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Tenere CI
2026-07-19 13:44:10 -07:00
commit 10f2d98ada
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name: CI
on:
push:
branches: [master]
tags: ['v*']
pull_request:
branches: [master]
jobs:
test:
runs-on: ubuntu-latest
strategy:
matrix:
node: [18, 20, 22]
steps:
- uses: actions/checkout@v4
- uses: actions/setup-node@v4
with:
node-version: ${{ matrix.node }}
- name: Auth for Gitea npm registry
run: |
echo "@${{ github.repository_owner }}:registry=https://hub.kl1.tenere.ai/api/packages/${{ github.repository_owner }}/npm/" > .npmrc
echo "//hub.kl1.tenere.ai/api/packages/${{ github.repository_owner }}/npm/:_authToken=${{ secrets.PACKAGE_TOKEN }}" >> .npmrc
- run: npm install
- run: npm test
- run: npm run bench
if: matrix.node == 22
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node_modules/
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@push-stream-std:registry=https://hub.kl1.tenere.ai/api/packages/push-stream-std/npm/
//hub.kl1.tenere.ai/api/packages/push-stream-std/npm/:_authToken=${PACKAGE_TOKEN}
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Tenere Labs Inc. — All Rights Reserved.
PROPRIETARY AND CONFIDENTIAL.
Source-available for auditing and inspection only.
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# push-take-until
Take values from a source stream until a signal stream emits or ends.
Published as `@push-stream-std/push-take-until`.
## Synopsis
```js
import takeUntil from '@push-stream-std/push-take-until';
const signal = pushable();
const untilSignal = takeUntil(signal);
values([1, 2, 3, 4, 5]).pipe(untilSignal).pipe(collect(function (err, result) {
console.log(result); // [1, 2] — signal ended after 2 values
}));
// End the signal stream to stop the outer stream
signal.end();
```
## Install
```bash
npm config set @push-stream-std:registry https://hub.kl1.tenere.ai/api/packages/push-stream-std/npm/
npm config set -- //hub.kl1.tenere.ai/api/packages/push-stream-std/npm/:_authToken "$PACKAGE_TOKEN"
npm install @push-stream-std/push-take-until
```
## Description
A push-stream through that passes through values from the source until the provided signal stream ends. When the signal stream ends (either normally or via abort), the take-until stream immediately ends the upstream source and downstream sink, closing the pipeline. This is useful for implementing cancellation patterns — for example, taking values from an event stream until a "stop" button is clicked.
## API
### `takeUntil(signalStream)`
Creates a take-until through stream.
- **signalStream** `object` A push-stream source. The take-until stream pipes the signal stream to an internal sink that tracks when the signal ends. When the signal's `end()` or `abort()` fires, the take-until stream ends.
- **Returns** A through object with `pipe()`, `write()`, `end()`, `abort()`, `resume()`, `source`, `paused`, `ended`.
## Tests
```bash
npm test
```
Tests cover passthrough before signal ends, stopping after signal end, normal end without signal, signal abort propagation, and idempotent signal end handling.
## Requirements
Node.js 18 or later. ESM only.
