author | tonyp |
Wed, 18 Apr 2012 07:21:15 -0400 | |
changeset 12381 | 1438e0fbfa27 |
parent 10996 | b9d07748e5b3 |
child 13334 | a737bbd385f5 |
permissions | -rw-r--r-- |
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/* |
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* Copyright (c) 2011, 2012, 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/heapRegionSet.inline.hpp" |
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uint HeapRegionSetBase::_unrealistically_long_length = 0; |
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HRSPhase HeapRegionSetBase::_phase = HRSPhaseNone; |
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//////////////////// HeapRegionSetBase //////////////////// |
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void HeapRegionSetBase::set_unrealistically_long_length(uint len) { |
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guarantee(_unrealistically_long_length == 0, "should only be set once"); |
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_unrealistically_long_length = len; |
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} |
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uint HeapRegionSetBase::calculate_region_num(HeapRegion* hr) { |
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assert(hr->startsHumongous(), "pre-condition"); |
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assert(hr->capacity() % HeapRegion::GrainBytes == 0, "invariant"); |
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uint region_num = (uint) (hr->capacity() >> HeapRegion::LogOfHRGrainBytes); |
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assert(region_num > 0, "sanity"); |
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return region_num; |
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} |
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void HeapRegionSetBase::fill_in_ext_msg(hrs_ext_msg* msg, const char* message) { |
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msg->append("[%s] %s ln: %u rn: %u cy: "SIZE_FORMAT" ud: "SIZE_FORMAT, |
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name(), message, length(), region_num(), |
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total_capacity_bytes(), total_used_bytes()); |
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fill_in_ext_msg_extra(msg); |
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} |
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bool HeapRegionSetBase::verify_region(HeapRegion* hr, |
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HeapRegionSetBase* expected_containing_set) { |
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const char* error_message = NULL; |
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if (!regions_humongous()) { |
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if (hr->isHumongous()) { |
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error_message = "the region should not be humongous"; |
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} |
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} else { |
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if (!hr->isHumongous() || !hr->startsHumongous()) { |
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error_message = "the region should be 'starts humongous'"; |
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} |
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} |
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if (!regions_empty()) { |
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if (hr->is_empty()) { |
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error_message = "the region should not be empty"; |
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} |
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} else { |
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if (!hr->is_empty()) { |
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error_message = "the region should be empty"; |
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} |
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} |
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#ifdef ASSERT |
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// The _containing_set field is only available when ASSERT is defined. |
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if (hr->containing_set() != expected_containing_set) { |
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error_message = "inconsistent containing set found"; |
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} |
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#endif // ASSERT |
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const char* extra_error_message = verify_region_extra(hr); |
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if (extra_error_message != NULL) { |
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error_message = extra_error_message; |
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} |
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if (error_message != NULL) { |
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outputStream* out = tty; |
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out->cr(); |
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out->print_cr("## [%s] %s", name(), error_message); |
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out->print_cr("## Offending Region: "PTR_FORMAT, hr); |
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out->print_cr(" "HR_FORMAT, HR_FORMAT_PARAMS(hr)); |
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#ifdef ASSERT |
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out->print_cr(" containing set: "PTR_FORMAT, hr->containing_set()); |
