Files
ArtPlayer/docs/compiled/artplayer-plugin-asr.mjs
Harvey Zhao 65e51751cd feat: add danmuku plugin and i18n setup documentation
- Created a new documentation file for the danmuku plugin with code examples.
- Added a new documentation file for language settings (i18n) with detailed instructions on language imports, default languages, and how to add or modify languages.
- Included code snippets for initializing the Artplayer with different language settings.
2026-03-12 22:23:44 +08:00

253 lines
8.8 KiB
JavaScript

/*!
* artplayer-plugin-asr.js v2.1.0
* Github: https://github.com/zhw2590582/ArtPlayer
* (c) 2017-2026 Harvey Zhao
* Released under the MIT License.
*/
const style = ".art-video-player .art-layer-asr {\n pointer-events: none !important;\n position: absolute;\n z-index: 150;\n inset: 0px;\n display: flex;\n flex-direction: column;\n justify-content: end;\n padding: 0 2%;\n font-size: 1rem;\n gap: var(--art-subtitle-gap);\n padding-bottom: var(--art-subtitle-bottom);\n transition: padding-bottom var(--art-transition-duration) ease;\n text-shadow: var(--art-subtitle-border) 1px 0 1px, var(--art-subtitle-border) 0 1px 1px, var(--art-subtitle-border) -1px 0 1px, var(--art-subtitle-border) 0 -1px 1px, var(--art-subtitle-border) 1px 1px 1px, var(--art-subtitle-border) -1px -1px 1px, var(--art-subtitle-border) 1px -1px 1px, var(--art-subtitle-border) -1px 1px 1px;\n}\n.art-video-player.art-control-show .art-layer-asr {\n padding-bottom: calc(var(--art-control-height) + var(--art-subtitle-bottom));\n}\n";
function artplayerPluginAsr(option = {}) {
const {
length = 3,
interval = 100,
sampleRate = 16e3,
autoHideTimeout = 1e4,
onAudioChunk = () => null
} = option;
return (art) => {
let started = false;
let audioCtx = null;
let sourceNode = null;
let recorderNode = null;
let gainNode = null;
let bufferChunks = [];
let timer = null;
let workletLoaded = false;
let hideTimer = null;
let mediaStream = null;
let mediaStreamSource = null;
const $asr = art.layers.add({
name: "asr",
html: ""
});
function splitByPunctuation(text) {
return text.split(/(?<=[、。!?!?.])\s*/u).map((s) => s.trim()).filter(Boolean).slice(-length);
}
function hide() {
$asr.style.display = "none";
}
function append(subtitle) {
if (typeof subtitle !== "string")
return;
clearTimeout(hideTimer);
hideTimer = setTimeout(hide, autoHideTimeout);
$asr.style.display = "";
$asr.innerHTML = splitByPunctuation(subtitle).map((line) => `<div class="art-asr-line">${line}</div>`).join("");
}
const recorderProcessorCode = `
class RecorderProcessor extends AudioWorkletProcessor {
process(inputs) {
const input = inputs[0];
if (input && input[0]) {
this.port.postMessage(input[0]);
}
return true;
}
}
registerProcessor('recorder-processor', RecorderProcessor);
`;
const createWorkletBlobUrl = () => {
const blob = new Blob([recorderProcessorCode], { type: "application/javascript" });
return URL.createObjectURL(blob);
};
function floatTo16BitPCM(float32Array) {
const len = float32Array.length;
const buffer = new ArrayBuffer(len * 2);
const view = new DataView(buffer);
for (let i = 0; i < len; i++) {
const s = Math.max(-1, Math.min(1, float32Array[i]));
view.setInt16(i * 2, s < 0 ? s * 32768 : s * 32767, true);
}
return buffer;
}
function pcmToWav(pcmBuffer, sampleRate2) {
const pcmLength = pcmBuffer.byteLength;
const wavBuffer = new ArrayBuffer(44 + pcmLength);
const view = new DataView(wavBuffer);
const writeString = (offset, str) => {
for (let i = 0; i < str.length; i++) {
view.setUint8(offset + i, str.charCodeAt(i));
}
};
writeString(0, "RIFF");
view.setUint32(4, 36 + pcmLength, true);
writeString(8, "WAVE");
writeString(12, "fmt ");
view.setUint32(16, 16, true);
view.setUint16(20, 1, true);
view.setUint16(22, 1, true);
view.setUint32(24, sampleRate2, true);
view.setUint32(28, sampleRate2 * 2, true);
view.setUint16(32, 2, true);
view.setUint16(34, 16, true);
writeString(36, "data");
view.setUint32(40, pcmLength, true);
