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Hiroshi Yamauchi3b4c1892013-09-12 21:33:12 -07001/*
2 * Copyright (C) 2013 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 */
16
17#ifndef ART_RUNTIME_GC_HEAP_INL_H_
18#define ART_RUNTIME_GC_HEAP_INL_H_
19
20#include "heap.h"
21
Vladimir Marko80afd022015-05-19 18:08:00 +010022#include "base/time_utils.h"
Hiroshi Yamauchi38e68e92014-03-07 13:59:08 -080023#include "gc/accounting/card_table-inl.h"
Man Cao8c2ff642015-05-27 17:25:30 -070024#include "gc/allocation_record.h"
Hiroshi Yamauchi38e68e92014-03-07 13:59:08 -080025#include "gc/collector/semi_space.h"
Mathieu Chartier590fee92013-09-13 13:46:47 -070026#include "gc/space/bump_pointer_space-inl.h"
Hiroshi Yamauchi3b4c1892013-09-12 21:33:12 -070027#include "gc/space/dlmalloc_space-inl.h"
28#include "gc/space/large_object_space.h"
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -080029#include "gc/space/region_space-inl.h"
Hiroshi Yamauchicf58d4a2013-09-26 14:21:22 -070030#include "gc/space/rosalloc_space-inl.h"
Hiroshi Yamauchi3b4c1892013-09-12 21:33:12 -070031#include "runtime.h"
Mathieu Chartiereb8167a2014-05-07 15:43:14 -070032#include "handle_scope-inl.h"
Hiroshi Yamauchi3b4c1892013-09-12 21:33:12 -070033#include "thread-inl.h"
Vladimir Marko80afd022015-05-19 18:08:00 +010034#include "utils.h"
Mathieu Chartier4e305412014-02-19 10:54:44 -080035#include "verify_object-inl.h"
Hiroshi Yamauchi3b4c1892013-09-12 21:33:12 -070036
37namespace art {
38namespace gc {
39
Mathieu Chartier692fafd2013-11-29 17:24:40 -080040template <bool kInstrumented, bool kCheckLargeObject, typename PreFenceVisitor>
Mathieu Chartiera4f6af92015-08-11 17:35:25 -070041inline mirror::Object* Heap::AllocObjectWithAllocator(Thread* self,
42 mirror::Class* klass,
43 size_t byte_count,
44 AllocatorType allocator,
Mathieu Chartier1febddf2013-11-20 12:33:14 -080045 const PreFenceVisitor& pre_fence_visitor) {
Mathieu Chartierc645f1d2014-03-06 18:11:53 -080046 if (kIsDebugBuild) {
47 CheckPreconditionsForAllocObject(klass, byte_count);
Mathieu Chartier14cc9be2014-07-11 10:26:37 -070048 // Since allocation can cause a GC which will need to SuspendAll, make sure all allocations are
49 // done in the runnable state where suspension is expected.
50 CHECK_EQ(self->GetState(), kRunnable);
51 self->AssertThreadSuspensionIsAllowable();
Mathieu Chartier8502f722016-06-08 15:09:08 -070052 self->AssertNoPendingException();
Mathieu Chartiera59d9b22016-09-26 18:13:17 -070053 self->PoisonObjectPointers();
Mathieu Chartierc645f1d2014-03-06 18:11:53 -080054 }
Mathieu Chartierc528dba2013-11-26 12:00:11 -080055 // Need to check that we arent the large object allocator since the large object allocation code
56 // path this function. If we didn't check we would have an infinite loop.
Mathieu Chartiercbb2d202013-11-14 17:45:16 -080057 mirror::Object* obj;
Mathieu Chartier446f9ee2014-12-01 15:00:27 -080058 if (kCheckLargeObject && UNLIKELY(ShouldAllocLargeObject(klass, byte_count))) {
59 obj = AllocLargeObject<kInstrumented, PreFenceVisitor>(self, &klass, byte_count,
60 pre_fence_visitor);
61 if (obj != nullptr) {
62 return obj;
63 } else {
64 // There should be an OOM exception, since we are retrying, clear it.
