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Revision: 1.69
Committed: Fri Jun 10 06:50:42 2011 UTC (12 years, 11 months ago) by root
Content type: text/plain
Branch: MAIN
Changes since 1.68: +68 -51 lines
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# Content
1 /*
2 * libeio implementation
3 *
4 * Copyright (c) 2007,2008,2009,2010,2011 Marc Alexander Lehmann <libeio@schmorp.de>
5 * All rights reserved.
6 *
7 * Redistribution and use in source and binary forms, with or without modifica-
8 * tion, are permitted provided that the following conditions are met:
9 *
10 * 1. Redistributions of source code must retain the above copyright notice,
11 * this list of conditions and the following disclaimer.
12 *
13 * 2. Redistributions in binary form must reproduce the above copyright
14 * notice, this list of conditions and the following disclaimer in the
15 * documentation and/or other materials provided with the distribution.
16 *
17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
18 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MER-
19 * CHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO
20 * EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPE-
21 * CIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
22 * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
23 * OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
24 * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTH-
25 * ERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED
26 * OF THE POSSIBILITY OF SUCH DAMAGE.
27 *
28 * Alternatively, the contents of this file may be used under the terms of
29 * the GNU General Public License ("GPL") version 2 or any later version,
30 * in which case the provisions of the GPL are applicable instead of
31 * the above. If you wish to allow the use of your version of this file
32 * only under the terms of the GPL and not to allow others to use your
33 * version of this file under the BSD license, indicate your decision
34 * by deleting the provisions above and replace them with the notice
35 * and other provisions required by the GPL. If you do not delete the
36 * provisions above, a recipient may use your version of this file under
37 * either the BSD or the GPL.
38 */
39
40 #ifndef _WIN32
41 # include "config.h"
42 #endif
43
44 #include "eio.h"
45
46 #ifdef EIO_STACKSIZE
47 # define XTHREAD_STACKSIZE EIO_STACKSIZE
48 #endif
49 #include "xthread.h"
50
51 #include <errno.h>
52 #include <stddef.h>
53 #include <stdlib.h>
54 #include <string.h>
55 #include <errno.h>
56 #include <sys/types.h>
57 #include <sys/stat.h>
58 #include <sys/statvfs.h>
59 #include <limits.h>
60 #include <fcntl.h>
61 #include <assert.h>
62
63 /* intptr_t comes from unistd.h, says POSIX/UNIX/tradition */
64 /* intptr_t only comes form stdint.h, says idiot openbsd coder */
65 #if HAVE_STDINT_H
66 # include <stdint.h>
67 #endif
68
69 #ifndef EIO_FINISH
70 # define EIO_FINISH(req) ((req)->finish) && !EIO_CANCELLED (req) ? (req)->finish (req) : 0
71 #endif
72
73 #ifndef EIO_DESTROY
74 # define EIO_DESTROY(req) do { if ((req)->destroy) (req)->destroy (req); } while (0)
75 #endif
76
77 #ifndef EIO_FEED
78 # define EIO_FEED(req) do { if ((req)->feed ) (req)->feed (req); } while (0)
79 #endif
80
81 #ifdef _WIN32
82
83 /*doh*/
84 #else
85
86 # include <sys/time.h>
87 # include <sys/select.h>
88 # include <unistd.h>
89 # include <utime.h>
90 # include <signal.h>
91 # include <dirent.h>
92
93 #if _POSIX_MEMLOCK || _POSIX_MEMLOCK_RANGE || _POSIX_MAPPED_FILES
94 # include <sys/mman.h>
95 #endif
96
97 /* POSIX_SOURCE is useless on bsd's, and XOPEN_SOURCE is unreliable there, too */
98 # if __FreeBSD__ || defined __NetBSD__ || defined __OpenBSD__
99 # define _DIRENT_HAVE_D_TYPE /* sigh */
100 # define D_INO(de) (de)->d_fileno
101 # define D_NAMLEN(de) (de)->d_namlen
102 # elif __linux || defined d_ino || _XOPEN_SOURCE >= 600
103 # define D_INO(de) (de)->d_ino
104 # endif
105
106 #ifdef _D_EXACT_NAMLEN
107 # undef D_NAMLEN
108 # define D_NAMLEN(de) _D_EXACT_NAMLEN (de)
109 #endif
110
111 # ifdef _DIRENT_HAVE_D_TYPE
112 # define D_TYPE(de) (de)->d_type
113 # endif
114
115 # ifndef EIO_STRUCT_DIRENT
116 # define EIO_STRUCT_DIRENT struct dirent
117 # endif
118
119 #endif
120
121 #if HAVE_SENDFILE
122 # if __linux
123 # include <sys/sendfile.h>
124 # elif __FreeBSD__ || defined __APPLE__
125 # include <sys/socket.h>
126 # include <sys/uio.h>
127 # elif __hpux
128 # include <sys/socket.h>
129 # elif __solaris
130 # include <sys/sendfile.h>
131 # else
132 # error sendfile support requested but not available
133 # endif
134 #endif
135
136 #ifndef D_TYPE
137 # define D_TYPE(de) 0
138 #endif
139 #ifndef D_INO
140 # define D_INO(de) 0
141 #endif
142 #ifndef D_NAMLEN
143 # define D_NAMLEN(de) strlen ((de)->d_name)
144 #endif
145
146 /* used for struct dirent, AIX doesn't provide it */
147 #ifndef NAME_MAX
148 # define NAME_MAX 4096
149 #endif
150
151 /* used for readlink etc. */
152 #ifndef PATH_MAX
153 # define PATH_MAX 4096
154 #endif
155
156 /* buffer size for various temporary buffers */
157 #define EIO_BUFSIZE 65536
158
159 #define dBUF \
160 char *eio_buf; \
161 ETP_WORKER_LOCK (self); \
162 self->dbuf = eio_buf = malloc (EIO_BUFSIZE); \
163 ETP_WORKER_UNLOCK (self); \
164 errno = ENOMEM; \
165 if (!eio_buf) \
166 return -1;
167
168 #define EIO_TICKS ((1000000 + 1023) >> 10)
169
170 /*****************************************************************************/
171
172 #if __GNUC__ >= 3
173 # define expect(expr,value) __builtin_expect ((expr),(value))
174 #else
175 # define expect(expr,value) (expr)
176 #endif
177
178 #define expect_false(expr) expect ((expr) != 0, 0)
179 #define expect_true(expr) expect ((expr) != 0, 1)
180
181 /*****************************************************************************/
182
183 #define ETP_PRI_MIN EIO_PRI_MIN
184 #define ETP_PRI_MAX EIO_PRI_MAX
185
186 struct etp_worker;
187
188 #define ETP_REQ eio_req
189 #define ETP_DESTROY(req) eio_destroy (req)
190 static int eio_finish (eio_req *req);
191 #define ETP_FINISH(req) eio_finish (req)
192 static void eio_execute (struct etp_worker *self, eio_req *req);
193 #define ETP_EXECUTE(wrk,req) eio_execute (wrk,req)
194
195 #define ETP_WORKER_CLEAR(req) \
196 if (wrk->dbuf) \
197 { \
198 free (wrk->dbuf); \
199 wrk->dbuf = 0; \
200 } \
201 \
202 if (wrk->dirp) \
203 { \
204 closedir (wrk->dirp); \
205 wrk->dirp = 0; \
206 }
207
208 #define ETP_WORKER_COMMON \
209 void *dbuf; \
210 DIR *dirp;
211
212 /*****************************************************************************/
213
214 #define ETP_NUM_PRI (ETP_PRI_MAX - ETP_PRI_MIN + 1)
215
216 /* calculate time difference in ~1/EIO_TICKS of a second */
217 static int tvdiff (struct timeval *tv1, struct timeval *tv2)
218 {
219 return (tv2->tv_sec - tv1->tv_sec ) * EIO_TICKS
220 + ((tv2->tv_usec - tv1->tv_usec) >> 10);
221 }
222
223 static unsigned int started, idle, wanted = 4;
224
225 static void (*want_poll_cb) (void);
226 static void (*done_poll_cb) (void);
227
228 static unsigned int max_poll_time; /* reslock */
229 static unsigned int max_poll_reqs; /* reslock */
230
231 static volatile unsigned int nreqs; /* reqlock */
232 static volatile unsigned int nready; /* reqlock */
233 static volatile unsigned int npending; /* reqlock */
234 static volatile unsigned int max_idle = 4; /* maximum number of threads that can idle indefinitely */
235 static volatile unsigned int idle_timeout = 10; /* number of seconds after which an idle threads exit */
236
237 static xmutex_t wrklock;
238 static xmutex_t reslock;
239 static xmutex_t reqlock;
240 static xcond_t reqwait;
241
242 #if !HAVE_PREADWRITE
243 /*
244 * make our pread/pwrite emulation safe against themselves, but not against
245 * normal read/write by using a mutex. slows down execution a lot,
246 * but that's your problem, not mine.
