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Revision: 1.21
Committed: Sat Jun 21 00:13:13 2008 UTC (15 years, 11 months ago) by root
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Branch: MAIN
Changes since 1.20: +2 -2 lines
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1 root 1.14 /*
2     * libeio implementation
3     *
4     * Copyright (c) 2007,2008 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 root 1.1 #include "eio.h"
41     #include "xthread.h"
42    
43     #include <errno.h>
44     #include <stddef.h>
45     #include <stdlib.h>
46 root 1.3 #include <string.h>
47 root 1.1 #include <errno.h>
48     #include <sys/types.h>
49     #include <sys/stat.h>
50     #include <limits.h>
51     #include <fcntl.h>
52 root 1.8 #include <assert.h>
53 root 1.1
54     #ifndef EIO_FINISH
55     # define EIO_FINISH(req) ((req)->finish) && !EIO_CANCELLED (req) ? (req)->finish (req) : 0
56     #endif
57    
58     #ifndef EIO_DESTROY
59     # define EIO_DESTROY(req) do { if ((req)->destroy) (req)->destroy (req); } while (0)
60     #endif
61    
62     #ifndef EIO_FEED
63     # define EIO_FEED(req) do { if ((req)->feed ) (req)->feed (req); } while (0)
64     #endif
65    
66     #ifdef _WIN32
67    
68     /*doh*/
69    
70     #else
71    
72     # include "config.h"
73     # include <sys/time.h>
74     # include <sys/select.h>
75     # include <unistd.h>
76     # include <utime.h>
77     # include <signal.h>
78 root 1.4 # include <dirent.h>
79 root 1.1
80     # ifndef EIO_STRUCT_DIRENT
81     # define EIO_STRUCT_DIRENT struct dirent
82     # endif
83    
84     #endif
85    
86     #if HAVE_SENDFILE
87     # if __linux
88     # include <sys/sendfile.h>
89     # elif __freebsd
90     # include <sys/socket.h>
91     # include <sys/uio.h>
92     # elif __hpux
93     # include <sys/socket.h>
94     # elif __solaris /* not yet */
95     # include <sys/sendfile.h>
96     # else
97     # error sendfile support requested but not available
98     # endif
99     #endif
100    
101     /* number of seconds after which an idle threads exit */
102     #define IDLE_TIMEOUT 10
103    
104     /* used for struct dirent, AIX doesn't provide it */
105     #ifndef NAME_MAX
106     # define NAME_MAX 4096
107     #endif
108    
109     /* buffer size for various temporary buffers */
110     #define EIO_BUFSIZE 65536
111    
112     #define dBUF \
113     char *eio_buf; \
114 root 1.14 ETP_WORKER_LOCK (self); \
115 root 1.1 self->dbuf = eio_buf = malloc (EIO_BUFSIZE); \
116 root 1.14 ETP_WORKER_UNLOCK (self); \
117 root 1.9 errno = ENOMEM; \
118 root 1.1 if (!eio_buf) \
119     return -1;
120    
121     #define EIO_TICKS ((1000000 + 1023) >> 10)
122    
123 root 1.13 /*****************************************************************************/
124 root 1.1
125 root 1.14 #define ETP_PRI_MIN EIO_PRI_MIN
126     #define ETP_PRI_MAX EIO_PRI_MAX
127    
128 root 1.15 struct etp_worker;
129    
130 root 1.14 #define ETP_REQ eio_req
131     #define ETP_DESTROY(req) eio_destroy (req)
132     static int eio_finish (eio_req *req);
133     #define ETP_FINISH(req) eio_finish (req)
134 root 1.15 static void eio_execute (struct etp_worker *self, eio_req *req);
135     #define ETP_EXECUTE(wrk,req) eio_execute (wrk,req)
136 root 1.14
137     #define ETP_WORKER_CLEAR(req) \
138     if (wrk->dbuf) \
139     { \
140     free (wrk->dbuf); \
141     wrk->dbuf = 0; \
142     } \
143     \
144     if (wrk->dirp) \
145     { \
146     closedir (wrk->dirp); \
147     wrk->dirp = 0; \
148     }
149     #define ETP_WORKER_COMMON \
150     void *dbuf; \
151     DIR *dirp;
152    
153     /*****************************************************************************/
154    
155     #define ETP_NUM_PRI (ETP_PRI_MAX - ETP_PRI_MIN + 1)
156    
157 root 1.1 /* calculcate time difference in ~1/EIO_TICKS of a second */
158     static int tvdiff (struct timeval *tv1, struct timeval *tv2)
159     {
160     return (tv2->tv_sec - tv1->tv_sec ) * EIO_TICKS
161     + ((tv2->tv_usec - tv1->tv_usec) >> 10);
162     }
163    
164 root 1.9 static unsigned int started, idle, wanted = 4;
165 root 1.1
166 root 1.14 static void (*want_poll_cb) (void);
167     static void (*done_poll_cb) (void);
168 root 1.13
169 root 1.14 static unsigned int max_poll_time; /* reslock */
170     static unsigned int max_poll_reqs; /* reslock */
171 root 1.13
172 root 1.14 static volatile unsigned int nreqs; /* reqlock */
173     static volatile unsigned int nready; /* reqlock */
174     static volatile unsigned int npending; /* reqlock */
175 root 1.13 static volatile unsigned int max_idle = 4;
176    
177 root 1.14 static mutex_t wrklock = X_MUTEX_INIT;
178 root 1.13 static mutex_t reslock = X_MUTEX_INIT;
179     static mutex_t reqlock = X_MUTEX_INIT;
180     static cond_t reqwait = X_COND_INIT;
181 root 1.1
182 root 1.14 typedef struct etp_worker
183 root 1.9 {
184 root 1.14 /* locked by wrklock */
185     struct etp_worker *prev, *next;
186 root 1.1
187     thread_t tid;
188    
189 root 1.14 /* locked by reslock, reqlock or wrklock */
190     ETP_REQ *req; /* currently processed request */
191    
192     ETP_WORKER_COMMON
193     } etp_worker;
194    
195     static etp_worker wrk_first = { &wrk_first, &wrk_first, 0 }; /* NOT etp */
196 root 1.1
