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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>
Ian Rogers700a4022014-05-19 16:49:03 -070023#include <memory>
Carl Shapiro58551df2011-07-24 03:09:51 -070024#include <vector>
25
Mathieu Chartierbad02672014-08-25 13:08:22 -070026#include "base/allocator.h"
Ian Rogersc7dd2952014-10-21 23:31:19 -070027#include "base/dumpable.h"
Mathieu Chartierb2f99362013-11-20 17:26:00 -080028#include "base/histogram-inl.h"
Elliott Hughes1aa246d2012-12-13 09:29:36 -080029#include "base/stl_util.h"
Mathieu Chartier987ccff2013-07-08 11:05:21 -070030#include "common_throws.h"
Ian Rogers48931882013-01-22 14:35:16 -080031#include "cutils/sched_policy.h"
Elliott Hughes767a1472011-10-26 18:49:02 -070032#include "debugger.h"
Elliott Hughes956af0f2014-12-11 14:34:28 -080033#include "dex_file-inl.h"
Ian Rogers1d54e732013-05-02 21:10:01 -070034#include "gc/accounting/atomic_stack.h"
35#include "gc/accounting/card_table-inl.h"
36#include "gc/accounting/heap_bitmap-inl.h"
Mathieu Chartier590fee92013-09-13 13:46:47 -070037#include "gc/accounting/mod_union_table.h"
Ian Rogers1d54e732013-05-02 21:10:01 -070038#include "gc/accounting/mod_union_table-inl.h"
Hiroshi Yamauchi38e68e92014-03-07 13:59:08 -080039#include "gc/accounting/remembered_set.h"
Ian Rogers1d54e732013-05-02 21:10:01 -070040#include "gc/accounting/space_bitmap-inl.h"
Hiroshi Yamauchid5307ec2014-03-27 21:07:51 -070041#include "gc/collector/concurrent_copying.h"
Mathieu Chartier52e4b432014-06-10 11:22:31 -070042#include "gc/collector/mark_compact.h"
Ian Rogers1d54e732013-05-02 21:10:01 -070043#include "gc/collector/mark_sweep-inl.h"
44#include "gc/collector/partial_mark_sweep.h"
Mathieu Chartier590fee92013-09-13 13:46:47 -070045#include "gc/collector/semi_space.h"
Ian Rogers1d54e732013-05-02 21:10:01 -070046#include "gc/collector/sticky_mark_sweep.h"
Mathieu Chartier78f7b4c2014-05-06 10:57:27 -070047#include "gc/reference_processor.h"
Mathieu Chartier590fee92013-09-13 13:46:47 -070048#include "gc/space/bump_pointer_space.h"
Hiroshi Yamauchi50b29282013-07-30 13:58:37 -070049#include "gc/space/dlmalloc_space-inl.h"
Ian Rogers1d54e732013-05-02 21:10:01 -070050#include "gc/space/image_space.h"
51#include "gc/space/large_object_space.h"
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -080052#include "gc/space/region_space.h"
Hiroshi Yamauchicf58d4a2013-09-26 14:21:22 -070053#include "gc/space/rosalloc_space-inl.h"
Ian Rogers1d54e732013-05-02 21:10:01 -070054#include "gc/space/space-inl.h"
Mathieu Chartiera1602f22014-01-13 17:19:19 -080055#include "gc/space/zygote_space.h"
Mathieu Chartiera5eae692014-12-17 17:56:03 -080056#include "gc/task_processor.h"
Mathieu Chartierd8891782014-03-02 13:28:37 -080057#include "entrypoints/quick/quick_alloc_entrypoints.h"
Hiroshi Yamauchi3b4c1892013-09-12 21:33:12 -070058#include "heap-inl.h"
Brian Carlstrom9cff8e12011-08-18 16:47:29 -070059#include "image.h"
Mathieu Chartiereb175f72014-10-31 11:49:27 -070060#include "intern_table.h"
Brian Carlstromea46f952013-07-30 01:26:50 -070061#include "mirror/art_field-inl.h"
Ian Rogers2dd0e2c2013-01-24 12:42:14 -080062#include "mirror/class-inl.h"
Ian Rogers2dd0e2c2013-01-24 12:42:14 -080063#include "mirror/object.h"
64#include "mirror/object-inl.h"
65#include "mirror/object_array-inl.h"
Mathieu Chartier8fa2dad2014-03-13 12:22:56 -070066#include "mirror/reference-inl.h"
Brian Carlstrom5643b782012-02-05 12:32:53 -080067#include "os.h"
Ian Rogers53b8b092014-03-13 23:45:53 -070068#include "reflection.h"
Mathieu Chartier0de9f732013-11-22 17:58:48 -080069#include "runtime.h"
Mathieu Chartier7664f5c2012-06-08 18:15:32 -070070#include "ScopedLocalRef.h"
Ian Rogers00f7d0e2012-07-19 15:28:27 -070071#include "scoped_thread_state_change.h"
Mathieu Chartiereb8167a2014-05-07 15:43:14 -070072#include "handle_scope-inl.h"
Elliott Hughes8d768a92011-09-14 16:35:25 -070073#include "thread_list.h"
Elliott Hugheseac76672012-05-24 21:56:51 -070074#include "well_known_classes.h"
Carl Shapiro69759ea2011-07-21 18:13:35 -070075
76namespace art {
Mathieu Chartier50482232013-11-21 11:48:14 -080077
Ian Rogers1d54e732013-05-02 21:10:01 -070078namespace gc {
Carl Shapiro69759ea2011-07-21 18:13:35 -070079
Mathieu Chartier91e30632014-03-25 15:58:50 -070080static constexpr size_t kCollectorTransitionStressIterations = 0;
81static constexpr size_t kCollectorTransitionStressWait = 10 * 1000; // Microseconds
Ian Rogers1d54e732013-05-02 21:10:01 -070082// Minimum amount of remaining bytes before a concurrent GC is triggered.
Mathieu Chartier720ef762013-08-17 14:46:54 -070083static constexpr size_t kMinConcurrentRemainingBytes = 128 * KB;
Mathieu Chartier74762802014-01-24 10:21:35 -080084static constexpr size_t kMaxConcurrentRemainingBytes = 512 * KB;
Mathieu Chartierdf86d1f2014-04-08 13:44:04 -070085// Sticky GC throughput adjustment, divided by 4. Increasing this causes sticky GC to occur more
Mathieu Chartier73d1e172014-04-11 17:53:48 -070086// relative to partial/full GC. This may be desirable since sticky GCs interfere less with mutator
Mathieu Chartierdf86d1f2014-04-08 13:44:04 -070087// threads (lower pauses, use less memory bandwidth).
Mathieu Chartier73d1e172014-04-11 17:53:48 -070088static constexpr double kStickyGcThroughputAdjustment = 1.0;
Mathieu Chartierc1790162014-05-23 10:54:50 -070089// Whether or not we compact the zygote in PreZygoteFork.
Mathieu Chartier31f44142014-04-08 14:40:03 -070090static constexpr bool kCompactZygote = kMovingCollector;
Mathieu Chartierc1790162014-05-23 10:54:50 -070091// How many reserve entries are at the end of the allocation stack, these are only needed if the
92// allocation stack overflows.
93static constexpr size_t kAllocationStackReserveSize = 1024;
94// Default mark stack size in bytes.
95static const size_t kDefaultMarkStackSize = 64 * KB;
Zuo Wangf37a88b2014-07-10 04:26:41 -070096// Define space name.
97static const char* kDlMallocSpaceName[2] = {"main dlmalloc space", "main dlmalloc space 1"};
98static const char* kRosAllocSpaceName[2] = {"main rosalloc space", "main rosalloc space 1"};
99static const char* kMemMapSpaceName[2] = {"main space", "main space 1"};
Mathieu Chartier7247af52014-11-19 10:51:42 -0800100static const char* kNonMovingSpaceName = "non moving space";
101static const char* kZygoteSpaceName = "zygote space";
Mathieu Chartierb363f662014-07-16 13:28:58 -0700102static constexpr size_t kGSSBumpPointerSpaceCapacity = 32 * MB;
Mathieu Chartier95a505c2014-12-10 18:45:30 -0800103static constexpr bool kGCALotMode = false;
104// GC alot mode uses a small allocation stack to stress test a lot of GC.
105static constexpr size_t kGcAlotAllocationStackSize = 4 * KB /
106 sizeof(mirror::HeapReference<mirror::Object>);
107// Verify objet has a small allocation stack size since searching the allocation stack is slow.
108static constexpr size_t kVerifyObjectAllocationStackSize = 16 * KB /
109 sizeof(mirror::HeapReference<mirror::Object>);
110static constexpr size_t kDefaultAllocationStackSize = 8 * MB /
111 sizeof(mirror::HeapReference<mirror::Object>);
Mathieu Chartier0051be62012-10-12 17:47:11 -0700112
Mathieu Chartier0051be62012-10-12 17:47:11 -0700113Heap::Heap(size_t initial_size, size_t growth_limit, size_t min_free, size_t max_free,
Mathieu Chartier6a7824d2014-08-22 14:53:04 -0700114 double target_utilization, double foreground_heap_growth_multiplier,
115 size_t capacity, size_t non_moving_space_capacity, const std::string& image_file_name,
116 const InstructionSet image_instruction_set, CollectorType foreground_collector_type,
Mathieu Chartier2dbe6272014-09-16 10:43:23 -0700117 CollectorType background_collector_type,
118 space::LargeObjectSpaceType large_object_space_type, size_t large_object_threshold,
119 size_t parallel_gc_threads, size_t conc_gc_threads, bool low_memory_mode,
Mathieu Chartiere6da9af2013-12-16 11:54:42 -0800120 size_t long_pause_log_threshold, size_t long_gc_log_threshold,
Mathieu Chartier6f365cc2014-04-23 12:42:27 -0700121 bool ignore_max_footprint, bool use_tlab,
122 bool verify_pre_gc_heap, bool verify_pre_sweeping_heap, bool verify_post_gc_heap,
123 bool verify_pre_gc_rosalloc, bool verify_pre_sweeping_rosalloc,
Zuo Wangf37a88b2014-07-10 04:26:41 -0700124 bool verify_post_gc_rosalloc, bool use_homogeneous_space_compaction_for_oom,
125 uint64_t min_interval_homogeneous_space_compaction_by_oom)
Mathieu Chartiercbb2d202013-11-14 17:45:16 -0800126 : non_moving_space_(nullptr),
Mathieu Chartiere6da9af2013-12-16 11:54:42 -0800127 rosalloc_space_(nullptr),
128 dlmalloc_space_(nullptr),
Mathieu Chartierfc5b5282014-01-09 16:15:36 -0800129 main_space_(nullptr),
Mathieu Chartier7bf82af2013-12-06 16:51:45 -0800130 collector_type_(kCollectorTypeNone),
Mathieu Chartier31f44142014-04-08 14:40:03 -0700131 foreground_collector_type_(foreground_collector_type),
Mathieu Chartiere6da9af2013-12-16 11:54:42 -0800132 background_collector_type_(background_collector_type),
Mathieu Chartier31f44142014-04-08 14:40:03 -0700133 desired_collector_type_(foreground_collector_type_),
Mathieu Chartiera5eae692014-12-17 17:56:03 -0800134 pending_task_lock_(nullptr),
Mathieu Chartier2775ee42013-08-20 17:43:47 -0700135 parallel_gc_threads_(parallel_gc_threads),
136 conc_gc_threads_(conc_gc_threads),
Mathieu Chartiere0a53e92013-08-05 10:17:40 -0700137 low_memory_mode_(low_memory_mode),
Mathieu Chartier2775ee42013-08-20 17:43:47 -0700138 long_pause_log_threshold_(long_pause_log_threshold),
139 long_gc_log_threshold_(long_gc_log_threshold),
140 ignore_max_footprint_(ignore_max_footprint),
Mathieu Chartier8e4a96d2014-05-21 10:44:32 -0700141 zygote_creation_lock_("zygote creation lock", kZygoteCreationLock),
Mathieu Chartiere4cab172014-08-19 18:24:04 -0700142 zygote_space_(nullptr),
Mathieu Chartier2dbe6272014-09-16 10:43:23 -0700143 large_object_threshold_(large_object_threshold),
Mathieu Chartierd5a89ee2014-01-31 09:55:13 -0800144 collector_type_running_(kCollectorTypeNone),
Ian Rogers1d54e732013-05-02 21:10:01 -0700145 last_gc_type_(collector::kGcTypeNone),
Mathieu Chartierbdd0fb92013-07-02 10:16:15 -0700146 next_gc_type_(collector::kGcTypePartial),
Mathieu Chartier80de7a62012-11-27 17:21:50 -0800147 capacity_(capacity),
Mathieu Chartier2fde5332012-09-14 14:51:54 -0700148 growth_limit_(growth_limit),
Mathieu Chartier0051be62012-10-12 17:47:11 -0700149 max_allowed_footprint_(initial_size),
Mathieu Chartier987ccff2013-07-08 11:05:21 -0700150 native_footprint_gc_watermark_(initial_size),
Mathieu Chartier590fee92013-09-13 13:46:47 -0700151 native_need_to_run_finalization_(false),
Mathieu Chartierca2a24d2013-11-25 15:12:12 -0800152 // Initially assume we perceive jank in case the process state is never updated.
153 process_state_(kProcessStateJankPerceptible),
Mathieu Chartier7bf82af2013-12-06 16:51:45 -0800154 concurrent_start_bytes_(std::numeric_limits<size_t>::max()),
Ian Rogers1d54e732013-05-02 21:10:01 -0700155 total_bytes_freed_ever_(0),
156 total_objects_freed_ever_(0),
Elliott Hughesb3bd5f02012-03-08 21:05:27 -0800157 num_bytes_allocated_(0),
Mathieu Chartier987ccff2013-07-08 11:05:21 -0700158 native_bytes_allocated_(0),
Mathieu Chartierc7b83a02012-09-11 18:07:39 -0700159 verify_missing_card_marks_(false),
160 verify_system_weaks_(false),
Mathieu Chartier938a03b2014-01-16 15:10:31 -0800161 verify_pre_gc_heap_(verify_pre_gc_heap),
Mathieu Chartier6f365cc2014-04-23 12:42:27 -0700162 verify_pre_sweeping_heap_(verify_pre_sweeping_heap),
Mathieu Chartier938a03b2014-01-16 15:10:31 -0800163 verify_post_gc_heap_(verify_post_gc_heap),
Mathieu Chartierfd678be2012-08-30 14:50:54 -0700164 verify_mod_union_table_(false),
Hiroshi Yamauchia4adbfd2014-02-04 18:12:17 -0800165 verify_pre_gc_rosalloc_(verify_pre_gc_rosalloc),
Mathieu Chartier6f365cc2014-04-23 12:42:27 -0700166 verify_pre_sweeping_rosalloc_(verify_pre_sweeping_rosalloc),
Hiroshi Yamauchia4adbfd2014-02-04 18:12:17 -0800167 verify_post_gc_rosalloc_(verify_post_gc_rosalloc),
Mathieu Chartier0418ae22013-07-31 13:35:46 -0700168 /* For GC a lot mode, we limit the allocations stacks to be kGcAlotInterval allocations. This
169 * causes a lot of GC since we do a GC for alloc whenever the stack is full. When heap
170 * verification is enabled, we limit the size of allocation stacks to speed up their
171 * searching.
172 */
Mathieu Chartier95a505c2014-12-10 18:45:30 -0800173 max_allocation_stack_size_(kGCALotMode ? kGcAlotAllocationStackSize
174 : (kVerifyObjectSupport > kVerifyObjectModeFast) ? kVerifyObjectAllocationStackSize :
175 kDefaultAllocationStackSize),
Mathieu Chartiere6da9af2013-12-16 11:54:42 -0800176 current_allocator_(kAllocatorTypeDlMalloc),
177 current_non_moving_allocator_(kAllocatorTypeNonMoving),
Mathieu Chartier590fee92013-09-13 13:46:47 -0700178 bump_pointer_space_(nullptr),
179 temp_space_(nullptr),
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -0800180 region_space_(nullptr),
Mathieu Chartier0051be62012-10-12 17:47:11 -0700181 min_free_(min_free),
182 max_free_(max_free),
183 target_utilization_(target_utilization),
Mathieu Chartier2f8da3e2014-04-15 15:37:02 -0700184 foreground_heap_growth_multiplier_(foreground_heap_growth_multiplier),
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700185 total_wait_time_(0),
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700186 total_allocation_time_(0),
Mathieu Chartier4e305412014-02-19 10:54:44 -0800187 verify_object_mode_(kVerifyObjectModeDisabled),
Mathieu Chartier1d27b342014-01-28 12:51:09 -0800188 disable_moving_gc_count_(0),
Mathieu Chartierda44d772014-04-01 15:01:46 -0700189 running_on_valgrind_(Runtime::Current()->RunningOnValgrind()),
Zuo Wangf37a88b2014-07-10 04:26:41 -0700190 use_tlab_(use_tlab),
191 main_space_backup_(nullptr),
Mathieu Chartierb363f662014-07-16 13:28:58 -0700192 min_interval_homogeneous_space_compaction_by_oom_(
193 min_interval_homogeneous_space_compaction_by_oom),
Zuo Wangf37a88b2014-07-10 04:26:41 -0700194 last_time_homogeneous_space_compaction_by_oom_(NanoTime()),
Mathieu Chartiera5eae692014-12-17 17:56:03 -0800195 pending_collector_transition_(nullptr),
196 pending_heap_trim_(nullptr),
Zuo Wangf37a88b2014-07-10 04:26:41 -0700197 use_homogeneous_space_compaction_for_oom_(use_homogeneous_space_compaction_for_oom) {
Elliott Hughes4dd9b4d2011-12-12 18:29:24 -0800198 if (VLOG_IS_ON(heap) || VLOG_IS_ON(startup)) {
Elliott Hughesb3bd5f02012-03-08 21:05:27 -0800199 LOG(INFO) << "Heap() entering";
Brian Carlstrom0a5b14d2011-09-27 13:29:15 -0700200 }
Mathieu Chartier50482232013-11-21 11:48:14 -0800201 // If we aren't the zygote, switch to the default non zygote allocator. This may update the
202 // entrypoints.
Mathieu Chartier8e219ae2014-08-19 14:29:46 -0700203 const bool is_zygote = Runtime::Current()->IsZygote();
204 if (!is_zygote) {
Mathieu Chartier31f44142014-04-08 14:40:03 -0700205 // Background compaction is currently not supported for command line runs.
206 if (background_collector_type_ != foreground_collector_type_) {
Mathieu Chartier52ba1992014-05-07 14:39:21 -0700207 VLOG(heap) << "Disabling background compaction for non zygote";
Mathieu Chartier31f44142014-04-08 14:40:03 -0700208 background_collector_type_ = foreground_collector_type_;
Mathieu Chartierbd0a6532014-02-27 11:14:21 -0800209 }
Mathieu Chartier50482232013-11-21 11:48:14 -0800210 }
Mathieu Chartiera5f9de02014-02-28 16:48:42 -0800211 ChangeCollector(desired_collector_type_);
Ian Rogers1d54e732013-05-02 21:10:01 -0700212 live_bitmap_.reset(new accounting::HeapBitmap(this));
213 mark_bitmap_.reset(new accounting::HeapBitmap(this));
Ian Rogers30fab402012-01-23 15:43:46 -0800214 // Requested begin for the alloc space, to follow the mapped image and oat files
Ian Rogers13735952014-10-08 12:43:28 -0700215 uint8_t* requested_alloc_space_begin = nullptr;
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -0800216 if (foreground_collector_type_ == kCollectorTypeCC) {
217 // Need to use a low address so that we can allocate a contiguous
218 // 2 * Xmx space when there's no image (dex2oat for target).
219 CHECK_GE(300 * MB, non_moving_space_capacity);
220 requested_alloc_space_begin = reinterpret_cast<uint8_t*>(300 * MB) - non_moving_space_capacity;
221 }
Brian Carlstrom5643b782012-02-05 12:32:53 -0800222 if (!image_file_name.empty()) {
Alex Light64ad14d2014-08-19 14:23:13 -0700223 std::string error_msg;
Narayan Kamath11d9f062014-04-23 20:24:57 +0100224 space::ImageSpace* image_space = space::ImageSpace::Create(image_file_name.c_str(),
Alex Light64ad14d2014-08-19 14:23:13 -0700225 image_instruction_set,
226 &error_msg);
227 if (image_space != nullptr) {
228 AddSpace(image_space);
229 // Oat files referenced by image files immediately follow them in memory, ensure alloc space
230 // isn't going to get in the middle
Ian Rogers13735952014-10-08 12:43:28 -0700231 uint8_t* oat_file_end_addr = image_space->GetImageHeader().GetOatFileEnd();
Alex Light64ad14d2014-08-19 14:23:13 -0700232 CHECK_GT(oat_file_end_addr, image_space->End());
233 requested_alloc_space_begin = AlignUp(oat_file_end_addr, kPageSize);
234 } else {
235 LOG(WARNING) << "Could not create image space with image file '" << image_file_name << "'. "
236 << "Attempting to fall back to imageless running. Error was: " << error_msg;
237 }
Brian Carlstrom69b15fb2011-09-03 12:25:21 -0700238 }
Zuo Wangf37a88b2014-07-10 04:26:41 -0700239 /*
240 requested_alloc_space_begin -> +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-
Mathieu Chartier6a7824d2014-08-22 14:53:04 -0700241 +- nonmoving space (non_moving_space_capacity)+-
Zuo Wangf37a88b2014-07-10 04:26:41 -0700242 +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-
Mathieu Chartier8e219ae2014-08-19 14:29:46 -0700243 +-????????????????????????????????????????????+-
244 +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-
Mathieu Chartierb363f662014-07-16 13:28:58 -0700245 +-main alloc space / bump space 1 (capacity_) +-
Zuo Wangf37a88b2014-07-10 04:26:41 -0700246 +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-
Mathieu Chartierb363f662014-07-16 13:28:58 -0700247 +-????????????????????????????????????????????+-
248 +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-
249 +-main alloc space2 / bump space 2 (capacity_)+-
Zuo Wangf37a88b2014-07-10 04:26:41 -0700250 +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-
251 */
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -0800252 // We don't have hspace compaction enabled with GSS or CC.
253 if (foreground_collector_type_ == kCollectorTypeGSS ||
254 foreground_collector_type_ == kCollectorTypeCC) {
Hiroshi Yamauchi20ed5af2014-11-17 18:05:44 -0800255 use_homogeneous_space_compaction_for_oom_ = false;
256 }
Mathieu Chartierb363f662014-07-16 13:28:58 -0700257 bool support_homogeneous_space_compaction =
Mathieu Chartier0deeb812014-08-21 18:28:20 -0700258 background_collector_type_ == gc::kCollectorTypeHomogeneousSpaceCompact ||
Hiroshi Yamauchi20ed5af2014-11-17 18:05:44 -0800259 use_homogeneous_space_compaction_for_oom_;
Mathieu Chartierb363f662014-07-16 13:28:58 -0700260 // We may use the same space the main space for the non moving space if we don't need to compact
261 // from the main space.
262 // This is not the case if we support homogeneous compaction or have a moving background
263 // collector type.
Mathieu Chartierb363f662014-07-16 13:28:58 -0700264 bool separate_non_moving_space = is_zygote ||
265 support_homogeneous_space_compaction || IsMovingGc(foreground_collector_type_) ||
266 IsMovingGc(background_collector_type_);
267 if (foreground_collector_type == kCollectorTypeGSS) {
268 separate_non_moving_space = false;
269 }
270 std::unique_ptr<MemMap> main_mem_map_1;
271 std::unique_ptr<MemMap> main_mem_map_2;
Ian Rogers13735952014-10-08 12:43:28 -0700272 uint8_t* request_begin = requested_alloc_space_begin;
Mathieu Chartierb363f662014-07-16 13:28:58 -0700273 if (request_begin != nullptr && separate_non_moving_space) {
Mathieu Chartier6a7824d2014-08-22 14:53:04 -0700274 request_begin += non_moving_space_capacity;
Mathieu Chartierb363f662014-07-16 13:28:58 -0700275 }
276 std::string error_str;
277 std::unique_ptr<MemMap> non_moving_space_mem_map;
278 if (separate_non_moving_space) {
Mathieu Chartier7247af52014-11-19 10:51:42 -0800279 // If we are the zygote, the non moving space becomes the zygote space when we run
280 // PreZygoteFork the first time. In this case, call the map "zygote space" since we can't
281 // rename the mem map later.
282 const char* space_name = is_zygote ? kZygoteSpaceName: kNonMovingSpaceName;
Mathieu Chartierb363f662014-07-16 13:28:58 -0700283 // Reserve the non moving mem map before the other two since it needs to be at a specific
284 // address.
285 non_moving_space_mem_map.reset(
Mathieu Chartier7247af52014-11-19 10:51:42 -0800286 MemMap::MapAnonymous(space_name, requested_alloc_space_begin,
Mathieu Chartier6a7824d2014-08-22 14:53:04 -0700287 non_moving_space_capacity, PROT_READ | PROT_WRITE, true, &error_str));
Mathieu Chartierb363f662014-07-16 13:28:58 -0700288 CHECK(non_moving_space_mem_map != nullptr) << error_str;
Mathieu Chartierc44ce2e2014-08-25 16:32:41 -0700289 // Try to reserve virtual memory at a lower address if we have a separate non moving space.
Ian Rogers13735952014-10-08 12:43:28 -0700290 request_begin = reinterpret_cast<uint8_t*>(300 * MB);
Mathieu Chartierb363f662014-07-16 13:28:58 -0700291 }
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -0800292 if (foreground_collector_type_ != kCollectorTypeCC) {
293 // Attempt to create 2 mem maps at or after the requested begin.
294 main_mem_map_1.reset(MapAnonymousPreferredAddress(kMemMapSpaceName[0], request_begin, capacity_,
295 &error_str));
296 CHECK(main_mem_map_1.get() != nullptr) << error_str;
297 }
Mathieu Chartierb363f662014-07-16 13:28:58 -0700298 if (support_homogeneous_space_compaction ||
299 background_collector_type_ == kCollectorTypeSS ||
300 foreground_collector_type_ == kCollectorTypeSS) {
301 main_mem_map_2.reset(MapAnonymousPreferredAddress(kMemMapSpaceName[1], main_mem_map_1->End(),
Ian Rogers6a3c1fc2014-10-31 00:33:20 -0700302 capacity_, &error_str));
Mathieu Chartierb363f662014-07-16 13:28:58 -0700303 CHECK(main_mem_map_2.get() != nullptr) << error_str;
304 }
305 // Create the non moving space first so that bitmaps don't take up the address range.
306 if (separate_non_moving_space) {
Mathieu Chartier31f44142014-04-08 14:40:03 -0700307 // Non moving space is always dlmalloc since we currently don't have support for multiple
Zuo Wangf37a88b2014-07-10 04:26:41 -0700308 // active rosalloc spaces.
Mathieu Chartierb363f662014-07-16 13:28:58 -0700309 const size_t size = non_moving_space_mem_map->Size();
310 non_moving_space_ = space::DlMallocSpace::CreateFromMemMap(
Mathieu Chartier6a7824d2014-08-22 14:53:04 -0700311 non_moving_space_mem_map.release(), "zygote / non moving space", kDefaultStartingSize,
Mathieu Chartierb363f662014-07-16 13:28:58 -0700312 initial_size, size, size, false);
Mathieu Chartier78408882014-04-11 18:06:01 -0700313 non_moving_space_->SetFootprintLimit(non_moving_space_->Capacity());
Mathieu Chartierb363f662014-07-16 13:28:58 -0700314 CHECK(non_moving_space_ != nullptr) << "Failed creating non moving space "
315 << requested_alloc_space_begin;
316 AddSpace(non_moving_space_);
317 }
318 // Create other spaces based on whether or not we have a moving GC.
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -0800319 if (foreground_collector_type_ == kCollectorTypeCC) {
320 region_space_ = space::RegionSpace::Create("Region space", capacity_ * 2, request_begin);
321 AddSpace(region_space_);
322 } else if (IsMovingGc(foreground_collector_type_) && foreground_collector_type_ != kCollectorTypeGSS) {
Mathieu Chartierb363f662014-07-16 13:28:58 -0700323 // Create bump pointer spaces.
324 // We only to create the bump pointer if the foreground collector is a compacting GC.
325 // TODO: Place bump-pointer spaces somewhere to minimize size of card table.
326 bump_pointer_space_ = space::BumpPointerSpace::CreateFromMemMap("Bump pointer space 1",
327 main_mem_map_1.release());
328 CHECK(bump_pointer_space_ != nullptr) << "Failed to create bump pointer space";
329 AddSpace(bump_pointer_space_);
330 temp_space_ = space::BumpPointerSpace::CreateFromMemMap("Bump pointer space 2",
331 main_mem_map_2.release());
332 CHECK(temp_space_ != nullptr) << "Failed to create bump pointer space";
333 AddSpace(temp_space_);
334 CHECK(separate_non_moving_space);
Hiroshi Yamauchi5ccd4982014-03-11 12:19:04 -0700335 } else {
Mathieu Chartierb363f662014-07-16 13:28:58 -0700336 CreateMainMallocSpace(main_mem_map_1.release(), initial_size, growth_limit_, capacity_);
337 CHECK(main_space_ != nullptr);
338 AddSpace(main_space_);
339 if (!separate_non_moving_space) {
Zuo Wangf37a88b2014-07-10 04:26:41 -0700340 non_moving_space_ = main_space_;
Mathieu Chartierb363f662014-07-16 13:28:58 -0700341 CHECK(!non_moving_space_->CanMoveObjects());
342 }
343 if (foreground_collector_type_ == kCollectorTypeGSS) {
344 CHECK_EQ(foreground_collector_type_, background_collector_type_);
345 // Create bump pointer spaces instead of a backup space.
346 main_mem_map_2.release();
347 bump_pointer_space_ = space::BumpPointerSpace::Create("Bump pointer space 1",
348 kGSSBumpPointerSpaceCapacity, nullptr);
349 CHECK(bump_pointer_space_ != nullptr);
350 AddSpace(bump_pointer_space_);
351 temp_space_ = space::BumpPointerSpace::Create("Bump pointer space 2",
352 kGSSBumpPointerSpaceCapacity, nullptr);
353 CHECK(temp_space_ != nullptr);
354 AddSpace(temp_space_);
355 } else if (main_mem_map_2.get() != nullptr) {
356 const char* name = kUseRosAlloc ? kRosAllocSpaceName[1] : kDlMallocSpaceName[1];
357 main_space_backup_.reset(CreateMallocSpaceFromMemMap(main_mem_map_2.release(), initial_size,
358 growth_limit_, capacity_, name, true));
359 CHECK(main_space_backup_.get() != nullptr);
360 // Add the space so its accounted for in the heap_begin and heap_end.
361 AddSpace(main_space_backup_.get());
Zuo Wangf37a88b2014-07-10 04:26:41 -0700362 }
Hiroshi Yamauchi5ccd4982014-03-11 12:19:04 -0700363 }
Mathieu Chartier31f44142014-04-08 14:40:03 -0700364 CHECK(non_moving_space_ != nullptr);
Mathieu Chartierb363f662014-07-16 13:28:58 -0700365 CHECK(!non_moving_space_->CanMoveObjects());
Mathieu Chartiereb5710e2013-07-25 15:19:42 -0700366 // Allocate the large object space.
Mathieu Chartier2dbe6272014-09-16 10:43:23 -0700367 if (large_object_space_type == space::kLargeObjectSpaceTypeFreeList) {
368 large_object_space_ = space::FreeListSpace::Create("free list large object space", nullptr,
369 capacity_);
370 CHECK(large_object_space_ != nullptr) << "Failed to create large object space";
371 } else if (large_object_space_type == space::kLargeObjectSpaceTypeMap) {
372 large_object_space_ = space::LargeObjectMapSpace::Create("mem map large object space");
373 CHECK(large_object_space_ != nullptr) << "Failed to create large object space";
Mathieu Chartiereb5710e2013-07-25 15:19:42 -0700374 } else {
Mathieu Chartier2dbe6272014-09-16 10:43:23 -0700375 // Disable the large object space by making the cutoff excessively large.
376 large_object_threshold_ = std::numeric_limits<size_t>::max();
377 large_object_space_ = nullptr;
Mathieu Chartiereb5710e2013-07-25 15:19:42 -0700378 }
Mathieu Chartier2dbe6272014-09-16 10:43:23 -0700379 if (large_object_space_ != nullptr) {
380 AddSpace(large_object_space_);
381 }
Ian Rogers1d54e732013-05-02 21:10:01 -0700382 // Compute heap capacity. Continuous spaces are sorted in order of Begin().
