Coverage Report

Created: 2025-04-30 06:07

/root/doris/be/src/util/counts.h
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// Licensed to the Apache Software Foundation (ASF) under one
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// or more contributor license agreements.  See the NOTICE file
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// distributed with this work for additional information
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// regarding copyright ownership.  The ASF licenses this file
5
// to you under the Apache License, Version 2.0 (the
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// "License"); you may not use this file except in compliance
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// 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
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//
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// Unless required by applicable law or agreed to in writing,
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// software distributed under the License is distributed on an
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// "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
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// KIND, either express or implied.  See the License for the
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// specific language governing permissions and limitations
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// under the License.
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18
#pragma once
19
20
#include <pdqsort.h>
21
22
#include <algorithm>
23
#include <cmath>
24
#include <queue>
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26
#include "udf/udf.h"
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#include "vec/common/pod_array.h"
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#include "vec/common/string_buffer.hpp"
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#include "vec/io/io_helper.h"
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31
namespace doris {
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template <typename Ty>
34
class Counts {
35
public:
36
5.52k
    Counts() = default;
Unexecuted instantiation: _ZN5doris6CountsIhEC2Ev
_ZN5doris6CountsIaEC2Ev
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Source
36
68
    Counts() = default;
_ZN5doris6CountsIsEC2Ev
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36
462
    Counts() = default;
_ZN5doris6CountsIiEC2Ev
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36
2.93k
    Counts() = default;
_ZN5doris6CountsIlEC2Ev
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Count
Source
36
1.84k
    Counts() = default;
_ZN5doris6CountsInEC2Ev
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Source
36
60
    Counts() = default;
Unexecuted instantiation: _ZN5doris6CountsIfEC2Ev
_ZN5doris6CountsIdEC2Ev
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Source
36
160
    Counts() = default;
37
38
1.94k
    void merge(Counts* other) {
39
1.94k
        if (other != nullptr && !other->_nums.empty()) {
40
1.94k
            _sorted_nums_vec.emplace_back(std::move(other->_nums));
41
1.94k
        }
42
1.94k
    }
Unexecuted instantiation: _ZN5doris6CountsIhE5mergeEPS1_
Unexecuted instantiation: _ZN5doris6CountsIaE5mergeEPS1_
_ZN5doris6CountsIsE5mergeEPS1_
Line
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Source
38
12
    void merge(Counts* other) {
39
12
        if (other != nullptr && !other->_nums.empty()) {
40
12
            _sorted_nums_vec.emplace_back(std::move(other->_nums));
41
12
        }
42
12
    }
_ZN5doris6CountsIiE5mergeEPS1_
Line
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Source
38
1.15k
    void merge(Counts* other) {
39
1.15k
        if (other != nullptr && !other->_nums.empty()) {
40
1.15k
            _sorted_nums_vec.emplace_back(std::move(other->_nums));
41
1.15k
        }
42
1.15k
    }
_ZN5doris6CountsIlE5mergeEPS1_
Line
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Source
38
766
    void merge(Counts* other) {
39
766
        if (other != nullptr && !other->_nums.empty()) {
40
766
            _sorted_nums_vec.emplace_back(std::move(other->_nums));
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766
        }
42
766
    }
Unexecuted instantiation: _ZN5doris6CountsInE5mergeEPS1_
Unexecuted instantiation: _ZN5doris6CountsIfE5mergeEPS1_
_ZN5doris6CountsIdE5mergeEPS1_
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Source
38
16
    void merge(Counts* other) {
39
16
        if (other != nullptr && !other->_nums.empty()) {
40
16
            _sorted_nums_vec.emplace_back(std::move(other->_nums));
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16
        }
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16
    }
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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;
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        }
50
    }
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4.78k
    void increment(Ty key) { _nums.push_back(key); }
Unexecuted instantiation: _ZN5doris6CountsIhE9incrementEh
_ZN5doris6CountsIaE9incrementEa
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52
128
    void increment(Ty key) { _nums.push_back(key); }
_ZN5doris6CountsIsE9incrementEs
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Source
52
1.57k
    void increment(Ty key) { _nums.push_back(key); }
_ZN5doris6CountsIiE9incrementEi
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Count
Source
52
1.83k
    void increment(Ty key) { _nums.push_back(key); }
_ZN5doris6CountsIlE9incrementEl
Line
Count
Source
52
824
    void increment(Ty key) { _nums.push_back(key); }
_ZN5doris6CountsInE9incrementEn
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Count
Source
52
72
    void increment(Ty key) { _nums.push_back(key); }
Unexecuted instantiation: _ZN5doris6CountsIfE9incrementEf
_ZN5doris6CountsIdE9incrementEd
Line
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Source
52
344
