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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/profiler/sampling-heap-profiler.h" | 5 #include "src/profiler/sampling-heap-profiler.h" |
6 | 6 |
7 #include <stdint.h> | 7 #include <stdint.h> |
8 #include <memory> | 8 #include <memory> |
9 #include "src/api.h" | 9 #include "src/api.h" |
10 #include "src/base/utils/random-number-generator.h" | 10 #include "src/base/utils/random-number-generator.h" |
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35 | 35 |
36 SamplingHeapProfiler::SamplingHeapProfiler(Heap* heap, StringsStorage* names, | 36 SamplingHeapProfiler::SamplingHeapProfiler(Heap* heap, StringsStorage* names, |
37 uint64_t rate, int stack_depth) | 37 uint64_t rate, int stack_depth) |
38 : isolate_(heap->isolate()), | 38 : isolate_(heap->isolate()), |
39 heap_(heap), | 39 heap_(heap), |
40 new_space_observer_(new SamplingAllocationObserver( | 40 new_space_observer_(new SamplingAllocationObserver( |
41 heap_, rate, rate, this, heap->isolate()->random_number_generator())), | 41 heap_, rate, rate, this, heap->isolate()->random_number_generator())), |
42 other_spaces_observer_(new SamplingAllocationObserver( | 42 other_spaces_observer_(new SamplingAllocationObserver( |
43 heap_, rate, rate, this, heap->isolate()->random_number_generator())), | 43 heap_, rate, rate, this, heap->isolate()->random_number_generator())), |
44 names_(names), | 44 names_(names), |
| 45 profile_root_("(root)", v8::UnboundScript::kNoScriptId, 0), |
45 samples_(), | 46 samples_(), |
46 stack_depth_(stack_depth) { | 47 stack_depth_(stack_depth) { |
47 heap->new_space()->AddAllocationObserver(new_space_observer_.get()); | 48 heap->new_space()->AddAllocationObserver(new_space_observer_.get()); |
48 AllSpaces spaces(heap); | 49 AllSpaces spaces(heap); |
49 for (Space* space = spaces.next(); space != NULL; space = spaces.next()) { | 50 for (Space* space = spaces.next(); space != NULL; space = spaces.next()) { |
50 if (space != heap->new_space()) { | 51 if (space != heap->new_space()) { |
51 space->AddAllocationObserver(other_spaces_observer_.get()); | 52 space->AddAllocationObserver(other_spaces_observer_.get()); |
52 } | 53 } |
53 } | 54 } |
54 } | 55 } |
55 | 56 |
56 | 57 |
57 SamplingHeapProfiler::~SamplingHeapProfiler() { | 58 SamplingHeapProfiler::~SamplingHeapProfiler() { |
58 heap_->new_space()->RemoveAllocationObserver(new_space_observer_.get()); | 59 heap_->new_space()->RemoveAllocationObserver(new_space_observer_.get()); |
59 AllSpaces spaces(heap_); | 60 AllSpaces spaces(heap_); |
60 for (Space* space = spaces.next(); space != NULL; space = spaces.next()) { | 61 for (Space* space = spaces.next(); space != NULL; space = spaces.next()) { |
61 if (space != heap_->new_space()) { | 62 if (space != heap_->new_space()) { |
62 space->RemoveAllocationObserver(other_spaces_observer_.get()); | 63 space->RemoveAllocationObserver(other_spaces_observer_.get()); |
63 } | 64 } |
64 } | 65 } |
65 | 66 |
66 // Clear samples and drop all the weak references we are keeping. | 67 for (auto sample : samples_) { |
67 std::set<SampledAllocation*>::iterator it; | 68 delete sample; |
68 for (it = samples_.begin(); it != samples_.end(); ++it) { | |
69 delete *it; | |
70 } | 69 } |
71 std::set<SampledAllocation*> empty; | 70 std::set<Sample*> empty; |
72 samples_.swap(empty); | 71 samples_.swap(empty); |
73 } | 72 } |
74 | 73 |
75 | 74 |
76 void SamplingHeapProfiler::SampleObject(Address soon_object, size_t size) { | 75 void SamplingHeapProfiler::SampleObject(Address soon_object, size_t size) { |
77 DisallowHeapAllocation no_allocation; | 76 DisallowHeapAllocation no_allocation; |
78 | 77 |
79 HandleScope scope(isolate_); | 78 HandleScope scope(isolate_); |
80 HeapObject* heap_object = HeapObject::FromAddress(soon_object); | 79 HeapObject* heap_object = HeapObject::FromAddress(soon_object); |
81 Handle<Object> obj(heap_object, isolate_); | 80 Handle<Object> obj(heap_object, isolate_); |
82 | 81 |
