179 lines
6.2 KiB
C++
179 lines
6.2 KiB
C++
/*
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* Copyright (c) 2021 The WebRTC project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#ifndef NET_DCSCTP_SOCKET_CALLBACK_DEFERRER_H_
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#define NET_DCSCTP_SOCKET_CALLBACK_DEFERRER_H_
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#include <cstdint>
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#include <functional>
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#include <memory>
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#include <string>
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#include <utility>
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#include <vector>
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#include "absl/strings/string_view.h"
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#include "api/array_view.h"
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#include "api/ref_counted_base.h"
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#include "api/scoped_refptr.h"
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#include "net/dcsctp/public/dcsctp_message.h"
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#include "net/dcsctp/public/dcsctp_socket.h"
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#include "rtc_base/ref_counted_object.h"
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namespace dcsctp {
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// Defers callbacks until they can be safely triggered.
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//
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// There are a lot of callbacks from the dcSCTP library to the client,
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// such as when messages are received or streams are closed. When the client
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// receives these callbacks, the client is expected to be able to call into the
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// library - from within the callback. For example, sending a reply message when
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// a certain SCTP message has been received, or to reconnect when the connection
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// was closed for any reason. This means that the dcSCTP library must always be
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// in a consistent and stable state when these callbacks are delivered, and to
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// ensure that's the case, callbacks are not immediately delivered from where
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// they originate, but instead queued (deferred) by this class. At the end of
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// any public API method that may result in callbacks, they are triggered and
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// then delivered.
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//
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// There are a number of exceptions, which is clearly annotated in the API.
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class CallbackDeferrer : public DcSctpSocketCallbacks {
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public:
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explicit CallbackDeferrer(DcSctpSocketCallbacks& underlying)
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: underlying_(underlying) {}
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void TriggerDeferred() {
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// Need to swap here. The client may call into the library from within a
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// callback, and that might result in adding new callbacks to this instance,
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// and the vector can't be modified while iterated on.
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std::vector<std::function<void(DcSctpSocketCallbacks & cb)>> deferred;
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deferred.swap(deferred_);
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for (auto& cb : deferred) {
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cb(underlying_);
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}
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}
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void SendPacket(rtc::ArrayView<const uint8_t> data) override {
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// Will not be deferred - call directly.
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underlying_.SendPacket(data);
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}
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std::unique_ptr<Timeout> CreateTimeout() override {
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// Will not be deferred - call directly.
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return underlying_.CreateTimeout();
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}
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TimeMs TimeMillis() override {
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// Will not be deferred - call directly.
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return underlying_.TimeMillis();
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}
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uint32_t GetRandomInt(uint32_t low, uint32_t high) override {
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// Will not be deferred - call directly.
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return underlying_.GetRandomInt(low, high);
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}
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void NotifyOutgoingMessageBufferEmpty() override {
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// Will not be deferred - call directly.
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underlying_.NotifyOutgoingMessageBufferEmpty();
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}
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void OnMessageReceived(DcSctpMessage message) override {
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deferred_.emplace_back(
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[deliverer = MessageDeliverer(std::move(message))](
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DcSctpSocketCallbacks& cb) mutable { deliverer.Deliver(cb); });
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}
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void OnError(ErrorKind error, absl::string_view message) override {
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deferred_.emplace_back(
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[error, message = std::string(message)](DcSctpSocketCallbacks& cb) {
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cb.OnError(error, message);
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});
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}
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void OnAborted(ErrorKind error, absl::string_view message) override {
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deferred_.emplace_back(
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[error, message = std::string(message)](DcSctpSocketCallbacks& cb) {
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cb.OnAborted(error, message);
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});
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}
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void OnConnected() override {
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deferred_.emplace_back([](DcSctpSocketCallbacks& cb) { cb.OnConnected(); });
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}
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void OnClosed() override {
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deferred_.emplace_back([](DcSctpSocketCallbacks& cb) { cb.OnClosed(); });
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}
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void OnConnectionRestarted() override {
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deferred_.emplace_back(
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[](DcSctpSocketCallbacks& cb) { cb.OnConnectionRestarted(); });
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}
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void OnStreamsResetFailed(rtc::ArrayView<const StreamID> outgoing_streams,
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absl::string_view reason) override {
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deferred_.emplace_back(
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[streams = std::vector<StreamID>(outgoing_streams.begin(),
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outgoing_streams.end()),
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reason = std::string(reason)](DcSctpSocketCallbacks& cb) {
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cb.OnStreamsResetFailed(streams, reason);
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});
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}
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void OnStreamsResetPerformed(
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rtc::ArrayView<const StreamID> outgoing_streams) override {
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deferred_.emplace_back(
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[streams = std::vector<StreamID>(outgoing_streams.begin(),
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outgoing_streams.end())](
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DcSctpSocketCallbacks& cb) {
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cb.OnStreamsResetPerformed(streams);
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});
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}
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void OnIncomingStreamsReset(
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rtc::ArrayView<const StreamID> incoming_streams) override {
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deferred_.emplace_back(
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[streams = std::vector<StreamID>(incoming_streams.begin(),
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incoming_streams.end())](
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DcSctpSocketCallbacks& cb) { cb.OnIncomingStreamsReset(streams); });
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}
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private:
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// A wrapper around the move-only DcSctpMessage, to let it be captured in a
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// lambda.
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class MessageDeliverer {
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public:
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explicit MessageDeliverer(DcSctpMessage&& message)
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: state_(rtc::make_ref_counted<State>(std::move(message))) {}
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void Deliver(DcSctpSocketCallbacks& c) {
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// Really ensure that it's only called once.
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RTC_DCHECK(!state_->has_delivered);
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state_->has_delivered = true;
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c.OnMessageReceived(std::move(state_->message));
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}
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private:
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struct State : public rtc::RefCountInterface {
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explicit State(DcSctpMessage&& m)
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: has_delivered(false), message(std::move(m)) {}
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bool has_delivered;
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DcSctpMessage message;
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};
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rtc::scoped_refptr<State> state_;
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};
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DcSctpSocketCallbacks& underlying_;
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std::vector<std::function<void(DcSctpSocketCallbacks& cb)>> deferred_;
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};
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} // namespace dcsctp
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#endif // NET_DCSCTP_SOCKET_CALLBACK_DEFERRER_H_
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