Files
Time4Midi/preload.js
T
2026-06-16 11:00:24 +02:00

942 lines
26 KiB
JavaScript

const { contextBridge, ipcRenderer } = require("electron");
const crypto = require("node:crypto");
const dgram = require("node:dgram");
const mqtt = require("mqtt");
const { SerialPort } = require("serialport");
const ModbusRTU = require("modbus-serial");
const knx = require("knx");
const ARTNET_PORT = 6454;
const SACN_PORT = 5568;
const KNX_PORT = 3671;
const ARTNET_HEADER = Buffer.from("Art-Net\0", "ascii");
const ARTNET_OPCODE_DMX = 0x5000;
const ARTNET_OPCODE_TIMECODE = 0x9700;
function createStatusEmitter() {
return {
statusListeners: new Set(),
lastError: ""
};
}
function emitStatus(target, message) {
target.lastError = message || "";
const payload = {
ok: !target.lastError,
error: target.lastError
};
for (const listener of target.statusListeners) {
listener(payload);
}
}
function addStatusApi(target, handler) {
target.statusListeners.add(handler);
handler({
ok: !target.lastError,
error: target.lastError
});
return () => {
target.statusListeners.delete(handler);
};
}
const artnet = {
...createStatusEmitter(),
sendSocket: dgram.createSocket("udp4"),
listenSocket: null,
listeners: new Set(),
config: {
enabled: true,
host: "255.255.255.255",
port: ARTNET_PORT,
broadcast: true,
timecodeListenPort: ARTNET_PORT
},
sequence: 1
};
const sacn = {
...createStatusEmitter(),
socket: dgram.createSocket("udp4"),
config: {
enabled: false,
host: "",
port: SACN_PORT,
multicast: true,
sourceName: "Time4Midi"
},
sequence: 1,
cid: crypto.randomBytes(16)
};
const osc = {
...createStatusEmitter(),
socket: dgram.createSocket("udp4"),
config: {
enabled: false,
host: "127.0.0.1",
port: 8000
}
};
const mqttState = {
...createStatusEmitter(),
client: null,
connected: false,
config: {
enabled: false,
brokerUrl: "mqtt://127.0.0.1:1883",
username: "",
password: "",
clientId: ""
}
};
const serialState = {
...createStatusEmitter(),
port: null,
config: {
enabled: false,
path: "",
baudRate: 9600,
dataBits: 8,
stopBits: 1,
parity: "none",
mode: "rs232"
}
};
const modbusTcpState = {
...createStatusEmitter(),
client: new ModbusRTU(),
connected: false,
signature: "",
config: {
enabled: false,
host: "127.0.0.1",
port: 502,
timeout: 1000
}
};
const modbusRtuState = {
...createStatusEmitter(),
client: new ModbusRTU(),
connected: false,
signature: "",
config: {
enabled: false,
path: "",
baudRate: 9600,
dataBits: 8,
stopBits: 1,
parity: "none",
timeout: 1000
}
};
const knxState = {
...createStatusEmitter(),
connection: null,
connecting: null,
connected: false,
config: {
enabled: false,
ipAddr: "224.0.23.12",
ipPort: KNX_PORT,
physAddr: "15.15.15",
forceTunneling: false
}
};
function normalizeArtNetConfig(nextConfig = {}) {
return {
enabled: nextConfig.enabled !== false,
host: nextConfig.host || "255.255.255.255",
port: Number.isFinite(Number(nextConfig.port)) ? Number(nextConfig.port) : ARTNET_PORT,
broadcast: Boolean(nextConfig.broadcast),
timecodeListenPort: Number.isFinite(Number(nextConfig.timecodeListenPort))
