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Side by Side Diff: src/hashmap.h

Issue 10443114: Progress towards making Zones independent of Isolates and Threads. (Closed) Base URL: https://v8.googlecode.com/svn/branches/bleeding_edge
Patch Set: Created 8 years, 6 months ago
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1 // Copyright 2012 the V8 project authors. All rights reserved. 1 // Copyright 2012 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
(...skipping 24 matching lines...) Expand all
35 namespace v8 { 35 namespace v8 {
36 namespace internal { 36 namespace internal {
37 37
38 template<class AllocationPolicy> 38 template<class AllocationPolicy>
39 class TemplateHashMapImpl { 39 class TemplateHashMapImpl {
40 public: 40 public:
41 typedef bool (*MatchFun) (void* key1, void* key2); 41 typedef bool (*MatchFun) (void* key1, void* key2);
42 42
43 // initial_capacity is the size of the initial hash map; 43 // initial_capacity is the size of the initial hash map;
44 // it must be a power of 2 (and thus must not be 0). 44 // it must be a power of 2 (and thus must not be 0).
45 TemplateHashMapImpl(MatchFun match, uint32_t initial_capacity = 8); 45 TemplateHashMapImpl(MatchFun match, uint32_t capacity = 8,
46 AllocationPolicy allocator = AllocationPolicy());
46 47
47 ~TemplateHashMapImpl(); 48 ~TemplateHashMapImpl();
48 49
49 // HashMap entries are (key, value, hash) triplets. 50 // HashMap entries are (key, value, hash) triplets.
50 // Some clients may not need to use the value slot 51 // Some clients may not need to use the value slot
51 // (e.g. implementers of sets, where the key is the value). 52 // (e.g. implementers of sets, where the key is the value).
52 struct Entry { 53 struct Entry {
53 void* key; 54 void* key;
54 void* value; 55 void* value;
55 uint32_t hash; // the full hash value for key 56 uint32_t hash; // the full hash value for key
56 }; 57 };
57 58
58 // If an entry with matching key is found, Lookup() 59 // If an entry with matching key is found, Lookup()
59 // returns that entry. If no matching entry is found, 60 // returns that entry. If no matching entry is found,
60 // but insert is set, a new entry is inserted with 61 // but insert is set, a new entry is inserted with
61 // corresponding key, key hash, and NULL value. 62 // corresponding key, key hash, and NULL value.
62 // Otherwise, NULL is returned. 63 // Otherwise, NULL is returned.
63 Entry* Lookup(void* key, uint32_t hash, bool insert); 64 Entry* Lookup(void* key, uint32_t hash, bool insert,
65 AllocationPolicy allocator = AllocationPolicy());
64 66
65 // Removes the entry with matching key. 67 // Removes the entry with matching key.
66 // It returns the value of the deleted entry 68 // It returns the value of the deleted entry
67 // or null if there is no value for such key. 69 // or null if there is no value for such key.
68 void* Remove(void* key, uint32_t hash); 70 void* Remove(void* key, uint32_t hash);
69 71
70 // Empties the hash map (occupancy() == 0). 72 // Empties the hash map (occupancy() == 0).
71 void Clear(); 73 void Clear();
72 74
73 // The number of (non-empty) entries in the table. 75 // The number of (non-empty) entries in the table.
