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670 lines
27 KiB
C++
670 lines
27 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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// This file declares HttpCache::Transaction, a private class of HttpCache so
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// it should only be included by http_cache.cc
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#ifndef NET_HTTP_HTTP_CACHE_TRANSACTION_H_
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#define NET_HTTP_HTTP_CACHE_TRANSACTION_H_
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#include <stddef.h>
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#include <stdint.h>
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#include <memory>
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#include <string>
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#include "base/macros.h"
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#include "base/memory/ref_counted.h"
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#include "base/memory/weak_ptr.h"
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#include "base/time/time.h"
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#include "net/base/completion_callback.h"
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#include "net/base/completion_repeating_callback.h"
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#include "net/base/io_buffer.h"
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#include "net/base/ip_endpoint.h"
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#include "net/base/load_states.h"
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#include "net/base/net_error_details.h"
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#include "net/base/request_priority.h"
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#include "net/http/http_cache.h"
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#include "net/http/http_request_headers.h"
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#include "net/http/http_response_headers.h"
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#include "net/http/http_response_info.h"
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#include "net/http/http_transaction.h"
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#include "net/http/partial_data.h"
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#include "net/log/net_log_with_source.h"
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#include "net/socket/connection_attempts.h"
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#include "net/websockets/websocket_handshake_stream_base.h"
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namespace net {
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class PartialData;
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struct HttpRequestInfo;
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struct LoadTimingInfo;
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class SSLPrivateKey;
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// This is the transaction that is returned by the HttpCache transaction
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// factory.
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class NET_EXPORT_PRIVATE HttpCache::Transaction : public HttpTransaction {
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public:
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// The transaction has the following modes, which apply to how it may access
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// its cache entry.
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//
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// o If the mode of the transaction is NONE, then it is in "pass through"
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// mode and all methods just forward to the inner network transaction.
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//
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// o If the mode of the transaction is only READ, then it may only read from
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// the cache entry.
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//
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// o If the mode of the transaction is only WRITE, then it may only write to
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// the cache entry.
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//
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// o If the mode of the transaction is READ_WRITE, then the transaction may
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// optionally modify the cache entry (e.g., possibly corresponding to
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// cache validation).
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//
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// o If the mode of the transaction is UPDATE, then the transaction may
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// update existing cache entries, but will never create a new entry or
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// respond using the entry read from the cache.
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enum Mode {
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NONE = 0,
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READ_META = 1 << 0,
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READ_DATA = 1 << 1,
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READ = READ_META | READ_DATA,
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WRITE = 1 << 2,
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READ_WRITE = READ | WRITE,
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UPDATE = READ_META | WRITE, // READ_WRITE & ~READ_DATA
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};
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Transaction(RequestPriority priority,
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HttpCache* cache);
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~Transaction() override;
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// Virtual so it can be extended for testing.
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virtual Mode mode() const;
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std::string& method() { return method_; }
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const std::string& key() const { return cache_key_; }
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// Writes |buf_len| bytes of meta-data from the provided buffer |buf|. to the
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// HTTP cache entry that backs this transaction (if any).
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// Returns the number of bytes actually written, or a net error code. If the
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// operation cannot complete immediately, returns ERR_IO_PENDING, grabs a
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// reference to the buffer (until completion), and notifies the caller using
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// the provided |callback| when the operation finishes.
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//
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// The first time this method is called for a given transaction, previous
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// meta-data will be overwritten with the provided data, and subsequent
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// invocations will keep appending to the cached entry.
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//
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// In order to guarantee that the metadata is set to the correct entry, the
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// response (or response info) must be evaluated by the caller, for instance
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// to make sure that the response_time is as expected, before calling this
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// method.
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int WriteMetadata(IOBuffer* buf,
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int buf_len,
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const CompletionCallback& callback);
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HttpCache::ActiveEntry* entry() { return entry_; }
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// Returns the LoadState of the writer transaction of a given ActiveEntry. In
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// other words, returns the LoadState of this transaction without asking the
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// http cache, because this transaction should be the one currently writing
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// to the cache entry.