Mathieu Chartier590fee92013-09-13 13:46:47 -0700383 CHECK(!continuous_spaces_.empty());
384 // Relies on the spaces being sorted.
Ian Rogers13735952014-10-08 12:43:28 -0700385 uint8_t* heap_begin = continuous_spaces_.front()->Begin();
386 uint8_t* heap_end = continuous_spaces_.back()->Limit();
Mathieu Chartier590fee92013-09-13 13:46:47 -0700387 size_t heap_capacity = heap_end - heap_begin;
Mathieu Chartierb363f662014-07-16 13:28:58 -0700388 // Remove the main backup space since it slows down the GC to have unused extra spaces.
Mathieu Chartier0310da52014-12-01 13:40:48 -0800389 // TODO: Avoid needing to do this.
Mathieu Chartierb363f662014-07-16 13:28:58 -0700390 if (main_space_backup_.get() != nullptr) {
391 RemoveSpace(main_space_backup_.get());
392 }
Elliott Hughes6c9c06d2011-11-07 16:43:47 -0800393 // Allocate the card table.
Ian Rogers1d54e732013-05-02 21:10:01 -0700394 card_table_.reset(accounting::CardTable::Create(heap_begin, heap_capacity));
Mathieu Chartiercc236d72012-07-20 10:29:05 -0700395 CHECK(card_table_.get() != NULL) << "Failed to create card table";
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -0800396
397 if (foreground_collector_type_ == kCollectorTypeCC && kUseTableLookupReadBarrier) {
398 rb_table_.reset(new accounting::ReadBarrierTable());
399 DCHECK(rb_table_->IsAllCleared());
400 }
401
Mathieu Chartier590fee92013-09-13 13:46:47 -0700402 // Card cache for now since it makes it easier for us to update the references to the copying
403 // spaces.
Mathieu Chartier11409ae2013-09-23 11:49:36 -0700404 accounting::ModUnionTable* mod_union_table =
Mathieu Chartier0e54cd02014-03-20 12:41:23 -0700405 new accounting::ModUnionTableToZygoteAllocspace("Image mod-union table", this,
406 GetImageSpace());
Mathieu Chartier11409ae2013-09-23 11:49:36 -0700407 CHECK(mod_union_table != nullptr) << "Failed to create image mod-union table";
408 AddModUnionTable(mod_union_table);
Mathieu Chartier96bcd452014-06-17 09:50:02 -0700409 if (collector::SemiSpace::kUseRememberedSet && non_moving_space_ != main_space_) {
Hiroshi Yamauchi38e68e92014-03-07 13:59:08 -0800410 accounting::RememberedSet* non_moving_space_rem_set =
411 new accounting::RememberedSet("Non-moving space remembered set", this, non_moving_space_);
412 CHECK(non_moving_space_rem_set != nullptr) << "Failed to create non-moving space remembered set";
413 AddRememberedSet(non_moving_space_rem_set);
414 }
Mathieu Chartierb363f662014-07-16 13:28:58 -0700415 // TODO: Count objects in the image space here?
Ian Rogers3e5cf302014-05-20 16:40:37 -0700416 num_bytes_allocated_.StoreRelaxed(0);
Mathieu Chartierc1790162014-05-23 10:54:50 -0700417 mark_stack_.reset(accounting::ObjectStack::Create("mark stack", kDefaultMarkStackSize,
418 kDefaultMarkStackSize));
419 const size_t alloc_stack_capacity = max_allocation_stack_size_ + kAllocationStackReserveSize;
420 allocation_stack_.reset(accounting::ObjectStack::Create(
421 "allocation stack", max_allocation_stack_size_, alloc_stack_capacity));
422 live_stack_.reset(accounting::ObjectStack::Create(
423 "live stack", max_allocation_stack_size_, alloc_stack_capacity));
Mathieu Chartier65db8802012-11-20 12:36:46 -0800424 // It's still too early to take a lock because there are no threads yet, but we can create locks
425 // now. We don't create it earlier to make it clear that you can't use locks during heap
426 // initialization.
Mathieu Chartierfd678be2012-08-30 14:50:54 -0700427 gc_complete_lock_ = new Mutex("GC complete lock");
Ian Rogersc604d732012-10-14 16:09:54 -0700428 gc_complete_cond_.reset(new ConditionVariable("GC complete condition variable",
429 *gc_complete_lock_));
Mathieu Chartiera5eae692014-12-17 17:56:03 -0800430 task_processor_.reset(new TaskProcessor());
431 pending_task_lock_ = new Mutex("Pending task lock");
Mathieu Chartier2775ee42013-08-20 17:43:47 -0700432 if (ignore_max_footprint_) {
433 SetIdealFootprint(std::numeric_limits<size_t>::max());
Mathieu Chartier590fee92013-09-13 13:46:47 -0700434 concurrent_start_bytes_ = std::numeric_limits<size_t>::max();
Mathieu Chartier2775ee42013-08-20 17:43:47 -0700435 }
Mathieu Chartier590fee92013-09-13 13:46:47 -0700436 CHECK_NE(max_allowed_footprint_, 0U);
Mathieu Chartier2b82db42012-11-14 17:29:05 -0800437 // Create our garbage collectors.
Mathieu Chartier50482232013-11-21 11:48:14 -0800438 for (size_t i = 0; i < 2; ++i) {
439 const bool concurrent = i != 0;
440 garbage_collectors_.push_back(new collector::MarkSweep(this, concurrent));
441 garbage_collectors_.push_back(new collector::PartialMarkSweep(this, concurrent));
442 garbage_collectors_.push_back(new collector::StickyMarkSweep(this, concurrent));
443 }
Mathieu Chartier50482232013-11-21 11:48:14 -0800444 if (kMovingCollector) {
445 // TODO: Clean this up.
Zuo Wangf37a88b2014-07-10 04:26:41 -0700446 const bool generational = foreground_collector_type_ == kCollectorTypeGSS;
Hiroshi Yamauchidf386c52014-04-08 16:21:52 -0700447 semi_space_collector_ = new collector::SemiSpace(this, generational,
448 generational ? "generational" : "");
Mathieu Chartier590fee92013-09-13 13:46:47 -0700449 garbage_collectors_.push_back(semi_space_collector_);
Hiroshi Yamauchid5307ec2014-03-27 21:07:51 -0700450 concurrent_copying_collector_ = new collector::ConcurrentCopying(this);
451 garbage_collectors_.push_back(concurrent_copying_collector_);
Mathieu Chartier52e4b432014-06-10 11:22:31 -0700452 mark_compact_collector_ = new collector::MarkCompact(this);
453 garbage_collectors_.push_back(mark_compact_collector_);
Mathieu Chartier0325e622012-09-05 14:22:51 -0700454 }
Andreas Gampee1cb2982014-08-27 11:01:09 -0700455 if (GetImageSpace() != nullptr && non_moving_space_ != nullptr &&
456 (is_zygote || separate_non_moving_space || foreground_collector_type_ == kCollectorTypeGSS)) {
Mathieu Chartierb363f662014-07-16 13:28:58 -0700457 // Check that there's no gap between the image space and the non moving space so that the
Andreas Gampee1cb2982014-08-27 11:01:09 -0700458 // immune region won't break (eg. due to a large object allocated in the gap). This is only
459 // required when we're the zygote or using GSS.
Mathieu Chartierb363f662014-07-16 13:28:58 -0700460 bool no_gap = MemMap::CheckNoGaps(GetImageSpace()->GetMemMap(),
461 non_moving_space_->GetMemMap());
Hiroshi Yamauchi3eed93d2014-06-04 11:43:59 -0700462 if (!no_gap) {
463 MemMap::DumpMaps(LOG(ERROR));
464 LOG(FATAL) << "There's a gap between the image space and the main space";
465 }
466 }
Hiroshi Yamauchi3b4c1892013-09-12 21:33:12 -0700467 if (running_on_valgrind_) {
Mathieu Chartier9ef78b52014-09-25 17:03:12 -0700468 Runtime::Current()->GetInstrumentation()->InstrumentQuickAllocEntryPoints();
Hiroshi Yamauchi3b4c1892013-09-12 21:33:12 -0700469 }
Elliott Hughes4dd9b4d2011-12-12 18:29:24 -0800470 if (VLOG_IS_ON(heap) || VLOG_IS_ON(startup)) {
Elliott Hughesb3bd5f02012-03-08 21:05:27 -0800471 LOG(INFO) << "Heap() exiting";
Brian Carlstrom0a5b14d2011-09-27 13:29:15 -0700472 }
Carl Shapiro69759ea2011-07-21 18:13:35 -0700473}
474
Ian Rogers6a3c1fc2014-10-31 00:33:20 -0700475MemMap* Heap::MapAnonymousPreferredAddress(const char* name, uint8_t* request_begin,
476 size_t capacity, std::string* out_error_str) {
Mathieu Chartierb363f662014-07-16 13:28:58 -0700477 while (true) {
Kyungmin Leeef32b8f2014-10-23 09:32:05 +0900478 MemMap* map = MemMap::MapAnonymous(name, request_begin, capacity,
Mathieu Chartierb363f662014-07-16 13:28:58 -0700479 PROT_READ | PROT_WRITE, true, out_error_str);
480 if (map != nullptr || request_begin == nullptr) {
481 return map;
482 }
483 // Retry a second time with no specified request begin.
484 request_begin = nullptr;
485 }
486 return nullptr;
487}
488
Zuo Wangf37a88b2014-07-10 04:26:41 -0700489space::MallocSpace* Heap::CreateMallocSpaceFromMemMap(MemMap* mem_map, size_t initial_size,
490 size_t growth_limit, size_t capacity,
491 const char* name, bool can_move_objects) {
492 space::MallocSpace* malloc_space = nullptr;
493 if (kUseRosAlloc) {
494 // Create rosalloc space.
495 malloc_space = space::RosAllocSpace::CreateFromMemMap(mem_map, name, kDefaultStartingSize,
496 initial_size, growth_limit, capacity,
497 low_memory_mode_, can_move_objects);
498 } else {
499 malloc_space = space::DlMallocSpace::CreateFromMemMap(mem_map, name, kDefaultStartingSize,
500 initial_size, growth_limit, capacity,
501 can_move_objects);
502 }
503 if (collector::SemiSpace::kUseRememberedSet) {
504 accounting::RememberedSet* rem_set =
505 new accounting::RememberedSet(std::string(name) + " remembered set", this, malloc_space);
506 CHECK(rem_set != nullptr) << "Failed to create main space remembered set";
507 AddRememberedSet(rem_set);
508 }
509 CHECK(malloc_space != nullptr) << "Failed to create " << name;
510 malloc_space->SetFootprintLimit(malloc_space->Capacity());
511 return malloc_space;
512}
513
Mathieu Chartier31f44142014-04-08 14:40:03 -0700514void Heap::CreateMainMallocSpace(MemMap* mem_map, size_t initial_size, size_t growth_limit,
515 size_t capacity) {
516 // Is background compaction is enabled?
517 bool can_move_objects = IsMovingGc(background_collector_type_) !=
Zuo Wangf37a88b2014-07-10 04:26:41 -0700518 IsMovingGc(foreground_collector_type_) || use_homogeneous_space_compaction_for_oom_;
Mathieu Chartier31f44142014-04-08 14:40:03 -0700519 // If we are the zygote and don't yet have a zygote space, it means that the zygote fork will
520 // happen in the future. If this happens and we have kCompactZygote enabled we wish to compact
521 // from the main space to the zygote space. If background compaction is enabled, always pass in
522 // that we can move objets.
523 if (kCompactZygote && Runtime::Current()->IsZygote() && !can_move_objects) {
524 // After the zygote we want this to be false if we don't have background compaction enabled so
525 // that getting primitive array elements is faster.
Mathieu Chartierb363f662014-07-16 13:28:58 -0700526 // We never have homogeneous compaction with GSS and don't need a space with movable objects.
Mathieu Chartiere4cab172014-08-19 18:24:04 -0700527 can_move_objects = !HasZygoteSpace() && foreground_collector_type_ != kCollectorTypeGSS;
Mathieu Chartier31f44142014-04-08 14:40:03 -0700528 }
Mathieu Chartier96bcd452014-06-17 09:50:02 -0700529 if (collector::SemiSpace::kUseRememberedSet && main_space_ != nullptr) {
530 RemoveRememberedSet(main_space_);
531 }
Zuo Wangf37a88b2014-07-10 04:26:41 -0700532 const char* name = kUseRosAlloc ? kRosAllocSpaceName[0] : kDlMallocSpaceName[0];
533 main_space_ = CreateMallocSpaceFromMemMap(mem_map, initial_size, growth_limit, capacity, name,
534 can_move_objects);
535 SetSpaceAsDefault(main_space_);
Mathieu Chartier31f44142014-04-08 14:40:03 -0700536 VLOG(heap) << "Created main space " << main_space_;
537}
538
Mathieu Chartier50482232013-11-21 11:48:14 -0800539void Heap::ChangeAllocator(AllocatorType allocator) {
Mathieu Chartier50482232013-11-21 11:48:14 -0800540 if (current_allocator_ != allocator) {
Mathieu Chartierd8891782014-03-02 13:28:37 -0800541 // These two allocators are only used internally and don't have any entrypoints.
542 CHECK_NE(allocator, kAllocatorTypeLOS);
543 CHECK_NE(allocator, kAllocatorTypeNonMoving);
Mathieu Chartier50482232013-11-21 11:48:14 -0800544 current_allocator_ = allocator;
Mathieu Chartierd8891782014-03-02 13:28:37 -0800545 MutexLock mu(nullptr, *Locks::runtime_shutdown_lock_);
Mathieu Chartier50482232013-11-21 11:48:14 -0800546 SetQuickAllocEntryPointsAllocator(current_allocator_);
547 Runtime::Current()->GetInstrumentation()->ResetQuickAllocEntryPoints();
548 }
549}
550
Mathieu Chartier6a7824d2014-08-22 14:53:04 -0700551void Heap::DisableMovingGc() {
Mathieu Chartier31f44142014-04-08 14:40:03 -0700552 if (IsMovingGc(foreground_collector_type_)) {
Mathieu Chartier6a7824d2014-08-22 14:53:04 -0700553 foreground_collector_type_ = kCollectorTypeCMS;
Mathieu Chartier6dda8982014-03-06 11:11:48 -0800554 }
Mathieu Chartier31f44142014-04-08 14:40:03 -0700555 if (IsMovingGc(background_collector_type_)) {
556 background_collector_type_ = foreground_collector_type_;
Mathieu Chartier6dda8982014-03-06 11:11:48 -0800557 }
Mathieu Chartier31f44142014-04-08 14:40:03 -0700558 TransitionCollector(foreground_collector_type_);
Mathieu Chartier6a7824d2014-08-22 14:53:04 -0700559 ThreadList* tl = Runtime::Current()->GetThreadList();
560 Thread* self = Thread::Current();
561 ScopedThreadStateChange tsc(self, kSuspended);
562 tl->SuspendAll();
563 // Something may have caused the transition to fail.
Mathieu Chartiere4927f62014-08-23 13:56:03 -0700564 if (!IsMovingGc(collector_type_) && non_moving_space_ != main_space_) {
Mathieu Chartier6a7824d2014-08-22 14:53:04 -0700565 CHECK(main_space_ != nullptr);
566 // The allocation stack may have non movable objects in it. We need to flush it since the GC
567 // can't only handle marking allocation stack objects of one non moving space and one main
568 // space.
569 {
570 WriterMutexLock mu(self, *Locks::heap_bitmap_lock_);
571 FlushAllocStack();
572 }
573 main_space_->DisableMovingObjects();
574 non_moving_space_ = main_space_;
575 CHECK(!non_moving_space_->CanMoveObjects());
576 }
577 tl->ResumeAll();
Mathieu Chartier6dda8982014-03-06 11:11:48 -0800578}
579
Mathieu Chartier15d34022014-02-26 17:16:38 -0800580std::string Heap::SafeGetClassDescriptor(mirror::Class* klass) {
581 if (!IsValidContinuousSpaceObjectAddress(klass)) {
582 return StringPrintf("<non heap address klass %p>", klass);
583 }
584 mirror::Class* component_type = klass->GetComponentType<kVerifyNone>();
585 if (IsValidContinuousSpaceObjectAddress(component_type) && klass->IsArrayClass<kVerifyNone>()) {
586 std::string result("[");
587 result += SafeGetClassDescriptor(component_type);
588 return result;
589 } else if (UNLIKELY(klass->IsPrimitive<kVerifyNone>())) {
590 return Primitive::Descriptor(klass->GetPrimitiveType<kVerifyNone>());
Mathieu Chartierc2f4d022014-03-03 16:11:42 -0800591 } else if (UNLIKELY(klass->IsProxyClass<kVerifyNone>())) {
Mathieu Chartier15d34022014-02-26 17:16:38 -0800592 return Runtime::Current()->GetClassLinker()->GetDescriptorForProxy(klass);
593 } else {
Mathieu Chartierc2f4d022014-03-03 16:11:42 -0800594 mirror::DexCache* dex_cache = klass->GetDexCache<kVerifyNone>();
Mathieu Chartier15d34022014-02-26 17:16:38 -0800595 if (!IsValidContinuousSpaceObjectAddress(dex_cache)) {
596 return StringPrintf("<non heap address dex_cache %p>", dex_cache);
597 }
598 const DexFile* dex_file = dex_cache->GetDexFile();
599 uint16_t class_def_idx = klass->GetDexClassDefIndex();
600 if (class_def_idx == DexFile::kDexNoIndex16) {
601 return "<class def not found>";
602 }
603 const DexFile::ClassDef& class_def = dex_file->GetClassDef(class_def_idx);
604 const DexFile::TypeId& type_id = dex_file->GetTypeId(class_def.class_idx_);
605 return dex_file->GetTypeDescriptor(type_id);
606 }
607}
608
609std::string Heap::SafePrettyTypeOf(mirror::Object* obj) {
610 if (obj == nullptr) {
611 return "null";
612 }
613 mirror::Class* klass = obj->GetClass<kVerifyNone>();
614 if (klass == nullptr) {
615 return "(class=null)";
616 }
617 std::string result(SafeGetClassDescriptor(klass));
618 if (obj->IsClass()) {
Mathieu Chartierc2f4d022014-03-03 16:11:42 -0800619 result += "<" + SafeGetClassDescriptor(obj->AsClass<kVerifyNone>()) + ">";
Mathieu Chartier15d34022014-02-26 17:16:38 -0800620 }
621 return result;
622}
623
624void Heap::DumpObject(std::ostream& stream, mirror::Object* obj) {
625 if (obj == nullptr) {
626 stream << "(obj=null)";
627 return;
628 }
629 if (IsAligned<kObjectAlignment>(obj)) {
630 space::Space* space = nullptr;
631 // Don't use find space since it only finds spaces which actually contain objects instead of
632 // spaces which may contain objects (e.g. cleared bump pointer spaces).
633 for (const auto& cur_space : continuous_spaces_) {
634 if (cur_space->HasAddress(obj)) {
635 space = cur_space;
636 break;
637 }
638 }
Mathieu Chartier15d34022014-02-26 17:16:38 -0800639 // Unprotect all the spaces.
Andreas Gampe277ccbd2014-11-03 21:36:10 -0800640 for (const auto& con_space : continuous_spaces_) {
641 mprotect(con_space->Begin(), con_space->Capacity(), PROT_READ | PROT_WRITE);
Mathieu Chartier15d34022014-02-26 17:16:38 -0800642 }
643 stream << "Object " << obj;
644 if (space != nullptr) {
645 stream << " in space " << *space;
646 }
Mathieu Chartierc2f4d022014-03-03 16:11:42 -0800647 mirror::Class* klass = obj->GetClass<kVerifyNone>();
Mathieu Chartier15d34022014-02-26 17:16:38 -0800648 stream << "\nclass=" << klass;
649 if (klass != nullptr) {
650 stream << " type= " << SafePrettyTypeOf(obj);
651 }
652 // Re-protect the address we faulted on.
653 mprotect(AlignDown(obj, kPageSize), kPageSize, PROT_NONE);
654 }
655}
656
Mathieu Chartier590fee92013-09-13 13:46:47 -0700657bool Heap::IsCompilingBoot() const {
Alex Light64ad14d2014-08-19 14:23:13 -0700658 if (!Runtime::Current()->IsCompiler()) {
659 return false;
660 }
Mathieu Chartier590fee92013-09-13 13:46:47 -0700661 for (const auto& space : continuous_spaces_) {
Mathieu Chartier4e305412014-02-19 10:54:44 -0800662 if (space->IsImageSpace() || space->IsZygoteSpace()) {
Mathieu Chartier590fee92013-09-13 13:46:47 -0700663 return false;
664 }
665 }
666 return true;
667}
668
669bool Heap::HasImageSpace() const {
670 for (const auto& space : continuous_spaces_) {
671 if (space->IsImageSpace()) {
672 return true;
673 }
674 }
675 return false;
676}
677
Mathieu Chartier1d27b342014-01-28 12:51:09 -0800678void Heap::IncrementDisableMovingGC(Thread* self) {
Mathieu Chartier590fee92013-09-13 13:46:47 -0700679 // Need to do this holding the lock to prevent races where the GC is about to run / running when
680 // we attempt to disable it.
Mathieu Chartiercaa82d62014-02-02 16:51:17 -0800681 ScopedThreadStateChange tsc(self, kWaitingForGcToComplete);
Mathieu Chartier590fee92013-09-13 13:46:47 -0700682 MutexLock mu(self, *gc_complete_lock_);
Mathieu Chartier1d27b342014-01-28 12:51:09 -0800683 ++disable_moving_gc_count_;
Mathieu Chartier31f44142014-04-08 14:40:03 -0700684 if (IsMovingGc(collector_type_running_)) {
Mathieu Chartier89a201e2014-05-02 10:27:26 -0700685 WaitForGcToCompleteLocked(kGcCauseDisableMovingGc, self);
Mathieu Chartierd5a89ee2014-01-31 09:55:13 -0800686 }
Mathieu Chartier590fee92013-09-13 13:46:47 -0700687}
688
Mathieu Chartier1d27b342014-01-28 12:51:09 -0800689void Heap::DecrementDisableMovingGC(Thread* self) {
Mathieu Chartier590fee92013-09-13 13:46:47 -0700690 MutexLock mu(self, *gc_complete_lock_);
Mathieu Chartier1d27b342014-01-28 12:51:09 -0800691 CHECK_GE(disable_moving_gc_count_, 0U);
692 --disable_moving_gc_count_;
Mathieu Chartier590fee92013-09-13 13:46:47 -0700693}
694
Mathieu Chartierca2a24d2013-11-25 15:12:12 -0800695void Heap::UpdateProcessState(ProcessState process_state) {
Mathieu Chartiere6da9af2013-12-16 11:54:42 -0800696 if (process_state_ != process_state) {
697 process_state_ = process_state;
Mathieu Chartier91e30632014-03-25 15:58:50 -0700698 for (size_t i = 1; i <= kCollectorTransitionStressIterations; ++i) {
699 // Start at index 1 to avoid "is always false" warning.
700 // Have iteration 1 always transition the collector.
701 TransitionCollector((((i & 1) == 1) == (process_state_ == kProcessStateJankPerceptible))
Mathieu Chartier31f44142014-04-08 14:40:03 -0700702 ? foreground_collector_type_ : background_collector_type_);
Mathieu Chartier91e30632014-03-25 15:58:50 -0700703 usleep(kCollectorTransitionStressWait);
704 }
Mathieu Chartiere6da9af2013-12-16 11:54:42 -0800705 if (process_state_ == kProcessStateJankPerceptible) {
Mathieu Chartiera5f9de02014-02-28 16:48:42 -0800706 // Transition back to foreground right away to prevent jank.
Mathieu Chartier31f44142014-04-08 14:40:03 -0700707 RequestCollectorTransition(foreground_collector_type_, 0);
Mathieu Chartiere6da9af2013-12-16 11:54:42 -0800708 } else {
Mathieu Chartiera5f9de02014-02-28 16:48:42 -0800709 // Don't delay for debug builds since we may want to stress test the GC.
Zuo Wangf37a88b2014-07-10 04:26:41 -0700710 // If background_collector_type_ is kCollectorTypeHomogeneousSpaceCompact then we have
711 // special handling which does a homogenous space compaction once but then doesn't transition
712 // the collector.
713 RequestCollectorTransition(background_collector_type_,
714 kIsDebugBuild ? 0 : kCollectorTransitionWait);
Mathieu Chartiere6da9af2013-12-16 11:54:42 -0800715 }
Mathieu Chartiere6da9af2013-12-16 11:54:42 -0800716 }
Mathieu Chartierca2a24d2013-11-25 15:12:12 -0800717}
718
Mathieu Chartier02b6a782012-10-26 13:51:26 -0700719void Heap::CreateThreadPool() {
Mathieu Chartier2775ee42013-08-20 17:43:47 -0700720 const size_t num_threads = std::max(parallel_gc_threads_, conc_gc_threads_);
721 if (num_threads != 0) {
Mathieu Chartierbcd5e9d2013-11-13 14:33:28 -0800722 thread_pool_.reset(new ThreadPool("Heap thread pool", num_threads));
Mathieu Chartier94c32c52013-08-09 11:14:04 -0700723 }
Mathieu Chartier02b6a782012-10-26 13:51:26 -0700724}
725
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -0800726// Visit objects when threads aren't suspended. If concurrent moving
727// GC, disable moving GC and suspend threads and then visit objects.
Mathieu Chartier83c8ee02014-01-28 14:50:23 -0800728void Heap::VisitObjects(ObjectCallback callback, void* arg) {
Hiroshi Yamauchi0c8c3032015-01-16 16:54:35 -0800729 Thread* self = Thread::Current();
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -0800730 Locks::mutator_lock_->AssertSharedHeld(self);
731 DCHECK(!Locks::mutator_lock_->IsExclusiveHeld(self)) << "Call VisitObjectsPaused() instead";
732 if (IsGcConcurrentAndMoving()) {
733 // Concurrent moving GC. Just suspending threads isn't sufficient
734 // because a collection isn't one big pause and we could suspend
735 // threads in the middle (between phases) of a concurrent moving
736 // collection where it's not easily known which objects are alive
737 // (both the region space and the non-moving space) or which
738 // copies of objects to visit, and the to-space invariant could be
739 // easily broken. Visit objects while GC isn't running by using
740 // IncrementDisableMovingGC() and threads are suspended.
741 IncrementDisableMovingGC(self);
Hiroshi Yamauchi0c8c3032015-01-16 16:54:35 -0800742 self->TransitionFromRunnableToSuspended(kWaitingForVisitObjects);
743 ThreadList* tl = Runtime::Current()->GetThreadList();
744 tl->SuspendAll();
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -0800745 VisitObjectsInternalRegionSpace(callback, arg);
Hiroshi Yamauchi0c8c3032015-01-16 16:54:35 -0800746 VisitObjectsInternal(callback, arg);
747 tl->ResumeAll();
748 self->TransitionFromSuspendedToRunnable();
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -0800749 DecrementDisableMovingGC(self);
Hiroshi Yamauchi0c8c3032015-01-16 16:54:35 -0800750 } else {
751 // GCs can move objects, so don't allow this.
752 ScopedAssertNoThreadSuspension ants(self, "Visiting objects");
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -0800753 DCHECK(region_space_ == nullptr);
Hiroshi Yamauchi0c8c3032015-01-16 16:54:35 -0800754 VisitObjectsInternal(callback, arg);
755 }
756}
757
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -0800758// Visit objects when threads are already suspended.
759void Heap::VisitObjectsPaused(ObjectCallback callback, void* arg) {
760 Thread* self = Thread::Current();
761 Locks::mutator_lock_->AssertExclusiveHeld(self);
762 VisitObjectsInternalRegionSpace(callback, arg);
763 VisitObjectsInternal(callback, arg);
764}
765
766// Visit objects in the region spaces.
767void Heap::VisitObjectsInternalRegionSpace(ObjectCallback callback, void* arg) {
768 Thread* self = Thread::Current();
769 Locks::mutator_lock_->AssertExclusiveHeld(self);
770 if (region_space_ != nullptr) {
771 DCHECK(IsGcConcurrentAndMoving());
772 if (!zygote_creation_lock_.IsExclusiveHeld(self)) {
773 // Exclude the pre-zygote fork time where the semi-space collector
774 // calls VerifyHeapReferences() as part of the zygote compaction
775 // which then would call here without the moving GC disabled,
776 // which is fine.
777 DCHECK(IsMovingGCDisabled(self));
778 }
779 region_space_->Walk(callback, arg);
780 }
781}
782
783// Visit objects in the other spaces.
Hiroshi Yamauchi0c8c3032015-01-16 16:54:35 -0800784void Heap::VisitObjectsInternal(ObjectCallback callback, void* arg) {
Mathieu Chartier590fee92013-09-13 13:46:47 -0700785 if (bump_pointer_space_ != nullptr) {
Mathieu Chartier692fafd2013-11-29 17:24:40 -0800786 // Visit objects in bump pointer space.
787 bump_pointer_space_->Walk(callback, arg);
Mathieu Chartier590fee92013-09-13 13:46:47 -0700788 }
789 // TODO: Switch to standard begin and end to use ranged a based loop.
790 for (mirror::Object** it = allocation_stack_->Begin(), **end = allocation_stack_->End();
791 it < end; ++it) {
792 mirror::Object* obj = *it;
Mathieu Chartierebdf3f32014-02-13 10:23:27 -0800793 if (obj != nullptr && obj->GetClass() != nullptr) {
794 // Avoid the race condition caused by the object not yet being written into the allocation
Mathieu Chartiera5eae692014-12-17 17:56:03 -0800795 // stack or the class not yet being written in the object. Or, if
796 // kUseThreadLocalAllocationStack, there can be nulls on the allocation stack.
Mathieu Chartierebdf3f32014-02-13 10:23:27 -0800797 callback(obj, arg);
798 }
Mathieu Chartier590fee92013-09-13 13:46:47 -0700799 }
Hiroshi Yamauchi0c8c3032015-01-16 16:54:35 -0800800 {
801 ReaderMutexLock mu(Thread::Current(), *Locks::heap_bitmap_lock_);
802 GetLiveBitmap()->Walk(callback, arg);
803 }
Mathieu Chartier590fee92013-09-13 13:46:47 -0700804}
805
806void Heap::MarkAllocStackAsLive(accounting::ObjectStack* stack) {
Mathieu Chartier00b59152014-07-25 10:13:51 -0700807 space::ContinuousSpace* space1 = main_space_ != nullptr ? main_space_ : non_moving_space_;
808 space::ContinuousSpace* space2 = non_moving_space_;
Mathieu Chartiere6da9af2013-12-16 11:54:42 -0800809 // TODO: Generalize this to n bitmaps?
Mathieu Chartier00b59152014-07-25 10:13:51 -0700810 CHECK(space1 != nullptr);
811 CHECK(space2 != nullptr);
Mathieu Chartiere6da9af2013-12-16 11:54:42 -0800812 MarkAllocStack(space1->GetLiveBitmap(), space2->GetLiveBitmap(),
Mathieu Chartier2dbe6272014-09-16 10:43:23 -0700813 (large_object_space_ != nullptr ? large_object_space_->GetLiveBitmap() : nullptr),
814 stack);
Mathieu Chartier590fee92013-09-13 13:46:47 -0700815}
816
Mathieu Chartier02b6a782012-10-26 13:51:26 -0700817void Heap::DeleteThreadPool() {
Mathieu Chartier2775ee42013-08-20 17:43:47 -0700818 thread_pool_.reset(nullptr);
Mathieu Chartier02b6a782012-10-26 13:51:26 -0700819}
820
Mathieu Chartier1b54f9c2014-04-30 16:45:02 -0700821void Heap::AddSpace(space::Space* space) {
Zuo Wangf37a88b2014-07-10 04:26:41 -0700822 CHECK(space != nullptr);
Mathieu Chartier590fee92013-09-13 13:46:47 -0700823 WriterMutexLock mu(Thread::Current(), *Locks::heap_bitmap_lock_);
824 if (space->IsContinuousSpace()) {
825 DCHECK(!space->IsDiscontinuousSpace());
826 space::ContinuousSpace* continuous_space = space->AsContinuousSpace();
827 // Continuous spaces don't necessarily have bitmaps.
