зеркало из https://github.com/mozilla/gecko-dev.git
439 строки
15 KiB
C++
439 строки
15 KiB
C++
/* -*- Mode: C++; tab-width: 8; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* vim: set ts=8 sts=2 et sw=2 tw=80: */
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/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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#ifndef mozilla_CycleCollectedJSRuntime_h
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#define mozilla_CycleCollectedJSRuntime_h
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#include "mozilla/CycleCollectedJSContext.h"
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#include "mozilla/DeferredFinalize.h"
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#include "mozilla/HashTable.h"
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#include "mozilla/Maybe.h"
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#include "mozilla/MemoryReporting.h"
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#include "mozilla/RefPtr.h"
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#include "mozilla/SegmentedVector.h"
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#include "jsapi.h"
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#include "jsfriendapi.h"
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#include "js/TypeDecls.h"
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#include "nsCycleCollectionParticipant.h"
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#include "nsTHashMap.h"
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#include "nsHashKeys.h"
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#include "nsStringFwd.h"
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#include "nsTHashSet.h"
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class nsCycleCollectionNoteRootCallback;
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class nsIException;
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class nsWrapperCache;
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namespace mozilla {
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class JSGCThingParticipant : public nsCycleCollectionParticipant {
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public:
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constexpr JSGCThingParticipant() : nsCycleCollectionParticipant(false) {}
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NS_IMETHOD_(void) Root(void*) override {
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MOZ_ASSERT(false, "Don't call Root on GC things");
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}
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NS_IMETHOD_(void) Unlink(void*) override {
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MOZ_ASSERT(false, "Don't call Unlink on GC things, as they may be dead");
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}
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NS_IMETHOD_(void) Unroot(void*) override {
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MOZ_ASSERT(false, "Don't call Unroot on GC things, as they may be dead");
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}
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NS_IMETHOD_(void) DeleteCycleCollectable(void* aPtr) override {
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MOZ_ASSERT(false, "Can't directly delete a cycle collectable GC thing");
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}
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NS_IMETHOD TraverseNative(void* aPtr,
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nsCycleCollectionTraversalCallback& aCb) override;
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NS_DECL_CYCLE_COLLECTION_CLASS_NAME_METHOD(JSGCThingParticipant)
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};
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class JSZoneParticipant : public nsCycleCollectionParticipant {
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public:
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constexpr JSZoneParticipant() : nsCycleCollectionParticipant(false) {}
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NS_IMETHOD_(void) Root(void*) override {
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MOZ_ASSERT(false, "Don't call Root on GC things");
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}
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NS_IMETHOD_(void) Unlink(void*) override {
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MOZ_ASSERT(false, "Don't call Unlink on GC things, as they may be dead");
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}
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NS_IMETHOD_(void) Unroot(void*) override {
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MOZ_ASSERT(false, "Don't call Unroot on GC things, as they may be dead");
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}
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NS_IMETHOD_(void) DeleteCycleCollectable(void*) override {
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MOZ_ASSERT(false, "Can't directly delete a cycle collectable GC thing");
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}
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NS_IMETHOD TraverseNative(void* aPtr,
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nsCycleCollectionTraversalCallback& aCb) override;
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NS_DECL_CYCLE_COLLECTION_CLASS_NAME_METHOD(JSZoneParticipant)
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};
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class IncrementalFinalizeRunnable;
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// A map from JS holders to tracer objects, where the values are stored in
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// SegmentedVector to speed up iteration.
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class JSHolderMap {
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public:
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enum WhichHolders { AllHolders, HoldersInCollectingZones };
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JSHolderMap();
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// Call functor |f| for each holder.
