| 1 | import math |
| 2 | import rand |
| 3 | import rand.pcg32 |
| 4 | import rand.seed |
| 5 | |
| 6 | const range_limit = 40 |
| 7 | const value_count = 1000 |
| 8 | const seeds = [[u32(42), 242, 267, 14195], [u32(256), 340, 1451, 1505]] |
| 9 | |
| 10 | const sample_size = 1000 |
| 11 | const stats_epsilon = 0.05 |
| 12 | const inv_sqrt_12 = 1.0 / math.sqrt(12) |
| 13 | |
| 14 | fn 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 | |
| 24 | fn 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 | |
| 37 | fn 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 | |
| 54 | fn 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 | |
| 69 | fn 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 | |
| 80 | fn 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 | |
| 94 | fn 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 | |
| 103 | fn 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 | |
| 116 | fn 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 | |
| 129 | fn 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 | |
| 145 | fn 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 | |
| 159 | fn 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 | |
| 175 | fn 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 | |
| 190 | fn 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 | |
| 203 | fn 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 | |
| 216 | fn 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 | |
| 230 | fn 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 | |
| 244 | fn 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 | |
| 256 | fn 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 | |
| 268 | fn 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 | |
| 281 | fn 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 | |
| 294 | fn 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 | |
| 308 | fn 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 | |
| 322 | fn test_change_default_random_generator() { |
| 323 | rand.set_rng(&rand.PRNG(&pcg32.PCG32RNG{})) |
| 324 | } |
| 325 | |