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			193 lines
		
	
	
		
			5.4 KiB
		
	
	
	
		
			JavaScript
		
	
	
	
	
	
			
		
		
	
	
			193 lines
		
	
	
		
			5.4 KiB
		
	
	
	
		
			JavaScript
		
	
	
	
	
	
/* eslint-disable import/no-commonjs */
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import { createRequire } from "module";
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import fs from "fs";
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const require = createRequire(import.meta.url);
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const ttest = require("ttest");
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const VALID_GROUP_BYS = ["browser", "pdf", "page", "round", "stat"];
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function parseOptions() {
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  const yargs = require("yargs")
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    .usage(
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      "Compare the results of two stats files.\n" +
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        "Usage:\n  $0 <BASELINE> <CURRENT> [options]"
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    )
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    .demand(2)
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    .string(["groupBy"])
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    .describe(
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      "groupBy",
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      "How statistics should grouped. Valid options: " +
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        VALID_GROUP_BYS.join(" ")
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    )
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    .default("groupBy", "browser,stat");
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  const result = yargs.argv;
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  result.baseline = result._[0];
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  result.current = result._[1];
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  if (result.groupBy) {
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    result.groupBy = result.groupBy.split(/[;, ]+/);
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  }
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  return result;
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}
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function group(stats, groupBy) {
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  const vals = [];
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  for (const curStat of stats) {
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    const keyArr = [];
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    for (const entry of groupBy) {
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      keyArr.push(curStat[entry]);
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    }
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    const key = keyArr.join(",");
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    (vals[key] ||= []).push(curStat.time);
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  }
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  return vals;
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}
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/*
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 * Flatten the stats so that there's one row per stats entry.
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 * Also, if results are not grouped by 'stat', keep only 'Overall' results.
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 */
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function flatten(stats) {
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  let rows = [];
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  stats.forEach(function (curStat) {
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    curStat.stats.forEach(function (s) {
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      rows.push({
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        browser: curStat.browser,
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        page: curStat.page,
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        pdf: curStat.pdf,
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        round: curStat.round,
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        stat: s.name,
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        time: s.end - s.start,
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      });
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    });
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  });
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  // Use only overall results if not grouped by 'stat'
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  if (!options.groupBy.includes("stat")) {
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    rows = rows.filter(s => s.stat === "Overall");
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  }
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  return rows;
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}
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function pad(s, length, dir /* default: 'right' */) {
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  s = "" + s;
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  const spaces = new Array(Math.max(0, length - s.length + 1)).join(" ");
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  return dir === "left" ? spaces + s : s + spaces;
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}
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function mean(array) {
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  return array.reduce((a, b) => a + b, 0) / array.length;
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}
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/* Comparator for row key sorting. */
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function compareRow(a, b) {
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  a = a.split(",");
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  b = b.split(",");
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  for (let i = 0; i < Math.min(a.length, b.length); i++) {
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    const intA = parseInt(a[i], 10);
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    const intB = parseInt(b[i], 10);
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    const ai = isNaN(intA) ? a[i] : intA;
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    const bi = isNaN(intB) ? b[i] : intB;
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    if (ai < bi) {
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      return -1;
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    }
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    if (ai > bi) {
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      return 1;
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    }
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  }
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  return 0;
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}
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/*
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 * Dump various stats in a table to compare the baseline and current results.
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 * T-test Refresher:
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 * If I understand t-test correctly, p is the probability that we'll observe
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 * another test that is as extreme as the current result assuming the null
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 * hypothesis is true. P is NOT the probability of the null hypothesis. The null
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 * hypothesis in this case is that the baseline and current results will be the
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 * same. It is generally accepted that you can reject the null hypothesis if the
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 * p-value is less than 0.05. So if p < 0.05 we can reject the results are the
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 * same which doesn't necessarily mean the results are faster/slower but it can
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 * be implied.
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 */
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function stat(baseline, current) {
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  const baselineGroup = group(baseline, options.groupBy);
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  const currentGroup = group(current, options.groupBy);
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  const keys = Object.keys(baselineGroup);
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  keys.sort(compareRow);
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  const labels = options.groupBy.slice(0);
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  labels.push("Count", "Baseline(ms)", "Current(ms)", "+/-", "% ");
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  if (ttest) {
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    labels.push("Result(P<.05)");
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  }
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  const rows = [];
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  // collect rows and measure column widths
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  const width = labels.map(s => s.length);
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  rows.push(labels);
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  for (const key of keys) {
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    const baselineMean = mean(baselineGroup[key]);
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    const currentMean = mean(currentGroup[key]);
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    const row = key.split(",");
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    row.push(
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      "" + baselineGroup[key].length,
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      "" + Math.round(baselineMean),
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      "" + Math.round(currentMean),
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      "" + Math.round(currentMean - baselineMean),
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      ((100 * (currentMean - baselineMean)) / baselineMean).toFixed(2)
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    );
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    if (ttest) {
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      const p =
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        baselineGroup[key].length < 2
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          ? 1
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          : ttest(baselineGroup[key], currentGroup[key]).pValue();
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      if (p < 0.05) {
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        row.push(currentMean < baselineMean ? "faster" : "slower");
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      } else {
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        row.push("");
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      }
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    }
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    for (let i = 0; i < row.length; i++) {
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      width[i] = Math.max(width[i], row[i].length);
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    }
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    rows.push(row);
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  }
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  // add horizontal line
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  const hline = width.map(w => new Array(w + 1).join("-"));
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  rows.splice(1, 0, hline);
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  // print output
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  console.log("-- Grouped By " + options.groupBy.join(", ") + " --");
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  const groupCount = options.groupBy.length;
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  for (const row of rows) {
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    for (let i = 0; i < row.length; i++) {
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      row[i] = pad(row[i], width[i], i < groupCount ? "right" : "left");
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    }
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    console.log(row.join(" | "));
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  }
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}
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function main() {
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  let baseline, current;
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  try {
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    const baselineFile = fs.readFileSync(options.baseline).toString();
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    baseline = flatten(JSON.parse(baselineFile));
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  } catch (e) {
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    console.log('Error reading file "' + options.baseline + '": ' + e);
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    process.exit(0);
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  }
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  try {
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    const currentFile = fs.readFileSync(options.current).toString();
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    current = flatten(JSON.parse(currentFile));
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  } catch (e) {
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    console.log('Error reading file "' + options.current + '": ' + e);
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    process.exit(0);
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  }
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  stat(baseline, current);
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}
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const options = parseOptions();
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main();
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