Coverage Report

Created: 2026-10-08 13:09

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/storage/segment/bitshuffle_page.h
Line
Count
Source
1
// Licensed to the Apache Software Foundation (ASF) under one
2
// or more contributor license agreements.  See the NOTICE file
3
// distributed with this work for additional information
4
// regarding copyright ownership.  The ASF licenses this file
5
// to you under the Apache License, Version 2.0 (the
6
// "License"); you may not use this file except in compliance
7
// with the License.  You may obtain a copy of the License at
8
//
9
//   http://www.apache.org/licenses/LICENSE-2.0
10
//
11
// Unless required by applicable law or agreed to in writing,
12
// 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
16
// under the License.
17
18
#pragma once
19
20
#include <glog/logging.h>
21
22
#include <algorithm>
23
#include <cstddef>
24
#include <cstdint>
25
#include <cstring>
26
#include <ostream>
27
#include <type_traits>
28
29
#include "common/cast_set.h"
30
#include "common/compiler_util.h" // IWYU pragma: keep
31
#include "common/status.h"
32
#include "core/column/column.h"
33
#include "core/data_type/data_type.h"
34
#include "core/types.h"
35
#include "storage/olap_common.h"
36
#include "storage/segment/bitshuffle_wrapper.h"
37
#include "storage/segment/common.h"
38
#include "storage/segment/options.h"
39
#include "storage/segment/page_builder.h"
40
#include "storage/segment/page_decoder.h"
41
#include "storage/types.h"
42
#include "util/alignment.h"
43
#include "util/coding.h"
44
#include "util/faststring.h"
45
#include "util/slice.h"
46
47
namespace doris {
48
namespace segment_v2 {
49
50
enum { BITSHUFFLE_PAGE_HEADER_SIZE = 16 };
51
52
void warn_with_bitshuffle_error(int64_t val);
53
54
// BitshufflePageBuilder bitshuffles and compresses the bits of fixed
55
// size type blocks with lz4.
56
//
57
// The page format is as follows:
58
//
59
// 1. Header: (16 bytes total)
60
//
61
//    <num_elements> [32-bit]
62
//      The number of elements encoded in the page.
63
//
64
//    <compressed_size> [32-bit]
65
//      The post-compression size of the page, including this header.
66
//
67
//    <padded_num_elements> [32-bit]
68
//      Padding is needed to meet the requirements of the bitshuffle
69
//      library such that the input/output is a multiple of 8. Some
70
//      ignored elements are appended to the end of the page if necessary
71
//      to meet this requirement.
72
//
73
//      This header field is the post-padding element count.
74
//
75
//    <elem_size_bytes> [32-bit]
76
//      The size of the elements, in bytes, as actually encoded. In the
77
//      case that all of the data in a page can fit into a smaller
78
//      integer type, then we may choose to encode that smaller type
79
//      to save CPU costs.
80
//
81
//      This is currently only implemented in the UINT32 page type.
82
//
83
//   NOTE: all on-disk ints are encoded little-endian
84
//
85
// 2. Element data
86
//
87
//    The header is followed by the bitshuffle-compressed element data.
88
//
89
template <FieldType Type>
90
class BitshufflePageBuilder : public PageBuilderHelper<BitshufflePageBuilder<Type>> {
91
public:
92
    using Self = BitshufflePageBuilder<Type>;
93
    friend class PageBuilderHelper<Self>;
94
95
692k
    Status init() override { return reset(); }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE1EE4initEv
Line
Count
Source
95
44.9k
    Status init() override { return reset(); }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE3EE4initEv
Line
Count
Source
95
10.4k
    Status init() override { return reset(); }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE5EE4initEv
Line
Count
Source
95
358k
    Status init() override { return reset(); }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE7EE4initEv
Line
Count
Source
95
50.1k
    Status init() override { return reset(); }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE9EE4initEv
Line
Count
Source
95
12.6k
    Status init() override { return reset(); }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE8EE4initEv
Line
Count
Source
95
65.1k
    Status init() override { return reset(); }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE6EE4initEv
Line
Count
Source
95
1
    Status init() override { return reset(); }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE10EE4initEv
Line
Count
Source
95
8.28k
    Status init() override { return reset(); }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE11EE4initEv
Line
Count
Source
95
9.07k
    Status init() override { return reset(); }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE24EE4initEv
Line
Count
Source
95
2
    Status init() override { return reset(); }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE14EE4initEv
Line
Count
Source
95
336
    Status init() override { return reset(); }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE28EE4initEv
Line
Count
Source
95
37.4k
    Status init() override { return reset(); }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE29EE4initEv
Line
Count
Source
95
44.1k
    Status init() override { return reset(); }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE41EE4initEv
Line
Count
Source
95
334
    Status init() override { return reset(); }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE15EE4initEv
Line
Count
Source
95
437
    Status init() override { return reset(); }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE40EE4initEv
Line
Count
Source
95
7.65k
    Status init() override { return reset(); }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE16EE4initEv
Line
Count
Source
95
331
    Status init() override { return reset(); }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE31EE4initEv
Line
Count
Source
95
9.73k
    Status init() override { return reset(); }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE32EE4initEv
Line
Count
Source
95
12.0k
    Status init() override { return reset(); }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE33EE4initEv
Line
Count
Source
95
17.0k
    Status init() override { return reset(); }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE37EE4initEv
Line
Count
Source
95
1.20k
    Status init() override { return reset(); }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE38EE4initEv
Line
Count
Source
95
709
    Status init() override { return reset(); }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE39EE4initEv
Line
Count
Source
95
707
    Status init() override { return reset(); }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE42EE4initEv
Line
Count
Source
95
614
    Status init() override { return reset(); }
96
97
142M
    bool is_page_full() override { return _remain_element_capacity == 0; }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE1EE12is_page_fullEv
Line
Count
Source
97
51.7k
    bool is_page_full() override { return _remain_element_capacity == 0; }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE3EE12is_page_fullEv
Line
Count
Source
97
15.2k
    bool is_page_full() override { return _remain_element_capacity == 0; }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE5EE12is_page_fullEv
Line
Count
Source
97
142M
    bool is_page_full() override { return _remain_element_capacity == 0; }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE7EE12is_page_fullEv
Line
Count
Source
97
149k
    bool is_page_full() override { return _remain_element_capacity == 0; }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE9EE12is_page_fullEv
Line
Count
Source
97
11.7k
    bool is_page_full() override { return _remain_element_capacity == 0; }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE8EE12is_page_fullEv
Line
Count
Source
97
65.4k
    bool is_page_full() override { return _remain_element_capacity == 0; }
Unexecuted instantiation: _ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE6EE12is_page_fullEv
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE10EE12is_page_fullEv
Line
Count
Source
97
7.76k
    bool is_page_full() override { return _remain_element_capacity == 0; }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE11EE12is_page_fullEv
Line
Count
Source
97
8.98k
    bool is_page_full() override { return _remain_element_capacity == 0; }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE24EE12is_page_fullEv
Line
Count
Source
97
194
    bool is_page_full() override { return _remain_element_capacity == 0; }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE14EE12is_page_fullEv
Line
Count
Source
97
426
    bool is_page_full() override { return _remain_element_capacity == 0; }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE28EE12is_page_fullEv
Line
Count
Source
97
44.7k
    bool is_page_full() override { return _remain_element_capacity == 0; }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE29EE12is_page_fullEv
Line
Count
Source
97
43.9k
    bool is_page_full() override { return _remain_element_capacity == 0; }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE41EE12is_page_fullEv
Line
Count
Source
97
334
    bool is_page_full() override { return _remain_element_capacity == 0; }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE15EE12is_page_fullEv
Line
Count
Source
97
558
    bool is_page_full() override { return _remain_element_capacity == 0; }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE40EE12is_page_fullEv
Line
Count
Source
97
7.75k
    bool is_page_full() override { return _remain_element_capacity == 0; }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE16EE12is_page_fullEv
Line
Count
Source
97
302
    bool is_page_full() override { return _remain_element_capacity == 0; }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE31EE12is_page_fullEv
Line
Count
Source
97
5.24k
    bool is_page_full() override { return _remain_element_capacity == 0; }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE32EE12is_page_fullEv
Line
Count
Source
97
24.6k
    bool is_page_full() override { return _remain_element_capacity == 0; }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE33EE12is_page_fullEv
Line
Count
Source
97
18.0k
    bool is_page_full() override { return _remain_element_capacity == 0; }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE37EE12is_page_fullEv
Line
Count
Source
97
1.46k
    bool is_page_full() override { return _remain_element_capacity == 0; }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE38EE12is_page_fullEv
Line
Count
Source
97
669
    bool is_page_full() override { return _remain_element_capacity == 0; }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE39EE12is_page_fullEv
Line
Count
Source
97
692
    bool is_page_full() override { return _remain_element_capacity == 0; }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE42EE12is_page_fullEv
Line
Count
Source
97
26.6k
    bool is_page_full() override { return _remain_element_capacity == 0; }
98
99
1.18M
    Status add(const uint8_t* vals, size_t* count) override {
100
1.18M
        return add_internal<false>(vals, count);
101
1.18M
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE1EE3addEPKhPm
Line
Count
Source
99
51.8k
    Status add(const uint8_t* vals, size_t* count) override {
100
51.8k
        return add_internal<false>(vals, count);
101
51.8k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE3EE3addEPKhPm
Line
Count
Source
99
15.2k
    Status add(const uint8_t* vals, size_t* count) override {
100
15.2k
        return add_internal<false>(vals, count);
101
15.2k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE5EE3addEPKhPm
Line
Count
Source
99
700k
    Status add(const uint8_t* vals, size_t* count) override {
100
700k
        return add_internal<false>(vals, count);
101
700k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE7EE3addEPKhPm
Line
Count
Source
99
149k
    Status add(const uint8_t* vals, size_t* count) override {
100
149k
        return add_internal<false>(vals, count);
101
149k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE9EE3addEPKhPm
Line
Count
Source
99
11.7k
    Status add(const uint8_t* vals, size_t* count) override {
100
11.7k
        return add_internal<false>(vals, count);
101
11.7k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE8EE3addEPKhPm
Line
Count
Source
99
65.4k
    Status add(const uint8_t* vals, size_t* count) override {
100
65.4k
        return add_internal<false>(vals, count);
101
65.4k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE6EE3addEPKhPm
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE10EE3addEPKhPm
Line
Count
Source
99
7.76k
    Status add(const uint8_t* vals, size_t* count) override {
100
7.76k
        return add_internal<false>(vals, count);
101
7.76k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE11EE3addEPKhPm
Line
Count
Source
99
8.98k
    Status add(const uint8_t* vals, size_t* count) override {
100
8.98k
        return add_internal<false>(vals, count);
101
8.98k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE24EE3addEPKhPm
Line
Count
Source
99
194
    Status add(const uint8_t* vals, size_t* count) override {
100
194
        return add_internal<false>(vals, count);
101
194
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE14EE3addEPKhPm
Line
Count
Source
99
426
    Status add(const uint8_t* vals, size_t* count) override {
100
426
        return add_internal<false>(vals, count);
101
426
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE28EE3addEPKhPm
Line
Count
Source
99
44.7k
    Status add(const uint8_t* vals, size_t* count) override {
100
44.7k
        return add_internal<false>(vals, count);
101
44.7k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE29EE3addEPKhPm
Line
Count
Source
99
43.9k
    Status add(const uint8_t* vals, size_t* count) override {
100
43.9k
        return add_internal<false>(vals, count);
101
43.9k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE41EE3addEPKhPm
Line
Count
Source
99
334
    Status add(const uint8_t* vals, size_t* count) override {
100
334
        return add_internal<false>(vals, count);
101
334
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE15EE3addEPKhPm
Line
Count
Source
99
558
    Status add(const uint8_t* vals, size_t* count) override {
100
558
        return add_internal<false>(vals, count);
101
558
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE40EE3addEPKhPm
Line
Count
Source
99
7.75k
    Status add(const uint8_t* vals, size_t* count) override {
100
7.75k
        return add_internal<false>(vals, count);
101
7.75k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE16EE3addEPKhPm
Line
Count
Source
99
302
    Status add(const uint8_t* vals, size_t* count) override {
100
302
        return add_internal<false>(vals, count);
101
302
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE31EE3addEPKhPm
Line
Count
Source
99
5.24k
    Status add(const uint8_t* vals, size_t* count) override {
100
5.24k
        return add_internal<false>(vals, count);
101
5.24k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE32EE3addEPKhPm
Line
Count
Source
99
24.6k
    Status add(const uint8_t* vals, size_t* count) override {
100
24.6k
        return add_internal<false>(vals, count);
101
24.6k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE33EE3addEPKhPm
Line
Count
Source
99
18.0k
    Status add(const uint8_t* vals, size_t* count) override {
100
18.0k
        return add_internal<false>(vals, count);
101
18.0k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE37EE3addEPKhPm
Line
Count
Source
99
1.46k
    Status add(const uint8_t* vals, size_t* count) override {
100
1.46k
        return add_internal<false>(vals, count);
101
1.46k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE38EE3addEPKhPm
Line
Count
Source
99
669
    Status add(const uint8_t* vals, size_t* count) override {
100
669
        return add_internal<false>(vals, count);
101
669
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE39EE3addEPKhPm
Line
Count
Source
99
692
    Status add(const uint8_t* vals, size_t* count) override {
100
692
        return add_internal<false>(vals, count);
101
692
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE42EE3addEPKhPm
Line
Count
Source
99
26.6k
    Status add(const uint8_t* vals, size_t* count) override {
100
26.6k
        return add_internal<false>(vals, count);
101
26.6k
    }
102
103
143M
    Status single_add(const uint8_t* vals, size_t* count) {
104
143M
        return add_internal<true>(vals, count);
105
143M
    }
106
107
    template <bool single>
108
141M
    inline Status add_internal(const uint8_t* vals, size_t* num_written) {
109
141M
        DCHECK(!_finished);
110
141M
        if (_remain_element_capacity == 0) {
111
0
            *num_written = 0;
112
0
            return Status::OK();
113
0
        }
114
115
        // When increasing the size of the memtabl flush threshold to a very large value, for example 15GB.
116
        // the row count of a single men tbl could be very large.
117
        // a real log:
118
        /*
119
        I20250823 19:01:16.153575 2982018 memtable_flush_executor.cpp:185] begin to flush memtable for tablet: 1755915952737, memsize: 15.11 GB, rows: 3751968
120
        */
121
        // This is not a very wide table, actually it just has two columns, int and array<float>
122
        // The write process of column array has two steps: write nested column(column float here), and write offsets column.
123
        // The row count of column array is 3751968, which is not that big, but each row of column array has 768 float numbers (this is a common case in vector search scenario).
124
        // so the row num of nested column float will be 3751968 * 768 = 2,881,511,424, which is bigger than INT32_MAX.
125
141M
        uint32_t to_add = cast_set<UInt32>(
126
141M
                std::min(cast_set<size_t>(_remain_element_capacity), *num_written));
127
        // Max value of to_add_size is less than STORAGE_PAGE_SIZE_DEFAULT_VALUE
128
141M
        int to_add_size = to_add * SIZE_OF_TYPE;
129
141M
        size_t orig_size = _data.size();
130
        // This may need a large memory, should return error if could not allocated
131
        // successfully, to avoid BE OOM.
132
141M
        RETURN_IF_CATCH_EXCEPTION(_data.resize(orig_size + to_add_size));
133
144M
        _count += to_add;
134
144M
        _remain_element_capacity -= to_add;
135
144M
        _raw_data_size += to_add_size;
136
        // return added number through count
137
144M
        *num_written = to_add;
138
144M
        if constexpr (single) {
139
            if constexpr (SIZE_OF_TYPE == 1) {
140
                _data[orig_size] = *vals;
141
                return Status::OK();
142
            } else if constexpr (SIZE_OF_TYPE == 2) {
143
                *reinterpret_cast<uint16_t*>(&_data[orig_size]) =
144
                        *reinterpret_cast<const uint16_t*>(vals);
145
                return Status::OK();
146
143M
            } else if constexpr (SIZE_OF_TYPE == 4) {
147
143M
                *reinterpret_cast<uint32_t*>(&_data[orig_size]) =
148
143M
                        *reinterpret_cast<const uint32_t*>(vals);
149
143M
                return Status::OK();
150
            } else if constexpr (SIZE_OF_TYPE == 8) {
151
                *reinterpret_cast<uint64_t*>(&_data[orig_size]) =
152
                        *reinterpret_cast<const uint64_t*>(vals);
153
                return Status::OK();
154
            }
155
143M
        }
156
        // when single is true and SIZE_OF_TYPE > 8 or single is false
157
0
        memcpy(&_data[orig_size], vals, to_add_size);
158
144M
        return Status::OK();
159
141M
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE1EE12add_internalILb0EEENS_6StatusEPKhPm
Line
Count
Source
108
51.7k
    inline Status add_internal(const uint8_t* vals, size_t* num_written) {
109
51.7k
        DCHECK(!_finished);
110
51.7k
        if (_remain_element_capacity == 0) {
111
0
            *num_written = 0;
112
0
            return Status::OK();
113
0
        }
114
115
        // When increasing the size of the memtabl flush threshold to a very large value, for example 15GB.
116
        // the row count of a single men tbl could be very large.
117
        // a real log:
118
        /*
119
        I20250823 19:01:16.153575 2982018 memtable_flush_executor.cpp:185] begin to flush memtable for tablet: 1755915952737, memsize: 15.11 GB, rows: 3751968
120
        */
121
        // This is not a very wide table, actually it just has two columns, int and array<float>
122
        // The write process of column array has two steps: write nested column(column float here), and write offsets column.
123
        // The row count of column array is 3751968, which is not that big, but each row of column array has 768 float numbers (this is a common case in vector search scenario).
124
        // so the row num of nested column float will be 3751968 * 768 = 2,881,511,424, which is bigger than INT32_MAX.
125
51.7k
        uint32_t to_add = cast_set<UInt32>(
126
51.7k
                std::min(cast_set<size_t>(_remain_element_capacity), *num_written));
127
        // Max value of to_add_size is less than STORAGE_PAGE_SIZE_DEFAULT_VALUE
128
51.7k
        int to_add_size = to_add * SIZE_OF_TYPE;
129
51.7k
        size_t orig_size = _data.size();
130
        // This may need a large memory, should return error if could not allocated
131
        // successfully, to avoid BE OOM.
132
51.7k
        RETURN_IF_CATCH_EXCEPTION(_data.resize(orig_size + to_add_size));
133
51.7k
        _count += to_add;
134
51.7k
        _remain_element_capacity -= to_add;
135
51.7k
        _raw_data_size += to_add_size;
136
        // return added number through count
137
51.7k
        *num_written = to_add;
138
        if constexpr (single) {
139
            if constexpr (SIZE_OF_TYPE == 1) {
140
                _data[orig_size] = *vals;
141
                return Status::OK();
142
            } else if constexpr (SIZE_OF_TYPE == 2) {
143
                *reinterpret_cast<uint16_t*>(&_data[orig_size]) =
144
                        *reinterpret_cast<const uint16_t*>(vals);
145
                return Status::OK();
146
            } else if constexpr (SIZE_OF_TYPE == 4) {
147
                *reinterpret_cast<uint32_t*>(&_data[orig_size]) =
148
                        *reinterpret_cast<const uint32_t*>(vals);
149
                return Status::OK();
150
            } else if constexpr (SIZE_OF_TYPE == 8) {
151
                *reinterpret_cast<uint64_t*>(&_data[orig_size]) =
152
                        *reinterpret_cast<const uint64_t*>(vals);
153
                return Status::OK();
154
            }
155
        }
156
        // when single is true and SIZE_OF_TYPE > 8 or single is false
157
51.7k
        memcpy(&_data[orig_size], vals, to_add_size);
158
51.7k
        return Status::OK();
159
51.7k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE3EE12add_internalILb0EEENS_6StatusEPKhPm
Line
Count
Source
108
15.2k
    inline Status add_internal(const uint8_t* vals, size_t* num_written) {
109
15.2k
        DCHECK(!_finished);
110
15.2k
        if (_remain_element_capacity == 0) {
111
0
            *num_written = 0;
112
0
            return Status::OK();
113
0
        }
114
115
        // When increasing the size of the memtabl flush threshold to a very large value, for example 15GB.
116
        // the row count of a single men tbl could be very large.
117
        // a real log:
118
        /*
119
        I20250823 19:01:16.153575 2982018 memtable_flush_executor.cpp:185] begin to flush memtable for tablet: 1755915952737, memsize: 15.11 GB, rows: 3751968
120
        */
121
        // This is not a very wide table, actually it just has two columns, int and array<float>
122
        // The write process of column array has two steps: write nested column(column float here), and write offsets column.
123
        // The row count of column array is 3751968, which is not that big, but each row of column array has 768 float numbers (this is a common case in vector search scenario).
124
        // so the row num of nested column float will be 3751968 * 768 = 2,881,511,424, which is bigger than INT32_MAX.
125
15.2k
        uint32_t to_add = cast_set<UInt32>(
126
15.2k
                std::min(cast_set<size_t>(_remain_element_capacity), *num_written));
127
        // Max value of to_add_size is less than STORAGE_PAGE_SIZE_DEFAULT_VALUE
128
15.2k
        int to_add_size = to_add * SIZE_OF_TYPE;
129
15.2k
        size_t orig_size = _data.size();
130
        // This may need a large memory, should return error if could not allocated
131
        // successfully, to avoid BE OOM.
132
15.2k
        RETURN_IF_CATCH_EXCEPTION(_data.resize(orig_size + to_add_size));
133
15.2k
        _count += to_add;
134
15.2k
        _remain_element_capacity -= to_add;
135
15.2k
        _raw_data_size += to_add_size;
136
        // return added number through count
137
15.2k
        *num_written = to_add;
138
        if constexpr (single) {
139
            if constexpr (SIZE_OF_TYPE == 1) {
140
                _data[orig_size] = *vals;
141
                return Status::OK();
142
            } else if constexpr (SIZE_OF_TYPE == 2) {
143
                *reinterpret_cast<uint16_t*>(&_data[orig_size]) =
144
                        *reinterpret_cast<const uint16_t*>(vals);
145
                return Status::OK();
146
            } else if constexpr (SIZE_OF_TYPE == 4) {
147
                *reinterpret_cast<uint32_t*>(&_data[orig_size]) =
148
                        *reinterpret_cast<const uint32_t*>(vals);
149
                return Status::OK();
150
            } else if constexpr (SIZE_OF_TYPE == 8) {
151
                *reinterpret_cast<uint64_t*>(&_data[orig_size]) =
152
                        *reinterpret_cast<const uint64_t*>(vals);
153
                return Status::OK();
154
            }
155
        }
156
        // when single is true and SIZE_OF_TYPE > 8 or single is false
157
15.2k
        memcpy(&_data[orig_size], vals, to_add_size);
158
15.2k
        return Status::OK();
159
15.2k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE5EE12add_internalILb0EEENS_6StatusEPKhPm
Line
Count
Source
108
700k
    inline Status add_internal(const uint8_t* vals, size_t* num_written) {
109
700k
        DCHECK(!_finished);
110
700k
        if (_remain_element_capacity == 0) {
111
0
            *num_written = 0;
112
0
            return Status::OK();
113
0
        }
114
115
        // When increasing the size of the memtabl flush threshold to a very large value, for example 15GB.
116
        // the row count of a single men tbl could be very large.
117
        // a real log:
118
        /*
119
        I20250823 19:01:16.153575 2982018 memtable_flush_executor.cpp:185] begin to flush memtable for tablet: 1755915952737, memsize: 15.11 GB, rows: 3751968
120
        */
121
        // This is not a very wide table, actually it just has two columns, int and array<float>
122
        // The write process of column array has two steps: write nested column(column float here), and write offsets column.
123
        // The row count of column array is 3751968, which is not that big, but each row of column array has 768 float numbers (this is a common case in vector search scenario).
124
        // so the row num of nested column float will be 3751968 * 768 = 2,881,511,424, which is bigger than INT32_MAX.
125
700k
        uint32_t to_add = cast_set<UInt32>(
126
700k
                std::min(cast_set<size_t>(_remain_element_capacity), *num_written));
127
        // Max value of to_add_size is less than STORAGE_PAGE_SIZE_DEFAULT_VALUE
128
700k
        int to_add_size = to_add * SIZE_OF_TYPE;
129
700k
        size_t orig_size = _data.size();
130
        // This may need a large memory, should return error if could not allocated
131
        // successfully, to avoid BE OOM.
132
700k
        RETURN_IF_CATCH_EXCEPTION(_data.resize(orig_size + to_add_size));
133
700k
        _count += to_add;
134
700k
        _remain_element_capacity -= to_add;
135
700k
        _raw_data_size += to_add_size;
136
        // return added number through count
137
700k
        *num_written = to_add;
138
        if constexpr (single) {
139
            if constexpr (SIZE_OF_TYPE == 1) {
140
                _data[orig_size] = *vals;
141
                return Status::OK();
142
            } else if constexpr (SIZE_OF_TYPE == 2) {
143
                *reinterpret_cast<uint16_t*>(&_data[orig_size]) =
144
                        *reinterpret_cast<const uint16_t*>(vals);
145
                return Status::OK();
146
            } else if constexpr (SIZE_OF_TYPE == 4) {
147
                *reinterpret_cast<uint32_t*>(&_data[orig_size]) =
148
                        *reinterpret_cast<const uint32_t*>(vals);
149
                return Status::OK();
150
            } else if constexpr (SIZE_OF_TYPE == 8) {
151
                *reinterpret_cast<uint64_t*>(&_data[orig_size]) =
152
                        *reinterpret_cast<const uint64_t*>(vals);
153
                return Status::OK();
154
            }
155
        }
156
        // when single is true and SIZE_OF_TYPE > 8 or single is false
157
700k
        memcpy(&_data[orig_size], vals, to_add_size);
158
700k
        return Status::OK();
159
700k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE7EE12add_internalILb0EEENS_6StatusEPKhPm
Line
Count
Source
108
149k
    inline Status add_internal(const uint8_t* vals, size_t* num_written) {
109
149k
        DCHECK(!_finished);
110
149k
        if (_remain_element_capacity == 0) {
111
0
            *num_written = 0;
112
0
            return Status::OK();
113
0
        }
114
115
        // When increasing the size of the memtabl flush threshold to a very large value, for example 15GB.
116
        // the row count of a single men tbl could be very large.
117
        // a real log:
118
        /*
119
        I20250823 19:01:16.153575 2982018 memtable_flush_executor.cpp:185] begin to flush memtable for tablet: 1755915952737, memsize: 15.11 GB, rows: 3751968
120
        */
121
        // This is not a very wide table, actually it just has two columns, int and array<float>
122
        // The write process of column array has two steps: write nested column(column float here), and write offsets column.
123
        // The row count of column array is 3751968, which is not that big, but each row of column array has 768 float numbers (this is a common case in vector search scenario).
124
        // so the row num of nested column float will be 3751968 * 768 = 2,881,511,424, which is bigger than INT32_MAX.
125
149k
        uint32_t to_add = cast_set<UInt32>(
126
149k
                std::min(cast_set<size_t>(_remain_element_capacity), *num_written));
127
        // Max value of to_add_size is less than STORAGE_PAGE_SIZE_DEFAULT_VALUE
128
149k
        int to_add_size = to_add * SIZE_OF_TYPE;
129
149k
        size_t orig_size = _data.size();
130
        // This may need a large memory, should return error if could not allocated
131
        // successfully, to avoid BE OOM.
132
149k
        RETURN_IF_CATCH_EXCEPTION(_data.resize(orig_size + to_add_size));
133
149k
        _count += to_add;
134
149k
        _remain_element_capacity -= to_add;
135
149k
        _raw_data_size += to_add_size;
136
        // return added number through count
137
149k
        *num_written = to_add;
138
        if constexpr (single) {
139
            if constexpr (SIZE_OF_TYPE == 1) {
140
                _data[orig_size] = *vals;
141
                return Status::OK();
142
            } else if constexpr (SIZE_OF_TYPE == 2) {
143
                *reinterpret_cast<uint16_t*>(&_data[orig_size]) =
144
                        *reinterpret_cast<const uint16_t*>(vals);
145
                return Status::OK();
146
            } else if constexpr (SIZE_OF_TYPE == 4) {
147
                *reinterpret_cast<uint32_t*>(&_data[orig_size]) =
148
                        *reinterpret_cast<const uint32_t*>(vals);
149
                return Status::OK();
150
            } else if constexpr (SIZE_OF_TYPE == 8) {
151
                *reinterpret_cast<uint64_t*>(&_data[orig_size]) =
152
                        *reinterpret_cast<const uint64_t*>(vals);
153
                return Status::OK();
154
            }
155
        }
156
        // when single is true and SIZE_OF_TYPE > 8 or single is false
157
149k
        memcpy(&_data[orig_size], vals, to_add_size);
158
149k
        return Status::OK();
159
149k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE9EE12add_internalILb0EEENS_6StatusEPKhPm
Line
Count
Source
108
11.7k
    inline Status add_internal(const uint8_t* vals, size_t* num_written) {
109
11.7k
        DCHECK(!_finished);
110
11.7k
        if (_remain_element_capacity == 0) {
111
0
            *num_written = 0;
112
0
            return Status::OK();
113
0
        }
114
115
        // When increasing the size of the memtabl flush threshold to a very large value, for example 15GB.
116
        // the row count of a single men tbl could be very large.
117
        // a real log:
118
        /*
119
        I20250823 19:01:16.153575 2982018 memtable_flush_executor.cpp:185] begin to flush memtable for tablet: 1755915952737, memsize: 15.11 GB, rows: 3751968
120
        */
121
        // This is not a very wide table, actually it just has two columns, int and array<float>
122
        // The write process of column array has two steps: write nested column(column float here), and write offsets column.
123
        // The row count of column array is 3751968, which is not that big, but each row of column array has 768 float numbers (this is a common case in vector search scenario).
124
        // so the row num of nested column float will be 3751968 * 768 = 2,881,511,424, which is bigger than INT32_MAX.
125
11.7k
        uint32_t to_add = cast_set<UInt32>(
126
11.7k
                std::min(cast_set<size_t>(_remain_element_capacity), *num_written));
127
        // Max value of to_add_size is less than STORAGE_PAGE_SIZE_DEFAULT_VALUE
128
11.7k
        int to_add_size = to_add * SIZE_OF_TYPE;
129
11.7k
        size_t orig_size = _data.size();
130
        // This may need a large memory, should return error if could not allocated
131
        // successfully, to avoid BE OOM.
132
11.7k
        RETURN_IF_CATCH_EXCEPTION(_data.resize(orig_size + to_add_size));
133
11.7k
        _count += to_add;
134
11.7k
        _remain_element_capacity -= to_add;
135
11.7k
        _raw_data_size += to_add_size;
136
        // return added number through count
137
11.7k
        *num_written = to_add;
138
        if constexpr (single) {
139
            if constexpr (SIZE_OF_TYPE == 1) {
140
                _data[orig_size] = *vals;
141
                return Status::OK();
142
            } else if constexpr (SIZE_OF_TYPE == 2) {
143
                *reinterpret_cast<uint16_t*>(&_data[orig_size]) =
144
                        *reinterpret_cast<const uint16_t*>(vals);
145
                return Status::OK();
146
            } else if constexpr (SIZE_OF_TYPE == 4) {
147
                *reinterpret_cast<uint32_t*>(&_data[orig_size]) =
148
                        *reinterpret_cast<const uint32_t*>(vals);
149
                return Status::OK();
150
            } else if constexpr (SIZE_OF_TYPE == 8) {
151
                *reinterpret_cast<uint64_t*>(&_data[orig_size]) =
152
                        *reinterpret_cast<const uint64_t*>(vals);
153
                return Status::OK();
154
            }
155
        }
156
        // when single is true and SIZE_OF_TYPE > 8 or single is false
157
11.7k
        memcpy(&_data[orig_size], vals, to_add_size);
158
11.7k
        return Status::OK();
159
11.7k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE8EE12add_internalILb0EEENS_6StatusEPKhPm
Line
Count
Source
108
65.3k
    inline Status add_internal(const uint8_t* vals, size_t* num_written) {
109
65.3k
        DCHECK(!_finished);
110
65.3k
        if (_remain_element_capacity == 0) {
111
0
            *num_written = 0;
112
0
            return Status::OK();
113
0
        }
114
115
        // When increasing the size of the memtabl flush threshold to a very large value, for example 15GB.
116
        // the row count of a single men tbl could be very large.
117
        // a real log:
118
        /*
119
        I20250823 19:01:16.153575 2982018 memtable_flush_executor.cpp:185] begin to flush memtable for tablet: 1755915952737, memsize: 15.11 GB, rows: 3751968
120
        */
121
        // This is not a very wide table, actually it just has two columns, int and array<float>
122
        // The write process of column array has two steps: write nested column(column float here), and write offsets column.
123
        // The row count of column array is 3751968, which is not that big, but each row of column array has 768 float numbers (this is a common case in vector search scenario).
124
        // so the row num of nested column float will be 3751968 * 768 = 2,881,511,424, which is bigger than INT32_MAX.
125
65.3k
        uint32_t to_add = cast_set<UInt32>(
126
65.3k
                std::min(cast_set<size_t>(_remain_element_capacity), *num_written));
127
        // Max value of to_add_size is less than STORAGE_PAGE_SIZE_DEFAULT_VALUE
128
65.3k
        int to_add_size = to_add * SIZE_OF_TYPE;
129
65.3k
        size_t orig_size = _data.size();
130
        // This may need a large memory, should return error if could not allocated
131
        // successfully, to avoid BE OOM.
132
65.3k
        RETURN_IF_CATCH_EXCEPTION(_data.resize(orig_size + to_add_size));
133
65.3k
        _count += to_add;
134
65.3k
        _remain_element_capacity -= to_add;
135
65.3k
        _raw_data_size += to_add_size;
136
        // return added number through count
137
65.3k
        *num_written = to_add;
138
        if constexpr (single) {
139
            if constexpr (SIZE_OF_TYPE == 1) {
140
                _data[orig_size] = *vals;
141
                return Status::OK();
142
            } else if constexpr (SIZE_OF_TYPE == 2) {
143
                *reinterpret_cast<uint16_t*>(&_data[orig_size]) =
144
                        *reinterpret_cast<const uint16_t*>(vals);
145
                return Status::OK();
146
            } else if constexpr (SIZE_OF_TYPE == 4) {
147
                *reinterpret_cast<uint32_t*>(&_data[orig_size]) =
148
                        *reinterpret_cast<const uint32_t*>(vals);
149
                return Status::OK();
150
            } else if constexpr (SIZE_OF_TYPE == 8) {
151
                *reinterpret_cast<uint64_t*>(&_data[orig_size]) =
152
                        *reinterpret_cast<const uint64_t*>(vals);
153
                return Status::OK();
154
            }
155
        }
156
        // when single is true and SIZE_OF_TYPE > 8 or single is false
157
65.3k
        memcpy(&_data[orig_size], vals, to_add_size);
158
65.3k
        return Status::OK();
159
65.3k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE6EE12add_internalILb0EEENS_6StatusEPKhPm
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE10EE12add_internalILb0EEENS_6StatusEPKhPm
Line
Count
Source
108
7.76k
    inline Status add_internal(const uint8_t* vals, size_t* num_written) {
109
7.76k
        DCHECK(!_finished);
110
7.76k
        if (_remain_element_capacity == 0) {
111
0
            *num_written = 0;
112
0
            return Status::OK();
113
0
        }
114
115
        // When increasing the size of the memtabl flush threshold to a very large value, for example 15GB.
116
        // the row count of a single men tbl could be very large.
117
        // a real log:
118
        /*
119
        I20250823 19:01:16.153575 2982018 memtable_flush_executor.cpp:185] begin to flush memtable for tablet: 1755915952737, memsize: 15.11 GB, rows: 3751968
120
        */
121
        // This is not a very wide table, actually it just has two columns, int and array<float>
122
        // The write process of column array has two steps: write nested column(column float here), and write offsets column.
123
        // The row count of column array is 3751968, which is not that big, but each row of column array has 768 float numbers (this is a common case in vector search scenario).
124
        // so the row num of nested column float will be 3751968 * 768 = 2,881,511,424, which is bigger than INT32_MAX.
125
7.76k
        uint32_t to_add = cast_set<UInt32>(
126
7.76k
                std::min(cast_set<size_t>(_remain_element_capacity), *num_written));
127
        // Max value of to_add_size is less than STORAGE_PAGE_SIZE_DEFAULT_VALUE
128
7.76k
        int to_add_size = to_add * SIZE_OF_TYPE;
129
7.76k
        size_t orig_size = _data.size();
130
        // This may need a large memory, should return error if could not allocated
131
        // successfully, to avoid BE OOM.
132
7.76k
        RETURN_IF_CATCH_EXCEPTION(_data.resize(orig_size + to_add_size));
133
7.76k
        _count += to_add;
134
7.76k
        _remain_element_capacity -= to_add;
135
7.76k
        _raw_data_size += to_add_size;
136
        // return added number through count
137
7.76k
        *num_written = to_add;
138
        if constexpr (single) {
139
            if constexpr (SIZE_OF_TYPE == 1) {
140
                _data[orig_size] = *vals;
141
                return Status::OK();
142
            } else if constexpr (SIZE_OF_TYPE == 2) {
143
                *reinterpret_cast<uint16_t*>(&_data[orig_size]) =
144
                        *reinterpret_cast<const uint16_t*>(vals);
145
                return Status::OK();
146
            } else if constexpr (SIZE_OF_TYPE == 4) {
147
                *reinterpret_cast<uint32_t*>(&_data[orig_size]) =
148
                        *reinterpret_cast<const uint32_t*>(vals);
149
                return Status::OK();
150
            } else if constexpr (SIZE_OF_TYPE == 8) {
151
                *reinterpret_cast<uint64_t*>(&_data[orig_size]) =
152
                        *reinterpret_cast<const uint64_t*>(vals);
153
                return Status::OK();
154
            }
155
        }
156
        // when single is true and SIZE_OF_TYPE > 8 or single is false
157
7.76k
        memcpy(&_data[orig_size], vals, to_add_size);
158
7.76k
        return Status::OK();
159
7.76k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE11EE12add_internalILb0EEENS_6StatusEPKhPm
Line
Count
Source
108
8.98k
    inline Status add_internal(const uint8_t* vals, size_t* num_written) {
109
8.98k
        DCHECK(!_finished);
110
8.98k
        if (_remain_element_capacity == 0) {
111
0
            *num_written = 0;
112
0
            return Status::OK();
113
0
        }
114
115
        // When increasing the size of the memtabl flush threshold to a very large value, for example 15GB.
