693 PTRIN_CP(job32, *kjob, _aiocb_private.kernelinfo);
2694 return (convert_old_sigevent32(&job32.aio_sigevent,
2695 &kjob->aio_sigevent));
2699 aiocb32_copyin(
struct aiocb *ujob,
struct aiocb *kjob)
2701 struct aiocb32 job32;
2704 error = copyin(ujob, &job32,
sizeof(job32));
2707 CP(job32, *kjob, aio_fildes);
2708 CP(job32, *kjob, aio_offset);
2709 PTRIN_CP(job32, *kjob, aio_buf);
2710 CP(job32, *kjob, aio_nbytes);
2711 CP(job32, *kjob, aio_lio_opcode);
2712 CP(job32, *kjob, aio_reqprio);
2713 CP(job32, *kjob, _aiocb_private.status);
2714 CP(job32, *kjob, _aiocb_private.error);
2715 PTRIN_CP(job32, *kjob, _aiocb_private.kernelinfo);
2716 return (convert_sigevent32(&job32.aio_sigevent, &kjob->aio_sigevent));
2720 aiocb32_fetch_status(
struct aiocb *ujob)
2722 struct aiocb32 *ujob32;
2724 ujob32 = (
struct aiocb32 *)ujob;
2725 return (fuword32(&ujob32->_aiocb_private.status));
2729 aiocb32_fetch_error(
struct aiocb *ujob)
2731 struct aiocb32 *ujob32;
2733 ujob32 = (
struct aiocb32 *)ujob;
2734 return (fuword32(&ujob32->_aiocb_private.error));
2738 aiocb32_store_status(
struct aiocb *ujob,
long status)
2740 struct aiocb32 *ujob32;
2742 ujob32 = (
struct aiocb32 *)ujob;
2743 return (suword32(&ujob32->_aiocb_private.status, status));
2747 aiocb32_store_error(
struct aiocb *ujob,
long error)
2749 struct aiocb32 *ujob32;
2751 ujob32 = (
struct aiocb32 *)ujob;
2752 return (suword32(&ujob32->_aiocb_private.error, error));
2756 aiocb32_store_kernelinfo(
struct aiocb *ujob,
long jobref)
2758 struct aiocb32 *ujob32;
2760 ujob32 = (
struct aiocb32 *)ujob;
2761 return (suword32(&ujob32->_aiocb_private.kernelinfo, jobref));
2765 aiocb32_store_aiocb(
struct aiocb **ujobp,
struct aiocb *ujob)
2768 return (suword32(ujobp, (
long)ujob));
2771 static struct aiocb_ops aiocb32_ops = {
2772 .
copyin = aiocb32_copyin,
2773 .fetch_status = aiocb32_fetch_status,
2774 .fetch_error = aiocb32_fetch_error,
2775 .store_status = aiocb32_store_status,
2776 .store_error = aiocb32_store_error,
2777 .store_kernelinfo = aiocb32_store_kernelinfo,
2778 .store_aiocb = aiocb32_store_aiocb,
2781 static struct aiocb_ops aiocb32_ops_osigevent = {
2782 .
copyin = aiocb32_copyin_old_sigevent,
2783 .fetch_status = aiocb32_fetch_status,
2784 .fetch_error = aiocb32_fetch_error,
2785 .store_status = aiocb32_store_status,
2786 .store_error = aiocb32_store_error,
2787 .store_kernelinfo = aiocb32_store_kernelinfo,
2788 .store_aiocb = aiocb32_store_aiocb,
2792 compat32bit_aio_return(
struct thread *td,
struct compat32bit_aio_return_args *uap)
2795 return (
kern_aio_return(td, (
struct aiocb *)uap->aiocbp, &aiocb32_ops));
2799 compat32bit_aio_suspend(
struct thread *td,
struct compat32bit_aio_suspend_args *uap)
2801 struct timespec32 ts32;
2802 struct timespec
ts, *tsp;
2803 struct aiocb **ujoblist;
2804 uint32_t *ujoblist32;
2807 if (uap->nent < 0 || uap->nent > AIO_LISTIO_MAX)
2812 if ((error = copyin(uap->timeout, &ts32,
sizeof(ts32))) != 0)
2814 CP(ts32,
ts, tv_sec);
2815 CP(ts32,
ts, tv_nsec);
2820 ujoblist = uma_zalloc(aiol_zone, M_WAITOK);
2821 ujoblist32 = (uint32_t *)ujoblist;
2822 error = copyin(uap->aiocbp, ujoblist32, uap->nent *
2823 sizeof(ujoblist32[0]));
2825 for (i = uap->nent; i > 0; i--)
2826 ujoblist[i] = PTRIN(ujoblist32[i]);
2830 uma_zfree(aiol_zone, ujoblist);
2835 compat32bit_aio_cancel(
struct thread *td,
struct compat32bit_aio_cancel_args *uap)
2842 compat32bit_aio_error(
struct thread *td,
struct compat32bit_aio_error_args *uap)
2845 return (
kern_aio_error(td, (
struct aiocb *)uap->aiocbp, &aiocb32_ops));
2849 compat32bit_oaio_read(
