mirror of
https://github.com/klzgrad/naiveproxy.git
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422 lines
16 KiB
C++
422 lines
16 KiB
C++
// Copyright (c) 2012 The Chromium Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#include "net/http/http_network_layer.h"
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#include <utility>
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#include "base/strings/stringprintf.h"
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#include "net/cert/ct_policy_enforcer.h"
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#include "net/cert/mock_cert_verifier.h"
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#include "net/cert/multi_log_ct_verifier.h"
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#include "net/dns/mock_host_resolver.h"
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#include "net/http/http_network_session.h"
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#include "net/http/http_server_properties_impl.h"
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#include "net/http/http_transaction_test_util.h"
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#include "net/http/transport_security_state.h"
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#include "net/log/net_log_with_source.h"
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#include "net/proxy_resolution/proxy_resolution_service.h"
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#include "net/socket/socket_test_util.h"
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#include "net/spdy/spdy_session_pool.h"
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#include "net/ssl/ssl_config_service_defaults.h"
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#include "net/test/gtest_util.h"
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#include "net/test/test_with_scoped_task_environment.h"
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#include "net/traffic_annotation/network_traffic_annotation_test_helper.h"
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#include "testing/gmock/include/gmock/gmock.h"
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#include "testing/gtest/include/gtest/gtest.h"
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#include "testing/platform_test.h"
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using net::test::IsError;
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using net::test::IsOk;
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namespace net {
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namespace {
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class HttpNetworkLayerTest : public PlatformTest,
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public WithScopedTaskEnvironment {
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protected:
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HttpNetworkLayerTest()
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: ssl_config_service_(std::make_unique<SSLConfigServiceDefaults>()) {}
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void SetUp() override {
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ConfigureTestDependencies(ProxyResolutionService::CreateDirect());
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}
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void ConfigureTestDependencies(
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std::unique_ptr<ProxyResolutionService> proxy_resolution_service) {
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cert_verifier_.reset(new MockCertVerifier);
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transport_security_state_.reset(new TransportSecurityState);
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proxy_resolution_service_ = std::move(proxy_resolution_service);
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HttpNetworkSession::Context session_context;
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session_context.client_socket_factory = &mock_socket_factory_;
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session_context.host_resolver = &host_resolver_;
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session_context.cert_verifier = cert_verifier_.get();
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session_context.transport_security_state = transport_security_state_.get();
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session_context.cert_transparency_verifier = &ct_verifier_;
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session_context.ct_policy_enforcer = &ct_policy_enforcer_;
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session_context.proxy_resolution_service = proxy_resolution_service_.get();
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session_context.ssl_config_service = ssl_config_service_.get();
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session_context.http_server_properties = &http_server_properties_;
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network_session_.reset(
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new HttpNetworkSession(HttpNetworkSession::Params(), session_context));
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factory_.reset(new HttpNetworkLayer(network_session_.get()));
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}
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void ExecuteRequestExpectingContentAndHeader(const std::string& method,
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const std::string& content,
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const std::string& header,
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const std::string& value) {
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TestCompletionCallback callback;
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HttpRequestInfo request_info;
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request_info.url = GURL("http://www.google.com/");
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request_info.method = method;
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request_info.load_flags = LOAD_NORMAL;
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request_info.traffic_annotation =
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net::MutableNetworkTrafficAnnotationTag(TRAFFIC_ANNOTATION_FOR_TESTS);
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std::unique_ptr<HttpTransaction> trans;
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int rv = factory_->CreateTransaction(DEFAULT_PRIORITY, &trans);
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EXPECT_THAT(rv, IsOk());
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rv = trans->Start(&request_info, callback.callback(), NetLogWithSource());
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if (rv == ERR_IO_PENDING)
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rv = callback.WaitForResult();
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ASSERT_THAT(rv, IsOk());
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std::string contents;
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rv = ReadTransaction(trans.get(), &contents);
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EXPECT_THAT(rv, IsOk());
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EXPECT_EQ(content, contents);
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if (!header.empty()) {
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// We also have a server header here that isn't set by the proxy.
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EXPECT_TRUE(trans->GetResponseInfo()->headers->HasHeaderValue(
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header, value));
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}
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}
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// Check that |proxy_count| proxies are in the retry list.
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// These will be, in order, |bad_proxy| and |bad_proxy2|".
