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1 use crate::f64::consts;
2 use crate::num::FpCategory as Fp;
3 use crate::num::*;
4 
5 #[test]
test_num_f64()6 fn test_num_f64() {
7     test_num(10f64, 2f64);
8 }
9 
10 #[test]
test_min_nan()11 fn test_min_nan() {
12     assert_eq!(f64::NAN.min(2.0), 2.0);
13     assert_eq!(2.0f64.min(f64::NAN), 2.0);
14 }
15 
16 #[test]
test_max_nan()17 fn test_max_nan() {
18     assert_eq!(f64::NAN.max(2.0), 2.0);
19     assert_eq!(2.0f64.max(f64::NAN), 2.0);
20 }
21 
22 #[test]
test_nan()23 fn test_nan() {
24     let nan: f64 = f64::NAN;
25     assert!(nan.is_nan());
26     assert!(!nan.is_infinite());
27     assert!(!nan.is_finite());
28     assert!(!nan.is_normal());
29     assert!(nan.is_sign_positive());
30     assert!(!nan.is_sign_negative());
31     assert_eq!(Fp::Nan, nan.classify());
32 }
33 
34 #[test]
test_infinity()35 fn test_infinity() {
36     let inf: f64 = f64::INFINITY;
37     assert!(inf.is_infinite());
38     assert!(!inf.is_finite());
39     assert!(inf.is_sign_positive());
40     assert!(!inf.is_sign_negative());
41     assert!(!inf.is_nan());
42     assert!(!inf.is_normal());
43     assert_eq!(Fp::Infinite, inf.classify());
44 }
45 
46 #[test]
test_neg_infinity()47 fn test_neg_infinity() {
48     let neg_inf: f64 = f64::NEG_INFINITY;
49     assert!(neg_inf.is_infinite());
50     assert!(!neg_inf.is_finite());
51     assert!(!neg_inf.is_sign_positive());
52     assert!(neg_inf.is_sign_negative());
53     assert!(!neg_inf.is_nan());
54     assert!(!neg_inf.is_normal());
55     assert_eq!(Fp::Infinite, neg_inf.classify());
56 }
57 
58 #[test]
test_zero()59 fn test_zero() {
60     let zero: f64 = 0.0f64;
61     assert_eq!(0.0, zero);
62     assert!(!zero.is_infinite());
63     assert!(zero.is_finite());
64     assert!(zero.is_sign_positive());
65     assert!(!zero.is_sign_negative());
66     assert!(!zero.is_nan());
67     assert!(!zero.is_normal());
68     assert_eq!(Fp::Zero, zero.classify());
69 }
70 
71 #[test]
test_neg_zero()72 fn test_neg_zero() {
73     let neg_zero: f64 = -0.0;
74     assert_eq!(0.0, neg_zero);
75     assert!(!neg_zero.is_infinite());
76     assert!(neg_zero.is_finite());
77     assert!(!neg_zero.is_sign_positive());
78     assert!(neg_zero.is_sign_negative());
79     assert!(!neg_zero.is_nan());
80     assert!(!neg_zero.is_normal());
81     assert_eq!(Fp::Zero, neg_zero.classify());
82 }
83 
84 #[cfg_attr(all(target_arch = "wasm32", target_os = "emscripten"), ignore)] // issue 42630
85 #[test]
test_one()86 fn test_one() {
87     let one: f64 = 1.0f64;
88     assert_eq!(1.0, one);
89     assert!(!one.is_infinite());
90     assert!(one.is_finite());
91     assert!(one.is_sign_positive());
92     assert!(!one.is_sign_negative());
93     assert!(!one.is_nan());
94     assert!(one.is_normal());
95     assert_eq!(Fp::Normal, one.classify());
96 }
97 
98 #[test]
test_is_nan()99 fn test_is_nan() {
100     let nan: f64 = f64::NAN;
101     let inf: f64 = f64::INFINITY;
102     let neg_inf: f64 = f64::NEG_INFINITY;
103     assert!(nan.is_nan());
104     assert!(!0.0f64.is_nan());
105     assert!(!5.3f64.is_nan());
106     assert!(!(-10.732f64).is_nan());
107     assert!(!inf.is_nan());
108     assert!(!neg_inf.is_nan());
109 }
110 
111 #[test]
test_is_infinite()112 fn test_is_infinite() {
113     let nan: f64 = f64::NAN;
114     let inf: f64 = f64::INFINITY;
115     let neg_inf: f64 = f64::NEG_INFINITY;
116     assert!(!nan.is_infinite());
117     assert!(inf.is_infinite());
118     assert!(neg_inf.is_infinite());
119     assert!(!0.0f64.is_infinite());
120     assert!(!42.8f64.is_infinite());
121     assert!(!(-109.2f64).is_infinite());
122 }
123 
124 #[test]
test_is_finite()125 fn test_is_finite() {
126     let nan: f64 = f64::NAN;
127     let inf: f64 = f64::INFINITY;
128     let neg_inf: f64 = f64::NEG_INFINITY;
129     assert!(!nan.is_finite());
130     assert!(!inf.is_finite());
131     assert!(!neg_inf.is_finite());
132     assert!(0.0f64.is_finite());
133     assert!(42.8f64.is_finite());
134     assert!((-109.2f64).is_finite());
135 }
136 
137 #[cfg_attr(all(target_arch = "wasm32", target_os = "emscripten"), ignore)] // issue 42630
138 #[test]
test_is_normal()139 fn test_is_normal() {
140     let nan: f64 = f64::NAN;
141     let inf: f64 = f64::INFINITY;
142     let neg_inf: f64 = f64::NEG_INFINITY;
143     let zero: f64 = 0.0f64;
144     let neg_zero: f64 = -0.0;
