524 lines
14 KiB
C++
524 lines
14 KiB
C++
/*
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* Copyright 2004 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 <algorithm>
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#include "webrtc/base/gunit.h"
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#include "webrtc/base/httpbase.h"
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#include "webrtc/base/testutils.h"
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namespace rtc {
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const char* const kHttpResponse =
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"HTTP/1.1 200\r\n"
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"Connection: Keep-Alive\r\n"
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"Content-Type: text/plain\r\n"
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"Proxy-Authorization: 42\r\n"
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"Transfer-Encoding: chunked\r\n"
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"\r\n"
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"00000008\r\n"
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"Goodbye!\r\n"
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"0\r\n\r\n";
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const char* const kHttpEmptyResponse =
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"HTTP/1.1 200\r\n"
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"Connection: Keep-Alive\r\n"
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"Content-Length: 0\r\n"
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"Proxy-Authorization: 42\r\n"
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"\r\n";
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const char* const kHttpResponsePrefix =
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"HTTP/1.1 200\r\n"
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"Connection: Keep-Alive\r\n"
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"Content-Type: text/plain\r\n"
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"Proxy-Authorization: 42\r\n"
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"Transfer-Encoding: chunked\r\n"
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"\r\n"
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"8\r\n"
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"Goodbye!\r\n";
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class HttpBaseTest : public testing::Test, public IHttpNotify {
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public:
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enum EventType { E_HEADER_COMPLETE, E_COMPLETE, E_CLOSED };
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struct Event {
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EventType event;
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bool chunked;
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size_t data_size;
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HttpMode mode;
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HttpError err;
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};
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HttpBaseTest() : mem(NULL), obtain_stream(false), http_stream(NULL) { }
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virtual void SetUp() { }
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virtual void TearDown() {
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delete http_stream;
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// Avoid an ASSERT, in case a test doesn't clean up properly
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base.abort(HE_NONE);
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}
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virtual HttpError onHttpHeaderComplete(bool chunked, size_t& data_size) {
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LOG_F(LS_VERBOSE) << "chunked: " << chunked << " size: " << data_size;
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Event e = { E_HEADER_COMPLETE, chunked, data_size, HM_NONE, HE_NONE};
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events.push_back(e);
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if (obtain_stream) {
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ObtainDocumentStream();
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}
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return HE_NONE;
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}
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virtual void onHttpComplete(HttpMode mode, HttpError err) {
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LOG_F(LS_VERBOSE) << "mode: " << mode << " err: " << err;
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Event e = { E_COMPLETE, false, 0, mode, err };
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events.push_back(e);
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}
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virtual void onHttpClosed(HttpError err) {
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LOG_F(LS_VERBOSE) << "err: " << err;
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Event e = { E_CLOSED, false, 0, HM_NONE, err };
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events.push_back(e);
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}
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void SetupSource(const char* response);
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void VerifyHeaderComplete(size_t event_count, bool empty_doc);
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void VerifyDocumentContents(const char* expected_data,
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size_t expected_length = SIZE_UNKNOWN);
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void ObtainDocumentStream();
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void VerifyDocumentStreamIsOpening();
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void VerifyDocumentStreamOpenEvent();
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void ReadDocumentStreamData(const char* expected_data);
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void VerifyDocumentStreamIsEOS();
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void SetupDocument(const char* response);
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void VerifySourceContents(const char* expected_data,
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size_t expected_length = SIZE_UNKNOWN);
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void VerifyTransferComplete(HttpMode mode, HttpError error);
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HttpBase base;
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MemoryStream* mem;
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HttpResponseData data;
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// The source of http data, and source events
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testing::StreamSource src;
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std::vector<Event> events;
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// Document stream, and stream events
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bool obtain_stream;
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StreamInterface* http_stream;
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testing::StreamSink sink;
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};
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void HttpBaseTest::SetupSource(const char* http_data) {