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#endif // ASSERT |
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out->print_cr("## Offending Region Set: "PTR_FORMAT, this); |
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print_on(out); |
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return false; |
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} else { |
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return true; |
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} |
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} |
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void HeapRegionSetBase::verify() { |
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// It's important that we also observe the MT safety protocol even |
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// for the verification calls. If we do verification without the |
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// appropriate locks and the set changes underneath our feet |
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// verification might fail and send us on a wild goose chase. |
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hrs_assert_mt_safety_ok(this); |
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guarantee(( is_empty() && length() == 0 && region_num() == 0 && |
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total_used_bytes() == 0 && total_capacity_bytes() == 0) || |
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(!is_empty() && length() >= 0 && region_num() >= 0 && |
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total_used_bytes() >= 0 && total_capacity_bytes() >= 0), |
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hrs_ext_msg(this, "invariant")); |
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guarantee((!regions_humongous() && region_num() == length()) || |
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( regions_humongous() && region_num() >= length()), |
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hrs_ext_msg(this, "invariant")); |
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guarantee(!regions_empty() || total_used_bytes() == 0, |
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hrs_ext_msg(this, "invariant")); |
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guarantee(total_used_bytes() <= total_capacity_bytes(), |
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hrs_ext_msg(this, "invariant")); |
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} |
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void HeapRegionSetBase::verify_start() { |
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// See comment in verify() about MT safety and verification. |
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hrs_assert_mt_safety_ok(this); |
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assert(!_verify_in_progress, |
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hrs_ext_msg(this, "verification should not be in progress")); |
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// Do the basic verification first before we do the checks over the regions. |
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HeapRegionSetBase::verify(); |
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_calc_length = 0; |
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_calc_region_num = 0; |
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_calc_total_capacity_bytes = 0; |
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_calc_total_used_bytes = 0; |
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_verify_in_progress = true; |
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} |
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void HeapRegionSetBase::verify_next_region(HeapRegion* hr) { |
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// See comment in verify() about MT safety and verification. |
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hrs_assert_mt_safety_ok(this); |
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assert(_verify_in_progress, |
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hrs_ext_msg(this, "verification should be in progress")); |
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guarantee(verify_region(hr, this), hrs_ext_msg(this, "region verification")); |
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_calc_length += 1; |
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if (!hr->isHumongous()) { |
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_calc_region_num += 1; |
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} else { |
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_calc_region_num += calculate_region_num(hr); |
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} |
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_calc_total_capacity_bytes += hr->capacity(); |
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_calc_total_used_bytes += hr->used(); |
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} |
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void HeapRegionSetBase::verify_end() { |
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// See comment in verify() about MT safety and verification. |
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hrs_assert_mt_safety_ok(this); |
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assert(_verify_in_progress, |
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hrs_ext_msg(this, "verification should be in progress")); |
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guarantee(length() == _calc_length, |