? Number(nextConfig.timecodeListenPort)
: ARTNET_PORT
};
}
function normalizeSacnConfig(nextConfig = {}) {
return {
enabled: Boolean(nextConfig.enabled),
host: String(nextConfig.host || ""),
port: Number.isFinite(Number(nextConfig.port)) ? Number(nextConfig.port) : SACN_PORT,
multicast: nextConfig.multicast !== false,
sourceName: String(nextConfig.sourceName || "Time4Midi").slice(0, 63)
};
}
function normalizeOscConfig(nextConfig = {}) {
return {
enabled: Boolean(nextConfig.enabled),
host: nextConfig.host || "127.0.0.1",
port: Number.isFinite(Number(nextConfig.port)) ? Number(nextConfig.port) : 8000
};
}
function normalizeMqttConfig(nextConfig = {}) {
return {
enabled: Boolean(nextConfig.enabled),
brokerUrl: String(nextConfig.brokerUrl || "").trim() || "mqtt://127.0.0.1:1883",
username: String(nextConfig.username || ""),
password: String(nextConfig.password || ""),
clientId: String(nextConfig.clientId || "")
};
}
function normalizeSerialConfig(nextConfig = {}) {
return {
enabled: Boolean(nextConfig.enabled),
path: String(nextConfig.path || ""),
baudRate: Number.isFinite(Number(nextConfig.baudRate)) ? Number(nextConfig.baudRate) : 9600,
dataBits: [7, 8].includes(Number(nextConfig.dataBits)) ? Number(nextConfig.dataBits) : 8,
stopBits: [1, 2].includes(Number(nextConfig.stopBits)) ? Number(nextConfig.stopBits) : 1,
parity: ["none", "even", "odd"].includes(String(nextConfig.parity || "none")) ? String(nextConfig.parity || "none") : "none",
mode: String(nextConfig.mode || "rs232")
};
}
function normalizeModbusTcpConfig(nextConfig = {}) {
return {
enabled: Boolean(nextConfig.enabled),
host: String(nextConfig.host || "127.0.0.1"),
port: Number.isFinite(Number(nextConfig.port)) ? Number(nextConfig.port) : 502,
timeout: Number.isFinite(Number(nextConfig.timeout)) ? Number(nextConfig.timeout) : 1000
};
}
function normalizeModbusRtuConfig(nextConfig = {}) {
return {
enabled: Boolean(nextConfig.enabled),
path: String(nextConfig.path || ""),
baudRate: Number.isFinite(Number(nextConfig.baudRate)) ? Number(nextConfig.baudRate) : 9600,
dataBits: [7, 8].includes(Number(nextConfig.dataBits)) ? Number(nextConfig.dataBits) : 8,
stopBits: [1, 2].includes(Number(nextConfig.stopBits)) ? Number(nextConfig.stopBits) : 1,
parity: ["none", "even", "odd"].includes(String(nextConfig.parity || "none")) ? String(nextConfig.parity || "none") : "none",
timeout: Number.isFinite(Number(nextConfig.timeout)) ? Number(nextConfig.timeout) : 1000
};
}
function normalizeKnxConfig(nextConfig = {}) {
return {
enabled: Boolean(nextConfig.enabled),
ipAddr: String(nextConfig.ipAddr || "224.0.23.12"),
ipPort: Number.isFinite(Number(nextConfig.ipPort)) ? Number(nextConfig.ipPort) : KNX_PORT,
physAddr: String(nextConfig.physAddr || "15.15.15"),
forceTunneling: Boolean(nextConfig.forceTunneling)
};
}
function closeArtNetListener() {
if (artnet.listenSocket) {
try {
artnet.listenSocket.close();
} catch (_error) {
// Ignore listener close races.