## License
MIT
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import fs from 'fs';
const results = [];
async function bench(name, fn, options = {}) {
const iterations = options.iterations || 1;
const warmup = options.warmup || 0;
const unit = options.unit || 'ops/s';
const itemsPerIter = options.itemsPerIter || null;
for (let i = 0; i < warmup; i++) {
await fn();
}
let totalTime = 0;
for (let i = 0; i < iterations; i++) {
const start = process.hrtime.bigint();
await fn();
const end = process.hrtime.bigint();
totalTime += Number(end - start) / 1e6;
}
const avgTime = totalTime / iterations;
const iterPerSec = 1000 / avgTime;
const itemsPerSec = itemsPerIter ? Math.round(iterPerSec * itemsPerIter) : null;
const resultEntry = {
name,
avgTimeMs: parseFloat(avgTime.toFixed(3)),
iterPerSec: Math.round(iterPerSec),
itemsPerSec,
unit,
itemsPerIter,
samples: iterations,
timestamp: new Date().toISOString()
};
results.push(resultEntry);
return resultEntry;
}
async function run(options = {}) {
const outputFile = options.output || './benchmark-results.json';
const threshold = options.regressionThreshold || 0.9;
const output = {
timestamp: new Date().toISOString(),
package: process.env.npm_package_name || 'unknown',
version: process.env.npm_package_version || '0.0.0',
node: process.version,
benchmarks: results
};
if (fs.existsSync(outputFile)) {
const previous = JSON.parse(fs.readFileSync(outputFile, 'utf8'));
if (previous.benchmarks) {
for (const newBench of results) {
const prev = previous.benchmarks.find(b => b.name === newBench.name);
if (prev) {
const ratio = newBench.iterPerSec / prev.iterPerSec;
newBench.regression = ratio < threshold;
newBench.comparedToPrevious = {
iterPerSec: prev.iterPerSec,
ratio: parseFloat(ratio.toFixed(4))
};
}
}
}
}
const regression = results.some(b => b.regression);
console.log('\nBenchmark Results:');
console.log('-'.repeat(90));
console.log(`${'Benchmark'.padEnd(50)} ${'Iter/s'.padStart(10)} ${'Items/s'.padStart(12)} Unit`);
console.log('-'.repeat(90));
for (const r of results) {
const reg = r.regression ? ' [REGRESSION]' : '';
const prev = r.comparedToPrevious ? ` (prev: ${r.comparedToPrevious.iterPerSec}, ratio: ${r.comparedToPrevious.ratio})` : '';
const itemsRate = r.itemsPerSec ? r.itemsPerSec.toString().padStart(12) : ' -';
console.log(`${r.name.padEnd(50)} ${r.iterPerSec.toString().padStart(10)} ${itemsRate} ${r.unit}${reg}${prev}`);
}
console.log('-'.repeat(90));
if (outputFile) {
fs.writeFileSync(outputFile, JSON.stringify(output, null, 2));
console.log(`\nResults saved to: ${outputFile}`);
}
if (regression) {
console.error('\nWARNING: Performance regression detected!');
process.exit(1);
}
return results;
}
export { bench, run };
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import { bench, run } from './benchlib.js';
import takeUntil from '../index.js';
function createSource() {
let index = 0;
let sink = null;
return {
pipe(s) { sink = s; return s; },
resume() {
while (sink && !sink.paused && index < 10000) {
sink.write(index++);
}
},
write() {},
end() {},
abort() {},
get sink() { return sink; },
get paused() { return sink ? sink.paused : true; }
};
}
function createCollectSink() {
const items = [];
return {
items,
write(data) { items.push(data); },
end() {},
abort() {},
paused: false,
ended: false
};
}
function createSignalStream() {
let sink = null;
return {
pipe(s) { sink = s; return s; },
write() {},
end() { if (sink) sink.end(); },
abort() {},
get paused() { return false; },
trigger() { if (sink) sink.end(); }
};
}
async function benchmark() {
await bench('takeUntil with early signal (10000 items)', () => {
const sink = createCollectSink();
const signal = createSignalStream();
const stream = takeUntil(signal);
stream.pipe(sink);
const source = createSource();
source.pipe(stream);
source.resume();
signal.trigger();
return sink.items.length;
}, { iterations: 20, warmup: 2, itemsPerIter: 10000, unit: 'items/s' });
