Coverage Report

Created: 2026-10-09 12:44

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/exprs/function/function_ip.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
// This file is copied from
18
// https://github.com/ClickHouse/ClickHouse/blob/master/src/Functions/FunctionsCodingIP.cpp
19
// and modified by Doris
20
21
#pragma once
22
#include <glog/logging.h>
23
24
#include <cstddef>
25
#include <memory>
26
27
#include "common/cast_set.h"
28
#include "core/assert_cast.h"
29
#include "core/block/column_with_type_and_name.h"
30
#include "core/column/column.h"
31
#include "core/column/column_const.h"
32
#include "core/column/column_execute_util.h"
33
#include "core/column/column_nullable.h"
34
#include "core/column/column_string.h"
35
#include "core/column/column_struct.h"
36
#include "core/column/column_vector.h"
37
#include "core/data_type/data_type.h"
38
#include "core/data_type/data_type_ipv4.h"
39
#include "core/data_type/data_type_ipv6.h"
40
#include "core/data_type/data_type_nullable.h"
41
#include "core/data_type/data_type_number.h"
42
#include "core/data_type/data_type_string.h"
43
#include "core/data_type/data_type_struct.h"
44
#include "core/field.h"
45
#include "core/types.h"
46
#include "core/value/ip_address_cidr.h"
47
#include "core/value/ipv4_value.h"
48
#include "exec/common/endian.h"
49
#include "exec/common/format_ip.h"
50
#include "exec/common/ipv6_to_binary.h"
51
#include "exprs/function/function.h"
52
#include "exprs/function/function_helpers.h"
53
#include "storage/index/index_reader_helper.h"
54
#include "storage/index/inverted/inverted_index_iterator.h"
55
56
namespace doris {
57
58
class FunctionIPv4NumToString : public IFunction {
59
private:
60
    template <PrimitiveType ArgPType>
61
0
    Status execute_type(Block& block, const ColumnWithTypeAndName& argument, size_t result) const {
62
0
        using ColumnType = ColumnVector<ArgPType>;
63
0
        const ColumnPtr& column = argument.column;
64
65
0
        const auto* col = assert_cast<const ColumnType*>(column.get());
66
0
        const typename ColumnType::Container& vec_in = col->get_data();
67
0
        auto col_res = ColumnString::create();
68
69
0
        ColumnString::Chars& vec_res = col_res->get_chars();
70
0
        ColumnString::Offsets& offsets_res = col_res->get_offsets();
71
72
0
        vec_res.resize(vec_in.size() *
73
0
                       (IPV4_MAX_TEXT_LENGTH + 1)); /// the longest value is: 255.255.255.255\0
74
0
        offsets_res.resize(vec_in.size());
75
0
        char* begin = reinterpret_cast<char*>(vec_res.data());
76
0
        char* pos = begin;
77
78
0
        auto null_map = ColumnUInt8::create(vec_in.size(), 0);
79
0
        size_t src_size =
80
0
                std::min(sizeof(typename PrimitiveTypeTraits<ArgPType>::CppType), (unsigned long)4);
81
0
        for (size_t i = 0; i < vec_in.size(); ++i) {
82
0
            auto value = vec_in[i];
83
0
            if (value < IPV4_MIN_NUM_VALUE || value > IPV4_MAX_NUM_VALUE) {
84
0
                null_map->get_data()[i] = 1;
85
0
            } else {
86
0
                format_ipv4(reinterpret_cast<const unsigned char*>(&vec_in[i]), src_size, pos);
87
0
            }
88
0
            offsets_res[i] = cast_set<uint32_t>(pos - begin);
89
0
        }
90
91
0
        vec_res.resize(pos - begin);
92
0
        block.replace_by_position(result,
93
0
                                  ColumnNullable::create(std::move(col_res), std::move(null_map)));
94
0
        return Status::OK();
95
0
    }
Unexecuted instantiation: _ZNK5doris23FunctionIPv4NumToString12execute_typeILNS_13PrimitiveTypeE3EEENS_6StatusERNS_5BlockERKNS_21ColumnWithTypeAndNameEm
Unexecuted instantiation: _ZNK5doris23FunctionIPv4NumToString12execute_typeILNS_13PrimitiveTypeE4EEENS_6StatusERNS_5BlockERKNS_21ColumnWithTypeAndNameEm
Unexecuted instantiation: _ZNK5doris23FunctionIPv4NumToString12execute_typeILNS_13PrimitiveTypeE5EEENS_6StatusERNS_5BlockERKNS_21ColumnWithTypeAndNameEm
Unexecuted instantiation: _ZNK5doris23FunctionIPv4NumToString12execute_typeILNS_13PrimitiveTypeE6EEENS_6StatusERNS_5BlockERKNS_21ColumnWithTypeAndNameEm
96
97
public:
98
    static constexpr auto name = "ipv4_num_to_string";
99
2
    static FunctionPtr create() { return std::make_shared<FunctionIPv4NumToString>(); }
100
101
1
    String get_name() const override { return name; }
102
103
0
    size_t get_number_of_arguments() const override { return 1; }
104
105
0
    DataTypePtr get_return_type_impl(const DataTypes& arguments) const override {
106
0
        return make_nullable(std::make_shared<DataTypeString>());
107
0
    }
108
109
    Status execute_impl(FunctionContext* context, Block& block, const ColumnNumbers& arguments,
110
0
                        uint32_t result, size_t input_rows_count) const override {
111
0
        ColumnWithTypeAndName& argument = block.get_by_position(arguments[0]);
112
113
0
        switch (argument.type->get_primitive_type()) {
114
0
        case PrimitiveType::TYPE_TINYINT:
115
0
            return execute_type<TYPE_TINYINT>(block, argument, result);
116
0
            break;
117
0
        case PrimitiveType::TYPE_SMALLINT:
118
0
            return execute_type<TYPE_SMALLINT>(block, argument, result);
119
0
            break;
120
0
        case PrimitiveType::TYPE_INT:
121
0
            return execute_type<TYPE_INT>(block, argument, result);
122
0
            break;
123
0
        case PrimitiveType::TYPE_BIGINT:
124
0
            return execute_type<TYPE_BIGINT>(block, argument, result);
125
0
            break;
126
0
        default:
127
0
            break;
128
0
        }
129
130
0
        return Status::InternalError(
131
0
                "Illegal column {} of argument of function {}, expected Int8 or Int16 or Int32 or "
132
0
                "Int64",
133
0
                argument.name, get_name());
134
0
    }
135
};
136
137
/// Since IPExceptionMode means wider scope, we use more specific name here.
138
enum class IPConvertExceptionMode : uint8_t { Throw, Default, Null };
139
140
27
static inline bool try_parse_ipv4(const char* begin, const char* end, Int64& result_value) {
141
27
    return parse_ipv4_whole(begin, end, reinterpret_cast<unsigned char*>(&result_value));
142
27
}
column_ip_test.cpp:_ZN5dorisL14try_parse_ipv4EPKcS1_Rl
Line
Count
Source
140
1
static inline bool try_parse_ipv4(const char* begin, const char* end, Int64& result_value) {
141
1
    return parse_ipv4_whole(begin, end, reinterpret_cast<unsigned char*>(&result_value));
142
1
}
function_ip_test.cpp:_ZN5dorisL14try_parse_ipv4EPKcS1_Rl
Line
Count
Source
140
2
static inline bool try_parse_ipv4(const char* begin, const char* end, Int64& result_value) {
141
2
    return parse_ipv4_whole(begin, end, reinterpret_cast<unsigned char*>(&result_value));
142
2
}
unity_18_cxx.cxx:_ZN5dorisL14try_parse_ipv4EPKcS1_Rl
Line
Count
Source
140
24
static inline bool try_parse_ipv4(const char* begin, const char* end, Int64& result_value) {
141
24
    return parse_ipv4_whole(begin, end, reinterpret_cast<unsigned char*>(&result_value));
142
24
}
143
144
template <IPConvertExceptionMode exception_mode, typename ToColumn>
145
8
ColumnPtr convert_to_ipv4(ColumnPtr column, const PaddedPODArray<UInt8>* null_map = nullptr) {
146
8
    const auto* column_string = assert_cast<const ColumnString*>(column.get());
147
148
8
    size_t column_size = column_string->size();
149
150
8
    ColumnUInt8::MutablePtr col_null_map_to;
151
8
    ColumnUInt8::Container* vec_null_map_to = nullptr;
152
153
8
    if constexpr (exception_mode == IPConvertExceptionMode::Null) {
154
4
        col_null_map_to = ColumnUInt8::create(column_size, false);
155
4
        vec_null_map_to = &col_null_map_to->get_data();
156
4
    }
157
158
8
    auto col_res = ToColumn::create(column_size, 0);
159
8
    auto& vec_res = col_res->get_data();
160
161
16
    for (size_t i = 0; i < vec_res.size(); ++i) {
162
8
        if (null_map && (*null_map)[i]) {
163
0
            if constexpr (exception_mode == IPConvertExceptionMode::Throw) {
164
0
                throw Exception(
165
0
                        ErrorCode::INVALID_ARGUMENT,
166
0
                        "Null Input, you may consider convert it to a valid default IPv4 value "
167
0
                        "like '0.0.0.0' first");
168
0
            }
169
0
            vec_res[i] = 0;
170
0
            if constexpr (exception_mode == IPConvertExceptionMode::Null) {
171
0
                (*vec_null_map_to)[i] = true;
172
0
            }
173
0
            continue;
174
0
        }
175
8
        const auto src = column_string->get_data_at(i);
176
8
        bool parse_result = try_parse_ipv4(src.begin(), src.end(), vec_res[i]);
177
178
8
        if (!parse_result) {
179
8
            if constexpr (exception_mode == IPConvertExceptionMode::Throw) {
180
2
                throw Exception(ErrorCode::INVALID_ARGUMENT, "Invalid IPv4 value");
181
2
            } else if constexpr (exception_mode == IPConvertExceptionMode::Default) {
182
2
                vec_res[i] = 0;
183
4
            } else if constexpr (exception_mode == IPConvertExceptionMode::Null) {
184
4
                (*vec_null_map_to)[i] = true;
185
4
                vec_res[i] = 0;
186
4
            }
187
8
        }
188
8
    }
189
190
8
    if constexpr (exception_mode == IPConvertExceptionMode::Null) {
191
4
        return ColumnNullable::create(std::move(col_res), std::move(col_null_map_to));
192
4
    }
193
0
    return col_res;
194
8
}
_ZN5doris15convert_to_ipv4ILNS_22IPConvertExceptionModeE0ENS_12ColumnVectorILNS_13PrimitiveTypeE6EEEEENS_3COWINS_7IColumnEE13immutable_ptrIS6_EES9_PKNS_8PODArrayIhLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb1EEELm16ELm15EEE
Line
Count
Source
145
2
ColumnPtr convert_to_ipv4(ColumnPtr column, const PaddedPODArray<UInt8>* null_map = nullptr) {
146
2
    const auto* column_string = assert_cast<const ColumnString*>(column.get());
147
148
2
    size_t column_size = column_string->size();
149
150
2
    ColumnUInt8::MutablePtr col_null_map_to;
151
2
    ColumnUInt8::Container* vec_null_map_to = nullptr;
152
153
    if constexpr (exception_mode == IPConvertExceptionMode::Null) {
154
        col_null_map_to = ColumnUInt8::create(column_size, false);
155
        vec_null_map_to = &col_null_map_to->get_data();
156
    }
157
158
2
    auto col_res = ToColumn::create(column_size, 0);
159
2
    auto& vec_res = col_res->get_data();
160
161
4
    for (size_t i = 0; i < vec_res.size(); ++i) {
162
2
        if (null_map && (*null_map)[i]) {
163
0
            if constexpr (exception_mode == IPConvertExceptionMode::Throw) {
164
0
                throw Exception(
165
0
                        ErrorCode::INVALID_ARGUMENT,
166
0
                        "Null Input, you may consider convert it to a valid default IPv4 value "
167
0
                        "like '0.0.0.0' first");
168
0
            }
169
0
            vec_res[i] = 0;
170
            if constexpr (exception_mode == IPConvertExceptionMode::Null) {
171
                (*vec_null_map_to)[i] = true;
172
            }
173
0
            continue;
174
0
        }
175
2
        const auto src = column_string->get_data_at(i);
176
2
        bool parse_result = try_parse_ipv4(src.begin(), src.end(), vec_res[i]);
177
178
2
        if (!parse_result) {
179
2
            if constexpr (exception_mode == IPConvertExceptionMode::Throw) {
180
2
                throw Exception(ErrorCode::INVALID_ARGUMENT, "Invalid IPv4 value");
181
            } else if constexpr (exception_mode == IPConvertExceptionMode::Default) {
182
                vec_res[i] = 0;
183
            } else if constexpr (exception_mode == IPConvertExceptionMode::Null) {
184
                (*vec_null_map_to)[i] = true;
185
                vec_res[i] = 0;
186
            }
187
2
        }
188
2
    }
189
190
    if constexpr (exception_mode == IPConvertExceptionMode::Null) {
191
        return ColumnNullable::create(std::move(col_res), std::move(col_null_map_to));
192
    }
193
2
    return col_res;
194
2
}
_ZN5doris15convert_to_ipv4ILNS_22IPConvertExceptionModeE1ENS_12ColumnVectorILNS_13PrimitiveTypeE6EEEEENS_3COWINS_7IColumnEE13immutable_ptrIS6_EES9_PKNS_8PODArrayIhLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb1EEELm16ELm15EEE
Line
Count
Source
145
2
ColumnPtr convert_to_ipv4(ColumnPtr column, const PaddedPODArray<UInt8>* null_map = nullptr) {
146
2
    const auto* column_string = assert_cast<const ColumnString*>(column.get());
147
148
2
    size_t column_size = column_string->size();
149
150
2
    ColumnUInt8::MutablePtr col_null_map_to;
151
2
    ColumnUInt8::Container* vec_null_map_to = nullptr;
152
153
    if constexpr (exception_mode == IPConvertExceptionMode::Null) {
154
        col_null_map_to = ColumnUInt8::create(column_size, false);
155
        vec_null_map_to = &col_null_map_to->get_data();
156
    }
157
158
2
    auto col_res = ToColumn::create(column_size, 0);
159
2
    auto& vec_res = col_res->get_data();
160
161
4
    for (size_t i = 0; i < vec_res.size(); ++i) {
162
2
        if (null_map && (*null_map)[i]) {
163
            if constexpr (exception_mode == IPConvertExceptionMode::Throw) {
164
                throw Exception(
165
                        ErrorCode::INVALID_ARGUMENT,
166
                        "Null Input, you may consider convert it to a valid default IPv4 value "
167
                        "like '0.0.0.0' first");
168
            }
169
0
            vec_res[i] = 0;
170
            if constexpr (exception_mode == IPConvertExceptionMode::Null) {
171
                (*vec_null_map_to)[i] = true;
172
            }
173
0
            continue;
174
0
        }
175
2
        const auto src = column_string->get_data_at(i);
176
2
        bool parse_result = try_parse_ipv4(src.begin(), src.end(), vec_res[i]);
177
178
2
        if (!parse_result) {
179
            if constexpr (exception_mode == IPConvertExceptionMode::Throw) {
180
                throw Exception(ErrorCode::INVALID_ARGUMENT, "Invalid IPv4 value");
181
2
            } else if constexpr (exception_mode == IPConvertExceptionMode::Default) {
182
2
                vec_res[i] = 0;
183
            } else if constexpr (exception_mode == IPConvertExceptionMode::Null) {
184
                (*vec_null_map_to)[i] = true;
185
                vec_res[i] = 0;
186
            }
187
2
        }
188
2
    }
189
190
    if constexpr (exception_mode == IPConvertExceptionMode::Null) {
191
        return ColumnNullable::create(std::move(col_res), std::move(col_null_map_to));
192
    }
193
2
    return col_res;
194
2
}
_ZN5doris15convert_to_ipv4ILNS_22IPConvertExceptionModeE2ENS_12ColumnVectorILNS_13PrimitiveTypeE6EEEEENS_3COWINS_7IColumnEE13immutable_ptrIS6_EES9_PKNS_8PODArrayIhLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb1EEELm16ELm15EEE
Line
Count
Source
145
4
ColumnPtr convert_to_ipv4(ColumnPtr column, const PaddedPODArray<UInt8>* null_map = nullptr) {
146
4
    const auto* column_string = assert_cast<const ColumnString*>(column.get());
147
148
4
    size_t column_size = column_string->size();
149
150
4
    ColumnUInt8::MutablePtr col_null_map_to;
151
4
    ColumnUInt8::Container* vec_null_map_to = nullptr;
152
153
4
    if constexpr (exception_mode == IPConvertExceptionMode::Null) {
154
4
        col_null_map_to = ColumnUInt8::create(column_size, false);
155
4
        vec_null_map_to = &col_null_map_to->get_data();
156
4
    }
157
158
4
    auto col_res = ToColumn::create(column_size, 0);
159
4
    auto& vec_res = col_res->get_data();
160
161
8
    for (size_t i = 0; i < vec_res.size(); ++i) {
162
4
        if (null_map && (*null_map)[i]) {
163
            if constexpr (exception_mode == IPConvertExceptionMode::Throw) {
164
                throw Exception(
165
                        ErrorCode::INVALID_ARGUMENT,
166
                        "Null Input, you may consider convert it to a valid default IPv4 value "
167
                        "like '0.0.0.0' first");
168
            }
169
0
            vec_res[i] = 0;
170
0
            if constexpr (exception_mode == IPConvertExceptionMode::Null) {
171
0
                (*vec_null_map_to)[i] = true;
172
0
            }
173
0
            continue;
174
0
        }
175
4
        const auto src = column_string->get_data_at(i);
176
4
        bool parse_result = try_parse_ipv4(src.begin(), src.end(), vec_res[i]);
177
178
4
        if (!parse_result) {
179
            if constexpr (exception_mode == IPConvertExceptionMode::Throw) {
180
                throw Exception(ErrorCode::INVALID_ARGUMENT, "Invalid IPv4 value");
181
            } else if constexpr (exception_mode == IPConvertExceptionMode::Default) {
182
                vec_res[i] = 0;
183
4
            } else if constexpr (exception_mode == IPConvertExceptionMode::Null) {
184
4
                (*vec_null_map_to)[i] = true;
185
4
                vec_res[i] = 0;
186
4
            }
187
4
        }
188
4
    }
189
190
4
    if constexpr (exception_mode == IPConvertExceptionMode::Null) {
191
4
        return ColumnNullable::create(std::move(col_res), std::move(col_null_map_to));
192
4
    }
193
0
    return col_res;
194
4
}
195
196
template <IPConvertExceptionMode exception_mode>
197
class FunctionIPv4StringToNum : public IFunction {
198
public:
199
    static constexpr auto name = exception_mode == IPConvertExceptionMode::Throw
200
                                         ? "ipv4_string_to_num"
201
                                         : (exception_mode == IPConvertExceptionMode::Default
202
                                                    ? "ipv4_string_to_num_or_default"
203
                                                    : "ipv4_string_to_num_or_null");
204
205
14
    static FunctionPtr create() {
206
14
        return std::make_shared<FunctionIPv4StringToNum<exception_mode>>();