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LoadState GetWriterLoadState() const;
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const CompletionCallback& io_callback() { return io_callback_; }
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const NetLogWithSource& net_log() const;
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// Bypasses the cache lock whenever there is lock contention.
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void BypassLockForTest() {
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bypass_lock_for_test_ = true;
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}
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void BypassLockAfterHeadersForTest() {
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bypass_lock_after_headers_for_test_ = true;
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}
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// Generates a failure when attempting to conditionalize a network request.
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void FailConditionalizationForTest() {
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fail_conditionalization_for_test_ = true;
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}
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// HttpTransaction methods:
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int Start(const HttpRequestInfo* request_info,
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const CompletionCallback& callback,
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const NetLogWithSource& net_log) override;
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int RestartIgnoringLastError(const CompletionCallback& callback) override;
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int RestartWithCertificate(scoped_refptr<X509Certificate> client_cert,
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scoped_refptr<SSLPrivateKey> client_private_key,
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const CompletionCallback& callback) override;
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int RestartWithAuth(const AuthCredentials& credentials,
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const CompletionCallback& callback) override;
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bool IsReadyToRestartForAuth() override;
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int Read(IOBuffer* buf,
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int buf_len,
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const CompletionCallback& callback) override;
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void StopCaching() override;
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bool GetFullRequestHeaders(HttpRequestHeaders* headers) const override;
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int64_t GetTotalReceivedBytes() const override;
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int64_t GetTotalSentBytes() const override;
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void DoneReading() override;
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const HttpResponseInfo* GetResponseInfo() const override;
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LoadState GetLoadState() const override;
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void SetQuicServerInfo(QuicServerInfo* quic_server_info) override;
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bool GetLoadTimingInfo(LoadTimingInfo* load_timing_info) const override;
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bool GetRemoteEndpoint(IPEndPoint* endpoint) const override;
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void PopulateNetErrorDetails(NetErrorDetails* details) const override;
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void SetPriority(RequestPriority priority) override;
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void SetWebSocketHandshakeStreamCreateHelper(
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WebSocketHandshakeStreamBase::CreateHelper* create_helper) override;
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void SetBeforeNetworkStartCallback(
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const BeforeNetworkStartCallback& callback) override;
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void SetBeforeHeadersSentCallback(
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const BeforeHeadersSentCallback& callback) override;
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void SetRequestHeadersCallback(RequestHeadersCallback callback) override;
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void SetResponseHeadersCallback(ResponseHeadersCallback callback) override;
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int ResumeNetworkStart() override;
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void GetConnectionAttempts(ConnectionAttempts* out) const override;
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// Invoked when parallel validation cannot proceed due to response failure
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// and this transaction needs to be restarted.
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void SetValidatingCannotProceed();
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// Invoked to remove the association between a transaction waiting to be
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// added to an entry and the entry.
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void ResetCachePendingState() { cache_pending_ = false; }
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// Returns the estimate of dynamically allocated memory in bytes.
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size_t EstimateMemoryUsage() const;
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RequestPriority priority() const { return priority_; }
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PartialData* partial() { return partial_.get(); }
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bool is_truncated() { return truncated_; }
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// Invoked when this writer transaction is about to be removed from entry.
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// If result is an error code, a future Read should fail with |result|.
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void WriterAboutToBeRemovedFromEntry(int result);
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// Invoked when this transaction is about to become a reader because the cache
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// entry has finished writing.
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void WriteModeTransactionAboutToBecomeReader();
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// Invoked when HttpCache decides whether this transaction should join
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// parallel writing or create a new writers object. This is then used
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// for logging metrics. Can be called repeatedly, but doesn't change once the
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// value has been set to something other than PARALLEL_WRITING_NONE.
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void MaybeSetParallelWritingPatternForMetrics(ParallelWritingPattern pattern);
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private:
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static const size_t kNumValidationHeaders = 2;
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// Helper struct to pair a header name with its value, for
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// headers used to validate cache entries.
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struct ValidationHeaders {
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ValidationHeaders() : initialized(false) {}
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std::string values[kNumValidationHeaders];
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void Reset() {
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initialized = false;
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for (auto& value : values)
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value.clear();
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}
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bool initialized;
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};
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struct NetworkTransactionInfo {
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NetworkTransactionInfo();
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~NetworkTransactionInfo();
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// Load timing information for the last network request, if any. Set in the
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// 304 and 206 response cases, as the network transaction may be destroyed
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// before the caller requests load timing information.