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LOG_F(LS_VERBOSE) << "Enter";
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src.SetState(SS_OPENING);
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src.QueueString(http_data);
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base.notify(this);
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base.attach(&src);
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EXPECT_TRUE(events.empty());
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src.SetState(SS_OPEN);
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ASSERT_EQ(1U, events.size());
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EXPECT_EQ(E_COMPLETE, events[0].event);
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EXPECT_EQ(HM_CONNECT, events[0].mode);
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EXPECT_EQ(HE_NONE, events[0].err);
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events.clear();
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mem = new MemoryStream;
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data.document.reset(mem);
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LOG_F(LS_VERBOSE) << "Exit";
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}
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void HttpBaseTest::VerifyHeaderComplete(size_t event_count, bool empty_doc) {
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LOG_F(LS_VERBOSE) << "Enter";
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ASSERT_EQ(event_count, events.size());
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EXPECT_EQ(E_HEADER_COMPLETE, events[0].event);
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std::string header;
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EXPECT_EQ(HVER_1_1, data.version);
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EXPECT_EQ(static_cast<uint32_t>(HC_OK), data.scode);
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EXPECT_TRUE(data.hasHeader(HH_PROXY_AUTHORIZATION, &header));
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EXPECT_EQ("42", header);
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EXPECT_TRUE(data.hasHeader(HH_CONNECTION, &header));
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EXPECT_EQ("Keep-Alive", header);
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if (empty_doc) {
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EXPECT_FALSE(events[0].chunked);
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EXPECT_EQ(0U, events[0].data_size);
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EXPECT_TRUE(data.hasHeader(HH_CONTENT_LENGTH, &header));
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EXPECT_EQ("0", header);
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} else {
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EXPECT_TRUE(events[0].chunked);
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EXPECT_EQ(SIZE_UNKNOWN, events[0].data_size);
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EXPECT_TRUE(data.hasHeader(HH_CONTENT_TYPE, &header));
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EXPECT_EQ("text/plain", header);
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EXPECT_TRUE(data.hasHeader(HH_TRANSFER_ENCODING, &header));
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EXPECT_EQ("chunked", header);
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}
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LOG_F(LS_VERBOSE) << "Exit";
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}
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void HttpBaseTest::VerifyDocumentContents(const char* expected_data,
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size_t expected_length) {
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LOG_F(LS_VERBOSE) << "Enter";
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if (SIZE_UNKNOWN == expected_length) {
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expected_length = strlen(expected_data);
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}
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EXPECT_EQ(mem, data.document.get());
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size_t length;
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mem->GetSize(&length);
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EXPECT_EQ(expected_length, length);
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EXPECT_TRUE(0 == memcmp(expected_data, mem->GetBuffer(), length));
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LOG_F(LS_VERBOSE) << "Exit";
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}
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void HttpBaseTest::ObtainDocumentStream() {
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LOG_F(LS_VERBOSE) << "Enter";
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EXPECT_FALSE(http_stream);
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http_stream = base.GetDocumentStream();
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ASSERT_TRUE(NULL != http_stream);
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sink.Monitor(http_stream);
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LOG_F(LS_VERBOSE) << "Exit";
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}
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void HttpBaseTest::VerifyDocumentStreamIsOpening() {
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LOG_F(LS_VERBOSE) << "Enter";
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ASSERT_TRUE(NULL != http_stream);
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EXPECT_EQ(0, sink.Events(http_stream));
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EXPECT_EQ(SS_OPENING, http_stream->GetState());
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size_t read = 0;
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char buffer[5] = { 0 };
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EXPECT_EQ(SR_BLOCK, http_stream->Read(buffer, sizeof(buffer), &read, NULL));
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LOG_F(LS_VERBOSE) << "Exit";
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}
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void HttpBaseTest::VerifyDocumentStreamOpenEvent() {
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LOG_F(LS_VERBOSE) << "Enter";
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ASSERT_TRUE(NULL != http_stream);
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EXPECT_EQ(SE_OPEN | SE_READ, sink.Events(http_stream));
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EXPECT_EQ(SS_OPEN, http_stream->GetState());
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// HTTP headers haven't arrived yet
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EXPECT_EQ(0U, events.size());
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EXPECT_EQ(static_cast<uint32_t>(HC_INTERNAL_SERVER_ERROR), data.scode);
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LOG_F(LS_VERBOSE) << "Exit";
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}
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void HttpBaseTest::ReadDocumentStreamData(const char* expected_data) {
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LOG_F(LS_VERBOSE) << "Enter";
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ASSERT_TRUE(NULL != http_stream);
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EXPECT_EQ(SS_OPEN, http_stream->GetState());
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// Pump the HTTP I/O using Read, and verify the results.