116
        // the row count of a single men tbl could be very large.
117
        // a real log:
118
        /*
119
        I20250823 19:01:16.153575 2982018 memtable_flush_executor.cpp:185] begin to flush memtable for tablet: 1755915952737, memsize: 15.11 GB, rows: 3751968
120
        */
121
        // This is not a very wide table, actually it just has two columns, int and array<float>
122
        // The write process of column array has two steps: write nested column(column float here), and write offsets column.
123
        // The row count of column array is 3751968, which is not that big, but each row of column array has 768 float numbers (this is a common case in vector search scenario).
124
        // so the row num of nested column float will be 3751968 * 768 = 2,881,511,424, which is bigger than INT32_MAX.
125
8.98k
        uint32_t to_add = cast_set<UInt32>(
126
8.98k
                std::min(cast_set<size_t>(_remain_element_capacity), *num_written));
127
        // Max value of to_add_size is less than STORAGE_PAGE_SIZE_DEFAULT_VALUE
128
8.98k
        int to_add_size = to_add * SIZE_OF_TYPE;
129
8.98k
        size_t orig_size = _data.size();
130
        // This may need a large memory, should return error if could not allocated
131
        // successfully, to avoid BE OOM.
132
8.98k
        RETURN_IF_CATCH_EXCEPTION(_data.resize(orig_size + to_add_size));
133
8.98k
        _count += to_add;
134
8.98k
        _remain_element_capacity -= to_add;
135
8.98k
        _raw_data_size += to_add_size;
136
        // return added number through count
137
8.98k
        *num_written = to_add;
138
        if constexpr (single) {
139
            if constexpr (SIZE_OF_TYPE == 1) {
140
                _data[orig_size] = *vals;
141
                return Status::OK();
142
            } else if constexpr (SIZE_OF_TYPE == 2) {
143
                *reinterpret_cast<uint16_t*>(&_data[orig_size]) =
144
                        *reinterpret_cast<const uint16_t*>(vals);
145
                return Status::OK();
146
            } else if constexpr (SIZE_OF_TYPE == 4) {
147
                *reinterpret_cast<uint32_t*>(&_data[orig_size]) =
148
                        *reinterpret_cast<const uint32_t*>(vals);
149
                return Status::OK();
150
            } else if constexpr (SIZE_OF_TYPE == 8) {
151
                *reinterpret_cast<uint64_t*>(&_data[orig_size]) =
152
                        *reinterpret_cast<const uint64_t*>(vals);
153
                return Status::OK();
154
            }
155
        }
156
        // when single is true and SIZE_OF_TYPE > 8 or single is false
157
8.98k
        memcpy(&_data[orig_size], vals, to_add_size);
158
8.98k
        return Status::OK();
159
8.98k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE24EE12add_internalILb0EEENS_6StatusEPKhPm
Line
Count
Source
108
194
    inline Status add_internal(const uint8_t* vals, size_t* num_written) {
109
194
        DCHECK(!_finished);
110
194
        if (_remain_element_capacity == 0) {
111
0
            *num_written = 0;
112
0
            return Status::OK();
113
0
        }
114
115
        // When increasing the size of the memtabl flush threshold to a very large value, for example 15GB.
116
        // the row count of a single men tbl could be very large.
117
        // a real log:
118
        /*
119
        I20250823 19:01:16.153575 2982018 memtable_flush_executor.cpp:185] begin to flush memtable for tablet: 1755915952737, memsize: 15.11 GB, rows: 3751968
120
        */
121
        // This is not a very wide table, actually it just has two columns, int and array<float>
122
        // The write process of column array has two steps: write nested column(column float here), and write offsets column.
123
        // The row count of column array is 3751968, which is not that big, but each row of column array has 768 float numbers (this is a common case in vector search scenario).
124
        // so the row num of nested column float will be 3751968 * 768 = 2,881,511,424, which is bigger than INT32_MAX.
125
194
        uint32_t to_add = cast_set<UInt32>(
126
194
                std::min(cast_set<size_t>(_remain_element_capacity), *num_written));
127
        // Max value of to_add_size is less than STORAGE_PAGE_SIZE_DEFAULT_VALUE
128
194
        int to_add_size = to_add * SIZE_OF_TYPE;
129
194
        size_t orig_size = _data.size();
130
        // This may need a large memory, should return error if could not allocated
131
        // successfully, to avoid BE OOM.
132
194
        RETURN_IF_CATCH_EXCEPTION(_data.resize(orig_size + to_add_size));
133
194
        _count += to_add;
134
194
        _remain_element_capacity -= to_add;
135
194
        _raw_data_size += to_add_size;
136
        // return added number through count
137
194
        *num_written = to_add;
138
        if constexpr (single) {
139
            if constexpr (SIZE_OF_TYPE == 1) {
140
                _data[orig_size] = *vals;
141
                return Status::OK();
142
            } else if constexpr (SIZE_OF_TYPE == 2) {
143
                *reinterpret_cast<uint16_t*>(&_data[orig_size]) =
144
                        *reinterpret_cast<const uint16_t*>(vals);
145
                return Status::OK();
146
            } else if constexpr (SIZE_OF_TYPE == 4) {
147
                *reinterpret_cast<uint32_t*>(&_data[orig_size]) =
148
                        *reinterpret_cast<const uint32_t*>(vals);
149
                return Status::OK();
150
            } else if constexpr (SIZE_OF_TYPE == 8) {
151
                *reinterpret_cast<uint64_t*>(&_data[orig_size]) =
152
                        *reinterpret_cast<const uint64_t*>(vals);
153
                return Status::OK();
154
            }
155
        }
156
        // when single is true and SIZE_OF_TYPE > 8 or single is false
157
194
        memcpy(&_data[orig_size], vals, to_add_size);
158
194
        return Status::OK();
159
194
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE14EE12add_internalILb0EEENS_6StatusEPKhPm
Line
Count
Source
108
426
    inline Status add_internal(const uint8_t* vals, size_t* num_written) {
109
426
        DCHECK(!_finished);
110
426
        if (_remain_element_capacity == 0) {
111
0
            *num_written = 0;
112
0
            return Status::OK();
113
0
        }
114
115
        // When increasing the size of the memtabl flush threshold to a very large value, for example 15GB.
116
        // the row count of a single men tbl could be very large.
117
        // a real log:
118
        /*
119
        I20250823 19:01:16.153575 2982018 memtable_flush_executor.cpp:185] begin to flush memtable for tablet: 1755915952737, memsize: 15.11 GB, rows: 3751968
120
        */
121
        // This is not a very wide table, actually it just has two columns, int and array<float>
122
        // The write process of column array has two steps: write nested column(column float here), and write offsets column.
123
        // The row count of column array is 3751968, which is not that big, but each row of column array has 768 float numbers (this is a common case in vector search scenario).
124
        // so the row num of nested column float will be 3751968 * 768 = 2,881,511,424, which is bigger than INT32_MAX.
125
426
        uint32_t to_add = cast_set<UInt32>(
126
426
                std::min(cast_set<size_t>(_remain_element_capacity), *num_written));
127
        // Max value of to_add_size is less than STORAGE_PAGE_SIZE_DEFAULT_VALUE
128
426
        int to_add_size = to_add * SIZE_OF_TYPE;
129
426
        size_t orig_size = _data.size();
130
        // This may need a large memory, should return error if could not allocated
131
        // successfully, to avoid BE OOM.
132
426
        RETURN_IF_CATCH_EXCEPTION(_data.resize(orig_size + to_add_size));
133
426
        _count += to_add;
134
426
        _remain_element_capacity -= to_add;
135
426
        _raw_data_size += to_add_size;
136
        // return added number through count
137
426
        *num_written = to_add;
138
        if constexpr (single) {
139
            if constexpr (SIZE_OF_TYPE == 1) {
140
                _data[orig_size] = *vals;
141
                return Status::OK();
142
            } else if constexpr (SIZE_OF_TYPE == 2) {
143
                *reinterpret_cast<uint16_t*>(&_data[orig_size]) =
144
                        *reinterpret_cast<const uint16_t*>(vals);
145
                return Status::OK();
146
            } else if constexpr (SIZE_OF_TYPE == 4) {
147
                *reinterpret_cast<uint32_t*>(&_data[orig_size]) =
148
                        *reinterpret_cast<const uint32_t*>(vals);
149
                return Status::OK();
150
            } else if constexpr (SIZE_OF_TYPE == 8) {
151
                *reinterpret_cast<uint64_t*>(&_data[orig_size]) =
152
                        *reinterpret_cast<const uint64_t*>(vals);
153
                return Status::OK();
154
            }
155
        }
156
        // when single is true and SIZE_OF_TYPE > 8 or single is false
157
426
        memcpy(&_data[orig_size], vals, to_add_size);
158
426
        return Status::OK();
159
426
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE28EE12add_internalILb0EEENS_6StatusEPKhPm
Line
Count
Source
108
44.7k
    inline Status add_internal(const uint8_t* vals, size_t* num_written) {
109
44.7k
        DCHECK(!_finished);
110
44.7k
        if (_remain_element_capacity == 0) {
111
0
            *num_written = 0;
112
0
            return Status::OK();
113
0
        }
114
115
        // When increasing the size of the memtabl flush threshold to a very large value, for example 15GB.
116
        // the row count of a single men tbl could be very large.
117
        // a real log:
118
        /*
119
        I20250823 19:01:16.153575 2982018 memtable_flush_executor.cpp:185] begin to flush memtable for tablet: 1755915952737, memsize: 15.11 GB, rows: 3751968
120
        */
121
        // This is not a very wide table, actually it just has two columns, int and array<float>
122
        // The write process of column array has two steps: write nested column(column float here), and write offsets column.
123
        // The row count of column array is 3751968, which is not that big, but each row of column array has 768 float numbers (this is a common case in vector search scenario).
124
        // so the row num of nested column float will be 3751968 * 768 = 2,881,511,424, which is bigger than INT32_MAX.
125
44.7k
        uint32_t to_add = cast_set<UInt32>(
126
44.7k
                std::min(cast_set<size_t>(_remain_element_capacity), *num_written));
127
        // Max value of to_add_size is less than STORAGE_PAGE_SIZE_DEFAULT_VALUE
128
44.7k
        int to_add_size = to_add * SIZE_OF_TYPE;
129
44.7k
        size_t orig_size = _data.size();
130
        // This may need a large memory, should return error if could not allocated
131
        // successfully, to avoid BE OOM.
132
44.7k
        RETURN_IF_CATCH_EXCEPTION(_data.resize(orig_size + to_add_size));
133
44.7k
        _count += to_add;
134
44.7k
        _remain_element_capacity -= to_add;
135
44.7k
        _raw_data_size += to_add_size;
136
        // return added number through count
137
44.7k
        *num_written = to_add;
138
        if constexpr (single) {
139
            if constexpr (SIZE_OF_TYPE == 1) {
140
                _data[orig_size] = *vals;
141
                return Status::OK();
142
            } else if constexpr (SIZE_OF_TYPE == 2) {
143
                *reinterpret_cast<uint16_t*>(&_data[orig_size]) =
144
                        *reinterpret_cast<const uint16_t*>(vals);
145
                return Status::OK();
146
            } else if constexpr (SIZE_OF_TYPE == 4) {
147
                *reinterpret_cast<uint32_t*>(&_data[orig_size]) =
148
                        *reinterpret_cast<const uint32_t*>(vals);
149
                return Status::OK();
150
            } else if constexpr (SIZE_OF_TYPE == 8) {
151
                *reinterpret_cast<uint64_t*>(&_data[orig_size]) =
152
                        *reinterpret_cast<const uint64_t*>(vals);
153
                return Status::OK();
154
            }
155
        }
156
        // when single is true and SIZE_OF_TYPE > 8 or single is false
157
44.7k
        memcpy(&_data[orig_size], vals, to_add_size);
158
44.7k
        return Status::OK();
159
44.7k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE29EE12add_internalILb0EEENS_6StatusEPKhPm
Line
Count
Source
108
43.9k
    inline Status add_internal(const uint8_t* vals, size_t* num_written) {
109
43.9k
        DCHECK(!_finished);
110
43.9k
        if (_remain_element_capacity == 0) {
111
0
            *num_written = 0;
112
0
            return Status::OK();
113
0
        }
114
115
        // When increasing the size of the memtabl flush threshold to a very large value, for example 15GB.
116
        // the row count of a single men tbl could be very large.
117
        // a real log:
118
        /*
119
        I20250823 19:01:16.153575 2982018 memtable_flush_executor.cpp:185] begin to flush memtable for tablet: 1755915952737, memsize: 15.11 GB, rows: 3751968
120
        */
121
        // This is not a very wide table, actually it just has two columns, int and array<float>
122
        // The write process of column array has two steps: write nested column(column float here), and write offsets column.
123
        // The row count of column array is 3751968, which is not that big, but each row of column array has 768 float numbers (this is a common case in vector search scenario).
124
        // so the row num of nested column float will be 3751968 * 768 = 2,881,511,424, which is bigger than INT32_MAX.
125
43.9k
        uint32_t to_add = cast_set<UInt32>(
126
43.9k
                std::min(cast_set<size_t>(_remain_element_capacity), *num_written));
127
        // Max value of to_add_size is less than STORAGE_PAGE_SIZE_DEFAULT_VALUE
128
43.9k
        int to_add_size = to_add * SIZE_OF_TYPE;
129
43.9k
        size_t orig_size = _data.size();
130
        // This may need a large memory, should return error if could not allocated
131
        // successfully, to avoid BE OOM.
132
43.9k
        RETURN_IF_CATCH_EXCEPTION(_data.resize(orig_size + to_add_size));
133
43.9k
        _count += to_add;
134
43.9k
        _remain_element_capacity -= to_add;
135
43.9k
        _raw_data_size += to_add_size;
136
        // return added number through count
137
43.9k
        *num_written = to_add;
138
        if constexpr (single) {
139
            if constexpr (SIZE_OF_TYPE == 1) {
140
                _data[orig_size] = *vals;
141
                return Status::OK();
142
            } else if constexpr (SIZE_OF_TYPE == 2) {
143
                *reinterpret_cast<uint16_t*>(&_data[orig_size]) =
144
                        *reinterpret_cast<const uint16_t*>(vals);
145
                return Status::OK();
146
            } else if constexpr (SIZE_OF_TYPE == 4) {
147
                *reinterpret_cast<uint32_t*>(&_data[orig_size]) =
148
                        *reinterpret_cast<const uint32_t*>(vals);
149
                return Status::OK();
150
            } else if constexpr (SIZE_OF_TYPE == 8) {
151
                *reinterpret_cast<uint64_t*>(&_data[orig_size]) =
152
                        *reinterpret_cast<const uint64_t*>(vals);
153
                return Status::OK();
154
            }
155
        }
156
        // when single is true and SIZE_OF_TYPE > 8 or single is false
157
43.9k
        memcpy(&_data[orig_size], vals, to_add_size);
158
43.9k
        return Status::OK();
159
43.9k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE41EE12add_internalILb0EEENS_6StatusEPKhPm
Line
Count
Source
108
334
    inline Status add_internal(const uint8_t* vals, size_t* num_written) {
109
334
        DCHECK(!_finished);
110
334
        if (_remain_element_capacity == 0) {
111
0
            *num_written = 0;
112
0
            return Status::OK();
113
0
        }
114
115
        // When increasing the size of the memtabl flush threshold to a very large value, for example 15GB.
116
        // the row count of a single men tbl could be very large.
117
        // a real log:
118
        /*
119
        I20250823 19:01:16.153575 2982018 memtable_flush_executor.cpp:185] begin to flush memtable for tablet: 1755915952737, memsize: 15.11 GB, rows: 3751968
120
        */
121
        // This is not a very wide table, actually it just has two columns, int and array<float>
122
        // The write process of column array has two steps: write nested column(column float here), and write offsets column.
123
        // The row count of column array is 3751968, which is not that big, but each row of column array has 768 float numbers (this is a common case in vector search scenario).
124
        // so the row num of nested column float will be 3751968 * 768 = 2,881,511,424, which is bigger than INT32_MAX.
125
334
        uint32_t to_add = cast_set<UInt32>(
126
334
                std::min(cast_set<size_t>(_remain_element_capacity), *num_written));
127
        // Max value of to_add_size is less than STORAGE_PAGE_SIZE_DEFAULT_VALUE
128
334
        int to_add_size = to_add * SIZE_OF_TYPE;
129
334
        size_t orig_size = _data.size();
130
        // This may need a large memory, should return error if could not allocated
131
        // successfully, to avoid BE OOM.
132
334
        RETURN_IF_CATCH_EXCEPTION(_data.resize(orig_size + to_add_size));
133
334
        _count += to_add;
134
334
        _remain_element_capacity -= to_add;
135
334
        _raw_data_size += to_add_size;
136
        // return added number through count
137
334
        *num_written = to_add;
138
        if constexpr (single) {
139
            if constexpr (SIZE_OF_TYPE == 1) {
140
                _data[orig_size] = *vals;
141
                return Status::OK();
142
            } else if constexpr (SIZE_OF_TYPE == 2) {
143
                *reinterpret_cast<uint16_t*>(&_data[orig_size]) =
144
                        *reinterpret_cast<const uint16_t*>(vals);
145
                return Status::OK();
146
            } else if constexpr (SIZE_OF_TYPE == 4) {
147
                *reinterpret_cast<uint32_t*>(&_data[orig_size]) =
148
                        *reinterpret_cast<const uint32_t*>(vals);
149
                return Status::OK();
150
            } else if constexpr (SIZE_OF_TYPE == 8) {
151
                *reinterpret_cast<uint64_t*>(&_data[orig_size]) =
152
                        *reinterpret_cast<const uint64_t*>(vals);
153
                return Status::OK();
154
            }
155
        }
156
        // when single is true and SIZE_OF_TYPE > 8 or single is false
157
334
        memcpy(&_data[orig_size], vals, to_add_size);
158
334
        return Status::OK();
159
334
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE15EE12add_internalILb0EEENS_6StatusEPKhPm
Line
Count
Source
108
558
    inline Status add_internal(const uint8_t* vals, size_t* num_written) {
109
558
        DCHECK(!_finished);
110
558
        if (_remain_element_capacity == 0) {
111
0
            *num_written = 0;
112
0
            return Status::OK();
113
0
        }
114
115
        // When increasing the size of the memtabl flush threshold to a very large value, for example 15GB.
116
        // the row count of a single men tbl could be very large.
117
        // a real log:
118
        /*
119
        I20250823 19:01:16.153575 2982018 memtable_flush_executor.cpp:185] begin to flush memtable for tablet: 1755915952737, memsize: 15.11 GB, rows: 3751968
120
        */
121
        // This is not a very wide table, actually it just has two columns, int and array<float>
122
        // The write process of column array has two steps: write nested column(column float here), and write offsets column.
123
        // The row count of column array is 3751968, which is not that big, but each row of column array has 768 float numbers (this is a common case in vector search scenario).
124
        // so the row num of nested column float will be 3751968 * 768 = 2,881,511,424, which is bigger than INT32_MAX.
125
558
        uint32_t to_add = cast_set<UInt32>(
126
558
                std::min(cast_set<size_t>(_remain_element_capacity), *num_written));
127
        // Max value of to_add_size is less than STORAGE_PAGE_SIZE_DEFAULT_VALUE
128
558
        int to_add_size = to_add * SIZE_OF_TYPE;
129
558
        size_t orig_size = _data.size();
130
        // This may need a large memory, should return error if could not allocated
131
        // successfully, to avoid BE OOM.
132
558
        RETURN_IF_CATCH_EXCEPTION(_data.resize(orig_size + to_add_size));
133
558
        _count += to_add;
134
558
        _remain_element_capacity -= to_add;
135
558
        _raw_data_size += to_add_size;
136
        // return added number through count
137
558
        *num_written = to_add;
138
        if constexpr (single) {
139
            if constexpr (SIZE_OF_TYPE == 1) {
140
                _data[orig_size] = *vals;
141
                return Status::OK();
142
            } else if constexpr (SIZE_OF_TYPE == 2) {
143
                *reinterpret_cast<uint16_t*>(&_data[orig_size]) =
144
                        *reinterpret_cast<const uint16_t*>(vals);
145
                return Status::OK();
146
            } else if constexpr (SIZE_OF_TYPE == 4) {
147
                *reinterpret_cast<uint32_t*>(&_data[orig_size]) =
148
                        *reinterpret_cast<const uint32_t*>(vals);
149
                return Status::OK();
150
            } else if constexpr (SIZE_OF_TYPE == 8) {
151
                *reinterpret_cast<uint64_t*>(&_data[orig_size]) =
152
                        *reinterpret_cast<const uint64_t*>(vals);
153
                return Status::OK();
154
            }
155
        }
156
        // when single is true and SIZE_OF_TYPE > 8 or single is false
157
558
        memcpy(&_data[orig_size], vals, to_add_size);
158
558
        return Status::OK();
159
558
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE40EE12add_internalILb0EEENS_6StatusEPKhPm
Line
Count
Source
108
7.75k
    inline Status add_internal(const uint8_t* vals, size_t* num_written) {
109
7.75k
        DCHECK(!_finished);
110
7.75k
        if (_remain_element_capacity == 0) {
111
0
            *num_written = 0;
112
0
            return Status::OK();
113
0
        }
114
115
        // When increasing the size of the memtabl flush threshold to a very large value, for example 15GB.
116
        // the row count of a single men tbl could be very large.
117
        // a real log:
118
        /*
119
        I20250823 19:01:16.153575 2982018 memtable_flush_executor.cpp:185] begin to flush memtable for tablet: 1755915952737, memsize: 15.11 GB, rows: 3751968
120
        */
121
        // This is not a very wide table, actually it just has two columns, int and array<float>
122
        // The write process of column array has two steps: write nested column(column float here), and write offsets column.
123
        // The row count of column array is 3751968, which is not that big, but each row of column array has 768 float numbers (this is a common case in vector search scenario).
124
        // so the row num of nested column float will be 3751968 * 768 = 2,881,511,424, which is bigger than INT32_MAX.
125
7.75k
        uint32_t to_add = cast_set<UInt32>(
126
7.75k
                std::min(cast_set<size_t>(_remain_element_capacity), *num_written));
127
        // Max value of to_add_size is less than STORAGE_PAGE_SIZE_DEFAULT_VALUE
128
7.75k
        int to_add_size = to_add * SIZE_OF_TYPE;
129
7.75k
        size_t orig_size = _data.size();
130
        // This may need a large memory, should return error if could not allocated
131
        // successfully, to avoid BE OOM.
132
7.75k
        RETURN_IF_CATCH_EXCEPTION(_data.resize(orig_size + to_add_size));
133
7.75k
        _count += to_add;
134
7.75k
        _remain_element_capacity -= to_add;
135
7.75k
        _raw_data_size += to_add_size;
136
        // return added number through count
137
7.75k
        *num_written = to_add;
138
        if constexpr (single) {
139
            if constexpr (SIZE_OF_TYPE == 1) {
140
                _data[orig_size] = *vals;
141
                return Status::OK();
142
            } else if constexpr (SIZE_OF_TYPE == 2) {
143
                *reinterpret_cast<uint16_t*>(&_data[orig_size]) =
144
                        *reinterpret_cast<const uint16_t*>(vals);
145
                return Status::OK();
146
            } else if constexpr (SIZE_OF_TYPE == 4) {
147
                *reinterpret_cast<uint32_t*>(&_data[orig_size]) =
148
                        *reinterpret_cast<const uint32_t*>(vals);
149
                return Status::OK();
150
            } else if constexpr (SIZE_OF_TYPE == 8) {
151
                *reinterpret_cast<uint64_t*>(&_data[orig_size]) =
152
                        *reinterpret_cast<const uint64_t*>(vals);
153
                return Status::OK();
154
            }
155
        }
156
        // when single is true and SIZE_OF_TYPE > 8 or single is false
157
7.75k
        memcpy(&_data[orig_size], vals, to_add_size);
158
7.75k
        return Status::OK();
159
7.75k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE16EE12add_internalILb0EEENS_6StatusEPKhPm
Line
Count
Source
108
302
    inline Status add_internal(const uint8_t* vals, size_t* num_written) {
109
302
        DCHECK(!_finished);
110
302
        if (_remain_element_capacity == 0) {
111
0
            *num_written = 0;
112
0
            return Status::OK();
113
0
        }
114
115
        // When increasing the size of the memtabl flush threshold to a very large value, for example 15GB.
116
        // the row count of a single men tbl could be very large.
117
        // a real log:
118
        /*
119
        I20250823 19:01:16.153575 2982018 memtable_flush_executor.cpp:185] begin to flush memtable for tablet: 1755915952737, memsize: 15.11 GB, rows: 3751968
120
        */
121
        // This is not a very wide table, actually it just has two columns, int and array<float>
122
        // The write process of column array has two steps: write nested column(column float here), and write offsets column.
123
        // The row count of column array is 3751968, which is not that big, but each row of column array has 768 float numbers (this is a common case in vector search scenario).
124
        // so the row num of nested column float will be 3751968 * 768 = 2,881,511,424, which is bigger than INT32_MAX.
125
302
        uint32_t to_add = cast_set<UInt32>(
126
302
                std::min(cast_set<size_t>(_remain_element_capacity), *num_written));
127
        // Max value of to_add_size is less than STORAGE_PAGE_SIZE_DEFAULT_VALUE
128
302
        int to_add_size = to_add * SIZE_OF_TYPE;
129
302
        size_t orig_size = _data.size();
130
        // This may need a large memory, should return error if could not allocated
131
        // successfully, to avoid BE OOM.
132
302
        RETURN_IF_CATCH_EXCEPTION(_data.resize(orig_size + to_add_size));
133
302
        _count += to_add;
134
302
        _remain_element_capacity -= to_add;
135
302
        _raw_data_size += to_add_size;
136
        // return added number through count
137
302
        *num_written = to_add;
138
        if constexpr (single) {
139
            if constexpr (SIZE_OF_TYPE == 1) {
140
                _data[orig_size] = *vals;
141
                return Status::OK();
142
            } else if constexpr (SIZE_OF_TYPE == 2) {
143
                *reinterpret_cast<uint16_t*>(&_data[orig_size]) =
144
                        *reinterpret_cast<const uint16_t*>(vals);
145
                return Status::OK();
146
            } else if constexpr (SIZE_OF_TYPE == 4) {
147
                *reinterpret_cast<uint32_t*>(&_data[orig_size]) =
148
                        *reinterpret_cast<const uint32_t*>(vals);
149
                return Status::OK();
150
            } else if constexpr (SIZE_OF_TYPE == 8) {
151
                *reinterpret_cast<uint64_t*>(&_data[orig_size]) =
152
                        *reinterpret_cast<const uint64_t*>(vals);
153
                return Status::OK();
154
            }
155
        }
156
        // when single is true and SIZE_OF_TYPE > 8 or single is false
157
302
        memcpy(&_data[orig_size], vals, to_add_size);
158
302
        return Status::OK();
159
302
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE31EE12add_internalILb0EEENS_6StatusEPKhPm
Line
Count
Source
108
5.24k
    inline Status add_internal(const uint8_t* vals, size_t* num_written) {
109
5.24k
        DCHECK(!_finished);
110
5.24k
        if (_remain_element_capacity == 0) {
111
0
            *num_written = 0;
112
0
            return Status::OK();
113
0
        }
114
115
        // When increasing the size of the memtabl flush threshold to a very large value, for example 15GB.
116
        // the row count of a single men tbl could be very large.
117
        // a real log:
118
        /*
119
        I20250823 19:01:16.153575 2982018 memtable_flush_executor.cpp:185] begin to flush memtable for tablet: 1755915952737, memsize: 15.11 GB, rows: 3751968
120
        */
121
        // This is not a very wide table, actually it just has two columns, int and array<float>
122
        // The write process of column array has two steps: write nested column(column float here), and write offsets column.
123
        // The row count of column array is 3751968, which is not that big, but each row of column array has 768 float numbers (this is a common case in vector search scenario).
124
        // so the row num of nested column float will be 3751968 * 768 = 2,881,511,424, which is bigger than INT32_MAX.
125
5.24k
        uint32_t to_add = cast_set<UInt32>(
126
5.24k
                std::min(cast_set<size_t>(_remain_element_capacity), *num_written));
127
        // Max value of to_add_size is less than STORAGE_PAGE_SIZE_DEFAULT_VALUE
128
5.24k
        int to_add_size = to_add * SIZE_OF_TYPE;
129
5.24k
        size_t orig_size = _data.size();
130
        // This may need a large memory, should return error if could not allocated
131
        // successfully, to avoid BE OOM.
132
5.24k
        RETURN_IF_CATCH_EXCEPTION(_data.resize(orig_size + to_add_size));
133
5.24k
        _count += to_add;
134
5.24k
        _remain_element_capacity -= to_add;
135
5.24k
        _raw_data_size += to_add_size;
136
        // return added number through count
137
5.24k
        *num_written = to_add;
138
        if constexpr (single) {
139
            if constexpr (SIZE_OF_TYPE == 1) {
140
                _data[orig_size] = *vals;
141
                return Status::OK();
142
            } else if constexpr (SIZE_OF_TYPE == 2) {
143
                *reinterpret_cast<uint16_t*>(&_data[orig_size]) =
144
                        *reinterpret_cast<const uint16_t*>(vals);
145
                return Status::OK();
146
            } else if constexpr (SIZE_OF_TYPE == 4) {
147
                *reinterpret_cast<uint32_t*>(&_data[orig_size]) =
148
                        *reinterpret_cast<const uint32_t*>(vals);
149
                return Status::OK();
150
            } else if constexpr (SIZE_OF_TYPE == 8) {
151
                *reinterpret_cast<uint64_t*>(&_data[orig_size]) =
152
                        *reinterpret_cast<const uint64_t*>(vals);
153
                return Status::OK();
154
            }
155
        }
156
        // when single is true and SIZE_OF_TYPE > 8 or single is false
157
5.24k
        memcpy(&_data[orig_size], vals, to_add_size);
158
5.24k
        return Status::OK();
159
5.24k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE32EE12add_internalILb0EEENS_6StatusEPKhPm
Line
Count
Source
108
24.6k
    inline Status add_internal(const uint8_t* vals, size_t* num_written) {
109
24.6k
        DCHECK(!_finished);
110
24.6k
        if (_remain_element_capacity == 0) {
111
0
            *num_written = 0;
112
0
            return Status::OK();
113
0
        }
114
115
        // When increasing the size of the memtabl flush threshold to a very large value, for example 15GB.
116
        // the row count of a single men tbl could be very large.
117
        // a real log:
118
        /*
119
        I20250823 19:01:16.153575 2982018 memtable_flush_executor.cpp:185] begin to flush memtable for tablet: 1755915952737, memsize: 15.11 GB, rows: 3751968
120
        */
121
        // This is not a very wide table, actually it just has two columns, int and array<float>
122
        // The write process of column array has two steps: write nested column(column float here), and write offsets column.
123
        // The row count of column array is 3751968, which is not that big, but each row of column array has 768 float numbers (this is a common case in vector search scenario).
124
        // so the row num of nested column float will be 3751968 * 768 = 2,881,511,424, which is bigger than INT32_MAX.
125
24.6k
        uint32_t to_add = cast_set<UInt32>(
126
24.6k
                std::min(cast_set<size_t>(_remain_element_capacity), *num_written));
127
        // Max value of to_add_size is less than STORAGE_PAGE_SIZE_DEFAULT_VALUE
128
24.6k
        int to_add_size = to_add * SIZE_OF_TYPE;
129
24.6k
        size_t orig_size = _data.size();
130
        // This may need a large memory, should return error if could not allocated
131
        // successfully, to avoid BE OOM.
132
24.6k
        RETURN_IF_CATCH_EXCEPTION(_data.resize(orig_size + to_add_size));
133
24.6k
        _count += to_add;
134
24.6k
        _remain_element_capacity -= to_add;
135
24.6k
        _raw_data_size += to_add_size;
136
        // return added number through count
137
24.6k
        *num_written = to_add;
138
        if constexpr (single) {
139
            if constexpr (SIZE_OF_TYPE == 1) {
140
                _data[orig_size] = *vals;
141
                return Status::OK();
142
            } else if constexpr (SIZE_OF_TYPE == 2) {
143
                *reinterpret_cast<uint16_t*>(&_data[orig_size]) =
144
                        *reinterpret_cast<const uint16_t*>(vals);
145
                return Status::OK();
146
            } else if constexpr (SIZE_OF_TYPE == 4) {
147
                *reinterpret_cast<uint32_t*>(&_data[orig_size]) =
148
                        *reinterpret_cast<const uint32_t*>(vals);
149
                return Status::OK();
150
            } else if constexpr (SIZE_OF_TYPE == 8) {
151
                *reinterpret_cast<uint64_t*>(&_data[orig_size]) =
152
                        *reinterpret_cast<const uint64_t*>(vals);
153
                return Status::OK();
154
            }
155
        }
156
        // when single is true and SIZE_OF_TYPE > 8 or single is false
157
24.6k
        memcpy(&_data[orig_size], vals, to_add_size);
158
24.6k
        return Status::OK();
159
24.6k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE33EE12add_internalILb0EEENS_6StatusEPKhPm
Line
Count
Source
108
18.0k
    inline Status add_internal(const uint8_t* vals, size_t* num_written) {
109
18.0k
        DCHECK(!_finished);
110
18.0k
        if (_remain_element_capacity == 0) {
111
0
            *num_written = 0;
112
0
            return Status::OK();
113
0
        }
114
115
        // When increasing the size of the memtabl flush threshold to a very large value, for example 15GB.
116
        // the row count of a single men tbl could be very large.
117
        // a real log:
118
        /*
119
        I20250823 19:01:16.153575 2982018 memtable_flush_executor.cpp:185] begin to flush memtable for tablet: 1755915952737, memsize: 15.11 GB, rows: 3751968
120
        */
121
        // This is not a very wide table, actually it just has two columns, int and array<float>
122
        // The write process of column array has two steps: write nested column(column float here), and write offsets column.
123
        // The row count of column array is 3751968, which is not that big, but each row of column array has 768 float numbers (this is a common case in vector search scenario).
124
        // so the row num of nested column float will be 3751968 * 768 = 2,881,511,424, which is bigger than INT32_MAX.
125
18.0k
        uint32_t to_add = cast_set<UInt32>(
126
18.0k
                std::min(cast_set<size_t>(_remain_element_capacity), *num_written));
127
        // Max value of to_add_size is less than STORAGE_PAGE_SIZE_DEFAULT_VALUE
128
18.0k
        int to_add_size = to_add * SIZE_OF_TYPE;
129
18.0k
        size_t orig_size = _data.size();
130
        // This may need a large memory, should return error if could not allocated
131
        // successfully, to avoid BE OOM.
132
18.0k
        RETURN_IF_CATCH_EXCEPTION(_data.resize(orig_size + to_add_size));
133
18.0k
        _count += to_add;
134
18.0k
        _remain_element_capacity -= to_add;
135
18.0k
        _raw_data_size += to_add_size;
136
        // return added number through count
137
18.0k
        *num_written = to_add;
138
        if constexpr (single) {
139
            if constexpr (SIZE_OF_TYPE == 1) {
140
                _data[orig_size] = *vals;
141
                return Status::OK();
142
            } else if constexpr (SIZE_OF_TYPE == 2) {
143
                *reinterpret_cast<uint16_t*>(&_data[orig_size]) =
144
                        *reinterpret_cast<const uint16_t*>(vals);
145
                return Status::OK();
146
            } else if constexpr (SIZE_OF_TYPE == 4) {
147
                *reinterpret_cast<uint32_t*>(&_data[orig_size]) =
148
                        *reinterpret_cast<const uint32_t*>(vals);
149
                return Status::OK();
150
            } else if constexpr (SIZE_OF_TYPE == 8) {
151
                *reinterpret_cast<uint64_t*>(&_data[orig_size]) =
152
                        *reinterpret_cast<const uint64_t*>(vals);
153
                return Status::OK();
154
            }
155
        }
156
        // when single is true and SIZE_OF_TYPE > 8 or single is false
157
18.0k
        memcpy(&_data[orig_size], vals, to_add_size);
158
18.0k
        return Status::OK();
159
18.0k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE37EE12add_internalILb0EEENS_6StatusEPKhPm
Line
Count
Source
108
1.46k
    inline Status add_internal(const uint8_t* vals, size_t* num_written) {
109
1.46k
        DCHECK(!_finished);
110
1.46k
        if (_remain_element_capacity == 0) {
111
0
            *num_written = 0;
112
0
            return Status::OK();
113
0
        }
114
115
        // When increasing the size of the memtabl flush threshold to a very large value, for example 15GB.
116
        // the row count of a single men tbl could be very large.
117
        // a real log:
118
        /*
119
        I20250823 19:01:16.153575 2982018 memtable_flush_executor.cpp:185] begin to flush memtable for tablet: 1755915952737, memsize: 15.11 GB, rows: 3751968
120
        */
121
        // This is not a very wide table, actually it just has two columns, int and array<float>
122
        // The write process of column array has two steps: write nested column(column float here), and write offsets column.
123
        // The row count of column array is 3751968, which is not that big, but each row of column array has 768 float numbers (this is a common case in vector search scenario).
124
        // so the row num of nested column float will be 3751968 * 768 = 2,881,511,424, which is bigger than INT32_MAX.
125
1.46k
        uint32_t to_add = cast_set<UInt32>(
126
1.46k
                std::min(cast_set<size_t>(_remain_element_capacity), *num_written));
127
        // Max value of to_add_size is less than STORAGE_PAGE_SIZE_DEFAULT_VALUE
128
1.46k
        int to_add_size = to_add * SIZE_OF_TYPE;
129
1.46k
        size_t orig_size = _data.size();
130
        // This may need a large memory, should return error if could not allocated
131
        // successfully, to avoid BE OOM.
