hotspot/src/share/vm/memory/allocation.cpp
author minqi
Tue, 14 May 2013 09:41:12 -0700
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parent 17087 f0b76c4c93a0
child 17858 c292f8791cca
child 18063 3a0a5b11ab14
permissions -rw-r--r--
8012902: remove use of global operator new - take 2 Summary: The fix of 8010992, disable use of global operator new and new[] which caused failure on some tests. This takes two of the bugs also add ALLOW_OPERATOR_NEW_USAGE to prevent crash for third party code calling operator new of jvm on certain platforms. Reviewed-by: coleenp, dholmes, zgu Contributed-by: yumin.qi@oracle.com
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/*
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 * Copyright (c) 1997, 2013, 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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#include "precompiled.hpp"
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#include "memory/allocation.hpp"
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#include "memory/allocation.inline.hpp"
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#include "memory/genCollectedHeap.hpp"
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#include "memory/metaspaceShared.hpp"
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#include "memory/resourceArea.hpp"
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#include "memory/universe.hpp"
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#include "runtime/atomic.hpp"
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#include "runtime/os.hpp"
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#include "runtime/task.hpp"
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#include "runtime/threadCritical.hpp"
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#include "services/memTracker.hpp"
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#include "utilities/ostream.hpp"
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#ifdef TARGET_OS_FAMILY_linux
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# include "os_linux.inline.hpp"
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#endif
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#ifdef TARGET_OS_FAMILY_solaris
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# include "os_solaris.inline.hpp"
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#endif
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#ifdef TARGET_OS_FAMILY_windows
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# include "os_windows.inline.hpp"
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#endif
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#ifdef TARGET_OS_FAMILY_bsd
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# include "os_bsd.inline.hpp"
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#endif
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void* StackObj::operator new(size_t size)       { ShouldNotCallThis(); return 0; }
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void  StackObj::operator delete(void* p)        { ShouldNotCallThis(); }
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void* StackObj::operator new [](size_t size)    { ShouldNotCallThis(); return 0; }
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void  StackObj::operator delete [](void* p)     { ShouldNotCallThis(); }
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void* _ValueObj::operator new(size_t size)      { ShouldNotCallThis(); return 0; }
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void  _ValueObj::operator delete(void* p)       { ShouldNotCallThis(); }
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void* _ValueObj::operator new [](size_t size)   { ShouldNotCallThis(); return 0; }
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void  _ValueObj::operator delete [](void* p)    { ShouldNotCallThis(); }
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void* MetaspaceObj::operator new(size_t size, ClassLoaderData* loader_data,
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                                size_t word_size, bool read_only, TRAPS) {
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  // Klass has it's own operator new
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  return Metaspace::allocate(loader_data, word_size, read_only,
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                             Metaspace::NonClassType, CHECK_NULL);
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}
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bool MetaspaceObj::is_shared() const {
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  return MetaspaceShared::is_in_shared_space(this);
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}
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bool MetaspaceObj::is_metadata() const {
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  // GC Verify checks use this in guarantees.
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  // TODO: either replace them with is_metaspace_object() or remove them.
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  // is_metaspace_object() is slower than this test.  This test doesn't
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  // seem very useful for metaspace objects anymore though.
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  return !Universe::heap()->is_in_reserved(this);
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}
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bool MetaspaceObj::is_metaspace_object() const {
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  return Metaspace::contains((void*)this);
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}
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void MetaspaceObj::print_address_on(outputStream* st) const {
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  st->print(" {"INTPTR_FORMAT"}", this);
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}
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void* ResourceObj::operator new(size_t size, allocation_type type, MEMFLAGS flags) {
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  address res;
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  switch (type) {
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   case C_HEAP:
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    res = (address)AllocateHeap(size, flags, CALLER_PC);
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    DEBUG_ONLY(set_allocation_type(res, C_HEAP);)
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    break;
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   case RESOURCE_AREA:
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    // new(size) sets allocation type RESOURCE_AREA.
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    res = (address)operator new(size);
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    break;
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   default:
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    ShouldNotReachHere();
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  }
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  return res;
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}
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void* ResourceObj::operator new [](size_t size, allocation_type type, MEMFLAGS flags) {
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  return (address) operator new(size, type, flags);
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}
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void* ResourceObj::operator new(size_t size, const std::nothrow_t&  nothrow_constant,
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    allocation_type type, MEMFLAGS flags) {
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  //should only call this with std::nothrow, use other operator new() otherwise
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  address res;
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  switch (type) {
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   case C_HEAP:
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    res = (address)AllocateHeap(size, flags, CALLER_PC, AllocFailStrategy::RETURN_NULL);
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    DEBUG_ONLY(if (res!= NULL) set_allocation_type(res, C_HEAP);)
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    break;
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   case RESOURCE_AREA:
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    // new(size) sets allocation type RESOURCE_AREA.
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    res = (address)operator new(size, std::nothrow);
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    break;
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   default:
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    ShouldNotReachHere();
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  }
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  return res;
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}
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void* ResourceObj::operator new [](size_t size, const std::nothrow_t&  nothrow_constant,
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    allocation_type type, MEMFLAGS flags) {
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  return (address)operator new(size, nothrow_constant, type, flags);
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}
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void ResourceObj::operator delete(void* p) {
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  assert(((ResourceObj *)p)->allocated_on_C_heap(),
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         "delete only allowed for C_HEAP objects");
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  DEBUG_ONLY(((ResourceObj *)p)->_allocation_t[0] = (uintptr_t)badHeapOopVal;)
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  FreeHeap(p);
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}
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void ResourceObj::operator delete [](void* p) {
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  operator delete(p);
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}
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#ifdef ASSERT
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void ResourceObj::set_allocation_type(address res, allocation_type type) {
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    // Set allocation type in the resource object
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    uintptr_t allocation = (uintptr_t)res;
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    assert((allocation & allocation_mask) == 0, "address should be aligned to 4 bytes at least");
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    assert(type <= allocation_mask, "incorrect allocation type");
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    ResourceObj* resobj = (ResourceObj *)res;
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    resobj->_allocation_t[0] = ~(allocation + type);
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    if (type != STACK_OR_EMBEDDED) {
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      // Called from operator new() and CollectionSetChooser(),
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      // set verification value.
