math_test.cpp revision 02c78a386739a8a2b3007efeb00a9ca04132100a
1/*
2 * Copyright (C) 2013 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 *      http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#define _DECLARE_C99_LDBL_MATH 1
18
19// This include (and the associated definition of __test_capture_signbit)
20// must be placed before any files that include <cmath> (gtest.h in this case).
21//
22// <math.h> is required to define generic macros signbit, isfinite and
23// several other such functions.
24//
25// <cmath> is required to undef declarations of these macros in the global
26// namespace and make equivalent functions available in namespace std. Our
27// stlport implementation does this only for signbit, isfinite, isinf and
28// isnan.
29//
30// NOTE: We don't write our test using std::signbit because we want to be
31// sure that we're testing the bionic version of signbit. The C++ libraries
32// are free to reimplement signbit or delegate to compiler builtins if they
33// please.
34#include <math.h>
35
36namespace {
37template<typename T> inline int test_capture_signbit(const T in) {
38  return signbit(in);
39}
40template<typename T> inline int test_capture_isfinite(const T in) {
41  return isfinite(in);
42}
43template<typename T> inline int test_capture_isnan(const T in) {
44  return isnan(in);
45}
46template<typename T> inline int test_capture_isinf(const T in) {
47  return isinf(in);
48}
49}
50
51#include <gtest/gtest.h>
52
53#include <fenv.h>
54#include <float.h>
55#include <limits.h>
56#include <stdint.h>
57
58float float_subnormal() {
59  union {
60    float f;
61    uint32_t i;
62  } u;
63  u.i = 0x007fffff;
64  return u.f;
65}
66
67double double_subnormal() {
68  union {
69    double d;
70    uint64_t i;
71  } u;
72  u.i = 0x000fffffffffffffLL;
73  return u.d;
74}
75
76long double ldouble_subnormal() {
77  union {
78    long double e;
79    unsigned char c[sizeof(long double)];
80  } u;
81
82  // Subnormals must have a zero exponent and non zero significand.
83  // On all supported representation the 17 bit (counting from either sides)
84  // is part of the significand so it should be enough to set that.
85  // It also applies for the case sizeof(double) = sizeof(long double)
86  for (unsigned int i = 0; i < sizeof(long double); i++) {
87    u.c[i] = 0x00;
88  }
89  u.c[sizeof(long double) - 3] = 0x80;
90  u.c[2] = 0x80;
91
92  return u.e;
93}
94
95TEST(math, fpclassify) {
96  ASSERT_EQ(FP_INFINITE, fpclassify(INFINITY));
97  ASSERT_EQ(FP_INFINITE, fpclassify(HUGE_VALF));
98  ASSERT_EQ(FP_INFINITE, fpclassify(HUGE_VAL));
99  ASSERT_EQ(FP_INFINITE, fpclassify(HUGE_VALL));
100
101  ASSERT_EQ(FP_NAN, fpclassify(nanf("")));
102  ASSERT_EQ(FP_NAN, fpclassify(nan("")));
103  ASSERT_EQ(FP_NAN, fpclassify(nanl("")));
104
105  ASSERT_EQ(FP_NORMAL, fpclassify(1.0f));
106  ASSERT_EQ(FP_NORMAL, fpclassify(1.0));
107  ASSERT_EQ(FP_NORMAL, fpclassify(1.0L));
108
109  ASSERT_EQ(FP_SUBNORMAL, fpclassify(float_subnormal()));
110  ASSERT_EQ(FP_SUBNORMAL, fpclassify(double_subnormal()));
111  ASSERT_EQ(FP_SUBNORMAL, fpclassify(ldouble_subnormal()));
112
113  ASSERT_EQ(FP_ZERO, fpclassify(0.0f));
114  ASSERT_EQ(FP_ZERO, fpclassify(0.0));
115  ASSERT_EQ(FP_ZERO, fpclassify(0.0L));
116}
117
118TEST(math, isfinite) {
119  ASSERT_TRUE(test_capture_isfinite(123.0f));
120  ASSERT_TRUE(test_capture_isfinite(123.0));
121  ASSERT_TRUE(test_capture_isfinite(123.0L));
122  ASSERT_FALSE(test_capture_isfinite(HUGE_VALF));
123  ASSERT_FALSE(test_capture_isfinite(HUGE_VAL));
124  ASSERT_FALSE(test_capture_isfinite(HUGE_VALL));
125}
126
127TEST(math, isinf) {
128  ASSERT_FALSE(test_capture_isinf(123.0f));
129  ASSERT_FALSE(test_capture_isinf(123.0));
130  ASSERT_FALSE(test_capture_isinf(123.0L));
131  ASSERT_TRUE(test_capture_isinf(HUGE_VALF));
132  ASSERT_TRUE(test_capture_isinf(HUGE_VAL));
133  ASSERT_TRUE(test_capture_isinf(HUGE_VALL));
134}
135
136TEST(math, isnan) {
137  ASSERT_FALSE(test_capture_isnan(123.0f));
138  ASSERT_FALSE(test_capture_isnan(123.0));
139  ASSERT_FALSE(test_capture_isnan(123.0L));
140  ASSERT_TRUE(test_capture_isnan(nanf("")));
141  ASSERT_TRUE(test_capture_isnan(nan("")));
142  ASSERT_TRUE(test_capture_isnan(nanl("")));
143}
144
145TEST(math, isnormal) {
146  ASSERT_TRUE(isnormal(123.0f));
147  ASSERT_TRUE(isnormal(123.0));
148  ASSERT_TRUE(isnormal(123.0L));
149  ASSERT_FALSE(isnormal(float_subnormal()));
150  ASSERT_FALSE(isnormal(double_subnormal()));
151  ASSERT_FALSE(isnormal(ldouble_subnormal()));
152}
153
154// TODO: isgreater, isgreaterequals, isless, islessequal, islessgreater, isunordered
155TEST(math, signbit) {
156  ASSERT_EQ(0, test_capture_signbit(0.0f));