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void TestBadProxies(unsigned int proxy_count, const std::string& bad_proxy,
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const std::string& bad_proxy2) {
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const ProxyRetryInfoMap& retry_info =
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proxy_resolution_service_->proxy_retry_info();
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ASSERT_EQ(proxy_count, retry_info.size());
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if (proxy_count > 0)
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ASSERT_TRUE(retry_info.find(bad_proxy) != retry_info.end());
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if (proxy_count > 1)
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ASSERT_TRUE(retry_info.find(bad_proxy2) != retry_info.end());
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}
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// Simulates a request through a proxy which returns a bypass, which is then
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// retried through a second proxy that doesn't bypass.
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// Checks that the expected requests were issued, the expected content was
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// received, and the first proxy |bad_proxy| was marked as bad.
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void TestProxyFallback(const std::string& bad_proxy) {
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MockRead data_reads[] = {
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MockRead("HTTP/1.1 200 OK\r\n"
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"Chrome-Proxy: bypass=0\r\n\r\n"),
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MockRead("Bypass message"),
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MockRead(SYNCHRONOUS, OK),
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};
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TestProxyFallbackWithMockReads(bad_proxy, "", data_reads, 1u);
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}
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void TestProxyFallbackWithMockReads(const std::string& bad_proxy,
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const std::string& bad_proxy2,
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base::span<const MockRead> data_reads,
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unsigned int expected_retry_info_size) {
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TestProxyFallbackByMethodWithMockReads(bad_proxy, bad_proxy2, data_reads,
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"GET", "content", true,
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expected_retry_info_size);
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}
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void TestProxyFallbackByMethodWithMockReads(
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const std::string& bad_proxy,
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const std::string& bad_proxy2,
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base::span<const MockRead> data_reads,
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std::string method,
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std::string content,
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bool retry_expected,
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unsigned int expected_retry_info_size) {
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std::string trailer =
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(method == "HEAD" || method == "PUT" || method == "POST") ?
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"Content-Length: 0\r\n\r\n" : "\r\n";
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std::string request =
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base::StringPrintf("%s http://www.google.com/ HTTP/1.1\r\n"
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"Host: www.google.com\r\n"
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"Proxy-Connection: keep-alive\r\n"
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"%s", method.c_str(), trailer.c_str());
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MockWrite data_writes[] = {
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MockWrite(request.c_str()),
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};
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StaticSocketDataProvider data1(data_reads, data_writes);
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mock_socket_factory_.AddSocketDataProvider(&data1);
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// Second data provider returns the expected content.
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MockRead data_reads2[3];
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size_t data_reads2_index = 0;
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data_reads2[data_reads2_index++] = MockRead("HTTP/1.0 200 OK\r\n"
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"Server: not-proxy\r\n\r\n");
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if (!content.empty())
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data_reads2[data_reads2_index++] = MockRead(content.c_str());
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data_reads2[data_reads2_index++] = MockRead(SYNCHRONOUS, OK);
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MockWrite data_writes2[] = {
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MockWrite(request.c_str()),
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};
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StaticSocketDataProvider data2(
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base::make_span(data_reads2, data_reads2_index), data_writes2);
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mock_socket_factory_.AddSocketDataProvider(&data2);
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// Expect that we get "content" and not "Bypass message", and that there's
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// a "not-proxy" "Server:" header in the final response.
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if (retry_expected) {
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ExecuteRequestExpectingContentAndHeader(method, content,
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"server", "not-proxy");
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} else {
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ExecuteRequestExpectingContentAndHeader(method, content, "", "");
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}
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// We should also observe the bad proxy in the retry list.
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TestBadProxies(expected_retry_info_size, bad_proxy, bad_proxy2);
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}
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// Simulates a request through a proxy which returns a bypass, which is then
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// retried through a direct connection to the origin site.
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// Checks that the expected requests were issued, the expected content was
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// received, and the proxy |bad_proxy| was marked as bad.
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void TestProxyFallbackToDirect(const std::string& bad_proxy) {
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MockRead data_reads[] = {
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MockRead("HTTP/1.1 200 OK\r\n"
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"Chrome-Proxy: bypass=0\r\n\r\n"),
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MockRead("Bypass message"),
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MockRead(SYNCHRONOUS, OK),
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};
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MockWrite data_writes[] = {
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MockWrite("GET http://www.google.com/ HTTP/1.1\r\n"
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"Host: www.google.com\r\n"
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"Proxy-Connection: keep-alive\r\n\r\n"),
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};
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StaticSocketDataProvider data1(data_reads, data_writes);
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mock_socket_factory_.AddSocketDataProvider(&data1);
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// Second data provider returns the expected content.