132
1.46k
        RETURN_IF_CATCH_EXCEPTION(_data.resize(orig_size + to_add_size));
133
1.46k
        _count += to_add;
134
1.46k
        _remain_element_capacity -= to_add;
135
1.46k
        _raw_data_size += to_add_size;
136
        // return added number through count
137
1.46k
        *num_written = to_add;
138
        if constexpr (single) {
139
            if constexpr (SIZE_OF_TYPE == 1) {
140
                _data[orig_size] = *vals;
141
                return Status::OK();
142
            } else if constexpr (SIZE_OF_TYPE == 2) {
143
                *reinterpret_cast<uint16_t*>(&_data[orig_size]) =
144
                        *reinterpret_cast<const uint16_t*>(vals);
145
                return Status::OK();
146
            } else if constexpr (SIZE_OF_TYPE == 4) {
147
                *reinterpret_cast<uint32_t*>(&_data[orig_size]) =
148
                        *reinterpret_cast<const uint32_t*>(vals);
149
                return Status::OK();
150
            } else if constexpr (SIZE_OF_TYPE == 8) {
151
                *reinterpret_cast<uint64_t*>(&_data[orig_size]) =
152
                        *reinterpret_cast<const uint64_t*>(vals);
153
                return Status::OK();
154
            }
155
        }
156
        // when single is true and SIZE_OF_TYPE > 8 or single is false
157
1.46k
        memcpy(&_data[orig_size], vals, to_add_size);
158
1.46k
        return Status::OK();
159
1.46k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE38EE12add_internalILb0EEENS_6StatusEPKhPm
Line
Count
Source
108
669
    inline Status add_internal(const uint8_t* vals, size_t* num_written) {
109
669
        DCHECK(!_finished);
110
669
        if (_remain_element_capacity == 0) {
111
0
            *num_written = 0;
112
0
            return Status::OK();
113
0
        }
114
115
        // When increasing the size of the memtabl flush threshold to a very large value, for example 15GB.
116
        // the row count of a single men tbl could be very large.
117
        // a real log:
118
        /*
119
        I20250823 19:01:16.153575 2982018 memtable_flush_executor.cpp:185] begin to flush memtable for tablet: 1755915952737, memsize: 15.11 GB, rows: 3751968
120
        */
121
        // This is not a very wide table, actually it just has two columns, int and array<float>
122
        // The write process of column array has two steps: write nested column(column float here), and write offsets column.
123
        // The row count of column array is 3751968, which is not that big, but each row of column array has 768 float numbers (this is a common case in vector search scenario).
124
        // so the row num of nested column float will be 3751968 * 768 = 2,881,511,424, which is bigger than INT32_MAX.
125
669
        uint32_t to_add = cast_set<UInt32>(
126
669
                std::min(cast_set<size_t>(_remain_element_capacity), *num_written));
127
        // Max value of to_add_size is less than STORAGE_PAGE_SIZE_DEFAULT_VALUE
128
669
        int to_add_size = to_add * SIZE_OF_TYPE;
129
669
        size_t orig_size = _data.size();
130
        // This may need a large memory, should return error if could not allocated
131
        // successfully, to avoid BE OOM.
132
669
        RETURN_IF_CATCH_EXCEPTION(_data.resize(orig_size + to_add_size));
133
669
        _count += to_add;
134
669
        _remain_element_capacity -= to_add;
135
669
        _raw_data_size += to_add_size;
136
        // return added number through count
137
669
        *num_written = to_add;
138
        if constexpr (single) {
139
            if constexpr (SIZE_OF_TYPE == 1) {
140
                _data[orig_size] = *vals;
141
                return Status::OK();
142
            } else if constexpr (SIZE_OF_TYPE == 2) {
143
                *reinterpret_cast<uint16_t*>(&_data[orig_size]) =
144
                        *reinterpret_cast<const uint16_t*>(vals);
145
                return Status::OK();
146
            } else if constexpr (SIZE_OF_TYPE == 4) {
147
                *reinterpret_cast<uint32_t*>(&_data[orig_size]) =
148
                        *reinterpret_cast<const uint32_t*>(vals);
149
                return Status::OK();
150
            } else if constexpr (SIZE_OF_TYPE == 8) {
151
                *reinterpret_cast<uint64_t*>(&_data[orig_size]) =
152
                        *reinterpret_cast<const uint64_t*>(vals);
153
                return Status::OK();
154
            }
155
        }
156
        // when single is true and SIZE_OF_TYPE > 8 or single is false
157
669
        memcpy(&_data[orig_size], vals, to_add_size);
158
669
        return Status::OK();
159
669
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE39EE12add_internalILb0EEENS_6StatusEPKhPm
Line
Count
Source
108
692
    inline Status add_internal(const uint8_t* vals, size_t* num_written) {
109
692
        DCHECK(!_finished);
110
692
        if (_remain_element_capacity == 0) {
111
0
            *num_written = 0;
112
0
            return Status::OK();
113
0
        }
114
115
        // When increasing the size of the memtabl flush threshold to a very large value, for example 15GB.
116
        // the row count of a single men tbl could be very large.
117
        // a real log:
118
        /*
119
        I20250823 19:01:16.153575 2982018 memtable_flush_executor.cpp:185] begin to flush memtable for tablet: 1755915952737, memsize: 15.11 GB, rows: 3751968
120
        */
121
        // This is not a very wide table, actually it just has two columns, int and array<float>
122
        // The write process of column array has two steps: write nested column(column float here), and write offsets column.
123
        // The row count of column array is 3751968, which is not that big, but each row of column array has 768 float numbers (this is a common case in vector search scenario).
124
        // so the row num of nested column float will be 3751968 * 768 = 2,881,511,424, which is bigger than INT32_MAX.
125
692
        uint32_t to_add = cast_set<UInt32>(
126
692
                std::min(cast_set<size_t>(_remain_element_capacity), *num_written));
127
        // Max value of to_add_size is less than STORAGE_PAGE_SIZE_DEFAULT_VALUE
128
692
        int to_add_size = to_add * SIZE_OF_TYPE;
129
692
        size_t orig_size = _data.size();
130
        // This may need a large memory, should return error if could not allocated
131
        // successfully, to avoid BE OOM.
132
692
        RETURN_IF_CATCH_EXCEPTION(_data.resize(orig_size + to_add_size));
133
692
        _count += to_add;
134
692
        _remain_element_capacity -= to_add;
135
692
        _raw_data_size += to_add_size;
136
        // return added number through count
137
692
        *num_written = to_add;
138
        if constexpr (single) {
139
            if constexpr (SIZE_OF_TYPE == 1) {
140
                _data[orig_size] = *vals;
141
                return Status::OK();
142
            } else if constexpr (SIZE_OF_TYPE == 2) {
143
                *reinterpret_cast<uint16_t*>(&_data[orig_size]) =
144
                        *reinterpret_cast<const uint16_t*>(vals);
145
                return Status::OK();
146
            } else if constexpr (SIZE_OF_TYPE == 4) {
147
                *reinterpret_cast<uint32_t*>(&_data[orig_size]) =
148
                        *reinterpret_cast<const uint32_t*>(vals);
149
                return Status::OK();
150
            } else if constexpr (SIZE_OF_TYPE == 8) {
151
                *reinterpret_cast<uint64_t*>(&_data[orig_size]) =
152
                        *reinterpret_cast<const uint64_t*>(vals);
153
                return Status::OK();
154
            }
155
        }
156
        // when single is true and SIZE_OF_TYPE > 8 or single is false
157
692
        memcpy(&_data[orig_size], vals, to_add_size);
158
692
        return Status::OK();
159
692
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE42EE12add_internalILb0EEENS_6StatusEPKhPm
Line
Count
Source
108
26.6k
    inline Status add_internal(const uint8_t* vals, size_t* num_written) {
109
26.6k
        DCHECK(!_finished);
110
26.6k
        if (_remain_element_capacity == 0) {
111
0
            *num_written = 0;
112
0
            return Status::OK();
113
0
        }
114
115
        // When increasing the size of the memtabl flush threshold to a very large value, for example 15GB.
116
        // the row count of a single men tbl could be very large.
117
        // a real log:
118
        /*
119
        I20250823 19:01:16.153575 2982018 memtable_flush_executor.cpp:185] begin to flush memtable for tablet: 1755915952737, memsize: 15.11 GB, rows: 3751968
120
        */
121
        // This is not a very wide table, actually it just has two columns, int and array<float>
122
        // The write process of column array has two steps: write nested column(column float here), and write offsets column.
123
        // The row count of column array is 3751968, which is not that big, but each row of column array has 768 float numbers (this is a common case in vector search scenario).
124
        // so the row num of nested column float will be 3751968 * 768 = 2,881,511,424, which is bigger than INT32_MAX.
125
26.6k
        uint32_t to_add = cast_set<UInt32>(
126
26.6k
                std::min(cast_set<size_t>(_remain_element_capacity), *num_written));
127
        // Max value of to_add_size is less than STORAGE_PAGE_SIZE_DEFAULT_VALUE
128
26.6k
        int to_add_size = to_add * SIZE_OF_TYPE;
129
26.6k
        size_t orig_size = _data.size();
130
        // This may need a large memory, should return error if could not allocated
131
        // successfully, to avoid BE OOM.
132
26.6k
        RETURN_IF_CATCH_EXCEPTION(_data.resize(orig_size + to_add_size));
133
26.6k
        _count += to_add;
134
26.6k
        _remain_element_capacity -= to_add;
135
26.6k
        _raw_data_size += to_add_size;
136
        // return added number through count
137
26.6k
        *num_written = to_add;
138
        if constexpr (single) {
139
            if constexpr (SIZE_OF_TYPE == 1) {
140
                _data[orig_size] = *vals;
141
                return Status::OK();
142
            } else if constexpr (SIZE_OF_TYPE == 2) {
143
                *reinterpret_cast<uint16_t*>(&_data[orig_size]) =
144
                        *reinterpret_cast<const uint16_t*>(vals);
145
                return Status::OK();
146
            } else if constexpr (SIZE_OF_TYPE == 4) {
147
                *reinterpret_cast<uint32_t*>(&_data[orig_size]) =
148
                        *reinterpret_cast<const uint32_t*>(vals);
149
                return Status::OK();
150
            } else if constexpr (SIZE_OF_TYPE == 8) {
151
                *reinterpret_cast<uint64_t*>(&_data[orig_size]) =
152
                        *reinterpret_cast<const uint64_t*>(vals);
153
                return Status::OK();
154
            }
155
        }
156
        // when single is true and SIZE_OF_TYPE > 8 or single is false
157
26.6k
        memcpy(&_data[orig_size], vals, to_add_size);
158
26.6k
        return Status::OK();
159
26.6k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE5EE12add_internalILb1EEENS_6StatusEPKhPm
Line
Count
Source
108
140M
    inline Status add_internal(const uint8_t* vals, size_t* num_written) {
109
140M
        DCHECK(!_finished);
110
140M
        if (_remain_element_capacity == 0) {
111
0
            *num_written = 0;
112
0
            return Status::OK();
113
0
        }
114
115
        // When increasing the size of the memtabl flush threshold to a very large value, for example 15GB.
116
        // the row count of a single men tbl could be very large.
117
        // a real log:
118
        /*
119
        I20250823 19:01:16.153575 2982018 memtable_flush_executor.cpp:185] begin to flush memtable for tablet: 1755915952737, memsize: 15.11 GB, rows: 3751968
120
        */
121
        // This is not a very wide table, actually it just has two columns, int and array<float>
122
        // The write process of column array has two steps: write nested column(column float here), and write offsets column.
123
        // The row count of column array is 3751968, which is not that big, but each row of column array has 768 float numbers (this is a common case in vector search scenario).
124
        // so the row num of nested column float will be 3751968 * 768 = 2,881,511,424, which is bigger than INT32_MAX.
125
140M
        uint32_t to_add = cast_set<UInt32>(
126
140M
                std::min(cast_set<size_t>(_remain_element_capacity), *num_written));
127
        // Max value of to_add_size is less than STORAGE_PAGE_SIZE_DEFAULT_VALUE
128
140M
        int to_add_size = to_add * SIZE_OF_TYPE;
129
140M
        size_t orig_size = _data.size();
130
        // This may need a large memory, should return error if could not allocated
131
        // successfully, to avoid BE OOM.
132
140M
        RETURN_IF_CATCH_EXCEPTION(_data.resize(orig_size + to_add_size));
133
143M
        _count += to_add;
134
143M
        _remain_element_capacity -= to_add;
135
143M
        _raw_data_size += to_add_size;
136
        // return added number through count
137
143M
        *num_written = to_add;
138
143M
        if constexpr (single) {
139
            if constexpr (SIZE_OF_TYPE == 1) {
140
                _data[orig_size] = *vals;
141
                return Status::OK();
142
            } else if constexpr (SIZE_OF_TYPE == 2) {
143
                *reinterpret_cast<uint16_t*>(&_data[orig_size]) =
144
                        *reinterpret_cast<const uint16_t*>(vals);
145
                return Status::OK();
146
143M
            } else if constexpr (SIZE_OF_TYPE == 4) {
147
143M
                *reinterpret_cast<uint32_t*>(&_data[orig_size]) =
148
143M
                        *reinterpret_cast<const uint32_t*>(vals);
149
143M
                return Status::OK();
150
            } else if constexpr (SIZE_OF_TYPE == 8) {
151
                *reinterpret_cast<uint64_t*>(&_data[orig_size]) =
152
                        *reinterpret_cast<const uint64_t*>(vals);
153
                return Status::OK();
154
            }
155
143M
        }
156
        // when single is true and SIZE_OF_TYPE > 8 or single is false
157
0
        memcpy(&_data[orig_size], vals, to_add_size);
158
143M
        return Status::OK();
159
140M
    }
160
161
684k
    Status finish(OwnedSlice* slice) override {
162
684k
        RETURN_IF_CATCH_EXCEPTION({ *slice = _finish(SIZE_OF_TYPE); });
163
684k
        return Status::OK();
164
684k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE1EE6finishEPNS_10OwnedSliceE
Line
Count
Source
161
44.0k
    Status finish(OwnedSlice* slice) override {
162
44.0k
        RETURN_IF_CATCH_EXCEPTION({ *slice = _finish(SIZE_OF_TYPE); });
163
44.0k
        return Status::OK();
164
44.0k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE3EE6finishEPNS_10OwnedSliceE
Line
Count
Source
161
9.67k
    Status finish(OwnedSlice* slice) override {
162
9.67k
        RETURN_IF_CATCH_EXCEPTION({ *slice = _finish(SIZE_OF_TYPE); });
163
9.67k
        return Status::OK();
164
9.67k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE5EE6finishEPNS_10OwnedSliceE
Line
Count
Source
161
346k
    Status finish(OwnedSlice* slice) override {
162
346k
        RETURN_IF_CATCH_EXCEPTION({ *slice = _finish(SIZE_OF_TYPE); });
163
346k
        return Status::OK();
164
346k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE7EE6finishEPNS_10OwnedSliceE
Line
Count
Source
161
51.4k
    Status finish(OwnedSlice* slice) override {
162
51.4k
        RETURN_IF_CATCH_EXCEPTION({ *slice = _finish(SIZE_OF_TYPE); });
163
51.4k
        return Status::OK();
164
51.4k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE9EE6finishEPNS_10OwnedSliceE
Line
Count
Source
161
11.9k
    Status finish(OwnedSlice* slice) override {
162
11.9k
        RETURN_IF_CATCH_EXCEPTION({ *slice = _finish(SIZE_OF_TYPE); });
163
11.9k
        return Status::OK();
164
11.9k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE8EE6finishEPNS_10OwnedSliceE
Line
Count
Source
161
65.2k
    Status finish(OwnedSlice* slice) override {
162
65.2k
        RETURN_IF_CATCH_EXCEPTION({ *slice = _finish(SIZE_OF_TYPE); });
163
65.2k
        return Status::OK();
164
65.2k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE6EE6finishEPNS_10OwnedSliceE
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE10EE6finishEPNS_10OwnedSliceE
Line
Count
Source
161
7.56k
    Status finish(OwnedSlice* slice) override {
162
7.56k
        RETURN_IF_CATCH_EXCEPTION({ *slice = _finish(SIZE_OF_TYPE); });
163
7.56k
        return Status::OK();
164
7.56k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE11EE6finishEPNS_10OwnedSliceE
Line
Count
Source
161
8.69k
    Status finish(OwnedSlice* slice) override {
162
8.69k
        RETURN_IF_CATCH_EXCEPTION({ *slice = _finish(SIZE_OF_TYPE); });
163
8.69k
        return Status::OK();
164
8.69k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE24EE6finishEPNS_10OwnedSliceE
Line
Count
Source
161
6
    Status finish(OwnedSlice* slice) override {
162
6
        RETURN_IF_CATCH_EXCEPTION({ *slice = _finish(SIZE_OF_TYPE); });
163
6
        return Status::OK();
164
6
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE14EE6finishEPNS_10OwnedSliceE
Line
Count
Source
161
351
    Status finish(OwnedSlice* slice) override {
162
351
        RETURN_IF_CATCH_EXCEPTION({ *slice = _finish(SIZE_OF_TYPE); });
163
351
        return Status::OK();
164
351
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE28EE6finishEPNS_10OwnedSliceE
Line
Count
Source
161
38.1k
    Status finish(OwnedSlice* slice) override {
162
38.1k
        RETURN_IF_CATCH_EXCEPTION({ *slice = _finish(SIZE_OF_TYPE); });
163
38.1k
        return Status::OK();
164
38.1k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE29EE6finishEPNS_10OwnedSliceE
Line
Count
Source
161
43.2k
    Status finish(OwnedSlice* slice) override {
162
43.2k
        RETURN_IF_CATCH_EXCEPTION({ *slice = _finish(SIZE_OF_TYPE); });
163
43.2k
        return Status::OK();
164
43.2k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE41EE6finishEPNS_10OwnedSliceE
Line
Count
Source
161
276
    Status finish(OwnedSlice* slice) override {
162
276
        RETURN_IF_CATCH_EXCEPTION({ *slice = _finish(SIZE_OF_TYPE); });
163
276
        return Status::OK();
164
276
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE15EE6finishEPNS_10OwnedSliceE
Line
Count
Source
161
596
    Status finish(OwnedSlice* slice) override {
162
596
        RETURN_IF_CATCH_EXCEPTION({ *slice = _finish(SIZE_OF_TYPE); });
163
596
        return Status::OK();
164
596
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE40EE6finishEPNS_10OwnedSliceE
Line
Count
Source
161
7.79k
    Status finish(OwnedSlice* slice) override {
162
7.79k
        RETURN_IF_CATCH_EXCEPTION({ *slice = _finish(SIZE_OF_TYPE); });
163
7.80k
        return Status::OK();
164
7.79k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE16EE6finishEPNS_10OwnedSliceE
Line
Count
Source
161
252
    Status finish(OwnedSlice* slice) override {
162
252
        RETURN_IF_CATCH_EXCEPTION({ *slice = _finish(SIZE_OF_TYPE); });
163
252
        return Status::OK();
164
252
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE31EE6finishEPNS_10OwnedSliceE
Line
Count
Source
161
9.73k
    Status finish(OwnedSlice* slice) override {
162
9.73k
        RETURN_IF_CATCH_EXCEPTION({ *slice = _finish(SIZE_OF_TYPE); });
163
9.73k
        return Status::OK();
164
9.73k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE32EE6finishEPNS_10OwnedSliceE
Line
Count
Source
161
18.7k
    Status finish(OwnedSlice* slice) override {
162
18.7k
        RETURN_IF_CATCH_EXCEPTION({ *slice = _finish(SIZE_OF_TYPE); });
163
18.7k
        return Status::OK();
164
18.7k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE33EE6finishEPNS_10OwnedSliceE
Line
Count
Source
161
17.1k
    Status finish(OwnedSlice* slice) override {
162
17.1k
        RETURN_IF_CATCH_EXCEPTION({ *slice = _finish(SIZE_OF_TYPE); });
163
17.1k
        return Status::OK();
164
17.1k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE37EE6finishEPNS_10OwnedSliceE
Line
Count
Source
161
1.14k
    Status finish(OwnedSlice* slice) override {
162
1.14k
        RETURN_IF_CATCH_EXCEPTION({ *slice = _finish(SIZE_OF_TYPE); });
163
1.14k
        return Status::OK();
164
1.14k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE38EE6finishEPNS_10OwnedSliceE
Line
Count
Source
161
623
    Status finish(OwnedSlice* slice) override {
162
623
        RETURN_IF_CATCH_EXCEPTION({ *slice = _finish(SIZE_OF_TYPE); });
163
623
        return Status::OK();
164
623
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE39EE6finishEPNS_10OwnedSliceE
Line
Count
Source
161
630
    Status finish(OwnedSlice* slice) override {
162
630
        RETURN_IF_CATCH_EXCEPTION({ *slice = _finish(SIZE_OF_TYPE); });
163
630
        return Status::OK();
164
630
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE42EE6finishEPNS_10OwnedSliceE
Line
Count
Source
161
722
    Status finish(OwnedSlice* slice) override {
162
722
        RETURN_IF_CATCH_EXCEPTION({ *slice = _finish(SIZE_OF_TYPE); });
163
722
        return Status::OK();
164
722
    }
165
166
1.66M
    Status reset() override {
167
1.66M
        RETURN_IF_CATCH_EXCEPTION({
168
1.66M
            size_t block_size = _options.data_page_size;
169
1.66M
            _count = 0;
170
1.66M
            _raw_data_size = 0;
171
1.66M
            _data.clear();
172
1.66M
            _data.reserve(block_size);
173
1.66M
            DCHECK_EQ(reinterpret_cast<uintptr_t>(_data.data()) & (alignof(CppType) - 1), 0)
174
1.66M
                    << "buffer must be naturally-aligned";
175
1.66M
            _buffer.clear();
176
1.66M
            _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE);
177
1.66M
            _finished = false;
178
1.66M
            _remain_element_capacity = cast_set<UInt32>(block_size / SIZE_OF_TYPE);
179
1.66M
        });
180
1.66M
        return Status::OK();
181
1.66M
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE1EE5resetEv
Line
Count
Source
166
89.0k
    Status reset() override {
167
89.0k
        RETURN_IF_CATCH_EXCEPTION({
168
89.0k
            size_t block_size = _options.data_page_size;
169
89.0k
            _count = 0;
170
89.0k
            _raw_data_size = 0;
171
89.0k
            _data.clear();
172
89.0k
            _data.reserve(block_size);
173
89.0k
            DCHECK_EQ(reinterpret_cast<uintptr_t>(_data.data()) & (alignof(CppType) - 1), 0)
174
89.0k
                    << "buffer must be naturally-aligned";
175
89.0k
            _buffer.clear();
176
89.0k
            _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE);
177
89.0k
            _finished = false;
178
89.0k
            _remain_element_capacity = cast_set<UInt32>(block_size / SIZE_OF_TYPE);
179
89.0k
        });
180
89.0k
        return Status::OK();
181
89.0k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE3EE5resetEv
Line
Count
Source
166
20.1k
    Status reset() override {
167
20.1k
        RETURN_IF_CATCH_EXCEPTION({
168
20.1k
            size_t block_size = _options.data_page_size;
169
20.1k
            _count = 0;
170
20.1k
            _raw_data_size = 0;
171
20.1k
            _data.clear();
172
20.1k
            _data.reserve(block_size);
173
20.1k
            DCHECK_EQ(reinterpret_cast<uintptr_t>(_data.data()) & (alignof(CppType) - 1), 0)
174
20.1k
                    << "buffer must be naturally-aligned";
175
20.1k
            _buffer.clear();
176
20.1k
            _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE);
177
20.1k
            _finished = false;
178
20.1k
            _remain_element_capacity = cast_set<UInt32>(block_size / SIZE_OF_TYPE);
179
20.1k
        });
180
20.1k
        return Status::OK();
181
20.1k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE5EE5resetEv
Line
Count
Source
166
991k
    Status reset() override {
167
991k
        RETURN_IF_CATCH_EXCEPTION({
168
991k
            size_t block_size = _options.data_page_size;
169
991k
            _count = 0;
170
991k
            _raw_data_size = 0;
171
991k
            _data.clear();
172
991k
            _data.reserve(block_size);
173
991k
            DCHECK_EQ(reinterpret_cast<uintptr_t>(_data.data()) & (alignof(CppType) - 1), 0)
174
991k
                    << "buffer must be naturally-aligned";
175
991k
            _buffer.clear();
176
991k
            _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE);
177
991k
            _finished = false;
178
991k
            _remain_element_capacity = cast_set<UInt32>(block_size / SIZE_OF_TYPE);
179
991k
        });
180
994k
        return Status::OK();
181
991k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE7EE5resetEv
Line
Count
Source
166
101k
    Status reset() override {
167
101k
        RETURN_IF_CATCH_EXCEPTION({
168
101k
            size_t block_size = _options.data_page_size;
169
101k
            _count = 0;
170
101k
            _raw_data_size = 0;
171
101k
            _data.clear();
172
101k
            _data.reserve(block_size);
173
101k
            DCHECK_EQ(reinterpret_cast<uintptr_t>(_data.data()) & (alignof(CppType) - 1), 0)
174
101k
                    << "buffer must be naturally-aligned";
175
101k
            _buffer.clear();
176
101k
            _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE);
177
101k
            _finished = false;
178
101k
            _remain_element_capacity = cast_set<UInt32>(block_size / SIZE_OF_TYPE);
179
101k
        });
180
101k
        return Status::OK();
181
101k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE9EE5resetEv
Line
Count
Source
166
24.5k
    Status reset() override {
167
24.5k
        RETURN_IF_CATCH_EXCEPTION({
168
24.5k
            size_t block_size = _options.data_page_size;
169
24.5k
            _count = 0;
170
24.5k
            _raw_data_size = 0;
171
24.5k
            _data.clear();
172
24.5k
            _data.reserve(block_size);
173
24.5k
            DCHECK_EQ(reinterpret_cast<uintptr_t>(_data.data()) & (alignof(CppType) - 1), 0)
174
24.5k
                    << "buffer must be naturally-aligned";
175
24.5k
            _buffer.clear();
176
24.5k
            _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE);
177
24.5k
            _finished = false;
178
24.5k
            _remain_element_capacity = cast_set<UInt32>(block_size / SIZE_OF_TYPE);
179
24.5k
        });
180
24.5k
        return Status::OK();
181
24.5k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE8EE5resetEv
Line
Count
Source
166
130k
    Status reset() override {
167
130k
        RETURN_IF_CATCH_EXCEPTION({
168
130k
            size_t block_size = _options.data_page_size;
169
130k
            _count = 0;
170
130k
            _raw_data_size = 0;
171
130k
            _data.clear();
172
130k
            _data.reserve(block_size);
173
130k
            DCHECK_EQ(reinterpret_cast<uintptr_t>(_data.data()) & (alignof(CppType) - 1), 0)
174
130k
                    << "buffer must be naturally-aligned";
175
130k
            _buffer.clear();
176
130k
            _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE);
177
130k
            _finished = false;
178
130k
            _remain_element_capacity = cast_set<UInt32>(block_size / SIZE_OF_TYPE);
179
130k
        });
180
130k
        return Status::OK();
181
130k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE6EE5resetEv
Line
Count
Source
166
1
    Status reset() override {
167
1
        RETURN_IF_CATCH_EXCEPTION({
168
1
            size_t block_size = _options.data_page_size;
169
1
            _count = 0;
170
1
            _raw_data_size = 0;
171
1
            _data.clear();
172
1
            _data.reserve(block_size);
173
1
            DCHECK_EQ(reinterpret_cast<uintptr_t>(_data.data()) & (alignof(CppType) - 1), 0)
174
1
                    << "buffer must be naturally-aligned";
175
1
            _buffer.clear();
176
1
            _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE);
177
1
            _finished = false;
178
1
            _remain_element_capacity = cast_set<UInt32>(block_size / SIZE_OF_TYPE);
179
1
        });
180
1
        return Status::OK();
181
1
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE10EE5resetEv
Line
Count
Source
166
15.8k
    Status reset() override {
167
15.8k
        RETURN_IF_CATCH_EXCEPTION({
168
15.8k
            size_t block_size = _options.data_page_size;
169
15.8k
            _count = 0;
170
15.8k
            _raw_data_size = 0;
171
15.8k
            _data.clear();
172
15.8k
            _data.reserve(block_size);
173
15.8k
            DCHECK_EQ(reinterpret_cast<uintptr_t>(_data.data()) & (alignof(CppType) - 1), 0)
174
15.8k
                    << "buffer must be naturally-aligned";
175
15.8k
            _buffer.clear();
176
15.8k
            _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE);
177
15.8k
            _finished = false;
178
15.8k
            _remain_element_capacity = cast_set<UInt32>(block_size / SIZE_OF_TYPE);
179
15.8k
        });
180
15.8k
        return Status::OK();
181
15.8k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE11EE5resetEv
Line
Count
Source
166
17.7k
    Status reset() override {
167
17.7k
        RETURN_IF_CATCH_EXCEPTION({
168
17.7k
            size_t block_size = _options.data_page_size;
169
17.7k
            _count = 0;
170
17.7k
            _raw_data_size = 0;
171
17.7k
            _data.clear();
172
17.7k
            _data.reserve(block_size);
173
17.7k
            DCHECK_EQ(reinterpret_cast<uintptr_t>(_data.data()) & (alignof(CppType) - 1), 0)
174
17.7k
                    << "buffer must be naturally-aligned";
175
17.7k
            _buffer.clear();
176
17.7k
            _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE);
177
17.7k
            _finished = false;
178
17.7k
            _remain_element_capacity = cast_set<UInt32>(block_size / SIZE_OF_TYPE);
179
17.7k
        });
180
17.7k
        return Status::OK();
181
17.7k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE24EE5resetEv
Line
Count
Source
166
8
    Status reset() override {
167
8
        RETURN_IF_CATCH_EXCEPTION({
168
8
            size_t block_size = _options.data_page_size;
169
8
            _count = 0;
170
8
            _raw_data_size = 0;
171
8
            _data.clear();
172
8
            _data.reserve(block_size);
173
8
            DCHECK_EQ(reinterpret_cast<uintptr_t>(_data.data()) & (alignof(CppType) - 1), 0)
174
8
                    << "buffer must be naturally-aligned";
175
8
            _buffer.clear();
176
8
            _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE);
177
8
            _finished = false;
178
8
            _remain_element_capacity = cast_set<UInt32>(block_size / SIZE_OF_TYPE);
179
8
        });
180
8
        return Status::OK();
181
8
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE14EE5resetEv
Line
Count
Source
166
687
    Status reset() override {
167
687
        RETURN_IF_CATCH_EXCEPTION({
168
687
            size_t block_size = _options.data_page_size;
169
687
            _count = 0;
170
687
            _raw_data_size = 0;
171
687
            _data.clear();
172
687
            _data.reserve(block_size);
173
687
            DCHECK_EQ(reinterpret_cast<uintptr_t>(_data.data()) & (alignof(CppType) - 1), 0)
174
687
                    << "buffer must be naturally-aligned";
175
687
            _buffer.clear();
176
687
            _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE);
177
687
            _finished = false;
178
687
            _remain_element_capacity = cast_set<UInt32>(block_size / SIZE_OF_TYPE);
179
687
        });
180
687
        return Status::OK();
181
687
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE28EE5resetEv
Line
Count
Source
166
75.6k
    Status reset() override {
167
75.6k
        RETURN_IF_CATCH_EXCEPTION({
168
75.6k
            size_t block_size = _options.data_page_size;
169
75.6k
            _count = 0;
170
75.6k
            _raw_data_size = 0;
171
75.6k
            _data.clear();
172
75.6k
            _data.reserve(block_size);
173
75.6k
            DCHECK_EQ(reinterpret_cast<uintptr_t>(_data.data()) & (alignof(CppType) - 1), 0)
174
75.6k
                    << "buffer must be naturally-aligned";
175
75.6k
            _buffer.clear();
176
75.6k
            _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE);
177
75.6k
            _finished = false;
178
75.6k
            _remain_element_capacity = cast_set<UInt32>(block_size / SIZE_OF_TYPE);
179
75.6k
        });
180
75.6k
        return Status::OK();
181
75.6k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE29EE5resetEv
Line
Count
Source
166
87.3k
    Status reset() override {
167
87.3k
        RETURN_IF_CATCH_EXCEPTION({
168
87.3k
            size_t block_size = _options.data_page_size;
169
87.3k
            _count = 0;
170
87.3k
            _raw_data_size = 0;
171
87.3k
            _data.clear();
172
87.3k
            _data.reserve(block_size);
173
87.3k
            DCHECK_EQ(reinterpret_cast<uintptr_t>(_data.data()) & (alignof(CppType) - 1), 0)
174
87.3k
                    << "buffer must be naturally-aligned";
175
87.3k
            _buffer.clear();
176
87.3k
            _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE);
177
87.3k
            _finished = false;
178
87.3k
            _remain_element_capacity = cast_set<UInt32>(block_size / SIZE_OF_TYPE);
179
87.3k
        });
180
87.4k
        return Status::OK();
181
87.3k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE41EE5resetEv
Line
Count
Source
166
610
    Status reset() override {
167
610
        RETURN_IF_CATCH_EXCEPTION({
168
610
            size_t block_size = _options.data_page_size;
169
610
            _count = 0;
170
610
            _raw_data_size = 0;
171
610
            _data.clear();
172
610
            _data.reserve(block_size);
173
610
            DCHECK_EQ(reinterpret_cast<uintptr_t>(_data.data()) & (alignof(CppType) - 1), 0)
174
610
                    << "buffer must be naturally-aligned";
175
610
            _buffer.clear();
176
610
            _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE);
177
610
            _finished = false;
178
610
            _remain_element_capacity = cast_set<UInt32>(block_size / SIZE_OF_TYPE);
179
610
        });
180
611
        return Status::OK();
181
610
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE15EE5resetEv
Line
Count
Source
166
1.03k
    Status reset() override {
167
1.03k
        RETURN_IF_CATCH_EXCEPTION({
168
1.03k
            size_t block_size = _options.data_page_size;
169
1.03k
            _count = 0;
170
1.03k
            _raw_data_size = 0;
171
1.03k
            _data.clear();
172
1.03k
            _data.reserve(block_size);
173
1.03k
            DCHECK_EQ(reinterpret_cast<uintptr_t>(_data.data()) & (alignof(CppType) - 1), 0)
174
1.03k
                    << "buffer must be naturally-aligned";
175
1.03k
            _buffer.clear();
176
1.03k
            _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE);
177
1.03k
            _finished = false;
178
1.03k
            _remain_element_capacity = cast_set<UInt32>(block_size / SIZE_OF_TYPE);
179
1.03k
        });
180
1.03k
        return Status::OK();
181
1.03k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE40EE5resetEv
Line
Count
Source
166
15.4k
    Status reset() override {
167
15.4k
        RETURN_IF_CATCH_EXCEPTION({
168
15.4k
            size_t block_size = _options.data_page_size;
169
15.4k
            _count = 0;
170
15.4k
            _raw_data_size = 0;
171
15.4k
            _data.clear();
172
15.4k
            _data.reserve(block_size);
173
15.4k
            DCHECK_EQ(reinterpret_cast<uintptr_t>(_data.data()) & (alignof(CppType) - 1), 0)
174
15.4k
                    << "buffer must be naturally-aligned";
175
15.4k
            _buffer.clear();
176
15.4k
            _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE);
177
15.4k
            _finished = false;
178
15.4k
            _remain_element_capacity = cast_set<UInt32>(block_size / SIZE_OF_TYPE);
179
15.4k
        });
180
15.5k
        return Status::OK();
181
15.4k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE16EE5resetEv
Line
Count
Source
166
583
    Status reset() override {
167
583
        RETURN_IF_CATCH_EXCEPTION({
168
583
            size_t block_size = _options.data_page_size;
169
583
            _count = 0;
170
583
            _raw_data_size = 0;
171
583
            _data.clear();
172
583
            _data.reserve(block_size);
173
583
            DCHECK_EQ(reinterpret_cast<uintptr_t>(_data.data()) & (alignof(CppType) - 1), 0)
174
583
                    << "buffer must be naturally-aligned";
175
583
            _buffer.clear();
176
583
            _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE);
177
583
            _finished = false;
178
583
            _remain_element_capacity = cast_set<UInt32>(block_size / SIZE_OF_TYPE);
179
583
        });
180
583
        return Status::OK();
181
583
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE31EE5resetEv
Line
Count
Source
166
19.4k
    Status reset() override {
167
19.4k
        RETURN_IF_CATCH_EXCEPTION({
168
19.4k
            size_t block_size = _options.data_page_size;
169
19.4k
            _count = 0;
170
19.4k
            _raw_data_size = 0;
171
19.4k
            _data.clear();
172
19.4k
            _data.reserve(block_size);
173
19.4k
            DCHECK_EQ(reinterpret_cast<uintptr_t>(_data.data()) & (alignof(CppType) - 1), 0)
174
19.4k
                    << "buffer must be naturally-aligned";
175
19.4k
            _buffer.clear();
176
19.4k
            _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE);
177
19.4k
            _finished = false;
178
19.4k
            _remain_element_capacity = cast_set<UInt32>(block_size / SIZE_OF_TYPE);
179
19.4k
        });
180
19.4k
        return Status::OK();
181
19.4k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE32EE5resetEv
Line
Count
Source
166
30.8k
    Status reset() override {
167
30.8k
        RETURN_IF_CATCH_EXCEPTION({
168
30.8k
            size_t block_size = _options.data_page_size;
169
30.8k
            _count = 0;
170
30.8k
            _raw_data_size = 0;
171
30.8k
            _data.clear();
172
30.8k
            _data.reserve(block_size);
173
30.8k
            DCHECK_EQ(reinterpret_cast<uintptr_t>(_data.data()) & (alignof(CppType) - 1), 0)
174
30.8k
                    << "buffer must be naturally-aligned";
175
30.8k
            _buffer.clear();
176
30.8k
            _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE);
177
30.8k
            _finished = false;
178
30.8k
            _remain_element_capacity = cast_set<UInt32>(block_size / SIZE_OF_TYPE);
179
30.8k
        });
180
30.8k
        return Status::OK();
181
30.8k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE33EE5resetEv
Line
Count
Source
166
34.1k
    Status reset() override {
167
34.1k
        RETURN_IF_CATCH_EXCEPTION({
168
34.1k
            size_t block_size = _options.data_page_size;
169
34.1k
            _count = 0;
170
34.1k
            _raw_data_size = 0;
171
34.1k
            _data.clear();
172
34.1k
            _data.reserve(block_size);
173
34.1k
            DCHECK_EQ(reinterpret_cast<uintptr_t>(_data.data()) & (alignof(CppType) - 1), 0)
174
34.1k
                    << "buffer must be naturally-aligned";
175
34.1k
            _buffer.clear();
176
34.1k
            _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE);
177
34.1k
            _finished = false;
178
34.1k
            _remain_element_capacity = cast_set<UInt32>(block_size / SIZE_OF_TYPE);
179
34.1k
        });
180
34.1k
        return Status::OK();
181
34.1k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE37EE5resetEv
Line
Count
Source
166
2.35k
    Status reset() override {
167
2.35k
        RETURN_IF_CATCH_EXCEPTION({
168
2.35k
            size_t block_size = _options.data_page_size;
169
2.35k
            _count = 0;
170
2.35k
            _raw_data_size = 0;
171
2.35k
            _data.clear();
172
2.35k
            _data.reserve(block_size);
173
2.35k
            DCHECK_EQ(reinterpret_cast<uintptr_t>(_data.data()) & (alignof(CppType) - 1), 0)
174
2.35k
                    << "buffer must be naturally-aligned";
175
2.35k
            _buffer.clear();
176
2.35k
            _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE);
177
2.35k
            _finished = false;
178
2.35k
            _remain_element_capacity = cast_set<UInt32>(block_size / SIZE_OF_TYPE);
179
2.35k
        });
180
2.35k
        return Status::OK();
181
2.35k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE38EE5resetEv
Line
Count
Source
166
1.33k
    Status reset() override {
167
1.33k
        RETURN_IF_CATCH_EXCEPTION({
168
1.33k
            size_t block_size = _options.data_page_size;