new Uint8Array(wavBuffer).set(new Uint8Array(pcmBuffer), 44);
return wavBuffer;
}
async function setupAudioContext() {
if (audioCtx)
return audioCtx;
audioCtx = new (window.AudioContext || window.webkitAudioContext)({ sampleRate });
if (audioCtx.state === "suspended")
await audioCtx.resume();
return audioCtx;
}
async function setupAudioSource() {
if (!sourceNode && art.video) {
try {
sourceNode = audioCtx.createMediaElementSource(art.video);
return sourceNode;
} catch (err) {
console.warn("[artplayerPluginAsr] Direct connection failed:", err);
}
}
try {
if (!mediaStream) {
mediaStream = await captureAudioFromVideo(art.video);
}
if (mediaStream) {
mediaStreamSource = audioCtx.createMediaStreamSource(mediaStream);
return mediaStreamSource;
}
} catch (err) {
console.warn("[artplayerPluginAsr] MediaStream fallback failed:", err);
}
return null;
}
async function captureAudioFromVideo(videoElement) {
try {
if (videoElement.captureStream)
return videoElement.captureStream();
if (videoElement.mozCaptureStream)
return videoElement.mozCaptureStream();
console.warn("[artplayerPluginAsr] captureStream not supported");
return null;
} catch (err) {
console.warn("[artplayerPluginAsr] Error capturing stream:", err);
return null;
}
}
async function startCapture() {
if (started)
return;
try {
await setupAudioContext();
const audioSource = await setupAudioSource();
if (!audioSource)
throw new Error("Could not establish audio source");
if (!workletLoaded) {
const blobUrl = createWorkletBlobUrl();
await audioCtx.audioWorklet.addModule(blobUrl);
URL.revokeObjectURL(blobUrl);
workletLoaded = true;
}
gainNode = audioCtx.createGain();
gainNode.gain.value = 1;
recorderNode = new AudioWorkletNode(audioCtx, "recorder-processor");
recorderNode.port.onmessage = (event) => {
bufferChunks.push(new Float32Array(event.data));
};
audioSource.connect(recorderNode);
audioSource.connect(gainNode);
gainNode.connect(audioCtx.destination);
const CHUNK_SAMPLES = sampleRate * (interval / 1e3);
timer = setInterval(async () => {
if (bufferChunks.length === 0)
return;
let accumulated = new Float32Array(0);
while (accumulated.length < CHUNK_SAMPLES && bufferChunks.length) {
const next = bufferChunks.shift();
const tmp = new Float32Array(accumulated.length + next.length);
tmp.set(accumulated, 0);
tmp.set(next, accumulated.length);
accumulated = tmp;
}
if (accumulated.length < CHUNK_SAMPLES)
return;
const chunkToSend = accumulated.slice(0, CHUNK_SAMPLES);
const pcm = floatTo16BitPCM(chunkToSend);
const wav = pcmToWav(pcm, sampleRate);
const subtitle = await onAudioChunk({ pcm, wav });
append(subtitle);
}, interval);
started = true;
} catch (err) {
console.error("[artplayerPluginAsr] Initialization failed:", err);
await stopCapture();
}
}
async function stopCapture() {
if (!started)
return;
started = false;
clearInterval(timer);
timer = null;
if (recorderNode) {
recorderNode.disconnect();
recorderNode.port.onmessage = null;
recorderNode = null;
}
if (gainNode) {
gainNode.disconnect();
gainNode = null;
}
bufferChunks = [];
}
async function destroy() {
await stopCapture();
if (mediaStreamSource) {
mediaStreamSource.disconnect();
mediaStreamSource = null;
}
if (sourceNode) {
sourceNode.disconnect();
sourceNode = null;
}
if (mediaStream) {
mediaStream.getTracks().forEach((track) => track.stop());
mediaStream = null;
}
if (audioCtx) {
await audioCtx.close();
audioCtx = null;
}
workletLoaded = false;
}
art.on("video:volumechange", () => {
if (gainNode) {
gainNode.gain.value = art.volume;
}
});
art.on("play", startCapture);
art.on("pause", stopCapture);
art.on("destroy", destroy);
return {
name: "artplayerPluginAsr",
stop: destroy,
hide,
append
};
};
}
if (typeof document !== "undefined") {
if (!document.getElementById("artplayer-plugin-asr")) {
const $style = document.createElement("style");
$style.id = "artplayer-plugin-asr";
$style.textContent = style;
document.head.appendChild($style);
}
}
export {
artplayerPluginAsr as default
};