struct thread *td,
struct compat32bit_oaio_read_args *uap)
2852 return (
aio_aqueue(td, (
struct aiocb *)uap->aiocbp, NULL, LIO_READ,
2853 &aiocb32_ops_osigevent));
2857 compat32bit_aio_read(
struct thread *td,
struct compat32bit_aio_read_args *uap)
2860 return (
aio_aqueue(td, (
struct aiocb *)uap->aiocbp, NULL, LIO_READ,
2865 compat32bit_oaio_write(
struct thread *td,
struct compat32bit_oaio_write_args *uap)
2868 return (
aio_aqueue(td, (
struct aiocb *)uap->aiocbp, NULL, LIO_WRITE,
2869 &aiocb32_ops_osigevent));
2873 compat32bit_aio_write(
struct thread *td,
struct compat32bit_aio_write_args *uap)
2876 return (
aio_aqueue(td, (
struct aiocb *)uap->aiocbp, NULL, LIO_WRITE,
2881 compat32bit_aio_waitcomplete(
struct thread *td,
2882 struct compat32bit_aio_waitcomplete_args *uap)
2884 struct timespec32 ts32;
2885 struct timespec
ts, *tsp;
2890 error = copyin(uap->timeout, &ts32,
sizeof(ts32));
2893 CP(ts32,
ts, tv_sec);
2894 CP(ts32,
ts, tv_nsec);
2904 compat32bit_aio_fsync(
struct thread *td,
struct compat32bit_aio_fsync_args *uap)
2912 compat32bit_olio_listio(
struct thread *td,
struct compat32bit_olio_listio_args *uap)
2914 struct aiocb **acb_list;
2915 struct sigevent *sigp, sig;
2916 struct osigevent32 osig;
2917 uint32_t *acb_list32;
2920 if ((uap->mode != LIO_NOWAIT) && (uap->mode != LIO_WAIT))
2924 if (nent < 0 || nent > AIO_LISTIO_MAX)
2927 if (uap->sig && (uap->mode == LIO_NOWAIT)) {
2928 error = copyin(uap->sig, &osig,
sizeof(osig));
2931 error = convert_old_sigevent32(&osig, &sig);
2938 acb_list32 =
malloc(
sizeof(uint32_t) * nent, M_LIO, M_WAITOK);
2939 error = copyin(uap->acb_list, acb_list32, nent *
sizeof(uint32_t));
2941 free(acb_list32, M_LIO);
2944 acb_list =
malloc(
sizeof(
struct aiocb *) * nent, M_LIO, M_WAITOK);
2945 for (i = 0; i < nent; i++)
2946 acb_list[i] = PTRIN(acb_list32[i]);
2947 free(acb_list32, M_LIO);
2950 (
struct aiocb *
const *)uap->acb_list, acb_list, nent, sigp,
2951 &aiocb32_ops_osigevent);
2952 free(acb_list, M_LIO);
2957 compat32bit_lio_listio(
struct thread *td,
struct compat32bit_lio_listio_args *uap)
2959 struct aiocb **acb_list;
2960 struct sigevent *sigp, sig;
2961 struct sigevent32 sig32;
2962 uint32_t *acb_list32;
2965 if ((uap->mode != LIO_NOWAIT) && (uap->mode != LIO_WAIT))
2969 if (nent < 0 || nent > AIO_LISTIO_MAX)
2972 if (uap->sig && (uap->mode == LIO_NOWAIT)) {
2973 error = copyin(uap->sig, &sig32,
sizeof(sig32));
2976 error = convert_sigevent32(&sig32, &sig);
2983 acb_list32 =
malloc(
sizeof(uint32_t) * nent, M_LIO, M_WAITOK);
2984 error = copyin(uap->acb_list, acb_list32, nent *
sizeof(uint32_t));
2986 free(acb_list32, M_LIO);
2989 acb_list =
malloc(
sizeof(
struct aiocb *) * nent, M_LIO, M_WAITOK);
2990 for (i = 0; i < nent; i++)
2991 acb_list[i] = PTRIN(acb_list32[i]);
2992 free(acb_list32, M_LIO);
2995 (
struct aiocb *
const *)uap->acb_list, acb_list, nent, sigp,
2997 free(acb_list, M_LIO);
SYSCTL_INT(_vfs_aio, OID_AUTO, max_aio_procs, CTLFLAG_RW,&max_aio_procs, 0,"Maximum number of kernel threads to use for handling async IO ")
static eventhandler_tag exec_tag
int(* store_error)(struct aiocb *ujob, long error)
int kqueue_del_filteropts(int filt)
static int max_aio_per_proc
int syscall_helper_unregister(struct syscall_helper_data *sd)
int tvtohz(struct timeval *tv)
static void filt_aiodetach(struct knote *kn)
static int filt_lio(struct knote *kn, long hint)
static int aio_newproc(int *start)
void(* aio_swake)(struct socket *, struct sockbuf *)
static struct filterops lio_filtops
static int aiocb_copyin_old_sigevent(struct aiocb *ujob, struct aiocb *kjob)