Mathieu Chartiera8e8f9c2014-04-09 14:51:05 -0700828 accounting::ContinuousSpaceBitmap* live_bitmap = continuous_space->GetLiveBitmap();
829 accounting::ContinuousSpaceBitmap* mark_bitmap = continuous_space->GetMarkBitmap();
Mathieu Chartier590fee92013-09-13 13:46:47 -0700830 if (live_bitmap != nullptr) {
Mathieu Chartier2796a162014-07-25 11:50:47 -0700831 CHECK(mark_bitmap != nullptr);
Mathieu Chartier590fee92013-09-13 13:46:47 -0700832 live_bitmap_->AddContinuousSpaceBitmap(live_bitmap);
833 mark_bitmap_->AddContinuousSpaceBitmap(mark_bitmap);
Mathieu Chartier357e9be2012-08-01 11:00:14 -0700834 }
Mathieu Chartier590fee92013-09-13 13:46:47 -0700835 continuous_spaces_.push_back(continuous_space);
Mathieu Chartier590fee92013-09-13 13:46:47 -0700836 // Ensure that spaces remain sorted in increasing order of start address.
837 std::sort(continuous_spaces_.begin(), continuous_spaces_.end(),
838 [](const space::ContinuousSpace* a, const space::ContinuousSpace* b) {
839 return a->Begin() < b->Begin();
840 });
Mathieu Chartier590fee92013-09-13 13:46:47 -0700841 } else {
Mathieu Chartier2796a162014-07-25 11:50:47 -0700842 CHECK(space->IsDiscontinuousSpace());
Mathieu Chartier590fee92013-09-13 13:46:47 -0700843 space::DiscontinuousSpace* discontinuous_space = space->AsDiscontinuousSpace();
Mathieu Chartierbbd695c2014-04-16 09:48:48 -0700844 live_bitmap_->AddLargeObjectBitmap(discontinuous_space->GetLiveBitmap());
845 mark_bitmap_->AddLargeObjectBitmap(discontinuous_space->GetMarkBitmap());
Mathieu Chartier590fee92013-09-13 13:46:47 -0700846 discontinuous_spaces_.push_back(discontinuous_space);
847 }
848 if (space->IsAllocSpace()) {
849 alloc_spaces_.push_back(space->AsAllocSpace());
Mathieu Chartier357e9be2012-08-01 11:00:14 -0700850 }
Elliott Hughesb3bd5f02012-03-08 21:05:27 -0800851}
852
Mathieu Chartier1b54f9c2014-04-30 16:45:02 -0700853void Heap::SetSpaceAsDefault(space::ContinuousSpace* continuous_space) {
854 WriterMutexLock mu(Thread::Current(), *Locks::heap_bitmap_lock_);
855 if (continuous_space->IsDlMallocSpace()) {
856 dlmalloc_space_ = continuous_space->AsDlMallocSpace();
857 } else if (continuous_space->IsRosAllocSpace()) {
858 rosalloc_space_ = continuous_space->AsRosAllocSpace();
859 }
860}
861
862void Heap::RemoveSpace(space::Space* space) {
Mathieu Chartiere6da9af2013-12-16 11:54:42 -0800863 DCHECK(space != nullptr);
864 WriterMutexLock mu(Thread::Current(), *Locks::heap_bitmap_lock_);
865 if (space->IsContinuousSpace()) {
866 DCHECK(!space->IsDiscontinuousSpace());
867 space::ContinuousSpace* continuous_space = space->AsContinuousSpace();
868 // Continuous spaces don't necessarily have bitmaps.
Mathieu Chartiera8e8f9c2014-04-09 14:51:05 -0700869 accounting::ContinuousSpaceBitmap* live_bitmap = continuous_space->GetLiveBitmap();
870 accounting::ContinuousSpaceBitmap* mark_bitmap = continuous_space->GetMarkBitmap();
Mathieu Chartiere6da9af2013-12-16 11:54:42 -0800871 if (live_bitmap != nullptr) {
872 DCHECK(mark_bitmap != nullptr);
873 live_bitmap_->RemoveContinuousSpaceBitmap(live_bitmap);
874 mark_bitmap_->RemoveContinuousSpaceBitmap(mark_bitmap);
875 }
876 auto it = std::find(continuous_spaces_.begin(), continuous_spaces_.end(), continuous_space);
877 DCHECK(it != continuous_spaces_.end());
878 continuous_spaces_.erase(it);
Mathieu Chartiere6da9af2013-12-16 11:54:42 -0800879 } else {
880 DCHECK(space->IsDiscontinuousSpace());
881 space::DiscontinuousSpace* discontinuous_space = space->AsDiscontinuousSpace();
Mathieu Chartierbbd695c2014-04-16 09:48:48 -0700882 live_bitmap_->RemoveLargeObjectBitmap(discontinuous_space->GetLiveBitmap());
883 mark_bitmap_->RemoveLargeObjectBitmap(discontinuous_space->GetMarkBitmap());
Mathieu Chartiere6da9af2013-12-16 11:54:42 -0800884 auto it = std::find(discontinuous_spaces_.begin(), discontinuous_spaces_.end(),
885 discontinuous_space);
886 DCHECK(it != discontinuous_spaces_.end());
887 discontinuous_spaces_.erase(it);
888 }
889 if (space->IsAllocSpace()) {
890 auto it = std::find(alloc_spaces_.begin(), alloc_spaces_.end(), space->AsAllocSpace());
891 DCHECK(it != alloc_spaces_.end());
892 alloc_spaces_.erase(it);
893 }
894}
895
Elliott Hughes8b788fe2013-04-17 15:57:01 -0700896void Heap::DumpGcPerformanceInfo(std::ostream& os) {
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700897 // Dump cumulative timings.
Elliott Hughes8b788fe2013-04-17 15:57:01 -0700898 os << "Dumping cumulative Gc timings\n";
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700899 uint64_t total_duration = 0;
Mathieu Chartier2b82db42012-11-14 17:29:05 -0800900 // Dump cumulative loggers for each GC type.
Mathieu Chartier2b82db42012-11-14 17:29:05 -0800901 uint64_t total_paused_time = 0;
Mathieu Chartier5a487192014-04-08 11:14:54 -0700902 for (auto& collector : garbage_collectors_) {
Mathieu Chartier104fa0c2014-08-07 14:26:27 -0700903 total_duration += collector->GetCumulativeTimings().GetTotalNs();
904 total_paused_time += collector->GetTotalPausedTimeNs();
905 collector->DumpPerformanceInfo(os);
Mathieu Chartier5a487192014-04-08 11:14:54 -0700906 collector->ResetMeasurements();
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700907 }
Ian Rogers3e5cf302014-05-20 16:40:37 -0700908 uint64_t allocation_time =
909 static_cast<uint64_t>(total_allocation_time_.LoadRelaxed()) * kTimeAdjust;
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700910 if (total_duration != 0) {
Brian Carlstrom2d888622013-07-18 17:02:00 -0700911 const double total_seconds = static_cast<double>(total_duration / 1000) / 1000000.0;
Elliott Hughes8b788fe2013-04-17 15:57:01 -0700912 os << "Total time spent in GC: " << PrettyDuration(total_duration) << "\n";
913 os << "Mean GC size throughput: "
Ian Rogers1d54e732013-05-02 21:10:01 -0700914 << PrettySize(GetBytesFreedEver() / total_seconds) << "/s\n";
Elliott Hughes8b788fe2013-04-17 15:57:01 -0700915 os << "Mean GC object throughput: "
Ian Rogers1d54e732013-05-02 21:10:01 -0700916 << (GetObjectsFreedEver() / total_seconds) << " objects/s\n";
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700917 }
Mathieu Chartierdd162fb2014-08-06 17:06:33 -0700918 uint64_t total_objects_allocated = GetObjectsAllocatedEver();
Mathieu Chartierc30a7252014-08-12 10:13:48 -0700919 os << "Total number of allocations " << total_objects_allocated << "\n";
Mathieu Chartierdd162fb2014-08-06 17:06:33 -0700920 uint64_t total_bytes_allocated = GetBytesAllocatedEver();
Elliott Hughes8b788fe2013-04-17 15:57:01 -0700921 os << "Total bytes allocated " << PrettySize(total_bytes_allocated) << "\n";
Mathieu Chartierc30a7252014-08-12 10:13:48 -0700922 os << "Free memory " << PrettySize(GetFreeMemory()) << "\n";
Mathieu Chartierdd162fb2014-08-06 17:06:33 -0700923 os << "Free memory until GC " << PrettySize(GetFreeMemoryUntilGC()) << "\n";
924 os << "Free memory until OOME " << PrettySize(GetFreeMemoryUntilOOME()) << "\n";
Mathieu Chartierc30a7252014-08-12 10:13:48 -0700925 os << "Total memory " << PrettySize(GetTotalMemory()) << "\n";
926 os << "Max memory " << PrettySize(GetMaxMemory()) << "\n";
Hiroshi Yamauchi50b29282013-07-30 13:58:37 -0700927 if (kMeasureAllocationTime) {
Elliott Hughes8b788fe2013-04-17 15:57:01 -0700928 os << "Total time spent allocating: " << PrettyDuration(allocation_time) << "\n";
929 os << "Mean allocation time: " << PrettyDuration(allocation_time / total_objects_allocated)
930 << "\n";
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700931 }
Mathieu Chartiere4cab172014-08-19 18:24:04 -0700932 if (HasZygoteSpace()) {
933 os << "Zygote space size " << PrettySize(zygote_space_->Size()) << "\n";
934 }
Elliott Hughes8b788fe2013-04-17 15:57:01 -0700935 os << "Total mutator paused time: " << PrettyDuration(total_paused_time) << "\n";
Mathieu Chartier70a596d2014-12-17 14:56:47 -0800936 os << "Total time waiting for GC to complete: " << PrettyDuration(total_wait_time_);
Mathieu Chartier73d1e172014-04-11 17:53:48 -0700937 BaseMutex::DumpAll(os);
Mathieu Chartier155dfe92012-10-09 14:24:49 -0700938}
939
Elliott Hughesb3bd5f02012-03-08 21:05:27 -0800940Heap::~Heap() {
Mathieu Chartier590fee92013-09-13 13:46:47 -0700941 VLOG(heap) << "Starting ~Heap()";
Mathieu Chartier590fee92013-09-13 13:46:47 -0700942 STLDeleteElements(&garbage_collectors_);
943 // If we don't reset then the mark stack complains in its destructor.
Mathieu Chartier357e9be2012-08-01 11:00:14 -0700944 allocation_stack_->Reset();
945 live_stack_->Reset();
Mathieu Chartier11409ae2013-09-23 11:49:36 -0700946 STLDeleteValues(&mod_union_tables_);
Mathieu Chartier0767c9a2014-03-26 12:53:19 -0700947 STLDeleteValues(&remembered_sets_);
Ian Rogers1d54e732013-05-02 21:10:01 -0700948 STLDeleteElements(&continuous_spaces_);
949 STLDeleteElements(&discontinuous_spaces_);
Ian Rogers00f7d0e2012-07-19 15:28:27 -0700950 delete gc_complete_lock_;
Mathieu Chartiera5eae692014-12-17 17:56:03 -0800951 delete pending_task_lock_;
Mathieu Chartier590fee92013-09-13 13:46:47 -0700952 VLOG(heap) << "Finished ~Heap()";
Carl Shapiro69759ea2011-07-21 18:13:35 -0700953}
954
Ian Rogers1d54e732013-05-02 21:10:01 -0700955space::ContinuousSpace* Heap::FindContinuousSpaceFromObject(const mirror::Object* obj,
956 bool fail_ok) const {
Mathieu Chartier02e25112013-08-14 16:14:24 -0700957 for (const auto& space : continuous_spaces_) {
958 if (space->Contains(obj)) {
959 return space;
Mathieu Chartierb062fdd2012-07-03 09:51:48 -0700960 }
961 }
Ian Rogers1d54e732013-05-02 21:10:01 -0700962 if (!fail_ok) {
963 LOG(FATAL) << "object " << reinterpret_cast<const void*>(obj) << " not inside any spaces!";
964 }
Mathieu Chartierb062fdd2012-07-03 09:51:48 -0700965 return NULL;
966}
967
Ian Rogers1d54e732013-05-02 21:10:01 -0700968space::DiscontinuousSpace* Heap::FindDiscontinuousSpaceFromObject(const mirror::Object* obj,
969 bool fail_ok) const {
Mathieu Chartier02e25112013-08-14 16:14:24 -0700970 for (const auto& space : discontinuous_spaces_) {
971 if (space->Contains(obj)) {
972 return space;
Ian Rogers1d54e732013-05-02 21:10:01 -0700973 }
974 }
975 if (!fail_ok) {
976 LOG(FATAL) << "object " << reinterpret_cast<const void*>(obj) << " not inside any spaces!";
977 }
978 return NULL;
979}
980
981space::Space* Heap::FindSpaceFromObject(const mirror::Object* obj, bool fail_ok) const {
982 space::Space* result = FindContinuousSpaceFromObject(obj, true);
983 if (result != NULL) {
984 return result;
985 }
Ian Rogers6a3c1fc2014-10-31 00:33:20 -0700986 return FindDiscontinuousSpaceFromObject(obj, fail_ok);
Ian Rogers1d54e732013-05-02 21:10:01 -0700987}
988
989space::ImageSpace* Heap::GetImageSpace() const {
Mathieu Chartier02e25112013-08-14 16:14:24 -0700990 for (const auto& space : continuous_spaces_) {
991 if (space->IsImageSpace()) {
992 return space->AsImageSpace();
Mathieu Chartierb062fdd2012-07-03 09:51:48 -0700993 }
994 }
995 return NULL;
996}
997
Hiroshi Yamauchi654dd482014-07-09 12:54:32 -0700998void Heap::ThrowOutOfMemoryError(Thread* self, size_t byte_count, AllocatorType allocator_type) {
Hiroshi Yamauchi3b4c1892013-09-12 21:33:12 -0700999 std::ostringstream oss;
Ian Rogersef7d42f2014-01-06 12:55:46 -08001000 size_t total_bytes_free = GetFreeMemory();
Hiroshi Yamauchi3b4c1892013-09-12 21:33:12 -07001001 oss << "Failed to allocate a " << byte_count << " byte allocation with " << total_bytes_free
Mathieu Chartierdd162fb2014-08-06 17:06:33 -07001002 << " free bytes and " << PrettySize(GetFreeMemoryUntilOOME()) << " until OOM";
Hiroshi Yamauchi3b4c1892013-09-12 21:33:12 -07001003 // If the allocation failed due to fragmentation, print out the largest continuous allocation.
Zuo Wangf37a88b2014-07-10 04:26:41 -07001004 if (total_bytes_free >= byte_count) {
Mathieu Chartierb363f662014-07-16 13:28:58 -07001005 space::AllocSpace* space = nullptr;
Hiroshi Yamauchi654dd482014-07-09 12:54:32 -07001006 if (allocator_type == kAllocatorTypeNonMoving) {
1007 space = non_moving_space_;
1008 } else if (allocator_type == kAllocatorTypeRosAlloc ||
1009 allocator_type == kAllocatorTypeDlMalloc) {
1010 space = main_space_;
Mathieu Chartierb363f662014-07-16 13:28:58 -07001011 } else if (allocator_type == kAllocatorTypeBumpPointer ||
1012 allocator_type == kAllocatorTypeTLAB) {
1013 space = bump_pointer_space_;
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -08001014 } else if (allocator_type == kAllocatorTypeRegion ||
1015 allocator_type == kAllocatorTypeRegionTLAB) {
1016 space = region_space_;
Hiroshi Yamauchi3b4c1892013-09-12 21:33:12 -07001017 }
Hiroshi Yamauchi654dd482014-07-09 12:54:32 -07001018 if (space != nullptr) {
1019 space->LogFragmentationAllocFailure(oss, byte_count);
1020 }
Mathieu Chartier155dfe92012-10-09 14:24:49 -07001021 }
Hiroshi Yamauchi3b4c1892013-09-12 21:33:12 -07001022 self->ThrowOutOfMemoryError(oss.str().c_str());
1023}
Mathieu Chartiere0f0cb32012-08-28 11:26:00 -07001024
Mathieu Chartiera5eae692014-12-17 17:56:03 -08001025void Heap::DoPendingCollectorTransition() {
1026 CollectorType desired_collector_type = desired_collector_type_;
Mathieu Chartierb2728552014-09-08 20:08:41 +00001027 // Launch homogeneous space compaction if it is desired.
1028 if (desired_collector_type == kCollectorTypeHomogeneousSpaceCompact) {
1029 if (!CareAboutPauseTimes()) {
1030 PerformHomogeneousSpaceCompact();
Mathieu Chartiera5eae692014-12-17 17:56:03 -08001031 } else {
1032 VLOG(gc) << "Homogeneous compaction ignored due to jank perceptible process state";
Mathieu Chartierb2728552014-09-08 20:08:41 +00001033 }
Mathieu Chartiera5eae692014-12-17 17:56:03 -08001034 } else {
1035 TransitionCollector(desired_collector_type);
Mathieu Chartierb2728552014-09-08 20:08:41 +00001036 }
Mathieu Chartiera5eae692014-12-17 17:56:03 -08001037}
1038
1039void Heap::Trim(Thread* self) {
Mathieu Chartier440e4ce2014-03-31 16:36:35 -07001040 if (!CareAboutPauseTimes()) {
Mathieu Chartiera5eae692014-12-17 17:56:03 -08001041 ATRACE_BEGIN("Deflating monitors");
Mathieu Chartier440e4ce2014-03-31 16:36:35 -07001042 // Deflate the monitors, this can cause a pause but shouldn't matter since we don't care
1043 // about pauses.
1044 Runtime* runtime = Runtime::Current();
1045 runtime->GetThreadList()->SuspendAll();
Mathieu Chartier48ab6872014-06-24 11:21:59 -07001046 uint64_t start_time = NanoTime();
1047 size_t count = runtime->GetMonitorList()->DeflateMonitors();
1048 VLOG(heap) << "Deflating " << count << " monitors took "
1049 << PrettyDuration(NanoTime() - start_time);
Mathieu Chartier440e4ce2014-03-31 16:36:35 -07001050 runtime->GetThreadList()->ResumeAll();
Mathieu Chartiera5eae692014-12-17 17:56:03 -08001051 ATRACE_END();
Mathieu Chartier440e4ce2014-03-31 16:36:35 -07001052 }
Mathieu Chartiera5eae692014-12-17 17:56:03 -08001053 TrimIndirectReferenceTables(self);
1054 TrimSpaces(self);
Mathieu Chartiera5f9de02014-02-28 16:48:42 -08001055}
1056
Mathieu Chartier91c2f0c2014-11-26 11:21:15 -08001057class TrimIndirectReferenceTableClosure : public Closure {
1058 public:
1059 explicit TrimIndirectReferenceTableClosure(Barrier* barrier) : barrier_(barrier) {
1060 }
1061 virtual void Run(Thread* thread) OVERRIDE NO_THREAD_SAFETY_ANALYSIS {
1062 ATRACE_BEGIN("Trimming reference table");
1063 thread->GetJniEnv()->locals.Trim();
1064 ATRACE_END();
1065 barrier_->Pass(Thread::Current());
1066 }
1067
1068 private:
1069 Barrier* const barrier_;
1070};
1071
Mathieu Chartiera5eae692014-12-17 17:56:03 -08001072void Heap::TrimIndirectReferenceTables(Thread* self) {
1073 ScopedObjectAccess soa(self);
1074 ATRACE_BEGIN(__FUNCTION__);
1075 JavaVMExt* vm = soa.Vm();
1076 // Trim globals indirect reference table.
1077 vm->TrimGlobals();
1078 // Trim locals indirect reference tables.
1079 Barrier barrier(0);
1080 TrimIndirectReferenceTableClosure closure(&barrier);
1081 ScopedThreadStateChange tsc(self, kWaitingForCheckPointsToRun);
1082 size_t barrier_count = Runtime::Current()->GetThreadList()->RunCheckpoint(&closure);
1083 barrier.Increment(self, barrier_count);
1084 ATRACE_END();
1085}
Mathieu Chartier91c2f0c2014-11-26 11:21:15 -08001086
Mathieu Chartiera5eae692014-12-17 17:56:03 -08001087void Heap::TrimSpaces(Thread* self) {
Mathieu Chartiera5f9de02014-02-28 16:48:42 -08001088 {
Mathieu Chartiercaa82d62014-02-02 16:51:17 -08001089 // Need to do this before acquiring the locks since we don't want to get suspended while
1090 // holding any locks.
1091 ScopedThreadStateChange tsc(self, kWaitingForGcToComplete);
Mathieu Chartierd5a89ee2014-01-31 09:55:13 -08001092 // Pretend we are doing a GC to prevent background compaction from deleting the space we are
1093 // trimming.
1094 MutexLock mu(self, *gc_complete_lock_);
1095 // Ensure there is only one GC at a time.
Mathieu Chartier89a201e2014-05-02 10:27:26 -07001096 WaitForGcToCompleteLocked(kGcCauseTrim, self);
Mathieu Chartierd5a89ee2014-01-31 09:55:13 -08001097 collector_type_running_ = kCollectorTypeHeapTrim;
1098 }
Mathieu Chartiera5eae692014-12-17 17:56:03 -08001099 ATRACE_BEGIN(__FUNCTION__);
1100 const uint64_t start_ns = NanoTime();
Mathieu Chartier590fee92013-09-13 13:46:47 -07001101 // Trim the managed spaces.
1102 uint64_t total_alloc_space_allocated = 0;
1103 uint64_t total_alloc_space_size = 0;
1104 uint64_t managed_reclaimed = 0;
1105 for (const auto& space : continuous_spaces_) {
Mathieu Chartiera1602f22014-01-13 17:19:19 -08001106 if (space->IsMallocSpace()) {
Mathieu Chartiera5b5c552014-06-24 14:48:59 -07001107 gc::space::MallocSpace* malloc_space = space->AsMallocSpace();
1108 if (malloc_space->IsRosAllocSpace() || !CareAboutPauseTimes()) {
1109 // Don't trim dlmalloc spaces if we care about pauses since this can hold the space lock
1110 // for a long period of time.
1111 managed_reclaimed += malloc_space->Trim();
1112 }
1113 total_alloc_space_size += malloc_space->Size();
Mathieu Chartier590fee92013-09-13 13:46:47 -07001114 }
1115 }
Mathieu Chartier2dbe6272014-09-16 10:43:23 -07001116 total_alloc_space_allocated = GetBytesAllocated();
1117 if (large_object_space_ != nullptr) {
1118 total_alloc_space_allocated -= large_object_space_->GetBytesAllocated();
1119 }
Mathieu Chartier31f44142014-04-08 14:40:03 -07001120 if (bump_pointer_space_ != nullptr) {
1121 total_alloc_space_allocated -= bump_pointer_space_->Size();
1122 }
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -08001123 if (region_space_ != nullptr) {
1124 total_alloc_space_allocated -= region_space_->GetBytesAllocated();
1125 }
Mathieu Chartier590fee92013-09-13 13:46:47 -07001126 const float managed_utilization = static_cast<float>(total_alloc_space_allocated) /
1127 static_cast<float>(total_alloc_space_size);
1128 uint64_t gc_heap_end_ns = NanoTime();
Mathieu Chartierd5a89ee2014-01-31 09:55:13 -08001129 // We never move things in the native heap, so we can finish the GC at this point.
1130 FinishGC(self, collector::kGcTypeNone);
Christopher Ferrisc4ddc042014-05-13 14:47:50 -07001131 size_t native_reclaimed = 0;
Ian Rogers872dd822014-10-30 11:19:14 -07001132
1133#ifdef HAVE_ANDROID_OS
Mathieu Chartiera5b5c552014-06-24 14:48:59 -07001134 // Only trim the native heap if we don't care about pauses.
1135 if (!CareAboutPauseTimes()) {
Christopher Ferrisc4ddc042014-05-13 14:47:50 -07001136#if defined(USE_DLMALLOC)
Mathieu Chartiera5b5c552014-06-24 14:48:59 -07001137 // Trim the native heap.
1138 dlmalloc_trim(0);
1139 dlmalloc_inspect_all(DlmallocMadviseCallback, &native_reclaimed);
Christopher Ferrisc4ddc042014-05-13 14:47:50 -07001140#elif defined(USE_JEMALLOC)
Mathieu Chartiera5b5c552014-06-24 14:48:59 -07001141 // Jemalloc does it's own internal trimming.
Christopher Ferrisc4ddc042014-05-13 14:47:50 -07001142#else
Mathieu Chartiera5b5c552014-06-24 14:48:59 -07001143 UNIMPLEMENTED(WARNING) << "Add trimming support";
Christopher Ferrisc4ddc042014-05-13 14:47:50 -07001144#endif
Mathieu Chartiera5b5c552014-06-24 14:48:59 -07001145 }
Ian Rogers872dd822014-10-30 11:19:14 -07001146#endif // HAVE_ANDROID_OS
Mathieu Chartier590fee92013-09-13 13:46:47 -07001147 uint64_t end_ns = NanoTime();
1148 VLOG(heap) << "Heap trim of managed (duration=" << PrettyDuration(gc_heap_end_ns - start_ns)
1149 << ", advised=" << PrettySize(managed_reclaimed) << ") and native (duration="
1150 << PrettyDuration(end_ns - gc_heap_end_ns) << ", advised=" << PrettySize(native_reclaimed)
1151 << ") heaps. Managed heap utilization of " << static_cast<int>(100 * managed_utilization)
1152 << "%.";
Mathieu Chartiera5eae692014-12-17 17:56:03 -08001153 ATRACE_END();
Mathieu Chartier590fee92013-09-13 13:46:47 -07001154}
1155
1156bool Heap::IsValidObjectAddress(const mirror::Object* obj) const {
1157 // Note: we deliberately don't take the lock here, and mustn't test anything that would require
1158 // taking the lock.
1159 if (obj == nullptr) {
Elliott Hughes88c5c352012-03-15 18:49:48 -07001160 return true;
1161 }
Mathieu Chartier15d34022014-02-26 17:16:38 -08001162 return IsAligned<kObjectAlignment>(obj) && FindSpaceFromObject(obj, true) != nullptr;
Mathieu Chartier590fee92013-09-13 13:46:47 -07001163}
1164
Mathieu Chartierd68ac702014-02-11 14:50:51 -08001165bool Heap::IsNonDiscontinuousSpaceHeapAddress(const mirror::Object* obj) const {
1166 return FindContinuousSpaceFromObject(obj, true) != nullptr;
1167}
1168
Mathieu Chartier15d34022014-02-26 17:16:38 -08001169bool Heap::IsValidContinuousSpaceObjectAddress(const mirror::Object* obj) const {
1170 if (obj == nullptr || !IsAligned<kObjectAlignment>(obj)) {
1171 return false;
1172 }
1173 for (const auto& space : continuous_spaces_) {
1174 if (space->HasAddress(obj)) {
1175 return true;
1176 }
1177 }
1178 return false;
Elliott Hughesa2501992011-08-26 19:39:54 -07001179}
1180
Ian Rogersef7d42f2014-01-06 12:55:46 -08001181bool Heap::IsLiveObjectLocked(mirror::Object* obj, bool search_allocation_stack,
Mathieu Chartier0f72e412013-09-06 16:40:01 -07001182 bool search_live_stack, bool sorted) {
Mathieu Chartier938a03b2014-01-16 15:10:31 -08001183 if (UNLIKELY(!IsAligned<kObjectAlignment>(obj))) {
1184 return false;
1185 }
1186 if (bump_pointer_space_ != nullptr && bump_pointer_space_->HasAddress(obj)) {
Mathieu Chartier4e305412014-02-19 10:54:44 -08001187 mirror::Class* klass = obj->GetClass<kVerifyNone>();
Mathieu Chartier938a03b2014-01-16 15:10:31 -08001188 if (obj == klass) {
Mathieu Chartier9be9a7a2014-01-24 14:07:33 -08001189 // This case happens for java.lang.Class.
Mathieu Chartier938a03b2014-01-16 15:10:31 -08001190 return true;
1191 }
1192 return VerifyClassClass(klass) && IsLiveObjectLocked(klass);
1193 } else if (temp_space_ != nullptr && temp_space_->HasAddress(obj)) {
Mathieu Chartier4e305412014-02-19 10:54:44 -08001194 // If we are in the allocated region of the temp space, then we are probably live (e.g. during
1195 // a GC). When a GC isn't running End() - Begin() is 0 which means no objects are contained.
1196 return temp_space_->Contains(obj);
Ian Rogers1d54e732013-05-02 21:10:01 -07001197 }
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -08001198 if (region_space_ != nullptr && region_space_->HasAddress(obj)) {
1199 return true;
1200 }
Mathieu Chartierf082d3c2013-07-29 17:04:07 -07001201 space::ContinuousSpace* c_space = FindContinuousSpaceFromObject(obj, true);
Mathieu Chartierbbd695c2014-04-16 09:48:48 -07001202 space::DiscontinuousSpace* d_space = nullptr;
Mathieu Chartier938a03b2014-01-16 15:10:31 -08001203 if (c_space != nullptr) {
Mathieu Chartierf082d3c2013-07-29 17:04:07 -07001204 if (c_space->GetLiveBitmap()->Test(obj)) {
Ian Rogers1d54e732013-05-02 21:10:01 -07001205 return true;
1206 }
1207 } else {
Mathieu Chartierf082d3c2013-07-29 17:04:07 -07001208 d_space = FindDiscontinuousSpaceFromObject(obj, true);
Mathieu Chartier938a03b2014-01-16 15:10:31 -08001209 if (d_space != nullptr) {
Mathieu Chartierbbd695c2014-04-16 09:48:48 -07001210 if (d_space->GetLiveBitmap()->Test(obj)) {
Ian Rogers1d54e732013-05-02 21:10:01 -07001211 return true;
1212 }
1213 }
1214 }
Mathieu Chartierf082d3c2013-07-29 17:04:07 -07001215 // This is covering the allocation/live stack swapping that is done without mutators suspended.
Mathieu Chartier0f72e412013-09-06 16:40:01 -07001216 for (size_t i = 0; i < (sorted ? 1 : 5); ++i) {
1217 if (i > 0) {
1218 NanoSleep(MsToNs(10));
Ian Rogers1d54e732013-05-02 21:10:01 -07001219 }
Mathieu Chartier0f72e412013-09-06 16:40:01 -07001220 if (search_allocation_stack) {
1221 if (sorted) {
Mathieu Chartier407f7022014-02-18 14:37:05 -08001222 if (allocation_stack_->ContainsSorted(obj)) {
Mathieu Chartier0f72e412013-09-06 16:40:01 -07001223 return true;
1224 }
Mathieu Chartier407f7022014-02-18 14:37:05 -08001225 } else if (allocation_stack_->Contains(obj)) {
Mathieu Chartier0f72e412013-09-06 16:40:01 -07001226 return true;
1227 }
1228 }
1229
1230 if (search_live_stack) {
1231 if (sorted) {
Mathieu Chartier407f7022014-02-18 14:37:05 -08001232 if (live_stack_->ContainsSorted(obj)) {
Mathieu Chartier0f72e412013-09-06 16:40:01 -07001233 return true;
1234 }
Mathieu Chartier407f7022014-02-18 14:37:05 -08001235 } else if (live_stack_->Contains(obj)) {
Mathieu Chartier0f72e412013-09-06 16:40:01 -07001236 return true;
1237 }
1238 }
Ian Rogers1d54e732013-05-02 21:10:01 -07001239 }
Mathieu Chartierf082d3c2013-07-29 17:04:07 -07001240 // We need to check the bitmaps again since there is a race where we mark something as live and
1241 // then clear the stack containing it.
