зеркало из https://github.com/mozilla/gecko-dev.git
580 строки
17 KiB
C++
580 строки
17 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 "mozilla/dom/cache/CacheStorage.h"
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#include "mozilla/Unused.h"
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#include "mozilla/dom/CacheStorageBinding.h"
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#include "mozilla/dom/Promise.h"
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#include "mozilla/dom/Response.h"
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#include "mozilla/dom/cache/AutoUtils.h"
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#include "mozilla/dom/cache/Cache.h"
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#include "mozilla/dom/cache/CacheChild.h"
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#include "mozilla/dom/cache/CacheStorageChild.h"
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#include "mozilla/dom/cache/CacheWorkerHolder.h"
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#include "mozilla/dom/cache/PCacheChild.h"
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#include "mozilla/dom/cache/ReadStream.h"
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#include "mozilla/dom/cache/TypeUtils.h"
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#include "mozilla/ipc/BackgroundChild.h"
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#include "mozilla/ipc/BackgroundUtils.h"
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#include "mozilla/ipc/PBackgroundChild.h"
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#include "mozilla/ipc/PBackgroundSharedTypes.h"
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#include "nsContentUtils.h"
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#include "nsIDocument.h"
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#include "nsIGlobalObject.h"
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#include "nsIScriptSecurityManager.h"
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#include "nsURLParsers.h"
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#include "WorkerPrivate.h"
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namespace mozilla {
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namespace dom {
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namespace cache {
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using mozilla::Unused;
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using mozilla::ErrorResult;
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using mozilla::dom::workers::WorkerPrivate;
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using mozilla::ipc::BackgroundChild;
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using mozilla::ipc::PBackgroundChild;
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using mozilla::ipc::IProtocol;
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using mozilla::ipc::PrincipalInfo;
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using mozilla::ipc::PrincipalToPrincipalInfo;
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NS_IMPL_CYCLE_COLLECTING_ADDREF(mozilla::dom::cache::CacheStorage);
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NS_IMPL_CYCLE_COLLECTING_RELEASE(mozilla::dom::cache::CacheStorage);
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NS_IMPL_CYCLE_COLLECTION_WRAPPERCACHE(mozilla::dom::cache::CacheStorage,
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mGlobal);
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NS_INTERFACE_MAP_BEGIN_CYCLE_COLLECTION(CacheStorage)
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NS_WRAPPERCACHE_INTERFACE_MAP_ENTRY
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NS_INTERFACE_MAP_ENTRY(nsISupports)
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NS_INTERFACE_MAP_END
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// We cannot reference IPC types in a webidl binding implementation header. So
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// define this in the .cpp.
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struct CacheStorage::Entry final
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{
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RefPtr<Promise> mPromise;
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CacheOpArgs mArgs;
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// We cannot add the requests until after the actor is present. So store
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// the request data separately for now.
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RefPtr<InternalRequest> mRequest;
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};
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namespace {
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bool
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IsTrusted(const PrincipalInfo& aPrincipalInfo, bool aTestingPrefEnabled)
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{
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// Can happen on main thread or worker thread
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if (aPrincipalInfo.type() == PrincipalInfo::TSystemPrincipalInfo) {
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return true;
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}
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// Require a ContentPrincipal to avoid null principal, etc.
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if (NS_WARN_IF(aPrincipalInfo.type() != PrincipalInfo::TContentPrincipalInfo)) {
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return false;
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}
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// If we're in testing mode, then don't do any more work to determing if
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// the origin is trusted. We have to run some tests as http.
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if (aTestingPrefEnabled) {
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return true;
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}
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// Now parse the scheme of the principal's origin. This is a short term
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// method for determining "trust". In the long term we need to implement
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// the full algorithm here:
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//
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// https://w3c.github.io/webappsec/specs/powerfulfeatures/#settings-secure
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//
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// TODO: Implement full secure setting algorithm. (bug 1177856)
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const nsCString& flatURL = aPrincipalInfo.get_ContentPrincipalInfo().spec();
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const char* url = flatURL.get();
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// off the main thread URL parsing using nsStdURLParser.
