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195 lines
6.4 KiB
195 lines
6.4 KiB
/*
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* Copyright 2013 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 "pc/sctp_utils.h"
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#include <stdint.h>
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#include "rtc_base/byte_buffer.h"
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#include "rtc_base/copy_on_write_buffer.h"
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#include "test/gtest.h"
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class SctpUtilsTest : public ::testing::Test {
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public:
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void VerifyOpenMessageFormat(const rtc::CopyOnWriteBuffer& packet,
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const std::string& label,
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const webrtc::DataChannelInit& config) {
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uint8_t message_type;
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uint8_t channel_type;
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uint32_t reliability;
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uint16_t priority;
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uint16_t label_length;
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uint16_t protocol_length;
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rtc::ByteBufferReader buffer(packet.data<char>(), packet.size());
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ASSERT_TRUE(buffer.ReadUInt8(&message_type));
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EXPECT_EQ(0x03, message_type);
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ASSERT_TRUE(buffer.ReadUInt8(&channel_type));
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if (config.ordered) {
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EXPECT_EQ(
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config.maxRetransmits ? 0x01 : (config.maxRetransmitTime ? 0x02 : 0),
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channel_type);
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} else {
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EXPECT_EQ(config.maxRetransmits
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? 0x81
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: (config.maxRetransmitTime ? 0x82 : 0x80),
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channel_type);
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}
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ASSERT_TRUE(buffer.ReadUInt16(&priority));
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if (config.priority) {
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// Exact values are checked by round-trip conversion, but
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// all values defined are greater than zero.
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EXPECT_GT(priority, 0);
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} else {
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EXPECT_EQ(priority, 0);
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}
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ASSERT_TRUE(buffer.ReadUInt32(&reliability));
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if (config.maxRetransmits || config.maxRetransmitTime) {
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EXPECT_EQ(config.maxRetransmits ? *config.maxRetransmits
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: *config.maxRetransmitTime,
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static_cast<int>(reliability));
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}
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ASSERT_TRUE(buffer.ReadUInt16(&label_length));
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ASSERT_TRUE(buffer.ReadUInt16(&protocol_length));
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EXPECT_EQ(label.size(), label_length);
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EXPECT_EQ(config.protocol.size(), protocol_length);
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std::string label_output;
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ASSERT_TRUE(buffer.ReadString(&label_output, label_length));
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EXPECT_EQ(label, label_output);
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std::string protocol_output;
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ASSERT_TRUE(buffer.ReadString(&protocol_output, protocol_length));
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EXPECT_EQ(config.protocol, protocol_output);
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}
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};
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TEST_F(SctpUtilsTest, WriteParseOpenMessageWithOrderedReliable) {
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webrtc::DataChannelInit config;
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std::string label = "abc";
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config.protocol = "y";
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rtc::CopyOnWriteBuffer packet;
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ASSERT_TRUE(webrtc::WriteDataChannelOpenMessage(label, config, &packet));
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VerifyOpenMessageFormat(packet, label, config);
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std::string output_label;
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webrtc::DataChannelInit output_config;
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ASSERT_TRUE(webrtc::ParseDataChannelOpenMessage(packet, &output_label,
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&output_config));
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EXPECT_EQ(label, output_label);
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EXPECT_EQ(config.protocol, output_config.protocol);
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EXPECT_EQ(config.ordered, output_config.ordered);
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EXPECT_EQ(config.maxRetransmitTime, output_config.maxRetransmitTime);
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EXPECT_EQ(config.maxRetransmits, output_config.maxRetransmits);
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}
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TEST_F(SctpUtilsTest, WriteParseOpenMessageWithMaxRetransmitTime) {
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webrtc::DataChannelInit config;
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std::string label = "abc";
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config.ordered = false;
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config.maxRetransmitTime = 10;
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config.protocol = "y";
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rtc::CopyOnWriteBuffer packet;
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ASSERT_TRUE(webrtc::WriteDataChannelOpenMessage(label, config, &packet));
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VerifyOpenMessageFormat(packet, label, config);
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std::string output_label;
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webrtc::DataChannelInit output_config;
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ASSERT_TRUE(webrtc::ParseDataChannelOpenMessage(packet, &output_label,
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&output_config));
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EXPECT_EQ(label, output_label);
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EXPECT_EQ(config.protocol, output_config.protocol);
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EXPECT_EQ(config.ordered, output_config.ordered);
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EXPECT_EQ(*config.maxRetransmitTime, *output_config.maxRetransmitTime);
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EXPECT_FALSE(output_config.maxRetransmits);
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}
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TEST_F(SctpUtilsTest, WriteParseOpenMessageWithMaxRetransmits) {
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webrtc::DataChannelInit config;
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std::string label = "abc";
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config.maxRetransmits = 10;
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config.protocol = "y";
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rtc::CopyOnWriteBuffer packet;
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ASSERT_TRUE(webrtc::WriteDataChannelOpenMessage(label, config, &packet));
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VerifyOpenMessageFormat(packet, label, config);
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std::string output_label;
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webrtc::DataChannelInit output_config;
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ASSERT_TRUE(webrtc::ParseDataChannelOpenMessage(packet, &output_label,
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&output_config));
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EXPECT_EQ(label, output_label);
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EXPECT_EQ(config.protocol, output_config.protocol);
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EXPECT_EQ(config.ordered, output_config.ordered);
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EXPECT_EQ(config.maxRetransmits, output_config.maxRetransmits);
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EXPECT_FALSE(output_config.maxRetransmitTime);
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}
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TEST_F(SctpUtilsTest, WriteParseOpenMessageWithPriority) {
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webrtc::DataChannelInit config;
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std::string label = "abc";
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config.protocol = "y";
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config.priority = webrtc::Priority::kVeryLow;
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rtc::CopyOnWriteBuffer packet;
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ASSERT_TRUE(webrtc::WriteDataChannelOpenMessage(label, config, &packet));
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VerifyOpenMessageFormat(packet, label, config);
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std::string output_label;
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webrtc::DataChannelInit output_config;
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ASSERT_TRUE(webrtc::ParseDataChannelOpenMessage(packet, &output_label,
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&output_config));
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EXPECT_EQ(label, output_label);
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ASSERT_TRUE(output_config.priority);
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EXPECT_EQ(*config.priority, *output_config.priority);
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}
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TEST_F(SctpUtilsTest, WriteParseAckMessage) {
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rtc::CopyOnWriteBuffer packet;
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webrtc::WriteDataChannelOpenAckMessage(&packet);
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uint8_t message_type;
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rtc::ByteBufferReader buffer(packet.data<char>(), packet.size());
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ASSERT_TRUE(buffer.ReadUInt8(&message_type));
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EXPECT_EQ(0x02, message_type);
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EXPECT_TRUE(webrtc::ParseDataChannelOpenAckMessage(packet));
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}
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TEST_F(SctpUtilsTest, TestIsOpenMessage) {
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rtc::CopyOnWriteBuffer open(1);
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open[0] = 0x03;
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EXPECT_TRUE(webrtc::IsOpenMessage(open));
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rtc::CopyOnWriteBuffer openAck(1);
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openAck[0] = 0x02;
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EXPECT_FALSE(webrtc::IsOpenMessage(openAck));
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rtc::CopyOnWriteBuffer invalid(1);
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invalid[0] = 0x01;
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EXPECT_FALSE(webrtc::IsOpenMessage(invalid));
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rtc::CopyOnWriteBuffer empty;
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EXPECT_FALSE(webrtc::IsOpenMessage(empty));
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}
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