207
14
    }
_ZN5doris23FunctionIPv4StringToNumILNS_22IPConvertExceptionModeE0EE6createEv
Line
Count
Source
205
4
    static FunctionPtr create() {
206
4
        return std::make_shared<FunctionIPv4StringToNum<exception_mode>>();
207
4
    }
_ZN5doris23FunctionIPv4StringToNumILNS_22IPConvertExceptionModeE1EE6createEv
Line
Count
Source
205
4
    static FunctionPtr create() {
206
4
        return std::make_shared<FunctionIPv4StringToNum<exception_mode>>();
207
4
    }
_ZN5doris23FunctionIPv4StringToNumILNS_22IPConvertExceptionModeE2EE6createEv
Line
Count
Source
205
6
    static FunctionPtr create() {
206
6
        return std::make_shared<FunctionIPv4StringToNum<exception_mode>>();
207
6
    }
208
209
3
    String get_name() const override { return name; }
_ZNK5doris23FunctionIPv4StringToNumILNS_22IPConvertExceptionModeE0EE8get_nameB5cxx11Ev
Line
Count
Source
209
1
    String get_name() const override { return name; }
_ZNK5doris23FunctionIPv4StringToNumILNS_22IPConvertExceptionModeE1EE8get_nameB5cxx11Ev
Line
Count
Source
209
1
    String get_name() const override { return name; }
_ZNK5doris23FunctionIPv4StringToNumILNS_22IPConvertExceptionModeE2EE8get_nameB5cxx11Ev
Line
Count
Source
209
1
    String get_name() const override { return name; }
210
211
8
    size_t get_number_of_arguments() const override { return 1; }
_ZNK5doris23FunctionIPv4StringToNumILNS_22IPConvertExceptionModeE0EE23get_number_of_argumentsEv
Line
Count
Source
211
2
    size_t get_number_of_arguments() const override { return 1; }
_ZNK5doris23FunctionIPv4StringToNumILNS_22IPConvertExceptionModeE1EE23get_number_of_argumentsEv
Line
Count
Source
211
2
    size_t get_number_of_arguments() const override { return 1; }
_ZNK5doris23FunctionIPv4StringToNumILNS_22IPConvertExceptionModeE2EE23get_number_of_argumentsEv
Line
Count
Source
211
4
    size_t get_number_of_arguments() const override { return 1; }
212
213
8
    DataTypePtr get_return_type_impl(const DataTypes& arguments) const override {
214
8
        auto result_type = std::make_shared<DataTypeInt64>();
215
216
8
        if constexpr (exception_mode == IPConvertExceptionMode::Null) {
217
4
            return make_nullable(result_type);
218
4
        }
219
220
0
        return result_type;
221
8
    }
_ZNK5doris23FunctionIPv4StringToNumILNS_22IPConvertExceptionModeE0EE20get_return_type_implERKSt6vectorISt10shared_ptrIKNS_9IDataTypeEESaIS7_EE
Line
Count
Source
213
2
    DataTypePtr get_return_type_impl(const DataTypes& arguments) const override {
214
2
        auto result_type = std::make_shared<DataTypeInt64>();
215
216
        if constexpr (exception_mode == IPConvertExceptionMode::Null) {
217
            return make_nullable(result_type);
218
        }
219
220
2
        return result_type;
221
2
    }
_ZNK5doris23FunctionIPv4StringToNumILNS_22IPConvertExceptionModeE1EE20get_return_type_implERKSt6vectorISt10shared_ptrIKNS_9IDataTypeEESaIS7_EE
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213
2
    DataTypePtr get_return_type_impl(const DataTypes& arguments) const override {
214
2
        auto result_type = std::make_shared<DataTypeInt64>();
215
216
        if constexpr (exception_mode == IPConvertExceptionMode::Null) {
217
            return make_nullable(result_type);
218
        }
219
220
2
        return result_type;
221
2
    }
_ZNK5doris23FunctionIPv4StringToNumILNS_22IPConvertExceptionModeE2EE20get_return_type_implERKSt6vectorISt10shared_ptrIKNS_9IDataTypeEESaIS7_EE
Line
Count
Source
213
4
    DataTypePtr get_return_type_impl(const DataTypes& arguments) const override {
214
4
        auto result_type = std::make_shared<DataTypeInt64>();
215
216
4
        if constexpr (exception_mode == IPConvertExceptionMode::Null) {
217
4
            return make_nullable(result_type);
218
4
        }
219
220
0
        return result_type;
221
4
    }
222
223
16
    bool use_default_implementation_for_nulls() const override { return false; }
_ZNK5doris23FunctionIPv4StringToNumILNS_22IPConvertExceptionModeE0EE36use_default_implementation_for_nullsEv
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223
4
    bool use_default_implementation_for_nulls() const override { return false; }
_ZNK5doris23FunctionIPv4StringToNumILNS_22IPConvertExceptionModeE1EE36use_default_implementation_for_nullsEv
Line
Count
Source
223
4
    bool use_default_implementation_for_nulls() const override { return false; }
_ZNK5doris23FunctionIPv4StringToNumILNS_22IPConvertExceptionModeE2EE36use_default_implementation_for_nullsEv
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223
8
    bool use_default_implementation_for_nulls() const override { return false; }
224
225
    Status execute_impl(FunctionContext* context, Block& block, const ColumnNumbers& arguments,
226
8
                        uint32_t result, size_t input_rows_count) const override {
227
8
        ColumnPtr column =
228
8
                block.get_by_position(arguments[0]).column->convert_to_full_column_if_const();
229
8
        ColumnPtr null_map_column;
230
8
        const NullMap* null_map = nullptr;
231
8
        if (const auto* column_nullable = check_and_get_column<ColumnNullable>(column.get())) {
232
8
            column = column_nullable->get_nested_column_ptr();
233
8
            null_map_column = column_nullable->get_null_map_column_ptr();
234
8
            null_map = &column_nullable->get_null_map_data();
235
8
        }
236
237
8
        auto col_res = convert_to_ipv4<exception_mode, ColumnInt64>(column, null_map);
238
239
8
        if (null_map && exception_mode == IPConvertExceptionMode::Null) {
240
4
            block.replace_by_position(
241
4
                    result, ColumnNullable::create(std::move(col_res), std::move(null_map_column)));
242
4
        } else {
243
4
            block.replace_by_position(result, std::move(col_res));
244
4
        }
245
8
        return Status::OK();
246
8
    }
_ZNK5doris23FunctionIPv4StringToNumILNS_22IPConvertExceptionModeE0EE12execute_implEPNS_15FunctionContextERNS_5BlockERKSt6vectorIjSaIjEEjm
Line
Count
Source
226
2
                        uint32_t result, size_t input_rows_count) const override {
227
2
        ColumnPtr column =
228
2
                block.get_by_position(arguments[0]).column->convert_to_full_column_if_const();
229
2
        ColumnPtr null_map_column;
230
2
        const NullMap* null_map = nullptr;
231
2
        if (const auto* column_nullable = check_and_get_column<ColumnNullable>(column.get())) {
232
2
            column = column_nullable->get_nested_column_ptr();
233
2
            null_map_column = column_nullable->get_null_map_column_ptr();
234
2
            null_map = &column_nullable->get_null_map_data();
235
2
        }
236
237
2
        auto col_res = convert_to_ipv4<exception_mode, ColumnInt64>(column, null_map);
238
239
2
        if (null_map && exception_mode == IPConvertExceptionMode::Null) {
240
0
            block.replace_by_position(
241
0
                    result, ColumnNullable::create(std::move(col_res), std::move(null_map_column)));
242
2
        } else {
243
2
            block.replace_by_position(result, std::move(col_res));
244
2
        }
245
2
        return Status::OK();
246
2
    }
_ZNK5doris23FunctionIPv4StringToNumILNS_22IPConvertExceptionModeE1EE12execute_implEPNS_15FunctionContextERNS_5BlockERKSt6vectorIjSaIjEEjm
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Count
Source
226
2
                        uint32_t result, size_t input_rows_count) const override {
227
2
        ColumnPtr column =
228
2
                block.get_by_position(arguments[0]).column->convert_to_full_column_if_const();
229
2
        ColumnPtr null_map_column;
230
2
        const NullMap* null_map = nullptr;
231
2
        if (const auto* column_nullable = check_and_get_column<ColumnNullable>(column.get())) {
232
2
            column = column_nullable->get_nested_column_ptr();
233
2
            null_map_column = column_nullable->get_null_map_column_ptr();
234
2
            null_map = &column_nullable->get_null_map_data();
235
2
        }
236
237
2
        auto col_res = convert_to_ipv4<exception_mode, ColumnInt64>(column, null_map);
238
239
2
        if (null_map && exception_mode == IPConvertExceptionMode::Null) {
240
0
            block.replace_by_position(
241
0
                    result, ColumnNullable::create(std::move(col_res), std::move(null_map_column)));
242
2
        } else {
243
2
            block.replace_by_position(result, std::move(col_res));
244
2
        }
245
2
        return Status::OK();
246
2
    }
_ZNK5doris23FunctionIPv4StringToNumILNS_22IPConvertExceptionModeE2EE12execute_implEPNS_15FunctionContextERNS_5BlockERKSt6vectorIjSaIjEEjm
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Count
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226
4
                        uint32_t result, size_t input_rows_count) const override {
227
4
        ColumnPtr column =
228
4
                block.get_by_position(arguments[0]).column->convert_to_full_column_if_const();
229
4
        ColumnPtr null_map_column;
230
4
        const NullMap* null_map = nullptr;
231
4
        if (const auto* column_nullable = check_and_get_column<ColumnNullable>(column.get())) {
232
4
            column = column_nullable->get_nested_column_ptr();
233
4
            null_map_column = column_nullable->get_null_map_column_ptr();
234
4
            null_map = &column_nullable->get_null_map_data();
235
4
        }
236
237
4
        auto col_res = convert_to_ipv4<exception_mode, ColumnInt64>(column, null_map);
238
239
4
        if (null_map && exception_mode == IPConvertExceptionMode::Null) {
240
4
            block.replace_by_position(
241
4
                    result, ColumnNullable::create(std::move(col_res), std::move(null_map_column)));
242
4
        } else {
243
0
            block.replace_by_position(result, std::move(col_res));
244
0
        }
245
4
        return Status::OK();
246
4
    }
247
};
248
249
template <typename T>
250
void process_ipv6_column(const ColumnPtr& column, size_t input_rows_count,
251
                         ColumnString::Chars& vec_res, ColumnString::Offsets& offsets_res,
252
0
                         ColumnUInt8::MutablePtr& null_map, unsigned char* ipv6_address_data) {
253
0
    auto* begin = reinterpret_cast<char*>(vec_res.data());
254
0
    auto* pos = begin;
255
256
0
    const auto* col = assert_cast<const T*>(column.get());
257
258
0
    for (size_t i = 0; i < input_rows_count; ++i) {
259
0
        bool is_empty = false;
260
261
0
        if constexpr (std::is_same_v<T, ColumnIPv6>) {
262
0
            const auto& vec_in = col->get_data();
263
0
            memcpy(ipv6_address_data, reinterpret_cast<const unsigned char*>(&vec_in[i]),
264
0
                   IPV6_BINARY_LENGTH);
265
0
        } else { // ColumnString
266
0
            const auto str_ref = col->get_data_at(i);
267
0
            const char* value = str_ref.data;
268
0
            size_t value_size = str_ref.size;
269
270
0
            if (value_size > IPV6_BINARY_LENGTH || value == nullptr || value_size == 0) {
271
0
                is_empty = true;
272
0
            } else {
273
0
                memcpy(ipv6_address_data, value, value_size);
274
0
                memset(ipv6_address_data + value_size, 0, IPV6_BINARY_LENGTH - value_size);
275
0
            }
276
0
        }
277
278
0
        if (is_empty) {
279
0
            null_map->get_data()[i] = 1;
280
0
        } else {
281
0
            if constexpr (std::is_same_v<T, ColumnIPv6>) {
282
                // ipv6 is little-endian byte order storage in doris
283
                // so parsing ipv6 in little-endian byte order
284
0
                format_ipv6(ipv6_address_data, pos);
285
0
            } else {
286
                // 16 bytes ipv6 string is big-endian byte order storage in doris
287
                // so transfer to little-endian firstly
288
0
                std::reverse(ipv6_address_data, ipv6_address_data + IPV6_BINARY_LENGTH);
289
0
                format_ipv6(ipv6_address_data, pos);
290
0
            }
291
0
        }
292
0
        offsets_res[i] = cast_set<uint32_t>(pos - begin);
293
0
    }
294
0
}
Unexecuted instantiation: _ZN5doris19process_ipv6_columnINS_12ColumnVectorILNS_13PrimitiveTypeE37EEEEEvRKNS_3COWINS_7IColumnEE13immutable_ptrIS5_EEmRNS_8PODArrayIhLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb1EEELm16ELm15EEERNSB_IjLm4096ESE_Lm16ELm15EEERNS6_11mutable_ptrINS1_ILS2_2EEEEEPh
Unexecuted instantiation: _ZN5doris19process_ipv6_columnINS_9ColumnStrIjEEEEvRKNS_3COWINS_7IColumnEE13immutable_ptrIS4_EEmRNS_8PODArrayIhLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb1EEELm16ELm15EEERNSA_IjLm4096ESD_Lm16ELm15EEERNS5_11mutable_ptrINS_12ColumnVectorILNS_13PrimitiveTypeE2EEEEEPh
295
296
class FunctionIPv6NumToString : public IFunction {
297
public:
298
    static constexpr auto name = "ipv6_num_to_string";
299
2
    static FunctionPtr create() { return std::make_shared<FunctionIPv6NumToString>(); }
300
301
1
    String get_name() const override { return name; }
302
303
0
    size_t get_number_of_arguments() const override { return 1; }
304
305
0
    DataTypePtr get_return_type_impl(const DataTypes& arguments) const override {
306
0
        return make_nullable(std::make_shared<DataTypeString>());
307
0
    }
308
309
    Status execute_impl(FunctionContext* context, Block& block, const ColumnNumbers& arguments,
310
0
                        uint32_t result, size_t input_rows_count) const override {
311
0
        const ColumnPtr& column = block.get_by_position(arguments[0]).column;
312
313
0
        auto col_res = ColumnString::create();
314
0
        ColumnString::Chars& vec_res = col_res->get_chars();
315
0
        ColumnString::Offsets& offsets_res = col_res->get_offsets();
316
0
        vec_res.resize(input_rows_count * (IPV6_MAX_TEXT_LENGTH + 1));
317
0
        offsets_res.resize(input_rows_count);
318
319
0
        auto null_map = ColumnUInt8::create(input_rows_count, 0);
320
321
0
        unsigned char ipv6_address_data[IPV6_BINARY_LENGTH];
322
323
0
        if (check_and_get_column<ColumnIPv6>(column.get())) {
324
0
            process_ipv6_column<ColumnIPv6>(column, input_rows_count, vec_res, offsets_res,
325
0
                                            null_map, ipv6_address_data);
326
0
        } else { //ColumnString
327
0
            process_ipv6_column<ColumnString>(column, input_rows_count, vec_res, offsets_res,
328
0
                                              null_map, ipv6_address_data);
329
0
        }
330
0
        vec_res.resize(offsets_res[offsets_res.size() - 1]);
331
332
0
        block.replace_by_position(result,
333
0
                                  ColumnNullable::create(std::move(col_res), std::move(null_map)));
334
0
        return Status::OK();
335
0
    }
336
};
337
338
namespace detail {
339
template <IPConvertExceptionMode exception_mode, typename ToColumn = ColumnIPv6,
340
          typename StringColumnType>
341
ColumnPtr convert_to_ipv6(const StringColumnType& string_column,
342
13
                          const PaddedPODArray<UInt8>* null_map = nullptr) {
343
13
    const size_t column_size = string_column.size();
344
345
13
    ColumnUInt8::MutablePtr col_null_map_to;
346
13
    ColumnUInt8::Container* vec_null_map_to = nullptr;
347
348
13
    if constexpr (exception_mode == IPConvertExceptionMode::Null) {
349
6
        col_null_map_to = ColumnUInt8::create(column_size, false);
350
6
        vec_null_map_to = &col_null_map_to->get_data();
351
6
    }
352
353
13
    auto column_create = [](size_t column_size) -> typename ToColumn::MutablePtr {
354
13
        if constexpr (std::is_same_v<ToColumn, ColumnString>) {
355
13
            auto column_string = ColumnString::create();
356
13
            column_string->get_chars().reserve(column_size * IPV6_BINARY_LENGTH);
357
13
            column_string->get_offsets().reserve(column_size);
358
13
            return column_string;
359
        } else {
360
            return ColumnIPv6::create();
361
        }
362
13
    };
_ZZN5doris6detail15convert_to_ipv6ILNS_22IPConvertExceptionModeE0ENS_9ColumnStrIjEES4_EENS_3COWINS_7IColumnEE13immutable_ptrIS6_EERKT1_PKNS_8PODArrayIhLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb1EEELm16ELm15EEEENKUlmE_clEm
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353
4
    auto column_create = [](size_t column_size) -> typename ToColumn::MutablePtr {
354
4
        if constexpr (std::is_same_v<ToColumn, ColumnString>) {
355
4
            auto column_string = ColumnString::create();
356
4
            column_string->get_chars().reserve(column_size * IPV6_BINARY_LENGTH);
357
4
            column_string->get_offsets().reserve(column_size);
358
4
            return column_string;
359
        } else {
360
            return ColumnIPv6::create();
361
        }
362
4
    };
_ZZN5doris6detail15convert_to_ipv6ILNS_22IPConvertExceptionModeE1ENS_9ColumnStrIjEES4_EENS_3COWINS_7IColumnEE13immutable_ptrIS6_EERKT1_PKNS_8PODArrayIhLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb1EEELm16ELm15EEEENKUlmE_clEm
Line
Count
Source
353
3
    auto column_create = [](size_t column_size) -> typename ToColumn::MutablePtr {
354
3
        if constexpr (std::is_same_v<ToColumn, ColumnString>) {
355
3
            auto column_string = ColumnString::create();
356
3
            column_string->get_chars().reserve(column_size * IPV6_BINARY_LENGTH);
357
3
            column_string->get_offsets().reserve(column_size);
358
3
            return column_string;
359
        } else {
360
            return ColumnIPv6::create();
361
        }
362
3
    };
_ZZN5doris6detail15convert_to_ipv6ILNS_22IPConvertExceptionModeE2ENS_9ColumnStrIjEES4_EENS_3COWINS_7IColumnEE13immutable_ptrIS6_EERKT1_PKNS_8PODArrayIhLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb1EEELm16ELm15EEEENKUlmE_clEm