83 // Mark the new block as FreeSpace to make sure the heap is iterable while we | 82 // Mark the new block as FreeSpace to make sure the heap is iterable while we |
84 // are taking the sample. | 83 // are taking the sample. |
85 heap()->CreateFillerObjectAt(soon_object, static_cast<int>(size)); | 84 heap()->CreateFillerObjectAt(soon_object, static_cast<int>(size)); |
86 | 85 |
87 Local<v8::Value> loc = v8::Utils::ToLocal(obj); | 86 Local<v8::Value> loc = v8::Utils::ToLocal(obj); |
88 | 87 |
89 SampledAllocation* sample = | 88 AllocationNode* node = AddStack(); |
90 new SampledAllocation(this, isolate_, loc, size, stack_depth_); | 89 node->allocations_[size]++; |
| 90 Sample* sample = new Sample(size, node, loc, this); |
91 samples_.insert(sample); | 91 samples_.insert(sample); |
| 92 sample->global.SetWeak(sample, OnWeakCallback, WeakCallbackType::kParameter); |
92 } | 93 } |
93 | 94 |
94 | 95 void SamplingHeapProfiler::OnWeakCallback( |
95 void SamplingHeapProfiler::SampledAllocation::OnWeakCallback( | 96 const WeakCallbackInfo<Sample>& data) { |
96 const WeakCallbackInfo<SampledAllocation>& data) { | 97 Sample* sample = data.GetParameter(); |
97 SampledAllocation* sample = data.GetParameter(); | 98 AllocationNode* node = sample->owner; |
98 sample->sampling_heap_profiler_->samples_.erase(sample); | 99 DCHECK(node->allocations_[sample->size] > 0); |
| 100 node->allocations_[sample->size]--; |
| 101 sample->profiler->samples_.erase(sample); |
99 delete sample; | 102 delete sample; |
100 } | 103 } |
101 | 104 |
102 | 105 SamplingHeapProfiler::AllocationNode* SamplingHeapProfiler::FindOrAddChildNode( |
103 SamplingHeapProfiler::FunctionInfo::FunctionInfo(SharedFunctionInfo* shared, | 106 AllocationNode* parent, const char* name, int script_id, |
104 StringsStorage* names) | 107 int start_position) { |
105 : name_(names->GetFunctionName(shared->DebugName())), | 108 for (AllocationNode* child : parent->children_) { |
106 script_name_(""), | 109 if (child->script_id_ == script_id && |
107 script_id_(v8::UnboundScript::kNoScriptId), | 110 child->script_position_ == start_position && |
108 start_position_(shared->start_position()) { | 111 strcmp(child->name_, name) == 0) { |
109 if (shared->script()->IsScript()) { | 112 return child; |
110 Script* script = Script::cast(shared->script()); | |
111 script_id_ = script->id(); | |
112 if (script->name()->IsName()) { | |
113 Name* name = Name::cast(script->name()); | |
114 script_name_ = names->GetName(name); | |
115 } | 113 } |
116 } | 114 } |
| 115 AllocationNode* child = new AllocationNode(name, script_id, start_position); |
| 116 parent->children_.push_back(child); |
| 117 return child; |
117 } | 118 } |
118 | 119 |
| 120 SamplingHeapProfiler::AllocationNode* SamplingHeapProfiler::AddStack() { |
| 121 AllocationNode* node = &profile_root_; |
119 | 122 |
120 SamplingHeapProfiler::SampledAllocation::SampledAllocation( | 123 std::vector<SharedFunctionInfo*> stack; |
121 SamplingHeapProfiler* sampling_heap_profiler, Isolate* isolate, | 124 StackTraceFrameIterator it(isolate_); |
122 Local<Value> local, size_t size, int max_frames) | |
123 : sampling_heap_profiler_(sampling_heap_profiler), | |
124 global_(reinterpret_cast<v8::Isolate*>(isolate), local), | |
125 size_(size) { | |
126 global_.SetWeak(this, OnWeakCallback, WeakCallbackType::kParameter); | |
127 | |
128 StackTraceFrameIterator it(isolate); | |
129 int frames_captured = 0; | 125 int frames_captured = 0; |
130 while (!it.done() && frames_captured < max_frames) { | 126 while (!it.done() && frames_captured < stack_depth_) { |
131 JavaScriptFrame* frame = it.frame(); | 127 JavaScriptFrame* frame = it.frame(); |
132 SharedFunctionInfo* shared = frame->function()->shared(); | 128 SharedFunctionInfo* shared = frame->function()->shared(); |
133 stack_.push_back(new FunctionInfo(shared, sampling_heap_profiler->names())); | 129 stack.push_back(shared); |
134 | 130 |
135 frames_captured++; | 131 frames_captured++; |
136 it.Advance(); | 132 it.Advance(); |
137 } | 133 } |
138 | 134 |
139 if (frames_captured == 0) { | 135 if (frames_captured == 0) { |
