var initPikchrModule = (() => { var _scriptName = globalThis.document?.currentScript?.src; return async function(moduleArg = {}) { var moduleRtn; var Module = moduleArg; var ENVIRONMENT_IS_WEB = true; var ENVIRONMENT_IS_WORKER = false; var arguments_ = []; var thisProgram = "./this.program"; var quit_ = (status, toThrow) => { throw toThrow; }; var scriptDirectory = ""; function locateFile(path) { if (Module["locateFile"]) { return Module["locateFile"](path, scriptDirectory); } return scriptDirectory + path; } var readAsync, readBinary; if (ENVIRONMENT_IS_WEB || ENVIRONMENT_IS_WORKER) { try { scriptDirectory = new URL(".", _scriptName).href; } catch {} { readAsync = async url => { var response = await fetch(url, { credentials: "same-origin" }); if (response.ok) { return response.arrayBuffer(); } throw new Error(response.status + " : " + response.url); }; } } else {} var out = console.log.bind(console); var err = console.error.bind(console); var wasmBinary; var ABORT = false; var EXITSTATUS; var readyPromiseResolve, readyPromiseReject; var HEAP8, HEAPU8, HEAP16, HEAPU16, HEAP32, HEAPU32, HEAPF32, HEAPF64; var HEAP64, HEAPU64; var runtimeInitialized = false; function updateMemoryViews() { var b = wasmMemory.buffer; HEAP8 = new Int8Array(b); HEAP16 = new Int16Array(b); HEAPU8 = new Uint8Array(b); HEAPU16 = new Uint16Array(b); HEAP32 = new Int32Array(b); HEAPU32 = new Uint32Array(b); HEAPF32 = new Float32Array(b); HEAPF64 = new Float64Array(b); HEAP64 = new BigInt64Array(b); HEAPU64 = new BigUint64Array(b); } function preRun() { if (Module["preRun"]) { if (typeof Module["preRun"] == "function") Module["preRun"] = [ Module["preRun"] ]; while (Module["preRun"].length) { addOnPreRun(Module["preRun"].shift()); } } callRuntimeCallbacks(onPreRuns); } function initRuntime() { runtimeInitialized = true; wasmExports["e"](); } function postRun() { if (Module["postRun"]) { if (typeof Module["postRun"] == "function") Module["postRun"] = [ Module["postRun"] ]; while (Module["postRun"].length) { addOnPostRun(Module["postRun"].shift()); } } callRuntimeCallbacks(onPostRuns); } function abort(what) { Module["onAbort"]?.(what); what = "Aborted(" + what + ")"; err(what); ABORT = true; what += ". Build with -sASSERTIONS for more info."; var e = new WebAssembly.RuntimeError(what); readyPromiseReject?.(e); throw e; } var wasmBinaryFile; function findWasmBinary() { return locateFile("pikchr-v8806526039.wasm"); } function getBinarySync(file) { if (file == wasmBinaryFile && wasmBinary) { return new Uint8Array(wasmBinary); } if (readBinary) { return readBinary(file); } throw "both async and sync fetching of the wasm failed"; } async function getWasmBinary(binaryFile) { if (!wasmBinary) { try { var response = await readAsync(binaryFile); return new Uint8Array(response); } catch {} } return getBinarySync(binaryFile); } async function instantiateArrayBuffer(binaryFile, imports) { try { var binary = await getWasmBinary(binaryFile); var instance = await WebAssembly.instantiate(binary, imports); return instance; } catch (reason) { err(`failed to asynchronously prepare wasm: ${reason}`); abort(reason); } } async function instantiateAsync(binary, binaryFile, imports) { if (!binary) { try { var response = fetch(binaryFile, { credentials: "same-origin" }); var instantiationResult = await WebAssembly.instantiateStreaming(response, imports); return instantiationResult; } catch (reason) { err(`wasm streaming compile failed: ${reason}`); err("falling back to ArrayBuffer instantiation"); } } return instantiateArrayBuffer(binaryFile, imports); } function getWasmImports() { var imports = { "a": wasmImports }; return imports; } async function createWasm() { function receiveInstance(instance, module) { wasmExports = instance.exports; assignWasmExports(wasmExports); updateMemoryViews(); return wasmExports; } function receiveInstantiationResult(result) { return receiveInstance(result["instance"]); } var info = getWasmImports(); if (Module["instantiateWasm"]) { return new Promise((resolve, reject) => { Module["instantiateWasm"](info, (inst, mod) => { resolve(receiveInstance(inst, mod)); }); }); } wasmBinaryFile ??