247 */
248 static xmutex_t preadwritelock = X_MUTEX_INIT;
249 #endif
250
251 typedef struct etp_worker
252 {
253 /* locked by wrklock */
254 struct etp_worker *prev, *next;
255
256 xthread_t tid;
257
258 /* locked by reslock, reqlock or wrklock */
259 ETP_REQ *req; /* currently processed request */
260
261 ETP_WORKER_COMMON
262 } etp_worker;
263
264 static etp_worker wrk_first = { &wrk_first, &wrk_first, 0 }; /* NOT etp */
265
266 #define ETP_WORKER_LOCK(wrk) X_LOCK (wrklock)
267 #define ETP_WORKER_UNLOCK(wrk) X_UNLOCK (wrklock)
268
269 /* worker threads management */
270
271 static void etp_worker_clear (etp_worker *wrk)
272 {
273 ETP_WORKER_CLEAR (wrk);
274 }
275
276 static void etp_worker_free (etp_worker *wrk)
277 {
278 wrk->next->prev = wrk->prev;
279 wrk->prev->next = wrk->next;
280
281 free (wrk);
282 }
283
284 static unsigned int etp_nreqs (void)
285 {
286 int retval;
287 if (WORDACCESS_UNSAFE) X_LOCK (reqlock);
288 retval = nreqs;
289 if (WORDACCESS_UNSAFE) X_UNLOCK (reqlock);
290 return retval;
291 }
292
293 static unsigned int etp_nready (void)
294 {
295 unsigned int retval;
296
297 if (WORDACCESS_UNSAFE) X_LOCK (reqlock);
298 retval = nready;
299 if (WORDACCESS_UNSAFE) X_UNLOCK (reqlock);
300
301 return retval;
302 }
303
304 static unsigned int etp_npending (void)
305 {
306 unsigned int retval;
307
308 if (WORDACCESS_UNSAFE) X_LOCK (reqlock);
309 retval = npending;
310 if (WORDACCESS_UNSAFE) X_UNLOCK (reqlock);
311
312 return retval;
313 }
314
315 static unsigned int etp_nthreads (void)
316 {
317 unsigned int retval;
318
319 if (WORDACCESS_UNSAFE) X_LOCK (reqlock);
320 retval = started;
321 if (WORDACCESS_UNSAFE) X_UNLOCK (reqlock);
322
323 return retval;
324 }
325
326 /*
327 * a somewhat faster data structure might be nice, but
328 * with 8 priorities this actually needs <20 insns
329 * per shift, the most expensive operation.
330 */
331 typedef struct {
332 ETP_REQ *qs[ETP_NUM_PRI], *qe[ETP_NUM_PRI]; /* qstart, qend */
333 int size;
334 } etp_reqq;
335
336 static etp_reqq req_queue;
337 static etp_reqq res_queue;
338
339 static int reqq_push (etp_reqq *q, ETP_REQ *req)
340 {
341 int pri = req->pri;
342 req->next = 0;
343
344 if (q->qe[pri])
345 {
346 q->qe[pri]->next = req;
347 q->qe[pri] = req;
348 }
349 else
350 q->qe[pri] = q->qs[pri] = req;
351
352 return q->size++;
353 }
354
355 static ETP_REQ *reqq_shift (etp_reqq *q)
356 {
357 int pri;
358
359 if (!q->size)
360 return 0;
361
362 --q->size;
363
364 for (pri = ETP_NUM_PRI; pri--; )
365 {
366 eio_req *req = q->qs[pri];
367
368 if (req)
369 {
370 if (!(q->qs[pri] = (eio_req *)req->next))
371 q->qe[pri] = 0;
372
373 return req;
374 }
375 }
376
377 abort ();
378 }
379
380 static void etp_thread_init (void)
381 {
382 X_MUTEX_CREATE (wrklock);
383 X_MUTEX_CREATE (reslock);
384 X_MUTEX_CREATE (reqlock);
385 X_COND_CREATE (reqwait);
386 }
387
388 static void etp_atfork_prepare (void)
389 {
390 X_LOCK (wrklock);
391 X_LOCK (reqlock);
392 X_LOCK (reslock);
393 #if !HAVE_PREADWRITE
394 X_LOCK (preadwritelock);
395 #endif
396 }
397
398 static void etp_atfork_parent (void)
399 {
400 #if !HAVE_PREADWRITE
401 X_UNLOCK (preadwritelock);
402 #endif
403 X_UNLOCK (reslock);
404 X_UNLOCK (reqlock);
405 X_UNLOCK (wrklock);
406 }
407
408 static void etp_atfork_child (void)
409 {
410 ETP_REQ *prv;
411
412 while ((prv = reqq_shift (&req_queue)))
413 ETP_DESTROY (prv);
414
415 while ((prv = reqq_shift (&res_queue)))
416 ETP_DESTROY (prv);
417
418 while (wrk_first.next != &wrk_first)
419 {
420 etp_worker *wrk = wrk_first.next;
421
422 if (wrk->req)
423 ETP_DESTROY (wrk->req);
424
425 etp_worker_clear (wrk);
426 etp_worker_free (wrk);
427 }
428
429 started = 0;
430 idle = 0;
431 nreqs = 0;
432 nready = 0;
433 npending = 0;
434
435 etp_thread_init ();
436 }
437
438 static void
439 etp_once_init (void)
440 {
441 etp_thread_init ();
442 X_THREAD_ATFORK (etp_atfork_prepare, etp_atfork_parent, etp_atfork_child);
443 }
444
445 static int
446 etp_init (void (*want_poll)(void), void (*done_poll)(void))
447 {
448 static pthread_once_t doinit = PTHREAD_ONCE_INIT;
449
450 pthread_once (&doinit, etp_once_init);
451
452 want_poll_cb = want_poll;
453 done_poll_cb = done_poll;
454
455 return 0;
456 }
457
458 X_THREAD_PROC (etp_proc);
459
460 static void etp_start_thread (void)
461 {
462 etp_worker *wrk = calloc (1, sizeof (etp_worker));
463
464 /*TODO*/
465 assert (("unable to allocate worker thread data", wrk));
466
467 X_LOCK (wrklock);
468
469 if (thread_create (&wrk->tid, etp_proc, (void *)wrk))
470 {
471 wrk->prev = &wrk_first;
472 wrk->next = wrk_first.next;
473 wrk_first.next->prev = wrk;
474 wrk_first.next = wrk;
475 ++started;
476 }
477 else
478 free (wrk);
479
480 X_UNLOCK (wrklock);
481 }
482
483 static void etp_maybe_start_thread (void)
484 {
485 if (expect_true (etp_nthreads () >= wanted))
486 return;
487
488 /* todo: maybe use idle here, but might be less exact */
489 if (expect_true (0 <= (int)etp_nthreads () + (int)etp_npending () - (int)etp_nreqs ()))
490 return;
491
492 etp_start_thread ();
493 }
494
495 static void etp_end_thread (void)
496 {
497 eio_req *req = calloc (1, sizeof (eio_req));
498
499 req->type = -1;
500 req->pri = ETP_PRI_MAX - ETP_PRI_MIN;
501
502 X_LOCK (reqlock);
503 reqq_push (&req_queue, req);
504 X_COND_SIGNAL (reqwait);
505 X_UNLOCK (reqlock);
506
507 X_LOCK (wrklock);
508 --started;
509 X_UNLOCK (wrklock);
510 }
511
512 static int etp_poll (void)
513 {
514 unsigned int maxreqs;
515 unsigned int maxtime;
516 struct timeval tv_start, tv_now;
517
518 X_LOCK (reslock);
519 maxreqs = max_poll_reqs;
520 maxtime = max_poll_time;
521 X_UNLOCK (reslock);
522
523 if (maxtime)
524 gettimeofday (&tv_start, 0);
525
526 for (;;)
527 {
528 ETP_REQ *req;
529
530 etp_maybe_start_thread ();
531
532 X_LOCK (reslock);
533 req = reqq_shift (&res_queue);
534
535 if (req)
536 {
537 --npending;
538
539 if (!res_queue.size && done_poll_cb)
540 done_poll_cb ();
541 }
542
543 X_UNLOCK (reslock);
544
545 if (!req)
546 return 0;
547
548 X_LOCK (reqlock);
549 --nreqs;
550 X_UNLOCK (reqlock);
551
552 if (expect_false (req->type == EIO_GROUP && req->size))
553 {
554 req->int1 = 1; /* mark request as delayed */
555 continue;
556 }
557 else
558 {
559 int res = ETP_FINISH (req);
560 if (expect_false (res))
561 return res;
562 }
563
564 if (expect_false (maxreqs && !--maxreqs))
565 break;
566
567 if (maxtime)
568 {
569 gettimeofday (&tv_now, 0);
570
571 if (tvdiff (&tv_start, &tv_now) >= maxtime)
572 break;
573 }
574 }
575
576 errno = EAGAIN;
577 return -1;
578 }
579
580 static void etp_cancel (ETP_REQ *req)
581 {
582 X_LOCK (wrklock);
583 req->flags |= EIO_FLAG_CANCELLED;
584 X_UNLOCK (wrklock);
585
586 eio_grp_cancel (req);
587 }
588
589 static void etp_submit (ETP_REQ *req)
590 {
591 req->pri -= ETP_PRI_MIN;
592
593 if (expect_false (req->pri < ETP_PRI_MIN - ETP_PRI_MIN)) req->pri = ETP_PRI_MIN - ETP_PRI_MIN;
594 if (expect_false (req->pri > ETP_PRI_MAX - ETP_PRI_MIN)) req->pri = ETP_PRI_MAX - ETP_PRI_MIN;
595
596 if (expect_false (req->type == EIO_GROUP))
597 {
598 /* I hope this is worth it :/ */
599 X_LOCK (reqlock);
600 ++nreqs;
601 X_UNLOCK (reqlock);
602
603 X_LOCK (reslock);
604
605 ++npending;
606
607 if (!reqq_push (&res_queue, req) && want_poll_cb)
608 want_poll_cb ();
609
610 X_UNLOCK (reslock);
611 }
612 else
613 {
614 X_LOCK (reqlock);
615 ++nreqs;
616 ++nready;
617 reqq_push (&req_queue, req);
618 X_COND_SIGNAL (reqwait);
619 X_UNLOCK (reqlock);
620
621 etp_maybe_start_thread ();
622 }
623 }
624
