269fb4bc90
Create a copy of talk/xmpp and talk/p2p under webrtc/libjingle/xmpp and webrtc/p2p. Also makes libjingle use those version instead of the one in the talk folder. BUG=3379 Review URL: https://webrtc-codereview.appspot.com/26999004 git-svn-id: http://webrtc.googlecode.com/svn/trunk@7549 4adac7df-926f-26a2-2b94-8c16560cd09d
537 lines
17 KiB
C++
537 lines
17 KiB
C++
/*
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* libjingle
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* Copyright 2004 Google Inc.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are met:
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*
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* 1. Redistributions of source code must retain the above copyright notice,
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* this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright notice,
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* this list of conditions and the following disclaimer in the documentation
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* and/or other materials provided with the distribution.
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* 3. The name of the author may not be used to endorse or promote products
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* derived from this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
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* WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
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* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO
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* EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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* SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
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* PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
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* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
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* WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
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* OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
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* ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include <string>
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#include "webrtc/p2p/base/relayserver.h"
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#include "webrtc/base/gunit.h"
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#include "webrtc/base/helpers.h"
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#include "webrtc/base/logging.h"
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#include "webrtc/base/physicalsocketserver.h"
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#include "webrtc/base/socketaddress.h"
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#include "webrtc/base/ssladapter.h"
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#include "webrtc/base/testclient.h"
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#include "webrtc/base/thread.h"
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using rtc::SocketAddress;
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using namespace cricket;
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static const uint32 LIFETIME = 4; // seconds
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static const SocketAddress server_int_addr("127.0.0.1", 5000);
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static const SocketAddress server_ext_addr("127.0.0.1", 5001);
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static const SocketAddress client1_addr("127.0.0.1", 6000 + (rand() % 1000));
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static const SocketAddress client2_addr("127.0.0.1", 7000 + (rand() % 1000));
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static const char* bad = "this is a completely nonsensical message whose only "
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"purpose is to make the parser go 'ack'. it doesn't "
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"look anything like a normal stun message";
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static const char* msg1 = "spamspamspamspamspamspamspambakedbeansspam";
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static const char* msg2 = "Lobster Thermidor a Crevette with a mornay sauce...";
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class RelayServerTest : public testing::Test {
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public:
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RelayServerTest()
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: main_(rtc::Thread::Current()), ss_(main_->socketserver()),
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username_(rtc::CreateRandomString(12)),
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password_(rtc::CreateRandomString(12)) {
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}
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protected:
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virtual void SetUp() {
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server_.reset(new RelayServer(main_));
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server_->AddInternalSocket(
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rtc::AsyncUDPSocket::Create(ss_, server_int_addr));
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server_->AddExternalSocket(
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rtc::AsyncUDPSocket::Create(ss_, server_ext_addr));
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client1_.reset(new rtc::TestClient(
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rtc::AsyncUDPSocket::Create(ss_, client1_addr)));
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client2_.reset(new rtc::TestClient(
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rtc::AsyncUDPSocket::Create(ss_, client2_addr)));
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}
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void Allocate() {
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rtc::scoped_ptr<StunMessage> req(
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CreateStunMessage(STUN_ALLOCATE_REQUEST));
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AddUsernameAttr(req.get(), username_);
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AddLifetimeAttr(req.get(), LIFETIME);
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Send1(req.get());
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delete Receive1();
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}
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void Bind() {
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rtc::scoped_ptr<StunMessage> req(
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CreateStunMessage(STUN_BINDING_REQUEST));
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AddUsernameAttr(req.get(), username_);
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Send2(req.get());
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delete Receive1();
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}
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void Send1(const StunMessage* msg) {
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rtc::ByteBuffer buf;
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msg->Write(&buf);
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SendRaw1(buf.Data(), static_cast<int>(buf.Length()));
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}
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void Send2(const StunMessage* msg) {
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rtc::ByteBuffer buf;
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msg->Write(&buf);
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SendRaw2(buf.Data(), static_cast<int>(buf.Length()));
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}
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void SendRaw1(const char* data, int len) {
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return Send(client1_.get(), data, len, server_int_addr);
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}
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void SendRaw2(const char* data, int len) {
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return Send(client2_.get(), data, len, server_ext_addr);
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}
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void Send(rtc::TestClient* client, const char* data,
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int len, const SocketAddress& addr) {
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client->SendTo(data, len, addr);
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}
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StunMessage* Receive1() {
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return Receive(client1_.get());