157  ASSERT_EQ(0, test_capture_signbit(0.0));
158  ASSERT_EQ(0, test_capture_signbit(0.0L));
159
160  ASSERT_EQ(0, test_capture_signbit(1.0f));
161  ASSERT_EQ(0, test_capture_signbit(1.0));
162  ASSERT_EQ(0, test_capture_signbit(1.0L));
163
164  ASSERT_NE(0, test_capture_signbit(-1.0f));
165  ASSERT_NE(0, test_capture_signbit(-1.0));
166  ASSERT_NE(0, test_capture_signbit(-1.0L));
167}
168
169TEST(math, __fpclassifyd) {
170#if defined(__BIONIC__)
171  ASSERT_EQ(FP_INFINITE, __fpclassifyd(HUGE_VAL));
172  ASSERT_EQ(FP_NAN, __fpclassifyd(nan("")));
173  ASSERT_EQ(FP_NORMAL, __fpclassifyd(1.0));
174  ASSERT_EQ(FP_SUBNORMAL, __fpclassifyd(double_subnormal()));
175  ASSERT_EQ(FP_ZERO, __fpclassifyd(0.0));
176#else // __BIONIC__
177  GTEST_LOG_(INFO) << "This test does nothing.\n";
178#endif // __BIONIC__
179}
180
181TEST(math, __fpclassifyf) {
182#if defined(__BIONIC__)
183  ASSERT_EQ(FP_INFINITE, __fpclassifyf(HUGE_VALF));
184  ASSERT_EQ(FP_NAN, __fpclassifyf(nanf("")));
185  ASSERT_EQ(FP_NORMAL, __fpclassifyf(1.0f));
186  ASSERT_EQ(FP_SUBNORMAL, __fpclassifyf(float_subnormal()));
187  ASSERT_EQ(FP_ZERO, __fpclassifyf(0.0f));
188#else // __BIONIC__
189  GTEST_LOG_(INFO) << "This test does nothing.\n";
190#endif // __BIONIC__
191}
192
193TEST(math, __fpclassifyl) {
194#if defined(__BIONIC__)
195  EXPECT_EQ(FP_INFINITE, __fpclassifyl(HUGE_VALL));
196  EXPECT_EQ(FP_NAN, __fpclassifyl(nanl("")));
197  EXPECT_EQ(FP_NORMAL, __fpclassifyl(1.0L));
198  EXPECT_EQ(FP_SUBNORMAL, __fpclassifyl(ldouble_subnormal()));
199  EXPECT_EQ(FP_ZERO, __fpclassifyl(0.0L));
200#else // __BIONIC__
201  GTEST_LOG_(INFO) << "This test does nothing.\n";
202#endif // __BIONIC__
203}
204
205TEST(math, finitef) {
206  ASSERT_TRUE(finitef(123.0f));
207  ASSERT_FALSE(finitef(HUGE_VALF));
208}
209
210TEST(math, __isfinite) {
211#if defined(__BIONIC__)
212  ASSERT_TRUE(__isfinite(123.0));
213  ASSERT_FALSE(__isfinite(HUGE_VAL));
214#else // __BIONIC__
215  GTEST_LOG_(INFO) << "This test does nothing.\n";
216#endif // __BIONIC__
217}
218
219TEST(math, __isfinitef) {
220#if defined(__BIONIC__)
221  ASSERT_TRUE(__isfinitef(123.0f));
222  ASSERT_FALSE(__isfinitef(HUGE_VALF));
223#else // __BIONIC__
224  GTEST_LOG_(INFO) << "This test does nothing.\n";
225#endif // __BIONIC__
226}
227
228TEST(math, __isfinitel) {
229#if defined(__BIONIC__)
230  ASSERT_TRUE(__isfinitel(123.0L));
231  ASSERT_FALSE(__isfinitel(HUGE_VALL));
232#else // __BIONIC__
233  GTEST_LOG_(INFO) << "This test does nothing.\n";
234#endif // __BIONIC__
235}
236
237TEST(math, finite) {
238  ASSERT_TRUE(finite(123.0));
239  ASSERT_FALSE(finite(HUGE_VAL));
240}
241
242TEST(math, isinf_function) {
243  // The isinf macro deals with all three types; the isinf function is for doubles.
244  ASSERT_FALSE((isinf)(123.0));
245  ASSERT_TRUE((isinf)(HUGE_VAL));
246}
247
248TEST(math, __isinff) {
249  ASSERT_FALSE(__isinff(123.0f));
250  ASSERT_TRUE(__isinff(HUGE_VALF));
251}
252
253TEST(math, __isinfl) {
254  ASSERT_FALSE(__isinfl(123.0L));
255  ASSERT_TRUE(__isinfl(HUGE_VALL));
256}
257
258TEST(math, isnan_function) {
259  // The isnan macro deals with all three types; the isnan function is for doubles.
260  ASSERT_FALSE((isnan)(123.0));
261  ASSERT_TRUE((isnan)(nan("")));
262}
263
264TEST(math, __isnanf) {
265  ASSERT_FALSE(__isnanf(123.0f));
266  ASSERT_TRUE(__isnanf(nanf("")));
267}
268
269TEST(math, __isnanl) {
270  ASSERT_FALSE(__isnanl(123.0L));
271  ASSERT_TRUE(__isnanl(nanl("")));
272}
273
274TEST(math, isnanf) {
275  ASSERT_FALSE(isnanf(123.0f));
276  ASSERT_TRUE(isnanf(nanf("")));
277}
278
279TEST(math, __isnormal) {
280#if defined(__BIONIC__)
281  ASSERT_TRUE(__isnormal(123.0));
282  ASSERT_FALSE(__isnormal(double_subnormal()));
283#else // __BIONIC__
284  GTEST_LOG_(INFO) << "This test does nothing.\n";
285#endif // __BIONIC__
286}
287
288TEST(math, __isnormalf) {
289#if defined(__BIONIC__)
290  ASSERT_TRUE(__isnormalf(123.0f));
291  ASSERT_FALSE(__isnormalf(float_subnormal()));
292#else // __BIONIC__
293  GTEST_LOG_(INFO) << "This test does nothing.\n";
294#endif // __BIONIC__
295}
296
297TEST(math, __isnormall) {
298#if defined(__BIONIC__)
299  ASSERT_TRUE(__isnormall(123.0L));
300  ASSERT_FALSE(__isnormall(ldouble_subnormal()));
301#else // __BIONIC__
302  GTEST_LOG_(INFO) << "This test does nothing.\n";
303#endif // __BIONIC__
304}
305
306TEST(math, __signbit) {
307  ASSERT_EQ(0, __signbit(0.0));
308  ASSERT_EQ(0, __signbit(1.0));
309  ASSERT_NE(0, __signbit(-1.0));
310}
311
312TEST(math, __signbitf) {
313  ASSERT_EQ(0, __signbitf(0.0f));
314  ASSERT_EQ(0, __signbitf(1.0f));
315  ASSERT_NE(0, __signbitf(-1.0f));
316}
317
318TEST(math, __signbitl) {
319  ASSERT_EQ(0L, __signbitl(0.0L));