    void increment(Ty key) { _nums.push_back(key); }
53
54
10
    void increment_batch(const vectorized::PaddedPODArray<Ty>& keys) {
55
10
        _nums.insert(keys.begin(), keys.end());
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10
    }
Unexecuted instantiation: _ZN5doris6CountsIhE15increment_batchERKNS_10vectorized8PODArrayIhLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorEEELm16ELm15EEE
Unexecuted instantiation: _ZN5doris6CountsIaE15increment_batchERKNS_10vectorized8PODArrayIaLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorEEELm16ELm15EEE
Unexecuted instantiation: _ZN5doris6CountsIsE15increment_batchERKNS_10vectorized8PODArrayIsLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorEEELm16ELm15EEE
Unexecuted instantiation: _ZN5doris6CountsIiE15increment_batchERKNS_10vectorized8PODArrayIiLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorEEELm16ELm15EEE
_ZN5doris6CountsIlE15increment_batchERKNS_10vectorized8PODArrayIlLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorEEELm16ELm15EEE
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54
10
    void increment_batch(const vectorized::PaddedPODArray<Ty>& keys) {
55
10
        _nums.insert(keys.begin(), keys.end());
56
10
    }
Unexecuted instantiation: _ZN5doris6CountsInE15increment_batchERKNS_10vectorized8PODArrayInLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorEEELm16ELm15EEE
Unexecuted instantiation: _ZN5doris6CountsIfE15increment_batchERKNS_10vectorized8PODArrayIfLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorEEELm16ELm15EEE
Unexecuted instantiation: _ZN5doris6CountsIdE15increment_batchERKNS_10vectorized8PODArrayIdLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorEEELm16ELm15EEE
57
58
2.88k
    void serialize(vectorized::BufferWritable& buf) {
59
2.88k
        if (!_nums.empty()) {
60
2.16k
            pdqsort(_nums.begin(), _nums.end());
61
2.16k
            size_t size = _nums.size();
62
2.16k
            write_binary(size, buf);
63
2.16k
            buf.write(reinterpret_cast<const char*>(_nums.data()), sizeof(Ty) * size);
64
2.16k
        } else {
65
            // convert _sorted_nums_vec to _nums and do seiralize again
66
718
            _convert_sorted_num_vec_to_nums();
67
718
            serialize(buf);
68
718
        }
69
2.88k
    }
Unexecuted instantiation: _ZN5doris6CountsIhE9serializeERNS_10vectorized14BufferWritableE
Unexecuted instantiation: _ZN5doris6CountsIaE9serializeERNS_10vectorized14BufferWritableE
_ZN5doris6CountsIsE9serializeERNS_10vectorized14BufferWritableE
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58
12
    void serialize(vectorized::BufferWritable& buf) {
59
12
        if (!_nums.empty()) {
60
12
            pdqsort(_nums.begin(), _nums.end());
61
12
            size_t size = _nums.size();
62
12
            write_binary(size, buf);
63
12
            buf.write(reinterpret_cast<const char*>(_nums.data()), sizeof(Ty) * size);
64
12
        } else {
65
            // convert _sorted_nums_vec to _nums and do seiralize again
66
0
            _convert_sorted_num_vec_to_nums();
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0
            serialize(buf);
68
0
        }
69
12
    }
_ZN5doris6CountsIiE9serializeERNS_10vectorized14BufferWritableE
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Source
58
1.69k
    void serialize(vectorized::BufferWritable& buf) {
59
1.69k
        if (!_nums.empty()) {
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1.31k
            pdqsort(_nums.begin(), _nums.end());
61
1.31k
            size_t size = _nums.size();
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1.31k
            write_binary(size, buf);
63
1.31k
            buf.write(reinterpret_cast<const char*>(_nums.data()), sizeof(Ty) * size);
64
1.31k
        } else {
65
            // convert _sorted_nums_vec to _nums and do seiralize again
66
384
            _convert_sorted_num_vec_to_nums();
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384
            serialize(buf);
68
384
        }
69
1.69k
    }
_ZN5doris6CountsIlE9serializeERNS_10vectorized14BufferWritableE
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Source
58
1.16k
    void serialize(vectorized::BufferWritable& buf) {
59
1.16k
        if (!_nums.empty()) {
60
830
            pdqsort(_nums.begin(), _nums.end());
61
830
            size_t size = _nums.size();
62
830
            write_binary(size, buf);
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830
            buf.write(reinterpret_cast<const char*>(_nums.data()), sizeof(Ty) * size);
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830
        } else {
65
            // convert _sorted_nums_vec to _nums and do seiralize again
66
334
            _convert_sorted_num_vec_to_nums();
67
334
            serialize(buf);
68
334
        }
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1.16k
    }
Unexecuted instantiation: _ZN5doris6CountsInE9serializeERNS_10vectorized14BufferWritableE
Unexecuted instantiation: _ZN5doris6CountsIfE9serializeERNS_10vectorized14BufferWritableE
_ZN5doris6CountsIdE9serializeERNS_10vectorized14BufferWritableE
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58
16
    void serialize(vectorized::BufferWritable& buf) {
59
16
        if (!_nums.empty()) {
60
16
            pdqsort(_nums.begin(), _nums.end());
61
16
            size_t size = _nums.size();
62
16
            write_binary(size, buf);
63
16
            buf.write(reinterpret_cast<const char*>(_nums.data()), sizeof(Ty) * size);
64
16
        } else {
65
            // convert _sorted_nums_vec to _nums and do seiralize again
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0
            _convert_sorted_num_vec_to_nums();
67
0
            serialize(buf);
68
0
        }
69
16
    }
70
71
1.94k
    void unserialize(vectorized::BufferReadable& buf) {
72
1.94k
        size_t size;
73
1.94k
        read_binary(size, buf);
74
1.94k
        _nums.resize(size);
75
1.94k
        auto buff = buf.read(sizeof(Ty) * size);
76
1.94k
        memcpy(_nums.data(), buff.data, buff.size);
77
1.94k
