sys_aio.c revision 1.4 1 1.4 rmind /* $NetBSD: sys_aio.c,v 1.4 2007/05/31 05:29:43 rmind Exp $ */
2 1.1 rmind
3 1.1 rmind /*
4 1.1 rmind * Copyright (c) 2007, Mindaugas Rasiukevicius <rmind at NetBSD org>
5 1.1 rmind *
6 1.1 rmind * Redistribution and use in source and binary forms, with or without
7 1.1 rmind * modification, are permitted provided that the following conditions
8 1.1 rmind * are met:
9 1.1 rmind * 1. Redistributions of source code must retain the above copyright
10 1.1 rmind * notice, this list of conditions and the following disclaimer.
11 1.1 rmind * 2. Redistributions in binary form must reproduce the above copyright
12 1.1 rmind * notice, this list of conditions and the following disclaimer in the
13 1.1 rmind * documentation and/or other materials provided with the distribution.
14 1.1 rmind *
15 1.1 rmind * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
16 1.1 rmind * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
17 1.1 rmind * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
18 1.1 rmind * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
19 1.1 rmind * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
20 1.1 rmind * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
21 1.1 rmind * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
22 1.1 rmind * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
23 1.1 rmind * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
24 1.1 rmind * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
25 1.1 rmind * POSSIBILITY OF SUCH DAMAGE.
26 1.1 rmind */
27 1.1 rmind
28 1.1 rmind /*
29 1.1 rmind * TODO:
30 1.1 rmind * 1. Additional work for VCHR and maybe VBLK devices.
31 1.1 rmind * 2. Consider making the job-finding O(n) per one file descriptor.
32 1.1 rmind */
33 1.1 rmind
34 1.1 rmind #include <sys/cdefs.h>
35 1.4 rmind __KERNEL_RCSID(0, "$NetBSD: sys_aio.c,v 1.4 2007/05/31 05:29:43 rmind Exp $");
36 1.4 rmind
37 1.4 rmind #include "opt_ddb.h"
38 1.1 rmind
39 1.1 rmind #include <sys/param.h>
40 1.1 rmind #include <sys/condvar.h>
41 1.1 rmind #include <sys/file.h>
42 1.1 rmind #include <sys/filedesc.h>
43 1.1 rmind #include <sys/kernel.h>
44 1.1 rmind #include <sys/kmem.h>
45 1.1 rmind #include <sys/lwp.h>
46 1.1 rmind #include <sys/mutex.h>
47 1.1 rmind #include <sys/pool.h>
48 1.1 rmind #include <sys/proc.h>
49 1.1 rmind #include <sys/queue.h>
50 1.1 rmind #include <sys/signal.h>
51 1.1 rmind #include <sys/signalvar.h>
52 1.1 rmind #include <sys/syscallargs.h>
53 1.1 rmind #include <sys/sysctl.h>
54 1.1 rmind #include <sys/systm.h>
55 1.1 rmind #include <sys/types.h>
56 1.1 rmind #include <sys/vnode.h>
57 1.1 rmind
58 1.1 rmind #include <uvm/uvm_extern.h>
59 1.1 rmind
60 1.1 rmind /*
61 1.1 rmind * System-wide limits and counter of AIO operations.
62 1.1 rmind * XXXSMP: We should spin-lock it, or modify atomically.
63 1.1 rmind */
64 1.4 rmind static u_int aio_listio_max = AIO_LISTIO_MAX;
65 1.4 rmind static u_int aio_max = AIO_MAX;
66 1.4 rmind static u_int aio_jobs_count;
67 1.1 rmind
68 1.4 rmind static struct pool aio_job_pool;
69 1.4 rmind static struct pool aio_lio_pool;
70 1.1 rmind
71 1.1 rmind /* Prototypes */
72 1.1 rmind void aio_worker(void *);
73 1.1 rmind static void aio_process(struct aio_job *);
74 1.1 rmind static void aio_sendsig(struct proc *, struct sigevent *);
75 1.1 rmind static int aio_enqueue_job(int, void *, struct lio_req *);
76 1.1 rmind
77 1.1 rmind /*
78 1.4 rmind * Initialize the AIO system.
79 1.4 rmind */
80 1.4 rmind void
81 1.4 rmind aio_sysinit(void)
82 1.4 rmind {
83 1.4 rmind
84 1.4 rmind pool_init(&aio_job_pool, sizeof(struct aio_job), 0, 0, 0,
85 1.4 rmind "aio_jobs_pool", &pool_allocator_nointr, IPL_NONE);
86 1.4 rmind pool_init(&aio_lio_pool, sizeof(struct lio_req), 0, 0, 0,
87 1.4 rmind "aio_lio_pool", &pool_allocator_nointr, IPL_NONE);
88 1.4 rmind }
89 1.4 rmind
90 1.4 rmind /*
91 1.1 rmind * Initialize Asynchronous I/O data structures for the process.
92 1.1 rmind */
93 1.1 rmind int
94 1.1 rmind aio_init(struct proc *p)
95 1.1 rmind {
96 1.1 rmind struct aioproc *aio;
97 1.1 rmind struct lwp *l;
98 1.1 rmind bool inmem;
99 1.1 rmind vaddr_t uaddr;
100 1.1 rmind
101 1.1 rmind /* Allocate and initialize AIO structure */
102 1.1 rmind aio = kmem_zalloc(sizeof(struct aioproc), KM_NOSLEEP);
103 1.1 rmind if (aio == NULL)
104 1.1 rmind return EAGAIN;
105 1.1 rmind
106 1.1 rmind /* Recheck if we are really first */
107 1.1 rmind mutex_enter(&p->p_mutex);
108 1.1 rmind if (p->p_aio) {
109 1.1 rmind mutex_exit(&p->p_mutex);
110 1.1 rmind kmem_free(aio, sizeof(struct aioproc));
111 1.1 rmind return 0;
112 1.1 rmind }
113 1.1 rmind p->p_aio = aio;
114 1.1 rmind
115 1.4 rmind /* Initialize queue and their synchronization structures */
116 1.1 rmind mutex_init(&aio->aio_mtx, MUTEX_DEFAULT, IPL_NONE);
117 1.1 rmind cv_init(&aio->aio_worker_cv, "aiowork");
118 1.1 rmind cv_init(&aio->done_cv, "aiodone");
119 1.1 rmind TAILQ_INIT(&aio->jobs_queue);
120 1.1 rmind
121 1.1 rmind /* It is safe to leave this window without AIO worker set */
122 1.1 rmind mutex_exit(&p->p_mutex);
123 1.1 rmind
124 1.1 rmind /*
125 1.1 rmind * Create an AIO worker thread.
126 1.1 rmind * XXX: Currently, AIO thread is not protected against user's actions.