320  ASSERT_EQ(0L, __signbitl(1.0L));
321  ASSERT_NE(0L, __signbitl(-1.0L));
322}
323
324TEST(math, acos) {
325  ASSERT_DOUBLE_EQ(M_PI/2.0, acos(0.0));
326}
327
328TEST(math, acosf) {
329  ASSERT_FLOAT_EQ(static_cast<float>(M_PI)/2.0f, acosf(0.0f));
330}
331
332TEST(math, acosl) {
333  ASSERT_DOUBLE_EQ(M_PI/2.0L, acosl(0.0L));
334}
335
336TEST(math, asin) {
337  ASSERT_DOUBLE_EQ(0.0, asin(0.0));
338}
339
340TEST(math, asinf) {
341  ASSERT_FLOAT_EQ(0.0f, asinf(0.0f));
342}
343
344TEST(math, asinl) {
345  ASSERT_DOUBLE_EQ(0.0L, asinl(0.0L));
346}
347
348TEST(math, atan) {
349  ASSERT_DOUBLE_EQ(0.0, atan(0.0));
350}
351
352TEST(math, atanf) {
353  ASSERT_FLOAT_EQ(0.0f, atanf(0.0f));
354}
355
356TEST(math, atanl) {
357  ASSERT_DOUBLE_EQ(0.0L, atanl(0.0L));
358}
359
360TEST(math, atan2) {
361  ASSERT_DOUBLE_EQ(0.0, atan2(0.0, 0.0));
362}
363
364TEST(math, atan2f) {
365  ASSERT_FLOAT_EQ(0.0f, atan2f(0.0f, 0.0f));
366}
367
368TEST(math, atan2l) {
369  ASSERT_DOUBLE_EQ(0.0L, atan2l(0.0L, 0.0L));
370}
371
372TEST(math, cos) {
373  ASSERT_DOUBLE_EQ(1.0, cos(0.0));
374}
375
376TEST(math, cosf) {
377  ASSERT_FLOAT_EQ(1.0f, cosf(0.0f));
378}
379
380TEST(math, cosl) {
381  ASSERT_DOUBLE_EQ(1.0L, cosl(0.0L));
382}
383
384TEST(math, sin) {
385  ASSERT_DOUBLE_EQ(0.0, sin(0.0));
386}
387
388TEST(math, sinf) {
389  ASSERT_FLOAT_EQ(0.0f, sinf(0.0f));
390}
391
392TEST(math, sinl) {
393  ASSERT_DOUBLE_EQ(0.0L, sinl(0.0L));
394}
395
396TEST(math, tan) {
397  ASSERT_DOUBLE_EQ(0.0, tan(0.0));
398}
399
400TEST(math, tanf) {
401  ASSERT_FLOAT_EQ(0.0f, tanf(0.0f));
402}
403
404TEST(math, tanl) {
405  ASSERT_DOUBLE_EQ(0.0L, tanl(0.0L));
406}
407
408TEST(math, acosh) {
409  ASSERT_DOUBLE_EQ(0.0, acosh(1.0));
410}
411
412TEST(math, acoshf) {
413  ASSERT_FLOAT_EQ(0.0f, acoshf(1.0f));
414}
415
416TEST(math, acoshl) {
417  ASSERT_DOUBLE_EQ(0.0L, acoshl(1.0L));
418}
419
420TEST(math, asinh) {
421  ASSERT_DOUBLE_EQ(0.0, asinh(0.0));
422}
423
424TEST(math, asinhf) {
425  ASSERT_FLOAT_EQ(0.0f, asinhf(0.0f));
426}
427
428TEST(math, asinhl) {
429  ASSERT_DOUBLE_EQ(0.0L, asinhl(0.0L));
430}
431
432TEST(math, atanh) {
433  ASSERT_DOUBLE_EQ(0.0, atanh(0.0));
434}
435
436TEST(math, atanhf) {
437  ASSERT_FLOAT_EQ(0.0f, atanhf(0.0f));
438}
439
440TEST(math, atanhl) {
441  ASSERT_DOUBLE_EQ(0.0L, atanhl(0.0L));
442}
443
444TEST(math, cosh) {
445  ASSERT_DOUBLE_EQ(1.0, cosh(0.0));
446}
447
448TEST(math, coshf) {
449  ASSERT_FLOAT_EQ(1.0f, coshf(0.0f));
450}
451
452TEST(math, coshl) {
453  ASSERT_DOUBLE_EQ(1.0L, coshl(0.0L));
454}
455
456TEST(math, sinh) {
457  ASSERT_DOUBLE_EQ(0.0, sinh(0.0));
458}
459
460TEST(math, sinhf) {
461  ASSERT_FLOAT_EQ(0.0f, sinhf(0.0f));
462}
463
464TEST(math, sinhl) {
465  ASSERT_DOUBLE_EQ(0.0L, sinhl(0.0L));
466}
467
468TEST(math, tanh) {
469  ASSERT_DOUBLE_EQ(0.0, tanh(0.0));
470}
471
472TEST(math, tanhf) {
473  ASSERT_FLOAT_EQ(0.0f, tanhf(0.0f));
474}
475
476TEST(math, tanhl) {
477  ASSERT_DOUBLE_EQ(0.0L, tanhl(0.0L));
478}
479
480TEST(math, log) {
481  ASSERT_DOUBLE_EQ(1.0, log(M_E));
482}
483
484TEST(math, logf) {
485  ASSERT_FLOAT_EQ(1.0f, logf(static_cast<float>(M_E)));
486}
487
488TEST(math, logl) {
489  ASSERT_DOUBLE_EQ(1.0L, logl(M_E));
490}
491
492TEST(math, log2) {
493  ASSERT_DOUBLE_EQ(12.0, log2(4096.0));
494}
495
496TEST(math, log2f) {
497  ASSERT_FLOAT_EQ(12.0f, log2f(4096.0f));
498}
499
500TEST(math, log2l) {
501  ASSERT_DOUBLE_EQ(12.0L, log2l(4096.0L));
502}
503
504TEST(math, log10) {
505  ASSERT_DOUBLE_EQ(3.0, log10(1000.0));
506}
507
508TEST(math, log10f) {
509  ASSERT_FLOAT_EQ(3.0f, log10f(1000.0f));
510}
511
512TEST(math, log10l) {
513  ASSERT_DOUBLE_EQ(3.0L, log10l(1000.0L));
514}
515
516TEST(math, cbrt) {
517  ASSERT_DOUBLE_EQ(3.0, cbrt(27.0));
518}
519
520TEST(math, cbrtf) {
521  ASSERT_FLOAT_EQ(3.0f, cbrtf(27.0f));
522}
523
524TEST(math, cbrtl) {
525  ASSERT_DOUBLE_EQ(3.0L, cbrtl(27.0L));
526}
527
528TEST(math, sqrt) {
529  ASSERT_DOUBLE_EQ(2.0, sqrt(4.0));
530}
531
532TEST(math, sqrtf) {
533  ASSERT_FLOAT_EQ(2.0f, sqrtf(4.0f));
534}
535
536TEST(math, sqrtl) {
537  ASSERT_DOUBLE_EQ(2.0L, sqrtl(4.0L));
538}
539
540TEST(math, exp) {
541  ASSERT_DOUBLE_EQ(1.0, exp(0.0));
542  ASSERT_DOUBLE_EQ(M_E, exp(1.0));
543}
544
545TEST(math, expf) {
546  ASSERT_FLOAT_EQ(1.0f, expf(0.0f));
547  ASSERT_FLOAT_EQ(static_cast<float>(M_E), expf(1.0f));
548}
549
550TEST(math, expl) {
551  ASSERT_DOUBLE_EQ(1.0L, expl(0.0L));
552  ASSERT_DOUBLE_EQ(M_E, expl(1.0L));
553}
554
555TEST(math, exp2) {
556  ASSERT_DOUBLE_EQ(8.0, exp2(3.0));
557}
558
559TEST(math, exp2f) {
560  ASSERT_FLOAT_EQ(8.0f, exp2f(3.0f));
561}
562
563TEST(math, exp2l) {
564  ASSERT_DOUBLE_EQ(8.0L, exp2l(3.0L));
565}
566
567TEST(math, expm1) {
