common.h 27.5 KB
Newer Older
1
2
3
4
/*!
 * Copyright (c) 2016 Microsoft Corporation. All rights reserved.
 * Licensed under the MIT License. See LICENSE file in the project root for license information.
 */
Guolin Ke's avatar
Guolin Ke committed
5
6
7
#ifndef LIGHTGBM_UTILS_COMMON_FUN_H_
#define LIGHTGBM_UTILS_COMMON_FUN_H_

8
9
10
#include <LightGBM/utils/log.h>
#include <LightGBM/utils/openmp_wrapper.h>

11
#include <limits>
Guolin Ke's avatar
Guolin Ke committed
12
#include <string>
13
#include <algorithm>
14
#include <chrono>
15
#include <cmath>
16
17
#include <cstdint>
#include <cstdio>
Guolin Ke's avatar
Guolin Ke committed
18
#include <functional>
19
#include <iomanip>
20
#include <iterator>
21
#include <map>
22
23
#include <memory>
#include <sstream>
Guolin Ke's avatar
Guolin Ke committed
24
#include <type_traits>
25
#include <unordered_map>
26
27
#include <utility>
#include <vector>
Guolin Ke's avatar
Guolin Ke committed
28

29
30
31
32
33
#ifdef _MSC_VER
#include <intrin.h>
#pragma intrinsic(_BitScanReverse)
#endif

34
#if defined(_MSC_VER)
35
36
37
38
39
40
41
42
43
44
45
#include <malloc.h>
#elif MM_MALLOC
#include <mm_malloc.h>
#elif defined(__GNUC__)
#include <malloc.h>
#define _mm_malloc(a, b) memalign(b, a)
#define _mm_free(a) free(a)
#else
#include <stdlib.h>
#define _mm_malloc(a, b) malloc(a)
#define _mm_free(a) free(a)
46
47
#endif

Guolin Ke's avatar
Guolin Ke committed
48
49
50
51
namespace LightGBM {

namespace Common {

52
inline static char tolower(char in) {
Guolin Ke's avatar
Guolin Ke committed
53
54
55
56
57
  if (in <= 'Z' && in >= 'A')
    return in - ('Z' - 'z');
  return in;
}

58
inline static std::string Trim(std::string str) {
Guolin Ke's avatar
Guolin Ke committed
59
  if (str.empty()) {
Guolin Ke's avatar
Guolin Ke committed
60
61
62
63
64
65
66
    return str;
  }
  str.erase(str.find_last_not_of(" \f\n\r\t\v") + 1);
  str.erase(0, str.find_first_not_of(" \f\n\r\t\v"));
  return str;
}

67
inline static std::string RemoveQuotationSymbol(std::string str) {
Guolin Ke's avatar
Guolin Ke committed
68
  if (str.empty()) {
69
70
71
72
73
74
    return str;
  }
  str.erase(str.find_last_not_of("'\"") + 1);
  str.erase(0, str.find_first_not_of("'\""));
  return str;
}
Guolin Ke's avatar
Guolin Ke committed
75

Guolin Ke's avatar
Guolin Ke committed
76
77
78
79
80
81
82
inline static bool StartsWith(const std::string& str, const std::string prefix) {
  if (str.substr(0, prefix.size()) == prefix) {
    return true;
  } else {
    return false;
  }
}
Guolin Ke's avatar
Guolin Ke committed
83

Guolin Ke's avatar
Guolin Ke committed
84
inline static std::vector<std::string> Split(const char* c_str, char delimiter) {
Guolin Ke's avatar
Guolin Ke committed
85
  std::vector<std::string> ret;
Guolin Ke's avatar
Guolin Ke committed
86
87
  std::string str(c_str);
  size_t i = 0;
Guolin Ke's avatar
Guolin Ke committed
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
  size_t pos = 0;
  while (pos < str.length()) {
    if (str[pos] == delimiter) {
      if (i < pos) {
        ret.push_back(str.substr(i, pos - i));
      }
      ++pos;
      i = pos;
    } else {
      ++pos;
    }
  }
  if (i < pos) {
    ret.push_back(str.substr(i));
  }
  return ret;
}

inline static std::vector<std::string> SplitLines(const char* c_str) {
  std::vector<std::string> ret;
  std::string str(c_str);
  size_t i = 0;
  size_t pos = 0;
  while (pos < str.length()) {
    if (str[pos] == '\n' || str[pos] == '\r') {
      if (i < pos) {
        ret.push_back(str.substr(i, pos - i));
      }
      // skip the line endings
      while (str[pos] == '\n' || str[pos] == '\r') ++pos;
      // new begin
      i = pos;
    } else {
      ++pos;
    }
  }
  if (i < pos) {
    ret.push_back(str.substr(i));
Guolin Ke's avatar
Guolin Ke committed
126
127
128
129
  }
  return ret;
}

Guolin Ke's avatar
Guolin Ke committed
130
131
132
133
inline static std::vector<std::string> Split(const char* c_str, const char* delimiters) {
  std::vector<std::string> ret;
  std::string str(c_str);
  size_t i = 0;
Guolin Ke's avatar
Guolin Ke committed
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
  size_t pos = 0;
  while (pos < str.length()) {
    bool met_delimiters = false;
    for (int j = 0; delimiters[j] != '\0'; ++j) {
      if (str[pos] == delimiters[j]) {
        met_delimiters = true;
        break;
      }
    }
    if (met_delimiters) {
      if (i < pos) {
        ret.push_back(str.substr(i, pos - i));
      }
      ++pos;
      i = pos;
    } else {
      ++pos;
    }
  }
  if (i < pos) {
    ret.push_back(str.substr(i));
Guolin Ke's avatar
Guolin Ke committed
155
156
157
158
  }
  return ret;
}

