зеркало из https://github.com/mozilla/gecko-dev.git
503 строки
18 KiB
C++
503 строки
18 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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#include "QuotaClientImpl.h"
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#include "DBAction.h"
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#include "FileUtilsImpl.h"
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#include "mozilla/dom/cache/DBSchema.h"
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#include "mozilla/dom/cache/Manager.h"
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#include "mozilla/dom/quota/QuotaCommon.h"
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#include "mozilla/dom/quota/QuotaManager.h"
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#include "mozilla/dom/quota/UsageInfo.h"
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#include "mozilla/ipc/BackgroundParent.h"
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#include "mozilla/Telemetry.h"
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#include "mozilla/Unused.h"
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#include "nsIFile.h"
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#include "nsThreadUtils.h"
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namespace mozilla::dom::cache {
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using mozilla::dom::quota::AssertIsOnIOThread;
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using mozilla::dom::quota::Client;
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using mozilla::dom::quota::CloneFileAndAppend;
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using mozilla::dom::quota::DatabaseUsageType;
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using mozilla::dom::quota::GetDirEntryKind;
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using mozilla::dom::quota::GroupAndOrigin;
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using mozilla::dom::quota::nsIFileKind;
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using mozilla::dom::quota::PERSISTENCE_TYPE_DEFAULT;
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using mozilla::dom::quota::PersistenceType;
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using mozilla::dom::quota::QuotaManager;
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using mozilla::dom::quota::UsageInfo;
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using mozilla::ipc::AssertIsOnBackgroundThread;
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namespace {
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template <typename StepFunc>
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Result<UsageInfo, nsresult> ReduceUsageInfo(nsIFile& aDir,
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const Atomic<bool>& aCanceled,
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const StepFunc& aStepFunc) {
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CACHE_TRY_RETURN(quota::ReduceEachFileAtomicCancelable(
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aDir, aCanceled, UsageInfo{},
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[&aStepFunc](UsageInfo usageInfo, const nsCOMPtr<nsIFile>& bodyDir)
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-> Result<UsageInfo, nsresult> {
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CACHE_TRY(OkIf(!QuotaManager::IsShuttingDown()), Err(NS_ERROR_ABORT));
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CACHE_TRY_INSPECT(const auto& stepUsageInfo, aStepFunc(bodyDir));
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return usageInfo + stepUsageInfo;
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}));
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}
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Result<UsageInfo, nsresult> GetBodyUsage(nsIFile& aMorgueDir,
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const Atomic<bool>& aCanceled,
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const bool aInitializing) {
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AssertIsOnIOThread();
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CACHE_TRY_RETURN(ReduceUsageInfo(
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aMorgueDir, aCanceled,
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[aInitializing](
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const nsCOMPtr<nsIFile>& bodyDir) -> Result<UsageInfo, nsresult> {
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CACHE_TRY_INSPECT(const auto& dirEntryKind, GetDirEntryKind(*bodyDir));
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if (dirEntryKind != nsIFileKind::ExistsAsDirectory) {
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if (dirEntryKind == nsIFileKind::ExistsAsFile) {
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const DebugOnly<nsresult> result =
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RemoveNsIFile(QuotaInfo{}, *bodyDir, /* aTrackQuota */ false);
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// Try to remove the unexpected files, and keep moving on even if it
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// fails because it might be created by virus or the operation
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// system
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MOZ_ASSERT(NS_SUCCEEDED(result));
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}
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return UsageInfo{};
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}
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UsageInfo usageInfo;
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const auto getUsage =
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[&usageInfo](nsIFile& bodyFile,
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const nsACString& leafName) -> Result<bool, nsresult> {
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Unused << leafName;
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CACHE_TRY_INSPECT(const int64_t& fileSize,
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MOZ_TO_RESULT_INVOKE(bodyFile, GetFileSize));
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MOZ_DIAGNOSTIC_ASSERT(fileSize >= 0);
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// FIXME: Separate file usage and database usage in OriginInfo so that
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// the workaround for treating body file size as database usage can be
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// removed.
