Files
Surge_by_SukkaW/Build/lib/fetch-assets.ts
2026-09-02 16:32:29 +08:00

234 lines
8.0 KiB
TypeScript

import picocolors from 'picocolors';
import { $$fetch, defaultRequestInit, ResponseError } from './fetch-retry';
import { waitWithAbort } from 'foxts/wait';
import { nullthrow } from 'foxts/guard';
import { ignoreAdGuardUnsupportedLine } from './parse-filter/filters';
import { splitTextIntoLines } from './fetch-text-by-line';
import { appendArrayInPlace } from 'foxts/append-array-in-place';
import { newQueue } from '@henrygd/queue';
import { AbortError, isAbortErrorLike } from 'foxts/abort-error';
import { downloadTimestamp, recordExternalDownloadAttempt } from './download-stats';
import type { ExternalDownloadOutcome } from './download-stats';
const reusedCustomAbortError = new AbortError();
const textDecoder = new TextDecoder();
const queue = newQueue(18);
const MIN_HEDGE_DELAY = 3000;
const HEDGE_DELAY_STEP = 1200;
const HEDGE_SPEED_SAMPLE_INTERVAL = 1000;
const HEDGE_QUEUE_POLL_INTERVAL = 250;
// This threshold is evaluated against encoded response bytes, before fetch()
// decompresses them. 1 MiB/s is about 8.4 Mbps on the network, so a source
// throttled to 5 Mbps will be hedged, while a larger compressed response making
// healthy progress will not be raced merely because decoding expands its body.
const MIN_ACCEPTABLE_DOWNLOAD_BYTES_PER_SECOND = 1024 * 1024;
export function isDownloadThroughputSlow(bytesReceived: number, elapsed: number) {
return bytesReceived / elapsed * 1000 < MIN_ACCEPTABLE_DOWNLOAD_BYTES_PER_SECOND;
}
interface PrimaryDownloadProgress {
headersReceived: boolean,
bodyConsumptionStartedAt: number | null,
encodedBytesAtConsumptionStart: number,
encodedBytesReceived: number,
encodedBodyComplete: boolean,
failed: boolean
}
export async function fetchAssets(
url: string, fallbackUrls: null | undefined | string[] | readonly string[],
processLine = false, allowEmpty = false, filterAdGuardUnsupportedLines = false
) {
const controller = new AbortController();
const primaryProgress: PrimaryDownloadProgress = {
headersReceived: false,
bodyConsumptionStartedAt: null,
encodedBytesAtConsumptionStart: 0,
encodedBytesReceived: 0,
encodedBodyComplete: false,
failed: false
};
const waitForSlowPrimary = async (fallbackIndex: number) => {
await waitWithAbort(MIN_HEDGE_DELAY + fallbackIndex * HEDGE_DELAY_STEP, controller.signal);
let sampledAt: number | null = null;
let sampledBytes = 0;
while (!controller.signal.aborted) {
// No response headers after the initial delay, or an explicit primary
// failure, is sufficient reason to begin the fallback immediately.
if (!primaryProgress.headersReceived || primaryProgress.failed) {
return;
}
if (primaryProgress.bodyConsumptionStartedAt == null) {
// The response is waiting for our local body-consumption queue. This is
// not an upstream slowdown and should not trigger a duplicate request.
// eslint-disable-next-line no-await-in-loop -- poll until local consumption starts
await waitWithAbort(HEDGE_QUEUE_POLL_INTERVAL, controller.signal);
continue;
}
if (primaryProgress.encodedBodyComplete) {
// The full encoded body is already local. Any remaining time belongs
// to decompression or parsing, which a fallback can not improve.