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nsCOMPtr<nsIURLParser> urlParser = new nsStdURLParser();
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uint32_t schemePos;
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int32_t schemeLen;
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uint32_t authPos;
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int32_t authLen;
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nsresult rv = urlParser->ParseURL(url, flatURL.Length(),
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&schemePos, &schemeLen,
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&authPos, &authLen,
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nullptr, nullptr); // ignore path
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if (NS_WARN_IF(NS_FAILED(rv))) { return false; }
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nsAutoCString scheme(Substring(flatURL, schemePos, schemeLen));
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if (scheme.LowerCaseEqualsLiteral("https") ||
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scheme.LowerCaseEqualsLiteral("file")) {
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return true;
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}
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uint32_t hostPos;
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int32_t hostLen;
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rv = urlParser->ParseAuthority(url + authPos, authLen,
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nullptr, nullptr, // ignore username
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nullptr, nullptr, // ignore password
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&hostPos, &hostLen,
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nullptr); // ignore port
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if (NS_WARN_IF(NS_FAILED(rv))) { return false; }
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nsDependentCSubstring hostname(url + authPos + hostPos, hostLen);
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return hostname.EqualsLiteral("localhost") ||
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hostname.EqualsLiteral("127.0.0.1") ||
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hostname.EqualsLiteral("::1");
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}
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} // namespace
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// static
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already_AddRefed<CacheStorage>
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CacheStorage::CreateOnMainThread(Namespace aNamespace, nsIGlobalObject* aGlobal,
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nsIPrincipal* aPrincipal, bool aStorageDisabled,
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bool aForceTrustedOrigin, ErrorResult& aRv)
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{
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MOZ_DIAGNOSTIC_ASSERT(aGlobal);
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MOZ_DIAGNOSTIC_ASSERT(aPrincipal);
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MOZ_ASSERT(NS_IsMainThread());
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if (aStorageDisabled) {
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NS_WARNING("CacheStorage has been disabled.");
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RefPtr<CacheStorage> ref = new CacheStorage(NS_ERROR_DOM_SECURITY_ERR);
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return ref.forget();
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}
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PrincipalInfo principalInfo;
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nsresult rv = PrincipalToPrincipalInfo(aPrincipal, &principalInfo);
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if (NS_WARN_IF(NS_FAILED(rv))) {
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aRv.Throw(rv);
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return nullptr;
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}
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bool testingEnabled = aForceTrustedOrigin ||
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Preferences::GetBool("dom.caches.testing.enabled", false) ||
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Preferences::GetBool("dom.serviceWorkers.testing.enabled", false);
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if (!IsTrusted(principalInfo, testingEnabled)) {
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NS_WARNING("CacheStorage not supported on untrusted origins.");
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RefPtr<CacheStorage> ref = new CacheStorage(NS_ERROR_DOM_SECURITY_ERR);
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return ref.forget();
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}
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RefPtr<CacheStorage> ref = new CacheStorage(aNamespace, aGlobal,
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principalInfo, nullptr);
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return ref.forget();
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}
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// static
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already_AddRefed<CacheStorage>
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CacheStorage::CreateOnWorker(Namespace aNamespace, nsIGlobalObject* aGlobal,
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WorkerPrivate* aWorkerPrivate, ErrorResult& aRv)
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{
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MOZ_DIAGNOSTIC_ASSERT(aGlobal);
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MOZ_DIAGNOSTIC_ASSERT(aWorkerPrivate);
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aWorkerPrivate->AssertIsOnWorkerThread();
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if (!aWorkerPrivate->IsStorageAllowed()) {
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NS_WARNING("CacheStorage is not allowed.");
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RefPtr<CacheStorage> ref = new CacheStorage(NS_ERROR_DOM_SECURITY_ERR);
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return ref.forget();
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}
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if (aWorkerPrivate->GetOriginAttributes().mPrivateBrowsingId > 0) {
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NS_WARNING("CacheStorage not supported during private browsing.");
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RefPtr<CacheStorage> ref = new CacheStorage(NS_ERROR_DOM_SECURITY_ERR);
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return ref.forget();
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}
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RefPtr<CacheWorkerHolder> workerHolder =
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CacheWorkerHolder::Create(aWorkerPrivate,
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CacheWorkerHolder::AllowIdleShutdownStart);
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if (!workerHolder) {
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NS_WARNING("Worker thread is shutting down.");
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aRv.Throw(NS_ERROR_FAILURE);
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return nullptr;
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}
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const PrincipalInfo& principalInfo = aWorkerPrivate->GetPrincipalInfo();
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// We have a number of cases where we want to skip the https scheme
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// validation:
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//
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// 1) Any worker when dom.caches.testing.enabled pref is true.
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// 2) Any worker when dom.serviceWorkers.testing.enabled pref is true. This
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// is mainly because most sites using SWs will expect Cache to work if
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// SWs are enabled.
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// 3) If the window that created this worker has the devtools SW testing
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// option enabled. Same reasoning as (2).