145     assert!(!nan.is_normal());
146     assert!(!inf.is_normal());
147     assert!(!neg_inf.is_normal());
148     assert!(!zero.is_normal());
149     assert!(!neg_zero.is_normal());
150     assert!(1f64.is_normal());
151     assert!(1e-307f64.is_normal());
152     assert!(!1e-308f64.is_normal());
153 }
154 
155 #[cfg_attr(all(target_arch = "wasm32", target_os = "emscripten"), ignore)] // issue 42630
156 #[test]
test_classify()157 fn test_classify() {
158     let nan: f64 = f64::NAN;
159     let inf: f64 = f64::INFINITY;
160     let neg_inf: f64 = f64::NEG_INFINITY;
161     let zero: f64 = 0.0f64;
162     let neg_zero: f64 = -0.0;
163     assert_eq!(nan.classify(), Fp::Nan);
164     assert_eq!(inf.classify(), Fp::Infinite);
165     assert_eq!(neg_inf.classify(), Fp::Infinite);
166     assert_eq!(zero.classify(), Fp::Zero);
167     assert_eq!(neg_zero.classify(), Fp::Zero);
168     assert_eq!(1e-307f64.classify(), Fp::Normal);
169     assert_eq!(1e-308f64.classify(), Fp::Subnormal);
170 }
171 
172 #[test]
test_floor()173 fn test_floor() {
174     assert_approx_eq!(1.0f64.floor(), 1.0f64);
175     assert_approx_eq!(1.3f64.floor(), 1.0f64);
176     assert_approx_eq!(1.5f64.floor(), 1.0f64);
177     assert_approx_eq!(1.7f64.floor(), 1.0f64);
178     assert_approx_eq!(0.0f64.floor(), 0.0f64);
179     assert_approx_eq!((-0.0f64).floor(), -0.0f64);
180     assert_approx_eq!((-1.0f64).floor(), -1.0f64);
181     assert_approx_eq!((-1.3f64).floor(), -2.0f64);
182     assert_approx_eq!((-1.5f64).floor(), -2.0f64);
183     assert_approx_eq!((-1.7f64).floor(), -2.0f64);
184 }
185 
186 #[test]
test_ceil()187 fn test_ceil() {
188     assert_approx_eq!(1.0f64.ceil(), 1.0f64);
189     assert_approx_eq!(1.3f64.ceil(), 2.0f64);
190     assert_approx_eq!(1.5f64.ceil(), 2.0f64);
191     assert_approx_eq!(1.7f64.ceil(), 2.0f64);
192     assert_approx_eq!(0.0f64.ceil(), 0.0f64);
193     assert_approx_eq!((-0.0f64).ceil(), -0.0f64);
194     assert_approx_eq!((-1.0f64).ceil(), -1.0f64);
195     assert_approx_eq!((-1.3f64).ceil(), -1.0f64);
196     assert_approx_eq!((-1.5f64).ceil(), -1.0f64);
197     assert_approx_eq!((-1.7f64).ceil(), -1.0f64);
198 }
199 
200 #[test]
test_round()201 fn test_round() {
202     assert_approx_eq!(2.5f64.round(), 3.0f64);
203     assert_approx_eq!(1.0f64.round(), 1.0f64);
204     assert_approx_eq!(1.3f64.round(), 1.0f64);
205     assert_approx_eq!(1.5f64.round(), 2.0f64);
206     assert_approx_eq!(1.7f64.round(), 2.0f64);
207     assert_approx_eq!(0.0f64.round(), 0.0f64);
208     assert_approx_eq!((-0.0f64).round(), -0.0f64);
209     assert_approx_eq!((-1.0f64).round(), -1.0f64);
210     assert_approx_eq!((-1.3f64).round(), -1.0f64);
211     assert_approx_eq!((-1.5f64).round(), -2.0f64);
212     assert_approx_eq!((-1.7f64).round(), -2.0f64);
213 }
214 
215 #[test]
test_round_ties_even()216 fn test_round_ties_even() {
217     assert_approx_eq!(2.5f64.round_ties_even(), 2.0f64);
218     assert_approx_eq!(1.0f64.round_ties_even(), 1.0f64);
219     assert_approx_eq!(1.3f64.round_ties_even(), 1.0f64);
220     assert_approx_eq!(1.5f64.round_ties_even(), 2.0f64);
221     assert_approx_eq!(1.7f64.round_ties_even(), 2.0f64);
222     assert_approx_eq!(0.0f64.round_ties_even(), 0.0f64);
223     assert_approx_eq!((-0.0f64).round_ties_even(), -0.0f64);
224     assert_approx_eq!((-1.0f64).round_ties_even(), -1.0f64);
225     assert_approx_eq!((-1.3f64).round_ties_even(), -1.0f64);
226     assert_approx_eq!((-1.5f64).round_ties_even(), -2.0f64);
227     assert_approx_eq!((-1.7f64).round_ties_even(), -2.0f64);
228 }
229 
230 #[test]
test_trunc()231 fn test_trunc() {
232     assert_approx_eq!(1.0f64.trunc(), 1.0f64);
233     assert_approx_eq!(1.3f64.trunc(), 1.0f64);
234     assert_approx_eq!(1.5f64.trunc(), 1.0f64);
235     assert_approx_eq!(1.7f64.trunc(), 1.0f64);
236     assert_approx_eq!(0.0f64.trunc(), 0.0f64);
237     assert_approx_eq!((-0.0f64).trunc(), -0.0f64);
238     assert_approx_eq!((-1.0f64).trunc(), -1.0f64);
239     assert_approx_eq!((-1.3f64).trunc(), -1.0f64);
240     assert_approx_eq!((-1.5f64).trunc(), -1.0f64);
241     assert_approx_eq!((-1.7f64).trunc(), -1.0f64);
242 }
243 
244 #[test]
test_fract()245 fn test_fract() {
246     assert_approx_eq!(1.0f64.fract(), 0.0f64);
247     assert_approx_eq!(1.3f64.fract(), 0.3f64);
248     assert_approx_eq!(1.5f64.fract(), 0.5f64);
249     assert_approx_eq!(1.7f64.fract(), 0.7f64);
