Coverage Report

Created: 2026-07-28 14:56

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
be/src/exec/common/int_exp.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/Common/IntExp.h
19
// and modified by Doris
20
21
#pragma once
22
23
#include <cstdint>
24
#include <limits>
25
#include <utility>
26
27
#include "core/extended_types.h"
28
29
namespace exp_details {
30
31
// compile-time exp(v, n) by linear recursion
32
template <typename T, T v, std::size_t n>
33
constexpr inline const T exp = T(v) * exp<T, v, n - 1>;
34
35
template <typename T, T v>
36
constexpr inline const T exp<T, v, 0> = 1;
37
38
// compile-time exponentiation table { exp(v, I) ... }
39
template <typename T, T v, std::size_t... I>
40
constexpr inline const T exp_table[] = {exp<T, v, I>...};
41
42
// get value from compile-time exponentiation table by a (maybe) runtime offset
43
template <typename T, T v, std::size_t... I>
44
12.4M
constexpr T get_exp_helper(std::size_t x, std::index_sequence<I...>) {
45
12.4M
    return exp_table<T, v, I...>[x];
46
12.4M
}
47
48
// get_exp_helper with table { exp(v, 0), exp(v, 1) ... exp(v, N - 1) }
49
template <typename T, T v, std::size_t N>
50
12.4M
constexpr T get_exp(std::size_t x) {
51
12.4M
    return get_exp_helper<T, v>(x, std::make_index_sequence<N> {});
52
12.4M
}
53
54
} // namespace exp_details
55
56
12.4M
inline uint64_t int_exp10(int x) {
57
12.4M
    if (x < 0) {
58
0
        return 0;
59
0
    }
60
12.4M
    if (x > 19) {
61
2
        return std::numeric_limits<uint64_t>::max();
62
2
    }
63
64
12.4M
    return exp_details::get_exp<uint64_t, 10, 20>(x);
65
12.4M
}
66
67
namespace common {
68
69
12.5M
constexpr inline int exp10_i32(int x) {
70
12.5M
    if (x < 0) {
71
218
        return 0;
72
218
    }
73
12.5M
    if (x > 9) {
74
838
        return std::numeric_limits<int>::max();
75
838
    }
76
77
12.5M
    constexpr int values[] = {1,      10,      100,      1000,      10000,
78
12.5M
                              100000, 1000000, 10000000, 100000000, 1000000000};
79
12.5M
    return values[x];
80
12.5M
}
81
82
102M
constexpr inline int64_t exp10_i64(int x) {
83
102M
    if (x < 0) {
84
212
        return 0;
85
212
    }
86
102M
    if (x > 18) {
87
142
        return std::numeric_limits<int64_t>::max();
88
142
    }
89
90
102M
    constexpr int64_t values[] = {1LL,
91
102M
                                  10LL,
92
102M
                                  100LL,
93
102M
                                  1000LL,
94
102M
                                  10000LL,
95
102M
                                  100000LL,
96
102M
                                  1000000LL,
97
102M
                                  10000000LL,
98
102M
                                  100000000LL,
99
102M
                                  1000000000LL,
100
102M
                                  10000000000LL,
101
102M
                                  100000000000LL,
102
102M
                                  1000000000000LL,
103
102M
                                  10000000000000LL,
104
102M
                                  100000000000000LL,
105
102M
                                  1000000000000000LL,
106
102M
                                  10000000000000000LL,
107
102M
                                  100000000000000000LL,
108
102M
                                  1000000000000000000LL};
109
102M
    return values[x];
110
102M
}
111
112
47.2M
constexpr inline __int128 exp10_i128(int x) {
113
47.2M
    if (x < 0) {
114
288
        return 0;
115
288
    }
116
47.2M
    if (x > 38) {
117
77
        return std::numeric_limits<__int128>::max();
118
77
    }
119
120
47.2M
    constexpr __int128 values[] = {
121
47.2M
            static_cast<__int128>(1LL),
122
47.2M
            static_cast<__int128>(10LL),
123
47.2M
            static_cast<__int128>(100LL),
124
47.2M
            static_cast<__int128>(1000LL),