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hrs_err_msg("[%s] length: %u should be == calc length: %u", |
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name(), length(), _calc_length)); |
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guarantee(region_num() == _calc_region_num, |
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hrs_err_msg("[%s] region num: %u should be == calc region num: %u", |
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name(), region_num(), _calc_region_num)); |
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guarantee(total_capacity_bytes() == _calc_total_capacity_bytes, |
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hrs_err_msg("[%s] capacity bytes: "SIZE_FORMAT" should be == " |
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"calc capacity bytes: "SIZE_FORMAT, |
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name(), |
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total_capacity_bytes(), _calc_total_capacity_bytes)); |
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guarantee(total_used_bytes() == _calc_total_used_bytes, |
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hrs_err_msg("[%s] used bytes: "SIZE_FORMAT" should be == " |
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"calc used bytes: "SIZE_FORMAT, |
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name(), total_used_bytes(), _calc_total_used_bytes)); |
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_verify_in_progress = false; |
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} |
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void HeapRegionSetBase::clear_phase() { |
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assert(_phase != HRSPhaseNone, "pre-condition"); |
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_phase = HRSPhaseNone; |
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} |
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void HeapRegionSetBase::set_phase(HRSPhase phase) { |
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assert(_phase == HRSPhaseNone, "pre-condition"); |
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assert(phase != HRSPhaseNone, "pre-condition"); |
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_phase = phase; |
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} |
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void HeapRegionSetBase::print_on(outputStream* out, bool print_contents) { |
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out->cr(); |
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out->print_cr("Set: %s ("PTR_FORMAT")", name(), this); |
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out->print_cr(" Region Assumptions"); |
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out->print_cr(" humongous : %s", BOOL_TO_STR(regions_humongous())); |
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out->print_cr(" empty : %s", BOOL_TO_STR(regions_empty())); |
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out->print_cr(" Attributes"); |
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out->print_cr(" length : %14u", length()); |
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out->print_cr(" region num : %14u", region_num()); |
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out->print_cr(" total capacity : "SIZE_FORMAT_W(14)" bytes", |
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total_capacity_bytes()); |
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out->print_cr(" total used : "SIZE_FORMAT_W(14)" bytes", |
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total_used_bytes()); |
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} |
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void HeapRegionSetBase::clear() { |
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_length = 0; |
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_region_num = 0; |
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_total_used_bytes = 0; |
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} |
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HeapRegionSetBase::HeapRegionSetBase(const char* name) |
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: _name(name), _verify_in_progress(false), |
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_calc_length(0), _calc_region_num(0), |
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_calc_total_capacity_bytes(0), _calc_total_used_bytes(0) { } |
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//////////////////// HeapRegionSet //////////////////// |
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void HeapRegionSet::update_from_proxy(HeapRegionSet* proxy_set) { |
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hrs_assert_mt_safety_ok(this); |
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hrs_assert_mt_safety_ok(proxy_set); |
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hrs_assert_sets_match(this, proxy_set); |
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verify_optional(); |
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proxy_set->verify_optional(); |
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if (proxy_set->is_empty()) return; |
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assert(proxy_set->length() <= _length, |
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hrs_err_msg("[%s] proxy set length: %u should be <= length: %u", |
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name(), proxy_set->length(), _length)); |
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_length -= proxy_set->length(); |
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assert(proxy_set->region_num() <= _region_num, |