197 root 1.14 #define ETP_WORKER_LOCK(wrk) X_LOCK (wrklock)
198     #define ETP_WORKER_UNLOCK(wrk) X_UNLOCK (wrklock)
199 root 1.13
200     /* worker threads management */
201 root 1.1
202 root 1.14 static void etp_worker_clear (etp_worker *wrk)
203 root 1.1 {
204 root 1.14 ETP_WORKER_CLEAR (wrk);
205 root 1.1 }
206    
207 root 1.14 static void etp_worker_free (etp_worker *wrk)
208 root 1.1 {
209     wrk->next->prev = wrk->prev;
210     wrk->prev->next = wrk->next;
211    
212     free (wrk);
213     }
214    
215 root 1.14 static unsigned int etp_nreqs (void)
216 root 1.1 {
217 root 1.14 int retval;
218     if (WORDACCESS_UNSAFE) X_LOCK (reqlock);
219     retval = nreqs;
220     if (WORDACCESS_UNSAFE) X_UNLOCK (reqlock);
221     return retval;
222 root 1.1 }
223    
224 root 1.14 static unsigned int etp_nready (void)
225 root 1.1 {
226     unsigned int retval;
227    
228     if (WORDACCESS_UNSAFE) X_LOCK (reqlock);
229     retval = nready;
230     if (WORDACCESS_UNSAFE) X_UNLOCK (reqlock);
231    
232     return retval;
233     }
234    
235 root 1.14 static unsigned int etp_npending (void)
236 root 1.1 {
237     unsigned int retval;
238    
239     if (WORDACCESS_UNSAFE) X_LOCK (reqlock);
240     retval = npending;
241     if (WORDACCESS_UNSAFE) X_UNLOCK (reqlock);
242    
243     return retval;
244     }
245    
246 root 1.14 static unsigned int etp_nthreads (void)
247 root 1.1 {
248     unsigned int retval;
249    
250     if (WORDACCESS_UNSAFE) X_LOCK (reqlock);
251     retval = started;
252     if (WORDACCESS_UNSAFE) X_UNLOCK (reqlock);
253    
254     return retval;
255     }
256    
257     /*
258     * a somewhat faster data structure might be nice, but
259     * with 8 priorities this actually needs <20 insns
260     * per shift, the most expensive operation.
261     */
262     typedef struct {
263 root 1.14 ETP_REQ *qs[ETP_NUM_PRI], *qe[ETP_NUM_PRI]; /* qstart, qend */
264 root 1.1 int size;
265 root 1.14 } etp_reqq;
266 root 1.1
267 root 1.14 static etp_reqq req_queue;
268     static etp_reqq res_queue;
269 root 1.1
270 root 1.14 static int reqq_push (etp_reqq *q, ETP_REQ *req)
271 root 1.1 {
272     int pri = req->pri;
273     req->next = 0;
274    
275     if (q->qe[pri])
276     {
277     q->qe[pri]->next = req;
278     q->qe[pri] = req;
279     }
280     else
281     q->qe[pri] = q->qs[pri] = req;
282    
283     return q->size++;
284     }
285    
286 root 1.14 static ETP_REQ *reqq_shift (etp_reqq *q)
287 root 1.1 {
288     int pri;
289    
290     if (!q->size)
291     return 0;
292    
293     --q->size;
294    
295 root 1.14 for (pri = ETP_NUM_PRI; pri--; )
296 root 1.1 {
297     eio_req *req = q->qs[pri];
298    
299     if (req)
300     {
301     if (!(q->qs[pri] = (eio_req *)req->next))
302     q->qe[pri] = 0;
303    
304     return req;
305     }
306     }
307    
308     abort ();
309     }
310    
311 root 1.13 static void etp_atfork_prepare (void)
312     {
313 root 1.14 X_LOCK (wrklock);
314 root 1.13 X_LOCK (reqlock);
315     X_LOCK (reslock);
316     #if !HAVE_PREADWRITE
317     X_LOCK (preadwritelock);
318     #endif
319     }
320    
321     static void etp_atfork_parent (void)
322     {
323     #if !HAVE_PREADWRITE
324     X_UNLOCK (preadwritelock);
325     #endif
326     X_UNLOCK (reslock);
327     X_UNLOCK (reqlock);
328 root 1.14 X_UNLOCK (wrklock);
329 root 1.13 }
330    
331     static void etp_atfork_child (void)
332     {
333 root 1.14 ETP_REQ *prv;
334 root 1.13
335 root 1.21 while ((prv = reqq_shift (&req_queue)))
336 root 1.14 ETP_DESTROY (prv);
337 root 1.13
338 root 1.21 while ((prv = reqq_shift (&res_queue)))
339 root 1.14 ETP_DESTROY (prv);
340 root 1.13
341     while (wrk_first.next != &wrk_first)
342     {
343 root 1.14 etp_worker *wrk = wrk_first.next;
344 root 1.13
345     if (wrk->req)
346 root 1.14 ETP_DESTROY (wrk->req);
347 root 1.13
348 root 1.14 etp_worker_clear (wrk);
349     etp_worker_free (wrk);
350 root 1.13 }
351    
352     started = 0;
353     idle = 0;
354     nreqs = 0;
355     nready = 0;
356     npending = 0;
357    
358     etp_atfork_parent ();
359     }
360    
361     static void
362     etp_once_init (void)
363     {
364     X_THREAD_ATFORK (etp_atfork_prepare, etp_atfork_parent, etp_atfork_child);
365     }
366    
367     static int
368 root 1.14 etp_init (void (*want_poll)(void), void (*done_poll)(void))
369 root 1.13 {
370     static pthread_once_t doinit = PTHREAD_ONCE_INIT;
371    
372     pthread_once (&doinit, etp_once_init);
373    
374 root 1.14 want_poll_cb = want_poll;
375     done_poll_cb = done_poll;
376 root 1.19
377     return 0;
378 root 1.14 }
379    
380     X_THREAD_PROC (etp_proc);
381    
382     static void etp_start_thread (void)
383     {
384     etp_worker *wrk = calloc (1, sizeof (etp_worker));
385    
386     /*TODO*/
387     assert (("unable to allocate worker thread data", wrk));
388    
389     X_LOCK (wrklock);
390    
391     if (thread_create (&wrk->tid, etp_proc, (void *)wrk))
392     {
393     wrk->prev = &wrk_first;
394     wrk->next = wrk_first.next;
395     wrk_first.next->prev = wrk;
396     wrk_first.next = wrk;
397     ++started;
398     }
399     else
400     free (wrk);
401    
402     X_UNLOCK (wrklock);
403     }
404    
405     static void etp_maybe_start_thread (void)