568  ASSERT_DOUBLE_EQ(M_E - 1.0, expm1(1.0));
569}
570
571TEST(math, expm1f) {
572  ASSERT_FLOAT_EQ(static_cast<float>(M_E) - 1.0f, expm1f(1.0f));
573}
574
575TEST(math, expm1l) {
576  ASSERT_DOUBLE_EQ(M_E - 1.0L, expm1l(1.0L));
577}
578
579TEST(math, pow) {
580  ASSERT_TRUE(isnan(pow(nan(""), 3.0)));
581  ASSERT_DOUBLE_EQ(1.0, (pow(1.0, nan(""))));
582  ASSERT_TRUE(isnan(pow(2.0, nan(""))));
583  ASSERT_DOUBLE_EQ(8.0, pow(2.0, 3.0));
584}
585
586TEST(math, powf) {
587  ASSERT_TRUE(isnanf(powf(nanf(""), 3.0f)));
588  ASSERT_FLOAT_EQ(1.0f, (powf(1.0f, nanf(""))));
589  ASSERT_TRUE(isnanf(powf(2.0f, nanf(""))));
590  ASSERT_FLOAT_EQ(8.0f, powf(2.0f, 3.0f));
591}
592
593TEST(math, powl) {
594  ASSERT_TRUE(__isnanl(powl(nanl(""), 3.0L)));
595  ASSERT_DOUBLE_EQ(1.0L, (powl(1.0L, nanl(""))));
596  ASSERT_TRUE(__isnanl(powl(2.0L, nanl(""))));
597  ASSERT_DOUBLE_EQ(8.0L, powl(2.0L, 3.0L));
598}
599
600TEST(math, ceil) {
601  ASSERT_DOUBLE_EQ(1.0, ceil(0.9));
602}
603
604TEST(math, ceilf) {
605  ASSERT_FLOAT_EQ(1.0f, ceilf(0.9f));
606}
607
608TEST(math, ceill) {
609  ASSERT_DOUBLE_EQ(1.0L, ceill(0.9L));
610}
611
612TEST(math, floor) {
613  ASSERT_DOUBLE_EQ(1.0, floor(1.1));
614}
615
616TEST(math, floorf) {
617  ASSERT_FLOAT_EQ(1.0f, floorf(1.1f));
618}
619
620TEST(math, floorl) {
621  ASSERT_DOUBLE_EQ(1.0L, floorl(1.1L));
622}
623
624TEST(math, fabs) {
625  ASSERT_DOUBLE_EQ(1.0, fabs(-1.0));
626}
627
628TEST(math, fabsf) {
629  ASSERT_FLOAT_EQ(1.0f, fabsf(-1.0f));
630}
631
632TEST(math, fabsl) {
633  ASSERT_DOUBLE_EQ(1.0L, fabsl(-1.0L));
634}
635
636TEST(math, ldexp) {
637  ASSERT_DOUBLE_EQ(16.0, ldexp(2.0, 3.0));
638}
639
640TEST(math, ldexpf) {
641  ASSERT_FLOAT_EQ(16.0f, ldexpf(2.0f, 3.0f));
642}
643
644TEST(math, ldexpl) {
645  ASSERT_DOUBLE_EQ(16.0L, ldexpl(2.0L, 3.0));
646}
647
648TEST(math, fmod) {
649  ASSERT_DOUBLE_EQ(2.0, fmod(12.0, 10.0));
650}
651
652TEST(math, fmodf) {
653  ASSERT_FLOAT_EQ(2.0f, fmodf(12.0f, 10.0f));
654}
655
656TEST(math, fmodl) {
657  ASSERT_DOUBLE_EQ(2.0L, fmodl(12.0L, 10.0L));
658}
659
660TEST(math, remainder) {
661  ASSERT_DOUBLE_EQ(2.0, remainder(12.0, 10.0));
662}
663
664TEST(math, remainderf) {
665  ASSERT_FLOAT_EQ(2.0f, remainderf(12.0f, 10.0f));
666}
667
668TEST(math, remainderl) {
669  ASSERT_DOUBLE_EQ(2.0L, remainderl(12.0L, 10.0L));
670}
671
672TEST(math, drem) {
673  ASSERT_DOUBLE_EQ(2.0, drem(12.0, 10.0));
674}
675
676TEST(math, dremf) {
677  ASSERT_FLOAT_EQ(2.0f, dremf(12.0f, 10.0f));
678}
679
680TEST(math, fmax) {
681  ASSERT_DOUBLE_EQ(12.0, fmax(12.0, 10.0));
682  ASSERT_DOUBLE_EQ(12.0, fmax(12.0, nan("")));
683  ASSERT_DOUBLE_EQ(12.0, fmax(nan(""), 12.0));
684}
685
686TEST(math, fmaxf) {
687  ASSERT_FLOAT_EQ(12.0f, fmaxf(12.0f, 10.0f));
688  ASSERT_FLOAT_EQ(12.0f, fmaxf(12.0f, nanf("")));
689  ASSERT_FLOAT_EQ(12.0f, fmaxf(nanf(""), 12.0f));
690}
691
692TEST(math, fmaxl) {
693  ASSERT_DOUBLE_EQ(12.0L, fmaxl(12.0L, 10.0L));
694  ASSERT_DOUBLE_EQ(12.0L, fmaxl(12.0L, nanl("")));
695  ASSERT_DOUBLE_EQ(12.0L, fmaxl(nanl(""), 12.0L));
696}
697
698TEST(math, fmin) {
699  ASSERT_DOUBLE_EQ(10.0, fmin(12.0, 10.0));
700  ASSERT_DOUBLE_EQ(12.0, fmin(12.0, nan("")));
701  ASSERT_DOUBLE_EQ(12.0, fmin(nan(""), 12.0));
702}
703
704TEST(math, fminf) {
705  ASSERT_FLOAT_EQ(10.0f, fminf(12.0f, 10.0f));
706  ASSERT_FLOAT_EQ(12.0f, fminf(12.0f, nanf("")));
707  ASSERT_FLOAT_EQ(12.0f, fminf(nanf(""), 12.0f));
708}
709
710TEST(math, fminl) {
711  ASSERT_DOUBLE_EQ(10.0L, fminl(12.0L, 10.0L));
712  ASSERT_DOUBLE_EQ(12.0L, fminl(12.0L, nanl("")));
713  ASSERT_DOUBLE_EQ(12.0L, fminl(nanl(""), 12.0L));
714}
715
716TEST(math, fma) {
717  ASSERT_DOUBLE_EQ(10.0, fma(2.0, 3.0, 4.0));
718}
719
720TEST(math, fmaf) {
721  ASSERT_FLOAT_EQ(10.0f, fmaf(2.0f, 3.0f, 4.0f));
722}
723
724TEST(math, fmal) {
725  ASSERT_DOUBLE_EQ(10.0L, fmal(2.0L, 3.0L, 4.0L));
726}
727
728TEST(math, hypot) {
729  ASSERT_DOUBLE_EQ(5.0, hypot(3.0, 4.0));
730}
731
732TEST(math, hypotf) {
733  ASSERT_FLOAT_EQ(5.0f, hypotf(3.0f, 4.0f));
734}
735
736TEST(math, hypotl) {
737  ASSERT_DOUBLE_EQ(5.0L, hypotl(3.0L, 4.0L));
738}
739
740TEST(math, erf) {
741  ASSERT_DOUBLE_EQ(0.84270079294971489, erf(1.0));
742}
743
744TEST(math, erff) {
745  ASSERT_FLOAT_EQ(0.84270078f, erff(1.0f));
746}
747
748TEST(math, erfl) {
749  ASSERT_DOUBLE_EQ(0.84270079294971489L, erfl(1.0L));
750}
751
752TEST(math, erfc) {
753  ASSERT_DOUBLE_EQ(0.15729920705028513, erfc(1.0));
754}
755
756TEST(math, erfcf) {
757  ASSERT_FLOAT_EQ(0.15729921f, erfcf(1.0f));
758}
759
760TEST(math, erfcl) {
761  ASSERT_DOUBLE_EQ(0.15729920705028513l, erfcl(1.0L));
762}
763
764TEST(math, lrint) {
765  fesetround(FE_UPWARD); // lrint/lrintf/lrintl obey the rounding mode.