(...skipping 16 matching lines...) Expand all
90 Entry* Next(Entry* p) const; 92 Entry* Next(Entry* p) const;
91 93
92 private: 94 private:
93 MatchFun match_; 95 MatchFun match_;
94 Entry* map_; 96 Entry* map_;
95 uint32_t capacity_; 97 uint32_t capacity_;
96 uint32_t occupancy_; 98 uint32_t occupancy_;
97 99
98 Entry* map_end() const { return map_ + capacity_; } 100 Entry* map_end() const { return map_ + capacity_; }
99 Entry* Probe(void* key, uint32_t hash); 101 Entry* Probe(void* key, uint32_t hash);
100 void Initialize(uint32_t capacity); 102 void Initialize(uint32_t capacity, AllocationPolicy allocator);
101 void Resize(); 103 void Resize(AllocationPolicy allocator);
102 }; 104 };
103 105
104 typedef TemplateHashMapImpl<FreeStoreAllocationPolicy> HashMap; 106 typedef TemplateHashMapImpl<FreeStoreAllocationPolicy> HashMap;
105 107
106 template<class P> 108 template<class AllocationPolicy>
107 TemplateHashMapImpl<P>::TemplateHashMapImpl(MatchFun match, 109 TemplateHashMapImpl<AllocationPolicy>::TemplateHashMapImpl(
108 uint32_t initial_capacity) { 110 MatchFun match, uint32_t initial_capacity, AllocationPolicy allocator) {
109 match_ = match; 111 match_ = match;
110 Initialize(initial_capacity); 112 Initialize(initial_capacity, allocator);
111 } 113 }
112 114
113 115
114 template<class P> 116 template<class AllocationPolicy>
115 TemplateHashMapImpl<P>::~TemplateHashMapImpl() { 117 TemplateHashMapImpl<AllocationPolicy>::~TemplateHashMapImpl() {
116 P::Delete(map_); 118 AllocationPolicy::Delete(map_);
117 } 119 }
118 120
119 121
120 template<class P> 122 template<class AllocationPolicy>
121 typename TemplateHashMapImpl<P>::Entry* TemplateHashMapImpl<P>::Lookup( 123 typename TemplateHashMapImpl<AllocationPolicy>::Entry*
122 void* key, uint32_t hash, bool insert) { 124 TemplateHashMapImpl<AllocationPolicy>::Lookup(
125 void* key, uint32_t hash, bool insert, AllocationPolicy allocator) {
123 // Find a matching entry. 126 // Find a matching entry.
124 Entry* p = Probe(key, hash); 127 Entry* p = Probe(key, hash);
125 if (p->key != NULL) { 128 if (p->key != NULL) {
126 return p; 129 return p;
127 } 130 }
128 131
129 // No entry found; insert one if necessary. 132 // No entry found; insert one if necessary.
130 if (insert) { 133 if (insert) {
131 p->key = key; 134 p->key = key;
132 p->value = NULL; 135 p->value = NULL;
133 p->hash = hash; 136 p->hash = hash;
134 occupancy_++; 137 occupancy_++;
135 138
136 // Grow the map if we reached >= 80% occupancy. 139 // Grow the map if we reached >= 80% occupancy.
137 if (occupancy_ + occupancy_/4 >= capacity_) { 140 if (occupancy_ + occupancy_/4 >= capacity_) {
138 Resize(); 141 Resize(allocator);
139 p = Probe(key, hash); 142 p = Probe(key, hash);
140 } 143 }
141 144
142 return p; 145 return p;
143 } 146 }
144 147
145 // No entry found and none inserted. 148 // No entry found and none inserted.
146 return NULL; 149 return NULL;
147 } 150 }
148 151
149 152
150 template<class P> 153 template<class AllocationPolicy>
151 void* TemplateHashMapImpl<P>::Remove(void* key, uint32_t hash) { 154 void* TemplateHashMapImpl<AllocationPolicy>::Remove(void* key, uint32_t hash) {
152 // Lookup the entry for the key to remove. 155 // Lookup the entry for the key to remove.
153 Entry* p = Probe(key, hash); 156 Entry* p = Probe(key, hash);
154 if (p->key == NULL) { 157 if (p->key == NULL) {
155 // Key not found nothing to remove. 158 // Key not found nothing to remove.
156 return NULL; 159 return NULL;
157 } 160 }
158 161
159 void* value = p->value; 162 void* value = p->value;
160 // To remove an entry we need to ensure that it does not create an empty 163 // To remove an entry we need to ensure that it does not create an empty
161 // entry that will cause the search for another entry to stop too soon. If all 164 // entry that will cause the search for another entry to stop too soon. If all
(...skipping 40 matching lines...) Expand 10 before | Expand all | Expand 10 after
202 } 205 }
203 } 206 }
204 207
205 // Clear the entry which is allowed to en emptied. 208 // Clear the entry which is allowed to en emptied.
206 p->key = NULL; 209 p->key = NULL;
207 occupancy_--; 210 occupancy_--;
208 return value; 211 return value;
209 } 212 }
210 213
211 214
212 template<class P> 215 template<class AllocationPolicy>
213 void TemplateHashMapImpl<P>::Clear() { 216 void TemplateHashMapImpl<AllocationPolicy>::Clear() {
214 // Mark all entries as empty. 217 // Mark all entries as empty.