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MockRead data_reads2[] = {
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MockRead("HTTP/1.0 200 OK\r\n"
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"Server: not-proxy\r\n\r\n"),
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MockRead("content"),
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MockRead(SYNCHRONOUS, OK),
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};
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MockWrite data_writes2[] = {
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MockWrite("GET / HTTP/1.1\r\n"
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"Host: www.google.com\r\n"
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"Connection: keep-alive\r\n\r\n"),
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};
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StaticSocketDataProvider data2(data_reads2, data_writes2);
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mock_socket_factory_.AddSocketDataProvider(&data2);
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// Expect that we get "content" and not "Bypass message", and that there's
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// a "not-proxy" "Server:" header in the final response.
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ExecuteRequestExpectingContentAndHeader("GET", "content",
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"server", "not-proxy");
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// We should also observe the bad proxy in the retry list.
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TestBadProxies(1u, bad_proxy, "");
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}
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// Simulates a request through a proxy which returns a bypass, under a
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// configuration where there is no valid bypass. |proxy_count| proxies
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// are expected to be configured.
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// Checks that the expected requests were issued, the bypass message was the
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// final received content, and all proxies were marked as bad.
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void TestProxyFallbackFail(unsigned int proxy_count,
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const std::string& bad_proxy,
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const std::string& bad_proxy2) {
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MockRead data_reads[] = {
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MockRead("HTTP/1.1 200 OK\r\n"
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"Chrome-Proxy: bypass=0\r\n\r\n"),
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MockRead("Bypass message"),
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MockRead(SYNCHRONOUS, OK),
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};
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MockWrite data_writes[] = {
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MockWrite("GET http://www.google.com/ HTTP/1.1\r\n"
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"Host: www.google.com\r\n"
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"Proxy-Connection: keep-alive\r\n\r\n"),
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};
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StaticSocketDataProvider data1(data_reads, data_writes);
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StaticSocketDataProvider data2(data_reads, data_writes);
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mock_socket_factory_.AddSocketDataProvider(&data1);
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if (proxy_count > 1)
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mock_socket_factory_.AddSocketDataProvider(&data2);
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// Expect that we get "Bypass message", and not "content"..
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ExecuteRequestExpectingContentAndHeader("GET", "Bypass message", "", "");
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// We should also observe the bad proxy or proxies in the retry list.
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TestBadProxies(proxy_count, bad_proxy, bad_proxy2);
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}
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MockClientSocketFactory mock_socket_factory_;
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MockHostResolver host_resolver_;
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std::unique_ptr<CertVerifier> cert_verifier_;
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std::unique_ptr<TransportSecurityState> transport_security_state_;
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MultiLogCTVerifier ct_verifier_;
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DefaultCTPolicyEnforcer ct_policy_enforcer_;
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std::unique_ptr<ProxyResolutionService> proxy_resolution_service_;
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std::unique_ptr<SSLConfigService> ssl_config_service_;
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std::unique_ptr<HttpNetworkSession> network_session_;
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std::unique_ptr<HttpNetworkLayer> factory_;
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private:
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HttpServerPropertiesImpl http_server_properties_;
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};
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TEST_F(HttpNetworkLayerTest, CreateAndDestroy) {
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std::unique_ptr<HttpTransaction> trans;
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int rv = factory_->CreateTransaction(DEFAULT_PRIORITY, &trans);
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EXPECT_THAT(rv, IsOk());
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EXPECT_TRUE(trans.get() != NULL);
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}
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TEST_F(HttpNetworkLayerTest, Suspend) {
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std::unique_ptr<HttpTransaction> trans;
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int rv = factory_->CreateTransaction(DEFAULT_PRIORITY, &trans);
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EXPECT_THAT(rv, IsOk());
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trans.reset();
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factory_->OnSuspend();
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rv = factory_->CreateTransaction(DEFAULT_PRIORITY, &trans);
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EXPECT_THAT(rv, IsError(ERR_NETWORK_IO_SUSPENDED));
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ASSERT_TRUE(trans == NULL);
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factory_->OnResume();
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rv = factory_->CreateTransaction(DEFAULT_PRIORITY, &trans);
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EXPECT_THAT(rv, IsOk());
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}
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TEST_F(HttpNetworkLayerTest, GET) {
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MockRead data_reads[] = {
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MockRead("HTTP/1.0 200 OK\r\n\r\n"),
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MockRead("hello world"),
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MockRead(SYNCHRONOUS, OK),
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};
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MockWrite data_writes[] = {