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std::unique_ptr<LoadTimingInfo> old_network_trans_load_timing;
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int64_t total_received_bytes = 0;
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int64_t total_sent_bytes = 0;
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ConnectionAttempts old_connection_attempts;
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IPEndPoint old_remote_endpoint;
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HttpRequestHeaders full_request_headers;
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DISALLOW_COPY_AND_ASSIGN(NetworkTransactionInfo);
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};
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enum State {
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STATE_UNSET,
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// Normally, states are traversed in approximately this order.
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STATE_NONE,
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STATE_GET_BACKEND,
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STATE_GET_BACKEND_COMPLETE,
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STATE_INIT_ENTRY,
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STATE_OPEN_ENTRY,
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STATE_OPEN_ENTRY_COMPLETE,
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STATE_DOOM_ENTRY,
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STATE_DOOM_ENTRY_COMPLETE,
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STATE_CREATE_ENTRY,
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STATE_CREATE_ENTRY_COMPLETE,
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STATE_ADD_TO_ENTRY,
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STATE_ADD_TO_ENTRY_COMPLETE,
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STATE_DONE_HEADERS_ADD_TO_ENTRY_COMPLETE,
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STATE_CACHE_READ_RESPONSE,
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STATE_CACHE_READ_RESPONSE_COMPLETE,
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STATE_TOGGLE_UNUSED_SINCE_PREFETCH,
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STATE_TOGGLE_UNUSED_SINCE_PREFETCH_COMPLETE,
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STATE_CACHE_DISPATCH_VALIDATION,
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STATE_CACHE_QUERY_DATA,
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STATE_CACHE_QUERY_DATA_COMPLETE,
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STATE_START_PARTIAL_CACHE_VALIDATION,
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STATE_COMPLETE_PARTIAL_CACHE_VALIDATION,
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STATE_SEND_REQUEST,
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STATE_SEND_REQUEST_COMPLETE,
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STATE_SUCCESSFUL_SEND_REQUEST,
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STATE_UPDATE_CACHED_RESPONSE,
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STATE_CACHE_WRITE_UPDATED_RESPONSE,
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STATE_CACHE_WRITE_UPDATED_RESPONSE_COMPLETE,
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STATE_UPDATE_CACHED_RESPONSE_COMPLETE,
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STATE_OVERWRITE_CACHED_RESPONSE,
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STATE_CACHE_WRITE_RESPONSE,
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STATE_CACHE_WRITE_RESPONSE_COMPLETE,
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STATE_TRUNCATE_CACHED_DATA,
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STATE_TRUNCATE_CACHED_DATA_COMPLETE,
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STATE_TRUNCATE_CACHED_METADATA,
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STATE_TRUNCATE_CACHED_METADATA_COMPLETE,
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STATE_PARTIAL_HEADERS_RECEIVED,
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STATE_CACHE_READ_METADATA,
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STATE_CACHE_READ_METADATA_COMPLETE,
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STATE_HEADERS_PHASE_CANNOT_PROCEED,
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STATE_FINISH_HEADERS,
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STATE_FINISH_HEADERS_COMPLETE,
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// These states are entered from Read.
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STATE_NETWORK_READ_CACHE_WRITE,
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STATE_NETWORK_READ_CACHE_WRITE_COMPLETE,
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STATE_CACHE_READ_DATA,
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STATE_CACHE_READ_DATA_COMPLETE,
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// These states are entered if the request should be handled exclusively
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// by the network layer (skipping the cache entirely).
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STATE_NETWORK_READ,
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STATE_NETWORK_READ_COMPLETE,
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};
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// Used for categorizing validation triggers in histograms.
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// NOTE: This enumeration is used in histograms, so please do not add entries
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// in the middle.
