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1 // Copyright 2015 the V8 project authors. All rights reserved. | 1 // Copyright 2015 the V8 project authors. All rights reserved. |
2 // Use of this source code is governed by a BSD-style license that can be | 2 // Use of this source code is governed by a BSD-style license that can be |
3 // found in the LICENSE file. | 3 // found in the LICENSE file. |
4 | 4 |
5 #include "src/heap/array-buffer-tracker.h" | 5 #include "src/heap/array-buffer-tracker.h" |
6 #include "src/heap/array-buffer-tracker-inl.h" | |
6 #include "src/heap/heap.h" | 7 #include "src/heap/heap.h" |
7 #include "src/isolate.h" | 8 #include "src/isolate.h" |
9 #include "src/objects-inl.h" | |
8 #include "src/objects.h" | 10 #include "src/objects.h" |
9 #include "src/objects-inl.h" | |
10 #include "src/v8.h" | 11 #include "src/v8.h" |
11 | 12 |
12 namespace v8 { | 13 namespace v8 { |
13 namespace internal { | 14 namespace internal { |
14 | 15 |
15 ArrayBufferTracker::~ArrayBufferTracker() { | 16 LocalArrayBufferTracker::~LocalArrayBufferTracker() { |
16 Isolate* isolate = heap()->isolate(); | |
17 size_t freed_memory = 0; | 17 size_t freed_memory = 0; |
18 for (auto& buffer : live_array_buffers_) { | 18 for (auto& buffer : live_) { |
19 isolate->array_buffer_allocator()->Free(buffer.first, buffer.second); | 19 heap_->isolate()->array_buffer_allocator()->Free(buffer.second.first, |
20 freed_memory += buffer.second; | 20 buffer.second.second); |
21 freed_memory += buffer.second.second; | |
21 } | 22 } |
22 for (auto& buffer : live_array_buffers_for_scavenge_) { | 23 if (freed_memory > 0) { |
23 isolate->array_buffer_allocator()->Free(buffer.first, buffer.second); | 24 heap_->update_amount_of_external_allocated_freed_memory( |
24 freed_memory += buffer.second; | 25 static_cast<intptr_t>(freed_memory)); |
25 } | 26 } |
26 live_array_buffers_.clear(); | 27 live_.clear(); |
27 live_array_buffers_for_scavenge_.clear(); | 28 not_yet_discovered_.clear(); |
28 not_yet_discovered_array_buffers_.clear(); | 29 } |
29 not_yet_discovered_array_buffers_for_scavenge_.clear(); | |
30 | 30 |
31 void LocalArrayBufferTracker::Add(Key key, const Value& value) { | |
32 live_[key] = value; | |
33 not_yet_discovered_[key] = value; | |
34 } | |
35 | |
36 void LocalArrayBufferTracker::AddLive(Key key, const Value& value) { | |
37 DCHECK_EQ(not_yet_discovered_.count(key), 0); | |
38 live_[key] = value; | |
39 } | |
40 | |
41 void LocalArrayBufferTracker::MarkLive(Key key) { | |
42 DCHECK_EQ(live_.count(key), 1); | |
43 not_yet_discovered_.erase(key); | |
44 } | |
45 | |
46 LocalArrayBufferTracker::Value LocalArrayBufferTracker::Remove(Key key) { | |
47 DCHECK_EQ(live_.count(key), 1); | |
48 Value value = live_[key]; | |
49 live_.erase(key); | |
50 not_yet_discovered_.erase(key); | |
51 return value; | |
52 } | |
53 | |
54 void LocalArrayBufferTracker::FreeDead() { | |
55 size_t freed_memory = 0; | |
56 for (TrackingMap::iterator it = not_yet_discovered_.begin(); | |
57 it != not_yet_discovered_.end();) { | |
58 heap_->isolate()->array_buffer_allocator()->Free(it->second.first, | |
59 it->second.second); | |
60 freed_memory += it->second.second; | |
61 live_.erase(it->first); | |
62 not_yet_discovered_.erase(it++); | |
63 } | |
31 if (freed_memory > 0) { | 64 if (freed_memory > 0) { |
32 heap()->update_amount_of_external_allocated_memory( | 65 heap_->update_amount_of_external_allocated_freed_memory( |
33 -static_cast<int64_t>(freed_memory)); | 66 static_cast<intptr_t>(freed_memory)); |
67 } | |
68 started_ = false; | |
69 } | |
70 | |
71 void LocalArrayBufferTracker::Reset() { | |
72 if (!started_) { | |
73 not_yet_discovered_ = live_; | |
74 started_ = true; | |
34 } | 75 } |
35 } | 76 } |
36 | 77 |
78 bool LocalArrayBufferTracker::IsEmpty() { | |
79 return live_.empty() && not_yet_discovered_.empty(); | |
80 } | |
81 | |
82 ArrayBufferTracker::~ArrayBufferTracker() {} | |
37 | 83 |
38 void ArrayBufferTracker::RegisterNew(JSArrayBuffer* buffer) { | 84 void ArrayBufferTracker::RegisterNew(JSArrayBuffer* buffer) { |
39 void* data = buffer->backing_store(); | 85 void* data = buffer->backing_store(); |
40 if (!data) return; | 86 if (!data) return; |
41 | 87 |
42 bool in_new_space = heap()->InNewSpace(buffer); | 88 size_t length = NumberToSize(heap_->isolate(), buffer->byte_length()); |
43 size_t length = NumberToSize(heap()->isolate(), buffer->byte_length()); | 89 Page* page = Page::FromAddress(buffer->address()); |
