74ae13716b
Reviewed-by: kbarrett, sjohanss, lkorinth
231 lines
6.9 KiB
C++
231 lines
6.9 KiB
C++
/*
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* Copyright (c) 2019, 2020, 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/g1/g1NUMAStats.hpp"
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#include "logging/logStream.hpp"
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double G1NUMAStats::Stat::rate() const {
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return _requested == 0 ? 0 : (double)_hit / _requested * 100;
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}
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G1NUMAStats::NodeDataArray::NodeDataArray(uint num_nodes) {
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// The row represents the number of nodes.
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_num_column = num_nodes;
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// +1 for G1MemoryNodeManager::AnyNodeIndex.
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_num_row = num_nodes + 1;
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_data = NEW_C_HEAP_ARRAY(size_t*, _num_row, mtGC);
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for (uint row = 0; row < _num_row; row++) {
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_data[row] = NEW_C_HEAP_ARRAY(size_t, _num_column, mtGC);
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}
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clear();
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}
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G1NUMAStats::NodeDataArray::~NodeDataArray() {
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for (uint row = 0; row < _num_row; row++) {
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FREE_C_HEAP_ARRAY(size_t, _data[row]);
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}
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FREE_C_HEAP_ARRAY(size_t*, _data);
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}
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void G1NUMAStats::NodeDataArray::create_hit_rate(Stat* result) const {
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size_t requested = 0;
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size_t hit = 0;
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for (size_t row = 0; row < _num_row; row++) {
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for (size_t column = 0; column < _num_column; column++) {
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requested += _data[row][column];
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if (row == column) {
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hit += _data[row][column];
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}
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}
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}
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assert(result != NULL, "Invariant");
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result->_hit = hit;
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result->_requested = requested;
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}
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void G1NUMAStats::NodeDataArray::create_hit_rate(Stat* result, uint req_index) const {
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size_t requested = 0;
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size_t hit = _data[req_index][req_index];
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for (size_t column = 0; column < _num_column; column++) {
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requested += _data[req_index][column];
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}
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assert(result != NULL, "Invariant");
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result->_hit = hit;
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result->_requested = requested;
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}
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size_t G1NUMAStats::NodeDataArray::sum(uint req_index) const {
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size_t sum = 0;
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for (size_t column = 0; column < _num_column; column++) {
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sum += _data[req_index][column];
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}
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return sum;
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}
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void G1NUMAStats::NodeDataArray::increase(uint req_index, uint alloc_index) {
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assert(req_index < _num_row,
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"Requested index %u should be less than the row size %u",
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req_index, _num_row);
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assert(alloc_index < _num_column,
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"Allocated index %u should be less than the column size %u",
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alloc_index, _num_column);
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_data[req_index][alloc_index] += 1;
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}
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void G1NUMAStats::NodeDataArray::clear() {
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for (uint row = 0; row < _num_row; row++) {
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memset((void*)_data[row], 0, sizeof(size_t) * _num_column);
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}
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}
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size_t G1NUMAStats::NodeDataArray::get(uint req_index, uint alloc_index) {
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return _data[req_index][alloc_index];
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}
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void G1NUMAStats::NodeDataArray::copy(uint req_index, size_t* stat) {
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assert(stat != NULL, "Invariant");
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for (uint column = 0; column < _num_column; column++) {
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_data[req_index][column] += stat[column];
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}
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}
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G1NUMAStats::G1NUMAStats(const int* node_ids, uint num_node_ids) :
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_node_ids(node_ids), _num_node_ids(num_node_ids), _node_data() {
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assert(_num_node_ids > 1, "Should have at least one node id: %u", _num_node_ids);
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for (int i = 0; i < NodeDataItemsSentinel; i++) {
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_node_data[i] = new NodeDataArray(_num_node_ids);
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}
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}
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G1NUMAStats::~G1NUMAStats() {
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for (int i = 0; i < NodeDataItemsSentinel; i++) {
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delete _node_data[i];
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}
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}
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void G1NUMAStats::clear(G1NUMAStats::NodeDataItems phase) {
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_node_data[phase]->clear();
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}
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void G1NUMAStats::update(G1NUMAStats::NodeDataItems phase,
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uint requested_node_index,
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uint allocated_node_index) {
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_node_data[phase]->increase(requested_node_index, allocated_node_index);
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}
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void G1NUMAStats::copy(G1NUMAStats::NodeDataItems phase,
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uint requested_node_index,
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size_t* allocated_stat) {
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_node_data[phase]->copy(requested_node_index, allocated_stat);
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}
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static const char* phase_to_explanatory_string(G1NUMAStats::NodeDataItems phase) {
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switch(phase) {
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case G1NUMAStats::NewRegionAlloc:
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return "Placement match ratio";
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case G1NUMAStats::LocalObjProcessAtCopyToSurv:
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return "Worker task locality match ratio";
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default:
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return "";
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}
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}
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#define RATE_TOTAL_FORMAT "%0.0f%% " SIZE_FORMAT "/" SIZE_FORMAT
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void G1NUMAStats::print_info(G1NUMAStats::NodeDataItems phase) {
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LogTarget(Info, gc, heap, numa) lt;
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if (lt.is_enabled()) {
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LogStream ls(lt);
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Stat result;
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size_t array_width = _num_node_ids;
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_node_data[phase]->create_hit_rate(&result);
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ls.print("%s: " RATE_TOTAL_FORMAT " (",
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phase_to_explanatory_string(phase), result.rate(), result._hit, result._requested);
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for (uint i = 0; i < array_width; i++) {
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if (i != 0) {
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ls.print(", ");
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}
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_node_data[phase]->create_hit_rate(&result, i);
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ls.print("%d: " RATE_TOTAL_FORMAT,
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_node_ids[i], result.rate(), result._hit, result._requested);
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}
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ls.print_cr(")");
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}
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}
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void G1NUMAStats::print_mutator_alloc_stat_debug() {
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LogTarget(Debug, gc, heap, numa) lt;
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if (lt.is_enabled()) {
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LogStream ls(lt);
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uint array_width = _num_node_ids;
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ls.print("Allocated NUMA ids ");
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for (uint i = 0; i < array_width; i++) {
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ls.print("%8d", _node_ids[i]);
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}
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ls.print_cr(" Total");
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ls.print("Requested NUMA id ");
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for (uint req = 0; req < array_width; req++) {
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ls.print("%3d ", _node_ids[req]);
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for (uint alloc = 0; alloc < array_width; alloc++) {
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ls.print(SIZE_FORMAT_W(8), _node_data[NewRegionAlloc]->get(req, alloc));
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}
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ls.print(SIZE_FORMAT_W(8), _node_data[NewRegionAlloc]->sum(req));
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ls.print_cr("");
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// Add padding to align with the string 'Requested NUMA id'.
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ls.print(" ");
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}
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ls.print("Any ");
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for (uint alloc = 0; alloc < array_width; alloc++) {
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ls.print(SIZE_FORMAT_W(8), _node_data[NewRegionAlloc]->get(array_width, alloc));
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}
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ls.print(SIZE_FORMAT_W(8), _node_data[NewRegionAlloc]->sum(array_width));
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ls.print_cr("");
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}
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}
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void G1NUMAStats::print_statistics() {
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print_info(NewRegionAlloc);
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print_mutator_alloc_stat_debug();
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print_info(LocalObjProcessAtCopyToSurv);
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}
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