author | brutisso |
Mon, 01 Dec 2014 14:37:25 +0100 | |
changeset 27904 | d606512952cc |
parent 26135 | 82b516c550f7 |
child 27880 | afb974a04396 |
permissions | -rw-r--r-- |
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/* |
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* Copyright (c) 1997, 2014, Oracle and/or its affiliates. All rights reserved. |
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* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. |
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* |
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* This code is free software; you can redistribute it and/or modify it |
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* under the terms of the GNU General Public License version 2 only, as |
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* published by the Free Software Foundation. |
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* |
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* This code is distributed in the hope that it will be useful, but WITHOUT |
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or |
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License |
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* version 2 for more details (a copy is included in the LICENSE file that |
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* accompanied this code). |
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* |
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* You should have received a copy of the GNU General Public License version |
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* 2 along with this work; if not, write to the Free Software Foundation, |
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* Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. |
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* |
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* Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA |
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* or visit www.oracle.com if you need additional information or have any |
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* questions. |
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* |
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*/ |
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#ifndef SHARE_VM_MEMORY_ALLOCATION_HPP |
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#define SHARE_VM_MEMORY_ALLOCATION_HPP |
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#include "runtime/globals.hpp" |
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#include "utilities/globalDefinitions.hpp" |
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#include "utilities/macros.hpp" |
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#ifdef COMPILER1 |
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#include "c1/c1_globals.hpp" |
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#endif |
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#ifdef COMPILER2 |
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#include "opto/c2_globals.hpp" |
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#endif |
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#include <new> |
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#define ARENA_ALIGN_M1 (((size_t)(ARENA_AMALLOC_ALIGNMENT)) - 1) |
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#define ARENA_ALIGN_MASK (~((size_t)ARENA_ALIGN_M1)) |
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#define ARENA_ALIGN(x) ((((size_t)(x)) + ARENA_ALIGN_M1) & ARENA_ALIGN_MASK) |
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// noinline attribute |
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#ifdef _WINDOWS |
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#define _NOINLINE_ __declspec(noinline) |
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#else |
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#if __GNUC__ < 3 // gcc 2.x does not support noinline attribute |
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#define _NOINLINE_ |
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#else |
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#define _NOINLINE_ __attribute__ ((noinline)) |
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#endif |
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#endif |
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class AllocFailStrategy { |
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public: |
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enum AllocFailEnum { EXIT_OOM, RETURN_NULL }; |
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}; |
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typedef AllocFailStrategy::AllocFailEnum AllocFailType; |
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// All classes in the virtual machine must be subclassed |
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// by one of the following allocation classes: |
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// |
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// For objects allocated in the resource area (see resourceArea.hpp). |
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// - ResourceObj |
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// |
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// For objects allocated in the C-heap (managed by: free & malloc). |
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// - CHeapObj |
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// |
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// For objects allocated on the stack. |
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// - StackObj |
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// |
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// For embedded objects. |
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// - ValueObj |
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// |
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// For classes used as name spaces. |
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// - AllStatic |
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// |
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// For classes in Metaspace (class data) |
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// - MetaspaceObj |
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// |
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// The printable subclasses are used for debugging and define virtual |
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// member functions for printing. Classes that avoid allocating the |
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// vtbl entries in the objects should therefore not be the printable |
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// subclasses. |
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// |
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// The following macros and function should be used to allocate memory |
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// directly in the resource area or in the C-heap, The _OBJ variants |