Line
Count
Source
353
6
    auto column_create = [](size_t column_size) -> typename ToColumn::MutablePtr {
354
6
        if constexpr (std::is_same_v<ToColumn, ColumnString>) {
355
6
            auto column_string = ColumnString::create();
356
6
            column_string->get_chars().reserve(column_size * IPV6_BINARY_LENGTH);
357
6
            column_string->get_offsets().reserve(column_size);
358
6
            return column_string;
359
        } else {
360
            return ColumnIPv6::create();
361
        }
362
6
    };
363
364
13
    auto get_vector = [](auto& col_res, size_t col_size) -> decltype(auto) {
365
13
        if constexpr (std::is_same_v<ToColumn, ColumnString>) {
366
13
            auto& vec_res = col_res->get_chars();
367
13
            vec_res.resize(col_size * IPV6_BINARY_LENGTH);
368
13
            return (vec_res);
369
        } else {
370
            auto& vec_res = col_res->get_data();
371
            vec_res.resize(col_size);
372
            return (vec_res);
373
        }
374
13
    };
_ZZN5doris6detail15convert_to_ipv6ILNS_22IPConvertExceptionModeE0ENS_9ColumnStrIjEES4_EENS_3COWINS_7IColumnEE13immutable_ptrIS6_EERKT1_PKNS_8PODArrayIhLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb1EEELm16ELm15EEEENKUlRT_mE_clINS7_11mutable_ptrIS4_EEEEDcSL_m
Line
Count
Source
364
4
    auto get_vector = [](auto& col_res, size_t col_size) -> decltype(auto) {
365
4
        if constexpr (std::is_same_v<ToColumn, ColumnString>) {
366
4
            auto& vec_res = col_res->get_chars();
367
4
            vec_res.resize(col_size * IPV6_BINARY_LENGTH);
368
4
            return (vec_res);
369
        } else {
370
            auto& vec_res = col_res->get_data();
371
            vec_res.resize(col_size);
372
            return (vec_res);
373
        }
374
4
    };
_ZZN5doris6detail15convert_to_ipv6ILNS_22IPConvertExceptionModeE1ENS_9ColumnStrIjEES4_EENS_3COWINS_7IColumnEE13immutable_ptrIS6_EERKT1_PKNS_8PODArrayIhLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb1EEELm16ELm15EEEENKUlRT_mE_clINS7_11mutable_ptrIS4_EEEEDcSL_m
Line
Count
Source
364
3
    auto get_vector = [](auto& col_res, size_t col_size) -> decltype(auto) {
365
3
        if constexpr (std::is_same_v<ToColumn, ColumnString>) {
366
3
            auto& vec_res = col_res->get_chars();
367
3
            vec_res.resize(col_size * IPV6_BINARY_LENGTH);
368
3
            return (vec_res);
369
        } else {
370
            auto& vec_res = col_res->get_data();
371
            vec_res.resize(col_size);
372
            return (vec_res);
373
        }
374
3
    };
_ZZN5doris6detail15convert_to_ipv6ILNS_22IPConvertExceptionModeE2ENS_9ColumnStrIjEES4_EENS_3COWINS_7IColumnEE13immutable_ptrIS6_EERKT1_PKNS_8PODArrayIhLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb1EEELm16ELm15EEEENKUlRT_mE_clINS7_11mutable_ptrIS4_EEEEDcSL_m
Line
Count
Source
364
6
    auto get_vector = [](auto& col_res, size_t col_size) -> decltype(auto) {
365
6
        if constexpr (std::is_same_v<ToColumn, ColumnString>) {
366
6
            auto& vec_res = col_res->get_chars();
367
6
            vec_res.resize(col_size * IPV6_BINARY_LENGTH);
368
6
            return (vec_res);
369
        } else {
370
            auto& vec_res = col_res->get_data();
371
            vec_res.resize(col_size);
372
            return (vec_res);
373
        }
374
6
    };
375
376
13
    auto col_res = column_create(column_size);
377
13
    auto& vec_res = get_vector(col_res, column_size);
378
379
13
    int offset_inc = 1;
380
13
    ColumnString* column_string = nullptr;
381
13
    if constexpr (std::is_same_v<ToColumn, ColumnString>) {
382
13
        offset_inc = IPV6_BINARY_LENGTH;
383
13
        column_string = col_res.get();
384
13
    }
385
386
27
    for (size_t out_offset = 0, i = 0; i < column_size; out_offset += offset_inc, ++i) {
387
16
        const auto src = string_column.get_data_at(i);
388
16
        const char* src_value = src.begin();
389
16
        const char* src_end = src.end();
390
16
        auto* res_value = reinterpret_cast<unsigned char*>(&vec_res[out_offset]);
391
392
16
        if (null_map && (*null_map)[i]) {
393
0
            if (exception_mode == IPConvertExceptionMode::Throw) {
394
0
                throw Exception(
395
0
                        ErrorCode::INVALID_ARGUMENT,
396
0
                        "Null Input, you may consider convert it to a valid default IPv6 value "
397
0
                        "like '::' first");
398
0
            } else if (exception_mode == IPConvertExceptionMode::Default) {
399
0
                std::fill_n(&vec_res[out_offset], offset_inc, 0);
400
0
            } else {
401
0
                std::fill_n(&vec_res[out_offset], offset_inc, 0);
402
0
                (*vec_null_map_to)[i] = true;
403
0
            }
404
0
            if constexpr (std::is_same_v<ToColumn, ColumnString>) {
405
0
                DCHECK(column_string != nullptr);
406
0
                column_string->get_offsets().push_back((i + 1) * IPV6_BINARY_LENGTH);
407
0
            }
408
0
            continue;
409
0
        }
410
411
16
        bool parse_result = false;
412
16
        Int64 dummy_result = 0;
413
414
        /// For both cases below: In case of failure, the function parseIPv6 fills vec_res with zero bytes.
415
416
        /// If the source IP address is parsable as an IPv4 address, then transform it into a valid IPv6 address.
417
        /// Keeping it simple by just prefixing `::ffff:` to the IPv4 address to represent it as a valid IPv6 address.
418
16
        size_t string_length = src.size;
419
16
        if (string_length != 0) {
420
16
            if (try_parse_ipv4(src_value, src_end, dummy_result)) {
421
2
                map_ipv4_to_ipv6(static_cast<IPv4>(dummy_result), res_value);
422
2
                parse_result = true;
423
14
            } else {
424
14
                parse_result = parse_ipv6_whole(src_value, src_end, res_value);
425
14
            }
426
16
        }
427
428
16
        if (parse_result && string_length != 0) {
429
2
            if constexpr (std::is_same_v<ToColumn, ColumnString>) {
430
                // handling 16 bytes ipv6 string in the big-endian byte order
431
                // is aimed at conforming to human reading habits
432
2
                std::reverse(res_value, res_value + IPV6_BINARY_LENGTH);
433
2
            }
434
2
            if constexpr (std::is_same_v<ToColumn, ColumnString>) {
435
2
                auto* column_string_res = static_cast<ColumnString*>(col_res.get());
436
2
                std::copy(res_value, res_value + IPV6_BINARY_LENGTH,
437
2
                          column_string_res->get_chars().begin() + i * IPV6_BINARY_LENGTH);
438
2
                column_string_res->get_offsets().push_back((i + 1) * IPV6_BINARY_LENGTH);
439
            } else {
440
                col_res->insert_data(reinterpret_cast<const char*>(res_value), IPV6_BINARY_LENGTH);
441
            }
442
14
        } else {
443
14
            if (exception_mode == IPConvertExceptionMode::Throw) {
444
2
                throw Exception(ErrorCode::INVALID_ARGUMENT, "Invalid IPv6 value");
445
2
            }
446
12
            std::fill_n(&vec_res[out_offset], offset_inc, 0);
447
12
            if constexpr (std::is_same_v<ToColumn, ColumnString>) {
448
12
                auto* column_string_res = static_cast<ColumnString*>(col_res.get());
449
12
                column_string_res->get_offsets().push_back((i + 1) * IPV6_BINARY_LENGTH);
450
12
            }
451
12
            if constexpr (exception_mode == IPConvertExceptionMode::Null) {
452
8
                (*vec_null_map_to)[i] = true;
453
8
            }
454
12
        }
455
16
    }
456
457
11
    if constexpr (exception_mode == IPConvertExceptionMode::Null) {
458
6
        return ColumnNullable::create(std::move(col_res), std::move(col_null_map_to));
459
6
    }
460
0
    return col_res;
461
13
}
_ZN5doris6detail15convert_to_ipv6ILNS_22IPConvertExceptionModeE0ENS_9ColumnStrIjEES4_EENS_3COWINS_7IColumnEE13immutable_ptrIS6_EERKT1_PKNS_8PODArrayIhLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb1EEELm16ELm15EEE
Line
Count
Source
342
4
                          const PaddedPODArray<UInt8>* null_map = nullptr) {
343
4
    const size_t column_size = string_column.size();
344
345
4
    ColumnUInt8::MutablePtr col_null_map_to;
346
4
    ColumnUInt8::Container* vec_null_map_to = nullptr;
347
348
    if constexpr (exception_mode == IPConvertExceptionMode::Null) {
349
        col_null_map_to = ColumnUInt8::create(column_size, false);
350
        vec_null_map_to = &col_null_map_to->get_data();
351
    }
352
353
4
    auto column_create = [](size_t column_size) -> typename ToColumn::MutablePtr {
354
4
        if constexpr (std::is_same_v<ToColumn, ColumnString>) {
355
4
            auto column_string = ColumnString::create();
356
4
            column_string->get_chars().reserve(column_size * IPV6_BINARY_LENGTH);
357
4
            column_string->get_offsets().reserve(column_size);
358
4
            return column_string;
359
4
        } else {
360
4
            return ColumnIPv6::create();
361
4
        }
362
4
    };
363
364
4
    auto get_vector = [](auto& col_res, size_t col_size) -> decltype(auto) {
365
4
        if constexpr (std::is_same_v<ToColumn, ColumnString>) {
366
4
            auto& vec_res = col_res->get_chars();
367
4
            vec_res.resize(col_size * IPV6_BINARY_LENGTH);
368
4
            return (vec_res);
369
4
        } else {
370
4
            auto& vec_res = col_res->get_data();
371
4
            vec_res.resize(col_size);
372
4
            return (vec_res);
373
4
        }
374
4
    };
375
376
4
    auto col_res = column_create(column_size);
377
4
    auto& vec_res = get_vector(col_res, column_size);
378
379
4
    int offset_inc = 1;
380
4
    ColumnString* column_string = nullptr;
381
4
    if constexpr (std::is_same_v<ToColumn, ColumnString>) {
382
4
        offset_inc = IPV6_BINARY_LENGTH;
383
4
        column_string = col_res.get();
384
4
    }
385
386
6
    for (size_t out_offset = 0, i = 0; i < column_size; out_offset += offset_inc, ++i) {
387
4
        const auto src = string_column.get_data_at(i);
388
4
        const char* src_value = src.begin();
389
4
        const char* src_end = src.end();
390
4
        auto* res_value = reinterpret_cast<unsigned char*>(&vec_res[out_offset]);
391
392
4
        if (null_map && (*null_map)[i]) {
393
0
            if (exception_mode == IPConvertExceptionMode::Throw) {
394
0
                throw Exception(
395
0
                        ErrorCode::INVALID_ARGUMENT,
396
0
                        "Null Input, you may consider convert it to a valid default IPv6 value "
397
0
                        "like '::' first");
398
0
            } else if (exception_mode == IPConvertExceptionMode::Default) {
399
0
                std::fill_n(&vec_res[out_offset], offset_inc, 0);
400
0
            } else {
401
0
                std::fill_n(&vec_res[out_offset], offset_inc, 0);
402
0
                (*vec_null_map_to)[i] = true;
403
0
            }
404
0
            if constexpr (std::is_same_v<ToColumn, ColumnString>) {
405
0
                DCHECK(column_string != nullptr);
406
0
                column_string->get_offsets().push_back((i + 1) * IPV6_BINARY_LENGTH);
407
0
            }
408
0
            continue;
409
0
        }
410
411
4
        bool parse_result = false;
412
4
        Int64 dummy_result = 0;
413
414
        /// For both cases below: In case of failure, the function parseIPv6 fills vec_res with zero bytes.
415
416
        /// If the source IP address is parsable as an IPv4 address, then transform it into a valid IPv6 address.
417
        /// Keeping it simple by just prefixing `::ffff:` to the IPv4 address to represent it as a valid IPv6 address.
418
4
        size_t string_length = src.size;
419
4
        if (string_length != 0) {
420
4
            if (try_parse_ipv4(src_value, src_end, dummy_result)) {
421
2
                map_ipv4_to_ipv6(static_cast<IPv4>(dummy_result), res_value);
422
2
                parse_result = true;
423
2
            } else {
424
2
                parse_result = parse_ipv6_whole(src_value, src_end, res_value);
425
2
            }
426
4
        }
427
428
4
        if (parse_result && string_length != 0) {
429
2
            if constexpr (std::is_same_v<ToColumn, ColumnString>) {
430
                // handling 16 bytes ipv6 string in the big-endian byte order
431
                // is aimed at conforming to human reading habits
432
2
                std::reverse(res_value, res_value + IPV6_BINARY_LENGTH);
433
2
            }
434
2
            if constexpr (std::is_same_v<ToColumn, ColumnString>) {
435
2
                auto* column_string_res = static_cast<ColumnString*>(col_res.get());
436
2
                std::copy(res_value, res_value + IPV6_BINARY_LENGTH,
437
2
                          column_string_res->get_chars().begin() + i * IPV6_BINARY_LENGTH);
438
2
                column_string_res->get_offsets().push_back((i + 1) * IPV6_BINARY_LENGTH);
439
            } else {
440
                col_res->insert_data(reinterpret_cast<const char*>(res_value), IPV6_BINARY_LENGTH);
441
            }
442
2
        } else {
443
2
            if (exception_mode == IPConvertExceptionMode::Throw) {
444
2
                throw Exception(ErrorCode::INVALID_ARGUMENT, "Invalid IPv6 value");
445
2
            }
446
0
            std::fill_n(&vec_res[out_offset], offset_inc, 0);
447
0
            if constexpr (std::is_same_v<ToColumn, ColumnString>) {
448
0
                auto* column_string_res = static_cast<ColumnString*>(col_res.get());
449
0
                column_string_res->get_offsets().push_back((i + 1) * IPV6_BINARY_LENGTH);
450
0
            }
451
            if constexpr (exception_mode == IPConvertExceptionMode::Null) {
452
                (*vec_null_map_to)[i] = true;
453
            }
454
0
        }
455
4
    }
456
457
    if constexpr (exception_mode == IPConvertExceptionMode::Null) {
458
        return ColumnNullable::create(std::move(col_res), std::move(col_null_map_to));
459
    }
460
2
    return col_res;
461
4
}
_ZN5doris6detail15convert_to_ipv6ILNS_22IPConvertExceptionModeE1ENS_9ColumnStrIjEES4_EENS_3COWINS_7IColumnEE13immutable_ptrIS6_EERKT1_PKNS_8PODArrayIhLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb1EEELm16ELm15EEE
Line
Count
Source
342
3
                          const PaddedPODArray<UInt8>* null_map = nullptr) {
343
3
    const size_t column_size = string_column.size();
344
345
3
    ColumnUInt8::MutablePtr col_null_map_to;
346
3
    ColumnUInt8::Container* vec_null_map_to = nullptr;
347
348
    if constexpr (exception_mode == IPConvertExceptionMode::Null) {
349
        col_null_map_to = ColumnUInt8::create(column_size, false);
350
        vec_null_map_to = &col_null_map_to->get_data();
351
    }
352
353
3
    auto column_create = [](size_t column_size) -> typename ToColumn::MutablePtr {
354
3
        if constexpr (std::is_same_v<ToColumn, ColumnString>) {
355
3
            auto column_string = ColumnString::create();
356
3
            column_string->get_chars().reserve(column_size * IPV6_BINARY_LENGTH);
357
3
            column_string->get_offsets().reserve(column_size);
358
3
            return column_string;
359
3
        } else {
360
3
            return ColumnIPv6::create();
361
3
        }
362
3
    };
363
364
3
    auto get_vector = [](auto& col_res, size_t col_size) -> decltype(auto) {
365
3
        if constexpr (std::is_same_v<ToColumn, ColumnString>) {
366
3
            auto& vec_res = col_res->get_chars();
367
3
            vec_res.resize(col_size * IPV6_BINARY_LENGTH);
368
3
            return (vec_res);
369
3
        } else {
370
3
            auto& vec_res = col_res->get_data();
371
3
            vec_res.resize(col_size);
372
3
            return (vec_res);
373
3
        }
374
3
    };
375
376
3
    auto col_res = column_create(column_size);
377
3
    auto& vec_res = get_vector(col_res, column_size);
378
379
3
    int offset_inc = 1;
380
3
    ColumnString* column_string = nullptr;
381
3
    if constexpr (std::is_same_v<ToColumn, ColumnString>) {
382
3
        offset_inc = IPV6_BINARY_LENGTH;
383
3
        column_string = col_res.get();
384
3
    }
385
386
7
    for (size_t out_offset = 0, i = 0; i < column_size; out_offset += offset_inc, ++i) {
387
4
        const auto src = string_column.get_data_at(i);
388
4
        const char* src_value = src.begin();
389
4
        const char* src_end = src.end();
390
4
        auto* res_value = reinterpret_cast<unsigned char*>(&vec_res[out_offset]);
391
392
4
        if (null_map && (*null_map)[i]) {
393
0
            if (exception_mode == IPConvertExceptionMode::Throw) {
394
0
                throw Exception(
395
0
                        ErrorCode::INVALID_ARGUMENT,
396
0
                        "Null Input, you may consider convert it to a valid default IPv6 value "
397
0
                        "like '::' first");
398
0
            } else if (exception_mode == IPConvertExceptionMode::Default) {
399
0
                std::fill_n(&vec_res[out_offset], offset_inc, 0);
400
0
            } else {
401
0
                std::fill_n(&vec_res[out_offset], offset_inc, 0);
402
0
                (*vec_null_map_to)[i] = true;
403
0
            }
404
0
            if constexpr (std::is_same_v<ToColumn, ColumnString>) {
405
0
                DCHECK(column_string != nullptr);
406
0
                column_string->get_offsets().push_back((i + 1) * IPV6_BINARY_LENGTH);
407
0
            }
408
0
            continue;
409
0
        }
410
411
4
        bool parse_result = false;
412
4
        Int64 dummy_result = 0;
413
414
        /// For both cases below: In case of failure, the function parseIPv6 fills vec_res with zero bytes.