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enum ValidationCause {
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VALIDATION_CAUSE_UNDEFINED,
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VALIDATION_CAUSE_VARY_MISMATCH,
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VALIDATION_CAUSE_VALIDATE_FLAG,
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VALIDATION_CAUSE_STALE,
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VALIDATION_CAUSE_ZERO_FRESHNESS,
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VALIDATION_CAUSE_MAX
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};
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enum MemoryEntryDataHints {
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// If this hint is set, the caching headers indicate we can't do anything
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// with this entry (unless we are ignoring them thanks to a loadflag),
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// i.e. it's expired and has nothing that permits validations.
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HINT_UNUSABLE_PER_CACHING_HEADERS = (1 << 0),
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};
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// Runs the state transition loop. Resets and calls |callback_| on exit,
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// unless the return value is ERR_IO_PENDING.
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int DoLoop(int result);
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// Each of these methods corresponds to a State value. If there is an
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// argument, the value corresponds to the return of the previous state or
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// corresponding callback.
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int DoGetBackend();
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int DoGetBackendComplete(int result);
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int DoInitEntry();
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int DoOpenEntry();
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int DoOpenEntryComplete(int result);
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int DoDoomEntry();
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int DoDoomEntryComplete(int result);
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int DoCreateEntry();
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int DoCreateEntryComplete(int result);
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int DoAddToEntry();
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int DoAddToEntryComplete(int result);
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int DoDoneHeadersAddToEntryComplete(int result);
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int DoCacheReadResponse();
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int DoCacheReadResponseComplete(int result);
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int DoCacheToggleUnusedSincePrefetch();
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int DoCacheToggleUnusedSincePrefetchComplete(int result);
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int DoCacheDispatchValidation();
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int DoCacheQueryData();
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int DoCacheQueryDataComplete(int result);
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int DoStartPartialCacheValidation();
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int DoCompletePartialCacheValidation(int result);
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int DoSendRequest();
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int DoSendRequestComplete(int result);
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int DoSuccessfulSendRequest();
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int DoUpdateCachedResponse();
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int DoCacheWriteUpdatedResponse();
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int DoCacheWriteUpdatedResponseComplete(int result);
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int DoUpdateCachedResponseComplete(int result);
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int DoOverwriteCachedResponse();
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int DoCacheWriteResponse();
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int DoCacheWriteResponseComplete(int result);
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int DoTruncateCachedData();
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int DoTruncateCachedDataComplete(int result);
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int DoTruncateCachedMetadata();
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int DoTruncateCachedMetadataComplete(int result);
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int DoPartialHeadersReceived();
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int DoCacheReadMetadata();
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int DoCacheReadMetadataComplete(int result);
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int DoHeadersPhaseCannotProceed(int result);
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int DoFinishHeaders(int result);
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int DoFinishHeadersComplete(int result);
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int DoNetworkReadCacheWrite();
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int DoNetworkReadCacheWriteComplete(int result);
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int DoCacheReadData();
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int DoCacheReadDataComplete(int result);
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int DoNetworkRead();
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int DoNetworkReadComplete(int result);
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// Adds time out handling while waiting to be added to entry or after headers
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// phase is complete.
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void AddCacheLockTimeoutHandler(ActiveEntry* entry);
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// Sets request_ and fields derived from it.
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void SetRequest(const NetLogWithSource& net_log);
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// Returns true if the request should be handled exclusively by the network
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// layer (skipping the cache entirely).
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bool ShouldPassThrough();
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// Called to begin reading from the cache. Returns network error code.
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int BeginCacheRead();
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// Called to begin validating the cache entry. Returns network error code.
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int BeginCacheValidation();
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// Called to begin validating an entry that stores partial content. Returns
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// a network error code.
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int BeginPartialCacheValidation();
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// Validates the entry headers against the requested range and continues with
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// the validation of the rest of the entry. Returns a network error code.
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int ValidateEntryHeadersAndContinue();
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// Called to start requests which were given an "if-modified-since" or
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// "if-none-match" validation header by the caller (NOT when the request was
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// conditionalized internally in response to LOAD_VALIDATE_CACHE).
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// Returns a network error code.
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int BeginExternallyConditionalizedRequest();
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// Called to restart a network transaction after an error. Returns network
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// error code.
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int RestartNetworkRequest();
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// Called to restart a network transaction with a client certificate.
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// Returns network error code.
