#include "net/http/http_network_transaction.h"
#include <set>
#include <utility>
#include <vector>
#include "base/base64url.h"
#include "base/compiler_specific.h"
#include "base/feature_list.h"
#include "base/format_macros.h"
#include "base/functional/bind.h"
#include "base/functional/callback_helpers.h"
#include "base/metrics/field_trial.h"
#include "base/metrics/histogram_functions.h"
#include "base/metrics/histogram_macros.h"
#include "base/metrics/sparse_histogram.h"
#include "base/strings/string_number_conversions.h"
#include "base/strings/string_util.h"
#include "base/time/time.h"
#include "base/trace_event/trace_event.h"
#include "base/values.h"
#include "build/build_config.h"
#include "net/base/auth.h"
#include "net/base/features.h"
#include "net/base/host_port_pair.h"
#include "net/base/io_buffer.h"
#include "net/base/load_flags.h"
#include "net/base/load_timing_info.h"
#include "net/base/net_errors.h"
#include "net/base/proxy_server.h"
#include "net/base/transport_info.h"
#include "net/base/upload_data_stream.h"
#include "net/base/url_util.h"
#include "net/cert/cert_status_flags.h"
#include "net/filter/filter_source_stream.h"
#include "net/http/bidirectional_stream_impl.h"
#include "net/http/http_auth.h"
#include "net/http/http_auth_controller.h"
#include "net/http/http_auth_handler.h"
#include "net/http/http_auth_handler_factory.h"
#include "net/http/http_basic_stream.h"
#include "net/http/http_chunked_decoder.h"
#include "net/http/http_log_util.h"
#include "net/http/http_network_session.h"
#include "net/http/http_request_headers.h"
#include "net/http/http_request_info.h"
#include "net/http/http_response_headers.h"
#include "net/http/http_response_info.h"
#include "net/http/http_server_properties.h"
#include "net/http/http_status_code.h"
#include "net/http/http_stream.h"
#include "net/http/http_stream_factory.h"
#include "net/http/http_util.h"
#include "net/http/transport_security_state.h"
#include "net/http/url_security_manager.h"
#include "net/log/net_log_event_type.h"
#include "net/socket/client_socket_factory.h"
#include "net/socket/next_proto.h"
#include "net/socket/transport_client_socket_pool.h"
#include "net/spdy/spdy_http_stream.h"
#include "net/spdy/spdy_session.h"
#include "net/spdy/spdy_session_pool.h"
#include "net/ssl/ssl_cert_request_info.h"
#include "net/ssl/ssl_connection_status_flags.h"
#include "net/ssl/ssl_info.h"
#include "net/ssl/ssl_private_key.h"
#include "url/gurl.h"
#include "url/origin.h"
#include "url/scheme_host_port.h"
#include "url/url_canon.h"
#if BUILDFLAG(ENABLE_REPORTING)
#include "net/network_error_logging/network_error_logging_service.h"
#include "net/reporting/reporting_header_parser.h"
#include "net/reporting/reporting_service.h"
#endif
#ifdef OHOS_LOGGER_REPORT
#include "url/ohos/log_utils.h"
#endif
namespace net {
namespace {
const size_t kMaxRetryAttempts = 2;
const size_t kMaxRestarts = 32;
void SetProxyInfoInReponse(const ProxyInfo& proxy_info,
HttpResponseInfo* response_info) {
response_info->was_fetched_via_proxy = !proxy_info.is_direct();
if (response_info->was_fetched_via_proxy && !proxy_info.is_empty())
response_info->proxy_server = proxy_info.proxy_server();
else if (!response_info->was_fetched_via_proxy && proxy_info.is_direct())
response_info->proxy_server = ProxyServer::Direct();
else
response_info->proxy_server = ProxyServer();
}
}
const int HttpNetworkTransaction::kDrainBodyBufferSize;
HttpNetworkTransaction::HttpNetworkTransaction(RequestPriority priority,
HttpNetworkSession* session)
: io_callback_(base::BindRepeating(&HttpNetworkTransaction::OnIOComplete,
base::Unretained(this))),
session_(session),
priority_(priority) {}
HttpNetworkTransaction::~HttpNetworkTransaction() {
#if BUILDFLAG(ENABLE_REPORTING)
GenerateNetworkErrorLoggingReport(ERR_ABORTED);
#endif
if (quic_protocol_error_retry_delay_) {
base::UmaHistogramTimes(
IsGoogleHostWithAlpnH3(url_.host())
? "Net.QuicProtocolErrorRetryDelayH3SupportedGoogleHost.Failure"
: "Net.QuicProtocolErrorRetryDelay.Failure",
*quic_protocol_error_retry_delay_);
}
if (stream_.get()) {
if (!stream_->CanReuseConnection() || next_state_ != STATE_NONE ||
close_connection_on_destruction_) {
stream_->Close(true );
} else if (stream_->IsResponseBodyComplete()) {
stream_->Close(false );
} else {
HttpStream* stream = stream_.release();
stream->Drain(session_);
}
}
if (request_ && request_->upload_data_stream)
request_->upload_data_stream->Reset();
}
int HttpNetworkTransaction::Start(const HttpRequestInfo* request_info,
CompletionOnceCallback callback,
const NetLogWithSource& net_log) {
if (request_info->load_flags & LOAD_ONLY_FROM_CACHE)
return ERR_CACHE_MISS;
DCHECK(request_info->traffic_annotation.is_valid());
DCHECK(request_info->IsConsistent());
net_log_ = net_log;
request_ = request_info;
url_ = request_->url;
network_anonymization_key_ = request_->network_anonymization_key;
#if BUILDFLAG(ENABLE_REPORTING)
request_method_ = request_->method;
request_->extra_headers.GetHeader(HttpRequestHeaders::kReferer,
&request_referrer_);
request_->extra_headers.GetHeader(HttpRequestHeaders::kUserAgent,
&request_user_agent_);
request_reporting_upload_depth_ = request_->reporting_upload_depth;
#endif
start_timeticks_ = base::TimeTicks::Now();
if (request_->load_flags & LOAD_DISABLE_CERT_NETWORK_FETCHES) {
server_ssl_config_.disable_cert_verification_network_fetches = true;
proxy_ssl_config_.disable_cert_verification_network_fetches = true;
}
if (request_->idempotency == IDEMPOTENT ||
(request_->idempotency == DEFAULT_IDEMPOTENCY &&
HttpUtil::IsMethodSafe(request_info->method))) {
can_send_early_data_ = true;
}
if (request_->load_flags & LOAD_PREFETCH) {
response_.unused_since_prefetch = true;
}
if (request_->load_flags & LOAD_RESTRICTED_PREFETCH) {
DCHECK(response_.unused_since_prefetch);
response_.restricted_prefetch = true;
}
next_state_ = STATE_NOTIFY_BEFORE_CREATE_STREAM;
int rv = DoLoop(OK);
if (rv == ERR_IO_PENDING)
callback_ = std::move(callback);
DCHECK_EQ(rv, ERR_IO_PENDING);
return rv;
}
int HttpNetworkTransaction::RestartIgnoringLastError(
CompletionOnceCallback callback) {
DCHECK(!stream_.get());
DCHECK(!stream_request_.get());
DCHECK_EQ(STATE_NONE, next_state_);
if (!CheckMaxRestarts())
return ERR_TOO_MANY_RETRIES;
next_state_ = STATE_CREATE_STREAM;
int rv = DoLoop(OK);
if (rv == ERR_IO_PENDING)
callback_ = std::move(callback);
DCHECK_EQ(rv, ERR_IO_PENDING);
return rv;
}
int HttpNetworkTransaction::RestartWithCertificate(
scoped_refptr<X509Certificate> client_cert,
scoped_refptr<SSLPrivateKey> client_private_key,
CompletionOnceCallback callback) {
