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Elliott Hughes2faa5f12012-01-30 14:42:07 -08001/*
2 * Copyright (C) 2011 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
Carl Shapiro69759ea2011-07-21 18:13:35 -070016
Brian Carlstrom578bbdc2011-07-21 14:07:47 -070017#include "heap.h"
Carl Shapiro58551df2011-07-24 03:09:51 -070018
Mathieu Chartier752a0e62013-06-27 11:03:27 -070019#define ATRACE_TAG ATRACE_TAG_DALVIK
20#include <cutils/trace.h>
Brian Carlstrom5643b782012-02-05 12:32:53 -080021
Brian Carlstrom58ae9412011-10-04 00:56:06 -070022#include <limits>
Carl Shapiro58551df2011-07-24 03:09:51 -070023#include <vector>
24
Elliott Hughes1aa246d2012-12-13 09:29:36 -080025#include "base/stl_util.h"
Mathieu Chartier987ccff2013-07-08 11:05:21 -070026#include "common_throws.h"
Ian Rogers48931882013-01-22 14:35:16 -080027#include "cutils/sched_policy.h"
Elliott Hughes767a1472011-10-26 18:49:02 -070028#include "debugger.h"
Ian Rogers1d54e732013-05-02 21:10:01 -070029#include "gc/accounting/atomic_stack.h"
30#include "gc/accounting/card_table-inl.h"
31#include "gc/accounting/heap_bitmap-inl.h"
32#include "gc/accounting/mod_union_table-inl.h"
33#include "gc/accounting/space_bitmap-inl.h"
34#include "gc/collector/mark_sweep-inl.h"
35#include "gc/collector/partial_mark_sweep.h"
36#include "gc/collector/sticky_mark_sweep.h"
37#include "gc/space/image_space.h"
38#include "gc/space/large_object_space.h"
39#include "gc/space/space-inl.h"
Brian Carlstrom9cff8e12011-08-18 16:47:29 -070040#include "image.h"
Jeff Hao5d917302013-02-27 17:57:33 -080041#include "invoke_arg_array_builder.h"
Ian Rogers2dd0e2c2013-01-24 12:42:14 -080042#include "mirror/class-inl.h"
43#include "mirror/field-inl.h"
44#include "mirror/object.h"
45#include "mirror/object-inl.h"
46#include "mirror/object_array-inl.h"
Ian Rogers6d4d9fc2011-11-30 16:24:48 -080047#include "object_utils.h"
Brian Carlstrom5643b782012-02-05 12:32:53 -080048#include "os.h"
Mathieu Chartier7664f5c2012-06-08 18:15:32 -070049#include "ScopedLocalRef.h"
Ian Rogers00f7d0e2012-07-19 15:28:27 -070050#include "scoped_thread_state_change.h"
Ian Rogers1f539342012-10-03 21:09:42 -070051#include "sirt_ref.h"
Elliott Hughes8d768a92011-09-14 16:35:25 -070052#include "thread_list.h"
Elliott Hughes767a1472011-10-26 18:49:02 -070053#include "UniquePtr.h"
Elliott Hugheseac76672012-05-24 21:56:51 -070054#include "well_known_classes.h"
Carl Shapiro69759ea2011-07-21 18:13:35 -070055
56namespace art {
Ian Rogers1d54e732013-05-02 21:10:01 -070057namespace gc {
Carl Shapiro69759ea2011-07-21 18:13:35 -070058
Ian Rogers1d54e732013-05-02 21:10:01 -070059// When to create a log message about a slow GC, 100ms.
Mathieu Chartier2b82db42012-11-14 17:29:05 -080060static const uint64_t kSlowGcThreshold = MsToNs(100);
Mathieu Chartier82353312013-07-18 10:47:51 -070061// When to create a log message about a long pause, 5ms.
Mathieu Chartier2b82db42012-11-14 17:29:05 -080062static const uint64_t kLongGcPauseThreshold = MsToNs(5);
Mathieu Chartier0418ae22013-07-31 13:35:46 -070063static const bool kGCALotMode = false;
64static const size_t kGcAlotInterval = KB;
Mathieu Chartier65db8802012-11-20 12:36:46 -080065static const bool kDumpGcPerformanceOnShutdown = false;
Ian Rogers1d54e732013-05-02 21:10:01 -070066// Minimum amount of remaining bytes before a concurrent GC is triggered.
67static const size_t kMinConcurrentRemainingBytes = 128 * KB;
Mathieu Chartier0051be62012-10-12 17:47:11 -070068const double Heap::kDefaultTargetUtilization = 0.5;
69
Mathieu Chartier0051be62012-10-12 17:47:11 -070070Heap::Heap(size_t initial_size, size_t growth_limit, size_t min_free, size_t max_free,
Mathieu Chartiere0a53e92013-08-05 10:17:40 -070071 double target_utilization, size_t capacity, const std::string& original_image_file_name,
72 bool concurrent_gc, size_t num_gc_threads, bool low_memory_mode)
Ian Rogers00f7d0e2012-07-19 15:28:27 -070073 : alloc_space_(NULL),
Elliott Hughesb3bd5f02012-03-08 21:05:27 -080074 card_table_(NULL),
Ian Rogers00f7d0e2012-07-19 15:28:27 -070075 concurrent_gc_(concurrent_gc),
Mathieu Chartier63a54342013-07-23 13:17:59 -070076 num_gc_threads_(num_gc_threads),
Mathieu Chartiere0a53e92013-08-05 10:17:40 -070077 low_memory_mode_(low_memory_mode),
Ian Rogers00f7d0e2012-07-19 15:28:27 -070078 have_zygote_space_(false),
Ian Rogers1d54e732013-05-02 21:10:01 -070079 reference_queue_lock_(NULL),
Elliott Hughesb3bd5f02012-03-08 21:05:27 -080080 is_gc_running_(false),
Ian Rogers1d54e732013-05-02 21:10:01 -070081 last_gc_type_(collector::kGcTypeNone),
Mathieu Chartierbdd0fb92013-07-02 10:16:15 -070082 next_gc_type_(collector::kGcTypePartial),
Mathieu Chartier80de7a62012-11-27 17:21:50 -080083 capacity_(capacity),
Mathieu Chartier2fde5332012-09-14 14:51:54 -070084 growth_limit_(growth_limit),
Mathieu Chartier0051be62012-10-12 17:47:11 -070085 max_allowed_footprint_(initial_size),
Mathieu Chartier987ccff2013-07-08 11:05:21 -070086 native_footprint_gc_watermark_(initial_size),
87 native_footprint_limit_(2 * initial_size),
Ian Rogers1d54e732013-05-02 21:10:01 -070088 concurrent_start_bytes_(concurrent_gc ? initial_size - (kMinConcurrentRemainingBytes)
89 : std::numeric_limits<size_t>::max()),
Ian Rogers1d54e732013-05-02 21:10:01 -070090 total_bytes_freed_ever_(0),
91 total_objects_freed_ever_(0),
Mathieu Chartier2fde5332012-09-14 14:51:54 -070092 large_object_threshold_(3 * kPageSize),
Elliott Hughesb3bd5f02012-03-08 21:05:27 -080093 num_bytes_allocated_(0),
Mathieu Chartier987ccff2013-07-08 11:05:21 -070094 native_bytes_allocated_(0),
Mathieu Chartier82353312013-07-18 10:47:51 -070095 process_state_(PROCESS_STATE_TOP),
Mathieu Chartier0a9dc052013-07-25 11:01:28 -070096 gc_memory_overhead_(0),
Mathieu Chartierc7b83a02012-09-11 18:07:39 -070097 verify_missing_card_marks_(false),
98 verify_system_weaks_(false),
99 verify_pre_gc_heap_(false),
100 verify_post_gc_heap_(false),
Mathieu Chartierfd678be2012-08-30 14:50:54 -0700101 verify_mod_union_table_(false),
Mathieu Chartier7469ebf2012-09-24 16:28:36 -0700102 min_alloc_space_size_for_sticky_gc_(2 * MB),
Mathieu Chartierc7b83a02012-09-11 18:07:39 -0700103 min_remaining_space_for_sticky_gc_(1 * MB),
Ian Rogers1d54e732013-05-02 21:10:01 -0700104 last_trim_time_ms_(0),
Mathieu Chartier65db8802012-11-20 12:36:46 -0800105 allocation_rate_(0),
Mathieu Chartier0418ae22013-07-31 13:35:46 -0700106 /* For GC a lot mode, we limit the allocations stacks to be kGcAlotInterval allocations. This
107 * causes a lot of GC since we do a GC for alloc whenever the stack is full. When heap
108 * verification is enabled, we limit the size of allocation stacks to speed up their
109 * searching.
110 */
111 max_allocation_stack_size_(kGCALotMode ? kGcAlotInterval
112 : (kDesiredHeapVerification > kNoHeapVerification) ? KB : MB),
Elliott Hughesb3bd5f02012-03-08 21:05:27 -0800113 reference_referent_offset_(0),
114 reference_queue_offset_(0),
115 reference_queueNext_offset_(0),
116 reference_pendingNext_offset_(0),
117 finalizer_reference_zombie_offset_(0),
Mathieu Chartier0051be62012-10-12 17:47:11 -0700118 min_free_(min_free),
119 max_free_(max_free),
120 target_utilization_(target_utilization),
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700121 total_wait_time_(0),
122 measure_allocation_time_(false),
123 total_allocation_time_(0),
Ian Rogers04d7aa92013-03-16 14:29:17 -0700124 verify_object_mode_(kHeapVerificationNotPermitted) {
Elliott Hughes4dd9b4d2011-12-12 18:29:24 -0800125 if (VLOG_IS_ON(heap) || VLOG_IS_ON(startup)) {
Elliott Hughesb3bd5f02012-03-08 21:05:27 -0800126 LOG(INFO) << "Heap() entering";
Brian Carlstrom0a5b14d2011-09-27 13:29:15 -0700127 }
128
Ian Rogers1d54e732013-05-02 21:10:01 -0700129 live_bitmap_.reset(new accounting::HeapBitmap(this));
130 mark_bitmap_.reset(new accounting::HeapBitmap(this));
Mathieu Chartierb062fdd2012-07-03 09:51:48 -0700131
Ian Rogers30fab402012-01-23 15:43:46 -0800132 // Requested begin for the alloc space, to follow the mapped image and oat files
Brian Carlstrom56d947f2013-07-15 13:14:23 -0700133 byte* requested_alloc_space_begin = NULL;
Brian Carlstrom5643b782012-02-05 12:32:53 -0800134 std::string image_file_name(original_image_file_name);
135 if (!image_file_name.empty()) {
Brian Carlstrom56d947f2013-07-15 13:14:23 -0700136 space::ImageSpace* image_space = space::ImageSpace::Create(image_file_name);
137 CHECK(image_space != NULL) << "Failed to create space for " << image_file_name;
Ian Rogers1d54e732013-05-02 21:10:01 -0700138 AddContinuousSpace(image_space);
Ian Rogers30fab402012-01-23 15:43:46 -0800139 // Oat files referenced by image files immediately follow them in memory, ensure alloc space
140 // isn't going to get in the middle
Brian Carlstrom700c8d32012-11-05 10:42:02 -0800141 byte* oat_file_end_addr = image_space->GetImageHeader().GetOatFileEnd();
142 CHECK_GT(oat_file_end_addr, image_space->End());
Brian Carlstrom56d947f2013-07-15 13:14:23 -0700143 if (oat_file_end_addr > requested_alloc_space_begin) {
144 requested_alloc_space_begin =
145 reinterpret_cast<byte*>(RoundUp(reinterpret_cast<uintptr_t>(oat_file_end_addr),
146 kPageSize));
Brian Carlstrom58ae9412011-10-04 00:56:06 -0700147 }
Brian Carlstrom69b15fb2011-09-03 12:25:21 -0700148 }
149
Mathieu Chartierd8195f12012-10-05 12:21:28 -0700150 // Allocate the large object space.
Ian Rogers22a20862013-03-16 16:34:57 -0700151 const bool kUseFreeListSpaceForLOS = false;
152 if (kUseFreeListSpaceForLOS) {
Ian Rogers1d54e732013-05-02 21:10:01 -0700153 large_object_space_ = space::FreeListSpace::Create("large object space", NULL, capacity);
Ian Rogers22a20862013-03-16 16:34:57 -0700154 } else {
Ian Rogers1d54e732013-05-02 21:10:01 -0700155 large_object_space_ = space::LargeObjectMapSpace::Create("large object space");
Ian Rogers22a20862013-03-16 16:34:57 -0700156 }
Ian Rogers1d54e732013-05-02 21:10:01 -0700157 CHECK(large_object_space_ != NULL) << "Failed to create large object space";
158 AddDiscontinuousSpace(large_object_space_);
Mathieu Chartier8e9a1492012-10-04 12:25:40 -0700159
Hiroshi Yamauchi09b07a92013-07-15 13:17:06 -0700160 alloc_space_ = space::DlMallocSpace::Create(Runtime::Current()->IsZygote() ? "zygote space" : "alloc space",
Ian Rogers1d54e732013-05-02 21:10:01 -0700161 initial_size,
162 growth_limit, capacity,
Brian Carlstrom56d947f2013-07-15 13:14:23 -0700163 requested_alloc_space_begin);
Mathieu Chartiercc236d72012-07-20 10:29:05 -0700164 CHECK(alloc_space_ != NULL) << "Failed to create alloc space";
jeffhao8161c032012-10-31 15:50:00 -0700165 alloc_space_->SetFootprintLimit(alloc_space_->Capacity());
Ian Rogers1d54e732013-05-02 21:10:01 -0700166 AddContinuousSpace(alloc_space_);
Mathieu Chartierb062fdd2012-07-03 09:51:48 -0700167
Ian Rogers1d54e732013-05-02 21:10:01 -0700168 // Compute heap capacity. Continuous spaces are sorted in order of Begin().
169 byte* heap_begin = continuous_spaces_.front()->Begin();
170 size_t heap_capacity = continuous_spaces_.back()->End() - continuous_spaces_.front()->Begin();
171 if (continuous_spaces_.back()->IsDlMallocSpace()) {
172 heap_capacity += continuous_spaces_.back()->AsDlMallocSpace()->NonGrowthLimitCapacity();
Mathieu Chartier2fde5332012-09-14 14:51:54 -0700173 }
Carl Shapiro69759ea2011-07-21 18:13:35 -0700174
Ian Rogers30fab402012-01-23 15:43:46 -0800175 // Mark image objects in the live bitmap
Mathieu Chartier2fde5332012-09-14 14:51:54 -0700176 // TODO: C++0x
Ian Rogers1d54e732013-05-02 21:10:01 -0700177 typedef std::vector<space::ContinuousSpace*>::iterator It;
178 for (It it = continuous_spaces_.begin(); it != continuous_spaces_.end(); ++it) {
179 space::ContinuousSpace* space = *it;
Ian Rogers30fab402012-01-23 15:43:46 -0800180 if (space->IsImageSpace()) {
Ian Rogers1d54e732013-05-02 21:10:01 -0700181 space::ImageSpace* image_space = space->AsImageSpace();
Mathieu Chartier2fde5332012-09-14 14:51:54 -0700182 image_space->RecordImageAllocations(image_space->GetLiveBitmap());
Ian Rogers30fab402012-01-23 15:43:46 -0800183 }
184 }
185
Elliott Hughes6c9c06d2011-11-07 16:43:47 -0800186 // Allocate the card table.
Ian Rogers1d54e732013-05-02 21:10:01 -0700187 card_table_.reset(accounting::CardTable::Create(heap_begin, heap_capacity));
Mathieu Chartiercc236d72012-07-20 10:29:05 -0700188 CHECK(card_table_.get() != NULL) << "Failed to create card table";
Ian Rogers5d76c432011-10-31 21:42:49 -0700189
Mathieu Chartier161a8e02013-08-01 19:12:52 -0700190 image_mod_union_table_.reset(new accounting::ModUnionTableToZygoteAllocspace(this));
Ian Rogers1d54e732013-05-02 21:10:01 -0700191 CHECK(image_mod_union_table_.get() != NULL) << "Failed to create image mod-union table";
Mathieu Chartierb43b7d42012-06-19 13:15:09 -0700192
Ian Rogers1d54e732013-05-02 21:10:01 -0700193 zygote_mod_union_table_.reset(new accounting::ModUnionTableCardCache(this));
Mathieu Chartiercc236d72012-07-20 10:29:05 -0700194 CHECK(zygote_mod_union_table_.get() != NULL) << "Failed to create Zygote mod-union table";
Carl Shapiro69759ea2011-07-21 18:13:35 -0700195
Mathieu Chartier357e9be2012-08-01 11:00:14 -0700196 // TODO: Count objects in the image space here.
Mathieu Chartier1cd9c5c2012-08-23 10:52:44 -0700197 num_bytes_allocated_ = 0;
Ian Rogers0cfe1fb2011-08-26 03:29:44 -0700198
Mathieu Chartierd22d5482012-11-06 17:14:12 -0800199 // Default mark stack size in bytes.
Mathieu Chartierd8195f12012-10-05 12:21:28 -0700200 static const size_t default_mark_stack_size = 64 * KB;
Ian Rogers1d54e732013-05-02 21:10:01 -0700201 mark_stack_.reset(accounting::ObjectStack::Create("mark stack", default_mark_stack_size));
202 allocation_stack_.reset(accounting::ObjectStack::Create("allocation stack",
203 max_allocation_stack_size_));
204 live_stack_.reset(accounting::ObjectStack::Create("live stack",
205 max_allocation_stack_size_));
Mathieu Chartier5301cd22012-05-31 12:11:36 -0700206
Mathieu Chartier65db8802012-11-20 12:36:46 -0800207 // It's still too early to take a lock because there are no threads yet, but we can create locks
208 // now. We don't create it earlier to make it clear that you can't use locks during heap
209 // initialization.