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}
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StunMessage* Receive2() {
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return Receive(client2_.get());
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}
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std::string ReceiveRaw1() {
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return ReceiveRaw(client1_.get());
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}
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std::string ReceiveRaw2() {
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return ReceiveRaw(client2_.get());
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}
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StunMessage* Receive(rtc::TestClient* client) {
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StunMessage* msg = NULL;
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rtc::TestClient::Packet* packet = client->NextPacket();
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if (packet) {
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rtc::ByteBuffer buf(packet->buf, packet->size);
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msg = new RelayMessage();
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msg->Read(&buf);
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delete packet;
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}
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return msg;
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}
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std::string ReceiveRaw(rtc::TestClient* client) {
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std::string raw;
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rtc::TestClient::Packet* packet = client->NextPacket();
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if (packet) {
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raw = std::string(packet->buf, packet->size);
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delete packet;
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}
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return raw;
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}
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static StunMessage* CreateStunMessage(int type) {
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StunMessage* msg = new RelayMessage();
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msg->SetType(type);
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msg->SetTransactionID(
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rtc::CreateRandomString(kStunTransactionIdLength));
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return msg;
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}
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static void AddMagicCookieAttr(StunMessage* msg) {
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StunByteStringAttribute* attr =
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StunAttribute::CreateByteString(STUN_ATTR_MAGIC_COOKIE);
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attr->CopyBytes(TURN_MAGIC_COOKIE_VALUE, sizeof(TURN_MAGIC_COOKIE_VALUE));
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msg->AddAttribute(attr);
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}
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static void AddUsernameAttr(StunMessage* msg, const std::string& val) {
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StunByteStringAttribute* attr =
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StunAttribute::CreateByteString(STUN_ATTR_USERNAME);
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attr->CopyBytes(val.c_str(), val.size());
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msg->AddAttribute(attr);
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}
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static void AddLifetimeAttr(StunMessage* msg, int val) {
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StunUInt32Attribute* attr =
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StunAttribute::CreateUInt32(STUN_ATTR_LIFETIME);
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attr->SetValue(val);
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msg->AddAttribute(attr);
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}
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static void AddDestinationAttr(StunMessage* msg, const SocketAddress& addr) {
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StunAddressAttribute* attr =
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StunAttribute::CreateAddress(STUN_ATTR_DESTINATION_ADDRESS);
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attr->SetIP(addr.ipaddr());
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attr->SetPort(addr.port());
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msg->AddAttribute(attr);
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}
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rtc::Thread* main_;
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rtc::SocketServer* ss_;
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rtc::scoped_ptr<RelayServer> server_;
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rtc::scoped_ptr<rtc::TestClient> client1_;
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rtc::scoped_ptr<rtc::TestClient> client2_;
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std::string username_;
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std::string password_;
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};
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// Send a complete nonsense message and verify that it is eaten.
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TEST_F(RelayServerTest, TestBadRequest) {
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rtc::scoped_ptr<StunMessage> res;
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SendRaw1(bad, static_cast<int>(strlen(bad)));
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res.reset(Receive1());
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ASSERT_TRUE(!res);
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}
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// Send an allocate request without a username and verify it is rejected.
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TEST_F(RelayServerTest, TestAllocateNoUsername) {
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rtc::scoped_ptr<StunMessage> req(
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CreateStunMessage(STUN_ALLOCATE_REQUEST)), res;
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Send1(req.get());
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res.reset(Receive1());
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ASSERT_TRUE(res);
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EXPECT_EQ(STUN_ALLOCATE_ERROR_RESPONSE, res->type());
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EXPECT_EQ(req->transaction_id(), res->transaction_id());
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const StunErrorCodeAttribute* err = res->GetErrorCode();
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ASSERT_TRUE(err != NULL);
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EXPECT_EQ(4, err->eclass());
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EXPECT_EQ(32, err->number());
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EXPECT_EQ("Missing Username", err->reason());
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}
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// Send a binding request and verify that it is rejected.
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TEST_F(RelayServerTest, TestBindingRequest) {
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rtc::scoped_ptr<StunMessage> req(
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CreateStunMessage(STUN_BINDING_REQUEST)), res;
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AddUsernameAttr(req.get(), username_);
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Send1(req.get());
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res.reset(Receive1());
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ASSERT_TRUE(res);
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EXPECT_EQ(STUN_BINDING_ERROR_RESPONSE, res->type());
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EXPECT_EQ(req->transaction_id(), res->transaction_id());
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const StunErrorCodeAttribute* err = res->GetErrorCode();
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ASSERT_TRUE(err != NULL);
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EXPECT_EQ(6, err->eclass());
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EXPECT_EQ(0, err->number());
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EXPECT_EQ("Operation Not Supported", err->reason());
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}
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// Send an allocate request and verify that it is accepted.