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size_t verified_length = 0;
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const size_t expected_length = strlen(expected_data);
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while (verified_length < expected_length) {
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size_t read = 0;
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char buffer[5] = { 0 };
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size_t amt_to_read =
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std::min(expected_length - verified_length, sizeof(buffer));
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EXPECT_EQ(SR_SUCCESS, http_stream->Read(buffer, amt_to_read, &read, NULL));
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EXPECT_EQ(amt_to_read, read);
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EXPECT_TRUE(0 == memcmp(expected_data + verified_length, buffer, read));
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verified_length += read;
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}
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LOG_F(LS_VERBOSE) << "Exit";
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}
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void HttpBaseTest::VerifyDocumentStreamIsEOS() {
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LOG_F(LS_VERBOSE) << "Enter";
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ASSERT_TRUE(NULL != http_stream);
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size_t read = 0;
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char buffer[5] = { 0 };
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EXPECT_EQ(SR_EOS, http_stream->Read(buffer, sizeof(buffer), &read, NULL));
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EXPECT_EQ(SS_CLOSED, http_stream->GetState());
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// When EOS is caused by Read, we don't expect SE_CLOSE
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EXPECT_EQ(0, sink.Events(http_stream));
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LOG_F(LS_VERBOSE) << "Exit";
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}
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void HttpBaseTest::SetupDocument(const char* document_data) {
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LOG_F(LS_VERBOSE) << "Enter";
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src.SetState(SS_OPEN);
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base.notify(this);
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base.attach(&src);
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EXPECT_TRUE(events.empty());
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if (document_data) {
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// Note: we could just call data.set_success("text/plain", mem), but that
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// won't allow us to use the chunked transfer encoding.
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mem = new MemoryStream(document_data);
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data.document.reset(mem);
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data.setHeader(HH_CONTENT_TYPE, "text/plain");
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data.setHeader(HH_TRANSFER_ENCODING, "chunked");
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} else {
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data.setHeader(HH_CONTENT_LENGTH, "0");
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}
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data.scode = HC_OK;
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data.setHeader(HH_PROXY_AUTHORIZATION, "42");
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data.setHeader(HH_CONNECTION, "Keep-Alive");
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LOG_F(LS_VERBOSE) << "Exit";
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}
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void HttpBaseTest::VerifySourceContents(const char* expected_data,
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size_t expected_length) {
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LOG_F(LS_VERBOSE) << "Enter";
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if (SIZE_UNKNOWN == expected_length) {
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expected_length = strlen(expected_data);
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}
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std::string contents = src.ReadData();
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EXPECT_EQ(expected_length, contents.length());
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EXPECT_TRUE(0 == memcmp(expected_data, contents.data(), expected_length));
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LOG_F(LS_VERBOSE) << "Exit";
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}
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void HttpBaseTest::VerifyTransferComplete(HttpMode mode, HttpError error) {
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LOG_F(LS_VERBOSE) << "Enter";
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// Verify that http operation has completed
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ASSERT_TRUE(events.size() > 0);
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size_t last_event = events.size() - 1;
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EXPECT_EQ(E_COMPLETE, events[last_event].event);
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EXPECT_EQ(mode, events[last_event].mode);
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EXPECT_EQ(error, events[last_event].err);
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LOG_F(LS_VERBOSE) << "Exit";
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}
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//
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// Tests
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//
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TEST_F(HttpBaseTest, SupportsSend) {
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// Queue response document
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SetupDocument("Goodbye!");
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// Begin send
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base.send(&data);
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// Send completed successfully
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VerifyTransferComplete(HM_SEND, HE_NONE);
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VerifySourceContents(kHttpResponse);
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}
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TEST_F(HttpBaseTest, SupportsSendNoDocument) {
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// Queue response document
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SetupDocument(NULL);
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// Begin send
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base.send(&data);
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// Send completed successfully
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VerifyTransferComplete(HM_SEND, HE_NONE);
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VerifySourceContents(kHttpEmptyResponse);
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}
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TEST_F(HttpBaseTest, SignalsCompleteOnInterruptedSend) {
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// This test is attempting to expose a bug that occurs when a particular
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// base objects is used for receiving, and then used for sending. In
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// particular, the HttpParser state is different after receiving. Simulate
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// that here.
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SetupSource(kHttpResponse);
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base.recv(&data);
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VerifyTransferComplete(HM_RECV, HE_NONE);
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src.Clear();
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data.clear(true);
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events.clear();
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base.detach();
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// Queue response document
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SetupDocument("Goodbye!");
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// Prevent entire response from being sent
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const size_t kInterruptedLength = strlen(kHttpResponse) - 1;
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src.SetWriteBlock(kInterruptedLength);
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// Begin send
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base.send(&data);
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// Document is mostly complete, but no completion signal yet.
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EXPECT_TRUE(events.empty());
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VerifySourceContents(kHttpResponse, kInterruptedLength);
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src.SetState(SS_CLOSED);
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// Send completed with disconnect error, and no additional data.