625 static void etp_set_max_poll_time (double nseconds)
626 {
627 if (WORDACCESS_UNSAFE) X_LOCK (reslock);
628 max_poll_time = nseconds * EIO_TICKS;
629 if (WORDACCESS_UNSAFE) X_UNLOCK (reslock);
630 }
631
632 static void etp_set_max_poll_reqs (unsigned int maxreqs)
633 {
634 if (WORDACCESS_UNSAFE) X_LOCK (reslock);
635 max_poll_reqs = maxreqs;
636 if (WORDACCESS_UNSAFE) X_UNLOCK (reslock);
637 }
638
639 static void etp_set_max_idle (unsigned int nthreads)
640 {
641 if (WORDACCESS_UNSAFE) X_LOCK (reqlock);
642 max_idle = nthreads;
643 if (WORDACCESS_UNSAFE) X_UNLOCK (reqlock);
644 }
645
646 static void etp_set_idle_timeout (unsigned int seconds)
647 {
648 if (WORDACCESS_UNSAFE) X_LOCK (reqlock);
649 idle_timeout = seconds;
650 if (WORDACCESS_UNSAFE) X_UNLOCK (reqlock);
651 }
652
653 static void etp_set_min_parallel (unsigned int nthreads)
654 {
655 if (wanted < nthreads)
656 wanted = nthreads;
657 }
658
659 static void etp_set_max_parallel (unsigned int nthreads)
660 {
661 if (wanted > nthreads)
662 wanted = nthreads;
663
664 while (started > wanted)
665 etp_end_thread ();
666 }
667
668 /*****************************************************************************/
669
670 static void grp_try_feed (eio_req *grp)
671 {
672 while (grp->size < grp->int2 && !EIO_CANCELLED (grp))
673 {
674 grp->flags &= ~EIO_FLAG_GROUPADD;
675
676 EIO_FEED (grp);
677
678 /* stop if no progress has been made */
679 if (!(grp->flags & EIO_FLAG_GROUPADD))
680 {
681 grp->feed = 0;
682 break;
683 }
684 }
685 }
686
687 static int grp_dec (eio_req *grp)
688 {
689 --grp->size;
690
691 /* call feeder, if applicable */
692 grp_try_feed (grp);
693
694 /* finish, if done */
695 if (!grp->size && grp->int1)
696 return eio_finish (grp);
697 else
698 return 0;
699 }
700
701 void eio_destroy (eio_req *req)
702 {
703 if ((req)->flags & EIO_FLAG_PTR1_FREE) free (req->ptr1);
704 if ((req)->flags & EIO_FLAG_PTR2_FREE) free (req->ptr2);
705
706 EIO_DESTROY (req);
707 }
708
709 static int eio_finish (eio_req *req)
710 {
711 int res = EIO_FINISH (req);
712
713 if (req->grp)
714 {
715 int res2;
716 eio_req *grp = req->grp;
717
718 /* unlink request */
719 if (req->grp_next) req->grp_next->grp_prev = req->grp_prev;
720 if (req->grp_prev) req->grp_prev->grp_next = req->grp_next;
721
722 if (grp->grp_first == req)
723 grp->grp_first = req->grp_next;
724
725 res2 = grp_dec (grp);
726
727 if (!res && res2)
728 res = res2;
729 }
730
731 eio_destroy (req);
732
733 return res;
734 }
735
736 void eio_grp_cancel (eio_req *grp)
737 {
738 for (grp = grp->grp_first; grp; grp = grp->grp_next)
739 eio_cancel (grp);
740 }
741
742 void eio_cancel (eio_req *req)
743 {
744 etp_cancel (req);
745 }
746
747 void eio_submit (eio_req *req)
748 {
749 etp_submit (req);
750 }
751
752 unsigned int eio_nreqs (void)
753 {
754 return etp_nreqs ();
755 }
756
757 unsigned int eio_nready (void)
758 {
759 return etp_nready ();
760 }
761
762 unsigned int eio_npending (void)
763 {
764 return etp_npending ();
765 }
766
767 unsigned int eio_nthreads (void)
768 {
769 return etp_nthreads ();
770 }
771
772 void eio_set_max_poll_time (double nseconds)
773 {
774 etp_set_max_poll_time (nseconds);
775 }
776
777 void eio_set_max_poll_reqs (unsigned int maxreqs)
778 {
779 etp_set_max_poll_reqs (maxreqs);
780 }
781
782 void eio_set_max_idle (unsigned int nthreads)
783 {
784 etp_set_max_idle (nthreads);
785 }
786
787 void eio_set_idle_timeout (unsigned int seconds)
788 {
789 etp_set_idle_timeout (seconds);
790 }
791
792 void eio_set_min_parallel (unsigned int nthreads)
793 {
794 etp_set_min_parallel (nthreads);
795 }
796
797 void eio_set_max_parallel (unsigned int nthreads)
798 {
799 etp_set_max_parallel (nthreads);
800 }
801
802 int eio_poll (void)
803 {
804 return etp_poll ();
805 }
806
807 /*****************************************************************************/
808 /* work around various missing functions */
809
810 #if !HAVE_PREADWRITE
811 # undef pread
812 # undef pwrite
813 # define pread eio__pread
814 # define pwrite eio__pwrite
815
816 static ssize_t
817 eio__pread (int fd, void *buf, size_t count, off_t offset)
818 {
819 ssize_t res;
820 off_t ooffset;
821
822 X_LOCK (preadwritelock);
823 ooffset = lseek (fd, 0, SEEK_CUR);
824 lseek (fd, offset, SEEK_SET);
825 res = read (fd, buf, count);
826 lseek (fd, ooffset, SEEK_SET);
827 X_UNLOCK (preadwritelock);
828
829 return res;
830 }
831
832 static ssize_t
833 eio__pwrite (int fd, void *buf, size_t count, off_t offset)
834 {
835 ssize_t res;
836 off_t ooffset;
837
838 X_LOCK (preadwritelock);
839 ooffset = lseek (fd, 0, SEEK_CUR);
840 lseek (fd, offset, SEEK_SET);
841 res = write (fd, buf, count);
842 lseek (fd, ooffset, SEEK_SET);
843 X_UNLOCK (preadwritelock);
844
845 return res;
846 }
847 #endif
848
849 #ifndef HAVE_UTIMES
850
851 # undef utimes
852 # define utimes(path,times) eio__utimes (path, times)
853
854 static int
855 eio__utimes (const char *filename, const struct timeval times[2])
856 {
857 if (times)
858 {
859 struct utimbuf buf;
860
861 buf.actime = times[0].tv_sec;
862 buf.modtime = times[1].tv_sec;
863
864 return utime (filename, &buf);
865 }
866 else
867 return utime (filename, 0);
868 }
869
870 #endif
871
872 #ifndef HAVE_FUTIMES
873
874 # undef futimes
875 # define futimes(fd,times) eio__futimes (fd, times)
876
877 static int eio__futimes (int fd, const struct timeval tv[2])
878 {
879 errno = ENOSYS;
880 return -1;
881 }
882
883 #endif
884
885 #if !HAVE_FDATASYNC
886 # undef fdatasync
887 # define fdatasync(fd) fsync (fd)
888 #endif
889
890 /* sync_file_range always needs emulation */
891 int
892 eio__sync_file_range (int fd, off_t offset, size_t nbytes, unsigned int flags)
893 {
894 #if HAVE_SYNC_FILE_RANGE
895 int res;
896
897 if (EIO_SYNC_FILE_RANGE_WAIT_BEFORE != SYNC_FILE_RANGE_WAIT_BEFORE
898 || EIO_SYNC_FILE_RANGE_WRITE != SYNC_FILE_RANGE_WRITE
899 || EIO_SYNC_FILE_RANGE_WAIT_AFTER != SYNC_FILE_RANGE_WAIT_AFTER)
900 {
901 flags = 0
902 | (flags & EIO_SYNC_FILE_RANGE_WAIT_BEFORE ? SYNC_FILE_RANGE_WAIT_BEFORE : 0)
903 | (flags & EIO_SYNC_FILE_RANGE_WRITE ? SYNC_FILE_RANGE_WRITE : 0)
904 | (flags & EIO_SYNC_FILE_RANGE_WAIT_AFTER ? SYNC_FILE_RANGE_WAIT_AFTER : 0);
905 }
906
907 res = sync_file_range (fd, offset, nbytes, flags);
908
909 if (!res || errno != ENOSYS)
910 return res;
911 #endif
912
913 /* even though we could play tricks with the flags, it's better to always
914 * call fdatasync, as that matches the expectation of its users best */
915 return fdatasync (fd);
916 }
917
918 #if !HAVE_READAHEAD
919 # undef readahead
920 # define readahead(fd,offset,count) eio__readahead (fd, offset, count, self)
921
922 static ssize_t
923 eio__readahead (int fd, off_t offset, size_t count, etp_worker *self)
924 {
925 size_t todo = count;
926 dBUF;
927
928 while (todo > 0)
929 {
930 size_t len = todo < EIO_BUFSIZE ? todo : EIO_BUFSIZE;
931
932 pread (fd, eio_buf, len, offset);
933 offset += len;
934 todo -= len;
935 }
936
937 errno = 0;
938 return count;
939 }
940
941 #endif
942
943 /* sendfile always needs emulation */
944 static ssize_t
945 eio__sendfile (int ofd, int ifd, off_t offset, size_t count, etp_worker *self)
946 {
947 ssize_t written = 0;
948 ssize_t res;
949
950 if (!count)
951 return 0;
952
953 for (;;)
954 {
955 #if HAVE_SENDFILE
956 # if __linux
957 off_t soffset = offset;
958 res = sendfile (ofd, ifd, &soffset, count);
959
960 # elif __FreeBSD__
961 /*
962 * Of course, the freebsd sendfile is a dire hack with no thoughts
963 * wasted on making it similar to other I/O functions.