65 self->ClearException();
66 }
67 // If the large object allocation failed, try to use the normal spaces (main space,
68 // non moving space). This can happen if there is significant virtual address space
69 // fragmentation.
70 }
Hiroshi Yamauchi4460a842015-03-09 11:57:48 -070071 // bytes allocated for the (individual) object.
Mathieu Chartier14cc9be2014-07-11 10:26:37 -070072 size_t bytes_allocated;
73 size_t usable_size;
74 size_t new_num_bytes_allocated = 0;
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -080075 if (allocator == kAllocatorTypeTLAB || allocator == kAllocatorTypeRegionTLAB) {
Mathieu Chartier14cc9be2014-07-11 10:26:37 -070076 byte_count = RoundUp(byte_count, space::BumpPointerSpace::kAlignment);
77 }
78 // If we have a thread local allocation we don't need to update bytes allocated.
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -080079 if ((allocator == kAllocatorTypeTLAB || allocator == kAllocatorTypeRegionTLAB) &&
80 byte_count <= self->TlabSize()) {
Mathieu Chartier14cc9be2014-07-11 10:26:37 -070081 obj = self->AllocTlab(byte_count);
Mathieu Chartierfd22d5b2014-07-14 10:16:05 -070082 DCHECK(obj != nullptr) << "AllocTlab can't fail";
Mathieu Chartier14cc9be2014-07-11 10:26:37 -070083 obj->SetClass(klass);
84 if (kUseBakerOrBrooksReadBarrier) {
85 if (kUseBrooksReadBarrier) {
86 obj->SetReadBarrierPointer(obj);
Mathieu Chartiere6da9af2013-12-16 11:54:42 -080087 }
Mathieu Chartier14cc9be2014-07-11 10:26:37 -070088 obj->AssertReadBarrierPointer();
Mathieu Chartiercbb2d202013-11-14 17:45:16 -080089 }
Mathieu Chartier14cc9be2014-07-11 10:26:37 -070090 bytes_allocated = byte_count;
Mathieu Chartierfd22d5b2014-07-14 10:16:05 -070091 usable_size = bytes_allocated;
92 pre_fence_visitor(obj, usable_size);
Mathieu Chartier14cc9be2014-07-11 10:26:37 -070093 QuasiAtomic::ThreadFenceForConstructor();
Hiroshi Yamauchi4460a842015-03-09 11:57:48 -070094 } else if (!kInstrumented && allocator == kAllocatorTypeRosAlloc &&
95 (obj = rosalloc_space_->AllocThreadLocal(self, byte_count, &bytes_allocated)) &&
96 LIKELY(obj != nullptr)) {
Evgenii Stepanov1e133742015-05-20 12:30:59 -070097 DCHECK(!is_running_on_memory_tool_);
Hiroshi Yamauchi4460a842015-03-09 11:57:48 -070098 obj->SetClass(klass);
99 if (kUseBakerOrBrooksReadBarrier) {
100 if (kUseBrooksReadBarrier) {
101 obj->SetReadBarrierPointer(obj);
102 }
103 obj->AssertReadBarrierPointer();
104 }
105 usable_size = bytes_allocated;
106 pre_fence_visitor(obj, usable_size);
107 QuasiAtomic::ThreadFenceForConstructor();
Mathieu Chartier14cc9be2014-07-11 10:26:37 -0700108 } else {
Hiroshi Yamauchi4460a842015-03-09 11:57:48 -0700109 // bytes allocated that takes bulk thread-local buffer allocations into account.
110 size_t bytes_tl_bulk_allocated = 0;
Mathieu Chartier14cc9be2014-07-11 10:26:37 -0700111 obj = TryToAllocate<kInstrumented, false>(self, allocator, byte_count, &bytes_allocated,
Hiroshi Yamauchi4460a842015-03-09 11:57:48 -0700112 &usable_size, &bytes_tl_bulk_allocated);
Mathieu Chartier14cc9be2014-07-11 10:26:37 -0700113 if (UNLIKELY(obj == nullptr)) {
Mathieu Chartiereebc3af2016-02-29 18:13:38 -0800114 // AllocateInternalWithGc can cause thread suspension, if someone instruments the entrypoints
115 // or changes the allocator in a suspend point here, we need to retry the allocation.