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template <typename F>
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void ForEach(F&& f, WhichHolders aWhich = AllHolders);
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bool Has(void* aHolder) const;
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nsScriptObjectTracer* Get(void* aHolder) const;
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nsScriptObjectTracer* Extract(void* aHolder);
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void Put(void* aHolder, nsScriptObjectTracer* aTracer, JS::Zone* aZone);
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size_t SizeOfExcludingThis(MallocSizeOf aMallocSizeOf) const;
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private:
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struct Entry {
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void* mHolder;
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nsScriptObjectTracer* mTracer;
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#ifdef DEBUG
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JS::Zone* mZone;
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#endif
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Entry();
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Entry(void* aHolder, nsScriptObjectTracer* aTracer, JS::Zone* aZone);
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};
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using EntryMap = mozilla::HashMap<void*, Entry*, DefaultHasher<void*>,
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InfallibleAllocPolicy>;
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using EntryVector = SegmentedVector<Entry, 256, InfallibleAllocPolicy>;
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using EntryVectorMap =
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mozilla::HashMap<JS::Zone*, UniquePtr<EntryVector>,
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DefaultHasher<JS::Zone*>, InfallibleAllocPolicy>;
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template <typename F>
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void ForEach(EntryVector& aJSHolders, const F& f, JS::Zone* aZone);
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bool RemoveEntry(EntryVector& aJSHolders, Entry* aEntry);
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// A map from a holder pointer to a pointer to an entry in a vector.
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EntryMap mJSHolderMap;
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// A vector of holders not associated with a particular zone or that can
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// contain pointers to GC things in more than one zone.
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EntryVector mAnyZoneJSHolders;
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// A map from a zone to a vector of holders that only contain pointers to GC
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// things in that zone.
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//
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// Currently this will only contain wrapper cache wrappers since these are the
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// only holders to pass a zone parameter through to AddJSHolder.
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EntryVectorMap mPerZoneJSHolders;
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};
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class CycleCollectedJSRuntime {
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friend class JSGCThingParticipant;
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friend class JSZoneParticipant;
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friend class IncrementalFinalizeRunnable;
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friend class CycleCollectedJSContext;
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protected:
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CycleCollectedJSRuntime(JSContext* aMainContext);
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virtual ~CycleCollectedJSRuntime();
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virtual void Shutdown(JSContext* cx);
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size_t SizeOfExcludingThis(mozilla::MallocSizeOf aMallocSizeOf) const;
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void UnmarkSkippableJSHolders();
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virtual void TraverseAdditionalNativeRoots(
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nsCycleCollectionNoteRootCallback& aCb) {}
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virtual void TraceAdditionalNativeGrayRoots(JSTracer* aTracer) {}
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virtual void CustomGCCallback(JSGCStatus aStatus) {}
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virtual void CustomOutOfMemoryCallback() {}
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CycleCollectedJSContext* GetContext() { return mContext; }
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private:
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void DescribeGCThing(bool aIsMarked, JS::GCCellPtr aThing,
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nsCycleCollectionTraversalCallback& aCb) const;
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virtual bool DescribeCustomObjects(JSObject* aObject, const JSClass* aClasp,
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char (&aName)[72]) const {
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return false; // We did nothing.
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}
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void NoteGCThingJSChildren(JS::GCCellPtr aThing,
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nsCycleCollectionTraversalCallback& aCb) const;
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void NoteGCThingXPCOMChildren(const JSClass* aClasp, JSObject* aObj,
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nsCycleCollectionTraversalCallback& aCb) const;
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virtual bool NoteCustomGCThingXPCOMChildren(
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const JSClass* aClasp, JSObject* aObj,
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nsCycleCollectionTraversalCallback& aCb) const {
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return false; // We did nothing.
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}
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enum TraverseSelect { TRAVERSE_CPP, TRAVERSE_FULL };
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void TraverseGCThing(TraverseSelect aTs, JS::GCCellPtr aThing,
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nsCycleCollectionTraversalCallback& aCb);
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void TraverseZone(JS::Zone* aZone, nsCycleCollectionTraversalCallback& aCb);
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static void TraverseObjectShim(void* aData, JS::GCCellPtr aThing,
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const JS::AutoRequireNoGC& nogc);
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void TraverseNativeRoots(nsCycleCollectionNoteRootCallback& aCb);
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static void TraceBlackJS(JSTracer* aTracer, void* aData);
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static void TraceGrayJS(JSTracer* aTracer, void* aData);
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static void GCCallback(JSContext* aContext, JSGCStatus aStatus,
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JS::GCReason aReason, void* aData);
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static void GCSliceCallback(JSContext* aContext, JS::GCProgress aProgress,
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const JS::GCDescription& aDesc);
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static void GCNurseryCollectionCallback(JSContext* aContext,
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JS::GCNurseryProgress aProgress,
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JS::GCReason aReason);
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static void OutOfMemoryCallback(JSContext* aContext, void* aData);
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static bool ContextCallback(JSContext* aCx, unsigned aOperation, void* aData);
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static void* BeforeWaitCallback(uint8_t* aMemory);
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static void AfterWaitCallback(void* aCookie);
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virtual void TraceNativeBlackRoots(JSTracer* aTracer){};
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void TraceNativeGrayRoots(JSTracer* aTracer,
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JSHolderMap::WhichHolders aWhich);
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public:
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void FinalizeDeferredThings(
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CycleCollectedJSContext::DeferredFinalizeType aType);
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virtual void PrepareForForgetSkippable() = 0;
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virtual void BeginCycleCollectionCallback() = 0;
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virtual void EndCycleCollectionCallback(CycleCollectorResults& aResults) = 0;
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virtual void DispatchDeferredDeletion(bool aContinuation,
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bool aPurge = false) = 0;
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// Two conditions, JSOutOfMemory and JSLargeAllocationFailure, are noted in
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// crash reports. Here are the values that can appear in the reports:
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enum class OOMState : uint32_t {
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// The condition has never happened. No entry appears in the crash report.