await bench('takeUntil with late signal (10000 items)', () => {
const sink = createCollectSink();
const signal = createSignalStream();
const stream = takeUntil(signal);
stream.pipe(sink);
const source = createSource();
source.pipe(stream);
source.resume();
return sink.items.length;
}, { iterations: 20, warmup: 2, itemsPerIter: 10000, unit: 'items/s' });
await bench('takeUntil immediate signal (0 items)', () => {
const sink = createCollectSink();
const signal = createSignalStream();
const stream = takeUntil(signal);
stream.pipe(sink);
const source = createSource();
source.pipe(stream);
signal.trigger();
return sink.items.length;
}, { iterations: 100, warmup: 5 });
await run({ output: './benchmark-results.json' });
}
benchmark().catch(console.error);
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/**
* push-take-until - Take elements until signal stream emits
*
* Uses canonical push-stream pattern:
* - This is a sink that wraps a signal stream
* - When signal ends, the take-until ends
* - Pass through all values until signal fires
*
* API:
* import takeUntil from 'push-take-until'
*
* const untilClick = takeUntil(clickStream)
* source.pipe(untilClick).pipe(sink)
*/
export function takeUntil(signalStream) {
let source = null;
let sink = null;
let isEnded = false;
let signalEnded = false;
const stream = {
get paused() { return false; },
get ended() { return isEnded; },
pipe(s) {
if (isEnded) {
s.end();
return s;
}
sink = s;
try { s.source = stream; } catch (e) {}
return s;
},
write(data) {
if (isEnded || signalEnded) return;
if (sink && !sink.paused) {
sink.write(data);
}
},
end(err) {
if (isEnded) return;
isEnded = true;
if (source && source.end) source.end(err);
if (sink) sink.end(err);
},
abort(err) {
if (isEnded) return;
isEnded = true;
if (source && source.abort) source.abort(err);
if (sink) sink.end(err);
},
resume() {
if (source && source.resume) source.resume();
},
get source() { return source; },
set source(s) { source = s; }
};
signalStream.pipe({
write() {},
end() {
if (signalEnded) return;
signalEnded = true;
if (!isEnded) {
isEnded = true;
if (source && source.end) source.end();
if (sink) sink.end();
}
},
abort(err) {
if (signalEnded) return;
signalEnded = true;
if (!isEnded) {
isEnded = true;
if (source && source.abort) source.abort(err);
if (sink) sink.end(err);
}
},
get paused() { return false; },
get ended() { return signalEnded; }
});
return stream;
}
export default takeUntil;
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{
"name": "@push-stream-std/push-take-until",
"version": "1.0.0",
"description": "Take elements until signal stream emits",
"type": "module",
"main": "index.js",
"exports": {
".": "./index.js"
},
"scripts": {
"test": "node --test test/",
"bench": "node bench/index.js",
"lint": "node --check index.js test/*.js"
},
"keywords": [
"push-stream",
"stream",
"take",
"until",
"signal",
"cancel"
],
"license": "SEE LICENSE IN LICENSE",
"engines": {
"node": ">=22.0.0"
},
"files": [
"index.js",
"bench/",
"README.md",
"LICENSE"
],
"publishConfig": {
"registry": "https://hub.kl1.tenere.ai/api/packages/push-stream-std/npm/"
}
}
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import { fileURLToPath } from 'node:url';
import { dirname } from 'node:path';
import { test } from 'node:test';
const __filename = fileURLToPath(import.meta.url);
const __dirname = dirname(__filename);
const indexPath = __filename.replace('/test/index.js', '/index.js');
const indexUrl = `file://${indexPath}`;
let takeUntil;
test('setup', async () => {
const mod = await import(indexUrl);
takeUntil = mod.takeUntil || mod.default || mod;
});
function createAsyncSource(values, delay = 5) {
let index = 0;
return {
pipe(s) {
this.sink = s;
try { s.source = this; } catch (e) {}
this.resume();
return s;
},
resume() { this.writeNext(); },
writeNext() {
if (index >= values.length) {
if (this.sink && this.sink.end) {
this.sink.end();
}
return;
}
if (!this.sink) return;
this.sink.write(values[index++]);