Mathieu Chartierfd678be2012-08-30 14:50:54 -0700210 gc_complete_lock_ = new Mutex("GC complete lock");
Ian Rogersc604d732012-10-14 16:09:54 -0700211 gc_complete_cond_.reset(new ConditionVariable("GC complete condition variable",
212 *gc_complete_lock_));
Brian Carlstrom0a5b14d2011-09-27 13:29:15 -0700213
Mathieu Chartier63a54342013-07-23 13:17:59 -0700214 // Create the reference queue lock, this is required so for parallel object scanning in the GC.
Ian Rogers1d54e732013-05-02 21:10:01 -0700215 reference_queue_lock_ = new Mutex("reference queue lock");
Mathieu Chartier02b6a782012-10-26 13:51:26 -0700216
Ian Rogers1d54e732013-05-02 21:10:01 -0700217 last_gc_time_ns_ = NanoTime();
Mathieu Chartier65db8802012-11-20 12:36:46 -0800218 last_gc_size_ = GetBytesAllocated();
219
Mathieu Chartier2b82db42012-11-14 17:29:05 -0800220 // Create our garbage collectors.
221 for (size_t i = 0; i < 2; ++i) {
222 const bool concurrent = i != 0;
Ian Rogers1d54e732013-05-02 21:10:01 -0700223 mark_sweep_collectors_.push_back(new collector::MarkSweep(this, concurrent));
224 mark_sweep_collectors_.push_back(new collector::PartialMarkSweep(this, concurrent));
225 mark_sweep_collectors_.push_back(new collector::StickyMarkSweep(this, concurrent));
Mathieu Chartier0325e622012-09-05 14:22:51 -0700226 }
227
Brian Carlstrom42748892013-07-18 18:04:08 -0700228 CHECK_NE(max_allowed_footprint_, 0U);
Elliott Hughes4dd9b4d2011-12-12 18:29:24 -0800229 if (VLOG_IS_ON(heap) || VLOG_IS_ON(startup)) {
Elliott Hughesb3bd5f02012-03-08 21:05:27 -0800230 LOG(INFO) << "Heap() exiting";
Brian Carlstrom0a5b14d2011-09-27 13:29:15 -0700231 }
Carl Shapiro69759ea2011-07-21 18:13:35 -0700232}
233
Mathieu Chartier02b6a782012-10-26 13:51:26 -0700234void Heap::CreateThreadPool() {
Mathieu Chartier63a54342013-07-23 13:17:59 -0700235 thread_pool_.reset(new ThreadPool(num_gc_threads_));
Mathieu Chartier02b6a782012-10-26 13:51:26 -0700236}
237
238void Heap::DeleteThreadPool() {
239 thread_pool_.reset(NULL);
240}
241
Mathieu Chartiercc236d72012-07-20 10:29:05 -0700242// Sort spaces based on begin address
Ian Rogers1d54e732013-05-02 21:10:01 -0700243struct ContinuousSpaceSorter {
Brian Carlstromdf629502013-07-17 22:39:56 -0700244 bool operator()(const space::ContinuousSpace* a, const space::ContinuousSpace* b) const {
Mathieu Chartiercc236d72012-07-20 10:29:05 -0700245 return a->Begin() < b->Begin();
246 }
247};
248
Mathieu Chartier82353312013-07-18 10:47:51 -0700249void Heap::UpdateProcessState(ProcessState process_state) {
250 process_state_ = process_state;
251}
252
Ian Rogers1d54e732013-05-02 21:10:01 -0700253void Heap::AddContinuousSpace(space::ContinuousSpace* space) {
Ian Rogers50b35e22012-10-04 10:09:15 -0700254 WriterMutexLock mu(Thread::Current(), *Locks::heap_bitmap_lock_);
Mathieu Chartiercc236d72012-07-20 10:29:05 -0700255 DCHECK(space != NULL);
Mathieu Chartierb062fdd2012-07-03 09:51:48 -0700256 DCHECK(space->GetLiveBitmap() != NULL);
Ian Rogers1d54e732013-05-02 21:10:01 -0700257 live_bitmap_->AddContinuousSpaceBitmap(space->GetLiveBitmap());
Mathieu Chartierb062fdd2012-07-03 09:51:48 -0700258 DCHECK(space->GetMarkBitmap() != NULL);
Ian Rogers1d54e732013-05-02 21:10:01 -0700259 mark_bitmap_->AddContinuousSpaceBitmap(space->GetMarkBitmap());
260 continuous_spaces_.push_back(space);
261 if (space->IsDlMallocSpace() && !space->IsLargeObjectSpace()) {
262 alloc_space_ = space->AsDlMallocSpace();
Mathieu Chartier357e9be2012-08-01 11:00:14 -0700263 }
264
Mathieu Chartiercc236d72012-07-20 10:29:05 -0700265 // Ensure that spaces remain sorted in increasing order of start address (required for CMS finger)
Ian Rogers1d54e732013-05-02 21:10:01 -0700266 std::sort(continuous_spaces_.begin(), continuous_spaces_.end(), ContinuousSpaceSorter());
Mathieu Chartier357e9be2012-08-01 11:00:14 -0700267
268 // Ensure that ImageSpaces < ZygoteSpaces < AllocSpaces so that we can do address based checks to
269 // avoid redundant marking.
270 bool seen_zygote = false, seen_alloc = false;
Ian Rogers1d54e732013-05-02 21:10:01 -0700271 typedef std::vector<space::ContinuousSpace*>::const_iterator It;
272 for (It it = continuous_spaces_.begin(); it != continuous_spaces_.end(); ++it) {
273 space::ContinuousSpace* space = *it;
Mathieu Chartier357e9be2012-08-01 11:00:14 -0700274 if (space->IsImageSpace()) {
275 DCHECK(!seen_zygote);
276 DCHECK(!seen_alloc);
Mathieu Chartierfd678be2012-08-30 14:50:54 -0700277 } else if (space->IsZygoteSpace()) {
Mathieu Chartier357e9be2012-08-01 11:00:14 -0700278 DCHECK(!seen_alloc);
279 seen_zygote = true;
Ian Rogers1d54e732013-05-02 21:10:01 -0700280 } else if (space->IsDlMallocSpace()) {
Mathieu Chartier357e9be2012-08-01 11:00:14 -0700281 seen_alloc = true;
282 }
283 }
Elliott Hughesb3bd5f02012-03-08 21:05:27 -0800284}
285
Mathieu Chartier0a9dc052013-07-25 11:01:28 -0700286void Heap::RegisterGCAllocation(size_t bytes) {
287 if (this != NULL) {
288 gc_memory_overhead_.fetch_add(bytes);
289 }
290}
291
292void Heap::RegisterGCDeAllocation(size_t bytes) {
293 if (this != NULL) {
294 gc_memory_overhead_.fetch_sub(bytes);
295 }
296}
297
Ian Rogers1d54e732013-05-02 21:10:01 -0700298void Heap::AddDiscontinuousSpace(space::DiscontinuousSpace* space) {
299 WriterMutexLock mu(Thread::Current(), *Locks::heap_bitmap_lock_);
300 DCHECK(space != NULL);
301 DCHECK(space->GetLiveObjects() != NULL);
302 live_bitmap_->AddDiscontinuousObjectSet(space->GetLiveObjects());
303 DCHECK(space->GetMarkObjects() != NULL);
304 mark_bitmap_->AddDiscontinuousObjectSet(space->GetMarkObjects());
305 discontinuous_spaces_.push_back(space);
306}
307
Elliott Hughes8b788fe2013-04-17 15:57:01 -0700308void Heap::DumpGcPerformanceInfo(std::ostream& os) {
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700309 // Dump cumulative timings.
Elliott Hughes8b788fe2013-04-17 15:57:01 -0700310 os << "Dumping cumulative Gc timings\n";
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700311 uint64_t total_duration = 0;
Mathieu Chartier2b82db42012-11-14 17:29:05 -0800312
313 // Dump cumulative loggers for each GC type.
314 // TODO: C++0x
315 uint64_t total_paused_time = 0;
Ian Rogers1d54e732013-05-02 21:10:01 -0700316 typedef std::vector<collector::MarkSweep*>::const_iterator It;
317 for (It it = mark_sweep_collectors_.begin();
Sameer Abu Asala8439542013-02-14 16:06:42 -0800318 it != mark_sweep_collectors_.end(); ++it) {
Ian Rogers1d54e732013-05-02 21:10:01 -0700319 collector::MarkSweep* collector = *it;
Sameer Abu Asala8439542013-02-14 16:06:42 -0800320 CumulativeLogger& logger = collector->GetCumulativeTimings();
Mathieu Chartier2b82db42012-11-14 17:29:05 -0800321 if (logger.GetTotalNs() != 0) {
Elliott Hughes8b788fe2013-04-17 15:57:01 -0700322 os << Dumpable<CumulativeLogger>(logger);
Mathieu Chartier2b82db42012-11-14 17:29:05 -0800323 const uint64_t total_ns = logger.GetTotalNs();
Ian Rogers1d54e732013-05-02 21:10:01 -0700324 const uint64_t total_pause_ns = (*it)->GetTotalPausedTimeNs();
Mathieu Chartier2b82db42012-11-14 17:29:05 -0800325 double seconds = NsToMs(logger.GetTotalNs()) / 1000.0;
326 const uint64_t freed_bytes = collector->GetTotalFreedBytes();
327 const uint64_t freed_objects = collector->GetTotalFreedObjects();
Elliott Hughes8b788fe2013-04-17 15:57:01 -0700328 os << collector->GetName() << " total time: " << PrettyDuration(total_ns) << "\n"
329 << collector->GetName() << " paused time: " << PrettyDuration(total_pause_ns) << "\n"
330 << collector->GetName() << " freed: " << freed_objects
331 << " objects with total size " << PrettySize(freed_bytes) << "\n"
332 << collector->GetName() << " throughput: " << freed_objects / seconds << "/s / "
333 << PrettySize(freed_bytes / seconds) << "/s\n";
Mathieu Chartier2b82db42012-11-14 17:29:05 -0800334 total_duration += total_ns;
335 total_paused_time += total_pause_ns;
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700336 }
337 }
338 uint64_t allocation_time = static_cast<uint64_t>(total_allocation_time_) * kTimeAdjust;
Ian Rogers1d54e732013-05-02 21:10:01 -0700339 size_t total_objects_allocated = GetObjectsAllocatedEver();
340 size_t total_bytes_allocated = GetBytesAllocatedEver();
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700341 if (total_duration != 0) {
Brian Carlstrom2d888622013-07-18 17:02:00 -0700342 const double total_seconds = static_cast<double>(total_duration / 1000) / 1000000.0;
Elliott Hughes8b788fe2013-04-17 15:57:01 -0700343 os << "Total time spent in GC: " << PrettyDuration(total_duration) << "\n";
344 os << "Mean GC size throughput: "
Ian Rogers1d54e732013-05-02 21:10:01 -0700345 << PrettySize(GetBytesFreedEver() / total_seconds) << "/s\n";
Elliott Hughes8b788fe2013-04-17 15:57:01 -0700346 os << "Mean GC object throughput: "
Ian Rogers1d54e732013-05-02 21:10:01 -0700347 << (GetObjectsFreedEver() / total_seconds) << " objects/s\n";
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700348 }
Elliott Hughes8b788fe2013-04-17 15:57:01 -0700349 os << "Total number of allocations: " << total_objects_allocated << "\n";
350 os << "Total bytes allocated " << PrettySize(total_bytes_allocated) << "\n";
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700351 if (measure_allocation_time_) {
Elliott Hughes8b788fe2013-04-17 15:57:01 -0700352 os << "Total time spent allocating: " << PrettyDuration(allocation_time) << "\n";
353 os << "Mean allocation time: " << PrettyDuration(allocation_time / total_objects_allocated)
354 << "\n";
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700355 }
Elliott Hughes8b788fe2013-04-17 15:57:01 -0700356 os << "Total mutator paused time: " << PrettyDuration(total_paused_time) << "\n";
357 os << "Total time waiting for GC to complete: " << PrettyDuration(total_wait_time_) << "\n";
Mathieu Chartier0a9dc052013-07-25 11:01:28 -0700358 os << "Approximate GC data structures memory overhead: " << gc_memory_overhead_;
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700359}
360
Elliott Hughesb3bd5f02012-03-08 21:05:27 -0800361Heap::~Heap() {
Mathieu Chartier02b6a782012-10-26 13:51:26 -0700362 if (kDumpGcPerformanceOnShutdown) {
Elliott Hughes8b788fe2013-04-17 15:57:01 -0700363 DumpGcPerformanceInfo(LOG(INFO));
Mathieu Chartier02b6a782012-10-26 13:51:26 -0700364 }
365
Mathieu Chartier2b82db42012-11-14 17:29:05 -0800366 STLDeleteElements(&mark_sweep_collectors_);
367
Mathieu Chartier357e9be2012-08-01 11:00:14 -0700368 // If we don't reset then the mark stack complains in it's destructor.
369 allocation_stack_->Reset();
370 live_stack_->Reset();
371
Elliott Hughesb3bd5f02012-03-08 21:05:27 -0800372 VLOG(heap) << "~Heap()";
Elliott Hughesb3e66df2012-01-12 14:49:18 -0800373 // We can't take the heap lock here because there might be a daemon thread suspended with the
374 // heap lock held. We know though that no non-daemon threads are executing, and we know that
375 // all daemon threads are suspended, and we also know that the threads list have been deleted, so
376 // those threads can't resume. We're the only running thread, and we can do whatever we like...
Ian Rogers1d54e732013-05-02 21:10:01 -0700377 STLDeleteElements(&continuous_spaces_);
378 STLDeleteElements(&discontinuous_spaces_);
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700379 delete gc_complete_lock_;
Ian Rogers1d54e732013-05-02 21:10:01 -0700380 delete reference_queue_lock_;
Carl Shapiro69759ea2011-07-21 18:13:35 -0700381}
382
Ian Rogers1d54e732013-05-02 21:10:01 -0700383space::ContinuousSpace* Heap::FindContinuousSpaceFromObject(const mirror::Object* obj,
384 bool fail_ok) const {
Mathieu Chartierb062fdd2012-07-03 09:51:48 -0700385 // TODO: C++0x auto
Ian Rogers1d54e732013-05-02 21:10:01 -0700386 typedef std::vector<space::ContinuousSpace*>::const_iterator It;
387 for (It it = continuous_spaces_.begin(), end = continuous_spaces_.end(); it != end; ++it) {
Mathieu Chartierfd678be2012-08-30 14:50:54 -0700388 if ((*it)->Contains(obj)) {
389 return *it;
Mathieu Chartierb062fdd2012-07-03 09:51:48 -0700390 }
391 }
Ian Rogers1d54e732013-05-02 21:10:01 -0700392 if (!fail_ok) {
393 LOG(FATAL) << "object " << reinterpret_cast<const void*>(obj) << " not inside any spaces!";
394 }
Mathieu Chartierb062fdd2012-07-03 09:51:48 -0700395 return NULL;
396}
397
Ian Rogers1d54e732013-05-02 21:10:01 -0700398space::DiscontinuousSpace* Heap::FindDiscontinuousSpaceFromObject(const mirror::Object* obj,
399 bool fail_ok) const {
Mathieu Chartierb062fdd2012-07-03 09:51:48 -0700400 // TODO: C++0x auto
Ian Rogers1d54e732013-05-02 21:10:01 -0700401 typedef std::vector<space::DiscontinuousSpace*>::const_iterator It;
402 for (It it = discontinuous_spaces_.begin(), end = discontinuous_spaces_.end(); it != end; ++it) {
403 if ((*it)->Contains(obj)) {
404 return *it;
405 }
406 }
407 if (!fail_ok) {
408 LOG(FATAL) << "object " << reinterpret_cast<const void*>(obj) << " not inside any spaces!";
409 }
410 return NULL;
411}
412
413space::Space* Heap::FindSpaceFromObject(const mirror::Object* obj, bool fail_ok) const {
414 space::Space* result = FindContinuousSpaceFromObject(obj, true);
415 if (result != NULL) {
416 return result;
417 }
418 return FindDiscontinuousSpaceFromObject(obj, true);
419}
420
421space::ImageSpace* Heap::GetImageSpace() const {
422 // TODO: C++0x auto
423 typedef std::vector<space::ContinuousSpace*>::const_iterator It;
424 for (It it = continuous_spaces_.begin(), end = continuous_spaces_.end(); it != end; ++it) {
Mathieu Chartierfd678be2012-08-30 14:50:54 -0700425 if ((*it)->IsImageSpace()) {
426 return (*it)->AsImageSpace();
Mathieu Chartierb062fdd2012-07-03 09:51:48 -0700427 }
428 }
429 return NULL;
430}
431
Elliott Hughes8a8b9cb2012-04-13 18:29:22 -0700432static void MSpaceChunkCallback(void* start, void* end, size_t used_bytes, void* arg) {
Mathieu Chartier2fde5332012-09-14 14:51:54 -0700433 size_t chunk_size = reinterpret_cast<uint8_t*>(end) - reinterpret_cast<uint8_t*>(start);
Elliott Hughes8a8b9cb2012-04-13 18:29:22 -0700434 if (used_bytes < chunk_size) {
Mathieu Chartier2fde5332012-09-14 14:51:54 -0700435 size_t chunk_free_bytes = chunk_size - used_bytes;
436 size_t& max_contiguous_allocation = *reinterpret_cast<size_t*>(arg);
437 max_contiguous_allocation = std::max(max_contiguous_allocation, chunk_free_bytes);
Elliott Hughes8a8b9cb2012-04-13 18:29:22 -0700438 }
Mathieu Chartiere0f0cb32012-08-28 11:26:00 -0700439}
440
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800441mirror::Object* Heap::AllocObject(Thread* self, mirror::Class* c, size_t byte_count) {
442 DCHECK(c == NULL || (c->IsClassClass() && byte_count >= sizeof(mirror::Class)) ||
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700443 (c->IsVariableSize() || c->GetObjectSize() == byte_count) ||
444 strlen(ClassHelper(c).GetDescriptor()) == 0);
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800445 DCHECK_GE(byte_count, sizeof(mirror::Object));
Mathieu Chartiere0f0cb32012-08-28 11:26:00 -0700446
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800447 mirror::Object* obj = NULL;
Mathieu Chartiere0f0cb32012-08-28 11:26:00 -0700448 size_t size = 0;
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700449 uint64_t allocation_start = 0;
Ian Rogers333cf1b2013-07-24 11:57:02 -0700450 if (UNLIKELY(measure_allocation_time_)) {
Mathieu Chartierbdd0fb92013-07-02 10:16:15 -0700451 allocation_start = NanoTime() / kTimeAdjust;
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700452 }
Mathieu Chartiere0f0cb32012-08-28 11:26:00 -0700453
454 // We need to have a zygote space or else our newly allocated large object can end up in the
455 // Zygote resulting in it being prematurely freed.