159
160
161
162
template<typename T>
inline static const char* Atoi(const char* p, T* out) {
  int sign;
  T value;
Guolin Ke's avatar
Guolin Ke committed
163
164
165
166
167
168
169
  while (*p == ' ') {
    ++p;
  }
  sign = 1;
  if (*p == '-') {
    sign = -1;
    ++p;
170
  } else if (*p == '+') {
Guolin Ke's avatar
Guolin Ke committed
171
172
173
174
175
    ++p;
  }
  for (value = 0; *p >= '0' && *p <= '9'; ++p) {
    value = value * 10 + (*p - '0');
  }
176
  *out = static_cast<T>(sign * value);
Guolin Ke's avatar
Guolin Ke committed
177
178
179
180
181
182
  while (*p == ' ') {
    ++p;
  }
  return p;
}

183
template<typename T>
184
185
186
187
188
189
190
191
192
193
194
195
196
197
inline static double Pow(T base, int power) {
  if (power < 0) {
    return 1.0 / Pow(base, -power);
  } else if (power == 0) {
    return 1;
  } else if (power % 2 == 0) {
    return Pow(base*base, power / 2);
  } else if (power % 3 == 0) {
    return Pow(base*base*base, power / 3);
  } else {
    return base * Pow(base, power - 1);
  }
}

198
inline static const char* Atof(const char* p, double* out) {
Guolin Ke's avatar
Guolin Ke committed
199
  int frac;
200
  double sign, value, scale;
Guolin Ke's avatar
Guolin Ke committed
201
  *out = NAN;
Guolin Ke's avatar
Guolin Ke committed
202
203
204
205
206
  // Skip leading white space, if any.
  while (*p == ' ') {
    ++p;
  }
  // Get sign, if any.
207
  sign = 1.0;
Guolin Ke's avatar
Guolin Ke committed
208
  if (*p == '-') {
209
    sign = -1.0;
Guolin Ke's avatar
Guolin Ke committed
210
    ++p;
211
  } else if (*p == '+') {
Guolin Ke's avatar
Guolin Ke committed
212
213
214
    ++p;
  }

Guolin Ke's avatar
Guolin Ke committed
215
216
217
  // is a number
  if ((*p >= '0' && *p <= '9') || *p == '.' || *p == 'e' || *p == 'E') {
    // Get digits before decimal point or exponent, if any.
218
219
    for (value = 0.0; *p >= '0' && *p <= '9'; ++p) {
      value = value * 10.0 + (*p - '0');
Guolin Ke's avatar
Guolin Ke committed
220
    }
Guolin Ke's avatar
Guolin Ke committed
221

Guolin Ke's avatar
Guolin Ke committed
222
223
    // Get digits after decimal point, if any.
    if (*p == '.') {
224
225
      double right = 0.0;
      int nn = 0;
Guolin Ke's avatar
Guolin Ke committed
226
      ++p;
Guolin Ke's avatar
Guolin Ke committed
227
      while (*p >= '0' && *p <= '9') {
228
229
        right = (*p - '0') + right * 10.0;
        ++nn;
Guolin Ke's avatar
Guolin Ke committed
230
231
        ++p;
      }
232
      value += right / Pow(10.0, nn);
Guolin Ke's avatar
Guolin Ke committed
233
234
    }

Guolin Ke's avatar
Guolin Ke committed
235
236
    // Handle exponent, if any.
    frac = 0;
237
    scale = 1.0;
Guolin Ke's avatar
Guolin Ke committed
238
    if ((*p == 'e') || (*p == 'E')) {
Guolin Ke's avatar
Guolin Ke committed
239
      uint32_t expon;
Guolin Ke's avatar
Guolin Ke committed
240
      // Get sign of exponent, if any.
Guolin Ke's avatar
Guolin Ke committed
241
      ++p;
Guolin Ke's avatar
Guolin Ke committed
242
243
244
245
246
247
248
249
250
251
      if (*p == '-') {
        frac = 1;
        ++p;
      } else if (*p == '+') {
        ++p;
      }
      // Get digits of exponent, if any.
      for (expon = 0; *p >= '0' && *p <= '9'; ++p) {
        expon = expon * 10 + (*p - '0');
      }
252
253
254
      if (expon > 308) expon = 308;
      // Calculate scaling factor.
      while (expon >= 50) { scale *= 1E50; expon -= 50; }
Guolin Ke's avatar
Guolin Ke committed
255
      while (expon >= 8) { scale *= 1E8;  expon -= 8; }
256
      while (expon > 0) { scale *= 10.0; expon -= 1; }
Guolin Ke's avatar
Guolin Ke committed
257
    }
Guolin Ke's avatar
Guolin Ke committed
258
259
260
    // Return signed and scaled floating point result.
    *out = sign * (frac ? (value / scale) : (value * scale));
  } else {
261
    size_t cnt = 0;
262
    while (*(p + cnt) != '\0' && *(p + cnt) != ' '
263
264
265
           && *(p + cnt) != '\t' && *(p + cnt) != ','
           && *(p + cnt) != '\n' && *(p + cnt) != '\r'
           && *(p + cnt) != ':') {
266
267
      ++cnt;
    }
268
    if (cnt > 0) {
Guolin Ke's avatar
Guolin Ke committed
269
      std::string tmp_str(p, cnt);
Guolin Ke's avatar
Guolin Ke committed
270
      std::transform(tmp_str.begin(), tmp_str.end(), tmp_str.begin(), Common::tolower);
zhangjin's avatar
zhangjin committed
271
272
      if (tmp_str == std::string("na") || tmp_str == std::string("nan") ||
          tmp_str == std::string("null")) {
Guolin Ke's avatar
Guolin Ke committed
273
        *out = NAN;
274
      } else if (tmp_str == std::string("inf") || tmp_str == std::string("infinity")) {
275
        *out = sign * 1e308;
276
      } else {
277
        Log::Fatal("Unknown token %s in data file", tmp_str.c_str());
Guolin Ke's avatar
Guolin Ke committed
278
279
      }
      p += cnt;
280
    }
Guolin Ke's avatar
Guolin Ke committed
281
  }
Guolin Ke's avatar
Guolin Ke committed
282

