mirror of
https://github.com/warmcat/libwebsockets.git
synced 2025-03-23 00:00:06 +01:00

Pre-sul, checking for interval to next pending scheduled event was expensive and iterative, so the service avoided it if the wait was already 0. With sul though, the internal "check" function also services ripe events and removes them, and finding the interval to the next one is really cheap. Rename the "check" function to __lws_sul_service_ripe() to make it clear it's not just about returning the interval to the next pending one. And call it regardless of if we already decided we are not going to wait in the poll. After https://github.com/warmcat/libwebsockets/pull/1745
375 lines
8.9 KiB
C
375 lines
8.9 KiB
C
/*
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* libwebsockets - small server side websockets and web server implementation
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*
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* Copyright (C) 2010-2018 Andy Green <andy@warmcat.com>
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation:
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* version 2.1 of the License.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston,
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* MA 02110-1301 USA
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*/
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#include "core/private.h"
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static void
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lws_ev_hrtimer_cb(struct ev_loop *loop, struct ev_timer *watcher, int revents)
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{
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struct lws_context_per_thread *pt =
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(struct lws_context_per_thread *)watcher->data;
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lws_usec_t us;
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lws_pt_lock(pt, __func__);
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us = __lws_sul_service_ripe(&pt->pt_sul_owner, lws_now_usecs());
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if (us) {
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ev_timer_set(&pt->ev.hrtimer, ((float)us) / 1000000.0, 0);
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ev_timer_start(pt->ev.io_loop, &pt->ev.hrtimer);
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}
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lws_pt_unlock(pt);
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}
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static void
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lws_ev_idle_cb(struct ev_loop *loop, struct ev_idle *handle, int revents)
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{
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struct lws_context_per_thread *pt = lws_container_of(handle,
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struct lws_context_per_thread, ev.idle);
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lws_usec_t us;
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lws_service_do_ripe_rxflow(pt);
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/*
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* is there anybody with pending stuff that needs service forcing?
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*/
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if (!lws_service_adjust_timeout(pt->context, 1, pt->tid))
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/* -1 timeout means just do forced service */
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_lws_plat_service_forced_tsi(pt->context, pt->tid);
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/* account for hrtimer */
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lws_pt_lock(pt, __func__);
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us = __lws_sul_service_ripe(&pt->pt_sul_owner, lws_now_usecs());
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if (us) {
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ev_timer_set(&pt->ev.hrtimer, ((float)us) / 1000000.0, 0);
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ev_timer_start(pt->ev.io_loop, &pt->ev.hrtimer);
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}
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lws_pt_unlock(pt);
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/* there is nobody who needs service forcing, shut down idle */
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ev_idle_stop(loop, handle);
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}
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static void
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lws_accept_cb(struct ev_loop *loop, struct ev_io *watcher, int revents)
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{
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struct lws_context_per_thread *pt;
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struct lws_io_watcher *lws_io = lws_container_of(watcher,
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struct lws_io_watcher, ev.watcher);
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struct lws_context *context = lws_io->context;
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struct lws_pollfd eventfd;
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struct lws *wsi;
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if (revents & EV_ERROR)
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return;
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eventfd.fd = watcher->fd;
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eventfd.events = 0;
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eventfd.revents = EV_NONE;
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if (revents & EV_READ) {
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eventfd.events |= LWS_POLLIN;
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eventfd.revents |= LWS_POLLIN;
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}
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if (revents & EV_WRITE) {
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eventfd.events |= LWS_POLLOUT;
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eventfd.revents |= LWS_POLLOUT;
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}
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wsi = wsi_from_fd(context, watcher->fd);
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pt = &context->pt[(int)wsi->tsi];
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lws_service_fd_tsi(context, &eventfd, (int)wsi->tsi);
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ev_idle_start(pt->ev.io_loop, &pt->ev.idle);
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}
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LWS_VISIBLE void
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lws_ev_sigint_cb(struct ev_loop *loop, struct ev_signal *watcher, int revents)
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{
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struct lws_context *context = watcher->data;
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if (context->eventlib_signal_cb) {
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context->eventlib_signal_cb((void *)watcher, watcher->signum);
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return;
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}
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ev_break(loop, EVBREAK_ALL);
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}
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static int
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elops_init_pt_ev(struct lws_context *context, void *_loop, int tsi)
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{
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struct lws_context_per_thread *pt = &context->pt[tsi];