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//
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// This is needed because we want to remove the mutex lock for padding
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// files. The lock is needed because the padding file is accessed on
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// the QM IO thread while getting origin usage and is accessed on the
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// Cache IO thread in normal Cache operations. Using the cached usage
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// in QM while getting origin usage can remove the access on the QM IO
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// thread and thus we can remove the mutex lock. However, QM only
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// separates usage types in initialization, and the separation is gone
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// after that. So, before extending the separation of usage types in
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// QM, this is a workaround to avoid the file usage mismatching in our
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// tests. Note that file usage hasn't been exposed to users yet.
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usageInfo += DatabaseUsageType(Some(fileSize));
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return false;
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};
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CACHE_TRY(BodyTraverseFiles(QuotaInfo{}, *bodyDir, getUsage,
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/* aCanRemoveFiles */
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aInitializing,
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/* aTrackQuota */ false));
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return usageInfo;
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}));
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}
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Result<int64_t, nsresult> LockedGetPaddingSizeFromDB(
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nsIFile& aDir, const GroupAndOrigin& aGroupAndOrigin) {
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QuotaInfo quotaInfo;
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static_cast<GroupAndOrigin&>(quotaInfo) = aGroupAndOrigin;
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// quotaInfo.mDirectoryLockId must be -1 (which is default for new QuotaInfo)
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// because this method should only be called from QuotaClient::InitOrigin
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// (via QuotaClient::GetUsageForOriginInternal) when the temporary storage
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// hasn't been initialized yet. At that time, the in-memory objects (e.g.
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// OriginInfo) are only being created so it doesn't make sense to tunnel
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// quota information to TelemetryVFS to get corresponding QuotaObject instance
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// for the SQLite file).
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MOZ_DIAGNOSTIC_ASSERT(quotaInfo.mDirectoryLockId == -1);
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CACHE_TRY_INSPECT(const auto& dbFile,
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CloneFileAndAppend(aDir, kCachesSQLiteFilename));
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CACHE_TRY_INSPECT(const bool& exists, MOZ_TO_RESULT_INVOKE(dbFile, Exists));
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// Return size = 0 if caches.sqlite doesn't exist.
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// This function is only called if the value of the padding size couldn't be
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// determined from the padding file, possibly because it doesn't exist, or a
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// leftover temporary padding file was found.
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// There is no other way to get the overall padding size of an origin.
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if (!exists) {
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return 0;
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}
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CACHE_TRY_INSPECT(const auto& conn, OpenDBConnection(quotaInfo, *dbFile));
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// Make sure that the database has the latest schema before we try to read
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// from it. We have to do this because LockedGetPaddingSizeFromDB is called
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// by QuotaClient::GetUsageForOrigin which may run at any time (there's no
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// guarantee that SetupAction::RunSyncWithDBOnTarget already checked the
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// schema for the given origin).
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CACHE_TRY(db::CreateOrMigrateSchema(*conn));
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CACHE_TRY_RETURN(LockedDirectoryPaddingRestore(aDir, *conn,
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/* aMustRestore */ false));
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}
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} // namespace
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const nsLiteralString kCachesSQLiteFilename = u"caches.sqlite"_ns;
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CacheQuotaClient::CacheQuotaClient()
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: mDirPaddingFileMutex("DOMCacheQuotaClient.mDirPaddingFileMutex") {
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AssertIsOnBackgroundThread();
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MOZ_DIAGNOSTIC_ASSERT(!sInstance);
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sInstance = this;
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}
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// static
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CacheQuotaClient* CacheQuotaClient::Get() {
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MOZ_DIAGNOSTIC_ASSERT(sInstance);
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return sInstance;
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}
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CacheQuotaClient::Type CacheQuotaClient::GetType() { return DOMCACHE; }
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Result<UsageInfo, nsresult> CacheQuotaClient::InitOrigin(
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PersistenceType aPersistenceType, const GroupAndOrigin& aGroupAndOrigin,
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const AtomicBool& aCanceled) {
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AssertIsOnIOThread();
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return GetUsageForOriginInternal(aPersistenceType, aGroupAndOrigin, aCanceled,
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/* aInitializing*/ true);
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}
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nsresult CacheQuotaClient::InitOriginWithoutTracking(
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PersistenceType aPersistenceType, const GroupAndOrigin& aGroupAndOrigin,
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const AtomicBool& aCanceled) {
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AssertIsOnIOThread();
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// This is called when a storage/permanent/chrome/cache directory exists. Even
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// though this shouldn't happen with a "good" profile, we shouldn't return an
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// error here, since that would cause origin initialization to fail. We just
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// warn and otherwise ignore that.
