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subr_workqueue.c revision 1.32.2.1
      1  1.32.2.1    yamt /*	$NetBSD: subr_workqueue.c,v 1.32.2.1 2012/10/30 17:22:34 yamt Exp $	*/
      2       1.1    yamt 
      3       1.1    yamt /*-
      4      1.20    yamt  * Copyright (c)2002, 2005, 2006, 2007 YAMAMOTO Takashi,
      5       1.1    yamt  * All rights reserved.
      6       1.1    yamt  *
      7       1.1    yamt  * Redistribution and use in source and binary forms, with or without
      8       1.1    yamt  * modification, are permitted provided that the following conditions
      9       1.1    yamt  * are met:
     10       1.1    yamt  * 1. Redistributions of source code must retain the above copyright
     11       1.1    yamt  *    notice, this list of conditions and the following disclaimer.
     12       1.1    yamt  * 2. Redistributions in binary form must reproduce the above copyright
     13       1.1    yamt  *    notice, this list of conditions and the following disclaimer in the
     14       1.1    yamt  *    documentation and/or other materials provided with the distribution.
     15       1.1    yamt  *
     16       1.1    yamt  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
     17       1.1    yamt  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     18       1.1    yamt  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     19       1.1    yamt  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
     20       1.1    yamt  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     21       1.1    yamt  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     22       1.1    yamt  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     23       1.1    yamt  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     24       1.1    yamt  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     25       1.1    yamt  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     26       1.1    yamt  * SUCH DAMAGE.
     27       1.1    yamt  */
     28       1.1    yamt 
     29       1.1    yamt #include <sys/cdefs.h>
     30  1.32.2.1    yamt __KERNEL_RCSID(0, "$NetBSD: subr_workqueue.c,v 1.32.2.1 2012/10/30 17:22:34 yamt Exp $");
     31       1.1    yamt 
     32       1.1    yamt #include <sys/param.h>
     33      1.18   rmind #include <sys/cpu.h>
     34       1.1    yamt #include <sys/systm.h>
     35       1.1    yamt #include <sys/kthread.h>
     36       1.4    yamt #include <sys/kmem.h>
     37       1.1    yamt #include <sys/proc.h>
     38       1.1    yamt #include <sys/workqueue.h>
     39       1.9      ad #include <sys/mutex.h>
     40       1.9      ad #include <sys/condvar.h>
     41      1.17    yamt #include <sys/queue.h>
     42       1.1    yamt 
     43      1.17    yamt typedef struct work_impl {
     44      1.17    yamt 	SIMPLEQ_ENTRY(work_impl) wk_entry;
     45      1.17    yamt } work_impl_t;
     46      1.17    yamt 
     47      1.17    yamt SIMPLEQ_HEAD(workqhead, work_impl);
     48       1.1    yamt 
     49       1.1    yamt struct workqueue_queue {
     50       1.9      ad 	kmutex_t q_mutex;
     51       1.9      ad 	kcondvar_t q_cv;
     52       1.1    yamt 	struct workqhead q_queue;
     53      1.28    yamt 	lwp_t *q_worker;
     54       1.1    yamt };
     55       1.1    yamt 
     56       1.1    yamt struct workqueue {
     57       1.1    yamt 	void (*wq_func)(struct work *, void *);
     58       1.1    yamt 	void *wq_arg;
     59      1.20    yamt 	int wq_flags;
     60      1.20    yamt 
     61      1.32     jym 	char wq_name[MAXCOMLEN];
     62      1.12    yamt 	pri_t wq_prio;
     63      1.18   rmind 	void *wq_ptr;
     64       1.1    yamt };
     65       1.1    yamt 
     66      1.24      ad #define	WQ_SIZE		(roundup2(sizeof(struct workqueue), coherency_unit))
     67      1.24      ad #define	WQ_QUEUE_SIZE	(roundup2(sizeof(struct workqueue_queue), coherency_unit))
     68      1.18   rmind 
     69       1.1    yamt #define	POISON	0xaabbccdd
     70       1.1    yamt 
     71      1.20    yamt static size_t
     72      1.20    yamt workqueue_size(int flags)
     73      1.20    yamt {
     74      1.20    yamt 
     75      1.20    yamt 	return WQ_SIZE
     76      1.20    yamt 	    + ((flags & WQ_PERCPU) != 0 ? ncpu : 1) * WQ_QUEUE_SIZE
     77      1.24      ad 	    + coherency_unit;
     78      1.20    yamt }
     79      1.20    yamt 
     80      1.14   rmind static struct workqueue_queue *
     81      1.14   rmind workqueue_queue_lookup(struct workqueue *wq, struct cpu_info *ci)
     82      1.14   rmind {
     83      1.18   rmind 	u_int idx = 0;
     84      1.14   rmind 
     85      1.18   rmind 	if (wq->wq_flags & WQ_PERCPU) {
     86      1.18   rmind 		idx = ci ? cpu_index(ci) : cpu_index(curcpu());
     87      1.18   rmind 	}
     88      1.14   rmind 
     89      1.26   rmind 	return (void *)((uintptr_t)(wq) + WQ_SIZE + (idx * WQ_QUEUE_SIZE));
     90      1.14   rmind }
     91      1.14   rmind 
     92       1.1    yamt static void
     93       1.1    yamt workqueue_runlist(struct workqueue *wq, struct workqhead *list)
     94       1.1    yamt {
     95      1.17    yamt 	work_impl_t *wk;
     96      1.17    yamt 	work_impl_t *next;
     97       1.1    yamt 
     98       1.1    yamt 	/*
     99       1.1    yamt 	 * note that "list" is not a complete SIMPLEQ.
