Coverage Report

Created: 2026-01-19 08:20

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/root/doris/be/src/util/counts.h
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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
14
// 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
#pragma once
19
20
#include <pdqsort.h>
21
22
#include <algorithm>
23
#include <cmath>
24
#include <queue>
25
26
#include "udf/udf.h"
27
#include "vec/common/pod_array.h"
28
#include "vec/common/string_buffer.hpp"
29
#include "vec/io/io_helper.h"
30
31
namespace doris {
32
33
template <typename Ty>
34
class Counts {
35
public:
36
3.68k
    Counts() = default;
_ZN5doris6CountsIaEC2Ev
Line
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Source
36
49
    Counts() = default;
_ZN5doris6CountsIsEC2Ev
Line
Count
Source
36
213
    Counts() = default;
_ZN5doris6CountsIiEC2Ev
Line
Count
Source
36
2.23k
    Counts() = default;
_ZN5doris6CountsIlEC2Ev
Line
Count
Source
36
854
    Counts() = default;
_ZN5doris6CountsInEC2Ev
Line
Count
Source
36
45
    Counts() = default;
_ZN5doris6CountsIfEC2Ev
Line
Count
Source
36
15
    Counts() = default;
_ZN5doris6CountsIdEC2Ev
Line
Count
Source
36
268
    Counts() = default;
37
38
1.33k
    void merge(Counts* other) {
39
1.33k
        if (other != nullptr && !other->_nums.empty()) {
40
1.33k
            _sorted_nums_vec.emplace_back(std::move(other->_nums));
41
1.33k
        }
42
1.33k
    }
_ZN5doris6CountsIaE5mergeEPS1_
Line
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38
6
    void merge(Counts* other) {
39
6
        if (other != nullptr && !other->_nums.empty()) {
40
6
            _sorted_nums_vec.emplace_back(std::move(other->_nums));
41
6
        }
42
6
    }
_ZN5doris6CountsIsE5mergeEPS1_
Line
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Source
38
15
    void merge(Counts* other) {
39
15
        if (other != nullptr && !other->_nums.empty()) {
40
15
            _sorted_nums_vec.emplace_back(std::move(other->_nums));
41
15
        }
42
15
    }
_ZN5doris6CountsIiE5mergeEPS1_
Line
Count
Source
38
838
    void merge(Counts* other) {
39
838
        if (other != nullptr && !other->_nums.empty()) {
40
838
            _sorted_nums_vec.emplace_back(std::move(other->_nums));
41
838
        }
42
838
    }
_ZN5doris6CountsIlE5mergeEPS1_
Line
Count
Source
38
372
    void merge(Counts* other) {
39
372
        if (other != nullptr && !other->_nums.empty()) {
40
372
            _sorted_nums_vec.emplace_back(std::move(other->_nums));
41
372
        }
42
372
    }
_ZN5doris6CountsInE5mergeEPS1_
Line
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Source
38
6
    void merge(Counts* other) {
39
6
        if (other != nullptr && !other->_nums.empty()) {
40
6
            _sorted_nums_vec.emplace_back(std::move(other->_nums));
41
6
        }
42
6
    }
_ZN5doris6CountsIfE5mergeEPS1_
Line
Count
Source
38
6
    void merge(Counts* other) {
39
6
        if (other != nullptr && !other->_nums.empty()) {
40
6
            _sorted_nums_vec.emplace_back(std::move(other->_nums));
41
6
        }
42
6
    }
_ZN5doris6CountsIdE5mergeEPS1_
Line
Count
Source
38
92
    void merge(Counts* other) {
39
92
        if (other != nullptr && !other->_nums.empty()) {
40
92
            _sorted_nums_vec.emplace_back(std::move(other->_nums));
41
92
        }
42
92
    }
43
44
    void increment(Ty key, uint32_t i) {
45
        auto old_size = _nums.size();
46
        _nums.resize(_nums.size() + i);
47
        for (uint32_t j = 0; j < i; ++j) {
48
            _nums[old_size + j] = key;
49
        }
50
    }
51
52
2.93k
    void increment(Ty key) { _nums.push_back(key); }
_ZN5doris6CountsIaE9incrementEa
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Count
Source
52
73
    void increment(Ty key) { _nums.push_back(key); }
_ZN5doris6CountsIsE9incrementEs
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Count
Source
52
552
    void increment(Ty key) { _nums.push_back(key); }
_ZN5doris6CountsIiE9incrementEi
Line
Count
Source
52
1.59k
    void increment(Ty key) { _nums.push_back(key); }
_ZN5doris6CountsIlE9incrementEl
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Source
52
401
    void increment(Ty key) { _nums.push_back(key); }
_ZN5doris6CountsInE9incrementEn
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52
45
    void increment(Ty key) { _nums.push_back(key); }
_ZN5doris6CountsIfE9incrementEf
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Source
52
9
    void increment(Ty key) { _nums.push_back(key); }
_ZN5doris6CountsIdE9incrementEd
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52
259
    void increment(Ty key) { _nums.push_back(key); }
53
54
5
    void increment_batch(const vectorized::PaddedPODArray<Ty>& keys) {
55
5
        _nums.insert(keys.begin(), keys.end());
56
5
    }
Unexecuted instantiation: _ZN5doris6CountsIaE15increment_batchERKNS_10vectorized8PODArrayIaLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb0EEELm16ELm15EEE
Unexecuted instantiation: _ZN5doris6CountsIsE15increment_batchERKNS_10vectorized8PODArrayIsLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb0EEELm16ELm15EEE
Unexecuted instantiation: _ZN5doris6CountsIiE15increment_batchERKNS_10vectorized8PODArrayIiLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb0EEELm16ELm15EEE
_ZN5doris6CountsIlE15increment_batchERKNS_10vectorized8PODArrayIlLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb0EEELm16ELm15EEE
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54
5
    void increment_batch(const vectorized::PaddedPODArray<Ty>& keys) {
55
5
        _nums.insert(keys.begin(), keys.end());
56
5
    }
Unexecuted instantiation: _ZN5doris6CountsInE15increment_batchERKNS_10vectorized8PODArrayInLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb0EEELm16ELm15EEE
Unexecuted instantiation: _ZN5doris6CountsIfE15increment_batchERKNS_10vectorized8PODArrayIfLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb0EEELm16ELm15EEE
Unexecuted instantiation: _ZN5doris6CountsIdE15increment_batchERKNS_10vectorized8PODArrayIdLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb0EEELm16ELm15EEE
57
58
1.71k
    void serialize(vectorized::BufferWritable& buf) {
59
1.71k
        if (!_nums.empty()) {
60
1.42k
            pdqsort(_nums.begin(), _nums.end());
61
1.42k
            size_t size = _nums.size();
62
1.42k
            buf.write_binary(size);
63
1.42k
            buf.write(reinterpret_cast<const char*>(_nums.data()), sizeof(Ty) * size);
64
1.42k
        } else {
65
            // convert _sorted_nums_vec to _nums and do seiralize again
66
287
            _convert_sorted_num_vec_to_nums();
67
287
            serialize(buf);
68
287
        }
69
1.71k
    }
_ZN5doris6CountsIaE9serializeERNS_10vectorized14BufferWritableE
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Source
58
6
    void serialize(vectorized::BufferWritable& buf) {
59
6
        if (!_nums.empty()) {
60
6
            pdqsort(_nums.begin(), _nums.end());
61
6
            size_t size = _nums.size();
62
6
            buf.write_binary(size);
63
6
            buf.write(reinterpret_cast<const char*>(_nums.data()), sizeof(Ty) * size);
64
6