766  ASSERT_EQ(1235, lrint(1234.01));
767  ASSERT_EQ(1235, lrintf(1234.01f));
768  ASSERT_EQ(1235, lrintl(1234.01L));
769  fesetround(FE_TOWARDZERO); // lrint/lrintf/lrintl obey the rounding mode.
770  ASSERT_EQ(1234, lrint(1234.01));
771  ASSERT_EQ(1234, lrintf(1234.01f));
772  ASSERT_EQ(1234, lrintl(1234.01L));
773
774  fesetround(FE_UPWARD); // llrint/llrintf/llrintl obey the rounding mode.
775  ASSERT_EQ(1235L, llrint(1234.01));
776  ASSERT_EQ(1235L, llrintf(1234.01f));
777  ASSERT_EQ(1235L, llrintl(1234.01L));
778  fesetround(FE_TOWARDZERO); // llrint/llrintf/llrintl obey the rounding mode.
779  ASSERT_EQ(1234L, llrint(1234.01));
780  ASSERT_EQ(1234L, llrintf(1234.01f));
781  ASSERT_EQ(1234L, llrintl(1234.01L));
782}
783
784TEST(math, rint) {
785  fesetround(FE_UPWARD); // rint/rintf/rintl obey the rounding mode.
786  feclearexcept(FE_ALL_EXCEPT); // rint/rintf/rintl do set the FE_INEXACT flag.
787  ASSERT_EQ(1234.0, rint(1234.0));
788  ASSERT_TRUE((fetestexcept(FE_ALL_EXCEPT) & FE_INEXACT) == 0);
789  ASSERT_EQ(1235.0, rint(1234.01));
790  ASSERT_TRUE((fetestexcept(FE_ALL_EXCEPT) & FE_INEXACT) != 0);
791
792  feclearexcept(FE_ALL_EXCEPT); // rint/rintf/rintl do set the FE_INEXACT flag.
793  ASSERT_EQ(1234.0f, rintf(1234.0f));
794  ASSERT_TRUE((fetestexcept(FE_ALL_EXCEPT) & FE_INEXACT) == 0);
795  ASSERT_EQ(1235.0f, rintf(1234.01f));
796  ASSERT_TRUE((fetestexcept(FE_ALL_EXCEPT) & FE_INEXACT) != 0);
797
798  feclearexcept(FE_ALL_EXCEPT); // rint/rintf/rintl do set the FE_INEXACT flag.
799  ASSERT_EQ(1234.0, rintl(1234.0L));
800  ASSERT_TRUE((fetestexcept(FE_ALL_EXCEPT) & FE_INEXACT) == 0);
801  ASSERT_EQ(1235.0, rintl(1234.01L));
802  ASSERT_TRUE((fetestexcept(FE_ALL_EXCEPT) & FE_INEXACT) != 0);
803
804  fesetround(FE_TOWARDZERO); // rint/rintf obey the rounding mode.
805  ASSERT_EQ(1234.0, rint(1234.01));
806  ASSERT_EQ(1234.0f, rintf(1234.01f));
807  ASSERT_EQ(1234.0, rintl(1234.01L));
808}
809
810TEST(math, nearbyint) {
811  fesetround(FE_UPWARD); // nearbyint/nearbyintf/nearbyintl obey the rounding mode.
812  feclearexcept(FE_ALL_EXCEPT); // nearbyint/nearbyintf/nearbyintl don't set the FE_INEXACT flag.
813  ASSERT_EQ(1234.0, nearbyint(1234.0));
814  ASSERT_TRUE((fetestexcept(FE_ALL_EXCEPT) & FE_INEXACT) == 0);
815  ASSERT_EQ(1235.0, nearbyint(1234.01));
816  ASSERT_TRUE((fetestexcept(FE_ALL_EXCEPT) & FE_INEXACT) == 0);
817
818  feclearexcept(FE_ALL_EXCEPT);
819  ASSERT_EQ(1234.0f, nearbyintf(1234.0f));
820  ASSERT_TRUE((fetestexcept(FE_ALL_EXCEPT) & FE_INEXACT) == 0);
821  ASSERT_EQ(1235.0f, nearbyintf(1234.01f));
822  ASSERT_TRUE((fetestexcept(FE_ALL_EXCEPT) & FE_INEXACT) == 0);
823
824  feclearexcept(FE_ALL_EXCEPT); // nearbyint/nearbyintf/nearbyintl don't set the FE_INEXACT flag.
825  ASSERT_EQ(1234.0, nearbyintl(1234.0L));
826  ASSERT_TRUE((fetestexcept(FE_ALL_EXCEPT) & FE_INEXACT) == 0);
827  ASSERT_EQ(1235.0, nearbyintl(1234.01L));
828  ASSERT_TRUE((fetestexcept(FE_ALL_EXCEPT) & FE_INEXACT) == 0);
829
830  fesetround(FE_TOWARDZERO); // nearbyint/nearbyintf/nearbyintl obey the rounding mode.
831  ASSERT_EQ(1234.0, nearbyint(1234.01));
832  ASSERT_EQ(1234.0f, nearbyintf(1234.01f));
833  ASSERT_EQ(1234.0, nearbyintl(1234.01L));
834}
835
836TEST(math, lround) {
837  fesetround(FE_UPWARD); // lround ignores the rounding mode.
838  ASSERT_EQ(1234, lround(1234.01));
839  ASSERT_EQ(1234, lroundf(1234.01f));
840  ASSERT_EQ(1234, lroundl(1234.01L));
841}
842
843TEST(math, llround) {
844  fesetround(FE_UPWARD); // llround ignores the rounding mode.