DCHECK(!stream_request_.get());
DCHECK(!stream_.get());
DCHECK_EQ(STATE_NONE, next_state_);
if (!CheckMaxRestarts())
return ERR_TOO_MANY_RETRIES;
session_->ssl_client_context()->SetClientCertificate(
response_.cert_request_info->host_and_port, std::move(client_cert),
std::move(client_private_key));
if (!response_.cert_request_info->is_proxy)
configured_client_cert_for_server_ = true;
ResetStateForRestart();
next_state_ = STATE_CREATE_STREAM;
int rv = DoLoop(OK);
if (rv == ERR_IO_PENDING)
callback_ = std::move(callback);
DCHECK_EQ(rv, ERR_IO_PENDING);
return rv;
}
int HttpNetworkTransaction::RestartWithAuth(const AuthCredentials& credentials,
CompletionOnceCallback callback) {
if (!CheckMaxRestarts())
return ERR_TOO_MANY_RETRIES;
HttpAuth::Target target = pending_auth_target_;
if (target == HttpAuth::AUTH_NONE) {
NOTREACHED();
return ERR_UNEXPECTED;
}
pending_auth_target_ = HttpAuth::AUTH_NONE;
auth_controllers_[target]->ResetAuth(credentials);
DCHECK(callback_.is_null());
int rv = OK;
if (target == HttpAuth::AUTH_PROXY && establishing_tunnel_) {
DCHECK_EQ(STATE_CREATE_STREAM_COMPLETE, next_state_);
DCHECK(stream_request_ != nullptr);
auth_controllers_[target] = nullptr;
ResetStateForRestart();
rv = stream_request_->RestartTunnelWithProxyAuth();
} else {
DCHECK(stream_request_ == nullptr);
PrepareForAuthRestart(target);
rv = DoLoop(OK);
}
if (rv == ERR_IO_PENDING)
callback_ = std::move(callback);
return rv;
}
void HttpNetworkTransaction::PrepareForAuthRestart(HttpAuth::Target target) {
DCHECK(HaveAuth(target));
DCHECK(!stream_request_.get());
if (target == HttpAuth::AUTH_SERVER &&
auth_controllers_[target]->NeedsHTTP11()) {
session_->http_server_properties()->SetHTTP11Required(
url::SchemeHostPort(request_->url), network_anonymization_key_);
}
bool keep_alive = false;
if (stream_->CanReuseConnection()) {
if (!stream_->IsResponseBodyComplete()) {
next_state_ = STATE_DRAIN_BODY_FOR_AUTH_RESTART;
read_buf_ = base::MakeRefCounted<IOBuffer>(
kDrainBodyBufferSize);
read_buf_len_ = kDrainBodyBufferSize;
return;
}
keep_alive = true;
}
DidDrainBodyForAuthRestart(keep_alive);
}
void HttpNetworkTransaction::DidDrainBodyForAuthRestart(bool keep_alive) {
DCHECK(!stream_request_.get());
if (stream_.get()) {
total_received_bytes_ += stream_->GetTotalReceivedBytes();
total_sent_bytes_ += stream_->GetTotalSentBytes();
std::unique_ptr<HttpStream> new_stream;
if (keep_alive && stream_->CanReuseConnection()) {
stream_->SetConnectionReused();
new_stream = stream_->RenewStreamForAuth();
}
if (!new_stream) {
stream_->Close(true);
next_state_ = STATE_CREATE_STREAM;
} else {
DCHECK_EQ(0, new_stream->GetTotalReceivedBytes());
DCHECK_EQ(0, new_stream->GetTotalSentBytes());
next_state_ = STATE_CONNECTED_CALLBACK;
}
stream_ = std::move(new_stream);
#ifdef OHOS_EX_HTTP_DNS_FALLBACK
stream_created_ = true;
#endif
}
ResetStateForAuthRestart();
}
bool HttpNetworkTransaction::IsReadyToRestartForAuth() {
return pending_auth_target_ != HttpAuth::AUTH_NONE &&
HaveAuth(pending_auth_target_);
}
int HttpNetworkTransaction::Read(IOBuffer* buf,
int buf_len,
CompletionOnceCallback callback) {
DCHECK(buf);
DCHECK_LT(0, buf_len);
scoped_refptr<HttpResponseHeaders> headers(GetResponseHeaders());
if (headers_valid_ && headers.get() && stream_request_.get()) {
DCHECK(proxy_info_.is_http_like());
DCHECK_EQ(headers->response_code(), HTTP_PROXY_AUTHENTICATION_REQUIRED);
return ERR_TUNNEL_CONNECTION_FAILED;
}
next_state_ = STATE_READ_BODY;
read_buf_ = buf;
read_buf_len_ = buf_len;
int rv = DoLoop(OK);
if (rv == ERR_IO_PENDING)
callback_ = std::move(callback);
return rv;
}
void HttpNetworkTransaction::StopCaching() {}
int64_t HttpNetworkTransaction::GetTotalReceivedBytes() const {
int64_t total_received_bytes = total_received_bytes_;
if (stream_)
total_received_bytes += stream_->GetTotalReceivedBytes();
return total_received_bytes;
}
int64_t HttpNetworkTransaction::GetTotalSentBytes() const {
int64_t total_sent_bytes = total_sent_bytes_;
if (stream_)
total_sent_bytes += stream_->GetTotalSentBytes();
return total_sent_bytes;
}
void HttpNetworkTransaction::DoneReading() {}
const HttpResponseInfo* HttpNetworkTransaction::GetResponseInfo() const {
return &response_;
}
LoadState HttpNetworkTransaction::GetLoadState() const {
switch (next_state_) {
case STATE_CREATE_STREAM:
return LOAD_STATE_WAITING_FOR_DELEGATE;
case STATE_CREATE_STREAM_COMPLETE:
return stream_request_->GetLoadState();
case STATE_GENERATE_PROXY_AUTH_TOKEN_COMPLETE:
case STATE_GENERATE_SERVER_AUTH_TOKEN_COMPLETE:
case STATE_SEND_REQUEST_COMPLETE:
return LOAD_STATE_SENDING_REQUEST;
case STATE_READ_HEADERS_COMPLETE:
return LOAD_STATE_WAITING_FOR_RESPONSE;
case STATE_READ_BODY_COMPLETE:
return LOAD_STATE_READING_RESPONSE;
default:
return LOAD_STATE_IDLE;
}
}
void HttpNetworkTransaction::SetQuicServerInfo(
QuicServerInfo* quic_server_info) {}
bool HttpNetworkTransaction::GetLoadTimingInfo(
LoadTimingInfo* load_timing_info) const {
if (!stream_ || !stream_->GetLoadTimingInfo(load_timing_info))
return false;
load_timing_info->proxy_resolve_start =
proxy_info_.proxy_resolve_start_time();
load_timing_info->proxy_resolve_end = proxy_info_.proxy_resolve_end_time();
load_timing_info->send_start = send_start_time_;
load_timing_info->send_end = send_end_time_;
return true;
}
bool HttpNetworkTransaction::GetRemoteEndpoint(IPEndPoint* endpoint) const {
if (remote_endpoint_.address().empty())
return false;
*endpoint = remote_endpoint_;
return true;
}
void HttpNetworkTransaction::PopulateNetErrorDetails(
NetErrorDetails* details) const {
*details = net_error_details_;
#ifdef OHOS_EX_HTTP_DNS_FALLBACK
if (stream_ || next_state_ != STATE_NONE || stream_created_) {
details->stream_created = true;
}
#endif
if (stream_)
stream_->PopulateNetErrorDetails(details);
}
void HttpNetworkTransaction::SetPriority(RequestPriority priority) {
priority_ = priority;
if (stream_request_)
stream_request_->SetPriority(priority);
if (stream_)
stream_->SetPriority(priority);
}
void HttpNetworkTransaction::SetWebSocketHandshakeStreamCreateHelper(
WebSocketHandshakeStreamBase::CreateHelper* create_helper) {
websocket_handshake_stream_base_create_helper_ = create_helper;
}
void HttpNetworkTransaction::SetBeforeNetworkStartCallback(
BeforeNetworkStartCallback callback) {
before_network_start_callback_ = std::move(callback);
}
void HttpNetworkTransaction::SetConnectedCallback(
const ConnectedCallback& callback) {
connected_callback_ = callback;
}
void HttpNetworkTransaction::SetRequestHeadersCallback(
RequestHeadersCallback callback) {
DCHECK(!stream_);
