121 lines
3.9 KiB
JavaScript
121 lines
3.9 KiB
JavaScript
/*
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QUnit.test("random.init() with no seed value", function(assert) {
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random.init();
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assert.ok(random.seed, "random seed is not null.");
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});
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QUnit.test("random.init() with provided seed", function(assert) {
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let seed = new Date().getTime();
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random.init(seed);
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assert.equal(random.seed, seed, "seed is correct");
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});
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*/
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QUnit.test("random.init() is required", function(assert) {
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assert.throws(random.number, /undefined/, "twister is uninitialized");
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random.init(1);
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random.number();
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});
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QUnit.test("random.number() corner cases", function(assert) {
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random.init(new Date().getTime());
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let sum = 0;
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for (let i = 0; i < 100; ++i)
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sum += random.number(0);
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assert.equal(sum, 0);
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for (let i = 0; i < 100; ++i)
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sum += random.number(1);
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assert.equal(sum, 0);
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let bins = new Uint32Array(2);
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for (let i = 0; i < 100; ++i)
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++bins[random.number(2)];
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assert.equal(bins[0] + bins[1], 100);
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assert.ok(bins[0] > 20);
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sum = 0;
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for (let i = 0; i < 12; ++i)
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sum |= random.number();
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assert.equal(sum>>>0, 0xFFFFFFFF);
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});
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QUnit.test("random.float() uniform distribution", function(assert) {
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const N = Math.pow(2, 17), expected = N * 2;
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random.init(new Date().getTime());
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let bins = new Uint32Array(512), tmp;
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for (let i = 0; i < N; ++i) {
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tmp = (random.float() * bins.length) >>> 0;
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if (tmp >= bins.length) throw "random.float() >= 1.0";
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++bins[tmp];
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}
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let variance = bins.reduce(function(a, v){ return a + Math.pow(v - N / bins.length, 2); }, 0);
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assert.ok(variance < expected, "Expecting variance to be under " + expected + ", got " + variance);
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});
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QUnit.test("random.range() uniform distribution", function(assert) {
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const N = 10000, expected = N * 2;
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let bins = new Uint32Array(50), tmp;
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random.init(new Date().getTime());
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for (let i = 0; i < N; ++i) {
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tmp = random.range(0, bins.length - 1);
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if (tmp >= bins.length) throw "random.range() > upper bound";
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++bins[tmp];
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}
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let variance = bins.reduce(function(a, v){ return a + Math.pow(v - N / bins.length, 2); }, 0);
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assert.ok(variance < expected, "Expecting variance to be under " + expected + ", got " + variance);
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});
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QUnit.test("random.range() PRNG reproducibility", function(assert) {
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let seed, result1, result2;
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seed = new Date().getTime();
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for (let t = 0; t < 50; ++t) {
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random.init(seed);
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result1 = random.range(1, 20);
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for (let i = 0; i < 5; ++i) {
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random.init(seed);
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result2 = random.range(1, 20);
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assert.equal(result1, result2, "both results are the same")
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}
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seed = random.number();
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}
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});
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QUnit.test("random.choose() with equal distribution", function(assert) {
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const N = 10000, expected = N * 3;
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let bins = new Uint32Array(3), tmp;
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random.init(new Date().getTime());
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for (let i = 0; i < N; ++i) {
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tmp = random.choose([[1, 0], [1, 1], [1, 2]]);
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if (tmp >= bins.length) throw "random.choose() > upper bound";
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++bins[tmp];
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}
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let variance = Math.pow(bins[0] - N / 3, 2) + Math.pow(bins[1] - N / 3, 2) + Math.pow(bins[2] - N / 3, 2);
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assert.ok(variance < expected, "Expecting variance to be under " + expected + ", got " + variance + " (" + bins + ")");
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});
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QUnit.test("random.choose() with unequal distribution", function(assert) {
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const N = 10000, expected = N * 3;
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let bins = new Uint32Array(3), tmp;
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random.init(new Date().getTime());
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for (let i = 0; i < N; ++i) {
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tmp = random.choose([[1, 0], [2, 1], [1, 2]]);
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if (tmp >= bins.length) throw "random.choose() > upper bound";
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++bins[tmp];
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}
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let variance = Math.pow(bins[0] - N / 4, 2) + Math.pow(bins[1] - N / 2, 2) + Math.pow(bins[2] - N / 4, 2);
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assert.ok(variance < expected, "Expecting variance to be under " + expected + ", got " + variance + " (" + bins + ")");
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});
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/*
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ludOneTo(limit)
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item(list)
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key(obj)
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bool()
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pick(obj)
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chance(limit)
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weighted(wa)
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use(obj)
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shuffle(arr)
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shuffled(arr)
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subset(list, limit)
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choose(list, flat=true)
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pop(arr)
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*/
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