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All files that were including one of the following include files have been updated to only include haproxy/api.h or haproxy/api-t.h once instead: - common/config.h - common/compat.h - common/compiler.h - common/defaults.h - common/initcall.h - common/tools.h The choice is simple: if the file only requires type definitions, it includes api-t.h, otherwise it includes the full api.h. In addition, in these files, explicit includes for inttypes.h and limits.h were dropped since these are now covered by api.h and api-t.h. No other change was performed, given that this patch is large and affects 201 files. At least one (tools.h) was already freestanding and didn't get the new one added.
386 lines
9.1 KiB
C
386 lines
9.1 KiB
C
/*
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* FD polling functions for Linux epoll
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*
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* Copyright 2000-2014 Willy Tarreau <w@1wt.eu>
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version
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* 2 of the License, or (at your option) any later version.
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*/
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#include <unistd.h>
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#include <sys/epoll.h>
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#include <sys/time.h>
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#include <sys/types.h>
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#include <haproxy/api.h>
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#include <common/debug.h>
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#include <common/hathreads.h>
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#include <common/standard.h>
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#include <common/ticks.h>
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#include <common/time.h>
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#include <types/global.h>
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#include <proto/activity.h>
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#include <proto/fd.h>
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#include <proto/signal.h>
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/* private data */
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static THREAD_LOCAL struct epoll_event *epoll_events = NULL;
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static int epoll_fd[MAX_THREADS]; // per-thread epoll_fd
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#ifndef EPOLLRDHUP
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/* EPOLLRDHUP was defined late in libc, and it appeared in kernel 2.6.17 */
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#define EPOLLRDHUP 0x2000
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#endif
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/*
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* Immediately remove file descriptor from epoll set upon close.
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* Since we forked, some fds share inodes with the other process, and epoll may
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* send us events even though this process closed the fd (see man 7 epoll,
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* "Questions and answers", Q 6).
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*/
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static void __fd_clo(int fd)
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{
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if (unlikely(fdtab[fd].cloned)) {
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unsigned long m = polled_mask[fd].poll_recv | polled_mask[fd].poll_send;
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struct epoll_event ev;
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int i;
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for (i = global.nbthread - 1; i >= 0; i--)
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if (m & (1UL << i))
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epoll_ctl(epoll_fd[i], EPOLL_CTL_DEL, fd, &ev);
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}
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}
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static void _update_fd(int fd)
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{
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int en, opcode;
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struct epoll_event ev = { };
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en = fdtab[fd].state;
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/* if we're already polling or are going to poll for this FD and it's
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* neither active nor ready, force it to be active so that we don't
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* needlessly unsubscribe then re-subscribe it.
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*/
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if (!(en & FD_EV_READY_R) &&
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((en & FD_EV_ACTIVE_W) ||
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((polled_mask[fd].poll_send | polled_mask[fd].poll_recv) & tid_bit)))
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en |= FD_EV_ACTIVE_R;
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if ((polled_mask[fd].poll_send | polled_mask[fd].poll_recv) & tid_bit) {
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if (!(fdtab[fd].thread_mask & tid_bit) || !(en & FD_EV_ACTIVE_RW)) {
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/* fd removed from poll list */
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opcode = EPOLL_CTL_DEL;
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if (polled_mask[fd].poll_recv & tid_bit)
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_HA_ATOMIC_AND(&polled_mask[fd].poll_recv, ~tid_bit);
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if (polled_mask[fd].poll_send & tid_bit)
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_HA_ATOMIC_AND(&polled_mask[fd].poll_send, ~tid_bit);
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}
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else {
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if (((en & FD_EV_ACTIVE_R) != 0) ==
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((polled_mask[fd].poll_recv & tid_bit) != 0) &&
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((en & FD_EV_ACTIVE_W) != 0) ==
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((polled_mask[fd].poll_send & tid_bit) != 0))
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return;
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if (en & FD_EV_ACTIVE_R) {
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if (!(polled_mask[fd].poll_recv & tid_bit))
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_HA_ATOMIC_OR(&polled_mask[fd].poll_recv, tid_bit);
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} else {
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if (polled_mask[fd].poll_recv & tid_bit)
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_HA_ATOMIC_AND(&polled_mask[fd].poll_recv, ~tid_bit);
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}
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if (en & FD_EV_ACTIVE_W) {
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if (!(polled_mask[fd].poll_send & tid_bit))
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_HA_ATOMIC_OR(&polled_mask[fd].poll_send, tid_bit);
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} else {
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if (polled_mask[fd].poll_send & tid_bit)
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_HA_ATOMIC_AND(&polled_mask[fd].poll_send, ~tid_bit);
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}
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/* fd status changed */
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opcode = EPOLL_CTL_MOD;
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}
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}
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else if ((fdtab[fd].thread_mask & tid_bit) && (en & FD_EV_ACTIVE_RW)) {
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/* new fd in the poll list */
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opcode = EPOLL_CTL_ADD;
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if (en & FD_EV_ACTIVE_R)
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_HA_ATOMIC_OR(&polled_mask[fd].poll_recv, tid_bit);
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if (en & FD_EV_ACTIVE_W)
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_HA_ATOMIC_OR(&polled_mask[fd].poll_send, tid_bit);
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}
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else {
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return;
