515 lines
12 KiB
TypeScript
515 lines
12 KiB
TypeScript
export interface H264AccessUnit {
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type: "key" | "delta";
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data: Uint8Array;
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}
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export interface FrameThumb {
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index: number;
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src: string;
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width: number;
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height: number;
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timestampUs: number;
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}
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export interface ParsedH264 {
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codec: string;
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description: Uint8Array;
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accessUnits: H264AccessUnit[];
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frameCount: number;
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keyFrameCount: number;
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}
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export interface H264DecoderConfig {
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codec: string;
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description: Uint8Array;
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}
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export interface H264StreamChunk {
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accessUnits: H264AccessUnit[];
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config?: H264DecoderConfig;
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frameCount: number;
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keyFrameCount: number;
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bufferedBytes: number;
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done: boolean;
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}
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interface RawNalUnit {
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type: number;
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data: Uint8Array;
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}
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export function parseH264AnnexB(bytes: Uint8Array): ParsedH264 {
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const parser = new H264AnnexBStreamParser();
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const first = parser.push(bytes);
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const last = parser.flush();
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const accessUnits = [...first.accessUnits, ...last.accessUnits];
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const config = first.config ?? last.config;
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if (!config) {
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throw new Error("没有找到 SPS / PPS,无法配置 WebCodecs 解码器。");
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}
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const codec = config.codec;
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const description = config.description;
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const keyFrameCount = accessUnits.filter((unit) => unit.type === "key").length;
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return {
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codec,
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description,
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accessUnits,
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frameCount: accessUnits.length,
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keyFrameCount,
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};
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}
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export class H264AnnexBStreamParser {
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private buffer: Uint8Array<ArrayBufferLike> = new Uint8Array(0);
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private spsUnits: Uint8Array[] = [];
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private ppsUnits: Uint8Array[] = [];
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private currentSlices: Uint8Array[] = [];
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private currentIsKey = false;
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private currentHasVcl = false;
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private frameCount = 0;
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private keyFrameCount = 0;
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private config: H264DecoderConfig | null = null;
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private configSignature = "";
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push(chunk: Uint8Array): H264StreamChunk {
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this.append(chunk);
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return this.drain(false);
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}
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flush(): H264StreamChunk {
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return this.drain(true);
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}
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private append(chunk: Uint8Array) {
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if (chunk.length === 0) {
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return;
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}
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const merged = new Uint8Array(this.buffer.length + chunk.length);
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merged.set(this.buffer, 0);
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merged.set(chunk, this.buffer.length);
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this.buffer = merged;
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}
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private drain(final: boolean): H264StreamChunk {
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const accessUnits: H264AccessUnit[] = [];
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while (true) {
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const starts = findStartCodes(this.buffer);
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if (starts.length === 0) {
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this.buffer = final ? new Uint8Array(0) : keepTail(this.buffer);
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break;
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}
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if (starts[0].index > 0) {
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this.buffer = this.buffer.slice(starts[0].index);
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continue;
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}
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const processCount = final ? starts.length : starts.length - 1;
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if (processCount <= 0) {
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break;
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}
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for (let index = 0; index < processCount; index += 1) {
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const start = starts[index];
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const next = starts[index + 1];
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const nalStart = start.index + start.length;
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const nalEnd = next ? next.index : this.buffer.length;
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if (nalEnd <= nalStart) {
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continue;
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}
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const nal = {
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type: this.buffer[nalStart] & 0x1f,
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data: copyBytes(this.buffer.subarray(nalStart, nalEnd)),
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};
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const flushed = this.processNal(nal);
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if (flushed) {
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accessUnits.push(flushed);
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}
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}
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if (final) {
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this.buffer = new Uint8Array(0);
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break;
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}
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this.buffer = this.buffer.slice(starts[processCount].index);
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}
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const finalAccessUnit = final ? this.flushCurrentAccessUnit() : null;
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if (finalAccessUnit) {
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accessUnits.push(finalAccessUnit);
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}
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const config = this.ensureConfig();
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return {
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accessUnits,
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config: config ?? undefined,
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frameCount: this.frameCount,
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keyFrameCount: this.keyFrameCount,
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bufferedBytes: this.buffer.length,
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done: final && this.buffer.length === 0,
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};
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}
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private processNal(nal: RawNalUnit): H264AccessUnit | null {
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if (nal.type === 7) {
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if (!containsBytes(this.spsUnits, nal.data)) {
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this.spsUnits.push(nal.data);
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this.configSignature = "";