Mathieu Chartier938a03b2014-01-16 15:10:31 -08001242 if (c_space != nullptr) {
Mathieu Chartierf082d3c2013-07-29 17:04:07 -07001243 if (c_space->GetLiveBitmap()->Test(obj)) {
1244 return true;
1245 }
1246 } else {
1247 d_space = FindDiscontinuousSpaceFromObject(obj, true);
Mathieu Chartierbbd695c2014-04-16 09:48:48 -07001248 if (d_space != nullptr && d_space->GetLiveBitmap()->Test(obj)) {
Mathieu Chartierf082d3c2013-07-29 17:04:07 -07001249 return true;
1250 }
1251 }
Ian Rogers1d54e732013-05-02 21:10:01 -07001252 return false;
Elliott Hughes6a5bd492011-10-28 14:33:57 -07001253}
1254
Mathieu Chartier4c13a3f2014-07-14 14:57:16 -07001255std::string Heap::DumpSpaces() const {
1256 std::ostringstream oss;
1257 DumpSpaces(oss);
1258 return oss.str();
1259}
1260
1261void Heap::DumpSpaces(std::ostream& stream) const {
Mathieu Chartier02e25112013-08-14 16:14:24 -07001262 for (const auto& space : continuous_spaces_) {
Mathieu Chartiera8e8f9c2014-04-09 14:51:05 -07001263 accounting::ContinuousSpaceBitmap* live_bitmap = space->GetLiveBitmap();
1264 accounting::ContinuousSpaceBitmap* mark_bitmap = space->GetMarkBitmap();
Mathieu Chartier590fee92013-09-13 13:46:47 -07001265 stream << space << " " << *space << "\n";
1266 if (live_bitmap != nullptr) {
1267 stream << live_bitmap << " " << *live_bitmap << "\n";
1268 }
1269 if (mark_bitmap != nullptr) {
1270 stream << mark_bitmap << " " << *mark_bitmap << "\n";
1271 }
Mathieu Chartiercc236d72012-07-20 10:29:05 -07001272 }
Mathieu Chartier02e25112013-08-14 16:14:24 -07001273 for (const auto& space : discontinuous_spaces_) {
Mathieu Chartier590fee92013-09-13 13:46:47 -07001274 stream << space << " " << *space << "\n";
Mathieu Chartier128c52c2012-10-16 14:12:41 -07001275 }
Mathieu Chartiercc236d72012-07-20 10:29:05 -07001276}
1277
Ian Rogersef7d42f2014-01-06 12:55:46 -08001278void Heap::VerifyObjectBody(mirror::Object* obj) {
Stephen Hines22c6a812014-07-16 11:03:43 -07001279 if (verify_object_mode_ == kVerifyObjectModeDisabled) {
1280 return;
1281 }
1282
Mathieu Chartier0f72e412013-09-06 16:40:01 -07001283 // Ignore early dawn of the universe verifications.
Ian Rogers3e5cf302014-05-20 16:40:37 -07001284 if (UNLIKELY(static_cast<size_t>(num_bytes_allocated_.LoadRelaxed()) < 10 * KB)) {
Ian Rogers62d6c772013-02-27 08:32:07 -08001285 return;
1286 }
Mathieu Chartier4e305412014-02-19 10:54:44 -08001287 CHECK(IsAligned<kObjectAlignment>(obj)) << "Object isn't aligned: " << obj;
Ian Rogersb0fa5dc2014-04-28 16:47:08 -07001288 mirror::Class* c = obj->GetFieldObject<mirror::Class, kVerifyNone>(mirror::Object::ClassOffset());
Mathieu Chartier4e305412014-02-19 10:54:44 -08001289 CHECK(c != nullptr) << "Null class in object " << obj;
1290 CHECK(IsAligned<kObjectAlignment>(c)) << "Class " << c << " not aligned in object " << obj;
Mathieu Chartier938a03b2014-01-16 15:10:31 -08001291 CHECK(VerifyClassClass(c));
Mathieu Chartier0325e622012-09-05 14:22:51 -07001292
Mathieu Chartier4e305412014-02-19 10:54:44 -08001293 if (verify_object_mode_ > kVerifyObjectModeFast) {
1294 // Note: the bitmap tests below are racy since we don't hold the heap bitmap lock.
Mathieu Chartier4c13a3f2014-07-14 14:57:16 -07001295 CHECK(IsLiveObjectLocked(obj)) << "Object is dead " << obj << "\n" << DumpSpaces();
Mathieu Chartierdcf8d722012-08-02 14:55:54 -07001296 }
Ian Rogers0cfe1fb2011-08-26 03:29:44 -07001297}
1298
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001299void Heap::VerificationCallback(mirror::Object* obj, void* arg) {
Mathieu Chartier357e9be2012-08-01 11:00:14 -07001300 reinterpret_cast<Heap*>(arg)->VerifyObjectBody(obj);
Ian Rogers0cfe1fb2011-08-26 03:29:44 -07001301}
1302
1303void Heap::VerifyHeap() {
Ian Rogers50b35e22012-10-04 10:09:15 -07001304 ReaderMutexLock mu(Thread::Current(), *Locks::heap_bitmap_lock_);
Mathieu Chartierb062fdd2012-07-03 09:51:48 -07001305 GetLiveBitmap()->Walk(Heap::VerificationCallback, this);
Ian Rogers0cfe1fb2011-08-26 03:29:44 -07001306}
1307
Mathieu Chartiere76e70f2014-05-02 16:35:37 -07001308void Heap::RecordFree(uint64_t freed_objects, int64_t freed_bytes) {
Mathieu Chartier601276a2014-03-20 15:12:30 -07001309 // Use signed comparison since freed bytes can be negative when background compaction foreground
1310 // transitions occurs. This is caused by the moving objects from a bump pointer space to a
1311 // free list backed space typically increasing memory footprint due to padding and binning.
Ian Rogers3e5cf302014-05-20 16:40:37 -07001312 DCHECK_LE(freed_bytes, static_cast<int64_t>(num_bytes_allocated_.LoadRelaxed()));
Mathieu Chartiere76e70f2014-05-02 16:35:37 -07001313 // Note: This relies on 2s complement for handling negative freed_bytes.
Ian Rogers3e5cf302014-05-20 16:40:37 -07001314 num_bytes_allocated_.FetchAndSubSequentiallyConsistent(static_cast<ssize_t>(freed_bytes));
Elliott Hughes9d5ccec2011-09-19 13:19:50 -07001315 if (Runtime::Current()->HasStatsEnabled()) {
Elliott Hughes9d5ccec2011-09-19 13:19:50 -07001316 RuntimeStats* thread_stats = Thread::Current()->GetStats();
Mathieu Chartier357e9be2012-08-01 11:00:14 -07001317 thread_stats->freed_objects += freed_objects;
Elliott Hughes307f75d2011-10-12 18:04:40 -07001318 thread_stats->freed_bytes += freed_bytes;
Mathieu Chartier2fde5332012-09-14 14:51:54 -07001319 // TODO: Do this concurrently.
1320 RuntimeStats* global_stats = Runtime::Current()->GetStats();
1321 global_stats->freed_objects += freed_objects;
1322 global_stats->freed_bytes += freed_bytes;
Elliott Hughes9d5ccec2011-09-19 13:19:50 -07001323 }
Carl Shapiro58551df2011-07-24 03:09:51 -07001324}
1325
Zuo Wangf37a88b2014-07-10 04:26:41 -07001326space::RosAllocSpace* Heap::GetRosAllocSpace(gc::allocator::RosAlloc* rosalloc) const {
1327 for (const auto& space : continuous_spaces_) {
1328 if (space->AsContinuousSpace()->IsRosAllocSpace()) {
1329 if (space->AsContinuousSpace()->AsRosAllocSpace()->GetRosAlloc() == rosalloc) {
1330 return space->AsContinuousSpace()->AsRosAllocSpace();
1331 }
1332 }
1333 }
1334 return nullptr;
1335}
1336
Mathieu Chartiercbb2d202013-11-14 17:45:16 -08001337mirror::Object* Heap::AllocateInternalWithGc(Thread* self, AllocatorType allocator,
Mathieu Chartierc528dba2013-11-26 12:00:11 -08001338 size_t alloc_size, size_t* bytes_allocated,
Ian Rogers6fac4472014-02-25 17:01:10 -08001339 size_t* usable_size,
Mathieu Chartierc528dba2013-11-26 12:00:11 -08001340 mirror::Class** klass) {
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08001341 bool was_default_allocator = allocator == GetCurrentAllocator();
Mathieu Chartierf4f38432014-09-03 11:21:08 -07001342 // Make sure there is no pending exception since we may need to throw an OOME.
1343 self->AssertNoPendingException();
Mathieu Chartierc528dba2013-11-26 12:00:11 -08001344 DCHECK(klass != nullptr);
Mathieu Chartiereb8167a2014-05-07 15:43:14 -07001345 StackHandleScope<1> hs(self);
1346 HandleWrapper<mirror::Class> h(hs.NewHandleWrapper(klass));
1347 klass = nullptr; // Invalidate for safety.
Mathieu Chartier866fb2a2012-09-10 10:47:49 -07001348 // The allocation failed. If the GC is running, block until it completes, and then retry the
1349 // allocation.
Mathieu Chartier89a201e2014-05-02 10:27:26 -07001350 collector::GcType last_gc = WaitForGcToComplete(kGcCauseForAlloc, self);
Ian Rogers1d54e732013-05-02 21:10:01 -07001351 if (last_gc != collector::kGcTypeNone) {
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08001352 // If we were the default allocator but the allocator changed while we were suspended,
1353 // abort the allocation.
1354 if (was_default_allocator && allocator != GetCurrentAllocator()) {
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08001355 return nullptr;
1356 }
Mathieu Chartier866fb2a2012-09-10 10:47:49 -07001357 // A GC was in progress and we blocked, retry allocation now that memory has been freed.
Mathieu Chartiereb8167a2014-05-07 15:43:14 -07001358 mirror::Object* ptr = TryToAllocate<true, false>(self, allocator, alloc_size, bytes_allocated,
1359 usable_size);
1360 if (ptr != nullptr) {
1361 return ptr;
1362 }
Carl Shapiro69759ea2011-07-21 18:13:35 -07001363 }
1364
Mathieu Chartier5ae2c932014-03-28 16:22:20 -07001365 collector::GcType tried_type = next_gc_type_;
Mathieu Chartiereb8167a2014-05-07 15:43:14 -07001366 const bool gc_ran =
1367 CollectGarbageInternal(tried_type, kGcCauseForAlloc, false) != collector::kGcTypeNone;
1368 if (was_default_allocator && allocator != GetCurrentAllocator()) {
1369 return nullptr;
1370 }
1371 if (gc_ran) {
1372 mirror::Object* ptr = TryToAllocate<true, false>(self, allocator, alloc_size, bytes_allocated,
1373 usable_size);
1374 if (ptr != nullptr) {
1375 return ptr;
Mathieu Chartier5ae2c932014-03-28 16:22:20 -07001376 }
1377 }
1378
Mathieu Chartier866fb2a2012-09-10 10:47:49 -07001379 // Loop through our different Gc types and try to Gc until we get enough free memory.
Mathieu Chartiercbb2d202013-11-14 17:45:16 -08001380 for (collector::GcType gc_type : gc_plan_) {
Mathieu Chartier5ae2c932014-03-28 16:22:20 -07001381 if (gc_type == tried_type) {
1382 continue;
1383 }
Mathieu Chartiercbb2d202013-11-14 17:45:16 -08001384 // Attempt to run the collector, if we succeed, re-try the allocation.
Andreas Gampe277ccbd2014-11-03 21:36:10 -08001385 const bool plan_gc_ran =
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08001386 CollectGarbageInternal(gc_type, kGcCauseForAlloc, false) != collector::kGcTypeNone;
1387 if (was_default_allocator && allocator != GetCurrentAllocator()) {
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08001388 return nullptr;
1389 }
Andreas Gampe277ccbd2014-11-03 21:36:10 -08001390 if (plan_gc_ran) {
Mathieu Chartier866fb2a2012-09-10 10:47:49 -07001391 // Did we free sufficient memory for the allocation to succeed?
Mathieu Chartiereb8167a2014-05-07 15:43:14 -07001392 mirror::Object* ptr = TryToAllocate<true, false>(self, allocator, alloc_size, bytes_allocated,
1393 usable_size);
1394 if (ptr != nullptr) {
1395 return ptr;
1396 }
Mathieu Chartier866fb2a2012-09-10 10:47:49 -07001397 }
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001398 }
Ian Rogers00f7d0e2012-07-19 15:28:27 -07001399 // Allocations have failed after GCs; this is an exceptional state.
Mathieu Chartiereb8167a2014-05-07 15:43:14 -07001400 // Try harder, growing the heap if necessary.
1401 mirror::Object* ptr = TryToAllocate<true, true>(self, allocator, alloc_size, bytes_allocated,
1402 usable_size);
1403 if (ptr != nullptr) {
1404 return ptr;
Carl Shapiro69759ea2011-07-21 18:13:35 -07001405 }
Mathieu Chartiereb8167a2014-05-07 15:43:14 -07001406 // Most allocations should have succeeded by now, so the heap is really full, really fragmented,
1407 // or the requested size is really big. Do another GC, collecting SoftReferences this time. The
1408 // VM spec requires that all SoftReferences have been collected and cleared before throwing
1409 // OOME.
1410 VLOG(gc) << "Forcing collection of SoftReferences for " << PrettySize(alloc_size)
1411 << " allocation";
1412 // TODO: Run finalization, but this may cause more allocations to occur.
1413 // We don't need a WaitForGcToComplete here either.
1414 DCHECK(!gc_plan_.empty());
1415 CollectGarbageInternal(gc_plan_.back(), kGcCauseForAlloc, true);
1416 if (was_default_allocator && allocator != GetCurrentAllocator()) {
1417 return nullptr;
Mathieu Chartiercbb2d202013-11-14 17:45:16 -08001418 }
Mathieu Chartiereb8167a2014-05-07 15:43:14 -07001419 ptr = TryToAllocate<true, true>(self, allocator, alloc_size, bytes_allocated, usable_size);
Mathieu Chartier6a7824d2014-08-22 14:53:04 -07001420 if (ptr == nullptr) {
Zuo Wangf37a88b2014-07-10 04:26:41 -07001421 const uint64_t current_time = NanoTime();
Mathieu Chartier6a7824d2014-08-22 14:53:04 -07001422 switch (allocator) {
1423 case kAllocatorTypeRosAlloc:
1424 // Fall-through.
1425 case kAllocatorTypeDlMalloc: {
1426 if (use_homogeneous_space_compaction_for_oom_ &&
1427 current_time - last_time_homogeneous_space_compaction_by_oom_ >
1428 min_interval_homogeneous_space_compaction_by_oom_) {
1429 last_time_homogeneous_space_compaction_by_oom_ = current_time;
1430 HomogeneousSpaceCompactResult result = PerformHomogeneousSpaceCompact();
1431 switch (result) {
1432 case HomogeneousSpaceCompactResult::kSuccess:
1433 // If the allocation succeeded, we delayed an oom.
1434 ptr = TryToAllocate<true, true>(self, allocator, alloc_size, bytes_allocated,
1435 usable_size);
1436 if (ptr != nullptr) {
1437 count_delayed_oom_++;
1438 }
1439 break;
1440 case HomogeneousSpaceCompactResult::kErrorReject:
1441 // Reject due to disabled moving GC.
1442 break;
1443 case HomogeneousSpaceCompactResult::kErrorVMShuttingDown:
1444 // Throw OOM by default.
1445 break;
1446 default: {
Ian Rogers2c4257b2014-10-24 14:20:06 -07001447 UNIMPLEMENTED(FATAL) << "homogeneous space compaction result: "
1448 << static_cast<size_t>(result);
1449 UNREACHABLE();
Mathieu Chartier6a7824d2014-08-22 14:53:04 -07001450 }
Zuo Wangf37a88b2014-07-10 04:26:41 -07001451 }
Mathieu Chartier6a7824d2014-08-22 14:53:04 -07001452 // Always print that we ran homogeneous space compation since this can cause jank.
1453 VLOG(heap) << "Ran heap homogeneous space compaction, "
1454 << " requested defragmentation "
1455 << count_requested_homogeneous_space_compaction_.LoadSequentiallyConsistent()
1456 << " performed defragmentation "
1457 << count_performed_homogeneous_space_compaction_.LoadSequentiallyConsistent()
1458 << " ignored homogeneous space compaction "
1459 << count_ignored_homogeneous_space_compaction_.LoadSequentiallyConsistent()
1460 << " delayed count = "
1461 << count_delayed_oom_.LoadSequentiallyConsistent();
Zuo Wangf37a88b2014-07-10 04:26:41 -07001462 }
Mathieu Chartier6a7824d2014-08-22 14:53:04 -07001463 break;
Zuo Wangf37a88b2014-07-10 04:26:41 -07001464 }
Mathieu Chartier6a7824d2014-08-22 14:53:04 -07001465 case kAllocatorTypeNonMoving: {
1466 // Try to transition the heap if the allocation failure was due to the space being full.
1467 if (!IsOutOfMemoryOnAllocation<false>(allocator, alloc_size)) {
1468 // If we aren't out of memory then the OOM was probably from the non moving space being
1469 // full. Attempt to disable compaction and turn the main space into a non moving space.
1470 DisableMovingGc();
1471 // If we are still a moving GC then something must have caused the transition to fail.
1472 if (IsMovingGc(collector_type_)) {
1473 MutexLock mu(self, *gc_complete_lock_);
1474 // If we couldn't disable moving GC, just throw OOME and return null.
1475 LOG(WARNING) << "Couldn't disable moving GC with disable GC count "
1476 << disable_moving_gc_count_;
1477 } else {
1478 LOG(WARNING) << "Disabled moving GC due to the non moving space being full";
1479 ptr = TryToAllocate<true, true>(self, allocator, alloc_size, bytes_allocated,
1480 usable_size);
1481 }
1482 }
1483 break;
1484 }
1485 default: {
1486 // Do nothing for others allocators.
1487 }
Zuo Wangf37a88b2014-07-10 04:26:41 -07001488 }
1489 }
1490 // If the allocation hasn't succeeded by this point, throw an OOM error.
Mathieu Chartiereb8167a2014-05-07 15:43:14 -07001491 if (ptr == nullptr) {
Hiroshi Yamauchi654dd482014-07-09 12:54:32 -07001492 ThrowOutOfMemoryError(self, alloc_size, allocator);
Mathieu Chartiereb8167a2014-05-07 15:43:14 -07001493 }
Mathieu Chartiercbb2d202013-11-14 17:45:16 -08001494 return ptr;
Carl Shapiro69759ea2011-07-21 18:13:35 -07001495}
1496
Mathieu Chartier155dfe92012-10-09 14:24:49 -07001497void Heap::SetTargetHeapUtilization(float target) {
1498 DCHECK_GT(target, 0.0f); // asserted in Java code
1499 DCHECK_LT(target, 1.0f);
1500 target_utilization_ = target;
1501}
1502
Ian Rogers1d54e732013-05-02 21:10:01 -07001503size_t Heap::GetObjectsAllocated() const {
1504 size_t total = 0;
Mathieu Chartier590fee92013-09-13 13:46:47 -07001505 for (space::AllocSpace* space : alloc_spaces_) {
1506 total += space->GetObjectsAllocated();
Ian Rogers1d54e732013-05-02 21:10:01 -07001507 }
Mathieu Chartier155dfe92012-10-09 14:24:49 -07001508 return total;
1509}
1510
Mathieu Chartierdd162fb2014-08-06 17:06:33 -07001511uint64_t Heap::GetObjectsAllocatedEver() const {
Mathieu Chartier692fafd2013-11-29 17:24:40 -08001512 return GetObjectsFreedEver() + GetObjectsAllocated();
Ian Rogers1d54e732013-05-02 21:10:01 -07001513}
1514
Mathieu Chartierdd162fb2014-08-06 17:06:33 -07001515uint64_t Heap::GetBytesAllocatedEver() const {
Mathieu Chartier692fafd2013-11-29 17:24:40 -08001516 return GetBytesFreedEver() + GetBytesAllocated();
Mathieu Chartier155dfe92012-10-09 14:24:49 -07001517}
1518
Elliott Hughes9d5ccec2011-09-19 13:19:50 -07001519class InstanceCounter {
1520 public:
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001521 InstanceCounter(const std::vector<mirror::Class*>& classes, bool use_is_assignable_from, uint64_t* counts)
Ian Rogersb726dcb2012-09-05 08:57:23 -07001522 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_)
Elliott Hughesec0f83d2013-01-15 16:54:08 -08001523 : classes_(classes), use_is_assignable_from_(use_is_assignable_from), counts_(counts) {
Elliott Hughes9d5ccec2011-09-19 13:19:50 -07001524 }
Mathieu Chartier412c7fc2014-02-07 12:18:39 -08001525 static void Callback(mirror::Object* obj, void* arg)
1526 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_, Locks::heap_bitmap_lock_) {
1527 InstanceCounter* instance_counter = reinterpret_cast<InstanceCounter*>(arg);
1528 mirror::Class* instance_class = obj->GetClass();
1529 CHECK(instance_class != nullptr);
1530 for (size_t i = 0; i < instance_counter->classes_.size(); ++i) {
1531 if (instance_counter->use_is_assignable_from_) {
1532 if (instance_counter->classes_[i]->IsAssignableFrom(instance_class)) {
1533 ++instance_counter->counts_[i];
Elliott Hughesec0f83d2013-01-15 16:54:08 -08001534 }
Mathieu Chartier412c7fc2014-02-07 12:18:39 -08001535 } else if (instance_class == instance_counter->classes_[i]) {
1536 ++instance_counter->counts_[i];
Elliott Hughes9d5ccec2011-09-19 13:19:50 -07001537 }
1538 }
1539 }
1540
Mathieu Chartier7469ebf2012-09-24 16:28:36 -07001541 private:
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001542 const std::vector<mirror::Class*>& classes_;
Elliott Hughesec0f83d2013-01-15 16:54:08 -08001543 bool use_is_assignable_from_;
1544 uint64_t* const counts_;
Elliott Hughesec0f83d2013-01-15 16:54:08 -08001545 DISALLOW_COPY_AND_ASSIGN(InstanceCounter);
Elliott Hughes9d5ccec2011-09-19 13:19:50 -07001546};
1547
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001548void Heap::CountInstances(const std::vector<mirror::Class*>& classes, bool use_is_assignable_from,
Elliott Hughesec0f83d2013-01-15 16:54:08 -08001549 uint64_t* counts) {
Elliott Hughesec0f83d2013-01-15 16:54:08 -08001550 InstanceCounter counter(classes, use_is_assignable_from, counts);
Mathieu Chartier412c7fc2014-02-07 12:18:39 -08001551 VisitObjects(InstanceCounter::Callback, &counter);
Elliott Hughes9d5ccec2011-09-19 13:19:50 -07001552}
1553
Elliott Hughes3b78c942013-01-15 17:35:41 -08001554class InstanceCollector {
1555 public:
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001556 InstanceCollector(mirror::Class* c, int32_t max_count, std::vector<mirror::Object*>& instances)
Elliott Hughes3b78c942013-01-15 17:35:41 -08001557 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_)
1558 : class_(c), max_count_(max_count), instances_(instances) {
1559 }
Mathieu Chartier412c7fc2014-02-07 12:18:39 -08001560 static void Callback(mirror::Object* obj, void* arg)
1561 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_, Locks::heap_bitmap_lock_) {
1562 DCHECK(arg != nullptr);
1563 InstanceCollector* instance_collector = reinterpret_cast<InstanceCollector*>(arg);
Mathieu Chartier2d5f39e2014-09-19 17:52:37 -07001564 if (obj->GetClass() == instance_collector->class_) {
Mathieu Chartier412c7fc2014-02-07 12:18:39 -08001565 if (instance_collector->max_count_ == 0 ||
1566 instance_collector->instances_.size() < instance_collector->max_count_) {
1567 instance_collector->instances_.push_back(obj);
Elliott Hughes3b78c942013-01-15 17:35:41 -08001568 }
1569 }
1570 }
1571
1572 private:
Mathieu Chartier2d5f39e2014-09-19 17:52:37 -07001573 const mirror::Class* const class_;
1574 const uint32_t max_count_;
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001575 std::vector<mirror::Object*>& instances_;
Elliott Hughes3b78c942013-01-15 17:35:41 -08001576 DISALLOW_COPY_AND_ASSIGN(InstanceCollector);
1577};
1578
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001579void Heap::GetInstances(mirror::Class* c, int32_t max_count,
1580 std::vector<mirror::Object*>& instances) {
Elliott Hughes3b78c942013-01-15 17:35:41 -08001581 InstanceCollector collector(c, max_count, instances);
Mathieu Chartier412c7fc2014-02-07 12:18:39 -08001582 VisitObjects(&InstanceCollector::Callback, &collector);
Elliott Hughes3b78c942013-01-15 17:35:41 -08001583}
1584
Elliott Hughes0cbaff52013-01-16 15:28:01 -08001585class ReferringObjectsFinder {
1586 public:
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001587 ReferringObjectsFinder(mirror::Object* object, int32_t max_count,
1588 std::vector<mirror::Object*>& referring_objects)
Elliott Hughes0cbaff52013-01-16 15:28:01 -08001589 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_)
1590 : object_(object), max_count_(max_count), referring_objects_(referring_objects) {
1591 }
1592
Mathieu Chartier412c7fc2014-02-07 12:18:39 -08001593 static void Callback(mirror::Object* obj, void* arg)
1594 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_, Locks::heap_bitmap_lock_) {
1595 reinterpret_cast<ReferringObjectsFinder*>(arg)->operator()(obj);
1596 }
1597
Elliott Hughes0cbaff52013-01-16 15:28:01 -08001598 // For bitmap Visit.
1599 // TODO: Fix lock analysis to not use NO_THREAD_SAFETY_ANALYSIS, requires support for
1600 // annotalysis on visitors.
Mathieu Chartier0e54cd02014-03-20 12:41:23 -07001601 void operator()(mirror::Object* o) const NO_THREAD_SAFETY_ANALYSIS {
Ian Rogersb0fa5dc2014-04-28 16:47:08 -07001602 o->VisitReferences<true>(*this, VoidFunctor());
Elliott Hughes0cbaff52013-01-16 15:28:01 -08001603 }
1604
Mathieu Chartier3b05e9b2014-03-25 09:29:43 -07001605 // For Object::VisitReferences.
Mathieu Chartier407f7022014-02-18 14:37:05 -08001606 void operator()(mirror::Object* obj, MemberOffset offset, bool /* is_static */) const
1607 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) {
Ian Rogersb0fa5dc2014-04-28 16:47:08 -07001608 mirror::Object* ref = obj->GetFieldObject<mirror::Object>(offset);
Mathieu Chartier407f7022014-02-18 14:37:05 -08001609 if (ref == object_ && (max_count_ == 0 || referring_objects_.size() < max_count_)) {
1610 referring_objects_.push_back(obj);
Elliott Hughes0cbaff52013-01-16 15:28:01 -08001611 }
1612 }
1613
1614 private:
Mathieu Chartier2d5f39e2014-09-19 17:52:37 -07001615 const mirror::Object* const object_;
1616 const uint32_t max_count_;
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001617 std::vector<mirror::Object*>& referring_objects_;
Elliott Hughes0cbaff52013-01-16 15:28:01 -08001618 DISALLOW_COPY_AND_ASSIGN(ReferringObjectsFinder);
1619};
1620
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08001621void Heap::GetReferringObjects(mirror::Object* o, int32_t max_count,
1622 std::vector<mirror::Object*>& referring_objects) {
Elliott Hughes0cbaff52013-01-16 15:28:01 -08001623 ReferringObjectsFinder finder(o, max_count, referring_objects);
Mathieu Chartier412c7fc2014-02-07 12:18:39 -08001624 VisitObjects(&ReferringObjectsFinder::Callback, &finder);
Elliott Hughes0cbaff52013-01-16 15:28:01 -08001625}
1626
Ian Rogers30fab402012-01-23 15:43:46 -08001627void Heap::CollectGarbage(bool clear_soft_references) {
Mathieu Chartier866fb2a2012-09-10 10:47:49 -07001628 // Even if we waited for a GC we still need to do another GC since weaks allocated during the
1629 // last GC will not have necessarily been cleared.
Mathieu Chartier7bf82af2013-12-06 16:51:45 -08001630 CollectGarbageInternal(gc_plan_.back(), kGcCauseExplicit, clear_soft_references);
Carl Shapiro69759ea2011-07-21 18:13:35 -07001631}
1632
Zuo Wangf37a88b2014-07-10 04:26:41 -07001633HomogeneousSpaceCompactResult Heap::PerformHomogeneousSpaceCompact() {
1634 Thread* self = Thread::Current();
1635 // Inc requested homogeneous space compaction.
1636 count_requested_homogeneous_space_compaction_++;
1637 // Store performed homogeneous space compaction at a new request arrival.
1638 ThreadList* tl = Runtime::Current()->GetThreadList();
1639 ScopedThreadStateChange tsc(self, kWaitingPerformingGc);
1640 Locks::mutator_lock_->AssertNotHeld(self);
1641 {
Andreas Gampe277ccbd2014-11-03 21:36:10 -08001642 ScopedThreadStateChange tsc2(self, kWaitingForGcToComplete);
Zuo Wangf37a88b2014-07-10 04:26:41 -07001643 MutexLock mu(self, *gc_complete_lock_);
1644 // Ensure there is only one GC at a time.
1645 WaitForGcToCompleteLocked(kGcCauseHomogeneousSpaceCompact, self);
1646 // Homogeneous space compaction is a copying transition, can't run it if the moving GC disable count
1647 // is non zero.
Mathieu Chartier6a7824d2014-08-22 14:53:04 -07001648 // If the collector type changed to something which doesn't benefit from homogeneous space compaction,
Zuo Wangf37a88b2014-07-10 04:26:41 -07001649 // exit.
Mathieu Chartier6a7824d2014-08-22 14:53:04 -07001650 if (disable_moving_gc_count_ != 0 || IsMovingGc(collector_type_) ||
1651 !main_space_->CanMoveObjects()) {
Zuo Wangf37a88b2014-07-10 04:26:41 -07001652 return HomogeneousSpaceCompactResult::kErrorReject;
1653 }
1654 collector_type_running_ = kCollectorTypeHomogeneousSpaceCompact;
1655 }
1656 if (Runtime::Current()->IsShuttingDown(self)) {
1657 // Don't allow heap transitions to happen if the runtime is shutting down since these can
1658 // cause objects to get finalized.
1659 FinishGC(self, collector::kGcTypeNone);
1660 return HomogeneousSpaceCompactResult::kErrorVMShuttingDown;
1661 }
1662 // Suspend all threads.
1663 tl->SuspendAll();
1664 uint64_t start_time = NanoTime();
1665 // Launch compaction.
Mathieu Chartierb363f662014-07-16 13:28:58 -07001666 space::MallocSpace* to_space = main_space_backup_.release();
Zuo Wangf37a88b2014-07-10 04:26:41 -07001667 space::MallocSpace* from_space = main_space_;
1668 to_space->GetMemMap()->Protect(PROT_READ | PROT_WRITE);
1669 const uint64_t space_size_before_compaction = from_space->Size();
Mathieu Chartierb363f662014-07-16 13:28:58 -07001670 AddSpace(to_space);
Mathieu Chartier0310da52014-12-01 13:40:48 -08001671 // Make sure that we will have enough room to copy.
1672 CHECK_GE(to_space->GetFootprintLimit(), from_space->GetFootprintLimit());
Zuo Wangf37a88b2014-07-10 04:26:41 -07001673 Compact(to_space, from_space, kGcCauseHomogeneousSpaceCompact);
Zuo Wangf37a88b2014-07-10 04:26:41 -07001674 const uint64_t space_size_after_compaction = to_space->Size();
Mathieu Chartierb363f662014-07-16 13:28:58 -07001675 main_space_ = to_space;
1676 main_space_backup_.reset(from_space);
1677 RemoveSpace(from_space);
Zuo Wangf37a88b2014-07-10 04:26:41 -07001678 SetSpaceAsDefault(main_space_); // Set as default to reset the proper dlmalloc space.
1679 // Update performed homogeneous space compaction count.
1680 count_performed_homogeneous_space_compaction_++;
1681 // Print statics log and resume all threads.
1682 uint64_t duration = NanoTime() - start_time;
Mathieu Chartier98172a62014-09-02 12:33:25 -07001683 VLOG(heap) << "Heap homogeneous space compaction took " << PrettyDuration(duration) << " size: "
1684 << PrettySize(space_size_before_compaction) << " -> "
1685 << PrettySize(space_size_after_compaction) << " compact-ratio: "
1686 << std::fixed << static_cast<double>(space_size_after_compaction) /
1687 static_cast<double>(space_size_before_compaction);
Zuo Wangf37a88b2014-07-10 04:26:41 -07001688 tl->ResumeAll();
1689 // Finish GC.
1690 reference_processor_.EnqueueClearedReferences(self);
1691 GrowForUtilization(semi_space_collector_);
1692 FinishGC(self, collector::kGcTypeFull);
1693 return HomogeneousSpaceCompactResult::kSuccess;
1694}
1695
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08001696void Heap::TransitionCollector(CollectorType collector_type) {
1697 if (collector_type == collector_type_) {
1698 return;
1699 }
Hiroshi Yamauchia4adbfd2014-02-04 18:12:17 -08001700 VLOG(heap) << "TransitionCollector: " << static_cast<int>(collector_type_)
1701 << " -> " << static_cast<int>(collector_type);
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08001702 uint64_t start_time = NanoTime();
Ian Rogers3e5cf302014-05-20 16:40:37 -07001703 uint32_t before_allocated = num_bytes_allocated_.LoadSequentiallyConsistent();
Mathieu Chartier52e4b432014-06-10 11:22:31 -07001704 Runtime* const runtime = Runtime::Current();
1705 ThreadList* const tl = runtime->GetThreadList();
1706 Thread* const self = Thread::Current();
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08001707 ScopedThreadStateChange tsc(self, kWaitingPerformingGc);
1708 Locks::mutator_lock_->AssertNotHeld(self);
Mathieu Chartier1d27b342014-01-28 12:51:09 -08001709 // Busy wait until we can GC (StartGC can fail if we have a non-zero
1710 // compacting_gc_disable_count_, this should rarely occurs).