250     assert_approx_eq!(0.0f64.fract(), 0.0f64);
251     assert_approx_eq!((-0.0f64).fract(), -0.0f64);
252     assert_approx_eq!((-1.0f64).fract(), -0.0f64);
253     assert_approx_eq!((-1.3f64).fract(), -0.3f64);
254     assert_approx_eq!((-1.5f64).fract(), -0.5f64);
255     assert_approx_eq!((-1.7f64).fract(), -0.7f64);
256 }
257 
258 #[test]
test_abs()259 fn test_abs() {
260     assert_eq!(f64::INFINITY.abs(), f64::INFINITY);
261     assert_eq!(1f64.abs(), 1f64);
262     assert_eq!(0f64.abs(), 0f64);
263     assert_eq!((-0f64).abs(), 0f64);
264     assert_eq!((-1f64).abs(), 1f64);
265     assert_eq!(f64::NEG_INFINITY.abs(), f64::INFINITY);
266     assert_eq!((1f64 / f64::NEG_INFINITY).abs(), 0f64);
267     assert!(f64::NAN.abs().is_nan());
268 }
269 
270 #[test]
test_signum()271 fn test_signum() {
272     assert_eq!(f64::INFINITY.signum(), 1f64);
273     assert_eq!(1f64.signum(), 1f64);
274     assert_eq!(0f64.signum(), 1f64);
275     assert_eq!((-0f64).signum(), -1f64);
276     assert_eq!((-1f64).signum(), -1f64);
277     assert_eq!(f64::NEG_INFINITY.signum(), -1f64);
278     assert_eq!((1f64 / f64::NEG_INFINITY).signum(), -1f64);
279     assert!(f64::NAN.signum().is_nan());
280 }
281 
282 #[test]
test_is_sign_positive()283 fn test_is_sign_positive() {
284     assert!(f64::INFINITY.is_sign_positive());
285     assert!(1f64.is_sign_positive());
286     assert!(0f64.is_sign_positive());
287     assert!(!(-0f64).is_sign_positive());
288     assert!(!(-1f64).is_sign_positive());
289     assert!(!f64::NEG_INFINITY.is_sign_positive());
290     assert!(!(1f64 / f64::NEG_INFINITY).is_sign_positive());
291     assert!(f64::NAN.is_sign_positive());
292     assert!(!(-f64::NAN).is_sign_positive());
293 }
294 
295 #[test]
test_is_sign_negative()296 fn test_is_sign_negative() {
297     assert!(!f64::INFINITY.is_sign_negative());
298     assert!(!1f64.is_sign_negative());
299     assert!(!0f64.is_sign_negative());
300     assert!((-0f64).is_sign_negative());
301     assert!((-1f64).is_sign_negative());
302     assert!(f64::NEG_INFINITY.is_sign_negative());
303     assert!((1f64 / f64::NEG_INFINITY).is_sign_negative());
304     assert!(!f64::NAN.is_sign_negative());
305     assert!((-f64::NAN).is_sign_negative());
306 }
307 
308 #[allow(unused_macros)]
309 macro_rules! assert_f64_biteq {
310     ($left : expr, $right : expr) => {
311         let l: &f64 = &$left;
312         let r: &f64 = &$right;
313         let lb = l.to_bits();
314         let rb = r.to_bits();
315         assert_eq!(lb, rb, "float {} ({:#x}) is not equal to {} ({:#x})", *l, lb, *r, rb);
316     };
317 }
318 
319 // Ignore test on x87 floating point, these platforms do not guarantee NaN
320 // payloads are preserved and flush denormals to zero, failing the tests.
321 #[cfg(not(target_arch = "x86"))]
322 #[test]
test_next_up()323 fn test_next_up() {
324     let tiny = f64::from_bits(1);
325     let tiny_up = f64::from_bits(2);
326     let max_down = f64::from_bits(0x7fef_ffff_ffff_fffe);
327     let largest_subnormal = f64::from_bits(0x000f_ffff_ffff_ffff);
328     let smallest_normal = f64::from_bits(0x0010_0000_0000_0000);
329     assert_f64_biteq!(f64::NEG_INFINITY.next_up(), f64::MIN);
330     assert_f64_biteq!(f64::MIN.next_up(), -max_down);
331     assert_f64_biteq!((-1.0 - f64::EPSILON).next_up(), -1.0);
332     assert_f64_biteq!((-smallest_normal).next_up(), -largest_subnormal);
333     assert_f64_biteq!((-tiny_up).next_up(), -tiny);
334     assert_f64_biteq!((-tiny).next_up(), -0.0f64);
335     assert_f64_biteq!((-0.0f64).next_up(), tiny);
336     assert_f64_biteq!(0.0f64.next_up(), tiny);
337     assert_f64_biteq!(tiny.next_up(), tiny_up);
338     assert_f64_biteq!(largest_subnormal.next_up(), smallest_normal);
339     assert_f64_biteq!(1.0f64.next_up(), 1.0 + f64::EPSILON);
340     assert_f64_biteq!(f64::MAX.next_up(), f64::INFINITY);
341     assert_f64_biteq!(f64::INFINITY.next_up(), f64::INFINITY);
342 
343     let nan0 = f64::NAN;
344     let nan1 = f64::from_bits(f64::NAN.to_bits() ^ 0x000a_aaaa_aaaa_aaaa);
345     let nan2 = f64::from_bits(f64::NAN.to_bits() ^ 0x0005_5555_5555_5555);
346     assert_f64_biteq!(nan0.next_up(), nan0);
347     assert_f64_biteq!(nan1.next_up(), nan1);
348     assert_f64_biteq!(nan2.next_up(), nan2);
349 }
350 
351 // Ignore test on x87 floating point, these platforms do not guarantee NaN
352 // payloads are preserved and flush denormals to zero, failing the tests.
