v2 / vlib / rand / pcg32 / pcg32_test.v
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1import math
2import rand
3import rand.pcg32
4import rand.seed
5
6const range_limit = 40
7const value_count = 1000
8const seeds = [[u32(42), 242, 267, 14195], [u32(256), 340, 1451, 1505]]
9
10const sample_size = 1000
11const stats_epsilon = 0.05
12const inv_sqrt_12 = 1.0 / math.sqrt(12)
13
14fn gen_randoms(seed_data []u32, bound int) []u32 {
15 mut randoms := []u32{len: 20}
16 mut rng := &rand.PRNG(&pcg32.PCG32RNG{})
17 rng.seed(seed_data)
18 for i in 0 .. 20 {
19 randoms[i] = rng.u32n(u32(bound)) or { panic("Couldn't obtain u32") }
20 }
21 return randoms
22}
23
24fn test_pcg32_reproducibility() {
25 seed_data := seed.time_seed_array(4)
26 randoms1 := gen_randoms(seed_data, 1000)
27 randoms2 := gen_randoms(seed_data, 1000)
28 assert randoms1.len == randoms2.len
29 len := randoms1.len
30 for i in 0 .. len {
31 r1 := randoms1[i]
32 r2 := randoms2[i]
33 assert r1 == r2
34 }
35}
36
37fn test_pcg32_variability() {
38 // If this test fails and if it is certainly not the implementation
39 // at fault, try changing the seed values. Repeated values are
40 // improbable but not impossible.
41 for seed in seeds {
42 mut rng := &rand.PRNG(&pcg32.PCG32RNG{})
43 rng.seed(seed)
44 mut values := []u64{cap: value_count}
45 for i in 0 .. value_count {
46 value := rng.u64()
47 assert value !in values
48 assert values.len == i
49 values << value
50 }
51 }
52}
53
54fn check_uniformity_u64(mut rng rand.PRNG, range u64) {
55 range_f64 := f64(range)
56 expected_mean := range_f64 / 2.0
57 mut variance := 0.0
58 for _ in 0 .. sample_size {
59 diff := f64(rng.u64n(range) or { panic("Couldn't obtain u64") }) - expected_mean
60 variance += diff * diff
61 }
62 variance /= sample_size - 1
63 sigma := math.sqrt(variance)
64 expected_sigma := range_f64 * inv_sqrt_12
65 error := (sigma - expected_sigma) / expected_sigma
66 assert math.abs(error) < stats_epsilon
67}
68
69fn test_pcg32_uniformity_u64() {
70 ranges := [14019545, 80240, 130]
71 for seed in seeds {
72 mut rng := &rand.PRNG(&pcg32.PCG32RNG{})
73 rng.seed(seed)
74 for range in ranges {
75 check_uniformity_u64(mut rng, u64(range))
76 }
77 }
78}
79
80fn check_uniformity_f64(mut rng rand.PRNG) {
81 expected_mean := 0.5
82 mut variance := 0.0
83 for _ in 0 .. sample_size {
84 diff := rng.f64() - expected_mean
85 variance += diff * diff
86 }
87 variance /= sample_size - 1
88 sigma := math.sqrt(variance)
89 expected_sigma := inv_sqrt_12
90 error := (sigma - expected_sigma) / expected_sigma
91 assert math.abs(error) < stats_epsilon
92}
93
94fn test_pcg32_uniformity_f64() {
95 // The f64 version
96 for seed in seeds {
97 mut rng := &rand.PRNG(&pcg32.PCG32RNG{})
98 rng.seed(seed)
99 check_uniformity_f64(mut rng)
100 }
101}
102
103fn test_pcg32_u32n() {
104 max := u32(16384)
105 for seed in seeds {
106 mut rng := &rand.PRNG(&pcg32.PCG32RNG{})
107 rng.seed(seed)
108 for _ in 0 .. range_limit {
109 value := rng.u32n(max) or { panic("Couldn't obtain u32") }
110 assert value >= 0
111 assert value < max
112 }
113 }
114}
115
116fn test_pcg32_u64n() {
117 max := u64(379091181005)
118 for seed in seeds {
119 mut rng := &rand.PRNG(&pcg32.PCG32RNG{})
120 rng.seed(seed)
121 for _ in 0 .. range_limit {
122 value := rng.u64n(max) or { panic("Couldn't obtain u64") }
123 assert value >= 0
124 assert value < max
125 }
126 }
127}
128
129fn test_pcg32_u32_in_range() {
130 max := u32(484468466)
131 min := u32(316846)
132 for seed in seeds {
133 mut rng := &rand.PRNG(&pcg32.PCG32RNG{})
134 rng.seed(seed)
135 for _ in 0 .. range_limit {
136 value := rng.u32_in_range(u32(min), u32(max)) or {
137 panic("Couldn't obtain u32 in range")
138 }
139 assert value >= min
140 assert value < max
141 }
142 }
143}
144
145fn test_pcg32_u64_in_range() {
146 max := u64(216468454685163)
147 min := u64(6848646868)
148 for seed in seeds {
149 mut rng := &rand.PRNG(&pcg32.PCG32RNG{})
150 rng.seed(seed)
151 for _ in 0 .. range_limit {
152 value := rng.u64_in_range(min, max) or { panic("Couldn't obtain u64 in range") }