964 */
965 off_t sbytes;
966 res = sendfile (ifd, ofd, offset, count, 0, &sbytes, 0);
967
968 #if 0 /* according to the manpage, this is correct, but broken behaviour */
969 /* freebsd' sendfile will return 0 on success */
970 /* freebsd 8 documents it as only setting *sbytes on EINTR and EAGAIN, but */
971 /* not on e.g. EIO or EPIPE - sounds broken */
972 if ((res < 0 && (errno == EAGAIN || errno == EINTR) && sbytes) || res == 0)
973 res = sbytes;
974 #endif
975
976 /* according to source inspection, this is correct, and useful behaviour */
977 if (sbytes)
978 res = sbytes;
979
980 # elif defined (__APPLE__)
981 off_t sbytes = count;
982 res = sendfile (ifd, ofd, offset, &sbytes, 0, 0);
983
984 /* according to the manpage, sbytes is always valid */
985 if (sbytes)
986 res = sbytes;
987
988 # elif __hpux
989 res = sendfile (ofd, ifd, offset, count, 0, 0);
990
991 # elif __solaris
992 struct sendfilevec vec;
993 size_t sbytes;
994
995 vec.sfv_fd = ifd;
996 vec.sfv_flag = 0;
997 vec.sfv_off = offset;
998 vec.sfv_len = count;
999
1000 res = sendfilev (ofd, &vec, 1, &sbytes);
1001
1002 if (res < 0 && sbytes)
1003 res = sbytes;
1004
1005 # endif
1006
1007 #elif defined (_WIN32)
1008 /* does not work, just for documentation of what would need to be done */
1009 HANDLE h = TO_SOCKET (ifd);
1010 SetFilePointer (h, offset, 0, FILE_BEGIN);
1011 res = TransmitFile (TO_SOCKET (ofd), h, count, 0, 0, 0, 0);
1012
1013 #else
1014 res = -1;
1015 errno = ENOSYS;
1016 #endif
1017
1018 /* we assume sendfile can copy at least 128mb in one go */
1019 if (res <= 128 * 1024 * 1024)
1020 {
1021 if (res > 0)
1022 written += res;
1023
1024 if (written)
1025 return written;
1026
1027 break;
1028 }
1029 else
1030 {
1031 /* if we requested more, then probably the kernel was lazy */
1032 written += res;
1033 offset += res;
1034 count -= res;
1035
1036 if (!count)
1037 return written;
1038 }
1039 }
1040
1041 if (res < 0
1042 && (errno == ENOSYS || errno == EINVAL || errno == ENOTSOCK
1043 /* BSDs */
1044 #ifdef ENOTSUP /* sigh, if the steenking pile called openbsd would only try to at least compile posix code... */
1045 || errno == ENOTSUP
1046 #endif
1047 || errno == EOPNOTSUPP /* BSDs */
1048 #if __solaris
1049 || errno == EAFNOSUPPORT || errno == EPROTOTYPE
1050 #endif
1051 )
1052 )
1053 {
1054 /* emulate sendfile. this is a major pain in the ass */
1055 dBUF;
1056
1057 res = 0;
1058
1059 while (count)
1060 {
1061 ssize_t cnt;
1062
1063 cnt = pread (ifd, eio_buf, count > EIO_BUFSIZE ? EIO_BUFSIZE : count, offset);
1064
1065 if (cnt <= 0)
1066 {
1067 if (cnt && !res) res = -1;
1068 break;
1069 }
1070
1071 cnt = write (ofd, eio_buf, cnt);
1072
1073 if (cnt <= 0)
1074 {
1075 if (cnt && !res) res = -1;
1076 break;
1077 }
1078
1079 offset += cnt;
1080 res += cnt;
1081 count -= cnt;
1082 }
1083 }
1084
1085 return res;
1086 }
1087
1088 static signed char
1089 eio_dent_cmp (const eio_dirent *a, const eio_dirent *b)
1090 {
1091 return a->score - b->score ? a->score - b->score /* works because our signed char is always 0..100 */
1092 : a->inode < b->inode ? -1
1093 : a->inode > b->inode ? 1
1094 : 0;
1095 }
1096
1097 #define EIO_DENT_CMP(i,op,j) eio_dent_cmp (&i, &j) op 0
1098
1099 #define EIO_SORT_CUTOFF 30 /* quite high, but performs well on many filesystems */
1100 #define EIO_SORT_FAST 60 /* when to only use insertion sort */
1101
1102 static void
1103 eio_dent_radix_sort (eio_dirent *dents, int size, signed char score_bits, ino_t inode_bits)
1104 {
1105 unsigned char bits [9 + sizeof (ino_t) * 8];
1106 unsigned char *bit = bits;
1107
1108 assert (CHAR_BIT == 8);
1109 assert (sizeof (eio_dirent) * 8 < 256);
1110 assert (offsetof (eio_dirent, inode)); /* we use bit #0 as sentinel */
1111 assert (offsetof (eio_dirent, score)); /* we use bit #0 as sentinel */
1112
1113 if (size <= EIO_SORT_FAST)
1114 return;
1115
1116 /* first prepare an array of bits to test in our radix sort */
1117 /* try to take endianness into account, as well as differences in ino_t sizes */
1118 /* inode_bits must contain all inodes ORed together */
1119 /* which is used to skip bits that are 0 everywhere, which is very common */
1120 {
1121 ino_t endianness;
1122 int i, j;
1123
1124 /* we store the byte offset of byte n into byte n of "endianness" */
1125 for (i = 0; i < sizeof (ino_t); ++i)
1126 ((unsigned char *)&endianness)[i] = i;
1127
1128 *bit++ = 0;
1129
1130 for (i = 0; i < sizeof (ino_t); ++i)
1131 {
1132 /* shifting off the byte offsets out of "endianness" */
1133 int offs = (offsetof (eio_dirent, inode) + (endianness & 0xff)) * 8;
1134 endianness >>= 8;
1135
1136 for (j = 0; j < 8; ++j)
1137 if (inode_bits & (((ino_t)1) << (i * 8 + j)))
1138 *bit++ = offs + j;
1139 }
1140
1141 for (j = 0; j < 8; ++j)
1142 if (score_bits & (1 << j))
1143 *bit++ = offsetof (eio_dirent, score) * 8 + j;
1144 }
1145
1146 /* now actually do the sorting (a variant of MSD radix sort) */
1147 {
1148 eio_dirent *base_stk [9 + sizeof (ino_t) * 8], *base;
1149 eio_dirent *end_stk [9 + sizeof (ino_t) * 8], *end;
1150 unsigned char *bit_stk [9 + sizeof (ino_t) * 8];
1151 int stk_idx = 0;
1152
1153 base_stk [stk_idx] = dents;
1154 end_stk [stk_idx] = dents + size;
1155 bit_stk [stk_idx] = bit - 1;
1156
1157 do
1158 {
1159 base = base_stk [stk_idx];
1160 end = end_stk [stk_idx];
1161 bit = bit_stk [stk_idx];
1162
1163 for (;;)
1164 {
1165 unsigned char O = *bit >> 3;
1166 unsigned char M = 1 << (*bit & 7);
1167
1168 eio_dirent *a = base;
1169 eio_dirent *b = end;
1170
1171 if (b - a < EIO_SORT_CUTOFF)
1172 break;
1173
1174 /* now bit-partition the array on the bit */
1175 /* this ugly asymmetric loop seems to perform much better than typical */
1176 /* partition algos found in the literature */
1177 do
1178 if (!(((unsigned char *)a)[O] & M))
1179 ++a;
1180 else if (!(((unsigned char *)--b)[O] & M))
1181 {
1182 eio_dirent tmp = *a; *a = *b; *b = tmp;
1183 ++a;
1184 }
1185 while (b > a);
1186
1187 /* next bit, or stop, if no bits left in this path */
1188 if (!*--bit)
1189 break;
1190
1191 base_stk [stk_idx] = a;
1192 end_stk [stk_idx] = end;
1193 bit_stk [stk_idx] = bit;
1194 ++stk_idx;
1195
1196 end = a;
1197 }
1198 }
1199 while (stk_idx--);
1200 }
1201 }
1202
1203 static void
1204 eio_dent_insertion_sort (eio_dirent *dents, int size)