406     {
407     if (etp_nthreads () >= wanted)
408     return;
409    
410     /* todo: maybe use idle here, but might be less exact */
411     if (0 <= (int)etp_nthreads () + (int)etp_npending () - (int)etp_nreqs ())
412     return;
413    
414     etp_start_thread ();
415     }
416    
417     static void etp_end_thread (void)
418     {
419     eio_req *req = calloc (1, sizeof (eio_req));
420    
421     req->type = -1;
422     req->pri = ETP_PRI_MAX - ETP_PRI_MIN;
423    
424     X_LOCK (reqlock);
425     reqq_push (&req_queue, req);
426     X_COND_SIGNAL (reqwait);
427     X_UNLOCK (reqlock);
428    
429     X_LOCK (wrklock);
430     --started;
431     X_UNLOCK (wrklock);
432     }
433    
434     static int etp_poll (void)
435     {
436     unsigned int maxreqs;
437     unsigned int maxtime;
438     struct timeval tv_start, tv_now;
439    
440     X_LOCK (reslock);
441     maxreqs = max_poll_reqs;
442     maxtime = max_poll_time;
443     X_UNLOCK (reslock);
444    
445     if (maxtime)
446     gettimeofday (&tv_start, 0);
447    
448     for (;;)
449     {
450     ETP_REQ *req;
451    
452     etp_maybe_start_thread ();
453    
454     X_LOCK (reslock);
455     req = reqq_shift (&res_queue);
456    
457     if (req)
458     {
459     --npending;
460    
461     if (!res_queue.size && done_poll_cb)
462     done_poll_cb ();
463     }
464    
465     X_UNLOCK (reslock);
466    
467     if (!req)
468     return 0;
469    
470     X_LOCK (reqlock);
471     --nreqs;
472     X_UNLOCK (reqlock);
473    
474     if (req->type == EIO_GROUP && req->size)
475     {
476     req->int1 = 1; /* mark request as delayed */
477     continue;
478     }
479     else
480     {
481     int res = ETP_FINISH (req);
482     if (res)
483     return res;
484     }
485    
486     if (maxreqs && !--maxreqs)
487     break;
488    
489     if (maxtime)
490     {
491     gettimeofday (&tv_now, 0);
492    
493     if (tvdiff (&tv_start, &tv_now) >= maxtime)
494     break;
495     }
496     }
497    
498     errno = EAGAIN;
499     return -1;
500     }
501    
502     static void etp_cancel (ETP_REQ *req)
503     {
504     X_LOCK (wrklock);
505     req->flags |= EIO_FLAG_CANCELLED;
506     X_UNLOCK (wrklock);
507    
508     eio_grp_cancel (req);
509     }
510    
511     static void etp_submit (ETP_REQ *req)
512     {
513     req->pri -= ETP_PRI_MIN;
514    
515     if (req->pri < ETP_PRI_MIN - ETP_PRI_MIN) req->pri = ETP_PRI_MIN - ETP_PRI_MIN;
516     if (req->pri > ETP_PRI_MAX - ETP_PRI_MIN) req->pri = ETP_PRI_MAX - ETP_PRI_MIN;
517    
518     X_LOCK (reqlock);
519     ++nreqs;
520     ++nready;
521     reqq_push (&req_queue, req);
522     X_COND_SIGNAL (reqwait);
523     X_UNLOCK (reqlock);
524    
525     etp_maybe_start_thread ();
526     }
527    
528     static void etp_set_max_poll_time (double nseconds)
529     {
530     if (WORDACCESS_UNSAFE) X_LOCK (reslock);
531     max_poll_time = nseconds;
532     if (WORDACCESS_UNSAFE) X_UNLOCK (reslock);
533     }
534    
535     static void etp_set_max_poll_reqs (unsigned int maxreqs)
536     {
537     if (WORDACCESS_UNSAFE) X_LOCK (reslock);
538     max_poll_reqs = maxreqs;
539     if (WORDACCESS_UNSAFE) X_UNLOCK (reslock);
540     }
541 root 1.13
542 root 1.14 static void etp_set_max_idle (unsigned int nthreads)
543     {
544     if (WORDACCESS_UNSAFE) X_LOCK (reqlock);
545     max_idle = nthreads <= 0 ? 1 : nthreads;
546     if (WORDACCESS_UNSAFE) X_UNLOCK (reqlock);
547 root 1.13 }
548    
549 root 1.14 static void etp_set_min_parallel (unsigned int nthreads)
550     {
551     if (wanted < nthreads)
552     wanted = nthreads;
553     }
554    
555     static void etp_set_max_parallel (unsigned int nthreads)
556     {
557     if (wanted > nthreads)
558     wanted = nthreads;
559    
560     while (started > wanted)
561     etp_end_thread ();
562     }
563 root 1.13
564     /*****************************************************************************/
565    
566 root 1.2 static void grp_try_feed (eio_req *grp)
567 root 1.1 {
568     while (grp->size < grp->int2 && !EIO_CANCELLED (grp))
569     {
570     int old_len = grp->size;
571    
572     EIO_FEED (grp);
573    
574     /* stop if no progress has been made */
575     if (old_len == grp->size)
576     {
577     grp->feed = 0;
578 root 1.2 break;
579 root 1.1 }
580     }
581     }
582    
583     static int grp_dec (eio_req *grp)
584     {
585     --grp->size;
586    
587     /* call feeder, if applicable */
588 root 1.2 grp_try_feed (grp);
589 root 1.1
590     /* finish, if done */
591     if (!grp->size && grp->int1)
592 root 1.2 return eio_finish (grp);
593 root 1.1 else
594     return 0;
595     }
596    
597     void eio_destroy (eio_req *req)
598     {
599 root 1.6 if ((req)->flags & EIO_FLAG_PTR1_FREE) free (req->ptr1);
600     if ((req)->flags & EIO_FLAG_PTR2_FREE) free (req->ptr2);
601 root 1.1
602     EIO_DESTROY (req);
603     }
604    
605 root 1.2 static int eio_finish (eio_req *req)
606 root 1.1 {
607     int res = EIO_FINISH (req);
608    
609     if (req->grp)
610     {
611     int res2;
612     eio_req *grp = req->grp;
613    
614     /* unlink request */
615     if (req->grp_next) req->grp_next->grp_prev = req->grp_prev;
616     if (req->grp_prev) req->grp_prev->grp_next = req->grp_next;