request_headers_callback_ = std::move(callback);
}
void HttpNetworkTransaction::SetEarlyResponseHeadersCallback(
ResponseHeadersCallback callback) {
DCHECK(!stream_);
early_response_headers_callback_ = std::move(callback);
}
void HttpNetworkTransaction::SetResponseHeadersCallback(
ResponseHeadersCallback callback) {
DCHECK(!stream_);
response_headers_callback_ = std::move(callback);
}
int HttpNetworkTransaction::ResumeNetworkStart() {
DCHECK_EQ(next_state_, STATE_CREATE_STREAM);
return DoLoop(OK);
}
void HttpNetworkTransaction::ResumeAfterConnected(int result) {
DCHECK_EQ(next_state_, STATE_CONNECTED_CALLBACK_COMPLETE);
OnIOComplete(result);
}
void HttpNetworkTransaction::CloseConnectionOnDestruction() {
close_connection_on_destruction_ = true;
}
void HttpNetworkTransaction::OnStreamReady(const SSLConfig& used_ssl_config,
const ProxyInfo& used_proxy_info,
std::unique_ptr<HttpStream> stream) {
DCHECK_EQ(STATE_CREATE_STREAM_COMPLETE, next_state_);
DCHECK(stream_request_.get());
if (stream_) {
total_received_bytes_ += stream_->GetTotalReceivedBytes();
total_sent_bytes_ += stream_->GetTotalSentBytes();
}
stream_ = std::move(stream);
stream_->SetRequestHeadersCallback(request_headers_callback_);
server_ssl_config_ = used_ssl_config;
proxy_info_ = used_proxy_info;
response_.was_alpn_negotiated = stream_request_->was_alpn_negotiated();
response_.alpn_negotiated_protocol =
NextProtoToString(stream_request_->negotiated_protocol());
response_.alternate_protocol_usage =
stream_request_->alternate_protocol_usage();
response_.was_fetched_via_spdy = stream_request_->using_spdy();
response_.dns_aliases = stream_->GetDnsAliases();
SetProxyInfoInReponse(used_proxy_info, &response_);
#ifdef OHOS_EX_HTTP_DNS_FALLBACK
stream_created_ = true;
#endif
OnIOComplete(OK);
}
void HttpNetworkTransaction::OnBidirectionalStreamImplReady(
const SSLConfig& used_ssl_config,
const ProxyInfo& used_proxy_info,
std::unique_ptr<BidirectionalStreamImpl> stream) {
NOTREACHED();
}
void HttpNetworkTransaction::OnWebSocketHandshakeStreamReady(
const SSLConfig& used_ssl_config,
const ProxyInfo& used_proxy_info,
std::unique_ptr<WebSocketHandshakeStreamBase> stream) {
OnStreamReady(used_ssl_config, used_proxy_info, std::move(stream));
}
void HttpNetworkTransaction::OnStreamFailed(
int result,
const NetErrorDetails& net_error_details,
const SSLConfig& used_ssl_config,
const ProxyInfo& used_proxy_info,
ResolveErrorInfo resolve_error_info) {
DCHECK_EQ(STATE_CREATE_STREAM_COMPLETE, next_state_);
DCHECK_NE(OK, result);
DCHECK(stream_request_.get());
DCHECK(!stream_.get());
server_ssl_config_ = used_ssl_config;
net_error_details_ = net_error_details;
proxy_info_ = used_proxy_info;
SetProxyInfoInReponse(used_proxy_info, &response_);
response_.resolve_error_info = resolve_error_info;
OnIOComplete(result);
}
void HttpNetworkTransaction::OnCertificateError(
int result,
const SSLConfig& used_ssl_config,
const SSLInfo& ssl_info) {
DCHECK_EQ(STATE_CREATE_STREAM_COMPLETE, next_state_);
DCHECK_NE(OK, result);
DCHECK(stream_request_.get());
DCHECK(!stream_.get());
response_.ssl_info = ssl_info;
server_ssl_config_ = used_ssl_config;
OnIOComplete(result);
}
void HttpNetworkTransaction::OnNeedsProxyAuth(
const HttpResponseInfo& proxy_response,
const SSLConfig& used_ssl_config,
const ProxyInfo& used_proxy_info,
HttpAuthController* auth_controller) {
DCHECK(stream_request_.get());
DCHECK_EQ(STATE_CREATE_STREAM_COMPLETE, next_state_);
establishing_tunnel_ = true;
response_.headers = proxy_response.headers;
response_.auth_challenge = proxy_response.auth_challenge;
response_.did_use_http_auth = proxy_response.did_use_http_auth;
SetProxyInfoInReponse(used_proxy_info, &response_);
if (!ContentEncodingsValid()) {
DoCallback(ERR_CONTENT_DECODING_FAILED);
return;
}
headers_valid_ = true;
server_ssl_config_ = used_ssl_config;
proxy_info_ = used_proxy_info;
auth_controllers_[HttpAuth::AUTH_PROXY] = auth_controller;
pending_auth_target_ = HttpAuth::AUTH_PROXY;
DoCallback(OK);
}
void HttpNetworkTransaction::OnNeedsClientAuth(
const SSLConfig& used_ssl_config,
SSLCertRequestInfo* cert_info) {
DCHECK_EQ(STATE_CREATE_STREAM_COMPLETE, next_state_);
server_ssl_config_ = used_ssl_config;
response_.cert_request_info = cert_info;
OnIOComplete(ERR_SSL_CLIENT_AUTH_CERT_NEEDED);
}
void HttpNetworkTransaction::OnQuicBroken() {
net_error_details_.quic_broken = true;
}
ConnectionAttempts HttpNetworkTransaction::GetConnectionAttempts() const {
return connection_attempts_;
}
bool HttpNetworkTransaction::IsSecureRequest() const {
return request_->url.SchemeIsCryptographic();
}
bool HttpNetworkTransaction::UsingHttpProxyWithoutTunnel() const {
return proxy_info_.is_http_like() &&
!(request_->url.SchemeIs("https") || request_->url.SchemeIsWSOrWSS());
}
void HttpNetworkTransaction::DoCallback(int rv) {
DCHECK_NE(rv, ERR_IO_PENDING);
DCHECK(!callback_.is_null());
#if BUILDFLAG(ENABLE_REPORTING)
GenerateNetworkErrorLoggingReportIfError(rv);
#endif
std::move(callback_).Run(rv);
}
void HttpNetworkTransaction::OnIOComplete(int result) {
int rv = DoLoop(result);
if (rv != ERR_IO_PENDING)
DoCallback(rv);
}
int HttpNetworkTransaction::DoLoop(int result) {
DCHECK(next_state_ != STATE_NONE);
int rv = result;
do {
State state = next_state_;
next_state_ = STATE_NONE;
switch (state) {
case STATE_NOTIFY_BEFORE_CREATE_STREAM:
DCHECK_EQ(OK, rv);
rv = DoNotifyBeforeCreateStream();
break;
case STATE_CREATE_STREAM:
DCHECK_EQ(OK, rv);
rv = DoCreateStream();
break;
case STATE_CREATE_STREAM_COMPLETE:
rv = DoCreateStreamComplete(rv);
break;
#ifdef OHOS_EX_HTTP_DNS_FALLBACK
case STATE_CREATE_FALLBACK_STREAM_WITH_SECURE_DNS_ONLY:
rv = DoCreateFallbackStreamWithSecureDnsOnly();
break;
case STATE_CREATE_FALLBACK_STREAM_WITH_SECURE_DNS_ONLY_COMPLETE:
rv = DoCreateFallbackStreamWithSecureDnsOnlyComplete(rv);
break;
#endif
case STATE_INIT_STREAM:
DCHECK_EQ(OK, rv);
rv = DoInitStream();
break;
case STATE_INIT_STREAM_COMPLETE:
rv = DoInitStreamComplete(rv);
break;
case STATE_CONNECTED_CALLBACK:
rv = DoConnectedCallback();
break;
case STATE_CONNECTED_CALLBACK_COMPLETE:
rv = DoConnectedCallbackComplete(rv);
break;
case STATE_GENERATE_PROXY_AUTH_TOKEN:
DCHECK_EQ(OK, rv);
rv = DoGenerateProxyAuthToken();
break;
case STATE_GENERATE_PROXY_AUTH_TOKEN_COMPLETE:
rv = DoGenerateProxyAuthTokenComplete(rv);
break;
case STATE_GENERATE_SERVER_AUTH_TOKEN:
DCHECK_EQ(OK, rv);
rv = DoGenerateServerAuthToken();
break;
case STATE_GENERATE_SERVER_AUTH_TOKEN_COMPLETE:
rv = DoGenerateServerAuthTokenComplete(rv);
break;
case STATE_INIT_REQUEST_BODY:
DCHECK_EQ(OK, rv);
rv = DoInitRequestBody();
break;