1205 {
1206 /* first move the smallest element to the front, to act as a sentinel */
1207 {
1208 int i;
1209 eio_dirent *min = dents;
1210
1211 /* the radix pre-pass ensures that the minimum element is in the first EIO_SORT_CUTOFF + 1 elements */
1212 for (i = size > EIO_SORT_FAST ? EIO_SORT_CUTOFF + 1 : size; --i; )
1213 if (EIO_DENT_CMP (dents [i], <, *min))
1214 min = &dents [i];
1215
1216 /* swap elements 0 and j (minimum) */
1217 {
1218 eio_dirent tmp = *dents; *dents = *min; *min = tmp;
1219 }
1220 }
1221
1222 /* then do standard insertion sort, assuming that all elements are >= dents [0] */
1223 {
1224 eio_dirent *i, *j;
1225
1226 for (i = dents + 1; i < dents + size; ++i)
1227 {
1228 eio_dirent value = *i;
1229
1230 for (j = i - 1; EIO_DENT_CMP (*j, >, value); --j)
1231 j [1] = j [0];
1232
1233 j [1] = value;
1234 }
1235 }
1236 }
1237
1238 static void
1239 eio_dent_sort (eio_dirent *dents, int size, signed char score_bits, ino_t inode_bits)
1240 {
1241 if (size <= 1)
1242 return; /* our insertion sort relies on size > 0 */
1243
1244 /* first we use a radix sort, but only for dirs >= EIO_SORT_FAST */
1245 /* and stop sorting when the partitions are <= EIO_SORT_CUTOFF */
1246 eio_dent_radix_sort (dents, size, score_bits, inode_bits);
1247
1248 /* use an insertion sort at the end, or for small arrays, */
1249 /* as insertion sort is more efficient for small partitions */
1250 eio_dent_insertion_sort (dents, size);
1251 }
1252
1253 /* read a full directory */
1254 static void
1255 eio__scandir (eio_req *req, etp_worker *self)
1256 {
1257 DIR *dirp;
1258 EIO_STRUCT_DIRENT *entp;
1259 char *name, *names;
1260 int namesalloc = 4096;
1261 int namesoffs = 0;
1262 int flags = req->int1;
1263 eio_dirent *dents = 0;
1264 int dentalloc = 128;
1265 int dentoffs = 0;
1266 ino_t inode_bits = 0;
1267
1268 req->result = -1;
1269
1270 if (!(flags & EIO_READDIR_DENTS))
1271 flags &= ~(EIO_READDIR_DIRS_FIRST | EIO_READDIR_STAT_ORDER);
1272
1273 X_LOCK (wrklock);
1274 /* the corresponding closedir is in ETP_WORKER_CLEAR */
1275 self->dirp = dirp = opendir (req->ptr1);
1276
1277 req->flags |= EIO_FLAG_PTR1_FREE | EIO_FLAG_PTR2_FREE;
1278 req->ptr1 = dents = flags ? malloc (dentalloc * sizeof (eio_dirent)) : 0;
1279 req->ptr2 = names = malloc (namesalloc);
1280 X_UNLOCK (wrklock);
1281
1282 if (dirp && names && (!flags || dents))
1283 for (;;)
1284 {
1285 errno = 0;
1286 entp = readdir (dirp);
1287
1288 if (!entp)
1289 {
1290 if (errno)
1291 break;
1292
1293 /* sort etc. */
1294 req->int1 = flags;
1295 req->result = dentoffs;
1296
1297 if (flags & EIO_READDIR_STAT_ORDER)
1298 eio_dent_sort (dents, dentoffs, flags & EIO_READDIR_DIRS_FIRST ? 7 : 0, inode_bits);
1299 else if (flags & EIO_READDIR_DIRS_FIRST)
1300 if (flags & EIO_READDIR_FOUND_UNKNOWN)
1301 eio_dent_sort (dents, dentoffs, 7, inode_bits); /* sort by score and inode */
1302 else
1303 {
1304 /* in this case, all is known, and we just put dirs first and sort them */
1305 eio_dirent *oth = dents + dentoffs;
1306 eio_dirent *dir = dents;
1307
1308 /* now partition dirs to the front, and non-dirs to the back */
1309 /* by walking from both sides and swapping if necessary */
1310 while (oth > dir)
1311 {
1312 if (dir->type == EIO_DT_DIR)
1313 ++dir;
1314 else if ((--oth)->type == EIO_DT_DIR)
1315 {
1316 eio_dirent tmp = *dir; *dir = *oth; *oth = tmp;
1317
1318 ++dir;
1319 }
1320 }
1321
1322 /* now sort the dirs only (dirs all have the same score) */
1323 eio_dent_sort (dents, dir - dents, 0, inode_bits);
1324 }
1325
1326 break;
1327 }
1328
1329 /* now add the entry to our list(s) */
1330 name = entp->d_name;
1331
1332 /* skip . and .. entries */
1333 if (name [0] != '.' || (name [1] && (name [1] != '.' || name [2])))
1334 {
1335 int len = D_NAMLEN (entp) + 1;
1336
1337 while (expect_false (namesoffs + len > namesalloc))
1338 {
1339 namesalloc *= 2;
1340 X_LOCK (wrklock);
1341 req->ptr2 = names = realloc (names, namesalloc);
1342 X_UNLOCK (wrklock);
1343
1344 if (!names)
1345 break;
1346 }
1347
1348 memcpy (names + namesoffs, name, len);
1349
1350 if (dents)
1351 {
1352 struct eio_dirent *ent;
1353
1354 if (expect_false (dentoffs == dentalloc))
1355 {
1356 dentalloc *= 2;
1357 X_LOCK (wrklock);
1358 req->ptr1 = dents = realloc (dents, dentalloc * sizeof (eio_dirent));
1359 X_UNLOCK (wrklock);
1360
1361 if (!dents)
1362 break;
1363 }
1364
1365 ent = dents + dentoffs;
1366
1367 ent->nameofs = namesoffs; /* rather dirtily we store the offset in the pointer */
1368 ent->namelen = len - 1;
1369 ent->inode = D_INO (entp);
1370
1371 inode_bits |= ent->inode;
1372
1373 switch (D_TYPE (entp))
1374 {
1375 default:
1376 ent->type = EIO_DT_UNKNOWN;
1377 flags |= EIO_READDIR_FOUND_UNKNOWN;
1378 break;
1379
1380 #ifdef DT_FIFO
1381 case DT_FIFO: ent->type = EIO_DT_FIFO; break;
1382 #endif
1383 #ifdef DT_CHR
1384 case DT_CHR: ent->type = EIO_DT_CHR; break;
1385 #endif
1386 #ifdef DT_MPC
1387 case DT_MPC: ent->type = EIO_DT_MPC; break;
1388 #endif
1389 #ifdef DT_DIR
1390 case DT_DIR: ent->type = EIO_DT_DIR; break;
1391 #endif
1392 #ifdef DT_NAM
1393 case DT_NAM: ent->type = EIO_DT_NAM; break;
1394 #endif
1395 #ifdef DT_BLK
1396 case DT_BLK: ent->type = EIO_DT_BLK; break;
1397 #endif
1398 #ifdef DT_MPB
1399 case DT_MPB: ent->type = EIO_DT_MPB; break;
1400 #endif
1401 #ifdef DT_REG
1402 case DT_REG: ent->type = EIO_DT_REG; break;
1403 #endif
1404 #ifdef DT_NWK
1405 case DT_NWK: ent->type = EIO_DT_NWK; break;
1406 #endif
1407 #ifdef DT_CMP
1408 case DT_CMP: ent->type = EIO_DT_CMP; break;
1409 #endif
1410 #ifdef DT_LNK
1411 case DT_LNK: ent->type = EIO_DT_LNK; break;
1412 #endif
1413 #ifdef DT_SOCK
1414 case DT_SOCK: ent->type = EIO_DT_SOCK; break;
1415 #endif
1416 #ifdef DT_DOOR
1417 case DT_DOOR: ent->type = EIO_DT_DOOR; break;
1418 #endif
1419 #ifdef DT_WHT
1420 case DT_WHT: ent->type = EIO_DT_WHT; break;
1421 #endif
1422 }
1423
1424 ent->score = 7;
1425
1426 if (flags & EIO_READDIR_DIRS_FIRST)
1427 {
1428 if (ent->type == EIO_DT_UNKNOWN)
1429 {
1430 if (*name == '.') /* leading dots are likely directories, and, in any case, rare */
1431 ent->score = 1;
1432 else if (!strchr (name, '.')) /* absense of dots indicate likely dirs */
1433 ent->score = len <= 2 ? 4 - len : len <= 4 ? 4 : len <= 7 ? 5 : 6; /* shorter == more likely dir, but avoid too many classes */
