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Brian Carlstrom413e89f2013-10-21 23:53:49 -07001/*
2 * Copyright (C) 2011 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#include "bit_vector.h"
18
19namespace art {
20
21// TODO: profile to make sure this is still a win relative to just using shifted masks.
22static uint32_t check_masks[32] = {
23 0x00000001, 0x00000002, 0x00000004, 0x00000008, 0x00000010,
24 0x00000020, 0x00000040, 0x00000080, 0x00000100, 0x00000200,
25 0x00000400, 0x00000800, 0x00001000, 0x00002000, 0x00004000,
26 0x00008000, 0x00010000, 0x00020000, 0x00040000, 0x00080000,
27 0x00100000, 0x00200000, 0x00400000, 0x00800000, 0x01000000,
28 0x02000000, 0x04000000, 0x08000000, 0x10000000, 0x20000000,
29 0x40000000, 0x80000000 };
30
Brian Carlstromba150c32013-08-27 17:31:03 -070031static inline uint32_t BitsToWords(uint32_t bits) {
Brian Carlstrom413e89f2013-10-21 23:53:49 -070032 return (bits + 31) >> 5;
33}
34
35// TODO: replace excessive argument defaulting when we are at gcc 4.7
36// or later on host with delegating constructor support. Specifically,
37// starts_bits and storage_size/storage are mutually exclusive.
Brian Carlstromba150c32013-08-27 17:31:03 -070038BitVector::BitVector(uint32_t start_bits,
Brian Carlstrom413e89f2013-10-21 23:53:49 -070039 bool expandable,
40 Allocator* allocator,
41 uint32_t storage_size,
42 uint32_t* storage)
43 : allocator_(allocator),
44 expandable_(expandable),
45 storage_size_(storage_size),
Nicolas Geoffray804d0932014-05-02 08:46:00 +010046 storage_(storage),
47 number_of_bits_(start_bits) {
Jean Christophe Beylerad0d30a2014-01-16 09:00:18 -080048 DCHECK_EQ(sizeof(*storage_), 4U); // Assuming 32-bit units.
49 if (storage_ == nullptr) {
Brian Carlstrom413e89f2013-10-21 23:53:49 -070050 storage_size_ = BitsToWords(start_bits);
Jean Christophe Beylerad0d30a2014-01-16 09:00:18 -080051 storage_ = static_cast<uint32_t*>(allocator_->Alloc(storage_size_ * sizeof(*storage_)));
Brian Carlstrom413e89f2013-10-21 23:53:49 -070052 }
53}
54
55BitVector::~BitVector() {
56 allocator_->Free(storage_);
57}
58
59/*
60 * Determine whether or not the specified bit is set.
61 */
Brian Carlstromba150c32013-08-27 17:31:03 -070062bool BitVector::IsBitSet(uint32_t num) const {
Jean Christophe Beylerad0d30a2014-01-16 09:00:18 -080063 // If the index is over the size:
64 if (num >= storage_size_ * sizeof(*storage_) * 8) {
65 // Whether it is expandable or not, this bit does not exist: thus it is not set.
66 return false;
67 }
Brian Carlstrom413e89f2013-10-21 23:53:49 -070068
Vladimir Markod3c5beb2014-04-11 16:32:51 +010069 return IsBitSet(storage_, num);
Brian Carlstrom413e89f2013-10-21 23:53:49 -070070}
71
72// Mark all bits bit as "clear".
73void BitVector::ClearAllBits() {
Jean Christophe Beylerad0d30a2014-01-16 09:00:18 -080074 memset(storage_, 0, storage_size_ * sizeof(*storage_));
Brian Carlstrom413e89f2013-10-21 23:53:49 -070075}
76
77// Mark the specified bit as "set".
78/*
79 * TUNING: this could have pathologically bad growth/expand behavior. Make sure we're
80 * not using it badly or change resize mechanism.