127 1.1 rmind */
128 1.1 rmind inmem = uvm_uarea_alloc(&uaddr);
129 1.1 rmind if (uaddr == 0) {
130 1.1 rmind aio_exit(p);
131 1.1 rmind return EAGAIN;
132 1.1 rmind }
133 1.1 rmind if (newlwp(curlwp, p, uaddr, inmem, 0, NULL, 0,
134 1.4 rmind aio_worker, NULL, &l)) {
135 1.1 rmind uvm_uarea_free(uaddr);
136 1.1 rmind aio_exit(p);
137 1.1 rmind return EAGAIN;
138 1.1 rmind }
139 1.1 rmind
140 1.1 rmind /* Complete the initialization of thread, and run it */
141 1.1 rmind mutex_enter(&p->p_smutex);
142 1.1 rmind aio->aio_worker = l;
143 1.1 rmind p->p_nrlwps++;
144 1.1 rmind lwp_lock(l);
145 1.1 rmind l->l_stat = LSRUN;
146 1.1 rmind l->l_usrpri = PUSER - 1; /* XXX */
147 1.2 yamt sched_enqueue(l, false);
148 1.1 rmind lwp_unlock(l);
149 1.1 rmind mutex_exit(&p->p_smutex);
150 1.1 rmind
151 1.1 rmind return 0;
152 1.1 rmind }
153 1.1 rmind
154 1.1 rmind /*
155 1.1 rmind * Exit of Asynchronous I/O subsystem of process.
156 1.1 rmind */
157 1.1 rmind void
158 1.1 rmind aio_exit(struct proc *p)
159 1.1 rmind {
160 1.1 rmind struct aioproc *aio;
161 1.1 rmind struct aio_job *a_job;
162 1.1 rmind
163 1.1 rmind if (p->p_aio == NULL)
164 1.1 rmind return;
165 1.1 rmind aio = p->p_aio;
166 1.1 rmind
167 1.1 rmind /* Free AIO queue */
168 1.1 rmind while (!TAILQ_EMPTY(&aio->jobs_queue)) {
169 1.1 rmind a_job = TAILQ_FIRST(&aio->jobs_queue);
170 1.1 rmind TAILQ_REMOVE(&aio->jobs_queue, a_job, list);
171 1.4 rmind pool_put(&aio_job_pool, a_job);
172 1.1 rmind aio_jobs_count--; /* XXXSMP */
173 1.1 rmind }
174 1.1 rmind
175 1.1 rmind /* Destroy and free the entire AIO data structure */
176 1.1 rmind cv_destroy(&aio->aio_worker_cv);
177 1.1 rmind cv_destroy(&aio->done_cv);
178 1.1 rmind mutex_destroy(&aio->aio_mtx);
179 1.1 rmind kmem_free(aio, sizeof(struct aioproc));
180 1.1 rmind p->p_aio = NULL;
181 1.1 rmind }
182 1.1 rmind
183 1.1 rmind /*
184 1.1 rmind * AIO worker thread and processor.
185 1.1 rmind */
186 1.1 rmind void
187 1.1 rmind aio_worker(void *arg)
188 1.1 rmind {
189 1.1 rmind struct proc *p = curlwp->l_proc;
190 1.1 rmind struct aioproc *aio = p->p_aio;
191 1.1 rmind struct aio_job *a_job;
192 1.1 rmind struct lio_req *lio;
193 1.1 rmind sigset_t oss, nss;
194 1.4 rmind int error, refcnt;
195 1.1 rmind
196 1.1 rmind /*
197 1.1 rmind * Make an empty signal mask, so it
198 1.1 rmind * handles only SIGKILL and SIGSTOP.
199 1.1 rmind */
200 1.1 rmind sigfillset(&nss);
201 1.1 rmind mutex_enter(&p->p_smutex);
202 1.1 rmind error = sigprocmask1(curlwp, SIG_SETMASK, &nss, &oss);
203 1.4 rmind mutex_exit(&p->p_smutex);
204 1.1 rmind KASSERT(error == 0);
205 1.1 rmind
206 1.1 rmind for (;;) {
207 1.1 rmind /*
208 1.1 rmind * Loop for each job in the queue. If there
209 1.4 rmind * are no jobs then sleep.
210 1.1 rmind */
211 1.1 rmind mutex_enter(&aio->aio_mtx);
212 1.1 rmind while ((a_job = TAILQ_FIRST(&aio->jobs_queue)) == NULL) {
213 1.1 rmind if (cv_wait_sig(&aio->aio_worker_cv, &aio->aio_mtx)) {
214 1.1 rmind /*
215 1.4 rmind * Thread was interrupted - check for
216 1.4 rmind * pending exit or suspend.
217 1.1 rmind */
218 1.4 rmind mutex_exit(&aio->aio_mtx);
219 1.4 rmind lwp_userret(curlwp);
220 1.4 rmind mutex_enter(&aio->aio_mtx);
221 1.1 rmind }
222 1.1 rmind }
223 1.1 rmind
224 1.1 rmind /* Take the job from the queue */
225 1.1 rmind aio->curjob = a_job;
226 1.1 rmind TAILQ_REMOVE(&aio->jobs_queue, a_job, list);
227 1.1 rmind
228 1.1 rmind aio_jobs_count--; /* XXXSMP */
229 1.1 rmind aio->jobs_count--;
230 1.1 rmind
231 1.1 rmind mutex_exit(&aio->aio_mtx);
232 1.1 rmind
233 1.1 rmind /* Process an AIO operation */
234 1.1 rmind aio_process(a_job);
235 1.1 rmind
236 1.1 rmind /* Copy data structure back to the user-space */
237 1.1 rmind (void)copyout(&a_job->aiocbp, a_job->aiocb_uptr,
238 1.1 rmind sizeof(struct aiocb));
239 1.1 rmind
240 1.1 rmind mutex_enter(&aio->aio_mtx);
241 1.1 rmind aio->curjob = NULL;
242 1.4 rmind
243 1.1 rmind /* Decrease a reference counter, if there is a LIO structure */
244 1.1 rmind lio = a_job->lio;
245 1.4 rmind refcnt = (lio != NULL ? --lio->refcnt : -1);
246 1.4 rmind
247 1.1 rmind /* Notify all suspenders */
248 1.1 rmind cv_broadcast(&aio->done_cv);
249 1.1 rmind mutex_exit(&aio->aio_mtx);
250 1.1 rmind
251 1.1 rmind /* Send a signal, if any */
252 1.1 rmind aio_sendsig(p, &a_job->aiocbp.aio_sigevent);
253 1.1 rmind
254 1.1 rmind /* Destroy the LIO structure */
255 1.4 rmind if (refcnt == 0) {
256 1.1 rmind aio_sendsig(p, &lio->sig);
257 1.4 rmind pool_put(&aio_lio_pool, lio);
258 1.1 rmind }
259 1.1 rmind
260 1.1 rmind /* Destroy the the job */
261 1.4 rmind pool_put(&aio_job_pool, a_job);
262 1.1 rmind }
263 1.1 rmind
264 1.4 rmind /* NOTREACHED */
265 1.1 rmind }
266 1.1 rmind
267 1.1 rmind static void