140 const char* name = nullptr; | 136 const char* name = nullptr; |
141 switch (isolate->current_vm_state()) { | 137 switch (isolate_->current_vm_state()) { |
142 case GC: | 138 case GC: |
143 name = "(GC)"; | 139 name = "(GC)"; |
144 break; | 140 break; |
145 case COMPILER: | 141 case COMPILER: |
146 name = "(COMPILER)"; | 142 name = "(COMPILER)"; |
147 break; | 143 break; |
148 case OTHER: | 144 case OTHER: |
149 name = "(V8 API)"; | 145 name = "(V8 API)"; |
150 break; | 146 break; |
151 case EXTERNAL: | 147 case EXTERNAL: |
152 name = "(EXTERNAL)"; | 148 name = "(EXTERNAL)"; |
153 break; | 149 break; |
154 case IDLE: | 150 case IDLE: |
155 name = "(IDLE)"; | 151 name = "(IDLE)"; |
156 break; | 152 break; |
157 case JS: | 153 case JS: |
158 name = "(JS)"; | 154 name = "(JS)"; |
159 break; | 155 break; |
160 } | 156 } |
161 stack_.push_back(new FunctionInfo(name)); | 157 return FindOrAddChildNode(node, name, v8::UnboundScript::kNoScriptId, 0); |
162 } | 158 } |
163 } | |
164 | |
165 v8::AllocationProfile::Node* SamplingHeapProfiler::AllocateNode( | |
166 AllocationProfile* profile, const std::map<int, Script*>& scripts, | |
167 FunctionInfo* function_info) { | |
168 DCHECK(function_info->get_name()); | |
169 DCHECK(function_info->get_script_name()); | |
170 | |
171 int line = v8::AllocationProfile::kNoLineNumberInfo; | |
172 int column = v8::AllocationProfile::kNoColumnNumberInfo; | |
173 | |
174 if (function_info->get_script_id() != v8::UnboundScript::kNoScriptId) { | |
175 // Cannot use std::map<T>::at because it is not available on android. | |
176 auto non_const_scripts = const_cast<std::map<int, Script*>&>(scripts); | |
177 Handle<Script> script(non_const_scripts[function_info->get_script_id()]); | |
178 | |
179 line = | |
180 1 + Script::GetLineNumber(script, function_info->get_start_position()); | |
181 column = 1 + Script::GetColumnNumber(script, | |
182 function_info->get_start_position()); | |
183 } | |
184 | |
185 profile->nodes().push_back(v8::AllocationProfile::Node( | |
186 {ToApiHandle<v8::String>(isolate_->factory()->InternalizeUtf8String( | |
187 function_info->get_name())), | |
188 ToApiHandle<v8::String>(isolate_->factory()->InternalizeUtf8String( | |
189 function_info->get_script_name())), | |
190 function_info->get_script_id(), function_info->get_start_position(), | |
191 line, column, std::vector<v8::AllocationProfile::Node*>(), | |
192 std::vector<v8::AllocationProfile::Allocation>()})); | |
193 | |
194 return &profile->nodes().back(); | |
195 } | |
196 | |
197 v8::AllocationProfile::Node* SamplingHeapProfiler::FindOrAddChildNode( | |
198 AllocationProfile* profile, const std::map<int, Script*>& scripts, | |
199 v8::AllocationProfile::Node* parent, FunctionInfo* function_info) { | |
200 for (v8::AllocationProfile::Node* child : parent->children) { | |
201 if (child->script_id == function_info->get_script_id() && | |
202 child->start_position == function_info->get_start_position()) | |
203 return child; | |
204 } | |
205 v8::AllocationProfile::Node* child = | |
206 AllocateNode(profile, scripts, function_info); | |
207 parent->children.push_back(child); | |
208 return child; | |
209 } | |
210 | |
211 v8::AllocationProfile::Node* SamplingHeapProfiler::AddStack( | |
212 AllocationProfile* profile, const std::map<int, Script*>& scripts, | |
213 const std::vector<FunctionInfo*>& stack) { | |
214 v8::AllocationProfile::Node* node = profile->GetRootNode(); | |
215 | 159 |
216 // We need to process the stack in reverse order as the top of the stack is | 160 // We need to process the stack in reverse order as the top of the stack is |
217 // the first element in the list. | 161 // the first element in the list. |
218 for (auto it = stack.rbegin(); it != stack.rend(); ++it) { | 162 for (auto it = stack.rbegin(); it != stack.rend(); ++it) { |
219 FunctionInfo* function_info = *it; | 163 SharedFunctionInfo* shared = *it; |
220 node = FindOrAddChildNode(profile, scripts, node, function_info); | 164 const char* name = this->names()->GetFunctionName(shared->DebugName()); |