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TEST_F(RelayServerTest, TestAllocate) {
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rtc::scoped_ptr<StunMessage> req(
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CreateStunMessage(STUN_ALLOCATE_REQUEST)), res;
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AddUsernameAttr(req.get(), username_);
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AddLifetimeAttr(req.get(), LIFETIME);
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Send1(req.get());
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res.reset(Receive1());
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ASSERT_TRUE(res);
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EXPECT_EQ(STUN_ALLOCATE_RESPONSE, res->type());
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EXPECT_EQ(req->transaction_id(), res->transaction_id());
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const StunAddressAttribute* mapped_addr =
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res->GetAddress(STUN_ATTR_MAPPED_ADDRESS);
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ASSERT_TRUE(mapped_addr != NULL);
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EXPECT_EQ(1, mapped_addr->family());
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EXPECT_EQ(server_ext_addr.port(), mapped_addr->port());
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EXPECT_EQ(server_ext_addr.ipaddr(), mapped_addr->ipaddr());
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const StunUInt32Attribute* res_lifetime_attr =
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res->GetUInt32(STUN_ATTR_LIFETIME);
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ASSERT_TRUE(res_lifetime_attr != NULL);
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EXPECT_EQ(LIFETIME, res_lifetime_attr->value());
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}
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// Send a second allocate request and verify that it is also accepted, though
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// the lifetime should be ignored.
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TEST_F(RelayServerTest, TestReallocate) {
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Allocate();
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rtc::scoped_ptr<StunMessage> req(
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CreateStunMessage(STUN_ALLOCATE_REQUEST)), res;
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AddMagicCookieAttr(req.get());
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AddUsernameAttr(req.get(), username_);
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Send1(req.get());
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res.reset(Receive1());
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ASSERT_TRUE(res);
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EXPECT_EQ(STUN_ALLOCATE_RESPONSE, res->type());
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EXPECT_EQ(req->transaction_id(), res->transaction_id());
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const StunAddressAttribute* mapped_addr =
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res->GetAddress(STUN_ATTR_MAPPED_ADDRESS);
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ASSERT_TRUE(mapped_addr != NULL);
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EXPECT_EQ(1, mapped_addr->family());
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EXPECT_EQ(server_ext_addr.port(), mapped_addr->port());
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EXPECT_EQ(server_ext_addr.ipaddr(), mapped_addr->ipaddr());
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const StunUInt32Attribute* lifetime_attr =
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res->GetUInt32(STUN_ATTR_LIFETIME);
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ASSERT_TRUE(lifetime_attr != NULL);
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EXPECT_EQ(LIFETIME, lifetime_attr->value());
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}
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// Send a request from another client and see that it arrives at the first
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// client in the binding.
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TEST_F(RelayServerTest, TestRemoteBind) {
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Allocate();
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rtc::scoped_ptr<StunMessage> req(
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CreateStunMessage(STUN_BINDING_REQUEST)), res;
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AddUsernameAttr(req.get(), username_);
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Send2(req.get());
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res.reset(Receive1());
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ASSERT_TRUE(res);
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EXPECT_EQ(STUN_DATA_INDICATION, res->type());
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const StunByteStringAttribute* recv_data =
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res->GetByteString(STUN_ATTR_DATA);
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ASSERT_TRUE(recv_data != NULL);
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rtc::ByteBuffer buf(recv_data->bytes(), recv_data->length());
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rtc::scoped_ptr<StunMessage> res2(new StunMessage());
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EXPECT_TRUE(res2->Read(&buf));
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EXPECT_EQ(STUN_BINDING_REQUEST, res2->type());
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EXPECT_EQ(req->transaction_id(), res2->transaction_id());
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const StunAddressAttribute* src_addr =
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res->GetAddress(STUN_ATTR_SOURCE_ADDRESS2);
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ASSERT_TRUE(src_addr != NULL);
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EXPECT_EQ(1, src_addr->family());
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EXPECT_EQ(client2_addr.ipaddr(), src_addr->ipaddr());
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EXPECT_EQ(client2_addr.port(), src_addr->port());
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EXPECT_TRUE(Receive2() == NULL);
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}
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// Send a complete nonsense message to the established connection and verify
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// that it is dropped by the server.