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int RestartNetworkRequestWithCertificate(
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scoped_refptr<X509Certificate> client_cert,
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scoped_refptr<SSLPrivateKey> client_private_key);
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// Called to restart a network transaction with authentication credentials.
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// Returns network error code.
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int RestartNetworkRequestWithAuth(const AuthCredentials& credentials);
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// Called to determine if we need to validate the cache entry before using it.
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bool RequiresValidation();
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// Called to make the request conditional (to ask the server if the cached
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// copy is valid). Returns true if able to make the request conditional.
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bool ConditionalizeRequest();
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// Determines if saved response permits conditionalization, and extracts
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// etag/last-modified values. Only depends on |response_.headers|.
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// |*etag_value| and |*last_modified_value| will be set if true is returned,
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// but may also be modified in other cases.
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bool IsResponseConditionalizable(std::string* etag_value,
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std::string* last_modified_value) const;
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// Returns true if the resource info MemoryEntryDataHints bit flags in
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// |in_memory_info| and the current request & load flags suggest that
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// the cache entry in question is not actually usable for HTTP
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// (i.e. already expired, and nothing is forcing us to disregard that).
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bool MaybeRejectBasedOnEntryInMemoryData(uint8_t in_memory_info);
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// Returns true if response_ is such that, if saved to cache, it would only
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// be usable if load flags asked us to ignore caching headers.
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// (return value of false makes no statement as to suitability of the entry).
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bool ComputeUnusablePerCachingHeaders();
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// Makes sure that a 206 response is expected. Returns true on success.
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// On success, handling_206_ will be set to true if we are processing a
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// partial entry.
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bool ValidatePartialResponse();
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// Handles a response validation error by bypassing the cache.
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void IgnoreRangeRequest();
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// Fixes the response headers to match expectations for a HEAD request.
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void FixHeadersForHead();
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// Setups the transaction for reading from the cache entry.
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int SetupEntryForRead();
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// Called to write data to the cache entry. If the write fails, then the
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// cache entry is destroyed. Future calls to this function will just do
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// nothing without side-effect. Returns a network error code.
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int WriteToEntry(int index, int offset, IOBuffer* data, int data_len,
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const CompletionCallback& callback);
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// Called to write response_ to the cache entry. |truncated| indicates if the
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// entry should be marked as incomplete.
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int WriteResponseInfoToEntry(bool truncated);
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// Helper function, should be called with result of WriteResponseInfoToEntry
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// (or the result of the callback, when WriteResponseInfoToEntry returns
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// ERR_IO_PENDING). Calls DoneWithEntry if |result| is not the right
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// number of bytes. It is expected that the state that calls this will
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// return whatever net error code this function returns, which currently
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// is always "OK".
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int OnWriteResponseInfoToEntryComplete(int result);
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// Configures the transaction to read from the network and stop writing to the
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// entry. It will release the entry if possible. Returns true if caching could
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// be stopped successfully. It will not be stopped if there are multiple
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// transactions writing to the cache simultaneously.
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bool StopCachingImpl(bool success);
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// Informs the HttpCache that this transaction is done with the entry and
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// changes the mode to NONE. Set |entry_is_complete| to false if the
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// transaction has not yet finished fully writing or reading the request
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// to/from the entry. If |entry_is_complete| is false the result may be either
|
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// a truncated or a doomed entry based on whether the stored response can be
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|
// resumed or not.
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void DoneWithEntry(bool did_finish);
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// Returns an error to signal the caller that the current read failed. The
|
|
// current operation |result| is also logged. If |restart| is true, the
|
|
// transaction should be restarted.
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|
int OnCacheReadError(int result, bool restart);
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|
|
|
// Called when the cache lock timeout fires.
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|
void OnCacheLockTimeout(base::TimeTicks start_time);
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|
|
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// Deletes the current partial cache entry (sparse), and optionally removes
|
|
// the control object (partial_).
