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pbakaus_impeccable/scripts/lib/live-benchmark.mjs
T

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JavaScript

import { performance } from 'node:perf_hooks';
const METRIC_KEYS = [
'browserPreparationMs',
'browserDispatchMs',
'automationClickMs',
'serverPickupMs',
'goToAgentMs',
'serverPreflightMs',
'scaffoldMs',
'generationToFirstMs',
'generationMs',
'firstVariantWriteMs',
'writeMs',
'writeToFirstVariantMs',
'replyMs',
'goToFirstVariantMs',
'goToSecondVariantMs',
'goToAllVariantsMs',
'firstToSecondGapMs',
'secondToAllGapMs',
'deliveryGapMs',
'impeccableOverheadMs',
'workerPickupToSourceReadyMs',
'workerFirstGenerationToReviewableMs',
'workerFirstValidationToReviewableMs',
'workerSecondGenerationToReviewableMs',
'workerSecondValidationToReviewableMs',
'workerRemainingGenerationToReadyMs',
'workerRemainingValidationToReadyMs',
'acceptToResetMs',
'acceptToNextGoDispatchMs',
'acceptToNextFirstVariantMs',
];
export function parseLiveBenchmarkArgs(argv) {
const out = {};
for (const arg of argv) {
if (!arg.startsWith('--')) continue;
const body = arg.slice(2);
const index = body.indexOf('=');
const rawKey = index === -1 ? body : body.slice(0, index);
const key = rawKey.replace(/-([a-z])/g, (_match, letter) => letter.toUpperCase());
out[key] = index === -1 ? true : body.slice(index + 1);
}
return out;
}
export function createTraceRecorder(now = () => performance.now()) {
const events = [];
return {
events,
trace(name, data = {}) {
events.push({ name, at: now(), ...data });
},
mark(name, data = {}) {
const event = { name, at: now(), ...data };
events.push(event);
return event;
},
};
}
export function durationBetween(events, startName, endName, predicate = () => true) {
const start = events.find((event) => event.name === startName && predicate(event));
const end = events.find((event) => event.name === endName && predicate(event) && (!start || event.at >= start.at));
if (!start || !end) return null;
return roundMs(Math.max(0, end.at - start.at));
}
/**
* Assemble the two model calls used by the Live benchmark's progressive path.
* The first checkpoint is already visible in the browser, so both its markup
* and CSS are immutable. The tail call may supply deferred params for variant
* 1, but its CSS must contain only independently-scoped rules for variants 2+.
*/
export function assembleSplitProgressiveOutput(first, remaining) {
const firstVariant = first?.variants?.[0];
if (!firstVariant) throw new Error('progressive assembly requires a first variant');
if (!Array.isArray(remaining?.variants) || remaining.variants.length < 1) {
throw new Error('progressive assembly requires a complete remaining variant set');
}
const firstCss = String(first.scopedCss || '');
const laterCss = String(remaining.scopedCss || '');
assertLaterVariantCss(laterCss);
return {
scopedCss: firstCss && laterCss ? `${firstCss}\n${laterCss}` : firstCss || laterCss,
variants: [
{
...firstVariant,
params: Array.isArray(remaining.variants[0]?.params)
? remaining.variants[0].params
: [],
},
...remaining.variants.slice(1),
],
};
}
export function buildInteractionRun(events, { iteration, scenario, goStartedAt, browserTiming = null }) {
const received = events.find((event) =>
event.name === 'agent.event.received'
&& event.type === 'generate'
&& event.at >= goStartedAt
);
if (!received?.id) throw new Error(`iteration ${iteration}: no generate event was traced`);
const id = received.id;
const forId = (event) => event.id === id;
const eventPost = events.find((event) => event.name === 'browser.generate_post' && forId(event));
const mark = (name) => events.find((event) => event.name === name && event.iteration === iteration);
const first = mark('browser.first_variant');
const second = mark('browser.second_variant');
const all = mark('browser.all_variants');
const writeEnd = events.find((event) => event.name === 'agent.write.end' && forId(event));