case STATE_INIT_REQUEST_BODY_COMPLETE:
rv = DoInitRequestBodyComplete(rv);
break;
case STATE_BUILD_REQUEST:
DCHECK_EQ(OK, rv);
net_log_.BeginEvent(NetLogEventType::HTTP_TRANSACTION_SEND_REQUEST);
rv = DoBuildRequest();
break;
case STATE_BUILD_REQUEST_COMPLETE:
rv = DoBuildRequestComplete(rv);
break;
case STATE_SEND_REQUEST:
DCHECK_EQ(OK, rv);
rv = DoSendRequest();
break;
case STATE_SEND_REQUEST_COMPLETE:
rv = DoSendRequestComplete(rv);
net_log_.EndEventWithNetErrorCode(
NetLogEventType::HTTP_TRANSACTION_SEND_REQUEST, rv);
break;
case STATE_READ_HEADERS:
DCHECK_EQ(OK, rv);
net_log_.BeginEvent(NetLogEventType::HTTP_TRANSACTION_READ_HEADERS);
rv = DoReadHeaders();
break;
case STATE_READ_HEADERS_COMPLETE:
rv = DoReadHeadersComplete(rv);
net_log_.EndEventWithNetErrorCode(
NetLogEventType::HTTP_TRANSACTION_READ_HEADERS, rv);
break;
case STATE_READ_BODY:
DCHECK_EQ(OK, rv);
net_log_.BeginEvent(NetLogEventType::HTTP_TRANSACTION_READ_BODY);
rv = DoReadBody();
break;
case STATE_READ_BODY_COMPLETE:
rv = DoReadBodyComplete(rv);
net_log_.EndEventWithNetErrorCode(
NetLogEventType::HTTP_TRANSACTION_READ_BODY, rv);
break;
case STATE_DRAIN_BODY_FOR_AUTH_RESTART:
DCHECK_EQ(OK, rv);
net_log_.BeginEvent(
NetLogEventType::HTTP_TRANSACTION_DRAIN_BODY_FOR_AUTH_RESTART);
rv = DoDrainBodyForAuthRestart();
break;
case STATE_DRAIN_BODY_FOR_AUTH_RESTART_COMPLETE:
rv = DoDrainBodyForAuthRestartComplete(rv);
net_log_.EndEventWithNetErrorCode(
NetLogEventType::HTTP_TRANSACTION_DRAIN_BODY_FOR_AUTH_RESTART, rv);
break;
default:
NOTREACHED() << "bad state";
rv = ERR_FAILED;
break;
}
} while (rv != ERR_IO_PENDING && next_state_ != STATE_NONE);
return rv;
}
int HttpNetworkTransaction::DoNotifyBeforeCreateStream() {
next_state_ = STATE_CREATE_STREAM;
bool defer = false;
if (!before_network_start_callback_.is_null())
std::move(before_network_start_callback_).Run(&defer);
if (!defer)
return OK;
return ERR_IO_PENDING;
}
int HttpNetworkTransaction::DoCreateStream() {
if (request_) {
TRACE_EVENT1("net", "HttpNetworkTransaction::DoCreateStream", "url", request_->url.spec());
}
response_.network_accessed = true;
next_state_ = STATE_CREATE_STREAM_COMPLETE;
if (!enable_ip_based_pooling_)
DCHECK(!enable_alternative_services_);
if (ForWebSocketHandshake()) {
stream_request_ =
session_->http_stream_factory()->RequestWebSocketHandshakeStream(
*request_, priority_, server_ssl_config_, proxy_ssl_config_, this,
websocket_handshake_stream_base_create_helper_,
enable_ip_based_pooling_, enable_alternative_services_, net_log_);
} else {
stream_request_ = session_->http_stream_factory()->RequestStream(
*request_, priority_, server_ssl_config_, proxy_ssl_config_, this,
enable_ip_based_pooling_, enable_alternative_services_, net_log_);
}
DCHECK(stream_request_.get());
return ERR_IO_PENDING;
}
int HttpNetworkTransaction::DoCreateStreamComplete(int result) {
if (request_) {
TRACE_EVENT1("net", "HttpNetworkTransaction::DoCreateStreamComplete", "url", request_->url.spec());
}
CopyConnectionAttemptsFromStreamRequest();
if (result == OK) {
next_state_ = STATE_CONNECTED_CALLBACK;
DCHECK(stream_.get());
} else if (result == ERR_HTTP_1_1_REQUIRED ||
result == ERR_PROXY_HTTP_1_1_REQUIRED) {
return HandleHttp11Required(result);
}
result = HandleSSLClientAuthError(result);
stream_request_.reset();
return result;
}
#ifdef OHOS_EX_HTTP_DNS_FALLBACK
int HttpNetworkTransaction::RestartWithSecureDnsOnly(
CompletionOnceCallback callback) {
DCHECK(!stream_.get());
DCHECK(!stream_request_.get());
DCHECK_EQ(STATE_NONE, next_state_);
if (!CheckMaxRestarts()) {
return ERR_TOO_MANY_RETRIES;
}
ResetStateForRestart();
next_state_ = STATE_CREATE_FALLBACK_STREAM_WITH_SECURE_DNS_ONLY;
int rv = DoLoop(OK);
if (rv == ERR_IO_PENDING) {
callback_ = std::move(callback);
}
CHECK_EQ(rv, ERR_IO_PENDING);
return rv;
}
int HttpNetworkTransaction::DoCreateFallbackStreamWithSecureDnsOnly() {
response_.network_accessed = true;
next_state_ = STATE_CREATE_FALLBACK_STREAM_WITH_SECURE_DNS_ONLY_COMPLETE;
if (!enable_ip_based_pooling_) {
DCHECK(!enable_alternative_services_);
}
if (ForWebSocketHandshake()) {
stream_request_ =
session_->http_stream_factory()->RequestWebSocketHandshakeStream(
*request_, priority_, server_ssl_config_, proxy_ssl_config_, this,
websocket_handshake_stream_base_create_helper_,
enable_ip_based_pooling_, enable_alternative_services_, net_log_);
} else {
stream_request_ = session_->http_stream_factory()->RequestStream(
*request_, priority_, server_ssl_config_, proxy_ssl_config_, this,
enable_ip_based_pooling_, enable_alternative_services_, net_log_);
}
CHECK(stream_request_.get());
return ERR_IO_PENDING;
}
int HttpNetworkTransaction::DoCreateFallbackStreamWithSecureDnsOnlyComplete(
int result) {
CopyConnectionAttemptsFromStreamRequest();
if (result == OK) {
next_state_ = STATE_CONNECTED_CALLBACK;
DCHECK(stream_.get());
} else if (result == ERR_HTTP_1_1_REQUIRED ||
result == ERR_PROXY_HTTP_1_1_REQUIRED) {
return HandleHttp11Required(result);
}
result = HandleSSLClientAuthError(result);
stream_request_.reset();
return result;
}
#endif
int HttpNetworkTransaction::DoInitStream() {
DCHECK(stream_.get());
next_state_ = STATE_INIT_STREAM_COMPLETE;
return stream_->InitializeStream(can_send_early_data_, priority_, net_log_,
io_callback_);
}
int HttpNetworkTransaction::DoInitStreamComplete(int result) {
if (result != OK) {
if (result < 0)
result = HandleIOError(result);
if (stream_) {
total_received_bytes_ += stream_->GetTotalReceivedBytes();
total_sent_bytes_ += stream_->GetTotalSentBytes();
}
CacheNetErrorDetailsAndResetStream();
return result;
}
next_state_ = STATE_GENERATE_PROXY_AUTH_TOKEN;
return result;
}
int HttpNetworkTransaction::DoConnectedCallback() {
stream_->RegisterRequest(request_);
next_state_ = STATE_CONNECTED_CALLBACK_COMPLETE;
int result = stream_->GetRemoteEndpoint(&remote_endpoint_);
if (result != OK) {
return HandleIOError(result);
}
if (connected_callback_.is_null()) {
return OK;
}
TransportType type = TransportType::kDirect;
if (!proxy_info_.is_direct()) {
type = TransportType::kProxied;
}
return connected_callback_.Run(
TransportInfo(type, remote_endpoint_,
std::string{stream_->GetAcceptChViaAlps()}),
base::BindOnce(&HttpNetworkTransaction::ResumeAfterConnected,
base::Unretained(this)));
}
int HttpNetworkTransaction::DoConnectedCallbackComplete(int result) {
if (result != OK) {
if (stream_) {
stream_->Close(false);
}
return result;
}
next_state_ = STATE_INIT_STREAM;
return OK;
}
int HttpNetworkTransaction::DoGenerateProxyAuthToken() {
next_state_ = STATE_GENERATE_PROXY_AUTH_TOKEN_COMPLETE;
if (!ShouldApplyProxyAuth())