617    
618     if (grp->grp_first == req)
619     grp->grp_first = req->grp_next;
620    
621     res2 = grp_dec (grp);
622    
623     if (!res && res2)
624     res = res2;
625     }
626    
627     eio_destroy (req);
628    
629     return res;
630     }
631    
632     void eio_grp_cancel (eio_req *grp)
633     {
634     for (grp = grp->grp_first; grp; grp = grp->grp_next)
635     eio_cancel (grp);
636     }
637    
638     void eio_cancel (eio_req *req)
639     {
640 root 1.14 etp_cancel (req);
641     }
642 root 1.1
643 root 1.14 void eio_submit (eio_req *req)
644     {
645     etp_submit (req);
646 root 1.1 }
647    
648 root 1.14 unsigned int eio_nreqs (void)
649 root 1.1 {
650 root 1.14 return etp_nreqs ();
651 root 1.1 }
652    
653 root 1.14 unsigned int eio_nready (void)
654 root 1.1 {
655 root 1.14 return etp_nready ();
656 root 1.1 }
657    
658 root 1.14 unsigned int eio_npending (void)
659 root 1.1 {
660 root 1.14 return etp_npending ();
661 root 1.1 }
662    
663 root 1.14 unsigned int eio_nthreads (void)
664 root 1.1 {
665 root 1.14 return etp_nthreads ();
666 root 1.1 }
667    
668     void eio_set_max_poll_time (double nseconds)
669     {
670 root 1.14 etp_set_max_poll_time (nseconds);
671 root 1.1 }
672    
673     void eio_set_max_poll_reqs (unsigned int maxreqs)
674     {
675 root 1.14 etp_set_max_poll_reqs (maxreqs);
676 root 1.1 }
677    
678     void eio_set_max_idle (unsigned int nthreads)
679     {
680 root 1.14 etp_set_max_idle (nthreads);
681 root 1.1 }
682    
683     void eio_set_min_parallel (unsigned int nthreads)
684     {
685 root 1.14 etp_set_min_parallel (nthreads);
686 root 1.1 }
687    
688     void eio_set_max_parallel (unsigned int nthreads)
689     {
690 root 1.14 etp_set_max_parallel (nthreads);
691 root 1.1 }
692    
693     int eio_poll (void)
694     {
695 root 1.14 return etp_poll ();
696 root 1.1 }
697    
698     /*****************************************************************************/
699     /* work around various missing functions */
700    
701     #if !HAVE_PREADWRITE
702 root 1.9 # define pread eio__pread
703     # define pwrite eio__pwrite
704 root 1.1
705     /*
706     * make our pread/pwrite safe against themselves, but not against
707     * normal read/write by using a mutex. slows down execution a lot,
708     * but that's your problem, not mine.
709     */
710     static mutex_t preadwritelock = X_MUTEX_INIT;
711    
712 root 1.9 static ssize_t
713     eio__pread (int fd, void *buf, size_t count, off_t offset)
714 root 1.1 {
715     ssize_t res;
716     off_t ooffset;
717    
718     X_LOCK (preadwritelock);
719     ooffset = lseek (fd, 0, SEEK_CUR);
720     lseek (fd, offset, SEEK_SET);
721     res = read (fd, buf, count);
722     lseek (fd, ooffset, SEEK_SET);
723     X_UNLOCK (preadwritelock);
724    
725     return res;
726     }
727    
728 root 1.9 static ssize_t
729     eio__pwrite (int fd, void *buf, size_t count, off_t offset)
730 root 1.1 {
731     ssize_t res;
732     off_t ooffset;
733    
734     X_LOCK (preadwritelock);
735     ooffset = lseek (fd, 0, SEEK_CUR);
736     lseek (fd, offset, SEEK_SET);
737     res = write (fd, buf, count);
738     lseek (fd, offset, SEEK_SET);
739     X_UNLOCK (preadwritelock);
740    
741     return res;
742     }
743     #endif
744    
745     #ifndef HAVE_FUTIMES
746    
747 root 1.9 # define utimes(path,times) eio__utimes (path, times)
748     # define futimes(fd,times) eio__futimes (fd, times)
749 root 1.1
750 root 1.9 static int
751     eio__utimes (const char *filename, const struct timeval times[2])
752 root 1.1 {
753     if (times)
754     {
755     struct utimbuf buf;
756    
757     buf.actime = times[0].tv_sec;
758     buf.modtime = times[1].tv_sec;
759    
760     return utime (filename, &buf);
761     }
762     else
763     return utime (filename, 0);
764     }
765    
766 root 1.9 static int eio__futimes (int fd, const struct timeval tv[2])
767 root 1.1 {
768     errno = ENOSYS;
769     return -1;
770     }
771    
772     #endif
773    
774     #if !HAVE_FDATASYNC
775     # define fdatasync fsync
776     #endif
777    
778     #if !HAVE_READAHEAD
779 root 1.9 # define readahead(fd,offset,count) eio__readahead (fd, offset, count, self)
780 root 1.1
781 root 1.9 static ssize_t
782 root 1.17 eio__readahead (int fd, off_t offset, size_t count, etp_worker *self)
783 root 1.1 {
784     size_t todo = count;
785     dBUF;
786    
787     while (todo > 0)
788     {
789     size_t len = todo < EIO_BUFSIZE ? todo : EIO_BUFSIZE;
790    
791 root 1.3 pread (fd, eio_buf, len, offset);
792 root 1.1 offset += len;
793     todo -= len;
794     }
795    
796     errno = 0;
797     return count;
798     }
799    
800     #endif
801    
802     /* sendfile always needs emulation */
803 root 1.9 static ssize_t
804 root 1.14 eio__sendfile (int ofd, int ifd, off_t offset, size_t count, etp_worker *self)
805 root 1.1 {
806     ssize_t res;
807    
808     if (!count)
809     return 0;
810    
811     #if HAVE_SENDFILE
812     # if __linux
813     res = sendfile (ofd, ifd, &offset, count);
814    
815     # elif __freebsd
816     /*
817     * Of course, the freebsd sendfile is a dire hack with no thoughts
818     * wasted on making it similar to other I/O functions.