        } else {
65
            // convert _sorted_nums_vec to _nums and do seiralize again
66
0
            _convert_sorted_num_vec_to_nums();
67
0
            serialize(buf);
68
0
        }
69
6
    }
_ZN5doris6CountsIsE9serializeERNS_10vectorized14BufferWritableE
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Count
Source
58
15
    void serialize(vectorized::BufferWritable& buf) {
59
15
        if (!_nums.empty()) {
60
15
            pdqsort(_nums.begin(), _nums.end());
61
15
            size_t size = _nums.size();
62
15
            buf.write_binary(size);
63
15
            buf.write(reinterpret_cast<const char*>(_nums.data()), sizeof(Ty) * size);
64
15
        } else {
65
            // convert _sorted_nums_vec to _nums and do seiralize again
66
0
            _convert_sorted_num_vec_to_nums();
67
0
            serialize(buf);
68
0
        }
69
15
    }
_ZN5doris6CountsIiE9serializeERNS_10vectorized14BufferWritableE
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Count
Source
58
1.11k
    void serialize(vectorized::BufferWritable& buf) {
59
1.11k
        if (!_nums.empty()) {
60
955
            pdqsort(_nums.begin(), _nums.end());
61
955
            size_t size = _nums.size();
62
955
            buf.write_binary(size);
63
955
            buf.write(reinterpret_cast<const char*>(_nums.data()), sizeof(Ty) * size);
64
955
        } else {
65
            // convert _sorted_nums_vec to _nums and do seiralize again
66
156
            _convert_sorted_num_vec_to_nums();
67
156
            serialize(buf);
68
156
        }
69
1.11k
    }
_ZN5doris6CountsIlE9serializeERNS_10vectorized14BufferWritableE
Line
Count
Source
58
478
    void serialize(vectorized::BufferWritable& buf) {
59
478
        if (!_nums.empty()) {
60
347
            pdqsort(_nums.begin(), _nums.end());
61
347
            size_t size = _nums.size();
62
347
            buf.write_binary(size);
63
347
            buf.write(reinterpret_cast<const char*>(_nums.data()), sizeof(Ty) * size);
64
347
        } else {
65
            // convert _sorted_nums_vec to _nums and do seiralize again
66
131
            _convert_sorted_num_vec_to_nums();
67
131
            serialize(buf);
68
131
        }
69
478
    }
_ZN5doris6CountsInE9serializeERNS_10vectorized14BufferWritableE
Line
Count
Source
58
6
    void serialize(vectorized::BufferWritable& buf) {
59
6
        if (!_nums.empty()) {
60
6
            pdqsort(_nums.begin(), _nums.end());
61
6
            size_t size = _nums.size();
62
6
            buf.write_binary(size);
63
6
            buf.write(reinterpret_cast<const char*>(_nums.data()), sizeof(Ty) * size);
64
6
        } else {
65
            // convert _sorted_nums_vec to _nums and do seiralize again
66
0
            _convert_sorted_num_vec_to_nums();
67
0
            serialize(buf);
68
0
        }
69
6
    }
_ZN5doris6CountsIfE9serializeERNS_10vectorized14BufferWritableE
Line
Count
Source
58
6
    void serialize(vectorized::BufferWritable& buf) {
59
6
        if (!_nums.empty()) {
60
6
            pdqsort(_nums.begin(), _nums.end());
61
6
            size_t size = _nums.size();
62
6
            buf.write_binary(size);
63
6
            buf.write(reinterpret_cast<const char*>(_nums.data()), sizeof(Ty) * size);
64
6
        } else {
65
            // convert _sorted_nums_vec to _nums and do seiralize again
66
0
            _convert_sorted_num_vec_to_nums();
67
0
            serialize(buf);
68
0
        }
69
6
    }
_ZN5doris6CountsIdE9serializeERNS_10vectorized14BufferWritableE
Line
Count
Source
58
92
    void serialize(vectorized::BufferWritable& buf) {
59
92
        if (!_nums.empty()) {
60
92
            pdqsort(_nums.begin(), _nums.end());
61
92
            size_t size = _nums.size();
62
92
            buf.write_binary(size);
63
92
            buf.write(reinterpret_cast<const char*>(_nums.data()), sizeof(Ty) * size);
64
92
        } else {
65
            // convert _sorted_nums_vec to _nums and do seiralize again
66
0
            _convert_sorted_num_vec_to_nums();
67
0
            serialize(buf);
68
0
        }
69
92
    }
70
71
1.33k
    void unserialize(vectorized::BufferReadable& buf) {
72
1.33k
        size_t size;
73
1.33k
        buf.read_binary(size);
74
1.33k
        _nums.resize(size);
75
1.33k
        auto buff = buf.read(sizeof(Ty) * size);
76
1.33k
        memcpy(_nums.data(), buff.data, buff.size);
77
1.33k
    }
_ZN5doris6CountsIaE11unserializeERNS_10vectorized14BufferReadableE
Line
Count
Source
71
6
    void unserialize(vectorized::BufferReadable& buf) {
72
6
        size_t size;
73
6
        buf.read_binary(size);
74
6
        _nums.resize(size);
75
6
        auto buff = buf.read(sizeof(Ty) * size);
76
6
        memcpy(_nums.data(), buff.data, buff.size);
77
6
    }
_ZN5doris6CountsIsE11unserializeERNS_10vectorized14BufferReadableE
Line
Count
Source
71
15
    void unserialize(vectorized::BufferReadable& buf) {
72
15
        size_t size;
73
15
        buf.read_binary(size);
74
15
        _nums.resize(size);
75
15
        auto buff = buf.read(sizeof(Ty) * size);
76
15
        memcpy(_nums.data(), buff.data, buff.size);
77
15
    }
_ZN5doris6CountsIiE11unserializeERNS_10vectorized14BufferReadableE
Line
Count
Source
71
838
    void unserialize(vectorized::BufferReadable& buf) {
72
838
        size_t size;
73
838
        buf.read_binary(size);
74
838
        _nums.resize(size);
75
838
        auto buff = buf.read(sizeof(Ty) * size);
76
838
        memcpy(_nums.data(), buff.data, buff.size);
77
838
    }
_ZN5doris6CountsIlE11unserializeERNS_10vectorized14BufferReadableE
Line
Count
Source
71
372
    void unserialize(vectorized::BufferReadable& buf) {
72
372
        size_t size;
73
372
        buf.read_binary(size);
74
372
        _nums.resize(size);
75
372
        auto buff = buf.read(sizeof(Ty) * size);
76
372
        memcpy(_nums.data(), buff.data, buff.size);
77
372
    }
_ZN5doris6CountsInE11unserializeERNS_10vectorized14BufferReadableE
Line
Count
Source
71
6
    void unserialize(vectorized::BufferReadable& buf) {
72
6
        size_t size;
73
6
        buf.read_binary(size);
74
6
        _nums.resize(size);
75
6
        auto buff = buf.read(sizeof(Ty) * size);
76
6
        memcpy(_nums.data(), buff.data, buff.size);
77
6
    }
_ZN5doris6CountsIfE11unserializeERNS_10vectorized14BufferReadableE
Line
Count
Source
71
6
    void unserialize(vectorized::BufferReadable& buf) {
72
6
        size_t size;
73
6
        buf.read_binary(size);
74
6
        _nums.resize(size);
75
6
        auto buff = buf.read(sizeof(Ty) * size);
76
6
        memcpy(_nums.data(), buff.data, buff.size);
77
6
    }
_ZN5doris6CountsIdE11unserializeERNS_10vectorized14BufferReadableE
Line
Count
Source
71
92
    void unserialize(vectorized::BufferReadable& buf) {
72
92
        size_t size;
73
92
        buf.read_binary(size);
74
92
        _nums.resize(size);
75
92
        auto buff = buf.read(sizeof(Ty) * size);
76
92
        memcpy(_nums.data(), buff.data, buff.size);
77
92
    }
78
79
1.10k
    double terminate(double quantile) {
80
1.10k
        if (_sorted_nums_vec.size() <= 1) {
81
941
            if (_sorted_nums_vec.size() == 1) {
82
288
                _nums = std::move(_sorted_nums_vec[0]);