353 #[cfg(not(target_arch = "x86"))]
354 #[test]
test_next_down()355 fn test_next_down() {
356     let tiny = f64::from_bits(1);
357     let tiny_up = f64::from_bits(2);
358     let max_down = f64::from_bits(0x7fef_ffff_ffff_fffe);
359     let largest_subnormal = f64::from_bits(0x000f_ffff_ffff_ffff);
360     let smallest_normal = f64::from_bits(0x0010_0000_0000_0000);
361     assert_f64_biteq!(f64::NEG_INFINITY.next_down(), f64::NEG_INFINITY);
362     assert_f64_biteq!(f64::MIN.next_down(), f64::NEG_INFINITY);
363     assert_f64_biteq!((-max_down).next_down(), f64::MIN);
364     assert_f64_biteq!((-1.0f64).next_down(), -1.0 - f64::EPSILON);
365     assert_f64_biteq!((-largest_subnormal).next_down(), -smallest_normal);
366     assert_f64_biteq!((-tiny).next_down(), -tiny_up);
367     assert_f64_biteq!((-0.0f64).next_down(), -tiny);
368     assert_f64_biteq!((0.0f64).next_down(), -tiny);
369     assert_f64_biteq!(tiny.next_down(), 0.0f64);
370     assert_f64_biteq!(tiny_up.next_down(), tiny);
371     assert_f64_biteq!(smallest_normal.next_down(), largest_subnormal);
372     assert_f64_biteq!((1.0 + f64::EPSILON).next_down(), 1.0f64);
373     assert_f64_biteq!(f64::MAX.next_down(), max_down);
374     assert_f64_biteq!(f64::INFINITY.next_down(), f64::MAX);
375 
376     let nan0 = f64::NAN;
377     let nan1 = f64::from_bits(f64::NAN.to_bits() ^ 0x000a_aaaa_aaaa_aaaa);
378     let nan2 = f64::from_bits(f64::NAN.to_bits() ^ 0x0005_5555_5555_5555);
379     assert_f64_biteq!(nan0.next_down(), nan0);
380     assert_f64_biteq!(nan1.next_down(), nan1);
381     assert_f64_biteq!(nan2.next_down(), nan2);
382 }
383 
384 #[test]
test_mul_add()385 fn test_mul_add() {
386     let nan: f64 = f64::NAN;
387     let inf: f64 = f64::INFINITY;
388     let neg_inf: f64 = f64::NEG_INFINITY;
389     assert_approx_eq!(12.3f64.mul_add(4.5, 6.7), 62.05);
390     assert_approx_eq!((-12.3f64).mul_add(-4.5, -6.7), 48.65);
391     assert_approx_eq!(0.0f64.mul_add(8.9, 1.2), 1.2);
392     assert_approx_eq!(3.4f64.mul_add(-0.0, 5.6), 5.6);
393     assert!(nan.mul_add(7.8, 9.0).is_nan());
394     assert_eq!(inf.mul_add(7.8, 9.0), inf);
395     assert_eq!(neg_inf.mul_add(7.8, 9.0), neg_inf);
396     assert_eq!(8.9f64.mul_add(inf, 3.2), inf);
397     assert_eq!((-3.2f64).mul_add(2.4, neg_inf), neg_inf);
398 }
399 
400 #[test]
test_recip()401 fn test_recip() {
402     let nan: f64 = f64::NAN;
403     let inf: f64 = f64::INFINITY;
404     let neg_inf: f64 = f64::NEG_INFINITY;
405     assert_eq!(1.0f64.recip(), 1.0);
406     assert_eq!(2.0f64.recip(), 0.5);
407     assert_eq!((-0.4f64).recip(), -2.5);
408     assert_eq!(0.0f64.recip(), inf);
409     assert!(nan.recip().is_nan());
410     assert_eq!(inf.recip(), 0.0);
411     assert_eq!(neg_inf.recip(), 0.0);
412 }
413 
414 #[test]
test_powi()415 fn test_powi() {
416     let nan: f64 = f64::NAN;
417     let inf: f64 = f64::INFINITY;
418     let neg_inf: f64 = f64::NEG_INFINITY;
419     assert_eq!(1.0f64.powi(1), 1.0);
420     assert_approx_eq!((-3.1f64).powi(2), 9.61);
421     assert_approx_eq!(5.9f64.powi(-2), 0.028727);
422     assert_eq!(8.3f64.powi(0), 1.0);
423     assert!(nan.powi(2).is_nan());
424     assert_eq!(inf.powi(3), inf);
425     assert_eq!(neg_inf.powi(2), inf);
426 }
427 
428 #[test]
test_powf()429 fn test_powf() {
430     let nan: f64 = f64::NAN;
431     let inf: f64 = f64::INFINITY;
432     let neg_inf: f64 = f64::NEG_INFINITY;
433     assert_eq!(1.0f64.powf(1.0), 1.0);
434     assert_approx_eq!(3.4f64.powf(4.5), 246.408183);
435     assert_approx_eq!(2.7f64.powf(-3.2), 0.041652);
436     assert_approx_eq!((-3.1f64).powf(2.0), 9.61);
437     assert_approx_eq!(5.9f64.powf(-2.0), 0.028727);
438     assert_eq!(8.3f64.powf(0.0), 1.0);
439     assert!(nan.powf(2.0).is_nan());
440     assert_eq!(inf.powf(2.0), inf);
441     assert_eq!(neg_inf.powf(3.0), neg_inf);
442 }
443 
444 #[test]
test_sqrt_domain()445 fn test_sqrt_domain() {
446     assert!(f64::NAN.sqrt().is_nan());
447     assert!(f64::NEG_INFINITY.sqrt().is_nan());
448     assert!((-1.0f64).sqrt().is_nan());
449     assert_eq!((-0.0f64).sqrt(), -0.0);
450     assert_eq!(0.0f64.sqrt(), 0.0);
451     assert_eq!(1.0f64.sqrt(), 1.0);
452     assert_eq!(f64::INFINITY.sqrt(), f64::INFINITY);
453 }
454 
455 #[test]
test_exp()456 fn test_exp() {
457     assert_eq!(1.0, 0.0f64.exp());
458     assert_approx_eq!(2.718282, 1.0f64.exp());
459     assert_approx_eq!(148.413159, 5.0f64.exp());
460 
461     let inf: f64 = f64::INFINITY;
462     let neg_inf: f64 = f64::NEG_INFINITY;
463     let nan: f64 = f64::NAN;
