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610 lines
25 KiB
C++
610 lines
25 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 a HttpTransactionFactory implementation that can be
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// layered on top of another HttpTransactionFactory to add HTTP caching. The
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// caching logic follows RFC 7234 (any exceptions are called out in the code).
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//
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// The HttpCache takes a disk_cache::Backend as a parameter, and uses that for
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// the cache storage.
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//
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// See HttpTransactionFactory and HttpTransaction for more details.
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#ifndef NET_HTTP_HTTP_CACHE_H_
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#define NET_HTTP_HTTP_CACHE_H_
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#include <list>
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#include <map>
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#include <memory>
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#include <string>
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#include <unordered_map>
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#include "base/files/file_path.h"
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#include "base/macros.h"
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#include "base/memory/weak_ptr.h"
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#include "base/threading/thread_checker.h"
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#include "base/time/clock.h"
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#include "base/time/time.h"
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#include "net/base/cache_type.h"
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#include "net/base/completion_once_callback.h"
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#include "net/base/load_states.h"
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#include "net/base/net_export.h"
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#include "net/base/request_priority.h"
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#include "net/http/http_network_session.h"
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#include "net/http/http_transaction_factory.h"
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class GURL;
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namespace base {
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namespace trace_event {
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class ProcessMemoryDump;
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}
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} // namespace base
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namespace disk_cache {
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class Backend;
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class Entry;
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} // namespace disk_cache
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namespace net {
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class HttpNetworkSession;
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class HttpResponseInfo;
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class IOBuffer;
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class NetLog;
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class ViewCacheHelper;
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struct HttpRequestInfo;
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class NET_EXPORT HttpCache : public HttpTransactionFactory {
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public:
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// The cache mode of operation.
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enum Mode {
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// Normal mode just behaves like a standard web cache.
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NORMAL = 0,
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// Disables reads and writes from the cache.
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// Equivalent to setting LOAD_DISABLE_CACHE on every request.
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DISABLE
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};
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// A BackendFactory creates a backend object to be used by the HttpCache.
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class NET_EXPORT BackendFactory {
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public:
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virtual ~BackendFactory() {}
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// The actual method to build the backend. Returns a net error code. If
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// ERR_IO_PENDING is returned, the |callback| will be notified when the
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// operation completes, and |backend| must remain valid until the
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// notification arrives.
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// The implementation must not access the factory object after invoking the
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// |callback| because the object can be deleted from within the callback.
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virtual int CreateBackend(NetLog* net_log,
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std::unique_ptr<disk_cache::Backend>* backend,
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CompletionOnceCallback callback) = 0;
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};
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// A default backend factory for the common use cases.
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class NET_EXPORT DefaultBackend : public BackendFactory {
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public:
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// |path| is the destination for any files used by the backend. If
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// |max_bytes| is zero, a default value will be calculated automatically.
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DefaultBackend(CacheType type,
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BackendType backend_type,
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const base::FilePath& path,
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int max_bytes);
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~DefaultBackend() override;
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// Returns a factory for an in-memory cache.
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static std::unique_ptr<BackendFactory> InMemory(int max_bytes);
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// BackendFactory implementation.
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int CreateBackend(NetLog* net_log,
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std::unique_ptr<disk_cache::Backend>* backend,
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CompletionOnceCallback callback) override;
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private:
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CacheType type_;
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BackendType backend_type_;
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const base::FilePath path_;
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int max_bytes_;
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};
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// Whether a transaction can join parallel writing or not is a function of the
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// transaction as well as the current writers (if present). This enum
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// captures that decision as well as when a Writers object is first created.
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// This is also used to log metrics so should be consistent with the values in
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// enums.xml and should only be appended to.
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enum ParallelWritingPattern {
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// Used as the default value till the transaction is in initial headers
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// phase.
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PARALLEL_WRITING_NONE,
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// The transaction creates a writers object. This is only logged for
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// transactions that did not fail to join existing writers earlier.
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PARALLEL_WRITING_CREATE,
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// The transaction joins existing writers.