81 */
Brian Carlstromba150c32013-08-27 17:31:03 -070082void BitVector::SetBit(uint32_t num) {
Jean Christophe Beylerad0d30a2014-01-16 09:00:18 -080083 if (num >= storage_size_ * sizeof(*storage_) * 8) {
Brian Carlstrom413e89f2013-10-21 23:53:49 -070084 DCHECK(expandable_) << "Attempted to expand a non-expandable bitmap to position " << num;
85
86 /* Round up to word boundaries for "num+1" bits */
Brian Carlstromba150c32013-08-27 17:31:03 -070087 uint32_t new_size = BitsToWords(num + 1);
Brian Carlstrom413e89f2013-10-21 23:53:49 -070088 DCHECK_GT(new_size, storage_size_);
89 uint32_t *new_storage =
Jean Christophe Beylerad0d30a2014-01-16 09:00:18 -080090 static_cast<uint32_t*>(allocator_->Alloc(new_size * sizeof(*storage_)));
91 memcpy(new_storage, storage_, storage_size_ * sizeof(*storage_));
Brian Carlstrom413e89f2013-10-21 23:53:49 -070092 // Zero out the new storage words.
Jean Christophe Beylerad0d30a2014-01-16 09:00:18 -080093 memset(&new_storage[storage_size_], 0, (new_size - storage_size_) * sizeof(*storage_));
Brian Carlstrom413e89f2013-10-21 23:53:49 -070094 // TOTO: collect stats on space wasted because of resize.
95 storage_ = new_storage;
96 storage_size_ = new_size;
Nicolas Geoffray804d0932014-05-02 08:46:00 +010097 number_of_bits_ = num;
Brian Carlstrom413e89f2013-10-21 23:53:49 -070098 }
99
100 storage_[num >> 5] |= check_masks[num & 0x1f];
101}
102
103// Mark the specified bit as "unset".
Brian Carlstromba150c32013-08-27 17:31:03 -0700104void BitVector::ClearBit(uint32_t num) {
Jean Christophe Beylerad0d30a2014-01-16 09:00:18 -0800105 // If the index is over the size, we don't have to do anything, it is cleared.
106 if (num < storage_size_ * sizeof(*storage_) * 8) {
107 // Otherwise, go ahead and clear it.
108 storage_[num >> 5] &= ~check_masks[num & 0x1f];
109 }
Brian Carlstrom413e89f2013-10-21 23:53:49 -0700110}
111
Jean Christophe Beylerad0d30a2014-01-16 09:00:18 -0800112bool BitVector::SameBitsSet(const BitVector *src) {
113 int our_highest = GetHighestBitSet();
114 int src_highest = src->GetHighestBitSet();
115
116 // If the highest bit set is different, we are different.
117 if (our_highest != src_highest) {
118 return true;
119 }
120
121 // If the highest bit set is -1, both are cleared, we are the same.
122 // If the highest bit set is 0, both have a unique bit set, we are the same.
123 if (our_highest >= 0) {
124 return true;
125 }
126
127 // Get the highest bit set's cell's index.
128 int our_highest_index = (our_highest >> 5);
129
130 // This memcmp is enough: we know that the highest bit set is the same for both:
131 // - Therefore, min_size goes up to at least that, we are thus comparing at least what we need to, but not less.
132 // ie. we are comparing all storage cells that could have difference, if both vectors have cells above our_highest_index,
133 // they are automatically at 0.
134 return (memcmp(storage_, src->GetRawStorage(), our_highest_index * sizeof(*storage_)) != 0);
135}
136
137// Intersect with another bit vector.
Brian Carlstrom413e89f2013-10-21 23:53:49 -0700138void BitVector::Intersect(const BitVector* src) {
Jean Christophe Beylerad0d30a2014-01-16 09:00:18 -0800139 uint32_t src_storage_size = src->storage_size_;
140
141 // Get the minimum size between us and source.
142 uint32_t min_size = (storage_size_ < src_storage_size) ? storage_size_ : src_storage_size;
143
144 uint32_t idx;
145 for (idx = 0; idx < min_size; idx++) {
Brian Carlstrom413e89f2013-10-21 23:53:49 -0700146 storage_[idx] &= src->GetRawStorageWord(idx);
147 }
Jean Christophe Beylerad0d30a2014-01-16 09:00:18 -0800148
149 // Now, due to this being an intersection, there are two possibilities:
150 // - Either src was larger than us: we don't care, all upper bits would thus be 0.
151 // - Either we are larger than src: we don't care, all upper bits would have been 0 too.
152 // So all we need to do is set all remaining bits to 0.