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|
void DoomPartialEntry(bool delete_object);
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|
|
|
// Performs the needed work after receiving data from the network, when
|
|
// working with range requests.
|
|
int DoPartialNetworkReadCompleted(int result);
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|
|
|
// Performs the needed work after receiving data from the cache, when
|
|
// working with range requests.
|
|
int DoPartialCacheReadCompleted(int result);
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|
|
|
// Restarts this transaction after deleting the cached data. It is meant to
|
|
// be used when the current request cannot be fulfilled due to conflicts
|
|
// between the byte range request and the cached entry.
|
|
int DoRestartPartialRequest();
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|
|
|
// Resets the relavant internal state to remove traces of internal processing
|
|
// related to range requests. Deletes |partial_| if |delete_object| is true.
|
|
void ResetPartialState(bool delete_object);
|
|
|
|
// Resets |network_trans_|, which must be non-NULL. Also updates
|
|
// |old_network_trans_load_timing_|, which must be NULL when this is called.
|
|
void ResetNetworkTransaction();
|
|
|
|
// Returns the currently active network transaction.
|
|
const HttpTransaction* network_transaction() const;
|
|
HttpTransaction* network_transaction();
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|
|
|
// Returns the network transaction from |this| or from writers only if it was
|
|
// moved from |this| to writers. This is so that statistics of the network
|
|
// transaction are not attributed to any other writer member.
|
|
const HttpTransaction* GetOwnedOrMovedNetworkTransaction() const;
|
|
|
|
// Returns true if we should bother attempting to resume this request if it is
|
|
// aborted while in progress. If |has_data| is true, the size of the stored
|
|
// data is considered for the result.
|
|
bool CanResume(bool has_data);
|
|
|
|
// Setter for response_ and auth_response_. It updates its cache entry status,
|
|
// if needed.
|
|
void SetResponse(const HttpResponseInfo& new_response);
|
|
void SetAuthResponse(const HttpResponseInfo& new_response);
|
|
|
|
void UpdateCacheEntryStatus(
|
|
HttpResponseInfo::CacheEntryStatus new_cache_entry_status);
|
|
|
|
// Sets the response.cache_entry_status to the current cache_entry_status_.
|
|
void SyncCacheEntryStatusToResponse();
|
|
|
|
// Logs histograms for this transaction. It is invoked when the transaction is
|
|
// either complete or is done writing to entry and will continue in
|
|
// network-only mode.
|
|
void RecordHistograms();
|
|
|
|
// Returns true if this transaction is a member of entry_->writers.
|
|
bool InWriters() const;
|
|
|
|
// Called to signal completion of asynchronous IO. Note that this callback is
|
|
// used in the conventional sense where one layer calls the callback of the
|
|
// layer above it e.g. this callback gets called from the network transaction
|
|
// layer. In addition, it is also used for HttpCache layer to let this
|
|
// transaction know when it is out of a queued state in ActiveEntry and can
|
|
// continue its processing.
|
|
void OnIOComplete(int result);
|
|
|
|
// When in a DoLoop, use this to set the next state as it verifies that the
|
|
// state isn't set twice.
|
|
void TransitionToState(State state);
|
|
|
|
// Helper function to decide the next reading state.
|
|
int TransitionToReadingState();
|
|
|
|
// Saves network transaction info using |transaction|.
|
|
void SaveNetworkTransactionInfo(const HttpTransaction& transaction);
|
|
|
|
State next_state_;
|
|
|
|
// Initial request with which Start() was invoked.
|
|
const HttpRequestInfo* initial_request_;
|
|
|
|
const HttpRequestInfo* request_;
|
|
|
|
std::string method_;
|
|
RequestPriority priority_;
|
|
NetLogWithSource net_log_;
|
|
std::unique_ptr<HttpRequestInfo> custom_request_;
|
|
HttpRequestHeaders request_headers_copy_;
|
|
// If extra_headers specified a "if-modified-since" or "if-none-match",
|
|
// |external_validation_| contains the value of those headers.
|
|
ValidationHeaders external_validation_;
|
|
base::WeakPtr<HttpCache> cache_;
|
|
HttpCache::ActiveEntry* entry_;
|
|
HttpCache::ActiveEntry* new_entry_;
|
|
std::unique_ptr<HttpTransaction> network_trans_;
|
|
CompletionCallback callback_; // Consumer's callback.