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struct ev_signal *w_sigint = &context->pt[tsi].w_sigint.ev.watcher;
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struct lws_vhost *vh = context->vhost_list;
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const char *backend_name;
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struct ev_loop *loop = (struct ev_loop *)_loop;
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int status = 0;
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int backend;
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lwsl_info("%s: loop %p\n", __func__, _loop);
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if (!loop)
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loop = ev_loop_new(0);
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else
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context->pt[tsi].event_loop_foreign = 1;
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if (!loop) {
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lwsl_err("%s: creating event base failed\n", __func__);
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return -1;
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}
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pt->ev.io_loop = loop;
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/*
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* Initialize the accept w_accept with all the listening sockets
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* and register a callback for read operations
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*/
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while (vh) {
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if (vh->lserv_wsi) {
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vh->lserv_wsi->w_read.context = context;
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vh->w_accept.context = context;
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ev_io_init(&vh->w_accept.ev.watcher, lws_accept_cb,
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vh->lserv_wsi->desc.sockfd, EV_READ);
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ev_io_start(loop, &vh->w_accept.ev.watcher);
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}
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vh = vh->vhost_next;
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}
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/* Register the signal watcher unless it's a foreign loop */
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if (!context->pt[tsi].event_loop_foreign) {
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ev_signal_init(w_sigint, lws_ev_sigint_cb, SIGINT);
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w_sigint->data = context;
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ev_signal_start(loop, w_sigint);
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}
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backend = ev_backend(loop);
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switch (backend) {
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case EVBACKEND_SELECT:
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backend_name = "select";
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break;
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case EVBACKEND_POLL:
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backend_name = "poll";
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break;
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case EVBACKEND_EPOLL:
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backend_name = "epoll";
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break;
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case EVBACKEND_KQUEUE:
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backend_name = "kqueue";
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break;
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case EVBACKEND_DEVPOLL:
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backend_name = "/dev/poll";
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break;
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case EVBACKEND_PORT:
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backend_name = "Solaris 10 \"port\"";
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break;
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default:
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backend_name = "Unknown libev backend";
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break;
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}
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lwsl_info(" libev backend: %s\n", backend_name);
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(void)backend_name;
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ev_timer_init(&pt->ev.hrtimer, lws_ev_hrtimer_cb, 0, 0);
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pt->ev.hrtimer.data = pt;
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ev_idle_init(&pt->ev.idle, lws_ev_idle_cb);
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return status;
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}
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static void
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elops_destroy_pt_ev(struct lws_context *context, int tsi)
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{
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struct lws_context_per_thread *pt = &context->pt[tsi];
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struct lws_vhost *vh = context->vhost_list;
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while (vh) {
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if (vh->lserv_wsi)
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ev_io_stop(pt->ev.io_loop, &vh->w_accept.ev.watcher);
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vh = vh->vhost_next;
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}
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/* static assets */
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ev_timer_stop(pt->ev.io_loop, &pt->ev.hrtimer);
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ev_idle_stop(pt->ev.io_loop, &pt->ev.idle);
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if (!pt->event_loop_foreign) {
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ev_signal_stop(pt->ev.io_loop, &pt->w_sigint.ev.watcher);
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ev_loop_destroy(pt->ev.io_loop);
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}
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}
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static int
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elops_init_context_ev(struct lws_context *context,
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const struct lws_context_creation_info *info)
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{
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int n;
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context->eventlib_signal_cb = info->signal_cb;
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for (n = 0; n < context->count_threads; n++)
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context->pt[n].w_sigint.context = context;
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return 0;
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}
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static int
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elops_accept_ev(struct lws *wsi)
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{
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int fd;
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if (wsi->role_ops->file_handle)
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fd = wsi->desc.filefd;
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else
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fd = wsi->desc.sockfd;