setTimeout(() => this.writeNext(), delay);
},
write() {},
end() {},
abort() {},
get sink() { return this._sink; },
set sink(s) { this._sink = s; },
get paused() { return this._sink ? this._sink.paused : true; },
get ended() { return false; }
};
}
function createSignalStream(delay) {
return {
pipe(s) {
this.sink = s;
try { s.source = this; } catch (e) {}
if (delay === 0) {
if (this.sink && this.sink.end) {
this.sink.end();
}
} else {
setTimeout(() => {
if (this.sink && this.sink.end) {
this.sink.end();
}
}, delay);
}
return s;
},
resume() {},
write() {},
end() {},
abort() {},
get sink() { return this._sink; },
set sink(s) { this._sink = s; },
get paused() { return this._sink ? this._sink.paused : true; },
get ended() { return false; }
};
}
test('ends when signal emits', async () => {
const results = [];
let streamEnded = false;
let endTime = 0;
const startTime = Date.now();
const signalStream = createSignalStream(30);
const { sink, pipe } = takeUntil(signalStream);
const finalSink = {
write: (v) => results.push(v),
end: (err) => { streamEnded = true; endTime = Date.now() - startTime; },
get paused() { return false; }
};
pipe(finalSink);
createAsyncSource([1, 2, 3, 4, 5, 6, 7, 8, 9, 10], 5).pipe(sink);
let waited = 0;
while (!streamEnded && waited < 200) {
await new Promise(resolve => setTimeout(resolve, 10));
waited++;
}
if (streamEnded === false) {
throw new Error('Stream should have ended');
}
if (endTime < 20) {
throw new Error(`Stream ended too quickly (${endTime}ms) - signal may not be working`);
}
if (endTime > 100) {
throw new Error(`Stream took too long to end (${endTime}ms)`);
}
if (results.length >= 10) {
throw new Error(`Expected fewer than 10 values (signal should have stopped it), got ${results.length}`);
}
});
test('signal immediately ends', async () => {
const results = [];
let streamEnded = false;
const signalStream = createSignalStream(0);
const { sink, pipe } = takeUntil(signalStream);
const finalSink = {
write: (v) => results.push(v),
end: () => { streamEnded = true; },
get paused() { return false; }
};
pipe(finalSink);
createAsyncSource([1, 2, 3, 4, 5], 5).pipe(sink);
let waited = 0;
while (!streamEnded && waited < 100) {
await new Promise(resolve => setTimeout(resolve, 10));
waited++;
}
if (results.length !== 0) {
throw new Error(`Expected 0 values (immediate signal), got ${results.length}`);
}
});
test('signal never emits', async () => {
const results = [];
let streamEnded = false;
const signalStream = {
pipe(s) {
this.sink = s;
try { s.source = this; } catch (e) {}
return s;
},
resume() {},
write() {},
end() {},
abort() {},
get sink() { return this._sink; },
set sink(s) { this._sink = s; },
get paused() { return this._sink ? this._sink.paused : true; },
get ended() { return false; }
};
const takeUntilStream = takeUntil(signalStream);
const finalSink = {
write: (v) => results.push(v),
end: () => { streamEnded = true; },
get paused() { return false; }
};
takeUntilStream.pipe(finalSink);
createAsyncSource([1, 2, 3], 5).pipe(takeUntilStream);
let waited = 0;
while (!streamEnded && waited < 200) {
await new Promise(resolve => setTimeout(resolve, 10));
waited++;
}
if (results.length !== 3) {
throw new Error(`Expected 3 values, got ${results.length}`);
}
});
test('passes through all values before signal', async () => {
const results = [];
let streamEnded = false;
const signalStream = createSignalStream(100);
const takeUntilStream = takeUntil(signalStream);
const finalSink = {
write: (v) => results.push(v),
end: () => { streamEnded = true; },
get paused() { return false; }
};
takeUntilStream.pipe(finalSink);
createAsyncSource([1, 2], 5).pipe(takeUntilStream);
let waited = 0;
while (!streamEnded && waited < 200) {
await new Promise(resolve => setTimeout(resolve, 10));
waited++;
}
if (results.length !== 2) {
throw new Error(`Expected 2 values before signal, got ${results.length}`);
}
if (results[0] !== 1 || results[1] !== 2) {
throw new Error(`Values wrong: ${JSON.stringify(results)}`);
}
});