456 // We can only do this for primive objects since large objects will not be within the card table
457 // range. This also means that we rely on SetClass not dirtying the object's card.
Ian Rogers333cf1b2013-07-24 11:57:02 -0700458 bool large_object_allocation =
459 byte_count >= large_object_threshold_ && have_zygote_space_ && c->IsPrimitiveArray();
460 if (UNLIKELY(large_object_allocation)) {
Mathieu Chartier2fde5332012-09-14 14:51:54 -0700461 size = RoundUp(byte_count, kPageSize);
Ian Rogers1d54e732013-05-02 21:10:01 -0700462 obj = Allocate(self, large_object_space_, size);
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700463 // Make sure that our large object didn't get placed anywhere within the space interval or else
464 // it breaks the immune range.
465 DCHECK(obj == NULL ||
Ian Rogers1d54e732013-05-02 21:10:01 -0700466 reinterpret_cast<byte*>(obj) < continuous_spaces_.front()->Begin() ||
467 reinterpret_cast<byte*>(obj) >= continuous_spaces_.back()->End());
Mathieu Chartiere0f0cb32012-08-28 11:26:00 -0700468 } else {
Ian Rogers50b35e22012-10-04 10:09:15 -0700469 obj = Allocate(self, alloc_space_, byte_count);
Mathieu Chartiere0f0cb32012-08-28 11:26:00 -0700470
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700471 // Ensure that we did not allocate into a zygote space.
Ian Rogers1d54e732013-05-02 21:10:01 -0700472 DCHECK(obj == NULL || !have_zygote_space_ || !FindSpaceFromObject(obj, false)->IsZygoteSpace());
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700473 size = alloc_space_->AllocationSize(obj);
Mathieu Chartiere0f0cb32012-08-28 11:26:00 -0700474 }
475
Mathieu Chartier037813d2012-08-23 16:44:59 -0700476 if (LIKELY(obj != NULL)) {
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700477 obj->SetClass(c);
Mathieu Chartier037813d2012-08-23 16:44:59 -0700478
479 // Record allocation after since we want to use the atomic add for the atomic fence to guard
480 // the SetClass since we do not want the class to appear NULL in another thread.
Mathieu Chartiere0f0cb32012-08-28 11:26:00 -0700481 RecordAllocation(size, obj);
Mathieu Chartier037813d2012-08-23 16:44:59 -0700482
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700483 if (Dbg::IsAllocTrackingEnabled()) {
484 Dbg::RecordAllocation(c, byte_count);
Elliott Hughes418dfe72011-10-06 18:56:27 -0700485 }
Mathieu Chartier2fde5332012-09-14 14:51:54 -0700486 if (static_cast<size_t>(num_bytes_allocated_) >= concurrent_start_bytes_) {
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700487 // The SirtRef is necessary since the calls in RequestConcurrentGC are a safepoint.
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800488 SirtRef<mirror::Object> ref(self, obj);
Ian Rogers1f539342012-10-03 21:09:42 -0700489 RequestConcurrentGC(self);
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700490 }
491 VerifyObject(obj);
492
Ian Rogers333cf1b2013-07-24 11:57:02 -0700493 if (UNLIKELY(measure_allocation_time_)) {
Mathieu Chartier4b95e8f2013-07-15 16:32:50 -0700494 total_allocation_time_.fetch_add(NanoTime() / kTimeAdjust - allocation_start);
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700495 }
496
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700497 return obj;
Ian Rogers333cf1b2013-07-24 11:57:02 -0700498 } else {
499 std::ostringstream oss;
500 int64_t total_bytes_free = GetFreeMemory();
501 oss << "Failed to allocate a " << byte_count << " byte allocation with " << total_bytes_free
502 << " free bytes";
503 // If the allocation failed due to fragmentation, print out the largest continuous allocation.
504 if (!large_object_allocation && total_bytes_free >= byte_count) {
505 size_t max_contiguous_allocation = 0;
506 // TODO: C++0x auto
507 typedef std::vector<space::ContinuousSpace*>::const_iterator It;
508 for (It it = continuous_spaces_.begin(), end = continuous_spaces_.end(); it != end; ++it) {
509 space::ContinuousSpace* space = *it;
510 if (space->IsDlMallocSpace()) {
511 space->AsDlMallocSpace()->Walk(MSpaceChunkCallback, &max_contiguous_allocation);
512 }
Mathieu Chartier80de7a62012-11-27 17:21:50 -0800513 }
Ian Rogers333cf1b2013-07-24 11:57:02 -0700514 oss << "; failed due to fragmentation (largest possible contiguous allocation "
515 << max_contiguous_allocation << " bytes)";
Mathieu Chartierb062fdd2012-07-03 09:51:48 -0700516 }
Ian Rogers333cf1b2013-07-24 11:57:02 -0700517 self->ThrowOutOfMemoryError(oss.str().c_str());
518 return NULL;
Carl Shapiro58551df2011-07-24 03:09:51 -0700519 }
Carl Shapiro58551df2011-07-24 03:09:51 -0700520}
521
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800522bool Heap::IsHeapAddress(const mirror::Object* obj) {
Elliott Hughes92b3b562011-09-08 16:32:26 -0700523 // Note: we deliberately don't take the lock here, and mustn't test anything that would
524 // require taking the lock.
Elliott Hughes88c5c352012-03-15 18:49:48 -0700525 if (obj == NULL) {
526 return true;
527 }
Ian Rogers1d54e732013-05-02 21:10:01 -0700528 if (UNLIKELY(!IsAligned<kObjectAlignment>(obj))) {
Elliott Hughesa2501992011-08-26 19:39:54 -0700529 return false;
530 }
Ian Rogers1d54e732013-05-02 21:10:01 -0700531 return FindSpaceFromObject(obj, true) != NULL;
Elliott Hughesa2501992011-08-26 19:39:54 -0700532}
533
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800534bool Heap::IsLiveObjectLocked(const mirror::Object* obj) {
Brian Carlstrom7934ac22013-07-26 10:54:15 -0700535 // Locks::heap_bitmap_lock_->AssertReaderHeld(Thread::Current());
Mathieu Chartierf082d3c2013-07-29 17:04:07 -0700536 if (obj == NULL || UNLIKELY(!IsAligned<kObjectAlignment>(obj))) {
Ian Rogers1d54e732013-05-02 21:10:01 -0700537 return false;
538 }
Mathieu Chartierf082d3c2013-07-29 17:04:07 -0700539 space::ContinuousSpace* c_space = FindContinuousSpaceFromObject(obj, true);
540 space::DiscontinuousSpace* d_space = NULL;
541 if (c_space != NULL) {
542 if (c_space->GetLiveBitmap()->Test(obj)) {
Ian Rogers1d54e732013-05-02 21:10:01 -0700543 return true;
544 }
545 } else {
Mathieu Chartierf082d3c2013-07-29 17:04:07 -0700546 d_space = FindDiscontinuousSpaceFromObject(obj, true);
547 if (d_space != NULL) {
548 if (d_space->GetLiveObjects()->Test(obj)) {
Ian Rogers1d54e732013-05-02 21:10:01 -0700549 return true;
550 }
551 }
552 }
Mathieu Chartierf082d3c2013-07-29 17:04:07 -0700553 // This is covering the allocation/live stack swapping that is done without mutators suspended.
Ian Rogers1d54e732013-05-02 21:10:01 -0700554 for (size_t i = 0; i < 5; ++i) {
555 if (allocation_stack_->Contains(const_cast<mirror::Object*>(obj)) ||
556 live_stack_->Contains(const_cast<mirror::Object*>(obj))) {
557 return true;
558 }
559 NanoSleep(MsToNs(10));
560 }
Mathieu Chartierf082d3c2013-07-29 17:04:07 -0700561 // We need to check the bitmaps again since there is a race where we mark something as live and
562 // then clear the stack containing it.
563 if (c_space != NULL) {
564 if (c_space->GetLiveBitmap()->Test(obj)) {
565 return true;
566 }
567 } else {
568 d_space = FindDiscontinuousSpaceFromObject(obj, true);
569 if (d_space != NULL && d_space->GetLiveObjects()->Test(obj)) {
570 return true;
571 }
572 }
Ian Rogers1d54e732013-05-02 21:10:01 -0700573 return false;
Elliott Hughes6a5bd492011-10-28 14:33:57 -0700574}
575
Ian Rogers04d7aa92013-03-16 14:29:17 -0700576void Heap::VerifyObjectImpl(const mirror::Object* obj) {
577 if (Thread::Current() == NULL ||
jeffhao25045522012-03-13 19:34:37 -0700578 Runtime::Current()->GetThreadList()->GetLockOwner() == Thread::Current()->GetTid()) {
Elliott Hughes85d15452011-09-16 17:33:01 -0700579 return;
580 }
Mathieu Chartier357e9be2012-08-01 11:00:14 -0700581 VerifyObjectBody(obj);
Elliott Hughes92b3b562011-09-08 16:32:26 -0700582}
Elliott Hughes92b3b562011-09-08 16:32:26 -0700583
Mathieu Chartiercc236d72012-07-20 10:29:05 -0700584void Heap::DumpSpaces() {
585 // TODO: C++0x auto
Ian Rogers1d54e732013-05-02 21:10:01 -0700586 typedef std::vector<space::ContinuousSpace*>::const_iterator It;
587 for (It it = continuous_spaces_.begin(), end = continuous_spaces_.end(); it != end; ++it) {
588 space::ContinuousSpace* space = *it;
589 accounting::SpaceBitmap* live_bitmap = space->GetLiveBitmap();
590 accounting::SpaceBitmap* mark_bitmap = space->GetMarkBitmap();
Mathieu Chartier7469ebf2012-09-24 16:28:36 -0700591 LOG(INFO) << space << " " << *space << "\n"
592 << live_bitmap << " " << *live_bitmap << "\n"
593 << mark_bitmap << " " << *mark_bitmap;
Mathieu Chartiercc236d72012-07-20 10:29:05 -0700594 }
Ian Rogers1d54e732013-05-02 21:10:01 -0700595 typedef std::vector<space::DiscontinuousSpace*>::const_iterator It2;
596 for (It2 it = discontinuous_spaces_.begin(), end = discontinuous_spaces_.end(); it != end; ++it) {
597 space::DiscontinuousSpace* space = *it;
598 LOG(INFO) << space << " " << *space << "\n";
Mathieu Chartier128c52c2012-10-16 14:12:41 -0700599 }
Mathieu Chartiercc236d72012-07-20 10:29:05 -0700600}
601
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800602void Heap::VerifyObjectBody(const mirror::Object* obj) {
Ian Rogers62d6c772013-02-27 08:32:07 -0800603 if (UNLIKELY(!IsAligned<kObjectAlignment>(obj))) {
Mathieu Chartierdcf8d722012-08-02 14:55:54 -0700604 LOG(FATAL) << "Object isn't aligned: " << obj;
Mathieu Chartier0325e622012-09-05 14:22:51 -0700605 }
Ian Rogers62d6c772013-02-27 08:32:07 -0800606 if (UNLIKELY(GetObjectsAllocated() <= 10)) { // Ignore early dawn of the universe verifications.
607 return;
608 }
609 const byte* raw_addr = reinterpret_cast<const byte*>(obj) +
610 mirror::Object::ClassOffset().Int32Value();
611 const mirror::Class* c = *reinterpret_cast<mirror::Class* const *>(raw_addr);
612 if (UNLIKELY(c == NULL)) {
613 LOG(FATAL) << "Null class in object: " << obj;
614 } else if (UNLIKELY(!IsAligned<kObjectAlignment>(c))) {
615 LOG(FATAL) << "Class isn't aligned: " << c << " in object: " << obj;
616 }
617 // Check obj.getClass().getClass() == obj.getClass().getClass().getClass()
618 // Note: we don't use the accessors here as they have internal sanity checks
619 // that we don't want to run
620 raw_addr = reinterpret_cast<const byte*>(c) + mirror::Object::ClassOffset().Int32Value();
621 const mirror::Class* c_c = *reinterpret_cast<mirror::Class* const *>(raw_addr);
622 raw_addr = reinterpret_cast<const byte*>(c_c) + mirror::Object::ClassOffset().Int32Value();
623 const mirror::Class* c_c_c = *reinterpret_cast<mirror::Class* const *>(raw_addr);
624 CHECK_EQ(c_c, c_c_c);
Mathieu Chartier0325e622012-09-05 14:22:51 -0700625
Ian Rogers62d6c772013-02-27 08:32:07 -0800626 if (verify_object_mode_ != kVerifyAllFast) {
627 // TODO: the bitmap tests below are racy if VerifyObjectBody is called without the
628 // heap_bitmap_lock_.
Ian Rogers1d54e732013-05-02 21:10:01 -0700629 if (!IsLiveObjectLocked(obj)) {
630 DumpSpaces();
631 LOG(FATAL) << "Object is dead: " << obj;
Mathieu Chartierc7b83a02012-09-11 18:07:39 -0700632 }
Ian Rogers1d54e732013-05-02 21:10:01 -0700633 if (!IsLiveObjectLocked(c)) {
Mathieu Chartierdcf8d722012-08-02 14:55:54 -0700634 LOG(FATAL) << "Class of object is dead: " << c << " in object: " << obj;
635 }
Mathieu Chartierdcf8d722012-08-02 14:55:54 -0700636 }
Ian Rogers0cfe1fb2011-08-26 03:29:44 -0700637}
638
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800639void Heap::VerificationCallback(mirror::Object* obj, void* arg) {
Ian Rogers0cfe1fb2011-08-26 03:29:44 -0700640 DCHECK(obj != NULL);
Mathieu Chartier357e9be2012-08-01 11:00:14 -0700641 reinterpret_cast<Heap*>(arg)->VerifyObjectBody(obj);
Ian Rogers0cfe1fb2011-08-26 03:29:44 -0700642}
643
644void Heap::VerifyHeap() {
Ian Rogers50b35e22012-10-04 10:09:15 -0700645 ReaderMutexLock mu(Thread::Current(), *Locks::heap_bitmap_lock_);
Mathieu Chartierb062fdd2012-07-03 09:51:48 -0700646 GetLiveBitmap()->Walk(Heap::VerificationCallback, this);
Ian Rogers0cfe1fb2011-08-26 03:29:44 -0700647}
648
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800649void Heap::RecordAllocation(size_t size, mirror::Object* obj) {
Mathieu Chartierfd678be2012-08-30 14:50:54 -0700650 DCHECK(obj != NULL);
Mathieu Chartierfd678be2012-08-30 14:50:54 -0700651 DCHECK_GT(size, 0u);
Mathieu Chartier4b95e8f2013-07-15 16:32:50 -0700652 num_bytes_allocated_.fetch_add(size);
Mathieu Chartierfd678be2012-08-30 14:50:54 -0700653
654 if (Runtime::Current()->HasStatsEnabled()) {
Mathieu Chartierfd678be2012-08-30 14:50:54 -0700655 RuntimeStats* thread_stats = Thread::Current()->GetStats();
Mathieu Chartierfd678be2012-08-30 14:50:54 -0700656 ++thread_stats->allocated_objects;
Mathieu Chartierfd678be2012-08-30 14:50:54 -0700657 thread_stats->allocated_bytes += size;
Mathieu Chartier2fde5332012-09-14 14:51:54 -0700658
659 // TODO: Update these atomically.
660 RuntimeStats* global_stats = Runtime::Current()->GetStats();
661 ++global_stats->allocated_objects;
662 global_stats->allocated_bytes += size;
Elliott Hughes9d5ccec2011-09-19 13:19:50 -0700663 }
Mathieu Chartier357e9be2012-08-01 11:00:14 -0700664
Mathieu Chartierd8195f12012-10-05 12:21:28 -0700665 // This is safe to do since the GC will never free objects which are neither in the allocation
666 // stack or the live bitmap.
