373 lines
7.5 KiB
C
373 lines
7.5 KiB
C
/*
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* Generic workqueue offload mechanism
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*
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* Copyright (C) 2015 Jens Axboe <axboe@kernel.dk>
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*
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*/
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#include <unistd.h>
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#include "fio.h"
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#include "flist.h"
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#include "workqueue.h"
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#include "smalloc.h"
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enum {
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SW_F_IDLE = 1 << 0,
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SW_F_RUNNING = 1 << 1,
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SW_F_EXIT = 1 << 2,
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SW_F_ACCOUNTED = 1 << 3,
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SW_F_ERROR = 1 << 4,
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};
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static struct submit_worker *__get_submit_worker(struct workqueue *wq,
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unsigned int start,
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unsigned int end,
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struct submit_worker **best)
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{
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struct submit_worker *sw = NULL;
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while (start <= end) {
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sw = &wq->workers[start];
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if (sw->flags & SW_F_IDLE)
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return sw;
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if (!(*best) || sw->seq < (*best)->seq)
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*best = sw;
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start++;
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}
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return NULL;
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}
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static struct submit_worker *get_submit_worker(struct workqueue *wq)
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{
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unsigned int next = wq->next_free_worker;
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struct submit_worker *sw, *best = NULL;
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assert(next < wq->max_workers);
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sw = __get_submit_worker(wq, next, wq->max_workers - 1, &best);
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if (!sw && next)
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sw = __get_submit_worker(wq, 0, next - 1, &best);
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/*
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* No truly idle found, use best match
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*/
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if (!sw)
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sw = best;
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if (sw->index == wq->next_free_worker) {
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if (sw->index + 1 < wq->max_workers)
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wq->next_free_worker = sw->index + 1;
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else
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wq->next_free_worker = 0;
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}
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return sw;
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}
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static bool all_sw_idle(struct workqueue *wq)
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{
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int i;
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for (i = 0; i < wq->max_workers; i++) {
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struct submit_worker *sw = &wq->workers[i];
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if (!(sw->flags & SW_F_IDLE))
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return false;
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}
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return true;
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}
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/*
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* Must be serialized wrt workqueue_enqueue() by caller
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*/
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void workqueue_flush(struct workqueue *wq)
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{
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wq->wake_idle = 1;
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while (!all_sw_idle(wq)) {
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pthread_mutex_lock(&wq->flush_lock);
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pthread_cond_wait(&wq->flush_cond, &wq->flush_lock);
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pthread_mutex_unlock(&wq->flush_lock);
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}
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wq->wake_idle = 0;
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}
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/*
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* Must be serialized by caller. Returns true for queued, false for busy.
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*/
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void workqueue_enqueue(struct workqueue *wq, struct workqueue_work *work)
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{
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struct submit_worker *sw;
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sw = get_submit_worker(wq);
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assert(sw);
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pthread_mutex_lock(&sw->lock);
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flist_add_tail(&work->list, &sw->work_list);
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sw->seq = ++wq->work_seq;
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sw->flags &= ~SW_F_IDLE;
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pthread_mutex_unlock(&sw->lock);
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pthread_cond_signal(&sw->cond);
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}
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static void handle_list(struct submit_worker *sw, struct flist_head *list)
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{
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struct workqueue *wq = sw->wq;
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struct workqueue_work *work;
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while (!flist_empty(list)) {
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work = flist_first_entry(list, struct workqueue_work, list);
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flist_del_init(&work->list);
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wq->ops.fn(sw, work);
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}
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}
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static void *worker_thread(void *data)
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{
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struct submit_worker *sw = data;
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struct workqueue *wq = sw->wq;
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unsigned int ret = 0;
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FLIST_HEAD(local_list);
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sk_out_assign(sw->sk_out);
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if (wq->ops.nice) {
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if (nice(wq->ops.nice) < 0) {
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log_err("workqueue: nice %s\n", strerror(errno));
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ret = 1;
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}
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}
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if (!ret)
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ret = workqueue_init_worker(sw);
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pthread_mutex_lock(&sw->lock);
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sw->flags |= SW_F_RUNNING;
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if (ret)
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sw->flags |= SW_F_ERROR;
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pthread_mutex_unlock(&sw->lock);
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pthread_mutex_lock(&wq->flush_lock);
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pthread_cond_signal(&wq->flush_cond);
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pthread_mutex_unlock(&wq->flush_lock);
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if (sw->flags & SW_F_ERROR)
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goto done;
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while (1) {
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pthread_mutex_lock(&sw->lock);
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if (flist_empty(&sw->work_list)) {
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if (sw->flags & SW_F_EXIT) {
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pthread_mutex_unlock(&sw->lock);
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break;
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}
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if (workqueue_pre_sleep_check(sw)) {
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pthread_mutex_unlock(&sw->lock);
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workqueue_pre_sleep(sw);
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pthread_mutex_lock(&sw->lock);
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}
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/*
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* We dropped and reaquired the lock, check
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* state again.
