- Adicionado estrutura completa do projeto - Configurado MCP server para Premiere Pro - Adicionado documentação e skills - Configurado Gitignore para o projeto
134 lines
4.0 KiB
JavaScript
Executable File
134 lines
4.0 KiB
JavaScript
Executable File
/*
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* Spike server for the UXP probes.
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*
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* Serves HTTP and WebSocket on the same port so the person testing runs one command.
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* Deliberately zero-dependency: a spike that needs `npm install` first is a spike people
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* don't run. The WebSocket bits are a minimal RFC 6455 text-frame implementation — enough
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* to prove a round-trip, and nothing more.
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*
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* node uxp-spike/server.mjs [port]
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*/
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import { createServer } from "node:http";
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import { createHash } from "node:crypto";
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const PORT = Number(process.argv[2]) || 7777;
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const GUID = "258EAFA5-E914-47DA-95CA-C5AB0DC85B11"; // RFC 6455
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const seen = { http: false, ws: false };
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const server = createServer((req, res) => {
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if (req.method === "POST" && req.url === "/probe") {
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let body = "";
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req.on("data", (chunk) => (body += chunk));
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req.on("end", () => {
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seen.http = true;
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console.log(` [http] POST /probe <- ${body}`);
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report("fetch() over http://127.0.0.1 reached the server");
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res.writeHead(200, { "Content-Type": "application/json" });
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res.end(JSON.stringify({ ok: true, echo: safeParse(body) }));
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});
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return;
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}
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res.writeHead(404).end();
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});
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server.on("upgrade", (req, socket) => {
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const key = req.headers["sec-websocket-key"];
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if (!key) return socket.destroy();
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const accept = createHash("sha1").update(key + GUID).digest("base64");
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socket.write(
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"HTTP/1.1 101 Switching Protocols\r\n" +
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"Upgrade: websocket\r\n" +
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"Connection: Upgrade\r\n" +
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`Sec-WebSocket-Accept: ${accept}\r\n\r\n`
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);
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console.log(` [ws] client connected (Host: ${req.headers.host})`);
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socket.on("data", (buf) => {
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const msg = decodeTextFrame(buf);
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if (msg === null) return; // close/ping/binary — not worth handling in a spike
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seen.ws = true;
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console.log(` [ws] <- ${msg}`);
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report(`WebSocket round-trip works from the UXP panel (Host: ${req.headers.host})`);
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socket.write(encodeTextFrame(JSON.stringify({ ok: true, echo: safeParse(msg) })));
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});
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socket.on("error", () => socket.destroy());
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});
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server.listen(PORT, "127.0.0.1", () => {
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console.log(`\nUXP spike server listening on 127.0.0.1:${PORT}`);
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console.log(" WebSocket : ws://localhost:%d and ws://127.0.0.1:%d", PORT, PORT);
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console.log(" HTTP : POST http://127.0.0.1:%d/probe", PORT);
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console.log("\nNow hit 'Run all probes' in the MCP UXP Spike panel in Premiere.\n");
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});
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function report(what) {
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console.log(`\n *** ${what} ***`);
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console.log(
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` transports reached so far: ${[seen.ws && "websocket", seen.http && "http"].filter(Boolean).join(", ") || "none"}\n`
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);
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}
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function safeParse(s) {
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try {
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return JSON.parse(s);
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} catch {
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return s;
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}
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}
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/** Decode a single masked client text frame. Returns null for anything else. */
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function decodeTextFrame(buf) {
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if (buf.length < 2) return null;
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const opcode = buf[0] & 0x0f;
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if (opcode !== 0x1) return null; // text frames only
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const masked = (buf[1] & 0x80) !== 0;
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let len = buf[1] & 0x7f;
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let offset = 2;
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if (len === 126) {
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len = buf.readUInt16BE(2);
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offset = 4;
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} else if (len === 127) {
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len = Number(buf.readBigUInt64BE(2));
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offset = 10;
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}
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if (!masked) return buf.subarray(offset, offset + len).toString("utf8");
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const mask = buf.subarray(offset, offset + 4);
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const payload = buf.subarray(offset + 4, offset + 4 + len);
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const out = Buffer.allocUnsafe(payload.length);
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for (let i = 0; i < payload.length; i++) out[i] = payload[i] ^ mask[i % 4];
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return out.toString("utf8");
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}
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/** Encode an unmasked server text frame. */
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function encodeTextFrame(text) {
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const payload = Buffer.from(text, "utf8");
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const len = payload.length;
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let header;
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if (len < 126) {
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header = Buffer.from([0x81, len]);
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} else if (len < 65536) {
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header = Buffer.alloc(4);
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header[0] = 0x81;
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header[1] = 126;
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header.writeUInt16BE(len, 2);
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} else {
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header = Buffer.alloc(10);
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header[0] = 0x81;
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header[1] = 127;
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header.writeBigUInt64BE(BigInt(len), 2);
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}
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return Buffer.concat([header, payload]);
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}
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