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OK,
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// We are currently reporting the given condition.
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//
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// Suppose a crash report contains "JSLargeAllocationFailure:
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// Reporting". This means we crashed while executing memory-pressure
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// observers, trying to shake loose some memory. The large allocation in
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// question did not return null: it is still on the stack. Had we not
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// crashed, it would have been retried.
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Reporting,
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// The condition has been reported since the last GC.
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//
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// If a crash report contains "JSOutOfMemory: Reported", that means a small
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// allocation failed, and then we crashed, probably due to buggy
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// error-handling code that ran after allocation returned null.
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//
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// This contrasts with "Reporting" which means that no error-handling code
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// had executed yet.
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Reported,
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// The condition has happened, but a GC cycle ended since then.
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//
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// GC is taken as a proxy for "we've been banging on the heap a good bit
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// now and haven't crashed; the OOM was probably handled correctly".
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Recovered
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};
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const char* OOMStateToString(const OOMState aOomState) const;
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void SetLargeAllocationFailure(OOMState aNewState);
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void AnnotateAndSetOutOfMemory(OOMState* aStatePtr, OOMState aNewState);
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void OnGC(JSContext* aContext, JSGCStatus aStatus, JS::GCReason aReason);
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void OnOutOfMemory();
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void OnLargeAllocationFailure();
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JSRuntime* Runtime() { return mJSRuntime; }
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const JSRuntime* Runtime() const { return mJSRuntime; }
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bool HasPendingIdleGCTask() const {
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// Idle GC task associates with JSRuntime.
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MOZ_ASSERT_IF(mHasPendingIdleGCTask, Runtime());
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return mHasPendingIdleGCTask;
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}
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void SetPendingIdleGCTask() {
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// Idle GC task associates with JSRuntime.
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MOZ_ASSERT(Runtime());
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mHasPendingIdleGCTask = true;
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}
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void ClearPendingIdleGCTask() { mHasPendingIdleGCTask = false; }
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void RunIdleTimeGCTask() {
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if (HasPendingIdleGCTask()) {
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JS::RunIdleTimeGCTask(Runtime());
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ClearPendingIdleGCTask();
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}
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}
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bool IsIdleGCTaskNeeded() {
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return !HasPendingIdleGCTask() && Runtime() &&
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JS::IsIdleGCTaskNeeded(Runtime());
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}
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public:
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void AddJSHolder(void* aHolder, nsScriptObjectTracer* aTracer,
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JS::Zone* aZone);
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void RemoveJSHolder(void* aHolder);
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#ifdef DEBUG
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void AssertNoObjectsToTrace(void* aPossibleJSHolder);
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#endif
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nsCycleCollectionParticipant* GCThingParticipant();
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nsCycleCollectionParticipant* ZoneParticipant();
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nsresult TraverseRoots(nsCycleCollectionNoteRootCallback& aCb);
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virtual bool UsefulToMergeZones() const;
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void FixWeakMappingGrayBits() const;
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void CheckGrayBits() const;
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bool AreGCGrayBitsValid() const;
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void GarbageCollect(JS::GCReason aReason) const;
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// This needs to be an nsWrapperCache, not a JSObject, because we need to know
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// when our object gets moved. But we can't trace it (and hence update our
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// storage), because we do not want to keep it alive. nsWrapperCache handles
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// this for us via its "object moved" handling.