= findWasmBinary(); var result = await instantiateAsync(wasmBinary, wasmBinaryFile, info); var exports = receiveInstantiationResult(result); return exports; } class ExitStatus { name="ExitStatus"; constructor(status) { this.message = `Program terminated with exit(${status})`; this.status = status; } } var callRuntimeCallbacks = callbacks => { while (callbacks.length > 0) { callbacks.shift()(Module); } }; var onPostRuns = []; var addOnPostRun = cb => onPostRuns.push(cb); var onPreRuns = []; var addOnPreRun = cb => onPreRuns.push(cb); function getValue(ptr, type = "i8") { if (type.endsWith("*")) type = "*"; switch (type) { case "i1": return HEAP8[ptr]; case "i8": return HEAP8[ptr]; case "i16": return HEAP16[((ptr) >> 1)]; case "i32": return HEAP32[((ptr) >> 2)]; case "i64": return HEAP64[((ptr) >> 3)]; case "float": return HEAPF32[((ptr) >> 2)]; case "double": return HEAPF64[((ptr) >> 3)]; case "*": return HEAPU32[((ptr) >> 2)]; default: abort(`invalid type for getValue: ${type}`); } } var noExitRuntime = true; function setValue(ptr, value, type = "i8") { if (type.endsWith("*")) type = "*"; switch (type) { case "i1": HEAP8[ptr] = value; break; case "i8": HEAP8[ptr] = value; break; case "i16": HEAP16[((ptr) >> 1)] = value; break; case "i32": HEAP32[((ptr) >> 2)] = value; break; case "i64": HEAP64[((ptr) >> 3)] = BigInt(value); break; case "float": HEAPF32[((ptr) >> 2)] = value; break; case "double": HEAPF64[((ptr) >> 3)] = value; break; case "*": HEAPU32[((ptr) >> 2)] = value; break; default: abort(`invalid type for setValue: ${type}`); } } var stackRestore = val => __emscripten_stack_restore(val); var stackSave = () => _emscripten_stack_get_current(); var UTF8Decoder = new TextDecoder; var findStringEnd = (heapOrArray, idx, maxBytesToRead, ignoreNul) => { var maxIdx = idx + maxBytesToRead; if (ignoreNul) return maxIdx; while (heapOrArray[idx] && !(idx >= maxIdx)) ++idx; return idx; }; var UTF8ToString = (ptr, maxBytesToRead, ignoreNul) => { if (!ptr) return ""; var end = findStringEnd(HEAPU8, ptr, maxBytesToRead, ignoreNul); return UTF8Decoder.decode(HEAPU8.subarray(ptr, end)); }; var ___assert_fail = (condition, filename, line, func) => abort(`Assertion failed: ${UTF8ToString(condition)}, at: ` + [ filename ? UTF8ToString(filename) : "unknown filename", line, func ? UTF8ToString(func) : "unknown function" ]); var abortOnCannotGrowMemory = requestedSize => { abort("OOM"); }; var _emscripten_resize_heap = requestedSize => { var oldSize = HEAPU8.length; requestedSize >>>= 0; abortOnCannotGrowMemory(requestedSize); }; var runtimeKeepaliveCounter = 0; var keepRuntimeAlive = () => noExitRuntime || runtimeKeepaliveCounter > 0; var _proc_exit = code => { EXITSTATUS = code; if (!keepRuntimeAlive()) { Module["onExit"]?.(code); ABORT = true; } quit_(code, new ExitStatus(code)); }; var exitJS = (status, implicit) => { EXITSTATUS = status; _proc_exit(status); }; var _exit = exitJS; var getCFunc = ident => { var func = Module["_" + ident]; return func; }; var writeArrayToMemory = (array, buffer) => { HEAP8.set(array, buffer); }; var lengthBytesUTF8 = str => { var len = 0; for (var i = 0; i < str.length; ++i) { var c = str.charCodeAt(i); if (c <= 127) { len++; } else if (c <= 2047) { len += 2; } else if (c >= 55296 && c <= 57343) { len += 4; ++i; } else { len += 3; } } return len; }; var stringToUTF8Array = (str, heap, outIdx, maxBytesToWrite) => { if (!