215 const Entry* end = map_end(); 218 const Entry* end = map_end();
216 for (Entry* p = map_; p < end; p++) { 219 for (Entry* p = map_; p < end; p++) {
217 p->key = NULL; 220 p->key = NULL;
218 } 221 }
219 occupancy_ = 0; 222 occupancy_ = 0;
220 } 223 }
221 224
222 225
223 template<class P> 226 template<class AllocationPolicy>
224 typename TemplateHashMapImpl<P>::Entry* TemplateHashMapImpl<P>::Start() const { 227 typename TemplateHashMapImpl<AllocationPolicy>::Entry*
228 TemplateHashMapImpl<AllocationPolicy>::Start() const {
225 return Next(map_ - 1); 229 return Next(map_ - 1);
226 } 230 }
227 231
228 232
229 template<class P> 233 template<class AllocationPolicy>
230 typename TemplateHashMapImpl<P>::Entry* TemplateHashMapImpl<P>::Next(Entry* p) 234 typename TemplateHashMapImpl<AllocationPolicy>::Entry*
231 const { 235 TemplateHashMapImpl<AllocationPolicy>::Next(Entry* p) const {
232 const Entry* end = map_end(); 236 const Entry* end = map_end();
233 ASSERT(map_ - 1 <= p && p < end); 237 ASSERT(map_ - 1 <= p && p < end);
234 for (p++; p < end; p++) { 238 for (p++; p < end; p++) {
235 if (p->key != NULL) { 239 if (p->key != NULL) {
236 return p; 240 return p;
237 } 241 }
238 } 242 }
239 return NULL; 243 return NULL;
240 } 244 }
241 245
242 246
243 template<class P> 247 template<class AllocationPolicy>
244 typename TemplateHashMapImpl<P>::Entry* TemplateHashMapImpl<P>::Probe(void* key, 248 typename TemplateHashMapImpl<AllocationPolicy>::Entry*
245 uint32_t hash) { 249 TemplateHashMapImpl<AllocationPolicy>::Probe(void* key, uint32_t hash) {
246 ASSERT(key != NULL); 250 ASSERT(key != NULL);
247 251
248 ASSERT(IsPowerOf2(capacity_)); 252 ASSERT(IsPowerOf2(capacity_));
249 Entry* p = map_ + (hash & (capacity_ - 1)); 253 Entry* p = map_ + (hash & (capacity_ - 1));
250 const Entry* end = map_end(); 254 const Entry* end = map_end();
251 ASSERT(map_ <= p && p < end); 255 ASSERT(map_ <= p && p < end);
252 256
253 ASSERT(occupancy_ < capacity_); // Guarantees loop termination. 257 ASSERT(occupancy_ < capacity_); // Guarantees loop termination.
254 while (p->key != NULL && (hash != p->hash || !match_(key, p->key))) { 258 while (p->key != NULL && (hash != p->hash || !match_(key, p->key))) {
255 p++; 259 p++;
256 if (p >= end) { 260 if (p >= end) {
257 p = map_; 261 p = map_;
258 } 262 }
259 } 263 }
260 264
261 return p; 265 return p;
262 } 266 }
263 267
264 268
265 template<class P> 269 template<class AllocationPolicy>
266 void TemplateHashMapImpl<P>::Initialize(uint32_t capacity) { 270 void TemplateHashMapImpl<AllocationPolicy>::Initialize(
271 uint32_t capacity, AllocationPolicy allocator) {
267 ASSERT(IsPowerOf2(capacity)); 272 ASSERT(IsPowerOf2(capacity));
268 map_ = reinterpret_cast<Entry*>(P::New(capacity * sizeof(Entry))); 273 map_ = reinterpret_cast<Entry*>(allocator.New(capacity * sizeof(Entry)));
269 if (map_ == NULL) { 274 if (map_ == NULL) {
270 v8::internal::FatalProcessOutOfMemory("HashMap::Initialize"); 275 v8::internal::FatalProcessOutOfMemory("HashMap::Initialize");
271 return; 276 return;
272 } 277 }
273 capacity_ = capacity; 278 capacity_ = capacity;
274 Clear(); 279 Clear();
275 } 280 }
276 281
277 282
278 template<class P> 283 template<class AllocationPolicy>
279 void TemplateHashMapImpl<P>::Resize() { 284 void TemplateHashMapImpl<AllocationPolicy>::Resize(AllocationPolicy allocator) {
280 Entry* map = map_; 285 Entry* map = map_;
281 uint32_t n = occupancy_; 286 uint32_t n = occupancy_;
282 287
283 // Allocate larger map. 288 // Allocate larger map.
284 Initialize(capacity_ * 2); 289 Initialize(capacity_ * 2, allocator);
285 290
286 // Rehash all current entries. 291 // Rehash all current entries.