return OK;
HttpAuth::Target target = HttpAuth::AUTH_PROXY;
if (!auth_controllers_[target].get())
auth_controllers_[target] = base::MakeRefCounted<HttpAuthController>(
target, AuthURL(target), request_->network_anonymization_key,
session_->http_auth_cache(), session_->http_auth_handler_factory(),
session_->host_resolver());
return auth_controllers_[target]->MaybeGenerateAuthToken(request_,
io_callback_,
net_log_);
}
int HttpNetworkTransaction::DoGenerateProxyAuthTokenComplete(int rv) {
DCHECK_NE(ERR_IO_PENDING, rv);
if (rv == OK)
next_state_ = STATE_GENERATE_SERVER_AUTH_TOKEN;
return rv;
}
int HttpNetworkTransaction::DoGenerateServerAuthToken() {
next_state_ = STATE_GENERATE_SERVER_AUTH_TOKEN_COMPLETE;
HttpAuth::Target target = HttpAuth::AUTH_SERVER;
if (!auth_controllers_[target].get()) {
auth_controllers_[target] = base::MakeRefCounted<HttpAuthController>(
target, AuthURL(target), request_->network_anonymization_key,
session_->http_auth_cache(), session_->http_auth_handler_factory(),
session_->host_resolver());
if (request_->load_flags & LOAD_DO_NOT_USE_EMBEDDED_IDENTITY)
auth_controllers_[target]->DisableEmbeddedIdentity();
}
if (!ShouldApplyServerAuth())
return OK;
return auth_controllers_[target]->MaybeGenerateAuthToken(request_,
io_callback_,
net_log_);
}
int HttpNetworkTransaction::DoGenerateServerAuthTokenComplete(int rv) {
DCHECK_NE(ERR_IO_PENDING, rv);
if (rv == OK)
next_state_ = STATE_INIT_REQUEST_BODY;
return rv;
}
int HttpNetworkTransaction::BuildRequestHeaders(
bool using_http_proxy_without_tunnel) {
request_headers_.SetHeader(HttpRequestHeaders::kHost,
GetHostAndOptionalPort(request_->url));
if (using_http_proxy_without_tunnel) {
request_headers_.SetHeader(HttpRequestHeaders::kProxyConnection,
"keep-alive");
} else {
request_headers_.SetHeader(HttpRequestHeaders::kConnection, "keep-alive");
}
if (request_->upload_data_stream) {
if (request_->upload_data_stream->is_chunked()) {
request_headers_.SetHeader(
HttpRequestHeaders::kTransferEncoding, "chunked");
} else {
request_headers_.SetHeader(
HttpRequestHeaders::kContentLength,
base::NumberToString(request_->upload_data_stream->size()));
}
} else if (request_->method == "POST" || request_->method == "PUT") {
request_headers_.SetHeader(HttpRequestHeaders::kContentLength, "0");
}
if (request_->load_flags & LOAD_BYPASS_CACHE) {
request_headers_.SetHeader(HttpRequestHeaders::kPragma, "no-cache");
request_headers_.SetHeader(HttpRequestHeaders::kCacheControl, "no-cache");
} else if (request_->load_flags & LOAD_VALIDATE_CACHE) {
request_headers_.SetHeader(HttpRequestHeaders::kCacheControl, "max-age=0");
}
if (ShouldApplyProxyAuth() && HaveAuth(HttpAuth::AUTH_PROXY))
auth_controllers_[HttpAuth::AUTH_PROXY]->AddAuthorizationHeader(
&request_headers_);
if (ShouldApplyServerAuth() && HaveAuth(HttpAuth::AUTH_SERVER))
auth_controllers_[HttpAuth::AUTH_SERVER]->AddAuthorizationHeader(
&request_headers_);
request_headers_.MergeFrom(request_->extra_headers);
response_.did_use_http_auth =
request_headers_.HasHeader(HttpRequestHeaders::kAuthorization) ||
request_headers_.HasHeader(HttpRequestHeaders::kProxyAuthorization);
return OK;
}
int HttpNetworkTransaction::DoInitRequestBody() {
next_state_ = STATE_INIT_REQUEST_BODY_COMPLETE;
int rv = OK;
if (request_->upload_data_stream)
rv = request_->upload_data_stream->Init(
base::BindOnce(&HttpNetworkTransaction::OnIOComplete,
base::Unretained(this)),
net_log_);
return rv;
}
int HttpNetworkTransaction::DoInitRequestBodyComplete(int result) {
if (result == OK)
next_state_ = STATE_BUILD_REQUEST;
return result;
}
int HttpNetworkTransaction::DoBuildRequest() {
next_state_ = STATE_BUILD_REQUEST_COMPLETE;
headers_valid_ = false;
if (request_headers_.IsEmpty()) {
bool using_http_proxy_without_tunnel = UsingHttpProxyWithoutTunnel();
return BuildRequestHeaders(using_http_proxy_without_tunnel);
}
return OK;
}
int HttpNetworkTransaction::DoBuildRequestComplete(int result) {
if (result == OK)
next_state_ = STATE_SEND_REQUEST;
return result;
}
int HttpNetworkTransaction::DoSendRequest() {
send_start_time_ = base::TimeTicks::Now();
#if BUILDFLAG(IS_OHOS)
TRACE_EVENT1("navigation", "PAGE_LOAD_TIME",
"requestStart", send_start_time_);
#endif
next_state_ = STATE_SEND_REQUEST_COMPLETE;
stream_->SetRequestIdempotency(request_->idempotency);
return stream_->SendRequest(request_headers_, &response_, io_callback_);
}
int HttpNetworkTransaction::DoSendRequestComplete(int result) {
if (request_) {
TRACE_EVENT1("net", "HttpNetworkTransaction::DoSendRequestComplete", "url", request_->url.spec());
}
send_end_time_ = base::TimeTicks::Now();
if (result == ERR_HTTP_1_1_REQUIRED ||
result == ERR_PROXY_HTTP_1_1_REQUIRED) {
return HandleHttp11Required(result);
}
if (result < 0)
return HandleIOError(result);
next_state_ = STATE_READ_HEADERS;
return OK;
}
int HttpNetworkTransaction::DoReadHeaders() {
next_state_ = STATE_READ_HEADERS_COMPLETE;
return stream_->ReadResponseHeaders(io_callback_);
}
int HttpNetworkTransaction::DoReadHeadersComplete(int result) {
if (request_) {
TRACE_EVENT1("net", "HttpNetworkTransaction::DoReadHeadersComplete", "url", request_->url.spec());
}
DCHECK(!IsCertificateError(result));
if (result == ERR_SSL_CLIENT_AUTH_CERT_NEEDED) {
DCHECK(stream_.get());
DCHECK(IsSecureRequest());
response_.cert_request_info = base::MakeRefCounted<SSLCertRequestInfo>();
stream_->GetSSLCertRequestInfo(response_.cert_request_info.get());
total_received_bytes_ += stream_->GetTotalReceivedBytes();
total_sent_bytes_ += stream_->GetTotalSentBytes();
stream_->Close(true);
CacheNetErrorDetailsAndResetStream();
}
if (result == ERR_HTTP_1_1_REQUIRED ||
result == ERR_PROXY_HTTP_1_1_REQUIRED) {
return HandleHttp11Required(result);
}
if (result == ERR_CONNECTION_CLOSED && response_.headers.get())
result = OK;
if (result < 0)
return HandleIOError(result);
DCHECK(response_.headers.get());
if (response_.headers->response_code() == HTTP_EARLY_HINTS) {
NetLogResponseHeaders(
net_log_,
NetLogEventType::HTTP_TRANSACTION_READ_EARLY_HINTS_RESPONSE_HEADERS,
response_.headers.get());
if (ForWebSocketHandshake())
return ERR_FAILED;
if (early_response_headers_callback_)
early_response_headers_callback_.Run(std::move(response_.headers));
response_.headers =
base::MakeRefCounted<HttpResponseHeaders>(std::string());
next_state_ = STATE_READ_HEADERS;
return OK;
}
if (!ContentEncodingsValid())
return ERR_CONTENT_DECODING_FAILED;
if (response_.headers->response_code() == HTTP_REQUEST_TIMEOUT &&
HttpResponseInfo::ConnectionInfoToCoarse(response_.connection_info) ==
HttpResponseInfo::CONNECTION_INFO_COARSE_HTTP1 &&