(maxBytesToWrite > 0)) return 0; var startIdx = outIdx; var endIdx = outIdx + maxBytesToWrite - 1; for (var i = 0; i < str.length; ++i) { var u = str.codePointAt(i); if (u <= 127) { if (outIdx >= endIdx) break; heap[outIdx++] = u; } else if (u <= 2047) { if (outIdx + 1 >= endIdx) break; heap[outIdx++] = 192 | (u >> 6); heap[outIdx++] = 128 | (u & 63); } else if (u <= 65535) { if (outIdx + 2 >= endIdx) break; heap[outIdx++] = 224 | (u >> 12); heap[outIdx++] = 128 | ((u >> 6) & 63); heap[outIdx++] = 128 | (u & 63); } else { if (outIdx + 3 >= endIdx) break; heap[outIdx++] = 240 | (u >> 18); heap[outIdx++] = 128 | ((u >> 12) & 63); heap[outIdx++] = 128 | ((u >> 6) & 63); heap[outIdx++] = 128 | (u & 63); i++; } } heap[outIdx] = 0; return outIdx - startIdx; }; var stringToUTF8 = (str, outPtr, maxBytesToWrite) => stringToUTF8Array(str, HEAPU8, outPtr, maxBytesToWrite); var stackAlloc = sz => __emscripten_stack_alloc(sz); var stringToUTF8OnStack = str => { var size = lengthBytesUTF8(str) + 1; var ret = stackAlloc(size); stringToUTF8(str, ret, size); return ret; }; var ccall = (ident, returnType, argTypes, args, opts) => { var toC = { "string": str => { var ret = 0; if (str !== null && str !== undefined && str !== 0) { ret = stringToUTF8OnStack(str); } return ret; }, "array": arr => { var ret = stackAlloc(arr.length); writeArrayToMemory(arr, ret); return ret; } }; function convertReturnValue(ret) { if (returnType === "string") { return UTF8ToString(ret); } if (returnType === "boolean") return Boolean(ret); return ret; } var func = getCFunc(ident); var cArgs = []; var stack = 0; if (args) { for (var i = 0; i < args.length; i++) { var converter = toC[argTypes[i]]; if (converter) { if (stack === 0) stack = stackSave(); cArgs[i] = converter(args[i]); } else { cArgs[i] = args[i]; } } } var ret = func(...cArgs); function onDone(ret) { if (stack !== 0) stackRestore(stack); return convertReturnValue(ret); } ret = onDone(ret); return ret; }; var cwrap = (ident, returnType, argTypes, opts) => { var numericArgs = !argTypes || argTypes.every(type => type === "number" || type === "boolean"); var numericRet = returnType !== "string"; if (numericRet && numericArgs && !opts) { return getCFunc(ident); } return (...args) => ccall(ident, returnType, argTypes, args, opts); }; { if (Module["noExitRuntime"]) noExitRuntime = Module["noExitRuntime"]; if (Module["print"]) out = Module["print"]; if (Module["printErr"]) err = Module["printErr"]; if (Module["wasmBinary"]) wasmBinary = Module["wasmBinary"]; if (Module["arguments"]) arguments_ = Module["arguments"]; if (Module["thisProgram"]) thisProgram = Module["thisProgram"]; if (Module["preInit"]) { if (typeof Module["preInit"] == "function") Module["preInit"] = [ Module["preInit"] ]; while (Module["preInit"].length > 0) { Module["preInit"].shift()(); } } } Module["stackSave"] = stackSave; Module["stackRestore"] = stackRestore; Module["stackAlloc"] = stackAlloc; Module["ccall"] = ccall; Module["cwrap"] = cwrap; Module["setValue"] = setValue; Module["getValue"] = getValue; var _pikchr_version, _pikchr, __emscripten_stack_restore, __emscripten_stack_alloc, _emscripten_stack_get_current, memory, __indirect_function_table, wasmMemory; function assignWasmExports(wasmExports) { _pikchr_version = Module["_pikchr_version"] = wasmExports["f"]; _pikchr = Module["_pikchr"] = wasmExports["g"]; __emscripten_stack_restore = wasmExports["h"]; __emscripten_stack_alloc = wasmExports["i"]; _emscripten_stack_get_current = wasmExports["j"]; memory = wasmMemory = wasmExports["d"]; __indirect_function_table = wasmExports["__indirect_function_table"]; } var wasmImports = { a: ___assert_fail, b: _emscripten_resize_heap, c: _exit }; function run() { preRun(); function doRun() { Module["calledRun"] = true; if (ABORT) return; initRuntime(); readyPromiseResolve?.(Module); Module["onRuntimeInitialized"]?.(); postRun(); } if (Module["setStatus"]) { Module["setStatus"]("Running..."); setTimeout(() => { setTimeout(() => Module["setStatus"](""), 1); doRun(); }, 1); } else { doRun(); } } var wasmExports; wasmExports = await (createWasm()); run(); if (runtimeInitialized) { moduleRtn = Module; } else { moduleRtn = new Promise((resolve, reject) => { readyPromiseResolve = resolve; readyPromiseReject = reject; }); } return moduleRtn; }; })(); if (typeof exports === 'object' && typeof module === 'object') { module.exports = initPikchrModule; module.exports.default = initPikchrModule; } else if (typeof define === 'function' && define['amd']) define([], () => initPikchrModule);