mirror of
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262 lines
9.7 KiB
C++
262 lines
9.7 KiB
C++
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// Copyright 2013 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/websockets/websocket_test_util.h"
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#include <stddef.h>
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#include <algorithm>
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#include <utility>
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#include "base/strings/strcat.h"
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#include "base/strings/string_util.h"
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#include "base/strings/stringprintf.h"
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#include "net/http/http_network_session.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/third_party/spdy/core/spdy_protocol.h"
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#include "net/traffic_annotation/network_traffic_annotation_test_helper.h"
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#include "net/websockets/websocket_basic_handshake_stream.h"
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#include "url/origin.h"
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namespace net {
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namespace {
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const uint64_t kA = (static_cast<uint64_t>(0x5851f42d) << 32) +
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static_cast<uint64_t>(0x4c957f2d);
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const uint64_t kC = 12345;
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const uint64_t kM = static_cast<uint64_t>(1) << 48;
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} // namespace
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LinearCongruentialGenerator::LinearCongruentialGenerator(uint32_t seed)
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: current_(seed) {}
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uint32_t LinearCongruentialGenerator::Generate() {
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uint64_t result = current_;
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current_ = (current_ * kA + kC) % kM;
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return static_cast<uint32_t>(result >> 16);
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}
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std::string WebSocketExtraHeadersToString(
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const WebSocketExtraHeaders& headers) {
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std::string answer;
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for (const auto& header : headers) {
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base::StrAppend(&answer, {header.first, ": ", header.second, "\r\n"});
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}
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return answer;
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}
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HttpRequestHeaders WebSocketExtraHeadersToHttpRequestHeaders(
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const WebSocketExtraHeaders& headers) {
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HttpRequestHeaders headers_to_return;
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for (const auto& header : headers)
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headers_to_return.SetHeader(header.first, header.second);
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return headers_to_return;
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}
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std::string WebSocketStandardRequest(
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const std::string& path,
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const std::string& host,
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const url::Origin& origin,
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const std::string& send_additional_request_headers,
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const std::string& extra_headers) {
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return WebSocketStandardRequestWithCookies(path, host, origin, std::string(),
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send_additional_request_headers,
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extra_headers);
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}
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std::string WebSocketStandardRequestWithCookies(
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const std::string& path,
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const std::string& host,
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const url::Origin& origin,
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const std::string& cookies,
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const std::string& send_additional_request_headers,
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const std::string& extra_headers) {
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// Unrelated changes in net/http may change the order and default-values of
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// HTTP headers, causing WebSocket tests to fail. It is safe to update this
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// in that case.
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HttpRequestHeaders headers;
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std::stringstream request_headers;
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request_headers << base::StringPrintf("GET %s HTTP/1.1\r\n", path.c_str());
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headers.SetHeader("Host", host);
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headers.SetHeader("Connection", "Upgrade");
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headers.SetHeader("Pragma", "no-cache");
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headers.SetHeader("Cache-Control", "no-cache");
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headers.AddHeadersFromString(send_additional_request_headers);
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headers.SetHeader("Upgrade", "websocket");
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headers.SetHeader("Origin", origin.Serialize());
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headers.SetHeader("Sec-WebSocket-Version", "13");
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if (!headers.HasHeader("User-Agent"))
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headers.SetHeader("User-Agent", "");
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headers.SetHeader("Accept-Encoding", "gzip, deflate");
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headers.SetHeader("Accept-Language", "en-us,fr");
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headers.AddHeadersFromString(cookies);
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headers.SetHeader("Sec-WebSocket-Key", "dGhlIHNhbXBsZSBub25jZQ==");
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headers.SetHeader("Sec-WebSocket-Extensions",
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"permessage-deflate; client_max_window_bits");
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headers.AddHeadersFromString(extra_headers);
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request_headers << headers.ToString();
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return request_headers.str();
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}
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std::string WebSocketStandardResponse(const std::string& extra_headers) {
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return base::StringPrintf(
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"HTTP/1.1 101 Switching Protocols\r\n"
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"Upgrade: websocket\r\n"
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"Connection: Upgrade\r\n"
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"Sec-WebSocket-Accept: s3pPLMBiTxaQ9kYGzzhZRbK+xOo=\r\n"
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"%s\r\n",
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extra_headers.c_str());
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}
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spdy::SpdyHeaderBlock WebSocketHttp2Request(
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const std::string& path,
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const std::string& authority,
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const std::string& origin,
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const WebSocketExtraHeaders& extra_headers) {
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spdy::SpdyHeaderBlock request_headers;
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request_headers[spdy::kHttp2MethodHeader] = "CONNECT";
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request_headers[spdy::kHttp2AuthorityHeader] = authority;
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request_headers[spdy::kHttp2SchemeHeader] = "https";
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request_headers[spdy::kHttp2PathHeader] = path;
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request_headers[spdy::kHttp2ProtocolHeader] = "websocket";
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request_headers["pragma"] = "no-cache";
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request_headers["cache-control"] = "no-cache";
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request_headers["origin"] = origin;
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request_headers["sec-websocket-version"] = "13";
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request_headers["user-agent"] = "";
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request_headers["accept-encoding"] = "gzip, deflate";
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request_headers["accept-language"] = "en-us,fr";
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request_headers["sec-websocket-extensions"] =
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"permessage-deflate; client_max_window_bits";
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for (const auto& header : extra_headers) {
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request_headers[base::ToLowerASCII(header.first)] = header.second;
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}
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return request_headers;
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}
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spdy::SpdyHeaderBlock WebSocketHttp2Response(
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const WebSocketExtraHeaders& extra_headers) {
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spdy::SpdyHeaderBlock response_headers;
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response_headers[spdy::kHttp2StatusHeader] = "200";
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for (const auto& header : extra_headers) {
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response_headers[base::ToLowerASCII(header.first)] = header.second;
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}
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return response_headers;
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}
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struct WebSocketMockClientSocketFactoryMaker::Detail {
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std::string expect_written;
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std::string return_to_read;
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std::vector<MockRead> reads;
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MockWrite write;
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std::vector<std::unique_ptr<SequencedSocketData>> socket_data_vector;
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std::vector<std::unique_ptr<SSLSocketDataProvider>> ssl_socket_data_vector;
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MockClientSocketFactory factory;
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};
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WebSocketMockClientSocketFactoryMaker::WebSocketMockClientSocketFactoryMaker()
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: detail_(std::make_unique<Detail>()) {}
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WebSocketMockClientSocketFactoryMaker::
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~WebSocketMockClientSocketFactoryMaker() = default;
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MockClientSocketFactory* WebSocketMockClientSocketFactoryMaker::factory() {
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return &detail_->factory;
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}
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void WebSocketMockClientSocketFactoryMaker::SetExpectations(
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const std::string& expect_written,
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const std::string& return_to_read) {
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const size_t kHttpStreamParserBufferSize = 4096;
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// We need to extend the lifetime of these strings.