268 1.1 rmind aio_process(struct aio_job *a_job)
269 1.1 rmind {
270 1.1 rmind struct proc *p = curlwp->l_proc;
271 1.1 rmind struct aiocb *aiocbp = &a_job->aiocbp;
272 1.1 rmind struct file *fp;
273 1.1 rmind struct filedesc *fdp = p->p_fd;
274 1.1 rmind int fd = aiocbp->aio_fildes;
275 1.1 rmind int error = 0;
276 1.1 rmind
277 1.1 rmind KASSERT(fdp != NULL);
278 1.1 rmind KASSERT(a_job->aio_op != 0);
279 1.1 rmind
280 1.4 rmind if ((a_job->aio_op & (AIO_READ | AIO_WRITE)) != 0) {
281 1.1 rmind struct iovec aiov;
282 1.1 rmind struct uio auio;
283 1.1 rmind
284 1.1 rmind if (aiocbp->aio_nbytes > SSIZE_MAX) {
285 1.1 rmind error = EINVAL;
286 1.1 rmind goto done;
287 1.1 rmind }
288 1.1 rmind
289 1.1 rmind fp = fd_getfile(fdp, fd);
290 1.1 rmind if (fp == NULL) {
291 1.1 rmind error = EBADF;
292 1.1 rmind goto done;
293 1.1 rmind }
294 1.1 rmind
295 1.1 rmind aiov.iov_base = (void *)(uintptr_t)aiocbp->aio_buf;
296 1.1 rmind aiov.iov_len = aiocbp->aio_nbytes;
297 1.1 rmind auio.uio_iov = &aiov;
298 1.1 rmind auio.uio_iovcnt = 1;
299 1.1 rmind auio.uio_resid = aiocbp->aio_nbytes;
300 1.1 rmind auio.uio_vmspace = p->p_vmspace;
301 1.1 rmind
302 1.1 rmind FILE_USE(fp);
303 1.1 rmind if (a_job->aio_op & AIO_READ) {
304 1.1 rmind /*
305 1.1 rmind * Perform a Read operation
306 1.1 rmind */
307 1.1 rmind KASSERT((a_job->aio_op & AIO_WRITE) == 0);
308 1.1 rmind
309 1.1 rmind if ((fp->f_flag & FREAD) == 0) {
310 1.1 rmind FILE_UNUSE(fp, curlwp);
311 1.1 rmind error = EBADF;
312 1.1 rmind goto done;
313 1.1 rmind }
314 1.1 rmind auio.uio_rw = UIO_READ;
315 1.1 rmind error = (*fp->f_ops->fo_read)(fp, &aiocbp->aio_offset,
316 1.1 rmind &auio, fp->f_cred, FOF_UPDATE_OFFSET);
317 1.1 rmind } else {
318 1.1 rmind /*
319 1.1 rmind * Perform a Write operation
320 1.1 rmind */
321 1.1 rmind KASSERT(a_job->aio_op & AIO_WRITE);
322 1.1 rmind
323 1.1 rmind if ((fp->f_flag & FWRITE) == 0) {
324 1.1 rmind FILE_UNUSE(fp, curlwp);
325 1.1 rmind error = EBADF;
326 1.1 rmind goto done;
327 1.1 rmind }
328 1.1 rmind auio.uio_rw = UIO_WRITE;
329 1.1 rmind error = (*fp->f_ops->fo_write)(fp, &aiocbp->aio_offset,
330 1.1 rmind &auio, fp->f_cred, FOF_UPDATE_OFFSET);
331 1.1 rmind }
332 1.1 rmind FILE_UNUSE(fp, curlwp);
333 1.1 rmind
334 1.1 rmind /* Store the result value */
335 1.1 rmind a_job->aiocbp.aio_nbytes -= auio.uio_resid;
336 1.1 rmind a_job->aiocbp._retval = (error == 0) ?
337 1.1 rmind a_job->aiocbp.aio_nbytes : -1;
338 1.1 rmind
339 1.4 rmind } else if ((a_job->aio_op & (AIO_SYNC | AIO_DSYNC)) != 0) {
340 1.1 rmind /*
341 1.1 rmind * Perform a file Sync operation
342 1.1 rmind */
343 1.1 rmind struct vnode *vp;
344 1.1 rmind
345 1.1 rmind if ((error = getvnode(fdp, fd, &fp)) != 0)
346 1.1 rmind goto done;
347 1.1 rmind
348 1.1 rmind if ((fp->f_flag & FWRITE) == 0) {
349 1.1 rmind FILE_UNUSE(fp, curlwp);
350 1.1 rmind error = EBADF;
351 1.1 rmind goto done;
352 1.1 rmind }
353 1.1 rmind
354 1.1 rmind vp = (struct vnode *)fp->f_data;
355 1.1 rmind vn_lock(vp, LK_EXCLUSIVE | LK_RETRY);
356 1.1 rmind if (a_job->aio_op & AIO_DSYNC) {
357 1.1 rmind error = VOP_FSYNC(vp, fp->f_cred,
358 1.1 rmind FSYNC_WAIT | FSYNC_DATAONLY, 0, 0, curlwp);
359 1.1 rmind } else if (a_job->aio_op & AIO_SYNC) {
360 1.1 rmind error = VOP_FSYNC(vp, fp->f_cred,
361 1.1 rmind FSYNC_WAIT, 0, 0, curlwp);
362 1.1 rmind if (error == 0 && bioops.io_fsync != NULL &&
363 1.1 rmind vp->v_mount &&
364 1.1 rmind (vp->v_mount->mnt_flag & MNT_SOFTDEP))
365 1.1 rmind (*bioops.io_fsync)(vp, 0);
366 1.1 rmind }
367 1.1 rmind VOP_UNLOCK(vp, 0);
368 1.1 rmind FILE_UNUSE(fp, curlwp);
369 1.1 rmind
370 1.1 rmind /* Store the result value */
371 1.1 rmind a_job->aiocbp._retval = (error == 0) ? 0 : -1;
372 1.1 rmind
373 1.1 rmind } else
374 1.1 rmind panic("aio_process: invalid operation code\n");
375 1.1 rmind
376 1.1 rmind done:
377 1.1 rmind /* Job is done, set the error, if any */
378 1.1 rmind a_job->aiocbp._errno = error;
379 1.1 rmind a_job->aiocbp._state = JOB_DONE;
380 1.1 rmind }
381 1.1 rmind
382 1.1 rmind /*
383 1.1 rmind * Send AIO signal.
384 1.1 rmind */
385 1.1 rmind static void
386 1.1 rmind aio_sendsig(struct proc *p, struct sigevent *sig)
387 1.1 rmind {
388 1.1 rmind ksiginfo_t ksi;
389 1.1 rmind
390 1.1 rmind if (sig->sigev_signo == 0 || sig->sigev_notify == SIGEV_NONE)
391 1.1 rmind return;
392 1.1 rmind
393 1.1 rmind KSI_INIT(&ksi);
394 1.1 rmind ksi.ksi_signo = sig->sigev_signo;
395 1.1 rmind ksi.ksi_code = SI_ASYNCIO;
396 1.3 christos ksi.ksi_value = sig->sigev_value;
397 1.1 rmind mutex_enter(&proclist_mutex);
398 1.1 rmind kpsignal(p, &ksi, NULL);
399 1.1 rmind mutex_exit(&proclist_mutex);
400 1.1 rmind }
401 1.1 rmind
402 1.1 rmind /*
403 1.1 rmind * Enqueue the job.
