author | johnc |
Tue, 13 Mar 2012 11:05:32 -0700 | |
changeset 12270 | 9625585c6047 |
parent 10243 | d00a21009f1f |
child 12381 | 1438e0fbfa27 |
permissions | -rw-r--r-- |
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/* |
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* Copyright (c) 2011, 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 "gc_implementation/g1/g1AllocRegion.inline.hpp" |
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#include "gc_implementation/g1/g1CollectedHeap.inline.hpp" |
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G1CollectedHeap* G1AllocRegion::_g1h = NULL; |
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HeapRegion* G1AllocRegion::_dummy_region = NULL; |
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void G1AllocRegion::setup(G1CollectedHeap* g1h, HeapRegion* dummy_region) { |
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assert(_dummy_region == NULL, "should be set once"); |
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assert(dummy_region != NULL, "pre-condition"); |
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assert(dummy_region->free() == 0, "pre-condition"); |
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|
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// Make sure that any allocation attempt on this region will fail |
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// and will not trigger any asserts. |
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assert(allocate(dummy_region, 1, false) == NULL, "should fail"); |
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assert(par_allocate(dummy_region, 1, false) == NULL, "should fail"); |
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assert(allocate(dummy_region, 1, true) == NULL, "should fail"); |
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assert(par_allocate(dummy_region, 1, true) == NULL, "should fail"); |
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|
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_g1h = g1h; |
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_dummy_region = dummy_region; |
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} |
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void G1AllocRegion::fill_up_remaining_space(HeapRegion* alloc_region, |
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bool bot_updates) { |
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assert(alloc_region != NULL && alloc_region != _dummy_region, |
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"pre-condition"); |
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// Other threads might still be trying to allocate using a CAS out |
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// of the region we are trying to retire, as they can do so without |
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// holding the lock. So, we first have to make sure that noone else |
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// can allocate out of it by doing a maximal allocation. Even if our |
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// CAS attempt fails a few times, we'll succeed sooner or later |
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// given that failed CAS attempts mean that the region is getting |
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// closed to being full. |
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size_t free_word_size = alloc_region->free() / HeapWordSize; |
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// This is the minimum free chunk we can turn into a dummy |
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// object. If the free space falls below this, then noone can |
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// allocate in this region anyway (all allocation requests will be |
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// of a size larger than this) so we won't have to perform the dummy |
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// allocation. |
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size_t min_word_size_to_fill = CollectedHeap::min_fill_size(); |
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while (free_word_size >= min_word_size_to_fill) { |
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HeapWord* dummy = par_allocate(alloc_region, free_word_size, bot_updates); |
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if (dummy != NULL) { |
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// If the allocation was successful we should fill in the space. |
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CollectedHeap::fill_with_object(dummy, free_word_size); |
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alloc_region->set_pre_dummy_top(dummy); |
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break; |
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} |
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free_word_size = alloc_region->free() / HeapWordSize; |
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// It's also possible that someone else beats us to the |
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// allocation and they fill up the region. In that case, we can |
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// just get out of the loop. |
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} |
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assert(alloc_region->free() / HeapWordSize < min_word_size_to_fill, |
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"post-condition"); |
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} |
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void G1AllocRegion::retire(bool fill_up) { |
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assert(_alloc_region != NULL, ar_ext_msg(this, "not initialized properly")); |
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trace("retiring"); |
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HeapRegion* alloc_region = _alloc_region; |
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if (alloc_region != _dummy_region) { |
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// We never have to check whether the active region is empty or not, |
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// and potentially free it if it is, given that it's guaranteed that |
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// it will never be empty. |
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assert(!alloc_region->is_empty(), |
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ar_ext_msg(this, "the alloc region should never be empty")); |
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if (fill_up) { |
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fill_up_remaining_space(alloc_region, _bot_updates); |
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} |
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assert(alloc_region->used() >= _used_bytes_before, |
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ar_ext_msg(this, "invariant")); |
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size_t allocated_bytes = alloc_region->used() - _used_bytes_before; |
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retire_region(alloc_region, allocated_bytes); |
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_used_bytes_before = 0; |
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_alloc_region = _dummy_region; |
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} |
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trace("retired"); |
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} |
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HeapWord* G1AllocRegion::new_alloc_region_and_allocate(size_t word_size, |
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bool force) { |
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assert(_alloc_region == _dummy_region, ar_ext_msg(this, "pre-condition")); |
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assert(_used_bytes_before == 0, ar_ext_msg(this, "pre-condition")); |
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|
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trace("attempting region allocation"); |
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HeapRegion* new_alloc_region = allocate_new_region(word_size, force); |
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if (new_alloc_region != NULL) { |
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new_alloc_region->reset_pre_dummy_top(); |
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// Need to do this before the allocation |
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_used_bytes_before = new_alloc_region->used(); |
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HeapWord* result = allocate(new_alloc_region, word_size, _bot_updates); |