153 assert value >= min
154 assert value < max
155 }
156 }
157}
158
159fn test_pcg32_int31() {
160 max_u31 := int(0x7FFFFFFF)
161 sign_mask := int(u32(0x80000000))
162 for seed in seeds {
163 mut rng := &rand.PRNG(&pcg32.PCG32RNG{})
164 rng.seed(seed)
165 for _ in 0 .. range_limit {
166 value := rng.int31()
167 assert value >= 0
168 assert value <= max_u31
169 // This statement ensures that the sign bit is zero
170 assert (value & sign_mask) == 0
171 }
172 }
173}
174
175fn test_pcg32_int63() {
176 max_u63 := i64(0x7FFFFFFFFFFFFFFF)
177 sign_mask := i64(u64(0x8000000000000000))
178 for seed in seeds {
179 mut rng := &rand.PRNG(&pcg32.PCG32RNG{})
180 rng.seed(seed)
181 for _ in 0 .. range_limit {
182 value := rng.int63()
183 assert value >= 0
184 assert value <= max_u63
185 assert (value & sign_mask) == 0
186 }
187 }
188}
189
190fn test_pcg32_intn() {
191 max := 2525642
192 for seed in seeds {
193 mut rng := &rand.PRNG(&pcg32.PCG32RNG{})
194 rng.seed(seed)
195 for _ in 0 .. range_limit {
196 value := rng.intn(max) or { panic("Couldn't obtain int") }
197 assert value >= 0
198 assert value < max
199 }
200 }
201}
202
203fn test_pcg32_i64n() {
204 max := i64(3246727724653636)
205 for seed in seeds {
206 mut rng := &rand.PRNG(&pcg32.PCG32RNG{})
207 rng.seed(seed)
208 for _ in 0 .. range_limit {
209 value := rng.i64n(max) or { panic("Couldn't obtain i64") }
210 assert value >= 0
211 assert value < max
212 }
213 }
214}
215
216fn test_pcg32_int_in_range() {
217 min := -4252
218 max := 1034
219 for seed in seeds {
220 mut rng := &rand.PRNG(&pcg32.PCG32RNG{})
221 rng.seed(seed)
222 for _ in 0 .. range_limit {
223 value := rng.int_in_range(min, max) or { panic("Couldn't obtain int in range") }
224 assert value >= min
225 assert value < max
226 }
227 }
228}
229
230fn test_pcg32_i64_in_range() {
231 min := i64(-24095)
232 max := i64(324058)
233 for seed in seeds {
234 mut rng := &rand.PRNG(&pcg32.PCG32RNG{})
235 rng.seed(seed)
236 for _ in 0 .. range_limit {
237 value := rng.i64_in_range(min, max) or { panic("Couldn't obtain i64 in range") }
238 assert value >= min
239 assert value < max
240 }
241 }
242}
243
244fn test_pcg32_f32() {
245 for seed in seeds {
246 mut rng := &rand.PRNG(&pcg32.PCG32RNG{})
247 rng.seed(seed)
248 for _ in 0 .. range_limit {
249 value := rng.f32()
250 assert value >= 0.0
251 assert value < 1.0
252 }
253 }
254}
255
256fn test_pcg32_f64() {
257 for seed in seeds {
258 mut rng := &rand.PRNG(&pcg32.PCG32RNG{})
259 rng.seed(seed)
260 for _ in 0 .. range_limit {
261 value := rng.f64()
262 assert value >= 0.0
263 assert value < 1.0
264 }
265 }
266}
267
268fn test_pcg32_f32n() {
269 max := f32(357.0)
270 for seed in seeds {
271 mut rng := &rand.PRNG(&pcg32.PCG32RNG{})
272 rng.seed(seed)
273 for _ in 0 .. range_limit {
274 value := rng.f32n(max) or { panic("Couldn't obtain f32") }
275 assert value >= 0.0
276 assert value < max
277 }
278 }
279}
280
281fn test_pcg32_f64n() {
282 max := 1.52e6
283 for seed in seeds {
284 mut rng := &rand.PRNG(&pcg32.PCG32RNG{})
285 rng.seed(seed)
286 for _ in 0 .. range_limit {
287 value := rng.f64n(max) or { panic("Couldn't obtain f64") }
288 assert value >= 0.0
289 assert value < max
290 }
291 }
292}
293
294fn test_pcg32_f32_in_range() {
295 min := f32(-24.0)
296 max := f32(125.0)
297 for seed in seeds {
298 mut rng := &rand.PRNG(&pcg32.PCG32RNG{})
299 rng.seed(seed)
300 for _ in 0 .. range_limit {
301 value := rng.f32_in_range(min, max) or { panic("Couldn't obtain f32 in range") }
302 assert value >= min
303 assert value < max
304 }
305 }
306}
307
308fn test_pcg32_f64_in_range() {
309 min := -548.7
310 max := 5015.2
311 for seed in seeds {
312 mut rng := &rand.PRNG(&pcg32.PCG32RNG{})
313 rng.seed(seed)
314 for _ in 0 .. range_limit {
315 value := rng.f64_in_range(min, max) or { panic("Couldn't obtain f64 in range") }
316 assert value >= min
317 assert value < max
318 }
319 }
320}
321
322fn test_change_default_random_generator() {
323 rand.set_rng(&rand.PRNG(&pcg32.PCG32RNG{}))
324}
325