Files
kuber/lib/k8s-http.ts
T

231 lines
6.3 KiB
TypeScript

import type {
HttpLibrary,
RequestContext,
} from "@kubernetes/client-node/dist/gen/http/http.js";
import { ResponseContext } from "@kubernetes/client-node/dist/gen/http/http.js";
import { from } from "@kubernetes/client-node/dist/gen/rxjsStub.js";
import http from "node:http";
import https from "node:https";
type TransportOptions = {
maxConcurrent: number;
minIntervalMs: number;
maxRetries: number;
baseRetryMs: number;
maxRetryMs: number;
random: () => number;
};
const DefaultTransportOptions: TransportOptions = {
maxConcurrent: 4,
minIntervalMs: 100,
maxRetries: 3,
baseRetryMs: 250,
maxRetryMs: 5000,
random: Math.random,
};
function abortError(): Error {
const error = new Error("Request aborted");
error.name = "AbortError";
return error;
}
export function delay(ms: number, signal?: AbortSignal): Promise<void> {
if (signal?.aborted) return Promise.reject(abortError());
return new Promise((resolve, reject) => {
const timer = setTimeout(() => {
signal?.removeEventListener("abort", onAbort);
resolve();
}, ms);
const onAbort = () => {
clearTimeout(timer);
reject(abortError());
};
signal?.addEventListener("abort", onAbort, { once: true });
});
}
export function parseRetryAfter(
value: string | undefined,
now = Date.now(),
): number | undefined {
if (!value) return;
const seconds = Number(value);
if (Number.isFinite(seconds) && seconds >= 0) return seconds * 1000;
const date = Date.parse(value);
if (Number.isNaN(date)) return;
return Math.max(0, date - now);
}
class RequestLimiter {
private active = 0;
private nextRequestAt = 0;
private readonly queue: Array<{
signal?: AbortSignal;
onAbort?: () => void;
resolve: (release: () => void) => void;
reject: (error: Error) => void;
}> = [];
constructor(
private readonly maxConcurrent: number,
private readonly minIntervalMs: number,
) {}
acquire(signal?: AbortSignal): Promise<() => void> {
if (signal?.aborted) return Promise.reject(abortError());
return new Promise((resolve, reject) => {
const entry: (typeof this.queue)[number] = { signal, resolve, reject };
entry.onAbort = () => {
const index = this.queue.indexOf(entry);
if (index === -1) return;
this.queue.splice(index, 1);
reject(abortError());
};
signal?.addEventListener("abort", entry.onAbort, { once: true });
this.queue.push(entry);
this.drain();
});
}
private drain(): void {
while (this.active < this.maxConcurrent && this.queue.length > 0) {
const entry = this.queue.shift()!;
entry.signal?.removeEventListener("abort", entry.onAbort!);
if (entry.signal?.aborted) {
entry.reject(abortError());
continue;
}
this.active += 1;
const now = Date.now();
const waitMs = Math.max(0, this.nextRequestAt - now);
this.nextRequestAt =
Math.max(now, this.nextRequestAt) + this.minIntervalMs;
void delay(waitMs, entry.signal)
.then(() => {
let released = false;
entry.resolve(() => {
if (released) return;
released = true;
this.active -= 1;
this.drain();
});
})
.catch((error) => {
this.active -= 1;
entry.reject(
error instanceof Error ? error : new Error(String(error)),
);
this.drain();
});
}
}
}
function sendOnce(request: RequestContext): Promise<ResponseContext> {
return new Promise((resolve, reject) => {
const url = new URL(request.getUrl());
const transport = url.protocol === "http:" ? http : https;
const signal = request.getSignal();
const req = transport.request(
url,
{
method: request.getHttpMethod().toString(),
headers: request.getHeaders(),
agent: request.getAgent() as never,
},
(response) => {
const chunks: Buffer[] = [];
response.on("data", (chunk) => {
chunks.push(Buffer.isBuffer(chunk) ? chunk : Buffer.from(chunk));
});
response.on("end", () => {
signal?.removeEventListener("abort", onAbort);
const buffer = Buffer.concat(chunks);
const headers: Record<string, string> = {};
for (const [key, value] of Object.entries(response.headers)) {
if (Array.isArray(value)) headers[key] = value.join(", ");
else if (value !== undefined) headers[key] = String(value);
}
resolve(
new ResponseContext(response.statusCode ?? 0, headers, {
text: async () => buffer.toString("utf8"),
binary: async () => buffer,
}),
);
});
},
);
const onAbort = () => req.destroy(abortError());
if (signal?.aborted) onAbort();
else signal?.addEventListener("abort", onAbort, { once: true });
req.on("error", (error) => {
signal?.removeEventListener("abort", onAbort);
reject(error);
});
const body = request.getBody();
if (body !== undefined && body !== null) {
req.write(body as string | Uint8Array);
}
req.end();
});
}
export function createKubernetesHttpLibrary(
overrides: Partial<TransportOptions> = {},
): HttpLibrary {
const options = { ...DefaultTransportOptions, ...overrides };
const limiter = new RequestLimiter(
options.maxConcurrent,
options.minIntervalMs,
);
return {
send(request) {
const result = (async () => {
for (let attempt = 0; ; attempt += 1) {
const release = await limiter.acquire(request.getSignal());
let response: ResponseContext;
try {
response = await sendOnce(request);
} finally {
release();
}
if (
response.httpStatusCode !== 429 ||
attempt >= options.maxRetries
) {
return response;
}
const retryAfter = parseRetryAfter(response.headers["retry-after"]);
const exponential = Math.min(
options.maxRetryMs,
options.baseRetryMs * 2 ** attempt,
);
const backoff =
retryAfter ?? exponential * (0.8 + options.random() * 0.4);
await delay(backoff, request.getSignal());
}
})();
return from(result);
},
};
}