    }
Unexecuted instantiation: _ZN5doris6CountsIhE11unserializeERNS_10vectorized14BufferReadableE
Unexecuted instantiation: _ZN5doris6CountsIaE11unserializeERNS_10vectorized14BufferReadableE
_ZN5doris6CountsIsE11unserializeERNS_10vectorized14BufferReadableE
Line
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Source
71
12
    void unserialize(vectorized::BufferReadable& buf) {
72
12
        size_t size;
73
12
        read_binary(size, buf);
74
12
        _nums.resize(size);
75
12
        auto buff = buf.read(sizeof(Ty) * size);
76
12
        memcpy(_nums.data(), buff.data, buff.size);
77
12
    }
_ZN5doris6CountsIiE11unserializeERNS_10vectorized14BufferReadableE
Line
Count
Source
71
1.15k
    void unserialize(vectorized::BufferReadable& buf) {
72
1.15k
        size_t size;
73
1.15k
        read_binary(size, buf);
74
1.15k
        _nums.resize(size);
75
1.15k
        auto buff = buf.read(sizeof(Ty) * size);
76
1.15k
        memcpy(_nums.data(), buff.data, buff.size);
77
1.15k
    }
_ZN5doris6CountsIlE11unserializeERNS_10vectorized14BufferReadableE
Line
Count
Source
71
766
    void unserialize(vectorized::BufferReadable& buf) {
72
766
        size_t size;
73
766
        read_binary(size, buf);
74
766
        _nums.resize(size);
75
766
        auto buff = buf.read(sizeof(Ty) * size);
76
766
        memcpy(_nums.data(), buff.data, buff.size);
77
766
    }
Unexecuted instantiation: _ZN5doris6CountsInE11unserializeERNS_10vectorized14BufferReadableE
Unexecuted instantiation: _ZN5doris6CountsIfE11unserializeERNS_10vectorized14BufferReadableE
_ZN5doris6CountsIdE11unserializeERNS_10vectorized14BufferReadableE
Line
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71
16
    void unserialize(vectorized::BufferReadable& buf) {
72
16
        size_t size;
73
16
        read_binary(size, buf);
74
16
        _nums.resize(size);
75
16
        auto buff = buf.read(sizeof(Ty) * size);
76
16
        memcpy(_nums.data(), buff.data, buff.size);
77
16
    }
78
79
1.67k
    double terminate(double quantile) {
80
1.67k
        if (_sorted_nums_vec.size() <= 1) {
81
1.56k
            if (_sorted_nums_vec.size() == 1) {
82
308
                _nums = std::move(_sorted_nums_vec[0]);
83
308
            }
84
85
1.56k
            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
1.56k
            if (UNLIKELY(!std::is_sorted(_nums.begin(), _nums.end()))) {
92
401
                pdqsort(_nums.begin(), _nums.end());
93
401
            }
94
95
1.56k
            if (quantile == 1 || _nums.size() == 1) {
96
650
                return _nums.back();
97
650
            }
98
99
918
            double u = (_nums.size() - 1) * quantile;
100
918
            auto index = static_cast<uint32_t>(u);
101
918
            return _nums[index] +
102
918
                   (u - static_cast<double>(index)) * (_nums[index + 1] - _nums[index]);
103
1.56k
        } else {
104
109
            DCHECK(_nums.empty());
105
109
            size_t rows = 0;
106
370
            for (const auto& i : _sorted_nums_vec) {
107
370
                rows += i.size();
108
370
            }
109
109
            const bool reverse = quantile > 0.5 && rows > 2;
110
109
            double u = (rows - 1) * quantile;
111
109
            auto index = static_cast<uint32_t>(u);
112
            // if reverse, the step of target should start 0 like not reverse
113
            // so here rows need to minus index + 2
114
            // eg: rows = 10, index = 5
115
            // if not reverse, so the first number loc is 5, the second number loc is 6
116
            // if reverse, so the second number is 3, the first number is 4
117
            // 5 + 4 = 3 + 6 = 9 = rows - 1.
118
            // the rows must GE 2 beacuse `_sorted_nums_vec` size GE 2
119
109
            size_t target = reverse ? rows - index - 2 : index;
120
109
            if (quantile == 1) {
121
0
                target = 0;
122
0
            }
123
109
            auto [first_number, second_number] = _merge_sort_and_get_numbers(target, reverse);
124
109
            if (quantile == 1) {
125
0
                return second_number;
126
0
            }
127
109
            return first_number + (u - static_cast<double>(index)) * (second_number - first_number);
128
109
        }
129
1.67k
    }
Unexecuted instantiation: _ZN5doris6CountsIhE9terminateEd
_ZN5doris6CountsIaE9terminateEd
Line
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Source
79
116
    double terminate(double quantile) {
80
116
        if (_sorted_nums_vec.size() <= 1) {
81
116
            if (_sorted_nums_vec.size() == 1) {
82
0
                _nums = std::move(_sorted_nums_vec[0]);
83
0
            }
84
85
116
            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
116
            if (UNLIKELY(!std::is_sorted(_nums.begin(), _nums.end()))) {
92
48
                pdqsort(_nums.begin(), _nums.end());
93
48
            }
94
95
116
            if (quantile == 1 || _nums.size() == 1) {
96
68
                return _nums.back();
97
68
            }
98
99
48
            double u = (_nums.size() - 1) * quantile;
100
48
            auto index = static_cast<uint32_t>(u);
101
48
            return _nums[index] +
102
48
                   (u - static_cast<double>(index)) * (_nums[index + 1] - _nums[index]);
103
116
        } else {
104
0
            DCHECK(_nums.empty());
105
0
            size_t rows = 0;
106
0
            for (const auto& i : _sorted_nums_vec) {
107
0
                rows += i.size();
108
0
            }
109
0
            const bool reverse = quantile > 0.5 && rows > 2;
110
0
            double u = (rows - 1) * quantile;
111
0
            auto index = static_cast<uint32_t>(u);
112
            // if reverse, the step of target should start 0 like not reverse
113
            // so here rows need to minus index + 2
114
            // eg: rows = 10, index = 5
115
            // if not reverse, so the first number loc is 5, the second number loc is 6
116
            // if reverse, so the second number is 3, the first number is 4
117
            // 5 + 4 = 3 + 6 = 9 = rows - 1.