667 while (!allocation_stack_->AtomicPushBack(obj)) {
Ian Rogers1d54e732013-05-02 21:10:01 -0700668 CollectGarbageInternal(collector::kGcTypeSticky, kGcCauseForAlloc, false);
Mathieu Chartierd8195f12012-10-05 12:21:28 -0700669 }
Carl Shapiro58551df2011-07-24 03:09:51 -0700670}
671
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700672void Heap::RecordFree(size_t freed_objects, size_t freed_bytes) {
Mathieu Chartier2fde5332012-09-14 14:51:54 -0700673 DCHECK_LE(freed_bytes, static_cast<size_t>(num_bytes_allocated_));
Mathieu Chartier4b95e8f2013-07-15 16:32:50 -0700674 num_bytes_allocated_.fetch_sub(freed_bytes);
Elliott Hughes9d5ccec2011-09-19 13:19:50 -0700675
676 if (Runtime::Current()->HasStatsEnabled()) {
Elliott Hughes9d5ccec2011-09-19 13:19:50 -0700677 RuntimeStats* thread_stats = Thread::Current()->GetStats();
Mathieu Chartier357e9be2012-08-01 11:00:14 -0700678 thread_stats->freed_objects += freed_objects;
Elliott Hughes307f75d2011-10-12 18:04:40 -0700679 thread_stats->freed_bytes += freed_bytes;
Mathieu Chartier2fde5332012-09-14 14:51:54 -0700680
681 // TODO: Do this concurrently.
682 RuntimeStats* global_stats = Runtime::Current()->GetStats();
683 global_stats->freed_objects += freed_objects;
684 global_stats->freed_bytes += freed_bytes;
Elliott Hughes9d5ccec2011-09-19 13:19:50 -0700685 }
Carl Shapiro58551df2011-07-24 03:09:51 -0700686}
687
Ian Rogers1d54e732013-05-02 21:10:01 -0700688mirror::Object* Heap::TryToAllocate(Thread* self, space::AllocSpace* space, size_t alloc_size,
689 bool grow) {
Mathieu Chartier2fde5332012-09-14 14:51:54 -0700690 // Should we try to use a CAS here and fix up num_bytes_allocated_ later with AllocationSize?
Mathieu Chartier2b82db42012-11-14 17:29:05 -0800691 if (num_bytes_allocated_ + alloc_size > max_allowed_footprint_) {
692 // max_allowed_footprint_ <= growth_limit_ so it is safe to check in here.
693 if (num_bytes_allocated_ + alloc_size > growth_limit_) {
694 // Completely out of memory.
Mathieu Chartier1c23e1e2012-10-12 14:14:11 -0700695 return NULL;
696 }
Mathieu Chartier2fde5332012-09-14 14:51:54 -0700697 }
698
Mathieu Chartier1c23e1e2012-10-12 14:14:11 -0700699 return space->Alloc(self, alloc_size);
Mathieu Chartiere0f0cb32012-08-28 11:26:00 -0700700}
701
Ian Rogers1d54e732013-05-02 21:10:01 -0700702mirror::Object* Heap::Allocate(Thread* self, space::AllocSpace* space, size_t alloc_size) {
Ian Rogers0399dde2012-06-06 17:09:28 -0700703 // Since allocation can cause a GC which will need to SuspendAll, make sure all allocations are
704 // done in the runnable state where suspension is expected.
Ian Rogers81d425b2012-09-27 16:03:43 -0700705 DCHECK_EQ(self->GetState(), kRunnable);
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700706 self->AssertThreadSuspensionIsAllowable();
Brian Carlstromb82b6872011-10-26 17:18:07 -0700707
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800708 mirror::Object* ptr = TryToAllocate(self, space, alloc_size, false);
Carl Shapiro69759ea2011-07-21 18:13:35 -0700709 if (ptr != NULL) {
710 return ptr;
711 }
712
Mathieu Chartier866fb2a2012-09-10 10:47:49 -0700713 // The allocation failed. If the GC is running, block until it completes, and then retry the
714 // allocation.
Ian Rogers1d54e732013-05-02 21:10:01 -0700715 collector::GcType last_gc = WaitForConcurrentGcToComplete(self);
716 if (last_gc != collector::kGcTypeNone) {
Mathieu Chartier866fb2a2012-09-10 10:47:49 -0700717 // A GC was in progress and we blocked, retry allocation now that memory has been freed.
Ian Rogers50b35e22012-10-04 10:09:15 -0700718 ptr = TryToAllocate(self, space, alloc_size, false);
Mathieu Chartier866fb2a2012-09-10 10:47:49 -0700719 if (ptr != NULL) {
720 return ptr;
Carl Shapiro69759ea2011-07-21 18:13:35 -0700721 }
722 }
723
Mathieu Chartier866fb2a2012-09-10 10:47:49 -0700724 // Loop through our different Gc types and try to Gc until we get enough free memory.
Ian Rogers1d54e732013-05-02 21:10:01 -0700725 for (size_t i = static_cast<size_t>(last_gc) + 1;
726 i < static_cast<size_t>(collector::kGcTypeMax); ++i) {
Mathieu Chartier866fb2a2012-09-10 10:47:49 -0700727 bool run_gc = false;
Ian Rogers1d54e732013-05-02 21:10:01 -0700728 collector::GcType gc_type = static_cast<collector::GcType>(i);
Mathieu Chartier866fb2a2012-09-10 10:47:49 -0700729 switch (gc_type) {
Ian Rogers1d54e732013-05-02 21:10:01 -0700730 case collector::kGcTypeSticky: {
Mathieu Chartier866fb2a2012-09-10 10:47:49 -0700731 const size_t alloc_space_size = alloc_space_->Size();
Mathieu Chartierc7b83a02012-09-11 18:07:39 -0700732 run_gc = alloc_space_size > min_alloc_space_size_for_sticky_gc_ &&
733 alloc_space_->Capacity() - alloc_space_size >= min_remaining_space_for_sticky_gc_;
Mathieu Chartier866fb2a2012-09-10 10:47:49 -0700734 break;
735 }
Ian Rogers1d54e732013-05-02 21:10:01 -0700736 case collector::kGcTypePartial:
Mathieu Chartier866fb2a2012-09-10 10:47:49 -0700737 run_gc = have_zygote_space_;
738 break;
Ian Rogers1d54e732013-05-02 21:10:01 -0700739 case collector::kGcTypeFull:
Mathieu Chartier866fb2a2012-09-10 10:47:49 -0700740 run_gc = true;
741 break;
742 default:
743 break;
744 }
Carl Shapiro69759ea2011-07-21 18:13:35 -0700745
Mathieu Chartier866fb2a2012-09-10 10:47:49 -0700746 if (run_gc) {
Mathieu Chartier866fb2a2012-09-10 10:47:49 -0700747 // If we actually ran a different type of Gc than requested, we can skip the index forwards.
Ian Rogers1d54e732013-05-02 21:10:01 -0700748 collector::GcType gc_type_ran = CollectGarbageInternal(gc_type, kGcCauseForAlloc, false);
Mathieu Chartier65db8802012-11-20 12:36:46 -0800749 DCHECK_GE(static_cast<size_t>(gc_type_ran), i);
Mathieu Chartier866fb2a2012-09-10 10:47:49 -0700750 i = static_cast<size_t>(gc_type_ran);
Mathieu Chartier866fb2a2012-09-10 10:47:49 -0700751
752 // Did we free sufficient memory for the allocation to succeed?
Ian Rogers50b35e22012-10-04 10:09:15 -0700753 ptr = TryToAllocate(self, space, alloc_size, false);
Mathieu Chartier866fb2a2012-09-10 10:47:49 -0700754 if (ptr != NULL) {
755 return ptr;
756 }
757 }
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700758 }
759
760 // Allocations have failed after GCs; this is an exceptional state.
Carl Shapiro69759ea2011-07-21 18:13:35 -0700761 // Try harder, growing the heap if necessary.
Ian Rogers50b35e22012-10-04 10:09:15 -0700762 ptr = TryToAllocate(self, space, alloc_size, true);
Carl Shapiro69759ea2011-07-21 18:13:35 -0700763 if (ptr != NULL) {
Carl Shapiro69759ea2011-07-21 18:13:35 -0700764 return ptr;
765 }
766
Elliott Hughes81ff3182012-03-23 20:35:56 -0700767 // Most allocations should have succeeded by now, so the heap is really full, really fragmented,
768 // or the requested size is really big. Do another GC, collecting SoftReferences this time. The
769 // VM spec requires that all SoftReferences have been collected and cleared before throwing OOME.
Carl Shapiro69759ea2011-07-21 18:13:35 -0700770
Elliott Hughes418dfe72011-10-06 18:56:27 -0700771 // OLD-TODO: wait for the finalizers from the previous GC to finish
Mathieu Chartierfd678be2012-08-30 14:50:54 -0700772 VLOG(gc) << "Forcing collection of SoftReferences for " << PrettySize(alloc_size)
773 << " allocation";
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700774
Mathieu Chartierfc8cfac2012-06-19 11:56:36 -0700775 // We don't need a WaitForConcurrentGcToComplete here either.
Ian Rogers1d54e732013-05-02 21:10:01 -0700776 CollectGarbageInternal(collector::kGcTypeFull, kGcCauseForAlloc, true);
Ian Rogers50b35e22012-10-04 10:09:15 -0700777 return TryToAllocate(self, space, alloc_size, true);
Carl Shapiro69759ea2011-07-21 18:13:35 -0700778}
779
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700780void Heap::SetTargetHeapUtilization(float target) {
781 DCHECK_GT(target, 0.0f); // asserted in Java code
782 DCHECK_LT(target, 1.0f);
783 target_utilization_ = target;
784}
785
Ian Rogers1d54e732013-05-02 21:10:01 -0700786size_t Heap::GetObjectsAllocated() const {
787 size_t total = 0;
788 typedef std::vector<space::ContinuousSpace*>::const_iterator It;
789 for (It it = continuous_spaces_.begin(), end = continuous_spaces_.end(); it != end; ++it) {
790 space::ContinuousSpace* space = *it;
791 if (space->IsDlMallocSpace()) {
792 total += space->AsDlMallocSpace()->GetObjectsAllocated();
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700793 }
794 }
Ian Rogers1d54e732013-05-02 21:10:01 -0700795 typedef std::vector<space::DiscontinuousSpace*>::const_iterator It2;
796 for (It2 it = discontinuous_spaces_.begin(), end = discontinuous_spaces_.end(); it != end; ++it) {
797 space::DiscontinuousSpace* space = *it;
798 total += space->AsLargeObjectSpace()->GetObjectsAllocated();
799 }
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700800 return total;
801}
802
Ian Rogers1d54e732013-05-02 21:10:01 -0700803size_t Heap::GetObjectsAllocatedEver() const {
804 size_t total = 0;
805 typedef std::vector<space::ContinuousSpace*>::const_iterator It;
806 for (It it = continuous_spaces_.begin(), end = continuous_spaces_.end(); it != end; ++it) {
807 space::ContinuousSpace* space = *it;
808 if (space->IsDlMallocSpace()) {
809 total += space->AsDlMallocSpace()->GetTotalObjectsAllocated();
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700810 }
811 }
Ian Rogers1d54e732013-05-02 21:10:01 -0700812 typedef std::vector<space::DiscontinuousSpace*>::const_iterator It2;
813 for (It2 it = discontinuous_spaces_.begin(), end = discontinuous_spaces_.end(); it != end; ++it) {
814 space::DiscontinuousSpace* space = *it;
815 total += space->AsLargeObjectSpace()->GetTotalObjectsAllocated();
816 }
817 return total;
818}
819
820size_t Heap::GetBytesAllocatedEver() const {
821 size_t total = 0;
822 typedef std::vector<space::ContinuousSpace*>::const_iterator It;
823 for (It it = continuous_spaces_.begin(), end = continuous_spaces_.end(); it != end; ++it) {
824 space::ContinuousSpace* space = *it;
825 if (space->IsDlMallocSpace()) {
826 total += space->AsDlMallocSpace()->GetTotalBytesAllocated();
827 }
828 }
829 typedef std::vector<space::DiscontinuousSpace*>::const_iterator It2;
830 for (It2 it = discontinuous_spaces_.begin(), end = discontinuous_spaces_.end(); it != end; ++it) {
831 space::DiscontinuousSpace* space = *it;
832 total += space->AsLargeObjectSpace()->GetTotalBytesAllocated();
833 }
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700834 return total;
835}
836
Elliott Hughes9d5ccec2011-09-19 13:19:50 -0700837class InstanceCounter {
838 public:
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800839 InstanceCounter(const std::vector<mirror::Class*>& classes, bool use_is_assignable_from, uint64_t* counts)
Ian Rogersb726dcb2012-09-05 08:57:23 -0700840 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_)
Elliott Hughesec0f83d2013-01-15 16:54:08 -0800841 : classes_(classes), use_is_assignable_from_(use_is_assignable_from), counts_(counts) {
Elliott Hughes9d5ccec2011-09-19 13:19:50 -0700842 }
843
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800844 void operator()(const mirror::Object* o) const SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) {
Elliott Hughesec0f83d2013-01-15 16:54:08 -0800845 for (size_t i = 0; i < classes_.size(); ++i) {
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800846 const mirror::Class* instance_class = o->GetClass();
Elliott Hughesec0f83d2013-01-15 16:54:08 -0800847 if (use_is_assignable_from_) {
848 if (instance_class != NULL && classes_[i]->IsAssignableFrom(instance_class)) {
849 ++counts_[i];
850 }
851 } else {
852 if (instance_class == classes_[i]) {
853 ++counts_[i];
854 }
Elliott Hughes9d5ccec2011-09-19 13:19:50 -0700855 }
856 }
857 }
858
Mathieu Chartier7469ebf2012-09-24 16:28:36 -0700859 private:
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800860 const std::vector<mirror::Class*>& classes_;
Elliott Hughesec0f83d2013-01-15 16:54:08 -0800861 bool use_is_assignable_from_;
862 uint64_t* const counts_;
863
864 DISALLOW_COPY_AND_ASSIGN(InstanceCounter);
Elliott Hughes9d5ccec2011-09-19 13:19:50 -0700865};
866
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800867void Heap::CountInstances(const std::vector<mirror::Class*>& classes, bool use_is_assignable_from,
Elliott Hughesec0f83d2013-01-15 16:54:08 -0800868 uint64_t* counts) {
869 // We only want reachable instances, so do a GC. This also ensures that the alloc stack
870 // is empty, so the live bitmap is the only place we need to look.
871 Thread* self = Thread::Current();
872 self->TransitionFromRunnableToSuspended(kNative);
873 CollectGarbage(false);
874 self->TransitionFromSuspendedToRunnable();
875
876 InstanceCounter counter(classes, use_is_assignable_from, counts);
877 ReaderMutexLock mu(self, *Locks::heap_bitmap_lock_);
Mathieu Chartier7469ebf2012-09-24 16:28:36 -0700878 GetLiveBitmap()->Visit(counter);
Elliott Hughes9d5ccec2011-09-19 13:19:50 -0700879}
880
Elliott Hughes3b78c942013-01-15 17:35:41 -0800881class InstanceCollector {
882 public:
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800883 InstanceCollector(mirror::Class* c, int32_t max_count, std::vector<mirror::Object*>& instances)
Elliott Hughes3b78c942013-01-15 17:35:41 -0800884 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_)
885 : class_(c), max_count_(max_count), instances_(instances) {
886 }
887
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800888 void operator()(const mirror::Object* o) const SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) {
889 const mirror::Class* instance_class = o->GetClass();
Elliott Hughes3b78c942013-01-15 17:35:41 -0800890 if (instance_class == class_) {
891 if (max_count_ == 0 || instances_.size() < max_count_) {
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800892 instances_.push_back(const_cast<mirror::Object*>(o));
Elliott Hughes3b78c942013-01-15 17:35:41 -0800893 }
894 }
895 }
896
897 private:
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800898 mirror::Class* class_;
Elliott Hughes3b78c942013-01-15 17:35:41 -0800899 uint32_t max_count_;
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800900 std::vector<mirror::Object*>& instances_;
Elliott Hughes3b78c942013-01-15 17:35:41 -0800901
902 DISALLOW_COPY_AND_ASSIGN(InstanceCollector);
903};
904
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800905void Heap::GetInstances(mirror::Class* c, int32_t max_count,
906 std::vector<mirror::Object*>& instances) {
Elliott Hughes3b78c942013-01-15 17:35:41 -0800907 // We only want reachable instances, so do a GC. This also ensures that the alloc stack
908 // is empty, so the live bitmap is the only place we need to look.
909 Thread* self = Thread::Current();
910 self->TransitionFromRunnableToSuspended(kNative);
911 CollectGarbage(false);
912 self->TransitionFromSuspendedToRunnable();
913
914 InstanceCollector collector(c, max_count, instances);
915 ReaderMutexLock mu(self, *Locks::heap_bitmap_lock_);
916 GetLiveBitmap()->Visit(collector);
917}
918
Elliott Hughes0cbaff52013-01-16 15:28:01 -0800919class ReferringObjectsFinder {
920 public:
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800921 ReferringObjectsFinder(mirror::Object* object, int32_t max_count,
922 std::vector<mirror::Object*>& referring_objects)
Elliott Hughes0cbaff52013-01-16 15:28:01 -0800923 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_)
924 : object_(object), max_count_(max_count), referring_objects_(referring_objects) {
925 }
926
927 // For bitmap Visit.
928 // TODO: Fix lock analysis to not use NO_THREAD_SAFETY_ANALYSIS, requires support for
929 // annotalysis on visitors.