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*/
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if (!flist_empty(&sw->work_list))
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goto handle_work;
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if (sw->flags & SW_F_EXIT) {
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pthread_mutex_unlock(&sw->lock);
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break;
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} else if (!(sw->flags & SW_F_IDLE)) {
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sw->flags |= SW_F_IDLE;
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wq->next_free_worker = sw->index;
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if (wq->wake_idle)
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pthread_cond_signal(&wq->flush_cond);
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}
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if (wq->ops.update_acct_fn)
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wq->ops.update_acct_fn(sw);
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pthread_cond_wait(&sw->cond, &sw->lock);
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} else {
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handle_work:
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flist_splice_init(&sw->work_list, &local_list);
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}
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pthread_mutex_unlock(&sw->lock);
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handle_list(sw, &local_list);
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}
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if (wq->ops.update_acct_fn)
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wq->ops.update_acct_fn(sw);
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done:
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sk_out_drop();
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return NULL;
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}
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static void free_worker(struct submit_worker *sw, unsigned int *sum_cnt)
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{
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struct workqueue *wq = sw->wq;
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workqueue_exit_worker(sw, sum_cnt);
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pthread_cond_destroy(&sw->cond);
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pthread_mutex_destroy(&sw->lock);
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if (wq->ops.free_worker_fn)
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wq->ops.free_worker_fn(sw);
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}
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static void shutdown_worker(struct submit_worker *sw, unsigned int *sum_cnt)
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{
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pthread_join(sw->thread, NULL);
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free_worker(sw, sum_cnt);
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}
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void workqueue_exit(struct workqueue *wq)
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{
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unsigned int shutdown, sum_cnt = 0;
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struct submit_worker *sw;
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int i;
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if (!wq->workers)
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return;
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for (i = 0; i < wq->max_workers; i++) {
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sw = &wq->workers[i];
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pthread_mutex_lock(&sw->lock);
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sw->flags |= SW_F_EXIT;
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pthread_cond_signal(&sw->cond);
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pthread_mutex_unlock(&sw->lock);
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}
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do {
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shutdown = 0;
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for (i = 0; i < wq->max_workers; i++) {
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sw = &wq->workers[i];
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if (sw->flags & SW_F_ACCOUNTED)
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continue;
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pthread_mutex_lock(&sw->lock);
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sw->flags |= SW_F_ACCOUNTED;
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pthread_mutex_unlock(&sw->lock);
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shutdown_worker(sw, &sum_cnt);
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shutdown++;
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}
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} while (shutdown && shutdown != wq->max_workers);
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sfree(wq->workers);
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wq->workers = NULL;
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pthread_mutex_destroy(&wq->flush_lock);
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pthread_cond_destroy(&wq->flush_cond);
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pthread_mutex_destroy(&wq->stat_lock);
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}
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static int start_worker(struct workqueue *wq, unsigned int index,
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struct sk_out *sk_out)
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{
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struct submit_worker *sw = &wq->workers[index];
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int ret;
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INIT_FLIST_HEAD(&sw->work_list);
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ret = mutex_cond_init_pshared(&sw->lock, &sw->cond);
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if (ret)
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return ret;
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sw->wq = wq;
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sw->index = index;
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sw->sk_out = sk_out;
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if (wq->ops.alloc_worker_fn) {
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ret = wq->ops.alloc_worker_fn(sw);
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if (ret)
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return ret;
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}
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ret = pthread_create(&sw->thread, NULL, worker_thread, sw);
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if (!ret) {
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pthread_mutex_lock(&sw->lock);
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sw->flags = SW_F_IDLE;
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pthread_mutex_unlock(&sw->lock);
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return 0;
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}
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free_worker(sw, NULL);
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return 1;
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}
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int workqueue_init(struct thread_data *td, struct workqueue *wq,
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struct workqueue_ops *ops, unsigned int max_workers,
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struct sk_out *sk_out)
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{
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unsigned int running;
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int i, error;
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int ret;
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wq->max_workers = max_workers;
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wq->td = td;
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wq->ops = *ops;
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wq->work_seq = 0;
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wq->next_free_worker = 0;
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ret = mutex_cond_init_pshared(&wq->flush_lock, &wq->flush_cond);
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if (ret)
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goto err;
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ret = mutex_init_pshared(&wq->stat_lock);
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if (ret)
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goto err;
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wq->workers = smalloc(wq->max_workers * sizeof(struct submit_worker));
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if (!wq->workers)
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goto err;
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for (i = 0; i < wq->max_workers; i++)
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if (start_worker(wq, i, sk_out))
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break;
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wq->max_workers = i;
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if (!wq->max_workers)
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goto err;
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/*
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* Wait for them all to be started and initialized
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*/
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error = 0;
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do {
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struct submit_worker *sw;
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running = 0;
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pthread_mutex_lock(&wq->flush_lock);
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for (i = 0; i < wq->max_workers; i++) {
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sw = &wq->workers[i];
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pthread_mutex_lock(&sw->lock);
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if (sw->flags & SW_F_RUNNING)
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running++;
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if (sw->flags & SW_F_ERROR)
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error++;
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pthread_mutex_unlock(&sw->lock);
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}
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if (error || running == wq->max_workers) {
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pthread_mutex_unlock(&wq->flush_lock);
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break;
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}
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pthread_cond_wait(&wq->flush_cond, &wq->flush_lock);
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pthread_mutex_unlock(&wq->flush_lock);
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} while (1);
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if (!error)
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return 0;
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err:
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log_err("Can't create rate workqueue\n");
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td_verror(td, ESRCH, "workqueue_init");
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workqueue_exit(wq);
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return 1;
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}
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