116 obj = AllocateInternalWithGc(self,
117 allocator,
118 kInstrumented,
119 byte_count,
120 &bytes_allocated,
121 &usable_size,
Hiroshi Yamauchi4460a842015-03-09 11:57:48 -0700122 &bytes_tl_bulk_allocated, &klass);
Mathieu Chartier14cc9be2014-07-11 10:26:37 -0700123 if (obj == nullptr) {
Mathieu Chartiereebc3af2016-02-29 18:13:38 -0800124 // The only way that we can get a null return if there is no pending exception is if the
125 // allocator or instrumentation changed.
126 if (!self->IsExceptionPending()) {
127 // AllocObject will pick up the new allocator type, and instrumented as true is the safe
128 // default.
129 return AllocObject</*kInstrumented*/true>(self,
130 klass,
131 byte_count,
132 pre_fence_visitor);
Mathieu Chartier14cc9be2014-07-11 10:26:37 -0700133 }
134 return nullptr;
135 }
Hiroshi Yamauchi624468c2014-03-31 15:14:47 -0700136 }
Mathieu Chartier14cc9be2014-07-11 10:26:37 -0700137 DCHECK_GT(bytes_allocated, 0u);
138 DCHECK_GT(usable_size, 0u);
139 obj->SetClass(klass);
140 if (kUseBakerOrBrooksReadBarrier) {
141 if (kUseBrooksReadBarrier) {
142 obj->SetReadBarrierPointer(obj);
143 }
144 obj->AssertReadBarrierPointer();
145 }
146 if (collector::SemiSpace::kUseRememberedSet && UNLIKELY(allocator == kAllocatorTypeNonMoving)) {
147 // (Note this if statement will be constant folded away for the
148 // fast-path quick entry points.) Because SetClass() has no write
149 // barrier, if a non-moving space allocation, we need a write
150 // barrier as the class pointer may point to the bump pointer
151 // space (where the class pointer is an "old-to-young" reference,
152 // though rare) under the GSS collector with the remembered set
153 // enabled. We don't need this for kAllocatorTypeRosAlloc/DlMalloc
154 // cases because we don't directly allocate into the main alloc
155 // space (besides promotions) under the SS/GSS collector.
156 WriteBarrierField(obj, mirror::Object::ClassOffset(), klass);
157 }
158 pre_fence_visitor(obj, usable_size);
Hans Boehmb0171b92016-01-28 17:19:15 -0800159 QuasiAtomic::ThreadFenceForConstructor();
Hiroshi Yamauchi4460a842015-03-09 11:57:48 -0700160 new_num_bytes_allocated = static_cast<size_t>(
Hans Boehmb0171b92016-01-28 17:19:15 -0800161 num_bytes_allocated_.FetchAndAddRelaxed(bytes_tl_bulk_allocated)) + bytes_tl_bulk_allocated;
Hiroshi Yamauchi9d04a202014-01-31 13:35:49 -0800162 }
Mathieu Chartierfd22d5b2014-07-14 10:16:05 -0700163 if (kIsDebugBuild && Runtime::Current()->IsStarted()) {
164 CHECK_LE(obj->SizeOf(), usable_size);
165 }
Mathieu Chartiercbb2d202013-11-14 17:45:16 -0800166 // TODO: Deprecate.
167 if (kInstrumented) {
168 if (Runtime::Current()->HasStatsEnabled()) {
169 RuntimeStats* thread_stats = self->GetStats();
170 ++thread_stats->allocated_objects;
171 thread_stats->allocated_bytes += bytes_allocated;
172 RuntimeStats* global_stats = Runtime::Current()->GetStats();
173 ++global_stats->allocated_objects;
174 global_stats->allocated_bytes += bytes_allocated;
175 }
176 } else {
177 DCHECK(!Runtime::Current()->HasStatsEnabled());
178 }
Mathieu Chartiercbb2d202013-11-14 17:45:16 -0800179 if (kInstrumented) {
Man Cao8c2ff642015-05-27 17:25:30 -0700180 if (IsAllocTrackingEnabled()) {
Mathieu Chartier458b1052016-03-29 14:02:55 -0700181 // allocation_records_ is not null since it never becomes null after allocation tracking is
182 // enabled.