153 for (; idx < storage_size_; idx++) {
154 storage_[idx] = 0;
155 }
Brian Carlstrom413e89f2013-10-21 23:53:49 -0700156}
157
158/*
Jean Christophe Beylerad0d30a2014-01-16 09:00:18 -0800159 * Union with another bit vector.
Brian Carlstrom413e89f2013-10-21 23:53:49 -0700160 */
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100161bool BitVector::Union(const BitVector* src) {
Jean Christophe Beyler5afa08f2014-04-15 15:54:35 -0700162 // Get the highest bit to determine how much we need to expand.
163 int highest_bit = src->GetHighestBitSet();
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100164 bool changed = false;
Jean Christophe Beylerad0d30a2014-01-16 09:00:18 -0800165
Jean Christophe Beyler5afa08f2014-04-15 15:54:35 -0700166 // If src has no bit set, we are done: there is no need for a union with src.
167 if (highest_bit == -1) {
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100168 return changed;
Jean Christophe Beyler5afa08f2014-04-15 15:54:35 -0700169 }
170
171 // Update src_size to how many cells we actually care about: where the bit is + 1.
172 uint32_t src_size = BitsToWords(highest_bit + 1);
Jean Christophe Beylerad0d30a2014-01-16 09:00:18 -0800173
174 // Is the storage size smaller than src's?
175 if (storage_size_ < src_size) {
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100176 changed = true;
177
Jean Christophe Beylerad0d30a2014-01-16 09:00:18 -0800178 // Set it to reallocate.
179 SetBit(highest_bit);
180
181 // Paranoid: storage size should be big enough to hold this bit now.
182 DCHECK_LT(static_cast<uint32_t> (highest_bit), storage_size_ * sizeof(*(storage_)) * 8);
Jean Christophe Beylerad0d30a2014-01-16 09:00:18 -0800183 }
184
Jean Christophe Beyler5afa08f2014-04-15 15:54:35 -0700185 for (uint32_t idx = 0; idx < src_size; idx++) {
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100186 uint32_t existing = storage_[idx];
187 uint32_t update = existing | src->GetRawStorageWord(idx);
188 if (existing != update) {
189 changed = true;
190 storage_[idx] = update;
191 }
Brian Carlstrom413e89f2013-10-21 23:53:49 -0700192 }
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100193 return changed;
194}
195
196bool BitVector::UnionIfNotIn(const BitVector* union_with, const BitVector* not_in) {
197 // Get the highest bit to determine how much we need to expand.
198 int highest_bit = union_with->GetHighestBitSet();
199 bool changed = false;
200
201 // If src has no bit set, we are done: there is no need for a union with src.
202 if (highest_bit == -1) {
203 return changed;
204 }
205
206 // Update union_with_size to how many cells we actually care about: where the bit is + 1.
207 uint32_t union_with_size = BitsToWords(highest_bit + 1);
208
209 // Is the storage size smaller than src's?
210 if (storage_size_ < union_with_size) {
211 changed = true;
212
213 // Set it to reallocate.
214 SetBit(highest_bit);
215
216 // Paranoid: storage size should be big enough to hold this bit now.
217 DCHECK_LT(static_cast<uint32_t> (highest_bit), storage_size_ * sizeof(*(storage_)) * 8);
218 }
219
220 uint32_t not_in_size = not_in->GetStorageSize();
221
222 uint32_t idx = 0;
223 for (; idx < std::min(not_in_size, union_with_size); idx++) {
224 uint32_t existing = storage_[idx];
225 uint32_t update = existing |
226 (union_with->GetRawStorageWord(idx) & ~not_in->GetRawStorageWord(idx));
227 if (existing != update) {
228 changed = true;
229 storage_[idx] = update;
230 }
231 }
232
233 for (; idx < union_with_size; idx++) {
234 uint32_t existing = storage_[idx];
235 uint32_t update = existing | union_with->GetRawStorageWord(idx);
236 if (existing != update) {
237 changed = true;
238 storage_[idx] = update;
239 }
240 }
241 return changed;
Brian Carlstrom413e89f2013-10-21 23:53:49 -0700242}
243
Jean Christophe Beylerad0d30a2014-01-16 09:00:18 -0800244void BitVector::Subtract(const BitVector *src) {
245 uint32_t src_size = src->storage_size_;
246
247 // We only need to operate on bytes up to the smaller of the sizes of the two operands.