Guolin Ke's avatar
Guolin Ke committed
283
284
285
  while (*p == ' ') {
    ++p;
  }
Guolin Ke's avatar
Guolin Ke committed
286

Guolin Ke's avatar
Guolin Ke committed
287
288
289
  return p;
}

290
inline static bool AtoiAndCheck(const char* p, int* out) {
291
292
293
294
295
296
297
  const char* after = Atoi(p, out);
  if (*after != '\0') {
    return false;
  }
  return true;
}

298
inline static bool AtofAndCheck(const char* p, double* out) {
299
300
301
302
303
304
305
  const char* after = Atof(p, out);
  if (*after != '\0') {
    return false;
  }
  return true;
}

306
307
308
309
310
311
312
313
314
315
316
317
318
319
320
inline static unsigned CountDecimalDigit32(uint32_t n) {
#if defined(_MSC_VER) || defined(__GNUC__)
  static const uint32_t powers_of_10[] = {
    0,
    10,
    100,
    1000,
    10000,
    100000,
    1000000,
    10000000,
    100000000,
    1000000000
  };
#ifdef _MSC_VER
Guolin Ke's avatar
Guolin Ke committed
321
  // NOLINTNEXTLINE
322
323
324
325
326
327
328
329
330
331
332
333
334
335
336
337
338
339
340
341
342
343
344
  unsigned long i = 0;
  _BitScanReverse(&i, n | 1);
  uint32_t t = (i + 1) * 1233 >> 12;
#elif __GNUC__
  uint32_t t = (32 - __builtin_clz(n | 1)) * 1233 >> 12;
#endif
  return t - (n < powers_of_10[t]) + 1;
#else
  if (n < 10) return 1;
  if (n < 100) return 2;
  if (n < 1000) return 3;
  if (n < 10000) return 4;
  if (n < 100000) return 5;
  if (n < 1000000) return 6;
  if (n < 10000000) return 7;
  if (n < 100000000) return 8;
  if (n < 1000000000) return 9;
  return 10;
#endif
}

inline static void Uint32ToStr(uint32_t value, char* buffer) {
  const char kDigitsLut[200] = {
345
346
347
348
349
350
351
352
353
354
    '0', '0', '0', '1', '0', '2', '0', '3', '0', '4', '0', '5', '0', '6', '0', '7', '0', '8', '0', '9',
    '1', '0', '1', '1', '1', '2', '1', '3', '1', '4', '1', '5', '1', '6', '1', '7', '1', '8', '1', '9',
    '2', '0', '2', '1', '2', '2', '2', '3', '2', '4', '2', '5', '2', '6', '2', '7', '2', '8', '2', '9',
    '3', '0', '3', '1', '3', '2', '3', '3', '3', '4', '3', '5', '3', '6', '3', '7', '3', '8', '3', '9',
    '4', '0', '4', '1', '4', '2', '4', '3', '4', '4', '4', '5', '4', '6', '4', '7', '4', '8', '4', '9',
    '5', '0', '5', '1', '5', '2', '5', '3', '5', '4', '5', '5', '5', '6', '5', '7', '5', '8', '5', '9',
    '6', '0', '6', '1', '6', '2', '6', '3', '6', '4', '6', '5', '6', '6', '6', '7', '6', '8', '6', '9',
    '7', '0', '7', '1', '7', '2', '7', '3', '7', '4', '7', '5', '7', '6', '7', '7', '7', '8', '7', '9',
    '8', '0', '8', '1', '8', '2', '8', '3', '8', '4', '8', '5', '8', '6', '8', '7', '8', '8', '8', '9',
    '9', '0', '9', '1', '9', '2', '9', '3', '9', '4', '9', '5', '9', '6', '9', '7', '9', '8', '9', '9'
355
356
357
358
359
360
361
362
363
364
365
366
367
  };
  unsigned digit = CountDecimalDigit32(value);
  buffer += digit;
  *buffer = '\0';

  while (value >= 100) {
    const unsigned i = (value % 100) << 1;
    value /= 100;
    *--buffer = kDigitsLut[i + 1];
    *--buffer = kDigitsLut[i];
  }

  if (value < 10) {
368
    *--buffer = static_cast<char>(value) + '0';
369
  } else {
370
371
372
373
374
375
376
377
378
379
380
381
382
383
384
    const unsigned i = value << 1;
    *--buffer = kDigitsLut[i + 1];
    *--buffer = kDigitsLut[i];
  }
}

inline static void Int32ToStr(int32_t value, char* buffer) {
  uint32_t u = static_cast<uint32_t>(value);
  if (value < 0) {
    *buffer++ = '-';
    u = ~u + 1;
  }
  Uint32ToStr(u, buffer);
}

385
inline static void DoubleToStr(double value, char* buffer, size_t buffer_len) {
386
  #ifdef _MSC_VER
387
  int num_chars = sprintf_s(buffer, buffer_len, "%.17g", value);
388
  #else
389
  int num_chars = snprintf(buffer, buffer_len, "%.17g", value);
390
  #endif
391
  CHECK_GE(num_chars, 0);
392
393
}

Guolin Ke's avatar
Guolin Ke committed
394
395
396
397
398
399
400
401
402
403
404
405
406
407
inline static const char* SkipSpaceAndTab(const char* p) {
  while (*p == ' ' || *p == '\t') {
    ++p;
  }
  return p;
}

inline static const char* SkipReturn(const char* p) {
  while (*p == '\n' || *p == '\r' || *p == ' ') {
    ++p;
  }
  return p;
}