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MockWrite("GET / HTTP/1.1\r\n"
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"Host: www.google.com\r\n"
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"Connection: keep-alive\r\n"
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"User-Agent: Foo/1.0\r\n\r\n"),
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};
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StaticSocketDataProvider data(data_reads, data_writes);
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mock_socket_factory_.AddSocketDataProvider(&data);
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TestCompletionCallback callback;
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HttpRequestInfo request_info;
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request_info.url = GURL("http://www.google.com/");
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request_info.method = "GET";
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request_info.extra_headers.SetHeader(HttpRequestHeaders::kUserAgent,
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"Foo/1.0");
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request_info.load_flags = LOAD_NORMAL;
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request_info.traffic_annotation =
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net::MutableNetworkTrafficAnnotationTag(TRAFFIC_ANNOTATION_FOR_TESTS);
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std::unique_ptr<HttpTransaction> trans;
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int rv = factory_->CreateTransaction(DEFAULT_PRIORITY, &trans);
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EXPECT_THAT(rv, IsOk());
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rv = trans->Start(&request_info, callback.callback(), NetLogWithSource());
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rv = callback.GetResult(rv);
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ASSERT_THAT(rv, IsOk());
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std::string contents;
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rv = ReadTransaction(trans.get(), &contents);
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EXPECT_THAT(rv, IsOk());
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EXPECT_EQ("hello world", contents);
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}
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TEST_F(HttpNetworkLayerTest, NetworkVerified) {
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MockRead data_reads[] = {
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MockRead("HTTP/1.0 200 OK\r\n\r\n"),
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MockRead("hello world"),
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MockRead(SYNCHRONOUS, OK),
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};
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MockWrite data_writes[] = {
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MockWrite("GET / HTTP/1.1\r\n"
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"Host: www.google.com\r\n"
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"Connection: keep-alive\r\n"
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"User-Agent: Foo/1.0\r\n\r\n"),
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};
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StaticSocketDataProvider data(data_reads, data_writes);
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mock_socket_factory_.AddSocketDataProvider(&data);
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TestCompletionCallback callback;
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HttpRequestInfo request_info;
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request_info.url = GURL("http://www.google.com/");
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request_info.method = "GET";
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request_info.extra_headers.SetHeader(HttpRequestHeaders::kUserAgent,
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"Foo/1.0");
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request_info.load_flags = LOAD_NORMAL;
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request_info.traffic_annotation =
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net::MutableNetworkTrafficAnnotationTag(TRAFFIC_ANNOTATION_FOR_TESTS);
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std::unique_ptr<HttpTransaction> trans;
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int rv = factory_->CreateTransaction(DEFAULT_PRIORITY, &trans);
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EXPECT_THAT(rv, IsOk());
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rv = trans->Start(&request_info, callback.callback(), NetLogWithSource());
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ASSERT_THAT(callback.GetResult(rv), IsOk());
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EXPECT_TRUE(trans->GetResponseInfo()->network_accessed);
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}
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TEST_F(HttpNetworkLayerTest, NetworkUnVerified) {
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MockRead data_reads[] = {
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MockRead(ASYNC, ERR_CONNECTION_RESET),
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};
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MockWrite data_writes[] = {
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MockWrite("GET / HTTP/1.1\r\n"
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"Host: www.google.com\r\n"
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"Connection: keep-alive\r\n"
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"User-Agent: Foo/1.0\r\n\r\n"),
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};
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StaticSocketDataProvider data(data_reads, data_writes);
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mock_socket_factory_.AddSocketDataProvider(&data);
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TestCompletionCallback callback;
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HttpRequestInfo request_info;
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request_info.url = GURL("http://www.google.com/");
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request_info.method = "GET";
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request_info.extra_headers.SetHeader(HttpRequestHeaders::kUserAgent,
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"Foo/1.0");
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request_info.load_flags = LOAD_NORMAL;
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request_info.traffic_annotation =
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net::MutableNetworkTrafficAnnotationTag(TRAFFIC_ANNOTATION_FOR_TESTS);
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std::unique_ptr<HttpTransaction> trans;
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int rv = factory_->CreateTransaction(DEFAULT_PRIORITY, &trans);
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EXPECT_THAT(rv, IsOk());
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rv = trans->Start(&request_info, callback.callback(), NetLogWithSource());
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ASSERT_THAT(callback.GetResult(rv), IsError(ERR_CONNECTION_RESET));
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// network_accessed is true; the HTTP stack did try to make a connection.
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EXPECT_TRUE(trans->GetResponseInfo()->network_accessed);
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}
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} // namespace
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} // namespace net
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