819     */
820     {
821     off_t sbytes;
822     res = sendfile (ifd, ofd, offset, count, 0, &sbytes, 0);
823    
824     if (res < 0 && sbytes)
825     /* maybe only on EAGAIN: as usual, the manpage leaves you guessing */
826     res = sbytes;
827     }
828    
829     # elif __hpux
830     res = sendfile (ofd, ifd, offset, count, 0, 0);
831    
832     # elif __solaris
833     {
834     struct sendfilevec vec;
835     size_t sbytes;
836    
837     vec.sfv_fd = ifd;
838     vec.sfv_flag = 0;
839     vec.sfv_off = offset;
840     vec.sfv_len = count;
841    
842     res = sendfilev (ofd, &vec, 1, &sbytes);
843    
844     if (res < 0 && sbytes)
845     res = sbytes;
846     }
847    
848     # endif
849     #else
850     res = -1;
851     errno = ENOSYS;
852     #endif
853    
854     if (res < 0
855     && (errno == ENOSYS || errno == EINVAL || errno == ENOTSOCK
856     #if __solaris
857     || errno == EAFNOSUPPORT || errno == EPROTOTYPE
858     #endif
859     )
860     )
861     {
862     /* emulate sendfile. this is a major pain in the ass */
863     dBUF;
864    
865     res = 0;
866    
867     while (count)
868     {
869     ssize_t cnt;
870    
871     cnt = pread (ifd, eio_buf, count > EIO_BUFSIZE ? EIO_BUFSIZE : count, offset);
872    
873     if (cnt <= 0)
874     {
875     if (cnt && !res) res = -1;
876     break;
877     }
878    
879     cnt = write (ofd, eio_buf, cnt);
880    
881     if (cnt <= 0)
882     {
883     if (cnt && !res) res = -1;
884     break;
885     }
886    
887     offset += cnt;
888     res += cnt;
889     count -= cnt;
890     }
891     }
892    
893     return res;
894     }
895    
896     /* read a full directory */
897 root 1.9 static void
898 root 1.14 eio__scandir (eio_req *req, etp_worker *self)
899 root 1.1 {
900     DIR *dirp;
901     EIO_STRUCT_DIRENT *entp;
902     char *name, *names;
903     int memlen = 4096;
904     int memofs = 0;
905     int res = 0;
906    
907 root 1.14 X_LOCK (wrklock);
908 root 1.20 /* the corresponding closedir is in ETP_WORKER_CLEAR */
909 root 1.1 self->dirp = dirp = opendir (req->ptr1);
910     req->flags |= EIO_FLAG_PTR2_FREE;
911     req->ptr2 = names = malloc (memlen);
912 root 1.14 X_UNLOCK (wrklock);
913 root 1.1
914 root 1.16 if (dirp && names)
915 root 1.1 for (;;)
916     {
917     errno = 0;
918 root 1.16 entp = readdir (dirp);
919 root 1.1
920     if (!entp)
921     break;
922    
923     name = entp->d_name;
924    
925     if (name [0] != '.' || (name [1] && (name [1] != '.' || name [2])))
926     {
927     int len = strlen (name) + 1;
928    
929     res++;
930    
931     while (memofs + len > memlen)
932     {
933     memlen *= 2;
934 root 1.14 X_LOCK (wrklock);
935 root 1.1 req->ptr2 = names = realloc (names, memlen);
936 root 1.14 X_UNLOCK (wrklock);
937 root 1.1
938     if (!names)
939     break;
940     }
941    
942     memcpy (names + memofs, name, len);
943     memofs += len;
944     }
945     }
946    
947     if (errno)
948     res = -1;
949    
950     req->result = res;
951     }
952    
953     /*****************************************************************************/
954    
955 root 1.6 #define ALLOC(len) \
956     if (!req->ptr2) \
957     { \
958 root 1.14 X_LOCK (wrklock); \
959 root 1.7 req->flags |= EIO_FLAG_PTR2_FREE; \
960 root 1.14 X_UNLOCK (wrklock); \
961 root 1.7 req->ptr2 = malloc (len); \
962     if (!req->ptr2) \
963     { \
964     errno = ENOMEM; \
965     req->result = -1; \
966     break; \
967     } \
968 root 1.6 }
969    
970 root 1.14 X_THREAD_PROC (etp_proc)
971 root 1.1 {
972 root 1.14 ETP_REQ *req;
973 root 1.1 struct timespec ts;
974 root 1.14 etp_worker *self = (etp_worker *)thr_arg;
975 root 1.1
976     /* try to distribute timeouts somewhat randomly */
977     ts.tv_nsec = ((unsigned long)self & 1023UL) * (1000000000UL / 1024UL);
978    
979     for (;;)
980     {
981     X_LOCK (reqlock);
982    
983     for (;;)
984     {
985     self->req = req = reqq_shift (&req_queue);
986    
987     if (req)
988     break;
989    
990     ++idle;
991    
992 root 1.14 ts.tv_sec = time (0) + IDLE_TIMEOUT;
993 root 1.1 if (X_COND_TIMEDWAIT (reqwait, reqlock, ts) == ETIMEDOUT)
994     {
995     if (idle > max_idle)
996     {
997     --idle;
998     X_UNLOCK (reqlock);
999 root 1.14 X_LOCK (wrklock);
1000 root 1.1 --started;
1001 root 1.14 X_UNLOCK (wrklock);
1002 root 1.1 goto quit;
1003     }
1004    
1005     /* we are allowed to idle, so do so without any timeout */
1006     X_COND_WAIT (reqwait, reqlock);
1007     }
1008    
1009     --idle;
1010     }
1011    
1012     --nready;
1013    
1014     X_UNLOCK (reqlock);
1015    
1016 root 1.15 if (req->type < 0)
1017     goto quit;
1018 root 1.1
1019     if (!EIO_CANCELLED (req))
1020 root 1.15 ETP_EXECUTE (self, req);
1021 root 1.1
1022     X_LOCK (reslock);
1023    
1024     ++npending;