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// 4) If the worker itself is a ServiceWorker, then we always skip the
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// origin checks. The ServiceWorker has its own trusted origin checks
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// that are better than ours. In addition, we don't have information
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// about the window any more, so we can't do our own checks.
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bool testingEnabled = aWorkerPrivate->DOMCachesTestingEnabled() ||
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aWorkerPrivate->ServiceWorkersTestingEnabled() ||
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aWorkerPrivate->ServiceWorkersTestingInWindow() ||
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aWorkerPrivate->IsServiceWorker();
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if (!IsTrusted(principalInfo, testingEnabled)) {
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NS_WARNING("CacheStorage not supported on untrusted origins.");
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RefPtr<CacheStorage> ref = new CacheStorage(NS_ERROR_DOM_SECURITY_ERR);
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return ref.forget();
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}
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RefPtr<CacheStorage> ref = new CacheStorage(aNamespace, aGlobal,
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principalInfo, workerHolder);
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return ref.forget();
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}
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// static
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bool
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CacheStorage::DefineCaches(JSContext* aCx, JS::Handle<JSObject*> aGlobal)
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{
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MOZ_ASSERT(NS_IsMainThread());
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MOZ_DIAGNOSTIC_ASSERT(js::GetObjectClass(aGlobal)->flags & JSCLASS_DOM_GLOBAL,
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"Passed object is not a global object!");
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js::AssertSameCompartment(aCx, aGlobal);
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if (NS_WARN_IF(!CacheStorageBinding::GetConstructorObject(aCx) ||
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!CacheBinding::GetConstructorObject(aCx))) {
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return false;
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}
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nsIPrincipal* principal = nsContentUtils::ObjectPrincipal(aGlobal);
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MOZ_DIAGNOSTIC_ASSERT(principal);
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ErrorResult rv;
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RefPtr<CacheStorage> storage =
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CreateOnMainThread(DEFAULT_NAMESPACE, xpc::NativeGlobal(aGlobal), principal,
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false, /* private browsing */
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true, /* force trusted */
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rv);
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if (NS_WARN_IF(rv.MaybeSetPendingException(aCx))) {
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return false;
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}
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JS::Rooted<JS::Value> caches(aCx);
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if (NS_WARN_IF(!ToJSValue(aCx, storage, &caches))) {
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return false;
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}
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return JS_DefineProperty(aCx, aGlobal, "caches", caches, JSPROP_ENUMERATE);
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}
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CacheStorage::CacheStorage(Namespace aNamespace, nsIGlobalObject* aGlobal,
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const PrincipalInfo& aPrincipalInfo,
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CacheWorkerHolder* aWorkerHolder)
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: mNamespace(aNamespace)
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, mGlobal(aGlobal)
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, mPrincipalInfo(MakeUnique<PrincipalInfo>(aPrincipalInfo))
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, mActor(nullptr)
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, mStatus(NS_OK)
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{
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MOZ_DIAGNOSTIC_ASSERT(mGlobal);
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// If the PBackground actor is already initialized then we can
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// immediately use it
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PBackgroundChild* actor = BackgroundChild::GetOrCreateForCurrentThread();
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if (NS_WARN_IF(!actor)) {
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mStatus = NS_ERROR_UNEXPECTED;
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return;
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}
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// WorkerHolder ownership is passed to the CacheStorageChild actor and any
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// actors it may create. The WorkerHolder will keep the worker thread alive
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// until the actors can gracefully shutdown.