const firstWriteEnd = events.find((event) => event.name === 'agent.first_variant.write.end' && forId(event));
const reusedScaffold = events.find((event) => event.name === 'agent.scaffold.reused' && forId(event));
const generationMs = durationBetween(events, 'agent.generate.start', 'agent.generate.end', forId);
const generationToFirstMs = durationBetween(events, 'agent.generate.start', 'agent.generate.first_ready', forId);
const browserPreparationMs = eventPost ? roundMs(eventPost.at - goStartedAt) : null;
const browserDispatchMs = Number.isFinite(browserTiming?.goAt) && Number.isFinite(browserTiming?.generateAt)
? roundMs(Math.max(0, browserTiming.generateAt - browserTiming.goAt))
: null;
const interactionStartedAt = eventPost && browserDispatchMs != null
? eventPost.at - browserDispatchMs
: goStartedAt;
const measuredGoToFirstVariantMs = first ? roundMs(first.at - interactionStartedAt) : null;
const measuredGoToSecondVariantMs = second ? roundMs(second.at - interactionStartedAt) : null;
const measuredGoToAllVariantsMs = all ? roundMs(all.at - interactionStartedAt) : null;
return {
iteration,
scenario,
eventId: id,
selectionEvidence: {
tagName: eventPost?.selectedTagName || null,
classes: Array.isArray(eventPost?.selectedClasses) ? eventPost.selectedClasses : [],
},
annotationEvidence: {
screenshotPath: eventPost?.hasScreenshotPath === true,
comments: Number(eventPost?.commentCount || 0),
strokes: Number(eventPost?.strokeCount || 0),
},
browserPreparationMs,
browserDispatchMs,
automationClickMs: browserPreparationMs == null || browserDispatchMs == null
? null
: roundMs(Math.max(0, browserPreparationMs - browserDispatchMs)),
serverPickupMs: eventPost ? roundMs(Math.max(0, received.at - eventPost.at)) : null,
goToAgentMs: roundMs(received.at - interactionStartedAt),
serverPreflightMs: Number.isFinite(reusedScaffold?.durationMs) ? roundMs(reusedScaffold.durationMs) : null,
scaffoldMs: durationBetween(events, 'agent.scaffold.start', 'agent.scaffold.end', forId),
generationToFirstMs,
generationMs,
firstVariantWriteMs: durationBetween(events, 'agent.first_variant.write.start', 'agent.first_variant.write.end', forId),
writeMs: durationBetween(events, 'agent.write.start', 'agent.write.end', forId),
writeToFirstVariantMs: first && (firstWriteEnd || writeEnd)
? roundMs(Math.max(0, first.at - (firstWriteEnd || writeEnd).at))
: null,
replyMs: durationBetween(events, 'agent.reply.start', 'agent.reply.end', forId),
goToFirstVariantMs: measuredGoToFirstVariantMs,
goToSecondVariantMs: measuredGoToSecondVariantMs,
goToAllVariantsMs: measuredGoToAllVariantsMs,
firstToSecondGapMs: first && second ? roundMs(Math.max(0, second.at - first.at)) : null,
secondToAllGapMs: second && all ? roundMs(Math.max(0, all.at - second.at)) : null,
deliveryGapMs: first && all ? roundMs(Math.max(0, all.at - first.at)) : null,
impeccableOverheadMs: measuredGoToFirstVariantMs == null || generationToFirstMs == null
? null
: roundMs(Math.max(0, measuredGoToFirstVariantMs - generationToFirstMs)),
};
}
export function deriveJournalGenerationMetrics(snapshot = {}) {
const timings = snapshot.generationTimings || {};
const at = (phase) => Number(timings[phase]?.at);
const timingErrors = [];
const delta = (start, end) => {
if (!Number.isFinite(at(start)) || !Number.isFinite(at(end))) return null;
if (at(end) < at(start)) {
timingErrors.push(`${end}_before_${start}`);
return null;
}
return roundMs(at(end) - at(start));
};
return {
workerPickupToSourceReadyMs: delta('picked_up', 'source_ready'),
workerFirstGenerationToReviewableMs: delta('first_variant_generating', 'first_reviewable'),
workerFirstValidationToReviewableMs: delta('first_variant_validating', 'first_reviewable'),
workerSecondGenerationToReviewableMs: delta('second_variant_generating', 'second_reviewable'),
workerSecondValidationToReviewableMs: delta('second_variant_validating', 'second_reviewable'),
workerRemainingGenerationToReadyMs: delta('remaining_variants_generating', 'all_variants_ready'),