}
artnet.listenSocket = null;
}
}
function parseArtNetTimecode(message) {
if (message.length < 19) {
return null;
}
if (!message.subarray(0, 8).equals(ARTNET_HEADER)) {
return null;
}
const opcode = message.readUInt16LE(8);
if (opcode !== ARTNET_OPCODE_TIMECODE) {
return null;
}
const frames = message[14];
const seconds = message[15];
const minutes = message[16];
const hours = message[17];
const frameType = message[18] & 0x03;
const fpsMap = [24, 25, 29.97, 30];
const fps = fpsMap[frameType] || 30;
const totalSeconds = (hours * 3600) + (minutes * 60) + seconds + (frames / fps);
return { hours, minutes, seconds, frames, fps, totalSeconds };
}
function ensureArtNetListener() {
if (!artnet.config.enabled || artnet.listenSocket) {
return;
}
artnet.listenSocket = dgram.createSocket("udp4");
artnet.listenSocket.on("error", (error) => {
emitStatus(artnet, `Art-Net Listen Fehler: ${error.message}`);
});
artnet.listenSocket.on("listening", () => {
emitStatus(artnet, "");
});
artnet.listenSocket.on("message", (message) => {
const parsed = parseArtNetTimecode(message);
if (!parsed) return;
for (const listener of artnet.listeners) {
listener(parsed);
}
});
try {
artnet.listenSocket.bind(artnet.config.timecodeListenPort);
} catch (error) {
emitStatus(artnet, `Art-Net Listen Fehler: ${error.message}`);
}
}
function configureArtNet(nextConfig) {
const previousPort = artnet.config.timecodeListenPort;
artnet.config = normalizeArtNetConfig(nextConfig);
try {
artnet.sendSocket.setBroadcast(artnet.config.broadcast);
} catch (error) {
emitStatus(artnet, `Art-Net Konfig Fehler: ${error.message}`);
}
if (!artnet.config.enabled) {
closeArtNetListener();
emitStatus(artnet, "");
return artnet.config;
}
if (previousPort !== artnet.config.timecodeListenPort) {
closeArtNetListener();
}
if (artnet.listeners.size > 0) {
ensureArtNetListener();
}
return artnet.config;
}
function sendArtNetDmx(payload) {
if (!artnet.config.enabled) {
return Promise.resolve(false);
}
const universe = Math.max(0, Math.min(32767, Number(payload.universe) || 0));
const values = Array.isArray(payload.values) ? payload.values : [];
const length = Math.max(2, Math.min(512, values.length || 512));
const evenLength = length % 2 === 0 ? length : length + 1;
const packet = Buffer.alloc(18 + evenLength);
ARTNET_HEADER.copy(packet, 0);
packet.writeUInt16LE(ARTNET_OPCODE_DMX, 8);
packet[10] = 0x00;
packet[11] = 0x0e;
packet[12] = artnet.sequence;
packet[13] = 0x00;
packet.writeUInt16LE(universe, 14);
packet.writeUInt16BE(evenLength, 16);
for (let index = 0; index < evenLength; index += 1) {
packet[18 + index] = Math.max(0, Math.min(255, Math.round(values[index] || 0)));
}
artnet.sequence = artnet.sequence >= 255 ? 1 : artnet.sequence + 1;
return new Promise((resolve, reject) => {
artnet.sendSocket.send(packet, 0, packet.length, artnet.config.port, artnet.config.host, (error) => {
if (error) {
emitStatus(artnet, `Art-Net Send Fehler: ${error.message}`);
reject(error);
return;
}
emitStatus(artnet, "");
resolve(true);
});
});
}
function configureOsc(nextConfig) {
osc.config = normalizeOscConfig(nextConfig);
emitStatus(osc, "");
return osc.config;
}
function encodeOscString(value) {
const base = Buffer.from(`${value}\0`, "utf8");
const padding = (4 - (base.length % 4)) % 4;
return padding === 0 ? base : Buffer.concat([base, Buffer.alloc(padding)]);
}
function encodeOscArgument(value, argType) {
if (argType === "string") {
return { tag: "s", data: encodeOscString(String(value ?? "")) };
}
if (argType === "int") {