118
            // the rows must GE 2 beacuse `_sorted_nums_vec` size GE 2
119
0
            size_t target = reverse ? rows - index - 2 : index;
120
0
            if (quantile == 1) {
121
0
                target = 0;
122
0
            }
123
0
            auto [first_number, second_number] = _merge_sort_and_get_numbers(target, reverse);
124
0
            if (quantile == 1) {
125
0
                return second_number;
126
0
            }
127
0
            return first_number + (u - static_cast<double>(index)) * (second_number - first_number);
128
0
        }
129
116
    }
_ZN5doris6CountsIsE9terminateEd
Line
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79
594
    double terminate(double quantile) {
80
594
        if (_sorted_nums_vec.size() <= 1) {
81
588
            if (_sorted_nums_vec.size() == 1) {
82
0
                _nums = std::move(_sorted_nums_vec[0]);
83
0
            }
84
85
588
            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
588
            if (UNLIKELY(!std::is_sorted(_nums.begin(), _nums.end()))) {
92
330
                pdqsort(_nums.begin(), _nums.end());
93
330
            }
94
95
588
            if (quantile == 1 || _nums.size() == 1) {
96
174
                return _nums.back();
97
174
            }
98
99
414
            double u = (_nums.size() - 1) * quantile;
100
414
            auto index = static_cast<uint32_t>(u);
101
414
            return _nums[index] +
102
414
                   (u - static_cast<double>(index)) * (_nums[index + 1] - _nums[index]);
103
588
        } else {
104
6
            DCHECK(_nums.empty());
105
6
            size_t rows = 0;
106
12
            for (const auto& i : _sorted_nums_vec) {
107
12
                rows += i.size();
108
12
            }
109
6
            const bool reverse = quantile > 0.5 && rows > 2;
110
6
            double u = (rows - 1) * quantile;
111
6
            auto index = static_cast<uint32_t>(u);
112
            // if reverse, the step of target should start 0 like not reverse
113
            // so here rows need to minus index + 2
114
            // eg: rows = 10, index = 5
115
            // if not reverse, so the first number loc is 5, the second number loc is 6
116
            // if reverse, so the second number is 3, the first number is 4
117
            // 5 + 4 = 3 + 6 = 9 = rows - 1.
118
            // the rows must GE 2 beacuse `_sorted_nums_vec` size GE 2
119
6
            size_t target = reverse ? rows - index - 2 : index;
120
6
            if (quantile == 1) {
121
0
                target = 0;
122
0
            }
123
6
            auto [first_number, second_number] = _merge_sort_and_get_numbers(target, reverse);
124
6
            if (quantile == 1) {
125
0
                return second_number;
126
0
            }
127
6
            return first_number + (u - static_cast<double>(index)) * (second_number - first_number);
128
6
        }
129
594
    }
_ZN5doris6CountsIiE9terminateEd
Line
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Source
79
462
    double terminate(double quantile) {
80
462
        if (_sorted_nums_vec.size() <= 1) {
81
404
            if (_sorted_nums_vec.size() == 1) {
82
216
                _nums = std::move(_sorted_nums_vec[0]);
83
216
            }
84
85
404
            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
404
            if (UNLIKELY(!std::is_sorted(_nums.begin(), _nums.end()))) {
92
22
                pdqsort(_nums.begin(), _nums.end());
93
22
            }
94
95
404
            if (quantile == 1 || _nums.size() == 1) {
96
192
                return _nums.back();
97
192
            }
98
99
212
            double u = (_nums.size() - 1) * quantile;
100
212
            auto index = static_cast<uint32_t>(u);
101
212
            return _nums[index] +
102
212
                   (u - static_cast<double>(index)) * (_nums[index + 1] - _nums[index]);
103
404
        } else {
104
58
            DCHECK(_nums.empty());
105
58
            size_t rows = 0;
106
188
            for (const auto& i : _sorted_nums_vec) {
107
188
                rows += i.size();
108
188
            }
109
58
            const bool reverse = quantile > 0.5 && rows > 2;
110
58
            double u = (rows - 1) * quantile;
111
58
            auto index = static_cast<uint32_t>(u);
112
            // if reverse, the step of target should start 0 like not reverse
113
            // so here rows need to minus index + 2
114
            // eg: rows = 10, index = 5
115
            // if not reverse, so the first number loc is 5, the second number loc is 6
116
            // if reverse, so the second number is 3, the first number is 4
117
            // 5 + 4 = 3 + 6 = 9 = rows - 1.