83
288
            }
84
85
941
            if (_nums.empty()) {
86
                // Although set null here, but the value is 0.0 and the call method just
87
                // get val in aggregate_function_percentile_approx.h
88
0
                return 0.0;
89
0
            }
90
91
941
            if (UNLIKELY(!std::is_sorted(_nums.begin(), _nums.end()))) {
92
180
                pdqsort(_nums.begin(), _nums.end());
93
180
            }
94
95
941
            if (quantile == 1 || _nums.size() == 1) {
96
473
                return _nums.back();
97
473
            }
98
99
468
            double u = (_nums.size() - 1) * quantile;
100
468
            auto index = static_cast<uint32_t>(u);
101
468
            return _nums[index] +
102
468
                   (u - static_cast<double>(index)) * (static_cast<double>(_nums[index + 1]) -
103
468
                                                       static_cast<double>(_nums[index]));
104
941
        } else {
105
163
            DCHECK(_nums.empty());
106
163
            size_t rows = 0;
107
430
            for (const auto& i : _sorted_nums_vec) {
108
430
                rows += i.size();
109
430
            }
110
163
            const bool reverse = quantile > 0.5 && rows > 2;
111
163
            double u = (rows - 1) * quantile;
112
163
            auto index = static_cast<uint32_t>(u);
113
            // if reverse, the step of target should start 0 like not reverse
114
            // so here rows need to minus index + 2
115
            // eg: rows = 10, index = 5
116
            // if not reverse, so the first number loc is 5, the second number loc is 6
117
            // if reverse, so the second number is 3, the first number is 4
118
            // 5 + 4 = 3 + 6 = 9 = rows - 1.
119
            // the rows must GE 2 beacuse `_sorted_nums_vec` size GE 2
120
163
            size_t target = reverse ? rows - index - 2 : index;
121
163
            if (quantile == 1) {
122
0
                target = 0;
123
0
            }
124
163
            auto [first_number, second_number] = _merge_sort_and_get_numbers(target, reverse);
125
163
            if (quantile == 1) {
126
0
                return second_number;
127
0
            }
128
163
            return first_number +
129
163
                   (u - static_cast<double>(index)) *
130
163
                           (static_cast<double>(second_number) - static_cast<double>(first_number));
131
163
        }
132
1.10k
    }
_ZN5doris6CountsIaE9terminateEd
Line
Count
Source
79
61
    double terminate(double quantile) {
80
61
        if (_sorted_nums_vec.size() <= 1) {
81
58
            if (_sorted_nums_vec.size() == 1) {
82
0
                _nums = std::move(_sorted_nums_vec[0]);
83
0
            }
84
85
58
            if (_nums.empty()) {
86
                // Although set null here, but the value is 0.0 and the call method just
87
                // get val in aggregate_function_percentile_approx.h
88
0
                return 0.0;
89
0
            }
90
91
58
            if (UNLIKELY(!std::is_sorted(_nums.begin(), _nums.end()))) {
92
24
                pdqsort(_nums.begin(), _nums.end());
93
24
            }
94
95
58
            if (quantile == 1 || _nums.size() == 1) {
96
34
                return _nums.back();
97
34
            }
98
99
24
            double u = (_nums.size() - 1) * quantile;
100
24
            auto index = static_cast<uint32_t>(u);
101
24
            return _nums[index] +
102
24
                   (u - static_cast<double>(index)) * (static_cast<double>(_nums[index + 1]) -
103
24
                                                       static_cast<double>(_nums[index]));
104
58
        } else {
105
3
            DCHECK(_nums.empty());
106
3
            size_t rows = 0;
107
6
            for (const auto& i : _sorted_nums_vec) {
108
6
                rows += i.size();
109
6
            }
110
3
            const bool reverse = quantile > 0.5 && rows > 2;
111
3
            double u = (rows - 1) * quantile;
112
3
            auto index = static_cast<uint32_t>(u);
113
            // if reverse, the step of target should start 0 like not reverse
114
            // so here rows need to minus index + 2
115
            // eg: rows = 10, index = 5
116
            // if not reverse, so the first number loc is 5, the second number loc is 6
117
            // if reverse, so the second number is 3, the first number is 4
118
            // 5 + 4 = 3 + 6 = 9 = rows - 1.
119
            // the rows must GE 2 beacuse `_sorted_nums_vec` size GE 2
120
3
            size_t target = reverse ? rows - index - 2 : index;
121
3
            if (quantile == 1) {
122
0
                target = 0;
123
0
            }
124
3
            auto [first_number, second_number] = _merge_sort_and_get_numbers(target, reverse);
125
3
            if (quantile == 1) {
126
0
                return second_number;
127
0
            }
128
3
            return first_number +
129
3
                   (u - static_cast<double>(index)) *
130
3
                           (static_cast<double>(second_number) - static_cast<double>(first_number));
131
3
        }
132
61
    }
_ZN5doris6CountsIsE9terminateEd
Line
Count
Source
79
299
    double terminate(double quantile) {
80
299
        if (_sorted_nums_vec.size() <= 1) {
81
294
            if (_sorted_nums_vec.size() == 1) {
82
0
                _nums = std::move(_sorted_nums_vec[0]);
83
0
            }
84
85
294
            if (_nums.empty()) {
86
                // Although set null here, but the value is 0.0 and the call method just
87
                // get val in aggregate_function_percentile_approx.h
88
0
                return 0.0;
89
0
            }
90
91
294
            if (UNLIKELY(!std::is_sorted(_nums.begin(), _nums.end()))) {
92
144
                pdqsort(_nums.begin(), _nums.end());
93
144
            }
94
95
294
            if (quantile == 1 || _nums.size() == 1) {
96
87
                return _nums.back();
97
87
            }
98
99
207
            double u = (_nums.size() - 1) * quantile;
100
207
            auto index = static_cast<uint32_t>(u);
101
207
            return _nums[index] +
102
207
                   (u - static_cast<double>(index)) * (static_cast<double>(_nums[index + 1]) -
103
207
                                                       static_cast<double>(_nums[index]));
104
294
        } else {
105
5
            DCHECK(_nums.empty());
106
5
            size_t rows = 0;
107
15
            for (const auto& i : _sorted_nums_vec) {
108
15
                rows += i.size();
109
15
            }
110
5
            const bool reverse = quantile > 0.5 && rows > 2;
111
5
            double u = (rows - 1) * quantile;
112
5
            auto index = static_cast<uint32_t>(u);
113
            // if reverse, the step of target should start 0 like not reverse
114
            // so here rows need to minus index + 2
115
            // eg: rows = 10, index = 5
116
            // if not reverse, so the first number loc is 5, the second number loc is 6
117
            // if reverse, so the second number is 3, the first number is 4
118
            // 5 + 4 = 3 + 6 = 9 = rows - 1.