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      resobj->_allocation_t[1] = (uintptr_t)&(resobj->_allocation_t[1]) + type;
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    }
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}
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ResourceObj::allocation_type ResourceObj::get_allocation_type() const {
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    assert(~(_allocation_t[0] | allocation_mask) == (uintptr_t)this, "lost resource object");
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    return (allocation_type)((~_allocation_t[0]) & allocation_mask);
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}
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bool ResourceObj::is_type_set() const {
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    allocation_type type = (allocation_type)(_allocation_t[1] & allocation_mask);
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    return get_allocation_type()  == type &&
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           (_allocation_t[1] - type) == (uintptr_t)(&_allocation_t[1]);
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}
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ResourceObj::ResourceObj() { // default constructor
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    if (~(_allocation_t[0] | allocation_mask) != (uintptr_t)this) {
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      // Operator new() is not called for allocations
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      // on stack and for embedded objects.
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      set_allocation_type((address)this, STACK_OR_EMBEDDED);
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    } else if (allocated_on_stack()) { // STACK_OR_EMBEDDED
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      // For some reason we got a value which resembles
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      // an embedded or stack object (operator new() does not
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      // set such type). Keep it since it is valid value
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      // (even if it was garbage).
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      // Ignore garbage in other fields.
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    } else if (is_type_set()) {
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      // Operator new() was called and type was set.
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      assert(!allocated_on_stack(),
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             err_msg("not embedded or stack, this(" PTR_FORMAT ") type %d a[0]=(" PTR_FORMAT ") a[1]=(" PTR_FORMAT ")",
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                     this, get_allocation_type(), _allocation_t[0], _allocation_t[1]));
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    } else {
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      // Operator new() was not called.
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      // Assume that it is embedded or stack object.
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      set_allocation_type((address)this, STACK_OR_EMBEDDED);
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    }
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    _allocation_t[1] = 0; // Zap verification value
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}
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ResourceObj::ResourceObj(const ResourceObj& r) { // default copy constructor
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    // Used in ClassFileParser::parse_constant_pool_entries() for ClassFileStream.
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    // Note: garbage may resembles valid value.
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    assert(~(_allocation_t[0] | allocation_mask) != (uintptr_t)this || !is_type_set(),
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           err_msg("embedded or stack only, this(" PTR_FORMAT ") type %d a[0]=(" PTR_FORMAT ") a[1]=(" PTR_FORMAT ")",
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                   this, get_allocation_type(), _allocation_t[0], _allocation_t[1]));
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    set_allocation_type((address)this, STACK_OR_EMBEDDED);
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    _allocation_t[1] = 0; // Zap verification value
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}
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ResourceObj& ResourceObj::operator=(const ResourceObj& r) { // default copy assignment
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    // Used in InlineTree::ok_to_inline() for WarmCallInfo.
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    assert(allocated_on_stack(),
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           err_msg("copy only into local, this(" PTR_FORMAT ") type %d a[0]=(" PTR_FORMAT ") a[1]=(" PTR_FORMAT ")",
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                   this, get_allocation_type(), _allocation_t[0], _allocation_t[1]));
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    // Keep current _allocation_t value;
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    return *this;
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}
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ResourceObj::~ResourceObj() {
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    // allocated_on_C_heap() also checks that encoded (in _allocation) address == this.
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    if (!allocated_on_C_heap()) { // ResourceObj::delete() will zap _allocation for C_heap.
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      _allocation_t[0] = (uintptr_t)badHeapOopVal; // zap type
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    }
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}
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#endif // ASSERT
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void trace_heap_malloc(size_t size, const char* name, void* p) {
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  // A lock is not needed here - tty uses a lock internally
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  tty->print_cr("Heap malloc " INTPTR_FORMAT " " SIZE_FORMAT " %s", p, size, name == NULL ? "" : name);
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}
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void trace_heap_free(void* p) {
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  // A lock is not needed here - tty uses a lock internally
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  tty->print_cr("Heap free   " INTPTR_FORMAT, p);
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}
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//--------------------------------------------------------------------------------------
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// ChunkPool implementation
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// MT-safe pool of chunks to reduce malloc/free thrashing
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// NB: not using Mutex because pools are used before Threads are initialized
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class ChunkPool: public CHeapObj<mtInternal> {
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  Chunk*       _first;        // first cached Chunk; its first word points to next chunk
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  size_t       _num_chunks;   // number of unused chunks in pool
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  size_t       _num_used;     // number of chunks currently checked out
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  const size_t _size;         // size of each chunk (must be uniform)
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  // Our three static pools
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  static ChunkPool* _large_pool;
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  static ChunkPool* _medium_pool;
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  static ChunkPool* _small_pool;
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  // return first element or null
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  void* get_first() {
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    Chunk* c = _first;
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    if (_first) {
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      _first = _first->next();
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      _num_chunks--;
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    }
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    return c;
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  }
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 public:
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  // All chunks in a ChunkPool has the same size
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   ChunkPool(size_t size) : _size(size) { _first = NULL; _num_chunks = _num_used = 0; }
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  // Allocate a new chunk from the pool (might expand the pool)
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  _NOINLINE_ void* allocate(size_t bytes) {
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    assert(bytes == _size, "bad size");
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    void* p = NULL;
