[6a3a178] | 1 | "use strict";
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| 2 | var __awaiter = (this && this.__awaiter) || function (thisArg, _arguments, P, generator) {
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| 3 | function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); }
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| 4 | return new (P || (P = Promise))(function (resolve, reject) {
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| 5 | function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } }
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| 6 | function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } }
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| 7 | function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); }
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| 8 | step((generator = generator.apply(thisArg, _arguments || [])).next());
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| 9 | });
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| 10 | };
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| 11 | Object.defineProperty(exports, "__esModule", { value: true });
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| 12 | /*
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| 13 | * This is a TypeScript port of the original Java version, which was written by
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| 14 | * Gil Tene as described in
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| 15 | * https://github.com/HdrHistogram/HdrHistogram
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| 16 | * and released to the public domain, as explained at
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| 17 | * http://creativecommons.org/publicdomain/zero/1.0/
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| 18 | */
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| 19 | const fc = require("fast-check");
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| 20 | const hdr = require("./index");
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| 21 | const wasm_1 = require("./wasm");
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| 22 | const runFromStryker = __dirname.includes("stryker");
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| 23 | const runnerOptions = {
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| 24 | numRuns: runFromStryker ? 10 : 1000,
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| 25 | verbose: true,
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| 26 | };
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| 27 | describe("Histogram percentile computation", () => {
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| 28 | beforeAll(wasm_1.initWebAssembly);
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| 29 | const numberOfSignificantValueDigits = 3;
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| 30 | [true, false].forEach((useWebAssembly) => [16, "packed"].forEach((bitBucketSize) => it(`Histogram ${bitBucketSize} (wasm: ${useWebAssembly}) should be accurate according to its significant figures`, () => __awaiter(void 0, void 0, void 0, function* () {
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| 31 | yield wasm_1.initWebAssembly();
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| 32 | fc.assert(fc.property(arbData(2000), (numbers) => {
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| 33 | const histogram = hdr.build({
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| 34 | bitBucketSize,
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| 35 | numberOfSignificantValueDigits,
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| 36 | useWebAssembly,
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| 37 | });
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| 38 | numbers.forEach((n) => histogram.recordValue(n));
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| 39 | const actual = quantile(numbers, 90);
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| 40 | const got = histogram.getValueAtPercentile(90);
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| 41 | const relativeError = Math.abs(1 - got / actual);
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| 42 | const variation = Math.pow(10, -numberOfSignificantValueDigits);
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| 43 | histogram.destroy();
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| 44 | return relativeError < variation;
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| 45 | }), runnerOptions);
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| 46 | }))));
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| 47 | });
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| 48 | describe("Histogram percentile computation (packed vs classic)", () => {
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| 49 | const numberOfSignificantValueDigits = 3;
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| 50 | const classicHistogram = hdr.build({
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| 51 | numberOfSignificantValueDigits,
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| 52 | });
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| 53 | const histogram = hdr.build({
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| 54 | numberOfSignificantValueDigits,
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| 55 | bitBucketSize: "packed",
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| 56 | useWebAssembly: false,
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| 57 | });
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| 58 | it(`should be accurate according to its significant figures`, () => {
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| 59 | fc.assert(fc.property(arbData(5), (numbers) => {
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| 60 | histogram.reset();
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| 61 | classicHistogram.reset();
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| 62 | numbers.forEach((n) => histogram.recordValue(n));
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| 63 | numbers.forEach((n) => classicHistogram.recordValue(n));
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| 64 | const actual = classicHistogram.getValueAtPercentile(90);
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| 65 | const got = histogram.getValueAtPercentile(90);
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| 66 | return actual === got;
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| 67 | }), runnerOptions);
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| 68 | });
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| 69 | });
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| 70 | describe("Histogram percentile computation with CO correction (wasm vs js)", () => {
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| 71 | beforeAll(wasm_1.initWebAssembly);
