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d2b70213ac
--HG-- rename : tools/trace-malloc/bloatblame.c => tools/trace-malloc/bloatblame.cpp
324 lines
13 KiB
C++
324 lines
13 KiB
C++
/* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* ***** BEGIN LICENSE BLOCK *****
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* Version: MPL 1.1/GPL 2.0/LGPL 2.1
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*
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* The contents of this file are subject to the Mozilla Public License Version
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* 1.1 (the "License"); you may not use this file except in compliance with
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* the License. You may obtain a copy of the License at
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* http://www.mozilla.org/MPL/
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*
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* Software distributed under the License is distributed on an "AS IS" basis,
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* WITHOUT WARRANTY OF ANY KIND, either express or implied. See the License
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* for the specific language governing rights and limitations under the
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* License.
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*
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* The Original Code is mozilla.org code.
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*
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* The Initial Developer of the Original Code is
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* Netscape Communications Corporation.
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* Portions created by the Initial Developer are Copyright (C) 2003
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* the Initial Developer. All Rights Reserved.
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*
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* Contributor(s):
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* Daniel Witte (dwitte@stanford.edu)
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* Michiel van Leeuwen (mvl@exedo.nl)
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* Michael Ventnor <m.ventnor@gmail.com>
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* Ehsan Akhgari <ehsan.akhgari@gmail.com>
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*
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* Alternatively, the contents of this file may be used under the terms of
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* either the GNU General Public License Version 2 or later (the "GPL"), or
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* the GNU Lesser General Public License Version 2.1 or later (the "LGPL"),
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* in which case the provisions of the GPL or the LGPL are applicable instead
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* of those above. If you wish to allow use of your version of this file only
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* under the terms of either the GPL or the LGPL, and not to allow others to
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* use your version of this file under the terms of the MPL, indicate your
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* decision by deleting the provisions above and replace them with the notice
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* and other provisions required by the GPL or the LGPL. If you do not delete
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* the provisions above, a recipient may use your version of this file under
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* the terms of any one of the MPL, the GPL or the LGPL.
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*
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* ***** END LICENSE BLOCK ***** */
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#ifndef nsCookieService_h__
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#define nsCookieService_h__
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#include "nsICookieService.h"
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#include "nsICookieManager.h"
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#include "nsICookieManager2.h"
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#include "nsIObserver.h"
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#include "nsWeakReference.h"
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#include "nsCookie.h"
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#include "nsString.h"
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#include "nsAutoPtr.h"
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#include "nsHashKeys.h"
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#include "nsTHashtable.h"
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#include "mozIStorageStatement.h"
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#include "mozIStorageAsyncStatement.h"
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#include "mozIStoragePendingStatement.h"
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#include "mozIStorageConnection.h"
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#include "mozIStorageRow.h"
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#include "mozIStorageCompletionCallback.h"
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#include "mozIStorageStatementCallback.h"
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class nsICookiePermission;
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class nsIEffectiveTLDService;
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class nsIIDNService;
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class nsIPrefBranch;
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class nsIObserverService;
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class nsIURI;
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class nsIChannel;
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class nsIArray;
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class mozIStorageService;
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class mozIThirdPartyUtil;
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class ReadCookieDBListener;
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struct nsCookieAttributes;
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struct nsListIter;
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struct nsEnumerationData;
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namespace mozilla {
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namespace net {
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class CookieServiceParent;
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}
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}
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// hash entry class
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class nsCookieEntry : public PLDHashEntryHdr
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{
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public:
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// Hash methods
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typedef const nsCString& KeyType;
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typedef const nsCString* KeyTypePointer;
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typedef nsTArray< nsRefPtr<nsCookie> > ArrayType;
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typedef ArrayType::index_type IndexType;
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explicit
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nsCookieEntry(KeyTypePointer aBaseDomain)
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: mBaseDomain(*aBaseDomain)
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{
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}
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nsCookieEntry(const nsCookieEntry& toCopy)
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{
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// if we end up here, things will break. nsTHashtable shouldn't
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// allow this, since we set ALLOW_MEMMOVE to true.
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NS_NOTREACHED("nsCookieEntry copy constructor is forbidden!");
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}
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~nsCookieEntry()
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{
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}
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KeyType GetKey() const
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{
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return mBaseDomain;
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}
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bool KeyEquals(KeyTypePointer aKey) const
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{
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return mBaseDomain == *aKey;
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}
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static KeyTypePointer KeyToPointer(KeyType aKey)
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{
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return &aKey;
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}
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static PLDHashNumber HashKey(KeyTypePointer aKey)
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{
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return HashString(*aKey);
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}
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enum { ALLOW_MEMMOVE = PR_TRUE };
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inline ArrayType& GetCookies() { return mCookies; }
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private:
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nsCString mBaseDomain;
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ArrayType mCookies;
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};
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// encapsulates a (baseDomain, nsCookie) tuple for temporary storage purposes.