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}
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/* construct the epoll events based on new state */
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if (en & FD_EV_ACTIVE_R)
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ev.events |= EPOLLIN | EPOLLRDHUP;
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if (en & FD_EV_ACTIVE_W)
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ev.events |= EPOLLOUT;
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ev.data.fd = fd;
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epoll_ctl(epoll_fd[tid], opcode, fd, &ev);
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}
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/*
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* Linux epoll() poller
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*/
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static void _do_poll(struct poller *p, int exp, int wake)
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{
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int status;
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int fd;
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int count;
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int updt_idx;
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int wait_time;
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int old_fd;
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/* first, scan the update list to find polling changes */
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for (updt_idx = 0; updt_idx < fd_nbupdt; updt_idx++) {
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fd = fd_updt[updt_idx];
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_HA_ATOMIC_AND(&fdtab[fd].update_mask, ~tid_bit);
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if (!fdtab[fd].owner) {
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activity[tid].poll_drop++;
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continue;
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}
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_update_fd(fd);
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}
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fd_nbupdt = 0;
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/* Scan the global update list */
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for (old_fd = fd = update_list.first; fd != -1; fd = fdtab[fd].update.next) {
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if (fd == -2) {
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fd = old_fd;
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continue;
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}
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else if (fd <= -3)
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fd = -fd -4;
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if (fd == -1)
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break;
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if (fdtab[fd].update_mask & tid_bit)
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done_update_polling(fd);
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else
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continue;
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if (!fdtab[fd].owner)
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continue;
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_update_fd(fd);
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}
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thread_harmless_now();
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/* now let's wait for polled events */
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wait_time = wake ? 0 : compute_poll_timeout(exp);
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tv_entering_poll();
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activity_count_runtime();
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do {
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int timeout = (global.tune.options & GTUNE_BUSY_POLLING) ? 0 : wait_time;
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status = epoll_wait(epoll_fd[tid], epoll_events, global.tune.maxpollevents, timeout);
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tv_update_date(timeout, status);
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if (status)
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break;
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if (timeout || !wait_time)
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break;
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if (signal_queue_len || wake)
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break;
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if (tick_isset(exp) && tick_is_expired(exp, now_ms))
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break;
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} while (1);
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tv_leaving_poll(wait_time, status);
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thread_harmless_end();
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if (sleeping_thread_mask & tid_bit)
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_HA_ATOMIC_AND(&sleeping_thread_mask, ~tid_bit);
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/* process polled events */
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for (count = 0; count < status; count++) {
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struct epoll_event ev;
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unsigned int n, e;
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e = epoll_events[count].events;
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fd = epoll_events[count].data.fd;
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if (!fdtab[fd].owner) {
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activity[tid].poll_dead++;
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continue;
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}
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if (!(fdtab[fd].thread_mask & tid_bit)) {
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/* FD has been migrated */
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activity[tid].poll_skip++;
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epoll_ctl(epoll_fd[tid], EPOLL_CTL_DEL, fd, &ev);
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_HA_ATOMIC_AND(&polled_mask[fd].poll_recv, ~tid_bit);
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_HA_ATOMIC_AND(&polled_mask[fd].poll_send, ~tid_bit);
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continue;
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}
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n = ((e & EPOLLIN) ? FD_EV_READY_R : 0) |
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((e & EPOLLOUT) ? FD_EV_READY_W : 0) |
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((e & EPOLLRDHUP) ? FD_EV_SHUT_R : 0) |
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((e & EPOLLHUP) ? FD_EV_SHUT_RW : 0) |
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((e & EPOLLERR) ? FD_EV_ERR_RW : 0);
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if ((e & EPOLLRDHUP) && !(cur_poller.flags & HAP_POLL_F_RDHUP))
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_HA_ATOMIC_OR(&cur_poller.flags, HAP_POLL_F_RDHUP);
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fd_update_events(fd, n);
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}
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/* the caller will take care of cached events */
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}
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static int init_epoll_per_thread()
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{
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int fd;
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epoll_events = calloc(1, sizeof(struct epoll_event) * global.tune.maxpollevents);
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if (epoll_events == NULL)
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goto fail_alloc;
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if (MAX_THREADS > 1 && tid) {
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epoll_fd[tid] = epoll_create(global.maxsock + 1);
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if (epoll_fd[tid] < 0)
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goto fail_fd;
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}
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/* we may have to unregister some events initially registered on the
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* original fd when it was alone, and/or to register events on the new
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* fd for this thread. Let's just mark them as updated, the poller will
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* do the rest.