stream_->IsConnectionReused()) {
#if BUILDFLAG(ENABLE_REPORTING)
GenerateNetworkErrorLoggingReport(OK);
#endif
net_log_.AddEventWithNetErrorCode(
NetLogEventType::HTTP_TRANSACTION_RESTART_AFTER_ERROR,
response_.headers->response_code());
ResetConnectionAndRequestForResend(RetryReason::kHttpRequestTimeout);
return OK;
}
NetLogResponseHeaders(net_log_,
NetLogEventType::HTTP_TRANSACTION_READ_RESPONSE_HEADERS,
response_.headers.get());
if (response_headers_callback_)
response_headers_callback_.Run(response_.headers);
if (response_.headers->GetHttpVersion() < HttpVersion(1, 0)) {
if (request_->method == "PUT")
return ERR_METHOD_NOT_SUPPORTED;
}
if (can_send_early_data_ &&
response_.headers->response_code() == HTTP_TOO_EARLY) {
return HandleIOError(ERR_EARLY_DATA_REJECTED);
}
if (response_.headers->response_code() / 100 == 1 &&
!ForWebSocketHandshake()) {
response_.headers =
base::MakeRefCounted<HttpResponseHeaders>(std::string());
next_state_ = STATE_READ_HEADERS;
return OK;
}
const bool has_body_with_null_source =
request_->upload_data_stream &&
request_->upload_data_stream->has_null_source();
if (response_.headers->response_code() == 421 &&
(enable_ip_based_pooling_ || enable_alternative_services_) &&
!has_body_with_null_source) {
#if BUILDFLAG(ENABLE_REPORTING)
GenerateNetworkErrorLoggingReport(OK);
#endif
enable_ip_based_pooling_ = false;
enable_alternative_services_ = false;
net_log_.AddEvent(
NetLogEventType::HTTP_TRANSACTION_RESTART_MISDIRECTED_REQUEST);
ResetConnectionAndRequestForResend(RetryReason::kHttpMisdirectedRequest);
return OK;
}
if (IsSecureRequest()) {
stream_->GetSSLInfo(&response_.ssl_info);
if (response_.ssl_info.is_valid() &&
!IsCertStatusError(response_.ssl_info.cert_status)) {
session_->http_stream_factory()->ProcessAlternativeServices(
session_, network_anonymization_key_, response_.headers.get(),
url::SchemeHostPort(request_->url));
}
}
int rv = HandleAuthChallenge();
if (rv != OK)
return rv;
#if BUILDFLAG(ENABLE_REPORTING)
ProcessReportToHeader();
ProcessNetworkErrorLoggingHeader();
int response_code = response_.headers->response_code();
if ((response_code >= 400 && response_code < 600) ||
response_code == HTTP_NO_CONTENT || response_code == HTTP_RESET_CONTENT ||
response_code == HTTP_NOT_MODIFIED || request_->method == "HEAD" ||
response_.headers->GetContentLength() == 0 ||
response_.headers->IsRedirect(nullptr )) {
GenerateNetworkErrorLoggingReport(OK);
}
#endif
headers_valid_ = true;
if (pending_auth_target_ == HttpAuth::AUTH_NONE)
request_ = nullptr;
return OK;
}
int HttpNetworkTransaction::DoReadBody() {
DCHECK(read_buf_.get());
CHECK_GT(read_buf_len_, 0);
DCHECK(stream_ != nullptr);
next_state_ = STATE_READ_BODY_COMPLETE;
return stream_->ReadResponseBody(
read_buf_.get(), read_buf_len_, io_callback_);
}
int HttpNetworkTransaction::DoReadBodyComplete(int result) {
#if BUILDFLAG(IS_OHOS)
TRACE_EVENT1("net", "HttpNetworkTransaction::DoReadBodyComplete", "url", url_.spec());
#endif
bool done = false;
if (result <= 0) {
DCHECK_NE(ERR_IO_PENDING, result);
done = true;
}
if (done) {
bool keep_alive =
stream_->IsResponseBodyComplete() && stream_->CanReuseConnection();
stream_->Close(!keep_alive);
if (!enable_alternative_services_ &&
retried_alternative_service_.protocol != kProtoUnknown) {
HistogramBrokenAlternateProtocolLocation(
BROKEN_ALTERNATE_PROTOCOL_LOCATION_HTTP_NETWORK_TRANSACTION);
session_->http_server_properties()->MarkAlternativeServiceBroken(
retried_alternative_service_, network_anonymization_key_);
}
#if BUILDFLAG(ENABLE_REPORTING)
GenerateNetworkErrorLoggingReport(result);
#endif
if (result == OK && quic_protocol_error_retry_delay_) {
base::UmaHistogramTimes(
IsGoogleHostWithAlpnH3(url_.host())
? "Net.QuicProtocolErrorRetryDelayH3SupportedGoogleHost.Success"
: "Net.QuicProtocolErrorRetryDelay.Success",
*quic_protocol_error_retry_delay_);
quic_protocol_error_retry_delay_.reset();
}
}
read_buf_ = nullptr;
read_buf_len_ = 0;
return result;
}
int HttpNetworkTransaction::DoDrainBodyForAuthRestart() {
int rv = DoReadBody();
DCHECK(next_state_ == STATE_READ_BODY_COMPLETE);
next_state_ = STATE_DRAIN_BODY_FOR_AUTH_RESTART_COMPLETE;
return rv;
}
int HttpNetworkTransaction::DoDrainBodyForAuthRestartComplete(int result) {
bool done = false, keep_alive = true;
if (result < 0) {
done = true;
keep_alive = false;
} else if (stream_->IsResponseBodyComplete()) {
done = true;
}
if (done) {
DidDrainBodyForAuthRestart(keep_alive);
} else {
next_state_ = STATE_DRAIN_BODY_FOR_AUTH_RESTART;
}
return OK;
}
#if BUILDFLAG(ENABLE_REPORTING)
void HttpNetworkTransaction::ProcessReportToHeader() {
std::string value;
if (!response_.headers->GetNormalizedHeader("Report-To", &value))
return;
ReportingService* reporting_service = session_->reporting_service();
if (!reporting_service)
return;
if (!response_.ssl_info.is_valid())
return;
if (IsCertStatusError(response_.ssl_info.cert_status))
return;
reporting_service->ProcessReportToHeader(url::Origin::Create(url_),
network_anonymization_key_, value);
}
void HttpNetworkTransaction::ProcessNetworkErrorLoggingHeader() {
std::string value;
if (!response_.headers->GetNormalizedHeader(
NetworkErrorLoggingService::kHeaderName, &value)) {
return;
}
NetworkErrorLoggingService* network_error_logging_service =
session_->network_error_logging_service();
if (!network_error_logging_service)
return;
if (response_.was_fetched_via_proxy)
return;
if (!response_.ssl_info.is_valid() ||
IsCertStatusError(response_.ssl_info.cert_status)) {
return;
}
if (remote_endpoint_.address().empty())
return;
network_error_logging_service->OnHeader(network_anonymization_key_,
url::Origin::Create(url_),
remote_endpoint_.address(), value);
}
void HttpNetworkTransaction::GenerateNetworkErrorLoggingReportIfError(int rv) {
if (rv < 0 && rv != ERR_IO_PENDING)
GenerateNetworkErrorLoggingReport(rv);
}
void HttpNetworkTransaction::GenerateNetworkErrorLoggingReport(int rv) {
DCHECK_NE(rv, ERR_IO_PENDING);
DCHECK_LE(rv, 0);
if (network_error_logging_report_generated_)
return;
network_error_logging_report_generated_ = true;
NetworkErrorLoggingService* service =
session_->network_error_logging_service();
if (!service)
return;
if (response_.headers && response_.headers->response_code() ==
HTTP_PROXY_AUTHENTICATION_REQUIRED) {
return;
}
if (response_.was_fetched_via_proxy)
return;
if (!url_.SchemeIsCryptographic())
return;
NetworkErrorLoggingService::RequestDetails details;
details.network_anonymization_key = network_anonymization_key_;
details.uri = url_;
if (!request_referrer_.empty())
details.referrer = GURL(request_referrer_);