const data = Buffer.alloc(4);
data.writeInt32BE(Math.round(Number(value) || 0), 0);
return { tag: "i", data };
}
const data = Buffer.alloc(4);
data.writeFloatBE(Number(value) || 0, 0);
return { tag: "f", data };
}
function sendOsc(payload) {
if (!osc.config.enabled) {
return Promise.resolve(false);
}
const address = String(payload.address || "/time4midi");
const normalizedAddress = address.startsWith("/") ? address : `/${address}`;
const argument = encodeOscArgument(payload.value, payload.argType || "float");
const packet = Buffer.concat([
encodeOscString(normalizedAddress),
encodeOscString(`,${argument.tag}`),
argument.data
]);
return new Promise((resolve, reject) => {
osc.socket.send(packet, 0, packet.length, osc.config.port, osc.config.host, (error) => {
if (error) {
emitStatus(osc, `OSC Send Fehler: ${error.message}`);
reject(error);
return;
}
emitStatus(osc, "");
resolve(true);
});
});
}
function configureSacn(nextConfig) {
sacn.config = normalizeSacnConfig(nextConfig);
emitStatus(sacn, "");
return sacn.config;
}
function clampSacnUniverse(universe) {
return Math.max(1, Math.min(63999, Number(universe) || 1));
}
function sacnDestination(universe) {
const safeUniverse = clampSacnUniverse(universe);
if (!sacn.config.multicast) {
return sacn.config.host || "127.0.0.1";
}
const high = (safeUniverse >> 8) & 0xff;
const low = safeUniverse & 0xff;
return `239.255.${high}.${low}`;
}
function encodeFlagsAndLength(length) {
return 0x7000 | length;
}
function writeFixedString(buffer, offset, size, value) {
buffer.fill(0, offset, offset + size);
Buffer.from(String(value || ""), "utf8").copy(buffer, offset, 0, size);
}
function sendSacnDmx(payload) {
if (!sacn.config.enabled) {
return Promise.resolve(false);
}
const universe = clampSacnUniverse(payload.universe);
const values = Array.isArray(payload.values) ? payload.values : [];
const slotCount = Math.max(1, Math.min(512, values.length || 512));
const packetLength = 126 + slotCount;
const propertyValueCount = slotCount + 1;
const packet = Buffer.alloc(packetLength);
packet.writeUInt16BE(0x0010, 0);
packet.writeUInt16BE(0x0000, 2);
writeFixedString(packet, 4, 12, "ASC-E1.17");
packet.writeUInt16BE(encodeFlagsAndLength(packetLength - 16), 16);
packet.writeUInt32BE(0x00000004, 18);
sacn.cid.copy(packet, 22);
packet.writeUInt16BE(encodeFlagsAndLength(packetLength - 38), 38);
packet.writeUInt32BE(0x00000002, 40);
writeFixedString(packet, 44, 64, sacn.config.sourceName || "Time4Midi");
packet[108] = 100;
packet.writeUInt16BE(0x0000, 109);
packet[111] = sacn.sequence;
packet[112] = 0x00;
packet.writeUInt16BE(universe, 113);
packet.writeUInt16BE(encodeFlagsAndLength(packetLength - 115), 115);
packet[117] = 0x02;
packet[118] = 0xa1;
packet.writeUInt16BE(0x0000, 119);
packet.writeUInt16BE(0x0001, 121);
packet.writeUInt16BE(propertyValueCount, 123);
packet[125] = 0x00;
for (let index = 0; index < slotCount; index += 1) {
packet[126 + index] = Math.max(0, Math.min(255, Math.round(values[index] || 0)));
}
sacn.sequence = sacn.sequence >= 255 ? 1 : sacn.sequence + 1;
const host = sacnDestination(universe);
return new Promise((resolve, reject) => {
sacn.socket.send(packet, 0, packet.length, sacn.config.port, host, (error) => {
if (error) {
emitStatus(sacn, `sACN Send Fehler: ${error.message}`);
reject(error);
return;
}
emitStatus(sacn, "");
resolve(true);
});
});
}
function disconnectMqtt() {
if (mqttState.client) {
try {
mqttState.client.removeAllListeners();
mqttState.client.end(true);
} catch (_error) {
// Best effort disconnect.
