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Issue 4634003: Landing for Justin Schuh.... (Closed) Base URL: http://v8.googlecode.com/svn/branches/bleeding_edge/
Patch Set: Created 10 years, 1 month ago
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1 // Copyright 2010 the V8 project authors. All rights reserved. 1 // Copyright 2010 the V8 project authors. All rights reserved.
2 // Redistribution and use in source and binary forms, with or without 2 // Redistribution and use in source and binary forms, with or without
3 // modification, are permitted provided that the following conditions are 3 // modification, are permitted provided that the following conditions are
4 // met: 4 // met:
5 // 5 //
6 // * Redistributions of source code must retain the above copyright 6 // * Redistributions of source code must retain the above copyright
7 // notice, this list of conditions and the following disclaimer. 7 // notice, this list of conditions and the following disclaimer.
8 // * Redistributions in binary form must reproduce the above 8 // * Redistributions in binary form must reproduce the above
9 // copyright notice, this list of conditions and the following 9 // copyright notice, this list of conditions and the following
10 // disclaimer in the documentation and/or other materials provided 10 // disclaimer in the documentation and/or other materials provided
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215 ObjectSlotCallback copy_object_func); 215 ObjectSlotCallback copy_object_func);
216 216
217 217
218 // The all static Heap captures the interface to the global object heap. 218 // The all static Heap captures the interface to the global object heap.
219 // All JavaScript contexts by this process share the same object heap. 219 // All JavaScript contexts by this process share the same object heap.
220 220
221 class Heap : public AllStatic { 221 class Heap : public AllStatic {
222 public: 222 public:
223 // Configure heap size before setup. Return false if the heap has been 223 // Configure heap size before setup. Return false if the heap has been
224 // setup already. 224 // setup already.
225 static bool ConfigureHeap(int max_semispace_size, int max_old_gen_size); 225 static bool ConfigureHeap(int max_semispace_size,
226 int max_old_gen_size,
227 int max_executable_size);
226 static bool ConfigureHeapDefault(); 228 static bool ConfigureHeapDefault();
227 229
228 // Initializes the global object heap. If create_heap_objects is true, 230 // Initializes the global object heap. If create_heap_objects is true,
229 // also creates the basic non-mutable objects. 231 // also creates the basic non-mutable objects.
230 // Returns whether it succeeded. 232 // Returns whether it succeeded.
231 static bool Setup(bool create_heap_objects); 233 static bool Setup(bool create_heap_objects);
232 234
233 // Destroys all memory allocated by the heap. 235 // Destroys all memory allocated by the heap.
234 static void TearDown(); 236 static void TearDown();
235 237
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246 // semi space. The young generation consists of two semi spaces and 248 // semi space. The young generation consists of two semi spaces and
247 // we reserve twice the amount needed for those in order to ensure 249 // we reserve twice the amount needed for those in order to ensure
248 // that new space can be aligned to its size. 250 // that new space can be aligned to its size.
249 static intptr_t MaxReserved() { 251 static intptr_t MaxReserved() {
250 return 4 * reserved_semispace_size_ + max_old_generation_size_; 252 return 4 * reserved_semispace_size_ + max_old_generation_size_;
251 } 253 }
252 static int MaxSemiSpaceSize() { return max_semispace_size_; } 254 static int MaxSemiSpaceSize() { return max_semispace_size_; }
253 static int ReservedSemiSpaceSize() { return reserved_semispace_size_; } 255 static int ReservedSemiSpaceSize() { return reserved_semispace_size_; }
254 static int InitialSemiSpaceSize() { return initial_semispace_size_; } 256 static int InitialSemiSpaceSize() { return initial_semispace_size_; }
255 static intptr_t MaxOldGenerationSize() { return max_old_generation_size_; } 257 static intptr_t MaxOldGenerationSize() { return max_old_generation_size_; }
258 static intptr_t MaxExecutableSize() { return max_executable_size_; }
256 259
257 // Returns the capacity of the heap in bytes w/o growing. Heap grows when 260 // Returns the capacity of the heap in bytes w/o growing. Heap grows when
258 // more spaces are needed until it reaches the limit. 261 // more spaces are needed until it reaches the limit.
259 static intptr_t Capacity(); 262 static intptr_t Capacity();
260 263
261 // Returns the amount of memory currently committed for the heap. 264 // Returns the amount of memory currently committed for the heap.
262 static intptr_t CommittedMemory(); 265 static intptr_t CommittedMemory();
263 266
267 // Returns the amount of executable memory currently committed for the heap.
268 static intptr_t CommittedMemoryExecutable();
269
264 // Returns the available bytes in space w/o growing. 270 // Returns the available bytes in space w/o growing.
265 // Heap doesn't guarantee that it can allocate an object that requires 271 // Heap doesn't guarantee that it can allocate an object that requires
266 // all available bytes. Check MaxHeapObjectSize() instead. 272 // all available bytes. Check MaxHeapObjectSize() instead.
267 static intptr_t Available(); 273 static intptr_t Available();
268 274
269 // Returns the maximum object size in paged space. 275 // Returns the maximum object size in paged space.
270 static inline int MaxObjectSizeInPagedSpace(); 276 static inline int MaxObjectSizeInPagedSpace();
271 277
272 // Returns of size of all objects residing in the heap. 278 // Returns of size of all objects residing in the heap.
273 static intptr_t SizeOfObjects(); 279 static intptr_t SizeOfObjects();
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1089 1095
1090 static void ClearNormalizedMapCaches(); 1096 static void ClearNormalizedMapCaches();
1091 1097
1092 static GCTracer* tracer() { return tracer_; } 1098 static GCTracer* tracer() { return tracer_; }
1093 1099
1094 private: 1100 private:
1095 static int reserved_semispace_size_; 1101 static int reserved_semispace_size_;
1096 static int max_semispace_size_; 1102 static int max_semispace_size_;
1097 static int initial_semispace_size_; 1103 static int initial_semispace_size_;
1098 static intptr_t max_old_generation_size_; 1104 static intptr_t max_old_generation_size_;
1105 static intptr_t max_executable_size_;
1099 static intptr_t code_range_size_; 1106 static intptr_t code_range_size_;
1100 1107
1101 // For keeping track of how much data has survived 1108 // For keeping track of how much data has survived
1102 // scavenge since last new space expansion. 1109 // scavenge since last new space expansion.
1103 static int survived_since_last_expansion_; 1110 static int survived_since_last_expansion_;
1104 1111
1105 static int always_allocate_scope_depth_; 1112 static int always_allocate_scope_depth_;
1106 static int linear_allocation_scope_depth_; 1113 static int linear_allocation_scope_depth_;
1107 1114
1108 // For keeping track of context disposals. 1115 // For keeping track of context disposals.
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2078 // Return whether this object should be retained. If NULL is returned the 2085 // Return whether this object should be retained. If NULL is returned the
2079 // object has no references. Otherwise the address of the retained object 2086 // object has no references. Otherwise the address of the retained object
2080 // should be returned as in some GC situations the object has been moved. 2087 // should be returned as in some GC situations the object has been moved.
2081 virtual Object* RetainAs(Object* object) = 0; 2088 virtual Object* RetainAs(Object* object) = 0;
2082 }; 2089 };
2083 2090
2084 2091
2085 } } // namespace v8::internal 2092 } } // namespace v8::internal
2086 2093
2087 #endif // V8_HEAP_H_ 2094 #endif // V8_HEAP_H_
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