details.user_agent = request_user_agent_;
if (!remote_endpoint_.address().empty()) {
details.server_ip = remote_endpoint_.address();
} else if (!connection_attempts_.empty()) {
details.server_ip = connection_attempts_.back().endpoint.address();
} else {
details.server_ip = IPAddress();
}
if (response_.headers) {
details.status_code = response_.headers->response_code();
} else {
details.status_code = 0;
}
if (response_.was_alpn_negotiated) {
details.protocol = response_.alpn_negotiated_protocol;
} else {
details.protocol = "http/1.1";
}
details.method = request_method_;
details.elapsed_time = base::TimeTicks::Now() - start_timeticks_;
details.type = static_cast<Error>(rv);
details.reporting_upload_depth = request_reporting_upload_depth_;
service->OnRequest(std::move(details));
}
#endif
int HttpNetworkTransaction::HandleHttp11Required(int error) {
DCHECK(error == ERR_HTTP_1_1_REQUIRED ||
error == ERR_PROXY_HTTP_1_1_REQUIRED);
ResetConnectionAndRequestForResend(RetryReason::kHttp11Required);
return OK;
}
int HttpNetworkTransaction::HandleSSLClientAuthError(int error) {
bool is_server = !UsingHttpProxyWithoutTunnel();
HostPortPair host_port_pair =
is_server ? HostPortPair::FromURL(request_->url)
: proxy_info_.proxy_server().host_port_pair();
if (error == ERR_SSL_PROTOCOL_ERROR || IsClientCertificateError(error)) {
DCHECK((is_server && IsSecureRequest()) ||
proxy_info_.is_secure_http_like());
if (session_->ssl_client_context()->ClearClientCertificate(
host_port_pair)) {
if (is_server && error == ERR_SSL_CLIENT_AUTH_SIGNATURE_FAILED &&
!configured_client_cert_for_server_ && !HasExceededMaxRetries()) {
retry_attempts_++;
net_log_.AddEventWithNetErrorCode(
NetLogEventType::HTTP_TRANSACTION_RESTART_AFTER_ERROR, error);
ResetConnectionAndRequestForResend(
RetryReason::kSslClientAuthSignatureFailed);
return OK;
}
}
}
return error;
}
absl::optional<HttpNetworkTransaction::RetryReason>
HttpNetworkTransaction::GetRetryReasonForIOError(int error) {
switch (error) {
case ERR_CONNECTION_RESET:
return RetryReason::kConnectionReset;
case ERR_CONNECTION_CLOSED:
return RetryReason::kConnectionClosed;
case ERR_CONNECTION_ABORTED:
return RetryReason::kConnectionAborted;
case ERR_SOCKET_NOT_CONNECTED:
return RetryReason::kSocketNotConnected;
case ERR_EMPTY_RESPONSE:
return RetryReason::kEmptyResponse;
case ERR_EARLY_DATA_REJECTED:
return RetryReason::kEarlyDataRejected;
case ERR_WRONG_VERSION_ON_EARLY_DATA:
return RetryReason::kWrongVersionOnEarlyData;
case ERR_HTTP2_PING_FAILED:
return RetryReason::kHttp2PingFailed;
case ERR_HTTP2_SERVER_REFUSED_STREAM:
return RetryReason::kHttp2ServerRefusedStream;
case ERR_HTTP2_PUSHED_STREAM_NOT_AVAILABLE:
return RetryReason::kHttp2PushedStreamNotAvailable;
case ERR_HTTP2_CLAIMED_PUSHED_STREAM_RESET_BY_SERVER:
return RetryReason::kHttp2ClaimedPushedStreamResetByServer;
case ERR_HTTP2_PUSHED_RESPONSE_DOES_NOT_MATCH:
return RetryReason::kHttp2PushedResponseDoesNotMatch;
case ERR_QUIC_HANDSHAKE_FAILED:
return RetryReason::kQuicHandshakeFailed;
case ERR_QUIC_GOAWAY_REQUEST_CAN_BE_RETRIED:
return RetryReason::kQuicGoawayRequestCanBeRetried;
case ERR_QUIC_PROTOCOL_ERROR:
return RetryReason::kQuicProtocolError;
}
return absl::nullopt;
}
int HttpNetworkTransaction::HandleIOError(int error) {
error = HandleSSLClientAuthError(error);
#if BUILDFLAG(ENABLE_REPORTING)
GenerateNetworkErrorLoggingReportIfError(error);
#endif
absl::optional<HttpNetworkTransaction::RetryReason> retry_reason =
GetRetryReasonForIOError(error);
if (!retry_reason) {
return error;
}
switch (*retry_reason) {
case RetryReason::kConnectionReset:
case RetryReason::kConnectionClosed:
case RetryReason::kConnectionAborted:
case RetryReason::kSocketNotConnected:
case RetryReason::kEmptyResponse:
if (ShouldResendRequest()) {
net_log_.AddEventWithNetErrorCode(
NetLogEventType::HTTP_TRANSACTION_RESTART_AFTER_ERROR, error);
ResetConnectionAndRequestForResend(*retry_reason);
error = OK;
}
break;
case RetryReason::kEarlyDataRejected:
case RetryReason::kWrongVersionOnEarlyData:
net_log_.AddEventWithNetErrorCode(
NetLogEventType::HTTP_TRANSACTION_RESTART_AFTER_ERROR, error);
can_send_early_data_ = false;
ResetConnectionAndRequestForResend(*retry_reason);
error = OK;
break;
case RetryReason::kHttp2PingFailed:
case RetryReason::kHttp2ServerRefusedStream:
case RetryReason::kHttp2PushedStreamNotAvailable:
case RetryReason::kHttp2ClaimedPushedStreamResetByServer:
case RetryReason::kHttp2PushedResponseDoesNotMatch:
case RetryReason::kQuicHandshakeFailed:
case RetryReason::kQuicGoawayRequestCanBeRetried:
if (HasExceededMaxRetries())
break;
net_log_.AddEventWithNetErrorCode(
NetLogEventType::HTTP_TRANSACTION_RESTART_AFTER_ERROR, error);
retry_attempts_++;
ResetConnectionAndRequestForResend(*retry_reason);
error = OK;
break;
case RetryReason::kQuicProtocolError:
if (GetResponseHeaders() != nullptr) {
RecordQuicProtocolErrorMetrics(
QuicProtocolErrorRetryStatus::kNoRetryHeaderReceived);
break;
}
if (!stream_->GetAlternativeService(&retried_alternative_service_)) {
RecordQuicProtocolErrorMetrics(
QuicProtocolErrorRetryStatus::kNoRetryNoAlternativeService);
break;
}
if (HasExceededMaxRetries()) {
RecordQuicProtocolErrorMetrics(
QuicProtocolErrorRetryStatus::kNoRetryExceededMaxRetries);
break;
}
if (session_->http_server_properties()->IsAlternativeServiceBroken(
retried_alternative_service_, network_anonymization_key_)) {
RecordQuicProtocolErrorMetrics(
QuicProtocolErrorRetryStatus::kRetryAltServiceBroken);
net_log_.AddEventWithNetErrorCode(
NetLogEventType::HTTP_TRANSACTION_RESTART_AFTER_ERROR, error);
retry_attempts_++;
ResetConnectionAndRequestForResend(*retry_reason);
error = OK;
} else if (session_->context()
.quic_context->params()
->retry_without_alt_svc_on_quic_errors) {
RecordQuicProtocolErrorMetrics(
QuicProtocolErrorRetryStatus::kRetryAltServiceNotBroken);
enable_alternative_services_ = false;
net_log_.AddEventWithNetErrorCode(
NetLogEventType::HTTP_TRANSACTION_RESTART_AFTER_ERROR, error);
retry_attempts_++;
ResetConnectionAndRequestForResend(*retry_reason);
error = OK;
}
break;
case RetryReason::kHttpRequestTimeout:
case RetryReason::kHttpMisdirectedRequest:
case RetryReason::kHttp11Required:
case RetryReason::kSslClientAuthSignatureFailed:
NOTREACHED();
break;
}
return error;
}
void HttpNetworkTransaction::ResetStateForRestart() {
ResetStateForAuthRestart();
if (stream_) {
total_received_bytes_ += stream_->GetTotalReceivedBytes();
total_sent_bytes_ += stream_->GetTotalSentBytes();
}
CacheNetErrorDetailsAndResetStream();
}
void HttpNetworkTransaction::ResetStateForAuthRestart() {