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wsi->w_read.context = wsi->context;
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wsi->w_write.context = wsi->context;
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ev_io_init(&wsi->w_read.ev.watcher, lws_accept_cb, fd, EV_READ);
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ev_io_init(&wsi->w_write.ev.watcher, lws_accept_cb, fd, EV_WRITE);
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return 0;
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}
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static void
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elops_io_ev(struct lws *wsi, int flags)
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{
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struct lws_context_per_thread *pt = &wsi->context->pt[(int)wsi->tsi];
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if (!pt->ev.io_loop)
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return;
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assert((flags & (LWS_EV_START | LWS_EV_STOP)) &&
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(flags & (LWS_EV_READ | LWS_EV_WRITE)));
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if (flags & LWS_EV_START) {
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if (flags & LWS_EV_WRITE)
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ev_io_start(pt->ev.io_loop, &wsi->w_write.ev.watcher);
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if (flags & LWS_EV_READ)
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ev_io_start(pt->ev.io_loop, &wsi->w_read.ev.watcher);
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} else {
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if (flags & LWS_EV_WRITE)
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ev_io_stop(pt->ev.io_loop, &wsi->w_write.ev.watcher);
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if (flags & LWS_EV_READ)
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ev_io_stop(pt->ev.io_loop, &wsi->w_read.ev.watcher);
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}
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}
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static void
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elops_run_pt_ev(struct lws_context *context, int tsi)
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{
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if (context->pt[tsi].ev.io_loop)
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ev_run(context->pt[tsi].ev.io_loop, 0);
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}
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static int
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elops_destroy_context2_ev(struct lws_context *context)
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{
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struct lws_context_per_thread *pt;
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int n, m;
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lwsl_debug("%s\n", __func__);
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for (n = 0; n < context->count_threads; n++) {
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int budget = 1000;
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pt = &context->pt[n];
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/* only for internal loops... */
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if (pt->event_loop_foreign || !pt->ev.io_loop)
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continue;
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if (!context->finalize_destroy_after_internal_loops_stopped) {
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ev_break(pt->ev.io_loop, EVBREAK_ONE);
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continue;
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}
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while (budget-- &&
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(m = ev_run(pt->ev.io_loop, 0)))
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;
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ev_loop_destroy(pt->ev.io_loop);
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}
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return 0;
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}
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static int
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elops_init_vhost_listen_wsi_ev(struct lws *wsi)
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{
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int fd;
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if (!wsi) {
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assert(0);
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return 0;
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}
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wsi->w_read.context = wsi->context;
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wsi->w_write.context = wsi->context;
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if (wsi->role_ops->file_handle)
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fd = wsi->desc.filefd;
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else
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fd = wsi->desc.sockfd;
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ev_io_init(&wsi->w_read.ev.watcher, lws_accept_cb, fd, EV_READ);
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ev_io_init(&wsi->w_write.ev.watcher, lws_accept_cb, fd, EV_WRITE);
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elops_io_ev(wsi, LWS_EV_START | LWS_EV_READ);
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return 0;
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}
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static void
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elops_destroy_wsi_ev(struct lws *wsi)
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{
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struct lws_context_per_thread *pt = &wsi->context->pt[(int)wsi->tsi];
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ev_io_stop(pt->ev.io_loop, &wsi->w_read.ev.watcher);
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ev_io_stop(pt->ev.io_loop, &wsi->w_write.ev.watcher);
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}
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struct lws_event_loop_ops event_loop_ops_ev = {
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/* name */ "libev",
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/* init_context */ elops_init_context_ev,
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/* destroy_context1 */ NULL,
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/* destroy_context2 */ elops_destroy_context2_ev,
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/* init_vhost_listen_wsi */ elops_init_vhost_listen_wsi_ev,
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/* init_pt */ elops_init_pt_ev,
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/* wsi_logical_close */ NULL,
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/* check_client_connect_ok */ NULL,
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/* close_handle_manually */ NULL,
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/* accept */ elops_accept_ev,
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/* io */ elops_io_ev,
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/* run_pt */ elops_run_pt_ev,
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/* destroy_pt */ elops_destroy_pt_ev,
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/* destroy wsi */ elops_destroy_wsi_ev,
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/* periodic_events_available */ 0,
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};
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