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PARALLEL_WRITING_JOIN,
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// The transaction cannot join existing writers since either itself or
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// existing writers instance is serving a range request.
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PARALLEL_WRITING_NOT_JOIN_RANGE,
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// The transaction cannot join existing writers since either itself or
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// existing writers instance is serving a non GET request.
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PARALLEL_WRITING_NOT_JOIN_METHOD_NOT_GET,
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// The transaction cannot join existing writers since it does not have cache
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// write privileges.
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PARALLEL_WRITING_NOT_JOIN_READ_ONLY,
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// Writers does not exist and the transaction does not need to create one
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// since it is going to read from the cache.
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PARALLEL_WRITING_NONE_CACHE_READ,
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// On adding a value here, make sure to add in enums.xml as well.
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PARALLEL_WRITING_MAX
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};
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// The number of minutes after a resource is prefetched that it can be used
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// again without validation.
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static const int kPrefetchReuseMins = 5;
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// The disk cache is initialized lazily (by CreateTransaction) in this case.
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// Provide an existing HttpNetworkSession, the cache can construct a
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// network layer with a shared HttpNetworkSession in order for multiple
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// network layers to share information (e.g. authentication data). The
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// HttpCache takes ownership of the |backend_factory|.
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//
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// The HttpCache must be destroyed before the HttpNetworkSession.
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//
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// If |is_main_cache| is true, configures the cache to track
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// information about servers supporting QUIC.
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// TODO(zhongyi): remove |is_main_cache| when we get rid of cache split.
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HttpCache(HttpNetworkSession* session,
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std::unique_ptr<BackendFactory> backend_factory,
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bool is_main_cache);
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// Initialize the cache from its component parts. |network_layer| and
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// |backend_factory| will be destroyed when the HttpCache is.
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HttpCache(std::unique_ptr<HttpTransactionFactory> network_layer,
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std::unique_ptr<BackendFactory> backend_factory,
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bool is_main_cache);
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~HttpCache() override;
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HttpTransactionFactory* network_layer() { return network_layer_.get(); }
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// Retrieves the cache backend for this HttpCache instance. If the backend
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// is not initialized yet, this method will initialize it. The return value is
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// a network error code, and it could be ERR_IO_PENDING, in which case the
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// |callback| will be notified when the operation completes. The pointer that
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// receives the |backend| must remain valid until the operation completes.
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int GetBackend(disk_cache::Backend** backend,
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CompletionOnceCallback callback);
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// Returns the current backend (can be NULL).
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disk_cache::Backend* GetCurrentBackend() const;
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// Given a header data blob, convert it to a response info object.
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static bool ParseResponseInfo(const char* data, int len,
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HttpResponseInfo* response_info,
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bool* response_truncated);
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// Writes |buf_len| bytes of metadata stored in |buf| to the cache entry
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// referenced by |url|, as long as the entry's |expected_response_time| has
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// not changed. This method returns without blocking, and the operation will
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// be performed asynchronously without any completion notification.
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// Takes ownership of |buf|.
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virtual void WriteMetadata(const GURL& url,
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RequestPriority priority,
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base::Time expected_response_time,
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IOBuffer* buf,
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int buf_len);
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// Get/Set the cache's mode.
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void set_mode(Mode value) { mode_ = value; }
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Mode mode() { return mode_; }
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// Get/Set the cache's clock. These are public only for testing.
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void SetClockForTesting(base::Clock* clock) { clock_ = clock; }
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base::Clock* clock() const { return clock_; }
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// Close currently active sockets so that fresh page loads will not use any
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// recycled connections. For sockets currently in use, they may not close
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// immediately, but they will not be reusable. This is for debugging.
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void CloseAllConnections();
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// Close all idle connections. Will close all sockets not in active use.
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void CloseIdleConnections();
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// Called whenever an external cache in the system reuses the resource
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// referred to by |url| and |http_method|.
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void OnExternalCacheHit(const GURL& url, const std::string& http_method);
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// Causes all transactions created after this point to simulate lock timeout
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// and effectively bypass the cache lock whenever there is lock contention.