Guolin Ke's avatar
Guolin Ke committed
408
409
template<typename T, typename T2>
inline static std::vector<T2> ArrayCast(const std::vector<T>& arr) {
410
  std::vector<T2> ret(arr.size());
Guolin Ke's avatar
Guolin Ke committed
411
  for (size_t i = 0; i < arr.size(); ++i) {
412
    ret[i] = static_cast<T2>(arr[i]);
Guolin Ke's avatar
Guolin Ke committed
413
  }
Guolin Ke's avatar
Guolin Ke committed
414
  return ret;
Guolin Ke's avatar
Guolin Ke committed
415
416
}

417
418
template<typename T, bool is_float, bool is_unsign>
struct __TToStringHelperFast {
419
  void operator()(T value, char* buffer, size_t) const {
420
421
422
423
424
425
    Int32ToStr(value, buffer);
  }
};

template<typename T>
struct __TToStringHelperFast<T, true, false> {
426
  void operator()(T value, char* buffer, size_t buf_len)
427
  const {
428
    #ifdef _MSC_VER
429
    int num_chars = sprintf_s(buffer, buf_len, "%g", value);
430
    #else
431
    int num_chars = snprintf(buffer, buf_len, "%g", value);
432
    #endif
433
    CHECK_GE(num_chars, 0);
434
435
436
437
438
  }
};

template<typename T>
struct __TToStringHelperFast<T, false, true> {
439
  void operator()(T value, char* buffer, size_t) const {
440
441
442
443
    Uint32ToStr(value, buffer);
  }
};

444
template<typename T>
445
446
inline static std::string ArrayToStringFast(const std::vector<T>& arr, size_t n) {
  if (arr.empty() || n == 0) {
447
    return std::string("");
Guolin Ke's avatar
Guolin Ke committed
448
  }
449
450
451
  __TToStringHelperFast<T, std::is_floating_point<T>::value, std::is_unsigned<T>::value> helper;
  const size_t buf_len = 16;
  std::vector<char> buffer(buf_len);
452
  std::stringstream str_buf;
453
454
455
456
457
  helper(arr[0], buffer.data(), buf_len);
  str_buf << buffer.data();
  for (size_t i = 1; i < std::min(n, arr.size()); ++i) {
    helper(arr[i], buffer.data(), buf_len);
    str_buf << ' ' << buffer.data();
Guolin Ke's avatar
Guolin Ke committed
458
  }
459
  return str_buf.str();
Guolin Ke's avatar
Guolin Ke committed
460
461
}

462
inline static std::string ArrayToString(const std::vector<double>& arr, size_t n) {
Guolin Ke's avatar
Guolin Ke committed
463
464
465
  if (arr.empty() || n == 0) {
    return std::string("");
  }
466
467
  const size_t buf_len = 32;
  std::vector<char> buffer(buf_len);
Guolin Ke's avatar
Guolin Ke committed
468
  std::stringstream str_buf;
469
470
  DoubleToStr(arr[0], buffer.data(), buf_len);
  str_buf << buffer.data();
Guolin Ke's avatar
Guolin Ke committed
471
  for (size_t i = 1; i < std::min(n, arr.size()); ++i) {
472
473
    DoubleToStr(arr[i], buffer.data(), buf_len);
    str_buf << ' ' << buffer.data();
Guolin Ke's avatar
Guolin Ke committed
474
475
476
477
  }
  return str_buf.str();
}

478
479
480
template<typename T, bool is_float>
struct __StringToTHelper {
  T operator()(const std::string& str) const {
481
482
483
    T ret = 0;
    Atoi(str.c_str(), &ret);
    return ret;
484
485
486
487
488
489
490
491
492
493
  }
};

template<typename T>
struct __StringToTHelper<T, true> {
  T operator()(const std::string& str) const {
    return static_cast<T>(std::stod(str));
  }
};

Guolin Ke's avatar
Guolin Ke committed
494
template<typename T>
495
inline static std::vector<T> StringToArray(const std::string& str, char delimiter) {
Guolin Ke's avatar
Guolin Ke committed
496
  std::vector<std::string> strs = Split(str.c_str(), delimiter);
497
498
  std::vector<T> ret;
  ret.reserve(strs.size());
499
  __StringToTHelper<T, std::is_floating_point<T>::value> helper;
500
501
  for (const auto& s : strs) {
    ret.push_back(helper(s));
Guolin Ke's avatar
Guolin Ke committed
502
503
504
505
  }
  return ret;
}

Guolin Ke's avatar
Guolin Ke committed
506
template<typename T>
507
508
509
510
511
inline static std::vector<T> StringToArray(const std::string& str, int n) {
  if (n == 0) {
    return std::vector<T>();
  }
  std::vector<std::string> strs = Split(str.c_str(), ' ');
Nikita Titov's avatar
Nikita Titov committed
512
  CHECK_EQ(strs.size(), static_cast<size_t>(n));
Guolin Ke's avatar
Guolin Ke committed
513
  std::vector<T> ret;
514
515
516
517
  ret.reserve(strs.size());
  __StringToTHelper<T, std::is_floating_point<T>::value> helper;
  for (const auto& s : strs) {
    ret.push_back(helper(s));
Guolin Ke's avatar
Guolin Ke committed
518
519
520
521
  }
  return ret;
}

522
523
524
525
526
527
528
529
530
531
532
533
template<typename T, bool is_float>
struct __StringToTHelperFast {
  const char* operator()(const char*p, T* out) const {
    return Atoi(p, out);
  }
};

template<typename T>
struct __StringToTHelperFast<T, true> {
  const char* operator()(const char*p, T* out) const {
    double tmp = 0.0f;
    auto ret = Atof(p, &tmp);
534
    *out = static_cast<T>(tmp);
535
536
537
538
539
540
541
542
543
544
545
546
547
548
549
550
551
552
    return ret;
  }
};

template<typename T>
inline static std::vector<T> StringToArrayFast(const std::string& str, int n) {
  if (n == 0) {
    return std::vector<T>();
  }
  auto p_str = str.c_str();
  __StringToTHelperFast<T, std::is_floating_point<T>::value> helper;
  std::vector<T> ret(n);
  for (int i = 0; i < n; ++i) {
    p_str = helper(p_str, &ret[i]);
  }
  return ret;
}