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| 72 | let jsHistogram;
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| 73 | let wasmHistogram;
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| 74 | beforeEach(() => {
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| 75 | jsHistogram = hdr.build({
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| 76 | useWebAssembly: false,
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| 77 | });
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| 78 | wasmHistogram = hdr.build({
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| 79 | useWebAssembly: true,
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| 80 | });
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| 81 | });
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| 82 | afterEach(() => {
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| 83 | jsHistogram.destroy();
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| 84 | wasmHistogram.destroy();
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| 85 | });
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| 86 | it(`should be accurate according to its significant figures`, () => {
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| 87 | fc.assert(fc.property(arbData(1, 100 * 1000), (numbers) => {
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| 88 | jsHistogram.reset();
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| 89 | wasmHistogram.reset();
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| 90 | numbers.forEach((n) => {
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| 91 | jsHistogram.recordValueWithExpectedInterval(n, 1000);
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| 92 | });
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| 93 | numbers.forEach((n) => {
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| 94 | wasmHistogram.recordValueWithExpectedInterval(n, 1000);
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| 95 | });
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| 96 | const js = jsHistogram.getValueAtPercentile(90);
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| 97 | const wasm = wasmHistogram.getValueAtPercentile(90);
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| 98 | const relativeError = Math.abs(1 - js / wasm);
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| 99 | const variation = Math.pow(10, -3);
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| 100 | if (relativeError >= variation) {
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| 101 | console.log({ js, wasm });
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| 102 | }
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| 103 | return relativeError < variation;
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| 104 | }), runnerOptions);
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| 105 | });
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| 106 | });
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| 107 | describe("Histogram encoding/decoding", () => {
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| 108 | beforeAll(wasm_1.initWebAssembly);
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| 109 | const numberOfSignificantValueDigits = 3;
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| 110 | [true, false].forEach((useWebAssembly) => [8, 16, 32, 64, "packed"].forEach((bitBucketSize) => {
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| 111 | it(`Histogram ${bitBucketSize} (wasm: ${useWebAssembly}) should keep all data after an encoding/decoding roundtrip`, () => {
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| 112 | fc.assert(fc.property(arbData(1), fc.double(50, 100), (numbers, percentile) => {
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| 113 | const histogram = hdr.build({
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| 114 | bitBucketSize,
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| 115 | numberOfSignificantValueDigits,
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| 116 | useWebAssembly,
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| 117 | });
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| 118 | numbers.forEach((n) => histogram.recordValue(n));
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| 119 | const encodedHistogram = hdr.encodeIntoCompressedBase64(histogram);
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| 120 | const decodedHistogram = hdr.decodeFromCompressedBase64(encodedHistogram);
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| 121 | const actual = histogram.getValueAtPercentile(percentile);
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| 122 | const got = decodedHistogram.getValueAtPercentile(percentile);
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| 123 | histogram.destroy();
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| 124 | decodedHistogram.destroy();
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| 125 | return actual === got;
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| 126 | }), runnerOptions);
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| 127 | });
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| 128 | }));
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| 129 | });
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| 130 | const arbData = (size, max = Number.MAX_SAFE_INTEGER) => fc.array(fc.integer(1, max), size, size);
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| 131 | // reference implementation
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| 132 | const quantile = (inputData, percentile) => {
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| 133 | const data = [...inputData].sort((a, b) => a - b);
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| 134 | const index = (percentile / 100) * (data.length - 1);
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| 135 | let result;
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| 136 | if (Math.floor(index) === index) {
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| 137 | result = data[index];
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| 138 | }
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| 139 | else {
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| 140 | const i = Math.floor(index);
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| 141 | const fraction = index - i;
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| 142 | result = data[i] + (data[i + 1] - data[i]) * fraction;
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| 143 | }
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| 144 | return result;
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| 145 | };
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| 146 | //# sourceMappingURL=Histogram.fc.spec.js.map |
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