118
            // the rows must GE 2 beacuse `_sorted_nums_vec` size GE 2
119
58
            size_t target = reverse ? rows - index - 2 : index;
120
58
            if (quantile == 1) {
121
0
                target = 0;
122
0
            }
123
58
            auto [first_number, second_number] = _merge_sort_and_get_numbers(target, reverse);
124
58
            if (quantile == 1) {
125
0
                return second_number;
126
0
            }
127
58
            return first_number + (u - static_cast<double>(index)) * (second_number - first_number);
128
58
        }
129
462
    }
_ZN5doris6CountsIlE9terminateEd
Line
Count
Source
79
233
    double terminate(double quantile) {
80
233
        if (_sorted_nums_vec.size() <= 1) {
81
188
            if (_sorted_nums_vec.size() == 1) {
82
76
                _nums = std::move(_sorted_nums_vec[0]);
83
76
            }
84
85
188
            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
188
            if (UNLIKELY(!std::is_sorted(_nums.begin(), _nums.end()))) {
92
1
                pdqsort(_nums.begin(), _nums.end());
93
1
            }
94
95
188
            if (quantile == 1 || _nums.size() == 1) {
96
120
                return _nums.back();
97
120
            }
98
99
68
            double u = (_nums.size() - 1) * quantile;
100
68
            auto index = static_cast<uint32_t>(u);
101
68
            return _nums[index] +
102
68
                   (u - static_cast<double>(index)) * (_nums[index + 1] - _nums[index]);
103
188
        } else {
104
45
            DCHECK(_nums.empty());
105
45
            size_t rows = 0;
106
170
            for (const auto& i : _sorted_nums_vec) {
107
170
                rows += i.size();
108
170
            }
109
45
            const bool reverse = quantile > 0.5 && rows > 2;
110
45
            double u = (rows - 1) * quantile;
111
45
            auto index = static_cast<uint32_t>(u);
112
            // if reverse, the step of target should start 0 like not reverse
113
            // so here rows need to minus index + 2
114
            // eg: rows = 10, index = 5
115
            // if not reverse, so the first number loc is 5, the second number loc is 6
116
            // if reverse, so the second number is 3, the first number is 4
117
            // 5 + 4 = 3 + 6 = 9 = rows - 1.
118
            // the rows must GE 2 beacuse `_sorted_nums_vec` size GE 2
119
45
            size_t target = reverse ? rows - index - 2 : index;
120
45
            if (quantile == 1) {
121
0
                target = 0;
122
0
            }
123
45
            auto [first_number, second_number] = _merge_sort_and_get_numbers(target, reverse);
124
45
            if (quantile == 1) {
125
0
                return second_number;
126
0
            }
127
45
            return first_number + (u - static_cast<double>(index)) * (second_number - first_number);
128
45
        }
129
233
    }
_ZN5doris6CountsInE9terminateEd
Line
Count
Source
79
60
    double terminate(double quantile) {
80
60
        if (_sorted_nums_vec.size() <= 1) {
81
60
            if (_sorted_nums_vec.size() == 1) {
82
0
                _nums = std::move(_sorted_nums_vec[0]);
83
0
            }
84
85
60
            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
60
            if (UNLIKELY(!std::is_sorted(_nums.begin(), _nums.end()))) {
92
0
                pdqsort(_nums.begin(), _nums.end());
93
0
            }
94
95
60
            if (quantile == 1 || _nums.size() == 1) {
96
48
                return _nums.back();
97
48
            }
98
99
12
            double u = (_nums.size() - 1) * quantile;
100
12
            auto index = static_cast<uint32_t>(u);
101
12
            return _nums[index] +
102
12
                   (u - static_cast<double>(index)) * (_nums[index + 1] - _nums[index]);
103
60
        } else {
104
0
            DCHECK(_nums.empty());
105
0
            size_t rows = 0;
106
0
            for (const auto& i : _sorted_nums_vec) {
107
0
                rows += i.size();
108
0
            }
109
0
            const bool reverse = quantile > 0.5 && rows > 2;
110
0
            double u = (rows - 1) * quantile;
111
0
            auto index = static_cast<uint32_t>(u);
112
            // if reverse, the step of target should start 0 like not reverse
113
            // so here rows need to minus index + 2
114
            // eg: rows = 10, index = 5
115
            // if not reverse, so the first number loc is 5, the second number loc is 6
116
            // if reverse, so the second number is 3, the first number is 4
117
            // 5 + 4 = 3 + 6 = 9 = rows - 1.
118
            // the rows must GE 2 beacuse `_sorted_nums_vec` size GE 2
119
0
            size_t target = reverse ? rows - index - 2 : index;
120
0
            if (quantile == 1) {
121
0
                target = 0;
122
0
            }
123
0
            auto [first_number, second_number] = _merge_sort_and_get_numbers(target, reverse);
124
0
            if (quantile == 1) {
125
0
                return second_number;
126
0
            }
127
0
            return first_number + (u - static_cast<double>(index)) * (second_number - first_number);
128
0
        }
129
60
    }
Unexecuted instantiation: _ZN5doris6CountsIfE9terminateEd
_ZN5doris6CountsIdE9terminateEd
Line
Count
Source
79
212
    double terminate(double quantile) {
80
212
        if (_sorted_nums_vec.size() <= 1) {
81
212
            if (_sorted_nums_vec.size() == 1) {
82
16
                _nums = std::move(_sorted_nums_vec[0]);
83
16
            }
84
85
212
            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
212
            if (UNLIKELY(!std::is_sorted(_nums.begin(), _nums.end()))) {
92
0
                pdqsort(_nums.begin(), _nums.end());
93
0
            }
94
95
212
            if (quantile == 1 || _nums.size() == 1) {
96
48
                return _nums.back();
97
48
            }
98
99
164
            double u = (_nums.size() - 1) * quantile;
100
164
            auto index = static_cast<uint32_t>(u);
101
164
            return _nums[index] +
102
164
                   (u - static_cast<double>(index)) * (_nums[index + 1] - _nums[index]);
103
212
        } else {
104
0
            DCHECK(_nums.empty());
105
0
            size_t rows = 0;
106
0
            for (const auto& i : _sorted_nums_vec) {
107
0
                rows += i.size();
108
0
            }
109
0
            const bool reverse = quantile > 0.5 && rows > 2;
110
0
            double u = (rows - 1) * quantile;
111
0
            auto index = static_cast<uint32_t>(u);
112
            // if reverse, the step of target should start 0 like not reverse
113
            // so here rows need to minus index + 2
114
            // eg: rows = 10, index = 5
115
            // if not reverse, so the first number loc is 5, the second number loc is 6
116
            // if reverse, so the second number is 3, the first number is 4
117
            // 5 + 4 = 3 + 6 = 9 = rows - 1.