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void SimulateCacheLockTimeoutForTesting() { bypass_lock_for_test_ = true; }
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// Causes all transactions created after this point to simulate lock timeout
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// and effectively bypass the cache lock whenever there is lock contention
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// after the transaction has completed its headers phase.
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void SimulateCacheLockTimeoutAfterHeadersForTesting() {
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bypass_lock_after_headers_for_test_ = true;
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}
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// Causes all transactions created after this point to generate a failure
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// 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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// HttpTransactionFactory implementation:
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int CreateTransaction(RequestPriority priority,
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std::unique_ptr<HttpTransaction>* trans) override;
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HttpCache* GetCache() override;
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HttpNetworkSession* GetSession() override;
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base::WeakPtr<HttpCache> GetWeakPtr() { return weak_factory_.GetWeakPtr(); }
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// Resets the network layer to allow for tests that probe
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// network changes (e.g. host unreachable). The old network layer is
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// returned to allow for filter patterns that only intercept
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// some creation requests. Note ownership exchange.
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std::unique_ptr<HttpTransactionFactory>
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SetHttpNetworkTransactionFactoryForTesting(
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std::unique_ptr<HttpTransactionFactory> new_network_layer);
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// Dumps memory allocation stats. |parent_dump_absolute_name| is the name
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// used by the parent MemoryAllocatorDump in the memory dump hierarchy.
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void DumpMemoryStats(base::trace_event::ProcessMemoryDump* pmd,
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const std::string& parent_absolute_name) const;
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private:
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// Types --------------------------------------------------------------------
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// Disk cache entry data indices.
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enum {
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kResponseInfoIndex = 0,
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kResponseContentIndex,
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kMetadataIndex,
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// Must remain at the end of the enum.
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kNumCacheEntryDataIndices
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};
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class MetadataWriter;
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class QuicServerInfoFactoryAdaptor;
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class Transaction;
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class WorkItem;
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class Writers;
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friend class WritersTest;
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friend class TestHttpCacheTransaction;
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friend class TestHttpCache;
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friend class Transaction;
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friend class ViewCacheHelper;
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struct PendingOp; // Info for an entry under construction.
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// To help with testing.
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friend class MockHttpCache;
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using TransactionList = std::list<Transaction*>;
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using TransactionSet = std::unordered_set<Transaction*>;
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typedef std::list<std::unique_ptr<WorkItem>> WorkItemList;
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// We implement a basic reader/writer lock for the disk cache entry. If there
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// is a writer, then all transactions must wait to read the body. But the
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// waiting transactions can start their headers phase in parallel. Headers
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// phase is allowed for one transaction at a time so that if it doesn't match
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// the existing headers, remaining transactions do not also try to match the
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// existing entry in parallel leading to wasted network requests. If the
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// headers do not match, this entry will be doomed.
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//
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// A transaction goes through these state transitions.
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//
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// Write mode transactions eligible for shared writing:
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// add_to_entry_queue-> headers_transaction -> writers (first writer)
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// add_to_entry_queue-> headers_transaction -> done_headers_queue -> writers
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// (subsequent writers)
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// add_to_entry_queue-> headers_transaction -> done_headers_queue -> readers
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// (transactions not eligible for shared writing - once the data is written to
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// the cache by writers)
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//
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// Read only transactions:
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// add_to_entry_queue-> headers_transaction -> done_headers_queue -> readers
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// (once the data is written to the cache by writers)
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struct NET_EXPORT_PRIVATE ActiveEntry {
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explicit ActiveEntry(disk_cache::Entry* entry);
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~ActiveEntry();
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size_t EstimateMemoryUsage() const;
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// Returns true if no transactions are associated with this entry.
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bool HasNoTransactions();
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// Returns true if no transactions are associated with this entry and
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// writers is not present.
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bool SafeToDestroy();
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bool TransactionInReaders(Transaction* transaction) const;
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disk_cache::Entry* disk_entry = nullptr;
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// Transactions waiting to be added to entry.