464     assert_eq!(inf, inf.exp());
465     assert_eq!(0.0, neg_inf.exp());
466     assert!(nan.exp().is_nan());
467 }
468 
469 #[test]
test_exp2()470 fn test_exp2() {
471     assert_eq!(32.0, 5.0f64.exp2());
472     assert_eq!(1.0, 0.0f64.exp2());
473 
474     let inf: f64 = f64::INFINITY;
475     let neg_inf: f64 = f64::NEG_INFINITY;
476     let nan: f64 = f64::NAN;
477     assert_eq!(inf, inf.exp2());
478     assert_eq!(0.0, neg_inf.exp2());
479     assert!(nan.exp2().is_nan());
480 }
481 
482 #[test]
test_ln()483 fn test_ln() {
484     let nan: f64 = f64::NAN;
485     let inf: f64 = f64::INFINITY;
486     let neg_inf: f64 = f64::NEG_INFINITY;
487     assert_approx_eq!(1.0f64.exp().ln(), 1.0);
488     assert!(nan.ln().is_nan());
489     assert_eq!(inf.ln(), inf);
490     assert!(neg_inf.ln().is_nan());
491     assert!((-2.3f64).ln().is_nan());
492     assert_eq!((-0.0f64).ln(), neg_inf);
493     assert_eq!(0.0f64.ln(), neg_inf);
494     assert_approx_eq!(4.0f64.ln(), 1.386294);
495 }
496 
497 #[test]
test_log()498 fn test_log() {
499     let nan: f64 = f64::NAN;
500     let inf: f64 = f64::INFINITY;
501     let neg_inf: f64 = f64::NEG_INFINITY;
502     assert_eq!(10.0f64.log(10.0), 1.0);
503     assert_approx_eq!(2.3f64.log(3.5), 0.664858);
504     assert_eq!(1.0f64.exp().log(1.0f64.exp()), 1.0);
505     assert!(1.0f64.log(1.0).is_nan());
506     assert!(1.0f64.log(-13.9).is_nan());
507     assert!(nan.log(2.3).is_nan());
508     assert_eq!(inf.log(10.0), inf);
509     assert!(neg_inf.log(8.8).is_nan());
510     assert!((-2.3f64).log(0.1).is_nan());
511     assert_eq!((-0.0f64).log(2.0), neg_inf);
512     assert_eq!(0.0f64.log(7.0), neg_inf);
513 }
514 
515 #[test]
test_log2()516 fn test_log2() {
517     let nan: f64 = f64::NAN;
518     let inf: f64 = f64::INFINITY;
519     let neg_inf: f64 = f64::NEG_INFINITY;
520     assert_approx_eq!(10.0f64.log2(), 3.321928);
521     assert_approx_eq!(2.3f64.log2(), 1.201634);
522     assert_approx_eq!(1.0f64.exp().log2(), 1.442695);
523     assert!(nan.log2().is_nan());
524     assert_eq!(inf.log2(), inf);
525     assert!(neg_inf.log2().is_nan());
526     assert!((-2.3f64).log2().is_nan());
527     assert_eq!((-0.0f64).log2(), neg_inf);
528     assert_eq!(0.0f64.log2(), neg_inf);
529 }
530 
531 #[test]
test_log10()532 fn test_log10() {
533     let nan: f64 = f64::NAN;
534     let inf: f64 = f64::INFINITY;
535     let neg_inf: f64 = f64::NEG_INFINITY;
536     assert_eq!(10.0f64.log10(), 1.0);
537     assert_approx_eq!(2.3f64.log10(), 0.361728);
538     assert_approx_eq!(1.0f64.exp().log10(), 0.434294);
539     assert_eq!(1.0f64.log10(), 0.0);
540     assert!(nan.log10().is_nan());
541     assert_eq!(inf.log10(), inf);
542     assert!(neg_inf.log10().is_nan());
543     assert!((-2.3f64).log10().is_nan());
544     assert_eq!((-0.0f64).log10(), neg_inf);
545     assert_eq!(0.0f64.log10(), neg_inf);
546 }
547 
548 #[test]
test_to_degrees()549 fn test_to_degrees() {
550     let pi: f64 = consts::PI;
551     let nan: f64 = f64::NAN;
552     let inf: f64 = f64::INFINITY;
553     let neg_inf: f64 = f64::NEG_INFINITY;
554     assert_eq!(0.0f64.to_degrees(), 0.0);
555     assert_approx_eq!((-5.8f64).to_degrees(), -332.315521);
556     assert_eq!(pi.to_degrees(), 180.0);
557     assert!(nan.to_degrees().is_nan());
558     assert_eq!(inf.to_degrees(), inf);
559     assert_eq!(neg_inf.to_degrees(), neg_inf);
560 }
561 
562 #[test]
test_to_radians()563 fn test_to_radians() {
564     let pi: f64 = consts::PI;
565     let nan: f64 = f64::NAN;
566     let inf: f64 = f64::INFINITY;
567     let neg_inf: f64 = f64::NEG_INFINITY;
568     assert_eq!(0.0f64.to_radians(), 0.0);
569     assert_approx_eq!(154.6f64.to_radians(), 2.698279);
570     assert_approx_eq!((-332.31f64).to_radians(), -5.799903);
571     assert_eq!(180.0f64.to_radians(), pi);
572     assert!(nan.to_radians().is_nan());
573     assert_eq!(inf.to_radians(), inf);
574     assert_eq!(neg_inf.to_radians(), neg_inf);
575 }
576 
577 #[test]
test_asinh()578 fn test_asinh() {
579     assert_eq!(0.0f64.asinh(), 0.0f64);
580     assert_eq!((-0.0f64).asinh(), -0.0f64);
581 
582     let inf: f64 = f64::INFINITY;
583     let neg_inf: f64 = f64::NEG_INFINITY;
584     let nan: f64 = f64::NAN;
585     assert_eq!(inf.asinh(), inf);
586     assert_eq!(neg_inf.asinh(), neg_inf);
587     assert!(nan.asinh().is_nan());
588     assert!((-0.0f64).asinh().is_sign_negative());
589     // issue 63271
590     assert_approx_eq!(2.0f64.asinh(), 1.443635475178810342493276740273105f64);
591     assert_approx_eq!((-2.0f64).asinh(), -1.443635475178810342493276740273105f64);
