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147 lines
5.4 KiB
147 lines
5.4 KiB
/*
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* Copyright 2018 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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#include "test/scenario/network_node.h"
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#include <algorithm>
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#include <vector>
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#include <memory>
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#include "rtc_base/net_helper.h"
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#include "rtc_base/numerics/safe_minmax.h"
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namespace webrtc {
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namespace test {
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namespace {
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constexpr char kDummyTransportName[] = "dummy";
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SimulatedNetwork::Config CreateSimulationConfig(
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NetworkSimulationConfig config) {
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SimulatedNetwork::Config sim_config;
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sim_config.link_capacity_kbps = config.bandwidth.kbps_or(0);
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sim_config.loss_percent = config.loss_rate * 100;
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sim_config.queue_delay_ms = config.delay.ms();
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sim_config.delay_standard_deviation_ms = config.delay_std_dev.ms();
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sim_config.packet_overhead = config.packet_overhead.bytes<int>();
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sim_config.codel_active_queue_management =
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config.codel_active_queue_management;
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sim_config.queue_length_packets =
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config.packet_queue_length_limit.value_or(0);
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return sim_config;
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}
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} // namespace
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SimulationNode::SimulationNode(NetworkSimulationConfig config,
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SimulatedNetwork* behavior,
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EmulatedNetworkNode* network_node)
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: config_(config), simulation_(behavior), network_node_(network_node) {}
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std::unique_ptr<SimulatedNetwork> SimulationNode::CreateBehavior(
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NetworkSimulationConfig config) {
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SimulatedNetwork::Config sim_config = CreateSimulationConfig(config);
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return std::make_unique<SimulatedNetwork>(sim_config);
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}
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void SimulationNode::UpdateConfig(
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std::function<void(NetworkSimulationConfig*)> modifier) {
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modifier(&config_);
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SimulatedNetwork::Config sim_config = CreateSimulationConfig(config_);
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simulation_->SetConfig(sim_config);
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}
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void SimulationNode::PauseTransmissionUntil(Timestamp until) {
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simulation_->PauseTransmissionUntil(until.us());
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}
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ColumnPrinter SimulationNode::ConfigPrinter() const {
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return ColumnPrinter::Lambda(
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"propagation_delay capacity loss_rate",
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[this](rtc::SimpleStringBuilder& sb) {
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sb.AppendFormat("%.3lf %.0lf %.2lf", config_.delay.seconds<double>(),
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config_.bandwidth.bps() / 8.0, config_.loss_rate);
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});
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}
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NetworkNodeTransport::NetworkNodeTransport(Clock* sender_clock,
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Call* sender_call)
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: sender_clock_(sender_clock), sender_call_(sender_call) {}
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NetworkNodeTransport::~NetworkNodeTransport() = default;
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bool NetworkNodeTransport::SendRtp(const uint8_t* packet,
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size_t length,
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const PacketOptions& options) {
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int64_t send_time_ms = sender_clock_->TimeInMilliseconds();
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rtc::SentPacket sent_packet;
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sent_packet.packet_id = options.packet_id;
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sent_packet.info.included_in_feedback = options.included_in_feedback;
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sent_packet.info.included_in_allocation = options.included_in_allocation;
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sent_packet.send_time_ms = send_time_ms;
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sent_packet.info.packet_size_bytes = length;
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sent_packet.info.packet_type = rtc::PacketType::kData;
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sender_call_->OnSentPacket(sent_packet);
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MutexLock lock(&mutex_);
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if (!endpoint_)
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return false;
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rtc::CopyOnWriteBuffer buffer(packet, length);
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endpoint_->SendPacket(local_address_, remote_address_, buffer,
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packet_overhead_.bytes());
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return true;
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}
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bool NetworkNodeTransport::SendRtcp(const uint8_t* packet, size_t length) {
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rtc::CopyOnWriteBuffer buffer(packet, length);
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MutexLock lock(&mutex_);
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if (!endpoint_)
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return false;
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endpoint_->SendPacket(local_address_, remote_address_, buffer,
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packet_overhead_.bytes());
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return true;
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}
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void NetworkNodeTransport::Connect(EmulatedEndpoint* endpoint,
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const rtc::SocketAddress& receiver_address,
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DataSize packet_overhead) {
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rtc::NetworkRoute route;
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route.connected = true;
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// We assume that the address will be unique in the lower bytes.
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route.local = rtc::RouteEndpoint::CreateWithNetworkId(static_cast<uint16_t>(
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receiver_address.ipaddr().v4AddressAsHostOrderInteger()));
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route.remote = rtc::RouteEndpoint::CreateWithNetworkId(static_cast<uint16_t>(
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receiver_address.ipaddr().v4AddressAsHostOrderInteger()));
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route.packet_overhead = packet_overhead.bytes() +
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receiver_address.ipaddr().overhead() +
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cricket::kUdpHeaderSize;
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{
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// Only IPv4 address is supported.
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RTC_CHECK_EQ(receiver_address.family(), AF_INET);
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MutexLock lock(&mutex_);
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endpoint_ = endpoint;
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local_address_ = rtc::SocketAddress(endpoint_->GetPeerLocalAddress(), 0);
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remote_address_ = receiver_address;
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packet_overhead_ = packet_overhead;
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current_network_route_ = route;
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}
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sender_call_->GetTransportControllerSend()->OnNetworkRouteChanged(
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kDummyTransportName, route);
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}
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void NetworkNodeTransport::Disconnect() {
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MutexLock lock(&mutex_);
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current_network_route_.connected = false;
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sender_call_->GetTransportControllerSend()->OnNetworkRouteChanged(
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kDummyTransportName, current_network_route_);
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current_network_route_ = {};
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endpoint_ = nullptr;
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}
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} // namespace test
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} // namespace webrtc
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