212 lines
8.8 KiB
JavaScript
212 lines
8.8 KiB
JavaScript
"use strict";
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Object.defineProperty(exports, "__esModule", { value: true });
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const fs = require("fs");
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const HistogramLogReader_1 = require("./HistogramLogReader");
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const wasm_1 = require("./wasm");
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const { floor } = Math;
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function checkNotNull(actual) {
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expect(actual).not.toBeNull();
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}
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describe("Histogram Log Reader", () => {
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let fileContent;
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let tagFileContent;
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let fileContentWithBaseTime;
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let fileContentWithoutHeader;
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let fileContentWithTrailingWhitespace;
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beforeAll(() => {
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// when using mutation testing tool stryker, source code
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// is copied in a sandbox directory without the test_files
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// directory...
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const runFromStryker = __dirname.includes("stryker");
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const prefix = runFromStryker ? "../.." : ".";
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fileContent = fs.readFileSync(`${prefix}/test_files/jHiccup-2.0.7S.logV2.hlog`, "UTF-8");
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fileContentWithBaseTime = fs.readFileSync(`${prefix}/test_files/jHiccup-with-basetime-2.0.7S.logV2.hlog`, "UTF-8");
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fileContentWithoutHeader = fs.readFileSync(`${prefix}/test_files/jHiccup-no-header-2.0.7S.logV2.hlog`, "UTF-8");
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tagFileContent = fs.readFileSync(`${prefix}/test_files/tagged-Log.logV2.hlog`, "UTF-8");
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fileContentWithTrailingWhitespace = fs.readFileSync(`${prefix}/test_files/bug-whitespace.hlog`, "UTF-8");
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});
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it("should update startTimeSec reading first histogram", () => {
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// given
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const reader = new HistogramLogReader_1.default(fileContent);
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// when
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reader.nextIntervalHistogram();
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// then
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expect(reader.startTimeSec).toBe(1441812279.474);
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});
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it("should read first histogram starting from the beginning", () => {
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// given
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const reader = new HistogramLogReader_1.default(fileContent);
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// when
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const histogram = reader.nextIntervalHistogram();
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// then
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checkNotNull(histogram);
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// if mean is good, strong probability everything else is good as well
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expect(floor(histogram.mean)).toBe(301998);
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});
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it("should read encoded histogram and use provided constructor", () => {
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// given
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const reader = new HistogramLogReader_1.default(fileContent, "packed");
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// when
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const histogram = reader.nextIntervalHistogram();
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// then
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checkNotNull(histogram);
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// if mean is good, strong probability everything else is good as well
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expect(floor(histogram.mean)).toBe(301998);
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});
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it("should return null if no histogram in the logs", () => {
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// given
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const reader = new HistogramLogReader_1.default("# empty");
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// when
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const histogram = reader.nextIntervalHistogram();
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// then
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expect(histogram).toBeNull();
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});
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it("should return next histogram in the logs", () => {
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// given
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const reader = new HistogramLogReader_1.default(fileContent);
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reader.nextIntervalHistogram();
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// when
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const histogram = reader.nextIntervalHistogram();
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// then
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checkNotNull(histogram);
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// if mean is good, strong probability everything else is good as well
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expect(floor(histogram.mean)).toBe(293719);
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});
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it("should return null if all histograms are after specified time range", () => {
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// given
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const reader = new HistogramLogReader_1.default(fileContent);
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// when
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const histogram = reader.nextIntervalHistogram(0.01, 0.1);
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// then
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expect(histogram).toBeNull();
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});
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it("should return null if all histograms are before specified time range", () => {
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// given
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const reader = new HistogramLogReader_1.default(fileContent);
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// when
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const histogram = reader.nextIntervalHistogram(62, 63);
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// then
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expect(histogram).toBeNull();
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});
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it("should parse histogram even if there are trailing whitespaces", () => {
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// given
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const reader = new HistogramLogReader_1.default(fileContentWithTrailingWhitespace);
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// when
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const histogram = reader.nextIntervalHistogram();
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// then
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// no error
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});
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it("should return histograms within specified time range", () => {
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// given
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const reader = new HistogramLogReader_1.default(fileContent);
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// when
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const firstHistogram = reader.nextIntervalHistogram(0, 2);
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const secondHistogram = reader.nextIntervalHistogram(0, 2);
