Coverage Report

Created: 2026-01-05 08:32

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/root/doris/be/src/olap/hll.cpp
Line
Count
Source
1
// Licensed to the Apache Software Foundation (ASF) under one
2
// or more contributor license agreements.  See the NOTICE file
3
// distributed with this work for additional information
4
// regarding copyright ownership.  The ASF licenses this file
5
// to you under the Apache License, Version 2.0 (the
6
// "License"); you may not use this file except in compliance
7
// with the License.  You may obtain a copy of the License at
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//
9
//   http://www.apache.org/licenses/LICENSE-2.0
10
//
11
// Unless required by applicable law or agreed to in writing,
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// software distributed under the License is distributed on an
13
// "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
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// KIND, either express or implied.  See the License for the
15
// specific language governing permissions and limitations
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// under the License.
17
18
#include "olap/hll.h"
19
20
#include <cmath>
21
#include <map>
22
#include <ostream>
23
24
#include "common/logging.h"
25
#include "util/coding.h"
26
#include "util/slice.h"
27
28
using std::string;
29
using std::stringstream;
30
31
namespace doris {
32
#include "common/compile_check_begin.h"
33
1.04k
HyperLogLog::HyperLogLog(const Slice& src) {
34
    // When deserialize return false, we make this object a empty
35
1.04k
    if (!deserialize(src)) {
36
3
        _type = HLL_DATA_EMPTY;
37
3
    }
38
1.04k
}
39
40
// Convert explicit values to register format, and clear explicit values.
41
// NOTE: this function won't modify _type.
42
23
void HyperLogLog::_convert_explicit_to_register() {
43
23
    DCHECK(_type == HLL_DATA_EXPLICIT)
44
0
            << "_type(" << _type << ") should be explicit(" << HLL_DATA_EXPLICIT << ")";
45
23
    _registers = new uint8_t[HLL_REGISTERS_COUNT];
46
23
    memset(_registers, 0, HLL_REGISTERS_COUNT);
47
3.66k
    for (auto value : _hash_set) {
48
3.66k
        _update_registers(value);
49
3.66k
    }
50
    // clear _hash_set
51
23
    vectorized::flat_hash_set<uint64_t>().swap(_hash_set);
52
23
}
53
54
// Change HLL_DATA_EXPLICIT to HLL_DATA_FULL directly, because HLL_DATA_SPARSE
55
// is implemented in the same way in memory with HLL_DATA_FULL.
56
984k
void HyperLogLog::update(uint64_t hash_value) {
57
984k
    switch (_type) {
58
4.40k
    case HLL_DATA_EMPTY:
59
4.40k
        _hash_set.insert(hash_value);
60
4.40k
        _type = HLL_DATA_EXPLICIT;
61
4.40k
        break;
62
71.6k
    case HLL_DATA_EXPLICIT:
63
71.6k
        if (_hash_set.size() < HLL_EXPLICIT_INT64_NUM) {
64
71.6k
            _hash_set.insert(hash_value);
65
71.6k
            break;
66
71.6k
        }
67
21
        _convert_explicit_to_register();
68
21
        _type = HLL_DATA_FULL;
69
        // fall through
70
22
    case HLL_DATA_SPARSE:
71
908k
    case HLL_DATA_FULL:
72
908k
        _update_registers(hash_value);
73
908k
        break;
74
984k
    }
75
984k
}
76
77
1.20k
void HyperLogLog::merge(const HyperLogLog& other) {
78
    // fast path
79
1.20k
    if (other._type == HLL_DATA_EMPTY) {
80
16
        return;
81
16
    }
82
1.18k
    switch (_type) {
83
1.07k
    case HLL_DATA_EMPTY: {
84
        // _type must change
85
1.07k
        _type = other._type;
86
1.07k
        switch (other._type) {
87
1.05k
        case HLL_DATA_EXPLICIT:
88
1.05k
            _hash_set = other._hash_set;
89
1.05k
            break;
90
5
        case HLL_DATA_SPARSE:
91
19
        case HLL_DATA_FULL:
92
19
            _registers = new uint8_t[HLL_REGISTERS_COUNT];
93
19
            memcpy(_registers, other._registers, HLL_REGISTERS_COUNT);
94
19
            break;
95
0
        default:
96
0
            break;
97
1.07k
        }
98
1.07k
        break;
99
1.07k
    }
100
1.07k
    case HLL_DATA_EXPLICIT: {
101
111
        switch (other._type) {
102
110
        case HLL_DATA_EXPLICIT: {
103
            // Merge other's explicit values first, then check if the number is exceed
104
            // HLL_EXPLICIT_INT64_NUM. This is OK because the max value is 2 * 160.
