зеркало из https://github.com/mozilla/gecko-dev.git
378 строки
13 KiB
C++
378 строки
13 KiB
C++
/* -*- Mode: C++; tab-width: 8; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* vim: set ts=8 sts=2 et sw=2 tw=80: */
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/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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#ifndef DOMStorageDBThread_h___
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#define DOMStorageDBThread_h___
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#include "prthread.h"
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#include "prinrval.h"
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#include "nsTArray.h"
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#include "mozilla/Monitor.h"
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#include "mozilla/storage/StatementCache.h"
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#include "nsString.h"
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#include "nsCOMPtr.h"
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#include "nsClassHashtable.h"
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#include "nsIFile.h"
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#include "nsIThreadInternal.h"
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class mozIStorageConnection;
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namespace mozilla {
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namespace dom {
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class DOMStorageCacheBridge;
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class DOMStorageUsageBridge;
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class DOMStorageUsage;
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typedef mozilla::storage::StatementCache<mozIStorageStatement> StatementCache;
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// Interface used by the cache to post operations to the asynchronous
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// database thread or process.
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class DOMStorageDBBridge
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{
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public:
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DOMStorageDBBridge();
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virtual ~DOMStorageDBBridge() {}
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// Ensures the database engine is started
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virtual nsresult Init() = 0;
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// Releases the database and disallows its usage
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virtual nsresult Shutdown() = 0;
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// Asynchronously fills the cache with data from the database for first use.
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// When |aPriority| is true, the preload operation is scheduled as the first one.
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// This method is responsible to keep hard reference to the cache for the time of
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// the preload or, when preload cannot be performed, call LoadDone() immediately.
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virtual void AsyncPreload(DOMStorageCacheBridge* aCache, bool aPriority = false) = 0;
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// Asynchronously fill the |usage| object with actual usage of data by its scope.
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// The scope is eTLD+1 tops, never deeper subdomains.
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virtual void AsyncGetUsage(DOMStorageUsageBridge* aUsage) = 0;
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// Synchronously fills the cache, when |aForceSync| is false and cache already got some
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// data before, the method waits for the running preload to finish
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virtual void SyncPreload(DOMStorageCacheBridge* aCache, bool aForceSync = false) = 0;
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// Called when an existing key is modified in the storage, schedules update to the database
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virtual nsresult AsyncAddItem(DOMStorageCacheBridge* aCache, const nsAString& aKey, const nsAString& aValue) = 0;
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// Called when an existing key is modified in the storage, schedules update to the database
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virtual nsresult AsyncUpdateItem(DOMStorageCacheBridge* aCache, const nsAString& aKey, const nsAString& aValue) = 0;
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// Called when an item is removed from the storage, schedules delete of the key
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virtual nsresult AsyncRemoveItem(DOMStorageCacheBridge* aCache, const nsAString& aKey) = 0;
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// Called when the whole storage is cleared by the DOM API, schedules delete of the scope
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virtual nsresult AsyncClear(DOMStorageCacheBridge* aCache) = 0;
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// Called when chrome deletes e.g. cookies, schedules delete of the whole database
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virtual void AsyncClearAll() = 0;
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// Called when only a domain and its subdomains or an app data is about to clear
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virtual void AsyncClearMatchingScope(const nsACString& aScope) = 0;
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// Forces scheduled DB operations to be early flushed to the disk
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virtual void AsyncFlush() = 0;
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// Check whether the scope has any data stored on disk and is thus allowed to preload
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virtual bool ShouldPreloadScope(const nsACString& aScope) = 0;
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// Get the complete list of scopes having data
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virtual void GetScopesHavingData(InfallibleTArray<nsCString>* aScopes) = 0;
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};
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// The implementation of the the database engine, this directly works
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// with the sqlite or any other db API we are based on
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// This class is resposible for collecting and processing asynchronous
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// DB operations over caches (DOMStorageCache) communicating though
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// DOMStorageCacheBridge interface class
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class DOMStorageDBThread final : public DOMStorageDBBridge
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{
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public:
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class PendingOperations;
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// Representation of a singe database task, like adding and removing keys,
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// (pre)loading the whole origin data, cleaning.