119
            // the rows must GE 2 beacuse `_sorted_nums_vec` size GE 2
120
5
            size_t target = reverse ? rows - index - 2 : index;
121
5
            if (quantile == 1) {
122
0
                target = 0;
123
0
            }
124
5
            auto [first_number, second_number] = _merge_sort_and_get_numbers(target, reverse);
125
5
            if (quantile == 1) {
126
0
                return second_number;
127
0
            }
128
5
            return first_number +
129
5
                   (u - static_cast<double>(index)) *
130
5
                           (static_cast<double>(second_number) - static_cast<double>(first_number));
131
5
        }
132
299
    }
_ZN5doris6CountsIiE9terminateEd
Line
Count
Source
79
444
    double terminate(double quantile) {
80
444
        if (_sorted_nums_vec.size() <= 1) {
81
344
            if (_sorted_nums_vec.size() == 1) {
82
226
                _nums = std::move(_sorted_nums_vec[0]);
83
226
            }
84
85
344
            if (_nums.empty()) {
86
                // Although set null here, but the value is 0.0 and the call method just
87
                // get val in aggregate_function_percentile_approx.h
88
0
                return 0.0;
89
0
            }
90
91
344
            if (UNLIKELY(!std::is_sorted(_nums.begin(), _nums.end()))) {
92
11
                pdqsort(_nums.begin(), _nums.end());
93
11
            }
94
95
344
            if (quantile == 1 || _nums.size() == 1) {
96
239
                return _nums.back();
97
239
            }
98
99
105
            double u = (_nums.size() - 1) * quantile;
100
105
            auto index = static_cast<uint32_t>(u);
101
105
            return _nums[index] +
102
105
                   (u - static_cast<double>(index)) * (static_cast<double>(_nums[index + 1]) -
103
105
                                                       static_cast<double>(_nums[index]));
104
344
        } else {
105
100
            DCHECK(_nums.empty());
106
100
            size_t rows = 0;
107
273
            for (const auto& i : _sorted_nums_vec) {
108
273
                rows += i.size();
109
273
            }
110
100
            const bool reverse = quantile > 0.5 && rows > 2;
111
100
            double u = (rows - 1) * quantile;
112
100
            auto index = static_cast<uint32_t>(u);
113
            // if reverse, the step of target should start 0 like not reverse
114
            // so here rows need to minus index + 2
115
            // eg: rows = 10, index = 5
116
            // if not reverse, so the first number loc is 5, the second number loc is 6
117
            // if reverse, so the second number is 3, the first number is 4
118
            // 5 + 4 = 3 + 6 = 9 = rows - 1.
119
            // the rows must GE 2 beacuse `_sorted_nums_vec` size GE 2
120
100
            size_t target = reverse ? rows - index - 2 : index;
121
100
            if (quantile == 1) {
122
0
                target = 0;
123
0
            }
124
100
            auto [first_number, second_number] = _merge_sort_and_get_numbers(target, reverse);
125
100
            if (quantile == 1) {
126
0
                return second_number;
127
0
            }
128
100
            return first_number +
129
100
                   (u - static_cast<double>(index)) *
130
100
                           (static_cast<double>(second_number) - static_cast<double>(first_number));
131
100
        }
132
444
    }
_ZN5doris6CountsIlE9terminateEd
Line
Count
Source
79
128
    double terminate(double quantile) {
80
128
        if (_sorted_nums_vec.size() <= 1) {
81
106
            if (_sorted_nums_vec.size() == 1) {
82
36
                _nums = std::move(_sorted_nums_vec[0]);
83
36
            }
84
85
106
            if (_nums.empty()) {
86
                // Although set null here, but the value is 0.0 and the call method just
87
                // get val in aggregate_function_percentile_approx.h
88
0
                return 0.0;
89
0
            }
90
91
106
            if (UNLIKELY(!std::is_sorted(_nums.begin(), _nums.end()))) {
92
1
                pdqsort(_nums.begin(), _nums.end());
93
1
            }
94
95
106
            if (quantile == 1 || _nums.size() == 1) {
96
59
                return _nums.back();
97
59
            }
98
99
47
            double u = (_nums.size() - 1) * quantile;
100
47
            auto index = static_cast<uint32_t>(u);
101
47
            return _nums[index] +
102
47
                   (u - static_cast<double>(index)) * (static_cast<double>(_nums[index + 1]) -
103
47
                                                       static_cast<double>(_nums[index]));
104
106
        } else {
105
22
            DCHECK(_nums.empty());
106
22
            size_t rows = 0;
107
58
            for (const auto& i : _sorted_nums_vec) {
108
58
                rows += i.size();
109
58
            }
110
22
            const bool reverse = quantile > 0.5 && rows > 2;
111
22
            double u = (rows - 1) * quantile;
112
22
            auto index = static_cast<uint32_t>(u);
113
            // if reverse, the step of target should start 0 like not reverse
114
            // so here rows need to minus index + 2
115
            // eg: rows = 10, index = 5
116
            // if not reverse, so the first number loc is 5, the second number loc is 6
117
            // if reverse, so the second number is 3, the first number is 4
118
            // 5 + 4 = 3 + 6 = 9 = rows - 1.
119
            // the rows must GE 2 beacuse `_sorted_nums_vec` size GE 2
120
22
            size_t target = reverse ? rows - index - 2 : index;
121
22
            if (quantile == 1) {
122
0
                target = 0;
123
0
            }
124
22
            auto [first_number, second_number] = _merge_sort_and_get_numbers(target, reverse);
125
22
            if (quantile == 1) {
126
0
                return second_number;
127
0
            }
128
22
            return first_number +
129
22
                   (u - static_cast<double>(index)) *
130
22
                           (static_cast<double>(second_number) - static_cast<double>(first_number));
131
22
        }
132
128
    }
_ZN5doris6CountsInE9terminateEd
Line
Count
Source
79
33
    double terminate(double quantile) {
80
33
        if (_sorted_nums_vec.size() <= 1) {
81
30
            if (_sorted_nums_vec.size() == 1) {
82
0
                _nums = std::move(_sorted_nums_vec[0]);
83
0
            }
84
85
30
            if (_nums.empty()) {
86
                // Although set null here, but the value is 0.0 and the call method just
87
                // get val in aggregate_function_percentile_approx.h
88
0
                return 0.0;
89
0
            }
90
91
30
            if (UNLIKELY(!std::is_sorted(_nums.begin(), _nums.end()))) {
92
0
                pdqsort(_nums.begin(), _nums.end());
93
0
            }
94
95
30
            if (quantile == 1 || _nums.size() == 1) {
96
24
                return _nums.back();
97
24
            }
98
99
6
            double u = (_nums.size() - 1) * quantile;
100
6
            auto index = static_cast<uint32_t>(u);
101
6
            return _nums[index] +
102
6
                   (u - static_cast<double>(index)) * (static_cast<double>(_nums[index + 1]) -
103
6
                                                       static_cast<double>(_nums[index]));
104
30
        } else {
105
3
            DCHECK(_nums.empty());
106
3
            size_t rows = 0;
107
6
            for (const auto& i : _sorted_nums_vec) {
108
6
                rows += i.size();
109
6
            }
110
3
            const bool reverse = quantile > 0.5 && rows > 2;
111
3
            double u = (rows - 1) * quantile;
112
3
            auto index = static_cast<uint32_t>(u);
113
            // if reverse, the step of target should start 0 like not reverse
114
            // so here rows need to minus index + 2
115
            // eg: rows = 10, index = 5
116
            // if not reverse, so the first number loc is 5, the second number loc is 6
117
            // if reverse, so the second number is 3, the first number is 4
118
            // 5 + 4 = 3 + 6 = 9 = rows - 1.
