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317 lines
12 KiB
C
317 lines
12 KiB
C
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// Copyright (c) 2017 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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#ifndef NET_HTTP_HTTP_CACHE_WRITERS_H_
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#define NET_HTTP_HTTP_CACHE_WRITERS_H_
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#include <list>
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#include <memory>
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#include "base/memory/weak_ptr.h"
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#include "net/base/completion_callback.h"
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#include "net/http/http_cache.h"
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namespace net {
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class HttpResponseInfo;
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class PartialData;
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// If multiple HttpCache::Transactions are accessing the same cache entry
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// simultaneously, their access to the data read from network is synchronized
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// by HttpCache::Writers. This enables each of those transactions to drive
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// reading the response body from the network ensuring a slow consumer does not
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// starve other consumers of the same resource.
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//
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// Writers represents the set of all HttpCache::Transactions that are
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// reading from the network using the same network transaction and writing to
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// the same cache entry. It is owned by the ActiveEntry.
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class NET_EXPORT_PRIVATE HttpCache::Writers {
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public:
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// This is the information maintained by Writers in the context of each
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// transaction.
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// |partial| is owned by the transaction and to be sure there are no
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// dangling pointers, it must be ensured that transaction's reference and
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// this information will be removed from writers once the transaction is
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// deleted.
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struct NET_EXPORT_PRIVATE TransactionInfo {
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TransactionInfo(PartialData* partial,
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bool truncated,
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HttpResponseInfo info);
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~TransactionInfo();
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TransactionInfo& operator=(const TransactionInfo&);
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TransactionInfo(const TransactionInfo&);
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PartialData* partial;
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bool truncated;
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HttpResponseInfo response_info;
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};
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// |cache| and |entry| must outlive this object.
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Writers(HttpCache* cache, HttpCache::ActiveEntry* entry);
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~Writers();
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// Retrieves data from the network transaction associated with the Writers
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// object. This may be done directly (via a network read into |*buf->data()|)
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// or indirectly (by copying from another transactions buffer into
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// |*buf->data()| on network read completion) depending on whether or not a
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// read is currently in progress. May return the result synchronously or
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// return ERR_IO_PENDING: if ERR_IO_PENDING is returned, |callback| will be
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// run to inform the consumer of the result of the Read().
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// |transaction| may be removed while Read() is ongoing. In that case Writers
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// will still complete the Read() processing but will not invoke the
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// |callback|.
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int Read(scoped_refptr<IOBuffer> buf,
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int buf_len,
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const CompletionCallback& callback,
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Transaction* transaction);
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// Invoked when StopCaching is called on a member transaction.
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// It stops caching only if there are no other transactions. Returns true if
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// caching can be stopped.
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// |keep_entry| should be true if the entry needs to be preserved after
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// truncation.
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bool StopCaching(bool keep_entry);
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// Membership functions like AddTransaction and RemoveTransaction are invoked
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// by HttpCache on behalf of the HttpCache::Transaction.
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// Adds an HttpCache::Transaction to Writers.
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// Should only be invoked if CanAddWriters() returns true.
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// If |is_exclusive| is true, it makes writing an exclusive operation
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// implying that Writers can contain at most one transaction till the
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// completion of the response body. It is illegal to invoke with is_exclusive
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// as true if there is already a transaction present.
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// |transaction| can be destroyed at any point and it should invoke
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// HttpCache::DoneWithEntry() during its destruction. This will also ensure
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// any pointers in |info| are not accessed after the transaction is destroyed.
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void AddTransaction(Transaction* transaction,
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bool is_exclusive,
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RequestPriority priority,
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const TransactionInfo& info);
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// Invoked when the transaction is done working with the entry.
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void RemoveTransaction(Transaction* transaction, bool success);
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// Invoked when there is a change in a member transaction's priority or a
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// member transaction is removed.
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void UpdatePriority();
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// Returns true if this object is empty.