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// of the NEW/FREE_C_HEAP macros are used for alloc/dealloc simple |
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// objects which are not inherited from CHeapObj, note constructor and |
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// destructor are not called. The preferable way to allocate objects |
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// is using the new operator. |
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// |
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// WARNING: The array variant must only be used for a homogenous array |
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// where all objects are of the exact type specified. If subtypes are |
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// stored in the array then must pay attention to calling destructors |
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// at needed. |
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// |
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// NEW_RESOURCE_ARRAY(type, size) |
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// NEW_RESOURCE_OBJ(type) |
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// NEW_C_HEAP_ARRAY(type, size) |
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// NEW_C_HEAP_OBJ(type, memflags) |
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// FREE_C_HEAP_ARRAY(type, old, memflags) |
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// FREE_C_HEAP_OBJ(objname, type, memflags) |
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// char* AllocateHeap(size_t size, const char* name); |
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// void FreeHeap(void* p); |
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// |
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// C-heap allocation can be traced using +PrintHeapAllocation. |
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// malloc and free should therefore never called directly. |
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// Base class for objects allocated in the C-heap. |
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// In non product mode we introduce a super class for all allocation classes |
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// that supports printing. |
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// We avoid the superclass in product mode since some C++ compilers add |
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// a word overhead for empty super classes. |
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#ifdef PRODUCT |
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#define ALLOCATION_SUPER_CLASS_SPEC |
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#else |
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#define ALLOCATION_SUPER_CLASS_SPEC : public AllocatedObj |
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class AllocatedObj { |
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public: |
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// Printing support |
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void print() const; |
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void print_value() const; |
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virtual void print_on(outputStream* st) const; |
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virtual void print_value_on(outputStream* st) const; |
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}; |
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#endif |
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/* |
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* Memory types |
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*/ |
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enum MemoryType { |
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// Memory type by sub systems. It occupies lower byte. |
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mtJavaHeap = 0x00, // Java heap |
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mtClass = 0x01, // memory class for Java classes |
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mtThread = 0x02, // memory for thread objects |
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mtThreadStack = 0x03, |
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mtCode = 0x04, // memory for generated code |
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mtGC = 0x05, // memory for GC |
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mtCompiler = 0x06, // memory for compiler |
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mtInternal = 0x07, // memory used by VM, but does not belong to |
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// any of above categories, and not used for |
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// native memory tracking |
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mtOther = 0x08, // memory not used by VM |
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mtSymbol = 0x09, // symbol |
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mtNMT = 0x0A, // memory used by native memory tracking |
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mtClassShared = 0x0B, // class data sharing |
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mtChunk = 0x0C, // chunk that holds content of arenas |
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mtTest = 0x0D, // Test type for verifying NMT |
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mtTracing = 0x0E, // memory used for Tracing |
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mtNone = 0x0F, // undefined |
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mt_number_of_types = 0x10 // number of memory types (mtDontTrack |
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// is not included as validate type) |
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}; |
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typedef MemoryType MEMFLAGS; |
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#if INCLUDE_NMT |
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extern bool NMT_track_callsite; |
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#else |
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const bool NMT_track_callsite = false; |
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#endif // INCLUDE_NMT |
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class NativeCallStack; |
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template <MEMFLAGS F> class CHeapObj ALLOCATION_SUPER_CLASS_SPEC { |
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public: |
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_NOINLINE_ void* operator new(size_t size, const NativeCallStack& stack) throw(); |
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_NOINLINE_ void* operator new(size_t size) throw(); |
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_NOINLINE_ void* operator new (size_t size, const std::nothrow_t& nothrow_constant, |
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const NativeCallStack& stack) throw(); |
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_NOINLINE_ void* operator new (size_t size, const std::nothrow_t& nothrow_constant) |