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UNKNOWN_FILE_WARNING(NS_LITERAL_STRING_FROM_CSTRING(DOMCACHE_DIRECTORY_NAME));
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return NS_OK;
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}
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Result<UsageInfo, nsresult> CacheQuotaClient::GetUsageForOrigin(
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PersistenceType aPersistenceType, const GroupAndOrigin& aGroupAndOrigin,
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const AtomicBool& aCanceled) {
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AssertIsOnIOThread();
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return GetUsageForOriginInternal(aPersistenceType, aGroupAndOrigin, aCanceled,
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/* aInitializing*/ false);
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}
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void CacheQuotaClient::OnOriginClearCompleted(PersistenceType aPersistenceType,
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const nsACString& aOrigin) {
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// Nothing to do here.
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}
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void CacheQuotaClient::ReleaseIOThreadObjects() {
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// Nothing to do here as the Context handles cleaning everything up
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// automatically.
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}
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void CacheQuotaClient::AbortOperationsForLocks(
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const DirectoryLockIdTable& aDirectoryLockIds) {
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AssertIsOnBackgroundThread();
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Manager::Abort(aDirectoryLockIds);
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}
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void CacheQuotaClient::AbortOperationsForProcess(
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ContentParentId aContentParentId) {
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// The Cache and Context can be shared by multiple client processes. They
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// are not exclusively owned by a single process.
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//
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// As far as I can tell this is used by QuotaManager to abort operations
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// when a particular process goes away. We definitely don't want this
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// since we are shared. Also, the Cache actor code already properly
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// handles asynchronous actor destruction when the child process dies.
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//
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// Therefore, do nothing here.
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}
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void CacheQuotaClient::AbortAllOperations() {
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AssertIsOnBackgroundThread();
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Manager::AbortAll();
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}
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void CacheQuotaClient::StartIdleMaintenance() {}
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void CacheQuotaClient::StopIdleMaintenance() {}
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void CacheQuotaClient::InitiateShutdown() {
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AssertIsOnBackgroundThread();
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Manager::InitiateShutdown();
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}
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bool CacheQuotaClient::IsShutdownCompleted() const {
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AssertIsOnBackgroundThread();
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return Manager::IsShutdownAllComplete();
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}
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void CacheQuotaClient::ForceKillActors() {
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// Currently we don't implement killing actors (are there any to kill here?).
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}
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nsCString CacheQuotaClient::GetShutdownStatus() const {
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AssertIsOnBackgroundThread();
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return Manager::GetShutdownStatus();
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}
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void CacheQuotaClient::FinalizeShutdown() {
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// Nothing to do here.
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}
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nsresult CacheQuotaClient::UpgradeStorageFrom2_0To2_1(nsIFile* aDirectory) {
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AssertIsOnIOThread();
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MOZ_DIAGNOSTIC_ASSERT(aDirectory);
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MutexAutoLock lock(mDirPaddingFileMutex);
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CACHE_TRY(LockedDirectoryPaddingInit(*aDirectory));
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return NS_OK;
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}
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nsresult CacheQuotaClient::RestorePaddingFileInternal(
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nsIFile* aBaseDir, mozIStorageConnection* aConn) {
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MOZ_ASSERT(!NS_IsMainThread());
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MOZ_DIAGNOSTIC_ASSERT(aBaseDir);
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MOZ_DIAGNOSTIC_ASSERT(aConn);
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MutexAutoLock lock(mDirPaddingFileMutex);
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CACHE_TRY_INSPECT(const int64_t& dummyPaddingSize,
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LockedDirectoryPaddingRestore(*aBaseDir, *aConn,
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/* aMustRestore */ true));
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Unused << dummyPaddingSize;
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return NS_OK;
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}
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nsresult CacheQuotaClient::WipePaddingFileInternal(const QuotaInfo& aQuotaInfo,
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nsIFile* aBaseDir) {