125
47.2M
            static_cast<__int128>(10000LL),
126
47.2M
            static_cast<__int128>(100000LL),
127
47.2M
            static_cast<__int128>(1000000LL),
128
47.2M
            static_cast<__int128>(10000000LL),
129
47.2M
            static_cast<__int128>(100000000LL),
130
47.2M
            static_cast<__int128>(1000000000LL),
131
47.2M
            static_cast<__int128>(10000000000LL),
132
47.2M
            static_cast<__int128>(100000000000LL),
133
47.2M
            static_cast<__int128>(1000000000000LL),
134
47.2M
            static_cast<__int128>(10000000000000LL),
135
47.2M
            static_cast<__int128>(100000000000000LL),
136
47.2M
            static_cast<__int128>(1000000000000000LL),
137
47.2M
            static_cast<__int128>(10000000000000000LL),
138
47.2M
            static_cast<__int128>(100000000000000000LL),
139
47.2M
            static_cast<__int128>(1000000000000000000LL),
140
47.2M
            static_cast<__int128>(1000000000000000000LL) * 10LL,
141
47.2M
            static_cast<__int128>(1000000000000000000LL) * 100LL,
142
47.2M
            static_cast<__int128>(1000000000000000000LL) * 1000LL,
143
47.2M
            static_cast<__int128>(1000000000000000000LL) * 10000LL,
144
47.2M
            static_cast<__int128>(1000000000000000000LL) * 100000LL,
145
47.2M
            static_cast<__int128>(1000000000000000000LL) * 1000000LL,
146
47.2M
            static_cast<__int128>(1000000000000000000LL) * 10000000LL,
147
47.2M
            static_cast<__int128>(1000000000000000000LL) * 100000000LL,
148
47.2M
            static_cast<__int128>(1000000000000000000LL) * 1000000000LL,
149
47.2M
            static_cast<__int128>(1000000000000000000LL) * 10000000000LL,
150
47.2M
            static_cast<__int128>(1000000000000000000LL) * 100000000000LL,
151
47.2M
            static_cast<__int128>(1000000000000000000LL) * 1000000000000LL,
152
47.2M
            static_cast<__int128>(1000000000000000000LL) * 10000000000000LL,
153
47.2M
            static_cast<__int128>(1000000000000000000LL) * 100000000000000LL,
154
47.2M
            static_cast<__int128>(1000000000000000000LL) * 1000000000000000LL,
155
47.2M
            static_cast<__int128>(1000000000000000000LL) * 10000000000000000LL,
156
47.2M
            static_cast<__int128>(1000000000000000000LL) * 100000000000000000LL,
157
47.2M
            static_cast<__int128>(1000000000000000000LL) * 100000000000000000LL * 10LL,
158
47.2M
            static_cast<__int128>(1000000000000000000LL) * 100000000000000000LL * 100LL,
159
47.2M
            static_cast<__int128>(1000000000000000000LL) * 100000000000000000LL * 1000LL};
160
47.2M
    return values[x];
161
47.2M
}
162
163
643k
constexpr inline wide::Int256 exp10_i256(int x) {
164
643k
    if (x < 0) {
165
212
        return 0;
166
212
    }
167
642k
    if (x > 76) {
168
126
        return std::numeric_limits<wide::Int256>::max();
169
126
    }
170
171
642k
    constexpr wide::Int256 i10e18 {1000000000000000000LL};
172
642k
    constexpr wide::Int256 values[] = {
173
642k
            static_cast<wide::Int256>(1LL),
174
642k
            static_cast<wide::Int256>(10LL),
175
642k
            static_cast<wide::Int256>(100LL),
176
642k
            static_cast<wide::Int256>(1000LL),
177
642k
            static_cast<wide::Int256>(10000LL),
178
642k
            static_cast<wide::Int256>(100000LL),
179
642k
            static_cast<wide::Int256>(1000000LL),
180
642k
            static_cast<wide::Int256>(10000000LL),
181
642k
            static_cast<wide::Int256>(100000000LL),
182
642k
            static_cast<wide::Int256>(1000000000LL),
183
642k
            static_cast<wide::Int256>(10000000000LL),
184
642k
            static_cast<wide::Int256>(100000000000LL),
185
642k
            static_cast<wide::Int256>(1000000000000LL),
186
642k
            static_cast<wide::Int256>(10000000000000LL),
187
642k