1434 }
1435 else if (ent->type == EIO_DT_DIR)
1436 ent->score = 0;
1437 }
1438 }
1439
1440 namesoffs += len;
1441 ++dentoffs;
1442 }
1443
1444 if (EIO_CANCELLED (req))
1445 {
1446 errno = ECANCELED;
1447 break;
1448 }
1449 }
1450 }
1451
1452 #ifdef PAGESIZE
1453 # define eio_pagesize() PAGESIZE
1454 #else
1455 static intptr_t
1456 eio_pagesize (void)
1457 {
1458 static intptr_t page;
1459
1460 if (!page)
1461 page = sysconf (_SC_PAGESIZE);
1462
1463 return page;
1464 }
1465 #endif
1466
1467 static void
1468 eio_page_align (void **addr, size_t *length)
1469 {
1470 intptr_t mask = eio_pagesize () - 1;
1471
1472 /* round down addr */
1473 intptr_t adj = mask & (intptr_t)*addr;
1474
1475 *addr = (void *)((intptr_t)*addr - adj);
1476 *length += adj;
1477
1478 /* round up length */
1479 *length = (*length + mask) & ~mask;
1480 }
1481
1482 #if !_POSIX_MEMLOCK
1483 # define eio__mlockall(a) ((errno = ENOSYS), -1)
1484 #else
1485
1486 static int
1487 eio__mlockall (int flags)
1488 {
1489 #if __GLIBC__ == 2 && __GLIBC_MINOR__ <= 7
1490 extern int mallopt (int, int);
1491 mallopt (-6, 238); /* http://bugs.debian.org/cgi-bin/bugreport.cgi?bug=473812 */
1492 #endif
1493
1494 if (EIO_MCL_CURRENT != MCL_CURRENT
1495 || EIO_MCL_FUTURE != MCL_FUTURE)
1496 {
1497 flags = 0
1498 | (flags & EIO_MCL_CURRENT ? MCL_CURRENT : 0)
1499 | (flags & EIO_MCL_FUTURE ? MCL_FUTURE : 0);
1500 }
1501
1502 return mlockall (flags);
1503 }
1504 #endif
1505
1506 #if !_POSIX_MEMLOCK_RANGE
1507 # define eio__mlock(a,b) ((errno = ENOSYS), -1)
1508 #else
1509
1510 static int
1511 eio__mlock (void *addr, size_t length)
1512 {
1513 eio_page_align (&addr, &length);
1514
1515 return mlock (addr, length);
1516 }
1517
1518 #endif
1519
1520 #if !(_POSIX_MAPPED_FILES && _POSIX_SYNCHRONIZED_IO)
1521 # define eio__msync(a,b,c) ((errno = ENOSYS), -1)
1522 #else
1523
1524 int
1525 eio__msync (void *mem, size_t len, int flags)
1526 {
1527 eio_page_align (&mem, &len);
1528
1529 if (EIO_MS_ASYNC != MS_SYNC
1530 || EIO_MS_INVALIDATE != MS_INVALIDATE
1531 || EIO_MS_SYNC != MS_SYNC)
1532 {
1533 flags = 0
1534 | (flags & EIO_MS_ASYNC ? MS_ASYNC : 0)
1535 | (flags & EIO_MS_INVALIDATE ? MS_INVALIDATE : 0)
1536 | (flags & EIO_MS_SYNC ? MS_SYNC : 0);
1537 }
1538
1539 return msync (mem, len, flags);
1540 }
1541
1542 #endif
1543
1544 int
1545 eio__mtouch (eio_req *req)
1546 {
1547 void *mem = req->ptr2;
1548 size_t len = req->size;
1549 int flags = req->int1;
1550
1551 eio_page_align (&mem, &len);
1552
1553 {
1554 intptr_t addr = (intptr_t)mem;
1555 intptr_t end = addr + len;
1556 intptr_t page = eio_pagesize ();
1557
1558 if (addr < end)
1559 if (flags & EIO_MT_MODIFY) /* modify */
1560 do { *((volatile sig_atomic_t *)addr) |= 0; } while ((addr += page) < len && !EIO_CANCELLED (req));
1561 else
1562 do { *((volatile sig_atomic_t *)addr) ; } while ((addr += page) < len && !EIO_CANCELLED (req));
1563 }
1564
1565 return 0;
1566 }
1567
1568 /*****************************************************************************/
1569
1570 #define ALLOC(len) \
1571 if (!req->ptr2) \
1572 { \
1573 X_LOCK (wrklock); \
1574 req->flags |= EIO_FLAG_PTR2_FREE; \
1575 X_UNLOCK (wrklock); \
1576 req->ptr2 = malloc (len); \
1577 if (!req->ptr2) \
1578 { \
1579 errno = ENOMEM; \
1580 req->result = -1; \
1581 break; \
1582 } \
1583 }
1584
1585 X_THREAD_PROC (etp_proc)
1586 {
1587 ETP_REQ *req;
1588 struct timespec ts;
1589 etp_worker *self = (etp_worker *)thr_arg;
1590
1591 /* try to distribute timeouts somewhat randomly */
1592 ts.tv_nsec = ((unsigned long)self & 1023UL) * (1000000000UL / 1024UL);
1593
1594 for (;;)
1595 {
1596 X_LOCK (reqlock);
1597
1598 for (;;)
1599 {
1600 self->req = req = reqq_shift (&req_queue);
1601
1602 if (req)
1603 break;
1604
1605 ++idle;
1606
1607 ts.tv_sec = time (0) + idle_timeout;
1608 if (X_COND_TIMEDWAIT (reqwait, reqlock, ts) == ETIMEDOUT)
1609 {
1610 if (idle > max_idle)
1611 {
1612 --idle;
1613 X_UNLOCK (reqlock);
1614 X_LOCK (wrklock);
1615 --started;
1616 X_UNLOCK (wrklock);
1617 goto quit;
1618 }
1619
1620 /* we are allowed to idle, so do so without any timeout */
1621 X_COND_WAIT (reqwait, reqlock);
1622 }
1623
1624 --idle;
1625 }
1626
1627 --nready;
1628
1629 X_UNLOCK (reqlock);
1630
1631 if (req->type < 0)
1632 goto quit;
1633
1634 if (!EIO_CANCELLED (req))
1635 ETP_EXECUTE (self, req);
1636
1637 X_LOCK (reslock);
1638
1639 ++npending;
1640
1641 if (!reqq_push (&res_queue, req) && want_poll_cb)
1642 want_poll_cb ();
1643
1644 self->req = 0;
1645 etp_worker_clear (self);
1646
1647 X_UNLOCK (reslock);
1648 }
1649
1650 quit:
1651 X_LOCK (wrklock);
1652 etp_worker_free (self);
1653 X_UNLOCK (wrklock);
1654
1655 return 0;
1656 }
1657
1658 /*****************************************************************************/
1659
1660 int eio_init (void (*want_poll)(void), void (*done_poll)(void))
1661 {
1662 return etp_init (want_poll, done_poll);
1663 }
1664
1665 static void eio_api_destroy (eio_req *req)
1666 {
1667 free (req);
1668 }
1669
1670 #define REQ(rtype) \
1671 eio_req *req; \
1672 \
1673 req = (eio_req *)calloc (1, sizeof *req); \
1674 if (!req) \
1675 return 0; \
1676 \
1677 req->type = rtype; \
1678 req->pri = pri; \
1679 req->finish = cb; \
1680 req->data = data; \
1681 req->destroy = eio_api_destroy;
1682
1683 #define SEND eio_submit (req); return req
1684
1685 #define PATH \
1686 req->flags |= EIO_FLAG_PTR1_FREE; \
1687 req->ptr1 = strdup (path); \
1688 if (!req->ptr1) \
1689 { \
1690 eio_api_destroy (req); \
1691 return 0; \
1692 }
1693
1694 static void eio_execute (etp_worker *self, eio_req *req)
1695 {
1696 switch (req->type)
1697 {
1698 case EIO_READ: ALLOC (req->size);
1699 req->result = req->offs >= 0
1700 ? pread (req->int1, req->ptr2, req->size, req->offs)
1701 : read (req->int1, req->ptr2, req->size); break;
1702 case EIO_WRITE: req->result = req->offs >= 0
1703 ? pwrite (req->int1, req->ptr2, req->size, req->offs)
1704 : write (req->int1, req->ptr2, req->size); break;
1705
1706 case EIO_READAHEAD: req->result = readahead (req->int1, req->offs, req->size); break;
1707 case EIO_SENDFILE: req->result = eio__sendfile (req->int1, req->int2, req->offs, req->size, self); break;
1708
1709 case EIO_STAT: ALLOC (sizeof (EIO_STRUCT_STAT));