415
416
        /// If the source IP address is parsable as an IPv4 address, then transform it into a valid IPv6 address.
417
        /// Keeping it simple by just prefixing `::ffff:` to the IPv4 address to represent it as a valid IPv6 address.
418
4
        size_t string_length = src.size;
419
4
        if (string_length != 0) {
420
4
            if (try_parse_ipv4(src_value, src_end, dummy_result)) {
421
0
                map_ipv4_to_ipv6(static_cast<IPv4>(dummy_result), res_value);
422
0
                parse_result = true;
423
4
            } else {
424
4
                parse_result = parse_ipv6_whole(src_value, src_end, res_value);
425
4
            }
426
4
        }
427
428
4
        if (parse_result && string_length != 0) {
429
0
            if constexpr (std::is_same_v<ToColumn, ColumnString>) {
430
                // handling 16 bytes ipv6 string in the big-endian byte order
431
                // is aimed at conforming to human reading habits
432
0
                std::reverse(res_value, res_value + IPV6_BINARY_LENGTH);
433
0
            }
434
0
            if constexpr (std::is_same_v<ToColumn, ColumnString>) {
435
0
                auto* column_string_res = static_cast<ColumnString*>(col_res.get());
436
0
                std::copy(res_value, res_value + IPV6_BINARY_LENGTH,
437
0
                          column_string_res->get_chars().begin() + i * IPV6_BINARY_LENGTH);
438
0
                column_string_res->get_offsets().push_back((i + 1) * IPV6_BINARY_LENGTH);
439
            } else {
440
                col_res->insert_data(reinterpret_cast<const char*>(res_value), IPV6_BINARY_LENGTH);
441
            }
442
4
        } else {
443
4
            if (exception_mode == IPConvertExceptionMode::Throw) {
444
0
                throw Exception(ErrorCode::INVALID_ARGUMENT, "Invalid IPv6 value");
445
0
            }
446
4
            std::fill_n(&vec_res[out_offset], offset_inc, 0);
447
4
            if constexpr (std::is_same_v<ToColumn, ColumnString>) {
448
4
                auto* column_string_res = static_cast<ColumnString*>(col_res.get());
449
4
                column_string_res->get_offsets().push_back((i + 1) * IPV6_BINARY_LENGTH);
450
4
            }
451
            if constexpr (exception_mode == IPConvertExceptionMode::Null) {
452
                (*vec_null_map_to)[i] = true;
453
            }
454
4
        }
455
4
    }
456
457
    if constexpr (exception_mode == IPConvertExceptionMode::Null) {
458
        return ColumnNullable::create(std::move(col_res), std::move(col_null_map_to));
459
    }
460
3
    return col_res;
461
3
}
_ZN5doris6detail15convert_to_ipv6ILNS_22IPConvertExceptionModeE2ENS_9ColumnStrIjEES4_EENS_3COWINS_7IColumnEE13immutable_ptrIS6_EERKT1_PKNS_8PODArrayIhLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb1EEELm16ELm15EEE
Line
Count
Source
342
6
                          const PaddedPODArray<UInt8>* null_map = nullptr) {
343
6
    const size_t column_size = string_column.size();
344
345
6
    ColumnUInt8::MutablePtr col_null_map_to;
346
6
    ColumnUInt8::Container* vec_null_map_to = nullptr;
347
348
6
    if constexpr (exception_mode == IPConvertExceptionMode::Null) {
349
6
        col_null_map_to = ColumnUInt8::create(column_size, false);
350
6
        vec_null_map_to = &col_null_map_to->get_data();
351
6
    }
352
353
6
    auto column_create = [](size_t column_size) -> typename ToColumn::MutablePtr {
354
6
        if constexpr (std::is_same_v<ToColumn, ColumnString>) {
355
6
            auto column_string = ColumnString::create();
356
6
            column_string->get_chars().reserve(column_size * IPV6_BINARY_LENGTH);
357
6
            column_string->get_offsets().reserve(column_size);
358
6
            return column_string;
359
6
        } else {
360
6
            return ColumnIPv6::create();
361
6
        }
362
6
    };
363
364
6
    auto get_vector = [](auto& col_res, size_t col_size) -> decltype(auto) {
365
6
        if constexpr (std::is_same_v<ToColumn, ColumnString>) {
366
6
            auto& vec_res = col_res->get_chars();
367
6
            vec_res.resize(col_size * IPV6_BINARY_LENGTH);
368
6
            return (vec_res);
369
6
        } else {
370
6
            auto& vec_res = col_res->get_data();
371
6
            vec_res.resize(col_size);
372
6
            return (vec_res);
373
6
        }
374
6
    };
375
376
6
    auto col_res = column_create(column_size);
377
6
    auto& vec_res = get_vector(col_res, column_size);
378
379
6
    int offset_inc = 1;
380
6
    ColumnString* column_string = nullptr;
381
6
    if constexpr (std::is_same_v<ToColumn, ColumnString>) {
382
6
        offset_inc = IPV6_BINARY_LENGTH;
383
6
        column_string = col_res.get();
384
6
    }
385
386
14
    for (size_t out_offset = 0, i = 0; i < column_size; out_offset += offset_inc, ++i) {
387
8
        const auto src = string_column.get_data_at(i);
388
8
        const char* src_value = src.begin();
389
8
        const char* src_end = src.end();
390
8
        auto* res_value = reinterpret_cast<unsigned char*>(&vec_res[out_offset]);
391
392
8
        if (null_map && (*null_map)[i]) {
393
0
            if (exception_mode == IPConvertExceptionMode::Throw) {
394
0
                throw Exception(
395
0
                        ErrorCode::INVALID_ARGUMENT,
396
0
                        "Null Input, you may consider convert it to a valid default IPv6 value "
397
0
                        "like '::' first");
398
0
            } else if (exception_mode == IPConvertExceptionMode::Default) {
399
0
                std::fill_n(&vec_res[out_offset], offset_inc, 0);
400
0
            } else {
401
0
                std::fill_n(&vec_res[out_offset], offset_inc, 0);
402
0
                (*vec_null_map_to)[i] = true;
403
0
            }
404
0
            if constexpr (std::is_same_v<ToColumn, ColumnString>) {
405
0
                DCHECK(column_string != nullptr);
406
0
                column_string->get_offsets().push_back((i + 1) * IPV6_BINARY_LENGTH);
407
0
            }
408
0
            continue;
409
0
        }
410
411
8
        bool parse_result = false;
412
8
        Int64 dummy_result = 0;
413
414
        /// For both cases below: In case of failure, the function parseIPv6 fills vec_res with zero bytes.
415
416
        /// If the source IP address is parsable as an IPv4 address, then transform it into a valid IPv6 address.
417
        /// Keeping it simple by just prefixing `::ffff:` to the IPv4 address to represent it as a valid IPv6 address.
418
8
        size_t string_length = src.size;
419
8
        if (string_length != 0) {
420
8
            if (try_parse_ipv4(src_value, src_end, dummy_result)) {
421
0
                map_ipv4_to_ipv6(static_cast<IPv4>(dummy_result), res_value);
422
0
                parse_result = true;
423
8
            } else {
424
8
                parse_result = parse_ipv6_whole(src_value, src_end, res_value);
425
8
            }
426
8
        }
427
428
8
        if (parse_result && string_length != 0) {
429
0
            if constexpr (std::is_same_v<ToColumn, ColumnString>) {
430
                // handling 16 bytes ipv6 string in the big-endian byte order
431
                // is aimed at conforming to human reading habits
432
0
                std::reverse(res_value, res_value + IPV6_BINARY_LENGTH);
433
0
            }
434
0
            if constexpr (std::is_same_v<ToColumn, ColumnString>) {
435
0
                auto* column_string_res = static_cast<ColumnString*>(col_res.get());
436
0
                std::copy(res_value, res_value + IPV6_BINARY_LENGTH,
437
0
                          column_string_res->get_chars().begin() + i * IPV6_BINARY_LENGTH);
438
0
                column_string_res->get_offsets().push_back((i + 1) * IPV6_BINARY_LENGTH);
439
            } else {
440
                col_res->insert_data(reinterpret_cast<const char*>(res_value), IPV6_BINARY_LENGTH);
441
            }
442
8
        } else {
443
8
            if (exception_mode == IPConvertExceptionMode::Throw) {
444
0
                throw Exception(ErrorCode::INVALID_ARGUMENT, "Invalid IPv6 value");
445
0
            }
446
8
            std::fill_n(&vec_res[out_offset], offset_inc, 0);
447
8
            if constexpr (std::is_same_v<ToColumn, ColumnString>) {
448
8
                auto* column_string_res = static_cast<ColumnString*>(col_res.get());
449
8
                column_string_res->get_offsets().push_back((i + 1) * IPV6_BINARY_LENGTH);
450
8
            }
451
8
            if constexpr (exception_mode == IPConvertExceptionMode::Null) {
452
8
                (*vec_null_map_to)[i] = true;
453
8
            }
454
8
        }
455
8
    }
456
457
6
    if constexpr (exception_mode == IPConvertExceptionMode::Null) {
458
6
        return ColumnNullable::create(std::move(col_res), std::move(col_null_map_to));
459
6
    }
460
0
    return col_res;
461
6
}
462
} // namespace detail
463
464
template <IPConvertExceptionMode exception_mode, typename ToColumn = ColumnIPv6>
465
13
ColumnPtr convert_to_ipv6(ColumnPtr column, const PaddedPODArray<UInt8>* null_map = nullptr) {
466
13
    const auto* column_input_string = assert_cast<const ColumnString*>(column.get());
467
13
    auto result = detail::convert_to_ipv6<exception_mode, ToColumn>(*column_input_string, null_map);
468
13
    return result;
469
13
}
_ZN5doris15convert_to_ipv6ILNS_22IPConvertExceptionModeE0ENS_9ColumnStrIjEEEENS_3COWINS_7IColumnEE13immutable_ptrIS5_EES8_PKNS_8PODArrayIhLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb1EEELm16ELm15EEE
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465
4
ColumnPtr convert_to_ipv6(ColumnPtr column, const PaddedPODArray<UInt8>* null_map = nullptr) {
466
4
    const auto* column_input_string = assert_cast<const ColumnString*>(column.get());
467
4
    auto result = detail::convert_to_ipv6<exception_mode, ToColumn>(*column_input_string, null_map);
468
4
    return result;
469
4
}
_ZN5doris15convert_to_ipv6ILNS_22IPConvertExceptionModeE1ENS_9ColumnStrIjEEEENS_3COWINS_7IColumnEE13immutable_ptrIS5_EES8_PKNS_8PODArrayIhLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb1EEELm16ELm15EEE
Line
Count
Source
465
3
ColumnPtr convert_to_ipv6(ColumnPtr column, const PaddedPODArray<UInt8>* null_map = nullptr) {
466
3
    const auto* column_input_string = assert_cast<const ColumnString*>(column.get());
467
3
    auto result = detail::convert_to_ipv6<exception_mode, ToColumn>(*column_input_string, null_map);
468
3
    return result;
469
3
}
_ZN5doris15convert_to_ipv6ILNS_22IPConvertExceptionModeE2ENS_9ColumnStrIjEEEENS_3COWINS_7IColumnEE13immutable_ptrIS5_EES8_PKNS_8PODArrayIhLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb1EEELm16ELm15EEE
Line
Count
Source
465
6
ColumnPtr convert_to_ipv6(ColumnPtr column, const PaddedPODArray<UInt8>* null_map = nullptr) {
466
6
    const auto* column_input_string = assert_cast<const ColumnString*>(column.get());
467
6
    auto result = detail::convert_to_ipv6<exception_mode, ToColumn>(*column_input_string, null_map);
468
6
    return result;
469
6
}
470
471
template <IPConvertExceptionMode exception_mode>
472
class FunctionIPv6StringToNum : public IFunction {
473
public:
474
    static constexpr auto name = exception_mode == IPConvertExceptionMode::Throw
475
                                         ? "ipv6_string_to_num"
476
                                         : (exception_mode == IPConvertExceptionMode::Default
477
                                                    ? "ipv6_string_to_num_or_default"
478
                                                    : "ipv6_string_to_num_or_null");
479
480
19
    static FunctionPtr create() {
481
19
        return std::make_shared<FunctionIPv6StringToNum<exception_mode>>();
482
19
    }
_ZN5doris23FunctionIPv6StringToNumILNS_22IPConvertExceptionModeE0EE6createEv
Line
Count
Source
480
6
    static FunctionPtr create() {
481
6
        return std::make_shared<FunctionIPv6StringToNum<exception_mode>>();
482
6
    }
_ZN5doris23FunctionIPv6StringToNumILNS_22IPConvertExceptionModeE1EE6createEv
Line
Count
Source
480
5
    static FunctionPtr create() {
481
5
        return std::make_shared<FunctionIPv6StringToNum<exception_mode>>();
482
5
    }
_ZN5doris23FunctionIPv6StringToNumILNS_22IPConvertExceptionModeE2EE6createEv
Line
Count
Source
480
8
    static FunctionPtr create() {
481
8
        return std::make_shared<FunctionIPv6StringToNum<exception_mode>>();
482
8
    }
483
484
3
    String get_name() const override { return name; }
_ZNK5doris23FunctionIPv6StringToNumILNS_22IPConvertExceptionModeE0EE8get_nameB5cxx11Ev
Line
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Source
484
1
    String get_name() const override { return name; }
_ZNK5doris23FunctionIPv6StringToNumILNS_22IPConvertExceptionModeE1EE8get_nameB5cxx11Ev
Line
Count
Source
484
1
    String get_name() const override { return name; }
_ZNK5doris23FunctionIPv6StringToNumILNS_22IPConvertExceptionModeE2EE8get_nameB5cxx11Ev
Line
Count
Source
484
1
    String get_name() const override { return name; }
485
486
13
    size_t get_number_of_arguments() const override { return 1; }
_ZNK5doris23FunctionIPv6StringToNumILNS_22IPConvertExceptionModeE0EE23get_number_of_argumentsEv
Line
Count
Source
486
4
    size_t get_number_of_arguments() const override { return 1; }
_ZNK5doris23FunctionIPv6StringToNumILNS_22IPConvertExceptionModeE1EE23get_number_of_argumentsEv
Line
Count
Source
486
3
    size_t get_number_of_arguments() const override { return 1; }
_ZNK5doris23FunctionIPv6StringToNumILNS_22IPConvertExceptionModeE2EE23get_number_of_argumentsEv
Line
Count
Source
486
6
    size_t get_number_of_arguments() const override { return 1; }
487
488
26
    bool use_default_implementation_for_nulls() const override { return false; }
_ZNK5doris23FunctionIPv6StringToNumILNS_22IPConvertExceptionModeE0EE36use_default_implementation_for_nullsEv
Line
Count
Source
488
8
    bool use_default_implementation_for_nulls() const override { return false; }
_ZNK5doris23FunctionIPv6StringToNumILNS_22IPConvertExceptionModeE1EE36use_default_implementation_for_nullsEv
Line
Count
Source
488
6
    bool use_default_implementation_for_nulls() const override { return false; }
_ZNK5doris23FunctionIPv6StringToNumILNS_22IPConvertExceptionModeE2EE36use_default_implementation_for_nullsEv
Line
Count
Source
488
12
    bool use_default_implementation_for_nulls() const override { return false; }
489
490
13
    DataTypePtr get_return_type_impl(const DataTypes& arguments) const override {
491
13
        auto result_type = std::make_shared<DataTypeString>();
492
493
13
        if constexpr (exception_mode == IPConvertExceptionMode::Null) {
494
6
            return make_nullable(result_type);
495
6
        }
496
497
0
        return result_type;
498
13
    }
_ZNK5doris23FunctionIPv6StringToNumILNS_22IPConvertExceptionModeE0EE20get_return_type_implERKSt6vectorISt10shared_ptrIKNS_9IDataTypeEESaIS7_EE
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Count
Source
490
4
    DataTypePtr get_return_type_impl(const DataTypes& arguments) const override {
491
4
        auto result_type = std::make_shared<DataTypeString>();
492
493
        if constexpr (exception_mode == IPConvertExceptionMode::Null) {
494
            return make_nullable(result_type);
495
        }
496
497
4
        return result_type;
498
4
    }
_ZNK5doris23FunctionIPv6StringToNumILNS_22IPConvertExceptionModeE1EE20get_return_type_implERKSt6vectorISt10shared_ptrIKNS_9IDataTypeEESaIS7_EE
Line
Count
Source
490
3
    DataTypePtr get_return_type_impl(const DataTypes& arguments) const override {
491
3
        auto result_type = std::make_shared<DataTypeString>();
492
493
        if constexpr (exception_mode == IPConvertExceptionMode::Null) {
494
            return make_nullable(result_type);
495
        }
496
497
3
        return result_type;
498
3
    }
_ZNK5doris23FunctionIPv6StringToNumILNS_22IPConvertExceptionModeE2EE20get_return_type_implERKSt6vectorISt10shared_ptrIKNS_9IDataTypeEESaIS7_EE
Line
Count
Source
490
6
    DataTypePtr get_return_type_impl(const DataTypes& arguments) const override {
491
6
        auto result_type = std::make_shared<DataTypeString>();
492
493
6
        if constexpr (exception_mode == IPConvertExceptionMode::Null) {
494
6
            return make_nullable(result_type);
495
6
        }
496
497
0
        return result_type;
498
6
    }
499
500
    Status execute_impl(FunctionContext* context, Block& block, const ColumnNumbers& arguments,
501
13
                        uint32_t result, size_t input_rows_count) const override {
502
13
        ColumnPtr column =
503
13
                block.get_by_position(arguments[0]).column->convert_to_full_column_if_const();
504
13
        ColumnPtr null_map_column;
505
13
        const NullMap* null_map = nullptr;
506
507
13
        if (const auto* column_nullable = check_and_get_column<ColumnNullable>(column.get())) {
508
13
            column = column_nullable->get_nested_column_ptr();
509
13
            null_map_column = column_nullable->get_null_map_column_ptr();
510
13
            null_map = &column_nullable->get_null_map_data();
511
13
        }
512
513
13
        auto col_res = convert_to_ipv6<exception_mode, ColumnString>(column, null_map);
514
515
13
        if (null_map && exception_mode == IPConvertExceptionMode::Null) {
516
6
            block.replace_by_position(
517
6
                    result, ColumnNullable::create(std::move(col_res), std::move(null_map_column)));