169
1.33k
            _count = 0;
170
1.33k
            _raw_data_size = 0;
171
1.33k
            _data.clear();
172
1.33k
            _data.reserve(block_size);
173
1.33k
            DCHECK_EQ(reinterpret_cast<uintptr_t>(_data.data()) & (alignof(CppType) - 1), 0)
174
1.33k
                    << "buffer must be naturally-aligned";
175
1.33k
            _buffer.clear();
176
1.33k
            _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE);
177
1.33k
            _finished = false;
178
1.33k
            _remain_element_capacity = cast_set<UInt32>(block_size / SIZE_OF_TYPE);
179
1.33k
        });
180
1.33k
        return Status::OK();
181
1.33k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE39EE5resetEv
Line
Count
Source
166
1.33k
    Status reset() override {
167
1.33k
        RETURN_IF_CATCH_EXCEPTION({
168
1.33k
            size_t block_size = _options.data_page_size;
169
1.33k
            _count = 0;
170
1.33k
            _raw_data_size = 0;
171
1.33k
            _data.clear();
172
1.33k
            _data.reserve(block_size);
173
1.33k
            DCHECK_EQ(reinterpret_cast<uintptr_t>(_data.data()) & (alignof(CppType) - 1), 0)
174
1.33k
                    << "buffer must be naturally-aligned";
175
1.33k
            _buffer.clear();
176
1.33k
            _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE);
177
1.33k
            _finished = false;
178
1.33k
            _remain_element_capacity = cast_set<UInt32>(block_size / SIZE_OF_TYPE);
179
1.33k
        });
180
1.33k
        return Status::OK();
181
1.33k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE42EE5resetEv
Line
Count
Source
166
1.33k
    Status reset() override {
167
1.33k
        RETURN_IF_CATCH_EXCEPTION({
168
1.33k
            size_t block_size = _options.data_page_size;
169
1.33k
            _count = 0;
170
1.33k
            _raw_data_size = 0;
171
1.33k
            _data.clear();
172
1.33k
            _data.reserve(block_size);
173
1.33k
            DCHECK_EQ(reinterpret_cast<uintptr_t>(_data.data()) & (alignof(CppType) - 1), 0)
174
1.33k
                    << "buffer must be naturally-aligned";
175
1.33k
            _buffer.clear();
176
1.33k
            _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE);
177
1.33k
            _finished = false;
178
1.33k
            _remain_element_capacity = cast_set<UInt32>(block_size / SIZE_OF_TYPE);
179
1.33k
        });
180
1.34k
        return Status::OK();
181
1.33k
    }
182
183
4
    size_t count() const override { return _count; }
Unexecuted instantiation: _ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE1EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE3EE5countEv
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE5EE5countEv
Line
Count
Source
183
4
    size_t count() const override { return _count; }
Unexecuted instantiation: _ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE7EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE9EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE8EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE6EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE10EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE11EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE24EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE14EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE28EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE29EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE41EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE15EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE40EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE16EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE31EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE32EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE33EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE37EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE38EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE39EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE42EE5countEv
184
185
38.3k
    uint64_t size() const override { return _buffer.size(); }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE1EE4sizeEv
Line
Count
Source
185
2.99k
    uint64_t size() const override { return _buffer.size(); }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE3EE4sizeEv
Line
Count
Source
185
740
    uint64_t size() const override { return _buffer.size(); }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE5EE4sizeEv
Line
Count
Source
185
21.8k
    uint64_t size() const override { return _buffer.size(); }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE7EE4sizeEv
Line
Count
Source
185
3.12k
    uint64_t size() const override { return _buffer.size(); }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE9EE4sizeEv
Line
Count
Source
185
1.06k
    uint64_t size() const override { return _buffer.size(); }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE8EE4sizeEv
Line
Count
Source
185
932
    uint64_t size() const override { return _buffer.size(); }
Unexecuted instantiation: _ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE6EE4sizeEv
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE10EE4sizeEv
Line
Count
Source
185
363
    uint64_t size() const override { return _buffer.size(); }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE11EE4sizeEv
Line
Count
Source
185
426
    uint64_t size() const override { return _buffer.size(); }
Unexecuted instantiation: _ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE24EE4sizeEv
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE14EE4sizeEv
Line
Count
Source
185
112
    uint64_t size() const override { return _buffer.size(); }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE28EE4sizeEv
Line
Count
Source
185
1.67k
    uint64_t size() const override { return _buffer.size(); }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE29EE4sizeEv
Line
Count
Source
185
2.38k
    uint64_t size() const override { return _buffer.size(); }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE41EE4sizeEv
Line
Count
Source
185
10
    uint64_t size() const override { return _buffer.size(); }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE15EE4sizeEv
Line
Count
Source
185
119
    uint64_t size() const override { return _buffer.size(); }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE40EE4sizeEv
Line
Count
Source
185
166
    uint64_t size() const override { return _buffer.size(); }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE16EE4sizeEv
Line
Count
Source
185
104
    uint64_t size() const override { return _buffer.size(); }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE31EE4sizeEv
Line
Count
Source
185
264
    uint64_t size() const override { return _buffer.size(); }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE32EE4sizeEv
Line
Count
Source
185
397
    uint64_t size() const override { return _buffer.size(); }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE33EE4sizeEv
Line
Count
Source
185
1.23k
    uint64_t size() const override { return _buffer.size(); }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE37EE4sizeEv
Line
Count
Source
185
106
    uint64_t size() const override { return _buffer.size(); }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE38EE4sizeEv
Line
Count
Source
185
128
    uint64_t size() const override { return _buffer.size(); }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE39EE4sizeEv
Line
Count
Source
185
112
    uint64_t size() const override { return _buffer.size(); }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE42EE4sizeEv
Line
Count
Source
185
12
    uint64_t size() const override { return _buffer.size(); }
186
187
407k
    uint64_t get_raw_data_size() const override { return _raw_data_size; }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE1EE17get_raw_data_sizeEv
Line
Count
Source
187
44.0k
    uint64_t get_raw_data_size() const override { return _raw_data_size; }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE3EE17get_raw_data_sizeEv
Line
Count
Source
187
9.67k
    uint64_t get_raw_data_size() const override { return _raw_data_size; }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE5EE17get_raw_data_sizeEv
Line
Count
Source
187
69.7k
    uint64_t get_raw_data_size() const override { return _raw_data_size; }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE7EE17get_raw_data_sizeEv
Line
Count
Source
187
51.4k
    uint64_t get_raw_data_size() const override { return _raw_data_size; }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE9EE17get_raw_data_sizeEv
Line
Count
Source
187
11.9k
    uint64_t get_raw_data_size() const override { return _raw_data_size; }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE8EE17get_raw_data_sizeEv
Line
Count
Source
187
65.2k
    uint64_t get_raw_data_size() const override { return _raw_data_size; }
Unexecuted instantiation: _ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE6EE17get_raw_data_sizeEv
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE10EE17get_raw_data_sizeEv
Line
Count
Source
187
7.56k
    uint64_t get_raw_data_size() const override { return _raw_data_size; }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE11EE17get_raw_data_sizeEv
Line
Count
Source
187
8.69k
    uint64_t get_raw_data_size() const override { return _raw_data_size; }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE24EE17get_raw_data_sizeEv
Line
Count
Source
187
6
    uint64_t get_raw_data_size() const override { return _raw_data_size; }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE14EE17get_raw_data_sizeEv
Line
Count
Source
187
351
    uint64_t get_raw_data_size() const override { return _raw_data_size; }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE28EE17get_raw_data_sizeEv
Line
Count
Source
187
38.1k
    uint64_t get_raw_data_size() const override { return _raw_data_size; }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE29EE17get_raw_data_sizeEv
Line
Count
Source
187
43.2k
    uint64_t get_raw_data_size() const override { return _raw_data_size; }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE41EE17get_raw_data_sizeEv
Line
Count
Source
187
276
    uint64_t get_raw_data_size() const override { return _raw_data_size; }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE15EE17get_raw_data_sizeEv
Line
Count
Source
187
596
    uint64_t get_raw_data_size() const override { return _raw_data_size; }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE40EE17get_raw_data_sizeEv
Line
Count
Source
187
7.79k
    uint64_t get_raw_data_size() const override { return _raw_data_size; }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE16EE17get_raw_data_sizeEv
Line
Count
Source
187
252
    uint64_t get_raw_data_size() const override { return _raw_data_size; }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE31EE17get_raw_data_sizeEv
Line
Count
Source
187
9.73k
    uint64_t get_raw_data_size() const override { return _raw_data_size; }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE32EE17get_raw_data_sizeEv
Line
Count
Source
187
18.7k
    uint64_t get_raw_data_size() const override { return _raw_data_size; }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE33EE17get_raw_data_sizeEv
Line
Count
Source
187
17.1k
    uint64_t get_raw_data_size() const override { return _raw_data_size; }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE37EE17get_raw_data_sizeEv
Line
Count
Source
187
1.14k
    uint64_t get_raw_data_size() const override { return _raw_data_size; }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE38EE17get_raw_data_sizeEv
Line
Count
Source
187
623
    uint64_t get_raw_data_size() const override { return _raw_data_size; }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE39EE17get_raw_data_sizeEv
Line
Count
Source
187
630
    uint64_t get_raw_data_size() const override { return _raw_data_size; }
_ZNK5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE42EE17get_raw_data_sizeEv
Line
Count
Source
187
722
    uint64_t get_raw_data_size() const override { return _raw_data_size; }
188
189
private:
190
    BitshufflePageBuilder(const PageBuilderOptions& options)
191
690k
            : _options(options), _count(0), _remain_element_capacity(0), _finished(false) {}
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE1EEC2ERKNS0_18PageBuilderOptionsE
Line
Count
Source
191
44.9k
            : _options(options), _count(0), _remain_element_capacity(0), _finished(false) {}
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE3EEC2ERKNS0_18PageBuilderOptionsE
Line
Count
Source
191
10.4k
            : _options(options), _count(0), _remain_element_capacity(0), _finished(false) {}
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE5EEC2ERKNS0_18PageBuilderOptionsE
Line
Count
Source
191
357k
            : _options(options), _count(0), _remain_element_capacity(0), _finished(false) {}
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE7EEC2ERKNS0_18PageBuilderOptionsE
Line
Count
Source
191
50.0k
            : _options(options), _count(0), _remain_element_capacity(0), _finished(false) {}
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE9EEC2ERKNS0_18PageBuilderOptionsE
Line
Count
Source
191
12.5k
            : _options(options), _count(0), _remain_element_capacity(0), _finished(false) {}
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE8EEC2ERKNS0_18PageBuilderOptionsE
Line
Count
Source
191
64.9k
            : _options(options), _count(0), _remain_element_capacity(0), _finished(false) {}
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE6EEC2ERKNS0_18PageBuilderOptionsE
Line
Count
Source
191
1
            : _options(options), _count(0), _remain_element_capacity(0), _finished(false) {}
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE10EEC2ERKNS0_18PageBuilderOptionsE
Line
Count
Source
191
8.28k
            : _options(options), _count(0), _remain_element_capacity(0), _finished(false) {}
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE11EEC2ERKNS0_18PageBuilderOptionsE
Line
Count
Source
191
9.07k
            : _options(options), _count(0), _remain_element_capacity(0), _finished(false) {}
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE24EEC2ERKNS0_18PageBuilderOptionsE
Line
Count
Source
191
2
            : _options(options), _count(0), _remain_element_capacity(0), _finished(false) {}
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE14EEC2ERKNS0_18PageBuilderOptionsE
Line
Count
Source
191
336
            : _options(options), _count(0), _remain_element_capacity(0), _finished(false) {}
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE28EEC2ERKNS0_18PageBuilderOptionsE
Line
Count
Source
191
37.4k
            : _options(options), _count(0), _remain_element_capacity(0), _finished(false) {}
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE29EEC2ERKNS0_18PageBuilderOptionsE
Line
Count
Source
191
44.1k
            : _options(options), _count(0), _remain_element_capacity(0), _finished(false) {}
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE41EEC2ERKNS0_18PageBuilderOptionsE
Line
Count
Source
191
334
            : _options(options), _count(0), _remain_element_capacity(0), _finished(false) {}
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE15EEC2ERKNS0_18PageBuilderOptionsE
Line
Count
Source
191
437
            : _options(options), _count(0), _remain_element_capacity(0), _finished(false) {}
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE40EEC2ERKNS0_18PageBuilderOptionsE
Line
Count
Source
191
7.61k
            : _options(options), _count(0), _remain_element_capacity(0), _finished(false) {}
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE16EEC2ERKNS0_18PageBuilderOptionsE
Line
Count
Source
191
331
            : _options(options), _count(0), _remain_element_capacity(0), _finished(false) {}
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE31EEC2ERKNS0_18PageBuilderOptionsE
Line
Count
Source
191
9.73k
            : _options(options), _count(0), _remain_element_capacity(0), _finished(false) {}
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE32EEC2ERKNS0_18PageBuilderOptionsE
Line
Count
Source
191
12.0k
            : _options(options), _count(0), _remain_element_capacity(0), _finished(false) {}
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE33EEC2ERKNS0_18PageBuilderOptionsE
Line
Count
Source
191
16.9k
            : _options(options), _count(0), _remain_element_capacity(0), _finished(false) {}
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE37EEC2ERKNS0_18PageBuilderOptionsE
Line
Count
Source
191
1.20k
            : _options(options), _count(0), _remain_element_capacity(0), _finished(false) {}
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE38EEC2ERKNS0_18PageBuilderOptionsE
Line
Count
Source
191
708
            : _options(options), _count(0), _remain_element_capacity(0), _finished(false) {}
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE39EEC2ERKNS0_18PageBuilderOptionsE
Line
Count
Source
191
707
            : _options(options), _count(0), _remain_element_capacity(0), _finished(false) {}
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE42EEC2ERKNS0_18PageBuilderOptionsE
Line
Count
Source
191
613
            : _options(options), _count(0), _remain_element_capacity(0), _finished(false) {}
192
193
684k
    OwnedSlice _finish(int final_size_of_type) {
194
684k
        _data.resize(final_size_of_type * _count);
195
196
        // Do padding so that the input num of element is multiple of 8.
197
684k
        int num_elems_after_padding = ALIGN_UP(_count, 8);
198
684k
        int padding_elems = num_elems_after_padding - _count;
199
684k
        int padding_bytes = padding_elems * final_size_of_type;
200
18.8M
        for (int i = 0; i < padding_bytes; i++) {
201
18.1M
            _data.push_back(0);
202
18.1M
        }
203
204
        // reserve enough place for compression
205
684k
        _buffer.resize(
206
684k
                BITSHUFFLE_PAGE_HEADER_SIZE +
207
684k
                bitshuffle::compress_lz4_bound(num_elems_after_padding, final_size_of_type, 0));
208
209
684k
        int64_t bytes =
210
684k
                bitshuffle::compress_lz4(_data.data(), &_buffer[BITSHUFFLE_PAGE_HEADER_SIZE],
211
684k
                                         num_elems_after_padding, final_size_of_type, 0);
212
684k
        if (bytes < 0) [[unlikely]] {
213
            // This means the bitshuffle function fails.
214
            // Ideally, this should not happen.
215
0
            warn_with_bitshuffle_error(bytes);
216
            // It does not matter what will be returned here,
217
            // since we have logged fatal in warn_with_bitshuffle_error().
218
0
            return OwnedSlice();
219
0
        }
220
        // update header
221
684k
        encode_fixed32_le(&_buffer[0], _count);
222
684k
        encode_fixed32_le(&_buffer[4], cast_set<uint32_t>(BITSHUFFLE_PAGE_HEADER_SIZE + bytes));
223
684k
        encode_fixed32_le(&_buffer[8], num_elems_after_padding);
224
684k
        encode_fixed32_le(&_buffer[12], final_size_of_type);
225
684k
        _finished = true;
226
        // before build(), update buffer length to the actual compressed size
227
684k
        _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE + bytes);
228
684k
        return _buffer.build();
229
684k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE1EE7_finishEi
Line
Count
Source
193
44.0k
    OwnedSlice _finish(int final_size_of_type) {
194
44.0k
        _data.resize(final_size_of_type * _count);
195
196
        // Do padding so that the input num of element is multiple of 8.
197
44.0k
        int num_elems_after_padding = ALIGN_UP(_count, 8);
198
44.0k
        int padding_elems = num_elems_after_padding - _count;
199
44.0k
        int padding_bytes = padding_elems * final_size_of_type;
200
284k
        for (int i = 0; i < padding_bytes; i++) {
201
240k
            _data.push_back(0);
202
240k
        }
203
204
        // reserve enough place for compression
205
44.0k
        _buffer.resize(
206
44.0k
                BITSHUFFLE_PAGE_HEADER_SIZE +
207
44.0k
                bitshuffle::compress_lz4_bound(num_elems_after_padding, final_size_of_type, 0));
208
209
44.0k
        int64_t bytes =
210
44.0k
                bitshuffle::compress_lz4(_data.data(), &_buffer[BITSHUFFLE_PAGE_HEADER_SIZE],
211
44.0k
                                         num_elems_after_padding, final_size_of_type, 0);
212
44.0k
        if (bytes < 0) [[unlikely]] {
213
            // This means the bitshuffle function fails.
214
            // Ideally, this should not happen.
215
0
            warn_with_bitshuffle_error(bytes);
216
            // It does not matter what will be returned here,
217
            // since we have logged fatal in warn_with_bitshuffle_error().
218
0
            return OwnedSlice();
219
0
        }
220
        // update header
221
44.0k
        encode_fixed32_le(&_buffer[0], _count);
222
44.0k
        encode_fixed32_le(&_buffer[4], cast_set<uint32_t>(BITSHUFFLE_PAGE_HEADER_SIZE + bytes));
223
44.0k
        encode_fixed32_le(&_buffer[8], num_elems_after_padding);
224
44.0k
        encode_fixed32_le(&_buffer[12], final_size_of_type);
225
44.0k
        _finished = true;
226
        // before build(), update buffer length to the actual compressed size
227
44.0k
        _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE + bytes);
228
44.0k
        return _buffer.build();
229
44.0k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE3EE7_finishEi
Line
Count
Source
193
9.67k
    OwnedSlice _finish(int final_size_of_type) {
194
9.67k
        _data.resize(final_size_of_type * _count);
195
196
        // Do padding so that the input num of element is multiple of 8.
197
9.67k
        int num_elems_after_padding = ALIGN_UP(_count, 8);
198
9.67k
        int padding_elems = num_elems_after_padding - _count;
199
9.67k
        int padding_bytes = padding_elems * final_size_of_type;
200
107k
        for (int i = 0; i < padding_bytes; i++) {
201
98.2k
            _data.push_back(0);
202
98.2k
        }
203
204
        // reserve enough place for compression
205
9.67k
        _buffer.resize(
206
9.67k
                BITSHUFFLE_PAGE_HEADER_SIZE +
207
9.67k
                bitshuffle::compress_lz4_bound(num_elems_after_padding, final_size_of_type, 0));
208
209
9.67k
        int64_t bytes =
210
9.67k
                bitshuffle::compress_lz4(_data.data(), &_buffer[BITSHUFFLE_PAGE_HEADER_SIZE],
211
9.67k
                                         num_elems_after_padding, final_size_of_type, 0);
212
9.67k
        if (bytes < 0) [[unlikely]] {
213
            // This means the bitshuffle function fails.
214
            // Ideally, this should not happen.
215
0
            warn_with_bitshuffle_error(bytes);
216
            // It does not matter what will be returned here,
217
            // since we have logged fatal in warn_with_bitshuffle_error().
218
0
            return OwnedSlice();
219
0
        }
220
        // update header
221
9.67k
        encode_fixed32_le(&_buffer[0], _count);
222
9.67k
        encode_fixed32_le(&_buffer[4], cast_set<uint32_t>(BITSHUFFLE_PAGE_HEADER_SIZE + bytes));
223
9.67k
        encode_fixed32_le(&_buffer[8], num_elems_after_padding);
224
9.67k
        encode_fixed32_le(&_buffer[12], final_size_of_type);
225
9.67k
        _finished = true;
226
        // before build(), update buffer length to the actual compressed size
227
9.67k
        _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE + bytes);
228
9.67k
        return _buffer.build();
229
9.67k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE5EE7_finishEi
Line
Count
Source
193
346k
    OwnedSlice _finish(int final_size_of_type) {
194
346k
        _data.resize(final_size_of_type * _count);
195
196
        // Do padding so that the input num of element is multiple of 8.
197
346k
        int num_elems_after_padding = ALIGN_UP(_count, 8);
198
346k
        int padding_elems = num_elems_after_padding - _count;
199
346k
        int padding_bytes = padding_elems * final_size_of_type;
200
6.71M
        for (int i = 0; i < padding_bytes; i++) {
201
6.36M
            _data.push_back(0);
202
6.36M
        }
203
204
        // reserve enough place for compression
205
346k
        _buffer.resize(
206
346k
                BITSHUFFLE_PAGE_HEADER_SIZE +
207
346k
                bitshuffle::compress_lz4_bound(num_elems_after_padding, final_size_of_type, 0));
208
209
346k
        int64_t bytes =
210
346k
                bitshuffle::compress_lz4(_data.data(), &_buffer[BITSHUFFLE_PAGE_HEADER_SIZE],
211
346k
                                         num_elems_after_padding, final_size_of_type, 0);
212
346k
        if (bytes < 0) [[unlikely]] {
213
            // This means the bitshuffle function fails.
214
            // Ideally, this should not happen.
215
0
            warn_with_bitshuffle_error(bytes);
216
            // It does not matter what will be returned here,
217
            // since we have logged fatal in warn_with_bitshuffle_error().
218
0
            return OwnedSlice();
219
0
        }
220
        // update header
221
346k
        encode_fixed32_le(&_buffer[0], _count);
222
346k
        encode_fixed32_le(&_buffer[4], cast_set<uint32_t>(BITSHUFFLE_PAGE_HEADER_SIZE + bytes));
223
346k
        encode_fixed32_le(&_buffer[8], num_elems_after_padding);
224
346k
        encode_fixed32_le(&_buffer[12], final_size_of_type);
225
346k
        _finished = true;
226
        // before build(), update buffer length to the actual compressed size
227
346k
        _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE + bytes);
228
346k
        return _buffer.build();
229
346k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE7EE7_finishEi
Line
Count
Source
193
51.4k
    OwnedSlice _finish(int final_size_of_type) {
194
51.4k
        _data.resize(final_size_of_type * _count);
195
196
        // Do padding so that the input num of element is multiple of 8.
197
51.4k
        int num_elems_after_padding = ALIGN_UP(_count, 8);
198
51.4k
        int padding_elems = num_elems_after_padding - _count;
199
51.4k
        int padding_bytes = padding_elems * final_size_of_type;
200
2.01M
        for (int i = 0; i < padding_bytes; i++) {
201
1.96M
            _data.push_back(0);
202
1.96M
        }
203
204
        // reserve enough place for compression
205
51.4k
        _buffer.resize(
206
51.4k
                BITSHUFFLE_PAGE_HEADER_SIZE +
207
51.4k
                bitshuffle::compress_lz4_bound(num_elems_after_padding, final_size_of_type, 0));
208
209
51.4k
        int64_t bytes =
210
51.4k
                bitshuffle::compress_lz4(_data.data(), &_buffer[BITSHUFFLE_PAGE_HEADER_SIZE],
211
51.4k
                                         num_elems_after_padding, final_size_of_type, 0);
212
51.4k
        if (bytes < 0) [[unlikely]] {
213
            // This means the bitshuffle function fails.
214
            // Ideally, this should not happen.
215
0
            warn_with_bitshuffle_error(bytes);
216
            // It does not matter what will be returned here,
217
            // since we have logged fatal in warn_with_bitshuffle_error().
218
0
            return OwnedSlice();
219
0
        }
220
        // update header
221
51.4k
        encode_fixed32_le(&_buffer[0], _count);
222
51.4k
        encode_fixed32_le(&_buffer[4], cast_set<uint32_t>(BITSHUFFLE_PAGE_HEADER_SIZE + bytes));
223
51.4k
        encode_fixed32_le(&_buffer[8], num_elems_after_padding);
224
51.4k
        encode_fixed32_le(&_buffer[12], final_size_of_type);
225
51.4k
        _finished = true;
226
        // before build(), update buffer length to the actual compressed size
227
51.4k
        _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE + bytes);
228
51.4k
        return _buffer.build();
229
51.4k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE9EE7_finishEi
Line
Count
Source
193
11.9k
    OwnedSlice _finish(int final_size_of_type) {
194
11.9k
        _data.resize(final_size_of_type * _count);
195
196
        // Do padding so that the input num of element is multiple of 8.
197
11.9k
        int num_elems_after_padding = ALIGN_UP(_count, 8);
198
11.9k
        int padding_elems = num_elems_after_padding - _count;
199
11.9k
        int padding_bytes = padding_elems * final_size_of_type;
200
893k
        for (int i = 0; i < padding_bytes; i++) {
201
881k
            _data.push_back(0);
202
881k
        }
203
204
        // reserve enough place for compression
205
11.9k
        _buffer.resize(
206
11.9k
                BITSHUFFLE_PAGE_HEADER_SIZE +
207
11.9k
                bitshuffle::compress_lz4_bound(num_elems_after_padding, final_size_of_type, 0));
208
209
11.9k
        int64_t bytes =
210
11.9k
                bitshuffle::compress_lz4(_data.data(), &_buffer[BITSHUFFLE_PAGE_HEADER_SIZE],
211
11.9k
                                         num_elems_after_padding, final_size_of_type, 0);
212
11.9k
        if (bytes < 0) [[unlikely]] {
213
            // This means the bitshuffle function fails.
214
            // Ideally, this should not happen.
215
0
            warn_with_bitshuffle_error(bytes);
216
            // It does not matter what will be returned here,
217
            // since we have logged fatal in warn_with_bitshuffle_error().
218
0
            return OwnedSlice();
219
0
        }
220
        // update header
221
11.9k
        encode_fixed32_le(&_buffer[0], _count);
222
11.9k
        encode_fixed32_le(&_buffer[4], cast_set<uint32_t>(BITSHUFFLE_PAGE_HEADER_SIZE + bytes));
223
11.9k
        encode_fixed32_le(&_buffer[8], num_elems_after_padding);
224
11.9k
        encode_fixed32_le(&_buffer[12], final_size_of_type);
225
11.9k
        _finished = true;
226
        // before build(), update buffer length to the actual compressed size
227
11.9k
        _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE + bytes);
228
11.9k
        return _buffer.build();
229
11.9k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE8EE7_finishEi
Line
Count
Source
193
65.2k
    OwnedSlice _finish(int final_size_of_type) {
194
65.2k
        _data.resize(final_size_of_type * _count);
195
196
        // Do padding so that the input num of element is multiple of 8.
197
65.2k
        int num_elems_after_padding = ALIGN_UP(_count, 8);
198
65.2k
        int padding_elems = num_elems_after_padding - _count;
199
65.2k
        int padding_bytes = padding_elems * final_size_of_type;
200
3.12M
        for (int i = 0; i < padding_bytes; i++) {
201
3.05M
            _data.push_back(0);
202
3.05M
        }
203
204
        // reserve enough place for compression
205
65.2k
        _buffer.resize(
206
65.2k
                BITSHUFFLE_PAGE_HEADER_SIZE +
207
65.2k
                bitshuffle::compress_lz4_bound(num_elems_after_padding, final_size_of_type, 0));
208
209
65.2k
        int64_t bytes =
210
65.2k
                bitshuffle::compress_lz4(_data.data(), &_buffer[BITSHUFFLE_PAGE_HEADER_SIZE],
211
65.2k
                                         num_elems_after_padding, final_size_of_type, 0);
212
65.2k
        if (bytes < 0) [[unlikely]] {
213
            // This means the bitshuffle function fails.
214
            // Ideally, this should not happen.
215
0
            warn_with_bitshuffle_error(bytes);
216
            // It does not matter what will be returned here,
217
            // since we have logged fatal in warn_with_bitshuffle_error().
218
0
            return OwnedSlice();
219
0
        }
220
        // update header
221
65.2k
        encode_fixed32_le(&_buffer[0], _count);
222
65.2k
        encode_fixed32_le(&_buffer[4], cast_set<uint32_t>(BITSHUFFLE_PAGE_HEADER_SIZE + bytes));
223
65.2k
        encode_fixed32_le(&_buffer[8], num_elems_after_padding);
224
65.2k
        encode_fixed32_le(&_buffer[12], final_size_of_type);
225
65.2k
        _finished = true;
226
        // before build(), update buffer length to the actual compressed size
227
65.2k
        _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE + bytes);
228
65.2k
        return _buffer.build();
229
65.2k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE6EE7_finishEi
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE10EE7_finishEi
Line
Count
Source
193
7.56k
    OwnedSlice _finish(int final_size_of_type) {
194
7.56k
        _data.resize(final_size_of_type * _count);
195
196
        // Do padding so that the input num of element is multiple of 8.
197
7.56k
        int num_elems_after_padding = ALIGN_UP(_count, 8);
198
7.56k
        int padding_elems = num_elems_after_padding - _count;
199
7.56k
        int padding_bytes = padding_elems * final_size_of_type;
200
175k
        for (int i = 0; i < padding_bytes; i++) {
201
167k
            _data.push_back(0);
202
167k
        }
203
204
        // reserve enough place for compression
205
7.56k
        _buffer.resize(
206
7.56k
                BITSHUFFLE_PAGE_HEADER_SIZE +
207
7.56k
                bitshuffle::compress_lz4_bound(num_elems_after_padding, final_size_of_type, 0));
208
209
7.56k
        int64_t bytes =
210
7.56k
                bitshuffle::compress_lz4(_data.data(), &_buffer[BITSHUFFLE_PAGE_HEADER_SIZE],
211
7.56k
                                         num_elems_after_padding, final_size_of_type, 0);
212
7.56k
        if (bytes < 0) [[unlikely]] {
213
            // This means the bitshuffle function fails.
214
            // Ideally, this should not happen.
215
0
            warn_with_bitshuffle_error(bytes);
216
            // It does not matter what will be returned here,
217
            // since we have logged fatal in warn_with_bitshuffle_error().
218
0
            return OwnedSlice();
219
0
        }
220
        // update header
221
7.56k
        encode_fixed32_le(&_buffer[0], _count);
222
7.56k
        encode_fixed32_le(&_buffer[4], cast_set<uint32_t>(BITSHUFFLE_PAGE_HEADER_SIZE + bytes));
223
7.56k
        encode_fixed32_le(&_buffer[8], num_elems_after_padding);
224
7.56k
        encode_fixed32_le(&_buffer[12], final_size_of_type);
225
7.56k
        _finished = true;
226
        // before build(), update buffer length to the actual compressed size
227
7.56k
        _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE + bytes);
228
7.56k
        return _buffer.build();
229
7.56k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE11EE7_finishEi
Line
Count
Source
193
8.69k
    OwnedSlice _finish(int final_size_of_type) {
194
8.69k
        _data.resize(final_size_of_type * _count);
195
196
        // Do padding so that the input num of element is multiple of 8.
197
8.69k
        int num_elems_after_padding = ALIGN_UP(_count, 8);
198
8.69k
        int padding_elems = num_elems_after_padding - _count;
199
8.69k
        int padding_bytes = padding_elems * final_size_of_type;
200
383k
        for (int i = 0; i < padding_bytes; i++) {
201
374k
            _data.push_back(0);
202
374k
        }
203
204
        // reserve enough place for compression
205
8.69k
        _buffer.resize(
206
8.69k
                BITSHUFFLE_PAGE_HEADER_SIZE +
207
8.69k
                bitshuffle::compress_lz4_bound(num_elems_after_padding, final_size_of_type, 0));
208
209
8.69k
        int64_t bytes =
210
8.69k
                bitshuffle::compress_lz4(_data.data(), &_buffer[BITSHUFFLE_PAGE_HEADER_SIZE],
211
8.69k
                                         num_elems_after_padding, final_size_of_type, 0);
212
8.69k
        if (bytes < 0) [[unlikely]] {
213
            // This means the bitshuffle function fails.
214
            // Ideally, this should not happen.
215
0
            warn_with_bitshuffle_error(bytes);
216
            // It does not matter what will be returned here,
217
            // since we have logged fatal in warn_with_bitshuffle_error().
218
0
            return OwnedSlice();
219
0
        }
220
        // update header
221
8.69k
        encode_fixed32_le(&_buffer[0], _count);
222
8.69k
        encode_fixed32_le(&_buffer[4], cast_set<uint32_t>(BITSHUFFLE_PAGE_HEADER_SIZE + bytes));
223
8.69k
        encode_fixed32_le(&_buffer[8], num_elems_after_padding);
224
8.69k
        encode_fixed32_le(&_buffer[12], final_size_of_type);
225
8.69k
        _finished = true;
226
        // before build(), update buffer length to the actual compressed size
227
8.69k
        _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE + bytes);
228
8.69k
        return _buffer.build();
229
8.69k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE24EE7_finishEi
Line
Count
Source
193
6
    OwnedSlice _finish(int final_size_of_type) {
194
6
        _data.resize(final_size_of_type * _count);
195
196
        // Do padding so that the input num of element is multiple of 8.
197
6
        int num_elems_after_padding = ALIGN_UP(_count, 8);
198
6
        int padding_elems = num_elems_after_padding - _count;
199
6
        int padding_bytes = padding_elems * final_size_of_type;
200
18
        for (int i = 0; i < padding_bytes; i++) {
201
12
            _data.push_back(0);
202
12
        }
203
204
        // reserve enough place for compression
205
6
        _buffer.resize(
206
6
                BITSHUFFLE_PAGE_HEADER_SIZE +
207
6
                bitshuffle::compress_lz4_bound(num_elems_after_padding, final_size_of_type, 0));
208
209
6
        int64_t bytes =
210
6
                bitshuffle::compress_lz4(_data.data(), &_buffer[BITSHUFFLE_PAGE_HEADER_SIZE],
211
6
                                         num_elems_after_padding, final_size_of_type, 0);
212
6
        if (bytes < 0) [[unlikely]] {
213
            // This means the bitshuffle function fails.
214
            // Ideally, this should not happen.
215
0
            warn_with_bitshuffle_error(bytes);
216
            // It does not matter what will be returned here,
217
            // since we have logged fatal in warn_with_bitshuffle_error().
218
0
            return OwnedSlice();
219
0
        }
220
        // update header
221
6
        encode_fixed32_le(&_buffer[0], _count);
222
6
        encode_fixed32_le(&_buffer[4], cast_set<uint32_t>(BITSHUFFLE_PAGE_HEADER_SIZE + bytes));
223
6
        encode_fixed32_le(&_buffer[8], num_elems_after_padding);
224
6
        encode_fixed32_le(&_buffer[12], final_size_of_type);
225
6
        _finished = true;
226
        // before build(), update buffer length to the actual compressed size
227
6
        _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE + bytes);
228
6
        return _buffer.build();
229
6
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE14EE7_finishEi
Line
Count
Source
193
351
    OwnedSlice _finish(int final_size_of_type) {
194
351
        _data.resize(final_size_of_type * _count);
195
196
        // Do padding so that the input num of element is multiple of 8.
197
351
        int num_elems_after_padding = ALIGN_UP(_count, 8);
198
351
        int padding_elems = num_elems_after_padding - _count;
199
351
        int padding_bytes = padding_elems * final_size_of_type;
200
5.27k
        for (int i = 0; i < padding_bytes; i++) {
201
4.92k
            _data.push_back(0);
202
4.92k
        }
203
204
        // reserve enough place for compression
205
351
        _buffer.resize(
206
351
                BITSHUFFLE_PAGE_HEADER_SIZE +
207
351
                bitshuffle::compress_lz4_bound(num_elems_after_padding, final_size_of_type, 0));
208
209
351
        int64_t bytes =
210
351
                bitshuffle::compress_lz4(_data.data(), &_buffer[BITSHUFFLE_PAGE_HEADER_SIZE],
211
351
                                         num_elems_after_padding, final_size_of_type, 0);
212
351
        if (bytes < 0) [[unlikely]] {
213
            // This means the bitshuffle function fails.
214
            // Ideally, this should not happen.
215
0
            warn_with_bitshuffle_error(bytes);
216
            // It does not matter what will be returned here,
217
            // since we have logged fatal in warn_with_bitshuffle_error().
218
0
            return OwnedSlice();
219
0
        }
220
        // update header
221
351
        encode_fixed32_le(&_buffer[0], _count);
222
351
        encode_fixed32_le(&_buffer[4], cast_set<uint32_t>(BITSHUFFLE_PAGE_HEADER_SIZE + bytes));
223
351
        encode_fixed32_le(&_buffer[8], num_elems_after_padding);
224
351
        encode_fixed32_le(&_buffer[12], final_size_of_type);
225
351
        _finished = true;
226
        // before build(), update buffer length to the actual compressed size
227
351
        _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE + bytes);
228
351
        return _buffer.build();
229
351
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE28EE7_finishEi
Line
Count
Source
193
38.1k
    OwnedSlice _finish(int final_size_of_type) {
194
38.1k
        _data.resize(final_size_of_type * _count);
195
196
        // Do padding so that the input num of element is multiple of 8.