119
            // the rows must GE 2 beacuse `_sorted_nums_vec` size GE 2
120
3
            size_t target = reverse ? rows - index - 2 : index;
121
3
            if (quantile == 1) {
122
0
                target = 0;
123
0
            }
124
3
            auto [first_number, second_number] = _merge_sort_and_get_numbers(target, reverse);
125
3
            if (quantile == 1) {
126
0
                return second_number;
127
0
            }
128
3
            return first_number +
129
3
                   (u - static_cast<double>(index)) *
130
3
                           (static_cast<double>(second_number) - static_cast<double>(first_number));
131
3
        }
132
33
    }
_ZN5doris6CountsIfE9terminateEd
Line
Count
Source
79
3
    double terminate(double quantile) {
80
3
        if (_sorted_nums_vec.size() <= 1) {
81
0
            if (_sorted_nums_vec.size() == 1) {
82
0
                _nums = std::move(_sorted_nums_vec[0]);
83
0
            }
84
85
0
            if (_nums.empty()) {
86
                // Although set null here, but the value is 0.0 and the call method just
87
                // get val in aggregate_function_percentile_approx.h
88
0
                return 0.0;
89
0
            }
90
91
0
            if (UNLIKELY(!std::is_sorted(_nums.begin(), _nums.end()))) {
92
0
                pdqsort(_nums.begin(), _nums.end());
93
0
            }
94
95
0
            if (quantile == 1 || _nums.size() == 1) {
96
0
                return _nums.back();
97
0
            }
98
99
0
            double u = (_nums.size() - 1) * quantile;
100
0
            auto index = static_cast<uint32_t>(u);
101
0
            return _nums[index] +
102
0
                   (u - static_cast<double>(index)) * (static_cast<double>(_nums[index + 1]) -
103
0
                                                       static_cast<double>(_nums[index]));
104
3
        } else {
105
3
            DCHECK(_nums.empty());
106
3
            size_t rows = 0;
107
6
            for (const auto& i : _sorted_nums_vec) {
108
6
                rows += i.size();
109
6
            }
110
3
            const bool reverse = quantile > 0.5 && rows > 2;
111
3
            double u = (rows - 1) * quantile;
112
3
            auto index = static_cast<uint32_t>(u);
113
            // if reverse, the step of target should start 0 like not reverse
114
            // so here rows need to minus index + 2
115
            // eg: rows = 10, index = 5
116
            // if not reverse, so the first number loc is 5, the second number loc is 6
117
            // if reverse, so the second number is 3, the first number is 4
118
            // 5 + 4 = 3 + 6 = 9 = rows - 1.
119
            // the rows must GE 2 beacuse `_sorted_nums_vec` size GE 2
120
3
            size_t target = reverse ? rows - index - 2 : index;
121
3
            if (quantile == 1) {
122
0
                target = 0;
123
0
            }
124
3
            auto [first_number, second_number] = _merge_sort_and_get_numbers(target, reverse);
125
3
            if (quantile == 1) {
126
0
                return second_number;
127
0
            }
128
3
            return first_number +
129
3
                   (u - static_cast<double>(index)) *
130
3
                           (static_cast<double>(second_number) - static_cast<double>(first_number));
131
3
        }
132
3
    }
_ZN5doris6CountsIdE9terminateEd
Line
Count
Source
79
136
    double terminate(double quantile) {
80
136
        if (_sorted_nums_vec.size() <= 1) {
81
109
            if (_sorted_nums_vec.size() == 1) {
82
26
                _nums = std::move(_sorted_nums_vec[0]);
83
26
            }
84
85
109
            if (_nums.empty()) {
86
                // Although set null here, but the value is 0.0 and the call method just
87
                // get val in aggregate_function_percentile_approx.h
88
0
                return 0.0;
89
0
            }
90
91
109
            if (UNLIKELY(!std::is_sorted(_nums.begin(), _nums.end()))) {
92
0
                pdqsort(_nums.begin(), _nums.end());
93
0
            }
94
95
109
            if (quantile == 1 || _nums.size() == 1) {
96
30
                return _nums.back();
97
30
            }
98
99
79
            double u = (_nums.size() - 1) * quantile;
100
79
            auto index = static_cast<uint32_t>(u);
101
79
            return _nums[index] +
102
79
                   (u - static_cast<double>(index)) * (static_cast<double>(_nums[index + 1]) -
103
79
                                                       static_cast<double>(_nums[index]));
104
109
        } else {
105
27
            DCHECK(_nums.empty());
106
27
            size_t rows = 0;
107
66
            for (const auto& i : _sorted_nums_vec) {
108
66
                rows += i.size();
109
66
            }
110
27
            const bool reverse = quantile > 0.5 && rows > 2;
111
27
            double u = (rows - 1) * quantile;
112
27
            auto index = static_cast<uint32_t>(u);
113
            // if reverse, the step of target should start 0 like not reverse
114
            // so here rows need to minus index + 2
115
            // eg: rows = 10, index = 5
116
            // if not reverse, so the first number loc is 5, the second number loc is 6
117
            // if reverse, so the second number is 3, the first number is 4
118
            // 5 + 4 = 3 + 6 = 9 = rows - 1.