1025    
1026 root 1.14 if (!reqq_push (&res_queue, req) && want_poll_cb)
1027     want_poll_cb ();
1028 root 1.1
1029     self->req = 0;
1030 root 1.14 etp_worker_clear (self);
1031 root 1.1
1032     X_UNLOCK (reslock);
1033     }
1034    
1035     quit:
1036 root 1.14 X_LOCK (wrklock);
1037     etp_worker_free (self);
1038     X_UNLOCK (wrklock);
1039 root 1.1
1040     return 0;
1041     }
1042    
1043     /*****************************************************************************/
1044    
1045     int eio_init (void (*want_poll)(void), void (*done_poll)(void))
1046     {
1047 root 1.19 return etp_init (want_poll, done_poll);
1048 root 1.1 }
1049    
1050 root 1.6 static void eio_api_destroy (eio_req *req)
1051     {
1052     free (req);
1053     }
1054    
1055     #define REQ(rtype) \
1056     eio_req *req; \
1057     \
1058     req = (eio_req *)calloc (1, sizeof *req); \
1059     if (!req) \
1060     return 0; \
1061     \
1062 root 1.11 req->type = rtype; \
1063     req->pri = pri; \
1064     req->finish = cb; \
1065     req->data = data; \
1066 root 1.6 req->destroy = eio_api_destroy;
1067    
1068     #define SEND eio_submit (req); return req
1069    
1070 root 1.9 #define PATH \
1071     req->flags |= EIO_FLAG_PTR1_FREE; \
1072     req->ptr1 = strdup (path); \
1073     if (!req->ptr1) \
1074     { \
1075     eio_api_destroy (req); \
1076     return 0; \
1077     }
1078    
1079 root 1.15 static void eio_execute (etp_worker *self, eio_req *req)
1080     {
1081     errno = 0;
1082    
1083     switch (req->type)
1084     {
1085     case EIO_READ: ALLOC (req->size);
1086     req->result = req->offs >= 0
1087     ? pread (req->int1, req->ptr2, req->size, req->offs)
1088     : read (req->int1, req->ptr2, req->size); break;
1089     case EIO_WRITE: req->result = req->offs >= 0
1090     ? pwrite (req->int1, req->ptr2, req->size, req->offs)
1091     : write (req->int1, req->ptr2, req->size); break;
1092    
1093     case EIO_READAHEAD: req->result = readahead (req->int1, req->offs, req->size); break;
1094     case EIO_SENDFILE: req->result = eio__sendfile (req->int1, req->int2, req->offs, req->size, self); break;
1095    
1096     case EIO_STAT: ALLOC (sizeof (EIO_STRUCT_STAT));
1097     req->result = stat (req->ptr1, (EIO_STRUCT_STAT *)req->ptr2); break;
1098     case EIO_LSTAT: ALLOC (sizeof (EIO_STRUCT_STAT));
1099     req->result = lstat (req->ptr1, (EIO_STRUCT_STAT *)req->ptr2); break;
1100     case EIO_FSTAT: ALLOC (sizeof (EIO_STRUCT_STAT));
1101     req->result = fstat (req->int1, (EIO_STRUCT_STAT *)req->ptr2); break;
1102    
1103     case EIO_CHOWN: req->result = chown (req->ptr1, req->int2, req->int3); break;
1104     case EIO_FCHOWN: req->result = fchown (req->int1, req->int2, req->int3); break;
1105     case EIO_CHMOD: req->result = chmod (req->ptr1, (mode_t)req->int2); break;
1106     case EIO_FCHMOD: req->result = fchmod (req->int1, (mode_t)req->int2); break;
1107     case EIO_TRUNCATE: req->result = truncate (req->ptr1, req->offs); break;
1108     case EIO_FTRUNCATE: req->result = ftruncate (req->int1, req->offs); break;
1109    
1110     case EIO_OPEN: req->result = open (req->ptr1, req->int1, (mode_t)req->int2); break;
1111     case EIO_CLOSE: req->result = close (req->int1); break;
1112     case EIO_DUP2: req->result = dup2 (req->int1, req->int2); break;
1113     case EIO_UNLINK: req->result = unlink (req->ptr1); break;
1114     case EIO_RMDIR: req->result = rmdir (req->ptr1); break;
1115     case EIO_MKDIR: req->result = mkdir (req->ptr1, (mode_t)req->int2); break;
1116     case EIO_RENAME: req->result = rename (req->ptr1, req->ptr2); break;
1117     case EIO_LINK: req->result = link (req->ptr1, req->ptr2); break;
1118     case EIO_SYMLINK: req->result = symlink (req->ptr1, req->ptr2); break;
1119 root 1.18 case EIO_MKNOD: req->result = mknod (req->ptr1, (mode_t)req->int2, (dev_t)req->int3); break;
1120 root 1.15
1121     case EIO_READLINK: ALLOC (NAME_MAX);
1122     req->result = readlink (req->ptr1, req->ptr2, NAME_MAX); break;
1123    
1124     case EIO_SYNC: req->result = 0; sync (); break;
1125     case EIO_FSYNC: req->result = fsync (req->int1); break;
1126     case EIO_FDATASYNC: req->result = fdatasync (req->int1); break;
1127    
1128     case EIO_READDIR: eio__scandir (req, self); break;
1129    
1130     case EIO_BUSY:
1131     #ifdef _WIN32
1132     Sleep (req->nv1 * 1000.);
1133     #else
1134     {
1135     struct timeval tv;
1136    
1137     tv.tv_sec = req->nv1;
1138     tv.tv_usec = (req->nv1 - tv.tv_sec) * 1000000.;
1139    
1140     req->result = select (0, 0, 0, 0, &tv);
1141     }
1142     #endif
1143     break;
1144    
1145     case EIO_UTIME:
1146     case EIO_FUTIME:
1147     {
1148     struct timeval tv[2];
1149     struct timeval *times;
1150    
1151     if (req->nv1 != -1. || req->nv2 != -1.)