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bool IsEmpty() const { return all_writers_.empty(); }
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// Invoked during HttpCache's destruction.
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void Clear() { all_writers_.clear(); }
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// Returns true if |transaction| is part of writers.
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bool HasTransaction(const Transaction* transaction) const {
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return all_writers_.count(const_cast<Transaction*>(transaction)) > 0;
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}
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// Returns true if more writers can be added for shared writing.
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bool CanAddWriters();
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// Returns if only one transaction can be a member of writers.
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bool IsExclusive() const { return is_exclusive_; }
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// Returns the network transaction which may be nullptr for range requests.
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const HttpTransaction* network_transaction() const {
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return network_transaction_.get();
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}
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// Returns the load state of the |network_transaction_| if present else
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// returns LOAD_STATE_IDLE.
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LoadState GetLoadState() const;
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// Sets the network transaction argument to |network_transaction_|. Must be
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// invoked before Read can be invoked.
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void SetNetworkTransaction(
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Transaction* transaction,
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std::unique_ptr<HttpTransaction> network_transaction);
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// Resets the network transaction to nullptr. Required for range requests as
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// they might use the current network transaction only for part of the
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// request. Must only be invoked for range requests.
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void ResetNetworkTransaction();
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// Returns if response is only being read from the network.
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bool network_read_only() const { return network_read_only_; }
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int GetTransactionsCount() const { return all_writers_.size(); }
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private:
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friend class WritersTest;
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enum class State {
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UNSET,
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NONE,
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NETWORK_READ,
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NETWORK_READ_COMPLETE,
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CACHE_WRITE_DATA,
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CACHE_WRITE_DATA_COMPLETE,
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// This state is used when an attempt to truncate races with an ongoing
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// network read/cache write. In this case we transition from
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// NETWORK_READ_COMPLETE or CACHE_WRITE_DATA_COMPLETE to
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// ASYNC_OP_COMPLETE_PRE_TRUNCATE. We will then process the truncation
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// after the ongoing operation completes.
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ASYNC_OP_COMPLETE_PRE_TRUNCATE,
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CACHE_WRITE_TRUNCATED_RESPONSE,
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CACHE_WRITE_TRUNCATED_RESPONSE_COMPLETE,
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};
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// These transactions are waiting on Read. After the active transaction
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// completes writing the data to the cache, their buffer would be filled with
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// the data and their callback will be invoked.
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struct WaitingForRead {
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scoped_refptr<IOBuffer> read_buf;
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int read_buf_len;
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int write_len;
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const CompletionCallback callback;
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WaitingForRead(scoped_refptr<IOBuffer> read_buf,
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int len,
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const CompletionCallback& consumer_callback);
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~WaitingForRead();
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WaitingForRead(const WaitingForRead&);
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};
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using WaitingForReadMap = std::unordered_map<Transaction*, WaitingForRead>;
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using TransactionMap = std::unordered_map<Transaction*, TransactionInfo>;
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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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// State machine functions.
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int DoNetworkRead();
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int DoNetworkReadComplete(int result);
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int DoCacheWriteData(int num_bytes);
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int DoCacheWriteDataComplete(int result);
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int DoAsyncOpCompletePreTruncate(int result);
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int DoCacheWriteTruncatedResponse();
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int DoCacheWriteTruncatedResponseComplete(int result);
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// Helper functions for callback.
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void OnNetworkReadFailure(int result);
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void OnCacheWriteFailure();
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void OnDataReceived(int result);
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// Notifies the transactions waiting on Read of the result, by posting a task
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// for each of them.
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void ProcessWaitingForReadTransactions(int result);
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// Sets the state to FAIL_READ so that any subsequent Read on an idle
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// transaction fails.
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void SetIdleWritersFailState(int result);
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// Invoked when |active_transaction_| fails to read from network or write to
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// cache. |error| indicates network read error code or cache write error.
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void ProcessFailure(int error);
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// Returns true if |this| only contains idle writers. Idle writers are those
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// that are waiting for Read to be invoked by the consumer.