void taskqueue_drain(struct taskqueue *queue, struct task *task)
void aio_init_aioinfo(struct proc *p)
int syscall_helper_register(struct syscall_helper_data *sd)
static void aio_swake_cb(struct socket *so, struct sockbuf *sb)
DECLARE_MODULE(aio, aio_mod, SI_SUB_VFS, SI_ORDER_ANY)
static int aiocb_store_status(struct aiocb *ujob, long status)
#define LIOJ_SIGNAL_POSTED
void * malloc(unsigned long size, struct malloc_type *mtp, int flags)
static long aiocb_fetch_status(struct aiocb *ujob)
void dev_strategy_csw(struct cdev *dev, struct cdevsw *csw, struct buf *bp)
static int num_aio_resv_start
#define MAX_AIO_QUEUE_PER_PROC
void sigqueue_take(ksiginfo_t *ksi)
static int kern_aio_return(struct thread *td, struct aiocb *uaiocb, struct aiocb_ops *ops)
void panic(const char *fmt,...)
void vn_finished_write(struct mount *mp)
int(* store_status)(struct aiocb *ujob, long status)
#define AIOD_TIMEOUT_DEFAULT
static long aiocb_fetch_error(struct aiocb *ujob)
static int filt_lioattach(struct knote *kn)
void knote(struct knlist *list, long hint, int lockflags)
void dev_relthread(struct cdev *dev, int ref)
int knlist_empty(struct knlist *knl)
int alloc_unr(struct unrhdr *uh)
int(* store_kernelinfo)(struct aiocb *ujob, long jobref)
static void aio_proc_rundown(void *arg, struct proc *p)
static int target_aio_procs
void kern_psignal(struct proc *p, int sig)
static int aio_qphysio(struct proc *p, struct aiocblist *aiocbe)
static int kern_aio_waitcomplete(struct thread *td, struct aiocb **aiocbp, struct timespec *ts, struct aiocb_ops *ops)
FEATURE(aio,"Asynchronous I/O")
static int aiocb_store_error(struct aiocb *ujob, long error)
int fget(struct thread *td, int fd, cap_rights_t rights, struct file **fpp)
static int kern_aio_fsync(struct thread *td, int op, struct aiocb *aiocbp, struct aiocb_ops *ops)
static int num_queue_count
static int aiocb_store_aiocb(struct aiocb **ujobp, struct aiocb *ujob)
void vunmapbuf(struct buf *bp)
static void aio_kick_helper(void *context, int pending)
static int kern_aio_suspend(struct thread *td, int njoblist, struct aiocb **ujoblist, struct timespec *ts)
int(* copyin)(struct aiocb *ujob, struct aiocb *kjob)
static int aio_kick(struct proc *userp)
static void aio_kick_nowait(struct proc *userp)
static void aio_daemon(void *_id)
int sys_aio_return(struct thread *td, struct aio_return_args *uap)
static moduledata_t aio_mod
int kqfd_register(int fd, struct kevent *kev, struct thread *td, int waitok)
int kqueue_add_filteropts(int filt, struct filterops *filtops)
void p31b_setcfg(int num, int value)
static int aio_unload(void)
static void aio_proc_rundown_exec(void *arg, struct proc *p, struct image_params *imgp __unused)
void kproc_exit(int ecode)
#define AIOCBLIST_CHECKSYNC
void knlist_remove(struct knlist *knl, struct knote *kn, int islocked)
int(* store_aiocb)(struct aiocb **ujobp, struct aiocb *ujob)
void taskqueue_free(struct taskqueue *queue)
long(* fetch_status)(struct aiocb *ujob)
static void biohelper(void *context, int pending)
static struct semid_kernel * sema
static int max_aio_queue_per_proc
int aio_aqueue(struct thread *td, struct aiocb *job, struct aioliojob *lj, int type, struct aiocb_ops *ops)
static void aio_bio_done_notify(struct proc *userp, struct aiocblist *aiocbe, int type)
static int filt_aioattach(struct knote *kn)
static struct aiocb_ops aiocb_ops_osigevent
static void filt_liodetach(struct knote *kn)
void crfree(struct ucred *cr)
int sys_aio_suspend(struct thread *td, struct aio_suspend_args *uap)
#define LIOJ_KEVENT_POSTED
static void aio_physwakeup(struct buf *bp)