send_start_time_ = base::TimeTicks();
send_end_time_ = base::TimeTicks();
pending_auth_target_ = HttpAuth::AUTH_NONE;
read_buf_ = nullptr;
read_buf_len_ = 0;
headers_valid_ = false;
request_headers_.Clear();
response_ = HttpResponseInfo();
SetProxyInfoInReponse(proxy_info_, &response_);
establishing_tunnel_ = false;
remote_endpoint_ = IPEndPoint();
net_error_details_.quic_broken = false;
net_error_details_.quic_connection_error = quic::QUIC_NO_ERROR;
#if BUILDFLAG(ENABLE_REPORTING)
network_error_logging_report_generated_ = false;
#endif
start_timeticks_ = base::TimeTicks::Now();
}
void HttpNetworkTransaction::CacheNetErrorDetailsAndResetStream() {
if (stream_)
stream_->PopulateNetErrorDetails(&net_error_details_);
stream_.reset();
}
HttpResponseHeaders* HttpNetworkTransaction::GetResponseHeaders() const {
return response_.headers.get();
}
bool HttpNetworkTransaction::ShouldResendRequest() const {
bool connection_is_proven = stream_->IsConnectionReused();
bool has_received_headers = GetResponseHeaders() != nullptr;
return connection_is_proven && !has_received_headers;
}
bool HttpNetworkTransaction::HasExceededMaxRetries() const {
return (retry_attempts_ >= kMaxRetryAttempts);
}
bool HttpNetworkTransaction::CheckMaxRestarts() {
num_restarts_++;
return num_restarts_ < kMaxRestarts;
}
void HttpNetworkTransaction::ResetConnectionAndRequestForResend(
RetryReason retry_reason) {
base::UmaHistogramEnumeration(
IsGoogleHostWithAlpnH3(url_.host())
? "Net.NetworkTransactionH3SupportedGoogleHost.RetryReason"
: "Net.NetworkTransaction.RetryReason",
retry_reason);
if (retry_reason == RetryReason::kQuicProtocolError) {
quic_protocol_error_retry_delay_ =
base::TimeTicks::Now() - start_timeticks_;
}
if (stream_.get()) {
stream_->Close(true);
CacheNetErrorDetailsAndResetStream();
}
request_headers_.Clear();
next_state_ = STATE_CREATE_STREAM;
#if BUILDFLAG(ENABLE_REPORTING)
network_error_logging_report_generated_ = false;
#endif
start_timeticks_ = base::TimeTicks::Now();
ResetStateForRestart();
}
bool HttpNetworkTransaction::ShouldApplyProxyAuth() const {
return UsingHttpProxyWithoutTunnel();
}
bool HttpNetworkTransaction::ShouldApplyServerAuth() const {
return request_->privacy_mode == PRIVACY_MODE_DISABLED;
}
int HttpNetworkTransaction::HandleAuthChallenge() {
scoped_refptr<HttpResponseHeaders> headers(GetResponseHeaders());
DCHECK(headers.get());
int status = headers->response_code();
if (status != HTTP_UNAUTHORIZED &&
status != HTTP_PROXY_AUTHENTICATION_REQUIRED)
return OK;
HttpAuth::Target target = status == HTTP_PROXY_AUTHENTICATION_REQUIRED ?
HttpAuth::AUTH_PROXY : HttpAuth::AUTH_SERVER;
if (target == HttpAuth::AUTH_PROXY && proxy_info_.is_direct())
return ERR_UNEXPECTED_PROXY_AUTH;
if (!auth_controllers_[target].get())
return ERR_UNEXPECTED_PROXY_AUTH;
int rv = auth_controllers_[target]->HandleAuthChallenge(
headers, response_.ssl_info, !ShouldApplyServerAuth(), false, net_log_);
if (auth_controllers_[target]->HaveAuthHandler())
pending_auth_target_ = target;
auth_controllers_[target]->TakeAuthInfo(&response_.auth_challenge);
return rv;
}
bool HttpNetworkTransaction::HaveAuth(HttpAuth::Target target) const {
return auth_controllers_[target].get() &&
auth_controllers_[target]->HaveAuth();
}
GURL HttpNetworkTransaction::AuthURL(HttpAuth::Target target) const {
switch (target) {
case HttpAuth::AUTH_PROXY: {
if (!proxy_info_.proxy_server().is_valid() ||
proxy_info_.proxy_server().is_direct()) {
return GURL();
}
const char* scheme =
proxy_info_.is_secure_http_like() ? "https://" : "http://";
return GURL(scheme +
proxy_info_.proxy_server().host_port_pair().ToString());
}
case HttpAuth::AUTH_SERVER:
if (ForWebSocketHandshake()) {
return net::ChangeWebSocketSchemeToHttpScheme(request_->url);
}
return request_->url;
default:
return GURL();
}
}
bool HttpNetworkTransaction::ForWebSocketHandshake() const {
return websocket_handshake_stream_base_create_helper_ &&
request_->url.SchemeIsWSOrWSS();
}
void HttpNetworkTransaction::CopyConnectionAttemptsFromStreamRequest() {
DCHECK(stream_request_);
for (const auto& attempt : stream_request_->connection_attempts())
connection_attempts_.push_back(attempt);
}
bool HttpNetworkTransaction::ContentEncodingsValid() const {
HttpResponseHeaders* headers = GetResponseHeaders();
DCHECK(headers);
std::string accept_encoding;
request_headers_.GetHeader(HttpRequestHeaders::kAcceptEncoding,
&accept_encoding);
std::set<std::string> allowed_encodings;
if (!HttpUtil::ParseAcceptEncoding(accept_encoding, &allowed_encodings))
return false;
std::string content_encoding;
headers->GetNormalizedHeader("Content-Encoding", &content_encoding);
std::set<std::string> used_encodings;
if (!HttpUtil::ParseContentEncoding(content_encoding, &used_encodings))
return false;
if (allowed_encodings.find("*") != allowed_encodings.end())
return true;
bool result = true;
for (auto const& encoding : used_encodings) {
SourceStream::SourceType source_type =
FilterSourceStream::ParseEncodingType(encoding);
if (source_type == SourceStream::TYPE_UNKNOWN)
continue;
if (allowed_encodings.find(encoding) == allowed_encodings.end()) {
result = false;
break;
}
}
if (headers->IsRedirect(nullptr)) {
UMA_HISTOGRAM_BOOLEAN("Net.RedirectWithUnadvertisedContentEncoding",
!result);
return true;
}
return result;
}
void HttpNetworkTransaction::RecordQuicProtocolErrorMetrics(
QuicProtocolErrorRetryStatus retry_status) {
std::string histogram = "Net.QuicProtocolError";
if (IsGoogleHostWithAlpnH3(url_.host())) {
histogram += "H3SupportedGoogleHost";
}
base::UmaHistogramEnumeration(histogram + ".RetryStatus", retry_status);
if (!stream_) {
return;
}
absl::optional<quic::QuicErrorCode> connection_error =
stream_->GetQuicErrorCode();
absl::optional<quic::QuicRstStreamErrorCode> stream_error =
stream_->GetQuicRstStreamErrorCode();
if (!connection_error || !stream_error) {
return;
}
switch (retry_status) {
case QuicProtocolErrorRetryStatus::kNoRetryExceededMaxRetries:
histogram += ".NoRetryExceededMaxRetries";
break;
case QuicProtocolErrorRetryStatus::kNoRetryHeaderReceived:
histogram += ".NoRetryHeaderReceived";
break;
case QuicProtocolErrorRetryStatus::kNoRetryNoAlternativeService:
histogram += ".NoRetryNoAlternativeService";
break;
case QuicProtocolErrorRetryStatus::kRetryAltServiceBroken:
histogram += ".RetryAltServiceBroken";
break;
case QuicProtocolErrorRetryStatus::kRetryAltServiceNotBroken:
histogram += ".RetryAltServiceNotBroken";
break;
}
base::UmaHistogramSparse(histogram + ".QuicErrorCode", *connection_error);
base::UmaHistogramSparse(histogram + ".QuicStreamErrorCode", *stream_error);
}
}