119
            // the rows must GE 2 beacuse `_sorted_nums_vec` size GE 2
120
27
            size_t target = reverse ? rows - index - 2 : index;
121
27
            if (quantile == 1) {
122
0
                target = 0;
123
0
            }
124
27
            auto [first_number, second_number] = _merge_sort_and_get_numbers(target, reverse);
125
27
            if (quantile == 1) {
126
0
                return second_number;
127
0
            }
128
27
            return first_number +
129
27
                   (u - static_cast<double>(index)) *
130
27
                           (static_cast<double>(second_number) - static_cast<double>(first_number));
131
27
        }
132
136
    }
133
134
private:
135
    struct Node {
136
        Ty value;
137
        int array_index;
138
        int64_t element_index;
139
140
1.51k
        auto operator<=>(const Node& other) const { return value <=> other.value; }
_ZNK5doris6CountsIaE4NodessERKS2_
Line
Count
Source
140
6
        auto operator<=>(const Node& other) const { return value <=> other.value; }
_ZNK5doris6CountsIsE4NodessERKS2_
Line
Count
Source
140
44
        auto operator<=>(const Node& other) const { return value <=> other.value; }
_ZNK5doris6CountsIiE4NodessERKS2_
Line
Count
Source
140
933
        auto operator<=>(const Node& other) const { return value <=> other.value; }
_ZNK5doris6CountsIlE4NodessERKS2_
Line
Count
Source
140
443
        auto operator<=>(const Node& other) const { return value <=> other.value; }
_ZNK5doris6CountsInE4NodessERKS2_
Line
Count
Source
140
6
        auto operator<=>(const Node& other) const { return value <=> other.value; }
_ZNK5doris6CountsIfE4NodessERKS2_
Line
Count
Source
140
6
        auto operator<=>(const Node& other) const { return value <=> other.value; }
_ZNK5doris6CountsIdE4NodessERKS2_
Line
Count
Source
140
75
        auto operator<=>(const Node& other) const { return value <=> other.value; }
141
    };
142
143
287
    void _convert_sorted_num_vec_to_nums() {
144
287
        size_t rows = 0;
145
617
        for (const auto& i : _sorted_nums_vec) {
146
617
            rows += i.size();
147
617
        }
148
287
        _nums.resize(rows);
149
287
        size_t count = 0;
150
151
287
        std::priority_queue<Node, std::vector<Node>, std::greater<Node>> min_heap;
152
904
        for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
153
617
            if (!_sorted_nums_vec[i].empty()) {
154
617
                min_heap.emplace(_sorted_nums_vec[i][0], i, 0);
155
617
            }
156
617
        }
157
158
1.01k
        while (!min_heap.empty()) {
159
729
            Node node = min_heap.top();
160
729
            min_heap.pop();
161
729
            _nums[count++] = node.value;
162
729
            if (++node.element_index < _sorted_nums_vec[node.array_index].size()) {
163
112
                node.value = _sorted_nums_vec[node.array_index][node.element_index];
164
112
                min_heap.push(node);
165
112
            }
166
729
        }
167
287
        _sorted_nums_vec.clear();
168
287
    }
Unexecuted instantiation: _ZN5doris6CountsIaE31_convert_sorted_num_vec_to_numsEv
Unexecuted instantiation: _ZN5doris6CountsIsE31_convert_sorted_num_vec_to_numsEv
_ZN5doris6CountsIiE31_convert_sorted_num_vec_to_numsEv
Line
Count
Source
143
156
    void _convert_sorted_num_vec_to_nums() {
144
156
        size_t rows = 0;
145
339
        for (const auto& i : _sorted_nums_vec) {
146
339
            rows += i.size();
147
339
        }
148
156
        _nums.resize(rows);
149
156
        size_t count = 0;
150
151
156
        std::priority_queue<Node, std::vector<Node>, std::greater<Node>> min_heap;
152
495
        for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
153
339
            if (!_sorted_nums_vec[i].empty()) {
154
339
                min_heap.emplace(_sorted_nums_vec[i][0], i, 0);
155
339
            }
156
339
        }
157
158
531
        while (!min_heap.empty()) {
159
375
            Node node = min_heap.top();
160
375
            min_heap.pop();
161
375
            _nums[count++] = node.value;
162
375
            if (++node.element_index < _sorted_nums_vec[node.array_index].size()) {
163
36
                node.value = _sorted_nums_vec[node.array_index][node.element_index];
164
36
                min_heap.push(node);
165
36
            }
166
375
        }
167
156
        _sorted_nums_vec.clear();
168
156
    }
_ZN5doris6CountsIlE31_convert_sorted_num_vec_to_numsEv
Line
Count
Source
143
131
    void _convert_sorted_num_vec_to_nums() {
144
131
        size_t rows = 0;
145
278
        for (const auto& i : _sorted_nums_vec) {
146
278
            rows += i.size();
147
278
        }
148
131
        _nums.resize(rows);
149
131
        size_t count = 0;
150
151
131
        std::priority_queue<Node, std::vector<Node>, std::greater<Node>> min_heap;
152
409
        for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
153
278
            if (!_sorted_nums_vec[i].empty()) {
154
278
                min_heap.emplace(_sorted_nums_vec[i][0], i, 0);
155
278
            }
156
278
        }
157
158
485
        while (!min_heap.empty()) {
159
354
            Node node = min_heap.top();
160
354
            min_heap.pop();
161
354
            _nums[count++] = node.value;
162
354
            if (++node.element_index < _sorted_nums_vec[node.array_index].size()) {
163
76
                node.value = _sorted_nums_vec[node.array_index][node.element_index];
164
76
                min_heap.push(node);
165
76
            }
166
354
        }
167
131
        _sorted_nums_vec.clear();
168
131
    }
Unexecuted instantiation: _ZN5doris6CountsInE31_convert_sorted_num_vec_to_numsEv
Unexecuted instantiation: _ZN5doris6CountsIfE31_convert_sorted_num_vec_to_numsEv
Unexecuted instantiation: _ZN5doris6CountsIdE31_convert_sorted_num_vec_to_numsEv
169
170
164
    std::pair<Ty, Ty> _merge_sort_and_get_numbers(int64_t target, bool reverse) {
171
164
        Ty first_number = 0, second_number = 0;
172
164
        size_t count = 0;
173
164
        if (reverse) {
174
34
            std::priority_queue<Node> max_heap;
175
125
            for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
176
91
                if (!_sorted_nums_vec[i].empty()) {
177
91
                    max_heap.emplace(_sorted_nums_vec[i][_sorted_nums_vec[i].size() - 1], i,
178
91
                                     _sorted_nums_vec[i].size() - 1);
179
91
                }
180
91
            }
181
182
125
            while (!max_heap.empty()) {
183
125
                Node node = max_heap.top();
184
125
                max_heap.pop();
185
125
                if (count == target) {
186
34
                    second_number = node.value;
187
91
                } else if (count == target + 1) {
188
34
                    first_number = node.value;
189
34
                    break;
190
34
                }
191
91
                ++count;
192
91
                if (--node.element_index >= 0) {
193
77
                    node.value = _sorted_nums_vec[node.array_index][node.element_index];
194
77
                    max_heap.push(node);
195
77
                }
196
91
            }
197
198
130
        } else {
199
130
            std::priority_queue<Node, std::vector<Node>, std::greater<Node>> min_heap;
200
469
            for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
201
339
                if (!_sorted_nums_vec[i].empty()) {
202
339
                    min_heap.emplace(_sorted_nums_vec[i][0], i, 0);
203
339
                }
204
339
            }
205
206
367
            while (!min_heap.empty()) {
207
367
                Node node = min_heap.top();
208
367
                min_heap.pop();
209
367
                if (count == target) {
210
130
                    first_number = node.value;
211
237
                } else if (count == target + 1) {
212
130
                    second_number = node.value;
213
130
                    break;
214
130
                }
215
237
                ++count;
216
237
                if (++node.element_index < _sorted_nums_vec[node.array_index].size()) {
217
143
                    node.value = _sorted_nums_vec[node.array_index][node.element_index];
218
143
                    min_heap.push(node);
219
143
                }
220
237
            }
221
130
        }
222
223
164
        return {first_number, second_number};
224
164
    }
_ZN5doris6CountsIaE27_merge_sort_and_get_numbersElb
Line
Count
Source
170
3
    std::pair<Ty, Ty> _merge_sort_and_get_numbers(int64_t target, bool reverse) {
171
3
        Ty first_number = 0, second_number = 0;
172
3
        size_t count = 0;
173
3
        if (reverse) {
174
1
            std::priority_queue<Node> max_heap;
175
3
            for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
176
2
