feat(Editor): glTFHandler 处理优化
This commit is contained in:
@@ -0,0 +1,39 @@
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import "@/utils/wasm/wasm_exec.js";
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// 20251112: 注入tinyGo编译的wasm
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export function injectWasm(opts: {wasmUrl: string}):Promise<any> {
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return new Promise((resolve, reject) => {
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if(!opts.wasmUrl){
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reject("wasmUrl requires valid URL");
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return;
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}
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// @ts-ignore
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const go = new Go();
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const done = (obj) => {
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const wasm = obj.instance;
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go.run(wasm);
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resolve(wasm);
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}
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if ('instantiateStreaming' in WebAssembly) {
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WebAssembly.instantiateStreaming(fetch(opts.wasmUrl), go.importObject).then(function (obj) {
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done(obj);
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}).catch(function (err) {
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reject(err);
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})
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} else {
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fetch(opts.wasmUrl).then(resp =>
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resp.arrayBuffer()
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).then(bytes =>
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WebAssembly.instantiate(bytes, go.importObject).then(function (obj) {
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done(obj);
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}).catch(function (err) {
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reject(err);
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})
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)
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}
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})
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}
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@@ -0,0 +1,403 @@
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(() => {
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const global = window;
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const encoder = new TextEncoder("utf-8");
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const decoder = new TextDecoder("utf-8");
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let reinterpretBuf = new DataView(new ArrayBuffer(8));
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let logLine = [];
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const wasmExit = {}; // thrown to exit via proc_exit (not an error)
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global.Go = class {
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constructor() {
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this._callbackTimeouts = new Map();
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this._nextCallbackTimeoutID = 1;
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const mem = () => {
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// The buffer may change when requesting more memory.
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return new DataView(this._inst.exports.memory.buffer);
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}
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const unboxValue = (v_ref) => {
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reinterpretBuf.setBigInt64(0, v_ref, true);
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const f = reinterpretBuf.getFloat64(0, true);
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if (f === 0) {
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return undefined;
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}
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if (!isNaN(f)) {
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return f;
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}
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const id = v_ref & 0xffffffffn;
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return this._values[id];
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}
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const loadValue = (addr) => {
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let v_ref = mem().getBigUint64(addr, true);
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return unboxValue(v_ref);
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}
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const boxValue = (v) => {
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const nanHead = 0x7FF80000n;
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if (typeof v === "number") {
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if (isNaN(v)) {
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return nanHead << 32n;
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}
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if (v === 0) {
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return (nanHead << 32n) | 1n;
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}
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reinterpretBuf.setFloat64(0, v, true);
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return reinterpretBuf.getBigInt64(0, true);
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}
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switch (v) {
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case undefined:
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return 0n;
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case null:
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return (nanHead << 32n) | 2n;
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case true:
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return (nanHead << 32n) | 3n;
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case false:
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return (nanHead << 32n) | 4n;
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}
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let id = this._ids.get(v);
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if (id === undefined) {
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id = this._idPool.pop();
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if (id === undefined) {
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id = BigInt(this._values.length);
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}
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this._values[id] = v;
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this._goRefCounts[id] = 0;
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this._ids.set(v, id);
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}
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this._goRefCounts[id]++;
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let typeFlag = 1n;
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switch (typeof v) {
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case "string":
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typeFlag = 2n;
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break;
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case "symbol":
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typeFlag = 3n;
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break;
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case "function":
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typeFlag = 4n;
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break;
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}
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return id | ((nanHead | typeFlag) << 32n);
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}
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const storeValue = (addr, v) => {
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let v_ref = boxValue(v);
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mem().setBigUint64(addr, v_ref, true);
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}
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const loadSlice = (array, len, cap) => {
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return new Uint8Array(this._inst.exports.memory.buffer, array, len);
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}
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const loadSliceOfValues = (array, len, cap) => {
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const a = new Array(len);
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for (let i = 0; i < len; i++) {
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a[i] = loadValue(array + i * 8);
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}
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return a;
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}
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const loadString = (ptr, len) => {
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return decoder.decode(new DataView(this._inst.exports.memory.buffer, ptr, len));
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}
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const timeOrigin = Date.now() - performance.now();
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this.importObject = {
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wasi_snapshot_preview1: {
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fd_write: function(fd, iovs_ptr, iovs_len, nwritten_ptr) {
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let nwritten = 0;
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if (fd == 1) {
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for (let iovs_i=0; iovs_i<iovs_len;iovs_i++) {
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let iov_ptr = iovs_ptr+iovs_i*8; // assuming wasm32
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let ptr = mem().getUint32(iov_ptr + 0, true);
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let len = mem().getUint32(iov_ptr + 4, true);
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nwritten += len;
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for (let i=0; i<len; i++) {
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let c = mem().getUint8(ptr+i);
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if (c == 13) { // CR
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// ignore
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} else if (c == 10) { // LF
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// write line
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let line = decoder.decode(new Uint8Array(logLine));
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logLine = [];
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console.log(line);
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} else {
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logLine.push(c);
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}
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}
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}
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} else {
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console.error('invalid file descriptor:', fd);
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}
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mem().setUint32(nwritten_ptr, nwritten, true);
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return 0;
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},
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fd_close: () => 0, // dummy
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fd_fdstat_get: () => 0, // dummy
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fd_seek: () => 0, // dummy
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proc_exit: (code) => {
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this.exited = true;
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this.exitCode = code;
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this._resolveExitPromise();
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throw wasmExit;
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},
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random_get: (bufPtr, bufLen) => {
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crypto.getRandomValues(loadSlice(bufPtr, bufLen));
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return 0;
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},
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},
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gojs: {
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// func ticks() float64
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"runtime.ticks": () => {
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return timeOrigin + performance.now();
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},
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// func sleepTicks(timeout float64)
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"runtime.sleepTicks": (timeout) => {
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// Do not sleep, only reactivate scheduler after the given timeout.