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    // No VM lock can be taken inside ThreadCritical lock, so os::malloc
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    // should be done outside ThreadCritical lock due to NMT
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    { ThreadCritical tc;
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      _num_used++;
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      p = get_first();
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    }
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    if (p == NULL) p = os::malloc(bytes, mtChunk, CURRENT_PC);
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    if (p == NULL)
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      vm_exit_out_of_memory(bytes, OOM_MALLOC_ERROR, "ChunkPool::allocate");
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    return p;
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  }
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  // Return a chunk to the pool
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  void free(Chunk* chunk) {
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    assert(chunk->length() + Chunk::aligned_overhead_size() == _size, "bad size");
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    ThreadCritical tc;
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    _num_used--;
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    // Add chunk to list
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    chunk->set_next(_first);
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    _first = chunk;
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    _num_chunks++;
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  }
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  // Prune the pool
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  void free_all_but(size_t n) {
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    Chunk* cur = NULL;
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    Chunk* next;
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    {
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    // if we have more than n chunks, free all of them
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    ThreadCritical tc;
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    if (_num_chunks > n) {
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      // free chunks at end of queue, for better locality
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        cur = _first;
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      for (size_t i = 0; i < (n - 1) && cur != NULL; i++) cur = cur->next();
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      if (cur != NULL) {
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          next = cur->next();
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        cur->set_next(NULL);
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        cur = next;
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          _num_chunks = n;
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        }
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      }
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    }
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    // Free all remaining chunks, outside of ThreadCritical
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    // to avoid deadlock with NMT
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        while(cur != NULL) {
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          next = cur->next();
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      os::free(cur, mtChunk);
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          cur = next;
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        }
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      }
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  // Accessors to preallocated pool's
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  static ChunkPool* large_pool()  { assert(_large_pool  != NULL, "must be initialized"); return _large_pool;  }
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  static ChunkPool* medium_pool() { assert(_medium_pool != NULL, "must be initialized"); return _medium_pool; }
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  static ChunkPool* small_pool()  { assert(_small_pool  != NULL, "must be initialized"); return _small_pool;  }
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  static void initialize() {
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    _large_pool  = new ChunkPool(Chunk::size        + Chunk::aligned_overhead_size());
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    _medium_pool = new ChunkPool(Chunk::medium_size + Chunk::aligned_overhead_size());
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    _small_pool  = new ChunkPool(Chunk::init_size   + Chunk::aligned_overhead_size());
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  }
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  static void clean() {
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    enum { BlocksToKeep = 5 };
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     _small_pool->free_all_but(BlocksToKeep);
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     _medium_pool->free_all_but(BlocksToKeep);
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     _large_pool->free_all_but(BlocksToKeep);
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  }
1
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};
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ChunkPool* ChunkPool::_large_pool  = NULL;
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ChunkPool* ChunkPool::_medium_pool = NULL;
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ChunkPool* ChunkPool::_small_pool  = NULL;
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void chunkpool_init() {
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  ChunkPool::initialize();
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}
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void
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Chunk::clean_chunk_pool() {
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  ChunkPool::clean();
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   354
}
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1
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//--------------------------------------------------------------------------------------
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// ChunkPoolCleaner implementation
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//
1
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class ChunkPoolCleaner : public PeriodicTask {
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  enum { CleaningInterval = 5000 };      // cleaning interval in ms
1
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   363
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   364
 public:
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   365
   ChunkPoolCleaner() : PeriodicTask(CleaningInterval) {}
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   366
   void task() {
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     ChunkPool::clean();
1
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   368
   }
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   369
};
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   371
//--------------------------------------------------------------------------------------
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   372
// Chunk implementation
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   373
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   374
void* Chunk::operator new(size_t requested_size, size_t length) {
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   375
  // requested_size is equal to sizeof(Chunk) but in order for the arena
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   376
  // allocations to come out aligned as expected the size must be aligned
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   377
  // to expected arena alignment.
1
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   378
  // expect requested_size but if sizeof(Chunk) doesn't match isn't proper size we must align it.
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   379
  assert(ARENA_ALIGN(requested_size) == aligned_overhead_size(), "Bad alignment");
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   380
  size_t bytes = ARENA_ALIGN(requested_size) + length;
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   381
  switch (length) {
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   382
   case Chunk::size:        return ChunkPool::large_pool()->allocate(bytes);
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   383
   case Chunk::medium_size: return ChunkPool::medium_pool()->allocate(bytes);
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   384
   case Chunk::init_size:   return ChunkPool::small_pool()->allocate(bytes);
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   385
   default: {
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   386
     void *p =  os::malloc(bytes, mtChunk, CALLER_PC);
1
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   387
     if (p == NULL)
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f0b76c4c93a0 8011661: Insufficient memory message says "malloc" when sometimes it should say "mmap"
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parents: 17031