183 DCHECK(allocation_records_ != nullptr);
184 allocation_records_->RecordAllocation(self, &obj, bytes_allocated);
Mathieu Chartiercbb2d202013-11-14 17:45:16 -0800185 }
186 } else {
Man Cao8c2ff642015-05-27 17:25:30 -0700187 DCHECK(!IsAllocTrackingEnabled());
Mathieu Chartiercbb2d202013-11-14 17:45:16 -0800188 }
Mathieu Chartier14b0a5d2016-03-11 17:22:23 -0800189 if (AllocatorHasAllocationStack(allocator)) {
190 PushOnAllocationStack(self, &obj);
191 }
Mathieu Chartier31000802015-06-14 14:14:37 -0700192 if (kInstrumented) {
193 if (gc_stress_mode_) {
194 CheckGcStressMode(self, &obj);
195 }
196 } else {
197 DCHECK(!gc_stress_mode_);
198 }
Hiroshi Yamauchi3e417802014-03-20 12:03:02 -0700199 // IsConcurrentGc() isn't known at compile time so we can optimize by not checking it for
Mathieu Chartier692fafd2013-11-29 17:24:40 -0800200 // the BumpPointer or TLAB allocators. This is nice since it allows the entire if statement to be
201 // optimized out. And for the other allocators, AllocatorMayHaveConcurrentGC is a constant since
202 // the allocator_type should be constant propagated.
Hiroshi Yamauchi3e417802014-03-20 12:03:02 -0700203 if (AllocatorMayHaveConcurrentGC(allocator) && IsGcConcurrent()) {
Mathieu Chartierf517f1a2014-03-06 15:52:27 -0800204 CheckConcurrentGC(self, new_num_bytes_allocated, &obj);
Mathieu Chartiercbb2d202013-11-14 17:45:16 -0800205 }
Mathieu Chartier4e305412014-02-19 10:54:44 -0800206 VerifyObject(obj);
207 self->VerifyStack();
Mathieu Chartiercbb2d202013-11-14 17:45:16 -0800208 return obj;
Hiroshi Yamauchi3b4c1892013-09-12 21:33:12 -0700209}
210
Hiroshi Yamauchif5b0e202014-02-11 17:02:22 -0800211// The size of a thread-local allocation stack in the number of references.
212static constexpr size_t kThreadLocalAllocationStackSize = 128;
213
Hiroshi Yamauchi4cd662e2014-04-03 16:28:10 -0700214inline void Heap::PushOnAllocationStack(Thread* self, mirror::Object** obj) {
Hiroshi Yamauchif5b0e202014-02-11 17:02:22 -0800215 if (kUseThreadLocalAllocationStack) {
Mathieu Chartierc1790162014-05-23 10:54:50 -0700216 if (UNLIKELY(!self->PushOnThreadLocalAllocationStack(*obj))) {
217 PushOnThreadLocalAllocationStackWithInternalGC(self, obj);
Hiroshi Yamauchif5b0e202014-02-11 17:02:22 -0800218 }
Mathieu Chartierc1790162014-05-23 10:54:50 -0700219 } else if (UNLIKELY(!allocation_stack_->AtomicPushBack(*obj))) {
220 PushOnAllocationStackWithInternalGC(self, obj);
Hiroshi Yamauchif5b0e202014-02-11 17:02:22 -0800221 }
222}
223
Mathieu Chartierc528dba2013-11-26 12:00:11 -0800224template <bool kInstrumented, typename PreFenceVisitor>
Mathieu Chartiera4f6af92015-08-11 17:35:25 -0700225inline mirror::Object* Heap::AllocLargeObject(Thread* self,
226 mirror::Class** klass,
Mathieu Chartierc528dba2013-11-26 12:00:11 -0800227 size_t byte_count,
228 const PreFenceVisitor& pre_fence_visitor) {
Mathieu Chartier446f9ee2014-12-01 15:00:27 -0800229 // Save and restore the class in case it moves.