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struct CookieDomainTuple
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{
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nsCString baseDomain;
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nsRefPtr<nsCookie> cookie;
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};
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// encapsulates in-memory and on-disk DB states, so we can
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// conveniently switch state when entering or exiting private browsing.
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struct DBState
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{
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DBState() : cookieCount(0), cookieOldestTime(LL_MAXINT), corruptFlag(OK)
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{
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hostTable.Init();
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}
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NS_INLINE_DECL_REFCOUNTING(DBState)
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// State of the database connection.
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enum CorruptFlag {
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OK, // normal
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CLOSING_FOR_REBUILD, // corruption detected, connection closing
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REBUILDING // close complete, rebuilding database from memory
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};
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nsTHashtable<nsCookieEntry> hostTable;
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PRUint32 cookieCount;
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PRInt64 cookieOldestTime;
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nsCOMPtr<nsIFile> cookieFile;
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nsCOMPtr<mozIStorageConnection> dbConn;
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nsCOMPtr<mozIStorageAsyncStatement> stmtInsert;
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nsCOMPtr<mozIStorageAsyncStatement> stmtDelete;
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nsCOMPtr<mozIStorageAsyncStatement> stmtUpdate;
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CorruptFlag corruptFlag;
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// Various parts representing asynchronous read state. These are useful
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// while the background read is taking place.
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nsCOMPtr<mozIStorageConnection> syncConn;
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nsCOMPtr<mozIStorageStatement> stmtReadDomain;
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nsCOMPtr<mozIStoragePendingStatement> pendingRead;
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// The asynchronous read listener. This is a weak ref (storage has ownership)
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// since it may need to outlive the DBState's database connection.
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ReadCookieDBListener* readListener;
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// An array of (baseDomain, cookie) tuples representing data read in
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// asynchronously. This is merged into hostTable once read is complete.
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nsTArray<CookieDomainTuple> hostArray;
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// A hashset of baseDomains read in synchronously, while the async read is
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// in flight. This is used to keep track of which data in hostArray is stale
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// when the time comes to merge.
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nsTHashtable<nsCStringHashKey> readSet;
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// DB completion handlers.
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nsCOMPtr<mozIStorageStatementCallback> insertListener;
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nsCOMPtr<mozIStorageStatementCallback> updateListener;
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nsCOMPtr<mozIStorageStatementCallback> removeListener;
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nsCOMPtr<mozIStorageCompletionCallback> closeListener;
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};
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// these constants represent a decision about a cookie based on user prefs.
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enum CookieStatus
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{
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STATUS_ACCEPTED,
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STATUS_ACCEPT_SESSION,
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STATUS_REJECTED,
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// STATUS_REJECTED_WITH_ERROR indicates the cookie should be rejected because
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// of an error (rather than something the user can control). this is used for
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// notification purposes, since we only want to notify of rejections where
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// the user can do something about it (e.g. whitelist the site).
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STATUS_REJECTED_WITH_ERROR
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};
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// Result codes for TryInitDB() and Read().
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enum OpenDBResult
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{
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RESULT_OK,
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RESULT_RETRY,
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RESULT_FAILURE
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};
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/******************************************************************************
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* nsCookieService:
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* class declaration
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******************************************************************************/
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class nsCookieService : public nsICookieService
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, public nsICookieManager2
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, public nsIObserver
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, public nsSupportsWeakReference
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{
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public:
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// nsISupports
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NS_DECL_ISUPPORTS
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NS_DECL_NSIOBSERVER
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NS_DECL_NSICOOKIESERVICE
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NS_DECL_NSICOOKIEMANAGER
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NS_DECL_NSICOOKIEMANAGER2
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nsCookieService();
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virtual ~nsCookieService();
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static nsICookieService* GetXPCOMSingleton();
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nsresult Init();
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protected:
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void PrefChanged(nsIPrefBranch *aPrefBranch);
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void InitDBStates();
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OpenDBResult TryInitDB(bool aDeleteExistingDB);