diff changeset
   388
       vm_exit_out_of_memory(bytes, OOM_MALLOC_ERROR, "Chunk::new");
1
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   389
     return p;
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   390
   }
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   391
  }
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   392
}
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   393
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   394
void Chunk::operator delete(void* p) {
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   395
  Chunk* c = (Chunk*)p;
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   396
  switch (c->length()) {
489c9b5090e2 Initial load
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diff changeset
   397
   case Chunk::size:        ChunkPool::large_pool()->free(c); break;
489c9b5090e2 Initial load
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diff changeset
   398
   case Chunk::medium_size: ChunkPool::medium_pool()->free(c); break;
489c9b5090e2 Initial load
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parents:
diff changeset
   399
   case Chunk::init_size:   ChunkPool::small_pool()->free(c); break;
13195
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diff changeset
   400
   default:                 os::free(c, mtChunk);
1
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diff changeset
   401
  }
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diff changeset
   402
}
489c9b5090e2 Initial load
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diff changeset
   403
489c9b5090e2 Initial load
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parents:
diff changeset
   404
Chunk::Chunk(size_t length) : _len(length) {
489c9b5090e2 Initial load
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parents:
diff changeset
   405
  _next = NULL;         // Chain on the linked list
489c9b5090e2 Initial load
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parents:
diff changeset
   406
}
489c9b5090e2 Initial load
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diff changeset
   407
489c9b5090e2 Initial load
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diff changeset
   408
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diff changeset
   409
void Chunk::chop() {
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diff changeset
   410
  Chunk *k = this;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   411
  while( k ) {
489c9b5090e2 Initial load
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parents:
diff changeset
   412
    Chunk *tmp = k->next();
489c9b5090e2 Initial load
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parents:
diff changeset
   413
    // clear out this chunk (to detect allocation bugs)
489c9b5090e2 Initial load
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diff changeset
   414
    if (ZapResourceArea) memset(k->bottom(), badResourceValue, k->length());
489c9b5090e2 Initial load
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parents:
diff changeset
   415
    delete k;                   // Free chunk (was malloc'd)
489c9b5090e2 Initial load
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parents:
diff changeset
   416
    k = tmp;
489c9b5090e2 Initial load
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diff changeset
   417
  }
489c9b5090e2 Initial load
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parents:
diff changeset
   418
}
489c9b5090e2 Initial load
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diff changeset
   419
489c9b5090e2 Initial load
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parents:
diff changeset
   420
void Chunk::next_chop() {
489c9b5090e2 Initial load
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parents:
diff changeset
   421
  _next->chop();
489c9b5090e2 Initial load
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parents:
diff changeset
   422
  _next = NULL;
489c9b5090e2 Initial load
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parents:
diff changeset
   423
}
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diff changeset
   424
489c9b5090e2 Initial load
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parents:
diff changeset
   425
489c9b5090e2 Initial load
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parents:
diff changeset
   426
void Chunk::start_chunk_pool_cleaner_task() {
489c9b5090e2 Initial load
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parents:
diff changeset
   427
#ifdef ASSERT
489c9b5090e2 Initial load
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parents:
diff changeset
   428
  static bool task_created = false;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   429
  assert(!task_created, "should not start chuck pool cleaner twice");
489c9b5090e2 Initial load
duke
parents:
diff changeset
   430
  task_created = true;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   431
#endif
489c9b5090e2 Initial load
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parents:
diff changeset
   432
  ChunkPoolCleaner* cleaner = new ChunkPoolCleaner();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   433
  cleaner->enroll();
489c9b5090e2 Initial load
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parents:
diff changeset
   434
}
489c9b5090e2 Initial load
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parents:
diff changeset
   435
489c9b5090e2 Initial load
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parents:
diff changeset
   436
//------------------------------Arena------------------------------------------
13195
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   437
NOT_PRODUCT(volatile jint Arena::_instance_count = 0;)
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   438
489c9b5090e2 Initial load
duke
parents:
diff changeset
   439
Arena::Arena(size_t init_size) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   440
  size_t round_size = (sizeof (char *)) - 1;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   441
  init_size = (init_size+round_size) & ~round_size;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   442
  _first = _chunk = new (init_size) Chunk(init_size);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   443
  _hwm = _chunk->bottom();      // Save the cached hwm, max
489c9b5090e2 Initial load
duke
parents:
diff changeset
   444
  _max = _chunk->top();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   445
  set_size_in_bytes(init_size);
13195
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   446
  NOT_PRODUCT(Atomic::inc(&_instance_count);)
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   447
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   448
489c9b5090e2 Initial load
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parents:
diff changeset
   449
Arena::Arena() {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   450
  _first = _chunk = new (Chunk::init_size) Chunk(Chunk::init_size);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   451
  _hwm = _chunk->bottom();      // Save the cached hwm, max
489c9b5090e2 Initial load
duke
parents:
diff changeset
   452
  _max = _chunk->top();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   453
  set_size_in_bytes(Chunk::init_size);
13195
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   454
  NOT_PRODUCT(Atomic::inc(&_instance_count);)
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   455
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   456
489c9b5090e2 Initial load
duke
parents:
diff changeset
   457
Arena *Arena::move_contents(Arena *copy) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   458
  copy->destruct_contents();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   459
  copy->_chunk = _chunk;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   460
  copy->_hwm   = _hwm;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   461
  copy->_max   = _max;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   462
  copy->_first = _first;
14120
7d298141c258 7199092: NMT: NMT needs to deal overlapped virtual memory ranges
zgu
parents: 14083
diff changeset
   463
7d298141c258 7199092: NMT: NMT needs to deal overlapped virtual memory ranges
zgu
parents: 14083
diff changeset
   464
  // workaround rare racing condition, which could double count
7d298141c258 7199092: NMT: NMT needs to deal overlapped virtual memory ranges
zgu
parents: 14083
diff changeset
   465
  // the arena size by native memory tracking
7d298141c258 7199092: NMT: NMT needs to deal overlapped virtual memory ranges
zgu
parents: 14083
diff changeset
   466
  size_t size = size_in_bytes();
7d298141c258 7199092: NMT: NMT needs to deal overlapped virtual memory ranges
zgu
parents: 14083
diff changeset
   467
  set_size_in_bytes(0);
7d298141c258 7199092: NMT: NMT needs to deal overlapped virtual memory ranges
zgu
parents: 14083
diff changeset
   468
  copy->set_size_in_bytes(size);
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   469
  // Destroy original arena
489c9b5090e2 Initial load
duke
parents:
diff changeset
   470
  reset();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   471
  return copy;            // Return Arena with contents
489c9b5090e2 Initial load
duke
parents:
diff changeset
   472
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   473
489c9b5090e2 Initial load
duke
parents:
diff changeset
   474
Arena::~Arena() {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   475
  destruct_contents();
13195
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   476
  NOT_PRODUCT(Atomic::dec(&_instance_count);)
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   477