    100       1.1    yamt 	 */
    101       1.1    yamt 
    102       1.1    yamt 	for (wk = SIMPLEQ_FIRST(list); wk != NULL; wk = next) {
    103       1.1    yamt 		next = SIMPLEQ_NEXT(wk, wk_entry);
    104      1.17    yamt 		(*wq->wq_func)((void *)wk, wq->wq_arg);
    105       1.1    yamt 	}
    106       1.1    yamt }
    107       1.1    yamt 
    108       1.1    yamt static void
    109      1.21    yamt workqueue_worker(void *cookie)
    110       1.1    yamt {
    111      1.21    yamt 	struct workqueue *wq = cookie;
    112      1.14   rmind 	struct workqueue_queue *q;
    113      1.14   rmind 
    114      1.14   rmind 	/* find the workqueue of this kthread */
    115      1.14   rmind 	q = workqueue_queue_lookup(wq, curlwp->l_cpu);
    116      1.14   rmind 
    117       1.3  rpaulo 	for (;;) {
    118       1.1    yamt 		struct workqhead tmp;
    119       1.1    yamt 
    120       1.1    yamt 		/*
    121       1.1    yamt 		 * we violate abstraction of SIMPLEQ.
    122       1.1    yamt 		 */
    123       1.1    yamt 
    124       1.1    yamt #if defined(DIAGNOSTIC)
    125       1.1    yamt 		tmp.sqh_last = (void *)POISON;
    126       1.1    yamt #endif /* defined(DIAGNOSTIC) */
    127       1.1    yamt 
    128       1.9      ad 		mutex_enter(&q->q_mutex);
    129       1.9      ad 		while (SIMPLEQ_EMPTY(&q->q_queue))
    130       1.9      ad 			cv_wait(&q->q_cv, &q->q_mutex);
    131       1.1    yamt 		tmp.sqh_first = q->q_queue.sqh_first; /* XXX */
    132       1.1    yamt 		SIMPLEQ_INIT(&q->q_queue);
    133       1.9      ad 		mutex_exit(&q->q_mutex);
    134       1.1    yamt 
    135       1.1    yamt 		workqueue_runlist(wq, &tmp);
    136       1.1    yamt 	}
    137       1.1    yamt }
    138       1.1    yamt 
    139       1.1    yamt static void
    140       1.1    yamt workqueue_init(struct workqueue *wq, const char *name,
    141       1.1    yamt     void (*callback_func)(struct work *, void *), void *callback_arg,
    142      1.12    yamt     pri_t prio, int ipl)
    143       1.1    yamt {
    144       1.1    yamt 
    145      1.32     jym 	strncpy(wq->wq_name, name, sizeof(wq->wq_name));
    146      1.32     jym 
    147       1.1    yamt 	wq->wq_prio = prio;
    148       1.1    yamt 	wq->wq_func = callback_func;
    149       1.1    yamt 	wq->wq_arg = callback_arg;
    150       1.1    yamt }
    151       1.1    yamt 
    152       1.1    yamt static int
    153      1.18   rmind workqueue_initqueue(struct workqueue *wq, struct workqueue_queue *q,
    154      1.18   rmind     int ipl, struct cpu_info *ci)
    155       1.1    yamt {
    156      1.13      ad 	int error, ktf;
    157      1.14   rmind 
    158      1.20    yamt 	KASSERT(q->q_worker == NULL);
    159      1.20    yamt 
    160      1.22      ad 	mutex_init(&q->q_mutex, MUTEX_DEFAULT, ipl);
    161       1.9      ad 	cv_init(&q->q_cv, wq->wq_name);
    162       1.1    yamt 	SIMPLEQ_INIT(&q->q_queue);
    163      1.18   rmind 	ktf = ((wq->wq_flags & WQ_MPSAFE) != 0 ? KTHREAD_MPSAFE : 0);
    164  1.32.2.1    yamt 	if (wq->wq_prio < PRI_KERNEL)
    165  1.32.2.1    yamt 		ktf |= KTHREAD_TS;
    166      1.18   rmind 	if (ci) {
    167      1.18   rmind 		error = kthread_create(wq->wq_prio, ktf, ci, workqueue_worker,