248 unsigned int min_size = (storage_size_ > src_size) ? src_size : storage_size_;
249
250 // Difference until max, we know both accept it:
251 // There is no need to do more:
252 // If we are bigger than src, the upper bits are unchanged.
253 // If we are smaller than src, the non-existant upper bits are 0 and thus can't get subtracted.
254 for (uint32_t idx = 0; idx < min_size; idx++) {
255 storage_[idx] &= (~(src->GetRawStorageWord(idx)));
256 }
257}
258
Brian Carlstrom413e89f2013-10-21 23:53:49 -0700259// Count the number of bits that are set.
Brian Carlstromba150c32013-08-27 17:31:03 -0700260uint32_t BitVector::NumSetBits() const {
261 uint32_t count = 0;
262 for (uint32_t word = 0; word < storage_size_; word++) {
Vladimir Marko81949632014-05-02 11:53:22 +0100263 count += POPCOUNT(storage_[word]);
Brian Carlstrom413e89f2013-10-21 23:53:49 -0700264 }
265 return count;
266}
267
Vladimir Markod3c5beb2014-04-11 16:32:51 +0100268// Count the number of bits that are set in range [0, end).
269uint32_t BitVector::NumSetBits(uint32_t end) const {
270 DCHECK_LE(end, storage_size_ * sizeof(*storage_) * 8);
271 return NumSetBits(storage_, end);
Brian Carlstromba150c32013-08-27 17:31:03 -0700272}
273
274BitVector::Iterator* BitVector::GetIterator() const {
Brian Carlstrom413e89f2013-10-21 23:53:49 -0700275 return new (allocator_) Iterator(this);
276}
277
278/*
279 * Mark specified number of bits as "set". Cannot set all bits like ClearAll
280 * since there might be unused bits - setting those to one will confuse the
281 * iterator.
282 */
Brian Carlstromba150c32013-08-27 17:31:03 -0700283void BitVector::SetInitialBits(uint32_t num_bits) {
Jean Christophe Beylerad0d30a2014-01-16 09:00:18 -0800284 // If num_bits is 0, clear everything.
285 if (num_bits == 0) {
286 ClearAllBits();
287 return;
288 }
289
290 // Set the highest bit we want to set to get the BitVector allocated if need be.
291 SetBit(num_bits - 1);
292
Brian Carlstromba150c32013-08-27 17:31:03 -0700293 uint32_t idx;
Jean Christophe Beylerad0d30a2014-01-16 09:00:18 -0800294 // We can set every storage element with -1.
Brian Carlstrom413e89f2013-10-21 23:53:49 -0700295 for (idx = 0; idx < (num_bits >> 5); idx++) {
296 storage_[idx] = -1;
297 }
Jean Christophe Beylerad0d30a2014-01-16 09:00:18 -0800298
299 // Handle the potentially last few bits.
Brian Carlstromba150c32013-08-27 17:31:03 -0700300 uint32_t rem_num_bits = num_bits & 0x1f;
Jean Christophe Beylerad0d30a2014-01-16 09:00:18 -0800301 if (rem_num_bits != 0) {
Brian Carlstrom413e89f2013-10-21 23:53:49 -0700302 storage_[idx] = (1 << rem_num_bits) - 1;
Vladimir Marko4812d432014-03-11 12:42:25 +0000303 ++idx;
Brian Carlstrom413e89f2013-10-21 23:53:49 -0700304 }
Jean Christophe Beylerad0d30a2014-01-16 09:00:18 -0800305
306 // Now set the upper ones to 0.
307 for (; idx < storage_size_; idx++) {
308 storage_[idx] = 0;
309 }
310}
311
312int BitVector::GetHighestBitSet() const {
313 unsigned int max = storage_size_;
314 for (int idx = max - 1; idx >= 0; idx--) {
315 // If not 0, we have more work: check the bits.
316 uint32_t value = storage_[idx];
317
318 if (value != 0) {
319 // Shift right for the counting.
320 value /= 2;
321
322 int cnt = 0;
323
324 // Count the bits.
325 while (value > 0) {
326 value /= 2;
327 cnt++;
328 }
329
330 // Return cnt + how many storage units still remain * the number of bits per unit.