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void NurseryWrapperAdded(nsWrapperCache* aCache);
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void NurseryWrapperPreserved(JSObject* aWrapper);
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void JSObjectsTenured();
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void DeferredFinalize(DeferredFinalizeAppendFunction aAppendFunc,
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DeferredFinalizeFunction aFunc, void* aThing);
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void DeferredFinalize(nsISupports* aSupports);
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void DumpJSHeap(FILE* aFile);
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// Add aZone to the set of zones waiting for a GC.
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void AddZoneWaitingForGC(JS::Zone* aZone) {
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mZonesWaitingForGC.Insert(aZone);
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}
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static void OnZoneDestroyed(JSFreeOp* aFop, JS::Zone* aZone);
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// Prepare any zones for GC that have been passed to AddZoneWaitingForGC()
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// since the last GC or since the last call to PrepareWaitingZonesForGC(),
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// whichever was most recent. If there were no such zones, prepare for a
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// full GC.
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void PrepareWaitingZonesForGC();
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// Get the current thread's CycleCollectedJSRuntime. Returns null if there
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// isn't one.
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static CycleCollectedJSRuntime* Get();
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void SetContext(CycleCollectedJSContext* aContext);
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#ifdef NIGHTLY_BUILD
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bool GetRecentDevError(JSContext* aContext,
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JS::MutableHandle<JS::Value> aError);
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void ClearRecentDevError();
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#endif // defined(NIGHTLY_BUILD)
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private:
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CycleCollectedJSContext* mContext;
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JSGCThingParticipant mGCThingCycleCollectorGlobal;
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JSZoneParticipant mJSZoneCycleCollectorGlobal;
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JSRuntime* mJSRuntime;
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bool mHasPendingIdleGCTask;
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JS::GCSliceCallback mPrevGCSliceCallback;
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JS::GCNurseryCollectionCallback mPrevGCNurseryCollectionCallback;
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mozilla::TimeStamp mLatestNurseryCollectionStart;
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JSHolderMap mJSHolders;
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typedef nsTHashMap<nsFuncPtrHashKey<DeferredFinalizeFunction>, void*>
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DeferredFinalizerTable;
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DeferredFinalizerTable mDeferredFinalizerTable;
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RefPtr<IncrementalFinalizeRunnable> mFinalizeRunnable;
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OOMState mOutOfMemoryState;
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OOMState mLargeAllocationFailureState;
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static const size_t kSegmentSize = 512;
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SegmentedVector<nsWrapperCache*, kSegmentSize, InfallibleAllocPolicy>
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mNurseryObjects;
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SegmentedVector<JS::PersistentRooted<JSObject*>, kSegmentSize,
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InfallibleAllocPolicy>
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mPreservedNurseryObjects;
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nsTHashSet<JS::Zone*> mZonesWaitingForGC;
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struct EnvironmentPreparer : public js::ScriptEnvironmentPreparer {
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void invoke(JS::HandleObject global, Closure& closure) override;
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};
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EnvironmentPreparer mEnvironmentPreparer;
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#ifdef DEBUG
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bool mShutdownCalled;
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#endif
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#ifdef NIGHTLY_BUILD
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// Implementation of the error interceptor.
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// Built on nightly only to avoid any possible performance impact on release
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struct ErrorInterceptor final : public JSErrorInterceptor {
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virtual void interceptError(JSContext* cx, JS::HandleValue exn) override;
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void Shutdown(JSRuntime* rt);
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// Copy of the details of the exception.
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// We store this rather than the exception itself to avoid dealing with
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// complicated garbage-collection scenarios, e.g. a JSContext being killed
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// while we still hold onto an exception thrown from it.
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struct ErrorDetails {
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nsString mFilename;
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nsString mMessage;
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nsString mStack;
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JSExnType mType;
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uint32_t mLine;
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uint32_t mColumn;
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};
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// If we have encountered at least one developer error,
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// the first error we have encountered. Otherwise, or
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// if we have reset since the latest error, `None`.
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Maybe<ErrorDetails> mThrownError;
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};
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ErrorInterceptor mErrorInterceptor;
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#endif // defined(NIGHTLY_BUILD)
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};
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void TraceScriptHolder(nsISupports* aHolder, JSTracer* aTracer);
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} // namespace mozilla
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#endif // mozilla_CycleCollectedJSRuntime_h
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