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throw(); |
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_NOINLINE_ void* operator new [](size_t size, const NativeCallStack& stack) throw(); |
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_NOINLINE_ void* operator new [](size_t size) throw(); |
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_NOINLINE_ void* operator new [](size_t size, const std::nothrow_t& nothrow_constant, |
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const NativeCallStack& stack) throw(); |
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_NOINLINE_ void* operator new [](size_t size, const std::nothrow_t& nothrow_constant) |
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throw(); |
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void operator delete(void* p); |
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void operator delete [] (void* p); |
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}; |
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// Base class for objects allocated on the stack only. |
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// Calling new or delete will result in fatal error. |
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class StackObj ALLOCATION_SUPER_CLASS_SPEC { |
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private: |
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void* operator new(size_t size) throw(); |
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void* operator new [](size_t size) throw(); |
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#ifdef __IBMCPP__ |
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public: |
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#endif |
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void operator delete(void* p); |
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void operator delete [](void* p); |
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}; |
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// Base class for objects used as value objects. |
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// Calling new or delete will result in fatal error. |
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// |
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// Portability note: Certain compilers (e.g. gcc) will |
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// always make classes bigger if it has a superclass, even |
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// if the superclass does not have any virtual methods or |
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// instance fields. The HotSpot implementation relies on this |
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// not to happen. So never make a ValueObj class a direct subclass |
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// of this object, but use the VALUE_OBJ_CLASS_SPEC class instead, e.g., |
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// like this: |
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// |
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// class A VALUE_OBJ_CLASS_SPEC { |
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// ... |
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// } |
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// |
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// With gcc and possible other compilers the VALUE_OBJ_CLASS_SPEC can |
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// be defined as a an empty string "". |
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// |
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class _ValueObj { |
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private: |
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void* operator new(size_t size) throw(); |
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void operator delete(void* p); |
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void* operator new [](size_t size) throw(); |
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void operator delete [](void* p); |
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}; |
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// Base class for objects stored in Metaspace. |
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// Calling delete will result in fatal error. |
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// |
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// Do not inherit from something with a vptr because this class does |
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// not introduce one. This class is used to allocate both shared read-only |
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// and shared read-write classes. |
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// |
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class ClassLoaderData; |
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class MetaspaceObj { |
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public: |
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bool is_metaspace_object() const; |
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bool is_shared() const; |
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void print_address_on(outputStream* st) const; // nonvirtual address printing |
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#define METASPACE_OBJ_TYPES_DO(f) \ |
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f(Unknown) \ |
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f(Class) \ |
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f(Symbol) \ |
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f(TypeArrayU1) \ |
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f(TypeArrayU2) \ |
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259 |
f(TypeArrayU4) \ |
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260 |
f(TypeArrayU8) \ |
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261 |
f(TypeArrayOther) \ |
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262 |
f(Method) \ |
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263 |
f(ConstMethod) \ |
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264 |
f(MethodData) \ |
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265 |
f(ConstantPool) \ |
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266 |
f(ConstantPoolCache) \ |
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267 |
f(Annotation) \ |
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268 |
f(MethodCounters) \ |
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269 |
f(Deallocated) |
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270 |
|
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271 |
#define METASPACE_OBJ_TYPE_DECLARE(name) name ## Type, |
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272 |
#define METASPACE_OBJ_TYPE_NAME_CASE(name) case name ## Type: return #name; |
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273 |
|
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274 |
enum Type { |
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275 |
// Types are MetaspaceObj::ClassType, MetaspaceObj::SymbolType, etc |
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276 |