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TEST_F(RelayServerTest, TestRemoteBadRequest) {
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Allocate();
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Bind();
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SendRaw1(bad, static_cast<int>(strlen(bad)));
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EXPECT_TRUE(Receive1() == NULL);
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EXPECT_TRUE(Receive2() == NULL);
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}
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// Send a send request without a username and verify it is rejected.
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TEST_F(RelayServerTest, TestSendRequestMissingUsername) {
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Allocate();
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Bind();
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rtc::scoped_ptr<StunMessage> req(
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CreateStunMessage(STUN_SEND_REQUEST)), res;
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AddMagicCookieAttr(req.get());
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Send1(req.get());
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res.reset(Receive1());
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ASSERT_TRUE(res);
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EXPECT_EQ(STUN_SEND_ERROR_RESPONSE, res->type());
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EXPECT_EQ(req->transaction_id(), res->transaction_id());
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const StunErrorCodeAttribute* err = res->GetErrorCode();
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ASSERT_TRUE(err != NULL);
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EXPECT_EQ(4, err->eclass());
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EXPECT_EQ(32, err->number());
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EXPECT_EQ("Missing Username", err->reason());
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}
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// Send a send request with the wrong username and verify it is rejected.
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TEST_F(RelayServerTest, TestSendRequestBadUsername) {
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Allocate();
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Bind();
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rtc::scoped_ptr<StunMessage> req(
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CreateStunMessage(STUN_SEND_REQUEST)), res;
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AddMagicCookieAttr(req.get());
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AddUsernameAttr(req.get(), "foobarbizbaz");
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Send1(req.get());
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res.reset(Receive1());
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ASSERT_TRUE(res);
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EXPECT_EQ(STUN_SEND_ERROR_RESPONSE, res->type());
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EXPECT_EQ(req->transaction_id(), res->transaction_id());
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const StunErrorCodeAttribute* err = res->GetErrorCode();
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ASSERT_TRUE(err != NULL);
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EXPECT_EQ(4, err->eclass());
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EXPECT_EQ(30, err->number());
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EXPECT_EQ("Stale Credentials", err->reason());
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}
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// Send a send request without a destination address and verify that it is
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// rejected.
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TEST_F(RelayServerTest, TestSendRequestNoDestinationAddress) {
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Allocate();
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Bind();
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rtc::scoped_ptr<StunMessage> req(
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CreateStunMessage(STUN_SEND_REQUEST)), res;
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AddMagicCookieAttr(req.get());
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AddUsernameAttr(req.get(), username_);
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Send1(req.get());
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res.reset(Receive1());
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ASSERT_TRUE(res);
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EXPECT_EQ(STUN_SEND_ERROR_RESPONSE, res->type());
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EXPECT_EQ(req->transaction_id(), res->transaction_id());
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const StunErrorCodeAttribute* err = res->GetErrorCode();
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ASSERT_TRUE(err != NULL);
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EXPECT_EQ(4, err->eclass());
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EXPECT_EQ(0, err->number());
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EXPECT_EQ("Bad Request", err->reason());
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}
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// Send a send request without data and verify that it is rejected.
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TEST_F(RelayServerTest, TestSendRequestNoData) {
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Allocate();
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Bind();
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rtc::scoped_ptr<StunMessage> req(
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CreateStunMessage(STUN_SEND_REQUEST)), res;
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AddMagicCookieAttr(req.get());
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AddUsernameAttr(req.get(), username_);
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AddDestinationAttr(req.get(), client2_addr);
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Send1(req.get());
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res.reset(Receive1());
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ASSERT_TRUE(res);
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EXPECT_EQ(STUN_SEND_ERROR_RESPONSE, res->type());
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EXPECT_EQ(req->transaction_id(), res->transaction_id());
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const StunErrorCodeAttribute* err = res->GetErrorCode();
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ASSERT_TRUE(err != NULL);
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EXPECT_EQ(4, err->eclass());
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EXPECT_EQ(00, err->number());
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EXPECT_EQ("Bad Request", err->reason());
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}
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// Send a binding request after an allocate and verify that it is rejected.