592     // regression test for the catastrophic cancellation fixed in 72486
593     assert_approx_eq!((-67452098.07139316f64).asinh(), -18.72007542627454439398548429400083);
594 
595     // test for low accuracy from issue 104548
596     assert_approx_eq!(60.0f64, 60.0f64.sinh().asinh());
597     // mul needed for approximate comparison to be meaningful
598     assert_approx_eq!(1.0f64, 1e-15f64.sinh().asinh() * 1e15f64);
599 }
600 
601 #[test]
test_acosh()602 fn test_acosh() {
603     assert_eq!(1.0f64.acosh(), 0.0f64);
604     assert!(0.999f64.acosh().is_nan());
605 
606     let inf: f64 = f64::INFINITY;
607     let neg_inf: f64 = f64::NEG_INFINITY;
608     let nan: f64 = f64::NAN;
609     assert_eq!(inf.acosh(), inf);
610     assert!(neg_inf.acosh().is_nan());
611     assert!(nan.acosh().is_nan());
612     assert_approx_eq!(2.0f64.acosh(), 1.31695789692481670862504634730796844f64);
613     assert_approx_eq!(3.0f64.acosh(), 1.76274717403908605046521864995958461f64);
614 
615     // test for low accuracy from issue 104548
616     assert_approx_eq!(60.0f64, 60.0f64.cosh().acosh());
617 }
618 
619 #[test]
test_atanh()620 fn test_atanh() {
621     assert_eq!(0.0f64.atanh(), 0.0f64);
622     assert_eq!((-0.0f64).atanh(), -0.0f64);
623 
624     let inf: f64 = f64::INFINITY;
625     let neg_inf: f64 = f64::NEG_INFINITY;
626     let nan: f64 = f64::NAN;
627     assert_eq!(1.0f64.atanh(), inf);
628     assert_eq!((-1.0f64).atanh(), neg_inf);
629     assert!(2f64.atanh().atanh().is_nan());
630     assert!((-2f64).atanh().atanh().is_nan());
631     assert!(inf.atanh().is_nan());
632     assert!(neg_inf.atanh().is_nan());
633     assert!(nan.atanh().is_nan());
634     assert_approx_eq!(0.5f64.atanh(), 0.54930614433405484569762261846126285f64);
635     assert_approx_eq!((-0.5f64).atanh(), -0.54930614433405484569762261846126285f64);
636 }
637 
638 #[test]
test_real_consts()639 fn test_real_consts() {
640     use super::consts;
641     let pi: f64 = consts::PI;
642     let frac_pi_2: f64 = consts::FRAC_PI_2;
643     let frac_pi_3: f64 = consts::FRAC_PI_3;
644     let frac_pi_4: f64 = consts::FRAC_PI_4;
645     let frac_pi_6: f64 = consts::FRAC_PI_6;
646     let frac_pi_8: f64 = consts::FRAC_PI_8;
647     let frac_1_pi: f64 = consts::FRAC_1_PI;
648     let frac_2_pi: f64 = consts::FRAC_2_PI;
649     let frac_2_sqrtpi: f64 = consts::FRAC_2_SQRT_PI;
650     let sqrt2: f64 = consts::SQRT_2;
651     let frac_1_sqrt2: f64 = consts::FRAC_1_SQRT_2;
652     let e: f64 = consts::E;
653     let log2_e: f64 = consts::LOG2_E;
654     let log10_e: f64 = consts::LOG10_E;
655     let ln_2: f64 = consts::LN_2;
656     let ln_10: f64 = consts::LN_10;
657 
658     assert_approx_eq!(frac_pi_2, pi / 2f64);
659     assert_approx_eq!(frac_pi_3, pi / 3f64);
660     assert_approx_eq!(frac_pi_4, pi / 4f64);
661     assert_approx_eq!(frac_pi_6, pi / 6f64);
662     assert_approx_eq!(frac_pi_8, pi / 8f64);
663     assert_approx_eq!(frac_1_pi, 1f64 / pi);
664     assert_approx_eq!(frac_2_pi, 2f64 / pi);
665     assert_approx_eq!(frac_2_sqrtpi, 2f64 / pi.sqrt());
666     assert_approx_eq!(sqrt2, 2f64.sqrt());
667     assert_approx_eq!(frac_1_sqrt2, 1f64 / 2f64.sqrt());
668     assert_approx_eq!(log2_e, e.log2());
669     assert_approx_eq!(log10_e, e.log10());
670     assert_approx_eq!(ln_2, 2f64.ln());
671     assert_approx_eq!(ln_10, 10f64.ln());
672 }
673 
674 #[test]
test_float_bits_conv()675 fn test_float_bits_conv() {
676     assert_eq!((1f64).to_bits(), 0x3ff0000000000000);
677     assert_eq!((12.5f64).to_bits(), 0x4029000000000000);
678     assert_eq!((1337f64).to_bits(), 0x4094e40000000000);
679     assert_eq!((-14.25f64).to_bits(), 0xc02c800000000000);
680     assert_approx_eq!(f64::from_bits(0x3ff0000000000000), 1.0);
681     assert_approx_eq!(f64::from_bits(0x4029000000000000), 12.5);
682     assert_approx_eq!(f64::from_bits(0x4094e40000000000), 1337.0);
683     assert_approx_eq!(f64::from_bits(0xc02c800000000000), -14.25);
684 
685     // Check that NaNs roundtrip their bits regardless of signaling-ness
686     // 0xA is 0b1010; 0x5 is 0b0101 -- so these two together clobbers all the mantissa bits
687     let masked_nan1 = f64::NAN.to_bits() ^ 0x000A_AAAA_AAAA_AAAA;
688     let masked_nan2 = f64::NAN.to_bits() ^ 0x0005_5555_5555_5555;
689     assert!(f64::from_bits(masked_nan1).is_nan());
690     assert!(f64::from_bits(masked_nan2).is_nan());
691 
692     assert_eq!(f64::from_bits(masked_nan1).to_bits(), masked_nan1);
693     assert_eq!(f64::from_bits(masked_nan2).to_bits(), masked_nan2);