                if (!_sorted_nums_vec[i].empty()) {
177
2
                    max_heap.emplace(_sorted_nums_vec[i][_sorted_nums_vec[i].size() - 1], i,
178
2
                                     _sorted_nums_vec[i].size() - 1);
179
2
                }
180
2
            }
181
182
2
            while (!max_heap.empty()) {
183
2
                Node node = max_heap.top();
184
2
                max_heap.pop();
185
2
                if (count == target) {
186
1
                    second_number = node.value;
187
1
                } else if (count == target + 1) {
188
1
                    first_number = node.value;
189
1
                    break;
190
1
                }
191
1
                ++count;
192
1
                if (--node.element_index >= 0) {
193
1
                    node.value = _sorted_nums_vec[node.array_index][node.element_index];
194
1
                    max_heap.push(node);
195
1
                }
196
1
            }
197
198
2
        } else {
199
2
            std::priority_queue<Node, std::vector<Node>, std::greater<Node>> min_heap;
200
6
            for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
201
4
                if (!_sorted_nums_vec[i].empty()) {
202
4
                    min_heap.emplace(_sorted_nums_vec[i][0], i, 0);
203
4
                }
204
4
            }
205
206
6
            while (!min_heap.empty()) {
207
6
                Node node = min_heap.top();
208
6
                min_heap.pop();
209
6
                if (count == target) {
210
2
                    first_number = node.value;
211
4
                } else if (count == target + 1) {
212
2
                    second_number = node.value;
213
2
                    break;
214
2
                }
215
4
                ++count;
216
4
                if (++node.element_index < _sorted_nums_vec[node.array_index].size()) {
217
2
                    node.value = _sorted_nums_vec[node.array_index][node.element_index];
218
2
                    min_heap.push(node);
219
2
                }
220
4
            }
221
2
        }
222
223
3
        return {first_number, second_number};
224
3
    }
_ZN5doris6CountsIsE27_merge_sort_and_get_numbersElb
Line
Count
Source
170
6
    std::pair<Ty, Ty> _merge_sort_and_get_numbers(int64_t target, bool reverse) {
171
6
        Ty first_number = 0, second_number = 0;
172
6
        size_t count = 0;
173
6
        if (reverse) {
174
2
            std::priority_queue<Node> max_heap;
175
7
            for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
176
5
                if (!_sorted_nums_vec[i].empty()) {
177
5
                    max_heap.emplace(_sorted_nums_vec[i][_sorted_nums_vec[i].size() - 1], i,
178
5
                                     _sorted_nums_vec[i].size() - 1);
179
5
                }
180
5
            }
181
182
8
            while (!max_heap.empty()) {
183
8
                Node node = max_heap.top();
184
8
                max_heap.pop();
185
8
                if (count == target) {
186
2
                    second_number = node.value;
187
6
                } else if (count == target + 1) {
188
2
                    first_number = node.value;
189
2
                    break;
190
2
                }
191
6
                ++count;
192
6
                if (--node.element_index >= 0) {
193
5
                    node.value = _sorted_nums_vec[node.array_index][node.element_index];
194
5
                    max_heap.push(node);
195
5
                }
196
6
            }
197
198
4
        } else {
199
4
            std::priority_queue<Node, std::vector<Node>, std::greater<Node>> min_heap;
200
14
            for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
201
10
                if (!_sorted_nums_vec[i].empty()) {
202
10
                    min_heap.emplace(_sorted_nums_vec[i][0], i, 0);
203
10
                }
204
10
            }
205
206
19
            while (!min_heap.empty()) {
207
19
                Node node = min_heap.top();
208
19
                min_heap.pop();
209
19
                if (count == target) {
210
4
                    first_number = node.value;
211
15
                } else if (count == target + 1) {
212
4
                    second_number = node.value;
213
4
                    break;
214
4
                }
215
15
                ++count;
216
15
                if (++node.element_index < _sorted_nums_vec[node.array_index].size()) {
217
13
                    node.value = _sorted_nums_vec[node.array_index][node.element_index];
218
13
                    min_heap.push(node);
219
13
                }
220
15
            }
221
4
        }
222
223
6
        return {first_number, second_number};
224
6
    }
_ZN5doris6CountsIiE27_merge_sort_and_get_numbersElb
Line
Count
Source
170
100
    std::pair<Ty, Ty> _merge_sort_and_get_numbers(int64_t target, bool reverse) {
171
100
        Ty first_number = 0, second_number = 0;
172
100
        size_t count = 0;
173
100
        if (reverse) {
174
11
            std::priority_queue<Node> max_heap;
175
41
            for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
176
30
                if (!_sorted_nums_vec[i].empty()) {
177
30
                    max_heap.emplace(_sorted_nums_vec[i][_sorted_nums_vec[i].size() - 1], i,
178
30
                                     _sorted_nums_vec[i].size() - 1);
179
30
                }
180
30
            }
181
182
41
            while (!max_heap.empty()) {
183
41
                Node node = max_heap.top();
184
41
                max_heap.pop();
185
41
                if (count == target) {
186
11
                    second_number = node.value;
187
30
                } else if (count == target + 1) {
188
11
                    first_number = node.value;
189
11
                    break;
190
11
                }
191
30
                ++count;
192
30
                if (--node.element_index >= 0) {
193
23
                    node.value = _sorted_nums_vec[node.array_index][node.element_index];
194
23
                    max_heap.push(node);
195
23
                }
196
30
            }
197
198
89
        } else {
199
89
            std::priority_queue<Node, std::vector<Node>, std::greater<Node>> min_heap;
200
332
            for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
201
243
                if (!_sorted_nums_vec[i].empty()) {
202
243
                    min_heap.emplace(_sorted_nums_vec[i][0], i, 0);
203
243
                }
204
243
            }
205
206
250
            while (!min_heap.empty()) {
207
250
                Node node = min_heap.top();
208
250
                min_heap.pop();
209
250
                if (count == target) {
210
89
                    first_number = node.value;
211
161
                } else if (count == target + 1) {
212
89
                    second_number = node.value;
213
89
                    break;
214
89
                }
215
161
                ++count;
216
161
                if (++node.element_index < _sorted_nums_vec[node.array_index].size()) {
217
99
                    node.value = _sorted_nums_vec[node.array_index][node.element_index];
218
99
                    min_heap.push(node);
219
99
                }
220
161
            }
221
89
        }
222
223
100
        return {first_number, second_number};
224
100
    }
_ZN5doris6CountsIlE27_merge_sort_and_get_numbersElb
Line
Count
Source
170
22
    std::pair<Ty, Ty> _merge_sort_and_get_numbers(int64_t target, bool reverse) {
171
22
        Ty first_number = 0, second_number = 0;
172
22
        size_t count = 0;
173
22
        if (reverse) {
174
15
            std::priority_queue<Node> max_heap;
175
57
            for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
176
42
                if (!_sorted_nums_vec[i].empty()) {
177
42
                    max_heap.emplace(_sorted_nums_vec[i][_sorted_nums_vec[i].size() - 1], i,
178
42
                                     _sorted_nums_vec[i].size() - 1);
179
42
                }
180
42
            }
181
182
63
            while (!max_heap.empty()) {
183
63
                Node node = max_heap.top();
184
63
                max_heap.pop();
185
63
                if (count == target) {
186
15
                    second_number = node.value;
187
48
                } else if (count == target + 1) {
188
15
                    first_number = node.value;
189
15
                    break;
190
15
                }
191
48
                ++count;
192
48
                if (--node.element_index >= 0) {
193
45
                    node.value = _sorted_nums_vec[node.array_index][node.element_index];
194
45
                    max_heap.push(node);
195
45
                }
196
48
            }
197
198
15
        } else {
199
7
            std::priority_queue<Node, std::vector<Node>, std::greater<Node>> min_heap;
200
23