118
            // the rows must GE 2 beacuse `_sorted_nums_vec` size GE 2
119
0
            size_t target = reverse ? rows - index - 2 : index;
120
0
            if (quantile == 1) {
121
0
                target = 0;
122
0
            }
123
0
            auto [first_number, second_number] = _merge_sort_and_get_numbers(target, reverse);
124
0
            if (quantile == 1) {
125
0
                return second_number;
126
0
            }
127
0
            return first_number + (u - static_cast<double>(index)) * (second_number - first_number);
128
0
        }
129
212
    }
130
131
private:
132
    struct Node {
133
        Ty value;
134
        int array_index;
135
        int64_t element_index;
136
137
2.09k
        auto operator<=>(const Node& other) const { return value <=> other.value; }
Unexecuted instantiation: _ZNK5doris6CountsIhE4NodessERKS2_
Unexecuted instantiation: _ZNK5doris6CountsIaE4NodessERKS2_
_ZNK5doris6CountsIsE4NodessERKS2_
Line
Count
Source
137
38
        auto operator<=>(const Node& other) const { return value <=> other.value; }
_ZNK5doris6CountsIiE4NodessERKS2_
Line
Count
Source
137
1.19k
        auto operator<=>(const Node& other) const { return value <=> other.value; }
_ZNK5doris6CountsIlE4NodessERKS2_
Line
Count
Source
137
857
        auto operator<=>(const Node& other) const { return value <=> other.value; }
Unexecuted instantiation: _ZNK5doris6CountsInE4NodessERKS2_
Unexecuted instantiation: _ZNK5doris6CountsIfE4NodessERKS2_
Unexecuted instantiation: _ZNK5doris6CountsIdE4NodessERKS2_
138
    };
139
140
718
    void _convert_sorted_num_vec_to_nums() {
141
718
        size_t rows = 0;
142
1.27k
        for (const auto& i : _sorted_nums_vec) {
143
1.27k
            rows += i.size();
144
1.27k
        }
145
718
        _nums.resize(rows);
146
718
        size_t count = 0;
147
148
718
        std::priority_queue<Node, std::vector<Node>, std::greater<Node>> min_heap;
149
1.98k
        for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
150
1.27k
            if (!_sorted_nums_vec[i].empty()) {
151
1.27k
                min_heap.emplace(_sorted_nums_vec[i][0], i, 0);
152
1.27k
            }
153
1.27k
        }
154
155
2.17k
        while (!min_heap.empty()) {
156
1.45k
            Node node = min_heap.top();
157
1.45k
            min_heap.pop();
158
1.45k
            _nums[count++] = node.value;
159
1.45k
            if (++node.element_index < _sorted_nums_vec[node.array_index].size()) {
160
186
                node.value = _sorted_nums_vec[node.array_index][node.element_index];
161
186
                min_heap.push(node);
162
186
            }
163
1.45k
        }
164
718
        _sorted_nums_vec.clear();
165
718
    }
Unexecuted instantiation: _ZN5doris6CountsIhE31_convert_sorted_num_vec_to_numsEv
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
140
384
    void _convert_sorted_num_vec_to_nums() {
141
384
        size_t rows = 0;
142
750
        for (const auto& i : _sorted_nums_vec) {
143
750
            rows += i.size();
144
750
        }
145
384
        _nums.resize(rows);
146
384
        size_t count = 0;
147
148
384
        std::priority_queue<Node, std::vector<Node>, std::greater<Node>> min_heap;
149
1.13k
        for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
150
750
            if (!_sorted_nums_vec[i].empty()) {
151
750
                min_heap.emplace(_sorted_nums_vec[i][0], i, 0);
152
750
            }
153
750
        }
154
155
1.27k
        while (!min_heap.empty()) {
156
888
            Node node = min_heap.top();
157
888
            min_heap.pop();
158
888
            _nums[count++] = node.value;
159
888
            if (++node.element_index < _sorted_nums_vec[node.array_index].size()) {
160
138
                node.value = _sorted_nums_vec[node.array_index][node.element_index];
161
138
                min_heap.push(node);
162
138
            }
163
888
        }
164
384
        _sorted_nums_vec.clear();
165
384
    }
_ZN5doris6CountsIlE31_convert_sorted_num_vec_to_numsEv
Line
Count
Source
140
334
    void _convert_sorted_num_vec_to_nums() {
141
334
        size_t rows = 0;
142
520
        for (const auto& i : _sorted_nums_vec) {
143
520
            rows += i.size();
144
520
        }
145
334
        _nums.resize(rows);
146
334
        size_t count = 0;
147
148
334
        std::priority_queue<Node, std::vector<Node>, std::greater<Node>> min_heap;
149
854
        for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
150
520
            if (!_sorted_nums_vec[i].empty()) {
151
520
                min_heap.emplace(_sorted_nums_vec[i][0], i, 0);
152
520
            }
153
520
        }
154
155
902
        while (!min_heap.empty()) {
156
568
            Node node = min_heap.top();
157
568
            min_heap.pop();
158
568
            _nums[count++] = node.value;
159
568
            if (++node.element_index < _sorted_nums_vec[node.array_index].size()) {
160
48
                node.value = _sorted_nums_vec[node.array_index][node.element_index];
161
48
                min_heap.push(node);
162
48
            }
163
568
        }
164
334
        _sorted_nums_vec.clear();
165
334
    }
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
166
167
109
    std::pair<Ty, Ty> _merge_sort_and_get_numbers(int64_t target, bool reverse) {
168
109
        Ty first_number = 0, second_number = 0;