694 }
695 
696 #[test]
697 #[should_panic]
test_clamp_min_greater_than_max()698 fn test_clamp_min_greater_than_max() {
699     let _ = 1.0f64.clamp(3.0, 1.0);
700 }
701 
702 #[test]
703 #[should_panic]
test_clamp_min_is_nan()704 fn test_clamp_min_is_nan() {
705     let _ = 1.0f64.clamp(f64::NAN, 1.0);
706 }
707 
708 #[test]
709 #[should_panic]
test_clamp_max_is_nan()710 fn test_clamp_max_is_nan() {
711     let _ = 1.0f64.clamp(3.0, f64::NAN);
712 }
713 
714 #[test]
test_total_cmp()715 fn test_total_cmp() {
716     use core::cmp::Ordering;
717 
718     fn quiet_bit_mask() -> u64 {
719         1 << (f64::MANTISSA_DIGITS - 2)
720     }
721 
722     fn min_subnorm() -> f64 {
723         f64::MIN_POSITIVE / f64::powf(2.0, f64::MANTISSA_DIGITS as f64 - 1.0)
724     }
725 
726     fn max_subnorm() -> f64 {
727         f64::MIN_POSITIVE - min_subnorm()
728     }
729 
730     fn q_nan() -> f64 {
731         f64::from_bits(f64::NAN.to_bits() | quiet_bit_mask())
732     }
733 
734     fn s_nan() -> f64 {
735         f64::from_bits((f64::NAN.to_bits() & !quiet_bit_mask()) + 42)
736     }
737 
738     assert_eq!(Ordering::Equal, (-q_nan()).total_cmp(&-q_nan()));
739     assert_eq!(Ordering::Equal, (-s_nan()).total_cmp(&-s_nan()));
740     assert_eq!(Ordering::Equal, (-f64::INFINITY).total_cmp(&-f64::INFINITY));
741     assert_eq!(Ordering::Equal, (-f64::MAX).total_cmp(&-f64::MAX));
742     assert_eq!(Ordering::Equal, (-2.5_f64).total_cmp(&-2.5));
743     assert_eq!(Ordering::Equal, (-1.0_f64).total_cmp(&-1.0));
744     assert_eq!(Ordering::Equal, (-1.5_f64).total_cmp(&-1.5));
745     assert_eq!(Ordering::Equal, (-0.5_f64).total_cmp(&-0.5));
746     assert_eq!(Ordering::Equal, (-f64::MIN_POSITIVE).total_cmp(&-f64::MIN_POSITIVE));
747     assert_eq!(Ordering::Equal, (-max_subnorm()).total_cmp(&-max_subnorm()));
748     assert_eq!(Ordering::Equal, (-min_subnorm()).total_cmp(&-min_subnorm()));
749     assert_eq!(Ordering::Equal, (-0.0_f64).total_cmp(&-0.0));
750     assert_eq!(Ordering::Equal, 0.0_f64.total_cmp(&0.0));
751     assert_eq!(Ordering::Equal, min_subnorm().total_cmp(&min_subnorm()));
752     assert_eq!(Ordering::Equal, max_subnorm().total_cmp(&max_subnorm()));
753     assert_eq!(Ordering::Equal, f64::MIN_POSITIVE.total_cmp(&f64::MIN_POSITIVE));
754     assert_eq!(Ordering::Equal, 0.5_f64.total_cmp(&0.5));
755     assert_eq!(Ordering::Equal, 1.0_f64.total_cmp(&1.0));
756     assert_eq!(Ordering::Equal, 1.5_f64.total_cmp(&1.5));
757     assert_eq!(Ordering::Equal, 2.5_f64.total_cmp(&2.5));
758     assert_eq!(Ordering::Equal, f64::MAX.total_cmp(&f64::MAX));
759     assert_eq!(Ordering::Equal, f64::INFINITY.total_cmp(&f64::INFINITY));
760     assert_eq!(Ordering::Equal, s_nan().total_cmp(&s_nan()));
761     assert_eq!(Ordering::Equal, q_nan().total_cmp(&q_nan()));
762 
763     assert_eq!(Ordering::Less, (-q_nan()).total_cmp(&-s_nan()));
764     assert_eq!(Ordering::Less, (-s_nan()).total_cmp(&-f64::INFINITY));
765     assert_eq!(Ordering::Less, (-f64::INFINITY).total_cmp(&-f64::MAX));
766     assert_eq!(Ordering::Less, (-f64::MAX).total_cmp(&-2.5));
767     assert_eq!(Ordering::Less, (-2.5_f64).total_cmp(&-1.5));
768     assert_eq!(Ordering::Less, (-1.5_f64).total_cmp(&-1.0));
769     assert_eq!(Ordering::Less, (-1.0_f64).total_cmp(&-0.5));
770     assert_eq!(Ordering::Less, (-0.5_f64).total_cmp(&-f64::MIN_POSITIVE));
771     assert_eq!(Ordering::Less, (-f64::MIN_POSITIVE).total_cmp(&-max_subnorm()));
772     assert_eq!(Ordering::Less, (-max_subnorm()).total_cmp(&-min_subnorm()));
773     assert_eq!(Ordering::Less, (-min_subnorm()).total_cmp(&-0.0));
774     assert_eq!(Ordering::Less, (-0.0_f64).total_cmp(&0.0));
775     assert_eq!(Ordering::Less, 0.0_f64.total_cmp(&min_subnorm()));
776     assert_eq!(Ordering::Less, min_subnorm().total_cmp(&max_subnorm()));
777     assert_eq!(Ordering::Less, max_subnorm().total_cmp(&f64::MIN_POSITIVE));
778     assert_eq!(Ordering::Less, f64::MIN_POSITIVE.total_cmp(&0.5));
779     assert_eq!(Ordering::Less, 0.5_f64.total_cmp(&1.0));
780     assert_eq!(Ordering::Less, 1.0_f64.total_cmp(&1.5));
781     assert_eq!(Ordering::Less, 1.5_f64.total_cmp(&2.5));
782     assert_eq!(Ordering::Less, 2.5_f64.total_cmp(&f64::MAX));
783     assert_eq!(Ordering::Less, f64::MAX.total_cmp(&f64::INFINITY));
784     assert_eq!(Ordering::Less, f64::INFINITY.total_cmp(&s_nan()));
785     assert_eq!(Ordering::Less, s_nan().total_cmp(&q_nan()));
786 
787     assert_eq!(Ordering::Greater, (-s_nan()).total_cmp(&-q_nan()));
788     assert_eq!(Ordering::Greater, (-f64::INFINITY).total_cmp(&-s_nan()));