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TransactionList add_to_entry_queue;
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// Transaction currently in the headers phase, either validating the
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// response or getting new headers. This can exist simultaneously with
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// writers or readers while validating existing headers.
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Transaction* headers_transaction = nullptr;
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// Transactions that have completed their headers phase and are waiting
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// to read the response body or write the response body.
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TransactionList done_headers_queue;
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// Transactions currently reading from the network and writing to the cache.
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std::unique_ptr<Writers> writers;
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// Transactions that can only read from the cache. Only one of writers or
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// readers can be non-empty at a time.
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TransactionSet readers;
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// The following variables are true if OnProcessQueuedTransactions is posted
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bool will_process_queued_transactions = false;
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// True if entry is doomed.
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bool doomed = false;
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};
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using ActiveEntriesMap =
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std::unordered_map<std::string, std::unique_ptr<ActiveEntry>>;
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using PendingOpsMap = std::unordered_map<std::string, PendingOp*>;
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using ActiveEntriesSet = std::map<ActiveEntry*, std::unique_ptr<ActiveEntry>>;
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using PlaybackCacheMap = std::unordered_map<std::string, int>;
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// Methods ------------------------------------------------------------------
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// Creates the |backend| object and notifies the |callback| when the operation
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// completes. Returns an error code.
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int CreateBackend(disk_cache::Backend** backend,
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CompletionOnceCallback callback);
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// Makes sure that the backend creation is complete before allowing the
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// provided transaction to use the object. Returns an error code. |trans|
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// will be notified via its IO callback if this method returns ERR_IO_PENDING.
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// The transaction is free to use the backend directly at any time after
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// receiving the notification.
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int GetBackendForTransaction(Transaction* trans);
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// Generates the cache key for this request.
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std::string GenerateCacheKey(const HttpRequestInfo*);
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// Dooms the entry selected by |key|, if it is currently in the list of active
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// entries.
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void DoomActiveEntry(const std::string& key);
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// Dooms the entry selected by |key|. |trans| will be notified via its IO
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// callback if this method returns ERR_IO_PENDING. The entry can be
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// currently in use or not. If entry is in use and the invoking transaction
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// is associated with this entry and this entry is already doomed, this API
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// should not be invoked.
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int DoomEntry(const std::string& key, Transaction* trans);
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// Dooms the entry selected by |key|. |trans| will be notified via its IO
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// callback if this method returns ERR_IO_PENDING. The entry should not
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// be currently in use.
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int AsyncDoomEntry(const std::string& key, Transaction* trans);
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// Dooms the entry associated with a GET for a given |url|.
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void DoomMainEntryForUrl(const GURL& url);
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// Closes a previously doomed entry.
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void FinalizeDoomedEntry(ActiveEntry* entry);
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// Returns an entry that is currently in use and not doomed, or NULL.
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ActiveEntry* FindActiveEntry(const std::string& key);
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// Creates a new ActiveEntry and starts tracking it. |disk_entry| is the disk
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// cache entry.
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ActiveEntry* ActivateEntry(disk_cache::Entry* disk_entry);
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// Deletes an ActiveEntry.
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void DeactivateEntry(ActiveEntry* entry);
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// Deletes an ActiveEntry using an exhaustive search.
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void SlowDeactivateEntry(ActiveEntry* entry);
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// Returns the PendingOp for the desired |key|. If an entry is not under
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// construction already, a new PendingOp structure is created.
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PendingOp* GetPendingOp(const std::string& key);
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// Deletes a PendingOp.
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void DeletePendingOp(PendingOp* pending_op);
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// Opens the disk cache entry associated with |key|, returning an ActiveEntry
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// in |*entry|. |trans| will be notified via its IO callback if this method
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// returns ERR_IO_PENDING. This should not be called if there already is
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// an active entry associated with |key|, e.g. you should call FindActiveEntry
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// first.
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int OpenEntry(const std::string& key, ActiveEntry** entry,
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Transaction* trans);
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// Creates the disk cache entry associated with |key|, returning an
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// ActiveEntry in |*entry|. |trans| will be notified via its IO callback if
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// this method returns ERR_IO_PENDING.