518
7
        } else {
519
7
            block.replace_by_position(result, std::move(col_res));
520
7
        }
521
13
        return Status::OK();
522
13
    }
_ZNK5doris23FunctionIPv6StringToNumILNS_22IPConvertExceptionModeE0EE12execute_implEPNS_15FunctionContextERNS_5BlockERKSt6vectorIjSaIjEEjm
Line
Count
Source
501
4
                        uint32_t result, size_t input_rows_count) const override {
502
4
        ColumnPtr column =
503
4
                block.get_by_position(arguments[0]).column->convert_to_full_column_if_const();
504
4
        ColumnPtr null_map_column;
505
4
        const NullMap* null_map = nullptr;
506
507
4
        if (const auto* column_nullable = check_and_get_column<ColumnNullable>(column.get())) {
508
4
            column = column_nullable->get_nested_column_ptr();
509
4
            null_map_column = column_nullable->get_null_map_column_ptr();
510
4
            null_map = &column_nullable->get_null_map_data();
511
4
        }
512
513
4
        auto col_res = convert_to_ipv6<exception_mode, ColumnString>(column, null_map);
514
515
4
        if (null_map && exception_mode == IPConvertExceptionMode::Null) {
516
0
            block.replace_by_position(
517
0
                    result, ColumnNullable::create(std::move(col_res), std::move(null_map_column)));
518
4
        } else {
519
4
            block.replace_by_position(result, std::move(col_res));
520
4
        }
521
4
        return Status::OK();
522
4
    }
_ZNK5doris23FunctionIPv6StringToNumILNS_22IPConvertExceptionModeE1EE12execute_implEPNS_15FunctionContextERNS_5BlockERKSt6vectorIjSaIjEEjm
Line
Count
Source
501
3
                        uint32_t result, size_t input_rows_count) const override {
502
3
        ColumnPtr column =
503
3
                block.get_by_position(arguments[0]).column->convert_to_full_column_if_const();
504
3
        ColumnPtr null_map_column;
505
3
        const NullMap* null_map = nullptr;
506
507
3
        if (const auto* column_nullable = check_and_get_column<ColumnNullable>(column.get())) {
508
3
            column = column_nullable->get_nested_column_ptr();
509
3
            null_map_column = column_nullable->get_null_map_column_ptr();
510
3
            null_map = &column_nullable->get_null_map_data();
511
3
        }
512
513
3
        auto col_res = convert_to_ipv6<exception_mode, ColumnString>(column, null_map);
514
515
3
        if (null_map && exception_mode == IPConvertExceptionMode::Null) {
516
0
            block.replace_by_position(
517
0
                    result, ColumnNullable::create(std::move(col_res), std::move(null_map_column)));
518
3
        } else {
519
3
            block.replace_by_position(result, std::move(col_res));
520
3
        }
521
3
        return Status::OK();
522
3
    }
_ZNK5doris23FunctionIPv6StringToNumILNS_22IPConvertExceptionModeE2EE12execute_implEPNS_15FunctionContextERNS_5BlockERKSt6vectorIjSaIjEEjm
Line
Count
Source
501
6
                        uint32_t result, size_t input_rows_count) const override {
502
6
        ColumnPtr column =
503
6
                block.get_by_position(arguments[0]).column->convert_to_full_column_if_const();
504
6
        ColumnPtr null_map_column;
505
6
        const NullMap* null_map = nullptr;
506
507
6
        if (const auto* column_nullable = check_and_get_column<ColumnNullable>(column.get())) {
508
6
            column = column_nullable->get_nested_column_ptr();
509
6
            null_map_column = column_nullable->get_null_map_column_ptr();
510
6
            null_map = &column_nullable->get_null_map_data();
511
6
        }
512
513
6
        auto col_res = convert_to_ipv6<exception_mode, ColumnString>(column, null_map);
514
515
6
        if (null_map && exception_mode == IPConvertExceptionMode::Null) {
516
6
            block.replace_by_position(
517
6
                    result, ColumnNullable::create(std::move(col_res), std::move(null_map_column)));
518
6
        } else {
519
0
            block.replace_by_position(result, std::move(col_res));
520
0
        }
521
6
        return Status::OK();
522
6
    }
523
};
524
525
template <typename Type>
526
class FunctionIsIPString : public IFunction {
527
    static_assert(std::is_same_v<Type, IPv4> || std::is_same_v<Type, IPv6>);
528
529
public:
530
    static constexpr auto name = std::is_same_v<Type, IPv4> ? "is_ipv4_string" : "is_ipv6_string";
531
4
    static FunctionPtr create() { return std::make_shared<FunctionIsIPString<Type>>(); }
_ZN5doris18FunctionIsIPStringIjE6createEv
Line
Count
Source
531
2
    static FunctionPtr create() { return std::make_shared<FunctionIsIPString<Type>>(); }
_ZN5doris18FunctionIsIPStringIoE6createEv
Line
Count
Source
531
2
    static FunctionPtr create() { return std::make_shared<FunctionIsIPString<Type>>(); }
532
533
2
    String get_name() const override { return name; }
_ZNK5doris18FunctionIsIPStringIjE8get_nameB5cxx11Ev
Line
Count
Source
533
1
    String get_name() const override { return name; }
_ZNK5doris18FunctionIsIPStringIoE8get_nameB5cxx11Ev
Line
Count
Source
533
1
    String get_name() const override { return name; }
534
535
0
    size_t get_number_of_arguments() const override { return 1; }
Unexecuted instantiation: _ZNK5doris18FunctionIsIPStringIjE23get_number_of_argumentsEv
Unexecuted instantiation: _ZNK5doris18FunctionIsIPStringIoE23get_number_of_argumentsEv
536
537
0
    DataTypePtr get_return_type_impl(const DataTypes& arguments) const override {
538
0
        return std::make_shared<DataTypeUInt8>();
539
0
    }
Unexecuted instantiation: _ZNK5doris18FunctionIsIPStringIjE20get_return_type_implERKSt6vectorISt10shared_ptrIKNS_9IDataTypeEESaIS6_EE
Unexecuted instantiation: _ZNK5doris18FunctionIsIPStringIoE20get_return_type_implERKSt6vectorISt10shared_ptrIKNS_9IDataTypeEESaIS6_EE
540
541
    Status execute_impl(FunctionContext* context, Block& block, const ColumnNumbers& arguments,
542
0
                        uint32_t result, size_t input_rows_count) const override {
543
0
        const auto& addr_column_with_type_and_name = block.get_by_position(arguments[0]);
544
0
        const ColumnPtr& addr_column = addr_column_with_type_and_name.column;
545
0
        const auto* str_addr_column = assert_cast<const ColumnString*>(addr_column.get());
546
0
        auto col_res = ColumnUInt8::create(input_rows_count, 0);
547
0
        auto& col_res_data = col_res->get_data();
548
549
0
        for (size_t i = 0; i < input_rows_count; ++i) {
550
0
            if constexpr (std::is_same_v<Type, IPv4>) {
551
0
                StringRef ipv4_str = str_addr_column->get_data_at(i);
552
0
                if (IPv4Value::is_valid_string(ipv4_str.data, ipv4_str.size)) {
553
0
                    col_res_data[i] = 1;
554
0
                }
555
0
            } else {
556
0
                StringRef ipv6_str = str_addr_column->get_data_at(i);
557
0
                if (IPv6Value::is_valid_string(ipv6_str.data, ipv6_str.size)) {
558
0
                    col_res_data[i] = 1;
559
0
                }
560
0
            }
561
0
        }
562
563
0
        block.replace_by_position(result, std::move(col_res));
564
0
        return Status::OK();
565
0
    }
Unexecuted instantiation: _ZNK5doris18FunctionIsIPStringIjE12execute_implEPNS_15FunctionContextERNS_5BlockERKSt6vectorIjSaIjEEjm
Unexecuted instantiation: _ZNK5doris18FunctionIsIPStringIoE12execute_implEPNS_15FunctionContextERNS_5BlockERKSt6vectorIjSaIjEEjm
566
};
567
568
class FunctionIsIPAddressInRange : public IFunction {
569
public:
570
    static constexpr auto name = "is_ip_address_in_range";
571
56
    static FunctionPtr create() { return std::make_shared<FunctionIsIPAddressInRange>(); }
572
573
1
    String get_name() const override { return name; }
574
575
54
    size_t get_number_of_arguments() const override { return 2; }
576
577
54
    DataTypePtr get_return_type_impl(const DataTypes& arguments) const override {
578
54
        return std::make_shared<DataTypeUInt8>();
579
54
    }
580
581
    template <PrimitiveType PT, typename ColumnType>
582
    void execute_impl_with_ip(size_t input_rows_count, bool addr_const, bool cidr_const,
583
                              const ColumnString* str_cidr_column, const ColumnPtr addr_column,
584
1
                              ColumnUInt8* col_res) const {
585
1
        auto& col_res_data = col_res->get_data();
586
1
        const auto& ip_data = assert_cast<const ColumnType*>(addr_column.get())->get_data();
587
4
        for (size_t i = 0; i < input_rows_count; ++i) {
588
3
            auto addr_idx = index_check_const(i, addr_const);
589
3
            auto cidr_idx = index_check_const(i, cidr_const);
590
3
            auto cidr_data = str_cidr_column->get_data_at(cidr_idx);
591
            // cidr_data maybe NULL, But the input column is nested column, so check here avoid throw exception
592
3
            if (cidr_data.data == nullptr || cidr_data.size == 0) {
593
0
                col_res_data[i] = 0;
594
0
                continue;
595
0
            }
596
3
            const auto cidr = parse_ip_with_cidr(cidr_data.to_string_view());
597
3
            if constexpr (PT == PrimitiveType::TYPE_IPV4) {
598
3
                if (cidr._address.is_v4()) {
599
3
                    col_res_data[i] = match_ipv4_subnet(ip_data[addr_idx], cidr._address.as_v4(),
600
3
                                                        cidr._prefix)
601
3
                                              ? 1
602
3
                                              : 0;
603
3
                } else {
604
0
                    col_res_data[i] = 0;
605
0
                }
606
3
            } else if constexpr (PT == PrimitiveType::TYPE_IPV6) {
607
0
                if (cidr._address.is_v6()) {
608
0
                    col_res_data[i] = match_ipv6_subnet((uint8_t*)(&ip_data[addr_idx]),
609
0
                                                        cidr._address.as_v6(), cidr._prefix)
610
0
                                              ? 1
611
0
                                              : 0;
612
0
                } else {
613
0
                    col_res_data[i] = 0;
614
0
                }
615
0
            }
616
3
        }
617
1
    }
_ZNK5doris26FunctionIsIPAddressInRange20execute_impl_with_ipILNS_13PrimitiveTypeE36ENS_12ColumnVectorILS2_36EEEEEvmbbPKNS_9ColumnStrIjEENS_3COWINS_7IColumnEE13immutable_ptrISA_EEPNS3_ILS2_2EEE
Line
Count
Source
584
1
                              ColumnUInt8* col_res) const {
585
1
        auto& col_res_data = col_res->get_data();
586
1
        const auto& ip_data = assert_cast<const ColumnType*>(addr_column.get())->get_data();
587
4
        for (size_t i = 0; i < input_rows_count; ++i) {
588
3
            auto addr_idx = index_check_const(i, addr_const);
589
3
            auto cidr_idx = index_check_const(i, cidr_const);
590
3
            auto cidr_data = str_cidr_column->get_data_at(cidr_idx);
591
            // cidr_data maybe NULL, But the input column is nested column, so check here avoid throw exception
592
3
            if (cidr_data.data == nullptr || cidr_data.size == 0) {
593
0
                col_res_data[i] = 0;
594
0
                continue;
595
0
            }
596
3
            const auto cidr = parse_ip_with_cidr(cidr_data.to_string_view());
597
3
            if constexpr (PT == PrimitiveType::TYPE_IPV4) {
598
3
                if (cidr._address.is_v4()) {
599
3
                    col_res_data[i] = match_ipv4_subnet(ip_data[addr_idx], cidr._address.as_v4(),
600
3
                                                        cidr._prefix)
601
3
                                              ? 1
602
3
                                              : 0;
603
3
                } else {
604
0
                    col_res_data[i] = 0;
605
0
                }
606
            } else if constexpr (PT == PrimitiveType::TYPE_IPV6) {
607
                if (cidr._address.is_v6()) {
608
                    col_res_data[i] = match_ipv6_subnet((uint8_t*)(&ip_data[addr_idx]),
609
                                                        cidr._address.as_v6(), cidr._prefix)
610
                                              ? 1
611
                                              : 0;
612
                } else {
613
                    col_res_data[i] = 0;
614
                }
615
            }
616
3
        }
617
1
    }
Unexecuted instantiation: _ZNK5doris26FunctionIsIPAddressInRange20execute_impl_with_ipILNS_13PrimitiveTypeE37ENS_12ColumnVectorILS2_37EEEEEvmbbPKNS_9ColumnStrIjEENS_3COWINS_7IColumnEE13immutable_ptrISA_EEPNS3_ILS2_2EEE
618
619
    Status evaluate_inverted_index(
620
            const ColumnsWithTypeAndName& arguments,
621
            const std::vector<IndexFieldNameAndTypePair>& data_type_with_names,
622
            std::vector<segment_v2::IndexIterator*> iterators, uint32_t num_rows,
623
            const InvertedIndexAnalyzerCtx* /*analyzer_ctx*/,
624
2
            segment_v2::InvertedIndexResultBitmap& bitmap_result) const override {
625
2
        DCHECK(arguments.size() == 1);
626
2
        DCHECK(data_type_with_names.size() == 1);
627
2
        DCHECK(iterators.size() == 1);
628
2
        auto* iter = iterators[0];
629
2
        auto data_type_with_name = data_type_with_names[0];
630
2
        if (iter == nullptr) {
631
0
            return Status::OK();
632
0
        }
633
634
2
        if (!segment_v2::IndexReaderHelper::has_bkd_index(iter)) {
635
            // Not support only bkd index
636
0
            return Status::Error<ErrorCode::INVERTED_INDEX_EVALUATE_SKIPPED>(
637
0
                    "Inverted index evaluate skipped, ip range reader can only support by bkd "
638
0
                    "reader");
639
0
        }
640
        // Get the is_ip_address_in_range from the arguments: cidr
641
2
        const auto& cidr_column_with_type_and_name = arguments[0];
642
        // in is_ip_address_in_range param is const Field
643
2
        ColumnPtr arg_column = cidr_column_with_type_and_name.column;
644
2
        DataTypePtr arg_type = cidr_column_with_type_and_name.type;
645
2
        if ((is_column_nullable(*arg_column) && !is_column_const(*remove_nullable(arg_column))) ||
646
2
            (!is_column_nullable(*arg_column) && !is_column_const(*arg_column))) {
647
            // if not we should skip inverted index and evaluate in expression
648
0
            return Status::Error<ErrorCode::INVERTED_INDEX_EVALUATE_SKIPPED>(
649
0
                    "Inverted index evaluate skipped, is_ip_address_in_range only support const "
650
0
                    "value");
651
0
        }
652
        // check param type is string
653
2
        if (!is_string_type(arg_type->get_primitive_type())) {
654
0
            return Status::Error<ErrorCode::INVERTED_INDEX_EVALUATE_SKIPPED>(
655
0
                    "Inverted index evaluate skipped, is_ip_address_in_range only support string "
656
0
                    "type");
657
0
        }
658
        // min && max ip address
659
2
        Field min_ip, max_ip;
660
2
        IPAddressCIDR cidr = parse_ip_with_cidr(arg_column->get_data_at(0));
661
2
        if (data_type_with_name.second->get_primitive_type() == TYPE_IPV4 &&
662
2
            cidr._address.is_v4()) {
663
1
            auto range = apply_cidr_mask(cidr._address.as_v4(), cidr._prefix);
664
1
            min_ip = Field::create_field<TYPE_IPV4>(range.first);
665
1
            max_ip = Field::create_field<TYPE_IPV4>(range.second);
666
1
        } else if (data_type_with_name.second->get_primitive_type() == TYPE_IPV6 &&
667
1
                   cidr._address.is_v6()) {
668
1
            auto cidr_range_ipv6_col = ColumnIPv6::create(2, 0);
669
1
            auto& cidr_range_ipv6_data = cidr_range_ipv6_col->get_data();
670
1
            apply_cidr_mask(reinterpret_cast<const char*>(cidr._address.as_v6()),
671
1
                            reinterpret_cast<char*>(&cidr_range_ipv6_data[0]),
672
1
                            reinterpret_cast<char*>(&cidr_range_ipv6_data[1]), cidr._prefix);
673
1
            min_ip = Field::create_field<TYPE_IPV6>(cidr_range_ipv6_data[0]);
674
1
            max_ip = Field::create_field<TYPE_IPV6>(cidr_range_ipv6_data[1]);
675
1
        } else {
676
            // if here param is invalid for current column to calcute min_ip|max_ip we just return
677
0
            return Status::Error<ErrorCode::INVERTED_INDEX_EVALUATE_SKIPPED>(
678
0
                    "Inverted index evaluate skipped, data type " + arg_type->get_name() +
679
0
                    " can not support this cidr " + arg_column->get_data_at(0).to_string());
680
0
        }
681
        // apply for inverted index
682
2
        std::shared_ptr<roaring::Roaring> null_bitmap = std::make_shared<roaring::Roaring>();
683
2
        bool has_null = DORIS_TRY(iter->has_null());
684
2
        segment_v2::InvertedIndexQueryCacheHandle null_bitmap_cache_handle;
685
686
        // >= min ip
687
2
        segment_v2::InvertedIndexParam min_param;
688
2
        min_param.column_name = data_type_with_name.first;
689
2
        min_param.column_type = data_type_with_name.second;
690
2
        min_param.query_type = segment_v2::InvertedIndexQueryType::GREATER_EQUAL_QUERY;
691
2
        min_param.query_value = min_ip;
692
2
        min_param.num_rows = num_rows;
693
2
        min_param.roaring = std::make_shared<roaring::Roaring>();
694
2
        if (has_null) {
695
            // Fetch the NULL bitmap together with the first range query to reuse its index reader.
