161 lines
5.5 KiB
TypeScript
161 lines
5.5 KiB
TypeScript
import { NextRequest } from "next/server";
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import { spawn, type ChildProcess } from "node:child_process";
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import fsp from "node:fs/promises";
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import { findVideosForCode, getVideoIndex, rescanVideoIndex } from "@/lib/video";
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import { getAppSetting } from "@/lib/db/appSettings";
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import { probeDuration } from "@/lib/video/duration";
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import { assertLocalRequest } from "@/lib/api/localOnly";
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export const runtime = "nodejs";
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export const dynamic = "force-dynamic";
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/**
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* HLS segment endpoint. Each request transcodes a single 6-second
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* window of the source via NVENC into MPEG-TS and pipes to the
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* response. -bf 0 keeps Chromium's H.264 sink happy. -force_key_frames
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* 0 (and NVENC's -forced-idr) ensure the segment opens with an IDR so
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* it's independently decodable — required by HLS.
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*/
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const SEGMENT_SECONDS = 6;
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export async function GET(req: NextRequest, ctx: { params: Promise<{ code: string }> }) {
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const blocked = assertLocalRequest(req);
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if (blocked) return blocked;
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const { code } = await ctx.params;
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const decoded = decodeURIComponent(code);
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const url = new URL(req.url);
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const partRaw = url.searchParams.get("part");
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const part = partRaw == null ? 0 : Math.max(0, parseInt(partRaw, 10) || 0);
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const iRaw = url.searchParams.get("i");
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const segmentIndex = iRaw == null ? 0 : Math.max(0, parseInt(iRaw, 10) || 0);
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let files = findVideosForCode(decoded);
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if (files.length === 0) {
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const main = (getAppSetting("videoLibraryPath") || "").trim();
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const extras = getAppSetting("videoExtraPaths") ?? [];
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const expected = [main, ...extras].filter(Boolean);
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const idx = getVideoIndex();
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const haveAll = expected.length === idx.rootsScanned.length
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&& expected.every((r, i) => r === idx.rootsScanned[i]);
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if (expected.length > 0 && !haveAll) {
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await rescanVideoIndex();
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files = findVideosForCode(decoded);
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}
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}
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if (files.length === 0) return new Response("not found", { status: 404 });
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const file = files[Math.min(part, files.length - 1)];
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try {
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await fsp.stat(file.abs);
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} catch {
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return new Response("not found", { status: 404 });
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}
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const duration = await probeDuration(file.abs, req.signal);
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if (duration == null) {
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return new Response("ffprobe failed", { status: 500 });
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}
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const startTime = segmentIndex * SEGMENT_SECONDS;
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if (startTime >= duration) {
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return new Response("segment out of range", { status: 416 });
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}
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const segDur = Math.min(SEGMENT_SECONDS, duration - startTime);
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const ffmpegArgs: string[] = [
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"-hide_banner", "-loglevel", "error",
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// -ss before -i = fast container-level seek (lands on the prior key
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// frame, NVENC's first emitted frame is an IDR by spec).
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"-ss", startTime.toFixed(3),
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"-t", segDur.toFixed(3),
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"-i", file.abs,
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"-map", "0:v:0",
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"-map", "0:a:0?",
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"-c:v", "h264_nvenc",
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"-preset", "p4",
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"-tune", "ll",
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"-profile:v", "high",
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"-bf", "0",
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"-forced-idr", "1",
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"-rc", "cbr",
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"-b:v", "8M",
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"-maxrate", "8M",
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"-bufsize", "16M",
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"-pix_fmt", "yuv420p",
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"-c:a", "aac",
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"-b:a", "192k",
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"-ac", "2",
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"-f", "mpegts",
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"-mpegts_flags", "+resend_headers",
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// Shift output timestamps so segment N's PTS starts at N*SEGMENT_SECONDS.
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// Without this, every segment would emit at PTS≈0 and hls.js / MSE
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// can't lay them out on a continuous timeline (would need
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// #EXT-X-DISCONTINUITY markers for that). Continuous PTS = clean
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// append, smooth playback across segment boundaries.
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"-output_ts_offset", startTime.toFixed(3),
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"pipe:1",
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];
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let ffmpeg: ChildProcess;
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try {
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ffmpeg = spawn("ffmpeg", ffmpegArgs, { stdio: ["ignore", "pipe", "pipe"] });
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} catch (e) {
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return new Response(`ffmpeg spawn failed: ${(e as Error).message}`, { status: 500 });
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}
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ffmpeg.stderr?.on("data", (chunk: Buffer) => {
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const text = chunk.toString();
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if (text.trim()) console.error(`[hls ${decoded} seg=${segmentIndex}] ${text.trim()}`);
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});
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return new Response(streamFromFfmpeg(ffmpeg, req.signal), {
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status: 200,
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headers: {
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"Content-Type": "video/mp2t",
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// Allow short-term caching — within a single playback session hls.js
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// may re-request a segment if its buffer was evicted, and a cache
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// hit avoids re-spawning ffmpeg.
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"Cache-Control": "private, max-age=300",
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},
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});
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}
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function streamFromFfmpeg(proc: ChildProcess, signal: AbortSignal): ReadableStream<Uint8Array> {
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return new ReadableStream<Uint8Array>({
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start(controller) {
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let closed = false;
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const finish = () => {
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if (closed) return;
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closed = true;
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try { controller.close(); } catch { /* already closed */ }
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};
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const fail = (err: Error) => {
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if (closed) return;
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closed = true;
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try { controller.error(err); } catch { /* already closed */ }
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};
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proc.stdout?.on("data", (chunk: Buffer) => {
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if (closed) return;
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try {
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controller.enqueue(new Uint8Array(chunk));
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} catch {
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closed = true;
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try { proc.kill("SIGKILL"); } catch { /* ignore */ }
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}
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});
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proc.stdout?.on("end", finish);
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proc.on("error", (e) => fail(e));
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proc.on("exit", finish);
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const onAbort = () => {
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try { proc.kill("SIGKILL"); } catch { /* ignore */ }
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};
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if (signal.aborted) onAbort();
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else signal.addEventListener("abort", onAbort, { once: true });
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},
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cancel() {
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try { proc.kill("SIGKILL"); } catch { /* ignore */ }
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},
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});
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}
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