    168      1.23  martin 		    wq, &q->q_worker, "%s/%u", wq->wq_name, ci->ci_index);
    169      1.18   rmind 	} else {
    170      1.18   rmind 		error = kthread_create(wq->wq_prio, ktf, ci, workqueue_worker,
    171      1.18   rmind 		    wq, &q->q_worker, "%s", wq->wq_name);
    172      1.18   rmind 	}
    173      1.20    yamt 	if (error != 0) {
    174      1.20    yamt 		mutex_destroy(&q->q_mutex);
    175      1.20    yamt 		cv_destroy(&q->q_cv);
    176      1.20    yamt 		KASSERT(q->q_worker == NULL);
    177      1.20    yamt 	}
    178       1.1    yamt 	return error;
    179       1.1    yamt }
    180       1.1    yamt 
    181       1.5    yamt struct workqueue_exitargs {
    182      1.17    yamt 	work_impl_t wqe_wk;
    183       1.5    yamt 	struct workqueue_queue *wqe_q;
    184       1.5    yamt };
    185       1.5    yamt 
    186       1.5    yamt static void
    187       1.7    yamt workqueue_exit(struct work *wk, void *arg)
    188       1.5    yamt {
    189       1.5    yamt 	struct workqueue_exitargs *wqe = (void *)wk;
    190       1.5    yamt 	struct workqueue_queue *q = wqe->wqe_q;
    191       1.5    yamt 
    192       1.5    yamt 	/*
    193      1.11    yamt 	 * only competition at this point is workqueue_finiqueue.
    194       1.5    yamt 	 */
    195       1.5    yamt 
    196      1.13      ad 	KASSERT(q->q_worker == curlwp);
    197      1.20    yamt 	KASSERT(SIMPLEQ_EMPTY(&q->q_queue));
    198       1.9      ad 	mutex_enter(&q->q_mutex);
    199       1.5    yamt 	q->q_worker = NULL;
    200      1.10    yamt 	cv_signal(&q->q_cv);
    201       1.9      ad 	mutex_exit(&q->q_mutex);
    202       1.5    yamt 	kthread_exit(0);
    203       1.5    yamt }
    204       1.5    yamt 
    205       1.5    yamt static void
    206      1.14   rmind workqueue_finiqueue(struct workqueue *wq, struct workqueue_queue *q)
    207       1.5    yamt {
    208       1.5    yamt 	struct workqueue_exitargs wqe;
    209       1.5    yamt 
    210      1.20    yamt 	KASSERT(wq->wq_func == workqueue_exit);
    211       1.5    yamt 
    212       1.5    yamt 	wqe.wqe_q = q;
    213       1.5    yamt 	KASSERT(SIMPLEQ_EMPTY(&q->q_queue));
    214       1.5    yamt 	KASSERT(q->q_worker != NULL);
    215       1.9      ad 	mutex_enter(&q->q_mutex);
    216       1.5    yamt 	SIMPLEQ_INSERT_TAIL(&q->q_queue, &wqe.wqe_wk, wk_entry);
    217      1.10    yamt 	cv_signal(&q->q_cv);
    218       1.5    yamt 	while (q->q_worker != NULL) {
    219       1.9      ad 		cv_wait(&q->q_cv, &q->q_mutex);
    220       1.5    yamt 	}
    221       1.9      ad 	mutex_exit(&q->q_mutex);
    222       1.9      ad 	mutex_destroy(&q->q_mutex);
    223       1.9      ad 	cv_destroy(&q->q_cv);
    224       1.5    yamt }
    225       1.5    yamt 
    226       1.1    yamt /* --- */
    227       1.1    yamt 
    228       1.1    yamt int
    229       1.1    yamt workqueue_create(struct workqueue **wqp, const char *name,
    230       1.1    yamt     void (*callback_func)(struct work *, void *), void *callback_arg,
    231      1.12    yamt     pri_t prio, int ipl, int flags)
    232       1.1    yamt {
    233       1.1    yamt 	struct workqueue *wq;
    234      1.18   rmind 	struct workqueue_queue *q;
    235      1.18   rmind 	void *ptr;