404 1.1 rmind */
405 1.1 rmind static int
406 1.1 rmind aio_enqueue_job(int op, void *aiocb_uptr, struct lio_req *lio)
407 1.1 rmind {
408 1.1 rmind struct proc *p = curlwp->l_proc;
409 1.1 rmind struct aioproc *aio;
410 1.1 rmind struct aio_job *a_job;
411 1.1 rmind struct aiocb aiocbp;
412 1.1 rmind struct sigevent *sig;
413 1.1 rmind int error;
414 1.1 rmind
415 1.1 rmind /* Check for the limit */
416 1.1 rmind if (aio_jobs_count + 1 > aio_max) /* XXXSMP */
417 1.1 rmind return EAGAIN;
418 1.1 rmind
419 1.1 rmind /* Get the data structure from user-space */
420 1.1 rmind error = copyin(aiocb_uptr, &aiocbp, sizeof(struct aiocb));
421 1.1 rmind if (error)
422 1.1 rmind return error;
423 1.1 rmind
424 1.1 rmind /* Check if signal is set, and validate it */
425 1.1 rmind sig = &aiocbp.aio_sigevent;
426 1.1 rmind if (sig->sigev_signo < 0 || sig->sigev_signo >= NSIG ||
427 1.1 rmind sig->sigev_notify < SIGEV_NONE || sig->sigev_notify > SIGEV_SA)
428 1.1 rmind return EINVAL;
429 1.1 rmind
430 1.1 rmind /* Buffer and byte count */
431 1.1 rmind if (((AIO_SYNC | AIO_DSYNC) & op) == 0)
432 1.1 rmind if (aiocbp.aio_buf == NULL || aiocbp.aio_nbytes > SSIZE_MAX)
433 1.1 rmind return EINVAL;
434 1.1 rmind
435 1.1 rmind /* Check the opcode, if LIO_NOP - simply ignore */
436 1.1 rmind if (op == AIO_LIO) {
437 1.1 rmind KASSERT(lio != NULL);
438 1.1 rmind if (aiocbp.aio_lio_opcode == LIO_WRITE)
439 1.1 rmind op = AIO_WRITE;
440 1.1 rmind else if (aiocbp.aio_lio_opcode == LIO_READ)
441 1.1 rmind op = AIO_READ;
442 1.1 rmind else
443 1.1 rmind return (aiocbp.aio_lio_opcode == LIO_NOP) ? 0 : EINVAL;
444 1.1 rmind } else {
445 1.1 rmind KASSERT(lio == NULL);
446 1.1 rmind }
447 1.1 rmind
448 1.1 rmind /*
449 1.1 rmind * Look for already existing job. If found - the job is in-progress.
450 1.1 rmind * According to POSIX this is invalid, so return the error.
451 1.1 rmind */
452 1.1 rmind aio = p->p_aio;
453 1.1 rmind if (aio) {
454 1.1 rmind mutex_enter(&aio->aio_mtx);
455 1.1 rmind if (aio->curjob) {
456 1.1 rmind a_job = aio->curjob;
457 1.1 rmind if (a_job->aiocb_uptr == aiocb_uptr) {
458 1.1 rmind mutex_exit(&aio->aio_mtx);
459 1.1 rmind return EINVAL;
460 1.1 rmind }
461 1.1 rmind }
462 1.1 rmind TAILQ_FOREACH(a_job, &aio->jobs_queue, list) {
463 1.1 rmind if (a_job->aiocb_uptr != aiocb_uptr)
464 1.1 rmind continue;
465 1.1 rmind mutex_exit(&aio->aio_mtx);
466 1.1 rmind return EINVAL;
467 1.1 rmind }
468 1.1 rmind mutex_exit(&aio->aio_mtx);
469 1.1 rmind }
470 1.1 rmind
471 1.1 rmind /*
472 1.1 rmind * Check if AIO structure is initialized, if not - initialize it.
473 1.1 rmind * In LIO case, we did that already. We will recheck this with
474 1.1 rmind * the lock in aio_init().
475 1.1 rmind */
476 1.1 rmind if (lio == NULL && p->p_aio == NULL)
477 1.1 rmind if (aio_init(p))
478 1.1 rmind return EAGAIN;
479 1.1 rmind aio = p->p_aio;
480 1.1 rmind
481 1.1 rmind /*
482 1.1 rmind * Set the state with errno, and copy data
483 1.1 rmind * structure back to the user-space.
484 1.1 rmind */
485 1.1 rmind aiocbp._state = JOB_WIP;
486 1.1 rmind aiocbp._errno = EINPROGRESS;
487 1.1 rmind aiocbp._retval = -1;
488 1.1 rmind error = copyout(&aiocbp, aiocb_uptr, sizeof(struct aiocb));
489 1.1 rmind if (error)
490 1.1 rmind return error;
491 1.1 rmind
492 1.1 rmind /* Allocate and initialize a new AIO job */
493 1.4 rmind a_job = pool_get(&aio_job_pool, PR_WAITOK);
494 1.1 rmind memset(a_job, 0, sizeof(struct aio_job));
495 1.1 rmind
496 1.1 rmind /*
497 1.1 rmind * Set the data.
498 1.1 rmind * Store the user-space pointer for searching. Since we
499 1.1 rmind * are storing only per proc pointers - it is safe.
500 1.1 rmind */
501 1.1 rmind memcpy(&a_job->aiocbp, &aiocbp, sizeof(struct aiocb));
502 1.1 rmind a_job->aiocb_uptr = aiocb_uptr;
503 1.1 rmind a_job->aio_op |= op;
504 1.1 rmind a_job->lio = lio;
505 1.1 rmind
506 1.1 rmind /*
507 1.1 rmind * Add the job to the queue, update the counters, and
508 1.1 rmind * notify the AIO worker thread to handle the job.
509 1.1 rmind */
510 1.1 rmind mutex_enter(&aio->aio_mtx);
511 1.1 rmind
512 1.1 rmind /* Fail, if the limit was reached */
513 1.1 rmind if (aio->jobs_count >= aio_listio_max) {
514 1.1 rmind mutex_exit(&aio->aio_mtx);
515 1.4 rmind pool_put(&aio_job_pool, a_job);
516 1.1 rmind return EAGAIN;
517 1.1 rmind }
518 1.1 rmind
519 1.1 rmind TAILQ_INSERT_TAIL(&aio->jobs_queue, a_job, list);
520 1.1 rmind aio_jobs_count++; /* XXXSMP */
521 1.1 rmind aio->jobs_count++;
522 1.1 rmind if (lio)
523 1.1 rmind lio->refcnt++;
524 1.1 rmind cv_signal(&aio->aio_worker_cv);
525 1.1 rmind
526 1.1 rmind mutex_exit(&aio->aio_mtx);
527 1.1 rmind
528 1.1 rmind /*
529 1.1 rmind * One would handle the errors only with aio_error() function.
530 1.1 rmind * This way is appropriate according to POSIX.
531 1.1 rmind */
532 1.1 rmind return 0;
533 1.1 rmind }
534 1.1 rmind
535 1.1 rmind /*
536 1.1 rmind * Syscall functions.