}
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   478
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   479
void* Arena::operator new(size_t size) {
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   480
  assert(false, "Use dynamic memory type binding");
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   481
  return NULL;
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   482
}
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   483
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   484
void* Arena::operator new (size_t size, const std::nothrow_t&  nothrow_constant) {
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   485
  assert(false, "Use dynamic memory type binding");
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   486
  return NULL;
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   487
}
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   488
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   489
  // dynamic memory type binding
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   490
void* Arena::operator new(size_t size, MEMFLAGS flags) {
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   491
#ifdef ASSERT
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   492
  void* p = (void*)AllocateHeap(size, flags|otArena, CALLER_PC);
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   493
  if (PrintMallocFree) trace_heap_malloc(size, "Arena-new", p);
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   494
  return p;
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   495
#else
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   496
  return (void *) AllocateHeap(size, flags|otArena, CALLER_PC);
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   497
#endif
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   498
}
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   499
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   500
void* Arena::operator new(size_t size, const std::nothrow_t& nothrow_constant, MEMFLAGS flags) {
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   501
#ifdef ASSERT
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   502
  void* p = os::malloc(size, flags|otArena, CALLER_PC);
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   503
  if (PrintMallocFree) trace_heap_malloc(size, "Arena-new", p);
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   504
  return p;
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   505
#else
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   506
  return os::malloc(size, flags|otArena, CALLER_PC);
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   507
#endif
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   508
}
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   509
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   510
void Arena::operator delete(void* p) {
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   511
  FreeHeap(p);
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   512
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   513
489c9b5090e2 Initial load
duke
parents:
diff changeset
   514
// Destroy this arenas contents and reset to empty
489c9b5090e2 Initial load
duke
parents:
diff changeset
   515
void Arena::destruct_contents() {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   516
  if (UseMallocOnly && _first != NULL) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   517
    char* end = _first->next() ? _first->top() : _hwm;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   518
    free_malloced_objects(_first, _first->bottom(), end, _hwm);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   519
  }
14120
7d298141c258 7199092: NMT: NMT needs to deal overlapped virtual memory ranges
zgu
parents: 14083
diff changeset
   520
  // reset size before chop to avoid a rare racing condition
7d298141c258 7199092: NMT: NMT needs to deal overlapped virtual memory ranges
zgu
parents: 14083
diff changeset
   521
  // that can have total arena memory exceed total chunk memory
7d298141c258 7199092: NMT: NMT needs to deal overlapped virtual memory ranges
zgu
parents: 14083
diff changeset
   522
  set_size_in_bytes(0);
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   523
  _first->chop();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   524
  reset();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   525
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   526
13195
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   527
// This is high traffic method, but many calls actually don't
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   528
// change the size
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   529
void Arena::set_size_in_bytes(size_t size) {
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   530
  if (_size_in_bytes != size) {
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   531
    _size_in_bytes = size;
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   532
    MemTracker::record_arena_size((address)this, size);
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   533
  }
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   534
}
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   535
489c9b5090e2 Initial load
duke
parents:
diff changeset
   536
// Total of all Chunks in arena
489c9b5090e2 Initial load
duke
parents:
diff changeset
   537
size_t Arena::used() const {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   538
  size_t sum = _chunk->length() - (_max-_hwm); // Size leftover in this Chunk
489c9b5090e2 Initial load
duke
parents:
diff changeset
   539
  register Chunk *k = _first;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   540
  while( k != _chunk) {         // Whilst have Chunks in a row
489c9b5090e2 Initial load
duke
parents:
diff changeset
   541
    sum += k->length();         // Total size of this Chunk
489c9b5090e2 Initial load
duke
parents:
diff changeset
   542
    k = k->next();              // Bump along to next Chunk
489c9b5090e2 Initial load
duke
parents:
diff changeset
   543
  }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   544
  return sum;                   // Return total consumed space.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   545
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   546
8481
42a79b703814 6878713: Verifier heap corruption, relating to backward jsrs
kamg
parents: 8320
diff changeset
   547
void Arena::signal_out_of_memory(size_t sz, const char* whence) const {
17087
f0b76c4c93a0 8011661: Insufficient memory message says "malloc" when sometimes it should say "mmap"
ccheung
parents: 17031
diff changeset
   548
  vm_exit_out_of_memory(sz, OOM_MALLOC_ERROR, whence);
8481
42a79b703814 6878713: Verifier heap corruption, relating to backward jsrs
kamg
parents: 8320
diff changeset
   549
}
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   550
489c9b5090e2 Initial load
duke
parents:
diff changeset
   551
// Grow a new Chunk
14083
103054a71a30 8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents: 13728
diff changeset
   552
void* Arena::grow(size_t x, AllocFailType alloc_failmode) {
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   553
  // Get minimal required size.  Either real big, or even bigger for giant objs
489c9b5090e2 Initial load
duke
parents:
diff changeset
   554
  size_t len = MAX2(x, (size_t) Chunk::size);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   555
489c9b5090e2 Initial load
duke
parents:
diff changeset
   556
  Chunk *k = _chunk;            // Get filled-up chunk address
489c9b5090e2 Initial load
duke
parents:
diff changeset
   557
  _chunk = new (len) Chunk(len);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   558
8481
42a79b703814 6878713: Verifier heap corruption, relating to backward jsrs
kamg
parents: 8320
diff changeset
   559
  if (_chunk == NULL) {
14083
103054a71a30 8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents: 13728
diff changeset
   560
    if (alloc_failmode == AllocFailStrategy::EXIT_OOM) {
103054a71a30 8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents: 13728
diff changeset
   561
      signal_out_of_memory(len * Chunk::aligned_overhead_size(), "Arena::grow");
103054a71a30 8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents: 13728
diff changeset
   562
    }
103054a71a30 8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents: 13728
diff changeset
   563
    return NULL;
8481
42a79b703814 6878713: Verifier heap corruption, relating to backward jsrs
kamg
parents: 8320
diff changeset
   564
  }
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   565
  if (k) k->set_next(_chunk);   // Append new chunk to end of linked list
489c9b5090e2 Initial load
duke
parents:
diff changeset
   566
  else _first = _chunk;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   567
  _hwm  = _chunk->bottom();     // Save the cached hwm, max
489c9b5090e2 Initial load
duke
parents:
diff changeset
   568
  _max =  _chunk->top();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   569
  set_size_in_bytes(size_in_bytes() + len);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   570
  void* result = _hwm;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   571
  _hwm += x;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   572
  return result;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   573
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   574
489c9b5090e2 Initial load
duke
parents:
diff changeset
   575
489c9b5090e2 Initial load
duke
parents:
diff changeset
   576
489c9b5090e2 Initial load
duke
parents:
diff changeset
   577
// Reallocate storage in Arena.