    236      1.20    yamt 	int error = 0;
    237       1.1    yamt 
    238      1.25    matt 	CTASSERT(sizeof(work_impl_t) <= sizeof(struct work));
    239      1.17    yamt 
    240      1.20    yamt 	ptr = kmem_zalloc(workqueue_size(flags), KM_SLEEP);
    241      1.26   rmind 	wq = (void *)roundup2((uintptr_t)ptr, coherency_unit);
    242      1.18   rmind 	wq->wq_ptr = ptr;
    243      1.18   rmind 	wq->wq_flags = flags;
    244       1.1    yamt 
    245       1.1    yamt 	workqueue_init(wq, name, callback_func, callback_arg, prio, ipl);
    246       1.1    yamt 
    247      1.14   rmind 	if (flags & WQ_PERCPU) {
    248      1.14   rmind 		struct cpu_info *ci;
    249      1.14   rmind 		CPU_INFO_ITERATOR cii;
    250      1.14   rmind 
    251      1.14   rmind 		/* create the work-queue for each CPU */
    252      1.14   rmind 		for (CPU_INFO_FOREACH(cii, ci)) {
    253      1.20    yamt 			q = workqueue_queue_lookup(wq, ci);
    254      1.18   rmind 			error = workqueue_initqueue(wq, q, ipl, ci);
    255      1.18   rmind 			if (error) {
    256      1.14   rmind 				break;
    257      1.18   rmind 			}
    258      1.14   rmind 		}
    259      1.14   rmind 	} else {
    260      1.18   rmind 		/* initialize a work-queue */
    261      1.20    yamt 		q = workqueue_queue_lookup(wq, NULL);
    262      1.18   rmind 		error = workqueue_initqueue(wq, q, ipl, NULL);
    263       1.1    yamt 	}
    264      1.18   rmind 
    265      1.20    yamt 	if (error != 0) {
    266      1.20    yamt 		workqueue_destroy(wq);
    267      1.20    yamt 	} else {
    268      1.20    yamt 		*wqp = wq;
    269      1.15   rmind 	}
    270       1.1    yamt 
    271      1.20    yamt 	return error;
    272       1.1    yamt }
    273       1.1    yamt 
    274       1.1    yamt void
    275       1.5    yamt workqueue_destroy(struct workqueue *wq)
    276       1.5    yamt {
    277      1.14   rmind 	struct workqueue_queue *q;
    278      1.20    yamt 	struct cpu_info *ci;
    279      1.20    yamt 	CPU_INFO_ITERATOR cii;
    280       1.5    yamt 
    281      1.20    yamt 	wq->wq_func = workqueue_exit;
    282      1.20    yamt 	for (CPU_INFO_FOREACH(cii, ci)) {
    283      1.20    yamt 		q = workqueue_queue_lookup(wq, ci);
    284      1.20    yamt 		if (q->q_worker != NULL) {
    285      1.18   rmind 			workqueue_finiqueue(wq, q);
    286      1.18   rmind 		}
    287      1.14   rmind 	}
    288      1.20    yamt 	kmem_free(wq->wq_ptr, workqueue_size(wq->wq_flags));
    289       1.5    yamt }
    290       1.5    yamt 
    291       1.5    yamt void
    292      1.17    yamt workqueue_enqueue(struct workqueue *wq, struct work *wk0, struct cpu_info *ci)
    293       1.1    yamt {
    294      1.14   rmind 	struct workqueue_queue *q;
    295      1.17    yamt 	work_impl_t *wk = (void *)wk0;
    296      1.14   rmind 
    297      1.18   rmind 	KASSERT(wq->wq_flags & WQ_PERCPU || ci == NULL);
    298      1.14   rmind 	q = workqueue_queue_lookup(wq, ci);
    299       1.1    yamt 
    300       1.9      ad 	mutex_enter(&q->q_mutex);
    301       1.1    yamt 	SIMPLEQ_INSERT_TAIL(&q->q_queue, wk, wk_entry);
    302      1.13      ad 	cv_signal(&q->q_cv);
    303       1.9      ad 	mutex_exit(&q->q_mutex);
    304       1.1    yamt }
    305