Mathieu Chartierd5a89ee2014-01-31 09:55:13 -08001711 for (;;) {
Mathieu Chartiercaa82d62014-02-02 16:51:17 -08001712 {
Andreas Gampe277ccbd2014-11-03 21:36:10 -08001713 ScopedThreadStateChange tsc2(self, kWaitingForGcToComplete);
Mathieu Chartiercaa82d62014-02-02 16:51:17 -08001714 MutexLock mu(self, *gc_complete_lock_);
1715 // Ensure there is only one GC at a time.
Mathieu Chartier89a201e2014-05-02 10:27:26 -07001716 WaitForGcToCompleteLocked(kGcCauseCollectorTransition, self);
Mathieu Chartiere4927f62014-08-23 13:56:03 -07001717 // Currently we only need a heap transition if we switch from a moving collector to a
1718 // non-moving one, or visa versa.
1719 const bool copying_transition = IsMovingGc(collector_type_) != IsMovingGc(collector_type);
Mathieu Chartierb38d4832014-04-10 10:56:55 -07001720 // If someone else beat us to it and changed the collector before we could, exit.
1721 // This is safe to do before the suspend all since we set the collector_type_running_ before
1722 // we exit the loop. If another thread attempts to do the heap transition before we exit,
1723 // then it would get blocked on WaitForGcToCompleteLocked.
1724 if (collector_type == collector_type_) {
1725 return;
1726 }
Mathieu Chartiercaa82d62014-02-02 16:51:17 -08001727 // GC can be disabled if someone has a used GetPrimitiveArrayCritical but not yet released.
1728 if (!copying_transition || disable_moving_gc_count_ == 0) {
1729 // TODO: Not hard code in semi-space collector?
1730 collector_type_running_ = copying_transition ? kCollectorTypeSS : collector_type;
1731 break;
1732 }
Mathieu Chartierd5a89ee2014-01-31 09:55:13 -08001733 }
Mathieu Chartiercaa82d62014-02-02 16:51:17 -08001734 usleep(1000);
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08001735 }
Mathieu Chartier52e4b432014-06-10 11:22:31 -07001736 if (runtime->IsShuttingDown(self)) {
Hiroshi Yamauchia6a8d142014-05-12 16:57:33 -07001737 // Don't allow heap transitions to happen if the runtime is shutting down since these can
1738 // cause objects to get finalized.
1739 FinishGC(self, collector::kGcTypeNone);
1740 return;
1741 }
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08001742 tl->SuspendAll();
1743 switch (collector_type) {
Mathieu Chartierb363f662014-07-16 13:28:58 -07001744 case kCollectorTypeSS: {
Mathieu Chartier31f44142014-04-08 14:40:03 -07001745 if (!IsMovingGc(collector_type_)) {
Mathieu Chartierb363f662014-07-16 13:28:58 -07001746 // Create the bump pointer space from the backup space.
1747 CHECK(main_space_backup_ != nullptr);
1748 std::unique_ptr<MemMap> mem_map(main_space_backup_->ReleaseMemMap());
Mathieu Chartier31f44142014-04-08 14:40:03 -07001749 // We are transitioning from non moving GC -> moving GC, since we copied from the bump
1750 // pointer space last transition it will be protected.
Mathieu Chartierb363f662014-07-16 13:28:58 -07001751 CHECK(mem_map != nullptr);
1752 mem_map->Protect(PROT_READ | PROT_WRITE);
1753 bump_pointer_space_ = space::BumpPointerSpace::CreateFromMemMap("Bump pointer space",
1754 mem_map.release());
1755 AddSpace(bump_pointer_space_);
Zuo Wangf37a88b2014-07-10 04:26:41 -07001756 Compact(bump_pointer_space_, main_space_, kGcCauseCollectorTransition);
Mathieu Chartierb363f662014-07-16 13:28:58 -07001757 // Use the now empty main space mem map for the bump pointer temp space.
1758 mem_map.reset(main_space_->ReleaseMemMap());
Mathieu Chartier00b59152014-07-25 10:13:51 -07001759 // Unset the pointers just in case.
1760 if (dlmalloc_space_ == main_space_) {
1761 dlmalloc_space_ = nullptr;
1762 } else if (rosalloc_space_ == main_space_) {
1763 rosalloc_space_ = nullptr;
1764 }
Mathieu Chartier2796a162014-07-25 11:50:47 -07001765 // Remove the main space so that we don't try to trim it, this doens't work for debug
1766 // builds since RosAlloc attempts to read the magic number from a protected page.
1767 RemoveSpace(main_space_);
Mathieu Chartierc5a83472014-07-23 18:45:17 -07001768 RemoveRememberedSet(main_space_);
Mathieu Chartier2796a162014-07-25 11:50:47 -07001769 delete main_space_; // Delete the space since it has been removed.
Mathieu Chartierc5a83472014-07-23 18:45:17 -07001770 main_space_ = nullptr;
Mathieu Chartier2796a162014-07-25 11:50:47 -07001771 RemoveRememberedSet(main_space_backup_.get());
1772 main_space_backup_.reset(nullptr); // Deletes the space.
Mathieu Chartierb363f662014-07-16 13:28:58 -07001773 temp_space_ = space::BumpPointerSpace::CreateFromMemMap("Bump pointer space 2",
1774 mem_map.release());
1775 AddSpace(temp_space_);
Mathieu Chartier31f44142014-04-08 14:40:03 -07001776 }
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08001777 break;
1778 }
1779 case kCollectorTypeMS:
1780 // Fall through.
1781 case kCollectorTypeCMS: {
Mathieu Chartier31f44142014-04-08 14:40:03 -07001782 if (IsMovingGc(collector_type_)) {
Mathieu Chartierb363f662014-07-16 13:28:58 -07001783 CHECK(temp_space_ != nullptr);
1784 std::unique_ptr<MemMap> mem_map(temp_space_->ReleaseMemMap());
1785 RemoveSpace(temp_space_);
1786 temp_space_ = nullptr;
Mathieu Chartier36dab362014-07-30 14:59:56 -07001787 mem_map->Protect(PROT_READ | PROT_WRITE);
Mathieu Chartier0310da52014-12-01 13:40:48 -08001788 CreateMainMallocSpace(mem_map.get(), kDefaultInitialSize,
1789 std::min(mem_map->Size(), growth_limit_), mem_map->Size());
Mathieu Chartierb363f662014-07-16 13:28:58 -07001790 mem_map.release();
Mathieu Chartier31f44142014-04-08 14:40:03 -07001791 // Compact to the main space from the bump pointer space, don't need to swap semispaces.
Mathieu Chartier1b54f9c2014-04-30 16:45:02 -07001792 AddSpace(main_space_);
Zuo Wangf37a88b2014-07-10 04:26:41 -07001793 Compact(main_space_, bump_pointer_space_, kGcCauseCollectorTransition);
Mathieu Chartierb363f662014-07-16 13:28:58 -07001794 mem_map.reset(bump_pointer_space_->ReleaseMemMap());
1795 RemoveSpace(bump_pointer_space_);
1796 bump_pointer_space_ = nullptr;
1797 const char* name = kUseRosAlloc ? kRosAllocSpaceName[1] : kDlMallocSpaceName[1];
Hiroshi Yamauchic1276c82014-08-07 10:27:17 -07001798 // Temporarily unprotect the backup mem map so rosalloc can write the debug magic number.
1799 if (kIsDebugBuild && kUseRosAlloc) {
1800 mem_map->Protect(PROT_READ | PROT_WRITE);
1801 }
Mathieu Chartier0310da52014-12-01 13:40:48 -08001802 main_space_backup_.reset(CreateMallocSpaceFromMemMap(
1803 mem_map.get(), kDefaultInitialSize, std::min(mem_map->Size(), growth_limit_),
1804 mem_map->Size(), name, true));
Hiroshi Yamauchic1276c82014-08-07 10:27:17 -07001805 if (kIsDebugBuild && kUseRosAlloc) {
1806 mem_map->Protect(PROT_NONE);
1807 }
Mathieu Chartierb363f662014-07-16 13:28:58 -07001808 mem_map.release();
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08001809 }
1810 break;
1811 }
1812 default: {
Hiroshi Yamauchid5307ec2014-03-27 21:07:51 -07001813 LOG(FATAL) << "Attempted to transition to invalid collector type "
1814 << static_cast<size_t>(collector_type);
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08001815 break;
1816 }
1817 }
1818 ChangeCollector(collector_type);
1819 tl->ResumeAll();
1820 // Can't call into java code with all threads suspended.
Mathieu Chartier308351a2014-06-15 12:39:02 -07001821 reference_processor_.EnqueueClearedReferences(self);
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08001822 uint64_t duration = NanoTime() - start_time;
Mathieu Chartierafe49982014-03-27 10:55:04 -07001823 GrowForUtilization(semi_space_collector_);
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08001824 FinishGC(self, collector::kGcTypeFull);
Ian Rogers3e5cf302014-05-20 16:40:37 -07001825 int32_t after_allocated = num_bytes_allocated_.LoadSequentiallyConsistent();
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08001826 int32_t delta_allocated = before_allocated - after_allocated;
Mathieu Chartier19d46b42014-06-17 15:04:40 -07001827 std::string saved_str;
1828 if (delta_allocated >= 0) {
1829 saved_str = " saved at least " + PrettySize(delta_allocated);
1830 } else {
1831 saved_str = " expanded " + PrettySize(-delta_allocated);
1832 }
Mathieu Chartier98172a62014-09-02 12:33:25 -07001833 VLOG(heap) << "Heap transition to " << process_state_ << " took "
Mathieu Chartier19d46b42014-06-17 15:04:40 -07001834 << PrettyDuration(duration) << saved_str;
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08001835}
1836
Mathieu Chartier0de9f732013-11-22 17:58:48 -08001837void Heap::ChangeCollector(CollectorType collector_type) {
Mathieu Chartier7bf82af2013-12-06 16:51:45 -08001838 // TODO: Only do this with all mutators suspended to avoid races.
1839 if (collector_type != collector_type_) {
Mathieu Chartier52e4b432014-06-10 11:22:31 -07001840 if (collector_type == kCollectorTypeMC) {
1841 // Don't allow mark compact unless support is compiled in.
1842 CHECK(kMarkCompactSupport);
1843 }
Mathieu Chartier7bf82af2013-12-06 16:51:45 -08001844 collector_type_ = collector_type;
1845 gc_plan_.clear();
1846 switch (collector_type_) {
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -08001847 case kCollectorTypeCC: {
1848 gc_plan_.push_back(collector::kGcTypeFull);
1849 if (use_tlab_) {
1850 ChangeAllocator(kAllocatorTypeRegionTLAB);
1851 } else {
1852 ChangeAllocator(kAllocatorTypeRegion);
1853 }
1854 break;
1855 }
Mathieu Chartier52e4b432014-06-10 11:22:31 -07001856 case kCollectorTypeMC: // Fall-through.
Hiroshi Yamauchi3e417802014-03-20 12:03:02 -07001857 case kCollectorTypeSS: // Fall-through.
Hiroshi Yamauchi6f4ffe42014-01-13 12:30:44 -08001858 case kCollectorTypeGSS: {
Mathieu Chartier7bf82af2013-12-06 16:51:45 -08001859 gc_plan_.push_back(collector::kGcTypeFull);
Mathieu Chartier692fafd2013-11-29 17:24:40 -08001860 if (use_tlab_) {
1861 ChangeAllocator(kAllocatorTypeTLAB);
1862 } else {
1863 ChangeAllocator(kAllocatorTypeBumpPointer);
1864 }
Mathieu Chartier7bf82af2013-12-06 16:51:45 -08001865 break;
1866 }
1867 case kCollectorTypeMS: {
Mathieu Chartier7bf82af2013-12-06 16:51:45 -08001868 gc_plan_.push_back(collector::kGcTypeSticky);
1869 gc_plan_.push_back(collector::kGcTypePartial);
1870 gc_plan_.push_back(collector::kGcTypeFull);
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08001871 ChangeAllocator(kUseRosAlloc ? kAllocatorTypeRosAlloc : kAllocatorTypeDlMalloc);
Mathieu Chartier7bf82af2013-12-06 16:51:45 -08001872 break;
1873 }
1874 case kCollectorTypeCMS: {
Mathieu Chartier7bf82af2013-12-06 16:51:45 -08001875 gc_plan_.push_back(collector::kGcTypeSticky);
1876 gc_plan_.push_back(collector::kGcTypePartial);
1877 gc_plan_.push_back(collector::kGcTypeFull);
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08001878 ChangeAllocator(kUseRosAlloc ? kAllocatorTypeRosAlloc : kAllocatorTypeDlMalloc);
Mathieu Chartier7bf82af2013-12-06 16:51:45 -08001879 break;
1880 }
1881 default: {
Ian Rogers2c4257b2014-10-24 14:20:06 -07001882 UNIMPLEMENTED(FATAL);
1883 UNREACHABLE();
Mathieu Chartier7bf82af2013-12-06 16:51:45 -08001884 }
Mathieu Chartier0de9f732013-11-22 17:58:48 -08001885 }
Hiroshi Yamauchi3e417802014-03-20 12:03:02 -07001886 if (IsGcConcurrent()) {
Mathieu Chartier7bf82af2013-12-06 16:51:45 -08001887 concurrent_start_bytes_ =
1888 std::max(max_allowed_footprint_, kMinConcurrentRemainingBytes) - kMinConcurrentRemainingBytes;
1889 } else {
1890 concurrent_start_bytes_ = std::numeric_limits<size_t>::max();
Mathieu Chartier0de9f732013-11-22 17:58:48 -08001891 }
1892 }
1893}
1894
Mathieu Chartier85a43c02014-01-07 17:59:00 -08001895// Special compacting collector which uses sub-optimal bin packing to reduce zygote space size.
Ian Rogers6fac4472014-02-25 17:01:10 -08001896class ZygoteCompactingCollector FINAL : public collector::SemiSpace {
Mathieu Chartier85a43c02014-01-07 17:59:00 -08001897 public:
Hiroshi Yamauchi38e68e92014-03-07 13:59:08 -08001898 explicit ZygoteCompactingCollector(gc::Heap* heap) : SemiSpace(heap, false, "zygote collector"),
Ian Rogers6fac4472014-02-25 17:01:10 -08001899 bin_live_bitmap_(nullptr), bin_mark_bitmap_(nullptr) {
Mathieu Chartier85a43c02014-01-07 17:59:00 -08001900 }
1901
1902 void BuildBins(space::ContinuousSpace* space) {
1903 bin_live_bitmap_ = space->GetLiveBitmap();
1904 bin_mark_bitmap_ = space->GetMarkBitmap();
1905 BinContext context;
1906 context.prev_ = reinterpret_cast<uintptr_t>(space->Begin());
1907 context.collector_ = this;
1908 WriterMutexLock mu(Thread::Current(), *Locks::heap_bitmap_lock_);
1909 // Note: This requires traversing the space in increasing order of object addresses.
1910 bin_live_bitmap_->Walk(Callback, reinterpret_cast<void*>(&context));
1911 // Add the last bin which spans after the last object to the end of the space.
1912 AddBin(reinterpret_cast<uintptr_t>(space->End()) - context.prev_, context.prev_);
1913 }
1914
1915 private:
1916 struct BinContext {
1917 uintptr_t prev_; // The end of the previous object.
1918 ZygoteCompactingCollector* collector_;
1919 };
1920 // Maps from bin sizes to locations.
1921 std::multimap<size_t, uintptr_t> bins_;
1922 // Live bitmap of the space which contains the bins.
Mathieu Chartiera8e8f9c2014-04-09 14:51:05 -07001923 accounting::ContinuousSpaceBitmap* bin_live_bitmap_;
Mathieu Chartier85a43c02014-01-07 17:59:00 -08001924 // Mark bitmap of the space which contains the bins.
Mathieu Chartiera8e8f9c2014-04-09 14:51:05 -07001925 accounting::ContinuousSpaceBitmap* bin_mark_bitmap_;
Mathieu Chartier85a43c02014-01-07 17:59:00 -08001926
1927 static void Callback(mirror::Object* obj, void* arg)
1928 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) {
1929 DCHECK(arg != nullptr);
1930 BinContext* context = reinterpret_cast<BinContext*>(arg);
1931 ZygoteCompactingCollector* collector = context->collector_;
1932 uintptr_t object_addr = reinterpret_cast<uintptr_t>(obj);
1933 size_t bin_size = object_addr - context->prev_;
1934 // Add the bin consisting of the end of the previous object to the start of the current object.
1935 collector->AddBin(bin_size, context->prev_);
1936 context->prev_ = object_addr + RoundUp(obj->SizeOf(), kObjectAlignment);
1937 }
1938
1939 void AddBin(size_t size, uintptr_t position) {
1940 if (size != 0) {
1941 bins_.insert(std::make_pair(size, position));
1942 }
1943 }
1944
Mathieu Chartiera1602f22014-01-13 17:19:19 -08001945 virtual bool ShouldSweepSpace(space::ContinuousSpace* space) const {
Mathieu Chartier85a43c02014-01-07 17:59:00 -08001946 // Don't sweep any spaces since we probably blasted the internal accounting of the free list
1947 // allocator.
Ian Rogers6a3c1fc2014-10-31 00:33:20 -07001948 UNUSED(space);
Mathieu Chartier85a43c02014-01-07 17:59:00 -08001949 return false;
1950 }
1951
1952 virtual mirror::Object* MarkNonForwardedObject(mirror::Object* obj)
1953 EXCLUSIVE_LOCKS_REQUIRED(Locks::heap_bitmap_lock_, Locks::mutator_lock_) {
1954 size_t object_size = RoundUp(obj->SizeOf(), kObjectAlignment);
Mathieu Chartier5dc08a62014-01-10 10:10:23 -08001955 mirror::Object* forward_address;
Mathieu Chartier85a43c02014-01-07 17:59:00 -08001956 // Find the smallest bin which we can move obj in.
1957 auto it = bins_.lower_bound(object_size);
1958 if (it == bins_.end()) {
1959 // No available space in the bins, place it in the target space instead (grows the zygote
1960 // space).
Mathieu Chartier5dc08a62014-01-10 10:10:23 -08001961 size_t bytes_allocated;
Ian Rogers6fac4472014-02-25 17:01:10 -08001962 forward_address = to_space_->Alloc(self_, object_size, &bytes_allocated, nullptr);
Mathieu Chartier85a43c02014-01-07 17:59:00 -08001963 if (to_space_live_bitmap_ != nullptr) {
1964 to_space_live_bitmap_->Set(forward_address);
Mathieu Chartier938a03b2014-01-16 15:10:31 -08001965 } else {
1966 GetHeap()->GetNonMovingSpace()->GetLiveBitmap()->Set(forward_address);
1967 GetHeap()->GetNonMovingSpace()->GetMarkBitmap()->Set(forward_address);
Mathieu Chartier85a43c02014-01-07 17:59:00 -08001968 }
1969 } else {
1970 size_t size = it->first;
1971 uintptr_t pos = it->second;
1972 bins_.erase(it); // Erase the old bin which we replace with the new smaller bin.
1973 forward_address = reinterpret_cast<mirror::Object*>(pos);
1974 // Set the live and mark bits so that sweeping system weaks works properly.
1975 bin_live_bitmap_->Set(forward_address);
1976 bin_mark_bitmap_->Set(forward_address);
1977 DCHECK_GE(size, object_size);
1978 AddBin(size - object_size, pos + object_size); // Add a new bin with the remaining space.
1979 }
1980 // Copy the object over to its new location.
1981 memcpy(reinterpret_cast<void*>(forward_address), obj, object_size);
Hiroshi Yamauchi624468c2014-03-31 15:14:47 -07001982 if (kUseBakerOrBrooksReadBarrier) {
1983 obj->AssertReadBarrierPointer();
1984 if (kUseBrooksReadBarrier) {
1985 DCHECK_EQ(forward_address->GetReadBarrierPointer(), obj);
1986 forward_address->SetReadBarrierPointer(forward_address);
1987 }
1988 forward_address->AssertReadBarrierPointer();
Hiroshi Yamauchi9d04a202014-01-31 13:35:49 -08001989 }
Mathieu Chartier85a43c02014-01-07 17:59:00 -08001990 return forward_address;
1991 }
1992};
1993
Mathieu Chartiera1602f22014-01-13 17:19:19 -08001994void Heap::UnBindBitmaps() {
Mathieu Chartierf5997b42014-06-20 10:37:54 -07001995 TimingLogger::ScopedTiming t("UnBindBitmaps", GetCurrentGcIteration()->GetTimings());
Mathieu Chartiera1602f22014-01-13 17:19:19 -08001996 for (const auto& space : GetContinuousSpaces()) {
1997 if (space->IsContinuousMemMapAllocSpace()) {
1998 space::ContinuousMemMapAllocSpace* alloc_space = space->AsContinuousMemMapAllocSpace();
1999 if (alloc_space->HasBoundBitmaps()) {
2000 alloc_space->UnBindBitmaps();
2001 }
2002 }
2003 }
2004}
2005
Mathieu Chartiercc236d72012-07-20 10:29:05 -07002006void Heap::PreZygoteFork() {
Mathieu Chartier1f3b5352014-02-03 14:00:42 -08002007 CollectGarbageInternal(collector::kGcTypeFull, kGcCauseBackground, false);
Ian Rogers81d425b2012-09-27 16:03:43 -07002008 Thread* self = Thread::Current();
2009 MutexLock mu(self, zygote_creation_lock_);
Mathieu Chartiercc236d72012-07-20 10:29:05 -07002010 // Try to see if we have any Zygote spaces.
Mathieu Chartiere4cab172014-08-19 18:24:04 -07002011 if (HasZygoteSpace()) {
2012 LOG(WARNING) << __FUNCTION__ << " called when we already have a zygote space.";
Mathieu Chartiercc236d72012-07-20 10:29:05 -07002013 return;
2014 }
Mathieu Chartiereb175f72014-10-31 11:49:27 -07002015 Runtime::Current()->GetInternTable()->SwapPostZygoteWithPreZygote();
Mathieu Chartierc2e20622014-11-03 11:41:47 -08002016 Runtime::Current()->GetClassLinker()->MoveClassTableToPreZygote();
Mathieu Chartier590fee92013-09-13 13:46:47 -07002017 VLOG(heap) << "Starting PreZygoteFork";
Mathieu Chartier590fee92013-09-13 13:46:47 -07002018 // Trim the pages at the end of the non moving space.
2019 non_moving_space_->Trim();
Mathieu Chartier31f44142014-04-08 14:40:03 -07002020 // The end of the non-moving space may be protected, unprotect it so that we can copy the zygote
2021 // there.
Mathieu Chartier590fee92013-09-13 13:46:47 -07002022 non_moving_space_->GetMemMap()->Protect(PROT_READ | PROT_WRITE);
Mathieu Chartier6a7824d2014-08-22 14:53:04 -07002023 const bool same_space = non_moving_space_ == main_space_;
Mathieu Chartier31f44142014-04-08 14:40:03 -07002024 if (kCompactZygote) {
Mathieu Chartier6a7824d2014-08-22 14:53:04 -07002025 // Can't compact if the non moving space is the same as the main space.
Mathieu Chartier31f44142014-04-08 14:40:03 -07002026 DCHECK(semi_space_collector_ != nullptr);
Hiroshi Yamauchia4adbfd2014-02-04 18:12:17 -08002027 // Temporarily disable rosalloc verification because the zygote
2028 // compaction will mess up the rosalloc internal metadata.
2029 ScopedDisableRosAllocVerification disable_rosalloc_verif(this);
Mathieu Chartier85a43c02014-01-07 17:59:00 -08002030 ZygoteCompactingCollector zygote_collector(this);
2031 zygote_collector.BuildBins(non_moving_space_);
Mathieu Chartier50482232013-11-21 11:48:14 -08002032 // Create a new bump pointer space which we will compact into.
Mathieu Chartier590fee92013-09-13 13:46:47 -07002033 space::BumpPointerSpace target_space("zygote bump space", non_moving_space_->End(),
2034 non_moving_space_->Limit());
2035 // Compact the bump pointer space to a new zygote bump pointer space.
Mathieu Chartier31f44142014-04-08 14:40:03 -07002036 bool reset_main_space = false;
2037 if (IsMovingGc(collector_type_)) {
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -08002038 if (collector_type_ == kCollectorTypeCC) {
2039 zygote_collector.SetFromSpace(region_space_);
2040 } else {
2041 zygote_collector.SetFromSpace(bump_pointer_space_);
2042 }
Mathieu Chartier31f44142014-04-08 14:40:03 -07002043 } else {
2044 CHECK(main_space_ != nullptr);
2045 // Copy from the main space.
2046 zygote_collector.SetFromSpace(main_space_);
2047 reset_main_space = true;
2048 }
Mathieu Chartier85a43c02014-01-07 17:59:00 -08002049 zygote_collector.SetToSpace(&target_space);
Mathieu Chartier1b54f9c2014-04-30 16:45:02 -07002050 zygote_collector.SetSwapSemiSpaces(false);
Hiroshi Yamauchi6f4ffe42014-01-13 12:30:44 -08002051 zygote_collector.Run(kGcCauseCollectorTransition, false);
Mathieu Chartier31f44142014-04-08 14:40:03 -07002052 if (reset_main_space) {
2053 main_space_->GetMemMap()->Protect(PROT_READ | PROT_WRITE);
2054 madvise(main_space_->Begin(), main_space_->Capacity(), MADV_DONTNEED);
2055 MemMap* mem_map = main_space_->ReleaseMemMap();
2056 RemoveSpace(main_space_);
Mathieu Chartier96bcd452014-06-17 09:50:02 -07002057 space::Space* old_main_space = main_space_;
Mathieu Chartier0310da52014-12-01 13:40:48 -08002058 CreateMainMallocSpace(mem_map, kDefaultInitialSize, std::min(mem_map->Size(), growth_limit_),
2059 mem_map->Size());
Mathieu Chartier96bcd452014-06-17 09:50:02 -07002060 delete old_main_space;
Mathieu Chartier31f44142014-04-08 14:40:03 -07002061 AddSpace(main_space_);
2062 } else {
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -08002063 if (collector_type_ == kCollectorTypeCC) {
2064 region_space_->GetMemMap()->Protect(PROT_READ | PROT_WRITE);
2065 } else {
2066 bump_pointer_space_->GetMemMap()->Protect(PROT_READ | PROT_WRITE);
2067 }
Mathieu Chartier31f44142014-04-08 14:40:03 -07002068 }
2069 if (temp_space_ != nullptr) {
2070 CHECK(temp_space_->IsEmpty());
2071 }
Mathieu Chartier10fb83a2014-06-15 15:15:43 -07002072 total_objects_freed_ever_ += GetCurrentGcIteration()->GetFreedObjects();
2073 total_bytes_freed_ever_ += GetCurrentGcIteration()->GetFreedBytes();
Mathieu Chartier590fee92013-09-13 13:46:47 -07002074 // Update the end and write out image.
2075 non_moving_space_->SetEnd(target_space.End());
2076 non_moving_space_->SetLimit(target_space.Limit());
Mathieu Chartier31f44142014-04-08 14:40:03 -07002077 VLOG(heap) << "Zygote space size " << non_moving_space_->Size() << " bytes";
Mathieu Chartier357e9be2012-08-01 11:00:14 -07002078 }
Mathieu Chartier6a7824d2014-08-22 14:53:04 -07002079 // Change the collector to the post zygote one.
Mathieu Chartier31f44142014-04-08 14:40:03 -07002080 ChangeCollector(foreground_collector_type_);
Mathieu Chartiera1602f22014-01-13 17:19:19 -08002081 // Save the old space so that we can remove it after we complete creating the zygote space.
2082 space::MallocSpace* old_alloc_space = non_moving_space_;
Mathieu Chartier590fee92013-09-13 13:46:47 -07002083 // Turn the current alloc space into a zygote space and obtain the new alloc space composed of
Mathieu Chartiera1602f22014-01-13 17:19:19 -08002084 // the remaining available space.
2085 // Remove the old space before creating the zygote space since creating the zygote space sets
2086 // the old alloc space's bitmaps to nullptr.
2087 RemoveSpace(old_alloc_space);
Hiroshi Yamauchi38e68e92014-03-07 13:59:08 -08002088 if (collector::SemiSpace::kUseRememberedSet) {
2089 // Sanity bound check.
2090 FindRememberedSetFromSpace(old_alloc_space)->AssertAllDirtyCardsAreWithinSpace();
2091 // Remove the remembered set for the now zygote space (the old
2092 // non-moving space). Note now that we have compacted objects into
2093 // the zygote space, the data in the remembered set is no longer
2094 // needed. The zygote space will instead have a mod-union table
2095 // from this point on.
2096 RemoveRememberedSet(old_alloc_space);
2097 }
Mathieu Chartier7247af52014-11-19 10:51:42 -08002098 // Remaining space becomes the new non moving space.
2099 zygote_space_ = old_alloc_space->CreateZygoteSpace(kNonMovingSpaceName, low_memory_mode_,
Mathieu Chartiere4cab172014-08-19 18:24:04 -07002100 &non_moving_space_);
Mathieu Chartierb363f662014-07-16 13:28:58 -07002101 CHECK(!non_moving_space_->CanMoveObjects());
2102 if (same_space) {
2103 main_space_ = non_moving_space_;
2104 SetSpaceAsDefault(main_space_);
2105 }
Mathieu Chartiera1602f22014-01-13 17:19:19 -08002106 delete old_alloc_space;
Mathieu Chartiere4cab172014-08-19 18:24:04 -07002107 CHECK(HasZygoteSpace()) << "Failed creating zygote space";
2108 AddSpace(zygote_space_);
Mathieu Chartier31f44142014-04-08 14:40:03 -07002109 non_moving_space_->SetFootprintLimit(non_moving_space_->Capacity());
2110 AddSpace(non_moving_space_);
Mathieu Chartier11409ae2013-09-23 11:49:36 -07002111 // Create the zygote space mod union table.
2112 accounting::ModUnionTable* mod_union_table =
Mathieu Chartiere4cab172014-08-19 18:24:04 -07002113 new accounting::ModUnionTableCardCache("zygote space mod-union table", this,
2114 zygote_space_);
Mathieu Chartier11409ae2013-09-23 11:49:36 -07002115 CHECK(mod_union_table != nullptr) << "Failed to create zygote space mod-union table";
Mathieu Chartiere4cab172014-08-19 18:24:04 -07002116 // Set all the cards in the mod-union table since we don't know which objects contain references
2117 // to large objects.
2118 mod_union_table->SetCards();
Mathieu Chartier11409ae2013-09-23 11:49:36 -07002119 AddModUnionTable(mod_union_table);
Hiroshi Yamauchi38e68e92014-03-07 13:59:08 -08002120 if (collector::SemiSpace::kUseRememberedSet) {
Hiroshi Yamauchi38e68e92014-03-07 13:59:08 -08002121 // Add a new remembered set for the post-zygote non-moving space.