14083
103054a71a30 8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents: 13728
diff changeset
   578
void *Arena::Arealloc(void* old_ptr, size_t old_size, size_t new_size, AllocFailType alloc_failmode) {
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   579
  assert(new_size >= 0, "bad size");
489c9b5090e2 Initial load
duke
parents:
diff changeset
   580
  if (new_size == 0) return NULL;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   581
#ifdef ASSERT
489c9b5090e2 Initial load
duke
parents:
diff changeset
   582
  if (UseMallocOnly) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   583
    // always allocate a new object  (otherwise we'll free this one twice)
14083
103054a71a30 8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents: 13728
diff changeset
   584
    char* copy = (char*)Amalloc(new_size, alloc_failmode);
103054a71a30 8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents: 13728
diff changeset
   585
    if (copy == NULL) {
103054a71a30 8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents: 13728
diff changeset
   586
      return NULL;
103054a71a30 8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents: 13728
diff changeset
   587
    }
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   588
    size_t n = MIN2(old_size, new_size);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   589
    if (n > 0) memcpy(copy, old_ptr, n);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   590
    Afree(old_ptr,old_size);    // Mostly done to keep stats accurate
489c9b5090e2 Initial load
duke
parents:
diff changeset
   591
    return copy;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   592
  }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   593
#endif
489c9b5090e2 Initial load
duke
parents:
diff changeset
   594
  char *c_old = (char*)old_ptr; // Handy name
489c9b5090e2 Initial load
duke
parents:
diff changeset
   595
  // Stupid fast special case
489c9b5090e2 Initial load
duke
parents:
diff changeset
   596
  if( new_size <= old_size ) {  // Shrink in-place
489c9b5090e2 Initial load
duke
parents:
diff changeset
   597
    if( c_old+old_size == _hwm) // Attempt to free the excess bytes
489c9b5090e2 Initial load
duke
parents:
diff changeset
   598
      _hwm = c_old+new_size;    // Adjust hwm
489c9b5090e2 Initial load
duke
parents:
diff changeset
   599
    return c_old;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   600
  }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   601
489c9b5090e2 Initial load
duke
parents:
diff changeset
   602
  // make sure that new_size is legal
489c9b5090e2 Initial load
duke
parents:
diff changeset
   603
  size_t corrected_new_size = ARENA_ALIGN(new_size);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   604
489c9b5090e2 Initial load
duke
parents:
diff changeset
   605
  // See if we can resize in-place
489c9b5090e2 Initial load
duke
parents:
diff changeset
   606
  if( (c_old+old_size == _hwm) &&       // Adjusting recent thing
489c9b5090e2 Initial load
duke
parents:
diff changeset
   607
      (c_old+corrected_new_size <= _max) ) {      // Still fits where it sits
489c9b5090e2 Initial load
duke
parents:
diff changeset
   608
    _hwm = c_old+corrected_new_size;      // Adjust hwm
489c9b5090e2 Initial load
duke
parents:
diff changeset
   609
    return c_old;               // Return old pointer
489c9b5090e2 Initial load
duke
parents:
diff changeset
   610
  }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   611
489c9b5090e2 Initial load
duke
parents:
diff changeset
   612
  // Oops, got to relocate guts
14083
103054a71a30 8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents: 13728
diff changeset
   613
  void *new_ptr = Amalloc(new_size, alloc_failmode);
103054a71a30 8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents: 13728
diff changeset
   614
  if (new_ptr == NULL) {
103054a71a30 8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents: 13728
diff changeset
   615
    return NULL;
103054a71a30 8000617: It should be possible to allocate memory without the VM dying.
nloodin
parents: 13728
diff changeset
   616
  }
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   617
  memcpy( new_ptr, c_old, old_size );
489c9b5090e2 Initial load
duke
parents:
diff changeset
   618
  Afree(c_old,old_size);        // Mostly done to keep stats accurate
489c9b5090e2 Initial load
duke
parents:
diff changeset
   619
  return new_ptr;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   620
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   621
489c9b5090e2 Initial load
duke
parents:
diff changeset
   622
489c9b5090e2 Initial load
duke
parents:
diff changeset
   623
// Determine if pointer belongs to this Arena or not.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   624
bool Arena::contains( const void *ptr ) const {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   625
#ifdef ASSERT
489c9b5090e2 Initial load
duke
parents:
diff changeset
   626
  if (UseMallocOnly) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   627
    // really slow, but not easy to make fast
489c9b5090e2 Initial load
duke
parents:
diff changeset
   628
    if (_chunk == NULL) return false;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   629
    char** bottom = (char**)_chunk->bottom();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   630
    for (char** p = (char**)_hwm - 1; p >= bottom; p--) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   631
      if (*p == ptr) return true;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   632
    }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   633
    for (Chunk *c = _first; c != NULL; c = c->next()) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   634
      if (c == _chunk) continue;  // current chunk has been processed
489c9b5090e2 Initial load
duke
parents:
diff changeset
   635
      char** bottom = (char**)c->bottom();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   636
      for (char** p = (char**)c->top() - 1; p >= bottom; p--) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   637
        if (*p == ptr) return true;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   638
      }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   639
    }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   640
    return false;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   641
  }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   642
#endif
489c9b5090e2 Initial load
duke
parents:
diff changeset
   643
  if( (void*)_chunk->bottom() <= ptr && ptr < (void*)_hwm )
489c9b5090e2 Initial load
duke
parents:
diff changeset
   644
    return true;                // Check for in this chunk
489c9b5090e2 Initial load
duke
parents:
diff changeset
   645
  for (Chunk *c = _first; c; c = c->next()) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   646
    if (c == _chunk) continue;  // current chunk has been processed
489c9b5090e2 Initial load
duke
parents:
diff changeset
   647
    if ((void*)c->bottom() <= ptr && ptr < (void*)c->top()) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   648
      return true;              // Check for every chunk in Arena
489c9b5090e2 Initial load
duke
parents:
diff changeset
   649
    }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   650
  }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   651
  return false;                 // Not in any Chunk, so not in Arena