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110
            _hash_set.insert(other._hash_set.begin(), other._hash_set.end());
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110
            if (_hash_set.size() > HLL_EXPLICIT_INT64_NUM) {
107
1
                _convert_explicit_to_register();
108
1
                _type = HLL_DATA_FULL;
109
1
            }
110
110
        } break;
111
0
        case HLL_DATA_SPARSE:
112
1
        case HLL_DATA_FULL:
113
1
            _convert_explicit_to_register();
114
1
            _merge_registers(other._registers);
115
1
            _type = HLL_DATA_FULL;
116
1
            break;
117
0
        default:
118
0
            break;
119
111
        }
120
111
        break;
121
111
    }
122
111
    case HLL_DATA_SPARSE:
123
3
    case HLL_DATA_FULL: {
124
3
        switch (other._type) {
125
1
        case HLL_DATA_EXPLICIT:
126
100
            for (auto hash_value : other._hash_set) {
127
100
                _update_registers(hash_value);
128
100
            }
129
1
            break;
130
0
        case HLL_DATA_SPARSE:
131
2
        case HLL_DATA_FULL:
132
2
            _merge_registers(other._registers);
133
2
            break;
134
0
        default:
135
0
            break;
136
3
        }
137
3
        break;
138
3
    }
139
1.18k
    }
140
1.18k
}
141
142
7.96k
size_t HyperLogLog::max_serialized_size() const {
143
7.96k
    switch (_type) {
144
60
    case HLL_DATA_EMPTY:
145
60
    default:
146
60
        return 1;
147
7.88k
    case HLL_DATA_EXPLICIT:
148
7.88k
        return 2 + _hash_set.size() * 8;
149
0
    case HLL_DATA_SPARSE:
150
18
    case HLL_DATA_FULL:
151
18
        return 1 + HLL_REGISTERS_COUNT;
152
7.96k
    }
153
7.96k
}
154
155
7.93k
size_t HyperLogLog::serialize(uint8_t* dst) const {
156
7.93k
    uint8_t* ptr = dst;
157
7.93k
    switch (_type) {
158
54
    case HLL_DATA_EMPTY:
159
54
    default: {
160
        // When the _type is unknown, which may not happen, we encode it as
161
        // Empty HyperLogLog object.
162
54
        *ptr++ = HLL_DATA_EMPTY;
163
54
        break;
164
54
    }
165
7.85k
    case HLL_DATA_EXPLICIT: {
166
7.85k
        DCHECK(_hash_set.size() <= HLL_EXPLICIT_INT64_NUM)
167
0
                << "Number of explicit elements(" << _hash_set.size()
168
0
                << ") should be less or equal than " << HLL_EXPLICIT_INT64_NUM;
169
7.85k
        *ptr++ = _type;
170
7.85k
        *ptr++ = (uint8_t)_hash_set.size();
171
46.2k
        for (auto hash_value : _hash_set) {
172
46.2k
            encode_fixed64_le(ptr, hash_value);
173
46.2k
            ptr += 8;
174
46.2k
        }
175
7.85k
        break;
176
54
    }
177
0
    case HLL_DATA_SPARSE:
178
20
    case HLL_DATA_FULL: {
179
20
        uint32_t num_non_zero_registers = 0;
180
327k
        for (int i = 0; i < HLL_REGISTERS_COUNT; ++i) {
181
327k
            num_non_zero_registers += (_registers[i] != 0);
182
327k
        }
183
184
        // each register in sparse format will occupy 3bytes, 2 for index and
185
        // 1 for register value. So if num_non_zero_registers is greater than
186
        // 4K we use full encode format.