METASPACE_OBJ_TYPES_DO(METASPACE_OBJ_TYPE_DECLARE) |
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277 |
_number_of_types |
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278 |
}; |
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279 |
|
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280 |
static const char * type_name(Type type) { |
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281 |
switch(type) { |
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282 |
METASPACE_OBJ_TYPES_DO(METASPACE_OBJ_TYPE_NAME_CASE) |
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283 |
default: |
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284 |
ShouldNotReachHere(); |
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285 |
return NULL; |
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286 |
} |
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287 |
} |
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288 |
|
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289 |
static MetaspaceObj::Type array_type(size_t elem_size) { |
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290 |
switch (elem_size) { |
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291 |
case 1: return TypeArrayU1Type; |
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292 |
case 2: return TypeArrayU2Type; |
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293 |
case 4: return TypeArrayU4Type; |
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294 |
case 8: return TypeArrayU8Type; |
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295 |
default: |
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296 |
return TypeArrayOtherType; |
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297 |
} |
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298 |
} |
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299 |
|
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300 |
void* operator new(size_t size, ClassLoaderData* loader_data, |
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301 |
size_t word_size, bool read_only, |
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302 |
Type type, Thread* thread) throw(); |
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303 |
// can't use TRAPS from this header file. |
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304 |
void operator delete(void* p) { ShouldNotCallThis(); } |
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305 |
}; |
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306 |
|
1 | 307 |
// Base class for classes that constitute name spaces. |
308 |
||
309 |
class AllStatic { |
|
310 |
public: |
|
311 |
AllStatic() { ShouldNotCallThis(); } |
|
312 |
~AllStatic() { ShouldNotCallThis(); } |
|
313 |
}; |
|
314 |
||
315 |
||
316 |
//------------------------------Chunk------------------------------------------ |
|
317 |
// Linked list of raw memory chunks |
|
13195 | 318 |
class Chunk: CHeapObj<mtChunk> { |
10547 | 319 |
friend class VMStructs; |
320 |
||
1 | 321 |
protected: |
322 |
Chunk* _next; // Next Chunk in list |
|
323 |
const size_t _len; // Size of this Chunk |
|
324 |
public: |
|
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void* operator new(size_t size, AllocFailType alloc_failmode, size_t length) throw(); |
1 | 326 |
void operator delete(void* p); |
327 |
Chunk(size_t length); |
|
328 |
||
329 |
enum { |
|
330 |
// default sizes; make them slightly smaller than 2**k to guard against |
|
331 |
// buddy-system style malloc implementations |
|
332 |
#ifdef _LP64 |
|
333 |
slack = 40, // [RGV] Not sure if this is right, but make it |
|
334 |
// a multiple of 8. |
|
335 |
#else |
|
336 |
slack = 20, // suspected sizeof(Chunk) + internal malloc headers |
|
337 |
#endif |
|
338 |
||
18686 | 339 |
tiny_size = 256 - slack, // Size of first chunk (tiny) |
340 |
init_size = 1*K - slack, // Size of first chunk (normal aka small) |
|
1 | 341 |
medium_size= 10*K - slack, // Size of medium-sized chunk |
342 |
size = 32*K - slack, // Default size of an Arena chunk (following the first) |
|
343 |
non_pool_size = init_size + 32 // An initial size which is not one of above |
|
344 |
}; |
|
345 |
||
346 |
void chop(); // Chop this chunk |
|
347 |
void next_chop(); // Chop next chunk |
|
348 |
static size_t aligned_overhead_size(void) { return ARENA_ALIGN(sizeof(Chunk)); } |
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static size_t aligned_overhead_size(size_t byte_size) { return ARENA_ALIGN(byte_size); } |
1 | 350 |
|
351 |
size_t length() const { return _len; } |
|
352 |
Chunk* next() const { return _next; } |
|
353 |
void set_next(Chunk* n) { _next = n; } |
|
354 |
// Boundaries of data area (possibly unused) |
|
355 |
char* bottom() const { return ((char*) this) + aligned_overhead_size(); } |
|
356 |
char* top() const { return bottom() + _len; } |
|
357 |
bool contains(char* p) const { return bottom() <= p && p <= top(); } |
|
358 |
||
359 |
// Start the chunk_pool cleaner task |
|
360 |
static void start_chunk_pool_cleaner_task(); |
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361 |
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static void clean_chunk_pool(); |
1 | 363 |
}; |
364 |
||
365 |
//------------------------------Arena------------------------------------------ |
|
366 |
// Fast allocation of memory |
|
25946 | 367 |
class Arena : public CHeapObj<mtNone> { |
1 | 368 |
protected: |
369 |
friend class ResourceMark; |
|
370 |
friend class HandleMark; |
|
371 |
friend class NoHandleMark; |
|
10547 | 372 |
friend class VMStructs; |
373 |
||
25946 | 374 |
MEMFLAGS _flags; // Memory tracking flags |
375 |
||
1 | 376 |
Chunk *_first; // First chunk |
377 |
Chunk *_chunk; // current chunk |
|
378 |
char *_hwm, *_max; // High water mark and max in current chunk |
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379 |
// Get a new Chunk of at least size x |
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380 |
void* grow(size_t x, AllocFailType alloc_failmode = AllocFailStrategy::EXIT_OOM); |
13195 | 381 |
size_t _size_in_bytes; // Size of arena (used for native memory tracking) |
382 |
||
8320 | 383 |
NOT_PRODUCT(static julong _bytes_allocated;) // total #bytes allocated since start |
1 | 384 |
friend class AllocStats; |
385 |
debug_only(void* malloc(size_t size);) |
|
386 |
debug_only(void* internal_malloc_4(size_t x);) |
|
8320 | 387 |
NOT_PRODUCT(void inc_bytes_allocated(size_t x);) |
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388 |
|
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389 |
void signal_out_of_memory(size_t request, const char* whence) const; |
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390 |
|
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391 |
bool check_for_overflow(size_t request, const char* whence, |
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392 |
AllocFailType alloc_failmode = AllocFailStrategy::EXIT_OOM) const { |
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393 |
if (UINTPTR_MAX - request < (uintptr_t)_hwm) { |
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394 |
if (alloc_failmode == AllocFailStrategy::RETURN_NULL) { |
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395 |
return false; |
