/**************************************************************************** ** ** Copyright (C) 2014 Digia Plc and/or its subsidiary(-ies). ** Contact: http://www.qt-project.org/legal ** ** This file is part of the QtQml module of the Qt Toolkit. ** ** $QT_BEGIN_LICENSE:LGPL21$ ** Commercial License Usage ** Licensees holding valid commercial Qt licenses may use this file in ** accordance with the commercial license agreement provided with the ** Software or, alternatively, in accordance with the terms contained in ** a written agreement between you and Digia. For licensing terms and ** conditions see http://qt.digia.com/licensing. For further information ** use the contact form at http://qt.digia.com/contact-us. ** ** GNU Lesser General Public License Usage ** Alternatively, this file may be used under the terms of the GNU Lesser ** General Public License version 2.1 or version 3 as published by the Free ** Software Foundation and appearing in the file LICENSE.LGPLv21 and ** LICENSE.LGPLv3 included in the packaging of this file. Please review the ** following information to ensure the GNU Lesser General Public License ** requirements will be met: https://www.gnu.org/licenses/lgpl.html and ** http://www.gnu.org/licenses/old-licenses/lgpl-2.1.html. ** ** In addition, as a special exception, Digia gives you certain additional ** rights. These rights are described in the Digia Qt LGPL Exception ** version 1.1, included in the file LGPL_EXCEPTION.txt in this package. ** ** $QT_END_LICENSE$ ** ****************************************************************************/ #ifndef QV4GC_H #define QV4GC_H #include "qv4global_p.h" #include "qv4context_p.h" #include "qv4value_inl_p.h" #include //#define DETAILED_MM_STATS QT_BEGIN_NAMESPACE namespace QV4 { struct ExecutionEngine; struct ExecutionContext; struct Managed; struct GCDeletable; class Q_QML_EXPORT MemoryManager { MemoryManager(const MemoryManager &); MemoryManager &operator=(const MemoryManager&); public: struct Data; class GCBlocker { public: GCBlocker(MemoryManager *mm) : mm(mm) , wasBlocked(mm->isGCBlocked()) { mm->setGCBlocked(true); } ~GCBlocker() { mm->setGCBlocked(wasBlocked); } private: MemoryManager *mm; bool wasBlocked; }; public: MemoryManager(); ~MemoryManager(); // TODO: this is only for 64bit (and x86 with SSE/AVX), so exend it for other architectures to be slightly more efficient (meaning, align on 8-byte boundaries). // Note: all occurrences of "16" in alloc/dealloc are also due to the alignment. static inline std::size_t align(std::size_t size) { return (size + 15) & ~0xf; } inline Managed *allocManaged(std::size_t size) { size = align(size); Managed *o = allocData(size); return o; } template ManagedType *alloc() { ManagedType *t = static_cast(allocManaged(sizeof(typename ManagedType::Data))); (void)new (t->d()) typename ManagedType::Data(); return t; } template ManagedType *alloc(Arg1 arg1) { ManagedType *t = static_cast(allocManaged(sizeof(typename ManagedType::Data))); (void)new (t->d()) typename ManagedType::Data(arg1); return t; } template ManagedType *alloc(Arg1 arg1, Arg2 arg2) { ManagedType *t = static_cast(allocManaged(sizeof(typename ManagedType::Data))); (void)new (t->d()) typename ManagedType::Data(arg1, arg2); return t; } template ManagedType *alloc(Arg1 arg1, Arg2 arg2, Arg3 arg3) { ManagedType *t = static_cast(allocManaged(sizeof(typename ManagedType::Data))); (void)new (t->d()) typename ManagedType::Data(arg1, arg2, arg3); return t; } template ManagedType *alloc(Arg1 arg1, Arg2 arg2, Arg3 arg3, Arg4 arg4) { ManagedType *t = static_cast(allocManaged(sizeof(typename ManagedType::Data))); (void)new (t->d()) typename ManagedType::Data(arg1, arg2, arg3, arg4); return t; } template ManagedType *alloc(Arg1 arg1, Arg2 arg2, Arg3 arg3, Arg4 arg4, Arg5 arg5) { ManagedType *t = static_cast(allocManaged(sizeof(typename ManagedType::Data))); (void)new (t->d()) typename ManagedType::Data(arg1, arg2, arg3, arg4, arg5); return t; } bool isGCBlocked() const; void setGCBlocked(bool blockGC); void runGC(); void setExecutionEngine(ExecutionEngine *engine); void dumpStats() const; void registerDeletable(GCDeletable *d); size_t getUsedMem() const; size_t getAllocatedMem() const; size_t getLargeItemsMem() const; protected: /// expects size to be aligned // TODO: try to inline Managed *allocData(std::size_t size); #ifdef DETAILED_MM_STATS void willAllocate(std::size_t size); #endif // DETAILED_MM_STATS private: void collectFromJSStack() const; void mark(); void sweep(bool lastSweep = false); void sweep(char *chunkStart, std::size_t chunkSize, size_t size); protected: QScopedPointer m_d; public: PersistentValuePrivate *m_persistentValues; PersistentValuePrivate *m_weakValues; }; } QT_END_NAMESPACE #endif // QV4GC_H