}
}
mqttState.client = null;
mqttState.connected = false;
}
function configureMqtt(nextConfig) {
mqttState.config = normalizeMqttConfig(nextConfig);
disconnectMqtt();
if (!mqttState.config.enabled) {
emitStatus(mqttState, "");
return mqttState.config;
}
const options = { reconnectPeriod: 1000 };
if (mqttState.config.clientId) options.clientId = mqttState.config.clientId;
if (mqttState.config.username) options.username = mqttState.config.username;
if (mqttState.config.password) options.password = mqttState.config.password;
try {
mqttState.client = mqtt.connect(mqttState.config.brokerUrl, options);
mqttState.client.on("connect", () => {
mqttState.connected = true;
emitStatus(mqttState, "");
});
mqttState.client.on("reconnect", () => {
mqttState.connected = false;
emitStatus(mqttState, "MQTT verbindet neu...");
});
mqttState.client.on("close", () => {
mqttState.connected = false;
});
mqttState.client.on("error", (error) => {
mqttState.connected = false;
emitStatus(mqttState, `MQTT Fehler: ${error.message}`);
});
} catch (error) {
emitStatus(mqttState, `MQTT Fehler: ${error.message}`);
}
return mqttState.config;
}
function publishMqtt(payload) {
if (!mqttState.config.enabled) {
return Promise.resolve(false);
}
return new Promise((resolve, reject) => {
if (!mqttState.client || !mqttState.connected) {
reject(new Error("MQTT nicht verbunden"));
return;
}
mqttState.client.publish(String(payload.topic || ""), String(payload.value ?? ""), {}, (error) => {
if (error) {
emitStatus(mqttState, `MQTT Send Fehler: ${error.message}`);
reject(error);
return;
}
emitStatus(mqttState, "");
resolve(true);
});
});
}
function closeSerialPort() {
return new Promise((resolve) => {
if (!serialState.port) {
resolve();
return;
}
const port = serialState.port;
serialState.port = null;
if (!port.isOpen) {
resolve();
return;
}
port.close(() => resolve());
});
}
async function configureSerial(nextConfig) {
serialState.config = normalizeSerialConfig(nextConfig);
await closeSerialPort();
emitStatus(serialState, "");
return serialState.config;
}
async function ensureSerialPortOpen() {
if (!serialState.config.enabled) {
throw new Error("Serial deaktiviert");
}
if (!serialState.config.path) {
throw new Error("Serial Port nicht gesetzt");
}
if (serialState.port && serialState.port.isOpen && serialState.port.path === serialState.config.path) {
return serialState.port;
}
await closeSerialPort();
serialState.port = new SerialPort({
path: serialState.config.path,
baudRate: serialState.config.baudRate,
dataBits: serialState.config.dataBits,
stopBits: serialState.config.stopBits,
parity: serialState.config.parity,
autoOpen: false
});
serialState.port.on("error", (error) => {
emitStatus(serialState, `Serial Fehler: ${error.message}`);
});
await new Promise((resolve, reject) => {
serialState.port.open((error) => {
if (error) {
reject(error);
return;
}
resolve(true);
});
});
emitStatus(serialState, "");
return serialState.port;
}
async function sendSerial(payload) {
if (!serialState.config.enabled) {
return false;
}
const port = await ensureSerialPortOpen();
const text = String(payload.text ?? "");
return new Promise((resolve, reject) => {
port.write(text, "utf8", (error) => {
if (error) {
emitStatus(serialState, `Serial Send Fehler: ${error.message}`);
reject(error);
return;
}
emitStatus(serialState, "");
resolve(true);
});
});
}
async function listSerialPorts() {
const ports = await SerialPort.list();
return ports.map((port) => ({
path: port.path,
manufacturer: port.manufacturer || "",
friendlyName: port.path
}));
}
async function disconnectModbusClient(state) {
if (state.client?.isOpen) {
try {
await state.client.close();
} catch (_error) {
// Best effort close.