workerRemainingValidationToReadyMs: delta('remaining_variants_validating', 'all_variants_ready'),
journalTimingErrors: timingErrors,
journalGenerationTimings: timings,
};
}
export function summarizeRuns(runs) {
const metrics = {};
for (const key of METRIC_KEYS) {
const values = runs.map((run) => run[key]).filter(Number.isFinite).sort((a, b) => a - b);
if (values.length === 0) continue;
metrics[key] = {
median: roundMs(percentile(values, 0.5)),
p95: roundMs(percentile(values, 0.95)),
min: roundMs(values[0]),
max: roundMs(values[values.length - 1]),
};
}
return { count: runs.length, metrics };
}
export function summarizeSetup(events) {
const stages = [
['dependencies', 'setup.install.start', 'setup.install.end'],
['liveServer', 'setup.live_server.start', 'setup.live_server.end'],
['codexWorker', 'setup.worker.start', 'setup.worker.end'],
['injection', 'setup.inject.start', 'setup.inject.end'],
['devServer', 'setup.dev_server.start', 'setup.dev_server.end'],
['pageLoad', 'setup.page_load.start', 'setup.page_load.end'],
['handshake', 'setup.handshake.start', 'setup.handshake.end'],
];
return Object.fromEntries(stages.map(([key, start, end]) => [key, durationBetween(events, start, end)]));
}
export function createBenchmarkReport({
fixture,
agent,
provider,
model,
scenario,
runs,
events,
harnessProbe = null,
delivery = 'atomic',
promptMode = null,
simulation = null,
generatedAt = new Date().toISOString(),
}) {
return {
schemaVersion: 1,
generatedAt,
benchmark: {
fixture,
agent,
provider: provider || null,
model: model || null,
scenario,
variants: 3,
delivery,
promptMode,
simulation,
},
setup: summarizeSetup(events),
summary: summarizeRuns(runs),
runs,
harnessProbe,
};
}
export function mergeBenchmarkReports(reports, generatedAt = new Date().toISOString()) {
return {
schemaVersion: 1,
generatedAt,
reports,
};
}
export function compareModelBackedReports(atomic, progressive, {
medianTarget = 0.35,
p95Target = 0.25,
minimumRuns = 3,
} = {}) {
assertComparableModelReport(atomic, 'atomic', minimumRuns);
assertComparableModelReport(progressive, 'progressive', minimumRuns);
for (const key of ['fixture', 'provider', 'model', 'scenario', 'variants', 'promptMode']) {
if (atomic.benchmark[key] !== progressive.benchmark[key]) {
throw new Error(`benchmark mismatch for ${key}: atomic=${atomic.benchmark[key]} progressive=${progressive.benchmark[key]}`);
}
}
const atomicFirst = requiredMetric(atomic, 'goToFirstVariantMs');
const progressiveFirst = requiredMetric(progressive, 'goToFirstVariantMs');
const medianImprovement = improvement(atomicFirst.median, progressiveFirst.median);
const p95Improvement = improvement(atomicFirst.p95, progressiveFirst.p95);
const allReady = {
atomic: requiredMetric(atomic, 'goToAllVariantsMs'),
progressive: requiredMetric(progressive, 'goToAllVariantsMs'),
};
const passed = medianImprovement >= medianTarget && p95Improvement >= p95Target;
return {
passed,
target: { medianImprovement, p95Improvement, medianTarget, p95Target },
firstReviewable: { atomic: atomicFirst, progressive: progressiveFirst },
allVariantsReady: allReady,
benchmark: {
fixture: atomic.benchmark.fixture,
provider: atomic.benchmark.provider,
model: atomic.benchmark.model,
scenario: atomic.benchmark.scenario,
runs: { atomic: atomic.summary.count, progressive: progressive.summary.count },
},
};
}
function assertComparableModelReport(report, delivery, minimumRuns) {
if (!report?.benchmark || !report?.summary) throw new Error(`${delivery} benchmark report is missing metadata or summary`);
if (report.benchmark.agent !== 'llm') throw new Error(`${delivery} benchmark must be model-backed (agent=llm)`);
if (report.benchmark.delivery !== delivery) {
throw new Error(`expected ${delivery} delivery report, got ${report.benchmark.delivery || 'unknown'}`);
}
if (report.benchmark.simulation) throw new Error(`${delivery} model benchmark must not contain simulated latency`);