553
template<typename T>
Guolin Ke's avatar
Guolin Ke committed
554
inline static std::string Join(const std::vector<T>& strs, const char* delimiter) {
Guolin Ke's avatar
Guolin Ke committed
555
  if (strs.empty()) {
Guolin Ke's avatar
Guolin Ke committed
556
557
    return std::string("");
  }
558
  std::stringstream str_buf;
559
  str_buf << std::setprecision(std::numeric_limits<double>::digits10 + 2);
560
  str_buf << strs[0];
Guolin Ke's avatar
Guolin Ke committed
561
  for (size_t i = 1; i < strs.size(); ++i) {
562
563
    str_buf << delimiter;
    str_buf << strs[i];
Guolin Ke's avatar
Guolin Ke committed
564
  }
565
  return str_buf.str();
Guolin Ke's avatar
Guolin Ke committed
566
567
}

568
569
570
571
572
573
574
575
576
577
578
579
580
581
582
template<>
inline std::string Join<int8_t>(const std::vector<int8_t>& strs, const char* delimiter) {
  if (strs.empty()) {
    return std::string("");
  }
  std::stringstream str_buf;
  str_buf << std::setprecision(std::numeric_limits<double>::digits10 + 2);
  str_buf << static_cast<int16_t>(strs[0]);
  for (size_t i = 1; i < strs.size(); ++i) {
    str_buf << delimiter;
    str_buf << static_cast<int16_t>(strs[i]);
  }
  return str_buf.str();
}

583
template<typename T>
Guolin Ke's avatar
Guolin Ke committed
584
inline static std::string Join(const std::vector<T>& strs, size_t start, size_t end, const char* delimiter) {
Guolin Ke's avatar
Guolin Ke committed
585
586
587
  if (end - start <= 0) {
    return std::string("");
  }
Guolin Ke's avatar
Guolin Ke committed
588
589
  start = std::min(start, static_cast<size_t>(strs.size()) - 1);
  end = std::min(end, static_cast<size_t>(strs.size()));
590
  std::stringstream str_buf;
591
  str_buf << std::setprecision(std::numeric_limits<double>::digits10 + 2);
592
  str_buf << strs[start];
Guolin Ke's avatar
Guolin Ke committed
593
  for (size_t i = start + 1; i < end; ++i) {
594
595
    str_buf << delimiter;
    str_buf << strs[i];
Guolin Ke's avatar
Guolin Ke committed
596
  }
597
  return str_buf.str();
Guolin Ke's avatar
Guolin Ke committed
598
599
}

600
inline static int64_t Pow2RoundUp(int64_t x) {
Guolin Ke's avatar
Guolin Ke committed
601
602
603
604
605
606
607
608
609
610
  int64_t t = 1;
  for (int i = 0; i < 64; ++i) {
    if (t >= x) {
      return t;
    }
    t <<= 1;
  }
  return 0;
}

611
/*!
612
 * \brief Do inplace softmax transformation on p_rec
613
614
 * \param p_rec The input/output vector of the values.
 */
615
inline static void Softmax(std::vector<double>* p_rec) {
616
617
  std::vector<double> &rec = *p_rec;
  double wmax = rec[0];
618
619
620
  for (size_t i = 1; i < rec.size(); ++i) {
    wmax = std::max(rec[i], wmax);
  }
621
  double wsum = 0.0f;
622
623
624
625
626
  for (size_t i = 0; i < rec.size(); ++i) {
    rec[i] = std::exp(rec[i] - wmax);
    wsum += rec[i];
  }
  for (size_t i = 0; i < rec.size(); ++i) {
627
    rec[i] /= static_cast<double>(wsum);
628
629
630
  }
}

631
inline static void Softmax(const double* input, double* output, int len) {
Guolin Ke's avatar
Guolin Ke committed
632
  double wmax = input[0];
633
  for (int i = 1; i < len; ++i) {
Guolin Ke's avatar
Guolin Ke committed
634
    wmax = std::max(input[i], wmax);
635
636
637
  }
  double wsum = 0.0f;
  for (int i = 0; i < len; ++i) {
Guolin Ke's avatar
Guolin Ke committed
638
639
    output[i] = std::exp(input[i] - wmax);
    wsum += output[i];
640
641
  }
  for (int i = 0; i < len; ++i) {
Guolin Ke's avatar
Guolin Ke committed
642
    output[i] /= static_cast<double>(wsum);
643
644
645
  }
}

Guolin Ke's avatar
Guolin Ke committed
646
647
648
template<typename T>
std::vector<const T*> ConstPtrInVectorWrapper(const std::vector<std::unique_ptr<T>>& input) {
  std::vector<const T*> ret;
Guolin Ke's avatar
Guolin Ke committed
649
650
  for (auto t = input.begin(); t !=input.end(); ++t) {
    ret.push_back(t->get());
651
  }
Guolin Ke's avatar
Guolin Ke committed
652
  return ret;
653
654
}