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800930 void operator()(const mirror::Object* o) const NO_THREAD_SAFETY_ANALYSIS {
Ian Rogers1d54e732013-05-02 21:10:01 -0700931 collector::MarkSweep::VisitObjectReferences(o, *this);
Elliott Hughes0cbaff52013-01-16 15:28:01 -0800932 }
933
934 // For MarkSweep::VisitObjectReferences.
Brian Carlstromdf629502013-07-17 22:39:56 -0700935 void operator()(const mirror::Object* referrer, const mirror::Object* object,
936 const MemberOffset&, bool) const {
Elliott Hughes0cbaff52013-01-16 15:28:01 -0800937 if (object == object_ && (max_count_ == 0 || referring_objects_.size() < max_count_)) {
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800938 referring_objects_.push_back(const_cast<mirror::Object*>(referrer));
Elliott Hughes0cbaff52013-01-16 15:28:01 -0800939 }
940 }
941
942 private:
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800943 mirror::Object* object_;
Elliott Hughes0cbaff52013-01-16 15:28:01 -0800944 uint32_t max_count_;
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800945 std::vector<mirror::Object*>& referring_objects_;
Elliott Hughes0cbaff52013-01-16 15:28:01 -0800946
947 DISALLOW_COPY_AND_ASSIGN(ReferringObjectsFinder);
948};
949
Ian Rogers2dd0e2c2013-01-24 12:42:14 -0800950void Heap::GetReferringObjects(mirror::Object* o, int32_t max_count,
951 std::vector<mirror::Object*>& referring_objects) {
Elliott Hughes0cbaff52013-01-16 15:28:01 -0800952 // We only want reachable instances, so do a GC. This also ensures that the alloc stack
953 // is empty, so the live bitmap is the only place we need to look.
954 Thread* self = Thread::Current();
955 self->TransitionFromRunnableToSuspended(kNative);
956 CollectGarbage(false);
957 self->TransitionFromSuspendedToRunnable();
958
959 ReferringObjectsFinder finder(o, max_count, referring_objects);
960 ReaderMutexLock mu(self, *Locks::heap_bitmap_lock_);
961 GetLiveBitmap()->Visit(finder);
962}
963
Ian Rogers30fab402012-01-23 15:43:46 -0800964void Heap::CollectGarbage(bool clear_soft_references) {
Mathieu Chartier866fb2a2012-09-10 10:47:49 -0700965 // Even if we waited for a GC we still need to do another GC since weaks allocated during the
966 // last GC will not have necessarily been cleared.
Ian Rogers81d425b2012-09-27 16:03:43 -0700967 Thread* self = Thread::Current();
968 WaitForConcurrentGcToComplete(self);
Ian Rogers1d54e732013-05-02 21:10:01 -0700969 CollectGarbageInternal(collector::kGcTypeFull, kGcCauseExplicit, clear_soft_references);
Carl Shapiro69759ea2011-07-21 18:13:35 -0700970}
971
Mathieu Chartiercc236d72012-07-20 10:29:05 -0700972void Heap::PreZygoteFork() {
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700973 static Mutex zygote_creation_lock_("zygote creation lock", kZygoteCreationLock);
Mathieu Chartierd22d5482012-11-06 17:14:12 -0800974 // Do this before acquiring the zygote creation lock so that we don't get lock order violations.
975 CollectGarbage(false);
Ian Rogers81d425b2012-09-27 16:03:43 -0700976 Thread* self = Thread::Current();
977 MutexLock mu(self, zygote_creation_lock_);
Mathieu Chartiercc236d72012-07-20 10:29:05 -0700978
979 // Try to see if we have any Zygote spaces.
980 if (have_zygote_space_) {
981 return;
982 }
983
Mathieu Chartier357e9be2012-08-01 11:00:14 -0700984 VLOG(heap) << "Starting PreZygoteFork with alloc space size " << PrettySize(alloc_space_->Size());
985
986 {
987 // Flush the alloc stack.
Ian Rogers81d425b2012-09-27 16:03:43 -0700988 WriterMutexLock mu(self, *Locks::heap_bitmap_lock_);
Mathieu Chartier357e9be2012-08-01 11:00:14 -0700989 FlushAllocStack();
990 }
Mathieu Chartiercc236d72012-07-20 10:29:05 -0700991
Ian Rogers1d54e732013-05-02 21:10:01 -0700992 // Turns the current alloc space into a Zygote space and obtain the new alloc space composed
993 // of the remaining available heap memory.
994 space::DlMallocSpace* zygote_space = alloc_space_;
Hiroshi Yamauchi09b07a92013-07-15 13:17:06 -0700995 alloc_space_ = zygote_space->CreateZygoteSpace("alloc space");
Ian Rogers1d54e732013-05-02 21:10:01 -0700996 alloc_space_->SetFootprintLimit(alloc_space_->Capacity());
Mathieu Chartiercc236d72012-07-20 10:29:05 -0700997
Ian Rogers1d54e732013-05-02 21:10:01 -0700998 // Change the GC retention policy of the zygote space to only collect when full.
999 zygote_space->SetGcRetentionPolicy(space::kGcRetentionPolicyFullCollect);
1000 AddContinuousSpace(alloc_space_);
1001 have_zygote_space_ = true;
Mathieu Chartier1cd9c5c2012-08-23 10:52:44 -07001002
Ian Rogers5f5a2c02012-09-17 10:52:08 -07001003 // Reset the cumulative loggers since we now have a few additional timing phases.
Mathieu Chartier0325e622012-09-05 14:22:51 -07001004 // TODO: C++0x
Ian Rogers1d54e732013-05-02 21:10:01 -07001005 typedef std::vector<collector::MarkSweep*>::const_iterator It;
1006 for (It it = mark_sweep_collectors_.begin(), end = mark_sweep_collectors_.end();
1007 it != end; ++it) {
Mathieu Chartier2b82db42012-11-14 17:29:05 -08001008 (*it)->ResetCumulativeStatistics();
Mathieu Chartier0325e622012-09-05 14:22:51 -07001009 }
Mathieu Chartiercc236d72012-07-20 10:29:05 -07001010}
1011
Mathieu Chartier357e9be2012-08-01 11:00:14 -07001012void Heap::FlushAllocStack() {
Mathieu Chartiere0f0cb32012-08-28 11:26:00 -07001013 MarkAllocStack(alloc_space_->GetLiveBitmap(), large_object_space_->GetLiveObjects(),
1014 allocation_stack_.get());
Mathieu Chartier357e9be2012-08-01 11:00:14 -07001015 allocation_stack_->Reset();
1016}
1017
Ian Rogers1d54e732013-05-02 21:10:01 -07001018void Heap::MarkAllocStack(accounting::SpaceBitmap* bitmap, accounting::SpaceSetMap* large_objects,
1019 accounting::ObjectStack* stack) {
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001020 mirror::Object** limit = stack->End();
1021 for (mirror::Object** it = stack->Begin(); it != limit; ++it) {
1022 const mirror::Object* obj = *it;
Mathieu Chartier357e9be2012-08-01 11:00:14 -07001023 DCHECK(obj != NULL);
Mathieu Chartiere0f0cb32012-08-28 11:26:00 -07001024 if (LIKELY(bitmap->HasAddress(obj))) {
1025 bitmap->Set(obj);
1026 } else {
1027 large_objects->Set(obj);
1028 }
Mathieu Chartier357e9be2012-08-01 11:00:14 -07001029 }
1030}
1031
Ian Rogers1d54e732013-05-02 21:10:01 -07001032void Heap::UnMarkAllocStack(accounting::SpaceBitmap* bitmap, accounting::SpaceSetMap* large_objects,
1033 accounting::ObjectStack* stack) {
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001034 mirror::Object** limit = stack->End();
1035 for (mirror::Object** it = stack->Begin(); it != limit; ++it) {
1036 const mirror::Object* obj = *it;
Mathieu Chartier357e9be2012-08-01 11:00:14 -07001037 DCHECK(obj != NULL);
Mathieu Chartiere0f0cb32012-08-28 11:26:00 -07001038 if (LIKELY(bitmap->HasAddress(obj))) {
1039 bitmap->Clear(obj);
1040 } else {
1041 large_objects->Clear(obj);
1042 }
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001043 }
1044}
1045
Ian Rogers1d54e732013-05-02 21:10:01 -07001046collector::GcType Heap::CollectGarbageInternal(collector::GcType gc_type, GcCause gc_cause,
1047 bool clear_soft_references) {
Ian Rogers81d425b2012-09-27 16:03:43 -07001048 Thread* self = Thread::Current();
Mathieu Chartier752a0e62013-06-27 11:03:27 -07001049
1050 switch (gc_cause) {
1051 case kGcCauseForAlloc:
1052 ATRACE_BEGIN("GC (alloc)");
1053 break;
1054 case kGcCauseBackground:
1055 ATRACE_BEGIN("GC (background)");
1056 break;
1057 case kGcCauseExplicit:
1058 ATRACE_BEGIN("GC (explicit)");
1059 break;
1060 }
1061
Mathieu Chartier65db8802012-11-20 12:36:46 -08001062 ScopedThreadStateChange tsc(self, kWaitingPerformingGc);
Ian Rogers81d425b2012-09-27 16:03:43 -07001063 Locks::mutator_lock_->AssertNotHeld(self);
Carl Shapiro58551df2011-07-24 03:09:51 -07001064
Ian Rogers120f1c72012-09-28 17:17:10 -07001065 if (self->IsHandlingStackOverflow()) {
1066 LOG(WARNING) << "Performing GC on a thread that is handling a stack overflow.";
1067 }
1068
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001069 // Ensure there is only one GC at a time.
1070 bool start_collect = false;
1071 while (!start_collect) {
1072 {
Ian Rogers81d425b2012-09-27 16:03:43 -07001073 MutexLock mu(self, *gc_complete_lock_);
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001074 if (!is_gc_running_) {
1075 is_gc_running_ = true;
1076 start_collect = true;
1077 }
1078 }
1079 if (!start_collect) {
Ian Rogers81d425b2012-09-27 16:03:43 -07001080 WaitForConcurrentGcToComplete(self);
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001081 // TODO: if another thread beat this one to do the GC, perhaps we should just return here?
1082 // Not doing at the moment to ensure soft references are cleared.
1083 }
1084 }
Ian Rogers81d425b2012-09-27 16:03:43 -07001085 gc_complete_lock_->AssertNotHeld(self);
Mathieu Chartier357e9be2012-08-01 11:00:14 -07001086
Mathieu Chartier2fde5332012-09-14 14:51:54 -07001087 if (gc_cause == kGcCauseForAlloc && Runtime::Current()->HasStatsEnabled()) {
1088 ++Runtime::Current()->GetStats()->gc_for_alloc_count;
1089 ++Thread::Current()->GetStats()->gc_for_alloc_count;
1090 }
1091
Ian Rogers1d54e732013-05-02 21:10:01 -07001092 uint64_t gc_start_time_ns = NanoTime();
Mathieu Chartier65db8802012-11-20 12:36:46 -08001093 uint64_t gc_start_size = GetBytesAllocated();
1094 // Approximate allocation rate in bytes / second.
Ian Rogers1d54e732013-05-02 21:10:01 -07001095 if (UNLIKELY(gc_start_time_ns == last_gc_time_ns_)) {
Jeff Hao9bd02812013-02-08 14:29:50 -08001096 LOG(WARNING) << "Timers are broken (gc_start_time == last_gc_time_).";
1097 }
Ian Rogers1d54e732013-05-02 21:10:01 -07001098 uint64_t ms_delta = NsToMs(gc_start_time_ns - last_gc_time_ns_);
Mathieu Chartier65db8802012-11-20 12:36:46 -08001099 if (ms_delta != 0) {
Ian Rogers1d54e732013-05-02 21:10:01 -07001100 allocation_rate_ = ((gc_start_size - last_gc_size_) * 1000) / ms_delta;
Mathieu Chartier65db8802012-11-20 12:36:46 -08001101 VLOG(heap) << "Allocation rate: " << PrettySize(allocation_rate_) << "/s";
1102 }
1103
Mathieu Chartierbdd0fb92013-07-02 10:16:15 -07001104 if (gc_type == collector::kGcTypeSticky &&
1105 alloc_space_->Size() < min_alloc_space_size_for_sticky_gc_) {
1106 gc_type = collector::kGcTypePartial;
1107 }
1108
Ian Rogers1d54e732013-05-02 21:10:01 -07001109 DCHECK_LT(gc_type, collector::kGcTypeMax);
1110 DCHECK_NE(gc_type, collector::kGcTypeNone);
1111 collector::MarkSweep* collector = NULL;
1112 typedef std::vector<collector::MarkSweep*>::iterator It;
1113 for (It it = mark_sweep_collectors_.begin(), end = mark_sweep_collectors_.end();
1114 it != end; ++it) {
1115 collector::MarkSweep* cur_collector = *it;
Mathieu Chartier2b82db42012-11-14 17:29:05 -08001116 if (cur_collector->IsConcurrent() == concurrent_gc_ && cur_collector->GetGcType() == gc_type) {
1117 collector = cur_collector;
1118 break;
1119 }
Mathieu Chartier357e9be2012-08-01 11:00:14 -07001120 }
Mathieu Chartier2b82db42012-11-14 17:29:05 -08001121 CHECK(collector != NULL)
1122 << "Could not find garbage collector with concurrent=" << concurrent_gc_
1123 << " and type=" << gc_type;
1124 collector->clear_soft_references_ = clear_soft_references;
1125 collector->Run();
Ian Rogers1d54e732013-05-02 21:10:01 -07001126 total_objects_freed_ever_ += collector->GetFreedObjects();
1127 total_bytes_freed_ever_ += collector->GetFreedBytes();
Mathieu Chartier2b82db42012-11-14 17:29:05 -08001128
Ian Rogers1d54e732013-05-02 21:10:01 -07001129 const size_t duration = collector->GetDurationNs();
Mathieu Chartier2b82db42012-11-14 17:29:05 -08001130 std::vector<uint64_t> pauses = collector->GetPauseTimes();
1131 bool was_slow = duration > kSlowGcThreshold ||
1132 (gc_cause == kGcCauseForAlloc && duration > kLongGcPauseThreshold);
1133 for (size_t i = 0; i < pauses.size(); ++i) {
1134 if (pauses[i] > kLongGcPauseThreshold) {
1135 was_slow = true;
1136 }
1137 }
1138
1139 if (was_slow) {
1140 const size_t percent_free = GetPercentFree();
Ian Rogers1d54e732013-05-02 21:10:01 -07001141 const size_t current_heap_size = GetBytesAllocated();
Mathieu Chartier2b82db42012-11-14 17:29:05 -08001142 const size_t total_memory = GetTotalMemory();
1143 std::ostringstream pause_string;
1144 for (size_t i = 0; i < pauses.size(); ++i) {
1145 pause_string << PrettyDuration((pauses[i] / 1000) * 1000)
1146 << ((i != pauses.size() - 1) ? ", " : "");
1147 }
1148 LOG(INFO) << gc_cause << " " << collector->GetName()
Sameer Abu Asala8439542013-02-14 16:06:42 -08001149 << "GC freed " << PrettySize(collector->GetFreedBytes()) << ", "
1150 << percent_free << "% free, " << PrettySize(current_heap_size) << "/"
1151 << PrettySize(total_memory) << ", " << "paused " << pause_string.str()
1152 << " total " << PrettyDuration((duration / 1000) * 1000);
Mathieu Chartier2b82db42012-11-14 17:29:05 -08001153 if (VLOG_IS_ON(heap)) {
Anwar Ghuloum6f28d912013-07-24 15:02:53 -07001154 LOG(INFO) << Dumpable<base::TimingLogger>(collector->GetTimings());
Mathieu Chartier2b82db42012-11-14 17:29:05 -08001155 }
1156 }
Mathieu Chartier357e9be2012-08-01 11:00:14 -07001157
Ian Rogers15bf2d32012-08-28 17:33:04 -07001158 {
Ian Rogers81d425b2012-09-27 16:03:43 -07001159 MutexLock mu(self, *gc_complete_lock_);
Ian Rogers15bf2d32012-08-28 17:33:04 -07001160 is_gc_running_ = false;
Mathieu Chartier866fb2a2012-09-10 10:47:49 -07001161 last_gc_type_ = gc_type;
Ian Rogers15bf2d32012-08-28 17:33:04 -07001162 // Wake anyone who may have been waiting for the GC to complete.
Ian Rogersc604d732012-10-14 16:09:54 -07001163 gc_complete_cond_->Broadcast(self);
Ian Rogers15bf2d32012-08-28 17:33:04 -07001164 }
Mathieu Chartier0a9dc052013-07-25 11:01:28 -07001165
Ian Rogers15bf2d32012-08-28 17:33:04 -07001166 // Inform DDMS that a GC completed.
Mathieu Chartier752a0e62013-06-27 11:03:27 -07001167 ATRACE_END();
Ian Rogers15bf2d32012-08-28 17:33:04 -07001168 Dbg::GcDidFinish();
Mathieu Chartier866fb2a2012-09-10 10:47:49 -07001169 return gc_type;
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001170}
Mathieu Chartiera6399032012-06-11 18:49:50 -07001171
Anwar Ghuloum6f28d912013-07-24 15:02:53 -07001172void Heap::UpdateAndMarkModUnion(collector::MarkSweep* mark_sweep, base::TimingLogger& timings,
Ian Rogers1d54e732013-05-02 21:10:01 -07001173 collector::GcType gc_type) {
1174 if (gc_type == collector::kGcTypeSticky) {
Mathieu Chartier7469ebf2012-09-24 16:28:36 -07001175 // Don't need to do anything for mod union table in this case since we are only scanning dirty
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001176 // cards.