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const thirdHistogram = reader.nextIntervalHistogram(0, 2);
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// then
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checkNotNull(firstHistogram);
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checkNotNull(secondHistogram);
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expect(thirdHistogram).toBeNull();
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// if mean is good, strong probability everything else is good as well
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expect(floor(firstHistogram.mean)).toBe(301998);
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expect(floor(secondHistogram.mean)).toBe(293719);
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});
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it("should set start timestamp on histogram", () => {
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// given
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const reader = new HistogramLogReader_1.default(fileContent);
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// when
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const histogram = reader.nextIntervalHistogram();
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// then
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checkNotNull(histogram);
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expect(histogram.startTimeStampMsec).toBe(1441812279601);
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});
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it("should set end timestamp on histogram", () => {
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// given
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const reader = new HistogramLogReader_1.default(fileContent);
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// when
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const histogram = reader.nextIntervalHistogram();
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// then
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checkNotNull(histogram);
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expect(histogram.endTimeStampMsec).toBe(1441812280608);
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});
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it("should parse tagged histogram", () => {
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// given
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const reader = new HistogramLogReader_1.default(tagFileContent);
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reader.nextIntervalHistogram();
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// when
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const histogram = reader.nextIntervalHistogram();
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// then
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checkNotNull(histogram);
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expect(histogram.tag).toBe("A");
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expect(floor(histogram.mean)).toBe(301998);
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});
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it("should use basetime to set timestamps on histogram", () => {
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// given
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const reader = new HistogramLogReader_1.default(fileContentWithBaseTime);
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// when
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const histogram = reader.nextIntervalHistogram();
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// then
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checkNotNull(histogram);
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expect(histogram.startTimeStampMsec).toBe(1441812123250);
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expect(histogram.endTimeStampMsec).toBe(1441812124257);
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});
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it("should default startTime using 1st observed time", () => {
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// given
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const reader = new HistogramLogReader_1.default(fileContentWithoutHeader);
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// when
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const histogram = reader.nextIntervalHistogram();
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// then
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checkNotNull(histogram);
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expect(histogram.startTimeStampMsec).toBe(127);
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expect(histogram.endTimeStampMsec).toBe(1134);
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});
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it("should list all the tags of a log file", () => {
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// given
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// when
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const tags = HistogramLogReader_1.listTags(tagFileContent);
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// then
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expect(tags).toEqual(["NO TAG", "A"]);
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});
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it("should list all the tags of a log file where all histograms are tagged", () => {
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// given
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const content = `#[Fake log chunk]
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#[Histogram log format version 1.2]
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#[StartTime: 1441812279.474 (seconds since epoch), Wed Sep 09 08:24:39 PDT 2015]
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"StartTimestamp","Interval_Length","Interval_Max","Interval_Compressed_Histogram"
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Tag=NOT-EMPTY,0.127,1.007,2.769,HISTFAAAAEV42pNpmSzMwMCgyAABTBDKT4GBgdnNYMcCBvsPEBEJISEuATEZMQ4uASkhIR4nrxg9v2lMaxhvMekILGZkKmcCAEf2CsI=
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Tag=A,0.127,1.007,2.769,HISTFAAAAEV42pNpmSzMwMCgyAABTBDKT4GBgdnNYMcCBvsPEBEJISEuATEZMQ4uASkhIR4nrxg9v2lMaxhvMekILGZkKmcCAEf2CsI=
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`;
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// when
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const tags = HistogramLogReader_1.listTags(content);
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// then
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expect(tags).toEqual(["NOT-EMPTY", "A"]);
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});
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describe("with WASM", () => {
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let accumulatedHistogram;
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beforeAll(wasm_1.initWebAssembly);
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afterEach(() => {
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accumulatedHistogram.destroy();
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});
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it("should do the whole 9 yards just like the original Java version :-)", () => {
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// given
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const reader = new HistogramLogReader_1.default(fileContent, 32, true);
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accumulatedHistogram = wasm_1.WasmHistogram.build();
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let histogram;
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let histogramCount = 0;
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let totalCount = 0;
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// when
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while ((histogram = reader.nextIntervalHistogram()) != null) {
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histogramCount++;
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totalCount += histogram.totalCount;
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accumulatedHistogram.add(histogram);
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histogram.destroy();
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}
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// then
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expect(histogramCount).toBe(62);
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expect(totalCount).toBe(48761);
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expect(accumulatedHistogram.getValueAtPercentile(99.9)).toBe(1745879039);
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expect(reader.startTimeSec).toBe(1441812279.474);
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});
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});
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});
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//# sourceMappingURL=HistogramLogReader.spec.js.map
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