287 for (Entry* p = map; n > 0; p++) { 292 for (Entry* p = map; n > 0; p++) {
288 if (p->key != NULL) { 293 if (p->key != NULL) {
289 Lookup(p->key, p->hash, true)->value = p->value; 294 Lookup(p->key, p->hash, true)->value = p->value;
290 n--; 295 n--;
291 } 296 }
292 } 297 }
293 298
294 // Delete old map. 299 // Delete old map.
295 P::Delete(map); 300 AllocationPolicy::Delete(map);
296 } 301 }
297 302
298 303
299 // A hash map for pointer keys and values with an STL-like interface. 304 // A hash map for pointer keys and values with an STL-like interface.
300 template<class Key, class Value, class AllocationPolicy> 305 template<class Key, class Value, class AllocationPolicy>
301 class TemplateHashMap: private TemplateHashMapImpl<AllocationPolicy> { 306 class TemplateHashMap: private TemplateHashMapImpl<AllocationPolicy> {
302 public: 307 public:
303 STATIC_ASSERT(sizeof(Key*) == sizeof(void*)); // NOLINT 308 STATIC_ASSERT(sizeof(Key*) == sizeof(void*)); // NOLINT
304 STATIC_ASSERT(sizeof(Value*) == sizeof(void*)); // NOLINT 309 STATIC_ASSERT(sizeof(Value*) == sizeof(void*)); // NOLINT
310
danno 2012/06/01 11:29:24 nit: remove stray extra line
305 struct value_type { 311 struct value_type {
306 Key* first; 312 Key* first;
307 Value* second; 313 Value* second;
308 }; 314 };
309 315
310 class Iterator { 316 class Iterator {
311 public: 317 public:
312 Iterator& operator++() { 318 Iterator& operator++() {
313 entry_ = map_->Next(entry_); 319 entry_ = map_->Next(entry_);
314 return *this; 320 return *this;
315 } 321 }
316 322
317 value_type* operator->() { return reinterpret_cast<value_type*>(entry_); } 323 value_type* operator->() { return reinterpret_cast<value_type*>(entry_); }
318 bool operator!=(const Iterator& other) { return entry_ != other.entry_; } 324 bool operator!=(const Iterator& other) { return entry_ != other.entry_; }
319 325
320 private: 326 private:
321 Iterator(const TemplateHashMapImpl<AllocationPolicy>* map, 327 Iterator(const TemplateHashMapImpl<AllocationPolicy>* map,
322 typename TemplateHashMapImpl<AllocationPolicy>::Entry* entry) : 328 typename TemplateHashMapImpl<AllocationPolicy>::Entry* entry) :
323 map_(map), entry_(entry) { } 329 map_(map), entry_(entry) { }
324 330
325 const TemplateHashMapImpl<AllocationPolicy>* map_; 331 const TemplateHashMapImpl<AllocationPolicy>* map_;
326 typename TemplateHashMapImpl<AllocationPolicy>::Entry* entry_; 332 typename TemplateHashMapImpl<AllocationPolicy>::Entry* entry_;
327 333
328 friend class TemplateHashMap; 334 friend class TemplateHashMap;
329 }; 335 };
330 336
331 TemplateHashMap( 337 TemplateHashMap(
332 typename TemplateHashMapImpl<AllocationPolicy>::MatchFun match) 338 typename TemplateHashMapImpl<AllocationPolicy>::MatchFun match,
333 : TemplateHashMapImpl<AllocationPolicy>(match) { } 339 AllocationPolicy allocator = AllocationPolicy())
340 : TemplateHashMapImpl<AllocationPolicy>(match, 8, allocator) { }
334 341
335 Iterator begin() const { return Iterator(this, this->Start()); } 342 Iterator begin() const { return Iterator(this, this->Start()); }
336 Iterator end() const { return Iterator(this, NULL); } 343 Iterator end() const { return Iterator(this, NULL); }
337 Iterator find(Key* key, bool insert = false) { 344 Iterator find(Key* key, bool insert = false) {
338 return Iterator(this, this->Lookup(key, key->Hash(), insert)); 345 return Iterator(this, this->Lookup(key, key->Hash(), insert));
339 } 346 }
340 }; 347 };
341 348
342 } } // namespace v8::internal 349 } } // namespace v8::internal
343 350
344 #endif // V8_HASHMAP_H_ 351 #endif // V8_HASHMAP_H_
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