1177 return;
1178 }
1179
1180 // Update zygote mod union table.
Ian Rogers1d54e732013-05-02 21:10:01 -07001181 if (gc_type == collector::kGcTypePartial) {
1182 timings.NewSplit("UpdateZygoteModUnionTable");
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001183 zygote_mod_union_table_->Update();
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001184
Ian Rogers1d54e732013-05-02 21:10:01 -07001185 timings.NewSplit("ZygoteMarkReferences");
Mathieu Chartier7469ebf2012-09-24 16:28:36 -07001186 zygote_mod_union_table_->MarkReferences(mark_sweep);
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001187 }
1188
1189 // Processes the cards we cleared earlier and adds their objects into the mod-union table.
Ian Rogers1d54e732013-05-02 21:10:01 -07001190 timings.NewSplit("UpdateModUnionTable");
1191 image_mod_union_table_->Update();
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001192
1193 // Scans all objects in the mod-union table.
Ian Rogers1d54e732013-05-02 21:10:01 -07001194 timings.NewSplit("MarkImageToAllocSpaceReferences");
1195 image_mod_union_table_->MarkReferences(mark_sweep);
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001196}
1197
Ian Rogers1d54e732013-05-02 21:10:01 -07001198static void RootMatchesObjectVisitor(const mirror::Object* root, void* arg) {
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001199 mirror::Object* obj = reinterpret_cast<mirror::Object*>(arg);
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001200 if (root == obj) {
1201 LOG(INFO) << "Object " << obj << " is a root";
1202 }
1203}
1204
1205class ScanVisitor {
1206 public:
Brian Carlstromdf629502013-07-17 22:39:56 -07001207 void operator()(const mirror::Object* obj) const {
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001208 LOG(INFO) << "Would have rescanned object " << obj;
1209 }
1210};
1211
Ian Rogers1d54e732013-05-02 21:10:01 -07001212// Verify a reference from an object.
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001213class VerifyReferenceVisitor {
1214 public:
Brian Carlstrom93ba8932013-07-17 21:31:49 -07001215 explicit VerifyReferenceVisitor(Heap* heap)
Ian Rogers1d54e732013-05-02 21:10:01 -07001216 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_, Locks::heap_bitmap_lock_)
Brian Carlstrom93ba8932013-07-17 21:31:49 -07001217 : heap_(heap), failed_(false) {}
Ian Rogers1d54e732013-05-02 21:10:01 -07001218
1219 bool Failed() const {
1220 return failed_;
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001221 }
1222
1223 // TODO: Fix lock analysis to not use NO_THREAD_SAFETY_ANALYSIS, requires support for smarter
Ian Rogers1d54e732013-05-02 21:10:01 -07001224 // analysis on visitors.
Brian Carlstromdf629502013-07-17 22:39:56 -07001225 void operator()(const mirror::Object* obj, const mirror::Object* ref,
1226 const MemberOffset& offset, bool /* is_static */) const
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001227 NO_THREAD_SAFETY_ANALYSIS {
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001228 // Verify that the reference is live.
Ian Rogers1d54e732013-05-02 21:10:01 -07001229 if (UNLIKELY(ref != NULL && !IsLive(ref))) {
1230 accounting::CardTable* card_table = heap_->GetCardTable();
1231 accounting::ObjectStack* alloc_stack = heap_->allocation_stack_.get();
1232 accounting::ObjectStack* live_stack = heap_->live_stack_.get();
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001233
Ian Rogers1d54e732013-05-02 21:10:01 -07001234 if (obj != NULL) {
1235 byte* card_addr = card_table->CardFromAddr(obj);
1236 LOG(ERROR) << "Object " << obj << " references dead object " << ref << " at offset " << offset
1237 << "\nIsDirty = " << (*card_addr == accounting::CardTable::kCardDirty)
1238 << "\nObj type " << PrettyTypeOf(obj)
1239 << "\nRef type " << PrettyTypeOf(ref);
1240 card_table->CheckAddrIsInCardTable(reinterpret_cast<const byte*>(obj));
1241 void* cover_begin = card_table->AddrFromCard(card_addr);
1242 void* cover_end = reinterpret_cast<void*>(reinterpret_cast<size_t>(cover_begin) +
1243 accounting::CardTable::kCardSize);
1244 LOG(ERROR) << "Card " << reinterpret_cast<void*>(card_addr) << " covers " << cover_begin
1245 << "-" << cover_end;
1246 accounting::SpaceBitmap* bitmap = heap_->GetLiveBitmap()->GetContinuousSpaceBitmap(obj);
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001247
Ian Rogers1d54e732013-05-02 21:10:01 -07001248 // Print out how the object is live.
1249 if (bitmap != NULL && bitmap->Test(obj)) {
1250 LOG(ERROR) << "Object " << obj << " found in live bitmap";
1251 }
Mathieu Chartierf082d3c2013-07-29 17:04:07 -07001252 if (alloc_stack->ContainsSorted(const_cast<mirror::Object*>(obj))) {
Ian Rogers1d54e732013-05-02 21:10:01 -07001253 LOG(ERROR) << "Object " << obj << " found in allocation stack";
1254 }
Mathieu Chartierf082d3c2013-07-29 17:04:07 -07001255 if (live_stack->ContainsSorted(const_cast<mirror::Object*>(obj))) {
Ian Rogers1d54e732013-05-02 21:10:01 -07001256 LOG(ERROR) << "Object " << obj << " found in live stack";
1257 }
1258 // Attempt to see if the card table missed the reference.
1259 ScanVisitor scan_visitor;
1260 byte* byte_cover_begin = reinterpret_cast<byte*>(card_table->AddrFromCard(card_addr));
1261 card_table->Scan(bitmap, byte_cover_begin,
1262 byte_cover_begin + accounting::CardTable::kCardSize,
1263 scan_visitor, VoidFunctor());
1264
1265 // Search to see if any of the roots reference our object.
1266 void* arg = const_cast<void*>(reinterpret_cast<const void*>(obj));
1267 Runtime::Current()->VisitRoots(&RootMatchesObjectVisitor, arg, false, false);
1268
1269 // Search to see if any of the roots reference our reference.
1270 arg = const_cast<void*>(reinterpret_cast<const void*>(ref));
1271 Runtime::Current()->VisitRoots(&RootMatchesObjectVisitor, arg, false, false);
1272 } else {
1273 LOG(ERROR) << "Root references dead object " << ref << "\nRef type " << PrettyTypeOf(ref);
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07001274 }
Mathieu Chartierf082d3c2013-07-29 17:04:07 -07001275 if (alloc_stack->ContainsSorted(const_cast<mirror::Object*>(ref))) {
Ian Rogers1d54e732013-05-02 21:10:01 -07001276 LOG(ERROR) << "Reference " << ref << " found in allocation stack!";
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07001277 }
Mathieu Chartierf082d3c2013-07-29 17:04:07 -07001278 if (live_stack->ContainsSorted(const_cast<mirror::Object*>(ref))) {
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07001279 LOG(ERROR) << "Reference " << ref << " found in live stack!";
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001280 }
Ian Rogers1d54e732013-05-02 21:10:01 -07001281 heap_->image_mod_union_table_->Dump(LOG(ERROR) << "Image mod-union table: ");
1282 heap_->zygote_mod_union_table_->Dump(LOG(ERROR) << "Zygote mod-union table: ");
1283 failed_ = true;
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001284 }
1285 }
1286
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001287 bool IsLive(const mirror::Object* obj) const NO_THREAD_SAFETY_ANALYSIS {
Ian Rogers1d54e732013-05-02 21:10:01 -07001288 return heap_->IsLiveObjectLocked(obj);
1289 }
1290
1291 static void VerifyRoots(const mirror::Object* root, void* arg) {
1292 VerifyReferenceVisitor* visitor = reinterpret_cast<VerifyReferenceVisitor*>(arg);
1293 (*visitor)(NULL, root, MemberOffset(0), true);
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001294 }
1295
1296 private:
Ian Rogers1d54e732013-05-02 21:10:01 -07001297 Heap* const heap_;
1298 mutable bool failed_;
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001299};
1300
Ian Rogers1d54e732013-05-02 21:10:01 -07001301// Verify all references within an object, for use with HeapBitmap::Visit.
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001302class VerifyObjectVisitor {
1303 public:
Brian Carlstrom93ba8932013-07-17 21:31:49 -07001304 explicit VerifyObjectVisitor(Heap* heap) : heap_(heap), failed_(false) {}
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001305
Brian Carlstromdf629502013-07-17 22:39:56 -07001306 void operator()(const mirror::Object* obj) const
Ian Rogersb726dcb2012-09-05 08:57:23 -07001307 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_, Locks::heap_bitmap_lock_) {
Ian Rogers1d54e732013-05-02 21:10:01 -07001308 // Note: we are verifying the references in obj but not obj itself, this is because obj must
1309 // be live or else how did we find it in the live bitmap?
1310 VerifyReferenceVisitor visitor(heap_);
1311 collector::MarkSweep::VisitObjectReferences(obj, visitor);
1312 failed_ = failed_ || visitor.Failed();
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001313 }
1314
1315 bool Failed() const {
1316 return failed_;
1317 }
1318
1319 private:
Ian Rogers1d54e732013-05-02 21:10:01 -07001320 Heap* const heap_;
1321 mutable bool failed_;
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001322};
1323
1324// Must do this with mutators suspended since we are directly accessing the allocation stacks.
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07001325bool Heap::VerifyHeapReferences() {
Ian Rogers81d425b2012-09-27 16:03:43 -07001326 Locks::mutator_lock_->AssertExclusiveHeld(Thread::Current());
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001327 // Lets sort our allocation stacks so that we can efficiently binary search them.
Ian Rogers1d54e732013-05-02 21:10:01 -07001328 allocation_stack_->Sort();
1329 live_stack_->Sort();
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001330 // Perform the verification.
1331 VerifyObjectVisitor visitor(this);
Ian Rogers1d54e732013-05-02 21:10:01 -07001332 Runtime::Current()->VisitRoots(VerifyReferenceVisitor::VerifyRoots, &visitor, false, false);
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001333 GetLiveBitmap()->Visit(visitor);
1334 // We don't want to verify the objects in the allocation stack since they themselves may be
1335 // pointing to dead objects if they are not reachable.
1336 if (visitor.Failed()) {
1337 DumpSpaces();
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07001338 return false;
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001339 }
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07001340 return true;
1341}
1342
1343class VerifyReferenceCardVisitor {
1344 public:
1345 VerifyReferenceCardVisitor(Heap* heap, bool* failed)
1346 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_,
1347 Locks::heap_bitmap_lock_)
Ian Rogers1d54e732013-05-02 21:10:01 -07001348 : heap_(heap), failed_(failed) {
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07001349 }
1350
Mathieu Chartier4da7f2f2012-11-13 12:51:01 -08001351 // TODO: Fix lock analysis to not use NO_THREAD_SAFETY_ANALYSIS, requires support for
1352 // annotalysis on visitors.
Brian Carlstromdf629502013-07-17 22:39:56 -07001353 void operator()(const mirror::Object* obj, const mirror::Object* ref, const MemberOffset& offset,
1354 bool is_static) const NO_THREAD_SAFETY_ANALYSIS {
Mathieu Chartier4da7f2f2012-11-13 12:51:01 -08001355 // Filter out class references since changing an object's class does not mark the card as dirty.
1356 // Also handles large objects, since the only reference they hold is a class reference.
1357 if (ref != NULL && !ref->IsClass()) {
Ian Rogers1d54e732013-05-02 21:10:01 -07001358 accounting::CardTable* card_table = heap_->GetCardTable();
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07001359 // If the object is not dirty and it is referencing something in the live stack other than
1360 // class, then it must be on a dirty card.
Mathieu Chartier7469ebf2012-09-24 16:28:36 -07001361 if (!card_table->AddrIsInCardTable(obj)) {
1362 LOG(ERROR) << "Object " << obj << " is not in the address range of the card table";
1363 *failed_ = true;
Mathieu Chartier2b82db42012-11-14 17:29:05 -08001364 } else if (!card_table->IsDirty(obj)) {
Mathieu Chartier4da7f2f2012-11-13 12:51:01 -08001365 // Card should be either kCardDirty if it got re-dirtied after we aged it, or
1366 // kCardDirty - 1 if it didnt get touched since we aged it.
Ian Rogers1d54e732013-05-02 21:10:01 -07001367 accounting::ObjectStack* live_stack = heap_->live_stack_.get();
Mathieu Chartierf082d3c2013-07-29 17:04:07 -07001368 if (live_stack->ContainsSorted(const_cast<mirror::Object*>(ref))) {
1369 if (live_stack->ContainsSorted(const_cast<mirror::Object*>(obj))) {
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07001370 LOG(ERROR) << "Object " << obj << " found in live stack";
1371 }
1372 if (heap_->GetLiveBitmap()->Test(obj)) {
1373 LOG(ERROR) << "Object " << obj << " found in live bitmap";
1374 }
1375 LOG(ERROR) << "Object " << obj << " " << PrettyTypeOf(obj)
1376 << " references " << ref << " " << PrettyTypeOf(ref) << " in live stack";
1377
1378 // Print which field of the object is dead.
1379 if (!obj->IsObjectArray()) {
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001380 const mirror::Class* klass = is_static ? obj->AsClass() : obj->GetClass();
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07001381 CHECK(klass != NULL);
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001382 const mirror::ObjectArray<mirror::Field>* fields = is_static ? klass->GetSFields()
1383 : klass->GetIFields();
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07001384 CHECK(fields != NULL);
1385 for (int32_t i = 0; i < fields->GetLength(); ++i) {
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001386 const mirror::Field* cur = fields->Get(i);
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07001387 if (cur->GetOffset().Int32Value() == offset.Int32Value()) {
1388 LOG(ERROR) << (is_static ? "Static " : "") << "field in the live stack is "
1389 << PrettyField(cur);
1390 break;
1391 }
1392 }
1393 } else {
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001394 const mirror::ObjectArray<mirror::Object>* object_array =
1395 obj->AsObjectArray<mirror::Object>();
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07001396 for (int32_t i = 0; i < object_array->GetLength(); ++i) {
1397 if (object_array->Get(i) == ref) {
1398 LOG(ERROR) << (is_static ? "Static " : "") << "obj[" << i << "] = ref";
1399 }
1400 }
1401 }
1402
1403 *failed_ = true;
1404 }
1405 }
1406 }
1407 }
1408
1409 private:
Ian Rogers1d54e732013-05-02 21:10:01 -07001410 Heap* const heap_;
1411 bool* const failed_;
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07001412};
1413
1414class VerifyLiveStackReferences {
1415 public:
Brian Carlstrom93ba8932013-07-17 21:31:49 -07001416 explicit VerifyLiveStackReferences(Heap* heap)
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07001417 : heap_(heap),
Brian Carlstrom93ba8932013-07-17 21:31:49 -07001418 failed_(false) {}
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07001419
Brian Carlstromdf629502013-07-17 22:39:56 -07001420 void operator()(const mirror::Object* obj) const
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07001421 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_, Locks::heap_bitmap_lock_) {
1422 VerifyReferenceCardVisitor visitor(heap_, const_cast<bool*>(&failed_));
Ian Rogers1d54e732013-05-02 21:10:01 -07001423 collector::MarkSweep::VisitObjectReferences(obj, visitor);
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07001424 }
1425
1426 bool Failed() const {
1427 return failed_;
1428 }
1429
1430 private:
Ian Rogers1d54e732013-05-02 21:10:01 -07001431 Heap* const heap_;
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07001432 bool failed_;
1433};
1434
1435bool Heap::VerifyMissingCardMarks() {
Ian Rogers81d425b2012-09-27 16:03:43 -07001436 Locks::mutator_lock_->AssertExclusiveHeld(Thread::Current());
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07001437
Mathieu Chartier2b82db42012-11-14 17:29:05 -08001438 // We need to sort the live stack since we binary search it.
Ian Rogers1d54e732013-05-02 21:10:01 -07001439 live_stack_->Sort();
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07001440 VerifyLiveStackReferences visitor(this);
1441 GetLiveBitmap()->Visit(visitor);
1442
1443 // We can verify objects in the live stack since none of these should reference dead objects.
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001444 for (mirror::Object** it = live_stack_->Begin(); it != live_stack_->End(); ++it) {
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07001445 visitor(*it);
1446 }
1447
1448 if (visitor.Failed()) {
1449 DumpSpaces();
1450 return false;
1451 }
1452 return true;
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001453}
1454
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07001455void Heap::SwapStacks() {
Mathieu Chartierd22d5482012-11-06 17:14:12 -08001456 allocation_stack_.swap(live_stack_);
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07001457
1458 // Sort the live stack so that we can quickly binary search it later.
Ian Rogers04d7aa92013-03-16 14:29:17 -07001459 if (verify_object_mode_ > kNoHeapVerification) {
Ian Rogers1d54e732013-05-02 21:10:01 -07001460 live_stack_->Sort();
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07001461 }
1462}
1463
Anwar Ghuloum6f28d912013-07-24 15:02:53 -07001464void Heap::ProcessCards(base::TimingLogger& timings) {
Ian Rogers1d54e732013-05-02 21:10:01 -07001465 // Clear cards and keep track of cards cleared in the mod-union table.