197
38.1k
        int num_elems_after_padding = ALIGN_UP(_count, 8);
198
38.1k
        int padding_elems = num_elems_after_padding - _count;
199
38.1k
        int padding_bytes = padding_elems * final_size_of_type;
200
809k
        for (int i = 0; i < padding_bytes; i++) {
201
771k
            _data.push_back(0);
202
771k
        }
203
204
        // reserve enough place for compression
205
38.1k
        _buffer.resize(
206
38.1k
                BITSHUFFLE_PAGE_HEADER_SIZE +
207
38.1k
                bitshuffle::compress_lz4_bound(num_elems_after_padding, final_size_of_type, 0));
208
209
38.1k
        int64_t bytes =
210
38.1k
                bitshuffle::compress_lz4(_data.data(), &_buffer[BITSHUFFLE_PAGE_HEADER_SIZE],
211
38.1k
                                         num_elems_after_padding, final_size_of_type, 0);
212
38.1k
        if (bytes < 0) [[unlikely]] {
213
            // This means the bitshuffle function fails.
214
            // Ideally, this should not happen.
215
0
            warn_with_bitshuffle_error(bytes);
216
            // It does not matter what will be returned here,
217
            // since we have logged fatal in warn_with_bitshuffle_error().
218
0
            return OwnedSlice();
219
0
        }
220
        // update header
221
38.1k
        encode_fixed32_le(&_buffer[0], _count);
222
38.1k
        encode_fixed32_le(&_buffer[4], cast_set<uint32_t>(BITSHUFFLE_PAGE_HEADER_SIZE + bytes));
223
38.1k
        encode_fixed32_le(&_buffer[8], num_elems_after_padding);
224
38.1k
        encode_fixed32_le(&_buffer[12], final_size_of_type);
225
38.1k
        _finished = true;
226
        // before build(), update buffer length to the actual compressed size
227
38.1k
        _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE + bytes);
228
38.1k
        return _buffer.build();
229
38.1k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE29EE7_finishEi
Line
Count
Source
193
43.2k
    OwnedSlice _finish(int final_size_of_type) {
194
43.2k
        _data.resize(final_size_of_type * _count);
195
196
        // Do padding so that the input num of element is multiple of 8.
197
43.2k
        int num_elems_after_padding = ALIGN_UP(_count, 8);
198
43.2k
        int padding_elems = num_elems_after_padding - _count;
199
43.2k
        int padding_bytes = padding_elems * final_size_of_type;
200
1.81M
        for (int i = 0; i < padding_bytes; i++) {
201
1.77M
            _data.push_back(0);
202
1.77M
        }
203
204
        // reserve enough place for compression
205
43.2k
        _buffer.resize(
206
43.2k
                BITSHUFFLE_PAGE_HEADER_SIZE +
207
43.2k
                bitshuffle::compress_lz4_bound(num_elems_after_padding, final_size_of_type, 0));
208
209
43.2k
        int64_t bytes =
210
43.2k
                bitshuffle::compress_lz4(_data.data(), &_buffer[BITSHUFFLE_PAGE_HEADER_SIZE],
211
43.2k
                                         num_elems_after_padding, final_size_of_type, 0);
212
43.2k
        if (bytes < 0) [[unlikely]] {
213
            // This means the bitshuffle function fails.
214
            // Ideally, this should not happen.
215
0
            warn_with_bitshuffle_error(bytes);
216
            // It does not matter what will be returned here,
217
            // since we have logged fatal in warn_with_bitshuffle_error().
218
0
            return OwnedSlice();
219
0
        }
220
        // update header
221
43.2k
        encode_fixed32_le(&_buffer[0], _count);
222
43.2k
        encode_fixed32_le(&_buffer[4], cast_set<uint32_t>(BITSHUFFLE_PAGE_HEADER_SIZE + bytes));
223
43.2k
        encode_fixed32_le(&_buffer[8], num_elems_after_padding);
224
43.2k
        encode_fixed32_le(&_buffer[12], final_size_of_type);
225
43.2k
        _finished = true;
226
        // before build(), update buffer length to the actual compressed size
227
43.2k
        _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE + bytes);
228
43.2k
        return _buffer.build();
229
43.2k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE41EE7_finishEi
Line
Count
Source
193
276
    OwnedSlice _finish(int final_size_of_type) {
194
276
        _data.resize(final_size_of_type * _count);
195
196
        // Do padding so that the input num of element is multiple of 8.
197
276
        int num_elems_after_padding = ALIGN_UP(_count, 8);
198
276
        int padding_elems = num_elems_after_padding - _count;
199
276
        int padding_bytes = padding_elems * final_size_of_type;
200
11.5k
        for (int i = 0; i < padding_bytes; i++) {
201
11.2k
            _data.push_back(0);
202
11.2k
        }
203
204
        // reserve enough place for compression
205
276
        _buffer.resize(
206
276
                BITSHUFFLE_PAGE_HEADER_SIZE +
207
276
                bitshuffle::compress_lz4_bound(num_elems_after_padding, final_size_of_type, 0));
208
209
276
        int64_t bytes =
210
276
                bitshuffle::compress_lz4(_data.data(), &_buffer[BITSHUFFLE_PAGE_HEADER_SIZE],
211
276
                                         num_elems_after_padding, final_size_of_type, 0);
212
276
        if (bytes < 0) [[unlikely]] {
213
            // This means the bitshuffle function fails.
214
            // Ideally, this should not happen.
215
0
            warn_with_bitshuffle_error(bytes);
216
            // It does not matter what will be returned here,
217
            // since we have logged fatal in warn_with_bitshuffle_error().
218
0
            return OwnedSlice();
219
0
        }
220
        // update header
221
276
        encode_fixed32_le(&_buffer[0], _count);
222
276
        encode_fixed32_le(&_buffer[4], cast_set<uint32_t>(BITSHUFFLE_PAGE_HEADER_SIZE + bytes));
223
276
        encode_fixed32_le(&_buffer[8], num_elems_after_padding);
224
276
        encode_fixed32_le(&_buffer[12], final_size_of_type);
225
276
        _finished = true;
226
        // before build(), update buffer length to the actual compressed size
227
276
        _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE + bytes);
228
276
        return _buffer.build();
229
276
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE15EE7_finishEi
Line
Count
Source
193
596
    OwnedSlice _finish(int final_size_of_type) {
194
596
        _data.resize(final_size_of_type * _count);
195
196
        // Do padding so that the input num of element is multiple of 8.
197
596
        int num_elems_after_padding = ALIGN_UP(_count, 8);
198
596
        int padding_elems = num_elems_after_padding - _count;
199
596
        int padding_bytes = padding_elems * final_size_of_type;
200
13.4k
        for (int i = 0; i < padding_bytes; i++) {
201
12.8k
            _data.push_back(0);
202
12.8k
        }
203
204
        // reserve enough place for compression
205
596
        _buffer.resize(
206
596
                BITSHUFFLE_PAGE_HEADER_SIZE +
207
596
                bitshuffle::compress_lz4_bound(num_elems_after_padding, final_size_of_type, 0));
208
209
596
        int64_t bytes =
210
596
                bitshuffle::compress_lz4(_data.data(), &_buffer[BITSHUFFLE_PAGE_HEADER_SIZE],
211
596
                                         num_elems_after_padding, final_size_of_type, 0);
212
596
        if (bytes < 0) [[unlikely]] {
213
            // This means the bitshuffle function fails.
214
            // Ideally, this should not happen.
215
0
            warn_with_bitshuffle_error(bytes);
216
            // It does not matter what will be returned here,
217
            // since we have logged fatal in warn_with_bitshuffle_error().
218
0
            return OwnedSlice();
219
0
        }
220
        // update header
221
596
        encode_fixed32_le(&_buffer[0], _count);
222
596
        encode_fixed32_le(&_buffer[4], cast_set<uint32_t>(BITSHUFFLE_PAGE_HEADER_SIZE + bytes));
223
596
        encode_fixed32_le(&_buffer[8], num_elems_after_padding);
224
596
        encode_fixed32_le(&_buffer[12], final_size_of_type);
225
596
        _finished = true;
226
        // before build(), update buffer length to the actual compressed size
227
596
        _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE + bytes);
228
596
        return _buffer.build();
229
596
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE40EE7_finishEi
Line
Count
Source
193
7.79k
    OwnedSlice _finish(int final_size_of_type) {
194
7.79k
        _data.resize(final_size_of_type * _count);
195
196
        // Do padding so that the input num of element is multiple of 8.
197
7.79k
        int num_elems_after_padding = ALIGN_UP(_count, 8);
198
7.79k
        int padding_elems = num_elems_after_padding - _count;
199
7.79k
        int padding_bytes = padding_elems * final_size_of_type;
200
406k
        for (int i = 0; i < padding_bytes; i++) {
201
398k
            _data.push_back(0);
202
398k
        }
203
204
        // reserve enough place for compression
205
7.79k
        _buffer.resize(
206
7.79k
                BITSHUFFLE_PAGE_HEADER_SIZE +
207
7.79k
                bitshuffle::compress_lz4_bound(num_elems_after_padding, final_size_of_type, 0));
208
209
7.79k
        int64_t bytes =
210
7.79k
                bitshuffle::compress_lz4(_data.data(), &_buffer[BITSHUFFLE_PAGE_HEADER_SIZE],
211
7.79k
                                         num_elems_after_padding, final_size_of_type, 0);
212
7.79k
        if (bytes < 0) [[unlikely]] {
213
            // This means the bitshuffle function fails.
214
            // Ideally, this should not happen.
215
0
            warn_with_bitshuffle_error(bytes);
216
            // It does not matter what will be returned here,
217
            // since we have logged fatal in warn_with_bitshuffle_error().
218
0
            return OwnedSlice();
219
0
        }
220
        // update header
221
7.79k
        encode_fixed32_le(&_buffer[0], _count);
222
7.79k
        encode_fixed32_le(&_buffer[4], cast_set<uint32_t>(BITSHUFFLE_PAGE_HEADER_SIZE + bytes));
223
7.79k
        encode_fixed32_le(&_buffer[8], num_elems_after_padding);
224
7.79k
        encode_fixed32_le(&_buffer[12], final_size_of_type);
225
7.79k
        _finished = true;
226
        // before build(), update buffer length to the actual compressed size
227
7.79k
        _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE + bytes);
228
7.79k
        return _buffer.build();
229
7.79k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE16EE7_finishEi
Line
Count
Source
193
252
    OwnedSlice _finish(int final_size_of_type) {
194
252
        _data.resize(final_size_of_type * _count);
195
196
        // Do padding so that the input num of element is multiple of 8.
197
252
        int num_elems_after_padding = ALIGN_UP(_count, 8);
198
252
        int padding_elems = num_elems_after_padding - _count;
199
252
        int padding_bytes = padding_elems * final_size_of_type;
200
15.7k
        for (int i = 0; i < padding_bytes; i++) {
201
15.4k
            _data.push_back(0);
202
15.4k
        }
203
204
        // reserve enough place for compression
205
252
        _buffer.resize(
206
252
                BITSHUFFLE_PAGE_HEADER_SIZE +
207
252
                bitshuffle::compress_lz4_bound(num_elems_after_padding, final_size_of_type, 0));
208
209
252
        int64_t bytes =
210
252
                bitshuffle::compress_lz4(_data.data(), &_buffer[BITSHUFFLE_PAGE_HEADER_SIZE],
211
252
                                         num_elems_after_padding, final_size_of_type, 0);
212
252
        if (bytes < 0) [[unlikely]] {
213
            // This means the bitshuffle function fails.
214
            // Ideally, this should not happen.
215
0
            warn_with_bitshuffle_error(bytes);
216
            // It does not matter what will be returned here,
217
            // since we have logged fatal in warn_with_bitshuffle_error().
218
0
            return OwnedSlice();
219
0
        }
220
        // update header
221
252
        encode_fixed32_le(&_buffer[0], _count);
222
252
        encode_fixed32_le(&_buffer[4], cast_set<uint32_t>(BITSHUFFLE_PAGE_HEADER_SIZE + bytes));
223
252
        encode_fixed32_le(&_buffer[8], num_elems_after_padding);
224
252
        encode_fixed32_le(&_buffer[12], final_size_of_type);
225
252
        _finished = true;
226
        // before build(), update buffer length to the actual compressed size
227
252
        _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE + bytes);
228
252
        return _buffer.build();
229
252
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE31EE7_finishEi
Line
Count
Source
193
9.73k
    OwnedSlice _finish(int final_size_of_type) {
194
9.73k
        _data.resize(final_size_of_type * _count);
195
196
        // Do padding so that the input num of element is multiple of 8.
197
9.73k
        int num_elems_after_padding = ALIGN_UP(_count, 8);
198
9.73k
        int padding_elems = num_elems_after_padding - _count;
199
9.73k
        int padding_bytes = padding_elems * final_size_of_type;
200
117k
        for (int i = 0; i < padding_bytes; i++) {
201
107k
            _data.push_back(0);
202
107k
        }
203
204
        // reserve enough place for compression
205
9.73k
        _buffer.resize(
206
9.73k
                BITSHUFFLE_PAGE_HEADER_SIZE +
207
9.73k
                bitshuffle::compress_lz4_bound(num_elems_after_padding, final_size_of_type, 0));
208
209
9.73k
        int64_t bytes =
210
9.73k
                bitshuffle::compress_lz4(_data.data(), &_buffer[BITSHUFFLE_PAGE_HEADER_SIZE],
211
9.73k
                                         num_elems_after_padding, final_size_of_type, 0);
212
9.73k
        if (bytes < 0) [[unlikely]] {
213
            // This means the bitshuffle function fails.
214
            // Ideally, this should not happen.
215
0
            warn_with_bitshuffle_error(bytes);
216
            // It does not matter what will be returned here,
217
            // since we have logged fatal in warn_with_bitshuffle_error().
218
0
            return OwnedSlice();
219
0
        }
220
        // update header
221
9.73k
        encode_fixed32_le(&_buffer[0], _count);
222
9.73k
        encode_fixed32_le(&_buffer[4], cast_set<uint32_t>(BITSHUFFLE_PAGE_HEADER_SIZE + bytes));
223
9.73k
        encode_fixed32_le(&_buffer[8], num_elems_after_padding);
224
9.73k
        encode_fixed32_le(&_buffer[12], final_size_of_type);
225
9.73k
        _finished = true;
226
        // before build(), update buffer length to the actual compressed size
227
9.73k
        _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE + bytes);
228
9.73k
        return _buffer.build();
229
9.73k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE32EE7_finishEi
Line
Count
Source
193
18.7k
    OwnedSlice _finish(int final_size_of_type) {
194
18.7k
        _data.resize(final_size_of_type * _count);
195
196
        // Do padding so that the input num of element is multiple of 8.
197
18.7k
        int num_elems_after_padding = ALIGN_UP(_count, 8);
198
18.7k
        int padding_elems = num_elems_after_padding - _count;
199
18.7k
        int padding_bytes = padding_elems * final_size_of_type;
200
487k
        for (int i = 0; i < padding_bytes; i++) {
201
469k
            _data.push_back(0);
202
469k
        }
203
204
        // reserve enough place for compression
205
18.7k
        _buffer.resize(
206
18.7k
                BITSHUFFLE_PAGE_HEADER_SIZE +
207
18.7k
                bitshuffle::compress_lz4_bound(num_elems_after_padding, final_size_of_type, 0));
208
209
18.7k
        int64_t bytes =
210
18.7k
                bitshuffle::compress_lz4(_data.data(), &_buffer[BITSHUFFLE_PAGE_HEADER_SIZE],
211
18.7k
                                         num_elems_after_padding, final_size_of_type, 0);
212
18.7k
        if (bytes < 0) [[unlikely]] {
213
            // This means the bitshuffle function fails.
214
            // Ideally, this should not happen.
215
0
            warn_with_bitshuffle_error(bytes);
216
            // It does not matter what will be returned here,
217
            // since we have logged fatal in warn_with_bitshuffle_error().
218
0
            return OwnedSlice();
219
0
        }
220
        // update header
221
18.7k
        encode_fixed32_le(&_buffer[0], _count);
222
18.7k
        encode_fixed32_le(&_buffer[4], cast_set<uint32_t>(BITSHUFFLE_PAGE_HEADER_SIZE + bytes));
223
18.7k
        encode_fixed32_le(&_buffer[8], num_elems_after_padding);
224
18.7k
        encode_fixed32_le(&_buffer[12], final_size_of_type);
225
18.7k
        _finished = true;
226
        // before build(), update buffer length to the actual compressed size
227
18.7k
        _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE + bytes);
228
18.7k
        return _buffer.build();
229
18.7k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE33EE7_finishEi
Line
Count
Source
193
17.1k
    OwnedSlice _finish(int final_size_of_type) {
194
17.1k
        _data.resize(final_size_of_type * _count);
195
196
        // Do padding so that the input num of element is multiple of 8.
197
17.1k
        int num_elems_after_padding = ALIGN_UP(_count, 8);
198
17.1k
        int padding_elems = num_elems_after_padding - _count;
199
17.1k
        int padding_bytes = padding_elems * final_size_of_type;
200
1.14M
        for (int i = 0; i < padding_bytes; i++) {
201
1.13M
            _data.push_back(0);
202
1.13M
        }
203
204
        // reserve enough place for compression
205
17.1k
        _buffer.resize(
206
17.1k
                BITSHUFFLE_PAGE_HEADER_SIZE +
207
17.1k
                bitshuffle::compress_lz4_bound(num_elems_after_padding, final_size_of_type, 0));
208
209
17.1k
        int64_t bytes =
210
17.1k
                bitshuffle::compress_lz4(_data.data(), &_buffer[BITSHUFFLE_PAGE_HEADER_SIZE],
211
17.1k
                                         num_elems_after_padding, final_size_of_type, 0);
212
17.1k
        if (bytes < 0) [[unlikely]] {
213
            // This means the bitshuffle function fails.
214
            // Ideally, this should not happen.
215
0
            warn_with_bitshuffle_error(bytes);
216
            // It does not matter what will be returned here,
217
            // since we have logged fatal in warn_with_bitshuffle_error().
218
0
            return OwnedSlice();
219
0
        }
220
        // update header
221
17.1k
        encode_fixed32_le(&_buffer[0], _count);
222
17.1k
        encode_fixed32_le(&_buffer[4], cast_set<uint32_t>(BITSHUFFLE_PAGE_HEADER_SIZE + bytes));
223
17.1k
        encode_fixed32_le(&_buffer[8], num_elems_after_padding);
224
17.1k
        encode_fixed32_le(&_buffer[12], final_size_of_type);
225
17.1k
        _finished = true;
226
        // before build(), update buffer length to the actual compressed size
227
17.1k
        _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE + bytes);
228
17.1k
        return _buffer.build();
229
17.1k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE37EE7_finishEi
Line
Count
Source
193
1.14k
    OwnedSlice _finish(int final_size_of_type) {
194
1.14k
        _data.resize(final_size_of_type * _count);
195
196
        // Do padding so that the input num of element is multiple of 8.
197
1.14k
        int num_elems_after_padding = ALIGN_UP(_count, 8);
198
1.14k
        int padding_elems = num_elems_after_padding - _count;
199
1.14k
        int padding_bytes = padding_elems * final_size_of_type;
200
173k
        for (int i = 0; i < padding_bytes; i++) {
201
172k
            _data.push_back(0);
202
172k
        }
203
204
        // reserve enough place for compression
205
1.14k
        _buffer.resize(
206
1.14k
                BITSHUFFLE_PAGE_HEADER_SIZE +
207
1.14k
                bitshuffle::compress_lz4_bound(num_elems_after_padding, final_size_of_type, 0));
208
209
1.14k
        int64_t bytes =
210
1.14k
                bitshuffle::compress_lz4(_data.data(), &_buffer[BITSHUFFLE_PAGE_HEADER_SIZE],
211
1.14k
                                         num_elems_after_padding, final_size_of_type, 0);
212
1.14k
        if (bytes < 0) [[unlikely]] {
213
            // This means the bitshuffle function fails.
214
            // Ideally, this should not happen.
215
0
            warn_with_bitshuffle_error(bytes);
216
            // It does not matter what will be returned here,
217
            // since we have logged fatal in warn_with_bitshuffle_error().
218
0
            return OwnedSlice();
219
0
        }
220
        // update header
221
1.14k
        encode_fixed32_le(&_buffer[0], _count);
222
1.14k
        encode_fixed32_le(&_buffer[4], cast_set<uint32_t>(BITSHUFFLE_PAGE_HEADER_SIZE + bytes));
223
1.14k
        encode_fixed32_le(&_buffer[8], num_elems_after_padding);
224
1.14k
        encode_fixed32_le(&_buffer[12], final_size_of_type);
225
1.14k
        _finished = true;
226
        // before build(), update buffer length to the actual compressed size
227
1.14k
        _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE + bytes);
228
1.14k
        return _buffer.build();
229
1.14k
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE38EE7_finishEi
Line
Count
Source
193
623
    OwnedSlice _finish(int final_size_of_type) {
194
623
        _data.resize(final_size_of_type * _count);
195
196
        // Do padding so that the input num of element is multiple of 8.
197
623
        int num_elems_after_padding = ALIGN_UP(_count, 8);
198
623
        int padding_elems = num_elems_after_padding - _count;
199
623
        int padding_bytes = padding_elems * final_size_of_type;
200
12.6k
        for (int i = 0; i < padding_bytes; i++) {
201
12.0k
            _data.push_back(0);
202
12.0k
        }
203
204
        // reserve enough place for compression
205
623
        _buffer.resize(
206
623
                BITSHUFFLE_PAGE_HEADER_SIZE +
207
623
                bitshuffle::compress_lz4_bound(num_elems_after_padding, final_size_of_type, 0));
208
209
623
        int64_t bytes =
210
623
                bitshuffle::compress_lz4(_data.data(), &_buffer[BITSHUFFLE_PAGE_HEADER_SIZE],
211
623
                                         num_elems_after_padding, final_size_of_type, 0);
212
623
        if (bytes < 0) [[unlikely]] {
213
            // This means the bitshuffle function fails.
214
            // Ideally, this should not happen.
215
0
            warn_with_bitshuffle_error(bytes);
216
            // It does not matter what will be returned here,
217
            // since we have logged fatal in warn_with_bitshuffle_error().
218
0
            return OwnedSlice();
219
0
        }
220
        // update header
221
623
        encode_fixed32_le(&_buffer[0], _count);
222
623
        encode_fixed32_le(&_buffer[4], cast_set<uint32_t>(BITSHUFFLE_PAGE_HEADER_SIZE + bytes));
223
623
        encode_fixed32_le(&_buffer[8], num_elems_after_padding);
224
623
        encode_fixed32_le(&_buffer[12], final_size_of_type);
225
623
        _finished = true;
226
        // before build(), update buffer length to the actual compressed size
227
623
        _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE + bytes);
228
623
        return _buffer.build();
229
623
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE39EE7_finishEi
Line
Count
Source
193
630
    OwnedSlice _finish(int final_size_of_type) {
194
630
        _data.resize(final_size_of_type * _count);
195
196
        // Do padding so that the input num of element is multiple of 8.
197
630
        int num_elems_after_padding = ALIGN_UP(_count, 8);
198
630
        int padding_elems = num_elems_after_padding - _count;
199
630
        int padding_bytes = padding_elems * final_size_of_type;
200
50.3k
        for (int i = 0; i < padding_bytes; i++) {
201
49.6k
            _data.push_back(0);
202
49.6k
        }
203
204
        // reserve enough place for compression
205
630
        _buffer.resize(
206
630
                BITSHUFFLE_PAGE_HEADER_SIZE +
207
630
                bitshuffle::compress_lz4_bound(num_elems_after_padding, final_size_of_type, 0));
208
209
630
        int64_t bytes =
210
630
                bitshuffle::compress_lz4(_data.data(), &_buffer[BITSHUFFLE_PAGE_HEADER_SIZE],
211
630
                                         num_elems_after_padding, final_size_of_type, 0);
212
630
        if (bytes < 0) [[unlikely]] {
213
            // This means the bitshuffle function fails.
214
            // Ideally, this should not happen.
215
0
            warn_with_bitshuffle_error(bytes);
216
            // It does not matter what will be returned here,
217
            // since we have logged fatal in warn_with_bitshuffle_error().
218
0
            return OwnedSlice();
219
0
        }
220
        // update header
221
630
        encode_fixed32_le(&_buffer[0], _count);
222
630
        encode_fixed32_le(&_buffer[4], cast_set<uint32_t>(BITSHUFFLE_PAGE_HEADER_SIZE + bytes));
223
630
        encode_fixed32_le(&_buffer[8], num_elems_after_padding);
224
630
        encode_fixed32_le(&_buffer[12], final_size_of_type);
225
630
        _finished = true;
226
        // before build(), update buffer length to the actual compressed size
227
630
        _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE + bytes);
228
630
        return _buffer.build();
229
630
    }
_ZN5doris10segment_v221BitshufflePageBuilderILNS_9FieldTypeE42EE7_finishEi
Line
Count
Source
193
722
    OwnedSlice _finish(int final_size_of_type) {
194
722
        _data.resize(final_size_of_type * _count);
195
196
        // Do padding so that the input num of element is multiple of 8.
197
722
        int num_elems_after_padding = ALIGN_UP(_count, 8);
198
722
        int padding_elems = num_elems_after_padding - _count;
199
722
        int padding_bytes = padding_elems * final_size_of_type;
200
53.3k
        for (int i = 0; i < padding_bytes; i++) {
201
52.6k
            _data.push_back(0);
202
52.6k
        }
203
204
        // reserve enough place for compression
205
722
        _buffer.resize(
206
722
                BITSHUFFLE_PAGE_HEADER_SIZE +
207
722
                bitshuffle::compress_lz4_bound(num_elems_after_padding, final_size_of_type, 0));
208
209
722
        int64_t bytes =
210
722
                bitshuffle::compress_lz4(_data.data(), &_buffer[BITSHUFFLE_PAGE_HEADER_SIZE],
211
722
                                         num_elems_after_padding, final_size_of_type, 0);
212
722
        if (bytes < 0) [[unlikely]] {
213
            // This means the bitshuffle function fails.
214
            // Ideally, this should not happen.
215
0
            warn_with_bitshuffle_error(bytes);
216
            // It does not matter what will be returned here,
217
            // since we have logged fatal in warn_with_bitshuffle_error().
218
0
            return OwnedSlice();
219
0
        }
220
        // update header
221
722
        encode_fixed32_le(&_buffer[0], _count);
222
722
        encode_fixed32_le(&_buffer[4], cast_set<uint32_t>(BITSHUFFLE_PAGE_HEADER_SIZE + bytes));
223
722
        encode_fixed32_le(&_buffer[8], num_elems_after_padding);
224
722
        encode_fixed32_le(&_buffer[12], final_size_of_type);
225
722
        _finished = true;
226
        // before build(), update buffer length to the actual compressed size
227
722
        _buffer.resize(BITSHUFFLE_PAGE_HEADER_SIZE + bytes);
228
722
        return _buffer.build();
229
722
    }
230
231
    using CppType = typename TypeTraits<Type>::CppType;
232
233
    CppType cell(int idx) const {
234
        DCHECK_GE(idx, 0);
235
        CppType ret;
236
        memcpy(&ret, &_data[idx * SIZE_OF_TYPE], SIZE_OF_TYPE);
237
        return ret;
238
    }
239
240
    enum { SIZE_OF_TYPE = TypeTraits<Type>::size };
241
    PageBuilderOptions _options;
242
    uint32_t _count;
243
    uint32_t _remain_element_capacity;
244
    bool _finished;
245
    faststring _data;
246
    faststring _buffer;
247
    uint64_t _raw_data_size = 0;
248
};
249
250
inline Status parse_bit_shuffle_header(const Slice& data, size_t& num_elements,
251
                                       size_t& compressed_size, size_t& num_element_after_padding,
252
1.65M
                                       int& size_of_element) {
253
1.65M
    if (data.size < BITSHUFFLE_PAGE_HEADER_SIZE) {
254
0
        return Status::InternalError("file corruption: invalid data size:{}, header size:{}",
255
0
                                     data.size, BITSHUFFLE_PAGE_HEADER_SIZE);
256
0
    }
257
258
1.65M
    num_elements = decode_fixed32_le((const uint8_t*)&data[0]);
259
1.65M
    compressed_size = decode_fixed32_le((const uint8_t*)&data[4]);
260
1.65M
    num_element_after_padding = decode_fixed32_le((const uint8_t*)&data[8]);
261
1.65M
    size_of_element = decode_fixed32_le((const uint8_t*)&data[12]);
262
1.65M
    if (num_element_after_padding != ALIGN_UP(num_elements, 8)) {
263
0
        return Status::InternalError(
264
0
                "num of element information corrupted,"
265
0
                " _num_element_after_padding:{}, _num_elements:{}, expected_padding:{},"
266
0
                " compressed_size:{}, size_of_element:{}, data_size:{}",
267
0
                num_element_after_padding, num_elements, ALIGN_UP(num_elements, 8), compressed_size,
268
0
                size_of_element, data.size);
269
0
    }
270
1.65M
    switch (size_of_element) {
271
127k
    case 1:
272
145k
    case 2:
273
147k
    case 3:
274
1.13M
    case 4:
275
1.57M
    case 8:
276
1.57M
    case 12:
277
1.65M
    case 16:
278
1.65M
    case 32:
279
1.65M
        break;
280
0
    default:
281
0
        return Status::InternalError("invalid size_of_elem:{}", size_of_element);
282
1.65M
    }
283
1.65M
    return Status::OK();
284
1.65M
}
285
286
template <FieldType Type>
287
class BitShufflePageDecoder : public PageDecoder {
288
public:
289
    BitShufflePageDecoder(Slice data, const PageDecoderOptions& options)
290
1.00M
            : _data(data),
291
1.00M
              _options(options),
292
1.00M
              _parsed(false),
293
1.00M
              _num_elements(0),
294
1.00M
              _num_element_after_padding(0),
295
1.00M
              _size_of_element(0),
296
1.00M
              _cur_index(0) {}
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE1EEC2ENS_5SliceERKNS0_18PageDecoderOptionsE
Line
Count
Source
290
72.7k
            : _data(data),
291
72.7k
              _options(options),
292
72.7k
              _parsed(false),
293
72.7k
              _num_elements(0),
294
72.7k
              _num_element_after_padding(0),
295
72.7k
              _size_of_element(0),
296
72.7k
              _cur_index(0) {}
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE3EEC2ENS_5SliceERKNS0_18PageDecoderOptionsE
Line
Count
Source
290
10.1k
            : _data(data),
291
10.1k
              _options(options),
292
10.1k
              _parsed(false),
293
10.1k
              _num_elements(0),
294
10.1k
              _num_element_after_padding(0),
295
10.1k
              _size_of_element(0),
296
10.1k
              _cur_index(0) {}
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE5EEC2ENS_5SliceERKNS0_18PageDecoderOptionsE
Line
Count
Source
290
512k
            : _data(data),
291
512k
              _options(options),
292
512k
              _parsed(false),
293
512k
              _num_elements(0),
294
512k
              _num_element_after_padding(0),
295
512k
              _size_of_element(0),
296
512k
              _cur_index(0) {}
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE7EEC2ENS_5SliceERKNS0_18PageDecoderOptionsE
Line
Count
Source
290
40.5k
            : _data(data),
291
40.5k
              _options(options),
292
40.5k
              _parsed(false),
293
40.5k
              _num_elements(0),
294
40.5k
              _num_element_after_padding(0),
295
40.5k
              _size_of_element(0),
296
40.5k
              _cur_index(0) {}
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE9EEC2ENS_5SliceERKNS0_18PageDecoderOptionsE
Line
Count
Source
290
11.8k
            : _data(data),
291
11.8k
              _options(options),
292
11.8k
              _parsed(false),
293
11.8k
              _num_elements(0),
294
11.8k
              _num_element_after_padding(0),
295
11.8k
              _size_of_element(0),
296
11.8k
              _cur_index(0) {}
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE8EEC2ENS_5SliceERKNS0_18PageDecoderOptionsE
Line
Count
Source
290
96.0k
            : _data(data),
291
96.0k
              _options(options),
292
96.0k
              _parsed(false),
293
96.0k
              _num_elements(0),
294
96.0k
              _num_element_after_padding(0),
295
96.0k
              _size_of_element(0),
296
96.0k
              _cur_index(0) {}
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE6EEC2ENS_5SliceERKNS0_18PageDecoderOptionsE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE10EEC2ENS_5SliceERKNS0_18PageDecoderOptionsE
Line
Count
Source
290
8.26k
            : _data(data),
291
8.26k
              _options(options),
292
8.26k
              _parsed(false),
293
8.26k
              _num_elements(0),
294
8.26k
              _num_element_after_padding(0),
295
8.26k
              _size_of_element(0),
296
8.26k
              _cur_index(0) {}
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE11EEC2ENS_5SliceERKNS0_18PageDecoderOptionsE
Line
Count
Source
290
10.7k
            : _data(data),
291
10.7k
              _options(options),
292
10.7k
              _parsed(false),
293
10.7k
              _num_elements(0),
294
10.7k
              _num_element_after_padding(0),
295
10.7k
              _size_of_element(0),
296
10.7k
              _cur_index(0) {}
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE24EEC2ENS_5SliceERKNS0_18PageDecoderOptionsE
Line
Count
Source
290
3
            : _data(data),
291
3
              _options(options),
292
3
              _parsed(false),
293
3
              _num_elements(0),
294
3
              _num_element_after_padding(0),
295
3
              _size_of_element(0),
296
3
              _cur_index(0) {}
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE14EEC2ENS_5SliceERKNS0_18PageDecoderOptionsE
Line
Count
Source
290
1.59k
            : _data(data),
291
1.59k
              _options(options),
292
1.59k
              _parsed(false),
293
1.59k
              _num_elements(0),
294
1.59k
              _num_element_after_padding(0),
295
1.59k
              _size_of_element(0),
296
1.59k
              _cur_index(0) {}
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE28EEC2ENS_5SliceERKNS0_18PageDecoderOptionsE
Line
Count
Source
290
59.1k
            : _data(data),
291
59.1k
              _options(options),
292
59.1k
              _parsed(false),
293
59.1k
              _num_elements(0),
294
59.1k
              _num_element_after_padding(0),
295
59.1k
              _size_of_element(0),
296
59.1k
              _cur_index(0) {}
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE29EEC2ENS_5SliceERKNS0_18PageDecoderOptionsE
Line
Count
Source
290
66.9k
            : _data(data),
291
66.9k
              _options(options),
292
66.9k
              _parsed(false),
293
66.9k
              _num_elements(0),
294
66.9k
              _num_element_after_padding(0),
295
66.9k
              _size_of_element(0),
296
66.9k
              _cur_index(0) {}
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE41EEC2ENS_5SliceERKNS0_18PageDecoderOptionsE
Line
Count
Source
290
3.15k
            : _data(data),
291
3.15k
              _options(options),
292
3.15k
              _parsed(false),
293
3.15k
              _num_elements(0),
294
3.15k
              _num_element_after_padding(0),
295
3.15k
              _size_of_element(0),
296
3.15k
              _cur_index(0) {}
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE15EEC2ENS_5SliceERKNS0_18PageDecoderOptionsE
Line
Count
Source
290
2.21k
            : _data(data),
291
2.21k
              _options(options),
292
2.21k
              _parsed(false),
293
2.21k
              _num_elements(0),
294
2.21k
              _num_element_after_padding(0),
295
2.21k
              _size_of_element(0),
296
2.21k
              _cur_index(0) {}
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE40EEC2ENS_5SliceERKNS0_18PageDecoderOptionsE
Line
Count
Source
290
16.0k
            : _data(data),
291
16.0k
              _options(options),
292
16.0k
              _parsed(false),
293
16.0k
              _num_elements(0),
294
16.0k
              _num_element_after_padding(0),
295
16.0k
              _size_of_element(0),
296
16.0k
              _cur_index(0) {}
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE16EEC2ENS_5SliceERKNS0_18PageDecoderOptionsE
Line
Count
Source
290
1.36k
            : _data(data),
291
1.36k
              _options(options),
292
1.36k
              _parsed(false),
293
1.36k
              _num_elements(0),
294
1.36k
              _num_element_after_padding(0),
295
1.36k
              _size_of_element(0),
296
1.36k
              _cur_index(0) {}
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE31EEC2ENS_5SliceERKNS0_18PageDecoderOptionsE
Line
Count
Source
290
15.3k
            : _data(data),
291
15.3k
              _options(options),
292
15.3k
              _parsed(false),
293
15.3k
              _num_elements(0),
294
15.3k
              _num_element_after_padding(0),
295
15.3k
              _size_of_element(0),
296
15.3k
              _cur_index(0) {}
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE32EEC2ENS_5SliceERKNS0_18PageDecoderOptionsE
Line
Count
Source
290
41.2k
            : _data(data),
291
41.2k
              _options(options),
292
41.2k
              _parsed(false),
293
41.2k
              _num_elements(0),
294
41.2k
              _num_element_after_padding(0),
295
41.2k
              _size_of_element(0),
296
41.2k
              _cur_index(0) {}
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE33EEC2ENS_5SliceERKNS0_18PageDecoderOptionsE
Line
Count
Source
290
30.1k
            : _data(data),
291
30.1k
              _options(options),
292
30.1k
              _parsed(false),
293
30.1k
              _num_elements(0),
294
30.1k
              _num_element_after_padding(0),
295
30.1k
              _size_of_element(0),
296
30.1k
              _cur_index(0) {}
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE37EEC2ENS_5SliceERKNS0_18PageDecoderOptionsE
Line
Count
Source
290
1.74k
            : _data(data),
291
1.74k
              _options(options),
292
1.74k
              _parsed(false),
293
1.74k
              _num_elements(0),
294
1.74k
              _num_element_after_padding(0),
295
1.74k
              _size_of_element(0),
296
1.74k
              _cur_index(0) {}
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE38EEC2ENS_5SliceERKNS0_18PageDecoderOptionsE
Line
Count
Source
290
931
            : _data(data),
291
931
              _options(options),
292
931
              _parsed(false),
293
931
              _num_elements(0),
294
931
              _num_element_after_padding(0),
295
931
              _size_of_element(0),
296
931
              _cur_index(0) {}
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE39EEC2ENS_5SliceERKNS0_18PageDecoderOptionsE
Line
Count
Source
290
976
            : _data(data),
291
976
              _options(options),
292
976
              _parsed(false),
293
976
              _num_elements(0),
294
976
              _num_element_after_padding(0),
295
976
              _size_of_element(0),
296
976
              _cur_index(0) {}
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE42EEC2ENS_5SliceERKNS0_18PageDecoderOptionsE
Line
Count
Source
290
5.01k
            : _data(data),
291
5.01k
              _options(options),
292
5.01k
              _parsed(false),
293
5.01k
              _num_elements(0),
294
5.01k
              _num_element_after_padding(0),
295
5.01k
              _size_of_element(0),
296
5.01k
              _cur_index(0) {}
297
298
1.00M
    Status init() override {
299
1.00M
        CHECK(!_parsed);
300
1.00M
        size_t unused;
301
1.00M
        RETURN_IF_ERROR(parse_bit_shuffle_header(_data, _num_elements, unused,
302
1.00M
                                                 _num_element_after_padding, _size_of_element));
303
304
1.00M
        if (_data.size !=
305
1.00M
            _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE) {
306
0
            std::stringstream ss;
307
0
            ss << "Size information unmatched, _data.size:" << _data.size
308
0
               << ", _num_elements:" << _num_elements << ", expected size is "
309
0
               << _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE;