845  ASSERT_EQ(1234L, llround(1234.01));
846  ASSERT_EQ(1234L, llroundf(1234.01f));
847  ASSERT_EQ(1234L, llroundl(1234.01L));
848}
849
850TEST(math, ilogb) {
851  ASSERT_EQ(FP_ILOGB0, ilogb(0.0));
852  ASSERT_EQ(FP_ILOGBNAN, ilogb(nan("")));
853  ASSERT_EQ(INT_MAX, ilogb(HUGE_VAL));
854  ASSERT_EQ(0, ilogb(1.0));
855  ASSERT_EQ(3, ilogb(10.0));
856}
857
858TEST(math, ilogbf) {
859  ASSERT_EQ(FP_ILOGB0, ilogbf(0.0f));
860  ASSERT_EQ(FP_ILOGBNAN, ilogbf(nanf("")));
861  ASSERT_EQ(INT_MAX, ilogbf(HUGE_VALF));
862  ASSERT_EQ(0, ilogbf(1.0f));
863  ASSERT_EQ(3, ilogbf(10.0f));
864}
865
866TEST(math, ilogbl) {
867  ASSERT_EQ(FP_ILOGB0, ilogbl(0.0L));
868  ASSERT_EQ(FP_ILOGBNAN, ilogbl(nanl("")));
869  ASSERT_EQ(INT_MAX, ilogbl(HUGE_VALL));
870  ASSERT_EQ(0L, ilogbl(1.0L));
871  ASSERT_EQ(3L, ilogbl(10.0L));
872}
873
874TEST(math, logb) {
875  ASSERT_EQ(-HUGE_VAL, logb(0.0));
876  ASSERT_TRUE(isnan(logb(nan(""))));
877  ASSERT_TRUE(isinf(logb(HUGE_VAL)));
878  ASSERT_EQ(0.0, logb(1.0));
879  ASSERT_EQ(3.0, logb(10.0));
880}
881
882TEST(math, logbf) {
883  ASSERT_EQ(-HUGE_VALF, logbf(0.0f));
884  ASSERT_TRUE(isnanf(logbf(nanf(""))));
885  ASSERT_TRUE(__isinff(logbf(HUGE_VALF)));
886  ASSERT_EQ(0.0f, logbf(1.0f));
887  ASSERT_EQ(3.0f, logbf(10.0f));
888}
889
890TEST(math, logbl) {
891  ASSERT_EQ(-HUGE_VAL, logbl(0.0L));
892  ASSERT_TRUE(isnan(logbl(nanl(""))));
893  ASSERT_TRUE(isinf(logbl(HUGE_VALL)));
894  ASSERT_EQ(0.0L, logbl(1.0L));
895  ASSERT_EQ(3.0L, logbl(10.0L));
896}
897
898TEST(math, log1p) {
899  ASSERT_EQ(-HUGE_VAL, log1p(-1.0));
900  ASSERT_TRUE(isnan(log1p(nan(""))));
901  ASSERT_TRUE(isinf(log1p(HUGE_VAL)));
902  ASSERT_DOUBLE_EQ(1.0, log1p(M_E - 1.0));
903}
904
905TEST(math, log1pf) {
906  ASSERT_EQ(-HUGE_VALF, log1pf(-1.0f));
907  ASSERT_TRUE(isnanf(log1pf(nanf(""))));
908  ASSERT_TRUE(__isinff(log1pf(HUGE_VALF)));
909  ASSERT_FLOAT_EQ(1.0f, log1pf(static_cast<float>(M_E) - 1.0f));
910}
911
912TEST(math, log1pl) {
913  ASSERT_EQ(-HUGE_VALL, log1pl(-1.0L));
914  ASSERT_TRUE(isnan(log1pl(nanl(""))));
915  ASSERT_TRUE(isinf(log1pl(HUGE_VALL)));
916  ASSERT_DOUBLE_EQ(1.0L, log1pl(M_E - 1.0L));
917}
918
919TEST(math, fdim) {
920  ASSERT_DOUBLE_EQ(0.0, fdim(1.0, 1.0));
921  ASSERT_DOUBLE_EQ(1.0, fdim(2.0, 1.0));
922  ASSERT_DOUBLE_EQ(0.0, fdim(1.0, 2.0));
923}
924
925TEST(math, fdimf) {
926  ASSERT_FLOAT_EQ(0.0f, fdimf(1.0f, 1.0f));
927  ASSERT_FLOAT_EQ(1.0f, fdimf(2.0f, 1.0f));
928  ASSERT_FLOAT_EQ(0.0f, fdimf(1.0f, 2.0f));
929}
930
931TEST(math, fdiml) {
932  ASSERT_DOUBLE_EQ(0.0L, fdiml(1.0L, 1.0L));
933  ASSERT_DOUBLE_EQ(1.0L, fdiml(2.0L, 1.0L));
934  ASSERT_DOUBLE_EQ(0.0L, fdiml(1.0L, 2.0L));
935}
936
937TEST(math, round) {
938  fesetround(FE_TOWARDZERO); // round ignores the rounding mode and always rounds away from zero.
939  ASSERT_DOUBLE_EQ(1.0, round(0.5));
940  ASSERT_DOUBLE_EQ(-1.0, round(-0.5));
941  ASSERT_DOUBLE_EQ(0.0, round(0.0));
942  ASSERT_DOUBLE_EQ(-0.0, round(-0.0));
943  ASSERT_TRUE(isnan(round(nan(""))));
944  ASSERT_DOUBLE_EQ(HUGE_VAL, round(HUGE_VAL));
945}
946
947TEST(math, roundf) {
948  fesetround(FE_TOWARDZERO); // roundf ignores the rounding mode and always rounds away from zero.
949  ASSERT_FLOAT_EQ(1.0f, roundf(0.5f));
950  ASSERT_FLOAT_EQ(-1.0f, roundf(-0.5f));
951  ASSERT_FLOAT_EQ(0.0f, roundf(0.0f));
952  ASSERT_FLOAT_EQ(-0.0f, roundf(-0.0f));
953  ASSERT_TRUE(isnanf(roundf(nanf(""))));
954  ASSERT_FLOAT_EQ(HUGE_VALF, roundf(HUGE_VALF));
955}
956
957TEST(math, roundl) {
958  fesetround(FE_TOWARDZERO); // roundl ignores the rounding mode and always rounds away from zero.
959  ASSERT_DOUBLE_EQ(1.0L, roundl(0.5L));
960  ASSERT_DOUBLE_EQ(-1.0L, roundl(-0.5L));
961  ASSERT_DOUBLE_EQ(0.0L, roundl(0.0L));
962  ASSERT_DOUBLE_EQ(-0.0L, roundl(-0.0L));
963  ASSERT_TRUE(isnan(roundl(nanl(""))));
964  ASSERT_DOUBLE_EQ(HUGE_VALL, roundl(HUGE_VALL));
965}
966
967TEST(math, trunc) {
968  fesetround(FE_UPWARD); // trunc ignores the rounding mode and always rounds toward zero.
969  ASSERT_DOUBLE_EQ(1.0, trunc(1.5));
970  ASSERT_DOUBLE_EQ(-1.0, trunc(-1.5));
971  ASSERT_DOUBLE_EQ(0.0, trunc(0.0));
972  ASSERT_DOUBLE_EQ(-0.0, trunc(-0.0));
973  ASSERT_TRUE(isnan(trunc(nan(""))));
974  ASSERT_DOUBLE_EQ(HUGE_VAL, trunc(HUGE_VAL));
975}
976
977TEST(math, truncf) {
978  fesetround(FE_UPWARD); // truncf ignores the rounding mode and always rounds toward zero.