Guolin Ke's avatar
Guolin Ke committed
655
template<typename T1, typename T2>
Guolin Ke's avatar
Guolin Ke committed
656
inline static void SortForPair(std::vector<T1>* keys, std::vector<T2>* values, size_t start, bool is_reverse = false) {
Guolin Ke's avatar
Guolin Ke committed
657
  std::vector<std::pair<T1, T2>> arr;
Guolin Ke's avatar
Guolin Ke committed
658
659
  auto& ref_key = *keys;
  auto& ref_value = *values;
Guolin Ke's avatar
Guolin Ke committed
660
  for (size_t i = start; i < keys->size(); ++i) {
Guolin Ke's avatar
Guolin Ke committed
661
    arr.emplace_back(ref_key[i], ref_value[i]);
Guolin Ke's avatar
Guolin Ke committed
662
663
  }
  if (!is_reverse) {
664
    std::stable_sort(arr.begin(), arr.end(), [](const std::pair<T1, T2>& a, const std::pair<T1, T2>& b) {
Guolin Ke's avatar
Guolin Ke committed
665
666
667
      return a.first < b.first;
    });
  } else {
668
    std::stable_sort(arr.begin(), arr.end(), [](const std::pair<T1, T2>& a, const std::pair<T1, T2>& b) {
Guolin Ke's avatar
Guolin Ke committed
669
670
671
672
      return a.first > b.first;
    });
  }
  for (size_t i = start; i < arr.size(); ++i) {
Guolin Ke's avatar
Guolin Ke committed
673
674
    ref_key[i] = arr[i].first;
    ref_value[i] = arr[i].second;
Guolin Ke's avatar
Guolin Ke committed
675
676
677
  }
}

678
template <typename T>
Guolin Ke's avatar
Guolin Ke committed
679
680
inline static std::vector<T*> Vector2Ptr(std::vector<std::vector<T>>* data) {
  std::vector<T*> ptr(data->size());
Guolin Ke's avatar
Guolin Ke committed
681
  auto& ref_data = *data;
Guolin Ke's avatar
Guolin Ke committed
682
  for (size_t i = 0; i < data->size(); ++i) {
Guolin Ke's avatar
Guolin Ke committed
683
    ptr[i] = ref_data[i].data();
684
685
686
687
688
689
690
691
692
693
694
695
696
  }
  return ptr;
}

template <typename T>
inline static std::vector<int> VectorSize(const std::vector<std::vector<T>>& data) {
  std::vector<int> ret(data.size());
  for (size_t i = 0; i < data.size(); ++i) {
    ret[i] = static_cast<int>(data[i].size());
  }
  return ret;
}

Guolin Ke's avatar
Guolin Ke committed
697
inline static double AvoidInf(double x) {
Guolin Ke's avatar
Guolin Ke committed
698
699
700
  if (std::isnan(x)) {
    return 0.0;
  } else if (x >= 1e300) {
Guolin Ke's avatar
Guolin Ke committed
701
    return 1e300;
702
  } else if (x <= -1e300) {
Guolin Ke's avatar
Guolin Ke committed
703
    return -1e300;
Guolin Ke's avatar
Guolin Ke committed
704
705
706
707
708
  } else {
    return x;
  }
}

709
inline static float AvoidInf(float x) {
Guolin Ke's avatar
Guolin Ke committed
710
  if (std::isnan(x)) {
Guolin Ke's avatar
Guolin Ke committed
711
712
    return 0.0f;
  } else if (x >= 1e38) {
713
714
715
716
717
718
    return 1e38f;
  } else if (x <= -1e38) {
    return -1e38f;
  } else {
    return x;
  }
719
720
721
}

template<typename _Iter> inline
722
723
724
725
static typename std::iterator_traits<_Iter>::value_type* IteratorValType(_Iter) {
  return (0);
}

726
template<typename _RanIt, typename _Pr, typename _VTRanIt> inline
727
728
729
static void ParallelSort(_RanIt _First, _RanIt _Last, _Pr _Pred, _VTRanIt*) {
  size_t len = _Last - _First;
  const size_t kMinInnerLen = 1024;
730
  int num_threads = OMP_NUM_THREADS();
731
732
733
734
735
736
737
  if (len <= kMinInnerLen || num_threads <= 1) {
    std::sort(_First, _Last, _Pred);
    return;
  }
  size_t inner_size = (len + num_threads - 1) / num_threads;
  inner_size = std::max(inner_size, kMinInnerLen);
  num_threads = static_cast<int>((len + inner_size - 1) / inner_size);
738
#pragma omp parallel for schedule(static, 1)
739
740
741
742
743
744
745
746
747
748
749
  for (int i = 0; i < num_threads; ++i) {
    size_t left = inner_size*i;
    size_t right = left + inner_size;
    right = std::min(right, len);
    if (right > left) {
      std::sort(_First + left, _First + right, _Pred);
    }
  }
  // Buffer for merge.
  std::vector<_VTRanIt> temp_buf(len);
  _RanIt buf = temp_buf.begin();
750
  size_t s = inner_size;
751
752
753
  // Recursive merge
  while (s < len) {
    int loop_size = static_cast<int>((len + s * 2 - 1) / (s * 2));
754
    #pragma omp parallel for schedule(static, 1)
755
756
757
758
759
    for (int i = 0; i < loop_size; ++i) {
      size_t left = i * 2 * s;
      size_t mid = left + s;
      size_t right = mid + s;
      right = std::min(len, right);
Guolin Ke's avatar
Guolin Ke committed
760
      if (mid >= right) { continue; }
761
762
763
764
765
766
767
      std::copy(_First + left, _First + mid, buf + left);
      std::merge(buf + left, buf + mid, _First + mid, _First + right, _First + left, _Pred);
    }
    s *= 2;
  }
}

768
template<typename _RanIt, typename _Pr> inline
769
770
771
772
static void ParallelSort(_RanIt _First, _RanIt _Last, _Pr _Pred) {
  return ParallelSort(_First, _Last, _Pred, IteratorValType(_First));
}