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this.config = null;
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}
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return null;
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}
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if (nal.type === 8) {
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if (!containsBytes(this.ppsUnits, nal.data)) {
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this.ppsUnits.push(nal.data);
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this.configSignature = "";
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this.config = null;
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}
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return null;
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}
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if (nal.type !== 1 && nal.type !== 5) {
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return null;
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}
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const firstMbInSlice = readFirstMbInSlice(nal.data);
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if (firstMbInSlice === 0 && this.currentHasVcl) {
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const flushed = this.flushCurrentAccessUnit();
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this.currentSlices = [nal.data];
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this.currentHasVcl = true;
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this.currentIsKey = nal.type === 5;
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return flushed;
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}
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this.currentSlices.push(nal.data);
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this.currentHasVcl = true;
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this.currentIsKey = this.currentIsKey || nal.type === 5;
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return null;
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}
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private flushCurrentAccessUnit(): H264AccessUnit | null {
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if (this.currentSlices.length === 0) {
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this.currentHasVcl = false;
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this.currentIsKey = false;
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return null;
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}
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const accessUnit: H264AccessUnit = {
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type: this.currentIsKey ? "key" : "delta",
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data: concatNalPayloads(this.currentSlices),
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};
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this.frameCount += 1;
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if (accessUnit.type === "key") {
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this.keyFrameCount += 1;
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}
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this.currentSlices = [];
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this.currentHasVcl = false;
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this.currentIsKey = false;
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return accessUnit;
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}
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private ensureConfig(): H264DecoderConfig | null {
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if (this.spsUnits.length === 0 || this.ppsUnits.length === 0) {
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return null;
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}
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const signature = `${this.spsUnits.map(bytesToHex).join("|")}::${this.ppsUnits
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.map(bytesToHex)
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.join("|")}`;
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if (this.config && this.configSignature === signature) {
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return this.config;
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}
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this.config = {
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codec: codecStringFromSps(this.spsUnits[0]),
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description: buildAvcDecoderConfigRecord(this.spsUnits, this.ppsUnits),
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};
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this.configSignature = signature;
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return this.config;
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}
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}
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function findStartCodes(bytes: Uint8Array): Array<{ index: number; length: number }> {
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const starts: Array<{ index: number; length: number }> = [];
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for (let index = 0; index < bytes.length - 3; index += 1) {
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if (bytes[index] !== 0 || bytes[index + 1] !== 0) {
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continue;
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}
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if (bytes[index + 2] === 1) {
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starts.push({ index, length: 3 });
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index += 2;
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continue;
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}
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if (index < bytes.length - 4 && bytes[index + 2] === 0 && bytes[index + 3] === 1) {
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starts.push({ index, length: 4 });
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index += 3;
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}
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}
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return starts;
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}
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function keepTail(bytes: Uint8Array): Uint8Array {
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if (bytes.length <= 3) {
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return bytes.slice();
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}
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return bytes.slice(bytes.length - 3);
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}
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function extractNalUnits(bytes: Uint8Array): RawNalUnit[] {
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const starts: Array<{ index: number; length: number }> = [];
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for (let index = 0; index < bytes.length - 3; index += 1) {
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if (bytes[index] !== 0 || bytes[index + 1] !== 0) {
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continue;
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}
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if (bytes[index + 2] === 1) {
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starts.push({ index, length: 3 });
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index += 2;
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continue;
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}
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if (index < bytes.length - 4 && bytes[index + 2] === 0 && bytes[index + 3] === 1) {
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starts.push({ index, length: 4 });
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index += 3;
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}
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}
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if (starts.length === 0) {
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throw new Error("没有找到 Annex-B start code。");
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}
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const nalUnits: RawNalUnit[] = [];
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for (let i = 0; i < starts.length; i += 1) {
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const start = starts[i];
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const next = starts[i + 1];
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const nalStart = start.index + start.length;
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const nalEnd = next ? next.index : bytes.length;
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if (nalEnd <= nalStart) {
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continue;
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}
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const data = bytes.subarray(nalStart, nalEnd);
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nalUnits.push({
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type: data[0] & 0x1f,
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data,
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});
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}
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return nalUnits;
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}
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function readFirstMbInSlice(nalData: Uint8Array): number {
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if (nalData.length < 2) {
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return 0;
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}
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const rbsp = removeEmulationPreventionBytes(nalData.subarray(1));
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const reader = new BitReader(rbsp);
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return reader.readUE();
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}
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function codecStringFromSps(sps: Uint8Array): string {
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if (sps.length < 4) {
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throw new Error("SPS 长度不足,无法生成 codec 字符串。");
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}
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const profile = sps[1].toString(16).padStart(2, "0");
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const compatibility = sps[2].toString(16).padStart(2, "0");