}
}
state.connected = false;
state.signature = "";
}
async function configureModbusTcp(nextConfig) {
modbusTcpState.config = normalizeModbusTcpConfig(nextConfig);
await disconnectModbusClient(modbusTcpState);
emitStatus(modbusTcpState, "");
return modbusTcpState.config;
}
async function configureModbusRtu(nextConfig) {
modbusRtuState.config = normalizeModbusRtuConfig(nextConfig);
await disconnectModbusClient(modbusRtuState);
emitStatus(modbusRtuState, "");
return modbusRtuState.config;
}
async function ensureModbusTcpConnected() {
if (!modbusTcpState.config.enabled) {
throw new Error("Modbus TCP deaktiviert");
}
const signature = `${modbusTcpState.config.host}:${modbusTcpState.config.port}:${modbusTcpState.config.timeout}`;
if (modbusTcpState.connected && modbusTcpState.signature === signature && modbusTcpState.client.isOpen) {
return modbusTcpState.client;
}
await disconnectModbusClient(modbusTcpState);
await modbusTcpState.client.connectTCP(modbusTcpState.config.host, {
port: modbusTcpState.config.port,
timeout: modbusTcpState.config.timeout
});
modbusTcpState.client.setTimeout(modbusTcpState.config.timeout);
modbusTcpState.connected = true;
modbusTcpState.signature = signature;
emitStatus(modbusTcpState, "");
return modbusTcpState.client;
}
async function ensureModbusRtuConnected() {
if (!modbusRtuState.config.enabled) {
throw new Error("Modbus RTU deaktiviert");
}
if (!modbusRtuState.config.path) {
throw new Error("Modbus RTU Port nicht gesetzt");
}
const signature = `${modbusRtuState.config.path}:${modbusRtuState.config.baudRate}:${modbusRtuState.config.parity}:${modbusRtuState.config.dataBits}:${modbusRtuState.config.stopBits}`;
if (modbusRtuState.connected && modbusRtuState.signature === signature && modbusRtuState.client.isOpen) {
return modbusRtuState.client;
}
await disconnectModbusClient(modbusRtuState);
await modbusRtuState.client.connectRTUBuffered(modbusRtuState.config.path, {
baudRate: modbusRtuState.config.baudRate,
parity: modbusRtuState.config.parity,
dataBits: modbusRtuState.config.dataBits,
stopBits: modbusRtuState.config.stopBits
});
modbusRtuState.client.setTimeout(modbusRtuState.config.timeout);
modbusRtuState.connected = true;
modbusRtuState.signature = signature;
emitStatus(modbusRtuState, "");
return modbusRtuState.client;
}
async function writeModbus(client, payload) {
client.setID(Number(payload.unitId) || 1);
const address = Number(payload.address) || 0;
const value = Number(payload.value) || 0;
if (payload.registerType === "coil") {
await client.writeCoil(address, value >= 1);
} else {
await client.writeRegister(address, Math.max(0, Math.min(65535, Math.round(value))));
}
}
async function sendModbusTcp(payload) {
const client = await ensureModbusTcpConnected();
try {
await writeModbus(client, payload);
emitStatus(modbusTcpState, "");
return true;
} catch (error) {
emitStatus(modbusTcpState, `Modbus TCP Fehler: ${error.message}`);
throw error;
}
}
async function sendModbusRtu(payload) {
const client = await ensureModbusRtuConnected();
try {
await writeModbus(client, payload);
emitStatus(modbusRtuState, "");
return true;
} catch (error) {
emitStatus(modbusRtuState, `Modbus RTU Fehler: ${error.message}`);
throw error;
}
}
function disconnectKnx() {
return new Promise((resolve) => {
if (!knxState.connection) {
knxState.connected = false;
knxState.connecting = null;
resolve();
return;
}
const connection = knxState.connection;
knxState.connection = null;
knxState.connected = false;
knxState.connecting = null;
try {
connection.Disconnect(() => resolve());
} catch (_error) {
resolve();
}
});
}
async function configureKnx(nextConfig) {
knxState.config = normalizeKnxConfig(nextConfig);
await disconnectKnx();
emitStatus(knxState, "");
return knxState.config;
}
async function ensureKnxConnection() {