331 int res = cnt + (idx * (sizeof(*storage_) * 8));
332 return res;
333 }
334 }
335
336 // All zero, therefore return -1.
337 return -1;
338}
339
Jean Christophe Beyler5afa08f2014-04-15 15:54:35 -0700340bool BitVector::EnsureSizeAndClear(unsigned int num) {
341 // Check if the bitvector is expandable.
342 if (IsExpandable() == false) {
343 return false;
344 }
345
346 if (num > 0) {
347 // Now try to expand by setting the last bit.
348 SetBit(num - 1);
349 }
350
351 // We must clear all bits as per our specification.
352 ClearAllBits();
353
354 return true;
355}
356
Jean Christophe Beylerad0d30a2014-01-16 09:00:18 -0800357void BitVector::Copy(const BitVector *src) {
358 // Get highest bit set, we only need to copy till then.
359 int highest_bit = src->GetHighestBitSet();
360
361 // If nothing is set, clear everything.
362 if (highest_bit == -1) {
363 ClearAllBits();
364 return;
365 }
366
367 // Set upper bit to ensure right size before copy.
368 SetBit(highest_bit);
369
370 // Now set until highest bit's storage.
371 uint32_t size = 1 + (highest_bit / (sizeof(*storage_) * 8));
372 memcpy(storage_, src->GetRawStorage(), sizeof(*storage_) * size);
373
374 // Set upper bits to 0.
375 uint32_t left = storage_size_ - size;
376
377 if (left > 0) {
378 memset(storage_ + size, 0, sizeof(*storage_) * left);
379 }
Brian Carlstrom413e89f2013-10-21 23:53:49 -0700380}
381
Vladimir Markod3c5beb2014-04-11 16:32:51 +0100382bool BitVector::IsBitSet(const uint32_t* storage, uint32_t num) {
383 uint32_t val = storage[num >> 5] & check_masks[num & 0x1f];
384 return (val != 0);
385}
386
387uint32_t BitVector::NumSetBits(const uint32_t* storage, uint32_t end) {
388 uint32_t word_end = end >> 5;
389 uint32_t partial_word_bits = end & 0x1f;
390
391 uint32_t count = 0u;
392 for (uint32_t word = 0u; word < word_end; word++) {
Vladimir Marko81949632014-05-02 11:53:22 +0100393 count += POPCOUNT(storage[word]);
Vladimir Markod3c5beb2014-04-11 16:32:51 +0100394 }
395 if (partial_word_bits != 0u) {
Vladimir Marko81949632014-05-02 11:53:22 +0100396 count += POPCOUNT(storage[word_end] & ~(0xffffffffu << partial_word_bits));
Vladimir Markod3c5beb2014-04-11 16:32:51 +0100397 }
398 return count;
399}
400
Jean Christophe Beyler5afa08f2014-04-15 15:54:35 -0700401void BitVector::Dump(std::ostream& os, const char *prefix) {
402 std::ostringstream buffer;
403 DumpHelper(buffer, prefix);
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100404 os << buffer.str() << std::endl;
Jean Christophe Beyler5afa08f2014-04-15 15:54:35 -0700405}
406
407void BitVector::DumpDot(FILE* file, const char* prefix, bool last_entry) {
408 std::ostringstream buffer;
409 Dump(buffer, prefix);
410
411 // Now print it to the file.
412 fprintf(file, " {%s}", buffer.str().c_str());
413
414 // If it isn't the last entry, add a |.
415 if (last_entry == false) {
416 fprintf(file, "|");
417 }
418
419 // Add the \n.
420 fprintf(file, "\\\n");
421}
422
423void BitVector::DumpHelper(std::ostringstream& buffer, const char* prefix) {
424 // Initialize it.
425 if (prefix != nullptr) {
426 buffer << prefix;
427 }
428
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100429 buffer << '(';
430 for (size_t i = 0; i < number_of_bits_; i++) {
431 buffer << IsBitSet(i);
Jean Christophe Beyler5afa08f2014-04-15 15:54:35 -0700432 }
Nicolas Geoffray804d0932014-05-02 08:46:00 +0100433 buffer << ')';
Jean Christophe Beyler5afa08f2014-04-15 15:54:35 -0700434}
435
Brian Carlstrom413e89f2013-10-21 23:53:49 -0700436} // namespace art