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*/
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for (fd = 0; fd < global.maxsock; fd++)
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updt_fd_polling(fd);
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return 1;
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fail_fd:
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free(epoll_events);
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fail_alloc:
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return 0;
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}
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static void deinit_epoll_per_thread()
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{
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if (MAX_THREADS > 1 && tid)
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close(epoll_fd[tid]);
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free(epoll_events);
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epoll_events = NULL;
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}
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/*
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* Initialization of the epoll() poller.
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* Returns 0 in case of failure, non-zero in case of success. If it fails, it
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* disables the poller by setting its pref to 0.
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*/
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static int _do_init(struct poller *p)
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{
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p->private = NULL;
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epoll_fd[tid] = epoll_create(global.maxsock + 1);
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if (epoll_fd[tid] < 0)
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goto fail_fd;
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hap_register_per_thread_init(init_epoll_per_thread);
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hap_register_per_thread_deinit(deinit_epoll_per_thread);
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return 1;
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fail_fd:
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p->pref = 0;
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return 0;
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}
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/*
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* Termination of the epoll() poller.
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* Memory is released and the poller is marked as unselectable.
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*/
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static void _do_term(struct poller *p)
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{
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if (epoll_fd[tid] >= 0) {
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close(epoll_fd[tid]);
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epoll_fd[tid] = -1;
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}
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p->private = NULL;
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p->pref = 0;
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}
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/*
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* Check that the poller works.
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* Returns 1 if OK, otherwise 0.
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*/
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static int _do_test(struct poller *p)
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{
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int fd;
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fd = epoll_create(global.maxsock + 1);
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if (fd < 0)
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return 0;
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close(fd);
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return 1;
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}
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/*
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* Recreate the epoll file descriptor after a fork(). Returns 1 if OK,
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* otherwise 0. It will ensure that all processes will not share their
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* epoll_fd. Some side effects were encountered because of this, such
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* as epoll_wait() returning an FD which was previously deleted.
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*/
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static int _do_fork(struct poller *p)
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{
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if (epoll_fd[tid] >= 0)
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close(epoll_fd[tid]);
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epoll_fd[tid] = epoll_create(global.maxsock + 1);
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if (epoll_fd[tid] < 0)
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return 0;
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return 1;
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}
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/*
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* It is a constructor, which means that it will automatically be called before
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* main(). This is GCC-specific but it works at least since 2.95.
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* Special care must be taken so that it does not need any uninitialized data.
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*/
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__attribute__((constructor))
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static void _do_register(void)
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{
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struct poller *p;
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int i;
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if (nbpollers >= MAX_POLLERS)
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return;
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for (i = 0; i < MAX_THREADS; i++)
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epoll_fd[i] = -1;
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p = &pollers[nbpollers++];
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p->name = "epoll";
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p->pref = 300;
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p->flags = HAP_POLL_F_ERRHUP; // note: RDHUP might be dynamically added
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p->private = NULL;
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p->clo = __fd_clo;
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p->test = _do_test;
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p->init = _do_init;
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p->term = _do_term;
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p->poll = _do_poll;
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p->fork = _do_fork;
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}
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/*
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* Local variables:
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* c-indent-level: 8
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* c-basic-offset: 8
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* End:
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*/
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