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TEST_F(RelayServerTest, TestSendRequestWrongType) {
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Allocate();
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Bind();
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rtc::scoped_ptr<StunMessage> req(
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CreateStunMessage(STUN_BINDING_REQUEST)), res;
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AddMagicCookieAttr(req.get());
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AddUsernameAttr(req.get(), username_);
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Send1(req.get());
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res.reset(Receive1());
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ASSERT_TRUE(res);
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EXPECT_EQ(STUN_BINDING_ERROR_RESPONSE, res->type());
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EXPECT_EQ(req->transaction_id(), res->transaction_id());
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const StunErrorCodeAttribute* err = res->GetErrorCode();
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ASSERT_TRUE(err != NULL);
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EXPECT_EQ(6, err->eclass());
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EXPECT_EQ(0, err->number());
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EXPECT_EQ("Operation Not Supported", err->reason());
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}
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// Verify that we can send traffic back and forth between the clients after a
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// successful allocate and bind.
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TEST_F(RelayServerTest, TestSendRaw) {
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Allocate();
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Bind();
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for (int i = 0; i < 10; i++) {
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rtc::scoped_ptr<StunMessage> req(
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CreateStunMessage(STUN_SEND_REQUEST)), res;
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AddMagicCookieAttr(req.get());
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AddUsernameAttr(req.get(), username_);
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AddDestinationAttr(req.get(), client2_addr);
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StunByteStringAttribute* send_data =
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StunAttribute::CreateByteString(STUN_ATTR_DATA);
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send_data->CopyBytes(msg1);
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req->AddAttribute(send_data);
|
|
|
|
Send1(req.get());
|
|
EXPECT_EQ(msg1, ReceiveRaw2());
|
|
SendRaw2(msg2, static_cast<int>(strlen(msg2)));
|
|
res.reset(Receive1());
|
|
|
|
ASSERT_TRUE(res);
|
|
EXPECT_EQ(STUN_DATA_INDICATION, res->type());
|
|
|
|
const StunAddressAttribute* src_addr =
|
|
res->GetAddress(STUN_ATTR_SOURCE_ADDRESS2);
|
|
ASSERT_TRUE(src_addr != NULL);
|
|
EXPECT_EQ(1, src_addr->family());
|
|
EXPECT_EQ(client2_addr.ipaddr(), src_addr->ipaddr());
|
|
EXPECT_EQ(client2_addr.port(), src_addr->port());
|
|
|
|
const StunByteStringAttribute* recv_data =
|
|
res->GetByteString(STUN_ATTR_DATA);
|
|
ASSERT_TRUE(recv_data != NULL);
|
|
EXPECT_EQ(strlen(msg2), recv_data->length());
|
|
EXPECT_EQ(0, memcmp(msg2, recv_data->bytes(), recv_data->length()));
|
|
}
|
|
}
|
|
|
|
// Verify that a binding expires properly, and rejects send requests.
|
|
TEST_F(RelayServerTest, TestExpiration) {
|
|
Allocate();
|
|
Bind();
|
|
|
|
// Wait twice the lifetime to make sure the server has expired the binding.
|
|
rtc::Thread::Current()->ProcessMessages((LIFETIME * 2) * 1000);
|
|
|
|
rtc::scoped_ptr<StunMessage> req(
|
|
CreateStunMessage(STUN_SEND_REQUEST)), res;
|
|
AddMagicCookieAttr(req.get());
|
|
AddUsernameAttr(req.get(), username_);
|
|
AddDestinationAttr(req.get(), client2_addr);
|
|
|
|
StunByteStringAttribute* data_attr =
|
|
StunAttribute::CreateByteString(STUN_ATTR_DATA);
|
|
data_attr->CopyBytes(msg1);
|
|
req->AddAttribute(data_attr);
|
|
|
|
Send1(req.get());
|
|
res.reset(Receive1());
|
|
|
|
ASSERT_TRUE(res.get() != NULL);
|
|
EXPECT_EQ(STUN_SEND_ERROR_RESPONSE, res->type());
|
|
|
|
const StunErrorCodeAttribute* err = res->GetErrorCode();
|
|
ASSERT_TRUE(err != NULL);
|
|
EXPECT_EQ(6, err->eclass());
|
|
EXPECT_EQ(0, err->number());
|
|
EXPECT_EQ("Operation Not Supported", err->reason());
|
|
|
|
// Also verify that traffic from the external client is ignored.
|
|
SendRaw2(msg2, static_cast<int>(strlen(msg2)));
|
|
EXPECT_TRUE(ReceiveRaw1().empty());
|
|
}
|