979  ASSERT_FLOAT_EQ(1.0f, truncf(1.5f));
980  ASSERT_FLOAT_EQ(-1.0f, truncf(-1.5f));
981  ASSERT_FLOAT_EQ(0.0f, truncf(0.0f));
982  ASSERT_FLOAT_EQ(-0.0f, truncf(-0.0f));
983  ASSERT_TRUE(isnan(truncf(nanf(""))));
984  ASSERT_FLOAT_EQ(HUGE_VALF, truncf(HUGE_VALF));
985}
986
987TEST(math, truncl) {
988  fesetround(FE_UPWARD); // truncl ignores the rounding mode and always rounds toward zero.
989  ASSERT_DOUBLE_EQ(1.0L, truncl(1.5L));
990  ASSERT_DOUBLE_EQ(-1.0L, truncl(-1.5L));
991  ASSERT_DOUBLE_EQ(0.0L, truncl(0.0L));
992  ASSERT_DOUBLE_EQ(-0.0L, truncl(-0.0L));
993  ASSERT_TRUE(isnan(truncl(nan(""))));
994  ASSERT_DOUBLE_EQ(HUGE_VALL, truncl(HUGE_VALL));
995}
996
997TEST(math, nextafter) {
998  ASSERT_DOUBLE_EQ(0.0, nextafter(0.0, 0.0));
999  ASSERT_DOUBLE_EQ(4.9406564584124654e-324, nextafter(0.0, 1.0));
1000  ASSERT_DOUBLE_EQ(0.0, nextafter(0.0, -1.0));
1001}
1002
1003TEST(math, nextafterf) {
1004  ASSERT_FLOAT_EQ(0.0f, nextafterf(0.0f, 0.0f));
1005  ASSERT_FLOAT_EQ(1.4012985e-45f, nextafterf(0.0f, 1.0f));
1006  ASSERT_FLOAT_EQ(0.0f, nextafterf(0.0f, -1.0f));
1007}
1008
1009TEST(math, nextafterl) {
1010  ASSERT_DOUBLE_EQ(0.0L, nextafterl(0.0L, 0.0L));
1011  // Use a runtime value to accomodate the case when
1012  // sizeof(double) == sizeof(long double)
1013  long double smallest_positive = ldexpl(1.0L, LDBL_MIN_EXP - LDBL_MANT_DIG);
1014  ASSERT_DOUBLE_EQ(smallest_positive, nextafterl(0.0L, 1.0L));
1015  ASSERT_DOUBLE_EQ(0.0L, nextafterl(0.0L, -1.0L));
1016}
1017
1018// TODO: nexttoward
1019// TODO: nexttowardf
1020// TODO: nexttowardl
1021
1022TEST(math, copysign) {
1023  ASSERT_DOUBLE_EQ(0.0, copysign(0.0, 1.0));
1024  ASSERT_DOUBLE_EQ(-0.0, copysign(0.0, -1.0));
1025  ASSERT_DOUBLE_EQ(2.0, copysign(2.0, 1.0));
1026  ASSERT_DOUBLE_EQ(-2.0, copysign(2.0, -1.0));
1027}
1028
1029TEST(math, copysignf) {
1030  ASSERT_FLOAT_EQ(0.0f, copysignf(0.0f, 1.0f));
1031  ASSERT_FLOAT_EQ(-0.0f, copysignf(0.0f, -1.0f));
1032  ASSERT_FLOAT_EQ(2.0f, copysignf(2.0f, 1.0f));
1033  ASSERT_FLOAT_EQ(-2.0f, copysignf(2.0f, -1.0f));
1034}
1035
1036TEST(math, copysignl) {
1037  ASSERT_DOUBLE_EQ(0.0L, copysignl(0.0L, 1.0L));
1038  ASSERT_DOUBLE_EQ(-0.0L, copysignl(0.0L, -1.0L));
1039  ASSERT_DOUBLE_EQ(2.0L, copysignl(2.0L, 1.0L));
1040  ASSERT_DOUBLE_EQ(-2.0L, copysignl(2.0L, -1.0L));
1041}
1042
1043TEST(math, significand) {
1044  ASSERT_DOUBLE_EQ(0.0, significand(0.0));
1045  ASSERT_DOUBLE_EQ(1.2, significand(1.2));
1046  ASSERT_DOUBLE_EQ(1.5375, significand(12.3));
1047}
1048
1049TEST(math, significandf) {
1050  ASSERT_FLOAT_EQ(0.0f, significandf(0.0f));
1051  ASSERT_FLOAT_EQ(1.2f, significandf(1.2f));
1052  ASSERT_FLOAT_EQ(1.5375f, significandf(12.3f));
1053}
1054
1055extern "C" long double significandl(long double); // BSD's <math.h> doesn't declare this.
1056
1057TEST(math, significandl) {
1058  ASSERT_DOUBLE_EQ(0.0L, significandl(0.0L));
1059  ASSERT_DOUBLE_EQ(1.2L, significandl(1.2L));
1060  ASSERT_DOUBLE_EQ(1.5375L, significandl(12.3L));
1061}
1062
1063TEST(math, scalb) {
1064  ASSERT_DOUBLE_EQ(12.0, scalb(3.0, 2.0));
1065}
1066
1067TEST(math, scalbf) {
1068  ASSERT_FLOAT_EQ(12.0f, scalbf(3.0f, 2.0f));
1069}
1070
1071TEST(math, scalbln) {
1072  ASSERT_DOUBLE_EQ(12.0, scalbln(3.0, 2L));
1073}
1074
1075TEST(math, scalblnf) {
1076  ASSERT_FLOAT_EQ(12.0f, scalblnf(3.0f, 2L));
1077}
1078
1079TEST(math, scalblnl) {
1080  ASSERT_DOUBLE_EQ(12.0L, scalblnl(3.0L, 2L));
1081}
1082
1083TEST(math, scalbn) {
1084  ASSERT_DOUBLE_EQ(12.0, scalbn(3.0, 2));
1085}
1086
1087TEST(math, scalbnf) {
1088  ASSERT_FLOAT_EQ(12.0f, scalbnf(3.0f, 2));
1089}
1090
1091TEST(math, scalbnl) {
1092  ASSERT_DOUBLE_EQ(12.0L, scalbnl(3.0L, 2));
1093}
1094
1095TEST(math, gamma) {
1096  ASSERT_DOUBLE_EQ(log(24.0), gamma(5.0));
1097}
1098
1099TEST(math, gammaf) {
1100  ASSERT_FLOAT_EQ(logf(24.0f), gammaf(5.0f));
1101}
1102
1103TEST(math, gamma_r) {
1104#if defined(__BIONIC__)
1105  int sign;
1106  ASSERT_DOUBLE_EQ(log(24.0), gamma_r(5.0, &sign));
1107  ASSERT_EQ(1, sign);
1108#else // __BIONIC__
1109  GTEST_LOG_(INFO) << "This test does nothing.\n";
1110#endif // __BIONIC__
1111}
1112
1113TEST(math, gammaf_r) {