int sigev_findtd(struct proc *p, struct sigevent *sigev, struct thread **ttd)
static int aio_free_entry(struct aiocblist *aiocbe)
void knlist_add(struct knlist *knl, struct knote *kn, int islocked)
struct unrhdr * new_unrhdr(int low, int high, struct mtx *mutex)
int sys_aio_write(struct thread *td, struct aio_write_args *uap)
struct sigevent lioj_signal
struct cdevsw * devvn_refthread(struct vnode *vp, struct cdev **devp, int *ref)
int sys_aio_cancel(struct thread *td, struct aio_cancel_args *uap)
int sys_setsid(register struct thread *td, struct setsid_args *uap)
struct ucred * crhold(struct ucred *cr)
static struct aiocblist * aio_selectjob(struct aiothreadlist *aiop)
int sys_olio_listio(struct thread *td, struct olio_listio_args *uap)
struct osigevent aio_sigevent
int sys_oaio_read(struct thread *td, struct oaio_read_args *uap)
static eventhandler_tag exit_tag
void free(void *addr, struct malloc_type *mtp)
static int max_queue_count
static int aio_fsync_vnode(struct thread *td, struct vnode *vp)
int printf(const char *fmt,...)
int sys_aio_error(struct thread *td, struct aio_error_args *uap)
int taskqueue_enqueue(struct taskqueue *queue, struct task *task)
static int filt_aio(struct knote *kn, long hint)
#define AIO_LOCK_ASSERT(ki, f)
#define AIOCBLIST_BUFDONE
static void aio_process(struct aiocblist *aiocbe)
struct __aiocb_private _aiocb_private
static int aiocb_store_kernelinfo(struct aiocb *ujob, long jobref)
int kproc_create(void(*func)(void *), void *arg, struct proc **newpp, int flags, int pages, const char *fmt,...)
static int aio_onceonly(void)
void mtx_init(struct mtx *m, const char *name, const char *type, int opts)
static int kern_aio_error(struct thread *td, struct aiocb *aiocbp, struct aiocb_ops *ops)
int vn_start_write(struct vnode *vp, struct mount **mpp, int flags)
static int aio_modload(struct module *module, int cmd, void *arg)
int fget_read(struct thread *td, int fd, cap_rights_t rights, struct file **fpp)
int itimerfix(struct timeval *tv)
int sys_aio_fsync(struct thread *td, struct aio_fsync_args *uap)
static int convert_old_sigevent(struct osigevent *osig, struct sigevent *nsig)
void sema_init(struct sema *sema, int value, const char *description)
int tdsendsignal(struct proc *p, struct thread *td, int sig, ksiginfo_t *ksi)
int vn_isdisk(struct vnode *vp, int *errp)
static MALLOC_DEFINE(M_LIO,"lio","listio aio control block list")
int fget_write(struct thread *td, int fd, cap_rights_t rights, struct file **fpp)
long(* fetch_error)(struct aiocb *ujob)
void delete_unrhdr(struct unrhdr *uh)
#define AIOD_LIFETIME_DEFAULT
int sys_lio_listio(struct thread *td, struct lio_listio_args *uap)
void mtx_destroy(struct mtx *m)
int sys_aio_read(struct thread *td, struct aio_read_args *uap)
TASKQUEUE_DEFINE_THREAD(aiod_bio)
#define JOBST_JOBFINISHED
static int aiocb_copyin(struct aiocb *ujob, struct aiocb *kjob)
static SYSCTL_NODE(_vfs, OID_AUTO, aio, CTLFLAG_RW, 0,"Async IO management")
void free_unr(struct unrhdr *uh, u_int item)
static TAILQ_HEAD(aiothreadlist)
void knlist_init_mtx(struct knlist *knl, struct mtx *lock)
int sys_oaio_write(struct thread *td, struct oaio_write_args *uap)
static int aio_sendsig(struct proc *p, struct sigevent *sigev, ksiginfo_t *ksi)
static int kern_lio_listio(struct thread *td, int mode, struct aiocb *const *uacb_list, struct aiocb **acb_list, int nent, struct sigevent *sig, struct aiocb_ops *ops)
int vmapbuf(struct buf *bp, int mapbuf)
int sys_aio_waitcomplete(struct thread *td, struct aio_waitcomplete_args *uap)
void sema_destroy(struct sema *sema)
static struct syscall_helper_data aio_syscalls[]