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class DBOperation
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{
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public:
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typedef enum {
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// Only operation that reads data from the database
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opPreload,
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// The same as opPreload, just executed with highest priority
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opPreloadUrgent,
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// Load usage of a scope
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opGetUsage,
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// Operations invoked by the DOM content API
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opAddItem,
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opUpdateItem,
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opRemoveItem,
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opClear,
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// Operations invoked by chrome
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opClearAll,
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opClearMatchingScope,
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} OperationType;
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explicit DBOperation(const OperationType aType,
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DOMStorageCacheBridge* aCache = nullptr,
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const nsAString& aKey = EmptyString(),
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const nsAString& aValue = EmptyString());
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DBOperation(const OperationType aType,
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DOMStorageUsageBridge* aUsage);
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DBOperation(const OperationType aType,
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const nsACString& aScope);
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~DBOperation();
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// Executes the operation, doesn't necessarity have to be called on the I/O thread
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void PerformAndFinalize(DOMStorageDBThread* aThread);
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// Finalize the operation, i.e. do any internal cleanup and finish calls
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void Finalize(nsresult aRv);
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// The operation type
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OperationType Type() { return mType; }
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// The operation scope (=origin)
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const nsCString Scope();
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// |Scope + key| the operation is working with
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const nsCString Target();
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private:
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// The operation implementation body
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nsresult Perform(DOMStorageDBThread* aThread);
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friend class PendingOperations;
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OperationType mType;
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nsRefPtr<DOMStorageCacheBridge> mCache;
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nsRefPtr<DOMStorageUsageBridge> mUsage;
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nsString mKey;
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nsString mValue;
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nsCString mScope;
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};
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// Encapsulation of collective and coalescing logic for all pending operations
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// except preloads that are handled separately as priority operations
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class PendingOperations {
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public:
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PendingOperations();
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// Method responsible for coalescing redundant update operations with the same
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// |Target()| or clear operations with the same or matching |Scope()|
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void Add(DBOperation* aOperation);
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// True when there are some scheduled operations to flush on disk
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bool HasTasks();
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// Moves collected operations to a local flat list to allow execution of the operation
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// list out of the thread lock
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bool Prepare();
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// Executes the previously |Prepared()'ed| list of operations, retuns result, but doesn't
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// handle it in any way in case of a failure
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nsresult Execute(DOMStorageDBThread* aThread);
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// Finalizes the pending operation list, returns false when too many operations failed
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// to flush what indicates a long standing issue with the database access.
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bool Finalize(nsresult aRv);
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// true when a clear that deletes the given |scope| is among the pending operations;
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// when a preload for that scope is being scheduled, it must be finished right away
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bool IsScopeClearPending(const nsACString& aScope);
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// Checks whether there is a pending update (or clear, actually) operation for this scope.
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bool IsScopeUpdatePending(const nsACString& aScope);
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private:
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// Returns true iff new operation is of type newType and there is a pending
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// operation of type pendingType for the same key (target).
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bool CheckForCoalesceOpportunity(DBOperation* aNewOp,
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DBOperation::OperationType aPendingType,
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DBOperation::OperationType aNewType);
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// List of all clearing operations, executed first
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nsClassHashtable<nsCStringHashKey, DBOperation> mClears;
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// List of all update/insert operations, executed as second
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nsClassHashtable<nsCStringHashKey, DBOperation> mUpdates;
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// Collection of all tasks, valid only between Prepare() and Execute()
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nsTArray<nsAutoPtr<DBOperation> > mExecList;
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// Number of failing flush attempts
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uint32_t mFlushFailureCount;
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};
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class ThreadObserver final : public nsIThreadObserver
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{
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NS_DECL_THREADSAFE_ISUPPORTS
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NS_DECL_NSITHREADOBSERVER
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ThreadObserver()
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: mHasPendingEvents(false)
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, mMonitor("DOMStorageThreadMonitor")
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{
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}
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bool HasPendingEvents() {
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mMonitor.AssertCurrentThreadOwns();
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return mHasPendingEvents;
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}
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void ClearPendingEvents() {
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mMonitor.AssertCurrentThreadOwns();
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mHasPendingEvents = false;
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}
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Monitor& GetMonitor() { return mMonitor; }
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private:
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virtual ~ThreadObserver() {}
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bool mHasPendingEvents;
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// The monitor we drive the thread with