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|
396 |
} |
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397 |
signal_out_of_memory(request, whence); |
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|
398 |
} |
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399 |
return true; |
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|
400 |
} |
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401 |
|
1 | 402 |
public: |
25946 | 403 |
Arena(MEMFLAGS memflag); |
404 |
Arena(MEMFLAGS memflag, size_t init_size); |
|
1 | 405 |
~Arena(); |
406 |
void destruct_contents(); |
|
407 |
char* hwm() const { return _hwm; } |
|
408 |
||
13195 | 409 |
// new operators |
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410 |
void* operator new (size_t size) throw(); |
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411 |
void* operator new (size_t size, const std::nothrow_t& nothrow_constant) throw(); |
13195 | 412 |
|
413 |
// dynamic memory type tagging |
|
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414 |
void* operator new(size_t size, MEMFLAGS flags) throw(); |
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415 |
void* operator new(size_t size, const std::nothrow_t& nothrow_constant, MEMFLAGS flags) throw(); |
13195 | 416 |
void operator delete(void* p); |
417 |
||
1 | 418 |
// Fast allocate in the arena. Common case is: pointer test + increment. |
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419 |
void* Amalloc(size_t x, AllocFailType alloc_failmode = AllocFailStrategy::EXIT_OOM) { |
1 | 420 |
assert(is_power_of_2(ARENA_AMALLOC_ALIGNMENT) , "should be a power of 2"); |
421 |
x = ARENA_ALIGN(x); |
|
422 |
debug_only(if (UseMallocOnly) return malloc(x);) |
|
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423 |
if (!check_for_overflow(x, "Arena::Amalloc", alloc_failmode)) |
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424 |
return NULL; |
8320 | 425 |
NOT_PRODUCT(inc_bytes_allocated(x);) |
1 | 426 |
if (_hwm + x > _max) { |
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|
427 |
return grow(x, alloc_failmode); |
1 | 428 |
} else { |
429 |
char *old = _hwm; |
|
430 |
_hwm += x; |
|
431 |
return old; |
|
432 |
} |
|
433 |
} |
|
434 |
// Further assume size is padded out to words |
|
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435 |
void *Amalloc_4(size_t x, AllocFailType alloc_failmode = AllocFailStrategy::EXIT_OOM) { |
1 | 436 |
assert( (x&(sizeof(char*)-1)) == 0, "misaligned size" ); |
437 |
debug_only(if (UseMallocOnly) return malloc(x);) |
|
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|
438 |
if (!check_for_overflow(x, "Arena::Amalloc_4", alloc_failmode)) |
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|
439 |
return NULL; |
8320 | 440 |
NOT_PRODUCT(inc_bytes_allocated(x);) |
1 | 441 |
if (_hwm + x > _max) { |
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|
442 |
return grow(x, alloc_failmode); |
1 | 443 |
} else { |
444 |
char *old = _hwm; |
|
445 |
_hwm += x; |
|
446 |
return old; |
|
447 |
} |
|
448 |
} |
|
449 |
||
450 |
// Allocate with 'double' alignment. It is 8 bytes on sparc. |
|
451 |
// In other cases Amalloc_D() should be the same as Amalloc_4(). |
|
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|
452 |
void* Amalloc_D(size_t x, AllocFailType alloc_failmode = AllocFailStrategy::EXIT_OOM) { |
1 | 453 |
assert( (x&(sizeof(char*)-1)) == 0, "misaligned size" ); |
454 |
debug_only(if (UseMallocOnly) return malloc(x);) |
|
455 |
#if defined(SPARC) && !defined(_LP64) |
|
456 |
#define DALIGN_M1 7 |
|
457 |
size_t delta = (((size_t)_hwm + DALIGN_M1) & ~DALIGN_M1) - (size_t)_hwm; |
|
458 |
x += delta; |
|
459 |
#endif |
|
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|
460 |
if (!check_for_overflow(x, "Arena::Amalloc_D", alloc_failmode)) |
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|
461 |
return NULL; |
8320 | 462 |
NOT_PRODUCT(inc_bytes_allocated(x);) |
1 | 463 |
if (_hwm + x > _max) { |
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|
464 |
return grow(x, alloc_failmode); // grow() returns a result aligned >= 8 bytes. |
1 | 465 |
} else { |
466 |
char *old = _hwm; |
|
467 |
_hwm += x; |
|
468 |
#if defined(SPARC) && !defined(_LP64) |
|
469 |
old += delta; // align to 8-bytes |
|
470 |
#endif |
|
471 |
return old; |
|
472 |
} |
|
473 |
} |
|
474 |
||
475 |
// Fast delete in area. Common case is: NOP (except for storage reclaimed) |
|
476 |
void Afree(void *ptr, size_t size) { |
|
477 |
#ifdef ASSERT |
|
478 |
if (ZapResourceArea) memset(ptr, badResourceValue, size); // zap freed memory |
|
479 |
if (UseMallocOnly) return; |
|
480 |
#endif |
|
481 |
if (((char*)ptr) + size == _hwm) _hwm = (char*)ptr; |
|
482 |
} |
|
483 |
||
14083
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8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents:
13975
diff
changeset
|
484 |
void *Arealloc( void *old_ptr, size_t old_size, size_t new_size, |
103054a71a30
8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents:
13975
diff
changeset
|
485 |
AllocFailType alloc_failmode = AllocFailStrategy::EXIT_OOM); |
1 | 486 |
|
487 |
// Move contents of this arena into an empty arena |
|
488 |
Arena *move_contents(Arena *empty_arena); |
|
489 |
||
490 |
// Determine if pointer belongs to this Arena or not. |
|
491 |
bool contains( const void *ptr ) const; |
|
492 |
||
493 |
// Total of all chunks in use (not thread-safe) |
|
494 |
size_t used() const; |
|
495 |
||
496 |
// Total # of bytes used |
|
13195 | 497 |
size_t size_in_bytes() const { return _size_in_bytes; }; |
498 |
void set_size_in_bytes(size_t size); |
|
499 |
||
1 | 500 |
static void free_malloced_objects(Chunk* chunk, char* hwm, char* max, char* hwm2) PRODUCT_RETURN; |
501 |
static void free_all(char** start, char** end) PRODUCT_RETURN; |
|
502 |
||
503 |
private: |
|
504 |
// Reset this Arena to empty, access will trigger grow if necessary |
|
505 |
void reset(void) { |
|
506 |
_first = _chunk = NULL; |
|
507 |
_hwm = _max = NULL; |
|
13195 | 508 |
set_size_in_bytes(0); |
1 | 509 |
} |
510 |
}; |
|
511 |
||
512 |
// One of the following macros must be used when allocating |
|
513 |
// an array or object from an arena |
|
6762
f8d1b560700e
6423256: GC stacks should use a better data structure
jcoomes
parents:
6184
diff
changeset
|
514 |
#define NEW_ARENA_ARRAY(arena, type, size) \ |
f8d1b560700e
6423256: GC stacks should use a better data structure
jcoomes
parents:
6184
diff
changeset
|
515 |
(type*) (arena)->Amalloc((size) * sizeof(type)) |
1 | 516 |
|
6762
f8d1b560700e
6423256: GC stacks should use a better data structure
jcoomes
parents:
6184
diff
changeset
|
517 |
#define REALLOC_ARENA_ARRAY(arena, type, old, old_size, new_size) \ |
f8d1b560700e
6423256: GC stacks should use a better data structure
jcoomes
parents:
6184
diff
changeset
|
518 |
(type*) (arena)->Arealloc((char*)(old), (old_size) * sizeof(type), \ |
f8d1b560700e
6423256: GC stacks should use a better data structure
jcoomes
parents:
6184
diff
changeset
|
519 |
(new_size) * sizeof(type) ) |
1 | 520 |
|
6762
f8d1b560700e
6423256: GC stacks should use a better data structure
jcoomes
parents:
6184
diff
changeset
|
521 |
#define FREE_ARENA_ARRAY(arena, type, old, size) \ |
f8d1b560700e
6423256: GC stacks should use a better data structure