| 165 int script_id = v8::UnboundScript::kNoScriptId; |
| 166 if (shared->script()->IsScript()) { |
| 167 Script* script = Script::cast(shared->script()); |
| 168 script_id = script->id(); |
| 169 } |
| 170 node = FindOrAddChildNode(node, name, script_id, shared->start_position()); |
221 } | 171 } |
222 return node; | 172 return node; |
223 } | 173 } |
224 | 174 |
| 175 v8::AllocationProfile::Node* SamplingHeapProfiler::TranslateAllocationNode( |
| 176 AllocationProfile* profile, SamplingHeapProfiler::AllocationNode* node, |
| 177 const std::map<int, Script*>& scripts) { |
| 178 Local<v8::String> script_name = |
| 179 ToApiHandle<v8::String>(isolate_->factory()->InternalizeUtf8String("")); |
| 180 int line = v8::AllocationProfile::kNoLineNumberInfo; |
| 181 int column = v8::AllocationProfile::kNoColumnNumberInfo; |
| 182 std::vector<v8::AllocationProfile::Allocation> allocations; |
| 183 if (node->script_id_ != v8::UnboundScript::kNoScriptId) { |
| 184 // Cannot use std::map<T>::at because it is not available on android. |
| 185 auto non_const_scripts = const_cast<std::map<int, Script*>&>(scripts); |
| 186 Script* script = non_const_scripts[node->script_id_]; |
| 187 if (script->name()->IsName()) { |
| 188 Name* name = Name::cast(script->name()); |
| 189 script_name = ToApiHandle<v8::String>( |
| 190 isolate_->factory()->InternalizeUtf8String(names_->GetName(name))); |
| 191 } |
| 192 Handle<Script> script_handle(script); |
| 193 |
| 194 line = 1 + Script::GetLineNumber(script_handle, node->script_position_); |
| 195 column = 1 + Script::GetColumnNumber(script_handle, node->script_position_); |
| 196 for (auto alloc : node->allocations_) { |
| 197 allocations.push_back({alloc.first, alloc.second}); |
| 198 } |
| 199 } |
| 200 |
| 201 profile->nodes().push_back(v8::AllocationProfile::Node( |
| 202 {ToApiHandle<v8::String>( |
| 203 isolate_->factory()->InternalizeUtf8String(node->name_)), |
| 204 script_name, node->script_id_, node->script_position_, line, column, |
| 205 std::vector<v8::AllocationProfile::Node*>(), allocations})); |
| 206 v8::AllocationProfile::Node* current = &profile->nodes().back(); |
| 207 for (auto child : node->children_) { |
| 208 current->children.push_back( |
| 209 TranslateAllocationNode(profile, child, scripts)); |
| 210 } |
| 211 return current; |
| 212 } |
225 | 213 |
226 v8::AllocationProfile* SamplingHeapProfiler::GetAllocationProfile() { | 214 v8::AllocationProfile* SamplingHeapProfiler::GetAllocationProfile() { |
227 // To resolve positions to line/column numbers, we will need to look up | 215 // To resolve positions to line/column numbers, we will need to look up |
228 // scripts. Build a map to allow fast mapping from script id to script. | 216 // scripts. Build a map to allow fast mapping from script id to script. |
229 std::map<int, Script*> scripts; | 217 std::map<int, Script*> scripts; |
230 { | 218 { |
231 Script::Iterator iterator(isolate_); | 219 Script::Iterator iterator(isolate_); |
232 Script* script; | 220 Script* script; |
233 while ((script = iterator.Next())) { | 221 while ((script = iterator.Next())) { |
234 scripts[script->id()] = script; | 222 scripts[script->id()] = script; |
235 } | 223 } |
236 } | 224 } |
237 | 225 |
238 auto profile = new v8::internal::AllocationProfile(); | 226 auto profile = new v8::internal::AllocationProfile(); |
239 | 227 |
240 // Create the root node. | 228 TranslateAllocationNode(profile, &profile_root_, scripts); |
241 FunctionInfo function_info("(root)"); | |
242 AllocateNode(profile, scripts, &function_info); | |
243 | |
244 for (SampledAllocation* allocation : samples_) { | |
245 v8::AllocationProfile::Node* node = | |
246 AddStack(profile, scripts, allocation->get_stack()); | |
247 node->allocations.push_back({allocation->get_size(), 1}); | |
248 } | |
249 | 229 |
250 return profile; | 230 return profile; |
251 } | 231 } |
252 | 232 |
253 | 233 |
254 } // namespace internal | 234 } // namespace internal |
255 } // namespace v8 | 235 } // namespace v8 |
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