if (!report.benchmark.provider || !report.benchmark.model) throw new Error(`${delivery} benchmark is missing provider/model identity`);
if (!Number.isInteger(report.summary.count) || report.summary.count < minimumRuns) {
throw new Error(`${delivery} benchmark requires at least ${minimumRuns} runs`);
}
}
function requiredMetric(report, key) {
const metric = report.summary.metrics?.[key];
if (!Number.isFinite(metric?.median) || !Number.isFinite(metric?.p95)) {
throw new Error(`${report.benchmark.delivery} benchmark is missing ${key} median/p95`);
}
return { median: metric.median, p95: metric.p95 };
}
function improvement(baseline, candidate) {
if (!(baseline > 0) || !Number.isFinite(candidate)) throw new Error('benchmark latency must be finite and baseline must be positive');
return Number((1 - (candidate / baseline)).toFixed(4));
}
function assertLaterVariantCss(css) {
if (!css.trim()) return;
for (const prelude of topLevelCssPreludes(css)) {
const variants = [...prelude.matchAll(/\[data-impeccable-variant\s*=\s*(["'])(\d+)\1[^\]]*\]/g)]
.map((match) => Number(match[2]));
if (variants.includes(1)) {
throw new Error('progressive tail CSS must not repeat or conflict with published variant 1 CSS');
}
if (variants.length === 0 || variants.some((variant) => variant < 2)) {
throw new Error('progressive tail CSS must be attributable only to variants 2+');
}
if (new Set(variants).size !== 1) {
throw new Error('each progressive tail CSS block must target exactly one later variant');
}
}
}
function topLevelCssPreludes(css) {
const preludes = [];
let cursor = 0;
while (cursor < css.length) {
while (cursor < css.length && /\s/.test(css[cursor])) cursor += 1;
if (cursor >= css.length) break;
const start = cursor;
const open = findCssToken(css, cursor, '{');
if (open === -1) throw new Error('progressive tail CSS contains a rule without a block');
const prelude = css.slice(start, open).trim();
if (!prelude || prelude.includes(';')) {
throw new Error('progressive tail CSS must contain scoped rule blocks only');
}
preludes.push(prelude);
const close = findMatchingCssBrace(css, open);
if (close === -1) throw new Error('progressive tail CSS has unbalanced braces');
cursor = close + 1;
}
return preludes;
}
function findCssToken(css, start, token) {
let quote = null;
let comment = false;
for (let index = start; index < css.length; index += 1) {
const char = css[index];
const next = css[index + 1];
if (comment) {
if (char === '*' && next === '/') {
comment = false;
index += 1;
}
continue;
}
if (!quote && char === '/' && next === '*') {
comment = true;
index += 1;
continue;
}
if (quote) {
if (char === '\\') index += 1;
else if (char === quote) quote = null;
continue;
}
if (char === '"' || char === "'") {
quote = char;
continue;
}
if (char === token) return index;
}
return -1;
}
function findMatchingCssBrace(css, open) {
let depth = 0;
let quote = null;
let comment = false;
for (let index = open; index < css.length; index += 1) {
const char = css[index];
const next = css[index + 1];
if (comment) {
if (char === '*' && next === '/') {
comment = false;
index += 1;
}
continue;
}
if (!quote && char === '/' && next === '*') {
comment = true;
index += 1;
continue;
}
if (quote) {
if (char === '\\') index += 1;
else if (char === quote) quote = null;
continue;
}
if (char === '"' || char === "'") {
quote = char;
continue;
}
if (char === '{') depth += 1;
if (char === '}') {
depth -= 1;
if (depth === 0) return index;
}
}
return -1;
}
function percentile(sortedValues, ratio) {
if (sortedValues.length === 1) return sortedValues[0];
const index = (sortedValues.length - 1) * ratio;
const lower = Math.floor(index);
const upper = Math.ceil(index);
if (lower === upper) return sortedValues[lower];
const weight = index - lower;
return sortedValues[lower] * (1 - weight) + sortedValues[upper] * weight;
}
function roundMs(value) {
if (!Number.isFinite(value)) return null;
return Number(value.toFixed(2));
}