44 if (in_new_space) { | 90 LocalArrayBufferTracker* tracker = |
45 live_array_buffers_for_scavenge_[data] = length; | 91 page->local_tracker<Page::kCreateIfNotPresent>(); |
46 } else { | 92 DCHECK_NOT_NULL(tracker); |
47 live_array_buffers_[data] = length; | 93 { |
94 base::LockGuard<base::Mutex> guard(page->mutex()); | |
95 if (Marking::IsBlack(Marking::MarkBitFrom(buffer))) { | |
96 tracker->AddLive(buffer, std::make_pair(data, length)); | |
97 } else { | |
98 tracker->Add(buffer, std::make_pair(data, length)); | |
99 } | |
48 } | 100 } |
49 | |
50 // We may go over the limit of externally allocated memory here. We call the | 101 // We may go over the limit of externally allocated memory here. We call the |
51 // api function to trigger a GC in this case. | 102 // api function to trigger a GC in this case. |
52 reinterpret_cast<v8::Isolate*>(heap()->isolate()) | 103 reinterpret_cast<v8::Isolate*>(heap_->isolate()) |
53 ->AdjustAmountOfExternalAllocatedMemory(length); | 104 ->AdjustAmountOfExternalAllocatedMemory(length); |
54 } | 105 } |
55 | 106 |
56 | 107 |
57 void ArrayBufferTracker::Unregister(JSArrayBuffer* buffer) { | 108 void ArrayBufferTracker::Unregister(JSArrayBuffer* buffer) { |
58 void* data = buffer->backing_store(); | 109 void* data = buffer->backing_store(); |
59 if (!data) return; | 110 if (!data) return; |
60 | 111 |
61 bool in_new_space = heap()->InNewSpace(buffer); | 112 Page* page = Page::FromAddress(buffer->address()); |
62 std::map<void*, size_t>* live_buffers = | 113 LocalArrayBufferTracker* tracker = page->local_tracker<Page::kDontCreate>(); |
63 in_new_space ? &live_array_buffers_for_scavenge_ : &live_array_buffers_; | 114 DCHECK_NOT_NULL(tracker); |
64 std::map<void*, size_t>* not_yet_discovered_buffers = | 115 size_t length = 0; |
65 in_new_space ? ¬_yet_discovered_array_buffers_for_scavenge_ | 116 { |
66 : ¬_yet_discovered_array_buffers_; | 117 base::LockGuard<base::Mutex> guard(page->mutex()); |
67 | 118 length = tracker->Remove(buffer).second; |
68 DCHECK(live_buffers->count(data) > 0); | 119 } |
69 | 120 heap_->update_amount_of_external_allocated_memory( |
70 size_t length = (*live_buffers)[data]; | 121 -static_cast<intptr_t>(length)); |
71 live_buffers->erase(data); | |
72 not_yet_discovered_buffers->erase(data); | |
73 | |
74 heap()->update_amount_of_external_allocated_memory( | |
75 -static_cast<int64_t>(length)); | |
76 } | 122 } |
77 | 123 |
124 void ArrayBufferTracker::FreeDeadInNewSpace() { | |
125 NewSpacePageIterator from_it(heap_->new_space()->FromSpaceStart(), | |
126 heap_->new_space()->FromSpaceEnd()); | |
127 while (from_it.has_next()) { | |
128 ScanAndFreeDeadArrayBuffers<LocalArrayBufferTracker::kForwardingPointer>( | |
129 from_it.next()); | |
130 } | |
131 heap_->account_amount_of_external_allocated_freed_memory(); | |
132 } | |
133 | |
134 void ArrayBufferTracker::ResetTrackersInOldSpace() { | |
135 heap_->old_space()->ForAllPages([](Page* p) { | |
136 LocalArrayBufferTracker* tracker = p->local_tracker<Page::kDontCreate>(); | |
137 if (tracker != nullptr) { | |
138 tracker->Reset(); | |
139 if (tracker->IsEmpty()) { | |
140 p->ReleaseLocalTracker(); | |
141 } | |
142 } | |
143 }); | |
144 } | |
78 | 145 |
79 void ArrayBufferTracker::MarkLive(JSArrayBuffer* buffer) { | 146 void ArrayBufferTracker::MarkLive(JSArrayBuffer* buffer) { |
80 base::LockGuard<base::Mutex> guard(&mutex_); | 147 if (buffer->is_external()) return; |
81 void* data = buffer->backing_store(); | 148 void* data = buffer->backing_store(); |
149 if (data == nullptr) return; | |
150 if (data == heap_->undefined_value()) return; | |
82 | 151 |
83 // ArrayBuffer might be in the middle of being constructed. | 152 Page* page = Page::FromAddress(buffer->address()); |
84 if (data == heap()->undefined_value()) return; | 153 LocalArrayBufferTracker* tracker = |
85 if (heap()->InNewSpace(buffer)) { | 154 page->local_tracker<Page::kCreateIfNotPresent>(); |
86 not_yet_discovered_array_buffers_for_scavenge_.erase(data); | 155 DCHECK_NOT_NULL(tracker); |
156 if (tracker->IsTracked(buffer)) { | |
157 base::LockGuard<base::Mutex> guard(page->mutex()); | |
158 tracker->MarkLive((buffer)); | |
87 } else { | 159 } else { |
88 not_yet_discovered_array_buffers_.erase(data); | 160 RegisterNew(buffer); |
89 } | 161 } |
90 } | 162 } |
91 | 163 |
92 | 164 void ArrayBufferTracker::FreeDead(Page* page) { |
Michael Lippautz
2016/05/25 10:53:26
Called from sweeper which already holds the page l
Hannes Payer (out of office)
2016/05/25 10:55:26
Please add that as a comment.