1152     {
1153     tv[0].tv_sec = req->nv1;
1154     tv[0].tv_usec = (req->nv1 - tv[0].tv_sec) * 1000000.;
1155     tv[1].tv_sec = req->nv2;
1156     tv[1].tv_usec = (req->nv2 - tv[1].tv_sec) * 1000000.;
1157    
1158     times = tv;
1159     }
1160     else
1161     times = 0;
1162    
1163    
1164     req->result = req->type == EIO_FUTIME
1165     ? futimes (req->int1, times)
1166     : utimes (req->ptr1, times);
1167     }
1168    
1169     case EIO_GROUP:
1170     case EIO_NOP:
1171     req->result = 0;
1172     break;
1173    
1174     case EIO_CUSTOM:
1175     req->feed (req);
1176     break;
1177    
1178     default:
1179     req->result = -1;
1180     break;
1181     }
1182    
1183     req->errorno = errno;
1184     }
1185    
1186 root 1.12 #ifndef EIO_NO_WRAPPERS
1187    
1188 root 1.10 eio_req *eio_nop (int pri, eio_cb cb, void *data)
1189 root 1.9 {
1190     REQ (EIO_NOP); SEND;
1191     }
1192    
1193 root 1.10 eio_req *eio_busy (double delay, int pri, eio_cb cb, void *data)
1194 root 1.9 {
1195     REQ (EIO_BUSY); req->nv1 = delay; SEND;
1196     }
1197    
1198 root 1.10 eio_req *eio_sync (int pri, eio_cb cb, void *data)
1199 root 1.9 {
1200     REQ (EIO_SYNC); SEND;
1201     }
1202 root 1.6
1203 root 1.10 eio_req *eio_fsync (int fd, int pri, eio_cb cb, void *data)
1204 root 1.6 {
1205 root 1.9 REQ (EIO_FSYNC); req->int1 = fd; SEND;
1206 root 1.6 }
1207    
1208 root 1.10 eio_req *eio_fdatasync (int fd, int pri, eio_cb cb, void *data)
1209 root 1.6 {
1210 root 1.9 REQ (EIO_FDATASYNC); req->int1 = fd; SEND;
1211     }
1212    
1213 root 1.10 eio_req *eio_close (int fd, int pri, eio_cb cb, void *data)
1214 root 1.9 {
1215     REQ (EIO_CLOSE); req->int1 = fd; SEND;
1216 root 1.6 }
1217    
1218 root 1.10 eio_req *eio_readahead (int fd, off_t offset, size_t length, int pri, eio_cb cb, void *data)
1219 root 1.6 {
1220 root 1.9 REQ (EIO_READAHEAD); req->int1 = fd; req->offs = offset; req->size = length; SEND;
1221 root 1.6 }
1222    
1223 root 1.10 eio_req *eio_read (int fd, void *buf, size_t length, off_t offset, int pri, eio_cb cb, void *data)
1224 root 1.6 {
1225 root 1.10 REQ (EIO_READ); req->int1 = fd; req->offs = offset; req->size = length; req->ptr2 = buf; SEND;
1226 root 1.6 }
1227    
1228 root 1.10 eio_req *eio_write (int fd, void *buf, size_t length, off_t offset, int pri, eio_cb cb, void *data)
1229 root 1.6 {
1230 root 1.10 REQ (EIO_WRITE); req->int1 = fd; req->offs = offset; req->size = length; req->ptr2 = buf; SEND;
1231 root 1.6 }
1232    
1233 root 1.10 eio_req *eio_fstat (int fd, int pri, eio_cb cb, void *data)
1234 root 1.6 {
1235 root 1.9 REQ (EIO_FSTAT); req->int1 = fd; SEND;
1236 root 1.6 }
1237    
1238 root 1.10 eio_req *eio_futime (int fd, double atime, double mtime, int pri, eio_cb cb, void *data)
1239 root 1.6 {
1240 root 1.9 REQ (EIO_FUTIME); req->int1 = fd; req->nv1 = atime; req->nv2 = mtime; SEND;
1241 root 1.6 }
1242    
1243 root 1.10 eio_req *eio_ftruncate (int fd, off_t offset, int pri, eio_cb cb, void *data)
1244 root 1.6 {
1245 root 1.9 REQ (EIO_FTRUNCATE); req->int1 = fd; req->offs = offset; SEND;
1246 root 1.6 }
1247    
1248 root 1.10 eio_req *eio_fchmod (int fd, mode_t mode, int pri, eio_cb cb, void *data)
1249 root 1.6 {
1250 root 1.9 REQ (EIO_FCHMOD); req->int1 = fd; req->int2 = (long)mode; SEND;
1251 root 1.6 }
1252    
1253 root 1.10 eio_req *eio_fchown (int fd, uid_t uid, gid_t gid, int pri, eio_cb cb, void *data)
1254 root 1.6 {
1255 root 1.9 REQ (EIO_FCHOWN); req->int1 = fd; req->int2 = (long)uid; req->int3 = (long)gid; SEND;
1256 root 1.6 }
1257    
1258 root 1.10 eio_req *eio_dup2 (int fd, int fd2, int pri, eio_cb cb, void *data)
1259 root 1.6 {
1260 root 1.9 REQ (EIO_DUP2); req->int1 = fd; req->int2 = fd2; SEND;
1261 root 1.6 }
1262    
1263 root 1.10 eio_req *eio_sendfile (int out_fd, int in_fd, off_t in_offset, size_t length, int pri, eio_cb cb, void *data)
1264 root 1.6 {
1265 root 1.9 REQ (EIO_SENDFILE); req->int1 = out_fd; req->int2 = in_fd; req->offs = in_offset; req->size = length; SEND;
1266 root 1.6 }
1267    
1268 root 1.10 eio_req *eio_open (const char *path, int flags, mode_t mode, int pri, eio_cb cb, void *data)
1269 root 1.6 {
1270 root 1.9 REQ (EIO_OPEN); PATH; req->int1 = flags; req->int2 = (long)mode; SEND;
1271 root 1.6 }
1272    
1273 root 1.10 eio_req *eio_utime (const char *path, double atime, double mtime, int pri, eio_cb cb, void *data)
1274 root 1.6 {
1275 root 1.9 REQ (EIO_UTIME); PATH; req->nv1 = atime; req->nv2 = mtime; SEND;
1276 root 1.6 }
1277    
1278 root 1.10 eio_req *eio_truncate (const char *path, off_t offset, int pri, eio_cb cb, void *data)
1279 root 1.6 {
1280 root 1.9 REQ (EIO_TRUNCATE); PATH; req->offs = offset; SEND;
1281 root 1.6 }
1282    
1283 root 1.10 eio_req *eio_chown (const char *path, uid_t uid, gid_t gid, int pri, eio_cb cb, void *data)
1284 root 1.6 {
1285 root 1.9 REQ (EIO_CHOWN); PATH; req->int2 = (long)uid; req->int3 = (long)gid; SEND;
1286 root 1.6 }
1287    