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setTimeout(() => {
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if (this.exited) return;
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try {
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this._inst.exports.go_scheduler();
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} catch (e) {
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if (e !== wasmExit) throw e;
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}
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}, timeout);
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},
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// func finalizeRef(v ref)
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"syscall/js.finalizeRef": (v_ref) => {
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// Note: TinyGo does not support finalizers so this is only called
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// for one specific case, by js.go:jsString. and can/might leak memory.
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const id = v_ref & 0xffffffffn;
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if (this._goRefCounts?.[id] !== undefined) {
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this._goRefCounts[id]--;
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if (this._goRefCounts[id] === 0) {
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const v = this._values[id];
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this._values[id] = null;
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this._ids.delete(v);
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this._idPool.push(id);
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}
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} else {
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console.error("syscall/js.finalizeRef: unknown id", id);
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}
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},
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// func stringVal(value string) ref
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"syscall/js.stringVal": (value_ptr, value_len) => {
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value_ptr >>>= 0;
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const s = loadString(value_ptr, value_len);
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return boxValue(s);
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},
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// func valueGet(v ref, p string) ref
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"syscall/js.valueGet": (v_ref, p_ptr, p_len) => {
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let prop = loadString(p_ptr, p_len);
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let v = unboxValue(v_ref);
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let result = Reflect.get(v, prop);
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return boxValue(result);
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},
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// func valueSet(v ref, p string, x ref)
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"syscall/js.valueSet": (v_ref, p_ptr, p_len, x_ref) => {
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const v = unboxValue(v_ref);
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const p = loadString(p_ptr, p_len);
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const x = unboxValue(x_ref);
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Reflect.set(v, p, x);
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},
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// func valueDelete(v ref, p string)
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"syscall/js.valueDelete": (v_ref, p_ptr, p_len) => {
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const v = unboxValue(v_ref);
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const p = loadString(p_ptr, p_len);
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Reflect.deleteProperty(v, p);
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},
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// func valueIndex(v ref, i int) ref
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"syscall/js.valueIndex": (v_ref, i) => {
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return boxValue(Reflect.get(unboxValue(v_ref), i));
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},
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// valueSetIndex(v ref, i int, x ref)
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"syscall/js.valueSetIndex": (v_ref, i, x_ref) => {
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Reflect.set(unboxValue(v_ref), i, unboxValue(x_ref));
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},
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// func valueCall(v ref, m string, args []ref) (ref, bool)
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"syscall/js.valueCall": (ret_addr, v_ref, m_ptr, m_len, args_ptr, args_len, args_cap) => {
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const v = unboxValue(v_ref);
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const name = loadString(m_ptr, m_len);
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const args = loadSliceOfValues(args_ptr, args_len, args_cap);
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try {
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const m = Reflect.get(v, name);
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storeValue(ret_addr, Reflect.apply(m, v, args));
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mem().setUint8(ret_addr + 8, 1);
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} catch (err) {
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storeValue(ret_addr, err);
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mem().setUint8(ret_addr + 8, 0);
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}
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},
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// func valueInvoke(v ref, args []ref) (ref, bool)
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"syscall/js.valueInvoke": (ret_addr, v_ref, args_ptr, args_len, args_cap) => {
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try {
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const v = unboxValue(v_ref);
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const args = loadSliceOfValues(args_ptr, args_len, args_cap);
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storeValue(ret_addr, Reflect.apply(v, undefined, args));
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mem().setUint8(ret_addr + 8, 1);
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} catch (err) {
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storeValue(ret_addr, err);
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mem().setUint8(ret_addr + 8, 0);
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}
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},
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// func valueNew(v ref, args []ref) (ref, bool)
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"syscall/js.valueNew": (ret_addr, v_ref, args_ptr, args_len, args_cap) => {
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const v = unboxValue(v_ref);
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const args = loadSliceOfValues(args_ptr, args_len, args_cap);
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try {
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storeValue(ret_addr, Reflect.construct(v, args));
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mem().setUint8(ret_addr + 8, 1);
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} catch (err) {
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storeValue(ret_addr, err);
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mem().setUint8(ret_addr+ 8, 0);
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}
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},
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// func valueLength(v ref) int
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"syscall/js.valueLength": (v_ref) => {
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return unboxValue(v_ref).length;
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},
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// valuePrepareString(v ref) (ref, int)
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"syscall/js.valuePrepareString": (ret_addr, v_ref) => {
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const s = String(unboxValue(v_ref));
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const str = encoder.encode(s);
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storeValue(ret_addr, str);