310
0
            return Status::InternalError(ss.str());
311
0
        }
312
313
        // Currently, only the UINT32 block encoder supports expanding size:
314
1.00M
        if (UNLIKELY(Type != FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT &&
315
1.00M
                     _size_of_element != SIZE_OF_TYPE)) {
316
0
            return Status::InternalError(
317
0
                    "invalid size info. size of element:{}, SIZE_OF_TYPE:{}, type:{}",
318
0
                    _size_of_element, SIZE_OF_TYPE, Type);
319
0
        }
320
1.00M
        if (UNLIKELY(_size_of_element > SIZE_OF_TYPE)) {
321
0
            return Status::InternalError("invalid size info. size of element:{}, SIZE_OF_TYPE:{}",
322
0
                                         _size_of_element, SIZE_OF_TYPE);
323
0
        }
324
1.00M
        _parsed = true;
325
1.00M
        return Status::OK();
326
1.00M
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE1EE4initEv
Line
Count
Source
298
72.6k
    Status init() override {
299
72.6k
        CHECK(!_parsed);
300
72.6k
        size_t unused;
301
72.6k
        RETURN_IF_ERROR(parse_bit_shuffle_header(_data, _num_elements, unused,
302
72.6k
                                                 _num_element_after_padding, _size_of_element));
303
304
72.6k
        if (_data.size !=
305
72.6k
            _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE) {
306
0
            std::stringstream ss;
307
0
            ss << "Size information unmatched, _data.size:" << _data.size
308
0
               << ", _num_elements:" << _num_elements << ", expected size is "
309
0
               << _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE;
310
0
            return Status::InternalError(ss.str());
311
0
        }
312
313
        // Currently, only the UINT32 block encoder supports expanding size:
314
72.6k
        if (UNLIKELY(Type != FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT &&
315
72.6k
                     _size_of_element != SIZE_OF_TYPE)) {
316
0
            return Status::InternalError(
317
0
                    "invalid size info. size of element:{}, SIZE_OF_TYPE:{}, type:{}",
318
0
                    _size_of_element, SIZE_OF_TYPE, Type);
319
0
        }
320
72.6k
        if (UNLIKELY(_size_of_element > SIZE_OF_TYPE)) {
321
0
            return Status::InternalError("invalid size info. size of element:{}, SIZE_OF_TYPE:{}",
322
0
                                         _size_of_element, SIZE_OF_TYPE);
323
0
        }
324
72.6k
        _parsed = true;
325
72.6k
        return Status::OK();
326
72.6k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE3EE4initEv
Line
Count
Source
298
10.1k
    Status init() override {
299
10.1k
        CHECK(!_parsed);
300
10.1k
        size_t unused;
301
10.1k
        RETURN_IF_ERROR(parse_bit_shuffle_header(_data, _num_elements, unused,
302
10.1k
                                                 _num_element_after_padding, _size_of_element));
303
304
10.1k
        if (_data.size !=
305
10.1k
            _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE) {
306
0
            std::stringstream ss;
307
0
            ss << "Size information unmatched, _data.size:" << _data.size
308
0
               << ", _num_elements:" << _num_elements << ", expected size is "
309
0
               << _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE;
310
0
            return Status::InternalError(ss.str());
311
0
        }
312
313
        // Currently, only the UINT32 block encoder supports expanding size:
314
10.1k
        if (UNLIKELY(Type != FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT &&
315
10.1k
                     _size_of_element != SIZE_OF_TYPE)) {
316
0
            return Status::InternalError(
317
0
                    "invalid size info. size of element:{}, SIZE_OF_TYPE:{}, type:{}",
318
0
                    _size_of_element, SIZE_OF_TYPE, Type);
319
0
        }
320
10.1k
        if (UNLIKELY(_size_of_element > SIZE_OF_TYPE)) {
321
0
            return Status::InternalError("invalid size info. size of element:{}, SIZE_OF_TYPE:{}",
322
0
                                         _size_of_element, SIZE_OF_TYPE);
323
0
        }
324
10.1k
        _parsed = true;
325
10.1k
        return Status::OK();
326
10.1k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE5EE4initEv
Line
Count
Source
298
511k
    Status init() override {
299
511k
        CHECK(!_parsed);
300
511k
        size_t unused;
301
511k
        RETURN_IF_ERROR(parse_bit_shuffle_header(_data, _num_elements, unused,
302
511k
                                                 _num_element_after_padding, _size_of_element));
303
304
511k
        if (_data.size !=
305
511k
            _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE) {
306
0
            std::stringstream ss;
307
0
            ss << "Size information unmatched, _data.size:" << _data.size
308
0
               << ", _num_elements:" << _num_elements << ", expected size is "
309
0
               << _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE;
310
0
            return Status::InternalError(ss.str());
311
0
        }
312
313
        // Currently, only the UINT32 block encoder supports expanding size:
314
511k
        if (UNLIKELY(Type != FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT &&
315
511k
                     _size_of_element != SIZE_OF_TYPE)) {
316
0
            return Status::InternalError(
317
0
                    "invalid size info. size of element:{}, SIZE_OF_TYPE:{}, type:{}",
318
0
                    _size_of_element, SIZE_OF_TYPE, Type);
319
0
        }
320
511k
        if (UNLIKELY(_size_of_element > SIZE_OF_TYPE)) {
321
0
            return Status::InternalError("invalid size info. size of element:{}, SIZE_OF_TYPE:{}",
322
0
                                         _size_of_element, SIZE_OF_TYPE);
323
0
        }
324
511k
        _parsed = true;
325
511k
        return Status::OK();
326
511k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE7EE4initEv
Line
Count
Source
298
40.4k
    Status init() override {
299
40.4k
        CHECK(!_parsed);
300
40.4k
        size_t unused;
301
40.4k
        RETURN_IF_ERROR(parse_bit_shuffle_header(_data, _num_elements, unused,
302
40.4k
                                                 _num_element_after_padding, _size_of_element));
303
304
40.4k
        if (_data.size !=
305
40.4k
            _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE) {
306
0
            std::stringstream ss;
307
0
            ss << "Size information unmatched, _data.size:" << _data.size
308
0
               << ", _num_elements:" << _num_elements << ", expected size is "
309
0
               << _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE;
310
0
            return Status::InternalError(ss.str());
311
0
        }
312
313
        // Currently, only the UINT32 block encoder supports expanding size:
314
40.4k
        if (UNLIKELY(Type != FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT &&
315
40.4k
                     _size_of_element != SIZE_OF_TYPE)) {
316
0
            return Status::InternalError(
317
0
                    "invalid size info. size of element:{}, SIZE_OF_TYPE:{}, type:{}",
318
0
                    _size_of_element, SIZE_OF_TYPE, Type);
319
0
        }
320
40.4k
        if (UNLIKELY(_size_of_element > SIZE_OF_TYPE)) {
321
0
            return Status::InternalError("invalid size info. size of element:{}, SIZE_OF_TYPE:{}",
322
0
                                         _size_of_element, SIZE_OF_TYPE);
323
0
        }
324
40.4k
        _parsed = true;
325
40.4k
        return Status::OK();
326
40.4k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE9EE4initEv
Line
Count
Source
298
11.7k
    Status init() override {
299
11.7k
        CHECK(!_parsed);
300
11.7k
        size_t unused;
301
11.7k
        RETURN_IF_ERROR(parse_bit_shuffle_header(_data, _num_elements, unused,
302
11.7k
                                                 _num_element_after_padding, _size_of_element));
303
304
11.7k
        if (_data.size !=
305
11.7k
            _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE) {
306
0
            std::stringstream ss;
307
0
            ss << "Size information unmatched, _data.size:" << _data.size
308
0
               << ", _num_elements:" << _num_elements << ", expected size is "
309
0
               << _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE;
310
0
            return Status::InternalError(ss.str());
311
0
        }
312
313
        // Currently, only the UINT32 block encoder supports expanding size:
314
11.7k
        if (UNLIKELY(Type != FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT &&
315
11.7k
                     _size_of_element != SIZE_OF_TYPE)) {
316
0
            return Status::InternalError(
317
0
                    "invalid size info. size of element:{}, SIZE_OF_TYPE:{}, type:{}",
318
0
                    _size_of_element, SIZE_OF_TYPE, Type);
319
0
        }
320
11.7k
        if (UNLIKELY(_size_of_element > SIZE_OF_TYPE)) {
321
0
            return Status::InternalError("invalid size info. size of element:{}, SIZE_OF_TYPE:{}",
322
0
                                         _size_of_element, SIZE_OF_TYPE);
323
0
        }
324
11.7k
        _parsed = true;
325
11.7k
        return Status::OK();
326
11.7k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE8EE4initEv
Line
Count
Source
298
96.0k
    Status init() override {
299
96.0k
        CHECK(!_parsed);
300
96.0k
        size_t unused;
301
96.0k
        RETURN_IF_ERROR(parse_bit_shuffle_header(_data, _num_elements, unused,
302
96.0k
                                                 _num_element_after_padding, _size_of_element));
303
304
96.0k
        if (_data.size !=
305
96.0k
            _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE) {
306
0
            std::stringstream ss;
307
0
            ss << "Size information unmatched, _data.size:" << _data.size
308
0
               << ", _num_elements:" << _num_elements << ", expected size is "
309
0
               << _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE;
310
0
            return Status::InternalError(ss.str());
311
0
        }
312
313
        // Currently, only the UINT32 block encoder supports expanding size:
314
96.0k
        if (UNLIKELY(Type != FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT &&
315
96.0k
                     _size_of_element != SIZE_OF_TYPE)) {
316
0
            return Status::InternalError(
317
0
                    "invalid size info. size of element:{}, SIZE_OF_TYPE:{}, type:{}",
318
0
                    _size_of_element, SIZE_OF_TYPE, Type);
319
0
        }
320
96.0k
        if (UNLIKELY(_size_of_element > SIZE_OF_TYPE)) {
321
0
            return Status::InternalError("invalid size info. size of element:{}, SIZE_OF_TYPE:{}",
322
0
                                         _size_of_element, SIZE_OF_TYPE);
323
0
        }
324
96.0k
        _parsed = true;
325
96.0k
        return Status::OK();
326
96.0k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE6EE4initEv
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE10EE4initEv
Line
Count
Source
298
8.26k
    Status init() override {
299
8.26k
        CHECK(!_parsed);
300
8.26k
        size_t unused;
301
8.26k
        RETURN_IF_ERROR(parse_bit_shuffle_header(_data, _num_elements, unused,
302
8.26k
                                                 _num_element_after_padding, _size_of_element));
303
304
8.26k
        if (_data.size !=
305
8.26k
            _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE) {
306
0
            std::stringstream ss;
307
0
            ss << "Size information unmatched, _data.size:" << _data.size
308
0
               << ", _num_elements:" << _num_elements << ", expected size is "
309
0
               << _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE;
310
0
            return Status::InternalError(ss.str());
311
0
        }
312
313
        // Currently, only the UINT32 block encoder supports expanding size:
314
8.26k
        if (UNLIKELY(Type != FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT &&
315
8.26k
                     _size_of_element != SIZE_OF_TYPE)) {
316
0
            return Status::InternalError(
317
0
                    "invalid size info. size of element:{}, SIZE_OF_TYPE:{}, type:{}",
318
0
                    _size_of_element, SIZE_OF_TYPE, Type);
319
0
        }
320
8.26k
        if (UNLIKELY(_size_of_element > SIZE_OF_TYPE)) {
321
0
            return Status::InternalError("invalid size info. size of element:{}, SIZE_OF_TYPE:{}",
322
0
                                         _size_of_element, SIZE_OF_TYPE);
323
0
        }
324
8.26k
        _parsed = true;
325
8.26k
        return Status::OK();
326
8.26k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE11EE4initEv
Line
Count
Source
298
10.7k
    Status init() override {
299
10.7k
        CHECK(!_parsed);
300
10.7k
        size_t unused;
301
10.7k
        RETURN_IF_ERROR(parse_bit_shuffle_header(_data, _num_elements, unused,
302
10.7k
                                                 _num_element_after_padding, _size_of_element));
303
304
10.7k
        if (_data.size !=
305
10.7k
            _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE) {
306
0
            std::stringstream ss;
307
0
            ss << "Size information unmatched, _data.size:" << _data.size
308
0
               << ", _num_elements:" << _num_elements << ", expected size is "
309
0
               << _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE;
310
0
            return Status::InternalError(ss.str());
311
0
        }
312
313
        // Currently, only the UINT32 block encoder supports expanding size:
314
10.7k
        if (UNLIKELY(Type != FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT &&
315
10.7k
                     _size_of_element != SIZE_OF_TYPE)) {
316
0
            return Status::InternalError(
317
0
                    "invalid size info. size of element:{}, SIZE_OF_TYPE:{}, type:{}",
318
0
                    _size_of_element, SIZE_OF_TYPE, Type);
319
0
        }
320
10.7k
        if (UNLIKELY(_size_of_element > SIZE_OF_TYPE)) {
321
0
            return Status::InternalError("invalid size info. size of element:{}, SIZE_OF_TYPE:{}",
322
0
                                         _size_of_element, SIZE_OF_TYPE);
323
0
        }
324
10.7k
        _parsed = true;
325
10.7k
        return Status::OK();
326
10.7k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE24EE4initEv
Line
Count
Source
298
3
    Status init() override {
299
3
        CHECK(!_parsed);
300
3
        size_t unused;
301
3
        RETURN_IF_ERROR(parse_bit_shuffle_header(_data, _num_elements, unused,
302
3
                                                 _num_element_after_padding, _size_of_element));
303
304
3
        if (_data.size !=
305
3
            _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE) {
306
0
            std::stringstream ss;
307
0
            ss << "Size information unmatched, _data.size:" << _data.size
308
0
               << ", _num_elements:" << _num_elements << ", expected size is "
309
0
               << _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE;
310
0
            return Status::InternalError(ss.str());
311
0
        }
312
313
        // Currently, only the UINT32 block encoder supports expanding size:
314
3
        if (UNLIKELY(Type != FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT &&
315
3
                     _size_of_element != SIZE_OF_TYPE)) {
316
0
            return Status::InternalError(
317
0
                    "invalid size info. size of element:{}, SIZE_OF_TYPE:{}, type:{}",
318
0
                    _size_of_element, SIZE_OF_TYPE, Type);
319
0
        }
320
3
        if (UNLIKELY(_size_of_element > SIZE_OF_TYPE)) {
321
0
            return Status::InternalError("invalid size info. size of element:{}, SIZE_OF_TYPE:{}",
322
0
                                         _size_of_element, SIZE_OF_TYPE);
323
0
        }
324
3
        _parsed = true;
325
3
        return Status::OK();
326
3
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE14EE4initEv
Line
Count
Source
298
1.59k
    Status init() override {
299
1.59k
        CHECK(!_parsed);
300
1.59k
        size_t unused;
301
1.59k
        RETURN_IF_ERROR(parse_bit_shuffle_header(_data, _num_elements, unused,
302
1.59k
                                                 _num_element_after_padding, _size_of_element));
303
304
1.59k
        if (_data.size !=
305
1.59k
            _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE) {
306
0
            std::stringstream ss;
307
0
            ss << "Size information unmatched, _data.size:" << _data.size
308
0
               << ", _num_elements:" << _num_elements << ", expected size is "
309
0
               << _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE;
310
0
            return Status::InternalError(ss.str());
311
0
        }
312
313
        // Currently, only the UINT32 block encoder supports expanding size:
314
1.59k
        if (UNLIKELY(Type != FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT &&
315
1.59k
                     _size_of_element != SIZE_OF_TYPE)) {
316
0
            return Status::InternalError(
317
0
                    "invalid size info. size of element:{}, SIZE_OF_TYPE:{}, type:{}",
318
0
                    _size_of_element, SIZE_OF_TYPE, Type);
319
0
        }
320
1.59k
        if (UNLIKELY(_size_of_element > SIZE_OF_TYPE)) {
321
0
            return Status::InternalError("invalid size info. size of element:{}, SIZE_OF_TYPE:{}",
322
0
                                         _size_of_element, SIZE_OF_TYPE);
323
0
        }
324
1.59k
        _parsed = true;
325
1.59k
        return Status::OK();
326
1.59k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE28EE4initEv
Line
Count
Source
298
59.0k
    Status init() override {
299
59.0k
        CHECK(!_parsed);
300
59.0k
        size_t unused;
301
59.0k
        RETURN_IF_ERROR(parse_bit_shuffle_header(_data, _num_elements, unused,
302
59.0k
                                                 _num_element_after_padding, _size_of_element));
303
304
59.0k
        if (_data.size !=
305
59.0k
            _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE) {
306
0
            std::stringstream ss;
307
0
            ss << "Size information unmatched, _data.size:" << _data.size
308
0
               << ", _num_elements:" << _num_elements << ", expected size is "
309
0
               << _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE;
310
0
            return Status::InternalError(ss.str());
311
0
        }
312
313
        // Currently, only the UINT32 block encoder supports expanding size:
314
59.0k
        if (UNLIKELY(Type != FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT &&
315
59.0k
                     _size_of_element != SIZE_OF_TYPE)) {
316
0
            return Status::InternalError(
317
0
                    "invalid size info. size of element:{}, SIZE_OF_TYPE:{}, type:{}",
318
0
                    _size_of_element, SIZE_OF_TYPE, Type);
319
0
        }
320
59.0k
        if (UNLIKELY(_size_of_element > SIZE_OF_TYPE)) {
321
0
            return Status::InternalError("invalid size info. size of element:{}, SIZE_OF_TYPE:{}",
322
0
                                         _size_of_element, SIZE_OF_TYPE);
323
0
        }
324
59.0k
        _parsed = true;
325
59.0k
        return Status::OK();
326
59.0k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE29EE4initEv
Line
Count
Source
298
66.9k
    Status init() override {
299
66.9k
        CHECK(!_parsed);
300
66.9k
        size_t unused;
301
66.9k
        RETURN_IF_ERROR(parse_bit_shuffle_header(_data, _num_elements, unused,
302
66.9k
                                                 _num_element_after_padding, _size_of_element));
303
304
66.9k
        if (_data.size !=
305
66.9k
            _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE) {
306
0
            std::stringstream ss;
307
0
            ss << "Size information unmatched, _data.size:" << _data.size
308
0
               << ", _num_elements:" << _num_elements << ", expected size is "
309
0
               << _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE;
310
0
            return Status::InternalError(ss.str());
311
0
        }
312
313
        // Currently, only the UINT32 block encoder supports expanding size:
314
66.9k
        if (UNLIKELY(Type != FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT &&
315
66.9k
                     _size_of_element != SIZE_OF_TYPE)) {
316
0
            return Status::InternalError(
317
0
                    "invalid size info. size of element:{}, SIZE_OF_TYPE:{}, type:{}",
318
0
                    _size_of_element, SIZE_OF_TYPE, Type);
319
0
        }
320
66.9k
        if (UNLIKELY(_size_of_element > SIZE_OF_TYPE)) {
321
0
            return Status::InternalError("invalid size info. size of element:{}, SIZE_OF_TYPE:{}",
322
0
                                         _size_of_element, SIZE_OF_TYPE);
323
0
        }
324
66.9k
        _parsed = true;
325
66.9k
        return Status::OK();
326
66.9k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE41EE4initEv
Line
Count
Source
298
3.15k
    Status init() override {
299
3.15k
        CHECK(!_parsed);
300
3.15k
        size_t unused;
301
3.15k
        RETURN_IF_ERROR(parse_bit_shuffle_header(_data, _num_elements, unused,
302
3.15k
                                                 _num_element_after_padding, _size_of_element));
303
304
3.15k
        if (_data.size !=
305
3.15k
            _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE) {
306
0
            std::stringstream ss;
307
0
            ss << "Size information unmatched, _data.size:" << _data.size
308
0
               << ", _num_elements:" << _num_elements << ", expected size is "
309
0
               << _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE;
310
0
            return Status::InternalError(ss.str());
311
0
        }
312
313
        // Currently, only the UINT32 block encoder supports expanding size:
314
3.15k
        if (UNLIKELY(Type != FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT &&
315
3.15k
                     _size_of_element != SIZE_OF_TYPE)) {
316
0
            return Status::InternalError(
317
0
                    "invalid size info. size of element:{}, SIZE_OF_TYPE:{}, type:{}",
318
0
                    _size_of_element, SIZE_OF_TYPE, Type);
319
0
        }
320
3.15k
        if (UNLIKELY(_size_of_element > SIZE_OF_TYPE)) {
321
0
            return Status::InternalError("invalid size info. size of element:{}, SIZE_OF_TYPE:{}",
322
0
                                         _size_of_element, SIZE_OF_TYPE);
323
0
        }
324
3.15k
        _parsed = true;
325
3.15k
        return Status::OK();
326
3.15k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE15EE4initEv
Line
Count
Source
298
2.21k
    Status init() override {
299
2.21k
        CHECK(!_parsed);
300
2.21k
        size_t unused;
301
2.21k
        RETURN_IF_ERROR(parse_bit_shuffle_header(_data, _num_elements, unused,
302
2.21k
                                                 _num_element_after_padding, _size_of_element));
303
304
2.21k
        if (_data.size !=
305
2.21k
            _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE) {
306
0
            std::stringstream ss;
307
0
            ss << "Size information unmatched, _data.size:" << _data.size
308
0
               << ", _num_elements:" << _num_elements << ", expected size is "
309
0
               << _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE;
310
0
            return Status::InternalError(ss.str());
311
0
        }
312
313
        // Currently, only the UINT32 block encoder supports expanding size:
314
2.21k
        if (UNLIKELY(Type != FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT &&
315
2.21k
                     _size_of_element != SIZE_OF_TYPE)) {
316
0
            return Status::InternalError(
317
0
                    "invalid size info. size of element:{}, SIZE_OF_TYPE:{}, type:{}",
318
0
                    _size_of_element, SIZE_OF_TYPE, Type);
319
0
        }
320
2.21k
        if (UNLIKELY(_size_of_element > SIZE_OF_TYPE)) {
321
0
            return Status::InternalError("invalid size info. size of element:{}, SIZE_OF_TYPE:{}",
322
0
                                         _size_of_element, SIZE_OF_TYPE);
323
0
        }
324
2.21k
        _parsed = true;
325
2.21k
        return Status::OK();
326
2.21k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE40EE4initEv
Line
Count
Source
298
15.9k
    Status init() override {
299
15.9k
        CHECK(!_parsed);
300
15.9k
        size_t unused;
301
15.9k
        RETURN_IF_ERROR(parse_bit_shuffle_header(_data, _num_elements, unused,
302
15.9k
                                                 _num_element_after_padding, _size_of_element));
303
304
15.9k
        if (_data.size !=
305
15.9k
            _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE) {
306
0
            std::stringstream ss;
307
0
            ss << "Size information unmatched, _data.size:" << _data.size
308
0
               << ", _num_elements:" << _num_elements << ", expected size is "
309
0
               << _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE;
310
0
            return Status::InternalError(ss.str());
311
0
        }
312
313
        // Currently, only the UINT32 block encoder supports expanding size:
314
15.9k
        if (UNLIKELY(Type != FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT &&
315
15.9k
                     _size_of_element != SIZE_OF_TYPE)) {
316
0
            return Status::InternalError(
317
0
                    "invalid size info. size of element:{}, SIZE_OF_TYPE:{}, type:{}",
318
0
                    _size_of_element, SIZE_OF_TYPE, Type);
319
0
        }
320
15.9k
        if (UNLIKELY(_size_of_element > SIZE_OF_TYPE)) {
321
0
            return Status::InternalError("invalid size info. size of element:{}, SIZE_OF_TYPE:{}",
322
0
                                         _size_of_element, SIZE_OF_TYPE);
323
0
        }
324
15.9k
        _parsed = true;
325
15.9k
        return Status::OK();
326
15.9k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE16EE4initEv
Line
Count
Source
298
1.36k
    Status init() override {
299
1.36k
        CHECK(!_parsed);
300
1.36k
        size_t unused;
301
1.36k
        RETURN_IF_ERROR(parse_bit_shuffle_header(_data, _num_elements, unused,
302
1.36k
                                                 _num_element_after_padding, _size_of_element));
303
304
1.36k
        if (_data.size !=
305
1.36k
            _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE) {
306
0
            std::stringstream ss;
307
0
            ss << "Size information unmatched, _data.size:" << _data.size
308
0
               << ", _num_elements:" << _num_elements << ", expected size is "
309
0
               << _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE;
310
0
            return Status::InternalError(ss.str());
311
0
        }
312
313
        // Currently, only the UINT32 block encoder supports expanding size:
314
1.36k
        if (UNLIKELY(Type != FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT &&
315
1.36k
                     _size_of_element != SIZE_OF_TYPE)) {
316
0
            return Status::InternalError(
317
0
                    "invalid size info. size of element:{}, SIZE_OF_TYPE:{}, type:{}",
318
0
                    _size_of_element, SIZE_OF_TYPE, Type);
319
0
        }
320
1.36k
        if (UNLIKELY(_size_of_element > SIZE_OF_TYPE)) {
321
0
            return Status::InternalError("invalid size info. size of element:{}, SIZE_OF_TYPE:{}",
322
0
                                         _size_of_element, SIZE_OF_TYPE);
323
0
        }
324
1.36k
        _parsed = true;
325
1.36k
        return Status::OK();
326
1.36k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE31EE4initEv
Line
Count
Source
298
15.3k
    Status init() override {
299
15.3k
        CHECK(!_parsed);
300
15.3k
        size_t unused;
301
15.3k
        RETURN_IF_ERROR(parse_bit_shuffle_header(_data, _num_elements, unused,
302
15.3k
                                                 _num_element_after_padding, _size_of_element));
303
304
15.3k
        if (_data.size !=
305
15.3k
            _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE) {
306
0
            std::stringstream ss;
307
0
            ss << "Size information unmatched, _data.size:" << _data.size
308
0
               << ", _num_elements:" << _num_elements << ", expected size is "
309
0
               << _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE;
310
0
            return Status::InternalError(ss.str());
311
0
        }
312
313
        // Currently, only the UINT32 block encoder supports expanding size:
314
15.3k
        if (UNLIKELY(Type != FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT &&
315
15.3k
                     _size_of_element != SIZE_OF_TYPE)) {
316
0
            return Status::InternalError(
317
0
                    "invalid size info. size of element:{}, SIZE_OF_TYPE:{}, type:{}",
318
0
                    _size_of_element, SIZE_OF_TYPE, Type);
319
0
        }
320
15.3k
        if (UNLIKELY(_size_of_element > SIZE_OF_TYPE)) {
321
0
            return Status::InternalError("invalid size info. size of element:{}, SIZE_OF_TYPE:{}",
322
0
                                         _size_of_element, SIZE_OF_TYPE);
323
0
        }
324
15.3k
        _parsed = true;
325
15.3k
        return Status::OK();
326
15.3k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE32EE4initEv
Line
Count
Source
298
41.1k
    Status init() override {
299
41.1k
        CHECK(!_parsed);
300
41.1k
        size_t unused;
301
41.1k
        RETURN_IF_ERROR(parse_bit_shuffle_header(_data, _num_elements, unused,
302
41.1k
                                                 _num_element_after_padding, _size_of_element));
303
304
41.1k
        if (_data.size !=
305
41.1k
            _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE) {
306
0
            std::stringstream ss;
307
0
            ss << "Size information unmatched, _data.size:" << _data.size
308
0
               << ", _num_elements:" << _num_elements << ", expected size is "
309
0
               << _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE;
310
0
            return Status::InternalError(ss.str());
311
0
        }
312
313
        // Currently, only the UINT32 block encoder supports expanding size:
314
41.1k
        if (UNLIKELY(Type != FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT &&
315
41.1k
                     _size_of_element != SIZE_OF_TYPE)) {
316
0
            return Status::InternalError(
317
0
                    "invalid size info. size of element:{}, SIZE_OF_TYPE:{}, type:{}",
318
0
                    _size_of_element, SIZE_OF_TYPE, Type);
319
0
        }
320
41.1k
        if (UNLIKELY(_size_of_element > SIZE_OF_TYPE)) {
321
0
            return Status::InternalError("invalid size info. size of element:{}, SIZE_OF_TYPE:{}",
322
0
                                         _size_of_element, SIZE_OF_TYPE);
323
0
        }
324
41.1k
        _parsed = true;
325
41.1k
        return Status::OK();
326
41.1k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE33EE4initEv
Line
Count
Source
298
30.1k
    Status init() override {
299
30.1k
        CHECK(!_parsed);
300
30.1k
        size_t unused;
301
30.1k
        RETURN_IF_ERROR(parse_bit_shuffle_header(_data, _num_elements, unused,
302
30.1k
                                                 _num_element_after_padding, _size_of_element));
303
304
30.1k
        if (_data.size !=
305
30.1k
            _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE) {
306
0
            std::stringstream ss;
307
0
            ss << "Size information unmatched, _data.size:" << _data.size
308
0
               << ", _num_elements:" << _num_elements << ", expected size is "
309
0
               << _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE;
310
0
            return Status::InternalError(ss.str());
311
0
        }
312
313
        // Currently, only the UINT32 block encoder supports expanding size:
314
30.1k
        if (UNLIKELY(Type != FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT &&
315
30.1k
                     _size_of_element != SIZE_OF_TYPE)) {
316
0
            return Status::InternalError(
317
0
                    "invalid size info. size of element:{}, SIZE_OF_TYPE:{}, type:{}",
318
0
                    _size_of_element, SIZE_OF_TYPE, Type);
319
0
        }
320
30.1k
        if (UNLIKELY(_size_of_element > SIZE_OF_TYPE)) {
321
0
            return Status::InternalError("invalid size info. size of element:{}, SIZE_OF_TYPE:{}",
322
0
                                         _size_of_element, SIZE_OF_TYPE);
323
0
        }
324
30.1k
        _parsed = true;
325
30.1k
        return Status::OK();
326
30.1k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE37EE4initEv
Line
Count
Source
298
1.74k
    Status init() override {
299
1.74k
        CHECK(!_parsed);
300
1.74k
        size_t unused;
301
1.74k
        RETURN_IF_ERROR(parse_bit_shuffle_header(_data, _num_elements, unused,
302
1.74k
                                                 _num_element_after_padding, _size_of_element));
303
304
1.74k
        if (_data.size !=
305
1.74k
            _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE) {
306
0
            std::stringstream ss;
307
0
            ss << "Size information unmatched, _data.size:" << _data.size
308
0
               << ", _num_elements:" << _num_elements << ", expected size is "
309
0
               << _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE;
310
0
            return Status::InternalError(ss.str());
311
0
        }
312
313
        // Currently, only the UINT32 block encoder supports expanding size:
314
1.74k
        if (UNLIKELY(Type != FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT &&
315
1.74k
                     _size_of_element != SIZE_OF_TYPE)) {
316
0
            return Status::InternalError(
317
0
                    "invalid size info. size of element:{}, SIZE_OF_TYPE:{}, type:{}",
318
0
                    _size_of_element, SIZE_OF_TYPE, Type);
319
0
        }
320
1.74k
        if (UNLIKELY(_size_of_element > SIZE_OF_TYPE)) {
321
0
            return Status::InternalError("invalid size info. size of element:{}, SIZE_OF_TYPE:{}",
322
0
                                         _size_of_element, SIZE_OF_TYPE);
323
0
        }
324
1.74k
        _parsed = true;
325
1.74k
        return Status::OK();
326
1.74k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE38EE4initEv
Line
Count
Source
298
931
    Status init() override {
299
931
        CHECK(!_parsed);
300
931
        size_t unused;
301
931
        RETURN_IF_ERROR(parse_bit_shuffle_header(_data, _num_elements, unused,
302
931
                                                 _num_element_after_padding, _size_of_element));
303
304
931
        if (_data.size !=
305
931
            _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE) {
306
0
            std::stringstream ss;
307
0
            ss << "Size information unmatched, _data.size:" << _data.size
308
0
               << ", _num_elements:" << _num_elements << ", expected size is "
309
0
               << _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE;
310
0
            return Status::InternalError(ss.str());
311
0
        }
312
313
        // Currently, only the UINT32 block encoder supports expanding size:
314
931
        if (UNLIKELY(Type != FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT &&
315
931
                     _size_of_element != SIZE_OF_TYPE)) {
316
0
            return Status::InternalError(
317
0
                    "invalid size info. size of element:{}, SIZE_OF_TYPE:{}, type:{}",
318
0
                    _size_of_element, SIZE_OF_TYPE, Type);
319
0
        }
320
931
        if (UNLIKELY(_size_of_element > SIZE_OF_TYPE)) {
321
0
            return Status::InternalError("invalid size info. size of element:{}, SIZE_OF_TYPE:{}",
322
0
                                         _size_of_element, SIZE_OF_TYPE);
323
0
        }
324
931
        _parsed = true;
325
931
        return Status::OK();
326
931
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE39EE4initEv
Line
Count
Source
298
975
    Status init() override {
299
975
        CHECK(!_parsed);
300
975
        size_t unused;
301
975
        RETURN_IF_ERROR(parse_bit_shuffle_header(_data, _num_elements, unused,
302
975
                                                 _num_element_after_padding, _size_of_element));
303
304
975
        if (_data.size !=
305
975
            _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE) {
306
0
            std::stringstream ss;
307
0
            ss << "Size information unmatched, _data.size:" << _data.size
308
0
               << ", _num_elements:" << _num_elements << ", expected size is "
309
0
               << _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE;
310
0
            return Status::InternalError(ss.str());
311
0
        }
312
313
        // Currently, only the UINT32 block encoder supports expanding size:
314
975
        if (UNLIKELY(Type != FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT &&
315
975
                     _size_of_element != SIZE_OF_TYPE)) {
316
0
            return Status::InternalError(
317
0
                    "invalid size info. size of element:{}, SIZE_OF_TYPE:{}, type:{}",
318
0
                    _size_of_element, SIZE_OF_TYPE, Type);
319
0
        }
320
975
        if (UNLIKELY(_size_of_element > SIZE_OF_TYPE)) {
321
0
            return Status::InternalError("invalid size info. size of element:{}, SIZE_OF_TYPE:{}",
322
0
                                         _size_of_element, SIZE_OF_TYPE);
323
0
        }
324
975
        _parsed = true;
325
975
        return Status::OK();
326
975
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE42EE4initEv
Line
Count
Source
298
5.01k
    Status init() override {
299
5.01k
        CHECK(!_parsed);
300
5.01k
        size_t unused;
301
5.01k
        RETURN_IF_ERROR(parse_bit_shuffle_header(_data, _num_elements, unused,
302
5.01k
                                                 _num_element_after_padding, _size_of_element));
303
304
5.01k
        if (_data.size !=
305
5.01k
            _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE) {
306
0
            std::stringstream ss;
307
0
            ss << "Size information unmatched, _data.size:" << _data.size
308
0
               << ", _num_elements:" << _num_elements << ", expected size is "
309
0
               << _num_element_after_padding * _size_of_element + BITSHUFFLE_PAGE_HEADER_SIZE;
310
0
            return Status::InternalError(ss.str());
311
0
        }
312
313
        // Currently, only the UINT32 block encoder supports expanding size:
314
5.01k
        if (UNLIKELY(Type != FieldType::OLAP_FIELD_TYPE_UNSIGNED_INT &&
315
5.01k
                     _size_of_element != SIZE_OF_TYPE)) {
316
0
            return Status::InternalError(
317
0
                    "invalid size info. size of element:{}, SIZE_OF_TYPE:{}, type:{}",
318
0
                    _size_of_element, SIZE_OF_TYPE, Type);
319
0
        }
320
5.01k
        if (UNLIKELY(_size_of_element > SIZE_OF_TYPE)) {
321
0
            return Status::InternalError("invalid size info. size of element:{}, SIZE_OF_TYPE:{}",
322
0
                                         _size_of_element, SIZE_OF_TYPE);
323
0
        }
324
5.01k
        _parsed = true;
325
5.01k
        return Status::OK();
326
5.01k
    }
327
328
    // If the page only contains null, then _num_elements == 0, and the nullmap has
329
    // some value. But in _seek_columns --> seek_to_ordinal --> _seek_to_pos_in_page
330
    // in this call stack it will pass pos == 0 to this method. Although we can add some
331
    // code such as check if the count == 0, then skip seek, but there are other method such
332
    // as init will also call seek with pos == 0. And the seek is useless when _num_elements
333
    // == 0, because next batch will return empty in this method.