1710 req->result = stat (req->ptr1, (EIO_STRUCT_STAT *)req->ptr2); break;
1711 case EIO_LSTAT: ALLOC (sizeof (EIO_STRUCT_STAT));
1712 req->result = lstat (req->ptr1, (EIO_STRUCT_STAT *)req->ptr2); break;
1713 case EIO_FSTAT: ALLOC (sizeof (EIO_STRUCT_STAT));
1714 req->result = fstat (req->int1, (EIO_STRUCT_STAT *)req->ptr2); break;
1715
1716 case EIO_STATVFS: ALLOC (sizeof (EIO_STRUCT_STATVFS));
1717 req->result = statvfs (req->ptr1, (EIO_STRUCT_STATVFS *)req->ptr2); break;
1718 case EIO_FSTATVFS: ALLOC (sizeof (EIO_STRUCT_STATVFS));
1719 req->result = fstatvfs (req->int1, (EIO_STRUCT_STATVFS *)req->ptr2); break;
1720
1721 case EIO_CHOWN: req->result = chown (req->ptr1, req->int2, req->int3); break;
1722 case EIO_FCHOWN: req->result = fchown (req->int1, req->int2, req->int3); break;
1723 case EIO_CHMOD: req->result = chmod (req->ptr1, (mode_t)req->int2); break;
1724 case EIO_FCHMOD: req->result = fchmod (req->int1, (mode_t)req->int2); break;
1725 case EIO_TRUNCATE: req->result = truncate (req->ptr1, req->offs); break;
1726 case EIO_FTRUNCATE: req->result = ftruncate (req->int1, req->offs); break;
1727
1728 case EIO_OPEN: req->result = open (req->ptr1, req->int1, (mode_t)req->int2); break;
1729 case EIO_CLOSE: req->result = close (req->int1); break;
1730 case EIO_DUP2: req->result = dup2 (req->int1, req->int2); break;
1731 case EIO_UNLINK: req->result = unlink (req->ptr1); break;
1732 case EIO_RMDIR: req->result = rmdir (req->ptr1); break;
1733 case EIO_MKDIR: req->result = mkdir (req->ptr1, (mode_t)req->int2); break;
1734 case EIO_RENAME: req->result = rename (req->ptr1, req->ptr2); break;
1735 case EIO_LINK: req->result = link (req->ptr1, req->ptr2); break;
1736 case EIO_SYMLINK: req->result = symlink (req->ptr1, req->ptr2); break;
1737 case EIO_MKNOD: req->result = mknod (req->ptr1, (mode_t)req->int2, (dev_t)req->offs); break;
1738
1739 case EIO_READLINK: ALLOC (PATH_MAX);
1740 req->result = readlink (req->ptr1, req->ptr2, PATH_MAX); break;
1741
1742 case EIO_SYNC: req->result = 0; sync (); break;
1743 case EIO_FSYNC: req->result = fsync (req->int1); break;
1744 case EIO_FDATASYNC: req->result = fdatasync (req->int1); break;
1745 case EIO_MSYNC: req->result = eio__msync (req->ptr2, req->size, req->int1); break;
1746 case EIO_MTOUCH: req->result = eio__mtouch (req); break;
1747 case EIO_MLOCK: req->result = eio__mlock (req->ptr2, req->size); break;
1748 case EIO_MLOCKALL: req->result = eio__mlockall (req->int1); break;
1749 case EIO_SYNC_FILE_RANGE: req->result = eio__sync_file_range (req->int1, req->offs, req->size, req->int2); break;
1750
1751 case EIO_READDIR: eio__scandir (req, self); break;
1752
1753 case EIO_BUSY:
1754 #ifdef _WIN32
1755 Sleep (req->nv1 * 1e3);
1756 #else
1757 {
1758 struct timeval tv;
1759
1760 tv.tv_sec = req->nv1;
1761 tv.tv_usec = (req->nv1 - tv.tv_sec) * 1e6;
1762
1763 req->result = select (0, 0, 0, 0, &tv);
1764 }
1765 #endif
1766 break;
1767
1768 case EIO_UTIME:
1769 case EIO_FUTIME:
1770 {
1771 struct timeval tv[2];
1772 struct timeval *times;
1773
1774 if (req->nv1 != -1. || req->nv2 != -1.)
1775 {
1776 tv[0].tv_sec = req->nv1;
1777 tv[0].tv_usec = (req->nv1 - tv[0].tv_sec) * 1000000.;
1778 tv[1].tv_sec = req->nv2;
1779 tv[1].tv_usec = (req->nv2 - tv[1].tv_sec) * 1000000.;
1780
1781 times = tv;
1782 }
1783 else
1784 times = 0;
1785
1786 req->result = req->type == EIO_FUTIME
1787 ? futimes (req->int1, times)
1788 : utimes (req->ptr1, times);
1789 }
1790 break;
1791
1792 case EIO_GROUP:
1793 abort (); /* handled in eio_request */
1794
1795 case EIO_NOP:
1796 req->result = 0;
1797 break;
1798
1799 case EIO_CUSTOM:
1800 req->feed (req);
1801 break;
1802
1803 default:
1804 errno = ENOSYS;
1805 req->result = -1;
1806 break;
1807 }
1808
1809 req->errorno = errno;
1810 }
1811
1812 #ifndef EIO_NO_WRAPPERS
1813
1814 eio_req *eio_nop (int pri, eio_cb cb, void *data)
1815 {
1816 REQ (EIO_NOP); SEND;
1817 }
1818
1819 eio_req *eio_busy (double delay, int pri, eio_cb cb, void *data)
1820 {
1821 REQ (EIO_BUSY); req->nv1 = delay; SEND;
1822 }
1823
1824 eio_req *eio_sync (int pri, eio_cb cb, void *data)
1825 {
1826 REQ (EIO_SYNC); SEND;
1827 }
1828
1829 eio_req *eio_fsync (int fd, int pri, eio_cb cb, void *data)
1830 {
1831 REQ (EIO_FSYNC); req->int1 = fd; SEND;
1832 }
1833
1834 eio_req *eio_msync (void *addr, size_t length, int flags, int pri, eio_cb cb, void *data)
1835 {
1836 REQ (EIO_MSYNC); req->ptr2 = addr; req->size = length; req->int1 = flags; SEND;
1837 }
1838
1839 eio_req *eio_mtouch (void *addr, size_t length, int flags, int pri, eio_cb cb, void *data)
1840 {
1841 REQ (EIO_MTOUCH); req->ptr2 = addr; req->size = length; req->int1 = flags; SEND;
1842 }
1843
1844 eio_req *eio_mlock (void *addr, size_t length, int pri, eio_cb cb, void *data)
1845 {
1846 REQ (EIO_MLOCK); req->ptr2 = addr; req->size = length; SEND;
1847 }
1848
1849 eio_req *eio_mlockall (int flags, int pri, eio_cb cb, void *data)
1850 {
1851 REQ (EIO_MLOCKALL); req->int1 = flags; SEND;
1852 }
1853
1854 eio_req *eio_sync_file_range (int fd, off_t offset, size_t nbytes, unsigned int flags, int pri, eio_cb cb, void *data)
1855 {
1856 REQ (EIO_SYNC_FILE_RANGE); req->int1 = fd; req->offs = offset; req->size = nbytes; req->int2 = flags; SEND;
1857 }
1858
1859 eio_req *eio_fdatasync (int fd, int pri, eio_cb cb, void *data)
1860 {
1861 REQ (EIO_FDATASYNC); req->int1 = fd; SEND;
1862 }
1863
1864 eio_req *eio_close (int fd, int pri, eio_cb cb, void *data)
1865 {
1866 REQ (EIO_CLOSE); req->int1 = fd; SEND;
1867 }
1868
1869 eio_req *eio_readahead (int fd, off_t offset, size_t length, int pri, eio_cb cb, void *data)
1870 {
1871 REQ (EIO_READAHEAD); req->int1 = fd; req->offs = offset; req->size = length; SEND;
1872 }
1873
1874 eio_req *eio_read (int fd, void *buf, size_t length, off_t offset, int pri, eio_cb cb, void *data)
1875 {
1876 REQ (EIO_READ); req->int1 = fd; req->offs = offset; req->size = length; req->ptr2 = buf; SEND;
1877 }
1878
1879 eio_req *eio_write (int fd, void *buf, size_t length, off_t offset, int pri, eio_cb cb, void *data)
1880 {
1881 REQ (EIO_WRITE); req->int1 = fd; req->offs = offset; req->size = length; req->ptr2 = buf; SEND;
1882 }
1883
1884 eio_req *eio_fstat (int fd, int pri, eio_cb cb, void *data)
1885 {
1886 REQ (EIO_FSTAT); req->int1 = fd; SEND;