            for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
201
16
                if (!_sorted_nums_vec[i].empty()) {
202
16
                    min_heap.emplace(_sorted_nums_vec[i][0], i, 0);
203
16
                }
204
16
            }
205
206
22
            while (!min_heap.empty()) {
207
22
                Node node = min_heap.top();
208
22
                min_heap.pop();
209
22
                if (count == target) {
210
7
                    first_number = node.value;
211
15
                } else if (count == target + 1) {
212
7
                    second_number = node.value;
213
7
                    break;
214
7
                }
215
15
                ++count;
216
15
                if (++node.element_index < _sorted_nums_vec[node.array_index].size()) {
217
12
                    node.value = _sorted_nums_vec[node.array_index][node.element_index];
218
12
                    min_heap.push(node);
219
12
                }
220
15
            }
221
7
        }
222
223
22
        return {first_number, second_number};
224
22
    }
_ZN5doris6CountsInE27_merge_sort_and_get_numbersElb
Line
Count
Source
170
3
    std::pair<Ty, Ty> _merge_sort_and_get_numbers(int64_t target, bool reverse) {
171
3
        Ty first_number = 0, second_number = 0;
172
3
        size_t count = 0;
173
3
        if (reverse) {
174
1
            std::priority_queue<Node> max_heap;
175
3
            for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
176
2
                if (!_sorted_nums_vec[i].empty()) {
177
2
                    max_heap.emplace(_sorted_nums_vec[i][_sorted_nums_vec[i].size() - 1], i,
178
2
                                     _sorted_nums_vec[i].size() - 1);
179
2
                }
180
2
            }
181
182
2
            while (!max_heap.empty()) {
183
2
                Node node = max_heap.top();
184
2
                max_heap.pop();
185
2
                if (count == target) {
186
1
                    second_number = node.value;
187
1
                } else if (count == target + 1) {
188
1
                    first_number = node.value;
189
1
                    break;
190
1
                }
191
1
                ++count;
192
1
                if (--node.element_index >= 0) {
193
1
                    node.value = _sorted_nums_vec[node.array_index][node.element_index];
194
1
                    max_heap.push(node);
195
1
                }
196
1
            }
197
198
2
        } else {
199
2
            std::priority_queue<Node, std::vector<Node>, std::greater<Node>> min_heap;
200
6
            for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
201
4
                if (!_sorted_nums_vec[i].empty()) {
202
4
                    min_heap.emplace(_sorted_nums_vec[i][0], i, 0);
203
4
                }
204
4
            }
205
206
6
            while (!min_heap.empty()) {
207
6
                Node node = min_heap.top();
208
6
                min_heap.pop();
209
6
                if (count == target) {
210
2
                    first_number = node.value;
211
4
                } else if (count == target + 1) {
212
2
                    second_number = node.value;
213
2
                    break;
214
2
                }
215
4
                ++count;
216
4
                if (++node.element_index < _sorted_nums_vec[node.array_index].size()) {
217
2
                    node.value = _sorted_nums_vec[node.array_index][node.element_index];
218
2
                    min_heap.push(node);
219
2
                }
220
4
            }
221
2
        }
222
223
3
        return {first_number, second_number};
224
3
    }
_ZN5doris6CountsIfE27_merge_sort_and_get_numbersElb
Line
Count
Source
170
3
    std::pair<Ty, Ty> _merge_sort_and_get_numbers(int64_t target, bool reverse) {
171
3
        Ty first_number = 0, second_number = 0;
172
3
        size_t count = 0;
173
3
        if (reverse) {
174
1
            std::priority_queue<Node> max_heap;
175
3
            for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
176
2
                if (!_sorted_nums_vec[i].empty()) {
177
2
                    max_heap.emplace(_sorted_nums_vec[i][_sorted_nums_vec[i].size() - 1], i,
178
2
                                     _sorted_nums_vec[i].size() - 1);
179
2
                }
180
2
            }
181
182
2
            while (!max_heap.empty()) {
183
2
                Node node = max_heap.top();
184
2
                max_heap.pop();
185
2
                if (count == target) {
186
1
                    second_number = node.value;
187
1
                } else if (count == target + 1) {
188
1
                    first_number = node.value;
189
1
                    break;
190
1
                }
191
1
                ++count;
192
1
                if (--node.element_index >= 0) {
193
1
                    node.value = _sorted_nums_vec[node.array_index][node.element_index];
194
1
                    max_heap.push(node);
195
1
                }
196
1
            }
197
198
2
        } else {
199
2
            std::priority_queue<Node, std::vector<Node>, std::greater<Node>> min_heap;
200
6
            for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
201
4
                if (!_sorted_nums_vec[i].empty()) {
202
4
                    min_heap.emplace(_sorted_nums_vec[i][0], i, 0);
203
4
                }
204
4
            }
205
206
6
            while (!min_heap.empty()) {
207
6
                Node node = min_heap.top();
208
6
                min_heap.pop();
209
6
                if (count == target) {
210
2
                    first_number = node.value;
211
4
                } else if (count == target + 1) {
212
2
                    second_number = node.value;
213
2
                    break;
214
2
                }
215
4
                ++count;
216
4
                if (++node.element_index < _sorted_nums_vec[node.array_index].size()) {
217
2
                    node.value = _sorted_nums_vec[node.array_index][node.element_index];
218
2
                    min_heap.push(node);
219
2
                }
220
4
            }
221
2
        }
222
223
3
        return {first_number, second_number};
224
3
    }
_ZN5doris6CountsIdE27_merge_sort_and_get_numbersElb
Line
Count
Source
170
27
    std::pair<Ty, Ty> _merge_sort_and_get_numbers(int64_t target, bool reverse) {
171
27
        Ty first_number = 0, second_number = 0;
172
27
        size_t count = 0;
173
27
        if (reverse) {
174
3
            std::priority_queue<Node> max_heap;
175
11
            for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
176
8
                if (!_sorted_nums_vec[i].empty()) {
177
8
                    max_heap.emplace(_sorted_nums_vec[i][_sorted_nums_vec[i].size() - 1], i,
178
8
                                     _sorted_nums_vec[i].size() - 1);
179
8
                }
180
8
            }
181
182
7
            while (!max_heap.empty()) {
183
7
                Node node = max_heap.top();
184
7
                max_heap.pop();
185
7
                if (count == target) {
186
3
                    second_number = node.value;
187
4
                } else if (count == target + 1) {
188
3
                    first_number = node.value;
189
3
                    break;
190
3
                }
191
4
                ++count;
192
4
                if (--node.element_index >= 0) {
193
1
                    node.value = _sorted_nums_vec[node.array_index][node.element_index];
194
1
                    max_heap.push(node);
195
1
                }
196
4
            }
197
198
24
        } else {
199
24
            std::priority_queue<Node, std::vector<Node>, std::greater<Node>> min_heap;
200
82
            for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
201
58
                if (!_sorted_nums_vec[i].empty()) {
202
58
                    min_heap.emplace(_sorted_nums_vec[i][0], i, 0);
203
58
                }
204
58
            }
205
206
58
            while (!min_heap.empty()) {
207
58
                Node node = min_heap.top();
208
58
                min_heap.pop();
209
58
                if (count == target) {
210
24
                    first_number = node.value;
211
34
                } else if (count == target + 1) {
212
24
                    second_number = node.value;
213
24
                    break;
214
24
                }
215
34
                ++count;
216
34
                if (++node.element_index < _sorted_nums_vec[node.array_index].size()) {
217
13
                    node.value = _sorted_nums_vec[node.array_index][node.element_index];
218
13
                    min_heap.push(node);
219
13
                }
220
34
            }
221
24
        }
222
223
27
        return {first_number, second_number};
224
27
    }
225
226
    vectorized::PODArray<Ty> _nums;
227
    std::vector<vectorized::PODArray<Ty>> _sorted_nums_vec;
228
};
229
230
} // namespace doris