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bool ContainsOnlyIdleWriters() const;
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// Returns true if its worth marking the entry as truncated.
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// TODO(shivanisha): Refactor this so that it could be const.
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bool ShouldTruncate();
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// Invoked for truncating the entry either internally within DoLoop or through
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// the API RemoveTransaction.
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// Sets |should_keep_entry_| as true if either the entry is marked as
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// truncated or the entry is already completely written and false if the entry
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// cannot be resumed later so no need to mark truncated.
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// Returns true if the function initiated truncation of the entry by changing
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// the next state to transition to CACHE_WRITE_TRUNCATED_RESPONSE or
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// ASYNC_OP_COMPLETE_PRE_TRUNCATE.
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// If a network read/cache write operation is still going on, this will not
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// initiate truncation but it will be done after the ongoing operation is
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// complete.
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// Note that if this function returns a true, its possible that |this| may
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// have been deleted and thus no members should be touched after calling this
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// function.
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bool InitiateTruncateEntry();
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// Remove the transaction.
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void EraseTransaction(Transaction* transaction, int result);
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TransactionMap::iterator EraseTransaction(TransactionMap::iterator it,
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int result);
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void SetCacheCallback(bool success, const TransactionSet& make_readers);
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// IO Completion callback function.
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void OnIOComplete(int result);
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State next_state_ = State::NONE;
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// True if only reading from network and not writing to cache.
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bool network_read_only_ = false;
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HttpCache* cache_ = nullptr;
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// Owner of |this|.
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ActiveEntry* entry_ = nullptr;
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std::unique_ptr<HttpTransaction> network_transaction_ = nullptr;
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scoped_refptr<IOBuffer> read_buf_ = nullptr;
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int io_buf_len_ = 0;
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int write_len_ = 0;
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// The cache transaction that is the current consumer of network_transaction_
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// ::Read or writing to the entry and is waiting for the operation to be
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// completed. This is used to ensure there is at most one consumer of
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// network_transaction_ at a time.
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Transaction* active_transaction_ = nullptr;
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// Transactions whose consumers have invoked Read, but another transaction is
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// currently the |active_transaction_|. After the network read and cache write
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// is complete, the waiting transactions will be notified.
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WaitingForReadMap waiting_for_read_;
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// Includes all transactions. ResetStateForEmptyWriters should be invoked
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// whenever all_writers_ becomes empty.
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TransactionMap all_writers_;
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// True if multiple transactions are not allowed e.g. for partial requests.
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bool is_exclusive_ = false;
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// Current priority of the request. It is always the maximum of all the writer
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// transactions.
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RequestPriority priority_ = MINIMUM_PRIORITY;
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// Response info of the most recent transaction added to Writers will be used
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// to write back the headers along with the truncated bit set. This is done so
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// that we don't overwrite headers written by a more recent transaction with
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// older headers while truncating.
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HttpResponseInfo response_info_truncation_;
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// Do not mark a partial request as truncated if it is not already a truncated
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// entry to start with.
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bool partial_do_not_truncate_ = false;
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// True if the entry should be kept, even if the response was not completely
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// written.
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bool should_keep_entry_ = true;
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// If truncation happens after a current network read/cache write then the
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// result returned to the consumer should be the one returned by the network
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// read/cache write operation.
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int post_truncate_result_ = OK;
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// True if currently processing the DoLoop.
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bool in_do_loop_ = false;
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CompletionCallback callback_; // Callback for active_transaction_.
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// Since cache_ can destroy |this|, |cache_callback_| is only invoked at the
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// end of DoLoop().
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base::OnceClosure cache_callback_; // Callback for cache_.
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base::WeakPtrFactory<Writers> weak_factory_;
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DISALLOW_COPY_AND_ASSIGN(Writers);
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};
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} // namespace net
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#endif // NET_HTTP_HTTP_CACHE_WRITERS_H_
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