Содержимое пина, зафиксированного в go.mod sing-box-lx, одним коммитом без истории. Полная история SagerNet/gvisor — 1.45 ГБ и клонируется в каждой CI-джобе; наша дельта — одна вставка в одну функцию, история для неё не нужна. Module path github.com/sagernet/gvisor сохранён намеренно: на него опирается replace-директива суперпроекта. Патч поверх — отдельным коммитом, чтобы дельта читалась одним git show и переносилась на новый пин копированием. SPECS/TASKS/048-GVISOR_HANDSHAKE_NIL_CRASH
160 lines
4.9 KiB
Go
160 lines
4.9 KiB
Go
// Copyright 2018 The gVisor Authors.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package tcp
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import (
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"time"
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"github.com/sagernet/gvisor/pkg/tcpip"
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)
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type timerState int
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const (
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// The timer has not been initialized yet or has been cleaned up.
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timerUninitialized timerState = iota
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// The timer is disabled.
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timerStateDisabled
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// The timer is enabled, but the clock timer may be set to an earlier
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// expiration time due to a previous orphaned state.
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timerStateEnabled
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// The timer is disabled, but the clock timer is enabled, which means that
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// it will cause a spurious wakeup unless the timer is enabled before the
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// clock timer fires.
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timerStateOrphaned
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)
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// timer is a timer implementation that reduces the interactions with the
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// clock timer infrastructure by letting timers run (and potentially
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// eventually expire) even if they are stopped. It makes it cheaper to
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// disable/reenable timers at the expense of spurious wakes. This is useful for
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// cases when the same timer is disabled/reenabled repeatedly with relatively
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// long timeouts farther into the future.
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//
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// TCP retransmit timers benefit from this because they the timeouts are long
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// (currently at least 200ms), and get disabled when acks are received, and
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// reenabled when new pending segments are sent.
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//
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// It is advantageous to avoid interacting with the clock because it acquires
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// a global mutex and performs O(log n) operations, where n is the global number
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// of timers, whenever a timer is enabled or disabled, and may make a syscall.
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//
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// This struct is thread-compatible.
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type timer struct {
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state timerState
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clock tcpip.Clock
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// target is the expiration time of the current timer. It is only
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// meaningful in the enabled state.
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target tcpip.MonotonicTime
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// clockTarget is the expiration time of the clock timer. It is
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// meaningful in the enabled and orphaned states.
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clockTarget tcpip.MonotonicTime
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// timer is the clock timer used to wait on.
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timer tcpip.Timer
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// callback is the function that's called when the timer expires.
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callback func()
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}
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// init initializes the timer. Once it expires the function callback
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// passed will be called.
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func (t *timer) init(clock tcpip.Clock, f func()) {
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t.state = timerStateDisabled
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t.clock = clock
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t.callback = f
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}
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// cleanup frees all resources associated with the timer.
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func (t *timer) cleanup() {
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if t.timer == nil {
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// No cleanup needed.
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return
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}
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t.timer.Stop()
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*t = timer{}
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}
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// isUninitialized returns true if the timer is in the uninitialized state. This
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// is only true if init() has never been called or if cleanup has been called.
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func (t *timer) isUninitialized() bool {
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return t.state == timerUninitialized
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}
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// checkExpiration checks if the given timer has actually expired, it should be
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// called whenever the callback function is called, and is used to check if it's
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// a spurious timer expiration (due to a previously orphaned timer) or a
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// legitimate one.
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func (t *timer) checkExpiration() bool {
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// Transition to fully disabled state if we're just consuming an
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// orphaned timer.
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if t.state == timerStateOrphaned {
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t.state = timerStateDisabled
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return false
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}
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// The timer is enabled, but it may have expired early. Check if that's
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// the case, and if so, reset the runtime timer to the correct time.
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now := t.clock.NowMonotonic()
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if now.Before(t.target) {
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t.clockTarget = t.target
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t.timer.Reset(t.target.Sub(now))
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return false
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}
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// The timer has actually expired, disable it for now and inform the
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// caller.
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t.state = timerStateDisabled
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return true
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}
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// disable disables the timer, leaving it in an orphaned state if it wasn't
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// already disabled.
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func (t *timer) disable() {
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if t.state != timerStateDisabled {
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t.state = timerStateOrphaned
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}
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}
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// enabled returns true if the timer is currently enabled, false otherwise.
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func (t *timer) enabled() bool {
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return t.state == timerStateEnabled
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}
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// enable enables the timer, programming the runtime timer if necessary.
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func (t *timer) enable(d time.Duration) {
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t.target = t.clock.NowMonotonic().Add(d)
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// Check if we need to set the runtime timer.
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if t.state == timerStateDisabled || t.target.Before(t.clockTarget) {
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t.clockTarget = t.target
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t.resetOrStart(d)
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}
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t.state = timerStateEnabled
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}
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// resetOrStart creates the timer if it doesn't already exist or resets it with
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// the given duration if it does.
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func (t *timer) resetOrStart(d time.Duration) {
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if t.timer == nil {
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t.timer = t.clock.AfterFunc(d, t.callback)
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} else {
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t.timer.Reset(d)
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}
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}
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