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VerifyTransferComplete(HM_SEND, HE_DISCONNECTED);
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EXPECT_TRUE(src.ReadData().empty());
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}
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TEST_F(HttpBaseTest, SupportsReceiveViaDocumentPush) {
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// Queue response document
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SetupSource(kHttpResponse);
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// Begin receive
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base.recv(&data);
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// Document completed successfully
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VerifyHeaderComplete(2, false);
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VerifyTransferComplete(HM_RECV, HE_NONE);
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VerifyDocumentContents("Goodbye!");
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}
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TEST_F(HttpBaseTest, SupportsReceiveViaStreamPull) {
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// Switch to pull mode
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ObtainDocumentStream();
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VerifyDocumentStreamIsOpening();
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// Queue response document
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SetupSource(kHttpResponse);
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VerifyDocumentStreamIsOpening();
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// Begin receive
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base.recv(&data);
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// Pull document data
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VerifyDocumentStreamOpenEvent();
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ReadDocumentStreamData("Goodbye!");
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VerifyDocumentStreamIsEOS();
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// Document completed successfully
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VerifyHeaderComplete(2, false);
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VerifyTransferComplete(HM_RECV, HE_NONE);
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VerifyDocumentContents("");
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}
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TEST_F(HttpBaseTest, DISABLED_AllowsCloseStreamBeforeDocumentIsComplete) {
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// TODO: Remove extra logging once test failure is understood
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LoggingSeverity old_sev = rtc::LogMessage::GetLogToDebug();
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rtc::LogMessage::LogToDebug(LS_VERBOSE);
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// Switch to pull mode
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ObtainDocumentStream();
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VerifyDocumentStreamIsOpening();
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// Queue response document
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SetupSource(kHttpResponse);
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VerifyDocumentStreamIsOpening();
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// Begin receive
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base.recv(&data);
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// Pull some of the data
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VerifyDocumentStreamOpenEvent();
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ReadDocumentStreamData("Goodb");
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// We've seen the header by now
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VerifyHeaderComplete(1, false);
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// Close the pull stream, this will transition back to push I/O.
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http_stream->Close();
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Thread::Current()->ProcessMessages(0);
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// Remainder of document completed successfully
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VerifyTransferComplete(HM_RECV, HE_NONE);
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VerifyDocumentContents("ye!");
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rtc::LogMessage::LogToDebug(old_sev);
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}
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TEST_F(HttpBaseTest, AllowsGetDocumentStreamInResponseToHttpHeader) {
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// Queue response document
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SetupSource(kHttpResponse);
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// Switch to pull mode in response to header arrival
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obtain_stream = true;
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// Begin receive
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base.recv(&data);
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// We've already seen the header, but not data has arrived
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VerifyHeaderComplete(1, false);
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VerifyDocumentContents("");
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// Pull the document data
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ReadDocumentStreamData("Goodbye!");
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VerifyDocumentStreamIsEOS();
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// Document completed successfully
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VerifyTransferComplete(HM_RECV, HE_NONE);
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VerifyDocumentContents("");
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}
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TEST_F(HttpBaseTest, AllowsGetDocumentStreamWithEmptyDocumentBody) {
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// Queue empty response document
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SetupSource(kHttpEmptyResponse);
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// Switch to pull mode in response to header arrival
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obtain_stream = true;
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// Begin receive
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base.recv(&data);
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// We've already seen the header, but not data has arrived
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VerifyHeaderComplete(1, true);
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VerifyDocumentContents("");
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// The document is still open, until we attempt to read
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ASSERT_TRUE(NULL != http_stream);
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EXPECT_EQ(SS_OPEN, http_stream->GetState());
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// Attempt to read data, and discover EOS
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VerifyDocumentStreamIsEOS();
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// Document completed successfully
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VerifyTransferComplete(HM_RECV, HE_NONE);
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VerifyDocumentContents("");
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}
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TEST_F(HttpBaseTest, SignalsDocumentStreamCloseOnUnexpectedClose) {
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// Switch to pull mode
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ObtainDocumentStream();
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VerifyDocumentStreamIsOpening();
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// Queue response document
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SetupSource(kHttpResponsePrefix);
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VerifyDocumentStreamIsOpening();
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// Begin receive
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base.recv(&data);
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// Pull document data
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VerifyDocumentStreamOpenEvent();
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ReadDocumentStreamData("Goodbye!");
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// Simulate unexpected close
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src.SetState(SS_CLOSED);
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// Observe error event on document stream
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EXPECT_EQ(testing::SSE_ERROR, sink.Events(http_stream));
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// Future reads give an error
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int error = 0;
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char buffer[5] = { 0 };
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EXPECT_EQ(SR_ERROR, http_stream->Read(buffer, sizeof(buffer), NULL, &error));
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EXPECT_EQ(HE_DISCONNECTED, error);
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// Document completed with error
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VerifyHeaderComplete(2, false);
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VerifyTransferComplete(HM_RECV, HE_DISCONNECTED);
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VerifyDocumentContents("");
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}
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} // namespace rtc
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