334
4.14M
    Status seek_to_position_in_page(size_t pos) override {
335
18.4E
        DCHECK(_parsed) << "Must call init()";
336
4.14M
        if (_num_elements == 0) [[unlikely]] {
337
3.69k
            if (pos != 0) {
338
0
                return Status::Error<ErrorCode::INTERNAL_ERROR, false>(
339
0
                        "seek pos {} is larger than total elements  {}", pos, _num_elements);
340
0
            }
341
3.69k
        }
342
343
4.14M
        DCHECK_LE(pos, _num_elements);
344
4.14M
        _cur_index = pos;
345
4.14M
        return Status::OK();
346
4.14M
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE1EE24seek_to_position_in_pageEm
Line
Count
Source
334
92.1k
    Status seek_to_position_in_page(size_t pos) override {
335
18.4E
        DCHECK(_parsed) << "Must call init()";
336
92.1k
        if (_num_elements == 0) [[unlikely]] {
337
352
            if (pos != 0) {
338
0
                return Status::Error<ErrorCode::INTERNAL_ERROR, false>(
339
0
                        "seek pos {} is larger than total elements  {}", pos, _num_elements);
340
0
            }
341
352
        }
342
343
92.1k
        DCHECK_LE(pos, _num_elements);
344
92.1k
        _cur_index = pos;
345
92.1k
        return Status::OK();
346
92.1k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE3EE24seek_to_position_in_pageEm
Line
Count
Source
334
3.14k
    Status seek_to_position_in_page(size_t pos) override {
335
3.14k
        DCHECK(_parsed) << "Must call init()";
336
3.14k
        if (_num_elements == 0) [[unlikely]] {
337
0
            if (pos != 0) {
338
0
                return Status::Error<ErrorCode::INTERNAL_ERROR, false>(
339
0
                        "seek pos {} is larger than total elements  {}", pos, _num_elements);
340
0
            }
341
0
        }
342
343
3.14k
        DCHECK_LE(pos, _num_elements);
344
3.14k
        _cur_index = pos;
345
3.14k
        return Status::OK();
346
3.14k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE5EE24seek_to_position_in_pageEm
Line
Count
Source
334
2.79M
    Status seek_to_position_in_page(size_t pos) override {
335
18.4E
        DCHECK(_parsed) << "Must call init()";
336
2.79M
        if (_num_elements == 0) [[unlikely]] {
337
2.20k
            if (pos != 0) {
338
0
                return Status::Error<ErrorCode::INTERNAL_ERROR, false>(
339
0
                        "seek pos {} is larger than total elements  {}", pos, _num_elements);
340
0
            }
341
2.20k
        }
342
343
2.79M
        DCHECK_LE(pos, _num_elements);
344
2.79M
        _cur_index = pos;
345
2.79M
        return Status::OK();
346
2.79M
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE7EE24seek_to_position_in_pageEm
Line
Count
Source
334
111k
    Status seek_to_position_in_page(size_t pos) override {
335
18.4E
        DCHECK(_parsed) << "Must call init()";
336
111k
        if (_num_elements == 0) [[unlikely]] {
337
470
            if (pos != 0) {
338
0
                return Status::Error<ErrorCode::INTERNAL_ERROR, false>(
339
0
                        "seek pos {} is larger than total elements  {}", pos, _num_elements);
340
0
            }
341
470
        }
342
343
111k
        DCHECK_LE(pos, _num_elements);
344
111k
        _cur_index = pos;
345
111k
        return Status::OK();
346
111k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE9EE24seek_to_position_in_pageEm
Line
Count
Source
334
3.55k
    Status seek_to_position_in_page(size_t pos) override {
335
18.4E
        DCHECK(_parsed) << "Must call init()";
336
3.55k
        if (_num_elements == 0) [[unlikely]] {
337
6
            if (pos != 0) {
338
0
                return Status::Error<ErrorCode::INTERNAL_ERROR, false>(
339
0
                        "seek pos {} is larger than total elements  {}", pos, _num_elements);
340
0
            }
341
6
        }
342
343
3.55k
        DCHECK_LE(pos, _num_elements);
344
3.55k
        _cur_index = pos;
345
3.55k
        return Status::OK();
346
3.55k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE8EE24seek_to_position_in_pageEm
Line
Count
Source
334
18.3k
    Status seek_to_position_in_page(size_t pos) override {
335
18.4E
        DCHECK(_parsed) << "Must call init()";
336
18.3k
        if (_num_elements == 0) [[unlikely]] {
337
0
            if (pos != 0) {
338
0
                return Status::Error<ErrorCode::INTERNAL_ERROR, false>(
339
0
                        "seek pos {} is larger than total elements  {}", pos, _num_elements);
340
0
            }
341
0
        }
342
343
18.3k
        DCHECK_LE(pos, _num_elements);
344
18.3k
        _cur_index = pos;
345
18.3k
        return Status::OK();
346
18.3k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE6EE24seek_to_position_in_pageEm
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE10EE24seek_to_position_in_pageEm
Line
Count
Source
334
745
    Status seek_to_position_in_page(size_t pos) override {
335
745
        DCHECK(_parsed) << "Must call init()";
336
745
        if (_num_elements == 0) [[unlikely]] {
337
0
            if (pos != 0) {
338
0
                return Status::Error<ErrorCode::INTERNAL_ERROR, false>(
339
0
                        "seek pos {} is larger than total elements  {}", pos, _num_elements);
340
0
            }
341
0
        }
342
343
745
        DCHECK_LE(pos, _num_elements);
344
745
        _cur_index = pos;
345
745
        return Status::OK();
346
745
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE11EE24seek_to_position_in_pageEm
Line
Count
Source
334
1.71k
    Status seek_to_position_in_page(size_t pos) override {
335
1.71k
        DCHECK(_parsed) << "Must call init()";
336
1.71k
        if (_num_elements == 0) [[unlikely]] {
337
5
            if (pos != 0) {
338
0
                return Status::Error<ErrorCode::INTERNAL_ERROR, false>(
339
0
                        "seek pos {} is larger than total elements  {}", pos, _num_elements);
340
0
            }
341
5
        }
342
343
1.71k
        DCHECK_LE(pos, _num_elements);
344
1.71k
        _cur_index = pos;
345
1.71k
        return Status::OK();
346
1.71k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE24EE24seek_to_position_in_pageEm
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE14EE24seek_to_position_in_pageEm
Line
Count
Source
334
208k
    Status seek_to_position_in_page(size_t pos) override {
335
18.4E
        DCHECK(_parsed) << "Must call init()";
336
208k
        if (_num_elements == 0) [[unlikely]] {
337
0
            if (pos != 0) {
338
0
                return Status::Error<ErrorCode::INTERNAL_ERROR, false>(
339
0
                        "seek pos {} is larger than total elements  {}", pos, _num_elements);
340
0
            }
341
0
        }
342
343
208k
        DCHECK_LE(pos, _num_elements);
344
208k
        _cur_index = pos;
345
208k
        return Status::OK();
346
208k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE28EE24seek_to_position_in_pageEm
Line
Count
Source
334
503k
    Status seek_to_position_in_page(size_t pos) override {
335
18.4E
        DCHECK(_parsed) << "Must call init()";
336
503k
        if (_num_elements == 0) [[unlikely]] {
337
197
            if (pos != 0) {
338
0
                return Status::Error<ErrorCode::INTERNAL_ERROR, false>(
339
0
                        "seek pos {} is larger than total elements  {}", pos, _num_elements);
340
0
            }
341
197
        }
342
343
503k
        DCHECK_LE(pos, _num_elements);
344
503k
        _cur_index = pos;
345
503k
        return Status::OK();
346
503k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE29EE24seek_to_position_in_pageEm
Line
Count
Source
334
49.7k
    Status seek_to_position_in_page(size_t pos) override {
335
18.4E
        DCHECK(_parsed) << "Must call init()";
336
49.7k
        if (_num_elements == 0) [[unlikely]] {
337
14
            if (pos != 0) {
338
0
                return Status::Error<ErrorCode::INTERNAL_ERROR, false>(
339
0
                        "seek pos {} is larger than total elements  {}", pos, _num_elements);
340
0
            }
341
14
        }
342
343
49.7k
        DCHECK_LE(pos, _num_elements);
344
49.7k
        _cur_index = pos;
345
49.7k
        return Status::OK();
346
49.7k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE41EE24seek_to_position_in_pageEm
Line
Count
Source
334
948
    Status seek_to_position_in_page(size_t pos) override {
335
948
        DCHECK(_parsed) << "Must call init()";
336
948
        if (_num_elements == 0) [[unlikely]] {
337
8
            if (pos != 0) {
338
0
                return Status::Error<ErrorCode::INTERNAL_ERROR, false>(
339
0
                        "seek pos {} is larger than total elements  {}", pos, _num_elements);
340
0
            }
341
8
        }
342
343
948
        DCHECK_LE(pos, _num_elements);
344
948
        _cur_index = pos;
345
948
        return Status::OK();
346
948
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE15EE24seek_to_position_in_pageEm
Line
Count
Source
334
197k
    Status seek_to_position_in_page(size_t pos) override {
335
18.4E
        DCHECK(_parsed) << "Must call init()";
336
197k
        if (_num_elements == 0) [[unlikely]] {
337
0
            if (pos != 0) {
338
0
                return Status::Error<ErrorCode::INTERNAL_ERROR, false>(
339
0
                        "seek pos {} is larger than total elements  {}", pos, _num_elements);
340
0
            }
341
0
        }
342
343
197k
        DCHECK_LE(pos, _num_elements);
344
197k
        _cur_index = pos;
345
197k
        return Status::OK();
346
197k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE40EE24seek_to_position_in_pageEm
Line
Count
Source
334
6.90k
    Status seek_to_position_in_page(size_t pos) override {
335
6.90k
        DCHECK(_parsed) << "Must call init()";
336
6.90k
        if (_num_elements == 0) [[unlikely]] {
337
357
            if (pos != 0) {
338
0
                return Status::Error<ErrorCode::INTERNAL_ERROR, false>(
339
0
                        "seek pos {} is larger than total elements  {}", pos, _num_elements);
340
0
            }
341
357
        }
342
343
6.90k
        DCHECK_LE(pos, _num_elements);
344
6.90k
        _cur_index = pos;
345
6.90k
        return Status::OK();
346
6.90k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE16EE24seek_to_position_in_pageEm
Line
Count
Source
334
28
    Status seek_to_position_in_page(size_t pos) override {
335
28
        DCHECK(_parsed) << "Must call init()";
336
28
        if (_num_elements == 0) [[unlikely]] {
337
0
            if (pos != 0) {
338
0
                return Status::Error<ErrorCode::INTERNAL_ERROR, false>(
339
0
                        "seek pos {} is larger than total elements  {}", pos, _num_elements);
340
0
            }
341
0
        }
342
343
28
        DCHECK_LE(pos, _num_elements);
344
28
        _cur_index = pos;
345
28
        return Status::OK();
346
28
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE31EE24seek_to_position_in_pageEm
Line
Count
Source
334
880
    Status seek_to_position_in_page(size_t pos) override {
335
880
        DCHECK(_parsed) << "Must call init()";
336
880
        if (_num_elements == 0) [[unlikely]] {
337
59
            if (pos != 0) {
338
0
                return Status::Error<ErrorCode::INTERNAL_ERROR, false>(
339
0
                        "seek pos {} is larger than total elements  {}", pos, _num_elements);
340
0
            }
341
59
        }
342
343
880
        DCHECK_LE(pos, _num_elements);
344
880
        _cur_index = pos;
345
880
        return Status::OK();
346
880
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE32EE24seek_to_position_in_pageEm
Line
Count
Source
334
18.3k
    Status seek_to_position_in_page(size_t pos) override {
335
18.3k
        DCHECK(_parsed) << "Must call init()";
336
18.3k
        if (_num_elements == 0) [[unlikely]] {
337
15
            if (pos != 0) {
338
0
                return Status::Error<ErrorCode::INTERNAL_ERROR, false>(
339
0
                        "seek pos {} is larger than total elements  {}", pos, _num_elements);
340
0
            }
341
15
        }
342
343
18.3k
        DCHECK_LE(pos, _num_elements);
344
18.3k
        _cur_index = pos;
345
18.3k
        return Status::OK();
346
18.3k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE33EE24seek_to_position_in_pageEm
Line
Count
Source
334
113k
    Status seek_to_position_in_page(size_t pos) override {
335
18.4E
        DCHECK(_parsed) << "Must call init()";
336
113k
        if (_num_elements == 0) [[unlikely]] {
337
10
            if (pos != 0) {
338
0
                return Status::Error<ErrorCode::INTERNAL_ERROR, false>(
339
0
                        "seek pos {} is larger than total elements  {}", pos, _num_elements);
340
0
            }
341
10
        }
342
343
113k
        DCHECK_LE(pos, _num_elements);
344
113k
        _cur_index = pos;
345
113k
        return Status::OK();
346
113k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE37EE24seek_to_position_in_pageEm
Line
Count
Source
334
1.95k
    Status seek_to_position_in_page(size_t pos) override {
335
1.95k
        DCHECK(_parsed) << "Must call init()";
336
1.95k
        if (_num_elements == 0) [[unlikely]] {
337
0
            if (pos != 0) {
338
0
                return Status::Error<ErrorCode::INTERNAL_ERROR, false>(
339
0
                        "seek pos {} is larger than total elements  {}", pos, _num_elements);
340
0
            }
341
0
        }
342
343
1.95k
        DCHECK_LE(pos, _num_elements);
344
1.95k
        _cur_index = pos;
345
1.95k
        return Status::OK();
346
1.95k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE38EE24seek_to_position_in_pageEm
Line
Count
Source
334
25
    Status seek_to_position_in_page(size_t pos) override {
335
25
        DCHECK(_parsed) << "Must call init()";
336
25
        if (_num_elements == 0) [[unlikely]] {
337
0
            if (pos != 0) {
338
0
                return Status::Error<ErrorCode::INTERNAL_ERROR, false>(
339
0
                        "seek pos {} is larger than total elements  {}", pos, _num_elements);
340
0
            }
341
0
        }
342
343
25
        DCHECK_LE(pos, _num_elements);
344
25
        _cur_index = pos;
345
25
        return Status::OK();
346
25
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE39EE24seek_to_position_in_pageEm
Line
Count
Source
334
30
    Status seek_to_position_in_page(size_t pos) override {
335
30
        DCHECK(_parsed) << "Must call init()";
336
30
        if (_num_elements == 0) [[unlikely]] {
337
1
            if (pos != 0) {
338
0
                return Status::Error<ErrorCode::INTERNAL_ERROR, false>(
339
0
                        "seek pos {} is larger than total elements  {}", pos, _num_elements);
340
0
            }
341
1
        }
342
343
30
        DCHECK_LE(pos, _num_elements);
344
30
        _cur_index = pos;
345
30
        return Status::OK();
346
30
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE42EE24seek_to_position_in_pageEm
Line
Count
Source
334
9.26k
    Status seek_to_position_in_page(size_t pos) override {
335
9.26k
        DCHECK(_parsed) << "Must call init()";
336
9.26k
        if (_num_elements == 0) [[unlikely]] {
337
0
            if (pos != 0) {
338
0
                return Status::Error<ErrorCode::INTERNAL_ERROR, false>(
339
0
                        "seek pos {} is larger than total elements  {}", pos, _num_elements);
340
0
            }
341
0
        }
342
343
9.26k
        DCHECK_LE(pos, _num_elements);
344
9.26k
        _cur_index = pos;
345
9.26k
        return Status::OK();
346
9.26k
    }
347
348
0
    Status seek_at_or_after_value(const void* value, bool* exact_match) override {
349
0
        DCHECK(_parsed) << "Must call init() firstly";
350
351
0
        if (_num_elements == 0) {
352
0
            return Status::Error<ErrorCode::ENTRY_NOT_FOUND>("page is empty");
353
0
        }
354
355
0
        size_t left = 0;
356
0
        size_t right = _num_elements;
357
358
0
        void* mid_value = nullptr;
359
360
        // find the first value >= target. after loop,
361
        // - left == index of first value >= target when found
362
        // - left == _num_elements when not found (all values < target)
363
0
        while (left < right) {
364
0
            size_t mid = left + (right - left) / 2;
365
0
            mid_value = get_data(mid);
366
0
            if (TypeTraits<Type>::cmp(mid_value, value) < 0) {
367
0
                left = mid + 1;
368
0
            } else {
369
0
                right = mid;
370
0
            }
371
0
        }
372
0
        if (left >= _num_elements) {
373
0
            return Status::Error<ErrorCode::ENTRY_NOT_FOUND>("all value small than the value");
374
0
        }
375
0
        void* find_value = get_data(left);
376
0
        if (TypeTraits<Type>::cmp(find_value, value) == 0) {
377
0
            *exact_match = true;
378
0
        } else {
379
0
            *exact_match = false;
380
0
        }
381
382
0
        _cur_index = left;
383
0
        return Status::OK();
384
0
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE1EE22seek_at_or_after_valueEPKvPb
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE3EE22seek_at_or_after_valueEPKvPb
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE5EE22seek_at_or_after_valueEPKvPb
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE7EE22seek_at_or_after_valueEPKvPb
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE9EE22seek_at_or_after_valueEPKvPb
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE8EE22seek_at_or_after_valueEPKvPb
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE6EE22seek_at_or_after_valueEPKvPb
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE10EE22seek_at_or_after_valueEPKvPb
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE11EE22seek_at_or_after_valueEPKvPb
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE24EE22seek_at_or_after_valueEPKvPb
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE14EE22seek_at_or_after_valueEPKvPb
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE28EE22seek_at_or_after_valueEPKvPb
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE29EE22seek_at_or_after_valueEPKvPb
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE41EE22seek_at_or_after_valueEPKvPb
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE15EE22seek_at_or_after_valueEPKvPb
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE40EE22seek_at_or_after_valueEPKvPb
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE16EE22seek_at_or_after_valueEPKvPb
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE31EE22seek_at_or_after_valueEPKvPb
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE32EE22seek_at_or_after_valueEPKvPb
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE33EE22seek_at_or_after_valueEPKvPb
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE37EE22seek_at_or_after_valueEPKvPb
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE38EE22seek_at_or_after_valueEPKvPb
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE39EE22seek_at_or_after_valueEPKvPb
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE42EE22seek_at_or_after_valueEPKvPb
385
386
    template <bool forward_index = true>
387
1.64M
    Status next_batch(size_t* n, MutableColumnPtr& dst) {
388
1.64M
        DCHECK(_parsed);
389
1.64M
        if (*n == 0 || _cur_index >= _num_elements) [[unlikely]] {
390
0
            *n = 0;
391
0
            return Status::OK();
392
0
        }
393
394
1.64M
        size_t max_fetch = std::min(*n, _num_elements - _cur_index);
395
396
1.64M
        dst->insert_many_fix_len_data(get_data(_cur_index), max_fetch);
397
1.64M
        *n = max_fetch;
398
1.64M
        if constexpr (forward_index) {
399
1.59M
            _cur_index += max_fetch;
400
1.59M
        }
401
402
1.64M
        return Status::OK();
403
1.64M
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE1EE10next_batchILb1EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
387
154k
    Status next_batch(size_t* n, MutableColumnPtr& dst) {
388
154k
        DCHECK(_parsed);
389
154k
        if (*n == 0 || _cur_index >= _num_elements) [[unlikely]] {
390
0
            *n = 0;
391
0
            return Status::OK();
392
0
        }
393
394
154k
        size_t max_fetch = std::min(*n, _num_elements - _cur_index);
395
396
154k
        dst->insert_many_fix_len_data(get_data(_cur_index), max_fetch);
397
154k
        *n = max_fetch;
398
154k
        if constexpr (forward_index) {
399
154k
            _cur_index += max_fetch;
400
154k
        }
401
402
154k
        return Status::OK();
403
154k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE1EE10next_batchILb0EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE3EE10next_batchILb1EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
387
10.3k
    Status next_batch(size_t* n, MutableColumnPtr& dst) {
388
10.3k
        DCHECK(_parsed);
389
10.3k
        if (*n == 0 || _cur_index >= _num_elements) [[unlikely]] {
390
0
            *n = 0;
391
0
            return Status::OK();
392
0
        }
393
394
10.3k
        size_t max_fetch = std::min(*n, _num_elements - _cur_index);
395
396
10.3k
        dst->insert_many_fix_len_data(get_data(_cur_index), max_fetch);
397
10.3k
        *n = max_fetch;
398
10.3k
        if constexpr (forward_index) {
399
10.3k
            _cur_index += max_fetch;
400
10.3k
        }
401
402
10.3k
        return Status::OK();
403
10.3k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE3EE10next_batchILb0EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE5EE10next_batchILb1EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
387
650k
    Status next_batch(size_t* n, MutableColumnPtr& dst) {
388
650k
        DCHECK(_parsed);
389
652k
        if (*n == 0 || _cur_index >= _num_elements) [[unlikely]] {
390
0
            *n = 0;
391
0
            return Status::OK();
392
0
        }
393
394
650k
        size_t max_fetch = std::min(*n, _num_elements - _cur_index);
395
396
650k
        dst->insert_many_fix_len_data(get_data(_cur_index), max_fetch);
397
650k
        *n = max_fetch;
398
650k
        if constexpr (forward_index) {
399
650k
            _cur_index += max_fetch;
400
650k
        }
401
402
650k
        return Status::OK();
403
650k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE5EE10next_batchILb0EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE7EE10next_batchILb1EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
387
48.9k
    Status next_batch(size_t* n, MutableColumnPtr& dst) {
388
48.9k
        DCHECK(_parsed);
389
48.9k
        if (*n == 0 || _cur_index >= _num_elements) [[unlikely]] {
390
0
            *n = 0;
391
0
            return Status::OK();
392
0
        }
393
394
48.9k
        size_t max_fetch = std::min(*n, _num_elements - _cur_index);
395
396
48.9k
        dst->insert_many_fix_len_data(get_data(_cur_index), max_fetch);
397
48.9k
        *n = max_fetch;
398
48.9k
        if constexpr (forward_index) {
399
48.9k
            _cur_index += max_fetch;
400
48.9k
        }
401
402
48.9k
        return Status::OK();
403
48.9k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE7EE10next_batchILb0EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE9EE10next_batchILb1EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
387
10.7k
    Status next_batch(size_t* n, MutableColumnPtr& dst) {
388
10.7k
        DCHECK(_parsed);
389
10.7k
        if (*n == 0 || _cur_index >= _num_elements) [[unlikely]] {
390
0
            *n = 0;
391
0
            return Status::OK();
392
0
        }
393
394
10.7k
        size_t max_fetch = std::min(*n, _num_elements - _cur_index);
395
396
10.7k
        dst->insert_many_fix_len_data(get_data(_cur_index), max_fetch);
397
10.7k
        *n = max_fetch;
398
10.7k
        if constexpr (forward_index) {
399
10.7k
            _cur_index += max_fetch;
400
10.7k
        }
401
402
10.7k
        return Status::OK();
403
10.7k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE9EE10next_batchILb0EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE8EE10next_batchILb1EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
387
92.8k
    Status next_batch(size_t* n, MutableColumnPtr& dst) {
388
92.8k
        DCHECK(_parsed);
389
92.8k
        if (*n == 0 || _cur_index >= _num_elements) [[unlikely]] {
390
0
            *n = 0;
391
0
            return Status::OK();
392
0
        }
393
394
92.8k
        size_t max_fetch = std::min(*n, _num_elements - _cur_index);
395
396
92.8k
        dst->insert_many_fix_len_data(get_data(_cur_index), max_fetch);
397
92.8k
        *n = max_fetch;
398
92.8k
        if constexpr (forward_index) {
399
92.8k
            _cur_index += max_fetch;
400
92.8k
        }
401
402
92.8k
        return Status::OK();
403
92.8k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE8EE10next_batchILb0EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
387
52.1k
    Status next_batch(size_t* n, MutableColumnPtr& dst) {
388
52.1k
        DCHECK(_parsed);
389
52.2k
        if (*n == 0 || _cur_index >= _num_elements) [[unlikely]] {
390
0
            *n = 0;
391
0
            return Status::OK();
392
0
        }
393
394
52.1k
        size_t max_fetch = std::min(*n, _num_elements - _cur_index);
395
396
52.1k
        dst->insert_many_fix_len_data(get_data(_cur_index), max_fetch);
397
52.1k
        *n = max_fetch;
398
        if constexpr (forward_index) {
399
            _cur_index += max_fetch;
400
        }
401
402
52.1k
        return Status::OK();
403
52.1k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE6EE10next_batchILb1EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE6EE10next_batchILb0EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE10EE10next_batchILb1EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
387
5.86k
    Status next_batch(size_t* n, MutableColumnPtr& dst) {
388
5.86k
        DCHECK(_parsed);
389
5.86k
        if (*n == 0 || _cur_index >= _num_elements) [[unlikely]] {
390
0
            *n = 0;
391
0
            return Status::OK();
392
0
        }
393
394
5.86k
        size_t max_fetch = std::min(*n, _num_elements - _cur_index);
395
396
5.86k
        dst->insert_many_fix_len_data(get_data(_cur_index), max_fetch);
397
5.86k
        *n = max_fetch;
398
5.86k
        if constexpr (forward_index) {
399
5.86k
            _cur_index += max_fetch;
400
5.86k
        }
401
402
5.86k
        return Status::OK();
403
5.86k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE10EE10next_batchILb0EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE11EE10next_batchILb1EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
387
9.45k
    Status next_batch(size_t* n, MutableColumnPtr& dst) {
388
9.45k
        DCHECK(_parsed);
389
9.45k
        if (*n == 0 || _cur_index >= _num_elements) [[unlikely]] {
390
0
            *n = 0;
391
0
            return Status::OK();
392
0
        }
393
394
9.45k
        size_t max_fetch = std::min(*n, _num_elements - _cur_index);
395
396
9.45k
        dst->insert_many_fix_len_data(get_data(_cur_index), max_fetch);
397
9.45k
        *n = max_fetch;
398
9.45k
        if constexpr (forward_index) {
399
9.45k
            _cur_index += max_fetch;
400
9.45k
        }
401
402
9.45k
        return Status::OK();
403
9.45k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE11EE10next_batchILb0EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE24EE10next_batchILb1EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
387
93
    Status next_batch(size_t* n, MutableColumnPtr& dst) {
388
93
        DCHECK(_parsed);
389
93
        if (*n == 0 || _cur_index >= _num_elements) [[unlikely]] {
390
0
            *n = 0;
391
0
            return Status::OK();
392
0
        }
393
394
93
        size_t max_fetch = std::min(*n, _num_elements - _cur_index);
395
396
93
        dst->insert_many_fix_len_data(get_data(_cur_index), max_fetch);
397
93
        *n = max_fetch;
398
93
        if constexpr (forward_index) {
399
93
            _cur_index += max_fetch;
400
93
        }
401
402
93
        return Status::OK();
403
93
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE24EE10next_batchILb0EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE14EE10next_batchILb1EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
387
3.41k
    Status next_batch(size_t* n, MutableColumnPtr& dst) {
388
3.41k
        DCHECK(_parsed);
389
3.41k
        if (*n == 0 || _cur_index >= _num_elements) [[unlikely]] {
390
0
            *n = 0;
391
0
            return Status::OK();
392
0
        }
393
394
3.41k
        size_t max_fetch = std::min(*n, _num_elements - _cur_index);
395
396
3.41k
        dst->insert_many_fix_len_data(get_data(_cur_index), max_fetch);
397
3.41k
        *n = max_fetch;
398
3.41k
        if constexpr (forward_index) {
399
3.41k
            _cur_index += max_fetch;
400
3.41k
        }
401
402
3.41k
        return Status::OK();
403
3.41k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE14EE10next_batchILb0EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE28EE10next_batchILb1EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
387
372k
    Status next_batch(size_t* n, MutableColumnPtr& dst) {
388
372k
        DCHECK(_parsed);
389
372k
        if (*n == 0 || _cur_index >= _num_elements) [[unlikely]] {
390
0
            *n = 0;
391
0
            return Status::OK();
392
0
        }
393
394
372k
        size_t max_fetch = std::min(*n, _num_elements - _cur_index);
395
396
372k
        dst->insert_many_fix_len_data(get_data(_cur_index), max_fetch);
397
372k
        *n = max_fetch;
398
372k
        if constexpr (forward_index) {
399
372k
            _cur_index += max_fetch;
400
372k
        }
401
402
372k
        return Status::OK();
403
372k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE28EE10next_batchILb0EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE29EE10next_batchILb1EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
387
64.2k
    Status next_batch(size_t* n, MutableColumnPtr& dst) {
388
64.2k
        DCHECK(_parsed);
389
64.2k
        if (*n == 0 || _cur_index >= _num_elements) [[unlikely]] {
390
0
            *n = 0;
391
0
            return Status::OK();
392
0
        }
393
394
64.2k
        size_t max_fetch = std::min(*n, _num_elements - _cur_index);
395
396
64.2k
        dst->insert_many_fix_len_data(get_data(_cur_index), max_fetch);
397
64.2k
        *n = max_fetch;
398
64.2k
        if constexpr (forward_index) {
399
64.2k
            _cur_index += max_fetch;
400
64.2k
        }
401
402
64.2k
        return Status::OK();
403
64.2k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE29EE10next_batchILb0EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE41EE10next_batchILb1EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
387
2.18k
    Status next_batch(size_t* n, MutableColumnPtr& dst) {
388
2.18k
        DCHECK(_parsed);
389
2.18k
        if (*n == 0 || _cur_index >= _num_elements) [[unlikely]] {
390
0
            *n = 0;
391
0
            return Status::OK();
392
0
        }
393
394
2.18k
        size_t max_fetch = std::min(*n, _num_elements - _cur_index);
395
396
2.18k
        dst->insert_many_fix_len_data(get_data(_cur_index), max_fetch);
397
2.18k
        *n = max_fetch;
398
2.18k
        if constexpr (forward_index) {
399
2.18k
            _cur_index += max_fetch;
400
2.18k
        }
401
402
2.18k
        return Status::OK();
403
2.18k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE41EE10next_batchILb0EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE15EE10next_batchILb1EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
387
1.09k
    Status next_batch(size_t* n, MutableColumnPtr& dst) {
388
1.09k
        DCHECK(_parsed);
389
1.09k
        if (*n == 0 || _cur_index >= _num_elements) [[unlikely]] {
390
0
            *n = 0;
391
0
            return Status::OK();
392
0
        }
393
394
1.09k
        size_t max_fetch = std::min(*n, _num_elements - _cur_index);
395
396
1.09k
        dst->insert_many_fix_len_data(get_data(_cur_index), max_fetch);
397
1.09k
        *n = max_fetch;
398
1.09k
        if constexpr (forward_index) {
399
1.09k
            _cur_index += max_fetch;
400
1.09k
        }
401
402
1.09k
        return Status::OK();
403
1.09k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE15EE10next_batchILb0EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE40EE10next_batchILb1EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
387
8.14k
    Status next_batch(size_t* n, MutableColumnPtr& dst) {
388
8.14k
        DCHECK(_parsed);
389
8.14k
        if (*n == 0 || _cur_index >= _num_elements) [[unlikely]] {
390
0
            *n = 0;
391
0
            return Status::OK();
392
0
        }
393
394
8.14k
        size_t max_fetch = std::min(*n, _num_elements - _cur_index);
395
396
8.14k
        dst->insert_many_fix_len_data(get_data(_cur_index), max_fetch);
397
8.14k
        *n = max_fetch;
398
8.14k
        if constexpr (forward_index) {
399
8.14k
            _cur_index += max_fetch;
400
8.14k
        }
401
402
8.14k
        return Status::OK();
403
8.14k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE40EE10next_batchILb0EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE16EE10next_batchILb1EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
387
1.27k
    Status next_batch(size_t* n, MutableColumnPtr& dst) {
388
1.27k
        DCHECK(_parsed);
389
1.27k
        if (*n == 0 || _cur_index >= _num_elements) [[unlikely]] {
390
0
            *n = 0;
391
0
            return Status::OK();
392
0
        }
393
394
1.27k
        size_t max_fetch = std::min(*n, _num_elements - _cur_index);
395
396
1.27k
        dst->insert_many_fix_len_data(get_data(_cur_index), max_fetch);
397
1.27k
        *n = max_fetch;
398
1.27k
        if constexpr (forward_index) {
399
1.27k
            _cur_index += max_fetch;
400
1.27k
        }
401
402
1.27k
        return Status::OK();
403
1.27k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE16EE10next_batchILb0EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE31EE10next_batchILb1EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
387
7.82k
    Status next_batch(size_t* n, MutableColumnPtr& dst) {
388
7.82k
        DCHECK(_parsed);
389
7.82k
        if (*n == 0 || _cur_index >= _num_elements) [[unlikely]] {
390
0
            *n = 0;
391
0
            return Status::OK();
392
0
        }
393
394
7.82k
        size_t max_fetch = std::min(*n, _num_elements - _cur_index);
395
396
7.82k
        dst->insert_many_fix_len_data(get_data(_cur_index), max_fetch);
397
7.82k
        *n = max_fetch;
398
7.82k
        if constexpr (forward_index) {
399
7.82k
            _cur_index += max_fetch;
400
7.82k
        }
401
402
7.82k
        return Status::OK();
403
7.82k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE31EE10next_batchILb0EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE32EE10next_batchILb1EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
387
30.0k
    Status next_batch(size_t* n, MutableColumnPtr& dst) {
388
30.0k
        DCHECK(_parsed);
389
30.0k
        if (*n == 0 || _cur_index >= _num_elements) [[unlikely]] {
390
0
            *n = 0;
391
0
            return Status::OK();
392
0
        }
393
394
30.0k
        size_t max_fetch = std::min(*n, _num_elements - _cur_index);
395
396
30.0k
        dst->insert_many_fix_len_data(get_data(_cur_index), max_fetch);
397
30.0k
        *n = max_fetch;
398
30.0k
        if constexpr (forward_index) {
399
30.0k
            _cur_index += max_fetch;
400
30.0k
        }
401
402
30.0k
        return Status::OK();
403
30.0k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE32EE10next_batchILb0EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE33EE10next_batchILb1EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
387
20.6k
    Status next_batch(size_t* n, MutableColumnPtr& dst) {
388
20.6k
        DCHECK(_parsed);
389
20.6k
        if (*n == 0 || _cur_index >= _num_elements) [[unlikely]] {
390
0
            *n = 0;
391
0
            return Status::OK();
392
0
        }
393
394
20.6k
        size_t max_fetch = std::min(*n, _num_elements - _cur_index);
395
396
20.6k
        dst->insert_many_fix_len_data(get_data(_cur_index), max_fetch);
397
20.6k
        *n = max_fetch;
398
20.6k
        if constexpr (forward_index) {
399
20.6k
            _cur_index += max_fetch;
400
20.6k
        }
401
402
20.6k
        return Status::OK();
403
20.6k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE33EE10next_batchILb0EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE37EE10next_batchILb1EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
387
3.18k
    Status next_batch(size_t* n, MutableColumnPtr& dst) {
388
3.18k
        DCHECK(_parsed);
389
3.18k
        if (*n == 0 || _cur_index >= _num_elements) [[unlikely]] {
390
0
            *n = 0;
391
0
            return Status::OK();
392
0
        }
393
394
3.18k
        size_t max_fetch = std::min(*n, _num_elements - _cur_index);
395
396
3.18k
        dst->insert_many_fix_len_data(get_data(_cur_index), max_fetch);
397
3.18k
        *n = max_fetch;
398
3.18k
        if constexpr (forward_index) {
399
3.18k
            _cur_index += max_fetch;
400
3.18k
        }
401
402
3.18k
        return Status::OK();
403
3.18k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE37EE10next_batchILb0EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE38EE10next_batchILb1EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
387
660
    Status next_batch(size_t* n, MutableColumnPtr& dst) {
388
660
        DCHECK(_parsed);
389
662
        if (*n == 0 || _cur_index >= _num_elements) [[unlikely]] {
390
0
            *n = 0;
391
0
            return Status::OK();
392
0
        }
393
394
660
        size_t max_fetch = std::min(*n, _num_elements - _cur_index);
395
396
660
        dst->insert_many_fix_len_data(get_data(_cur_index), max_fetch);
397
660
        *n = max_fetch;
398
660
        if constexpr (forward_index) {
399
660
            _cur_index += max_fetch;
400
660
        }
401
402
660
        return Status::OK();
403
660
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE38EE10next_batchILb0EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE39EE10next_batchILb1EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
387
686
    Status next_batch(size_t* n, MutableColumnPtr& dst) {
388
686
        DCHECK(_parsed);
389
686
        if (*n == 0 || _cur_index >= _num_elements) [[unlikely]] {
390
0
            *n = 0;
391
0
            return Status::OK();
392
0
        }
393
394
686
        size_t max_fetch = std::min(*n, _num_elements - _cur_index);
395
396
686
        dst->insert_many_fix_len_data(get_data(_cur_index), max_fetch);
397
686
        *n = max_fetch;
398
686
        if constexpr (forward_index) {
399
686
            _cur_index += max_fetch;
400
686
        }
401
402
686
        return Status::OK();
403
686
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE39EE10next_batchILb0EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE42EE10next_batchILb1EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
387
94.3k
    Status next_batch(size_t* n, MutableColumnPtr& dst) {
388
94.3k
        DCHECK(_parsed);
389
94.3k
        if (*n == 0 || _cur_index >= _num_elements) [[unlikely]] {
390
0
            *n = 0;
391
0
            return Status::OK();
392
0
        }
393
394
94.3k
        size_t max_fetch = std::min(*n, _num_elements - _cur_index);
395
396
94.3k
        dst->insert_many_fix_len_data(get_data(_cur_index), max_fetch);
397
94.3k
        *n = max_fetch;
398
94.3k
        if constexpr (forward_index) {
399
94.3k
            _cur_index += max_fetch;
400
94.3k
        }
401
402
94.3k
        return Status::OK();
403
94.3k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE42EE10next_batchILb0EEENS_6StatusEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
404
405
1.59M
    Status next_batch(size_t* n, MutableColumnPtr& dst) override { return next_batch<>(n, dst); }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE1EE10next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Line
Count
Source
405
154k
    Status next_batch(size_t* n, MutableColumnPtr& dst) override { return next_batch<>(n, dst); }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE3EE10next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Line
Count
Source
405
10.3k
    Status next_batch(size_t* n, MutableColumnPtr& dst) override { return next_batch<>(n, dst); }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE5EE10next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Line
Count
Source
405
648k
    Status next_batch(size_t* n, MutableColumnPtr& dst) override { return next_batch<>(n, dst); }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE7EE10next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Line
Count
Source
405
48.9k
    Status next_batch(size_t* n, MutableColumnPtr& dst) override { return next_batch<>(n, dst); }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE9EE10next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Line
Count
Source
405
10.7k
    Status next_batch(size_t* n, MutableColumnPtr& dst) override { return next_batch<>(n, dst); }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE8EE10next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Line
Count
Source
405
92.8k
    Status next_batch(size_t* n, MutableColumnPtr& dst) override { return next_batch<>(n, dst); }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE6EE10next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE10EE10next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Line
Count
Source
405
5.87k
    Status next_batch(size_t* n, MutableColumnPtr& dst) override { return next_batch<>(n, dst); }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE11EE10next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Line
Count
Source
405
9.45k
    Status next_batch(size_t* n, MutableColumnPtr& dst) override { return next_batch<>(n, dst); }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE24EE10next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Line
Count
Source
405
93
    Status next_batch(size_t* n, MutableColumnPtr& dst) override { return next_batch<>(n, dst); }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE14EE10next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Line
Count
Source
405