537 1.1 rmind */
538 1.1 rmind
539 1.1 rmind int
540 1.1 rmind sys_aio_cancel(struct lwp *l, void *v, register_t *retval)
541 1.1 rmind {
542 1.1 rmind struct sys_aio_cancel_args /* {
543 1.1 rmind syscallarg(int) fildes;
544 1.1 rmind syscallarg(struct aiocb *) aiocbp;
545 1.1 rmind } */ *uap = v;
546 1.1 rmind struct proc *p = l->l_proc;
547 1.1 rmind struct aioproc *aio;
548 1.1 rmind struct aio_job *a_job;
549 1.1 rmind struct aiocb *aiocbp_ptr;
550 1.1 rmind struct lio_req *lio;
551 1.1 rmind struct filedesc *fdp = p->p_fd;
552 1.1 rmind unsigned int cn, errcnt, fildes;
553 1.1 rmind
554 1.1 rmind TAILQ_HEAD(, aio_job) tmp_jobs_list;
555 1.1 rmind
556 1.1 rmind /* Check for invalid file descriptor */
557 1.1 rmind fildes = (unsigned int)SCARG(uap, fildes);
558 1.1 rmind if (fildes >= fdp->fd_nfiles || fdp->fd_ofiles[fildes] == NULL)
559 1.1 rmind return EBADF;
560 1.1 rmind
561 1.1 rmind /* Check if AIO structure is initialized */
562 1.1 rmind if (p->p_aio == NULL) {
563 1.1 rmind *retval = AIO_NOTCANCELED;
564 1.1 rmind return 0;
565 1.1 rmind }
566 1.1 rmind
567 1.1 rmind aio = p->p_aio;
568 1.1 rmind aiocbp_ptr = (struct aiocb *)SCARG(uap, aiocbp);
569 1.1 rmind
570 1.1 rmind mutex_enter(&aio->aio_mtx);
571 1.1 rmind
572 1.1 rmind /* Cancel the jobs, and remove them from the queue */
573 1.1 rmind cn = 0;
574 1.1 rmind TAILQ_INIT(&tmp_jobs_list);
575 1.1 rmind TAILQ_FOREACH(a_job, &aio->jobs_queue, list) {
576 1.1 rmind if (aiocbp_ptr) {
577 1.1 rmind if (aiocbp_ptr != a_job->aiocb_uptr)
578 1.1 rmind continue;
579 1.1 rmind if (fildes != a_job->aiocbp.aio_fildes) {
580 1.1 rmind mutex_exit(&aio->aio_mtx);
581 1.1 rmind return EBADF;
582 1.1 rmind }
583 1.1 rmind } else if (a_job->aiocbp.aio_fildes != fildes)
584 1.1 rmind continue;
585 1.1 rmind
586 1.1 rmind TAILQ_REMOVE(&aio->jobs_queue, a_job, list);
587 1.1 rmind TAILQ_INSERT_TAIL(&tmp_jobs_list, a_job, list);
588 1.1 rmind
589 1.1 rmind /* Decrease the counters */
590 1.1 rmind aio_jobs_count--; /* XXXSMP */
591 1.1 rmind aio->jobs_count--;
592 1.1 rmind lio = a_job->lio;
593 1.4 rmind if (lio != NULL && --lio->refcnt != 0)
594 1.4 rmind a_job->lio = NULL;
595 1.1 rmind
596 1.1 rmind cn++;
597 1.1 rmind if (aiocbp_ptr)
598 1.1 rmind break;
599 1.1 rmind }
600 1.1 rmind
601 1.1 rmind /* There are canceled jobs */
602 1.1 rmind if (cn)
603 1.1 rmind *retval = AIO_CANCELED;
604 1.1 rmind
605 1.1 rmind /* We cannot cancel current job */
606 1.1 rmind a_job = aio->curjob;
607 1.1 rmind if (a_job && ((a_job->aiocbp.aio_fildes == fildes) ||
608 1.1 rmind (a_job->aiocb_uptr == aiocbp_ptr)))
609 1.1 rmind *retval = AIO_NOTCANCELED;
610 1.1 rmind
611 1.1 rmind mutex_exit(&aio->aio_mtx);
612 1.1 rmind
613 1.1 rmind /* Free the jobs after the lock */
614 1.1 rmind errcnt = 0;
615 1.1 rmind while (!TAILQ_EMPTY(&tmp_jobs_list)) {
616 1.1 rmind a_job = TAILQ_FIRST(&tmp_jobs_list);
617 1.1 rmind TAILQ_REMOVE(&tmp_jobs_list, a_job, list);
618 1.1 rmind /* Set the errno and copy structures back to the user-space */
619 1.1 rmind a_job->aiocbp._errno = ECANCELED;
620 1.1 rmind a_job->aiocbp._state = JOB_DONE;
621 1.1 rmind if (copyout(&a_job->aiocbp, a_job->aiocb_uptr,
622 1.1 rmind sizeof(struct aiocb)))
623 1.1 rmind errcnt++;
624 1.1 rmind /* Send a signal if any */
625 1.1 rmind aio_sendsig(p, &a_job->aiocbp.aio_sigevent);
626 1.1 rmind if (a_job->lio)
627 1.4 rmind pool_put(&aio_lio_pool, a_job->lio);
628 1.4 rmind pool_put(&aio_job_pool, a_job);
629 1.1 rmind }
630 1.1 rmind
631 1.1 rmind if (errcnt)
632 1.1 rmind return EFAULT;
633 1.1 rmind
634 1.1 rmind /* Set a correct return value */
635 1.1 rmind if (*retval == 0)
636 1.1 rmind *retval = AIO_ALLDONE;
637 1.1 rmind
638 1.1 rmind return 0;
639 1.1 rmind }
640 1.1 rmind
641 1.1 rmind int
642 1.1 rmind sys_aio_error(struct lwp *l, void *v, register_t *retval)
643 1.1 rmind {
644 1.1 rmind struct sys_aio_error_args /* {
645 1.1 rmind syscallarg(const struct aiocb *) aiocbp;
646 1.1 rmind } */ *uap = v;
647 1.1 rmind struct proc *p = l->l_proc;
648 1.1 rmind struct aioproc *aio = p->p_aio;
649 1.1 rmind struct aiocb aiocbp;
650 1.1 rmind int error;
651 1.1 rmind
652 1.1 rmind if (aio == NULL)
653 1.1 rmind return EINVAL;
654 1.1 rmind
655 1.1 rmind error = copyin(SCARG(uap, aiocbp), &aiocbp, sizeof(struct aiocb));
656 1.1 rmind if (error)
657 1.1 rmind return error;
658 1.1 rmind
659 1.1 rmind if (aiocbp._state == JOB_NONE)
660 1.1 rmind return EINVAL;
661 1.1 rmind
662 1.1 rmind *retval = aiocbp._errno;
663 1.1 rmind
664 1.1 rmind return 0;
665 1.1 rmind }
666 1.1 rmind
667 1.1 rmind int