789     assert_eq!(Ordering::Greater, (-f64::MAX).total_cmp(&-f64::INFINITY));
790     assert_eq!(Ordering::Greater, (-2.5_f64).total_cmp(&-f64::MAX));
791     assert_eq!(Ordering::Greater, (-1.5_f64).total_cmp(&-2.5));
792     assert_eq!(Ordering::Greater, (-1.0_f64).total_cmp(&-1.5));
793     assert_eq!(Ordering::Greater, (-0.5_f64).total_cmp(&-1.0));
794     assert_eq!(Ordering::Greater, (-f64::MIN_POSITIVE).total_cmp(&-0.5));
795     assert_eq!(Ordering::Greater, (-max_subnorm()).total_cmp(&-f64::MIN_POSITIVE));
796     assert_eq!(Ordering::Greater, (-min_subnorm()).total_cmp(&-max_subnorm()));
797     assert_eq!(Ordering::Greater, (-0.0_f64).total_cmp(&-min_subnorm()));
798     assert_eq!(Ordering::Greater, 0.0_f64.total_cmp(&-0.0));
799     assert_eq!(Ordering::Greater, min_subnorm().total_cmp(&0.0));
800     assert_eq!(Ordering::Greater, max_subnorm().total_cmp(&min_subnorm()));
801     assert_eq!(Ordering::Greater, f64::MIN_POSITIVE.total_cmp(&max_subnorm()));
802     assert_eq!(Ordering::Greater, 0.5_f64.total_cmp(&f64::MIN_POSITIVE));
803     assert_eq!(Ordering::Greater, 1.0_f64.total_cmp(&0.5));
804     assert_eq!(Ordering::Greater, 1.5_f64.total_cmp(&1.0));
805     assert_eq!(Ordering::Greater, 2.5_f64.total_cmp(&1.5));
806     assert_eq!(Ordering::Greater, f64::MAX.total_cmp(&2.5));
807     assert_eq!(Ordering::Greater, f64::INFINITY.total_cmp(&f64::MAX));
808     assert_eq!(Ordering::Greater, s_nan().total_cmp(&f64::INFINITY));
809     assert_eq!(Ordering::Greater, q_nan().total_cmp(&s_nan()));
810 
811     assert_eq!(Ordering::Less, (-q_nan()).total_cmp(&-s_nan()));
812     assert_eq!(Ordering::Less, (-q_nan()).total_cmp(&-f64::INFINITY));
813     assert_eq!(Ordering::Less, (-q_nan()).total_cmp(&-f64::MAX));
814     assert_eq!(Ordering::Less, (-q_nan()).total_cmp(&-2.5));
815     assert_eq!(Ordering::Less, (-q_nan()).total_cmp(&-1.5));
816     assert_eq!(Ordering::Less, (-q_nan()).total_cmp(&-1.0));
817     assert_eq!(Ordering::Less, (-q_nan()).total_cmp(&-0.5));
818     assert_eq!(Ordering::Less, (-q_nan()).total_cmp(&-f64::MIN_POSITIVE));
819     assert_eq!(Ordering::Less, (-q_nan()).total_cmp(&-max_subnorm()));
820     assert_eq!(Ordering::Less, (-q_nan()).total_cmp(&-min_subnorm()));
821     assert_eq!(Ordering::Less, (-q_nan()).total_cmp(&-0.0));
822     assert_eq!(Ordering::Less, (-q_nan()).total_cmp(&0.0));
823     assert_eq!(Ordering::Less, (-q_nan()).total_cmp(&min_subnorm()));
824     assert_eq!(Ordering::Less, (-q_nan()).total_cmp(&max_subnorm()));
825     assert_eq!(Ordering::Less, (-q_nan()).total_cmp(&f64::MIN_POSITIVE));
826     assert_eq!(Ordering::Less, (-q_nan()).total_cmp(&0.5));
827     assert_eq!(Ordering::Less, (-q_nan()).total_cmp(&1.0));
828     assert_eq!(Ordering::Less, (-q_nan()).total_cmp(&1.5));
829     assert_eq!(Ordering::Less, (-q_nan()).total_cmp(&2.5));
830     assert_eq!(Ordering::Less, (-q_nan()).total_cmp(&f64::MAX));
831     assert_eq!(Ordering::Less, (-q_nan()).total_cmp(&f64::INFINITY));
832     assert_eq!(Ordering::Less, (-q_nan()).total_cmp(&s_nan()));
833 
834     assert_eq!(Ordering::Less, (-s_nan()).total_cmp(&-f64::INFINITY));
835     assert_eq!(Ordering::Less, (-s_nan()).total_cmp(&-f64::MAX));
836     assert_eq!(Ordering::Less, (-s_nan()).total_cmp(&-2.5));
837     assert_eq!(Ordering::Less, (-s_nan()).total_cmp(&-1.5));
838     assert_eq!(Ordering::Less, (-s_nan()).total_cmp(&-1.0));
839     assert_eq!(Ordering::Less, (-s_nan()).total_cmp(&-0.5));
840     assert_eq!(Ordering::Less, (-s_nan()).total_cmp(&-f64::MIN_POSITIVE));
841     assert_eq!(Ordering::Less, (-s_nan()).total_cmp(&-max_subnorm()));
842     assert_eq!(Ordering::Less, (-s_nan()).total_cmp(&-min_subnorm()));
843     assert_eq!(Ordering::Less, (-s_nan()).total_cmp(&-0.0));
844     assert_eq!(Ordering::Less, (-s_nan()).total_cmp(&0.0));
845     assert_eq!(Ordering::Less, (-s_nan()).total_cmp(&min_subnorm()));
846     assert_eq!(Ordering::Less, (-s_nan()).total_cmp(&max_subnorm()));
847     assert_eq!(Ordering::Less, (-s_nan()).total_cmp(&f64::MIN_POSITIVE));
848     assert_eq!(Ordering::Less, (-s_nan()).total_cmp(&0.5));
849     assert_eq!(Ordering::Less, (-s_nan()).total_cmp(&1.0));
850     assert_eq!(Ordering::Less, (-s_nan()).total_cmp(&1.5));
851     assert_eq!(Ordering::Less, (-s_nan()).total_cmp(&2.5));
852     assert_eq!(Ordering::Less, (-s_nan()).total_cmp(&f64::MAX));
853     assert_eq!(Ordering::Less, (-s_nan()).total_cmp(&f64::INFINITY));
854     assert_eq!(Ordering::Less, (-s_nan()).total_cmp(&s_nan()));
855 }
856