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Monitor mMonitor;
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};
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public:
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DOMStorageDBThread();
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virtual ~DOMStorageDBThread() {}
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virtual nsresult Init();
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virtual nsresult Shutdown();
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virtual void AsyncPreload(DOMStorageCacheBridge* aCache, bool aPriority = false)
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{ InsertDBOp(new DBOperation(aPriority ? DBOperation::opPreloadUrgent : DBOperation::opPreload, aCache)); }
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virtual void SyncPreload(DOMStorageCacheBridge* aCache, bool aForce = false);
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virtual void AsyncGetUsage(DOMStorageUsageBridge * aUsage)
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{ InsertDBOp(new DBOperation(DBOperation::opGetUsage, aUsage)); }
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virtual nsresult AsyncAddItem(DOMStorageCacheBridge* aCache, const nsAString& aKey, const nsAString& aValue)
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{ return InsertDBOp(new DBOperation(DBOperation::opAddItem, aCache, aKey, aValue)); }
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virtual nsresult AsyncUpdateItem(DOMStorageCacheBridge* aCache, const nsAString& aKey, const nsAString& aValue)
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{ return InsertDBOp(new DBOperation(DBOperation::opUpdateItem, aCache, aKey, aValue)); }
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virtual nsresult AsyncRemoveItem(DOMStorageCacheBridge* aCache, const nsAString& aKey)
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{ return InsertDBOp(new DBOperation(DBOperation::opRemoveItem, aCache, aKey)); }
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virtual nsresult AsyncClear(DOMStorageCacheBridge* aCache)
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{ return InsertDBOp(new DBOperation(DBOperation::opClear, aCache)); }
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virtual void AsyncClearAll()
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{ InsertDBOp(new DBOperation(DBOperation::opClearAll)); }
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virtual void AsyncClearMatchingScope(const nsACString& aScope)
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{ InsertDBOp(new DBOperation(DBOperation::opClearMatchingScope, aScope)); }
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virtual void AsyncFlush();
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virtual bool ShouldPreloadScope(const nsACString& aScope);
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virtual void GetScopesHavingData(InfallibleTArray<nsCString>* aScopes);
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private:
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nsCOMPtr<nsIFile> mDatabaseFile;
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PRThread* mThread;
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// Used to observe runnables dispatched to our thread and to monitor it.
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nsRefPtr<ThreadObserver> mThreadObserver;
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// Flag to stop, protected by the monitor returned by
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// mThreadObserver->GetMonitor().
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bool mStopIOThread;
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// Whether WAL is enabled
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bool mWALModeEnabled;
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// Whether DB has already been open, avoid races between main thread reads
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// and pending DB init in the background I/O thread
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bool mDBReady;
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// State of the database initiation
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nsresult mStatus;
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// List of scopes having data, for optimization purposes only
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nsTHashtable<nsCStringHashKey> mScopesHavingData;
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StatementCache mWorkerStatements;
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StatementCache mReaderStatements;
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// Connection used by the worker thread for all read and write ops
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nsCOMPtr<mozIStorageConnection> mWorkerConnection;
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// Connection used only on the main thread for sync read operations
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nsCOMPtr<mozIStorageConnection> mReaderConnection;
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// Time the first pending operation has been added to the pending operations
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// list
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PRIntervalTime mDirtyEpoch;
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// Flag to force immediate flush of all pending operations
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bool mFlushImmediately;
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// List of preloading operations, in chronological or priority order.
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// Executed prioritly over pending update operations.
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nsTArray<DBOperation*> mPreloads;
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// Collector of pending update operations
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PendingOperations mPendingTasks;
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// Counter of calls for thread priority rising.
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int32_t mPriorityCounter;
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// Helper to direct an operation to one of the arrays above;
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// also checks IsScopeClearPending for preloads
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nsresult InsertDBOp(DBOperation* aOperation);
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// Opens the database, first thing we do after start of the thread.
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nsresult OpenDatabaseConnection();
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nsresult InitDatabase();
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nsresult ShutdownDatabase();
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// Tries to establish WAL mode
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nsresult SetJournalMode(bool aIsWal);
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nsresult TryJournalMode();
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// Sets the threshold for auto-checkpointing the WAL.
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nsresult ConfigureWALBehavior();
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void SetHigherPriority();
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void SetDefaultPriority();
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// Ensures we flush pending tasks in some reasonble time
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void ScheduleFlush();
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// Called when flush of pending tasks is being executed
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void UnscheduleFlush();
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// This method is used for two purposes:
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// 1. as a value passed to monitor.Wait() method
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// 2. as in indicator that flush has to be performed
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//
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// Return:
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// - PR_INTERVAL_NO_TIMEOUT when no pending tasks are scheduled
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// - larger then zero when tasks have been scheduled, but it is
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// still not time to perform the flush ; it is actual interval
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// time to wait until the flush has to happen
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// - 0 when it is time to do the flush
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PRIntervalTime TimeUntilFlush();
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// Notifies to the main thread that flush has completed
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void NotifyFlushCompletion();
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// Thread loop
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static void ThreadFunc(void* aArg);
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void ThreadFunc();
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};
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} // ::dom
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} // ::mozilla
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#endif /* DOMStorageDBThread_h___ */
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