668 1.1 rmind sys_aio_fsync(struct lwp *l, void *v, register_t *retval)
669 1.1 rmind {
670 1.1 rmind struct sys_aio_fsync_args /* {
671 1.1 rmind syscallarg(int) op;
672 1.1 rmind syscallarg(struct aiocb *) aiocbp;
673 1.1 rmind } */ *uap = v;
674 1.1 rmind int op = SCARG(uap, op);
675 1.1 rmind
676 1.1 rmind if ((op != O_DSYNC) && (op != O_SYNC))
677 1.1 rmind return EINVAL;
678 1.1 rmind
679 1.1 rmind op = O_DSYNC ? AIO_DSYNC : AIO_SYNC;
680 1.1 rmind
681 1.1 rmind return aio_enqueue_job(op, SCARG(uap, aiocbp), NULL);
682 1.1 rmind }
683 1.1 rmind
684 1.1 rmind int
685 1.1 rmind sys_aio_read(struct lwp *l, void *v, register_t *retval)
686 1.1 rmind {
687 1.1 rmind struct sys_aio_read_args /* {
688 1.1 rmind syscallarg(struct aiocb *) aiocbp;
689 1.1 rmind } */ *uap = v;
690 1.1 rmind
691 1.1 rmind return aio_enqueue_job(AIO_READ, SCARG(uap, aiocbp), NULL);
692 1.1 rmind }
693 1.1 rmind
694 1.1 rmind int
695 1.1 rmind sys_aio_return(struct lwp *l, void *v, register_t *retval)
696 1.1 rmind {
697 1.1 rmind struct sys_aio_return_args /* {
698 1.1 rmind syscallarg(struct aiocb *) aiocbp;
699 1.1 rmind } */ *uap = v;
700 1.1 rmind struct proc *p = l->l_proc;
701 1.1 rmind struct aioproc *aio = p->p_aio;
702 1.1 rmind struct aiocb aiocbp;
703 1.1 rmind int error;
704 1.1 rmind
705 1.1 rmind if (aio == NULL)
706 1.1 rmind return EINVAL;
707 1.1 rmind
708 1.1 rmind error = copyin(SCARG(uap, aiocbp), &aiocbp, sizeof(struct aiocb));
709 1.1 rmind if (error)
710 1.1 rmind return error;
711 1.1 rmind
712 1.1 rmind if (aiocbp._errno == EINPROGRESS || aiocbp._state != JOB_DONE)
713 1.1 rmind return EINVAL;
714 1.1 rmind
715 1.1 rmind *retval = aiocbp._retval;
716 1.1 rmind
717 1.1 rmind /* Reset the internal variables */
718 1.1 rmind aiocbp._errno = 0;
719 1.1 rmind aiocbp._retval = -1;
720 1.1 rmind aiocbp._state = JOB_NONE;
721 1.1 rmind error = copyout(&aiocbp, SCARG(uap, aiocbp), sizeof(struct aiocb));
722 1.1 rmind
723 1.1 rmind return error;
724 1.1 rmind }
725 1.1 rmind
726 1.1 rmind int
727 1.1 rmind sys_aio_suspend(struct lwp *l, void *v, register_t *retval)
728 1.1 rmind {
729 1.1 rmind struct sys_aio_suspend_args /* {
730 1.1 rmind syscallarg(const struct aiocb *const[]) list;
731 1.1 rmind syscallarg(int) nent;
732 1.1 rmind syscallarg(const struct timespec *) timeout;
733 1.1 rmind } */ *uap = v;
734 1.1 rmind struct proc *p = l->l_proc;
735 1.1 rmind struct aioproc *aio;
736 1.1 rmind struct aio_job *a_job;
737 1.1 rmind struct aiocb **aiocbp_list;
738 1.1 rmind struct timespec ts;
739 1.1 rmind int i, error, nent, timo;
740 1.1 rmind
741 1.1 rmind if (p->p_aio == NULL)
742 1.1 rmind return EAGAIN;
743 1.1 rmind aio = p->p_aio;
744 1.1 rmind
745 1.1 rmind nent = SCARG(uap, nent);
746 1.1 rmind if (nent <= 0 || nent > aio_listio_max)
747 1.1 rmind return EAGAIN;
748 1.1 rmind
749 1.1 rmind if (SCARG(uap, timeout)) {
750 1.1 rmind /* Convert timespec to ticks */
751 1.1 rmind error = copyin(SCARG(uap, timeout), &ts,
752 1.1 rmind sizeof(struct timespec));
753 1.1 rmind if (error)
754 1.1 rmind return error;
755 1.1 rmind timo = mstohz((ts.tv_sec * 1000) + (ts.tv_nsec / 1000000));
756 1.1 rmind if (timo == 0 && ts.tv_sec == 0 && ts.tv_nsec > 0)
757 1.1 rmind timo = 1;
758 1.1 rmind if (timo <= 0)
759 1.1 rmind return EAGAIN;
760 1.1 rmind } else
761 1.1 rmind timo = 0;
762 1.1 rmind
763 1.1 rmind /* Get the list from user-space */
764 1.1 rmind aiocbp_list = kmem_zalloc(nent * sizeof(struct aio_job), KM_SLEEP);
765 1.1 rmind error = copyin(SCARG(uap, list), aiocbp_list,
766 1.1 rmind nent * sizeof(struct aiocb));
767 1.1 rmind if (error) {
768 1.1 rmind kmem_free(aiocbp_list, nent * sizeof(struct aio_job));
769 1.1 rmind return error;
770 1.1 rmind }
771 1.1 rmind
772 1.1 rmind mutex_enter(&aio->aio_mtx);
773 1.1 rmind for (;;) {
774 1.1 rmind
775 1.1 rmind for (i = 0; i < nent; i++) {
776 1.1 rmind
777 1.1 rmind /* Skip NULL entries */
778 1.1 rmind if (aiocbp_list[i] == NULL)
779 1.1 rmind continue;
780 1.1 rmind
781 1.1 rmind /* Skip current job */
782 1.1 rmind if (aio->curjob) {
783 1.1 rmind a_job = aio->curjob;
784 1.1 rmind if (a_job->aiocb_uptr == aiocbp_list[i])
785 1.1 rmind continue;
786 1.1 rmind }
787 1.1 rmind
788 1.1 rmind /* Look for a job in the queue */
789 1.1 rmind TAILQ_FOREACH(a_job, &aio->jobs_queue, list)
790 1.1 rmind if (a_job->aiocb_uptr == aiocbp_list[i])
791 1.1 rmind break;
792 1.1 rmind
793 1.1 rmind if (a_job == NULL) {
794 1.1 rmind struct aiocb aiocbp;
795 1.1 rmind
796 1.1 rmind mutex_exit(&aio->aio_mtx);
797 1.1 rmind
798 1.1 rmind error = copyin(aiocbp_list[i], &aiocbp,