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mem().setInt32(ret_addr + 8, str.length, true);
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},
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// valueLoadString(v ref, b []byte)
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"syscall/js.valueLoadString": (v_ref, slice_ptr, slice_len, slice_cap) => {
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const str = unboxValue(v_ref);
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loadSlice(slice_ptr, slice_len, slice_cap).set(str);
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},
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// func valueInstanceOf(v ref, t ref) bool
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"syscall/js.valueInstanceOf": (v_ref, t_ref) => {
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return unboxValue(v_ref) instanceof unboxValue(t_ref);
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},
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// func copyBytesToGo(dst []byte, src ref) (int, bool)
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"syscall/js.copyBytesToGo": (ret_addr, dest_addr, dest_len, dest_cap, src_ref) => {
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let num_bytes_copied_addr = ret_addr;
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let returned_status_addr = ret_addr + 4; // Address of returned boolean status variable
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const dst = loadSlice(dest_addr, dest_len);
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const src = unboxValue(src_ref);
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if (!(src instanceof Uint8Array || src instanceof Uint8ClampedArray)) {
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mem().setUint8(returned_status_addr, 0); // Return "not ok" status
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return;
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}
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const toCopy = src.subarray(0, dst.length);
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dst.set(toCopy);
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mem().setUint32(num_bytes_copied_addr, toCopy.length, true);
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mem().setUint8(returned_status_addr, 1); // Return "ok" status
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},
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// copyBytesToJS(dst ref, src []byte) (int, bool)
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// Originally copied from upstream Go project, then modified:
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// https://github.com/golang/go/blob/3f995c3f3b43033013013e6c7ccc93a9b1411ca9/misc/wasm/wasm_exec.js#L404-L416
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"syscall/js.copyBytesToJS": (ret_addr, dst_ref, src_addr, src_len, src_cap) => {
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let num_bytes_copied_addr = ret_addr;
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let returned_status_addr = ret_addr + 4; // Address of returned boolean status variable
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const dst = unboxValue(dst_ref);
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const src = loadSlice(src_addr, src_len);
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if (!(dst instanceof Uint8Array || dst instanceof Uint8ClampedArray)) {
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mem().setUint8(returned_status_addr, 0); // Return "not ok" status
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return;
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}
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const toCopy = src.subarray(0, dst.length);
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dst.set(toCopy);
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mem().setUint32(num_bytes_copied_addr, toCopy.length, true);
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mem().setUint8(returned_status_addr, 1); // Return "ok" status
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},
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}
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};
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// Go 1.20 uses 'env'. Go 1.21 uses 'gojs'.
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// 开启 env 映射
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this.importObject.env = this.importObject.gojs;
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}
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async run(instance) {
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this._inst = instance;
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this._values = [ // JS values that Go currently has references to, indexed by reference id
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NaN,
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0,
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null,
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true,
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false,
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global,
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this,
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];
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this._goRefCounts = []; // number of references that Go has to a JS value, indexed by reference id
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this._ids = new Map(); // mapping from JS values to reference ids
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this._idPool = []; // unused ids that have been garbage collected
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this.exited = false; // whether the Go program has exited
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this.exitCode = 0;
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if (this._inst.exports._start) {
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let exitPromise = new Promise((resolve, reject) => {
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this._resolveExitPromise = resolve;
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});
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// Run program, but catch the wasmExit exception that's thrown
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// to return back here.
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try {
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this._inst.exports._start();
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} catch (e) {
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if (e !== wasmExit) throw e;
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}
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await exitPromise;
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return this.exitCode;
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} else {
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this._inst.exports._initialize();
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}
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}
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_resume() {
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if (this.exited) {
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throw new Error("Go program has already exited");
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}
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try {
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this._inst.exports.resume();
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} catch (e) {
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if (e !== wasmExit) throw e;
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}
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if (this.exited) {
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this._resolveExitPromise();
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}
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}
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_makeFuncWrapper(id) {
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const go = this;
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return function () {
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const event = { id: id, this: this, args: arguments };
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go._pendingEvent = event;
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go._resume();
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return event.result;
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};
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}
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}
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})();
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