            static_cast<wide::Int256>(100000000000000LL),
188
642k
            static_cast<wide::Int256>(1000000000000000LL),
189
642k
            static_cast<wide::Int256>(10000000000000000LL),
190
642k
            static_cast<wide::Int256>(100000000000000000LL),
191
642k
            i10e18,
192
642k
            i10e18 * 10LL,
193
642k
            i10e18 * 100LL,
194
642k
            i10e18 * 1000LL,
195
642k
            i10e18 * 10000LL,
196
642k
            i10e18 * 100000LL,
197
642k
            i10e18 * 1000000LL,
198
642k
            i10e18 * 10000000LL,
199
642k
            i10e18 * 100000000LL,
200
642k
            i10e18 * 1000000000LL,
201
642k
            i10e18 * 10000000000LL,
202
642k
            i10e18 * 100000000000LL,
203
642k
            i10e18 * 1000000000000LL,
204
642k
            i10e18 * 10000000000000LL,
205
642k
            i10e18 * 100000000000000LL,
206
642k
            i10e18 * 1000000000000000LL,
207
642k
            i10e18 * 10000000000000000LL,
208
642k
            i10e18 * 100000000000000000LL,
209
642k
            i10e18 * 100000000000000000LL * 10LL,
210
642k
            i10e18 * 100000000000000000LL * 100LL,
211
642k
            i10e18 * 100000000000000000LL * 1000LL,
212
642k
            i10e18 * 100000000000000000LL * 10000LL,
213
642k
            i10e18 * 100000000000000000LL * 100000LL,
214
642k
            i10e18 * 100000000000000000LL * 1000000LL,
215
642k
            i10e18 * 100000000000000000LL * 10000000LL,
216
642k
            i10e18 * 100000000000000000LL * 100000000LL,
217
642k
            i10e18 * 100000000000000000LL * 1000000000LL,
218
642k
            i10e18 * 100000000000000000LL * 10000000000LL,
219
642k
            i10e18 * 100000000000000000LL * 100000000000LL,
220
642k
            i10e18 * 100000000000000000LL * 1000000000000LL,
221
642k
            i10e18 * 100000000000000000LL * 10000000000000LL,
222
642k
            i10e18 * 100000000000000000LL * 100000000000000LL,
223
642k
            i10e18 * 100000000000000000LL * 1000000000000000LL,
224
642k
            i10e18 * 100000000000000000LL * 10000000000000000LL,
225
642k
            i10e18 * 100000000000000000LL * 100000000000000000LL,
226
642k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 10LL,
227
642k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 100LL,
228
642k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 1000LL,
229
642k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 10000LL,
230
642k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 100000LL,
231
642k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 1000000LL,
232
642k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 10000000LL,
233
642k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 100000000LL,
234
642k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 1000000000LL,
235
642k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 10000000000LL,
236
642k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 100000000000LL,
237
642k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 1000000000000LL,
238
642k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 10000000000000LL,
239
642k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 100000000000000LL,
240
642k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 1000000000000000LL,
241
642k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 10000000000000000LL,
242
642k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 100000000000000000LL,
243
642k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 100000000000000000LL * 10LL,
244
642k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 100000000000000000LL * 100LL,
245
642k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 100000000000000000LL * 1000LL,
246
642k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 100000000000000000LL * 10000LL,
247
642k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 100000000000000000LL * 100000LL,