169
109
        size_t count = 0;
170
109
        if (reverse) {
171
44
            std::priority_queue<Node> max_heap;
172
220
            for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
173
176
                if (!_sorted_nums_vec[i].empty()) {
174
176
                    max_heap.emplace(_sorted_nums_vec[i][_sorted_nums_vec[i].size() - 1], i,
175
176
                                     _sorted_nums_vec[i].size() - 1);
176
176
                }
177
176
            }
178
179
220
            while (!max_heap.empty()) {
180
220
                Node node = max_heap.top();
181
220
                max_heap.pop();
182
220
                if (count == target) {
183
44
                    second_number = node.value;
184
176
                } else if (count == target + 1) {
185
44
                    first_number = node.value;
186
44
                    break;
187
44
                }
188
176
                ++count;
189
176
                if (--node.element_index >= 0) {
190
140
                    node.value = _sorted_nums_vec[node.array_index][node.element_index];
191
140
                    max_heap.push(node);
192
140
                }
193
176
            }
194
195
65
        } else {
196
65
            std::priority_queue<Node, std::vector<Node>, std::greater<Node>> min_heap;
197
259
            for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
198
194
                if (!_sorted_nums_vec[i].empty()) {
199
194
                    min_heap.emplace(_sorted_nums_vec[i][0], i, 0);
200
194
                }
201
194
            }
202
203
223
            while (!min_heap.empty()) {
204
223
                Node node = min_heap.top();
205
223
                min_heap.pop();
206
223
                if (count == target) {
207
65
                    first_number = node.value;
208
158
                } else if (count == target + 1) {
209
65
                    second_number = node.value;
210
65
                    break;
211
65
                }
212
158
                ++count;
213
158
                if (++node.element_index < _sorted_nums_vec[node.array_index].size()) {
214
128
                    node.value = _sorted_nums_vec[node.array_index][node.element_index];
215
128
                    min_heap.push(node);
216
128
                }
217
158
            }
218
65
        }
219
220
109
        return {first_number, second_number};
221
109
    }
Unexecuted instantiation: _ZN5doris6CountsIhE27_merge_sort_and_get_numbersElb
Unexecuted instantiation: _ZN5doris6CountsIaE27_merge_sort_and_get_numbersElb
_ZN5doris6CountsIsE27_merge_sort_and_get_numbersElb
Line
Count
Source
167
6
    std::pair<Ty, Ty> _merge_sort_and_get_numbers(int64_t target, bool reverse) {
168
6
        Ty first_number = 0, second_number = 0;
169
6
        size_t count = 0;
170
6
        if (reverse) {
171
2
            std::priority_queue<Node> max_heap;
172
6
            for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
173
4
                if (!_sorted_nums_vec[i].empty()) {
174
4
                    max_heap.emplace(_sorted_nums_vec[i][_sorted_nums_vec[i].size() - 1], i,
175
4
                                     _sorted_nums_vec[i].size() - 1);
176
4
                }
177
4
            }
178
179
12
            while (!max_heap.empty()) {
180
12
                Node node = max_heap.top();
181
12
                max_heap.pop();
182
12
                if (count == target) {
183
2
                    second_number = node.value;
184
10
                } else if (count == target + 1) {
185
2
                    first_number = node.value;
186
2
                    break;
187
2
                }
188
10
                ++count;
189
10
                if (--node.element_index >= 0) {
190
10
                    node.value = _sorted_nums_vec[node.array_index][node.element_index];
191
10
                    max_heap.push(node);
192
10
                }
193
10
            }
194
195
4
        } else {
196
4
            std::priority_queue<Node, std::vector<Node>, std::greater<Node>> min_heap;
197
12
            for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
198
8
                if (!_sorted_nums_vec[i].empty()) {
199
8
                    min_heap.emplace(_sorted_nums_vec[i][0], i, 0);
200
8
                }
201
8
            }
202
203
26
            while (!min_heap.empty()) {
204
26
                Node node = min_heap.top();
205
26
                min_heap.pop();
206
26
                if (count == target) {
207
4
                    first_number = node.value;
208
22
                } else if (count == target + 1) {
209
4
                    second_number = node.value;
210
4
                    break;
211
4
                }
212
22
                ++count;
213
22
                if (++node.element_index < _sorted_nums_vec[node.array_index].size()) {
214
22
                    node.value = _sorted_nums_vec[node.array_index][node.element_index];
215
22
                    min_heap.push(node);
216
22
                }
217
22
            }
218
4
        }
219
220
6
        return {first_number, second_number};
221
6
    }
_ZN5doris6CountsIiE27_merge_sort_and_get_numbersElb
Line
Count
Source
167
58
    std::pair<Ty, Ty> _merge_sort_and_get_numbers(int64_t target, bool reverse) {
168
58
        Ty first_number = 0, second_number = 0;