773
// Check that all y[] are in interval [ymin, ymax] (end points included); throws error if not
774
template <typename T>
775
inline static void CheckElementsIntervalClosed(const T *y, T ymin, T ymax, int ny, const char *callername) {
776
  auto fatal_msg = [&y, &ymin, &ymax, &callername](int i) {
777
778
779
780
781
782
783
784
785
786
787
788
789
790
791
792
793
794
795
    std::ostringstream os;
    os << "[%s]: does not tolerate element [#%i = " << y[i] << "] outside [" << ymin << ", " << ymax << "]";
    Log::Fatal(os.str().c_str(), callername, i);
  };
  for (int i = 1; i < ny; i += 2) {
    if (y[i - 1] < y[i]) {
      if (y[i - 1] < ymin) {
        fatal_msg(i - 1);
      } else if (y[i] > ymax) {
        fatal_msg(i);
      }
    } else {
      if (y[i - 1] > ymax) {
        fatal_msg(i - 1);
      } else if (y[i] < ymin) {
        fatal_msg(i);
      }
    }
  }
796
  if (ny & 1) {  // odd
797
798
    if (y[ny - 1] < ymin || y[ny - 1] > ymax) {
      fatal_msg(ny - 1);
799
800
801
802
803
804
    }
  }
}

// One-pass scan over array w with nw elements: find min, max and sum of elements;
// this is useful for checking weight requirements.
805
template <typename T1, typename T2>
806
inline static void ObtainMinMaxSum(const T1 *w, int nw, T1 *mi, T1 *ma, T2 *su) {
807
808
809
810
  T1 minw;
  T1 maxw;
  T1 sumw;
  int i;
811
  if (nw & 1) {  // odd
812
813
814
815
    minw = w[0];
    maxw = w[0];
    sumw = w[0];
    i = 2;
816
  } else {  // even
817
818
819
820
821
822
823
824
825
826
827
828
829
830
831
832
833
834
835
836
837
838
839
840
841
842
843
844
845
    if (w[0] < w[1]) {
      minw = w[0];
      maxw = w[1];
    } else {
      minw = w[1];
      maxw = w[0];
    }
    sumw = w[0] + w[1];
    i = 3;
  }
  for (; i < nw; i += 2) {
    if (w[i - 1] < w[i]) {
      minw = std::min(minw, w[i - 1]);
      maxw = std::max(maxw, w[i]);
    } else {
      minw = std::min(minw, w[i]);
      maxw = std::max(maxw, w[i - 1]);
    }
    sumw += w[i - 1] + w[i];
  }
  if (mi != nullptr) {
    *mi = minw;
  }
  if (ma != nullptr) {
    *ma = maxw;
  }
  if (su != nullptr) {
    *su = static_cast<T2>(sumw);
  }
846
847
}

848
inline static std::vector<uint32_t> EmptyBitset(int n) {
849
  int size = n / 32;
850
  if (n % 32 != 0) ++size;
851
852
853
854
  return std::vector<uint32_t>(size);
}

template<typename T>
Guolin Ke's avatar
Guolin Ke committed
855
inline static void InsertBitset(std::vector<uint32_t>* vec, const T val) {
Guolin Ke's avatar
Guolin Ke committed
856
857
858
859
860
861
862
  auto& ref_v = *vec;
  int i1 = val / 32;
  int i2 = val % 32;
  if (static_cast<int>(vec->size()) < i1 + 1) {
    vec->resize(i1 + 1, 0);
  }
  ref_v[i1] |= (1 << i2);
863
864
}

865
866
template<typename T>
inline static std::vector<uint32_t> ConstructBitset(const T* vals, int n) {
867
868
869
870
871
872
873
874
875
876
877
878
  std::vector<uint32_t> ret;
  for (int i = 0; i < n; ++i) {
    int i1 = vals[i] / 32;
    int i2 = vals[i] % 32;
    if (static_cast<int>(ret.size()) < i1 + 1) {
      ret.resize(i1 + 1, 0);
    }
    ret[i1] |= (1 << i2);
  }
  return ret;
}

879
880
template<typename T>
inline static bool FindInBitset(const uint32_t* bits, int n, T pos) {
881
882
883
884
885
886
887
888
  int i1 = pos / 32;
  if (i1 >= n) {
    return false;
  }
  int i2 = pos % 32;
  return (bits[i1] >> i2) & 1;
}

889
890
891
892
893
894
895
896
897
inline static bool CheckDoubleEqualOrdered(double a, double b) {
  double upper = std::nextafter(a, INFINITY);
  return b <= upper;
}

inline static double GetDoubleUpperBound(double a) {
  return std::nextafter(a, INFINITY);;
}

898
899
900
901
902
903
904
905
906
907
908
909
910
911
912
913
914
915
inline static size_t GetLine(const char* str) {
  auto start = str;
  while (*str != '\0' && *str != '\n' && *str != '\r') {
    ++str;
  }
  return str - start;
}

inline static const char* SkipNewLine(const char* str) {
  if (*str == '\r') {
    ++str;
  }
  if (*str == '\n') {
    ++str;
  }
  return str;
}

916
917
918
919
920
template <typename T>
static int Sign(T x) {
  return (x > T(0)) - (x < T(0));
}

Guolin Ke's avatar
Guolin Ke committed
921
922
923
924
925
926
927
928
929
template <typename T>
static T SafeLog(T x) {
  if (x > 0) {
    return std::log(x);
  } else {
    return -INFINITY;
  }
}

930
931
932
933
934
935
936
937
938
939
940
941
942
943
944
945
946
947
inline bool CheckAllowedJSON(const std::string& s) {
  unsigned char char_code;
  for (auto c : s) {
    char_code = static_cast<unsigned char>(c);
    if (char_code == 34      // "
        || char_code == 44   // ,
        || char_code == 58   // :
        || char_code == 91   // [
        || char_code == 93   // ]
        || char_code == 123  // {
        || char_code == 125  // }
        ) {
      return false;
    }
  }
  return true;
}

948
949
950
951
952
953
inline int RoundInt(double x) {
  return static_cast<int>(x + 0.5f);
}

template <typename T, std::size_t N = 32>
class AlignmentAllocator {
954
 public:
955
956
957
958
959
960
961
962
963
964
  typedef T value_type;
  typedef std::size_t size_type;
  typedef std::ptrdiff_t difference_type;

  typedef T* pointer;
  typedef const T* const_pointer;

  typedef T& reference;
  typedef const T& const_reference;