230 StackHandleScope<1> hs(self);
231 auto klass_wrapper = hs.NewHandleWrapper(klass);
232 return AllocObjectWithAllocator<kInstrumented, false, PreFenceVisitor>(self, *klass, byte_count,
Mathieu Chartier692fafd2013-11-29 17:24:40 -0800233 kAllocatorTypeLOS,
234 pre_fence_visitor);
Mathieu Chartierc528dba2013-11-26 12:00:11 -0800235}
236
237template <const bool kInstrumented, const bool kGrow>
Mathieu Chartiera4f6af92015-08-11 17:35:25 -0700238inline mirror::Object* Heap::TryToAllocate(Thread* self,
239 AllocatorType allocator_type,
240 size_t alloc_size,
241 size_t* bytes_allocated,
Hiroshi Yamauchi4460a842015-03-09 11:57:48 -0700242 size_t* usable_size,
243 size_t* bytes_tl_bulk_allocated) {
Mathieu Chartiera4f6af92015-08-11 17:35:25 -0700244 if (allocator_type != kAllocatorTypeTLAB &&
245 allocator_type != kAllocatorTypeRegionTLAB &&
Hiroshi Yamauchi4460a842015-03-09 11:57:48 -0700246 allocator_type != kAllocatorTypeRosAlloc &&
Mathieu Chartier14cc9be2014-07-11 10:26:37 -0700247 UNLIKELY(IsOutOfMemoryOnAllocation<kGrow>(allocator_type, alloc_size))) {
Mathieu Chartiercbb2d202013-11-14 17:45:16 -0800248 return nullptr;
Hiroshi Yamauchi3b4c1892013-09-12 21:33:12 -0700249 }
Mathieu Chartiercbb2d202013-11-14 17:45:16 -0800250 mirror::Object* ret;
251 switch (allocator_type) {
252 case kAllocatorTypeBumpPointer: {
253 DCHECK(bump_pointer_space_ != nullptr);
254 alloc_size = RoundUp(alloc_size, space::BumpPointerSpace::kAlignment);
255 ret = bump_pointer_space_->AllocNonvirtual(alloc_size);
256 if (LIKELY(ret != nullptr)) {
257 *bytes_allocated = alloc_size;
Ian Rogers6fac4472014-02-25 17:01:10 -0800258 *usable_size = alloc_size;
Hiroshi Yamauchi4460a842015-03-09 11:57:48 -0700259 *bytes_tl_bulk_allocated = alloc_size;
Mathieu Chartiercbb2d202013-11-14 17:45:16 -0800260 }
261 break;
262 }
Mathieu Chartiere6da9af2013-12-16 11:54:42 -0800263 case kAllocatorTypeRosAlloc: {
Evgenii Stepanov1e133742015-05-20 12:30:59 -0700264 if (kInstrumented && UNLIKELY(is_running_on_memory_tool_)) {
265 // If running on valgrind or asan, we should be using the instrumented path.