jcoomes
parents:
6184
diff
changeset
|
522 |
(arena)->Afree((char*)(old), (size) * sizeof(type)) |
1 | 523 |
|
6762
f8d1b560700e
6423256: GC stacks should use a better data structure
jcoomes
parents:
6184
diff
changeset
|
524 |
#define NEW_ARENA_OBJ(arena, type) \ |
1 | 525 |
NEW_ARENA_ARRAY(arena, type, 1) |
526 |
||
527 |
||
528 |
//%note allocation_1 |
|
14083
103054a71a30
8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents:
13975
diff
changeset
|
529 |
extern char* resource_allocate_bytes(size_t size, |
103054a71a30
8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents:
13975
diff
changeset
|
530 |
AllocFailType alloc_failmode = AllocFailStrategy::EXIT_OOM); |
103054a71a30
8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents:
13975
diff
changeset
|
531 |
extern char* resource_allocate_bytes(Thread* thread, size_t size, |
103054a71a30
8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents:
13975
diff
changeset
|
532 |
AllocFailType alloc_failmode = AllocFailStrategy::EXIT_OOM); |
103054a71a30
8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents:
13975
diff
changeset
|
533 |
extern char* resource_reallocate_bytes( char *old, size_t old_size, size_t new_size, |
103054a71a30
8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents:
13975
diff
changeset
|
534 |
AllocFailType alloc_failmode = AllocFailStrategy::EXIT_OOM); |
1 | 535 |
extern void resource_free_bytes( char *old, size_t size ); |
536 |
||
537 |
//---------------------------------------------------------------------- |
|
538 |
// Base class for objects allocated in the resource area per default. |
|
539 |
// Optionally, objects may be allocated on the C heap with |
|
540 |
// new(ResourceObj::C_HEAP) Foo(...) or in an Arena with new (&arena) |
|
541 |
// ResourceObj's can be allocated within other objects, but don't use |
|
542 |
// new or delete (allocation_type is unknown). If new is used to allocate, |
|
543 |
// use delete to deallocate. |
|
544 |
class ResourceObj ALLOCATION_SUPER_CLASS_SPEC { |
|
545 |
public: |
|
6180 | 546 |
enum allocation_type { STACK_OR_EMBEDDED = 0, RESOURCE_AREA, C_HEAP, ARENA, allocation_mask = 0x3 }; |
6183
4c74cfe14f20
6975078: assert(allocated_on_res_area() || allocated_on_C_heap() || allocated_on_arena()
kvn
parents:
6180
diff
changeset
|
547 |
static void set_allocation_type(address res, allocation_type type) NOT_DEBUG_RETURN; |
1 | 548 |
#ifdef ASSERT |
549 |
private: |
|
6180 | 550 |
// When this object is allocated on stack the new() operator is not |
551 |
// called but garbage on stack may look like a valid allocation_type. |
|
552 |
// Store negated 'this' pointer when new() is called to distinguish cases. |
|
7440
eabaf35910a1
6993125: runThese crashes with assert(Thread::current()->on_local_stack((address)this))
kvn
parents:
7397
diff
changeset
|
553 |
// Use second array's element for verification value to distinguish garbage. |
eabaf35910a1
6993125: runThese crashes with assert(Thread::current()->on_local_stack((address)this))
kvn
parents:
7397
diff
changeset
|
554 |
uintptr_t _allocation_t[2]; |
eabaf35910a1
6993125: runThese crashes with assert(Thread::current()->on_local_stack((address)this))
kvn
parents:
7397
diff
changeset
|
555 |
bool is_type_set() const; |
1 | 556 |
public: |
6183
4c74cfe14f20
6975078: assert(allocated_on_res_area() || allocated_on_C_heap() || allocated_on_arena()
kvn
parents:
6180
diff
changeset
|
557 |
allocation_type get_allocation_type() const; |
4c74cfe14f20
6975078: assert(allocated_on_res_area() || allocated_on_C_heap() || allocated_on_arena()
kvn
parents:
6180
diff
changeset
|
558 |
bool allocated_on_stack() const { return get_allocation_type() == STACK_OR_EMBEDDED; } |
4c74cfe14f20
6975078: assert(allocated_on_res_area() || allocated_on_C_heap() || allocated_on_arena()
kvn
parents:
6180
diff
changeset
|
559 |
bool allocated_on_res_area() const { return get_allocation_type() == RESOURCE_AREA; } |
4c74cfe14f20
6975078: assert(allocated_on_res_area() || allocated_on_C_heap() || allocated_on_arena()
kvn
parents:
6180
diff
changeset
|
560 |
bool allocated_on_C_heap() const { return get_allocation_type() == C_HEAP; } |
4c74cfe14f20
6975078: assert(allocated_on_res_area() || allocated_on_C_heap() || allocated_on_arena()
kvn
parents:
6180
diff
changeset
|
561 |
bool allocated_on_arena() const { return get_allocation_type() == ARENA; } |
22551 | 562 |
ResourceObj(); // default constructor |
563 |
ResourceObj(const ResourceObj& r); // default copy constructor |
|
6180 | 564 |
ResourceObj& operator=(const ResourceObj& r); // default copy assignment |
565 |
~ResourceObj(); |
|
1 | 566 |
#endif // ASSERT |
567 |
||
568 |
public: |
|
19696
bd5a0131bde1
8021954: VM SIGSEGV during classloading on MacOS; hs_err_pid file produced
coleenp
parents:
19545
diff
changeset
|
569 |
void* operator new(size_t size, allocation_type type, MEMFLAGS flags) throw(); |
bd5a0131bde1
8021954: VM SIGSEGV during classloading on MacOS; hs_err_pid file produced
coleenp
parents:
19545
diff
changeset
|
570 |
void* operator new [](size_t size, allocation_type type, MEMFLAGS flags) throw(); |
14083
103054a71a30
8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents:
13975
diff
changeset
|
571 |
void* operator new(size_t size, const std::nothrow_t& nothrow_constant, |
19696
bd5a0131bde1
8021954: VM SIGSEGV during classloading on MacOS; hs_err_pid file produced
coleenp
parents:
19545
diff
changeset
|
572 |
allocation_type type, MEMFLAGS flags) throw(); |
17376
4ee999c3c007
8012902: remove use of global operator new - take 2
minqi
parents:
17081
diff
changeset
|
573 |
void* operator new [](size_t size, const std::nothrow_t& nothrow_constant, |
19696
bd5a0131bde1
8021954: VM SIGSEGV during classloading on MacOS; hs_err_pid file produced
coleenp
parents:
19545
diff
changeset
|
574 |
allocation_type type, MEMFLAGS flags) throw(); |
17376
4ee999c3c007
8012902: remove use of global operator new - take 2
minqi
parents:
17081
diff
changeset
|
575 |
|
19696
bd5a0131bde1
8021954: VM SIGSEGV during classloading on MacOS; hs_err_pid file produced
coleenp
parents:
19545
diff
changeset
|
576 |
void* operator new(size_t size, Arena *arena) throw() { |
1 | 577 |
address res = (address)arena->Amalloc(size); |
6180 | 578 |
DEBUG_ONLY(set_allocation_type(res, ARENA);) |
1 | 579 |
return res; |
580 |
} |
|
17376
4ee999c3c007
8012902: remove use of global operator new - take 2
minqi
parents:
17081
diff
changeset
|
581 |
|
19696
bd5a0131bde1
8021954: VM SIGSEGV during classloading on MacOS; hs_err_pid file produced
coleenp
parents:
19545
diff
changeset
|
582 |
void* operator new [](size_t size, Arena *arena) throw() { |
17376
4ee999c3c007
8012902: remove use of global operator new - take 2
minqi
parents:
17081
diff
changeset
|
583 |
address res = (address)arena->Amalloc(size); |
4ee999c3c007
8012902: remove use of global operator new - take 2
minqi
parents:
17081
diff
changeset
|
584 |
DEBUG_ONLY(set_allocation_type(res, ARENA);) |
4ee999c3c007
8012902: remove use of global operator new - take 2
minqi
parents:
17081
diff
changeset
|
585 |
return res; |
4ee999c3c007
8012902: remove use of global operator new - take 2
minqi
parents:
17081
diff
changeset
|
586 |
} |
4ee999c3c007
8012902: remove use of global operator new - take 2
minqi
parents:
17081
diff
changeset
|
587 |
|
19696
bd5a0131bde1
8021954: VM SIGSEGV during classloading on MacOS; hs_err_pid file produced
coleenp
parents:
19545
diff
changeset
|
588 |
void* operator new(size_t size) throw() { |
1 | 589 |
address res = (address)resource_allocate_bytes(size); |
6180 | 590 |
DEBUG_ONLY(set_allocation_type(res, RESOURCE_AREA);) |
1 | 591 |
return res; |
592 |
} |
|
14083
103054a71a30
8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents:
13975
diff
changeset
|
593 |
|
19696
bd5a0131bde1
8021954: VM SIGSEGV during classloading on MacOS; hs_err_pid file produced
coleenp
parents:
19545
diff
changeset
|
594 |
void* operator new(size_t size, const std::nothrow_t& nothrow_constant) throw() { |
14083
103054a71a30
8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents:
13975
diff
changeset
|
595 |
address res = (address)resource_allocate_bytes(size, AllocFailStrategy::RETURN_NULL); |
103054a71a30
8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents:
13975
diff
changeset
|
596 |
DEBUG_ONLY(if (res != NULL) set_allocation_type(res, RESOURCE_AREA);) |
103054a71a30
8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents:
13975
diff
changeset
|
597 |
return res; |
103054a71a30
8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents:
13975
diff
changeset
|
598 |
} |
103054a71a30
8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents:
13975
diff
changeset
|
599 |
|
19696
bd5a0131bde1
8021954: VM SIGSEGV during classloading on MacOS; hs_err_pid file produced
coleenp
parents:
19545
diff
changeset
|
600 |
void* operator new [](size_t size) throw() { |
17376
4ee999c3c007
8012902: remove use of global operator new - take 2
minqi
parents:
17081
diff
changeset
|
601 |
address res = (address)resource_allocate_bytes(size); |
4ee999c3c007
8012902: remove use of global operator new - take 2
minqi
parents:
17081
diff
changeset
|
602 |
DEBUG_ONLY(set_allocation_type(res, RESOURCE_AREA);) |
4ee999c3c007
8012902: remove use of global operator new - take 2
minqi
parents:
17081
diff
changeset
|
603 |
return res; |
4ee999c3c007
8012902: remove use of global operator new - take 2
minqi
parents:
17081
diff
changeset
|
604 |
} |
4ee999c3c007
8012902: remove use of global operator new - take 2
minqi
parents:
17081
diff
changeset
|
605 |
|
19696
bd5a0131bde1
8021954: VM SIGSEGV during classloading on MacOS; hs_err_pid file produced
coleenp
parents:
19545
diff
changeset
|
606 |
void* operator new [](size_t size, const std::nothrow_t& nothrow_constant) throw() { |
17376
4ee999c3c007
8012902: remove use of global operator new - take 2
minqi
parents:
17081
diff
changeset
|
607 |
address res = (address)resource_allocate_bytes(size, AllocFailStrategy::RETURN_NULL); |
4ee999c3c007
8012902: remove use of global operator new - take 2
minqi
parents:
17081
diff
changeset
|
608 |
DEBUG_ONLY(if (res != NULL) set_allocation_type(res, RESOURCE_AREA);) |
4ee999c3c007
8012902: remove use of global operator new - take 2
minqi
parents:
17081
diff
changeset
|
609 |
return res; |
4ee999c3c007
8012902: remove use of global operator new - take 2
minqi
parents:
17081
diff
changeset
|
610 |
} |
4ee999c3c007
8012902: remove use of global operator new - take 2
minqi
parents:
17081
diff
changeset
|
611 |
|
1 | 612 |
void operator delete(void* p); |
17376
4ee999c3c007
8012902: remove use of global operator new - take 2
minqi
parents:
17081
diff
changeset
|
613 |
void operator delete [](void* p); |
1 | 614 |
}; |
615 |
||
616 |
// One of the following macros must be used when allocating an array |
|
617 |
// or object to determine whether it should reside in the C heap on in |
|
618 |
// the resource area. |
|
619 |
||
620 |
#define NEW_RESOURCE_ARRAY(type, size)\ |
|
621 |
(type*) resource_allocate_bytes((size) * sizeof(type)) |
|
622 |
||
17081
cf52c2bc3f8c
8011773: Some tests on Interned String crashed JVM with OOM
hseigel
parents:
17032
diff
changeset
|
623 |
#define NEW_RESOURCE_ARRAY_RETURN_NULL(type, size)\ |
cf52c2bc3f8c
8011773: Some tests on Interned String crashed JVM with OOM
hseigel
parents:
17032
diff
changeset
|
624 |
(type*) resource_allocate_bytes((size) * sizeof(type), AllocFailStrategy::RETURN_NULL) |
cf52c2bc3f8c
8011773: Some tests on Interned String crashed JVM with OOM
hseigel
parents:
17032
diff
changeset
|
625 |
|
1 | 626 |
#define NEW_RESOURCE_ARRAY_IN_THREAD(thread, type, size)\ |
627 |
(type*) resource_allocate_bytes(thread, (size) * sizeof(type)) |
|
628 |
||
18083
6424d03bb556
8016105: Add complementary RETURN_NULL allocation macros in allocation.hpp
mgronlun
parents:
18025
diff
changeset
|
629 |
#define NEW_RESOURCE_ARRAY_IN_THREAD_RETURN_NULL(thread, type, size)\ |
6424d03bb556
8016105: Add complementary RETURN_NULL allocation macros in allocation.hpp
mgronlun
parents:
18025
diff
changeset
|
630 |
(type*) resource_allocate_bytes(thread, (size) * sizeof(type), AllocFailStrategy::RETURN_NULL) |
6424d03bb556
8016105: Add complementary RETURN_NULL allocation macros in allocation.hpp
mgronlun
parents:
18025
diff
changeset
|
631 |
|
1 | 632 |
#define REALLOC_RESOURCE_ARRAY(type, old, old_size, new_size)\ |
18083
6424d03bb556
8016105: Add complementary RETURN_NULL allocation macros in allocation.hpp
mgronlun
parents:
18025
diff
changeset
|
633 |
(type*) resource_reallocate_bytes((char*)(old), (old_size) * sizeof(type), (new_size) * sizeof(type)) |
6424d03bb556
8016105: Add complementary RETURN_NULL allocation macros in allocation.hpp
mgronlun
parents:
18025
diff
changeset
|
634 |
|
6424d03bb556
8016105: Add complementary RETURN_NULL allocation macros in allocation.hpp
mgronlun
parents:
18025
diff
changeset
|
635 |
#define REALLOC_RESOURCE_ARRAY_RETURN_NULL(type, old, old_size, new_size)\ |
6424d03bb556
8016105: Add complementary RETURN_NULL allocation macros in allocation.hpp
mgronlun
parents:
18025
diff
changeset
|
636 |
(type*) resource_reallocate_bytes((char*)(old), (old_size) * sizeof(type),\ |
6424d03bb556
8016105: Add complementary RETURN_NULL allocation macros in allocation.hpp
mgronlun
parents:
18025
diff
changeset
|
637 |
(new_size) * sizeof(type), AllocFailStrategy::RETURN_NULL) |
1 | 638 |
|
639 |
#define FREE_RESOURCE_ARRAY(type, old, size)\ |
|
640 |
resource_free_bytes((char*)(old), (size) * sizeof(type)) |
|
641 |
||
642 |
#define FREE_FAST(old)\ |
|
643 |
/* nop */ |
|
644 |
||
645 |
#define NEW_RESOURCE_OBJ(type)\ |
|
646 |
NEW_RESOURCE_ARRAY(type, 1) |
|
647 |
||
18083
6424d03bb556
8016105: Add complementary RETURN_NULL allocation macros in allocation.hpp
mgronlun
parents:
18025
diff
changeset
|
648 |
#define NEW_RESOURCE_OBJ_RETURN_NULL(type)\ |
6424d03bb556
8016105: Add complementary RETURN_NULL allocation macros in allocation.hpp
mgronlun
parents:
18025
diff
changeset
|
649 |
NEW_RESOURCE_ARRAY_RETURN_NULL(type, 1) |
6424d03bb556
8016105: Add complementary RETURN_NULL allocation macros in allocation.hpp
mgronlun
parents:
18025
diff
changeset
|
650 |
|
6424d03bb556
8016105: Add complementary RETURN_NULL allocation macros in allocation.hpp
mgronlun
parents:
18025
diff
changeset
|
651 |
#define NEW_C_HEAP_ARRAY3(type, size, memflags, pc, allocfail)\ |
19545
409c50cf1e5d
8022683: JNI GetStringUTFChars should return NULL on allocation failure not abort the VM
dsimms
parents:
18686
diff
changeset
|
652 |
