zig/std/rand.zig

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const assert = @import("debug.zig").assert;
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const rand_test = @import("rand_test.zig");
pub const MT19937_32 = MersenneTwister(
u32, 624, 397, 31,
0x9908B0DF,
11, 0xFFFFFFFF,
7, 0x9D2C5680,
15, 0xEFC60000,
18, 1812433253);
pub const MT19937_64 = MersenneTwister(
u64, 312, 156, 31,
0xB5026F5AA96619E9,
29, 0x5555555555555555,
17, 0x71D67FFFEDA60000,
37, 0xFFF7EEE000000000,
43, 6364136223846793005);
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/// Use `init` to initialize this state.
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pub const Rand = struct {
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const Rng = if (@sizeOf(usize) >= 8) MT19937_64 else MT19937_32;
rng: Rng,
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/// Initialize random state with the given seed.
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pub fn init(r: &Rand, seed: usize) {
r.rng.init(seed);
}
/// Get an integer with random bits.
pub fn scalar(r: &Rand, inline T: type) -> T {
if (T == usize) {
return r.rng.get();
} else {
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var result: [@sizeOf(T)]u8 = undefined;
r.fillBytes(result);
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return ([]T)(result)[0];
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}
}
/// Fill `buf` with randomness.
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pub fn fillBytes(r: &Rand, buf: []u8) {
var bytes_left = buf.len;
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while (bytes_left >= @sizeOf(usize)) {
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([]usize)(buf[buf.len - bytes_left...])[0] = r.rng.get();
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bytes_left -= @sizeOf(usize);
}
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if (bytes_left > 0) {
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var rand_val_array : [@sizeOf(usize)]u8 = undefined;
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([]usize)(rand_val_array)[0] = r.rng.get();
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while (bytes_left > 0) {
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buf[buf.len - bytes_left] = rand_val_array[@sizeOf(usize) - bytes_left];
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bytes_left -= 1;
}
}
}
/// Get a random unsigned integer with even distribution between `start`
/// inclusive and `end` exclusive.
// TODO support signed integers and then rename to "range"
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pub fn rangeUnsigned(r: &Rand, inline T: type, start: T, end: T) -> T {
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const range = end - start;
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const leftover = @maxValue(T) % range;
const upper_bound = @maxValue(T) - leftover;
var rand_val_array : [@sizeOf(T)]u8 = undefined;
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while (true) {
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r.fillBytes(rand_val_array);
const rand_val = ([]T)(rand_val_array)[0];
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if (rand_val < upper_bound) {
return start + (rand_val % range);
}
}
}
/// Get a floating point value in the range 0.0..1.0.
pub fn float(r: &Rand, inline T: type) -> T {
// TODO Implement this way instead:
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// const int = @int_type(false, @sizeOf(T) * 8);
// const mask = ((1 << @float_mantissa_bit_count(T)) - 1);
// const rand_bits = r.rng.scalar(int) & mask;
// return @float_compose(T, false, 0, rand_bits) - 1.0
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const int_type = @intType(false, @sizeOf(T) * 8);
const precision = if (T == f32) {
16777216
} else if (T == f64) {
9007199254740992
} else {
@compileError("unknown floating point type")
};
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return T(r.rangeUnsigned(int_type, 0, precision)) / T(precision);
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}
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};
fn MersenneTwister(
inline int: type, inline n: usize, inline m: usize, inline r: int,
inline a: int,
inline u: int, inline d: int,
inline s: int, inline b: int,
inline t: int, inline c: int,
inline l: int, inline f: int) -> type
{
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struct {
const Self = this;
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array: [n]int,
index: usize,
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pub fn init(mt: &Self, seed: int) {
mt.index = n;
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var prev_value = seed;
mt.array[0] = prev_value;
{var i: usize = 1; while (i < n; i += 1) {
prev_value = int(i) +% f *% (prev_value ^ (prev_value >> (int.bit_count - 2)));
mt.array[i] = prev_value;
}};
}
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pub fn get(mt: &Self) -> int {
const mag01 = []int{0, a};
const LM: int = (1 << r) - 1;
const UM = ~LM;
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if (mt.index >= n) {
var i: usize = 0;
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while (i < n - m; i += 1) {
const x = (mt.array[i] & UM) | (mt.array[i + 1] & LM);
mt.array[i] = mt.array[i + m] ^ (x >> 1) ^ mag01[x & 0x1];
}
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while (i < n - 1; i += 1) {
const x = (mt.array[i] & UM) | (mt.array[i + 1] & LM);
mt.array[i] = mt.array[i + m - n] ^ (x >> 1) ^ mag01[x & 0x1];
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}
const x = (mt.array[i] & UM) | (mt.array[0] & LM);
mt.array[i] = mt.array[m - 1] ^ (x >> 1) ^ mag01[x & 0x1];
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mt.index = 0;
}
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var x = mt.array[mt.index];
mt.index += 1;
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x ^= ((x >> u) & d);
x ^= ((x <<% s) & b);
x ^= ((x <<% t) & c);
x ^= (x >> l);
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return x;
}
}
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}
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fn testFloat32() {
@setFnTest(this);
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var r: Rand = undefined;
r.init(42);
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{var i: usize = 0; while (i < 1000; i += 1) {
const val = r.float(f32);
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assert(val >= 0.0);
assert(val < 1.0);
}}
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}
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fn testMT19937_64() {
@setFnTest(this);
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var rng: MT19937_64 = undefined;
rng.init(rand_test.mt64_seed);
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for (rand_test.mt64_data) |value| {
assert(value == rng.get());
}
}
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fn testMT19937_32() {
@setFnTest(this);
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var rng: MT19937_32 = undefined;
rng.init(rand_test.mt32_seed);
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for (rand_test.mt32_data) |value| {
assert(value == rng.get());
}
}