799 1.1 rmind sizeof(struct aiocb));
800 1.1 rmind if (error == 0 && aiocbp._state != JOB_DONE) {
801 1.1 rmind mutex_enter(&aio->aio_mtx);
802 1.1 rmind continue;
803 1.1 rmind }
804 1.1 rmind
805 1.1 rmind kmem_free(aiocbp_list,
806 1.1 rmind nent * sizeof(struct aio_job));
807 1.1 rmind return error;
808 1.1 rmind }
809 1.1 rmind }
810 1.1 rmind
811 1.1 rmind /* Wait for a signal or when timeout occurs */
812 1.1 rmind error = cv_timedwait_sig(&aio->done_cv, &aio->aio_mtx, timo);
813 1.1 rmind if (error) {
814 1.1 rmind if (error == EWOULDBLOCK)
815 1.1 rmind error = EAGAIN;
816 1.1 rmind break;
817 1.1 rmind }
818 1.1 rmind }
819 1.1 rmind mutex_exit(&aio->aio_mtx);
820 1.1 rmind
821 1.1 rmind kmem_free(aiocbp_list, nent * sizeof(struct aio_job));
822 1.1 rmind return error;
823 1.1 rmind }
824 1.1 rmind
825 1.1 rmind int
826 1.1 rmind sys_aio_write(struct lwp *l, void *v, register_t *retval)
827 1.1 rmind {
828 1.1 rmind struct sys_aio_write_args /* {
829 1.1 rmind syscallarg(struct aiocb *) aiocbp;
830 1.1 rmind } */ *uap = v;
831 1.1 rmind
832 1.1 rmind return aio_enqueue_job(AIO_WRITE, SCARG(uap, aiocbp), NULL);
833 1.1 rmind }
834 1.1 rmind
835 1.1 rmind int
836 1.1 rmind sys_lio_listio(struct lwp *l, void *v, register_t *retval)
837 1.1 rmind {
838 1.1 rmind struct sys_lio_listio_args /* {
839 1.1 rmind syscallarg(int) mode;
840 1.1 rmind syscallarg(struct aiocb *const[]) list;
841 1.1 rmind syscallarg(int) nent;
842 1.1 rmind syscallarg(struct sigevent *) sig;
843 1.1 rmind } */ *uap = v;
844 1.1 rmind struct proc *p = l->l_proc;
845 1.1 rmind struct aioproc *aio;
846 1.1 rmind struct aiocb **aiocbp_list;
847 1.1 rmind struct lio_req *lio;
848 1.1 rmind int i, error, errcnt, mode, nent;
849 1.1 rmind
850 1.1 rmind mode = SCARG(uap, mode);
851 1.1 rmind nent = SCARG(uap, nent);
852 1.1 rmind
853 1.1 rmind /* Check for the limits, and invalid values */
854 1.1 rmind if (nent < 1 || nent > aio_listio_max)
855 1.1 rmind return EINVAL;
856 1.1 rmind if (aio_jobs_count + nent > aio_max) /* XXXSMP */
857 1.1 rmind return EAGAIN;
858 1.1 rmind
859 1.1 rmind /* Check if AIO structure is initialized, if not - initialize it */
860 1.1 rmind if (p->p_aio == NULL)
861 1.1 rmind if (aio_init(p))
862 1.1 rmind return EAGAIN;
863 1.1 rmind aio = p->p_aio;
864 1.1 rmind
865 1.1 rmind /* Create a LIO structure */
866 1.4 rmind lio = pool_get(&aio_lio_pool, PR_WAITOK);
867 1.4 rmind lio->refcnt = 1;
868 1.4 rmind error = 0;
869 1.4 rmind
870 1.4 rmind switch (mode) {
871 1.4 rmind case LIO_WAIT:
872 1.1 rmind memset(&lio->sig, 0, sizeof(struct sigevent));
873 1.4 rmind break;
874 1.4 rmind case LIO_NOWAIT:
875 1.4 rmind /* Check for signal, validate it */
876 1.4 rmind if (SCARG(uap, sig)) {
877 1.4 rmind struct sigevent *sig = &lio->sig;
878 1.4 rmind
879 1.4 rmind error = copyin(SCARG(uap, sig), &lio->sig,
880 1.4 rmind sizeof(struct sigevent));
881 1.4 rmind if (error == 0 &&
882 1.4 rmind (sig->sigev_signo < 0 ||
883 1.4 rmind sig->sigev_signo >= NSIG ||
884 1.4 rmind sig->sigev_notify < SIGEV_NONE ||
885 1.4 rmind sig->sigev_notify > SIGEV_SA))
886 1.4 rmind error = EINVAL;
887 1.4 rmind } else
888 1.4 rmind memset(&lio->sig, 0, sizeof(struct sigevent));
889 1.4 rmind break;
890 1.4 rmind default:
891 1.4 rmind error = EINVAL;
892 1.4 rmind break;
893 1.4 rmind }
894 1.4 rmind
895 1.4 rmind if (error != 0) {
896 1.4 rmind pool_put(&aio_lio_pool, lio);
897 1.4 rmind return error;
898 1.4 rmind }
899 1.1 rmind
900 1.1 rmind /* Get the list from user-space */
901 1.1 rmind aiocbp_list = kmem_zalloc(nent * sizeof(struct aio_job), KM_SLEEP);
902 1.1 rmind error = copyin(SCARG(uap, list), aiocbp_list,
903 1.1 rmind nent * sizeof(struct aiocb));
904 1.4 rmind if (error) {
905 1.4 rmind mutex_enter(&aio->aio_mtx);
906 1.1 rmind goto err;
907 1.4 rmind }
908 1.1 rmind
909 1.1 rmind /* Enqueue all jobs */
910 1.1 rmind errcnt = 0;
911 1.1 rmind for (i = 0; i < nent; i++) {
912 1.1 rmind error = aio_enqueue_job(AIO_LIO, aiocbp_list[i], lio);
913 1.1 rmind /*
914 1.1 rmind * According to POSIX, in such error case it may
915 1.1 rmind * fail with other I/O operations initiated.
916 1.1 rmind */
917 1.1 rmind if (error)
918 1.1 rmind errcnt++;
919 1.1 rmind }
920 1.1 rmind
921 1.4 rmind mutex_enter(&aio->aio_mtx);
922 1.4 rmind
923 1.1 rmind /* Return an error, if any */
924 1.1 rmind if (errcnt) {
925 1.1 rmind error = EIO;
926 1.1 rmind goto err;
927 1.1 rmind }
928 1.1 rmind
929 1.1 rmind if (mode == LIO_WAIT) {
930 1.1 rmind /*
931 1.1 rmind * Wait for AIO completion. In such case,
932 1.1 rmind * the LIO structure will be freed here.