(type*) AllocateHeap((size) * sizeof(type), memflags, pc, allocfail) |
18083
6424d03bb556
8016105: Add complementary RETURN_NULL allocation macros in allocation.hpp
mgronlun
parents:
18025
diff
changeset
|
653 |
|
6424d03bb556
8016105: Add complementary RETURN_NULL allocation macros in allocation.hpp
mgronlun
parents:
18025
diff
changeset
|
654 |
#define NEW_C_HEAP_ARRAY2(type, size, memflags, pc)\ |
6424d03bb556
8016105: Add complementary RETURN_NULL allocation macros in allocation.hpp
mgronlun
parents:
18025
diff
changeset
|
655 |
(type*) (AllocateHeap((size) * sizeof(type), memflags, pc)) |
6424d03bb556
8016105: Add complementary RETURN_NULL allocation macros in allocation.hpp
mgronlun
parents:
18025
diff
changeset
|
656 |
|
13195 | 657 |
#define NEW_C_HEAP_ARRAY(type, size, memflags)\ |
658 |
(type*) (AllocateHeap((size) * sizeof(type), memflags)) |
|
1 | 659 |
|
18083
6424d03bb556
8016105: Add complementary RETURN_NULL allocation macros in allocation.hpp
mgronlun
parents:
18025
diff
changeset
|
660 |
#define NEW_C_HEAP_ARRAY2_RETURN_NULL(type, size, memflags, pc)\ |
19545
409c50cf1e5d
8022683: JNI GetStringUTFChars should return NULL on allocation failure not abort the VM
dsimms
parents:
18686
diff
changeset
|
661 |
NEW_C_HEAP_ARRAY3(type, (size), memflags, pc, AllocFailStrategy::RETURN_NULL) |
18083
6424d03bb556
8016105: Add complementary RETURN_NULL allocation macros in allocation.hpp
mgronlun
parents:
18025
diff
changeset
|
662 |
|
6424d03bb556
8016105: Add complementary RETURN_NULL allocation macros in allocation.hpp
mgronlun
parents:
18025
diff
changeset
|
663 |
#define NEW_C_HEAP_ARRAY_RETURN_NULL(type, size, memflags)\ |
25946 | 664 |
NEW_C_HEAP_ARRAY3(type, (size), memflags, CURRENT_PC, AllocFailStrategy::RETURN_NULL) |
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665 |
|
13195 | 666 |
#define REALLOC_C_HEAP_ARRAY(type, old, size, memflags)\ |
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667 |
(type*) (ReallocateHeap((char*)(old), (size) * sizeof(type), memflags)) |
13195 | 668 |
|
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669 |
#define REALLOC_C_HEAP_ARRAY_RETURN_NULL(type, old, size, memflags)\ |
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670 |
(type*) (ReallocateHeap((char*)(old), (size) * sizeof(type), memflags, AllocFailStrategy::RETURN_NULL)) |
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|
671 |
|
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672 |
#define FREE_C_HEAP_ARRAY(type, old, memflags) \ |
13195 | 673 |
FreeHeap((char*)(old), memflags) |
1 | 674 |
|
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|
675 |
// allocate type in heap without calling ctor |
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676 |
#define NEW_C_HEAP_OBJ(type, memflags)\ |
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|
677 |
NEW_C_HEAP_ARRAY(type, 1, memflags) |
1 | 678 |
|
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|
679 |
#define NEW_C_HEAP_OBJ_RETURN_NULL(type, memflags)\ |
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|
680 |
NEW_C_HEAP_ARRAY_RETURN_NULL(type, 1, memflags) |
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|
681 |
|
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|
682 |
// deallocate obj of type in heap without calling dtor |
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|
683 |
#define FREE_C_HEAP_OBJ(objname, memflags)\ |
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|
684 |
FreeHeap((char*)objname, memflags); |
1 | 685 |
|
686 |
// for statistics |
|
687 |
#ifndef PRODUCT |
|
688 |
class AllocStats : StackObj { |
|
8320 | 689 |
julong start_mallocs, start_frees; |
690 |
julong start_malloc_bytes, start_mfree_bytes, start_res_bytes; |
|
1 | 691 |
public: |
692 |
AllocStats(); |
|
693 |
||
8320 | 694 |
julong num_mallocs(); // since creation of receiver |
695 |
julong alloc_bytes(); |
|
696 |
julong num_frees(); |
|
697 |
julong free_bytes(); |
|
698 |
julong resource_bytes(); |
|
1 | 699 |
void print(); |
700 |
}; |
|
701 |
#endif |
|
702 |
||
703 |
||
704 |
//------------------------------ReallocMark--------------------------------- |
|
705 |
// Code which uses REALLOC_RESOURCE_ARRAY should check an associated |
|
706 |
// ReallocMark, which is declared in the same scope as the reallocated |
|
707 |
// pointer. Any operation that could __potentially__ cause a reallocation |
|
708 |
// should check the ReallocMark. |
|
709 |
class ReallocMark: public StackObj { |
|
710 |
protected: |
|
711 |
NOT_PRODUCT(int _nesting;) |
|
712 |
||
713 |
public: |
|
714 |
ReallocMark() PRODUCT_RETURN; |
|
715 |
void check() PRODUCT_RETURN; |
|
716 |
}; |
|
7397 | 717 |
|
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|
718 |
// Helper class to allocate arrays that may become large. |
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|
719 |
// Uses the OS malloc for allocations smaller than ArrayAllocatorMallocLimit |
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|
720 |
// and uses mapped memory for larger allocations. |
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|
721 |
// Most OS mallocs do something similar but Solaris malloc does not revert |
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|
722 |
// to mapped memory for large allocations. By default ArrayAllocatorMallocLimit |
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|
723 |
// is set so that we always use malloc except for Solaris where we set the |
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|
724 |
// limit to get mapped memory. |
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|
725 |
template <class E, MEMFLAGS F> |
18092 | 726 |
class ArrayAllocator VALUE_OBJ_CLASS_SPEC { |
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|
727 |
char* _addr; |
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|
728 |
bool _use_malloc; |
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|
729 |
size_t _size; |
18092 | 730 |
bool _free_in_destructor; |
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|
731 |
|
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|
732 |
static bool should_use_malloc(size_t size) { |
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|
733 |
return size < ArrayAllocatorMallocLimit; |
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|
734 |
} |
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|
735 |
|
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|
736 |
static char* allocate_inner(size_t& size, bool& use_malloc); |
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|
737 |
public: |
18092 | 738 |
ArrayAllocator(bool free_in_destructor = true) : |
739 |
_addr(NULL), _use_malloc(false), _size(0), _free_in_destructor(free_in_destructor) { } |
|
740 |
||
741 |
~ArrayAllocator() { |
|
742 |
if (_free_in_destructor) { |
|
743 |
free(); |
|
744 |
} |
|
745 |
} |
|
746 |
||
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|
747 |
E* allocate(size_t length); |
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|
748 |
E* reallocate(size_t new_length); |
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|
749 |
void free(); |
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|
750 |
}; |
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|
751 |
|
7397 | 752 |
#endif // SHARE_VM_MEMORY_ALLOCATION_HPP |