248
642k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 100000000000000000LL * 1000000LL,
249
642k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 100000000000000000LL *
250
642k
                    10000000LL,
251
642k
    };
252
642k
    return values[x];
253
642k
}
254
255
9.35k
constexpr inline int max_i32(int digit_count) {
256
9.35k
    if (digit_count < 0) {
257
0
        return 0;
258
0
    }
259
9.35k
    if (digit_count > 9) {
260
0
        return std::numeric_limits<int>::max();
261
0
    }
262
9.35k
    constexpr int values[] = {0, 9, 99, 999, 9999, 99999, 999999, 9999999, 99999999, 999999999};
263
9.35k
    return values[digit_count];
264
9.35k
}
265
266
39.8k
constexpr inline int64_t max_i64(int digit_count) {
267
39.8k
    if (digit_count < 0) {
268
0
        return 0;
269
0
    }
270
39.8k
    if (digit_count > 18) {
271
0
        return std::numeric_limits<int64_t>::max();
272
0
    }
273
274
39.8k
    constexpr int64_t values[] = {1LL,
275
39.8k
                                  9LL,
276
39.8k
                                  99LL,
277
39.8k
                                  999LL,
278
39.8k
                                  9999LL,
279
39.8k
                                  99999LL,
280
39.8k
                                  999999LL,
281
39.8k
                                  9999999LL,
282
39.8k
                                  99999999LL,
283
39.8k
                                  999999999LL,
284
39.8k
                                  9999999999LL,
285
39.8k
                                  99999999999LL,
286
39.8k
                                  999999999999LL,
287
39.8k
                                  9999999999999LL,
288
39.8k
                                  99999999999999LL,
289
39.8k
                                  999999999999999LL,
290
39.8k
                                  9999999999999999LL,
291
39.8k
                                  99999999999999999LL,
292
39.8k
                                  999999999999999999LL};
293
39.8k
    return values[digit_count];
294
39.8k
}
295
296
403
constexpr inline int count_digits_fast(int64_t n) {
297
403
    uint64_t abs_n = (n < 0 ? uint64_t(-n) : uint64_t(n));
298
403
    if (abs_n == 0) [[unlikely]] {
299
39
        return 1;
300
39
    }
301
302
364
    int bits = 64 - __builtin_clzll(abs_n);
303
364
    int d = (bits * 1233) >> 12;
304
305
364
    if (abs_n < int_exp10(d)) {
306
40
        --d;
307
324
    } else if (abs_n >= int_exp10(d + 1)) {
308
0
        ++d;
309
0
    }
310
311
364
    return d + 1;
312
403
}
313
314
32.0k
constexpr inline __int128 max_i128(int digit_count) {
315
32.0k
    DCHECK(digit_count > 0);
316
32.0k
    constexpr __int128 values[] = {
317
32.0k
            static_cast<__int128>(0LL),
318
32.0k
            static_cast<__int128>(9LL),
319
32.0k
            static_cast<__int128>(99LL),
320
32.0k
            static_cast<__int128>(999LL),
321
32.0k
            static_cast<__int128>(9999LL),
322
32.0k
            static_cast<__int128>(99999LL),
323
32.0k
            static_cast<__int128>(999999LL),
324
32.0k
            static_cast<__int128>(9999999LL),
325
32.0k
            static_cast<__int128>(99999999LL),
326
32.0k
            static_cast<__int128>(999999999LL),
327
32.0k
            static_cast<__int128>(9999999999LL),
328
32.0k
            static_cast<__int128>(99999999999LL),
329
32.0k
            static_cast<__int128>(999999999999LL),
330
32.0k
            static_cast<__int128>(9999999999999LL),
331
32.0k
            static_cast<__int128>(99999999999999LL),
332
32.0k
            static_cast<__int128>(999999999999999LL),
333
32.0k
            static_cast<__int128>(9999999999999999LL),
334
32.0k
            static_cast<__int128>(99999999999999999LL),
335
32.0k
            static_cast<__int128>(999999999999999999LL),
336
32.0k
            static_cast<__int128>(1000000000000000000LL) * 10LL - 1,