1288 root 1.10 eio_req *eio_chmod (const char *path, mode_t mode, int pri, eio_cb cb, void *data)
1289 root 1.6 {
1290 root 1.9 REQ (EIO_CHMOD); PATH; req->int2 = (long)mode; SEND;
1291 root 1.6 }
1292    
1293 root 1.10 eio_req *eio_mkdir (const char *path, mode_t mode, int pri, eio_cb cb, void *data)
1294 root 1.6 {
1295 root 1.9 REQ (EIO_MKDIR); PATH; req->int2 = (long)mode; SEND;
1296 root 1.6 }
1297    
1298 root 1.9 static eio_req *
1299 root 1.10 eio__1path (int type, const char *path, int pri, eio_cb cb, void *data)
1300 root 1.6 {
1301 root 1.9 REQ (type); PATH; SEND;
1302 root 1.6 }
1303    
1304 root 1.10 eio_req *eio_readlink (const char *path, int pri, eio_cb cb, void *data)
1305 root 1.6 {
1306 root 1.10 return eio__1path (EIO_READLINK, path, pri, cb, data);
1307 root 1.6 }
1308    
1309 root 1.10 eio_req *eio_stat (const char *path, int pri, eio_cb cb, void *data)
1310 root 1.6 {
1311 root 1.10 return eio__1path (EIO_STAT, path, pri, cb, data);
1312 root 1.6 }
1313    
1314 root 1.10 eio_req *eio_lstat (const char *path, int pri, eio_cb cb, void *data)
1315 root 1.6 {
1316 root 1.10 return eio__1path (EIO_LSTAT, path, pri, cb, data);
1317 root 1.6 }
1318    
1319 root 1.10 eio_req *eio_unlink (const char *path, int pri, eio_cb cb, void *data)
1320 root 1.6 {
1321 root 1.10 return eio__1path (EIO_UNLINK, path, pri, cb, data);
1322 root 1.6 }
1323    
1324 root 1.10 eio_req *eio_rmdir (const char *path, int pri, eio_cb cb, void *data)
1325 root 1.6 {
1326 root 1.10 return eio__1path (EIO_RMDIR, path, pri, cb, data);
1327 root 1.6 }
1328    
1329 root 1.10 eio_req *eio_readdir (const char *path, int pri, eio_cb cb, void *data)
1330 root 1.1 {
1331 root 1.10 return eio__1path (EIO_READDIR, path, pri, cb, data);
1332 root 1.1 }
1333    
1334 root 1.10 eio_req *eio_mknod (const char *path, mode_t mode, dev_t dev, int pri, eio_cb cb, void *data)
1335 root 1.1 {
1336 root 1.18 REQ (EIO_MKNOD); PATH; req->int2 = (long)mode; req->int3 = (long)dev; SEND;
1337 root 1.1 }
1338    
1339 root 1.9 static eio_req *
1340 root 1.10 eio__2path (int type, const char *path, const char *new_path, int pri, eio_cb cb, void *data)
1341 root 1.1 {
1342 root 1.9 REQ (type); PATH;
1343 root 1.1
1344 root 1.9 req->flags |= EIO_FLAG_PTR2_FREE;
1345     req->ptr2 = strdup (new_path);
1346     if (!req->ptr2)
1347     {
1348     eio_api_destroy (req);
1349     return 0;
1350     }
1351 root 1.1
1352 root 1.9 SEND;
1353 root 1.1 }
1354    
1355 root 1.10 eio_req *eio_link (const char *path, const char *new_path, int pri, eio_cb cb, void *data)
1356 root 1.1 {
1357 root 1.10 return eio__2path (EIO_LINK, path, new_path, pri, cb, data);
1358 root 1.1 }
1359    
1360 root 1.10 eio_req *eio_symlink (const char *path, const char *new_path, int pri, eio_cb cb, void *data)
1361 root 1.1 {
1362 root 1.10 return eio__2path (EIO_SYMLINK, path, new_path, pri, cb, data);
1363 root 1.1 }
1364    
1365 root 1.10 eio_req *eio_rename (const char *path, const char *new_path, int pri, eio_cb cb, void *data)
1366 root 1.1 {
1367 root 1.10 return eio__2path (EIO_RENAME, path, new_path, pri, cb, data);
1368     }
1369    
1370 root 1.15 eio_req *eio_custom (eio_cb execute, int pri, eio_cb cb, void *data)
1371     {
1372     REQ (EIO_CUSTOM); req->feed = execute; SEND;
1373     }
1374    
1375 root 1.12 #endif
1376    
1377 root 1.10 eio_req *eio_grp (eio_cb cb, void *data)
1378     {
1379     const int pri = EIO_PRI_MAX;
1380    
1381     REQ (EIO_GROUP); SEND;
1382 root 1.1 }
1383    
1384 root 1.9 #undef REQ
1385     #undef PATH
1386     #undef SEND
1387 root 1.1
1388 root 1.9 /*****************************************************************************/
1389     /* grp functions */
1390 root 1.1
1391 root 1.2 void eio_grp_feed (eio_req *grp, void (*feed)(eio_req *req), int limit)
1392 root 1.1 {
1393     grp->int2 = limit;
1394     grp->feed = feed;
1395 root 1.2
1396     grp_try_feed (grp);
1397     }
1398    
1399     void eio_grp_limit (eio_req *grp, int limit)
1400     {
1401     grp->int2 = limit;
1402    
1403     grp_try_feed (grp);
1404 root 1.1 }
1405    
1406     void eio_grp_add (eio_req *grp, eio_req *req)
1407     {
1408     assert (("cannot add requests to IO::AIO::GRP after the group finished", grp->int1 != 2));
1409    
1410     ++grp->size;
1411     req->grp = grp;
1412    
1413     req->grp_prev = 0;
1414     req->grp_next = grp->grp_first;
1415    
1416     if (grp->grp_first)
1417     grp->grp_first->grp_prev = req;
1418    
1419     grp->grp_first = req;
1420     }
1421    
1422 root 1.9 /*****************************************************************************/
1423     /* misc garbage */
1424    
1425     ssize_t eio_sendfile_sync (int ofd, int ifd, off_t offset, size_t count)
1426     {
1427 root 1.14 etp_worker wrk;
1428 root 1.9
1429     wrk.dbuf = 0;
1430    
1431     eio__sendfile (ofd, ifd, offset, count, &wrk);
1432    
1433     if (wrk.dbuf)
1434     free (wrk.dbuf);
1435     }
1436 root 1.1