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int CreateEntry(const std::string& key, ActiveEntry** entry,
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Transaction* trans);
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// Destroys an ActiveEntry (active or doomed). Should only be called if
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// entry->SafeToDestroy() returns true.
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void DestroyEntry(ActiveEntry* entry);
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// Adds a transaction to an ActiveEntry. This method returns ERR_IO_PENDING
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// and the transaction will be notified about completion via its IO callback.
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// In a failure case, the callback will be invoked with ERR_CACHE_RACE.
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int AddTransactionToEntry(ActiveEntry* entry, Transaction* transaction);
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// Transaction invokes this when its response headers phase is complete
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// If the transaction is responsible for writing the response body,
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// it becomes the writer and returns OK. In other cases ERR_IO_PENDING is
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// returned and the transaction will be notified about completion via its
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// IO callback. In a failure case, the callback will be invoked with
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// ERR_CACHE_RACE.
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int DoneWithResponseHeaders(ActiveEntry* entry,
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Transaction* transaction,
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bool is_partial);
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// Called when the transaction has finished working with this entry.
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// |entry_is_complete| is true if the transaction finished reading/writing
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// from the entry successfully, else it's false.
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void DoneWithEntry(ActiveEntry* entry,
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Transaction* transaction,
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bool entry_is_complete,
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bool is_partial);
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// Invoked when writers wants to doom the entry and restart any queued and
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// headers transactions.
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// Virtual so that it can be extended in tests.
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virtual void WritersDoomEntryRestartTransactions(ActiveEntry* entry);
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// Invoked when current transactions in writers have completed writing to the
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// cache. It may be successful completion of the response or failure as given
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// by |success|. Must delete the writers object.
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// |entry| is the owner of writers.
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// |should_keep_entry| indicates if the entry should be doomed/destroyed.
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// Virtual so that it can be extended in tests.
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virtual void WritersDoneWritingToEntry(ActiveEntry* entry,
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bool success,
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bool should_keep_entry,
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TransactionSet make_readers);
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// Called when the transaction has received a non-matching response to
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// validation and it's not the transaction responsible for writing the
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// response body.
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void DoomEntryValidationNoMatch(ActiveEntry* entry);
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// Removes and returns all queued transactions in |entry| in FIFO order. This
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// includes transactions that have completed the headers phase and those that
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// have not been added to the entry yet in that order. |list| is the output
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// argument.
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void RemoveAllQueuedTransactions(ActiveEntry* entry, TransactionList* list);
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// Processes either writer's failure to write response body or
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// headers_transactions's failure to write headers.
|
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void ProcessEntryFailure(ActiveEntry* entry);
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|
// Restarts headers_transaction and done_headers_queue transactions.
|
|
void RestartHeadersPhaseTransactions(ActiveEntry* entry);
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|
|
|
// Restarts the headers_transaction by setting its state. Since the
|
|
// headers_transaction is awaiting an asynchronous operation completion,
|
|
// it will be restarted when it's IO callback is invoked.
|
|
void RestartHeadersTransaction(ActiveEntry* entry);
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|
|
|
// Resumes processing the queued transactions of |entry|.
|
|
void ProcessQueuedTransactions(ActiveEntry* entry);
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|
|
|
// Checks if a transaction can be added to the entry. If yes, it will
|
|
// invoke the IO callback of the transaction. This is a helper function for
|
|
// OnProcessQueuedTransactions. It will take a transaction from
|
|
// add_to_entry_queue and make it a headers_transaction, if one doesn't exist
|
|
// already.
|
|
void ProcessAddToEntryQueue(ActiveEntry* entry);
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|
|
|
// Returns if the transaction can join other transactions for writing to
|
|
// the cache simultaneously. It is only supported for non-Read only,
|
|
// GET requests which are not range requests.
|
|
ParallelWritingPattern CanTransactionJoinExistingWriters(
|
|
Transaction* transaction);
|
|
|
|
// Invoked when a transaction that has already completed the response headers
|
|
// phase can resume reading/writing the response body. It will invoke the IO
|
|
// callback of the transaction. This is a helper function for
|
|
// OnProcessQueuedTransactions.