489c9b5090e2 Initial load
duke
parents:
diff changeset
   652
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   653
489c9b5090e2 Initial load
duke
parents:
diff changeset
   654
489c9b5090e2 Initial load
duke
parents:
diff changeset
   655
#ifdef ASSERT
489c9b5090e2 Initial load
duke
parents:
diff changeset
   656
void* Arena::malloc(size_t size) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   657
  assert(UseMallocOnly, "shouldn't call");
489c9b5090e2 Initial load
duke
parents:
diff changeset
   658
  // use malloc, but save pointer in res. area for later freeing
489c9b5090e2 Initial load
duke
parents:
diff changeset
   659
  char** save = (char**)internal_malloc_4(sizeof(char*));
13195
be27e1b6a4b9 6995781: Native Memory Tracking (Phase 1)
zgu
parents: 10565
diff changeset
   660
  return (*save = (char*)os::malloc(size, mtChunk));
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   661
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   662
489c9b5090e2 Initial load
duke
parents:
diff changeset
   663
// for debugging with UseMallocOnly
489c9b5090e2 Initial load
duke
parents:
diff changeset
   664
void* Arena::internal_malloc_4(size_t x) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   665
  assert( (x&(sizeof(char*)-1)) == 0, "misaligned size" );
8481
42a79b703814 6878713: Verifier heap corruption, relating to backward jsrs
kamg
parents: 8320
diff changeset
   666
  check_for_overflow(x, "Arena::internal_malloc_4");
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   667
  if (_hwm + x > _max) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   668
    return grow(x);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   669
  } else {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   670
    char *old = _hwm;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   671
    _hwm += x;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   672
    return old;
489c9b5090e2 Initial load
duke
parents:
diff changeset
   673
  }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   674
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   675
#endif
489c9b5090e2 Initial load
duke
parents:
diff changeset
   676
489c9b5090e2 Initial load
duke
parents:
diff changeset
   677
489c9b5090e2 Initial load
duke
parents:
diff changeset
   678
//--------------------------------------------------------------------------------------
489c9b5090e2 Initial load
duke
parents:
diff changeset
   679
// Non-product code
489c9b5090e2 Initial load
duke
parents:
diff changeset
   680
489c9b5090e2 Initial load
duke
parents:
diff changeset
   681
#ifndef PRODUCT
489c9b5090e2 Initial load
duke
parents:
diff changeset
   682
// The global operator new should never be called since it will usually indicate
489c9b5090e2 Initial load
duke
parents:
diff changeset
   683
// a memory leak.  Use CHeapObj as the base class of such objects to make it explicit
489c9b5090e2 Initial load
duke
parents:
diff changeset
   684
// that they're allocated on the C heap.
489c9b5090e2 Initial load
duke
parents:
diff changeset
   685
// Commented out in product version to avoid conflicts with third-party C++ native code.
17376
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   686
// On certain platforms, such as Mac OS X (Darwin), in debug version, new is being called
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   687
// from jdk source and causing data corruption. Such as
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   688
//  Java_sun_security_ec_ECKeyPairGenerator_generateECKeyPair
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   689
// define ALLOW_OPERATOR_NEW_USAGE for platform on which global operator new allowed.
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   690
//
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   691
#ifndef ALLOW_OPERATOR_NEW_USAGE
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   692
void* operator new(size_t size){
17376
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   693
  assert(false, "Should not call global operator new");
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   694
  return 0;
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   695
}
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   696
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   697
void* operator new [](size_t size){
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   698
  assert(false, "Should not call global operator new[]");
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   699
  return 0;
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   700
}
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   701
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   702
void* operator new(size_t size, const std::nothrow_t&  nothrow_constant){
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   703
  assert(false, "Should not call global operator new");
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   704
  return 0;
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   705
}
17376
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   706
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   707
void* operator new [](size_t size, std::nothrow_t&  nothrow_constant){
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   708
  assert(false, "Should not call global operator new[]");
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   709
  return 0;
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   710
}
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   711
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   712
void operator delete(void* p) {
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   713
  assert(false, "Should not call global delete");
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   714
}
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   715
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   716
void operator delete [](void* p) {
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   717
  assert(false, "Should not call global delete []");
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   718
}
4ee999c3c007 8012902: remove use of global operator new - take 2
minqi
parents: 17087
diff changeset
   719
#endif // ALLOW_OPERATOR_NEW_USAGE
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   720
489c9b5090e2 Initial load
duke
parents:
diff changeset
   721
void AllocatedObj::print() const       { print_on(tty); }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   722
void AllocatedObj::print_value() const { print_value_on(tty); }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   723
489c9b5090e2 Initial load
duke
parents:
diff changeset
   724
void AllocatedObj::print_on(outputStream* st) const {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   725
  st->print_cr("AllocatedObj(" INTPTR_FORMAT ")", this);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   726
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   727
489c9b5090e2 Initial load
duke
parents:
diff changeset
   728
void AllocatedObj::print_value_on(outputStream* st) const {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   729
  st->print("AllocatedObj(" INTPTR_FORMAT ")", this);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   730
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   731
8320