Hiroshi Yamauchi4460a842015-03-09 11:57:48 -0700266 size_t max_bytes_tl_bulk_allocated = rosalloc_space_->MaxBytesBulkAllocatedFor(alloc_size);
267 if (UNLIKELY(IsOutOfMemoryOnAllocation<kGrow>(allocator_type,
268 max_bytes_tl_bulk_allocated))) {
269 return nullptr;
270 }
271 ret = rosalloc_space_->Alloc(self, alloc_size, bytes_allocated, usable_size,
272 bytes_tl_bulk_allocated);
Mathieu Chartiercbb2d202013-11-14 17:45:16 -0800273 } else {
Evgenii Stepanov1e133742015-05-20 12:30:59 -0700274 DCHECK(!is_running_on_memory_tool_);
Hiroshi Yamauchi4460a842015-03-09 11:57:48 -0700275 size_t max_bytes_tl_bulk_allocated =
276 rosalloc_space_->MaxBytesBulkAllocatedForNonvirtual(alloc_size);
277 if (UNLIKELY(IsOutOfMemoryOnAllocation<kGrow>(allocator_type,
278 max_bytes_tl_bulk_allocated))) {
279 return nullptr;
280 }
281 if (!kInstrumented) {
282 DCHECK(!rosalloc_space_->CanAllocThreadLocal(self, alloc_size));
283 }
284 ret = rosalloc_space_->AllocNonvirtual(self, alloc_size, bytes_allocated, usable_size,
285 bytes_tl_bulk_allocated);
Mathieu Chartiercbb2d202013-11-14 17:45:16 -0800286 }
287 break;
288 }
Mathieu Chartiere6da9af2013-12-16 11:54:42 -0800289 case kAllocatorTypeDlMalloc: {
Evgenii Stepanov1e133742015-05-20 12:30:59 -0700290 if (kInstrumented && UNLIKELY(is_running_on_memory_tool_)) {
Mathieu Chartiere6da9af2013-12-16 11:54:42 -0800291 // If running on valgrind, we should be using the instrumented path.
Hiroshi Yamauchi4460a842015-03-09 11:57:48 -0700292 ret = dlmalloc_space_->Alloc(self, alloc_size, bytes_allocated, usable_size,
293 bytes_tl_bulk_allocated);
Mathieu Chartiere6da9af2013-12-16 11:54:42 -0800294 } else {
Evgenii Stepanov1e133742015-05-20 12:30:59 -0700295 DCHECK(!is_running_on_memory_tool_);
Hiroshi Yamauchi4460a842015-03-09 11:57:48 -0700296 ret = dlmalloc_space_->AllocNonvirtual(self, alloc_size, bytes_allocated, usable_size,
297 bytes_tl_bulk_allocated);
Mathieu Chartiere6da9af2013-12-16 11:54:42 -0800298 }
299 break;
300 }
301 case kAllocatorTypeNonMoving: {
Hiroshi Yamauchi4460a842015-03-09 11:57:48 -0700302 ret = non_moving_space_->Alloc(self, alloc_size, bytes_allocated, usable_size,
303 bytes_tl_bulk_allocated);
Mathieu Chartiere6da9af2013-12-16 11:54:42 -0800304 break;
305 }
Mathieu Chartiercbb2d202013-11-14 17:45:16 -0800306 case kAllocatorTypeLOS: {
Hiroshi Yamauchi4460a842015-03-09 11:57:48 -0700307 ret = large_object_space_->Alloc(self, alloc_size, bytes_allocated, usable_size,
308 bytes_tl_bulk_allocated);
Hiroshi Yamauchi95a659f2013-11-22 14:43:45 -0800309 // Note that the bump pointer spaces aren't necessarily next to
310 // the other continuous spaces like the non-moving alloc space or
311 // the zygote space.
312 DCHECK(ret == nullptr || large_object_space_->Contains(ret));
Mathieu Chartiercbb2d202013-11-14 17:45:16 -0800313 break;
314 }
Mathieu Chartier692fafd2013-11-29 17:24:40 -0800315 case kAllocatorTypeTLAB: {
Mathieu Chartier14cc9be2014-07-11 10:26:37 -0700316 DCHECK_ALIGNED(alloc_size, space::BumpPointerSpace::kAlignment);
Mathieu Chartiere6da9af2013-12-16 11:54:42 -0800317 if (UNLIKELY(self->TlabSize() < alloc_size)) {
Mathieu Chartier14cc9be2014-07-11 10:26:37 -0700318 const size_t new_tlab_size = alloc_size + kDefaultTLABSize;
319 if (UNLIKELY(IsOutOfMemoryOnAllocation<kGrow>(allocator_type, new_tlab_size))) {
Mathieu Chartier692fafd2013-11-29 17:24:40 -0800320 return nullptr;
321 }
Mathieu Chartier14cc9be2014-07-11 10:26:37 -0700322 // Try allocating a new thread local buffer, if the allocaiton fails the space must be
Mathieu Chartier2cebb242015-04-21 16:50:40 -0700323 // full so return null.