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CacheStorageChild* newActor = new CacheStorageChild(this, aWorkerHolder);
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PCacheStorageChild* constructedActor =
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actor->SendPCacheStorageConstructor(newActor, mNamespace, *mPrincipalInfo);
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if (NS_WARN_IF(!constructedActor)) {
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mStatus = NS_ERROR_UNEXPECTED;
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return;
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}
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MOZ_DIAGNOSTIC_ASSERT(constructedActor == newActor);
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mActor = newActor;
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}
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CacheStorage::CacheStorage(nsresult aFailureResult)
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: mNamespace(INVALID_NAMESPACE)
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, mActor(nullptr)
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, mStatus(aFailureResult)
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{
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MOZ_DIAGNOSTIC_ASSERT(NS_FAILED(mStatus));
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}
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already_AddRefed<Promise>
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CacheStorage::Match(JSContext* aCx, const RequestOrUSVString& aRequest,
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const CacheQueryOptions& aOptions, ErrorResult& aRv)
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{
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NS_ASSERT_OWNINGTHREAD(CacheStorage);
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if (NS_WARN_IF(NS_FAILED(mStatus))) {
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aRv.Throw(mStatus);
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return nullptr;
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}
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RefPtr<InternalRequest> request =
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ToInternalRequest(aCx, aRequest, IgnoreBody, aRv);
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if (NS_WARN_IF(aRv.Failed())) {
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return nullptr;
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}
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RefPtr<Promise> promise = Promise::Create(mGlobal, aRv);
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if (NS_WARN_IF(!promise)) {
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return nullptr;
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}
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CacheQueryParams params;
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ToCacheQueryParams(params, aOptions);
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nsAutoPtr<Entry> entry(new Entry());
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entry->mPromise = promise;
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entry->mArgs = StorageMatchArgs(CacheRequest(), params, GetOpenMode());
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entry->mRequest = request;
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RunRequest(Move(entry));
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return promise.forget();
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}
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already_AddRefed<Promise>
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CacheStorage::Has(const nsAString& aKey, ErrorResult& aRv)
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{
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NS_ASSERT_OWNINGTHREAD(CacheStorage);
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if (NS_WARN_IF(NS_FAILED(mStatus))) {
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aRv.Throw(mStatus);
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return nullptr;
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}
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RefPtr<Promise> promise = Promise::Create(mGlobal, aRv);
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if (NS_WARN_IF(!promise)) {
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return nullptr;
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}
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nsAutoPtr<Entry> entry(new Entry());
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entry->mPromise = promise;
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entry->mArgs = StorageHasArgs(nsString(aKey));
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RunRequest(Move(entry));
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return promise.forget();
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}
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already_AddRefed<Promise>
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CacheStorage::Open(const nsAString& aKey, ErrorResult& aRv)
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{
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NS_ASSERT_OWNINGTHREAD(CacheStorage);
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if (NS_WARN_IF(NS_FAILED(mStatus))) {
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aRv.Throw(mStatus);
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return nullptr;
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}
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RefPtr<Promise> promise = Promise::Create(mGlobal, aRv);
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if (NS_WARN_IF(!promise)) {
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return nullptr;
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}
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nsAutoPtr<Entry> entry(new Entry());
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entry->mPromise = promise;
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entry->mArgs = StorageOpenArgs(nsString(aKey));
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RunRequest(Move(entry));
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return promise.forget();
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}
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already_AddRefed<Promise>
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CacheStorage::Delete(const nsAString& aKey, ErrorResult& aRv)
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{
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NS_ASSERT_OWNINGTHREAD(CacheStorage);
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if (NS_WARN_IF(NS_FAILED(mStatus))) {
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aRv.Throw(mStatus);
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return nullptr;
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}
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RefPtr<Promise> promise = Promise::Create(mGlobal, aRv);
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if (NS_WARN_IF(!promise)) {
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return nullptr;
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}
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nsAutoPtr<Entry> entry(new Entry());
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entry->mPromise = promise;
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entry->mArgs = StorageDeleteArgs(nsString(aKey));
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RunRequest(Move(entry));
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return promise.forget();
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}
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already_AddRefed<Promise>
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CacheStorage::Keys(ErrorResult& aRv)
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{
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NS_ASSERT_OWNINGTHREAD(CacheStorage);
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if (NS_WARN_IF(NS_FAILED(mStatus))) {
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aRv.Throw(mStatus);
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return nullptr;
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}
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RefPtr<Promise> promise = Promise::Create(mGlobal, aRv);
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if (NS_WARN_IF(!promise)) {
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return nullptr;
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}
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nsAutoPtr<Entry> entry(new Entry());
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entry->mPromise = promise;
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entry->mArgs = StorageKeysArgs();
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RunRequest(Move(entry));
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return promise.forget();
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}
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// static
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bool
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CacheStorage::PrefEnabled(JSContext* aCx, JSObject* aObj)
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{
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return Cache::PrefEnabled(aCx, aObj);
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}
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// static
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already_AddRefed<CacheStorage>
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CacheStorage::Constructor(const GlobalObject& aGlobal,
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CacheStorageNamespace aNamespace,
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nsIPrincipal* aPrincipal, ErrorResult& aRv)
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{
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if (NS_WARN_IF(!NS_IsMainThread())) {
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aRv.Throw(NS_ERROR_FAILURE);
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return nullptr;
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}
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// TODO: remove Namespace in favor of CacheStorageNamespace
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static_assert(DEFAULT_NAMESPACE == (uint32_t)CacheStorageNamespace::Content,
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"Default namespace should match webidl Content enum");
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static_assert(CHROME_ONLY_NAMESPACE == (uint32_t)CacheStorageNamespace::Chrome,
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"Chrome namespace should match webidl Chrome enum");
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static_assert(NUMBER_OF_NAMESPACES == (uint32_t)CacheStorageNamespace::EndGuard_,
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"Number of namespace should match webidl endguard enum");
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Namespace ns = static_cast<Namespace>(aNamespace);
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nsCOMPtr<nsIGlobalObject> global = do_QueryInterface(aGlobal.GetAsSupports());
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bool privateBrowsing = false;
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if (nsCOMPtr<nsPIDOMWindowInner> window = do_QueryInterface(global)) {
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nsCOMPtr<nsIDocument> doc = window->GetExtantDoc();
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if (doc) {
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nsCOMPtr<nsILoadContext> loadContext = doc->GetLoadContext();
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privateBrowsing = loadContext && loadContext->UsePrivateBrowsing();
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}
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}
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// Create a CacheStorage object bypassing the trusted origin checks
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// since this is a chrome-only constructor.