|
|
HttpResponseInfo response_;
|
|
HttpResponseInfo auth_response_;
|
|
const HttpResponseInfo* new_response_;
|
|
std::string cache_key_;
|
|
Mode mode_;
|
|
bool reading_; // We are already reading. Never reverts to false once set.
|
|
bool invalid_range_; // We may bypass the cache for this request.
|
|
bool truncated_; // We don't have all the response data.
|
|
bool is_sparse_; // The data is stored in sparse byte ranges.
|
|
bool range_requested_; // The user requested a byte range.
|
|
bool handling_206_; // We must deal with this 206 response.
|
|
bool cache_pending_; // We are waiting for the HttpCache.
|
|
|
|
// Headers have been received from the network and it's not a match with the
|
|
// existing entry.
|
|
bool done_headers_create_new_entry_;
|
|
|
|
bool vary_mismatch_; // The request doesn't match the stored vary data.
|
|
bool couldnt_conditionalize_request_;
|
|
bool bypass_lock_for_test_; // A test is exercising the cache lock.
|
|
bool bypass_lock_after_headers_for_test_; // A test is exercising the cache
|
|
// lock.
|
|
bool fail_conditionalization_for_test_; // Fail ConditionalizeRequest.
|
|
scoped_refptr<IOBuffer> read_buf_;
|
|
int io_buf_len_;
|
|
int read_offset_;
|
|
int effective_load_flags_;
|
|
std::unique_ptr<PartialData> partial_; // We are dealing with range requests.
|
|
CompletionRepeatingCallback io_callback_;
|
|
|
|
// Error code to be returned from a subsequent Read call if shared writing
|
|
// failed in a separate transaction.
|
|
int shared_writing_error_;
|
|
|
|
// Members used to track data for histograms.
|
|
// This cache_entry_status_ takes precedence over
|
|
// response_.cache_entry_status. In fact, response_.cache_entry_status must be
|
|
// kept in sync with cache_entry_status_ (via SetResponse and
|
|
// UpdateCacheEntryStatus).
|
|
HttpResponseInfo::CacheEntryStatus cache_entry_status_;
|
|
ValidationCause validation_cause_;
|
|
base::TimeTicks entry_lock_waiting_since_;
|
|
base::TimeTicks first_cache_access_since_;
|
|
base::TimeTicks send_request_since_;
|
|
base::Time open_entry_last_used_;
|
|
base::TimeDelta stale_entry_freshness_;
|
|
base::TimeDelta stale_entry_age_;
|
|
bool cant_conditionalize_zero_freshness_from_memhint_;
|
|
bool recorded_histograms_;
|
|
ParallelWritingPattern parallel_writing_pattern_;
|
|
|
|
NetworkTransactionInfo network_transaction_info_;
|
|
|
|
// True if this transaction created the network transaction that is now being
|
|
// used by writers. This is used to check that only this transaction should
|
|
// account for the network bytes and other statistics of the network
|
|
// transaction.
|
|
// TODO(shivanisha) Note that if this transaction dies mid-way and there are
|
|
// other writer transactions, no transaction then accounts for those
|
|
// statistics.
|
|
bool moved_network_transaction_to_writers_;
|
|
|
|
// The helper object to use to create WebSocketHandshakeStreamBase
|
|
// objects. Only relevant when establishing a WebSocket connection.
|
|
// This is passed to the underlying network transaction. It is stored here in
|
|
// case the transaction does not exist yet.
|
|
WebSocketHandshakeStreamBase::CreateHelper*
|
|
websocket_handshake_stream_base_create_helper_;
|
|
|
|
BeforeNetworkStartCallback before_network_start_callback_;
|
|
BeforeHeadersSentCallback before_headers_sent_callback_;
|
|
RequestHeadersCallback request_headers_callback_;
|
|
ResponseHeadersCallback response_headers_callback_;
|
|
|
|
// True if the Transaction is currently processing the DoLoop.
|
|
bool in_do_loop_;
|
|
|
|
base::WeakPtrFactory<Transaction> weak_factory_;
|
|
|
|
DISALLOW_COPY_AND_ASSIGN(Transaction);
|
|
};
|
|
|
|
} // namespace net
|
|
|
|
#endif // NET_HTTP_HTTP_CACHE_TRANSACTION_H_
|