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detail_->expect_written = expect_written;
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detail_->return_to_read = return_to_read;
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int sequence = 0;
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detail_->write = MockWrite(SYNCHRONOUS,
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detail_->expect_written.data(),
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detail_->expect_written.size(),
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sequence++);
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// HttpStreamParser reads 4KB at a time. We need to take this implementation
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// detail into account if |return_to_read| is big enough.
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for (size_t place = 0; place < detail_->return_to_read.size();
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place += kHttpStreamParserBufferSize) {
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detail_->reads.push_back(
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MockRead(SYNCHRONOUS, detail_->return_to_read.data() + place,
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std::min(detail_->return_to_read.size() - place,
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kHttpStreamParserBufferSize),
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sequence++));
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}
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auto socket_data = std::make_unique<SequencedSocketData>(
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detail_->reads, base::make_span(&detail_->write, 1));
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socket_data->set_connect_data(MockConnect(SYNCHRONOUS, OK));
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AddRawExpectations(std::move(socket_data));
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}
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void WebSocketMockClientSocketFactoryMaker::AddRawExpectations(
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std::unique_ptr<SequencedSocketData> socket_data) {
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detail_->factory.AddSocketDataProvider(socket_data.get());
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detail_->socket_data_vector.push_back(std::move(socket_data));
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}
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void WebSocketMockClientSocketFactoryMaker::AddSSLSocketDataProvider(
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std::unique_ptr<SSLSocketDataProvider> ssl_socket_data) {
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detail_->factory.AddSSLSocketDataProvider(ssl_socket_data.get());
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detail_->ssl_socket_data_vector.push_back(std::move(ssl_socket_data));
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}
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WebSocketTestURLRequestContextHost::WebSocketTestURLRequestContextHost()
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: url_request_context_(true), url_request_context_initialized_(false) {
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url_request_context_.set_client_socket_factory(maker_.factory());
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auto params = std::make_unique<HttpNetworkSession::Params>();
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params->enable_spdy_ping_based_connection_checking = false;
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params->enable_quic = false;
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params->enable_websocket_over_http2 = true;
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params->disable_idle_sockets_close_on_memory_pressure = false;
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url_request_context_.set_http_network_session_params(std::move(params));
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}
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WebSocketTestURLRequestContextHost::~WebSocketTestURLRequestContextHost() =
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default;
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void WebSocketTestURLRequestContextHost::AddRawExpectations(
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std::unique_ptr<SequencedSocketData> socket_data) {
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maker_.AddRawExpectations(std::move(socket_data));
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}
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void WebSocketTestURLRequestContextHost::AddSSLSocketDataProvider(
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std::unique_ptr<SSLSocketDataProvider> ssl_socket_data) {
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maker_.AddSSLSocketDataProvider(std::move(ssl_socket_data));
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}
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void WebSocketTestURLRequestContextHost::SetProxyConfig(
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const std::string& proxy_rules) {
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DCHECK(!url_request_context_initialized_);
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proxy_resolution_service_ = ProxyResolutionService::CreateFixed(
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proxy_rules, TRAFFIC_ANNOTATION_FOR_TESTS);
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url_request_context_.set_proxy_resolution_service(
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proxy_resolution_service_.get());
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}
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TestURLRequestContext*
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WebSocketTestURLRequestContextHost::GetURLRequestContext() {
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if (!url_request_context_initialized_) {
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url_request_context_.Init();
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// A Network Delegate is required to make the URLRequest::Delegate work.
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url_request_context_.set_network_delegate(&network_delegate_);
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url_request_context_initialized_ = true;
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}
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return &url_request_context_;
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}
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void TestWebSocketHandshakeStreamCreateHelper::OnBasicStreamCreated(
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WebSocketBasicHandshakeStream* stream) {
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stream->SetWebSocketKeyForTesting("dGhlIHNhbXBsZSBub25jZQ==");
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}
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} // namespace net
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