1466 typedef std::vector<space::ContinuousSpace*>::iterator It;
1467 for (It it = continuous_spaces_.begin(), end = continuous_spaces_.end(); it != end; ++it) {
1468 space::ContinuousSpace* space = *it;
Mathieu Chartier7469ebf2012-09-24 16:28:36 -07001469 if (space->IsImageSpace()) {
Ian Rogers1d54e732013-05-02 21:10:01 -07001470 timings.NewSplit("ModUnionClearCards");
1471 image_mod_union_table_->ClearCards(space);
1472 } else if (space->IsZygoteSpace()) {
1473 timings.NewSplit("ZygoteModUnionClearCards");
Mathieu Chartier7469ebf2012-09-24 16:28:36 -07001474 zygote_mod_union_table_->ClearCards(space);
Mathieu Chartier7469ebf2012-09-24 16:28:36 -07001475 } else {
Mathieu Chartierd22d5482012-11-06 17:14:12 -08001476 // No mod union table for the AllocSpace. Age the cards so that the GC knows that these cards
1477 // were dirty before the GC started.
Ian Rogers1d54e732013-05-02 21:10:01 -07001478 timings.NewSplit("AllocSpaceClearCards");
Mathieu Chartierd22d5482012-11-06 17:14:12 -08001479 card_table_->ModifyCardsAtomic(space->Begin(), space->End(), AgeCardVisitor(), VoidFunctor());
Mathieu Chartier7469ebf2012-09-24 16:28:36 -07001480 }
1481 }
1482}
1483
Ian Rogers1d54e732013-05-02 21:10:01 -07001484void Heap::PreGcVerification(collector::GarbageCollector* gc) {
Mathieu Chartier2b82db42012-11-14 17:29:05 -08001485 ThreadList* thread_list = Runtime::Current()->GetThreadList();
1486 Thread* self = Thread::Current();
Mathieu Chartier4da7f2f2012-11-13 12:51:01 -08001487
Mathieu Chartier2b82db42012-11-14 17:29:05 -08001488 if (verify_pre_gc_heap_) {
1489 thread_list->SuspendAll();
1490 {
1491 ReaderMutexLock mu(self, *Locks::heap_bitmap_lock_);
1492 if (!VerifyHeapReferences()) {
1493 LOG(FATAL) << "Pre " << gc->GetName() << " heap verification failed";
1494 }
1495 }
1496 thread_list->ResumeAll();
Mathieu Chartier4da7f2f2012-11-13 12:51:01 -08001497 }
Mathieu Chartier2b82db42012-11-14 17:29:05 -08001498
1499 // Check that all objects which reference things in the live stack are on dirty cards.
1500 if (verify_missing_card_marks_) {
1501 thread_list->SuspendAll();
1502 {
1503 ReaderMutexLock mu(self, *Locks::heap_bitmap_lock_);
1504 SwapStacks();
1505 // Sort the live stack so that we can quickly binary search it later.
1506 if (!VerifyMissingCardMarks()) {
1507 LOG(FATAL) << "Pre " << gc->GetName() << " missing card mark verification failed";
1508 }
1509 SwapStacks();
1510 }
1511 thread_list->ResumeAll();
1512 }
1513
1514 if (verify_mod_union_table_) {
1515 thread_list->SuspendAll();
1516 ReaderMutexLock reader_lock(self, *Locks::heap_bitmap_lock_);
1517 zygote_mod_union_table_->Update();
1518 zygote_mod_union_table_->Verify();
Ian Rogers1d54e732013-05-02 21:10:01 -07001519 image_mod_union_table_->Update();
1520 image_mod_union_table_->Verify();
Mathieu Chartier2b82db42012-11-14 17:29:05 -08001521 thread_list->ResumeAll();
1522 }
Mathieu Chartier4da7f2f2012-11-13 12:51:01 -08001523}
1524
Ian Rogers1d54e732013-05-02 21:10:01 -07001525void Heap::PreSweepingGcVerification(collector::GarbageCollector* gc) {
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001526 ThreadList* thread_list = Runtime::Current()->GetThreadList();
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001527
Mathieu Chartier2b82db42012-11-14 17:29:05 -08001528 // Called before sweeping occurs since we want to make sure we are not going so reclaim any
1529 // reachable objects.
1530 if (verify_post_gc_heap_) {
Ian Rogers1d54e732013-05-02 21:10:01 -07001531 Thread* self = Thread::Current();
1532 CHECK_NE(self->GetState(), kRunnable);
1533 Locks::mutator_lock_->SharedUnlock(self);
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001534 thread_list->SuspendAll();
Ian Rogers1d54e732013-05-02 21:10:01 -07001535 {
1536 WriterMutexLock mu(self, *Locks::heap_bitmap_lock_);
1537 // Swapping bound bitmaps does nothing.
1538 gc->SwapBitmaps();
1539 if (!VerifyHeapReferences()) {
1540 LOG(FATAL) << "Post " << gc->GetName() << "GC verification failed";
1541 }
1542 gc->SwapBitmaps();
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001543 }
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001544 thread_list->ResumeAll();
Ian Rogers1d54e732013-05-02 21:10:01 -07001545 Locks::mutator_lock_->SharedLock(self);
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001546 }
Mathieu Chartier2b82db42012-11-14 17:29:05 -08001547}
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001548
Ian Rogers1d54e732013-05-02 21:10:01 -07001549void Heap::PostGcVerification(collector::GarbageCollector* gc) {
Mathieu Chartier2b82db42012-11-14 17:29:05 -08001550 Thread* self = Thread::Current();
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001551
Mathieu Chartier2b82db42012-11-14 17:29:05 -08001552 if (verify_system_weaks_) {
1553 ReaderMutexLock mu(self, *Locks::heap_bitmap_lock_);
Ian Rogers1d54e732013-05-02 21:10:01 -07001554 collector::MarkSweep* mark_sweep = down_cast<collector::MarkSweep*>(gc);
Mathieu Chartier2b82db42012-11-14 17:29:05 -08001555 mark_sweep->VerifySystemWeaks();
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001556 }
Carl Shapiro69759ea2011-07-21 18:13:35 -07001557}
1558
Ian Rogers1d54e732013-05-02 21:10:01 -07001559collector::GcType Heap::WaitForConcurrentGcToComplete(Thread* self) {
1560 collector::GcType last_gc_type = collector::kGcTypeNone;
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001561 if (concurrent_gc_) {
Mathieu Chartier752a0e62013-06-27 11:03:27 -07001562 ATRACE_BEGIN("GC: Wait For Concurrent");
Mathieu Chartier866fb2a2012-09-10 10:47:49 -07001563 bool do_wait;
1564 uint64_t wait_start = NanoTime();
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001565 {
1566 // Check if GC is running holding gc_complete_lock_.
Ian Rogers81d425b2012-09-27 16:03:43 -07001567 MutexLock mu(self, *gc_complete_lock_);
Mathieu Chartier866fb2a2012-09-10 10:47:49 -07001568 do_wait = is_gc_running_;
Mathieu Chartiera6399032012-06-11 18:49:50 -07001569 }
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001570 if (do_wait) {
Mathieu Chartier155dfe92012-10-09 14:24:49 -07001571 uint64_t wait_time;
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001572 // We must wait, change thread state then sleep on gc_complete_cond_;
1573 ScopedThreadStateChange tsc(Thread::Current(), kWaitingForGcToComplete);
1574 {
Ian Rogers81d425b2012-09-27 16:03:43 -07001575 MutexLock mu(self, *gc_complete_lock_);
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001576 while (is_gc_running_) {
Ian Rogersc604d732012-10-14 16:09:54 -07001577 gc_complete_cond_->Wait(self);
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001578 }
Mathieu Chartier866fb2a2012-09-10 10:47:49 -07001579 last_gc_type = last_gc_type_;
Brian Carlstromf69863b2013-07-17 21:53:13 -07001580 wait_time = NanoTime() - wait_start;
Mathieu Chartier155dfe92012-10-09 14:24:49 -07001581 total_wait_time_ += wait_time;
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001582 }
Mathieu Chartier2b82db42012-11-14 17:29:05 -08001583 if (wait_time > kLongGcPauseThreshold) {
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001584 LOG(INFO) << "WaitForConcurrentGcToComplete blocked for " << PrettyDuration(wait_time);
1585 }
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001586 }
Mathieu Chartier752a0e62013-06-27 11:03:27 -07001587 ATRACE_END();
Mathieu Chartier7664f5c2012-06-08 18:15:32 -07001588 }
Mathieu Chartier866fb2a2012-09-10 10:47:49 -07001589 return last_gc_type;
Carl Shapiro69759ea2011-07-21 18:13:35 -07001590}
1591
Elliott Hughesc967f782012-04-16 10:23:15 -07001592void Heap::DumpForSigQuit(std::ostream& os) {
Ian Rogers1d54e732013-05-02 21:10:01 -07001593 os << "Heap: " << GetPercentFree() << "% free, " << PrettySize(GetBytesAllocated()) << "/"
Mathieu Chartier2fde5332012-09-14 14:51:54 -07001594 << PrettySize(GetTotalMemory()) << "; " << GetObjectsAllocated() << " objects\n";
Elliott Hughes8b788fe2013-04-17 15:57:01 -07001595 DumpGcPerformanceInfo(os);
Elliott Hughesc967f782012-04-16 10:23:15 -07001596}
1597
1598size_t Heap::GetPercentFree() {
Mathieu Chartier2fde5332012-09-14 14:51:54 -07001599 return static_cast<size_t>(100.0f * static_cast<float>(GetFreeMemory()) / GetTotalMemory());
Elliott Hughesc967f782012-04-16 10:23:15 -07001600}
1601
Elliott Hughes4dd9b4d2011-12-12 18:29:24 -08001602void Heap::SetIdealFootprint(size_t max_allowed_footprint) {
Mathieu Chartier2fde5332012-09-14 14:51:54 -07001603 if (max_allowed_footprint > GetMaxMemory()) {
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001604 VLOG(gc) << "Clamp target GC heap from " << PrettySize(max_allowed_footprint) << " to "
Mathieu Chartier2fde5332012-09-14 14:51:54 -07001605 << PrettySize(GetMaxMemory());
1606 max_allowed_footprint = GetMaxMemory();
1607 }
Mathieu Chartier1c23e1e2012-10-12 14:14:11 -07001608 max_allowed_footprint_ = max_allowed_footprint;
Shih-wei Liao8c2f6412011-10-03 22:58:14 -07001609}
1610
Mathieu Chartier987ccff2013-07-08 11:05:21 -07001611void Heap::UpdateMaxNativeFootprint() {
1612 size_t native_size = native_bytes_allocated_;
1613 // TODO: Tune the native heap utilization to be a value other than the java heap utilization.
1614 size_t target_size = native_size / GetTargetHeapUtilization();
1615 if (target_size > native_size + max_free_) {
1616 target_size = native_size + max_free_;
1617 } else if (target_size < native_size + min_free_) {
1618 target_size = native_size + min_free_;
1619 }
1620 native_footprint_gc_watermark_ = target_size;
1621 native_footprint_limit_ = 2 * target_size - native_size;
1622}
1623
Mathieu Chartierbdd0fb92013-07-02 10:16:15 -07001624void Heap::GrowForUtilization(collector::GcType gc_type, uint64_t gc_duration) {
Mathieu Chartier2fde5332012-09-14 14:51:54 -07001625 // We know what our utilization is at this moment.
1626 // This doesn't actually resize any memory. It just lets the heap grow more when necessary.
Mathieu Chartier65db8802012-11-20 12:36:46 -08001627 const size_t bytes_allocated = GetBytesAllocated();
1628 last_gc_size_ = bytes_allocated;
Ian Rogers1d54e732013-05-02 21:10:01 -07001629 last_gc_time_ns_ = NanoTime();
Mathieu Chartier357e9be2012-08-01 11:00:14 -07001630
Mathieu Chartierbdd0fb92013-07-02 10:16:15 -07001631 size_t target_size;
1632 if (gc_type != collector::kGcTypeSticky) {
1633 // Grow the heap for non sticky GC.
1634 target_size = bytes_allocated / GetTargetHeapUtilization();
1635 if (target_size > bytes_allocated + max_free_) {
1636 target_size = bytes_allocated + max_free_;
1637 } else if (target_size < bytes_allocated + min_free_) {
1638 target_size = bytes_allocated + min_free_;
1639 }
1640 next_gc_type_ = collector::kGcTypeSticky;
1641 } else {
1642 // Based on how close the current heap size is to the target size, decide
1643 // whether or not to do a partial or sticky GC next.
1644 if (bytes_allocated + min_free_ <= max_allowed_footprint_) {
1645 next_gc_type_ = collector::kGcTypeSticky;
1646 } else {
1647 next_gc_type_ = collector::kGcTypePartial;
1648 }
Mathieu Chartier2fde5332012-09-14 14:51:54 -07001649
Mathieu Chartierbdd0fb92013-07-02 10:16:15 -07001650 // If we have freed enough memory, shrink the heap back down.
1651 if (bytes_allocated + max_free_ < max_allowed_footprint_) {
1652 target_size = bytes_allocated + max_free_;
1653 } else {
1654 target_size = std::max(bytes_allocated, max_allowed_footprint_);
1655 }
1656 }
Shih-wei Liao8c2f6412011-10-03 22:58:14 -07001657 SetIdealFootprint(target_size);
Mathieu Chartier65db8802012-11-20 12:36:46 -08001658
Ian Rogers1d54e732013-05-02 21:10:01 -07001659 // Calculate when to perform the next ConcurrentGC.
1660 if (concurrent_gc_) {
Mathieu Chartier65db8802012-11-20 12:36:46 -08001661 // Calculate the estimated GC duration.
1662 double gc_duration_seconds = NsToMs(gc_duration) / 1000.0;
1663 // Estimate how many remaining bytes we will have when we need to start the next GC.
1664 size_t remaining_bytes = allocation_rate_ * gc_duration_seconds;
Ian Rogers1d54e732013-05-02 21:10:01 -07001665 remaining_bytes = std::max(remaining_bytes, kMinConcurrentRemainingBytes);
1666 if (UNLIKELY(remaining_bytes > max_allowed_footprint_)) {
1667 // A never going to happen situation that from the estimated allocation rate we will exceed
1668 // the applications entire footprint with the given estimated allocation rate. Schedule
1669 // another GC straight away.
1670 concurrent_start_bytes_ = bytes_allocated;
1671 } else {
Mathieu Chartier65db8802012-11-20 12:36:46 -08001672 // Start a concurrent GC when we get close to the estimated remaining bytes. When the
1673 // allocation rate is very high, remaining_bytes could tell us that we should start a GC
1674 // right away.
1675 concurrent_start_bytes_ = std::max(max_allowed_footprint_ - remaining_bytes, bytes_allocated);
Mathieu Chartier65db8802012-11-20 12:36:46 -08001676 }
1677 DCHECK_LE(concurrent_start_bytes_, max_allowed_footprint_);
1678 DCHECK_LE(max_allowed_footprint_, growth_limit_);
1679 }
Mathieu Chartier987ccff2013-07-08 11:05:21 -07001680
1681 UpdateMaxNativeFootprint();
Carl Shapiro69759ea2011-07-21 18:13:35 -07001682}
1683
jeffhaoc1160702011-10-27 15:48:45 -07001684void Heap::ClearGrowthLimit() {
Mathieu Chartier80de7a62012-11-27 17:21:50 -08001685 growth_limit_ = capacity_;
jeffhaoc1160702011-10-27 15:48:45 -07001686 alloc_space_->ClearGrowthLimit();
1687}
1688
Elliott Hughesadb460d2011-10-05 17:02:34 -07001689void Heap::SetReferenceOffsets(MemberOffset reference_referent_offset,
Mathieu Chartierfd678be2012-08-30 14:50:54 -07001690 MemberOffset reference_queue_offset,
1691 MemberOffset reference_queueNext_offset,
1692 MemberOffset reference_pendingNext_offset,
1693 MemberOffset finalizer_reference_zombie_offset) {
Elliott Hughesadb460d2011-10-05 17:02:34 -07001694 reference_referent_offset_ = reference_referent_offset;
1695 reference_queue_offset_ = reference_queue_offset;
1696 reference_queueNext_offset_ = reference_queueNext_offset;
1697 reference_pendingNext_offset_ = reference_pendingNext_offset;
1698 finalizer_reference_zombie_offset_ = finalizer_reference_zombie_offset;
1699 CHECK_NE(reference_referent_offset_.Uint32Value(), 0U);
1700 CHECK_NE(reference_queue_offset_.Uint32Value(), 0U);
1701 CHECK_NE(reference_queueNext_offset_.Uint32Value(), 0U);
1702 CHECK_NE(reference_pendingNext_offset_.Uint32Value(), 0U);
1703 CHECK_NE(finalizer_reference_zombie_offset_.Uint32Value(), 0U);
1704}
1705
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001706mirror::Object* Heap::GetReferenceReferent(mirror::Object* reference) {
Elliott Hughesadb460d2011-10-05 17:02:34 -07001707 DCHECK(reference != NULL);
1708 DCHECK_NE(reference_referent_offset_.Uint32Value(), 0U);
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001709 return reference->GetFieldObject<mirror::Object*>(reference_referent_offset_, true);
Elliott Hughesadb460d2011-10-05 17:02:34 -07001710}
1711
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001712void Heap::ClearReferenceReferent(mirror::Object* reference) {
Elliott Hughesadb460d2011-10-05 17:02:34 -07001713 DCHECK(reference != NULL);
1714 DCHECK_NE(reference_referent_offset_.Uint32Value(), 0U);
1715 reference->SetFieldObject(reference_referent_offset_, NULL, true);
1716}
1717
1718// Returns true if the reference object has not yet been enqueued.