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hrs_err_msg("[%s] proxy set region num: %u should be <= region num: %u", |
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name(), proxy_set->region_num(), _region_num)); |
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_region_num -= proxy_set->region_num(); |
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assert(proxy_set->total_used_bytes() <= _total_used_bytes, |
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hrs_err_msg("[%s] proxy set used bytes: "SIZE_FORMAT" " |
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"should be <= used bytes: "SIZE_FORMAT, |
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name(), proxy_set->total_used_bytes(), |
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_total_used_bytes)); |
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_total_used_bytes -= proxy_set->total_used_bytes(); |
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proxy_set->clear(); |
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verify_optional(); |
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proxy_set->verify_optional(); |
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} |
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//////////////////// HeapRegionLinkedList //////////////////// |
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void HeapRegionLinkedList::fill_in_ext_msg_extra(hrs_ext_msg* msg) { |
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msg->append(" hd: "PTR_FORMAT" tl: "PTR_FORMAT, head(), tail()); |
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} |
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void HeapRegionLinkedList::add_as_head(HeapRegionLinkedList* from_list) { |
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hrs_assert_mt_safety_ok(this); |
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hrs_assert_mt_safety_ok(from_list); |
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verify_optional(); |
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from_list->verify_optional(); |
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if (from_list->is_empty()) return; |
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#ifdef ASSERT |
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HeapRegionLinkedListIterator iter(from_list); |
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while (iter.more_available()) { |
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HeapRegion* hr = iter.get_next(); |
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// In set_containing_set() we check that we either set the value |
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// from NULL to non-NULL or vice versa to catch bugs. So, we have |
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// to NULL it first before setting it to the value. |
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hr->set_containing_set(NULL); |
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hr->set_containing_set(this); |
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} |
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#endif // ASSERT |
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if (_head != NULL) { |
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assert(length() > 0 && _tail != NULL, hrs_ext_msg(this, "invariant")); |
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from_list->_tail->set_next(_head); |
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} else { |
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assert(length() == 0 && _head == NULL, hrs_ext_msg(this, "invariant")); |
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_tail = from_list->_tail; |
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} |
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_head = from_list->_head; |
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_length += from_list->length(); |
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_region_num += from_list->region_num(); |
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_total_used_bytes += from_list->total_used_bytes(); |
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from_list->clear(); |
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|
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verify_optional(); |
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from_list->verify_optional(); |
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} |
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|
7923 | 309 |
void HeapRegionLinkedList::add_as_tail(HeapRegionLinkedList* from_list) { |
8680 | 310 |
hrs_assert_mt_safety_ok(this); |
311 |
hrs_assert_mt_safety_ok(from_list); |
|
7923 | 312 |
|
313 |
verify_optional(); |
|
314 |
from_list->verify_optional(); |
|
315 |
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if (from_list->is_empty()) return; |
|
317 |
||
318 |
#ifdef ASSERT |
|
319 |
HeapRegionLinkedListIterator iter(from_list); |
|
320 |
while (iter.more_available()) { |
|
321 |
HeapRegion* hr = iter.get_next(); |
|
322 |
// In set_containing_set() we check that we either set the value |
|
323 |
// from NULL to non-NULL or vice versa to catch bugs. So, we have |
|
324 |
// to NULL it first before setting it to the value. |
|
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hr->set_containing_set(NULL); |
|
326 |
hr->set_containing_set(this); |
|
327 |
} |
|
328 |
#endif // ASSERT |
|
329 |
||
330 |
if (_tail != NULL) { |
|
8680 | 331 |
assert(length() > 0 && _head != NULL, hrs_ext_msg(this, "invariant")); |
7923 | 332 |
_tail->set_next(from_list->_head); |
333 |