696
0
            min_param.null_bitmap_cache_handle = &null_bitmap_cache_handle;
697
0
        }
698
2
        RETURN_IF_ERROR(iter->read_from_index(&min_param));
699
2
        if (has_null) {
700
0
            null_bitmap = null_bitmap_cache_handle.get_bitmap();
701
0
        }
702
703
        // <= max ip
704
2
        segment_v2::InvertedIndexParam max_param;
705
2
        max_param.column_name = data_type_with_name.first;
706
2
        max_param.column_type = data_type_with_name.second;
707
2
        max_param.query_type = segment_v2::InvertedIndexQueryType::LESS_EQUAL_QUERY;
708
2
        max_param.query_value = max_ip;
709
2
        max_param.num_rows = num_rows;
710
2
        max_param.roaring = std::make_shared<roaring::Roaring>();
711
2
        RETURN_IF_ERROR(iter->read_from_index(&max_param));
712
713
2
        auto result_roaring = std::make_shared<roaring::Roaring>();
714
2
        *result_roaring = *min_param.roaring & *max_param.roaring;
715
716
2
        DBUG_EXECUTE_IF("ip.inverted_index_filtered", {
717
2
            auto req_id = DebugPoints::instance()->get_debug_param_or_default<int32_t>(
718
2
                    "ip.inverted_index_filtered", "req_id", 0);
719
2
            LOG(INFO) << "execute inverted index req_id: " << req_id
720
2
                      << " min: " << min_param.roaring->cardinality()
721
2
                      << " max: " << max_param.roaring->cardinality()
722
2
                      << " result: " << result_roaring->cardinality();
723
2
        });
724
2
        segment_v2::InvertedIndexResultBitmap result(result_roaring, null_bitmap);
725
2
        bitmap_result = result;
726
2
        bitmap_result.mask_out_null();
727
2
        return Status::OK();
728
2
    }
729
730
    Status execute_impl(FunctionContext* context, Block& block, const ColumnNumbers& arguments,
731
54
                        uint32_t result, size_t input_rows_count) const override {
732
54
        DBUG_EXECUTE_IF("ip.inverted_index_filtered", {
733
54
            auto req_id = DebugPoints::instance()->get_debug_param_or_default<int32_t>(
734
54
                    "ip.inverted_index_filtered", "req_id", 0);
735
54
            return Status::Error<ErrorCode::INTERNAL_ERROR>(
736
54
                    "{} has already execute inverted index req_id {} , should not execute expr "
737
54
                    "with rows: {}",
738
54
                    get_name(), req_id, input_rows_count);
739
54
        });
740
54
        const auto& addr_column_with_type_and_name = block.get_by_position(arguments[0]);
741
54
        const auto& cidr_column_with_type_and_name = block.get_by_position(arguments[1]);
742
54
        const auto& [addr_column, addr_const] =
743
54
                unpack_if_const(addr_column_with_type_and_name.column);
744
54
        const auto& [cidr_column, cidr_const] =
745
54
                unpack_if_const(cidr_column_with_type_and_name.column);
746
747
54
        auto col_res = ColumnUInt8::create(input_rows_count, 0);
748
54
        auto& col_res_data = col_res->get_data();
749
750
54
        if (addr_column_with_type_and_name.type->get_primitive_type() == TYPE_IPV4) {
751
1
            execute_impl_with_ip<PrimitiveType::TYPE_IPV4, ColumnIPv4>(
752
1
                    input_rows_count, addr_const, cidr_const,
753
1
                    assert_cast<const ColumnString*>(cidr_column.get()), addr_column,
754
1
                    col_res.get());
755
53
        } else if (addr_column_with_type_and_name.type->get_primitive_type() == TYPE_IPV6) {
756
0
            execute_impl_with_ip<PrimitiveType::TYPE_IPV6, ColumnIPv6>(
757
0
                    input_rows_count, addr_const, cidr_const,
758
0
                    assert_cast<const ColumnString*>(cidr_column.get()), addr_column,
759
0
                    col_res.get());
760
53
        } else {
761
53
            const auto* str_addr_column = assert_cast<const ColumnString*>(addr_column.get());
762
53
            const auto* str_cidr_column = assert_cast<const ColumnString*>(cidr_column.get());
763
764
131
            for (size_t i = 0; i < input_rows_count; ++i) {
765
78
                auto addr_idx = index_check_const(i, addr_const);
766
78
                auto cidr_idx = index_check_const(i, cidr_const);
767
78
                auto addr_data = str_addr_column->get_data_at(addr_idx);
768
78
                auto cidr_data = str_cidr_column->get_data_at(cidr_idx);
769
                // cidr_data maybe NULL, But the input column is nested column, so check here avoid throw exception
770
78
                if (cidr_data.data == nullptr || cidr_data.size == 0) {
771
0
                    col_res_data[i] = 0;
772
0
                    continue;
773
0
                }
774
78
                const auto addr = IPAddressVariant(addr_data.to_string_view());
775
78
                const auto cidr = parse_ip_with_cidr(cidr_data.to_string_view());
776
78
                col_res_data[i] = is_address_in_range(addr, cidr) ? 1 : 0;
777
78
            }
778
53
        }
779
780
54
        block.replace_by_position(result, std::move(col_res));
781
54
        return Status::OK();
782
54
    }
783
};
784
785
class FunctionIPv4CIDRToRange : public IFunction {
786
public:
787
    static constexpr auto name = "ipv4_cidr_to_range";
788
2
    static FunctionPtr create() { return std::make_shared<FunctionIPv4CIDRToRange>(); }
789
790
1
    String get_name() const override { return name; }
791
792
0
    size_t get_number_of_arguments() const override { return 2; }
793
794
2
    DataTypePtr get_return_type_impl(const DataTypes& arguments) const override {
795
2
        DataTypePtr element = std::make_shared<DataTypeIPv4>();
796
2
        DataTypePtr result = std::make_shared<DataTypeStruct>(DataTypes {element, element},
797
2
                                                              Strings {"min", "max"});
798
2
        if (arguments[0]->is_nullable() || arguments[1]->is_nullable()) {
799
2
            return make_nullable(result);
800
2
        }
801
0
        return result;
802
2
    }
803
804
0
    bool use_default_implementation_for_nulls() const override { return false; }
805
806
    Status execute_impl(FunctionContext* context, Block& block, const ColumnNumbers& arguments,
807
2
                        uint32_t result, size_t input_rows_count) const override {
808
2
        const auto& ip_argument = block.get_by_position(arguments[0]);
809
2
        const auto& cidr_argument = block.get_by_position(arguments[1]);
810
2
        const auto ip = ColumnView<TYPE_IPV4>::create(ip_argument.column);
811
2
        const auto cidr = ColumnView<TYPE_SMALLINT>::create(cidr_argument.column);
812
2
        const bool result_nullable = block.get_by_position(result).type->is_nullable();
813
814
2
        auto col_lower_range_output = ColumnIPv4::create(input_rows_count, 0);
815
2
        auto col_upper_range_output = ColumnIPv4::create(input_rows_count, 0);
816
2
        auto& lower = col_lower_range_output->get_data();
817
2
        auto& upper = col_upper_range_output->get_data();
818
2
        ColumnUInt8::MutablePtr null_map;
819
2
        if (result_nullable) {
820
2
            null_map = ColumnUInt8::create(input_rows_count, 0);
821
2
            execute_impl<true>(ip, cidr, input_rows_count, lower, upper, &null_map->get_data());
822
2
        } else {
823
0
            execute_impl<false>(ip, cidr, input_rows_count, lower, upper, nullptr);
824
0
        }
825
826
2
        ColumnPtr result_column = ColumnStruct::create(
827
2
                Columns {std::move(col_lower_range_output), std::move(col_upper_range_output)});
828
2
        if (result_nullable) {
829
2
            result_column = ColumnNullable::create(std::move(result_column), std::move(null_map));
830
2
        }
831
2
        block.replace_by_position(result, std::move(result_column));
832
2
        return Status::OK();
833
2
    }
834
835
private:
836
    template <bool ResultNullable>
837
    static void execute_impl(const ColumnView<TYPE_IPV4>& ip, const ColumnView<TYPE_SMALLINT>& cidr,
838
                             size_t input_rows_count, ColumnIPv4::Container& lower,
839
2
                             ColumnIPv4::Container& upper, ColumnUInt8::Container* nulls) {
840
2
        static constexpr UInt8 max_cidr_mask = IPV4_BINARY_LENGTH * 8;
841
13
        for (size_t i = 0; i < input_rows_count; ++i) {
842
6
            if constexpr (ResultNullable) {
843
6
                if (ip.is_null_at(i) || cidr.is_null_at(i)) {
844
5
                    (*nulls)[i] = 1;
845
5
                    continue;
846
5
                }
847
6
            }
848
1
            const auto prefix = cidr.value_at(i);
849
6
            if (prefix < 0 || prefix > max_cidr_mask) {
850
0
                throw Exception(ErrorCode::INVALID_ARGUMENT, "Illegal cidr value '{}'",
851
0
                                std::to_string(prefix));
852
0
            }
853
6
            const auto range = apply_cidr_mask(ip.value_at(i), cast_set<UInt8>(prefix));
854
6
            lower[i] = range.first;
855
6
            upper[i] = range.second;
856
6
        }
857
2
    }
_ZN5doris23FunctionIPv4CIDRToRange12execute_implILb1EEEvRKNS_10ColumnViewILNS_13PrimitiveTypeE36EEERKNS2_ILS3_4EEEmRNS_8PODArrayIjLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb1EEELm16ELm15EEESF_PNSA_IhLm4096ESD_Lm16ELm15EEE
Line
Count
Source
839
2
                             ColumnIPv4::Container& upper, ColumnUInt8::Container* nulls) {
840
2
        static constexpr UInt8 max_cidr_mask = IPV4_BINARY_LENGTH * 8;
841
13
        for (size_t i = 0; i < input_rows_count; ++i) {
842
6
            if constexpr (ResultNullable) {
843
6
                if (ip.is_null_at(i) || cidr.is_null_at(i)) {
844
5
                    (*nulls)[i] = 1;
845
5
                    continue;
846
5
                }
847
6
            }
848
1
            const auto prefix = cidr.value_at(i);
849
6
            if (prefix < 0 || prefix > max_cidr_mask) {
850
0
                throw Exception(ErrorCode::INVALID_ARGUMENT, "Illegal cidr value '{}'",
851
0
                                std::to_string(prefix));
852
0
            }
853
6
            const auto range = apply_cidr_mask(ip.value_at(i), cast_set<UInt8>(prefix));
854
6
            lower[i] = range.first;
855
6
            upper[i] = range.second;
856
6
        }
857
2
    }
Unexecuted instantiation: _ZN5doris23FunctionIPv4CIDRToRange12execute_implILb0EEEvRKNS_10ColumnViewILNS_13PrimitiveTypeE36EEERKNS2_ILS3_4EEEmRNS_8PODArrayIjLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb1EEELm16ELm15EEESF_PNSA_IhLm4096ESD_Lm16ELm15EEE
858
};
859
860
/**
861
 * this function accepts two arguments: an IPv6 address and a CIDR mask
862
 *  IPv6 address can be either ipv6 type or string type as ipv6 string address
863
 *  FE: PropagateNullable is used to handle nullable columns
864
 */
865
class FunctionIPv6CIDRToRange : public IFunction {
866
public:
867
    static constexpr auto name = "ipv6_cidr_to_range";
868
2
    static FunctionPtr create() { return std::make_shared<FunctionIPv6CIDRToRange>(); }
869
870
1
    String get_name() const override { return name; }
871
872
0
    size_t get_number_of_arguments() const override { return 2; }
873
874
3
    DataTypePtr get_return_type_impl(const DataTypes& arguments) const override {
875
3
        DataTypePtr element = std::make_shared<DataTypeIPv6>();
876
3
        DataTypePtr result = std::make_shared<DataTypeStruct>(DataTypes {element, element},
877
3
                                                              Strings {"min", "max"});
878
3
        if (arguments[0]->is_nullable() || arguments[1]->is_nullable()) {
879
3
            return make_nullable(result);
880
3
        }
881
0
        return result;
882
3
    }
883
884
0
    bool use_default_implementation_for_nulls() const override { return false; }
885
886
    Status execute_impl(FunctionContext* context, Block& block, const ColumnNumbers& arguments,
887
3
                        uint32_t result, size_t input_rows_count) const override {
888
3
        const auto& addr_column_with_type_and_name = block.get_by_position(arguments[0]);
889
3
        const auto& cidr_column_with_type_and_name = block.get_by_position(arguments[1]);
890
3
        const auto cidr = ColumnView<TYPE_SMALLINT>::create(cidr_column_with_type_and_name.column);
891
3
        const auto addr_type = addr_column_with_type_and_name.type->get_primitive_type();
892
3
        const bool result_nullable = block.get_by_position(result).type->is_nullable();
893
894
3
        auto col_res_lower_range = ColumnIPv6::create(input_rows_count, 0);
895
3
        auto col_res_upper_range = ColumnIPv6::create(input_rows_count, 0);
896
3
        auto& vec_res_lower_range = col_res_lower_range->get_data();
897
3
        auto& vec_res_upper_range = col_res_upper_range->get_data();
898
3
        ColumnUInt8::MutablePtr null_map;
899
3
        if (result_nullable) {
900
3
            null_map = ColumnUInt8::create(input_rows_count, 0);
901
3
        }
902
3
        if (addr_type == TYPE_IPV6) {
903
1
            const auto addr = ColumnView<TYPE_IPV6>::create(addr_column_with_type_and_name.column);
904
1
            if (result_nullable) {
905
1
                execute_impl<true>(addr, cidr, input_rows_count, vec_res_lower_range,
906
1
                                   vec_res_upper_range, &null_map->get_data());
907
1
            } else {
908
0
                execute_impl<false>(addr, cidr, input_rows_count, vec_res_lower_range,
909
0
                                    vec_res_upper_range, nullptr);
910
0
            }
911
2
        } else if (is_string_type(addr_type)) {
912
2
            const auto addr =
913
2
                    ColumnView<TYPE_STRING>::create(addr_column_with_type_and_name.column);
914
2
            if (result_nullable) {
915
2
                execute_impl<true>(addr, cidr, input_rows_count, vec_res_lower_range,
916
2
                                   vec_res_upper_range, &null_map->get_data());
917
2
            } else {
918
0
                execute_impl<false>(addr, cidr, input_rows_count, vec_res_lower_range,
919
0
                                    vec_res_upper_range, nullptr);
920
0
            }
921
2
        } else {
922
0
            return Status::RuntimeError(
923
0
                    "Illegal column {} of argument of function {}, Expected IPv6 or String",
924
0
                    addr_column_with_type_and_name.column->get_name(), get_name());
925
0
        }
926
927
3
        ColumnPtr result_column = ColumnStruct::create(
928
3
                Columns {std::move(col_res_lower_range), std::move(col_res_upper_range)});
929
3
        if (result_nullable) {
930
2
            result_column = ColumnNullable::create(std::move(result_column), std::move(null_map));
931
2
        }
932
3
        block.replace_by_position(result, std::move(result_column));
933
3
        return Status::OK();
934
3
    }
935
936
private:
937
    template <bool ResultNullable>
938
    static void execute_impl(const ColumnView<TYPE_IPV6>& addr,
939
                             const ColumnView<TYPE_SMALLINT>& cidr, size_t input_rows_count,
940
                             ColumnIPv6::Container& lower, ColumnIPv6::Container& upper,
941
1
                             ColumnUInt8::Container* nulls) {
942
1
        static constexpr UInt8 max_cidr_mask = IPV6_BINARY_LENGTH * 8;
943
6
        for (size_t i = 0; i < input_rows_count; ++i) {
944
3
            if constexpr (ResultNullable) {
945
3
                if (addr.is_null_at(i) || cidr.is_null_at(i)) {
946
2
                    (*nulls)[i] = 1;
947
2
                    continue;
948
2
                }
949
3
            }
950
1
            const auto prefix = cidr.value_at(i);
951
3
            if (prefix < 0 || prefix > max_cidr_mask) {
952
0
                throw Exception(ErrorCode::INVALID_ARGUMENT, "Illegal cidr value '{}'",
953
0
                                std::to_string(prefix));
954
0
            }
955
3
            const auto address = addr.value_at(i);
956
3
            apply_cidr_mask(reinterpret_cast<const char*>(&address),
957
3
                            reinterpret_cast<char*>(&lower[i]), reinterpret_cast<char*>(&upper[i]),
958
3
                            cast_set<UInt8>(prefix));
959
3
        }
960
1
    }
_ZN5doris23FunctionIPv6CIDRToRange12execute_implILb1EEEvRKNS_10ColumnViewILNS_13PrimitiveTypeE37EEERKNS2_ILS3_4EEEmRNS_8PODArrayIoLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb1EEELm16ELm15EEESF_PNSA_IhLm4096ESD_Lm16ELm15EEE
Line
Count
Source
941
1
                             ColumnUInt8::Container* nulls) {
942
1
        static constexpr UInt8 max_cidr_mask = IPV6_BINARY_LENGTH * 8;
943
6
        for (size_t i = 0; i < input_rows_count; ++i) {
944
3
            if constexpr (ResultNullable) {
945
3
                if (addr.is_null_at(i) || cidr.is_null_at(i)) {
946
2
                    (*nulls)[i] = 1;
947
2
                    continue;
948
2
                }
949
3
            }
950
1
            const auto prefix = cidr.value_at(i);
951
3
            if (prefix < 0 || prefix > max_cidr_mask) {
952
0
                throw Exception(ErrorCode::INVALID_ARGUMENT, "Illegal cidr value '{}'",
953
0
                                std::to_string(prefix));
954
0
            }
955
3
            const auto address = addr.value_at(i);
956
3
            apply_cidr_mask(reinterpret_cast<const char*>(&address),
957
3
                            reinterpret_cast<char*>(&lower[i]), reinterpret_cast<char*>(&upper[i]),
958
3
                            cast_set<UInt8>(prefix));
959
3
        }
960
1
    }
Unexecuted instantiation: _ZN5doris23FunctionIPv6CIDRToRange12execute_implILb0EEEvRKNS_10ColumnViewILNS_13PrimitiveTypeE37EEERKNS2_ILS3_4EEEmRNS_8PODArrayIoLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb1EEELm16ELm15EEESF_PNSA_IhLm4096ESD_Lm16ELm15EEE