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return CreateOnMainThread(ns, global, aPrincipal, privateBrowsing,
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true /* force trusted origin */, aRv);
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}
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nsISupports*
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CacheStorage::GetParentObject() const
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{
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return mGlobal;
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}
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JSObject*
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CacheStorage::WrapObject(JSContext* aContext, JS::Handle<JSObject*> aGivenProto)
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{
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return mozilla::dom::CacheStorageBinding::Wrap(aContext, this, aGivenProto);
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}
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void
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CacheStorage::DestroyInternal(CacheStorageChild* aActor)
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{
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NS_ASSERT_OWNINGTHREAD(CacheStorage);
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MOZ_DIAGNOSTIC_ASSERT(mActor);
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MOZ_DIAGNOSTIC_ASSERT(mActor == aActor);
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MOZ_DIAGNOSTIC_ASSERT(!NS_FAILED(mStatus));
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mActor->ClearListener();
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mActor = nullptr;
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mStatus = NS_ERROR_UNEXPECTED;
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// Note that we will never get an actor again in case another request is
|
|
// made before this object is destructed.
|
|
}
|
|
|
|
nsIGlobalObject*
|
|
CacheStorage::GetGlobalObject() const
|
|
{
|
|
return mGlobal;
|
|
}
|
|
|
|
#ifdef DEBUG
|
|
void
|
|
CacheStorage::AssertOwningThread() const
|
|
{
|
|
NS_ASSERT_OWNINGTHREAD(CacheStorage);
|
|
}
|
|
#endif
|
|
|
|
PBackgroundChild*
|
|
CacheStorage::GetIPCManager()
|
|
{
|
|
// This is true because CacheStorage always uses IgnoreBody for requests.
|
|
// So we should never need to get the IPC manager during Request or
|
|
// Response serialization.
|
|
MOZ_CRASH("CacheStorage does not implement TypeUtils::GetIPCManager()");
|
|
}
|
|
|
|
CacheStorage::~CacheStorage()
|
|
{
|
|
NS_ASSERT_OWNINGTHREAD(CacheStorage);
|
|
if (mActor) {
|
|
mActor->StartDestroyFromListener();
|
|
// DestroyInternal() is called synchronously by StartDestroyFromListener().
|
|
// So we should have already cleared the mActor.
|
|
MOZ_DIAGNOSTIC_ASSERT(!mActor);
|
|
}
|
|
}
|
|
|
|
void
|
|
CacheStorage::RunRequest(nsAutoPtr<Entry>&& aEntry)
|
|
{
|
|
MOZ_ASSERT(mActor);
|
|
|
|
nsAutoPtr<Entry> entry(Move(aEntry));
|
|
|
|
AutoChildOpArgs args(this, entry->mArgs, 1);
|
|
|
|
if (entry->mRequest) {
|
|
ErrorResult rv;
|
|
args.Add(entry->mRequest, IgnoreBody, IgnoreInvalidScheme, rv);
|
|
if (NS_WARN_IF(rv.Failed())) {
|
|
entry->mPromise->MaybeReject(rv);
|
|
return;
|
|
}
|
|
}
|
|
|
|
mActor->ExecuteOp(mGlobal, entry->mPromise, this, args.SendAsOpArgs());
|
|
}
|
|
|
|
OpenMode
|
|
CacheStorage::GetOpenMode() const
|
|
{
|
|
return mNamespace == CHROME_ONLY_NAMESPACE ? OpenMode::Eager : OpenMode::Lazy;
|
|
}
|
|
|
|
} // namespace cache
|
|
} // namespace dom
|
|
} // namespace mozilla
|