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001719bool Heap::IsEnqueuable(const mirror::Object* ref) {
Elliott Hughesadb460d2011-10-05 17:02:34 -07001720 DCHECK(ref != NULL);
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001721 const mirror::Object* queue =
1722 ref->GetFieldObject<mirror::Object*>(reference_queue_offset_, false);
1723 const mirror::Object* queue_next =
1724 ref->GetFieldObject<mirror::Object*>(reference_queueNext_offset_, false);
Elliott Hughesadb460d2011-10-05 17:02:34 -07001725 return (queue != NULL) && (queue_next == NULL);
1726}
1727
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001728void Heap::EnqueueReference(mirror::Object* ref, mirror::Object** cleared_reference_list) {
Elliott Hughesadb460d2011-10-05 17:02:34 -07001729 DCHECK(ref != NULL);
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001730 CHECK(ref->GetFieldObject<mirror::Object*>(reference_queue_offset_, false) != NULL);
1731 CHECK(ref->GetFieldObject<mirror::Object*>(reference_queueNext_offset_, false) == NULL);
Elliott Hughesadb460d2011-10-05 17:02:34 -07001732 EnqueuePendingReference(ref, cleared_reference_list);
1733}
1734
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001735void Heap::EnqueuePendingReference(mirror::Object* ref, mirror::Object** list) {
Elliott Hughesadb460d2011-10-05 17:02:34 -07001736 DCHECK(ref != NULL);
1737 DCHECK(list != NULL);
1738
Mathieu Chartier02b6a782012-10-26 13:51:26 -07001739 // TODO: Remove this lock, use atomic stacks for storing references.
1740 MutexLock mu(Thread::Current(), *reference_queue_lock_);
Elliott Hughesadb460d2011-10-05 17:02:34 -07001741 if (*list == NULL) {
1742 ref->SetFieldObject(reference_pendingNext_offset_, ref, false);
1743 *list = ref;
1744 } else {
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001745 mirror::Object* head =
1746 (*list)->GetFieldObject<mirror::Object*>(reference_pendingNext_offset_, false);
Elliott Hughesadb460d2011-10-05 17:02:34 -07001747 ref->SetFieldObject(reference_pendingNext_offset_, head, false);
1748 (*list)->SetFieldObject(reference_pendingNext_offset_, ref, false);
1749 }
1750}
1751
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001752mirror::Object* Heap::DequeuePendingReference(mirror::Object** list) {
Elliott Hughesadb460d2011-10-05 17:02:34 -07001753 DCHECK(list != NULL);
1754 DCHECK(*list != NULL);
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001755 mirror::Object* head = (*list)->GetFieldObject<mirror::Object*>(reference_pendingNext_offset_,
1756 false);
1757 mirror::Object* ref;
Mathieu Chartier02b6a782012-10-26 13:51:26 -07001758
Mathieu Chartierd22d5482012-11-06 17:14:12 -08001759 // Note: the following code is thread-safe because it is only called from ProcessReferences which
1760 // is single threaded.
Elliott Hughesadb460d2011-10-05 17:02:34 -07001761 if (*list == head) {
1762 ref = *list;
1763 *list = NULL;
1764 } else {
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001765 mirror::Object* next = head->GetFieldObject<mirror::Object*>(reference_pendingNext_offset_,
1766 false);
Elliott Hughesadb460d2011-10-05 17:02:34 -07001767 (*list)->SetFieldObject(reference_pendingNext_offset_, next, false);
1768 ref = head;
1769 }
1770 ref->SetFieldObject(reference_pendingNext_offset_, NULL, false);
1771 return ref;
1772}
1773
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001774void Heap::AddFinalizerReference(Thread* self, mirror::Object* object) {
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001775 ScopedObjectAccess soa(self);
Jeff Hao5d917302013-02-27 17:57:33 -08001776 JValue result;
Jeff Hao5d917302013-02-27 17:57:33 -08001777 ArgArray arg_array(NULL, 0);
1778 arg_array.Append(reinterpret_cast<uint32_t>(object));
1779 soa.DecodeMethod(WellKnownClasses::java_lang_ref_FinalizerReference_add)->Invoke(self,
Jeff Hao6474d192013-03-26 14:08:09 -07001780 arg_array.GetArray(), arg_array.GetNumBytes(), &result, 'V');
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001781}
1782
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001783void Heap::EnqueueClearedReferences(mirror::Object** cleared) {
Elliott Hughesadb460d2011-10-05 17:02:34 -07001784 DCHECK(cleared != NULL);
1785 if (*cleared != NULL) {
Ian Rogers64b6d142012-10-29 16:34:15 -07001786 // When a runtime isn't started there are no reference queues to care about so ignore.
1787 if (LIKELY(Runtime::Current()->IsStarted())) {
1788 ScopedObjectAccess soa(Thread::Current());
Jeff Hao5d917302013-02-27 17:57:33 -08001789 JValue result;
Jeff Hao5d917302013-02-27 17:57:33 -08001790 ArgArray arg_array(NULL, 0);
1791 arg_array.Append(reinterpret_cast<uint32_t>(*cleared));
1792 soa.DecodeMethod(WellKnownClasses::java_lang_ref_ReferenceQueue_add)->Invoke(soa.Self(),
Jeff Hao6474d192013-03-26 14:08:09 -07001793 arg_array.GetArray(), arg_array.GetNumBytes(), &result, 'V');
Ian Rogers64b6d142012-10-29 16:34:15 -07001794 }
Elliott Hughesadb460d2011-10-05 17:02:34 -07001795 *cleared = NULL;
1796 }
1797}
1798
Ian Rogers1f539342012-10-03 21:09:42 -07001799void Heap::RequestConcurrentGC(Thread* self) {
Mathieu Chartier069387a2012-06-18 12:01:01 -07001800 // Make sure that we can do a concurrent GC.
Ian Rogers120f1c72012-09-28 17:17:10 -07001801 Runtime* runtime = Runtime::Current();
Mathieu Chartier65db8802012-11-20 12:36:46 -08001802 DCHECK(concurrent_gc_);
Mathieu Chartier2b82db42012-11-14 17:29:05 -08001803 if (runtime == NULL || !runtime->IsFinishedStarting() ||
Ian Rogers120f1c72012-09-28 17:17:10 -07001804 !runtime->IsConcurrentGcEnabled()) {
1805 return;
1806 }
Ian Rogers120f1c72012-09-28 17:17:10 -07001807 {
1808 MutexLock mu(self, *Locks::runtime_shutdown_lock_);
1809 if (runtime->IsShuttingDown()) {
1810 return;
1811 }
1812 }
1813 if (self->IsHandlingStackOverflow()) {
Mathieu Chartier7664f5c2012-06-08 18:15:32 -07001814 return;
1815 }
1816
Mathieu Chartier987ccff2013-07-08 11:05:21 -07001817 // We already have a request pending, no reason to start more until we update
1818 // concurrent_start_bytes_.
1819 concurrent_start_bytes_ = std::numeric_limits<size_t>::max();
1820
Ian Rogers120f1c72012-09-28 17:17:10 -07001821 JNIEnv* env = self->GetJniEnv();
Mathieu Chartiera6399032012-06-11 18:49:50 -07001822 DCHECK(WellKnownClasses::java_lang_Daemons != NULL);
1823 DCHECK(WellKnownClasses::java_lang_Daemons_requestGC != NULL);
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001824 env->CallStaticVoidMethod(WellKnownClasses::java_lang_Daemons,
1825 WellKnownClasses::java_lang_Daemons_requestGC);
Mathieu Chartier7664f5c2012-06-08 18:15:32 -07001826 CHECK(!env->ExceptionCheck());
Mathieu Chartier7664f5c2012-06-08 18:15:32 -07001827}
1828
Ian Rogers81d425b2012-09-27 16:03:43 -07001829void Heap::ConcurrentGC(Thread* self) {
Ian Rogers120f1c72012-09-28 17:17:10 -07001830 {
1831 MutexLock mu(self, *Locks::runtime_shutdown_lock_);
Mathieu Chartier65db8802012-11-20 12:36:46 -08001832 if (Runtime::Current()->IsShuttingDown()) {
Ian Rogers120f1c72012-09-28 17:17:10 -07001833 return;
1834 }
Mathieu Chartier2542d662012-06-21 17:14:11 -07001835 }
Mathieu Chartier357e9be2012-08-01 11:00:14 -07001836
Mathieu Chartier65db8802012-11-20 12:36:46 -08001837 // Wait for any GCs currently running to finish.
Ian Rogers1d54e732013-05-02 21:10:01 -07001838 if (WaitForConcurrentGcToComplete(self) == collector::kGcTypeNone) {
Mathieu Chartierbdd0fb92013-07-02 10:16:15 -07001839 CollectGarbageInternal(next_gc_type_, kGcCauseBackground, false);
Mathieu Chartiercc236d72012-07-20 10:29:05 -07001840 }
Mathieu Chartier7664f5c2012-06-08 18:15:32 -07001841}
1842
Elliott Hughes8cf5bc02012-02-02 16:32:16 -08001843void Heap::RequestHeapTrim() {
Ian Rogers48931882013-01-22 14:35:16 -08001844 // GC completed and now we must decide whether to request a heap trim (advising pages back to the
1845 // kernel) or not. Issuing a request will also cause trimming of the libc heap. As a trim scans
1846 // a space it will hold its lock and can become a cause of jank.
1847 // Note, the large object space self trims and the Zygote space was trimmed and unchanging since
1848 // forking.
1849
Elliott Hughes8cf5bc02012-02-02 16:32:16 -08001850 // We don't have a good measure of how worthwhile a trim might be. We can't use the live bitmap
1851 // because that only marks object heads, so a large array looks like lots of empty space. We
1852 // don't just call dlmalloc all the time, because the cost of an _attempted_ trim is proportional
1853 // to utilization (which is probably inversely proportional to how much benefit we can expect).
1854 // We could try mincore(2) but that's only a measure of how many pages we haven't given away,
1855 // not how much use we're making of those pages.
Ian Rogers48931882013-01-22 14:35:16 -08001856 uint64_t ms_time = MilliTime();
Mathieu Chartier2fde5332012-09-14 14:51:54 -07001857 float utilization =
Ian Rogers1d54e732013-05-02 21:10:01 -07001858 static_cast<float>(alloc_space_->GetBytesAllocated()) / alloc_space_->Size();
Mathieu Chartiere0a53e92013-08-05 10:17:40 -07001859 if ((utilization > 0.75f && !IsLowMemoryMode()) || ((ms_time - last_trim_time_ms_) < 2 * 1000)) {
1860 // Don't bother trimming the alloc space if it's more than 75% utilized and low memory mode is
1861 // not enabled, or if a heap trim occurred in the last two seconds.
Mathieu Chartier2fde5332012-09-14 14:51:54 -07001862 return;
Elliott Hughes8cf5bc02012-02-02 16:32:16 -08001863 }
Ian Rogers120f1c72012-09-28 17:17:10 -07001864
1865 Thread* self = Thread::Current();
1866 {
1867 MutexLock mu(self, *Locks::runtime_shutdown_lock_);
1868 Runtime* runtime = Runtime::Current();
1869 if (runtime == NULL || !runtime->IsFinishedStarting() || runtime->IsShuttingDown()) {
1870 // Heap trimming isn't supported without a Java runtime or Daemons (such as at dex2oat time)
1871 // Also: we do not wish to start a heap trim if the runtime is shutting down (a racy check
1872 // as we don't hold the lock while requesting the trim).
1873 return;
1874 }
Ian Rogerse1d490c2012-02-03 09:09:07 -08001875 }
Ian Rogers48931882013-01-22 14:35:16 -08001876
1877 SchedPolicy policy;
1878 get_sched_policy(self->GetTid(), &policy);
1879 if (policy == SP_FOREGROUND || policy == SP_AUDIO_APP) {
1880 // Don't trim the heap if we are a foreground or audio app.
1881 return;
1882 }
1883
Ian Rogers1d54e732013-05-02 21:10:01 -07001884 last_trim_time_ms_ = ms_time;
Ian Rogers120f1c72012-09-28 17:17:10 -07001885 JNIEnv* env = self->GetJniEnv();
Mathieu Chartiera6399032012-06-11 18:49:50 -07001886 DCHECK(WellKnownClasses::java_lang_Daemons != NULL);
1887 DCHECK(WellKnownClasses::java_lang_Daemons_requestHeapTrim != NULL);
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001888 env->CallStaticVoidMethod(WellKnownClasses::java_lang_Daemons,
1889 WellKnownClasses::java_lang_Daemons_requestHeapTrim);
Elliott Hughes8cf5bc02012-02-02 16:32:16 -08001890 CHECK(!env->ExceptionCheck());
1891}
1892
Ian Rogers48931882013-01-22 14:35:16 -08001893size_t Heap::Trim() {
1894 // Handle a requested heap trim on a thread outside of the main GC thread.
1895 return alloc_space_->Trim();
1896}
1897
Mathieu Chartier987ccff2013-07-08 11:05:21 -07001898bool Heap::IsGCRequestPending() const {
1899 return concurrent_start_bytes_ != std::numeric_limits<size_t>::max();
1900}
1901
1902void Heap::RegisterNativeAllocation(int bytes) {
1903 // Total number of native bytes allocated.
Mathieu Chartier4b95e8f2013-07-15 16:32:50 -07001904 native_bytes_allocated_.fetch_add(bytes);
Mathieu Chartier987ccff2013-07-08 11:05:21 -07001905 Thread* self = Thread::Current();
1906 if (static_cast<size_t>(native_bytes_allocated_) > native_footprint_gc_watermark_) {
1907 // The second watermark is higher than the gc watermark. If you hit this it means you are
1908 // allocating native objects faster than the GC can keep up with.
1909 if (static_cast<size_t>(native_bytes_allocated_) > native_footprint_limit_) {
1910 JNIEnv* env = self->GetJniEnv();
1911 // Can't do this in WellKnownClasses::Init since System is not properly set up at that
1912 // point.
1913 if (WellKnownClasses::java_lang_System_runFinalization == NULL) {
1914 DCHECK(WellKnownClasses::java_lang_System != NULL);
1915 WellKnownClasses::java_lang_System_runFinalization =
1916 CacheMethod(env, WellKnownClasses::java_lang_System, true, "runFinalization", "()V");
1917 assert(WellKnownClasses::java_lang_System_runFinalization != NULL);
1918 }
1919 if (WaitForConcurrentGcToComplete(self) != collector::kGcTypeNone) {
1920 // Just finished a GC, attempt to run finalizers.
1921 env->CallStaticVoidMethod(WellKnownClasses::java_lang_System,
1922 WellKnownClasses::java_lang_System_runFinalization);
1923 CHECK(!env->ExceptionCheck());
1924 }
1925
1926 // If we still are over the watermark, attempt a GC for alloc and run finalizers.
1927 if (static_cast<size_t>(native_bytes_allocated_) > native_footprint_limit_) {
1928 CollectGarbageInternal(collector::kGcTypePartial, kGcCauseForAlloc, false);
1929 env->CallStaticVoidMethod(WellKnownClasses::java_lang_System,
1930 WellKnownClasses::java_lang_System_runFinalization);
1931 CHECK(!env->ExceptionCheck());
1932 }
1933 // We have just run finalizers, update the native watermark since it is very likely that
1934 // finalizers released native managed allocations.
1935 UpdateMaxNativeFootprint();
1936 } else {
1937 if (!IsGCRequestPending()) {
1938 RequestConcurrentGC(self);
1939 }
1940 }
1941 }
1942}
1943
1944void Heap::RegisterNativeFree(int bytes) {
1945 int expected_size, new_size;
1946 do {
Mathieu Chartier4b95e8f2013-07-15 16:32:50 -07001947 expected_size = native_bytes_allocated_.load();
Mathieu Chartier987ccff2013-07-08 11:05:21 -07001948 new_size = expected_size - bytes;
1949 if (new_size < 0) {
1950 ThrowRuntimeException("attempted to free %d native bytes with only %d native bytes registered as allocated",
1951 bytes, expected_size);
1952 break;
1953 }
Mathieu Chartier4b95e8f2013-07-15 16:32:50 -07001954 } while (!native_bytes_allocated_.compare_and_swap(expected_size, new_size));
Mathieu Chartier987ccff2013-07-08 11:05:21 -07001955}
1956
Hiroshi Yamauchi09b07a92013-07-15 13:17:06 -07001957int64_t Heap::GetTotalMemory() const {
1958 int64_t ret = 0;
1959 typedef std::vector<space::ContinuousSpace*>::const_iterator It;
1960 for (It it = continuous_spaces_.begin(), end = continuous_spaces_.end(); it != end; ++it) {
1961 space::ContinuousSpace* space = *it;
1962 if (space->IsImageSpace()) {
1963 // Currently don't include the image space.
1964 } else if (space->IsDlMallocSpace()) {
1965 // Zygote or alloc space
1966 ret += space->AsDlMallocSpace()->GetFootprint();
1967 }
1968 }
1969 typedef std::vector<space::DiscontinuousSpace*>::const_iterator It2;
1970 for (It2 it = discontinuous_spaces_.begin(), end = discontinuous_spaces_.end(); it != end; ++it) {
1971 space::DiscontinuousSpace* space = *it;
1972 if (space->IsLargeObjectSpace()) {
1973 ret += space->AsLargeObjectSpace()->GetBytesAllocated();
1974 }
1975 }
1976 return ret;
1977}
1978
Ian Rogers1d54e732013-05-02 21:10:01 -07001979} // namespace gc
Carl Shapiro69759ea2011-07-21 18:13:35 -07001980} // namespace art