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assert(result != NULL, ar_ext_msg(this, "the allocation should succeeded")); |
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|
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OrderAccess::storestore(); |
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// Note that we first perform the allocation and then we store the |
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// region in _alloc_region. This is the reason why an active region |
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// can never be empty. |
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_alloc_region = new_alloc_region; |
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_count += 1; |
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trace("region allocation successful"); |
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return result; |
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} else { |
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trace("region allocation failed"); |
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return NULL; |
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} |
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ShouldNotReachHere(); |
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} |
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|
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void G1AllocRegion::fill_in_ext_msg(ar_ext_msg* msg, const char* message) { |
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msg->append("[%s] %s c: "SIZE_FORMAT" b: %s r: "PTR_FORMAT" u: "SIZE_FORMAT, |
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_name, message, _count, BOOL_TO_STR(_bot_updates), |
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_alloc_region, _used_bytes_before); |
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} |
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|
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void G1AllocRegion::init() { |
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trace("initializing"); |
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assert(_alloc_region == NULL && _used_bytes_before == 0, |
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ar_ext_msg(this, "pre-condition")); |
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assert(_dummy_region != NULL, ar_ext_msg(this, "should have been set")); |
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_alloc_region = _dummy_region; |
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_count = 0; |
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trace("initialized"); |
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} |
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|
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void G1AllocRegion::set(HeapRegion* alloc_region) { |
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trace("setting"); |
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// We explicitly check that the region is not empty to make sure we |
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// maintain the "the alloc region cannot be empty" invariant. |
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assert(alloc_region != NULL && !alloc_region->is_empty(), |
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ar_ext_msg(this, "pre-condition")); |
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assert(_alloc_region == _dummy_region && |
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_used_bytes_before == 0 && _count == 0, |
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ar_ext_msg(this, "pre-condition")); |
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|
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_used_bytes_before = alloc_region->used(); |
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_alloc_region = alloc_region; |
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_count += 1; |
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trace("set"); |
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} |
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|
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HeapRegion* G1AllocRegion::release() { |
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trace("releasing"); |
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HeapRegion* alloc_region = _alloc_region; |
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retire(false /* fill_up */); |
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assert(_alloc_region == _dummy_region, |
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ar_ext_msg(this, "post-condition of retire()")); |
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_alloc_region = NULL; |
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trace("released"); |
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return (alloc_region == _dummy_region) ? NULL : alloc_region; |
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} |
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|
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#if G1_ALLOC_REGION_TRACING |
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void G1AllocRegion::trace(const char* str, size_t word_size, HeapWord* result) { |
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// All the calls to trace that set either just the size or the size |
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// and the result are considered part of level 2 tracing and are |
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// skipped during level 1 tracing. |
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if ((word_size == 0 && result == NULL) || (G1_ALLOC_REGION_TRACING > 1)) { |
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const size_t buffer_length = 128; |
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char hr_buffer[buffer_length]; |
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char rest_buffer[buffer_length]; |
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194 |
|
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HeapRegion* alloc_region = _alloc_region; |
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if (alloc_region == NULL) { |
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jio_snprintf(hr_buffer, buffer_length, "NULL"); |
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} else if (alloc_region == _dummy_region) { |
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jio_snprintf(hr_buffer, buffer_length, "DUMMY"); |
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} else { |
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jio_snprintf(hr_buffer, buffer_length, |
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HR_FORMAT, HR_FORMAT_PARAMS(alloc_region)); |
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203 |
} |
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204 |
|
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if (G1_ALLOC_REGION_TRACING > 1) { |
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if (result != NULL) { |
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jio_snprintf(rest_buffer, buffer_length, SIZE_FORMAT" "PTR_FORMAT, |
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208 |
word_size, result); |
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209 |
} else if (word_size != 0) { |
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jio_snprintf(rest_buffer, buffer_length, SIZE_FORMAT, word_size); |
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211 |
} else { |
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jio_snprintf(rest_buffer, buffer_length, ""); |
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213 |
} |
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} else { |
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jio_snprintf(rest_buffer, buffer_length, ""); |
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} |
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217 |
|
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tty->print_cr("[%s] "SIZE_FORMAT" %s : %s %s", |
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_name, _count, hr_buffer, str, rest_buffer); |
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220 |
} |
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221 |
} |
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#endif // G1_ALLOC_REGION_TRACING |
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223 |
|
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G1AllocRegion::G1AllocRegion(const char* name, |
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225 |
bool bot_updates) |
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: _name(name), _bot_updates(bot_updates), |
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_alloc_region(NULL), _count(0), _used_bytes_before(0) { } |
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228 |