169
58
        size_t count = 0;
170
58
        if (reverse) {
171
6
            std::priority_queue<Node> max_heap;
172
30
            for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
173
24
                if (!_sorted_nums_vec[i].empty()) {
174
24
                    max_heap.emplace(_sorted_nums_vec[i][_sorted_nums_vec[i].size() - 1], i,
175
24
                                     _sorted_nums_vec[i].size() - 1);
176
24
                }
177
24
            }
178
179
48
            while (!max_heap.empty()) {
180
48
                Node node = max_heap.top();
181
48
                max_heap.pop();
182
48
                if (count == target) {
183
6
                    second_number = node.value;
184
42
                } else if (count == target + 1) {
185
6
                    first_number = node.value;
186
6
                    break;
187
6
                }
188
42
                ++count;
189
42
                if (--node.element_index >= 0) {
190
36
                    node.value = _sorted_nums_vec[node.array_index][node.element_index];
191
36
                    max_heap.push(node);
192
36
                }
193
42
            }
194
195
52
        } else {
196
52
            std::priority_queue<Node, std::vector<Node>, std::greater<Node>> min_heap;
197
216
            for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
198
164
                if (!_sorted_nums_vec[i].empty()) {
199
164
                    min_heap.emplace(_sorted_nums_vec[i][0], i, 0);
200
164
                }
201
164
            }
202
203
172
            while (!min_heap.empty()) {
204
172
                Node node = min_heap.top();
205
172
                min_heap.pop();
206
172
                if (count == target) {
207
52
                    first_number = node.value;
208
120
                } else if (count == target + 1) {
209
52
                    second_number = node.value;
210
52
                    break;
211
52
                }
212
120
                ++count;
213
120
                if (++node.element_index < _sorted_nums_vec[node.array_index].size()) {
214
92
                    node.value = _sorted_nums_vec[node.array_index][node.element_index];
215
92
                    min_heap.push(node);
216
92
                }
217
120
            }
218
52
        }
219
220
58
        return {first_number, second_number};
221
58
    }
_ZN5doris6CountsIlE27_merge_sort_and_get_numbersElb
Line
Count
Source
167
45
    std::pair<Ty, Ty> _merge_sort_and_get_numbers(int64_t target, bool reverse) {
168
45
        Ty first_number = 0, second_number = 0;
169
45
        size_t count = 0;
170
45
        if (reverse) {
171
36
            std::priority_queue<Node> max_heap;
172
184
            for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
173
148
                if (!_sorted_nums_vec[i].empty()) {
174
148
                    max_heap.emplace(_sorted_nums_vec[i][_sorted_nums_vec[i].size() - 1], i,
175
148
                                     _sorted_nums_vec[i].size() - 1);
176
148
                }
177
148
            }
178
179
160
            while (!max_heap.empty()) {
180
160
                Node node = max_heap.top();
181
160
                max_heap.pop();
182
160
                if (count == target) {
183
36
                    second_number = node.value;
184
124
                } else if (count == target + 1) {
185
36
                    first_number = node.value;
186
36
                    break;
187
36
                }
188
124
                ++count;
189
124
                if (--node.element_index >= 0) {
190
94
                    node.value = _sorted_nums_vec[node.array_index][node.element_index];
191
94
                    max_heap.push(node);
192
94
                }
193
124
            }
194
195
36
        } else {
196
9
            std::priority_queue<Node, std::vector<Node>, std::greater<Node>> min_heap;
197
31
            for (int i = 0; i < _sorted_nums_vec.size(); ++i) {
198
22
                if (!_sorted_nums_vec[i].empty()) {
199
22
                    min_heap.emplace(_sorted_nums_vec[i][0], i, 0);
200
22
                }
201
22
            }
202
203
25
            while (!min_heap.empty()) {
204
25
                Node node = min_heap.top();
205
25
                min_heap.pop();
206
25
                if (count == target) {
207
9
                    first_number = node.value;
208
16
                } else if (count == target + 1) {
209
9
                    second_number = node.value;
210
9
                    break;
211
9
                }
212
16
                ++count;
213
16
                if (++node.element_index < _sorted_nums_vec[node.array_index].size()) {
214
14
                    node.value = _sorted_nums_vec[node.array_index][node.element_index];
215
14
                    min_heap.push(node);
216
14
                }
217
16
            }
218
9
        }
219
220
45
        return {first_number, second_number};
221
45
    }
Unexecuted instantiation: _ZN5doris6CountsInE27_merge_sort_and_get_numbersElb
Unexecuted instantiation: _ZN5doris6CountsIfE27_merge_sort_and_get_numbersElb
Unexecuted instantiation: _ZN5doris6CountsIdE27_merge_sort_and_get_numbersElb
222
223
    vectorized::PODArray<Ty> _nums;
224
    std::vector<vectorized::PODArray<Ty>> _sorted_nums_vec;
225
};
226
227
} // namespace doris