|
|
void ProcessDoneHeadersQueue(ActiveEntry* entry);
|
|
|
|
// Adds a transaction to writers.
|
|
void AddTransactionToWriters(ActiveEntry* entry,
|
|
Transaction* transaction,
|
|
ParallelWritingPattern parallel_writing_pattern);
|
|
|
|
// Returns true if this transaction can write headers to the entry.
|
|
bool CanTransactionWriteResponseHeaders(ActiveEntry* entry,
|
|
Transaction* transaction,
|
|
bool is_partial,
|
|
bool is_match) const;
|
|
|
|
// Returns true if a transaction is currently writing the response body.
|
|
bool IsWritingInProgress(ActiveEntry* entry) const;
|
|
|
|
// Returns the LoadState of the provided pending transaction.
|
|
LoadState GetLoadStateForPendingTransaction(const Transaction* trans);
|
|
|
|
// Removes the transaction |trans|, from the pending list of an entry
|
|
// (PendingOp, active or doomed entry).
|
|
void RemovePendingTransaction(Transaction* trans);
|
|
|
|
// Removes the transaction |trans|, from the pending list of |entry|.
|
|
bool RemovePendingTransactionFromEntry(ActiveEntry* entry,
|
|
Transaction* trans);
|
|
|
|
// Removes the transaction |trans|, from the pending list of |pending_op|.
|
|
bool RemovePendingTransactionFromPendingOp(PendingOp* pending_op,
|
|
Transaction* trans);
|
|
|
|
// Events (called via PostTask) ---------------------------------------------
|
|
|
|
void OnProcessQueuedTransactions(ActiveEntry* entry);
|
|
|
|
// Callbacks ----------------------------------------------------------------
|
|
|
|
// Processes BackendCallback notifications.
|
|
void OnIOComplete(int result, PendingOp* entry);
|
|
|
|
// Helper to conditionally delete |pending_op| if HttpCache has been deleted.
|
|
// This is necessary because |pending_op| owns a disk_cache::Backend that has
|
|
// been passed in to CreateCacheBackend(), therefore must live until callback
|
|
// is called.
|
|
static void OnPendingOpComplete(const base::WeakPtr<HttpCache>& cache,
|
|
PendingOp* pending_op,
|
|
int result);
|
|
|
|
// Processes the backend creation notification.
|
|
void OnBackendCreated(int result, PendingOp* pending_op);
|
|
|
|
// Variables ----------------------------------------------------------------
|
|
|
|
NetLog* net_log_;
|
|
|
|
// Used when lazily constructing the disk_cache_.
|
|
std::unique_ptr<BackendFactory> backend_factory_;
|
|
bool building_backend_;
|
|
bool bypass_lock_for_test_;
|
|
bool bypass_lock_after_headers_for_test_;
|
|
bool fail_conditionalization_for_test_;
|
|
|
|
Mode mode_;
|
|
|
|
std::unique_ptr<HttpTransactionFactory> network_layer_;
|
|
|
|
std::unique_ptr<disk_cache::Backend> disk_cache_;
|
|
|
|
// The set of active entries indexed by cache key.
|
|
ActiveEntriesMap active_entries_;
|
|
|
|
// The set of doomed entries.
|
|
ActiveEntriesSet doomed_entries_;
|
|
|
|
// The set of entries "under construction".
|
|
PendingOpsMap pending_ops_;
|
|
|
|
std::unique_ptr<PlaybackCacheMap> playback_cache_map_;
|
|
|
|
// A clock that can be swapped out for testing.
|
|
base::Clock* clock_;
|
|
|
|
THREAD_CHECKER(thread_checker_);
|
|
|
|
base::WeakPtrFactory<HttpCache> weak_factory_;
|
|
|
|
DISALLOW_COPY_AND_ASSIGN(HttpCache);
|
|
};
|
|
|
|
} // namespace net
|
|
|
|
#endif // NET_HTTP_HTTP_CACHE_H_
|