187
20
        if (num_non_zero_registers > HLL_SPARSE_THRESHOLD) {
188
14
            *ptr++ = HLL_DATA_FULL;
189
14
            memcpy(ptr, _registers, HLL_REGISTERS_COUNT);
190
14
            ptr += HLL_REGISTERS_COUNT;
191
14
        } else {
192
6
            *ptr++ = HLL_DATA_SPARSE;
193
            // 2-5(4 byte): number of registers
194
6
            encode_fixed32_le(ptr, num_non_zero_registers);
195
6
            ptr += 4;
196
197
98.3k
            for (uint16_t i = 0; i < HLL_REGISTERS_COUNT; ++i) {
198
98.3k
                if (_registers[i] == 0) {
199
95.1k
                    continue;
200
95.1k
                }
201
                // 2 bytes: register index
202
                // 1 byte: register value
203
3.12k
                encode_fixed16_le(ptr, i);
204
3.12k
                ptr += 2;
205
3.12k
                *ptr++ = _registers[i];
206
3.12k
            }
207
6
        }
208
20
        break;
209
0
    }
210
7.93k
    }
211
7.93k
    return ptr - dst;
212
7.93k
}
213
214
4.98k
bool HyperLogLog::is_valid(const Slice& slice) {
215
4.98k
    if (slice.size < 1) {
216
1
        return false;
217
1
    }
218
4.98k
    const uint8_t* ptr = (uint8_t*)slice.data;
219
4.98k
    const uint8_t* end = (uint8_t*)slice.data + slice.size;
220
4.98k
    auto type = (HllDataType)*ptr++;
221
4.98k
    switch (type) {
222
71
    case HLL_DATA_EMPTY:
223
71
        break;
224
4.88k
    case HLL_DATA_EXPLICIT: {
225
4.88k
        if ((ptr + 1) > end) {
226
1
            return false;
227
1
        }
228
4.88k
        uint8_t num_explicits = *ptr++;
229
4.88k
        ptr += num_explicits * 8;
230
4.88k
        break;
231
4.88k
    }
232
9
    case HLL_DATA_SPARSE: {
233
9
        if ((ptr + 4) > end) {
234
1
            return false;
235
1
        }
236
8
        uint32_t num_registers = decode_fixed32_le(ptr);
237
8
        ptr += 4 + 3 * num_registers;
238
8
        break;
239
9
    }
240
16
    case HLL_DATA_FULL: {
241
16
        ptr += HLL_REGISTERS_COUNT;
242
16
        break;
243
9
    }
244
3
    default:
245
3
        return false;
246
4.98k
    }
247
4.98k
    return ptr == end;
248
4.98k
}
249
250
// TODO(zc): check input string's length
251
4.97k
bool HyperLogLog::deserialize(const Slice& slice) {
252
    // can be called only when type is empty
253
4.97k
    DCHECK(_type == HLL_DATA_EMPTY);
254
255
    // NOTE(zc): Don't remove this check unless you known what
256
    // you are doing. Because of history bug, we ingest some
257
    // invalid HLL data in storage, which ptr is nullptr.
258
    // we must handle this case to avoid process crash.
259
    // This bug is in release 0.10, I think we can remove this
260
    // in release 0.12 or later.
