mirror of
https://github.com/ceph/ceph-csi.git
synced 2024-11-29 17:50:23 +00:00
2551a0b05f
Signed-off-by: Niels de Vos <ndevos@ibm.com>
199 lines
7.8 KiB
Go
199 lines
7.8 KiB
Go
/*
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Copyright 2021 The Kubernetes Authors.
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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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http://www.apache.org/licenses/LICENSE-2.0
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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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*/
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package server
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import (
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"sync"
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)
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/*
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We make an attempt here to identify the events that take place during
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lifecycle of the apiserver.
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We also identify each event with a name so we can refer to it.
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Events:
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- ShutdownInitiated: KILL signal received
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- AfterShutdownDelayDuration: shutdown delay duration has passed
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- InFlightRequestsDrained: all in flight request(s) have been drained
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- HasBeenReady is signaled when the readyz endpoint succeeds for the first time
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The following is a sequence of shutdown events that we expect to see with
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'ShutdownSendRetryAfter' = false:
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T0: ShutdownInitiated: KILL signal received
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- /readyz starts returning red
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- run pre shutdown hooks
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T0+70s: AfterShutdownDelayDuration: shutdown delay duration has passed
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- the default value of 'ShutdownDelayDuration' is '70s'
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- it's time to initiate shutdown of the HTTP Server, server.Shutdown is invoked
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- as a consequene, the Close function has is called for all listeners
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- the HTTP Server stops listening immediately
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- any new request arriving on a new TCP socket is denied with
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a network error similar to 'connection refused'
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- the HTTP Server waits gracefully for existing requests to complete
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up to '60s' (dictated by ShutdownTimeout)
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- active long running requests will receive a GOAWAY.
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T0+70s: HTTPServerStoppedListening:
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- this event is signaled when the HTTP Server has stopped listening
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which is immediately after server.Shutdown has been invoked
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T0 + 70s + up-to 60s: InFlightRequestsDrained: existing in flight requests have been drained
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- long running requests are outside of this scope
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- up-to 60s: the default value of 'ShutdownTimeout' is 60s, this means that
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any request in flight has a hard timeout of 60s.
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- it's time to call 'Shutdown' on the audit events since all
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in flight request(s) have drained.
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The following is a sequence of shutdown events that we expect to see with
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'ShutdownSendRetryAfter' = true:
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T0: ShutdownInitiated: KILL signal received
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- /readyz starts returning red
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- run pre shutdown hooks
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T0+70s: AfterShutdownDelayDuration: shutdown delay duration has passed
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- the default value of 'ShutdownDelayDuration' is '70s'
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- the HTTP Server will continue to listen
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- the apiserver is not accepting new request(s)
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- it includes new request(s) on a new or an existing TCP connection
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- new request(s) arriving after this point are replied with a 429
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and the response headers: 'Retry-After: 1` and 'Connection: close'
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- note: these new request(s) will not show up in audit logs
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T0 + 70s + up to 60s: InFlightRequestsDrained: existing in flight requests have been drained
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- long running requests are outside of this scope
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- up to 60s: the default value of 'ShutdownTimeout' is 60s, this means that
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any request in flight has a hard timeout of 60s.
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- server.Shutdown is called, the HTTP Server stops listening immediately
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- the HTTP Server waits gracefully for existing requests to complete
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up to '2s' (it's hard coded right now)
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*/
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// lifecycleSignal encapsulates a named apiserver event
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type lifecycleSignal interface {
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// Signal signals the event, indicating that the event has occurred.
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// Signal is idempotent, once signaled the event stays signaled and
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// it immediately unblocks any goroutine waiting for this event.
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Signal()
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// Signaled returns a channel that is closed when the underlying event
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// has been signaled. Successive calls to Signaled return the same value.
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Signaled() <-chan struct{}
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// Name returns the name of the signal, useful for logging.