965
  inline AlignmentAllocator() throw() {}
966
967

  template <typename T2>
968
  inline AlignmentAllocator(const AlignmentAllocator<T2, N>&) throw() {}
969

970
  inline ~AlignmentAllocator() throw() {}
971
972
973
974
975
976
977
978
979
980
981
982
983
984
985
986
987
988
989
990
991
992
993
994
995

  inline pointer adress(reference r) {
    return &r;
  }

  inline const_pointer adress(const_reference r) const {
    return &r;
  }

  inline pointer allocate(size_type n) {
    return (pointer)_mm_malloc(n * sizeof(value_type), N);
  }

  inline void deallocate(pointer p, size_type) {
    _mm_free(p);
  }

  inline void construct(pointer p, const value_type& wert) {
    new (p) value_type(wert);
  }

  inline void destroy(pointer p) {
    p->~value_type();
  }

996
  inline size_type max_size() const throw() {
997
998
999
1000
1001
1002
1003
1004
1005
1006
1007
1008
1009
1010
1011
1012
1013
1014
1015
1016
1017
1018
    return size_type(-1) / sizeof(value_type);
  }

  template <typename T2>
  struct rebind {
    typedef AlignmentAllocator<T2, N> other;
  };

  bool operator!=(const AlignmentAllocator<T, N>& other) const {
    return !(*this == other);
  }

  // Returns true if and only if storage allocated from *this
  // can be deallocated from other, and vice versa.
  // Always returns true for stateless allocators.
  bool operator==(const AlignmentAllocator<T, N>&) const {
    return true;
  }
};

class Timer {
 public:
Guolin Ke's avatar
Guolin Ke committed
1019
1020
  Timer() {
#ifdef TIMETAG
1021
    int num_threads = OMP_NUM_THREADS();
Guolin Ke's avatar
Guolin Ke committed
1022
1023
1024
    start_time_.resize(num_threads);
    stats_.resize(num_threads);
#endif  // TIMETAG
1025
  }
1026

Guolin Ke's avatar
Guolin Ke committed
1027
1028
1029
  ~Timer() { Print(); }

#ifdef TIMETAG
1030
  void Start(const std::string& name) {
Guolin Ke's avatar
Guolin Ke committed
1031
1032
    auto tid = omp_get_thread_num();
    start_time_[tid][name] = std::chrono::steady_clock::now();
1033
  }
1034

1035
  void Stop(const std::string& name) {
Guolin Ke's avatar
Guolin Ke committed
1036
1037
1038
1039
    auto cur_time = std::chrono::steady_clock::now();
    auto tid = omp_get_thread_num();
    if (stats_[tid].find(name) == stats_[tid].end()) {
      stats_[tid][name] = std::chrono::duration<double, std::milli>(0);
1040
    }
Guolin Ke's avatar
Guolin Ke committed
1041
    stats_[tid][name] += cur_time - start_time_[tid][name];
1042
  }
1043

Guolin Ke's avatar
Guolin Ke committed
1044
1045
#else
  void Start(const std::string&) {}
1046

Guolin Ke's avatar
Guolin Ke committed
1047
1048
  void Stop(const std::string&) {}
#endif  // TIMETAG
1049
1050

  void Print() const {
Guolin Ke's avatar
Guolin Ke committed
1051
1052
1053
1054
1055
1056
1057
1058
1059
1060
1061
1062
1063
1064
#ifdef TIMETAG
    std::unordered_map<std::string, std::chrono::duration<double, std::milli>>
        stats(stats_[0].begin(), stats_[0].end());
    for (size_t i = 1; i < stats_.size(); ++i) {
      for (auto it = stats_[i].begin(); it != stats_[i].end(); ++it) {
        if (stats.find(it->first) == stats.end()) {
          stats[it->first] = it->second;
        } else {
          stats[it->first] += it->second;
        }
      }
    }
    std::map<std::string, std::chrono::duration<double, std::milli>> ordered(
        stats.begin(), stats.end());
1065
    for (auto it = ordered.begin(); it != ordered.end(); ++it) {
1066
      Log::Info("%s costs:\t %f", it->first.c_str(), it->second * 1e-3);
1067
    }
Guolin Ke's avatar
Guolin Ke committed
1068
1069
1070
1071
1072
1073
1074
1075
1076
1077
#endif  // TIMETAG
  }
#ifdef TIMETAG
  std::vector<
      std::unordered_map<std::string, std::chrono::steady_clock::time_point>>
      start_time_;
  std::vector<std::unordered_map<std::string,
                                 std::chrono::duration<double, std::milli>>>
      stats_;
#endif  // TIMETAG
1078
1079
1080
1081
1082
};

// Note: this class is not thread-safe, don't use it inside omp blocks
class FunctionTimer {
 public:
1083
#ifdef TIMETAG
Guolin Ke's avatar
Guolin Ke committed
1084
  FunctionTimer(const std::string& name, Timer& timer) : timer_(timer) {
1085
1086
1087
    timer.Start(name);
    name_ = name;
  }
1088

Guolin Ke's avatar
Guolin Ke committed
1089
  ~FunctionTimer() { timer_.Stop(name_); }
1090

1091
1092
1093
 private:
  std::string name_;
  Timer& timer_;
1094
1095
1096
#else
  FunctionTimer(const std::string&, Timer&) {}
#endif  // TIMETAG
1097
1098
};

Guolin Ke's avatar
Guolin Ke committed
1099
1100
}  // namespace Common

1101
1102
extern Common::Timer global_timer;

Guolin Ke's avatar
Guolin Ke committed
1103
1104
}  // namespace LightGBM

Guolin Ke's avatar
Guolin Ke committed
1105
#endif   // LightGBM_UTILS_COMMON_FUN_H_