Mathieu Chartier14cc9be2014-07-11 10:26:37 -0700324 if (!bump_pointer_space_->AllocNewTlab(self, new_tlab_size)) {
325 return nullptr;
326 }
Hiroshi Yamauchi4460a842015-03-09 11:57:48 -0700327 *bytes_tl_bulk_allocated = new_tlab_size;
Mathieu Chartier14cc9be2014-07-11 10:26:37 -0700328 } else {
Hiroshi Yamauchi4460a842015-03-09 11:57:48 -0700329 *bytes_tl_bulk_allocated = 0;
Mathieu Chartier692fafd2013-11-29 17:24:40 -0800330 }
331 // The allocation can't fail.
Mathieu Chartiere6da9af2013-12-16 11:54:42 -0800332 ret = self->AllocTlab(alloc_size);
Mathieu Chartier692fafd2013-11-29 17:24:40 -0800333 DCHECK(ret != nullptr);
Hiroshi Yamauchi4460a842015-03-09 11:57:48 -0700334 *bytes_allocated = alloc_size;
Hiroshi Yamauchi5ccd4982014-03-11 12:19:04 -0700335 *usable_size = alloc_size;
Mathieu Chartier692fafd2013-11-29 17:24:40 -0800336 break;
337 }
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -0800338 case kAllocatorTypeRegion: {
339 DCHECK(region_space_ != nullptr);
340 alloc_size = RoundUp(alloc_size, space::RegionSpace::kAlignment);
Hiroshi Yamauchi4460a842015-03-09 11:57:48 -0700341 ret = region_space_->AllocNonvirtual<false>(alloc_size, bytes_allocated, usable_size,
342 bytes_tl_bulk_allocated);
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -0800343 break;
344 }
345 case kAllocatorTypeRegionTLAB: {
346 DCHECK(region_space_ != nullptr);
347 DCHECK_ALIGNED(alloc_size, space::RegionSpace::kAlignment);
348 if (UNLIKELY(self->TlabSize() < alloc_size)) {
349 if (space::RegionSpace::kRegionSize >= alloc_size) {
350 // Non-large. Check OOME for a tlab.
351 if (LIKELY(!IsOutOfMemoryOnAllocation<kGrow>(allocator_type, space::RegionSpace::kRegionSize))) {
352 // Try to allocate a tlab.
353 if (!region_space_->AllocNewTlab(self)) {
354 // Failed to allocate a tlab. Try non-tlab.
Hiroshi Yamauchi4460a842015-03-09 11:57:48 -0700355 ret = region_space_->AllocNonvirtual<false>(alloc_size, bytes_allocated, usable_size,
356 bytes_tl_bulk_allocated);
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -0800357 return ret;
358 }
Hiroshi Yamauchi4460a842015-03-09 11:57:48 -0700359 *bytes_tl_bulk_allocated = space::RegionSpace::kRegionSize;
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -0800360 // Fall-through.
361 } else {
362 // Check OOME for a non-tlab allocation.
363 if (!IsOutOfMemoryOnAllocation<kGrow>(allocator_type, alloc_size)) {
Hiroshi Yamauchi4460a842015-03-09 11:57:48 -0700364 ret = region_space_->AllocNonvirtual<false>(alloc_size, bytes_allocated, usable_size,
365 bytes_tl_bulk_allocated);
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -0800366 return ret;
367 } else {
368 // Neither tlab or non-tlab works. Give up.
369 return nullptr;
370 }
371 }
372 } else {
373 // Large. Check OOME.
374 if (LIKELY(!IsOutOfMemoryOnAllocation<kGrow>(allocator_type, alloc_size))) {
Hiroshi Yamauchi4460a842015-03-09 11:57:48 -0700375 ret = region_space_->AllocNonvirtual<false>(alloc_size, bytes_allocated, usable_size,
376 bytes_tl_bulk_allocated);
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -0800377 return ret;
378 } else {
379 return nullptr;
380 }
381 }
382 } else {
Hiroshi Yamauchi4460a842015-03-09 11:57:48 -0700383 *bytes_tl_bulk_allocated = 0; // Allocated in an existing buffer.