1887 }
1888
1889 eio_req *eio_fstatvfs (int fd, int pri, eio_cb cb, void *data)
1890 {
1891 REQ (EIO_FSTATVFS); req->int1 = fd; SEND;
1892 }
1893
1894 eio_req *eio_futime (int fd, double atime, double mtime, int pri, eio_cb cb, void *data)
1895 {
1896 REQ (EIO_FUTIME); req->int1 = fd; req->nv1 = atime; req->nv2 = mtime; SEND;
1897 }
1898
1899 eio_req *eio_ftruncate (int fd, off_t offset, int pri, eio_cb cb, void *data)
1900 {
1901 REQ (EIO_FTRUNCATE); req->int1 = fd; req->offs = offset; SEND;
1902 }
1903
1904 eio_req *eio_fchmod (int fd, mode_t mode, int pri, eio_cb cb, void *data)
1905 {
1906 REQ (EIO_FCHMOD); req->int1 = fd; req->int2 = (long)mode; SEND;
1907 }
1908
1909 eio_req *eio_fchown (int fd, uid_t uid, gid_t gid, int pri, eio_cb cb, void *data)
1910 {
1911 REQ (EIO_FCHOWN); req->int1 = fd; req->int2 = (long)uid; req->int3 = (long)gid; SEND;
1912 }
1913
1914 eio_req *eio_dup2 (int fd, int fd2, int pri, eio_cb cb, void *data)
1915 {
1916 REQ (EIO_DUP2); req->int1 = fd; req->int2 = fd2; SEND;
1917 }
1918
1919 eio_req *eio_sendfile (int out_fd, int in_fd, off_t in_offset, size_t length, int pri, eio_cb cb, void *data)
1920 {
1921 REQ (EIO_SENDFILE); req->int1 = out_fd; req->int2 = in_fd; req->offs = in_offset; req->size = length; SEND;
1922 }
1923
1924 eio_req *eio_open (const char *path, int flags, mode_t mode, int pri, eio_cb cb, void *data)
1925 {
1926 REQ (EIO_OPEN); PATH; req->int1 = flags; req->int2 = (long)mode; SEND;
1927 }
1928
1929 eio_req *eio_utime (const char *path, double atime, double mtime, int pri, eio_cb cb, void *data)
1930 {
1931 REQ (EIO_UTIME); PATH; req->nv1 = atime; req->nv2 = mtime; SEND;
1932 }
1933
1934 eio_req *eio_truncate (const char *path, off_t offset, int pri, eio_cb cb, void *data)
1935 {
1936 REQ (EIO_TRUNCATE); PATH; req->offs = offset; SEND;
1937 }
1938
1939 eio_req *eio_chown (const char *path, uid_t uid, gid_t gid, int pri, eio_cb cb, void *data)
1940 {
1941 REQ (EIO_CHOWN); PATH; req->int2 = (long)uid; req->int3 = (long)gid; SEND;
1942 }
1943
1944 eio_req *eio_chmod (const char *path, mode_t mode, int pri, eio_cb cb, void *data)
1945 {
1946 REQ (EIO_CHMOD); PATH; req->int2 = (long)mode; SEND;
1947 }
1948
1949 eio_req *eio_mkdir (const char *path, mode_t mode, int pri, eio_cb cb, void *data)
1950 {
1951 REQ (EIO_MKDIR); PATH; req->int2 = (long)mode; SEND;
1952 }
1953
1954 static eio_req *
1955 eio__1path (int type, const char *path, int pri, eio_cb cb, void *data)
1956 {
1957 REQ (type); PATH; SEND;
1958 }
1959
1960 eio_req *eio_readlink (const char *path, int pri, eio_cb cb, void *data)
1961 {
1962 return eio__1path (EIO_READLINK, path, pri, cb, data);
1963 }
1964
1965 eio_req *eio_stat (const char *path, int pri, eio_cb cb, void *data)
1966 {
1967 return eio__1path (EIO_STAT, path, pri, cb, data);
1968 }
1969
1970 eio_req *eio_lstat (const char *path, int pri, eio_cb cb, void *data)
1971 {
1972 return eio__1path (EIO_LSTAT, path, pri, cb, data);
1973 }
1974
1975 eio_req *eio_statvfs (const char *path, int pri, eio_cb cb, void *data)
1976 {
1977 return eio__1path (EIO_STATVFS, path, pri, cb, data);
1978 }
1979
1980 eio_req *eio_unlink (const char *path, int pri, eio_cb cb, void *data)
1981 {
1982 return eio__1path (EIO_UNLINK, path, pri, cb, data);
1983 }
1984
1985 eio_req *eio_rmdir (const char *path, int pri, eio_cb cb, void *data)
1986 {
1987 return eio__1path (EIO_RMDIR, path, pri, cb, data);
1988 }
1989
1990 eio_req *eio_readdir (const char *path, int flags, int pri, eio_cb cb, void *data)
1991 {
1992 REQ (EIO_READDIR); PATH; req->int1 = flags; SEND;
1993 }
1994
1995 eio_req *eio_mknod (const char *path, mode_t mode, dev_t dev, int pri, eio_cb cb, void *data)
1996 {
1997 REQ (EIO_MKNOD); PATH; req->int2 = (long)mode; req->offs = (off_t)dev; SEND;
1998 }
1999
2000 static eio_req *
2001 eio__2path (int type, const char *path, const char *new_path, int pri, eio_cb cb, void *data)
2002 {
2003 REQ (type); PATH;
2004
2005 req->flags |= EIO_FLAG_PTR2_FREE;
2006 req->ptr2 = strdup (new_path);
2007 if (!req->ptr2)
2008 {
2009 eio_api_destroy (req);
2010 return 0;
2011 }
2012
2013 SEND;
2014 }
2015
2016 eio_req *eio_link (const char *path, const char *new_path, int pri, eio_cb cb, void *data)
2017 {
2018 return eio__2path (EIO_LINK, path, new_path, pri, cb, data);
2019 }
2020
2021 eio_req *eio_symlink (const char *path, const char *new_path, int pri, eio_cb cb, void *data)
2022 {
2023 return eio__2path (EIO_SYMLINK, path, new_path, pri, cb, data);
2024 }
2025
2026 eio_req *eio_rename (const char *path, const char *new_path, int pri, eio_cb cb, void *data)
2027 {
2028 return eio__2path (EIO_RENAME, path, new_path, pri, cb, data);
2029 }
2030
2031 eio_req *eio_custom (void (*)(eio_req *) execute, int pri, eio_cb cb, void *data);
2032 {
2033 REQ (EIO_CUSTOM); req->feed = execute; SEND;
2034 }
2035
2036 #endif
2037
2038 eio_req *eio_grp (eio_cb cb, void *data)
2039 {
2040 const int pri = EIO_PRI_MAX;
2041
2042 REQ (EIO_GROUP); SEND;
2043 }
2044
2045 #undef REQ
2046 #undef PATH
2047 #undef SEND
2048
2049 /*****************************************************************************/
2050 /* grp functions */
2051
2052 void eio_grp_feed (eio_req *grp, void (*feed)(eio_req *req), int limit)
2053 {
2054 grp->int2 = limit;
2055 grp->feed = feed;
2056
2057 grp_try_feed (grp);
2058 }
2059
2060 void eio_grp_limit (eio_req *grp, int limit)
2061 {
2062 grp->int2 = limit;
2063
2064 grp_try_feed (grp);
2065 }
2066
2067 void eio_grp_add (eio_req *grp, eio_req *req)
2068 {
2069 assert (("cannot add requests to IO::AIO::GRP after the group finished", grp->int1 != 2));
2070
2071 grp->flags |= EIO_FLAG_GROUPADD;
2072
2073 ++grp->size;
2074 req->grp = grp;
2075
2076 req->grp_prev = 0;
2077 req->grp_next = grp->grp_first;
2078
2079 if (grp->grp_first)
2080 grp->grp_first->grp_prev = req;
2081
2082 grp->grp_first = req;
2083 }
2084
2085 /*****************************************************************************/
2086 /* misc garbage */
2087
2088 ssize_t eio_sendfile_sync (int ofd, int ifd, off_t offset, size_t count)
2089 {
2090 etp_worker wrk;
2091 ssize_t ret;
2092
2093 wrk.dbuf = 0;
2094
2095 ret = eio__sendfile (ofd, ifd, offset, count, &wrk);
2096
2097 if (wrk.dbuf)
2098 free (wrk.dbuf);
2099
2100 return ret;
2101 }
2102