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const level = sps[3].toString(16).padStart(2, "0");
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return `avc1.${profile}${compatibility}${level}`;
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}
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function buildAvcDecoderConfigRecord(
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spsUnits: Uint8Array[],
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ppsUnits: Uint8Array[],
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): Uint8Array {
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const spsList = uniqueByContent(spsUnits);
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const ppsList = uniqueByContent(ppsUnits);
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let size = 7;
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for (const sps of spsList) {
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size += 2 + sps.length;
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}
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size += 1;
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for (const pps of ppsList) {
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size += 2 + pps.length;
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}
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const record = new Uint8Array(size);
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let offset = 0;
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record[offset++] = 1;
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record[offset++] = spsList[0][1];
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record[offset++] = spsList[0][2];
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record[offset++] = spsList[0][3];
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record[offset++] = 0xff;
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record[offset++] = 0xe0 | spsList.length;
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for (const sps of spsList) {
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writeUint16(record, offset, sps.length);
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offset += 2;
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record.set(sps, offset);
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offset += sps.length;
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}
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record[offset++] = ppsList.length;
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for (const pps of ppsList) {
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writeUint16(record, offset, pps.length);
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offset += 2;
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record.set(pps, offset);
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offset += pps.length;
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}
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return record;
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}
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function concatNalPayloads(units: Uint8Array[]): Uint8Array {
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let size = 0;
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for (const unit of units) {
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size += 4 + unit.length;
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}
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const output = new Uint8Array(size);
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let offset = 0;
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for (const unit of units) {
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writeUint32(output, offset, unit.length);
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offset += 4;
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output.set(unit, offset);
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offset += unit.length;
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}
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return output;
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}
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function removeEmulationPreventionBytes(data: Uint8Array): Uint8Array {
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const output: number[] = [];
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let zeroCount = 0;
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for (const byte of data) {
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if (zeroCount >= 2 && byte === 0x03) {
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zeroCount = 0;
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continue;
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}
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output.push(byte);
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zeroCount = byte === 0x00 ? zeroCount + 1 : 0;
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}
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return Uint8Array.from(output);
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}
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function uniqueByContent(units: Uint8Array[]): Uint8Array[] {
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const seen = new Set<string>();
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const result: Uint8Array[] = [];
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for (const unit of units) {
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const key = bytesToHex(unit);
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if (seen.has(key)) {
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continue;
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}
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seen.add(key);
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result.push(unit);
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}
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return result;
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}
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function containsBytes(units: Uint8Array[], candidate: Uint8Array): boolean {
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const candidateKey = bytesToHex(candidate);
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return units.some((unit) => bytesToHex(unit) === candidateKey);
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}
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function copyBytes(bytes: Uint8Array): Uint8Array {
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return bytes.slice();
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}
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function bytesToHex(bytes: Uint8Array): string {
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let output = "";
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for (const byte of bytes) {
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output += byte.toString(16).padStart(2, "0");
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}
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return output;
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}
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function writeUint16(target: Uint8Array, offset: number, value: number) {
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target[offset] = (value >> 8) & 0xff;
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target[offset + 1] = value & 0xff;
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}
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function writeUint32(target: Uint8Array, offset: number, value: number) {
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target[offset] = (value >>> 24) & 0xff;
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target[offset + 1] = (value >>> 16) & 0xff;
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target[offset + 2] = (value >>> 8) & 0xff;
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target[offset + 3] = value & 0xff;
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}
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class BitReader {
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private readonly data: Uint8Array;
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private byteIndex = 0;
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private bitIndex = 7;
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constructor(data: Uint8Array) {
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this.data = data;
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}
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readBit(): number {
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if (this.byteIndex >= this.data.length) {
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return 0;
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}
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const bit = (this.data[this.byteIndex] >> this.bitIndex) & 1;
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this.bitIndex -= 1;
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if (this.bitIndex < 0) {
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this.bitIndex = 7;
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this.byteIndex += 1;
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}
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return bit;
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}
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readBits(count: number): number {
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let value = 0;
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for (let index = 0; index < count; index += 1) {
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value = (value << 1) | this.readBit();
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}
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return value;
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}
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readUE(): number {
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let zeroCount = 0;
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while (this.readBit() === 0 && zeroCount < 31) {
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zeroCount += 1;
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}
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const suffix = zeroCount > 0 ? this.readBits(zeroCount) : 0;
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return (1 << zeroCount) - 1 + suffix;
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}
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}
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