if (!knxState.config.enabled) {
throw new Error("KNX deaktiviert");
}
if (knxState.connection && knxState.connected) {
return knxState.connection;
}
if (knxState.connecting) {
return knxState.connecting;
}
knxState.connecting = new Promise((resolve, reject) => {
try {
const connection = knx.Connection({
ipAddr: knxState.config.ipAddr,
ipPort: knxState.config.ipPort,
physAddr: knxState.config.physAddr,
forceTunneling: knxState.config.forceTunneling,
handlers: {
connected: function () {
knxState.connection = connection;
knxState.connected = true;
knxState.connecting = null;
emitStatus(knxState, "");
resolve(connection);
},
disconnected: function () {
knxState.connected = false;
knxState.connection = null;
},
error: function (error) {
knxState.connected = false;
knxState.connection = null;
knxState.connecting = null;
const message = error?.message || String(error);
emitStatus(knxState, `KNX Fehler: ${message}`);
reject(error instanceof Error ? error : new Error(message));
}
}
});
knxState.connection = connection;
} catch (error) {
knxState.connecting = null;
emitStatus(knxState, `KNX Fehler: ${error.message}`);
reject(error);
}
});
return knxState.connecting;
}
async function sendKnx(payload) {
const connection = await ensureKnxConnection();
const dpt = String(payload.dpt || "DPT5.001");
let value = payload.value;
if (dpt.startsWith("DPT1")) {
value = Number(value) >= 1;
} else if (dpt.startsWith("DPT16")) {
value = String(value ?? "");
} else {
value = Number(value) || 0;
}
return new Promise((resolve, reject) => {
try {
connection.write(String(payload.groupAddress || "1/1/1"), value, dpt, (error) => {
if (error) {
emitStatus(knxState, `KNX Send Fehler: ${error.message}`);
reject(error);
return;
}
emitStatus(knxState, "");
resolve(true);
});
} catch (error) {
emitStatus(knxState, `KNX Send Fehler: ${error.message}`);
reject(error);
}
});
}
artnet.sendSocket.on("error", (error) => {
emitStatus(artnet, `Art-Net Socket Fehler: ${error.message}`);
});
osc.socket.on("error", (error) => {
emitStatus(osc, `OSC Socket Fehler: ${error.message}`);
});
sacn.socket.on("error", (error) => {
emitStatus(sacn, `sACN Socket Fehler: ${error.message}`);
});
configureMqtt(mqttState.config);
contextBridge.exposeInMainWorld("time4midi", {
project: {
save: (payload) => ipcRenderer.invoke("project:save", payload),
load: () => ipcRenderer.invoke("project:load")
},
artnet: {
configure: (config) => configureArtNet(config),
sendDmx: (payload) => sendArtNetDmx(payload),
onTimecode: (handler) => {
artnet.listeners.add(handler);
ensureArtNetListener();
return () => {
artnet.listeners.delete(handler);
};
},
onStatus: (handler) => addStatusApi(artnet, handler)
},
sacn: {
configure: (config) => configureSacn(config),
sendDmx: (payload) => sendSacnDmx(payload),
onStatus: (handler) => addStatusApi(sacn, handler)
},
osc: {
configure: (config) => configureOsc(config),
send: (payload) => sendOsc(payload),
onStatus: (handler) => addStatusApi(osc, handler)
},
mqtt: {
configure: (config) => configureMqtt(config),
publish: (payload) => publishMqtt(payload),
onStatus: (handler) => addStatusApi(mqttState, handler)
},
serial: {
configure: (config) => configureSerial(config),
send: (payload) => sendSerial(payload),
listPorts: () => listSerialPorts(),
onStatus: (handler) => addStatusApi(serialState, handler)
},
modbusTcp: {
configure: (config) => configureModbusTcp(config),
send: (payload) => sendModbusTcp(payload),
onStatus: (handler) => addStatusApi(modbusTcpState, handler)
},
modbusRtu: {
configure: (config) => configureModbusRtu(config),
send: (payload) => sendModbusRtu(payload),
onStatus: (handler) => addStatusApi(modbusRtuState, handler)
},
knx: {
configure: (config) => configureKnx(config),
send: (payload) => sendKnx(payload),
onStatus: (handler) => addStatusApi(knxState, handler)
}
});