2018-12-31 20:04:05 +01:00
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//
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2018-01-02 14:42:31 +01:00
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// Copyright Aliaksei Levin (levlam@telegram.org), Arseny Smirnov (arseny30@gmail.com) 2014-2018
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2018-12-31 20:04:05 +01:00
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//
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// Distributed under the Boost Software License, Version 1.0. (See accompanying
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// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
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//
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#include "td/utils/port/detail/KQueue.h"
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char disable_linker_warning_about_empty_file_kqueue_cpp TD_UNUSED;
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#ifdef TD_POLL_KQUEUE
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#include "td/utils/logging.h"
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#include "td/utils/Status.h"
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#include <utility>
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#include <unistd.h>
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namespace td {
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namespace detail {
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KQueue::KQueue() {
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kq = -1;
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}
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KQueue::~KQueue() {
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clear();
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}
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void KQueue::init() {
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kq = kqueue();
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auto kqueue_errno = errno;
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LOG_IF(FATAL, kq == -1) << Status::PosixError(kqueue_errno, "kqueue creation failed");
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// TODO: const
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events.resize(1000);
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changes_n = 0;
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}
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void KQueue::clear() {
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if (kq == -1) {
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return;
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}
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events.clear();
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close(kq);
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kq = -1;
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}
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int KQueue::update(int nevents, const timespec *timeout, bool may_fail) {
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int err = kevent(kq, &events[0], changes_n, &events[0], nevents, timeout);
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auto kevent_errno = errno;
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bool is_fatal_error = [&] {
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if (err != -1) {
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return false;
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}
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if (may_fail) {
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return kevent_errno != ENOENT;
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}
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return kevent_errno != EINTR;
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}();
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LOG_IF(FATAL, is_fatal_error) << Status::PosixError(kevent_errno, "kevent failed");
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changes_n = 0;
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if (err < 0) {
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return 0;
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}
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return err;
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}
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void KQueue::flush_changes(bool may_fail) {
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if (!changes_n) {
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return;
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}
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int n = update(0, nullptr, may_fail);
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CHECK(n == 0);
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}
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void KQueue::add_change(std::uintptr_t ident, int16 filter, uint16 flags, uint32 fflags, std::intptr_t data,
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void *udata) {
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if (changes_n == static_cast<int>(events.size())) {
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flush_changes();
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}
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EV_SET(&events[changes_n], ident, filter, flags, fflags, data, udata);
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VLOG(fd) << "Subscribe [fd:" << ident << "] [filter:" << filter << "] [udata: " << udata << "]";
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changes_n++;
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}
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void KQueue::subscribe(const Fd &fd, Fd::Flags flags) {
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if (flags & Fd::Read) {
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add_change(fd.get_native_fd(), EVFILT_READ, EV_ADD | EV_CLEAR, 0, 0, nullptr);
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}
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if (flags & Fd::Write) {
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add_change(fd.get_native_fd(), EVFILT_WRITE, EV_ADD | EV_CLEAR, 0, 0, nullptr);
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}
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}
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void KQueue::invalidate(const Fd &fd) {
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for (int i = 0; i < changes_n; i++) {
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if (events[i].ident == static_cast<std::uintptr_t>(fd.get_native_fd())) {
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changes_n--;
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std::swap(events[i], events[changes_n]);
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i--;
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}
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}
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}
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void KQueue::unsubscribe(const Fd &fd) {
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// invalidate(fd);
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flush_changes();
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add_change(fd.get_native_fd(), EVFILT_READ, EV_DELETE, 0, 0, nullptr);
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flush_changes(true);
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add_change(fd.get_native_fd(), EVFILT_WRITE, EV_DELETE, 0, 0, nullptr);
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flush_changes(true);
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}
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void KQueue::unsubscribe_before_close(const Fd &fd) {
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invalidate(fd);
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// just to avoid O(changes_n ^ 2)
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if (changes_n != 0) {
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flush_changes();
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}
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}
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void KQueue::run(int timeout_ms) {
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timespec timeout_data;
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timespec *timeout_ptr;
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if (timeout_ms == -1) {
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timeout_ptr = nullptr;
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} else {
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timeout_data.tv_sec = timeout_ms / 1000;
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timeout_data.tv_nsec = timeout_ms % 1000 * 1000000;
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timeout_ptr = &timeout_data;
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}
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int n = update(static_cast<int>(events.size()), timeout_ptr);
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for (int i = 0; i < n; i++) {
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struct kevent *event = &events[i];
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Fd::Flags flags = 0;
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if (event->filter == EVFILT_WRITE) {
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flags |= Fd::Write;
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}
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if (event->filter == EVFILT_READ) {
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flags |= Fd::Read;
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}
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if (event->flags & EV_EOF) {
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flags |= Fd::Close;
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}
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if (event->fflags & EV_ERROR) {
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LOG(FATAL, "EV_ERROR in kqueue is not supported");
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}
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VLOG(fd) << "Event [fd:" << event->ident << "] [filter:" << event->filter << "] [udata: " << event->udata << "]";
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// LOG(WARNING) << "event->ident = " << event->ident << "event->filter = " << event->filter;
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Fd(static_cast<int>(event->ident), Fd::Mode::Reference).update_flags_notify(flags);
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}
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}
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} // namespace detail
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} // namespace td
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#endif
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