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MOZ_ASSERT(!NS_IsMainThread());
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MOZ_DIAGNOSTIC_ASSERT(aBaseDir);
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MutexAutoLock lock(mDirPaddingFileMutex);
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MOZ_ASSERT(DirectoryPaddingFileExists(*aBaseDir, DirPaddingFile::FILE));
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CACHE_TRY_INSPECT(
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const int64_t& paddingSize, ([&aBaseDir]() -> Result<int64_t, nsresult> {
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const bool temporaryPaddingFileExist =
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DirectoryPaddingFileExists(*aBaseDir, DirPaddingFile::TMP_FILE);
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Maybe<int64_t> directoryPaddingGetResult;
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if (!temporaryPaddingFileExist) {
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CACHE_TRY_UNWRAP(
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directoryPaddingGetResult,
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([&aBaseDir]() -> Result<Maybe<int64_t>, nsresult> {
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CACHE_TRY_RETURN(
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LockedDirectoryPaddingGet(*aBaseDir).map(Some<int64_t>),
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Maybe<int64_t>{});
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}()));
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}
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if (temporaryPaddingFileExist || !directoryPaddingGetResult) {
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// XXXtt: Maybe have a method in the QuotaManager to clean the usage
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// under the quota client and the origin. There is nothing we can do
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// to recover the file.
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NS_WARNING("Cannnot read padding size from file!");
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return 0;
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}
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return *directoryPaddingGetResult;
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}()));
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if (paddingSize > 0) {
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DecreaseUsageForQuotaInfo(aQuotaInfo, paddingSize);
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}
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CACHE_TRY(LockedDirectoryPaddingDeleteFile(*aBaseDir, DirPaddingFile::FILE));
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// Remove temporary file if we have one.
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CACHE_TRY(
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LockedDirectoryPaddingDeleteFile(*aBaseDir, DirPaddingFile::TMP_FILE));
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CACHE_TRY(LockedDirectoryPaddingInit(*aBaseDir));
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return NS_OK;
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}
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CacheQuotaClient::~CacheQuotaClient() {
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AssertIsOnBackgroundThread();
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MOZ_DIAGNOSTIC_ASSERT(sInstance == this);
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sInstance = nullptr;
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}
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Result<UsageInfo, nsresult> CacheQuotaClient::GetUsageForOriginInternal(
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PersistenceType aPersistenceType, const GroupAndOrigin& aGroupAndOrigin,
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const AtomicBool& aCanceled, const bool aInitializing) {
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AssertIsOnIOThread();
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QuotaManager* const qm = QuotaManager::Get();
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MOZ_DIAGNOSTIC_ASSERT(qm);
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CACHE_TRY_INSPECT(
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const auto& dir,
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qm->GetDirectoryForOrigin(aPersistenceType, aGroupAndOrigin.mOrigin));
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CACHE_TRY(
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dir->Append(NS_LITERAL_STRING_FROM_CSTRING(DOMCACHE_DIRECTORY_NAME)));
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CACHE_TRY_INSPECT(
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const auto& maybePaddingSize,
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([this, &dir, aInitializing,
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&aGroupAndOrigin]() -> Result<Maybe<int64_t>, nsresult> {
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// If the temporary file still exists after locking, it means the
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// previous action failed, so restore the padding file.
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MutexAutoLock lock(mDirPaddingFileMutex);
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if (!DirectoryPaddingFileExists(*dir, DirPaddingFile::TMP_FILE)) {
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const auto& maybePaddingSize = [&dir]() -> Maybe<int64_t> {
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CACHE_TRY_RETURN(LockedDirectoryPaddingGet(*dir).map(Some<int64_t>),
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Nothing{});
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}();
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if (maybePaddingSize) {
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return maybePaddingSize;
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}
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}
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if (aInitializing) {
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CACHE_TRY_RETURN(LockedGetPaddingSizeFromDB(*dir, aGroupAndOrigin)
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.map(Some<int64_t>));
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}
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// We can't open the database at this point, since it can be already
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// used by Cache IO thread. Use the cached value instead. (In
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// theory, we could check if the database is actually used by Cache
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// IO thread at this moment, but it's probably not worth additional
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// complexity.)