Michael Lippautz
2016/05/25 10:56:24
Done.
| |
93 void ArrayBufferTracker::FreeDead(bool from_scavenge) { | 165 LocalArrayBufferTracker* tracker = page->local_tracker<Page::kDontCreate>(); |
94 size_t freed_memory = 0; | 166 if (tracker != nullptr) { |
95 Isolate* isolate = heap()->isolate(); | 167 tracker->FreeDead(); |
96 for (auto& buffer : not_yet_discovered_array_buffers_for_scavenge_) { | |
97 isolate->array_buffer_allocator()->Free(buffer.first, buffer.second); | |
98 freed_memory += buffer.second; | |
99 live_array_buffers_for_scavenge_.erase(buffer.first); | |
100 } | 168 } |
101 | |
102 if (!from_scavenge) { | |
103 for (auto& buffer : not_yet_discovered_array_buffers_) { | |
104 isolate->array_buffer_allocator()->Free(buffer.first, buffer.second); | |
105 freed_memory += buffer.second; | |
106 live_array_buffers_.erase(buffer.first); | |
107 } | |
108 } | |
109 | |
110 not_yet_discovered_array_buffers_for_scavenge_ = | |
111 live_array_buffers_for_scavenge_; | |
112 if (!from_scavenge) not_yet_discovered_array_buffers_ = live_array_buffers_; | |
113 | |
114 // Do not call through the api as this code is triggered while doing a GC. | |
115 heap()->update_amount_of_external_allocated_memory( | |
116 -static_cast<int64_t>(freed_memory)); | |
117 } | 169 } |
118 | 170 |
119 | 171 template <LocalArrayBufferTracker::LivenessIndicator liveness_indicator> |
120 void ArrayBufferTracker::PrepareDiscoveryInNewSpace() { | 172 void ArrayBufferTracker::ScanAndFreeDeadArrayBuffers(Page* page) { |
121 not_yet_discovered_array_buffers_for_scavenge_ = | 173 LocalArrayBufferTracker* tracker = page->local_tracker<Page::kDontCreate>(); |
122 live_array_buffers_for_scavenge_; | 174 if (tracker != nullptr) { |
175 base::LockGuard<base::Mutex> guard(page->mutex()); | |
176 tracker->ScanAndFreeDead<liveness_indicator>(); | |
177 } | |
123 } | 178 } |
124 | 179 |
125 | 180 template void ArrayBufferTracker::ScanAndFreeDeadArrayBuffers< |
126 void ArrayBufferTracker::Promote(JSArrayBuffer* buffer) { | 181 LocalArrayBufferTracker::LivenessIndicator::kForwardingPointer>(Page* page); |
127 base::LockGuard<base::Mutex> guard(&mutex_); | 182 template void ArrayBufferTracker::ScanAndFreeDeadArrayBuffers< |
128 | 183 LocalArrayBufferTracker::LivenessIndicator::kMarkBit>(Page* page); |
129 if (buffer->is_external()) return; | |
130 void* data = buffer->backing_store(); | |
131 if (!data) return; | |
132 // ArrayBuffer might be in the middle of being constructed. | |
133 if (data == heap()->undefined_value()) return; | |
134 DCHECK(live_array_buffers_for_scavenge_.count(data) > 0); | |
135 live_array_buffers_[data] = live_array_buffers_for_scavenge_[data]; | |
136 live_array_buffers_for_scavenge_.erase(data); | |
137 not_yet_discovered_array_buffers_for_scavenge_.erase(data); | |
138 } | |
139 | 184 |
140 } // namespace internal | 185 } // namespace internal |
141 } // namespace v8 | 186 } // namespace v8 |
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