} else { |
|
8680 | 334 |
assert(length() == 0 && _head == NULL, hrs_ext_msg(this, "invariant")); |
7923 | 335 |
_head = from_list->_head; |
336 |
} |
|
337 |
_tail = from_list->_tail; |
|
338 |
||
339 |
_length += from_list->length(); |
|
340 |
_region_num += from_list->region_num(); |
|
341 |
_total_used_bytes += from_list->total_used_bytes(); |
|
342 |
from_list->clear(); |
|
343 |
||
344 |
verify_optional(); |
|
345 |
from_list->verify_optional(); |
|
346 |
} |
|
347 |
||
348 |
void HeapRegionLinkedList::remove_all() { |
|
8680 | 349 |
hrs_assert_mt_safety_ok(this); |
7923 | 350 |
verify_optional(); |
351 |
||
352 |
HeapRegion* curr = _head; |
|
353 |
while (curr != NULL) { |
|
8680 | 354 |
hrs_assert_region_ok(this, curr, this); |
7923 | 355 |
|
356 |
HeapRegion* next = curr->next(); |
|
357 |
curr->set_next(NULL); |
|
358 |
curr->set_containing_set(NULL); |
|
359 |
curr = next; |
|
360 |
} |
|
361 |
clear(); |
|
362 |
||
363 |
verify_optional(); |
|
364 |
} |
|
365 |
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void HeapRegionLinkedList::remove_all_pending(uint target_count) { |
8680 | 367 |
hrs_assert_mt_safety_ok(this); |
368 |
assert(target_count > 1, hrs_ext_msg(this, "pre-condition")); |
|
369 |
assert(!is_empty(), hrs_ext_msg(this, "pre-condition")); |
|
7923 | 370 |
|
371 |
verify_optional(); |
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DEBUG_ONLY(uint old_length = length();) |
7923 | 373 |
|
374 |
HeapRegion* curr = _head; |
|
375 |
HeapRegion* prev = NULL; |
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uint count = 0; |
7923 | 377 |
while (curr != NULL) { |
8680 | 378 |
hrs_assert_region_ok(this, curr, this); |
7923 | 379 |
HeapRegion* next = curr->next(); |
380 |
||
381 |
if (curr->pending_removal()) { |
|
382 |
assert(count < target_count, |
|
8680 | 383 |
hrs_err_msg("[%s] should not come across more regions " |
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"pending for removal than target_count: %u", |
7923 | 385 |
name(), target_count)); |
386 |
||
387 |
if (prev == NULL) { |
|
8680 | 388 |
assert(_head == curr, hrs_ext_msg(this, "invariant")); |
7923 | 389 |
_head = next; |
390 |
} else { |
|
8680 | 391 |
assert(_head != curr, hrs_ext_msg(this, "invariant")); |
7923 | 392 |
prev->set_next(next); |
393 |
} |
|
394 |
if (next == NULL) { |
|
8680 | 395 |
assert(_tail == curr, hrs_ext_msg(this, "invariant")); |
7923 | 396 |
_tail = prev; |
397 |
} else { |
|
8680 | 398 |
assert(_tail != curr, hrs_ext_msg(this, "invariant")); |
7923 | 399 |
} |
400 |
||
401 |
curr->set_next(NULL); |
|
402 |
remove_internal(curr); |
|
403 |
curr->set_pending_removal(false); |
|
404 |
||
405 |
count += 1; |
|
406 |
||
407 |
// If we have come across the target number of regions we can |
|
408 |
// just bail out. However, for debugging purposes, we can just |
|
409 |
// carry on iterating to make sure there are not more regions |
|
410 |
// tagged with pending removal. |
|
411 |
DEBUG_ONLY(if (count == target_count) break;) |
|
412 |
} else { |
|
413 |
prev = curr; |
|
414 |
} |
|
415 |
curr = next; |
|
416 |
} |
|
417 |
||
418 |
assert(count == target_count, |
|
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hrs_err_msg("[%s] count: %u should be == target_count: %u", |
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name(), count, target_count)); |
7923 | 421 |
assert(length() + target_count == old_length, |
8680 | 422 |
hrs_err_msg("[%s] new length should be consistent " |
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423 |
"new length: %u old length: %u target_count: %u", |
7923 | 424 |
name(), length(), old_length, target_count)); |
425 |
||
426 |
verify_optional(); |
|
427 |
} |
|
428 |
||
429 |
void HeapRegionLinkedList::verify() { |
|
430 |
// See comment in HeapRegionSetBase::verify() about MT safety and |
|
431 |
// verification. |
|
8680 | 432 |
hrs_assert_mt_safety_ok(this); |
7923 | 433 |
|
434 |
// This will also do the basic verification too. |
|
435 |
verify_start(); |
|
436 |
||
437 |
HeapRegion* curr = _head; |
|
438 |
HeapRegion* prev1 = NULL; |
|
439 |
HeapRegion* prev0 = NULL; |
|
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uint count = 0; |
7923 | 441 |
while (curr != NULL) { |
442 |
verify_next_region(curr); |
|
443 |
||
444 |
count += 1; |
|
445 |
guarantee(count < _unrealistically_long_length, |
|
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446 |
hrs_err_msg("[%s] the calculated length: %u " |
7923 | 447 |
"seems very long, is there maybe a cycle? " |
448 |
"curr: "PTR_FORMAT" prev0: "PTR_FORMAT" " |
|
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449 |
"prev1: "PTR_FORMAT" length: %u", |
7923 | 450 |
name(), count, curr, prev0, prev1, length())); |
451 |
||
452 |
prev1 = prev0; |
|
453 |
prev0 = curr; |
|
454 |
curr = curr->next(); |
|
455 |
} |
|
456 |
||
8680 | 457 |
guarantee(_tail == prev0, hrs_ext_msg(this, "post-condition")); |
7923 | 458 |
|
459 |
verify_end(); |
|
460 |
} |
|
461 |
||
462 |
void HeapRegionLinkedList::clear() { |
|
463 |
HeapRegionSetBase::clear(); |
|
464 |
_head = NULL; |
|
465 |
_tail = NULL; |
|
466 |
} |
|
467 |
||
468 |
void HeapRegionLinkedList::print_on(outputStream* out, bool print_contents) { |
|
469 |
HeapRegionSetBase::print_on(out, print_contents); |
|
470 |
out->print_cr(" Linking"); |
|
471 |
out->print_cr(" head : "PTR_FORMAT, _head); |
|
472 |
out->print_cr(" tail : "PTR_FORMAT, _tail); |
|
473 |
||
474 |
if (print_contents) { |
|
475 |
out->print_cr(" Contents"); |
|
476 |
HeapRegionLinkedListIterator iter(this); |
|
477 |
while (iter.more_available()) { |
|
478 |
HeapRegion* hr = iter.get_next(); |
|
479 |
hr->print_on(out); |
|
480 |
} |
|
481 |
} |
|
482 |
} |