// eslint-disable-next-line no-await-in-loop -- wait for local processing to finish
await waitWithAbort(HEDGE_QUEUE_POLL_INTERVAL, controller.signal);
continue;
}
if (sampledAt == null) {
sampledAt = primaryProgress.bodyConsumptionStartedAt;
sampledBytes = primaryProgress.encodedBytesAtConsumptionStart;
}
const now = performance.now();
const sampleDuration = now - sampledAt;
if (sampleDuration < HEDGE_SPEED_SAMPLE_INTERVAL) {
// eslint-disable-next-line no-await-in-loop -- collect a complete throughput sample
await waitWithAbort(HEDGE_SPEED_SAMPLE_INTERVAL - sampleDuration, controller.signal);
continue;
}
if (isDownloadThroughputSlow(primaryProgress.encodedBytesReceived - sampledBytes, sampleDuration)) {
return;
}
sampledAt = now;
sampledBytes = primaryProgress.encodedBytesReceived;
// eslint-disable-next-line no-await-in-loop -- periodically re-sample a healthy transfer
await waitWithAbort(HEDGE_SPEED_SAMPLE_INTERVAL, controller.signal);
}
throw reusedCustomAbortError;
};
const createFetchFallbackPromise = async (url: string, index: number) => {
if (index >= 0) {
try {
await waitForSlowPrimary(index);
} catch {
throw reusedCustomAbortError;
}
}
if (controller.signal.aborted) {
throw reusedCustomAbortError;
}
if (index >= 0) {
console.log(picocolors.yellowBright('[fetch fallback begin]'), picocolors.gray(url));
}
const isPrimary = index < 0;
const attemptStartedAt = downloadTimestamp();
let headersAt: number | null = null;
let decodedBodyStartedAt: number | null = null;
let encodedBodyStartedAt: number | null = null;
let encodedBodyEndedAt: number | null = null;
let decodedBytes = 0;
let encodedBytes = 0;
let contentEncoding: string | null = null;
let finalized = false;
const finalizeAttempt = (outcome: ExternalDownloadOutcome) => {
if (finalized) {
return;
}
finalized = true;
recordExternalDownloadAttempt({
url,
kind: isPrimary ? 'primary' : 'fallback',
outcome,
startedAt: attemptStartedAt,
headersAt,
decodedBodyStartedAt,
encodedBodyStartedAt,
encodedBodyEndedAt,
endedAt: downloadTimestamp(),
decodedBytes,
encodedBytes,
contentEncoding
});
};
try {
// We intentionally acquire the body-consumption queue after receiving
// headers. Request scheduling will be handled separately.
const res = await $$fetch(url, { signal: controller.signal, ...defaultRequestInit }, {
onResponseStart(encoding) {
headersAt = downloadTimestamp();
contentEncoding = encoding;
if (isPrimary) {
primaryProgress.headersReceived = true;
}
},
onEncodedBodyChunk(bytes) {
encodedBodyStartedAt ??= downloadTimestamp();
encodedBytes += bytes;
if (isPrimary) {
primaryProgress.encodedBytesReceived += bytes;
}
},
onEncodedBodyEnd(completed) {
encodedBodyEndedAt = downloadTimestamp();
if (isPrimary) {
primaryProgress.encodedBodyComplete = completed;
}
}
});
headersAt ??= downloadTimestamp();
nullthrow(res.body, url + ' has an empty body');
if (isPrimary) {
primaryProgress.headersReceived = true;
}
const arr = await queue.add(async () => {
decodedBodyStartedAt = downloadTimestamp();
if (isPrimary) {
primaryProgress.bodyConsumptionStartedAt = performance.now();
primaryProgress.encodedBytesAtConsumptionStart = primaryProgress.encodedBytesReceived;
}
const buf = await res.arrayBuffer();
decodedBytes = buf.byteLength;
return splitTextIntoLines(
textDecoder.decode(buf),
processLine,
filterAdGuardUnsupportedLines ? ignoreAdGuardUnsupportedLine : null
);
});
if (!allowEmpty && arr.length < 1) {
throw new ResponseError(res, url, 'empty response w/o 304');
}
finalizeAttempt('winner');
controller.abort();
return arr;
} catch (error) {
if (isPrimary) {
primaryProgress.failed = true;
}
finalizeAttempt(isAbortErrorLike(error) ? 'aborted' : 'failed');
throw error;
}
};
const primaryPromise = createFetchFallbackPromise(url, -1);
if (!fallbackUrls || fallbackUrls.length === 0) {
return primaryPromise;
}
return Promise.any(
appendArrayInPlace(
[primaryPromise],
fallbackUrls.map(createFetchFallbackPromise)
)
);
}