337
32.0k
            static_cast<__int128>(1000000000000000000LL) * 100LL - 1,
338
32.0k
            static_cast<__int128>(1000000000000000000LL) * 1000LL - 1,
339
32.0k
            static_cast<__int128>(1000000000000000000LL) * 10000LL - 1,
340
32.0k
            static_cast<__int128>(1000000000000000000LL) * 100000LL - 1,
341
32.0k
            static_cast<__int128>(1000000000000000000LL) * 1000000LL - 1,
342
32.0k
            static_cast<__int128>(1000000000000000000LL) * 10000000LL - 1,
343
32.0k
            static_cast<__int128>(1000000000000000000LL) * 100000000LL - 1,
344
32.0k
            static_cast<__int128>(1000000000000000000LL) * 1000000000LL - 1,
345
32.0k
            static_cast<__int128>(1000000000000000000LL) * 10000000000LL - 1,
346
32.0k
            static_cast<__int128>(1000000000000000000LL) * 100000000000LL - 1,
347
32.0k
            static_cast<__int128>(1000000000000000000LL) * 1000000000000LL - 1,
348
32.0k
            static_cast<__int128>(1000000000000000000LL) * 10000000000000LL - 1,
349
32.0k
            static_cast<__int128>(1000000000000000000LL) * 100000000000000LL - 1,
350
32.0k
            static_cast<__int128>(1000000000000000000LL) * 1000000000000000LL - 1,
351
32.0k
            static_cast<__int128>(1000000000000000000LL) * 10000000000000000LL - 1,
352
32.0k
            static_cast<__int128>(1000000000000000000LL) * 100000000000000000LL - 1,
353
32.0k
            static_cast<__int128>(1000000000000000000LL) * 100000000000000000LL * 10LL - 1,
354
32.0k
            static_cast<__int128>(1000000000000000000LL) * 100000000000000000LL * 100LL - 1,
355
32.0k
            static_cast<__int128>(1000000000000000000LL) * 100000000000000000LL * 1000LL - 1};
356
32.0k
    return values[digit_count];
357
32.0k
}
358
359
5.56k
constexpr inline wide::Int256 max_i256(int digit_count) {
360
5.56k
    if (digit_count < 0) {
361
0
        return 0;
362
0
    }
363
5.56k
    if (digit_count > 76) {
364
0
        return std::numeric_limits<wide::Int256>::max();
365
0
    }
366
367
5.56k
    constexpr wide::Int256 i10e18 {1000000000000000000LL};
368
5.56k
    constexpr wide::Int256 values[] = {
369
5.56k
            static_cast<wide::Int256>(0LL),
370
5.56k
            static_cast<wide::Int256>(9LL),
371
5.56k
            static_cast<wide::Int256>(99LL),
372
5.56k
            static_cast<wide::Int256>(999LL),
373
5.56k
            static_cast<wide::Int256>(9999LL),
374
5.56k
            static_cast<wide::Int256>(99999LL),
375
5.56k
            static_cast<wide::Int256>(999999LL),
376
5.56k
            static_cast<wide::Int256>(9999999LL),
377
5.56k
            static_cast<wide::Int256>(99999999LL),
378
5.56k
            static_cast<wide::Int256>(999999999LL),
379
5.56k
            static_cast<wide::Int256>(9999999999LL),
380
5.56k
            static_cast<wide::Int256>(99999999999LL),
381
5.56k
            static_cast<wide::Int256>(999999999999LL),
382
5.56k
            static_cast<wide::Int256>(9999999999999LL),
383
5.56k
            static_cast<wide::Int256>(99999999999999LL),
384
5.56k
            static_cast<wide::Int256>(999999999999999LL),
385
5.56k
            static_cast<wide::Int256>(9999999999999999LL),
386
5.56k
            static_cast<wide::Int256>(99999999999999999LL),
387
5.56k
            i10e18 - 1,
388
5.56k
            i10e18 * 10LL - 1,
389
5.56k
            i10e18 * 100LL - 1,
390
5.56k
            i10e18 * 1000LL - 1,
391
5.56k
            i10e18 * 10000LL - 1,
392
5.56k
            i10e18 * 100000LL - 1,
393
5.56k
            i10e18 * 1000000LL - 1,
394
5.56k
            i10e18 * 10000000LL - 1,
395
5.56k
            i10e18 * 100000000LL - 1,
396
5.56k
            i10e18 * 1000000000LL - 1,
397
5.56k
            i10e18 * 10000000000LL - 1,
398
5.56k
            i10e18 * 100000000000LL - 1,
399
5.56k
            i10e18 * 1000000000000LL - 1,
400
5.56k