1114#if defined(__BIONIC__)
1115  int sign;
1116  ASSERT_FLOAT_EQ(logf(24.0f), gammaf_r(5.0f, &sign));
1117  ASSERT_EQ(1, sign);
1118#else // __BIONIC__
1119  GTEST_LOG_(INFO) << "This test does nothing.\n";
1120#endif // __BIONIC__
1121}
1122
1123TEST(math, lgamma) {
1124  ASSERT_DOUBLE_EQ(log(24.0), lgamma(5.0));
1125}
1126
1127TEST(math, lgammaf) {
1128  ASSERT_FLOAT_EQ(logf(24.0f), lgammaf(5.0f));
1129}
1130
1131TEST(math, lgammal) {
1132  ASSERT_DOUBLE_EQ(logl(24.0L), lgammal(5.0L));
1133}
1134
1135TEST(math, lgamma_r) {
1136  int sign;
1137  ASSERT_DOUBLE_EQ(log(24.0), lgamma_r(5.0, &sign));
1138  ASSERT_EQ(1, sign);
1139}
1140
1141TEST(math, lgammaf_r) {
1142  int sign;
1143  ASSERT_FLOAT_EQ(logf(24.0f), lgammaf_r(5.0f, &sign));
1144  ASSERT_EQ(1, sign);
1145}
1146
1147TEST(math, tgamma) {
1148  ASSERT_DOUBLE_EQ(24.0, tgamma(5.0));
1149}
1150
1151TEST(math, tgammaf) {
1152  ASSERT_FLOAT_EQ(24.0f, tgammaf(5.0f));
1153}
1154
1155TEST(math, tgammal) {
1156  ASSERT_DOUBLE_EQ(24.0L, tgammal(5.0L));
1157}
1158
1159TEST(math, j0) {
1160  ASSERT_DOUBLE_EQ(1.0, j0(0.0));
1161  ASSERT_DOUBLE_EQ(0.76519768655796661, j0(1.0));
1162}
1163
1164TEST(math, j0f) {
1165  ASSERT_FLOAT_EQ(1.0f, j0f(0.0f));
1166  ASSERT_FLOAT_EQ(0.76519769f, j0f(1.0f));
1167}
1168
1169TEST(math, j1) {
1170  ASSERT_DOUBLE_EQ(0.0, j1(0.0));
1171  ASSERT_DOUBLE_EQ(0.44005058574493355, j1(1.0));
1172}
1173
1174TEST(math, j1f) {
1175  ASSERT_FLOAT_EQ(0.0f, j1f(0.0f));
1176  ASSERT_FLOAT_EQ(0.44005057f, j1f(1.0f));
1177}
1178
1179TEST(math, jn) {
1180  ASSERT_DOUBLE_EQ(0.0, jn(4, 0.0));
1181  ASSERT_DOUBLE_EQ(0.0024766389641099553, jn(4, 1.0));
1182}
1183
1184TEST(math, jnf) {
1185  ASSERT_FLOAT_EQ(0.0f, jnf(4, 0.0f));
1186  ASSERT_FLOAT_EQ(0.0024766389f, jnf(4, 1.0f));
1187}
1188
1189TEST(math, y0) {
1190  ASSERT_DOUBLE_EQ(-HUGE_VAL, y0(0.0));
1191  ASSERT_DOUBLE_EQ(0.08825696421567697, y0(1.0));
1192}
1193
1194TEST(math, y0f) {
1195  ASSERT_FLOAT_EQ(-HUGE_VALF, y0f(0.0f));
1196  ASSERT_FLOAT_EQ(0.088256963f, y0f(1.0f));
1197}
1198
1199TEST(math, y1) {
1200  ASSERT_DOUBLE_EQ(-HUGE_VAL, y1(0.0));
1201  ASSERT_DOUBLE_EQ(-0.78121282130028868, y1(1.0));
1202}
1203
1204TEST(math, y1f) {
1205  ASSERT_FLOAT_EQ(-HUGE_VALF, y1f(0.0f));
1206  ASSERT_FLOAT_EQ(-0.78121281f, y1f(1.0f));
1207}
1208
1209TEST(math, yn) {
1210  ASSERT_DOUBLE_EQ(-HUGE_VAL, yn(4, 0.0));
1211  ASSERT_DOUBLE_EQ(-33.278423028972114, yn(4, 1.0));
1212}
1213
1214TEST(math, ynf) {
1215  ASSERT_FLOAT_EQ(-HUGE_VALF, ynf(4, 0.0f));
1216  ASSERT_FLOAT_EQ(-33.278423f, ynf(4, 1.0f));
1217}
1218
1219TEST(math, frexp) {
1220  int exp;
1221  double dr = frexp(1024.0, &exp);
1222  ASSERT_DOUBLE_EQ(1024.0, scalbn(dr, exp));
1223}
1224
1225TEST(math, frexpf) {
1226  int exp;
1227  float fr = frexpf(1024.0f, &exp);
1228  ASSERT_FLOAT_EQ(1024.0f, scalbnf(fr, exp));
1229}
1230
1231TEST(math, frexpl) {
1232  int exp;
1233  long double ldr = frexpl(1024.0L, &exp);
1234  ASSERT_DOUBLE_EQ(1024.0L, scalbnl(ldr, exp));
1235}
1236
1237TEST(math, modf) {
1238  double di;
1239  double df = modf(123.75, &di);
1240  ASSERT_DOUBLE_EQ(123.0, di);
1241  ASSERT_DOUBLE_EQ(0.75, df);
1242}
1243
1244TEST(math, modff) {
1245  float fi;
1246  float ff = modff(123.75f, &fi);
1247  ASSERT_FLOAT_EQ(123.0f, fi);
1248  ASSERT_FLOAT_EQ(0.75f, ff);
1249}
1250
1251TEST(math, modfl) {
1252  long double ldi;
1253  long double ldf = modfl(123.75L, &ldi);
1254  ASSERT_DOUBLE_EQ(123.0L, ldi);
1255  ASSERT_DOUBLE_EQ(0.75L, ldf);
1256}
1257
1258TEST(math, remquo) {
1259  int q;
1260  double d = remquo(13.0, 4.0, &q);
1261  ASSERT_EQ(3, q);
1262  ASSERT_DOUBLE_EQ(1.0, d);
1263}
1264
1265TEST(math, remquof) {
1266  int q;
1267  float f = remquof(13.0f, 4.0f, &q);
1268  ASSERT_EQ(3, q);
1269  ASSERT_FLOAT_EQ(1.0, f);
1270}
1271
1272TEST(math, remquol) {
1273  int q;
1274  long double ld = remquol(13.0L, 4.0L, &q);
1275  ASSERT_DOUBLE_EQ(3L, q);
1276  ASSERT_DOUBLE_EQ(1.0L, ld);
1277}
1278
1279// https://code.google.com/p/android/issues/detail?id=6697
1280TEST(math, frexpf_public_bug_6697) {
1281  int exp;
1282  float fr = frexpf(14.1f, &exp);
1283  ASSERT_FLOAT_EQ(14.1f, scalbnf(fr, exp));
1284}
1285