2122 accounting::RememberedSet* post_zygote_non_moving_space_rem_set =
2123 new accounting::RememberedSet("Post-zygote non-moving space remembered set", this,
2124 non_moving_space_);
2125 CHECK(post_zygote_non_moving_space_rem_set != nullptr)
2126 << "Failed to create post-zygote non-moving space remembered set";
2127 AddRememberedSet(post_zygote_non_moving_space_rem_set);
2128 }
Mathieu Chartiercc236d72012-07-20 10:29:05 -07002129}
2130
Mathieu Chartier357e9be2012-08-01 11:00:14 -07002131void Heap::FlushAllocStack() {
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08002132 MarkAllocStackAsLive(allocation_stack_.get());
Mathieu Chartier357e9be2012-08-01 11:00:14 -07002133 allocation_stack_->Reset();
2134}
2135
Mathieu Chartiera8e8f9c2014-04-09 14:51:05 -07002136void Heap::MarkAllocStack(accounting::ContinuousSpaceBitmap* bitmap1,
2137 accounting::ContinuousSpaceBitmap* bitmap2,
Mathieu Chartierbbd695c2014-04-16 09:48:48 -07002138 accounting::LargeObjectBitmap* large_objects,
Ian Rogers1d54e732013-05-02 21:10:01 -07002139 accounting::ObjectStack* stack) {
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08002140 DCHECK(bitmap1 != nullptr);
2141 DCHECK(bitmap2 != nullptr);
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08002142 mirror::Object** limit = stack->End();
2143 for (mirror::Object** it = stack->Begin(); it != limit; ++it) {
2144 const mirror::Object* obj = *it;
Hiroshi Yamauchif5b0e202014-02-11 17:02:22 -08002145 if (!kUseThreadLocalAllocationStack || obj != nullptr) {
2146 if (bitmap1->HasAddress(obj)) {
2147 bitmap1->Set(obj);
2148 } else if (bitmap2->HasAddress(obj)) {
2149 bitmap2->Set(obj);
2150 } else {
Mathieu Chartier2dbe6272014-09-16 10:43:23 -07002151 DCHECK(large_objects != nullptr);
Hiroshi Yamauchif5b0e202014-02-11 17:02:22 -08002152 large_objects->Set(obj);
2153 }
Mathieu Chartiere0f0cb32012-08-28 11:26:00 -07002154 }
Mathieu Chartier357e9be2012-08-01 11:00:14 -07002155 }
2156}
2157
Mathieu Chartier590fee92013-09-13 13:46:47 -07002158void Heap::SwapSemiSpaces() {
Mathieu Chartier31f44142014-04-08 14:40:03 -07002159 CHECK(bump_pointer_space_ != nullptr);
2160 CHECK(temp_space_ != nullptr);
Mathieu Chartier590fee92013-09-13 13:46:47 -07002161 std::swap(bump_pointer_space_, temp_space_);
2162}
2163
2164void Heap::Compact(space::ContinuousMemMapAllocSpace* target_space,
Zuo Wangf37a88b2014-07-10 04:26:41 -07002165 space::ContinuousMemMapAllocSpace* source_space,
2166 GcCause gc_cause) {
Mathieu Chartier590fee92013-09-13 13:46:47 -07002167 CHECK(kMovingCollector);
Mathieu Chartier590fee92013-09-13 13:46:47 -07002168 if (target_space != source_space) {
Mathieu Chartier6f365cc2014-04-23 12:42:27 -07002169 // Don't swap spaces since this isn't a typical semi space collection.
2170 semi_space_collector_->SetSwapSemiSpaces(false);
Mathieu Chartier590fee92013-09-13 13:46:47 -07002171 semi_space_collector_->SetFromSpace(source_space);
2172 semi_space_collector_->SetToSpace(target_space);
Zuo Wangf37a88b2014-07-10 04:26:41 -07002173 semi_space_collector_->Run(gc_cause, false);
Mathieu Chartier52e4b432014-06-10 11:22:31 -07002174 } else {
2175 CHECK(target_space->IsBumpPointerSpace())
2176 << "In-place compaction is only supported for bump pointer spaces";
2177 mark_compact_collector_->SetSpace(target_space->AsBumpPointerSpace());
2178 mark_compact_collector_->Run(kGcCauseCollectorTransition, false);
Mathieu Chartier590fee92013-09-13 13:46:47 -07002179 }
2180}
Anwar Ghuloum67f99412013-08-12 14:19:48 -07002181
Ian Rogers1d54e732013-05-02 21:10:01 -07002182collector::GcType Heap::CollectGarbageInternal(collector::GcType gc_type, GcCause gc_cause,
2183 bool clear_soft_references) {
Ian Rogers81d425b2012-09-27 16:03:43 -07002184 Thread* self = Thread::Current();
Mathieu Chartier590fee92013-09-13 13:46:47 -07002185 Runtime* runtime = Runtime::Current();
Mathieu Chartiercbb2d202013-11-14 17:45:16 -08002186 // If the heap can't run the GC, silently fail and return that no GC was run.
2187 switch (gc_type) {
Mathieu Chartiercbb2d202013-11-14 17:45:16 -08002188 case collector::kGcTypePartial: {
Mathieu Chartiere4cab172014-08-19 18:24:04 -07002189 if (!HasZygoteSpace()) {
Mathieu Chartiercbb2d202013-11-14 17:45:16 -08002190 return collector::kGcTypeNone;
2191 }
2192 break;
2193 }
2194 default: {
2195 // Other GC types don't have any special cases which makes them not runnable. The main case
2196 // here is full GC.
2197 }
2198 }
Mathieu Chartier65db8802012-11-20 12:36:46 -08002199 ScopedThreadStateChange tsc(self, kWaitingPerformingGc);
Ian Rogers81d425b2012-09-27 16:03:43 -07002200 Locks::mutator_lock_->AssertNotHeld(self);
Ian Rogers120f1c72012-09-28 17:17:10 -07002201 if (self->IsHandlingStackOverflow()) {
Mathieu Chartier50c138f2015-01-07 16:00:03 -08002202 // If we are throwing a stack overflow error we probably don't have enough remaining stack
2203 // space to run the GC.
2204 return collector::kGcTypeNone;
Ian Rogers120f1c72012-09-28 17:17:10 -07002205 }
Mathieu Chartierd5a89ee2014-01-31 09:55:13 -08002206 bool compacting_gc;
2207 {
2208 gc_complete_lock_->AssertNotHeld(self);
Andreas Gampe277ccbd2014-11-03 21:36:10 -08002209 ScopedThreadStateChange tsc2(self, kWaitingForGcToComplete);
Mathieu Chartierd5a89ee2014-01-31 09:55:13 -08002210 MutexLock mu(self, *gc_complete_lock_);
2211 // Ensure there is only one GC at a time.
Mathieu Chartier89a201e2014-05-02 10:27:26 -07002212 WaitForGcToCompleteLocked(gc_cause, self);
Mathieu Chartier31f44142014-04-08 14:40:03 -07002213 compacting_gc = IsMovingGc(collector_type_);
Mathieu Chartierd5a89ee2014-01-31 09:55:13 -08002214 // GC can be disabled if someone has a used GetPrimitiveArrayCritical.
2215 if (compacting_gc && disable_moving_gc_count_ != 0) {
2216 LOG(WARNING) << "Skipping GC due to disable moving GC count " << disable_moving_gc_count_;
2217 return collector::kGcTypeNone;
2218 }
2219 collector_type_running_ = collector_type_;
Ian Rogers00f7d0e2012-07-19 15:28:27 -07002220 }
Mathieu Chartierd5a89ee2014-01-31 09:55:13 -08002221
Mathieu Chartier590fee92013-09-13 13:46:47 -07002222 if (gc_cause == kGcCauseForAlloc && runtime->HasStatsEnabled()) {
2223 ++runtime->GetStats()->gc_for_alloc_count;
2224 ++self->GetStats()->gc_for_alloc_count;
Mathieu Chartier2fde5332012-09-14 14:51:54 -07002225 }
Mathieu Chartiere2c2f6e2014-12-16 18:49:31 -08002226 const uint64_t bytes_allocated_before_gc = GetBytesAllocated();
2227 // Approximate heap size.
2228 ATRACE_INT("Heap size (KB)", bytes_allocated_before_gc / KB);
Mathieu Chartier65db8802012-11-20 12:36:46 -08002229
Ian Rogers1d54e732013-05-02 21:10:01 -07002230 DCHECK_LT(gc_type, collector::kGcTypeMax);
2231 DCHECK_NE(gc_type, collector::kGcTypeNone);
Anwar Ghuloum67f99412013-08-12 14:19:48 -07002232
Mathieu Chartier590fee92013-09-13 13:46:47 -07002233 collector::GarbageCollector* collector = nullptr;
Mathieu Chartier50482232013-11-21 11:48:14 -08002234 // TODO: Clean this up.
Mathieu Chartier1d27b342014-01-28 12:51:09 -08002235 if (compacting_gc) {
Mathieu Chartier692fafd2013-11-29 17:24:40 -08002236 DCHECK(current_allocator_ == kAllocatorTypeBumpPointer ||
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -08002237 current_allocator_ == kAllocatorTypeTLAB ||
2238 current_allocator_ == kAllocatorTypeRegion ||
2239 current_allocator_ == kAllocatorTypeRegionTLAB);
Mathieu Chartier52e4b432014-06-10 11:22:31 -07002240 switch (collector_type_) {
2241 case kCollectorTypeSS:
2242 // Fall-through.
2243 case kCollectorTypeGSS:
2244 semi_space_collector_->SetFromSpace(bump_pointer_space_);
2245 semi_space_collector_->SetToSpace(temp_space_);
2246 semi_space_collector_->SetSwapSemiSpaces(true);
2247 collector = semi_space_collector_;
2248 break;
2249 case kCollectorTypeCC:
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -08002250 concurrent_copying_collector_->SetRegionSpace(region_space_);
Mathieu Chartier52e4b432014-06-10 11:22:31 -07002251 collector = concurrent_copying_collector_;
2252 break;
2253 case kCollectorTypeMC:
2254 mark_compact_collector_->SetSpace(bump_pointer_space_);
2255 collector = mark_compact_collector_;
2256 break;
2257 default:
2258 LOG(FATAL) << "Invalid collector type " << static_cast<size_t>(collector_type_);
Hiroshi Yamauchid5307ec2014-03-27 21:07:51 -07002259 }
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -08002260 if (collector != mark_compact_collector_ && collector != concurrent_copying_collector_) {
Mathieu Chartier52e4b432014-06-10 11:22:31 -07002261 temp_space_->GetMemMap()->Protect(PROT_READ | PROT_WRITE);
2262 CHECK(temp_space_->IsEmpty());
2263 }
2264 gc_type = collector::kGcTypeFull; // TODO: Not hard code this in.
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08002265 } else if (current_allocator_ == kAllocatorTypeRosAlloc ||
2266 current_allocator_ == kAllocatorTypeDlMalloc) {
Mathieu Chartierafe49982014-03-27 10:55:04 -07002267 collector = FindCollectorByGcType(gc_type);
Mathieu Chartier50482232013-11-21 11:48:14 -08002268 } else {
2269 LOG(FATAL) << "Invalid current allocator " << current_allocator_;
Mathieu Chartier590fee92013-09-13 13:46:47 -07002270 }
Mathieu Chartier08cef222014-10-22 17:18:34 -07002271 if (IsGcConcurrent()) {
2272 // Disable concurrent GC check so that we don't have spammy JNI requests.
2273 // This gets recalculated in GrowForUtilization. It is important that it is disabled /
2274 // calculated in the same thread so that there aren't any races that can cause it to become
2275 // permanantly disabled. b/17942071
2276 concurrent_start_bytes_ = std::numeric_limits<size_t>::max();
2277 }
Mathieu Chartier7bf82af2013-12-06 16:51:45 -08002278 CHECK(collector != nullptr)
Hiroshi Yamauchi3e417802014-03-20 12:03:02 -07002279 << "Could not find garbage collector with collector_type="
2280 << static_cast<size_t>(collector_type_) << " and gc_type=" << gc_type;
Mathieu Chartier6f365cc2014-04-23 12:42:27 -07002281 collector->Run(gc_cause, clear_soft_references || runtime->IsZygote());
Mathieu Chartier10fb83a2014-06-15 15:15:43 -07002282 total_objects_freed_ever_ += GetCurrentGcIteration()->GetFreedObjects();
2283 total_bytes_freed_ever_ += GetCurrentGcIteration()->GetFreedBytes();
Mathieu Chartiera5eae692014-12-17 17:56:03 -08002284 RequestTrim(self);
Mathieu Chartier39e32612013-11-12 16:28:05 -08002285 // Enqueue cleared references.
Mathieu Chartier308351a2014-06-15 12:39:02 -07002286 reference_processor_.EnqueueClearedReferences(self);
Mathieu Chartier590fee92013-09-13 13:46:47 -07002287 // Grow the heap so that we know when to perform the next GC.
Mathieu Chartiere2c2f6e2014-12-16 18:49:31 -08002288 GrowForUtilization(collector, bytes_allocated_before_gc);
Mathieu Chartier10fb83a2014-06-15 15:15:43 -07002289 const size_t duration = GetCurrentGcIteration()->GetDurationNs();
2290 const std::vector<uint64_t>& pause_times = GetCurrentGcIteration()->GetPauseTimes();
Mathieu Chartier62ab87b2014-04-28 12:22:07 -07002291 // Print the GC if it is an explicit GC (e.g. Runtime.gc()) or a slow GC
Mathieu Chartierf5997b42014-06-20 10:37:54 -07002292 // (mutator time blocked >= long_pause_log_threshold_).
Mathieu Chartier62ab87b2014-04-28 12:22:07 -07002293 bool log_gc = gc_cause == kGcCauseExplicit;
2294 if (!log_gc && CareAboutPauseTimes()) {
Mathieu Chartiere53225c2013-08-19 10:59:11 -07002295 // GC for alloc pauses the allocating thread, so consider it as a pause.
Mathieu Chartier62ab87b2014-04-28 12:22:07 -07002296 log_gc = duration > long_gc_log_threshold_ ||
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08002297 (gc_cause == kGcCauseForAlloc && duration > long_pause_log_threshold_);
Mathieu Chartier62ab87b2014-04-28 12:22:07 -07002298 for (uint64_t pause : pause_times) {
2299 log_gc = log_gc || pause >= long_pause_log_threshold_;
Mathieu Chartiere53225c2013-08-19 10:59:11 -07002300 }
Mathieu Chartier62ab87b2014-04-28 12:22:07 -07002301 }
2302 if (log_gc) {
2303 const size_t percent_free = GetPercentFree();
2304 const size_t current_heap_size = GetBytesAllocated();
2305 const size_t total_memory = GetTotalMemory();
2306 std::ostringstream pause_string;
2307 for (size_t i = 0; i < pause_times.size(); ++i) {
2308 pause_string << PrettyDuration((pause_times[i] / 1000) * 1000)
Mathieu Chartier6f365cc2014-04-23 12:42:27 -07002309 << ((i != pause_times.size() - 1) ? "," : "");
Mathieu Chartiere53225c2013-08-19 10:59:11 -07002310 }
Mathieu Chartier62ab87b2014-04-28 12:22:07 -07002311 LOG(INFO) << gc_cause << " " << collector->GetName()
Mathieu Chartier10fb83a2014-06-15 15:15:43 -07002312 << " GC freed " << current_gc_iteration_.GetFreedObjects() << "("
2313 << PrettySize(current_gc_iteration_.GetFreedBytes()) << ") AllocSpace objects, "
2314 << current_gc_iteration_.GetFreedLargeObjects() << "("
2315 << PrettySize(current_gc_iteration_.GetFreedLargeObjectBytes()) << ") LOS objects, "
Mathieu Chartier62ab87b2014-04-28 12:22:07 -07002316 << percent_free << "% free, " << PrettySize(current_heap_size) << "/"
2317 << PrettySize(total_memory) << ", " << "paused " << pause_string.str()
2318 << " total " << PrettyDuration((duration / 1000) * 1000);
Ian Rogersc7dd2952014-10-21 23:31:19 -07002319 VLOG(heap) << Dumpable<TimingLogger>(*current_gc_iteration_.GetTimings());
Mathieu Chartier2b82db42012-11-14 17:29:05 -08002320 }
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08002321 FinishGC(self, gc_type);
Anwar Ghuloum4446ab92013-08-09 21:17:25 -07002322 // Inform DDMS that a GC completed.
Ian Rogers15bf2d32012-08-28 17:33:04 -07002323 Dbg::GcDidFinish();
Mathieu Chartier866fb2a2012-09-10 10:47:49 -07002324 return gc_type;
Ian Rogers00f7d0e2012-07-19 15:28:27 -07002325}
Mathieu Chartiera6399032012-06-11 18:49:50 -07002326
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08002327void Heap::FinishGC(Thread* self, collector::GcType gc_type) {
2328 MutexLock mu(self, *gc_complete_lock_);
Mathieu Chartierd5a89ee2014-01-31 09:55:13 -08002329 collector_type_running_ = kCollectorTypeNone;
2330 if (gc_type != collector::kGcTypeNone) {
2331 last_gc_type_ = gc_type;
2332 }
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08002333 // Wake anyone who may have been waiting for the GC to complete.
2334 gc_complete_cond_->Broadcast(self);
2335}
2336
Mathieu Chartiere34fa1d2015-01-14 14:55:47 -08002337static void RootMatchesObjectVisitor(mirror::Object** root, void* arg,
2338 const RootInfo& /*root_info*/) {
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08002339 mirror::Object* obj = reinterpret_cast<mirror::Object*>(arg);
Mathieu Chartier815873e2014-02-13 18:02:13 -08002340 if (*root == obj) {
Mathieu Chartierfd678be2012-08-30 14:50:54 -07002341 LOG(INFO) << "Object " << obj << " is a root";
2342 }
2343}
2344
2345class ScanVisitor {
2346 public:
Brian Carlstromdf629502013-07-17 22:39:56 -07002347 void operator()(const mirror::Object* obj) const {
Mathieu Chartier0f72e412013-09-06 16:40:01 -07002348 LOG(ERROR) << "Would have rescanned object " << obj;
Mathieu Chartierfd678be2012-08-30 14:50:54 -07002349 }
2350};
2351
Ian Rogers1d54e732013-05-02 21:10:01 -07002352// Verify a reference from an object.
Mathieu Chartierfd678be2012-08-30 14:50:54 -07002353class VerifyReferenceVisitor {
2354 public:
Mathieu Chartier8ab7e782014-05-19 16:55:27 -07002355 explicit VerifyReferenceVisitor(Heap* heap, Atomic<size_t>* fail_count, bool verify_referent)
Ian Rogers1d54e732013-05-02 21:10:01 -07002356 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_, Locks::heap_bitmap_lock_)
Mathieu Chartier8ab7e782014-05-19 16:55:27 -07002357 : heap_(heap), fail_count_(fail_count), verify_referent_(verify_referent) {}
Ian Rogers1d54e732013-05-02 21:10:01 -07002358
Mathieu Chartier8ab7e782014-05-19 16:55:27 -07002359 size_t GetFailureCount() const {
Mathieu Chartiere9e55ac2014-05-21 17:48:25 -07002360 return fail_count_->LoadSequentiallyConsistent();
Mathieu Chartierfd678be2012-08-30 14:50:54 -07002361 }
2362
Mathieu Chartier407f7022014-02-18 14:37:05 -08002363 void operator()(mirror::Class* klass, mirror::Reference* ref) const
2364 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) {
Ian Rogers6a3c1fc2014-10-31 00:33:20 -07002365 UNUSED(klass);
Mathieu Chartier78f7b4c2014-05-06 10:57:27 -07002366 if (verify_referent_) {
Mathieu Chartier8ab7e782014-05-19 16:55:27 -07002367 VerifyReference(ref, ref->GetReferent(), mirror::Reference::ReferentOffset());
Mathieu Chartier78f7b4c2014-05-06 10:57:27 -07002368 }
Mathieu Chartier407f7022014-02-18 14:37:05 -08002369 }
2370
Mathieu Chartier3b05e9b2014-03-25 09:29:43 -07002371 void operator()(mirror::Object* obj, MemberOffset offset, bool /*is_static*/) const
Mathieu Chartier407f7022014-02-18 14:37:05 -08002372 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) {
Mathieu Chartier8ab7e782014-05-19 16:55:27 -07002373 VerifyReference(obj, obj->GetFieldObject<mirror::Object>(offset), offset);
Mathieu Chartier407f7022014-02-18 14:37:05 -08002374 }
2375
Mathieu Chartier8ab7e782014-05-19 16:55:27 -07002376 bool IsLive(mirror::Object* obj) const NO_THREAD_SAFETY_ANALYSIS {
2377 return heap_->IsLiveObjectLocked(obj, true, false, true);
2378 }
2379
Mathieu Chartiere34fa1d2015-01-14 14:55:47 -08002380 static void VerifyRootCallback(mirror::Object** root, void* arg, const RootInfo& root_info)
2381 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_) {
Mathieu Chartier8ab7e782014-05-19 16:55:27 -07002382 VerifyReferenceVisitor* visitor = reinterpret_cast<VerifyReferenceVisitor*>(arg);
2383 if (!visitor->VerifyReference(nullptr, *root, MemberOffset(0))) {
2384 LOG(ERROR) << "Root " << *root << " is dead with type " << PrettyTypeOf(*root)
Mathieu Chartiere34fa1d2015-01-14 14:55:47 -08002385 << " thread_id= " << root_info.GetThreadId() << " root_type= " << root_info.GetType();
Mathieu Chartier8ab7e782014-05-19 16:55:27 -07002386 }
2387 }
2388
2389 private:
Mathieu Chartier407f7022014-02-18 14:37:05 -08002390 // TODO: Fix the no thread safety analysis.
Mathieu Chartier8ab7e782014-05-19 16:55:27 -07002391 // Returns false on failure.
2392 bool VerifyReference(mirror::Object* obj, mirror::Object* ref, MemberOffset offset) const
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08002393 NO_THREAD_SAFETY_ANALYSIS {
Mathieu Chartier938a03b2014-01-16 15:10:31 -08002394 if (ref == nullptr || IsLive(ref)) {
2395 // Verify that the reference is live.
Mathieu Chartier8ab7e782014-05-19 16:55:27 -07002396 return true;
Mathieu Chartier938a03b2014-01-16 15:10:31 -08002397 }
Mathieu Chartiere9e55ac2014-05-21 17:48:25 -07002398 if (fail_count_->FetchAndAddSequentiallyConsistent(1) == 0) {
Mathieu Chartier938a03b2014-01-16 15:10:31 -08002399 // Print message on only on first failure to prevent spam.
2400 LOG(ERROR) << "!!!!!!!!!!!!!!Heap corruption detected!!!!!!!!!!!!!!!!!!!";
Mathieu Chartier938a03b2014-01-16 15:10:31 -08002401 }
2402 if (obj != nullptr) {
Mathieu Chartier8ab7e782014-05-19 16:55:27 -07002403 // Only do this part for non roots.
Ian Rogers1d54e732013-05-02 21:10:01 -07002404 accounting::CardTable* card_table = heap_->GetCardTable();
2405 accounting::ObjectStack* alloc_stack = heap_->allocation_stack_.get();
2406 accounting::ObjectStack* live_stack = heap_->live_stack_.get();
Ian Rogers13735952014-10-08 12:43:28 -07002407 uint8_t* card_addr = card_table->CardFromAddr(obj);
Mathieu Chartier938a03b2014-01-16 15:10:31 -08002408 LOG(ERROR) << "Object " << obj << " references dead object " << ref << " at offset "
2409 << offset << "\n card value = " << static_cast<int>(*card_addr);
2410 if (heap_->IsValidObjectAddress(obj->GetClass())) {
2411 LOG(ERROR) << "Obj type " << PrettyTypeOf(obj);
2412 } else {
2413 LOG(ERROR) << "Object " << obj << " class(" << obj->GetClass() << ") not a heap address";
Mathieu Chartier0f72e412013-09-06 16:40:01 -07002414 }
Mathieu Chartier938a03b2014-01-16 15:10:31 -08002415
Mathieu Chartierb363f662014-07-16 13:28:58 -07002416 // Attempt to find the class inside of the recently freed objects.
Mathieu Chartier938a03b2014-01-16 15:10:31 -08002417 space::ContinuousSpace* ref_space = heap_->FindContinuousSpaceFromObject(ref, true);
2418 if (ref_space != nullptr && ref_space->IsMallocSpace()) {
2419 space::MallocSpace* space = ref_space->AsMallocSpace();
2420 mirror::Class* ref_class = space->FindRecentFreedObject(ref);
2421 if (ref_class != nullptr) {
2422 LOG(ERROR) << "Reference " << ref << " found as a recently freed object with class "
2423 << PrettyClass(ref_class);
Mathieu Chartier0f72e412013-09-06 16:40:01 -07002424 } else {
Mathieu Chartier938a03b2014-01-16 15:10:31 -08002425 LOG(ERROR) << "Reference " << ref << " not found as a recently freed object";
Mathieu Chartier0f72e412013-09-06 16:40:01 -07002426 }
Mathieu Chartier938a03b2014-01-16 15:10:31 -08002427 }
Mathieu Chartier0f72e412013-09-06 16:40:01 -07002428
Mathieu Chartier938a03b2014-01-16 15:10:31 -08002429 if (ref->GetClass() != nullptr && heap_->IsValidObjectAddress(ref->GetClass()) &&
2430 ref->GetClass()->IsClass()) {
2431 LOG(ERROR) << "Ref type " << PrettyTypeOf(ref);
2432 } else {
2433 LOG(ERROR) << "Ref " << ref << " class(" << ref->GetClass()
2434 << ") is not a valid heap address";
2435 }
2436
Ian Rogers13735952014-10-08 12:43:28 -07002437 card_table->CheckAddrIsInCardTable(reinterpret_cast<const uint8_t*>(obj));
Mathieu Chartier938a03b2014-01-16 15:10:31 -08002438 void* cover_begin = card_table->AddrFromCard(card_addr);
2439 void* cover_end = reinterpret_cast<void*>(reinterpret_cast<size_t>(cover_begin) +
2440 accounting::CardTable::kCardSize);
2441 LOG(ERROR) << "Card " << reinterpret_cast<void*>(card_addr) << " covers " << cover_begin
2442 << "-" << cover_end;
Mathieu Chartiera8e8f9c2014-04-09 14:51:05 -07002443 accounting::ContinuousSpaceBitmap* bitmap =
2444 heap_->GetLiveBitmap()->GetContinuousSpaceBitmap(obj);
Mathieu Chartier938a03b2014-01-16 15:10:31 -08002445
2446 if (bitmap == nullptr) {
2447 LOG(ERROR) << "Object " << obj << " has no bitmap";
Mathieu Chartier4e305412014-02-19 10:54:44 -08002448 if (!VerifyClassClass(obj->GetClass())) {
Mathieu Chartier938a03b2014-01-16 15:10:31 -08002449 LOG(ERROR) << "Object " << obj << " failed class verification!";
Mathieu Chartier0f72e412013-09-06 16:40:01 -07002450 }
Mathieu Chartier938a03b2014-01-16 15:10:31 -08002451 } else {
Ian Rogers1d54e732013-05-02 21:10:01 -07002452 // Print out how the object is live.
Mathieu Chartier938a03b2014-01-16 15:10:31 -08002453 if (bitmap->Test(obj)) {
Ian Rogers1d54e732013-05-02 21:10:01 -07002454 LOG(ERROR) << "Object " << obj << " found in live bitmap";
2455 }
Mathieu Chartier0f72e412013-09-06 16:40:01 -07002456 if (alloc_stack->Contains(const_cast<mirror::Object*>(obj))) {
Ian Rogers1d54e732013-05-02 21:10:01 -07002457 LOG(ERROR) << "Object " << obj << " found in allocation stack";
2458 }
Mathieu Chartier0f72e412013-09-06 16:40:01 -07002459 if (live_stack->Contains(const_cast<mirror::Object*>(obj))) {
Ian Rogers1d54e732013-05-02 21:10:01 -07002460 LOG(ERROR) << "Object " << obj << " found in live stack";
2461 }
Mathieu Chartier0f72e412013-09-06 16:40:01 -07002462 if (alloc_stack->Contains(const_cast<mirror::Object*>(ref))) {
2463 LOG(ERROR) << "Ref " << ref << " found in allocation stack";
2464 }
2465 if (live_stack->Contains(const_cast<mirror::Object*>(ref))) {
2466 LOG(ERROR) << "Ref " << ref << " found in live stack";
2467 }
Ian Rogers1d54e732013-05-02 21:10:01 -07002468 // Attempt to see if the card table missed the reference.
2469 ScanVisitor scan_visitor;
Ian Rogers13735952014-10-08 12:43:28 -07002470 uint8_t* byte_cover_begin = reinterpret_cast<uint8_t*>(card_table->AddrFromCard(card_addr));
Lei Li727b2942015-01-15 11:26:34 +08002471 card_table->Scan<false>(bitmap, byte_cover_begin,
2472 byte_cover_begin + accounting::CardTable::kCardSize, scan_visitor);
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07002473 }
Mathieu Chartier938a03b2014-01-16 15:10:31 -08002474
2475 // Search to see if any of the roots reference our object.
2476 void* arg = const_cast<void*>(reinterpret_cast<const void*>(obj));
Mathieu Chartier893263b2014-03-04 11:07:42 -08002477 Runtime::Current()->VisitRoots(&RootMatchesObjectVisitor, arg);
Mathieu Chartier938a03b2014-01-16 15:10:31 -08002478
2479 // Search to see if any of the roots reference our reference.
2480 arg = const_cast<void*>(reinterpret_cast<const void*>(ref));
Mathieu Chartier893263b2014-03-04 11:07:42 -08002481 Runtime::Current()->VisitRoots(&RootMatchesObjectVisitor, arg);
Mathieu Chartierfd678be2012-08-30 14:50:54 -07002482 }
Mathieu Chartier8ab7e782014-05-19 16:55:27 -07002483 return false;
Mathieu Chartierfd678be2012-08-30 14:50:54 -07002484 }
2485
Ian Rogers1d54e732013-05-02 21:10:01 -07002486 Heap* const heap_;
Mathieu Chartier8ab7e782014-05-19 16:55:27 -07002487 Atomic<size_t>* const fail_count_;
2488 const bool verify_referent_;
Mathieu Chartierfd678be2012-08-30 14:50:54 -07002489};
2490
Ian Rogers1d54e732013-05-02 21:10:01 -07002491// Verify all references within an object, for use with HeapBitmap::Visit.
Mathieu Chartierfd678be2012-08-30 14:50:54 -07002492class VerifyObjectVisitor {
2493 public:
Mathieu Chartier8ab7e782014-05-19 16:55:27 -07002494 explicit VerifyObjectVisitor(Heap* heap, Atomic<size_t>* fail_count, bool verify_referent)
2495 : heap_(heap), fail_count_(fail_count), verify_referent_(verify_referent) {
Mathieu Chartier78f7b4c2014-05-06 10:57:27 -07002496 }
Mathieu Chartierfd678be2012-08-30 14:50:54 -07002497
Mathieu Chartier590fee92013-09-13 13:46:47 -07002498 void operator()(mirror::Object* obj) const
Ian Rogersb726dcb2012-09-05 08:57:23 -07002499 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_, Locks::heap_bitmap_lock_) {
Ian Rogers1d54e732013-05-02 21:10:01 -07002500 // Note: we are verifying the references in obj but not obj itself, this is because obj must
2501 // be live or else how did we find it in the live bitmap?
Mathieu Chartier8ab7e782014-05-19 16:55:27 -07002502 VerifyReferenceVisitor visitor(heap_, fail_count_, verify_referent_);
Mathieu Chartier0f72e412013-09-06 16:40:01 -07002503 // The class doesn't count as a reference but we should verify it anyways.
Mathieu Chartier407f7022014-02-18 14:37:05 -08002504 obj->VisitReferences<true>(visitor, visitor);
Mathieu Chartierfd678be2012-08-30 14:50:54 -07002505 }
2506
Mathieu Chartier590fee92013-09-13 13:46:47 -07002507 static void VisitCallback(mirror::Object* obj, void* arg)
2508 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_, Locks::heap_bitmap_lock_) {
2509 VerifyObjectVisitor* visitor = reinterpret_cast<VerifyObjectVisitor*>(arg);
2510 visitor->operator()(obj);
2511 }
2512
Mathieu Chartier8ab7e782014-05-19 16:55:27 -07002513 size_t GetFailureCount() const {
Mathieu Chartiere9e55ac2014-05-21 17:48:25 -07002514 return fail_count_->LoadSequentiallyConsistent();
Mathieu Chartierfd678be2012-08-30 14:50:54 -07002515 }
2516
2517 private:
Ian Rogers1d54e732013-05-02 21:10:01 -07002518 Heap* const heap_;
Mathieu Chartier8ab7e782014-05-19 16:55:27 -07002519 Atomic<size_t>* const fail_count_;
Mathieu Chartier78f7b4c2014-05-06 10:57:27 -07002520 const bool verify_referent_;
Mathieu Chartierfd678be2012-08-30 14:50:54 -07002521};
2522
Mathieu Chartierc1790162014-05-23 10:54:50 -07002523void Heap::PushOnAllocationStackWithInternalGC(Thread* self, mirror::Object** obj) {
2524 // Slow path, the allocation stack push back must have already failed.
2525 DCHECK(!allocation_stack_->AtomicPushBack(*obj));
2526 do {
2527 // TODO: Add handle VerifyObject.
2528 StackHandleScope<1> hs(self);
2529 HandleWrapper<mirror::Object> wrapper(hs.NewHandleWrapper(obj));
2530 // Push our object into the reserve region of the allocaiton stack. This is only required due
2531 // to heap verification requiring that roots are live (either in the live bitmap or in the
2532 // allocation stack).