            i10e18 * 10000000000000LL - 1,
401
5.56k
            i10e18 * 100000000000000LL - 1,
402
5.56k
            i10e18 * 1000000000000000LL - 1,
403
5.56k
            i10e18 * 10000000000000000LL - 1,
404
5.56k
            i10e18 * 100000000000000000LL - 1,
405
5.56k
            i10e18 * 100000000000000000LL * 10LL - 1,
406
5.56k
            i10e18 * 100000000000000000LL * 100LL - 1,
407
5.56k
            i10e18 * 100000000000000000LL * 1000LL - 1,
408
5.56k
            i10e18 * 100000000000000000LL * 10000LL - 1,
409
5.56k
            i10e18 * 100000000000000000LL * 100000LL - 1,
410
5.56k
            i10e18 * 100000000000000000LL * 1000000LL - 1,
411
5.56k
            i10e18 * 100000000000000000LL * 10000000LL - 1,
412
5.56k
            i10e18 * 100000000000000000LL * 100000000LL - 1,
413
5.56k
            i10e18 * 100000000000000000LL * 1000000000LL - 1,
414
5.56k
            i10e18 * 100000000000000000LL * 10000000000LL - 1,
415
5.56k
            i10e18 * 100000000000000000LL * 100000000000LL - 1,
416
5.56k
            i10e18 * 100000000000000000LL * 1000000000000LL - 1,
417
5.56k
            i10e18 * 100000000000000000LL * 10000000000000LL - 1,
418
5.56k
            i10e18 * 100000000000000000LL * 100000000000000LL - 1,
419
5.56k
            i10e18 * 100000000000000000LL * 1000000000000000LL - 1,
420
5.56k
            i10e18 * 100000000000000000LL * 10000000000000000LL - 1,
421
5.56k
            i10e18 * 100000000000000000LL * 100000000000000000LL - 1,
422
5.56k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 10LL - 1,
423
5.56k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 100LL - 1,
424
5.56k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 1000LL - 1,
425
5.56k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 10000LL - 1,
426
5.56k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 100000LL - 1,
427
5.56k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 1000000LL - 1,
428
5.56k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 10000000LL - 1,
429
5.56k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 100000000LL - 1,
430
5.56k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 1000000000LL - 1,
431
5.56k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 10000000000LL - 1,
432
5.56k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 100000000000LL - 1,
433
5.56k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 1000000000000LL - 1,
434
5.56k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 10000000000000LL - 1,
435
5.56k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 100000000000000LL - 1,
436
5.56k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 1000000000000000LL - 1,
437
5.56k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 10000000000000000LL - 1,
438
5.56k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 100000000000000000LL - 1,
439
5.56k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 100000000000000000LL * 10LL - 1,
440
5.56k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 100000000000000000LL * 100LL - 1,
441
5.56k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 100000000000000000LL * 1000LL -
442
5.56k
                    1,
443
5.56k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 100000000000000000LL * 10000LL -
444
5.56k
                    1,
445
5.56k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 100000000000000000LL * 100000LL -
446
5.56k
                    1,
447
5.56k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 100000000000000000LL *
448
5.56k
                            1000000LL -
449
5.56k
                    1,
450
5.56k
            i10e18 * 100000000000000000LL * 100000000000000000LL * 100000000000000000LL *
451
5.56k
                            10000000LL -
452
5.56k
                    1,
453
5.56k
    };
454
5.56k
    return values[digit_count];
455
5.56k
}
456
} // namespace common