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -0800384 }
385 // The allocation can't fail.
386 ret = self->AllocTlab(alloc_size);
387 DCHECK(ret != nullptr);
Hiroshi Yamauchi4460a842015-03-09 11:57:48 -0700388 *bytes_allocated = alloc_size;
Hiroshi Yamauchi2cd334a2015-01-09 14:03:35 -0800389 *usable_size = alloc_size;
390 break;
391 }
Mathieu Chartiercbb2d202013-11-14 17:45:16 -0800392 default: {
393 LOG(FATAL) << "Invalid allocator type";
394 ret = nullptr;
395 }
396 }
397 return ret;
Hiroshi Yamauchi3b4c1892013-09-12 21:33:12 -0700398}
399
Mathieu Chartiercbb2d202013-11-14 17:45:16 -0800400inline bool Heap::ShouldAllocLargeObject(mirror::Class* c, size_t byte_count) const {
Hiroshi Yamauchi3b4c1892013-09-12 21:33:12 -0700401 // We need to have a zygote space or else our newly allocated large object can end up in the
402 // Zygote resulting in it being prematurely freed.
403 // We can only do this for primitive objects since large objects will not be within the card table
404 // range. This also means that we rely on SetClass not dirtying the object's card.
Jeff Hao13e00912015-06-22 15:14:49 -0700405 return byte_count >= large_object_threshold_ && (c->IsPrimitiveArray() || c->IsStringClass());
Hiroshi Yamauchi3b4c1892013-09-12 21:33:12 -0700406}
407
Mathieu Chartier692fafd2013-11-29 17:24:40 -0800408template <bool kGrow>
409inline bool Heap::IsOutOfMemoryOnAllocation(AllocatorType allocator_type, size_t alloc_size) {
Ian Rogers3e5cf302014-05-20 16:40:37 -0700410 size_t new_footprint = num_bytes_allocated_.LoadSequentiallyConsistent() + alloc_size;
Hiroshi Yamauchi3b4c1892013-09-12 21:33:12 -0700411 if (UNLIKELY(new_footprint > max_allowed_footprint_)) {
412 if (UNLIKELY(new_footprint > growth_limit_)) {
413 return true;
414 }
Hiroshi Yamauchi3e417802014-03-20 12:03:02 -0700415 if (!AllocatorMayHaveConcurrentGC(allocator_type) || !IsGcConcurrent()) {
Mathieu Chartierc528dba2013-11-26 12:00:11 -0800416 if (!kGrow) {
Hiroshi Yamauchi3b4c1892013-09-12 21:33:12 -0700417 return true;
Hiroshi Yamauchi3b4c1892013-09-12 21:33:12 -0700418 }
Mathieu Chartier7bf82af2013-12-06 16:51:45 -0800419 // TODO: Grow for allocation is racy, fix it.
420 VLOG(heap) << "Growing heap from " << PrettySize(max_allowed_footprint_) << " to "
421 << PrettySize(new_footprint) << " for a " << PrettySize(alloc_size) << " allocation";
422 max_allowed_footprint_ = new_footprint;
Hiroshi Yamauchi3b4c1892013-09-12 21:33:12 -0700423 }
424 }
425 return false;
426}
427
Mathieu Chartiera4f6af92015-08-11 17:35:25 -0700428inline void Heap::CheckConcurrentGC(Thread* self,
429 size_t new_num_bytes_allocated,
Mathieu Chartierf517f1a2014-03-06 15:52:27 -0800430 mirror::Object** obj) {
Hiroshi Yamauchi3b4c1892013-09-12 21:33:12 -0700431 if (UNLIKELY(new_num_bytes_allocated >= concurrent_start_bytes_)) {
Hiroshi Yamauchi0ae98992015-05-01 14:33:19 -0700432 RequestConcurrentGCAndSaveObject(self, false, obj);
Hiroshi Yamauchi3b4c1892013-09-12 21:33:12 -0700433 }
434}
435
436} // namespace gc
437} // namespace art
438
439#endif // ART_RUNTIME_GC_HEAP_INL_H_