2533 CHECK(allocation_stack_->AtomicPushBackIgnoreGrowthLimit(*obj));
2534 CollectGarbageInternal(collector::kGcTypeSticky, kGcCauseForAlloc, false);
2535 } while (!allocation_stack_->AtomicPushBack(*obj));
2536}
2537
2538void Heap::PushOnThreadLocalAllocationStackWithInternalGC(Thread* self, mirror::Object** obj) {
2539 // Slow path, the allocation stack push back must have already failed.
2540 DCHECK(!self->PushOnThreadLocalAllocationStack(*obj));
2541 mirror::Object** start_address;
2542 mirror::Object** end_address;
2543 while (!allocation_stack_->AtomicBumpBack(kThreadLocalAllocationStackSize, &start_address,
2544 &end_address)) {
2545 // TODO: Add handle VerifyObject.
2546 StackHandleScope<1> hs(self);
2547 HandleWrapper<mirror::Object> wrapper(hs.NewHandleWrapper(obj));
2548 // Push our object into the reserve region of the allocaiton stack. This is only required due
2549 // to heap verification requiring that roots are live (either in the live bitmap or in the
2550 // allocation stack).
2551 CHECK(allocation_stack_->AtomicPushBackIgnoreGrowthLimit(*obj));
2552 // Push into the reserve allocation stack.
2553 CollectGarbageInternal(collector::kGcTypeSticky, kGcCauseForAlloc, false);
2554 }
2555 self->SetThreadLocalAllocationStack(start_address, end_address);
2556 // Retry on the new thread-local allocation stack.
2557 CHECK(self->PushOnThreadLocalAllocationStack(*obj)); // Must succeed.
2558}
2559
Mathieu Chartierfd678be2012-08-30 14:50:54 -07002560// Must do this with mutators suspended since we are directly accessing the allocation stacks.
Mathieu Chartier8ab7e782014-05-19 16:55:27 -07002561size_t Heap::VerifyHeapReferences(bool verify_referents) {
Hiroshi Yamauchi1ed90612014-02-14 15:00:51 -08002562 Thread* self = Thread::Current();
2563 Locks::mutator_lock_->AssertExclusiveHeld(self);
Mathieu Chartierfd678be2012-08-30 14:50:54 -07002564 // Lets sort our allocation stacks so that we can efficiently binary search them.
Ian Rogers1d54e732013-05-02 21:10:01 -07002565 allocation_stack_->Sort();
2566 live_stack_->Sort();
Hiroshi Yamauchi1ed90612014-02-14 15:00:51 -08002567 // Since we sorted the allocation stack content, need to revoke all
2568 // thread-local allocation stacks.
2569 RevokeAllThreadLocalAllocationStacks(self);
Mathieu Chartier8ab7e782014-05-19 16:55:27 -07002570 Atomic<size_t> fail_count_(0);
2571 VerifyObjectVisitor visitor(this, &fail_count_, verify_referents);
Mathieu Chartier0f72e412013-09-06 16:40:01 -07002572 // Verify objects in the allocation stack since these will be objects which were:
2573 // 1. Allocated prior to the GC (pre GC verification).
2574 // 2. Allocated during the GC (pre sweep GC verification).
Mathieu Chartier0f72e412013-09-06 16:40:01 -07002575 // We don't want to verify the objects in the live stack since they themselves may be
Mathieu Chartierfd678be2012-08-30 14:50:54 -07002576 // pointing to dead objects if they are not reachable.
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -08002577 VisitObjectsPaused(VerifyObjectVisitor::VisitCallback, &visitor);
Mathieu Chartier590fee92013-09-13 13:46:47 -07002578 // Verify the roots:
Mathieu Chartier8ab7e782014-05-19 16:55:27 -07002579 Runtime::Current()->VisitRoots(VerifyReferenceVisitor::VerifyRootCallback, &visitor);
2580 if (visitor.GetFailureCount() > 0) {
Mathieu Chartier0f72e412013-09-06 16:40:01 -07002581 // Dump mod-union tables.
Mathieu Chartier11409ae2013-09-23 11:49:36 -07002582 for (const auto& table_pair : mod_union_tables_) {
2583 accounting::ModUnionTable* mod_union_table = table_pair.second;
2584 mod_union_table->Dump(LOG(ERROR) << mod_union_table->GetName() << ": ");
2585 }
Hiroshi Yamauchi38e68e92014-03-07 13:59:08 -08002586 // Dump remembered sets.
2587 for (const auto& table_pair : remembered_sets_) {
2588 accounting::RememberedSet* remembered_set = table_pair.second;
2589 remembered_set->Dump(LOG(ERROR) << remembered_set->GetName() << ": ");
2590 }
Mathieu Chartier4c13a3f2014-07-14 14:57:16 -07002591 DumpSpaces(LOG(ERROR));
Mathieu Chartierfd678be2012-08-30 14:50:54 -07002592 }
Mathieu Chartier8ab7e782014-05-19 16:55:27 -07002593 return visitor.GetFailureCount();
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07002594}
2595
2596class VerifyReferenceCardVisitor {
2597 public:
2598 VerifyReferenceCardVisitor(Heap* heap, bool* failed)
2599 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_,
2600 Locks::heap_bitmap_lock_)
Ian Rogers1d54e732013-05-02 21:10:01 -07002601 : heap_(heap), failed_(failed) {
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07002602 }
2603
Mathieu Chartier4da7f2f2012-11-13 12:51:01 -08002604 // TODO: Fix lock analysis to not use NO_THREAD_SAFETY_ANALYSIS, requires support for
2605 // annotalysis on visitors.
Mathieu Chartier407f7022014-02-18 14:37:05 -08002606 void operator()(mirror::Object* obj, MemberOffset offset, bool is_static) const
2607 NO_THREAD_SAFETY_ANALYSIS {
Ian Rogersb0fa5dc2014-04-28 16:47:08 -07002608 mirror::Object* ref = obj->GetFieldObject<mirror::Object>(offset);
Mathieu Chartier4da7f2f2012-11-13 12:51:01 -08002609 // Filter out class references since changing an object's class does not mark the card as dirty.
2610 // Also handles large objects, since the only reference they hold is a class reference.
Mathieu Chartier407f7022014-02-18 14:37:05 -08002611 if (ref != nullptr && !ref->IsClass()) {
Ian Rogers1d54e732013-05-02 21:10:01 -07002612 accounting::CardTable* card_table = heap_->GetCardTable();
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07002613 // If the object is not dirty and it is referencing something in the live stack other than
2614 // class, then it must be on a dirty card.
Mathieu Chartier7469ebf2012-09-24 16:28:36 -07002615 if (!card_table->AddrIsInCardTable(obj)) {
2616 LOG(ERROR) << "Object " << obj << " is not in the address range of the card table";
2617 *failed_ = true;
Mathieu Chartier2b82db42012-11-14 17:29:05 -08002618 } else if (!card_table->IsDirty(obj)) {
Mathieu Chartier938a03b2014-01-16 15:10:31 -08002619 // TODO: Check mod-union tables.
Mathieu Chartier4da7f2f2012-11-13 12:51:01 -08002620 // Card should be either kCardDirty if it got re-dirtied after we aged it, or
2621 // kCardDirty - 1 if it didnt get touched since we aged it.
Ian Rogers1d54e732013-05-02 21:10:01 -07002622 accounting::ObjectStack* live_stack = heap_->live_stack_.get();
Mathieu Chartier407f7022014-02-18 14:37:05 -08002623 if (live_stack->ContainsSorted(ref)) {
2624 if (live_stack->ContainsSorted(obj)) {
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07002625 LOG(ERROR) << "Object " << obj << " found in live stack";
2626 }
2627 if (heap_->GetLiveBitmap()->Test(obj)) {
2628 LOG(ERROR) << "Object " << obj << " found in live bitmap";
2629 }
2630 LOG(ERROR) << "Object " << obj << " " << PrettyTypeOf(obj)
2631 << " references " << ref << " " << PrettyTypeOf(ref) << " in live stack";
2632
2633 // Print which field of the object is dead.
2634 if (!obj->IsObjectArray()) {
Ian Rogersef7d42f2014-01-06 12:55:46 -08002635 mirror::Class* klass = is_static ? obj->AsClass() : obj->GetClass();
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07002636 CHECK(klass != NULL);
Ian Rogersef7d42f2014-01-06 12:55:46 -08002637 mirror::ObjectArray<mirror::ArtField>* fields = is_static ? klass->GetSFields()
2638 : klass->GetIFields();
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07002639 CHECK(fields != NULL);
2640 for (int32_t i = 0; i < fields->GetLength(); ++i) {
Ian Rogersef7d42f2014-01-06 12:55:46 -08002641 mirror::ArtField* cur = fields->Get(i);
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07002642 if (cur->GetOffset().Int32Value() == offset.Int32Value()) {
2643 LOG(ERROR) << (is_static ? "Static " : "") << "field in the live stack is "
2644 << PrettyField(cur);
2645 break;
2646 }
2647 }
2648 } else {
Ian Rogersef7d42f2014-01-06 12:55:46 -08002649 mirror::ObjectArray<mirror::Object>* object_array =
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08002650 obj->AsObjectArray<mirror::Object>();
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07002651 for (int32_t i = 0; i < object_array->GetLength(); ++i) {
2652 if (object_array->Get(i) == ref) {
2653 LOG(ERROR) << (is_static ? "Static " : "") << "obj[" << i << "] = ref";
2654 }
2655 }
2656 }
2657
2658 *failed_ = true;
2659 }
2660 }
2661 }
2662 }
2663
2664 private:
Ian Rogers1d54e732013-05-02 21:10:01 -07002665 Heap* const heap_;
2666 bool* const failed_;
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07002667};
2668
2669class VerifyLiveStackReferences {
2670 public:
Brian Carlstrom93ba8932013-07-17 21:31:49 -07002671 explicit VerifyLiveStackReferences(Heap* heap)
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07002672 : heap_(heap),
Brian Carlstrom93ba8932013-07-17 21:31:49 -07002673 failed_(false) {}
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07002674
Mathieu Chartier11409ae2013-09-23 11:49:36 -07002675 void operator()(mirror::Object* obj) const
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07002676 SHARED_LOCKS_REQUIRED(Locks::mutator_lock_, Locks::heap_bitmap_lock_) {
2677 VerifyReferenceCardVisitor visitor(heap_, const_cast<bool*>(&failed_));
Ian Rogersb0fa5dc2014-04-28 16:47:08 -07002678 obj->VisitReferences<true>(visitor, VoidFunctor());
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07002679 }
2680
2681 bool Failed() const {
2682 return failed_;
2683 }
2684
2685 private:
Ian Rogers1d54e732013-05-02 21:10:01 -07002686 Heap* const heap_;
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07002687 bool failed_;
2688};
2689
2690bool Heap::VerifyMissingCardMarks() {
Hiroshi Yamauchi1ed90612014-02-14 15:00:51 -08002691 Thread* self = Thread::Current();
2692 Locks::mutator_lock_->AssertExclusiveHeld(self);
Mathieu Chartier2b82db42012-11-14 17:29:05 -08002693 // We need to sort the live stack since we binary search it.
Ian Rogers1d54e732013-05-02 21:10:01 -07002694 live_stack_->Sort();
Hiroshi Yamauchi1ed90612014-02-14 15:00:51 -08002695 // Since we sorted the allocation stack content, need to revoke all
2696 // thread-local allocation stacks.
2697 RevokeAllThreadLocalAllocationStacks(self);
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07002698 VerifyLiveStackReferences visitor(this);
2699 GetLiveBitmap()->Visit(visitor);
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07002700 // We can verify objects in the live stack since none of these should reference dead objects.
Ian Rogers2dd0e2c2013-01-24 12:42:14 -08002701 for (mirror::Object** it = live_stack_->Begin(); it != live_stack_->End(); ++it) {
Hiroshi Yamauchif5b0e202014-02-11 17:02:22 -08002702 if (!kUseThreadLocalAllocationStack || *it != nullptr) {
2703 visitor(*it);
2704 }
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07002705 }
Mathieu Chartier4c13a3f2014-07-14 14:57:16 -07002706 return !visitor.Failed();
Mathieu Chartierfd678be2012-08-30 14:50:54 -07002707}
2708
Hiroshi Yamauchif5b0e202014-02-11 17:02:22 -08002709void Heap::SwapStacks(Thread* self) {
Ian Rogers6a3c1fc2014-10-31 00:33:20 -07002710 UNUSED(self);
Hiroshi Yamauchif5b0e202014-02-11 17:02:22 -08002711 if (kUseThreadLocalAllocationStack) {
2712 live_stack_->AssertAllZero();
2713 }
Mathieu Chartierd22d5482012-11-06 17:14:12 -08002714 allocation_stack_.swap(live_stack_);
Mathieu Chartierc7b83a02012-09-11 18:07:39 -07002715}
2716
Hiroshi Yamauchif5b0e202014-02-11 17:02:22 -08002717void Heap::RevokeAllThreadLocalAllocationStacks(Thread* self) {
Hiroshi Yamauchif5b0e202014-02-11 17:02:22 -08002718 // This must be called only during the pause.
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -08002719 DCHECK(Locks::mutator_lock_->IsExclusiveHeld(self));
Hiroshi Yamauchif5b0e202014-02-11 17:02:22 -08002720 MutexLock mu(self, *Locks::runtime_shutdown_lock_);
2721 MutexLock mu2(self, *Locks::thread_list_lock_);
2722 std::list<Thread*> thread_list = Runtime::Current()->GetThreadList()->GetList();
2723 for (Thread* t : thread_list) {
2724 t->RevokeThreadLocalAllocationStack();
2725 }
2726}
2727
Ian Rogers68d8b422014-07-17 11:09:10 -07002728void Heap::AssertThreadLocalBuffersAreRevoked(Thread* thread) {
2729 if (kIsDebugBuild) {
2730 if (rosalloc_space_ != nullptr) {
2731 rosalloc_space_->AssertThreadLocalBuffersAreRevoked(thread);
2732 }
2733 if (bump_pointer_space_ != nullptr) {
2734 bump_pointer_space_->AssertThreadLocalBuffersAreRevoked(thread);
2735 }
2736 }
2737}
2738
Hiroshi Yamauchic93c5302014-03-20 16:15:37 -07002739void Heap::AssertAllBumpPointerSpaceThreadLocalBuffersAreRevoked() {
2740 if (kIsDebugBuild) {
2741 if (bump_pointer_space_ != nullptr) {
2742 bump_pointer_space_->AssertAllThreadLocalBuffersAreRevoked();
2743 }
2744 }
2745}
2746
Mathieu Chartier11409ae2013-09-23 11:49:36 -07002747accounting::ModUnionTable* Heap::FindModUnionTableFromSpace(space::Space* space) {
2748 auto it = mod_union_tables_.find(space);
2749 if (it == mod_union_tables_.end()) {
2750 return nullptr;
2751 }
2752 return it->second;
2753}
2754
Hiroshi Yamauchi38e68e92014-03-07 13:59:08 -08002755accounting::RememberedSet* Heap::FindRememberedSetFromSpace(space::Space* space) {
2756 auto it = remembered_sets_.find(space);
2757 if (it == remembered_sets_.end()) {
2758 return nullptr;
2759 }
2760 return it->second;
2761}
2762
Mathieu Chartier10fb83a2014-06-15 15:15:43 -07002763void Heap::ProcessCards(TimingLogger* timings, bool use_rem_sets) {
Mathieu Chartierf5997b42014-06-20 10:37:54 -07002764 TimingLogger::ScopedTiming t(__FUNCTION__, timings);
Ian Rogers1d54e732013-05-02 21:10:01 -07002765 // Clear cards and keep track of cards cleared in the mod-union table.
Mathieu Chartier02e25112013-08-14 16:14:24 -07002766 for (const auto& space : continuous_spaces_) {
Mathieu Chartier11409ae2013-09-23 11:49:36 -07002767 accounting::ModUnionTable* table = FindModUnionTableFromSpace(space);
Hiroshi Yamauchi38e68e92014-03-07 13:59:08 -08002768 accounting::RememberedSet* rem_set = FindRememberedSetFromSpace(space);
Mathieu Chartier11409ae2013-09-23 11:49:36 -07002769 if (table != nullptr) {
2770 const char* name = space->IsZygoteSpace() ? "ZygoteModUnionClearCards" :
2771 "ImageModUnionClearCards";
Andreas Gampe277ccbd2014-11-03 21:36:10 -08002772 TimingLogger::ScopedTiming t2(name, timings);
Mathieu Chartier11409ae2013-09-23 11:49:36 -07002773 table->ClearCards();
Hiroshi Yamauchi38e68e92014-03-07 13:59:08 -08002774 } else if (use_rem_sets && rem_set != nullptr) {
2775 DCHECK(collector::SemiSpace::kUseRememberedSet && collector_type_ == kCollectorTypeGSS)
2776 << static_cast<int>(collector_type_);
Andreas Gampe277ccbd2014-11-03 21:36:10 -08002777 TimingLogger::ScopedTiming t2("AllocSpaceRemSetClearCards", timings);
Hiroshi Yamauchi38e68e92014-03-07 13:59:08 -08002778 rem_set->ClearCards();
Mathieu Chartier590fee92013-09-13 13:46:47 -07002779 } else if (space->GetType() != space::kSpaceTypeBumpPointerSpace) {
Andreas Gampe277ccbd2014-11-03 21:36:10 -08002780 TimingLogger::ScopedTiming t2("AllocSpaceClearCards", timings);
Mathieu Chartierd22d5482012-11-06 17:14:12 -08002781 // No mod union table for the AllocSpace. Age the cards so that the GC knows that these cards
2782 // were dirty before the GC started.
Mathieu Chartierbd0a6532014-02-27 11:14:21 -08002783 // TODO: Need to use atomic for the case where aged(cleaning thread) -> dirty(other thread)
2784 // -> clean(cleaning thread).
Mathieu Chartier590fee92013-09-13 13:46:47 -07002785 // The races are we either end up with: Aged card, unaged card. Since we have the checkpoint
Mathieu Chartier938a03b2014-01-16 15:10:31 -08002786 // roots and then we scan / update mod union tables after. We will always scan either card.
Mathieu Chartier590fee92013-09-13 13:46:47 -07002787 // If we end up with the non aged card, we scan it it in the pause.
Mathieu Chartier10fb83a2014-06-15 15:15:43 -07002788 card_table_->ModifyCardsAtomic(space->Begin(), space->End(), AgeCardVisitor(),
2789 VoidFunctor());
Mathieu Chartier7469ebf2012-09-24 16:28:36 -07002790 }
2791 }
2792}
2793
Mathieu Chartier407f7022014-02-18 14:37:05 -08002794static void IdentityMarkHeapReferenceCallback(mirror::HeapReference<mirror::Object>*, void*) {
Mathieu Chartier11409ae2013-09-23 11:49:36 -07002795}
2796
Mathieu Chartier6f365cc2014-04-23 12:42:27 -07002797void Heap::PreGcVerificationPaused(collector::GarbageCollector* gc) {
2798 Thread* const self = Thread::Current();
Mathieu Chartier10fb83a2014-06-15 15:15:43 -07002799 TimingLogger* const timings = current_gc_iteration_.GetTimings();
Mathieu Chartierf5997b42014-06-20 10:37:54 -07002800 TimingLogger::ScopedTiming t(__FUNCTION__, timings);
Mathieu Chartier2b82db42012-11-14 17:29:05 -08002801 if (verify_pre_gc_heap_) {
Andreas Gampe277ccbd2014-11-03 21:36:10 -08002802 TimingLogger::ScopedTiming t2("(Paused)PreGcVerifyHeapReferences", timings);
Mathieu Chartier8ab7e782014-05-19 16:55:27 -07002803 size_t failures = VerifyHeapReferences();
2804 if (failures > 0) {
2805 LOG(FATAL) << "Pre " << gc->GetName() << " heap verification failed with " << failures
2806 << " failures";
Mathieu Chartier2b82db42012-11-14 17:29:05 -08002807 }
Mathieu Chartier4da7f2f2012-11-13 12:51:01 -08002808 }
Mathieu Chartier2b82db42012-11-14 17:29:05 -08002809 // Check that all objects which reference things in the live stack are on dirty cards.
2810 if (verify_missing_card_marks_) {
Andreas Gampe277ccbd2014-11-03 21:36:10 -08002811 TimingLogger::ScopedTiming t2("(Paused)PreGcVerifyMissingCardMarks", timings);
Mathieu Chartier6f365cc2014-04-23 12:42:27 -07002812 ReaderMutexLock mu(self, *Locks::heap_bitmap_lock_);
2813 SwapStacks(self);
2814 // Sort the live stack so that we can quickly binary search it later.
Mathieu Chartier4c13a3f2014-07-14 14:57:16 -07002815 CHECK(VerifyMissingCardMarks()) << "Pre " << gc->GetName()
2816 << " missing card mark verification failed\n" << DumpSpaces();
Mathieu Chartier6f365cc2014-04-23 12:42:27 -07002817 SwapStacks(self);
Mathieu Chartier2b82db42012-11-14 17:29:05 -08002818 }
Mathieu Chartier2b82db42012-11-14 17:29:05 -08002819 if (verify_mod_union_table_) {
Andreas Gampe277ccbd2014-11-03 21:36:10 -08002820 TimingLogger::ScopedTiming t2("(Paused)PreGcVerifyModUnionTables", timings);
Mathieu Chartier2b82db42012-11-14 17:29:05 -08002821 ReaderMutexLock reader_lock(self, *Locks::heap_bitmap_lock_);
Mathieu Chartier11409ae2013-09-23 11:49:36 -07002822 for (const auto& table_pair : mod_union_tables_) {
2823 accounting::ModUnionTable* mod_union_table = table_pair.second;
Mathieu Chartier407f7022014-02-18 14:37:05 -08002824 mod_union_table->UpdateAndMarkReferences(IdentityMarkHeapReferenceCallback, nullptr);
Mathieu Chartier11409ae2013-09-23 11:49:36 -07002825 mod_union_table->Verify();
2826 }
Mathieu Chartier6f365cc2014-04-23 12:42:27 -07002827 }
2828}
2829
2830void Heap::PreGcVerification(collector::GarbageCollector* gc) {
Mathieu Chartier0651d412014-04-29 14:37:57 -07002831 if (verify_pre_gc_heap_ || verify_missing_card_marks_ || verify_mod_union_table_) {
Mathieu Chartier6f365cc2014-04-23 12:42:27 -07002832 collector::GarbageCollector::ScopedPause pause(gc);
2833 PreGcVerificationPaused(gc);
2834 }
2835}
2836
2837void Heap::PrePauseRosAllocVerification(collector::GarbageCollector* gc) {
Ian Rogers6a3c1fc2014-10-31 00:33:20 -07002838 UNUSED(gc);
Mathieu Chartier6f365cc2014-04-23 12:42:27 -07002839 // TODO: Add a new runtime option for this?
2840 if (verify_pre_gc_rosalloc_) {
Mathieu Chartier10fb83a2014-06-15 15:15:43 -07002841 RosAllocVerification(current_gc_iteration_.GetTimings(), "PreGcRosAllocVerification");
Mathieu Chartier2b82db42012-11-14 17:29:05 -08002842 }
Mathieu Chartier4da7f2f2012-11-13 12:51:01 -08002843}
2844
Ian Rogers1d54e732013-05-02 21:10:01 -07002845void Heap::PreSweepingGcVerification(collector::GarbageCollector* gc) {
Mathieu Chartier6f365cc2014-04-23 12:42:27 -07002846 Thread* const self = Thread::Current();
Mathieu Chartier10fb83a2014-06-15 15:15:43 -07002847 TimingLogger* const timings = current_gc_iteration_.GetTimings();
Mathieu Chartierf5997b42014-06-20 10:37:54 -07002848 TimingLogger::ScopedTiming t(__FUNCTION__, timings);
Mathieu Chartier2b82db42012-11-14 17:29:05 -08002849 // Called before sweeping occurs since we want to make sure we are not going so reclaim any
2850 // reachable objects.
Mathieu Chartier6f365cc2014-04-23 12:42:27 -07002851 if (verify_pre_sweeping_heap_) {
Andreas Gampe277ccbd2014-11-03 21:36:10 -08002852 TimingLogger::ScopedTiming t2("(Paused)PostSweepingVerifyHeapReferences", timings);
Ian Rogers1d54e732013-05-02 21:10:01 -07002853 CHECK_NE(self->GetState(), kRunnable);
Hiroshi Yamauchi0c8c3032015-01-16 16:54:35 -08002854 {
2855 WriterMutexLock mu(self, *Locks::heap_bitmap_lock_);
2856 // Swapping bound bitmaps does nothing.
2857 gc->SwapBitmaps();
2858 }
Mathieu Chartier78f7b4c2014-05-06 10:57:27 -07002859 // Pass in false since concurrent reference processing can mean that the reference referents
2860 // may point to dead objects at the point which PreSweepingGcVerification is called.
Mathieu Chartier8ab7e782014-05-19 16:55:27 -07002861 size_t failures = VerifyHeapReferences(false);
2862 if (failures > 0) {
2863 LOG(FATAL) << "Pre sweeping " << gc->GetName() << " GC verification failed with " << failures
2864 << " failures";
Mathieu Chartier6f365cc2014-04-23 12:42:27 -07002865 }
Hiroshi Yamauchi0c8c3032015-01-16 16:54:35 -08002866 {
2867 WriterMutexLock mu(self, *Locks::heap_bitmap_lock_);
2868 gc->SwapBitmaps();
2869 }
Mathieu Chartier6f365cc2014-04-23 12:42:27 -07002870 }
2871 if (verify_pre_sweeping_rosalloc_) {
2872 RosAllocVerification(timings, "PreSweepingRosAllocVerification");
2873 }
2874}
2875
2876void Heap::PostGcVerificationPaused(collector::GarbageCollector* gc) {
2877 // Only pause if we have to do some verification.
2878 Thread* const self = Thread::Current();
Mathieu Chartier10fb83a2014-06-15 15:15:43 -07002879 TimingLogger* const timings = GetCurrentGcIteration()->GetTimings();
Mathieu Chartierf5997b42014-06-20 10:37:54 -07002880 TimingLogger::ScopedTiming t(__FUNCTION__, timings);
Mathieu Chartier6f365cc2014-04-23 12:42:27 -07002881 if (verify_system_weaks_) {
2882 ReaderMutexLock mu2(self, *Locks::heap_bitmap_lock_);
2883 collector::MarkSweep* mark_sweep = down_cast<collector::MarkSweep*>(gc);
2884 mark_sweep->VerifySystemWeaks();
2885 }
2886 if (verify_post_gc_rosalloc_) {
Mathieu Chartierf5997b42014-06-20 10:37:54 -07002887 RosAllocVerification(timings, "(Paused)PostGcRosAllocVerification");
Mathieu Chartier6f365cc2014-04-23 12:42:27 -07002888 }
2889 if (verify_post_gc_heap_) {
Andreas Gampe277ccbd2014-11-03 21:36:10 -08002890 TimingLogger::ScopedTiming t2("(Paused)PostGcVerifyHeapReferences", timings);
Mathieu Chartier8ab7e782014-05-19 16:55:27 -07002891 size_t failures = VerifyHeapReferences();
2892 if (failures > 0) {
2893 LOG(FATAL) << "Pre " << gc->GetName() << " heap verification failed with " << failures
2894 << " failures";
Ian Rogers00f7d0e2012-07-19 15:28:27 -07002895 }
Ian Rogers00f7d0e2012-07-19 15:28:27 -07002896 }
Mathieu Chartier2b82db42012-11-14 17:29:05 -08002897}
Ian Rogers00f7d0e2012-07-19 15:28:27 -07002898
Ian Rogers1d54e732013-05-02 21:10:01 -07002899void Heap::PostGcVerification(collector::GarbageCollector* gc) {
Mathieu Chartier6f365cc2014-04-23 12:42:27 -07002900 if (verify_system_weaks_ || verify_post_gc_rosalloc_ || verify_post_gc_heap_) {
2901 collector::GarbageCollector::ScopedPause pause(gc);
Mathieu Chartierd35326f2014-08-18 15:02:59 -07002902 PostGcVerificationPaused(gc);
Ian Rogers00f7d0e2012-07-19 15:28:27 -07002903 }
Carl Shapiro69759ea2011-07-21 18:13:35 -07002904}
2905
Mathieu Chartier6f365cc2014-04-23 12:42:27 -07002906void Heap::RosAllocVerification(TimingLogger* timings, const char* name) {
Mathieu Chartierf5997b42014-06-20 10:37:54 -07002907 TimingLogger::ScopedTiming t(name, timings);
Mathieu Chartier6f365cc2014-04-23 12:42:27 -07002908 for (const auto& space : continuous_spaces_) {
2909 if (space->IsRosAllocSpace()) {
2910 VLOG(heap) << name << " : " << space->GetName();
2911 space->AsRosAllocSpace()->Verify();
Hiroshi Yamauchia4adbfd2014-02-04 18:12:17 -08002912 }
2913 }
2914}
2915
Mathieu Chartier89a201e2014-05-02 10:27:26 -07002916collector::GcType Heap::WaitForGcToComplete(GcCause cause, Thread* self) {
Mathieu Chartiercaa82d62014-02-02 16:51:17 -08002917 ScopedThreadStateChange tsc(self, kWaitingForGcToComplete);
Mathieu Chartier590fee92013-09-13 13:46:47 -07002918 MutexLock mu(self, *gc_complete_lock_);
Mathieu Chartier89a201e2014-05-02 10:27:26 -07002919 return WaitForGcToCompleteLocked(cause, self);
Mathieu Chartier590fee92013-09-13 13:46:47 -07002920}
2921
Mathieu Chartier89a201e2014-05-02 10:27:26 -07002922collector::GcType Heap::WaitForGcToCompleteLocked(GcCause cause, Thread* self) {
Ian Rogers1d54e732013-05-02 21:10:01 -07002923 collector::GcType last_gc_type = collector::kGcTypeNone;
Mathieu Chartier590fee92013-09-13 13:46:47 -07002924 uint64_t wait_start = NanoTime();
Mathieu Chartierd5a89ee2014-01-31 09:55:13 -08002925 while (collector_type_running_ != kCollectorTypeNone) {
Mathieu Chartier590fee92013-09-13 13:46:47 -07002926 ATRACE_BEGIN("GC: Wait For Completion");
2927 // We must wait, change thread state then sleep on gc_complete_cond_;
2928 gc_complete_cond_->Wait(self);
2929 last_gc_type = last_gc_type_;
Mathieu Chartier752a0e62013-06-27 11:03:27 -07002930 ATRACE_END();
Mathieu Chartier7664f5c2012-06-08 18:15:32 -07002931 }
Mathieu Chartier590fee92013-09-13 13:46:47 -07002932 uint64_t wait_time = NanoTime() - wait_start;
2933 total_wait_time_ += wait_time;
2934 if (wait_time > long_pause_log_threshold_) {
Mathieu Chartier89a201e2014-05-02 10:27:26 -07002935 LOG(INFO) << "WaitForGcToComplete blocked for " << PrettyDuration(wait_time)
2936 << " for cause " << cause;
Mathieu Chartier590fee92013-09-13 13:46:47 -07002937 }
Mathieu Chartier866fb2a2012-09-10 10:47:49 -07002938 return last_gc_type;
Carl Shapiro69759ea2011-07-21 18:13:35 -07002939}
2940
Elliott Hughesc967f782012-04-16 10:23:15 -07002941void Heap::DumpForSigQuit(std::ostream& os) {
Ian Rogers1d54e732013-05-02 21:10:01 -07002942 os << "Heap: " << GetPercentFree() << "% free, " << PrettySize(GetBytesAllocated()) << "/"
Mathieu Chartier2fde5332012-09-14 14:51:54 -07002943 << PrettySize(GetTotalMemory()) << "; " << GetObjectsAllocated() << " objects\n";
Elliott Hughes8b788fe2013-04-17 15:57:01 -07002944 DumpGcPerformanceInfo(os);
Elliott Hughesc967f782012-04-16 10:23:15 -07002945}
2946
2947size_t Heap::GetPercentFree() {
Mathieu Chartierd30e1d62014-06-09 13:25:22 -07002948 return static_cast<size_t>(100.0f * static_cast<float>(GetFreeMemory()) / max_allowed_footprint_);
Elliott Hughesc967f782012-04-16 10:23:15 -07002949}
2950
Elliott Hughes4dd9b4d2011-12-12 18:29:24 -08002951void Heap::SetIdealFootprint(size_t max_allowed_footprint) {
Mathieu Chartier2fde5332012-09-14 14:51:54 -07002952 if (max_allowed_footprint > GetMaxMemory()) {
Mathieu Chartierfd678be2012-08-30 14:50:54 -07002953 VLOG(gc) << "Clamp target GC heap from " << PrettySize(max_allowed_footprint) << " to "
Mathieu Chartier2fde5332012-09-14 14:51:54 -07002954 << PrettySize(GetMaxMemory());
2955 max_allowed_footprint = GetMaxMemory();
2956 }
Mathieu Chartier1c23e1e2012-10-12 14:14:11 -07002957 max_allowed_footprint_ = max_allowed_footprint;
Shih-wei Liao8c2f6412011-10-03 22:58:14 -07002958}
2959
Mathieu Chartier590fee92013-09-13 13:46:47 -07002960bool Heap::IsMovableObject(const mirror::Object* obj) const {
2961 if (kMovingCollector) {
Mathieu Chartier31f44142014-04-08 14:40:03 -07002962 space::Space* space = FindContinuousSpaceFromObject(obj, true);
2963 if (space != nullptr) {
2964 // TODO: Check large object?