3.42k
    Status next_batch(size_t* n, MutableColumnPtr& dst) override { return next_batch<>(n, dst); }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE28EE10next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Line
Count
Source
405
372k
    Status next_batch(size_t* n, MutableColumnPtr& dst) override { return next_batch<>(n, dst); }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE29EE10next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Line
Count
Source
405
64.2k
    Status next_batch(size_t* n, MutableColumnPtr& dst) override { return next_batch<>(n, dst); }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE41EE10next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Line
Count
Source
405
2.18k
    Status next_batch(size_t* n, MutableColumnPtr& dst) override { return next_batch<>(n, dst); }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE15EE10next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Line
Count
Source
405
1.09k
    Status next_batch(size_t* n, MutableColumnPtr& dst) override { return next_batch<>(n, dst); }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE40EE10next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Line
Count
Source
405
8.14k
    Status next_batch(size_t* n, MutableColumnPtr& dst) override { return next_batch<>(n, dst); }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE16EE10next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Line
Count
Source
405
1.27k
    Status next_batch(size_t* n, MutableColumnPtr& dst) override { return next_batch<>(n, dst); }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE31EE10next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Line
Count
Source
405
7.81k
    Status next_batch(size_t* n, MutableColumnPtr& dst) override { return next_batch<>(n, dst); }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE32EE10next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Line
Count
Source
405
30.0k
    Status next_batch(size_t* n, MutableColumnPtr& dst) override { return next_batch<>(n, dst); }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE33EE10next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Line
Count
Source
405
20.6k
    Status next_batch(size_t* n, MutableColumnPtr& dst) override { return next_batch<>(n, dst); }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE37EE10next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Line
Count
Source
405
3.18k
    Status next_batch(size_t* n, MutableColumnPtr& dst) override { return next_batch<>(n, dst); }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE38EE10next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Line
Count
Source
405
660
    Status next_batch(size_t* n, MutableColumnPtr& dst) override { return next_batch<>(n, dst); }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE39EE10next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Line
Count
Source
405
686
    Status next_batch(size_t* n, MutableColumnPtr& dst) override { return next_batch<>(n, dst); }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE42EE10next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Line
Count
Source
405
94.5k
    Status next_batch(size_t* n, MutableColumnPtr& dst) override { return next_batch<>(n, dst); }
406
407
    Status read_by_rowids(const rowid_t* rowids, ordinal_t page_first_ordinal, size_t* n,
408
430k
                          MutableColumnPtr& dst) override {
409
430k
        DCHECK(_parsed);
410
430k
        if (*n == 0) [[unlikely]] {
411
0
            *n = 0;
412
0
            return Status::OK();
413
0
        }
414
415
430k
        auto total = *n;
416
430k
        auto read_count = 0;
417
430k
        _buffer.resize(total);
418
71.7M
        for (size_t i = 0; i < total; ++i) {
419
71.3M
            ordinal_t ord = rowids[i] - page_first_ordinal;
420
71.3M
            if (UNLIKELY(ord >= _num_elements)) {
421
11.6k
                break;
422
11.6k
            }
423
424
71.3M
            _buffer[read_count++] = *reinterpret_cast<CppType*>(get_data(ord));
425
71.3M
        }
426
427
430k
        if (LIKELY(read_count > 0)) {
428
430k
            dst->insert_many_fix_len_data((char*)_buffer.data(), read_count);
429
430k
        }
430
431
430k
        *n = read_count;
432
430k
        return Status::OK();
433
430k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE1EE14read_by_rowidsEPKjmPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
408
33.6k
                          MutableColumnPtr& dst) override {
409
33.6k
        DCHECK(_parsed);
410
33.6k
        if (*n == 0) [[unlikely]] {
411
0
            *n = 0;
412
0
            return Status::OK();
413
0
        }
414
415
33.6k
        auto total = *n;
416
33.6k
        auto read_count = 0;
417
33.6k
        _buffer.resize(total);
418
756k
        for (size_t i = 0; i < total; ++i) {
419
723k
            ordinal_t ord = rowids[i] - page_first_ordinal;
420
723k
            if (UNLIKELY(ord >= _num_elements)) {
421
0
                break;
422
0
            }
423
424
723k
            _buffer[read_count++] = *reinterpret_cast<CppType*>(get_data(ord));
425
723k
        }
426
427
33.7k
        if (LIKELY(read_count > 0)) {
428
33.7k
            dst->insert_many_fix_len_data((char*)_buffer.data(), read_count);
429
33.7k
        }
430
431
33.6k
        *n = read_count;
432
33.6k
        return Status::OK();
433
33.6k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE3EE14read_by_rowidsEPKjmPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
408
5.40k
                          MutableColumnPtr& dst) override {
409
5.40k
        DCHECK(_parsed);
410
5.40k
        if (*n == 0) [[unlikely]] {
411
0
            *n = 0;
412
0
            return Status::OK();
413
0
        }
414
415
5.40k
        auto total = *n;
416
5.40k
        auto read_count = 0;
417
5.40k
        _buffer.resize(total);
418
42.5k
        for (size_t i = 0; i < total; ++i) {
419
37.1k
            ordinal_t ord = rowids[i] - page_first_ordinal;
420
37.1k
            if (UNLIKELY(ord >= _num_elements)) {
421
0
                break;
422
0
            }
423
424
37.1k
            _buffer[read_count++] = *reinterpret_cast<CppType*>(get_data(ord));
425
37.1k
        }
426
427
5.40k
        if (LIKELY(read_count > 0)) {
428
5.40k
            dst->insert_many_fix_len_data((char*)_buffer.data(), read_count);
429
5.40k
        }
430
431
5.40k
        *n = read_count;
432
5.40k
        return Status::OK();
433
5.40k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE5EE14read_by_rowidsEPKjmPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
408
73.7k
                          MutableColumnPtr& dst) override {
409
73.7k
        DCHECK(_parsed);
410
73.7k
        if (*n == 0) [[unlikely]] {
411
0
            *n = 0;
412
0
            return Status::OK();
413
0
        }
414
415
73.7k
        auto total = *n;
416
73.7k
        auto read_count = 0;
417
73.7k
        _buffer.resize(total);
418
6.65M
        for (size_t i = 0; i < total; ++i) {
419
6.58M
            ordinal_t ord = rowids[i] - page_first_ordinal;
420
6.58M
            if (UNLIKELY(ord >= _num_elements)) {
421
408
                break;
422
408
            }
423
424
6.58M
            _buffer[read_count++] = *reinterpret_cast<CppType*>(get_data(ord));
425
6.58M
        }
426
427
73.7k
        if (LIKELY(read_count > 0)) {
428
73.7k
            dst->insert_many_fix_len_data((char*)_buffer.data(), read_count);
429
73.7k
        }
430
431
73.7k
        *n = read_count;
432
73.7k
        return Status::OK();
433
73.7k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE7EE14read_by_rowidsEPKjmPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
408
105k
                          MutableColumnPtr& dst) override {
409
105k
        DCHECK(_parsed);
410
105k
        if (*n == 0) [[unlikely]] {
411
0
            *n = 0;
412
0
            return Status::OK();
413
0
        }
414
415
105k
        auto total = *n;
416
105k
        auto read_count = 0;
417
105k
        _buffer.resize(total);
418
3.35M
        for (size_t i = 0; i < total; ++i) {
419
3.25M
            ordinal_t ord = rowids[i] - page_first_ordinal;
420
3.25M
            if (UNLIKELY(ord >= _num_elements)) {
421
133
                break;
422
133
            }
423
424
3.25M
            _buffer[read_count++] = *reinterpret_cast<CppType*>(get_data(ord));
425
3.25M
        }
426
427
105k
        if (LIKELY(read_count > 0)) {
428
105k
            dst->insert_many_fix_len_data((char*)_buffer.data(), read_count);
429
105k
        }
430
431
105k
        *n = read_count;
432
105k
        return Status::OK();
433
105k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE9EE14read_by_rowidsEPKjmPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
408
6.33k
                          MutableColumnPtr& dst) override {
409
6.33k
        DCHECK(_parsed);
410
6.33k
        if (*n == 0) [[unlikely]] {
411
0
            *n = 0;
412
0
            return Status::OK();
413
0
        }
414
415
6.33k
        auto total = *n;
416
6.33k
        auto read_count = 0;
417
6.33k
        _buffer.resize(total);
418
13.7k
        for (size_t i = 0; i < total; ++i) {
419
7.46k
            ordinal_t ord = rowids[i] - page_first_ordinal;
420
7.46k
            if (UNLIKELY(ord >= _num_elements)) {
421
0
                break;
422
0
            }
423
424
7.46k
            _buffer[read_count++] = *reinterpret_cast<CppType*>(get_data(ord));
425
7.46k
        }
426
427
6.34k
        if (LIKELY(read_count > 0)) {
428
6.34k
            dst->insert_many_fix_len_data((char*)_buffer.data(), read_count);
429
6.34k
        }
430
431
6.33k
        *n = read_count;
432
6.33k
        return Status::OK();
433
6.33k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE8EE14read_by_rowidsEPKjmPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
408
68.2k
                          MutableColumnPtr& dst) override {
409
68.2k
        DCHECK(_parsed);
410
68.2k
        if (*n == 0) [[unlikely]] {
411
0
            *n = 0;
412
0
            return Status::OK();
413
0
        }
414
415
68.2k
        auto total = *n;
416
68.2k
        auto read_count = 0;
417
68.2k
        _buffer.resize(total);
418
9.77M
        for (size_t i = 0; i < total; ++i) {
419
9.70M
            ordinal_t ord = rowids[i] - page_first_ordinal;
420
9.70M
            if (UNLIKELY(ord >= _num_elements)) {
421
2.96k
                break;
422
2.96k
            }
423
424
9.70M
            _buffer[read_count++] = *reinterpret_cast<CppType*>(get_data(ord));
425
9.70M
        }
426
427
68.2k
        if (LIKELY(read_count > 0)) {
428
68.2k
            dst->insert_many_fix_len_data((char*)_buffer.data(), read_count);
429
68.2k
        }
430
431
68.2k
        *n = read_count;
432
68.2k
        return Status::OK();
433
68.2k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE6EE14read_by_rowidsEPKjmPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE10EE14read_by_rowidsEPKjmPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
408
4.96k
                          MutableColumnPtr& dst) override {
409
4.96k
        DCHECK(_parsed);
410
4.96k
        if (*n == 0) [[unlikely]] {
411
0
            *n = 0;
412
0
            return Status::OK();
413
0
        }
414
415
4.96k
        auto total = *n;
416
4.96k
        auto read_count = 0;
417
4.96k
        _buffer.resize(total);
418
16.2k
        for (size_t i = 0; i < total; ++i) {
419
11.2k
            ordinal_t ord = rowids[i] - page_first_ordinal;
420
11.2k
            if (UNLIKELY(ord >= _num_elements)) {
421
0
                break;
422
0
            }
423
424
11.2k
            _buffer[read_count++] = *reinterpret_cast<CppType*>(get_data(ord));
425
11.2k
        }
426
427
4.96k
        if (LIKELY(read_count > 0)) {
428
4.96k
            dst->insert_many_fix_len_data((char*)_buffer.data(), read_count);
429
4.96k
        }
430
431
4.96k
        *n = read_count;
432
4.96k
        return Status::OK();
433
4.96k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE11EE14read_by_rowidsEPKjmPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
408
5.42k
                          MutableColumnPtr& dst) override {
409
5.42k
        DCHECK(_parsed);
410
5.42k
        if (*n == 0) [[unlikely]] {
411
0
            *n = 0;
412
0
            return Status::OK();
413
0
        }
414
415
5.42k
        auto total = *n;
416
5.42k
        auto read_count = 0;
417
5.42k
        _buffer.resize(total);
418
640k
        for (size_t i = 0; i < total; ++i) {
419
635k
            ordinal_t ord = rowids[i] - page_first_ordinal;
420
635k
            if (UNLIKELY(ord >= _num_elements)) {
421
81
                break;
422
81
            }
423
424
635k
            _buffer[read_count++] = *reinterpret_cast<CppType*>(get_data(ord));
425
635k
        }
426
427
5.42k
        if (LIKELY(read_count > 0)) {
428
5.42k
            dst->insert_many_fix_len_data((char*)_buffer.data(), read_count);
429
5.42k
        }
430
431
5.42k
        *n = read_count;
432
5.42k
        return Status::OK();
433
5.42k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE24EE14read_by_rowidsEPKjmPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE14EE14read_by_rowidsEPKjmPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
408
1.40k
                          MutableColumnPtr& dst) override {
409
1.40k
        DCHECK(_parsed);
410
1.40k
        if (*n == 0) [[unlikely]] {
411
0
            *n = 0;
412
0
            return Status::OK();
413
0
        }
414
415
1.40k
        auto total = *n;
416
1.40k
        auto read_count = 0;
417
1.40k
        _buffer.resize(total);
418
497k
        for (size_t i = 0; i < total; ++i) {
419
496k
            ordinal_t ord = rowids[i] - page_first_ordinal;
420
496k
            if (UNLIKELY(ord >= _num_elements)) {
421
12
                break;
422
12
            }
423
424
496k
            _buffer[read_count++] = *reinterpret_cast<CppType*>(get_data(ord));
425
496k
        }
426
427
1.40k
        if (LIKELY(read_count > 0)) {
428
1.40k
            dst->insert_many_fix_len_data((char*)_buffer.data(), read_count);
429
1.40k
        }
430
431
1.40k
        *n = read_count;
432
1.40k
        return Status::OK();
433
1.40k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE28EE14read_by_rowidsEPKjmPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
408
29.1k
                          MutableColumnPtr& dst) override {
409
29.1k
        DCHECK(_parsed);
410
29.1k
        if (*n == 0) [[unlikely]] {
411
0
            *n = 0;
412
0
            return Status::OK();
413
0
        }
414
415
29.1k
        auto total = *n;
416
29.1k
        auto read_count = 0;
417
29.1k
        _buffer.resize(total);
418
6.52M
        for (size_t i = 0; i < total; ++i) {
419
6.49M
            ordinal_t ord = rowids[i] - page_first_ordinal;
420
6.49M
            if (UNLIKELY(ord >= _num_elements)) {
421
743
                break;
422
743
            }
423
424
6.49M
            _buffer[read_count++] = *reinterpret_cast<CppType*>(get_data(ord));
425
6.49M
        }
426
427
29.2k
        if (LIKELY(read_count > 0)) {
428
29.2k
            dst->insert_many_fix_len_data((char*)_buffer.data(), read_count);
429
29.2k
        }
430
431
29.1k
        *n = read_count;
432
29.1k
        return Status::OK();
433
29.1k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE29EE14read_by_rowidsEPKjmPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
408
32.3k
                          MutableColumnPtr& dst) override {
409
32.3k
        DCHECK(_parsed);
410
32.3k
        if (*n == 0) [[unlikely]] {
411
0
            *n = 0;
412
0
            return Status::OK();
413
0
        }
414
415
32.3k
        auto total = *n;
416
32.3k
        auto read_count = 0;
417
32.3k
        _buffer.resize(total);
418
10.0M
        for (size_t i = 0; i < total; ++i) {
419
10.0M
            ordinal_t ord = rowids[i] - page_first_ordinal;
420
10.0M
            if (UNLIKELY(ord >= _num_elements)) {
421
176
                break;
422
176
            }
423
424
10.0M
            _buffer[read_count++] = *reinterpret_cast<CppType*>(get_data(ord));
425
10.0M
        }
426
427
32.3k
        if (LIKELY(read_count > 0)) {
428
32.3k
            dst->insert_many_fix_len_data((char*)_buffer.data(), read_count);
429
32.3k
        }
430
431
32.3k
        *n = read_count;
432
32.3k
        return Status::OK();
433
32.3k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE41EE14read_by_rowidsEPKjmPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
408
1.17k
                          MutableColumnPtr& dst) override {
409
1.17k
        DCHECK(_parsed);
410
1.17k
        if (*n == 0) [[unlikely]] {
411
0
            *n = 0;
412
0
            return Status::OK();
413
0
        }
414
415
1.17k
        auto total = *n;
416
1.17k
        auto read_count = 0;
417
1.17k
        _buffer.resize(total);
418
4.00k
        for (size_t i = 0; i < total; ++i) {
419
2.83k
            ordinal_t ord = rowids[i] - page_first_ordinal;
420
2.83k
            if (UNLIKELY(ord >= _num_elements)) {
421
0
                break;
422
0
            }
423
424
2.83k
            _buffer[read_count++] = *reinterpret_cast<CppType*>(get_data(ord));
425
2.83k
        }
426
427
1.17k
        if (LIKELY(read_count > 0)) {
428
1.17k
            dst->insert_many_fix_len_data((char*)_buffer.data(), read_count);
429
1.17k
        }
430
431
1.17k
        *n = read_count;
432
1.17k
        return Status::OK();
433
1.17k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE15EE14read_by_rowidsEPKjmPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
408
1.77k
                          MutableColumnPtr& dst) override {
409
1.77k
        DCHECK(_parsed);
410
1.77k
        if (*n == 0) [[unlikely]] {
411
0
            *n = 0;
412
0
            return Status::OK();
413
0
        }
414
415
1.77k
        auto total = *n;
416
1.77k
        auto read_count = 0;
417
1.77k
        _buffer.resize(total);
418
496k
        for (size_t i = 0; i < total; ++i) {
419
495k
            ordinal_t ord = rowids[i] - page_first_ordinal;
420
495k
            if (UNLIKELY(ord >= _num_elements)) {
421
240
                break;
422
240
            }
423
424
495k
            _buffer[read_count++] = *reinterpret_cast<CppType*>(get_data(ord));
425
495k
        }
426
427
1.77k
        if (LIKELY(read_count > 0)) {
428
1.77k
            dst->insert_many_fix_len_data((char*)_buffer.data(), read_count);
429
1.77k
        }
430
431
1.77k
        *n = read_count;
432
1.77k
        return Status::OK();
433
1.77k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE40EE14read_by_rowidsEPKjmPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
408
12.4k
                          MutableColumnPtr& dst) override {
409
12.4k
        DCHECK(_parsed);
410
12.4k
        if (*n == 0) [[unlikely]] {
411
0
            *n = 0;
412
0
            return Status::OK();
413
0
        }
414
415
12.4k
        auto total = *n;
416
12.4k
        auto read_count = 0;
417
12.4k
        _buffer.resize(total);
418
26.3k
        for (size_t i = 0; i < total; ++i) {
419
13.9k
            ordinal_t ord = rowids[i] - page_first_ordinal;
420
13.9k
            if (UNLIKELY(ord >= _num_elements)) {
421
0
                break;
422
0
            }
423
424
13.9k
            _buffer[read_count++] = *reinterpret_cast<CppType*>(get_data(ord));
425
13.9k
        }
426
427
12.4k
        if (LIKELY(read_count > 0)) {
428
12.4k
            dst->insert_many_fix_len_data((char*)_buffer.data(), read_count);
429
12.4k
        }
430
431
12.4k
        *n = read_count;
432
12.4k
        return Status::OK();
433
12.4k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE16EE14read_by_rowidsEPKjmPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
408
131
                          MutableColumnPtr& dst) override {
409
131
        DCHECK(_parsed);
410
131
        if (*n == 0) [[unlikely]] {
411
0
            *n = 0;
412
0
            return Status::OK();
413
0
        }
414
415
131
        auto total = *n;
416
131
        auto read_count = 0;
417
131
        _buffer.resize(total);
418
268
        for (size_t i = 0; i < total; ++i) {
419
137
            ordinal_t ord = rowids[i] - page_first_ordinal;
420
137
            if (UNLIKELY(ord >= _num_elements)) {
421
0
                break;
422
0
            }
423
424
137
            _buffer[read_count++] = *reinterpret_cast<CppType*>(get_data(ord));
425
137
        }
426
427
132
        if (LIKELY(read_count > 0)) {
428
132
            dst->insert_many_fix_len_data((char*)_buffer.data(), read_count);
429
132
        }
430
431
131
        *n = read_count;
432
131
        return Status::OK();
433
131
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE31EE14read_by_rowidsEPKjmPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
408
4.54k
                          MutableColumnPtr& dst) override {
409
4.54k
        DCHECK(_parsed);
410
4.54k
        if (*n == 0) [[unlikely]] {
411
0
            *n = 0;
412
0
            return Status::OK();
413
0
        }
414
415
4.54k
        auto total = *n;
416
4.54k
        auto read_count = 0;
417
4.54k
        _buffer.resize(total);
418
18.9k
        for (size_t i = 0; i < total; ++i) {
419
14.4k
            ordinal_t ord = rowids[i] - page_first_ordinal;
420
14.4k
            if (UNLIKELY(ord >= _num_elements)) {
421
0
                break;
422
0
            }
423
424
14.4k
            _buffer[read_count++] = *reinterpret_cast<CppType*>(get_data(ord));
425
14.4k
        }
426
427
4.54k
        if (LIKELY(read_count > 0)) {
428
4.54k
            dst->insert_many_fix_len_data((char*)_buffer.data(), read_count);
429
4.54k
        }
430
431
4.54k
        *n = read_count;
432
4.54k
        return Status::OK();
433
4.54k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE32EE14read_by_rowidsEPKjmPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
408
28.6k
                          MutableColumnPtr& dst) override {
409
28.6k
        DCHECK(_parsed);
410
28.6k
        if (*n == 0) [[unlikely]] {
411
0
            *n = 0;
412
0
            return Status::OK();
413
0
        }
414
415
28.6k
        auto total = *n;
416
28.6k
        auto read_count = 0;
417
28.6k
        _buffer.resize(total);
418
23.8M
        for (size_t i = 0; i < total; ++i) {
419
23.7M
            ordinal_t ord = rowids[i] - page_first_ordinal;
420
23.7M
            if (UNLIKELY(ord >= _num_elements)) {
421
6.19k
                break;
422
6.19k
            }
423
424
23.7M
            _buffer[read_count++] = *reinterpret_cast<CppType*>(get_data(ord));
425
23.7M
        }
426
427
28.6k
        if (LIKELY(read_count > 0)) {
428
28.6k
            dst->insert_many_fix_len_data((char*)_buffer.data(), read_count);
429
28.6k
        }
430
431
28.6k
        *n = read_count;
432
28.6k
        return Status::OK();
433
28.6k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE33EE14read_by_rowidsEPKjmPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
408
13.3k
                          MutableColumnPtr& dst) override {
409
13.3k
        DCHECK(_parsed);
410
13.3k
        if (*n == 0) [[unlikely]] {
411
0
            *n = 0;
412
0
            return Status::OK();
413
0
        }
414
415
13.3k
        auto total = *n;
416
13.3k
        auto read_count = 0;
417
13.3k
        _buffer.resize(total);
418
9.06M
        for (size_t i = 0; i < total; ++i) {
419
9.05M
            ordinal_t ord = rowids[i] - page_first_ordinal;
420
9.05M
            if (UNLIKELY(ord >= _num_elements)) {
421
721
                break;
422
721
            }
423
424
9.05M
            _buffer[read_count++] = *reinterpret_cast<CppType*>(get_data(ord));
425
9.05M
        }
426
427
13.3k
        if (LIKELY(read_count > 0)) {
428
13.3k
            dst->insert_many_fix_len_data((char*)_buffer.data(), read_count);
429
13.3k
        }
430
431
13.3k
        *n = read_count;
432
13.3k
        return Status::OK();
433
13.3k
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE37EE14read_by_rowidsEPKjmPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
408
962
                          MutableColumnPtr& dst) override {
409
962
        DCHECK(_parsed);
410
962
        if (*n == 0) [[unlikely]] {
411
0
            *n = 0;
412
0
            return Status::OK();
413
0
        }
414
415
962
        auto total = *n;
416
962
        auto read_count = 0;
417
962
        _buffer.resize(total);
418
2.77k
        for (size_t i = 0; i < total; ++i) {
419
1.81k
            ordinal_t ord = rowids[i] - page_first_ordinal;
420
1.81k
            if (UNLIKELY(ord >= _num_elements)) {
421
0
                break;
422
0
            }
423
424
1.81k
            _buffer[read_count++] = *reinterpret_cast<CppType*>(get_data(ord));
425
1.81k
        }
426
427
962
        if (LIKELY(read_count > 0)) {
428
962
            dst->insert_many_fix_len_data((char*)_buffer.data(), read_count);
429
962
        }
430
431
962
        *n = read_count;
432
962
        return Status::OK();
433
962
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE38EE14read_by_rowidsEPKjmPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
408
290
                          MutableColumnPtr& dst) override {
409
290
        DCHECK(_parsed);
410
290
        if (*n == 0) [[unlikely]] {
411
0
            *n = 0;
412
0
            return Status::OK();
413
0
        }
414
415
290
        auto total = *n;
416
290
        auto read_count = 0;
417
290
        _buffer.resize(total);
418
824
        for (size_t i = 0; i < total; ++i) {
419
534
            ordinal_t ord = rowids[i] - page_first_ordinal;
420
534
            if (UNLIKELY(ord >= _num_elements)) {
421
0
                break;
422
0
            }
423
424
534
            _buffer[read_count++] = *reinterpret_cast<CppType*>(get_data(ord));
425
534
        }
426
427
290
        if (LIKELY(read_count > 0)) {
428
290
            dst->insert_many_fix_len_data((char*)_buffer.data(), read_count);
429
290
        }
430
431
290
        *n = read_count;
432
290
        return Status::OK();
433
290
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE39EE14read_by_rowidsEPKjmPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
408
322
                          MutableColumnPtr& dst) override {
409
322
        DCHECK(_parsed);
410
322
        if (*n == 0) [[unlikely]] {
411
0
            *n = 0;
412
0
            return Status::OK();
413
0
        }
414
415
322
        auto total = *n;
416
322
        auto read_count = 0;
417
322
        _buffer.resize(total);
418
1.16k
        for (size_t i = 0; i < total; ++i) {
419
838
            ordinal_t ord = rowids[i] - page_first_ordinal;
420
838
            if (UNLIKELY(ord >= _num_elements)) {
421
0
                break;
422
0
            }
423
424
838
            _buffer[read_count++] = *reinterpret_cast<CppType*>(get_data(ord));
425
838
        }
426
427
323
        if (LIKELY(read_count > 0)) {
428
323
            dst->insert_many_fix_len_data((char*)_buffer.data(), read_count);
429
323
        }
430
431
322
        *n = read_count;
432
322
        return Status::OK();
433
322
    }
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE42EE14read_by_rowidsEPKjmPmRNS_3COWINS_7IColumnEE11mutable_ptrIS8_EE
Line
Count
Source
408
492
                          MutableColumnPtr& dst) override {
409
492
        DCHECK(_parsed);
410
492
        if (*n == 0) [[unlikely]] {
411
0
            *n = 0;
412
0
            return Status::OK();
413
0
        }
414
415
492
        auto total = *n;
416
492
        auto read_count = 0;
417
492
        _buffer.resize(total);
418
1.10k
        for (size_t i = 0; i < total; ++i) {
419
611
            ordinal_t ord = rowids[i] - page_first_ordinal;
420
611
            if (UNLIKELY(ord >= _num_elements)) {
421
0
                break;
422
0
            }
423
424
611
            _buffer[read_count++] = *reinterpret_cast<CppType*>(get_data(ord));
425
611
        }
426
427
492
        if (LIKELY(read_count > 0)) {
428
492
            dst->insert_many_fix_len_data((char*)_buffer.data(), read_count);
429
492
        }
430
431
492
        *n = read_count;
432
492
        return Status::OK();
433
492
    }
434
435
52.2k
    Status peek_next_batch(size_t* n, MutableColumnPtr& dst) override {
436
52.2k
        return next_batch<false>(n, dst);
437
52.2k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE1EE15peek_next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE3EE15peek_next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE5EE15peek_next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE7EE15peek_next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE9EE15peek_next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
_ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE8EE15peek_next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Line
Count
Source
435
52.2k
    Status peek_next_batch(size_t* n, MutableColumnPtr& dst) override {
436
52.2k
        return next_batch<false>(n, dst);
437
52.2k
    }
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE6EE15peek_next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE10EE15peek_next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE11EE15peek_next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE24EE15peek_next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE14EE15peek_next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE28EE15peek_next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE29EE15peek_next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE41EE15peek_next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE15EE15peek_next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE40EE15peek_next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE16EE15peek_next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE31EE15peek_next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE32EE15peek_next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE33EE15peek_next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE37EE15peek_next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE38EE15peek_next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE39EE15peek_next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
Unexecuted instantiation: _ZN5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE42EE15peek_next_batchEPmRNS_3COWINS_7IColumnEE11mutable_ptrIS6_EE
438
439
4
    size_t count() const override { return _num_elements; }
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE1EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE3EE5countEv
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE5EE5countEv
Line
Count
Source
439
4
    size_t count() const override { return _num_elements; }
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE7EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE9EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE8EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE6EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE10EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE11EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE24EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE14EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE28EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE29EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE41EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE15EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE40EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE16EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE31EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE32EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE33EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE37EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE38EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE39EE5countEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE42EE5countEv
440
441
2.62M
    size_t current_index() const override { return _cur_index; }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE1EE13current_indexEv
Line
Count
Source
441
313
    size_t current_index() const override { return _cur_index; }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE3EE13current_indexEv
Line
Count
Source
441
39
    size_t current_index() const override { return _cur_index; }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE5EE13current_indexEv
Line
Count
Source
441
1.67M
    size_t current_index() const override { return _cur_index; }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE7EE13current_indexEv
Line
Count
Source
441
172k
    size_t current_index() const override { return _cur_index; }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE9EE13current_indexEv
Line
Count
Source
441
253
    size_t current_index() const override { return _cur_index; }
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE8EE13current_indexEv
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE6EE13current_indexEv
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE10EE13current_indexEv
Line
Count
Source
441
458
    size_t current_index() const override { return _cur_index; }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE11EE13current_indexEv
Line
Count
Source
441
632
    size_t current_index() const override { return _cur_index; }
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE24EE13current_indexEv
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE14EE13current_indexEv
Line
Count
Source
441
205k
    size_t current_index() const override { return _cur_index; }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE28EE13current_indexEv
Line
Count
Source
441
224k
    size_t current_index() const override { return _cur_index; }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE29EE13current_indexEv
Line
Count
Source
441
21.4k
    size_t current_index() const override { return _cur_index; }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE41EE13current_indexEv
Line
Count
Source
441
271
    size_t current_index() const override { return _cur_index; }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE15EE13current_indexEv
Line
Count
Source
441
196k
    size_t current_index() const override { return _cur_index; }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE40EE13current_indexEv
Line
Count
Source
441
1.10k
    size_t current_index() const override { return _cur_index; }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE16EE13current_indexEv
Line
Count
Source
441
6
    size_t current_index() const override { return _cur_index; }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE31EE13current_indexEv
Line
Count
Source
441
3.46k
    size_t current_index() const override { return _cur_index; }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE32EE13current_indexEv
Line
Count
Source
441
1.00k
    size_t current_index() const override { return _cur_index; }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE33EE13current_indexEv
Line
Count
Source
441
108k
    size_t current_index() const override { return _cur_index; }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE37EE13current_indexEv
Line
Count
Source
441
309
    size_t current_index() const override { return _cur_index; }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE38EE13current_indexEv
Line
Count
Source
441
41
    size_t current_index() const override { return _cur_index; }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE39EE13current_indexEv
Line
Count
Source
441
47
    size_t current_index() const override { return _cur_index; }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE42EE13current_indexEv
Line
Count
Source
441
11.4k
    size_t current_index() const override { return _cur_index; }
442
443
75.0M
    char* get_data(size_t index) const {
444
75.0M
        return &_data.data[BITSHUFFLE_PAGE_HEADER_SIZE + index * SIZE_OF_TYPE];
445
75.0M
    }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE1EE8get_dataEm
Line
Count
Source
443
877k
    char* get_data(size_t index) const {
444
877k
        return &_data.data[BITSHUFFLE_PAGE_HEADER_SIZE + index * SIZE_OF_TYPE];
445
877k
    }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE3EE8get_dataEm
Line
Count
Source
443
47.4k
    char* get_data(size_t index) const {
444
47.4k
        return &_data.data[BITSHUFFLE_PAGE_HEADER_SIZE + index * SIZE_OF_TYPE];
445
47.4k
    }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE5EE8get_dataEm
Line
Count
Source
443
9.26M
    char* get_data(size_t index) const {
444
9.26M
        return &_data.data[BITSHUFFLE_PAGE_HEADER_SIZE + index * SIZE_OF_TYPE];
445
9.26M
    }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE7EE8get_dataEm
Line
Count
Source
443
3.29M
    char* get_data(size_t index) const {
444
3.29M
        return &_data.data[BITSHUFFLE_PAGE_HEADER_SIZE + index * SIZE_OF_TYPE];
445
3.29M
    }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE9EE8get_dataEm
Line
Count
Source
443
18.2k
    char* get_data(size_t index) const {
444
18.2k
        return &_data.data[BITSHUFFLE_PAGE_HEADER_SIZE + index * SIZE_OF_TYPE];
445
18.2k
    }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE8EE8get_dataEm
Line
Count
Source
443
9.84M
    char* get_data(size_t index) const {
444
9.84M
        return &_data.data[BITSHUFFLE_PAGE_HEADER_SIZE + index * SIZE_OF_TYPE];
445
9.84M
    }
Unexecuted instantiation: _ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE6EE8get_dataEm
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE10EE8get_dataEm
Line
Count
Source
443
17.1k
    char* get_data(size_t index) const {
444
17.1k
        return &_data.data[BITSHUFFLE_PAGE_HEADER_SIZE + index * SIZE_OF_TYPE];
445
17.1k
    }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE11EE8get_dataEm
Line
Count
Source
443
644k
    char* get_data(size_t index) const {
444
644k
        return &_data.data[BITSHUFFLE_PAGE_HEADER_SIZE + index * SIZE_OF_TYPE];
445
644k
    }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE24EE8get_dataEm
Line
Count
Source
443
93
    char* get_data(size_t index) const {
444
93
        return &_data.data[BITSHUFFLE_PAGE_HEADER_SIZE + index * SIZE_OF_TYPE];
445
93
    }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE14EE8get_dataEm
Line
Count
Source
443
499k
    char* get_data(size_t index) const {
444
499k
        return &_data.data[BITSHUFFLE_PAGE_HEADER_SIZE + index * SIZE_OF_TYPE];
445
499k
    }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE28EE8get_dataEm
Line
Count
Source
443
6.87M
    char* get_data(size_t index) const {
444
6.87M
        return &_data.data[BITSHUFFLE_PAGE_HEADER_SIZE + index * SIZE_OF_TYPE];
445
6.87M
    }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE29EE8get_dataEm
Line
Count
Source
443
10.1M
    char* get_data(size_t index) const {
444
10.1M
        return &_data.data[BITSHUFFLE_PAGE_HEADER_SIZE + index * SIZE_OF_TYPE];
445
10.1M
    }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE41EE8get_dataEm
Line
Count
Source
443
5.01k
    char* get_data(size_t index) const {
444
5.01k
        return &_data.data[BITSHUFFLE_PAGE_HEADER_SIZE + index * SIZE_OF_TYPE];
445
5.01k
    }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE15EE8get_dataEm
Line
Count
Source
443
495k
    char* get_data(size_t index) const {
444
495k
        return &_data.data[BITSHUFFLE_PAGE_HEADER_SIZE + index * SIZE_OF_TYPE];
445
495k
    }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE40EE8get_dataEm
Line
Count
Source
443
22.0k
    char* get_data(size_t index) const {
444
22.0k
        return &_data.data[BITSHUFFLE_PAGE_HEADER_SIZE + index * SIZE_OF_TYPE];
445
22.0k
    }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE16EE8get_dataEm
Line
Count
Source
443
1.40k
    char* get_data(size_t index) const {
444
1.40k
        return &_data.data[BITSHUFFLE_PAGE_HEADER_SIZE + index * SIZE_OF_TYPE];
445
1.40k
    }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE31EE8get_dataEm
Line
Count
Source
443
22.2k
    char* get_data(size_t index) const {
444
22.2k
        return &_data.data[BITSHUFFLE_PAGE_HEADER_SIZE + index * SIZE_OF_TYPE];
445
22.2k
    }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE32EE8get_dataEm
Line
Count
Source
443
23.8M
    char* get_data(size_t index) const {
444
23.8M
        return &_data.data[BITSHUFFLE_PAGE_HEADER_SIZE + index * SIZE_OF_TYPE];
445
23.8M
    }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE33EE8get_dataEm
Line
Count
Source
443
9.07M
    char* get_data(size_t index) const {
444
9.07M
        return &_data.data[BITSHUFFLE_PAGE_HEADER_SIZE + index * SIZE_OF_TYPE];
445
9.07M
    }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE37EE8get_dataEm
Line
Count
Source
443
4.99k
    char* get_data(size_t index) const {
444
4.99k
        return &_data.data[BITSHUFFLE_PAGE_HEADER_SIZE + index * SIZE_OF_TYPE];
445
4.99k
    }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE38EE8get_dataEm
Line
Count
Source
443
1.19k
    char* get_data(size_t index) const {
444
1.19k
        return &_data.data[BITSHUFFLE_PAGE_HEADER_SIZE + index * SIZE_OF_TYPE];
445
1.19k
    }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE39EE8get_dataEm
Line
Count
Source
443
1.52k
    char* get_data(size_t index) const {
444
1.52k
        return &_data.data[BITSHUFFLE_PAGE_HEADER_SIZE + index * SIZE_OF_TYPE];
445
1.52k
    }
_ZNK5doris10segment_v221BitShufflePageDecoderILNS_9FieldTypeE42EE8get_dataEm
Line
Count
Source
443
95.0k
    char* get_data(size_t index) const {
444
95.0k
        return &_data.data[BITSHUFFLE_PAGE_HEADER_SIZE + index * SIZE_OF_TYPE];
445
95.0k
    }
446
447
private:
448
    void _copy_next_values(size_t n, void* data) {
449
        memcpy(data, get_data(_cur_index), n * SIZE_OF_TYPE);
450
    }
451
452
    using CppType = typename TypeTraits<Type>::CppType;
453
454
    enum { SIZE_OF_TYPE = TypeTraits<Type>::size };
455
456
    Slice _data;
457
    PageDecoderOptions _options;
458
    bool _parsed;
459
    size_t _num_elements;
460
    size_t _num_element_after_padding;
461
462
    int _size_of_element;
463
    size_t _cur_index;
464
465
    std::vector<std::conditional_t<std::is_same_v<CppType, bool>, uint8_t, CppType>> _buffer;
466
467
    friend class BinaryDictPageDecoder;
468
};
469
470
} // namespace segment_v2
471
} // namespace doris