961
962
    template <bool ResultNullable>
963
    static void execute_impl(const ColumnView<TYPE_STRING>& addr,
964
                             const ColumnView<TYPE_SMALLINT>& cidr, size_t input_rows_count,
965
                             ColumnIPv6::Container& lower, ColumnIPv6::Container& upper,
966
2
                             ColumnUInt8::Container* nulls) {
967
2
        static constexpr UInt8 max_cidr_mask = IPV6_BINARY_LENGTH * 8;
968
5
        for (size_t i = 0; i < input_rows_count; ++i) {
969
3
            if constexpr (ResultNullable) {
970
3
                if (addr.is_null_at(i) || cidr.is_null_at(i)) {
971
1
                    (*nulls)[i] = 1;
972
1
                    continue;
973
1
                }
974
3
            }
975
2
            const auto prefix = cidr.value_at(i);
976
3
            if (prefix < 0 || prefix > max_cidr_mask) {
977
0
                throw Exception(ErrorCode::INVALID_ARGUMENT, "Illegal cidr value '{}'",
978
0
                                std::to_string(prefix));
979
0
            }
980
3
            const auto value = addr.value_at(i);
981
3
            if (value.size == 0) {
982
0
                throw Exception(ErrorCode::INVALID_ARGUMENT, "Invalid IPv6 value");
983
0
            }
984
3
            IPv6 address = 0;
985
3
            Int64 parsed_ipv4 = 0;
986
3
            bool parsed = false;
987
3
            if (try_parse_ipv4(value.begin(), value.end(), parsed_ipv4)) {
988
0
                map_ipv4_to_ipv6(static_cast<IPv4>(parsed_ipv4),
989
0
                                 reinterpret_cast<UInt8*>(&address));
990
0
                parsed = true;
991
3
            } else {
992
3
                parsed = parse_ipv6_whole(value.begin(), value.end(),
993
3
                                          reinterpret_cast<UInt8*>(&address));
994
3
            }
995
3
            if (!parsed) {
996
1
                throw Exception(ErrorCode::INVALID_ARGUMENT, "Invalid IPv6 value");
997
1
            }
998
2
            apply_cidr_mask(reinterpret_cast<const char*>(&address),
999
2
                            reinterpret_cast<char*>(&lower[i]), reinterpret_cast<char*>(&upper[i]),
1000
2
                            cast_set<UInt8>(prefix));
1001
2
        }
1002
2
    }
_ZN5doris23FunctionIPv6CIDRToRange12execute_implILb1EEEvRKNS_10ColumnViewILNS_13PrimitiveTypeE23EEERKNS2_ILS3_4EEEmRNS_8PODArrayIoLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb1EEELm16ELm15EEESF_PNSA_IhLm4096ESD_Lm16ELm15EEE
Line
Count
Source
966
2
                             ColumnUInt8::Container* nulls) {
967
2
        static constexpr UInt8 max_cidr_mask = IPV6_BINARY_LENGTH * 8;
968
5
        for (size_t i = 0; i < input_rows_count; ++i) {
969
3
            if constexpr (ResultNullable) {
970
3
                if (addr.is_null_at(i) || cidr.is_null_at(i)) {
971
1
                    (*nulls)[i] = 1;
972
1
                    continue;
973
1
                }
974
3
            }
975
2
            const auto prefix = cidr.value_at(i);
976
3
            if (prefix < 0 || prefix > max_cidr_mask) {
977
0
                throw Exception(ErrorCode::INVALID_ARGUMENT, "Illegal cidr value '{}'",
978
0
                                std::to_string(prefix));
979
0
            }
980
3
            const auto value = addr.value_at(i);
981
3
            if (value.size == 0) {
982
0
                throw Exception(ErrorCode::INVALID_ARGUMENT, "Invalid IPv6 value");
983
0
            }
984
3
            IPv6 address = 0;
985
3
            Int64 parsed_ipv4 = 0;
986
3
            bool parsed = false;
987
3
            if (try_parse_ipv4(value.begin(), value.end(), parsed_ipv4)) {
988
0
                map_ipv4_to_ipv6(static_cast<IPv4>(parsed_ipv4),
989
0
                                 reinterpret_cast<UInt8*>(&address));
990
0
                parsed = true;
991
3
            } else {
992
3
                parsed = parse_ipv6_whole(value.begin(), value.end(),
993
3
                                          reinterpret_cast<UInt8*>(&address));
994
3
            }
995
3
            if (!parsed) {
996
1
                throw Exception(ErrorCode::INVALID_ARGUMENT, "Invalid IPv6 value");
997
1
            }
998
2
            apply_cidr_mask(reinterpret_cast<const char*>(&address),
999
2
                            reinterpret_cast<char*>(&lower[i]), reinterpret_cast<char*>(&upper[i]),
1000
2
                            cast_set<UInt8>(prefix));
1001
2
        }
1002
2
    }
Unexecuted instantiation: _ZN5doris23FunctionIPv6CIDRToRange12execute_implILb0EEEvRKNS_10ColumnViewILNS_13PrimitiveTypeE23EEERKNS2_ILS3_4EEEmRNS_8PODArrayIoLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb1EEELm16ELm15EEESF_PNSA_IhLm4096ESD_Lm16ELm15EEE
1003
};
1004
1005
class FunctionIsIPv4Compat : public IFunction {
1006
public:
1007
    static constexpr auto name = "is_ipv4_compat";
1008
7
    static FunctionPtr create() { return std::make_shared<FunctionIsIPv4Compat>(); }
1009
1010
1
    String get_name() const override { return name; }
1011
1012
5
    size_t get_number_of_arguments() const override { return 1; }
1013
1014
5
    DataTypePtr get_return_type_impl(const DataTypes& arguments) const override {
1015
5
        return std::make_shared<DataTypeUInt8>();
1016
5
    }
1017
1018
    Status execute_impl(FunctionContext* context, Block& block, const ColumnNumbers& arguments,
1019
5
                        uint32_t result, size_t input_rows_count) const override {
1020
5
        const ColumnPtr& column = block.get_by_position(arguments[0]).column;
1021
5
        const auto* col_in = assert_cast<const ColumnString*>(column.get());
1022
1023
5
        size_t col_size = col_in->size();
1024
5
        auto col_res = ColumnUInt8::create(col_size, 0);
1025
5
        auto& col_res_data = col_res->get_data();
1026
1027
13
        for (size_t i = 0; i < col_size; ++i) {
1028
8
            const auto address = col_in->get_data_at(i);
1029
8
            if (is_ipv4_compat(address)) {
1030
2
                col_res_data[i] = 1;
1031
2
            }
1032
8
        }
1033
1034
5
        block.replace_by_position(result, std::move(col_res));
1035
5
        return Status::OK();
1036
5
    }
1037
1038
private:
1039
8
    static bool is_ipv4_compat(const StringRef& address) {
1040
8
        return address.size == IPV6_BINARY_LENGTH && (LittleEndian::Load64(address.data) == 0) &&
1041
8
               (LittleEndian::Load32(address.data + 8) == 0) &&
1042
8
               (LittleEndian::Load32(address.data + 12) != 0);
1043
8
    }
1044
};
1045
1046
class FunctionIsIPv4Mapped : public IFunction {
1047
public:
1048
    static constexpr auto name = "is_ipv4_mapped";
1049
7
    static FunctionPtr create() { return std::make_shared<FunctionIsIPv4Mapped>(); }
1050
1051
1
    String get_name() const override { return name; }
1052
1053
5
    size_t get_number_of_arguments() const override { return 1; }
1054
1055
5
    DataTypePtr get_return_type_impl(const DataTypes& arguments) const override {
1056
5
        return std::make_shared<DataTypeUInt8>();
1057
5
    }
1058
1059
    Status execute_impl(FunctionContext* context, Block& block, const ColumnNumbers& arguments,
1060
5
                        uint32_t result, size_t input_rows_count) const override {
1061
5
        const ColumnPtr& column = block.get_by_position(arguments[0]).column;
1062
5
        const auto* col_in = assert_cast<const ColumnString*>(column.get());
1063
1064
5
        size_t col_size = col_in->size();
1065
5
        auto col_res = ColumnUInt8::create(col_size, 0);
1066
5
        auto& col_res_data = col_res->get_data();
1067
1068
13
        for (size_t i = 0; i < col_size; ++i) {
1069
8
            const auto address = col_in->get_data_at(i);
1070
8
            if (is_ipv4_mapped(address)) {
1071
2
                col_res_data[i] = 1;
1072
2
            }
1073
8
        }
1074
1075
5
        block.replace_by_position(result, std::move(col_res));
1076
5
        return Status::OK();
1077
5
    }
1078
1079
private:
1080
8
    static bool is_ipv4_mapped(const StringRef& address) {
1081
8
        return address.size == IPV6_BINARY_LENGTH && (LittleEndian::Load64(address.data) == 0) &&
1082
8
               ((LittleEndian::Load64(address.data + 8) & 0x00000000FFFFFFFFULL) ==
1083
2
                0x00000000FFFF0000ULL);
1084
8
    }
1085
};
1086
1087
template <IPConvertExceptionMode exception_mode, PrimitiveType PType>
1088
0
inline constexpr auto to_ip_func_name() {
1089
0
    if constexpr (PType == TYPE_IPV4) {
1090
0
        return exception_mode == IPConvertExceptionMode::Throw
1091
0
                       ? "to_ipv4"
1092
0
                       : (exception_mode == IPConvertExceptionMode::Default ? "to_ipv4_or_default"
1093
0
                                                                            : "to_ipv4_or_null");
1094
0
    } else {
1095
0
        return exception_mode == IPConvertExceptionMode::Throw
1096
0
                       ? "to_ipv6"
1097
0
                       : (exception_mode == IPConvertExceptionMode::Default ? "to_ipv6_or_default"
1098
0
                                                                            : "to_ipv6_or_null");
1099
0
    }
1100
0
}
Unexecuted instantiation: _ZN5doris15to_ip_func_nameILNS_22IPConvertExceptionModeE0ELNS_13PrimitiveTypeE36EEEDav
Unexecuted instantiation: _ZN5doris15to_ip_func_nameILNS_22IPConvertExceptionModeE1ELNS_13PrimitiveTypeE36EEEDav
Unexecuted instantiation: _ZN5doris15to_ip_func_nameILNS_22IPConvertExceptionModeE2ELNS_13PrimitiveTypeE36EEEDav
Unexecuted instantiation: _ZN5doris15to_ip_func_nameILNS_22IPConvertExceptionModeE0ELNS_13PrimitiveTypeE37EEEDav
Unexecuted instantiation: _ZN5doris15to_ip_func_nameILNS_22IPConvertExceptionModeE1ELNS_13PrimitiveTypeE37EEEDav
Unexecuted instantiation: _ZN5doris15to_ip_func_nameILNS_22IPConvertExceptionModeE2ELNS_13PrimitiveTypeE37EEEDav
1101
1102
template <IPConvertExceptionMode exception_mode, PrimitiveType PType>
1103
class FunctionToIP : public IFunction {
1104
    static_assert(is_ip(PType));
1105
1106
public:
1107
    static constexpr auto name = to_ip_func_name<exception_mode, PType>();
1108
1109
12
    static FunctionPtr create() { return std::make_shared<FunctionToIP<exception_mode, PType>>(); }
_ZN5doris12FunctionToIPILNS_22IPConvertExceptionModeE0ELNS_13PrimitiveTypeE36EE6createEv
Line
Count
Source
1109
2
    static FunctionPtr create() { return std::make_shared<FunctionToIP<exception_mode, PType>>(); }
_ZN5doris12FunctionToIPILNS_22IPConvertExceptionModeE1ELNS_13PrimitiveTypeE36EE6createEv
Line
Count
Source
1109
2
    static FunctionPtr create() { return std::make_shared<FunctionToIP<exception_mode, PType>>(); }
_ZN5doris12FunctionToIPILNS_22IPConvertExceptionModeE2ELNS_13PrimitiveTypeE36EE6createEv
Line
Count
Source
1109
2
    static FunctionPtr create() { return std::make_shared<FunctionToIP<exception_mode, PType>>(); }
_ZN5doris12FunctionToIPILNS_22IPConvertExceptionModeE0ELNS_13PrimitiveTypeE37EE6createEv
Line
Count
Source
1109
2
    static FunctionPtr create() { return std::make_shared<FunctionToIP<exception_mode, PType>>(); }
_ZN5doris12FunctionToIPILNS_22IPConvertExceptionModeE1ELNS_13PrimitiveTypeE37EE6createEv
Line
Count
Source
1109
2
    static FunctionPtr create() { return std::make_shared<FunctionToIP<exception_mode, PType>>(); }
_ZN5doris12FunctionToIPILNS_22IPConvertExceptionModeE2ELNS_13PrimitiveTypeE37EE6createEv
Line
Count
Source
1109
2
    static FunctionPtr create() { return std::make_shared<FunctionToIP<exception_mode, PType>>(); }
1110
1111
6
    String get_name() const override { return name; }
_ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE0ELNS_13PrimitiveTypeE36EE8get_nameB5cxx11Ev
Line
Count
Source
1111
1
    String get_name() const override { return name; }
_ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE1ELNS_13PrimitiveTypeE36EE8get_nameB5cxx11Ev
Line
Count
Source
1111
1
    String get_name() const override { return name; }
_ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE2ELNS_13PrimitiveTypeE36EE8get_nameB5cxx11Ev
Line
Count
Source
1111
1
    String get_name() const override { return name; }
_ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE0ELNS_13PrimitiveTypeE37EE8get_nameB5cxx11Ev
Line
Count
Source
1111
1
    String get_name() const override { return name; }
_ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE1ELNS_13PrimitiveTypeE37EE8get_nameB5cxx11Ev
Line
Count
Source
1111
1
    String get_name() const override { return name; }
_ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE2ELNS_13PrimitiveTypeE37EE8get_nameB5cxx11Ev
Line
Count
Source
1111
1
    String get_name() const override { return name; }
1112
1113
0
    size_t get_number_of_arguments() const override { return 1; }
Unexecuted instantiation: _ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE0ELNS_13PrimitiveTypeE36EE23get_number_of_argumentsEv
Unexecuted instantiation: _ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE1ELNS_13PrimitiveTypeE36EE23get_number_of_argumentsEv
Unexecuted instantiation: _ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE2ELNS_13PrimitiveTypeE36EE23get_number_of_argumentsEv
Unexecuted instantiation: _ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE0ELNS_13PrimitiveTypeE37EE23get_number_of_argumentsEv
Unexecuted instantiation: _ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE1ELNS_13PrimitiveTypeE37EE23get_number_of_argumentsEv
Unexecuted instantiation: _ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE2ELNS_13PrimitiveTypeE37EE23get_number_of_argumentsEv
1114
1115
0
    DataTypePtr get_return_type_impl(const DataTypes& arguments) const override {
1116
0
        DataTypePtr result_type;
1117
1118
0
        if constexpr (PType == TYPE_IPV4) {
1119
0
            result_type = std::make_shared<DataTypeIPv4>();
1120
0
        } else {
1121
0
            result_type = std::make_shared<DataTypeIPv6>();
1122
0
        }
1123
1124
0
        if constexpr (exception_mode == IPConvertExceptionMode::Null) {
1125
0
            return make_nullable(result_type);
1126
0
        } else {
1127
0
            return result_type;
1128
0
        }
1129
0
    }
Unexecuted instantiation: _ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE0ELNS_13PrimitiveTypeE36EE20get_return_type_implERKSt6vectorISt10shared_ptrIKNS_9IDataTypeEESaIS8_EE
Unexecuted instantiation: _ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE1ELNS_13PrimitiveTypeE36EE20get_return_type_implERKSt6vectorISt10shared_ptrIKNS_9IDataTypeEESaIS8_EE
Unexecuted instantiation: _ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE2ELNS_13PrimitiveTypeE36EE20get_return_type_implERKSt6vectorISt10shared_ptrIKNS_9IDataTypeEESaIS8_EE
Unexecuted instantiation: _ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE0ELNS_13PrimitiveTypeE37EE20get_return_type_implERKSt6vectorISt10shared_ptrIKNS_9IDataTypeEESaIS8_EE
Unexecuted instantiation: _ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE1ELNS_13PrimitiveTypeE37EE20get_return_type_implERKSt6vectorISt10shared_ptrIKNS_9IDataTypeEESaIS8_EE
Unexecuted instantiation: _ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE2ELNS_13PrimitiveTypeE37EE20get_return_type_implERKSt6vectorISt10shared_ptrIKNS_9IDataTypeEESaIS8_EE
1130
1131
0
    bool use_default_implementation_for_nulls() const override { return false; }
Unexecuted instantiation: _ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE0ELNS_13PrimitiveTypeE36EE36use_default_implementation_for_nullsEv
Unexecuted instantiation: _ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE1ELNS_13PrimitiveTypeE36EE36use_default_implementation_for_nullsEv
Unexecuted instantiation: _ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE2ELNS_13PrimitiveTypeE36EE36use_default_implementation_for_nullsEv
Unexecuted instantiation: _ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE0ELNS_13PrimitiveTypeE37EE36use_default_implementation_for_nullsEv
Unexecuted instantiation: _ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE1ELNS_13PrimitiveTypeE37EE36use_default_implementation_for_nullsEv
Unexecuted instantiation: _ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE2ELNS_13PrimitiveTypeE37EE36use_default_implementation_for_nullsEv
1132
1133
    Status execute_impl(FunctionContext* context, Block& block, const ColumnNumbers& arguments,
1134
0
                        uint32_t result, size_t input_rows_count) const override {
1135
0
        const auto& addr_column_with_type_and_name = block.get_by_position(arguments[0]);
1136
0
        const ColumnPtr& addr_column = addr_column_with_type_and_name.column;
1137
0
        const ColumnString* str_addr_column = nullptr;
1138
0
        const NullMap* addr_null_map = nullptr;
1139
1140
0
        if (addr_column_with_type_and_name.type->is_nullable()) {
1141
0
            const auto* addr_column_nullable =
1142
0
                    assert_cast<const ColumnNullable*>(addr_column.get());
1143
0
            str_addr_column = assert_cast<const ColumnString*>(
1144
0
                    addr_column_nullable->get_nested_column_ptr().get());
1145
0
            addr_null_map = &addr_column_nullable->get_null_map_data();
1146
0
        } else {
1147
0
            str_addr_column = assert_cast<const ColumnString*>(addr_column.get());
1148
0
        }
1149
1150
0
        auto col_res = ColumnVector<PType>::create(input_rows_count, 0);
1151
0
        auto res_null_map = ColumnUInt8::create(input_rows_count, 0);
1152
0
        auto& col_res_data = col_res->get_data();
1153
0
        auto& res_null_map_data = res_null_map->get_data();
1154
1155
0
        for (size_t i = 0; i < input_rows_count; ++i) {
1156
0
            if (addr_null_map && (*addr_null_map)[i]) {
1157
0