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Name() string
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}
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// lifecycleSignals provides an abstraction of the events that
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// transpire during the lifecycle of the apiserver. This abstraction makes it easy
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// for us to write unit tests that can verify expected graceful termination behavior.
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//
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// GenericAPIServer can use these to either:
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// - signal that a particular termination event has transpired
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// - wait for a designated termination event to transpire and do some action.
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type lifecycleSignals struct {
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// ShutdownInitiated event is signaled when an apiserver shutdown has been initiated.
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// It is signaled when the `stopCh` provided by the main goroutine
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// receives a KILL signal and is closed as a consequence.
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ShutdownInitiated lifecycleSignal
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// AfterShutdownDelayDuration event is signaled as soon as ShutdownDelayDuration
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// has elapsed since the ShutdownInitiated event.
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// ShutdownDelayDuration allows the apiserver to delay shutdown for some time.
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AfterShutdownDelayDuration lifecycleSignal
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// PreShutdownHooksStopped event is signaled when all registered
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// preshutdown hook(s) have finished running.
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PreShutdownHooksStopped lifecycleSignal
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// NotAcceptingNewRequest event is signaled when the server is no
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// longer accepting any new request, from this point on any new
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// request will receive an error.
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NotAcceptingNewRequest lifecycleSignal
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// InFlightRequestsDrained event is signaled when the existing requests
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// in flight have completed. This is used as signal to shut down the audit backends
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InFlightRequestsDrained lifecycleSignal
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// HTTPServerStoppedListening termination event is signaled when the
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// HTTP Server has stopped listening to the underlying socket.
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HTTPServerStoppedListening lifecycleSignal
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// HasBeenReady is signaled when the readyz endpoint succeeds for the first time.
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HasBeenReady lifecycleSignal
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// MuxAndDiscoveryComplete is signaled when all known HTTP paths have been installed.
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// It exists primarily to avoid returning a 404 response when a resource actually exists but we haven't installed the path to a handler.
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// The actual logic is implemented by an APIServer using the generic server library.
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MuxAndDiscoveryComplete lifecycleSignal
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}
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// ShuttingDown returns the lifecycle signal that is signaled when
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// the server is not accepting any new requests.
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// this is the lifecycle event that is exported to the request handler
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// logic to indicate that the server is shutting down.
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func (s lifecycleSignals) ShuttingDown() <-chan struct{} {
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return s.NotAcceptingNewRequest.Signaled()
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}
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// newLifecycleSignals returns an instance of lifecycleSignals interface to be used
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// to coordinate lifecycle of the apiserver
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func newLifecycleSignals() lifecycleSignals {
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return lifecycleSignals{
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ShutdownInitiated: newNamedChannelWrapper("ShutdownInitiated"),
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AfterShutdownDelayDuration: newNamedChannelWrapper("AfterShutdownDelayDuration"),
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PreShutdownHooksStopped: newNamedChannelWrapper("PreShutdownHooksStopped"),
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NotAcceptingNewRequest: newNamedChannelWrapper("NotAcceptingNewRequest"),
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InFlightRequestsDrained: newNamedChannelWrapper("InFlightRequestsDrained"),
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HTTPServerStoppedListening: newNamedChannelWrapper("HTTPServerStoppedListening"),
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HasBeenReady: newNamedChannelWrapper("HasBeenReady"),
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MuxAndDiscoveryComplete: newNamedChannelWrapper("MuxAndDiscoveryComplete"),
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}
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}
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func newNamedChannelWrapper(name string) lifecycleSignal {
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return &namedChannelWrapper{
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name: name,
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once: sync.Once{},
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ch: make(chan struct{}),
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}
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}
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type namedChannelWrapper struct {
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name string
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once sync.Once
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ch chan struct{}
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}
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func (e *namedChannelWrapper) Signal() {
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e.once.Do(func() {
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close(e.ch)
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})
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}
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func (e *namedChannelWrapper) Signaled() <-chan struct{} {
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return e.ch
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}
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func (e *namedChannelWrapper) Name() string {
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return e.name
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}
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