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nsresult CreateTable();
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void CloseDBStates();
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void CloseDefaultDBConnection();
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void HandleDBClosed(DBState* aDBState);
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void HandleCorruptDB(DBState* aDBState);
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void RebuildCorruptDB(DBState* aDBState);
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OpenDBResult Read();
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template<class T> nsCookie* GetCookieFromRow(T &aRow);
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void AsyncReadComplete();
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void CancelAsyncRead(bool aPurgeReadSet);
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void EnsureReadDomain(const nsCString &aBaseDomain);
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void EnsureReadComplete();
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nsresult NormalizeHost(nsCString &aHost);
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nsresult GetBaseDomain(nsIURI *aHostURI, nsCString &aBaseDomain, bool &aRequireHostMatch);
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nsresult GetBaseDomainFromHost(const nsACString &aHost, nsCString &aBaseDomain);
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nsresult GetCookieStringCommon(nsIURI *aHostURI, nsIChannel *aChannel, bool aHttpBound, char** aCookie);
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void GetCookieStringInternal(nsIURI *aHostURI, bool aIsForeign, bool aHttpBound, nsCString &aCookie);
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nsresult SetCookieStringCommon(nsIURI *aHostURI, const char *aCookieHeader, const char *aServerTime, nsIChannel *aChannel, bool aFromHttp);
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void SetCookieStringInternal(nsIURI *aHostURI, bool aIsForeign, nsDependentCString &aCookieHeader, const nsCString &aServerTime, bool aFromHttp);
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bool SetCookieInternal(nsIURI *aHostURI, const nsCString& aBaseDomain, bool aRequireHostMatch, CookieStatus aStatus, nsDependentCString &aCookieHeader, PRInt64 aServerTime, bool aFromHttp);
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void AddInternal(const nsCString& aBaseDomain, nsCookie *aCookie, PRInt64 aCurrentTimeInUsec, nsIURI *aHostURI, const char *aCookieHeader, bool aFromHttp);
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void RemoveCookieFromList(const nsListIter &aIter, mozIStorageBindingParamsArray *aParamsArray = NULL);
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void AddCookieToList(const nsCString& aBaseDomain, nsCookie *aCookie, DBState *aDBState, mozIStorageBindingParamsArray *aParamsArray, bool aWriteToDB = true);
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void UpdateCookieInList(nsCookie *aCookie, PRInt64 aLastAccessed, mozIStorageBindingParamsArray *aParamsArray);
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static bool GetTokenValue(nsASingleFragmentCString::const_char_iterator &aIter, nsASingleFragmentCString::const_char_iterator &aEndIter, nsDependentCSubstring &aTokenString, nsDependentCSubstring &aTokenValue, bool &aEqualsFound);
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static bool ParseAttributes(nsDependentCString &aCookieHeader, nsCookieAttributes &aCookie);
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bool RequireThirdPartyCheck();
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CookieStatus CheckPrefs(nsIURI *aHostURI, bool aIsForeign, const nsCString &aBaseDomain, bool aRequireHostMatch, const char *aCookieHeader);
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bool CheckDomain(nsCookieAttributes &aCookie, nsIURI *aHostURI, const nsCString &aBaseDomain, bool aRequireHostMatch);
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static bool CheckPath(nsCookieAttributes &aCookie, nsIURI *aHostURI);
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static bool GetExpiry(nsCookieAttributes &aCookie, PRInt64 aServerTime, PRInt64 aCurrentTime);
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void RemoveAllFromMemory();
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already_AddRefed<nsIArray> PurgeCookies(PRInt64 aCurrentTimeInUsec);
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bool FindCookie(const nsCString& aBaseDomain, const nsAFlatCString &aHost, const nsAFlatCString &aName, const nsAFlatCString &aPath, nsListIter &aIter);
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static void FindStaleCookie(nsCookieEntry *aEntry, PRInt64 aCurrentTime, nsListIter &aIter);
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void NotifyRejected(nsIURI *aHostURI);
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void NotifyChanged(nsISupports *aSubject, const PRUnichar *aData);
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void NotifyPurged(nsICookie2* aCookie);
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already_AddRefed<nsIArray> CreatePurgeList(nsICookie2* aCookie);
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protected:
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// cached members.
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nsCOMPtr<nsIObserverService> mObserverService;
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nsCOMPtr<nsICookiePermission> mPermissionService;
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nsCOMPtr<mozIThirdPartyUtil> mThirdPartyUtil;
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nsCOMPtr<nsIEffectiveTLDService> mTLDService;
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nsCOMPtr<nsIIDNService> mIDNService;
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nsCOMPtr<mozIStorageService> mStorageService;
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// we have two separate DB states: one for normal browsing and one for
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// private browsing, switching between them as appropriate. this state
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// encapsulates both the in-memory table and the on-disk DB.
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// note that the private states' dbConn should always be null - we never
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// want to be dealing with the on-disk DB when in private browsing.
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DBState *mDBState;
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nsRefPtr<DBState> mDefaultDBState;
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nsRefPtr<DBState> mPrivateDBState;
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// cached prefs
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PRUint8 mCookieBehavior; // BEHAVIOR_{ACCEPT, REJECTFOREIGN, REJECT}
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bool mThirdPartySession;
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PRUint16 mMaxNumberOfCookies;
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PRUint16 mMaxCookiesPerHost;
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PRInt64 mCookiePurgeAge;
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// friends!
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friend PLDHashOperator purgeCookiesCallback(nsCookieEntry *aEntry, void *aArg);
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friend class DBListenerErrorHandler;
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friend class ReadCookieDBListener;
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friend class CloseCookieDBListener;
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static nsCookieService* GetSingleton();
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friend class mozilla::net::CookieServiceParent;
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};
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#endif // nsCookieService_h__
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