                if constexpr (exception_mode == IPConvertExceptionMode::Throw) {
1158
0
                    throw Exception(ErrorCode::INVALID_ARGUMENT,
1159
0
                                    "The arguments of function {} must be String, not NULL",
1160
0
                                    get_name());
1161
0
                } else if constexpr (exception_mode == IPConvertExceptionMode::Default) {
1162
0
                    col_res_data[i] = 0; // '0.0.0.0' or '::'
1163
0
                    continue;
1164
0
                } else {
1165
0
                    res_null_map_data[i] = 1;
1166
0
                    continue;
1167
0
                }
1168
0
            }
1169
1170
0
            if constexpr (PType == TYPE_IPV4) {
1171
0
                StringRef ipv4_str = str_addr_column->get_data_at(i);
1172
0
                IPv4 ipv4_val = 0;
1173
0
                if (IPv4Value::from_string(ipv4_val, ipv4_str.data, ipv4_str.size)) {
1174
0
                    col_res_data[i] = ipv4_val;
1175
0
                } else {
1176
0
                    if constexpr (exception_mode == IPConvertExceptionMode::Throw) {
1177
0
                        throw Exception(ErrorCode::INVALID_ARGUMENT, "Invalid IPv4 value '{}'",
1178
0
                                        ipv4_str.to_string_view());
1179
0
                    } else if constexpr (exception_mode == IPConvertExceptionMode::Default) {
1180
0
                        col_res_data[i] = 0; // '0.0.0.0'
1181
0
                    } else {
1182
0
                        res_null_map_data[i] = 1;
1183
0
                    }
1184
0
                }
1185
0
            } else {
1186
0
                StringRef ipv6_str = str_addr_column->get_data_at(i);
1187
0
                IPv6 ipv6_val = 0;
1188
0
                if (IPv6Value::from_string(ipv6_val, ipv6_str.data, ipv6_str.size)) {
1189
0
                    col_res_data[i] = ipv6_val;
1190
0
                } else {
1191
0
                    if constexpr (exception_mode == IPConvertExceptionMode::Throw) {
1192
0
                        throw Exception(ErrorCode::INVALID_ARGUMENT, "Invalid IPv6 value '{}'",
1193
0
                                        ipv6_str.to_string_view());
1194
0
                    } else if constexpr (exception_mode == IPConvertExceptionMode::Default) {
1195
0
                        col_res_data[i] = 0; // '::'
1196
0
                    } else if constexpr (exception_mode == IPConvertExceptionMode::Null) {
1197
0
                        res_null_map_data[i] = 1;
1198
0
                    }
1199
0
                }
1200
0
            }
1201
0
        }
1202
1203
0
        if constexpr (exception_mode == IPConvertExceptionMode::Null) {
1204
0
            block.replace_by_position(
1205
0
                    result, ColumnNullable::create(std::move(col_res), std::move(res_null_map)));
1206
0
        } else {
1207
0
            block.replace_by_position(result, std::move(col_res));
1208
0
        }
1209
1210
0
        return Status::OK();
1211
0
    }
Unexecuted instantiation: _ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE0ELNS_13PrimitiveTypeE36EE12execute_implEPNS_15FunctionContextERNS_5BlockERKSt6vectorIjSaIjEEjm
Unexecuted instantiation: _ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE1ELNS_13PrimitiveTypeE36EE12execute_implEPNS_15FunctionContextERNS_5BlockERKSt6vectorIjSaIjEEjm
Unexecuted instantiation: _ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE2ELNS_13PrimitiveTypeE36EE12execute_implEPNS_15FunctionContextERNS_5BlockERKSt6vectorIjSaIjEEjm
Unexecuted instantiation: _ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE0ELNS_13PrimitiveTypeE37EE12execute_implEPNS_15FunctionContextERNS_5BlockERKSt6vectorIjSaIjEEjm
Unexecuted instantiation: _ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE1ELNS_13PrimitiveTypeE37EE12execute_implEPNS_15FunctionContextERNS_5BlockERKSt6vectorIjSaIjEEjm
Unexecuted instantiation: _ZNK5doris12FunctionToIPILNS_22IPConvertExceptionModeE2ELNS_13PrimitiveTypeE37EE12execute_implEPNS_15FunctionContextERNS_5BlockERKSt6vectorIjSaIjEEjm
1212
};
1213
1214
class FunctionIPv4ToIPv6 : public IFunction {
1215
public:
1216
    static constexpr auto name = "ipv4_to_ipv6";
1217
3
    static FunctionPtr create() { return std::make_shared<FunctionIPv4ToIPv6>(); }
1218
1219
1
    String get_name() const override { return name; }
1220
1221
1
    size_t get_number_of_arguments() const override { return 1; }
1222
1223
1
    DataTypePtr get_return_type_impl(const DataTypes& arguments) const override {
1224
1
        return std::make_shared<DataTypeIPv6>();
1225
1
    }
1226
1227
    Status execute_impl(FunctionContext* context, Block& block, const ColumnNumbers& arguments,
1228
1
                        uint32_t result, size_t input_rows_count) const override {
1229
1
        const auto& ipv4_column_with_type_and_name = block.get_by_position(arguments[0]);
1230
1
        const auto& [ipv4_column, ipv4_const] =
1231
1
                unpack_if_const(ipv4_column_with_type_and_name.column);
1232
1
        const auto* ipv4_addr_column = assert_cast<const ColumnIPv4*>(ipv4_column.get());
1233
1
        const auto& ipv4_column_data = ipv4_addr_column->get_data();
1234
1
        auto col_res = ColumnIPv6::create(input_rows_count, 0);
1235
1
        auto& col_res_data = col_res->get_data();
1236
1237
7
        for (size_t i = 0; i < input_rows_count; ++i) {
1238
6
            auto ipv4_idx = index_check_const(i, ipv4_const);
1239
6
            map_ipv4_to_ipv6(ipv4_column_data[ipv4_idx],
1240
6
                             reinterpret_cast<UInt8*>(&col_res_data[i]));
1241
6
        }
1242
1243
1
        block.replace_by_position(result, std::move(col_res));
1244
1
        return Status::OK();
1245
1
    }
1246
};
1247
1248
class FunctionCutIPv6 : public IFunction {
1249
public:
1250
    static constexpr auto name = "cut_ipv6";
1251
4
    static FunctionPtr create() { return std::make_shared<FunctionCutIPv6>(); }
1252
1253
1
    String get_name() const override { return name; }
1254
1255
2
    size_t get_number_of_arguments() const override { return 3; }
1256
1257
3
    DataTypePtr get_return_type_impl(const DataTypes& arguments) const override {
1258
3
        DataTypePtr result = std::make_shared<DataTypeString>();
1259
3
        if (arguments[0]->is_nullable() || arguments[1]->is_nullable() ||
1260
3
            arguments[2]->is_nullable()) {
1261
3
            return make_nullable(result);
1262
3
        }
1263
0
        return result;
1264
3
    }
1265
1266
4
    bool use_default_implementation_for_nulls() const override { return false; }
1267
1268
    Status execute_impl(FunctionContext* context, Block& block, const ColumnNumbers& arguments,
1269
3
                        uint32_t result, size_t input_rows_count) const override {
1270
3
        const auto& ipv6_column_with_type_and_name = block.get_by_position(arguments[0]);
1271
3
        const auto& bytes_to_cut_for_ipv6_column_with_type_and_name =
1272
3
                block.get_by_position(arguments[1]);
1273
3
        const auto& bytes_to_cut_for_ipv4_column_with_type_and_name =
1274
3
                block.get_by_position(arguments[2]);
1275
1276
3
        const auto ipv6 = ColumnView<TYPE_IPV6>::create(ipv6_column_with_type_and_name.column);
1277
3
        const auto bytes_to_cut_for_ipv6 = ColumnView<TYPE_TINYINT>::create(
1278
3
                bytes_to_cut_for_ipv6_column_with_type_and_name.column);
1279
3
        const auto bytes_to_cut_for_ipv4 = ColumnView<TYPE_TINYINT>::create(
1280
3
                bytes_to_cut_for_ipv4_column_with_type_and_name.column);
1281
1282
3
        auto col_res = ColumnString::create();
1283
3
        ColumnString::Chars& chars_res = col_res->get_chars();
1284
3
        ColumnString::Offsets& offsets_res = col_res->get_offsets();
1285
3
        chars_res.resize(input_rows_count * (IPV6_MAX_TEXT_LENGTH + 1)); // + 1 for ending '\0'
1286
3
        offsets_res.resize(input_rows_count);
1287
3
        const bool result_nullable = block.get_by_position(result).type->is_nullable();
1288
3
        ColumnUInt8::MutablePtr null_map;
1289
3
        if (result_nullable) {
1290
3
            null_map = ColumnUInt8::create(input_rows_count, 0);
1291
3
        }
1292
3
        auto* begin = reinterpret_cast<char*>(chars_res.data());
1293
3
        auto* pos = begin;
1294
1295
3
        if (result_nullable) {
1296
3
            execute_impl<true>(
1297
3
                    ipv6, bytes_to_cut_for_ipv6, bytes_to_cut_for_ipv4, input_rows_count,
1298
3
                    offsets_res, begin, pos, bytes_to_cut_for_ipv6_column_with_type_and_name.type,
1299
3
                    bytes_to_cut_for_ipv4_column_with_type_and_name.type, &null_map->get_data());
1300
3
        } else {
1301
0
            execute_impl<false>(ipv6, bytes_to_cut_for_ipv6, bytes_to_cut_for_ipv4,
1302
0
                                input_rows_count, offsets_res, begin, pos,
1303
0
                                bytes_to_cut_for_ipv6_column_with_type_and_name.type,
1304
0
                                bytes_to_cut_for_ipv4_column_with_type_and_name.type, nullptr);
1305
0
        }
1306
1307
3
        chars_res.resize(offsets_res[offsets_res.size() - 1]);
1308
1309
3
        if (result_nullable) {
1310
3
            block.replace_by_position(
1311
3
                    result, ColumnNullable::create(std::move(col_res), std::move(null_map)));
1312
3
        } else {
1313
0
            block.replace_by_position(result, std::move(col_res));
1314
0
        }
1315
3
        return Status::OK();
1316
3
    }
1317
1318
private:
1319
    template <bool ResultNullable>
1320
    void execute_impl(const ColumnView<TYPE_IPV6>& ipv6,
1321
                      const ColumnView<TYPE_TINYINT>& bytes_to_cut_for_ipv6,
1322
                      const ColumnView<TYPE_TINYINT>& bytes_to_cut_for_ipv4,
1323
                      size_t input_rows_count, ColumnString::Offsets& offsets_res, char* begin,
1324
                      char*& pos, const DataTypePtr& bytes_to_cut_for_ipv6_type,
1325
                      const DataTypePtr& bytes_to_cut_for_ipv4_type,
1326
3
                      ColumnUInt8::Container* nulls) const {
1327
19
        for (size_t i = 0; i < input_rows_count; ++i) {
1328
14
            if constexpr (ResultNullable) {
1329
14
                if (ipv6.is_null_at(i) || bytes_to_cut_for_ipv6.is_null_at(i) ||
1330
14
                    bytes_to_cut_for_ipv4.is_null_at(i)) {
1331
2
                    (*nulls)[i] = 1;
1332
2
                    offsets_res[i] = cast_set<uint32_t>(pos - begin);
1333
2
                    continue;
1334
2
                }
1335
14
            }
1336
            // Convert from Doris little-endian storage before formatting in big-endian order.
1337
12
            auto val_128 = ipv6.value_at(i);
1338
14
            auto* address = reinterpret_cast<unsigned char*>(&val_128);
1339
14
            const Int8 bytes_to_cut_for_ipv6_count = bytes_to_cut_for_ipv6.value_at(i);
1340
14
            const Int8 bytes_to_cut_for_ipv4_count = bytes_to_cut_for_ipv4.value_at(i);
1341
1342
14
            if (bytes_to_cut_for_ipv6_count > IPV6_BINARY_LENGTH) [[unlikely]] {
1343
0
                throw Exception(ErrorCode::INVALID_ARGUMENT,
1344
0
                                "Illegal value for argument 2 {} of function {}",
1345
0
                                bytes_to_cut_for_ipv6_type->get_name(), get_name());
1346
0
            }
1347
14
            if (bytes_to_cut_for_ipv4_count > IPV6_BINARY_LENGTH) [[unlikely]] {
1348
0
                throw Exception(ErrorCode::INVALID_ARGUMENT,
1349
0
                                "Illegal value for argument 3 {} of function {}",
1350
0
                                bytes_to_cut_for_ipv4_type->get_name(), get_name());
1351
0
            }
1352
1353
14
            const UInt8 bytes_to_cut_count = is_ipv4_mapped(address) ? bytes_to_cut_for_ipv4_count
1354
14
                                                                     : bytes_to_cut_for_ipv6_count;
1355
14
            cut_address(address, pos, bytes_to_cut_count);
1356
14
            offsets_res[i] = cast_set<uint32_t>(pos - begin);
1357
14
        }
1358
3
    }
_ZNK5doris15FunctionCutIPv612execute_implILb1EEEvRKNS_10ColumnViewILNS_13PrimitiveTypeE37EEERKNS2_ILS3_3EEES9_mRNS_8PODArrayIjLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb1EEELm16ELm15EEEPcRSG_RKSt10shared_ptrIKNS_9IDataTypeEESN_PNSA_IhLm4096ESD_Lm16ELm15EEE
Line
Count
Source
1326
3
                      ColumnUInt8::Container* nulls) const {
1327
19
        for (size_t i = 0; i < input_rows_count; ++i) {
1328
14
            if constexpr (ResultNullable) {
1329
14
                if (ipv6.is_null_at(i) || bytes_to_cut_for_ipv6.is_null_at(i) ||
1330
14
                    bytes_to_cut_for_ipv4.is_null_at(i)) {
1331
2
                    (*nulls)[i] = 1;
1332
2
                    offsets_res[i] = cast_set<uint32_t>(pos - begin);
1333
2
                    continue;
1334
2
                }
1335
14
            }
1336
            // Convert from Doris little-endian storage before formatting in big-endian order.
1337
12
            auto val_128 = ipv6.value_at(i);
1338
14
            auto* address = reinterpret_cast<unsigned char*>(&val_128);
1339
14
            const Int8 bytes_to_cut_for_ipv6_count = bytes_to_cut_for_ipv6.value_at(i);
1340
14
            const Int8 bytes_to_cut_for_ipv4_count = bytes_to_cut_for_ipv4.value_at(i);
1341
1342
14
            if (bytes_to_cut_for_ipv6_count > IPV6_BINARY_LENGTH) [[unlikely]] {
1343
0
                throw Exception(ErrorCode::INVALID_ARGUMENT,
1344
0
                                "Illegal value for argument 2 {} of function {}",
1345
0
                                bytes_to_cut_for_ipv6_type->get_name(), get_name());
1346
0
            }
1347
14
            if (bytes_to_cut_for_ipv4_count > IPV6_BINARY_LENGTH) [[unlikely]] {
1348
0
                throw Exception(ErrorCode::INVALID_ARGUMENT,
1349
0
                                "Illegal value for argument 3 {} of function {}",
1350
0
                                bytes_to_cut_for_ipv4_type->get_name(), get_name());
1351
0
            }
1352
1353
14
            const UInt8 bytes_to_cut_count = is_ipv4_mapped(address) ? bytes_to_cut_for_ipv4_count
1354
14
                                                                     : bytes_to_cut_for_ipv6_count;
1355
14
            cut_address(address, pos, bytes_to_cut_count);
1356
14
            offsets_res[i] = cast_set<uint32_t>(pos - begin);
1357
14
        }
1358
3
    }
Unexecuted instantiation: _ZNK5doris15FunctionCutIPv612execute_implILb0EEEvRKNS_10ColumnViewILNS_13PrimitiveTypeE37EEERKNS2_ILS3_3EEES9_mRNS_8PODArrayIjLm4096ENS_9AllocatorILb0ELb0ELb0ENS_22DefaultMemoryAllocatorELb1EEELm16ELm15EEEPcRSG_RKSt10shared_ptrIKNS_9IDataTypeEESN_PNSA_IhLm4096ESD_Lm16ELm15EEE
1359
1360
12
    static bool is_ipv4_mapped(const UInt8* address) {
1361
12
        return (LittleEndian::Load64(address + 8) == 0) &&
1362
12
               ((LittleEndian::Load64(address) & 0xFFFFFFFF00000000ULL) == 0x0000FFFF00000000ULL);
1363
12
    }
1364
1365
12
    static void cut_address(unsigned char* address, char*& dst, UInt8 zeroed_tail_bytes_count) {
1366
12
        format_ipv6(address, dst, zeroed_tail_bytes_count);
1367
12
    }
1368
};
1369
1370
class FunctionIPv6FromUInt128StringOrNull : public IFunction {
1371
public:
1372
    static constexpr auto name = "ipv6_from_uint128_string_or_null";
1373
2
    static FunctionPtr create() { return std::make_shared<FunctionIPv6FromUInt128StringOrNull>(); }
1374
1375
1
    String get_name() const override { return name; }
1376
1377
0
    size_t get_number_of_arguments() const override { return 1; }
1378
1379
0
    DataTypePtr get_return_type_impl(const DataTypes& arguments) const override {
1380
0
        return std::make_shared<DataTypeNullable>(std::make_shared<DataTypeIPv6>());
1381
0
    }
1382
1383
    Status execute_impl(FunctionContext* context, Block& block, const ColumnNumbers& arguments,
1384
0
                        uint32_t result, size_t input_rows_count) const override {
1385
0
        const auto& ipv6_column_with_type_and_name = block.get_by_position(arguments[0]);
1386
0
        const auto& [ipv6_column, ipv6_const] =
1387
0
                unpack_if_const(ipv6_column_with_type_and_name.column);
1388
0
        const auto* ipv6_addr_column = assert_cast<const ColumnString*>(ipv6_column.get());
1389
        // result is nullable column
1390
0
        auto col_res_nested = ColumnIPv6::create(input_rows_count, 0);
1391
0
        auto col_res_null_map = ColumnUInt8::create(input_rows_count, 1);
1392
0
        auto& col_res_data = col_res_nested->get_data();
1393
0
        auto& res_null_map_data = col_res_null_map->get_data();
1394
1395
0
        for (size_t i = 0; i < input_rows_count; ++i) {
1396
0
            IPv6 ipv6 = 0;
1397
0
            auto ipv6_idx = index_check_const(i, ipv6_const);
1398
0
            StringRef uint128_string = ipv6_addr_column->get_data_at(ipv6_idx);
1399
0
            if (!IPv6Value::from_uint128_string(ipv6, uint128_string.data, uint128_string.size)) {
1400
0
                VLOG_DEBUG << "Invalid uin128 IPv6 value '" << uint128_string.to_string_view()
1401
0
                           << "'";
1402
                // we should set null to the result not throw exception for load senior
1403
0
            } else {
1404
0
                col_res_data[i] = ipv6;
1405
0
                res_null_map_data[i] = 0;
1406
0
            }
1407
0
        }
1408
1409
0
        block.replace_by_position(result, ColumnNullable::create(std::move(col_res_nested),
1410
0
                                                                 std::move(col_res_null_map)));
1411
0
        return Status::OK();
1412
0
    }
1413
};
1414
1415
} // namespace doris