933 1.1 rmind */
934 1.4 rmind while (lio->refcnt > 1 && error == 0)
935 1.1 rmind error = cv_wait_sig(&aio->done_cv, &aio->aio_mtx);
936 1.1 rmind if (error)
937 1.1 rmind error = EINTR;
938 1.1 rmind }
939 1.1 rmind
940 1.1 rmind err:
941 1.4 rmind if (--lio->refcnt != 0)
942 1.4 rmind lio = NULL;
943 1.4 rmind mutex_exit(&aio->aio_mtx);
944 1.4 rmind if (lio != NULL) {
945 1.4 rmind aio_sendsig(p, &lio->sig);
946 1.4 rmind pool_put(&aio_lio_pool, lio);
947 1.4 rmind }
948 1.1 rmind kmem_free(aiocbp_list, nent * sizeof(struct aio_job));
949 1.1 rmind return error;
950 1.1 rmind }
951 1.1 rmind
952 1.1 rmind /*
953 1.1 rmind * SysCtl
954 1.1 rmind */
955 1.1 rmind
956 1.1 rmind static int
957 1.1 rmind sysctl_aio_listio_max(SYSCTLFN_ARGS)
958 1.1 rmind {
959 1.1 rmind struct sysctlnode node;
960 1.1 rmind int error, newsize;
961 1.1 rmind
962 1.1 rmind node = *rnode;
963 1.1 rmind node.sysctl_data = &newsize;
964 1.1 rmind
965 1.1 rmind newsize = aio_listio_max;
966 1.1 rmind error = sysctl_lookup(SYSCTLFN_CALL(&node));
967 1.1 rmind if (error || newp == NULL)
968 1.1 rmind return error;
969 1.1 rmind
970 1.1 rmind /* XXXSMP */
971 1.1 rmind if (newsize < 1 || newsize > aio_max)
972 1.1 rmind return EINVAL;
973 1.1 rmind aio_listio_max = newsize;
974 1.1 rmind
975 1.1 rmind return 0;
976 1.1 rmind }
977 1.1 rmind
978 1.1 rmind static int
979 1.1 rmind sysctl_aio_max(SYSCTLFN_ARGS)
980 1.1 rmind {
981 1.1 rmind struct sysctlnode node;
982 1.1 rmind int error, newsize;
983 1.1 rmind
984 1.1 rmind node = *rnode;
985 1.1 rmind node.sysctl_data = &newsize;
986 1.1 rmind
987 1.1 rmind newsize = aio_max;
988 1.1 rmind error = sysctl_lookup(SYSCTLFN_CALL(&node));
989 1.1 rmind if (error || newp == NULL)
990 1.1 rmind return error;
991 1.1 rmind
992 1.1 rmind /* XXXSMP */
993 1.1 rmind if (newsize < 1 || newsize < aio_listio_max)
994 1.1 rmind return EINVAL;
995 1.1 rmind aio_max = newsize;
996 1.1 rmind
997 1.1 rmind return 0;
998 1.1 rmind }
999 1.1 rmind
1000 1.1 rmind SYSCTL_SETUP(sysctl_aio_setup, "sysctl aio setup")
1001 1.1 rmind {
1002 1.1 rmind
1003 1.1 rmind sysctl_createv(clog, 0, NULL, NULL,
1004 1.1 rmind CTLFLAG_PERMANENT,
1005 1.1 rmind CTLTYPE_NODE, "kern", NULL,
1006 1.1 rmind NULL, 0, NULL, 0,
1007 1.1 rmind CTL_KERN, CTL_EOL);
1008 1.1 rmind sysctl_createv(clog, 0, NULL, NULL,
1009 1.1 rmind CTLFLAG_PERMANENT | CTLFLAG_IMMEDIATE,
1010 1.1 rmind CTLTYPE_INT, "posix_aio",
1011 1.1 rmind SYSCTL_DESCR("Version of IEEE Std 1003.1 and its "
1012 1.1 rmind "Asynchronous I/O option to which the "
1013 1.1 rmind "system attempts to conform"),
1014 1.1 rmind NULL, _POSIX_ASYNCHRONOUS_IO, NULL, 0,
1015 1.1 rmind CTL_KERN, CTL_CREATE, CTL_EOL);
1016 1.1 rmind sysctl_createv(clog, 0, NULL, NULL,
1017 1.1 rmind CTLFLAG_PERMANENT | CTLFLAG_READWRITE,
1018 1.1 rmind CTLTYPE_INT, "aio_listio_max",
1019 1.1 rmind SYSCTL_DESCR("Maximum number of asynchronous I/O "
1020 1.1 rmind "operations in a single list I/O call"),
1021 1.1 rmind sysctl_aio_listio_max, 0, &aio_listio_max, 0,
1022 1.1 rmind CTL_KERN, CTL_CREATE, CTL_EOL);
1023 1.1 rmind sysctl_createv(clog, 0, NULL, NULL,
1024 1.1 rmind CTLFLAG_PERMANENT | CTLFLAG_READWRITE,
1025 1.1 rmind CTLTYPE_INT, "aio_max",
1026 1.1 rmind SYSCTL_DESCR("Maximum number of asynchronous I/O "
1027 1.1 rmind "operations"),
1028 1.1 rmind sysctl_aio_max, 0, &aio_max, 0,
1029 1.1 rmind CTL_KERN, CTL_CREATE, CTL_EOL);
1030 1.1 rmind }
1031 1.1 rmind
1032 1.1 rmind /*
1033 1.1 rmind * Debugging
1034 1.1 rmind */
1035 1.1 rmind #if defined(DDB)
1036 1.1 rmind void
1037 1.1 rmind aio_print_jobs(void (*pr)(const char *, ...))
1038 1.1 rmind {
1039 1.1 rmind struct proc *p = (curlwp == NULL ? NULL : curlwp->l_proc);
1040 1.1 rmind struct aioproc *aio;
1041 1.1 rmind struct aio_job *a_job;
1042 1.1 rmind struct aiocb *aiocbp;
1043 1.1 rmind
1044 1.1 rmind if (p == NULL) {
1045 1.1 rmind (*pr)("AIO: We are not in the processes right now.\n");
1046 1.1 rmind return;
1047 1.1 rmind }
1048 1.1 rmind
1049 1.1 rmind aio = p->p_aio;
1050 1.1 rmind if (aio == NULL) {
1051 1.1 rmind (*pr)("AIO data is not initialized (PID = %d).\n", p->p_pid);
1052 1.1 rmind return;
1053 1.1 rmind }
1054 1.1 rmind
1055 1.1 rmind (*pr)("AIO: PID = %d\n", p->p_pid);
1056 1.1 rmind (*pr)("AIO: Global count of the jobs = %u\n", aio_jobs_count);
1057 1.1 rmind (*pr)("AIO: Count of the jobs = %u\n", aio->jobs_count);
1058 1.1 rmind
1059 1.1 rmind if (aio->curjob) {
1060 1.1 rmind a_job = aio->curjob;
1061 1.1 rmind (*pr)("\nAIO current job:\n");
1062 1.1 rmind (*pr)(" opcode = %d, errno = %d, state = %d, aiocb_ptr = %p\n",
1063 1.1 rmind a_job->aio_op, a_job->aiocbp._errno,
1064 1.1 rmind a_job->aiocbp._state, a_job->aiocb_uptr);
1065 1.1 rmind aiocbp = &a_job->aiocbp;
1066 1.1 rmind (*pr)(" fd = %d, offset = %u, buf = %p, nbytes = %u\n",
1067 1.1 rmind aiocbp->aio_fildes, aiocbp->aio_offset,
1068 1.1 rmind aiocbp->aio_buf, aiocbp->aio_nbytes);
1069 1.1 rmind }
1070 1.1 rmind
1071 1.1 rmind (*pr)("\nAIO queue:\n");
1072 1.1 rmind TAILQ_FOREACH(a_job, &aio->jobs_queue, list) {
1073 1.1 rmind (*pr)(" opcode = %d, errno = %d, state = %d, aiocb_ptr = %p\n",
1074 1.1 rmind a_job->aio_op, a_job->aiocbp._errno,
1075 1.1 rmind a_job->aiocbp._state, a_job->aiocb_uptr);
1076 1.1 rmind aiocbp = &a_job->aiocbp;
1077 1.1 rmind (*pr)(" fd = %d, offset = %u, buf = %p, nbytes = %u\n",
1078 1.1 rmind aiocbp->aio_fildes, aiocbp->aio_offset,
1079 1.1 rmind aiocbp->aio_buf, aiocbp->aio_nbytes);
1080 1.1 rmind }
1081 1.1 rmind }
1082 1.1 rmind #endif /* defined(DDB) */
1083