544210b4dd48 7017124: Fix some VM stats to avoid 32-bit overflow
kvn
parents: 7440
diff changeset
   732
julong Arena::_bytes_allocated = 0;
544210b4dd48 7017124: Fix some VM stats to avoid 32-bit overflow
kvn
parents: 7440
diff changeset
   733
544210b4dd48 7017124: Fix some VM stats to avoid 32-bit overflow
kvn
parents: 7440
diff changeset
   734
void Arena::inc_bytes_allocated(size_t x) { inc_stat_counter(&_bytes_allocated, x); }
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   735
489c9b5090e2 Initial load
duke
parents:
diff changeset
   736
AllocStats::AllocStats() {
8320
544210b4dd48 7017124: Fix some VM stats to avoid 32-bit overflow
kvn
parents: 7440
diff changeset
   737
  start_mallocs      = os::num_mallocs;
544210b4dd48 7017124: Fix some VM stats to avoid 32-bit overflow
kvn
parents: 7440
diff changeset
   738
  start_frees        = os::num_frees;
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   739
  start_malloc_bytes = os::alloc_bytes;
8320
544210b4dd48 7017124: Fix some VM stats to avoid 32-bit overflow
kvn
parents: 7440
diff changeset
   740
  start_mfree_bytes  = os::free_bytes;
544210b4dd48 7017124: Fix some VM stats to avoid 32-bit overflow
kvn
parents: 7440
diff changeset
   741
  start_res_bytes    = Arena::_bytes_allocated;
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   742
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   743
8320
544210b4dd48 7017124: Fix some VM stats to avoid 32-bit overflow
kvn
parents: 7440
diff changeset
   744
julong  AllocStats::num_mallocs() { return os::num_mallocs - start_mallocs; }
544210b4dd48 7017124: Fix some VM stats to avoid 32-bit overflow
kvn
parents: 7440
diff changeset
   745
julong  AllocStats::alloc_bytes() { return os::alloc_bytes - start_malloc_bytes; }
544210b4dd48 7017124: Fix some VM stats to avoid 32-bit overflow
kvn
parents: 7440
diff changeset
   746
julong  AllocStats::num_frees()   { return os::num_frees - start_frees; }
544210b4dd48 7017124: Fix some VM stats to avoid 32-bit overflow
kvn
parents: 7440
diff changeset
   747
julong  AllocStats::free_bytes()  { return os::free_bytes - start_mfree_bytes; }
544210b4dd48 7017124: Fix some VM stats to avoid 32-bit overflow
kvn
parents: 7440
diff changeset
   748
julong  AllocStats::resource_bytes() { return Arena::_bytes_allocated - start_res_bytes; }
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   749
void    AllocStats::print() {
8320
544210b4dd48 7017124: Fix some VM stats to avoid 32-bit overflow
kvn
parents: 7440
diff changeset
   750
  tty->print_cr(UINT64_FORMAT " mallocs (" UINT64_FORMAT "MB), "
544210b4dd48 7017124: Fix some VM stats to avoid 32-bit overflow
kvn
parents: 7440
diff changeset
   751
                UINT64_FORMAT" frees (" UINT64_FORMAT "MB), " UINT64_FORMAT "MB resrc",
544210b4dd48 7017124: Fix some VM stats to avoid 32-bit overflow
kvn
parents: 7440
diff changeset
   752
                num_mallocs(), alloc_bytes()/M, num_frees(), free_bytes()/M, resource_bytes()/M);
1
489c9b5090e2 Initial load
duke
parents:
diff changeset
   753
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   754
489c9b5090e2 Initial load
duke
parents:
diff changeset
   755
489c9b5090e2 Initial load
duke
parents:
diff changeset
   756
// debugging code
489c9b5090e2 Initial load
duke
parents:
diff changeset
   757
inline void Arena::free_all(char** start, char** end) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   758
  for (char** p = start; p < end; p++) if (*p) os::free(*p);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   759
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   760
489c9b5090e2 Initial load
duke
parents:
diff changeset
   761
void Arena::free_malloced_objects(Chunk* chunk, char* hwm, char* max, char* hwm2) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   762
  assert(UseMallocOnly, "should not call");
489c9b5090e2 Initial load
duke
parents:
diff changeset
   763
  // free all objects malloced since resource mark was created; resource area
489c9b5090e2 Initial load
duke
parents:
diff changeset
   764
  // contains their addresses
489c9b5090e2 Initial load
duke
parents:
diff changeset
   765
  if (chunk->next()) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   766
    // this chunk is full, and some others too
489c9b5090e2 Initial load
duke
parents:
diff changeset
   767
    for (Chunk* c = chunk->next(); c != NULL; c = c->next()) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   768
      char* top = c->top();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   769
      if (c->next() == NULL) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   770
        top = hwm2;     // last junk is only used up to hwm2
489c9b5090e2 Initial load
duke
parents:
diff changeset
   771
        assert(c->contains(hwm2), "bad hwm2");
489c9b5090e2 Initial load
duke
parents:
diff changeset
   772
      }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   773
      free_all((char**)c->bottom(), (char**)top);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   774
    }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   775
    assert(chunk->contains(hwm), "bad hwm");
489c9b5090e2 Initial load
duke
parents:
diff changeset
   776
    assert(chunk->contains(max), "bad max");
489c9b5090e2 Initial load
duke
parents:
diff changeset
   777
    free_all((char**)hwm, (char**)max);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   778
  } else {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   779
    // this chunk was partially used
489c9b5090e2 Initial load
duke
parents:
diff changeset
   780
    assert(chunk->contains(hwm), "bad hwm");
489c9b5090e2 Initial load
duke
parents:
diff changeset
   781
    assert(chunk->contains(hwm2), "bad hwm2");
489c9b5090e2 Initial load
duke
parents:
diff changeset
   782
    free_all((char**)hwm, (char**)hwm2);
489c9b5090e2 Initial load
duke
parents:
diff changeset
   783
  }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   784
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   785
489c9b5090e2 Initial load
duke
parents:
diff changeset
   786
489c9b5090e2 Initial load
duke
parents:
diff changeset
   787
ReallocMark::ReallocMark() {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   788
#ifdef ASSERT
489c9b5090e2 Initial load
duke
parents:
diff changeset
   789
  Thread *thread = ThreadLocalStorage::get_thread_slow();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   790
  _nesting = thread->resource_area()->nesting();
489c9b5090e2 Initial load
duke
parents:
diff changeset
   791
#endif
489c9b5090e2 Initial load
duke
parents:
diff changeset
   792
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   793
489c9b5090e2 Initial load
duke
parents:
diff changeset
   794
void ReallocMark::check() {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   795
#ifdef ASSERT
489c9b5090e2 Initial load
duke
parents:
diff changeset
   796
  if (_nesting != Thread::current()->resource_area()->nesting()) {
489c9b5090e2 Initial load
duke
parents:
diff changeset
   797
    fatal("allocation bug: array could grow within nested ResourceMark");
489c9b5090e2 Initial load
duke
parents:
diff changeset
   798
  }
489c9b5090e2 Initial load
duke
parents:
diff changeset
   799
#endif
489c9b5090e2 Initial load
duke
parents:
diff changeset
   800
}
489c9b5090e2 Initial load
duke
parents:
diff changeset
   801
489c9b5090e2 Initial load
duke
parents:
diff changeset
   802
#endif // Non-product