261
4.97k
    if (slice.data == nullptr || slice.size <= 0) {
262
1
        return false;
263
1
    }
264
    // check if input length is valid
265
4.97k
    if (!is_valid(slice)) {
266
3
        return false;
267
3
    }
268
269
4.97k
    const uint8_t* ptr = (uint8_t*)slice.data;
270
    // first byte : type
271
4.97k
    _type = (HllDataType)*ptr++;
272
4.97k
    switch (_type) {
273
69
    case HLL_DATA_EMPTY:
274
69
        break;
275
4.88k
    case HLL_DATA_EXPLICIT: {
276
        // 2: number of explicit values
277
        // make sure that num_explicit is positive
278
4.88k
        uint8_t num_explicits = *ptr++;
279
        // 3+: 8 bytes hash value
280
38.2k
        for (int i = 0; i < num_explicits; ++i) {
281
33.4k
            _hash_set.insert(decode_fixed64_le(ptr));
282
33.4k
            ptr += 8;
283
33.4k
        }
284
4.88k
        break;
285
0
    }
286
6
    case HLL_DATA_SPARSE: {
287
6
        _registers = new uint8_t[HLL_REGISTERS_COUNT];
288
6
        memset(_registers, 0, HLL_REGISTERS_COUNT);
289
        // 2-5(4 byte): number of registers
290
6
        uint32_t num_registers = decode_fixed32_le(ptr);
291
6
        ptr += 4;
292
3.13k
        for (uint32_t i = 0; i < num_registers; ++i) {
293
            // 2 bytes: register index
294
            // 1 byte: register value
295
3.12k
            uint16_t register_idx = decode_fixed16_le(ptr);
296
3.12k
            ptr += 2;
297
3.12k
            _registers[register_idx] = *ptr++;
298
3.12k
        }
299
6
        break;
300
0
    }
301
14
    case HLL_DATA_FULL: {
302
14
        _registers = new uint8_t[HLL_REGISTERS_COUNT];
303
        // 2+ : hll register value
304
14
        memcpy(_registers, ptr, HLL_REGISTERS_COUNT);
305
14
        break;
306
0
    }
307
0
    default:
308
        // revert type to EMPTY
309
0
        _type = HLL_DATA_EMPTY;
310
0
        return false;
311
4.97k
    }
312
4.97k
    return true;
313
4.97k
}
314
315
1.57k
int64_t HyperLogLog::estimate_cardinality() const {
316
1.57k
    if (_type == HLL_DATA_EMPTY) {
317
153
        return 0;
318
153
    }
319
1.42k
    if (_type == HLL_DATA_EXPLICIT) {
320
1.39k
        return _hash_set.size();
321
1.39k
    }
322
323
30
    const int num_streams = HLL_REGISTERS_COUNT;
324
    // Empirical constants for the algorithm.
325
30
    float alpha = 0;
326
327
30
    if (num_streams == 16) {
328
0
        alpha = 0.673F;
329
30
    } else if (num_streams == 32) {
330
0
        alpha = 0.697F;
331
30
    } else if (num_streams == 64) {
332
0
        alpha = 0.709F;
333
30
    } else {
334
30
        alpha = 0.7213F / (1 + 1.079F / num_streams);
335
30
    }
336
337
30
    float harmonic_mean = 0;
338
30
    int num_zero_registers = 0;
339
340
491k
    for (int i = 0; i < HLL_REGISTERS_COUNT; ++i) {
341
491k
        harmonic_mean += powf(2.0F, -_registers[i]);
342
343
491k
        if (_registers[i] == 0) {
344
241k
            ++num_zero_registers;
345
241k
        }
346
491k
    }
347
348
30
    harmonic_mean = 1.0F / harmonic_mean;
349
30
    double estimate = alpha * num_streams * num_streams * harmonic_mean;
350
    // according to HyperLogLog current correction, if E is cardinal
351
    // E =< num_streams * 2.5 , LC has higher accuracy.
352
    // num_streams * 2.5 < E , HyperLogLog has higher accuracy.
353
    // Generally , we can use HyperLogLog to produce value as E.
354
30
    if (estimate <= num_streams * 2.5 && num_zero_registers != 0) {
355
        // Estimated cardinality is too low. Hll is too inaccurate here, instead use
356
        // linear counting.
357
17
        estimate = num_streams *
358
17
                   log(static_cast<double>(num_streams) / static_cast<double>(num_zero_registers));
359
17
    } else if (num_streams == 16384 && estimate < 72000) {
360
        // when Linear Couint change to HyperLogLog according to HyperLogLog Correction,
361
        // there are relatively large fluctuations, we fixed the problem refer to redis.
362
6
        double bias = 5.9119 * 1.0e-18 * (estimate * estimate * estimate * estimate) -
363
6
                      1.4253 * 1.0e-12 * (estimate * estimate * estimate) +
364
6
                      1.2940 * 1.0e-7 * (estimate * estimate) - 5.2921 * 1.0e-3 * estimate +
365
6
                      83.3216;
366
6
        estimate -= estimate * (bias / 100);
367
6
    }
368
30
    return (int64_t)(estimate + 0.5);
369
1.42k
}
370
#include "common/compile_check_end.h"
371
} // namespace doris