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return Maybe<int64_t>{};
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}()));
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if (!maybePaddingSize) {
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return qm->GetUsageForClient(PERSISTENCE_TYPE_DEFAULT, aGroupAndOrigin,
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Client::DOMCACHE);
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}
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CACHE_TRY_INSPECT(
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const auto& innerUsageInfo,
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ReduceUsageInfo(
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*dir, aCanceled,
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[&aCanceled, aInitializing](
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const nsCOMPtr<nsIFile>& file) -> Result<UsageInfo, nsresult> {
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CACHE_TRY_INSPECT(
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const auto& leafName,
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MOZ_TO_RESULT_INVOKE_TYPED(nsAutoString, file, GetLeafName));
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CACHE_TRY_INSPECT(const bool& isDir,
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MOZ_TO_RESULT_INVOKE(file, IsDirectory));
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if (isDir) {
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if (leafName.EqualsLiteral("morgue")) {
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CACHE_TRY_RETURN(GetBodyUsage(*file, aCanceled, aInitializing));
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} else {
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NS_WARNING("Unknown Cache directory found!");
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}
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return UsageInfo{};
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}
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// Ignore transient sqlite files and marker files
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if (leafName.EqualsLiteral("caches.sqlite-journal") ||
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leafName.EqualsLiteral("caches.sqlite-shm") ||
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leafName.Find("caches.sqlite-mj"_ns, false, 0, 0) == 0 ||
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leafName.EqualsLiteral("context_open.marker")) {
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return UsageInfo{};
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}
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if (leafName.Equals(kCachesSQLiteFilename) ||
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leafName.EqualsLiteral("caches.sqlite-wal")) {
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CACHE_TRY_INSPECT(const int64_t& fileSize,
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MOZ_TO_RESULT_INVOKE(file, GetFileSize));
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MOZ_DIAGNOSTIC_ASSERT(fileSize >= 0);
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return UsageInfo{DatabaseUsageType(Some(fileSize))};
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}
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// Ignore directory padding file
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if (leafName.EqualsLiteral(PADDING_FILE_NAME) ||
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leafName.EqualsLiteral(PADDING_TMP_FILE_NAME)) {
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return UsageInfo{};
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}
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NS_WARNING("Unknown Cache file found!");
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return UsageInfo{};
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}));
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// FIXME: Separate file usage and database usage in OriginInfo so that the
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// workaround for treating padding file size as database usage can be removed.
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return UsageInfo{DatabaseUsageType(maybePaddingSize)} + innerUsageInfo;
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}
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// static
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CacheQuotaClient* CacheQuotaClient::sInstance = nullptr;
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// static
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already_AddRefed<quota::Client> CreateQuotaClient() {
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AssertIsOnBackgroundThread();
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RefPtr<CacheQuotaClient> ref = new CacheQuotaClient();
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return ref.forget();
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}
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// static
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nsresult RestorePaddingFile(nsIFile* aBaseDir, mozIStorageConnection* aConn) {
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MOZ_ASSERT(!NS_IsMainThread());
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MOZ_DIAGNOSTIC_ASSERT(aBaseDir);
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MOZ_DIAGNOSTIC_ASSERT(aConn);
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RefPtr<CacheQuotaClient> cacheQuotaClient = CacheQuotaClient::Get();
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MOZ_DIAGNOSTIC_ASSERT(cacheQuotaClient);
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CACHE_TRY(cacheQuotaClient->RestorePaddingFileInternal(aBaseDir, aConn));
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return NS_OK;
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}
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// static
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nsresult WipePaddingFile(const QuotaInfo& aQuotaInfo, nsIFile* aBaseDir) {
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MOZ_ASSERT(!NS_IsMainThread());
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MOZ_DIAGNOSTIC_ASSERT(aBaseDir);
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RefPtr<CacheQuotaClient> cacheQuotaClient = CacheQuotaClient::Get();
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MOZ_DIAGNOSTIC_ASSERT(cacheQuotaClient);
|
|
|
|
CACHE_TRY(cacheQuotaClient->WipePaddingFileInternal(aQuotaInfo, aBaseDir));
|
|
|
|
return NS_OK;
|
|
}
|
|
|
|
} // namespace mozilla::dom::cache
|