2965 return space->CanMoveObjects();
Mathieu Chartier590fee92013-09-13 13:46:47 -07002966 }
Mathieu Chartier590fee92013-09-13 13:46:47 -07002967 }
2968 return false;
2969}
2970
Mathieu Chartier987ccff2013-07-08 11:05:21 -07002971void Heap::UpdateMaxNativeFootprint() {
Ian Rogers3e5cf302014-05-20 16:40:37 -07002972 size_t native_size = native_bytes_allocated_.LoadRelaxed();
Mathieu Chartier987ccff2013-07-08 11:05:21 -07002973 // TODO: Tune the native heap utilization to be a value other than the java heap utilization.
2974 size_t target_size = native_size / GetTargetHeapUtilization();
2975 if (target_size > native_size + max_free_) {
2976 target_size = native_size + max_free_;
2977 } else if (target_size < native_size + min_free_) {
2978 target_size = native_size + min_free_;
2979 }
Mathieu Chartier8ec31f92014-09-03 10:30:11 -07002980 native_footprint_gc_watermark_ = std::min(growth_limit_, target_size);
Mathieu Chartier987ccff2013-07-08 11:05:21 -07002981}
2982
Mathieu Chartierafe49982014-03-27 10:55:04 -07002983collector::GarbageCollector* Heap::FindCollectorByGcType(collector::GcType gc_type) {
2984 for (const auto& collector : garbage_collectors_) {
2985 if (collector->GetCollectorType() == collector_type_ &&
2986 collector->GetGcType() == gc_type) {
2987 return collector;
2988 }
2989 }
2990 return nullptr;
2991}
2992
Mathieu Chartier2f8da3e2014-04-15 15:37:02 -07002993double Heap::HeapGrowthMultiplier() const {
2994 // If we don't care about pause times we are background, so return 1.0.
2995 if (!CareAboutPauseTimes() || IsLowMemoryMode()) {
2996 return 1.0;
2997 }
2998 return foreground_heap_growth_multiplier_;
2999}
3000
Mathieu Chartiere2c2f6e2014-12-16 18:49:31 -08003001void Heap::GrowForUtilization(collector::GarbageCollector* collector_ran,
3002 uint64_t bytes_allocated_before_gc) {
Mathieu Chartier2fde5332012-09-14 14:51:54 -07003003 // We know what our utilization is at this moment.
3004 // This doesn't actually resize any memory. It just lets the heap grow more when necessary.
Mathieu Chartier2f8da3e2014-04-15 15:37:02 -07003005 const uint64_t bytes_allocated = GetBytesAllocated();
Mathieu Chartier2f8da3e2014-04-15 15:37:02 -07003006 uint64_t target_size;
Mathieu Chartierafe49982014-03-27 10:55:04 -07003007 collector::GcType gc_type = collector_ran->GetGcType();
Mathieu Chartiere2c2f6e2014-12-16 18:49:31 -08003008 const double multiplier = HeapGrowthMultiplier(); // Use the multiplier to grow more for
3009 // foreground.
3010 const uint64_t adjusted_min_free = static_cast<uint64_t>(min_free_ * multiplier);
3011 const uint64_t adjusted_max_free = static_cast<uint64_t>(max_free_ * multiplier);
Mathieu Chartierbdd0fb92013-07-02 10:16:15 -07003012 if (gc_type != collector::kGcTypeSticky) {
3013 // Grow the heap for non sticky GC.
Mathieu Chartiere2c2f6e2014-12-16 18:49:31 -08003014 ssize_t delta = bytes_allocated / GetTargetHeapUtilization() - bytes_allocated;
Mathieu Chartier2f8da3e2014-04-15 15:37:02 -07003015 CHECK_GE(delta, 0);
3016 target_size = bytes_allocated + delta * multiplier;
Mathieu Chartiere2c2f6e2014-12-16 18:49:31 -08003017 target_size = std::min(target_size, bytes_allocated + adjusted_max_free);
3018 target_size = std::max(target_size, bytes_allocated + adjusted_min_free);
Mathieu Chartier590fee92013-09-13 13:46:47 -07003019 native_need_to_run_finalization_ = true;
Mathieu Chartierbdd0fb92013-07-02 10:16:15 -07003020 next_gc_type_ = collector::kGcTypeSticky;
3021 } else {
Mathieu Chartierafe49982014-03-27 10:55:04 -07003022 collector::GcType non_sticky_gc_type =
Mathieu Chartiere4cab172014-08-19 18:24:04 -07003023 HasZygoteSpace() ? collector::kGcTypePartial : collector::kGcTypeFull;
Mathieu Chartierafe49982014-03-27 10:55:04 -07003024 // Find what the next non sticky collector will be.
3025 collector::GarbageCollector* non_sticky_collector = FindCollectorByGcType(non_sticky_gc_type);
3026 // If the throughput of the current sticky GC >= throughput of the non sticky collector, then
3027 // do another sticky collection next.
3028 // We also check that the bytes allocated aren't over the footprint limit in order to prevent a
3029 // pathological case where dead objects which aren't reclaimed by sticky could get accumulated
3030 // if the sticky GC throughput always remained >= the full/partial throughput.
Mathieu Chartier10fb83a2014-06-15 15:15:43 -07003031 if (current_gc_iteration_.GetEstimatedThroughput() * kStickyGcThroughputAdjustment >=
Mathieu Chartierafe49982014-03-27 10:55:04 -07003032 non_sticky_collector->GetEstimatedMeanThroughput() &&
Mathieu Chartier10fb83a2014-06-15 15:15:43 -07003033 non_sticky_collector->NumberOfIterations() > 0 &&
Mathieu Chartierafe49982014-03-27 10:55:04 -07003034 bytes_allocated <= max_allowed_footprint_) {
Mathieu Chartierbdd0fb92013-07-02 10:16:15 -07003035 next_gc_type_ = collector::kGcTypeSticky;
3036 } else {
Mathieu Chartierafe49982014-03-27 10:55:04 -07003037 next_gc_type_ = non_sticky_gc_type;
Mathieu Chartierbdd0fb92013-07-02 10:16:15 -07003038 }
Mathieu Chartierbdd0fb92013-07-02 10:16:15 -07003039 // If we have freed enough memory, shrink the heap back down.
Mathieu Chartiere2c2f6e2014-12-16 18:49:31 -08003040 if (bytes_allocated + adjusted_max_free < max_allowed_footprint_) {
3041 target_size = bytes_allocated + adjusted_max_free;
Mathieu Chartierbdd0fb92013-07-02 10:16:15 -07003042 } else {
Mathieu Chartier2f8da3e2014-04-15 15:37:02 -07003043 target_size = std::max(bytes_allocated, static_cast<uint64_t>(max_allowed_footprint_));
Mathieu Chartierbdd0fb92013-07-02 10:16:15 -07003044 }
3045 }
Mathieu Chartier2775ee42013-08-20 17:43:47 -07003046 if (!ignore_max_footprint_) {
3047 SetIdealFootprint(target_size);
Hiroshi Yamauchi3e417802014-03-20 12:03:02 -07003048 if (IsGcConcurrent()) {
Mathieu Chartiere2c2f6e2014-12-16 18:49:31 -08003049 const uint64_t freed_bytes = current_gc_iteration_.GetFreedBytes() +
3050 current_gc_iteration_.GetFreedLargeObjectBytes();
3051 // Bytes allocated will shrink by freed_bytes after the GC runs, so if we want to figure out
3052 // how many bytes were allocated during the GC we need to add freed_bytes back on.
3053 CHECK_GE(bytes_allocated + freed_bytes, bytes_allocated_before_gc);
3054 const uint64_t bytes_allocated_during_gc = bytes_allocated + freed_bytes -
3055 bytes_allocated_before_gc;
Mathieu Chartier2775ee42013-08-20 17:43:47 -07003056 // Calculate when to perform the next ConcurrentGC.
Mathieu Chartier2775ee42013-08-20 17:43:47 -07003057 // Calculate the estimated GC duration.
Mathieu Chartier10fb83a2014-06-15 15:15:43 -07003058 const double gc_duration_seconds = NsToMs(current_gc_iteration_.GetDurationNs()) / 1000.0;
Mathieu Chartier2775ee42013-08-20 17:43:47 -07003059 // Estimate how many remaining bytes we will have when we need to start the next GC.
Mathieu Chartiere2c2f6e2014-12-16 18:49:31 -08003060 size_t remaining_bytes = bytes_allocated_during_gc * gc_duration_seconds;
Mathieu Chartier74762802014-01-24 10:21:35 -08003061 remaining_bytes = std::min(remaining_bytes, kMaxConcurrentRemainingBytes);
Mathieu Chartier2775ee42013-08-20 17:43:47 -07003062 remaining_bytes = std::max(remaining_bytes, kMinConcurrentRemainingBytes);
3063 if (UNLIKELY(remaining_bytes > max_allowed_footprint_)) {
3064 // A never going to happen situation that from the estimated allocation rate we will exceed
3065 // the applications entire footprint with the given estimated allocation rate. Schedule
Mathieu Chartier74762802014-01-24 10:21:35 -08003066 // another GC nearly straight away.
3067 remaining_bytes = kMinConcurrentRemainingBytes;
Mathieu Chartier2775ee42013-08-20 17:43:47 -07003068 }
Mathieu Chartier74762802014-01-24 10:21:35 -08003069 DCHECK_LE(remaining_bytes, max_allowed_footprint_);
Mathieu Chartierdd162fb2014-08-06 17:06:33 -07003070 DCHECK_LE(max_allowed_footprint_, GetMaxMemory());
Mathieu Chartier74762802014-01-24 10:21:35 -08003071 // Start a concurrent GC when we get close to the estimated remaining bytes. When the
3072 // allocation rate is very high, remaining_bytes could tell us that we should start a GC
3073 // right away.
Mathieu Chartier2f8da3e2014-04-15 15:37:02 -07003074 concurrent_start_bytes_ = std::max(max_allowed_footprint_ - remaining_bytes,
3075 static_cast<size_t>(bytes_allocated));
Mathieu Chartier65db8802012-11-20 12:36:46 -08003076 }
Mathieu Chartier65db8802012-11-20 12:36:46 -08003077 }
Carl Shapiro69759ea2011-07-21 18:13:35 -07003078}
3079
Mathieu Chartier379d09f2015-01-08 11:28:13 -08003080void Heap::ClampGrowthLimit() {
3081 capacity_ = growth_limit_;
3082 for (const auto& space : continuous_spaces_) {
3083 if (space->IsMallocSpace()) {
3084 gc::space::MallocSpace* malloc_space = space->AsMallocSpace();
3085 malloc_space->ClampGrowthLimit();
3086 }
3087 }
3088 // This space isn't added for performance reasons.
3089 if (main_space_backup_.get() != nullptr) {
3090 main_space_backup_->ClampGrowthLimit();
3091 }
3092}
3093
jeffhaoc1160702011-10-27 15:48:45 -07003094void Heap::ClearGrowthLimit() {
Mathieu Chartier80de7a62012-11-27 17:21:50 -08003095 growth_limit_ = capacity_;
Mathieu Chartier0310da52014-12-01 13:40:48 -08003096 for (const auto& space : continuous_spaces_) {
3097 if (space->IsMallocSpace()) {
3098 gc::space::MallocSpace* malloc_space = space->AsMallocSpace();
3099 malloc_space->ClearGrowthLimit();
3100 malloc_space->SetFootprintLimit(malloc_space->Capacity());
3101 }
3102 }
3103 // This space isn't added for performance reasons.
3104 if (main_space_backup_.get() != nullptr) {
3105 main_space_backup_->ClearGrowthLimit();
3106 main_space_backup_->SetFootprintLimit(main_space_backup_->Capacity());
3107 }
jeffhaoc1160702011-10-27 15:48:45 -07003108}
3109
Mathieu Chartier8668c3c2014-04-24 16:48:11 -07003110void Heap::AddFinalizerReference(Thread* self, mirror::Object** object) {
Ian Rogers00f7d0e2012-07-19 15:28:27 -07003111 ScopedObjectAccess soa(self);
Mathieu Chartier8668c3c2014-04-24 16:48:11 -07003112 ScopedLocalRef<jobject> arg(self->GetJniEnv(), soa.AddLocalReference<jobject>(*object));
Ian Rogers53b8b092014-03-13 23:45:53 -07003113 jvalue args[1];
3114 args[0].l = arg.get();
3115 InvokeWithJValues(soa, nullptr, WellKnownClasses::java_lang_ref_FinalizerReference_add, args);
Mathieu Chartier8668c3c2014-04-24 16:48:11 -07003116 // Restore object in case it gets moved.
3117 *object = soa.Decode<mirror::Object*>(arg.get());
Ian Rogers00f7d0e2012-07-19 15:28:27 -07003118}
3119
Mathieu Chartiereb8167a2014-05-07 15:43:14 -07003120void Heap::RequestConcurrentGCAndSaveObject(Thread* self, mirror::Object** obj) {
3121 StackHandleScope<1> hs(self);
3122 HandleWrapper<mirror::Object> wrapper(hs.NewHandleWrapper(obj));
3123 RequestConcurrentGC(self);
3124}
3125
Mathieu Chartiera5eae692014-12-17 17:56:03 -08003126class Heap::ConcurrentGCTask : public HeapTask {
3127 public:
3128 explicit ConcurrentGCTask(uint64_t target_time) : HeapTask(target_time) { }
3129 virtual void Run(Thread* self) OVERRIDE {
3130 gc::Heap* heap = Runtime::Current()->GetHeap();
3131 heap->ConcurrentGC(self);
3132 heap->ClearConcurrentGCRequest();
Ian Rogers120f1c72012-09-28 17:17:10 -07003133 }
Mathieu Chartiera5eae692014-12-17 17:56:03 -08003134};
3135
3136static bool CanAddHeapTask(Thread* self) LOCKS_EXCLUDED(Locks::runtime_shutdown_lock_) {
3137 Runtime* runtime = Runtime::Current();
3138 return runtime != nullptr && runtime->IsFinishedStarting() && !runtime->IsShuttingDown(self) &&
3139 !self->IsHandlingStackOverflow();
3140}
3141
3142void Heap::ClearConcurrentGCRequest() {
3143 concurrent_gc_pending_.StoreRelaxed(false);
3144}
3145
3146void Heap::RequestConcurrentGC(Thread* self) {
3147 if (CanAddHeapTask(self) &&
3148 concurrent_gc_pending_.CompareExchangeStrongSequentiallyConsistent(false, true)) {
3149 task_processor_->AddTask(self, new ConcurrentGCTask(NanoTime())); // Start straight away.
3150 }
Mathieu Chartier7664f5c2012-06-08 18:15:32 -07003151}
3152
Ian Rogers81d425b2012-09-27 16:03:43 -07003153void Heap::ConcurrentGC(Thread* self) {
Mathieu Chartiera5eae692014-12-17 17:56:03 -08003154 if (!Runtime::Current()->IsShuttingDown(self)) {
3155 // Wait for any GCs currently running to finish.
3156 if (WaitForGcToComplete(kGcCauseBackground, self) == collector::kGcTypeNone) {
3157 // If the we can't run the GC type we wanted to run, find the next appropriate one and try that
3158 // instead. E.g. can't do partial, so do full instead.
3159 if (CollectGarbageInternal(next_gc_type_, kGcCauseBackground, false) ==
3160 collector::kGcTypeNone) {
3161 for (collector::GcType gc_type : gc_plan_) {
3162 // Attempt to run the collector, if we succeed, we are done.
3163 if (gc_type > next_gc_type_ &&
3164 CollectGarbageInternal(gc_type, kGcCauseBackground, false) !=
3165 collector::kGcTypeNone) {
3166 break;
3167 }
Mathieu Chartierf9ed0d32013-11-21 16:42:47 -08003168 }
3169 }
3170 }
Mathieu Chartiercc236d72012-07-20 10:29:05 -07003171 }
Mathieu Chartier7664f5c2012-06-08 18:15:32 -07003172}
3173
Mathieu Chartiera5eae692014-12-17 17:56:03 -08003174class Heap::CollectorTransitionTask : public HeapTask {
3175 public:
3176 explicit CollectorTransitionTask(uint64_t target_time) : HeapTask(target_time) { }
3177 virtual void Run(Thread* self) OVERRIDE {
3178 gc::Heap* heap = Runtime::Current()->GetHeap();
3179 heap->DoPendingCollectorTransition();
3180 heap->ClearPendingCollectorTransition(self);
Mathieu Chartiera5f9de02014-02-28 16:48:42 -08003181 }
Mathieu Chartiera5eae692014-12-17 17:56:03 -08003182};
3183
3184void Heap::ClearPendingCollectorTransition(Thread* self) {
3185 MutexLock mu(self, *pending_task_lock_);
3186 pending_collector_transition_ = nullptr;
Mathieu Chartiera5f9de02014-02-28 16:48:42 -08003187}
3188
Mathieu Chartiera5eae692014-12-17 17:56:03 -08003189void Heap::RequestCollectorTransition(CollectorType desired_collector_type, uint64_t delta_time) {
3190 Thread* self = Thread::Current();
3191 desired_collector_type_ = desired_collector_type;
3192 if (desired_collector_type_ == collector_type_ || !CanAddHeapTask(self)) {
3193 return;
3194 }
3195 CollectorTransitionTask* added_task = nullptr;
3196 const uint64_t target_time = NanoTime() + delta_time;
3197 {
3198 MutexLock mu(self, *pending_task_lock_);
3199 // If we have an existing collector transition, update the targe time to be the new target.
3200 if (pending_collector_transition_ != nullptr) {
3201 task_processor_->UpdateTargetRunTime(self, pending_collector_transition_, target_time);
3202 return;
3203 }
3204 added_task = new CollectorTransitionTask(target_time);
3205 pending_collector_transition_ = added_task;
3206 }
3207 task_processor_->AddTask(self, added_task);
3208}
3209
3210class Heap::HeapTrimTask : public HeapTask {
3211 public:
3212 explicit HeapTrimTask(uint64_t delta_time) : HeapTask(NanoTime() + delta_time) { }
3213 virtual void Run(Thread* self) OVERRIDE {
3214 gc::Heap* heap = Runtime::Current()->GetHeap();
3215 heap->Trim(self);
3216 heap->ClearPendingTrim(self);
3217 }
3218};
3219
3220void Heap::ClearPendingTrim(Thread* self) {
3221 MutexLock mu(self, *pending_task_lock_);
3222 pending_heap_trim_ = nullptr;
3223}
3224
3225void Heap::RequestTrim(Thread* self) {
3226 if (!CanAddHeapTask(self)) {
3227 return;
3228 }
Ian Rogers48931882013-01-22 14:35:16 -08003229 // GC completed and now we must decide whether to request a heap trim (advising pages back to the
3230 // kernel) or not. Issuing a request will also cause trimming of the libc heap. As a trim scans
3231 // a space it will hold its lock and can become a cause of jank.
3232 // Note, the large object space self trims and the Zygote space was trimmed and unchanging since
3233 // forking.
3234
Elliott Hughes8cf5bc02012-02-02 16:32:16 -08003235 // We don't have a good measure of how worthwhile a trim might be. We can't use the live bitmap
3236 // because that only marks object heads, so a large array looks like lots of empty space. We
3237 // don't just call dlmalloc all the time, because the cost of an _attempted_ trim is proportional
3238 // to utilization (which is probably inversely proportional to how much benefit we can expect).
3239 // We could try mincore(2) but that's only a measure of how many pages we haven't given away,
3240 // not how much use we're making of those pages.
Mathieu Chartiera5eae692014-12-17 17:56:03 -08003241 HeapTrimTask* added_task = nullptr;
Mathieu Chartier440e4ce2014-03-31 16:36:35 -07003242 {
Mathieu Chartiera5eae692014-12-17 17:56:03 -08003243 MutexLock mu(self, *pending_task_lock_);
3244 if (pending_heap_trim_ != nullptr) {
3245 // Already have a heap trim request in task processor, ignore this request.
Mathieu Chartier440e4ce2014-03-31 16:36:35 -07003246 return;
Mathieu Chartiera5f9de02014-02-28 16:48:42 -08003247 }
Mathieu Chartiera5eae692014-12-17 17:56:03 -08003248 added_task = new HeapTrimTask(kHeapTrimWait);
3249 pending_heap_trim_ = added_task;
Mathieu Chartierc39e3422013-08-07 16:41:36 -07003250 }
Mathieu Chartiera5eae692014-12-17 17:56:03 -08003251 task_processor_->AddTask(self, added_task);
Mathieu Chartiera5f9de02014-02-28 16:48:42 -08003252}
3253
Hiroshi Yamauchicf58d4a2013-09-26 14:21:22 -07003254void Heap::RevokeThreadLocalBuffers(Thread* thread) {
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08003255 if (rosalloc_space_ != nullptr) {
3256 rosalloc_space_->RevokeThreadLocalBuffers(thread);
3257 }
Mathieu Chartier692fafd2013-11-29 17:24:40 -08003258 if (bump_pointer_space_ != nullptr) {
3259 bump_pointer_space_->RevokeThreadLocalBuffers(thread);
3260 }
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -08003261 if (region_space_ != nullptr) {
3262 region_space_->RevokeThreadLocalBuffers(thread);
3263 }
Hiroshi Yamauchicf58d4a2013-09-26 14:21:22 -07003264}
3265
Hiroshi Yamauchic93c5302014-03-20 16:15:37 -07003266void Heap::RevokeRosAllocThreadLocalBuffers(Thread* thread) {
3267 if (rosalloc_space_ != nullptr) {
3268 rosalloc_space_->RevokeThreadLocalBuffers(thread);
3269 }
3270}
3271
Hiroshi Yamauchicf58d4a2013-09-26 14:21:22 -07003272void Heap::RevokeAllThreadLocalBuffers() {
Mathieu Chartiere6da9af2013-12-16 11:54:42 -08003273 if (rosalloc_space_ != nullptr) {
3274 rosalloc_space_->RevokeAllThreadLocalBuffers();
3275 }
Mathieu Chartier692fafd2013-11-29 17:24:40 -08003276 if (bump_pointer_space_ != nullptr) {
3277 bump_pointer_space_->RevokeAllThreadLocalBuffers();
3278 }
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -08003279 if (region_space_ != nullptr) {
3280 region_space_->RevokeAllThreadLocalBuffers();
3281 }
Hiroshi Yamauchicf58d4a2013-09-26 14:21:22 -07003282}
3283
Mathieu Chartier987ccff2013-07-08 11:05:21 -07003284bool Heap::IsGCRequestPending() const {
Mathieu Chartiera5eae692014-12-17 17:56:03 -08003285 return concurrent_gc_pending_.LoadRelaxed();
Mathieu Chartier987ccff2013-07-08 11:05:21 -07003286}
3287
Mathieu Chartier590fee92013-09-13 13:46:47 -07003288void Heap::RunFinalization(JNIEnv* env) {
3289 // Can't do this in WellKnownClasses::Init since System is not properly set up at that point.
3290 if (WellKnownClasses::java_lang_System_runFinalization == nullptr) {
3291 CHECK(WellKnownClasses::java_lang_System != nullptr);
3292 WellKnownClasses::java_lang_System_runFinalization =
3293 CacheMethod(env, WellKnownClasses::java_lang_System, true, "runFinalization", "()V");
3294 CHECK(WellKnownClasses::java_lang_System_runFinalization != nullptr);
3295 }
3296 env->CallStaticVoidMethod(WellKnownClasses::java_lang_System,
3297 WellKnownClasses::java_lang_System_runFinalization);
3298}
3299
Mathieu Chartier8ec31f92014-09-03 10:30:11 -07003300void Heap::RegisterNativeAllocation(JNIEnv* env, size_t bytes) {
Mathieu Chartier590fee92013-09-13 13:46:47 -07003301 Thread* self = ThreadForEnv(env);
3302 if (native_need_to_run_finalization_) {
3303 RunFinalization(env);
3304 UpdateMaxNativeFootprint();
3305 native_need_to_run_finalization_ = false;
3306 }
Mathieu Chartier987ccff2013-07-08 11:05:21 -07003307 // Total number of native bytes allocated.
Ian Rogers3e5cf302014-05-20 16:40:37 -07003308 size_t new_native_bytes_allocated = native_bytes_allocated_.FetchAndAddSequentiallyConsistent(bytes);
3309 new_native_bytes_allocated += bytes;
3310 if (new_native_bytes_allocated > native_footprint_gc_watermark_) {
Mathieu Chartiere4cab172014-08-19 18:24:04 -07003311 collector::GcType gc_type = HasZygoteSpace() ? collector::kGcTypePartial :
Mathieu Chartiercbb2d202013-11-14 17:45:16 -08003312 collector::kGcTypeFull;
3313
Mathieu Chartier987ccff2013-07-08 11:05:21 -07003314 // The second watermark is higher than the gc watermark. If you hit this it means you are
3315 // allocating native objects faster than the GC can keep up with.
Mathieu Chartier08487452014-09-02 16:21:01 -07003316 if (new_native_bytes_allocated > growth_limit_) {
Mathieu Chartier89a201e2014-05-02 10:27:26 -07003317 if (WaitForGcToComplete(kGcCauseForNativeAlloc, self) != collector::kGcTypeNone) {
Mathieu Chartier590fee92013-09-13 13:46:47 -07003318 // Just finished a GC, attempt to run finalizers.
3319 RunFinalization(env);
3320 CHECK(!env->ExceptionCheck());
3321 }
3322 // If we still are over the watermark, attempt a GC for alloc and run finalizers.
Mathieu Chartier08487452014-09-02 16:21:01 -07003323 if (new_native_bytes_allocated > growth_limit_) {
Hiroshi Yamauchi6f4ffe42014-01-13 12:30:44 -08003324 CollectGarbageInternal(gc_type, kGcCauseForNativeAlloc, false);
Mathieu Chartier590fee92013-09-13 13:46:47 -07003325 RunFinalization(env);
3326 native_need_to_run_finalization_ = false;
3327 CHECK(!env->ExceptionCheck());
3328 }
3329 // We have just run finalizers, update the native watermark since it is very likely that
3330 // finalizers released native managed allocations.
3331 UpdateMaxNativeFootprint();
3332 } else if (!IsGCRequestPending()) {
Hiroshi Yamauchi3e417802014-03-20 12:03:02 -07003333 if (IsGcConcurrent()) {
Mathieu Chartier590fee92013-09-13 13:46:47 -07003334 RequestConcurrentGC(self);
3335 } else {
Hiroshi Yamauchid20aba12014-04-11 15:31:09 -07003336 CollectGarbageInternal(gc_type, kGcCauseForNativeAlloc, false);
Mathieu Chartier987ccff2013-07-08 11:05:21 -07003337 }
3338 }
3339 }
3340}
3341
Mathieu Chartier8ec31f92014-09-03 10:30:11 -07003342void Heap::RegisterNativeFree(JNIEnv* env, size_t bytes) {
3343 size_t expected_size;
Mathieu Chartier987ccff2013-07-08 11:05:21 -07003344 do {
Ian Rogers3e5cf302014-05-20 16:40:37 -07003345 expected_size = native_bytes_allocated_.LoadRelaxed();
Mathieu Chartier8ec31f92014-09-03 10:30:11 -07003346 if (UNLIKELY(bytes > expected_size)) {
Mathieu Chartier590fee92013-09-13 13:46:47 -07003347 ScopedObjectAccess soa(env);
3348 env->ThrowNew(WellKnownClasses::java_lang_RuntimeException,
Mathieu Chartier8ec31f92014-09-03 10:30:11 -07003349 StringPrintf("Attempted to free %zd native bytes with only %zd native bytes "
Mathieu Chartier590fee92013-09-13 13:46:47 -07003350 "registered as allocated", bytes, expected_size).c_str());
3351 break;
3352 }
Mathieu Chartier8ec31f92014-09-03 10:30:11 -07003353 } while (!native_bytes_allocated_.CompareExchangeWeakRelaxed(expected_size,
3354 expected_size - bytes));
Mathieu Chartier987ccff2013-07-08 11:05:21 -07003355}
3356
Ian Rogersef7d42f2014-01-06 12:55:46 -08003357size_t Heap::GetTotalMemory() const {
Mathieu Chartierdd162fb2014-08-06 17:06:33 -07003358 return std::max(max_allowed_footprint_, GetBytesAllocated());
Hiroshi Yamauchi09b07a92013-07-15 13:17:06 -07003359}
3360
Mathieu Chartier11409ae2013-09-23 11:49:36 -07003361void Heap::AddModUnionTable(accounting::ModUnionTable* mod_union_table) {
3362 DCHECK(mod_union_table != nullptr);
3363 mod_union_tables_.Put(mod_union_table->GetSpace(), mod_union_table);
3364}
3365
Mathieu Chartierc645f1d2014-03-06 18:11:53 -08003366void Heap::CheckPreconditionsForAllocObject(mirror::Class* c, size_t byte_count) {
Mathieu Chartiera5eae692014-12-17 17:56:03 -08003367 CHECK(c == nullptr || (c->IsClassClass() && byte_count >= sizeof(mirror::Class)) ||
Ian Rogers1ff3c982014-08-12 02:30:58 -07003368 (c->IsVariableSize() || c->GetObjectSize() == byte_count));
Mathieu Chartierc645f1d2014-03-06 18:11:53 -08003369 CHECK_GE(byte_count, sizeof(mirror::Object));
3370}
3371
Hiroshi Yamauchi38e68e92014-03-07 13:59:08 -08003372void Heap::AddRememberedSet(accounting::RememberedSet* remembered_set) {
3373 CHECK(remembered_set != nullptr);
3374 space::Space* space = remembered_set->GetSpace();
3375 CHECK(space != nullptr);
Mathieu Chartier8e4a96d2014-05-21 10:44:32 -07003376 CHECK(remembered_sets_.find(space) == remembered_sets_.end()) << space;
Hiroshi Yamauchi38e68e92014-03-07 13:59:08 -08003377 remembered_sets_.Put(space, remembered_set);
Mathieu Chartier8e4a96d2014-05-21 10:44:32 -07003378 CHECK(remembered_sets_.find(space) != remembered_sets_.end()) << space;
Hiroshi Yamauchi38e68e92014-03-07 13:59:08 -08003379}
3380
3381void Heap::RemoveRememberedSet(space::Space* space) {
3382 CHECK(space != nullptr);
3383 auto it = remembered_sets_.find(space);
3384 CHECK(it != remembered_sets_.end());
Mathieu Chartier5189e242014-07-24 11:11:05 -07003385 delete it->second;
Hiroshi Yamauchi38e68e92014-03-07 13:59:08 -08003386 remembered_sets_.erase(it);
3387 CHECK(remembered_sets_.find(space) == remembered_sets_.end());
3388}
3389
Mathieu Chartier4aeec172014-03-27 16:09:46 -07003390void Heap::ClearMarkedObjects() {
3391 // Clear all of the spaces' mark bitmaps.
3392 for (const auto& space : GetContinuousSpaces()) {
Mathieu Chartiera8e8f9c2014-04-09 14:51:05 -07003393 accounting::ContinuousSpaceBitmap* mark_bitmap = space->GetMarkBitmap();
Mathieu Chartier4aeec172014-03-27 16:09:46 -07003394 if (space->GetLiveBitmap() != mark_bitmap) {
3395 mark_bitmap->Clear();
3396 }
3397 }
3398 // Clear the marked objects in the discontinous space object sets.
3399 for (const auto& space : GetDiscontinuousSpaces()) {
Mathieu Chartierbbd695c2014-04-16 09:48:48 -07003400 space->GetMarkBitmap()->Clear();
Mathieu Chartier4aeec172014-03-27 16:09:46 -07003401 }
3402}
3403
Ian Rogers1d54e732013-05-02 21:10:01 -07003404} // namespace gc
Carl Shapiro69759ea2011-07-21 18:13:35 -07003405} // namespace art